From 82b99328b4061dd1b366783958908b54b95a6202 Mon Sep 17 00:00:00 2001 From: LuckyPuccio89 Date: Mon, 10 Mar 2025 19:08:05 +0100 Subject: [PATCH 1/7] Added Primary support for magician X2 series with the stm32 Board --- Marlin/Configuration.h | 31 +- .../Include/gd32f4xx_adc.h | 515 + .../Include/gd32f4xx_can.h | 754 + .../Include/gd32f4xx_crc.h | 80 + .../Include/gd32f4xx_ctc.h | 192 + .../Include/gd32f4xx_dac.h | 270 + .../Include/gd32f4xx_dbg.h | 161 + .../Include/gd32f4xx_dci.h | 238 + .../Include/gd32f4xx_dma.h | 428 + .../Include/gd32f4xx_enet.h | 1680 ++ .../Include/gd32f4xx_exmc.h | 809 + .../Include/gd32f4xx_exti.h | 277 + .../Include/gd32f4xx_fmc.h | 383 + .../Include/gd32f4xx_fwdgt.h | 106 + .../Include/gd32f4xx_gpio.h | 408 + .../Include/gd32f4xx_i2c.h | 422 + .../Include/gd32f4xx_ipa.h | 384 + .../Include/gd32f4xx_iref.h | 186 + .../Include/gd32f4xx_misc.h | 93 + .../Include/gd32f4xx_pmu.h | 199 + .../Include/gd32f4xx_rcu.h | 1179 ++ .../Include/gd32f4xx_rtc.h | 640 + .../Include/gd32f4xx_sdio.h | 433 + .../Include/gd32f4xx_spi.h | 379 + .../Include/gd32f4xx_syscfg.h | 181 + .../Include/gd32f4xx_timer.h | 781 + .../Include/gd32f4xx_tli.h | 376 + .../Include/gd32f4xx_trng.h | 104 + .../Include/gd32f4xx_usart.h | 495 + .../Include/gd32f4xx_wwdgt.h | 88 + .../Source/gd32f4xx_adc.c | 1202 ++ .../Source/gd32f4xx_can.c | 1018 + .../Source/gd32f4xx_crc.c | 128 + .../Source/gd32f4xx_ctc.c | 405 + .../Source/gd32f4xx_dac.c | 677 + .../Source/gd32f4xx_dbg.c | 198 + .../Source/gd32f4xx_dci.c | 345 + .../Source/gd32f4xx_dma.c | 905 + .../Source/gd32f4xx_enet.c | 3505 ++++ .../Source/gd32f4xx_exmc.c | 1237 ++ .../Source/gd32f4xx_exti.c | 257 + .../Source/gd32f4xx_fmc.c | 932 + .../Source/gd32f4xx_fwdgt.c | 157 + .../Source/gd32f4xx_gpio.c | 433 + .../Source/gd32f4xx_i2c.c | 819 + .../Source/gd32f4xx_ipa.c | 637 + .../Source/gd32f4xx_iref.c | 126 + .../Source/gd32f4xx_misc.c | 174 + .../Source/gd32f4xx_pmu.c | 391 + .../Source/gd32f4xx_rcu.c | 1329 ++ .../Source/gd32f4xx_rtc.c | 1295 ++ .../Source/gd32f4xx_sdio.c | 803 + .../Source/gd32f4xx_spi.c | 882 + .../Source/gd32f4xx_syscfg.c | 204 + .../Source/gd32f4xx_timer.c | 2063 ++ .../Source/gd32f4xx_tli.c | 598 + .../Source/gd32f4xx_trng.c | 155 + .../Source/gd32f4xx_usart.c | 1009 + .../Source/gd32f4xx_wwdgt.c | 148 + .../GD32F4xx_standard_peripheral/library.json | 16 + Marlin/lib/GD32F4xx_usb_library/library.json | 16 + .../GD32F4xx_usb_library/src/cdc_acm_core.c | 515 + .../GD32F4xx_usb_library/src/cdc_acm_core.h | 66 + .../device/class/audio/Include/audio_core.h | 300 + .../class/audio/Include/audio_out_itf.h | 76 + .../device/class/audio/Source/audio_core.c | 777 + .../device/class/audio/Source/audio_out_itf.c | 228 + .../src/device/class/dfu/Include/dfu_core.h | 176 + .../src/device/class/dfu/Include/dfu_mal.h | 84 + .../src/device/class/dfu/Source/dfu_core.c | 653 + .../src/device/class/dfu/Source/dfu_mal.c | 233 + .../class/hid/Include/custom_hid_core.h | 69 + .../class/hid/Include/standard_hid_core.h | 68 + .../device/class/hid/Source/custom_hid_core.c | 486 + .../class/hid/Source/standard_hid_core.c | 384 + .../device/class/iap/Include/usb_iap_core.h | 93 + .../device/class/iap/Source/usb_iap_core.c | 571 + .../device/class/msc/Include/usbd_msc_bbb.h | 101 + .../device/class/msc/Include/usbd_msc_core.h | 59 + .../device/class/msc/Include/usbd_msc_data.h | 49 + .../device/class/msc/Include/usbd_msc_mem.h | 59 + .../device/class/msc/Include/usbd_msc_scsi.h | 50 + .../device/class/msc/Source/usbd_msc_bbb.c | 287 + .../device/class/msc/Source/usbd_msc_core.c | 322 + .../device/class/msc/Source/usbd_msc_data.c | 73 + .../device/class/msc/Source/usbd_msc_scsi.c | 685 + .../class/printer/Include/printer_core.h | 78 + .../class/printer/Source/printer_core.c | 310 + .../GD32F4xx_usb_library/src/drv_usb_core.c | 363 + .../GD32F4xx_usb_library/src/drv_usb_core.h | 343 + .../GD32F4xx_usb_library/src/drv_usb_dev.c | 664 + .../GD32F4xx_usb_library/src/drv_usb_dev.h | 197 + .../GD32F4xx_usb_library/src/drv_usb_host.c | 476 + .../GD32F4xx_usb_library/src/drv_usb_host.h | 123 + .../lib/GD32F4xx_usb_library/src/drv_usb_hw.h | 73 + .../GD32F4xx_usb_library/src/drv_usb_regs.h | 663 + .../GD32F4xx_usb_library/src/drv_usbd_int.c | 587 + .../GD32F4xx_usb_library/src/drv_usbd_int.h | 52 + .../GD32F4xx_usb_library/src/drv_usbh_int.c | 622 + .../GD32F4xx_usb_library/src/drv_usbh_int.h | 56 + .../src/gd32_usb_helper.h | 30 + .../lib/GD32F4xx_usb_library/src/gd32f4xx.h | 367 + .../lib/GD32F4xx_usb_library/src/gdusb_cdc.h | 180 + .../lib/GD32F4xx_usb_library/src/gdusb_conf.h | 182 + .../lib/GD32F4xx_usb_library/src/gdusb_msc.h | 68 + .../GD32F4xx_usb_library/src/gdusbd_conf.h | 72 + .../GD32F4xx_usb_library/src/gdusbd_core.h | 103 + .../GD32F4xx_usb_library/src/gdusbd_enum.h | 105 + .../GD32F4xx_usb_library/src/gdusbd_transc.h | 56 + .../GD32F4xx_usb_library/src/gdusbh_conf.h | 46 + .../GD32F4xx_usb_library/src/gdusbh_core.h | 284 + .../GD32F4xx_usb_library/src/gdusbh_enum.h | 74 + .../GD32F4xx_usb_library/src/gdusbh_pipe.h | 100 + .../lib/GD32F4xx_usb_library/src/gdusbh_usr.h | 97 + .../host/class/hid/Include/usbh_hid_core.h | 212 + .../host/class/hid/Include/usbh_hid_keybd.h | 303 + .../host/class/hid/Include/usbh_hid_mouse.h | 59 + .../host/class/hid/Include/usbh_hid_parser.h | 61 + .../host/class/hid/Include/usbh_hid_usage.h | 141 + .../src/host/class/hid/Source/usbh_hid_core.c | 675 + .../host/class/hid/Source/usbh_hid_keybd.c | 399 + .../host/class/hid/Source/usbh_hid_mouse.c | 216 + .../host/class/hid/Source/usbh_hid_parser.c | 148 + Marlin/lib/GD32F4xx_usb_library/src/msc_bbb.h | 69 + .../lib/GD32F4xx_usb_library/src/msc_scsi.h | 117 + .../GD32F4xx_usb_library/src/usb_ch9_std.h | 248 + .../lib/GD32F4xx_usb_library/src/usbd_core.c | 320 + .../lib/GD32F4xx_usb_library/src/usbd_enum.c | 764 + .../GD32F4xx_usb_library/src/usbd_transc.c | 264 + .../lib/GD32F4xx_usb_library/src/usbh_core.c | 669 + .../lib/GD32F4xx_usb_library/src/usbh_enum.c | 693 + .../GD32F4xx_usb_library/src/usbh_msc_bbb.c | 362 + .../GD32F4xx_usb_library/src/usbh_msc_bbb.h | 150 + .../GD32F4xx_usb_library/src/usbh_msc_core.c | 558 + .../GD32F4xx_usb_library/src/usbh_msc_core.h | 124 + .../GD32F4xx_usb_library/src/usbh_msc_scsi.c | 400 + .../GD32F4xx_usb_library/src/usbh_msc_scsi.h | 100 + .../lib/GD32F4xx_usb_library/src/usbh_pipe.c | 174 + .../GD32F4xx_usb_library/src/usbh_transc.c | 370 + .../GD32F4xx_usb_library/src/usbh_transc.h | 51 + .../src/ustd/class/hid/usb_hid.h | 83 + Marlin/lib/LodePNG/LICENSE | 21 + Marlin/lib/LodePNG/Makefile | 34 + Marlin/lib/LodePNG/README.md | 75 + .../LodePNG/examples/example_4bit_palette.cpp | 101 + .../lib/LodePNG/examples/example_bmp2png.cpp | 125 + Marlin/lib/LodePNG/examples/example_decode.c | 109 + .../lib/LodePNG/examples/example_decode.cpp | 91 + Marlin/lib/LodePNG/examples/example_encode.c | 111 + .../lib/LodePNG/examples/example_encode.cpp | 92 + .../LodePNG/examples/example_encode_type.cpp | 76 + Marlin/lib/LodePNG/examples/example_gzip.cpp | 91 + .../lib/LodePNG/examples/example_opengl.cpp | 153 + .../LodePNG/examples/example_optimize_png.cpp | 129 + .../lib/LodePNG/examples/example_png2bmp.cpp | 125 + .../lib/LodePNG/examples/example_png_info.cpp | 313 + .../lib/LodePNG/examples/example_reencode.cpp | 72 + Marlin/lib/LodePNG/examples/example_sdl.c | 142 + Marlin/lib/LodePNG/examples/example_sdl.cpp | 129 + Marlin/lib/LodePNG/lodepng.cpp | 6658 +++++++ Marlin/lib/LodePNG/lodepng.h | 2085 +++ Marlin/lib/LodePNG/lodepng_benchmark.cpp | 355 + Marlin/lib/LodePNG/lodepng_fuzzer.cpp | 99 + Marlin/lib/LodePNG/lodepng_unittest.cpp | 3843 ++++ Marlin/lib/LodePNG/lodepng_util.cpp | 1763 ++ Marlin/lib/LodePNG/lodepng_util.h | 291 + Marlin/lib/LodePNG/pngdetail.cpp | 1449 ++ .../lib/STM32_USB_Host_Library/library.json | 16 + .../src/stm32_usbh_conf.h | 160 + .../STM32_USB_Host_Library/src/usbh_core.c | 1416 ++ .../STM32_USB_Host_Library/src/usbh_core.h | 194 + .../STM32_USB_Host_Library/src/usbh_ctlreq.c | 1003 + .../STM32_USB_Host_Library/src/usbh_ctlreq.h | 141 + .../lib/STM32_USB_Host_Library/src/usbh_def.h | 500 + .../STM32_USB_Host_Library/src/usbh_ioreq.c | 350 + .../STM32_USB_Host_Library/src/usbh_ioreq.h | 160 + .../lib/STM32_USB_Host_Library/src/usbh_msc.c | 858 + .../lib/STM32_USB_Host_Library/src/usbh_msc.h | 216 + .../STM32_USB_Host_Library/src/usbh_msc_bot.c | 700 + .../STM32_USB_Host_Library/src/usbh_msc_bot.h | 232 + .../src/usbh_msc_scsi.c | 466 + .../src/usbh_msc_scsi.h | 218 + .../STM32_USB_Host_Library/src/usbh_pipes.c | 188 + .../STM32_USB_Host_Library/src/usbh_pipes.h | 123 + Marlin/lib/fat_fs/00history.txt | 330 + Marlin/lib/fat_fs/00readme.txt | 21 + Marlin/lib/fat_fs/library.json | 16 + Marlin/lib/fat_fs/src/diskio.c | 171 + Marlin/lib/fat_fs/src/diskio.h | 79 + Marlin/lib/fat_fs/src/fattime.h | 7 + Marlin/lib/fat_fs/src/ff.c | 6672 +++++++ Marlin/lib/fat_fs/src/ff.h | 406 + Marlin/lib/fat_fs/src/ff_gen_drv.c | 130 + Marlin/lib/fat_fs/src/ff_gen_drv.h | 86 + Marlin/lib/fat_fs/src/ffconf.h | 292 + Marlin/lib/fat_fs/src/ffsystem.c | 170 + Marlin/lib/fat_fs/src/ffunicode.c | 15597 ++++++++++++++++ Marlin/lib/fat_fs/src/integer.h | 46 + Marlin/lib/fat_fs/src/option/ccsbcs.c | 541 + Marlin/lib/fat_fs/src/option/syncobj.c | 115 + Marlin/lib/rtt/library.json | 16 + Marlin/lib/rtt/src/SEGGER_RTT.c | 2010 ++ Marlin/lib/rtt/src/SEGGER_RTT.h | 326 + Marlin/lib/rtt/src/SEGGER_RTT_Conf.h | 389 + Marlin/lib/rtt/src/SEGGER_RTT_printf.c | 505 + Marlin/lib/rtt/src/log.h | 61 + Marlin/lib/rtt/src/log_hex.c | 65 + Marlin/lib/rtt/src/rtt.cpp | 47 + Marlin/lib/rtt/src/rtt.h | 59 + Marlin/src/core/boards.h | 1 + Marlin/src/pins/pins.h | 3 +- Marlin/src/pins/stm32f4/pins_LANGGO407.h | 747 + .../share/PlatformIO/boards/langgo407ve.json | 65 + ini/stm32f4.ini | 24 + 214 files changed, 109355 insertions(+), 16 deletions(-) create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_adc.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_can.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_crc.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_ctc.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dac.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dbg.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dci.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dma.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_enet.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_exmc.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_exti.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_fmc.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_fwdgt.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_gpio.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_i2c.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_ipa.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_iref.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_misc.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_pmu.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_rcu.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_rtc.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_sdio.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_spi.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_syscfg.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_timer.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_tli.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_trng.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_usart.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_wwdgt.h create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_adc.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_can.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_crc.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_ctc.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dac.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dbg.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dci.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dma.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_enet.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_exmc.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_exti.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_fmc.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_fwdgt.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_gpio.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_i2c.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_ipa.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_iref.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_misc.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_pmu.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_rcu.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_rtc.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_sdio.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_spi.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_syscfg.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_timer.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_tli.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_trng.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_usart.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_wwdgt.c create mode 100644 Marlin/lib/GD32F4xx_standard_peripheral/library.json create mode 100644 Marlin/lib/GD32F4xx_usb_library/library.json create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/cdc_acm_core.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/cdc_acm_core.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Include/audio_core.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Include/audio_out_itf.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Source/audio_core.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Source/audio_out_itf.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Include/dfu_core.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Include/dfu_mal.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Source/dfu_core.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Source/dfu_mal.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Include/custom_hid_core.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Include/standard_hid_core.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Source/custom_hid_core.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Source/standard_hid_core.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/iap/Include/usb_iap_core.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/iap/Source/usb_iap_core.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_bbb.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_core.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_data.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_mem.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_scsi.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_bbb.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_core.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_data.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_scsi.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/printer/Include/printer_core.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/device/class/printer/Source/printer_core.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/drv_usb_core.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/drv_usb_core.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/drv_usb_dev.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/drv_usb_dev.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/drv_usb_host.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/drv_usb_host.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/drv_usb_hw.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/drv_usb_regs.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/drv_usbd_int.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/drv_usbd_int.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/drv_usbh_int.c create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/drv_usbh_int.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/gd32_usb_helper.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/gd32f4xx.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/gdusb_cdc.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/gdusb_conf.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/gdusb_msc.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/gdusbd_conf.h create mode 100644 Marlin/lib/GD32F4xx_usb_library/src/gdusbd_core.h create mode 100644 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Marlin/lib/fat_fs/src/ffsystem.c create mode 100644 Marlin/lib/fat_fs/src/ffunicode.c create mode 100644 Marlin/lib/fat_fs/src/integer.h create mode 100644 Marlin/lib/fat_fs/src/option/ccsbcs.c create mode 100644 Marlin/lib/fat_fs/src/option/syncobj.c create mode 100644 Marlin/lib/rtt/library.json create mode 100644 Marlin/lib/rtt/src/SEGGER_RTT.c create mode 100644 Marlin/lib/rtt/src/SEGGER_RTT.h create mode 100644 Marlin/lib/rtt/src/SEGGER_RTT_Conf.h create mode 100644 Marlin/lib/rtt/src/SEGGER_RTT_printf.c create mode 100644 Marlin/lib/rtt/src/log.h create mode 100644 Marlin/lib/rtt/src/log_hex.c create mode 100644 Marlin/lib/rtt/src/rtt.cpp create mode 100644 Marlin/lib/rtt/src/rtt.h create mode 100644 Marlin/src/pins/stm32f4/pins_LANGGO407.h create mode 100644 buildroot/share/PlatformIO/boards/langgo407ve.json diff --git a/Marlin/Configuration.h b/Marlin/Configuration.h index 77a9176115..f74b5e4c4d 100644 --- a/Marlin/Configuration.h +++ b/Marlin/Configuration.h @@ -36,7 +36,8 @@ * Advanced settings can be found in Configuration_adv.h */ #define CONFIGURATION_H_VERSION 02010300 - +//#define ST32_SHIP +#define NEW_BOARD //=========================================================================== //============================= Getting Started ============================= //=========================================================================== @@ -68,7 +69,7 @@ // Choose the name from boards.h that matches your setup #ifndef MOTHERBOARD - #define MOTHERBOARD BOARD_RAMPS_14_EFB + #define MOTHERBOARD BOARD_LANGGO407 #endif // @section serial @@ -81,7 +82,7 @@ * * :[-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9] */ -#define SERIAL_PORT 0 +#define SERIAL_PORT -1 /** * Serial Port Baud Rate @@ -103,7 +104,7 @@ * Currently Ethernet (-2) is only supported on Teensy 4.1 boards. * :[-2, -1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9] */ -//#define SERIAL_PORT_2 -1 +#define SERIAL_PORT_2 1 //#define BAUDRATE_2 250000 // :[2400, 9600, 19200, 38400, 57600, 115200, 250000, 500000, 1000000] Enable to override BAUDRATE /** @@ -1446,7 +1447,7 @@ * Use the nozzle as the probe, as with a conductive * nozzle system or a piezo-electric smart effector. */ -//#define NOZZLE_AS_PROBE +#define NOZZLE_AS_PROBE /** * Z Servo Probe, such as an endstop switch on a rotating arm. @@ -1637,7 +1638,7 @@ * | [-] | * O-- FRONT --+ */ -#define NOZZLE_TO_PROBE_OFFSET { 10, 10, 0 } +#define NOZZLE_TO_PROBE_OFFSET { 0, 0, 0 } // Enable and set to use a specific tool for probing. Disable to allow any tool. #define PROBING_TOOL 0 @@ -1811,7 +1812,7 @@ // Invert the stepper direction. Change (or reverse the motor connector) if an axis goes the wrong way. #define INVERT_X_DIR false #define INVERT_Y_DIR true -#define INVERT_Z_DIR false +#define INVERT_Z_DIR true //#define INVERT_I_DIR false //#define INVERT_J_DIR false //#define INVERT_K_DIR false @@ -1881,8 +1882,8 @@ // @section geometry // The size of the printable area -#define X_BED_SIZE 200 -#define Y_BED_SIZE 200 +#define X_BED_SIZE 230 +#define Y_BED_SIZE 230 // Travel limits (linear=mm, rotational=°) after homing, corresponding to endstop positions. #define X_MIN_POS 0 @@ -1890,7 +1891,7 @@ #define Z_MIN_POS 0 #define X_MAX_POS X_BED_SIZE #define Y_MAX_POS Y_BED_SIZE -#define Z_MAX_POS 200 +#define Z_MAX_POS 260 //#define I_MIN_POS 0 //#define I_MAX_POS 50 //#define J_MIN_POS 0 @@ -2339,7 +2340,7 @@ * - Allows Z homing only when XY positions are known and trusted. * - If stepper drivers sleep, XY homing may be required again before Z homing. */ -//#define Z_SAFE_HOMING +#define Z_SAFE_HOMING #if ENABLED(Z_SAFE_HOMING) #define Z_SAFE_HOMING_X_POINT X_CENTER // (mm) X point for Z homing @@ -2429,13 +2430,13 @@ * M501 - Read settings from EEPROM. (i.e., Throw away unsaved changes) * M502 - Revert settings to "factory" defaults. (Follow with M500 to init the EEPROM.) */ -//#define EEPROM_SETTINGS // Persistent storage with M500 and M501 +#define EEPROM_SETTINGS // Persistent storage with M500 and M501 //#define DISABLE_M503 // Saves ~2700 bytes of flash. Disable for release! #define EEPROM_CHITCHAT // Give feedback on EEPROM commands. Disable to save flash. #define EEPROM_BOOT_SILENT // Keep M503 quiet and only give errors during first load #if ENABLED(EEPROM_SETTINGS) - //#define EEPROM_AUTO_INIT // Init EEPROM automatically on any errors. - //#define EEPROM_INIT_NOW // Init EEPROM on first boot after a new build. + #define EEPROM_AUTO_INIT // Init EEPROM automatically on any errors. + #define EEPROM_INIT_NOW // Init EEPROM on first boot after a new build. #endif // @section host @@ -2674,7 +2675,7 @@ * SD Card support is disabled by default. If your controller has an SD slot, * you must uncomment the following option or it won't work. */ -//#define SDSUPPORT +#define SDSUPPORT /** * SD CARD: ENABLE CRC diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_adc.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_adc.h new file mode 100644 index 0000000000..3d61139452 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_adc.h @@ -0,0 +1,515 @@ +/*! + \file gd32f4xx_adc.h + \brief definitions for the ADC + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_ADC_H +#define GD32F4XX_ADC_H + +#include "gd32f4xx.h" + +/* ADC definitions */ +#define ADC0 ADC_BASE +#define ADC1 (ADC_BASE + 0x100U) +#define ADC2 (ADC_BASE + 0x200U) + +/* registers definitions */ +#define ADC_STAT(adcx) REG32((adcx) + 0x00U) /*!< ADC status register */ +#define ADC_CTL0(adcx) REG32((adcx) + 0x04U) /*!< ADC control register 0 */ +#define ADC_CTL1(adcx) REG32((adcx) + 0x08U) /*!< ADC control register 1 */ +#define ADC_SAMPT0(adcx) REG32((adcx) + 0x0CU) /*!< ADC sampling time register 0 */ +#define ADC_SAMPT1(adcx) REG32((adcx) + 0x10U) /*!< ADC sampling time register 1 */ +#define ADC_IOFF0(adcx) REG32((adcx) + 0x14U) /*!< ADC inserted channel data offset register 0 */ +#define ADC_IOFF1(adcx) REG32((adcx) + 0x18U) /*!< ADC inserted channel data offset register 1 */ +#define ADC_IOFF2(adcx) REG32((adcx) + 0x1CU) /*!< ADC inserted channel data offset register 2 */ +#define ADC_IOFF3(adcx) REG32((adcx) + 0x20U) /*!< ADC inserted channel data offset register 3 */ +#define ADC_WDHT(adcx) REG32((adcx) + 0x24U) /*!< ADC watchdog high threshold register */ +#define ADC_WDLT(adcx) REG32((adcx) + 0x28U) /*!< ADC watchdog low threshold register */ +#define ADC_RSQ0(adcx) REG32((adcx) + 0x2CU) /*!< ADC regular sequence register 0 */ +#define ADC_RSQ1(adcx) REG32((adcx) + 0x30U) /*!< ADC regular sequence register 1 */ +#define ADC_RSQ2(adcx) REG32((adcx) + 0x34U) /*!< ADC regular sequence register 2 */ +#define ADC_ISQ(adcx) REG32((adcx) + 0x38U) /*!< ADC inserted sequence register */ +#define ADC_IDATA0(adcx) REG32((adcx) + 0x3CU) /*!< ADC inserted data register 0 */ +#define ADC_IDATA1(adcx) REG32((adcx) + 0x40U) /*!< ADC inserted data register 1 */ +#define ADC_IDATA2(adcx) REG32((adcx) + 0x44U) /*!< ADC inserted data register 2 */ +#define ADC_IDATA3(adcx) REG32((adcx) + 0x48U) /*!< ADC inserted data register 3 */ +#define ADC_RDATA(adcx) REG32((adcx) + 0x4CU) /*!< ADC regular data register */ +#define ADC_OVSAMPCTL(adcx) REG32((adcx) + 0x80U) /*!< ADC oversampling control register */ +#define ADC_SSTAT REG32((ADC_BASE) + 0x300U) /*!< ADC summary status register */ +#define ADC_SYNCCTL REG32((ADC_BASE) + 0x304U) /*!< ADC synchronization control register */ +#define ADC_SYNCDATA REG32((ADC_BASE) + 0x308U) /*!< ADC synchronization regular data register */ + +/* bits definitions */ +/* ADC_STAT */ +#define ADC_STAT_WDE BIT(0) /*!< analog watchdog event flag */ +#define ADC_STAT_EOC BIT(1) /*!< end of conversion */ +#define ADC_STAT_EOIC BIT(2) /*!< inserted channel end of conversion */ +#define ADC_STAT_STIC BIT(3) /*!< inserted channel start flag */ +#define ADC_STAT_STRC BIT(4) /*!< regular channel start flag */ +#define ADC_STAT_ROVF BIT(5) /*!< regular data register overflow */ + +/* ADC_CTL0 */ +#define ADC_CTL0_WDCHSEL BITS(0,4) /*!< analog watchdog channel select bits */ +#define ADC_CTL0_EOCIE BIT(5) /*!< interrupt enable for EOC */ +#define ADC_CTL0_WDEIE BIT(6) /*!< analog watchdog interrupt enable */ +#define ADC_CTL0_EOICIE BIT(7) /*!< interrupt enable for inserted channels */ +#define ADC_CTL0_SM BIT(8) /*!< scan mode */ +#define ADC_CTL0_WDSC BIT(9) /*!< when in scan mode, analog watchdog is effective on a single channel */ +#define ADC_CTL0_ICA BIT(10) /*!< automatic inserted group conversion */ +#define ADC_CTL0_DISRC BIT(11) /*!< discontinuous mode on regular channels */ +#define ADC_CTL0_DISIC BIT(12) /*!< discontinuous mode on inserted channels */ +#define ADC_CTL0_DISNUM BITS(13,15) /*!< discontinuous mode channel count */ +#define ADC_CTL0_IWDEN BIT(22) /*!< analog watchdog enable on inserted channels */ +#define ADC_CTL0_RWDEN BIT(23) /*!< analog watchdog enable on regular channels */ +#define ADC_CTL0_DRES BITS(24,25) /*!< ADC data resolution */ +#define ADC_CTL0_ROVFIE BIT(26) /*!< interrupt enable for ROVF */ + +/* ADC_CTL1 */ +#define ADC_CTL1_ADCON BIT(0) /*!< ADC converter on */ +#define ADC_CTL1_CTN BIT(1) /*!< continuous conversion */ +#define ADC_CTL1_CLB BIT(2) /*!< ADC calibration */ +#define ADC_CTL1_RSTCLB BIT(3) /*!< reset calibration */ +#define ADC_CTL1_DMA BIT(8) /*!< direct memory access mode */ +#define ADC_CTL1_DDM BIT(9) /*!< DMA disable mode */ +#define ADC_CTL1_EOCM BIT(10) /*!< end of conversion mode */ +#define ADC_CTL1_DAL BIT(11) /*!< data alignment */ +#define ADC_CTL1_ETSIC BITS(16,19) /*!< external event select for inserted group */ +#define ADC_CTL1_ETMIC BITS(20,21) /*!< external trigger conversion mode for inserted channels */ +#define ADC_CTL1_SWICST BIT(22) /*!< start conversion of inserted channels */ +#define ADC_CTL1_ETSRC BITS(24,27) /*!< external event select for regular group */ +#define ADC_CTL1_ETMRC BITS(28,29) /*!< external trigger conversion mode for regular channels */ +#define ADC_CTL1_SWRCST BIT(30) /*!< start conversion of regular channels */ + +/* ADC_SAMPTx x=0..1 */ +#define ADC_SAMPTX_SPTN BITS(0,2) /*!< channel x sample time selection */ + +/* ADC_IOFFx x=0..3 */ +#define ADC_IOFFX_IOFF BITS(0,11) /*!< data offset for inserted channel x */ + +/* ADC_WDHT */ +#define ADC_WDHT_WDHT BITS(0,11) /*!< analog watchdog high threshold */ + +/* ADC_WDLT */ +#define ADC_WDLT_WDLT BITS(0,11) /*!< analog watchdog low threshold */ + +/* ADC_RSQx */ +#define ADC_RSQX_RSQN BITS(0,4) /*!< x conversion in regular sequence */ +#define ADC_RSQ0_RL BITS(20,23) /*!< regular channel sequence length */ + +/* ADC_ISQ */ +#define ADC_ISQ_ISQN BITS(0,4) /*!< x conversion in regular sequence */ +#define ADC_ISQ_IL BITS(20,21) /*!< inserted sequence length */ + +/* ADC_IDATAx x=0..3*/ +#define ADC_IDATAX_IDATAN BITS(0,15) /*!< inserted data x */ + +/* ADC_RDATA */ +#define ADC_RDATA_RDATA BITS(0,15) /*!< regular data */ + +/* ADC_OVSAMPCTL */ +#define ADC_OVSAMPCTL_OVSEN BIT(0) /*!< oversampling enable */ +#define ADC_OVSAMPCTL_OVSR BITS(2,4) /*!< oversampling ratio */ +#define ADC_OVSAMPCTL_OVSS BITS(5,8) /*!< oversampling shift */ +#define ADC_OVSAMPCTL_TOVS BIT(9) /*!< triggered oversampling */ + +/* ADC_SSTAT */ +#define ADC_SSTAT_WDE0 BIT(0) /*!< the mirror image of the WDE bit of ADC0 */ +#define ADC_SSTAT_EOC0 BIT(1) /*!< the mirror image of the EOC bit of ADC0 */ +#define ADC_SSTAT_EOIC0 BIT(2) /*!< the mirror image of the EOIC bit of ADC0 */ +#define ADC_SSTAT_STIC0 BIT(3) /*!< the mirror image of the STIC bit of ADC0 */ +#define ADC_SSTAT_STRC0 BIT(4) /*!< the mirror image of the STRC bit of ADC0 */ +#define ADC_SSTAT_ROVF0 BIT(5) /*!< the mirror image of the ROVF bit of ADC0 */ +#define ADC_SSTAT_WDE1 BIT(8) /*!< the mirror image of the WDE bit of ADC1 */ +#define ADC_SSTAT_EOC1 BIT(9) /*!< the mirror image of the EOC bit of ADC1 */ +#define ADC_SSTAT_EOIC1 BIT(10) /*!< the mirror image of the EOIC bit of ADC1 */ +#define ADC_SSTAT_STIC1 BIT(11) /*!< the mirror image of the STIC bit of ADC1 */ +#define ADC_SSTAT_STRC1 BIT(12) /*!< the mirror image of the STRC bit of ADC1 */ +#define ADC_SSTAT_ROVF1 BIT(13) /*!< the mirror image of the ROVF bit of ADC1 */ +#define ADC_SSTAT_WDE2 BIT(16) /*!< the mirror image of the WDE bit of ADC2 */ +#define ADC_SSTAT_EOC2 BIT(17) /*!< the mirror image of the EOC bit of ADC2 */ +#define ADC_SSTAT_EOIC2 BIT(18) /*!< the mirror image of the EOIC bit of ADC2 */ +#define ADC_SSTAT_STIC2 BIT(19) /*!< the mirror image of the STIC bit of ADC2 */ +#define ADC_SSTAT_STRC2 BIT(20) /*!< the mirror image of the STRC bit of ADC2 */ +#define ADC_SSTAT_ROVF2 BIT(21) /*!< the mirror image of the ROVF bit of ADC2 */ + +/* ADC_SYNCCTL */ +#define ADC_SYNCCTL_SYNCM BITS(0,4) /*!< ADC synchronization mode */ +#define ADC_SYNCCTL_SYNCDLY BITS(8,11) /*!< ADC synchronization delay */ +#define ADC_SYNCCTL_SYNCDDM BIT(13) /*!< ADC synchronization DMA disable mode */ +#define ADC_SYNCCTL_SYNCDMA BITS(14,15) /*!< ADC synchronization DMA mode selection */ +#define ADC_SYNCCTL_ADCCK BITS(16,18) /*!< ADC clock */ +#define ADC_SYNCCTL_VBATEN BIT(22) /*!< channel 18 (1/4 voltate of external battery) enable of ADC0 */ +#define ADC_SYNCCTL_TSVREN BIT(23) /*!< channel 16 (temperature sensor) and 17 (internal reference voltage) enable of ADC0 */ + +/* ADC_SYNCDATA */ +#define ADC_SYNCDATA_SYNCDATA0 BITS(0,15) /*!< regular data1 in ADC synchronization mode */ +#define ADC_SYNCDATA_SYNCDATA1 BITS(16,31) /*!< regular data2 in ADC synchronization mode */ + +/* constants definitions */ +/* ADC status flag */ +#define ADC_FLAG_WDE ADC_STAT_WDE /*!< analog watchdog event flag */ +#define ADC_FLAG_EOC ADC_STAT_EOC /*!< end of conversion */ +#define ADC_FLAG_EOIC ADC_STAT_EOIC /*!< inserted channel end of conversion */ +#define ADC_FLAG_STIC ADC_STAT_STIC /*!< inserted channel start flag */ +#define ADC_FLAG_STRC ADC_STAT_STRC /*!< regular channel start flag */ +#define ADC_FLAG_ROVF ADC_STAT_ROVF /*!< regular data register overflow */ + +/* adc_ctl0 register value */ +#define CTL0_DISNUM(regval) (BITS(13,15) & ((uint32_t)(regval) << 13)) /*!< write value to ADC_CTL0_DISNUM bit field */ + +/* ADC special function definitions */ +#define ADC_SCAN_MODE ADC_CTL0_SM /*!< scan mode */ +#define ADC_INSERTED_CHANNEL_AUTO ADC_CTL0_ICA /*!< inserted channel group convert automatically */ +#define ADC_CONTINUOUS_MODE ADC_CTL1_CTN /*!< continuous mode */ + +/* temperature sensor channel, internal reference voltage channel, VBAT channel */ +#define ADC_VBAT_CHANNEL_SWITCH ADC_SYNCCTL_VBATEN /*!< VBAT channel */ +#define ADC_TEMP_VREF_CHANNEL_SWITCH ADC_SYNCCTL_TSVREN /*!< Vref and Vtemp channel */ + +/* ADC synchronization mode */ +#define SYNCCTL_SYNCM(regval) (BITS(0,4) & ((uint32_t)(regval))) /*!< write value to ADC_CTL0_SYNCM bit field */ +#define ADC_SYNC_MODE_INDEPENDENT SYNCCTL_SYNCM(0) /*!< ADC synchronization mode disabled.All the ADCs work independently */ +#define ADC_DAUL_REGULAL_PARALLEL_INSERTED_PARALLEL SYNCCTL_SYNCM(1) /*!< ADC0 and ADC1 work in combined regular parallel & inserted parallel mode. ADC2 works independently */ +#define ADC_DAUL_REGULAL_PARALLEL_INSERTED_ROTATION SYNCCTL_SYNCM(2) /*!< ADC0 and ADC1 work in combined regular parallel & trigger rotation mode. ADC2 works independently */ +#define ADC_DAUL_INSERTED_PARALLEL SYNCCTL_SYNCM(5) /*!< ADC0 and ADC1 work in inserted parallel mode. ADC2 works independently */ +#define ADC_DAUL_REGULAL_PARALLEL SYNCCTL_SYNCM(6) /*!< ADC0 and ADC1 work in regular parallel mode. ADC2 works independently */ +#define ADC_DAUL_REGULAL_FOLLOW_UP SYNCCTL_SYNCM(7) /*!< ADC0 and ADC1 work in follow-up mode. ADC2 works independently */ +#define ADC_DAUL_INSERTED_TRRIGGER_ROTATION SYNCCTL_SYNCM(9) /*!< ADC0 and ADC1 work in trigger rotation mode. ADC2 works independently */ +#define ADC_ALL_REGULAL_PARALLEL_INSERTED_PARALLEL SYNCCTL_SYNCM(17) /*!< all ADCs work in combined regular parallel & inserted parallel mode */ +#define ADC_ALL_REGULAL_PARALLEL_INSERTED_ROTATION SYNCCTL_SYNCM(18) /*!< all ADCs work in combined regular parallel & trigger rotation mode */ +#define ADC_ALL_INSERTED_PARALLEL SYNCCTL_SYNCM(21) /*!< all ADCs work in inserted parallel mode */ +#define ADC_ALL_REGULAL_PARALLEL SYNCCTL_SYNCM(22) /*!< all ADCs work in regular parallel mode */ +#define ADC_ALL_REGULAL_FOLLOW_UP SYNCCTL_SYNCM(23) /*!< all ADCs work in follow-up mode */ +#define ADC_ALL_INSERTED_TRRIGGER_ROTATION SYNCCTL_SYNCM(25) /*!< all ADCs work in trigger rotation mode */ + +/* ADC data alignment */ +#define ADC_DATAALIGN_RIGHT ((uint32_t)0x00000000U) /*!< LSB alignment */ +#define ADC_DATAALIGN_LEFT ADC_CTL1_DAL /*!< MSB alignment */ + +/* external trigger mode for regular and inserted channel */ +#define EXTERNAL_TRIGGER_DISABLE ((uint32_t)0x00000000U) /*!< external trigger disable */ +#define EXTERNAL_TRIGGER_RISING ((uint32_t)0x00000001U) /*!< rising edge of external trigger */ +#define EXTERNAL_TRIGGER_FALLING ((uint32_t)0x00000002U) /*!< falling edge of external trigger */ +#define EXTERNAL_TRIGGER_RISING_FALLING ((uint32_t)0x00000003U) /*!< rising and falling edge of external trigger */ + +/* ADC external trigger select for regular channel */ +#define CTL1_ETSRC(regval) (BITS(24,27) & ((uint32_t)(regval) << 24)) +#define ADC_EXTTRIG_REGULAR_T0_CH0 CTL1_ETSRC(0) /*!< timer 0 CC0 event select */ +#define ADC_EXTTRIG_REGULAR_T0_CH1 CTL1_ETSRC(1) /*!< timer 0 CC1 event select */ +#define ADC_EXTTRIG_REGULAR_T0_CH2 CTL1_ETSRC(2) /*!< timer 0 CC2 event select */ +#define ADC_EXTTRIG_REGULAR_T1_CH1 CTL1_ETSRC(3) /*!< timer 1 CC1 event select */ +#define ADC_EXTTRIG_REGULAR_T1_CH2 CTL1_ETSRC(4) /*!< timer 1 CC2 event select */ +#define ADC_EXTTRIG_REGULAR_T1_CH3 CTL1_ETSRC(5) /*!< timer 1 CC3 event select */ +#define ADC_EXTTRIG_REGULAR_T1_TRGO CTL1_ETSRC(6) /*!< timer 1 TRGO event select */ +#define ADC_EXTTRIG_REGULAR_T2_CH0 CTL1_ETSRC(7) /*!< timer 2 CC0 event select */ +#define ADC_EXTTRIG_REGULAR_T2_TRGO CTL1_ETSRC(8) /*!< timer 2 TRGO event select */ +#define ADC_EXTTRIG_REGULAR_T3_CH3 CTL1_ETSRC(9) /*!< timer 3 CC3 event select */ +#define ADC_EXTTRIG_REGULAR_T4_CH0 CTL1_ETSRC(10) /*!< timer 4 CC0 event select */ +#define ADC_EXTTRIG_REGULAR_T4_CH1 CTL1_ETSRC(11) /*!< timer 4 CC1 event select */ +#define ADC_EXTTRIG_REGULAR_T4_CH2 CTL1_ETSRC(12) /*!< timer 4 CC2 event select */ +#define ADC_EXTTRIG_REGULAR_T7_CH0 CTL1_ETSRC(13) /*!< timer 7 CC0 event select */ +#define ADC_EXTTRIG_REGULAR_T7_TRGO CTL1_ETSRC(14) /*!< timer 7 TRGO event select */ +#define ADC_EXTTRIG_REGULAR_EXTI_11 CTL1_ETSRC(15) /*!< extiline 11 select */ + +/* ADC external trigger select for inserted channel */ +#define CTL1_ETSIC(regval) (BITS(16,19) & ((uint32_t)(regval) << 16)) +#define ADC_EXTTRIG_INSERTED_T0_CH3 CTL1_ETSIC(0) /*!< timer0 capture compare 3 */ +#define ADC_EXTTRIG_INSERTED_T0_TRGO CTL1_ETSIC(1) /*!< timer0 TRGO event */ +#define ADC_EXTTRIG_INSERTED_T1_CH0 CTL1_ETSIC(2) /*!< timer1 capture compare 0 */ +#define ADC_EXTTRIG_INSERTED_T1_TRGO CTL1_ETSIC(3) /*!< timer1 TRGO event */ +#define ADC_EXTTRIG_INSERTED_T2_CH1 CTL1_ETSIC(4) /*!< timer2 capture compare 1 */ +#define ADC_EXTTRIG_INSERTED_T2_CH3 CTL1_ETSIC(5) /*!< timer2 capture compare 3 */ +#define ADC_EXTTRIG_INSERTED_T3_CH0 CTL1_ETSIC(6) /*!< timer3 capture compare 0 */ +#define ADC_EXTTRIG_INSERTED_T3_CH1 CTL1_ETSIC(7) /*!< timer3 capture compare 1 */ +#define ADC_EXTTRIG_INSERTED_T3_CH2 CTL1_ETSIC(8) /*!< timer3 capture compare 2 */ +#define ADC_EXTTRIG_INSERTED_T3_TRGO CTL1_ETSIC(9) /*!< timer3 capture compare TRGO */ +#define ADC_EXTTRIG_INSERTED_T4_CH3 CTL1_ETSIC(10) /*!< timer4 capture compare 3 */ +#define ADC_EXTTRIG_INSERTED_T4_TRGO CTL1_ETSIC(11) /*!< timer4 capture compare TRGO */ +#define ADC_EXTTRIG_INSERTED_T7_CH1 CTL1_ETSIC(12) /*!< timer7 capture compare 1 */ +#define ADC_EXTTRIG_INSERTED_T7_CH2 CTL1_ETSIC(13) /*!< timer7 capture compare 2 */ +#define ADC_EXTTRIG_INSERTED_T7_CH3 CTL1_ETSIC(14) /*!< timer7 capture compare 3 */ +#define ADC_EXTTRIG_INSERTED_EXTI_15 CTL1_ETSIC(15) /*!< external interrupt line 15 */ + +/* ADC channel sample time */ +#define SAMPTX_SPT(regval) (BITS(0,2) & ((uint32_t)(regval) << 0)) /*!< write value to ADC_SAMPTX_SPT bit field */ +#define ADC_SAMPLETIME_3 SAMPTX_SPT(0) /*!< 3 sampling cycles */ +#define ADC_SAMPLETIME_15 SAMPTX_SPT(1) /*!< 15 sampling cycles */ +#define ADC_SAMPLETIME_28 SAMPTX_SPT(2) /*!< 28 sampling cycles */ +#define ADC_SAMPLETIME_56 SAMPTX_SPT(3) /*!< 56 sampling cycles */ +#define ADC_SAMPLETIME_84 SAMPTX_SPT(4) /*!< 84 sampling cycles */ +#define ADC_SAMPLETIME_112 SAMPTX_SPT(5) /*!< 112 sampling cycles */ +#define ADC_SAMPLETIME_144 SAMPTX_SPT(6) /*!< 144 sampling cycles */ +#define ADC_SAMPLETIME_480 SAMPTX_SPT(7) /*!< 480 sampling cycles */ + +/* adc_ioffx register value */ +#define IOFFX_IOFF(regval) (BITS(0,11) & ((uint32_t)(regval) << 0)) /*!< write value to ADC_IOFFX_IOFF bit field */ + +/* adc_wdht register value */ +#define WDHT_WDHT(regval) (BITS(0,11) & ((uint32_t)(regval) << 0)) /*!< write value to ADC_WDHT_WDHT bit field */ + +/* adc_wdlt register value */ +#define WDLT_WDLT(regval) (BITS(0,11) & ((uint32_t)(regval) << 0)) /*!< write value to ADC_WDLT_WDLT bit field */ + +/* adc_rsqx register value */ +#define RSQ0_RL(regval) (BITS(20,23) & ((uint32_t)(regval) << 20)) /*!< write value to ADC_RSQ0_RL bit field */ + +/* adc_isq register value */ +#define ISQ_IL(regval) (BITS(20,21) & ((uint32_t)(regval) << 20)) /*!< write value to ADC_ISQ_IL bit field */ + +/* adc_ovsampctl register value */ +/* ADC resolution */ +#define CTL0_DRES(regval) (BITS(24,25) & ((uint32_t)(regval) << 24)) /*!< write value to ADC_CTL0_DRES bit field */ +#define ADC_RESOLUTION_12B CTL0_DRES(0) /*!< 12-bit ADC resolution */ +#define ADC_RESOLUTION_10B CTL0_DRES(1) /*!< 10-bit ADC resolution */ +#define ADC_RESOLUTION_8B CTL0_DRES(2) /*!< 8-bit ADC resolution */ +#define ADC_RESOLUTION_6B CTL0_DRES(3) /*!< 6-bit ADC resolution */ + +/* oversampling shift */ +#define OVSAMPCTL_OVSS(regval) (BITS(5,8) & ((uint32_t)(regval) << 5)) /*!< write value to ADC_OVSAMPCTL_OVSS bit field */ +#define ADC_OVERSAMPLING_SHIFT_NONE OVSAMPCTL_OVSS(0) /*!< no oversampling shift */ +#define ADC_OVERSAMPLING_SHIFT_1B OVSAMPCTL_OVSS(1) /*!< 1-bit oversampling shift */ +#define ADC_OVERSAMPLING_SHIFT_2B OVSAMPCTL_OVSS(2) /*!< 2-bit oversampling shift */ +#define ADC_OVERSAMPLING_SHIFT_3B OVSAMPCTL_OVSS(3) /*!< 3-bit oversampling shift */ +#define ADC_OVERSAMPLING_SHIFT_4B OVSAMPCTL_OVSS(4) /*!< 4-bit oversampling shift */ +#define ADC_OVERSAMPLING_SHIFT_5B OVSAMPCTL_OVSS(5) /*!< 5-bit oversampling shift */ +#define ADC_OVERSAMPLING_SHIFT_6B OVSAMPCTL_OVSS(6) /*!< 6-bit oversampling shift */ +#define ADC_OVERSAMPLING_SHIFT_7B OVSAMPCTL_OVSS(7) /*!< 7-bit oversampling shift */ +#define ADC_OVERSAMPLING_SHIFT_8B OVSAMPCTL_OVSS(8) /*!< 8-bit oversampling shift */ + +/* oversampling ratio */ +#define OVSAMPCTL_OVSR(regval) (BITS(2,4) & ((uint32_t)(regval) << 2)) /*!< write value to ADC_OVSAMPCTL_OVSR bit field */ +#define ADC_OVERSAMPLING_RATIO_MUL2 OVSAMPCTL_OVSR(0) /*!< oversampling ratio multiple 2 */ +#define ADC_OVERSAMPLING_RATIO_MUL4 OVSAMPCTL_OVSR(1) /*!< oversampling ratio multiple 4 */ +#define ADC_OVERSAMPLING_RATIO_MUL8 OVSAMPCTL_OVSR(2) /*!< oversampling ratio multiple 8 */ +#define ADC_OVERSAMPLING_RATIO_MUL16 OVSAMPCTL_OVSR(3) /*!< oversampling ratio multiple 16 */ +#define ADC_OVERSAMPLING_RATIO_MUL32 OVSAMPCTL_OVSR(4) /*!< oversampling ratio multiple 32 */ +#define ADC_OVERSAMPLING_RATIO_MUL64 OVSAMPCTL_OVSR(5) /*!< oversampling ratio multiple 64 */ +#define ADC_OVERSAMPLING_RATIO_MUL128 OVSAMPCTL_OVSR(6) /*!< oversampling ratio multiple 128 */ +#define ADC_OVERSAMPLING_RATIO_MUL256 OVSAMPCTL_OVSR(7) /*!< oversampling ratio multiple 256 */ + +/* triggered Oversampling */ +#define ADC_OVERSAMPLING_ALL_CONVERT ((uint32_t)0x00000000U) /*!< all oversampled conversions for a channel are done consecutively after a trigger */ +#define ADC_OVERSAMPLING_ONE_CONVERT ADC_OVSAMPCTL_TOVS /*!< each oversampled conversion for a channel needs a trigger */ + +/* ADC channel group definitions */ +#define ADC_REGULAR_CHANNEL ((uint8_t)0x01U) /*!< adc regular channel group */ +#define ADC_INSERTED_CHANNEL ((uint8_t)0x02U) /*!< adc inserted channel group */ +#define ADC_REGULAR_INSERTED_CHANNEL ((uint8_t)0x03U) /*!< both regular and inserted channel group */ +#define ADC_CHANNEL_DISCON_DISABLE ((uint8_t)0x04U) /*!< disable discontinuous mode of regular & inserted channel */ + +/* ADC inserted channel definitions */ +#define ADC_INSERTED_CHANNEL_0 ((uint8_t)0x00U) /*!< adc inserted channel 0 */ +#define ADC_INSERTED_CHANNEL_1 ((uint8_t)0x01U) /*!< adc inserted channel 1 */ +#define ADC_INSERTED_CHANNEL_2 ((uint8_t)0x02U) /*!< adc inserted channel 2 */ +#define ADC_INSERTED_CHANNEL_3 ((uint8_t)0x03U) /*!< adc inserted channel 3 */ + +/* ADC channel definitions */ +#define ADC_CHANNEL_0 ((uint8_t)0x00U) /*!< ADC channel 0 */ +#define ADC_CHANNEL_1 ((uint8_t)0x01U) /*!< ADC channel 1 */ +#define ADC_CHANNEL_2 ((uint8_t)0x02U) /*!< ADC channel 2 */ +#define ADC_CHANNEL_3 ((uint8_t)0x03U) /*!< ADC channel 3 */ +#define ADC_CHANNEL_4 ((uint8_t)0x04U) /*!< ADC channel 4 */ +#define ADC_CHANNEL_5 ((uint8_t)0x05U) /*!< ADC channel 5 */ +#define ADC_CHANNEL_6 ((uint8_t)0x06U) /*!< ADC channel 6 */ +#define ADC_CHANNEL_7 ((uint8_t)0x07U) /*!< ADC channel 7 */ +#define ADC_CHANNEL_8 ((uint8_t)0x08U) /*!< ADC channel 8 */ +#define ADC_CHANNEL_9 ((uint8_t)0x09U) /*!< ADC channel 9 */ +#define ADC_CHANNEL_10 ((uint8_t)0x0AU) /*!< ADC channel 10 */ +#define ADC_CHANNEL_11 ((uint8_t)0x0BU) /*!< ADC channel 11 */ +#define ADC_CHANNEL_12 ((uint8_t)0x0CU) /*!< ADC channel 12 */ +#define ADC_CHANNEL_13 ((uint8_t)0x0DU) /*!< ADC channel 13 */ +#define ADC_CHANNEL_14 ((uint8_t)0x0EU) /*!< ADC channel 14 */ +#define ADC_CHANNEL_15 ((uint8_t)0x0FU) /*!< ADC channel 15 */ +#define ADC_CHANNEL_16 ((uint8_t)0x10U) /*!< ADC channel 16 */ +#define ADC_CHANNEL_17 ((uint8_t)0x11U) /*!< ADC channel 17 */ +#define ADC_CHANNEL_18 ((uint8_t)0x12U) /*!< ADC channel 18 */ + +/* ADC interrupt flag */ +#define ADC_INT_WDE ADC_CTL0_WDEIE /*!< analog watchdog event interrupt */ +#define ADC_INT_EOC ADC_CTL0_EOCIE /*!< end of group conversion interrupt */ +#define ADC_INT_EOIC ADC_CTL0_EOICIE /*!< end of inserted group conversion interrupt */ +#define ADC_INT_ROVF ADC_CTL0_ROVFIE /*!< regular data register overflow */ + +/* ADC interrupt flag */ +#define ADC_INT_FLAG_WDE ADC_STAT_WDE /*!< analog watchdog event interrupt */ +#define ADC_INT_FLAG_EOC ADC_STAT_EOC /*!< end of group conversion interrupt */ +#define ADC_INT_FLAG_EOIC ADC_STAT_EOIC /*!< end of inserted group conversion interrupt */ +#define ADC_INT_FLAG_ROVF ADC_STAT_ROVF /*!< regular data register overflow */ + +/* configure the ADC clock for all the ADCs */ +#define SYNCCTL_ADCCK(regval) (BITS(16,18) & ((uint32_t)(regval) << 16)) +#define ADC_ADCCK_PCLK2_DIV2 SYNCCTL_ADCCK(0) /*!< PCLK2 div2 */ +#define ADC_ADCCK_PCLK2_DIV4 SYNCCTL_ADCCK(1) /*!< PCLK2 div4 */ +#define ADC_ADCCK_PCLK2_DIV6 SYNCCTL_ADCCK(2) /*!< PCLK2 div6 */ +#define ADC_ADCCK_PCLK2_DIV8 SYNCCTL_ADCCK(3) /*!< PCLK2 div8 */ +#define ADC_ADCCK_HCLK_DIV5 SYNCCTL_ADCCK(4) /*!< HCLK div5 */ +#define ADC_ADCCK_HCLK_DIV6 SYNCCTL_ADCCK(5) /*!< HCLK div6 */ +#define ADC_ADCCK_HCLK_DIV10 SYNCCTL_ADCCK(6) /*!< HCLK div10 */ +#define ADC_ADCCK_HCLK_DIV20 SYNCCTL_ADCCK(7) /*!< HCLK div20 */ + +/* ADC synchronization delay */ +#define ADC_SYNC_DELAY_5CYCLE ((uint32_t)0x00000000U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 5 ADC clock cycles. */ +#define ADC_SYNC_DELAY_6CYCLE ((uint32_t)0x00000100U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 6 ADC clock cycles. */ +#define ADC_SYNC_DELAY_7CYCLE ((uint32_t)0x00000200U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 7 ADC clock cycles. */ +#define ADC_SYNC_DELAY_8CYCLE ((uint32_t)0x00000300U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 8 ADC clock cycles. */ +#define ADC_SYNC_DELAY_9CYCLE ((uint32_t)0x00000400U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 9 ADC clock cycles. */ +#define ADC_SYNC_DELAY_10CYCLE ((uint32_t)0x00000500U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 10 ADC clock cycles. */ +#define ADC_SYNC_DELAY_11CYCLE ((uint32_t)0x00000600U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 11 ADC clock cycles. */ +#define ADC_SYNC_DELAY_12CYCLE ((uint32_t)0x00000700U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 12 ADC clock cycles. */ +#define ADC_SYNC_DELAY_13CYCLE ((uint32_t)0x00000800U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 13 ADC clock cycles. */ +#define ADC_SYNC_DELAY_14CYCLE ((uint32_t)0x00000900U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 14 ADC clock cycles. */ +#define ADC_SYNC_DELAY_15CYCLE ((uint32_t)0x00000A00U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 15 ADC clock cycles. */ +#define ADC_SYNC_DELAY_16CYCLE ((uint32_t)0x00000B00U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 16 ADC clock cycles. */ +#define ADC_SYNC_DELAY_17CYCLE ((uint32_t)0x00000C00U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 17 ADC clock cycles. */ +#define ADC_SYNC_DELAY_18CYCLE ((uint32_t)0x00000D00U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 18 ADC clock cycles. */ +#define ADC_SYNC_DELAY_19CYCLE ((uint32_t)0x00000E00U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 19 ADC clock cycles. */ +#define ADC_SYNC_DELAY_20CYCLE ((uint32_t)0x00000F00U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 20 ADC clock cycles. */ + +/* ADC synchronization DMA mode selection */ +#define ADC_SYNC_DMA_DISABLE ((uint32_t)0x00000000U) /*!< ADC synchronization DMA disabled */ +#define ADC_SYNC_DMA_MODE0 ((uint32_t)0x00004000U) /*!< ADC synchronization DMA mode 0 */ +#define ADC_SYNC_DMA_MODE1 ((uint32_t)0x00008000U) /*!< ADC synchronization DMA mode 1 */ + +/* end of conversion mode */ +#define ADC_EOC_SET_SEQUENCE ((uint8_t)0x00U) /*!< only at the end of a sequence of regular conversions, the EOC bit is set */ +#define ADC_EOC_SET_CONVERSION ((uint8_t)0x01U) /*!< at the end of each regular conversion, the EOC bit is set */ + +/* function declarations */ +/* initialization config */ +/* reset ADC */ +void adc_deinit(void); +/* configure the ADC clock for all the ADCs */ +void adc_clock_config(uint32_t prescaler); +/* enable or disable ADC special function */ +void adc_special_function_config(uint32_t adc_periph , uint32_t function , ControlStatus newvalue); +/* configure ADC data alignment */ +void adc_data_alignment_config(uint32_t adc_periph , uint32_t data_alignment); +/* enable ADC interface */ +void adc_enable(uint32_t adc_periph); +/* disable ADC interface */ +void adc_disable(uint32_t adc_periph); +/* ADC calibration and reset calibration */ +void adc_calibration_enable(uint32_t adc_periph); +/* configure temperature sensor and internal reference voltage channel or VBAT channel function */ +void adc_channel_16_to_18(uint32_t function, ControlStatus newvalue); +/* configure ADC resolution */ +void adc_resolution_config(uint32_t adc_periph, uint32_t resolution); +/* configure ADC oversample mode */ +void adc_oversample_mode_config(uint32_t adc_periph, uint32_t mode, uint16_t shift, uint8_t ratio); +/* enable ADC oversample mode */ +void adc_oversample_mode_enable(uint32_t adc_periph); +/* disable ADC oversample mode */ +void adc_oversample_mode_disable(uint32_t adc_periph); + +/* DMA config */ +/* enable DMA request */ +void adc_dma_mode_enable(uint32_t adc_periph); +/* disable DMA request */ +void adc_dma_mode_disable(uint32_t adc_periph); +/* when DMA=1, the DMA engine issues a request at end of each regular conversion */ +void adc_dma_request_after_last_enable(uint32_t adc_periph); +/* the DMA engine is disabled after the end of transfer signal from DMA controller is detected */ +void adc_dma_request_after_last_disable(uint32_t adc_periph); + +/* regular group and inserted group config */ +/* configure ADC discontinuous mode */ +void adc_discontinuous_mode_config(uint32_t adc_periph , uint8_t adc_channel_group , uint8_t length); +/* configure the length of regular channel group or inserted channel group */ +void adc_channel_length_config(uint32_t adc_periph , uint8_t adc_channel_group , uint32_t length); +/* configure ADC regular channel */ +void adc_regular_channel_config(uint32_t adc_periph , uint8_t rank , uint8_t adc_channel , uint32_t sample_time); +/* configure ADC inserted channel */ +void adc_inserted_channel_config(uint32_t adc_periph , uint8_t rank , uint8_t adc_channel , uint32_t sample_time); +/* configure ADC inserted channel offset */ +void adc_inserted_channel_offset_config(uint32_t adc_periph , uint8_t inserted_channel , uint16_t offset); +/* configure ADC external trigger source */ +void adc_external_trigger_source_config(uint32_t adc_periph , uint8_t adc_channel_group , uint32_t external_trigger_source); +/* enable ADC external trigger */ +void adc_external_trigger_config(uint32_t adc_periph , uint8_t adc_channel_group , uint32_t trigger_mode); +/* enable ADC software trigger */ +void adc_software_trigger_enable(uint32_t adc_periph , uint8_t adc_channel_group); +/* configure end of conversion mode */ +void adc_end_of_conversion_config(uint32_t adc_periph , uint8_t end_selection); + +/* get channel data */ +/* read ADC regular group data register */ +uint16_t adc_regular_data_read(uint32_t adc_periph); +/* read ADC inserted group data register */ +uint16_t adc_inserted_data_read(uint32_t adc_periph , uint8_t inserted_channel); + +/* watchdog config */ +/* disable ADC analog watchdog single channel */ +void adc_watchdog_single_channel_disable(uint32_t adc_periph ); +/* enable ADC analog watchdog single channel */ +void adc_watchdog_single_channel_enable(uint32_t adc_periph , uint8_t adc_channel); +/* configure ADC analog watchdog group channel */ +void adc_watchdog_group_channel_enable(uint32_t adc_periph , uint8_t adc_channel_group); +/* disable ADC analog watchdog */ +void adc_watchdog_disable(uint32_t adc_periph , uint8_t adc_channel_group); +/* configure ADC analog watchdog threshold */ +void adc_watchdog_threshold_config(uint32_t adc_periph , uint16_t low_threshold , uint16_t high_threshold); + +/* interrupt & flag functions */ +/* get the ADC flag bits */ +FlagStatus adc_flag_get(uint32_t adc_periph , uint32_t adc_flag); +/* clear the ADC flag bits */ +void adc_flag_clear(uint32_t adc_periph , uint32_t adc_flag); +/* get the bit state of ADCx software start conversion */ +FlagStatus adc_regular_software_startconv_flag_get(uint32_t adc_periph); +/* get the bit state of ADCx software inserted channel start conversion */ +FlagStatus adc_inserted_software_startconv_flag_get(uint32_t adc_periph); +/* get the ADC interrupt bits */ +FlagStatus adc_interrupt_flag_get(uint32_t adc_periph , uint32_t adc_interrupt); +/* clear the ADC flag */ +void adc_interrupt_flag_clear(uint32_t adc_periph , uint32_t adc_interrupt); +/* enable ADC interrupt */ +void adc_interrupt_enable(uint32_t adc_periph , uint32_t adc_interrupt); +/* disable ADC interrupt */ +void adc_interrupt_disable(uint32_t adc_periph , uint32_t adc_interrupt); + +/* ADC synchronization */ +/* configure the ADC sync mode */ +void adc_sync_mode_config(uint32_t sync_mode); +/* configure the delay between 2 sampling phases in ADC sync modes */ +void adc_sync_delay_config(uint32_t sample_delay); +/* configure ADC sync DMA mode selection */ +void adc_sync_dma_config(uint32_t dma_mode ); +/* configure ADC sync DMA engine is disabled after the end of transfer signal from DMA controller is detected */ +void adc_sync_dma_request_after_last_enable(void); +/* configure ADC sync DMA engine issues requests according to the SYNCDMA bits */ +void adc_sync_dma_request_after_last_disable(void); +/* read ADC sync regular data register */ +uint32_t adc_sync_regular_data_read(void); + +#endif /* GD32F4XX_ADC_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_can.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_can.h new file mode 100644 index 0000000000..c42a1cbb27 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_can.h @@ -0,0 +1,754 @@ +/*! + \file gd32f4xx_can.h + \brief definitions for the CAN + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2019-11-27, V2.0.1, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + + +#ifndef GD32F4XX_CAN_H +#define GD32F4XX_CAN_H + +#include "gd32f4xx.h" + +/* CAN definitions */ +#define CAN0 CAN_BASE /*!< CAN0 base address */ +#define CAN1 (CAN0 + 0x00000400U) /*!< CAN1 base address */ + +/* registers definitions */ +#define CAN_CTL(canx) REG32((canx) + 0x00U) /*!< CAN control register */ +#define CAN_STAT(canx) REG32((canx) + 0x04U) /*!< CAN status register */ +#define CAN_TSTAT(canx) REG32((canx) + 0x08U) /*!< CAN transmit status register*/ +#define CAN_RFIFO0(canx) REG32((canx) + 0x0CU) /*!< CAN receive FIFO0 register */ +#define CAN_RFIFO1(canx) REG32((canx) + 0x10U) /*!< CAN receive FIFO1 register */ +#define CAN_INTEN(canx) REG32((canx) + 0x14U) /*!< CAN interrupt enable register */ +#define CAN_ERR(canx) REG32((canx) + 0x18U) /*!< CAN error register */ +#define CAN_BT(canx) REG32((canx) + 0x1CU) /*!< CAN bit timing register */ +#define CAN_TMI0(canx) REG32((canx) + 0x180U) /*!< CAN transmit mailbox0 identifier register */ +#define CAN_TMP0(canx) REG32((canx) + 0x184U) /*!< CAN transmit mailbox0 property register */ +#define CAN_TMDATA00(canx) REG32((canx) + 0x188U) /*!< CAN transmit mailbox0 data0 register */ +#define CAN_TMDATA10(canx) REG32((canx) + 0x18CU) /*!< CAN transmit mailbox0 data1 register */ +#define CAN_TMI1(canx) REG32((canx) + 0x190U) /*!< CAN transmit mailbox1 identifier register */ +#define CAN_TMP1(canx) REG32((canx) + 0x194U) /*!< CAN transmit mailbox1 property register */ +#define CAN_TMDATA01(canx) REG32((canx) + 0x198U) /*!< CAN transmit mailbox1 data0 register */ +#define CAN_TMDATA11(canx) REG32((canx) + 0x19CU) /*!< CAN transmit mailbox1 data1 register */ +#define CAN_TMI2(canx) REG32((canx) + 0x1A0U) /*!< CAN transmit mailbox2 identifier register */ +#define CAN_TMP2(canx) REG32((canx) + 0x1A4U) /*!< CAN transmit mailbox2 property register */ +#define CAN_TMDATA02(canx) REG32((canx) + 0x1A8U) /*!< CAN transmit mailbox2 data0 register */ +#define CAN_TMDATA12(canx) REG32((canx) + 0x1ACU) /*!< CAN transmit mailbox2 data1 register */ +#define CAN_RFIFOMI0(canx) REG32((canx) + 0x1B0U) /*!< CAN receive FIFO0 mailbox identifier register */ +#define CAN_RFIFOMP0(canx) REG32((canx) + 0x1B4U) /*!< CAN receive FIFO0 mailbox property register */ +#define CAN_RFIFOMDATA00(canx) REG32((canx) + 0x1B8U) /*!< CAN receive FIFO0 mailbox data0 register */ +#define CAN_RFIFOMDATA10(canx) REG32((canx) + 0x1BCU) /*!< CAN receive FIFO0 mailbox data1 register */ +#define CAN_RFIFOMI1(canx) REG32((canx) + 0x1C0U) /*!< CAN receive FIFO1 mailbox identifier register */ +#define CAN_RFIFOMP1(canx) REG32((canx) + 0x1C4U) /*!< CAN receive FIFO1 mailbox property register */ +#define CAN_RFIFOMDATA01(canx) REG32((canx) + 0x1C8U) /*!< CAN receive FIFO1 mailbox data0 register */ +#define CAN_RFIFOMDATA11(canx) REG32((canx) + 0x1CCU) /*!< CAN receive FIFO1 mailbox data1 register */ +#define CAN_FCTL(canx) REG32((canx) + 0x200U) /*!< CAN filter control register */ +#define CAN_FMCFG(canx) REG32((canx) + 0x204U) /*!< CAN filter mode register */ +#define CAN_FSCFG(canx) REG32((canx) + 0x20CU) /*!< CAN filter scale register */ +#define CAN_FAFIFO(canx) REG32((canx) + 0x214U) /*!< CAN filter associated FIFO register */ +#define CAN_FW(canx) REG32((canx) + 0x21CU) /*!< CAN filter working register */ +#define CAN_F0DATA0(canx) REG32((canx) + 0x240U) /*!< CAN filter 0 data 0 register */ +#define CAN_F1DATA0(canx) REG32((canx) + 0x248U) /*!< CAN filter 1 data 0 register */ +#define CAN_F2DATA0(canx) REG32((canx) + 0x250U) /*!< CAN filter 2 data 0 register */ +#define CAN_F3DATA0(canx) REG32((canx) + 0x258U) /*!< CAN filter 3 data 0 register */ +#define CAN_F4DATA0(canx) REG32((canx) + 0x260U) /*!< CAN filter 4 data 0 register */ +#define CAN_F5DATA0(canx) REG32((canx) + 0x268U) /*!< CAN filter 5 data 0 register */ +#define CAN_F6DATA0(canx) REG32((canx) + 0x270U) /*!< CAN filter 6 data 0 register */ +#define CAN_F7DATA0(canx) REG32((canx) + 0x278U) /*!< CAN filter 7 data 0 register */ +#define CAN_F8DATA0(canx) REG32((canx) + 0x280U) /*!< CAN filter 8 data 0 register */ +#define CAN_F9DATA0(canx) REG32((canx) + 0x288U) /*!< CAN filter 9 data 0 register */ +#define CAN_F10DATA0(canx) REG32((canx) + 0x290U) /*!< CAN filter 10 data 0 register */ +#define CAN_F11DATA0(canx) REG32((canx) + 0x298U) /*!< CAN filter 11 data 0 register */ +#define CAN_F12DATA0(canx) REG32((canx) + 0x2A0U) /*!< CAN filter 12 data 0 register */ +#define CAN_F13DATA0(canx) REG32((canx) + 0x2A8U) /*!< CAN filter 13 data 0 register */ +#define CAN_F14DATA0(canx) REG32((canx) + 0x2B0U) /*!< CAN filter 14 data 0 register */ +#define CAN_F15DATA0(canx) REG32((canx) + 0x2B8U) /*!< CAN filter 15 data 0 register */ +#define CAN_F16DATA0(canx) REG32((canx) + 0x2C0U) /*!< CAN filter 16 data 0 register */ +#define CAN_F17DATA0(canx) REG32((canx) + 0x2C8U) /*!< CAN filter 17 data 0 register */ +#define CAN_F18DATA0(canx) REG32((canx) + 0x2D0U) /*!< CAN filter 18 data 0 register */ +#define CAN_F19DATA0(canx) REG32((canx) + 0x2D8U) /*!< CAN filter 19 data 0 register */ +#define CAN_F20DATA0(canx) REG32((canx) + 0x2E0U) /*!< CAN filter 20 data 0 register */ +#define CAN_F21DATA0(canx) REG32((canx) + 0x2E8U) /*!< CAN filter 21 data 0 register */ +#define CAN_F22DATA0(canx) REG32((canx) + 0x2F0U) /*!< CAN filter 22 data 0 register */ +#define CAN_F23DATA0(canx) REG32((canx) + 0x3F8U) /*!< CAN filter 23 data 0 register */ +#define CAN_F24DATA0(canx) REG32((canx) + 0x300U) /*!< CAN filter 24 data 0 register */ +#define CAN_F25DATA0(canx) REG32((canx) + 0x308U) /*!< CAN filter 25 data 0 register */ +#define CAN_F26DATA0(canx) REG32((canx) + 0x310U) /*!< CAN filter 26 data 0 register */ +#define CAN_F27DATA0(canx) REG32((canx) + 0x318U) /*!< CAN filter 27 data 0 register */ +#define CAN_F0DATA1(canx) REG32((canx) + 0x244U) /*!< CAN filter 0 data 1 register */ +#define CAN_F1DATA1(canx) REG32((canx) + 0x24CU) /*!< CAN filter 1 data 1 register */ +#define CAN_F2DATA1(canx) REG32((canx) + 0x254U) /*!< CAN filter 2 data 1 register */ +#define CAN_F3DATA1(canx) REG32((canx) + 0x25CU) /*!< CAN filter 3 data 1 register */ +#define CAN_F4DATA1(canx) REG32((canx) + 0x264U) /*!< CAN filter 4 data 1 register */ +#define CAN_F5DATA1(canx) REG32((canx) + 0x26CU) /*!< CAN filter 5 data 1 register */ +#define CAN_F6DATA1(canx) REG32((canx) + 0x274U) /*!< CAN filter 6 data 1 register */ +#define CAN_F7DATA1(canx) REG32((canx) + 0x27CU) /*!< CAN filter 7 data 1 register */ +#define CAN_F8DATA1(canx) REG32((canx) + 0x284U) /*!< CAN filter 8 data 1 register */ +#define CAN_F9DATA1(canx) REG32((canx) + 0x28CU) /*!< CAN filter 9 data 1 register */ +#define CAN_F10DATA1(canx) REG32((canx) + 0x294U) /*!< CAN filter 10 data 1 register */ +#define CAN_F11DATA1(canx) REG32((canx) + 0x29CU) /*!< CAN filter 11 data 1 register */ +#define CAN_F12DATA1(canx) REG32((canx) + 0x2A4U) /*!< CAN filter 12 data 1 register */ +#define CAN_F13DATA1(canx) REG32((canx) + 0x2ACU) /*!< CAN filter 13 data 1 register */ +#define CAN_F14DATA1(canx) REG32((canx) + 0x2B4U) /*!< CAN filter 14 data 1 register */ +#define CAN_F15DATA1(canx) REG32((canx) + 0x2BCU) /*!< CAN filter 15 data 1 register */ +#define CAN_F16DATA1(canx) REG32((canx) + 0x2C4U) /*!< CAN filter 16 data 1 register */ +#define CAN_F17DATA1(canx) REG32((canx) + 0x24CU) /*!< CAN filter 17 data 1 register */ +#define CAN_F18DATA1(canx) REG32((canx) + 0x2D4U) /*!< CAN filter 18 data 1 register */ +#define CAN_F19DATA1(canx) REG32((canx) + 0x2DCU) /*!< CAN filter 19 data 1 register */ +#define CAN_F20DATA1(canx) REG32((canx) + 0x2E4U) /*!< CAN filter 20 data 1 register */ +#define CAN_F21DATA1(canx) REG32((canx) + 0x2ECU) /*!< CAN filter 21 data 1 register */ +#define CAN_F22DATA1(canx) REG32((canx) + 0x2F4U) /*!< CAN filter 22 data 1 register */ +#define CAN_F23DATA1(canx) REG32((canx) + 0x2FCU) /*!< CAN filter 23 data 1 register */ +#define CAN_F24DATA1(canx) REG32((canx) + 0x304U) /*!< CAN filter 24 data 1 register */ +#define CAN_F25DATA1(canx) REG32((canx) + 0x30CU) /*!< CAN filter 25 data 1 register */ +#define CAN_F26DATA1(canx) REG32((canx) + 0x314U) /*!< CAN filter 26 data 1 register */ +#define CAN_F27DATA1(canx) REG32((canx) + 0x31CU) /*!< CAN filter 27 data 1 register */ + +/* CAN transmit mailbox bank */ +#define CAN_TMI(canx, bank) REG32((canx) + 0x180U + ((bank) * 0x10U)) /*!< CAN transmit mailbox identifier register */ +#define CAN_TMP(canx, bank) REG32((canx) + 0x184U + ((bank) * 0x10U)) /*!< CAN transmit mailbox property register */ +#define CAN_TMDATA0(canx, bank) REG32((canx) + 0x188U + ((bank) * 0x10U)) /*!< CAN transmit mailbox data0 register */ +#define CAN_TMDATA1(canx, bank) REG32((canx) + 0x18CU + ((bank) * 0x10U)) /*!< CAN transmit mailbox data1 register */ + +/* CAN filter bank */ +#define CAN_FDATA0(canx, bank) REG32((canx) + 0x240U + ((bank) * 0x8U) + 0x0U) /*!< CAN filter data 0 register */ +#define CAN_FDATA1(canx, bank) REG32((canx) + 0x240U + ((bank) * 0x8U) + 0x4U) /*!< CAN filter data 1 register */ + +/* CAN receive fifo mailbox bank */ +#define CAN_RFIFOMI(canx, bank) REG32((canx) + 0x1B0U + ((bank) * 0x10U)) /*!< CAN receive FIFO mailbox identifier register */ +#define CAN_RFIFOMP(canx, bank) REG32((canx) + 0x1B4U + ((bank) * 0x10U)) /*!< CAN receive FIFO mailbox property register */ +#define CAN_RFIFOMDATA0(canx, bank) REG32((canx) + 0x1B8U + ((bank) * 0x10U)) /*!< CAN receive FIFO mailbox data0 register */ +#define CAN_RFIFOMDATA1(canx, bank) REG32((canx) + 0x1BCU + ((bank) * 0x10U)) /*!< CAN receive FIFO mailbox data1 register */ + +/* bits definitions */ +/* CAN_CTL */ +#define CAN_CTL_IWMOD BIT(0) /*!< initial working mode */ +#define CAN_CTL_SLPWMOD BIT(1) /*!< sleep working mode */ +#define CAN_CTL_TFO BIT(2) /*!< transmit FIFO order */ +#define CAN_CTL_RFOD BIT(3) /*!< receive FIFO overwrite disable */ +#define CAN_CTL_ARD BIT(4) /*!< automatic retransmission disable */ +#define CAN_CTL_AWU BIT(5) /*!< automatic wakeup */ +#define CAN_CTL_ABOR BIT(6) /*!< automatic bus-off recovery */ +#define CAN_CTL_TTC BIT(7) /*!< time triggered communication */ +#define CAN_CTL_SWRST BIT(15) /*!< CAN software reset */ +#define CAN_CTL_DFZ BIT(16) /*!< CAN debug freeze */ + +/* CAN_STAT */ +#define CAN_STAT_IWS BIT(0) /*!< initial working state */ +#define CAN_STAT_SLPWS BIT(1) /*!< sleep working state */ +#define CAN_STAT_ERRIF BIT(2) /*!< error interrupt flag*/ +#define CAN_STAT_WUIF BIT(3) /*!< status change interrupt flag of wakeup from sleep working mode */ +#define CAN_STAT_SLPIF BIT(4) /*!< status change interrupt flag of sleep working mode entering */ +#define CAN_STAT_TS BIT(8) /*!< transmitting state */ +#define CAN_STAT_RS BIT(9) /*!< receiving state */ +#define CAN_STAT_LASTRX BIT(10) /*!< last sample value of rx pin */ +#define CAN_STAT_RXL BIT(11) /*!< CAN rx signal */ + +/* CAN_TSTAT */ +#define CAN_TSTAT_MTF0 BIT(0) /*!< mailbox0 transmit finished */ +#define CAN_TSTAT_MTFNERR0 BIT(1) /*!< mailbox0 transmit finished and no error */ +#define CAN_TSTAT_MAL0 BIT(2) /*!< mailbox0 arbitration lost */ +#define CAN_TSTAT_MTE0 BIT(3) /*!< mailbox0 transmit error */ +#define CAN_TSTAT_MST0 BIT(7) /*!< mailbox0 stop transmitting */ +#define CAN_TSTAT_MTF1 BIT(8) /*!< mailbox1 transmit finished */ +#define CAN_TSTAT_MTFNERR1 BIT(9) /*!< mailbox1 transmit finished and no error */ +#define CAN_TSTAT_MAL1 BIT(10) /*!< mailbox1 arbitration lost */ +#define CAN_TSTAT_MTE1 BIT(11) /*!< mailbox1 transmit error */ +#define CAN_TSTAT_MST1 BIT(15) /*!< mailbox1 stop transmitting */ +#define CAN_TSTAT_MTF2 BIT(16) /*!< mailbox2 transmit finished */ +#define CAN_TSTAT_MTFNERR2 BIT(17) /*!< mailbox2 transmit finished and no error */ +#define CAN_TSTAT_MAL2 BIT(18) /*!< mailbox2 arbitration lost */ +#define CAN_TSTAT_MTE2 BIT(19) /*!< mailbox2 transmit error */ +#define CAN_TSTAT_MST2 BIT(23) /*!< mailbox2 stop transmitting */ +#define CAN_TSTAT_NUM BITS(24,25) /*!< mailbox number */ +#define CAN_TSTAT_TME0 BIT(26) /*!< transmit mailbox0 empty */ +#define CAN_TSTAT_TME1 BIT(27) /*!< transmit mailbox1 empty */ +#define CAN_TSTAT_TME2 BIT(28) /*!< transmit mailbox2 empty */ +#define CAN_TSTAT_TMLS0 BIT(29) /*!< last sending priority flag for mailbox0 */ +#define CAN_TSTAT_TMLS1 BIT(30) /*!< last sending priority flag for mailbox1 */ +#define CAN_TSTAT_TMLS2 BIT(31) /*!< last sending priority flag for mailbox2 */ + +/* CAN_RFIFO0 */ +#define CAN_RFIFO0_RFL0 BITS(0,1) /*!< receive FIFO0 length */ +#define CAN_RFIFO0_RFF0 BIT(3) /*!< receive FIFO0 full */ +#define CAN_RFIFO0_RFO0 BIT(4) /*!< receive FIFO0 overfull */ +#define CAN_RFIFO0_RFD0 BIT(5) /*!< receive FIFO0 dequeue */ + +/* CAN_RFIFO1 */ +#define CAN_RFIFO1_RFL1 BITS(0,1) /*!< receive FIFO1 length */ +#define CAN_RFIFO1_RFF1 BIT(3) /*!< receive FIFO1 full */ +#define CAN_RFIFO1_RFO1 BIT(4) /*!< receive FIFO1 overfull */ +#define CAN_RFIFO1_RFD1 BIT(5) /*!< receive FIFO1 dequeue */ + +/* CAN_INTEN */ +#define CAN_INTEN_TMEIE BIT(0) /*!< transmit mailbox empty interrupt enable */ +#define CAN_INTEN_RFNEIE0 BIT(1) /*!< receive FIFO0 not empty interrupt enable */ +#define CAN_INTEN_RFFIE0 BIT(2) /*!< receive FIFO0 full interrupt enable */ +#define CAN_INTEN_RFOIE0 BIT(3) /*!< receive FIFO0 overfull interrupt enable */ +#define CAN_INTEN_RFNEIE1 BIT(4) /*!< receive FIFO1 not empty interrupt enable */ +#define CAN_INTEN_RFFIE1 BIT(5) /*!< receive FIFO1 full interrupt enable */ +#define CAN_INTEN_RFOIE1 BIT(6) /*!< receive FIFO1 overfull interrupt enable */ +#define CAN_INTEN_WERRIE BIT(8) /*!< warning error interrupt enable */ +#define CAN_INTEN_PERRIE BIT(9) /*!< passive error interrupt enable */ +#define CAN_INTEN_BOIE BIT(10) /*!< bus-off interrupt enable */ +#define CAN_INTEN_ERRNIE BIT(11) /*!< error number interrupt enable */ +#define CAN_INTEN_ERRIE BIT(15) /*!< error interrupt enable */ +#define CAN_INTEN_WIE BIT(16) /*!< wakeup interrupt enable */ +#define CAN_INTEN_SLPWIE BIT(17) /*!< sleep working interrupt enable */ + +/* CAN_ERR */ +#define CAN_ERR_WERR BIT(0) /*!< warning error */ +#define CAN_ERR_PERR BIT(1) /*!< passive error */ +#define CAN_ERR_BOERR BIT(2) /*!< bus-off error */ +#define CAN_ERR_ERRN BITS(4,6) /*!< error number */ +#define CAN_ERR_TECNT BITS(16,23) /*!< transmit error count */ +#define CAN_ERR_RECNT BITS(24,31) /*!< receive error count */ + +/* CAN_BT */ +#define CAN_BT_BAUDPSC BITS(0,9) /*!< baudrate prescaler */ +#define CAN_BT_BS1 BITS(16,19) /*!< bit segment 1 */ +#define CAN_BT_BS2 BITS(20,22) /*!< bit segment 2 */ +#define CAN_BT_SJW BITS(24,25) /*!< resynchronization jump width */ +#define CAN_BT_LCMOD BIT(30) /*!< loopback communication mode */ +#define CAN_BT_SCMOD BIT(31) /*!< silent communication mode */ + +/* CAN_TMIx */ +#define CAN_TMI_TEN BIT(0) /*!< transmit enable */ +#define CAN_TMI_FT BIT(1) /*!< frame type */ +#define CAN_TMI_FF BIT(2) /*!< frame format */ +#define CAN_TMI_EFID BITS(3,31) /*!< the frame identifier */ +#define CAN_TMI_SFID BITS(21,31) /*!< the frame identifier */ + +/* CAN_TMPx */ +#define CAN_TMP_DLENC BITS(0,3) /*!< data length code */ +#define CAN_TMP_TSEN BIT(8) /*!< time stamp enable */ +#define CAN_TMP_TS BITS(16,31) /*!< time stamp */ + +/* CAN_TMDATA0x */ +#define CAN_TMDATA0_DB0 BITS(0,7) /*!< transmit data byte 0 */ +#define CAN_TMDATA0_DB1 BITS(8,15) /*!< transmit data byte 1 */ +#define CAN_TMDATA0_DB2 BITS(16,23) /*!< transmit data byte 2 */ +#define CAN_TMDATA0_DB3 BITS(24,31) /*!< transmit data byte 3 */ + +/* CAN_TMDATA1x */ +#define CAN_TMDATA1_DB4 BITS(0,7) /*!< transmit data byte 4 */ +#define CAN_TMDATA1_DB5 BITS(8,15) /*!< transmit data byte 5 */ +#define CAN_TMDATA1_DB6 BITS(16,23) /*!< transmit data byte 6 */ +#define CAN_TMDATA1_DB7 BITS(24,31) /*!< transmit data byte 7 */ + +/* CAN_RFIFOMIx */ +#define CAN_RFIFOMI_FT BIT(1) /*!< frame type */ +#define CAN_RFIFOMI_FF BIT(2) /*!< frame format */ +#define CAN_RFIFOMI_EFID BITS(3,31) /*!< the frame identifier */ +#define CAN_RFIFOMI_SFID BITS(21,31) /*!< the frame identifier */ + +/* CAN_RFIFOMPx */ +#define CAN_RFIFOMP_DLENC BITS(0,3) /*!< receive data length code */ +#define CAN_RFIFOMP_FI BITS(8,15) /*!< filter index */ +#define CAN_RFIFOMP_TS BITS(16,31) /*!< time stamp */ + +/* CAN_RFIFOMDATA0x */ +#define CAN_RFIFOMDATA0_DB0 BITS(0,7) /*!< receive data byte 0 */ +#define CAN_RFIFOMDATA0_DB1 BITS(8,15) /*!< receive data byte 1 */ +#define CAN_RFIFOMDATA0_DB2 BITS(16,23) /*!< receive data byte 2 */ +#define CAN_RFIFOMDATA0_DB3 BITS(24,31) /*!< receive data byte 3 */ + +/* CAN_RFIFOMDATA1x */ +#define CAN_RFIFOMDATA1_DB4 BITS(0,7) /*!< receive data byte 4 */ +#define CAN_RFIFOMDATA1_DB5 BITS(8,15) /*!< receive data byte 5 */ +#define CAN_RFIFOMDATA1_DB6 BITS(16,23) /*!< receive data byte 6 */ +#define CAN_RFIFOMDATA1_DB7 BITS(24,31) /*!< receive data byte 7 */ + +/* CAN_FCTL */ +#define CAN_FCTL_FLD BIT(0) /*!< filter lock disable */ +#define CAN_FCTL_HBC1F BITS(8,13) /*!< header bank of CAN1 filter */ + +/* CAN_FMCFG */ +#define CAN_FMCFG_FMOD(regval) BIT(regval) /*!< filter mode, list or mask*/ + +/* CAN_FSCFG */ +#define CAN_FSCFG_FS(regval) BIT(regval) /*!< filter scale, 32 bits or 16 bits*/ + +/* CAN_FAFIFO */ +#define CAN_FAFIFOR_FAF(regval) BIT(regval) /*!< filter associated with FIFO */ + +/* CAN_FW */ +#define CAN_FW_FW(regval) BIT(regval) /*!< filter working */ + +/* CAN_FxDATAy */ +#define CAN_FDATA_FD(regval) BIT(regval) /*!< filter data */ + +/* consts definitions */ +/* define the CAN bit position and its register index offset */ +#define CAN_REGIDX_BIT(regidx, bitpos) (((uint32_t)(regidx) << 6) | (uint32_t)(bitpos)) +#define CAN_REG_VAL(canx, offset) (REG32((canx) + ((uint32_t)(offset) >> 6))) +#define CAN_BIT_POS(val) ((uint32_t)(val) & 0x1FU) + +#define CAN_REGIDX_BITS(regidx, bitpos0, bitpos1) (((uint32_t)(regidx) << 12) | ((uint32_t)(bitpos0) << 6) | (uint32_t)(bitpos1)) +#define CAN_REG_VALS(canx, offset) (REG32((canx) + ((uint32_t)(offset) >> 12))) +#define CAN_BIT_POS0(val) (((uint32_t)(val) >> 6) & 0x1FU) +#define CAN_BIT_POS1(val) ((uint32_t)(val) & 0x1FU) + +/* register offset */ +#define STAT_REG_OFFSET ((uint8_t)0x04U) /*!< STAT register offset */ +#define TSTAT_REG_OFFSET ((uint8_t)0x08U) /*!< TSTAT register offset */ +#define RFIFO0_REG_OFFSET ((uint8_t)0x0CU) /*!< RFIFO0 register offset */ +#define RFIFO1_REG_OFFSET ((uint8_t)0x10U) /*!< RFIFO1 register offset */ +#define ERR_REG_OFFSET ((uint8_t)0x18U) /*!< ERR register offset */ + +/* CAN flags */ +typedef enum +{ + /* flags in STAT register */ + CAN_FLAG_RXL = CAN_REGIDX_BIT(STAT_REG_OFFSET, 11U), /*!< RX level */ + CAN_FLAG_LASTRX = CAN_REGIDX_BIT(STAT_REG_OFFSET, 10U), /*!< last sample value of RX pin */ + CAN_FLAG_RS = CAN_REGIDX_BIT(STAT_REG_OFFSET, 9U), /*!< receiving state */ + CAN_FLAG_TS = CAN_REGIDX_BIT(STAT_REG_OFFSET, 8U), /*!< transmitting state */ + CAN_FLAG_SLPIF = CAN_REGIDX_BIT(STAT_REG_OFFSET, 4U), /*!< status change flag of entering sleep working mode */ + CAN_FLAG_WUIF = CAN_REGIDX_BIT(STAT_REG_OFFSET, 3U), /*!< status change flag of wakeup from sleep working mode */ + CAN_FLAG_ERRIF = CAN_REGIDX_BIT(STAT_REG_OFFSET, 2U), /*!< error flag */ + CAN_FLAG_SLPWS = CAN_REGIDX_BIT(STAT_REG_OFFSET, 1U), /*!< sleep working state */ + CAN_FLAG_IWS = CAN_REGIDX_BIT(STAT_REG_OFFSET, 0U), /*!< initial working state */ + /* flags in TSTAT register */ + CAN_FLAG_TMLS2 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 31U), /*!< transmit mailbox 2 last sending in Tx FIFO */ + CAN_FLAG_TMLS1 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 30U), /*!< transmit mailbox 1 last sending in Tx FIFO */ + CAN_FLAG_TMLS0 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 29U), /*!< transmit mailbox 0 last sending in Tx FIFO */ + CAN_FLAG_TME2 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 28U), /*!< transmit mailbox 2 empty */ + CAN_FLAG_TME1 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 27U), /*!< transmit mailbox 1 empty */ + CAN_FLAG_TME0 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 26U), /*!< transmit mailbox 0 empty */ + CAN_FLAG_MTE2 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 19U), /*!< mailbox 2 transmit error */ + CAN_FLAG_MTE1 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 11U), /*!< mailbox 1 transmit error */ + CAN_FLAG_MTE0 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 3U), /*!< mailbox 0 transmit error */ + CAN_FLAG_MAL2 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 18U), /*!< mailbox 2 arbitration lost */ + CAN_FLAG_MAL1 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 10U), /*!< mailbox 1 arbitration lost */ + CAN_FLAG_MAL0 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 2U), /*!< mailbox 0 arbitration lost */ + CAN_FLAG_MTFNERR2 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 17U), /*!< mailbox 2 transmit finished with no error */ + CAN_FLAG_MTFNERR1 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 9U), /*!< mailbox 1 transmit finished with no error */ + CAN_FLAG_MTFNERR0 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 1U), /*!< mailbox 0 transmit finished with no error */ + CAN_FLAG_MTF2 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 16U), /*!< mailbox 2 transmit finished */ + CAN_FLAG_MTF1 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 8U), /*!< mailbox 1 transmit finished */ + CAN_FLAG_MTF0 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 0U), /*!< mailbox 0 transmit finished */ + /* flags in RFIFO0 register */ + CAN_FLAG_RFO0 = CAN_REGIDX_BIT(RFIFO0_REG_OFFSET, 4U), /*!< receive FIFO0 overfull */ + CAN_FLAG_RFF0 = CAN_REGIDX_BIT(RFIFO0_REG_OFFSET, 3U), /*!< receive FIFO0 full */ + /* flags in RFIFO1 register */ + CAN_FLAG_RFO1 = CAN_REGIDX_BIT(RFIFO1_REG_OFFSET, 4U), /*!< receive FIFO1 overfull */ + CAN_FLAG_RFF1 = CAN_REGIDX_BIT(RFIFO1_REG_OFFSET, 3U), /*!< receive FIFO1 full */ + /* flags in ERR register */ + CAN_FLAG_BOERR = CAN_REGIDX_BIT(ERR_REG_OFFSET, 2U), /*!< bus-off error */ + CAN_FLAG_PERR = CAN_REGIDX_BIT(ERR_REG_OFFSET, 1U), /*!< passive error */ + CAN_FLAG_WERR = CAN_REGIDX_BIT(ERR_REG_OFFSET, 0U), /*!< warning error */ +}can_flag_enum; + +/* CAN interrupt flags */ +typedef enum +{ + /* interrupt flags in STAT register */ + CAN_INT_FLAG_SLPIF = CAN_REGIDX_BITS(STAT_REG_OFFSET, 4U, 17U), /*!< status change interrupt flag of sleep working mode entering */ + CAN_INT_FLAG_WUIF = CAN_REGIDX_BITS(STAT_REG_OFFSET, 3U, 16), /*!< status change interrupt flag of wakeup from sleep working mode */ + CAN_INT_FLAG_ERRIF = CAN_REGIDX_BITS(STAT_REG_OFFSET, 2U, 15), /*!< error interrupt flag */ + /* interrupt flags in TSTAT register */ + CAN_INT_FLAG_MTF2 = CAN_REGIDX_BITS(TSTAT_REG_OFFSET, 16U, 0U), /*!< mailbox 2 transmit finished interrupt flag */ + CAN_INT_FLAG_MTF1 = CAN_REGIDX_BITS(TSTAT_REG_OFFSET, 8U, 0U), /*!< mailbox 1 transmit finished interrupt flag */ + CAN_INT_FLAG_MTF0 = CAN_REGIDX_BITS(TSTAT_REG_OFFSET, 0U, 0U), /*!< mailbox 0 transmit finished interrupt flag */ + /* interrupt flags in RFIFO0 register */ + CAN_INT_FLAG_RFO0 = CAN_REGIDX_BITS(RFIFO0_REG_OFFSET, 4U, 3U), /*!< receive FIFO0 overfull interrupt flag */ + CAN_INT_FLAG_RFF0 = CAN_REGIDX_BITS(RFIFO0_REG_OFFSET, 3U, 2U), /*!< receive FIFO0 full interrupt flag */ + CAN_INT_FLAG_RFL0 = CAN_REGIDX_BITS(RFIFO0_REG_OFFSET, 2U, 1U), /*!< receive FIFO0 not empty interrupt flag */ + /* interrupt flags in RFIFO0 register */ + CAN_INT_FLAG_RFO1 = CAN_REGIDX_BITS(RFIFO1_REG_OFFSET, 4U, 6U), /*!< receive FIFO1 overfull interrupt flag */ + CAN_INT_FLAG_RFF1 = CAN_REGIDX_BITS(RFIFO1_REG_OFFSET, 3U, 5U), /*!< receive FIFO1 full interrupt flag */ + CAN_INT_FLAG_RFL1 = CAN_REGIDX_BITS(RFIFO1_REG_OFFSET, 2U, 4U), /*!< receive FIFO0 not empty interrupt flag */ + /* interrupt flags in ERR register */ + CAN_INT_FLAG_ERRN = CAN_REGIDX_BITS(ERR_REG_OFFSET, 3U, 11U), /*!< error number interrupt flag */ + CAN_INT_FLAG_BOERR = CAN_REGIDX_BITS(ERR_REG_OFFSET, 2U, 10U), /*!< bus-off error interrupt flag */ + CAN_INT_FLAG_PERR = CAN_REGIDX_BITS(ERR_REG_OFFSET, 1U, 9U), /*!< passive error interrupt flag */ + CAN_INT_FLAG_WERR = CAN_REGIDX_BITS(ERR_REG_OFFSET, 0U, 8U), /*!< warning error interrupt flag */ +}can_interrupt_flag_enum; + +/* CAN initiliaze parameters struct */ +typedef struct +{ + uint8_t working_mode; /*!< CAN working mode */ + uint8_t resync_jump_width; /*!< CAN resynchronization jump width */ + uint8_t time_segment_1; /*!< time segment 1 */ + uint8_t time_segment_2; /*!< time segment 2 */ + ControlStatus time_triggered; /*!< time triggered communication mode */ + ControlStatus auto_bus_off_recovery; /*!< automatic bus-off recovery */ + ControlStatus auto_wake_up; /*!< automatic wake-up mode */ + ControlStatus no_auto_retrans; /*!< automatic retransmission mode disable */ + ControlStatus rec_fifo_overwrite; /*!< receive FIFO overwrite mode */ + ControlStatus trans_fifo_order; /*!< transmit FIFO order */ + uint16_t prescaler; /*!< baudrate prescaler */ +}can_parameter_struct; + +/* CAN transmit message struct */ +typedef struct +{ + uint32_t tx_sfid; /*!< standard format frame identifier */ + uint32_t tx_efid; /*!< extended format frame identifier */ + uint8_t tx_ff; /*!< format of frame, standard or extended format */ + uint8_t tx_ft; /*!< type of frame, data or remote */ + uint8_t tx_dlen; /*!< data length */ + uint8_t tx_data[8]; /*!< transmit data */ +}can_trasnmit_message_struct; + +/* CAN receive message struct */ +typedef struct +{ + uint32_t rx_sfid; /*!< standard format frame identifier */ + uint32_t rx_efid; /*!< extended format frame identifier */ + uint8_t rx_ff; /*!< format of frame, standard or extended format */ + uint8_t rx_ft; /*!< type of frame, data or remote */ + uint8_t rx_dlen; /*!< data length */ + uint8_t rx_data[8]; /*!< receive data */ + uint8_t rx_fi; /*!< filtering index */ +} can_receive_message_struct; + +/* CAN filter parameters struct */ +typedef struct +{ + uint16_t filter_list_high; /*!< filter list number high bits*/ + uint16_t filter_list_low; /*!< filter list number low bits */ + uint16_t filter_mask_high; /*!< filter mask number high bits */ + uint16_t filter_mask_low; /*!< filter mask number low bits */ + uint16_t filter_fifo_number; /*!< receive FIFO associated with the filter */ + uint16_t filter_number; /*!< filter number */ + uint16_t filter_mode; /*!< filter mode, list or mask */ + uint16_t filter_bits; /*!< filter scale */ + ControlStatus filter_enable; /*!< filter work or not */ +}can_filter_parameter_struct; + +/* CAN errors */ +typedef enum +{ + CAN_ERROR_NONE = 0, /*!< no error */ + CAN_ERROR_FILL, /*!< fill error */ + CAN_ERROR_FORMATE, /*!< format error */ + CAN_ERROR_ACK, /*!< ACK error */ + CAN_ERROR_BITRECESSIVE, /*!< bit recessive error */ + CAN_ERROR_BITDOMINANTER, /*!< bit dominant error */ + CAN_ERROR_CRC, /*!< CRC error */ + CAN_ERROR_SOFTWARECFG, /*!< software configure */ +}can_error_enum; + +/* transmit states */ +typedef enum +{ + CAN_TRANSMIT_FAILED = 0U, /*!< CAN transmitted failure */ + CAN_TRANSMIT_OK = 1U, /*!< CAN transmitted success */ + CAN_TRANSMIT_PENDING = 2U, /*!< CAN transmitted pending */ + CAN_TRANSMIT_NOMAILBOX = 4U, /*!< no empty mailbox to be used for CAN */ +}can_transmit_state_enum; + +typedef enum +{ + CAN_INIT_STRUCT = 0, /* CAN initiliaze parameters struct */ + CAN_FILTER_STRUCT, /* CAN filter parameters struct */ + CAN_TX_MESSAGE_STRUCT, /* CAN transmit message struct */ + CAN_RX_MESSAGE_STRUCT, /* CAN receive message struct */ +}can_struct_type_enum; + +/* CAN baudrate prescaler*/ +#define BT_BAUDPSC(regval) (BITS(0,9) & ((uint32_t)(regval) << 0)) + +/* CAN bit segment 1*/ +#define BT_BS1(regval) (BITS(16,19) & ((uint32_t)(regval) << 16)) + +/* CAN bit segment 2*/ +#define BT_BS2(regval) (BITS(20,22) & ((uint32_t)(regval) << 20)) + +/* CAN resynchronization jump width*/ +#define BT_SJW(regval) (BITS(24,25) & ((uint32_t)(regval) << 24)) + +/* CAN communication mode*/ +#define BT_MODE(regval) (BITS(30,31) & ((uint32_t)(regval) << 30)) + +/* CAN FDATA high 16 bits */ +#define FDATA_MASK_HIGH(regval) (BITS(16,31) & ((uint32_t)(regval) << 16)) + +/* CAN FDATA low 16 bits */ +#define FDATA_MASK_LOW(regval) (BITS(0,15) & ((uint32_t)(regval) << 0)) + +/* CAN1 filter start bank_number*/ +#define FCTL_HBC1F(regval) (BITS(8,13) & ((uint32_t)(regval) << 8)) + +/* CAN transmit mailbox extended identifier*/ +#define TMI_EFID(regval) (BITS(3,31) & ((uint32_t)(regval) << 3)) + +/* CAN transmit mailbox standard identifier*/ +#define TMI_SFID(regval) (BITS(21,31) & ((uint32_t)(regval) << 21)) + +/* transmit data byte 0 */ +#define TMDATA0_DB0(regval) (BITS(0,7) & ((uint32_t)(regval) << 0)) + +/* transmit data byte 1 */ +#define TMDATA0_DB1(regval) (BITS(8,15) & ((uint32_t)(regval) << 8)) + +/* transmit data byte 2 */ +#define TMDATA0_DB2(regval) (BITS(16,23) & ((uint32_t)(regval) << 16)) + +/* transmit data byte 3 */ +#define TMDATA0_DB3(regval) (BITS(24,31) & ((uint32_t)(regval) << 24)) + +/* transmit data byte 4 */ +#define TMDATA1_DB4(regval) (BITS(0,7) & ((uint32_t)(regval) << 0)) + +/* transmit data byte 5 */ +#define TMDATA1_DB5(regval) (BITS(8,15) & ((uint32_t)(regval) << 8)) + +/* transmit data byte 6 */ +#define TMDATA1_DB6(regval) (BITS(16,23) & ((uint32_t)(regval) << 16)) + +/* transmit data byte 7 */ +#define TMDATA1_DB7(regval) (BITS(24,31) & ((uint32_t)(regval) << 24)) + +/* receive mailbox extended identifier*/ +#define GET_RFIFOMI_EFID(regval) GET_BITS((uint32_t)(regval), 3U, 31U) + +/* receive mailbox standrad identifier*/ +#define GET_RFIFOMI_SFID(regval) GET_BITS((uint32_t)(regval), 21U, 31U) + +/* receive data length */ +#define GET_RFIFOMP_DLENC(regval) GET_BITS((uint32_t)(regval), 0U, 3U) + +/* the index of the filter by which the frame is passed */ +#define GET_RFIFOMP_FI(regval) GET_BITS((uint32_t)(regval), 8U, 15U) + +/* receive data byte 0 */ +#define GET_RFIFOMDATA0_DB0(regval) GET_BITS((uint32_t)(regval), 0U, 7U) + +/* receive data byte 1 */ +#define GET_RFIFOMDATA0_DB1(regval) GET_BITS((uint32_t)(regval), 8U, 15U) + +/* receive data byte 2 */ +#define GET_RFIFOMDATA0_DB2(regval) GET_BITS((uint32_t)(regval), 16U, 23U) + +/* receive data byte 3 */ +#define GET_RFIFOMDATA0_DB3(regval) GET_BITS((uint32_t)(regval), 24U, 31U) + +/* receive data byte 4 */ +#define GET_RFIFOMDATA1_DB4(regval) GET_BITS((uint32_t)(regval), 0U, 7U) + +/* receive data byte 5 */ +#define GET_RFIFOMDATA1_DB5(regval) GET_BITS((uint32_t)(regval), 8U, 15U) + +/* receive data byte 6 */ +#define GET_RFIFOMDATA1_DB6(regval) GET_BITS((uint32_t)(regval), 16U, 23U) + +/* receive data byte 7 */ +#define GET_RFIFOMDATA1_DB7(regval) GET_BITS((uint32_t)(regval), 24U, 31U) + +/* error number */ +#define GET_ERR_ERRN(regval) GET_BITS((uint32_t)(regval), 4U, 6U) + +/* transmit error count */ +#define GET_ERR_TECNT(regval) GET_BITS((uint32_t)(regval), 16U, 23U) + +/* receive error count */ +#define GET_ERR_RECNT(regval) GET_BITS((uint32_t)(regval), 24U, 31U) + +/* CAN errors */ +#define ERR_ERRN(regval) (BITS(4,6) & ((uint32_t)(regval) << 4)) +#define CAN_ERRN_0 ERR_ERRN(0U) /* no error */ +#define CAN_ERRN_1 ERR_ERRN(1U) /*!< fill error */ +#define CAN_ERRN_2 ERR_ERRN(2U) /*!< format error */ +#define CAN_ERRN_3 ERR_ERRN(3U) /*!< ACK error */ +#define CAN_ERRN_4 ERR_ERRN(4U) /*!< bit recessive error */ +#define CAN_ERRN_5 ERR_ERRN(5U) /*!< bit dominant error */ +#define CAN_ERRN_6 ERR_ERRN(6U) /*!< CRC error */ +#define CAN_ERRN_7 ERR_ERRN(7U) /*!< software error */ + +#define CAN_STATE_PENDING ((uint32_t)0x00000000U) /*!< CAN pending */ + +/* CAN communication mode */ +#define CAN_NORMAL_MODE ((uint8_t)0x00U) /*!< normal communication mode */ +#define CAN_LOOPBACK_MODE ((uint8_t)0x01U) /*!< loopback communication mode */ +#define CAN_SILENT_MODE ((uint8_t)0x02U) /*!< silent communication mode */ +#define CAN_SILENT_LOOPBACK_MODE ((uint8_t)0x03U) /*!< loopback and silent communication mode */ + +/* CAN resynchronisation jump width */ +#define CAN_BT_SJW_1TQ ((uint8_t)0x00U) /*!< 1 time quanta */ +#define CAN_BT_SJW_2TQ ((uint8_t)0x01U) /*!< 2 time quanta */ +#define CAN_BT_SJW_3TQ ((uint8_t)0x02U) /*!< 3 time quanta */ +#define CAN_BT_SJW_4TQ ((uint8_t)0x03U) /*!< 4 time quanta */ + +/* CAN time segment 1 */ +#define CAN_BT_BS1_1TQ ((uint8_t)0x00U) /*!< 1 time quanta */ +#define CAN_BT_BS1_2TQ ((uint8_t)0x01U) /*!< 2 time quanta */ +#define CAN_BT_BS1_3TQ ((uint8_t)0x02U) /*!< 3 time quanta */ +#define CAN_BT_BS1_4TQ ((uint8_t)0x03U) /*!< 4 time quanta */ +#define CAN_BT_BS1_5TQ ((uint8_t)0x04U) /*!< 5 time quanta */ +#define CAN_BT_BS1_6TQ ((uint8_t)0x05U) /*!< 6 time quanta */ +#define CAN_BT_BS1_7TQ ((uint8_t)0x06U) /*!< 7 time quanta */ +#define CAN_BT_BS1_8TQ ((uint8_t)0x07U) /*!< 8 time quanta */ +#define CAN_BT_BS1_9TQ ((uint8_t)0x08U) /*!< 9 time quanta */ +#define CAN_BT_BS1_10TQ ((uint8_t)0x09U) /*!< 10 time quanta */ +#define CAN_BT_BS1_11TQ ((uint8_t)0x0AU) /*!< 11 time quanta */ +#define CAN_BT_BS1_12TQ ((uint8_t)0x0BU) /*!< 12 time quanta */ +#define CAN_BT_BS1_13TQ ((uint8_t)0x0CU) /*!< 13 time quanta */ +#define CAN_BT_BS1_14TQ ((uint8_t)0x0DU) /*!< 14 time quanta */ +#define CAN_BT_BS1_15TQ ((uint8_t)0x0EU) /*!< 15 time quanta */ +#define CAN_BT_BS1_16TQ ((uint8_t)0x0FU) /*!< 16 time quanta */ + +/* CAN time segment 2 */ +#define CAN_BT_BS2_1TQ ((uint8_t)0x00U) /*!< 1 time quanta */ +#define CAN_BT_BS2_2TQ ((uint8_t)0x01U) /*!< 2 time quanta */ +#define CAN_BT_BS2_3TQ ((uint8_t)0x02U) /*!< 3 time quanta */ +#define CAN_BT_BS2_4TQ ((uint8_t)0x03U) /*!< 4 time quanta */ +#define CAN_BT_BS2_5TQ ((uint8_t)0x04U) /*!< 5 time quanta */ +#define CAN_BT_BS2_6TQ ((uint8_t)0x05U) /*!< 6 time quanta */ +#define CAN_BT_BS2_7TQ ((uint8_t)0x06U) /*!< 7 time quanta */ +#define CAN_BT_BS2_8TQ ((uint8_t)0x07U) /*!< 8 time quanta */ + +/* CAN mailbox number */ +#define CAN_MAILBOX0 ((uint8_t)0x00U) /*!< mailbox0 */ +#define CAN_MAILBOX1 ((uint8_t)0x01U) /*!< mailbox1 */ +#define CAN_MAILBOX2 ((uint8_t)0x02U) /*!< mailbox2 */ +#define CAN_NOMAILBOX ((uint8_t)0x03U) /*!< no mailbox empty */ + +/* CAN frame format */ +#define CAN_FF_STANDARD ((uint32_t)0x00000000U) /*!< standard frame */ +#define CAN_FF_EXTENDED ((uint32_t)0x00000004U) /*!< extended frame */ + +/* CAN receive fifo */ +#define CAN_FIFO0 ((uint8_t)0x00U) /*!< receive FIFO0 */ +#define CAN_FIFO1 ((uint8_t)0x01U) /*!< receive FIFO1 */ + +/* frame number of receive fifo */ +#define CAN_RFIF_RFL_MASK ((uint32_t)0x00000003U) /*!< mask for frame number in receive FIFOx */ + +#define CAN_SFID_MASK ((uint32_t)0x000007FFU) /*!< mask of standard identifier */ +#define CAN_EFID_MASK ((uint32_t)0x1FFFFFFFU) /*!< mask of extended identifier */ + +/* CAN working mode */ +#define CAN_MODE_INITIALIZE ((uint8_t)0x01U) /*!< CAN initialize mode */ +#define CAN_MODE_NORMAL ((uint8_t)0x02U) /*!< CAN normal mode */ +#define CAN_MODE_SLEEP ((uint8_t)0x04U) /*!< CAN sleep mode */ + +/* filter bits */ +#define CAN_FILTERBITS_16BIT ((uint8_t)0x00U) /*!< CAN filter 16 bits */ +#define CAN_FILTERBITS_32BIT ((uint8_t)0x01U) /*!< CAN filter 32 bits */ + +/* filter mode */ +#define CAN_FILTERMODE_MASK ((uint8_t)0x00U) /*!< mask mode */ +#define CAN_FILTERMODE_LIST ((uint8_t)0x01U) /*!< list mode */ + +/* filter 16 bits mask */ +#define CAN_FILTER_MASK_16BITS ((uint32_t)0x0000FFFFU) /*!< can filter 16 bits mask */ + +/* frame type */ +#define CAN_FT_DATA ((uint32_t)0x00000000U) /*!< data frame */ +#define CAN_FT_REMOTE ((uint32_t)0x00000002U) /*!< remote frame */ + +/* CAN timeout */ +#define CAN_TIMEOUT ((uint32_t)0x0000FFFFU) /*!< timeout value */ + +/* interrupt enable bits */ +#define CAN_INT_TME CAN_INTEN_TMEIE /*!< transmit mailbox empty interrupt enable */ +#define CAN_INT_RFNE0 CAN_INTEN_RFNEIE0 /*!< receive FIFO0 not empty interrupt enable */ +#define CAN_INT_RFF0 CAN_INTEN_RFFIE0 /*!< receive FIFO0 full interrupt enable */ +#define CAN_INT_RFO0 CAN_INTEN_RFOIE0 /*!< receive FIFO0 overfull interrupt enable */ +#define CAN_INT_RFNE1 CAN_INTEN_RFNEIE1 /*!< receive FIFO1 not empty interrupt enable */ +#define CAN_INT_RFF1 CAN_INTEN_RFFIE1 /*!< receive FIFO1 full interrupt enable */ +#define CAN_INT_RFO1 CAN_INTEN_RFOIE1 /*!< receive FIFO1 overfull interrupt enable */ +#define CAN_INT_WERR CAN_INTEN_WERRIE /*!< warning error interrupt enable */ +#define CAN_INT_PERR CAN_INTEN_PERRIE /*!< passive error interrupt enable */ +#define CAN_INT_BO CAN_INTEN_BOIE /*!< bus-off interrupt enable */ +#define CAN_INT_ERRN CAN_INTEN_ERRNIE /*!< error number interrupt enable */ +#define CAN_INT_ERR CAN_INTEN_ERRIE /*!< error interrupt enable */ +#define CAN_INT_WAKEUP CAN_INTEN_WIE /*!< wakeup interrupt enable */ +#define CAN_INT_SLPW CAN_INTEN_SLPWIE /*!< sleep working interrupt enable */ + +/* function declarations */ +/* deinitialize CAN */ +void can_deinit(uint32_t can_periph); +/* initialize CAN struct */ +void can_struct_para_init(can_struct_type_enum type, void* p_struct); +/* initialize CAN */ +ErrStatus can_init(uint32_t can_periph, can_parameter_struct* can_parameter_init); +/* CAN filter init */ +void can_filter_init(can_filter_parameter_struct* can_filter_parameter_init); +/* set can1 fliter start bank number */ +void can1_filter_start_bank(uint8_t start_bank); +/* enable functions */ +/* CAN debug freeze enable */ +void can_debug_freeze_enable(uint32_t can_periph); +/* CAN debug freeze disable */ +void can_debug_freeze_disable(uint32_t can_periph); +/* CAN time trigger mode enable */ +void can_time_trigger_mode_enable(uint32_t can_periph); +/* CAN time trigger mode disable */ +void can_time_trigger_mode_disable(uint32_t can_periph); + +/* transmit functions */ +/* transmit CAN message */ +uint8_t can_message_transmit(uint32_t can_periph, can_trasnmit_message_struct* transmit_message); +/* get CAN transmit state */ +can_transmit_state_enum can_transmit_states(uint32_t can_periph, uint8_t mailbox_number); +/* stop CAN transmission */ +void can_transmission_stop(uint32_t can_periph, uint8_t mailbox_number); +/* CAN receive message */ +void can_message_receive(uint32_t can_periph, uint8_t fifo_number, can_receive_message_struct* receive_message); +/* CAN release fifo */ +void can_fifo_release(uint32_t can_periph, uint8_t fifo_number); +/* CAN receive message length */ +uint8_t can_receive_message_length_get(uint32_t can_periph, uint8_t fifo_number); +/* CAN working mode */ +ErrStatus can_working_mode_set(uint32_t can_periph, uint8_t working_mode); +/* CAN wakeup from sleep mode */ +ErrStatus can_wakeup(uint32_t can_periph); + +/* CAN get error */ +can_error_enum can_error_get(uint32_t can_periph); +/* get CAN receive error number */ +uint8_t can_receive_error_number_get(uint32_t can_periph); +/* get CAN transmit error number */ +uint8_t can_transmit_error_number_get(uint32_t can_periph); + +/* CAN interrupt enable */ +void can_interrupt_enable(uint32_t can_periph, uint32_t interrupt); +/* CAN interrupt disable */ +void can_interrupt_disable(uint32_t can_periph, uint32_t interrupt); +/* CAN get flag state */ +FlagStatus can_flag_get(uint32_t can_periph, can_flag_enum flag); +/* CAN clear flag state */ +void can_flag_clear(uint32_t can_periph, can_flag_enum flag); +/* CAN get interrupt flag state */ +FlagStatus can_interrupt_flag_get(uint32_t can_periph, can_interrupt_flag_enum flag); +/* CAN clear interrupt flag state */ +void can_interrupt_flag_clear(uint32_t can_periph, can_interrupt_flag_enum flag); + +#endif /* GD32F4XX_CAN_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_crc.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_crc.h new file mode 100644 index 0000000000..f1948a2c91 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_crc.h @@ -0,0 +1,80 @@ +/*! + \file gd32f4xx_crc.h + \brief definitions for the CRC + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_CRC_H +#define GD32F4XX_CRC_H + +#include "gd32f4xx.h" + +/* CRC definitions */ +#define CRC CRC_BASE + +/* registers definitions */ +#define CRC_DATA REG32(CRC + 0x00U) /*!< CRC data register */ +#define CRC_FDATA REG32(CRC + 0x04U) /*!< CRC free data register */ +#define CRC_CTL REG32(CRC + 0x08U) /*!< CRC control register */ + +/* bits definitions */ +/* CRC_DATA */ +#define CRC_DATA_DATA BITS(0,31) /*!< CRC calculation result bits */ + +/* CRC_FDATA */ +#define CRC_FDATA_FDATA BITS(0,7) /*!< CRC free data bits */ + +/* CRC_CTL */ +#define CRC_CTL_RST BIT(0) /*!< CRC reset CRC_DATA register bit */ + + +/* function declarations */ +/* deinit CRC calculation unit */ +void crc_deinit(void); + +/* reset data register(CRC_DATA) to the value of 0xFFFFFFFF */ +void crc_data_register_reset(void); +/* read the value of the data register */ +uint32_t crc_data_register_read(void); + +/* read the value of the free data register */ +uint8_t crc_free_data_register_read(void); +/* write data to the free data register */ +void crc_free_data_register_write(uint8_t free_data); + +/* calculate the CRC value of a 32-bit data */ +uint32_t crc_single_data_calculate(uint32_t sdata); +/* calculate the CRC value of an array of 32-bit values */ +uint32_t crc_block_data_calculate(uint32_t array[], uint32_t size); + +#endif /* GD32F4XX_CRC_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_ctc.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_ctc.h new file mode 100644 index 0000000000..3698eb1930 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_ctc.h @@ -0,0 +1,192 @@ +/*! + \file gd32f4xx_ctc.h + \brief definitions for the CTC + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_CTC_H +#define GD32F4XX_CTC_H + +#include "gd32f4xx.h" + +/* CTC definitions */ +#define CTC CTC_BASE + +/* registers definitions */ +#define CTC_CTL0 REG32((CTC) + 0x00U) /*!< CTC control register 0 */ +#define CTC_CTL1 REG32((CTC) + 0x04U) /*!< CTC control register 1 */ +#define CTC_STAT REG32((CTC) + 0x08U) /*!< CTC status register */ +#define CTC_INTC REG32((CTC) + 0x0CU) /*!< CTC interrupt clear register */ + +/* bits definitions */ +/* CTC_CTL0 */ +#define CTC_CTL0_CKOKIE BIT(0) /*!< clock trim OK(CKOKIF) interrupt enable */ +#define CTC_CTL0_CKWARNIE BIT(1) /*!< clock trim warning(CKWARNIF) interrupt enable */ +#define CTC_CTL0_ERRIE BIT(2) /*!< error(ERRIF) interrupt enable */ +#define CTC_CTL0_EREFIE BIT(3) /*!< EREFIF interrupt enable */ +#define CTC_CTL0_CNTEN BIT(5) /*!< CTC counter enable */ +#define CTC_CTL0_AUTOTRIM BIT(6) /*!< hardware automatically trim mode */ +#define CTC_CTL0_SWREFPUL BIT(7) /*!< software reference source sync pulse */ +#define CTC_CTL0_TRIMVALUE BITS(8,13) /*!< IRC48M trim value */ + +/* CTC_CTL1 */ +#define CTC_CTL1_RLVALUE BITS(0,15) /*!< CTC counter reload value */ +#define CTC_CTL1_CKLIM BITS(16,23) /*!< clock trim base limit value */ +#define CTC_CTL1_REFPSC BITS(24,26) /*!< reference signal source prescaler */ +#define CTC_CTL1_REFSEL BITS(28,29) /*!< reference signal source selection */ +#define CTC_CTL1_USBSOFSEL BIT(30) /*!< USBFS or USBHS SOF signal selection */ +#define CTC_CTL1_REFPOL BIT(31) /*!< reference signal source polarity */ + +/* CTC_STAT */ +#define CTC_STAT_CKOKIF BIT(0) /*!< clock trim OK interrupt flag */ +#define CTC_STAT_CKWARNIF BIT(1) /*!< clock trim warning interrupt flag */ +#define CTC_STAT_ERRIF BIT(2) /*!< error interrupt flag */ +#define CTC_STAT_EREFIF BIT(3) /*!< expect reference interrupt flag */ +#define CTC_STAT_CKERR BIT(8) /*!< clock trim error bit */ +#define CTC_STAT_REFMISS BIT(9) /*!< reference sync pulse miss */ +#define CTC_STAT_TRIMERR BIT(10) /*!< trim value error bit */ +#define CTC_STAT_REFDIR BIT(15) /*!< CTC trim counter direction when reference sync pulse occurred */ +#define CTC_STAT_REFCAP BITS(16,31) /*!< CTC counter capture when reference sync pulse occurred */ + +/* CTC_INTC */ +#define CTC_INTC_CKOKIC BIT(0) /*!< CKOKIF interrupt clear bit */ +#define CTC_INTC_CKWARNIC BIT(1) /*!< CKWARNIF interrupt clear bit */ +#define CTC_INTC_ERRIC BIT(2) /*!< ERRIF interrupt clear bit */ +#define CTC_INTC_EREFIC BIT(3) /*!< EREFIF interrupt clear bit */ + +/* constants definitions */ +/* hardware automatically trim mode definitions */ +#define CTC_HARDWARE_TRIM_MODE_ENABLE CTC_CTL0_AUTOTRIM /*!< hardware automatically trim mode enable*/ +#define CTC_HARDWARE_TRIM_MODE_DISABLE ((uint32_t)0x00000000U) /*!< hardware automatically trim mode disable*/ + +/* reference signal source polarity definitions */ +#define CTC_REFSOURCE_POLARITY_FALLING CTC_CTL1_REFPOL /*!< reference signal source polarity is falling edge*/ +#define CTC_REFSOURCE_POLARITY_RISING ((uint32_t)0x00000000U) /*!< reference signal source polarity is rising edge*/ + +/* USBFS or USBHS SOF signal selection definitions */ +#define CTC_USBSOFSEL_USBHS CTC_CTL1_USBSOFSEL /*!< USBHS SOF signal is selected*/ +#define CTC_USBSOFSEL_USBFS ((uint32_t)0x00000000U) /*!< USBFS SOF signal is selected*/ + +/* reference signal source selection definitions */ +#define CTL1_REFSEL(regval) (BITS(28,29) & ((uint32_t)(regval) << 28)) +#define CTC_REFSOURCE_GPIO CTL1_REFSEL(0) /*!< GPIO is selected */ +#define CTC_REFSOURCE_LXTAL CTL1_REFSEL(1) /*!< LXTAL is clock selected */ +#define CTC_REFSOURCE_USBSOF CTL1_REFSEL(2) /*!< USBSOF is selected */ + +/* reference signal source prescaler definitions */ +#define CTL1_REFPSC(regval) (BITS(24,26) & ((uint32_t)(regval) << 24)) +#define CTC_REFSOURCE_PSC_OFF CTL1_REFPSC(0) /*!< reference signal not divided */ +#define CTC_REFSOURCE_PSC_DIV2 CTL1_REFPSC(1) /*!< reference signal divided by 2 */ +#define CTC_REFSOURCE_PSC_DIV4 CTL1_REFPSC(2) /*!< reference signal divided by 4 */ +#define CTC_REFSOURCE_PSC_DIV8 CTL1_REFPSC(3) /*!< reference signal divided by 8 */ +#define CTC_REFSOURCE_PSC_DIV16 CTL1_REFPSC(4) /*!< reference signal divided by 16 */ +#define CTC_REFSOURCE_PSC_DIV32 CTL1_REFPSC(5) /*!< reference signal divided by 32 */ +#define CTC_REFSOURCE_PSC_DIV64 CTL1_REFPSC(6) /*!< reference signal divided by 64 */ +#define CTC_REFSOURCE_PSC_DIV128 CTL1_REFPSC(7) /*!< reference signal divided by 128 */ + +/* CTC interrupt enable definitions */ +#define CTC_INT_CKOK CTC_CTL0_CKOKIE /*!< clock trim OK interrupt enable */ +#define CTC_INT_CKWARN CTC_CTL0_CKWARNIE /*!< clock trim warning interrupt enable */ +#define CTC_INT_ERR CTC_CTL0_ERRIE /*!< error interrupt enable */ +#define CTC_INT_EREF CTC_CTL0_EREFIE /*!< expect reference interrupt enable */ + +/* CTC interrupt source definitions */ +#define CTC_INT_FLAG_CKOK CTC_STAT_CKOKIF /*!< clock trim OK interrupt flag */ +#define CTC_INT_FLAG_CKWARN CTC_STAT_CKWARNIF /*!< clock trim warning interrupt flag */ +#define CTC_INT_FLAG_ERR CTC_STAT_ERRIF /*!< error interrupt flag */ +#define CTC_INT_FLAG_EREF CTC_STAT_EREFIF /*!< expect reference interrupt flag */ +#define CTC_INT_FLAG_CKERR CTC_STAT_CKERR /*!< clock trim error bit */ +#define CTC_INT_FLAG_REFMISS CTC_STAT_REFMISS /*!< reference sync pulse miss */ +#define CTC_INT_FLAG_TRIMERR CTC_STAT_TRIMERR /*!< trim value error */ + +/* CTC flag definitions */ +#define CTC_FLAG_CKOK CTC_STAT_CKOKIF /*!< clock trim OK flag */ +#define CTC_FLAG_CKWARN CTC_STAT_CKWARNIF /*!< clock trim warning flag */ +#define CTC_FLAG_ERR CTC_STAT_ERRIF /*!< error flag */ +#define CTC_FLAG_EREF CTC_STAT_EREFIF /*!< expect reference flag */ +#define CTC_FLAG_CKERR CTC_STAT_CKERR /*!< clock trim error bit */ +#define CTC_FLAG_REFMISS CTC_STAT_REFMISS /*!< reference sync pulse miss */ +#define CTC_FLAG_TRIMERR CTC_STAT_TRIMERR /*!< trim value error bit */ + +/* function declarations */ +/* reset ctc clock trim controller */ +void ctc_deinit(void); +/* enable CTC trim counter */ +void ctc_counter_enable(void); +/* disable CTC trim counter */ +void ctc_counter_disable(void); + +/* configure the IRC48M trim value */ +void ctc_irc48m_trim_value_config(uint8_t trim_value); +/* generate software reference source sync pulse */ +void ctc_software_refsource_pulse_generate(void); +/* configure hardware automatically trim mode */ +void ctc_hardware_trim_mode_config(uint32_t hardmode); + +/* configure reference signal source polarity */ +void ctc_refsource_polarity_config(uint32_t polarity); +/* select USBFS or USBHS SOF signal */ +void ctc_usbsof_signal_select(uint32_t usbsof); +/* select reference signal source */ +void ctc_refsource_signal_select(uint32_t refs); +/* configure reference signal source prescaler */ +void ctc_refsource_prescaler_config(uint32_t prescaler); +/* configure clock trim base limit value */ +void ctc_clock_limit_value_config(uint8_t limit_value); +/* configure CTC counter reload value */ +void ctc_counter_reload_value_config(uint16_t reload_value); + +/* read CTC counter capture value when reference sync pulse occurred */ +uint16_t ctc_counter_capture_value_read(void); +/* read CTC trim counter direction when reference sync pulse occurred */ +FlagStatus ctc_counter_direction_read(void); +/* read CTC counter reload value */ +uint16_t ctc_counter_reload_value_read(void); +/* read the IRC48M trim value */ +uint8_t ctc_irc48m_trim_value_read(void); + +/* interrupt & flag functions */ +/* enable the CTC interrupt */ +void ctc_interrupt_enable(uint32_t interrupt); +/* disable the CTC interrupt */ +void ctc_interrupt_disable(uint32_t interrupt); +/* get CTC interrupt flag */ +FlagStatus ctc_interrupt_flag_get(uint32_t int_flag); +/* clear CTC interrupt flag */ +void ctc_interrupt_flag_clear(uint32_t int_flag); +/* get CTC flag */ +FlagStatus ctc_flag_get(uint32_t flag); +/* clear CTC flag */ +void ctc_flag_clear(uint32_t flag); + +#endif /* GD32F4XX_CTC_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dac.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dac.h new file mode 100644 index 0000000000..43918a5612 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dac.h @@ -0,0 +1,270 @@ +/*! + \file gd32f4xx_dac.h + \brief definitions for the DAC + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_DAC_H +#define GD32F4XX_DAC_H + +#include "gd32f4xx.h" + +/* DACx(x=0,1) definitions */ +#define DAC DAC_BASE +#define DAC0 0U +#define DAC1 1U + +/* registers definitions */ +#define DAC_CTL REG32(DAC + 0x00U) /*!< DAC control register */ +#define DAC_SWT REG32(DAC + 0x04U) /*!< DAC software trigger register */ +#define DAC0_R12DH REG32(DAC + 0x08U) /*!< DAC0 12-bit right-aligned data holding register */ +#define DAC0_L12DH REG32(DAC + 0x0CU) /*!< DAC0 12-bit left-aligned data holding register */ +#define DAC0_R8DH REG32(DAC + 0x10U) /*!< DAC0 8-bit right-aligned data holding register */ +#define DAC1_R12DH REG32(DAC + 0x14U) /*!< DAC1 12-bit right-aligned data holding register */ +#define DAC1_L12DH REG32(DAC + 0x18U) /*!< DAC1 12-bit left-aligned data holding register */ +#define DAC1_R8DH REG32(DAC + 0x1CU) /*!< DAC1 8-bit right-aligned data holding register */ +#define DACC_R12DH REG32(DAC + 0x20U) /*!< DAC concurrent mode 12-bit right-aligned data holding register */ +#define DACC_L12DH REG32(DAC + 0x24U) /*!< DAC concurrent mode 12-bit left-aligned data holding register */ +#define DACC_R8DH REG32(DAC + 0x28U) /*!< DAC concurrent mode 8-bit right-aligned data holding register */ +#define DAC0_DO REG32(DAC + 0x2CU) /*!< DAC0 data output register */ +#define DAC1_DO REG32(DAC + 0x30U) /*!< DAC1 data output register */ +#define DAC_STAT REG32(DAC + 0x34U) /*!< DAC status register */ + +/* bits definitions */ +/* DAC_CTL */ +#define DAC_CTL_DEN0 BIT(0) /*!< DAC0 enable/disable bit */ +#define DAC_CTL_DBOFF0 BIT(1) /*!< DAC0 output buffer turn on/turn off bit */ +#define DAC_CTL_DTEN0 BIT(2) /*!< DAC0 trigger enable/disable bit */ +#define DAC_CTL_DTSEL0 BITS(3,5) /*!< DAC0 trigger source selection enable/disable bits */ +#define DAC_CTL_DWM0 BITS(6,7) /*!< DAC0 noise wave mode */ +#define DAC_CTL_DWBW0 BITS(8,11) /*!< DAC0 noise wave bit width */ +#define DAC_CTL_DDMAEN0 BIT(12) /*!< DAC0 DMA enable/disable bit */ +#define DAC_CTL_DDUDRIE0 BIT(13) /*!< DAC0 DMA underrun interrupt enable/disable bit */ +#define DAC_CTL_DEN1 BIT(16) /*!< DAC1 enable/disable bit */ +#define DAC_CTL_DBOFF1 BIT(17) /*!< DAC1 output buffer turn on/turn off bit */ +#define DAC_CTL_DTEN1 BIT(18) /*!< DAC1 trigger enable/disable bit */ +#define DAC_CTL_DTSEL1 BITS(19,21) /*!< DAC1 trigger source selection enable/disable bits */ +#define DAC_CTL_DWM1 BITS(22,23) /*!< DAC1 noise wave mode */ +#define DAC_CTL_DWBW1 BITS(24,27) /*!< DAC1 noise wave bit width */ +#define DAC_CTL_DDMAEN1 BIT(28) /*!< DAC1 DMA enable/disable bit */ +#define DAC_CTL_DDUDRIE1 BIT(29) /*!< DAC1 DMA underrun interrupt enable/disable bit */ + +/* DAC_SWT */ +#define DAC_SWT_SWTR0 BIT(0) /*!< DAC0 software trigger bit, cleared by hardware */ +#define DAC_SWT_SWTR1 BIT(1) /*!< DAC1 software trigger bit, cleared by hardware */ + +/* DAC0_R12DH */ +#define DAC0_R12DH_DAC0_DH BITS(0,11) /*!< DAC0 12-bit right-aligned data bits */ + +/* DAC0_L12DH */ +#define DAC0_L12DH_DAC0_DH BITS(4,15) /*!< DAC0 12-bit left-aligned data bits */ + +/* DAC0_R8DH */ +#define DAC0_R8DH_DAC0_DH BITS(0,7) /*!< DAC0 8-bit right-aligned data bits */ + +/* DAC1_R12DH */ +#define DAC1_R12DH_DAC1_DH BITS(0,11) /*!< DAC1 12-bit right-aligned data bits */ + +/* DAC1_L12DH */ +#define DAC1_L12DH_DAC1_DH BITS(4,15) /*!< DAC1 12-bit left-aligned data bits */ + +/* DAC1_R8DH */ +#define DAC1_R8DH_DAC1_DH BITS(0,7) /*!< DAC1 8-bit right-aligned data bits */ + +/* DACC_R12DH */ +#define DACC_R12DH_DAC0_DH BITS(0,11) /*!< DAC concurrent mode DAC0 12-bit right-aligned data bits */ +#define DACC_R12DH_DAC1_DH BITS(16,27) /*!< DAC concurrent mode DAC1 12-bit right-aligned data bits */ + +/* DACC_L12DH */ +#define DACC_L12DH_DAC0_DH BITS(4,15) /*!< DAC concurrent mode DAC0 12-bit left-aligned data bits */ +#define DACC_L12DH_DAC1_DH BITS(20,31) /*!< DAC concurrent mode DAC1 12-bit left-aligned data bits */ + +/* DACC_R8DH */ +#define DACC_R8DH_DAC0_DH BITS(0,7) /*!< DAC concurrent mode DAC0 8-bit right-aligned data bits */ +#define DACC_R8DH_DAC1_DH BITS(8,15) /*!< DAC concurrent mode DAC1 8-bit right-aligned data bits */ + +/* DAC0_DO */ +#define DAC0_DO_DAC0_DO BITS(0,11) /*!< DAC0 12-bit output data bits */ + +/* DAC1_DO */ +#define DAC1_DO_DAC1_DO BITS(0,11) /*!< DAC1 12-bit output data bits */ + +/* DAC_STAT */ +#define DAC_STAT_DDUDR0 BIT(13) /*!< DAC0 DMA underrun flag */ +#define DAC_STAT_DDUDR1 BIT(29) /*!< DAC1 DMA underrun flag */ + +/* constants definitions */ +/* DAC trigger source */ +#define CTL_DTSEL(regval) (BITS(3,5) & ((uint32_t)(regval) << 3)) +#define DAC_TRIGGER_T5_TRGO CTL_DTSEL(0) /*!< TIMER5 TRGO */ +#define DAC_TRIGGER_T7_TRGO CTL_DTSEL(1) /*!< TIMER7 TRGO */ +#define DAC_TRIGGER_T6_TRGO CTL_DTSEL(2) /*!< TIMER6 TRGO */ +#define DAC_TRIGGER_T4_TRGO CTL_DTSEL(3) /*!< TIMER4 TRGO */ +#define DAC_TRIGGER_T1_TRGO CTL_DTSEL(4) /*!< TIMER1 TRGO */ +#define DAC_TRIGGER_T3_TRGO CTL_DTSEL(5) /*!< TIMER3 TRGO */ +#define DAC_TRIGGER_EXTI_9 CTL_DTSEL(6) /*!< EXTI interrupt line9 event */ +#define DAC_TRIGGER_SOFTWARE CTL_DTSEL(7) /*!< software trigger */ + +/* DAC noise wave mode */ +#define CTL_DWM(regval) (BITS(6,7) & ((uint32_t)(regval) << 6)) +#define DAC_WAVE_DISABLE CTL_DWM(0) /*!< wave disable */ +#define DAC_WAVE_MODE_LFSR CTL_DWM(1) /*!< LFSR noise mode */ +#define DAC_WAVE_MODE_TRIANGLE CTL_DWM(2) /*!< triangle noise mode */ + +/* DAC noise wave bit width */ +#define DWBW(regval) (BITS(8,11) & ((uint32_t)(regval) << 8)) +#define DAC_WAVE_BIT_WIDTH_1 DWBW(0) /*!< bit width of the wave signal is 1 */ +#define DAC_WAVE_BIT_WIDTH_2 DWBW(1) /*!< bit width of the wave signal is 2 */ +#define DAC_WAVE_BIT_WIDTH_3 DWBW(2) /*!< bit width of the wave signal is 3 */ +#define DAC_WAVE_BIT_WIDTH_4 DWBW(3) /*!< bit width of the wave signal is 4 */ +#define DAC_WAVE_BIT_WIDTH_5 DWBW(4) /*!< bit width of the wave signal is 5 */ +#define DAC_WAVE_BIT_WIDTH_6 DWBW(5) /*!< bit width of the wave signal is 6 */ +#define DAC_WAVE_BIT_WIDTH_7 DWBW(6) /*!< bit width of the wave signal is 7 */ +#define DAC_WAVE_BIT_WIDTH_8 DWBW(7) /*!< bit width of the wave signal is 8 */ +#define DAC_WAVE_BIT_WIDTH_9 DWBW(8) /*!< bit width of the wave signal is 9 */ +#define DAC_WAVE_BIT_WIDTH_10 DWBW(9) /*!< bit width of the wave signal is 10 */ +#define DAC_WAVE_BIT_WIDTH_11 DWBW(10) /*!< bit width of the wave signal is 11 */ +#define DAC_WAVE_BIT_WIDTH_12 DWBW(11) /*!< bit width of the wave signal is 12 */ + +/* unmask LFSR bits in DAC LFSR noise mode */ +#define DAC_LFSR_BIT0 DAC_WAVE_BIT_WIDTH_1 /*!< unmask the LFSR bit0 */ +#define DAC_LFSR_BITS1_0 DAC_WAVE_BIT_WIDTH_2 /*!< unmask the LFSR bits[1:0] */ +#define DAC_LFSR_BITS2_0 DAC_WAVE_BIT_WIDTH_3 /*!< unmask the LFSR bits[2:0] */ +#define DAC_LFSR_BITS3_0 DAC_WAVE_BIT_WIDTH_4 /*!< unmask the LFSR bits[3:0] */ +#define DAC_LFSR_BITS4_0 DAC_WAVE_BIT_WIDTH_5 /*!< unmask the LFSR bits[4:0] */ +#define DAC_LFSR_BITS5_0 DAC_WAVE_BIT_WIDTH_6 /*!< unmask the LFSR bits[5:0] */ +#define DAC_LFSR_BITS6_0 DAC_WAVE_BIT_WIDTH_7 /*!< unmask the LFSR bits[6:0] */ +#define DAC_LFSR_BITS7_0 DAC_WAVE_BIT_WIDTH_8 /*!< unmask the LFSR bits[7:0] */ +#define DAC_LFSR_BITS8_0 DAC_WAVE_BIT_WIDTH_9 /*!< unmask the LFSR bits[8:0] */ +#define DAC_LFSR_BITS9_0 DAC_WAVE_BIT_WIDTH_10 /*!< unmask the LFSR bits[9:0] */ +#define DAC_LFSR_BITS10_0 DAC_WAVE_BIT_WIDTH_11 /*!< unmask the LFSR bits[10:0] */ +#define DAC_LFSR_BITS11_0 DAC_WAVE_BIT_WIDTH_12 /*!< unmask the LFSR bits[11:0] */ + +/* DAC data alignment */ +#define DATA_ALIGN(regval) (BITS(0,1) & ((uint32_t)(regval) << 0)) +#define DAC_ALIGN_12B_R DATA_ALIGN(0) /*!< data right 12 bit alignment */ +#define DAC_ALIGN_12B_L DATA_ALIGN(1) /*!< data left 12 bit alignment */ +#define DAC_ALIGN_8B_R DATA_ALIGN(2) /*!< data right 8 bit alignment */ + +/* triangle amplitude in DAC triangle noise mode */ +#define DAC_TRIANGLE_AMPLITUDE_1 DAC_WAVE_BIT_WIDTH_1 /*!< triangle amplitude is 1 */ +#define DAC_TRIANGLE_AMPLITUDE_3 DAC_WAVE_BIT_WIDTH_2 /*!< triangle amplitude is 3 */ +#define DAC_TRIANGLE_AMPLITUDE_7 DAC_WAVE_BIT_WIDTH_3 /*!< triangle amplitude is 7 */ +#define DAC_TRIANGLE_AMPLITUDE_15 DAC_WAVE_BIT_WIDTH_4 /*!< triangle amplitude is 15 */ +#define DAC_TRIANGLE_AMPLITUDE_31 DAC_WAVE_BIT_WIDTH_5 /*!< triangle amplitude is 31 */ +#define DAC_TRIANGLE_AMPLITUDE_63 DAC_WAVE_BIT_WIDTH_6 /*!< triangle amplitude is 63 */ +#define DAC_TRIANGLE_AMPLITUDE_127 DAC_WAVE_BIT_WIDTH_7 /*!< triangle amplitude is 127 */ +#define DAC_TRIANGLE_AMPLITUDE_255 DAC_WAVE_BIT_WIDTH_8 /*!< triangle amplitude is 255 */ +#define DAC_TRIANGLE_AMPLITUDE_511 DAC_WAVE_BIT_WIDTH_9 /*!< triangle amplitude is 511 */ +#define DAC_TRIANGLE_AMPLITUDE_1023 DAC_WAVE_BIT_WIDTH_10 /*!< triangle amplitude is 1023 */ +#define DAC_TRIANGLE_AMPLITUDE_2047 DAC_WAVE_BIT_WIDTH_11 /*!< triangle amplitude is 2047 */ +#define DAC_TRIANGLE_AMPLITUDE_4095 DAC_WAVE_BIT_WIDTH_12 /*!< triangle amplitude is 4095 */ + +/* function declarations */ +/* initialization functions */ +/* deinitialize DAC */ +void dac_deinit(void); +/* enable DAC */ +void dac_enable(uint32_t dac_periph); +/* disable DAC */ +void dac_disable(uint32_t dac_periph); +/* enable DAC DMA */ +void dac_dma_enable(uint32_t dac_periph); +/* disable DAC DMA */ +void dac_dma_disable(uint32_t dac_periph); +/* enable DAC output buffer */ +void dac_output_buffer_enable(uint32_t dac_periph); +/* disable DAC output buffer */ +void dac_output_buffer_disable(uint32_t dac_periph); +/* get the last data output value */ +uint16_t dac_output_value_get(uint32_t dac_periph); +/* set DAC data holding register value */ +void dac_data_set(uint32_t dac_periph, uint32_t dac_align, uint16_t data); + +/* DAC trigger configuration */ +/* enable DAC trigger */ +void dac_trigger_enable(uint32_t dac_periph); +/* disable DAC trigger */ +void dac_trigger_disable(uint32_t dac_periph); +/* configure DAC trigger source */ +void dac_trigger_source_config(uint32_t dac_periph, uint32_t triggersource); +/* enable DAC software trigger */ +void dac_software_trigger_enable(uint32_t dac_periph); +/* disable DAC software trigger */ +void dac_software_trigger_disable(uint32_t dac_periph); + +/* DAC wave mode configuration */ +/* configure DAC wave mode */ +void dac_wave_mode_config(uint32_t dac_periph, uint32_t wave_mode); +/* configure DAC wave bit width */ +void dac_wave_bit_width_config(uint32_t dac_periph, uint32_t bit_width); +/* configure DAC LFSR noise mode */ +void dac_lfsr_noise_config(uint32_t dac_periph, uint32_t unmask_bits); +/* configure DAC triangle noise mode */ +void dac_triangle_noise_config(uint32_t dac_periph, uint32_t amplitude); + +/* DAC concurrent mode configuration */ +/* enable DAC concurrent mode */ +void dac_concurrent_enable(void); +/* disable DAC concurrent mode */ +void dac_concurrent_disable(void); +/* enable DAC concurrent software trigger */ +void dac_concurrent_software_trigger_enable(void); +/* disable DAC concurrent software trigger */ +void dac_concurrent_software_trigger_disable(void); +/* enable DAC concurrent buffer function */ +void dac_concurrent_output_buffer_enable(void); +/* disable DAC concurrent buffer function */ +void dac_concurrent_output_buffer_disable(void); +/* set DAC concurrent mode data holding register value */ +void dac_concurrent_data_set(uint32_t dac_align, uint16_t data0, uint16_t data1); +/* enable DAC concurrent interrupt */ +void dac_concurrent_interrupt_enable(void); +/* disable DAC concurrent interrupt */ +void dac_concurrent_interrupt_disable(void); + +/* DAC interrupt configuration */ +/* enable DAC interrupt(DAC DMA underrun interrupt) */ +void dac_interrupt_enable(uint32_t dac_periph); +/* disable DAC interrupt(DAC DMA underrun interrupt) */ +void dac_interrupt_disable(uint32_t dac_periph); +/* get the specified DAC flag(DAC DMA underrun flag) */ +FlagStatus dac_flag_get(uint32_t dac_periph); +/* clear the specified DAC flag(DAC DMA underrun flag) */ +void dac_flag_clear(uint32_t dac_periph); +/* get the specified DAC interrupt flag(DAC DMA underrun interrupt flag) */ +FlagStatus dac_interrupt_flag_get(uint32_t dac_periph); +/* clear the specified DAC interrupt flag(DAC DMA underrun interrupt flag) */ +void dac_interrupt_flag_clear(uint32_t dac_periph); + +#endif /* GD32F4XX_DAC_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dbg.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dbg.h new file mode 100644 index 0000000000..ea6bab96a8 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dbg.h @@ -0,0 +1,161 @@ +/*! + \file gd32f4xx_dbg.h + \brief definitions for the DBG + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_DBG_H +#define GD32F4XX_DBG_H + +#include "gd32f4xx.h" + +/* DBG definitions */ +#define DBG DBG_BASE + +/* registers definitions */ +#define DBG_ID REG32(DBG + 0x00U) /*!< DBG_ID code register */ +#define DBG_CTL0 REG32(DBG + 0x04U) /*!< DBG control register 0 */ +#define DBG_CTL1 REG32(DBG + 0x08U) /*!< DBG control register 1 */ +#define DBG_CTL2 REG32(DBG + 0x0CU) /*!< DBG control register 2 */ + +/* bits definitions */ +/* DBG_ID */ +#define DBG_ID_ID_CODE BITS(0,31) /*!< DBG ID code values */ + +/* DBG_CTL0 */ +#define DBG_CTL0_SLP_HOLD BIT(0) /*!< keep debugger connection during sleep mode */ +#define DBG_CTL0_DSLP_HOLD BIT(1) /*!< keep debugger connection during deepsleep mode */ +#define DBG_CTL0_STB_HOLD BIT(2) /*!< keep debugger connection during standby mode */ +#define DBG_CTL0_TRACE_IOEN BIT(5) /*!< enable trace pin assignment */ +#define DBG_CTL0_TRACE_MODE BITS(6,7) /*!< trace pin mode selection */ + +/* DBG_CTL1 */ +#define DBG_CTL1_TIMER1_HOLD BIT(0) /*!< hold TIMER1 counter when core is halted */ +#define DBG_CTL1_TIMER2_HOLD BIT(1) /*!< hold TIMER2 counter when core is halted */ +#define DBG_CTL1_TIMER3_HOLD BIT(2) /*!< hold TIMER3 counter when core is halted */ +#define DBG_CTL1_TIMER4_HOLD BIT(3) /*!< hold TIMER4 counter when core is halted */ +#define DBG_CTL1_TIMER5_HOLD BIT(4) /*!< hold TIMER5 counter when core is halted */ +#define DBG_CTL1_TIMER6_HOLD BIT(5) /*!< hold TIMER6 counter when core is halted */ +#define DBG_CTL1_TIMER11_HOLD BIT(6) /*!< hold TIMER11 counter when core is halted */ +#define DBG_CTL1_TIMER12_HOLD BIT(7) /*!< hold TIMER12 counter when core is halted */ +#define DBG_CTL1_TIMER13_HOLD BIT(8) /*!< hold TIMER13 counter when core is halted */ +#define DBG_CTL1_RTC_HOLD BIT(10) /*!< hold RTC calendar and wakeup counter when core is halted */ +#define DBG_CTL1_WWDGT_HOLD BIT(11) /*!< debug WWDGT kept when core is halted */ +#define DBG_CTL1_FWDGT_HOLD BIT(12) /*!< debug FWDGT kept when core is halted */ +#define DBG_CTL1_I2C0_HOLD BIT(21) /*!< hold I2C0 smbus when core is halted */ +#define DBG_CTL1_I2C1_HOLD BIT(22) /*!< hold I2C1 smbus when core is halted */ +#define DBG_CTL1_I2C2_HOLD BIT(23) /*!< hold I2C2 smbus when core is halted */ +#define DBG_CTL1_CAN0_HOLD BIT(25) /*!< debug CAN0 kept when core is halted */ +#define DBG_CTL1_CAN1_HOLD BIT(26) /*!< debug CAN1 kept when core is halted */ + +/* DBG_CTL2 */ +#define DBG_CTL2_TIMER0_HOLD BIT(0) /*!< hold TIMER0 counter when core is halted */ +#define DBG_CTL2_TIMER7_HOLD BIT(1) /*!< hold TIMER7 counter when core is halted */ +#define DBG_CTL2_TIMER8_HOLD BIT(16) /*!< hold TIMER8 counter when core is halted */ +#define DBG_CTL2_TIMER9_HOLD BIT(17) /*!< hold TIMER9 counter when core is halted */ +#define DBG_CTL2_TIMER10_HOLD BIT(18) /*!< hold TIMER10 counter when core is halted */ + +/* constants definitions */ +#define DBG_LOW_POWER_SLEEP DBG_CTL0_SLP_HOLD /*!< keep debugger connection during sleep mode */ +#define DBG_LOW_POWER_DEEPSLEEP DBG_CTL0_DSLP_HOLD /*!< keep debugger connection during deepsleep mode */ +#define DBG_LOW_POWER_STANDBY DBG_CTL0_STB_HOLD /*!< keep debugger connection during standby mode */ + +/* define the peripheral debug hold bit position and its register index offset */ +#define DBG_REGIDX_BIT(regidx, bitpos) (((regidx) << 6) | (bitpos)) +#define DBG_REG_VAL(periph) (REG32(DBG + ((uint32_t)(periph) >> 6))) +#define DBG_BIT_POS(val) ((uint32_t)(val) & 0x1FU) + +/* register index */ +enum dbg_reg_idx +{ + DBG_IDX_CTL0 = 0x04U, + DBG_IDX_CTL1 = 0x08U, + DBG_IDX_CTL2 = 0x0CU +}; + +typedef enum +{ + DBG_TIMER1_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 0U), /*!< hold TIMER1 counter when core is halted */ + DBG_TIMER2_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 1U), /*!< hold TIMER2 counter when core is halted */ + DBG_TIMER3_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 2U), /*!< hold TIMER3 counter when core is halted */ + DBG_TIMER4_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 3U), /*!< hold TIMER4 counter when core is halted */ + DBG_TIMER5_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 4U), /*!< hold TIMER5 counter when core is halted */ + DBG_TIMER6_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 5U), /*!< hold TIMER6 counter when core is halted */ + DBG_TIMER11_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 6U), /*!< hold TIMER11 counter when core is halted */ + DBG_TIMER12_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 7U), /*!< hold TIMER12 counter when core is halted */ + DBG_TIMER13_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 8U), /*!< hold TIMER13 counter when core is halted */ + DBG_RTC_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 10U), /*!< hold RTC calendar and wakeup counter when core is halted */ + DBG_WWDGT_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 11U), /*!< debug WWDGT kept when core is halted */ + DBG_FWDGT_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 12U), /*!< debug FWDGT kept when core is halted */ + DBG_I2C0_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 21U), /*!< hold I2C0 smbus when core is halted */ + DBG_I2C1_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 22U), /*!< hold I2C1 smbus when core is halted */ + DBG_I2C2_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 23U), /*!< hold I2C2 smbus when core is halted */ + DBG_CAN0_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 25U), /*!< debug CAN0 kept when core is halted */ + DBG_CAN1_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 26U), /*!< debug CAN1 kept when core is halted */ + DBG_TIMER0_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL2, 0U), /*!< hold TIMER0 counter when core is halted */ + DBG_TIMER7_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL2, 1U), /*!< hold TIMER7 counter when core is halted */ + DBG_TIMER8_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL2, 16U), /*!< hold TIMER8 counter when core is halted */ + DBG_TIMER9_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL2, 17U), /*!< hold TIMER9 counter when core is halted */ + DBG_TIMER10_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL2, 18U) /*!< hold TIMER10 counter when core is halted */ +}dbg_periph_enum; + +#define CTL0_TRACE_MODE(regval) (BITS(6,7)&((uint32_t)(regval)<<6)) +#define TRACE_MODE_ASYNC CTL0_TRACE_MODE(0) /*!< trace pin used for async mode */ +#define TRACE_MODE_SYNC_DATASIZE_1 CTL0_TRACE_MODE(1) /*!< trace pin used for sync mode and data size is 1 */ +#define TRACE_MODE_SYNC_DATASIZE_2 CTL0_TRACE_MODE(2) /*!< trace pin used for sync mode and data size is 2 */ +#define TRACE_MODE_SYNC_DATASIZE_4 CTL0_TRACE_MODE(3) /*!< trace pin used for sync mode and data size is 4 */ + +/* function declarations */ +/* deinitialize the DBG */ +void dbg_deinit(void); +/* read DBG_ID code register */ +uint32_t dbg_id_get(void); + +/* enable low power behavior when the MCU is in debug mode */ +void dbg_low_power_enable(uint32_t dbg_low_power); +/* disable low power behavior when the MCU is in debug mode */ +void dbg_low_power_disable(uint32_t dbg_low_power); + +/* enable peripheral behavior when the MCU is in debug mode */ +void dbg_periph_enable(dbg_periph_enum dbg_periph); +/* disable peripheral behavior when the MCU is in debug mode */ +void dbg_periph_disable(dbg_periph_enum dbg_periph); + +/* enable trace pin assignment */ +void dbg_trace_pin_enable(void); +/* disable trace pin assignment */ +void dbg_trace_pin_disable(void); +/* set trace pin mode */ +void dbg_trace_pin_mode_set(uint32_t trace_mode); + +#endif /* GD32F4XX_DBG_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dci.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dci.h new file mode 100644 index 0000000000..6e2a0b3f8f --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dci.h @@ -0,0 +1,238 @@ +/*! + \file gd32f4xx_dci.h + \brief definitions for the DCI + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_DCI_H +#define GD32F4XX_DCI_H + +#include "gd32f4xx.h" + +/* DCI definitions */ +#define DCI DCI_BASE + +/* registers definitions */ +#define DCI_CTL REG32(DCI + 0x00U) /*!< DCI control register */ +#define DCI_STAT0 REG32(DCI + 0x04U) /*!< DCI status register 0 */ +#define DCI_STAT1 REG32(DCI + 0x08U) /*!< DCI status register 1 */ +#define DCI_INTEN REG32(DCI + 0x0CU) /*!< DCI interrupt enable register */ +#define DCI_INTF REG32(DCI + 0x10U) /*!< DCI interrupt flag register */ +#define DCI_INTC REG32(DCI + 0x14U) /*!< DCI interrupt clear register */ +#define DCI_SC REG32(DCI + 0x18U) /*!< DCI synchronization codes register */ +#define DCI_SCUMSK REG32(DCI + 0x1CU) /*!< DCI synchronization codes unmask register */ +#define DCI_CWSPOS REG32(DCI + 0x20U) /*!< DCI cropping window start position register */ +#define DCI_CWSZ REG32(DCI + 0x24U) /*!< DCI cropping window size register */ +#define DCI_DATA REG32(DCI + 0x28U) /*!< DCI data register */ + +/* bits definitions */ +/* DCI_CTL */ +#define DCI_CTL_CAP BIT(0) /*!< capture enable */ +#define DCI_CTL_SNAP BIT(1) /*!< snapshot mode */ +#define DCI_CTL_WDEN BIT(2) /*!< window enable */ +#define DCI_CTL_JM BIT(3) /*!< JPEG mode */ +#define DCI_CTL_ESM BIT(4) /*!< embedded synchronous mode */ +#define DCI_CTL_CKS BIT(5) /*!< clock polarity selection */ +#define DCI_CTL_HPS BIT(6) /*!< horizontal polarity selection */ +#define DCI_CTL_VPS BIT(7) /*!< vertical polarity selection */ +#define DCI_CTL_FR BITS(8,9) /*!< frame rate */ +#define DCI_CTL_DCIF BITS(10,11) /*!< digital camera interface format */ +#define DCI_CTL_DCIEN BIT(14) /*!< DCI enable */ + +/* DCI_STAT0 */ +#define DCI_STAT0_HS BIT(0) /*!< HS line status */ +#define DCI_STAT0_VS BIT(1) /*!< VS line status */ +#define DCI_STAT0_FV BIT(2) /*!< FIFO valid */ + +/* DCI_STAT1 */ +#define DCI_STAT1_EFF BIT(0) /*!< end of frame flag */ +#define DCI_STAT1_OVRF BIT(1) /*!< FIFO overrun flag */ +#define DCI_STAT1_ESEF BIT(2) /*!< embedded synchronous error flag */ +#define DCI_STAT1_VSF BIT(3) /*!< vsync flag */ +#define DCI_STAT1_ELF BIT(4) /*!< end of line flag */ + +/* DCI_INTEN */ +#define DCI_INTEN_EFIE BIT(0) /*!< end of frame interrupt enable */ +#define DCI_INTEN_OVRIE BIT(1) /*!< FIFO overrun interrupt enable */ +#define DCI_INTEN_ESEIE BIT(2) /*!< embedded synchronous error interrupt enable */ +#define DCI_INTEN_VSIE BIT(3) /*!< vsync interrupt enable */ +#define DCI_INTEN_ELIE BIT(4) /*!< end of line interrupt enable */ + +/* DCI_INTF */ +#define DCI_INTF_EFIF BIT(0) /*!< end of frame interrupt flag */ +#define DCI_INTF_OVRIF BIT(1) /*!< FIFO overrun interrupt flag */ +#define DCI_INTF_ESEIF BIT(2) /*!< embedded synchronous error interrupt flag */ +#define DCI_INTF_VSIF BIT(3) /*!< vsync interrupt flag */ +#define DCI_INTF_ELIF BIT(4) /*!< end of line interrupt flag */ + +/* DCI_INTC */ +#define DCI_INTC_EFFC BIT(0) /*!< clear end of frame flag */ +#define DCI_INTC_OVRFC BIT(1) /*!< clear FIFO overrun flag */ +#define DCI_INTC_ESEFC BIT(2) /*!< clear embedded synchronous error flag */ +#define DCI_INTC_VSFC BIT(3) /*!< vsync flag clear */ +#define DCI_INTC_ELFC BIT(4) /*!< end of line flag clear */ + +/* DCI_SC */ +#define DCI_SC_FS BITS(0,7) /*!< frame start code in embedded synchronous mode */ +#define DCI_SC_LS BITS(8,15) /*!< line start code in embedded synchronous mode */ +#define DCI_SC_LE BITS(16,23) /*!< line end code in embedded synchronous mode */ +#define DCI_SC_FE BITS(24,31) /*!< frame end code in embedded synchronous mode */ + +/* DCI_SCUNMSK */ +#define DCI_SCUMSK_FSM BITS(0,7) /*!< frame start code unmask bits in embedded synchronous mode */ +#define DCI_SCUMSK_LSM BITS(8,15) /*!< line start code unmask bits in embedded synchronous mode */ +#define DCI_SCUMSK_LEM BITS(16,23) /*!< line end code unmask bits in embedded synchronous mode */ +#define DCI_SCUMSK_FEM BITS(24,31) /*!< frame end code unmask bits in embedded synchronous mode */ + +/* DCI_CWSPOS */ +#define DCI_CWSPOS_WHSP BITS(0,13) /*!< window horizontal start position */ +#define DCI_CWSPOS_WVSP BITS(16,28) /*!< window vertical start position */ + +/* DCI_CWSZ */ +#define DCI_CWSZ_WHSZ BITS(0,13) /*!< window horizontal size */ +#define DCI_CWSZ_WVSZ BITS(16,29) /*!< window vertical size */ + +/* constants definitions */ +/* DCI parameter structure definitions */ +typedef struct +{ + uint32_t capture_mode; /*!< DCI capture mode: continuous or snapshot */ + uint32_t clock_polarity; /*!< clock polarity selection */ + uint32_t hsync_polarity; /*!< horizontal polarity selection */ + uint32_t vsync_polarity; /*!< vertical polarity selection */ + uint32_t frame_rate; /*!< frame capture rate */ + uint32_t interface_format; /*!< digital camera interface format */ +}dci_parameter_struct; + +#define DCI_CAPTURE_MODE_CONTINUOUS ((uint32_t)0x00000000U) /*!< continuous capture mode */ +#define DCI_CAPTURE_MODE_SNAPSHOT DCI_CTL_SNAP /*!< snapshot capture mode */ + +#define DCI_CK_POLARITY_FALLING ((uint32_t)0x00000000U) /*!< capture at falling edge */ +#define DCI_CK_POLARITY_RISING DCI_CTL_CKS /*!< capture at rising edge */ + +#define DCI_HSYNC_POLARITY_LOW ((uint32_t)0x00000000U) /*!< low level during blanking period */ +#define DCI_HSYNC_POLARITY_HIGH DCI_CTL_HPS /*!< high level during blanking period */ + +#define DCI_VSYNC_POLARITY_LOW ((uint32_t)0x00000000U) /*!< low level during blanking period */ +#define DCI_VSYNC_POLARITY_HIGH DCI_CTL_VPS /*!< high level during blanking period*/ + +#define CTL_FR(regval) (BITS(8,9)&((uint32_t)(regval) << 8U)) +#define DCI_FRAME_RATE_ALL CTL_FR(0) /*!< capture all frames */ +#define DCI_FRAME_RATE_1_2 CTL_FR(1) /*!< capture one in 2 frames */ +#define DCI_FRAME_RATE_1_4 CTL_FR(2) /*!< capture one in 4 frames */ + +#define CTL_DCIF(regval) (BITS(10,11)&((uint32_t)(regval) << 10U)) +#define DCI_INTERFACE_FORMAT_8BITS CTL_DCIF(0) /*!< 8-bit data on every pixel clock */ +#define DCI_INTERFACE_FORMAT_10BITS CTL_DCIF(1) /*!< 10-bit data on every pixel clock */ +#define DCI_INTERFACE_FORMAT_12BITS CTL_DCIF(2) /*!< 12-bit data on every pixel clock */ +#define DCI_INTERFACE_FORMAT_14BITS CTL_DCIF(3) /*!< 14-bit data on every pixel clock */ + +/* DCI interrupt constants definitions */ +#define DCI_INT_EF BIT(0) /*!< end of frame interrupt */ +#define DCI_INT_OVR BIT(1) /*!< FIFO overrun interrupt */ +#define DCI_INT_ESE BIT(2) /*!< embedded synchronous error interrupt */ +#define DCI_INT_VSYNC BIT(3) /*!< vsync interrupt */ +#define DCI_INT_EL BIT(4) /*!< end of line interrupt */ + +/* DCI interrupt flag definitions */ +#define DCI_INT_FLAG_EF BIT(0) /*!< end of frame interrupt flag */ +#define DCI_INT_FLAG_OVR BIT(1) /*!< FIFO overrun interrupt flag */ +#define DCI_INT_FLAG_ESE BIT(2) /*!< embedded synchronous error interrupt flag */ +#define DCI_INT_FLAG_VSYNC BIT(3) /*!< vsync interrupt flag */ +#define DCI_INT_FLAG_EL BIT(4) /*!< end of line interrupt flag */ + +/* DCI flag definitions */ +#define DCI_FLAG_HS DCI_STAT0_HS /*!< HS line status */ +#define DCI_FLAG_VS DCI_STAT0_VS /*!< VS line status */ +#define DCI_FLAG_FV DCI_STAT0_FV /*!< FIFO valid */ +#define DCI_FLAG_EF (DCI_STAT1_EFF | BIT(31)) /*!< end of frame flag */ +#define DCI_FLAG_OVR (DCI_STAT1_OVRF | BIT(31)) /*!< FIFO overrun flag */ +#define DCI_FLAG_ESE (DCI_STAT1_ESEF | BIT(31)) /*!< embedded synchronous error flag */ +#define DCI_FLAG_VSYNC (DCI_STAT1_VSF | BIT(31)) /*!< vsync flag */ +#define DCI_FLAG_EL (DCI_STAT1_ELF | BIT(31)) /*!< end of line flag */ + +/* function declarations */ +/* initialization functions */ +/* DCI deinit */ +void dci_deinit(void); +/* initialize DCI registers */ +void dci_init(dci_parameter_struct* dci_struct); + +/* enable DCI function */ +void dci_enable(void); +/* disable DCI function */ +void dci_disable(void); +/* enable DCI capture */ +void dci_capture_enable(void); +/* disable DCI capture */ +void dci_capture_disable(void); +/* enable DCI jpeg mode */ +void dci_jpeg_enable(void); +/* disable DCI jpeg mode */ +void dci_jpeg_disable(void); + +/* function configuration */ +/* enable cropping window function */ +void dci_crop_window_enable(void); +/* disable cropping window function */ +void dci_crop_window_disable(void); +/* configure DCI cropping window */ +void dci_crop_window_config(uint16_t start_x, uint16_t start_y, uint16_t size_width, uint16_t size_height); + +/* enable embedded synchronous mode */ +void dci_embedded_sync_enable(void); +/* disable embedded synchronous mode */ +void dci_embedded_sync_disable(void); +/* configure synchronous codes in embedded synchronous mode */ +void dci_sync_codes_config(uint8_t frame_start, uint8_t line_start, uint8_t line_end, uint8_t frame_end); +/* configure synchronous codes unmask in embedded synchronous mode */ +void dci_sync_codes_unmask_config(uint8_t frame_start, uint8_t line_start, uint8_t line_end, uint8_t frame_end); + +/* read DCI data register */ +uint32_t dci_data_read(void); + +/* interrupt & flag functions */ +/* get specified flag */ +FlagStatus dci_flag_get(uint32_t flag); +/* enable specified DCI interrupt */ +void dci_interrupt_enable(uint32_t interrupt); +/* disable specified DCI interrupt */ +void dci_interrupt_disable(uint32_t interrupt); + + +/* get specified interrupt flag */ +FlagStatus dci_interrupt_flag_get(uint32_t int_flag); +/* clear specified interrupt flag */ +void dci_interrupt_flag_clear(uint32_t int_flag); + +#endif /* GD32F4XX_DCI_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dma.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dma.h new file mode 100644 index 0000000000..55e9a5adb4 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dma.h @@ -0,0 +1,428 @@ +/*! + \file gd32f4xx_dma.c + \brief definitions for the DMA + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_DMA_H +#define GD32F4XX_DMA_H + +#include "gd32f4xx.h" + +/* DMA definitions */ +#define DMA0 (DMA_BASE) /*!< DMA0 base address */ +#define DMA1 (DMA_BASE + 0x0400U) /*!< DMA1 base address */ + +/* registers definitions */ +#define DMA_INTF0(dmax) REG32((dmax) + 0x00U) /*!< DMA interrupt flag register 0 */ +#define DMA_INTF1(dmax) REG32((dmax) + 0x04U) /*!< DMA interrupt flag register 1 */ +#define DMA_INTC0(dmax) REG32((dmax) + 0x08U) /*!< DMA interrupt flag clear register 0 */ +#define DMA_INTC1(dmax) REG32((dmax) + 0x0CU) /*!< DMA interrupt flag clear register 1 */ + +#define DMA_CH0CTL(dmax) REG32((dmax) + 0x10U) /*!< DMA channel 0 control register */ +#define DMA_CH0CNT(dmax) REG32((dmax) + 0x14U) /*!< DMA channel 0 counter register */ +#define DMA_CH0PADDR(dmax) REG32((dmax) + 0x18U) /*!< DMA channel 0 peripheral base address register */ +#define DMA_CH0M0ADDR(dmax) REG32((dmax) + 0x1CU) /*!< DMA channel 0 memory 0 base address register */ +#define DMA_CH0M1ADDR(dmax) REG32((dmax) + 0x20U) /*!< DMA channel 0 memory 1 base address register */ +#define DMA_CH0FCTL(dmax) REG32((dmax) + 0x24U) /*!< DMA channel 0 FIFO control register */ + +#define DMA_CH1CTL(dmax) REG32((dmax) + 0x28U) /*!< DMA channel 1 control register */ +#define DMA_CH1CNT(dmax) REG32((dmax) + 0x2CU) /*!< DMA channel 1 counter register */ +#define DMA_CH1PADDR(dmax) REG32((dmax) + 0x30U) /*!< DMA channel 1 peripheral base address register */ +#define DMA_CH1M0ADDR(dmax) REG32((dmax) + 0x34U) /*!< DMA channel 1 memory 0 base address register */ +#define DMA_CH1M1ADDR(dmax) REG32((dmax) + 0x38U) /*!< DMA channel 1 memory 1 base address register */ +#define DMA_CH1FCTL(dmax) REG32((dmax) + 0x3CU) /*!< DMA channel 1 FIFO control register */ + +#define DMA_CH2CTL(dmax) REG32((dmax) + 0x40U) /*!< DMA channel 2 control register */ +#define DMA_CH2CNT(dmax) REG32((dmax) + 0x44U) /*!< DMA channel 2 counter register */ +#define DMA_CH2PADDR(dmax) REG32((dmax) + 0x48U) /*!< DMA channel 2 peripheral base address register */ +#define DMA_CH2M0ADDR(dmax) REG32((dmax) + 0x4CU) /*!< DMA channel 2 memory 0 base address register */ +#define DMA_CH2M1ADDR(dmax) REG32((dmax) + 0x50U) /*!< DMA channel 2 memory 1 base address register */ +#define DMA_CH2FCTL(dmax) REG32((dmax) + 0x54U) /*!< DMA channel 2 FIFO control register */ + +#define DMA_CH3CTL(dmax) REG32((dmax) + 0x58U) /*!< DMA channel 3 control register */ +#define DMA_CH3CNT(dmax) REG32((dmax) + 0x5CU) /*!< DMA channel 3 counter register */ +#define DMA_CH3PADDR(dmax) REG32((dmax) + 0x60U) /*!< DMA channel 3 peripheral base address register */ +#define DMA_CH3M0ADDR(dmax) REG32((dmax) + 0x64U) /*!< DMA channel 3 memory 0 base address register */ +#define DMA_CH3M1ADDR(dmax) REG32((dmax) + 0x68U) /*!< DMA channel 3 memory 1 base address register */ +#define DMA_CH3FCTL(dmax) REG32((dmax) + 0x6CU) /*!< DMA channel 3 FIFO control register */ + +#define DMA_CH4CTL(dmax) REG32((dmax) + 0x70U) /*!< DMA channel 4 control register */ +#define DMA_CH4CNT(dmax) REG32((dmax) + 0x74U) /*!< DMA channel 4 counter register */ +#define DMA_CH4PADDR(dmax) REG32((dmax) + 0x78U) /*!< DMA channel 4 peripheral base address register */ +#define DMA_CH4M0ADDR(dmax) REG32((dmax) + 0x7CU) /*!< DMA channel 4 memory 0 base address register */ +#define DMA_CH4M1ADDR(dmax) REG32((dmax) + 0x80U) /*!< DMA channel 4 memory 1 base address register */ +#define DMA_CH4FCTL(dmax) REG32((dmax) + 0x84U) /*!< DMA channel 4 FIFO control register */ + +#define DMA_CH5CTL(dmax) REG32((dmax) + 0x88U) /*!< DMA channel 5 control register */ +#define DMA_CH5CNT(dmax) REG32((dmax) + 0x8CU) /*!< DMA channel 5 counter register */ +#define DMA_CH5PADDR(dmax) REG32((dmax) + 0x90U) /*!< DMA channel 5 peripheral base address register */ +#define DMA_CH5M0ADDR(dmax) REG32((dmax) + 0x94U) /*!< DMA channel 5 memory 0 base address register */ +#define DMA_CH5M1ADDR(dmax) REG32((dmax) + 0x98U) /*!< DMA channel 5 memory 1 base address register */ +#define DMA_CH5FCTL(dmax) REG32((dmax) + 0x9CU) /*!< DMA channel 5 FIFO control register */ + +#define DMA_CH6CTL(dmax) REG32((dmax) + 0xA0U) /*!< DMA channel 6 control register */ +#define DMA_CH6CNT(dmax) REG32((dmax) + 0xA4U) /*!< DMA channel 6 counter register */ +#define DMA_CH6PADDR(dmax) REG32((dmax) + 0xA8U) /*!< DMA channel 6 peripheral base address register */ +#define DMA_CH6M0ADDR(dmax) REG32((dmax) + 0xACU) /*!< DMA channel 6 memory 0 base address register */ +#define DMA_CH6M1ADDR(dmax) REG32((dmax) + 0xB0U) /*!< DMA channel 6 memory 1 base address register */ +#define DMA_CH6FCTL(dmax) REG32((dmax) + 0xB4U) /*!< DMA channel 6 FIFO control register */ + +#define DMA_CH7CTL(dmax) REG32((dmax) + 0xB8U) /*!< DMA channel 7 control register */ +#define DMA_CH7CNT(dmax) REG32((dmax) + 0xBCU) /*!< DMA channel 7 counter register */ +#define DMA_CH7PADDR(dmax) REG32((dmax) + 0xC0U) /*!< DMA channel 7 peripheral base address register */ +#define DMA_CH7M0ADDR(dmax) REG32((dmax) + 0xC4U) /*!< DMA channel 7 memory 0 base address register */ +#define DMA_CH7M1ADDR(dmax) REG32((dmax) + 0xC8U) /*!< DMA channel 7 memory 1 base address register */ +#define DMA_CH7FCTL(dmax) REG32((dmax) + 0xCCU) /*!< DMA channel 7 FIFO control register */ + +/* bits definitions */ +/* DMA_INTF */ +#define DMA_INTF_FEEIF BIT(0) /*!< FIFO error and exception flag */ +#define DMA_INTF_SDEIF BIT(2) /*!< single data mode exception flag */ +#define DMA_INTF_TAEIF BIT(3) /*!< transfer access error flag */ +#define DMA_INTF_HTFIF BIT(4) /*!< half transfer finish flag */ +#define DMA_INTF_FTFIF BIT(5) /*!< full transger finish flag */ + +/* DMA_INTC */ +#define DMA_INTC_FEEIFC BIT(0) /*!< clear FIFO error and exception flag */ +#define DMA_INTC_SDEIFC BIT(2) /*!< clear single data mode exception flag */ +#define DMA_INTC_TAEIFC BIT(3) /*!< clear single data mode exception flag */ +#define DMA_INTC_HTFIFC BIT(4) /*!< clear half transfer finish flag */ +#define DMA_INTC_FTFIFC BIT(5) /*!< clear full transger finish flag */ + +/* DMA_CHxCTL,x=0..7 */ +#define DMA_CHXCTL_CHEN BIT(0) /*!< channel x enable */ +#define DMA_CHXCTL_SDEIE BIT(1) /*!< enable bit for channel x single data mode exception interrupt */ +#define DMA_CHXCTL_TAEIE BIT(2) /*!< enable bit for channel x tranfer access error interrupt */ +#define DMA_CHXCTL_HTFIE BIT(3) /*!< enable bit for channel x half transfer finish interrupt */ +#define DMA_CHXCTL_FTFIE BIT(4) /*!< enable bit for channel x full transfer finish interrupt */ +#define DMA_CHXCTL_TFCS BIT(5) /*!< transfer flow controller select */ +#define DMA_CHXCTL_TM BITS(6,7) /*!< transfer mode */ +#define DMA_CHXCTL_CMEN BIT(8) /*!< circulation mode */ +#define DMA_CHXCTL_PNAGA BIT(9) /*!< next address generation algorithm of peripheral */ +#define DMA_CHXCTL_MNAGA BIT(10) /*!< next address generation algorithm of memory */ +#define DMA_CHXCTL_PWIDTH BITS(11,12) /*!< transfer width of peipheral */ +#define DMA_CHXCTL_MWIDTH BITS(13,14) /*!< transfer width of memory */ +#define DMA_CHXCTL_PAIF BIT(15) /*!< peripheral address increment fixed */ +#define DMA_CHXCTL_PRIO BITS(16,17) /*!< priority level */ +#define DMA_CHXCTL_SBMEN BIT(18) /*!< switch-buffer mode enable */ +#define DMA_CHXCTL_MBS BIT(19) /*!< memory buffer select */ +#define DMA_CHXCTL_PBURST BITS(21,22) /*!< transfer burst type of peripheral */ +#define DMA_CHXCTL_MBURST BITS(23,24) /*!< transfer burst type of memory */ +#define DMA_CHXCTL_PERIEN BITS(25,27) /*!< peripheral enable */ + +/* DMA_CHxCNT,x=0..7 */ +#define DMA_CHXCNT_CNT BITS(0,15) /*!< transfer counter */ + +/* DMA_CHxPADDR,x=0..7 */ +#define DMA_CHXPADDR_PADDR BITS(0,31) /*!< peripheral base address */ + +/* DMA_CHxM0ADDR,x=0..7 */ +#define DMA_CHXM0ADDR_M0ADDR BITS(0,31) /*!< memory 0 base address */ + +/* DMA_CHxM1ADDR,x=0..7 */ +#define DMA_CHXM1ADDR_M0ADDR BITS(0,31) /*!< memory 1 base address */ + +/* DMA_CHxFCTL,x=0..7 */ +#define DMA_CHXFCTL_FCCV BITS(0,1) /*!< FIFO counter critical value */ +#define DMA_CHXFCTL_MDMEN BIT(2) /*!< multi-data mode enable */ +#define DMA_CHXFCTL_FCNT BITS(3,5) /*!< FIFO counter */ +#define DMA_CHXFCTL_FEEIE BIT(7) /*!< FIFO exception interrupt enable */ + +/* constants definitions */ +/* DMA channel select */ +typedef enum +{ + DMA_CH0 = 0, /*!< DMA Channel 0 */ + DMA_CH1, /*!< DMA Channel 1 */ + DMA_CH2, /*!< DMA Channel 2 */ + DMA_CH3, /*!< DMA Channel 3 */ + DMA_CH4, /*!< DMA Channel 4 */ + DMA_CH5, /*!< DMA Channel 5 */ + DMA_CH6, /*!< DMA Channel 6 */ + DMA_CH7 /*!< DMA Channel 7 */ +} dma_channel_enum; + +/* DMA peripheral select */ +typedef enum +{ + DMA_SUBPERI0 = 0, /*!< DMA Peripheral 0 */ + DMA_SUBPERI1, /*!< DMA Peripheral 1 */ + DMA_SUBPERI2, /*!< DMA Peripheral 2 */ + DMA_SUBPERI3, /*!< DMA Peripheral 3 */ + DMA_SUBPERI4, /*!< DMA Peripheral 4 */ + DMA_SUBPERI5, /*!< DMA Peripheral 5 */ + DMA_SUBPERI6, /*!< DMA Peripheral 6 */ + DMA_SUBPERI7 /*!< DMA Peripheral 7 */ +} dma_subperipheral_enum; + +/* DMA multidata mode initialize struct */ +typedef struct +{ + uint32_t periph_addr; /*!< peripheral base address */ + uint32_t periph_width; /*!< transfer data size of peripheral */ + uint32_t periph_inc; /*!< peripheral increasing mode */ + + uint32_t memory0_addr; /*!< memory 0 base address */ + uint32_t memory_width; /*!< transfer data size of memory */ + uint32_t memory_inc; /*!< memory increasing mode */ + + uint32_t memory_burst_width; /*!< multi data mode enable */ + uint32_t periph_burst_width; /*!< multi data mode enable */ + uint32_t critical_value; /*!< FIFO critical */ + + uint32_t circular_mode; /*!< DMA circular mode */ + uint32_t direction; /*!< channel data transfer direction */ + uint32_t number; /*!< channel transfer number */ + uint32_t priority; /*!< channel priority level */ +}dma_multi_data_parameter_struct; + +/* DMA singledata mode initialize struct */ +typedef struct +{ + uint32_t periph_addr; /*!< peripheral base address */ + uint32_t periph_inc; /*!< peripheral increasing mode */ + + uint32_t memory0_addr; /*!< memory 0 base address */ + uint32_t memory_inc; /*!< memory increasing mode */ + + uint32_t periph_memory_width; /*!< transfer data size of peripheral */ + + uint32_t circular_mode; /*!< DMA circular mode */ + uint32_t direction; /*!< channel data transfer direction */ + uint32_t number; /*!< channel transfer number */ + uint32_t priority; /*!< channel priority level */ +} dma_single_data_parameter_struct; + +#define DMA_FLAG_ADD(flag,channel) ((uint32_t)((flag)<<((((uint32_t)(channel)*6U))+((uint32_t)(((uint32_t)(channel)) >> 1U)&0x01U)*4U))) /*!< DMA channel flag shift */ + +/* DMA_register address */ +#define DMA_CHCTL(dma,channel) REG32(((dma) + 0x10U) + 0x18U*(channel)) /*!< the address of DMA channel CHXCTL register */ +#define DMA_CHCNT(dma,channel) REG32(((dma) + 0x14U) + 0x18U*(channel)) /*!< the address of DMA channel CHXCNT register */ +#define DMA_CHPADDR(dma,channel) REG32(((dma) + 0x18U) + 0x18U*(channel)) /*!< the address of DMA channel CHXPADDR register */ +#define DMA_CHM0ADDR(dma,channel) REG32(((dma) + 0x1CU) + 0x18U*(channel)) /*!< the address of DMA channel CHXM0ADDR register */ +#define DMA_CHM1ADDR(dma,channel) REG32(((dma) + 0x20U) + 0x18U*(channel)) /*!< the address of DMA channel CHXM1ADDR register */ +#define DMA_CHFCTL(dma,channel) REG32(((dma) + 0x24U) + 0x18U*(channel)) /*!< the address of DMA channel CHXMADDR register */ + +/* peripheral select */ +#define CHCTL_PERIEN(regval) (BITS(25,27) & ((uint32_t)(regval) << 25)) +#define DMA_PERIPH_0_SELECT CHCTL_PERIEN(0) /*!< peripheral 0 select */ +#define DMA_PERIPH_1_SELECT CHCTL_PERIEN(1) /*!< peripheral 1 select */ +#define DMA_PERIPH_2_SELECT CHCTL_PERIEN(2) /*!< peripheral 2 select */ +#define DMA_PERIPH_3_SELECT CHCTL_PERIEN(3) /*!< peripheral 3 select */ +#define DMA_PERIPH_4_SELECT CHCTL_PERIEN(4) /*!< peripheral 4 select */ +#define DMA_PERIPH_5_SELECT CHCTL_PERIEN(5) /*!< peripheral 5 select */ +#define DMA_PERIPH_6_SELECT CHCTL_PERIEN(6) /*!< peripheral 6 select */ +#define DMA_PERIPH_7_SELECT CHCTL_PERIEN(7) /*!< peripheral 7 select */ + +/* burst type of memory */ +#define CHCTL_MBURST(regval) (BITS(23,24) & ((uint32_t)(regval) << 23)) +#define DMA_MEMORY_BURST_SINGLE CHCTL_MBURST(0) /*!< single burst */ +#define DMA_MEMORY_BURST_4_BEAT CHCTL_MBURST(1) /*!< 4-beat burst */ +#define DMA_MEMORY_BURST_8_BEAT CHCTL_MBURST(2) /*!< 8-beat burst */ +#define DMA_MEMORY_BURST_16_BEAT CHCTL_MBURST(3) /*!< 16-beat burst */ + +/* burst type of peripheral */ +#define CHCTL_PBURST(regval) (BITS(21,22) & ((uint32_t)(regval) << 21)) +#define DMA_PERIPH_BURST_SINGLE CHCTL_PBURST(0) /*!< single burst */ +#define DMA_PERIPH_BURST_4_BEAT CHCTL_PBURST(1) /*!< 4-beat burst */ +#define DMA_PERIPH_BURST_8_BEAT CHCTL_PBURST(2) /*!< 8-beat burst */ +#define DMA_PERIPH_BURST_16_BEAT CHCTL_PBURST(3) /*!< 16-beat burst */ + +/* channel priority level */ +#define CHCTL_PRIO(regval) (BITS(16,17) & ((uint32_t)(regval) << 16)) +#define DMA_PRIORITY_LOW CHCTL_PRIO(0) /*!< low priority */ +#define DMA_PRIORITY_MEDIUM CHCTL_PRIO(1) /*!< medium priority */ +#define DMA_PRIORITY_HIGH CHCTL_PRIO(2) /*!< high priority */ +#define DMA_PRIORITY_ULTRA_HIGH CHCTL_PRIO(3) /*!< ultra high priority */ + +/* transfer data width of memory */ +#define CHCTL_MWIDTH(regval) (BITS(13,14) & ((uint32_t)(regval) << 13)) +#define DMA_MEMORY_WIDTH_8BIT CHCTL_MWIDTH(0) /*!< transfer data width of memory is 8-bit */ +#define DMA_MEMORY_WIDTH_16BIT CHCTL_MWIDTH(1) /*!< transfer data width of memory is 16-bit */ +#define DMA_MEMORY_WIDTH_32BIT CHCTL_MWIDTH(2) /*!< transfer data width of memory is 32-bit */ + +/* transfer data width of peripheral */ +#define CHCTL_PWIDTH(regval) (BITS(11,12) & ((uint32_t)(regval) << 11)) +#define DMA_PERIPH_WIDTH_8BIT CHCTL_PWIDTH(0) /*!< transfer data width of peripheral is 8-bit */ +#define DMA_PERIPH_WIDTH_16BIT CHCTL_PWIDTH(1) /*!< transfer data width of peripheral is 16-bit */ +#define DMA_PERIPH_WIDTH_32BIT CHCTL_PWIDTH(2) /*!< transfer data width of peripheral is 32-bit */ + +/* channel transfer mode */ +#define CHCTL_TM(regval) (BITS(6,7) & ((uint32_t)(regval) << 6)) +#define DMA_PERIPH_TO_MEMORY CHCTL_TM(0) /*!< read from peripheral and write to memory */ +#define DMA_MEMORY_TO_PERIPH CHCTL_TM(1) /*!< read from memory and write to peripheral */ +#define DMA_MEMORY_TO_MEMORY CHCTL_TM(2) /*!< read from memory and write to memory */ + +/* FIFO counter critical value */ +#define CHFCTL_FCCV(regval) (BITS(0,1) & ((uint32_t)(regval) << 0)) +#define DMA_FIFO_1_WORD CHFCTL_FCCV(0) /*!< critical value 1 word */ +#define DMA_FIFO_2_WORD CHFCTL_FCCV(1) /*!< critical value 2 word */ +#define DMA_FIFO_3_WORD CHFCTL_FCCV(2) /*!< critical value 3 word */ +#define DMA_FIFO_4_WORD CHFCTL_FCCV(3) /*!< critical value 4 word */ + +/* memory select */ +#define DMA_MEMORY_0 ((uint32_t)0x00000000U) /*!< select memory 0 */ +#define DMA_MEMORY_1 ((uint32_t)0x00000001U) /*!< select memory 1 */ + +/* DMA circular mode */ +#define DMA_CIRCULAR_MODE_ENABLE ((uint32_t)0x00000000U) /*!< circular mode enable */ +#define DMA_CIRCULAR_MODE_DISABLE ((uint32_t)0x00000001U) /*!< circular mode disable */ + +/* DMA flow controller select */ +#define DMA_FLOW_CONTROLLER_DMA ((uint32_t)0x00000000U) /*!< DMA is the flow controler */ +#define DMA_FLOW_CONTROLLER_PERI ((uint32_t)0x00000001U) /*!< peripheral is the flow controler */ + +/* peripheral increasing mode */ +#define DMA_PERIPH_INCREASE_ENABLE ((uint32_t)0x00000000U) /*!< next address of peripheral is increasing address mode */ +#define DMA_PERIPH_INCREASE_DISABLE ((uint32_t)0x00000001U) /*!< next address of peripheral is fixed address mode */ +#define DMA_PERIPH_INCREASE_FIX ((uint32_t)0x00000002U) /*!< next address of peripheral is increasing fixed */ + +/* memory increasing mode */ +#define DMA_MEMORY_INCREASE_ENABLE ((uint32_t)0x00000000U) /*!< next address of memory is increasing address mode */ +#define DMA_MEMORY_INCREASE_DISABLE ((uint32_t)0x00000001U) /*!< next address of memory is fixed address mode */ + +/* FIFO status */ +#define DMA_FIFO_STATUS_NODATA ((uint32_t)0x00000000U) /*!< the data in the FIFO less than 1 word */ +#define DMA_FIFO_STATUS_1_WORD ((uint32_t)0x00000001U) /*!< the data in the FIFO more than 1 word, less than 2 words */ +#define DMA_FIFO_STATUS_2_WORD ((uint32_t)0x00000002U) /*!< the data in the FIFO more than 2 word, less than 3 words */ +#define DMA_FIFO_STATUS_3_WORD ((uint32_t)0x00000003U) /*!< the data in the FIFO more than 3 word, less than 4 words */ +#define DMA_FIFO_STATUS_EMPTY ((uint32_t)0x00000004U) /*!< the data in the FIFO is empty */ +#define DMA_FIFO_STATUS_FULL ((uint32_t)0x00000005U) /*!< the data in the FIFO is full */ + +/* DMA reset value */ +#define DMA_CHCTL_RESET_VALUE ((uint32_t)0x00000000U) /*!< the reset value of DMA channel CHXCTL register */ +#define DMA_CHCNT_RESET_VALUE ((uint32_t)0x00000000U) /*!< the reset value of DMA channel CHXCNT register */ +#define DMA_CHPADDR_RESET_VALUE ((uint32_t)0x00000000U) /*!< the reset value of DMA channel CHXPADDR register */ +#define DMA_CHMADDR_RESET_VALUE ((uint32_t)0x00000000U) /*!< the reset value of DMA channel CHXMADDR register */ +#define DMA_CHINTF_RESET_VALUE ((uint32_t)0x0000003DU) /*!< clear DMA channel CHXINTFS register */ +#define DMA_CHFCTL_RESET_VALUE ((uint32_t)0x00000000U) /*!< the reset value of DMA channel CHXFCTL register */ + +/* DMA_INTF register */ +/* interrupt flag bits */ +#define DMA_INT_FLAG_FEE DMA_INTF_FEEIF /*!< FIFO error and exception flag */ +#define DMA_INT_FLAG_SDE DMA_INTF_SDEIF /*!< single data mode exception flag */ +#define DMA_INT_FLAG_TAE DMA_INTF_TAEIF /*!< transfer access error flag */ +#define DMA_INT_FLAG_HTF DMA_INTF_HTFIF /*!< half transfer finish flag */ +#define DMA_INT_FLAG_FTF DMA_INTF_FTFIF /*!< full transfer finish flag */ + +/* flag bits */ +#define DMA_FLAG_FEE DMA_INTF_FEEIF /*!< FIFO error and exception flag */ +#define DMA_FLAG_SDE DMA_INTF_SDEIF /*!< single data mode exception flag */ +#define DMA_FLAG_TAE DMA_INTF_TAEIF /*!< transfer access error flag */ +#define DMA_FLAG_HTF DMA_INTF_HTFIF /*!< half transfer finish flag */ +#define DMA_FLAG_FTF DMA_INTF_FTFIF /*!< full transfer finish flag */ + + +/* function declarations */ +/* DMA deinitialization and initialization functions */ +/* deinitialize DMA a channel registers */ +void dma_deinit(uint32_t dma_periph, dma_channel_enum channelx); +/* initialize the DMA single data mode parameters struct with the default values */ +void dma_single_data_para_struct_init(dma_single_data_parameter_struct* init_struct); +/* initialize the DMA multi data mode parameters struct with the default values */ +void dma_multi_data_para_struct_init(dma_multi_data_parameter_struct* init_struct); +/* DMA single data mode initialize */ +void dma_single_data_mode_init(uint32_t dma_periph, dma_channel_enum channelx, dma_single_data_parameter_struct* init_struct); +/* DMA multi data mode initialize */ +void dma_multi_data_mode_init(uint32_t dma_periph, dma_channel_enum channelx, dma_multi_data_parameter_struct* init_struct); + +/* DMA configuration functions */ +/* set DMA peripheral base address */ +void dma_periph_address_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t address); +/* set DMA Memory base address */ +void dma_memory_address_config(uint32_t dma_periph, dma_channel_enum channelx, uint8_t memory_flag, uint32_t address); + +/* set the number of remaining data to be transferred by the DMA */ +void dma_transfer_number_config(uint32_t dma_periph,dma_channel_enum channelx, uint32_t number); +/* get the number of remaining data to be transferred by the DMA */ +uint32_t dma_transfer_number_get(uint32_t dma_periph, dma_channel_enum channelx); + +/* configure priority level of DMA channel */ +void dma_priority_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t priority); + +/* configure transfer burst beats of memory */ +void dma_memory_burst_beats_config (uint32_t dma_periph, dma_channel_enum channelx, uint32_t mbeat); +/* configure transfer burst beats of peripheral */ +void dma_periph_burst_beats_config (uint32_t dma_periph, dma_channel_enum channelx, uint32_t pbeat); +/* configure transfer data size of memory */ +void dma_memory_width_config (uint32_t dma_periph, dma_channel_enum channelx, uint32_t msize); +/* configure transfer data size of peripheral */ +void dma_periph_width_config (uint32_t dma_periph, dma_channel_enum channelx, uint32_t psize); + +/* configure next address increasement algorithm of memory */ +void dma_memory_address_generation_config(uint32_t dma_periph, dma_channel_enum channelx, uint8_t generation_algorithm); +/* configure next address increasement algorithm of peripheral */ +void dma_peripheral_address_generation_config(uint32_t dma_periph, dma_channel_enum channelx, uint8_t generation_algorithm); + +/* enable DMA circulation mode */ +void dma_circulation_enable(uint32_t dma_periph, dma_channel_enum channelx); +/* disable DMA circulation mode */ +void dma_circulation_disable(uint32_t dma_periph, dma_channel_enum channelx); +/* enable DMA channel */ +void dma_channel_enable(uint32_t dma_periph, dma_channel_enum channelx); +/* disable DMA channel */ +void dma_channel_disable(uint32_t dma_periph, dma_channel_enum channelx); + +/* configure the direction of data transfer on the channel */ +void dma_transfer_direction_config(uint32_t dma_periph, dma_channel_enum channelx, uint8_t direction); + +/* DMA switch buffer mode config */ +void dma_switch_buffer_mode_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t memory1_addr, uint32_t memory_select); +/* DMA using memory get */ +uint32_t dma_using_memory_get(uint32_t dma_periph, dma_channel_enum channelx); + +/* DMA channel peripheral select */ +void dma_channel_subperipheral_select(uint32_t dma_periph, dma_channel_enum channelx, dma_subperipheral_enum sub_periph); +/* DMA flow controller configure */ +void dma_flow_controller_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t controller); +/* DMA flow controller enable */ +void dma_switch_buffer_mode_enable(uint32_t dma_periph, dma_channel_enum channelx, ControlStatus newvalue); +/* DMA FIFO status get */ +uint32_t dma_fifo_status_get(uint32_t dma_periph, dma_channel_enum channelx); + +/* flag and interrupt functions */ +/* check DMA flag is set or not */ +FlagStatus dma_flag_get(uint32_t dma_periph, dma_channel_enum channelx, uint32_t flag); +/* clear DMA a channel flag */ +void dma_flag_clear(uint32_t dma_periph, dma_channel_enum channelx, uint32_t flag); +/* check DMA flag is set or not */ +FlagStatus dma_interrupt_flag_get(uint32_t dma_periph, dma_channel_enum channelx, uint32_t interrupt); +/* clear DMA a channel flag */ +void dma_interrupt_flag_clear(uint32_t dma_periph, dma_channel_enum channelx, uint32_t interrupt); +/* enable DMA interrupt */ +void dma_interrupt_enable(uint32_t dma_periph, dma_channel_enum channelx, uint32_t source); +/* disable DMA interrupt */ +void dma_interrupt_disable(uint32_t dma_periph, dma_channel_enum channelx, uint32_t source); + +#endif /* GD32F4XX_DMA_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_enet.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_enet.h new file mode 100644 index 0000000000..31079c090c --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_enet.h @@ -0,0 +1,1680 @@ +/*! + \file gd32f4xx_enet.h + \brief definitions for the ENET + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_ENET_H +#define GD32F4XX_ENET_H + +#include "gd32f4xx.h" +#include + +#define IF_USE_EXTERNPHY_LIB 0 +#if (1 == IF_USE_EXTERNPHY_LIB) +#include "phy.h" +#endif + +#ifndef ENET_RXBUF_NUM +#define ENET_RXBUF_NUM 5U /*!< ethernet Rx DMA descriptor number */ +#endif + +#ifndef ENET_TXBUF_NUM +#define ENET_TXBUF_NUM 5U /*!< ethernet Tx DMA descriptor number */ +#endif + +#ifndef ENET_RXBUF_SIZE +#define ENET_RXBUF_SIZE ENET_MAX_FRAME_SIZE /*!< ethernet receive buffer size */ +#endif + +#ifndef ENET_TXBUF_SIZE +#define ENET_TXBUF_SIZE ENET_MAX_FRAME_SIZE /*!< ethernet transmit buffer size */ +#endif + +//#define SELECT_DESCRIPTORS_ENHANCED_MODE + +//#define USE_DELAY + +#ifndef _PHY_H_ +#define DP83848 0 +#define LAN8700 1 +#define PHY_TYPE DP83848 + +#define PHY_ADDRESS ((uint16_t)1U) /*!< phy address determined by the hardware */ + +/* PHY read write timeouts */ +#define PHY_READ_TO ((uint32_t)0x0004FFFFU) /*!< PHY read timeout */ +#define PHY_WRITE_TO ((uint32_t)0x0004FFFFU) /*!< PHY write timeout */ + +/* PHY delay */ +#define PHY_RESETDELAY ((uint32_t)0x008FFFFFU) /*!< PHY reset delay */ +#define PHY_CONFIGDELAY ((uint32_t)0x00FFFFFFU) /*!< PHY configure delay */ + +/* PHY register address */ +#define PHY_REG_BCR 0U /*!< tranceiver basic control register */ +#define PHY_REG_BSR 1U /*!< tranceiver basic status register */ + +/* PHY basic control register */ +#define PHY_RESET ((uint16_t)0x8000) /*!< PHY reset */ +#define PHY_LOOPBACK ((uint16_t)0x4000) /*!< enable phy loop-back mode */ +#define PHY_FULLDUPLEX_100M ((uint16_t)0x2100) /*!< configure speed to 100 Mbit/s and the full-duplex mode */ +#define PHY_HALFDUPLEX_100M ((uint16_t)0x2000) /*!< configure speed to 100 Mbit/s and the half-duplex mode */ +#define PHY_FULLDUPLEX_10M ((uint16_t)0x0100) /*!< configure speed to 10 Mbit/s and the full-duplex mode */ +#define PHY_HALFDUPLEX_10M ((uint16_t)0x0000) /*!< configure speed to 10 Mbit/s and the half-duplex mode */ +#define PHY_AUTONEGOTIATION ((uint16_t)0x1000) /*!< enable auto-negotiation function */ +#define PHY_RESTART_AUTONEGOTIATION ((uint16_t)0x0200) /*!< restart auto-negotiation function */ +#define PHY_POWERDOWN ((uint16_t)0x0800) /*!< enable the power down mode */ +#define PHY_ISOLATE ((uint16_t)0x0400) /*!< isolate PHY from MII */ + +/* PHY basic status register */ +#define PHY_AUTONEGO_COMPLETE ((uint16_t)0x0020) /*!< auto-negotioation process completed */ +#define PHY_LINKED_STATUS ((uint16_t)0x0004) /*!< valid link established */ +#define PHY_JABBER_DETECTION ((uint16_t)0x0002) /*!< jabber condition detected */ + +#if(PHY_TYPE == LAN8700) +#define PHY_SR 31U /*!< tranceiver status register */ +#define PHY_SPEED_STATUS ((uint16_t)0x0004) /*!< configured information of speed: 10Mbit/s */ +#define PHY_DUPLEX_STATUS ((uint16_t)0x0010) /*!< configured information of duplex: full-duplex */ +#elif(PHY_TYPE == DP83848) +#define PHY_SR 16U /*!< tranceiver status register */ +#define PHY_SPEED_STATUS ((uint16_t)0x0002) /*!< configured information of speed: 10Mbit/s */ +#define PHY_DUPLEX_STATUS ((uint16_t)0x0004) /*!< configured information of duplex: full-duplex */ +#endif /* PHY_TYPE */ + +#endif /* _PHY_H_ */ + + +/* ENET definitions */ +#define ENET ENET_BASE + +/* registers definitions */ +#define ENET_MAC_CFG REG32((ENET) + 0x0000U) /*!< ethernet MAC configuration register */ +#define ENET_MAC_FRMF REG32((ENET) + 0x0004U) /*!< ethernet MAC frame filter register */ +#define ENET_MAC_HLH REG32((ENET) + 0x0008U) /*!< ethernet MAC hash list high register */ +#define ENET_MAC_HLL REG32((ENET) + 0x000CU) /*!< ethernet MAC hash list low register */ +#define ENET_MAC_PHY_CTL REG32((ENET) + 0x0010U) /*!< ethernet MAC PHY control register */ +#define ENET_MAC_PHY_DATA REG32((ENET) + 0x0014U) /*!< ethernet MAC MII data register */ +#define ENET_MAC_FCTL REG32((ENET) + 0x0018U) /*!< ethernet MAC flow control register */ +#define ENET_MAC_VLT REG32((ENET) + 0x001CU) /*!< ethernet MAC VLAN tag register */ +#define ENET_MAC_RWFF REG32((ENET) + 0x0028U) /*!< ethernet MAC remote wakeup frame filter register */ +#define ENET_MAC_WUM REG32((ENET) + 0x002CU) /*!< ethernet MAC wakeup management register */ +#define ENET_MAC_DBG REG32((ENET) + 0x0034U) /*!< ethernet MAC debug register */ +#define ENET_MAC_INTF REG32((ENET) + 0x0038U) /*!< ethernet MAC interrupt flag register */ +#define ENET_MAC_INTMSK REG32((ENET) + 0x003CU) /*!< ethernet MAC interrupt mask register */ +#define ENET_MAC_ADDR0H REG32((ENET) + 0x0040U) /*!< ethernet MAC address 0 high register */ +#define ENET_MAC_ADDR0L REG32((ENET) + 0x0044U) /*!< ethernet MAC address 0 low register */ +#define ENET_MAC_ADDR1H REG32((ENET) + 0x0048U) /*!< ethernet MAC address 1 high register */ +#define ENET_MAC_ADDR1L REG32((ENET) + 0x004CU) /*!< ethernet MAC address 1 low register */ +#define ENET_MAC_ADDT2H REG32((ENET) + 0x0050U) /*!< ethernet MAC address 2 high register */ +#define ENET_MAC_ADDR2L REG32((ENET) + 0x0054U) /*!< ethernet MAC address 2 low register */ +#define ENET_MAC_ADDR3H REG32((ENET) + 0x0058U) /*!< ethernet MAC address 3 high register */ +#define ENET_MAC_ADDR3L REG32((ENET) + 0x005CU) /*!< ethernet MAC address 3 low register */ +#define ENET_MAC_FCTH REG32((ENET) + 0x1080U) /*!< ethernet MAC flow control threshold register */ + +#define ENET_MSC_CTL REG32((ENET) + 0x0100U) /*!< ethernet MSC control register */ +#define ENET_MSC_RINTF REG32((ENET) + 0x0104U) /*!< ethernet MSC receive interrupt flag register */ +#define ENET_MSC_TINTF REG32((ENET) + 0x0108U) /*!< ethernet MSC transmit interrupt flag register */ +#define ENET_MSC_RINTMSK REG32((ENET) + 0x010CU) /*!< ethernet MSC receive interrupt mask register */ +#define ENET_MSC_TINTMSK REG32((ENET) + 0x0110U) /*!< ethernet MSC transmit interrupt mask register */ +#define ENET_MSC_SCCNT REG32((ENET) + 0x014CU) /*!< ethernet MSC transmitted good frames after a single collision counter register */ +#define ENET_MSC_MSCCNT REG32((ENET) + 0x0150U) /*!< ethernet MSC transmitted good frames after more than a single collision counter register */ +#define ENET_MSC_TGFCNT REG32((ENET) + 0x0168U) /*!< ethernet MSC transmitted good frames counter register */ +#define ENET_MSC_RFCECNT REG32((ENET) + 0x0194U) /*!< ethernet MSC received frames with CRC error counter register */ +#define ENET_MSC_RFAECNT REG32((ENET) + 0x0198U) /*!< ethernet MSC received frames with alignment error counter register */ +#define ENET_MSC_RGUFCNT REG32((ENET) + 0x01C4U) /*!< ethernet MSC received good unicast frames counter register */ + +#define ENET_PTP_TSCTL REG32((ENET) + 0x0700U) /*!< ethernet PTP time stamp control register */ +#define ENET_PTP_SSINC REG32((ENET) + 0x0704U) /*!< ethernet PTP subsecond increment register */ +#define ENET_PTP_TSH REG32((ENET) + 0x0708U) /*!< ethernet PTP time stamp high register */ +#define ENET_PTP_TSL REG32((ENET) + 0x070CU) /*!< ethernet PTP time stamp low register */ +#define ENET_PTP_TSUH REG32((ENET) + 0x0710U) /*!< ethernet PTP time stamp update high register */ +#define ENET_PTP_TSUL REG32((ENET) + 0x0714U) /*!< ethernet PTP time stamp update low register */ +#define ENET_PTP_TSADDEND REG32((ENET) + 0x0718U) /*!< ethernet PTP time stamp addend register */ +#define ENET_PTP_ETH REG32((ENET) + 0x071CU) /*!< ethernet PTP expected time high register */ +#define ENET_PTP_ETL REG32((ENET) + 0x0720U) /*!< ethernet PTP expected time low register */ +#define ENET_PTP_TSF REG32((ENET) + 0x0728U) /*!< ethernet PTP time stamp flag register */ +#define ENET_PTP_PPSCTL REG32((ENET) + 0x072CU) /*!< ethernet PTP PPS control register */ + +#define ENET_DMA_BCTL REG32((ENET) + 0x1000U) /*!< ethernet DMA bus control register */ +#define ENET_DMA_TPEN REG32((ENET) + 0x1004U) /*!< ethernet DMA transmit poll enable register */ +#define ENET_DMA_RPEN REG32((ENET) + 0x1008U) /*!< ethernet DMA receive poll enable register */ +#define ENET_DMA_RDTADDR REG32((ENET) + 0x100CU) /*!< ethernet DMA receive descriptor table address register */ +#define ENET_DMA_TDTADDR REG32((ENET) + 0x1010U) /*!< ethernet DMA transmit descriptor table address register */ +#define ENET_DMA_STAT REG32((ENET) + 0x1014U) /*!< ethernet DMA status register */ +#define ENET_DMA_CTL REG32((ENET) + 0x1018U) /*!< ethernet DMA control register */ +#define ENET_DMA_INTEN REG32((ENET) + 0x101CU) /*!< ethernet DMA interrupt enable register */ +#define ENET_DMA_MFBOCNT REG32((ENET) + 0x1020U) /*!< ethernet DMA missed frame and buffer overflow counter register */ +#define ENET_DMA_RSWDC REG32((ENET) + 0x1024U) /*!< ethernet DMA receive state watchdog counter register */ +#define ENET_DMA_CTDADDR REG32((ENET) + 0x1048U) /*!< ethernet DMA current transmit descriptor address register */ +#define ENET_DMA_CRDADDR REG32((ENET) + 0x104CU) /*!< ethernet DMA current receive descriptor address register */ +#define ENET_DMA_CTBADDR REG32((ENET) + 0x1050U) /*!< ethernet DMA current transmit buffer address register */ +#define ENET_DMA_CRBADDR REG32((ENET) + 0x1054U) /*!< ethernet DMA current receive buffer address register */ + +/* bits definitions */ +/* ENET_MAC_CFG */ +#define ENET_MAC_CFG_REN BIT(2) /*!< receiver enable */ +#define ENET_MAC_CFG_TEN BIT(3) /*!< transmitter enable */ +#define ENET_MAC_CFG_DFC BIT(4) /*!< defferal check */ +#define ENET_MAC_CFG_BOL BITS(5,6) /*!< back-off limit */ +#define ENET_MAC_CFG_APCD BIT(7) /*!< automatic pad/CRC drop */ +#define ENET_MAC_CFG_RTD BIT(9) /*!< retry disable */ +#define ENET_MAC_CFG_IPFCO BIT(10) /*!< IP frame checksum offload */ +#define ENET_MAC_CFG_DPM BIT(11) /*!< duplex mode */ +#define ENET_MAC_CFG_LBM BIT(12) /*!< loopback mode */ +#define ENET_MAC_CFG_ROD BIT(13) /*!< receive own disable */ +#define ENET_MAC_CFG_SPD BIT(14) /*!< fast eneternet speed */ +#define ENET_MAC_CFG_CSD BIT(16) /*!< carrier sense disable */ +#define ENET_MAC_CFG_IGBS BITS(17,19) /*!< inter-frame gap bit selection */ +#define ENET_MAC_CFG_JBD BIT(22) /*!< jabber disable */ +#define ENET_MAC_CFG_WDD BIT(23) /*!< watchdog disable */ +#define ENET_MAC_CFG_TFCD BIT(25) /*!< type frame CRC dropping */ + +/* ENET_MAC_FRMF */ +#define ENET_MAC_FRMF_PM BIT(0) /*!< promiscuous mode */ +#define ENET_MAC_FRMF_HUF BIT(1) /*!< hash unicast filter */ +#define ENET_MAC_FRMF_HMF BIT(2) /*!< hash multicast filter */ +#define ENET_MAC_FRMF_DAIFLT BIT(3) /*!< destination address inverse filtering enable */ +#define ENET_MAC_FRMF_MFD BIT(4) /*!< multicast filter disable */ +#define ENET_MAC_FRMF_BFRMD BIT(5) /*!< broadcast frame disable */ +#define ENET_MAC_FRMF_PCFRM BITS(6,7) /*!< pass control frames */ +#define ENET_MAC_FRMF_SAIFLT BIT(8) /*!< source address inverse filtering */ +#define ENET_MAC_FRMF_SAFLT BIT(9) /*!< source address filter */ +#define ENET_MAC_FRMF_HPFLT BIT(10) /*!< hash or perfect filter */ +#define ENET_MAC_FRMF_FAR BIT(31) /*!< frames all receive */ + +/* ENET_MAC_HLH */ +#define ENET_MAC_HLH_HLH BITS(0,31) /*!< hash list high */ + +/* ENET_MAC_HLL */ +#define ENET_MAC_HLL_HLL BITS(0,31) /*!< hash list low */ + +/* ENET_MAC_PHY_CTL */ +#define ENET_MAC_PHY_CTL_PB BIT(0) /*!< PHY busy */ +#define ENET_MAC_PHY_CTL_PW BIT(1) /*!< PHY write */ +#define ENET_MAC_PHY_CTL_CLR BITS(2,4) /*!< clock range */ +#define ENET_MAC_PHY_CTL_PR BITS(6,10) /*!< PHY register */ +#define ENET_MAC_PHY_CTL_PA BITS(11,15) /*!< PHY address */ + +/* ENET_MAC_PHY_DATA */ +#define ENET_MAC_PHY_DATA_PD BITS(0,15) /*!< PHY data */ + +/* ENET_MAC_FCTL */ +#define ENET_MAC_FCTL_FLCBBKPA BIT(0) /*!< flow control busy(in full duplex mode)/backpressure activate(in half duplex mode) */ +#define ENET_MAC_FCTL_TFCEN BIT(1) /*!< transmit flow control enable */ +#define ENET_MAC_FCTL_RFCEN BIT(2) /*!< receive flow control enable */ +#define ENET_MAC_FCTL_UPFDT BIT(3) /*!< unicast pause frame detect */ +#define ENET_MAC_FCTL_PLTS BITS(4,5) /*!< pause low threshold */ +#define ENET_MAC_FCTL_DZQP BIT(7) /*!< disable zero-quanta pause */ +#define ENET_MAC_FCTL_PTM BITS(16,31) /*!< pause time */ + +/* ENET_MAC_VLT */ +#define ENET_MAC_VLT_VLTI BITS(0,15) /*!< VLAN tag identifier(for receive frames) */ +#define ENET_MAC_VLT_VLTC BIT(16) /*!< 12-bit VLAN tag comparison */ + +/* ENET_MAC_RWFF */ +#define ENET_MAC_RWFF_DATA BITS(0,31) /*!< wakeup frame filter register data */ + +/* ENET_MAC_WUM */ +#define ENET_MAC_WUM_PWD BIT(0) /*!< power down */ +#define ENET_MAC_WUM_MPEN BIT(1) /*!< magic packet enable */ +#define ENET_MAC_WUM_WFEN BIT(2) /*!< wakeup frame enable */ +#define ENET_MAC_WUM_MPKR BIT(5) /*!< magic packet received */ +#define ENET_MAC_WUM_WUFR BIT(6) /*!< wakeup frame received */ +#define ENET_MAC_WUM_GU BIT(9) /*!< global unicast */ +#define ENET_MAC_WUM_WUFFRPR BIT(31) /*!< wakeup frame filter register pointer reset */ + +/* ENET_MAC_DBG */ +#define ENET_MAC_DBG_MRNI BIT(0) /*!< MAC receive state not idle */ +#define ENET_MAC_DBG_RXAFS BITS(1,2) /*!< Rx asynchronous FIFO status */ +#define ENET_MAC_DBG_RXFW BIT(4) /*!< RxFIFO is writing */ +#define ENET_MAC_DBG_RXFRS BITS(5,6) /*!< RxFIFO read operation status */ +#define ENET_MAC_DBG_RXFS BITS(8,9) /*!< RxFIFO state */ +#define ENET_MAC_DBG_MTNI BIT(16) /*!< MAC transmit state not idle */ +#define ENET_MAC_DBG_SOMT BITS(17,18) /*!< status of mac transmitter */ +#define ENET_MAC_DBG_PCS BIT(19) /*!< pause condition status */ +#define ENET_MAC_DBG_TXFRS BITS(20,21) /*!< TxFIFO read operation status */ +#define ENET_MAC_DBG_TXFW BIT(22) /*!< TxFIFO is writing */ +#define ENET_MAC_DBG_TXFNE BIT(24) /*!< TxFIFO not empty flag */ +#define ENET_MAC_DBG_TXFF BIT(25) /*!< TxFIFO full flag */ + +/* ENET_MAC_INTF */ +#define ENET_MAC_INTF_WUM BIT(3) /*!< WUM status */ +#define ENET_MAC_INTF_MSC BIT(4) /*!< MSC status */ +#define ENET_MAC_INTF_MSCR BIT(5) /*!< MSC receive status */ +#define ENET_MAC_INTF_MSCT BIT(6) /*!< MSC transmit status */ +#define ENET_MAC_INTF_TMST BIT(9) /*!< timestamp trigger status */ + +/* ENET_MAC_INTMSK */ +#define ENET_MAC_INTMSK_WUMIM BIT(3) /*!< WUM interrupt mask */ +#define ENET_MAC_INTMSK_TMSTIM BIT(9) /*!< timestamp trigger interrupt mask */ + +/* ENET_MAC_ADDR0H */ +#define ENET_MAC_ADDR0H_ADDR0H BITS(0,15) /*!< MAC address0 high */ +#define ENET_MAC_ADDR0H_MO BIT(31) /*!< always read 1 and must be kept */ + +/* ENET_MAC_ADDR0L */ +#define ENET_MAC_ADDR0L_ADDR0L BITS(0,31) /*!< MAC address0 low */ + +/* ENET_MAC_ADDR1H */ +#define ENET_MAC_ADDR1H_ADDR1H BITS(0,15) /*!< MAC address1 high */ +#define ENET_MAC_ADDR1H_MB BITS(24,29) /*!< mask byte */ +#define ENET_MAC_ADDR1H_SAF BIT(30) /*!< source address filter */ +#define ENET_MAC_ADDR1H_AFE BIT(31) /*!< address filter enable */ + +/* ENET_MAC_ADDR1L */ +#define ENET_MAC_ADDR1L_ADDR1L BITS(0,31) /*!< MAC address1 low */ + +/* ENET_MAC_ADDR2H */ +#define ENET_MAC_ADDR2H_ADDR2H BITS(0,15) /*!< MAC address2 high */ +#define ENET_MAC_ADDR2H_MB BITS(24,29) /*!< mask byte */ +#define ENET_MAC_ADDR2H_SAF BIT(30) /*!< source address filter */ +#define ENET_MAC_ADDR2H_AFE BIT(31) /*!< address filter enable */ + +/* ENET_MAC_ADDR2L */ +#define ENET_MAC_ADDR2L_ADDR2L BITS(0,31) /*!< MAC address2 low */ + +/* ENET_MAC_ADDR3H */ +#define ENET_MAC_ADDR3H_ADDR3H BITS(0,15) /*!< MAC address3 high */ +#define ENET_MAC_ADDR3H_MB BITS(24,29) /*!< mask byte */ +#define ENET_MAC_ADDR3H_SAF BIT(30) /*!< source address filter */ +#define ENET_MAC_ADDR3H_AFE BIT(31) /*!< address filter enable */ + +/* ENET_MAC_ADDR3L */ +#define ENET_MAC_ADDR3L_ADDR3L BITS(0,31) /*!< MAC address3 low */ + +/* ENET_MAC_FCTH */ +#define ENET_MAC_FCTH_RFA BITS(0,2) /*!< threshold of active flow control */ +#define ENET_MAC_FCTH_RFD BITS(4,6) /*!< threshold of deactive flow control */ + +/* ENET_MSC_CTL */ +#define ENET_MSC_CTL_CTR BIT(0) /*!< counter reset */ +#define ENET_MSC_CTL_CTSR BIT(1) /*!< counter stop rollover */ +#define ENET_MSC_CTL_RTOR BIT(2) /*!< reset on read */ +#define ENET_MSC_CTL_MCFZ BIT(3) /*!< MSC counter freeze */ +#define ENET_MSC_CTL_PMC BIT(4) /*!< preset MSC counter */ +#define ENET_MSC_CTL_AFHPM BIT(5) /*!< almost full or half preset mode */ + +/* ENET_MSC_RINTF */ +#define ENET_MSC_RINTF_RFCE BIT(5) /*!< received frames CRC error */ +#define ENET_MSC_RINTF_RFAE BIT(6) /*!< received frames alignment error */ +#define ENET_MSC_RINTF_RGUF BIT(17) /*!< receive good unicast frames */ + +/* ENET_MSC_TINTF */ +#define ENET_MSC_TINTF_TGFSC BIT(14) /*!< transmitted good frames single collision */ +#define ENET_MSC_TINTF_TGFMSC BIT(15) /*!< transmitted good frames more single collision */ +#define ENET_MSC_TINTF_TGF BIT(21) /*!< transmitted good frames */ + +/* ENET_MSC_RINTMSK */ +#define ENET_MSC_RINTMSK_RFCEIM BIT(5) /*!< received frame CRC error interrupt mask */ +#define ENET_MSC_RINTMSK_RFAEIM BIT(6) /*!< received frames alignment error interrupt mask */ +#define ENET_MSC_RINTMSK_RGUFIM BIT(17) /*!< received good unicast frames interrupt mask */ + +/* ENET_MSC_TINTMSK */ +#define ENET_MSC_TINTMSK_TGFSCIM BIT(14) /*!< transmitted good frames single collision interrupt mask */ +#define ENET_MSC_TINTMSK_TGFMSCIM BIT(15) /*!< transmitted good frames more single collision interrupt mask */ +#define ENET_MSC_TINTMSK_TGFIM BIT(21) /*!< transmitted good frames interrupt mask */ + +/* ENET_MSC_SCCNT */ +#define ENET_MSC_SCCNT_SCC BITS(0,31) /*!< transmitted good frames single collision counter */ + +/* ENET_MSC_MSCCNT */ +#define ENET_MSC_MSCCNT_MSCC BITS(0,31) /*!< transmitted good frames more one single collision counter */ + +/* ENET_MSC_TGFCNT */ +#define ENET_MSC_TGFCNT_TGF BITS(0,31) /*!< transmitted good frames counter */ + +/* ENET_MSC_RFCECNT */ +#define ENET_MSC_RFCECNT_RFCER BITS(0,31) /*!< received frames with CRC error counter */ + +/* ENET_MSC_RFAECNT */ +#define ENET_MSC_RFAECNT_RFAER BITS(0,31) /*!< received frames alignment error counter */ + +/* ENET_MSC_RGUFCNT */ +#define ENET_MSC_RGUFCNT_RGUF BITS(0,31) /*!< received good unicast frames counter */ + +/* ENET_PTP_TSCTL */ +#define PTP_TSCTL_CKNT(regval) (BITS(16,17) & ((uint32_t)(regval) << 16)) /*!< write value to ENET_PTP_TSCTL_CKNT bit field */ + +#define ENET_PTP_TSCTL_TMSEN BIT(0) /*!< timestamp enable */ +#define ENET_PTP_TSCTL_TMSFCU BIT(1) /*!< timestamp fine or coarse update */ +#define ENET_PTP_TSCTL_TMSSTI BIT(2) /*!< timestamp system time initialize */ +#define ENET_PTP_TSCTL_TMSSTU BIT(3) /*!< timestamp system time update */ +#define ENET_PTP_TSCTL_TMSITEN BIT(4) /*!< timestamp interrupt trigger enable */ +#define ENET_PTP_TSCTL_TMSARU BIT(5) /*!< timestamp addend register update */ +#define ENET_PTP_TSCTL_ARFSEN BIT(8) /*!< all received frames snapshot enable */ +#define ENET_PTP_TSCTL_SCROM BIT(9) /*!< subsecond counter rollover mode */ +#define ENET_PTP_TSCTL_PFSV BIT(10) /*!< PTP frame snooping version */ +#define ENET_PTP_TSCTL_ESEN BIT(11) /*!< received Ethernet snapshot enable */ +#define ENET_PTP_TSCTL_IP6SEN BIT(12) /*!< received IPv6 snapshot enable */ +#define ENET_PTP_TSCTL_IP4SEN BIT(13) /*!< received IPv4 snapshot enable */ +#define ENET_PTP_TSCTL_ETMSEN BIT(14) /*!< received event type message snapshot enable */ +#define ENET_PTP_TSCTL_MNMSEN BIT(15) /*!< received master node message snapshot enable */ +#define ENET_PTP_TSCTL_CKNT BITS(16,17) /*!< clock node type for time stamp */ +#define ENET_PTP_TSCTL_MAFEN BIT(18) /*!< MAC address filter enable for PTP frame */ + +/* ENET_PTP_SSINC */ +#define ENET_PTP_SSINC_STMSSI BITS(0,7) /*!< system time subsecond increment */ + +/* ENET_PTP_TSH */ +#define ENET_PTP_TSH_STMS BITS(0,31) /*!< system time second */ + +/* ENET_PTP_TSL */ +#define ENET_PTP_TSL_STMSS BITS(0,30) /*!< system time subseconds */ +#define ENET_PTP_TSL_STS BIT(31) /*!< system time sign */ + +/* ENET_PTP_TSUH */ +#define ENET_PTP_TSUH_TMSUS BITS(0,31) /*!< timestamp update seconds */ + +/* ENET_PTP_TSUL */ +#define ENET_PTP_TSUL_TMSUSS BITS(0,30) /*!< timestamp update subseconds */ +#define ENET_PTP_TSUL_TMSUPNS BIT(31) /*!< timestamp update positive or negative sign */ + +/* ENET_PTP_TSADDAND */ +#define ENET_PTP_TSADDAND_TMSA BITS(0,31) /*!< timestamp addend */ + +/* ENET_PTP_ETH */ +#define ENET_PTP_ETH_ETSH BITS(0,31) /*!< expected time high */ + +/* ENET_PTP_ETL */ +#define ENET_PTP_ETL_ETSL BITS(0,31) /*!< expected time low */ + +/* ENET_PTP_TSF */ +#define ENET_PTP_TSF_TSSCO BIT(0) /*!< timestamp second counter overflow */ +#define ENET_PTP_TSF_TTM BIT(1) /*!< target time match */ + +/* ENET_PTP_PPSCTL */ +#define ENET_PTP_PPSCTL_PPSOFC BITS(0,3) /*!< PPS output frequency configure */ + +/* ENET_DMA_BCTL */ +#define ENET_DMA_BCTL_SWR BIT(0) /*!< software reset */ +#define ENET_DMA_BCTL_DAB BIT(1) /*!< DMA arbitration */ +#define ENET_DMA_BCTL_DPSL BITS(2,6) /*!< descriptor skip length */ +#define ENET_DMA_BCTL_DFM BIT(7) /*!< descriptor format mode */ +#define ENET_DMA_BCTL_PGBL BITS(8,13) /*!< programmable burst length */ +#define ENET_DMA_BCTL_RTPR BITS(14,15) /*!< RxDMA and TxDMA transfer priority ratio */ +#define ENET_DMA_BCTL_FB BIT(16) /*!< fixed Burst */ +#define ENET_DMA_BCTL_RXDP BITS(17,22) /*!< RxDMA PGBL */ +#define ENET_DMA_BCTL_UIP BIT(23) /*!< use independent PGBL */ +#define ENET_DMA_BCTL_FPBL BIT(24) /*!< four times PGBL mode */ +#define ENET_DMA_BCTL_AA BIT(25) /*!< address-aligned */ +#define ENET_DMA_BCTL_MB BIT(26) /*!< mixed burst */ + +/* ENET_DMA_TPEN */ +#define ENET_DMA_TPEN_TPE BITS(0,31) /*!< transmit poll enable */ + +/* ENET_DMA_RPEN */ +#define ENET_DMA_RPEN_RPE BITS(0,31) /*!< receive poll enable */ + +/* ENET_DMA_RDTADDR */ +#define ENET_DMA_RDTADDR_SRT BITS(0,31) /*!< start address of receive table */ + +/* ENET_DMA_TDTADDR */ +#define ENET_DMA_TDTADDR_STT BITS(0,31) /*!< start address of transmit table */ + +/* ENET_DMA_STAT */ +#define ENET_DMA_STAT_TS BIT(0) /*!< transmit status */ +#define ENET_DMA_STAT_TPS BIT(1) /*!< transmit process stopped status */ +#define ENET_DMA_STAT_TBU BIT(2) /*!< transmit buffer unavailable status */ +#define ENET_DMA_STAT_TJT BIT(3) /*!< transmit jabber timeout status */ +#define ENET_DMA_STAT_RO BIT(4) /*!< receive overflow status */ +#define ENET_DMA_STAT_TU BIT(5) /*!< transmit underflow status */ +#define ENET_DMA_STAT_RS BIT(6) /*!< receive status */ +#define ENET_DMA_STAT_RBU BIT(7) /*!< receive buffer unavailable status */ +#define ENET_DMA_STAT_RPS BIT(8) /*!< receive process stopped status */ +#define ENET_DMA_STAT_RWT BIT(9) /*!< receive watchdog timeout status */ +#define ENET_DMA_STAT_ET BIT(10) /*!< early transmit status */ +#define ENET_DMA_STAT_FBE BIT(13) /*!< fatal bus error status */ +#define ENET_DMA_STAT_ER BIT(14) /*!< early receive status */ +#define ENET_DMA_STAT_AI BIT(15) /*!< abnormal interrupt summary */ +#define ENET_DMA_STAT_NI BIT(16) /*!< normal interrupt summary */ +#define ENET_DMA_STAT_RP BITS(17,19) /*!< receive process state */ +#define ENET_DMA_STAT_TP BITS(20,22) /*!< transmit process state */ +#define ENET_DMA_STAT_EB BITS(23,25) /*!< error bits status */ +#define ENET_DMA_STAT_MSC BIT(27) /*!< MSC status */ +#define ENET_DMA_STAT_WUM BIT(28) /*!< WUM status */ +#define ENET_DMA_STAT_TST BIT(29) /*!< timestamp trigger status */ + +/* ENET_DMA_CTL */ +#define ENET_DMA_CTL_SRE BIT(1) /*!< start/stop receive enable */ +#define ENET_DMA_CTL_OSF BIT(2) /*!< operate on second frame */ +#define ENET_DMA_CTL_RTHC BITS(3,4) /*!< receive threshold control */ +#define ENET_DMA_CTL_FUF BIT(6) /*!< forward undersized good frames */ +#define ENET_DMA_CTL_FERF BIT(7) /*!< forward error frames */ +#define ENET_DMA_CTL_STE BIT(13) /*!< start/stop transmission enable */ +#define ENET_DMA_CTL_TTHC BITS(14,16) /*!< transmit threshold control */ +#define ENET_DMA_CTL_FTF BIT(20) /*!< flush transmit FIFO */ +#define ENET_DMA_CTL_TSFD BIT(21) /*!< transmit store-and-forward */ +#define ENET_DMA_CTL_DAFRF BIT(24) /*!< disable flushing of received frames */ +#define ENET_DMA_CTL_RSFD BIT(25) /*!< receive store-and-forward */ +#define ENET_DMA_CTL_DTCERFD BIT(26) /*!< dropping of TCP/IP checksum error frames disable */ + +/* ENET_DMA_INTEN */ +#define ENET_DMA_INTEN_TIE BIT(0) /*!< transmit interrupt enable */ +#define ENET_DMA_INTEN_TPSIE BIT(1) /*!< transmit process stopped interrupt enable */ +#define ENET_DMA_INTEN_TBUIE BIT(2) /*!< transmit buffer unavailable interrupt enable */ +#define ENET_DMA_INTEN_TJTIE BIT(3) /*!< transmit jabber timeout interrupt enable */ +#define ENET_DMA_INTEN_ROIE BIT(4) /*!< receive overflow interrupt enable */ +#define ENET_DMA_INTEN_TUIE BIT(5) /*!< transmit underflow interrupt enable */ +#define ENET_DMA_INTEN_RIE BIT(6) /*!< receive interrupt enable */ +#define ENET_DMA_INTEN_RBUIE BIT(7) /*!< receive buffer unavailable interrupt enable */ +#define ENET_DMA_INTEN_RPSIE BIT(8) /*!< receive process stopped interrupt enable */ +#define ENET_DMA_INTEN_RWTIE BIT(9) /*!< receive watchdog timeout interrupt enable */ +#define ENET_DMA_INTEN_ETIE BIT(10) /*!< early transmit interrupt enable */ +#define ENET_DMA_INTEN_FBEIE BIT(13) /*!< fatal bus error interrupt enable */ +#define ENET_DMA_INTEN_ERIE BIT(14) /*!< early receive interrupt enable */ +#define ENET_DMA_INTEN_AIE BIT(15) /*!< abnormal interrupt summary enable */ +#define ENET_DMA_INTEN_NIE BIT(16) /*!< normal interrupt summary enable */ + +/* ENET_DMA_MFBOCNT */ +#define ENET_DMA_MFBOCNT_MSFC BITS(0,15) /*!< missed frames by the controller */ +#define ENET_DMA_MFBOCNT_MSFA BITS(17,27) /*!< missed frames by the application */ + +/* ENET_DMA_RSWDC */ +#define ENET_DMA_RSWDC_WDCFRS BITS(0,7) /*!< watchdog counter for receive status (RS) */ + +/* ENET_DMA_CTDADDR */ +#define ENET_DMA_CTDADDR_TDAP BITS(0,31) /*!< transmit descriptor address pointer */ + +/* ENET_DMA_CRDADDR */ +#define ENET_DMA_CRDADDR_RDAP BITS(0,31) /*!< receive descriptor address pointer */ + +/* ENET_DMA_CTBADDR */ +#define ENET_DMA_CTBADDR_TBAP BITS(0,31) /*!< transmit buffer address pointer */ + +/* ENET_DMA_CRBADDR */ +#define ENET_DMA_CRBADDR_RBAP BITS(0,31) /*!< receive buffer address pointer */ + +/* ENET DMA Tx descriptor TDES0 */ +#define ENET_TDES0_DB BIT(0) /*!< deferred */ +#define ENET_TDES0_UFE BIT(1) /*!< underflow error */ +#define ENET_TDES0_EXD BIT(2) /*!< excessive deferral */ +#define ENET_TDES0_COCNT BITS(3,6) /*!< collision count */ +#define ENET_TDES0_VFRM BIT(7) /*!< VLAN frame */ +#define ENET_TDES0_ECO BIT(8) /*!< excessive collision */ +#define ENET_TDES0_LCO BIT(9) /*!< late collision */ +#define ENET_TDES0_NCA BIT(10) /*!< no carrier */ +#define ENET_TDES0_LCA BIT(11) /*!< loss of carrier */ +#define ENET_TDES0_IPPE BIT(12) /*!< IP payload error */ +#define ENET_TDES0_FRMF BIT(13) /*!< frame flushed */ +#define ENET_TDES0_JT BIT(14) /*!< jabber timeout */ +#define ENET_TDES0_ES BIT(15) /*!< error summary */ +#define ENET_TDES0_IPHE BIT(16) /*!< IP header error */ +#define ENET_TDES0_TTMSS BIT(17) /*!< transmit timestamp status */ +#define ENET_TDES0_TCHM BIT(20) /*!< the second address chained mode */ +#define ENET_TDES0_TERM BIT(21) /*!< transmit end of ring mode*/ +#define ENET_TDES0_CM BITS(22,23) /*!< checksum mode */ +#define ENET_TDES0_TTSEN BIT(25) /*!< transmit timestamp function enable */ +#define ENET_TDES0_DPAD BIT(26) /*!< disable adding pad */ +#define ENET_TDES0_DCRC BIT(27) /*!< disable CRC */ +#define ENET_TDES0_FSG BIT(28) /*!< first segment */ +#define ENET_TDES0_LSG BIT(29) /*!< last segment */ +#define ENET_TDES0_INTC BIT(30) /*!< interrupt on completion */ +#define ENET_TDES0_DAV BIT(31) /*!< DAV bit */ + +/* ENET DMA Tx descriptor TDES1 */ +#define ENET_TDES1_TB1S BITS(0,12) /*!< transmit buffer 1 size */ +#define ENET_TDES1_TB2S BITS(16,28) /*!< transmit buffer 2 size */ + +/* ENET DMA Tx descriptor TDES2 */ +#define ENET_TDES2_TB1AP BITS(0,31) /*!< transmit buffer 1 address pointer/transmit frame timestamp low 32-bit value */ + +/* ENET DMA Tx descriptor TDES3 */ +#define ENET_TDES3_TB2AP BITS(0,31) /*!< transmit buffer 2 address pointer (or next descriptor address) / transmit frame timestamp high 32-bit value */ + +#ifdef SELECT_DESCRIPTORS_ENHANCED_MODE +/* ENET DMA Tx descriptor TDES6 */ +#define ENET_TDES6_TTSL BITS(0,31) /*!< transmit frame timestamp low 32-bit value */ + +/* ENET DMA Tx descriptor TDES7 */ +#define ENET_TDES7_TTSH BITS(0,31) /*!< transmit frame timestamp high 32-bit value */ +#endif /* SELECT_DESCRIPTORS_ENHANCED_MODE */ + +/* ENET DMA Rx descriptor RDES0 */ +#define ENET_RDES0_PCERR BIT(0) /*!< payload checksum error */ +#define ENET_RDES0_EXSV BIT(0) /*!< extended status valid */ +#define ENET_RDES0_CERR BIT(1) /*!< CRC error */ +#define ENET_RDES0_DBERR BIT(2) /*!< dribble bit error */ +#define ENET_RDES0_RERR BIT(3) /*!< receive error */ +#define ENET_RDES0_RWDT BIT(4) /*!< receive watchdog timeout */ +#define ENET_RDES0_FRMT BIT(5) /*!< frame type */ +#define ENET_RDES0_LCO BIT(6) /*!< late collision */ +#define ENET_RDES0_IPHERR BIT(7) /*!< IP frame header error */ +#define ENET_RDES0_TSV BIT(7) /*!< timestamp valid */ +#define ENET_RDES0_LDES BIT(8) /*!< last descriptor */ +#define ENET_RDES0_FDES BIT(9) /*!< first descriptor */ +#define ENET_RDES0_VTAG BIT(10) /*!< VLAN tag */ +#define ENET_RDES0_OERR BIT(11) /*!< overflow Error */ +#define ENET_RDES0_LERR BIT(12) /*!< length error */ +#define ENET_RDES0_SAFF BIT(13) /*!< SA filter fail */ +#define ENET_RDES0_DERR BIT(14) /*!< descriptor error */ +#define ENET_RDES0_ERRS BIT(15) /*!< error summary */ +#define ENET_RDES0_FRML BITS(16,29) /*!< frame length */ +#define ENET_RDES0_DAFF BIT(30) /*!< destination address filter fail */ +#define ENET_RDES0_DAV BIT(31) /*!< descriptor available */ + +/* ENET DMA Rx descriptor RDES1 */ +#define ENET_RDES1_RB1S BITS(0,12) /*!< receive buffer 1 size */ +#define ENET_RDES1_RCHM BIT(14) /*!< receive chained mode for second address */ +#define ENET_RDES1_RERM BIT(15) /*!< receive end of ring mode*/ +#define ENET_RDES1_RB2S BITS(16,28) /*!< receive buffer 2 size */ +#define ENET_RDES1_DINTC BIT(31) /*!< disable interrupt on completion */ + +/* ENET DMA Rx descriptor RDES2 */ +#define ENET_RDES2_RB1AP BITS(0,31) /*!< receive buffer 1 address pointer / receive frame timestamp low 32-bit */ + +/* ENET DMA Rx descriptor RDES3 */ +#define ENET_RDES3_RB2AP BITS(0,31) /*!< receive buffer 2 address pointer (next descriptor address)/receive frame timestamp high 32-bit value */ + +#ifdef SELECT_DESCRIPTORS_ENHANCED_MODE +/* ENET DMA Rx descriptor RDES4 */ +#define ENET_RDES4_IPPLDT BITS(0,2) /*!< IP frame payload type */ +#define ENET_RDES4_IPHERR BIT(3) /*!< IP frame header error */ +#define ENET_RDES4_IPPLDERR BIT(4) /*!< IP frame payload error */ +#define ENET_RDES4_IPCKSB BIT(5) /*!< IP frame checksum bypassed */ +#define ENET_RDES4_IPF4 BIT(6) /*!< IP frame in version 4 */ +#define ENET_RDES4_IPF6 BIT(7) /*!< IP frame in version 6 */ +#define ENET_RDES4_PTPMT BITS(8,11) /*!< PTP message type */ +#define ENET_RDES4_PTPOEF BIT(12) /*!< PTP on ethernet frame */ +#define ENET_RDES4_PTPVF BIT(13) /*!< PTP version format */ + +/* ENET DMA Rx descriptor RDES6 */ +#define ENET_RDES6_RTSL BITS(0,31) /*!< receive frame timestamp low 32-bit value */ + +/* ENET DMA Rx descriptor RDES7 */ +#define ENET_RDES7_RTSH BITS(0,31) /*!< receive frame timestamp high 32-bit value */ +#endif /* SELECT_DESCRIPTORS_ENHANCED_MODE */ + +/* constants definitions */ +/* define bit position and its register index offset */ +#define ENET_REGIDX_BIT(regidx, bitpos) (((uint32_t)(regidx) << 6) | (uint32_t)(bitpos)) +#define ENET_REG_VAL(periph) (REG32(ENET + ((uint32_t)(periph) >> 6))) +#define ENET_BIT_POS(val) ((uint32_t)(val) & 0x1FU) + +/* ENET clock range judgement */ +#define ENET_RANGE(hclk, n, m) (((hclk) >= (n))&&((hclk) < (m))) + +/* define MAC address configuration and reference address */ +#define ENET_SET_MACADDRH(p) (((uint32_t)(p)[5] << 8) | (uint32_t)(p)[4]) +#define ENET_SET_MACADDRL(p) (((uint32_t)(p)[3] << 24) | ((uint32_t)(p)[2] << 16) | ((uint32_t)(p)[1] << 8) | (uint32_t)(p)[0]) +#define ENET_ADDRH_BASE ((ENET) + 0x40U) +#define ENET_ADDRL_BASE ((ENET) + 0x44U) +#define ENET_GET_MACADDR(offset, n) ((uint8_t)((REG32((ENET_ADDRL_BASE + (offset)) - (((n) / 4U) * 4U)) >> (8U * ((n) % 4U))) & 0xFFU)) + +/* register offset */ +#define MAC_FCTL_REG_OFFSET ((uint16_t)0x0018U) /*!< MAC flow control register offset */ +#define MAC_WUM_REG_OFFSET ((uint16_t)0x002CU) /*!< MAC wakeup management register offset */ +#define MAC_INTF_REG_OFFSET ((uint16_t)0x0038U) /*!< MAC interrupt flag register offset */ +#define MAC_INTMSK_REG_OFFSET ((uint16_t)0x003CU) /*!< MAC interrupt mask register offset */ + +#define MSC_RINTF_REG_OFFSET ((uint16_t)0x0104U) /*!< MSC receive interrupt flag register offset */ +#define MSC_TINTF_REG_OFFSET ((uint16_t)0x0108U) /*!< MSC transmit interrupt flag register offset */ +#define MSC_RINTMSK_REG_OFFSET ((uint16_t)0x010CU) /*!< MSC receive interrupt mask register offset */ +#define MSC_TINTMSK_REG_OFFSET ((uint16_t)0x0110U) /*!< MSC transmit interrupt mask register offset */ +#define MSC_SCCNT_REG_OFFSET ((uint16_t)0x014CU) /*!< MSC transmitted good frames after a single collision counter register offset */ +#define MSC_MSCCNT_REG_OFFSET ((uint16_t)0x0150U) /*!< MSC transmitted good frames after more than a single collision counter register offset */ +#define MSC_TGFCNT_REG_OFFSET ((uint16_t)0x0168U) /*!< MSC transmitted good frames counter register offset */ +#define MSC_RFCECNT_REG_OFFSET ((uint16_t)0x0194U) /*!< MSC received frames with CRC error counter register offset */ +#define MSC_RFAECNT_REG_OFFSET ((uint16_t)0x0198U) /*!< MSC received frames with alignment error counter register offset */ +#define MSC_RGUFCNT_REG_OFFSET ((uint16_t)0x01C4U) /*!< MSC received good unicast frames counter register offset */ + +#define PTP_TSF_REG_OFFSET ((uint16_t)0x0728U) /*!< PTP time stamp flag register offset */ + +#define DMA_STAT_REG_OFFSET ((uint16_t)0x1014U) /*!< DMA status register offset */ +#define DMA_INTEN_REG_OFFSET ((uint16_t)0x101CU) /*!< DMA interrupt enable register offset */ +#define DMA_TDTADDR_REG_OFFSET ((uint16_t)0x1010U) /*!< DMA transmit descriptor table address register offset */ +#define DMA_CTDADDR_REG_OFFSET ((uint16_t)0x1048U) /*!< DMA current transmit descriptor address register */ +#define DMA_CTBADDR_REG_OFFSET ((uint16_t)0x1050U) /*!< DMA current transmit buffer address register */ +#define DMA_RDTADDR_REG_OFFSET ((uint16_t)0x100CU) /*!< DMA receive descriptor table address register */ +#define DMA_CRDADDR_REG_OFFSET ((uint16_t)0x104CU) /*!< DMA current receive descriptor address register */ +#define DMA_CRBADDR_REG_OFFSET ((uint16_t)0x1054U) /*!< DMA current receive buffer address register */ + +/* ENET status flag get */ +typedef enum +{ + /* ENET_MAC_WUM register */ + ENET_MAC_FLAG_MPKR = ENET_REGIDX_BIT(MAC_WUM_REG_OFFSET, 5U), /*!< magic packet received flag */ + ENET_MAC_FLAG_WUFR = ENET_REGIDX_BIT(MAC_WUM_REG_OFFSET, 6U), /*!< wakeup frame received flag */ + /* ENET_MAC_FCTL register */ + ENET_MAC_FLAG_FLOWCONTROL = ENET_REGIDX_BIT(MAC_FCTL_REG_OFFSET, 0U), /*!< flow control status flag */ + /* ENET_MAC_INTF register */ + ENET_MAC_FLAG_WUM = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 3U), /*!< WUM status flag */ + ENET_MAC_FLAG_MSC = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 4U), /*!< MSC status flag */ + ENET_MAC_FLAG_MSCR = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 5U), /*!< MSC receive status flag */ + ENET_MAC_FLAG_MSCT = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 6U), /*!< MSC transmit status flag */ + ENET_MAC_FLAG_TMST = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 9U), /*!< timestamp trigger status flag */ + /* ENET_PTP_TSF register */ + ENET_PTP_FLAG_TSSCO = ENET_REGIDX_BIT(PTP_TSF_REG_OFFSET, 0U), /*!< timestamp second counter overflow flag */ + ENET_PTP_FLAG_TTM = ENET_REGIDX_BIT(PTP_TSF_REG_OFFSET, 1U), /*!< target time match flag */ + /* ENET_MSC_RINTF register */ + ENET_MSC_FLAG_RFCE = ENET_REGIDX_BIT(MSC_RINTF_REG_OFFSET, 5U), /*!< received frames CRC error flag */ + ENET_MSC_FLAG_RFAE = ENET_REGIDX_BIT(MSC_RINTF_REG_OFFSET, 6U), /*!< received frames alignment error flag */ + ENET_MSC_FLAG_RGUF = ENET_REGIDX_BIT(MSC_RINTF_REG_OFFSET, 17U), /*!< received good unicast frames flag */ + /* ENET_MSC_TINTF register */ + ENET_MSC_FLAG_TGFSC = ENET_REGIDX_BIT(MSC_TINTF_REG_OFFSET, 14U), /*!< transmitted good frames single collision flag */ + ENET_MSC_FLAG_TGFMSC = ENET_REGIDX_BIT(MSC_TINTF_REG_OFFSET, 15U), /*!< transmitted good frames more single collision flag */ + ENET_MSC_FLAG_TGF = ENET_REGIDX_BIT(MSC_TINTF_REG_OFFSET, 21U), /*!< transmitted good frames flag */ + /* ENET_DMA_STAT register */ + ENET_DMA_FLAG_TS = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 0U), /*!< transmit status flag */ + ENET_DMA_FLAG_TPS = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 1U), /*!< transmit process stopped status flag */ + ENET_DMA_FLAG_TBU = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 2U), /*!< transmit buffer unavailable status flag */ + ENET_DMA_FLAG_TJT = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 3U), /*!< transmit jabber timeout status flag */ + ENET_DMA_FLAG_RO = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 4U), /*!< receive overflow status flag */ + ENET_DMA_FLAG_TU = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 5U), /*!< transmit underflow status flag */ + ENET_DMA_FLAG_RS = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 6U), /*!< receive status flag */ + ENET_DMA_FLAG_RBU = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 7U), /*!< receive buffer unavailable status flag */ + ENET_DMA_FLAG_RPS = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 8U), /*!< receive process stopped status flag */ + ENET_DMA_FLAG_RWT = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 9U), /*!< receive watchdog timeout status flag */ + ENET_DMA_FLAG_ET = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 10U), /*!< early transmit status flag */ + ENET_DMA_FLAG_FBE = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 13U), /*!< fatal bus error status flag */ + ENET_DMA_FLAG_ER = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 14U), /*!< early receive status flag */ + ENET_DMA_FLAG_AI = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 15U), /*!< abnormal interrupt summary flag */ + ENET_DMA_FLAG_NI = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 16U), /*!< normal interrupt summary flag */ + ENET_DMA_FLAG_EB_DMA_ERROR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 23U), /*!< error during data transfer by RxDMA/TxDMA flag */ + ENET_DMA_FLAG_EB_TRANSFER_ERROR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 24U), /*!< error during write/read transfer flag */ + ENET_DMA_FLAG_EB_ACCESS_ERROR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 25U), /*!< error during data buffer/descriptor access flag */ + ENET_DMA_FLAG_MSC = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 27U), /*!< MSC status flag */ + ENET_DMA_FLAG_WUM = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 28U), /*!< WUM status flag */ + ENET_DMA_FLAG_TST = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 29U), /*!< timestamp trigger status flag */ +}enet_flag_enum; + +/* ENET stutus flag clear */ +typedef enum +{ + /* ENET_DMA_STAT register */ + ENET_DMA_FLAG_TS_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 0U), /*!< transmit status flag */ + ENET_DMA_FLAG_TPS_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 1U), /*!< transmit process stopped status flag */ + ENET_DMA_FLAG_TBU_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 2U), /*!< transmit buffer unavailable status flag */ + ENET_DMA_FLAG_TJT_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 3U), /*!< transmit jabber timeout status flag */ + ENET_DMA_FLAG_RO_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 4U), /*!< receive overflow status flag */ + ENET_DMA_FLAG_TU_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 5U), /*!< transmit underflow status flag */ + ENET_DMA_FLAG_RS_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 6U), /*!< receive status flag */ + ENET_DMA_FLAG_RBU_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 7U), /*!< receive buffer unavailable status flag */ + ENET_DMA_FLAG_RPS_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 8U), /*!< receive process stopped status flag */ + ENET_DMA_FLAG_RWT_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 9U), /*!< receive watchdog timeout status flag */ + ENET_DMA_FLAG_ET_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 10U), /*!< early transmit status flag */ + ENET_DMA_FLAG_FBE_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 13U), /*!< fatal bus error status flag */ + ENET_DMA_FLAG_ER_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 14U), /*!< early receive status flag */ + ENET_DMA_FLAG_AI_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 15U), /*!< abnormal interrupt summary flag */ + ENET_DMA_FLAG_NI_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 16U), /*!< normal interrupt summary flag */ +}enet_flag_clear_enum; + +/* ENET interrupt enable/disable */ +typedef enum +{ + /* ENET_MAC_INTMSK register */ + ENET_MAC_INT_WUMIM = ENET_REGIDX_BIT(MAC_INTMSK_REG_OFFSET, 3U), /*!< WUM interrupt mask */ + ENET_MAC_INT_TMSTIM = ENET_REGIDX_BIT(MAC_INTMSK_REG_OFFSET, 9U), /*!< timestamp trigger interrupt mask */ + /* ENET_MSC_RINTMSK register */ + ENET_MSC_INT_RFCEIM = ENET_REGIDX_BIT(MSC_RINTMSK_REG_OFFSET, 5U), /*!< received frame CRC error interrupt mask */ + ENET_MSC_INT_RFAEIM = ENET_REGIDX_BIT(MSC_RINTMSK_REG_OFFSET, 6U), /*!< received frames alignment error interrupt mask */ + ENET_MSC_INT_RGUFIM = ENET_REGIDX_BIT(MSC_RINTMSK_REG_OFFSET, 17U), /*!< received good unicast frames interrupt mask */ + /* ENET_MSC_TINTMSK register */ + ENET_MSC_INT_TGFSCIM = ENET_REGIDX_BIT(MSC_TINTMSK_REG_OFFSET, 14U), /*!< transmitted good frames single collision interrupt mask */ + ENET_MSC_INT_TGFMSCIM = ENET_REGIDX_BIT(MSC_TINTMSK_REG_OFFSET, 15U), /*!< transmitted good frames more single collision interrupt mask */ + ENET_MSC_INT_TGFIM = ENET_REGIDX_BIT(MSC_TINTMSK_REG_OFFSET, 21U), /*!< transmitted good frames interrupt mask */ + /* ENET_DMA_INTEN register */ + ENET_DMA_INT_TIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 0U), /*!< transmit interrupt enable */ + ENET_DMA_INT_TPSIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 1U), /*!< transmit process stopped interrupt enable */ + ENET_DMA_INT_TBUIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 2U), /*!< transmit buffer unavailable interrupt enable */ + ENET_DMA_INT_TJTIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 3U), /*!< transmit jabber timeout interrupt enable */ + ENET_DMA_INT_ROIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 4U), /*!< receive overflow interrupt enable */ + ENET_DMA_INT_TUIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 5U), /*!< transmit underflow interrupt enable */ + ENET_DMA_INT_RIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 6U), /*!< receive interrupt enable */ + ENET_DMA_INT_RBUIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 7U), /*!< receive buffer unavailable interrupt enable */ + ENET_DMA_INT_RPSIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 8U), /*!< receive process stopped interrupt enable */ + ENET_DMA_INT_RWTIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 9U), /*!< receive watchdog timeout interrupt enable */ + ENET_DMA_INT_ETIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 10U), /*!< early transmit interrupt enable */ + ENET_DMA_INT_FBEIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 13U), /*!< fatal bus error interrupt enable */ + ENET_DMA_INT_ERIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 14U), /*!< early receive interrupt enable */ + ENET_DMA_INT_AIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 15U), /*!< abnormal interrupt summary enable */ + ENET_DMA_INT_NIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 16U), /*!< normal interrupt summary enable */ +}enet_int_enum; + +/* ENET interrupt flag get */ +typedef enum +{ + /* ENET_MAC_INTF register */ + ENET_MAC_INT_FLAG_WUM = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 3U), /*!< WUM status flag */ + ENET_MAC_INT_FLAG_MSC = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 4U), /*!< MSC status flag */ + ENET_MAC_INT_FLAG_MSCR = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 5U), /*!< MSC receive status flag */ + ENET_MAC_INT_FLAG_MSCT = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 6U), /*!< MSC transmit status flag */ + ENET_MAC_INT_FLAG_TMST = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 9U), /*!< timestamp trigger status flag */ + /* ENET_MSC_RINTF register */ + ENET_MSC_INT_FLAG_RFCE = ENET_REGIDX_BIT(MSC_RINTF_REG_OFFSET, 5U), /*!< received frames CRC error flag */ + ENET_MSC_INT_FLAG_RFAE = ENET_REGIDX_BIT(MSC_RINTF_REG_OFFSET, 6U), /*!< received frames alignment error flag */ + ENET_MSC_INT_FLAG_RGUF = ENET_REGIDX_BIT(MSC_RINTF_REG_OFFSET, 17U), /*!< received good unicast frames flag */ + /* ENET_MSC_TINTF register */ + ENET_MSC_INT_FLAG_TGFSC = ENET_REGIDX_BIT(MSC_TINTF_REG_OFFSET, 14U), /*!< transmitted good frames single collision flag */ + ENET_MSC_INT_FLAG_TGFMSC = ENET_REGIDX_BIT(MSC_TINTF_REG_OFFSET, 15U), /*!< transmitted good frames more single collision flag */ + ENET_MSC_INT_FLAG_TGF = ENET_REGIDX_BIT(MSC_TINTF_REG_OFFSET, 21U), /*!< transmitted good frames flag */ + /* ENET_DMA_STAT register */ + ENET_DMA_INT_FLAG_TS = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 0U), /*!< transmit status flag */ + ENET_DMA_INT_FLAG_TPS = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 1U), /*!< transmit process stopped status flag */ + ENET_DMA_INT_FLAG_TBU = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 2U), /*!< transmit buffer unavailable status flag */ + ENET_DMA_INT_FLAG_TJT = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 3U), /*!< transmit jabber timeout status flag */ + ENET_DMA_INT_FLAG_RO = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 4U), /*!< receive overflow status flag */ + ENET_DMA_INT_FLAG_TU = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 5U), /*!< transmit underflow status flag */ + ENET_DMA_INT_FLAG_RS = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 6U), /*!< receive status flag */ + ENET_DMA_INT_FLAG_RBU = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 7U), /*!< receive buffer unavailable status flag */ + ENET_DMA_INT_FLAG_RPS = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 8U), /*!< receive process stopped status flag */ + ENET_DMA_INT_FLAG_RWT = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 9U), /*!< receive watchdog timeout status flag */ + ENET_DMA_INT_FLAG_ET = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 10U), /*!< early transmit status flag */ + ENET_DMA_INT_FLAG_FBE = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 13U), /*!< fatal bus error status flag */ + ENET_DMA_INT_FLAG_ER = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 14U), /*!< early receive status flag */ + ENET_DMA_INT_FLAG_AI = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 15U), /*!< abnormal interrupt summary flag */ + ENET_DMA_INT_FLAG_NI = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 16U), /*!< normal interrupt summary flag */ + ENET_DMA_INT_FLAG_MSC = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 27U), /*!< MSC status flag */ + ENET_DMA_INT_FLAG_WUM = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 28U), /*!< WUM status flag */ + ENET_DMA_INT_FLAG_TST = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 29U), /*!< timestamp trigger status flag */ +}enet_int_flag_enum; + +/* ENET interrupt flag clear */ +typedef enum +{ + /* ENET_DMA_STAT register */ + ENET_DMA_INT_FLAG_TS_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 0U), /*!< transmit status flag */ + ENET_DMA_INT_FLAG_TPS_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 1U), /*!< transmit process stopped status flag */ + ENET_DMA_INT_FLAG_TBU_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 2U), /*!< transmit buffer unavailable status flag */ + ENET_DMA_INT_FLAG_TJT_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 3U), /*!< transmit jabber timeout status flag */ + ENET_DMA_INT_FLAG_RO_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 4U), /*!< receive overflow status flag */ + ENET_DMA_INT_FLAG_TU_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 5U), /*!< transmit underflow status flag */ + ENET_DMA_INT_FLAG_RS_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 6U), /*!< receive status flag */ + ENET_DMA_INT_FLAG_RBU_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 7U), /*!< receive buffer unavailable status flag */ + ENET_DMA_INT_FLAG_RPS_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 8U), /*!< receive process stopped status flag */ + ENET_DMA_INT_FLAG_RWT_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 9U), /*!< receive watchdog timeout status flag */ + ENET_DMA_INT_FLAG_ET_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 10U), /*!< early transmit status flag */ + ENET_DMA_INT_FLAG_FBE_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 13U), /*!< fatal bus error status flag */ + ENET_DMA_INT_FLAG_ER_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 14U), /*!< early receive status flag */ + ENET_DMA_INT_FLAG_AI_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 15U), /*!< abnormal interrupt summary flag */ + ENET_DMA_INT_FLAG_NI_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 16U), /*!< normal interrupt summary flag */ +}enet_int_flag_clear_enum; + +/* current RX/TX descriptor/buffer/descriptor table address get */ +typedef enum +{ + ENET_RX_DESC_TABLE = DMA_RDTADDR_REG_OFFSET, /*!< RX descriptor table */ + ENET_RX_CURRENT_DESC = DMA_CRDADDR_REG_OFFSET, /*!< current RX descriptor */ + ENET_RX_CURRENT_BUFFER = DMA_CRBADDR_REG_OFFSET, /*!< current RX buffer */ + ENET_TX_DESC_TABLE = DMA_TDTADDR_REG_OFFSET, /*!< TX descriptor table */ + ENET_TX_CURRENT_DESC = DMA_CTDADDR_REG_OFFSET, /*!< current TX descriptor */ + ENET_TX_CURRENT_BUFFER = DMA_CTBADDR_REG_OFFSET /*!< current TX buffer */ +}enet_desc_reg_enum; + +/* MAC statistics counter get */ +typedef enum +{ + ENET_MSC_TX_SCCNT = MSC_SCCNT_REG_OFFSET, /*!< MSC transmitted good frames after a single collision counter */ + ENET_MSC_TX_MSCCNT = MSC_MSCCNT_REG_OFFSET, /*!< MSC transmitted good frames after more than a single collision counter */ + ENET_MSC_TX_TGFCNT = MSC_TGFCNT_REG_OFFSET, /*!< MSC transmitted good frames counter */ + ENET_MSC_RX_RFCECNT = MSC_RFCECNT_REG_OFFSET, /*!< MSC received frames with CRC error counter */ + ENET_MSC_RX_RFAECNT = MSC_RFAECNT_REG_OFFSET, /*!< MSC received frames with alignment error counter */ + ENET_MSC_RX_RGUFCNT = MSC_RGUFCNT_REG_OFFSET /*!< MSC received good unicast frames counter */ +}enet_msc_counter_enum; + +/* function option, used for ENET initialization */ +typedef enum +{ + FORWARD_OPTION = BIT(0), /*!< configure the frame forward related parameters */ + DMABUS_OPTION = BIT(1), /*!< configure the DMA bus mode related parameters */ + DMA_MAXBURST_OPTION = BIT(2), /*!< configure the DMA max burst related parameters */ + DMA_ARBITRATION_OPTION = BIT(3), /*!< configure the DMA arbitration related parameters */ + STORE_OPTION = BIT(4), /*!< configure the store forward mode related parameters */ + DMA_OPTION = BIT(5), /*!< configure the DMA control related parameters */ + VLAN_OPTION = BIT(6), /*!< configure the VLAN tag related parameters */ + FLOWCTL_OPTION = BIT(7), /*!< configure the flow control related parameters */ + HASHH_OPTION = BIT(8), /*!< configure the hash list high 32-bit related parameters */ + HASHL_OPTION = BIT(9), /*!< configure the hash list low 32-bit related parameters */ + FILTER_OPTION = BIT(10), /*!< configure the frame filter control related parameters */ + HALFDUPLEX_OPTION = BIT(11), /*!< configure the halfduplex related parameters */ + TIMER_OPTION = BIT(12), /*!< configure the frame timer related parameters */ + INTERFRAMEGAP_OPTION = BIT(13), /*!< configure the inter frame gap related parameters */ +}enet_option_enum; + +/* phy mode and mac loopback configurations */ +typedef enum +{ + ENET_AUTO_NEGOTIATION = 0x01U, /*!< PHY auto negotiation */ + ENET_100M_FULLDUPLEX = (ENET_MAC_CFG_SPD | ENET_MAC_CFG_DPM), /*!< 100Mbit/s, full-duplex */ + ENET_100M_HALFDUPLEX = ENET_MAC_CFG_SPD , /*!< 100Mbit/s, half-duplex */ + ENET_10M_FULLDUPLEX = ENET_MAC_CFG_DPM, /*!< 10Mbit/s, full-duplex */ + ENET_10M_HALFDUPLEX = (uint32_t)0x00000000U, /*!< 10Mbit/s, half-duplex */ + ENET_LOOPBACKMODE = (ENET_MAC_CFG_LBM | ENET_MAC_CFG_DPM) /*!< MAC in loopback mode at the MII */ +}enet_mediamode_enum; + +/* IP frame checksum function */ +typedef enum +{ + ENET_NO_AUTOCHECKSUM = (uint32_t)0x00000000U, /*!< disable IP frame checksum function */ + ENET_AUTOCHECKSUM_DROP_FAILFRAMES = ENET_MAC_CFG_IPFCO, /*!< enable IP frame checksum function */ + ENET_AUTOCHECKSUM_ACCEPT_FAILFRAMES = (ENET_MAC_CFG_IPFCO|ENET_DMA_CTL_DTCERFD) /*!< enable IP frame checksum function, and the received frame + with only payload error but no other errors will not be dropped */ +}enet_chksumconf_enum; + +/* received frame filter function */ +typedef enum +{ + ENET_PROMISCUOUS_MODE = ENET_MAC_FRMF_PM, /*!< promiscuous mode enabled */ + ENET_RECEIVEALL = (int32_t)ENET_MAC_FRMF_FAR, /*!< all received frame are forwarded to application */ + ENET_BROADCAST_FRAMES_PASS = (uint32_t)0x00000000U, /*!< the address filters pass all received broadcast frames */ + ENET_BROADCAST_FRAMES_DROP = ENET_MAC_FRMF_BFRMD /*!< the address filters filter all incoming broadcast frames */ +}enet_frmrecept_enum; + +/* register group value get */ +typedef enum +{ + ALL_MAC_REG = 0U, /*!< MAC register group */ + ALL_MSC_REG = 22U, /*!< MSC register group */ + ALL_PTP_REG = 33U, /*!< PTP register group */ + ALL_DMA_REG = 44U, /*!< DMA register group */ +}enet_registers_type_enum; + +/* dma direction select */ +typedef enum +{ + ENET_DMA_TX = ENET_DMA_STAT_TP, /*!< DMA transmit direction */ + ENET_DMA_RX = ENET_DMA_STAT_RP /*!< DMA receive direction */ +}enet_dmadirection_enum; + +/* PHY operation direction select */ +typedef enum +{ + ENET_PHY_READ = (uint32_t)0x00000000, /*!< read PHY */ + ENET_PHY_WRITE = ENET_MAC_PHY_CTL_PW /*!< write PHY */ +}enet_phydirection_enum; + +/* register operation direction select */ +typedef enum +{ + ENET_REG_READ, /*!< read register */ + ENET_REG_WRITE /*!< write register */ +}enet_regdirection_enum; + +/* ENET MAC addresses */ +typedef enum +{ + ENET_MAC_ADDRESS0 = ((uint32_t)0x00000000), /*!< MAC address0 */ + ENET_MAC_ADDRESS1 = ((uint32_t)0x00000008), /*!< MAC address1 */ + ENET_MAC_ADDRESS2 = ((uint32_t)0x00000010), /*!< MAC address2 */ + ENET_MAC_ADDRESS3 = ((uint32_t)0x00000018) /*!< MAC address3 */ +}enet_macaddress_enum; + +/* descriptor information */ +typedef enum +{ + TXDESC_COLLISION_COUNT, /*!< the number of collisions occurred before the frame was transmitted */ + TXDESC_BUFFER_1_ADDR, /*!< transmit frame buffer 1 address */ + RXDESC_FRAME_LENGTH, /*!< the byte length of the received frame that was transferred to the buffer */ + RXDESC_BUFFER_1_SIZE, /*!< receive buffer 1 size */ + RXDESC_BUFFER_2_SIZE, /*!< receive buffer 2 size */ + RXDESC_BUFFER_1_ADDR /*!< receive frame buffer 1 address */ +}enet_descstate_enum; + +/* MSC counters preset mode */ +typedef enum +{ + ENET_MSC_PRESET_NONE = 0U, /*!< do not preset MSC counter */ + ENET_MSC_PRESET_HALF = ENET_MSC_CTL_PMC, /*!< preset all MSC counters to almost-half(0x7FFF FFF0) value */ + ENET_MSC_PRESET_FULL = ENET_MSC_CTL_PMC | ENET_MSC_CTL_AFHPM /*!< preset all MSC counters to almost-full(0xFFFF FFF0) value */ +}enet_msc_preset_enum; + +typedef enum{ + ENET_CKNT_ORDINARY = PTP_TSCTL_CKNT(0), /*!< type of ordinary clock node type for timestamp */ + ENET_CKNT_BOUNDARY = PTP_TSCTL_CKNT(1), /*!< type of boundary clock node type for timestamp */ + ENET_CKNT_END_TO_END = PTP_TSCTL_CKNT(2), /*!< type of end-to-end transparent clock node type for timestamp */ + ENET_CKNT_PEER_TO_PEER = PTP_TSCTL_CKNT(3), /*!< type of peer-to-peer transparent clock node type for timestamp */ + ENET_PTP_SYSTIME_INIT = ENET_PTP_TSCTL_TMSSTI, /*!< timestamp initialize */ + ENET_PTP_SYSTIME_UPDATE = ENET_PTP_TSCTL_TMSSTU, /*!< timestamp update */ + ENET_PTP_ADDEND_UPDATE = ENET_PTP_TSCTL_TMSARU, /*!< addend register update */ + ENET_PTP_FINEMODE = (int32_t)(ENET_PTP_TSCTL_TMSFCU| BIT(31)), /*!< the system timestamp uses the fine method for updating */ + ENET_PTP_COARSEMODE = ENET_PTP_TSCTL_TMSFCU, /*!< the system timestamp uses the coarse method for updating */ + ENET_SUBSECOND_DIGITAL_ROLLOVER = (int32_t)(ENET_PTP_TSCTL_SCROM | BIT(31)), /*!< digital rollover mode */ + ENET_SUBSECOND_BINARY_ROLLOVER = ENET_PTP_TSCTL_SCROM, /*!< binary rollover mode */ + ENET_SNOOPING_PTP_VERSION_2 = (int32_t)(ENET_PTP_TSCTL_PFSV| BIT(31)), /*!< version 2 */ + ENET_SNOOPING_PTP_VERSION_1 = ENET_PTP_TSCTL_PFSV, /*!< version 1 */ + ENET_EVENT_TYPE_MESSAGES_SNAPSHOT = (int32_t)(ENET_PTP_TSCTL_ETMSEN| BIT(31)), /*!< only event type messages are taken snapshot */ + ENET_ALL_TYPE_MESSAGES_SNAPSHOT = ENET_PTP_TSCTL_ETMSEN, /*!< all type messages are taken snapshot except announce, management and signaling message */ + ENET_MASTER_NODE_MESSAGE_SNAPSHOT = (int32_t)(ENET_PTP_TSCTL_MNMSEN| BIT(31)), /*!< snapshot is only take for master node message */ + ENET_SLAVE_NODE_MESSAGE_SNAPSHOT = ENET_PTP_TSCTL_MNMSEN, /*!< snapshot is only taken for slave node message */ +}enet_ptp_function_enum; + +/* structure for initialization of the ENET */ +typedef struct +{ + uint32_t option_enable; /*!< select which function to configure */ + uint32_t forward_frame; /*!< frame forward related parameters */ + uint32_t dmabus_mode; /*!< DMA bus mode related parameters */ + uint32_t dma_maxburst; /*!< DMA max burst related parameters */ + uint32_t dma_arbitration; /*!< DMA Tx and Rx arbitration related parameters */ + uint32_t store_forward_mode; /*!< store forward mode related parameters */ + uint32_t dma_function; /*!< DMA control related parameters */ + uint32_t vlan_config; /*!< VLAN tag related parameters */ + uint32_t flow_control; /*!< flow control related parameters */ + uint32_t hashtable_high; /*!< hash list high 32-bit related parameters */ + uint32_t hashtable_low; /*!< hash list low 32-bit related parameters */ + uint32_t framesfilter_mode; /*!< frame filter control related parameters */ + uint32_t halfduplex_param; /*!< halfduplex related parameters */ + uint32_t timer_config; /*!< frame timer related parameters */ + uint32_t interframegap; /*!< inter frame gap related parameters */ +}enet_initpara_struct; + +/* structure for ENET DMA desciptors */ +typedef struct +{ + uint32_t status; /*!< status */ + uint32_t control_buffer_size; /*!< control and buffer1, buffer2 lengths */ + uint32_t buffer1_addr; /*!< buffer1 address pointer/timestamp low */ + uint32_t buffer2_next_desc_addr; /*!< buffer2 or next descriptor address pointer/timestamp high */ + +#ifdef SELECT_DESCRIPTORS_ENHANCED_MODE + uint32_t extended_status; /*!< extended status */ + uint32_t reserved; /*!< reserved */ + uint32_t timestamp_low; /*!< timestamp low */ + uint32_t timestamp_high; /*!< timestamp high */ +#endif /* SELECT_DESCRIPTORS_ENHANCED_MODE */ + +} enet_descriptors_struct; + +/* structure of PTP system time */ +typedef struct +{ + uint32_t second; /*!< second of system time */ + uint32_t subsecond; /*!< subsecond of system time */ + uint32_t sign; /*!< sign of system time */ +}enet_ptp_systime_struct; + +/* mac_cfg register value */ +#define MAC_CFG_BOL(regval) (BITS(5,6) & ((uint32_t)(regval) << 5)) /*!< write value to ENET_MAC_CFG_BOL bit field */ +#define ENET_BACKOFFLIMIT_10 MAC_CFG_BOL(0) /*!< min (n, 10) */ +#define ENET_BACKOFFLIMIT_8 MAC_CFG_BOL(1) /*!< min (n, 8) */ +#define ENET_BACKOFFLIMIT_4 MAC_CFG_BOL(2) /*!< min (n, 4) */ +#define ENET_BACKOFFLIMIT_1 MAC_CFG_BOL(3) /*!< min (n, 1) */ + +#define MAC_CFG_IGBS(regval) (BITS(17,19) & ((uint32_t)(regval) << 17)) /*!< write value to ENET_MAC_CFG_IGBS bit field */ +#define ENET_INTERFRAMEGAP_96BIT MAC_CFG_IGBS(0) /*!< minimum 96 bit times */ +#define ENET_INTERFRAMEGAP_88BIT MAC_CFG_IGBS(1) /*!< minimum 88 bit times */ +#define ENET_INTERFRAMEGAP_80BIT MAC_CFG_IGBS(2) /*!< minimum 80 bit times */ +#define ENET_INTERFRAMEGAP_72BIT MAC_CFG_IGBS(3) /*!< minimum 72 bit times */ +#define ENET_INTERFRAMEGAP_64BIT MAC_CFG_IGBS(4) /*!< minimum 64 bit times */ +#define ENET_INTERFRAMEGAP_56BIT MAC_CFG_IGBS(5) /*!< minimum 56 bit times */ +#define ENET_INTERFRAMEGAP_48BIT MAC_CFG_IGBS(6) /*!< minimum 48 bit times */ +#define ENET_INTERFRAMEGAP_40BIT MAC_CFG_IGBS(7) /*!< minimum 40 bit times */ + +#define ENET_TYPEFRAME_CRC_DROP_ENABLE ENET_MAC_CFG_TFCD /*!< FCS field(last 4 bytes) of frame will be dropped before forwarding */ +#define ENET_TYPEFRAME_CRC_DROP_DISABLE ((uint32_t)0x00000000U) /*!< FCS field(last 4 bytes) of frame will not be dropped before forwarding */ +#define ENET_TYPEFRAME_CRC_DROP ENET_MAC_CFG_TFCD /*!< the function that FCS field(last 4 bytes) of frame will be dropped before forwarding */ + +#define ENET_WATCHDOG_ENABLE ((uint32_t)0x00000000U) /*!< the MAC allows no more than 2048 bytes of the frame being received */ +#define ENET_WATCHDOG_DISABLE ENET_MAC_CFG_WDD /*!< the MAC disables the watchdog timer on the receiver, and can receive frames of up to 16384 bytes */ + +#define ENET_JABBER_ENABLE ((uint32_t)0x00000000U) /*!< the maximum transmission byte is 2048 */ +#define ENET_JABBER_DISABLE ENET_MAC_CFG_JBD /*!< the maximum transmission byte can be 16384 */ + +#define ENET_CARRIERSENSE_ENABLE ((uint32_t)0x00000000U) /*!< the MAC transmitter generates carrier sense error and aborts the transmission */ +#define ENET_CARRIERSENSE_DISABLE ENET_MAC_CFG_CSD /*!< the MAC transmitter ignores the MII CRS signal during frame transmission in half-duplex mode */ + +#define ENET_SPEEDMODE_10M ((uint32_t)0x00000000U) /*!< 10 Mbit/s */ +#define ENET_SPEEDMODE_100M ENET_MAC_CFG_SPD /*!< 100 Mbit/s */ + +#define ENET_RECEIVEOWN_ENABLE ((uint32_t)0x00000000U) /*!< the MAC receives all packets that are given by the PHY while transmitting */ +#define ENET_RECEIVEOWN_DISABLE ENET_MAC_CFG_ROD /*!< the MAC disables the reception of frames in half-duplex mode */ + +#define ENET_LOOPBACKMODE_ENABLE ENET_MAC_CFG_LBM /*!< the MAC operates in loopback mode at the MII */ +#define ENET_LOOPBACKMODE_DISABLE ((uint32_t)0x00000000U) /*!< the MAC operates in normal mode */ + +#define ENET_MODE_FULLDUPLEX ENET_MAC_CFG_DPM /*!< full-duplex mode enable */ +#define ENET_MODE_HALFDUPLEX ((uint32_t)0x00000000U) /*!< half-duplex mode enable */ + +#define ENET_CHECKSUMOFFLOAD_ENABLE ENET_MAC_CFG_IPFCO /*!< IP frame checksum offload function enabled for received IP frame */ +#define ENET_CHECKSUMOFFLOAD_DISABLE ((uint32_t)0x00000000U) /*!< the checksum offload function in the receiver is disabled */ + +#define ENET_RETRYTRANSMISSION_ENABLE ((uint32_t)0x00000000U) /*!< the MAC attempts retries up to 16 times based on the settings of BOL*/ +#define ENET_RETRYTRANSMISSION_DISABLE ENET_MAC_CFG_RTD /*!< the MAC attempts only 1 transmission */ + +#define ENET_AUTO_PADCRC_DROP_ENABLE ENET_MAC_CFG_APCD /*!< the MAC strips the Pad/FCS field on received frames */ +#define ENET_AUTO_PADCRC_DROP_DISABLE ((uint32_t)0x00000000U) /*!< the MAC forwards all received frames without modify it */ +#define ENET_AUTO_PADCRC_DROP ENET_MAC_CFG_APCD /*!< the function of the MAC strips the Pad/FCS field on received frames */ + +#define ENET_DEFERRALCHECK_ENABLE ENET_MAC_CFG_DFC /*!< the deferral check function is enabled in the MAC */ +#define ENET_DEFERRALCHECK_DISABLE ((uint32_t)0x00000000U) /*!< the deferral check function is disabled */ + +/* mac_frmf register value */ +#define MAC_FRMF_PCFRM(regval) (BITS(6,7) & ((uint32_t)(regval) << 6)) /*!< write value to ENET_MAC_FRMF_PCFRM bit field */ +#define ENET_PCFRM_PREVENT_ALL MAC_FRMF_PCFRM(0) /*!< MAC prevents all control frames from reaching the application */ +#define ENET_PCFRM_PREVENT_PAUSEFRAME MAC_FRMF_PCFRM(1) /*!< MAC only forwards all other control frames except pause control frame */ +#define ENET_PCFRM_FORWARD_ALL MAC_FRMF_PCFRM(2) /*!< MAC forwards all control frames to application even if they fail the address filter */ +#define ENET_PCFRM_FORWARD_FILTERED MAC_FRMF_PCFRM(3) /*!< MAC forwards control frames that only pass the address filter */ + +#define ENET_RX_FILTER_DISABLE ENET_MAC_FRMF_FAR /*!< all received frame are forwarded to application */ +#define ENET_RX_FILTER_ENABLE ((uint32_t)0x00000000U) /*!< only the frame passed the filter can be forwarded to application */ + +#define ENET_SRC_FILTER_NORMAL_ENABLE ENET_MAC_FRMF_SAFLT /*!< filter source address */ +#define ENET_SRC_FILTER_INVERSE_ENABLE (ENET_MAC_FRMF_SAFLT | ENET_MAC_FRMF_SAIFLT) /*!< inverse source address filtering result */ +#define ENET_SRC_FILTER_DISABLE ((uint32_t)0x00000000U) /*!< source address function in filter disable */ +#define ENET_SRC_FILTER ENET_MAC_FRMF_SAFLT /*!< filter source address function */ +#define ENET_SRC_FILTER_INVERSE ENET_MAC_FRMF_SAIFLT /*!< inverse source address filtering result function */ + +#define ENET_BROADCASTFRAMES_ENABLE ((uint32_t)0x00000000U) /*!< the address filters pass all received broadcast frames */ +#define ENET_BROADCASTFRAMES_DISABLE ENET_MAC_FRMF_BFRMD /*!< the address filters filter all incoming broadcast frames */ + +#define ENET_DEST_FILTER_INVERSE_ENABLE ENET_MAC_FRMF_DAIFLT /*!< inverse DA filtering result */ +#define ENET_DEST_FILTER_INVERSE_DISABLE ((uint32_t)0x00000000U) /*!< not inverse DA filtering result */ +#define ENET_DEST_FILTER_INVERSE ENET_MAC_FRMF_DAIFLT /*!< inverse DA filtering result function */ + +#define ENET_PROMISCUOUS_ENABLE ENET_MAC_FRMF_PM /*!< promiscuous mode enabled */ +#define ENET_PROMISCUOUS_DISABLE ((uint32_t)0x00000000U) /*!< promiscuous mode disabled */ + +#define ENET_MULTICAST_FILTER_HASH_OR_PERFECT (ENET_MAC_FRMF_HMF | ENET_MAC_FRMF_HPFLT) /*!< pass multicast frames that match either the perfect or the hash filtering */ +#define ENET_MULTICAST_FILTER_HASH ENET_MAC_FRMF_HMF /*!< pass multicast frames that match the hash filtering */ +#define ENET_MULTICAST_FILTER_PERFECT ((uint32_t)0x00000000U) /*!< pass multicast frames that match the perfect filtering */ +#define ENET_MULTICAST_FILTER_NONE ENET_MAC_FRMF_MFD /*!< all multicast frames are passed */ +#define ENET_MULTICAST_FILTER_PASS ENET_MAC_FRMF_MFD /*!< pass all multicast frames function */ +#define ENET_MULTICAST_FILTER_HASH_MODE ENET_MAC_FRMF_HMF /*!< HASH multicast filter function */ +#define ENET_FILTER_MODE_EITHER ENET_MAC_FRMF_HPFLT /*!< HASH or perfect filter function */ + +#define ENET_UNICAST_FILTER_EITHER (ENET_MAC_FRMF_HUF | ENET_MAC_FRMF_HPFLT) /*!< pass unicast frames that match either the perfect or the hash filtering */ +#define ENET_UNICAST_FILTER_HASH ENET_MAC_FRMF_HUF /*!< pass unicast frames that match the hash filtering */ +#define ENET_UNICAST_FILTER_PERFECT ((uint32_t)0x00000000U) /*!< pass unicast frames that match the perfect filtering */ +#define ENET_UNICAST_FILTER_HASH_MODE ENET_MAC_FRMF_HUF /*!< HASH unicast filter function */ + +/* mac_phy_ctl register value */ +#define MAC_PHY_CTL_CLR(regval) (BITS(2,4) & ((uint32_t)(regval) << 2)) /*!< write value to ENET_MAC_PHY_CTL_CLR bit field */ +#define ENET_MDC_HCLK_DIV42 MAC_PHY_CTL_CLR(0) /*!< HCLK:60-100 MHz; MDC clock= HCLK/42 */ +#define ENET_MDC_HCLK_DIV62 MAC_PHY_CTL_CLR(1) /*!< HCLK:100-150 MHz; MDC clock= HCLK/62 */ +#define ENET_MDC_HCLK_DIV16 MAC_PHY_CTL_CLR(2) /*!< HCLK:20-35 MHz; MDC clock= HCLK/16 */ +#define ENET_MDC_HCLK_DIV26 MAC_PHY_CTL_CLR(3) /*!< HCLK:35-60 MHz; MDC clock= HCLK/26 */ +#define ENET_MDC_HCLK_DIV102 MAC_PHY_CTL_CLR(4) /*!< HCLK:150-200 MHz; MDC clock= HCLK/102 */ + +#define MAC_PHY_CTL_PR(regval) (BITS(6,10) & ((uint32_t)(regval) << 6)) /*!< write value to ENET_MAC_PHY_CTL_PR bit field */ + +#define MAC_PHY_CTL_PA(regval) (BITS(11,15) & ((uint32_t)(regval) << 11)) /*!< write value to ENET_MAC_PHY_CTL_PA bit field */ + +/* mac_phy_data register value */ +#define MAC_PHY_DATA_PD(regval) (BITS(0,15) & ((uint32_t)(regval) << 0)) /*!< write value to ENET_MAC_PHY_DATA_PD bit field */ + +/* mac_fctl register value */ +#define MAC_FCTL_PLTS(regval) (BITS(4,5) & ((uint32_t)(regval) << 4)) /*!< write value to ENET_MAC_FCTL_PLTS bit field */ +#define ENET_PAUSETIME_MINUS4 MAC_FCTL_PLTS(0) /*!< pause time minus 4 slot times */ +#define ENET_PAUSETIME_MINUS28 MAC_FCTL_PLTS(1) /*!< pause time minus 28 slot times */ +#define ENET_PAUSETIME_MINUS144 MAC_FCTL_PLTS(2) /*!< pause time minus 144 slot times */ +#define ENET_PAUSETIME_MINUS256 MAC_FCTL_PLTS(3) /*!< pause time minus 256 slot times */ + +#define ENET_ZERO_QUANTA_PAUSE_ENABLE ((uint32_t)0x00000000U) /*!< enable the automatic zero-quanta generation function */ +#define ENET_ZERO_QUANTA_PAUSE_DISABLE ENET_MAC_FCTL_DZQP /*!< disable the automatic zero-quanta generation function */ +#define ENET_ZERO_QUANTA_PAUSE ENET_MAC_FCTL_DZQP /*!< the automatic zero-quanta generation function */ + +#define ENET_MAC0_AND_UNIQUE_ADDRESS_PAUSEDETECT ENET_MAC_FCTL_UPFDT /*!< besides the unique multicast address, MAC also use the MAC0 address to detect pause frame */ +#define ENET_UNIQUE_PAUSEDETECT ((uint32_t)0x00000000U) /*!< only the unique multicast address for pause frame which is specified in IEEE802.3 can be detected */ + +#define ENET_RX_FLOWCONTROL_ENABLE ENET_MAC_FCTL_RFCEN /*!< enable decoding function for the received pause frame and process it */ +#define ENET_RX_FLOWCONTROL_DISABLE ((uint32_t)0x00000000U) /*!< decode function for pause frame is disabled */ +#define ENET_RX_FLOWCONTROL ENET_MAC_FCTL_RFCEN /*!< decoding function for the received pause frame and process it */ + +#define ENET_TX_FLOWCONTROL_ENABLE ENET_MAC_FCTL_TFCEN /*!< enable the flow control operation in the MAC */ +#define ENET_TX_FLOWCONTROL_DISABLE ((uint32_t)0x00000000U) /*!< disable the flow control operation in the MAC */ +#define ENET_TX_FLOWCONTROL ENET_MAC_FCTL_TFCEN /*!< the flow control operation in the MAC */ + +#define ENET_BACK_PRESSURE_ENABLE ENET_MAC_FCTL_FLCBBKPA /*!< enable the back pressure operation in the MAC */ +#define ENET_BACK_PRESSURE_DISABLE ((uint32_t)0x00000000U) /*!< disable the back pressure operation in the MAC */ +#define ENET_BACK_PRESSURE ENET_MAC_FCTL_FLCBBKPA /*!< the back pressure operation in the MAC */ + +#define MAC_FCTL_PTM(regval) (BITS(16,31) & ((uint32_t)(regval) << 16)) /*!< write value to ENET_MAC_FCTL_PTM bit field */ +/* mac_vlt register value */ +#define MAC_VLT_VLTI(regval) (BITS(0,15) & ((uint32_t)(regval) << 0)) /*!< write value to ENET_MAC_VLT_VLTI bit field */ + +#define ENET_VLANTAGCOMPARISON_12BIT ENET_MAC_VLT_VLTC /*!< only low 12 bits of the VLAN tag are used for comparison */ +#define ENET_VLANTAGCOMPARISON_16BIT ((uint32_t)0x00000000U) /*!< all 16 bits of the VLAN tag are used for comparison */ + +/* mac_wum register value */ +#define ENET_WUM_FLAG_WUFFRPR ENET_MAC_WUM_WUFFRPR /*!< wakeup frame filter register poniter reset */ +#define ENET_WUM_FLAG_WUFR ENET_MAC_WUM_WUFR /*!< wakeup frame received */ +#define ENET_WUM_FLAG_MPKR ENET_MAC_WUM_MPKR /*!< magic packet received */ +#define ENET_WUM_POWER_DOWN ENET_MAC_WUM_PWD /*!< power down mode */ +#define ENET_WUM_MAGIC_PACKET_FRAME ENET_MAC_WUM_MPEN /*!< enable a wakeup event due to magic packet reception */ +#define ENET_WUM_WAKE_UP_FRAME ENET_MAC_WUM_WFEN /*!< enable a wakeup event due to wakeup frame reception */ +#define ENET_WUM_GLOBAL_UNICAST ENET_MAC_WUM_GU /*!< any received unicast frame passed filter is considered to be a wakeup frame */ + +/* mac_dbg register value */ +#define ENET_MAC_RECEIVER_NOT_IDLE ENET_MAC_DBG_MRNI /*!< MAC receiver is not in idle state */ +#define ENET_RX_ASYNCHRONOUS_FIFO_STATE ENET_MAC_DBG_RXAFS /*!< Rx asynchronous FIFO status */ +#define ENET_RXFIFO_WRITING ENET_MAC_DBG_RXFW /*!< RxFIFO is doing write operation */ +#define ENET_RXFIFO_READ_STATUS ENET_MAC_DBG_RXFRS /*!< RxFIFO read operation status */ +#define ENET_RXFIFO_STATE ENET_MAC_DBG_RXFS /*!< RxFIFO state */ +#define ENET_MAC_TRANSMITTER_NOT_IDLE ENET_MAC_DBG_MTNI /*!< MAC transmitter is not in idle state */ +#define ENET_MAC_TRANSMITTER_STATUS ENET_MAC_DBG_SOMT /*!< status of MAC transmitter */ +#define ENET_PAUSE_CONDITION_STATUS ENET_MAC_DBG_PCS /*!< pause condition status */ +#define ENET_TXFIFO_READ_STATUS ENET_MAC_DBG_TXFRS /*!< TxFIFO read operation status */ +#define ENET_TXFIFO_WRITING ENET_MAC_DBG_TXFW /*!< TxFIFO is doing write operation */ +#define ENET_TXFIFO_NOT_EMPTY ENET_MAC_DBG_TXFNE /*!< TxFIFO is not empty */ +#define ENET_TXFIFO_FULL ENET_MAC_DBG_TXFF /*!< TxFIFO is full */ + +#define GET_MAC_DBG_RXAFS(regval) GET_BITS((regval),1,2) /*!< get value of ENET_MAC_DBG_RXAFS bit field */ + +#define GET_MAC_DBG_RXFRS(regval) GET_BITS((regval),5,6) /*!< get value of ENET_MAC_DBG_RXFRS bit field */ + +#define GET_MAC_DBG_RXFS(regval) GET_BITS((regval),8,9) /*!< get value of ENET_MAC_DBG_RXFS bit field */ + +#define GET_MAC_DBG_SOMT(regval) GET_BITS((regval),17,18) /*!< get value of ENET_MAC_DBG_SOMT bit field */ + +#define GET_MAC_DBG_TXFRS(regval) GET_BITS((regval),20,21) /*!< get value of ENET_MAC_DBG_TXFRS bit field */ + +/* mac_addr0h register value */ +#define MAC_ADDR0H_ADDR0H(regval) (BITS(0,15) & ((uint32_t)(regval) << 0)) /*!< write value to ENET_MAC_ADDR0H_ADDR0H bit field */ + +/* mac_addrxh register value, x = 1,2,3 */ +#define MAC_ADDR123H_ADDR123H(regval) (BITS(0,15) & ((uint32_t)(regval) << 0)) /*!< write value to ENET_MAC_ADDRxH_ADDRxH(x=1,2,3) bit field */ + +#define ENET_ADDRESS_MASK_BYTE0 BIT(24) /*!< low register bits [7:0] */ +#define ENET_ADDRESS_MASK_BYTE1 BIT(25) /*!< low register bits [15:8] */ +#define ENET_ADDRESS_MASK_BYTE2 BIT(26) /*!< low register bits [23:16] */ +#define ENET_ADDRESS_MASK_BYTE3 BIT(27) /*!< low register bits [31:24] */ +#define ENET_ADDRESS_MASK_BYTE4 BIT(28) /*!< high register bits [7:0] */ +#define ENET_ADDRESS_MASK_BYTE5 BIT(29) /*!< high register bits [15:8] */ + +#define ENET_ADDRESS_FILTER_SA BIT(30) /*!< use MAC address[47:0] is to compare with the SA fields of the received frame */ +#define ENET_ADDRESS_FILTER_DA ((uint32_t)0x00000000) /*!< use MAC address[47:0] is to compare with the DA fields of the received frame */ + +/* mac_fcth register value */ +#define MAC_FCTH_RFA(regval) ((BITS(0,2) & ((uint32_t)(regval) << 0))<<8) /*!< write value to ENET_MAC_FCTH_RFA bit field */ +#define ENET_ACTIVE_THRESHOLD_256BYTES MAC_FCTH_RFA(0) /*!< threshold level is 256 bytes */ +#define ENET_ACTIVE_THRESHOLD_512BYTES MAC_FCTH_RFA(1) /*!< threshold level is 512 bytes */ +#define ENET_ACTIVE_THRESHOLD_768BYTES MAC_FCTH_RFA(2) /*!< threshold level is 768 bytes */ +#define ENET_ACTIVE_THRESHOLD_1024BYTES MAC_FCTH_RFA(3) /*!< threshold level is 1024 bytes */ +#define ENET_ACTIVE_THRESHOLD_1280BYTES MAC_FCTH_RFA(4) /*!< threshold level is 1280 bytes */ +#define ENET_ACTIVE_THRESHOLD_1536BYTES MAC_FCTH_RFA(5) /*!< threshold level is 1536 bytes */ +#define ENET_ACTIVE_THRESHOLD_1792BYTES MAC_FCTH_RFA(6) /*!< threshold level is 1792 bytes */ + +#define MAC_FCTH_RFD(regval) ((BITS(4,6) & ((uint32_t)(regval) << 4))<<8) /*!< write value to ENET_MAC_FCTH_RFD bit field */ +#define ENET_DEACTIVE_THRESHOLD_256BYTES MAC_FCTH_RFD(0) /*!< threshold level is 256 bytes */ +#define ENET_DEACTIVE_THRESHOLD_512BYTES MAC_FCTH_RFD(1) /*!< threshold level is 512 bytes */ +#define ENET_DEACTIVE_THRESHOLD_768BYTES MAC_FCTH_RFD(2) /*!< threshold level is 768 bytes */ +#define ENET_DEACTIVE_THRESHOLD_1024BYTES MAC_FCTH_RFD(3) /*!< threshold level is 1024 bytes */ +#define ENET_DEACTIVE_THRESHOLD_1280BYTES MAC_FCTH_RFD(4) /*!< threshold level is 1280 bytes */ +#define ENET_DEACTIVE_THRESHOLD_1536BYTES MAC_FCTH_RFD(5) /*!< threshold level is 1536 bytes */ +#define ENET_DEACTIVE_THRESHOLD_1792BYTES MAC_FCTH_RFD(6) /*!< threshold level is 1792 bytes */ + +/* msc_ctl register value */ +#define ENET_MSC_COUNTER_STOP_ROLLOVER ENET_MSC_CTL_CTSR /*!< counter stop rollover */ +#define ENET_MSC_RESET_ON_READ ENET_MSC_CTL_RTOR /*!< reset on read */ +#define ENET_MSC_COUNTERS_FREEZE ENET_MSC_CTL_MCFZ /*!< MSC counter freeze */ + +/* ptp_tsctl register value */ +#define ENET_RXTX_TIMESTAMP ENET_PTP_TSCTL_TMSEN /*!< enable timestamp function for transmit and receive frames */ +#define ENET_PTP_TIMESTAMP_INT ENET_PTP_TSCTL_TMSITEN /*!< timestamp interrupt trigger enable */ +#define ENET_ALL_RX_TIMESTAMP ENET_PTP_TSCTL_ARFSEN /*!< all received frames are taken snapshot */ +#define ENET_NONTYPE_FRAME_SNAPSHOT ENET_PTP_TSCTL_ESEN /*!< take snapshot when received non type frame */ +#define ENET_IPV6_FRAME_SNAPSHOT ENET_PTP_TSCTL_IP6SEN /*!< take snapshot for IPv6 frame */ +#define ENET_IPV4_FRAME_SNAPSHOT ENET_PTP_TSCTL_IP4SEN /*!< take snapshot for IPv4 frame */ +#define ENET_PTP_FRAME_USE_MACADDRESS_FILTER ENET_PTP_TSCTL_MAFEN /*!< enable MAC address1-3 to filter the PTP frame */ + +/* ptp_ssinc register value */ +#define PTP_SSINC_STMSSI(regval) (BITS(0,7) & ((uint32_t)(regval) << 0)) /*!< write value to ENET_PTP_SSINC_STMSSI bit field */ + +/* ptp_tsl register value */ +#define GET_PTP_TSL_STMSS(regval) GET_BITS((uint32_t)(regval),0,30) /*!< get value of ENET_PTP_TSL_STMSS bit field */ + +#define ENET_PTP_TIME_POSITIVE ((uint32_t)0x00000000) /*!< time value is positive */ +#define ENET_PTP_TIME_NEGATIVE ENET_PTP_TSL_STS /*!< time value is negative */ + +#define GET_PTP_TSL_STS(regval) (((regval) & BIT(31)) >> (31U)) /*!< get value of ENET_PTP_TSL_STS bit field */ + +/* ptp_tsul register value */ +#define PTP_TSUL_TMSUSS(regval) (BITS(0,30) & ((uint32_t)(regval) << 0)) /*!< write value to ENET_PTP_TSUL_TMSUSS bit field */ + +#define ENET_PTP_ADD_TO_TIME ((uint32_t)0x00000000) /*!< timestamp update value is added to system time */ +#define ENET_PTP_SUBSTRACT_FROM_TIME ENET_PTP_TSUL_TMSUPNS /*!< timestamp update value is subtracted from system time */ + +/* ptp_ppsctl register value */ +#define PTP_PPSCTL_PPSOFC(regval) (BITS(0,3) & ((uint32_t)(regval) << 0)) /*!< write value to ENET_PTP_PPSCTL_PPSOFC bit field */ +#define ENET_PPSOFC_1HZ PTP_PPSCTL_PPSOFC(0) /*!< PPS output 1Hz frequency */ +#define ENET_PPSOFC_2HZ PTP_PPSCTL_PPSOFC(1) /*!< PPS output 2Hz frequency */ +#define ENET_PPSOFC_4HZ PTP_PPSCTL_PPSOFC(2) /*!< PPS output 4Hz frequency */ +#define ENET_PPSOFC_8HZ PTP_PPSCTL_PPSOFC(3) /*!< PPS output 8Hz frequency */ +#define ENET_PPSOFC_16HZ PTP_PPSCTL_PPSOFC(4) /*!< PPS output 16Hz frequency */ +#define ENET_PPSOFC_32HZ PTP_PPSCTL_PPSOFC(5) /*!< PPS output 32Hz frequency */ +#define ENET_PPSOFC_64HZ PTP_PPSCTL_PPSOFC(6) /*!< PPS output 64Hz frequency */ +#define ENET_PPSOFC_128HZ PTP_PPSCTL_PPSOFC(7) /*!< PPS output 128Hz frequency */ +#define ENET_PPSOFC_256HZ PTP_PPSCTL_PPSOFC(8) /*!< PPS output 256Hz frequency */ +#define ENET_PPSOFC_512HZ PTP_PPSCTL_PPSOFC(9) /*!< PPS output 512Hz frequency */ +#define ENET_PPSOFC_1024HZ PTP_PPSCTL_PPSOFC(10) /*!< PPS output 1024Hz frequency */ +#define ENET_PPSOFC_2048HZ PTP_PPSCTL_PPSOFC(11) /*!< PPS output 2048Hz frequency */ +#define ENET_PPSOFC_4096HZ PTP_PPSCTL_PPSOFC(12) /*!< PPS output 4096Hz frequency */ +#define ENET_PPSOFC_8192HZ PTP_PPSCTL_PPSOFC(13) /*!< PPS output 8192Hz frequency */ +#define ENET_PPSOFC_16384HZ PTP_PPSCTL_PPSOFC(14) /*!< PPS output 16384Hz frequency */ +#define ENET_PPSOFC_32768HZ PTP_PPSCTL_PPSOFC(15) /*!< PPS output 32768Hz frequency */ + +/* dma_bctl register value */ +#define DMA_BCTL_DPSL(regval) (BITS(2,6) & ((uint32_t)(regval) << 2)) /*!< write value to ENET_DMA_BCTL_DPSL bit field */ +#define GET_DMA_BCTL_DPSL(regval) GET_BITS((regval),2,6) /*!< get value of ENET_DMA_BCTL_DPSL bit field */ + +#define ENET_ENHANCED_DESCRIPTOR ENET_DMA_BCTL_DFM /*!< enhanced mode descriptor */ +#define ENET_NORMAL_DESCRIPTOR ((uint32_t)0x00000000) /*!< normal mode descriptor */ + +#define DMA_BCTL_PGBL(regval) (BITS(8,13) & ((uint32_t)(regval) << 8)) /*!< write value to ENET_DMA_BCTL_PGBL bit field */ +#define ENET_PGBL_1BEAT DMA_BCTL_PGBL(1) /*!< maximum number of beats is 1 */ +#define ENET_PGBL_2BEAT DMA_BCTL_PGBL(2) /*!< maximum number of beats is 2 */ +#define ENET_PGBL_4BEAT DMA_BCTL_PGBL(4) /*!< maximum number of beats is 4 */ +#define ENET_PGBL_8BEAT DMA_BCTL_PGBL(8) /*!< maximum number of beats is 8 */ +#define ENET_PGBL_16BEAT DMA_BCTL_PGBL(16) /*!< maximum number of beats is 16 */ +#define ENET_PGBL_32BEAT DMA_BCTL_PGBL(32) /*!< maximum number of beats is 32 */ +#define ENET_PGBL_4xPGBL_4BEAT (DMA_BCTL_PGBL(1)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats is 4 */ +#define ENET_PGBL_4xPGBL_8BEAT (DMA_BCTL_PGBL(2)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats is 8 */ +#define ENET_PGBL_4xPGBL_16BEAT (DMA_BCTL_PGBL(4)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats is 16 */ +#define ENET_PGBL_4xPGBL_32BEAT (DMA_BCTL_PGBL(8)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats is 32 */ +#define ENET_PGBL_4xPGBL_64BEAT (DMA_BCTL_PGBL(16)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats is 64 */ +#define ENET_PGBL_4xPGBL_128BEAT (DMA_BCTL_PGBL(32)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats is 128 */ + +#define DMA_BCTL_RTPR(regval) (BITS(14,15) & ((uint32_t)(regval) << 14)) /*!< write value to ENET_DMA_BCTL_RTPR bit field */ +#define ENET_ARBITRATION_RXTX_1_1 DMA_BCTL_RTPR(0) /*!< receive and transmit priority ratio is 1:1*/ +#define ENET_ARBITRATION_RXTX_2_1 DMA_BCTL_RTPR(1) /*!< receive and transmit priority ratio is 2:1*/ +#define ENET_ARBITRATION_RXTX_3_1 DMA_BCTL_RTPR(2) /*!< receive and transmit priority ratio is 3:1 */ +#define ENET_ARBITRATION_RXTX_4_1 DMA_BCTL_RTPR(3) /*!< receive and transmit priority ratio is 4:1 */ +#define ENET_ARBITRATION_RXPRIORTX ENET_DMA_BCTL_DAB /*!< RxDMA has higher priority than TxDMA */ + +#define ENET_FIXED_BURST_ENABLE ENET_DMA_BCTL_FB /*!< AHB can only use SINGLE/INCR4/INCR8/INCR16 during start of normal burst transfers */ +#define ENET_FIXED_BURST_DISABLE ((uint32_t)0x00000000) /*!< AHB can use SINGLE/INCR burst transfer operations */ + +#define DMA_BCTL_RXDP(regval) (BITS(17,22) & ((uint32_t)(regval) << 17)) /*!< write value to ENET_DMA_BCTL_RXDP bit field */ +#define ENET_RXDP_1BEAT DMA_BCTL_RXDP(1) /*!< maximum number of beats 1 */ +#define ENET_RXDP_2BEAT DMA_BCTL_RXDP(2) /*!< maximum number of beats 2 */ +#define ENET_RXDP_4BEAT DMA_BCTL_RXDP(4) /*!< maximum number of beats 4 */ +#define ENET_RXDP_8BEAT DMA_BCTL_RXDP(8) /*!< maximum number of beats 8 */ +#define ENET_RXDP_16BEAT DMA_BCTL_RXDP(16) /*!< maximum number of beats 16 */ +#define ENET_RXDP_32BEAT DMA_BCTL_RXDP(32) /*!< maximum number of beats 32 */ +#define ENET_RXDP_4xPGBL_4BEAT (DMA_BCTL_RXDP(1)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats 4 */ +#define ENET_RXDP_4xPGBL_8BEAT (DMA_BCTL_RXDP(2)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats 8 */ +#define ENET_RXDP_4xPGBL_16BEAT (DMA_BCTL_RXDP(4)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats 16 */ +#define ENET_RXDP_4xPGBL_32BEAT (DMA_BCTL_RXDP(8)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats 32 */ +#define ENET_RXDP_4xPGBL_64BEAT (DMA_BCTL_RXDP(16)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats 64 */ +#define ENET_RXDP_4xPGBL_128BEAT (DMA_BCTL_RXDP(32)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats 128 */ + +#define ENET_RXTX_DIFFERENT_PGBL ENET_DMA_BCTL_UIP /*!< RxDMA uses the RXDP[5:0], while TxDMA uses the PGBL[5:0] */ +#define ENET_RXTX_SAME_PGBL ((uint32_t)0x00000000) /*!< RxDMA/TxDMA uses PGBL[5:0] */ + +#define ENET_ADDRESS_ALIGN_ENABLE ENET_DMA_BCTL_AA /*!< enabled address-aligned */ +#define ENET_ADDRESS_ALIGN_DISABLE ((uint32_t)0x00000000) /*!< disable address-aligned */ + +#define ENET_MIXED_BURST_ENABLE ENET_DMA_BCTL_MB /*!< AHB master interface transfer burst length greater than 16 with INCR */ +#define ENET_MIXED_BURST_DISABLE ((uint32_t)0x00000000) /*!< AHB master interface only transfer fixed burst length with 16 and below */ + +/* dma_stat register value */ +#define GET_DMA_STAT_RP(regval) GET_BITS((uint32_t)(regval),17,19) /*!< get value of ENET_DMA_STAT_RP bit field */ +#define ENET_RX_STATE_STOPPED ((uint32_t)0x00000000) /*!< reset or stop rx command issued */ +#define ENET_RX_STATE_FETCHING BIT(17) /*!< fetching the Rx descriptor */ +#define ENET_RX_STATE_WAITING (BIT(17)|BIT(18)) /*!< waiting for receive packet */ +#define ENET_RX_STATE_SUSPENDED BIT(19) /*!< Rx descriptor unavailable */ +#define ENET_RX_STATE_CLOSING (BIT(17)|BIT(19)) /*!< closing receive descriptor */ +#define ENET_RX_STATE_QUEUING ENET_DMA_STAT_RP /*!< transferring the receive packet data from recevie buffer to host memory */ + +#define GET_DMA_STAT_TP(regval) GET_BITS((uint32_t)(regval),20,22) /*!< get value of ENET_DMA_STAT_TP bit field */ +#define ENET_TX_STATE_STOPPED ((uint32_t)0x00000000) /*!< reset or stop Tx Command issued */ +#define ENET_TX_STATE_FETCHING BIT(20) /*!< fetching the Tx descriptor */ +#define ENET_TX_STATE_WAITING BIT(21) /*!< waiting for status */ +#define ENET_TX_STATE_READING (BIT(20)|BIT(21)) /*!< reading the data from host memory buffer and queuing it to transmit buffer */ +#define ENET_TX_STATE_SUSPENDED (BIT(21)|BIT(22)) /*!< Tx descriptor unavailabe or transmit buffer underflow */ +#define ENET_TX_STATE_CLOSING ENET_DMA_STAT_TP /*!< closing Tx descriptor */ + +#define GET_DMA_STAT_EB(regval) GET_BITS((uint32_t)(regval),23,25) /*!< get value of ENET_DMA_STAT_EB bit field */ +#define ENET_ERROR_TXDATA_TRANSFER BIT(23) /*!< error during data transfer by TxDMA or RxDMA */ +#define ENET_ERROR_READ_TRANSFER BIT(24) /*!< error during write transfer or read transfer */ +#define ENET_ERROR_DESC_ACCESS BIT(25) /*!< error during descriptor or buffer access */ + +/* dma_ctl register value */ +#define DMA_CTL_RTHC(regval) (BITS(3,4) & ((uint32_t)(regval) << 3)) /*!< write value to ENET_DMA_CTL_RTHC bit field */ +#define ENET_RX_THRESHOLD_64BYTES DMA_CTL_RTHC(0) /*!< threshold level is 64 Bytes */ +#define ENET_RX_THRESHOLD_32BYTES DMA_CTL_RTHC(1) /*!< threshold level is 32 Bytes */ +#define ENET_RX_THRESHOLD_96BYTES DMA_CTL_RTHC(2) /*!< threshold level is 96 Bytes */ +#define ENET_RX_THRESHOLD_128BYTES DMA_CTL_RTHC(3) /*!< threshold level is 128 Bytes */ + +#define DMA_CTL_TTHC(regval) (BITS(14,16) & ((uint32_t)(regval) << 14)) /*!< write value to ENET_DMA_CTL_TTHC bit field */ +#define ENET_TX_THRESHOLD_64BYTES DMA_CTL_TTHC(0) /*!< threshold level is 64 Bytes */ +#define ENET_TX_THRESHOLD_128BYTES DMA_CTL_TTHC(1) /*!< threshold level is 128 Bytes */ +#define ENET_TX_THRESHOLD_192BYTES DMA_CTL_TTHC(2) /*!< threshold level is 192 Bytes */ +#define ENET_TX_THRESHOLD_256BYTES DMA_CTL_TTHC(3) /*!< threshold level is 256 Bytes */ +#define ENET_TX_THRESHOLD_40BYTES DMA_CTL_TTHC(4) /*!< threshold level is 40 Bytes */ +#define ENET_TX_THRESHOLD_32BYTES DMA_CTL_TTHC(5) /*!< threshold level is 32 Bytes */ +#define ENET_TX_THRESHOLD_24BYTES DMA_CTL_TTHC(6) /*!< threshold level is 24 Bytes */ +#define ENET_TX_THRESHOLD_16BYTES DMA_CTL_TTHC(7) /*!< threshold level is 16 Bytes */ + +#define ENET_TCPIP_CKSUMERROR_ACCEPT ENET_DMA_CTL_DTCERFD /*!< Rx frame with only payload error but no other errors will not be dropped */ +#define ENET_TCPIP_CKSUMERROR_DROP ((uint32_t)0x00000000) /*!< all error frames will be dropped when FERF = 0 */ + +#define ENET_RX_MODE_STOREFORWARD ENET_DMA_CTL_RSFD /*!< RxFIFO operates in store-and-forward mode */ +#define ENET_RX_MODE_CUTTHROUGH ((uint32_t)0x00000000) /*!< RxFIFO operates in cut-through mode */ + +#define ENET_FLUSH_RXFRAME_ENABLE ((uint32_t)0x00000000) /*!< RxDMA flushes all frames */ +#define ENET_FLUSH_RXFRAME_DISABLE ENET_DMA_CTL_DAFRF /*!< RxDMA does not flush any frames */ +#define ENET_NO_FLUSH_RXFRAME ENET_DMA_CTL_DAFRF /*!< RxDMA flushes frames function */ + +#define ENET_TX_MODE_STOREFORWARD ENET_DMA_CTL_TSFD /*!< TxFIFO operates in store-and-forward mode */ +#define ENET_TX_MODE_CUTTHROUGH ((uint32_t)0x00000000) /*!< TxFIFO operates in cut-through mode */ + +#define ENET_FORWARD_ERRFRAMES_ENABLE (ENET_DMA_CTL_FERF<<2) /*!< all frame received with error except runt error are forwarded to memory */ +#define ENET_FORWARD_ERRFRAMES_DISABLE ((uint32_t)0x00000000) /*!< RxFIFO drop error frame */ +#define ENET_FORWARD_ERRFRAMES (ENET_DMA_CTL_FERF<<2) /*!< the function that all frame received with error except runt error are forwarded to memory */ + +#define ENET_FORWARD_UNDERSZ_GOODFRAMES_ENABLE (ENET_DMA_CTL_FUF<<2) /*!< forward undersized good frames */ +#define ENET_FORWARD_UNDERSZ_GOODFRAMES_DISABLE ((uint32_t)0x00000000) /*!< RxFIFO drops all frames whose length is less than 64 bytes */ +#define ENET_FORWARD_UNDERSZ_GOODFRAMES (ENET_DMA_CTL_FUF<<2) /*!< the function that forwarding undersized good frames */ + +#define ENET_SECONDFRAME_OPT_ENABLE ENET_DMA_CTL_OSF /*!< TxDMA controller operate on second frame mode enable*/ +#define ENET_SECONDFRAME_OPT_DISABLE ((uint32_t)0x00000000) /*!< TxDMA controller operate on second frame mode disable */ +#define ENET_SECONDFRAME_OPT ENET_DMA_CTL_OSF /*!< TxDMA controller operate on second frame function */ +/* dma_mfbocnt register value */ +#define GET_DMA_MFBOCNT_MSFC(regval) GET_BITS((regval),0,15) /*!< get value of ENET_DMA_MFBOCNT_MSFC bit field */ + +#define GET_DMA_MFBOCNT_MSFA(regval) GET_BITS((regval),17,27) /*!< get value of ENET_DMA_MFBOCNT_MSFA bit field */ + +/* dma_rswdc register value */ +#define DMA_RSWDC_WDCFRS(regval) (BITS(0,7) & ((uint32_t)(regval) << 0)) /*!< write value to ENET_DMA_RSWDC_WDCFRS bit field */ + +/* dma tx descriptor tdes0 register value */ +#define TDES0_CONT(regval) (BITS(3,6) & ((uint32_t)(regval) << 3)) /*!< write value to ENET DMA TDES0 CONT bit field */ +#define GET_TDES0_COCNT(regval) GET_BITS((regval),3,6) /*!< get value of ENET DMA TDES0 CONT bit field */ + +#define TDES0_CM(regval) (BITS(22,23) & ((uint32_t)(regval) << 22)) /*!< write value to ENET DMA TDES0 CM bit field */ +#define ENET_CHECKSUM_DISABLE TDES0_CM(0) /*!< checksum insertion disabled */ +#define ENET_CHECKSUM_IPV4HEADER TDES0_CM(1) /*!< only IP header checksum calculation and insertion are enabled */ +#define ENET_CHECKSUM_TCPUDPICMP_SEGMENT TDES0_CM(2) /*!< TCP/UDP/ICMP checksum insertion calculated but pseudo-header */ +#define ENET_CHECKSUM_TCPUDPICMP_FULL TDES0_CM(3) /*!< TCP/UDP/ICMP checksum insertion fully calculated */ + +/* dma tx descriptor tdes1 register value */ +#define TDES1_TB1S(regval) (BITS(0,12) & ((uint32_t)(regval) << 0)) /*!< write value to ENET DMA TDES1 TB1S bit field */ + +#define TDES1_TB2S(regval) (BITS(16,28) & ((uint32_t)(regval) << 16)) /*!< write value to ENET DMA TDES1 TB2S bit field */ + +/* dma rx descriptor rdes0 register value */ +#define RDES0_FRML(regval) (BITS(16,29) & ((uint32_t)(regval) << 16)) /*!< write value to ENET DMA RDES0 FRML bit field */ +#define GET_RDES0_FRML(regval) GET_BITS((regval),16,29) /*!< get value of ENET DMA RDES0 FRML bit field */ + +/* dma rx descriptor rdes1 register value */ +#define ENET_RECEIVE_COMPLETE_INT_ENABLE ((uint32_t)0x00000000U) /*!< RS bit immediately set after Rx completed */ +#define ENET_RECEIVE_COMPLETE_INT_DISABLE ENET_RDES1_DINTC /*!< RS bit not immediately set after Rx completed */ + +#define GET_RDES1_RB1S(regval) GET_BITS((regval),0,12) /*!< get value of ENET DMA RDES1 RB1S bit field */ + +#define GET_RDES1_RB2S(regval) GET_BITS((regval),16,28) /*!< get value of ENET DMA RDES1 RB2S bit field */ + +/* dma rx descriptor rdes4 register value */ +#define RDES4_IPPLDT(regval) (BITS(0,2) & ((uint32_t)(regval) << 0)) /*!< write value to ENET DMA RDES4 IPPLDT bit field */ +#define GET_RDES4_IPPLDT(regval) GET_BITS((regval),0,2) /*!< get value of ENET DMA RDES4 IPPLDT bit field */ + +#define RDES4_PTPMT(regval) (BITS(8,11) & ((uint32_t)(regval) << 8)) /*!< write value to ENET DMA RDES4 PTPMT bit field */ +#define GET_RDES4_PTPMT(regval) GET_BITS((regval),8,11) /*!< get value of ENET DMA RDES4 PTPMT bit field */ + +/* ENET register mask value */ +#define MAC_CFG_MASK ((uint32_t)0xFD30810FU) /*!< ENET_MAC_CFG register mask */ +#define MAC_FCTL_MASK ((uint32_t)0x0000FF41U) /*!< ENET_MAC_FCTL register mask */ +#define DMA_CTL_MASK ((uint32_t)0xF8DE3F23U) /*!< ENET_DMA_CTL register mask */ +#define DMA_BCTL_MASK ((uint32_t)0xF800007DU) /*!< ENET_DMA_BCTL register mask */ +#define ENET_MSC_PRESET_MASK (~(ENET_MSC_CTL_PMC | ENET_MSC_CTL_AFHPM)) /*!< ENET_MSC_CTL preset mask */ + +#ifdef SELECT_DESCRIPTORS_ENHANCED_MODE +#define ETH_DMATXDESC_SIZE ((uint32_t)0x00000020U) /*!< TxDMA enhanced descriptor size */ +#define ETH_DMARXDESC_SIZE ((uint32_t)0x00000020U) /*!< RxDMA enhanced descriptor size */ +#else +#define ETH_DMATXDESC_SIZE ((uint32_t)0x00000010U) /*!< TxDMA descriptor size */ +#define ETH_DMARXDESC_SIZE ((uint32_t)0x00000010U) /*!< RxDMA descriptor size */ +#endif /* SELECT_DESCRIPTORS_ENHANCED_MODE */ + +/* ENET remote wake-up frame register length */ +#define ETH_WAKEUP_REGISTER_LENGTH 8U /*!< remote wake-up frame register length */ + +/* ENET frame size */ +#define ENET_MAX_FRAME_SIZE 1524U /*!< header + frame_extra + payload + CRC */ + +/* ENET delay timeout */ +#define ENET_DELAY_TO ((uint32_t)0x0004FFFFU) /*!< ENET delay timeout */ +#define ENET_RESET_TO ((uint32_t)0x000004FFU) /*!< ENET reset timeout */ + + + +/* function declarations */ +/* main function */ +/* deinitialize the ENET, and reset structure parameters for ENET initialization */ +void enet_deinit(void); +/* configure the parameters which are usually less cared for initialization */ +void enet_initpara_config(enet_option_enum option, uint32_t para); +/* initialize ENET peripheral with generally concerned parameters and the less cared parameters */ +ErrStatus enet_init(enet_mediamode_enum mediamode, enet_chksumconf_enum checksum, enet_frmrecept_enum recept); +/* reset all core internal registers located in CLK_TX and CLK_RX */ +ErrStatus enet_software_reset(void); +/* check receive frame valid and return frame size */ +uint32_t enet_rxframe_size_get(void); +/* initialize the dma tx/rx descriptors's parameters in chain mode */ +void enet_descriptors_chain_init(enet_dmadirection_enum direction); +/* initialize the dma tx/rx descriptors's parameters in ring mode */ +void enet_descriptors_ring_init(enet_dmadirection_enum direction); +/* handle current received frame data to application buffer */ +ErrStatus enet_frame_receive(uint8_t *buffer, uint32_t bufsize); +/* handle current received frame but without data copy to application buffer */ +#define ENET_NOCOPY_FRAME_RECEIVE() enet_frame_receive(NULL, 0U) +/* handle application buffer data to transmit it */ +ErrStatus enet_frame_transmit(uint8_t *buffer, uint32_t length); +/* handle current transmit frame but without data copy from application buffer */ +#define ENET_NOCOPY_FRAME_TRANSMIT(len) enet_frame_transmit(NULL, (len)) +/* configure the transmit IP frame checksum offload calculation and insertion */ +void enet_transmit_checksum_config(enet_descriptors_struct *desc, uint32_t checksum); +/* ENET Tx and Rx function enable (include MAC and DMA module) */ +void enet_enable(void); +/* ENET Tx and Rx function disable (include MAC and DMA module) */ +void enet_disable(void); +/* configure MAC address */ +void enet_mac_address_set(enet_macaddress_enum mac_addr, uint8_t paddr[]); +/* get MAC address */ +void enet_mac_address_get(enet_macaddress_enum mac_addr, uint8_t paddr[]); + +/* get the ENET MAC/MSC/PTP/DMA status flag */ +FlagStatus enet_flag_get(enet_flag_enum enet_flag); +/* clear the ENET DMA status flag */ +void enet_flag_clear(enet_flag_clear_enum enet_flag); +/* enable ENET MAC/MSC/DMA interrupt */ +void enet_interrupt_enable(enet_int_enum enet_int); +/* disable ENET MAC/MSC/DMA interrupt */ +void enet_interrupt_disable(enet_int_enum enet_int); +/* get ENET MAC/MSC/DMA interrupt flag */ +FlagStatus enet_interrupt_flag_get(enet_int_flag_enum int_flag); +/* clear ENET DMA interrupt flag */ +void enet_interrupt_flag_clear(enet_int_flag_clear_enum int_flag_clear); + +/* MAC function */ +/* ENET Tx function enable (include MAC and DMA module) */ +void enet_tx_enable(void); +/* ENET Tx function disable (include MAC and DMA module) */ +void enet_tx_disable(void); +/* ENET Rx function enable (include MAC and DMA module) */ +void enet_rx_enable(void); +/* ENET Rx function disable (include MAC and DMA module) */ +void enet_rx_disable(void); +/* put registers value into the application buffer */ +void enet_registers_get(enet_registers_type_enum type, uint32_t *preg, uint32_t num); +/* get the enet debug status from the debug register */ +uint32_t enet_debug_status_get(uint32_t mac_debug); +/* enable the MAC address filter */ +void enet_address_filter_enable(enet_macaddress_enum mac_addr); +/* disable the MAC address filter */ +void enet_address_filter_disable(enet_macaddress_enum mac_addr); +/* configure the MAC address filter */ +void enet_address_filter_config(enet_macaddress_enum mac_addr, uint32_t addr_mask, uint32_t filter_type); +/* PHY interface configuration (configure SMI clock and reset PHY chip) */ +ErrStatus enet_phy_config(void); +/* write to/read from a PHY register */ +ErrStatus enet_phy_write_read(enet_phydirection_enum direction, uint16_t phy_address, uint16_t phy_reg, uint16_t *pvalue); +/* enable the loopback function of phy chip */ +ErrStatus enet_phyloopback_enable(void); +/* disable the loopback function of phy chip */ +ErrStatus enet_phyloopback_disable(void); +/* enable ENET forward feature */ +void enet_forward_feature_enable(uint32_t feature); +/* disable ENET forward feature */ +void enet_forward_feature_disable(uint32_t feature); +/* enable ENET fliter feature */ +void enet_fliter_feature_enable(uint32_t feature); +/* disable ENET fliter feature */ +void enet_fliter_feature_disable(uint32_t feature); + +/* flow control function */ +/* generate the pause frame, ENET will send pause frame after enable transmit flow control */ +ErrStatus enet_pauseframe_generate(void); +/* configure the pause frame detect type */ +void enet_pauseframe_detect_config(uint32_t detect); +/* configure the pause frame parameters */ +void enet_pauseframe_config(uint32_t pausetime, uint32_t pause_threshold); +/* configure the threshold of the flow control(deactive and active threshold) */ +void enet_flowcontrol_threshold_config(uint32_t deactive, uint32_t active); +/* enable ENET flow control feature */ +void enet_flowcontrol_feature_enable(uint32_t feature); +/* disable ENET flow control feature */ +void enet_flowcontrol_feature_disable(uint32_t feature); + +/* DMA function */ +/* get the dma transmit/receive process state */ +uint32_t enet_dmaprocess_state_get(enet_dmadirection_enum direction); +/* poll the dma transmission/reception enable */ +void enet_dmaprocess_resume(enet_dmadirection_enum direction); +/* check and recover the Rx process */ +void enet_rxprocess_check_recovery(void); +/* flush the ENET transmit fifo, and wait until the flush operation completes */ +ErrStatus enet_txfifo_flush(void); +/* get the transmit/receive address of current descriptor, or current buffer, or descriptor table */ +uint32_t enet_current_desc_address_get(enet_desc_reg_enum addr_get); +/* get the Tx or Rx descriptor information */ +uint32_t enet_desc_information_get(enet_descriptors_struct *desc, enet_descstate_enum info_get); +/* get the number of missed frames during receiving */ +void enet_missed_frame_counter_get(uint32_t *rxfifo_drop, uint32_t *rxdma_drop); + +/* descriptor function */ +/* get the bit flag of ENET dma descriptor */ +FlagStatus enet_desc_flag_get(enet_descriptors_struct *desc, uint32_t desc_flag); +/* set the bit flag of ENET dma tx descriptor */ +void enet_desc_flag_set(enet_descriptors_struct *desc, uint32_t desc_flag); +/* clear the bit flag of ENET dma tx descriptor */ +void enet_desc_flag_clear(enet_descriptors_struct *desc, uint32_t desc_flag); +/* when receiving the completed, set RS bit in ENET_DMA_STAT register will immediately set */ +void enet_rx_desc_immediate_receive_complete_interrupt(enet_descriptors_struct *desc); +/* when receiving the completed, set RS bit in ENET_DMA_STAT register will is set after a configurable delay time */ +void enet_rx_desc_delay_receive_complete_interrupt(enet_descriptors_struct *desc, uint32_t delay_time); +/* drop current receive frame */ +void enet_rxframe_drop(void); +/* enable DMA feature */ +void enet_dma_feature_enable(uint32_t feature); +/* disable DMA feature */ +void enet_dma_feature_disable(uint32_t feature); + + +/* special enhanced mode function */ +#ifdef SELECT_DESCRIPTORS_ENHANCED_MODE +/* get the bit of extended status flag in ENET DMA descriptor */ +uint32_t enet_rx_desc_enhanced_status_get(enet_descriptors_struct *desc, uint32_t desc_status); +/* configure descriptor to work in enhanced mode */ +void enet_desc_select_enhanced_mode(void); +/* initialize the dma Tx/Rx descriptors's parameters in enhanced chain mode with ptp function */ +void enet_ptp_enhanced_descriptors_chain_init(enet_dmadirection_enum direction); +/* initialize the dma Tx/Rx descriptors's parameters in enhanced ring mode with ptp function */ +void enet_ptp_enhanced_descriptors_ring_init(enet_dmadirection_enum direction); +/* receive a packet data with timestamp values to application buffer, when the DMA is in enhanced mode */ +ErrStatus enet_ptpframe_receive_enhanced_mode(uint8_t *buffer, uint32_t bufsize, uint32_t timestamp[]); +/* handle current received frame but without data copy to application buffer in PTP enhanced mode */ +#define ENET_NOCOPY_PTPFRAME_RECEIVE_ENHANCED_MODE(ptr) enet_ptpframe_receive_enhanced_mode(NULL, 0U, (ptr)) +/* send data with timestamp values in application buffer as a transmit packet, when the DMA is in enhanced mode */ +ErrStatus enet_ptpframe_transmit_enhanced_mode(uint8_t *buffer, uint32_t length, uint32_t timestamp[]); +/* handle current transmit frame but without data copy from application buffer in PTP enhanced mode */ +#define ENET_NOCOPY_PTPFRAME_TRANSMIT_ENHANCED_MODE(len, ptr) enet_ptpframe_transmit_enhanced_mode(NULL, (len), (ptr)) + +#else + +/* configure descriptor to work in normal mode */ +void enet_desc_select_normal_mode(void); +/* initialize the dma Tx/Rx descriptors's parameters in normal chain mode with ptp function */ +void enet_ptp_normal_descriptors_chain_init(enet_dmadirection_enum direction, enet_descriptors_struct *desc_ptptab); +/* initialize the dma Tx/Rx descriptors's parameters in normal ring mode with ptp function */ +void enet_ptp_normal_descriptors_ring_init(enet_dmadirection_enum direction, enet_descriptors_struct *desc_ptptab); +/* receive a packet data with timestamp values to application buffer, when the DMA is in normal mode */ +ErrStatus enet_ptpframe_receive_normal_mode(uint8_t *buffer, uint32_t bufsize, uint32_t timestamp[]); +/* handle current received frame but without data copy to application buffer in PTP normal mode */ +#define ENET_NOCOPY_PTPFRAME_RECEIVE_NORMAL_MODE(ptr) enet_ptpframe_receive_normal_mode(NULL, 0U, (ptr)) +/* send data with timestamp values in application buffer as a transmit packet, when the DMA is in normal mode */ +ErrStatus enet_ptpframe_transmit_normal_mode(uint8_t *buffer, uint32_t length, uint32_t timestamp[]); +/* handle current transmit frame but without data copy from application buffer in PTP normal mode */ +#define ENET_NOCOPY_PTPFRAME_TRANSMIT_NORMAL_MODE(len, ptr) enet_ptpframe_transmit_normal_mode(NULL, (len), (ptr)) + +#endif /* SELECT_DESCRIPTORS_ENHANCED_MODE */ + +/* WUM function */ +/* wakeup frame filter register pointer reset */ +void enet_wum_filter_register_pointer_reset(void); +/* set the remote wakeup frame registers */ +void enet_wum_filter_config(uint32_t pdata[]); +/* enable wakeup management features */ +void enet_wum_feature_enable(uint32_t feature); +/* disable wakeup management features */ +void enet_wum_feature_disable(uint32_t feature); + +/* MSC function */ +/* reset the MAC statistics counters */ +void enet_msc_counters_reset(void); +/* enable the MAC statistics counter features */ +void enet_msc_feature_enable(uint32_t feature); +/* disable the MAC statistics counter features */ +void enet_msc_feature_disable(uint32_t feature); +/* configure MAC statistics counters preset mode */ +void enet_msc_counters_preset_config(enet_msc_preset_enum mode); +/* get MAC statistics counter */ +uint32_t enet_msc_counters_get(enet_msc_counter_enum counter); + +/* PTP function */ +/* enable the PTP features */ +void enet_ptp_feature_enable(uint32_t feature); +/* disable the PTP features */ +void enet_ptp_feature_disable(uint32_t feature); +/* configure the PTP timestamp function */ +ErrStatus enet_ptp_timestamp_function_config(enet_ptp_function_enum func); +/* configure the PTP system time subsecond increment value */ +void enet_ptp_subsecond_increment_config(uint32_t subsecond); +/* adjusting the PTP clock frequency only in fine update mode */ +void enet_ptp_timestamp_addend_config(uint32_t add); +/* initializing or adding/subtracting to second of the PTP system time */ +void enet_ptp_timestamp_update_config(uint32_t sign, uint32_t second, uint32_t subsecond); +/* configure the PTP expected target time */ +void enet_ptp_expected_time_config(uint32_t second, uint32_t nanosecond); +/* get the PTP current system time */ +void enet_ptp_system_time_get(enet_ptp_systime_struct *systime_struct); +/* configure the PPS output frequency */ +void enet_ptp_pps_output_frequency_config(uint32_t freq); + + +/* internal function */ +/* reset the ENET initpara struct, call it before using enet_initpara_config() */ +void enet_initpara_reset(void); + + +#endif /* GD32F4XX_ENET_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_exmc.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_exmc.h new file mode 100644 index 0000000000..0efe5e5c27 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_exmc.h @@ -0,0 +1,809 @@ +/*! + \file gd32f4xx_exmc.h + \brief definitions for the EXMC + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_EXMC_H +#define GD32F4XX_EXMC_H + +#include "gd32f4xx.h" + +/* EXMC definitions */ +#define EXMC (EXMC_BASE) /*!< EXMC register base address */ +#define EXMC_NOR_PSRAM (EXMC_BASE - 0x40000000) /*!< EXMC NOR/PSRAM base address */ +#define EXMC_NAND (EXMC_BASE - 0x30000000) /*!< EXMC NAND base address */ +#define EXMC_PCCARD (EXMC_BASE - 0x10000000) /*!< EXMC PC card base address */ +#define EXMC_SDRAM (EXMC_BASE + 0x20000000) /*!< EXMC SDRAM base address */ + +/* registers definitions */ +/* NOR/PSRAM */ +#define EXMC_SNCTL0 REG32(EXMC + 0x00U) /*!< EXMC SRAM/NOR flash control register for region0 */ +#define EXMC_SNTCFG0 REG32(EXMC + 0x04U) /*!< EXMC SRAM/NOR flash timing configuration register for region0 */ +#define EXMC_SNWTCFG0 REG32(EXMC + 0x104U) /*!< EXMC SRAM/NOR flash write timing configuration register for region0 */ + +#define EXMC_SNCTL1 REG32(EXMC + 0x08U) /*!< EXMC SRAM/NOR flash control register for region1 */ +#define EXMC_SNTCFG1 REG32(EXMC + 0x0CU) /*!< EXMC SRAM/NOR flash timing configuration register for region1 */ +#define EXMC_SNWTCFG1 REG32(EXMC + 0x10CU) /*!< EXMC SRAM/NOR flash write timing configuration register for region1 */ + +#define EXMC_SNCTL2 REG32(EXMC + 0x10U) /*!< EXMC SRAM/NOR flash control register for region2 */ +#define EXMC_SNTCFG2 REG32(EXMC + 0x14U) /*!< EXMC SRAM/NOR flash timing configuration register for region2 */ +#define EXMC_SNWTCFG2 REG32(EXMC + 0x114U) /*!< EXMC SRAM/NOR flash write timing configuration register for region2 */ + +#define EXMC_SNCTL3 REG32(EXMC + 0x18U) /*!< EXMC SRAM/NOR flash control register for region3 */ +#define EXMC_SNTCFG3 REG32(EXMC + 0x1CU) /*!< EXMC SRAM/NOR flash timing configuration register for region3 */ +#define EXMC_SNWTCFG3 REG32(EXMC + 0x11CU) /*!< EXMC SRAM/NOR flash write timing configuration register for region3 */ + +/* NAND/PC card */ +#define EXMC_NPCTL1 REG32(EXMC + 0x60U) /*!< EXMC NAND/PC card control register for bank1 */ +#define EXMC_NPINTEN1 REG32(EXMC + 0x64U) /*!< EXMC NAND/PC card interrupt enable register for bank1 */ +#define EXMC_NPCTCFG1 REG32(EXMC + 0x68U) /*!< EXMC NAND/PC card common space timing configuration register for bank1 */ +#define EXMC_NPATCFG1 REG32(EXMC + 0x6CU) /*!< EXMC NAND/PC card attribute space timing configuration register for bank1 */ +#define EXMC_NECC1 REG32(EXMC + 0x74U) /*!< EXMC NAND ECC register */ + +#define EXMC_NPCTL2 REG32(EXMC + 0x80U) /*!< EXMC NAND/PC card control register for bank2 */ +#define EXMC_NPINTEN2 REG32(EXMC + 0x84U) /*!< EXMC NAND/PC card interrupt enable register for bank2 */ +#define EXMC_NPCTCFG2 REG32(EXMC + 0x88U) /*!< EXMC NAND/PC card common space timing configuration register for bank2 */ +#define EXMC_NPATCFG2 REG32(EXMC + 0x8CU) /*!< EXMC NAND/PC card attribute space timing configuration register for bank2 */ +#define EXMC_NECC2 REG32(EXMC + 0x94U) /*!< EXMC NAND ECC register */ + +#define EXMC_NPCTL3 REG32(EXMC + 0xA0U) /*!< EXMC NAND/PC card control register for bank3 */ +#define EXMC_NPINTEN3 REG32(EXMC + 0xA4U) /*!< EXMC NAND/PC card interrupt enable register for bank3 */ +#define EXMC_NPCTCFG3 REG32(EXMC + 0xA8U) /*!< EXMC NAND/PC card common space timing configuration register for bank3 */ +#define EXMC_NPATCFG3 REG32(EXMC + 0xACU) /*!< EXMC NAND/PC card attribute space timing configuration register for bank3 */ +#define EXMC_PIOTCFG3 REG32(EXMC + 0xB0U) /*!< EXMC PC card I/O space timing configuration register for bank3 */ + +/* SDRAM */ +#define EXMC_SDCTL0 REG32(EXMC + 0x140U) /*!< EXMC SDRAM control register for device0 */ +#define EXMC_SDTCFG0 REG32(EXMC + 0x148U) /*!< EXMC SDRAM timing configuration register register for device0 */ + +#define EXMC_SDCTL1 REG32(EXMC + 0x144U) /*!< EXMC SDRAM control register for device1 */ +#define EXMC_SDTCFG1 REG32(EXMC + 0x14CU) /*!< EXMC SDRAM timing configuration register register for device1 */ + +#define EXMC_SDCMD REG32(EXMC + 0x150U) /*!< EXMC SDRAM command register */ +#define EXMC_SDARI REG32(EXMC + 0x154U) /*!< EXMC SDRAM auto-refresh interval register */ +#define EXMC_SDSTAT REG32(EXMC + 0x158U) /*!< EXMC SDRAM status register */ +#define EXMC_SDRSCTL REG32(EXMC + 0x180U) /*!< EXMC SDRAM read sample control register */ + +/* SQPI PSRAM */ +#define EXMC_SINIT REG32(EXMC + 0x310U) /*!< EXMC SPI initialization register */ +#define EXMC_SRCMD REG32(EXMC + 0x320U) /*!< EXMC SPI read command register */ +#define EXMC_SWCMD REG32(EXMC + 0x330U) /*!< EXMC SPI write command register */ +#define EXMC_SIDL REG32(EXMC + 0x340U) /*!< EXMC SPI ID low register */ +#define EXMC_SIDH REG32(EXMC + 0x350U) /*!< EXMC SPI ID high register */ + +/* bits definitions */ +/* EXMC_SNCTLx,x=0..3 */ +#define EXMC_SNCTL_NRBKEN BIT(0) /*!< NOR bank enable */ +#define EXMC_SNCTL_NRMUX BIT(1) /*!< NOR bank memory address/data multiplexing enable */ +#define EXMC_SNCTL_NRTP BITS(2,3) /*!< NOR bank memory type */ +#define EXMC_SNCTL_NRW BITS(4,5) /*!< NOR bank memory data bus width */ +#define EXMC_SNCTL_NREN BIT(6) /*!< NOR flash access enable */ +#define EXMC_SNCTL_SBRSTEN BIT(8) /*!< synchronous burst enable */ +#define EXMC_SNCTL_NRWTPOL BIT(9) /*!< NWAIT signal polarity */ +#define EXMC_SNCTL_WRAPEN BIT(10) /*!< wrapped burst mode enable */ +#define EXMC_SNCTL_NRWTCFG BIT(11) /*!< NWAIT signal configuration, only work in synchronous mode */ +#define EXMC_SNCTL_WREN BIT(12) /*!< write enable */ +#define EXMC_SNCTL_NRWTEN BIT(13) /*!< NWAIT signal enable */ +#define EXMC_SNCTL_EXMODEN BIT(14) /*!< extended mode enable */ +#define EXMC_SNCTL_ASYNCWAIT BIT(15) /*!< asynchronous wait enable */ +#define EXMC_SNCTL_CPS BITS(16,18) /*!< CRAM page size */ +#define EXMC_SNCTL_SYNCWR BIT(19) /*!< synchronous write config */ +#define EXMC_SNCTL_CCK BIT(20) /*!< consecutive clock config */ + +/* EXMC_SNTCFGx,x=0..3 */ +#define EXMC_SNTCFG_ASET BITS(0,3) /*!< asynchronous address setup time */ +#define EXMC_SNTCFG_AHLD BITS(4,7) /*!< asynchronous address hold time */ +#define EXMC_SNTCFG_DSET BITS(8,15) /*!< asynchronous data setup time */ +#define EXMC_SNTCFG_BUSLAT BITS(16,19) /*!< bus latency */ +#define EXMC_SNTCFG_CKDIV BITS(20,23) /*!< synchronous clock divide ratio */ +#define EXMC_SNTCFG_DLAT BITS(24,27) /*!< synchronous data latency for NOR flash */ +#define EXMC_SNTCFG_ASYNCMOD BITS(28,29) /*!< asynchronous access mode */ + +/* EXMC_SNWTCFGx,x=0..3 */ +#define EXMC_SNWTCFG_WASET BITS(0,3) /*!< asynchronous address setup time */ +#define EXMC_SNWTCFG_WAHLD BITS(4,7) /*!< asynchronous address hold time */ +#define EXMC_SNWTCFG_WDSET BITS(8,15) /*!< asynchronous data setup time */ +#define EXMC_SNWTCFG_WBUSLAT BITS(16,19) /*!< bus latency */ +#define EXMC_SNWTCFG_WASYNCMOD BITS(28,29) /*!< asynchronous access mode */ + +/* EXMC_NPCTLx,x=1..3 */ +#define EXMC_NPCTL_NDWTEN BIT(1) /*!< wait feature enable */ +#define EXMC_NPCTL_NDBKEN BIT(2) /*!< NAND bank enable */ +#define EXMC_NPCTL_NDTP BIT(3) /*!< NAND bank memory type */ +#define EXMC_NPCTL_NDW BITS(4,5) /*!< NAND bank memory data bus width */ +#define EXMC_NPCTL_ECCEN BIT(6) /*!< ECC enable */ +#define EXMC_NPCTL_CTR BITS(9,12) /*!< CLE to RE delay */ +#define EXMC_NPCTL_ATR BITS(13,16) /*!< ALE to RE delay */ +#define EXMC_NPCTL_ECCSZ BITS(17,19) /*!< ECC size */ + +/* EXMC_NPINTENx,x=1..3 */ +#define EXMC_NPINTEN_INTRS BIT(0) /*!< interrupt rising edge status */ +#define EXMC_NPINTEN_INTHS BIT(1) /*!< interrupt high-level status */ +#define EXMC_NPINTEN_INTFS BIT(2) /*!< interrupt falling edge status */ +#define EXMC_NPINTEN_INTREN BIT(3) /*!< interrupt rising edge detection enable */ +#define EXMC_NPINTEN_INTHEN BIT(4) /*!< interrupt high-level detection enable */ +#define EXMC_NPINTEN_INTFEN BIT(5) /*!< interrupt falling edge detection enable */ +#define EXMC_NPINTEN_FFEPT BIT(6) /*!< FIFO empty flag */ + +/* EXMC_NPCTCFGx,x=1..3 */ +#define EXMC_NPCTCFG_COMSET BITS(0,7) /*!< common memory setup time */ +#define EXMC_NPCTCFG_COMWAIT BITS(8,15) /*!< common memory wait time */ +#define EXMC_NPCTCFG_COMHLD BITS(16,23) /*!< common memory hold time */ +#define EXMC_NPCTCFG_COMHIZ BITS(24,31) /*!< common memory data bus HiZ time */ + +/* EXMC_NPATCFGx,x=1..3 */ +#define EXMC_NPATCFG_ATTSET BITS(0,7) /*!< attribute memory setup time */ +#define EXMC_NPATCFG_ATTWAIT BITS(8,15) /*!< attribute memory wait time */ +#define EXMC_NPATCFG_ATTHLD BITS(16,23) /*!< attribute memory hold time */ +#define EXMC_NPATCFG_ATTHIZ BITS(24,31) /*!< attribute memory data bus HiZ time */ + +/* EXMC_PIOTCFG3 */ +#define EXMC_PIOTCFG3_IOSET BITS(0,7) /*!< IO space setup time */ +#define EXMC_PIOTCFG3_IOWAIT BITS(8,15) /*!< IO space wait time */ +#define EXMC_PIOTCFG3_IOHLD BITS(16,23) /*!< IO space hold time */ +#define EXMC_PIOTCFG3_IOHIZ BITS(24,31) /*!< IO space data bus HiZ time */ + +/* EXMC_NECCx,x=1..2 */ +#define EXMC_NECC_ECC BITS(0,31) /*!< ECC result */ + +/* EXMC_SDCTLx,x=0..1 */ +#define EXMC_SDCTL_CAW BITS(0,1) /*!< column address bit width */ +#define EXMC_SDCTL_RAW BITS(2,3) /*!< row address bit width */ +#define EXMC_SDCTL_SDW BITS(4,5) /*!< SDRAM data bus width */ +#define EXMC_SDCTL_NBK BIT(6) /*!< number of banks */ +#define EXMC_SDCTL_CL BIT(7,8) /*!< CAS Latency */ +#define EXMC_SDCTL_WPEN BIT(9) /*!< write protection enable */ +#define EXMC_SDCTL_SDCLK BITS(10,11) /*!< SDRAM clock configuration */ +#define EXMC_SDCTL_BRSTRD BIT(12) /*!< burst read enable */ +#define EXMC_SDCTL_PIPED BITS(13,14) /*!< pipeline delay */ + +/* EXMC_SDTCFGx,x=0..1 */ +#define EXMC_SDTCFG_LMRD BITS(0,3) /*!< load mode register delay */ +#define EXMC_SDTCFG_XSRD BITS(4,7) /*!< exit self-refresh delay */ +#define EXMC_SDTCFG_RASD BITS(8,11) /*!< row address select delay */ +#define EXMC_SDTCFG_ARFD BITS(12,15) /*!< auto refresh delay */ +#define EXMC_SDTCFG_WRD BITS(16,19) /*!< write recovery delay */ +#define EXMC_SDTCFG_RPD BITS(20,23) /*!< row precharge delay */ +#define EXMC_SDTCFG_RCD BITS(24,27) /*!< row to column delay */ + +/* EXMC_SDCMD */ +#define EXMC_SDCMD_CMD BITS(0,2) /*!< command */ +#define EXMC_SDCMD_DS1 BIT(3) /*!< select device1 */ +#define EXMC_SDCMD_DS0 BIT(4) /*!< select device0 */ +#define EXMC_SDCMD_NARF BITS(5,8) /*!< number of successive auto-refresh */ +#define EXMC_SDCMD_MRC BITS(9,21) /*!< mode register content */ + +/* EXMC_SDARI */ +#define EXMC_SDARI_REC BIT(0) /*!< refresh error flag clear */ +#define EXMC_SDARI_ARINTV BITS(1,13) /*!< auto-refresh interval */ +#define EXMC_SDARI_REIE BIT(14) /*!< interrupt refresh error enable */ + +/* EXMC_SDSTAT */ +#define EXMC_SDSDAT_REIF BIT(0) /*!< refresh error interrupt flag */ +#define EXMC_SDSDAT_STA0 BITS(1,2) /*!< device0 status */ +#define EXMC_SDSDAT_STA1 BITS(3,4) /*!< device1 status */ +#define EXMC_SDSDAT_NRDY BIT(5) /*!< not ready status */ + +/* EXMC_SDRSCTL */ +#define EXMC_SDRSCTL_RSEN BIT(0) /*!< read sample enable */ +#define EXMC_SDRSCTL_SSCR BIT(1) /*!< select sample cycle of read data */ +#define EXMC_SDRSCTL_SDSC BITS(4,7) /*!< select the delayed sample clock of read data */ + +/* EXMC_SINIT */ +#define EXMC_SINIT_CMDBIT BITS(16,17) /*!< bit number of SPI PSRAM command phase */ +#define EXMC_SINIT_ARDBIT BITS(24,28) /*!< bit number of SPI PSRAM address phase */ +#define EXMC_SINIT_IDL BITS(29,30) /*!< SPI PSRAM ID length */ +#define EXMC_SINIT_POL BIT(31) /*!< read data sample polarity */ + +/* EXMC_SRCMD */ +#define EXMC_SRCMD_RCMD BITS(0,15) /*!< SPI read command for AHB read transfer */ +#define EXMC_SRCMD_RWAITCYCLE BITS(16,19) /*!< SPI read wait cycle number after address phase */ +#define EXMC_SRCMD_RMODE BITS(20,21) /*!< SPI PSRAM read command mode */ +#define EXMC_SRCMD_RDID BIT(31) /*!< send SPI read ID command */ + +/* EXMC_SWCMD */ +#define EXMC_SWCMD_WCMD BITS(0,15) /*!< SPI write command for AHB write transfer */ +#define EXMC_SWCMD_WWAITCYCLE BITS(16,19) /*!< SPI write wait cycle number after address phase */ +#define EXMC_SWCMD_WMODE BITS(20,21) /*!< SPI PSRAM write command mode */ +#define EXMC_SWCMD_SC BIT(31) /*!< send SPI special command */ + +/* EXMC_SIDL */ +#define EXMC_SIDL_SIDL BITS(0,31) /*!< ID low data saved for SPI read ID command */ + +/* EXMC_SIDH */ +#define EXMC_SIDL_SIDH BITS(0,31) /*!< ID high Data saved for SPI read ID command */ + +/* constants definitions */ +/* EXMC NOR/SRAM timing initialize structure */ +typedef struct +{ + uint32_t asyn_access_mode; /*!< asynchronous access mode */ + uint32_t syn_data_latency; /*!< configure the data latency */ + uint32_t syn_clk_division; /*!< configure the clock divide ratio */ + uint32_t bus_latency; /*!< configure the bus latency */ + uint32_t asyn_data_setuptime; /*!< configure the data setup time, asynchronous access mode valid */ + uint32_t asyn_address_holdtime; /*!< configure the address hold time, asynchronous access mode valid */ + uint32_t asyn_address_setuptime; /*!< configure the address setup time, asynchronous access mode valid */ +}exmc_norsram_timing_parameter_struct; + +/* EXMC NOR/SRAM initialize structure */ +typedef struct +{ + uint32_t norsram_region; /*!< select the region of EXMC NOR/SRAM bank */ + uint32_t write_mode; /*!< the write mode, synchronous mode or asynchronous mode */ + uint32_t extended_mode; /*!< enable or disable the extended mode */ + uint32_t asyn_wait; /*!< enable or disable the asynchronous wait function */ + uint32_t nwait_signal; /*!< enable or disable the NWAIT signal while in synchronous bust mode */ + uint32_t memory_write; /*!< enable or disable the write operation */ + uint32_t nwait_config; /*!< NWAIT signal configuration */ + uint32_t wrap_burst_mode; /*!< enable or disable the wrap burst mode */ + uint32_t nwait_polarity; /*!< specifies the polarity of NWAIT signal from memory */ + uint32_t burst_mode; /*!< enable or disable the burst mode */ + uint32_t databus_width; /*!< specifies the databus width of external memory */ + uint32_t memory_type; /*!< specifies the type of external memory */ + uint32_t address_data_mux; /*!< specifies whether the data bus and address bus are multiplexed */ + exmc_norsram_timing_parameter_struct* read_write_timing; /*!< timing parameters for read and write if the extendedmode is not used or the timing + parameters for read if the extendedmode is used. */ + exmc_norsram_timing_parameter_struct* write_timing; /*!< timing parameters for write when the extendedmode is used. */ +}exmc_norsram_parameter_struct; + +/* EXMC NAND/PC card timing initialize struct */ +typedef struct +{ + uint32_t databus_hiztime; /*!< configure the dadtabus HiZ time for write operation */ + uint32_t holdtime; /*!< configure the address hold time(or the data hold time for write operation) */ + uint32_t waittime; /*!< configure the minimum wait time */ + uint32_t setuptime; /*!< configure the address setup time */ +}exmc_nand_pccard_timing_parameter_struct; + +/* EXMC NAND initialize struct */ +typedef struct +{ + uint32_t nand_bank; /*!< select the bank of NAND */ + uint32_t ecc_size; /*!< the page size for the ECC calculation */ + uint32_t atr_latency; /*!< configure the latency of ALE low to RB low */ + uint32_t ctr_latency; /*!< configure the latency of CLE low to RB low */ + uint32_t ecc_logic; /*!< enable or disable the ECC calculation logic */ + uint32_t databus_width; /*!< the NAND flash databus width */ + uint32_t wait_feature; /*!< enable or disable the wait feature */ + exmc_nand_pccard_timing_parameter_struct* common_space_timing; /*!< the timing parameters for NAND flash common space */ + exmc_nand_pccard_timing_parameter_struct* attribute_space_timing; /*!< the timing parameters for NAND flash attribute space */ +}exmc_nand_parameter_struct; + +/* EXMC PC card initialize struct */ +typedef struct +{ + uint32_t atr_latency; /*!< configure the latency of ALE low to RB low */ + uint32_t ctr_latency; /*!< configure the latency of CLE low to RB low */ + uint32_t wait_feature; /*!< enable or disable the wait feature */ + exmc_nand_pccard_timing_parameter_struct* common_space_timing; /*!< the timing parameters for PC card common space */ + exmc_nand_pccard_timing_parameter_struct* attribute_space_timing; /*!< the timing parameters for PC card attribute space */ + exmc_nand_pccard_timing_parameter_struct* io_space_timing; /*!< the timing parameters for PC card IO space */ +}exmc_pccard_parameter_struct; + +/* EXMC SDRAM timing initialize struct */ +typedef struct +{ + uint32_t row_to_column_delay; /*!< configure the row to column delay */ + uint32_t row_precharge_delay; /*!< configure the row precharge delay */ + uint32_t write_recovery_delay; /*!< configure the write recovery delay */ + uint32_t auto_refresh_delay; /*!< configure the auto refresh delay */ + uint32_t row_address_select_delay; /*!< configure the row address select delay */ + uint32_t exit_selfrefresh_delay; /*!< configure the exit self-refresh delay */ + uint32_t load_mode_register_delay; /*!< configure the load mode register delay */ +}exmc_sdram_timing_parameter_struct; + +/* EXMC SDRAM initialize struct */ +typedef struct +{ + uint32_t sdram_device; /*!< device of SDRAM */ + uint32_t pipeline_read_delay; /*!< the delay for reading data after CAS latency in HCLK clock cycles */ + uint32_t brust_read_switch; /*!< enable or disable the burst read */ + uint32_t sdclock_config; /*!< the SDCLK memory clock for both SDRAM banks */ + uint32_t write_protection; /*!< enable or disable SDRAM bank write protection function */ + uint32_t cas_latency; /*!< configure the SDRAM CAS latency */ + uint32_t internal_bank_number; /*!< the number of internal bank */ + uint32_t data_width; /*!< the databus width of SDRAM memory */ + uint32_t row_address_width; /*!< the bit width of a row address */ + uint32_t column_address_width; /*!< the bit width of a column address */ + exmc_sdram_timing_parameter_struct* timing; /*!< the timing parameters for write and read SDRAM */ +}exmc_sdram_parameter_struct; + +/* EXMC SDRAM command initialize struct */ +typedef struct +{ + uint32_t mode_register_content; /*!< the SDRAM mode register content */ + uint32_t auto_refresh_number; /*!< the number of successive auto-refresh cycles will be send when CMD = 011 */ + uint32_t bank_select; /*!< the bank which command will be sent to */ + uint32_t command; /*!< the commands that will be sent to SDRAM */ +}exmc_sdram_command_parameter_struct; + +/* EXMC SQPISRAM initialize struct */ +typedef struct{ + uint32_t sample_polarity; /*!< read data sample polarity */ + uint32_t id_length; /*!< SPI PSRAM ID length */ + uint32_t address_bits; /*!< bit number of SPI PSRAM address phase */ + uint32_t command_bits; /*!< bit number of SPI PSRAM command phase */ +}exmc_sqpipsram_parameter_struct; + +/* EXMC_register address */ +#define EXMC_SNCTL(region) REG32(EXMC + 0x08U*((uint32_t)(region))) /*!< EXMC SRAM/NOR flash control registers, region = 0,1,2,3 */ +#define EXMC_SNTCFG(region) REG32(EXMC + 0x04U + 0x08U*((uint32_t)(region))) /*!< EXMC SRAM/NOR flash timing configuration registers, region = 0,1,2,3 */ +#define EXMC_SNWTCFG(region) REG32(EXMC + 0x104U + 0x08U*((uint32_t)(region))) /*!< EXMC SRAM/NOR flash write timing configuration registers, region = 0,1,2,3 */ + +#define EXMC_NPCTL(bank) REG32(EXMC + 0x40U + 0x20U*((uint32_t)(bank))) /*!< EXMC NAND/PC card control registers, bank = 1,2,3 */ +#define EXMC_NPINTEN(bank) REG32(EXMC + 0x44U + 0x20U*((uint32_t)(bank))) /*!< EXMC NAND/PC card interrupt enable registers, bank = 1,2,3 */ +#define EXMC_NPCTCFG(bank) REG32(EXMC + 0x48U + 0x20U*((uint32_t)(bank))) /*!< EXMC NAND/PC card common space timing configuration registers, bank = 1,2,3 */ +#define EXMC_NPATCFG(bank) REG32(EXMC + 0x4CU + 0x20U*((uint32_t)(bank))) /*!< EXMC NAND/PC card attribute space timing configuration registers, bank = 1,2,3 */ +#define EXMC_NECC(bank) REG32(EXMC + 0x54U + 0x20U*((uint32_t)(bank))) /*!< EXMC NAND ECC registers, bank = 1,2 */ + +#define EXMC_SDCTL(device) REG32(EXMC + 0x140U + 0x4U*(((uint32_t)(device)) - 0x4U)) /*!< EXMC SDRAM control registers,device = 0,1 */ +#define EXMC_SDTCFG(device) REG32(EXMC + 0x148U + 0x4U*(((uint32_t)(device)) - 0x4U)) /*!< EXMC SDRAM timing configuration registers,device = 0,1 */ + +/* CRAM page size */ +#define SNCTL_CPS(regval) (BITS(16,18) & ((uint32_t)(regval) << 16)) +#define EXMC_CRAM_AUTO_SPLIT SNCTL_CPS(0) /*!< automatic burst split on page boundary crossing */ +#define EXMC_CRAM_PAGE_SIZE_128_BYTES SNCTL_CPS(1) /*!< page size is 128 bytes */ +#define EXMC_CRAM_PAGE_SIZE_256_BYTES SNCTL_CPS(2) /*!< page size is 256 bytes */ +#define EXMC_CRAM_PAGE_SIZE_512_BYTES SNCTL_CPS(3) /*!< page size is 512 bytes */ +#define EXMC_CRAM_PAGE_SIZE_1024_BYTES SNCTL_CPS(4) /*!< page size is 1024 bytes */ + +/* NOR bank memory data bus width */ +#define SNCTL_NRW(regval) (BITS(4,5) & ((uint32_t)(regval) << 4)) +#define EXMC_NOR_DATABUS_WIDTH_8B SNCTL_NRW(0) /*!< NOR data width is 8 bits */ +#define EXMC_NOR_DATABUS_WIDTH_16B SNCTL_NRW(1) /*!< NOR data width is 16 bits */ + +/* NOR bank memory type */ +#define SNCTL_NRTP(regval) (BITS(2,3) & ((uint32_t)(regval) << 2)) +#define EXMC_MEMORY_TYPE_SRAM SNCTL_NRTP(0) /*!< SRAM,ROM */ +#define EXMC_MEMORY_TYPE_PSRAM SNCTL_NRTP(1) /*!< PSRAM,CRAM */ +#define EXMC_MEMORY_TYPE_NOR SNCTL_NRTP(2) /*!< NOR flash */ + +/* asynchronous access mode */ +#define SNTCFG_ASYNCMOD(regval) (BITS(28,29) & ((uint32_t)(regval) << 28)) +#define EXMC_ACCESS_MODE_A SNTCFG_ASYNCMOD(0) /*!< mode A access */ +#define EXMC_ACCESS_MODE_B SNTCFG_ASYNCMOD(1) /*!< mode B access */ +#define EXMC_ACCESS_MODE_C SNTCFG_ASYNCMOD(2) /*!< mode C access */ +#define EXMC_ACCESS_MODE_D SNTCFG_ASYNCMOD(3) /*!< mode D access */ + +/* data latency for NOR flash */ +#define SNTCFG_DLAT(regval) (BITS(24,27) & ((uint32_t)(regval) << 24)) +#define EXMC_DATALAT_2_CLK SNTCFG_DLAT(0) /*!< data latency of first burst access is 2 EXMC_CLK */ +#define EXMC_DATALAT_3_CLK SNTCFG_DLAT(1) /*!< data latency of first burst access is 3 EXMC_CLK */ +#define EXMC_DATALAT_4_CLK SNTCFG_DLAT(2) /*!< data latency of first burst access is 4 EXMC_CLK */ +#define EXMC_DATALAT_5_CLK SNTCFG_DLAT(3) /*!< data latency of first burst access is 5 EXMC_CLK */ +#define EXMC_DATALAT_6_CLK SNTCFG_DLAT(4) /*!< data latency of first burst access is 6 EXMC_CLK */ +#define EXMC_DATALAT_7_CLK SNTCFG_DLAT(5) /*!< data latency of first burst access is 7 EXMC_CLK */ +#define EXMC_DATALAT_8_CLK SNTCFG_DLAT(6) /*!< data latency of first burst access is 8 EXMC_CLK */ +#define EXMC_DATALAT_9_CLK SNTCFG_DLAT(7) /*!< data latency of first burst access is 9 EXMC_CLK */ +#define EXMC_DATALAT_10_CLK SNTCFG_DLAT(8) /*!< data latency of first burst access is 10 EXMC_CLK */ +#define EXMC_DATALAT_11_CLK SNTCFG_DLAT(9) /*!< data latency of first burst access is 11 EXMC_CLK */ +#define EXMC_DATALAT_12_CLK SNTCFG_DLAT(10) /*!< data latency of first burst access is 12 EXMC_CLK */ +#define EXMC_DATALAT_13_CLK SNTCFG_DLAT(11) /*!< data latency of first burst access is 13 EXMC_CLK */ +#define EXMC_DATALAT_14_CLK SNTCFG_DLAT(12) /*!< data latency of first burst access is 14 EXMC_CLK */ +#define EXMC_DATALAT_15_CLK SNTCFG_DLAT(13) /*!< data latency of first burst access is 15 EXMC_CLK */ +#define EXMC_DATALAT_16_CLK SNTCFG_DLAT(14) /*!< data latency of first burst access is 16 EXMC_CLK */ +#define EXMC_DATALAT_17_CLK SNTCFG_DLAT(15) /*!< data latency of first burst access is 17 EXMC_CLK */ + +/* synchronous clock divide ratio */ +#define SNTCFG_CKDIV(regval) (BITS(20,23) & ((uint32_t)(regval) << 20)) +#define EXMC_SYN_CLOCK_RATIO_2_CLK SNTCFG_CKDIV(1) /*!< EXMC_CLK = 2*HCLK */ +#define EXMC_SYN_CLOCK_RATIO_3_CLK SNTCFG_CKDIV(2) /*!< EXMC_CLK = 3*HCLK */ +#define EXMC_SYN_CLOCK_RATIO_4_CLK SNTCFG_CKDIV(3) /*!< EXMC_CLK = 4*HCLK */ +#define EXMC_SYN_CLOCK_RATIO_5_CLK SNTCFG_CKDIV(4) /*!< EXMC_CLK = 5*HCLK */ +#define EXMC_SYN_CLOCK_RATIO_6_CLK SNTCFG_CKDIV(5) /*!< EXMC_CLK = 6*HCLK */ +#define EXMC_SYN_CLOCK_RATIO_7_CLK SNTCFG_CKDIV(6) /*!< EXMC_CLK = 7*HCLK */ +#define EXMC_SYN_CLOCK_RATIO_8_CLK SNTCFG_CKDIV(7) /*!< EXMC_CLK = 8*HCLK */ +#define EXMC_SYN_CLOCK_RATIO_9_CLK SNTCFG_CKDIV(8) /*!< EXMC_CLK = 9*HCLK */ +#define EXMC_SYN_CLOCK_RATIO_10_CLK SNTCFG_CKDIV(9) /*!< EXMC_CLK = 10*HCLK */ +#define EXMC_SYN_CLOCK_RATIO_11_CLK SNTCFG_CKDIV(10) /*!< EXMC_CLK = 11*HCLK */ +#define EXMC_SYN_CLOCK_RATIO_12_CLK SNTCFG_CKDIV(11) /*!< EXMC_CLK = 12*HCLK */ +#define EXMC_SYN_CLOCK_RATIO_13_CLK SNTCFG_CKDIV(12) /*!< EXMC_CLK = 13*HCLK */ +#define EXMC_SYN_CLOCK_RATIO_14_CLK SNTCFG_CKDIV(13) /*!< EXMC_CLK = 14*HCLK */ +#define EXMC_SYN_CLOCK_RATIO_15_CLK SNTCFG_CKDIV(14) /*!< EXMC_CLK = 15*HCLK */ +#define EXMC_SYN_CLOCK_RATIO_16_CLK SNTCFG_CKDIV(15) /*!< EXMC_CLK = 16*HCLK */ + +/* ECC size */ +#define NPCTL_ECCSZ(regval) (BITS(17,19) & ((uint32_t)(regval) << 17)) +#define EXMC_ECC_SIZE_256BYTES NPCTL_ECCSZ(0) /* ECC size is 256 bytes */ +#define EXMC_ECC_SIZE_512BYTES NPCTL_ECCSZ(1) /* ECC size is 512 bytes */ +#define EXMC_ECC_SIZE_1024BYTES NPCTL_ECCSZ(2) /* ECC size is 1024 bytes */ +#define EXMC_ECC_SIZE_2048BYTES NPCTL_ECCSZ(3) /* ECC size is 2048 bytes */ +#define EXMC_ECC_SIZE_4096BYTES NPCTL_ECCSZ(4) /* ECC size is 4096 bytes */ +#define EXMC_ECC_SIZE_8192BYTES NPCTL_ECCSZ(5) /* ECC size is 8192 bytes */ + +/* ALE to RE delay */ +#define NPCTL_ATR(regval) (BITS(13,16) & ((uint32_t)(regval) << 13)) +#define EXMC_ALE_RE_DELAY_1_HCLK NPCTL_ATR(0) /* ALE to RE delay = 1*HCLK */ +#define EXMC_ALE_RE_DELAY_2_HCLK NPCTL_ATR(1) /* ALE to RE delay = 2*HCLK */ +#define EXMC_ALE_RE_DELAY_3_HCLK NPCTL_ATR(2) /* ALE to RE delay = 3*HCLK */ +#define EXMC_ALE_RE_DELAY_4_HCLK NPCTL_ATR(3) /* ALE to RE delay = 4*HCLK */ +#define EXMC_ALE_RE_DELAY_5_HCLK NPCTL_ATR(4) /* ALE to RE delay = 5*HCLK */ +#define EXMC_ALE_RE_DELAY_6_HCLK NPCTL_ATR(5) /* ALE to RE delay = 6*HCLK */ +#define EXMC_ALE_RE_DELAY_7_HCLK NPCTL_ATR(6) /* ALE to RE delay = 7*HCLK */ +#define EXMC_ALE_RE_DELAY_8_HCLK NPCTL_ATR(7) /* ALE to RE delay = 8*HCLK */ +#define EXMC_ALE_RE_DELAY_9_HCLK NPCTL_ATR(8) /* ALE to RE delay = 9*HCLK */ +#define EXMC_ALE_RE_DELAY_10_HCLK NPCTL_ATR(9) /* ALE to RE delay = 10*HCLK */ +#define EXMC_ALE_RE_DELAY_11_HCLK NPCTL_ATR(10) /* ALE to RE delay = 11*HCLK */ +#define EXMC_ALE_RE_DELAY_12_HCLK NPCTL_ATR(11) /* ALE to RE delay = 12*HCLK */ +#define EXMC_ALE_RE_DELAY_13_HCLK NPCTL_ATR(12) /* ALE to RE delay = 13*HCLK */ +#define EXMC_ALE_RE_DELAY_14_HCLK NPCTL_ATR(13) /* ALE to RE delay = 14*HCLK */ +#define EXMC_ALE_RE_DELAY_15_HCLK NPCTL_ATR(14) /* ALE to RE delay = 15*HCLK */ +#define EXMC_ALE_RE_DELAY_16_HCLK NPCTL_ATR(15) /* ALE to RE delay = 16*HCLK */ + +/* CLE to RE delay */ +#define NPCTL_CTR(regval) (BITS(9,12) & ((uint32_t)(regval) << 9)) +#define EXMC_CLE_RE_DELAY_1_HCLK NPCTL_CTR(0) /* CLE to RE delay = 1*HCLK */ +#define EXMC_CLE_RE_DELAY_2_HCLK NPCTL_CTR(1) /* CLE to RE delay = 2*HCLK */ +#define EXMC_CLE_RE_DELAY_3_HCLK NPCTL_CTR(2) /* CLE to RE delay = 3*HCLK */ +#define EXMC_CLE_RE_DELAY_4_HCLK NPCTL_CTR(3) /* CLE to RE delay = 4*HCLK */ +#define EXMC_CLE_RE_DELAY_5_HCLK NPCTL_CTR(4) /* CLE to RE delay = 5*HCLK */ +#define EXMC_CLE_RE_DELAY_6_HCLK NPCTL_CTR(5) /* CLE to RE delay = 6*HCLK */ +#define EXMC_CLE_RE_DELAY_7_HCLK NPCTL_CTR(6) /* CLE to RE delay = 7*HCLK */ +#define EXMC_CLE_RE_DELAY_8_HCLK NPCTL_CTR(7) /* CLE to RE delay = 8*HCLK */ +#define EXMC_CLE_RE_DELAY_9_HCLK NPCTL_CTR(8) /* CLE to RE delay = 9*HCLK */ +#define EXMC_CLE_RE_DELAY_10_HCLK NPCTL_CTR(9) /* CLE to RE delay = 10*HCLK */ +#define EXMC_CLE_RE_DELAY_11_HCLK NPCTL_CTR(10) /* CLE to RE delay = 11*HCLK */ +#define EXMC_CLE_RE_DELAY_12_HCLK NPCTL_CTR(11) /* CLE to RE delay = 12*HCLK */ +#define EXMC_CLE_RE_DELAY_13_HCLK NPCTL_CTR(12) /* CLE to RE delay = 13*HCLK */ +#define EXMC_CLE_RE_DELAY_14_HCLK NPCTL_CTR(13) /* CLE to RE delay = 14*HCLK */ +#define EXMC_CLE_RE_DELAY_15_HCLK NPCTL_CTR(14) /* CLE to RE delay = 15*HCLK */ +#define EXMC_CLE_RE_DELAY_16_HCLK NPCTL_CTR(15) /* CLE to RE delay = 16*HCLK */ + +/* NAND bank memory data bus width */ +#define NPCTL_NDW(regval) (BITS(4,5) & ((uint32_t)(regval) << 4)) +#define EXMC_NAND_DATABUS_WIDTH_8B NPCTL_NDW(0) /*!< NAND data width is 8 bits */ +#define EXMC_NAND_DATABUS_WIDTH_16B NPCTL_NDW(1) /*!< NAND data width is 16 bits */ + +/* SDRAM pipeline delay */ +#define SDCTL_PIPED(regval) (BITS(13,14) & ((uint32_t)(regval) << 13)) +#define EXMC_PIPELINE_DELAY_0_HCLK SDCTL_PIPED(0) /*!< 0 HCLK clock cycle delay */ +#define EXMC_PIPELINE_DELAY_1_HCLK SDCTL_PIPED(1) /*!< 1 HCLK clock cycle delay */ +#define EXMC_PIPELINE_DELAY_2_HCLK SDCTL_PIPED(2) /*!< 2 HCLK clock cycle delay */ + +/* SDRAM clock configuration */ +#define SDCTL_SDCLK(regval) (BITS(10,11) & ((uint32_t)(regval) << 10)) +#define EXMC_SDCLK_DISABLE SDCTL_SDCLK(0) /*!< SDCLK memory clock disabled */ +#define EXMC_SDCLK_PERIODS_2_HCLK SDCTL_SDCLK(2) /*!< SDCLK memory period = 2*HCLK */ +#define EXMC_SDCLK_PERIODS_3_HCLK SDCTL_SDCLK(3) /*!< SDCLK memory period = 3*HCLK */ + +/* CAS latency */ +#define SDCTL_CL(regval) (BITS(7,8) & ((uint32_t)(regval) << 7)) +#define EXMC_CAS_LATENCY_1_SDCLK SDCTL_CL(1) /*!< CAS latency is 1 memory clock cycle */ +#define EXMC_CAS_LATENCY_2_SDCLK SDCTL_CL(2) /*!< CAS latency is 2 memory clock cycle */ +#define EXMC_CAS_LATENCY_3_SDCLK SDCTL_CL(3) /*!< CAS latency is 3 memory clock cycle */ + +/* SDRAM data bus width */ +#define SDCTL_SDW(regval) (BITS(4,5) & ((uint32_t)(regval) << 4)) +#define EXMC_SDRAM_DATABUS_WIDTH_8B SDCTL_SDW(0) /*!< SDRAM data width 8 bits */ +#define EXMC_SDRAM_DATABUS_WIDTH_16B SDCTL_SDW(1) /*!< SDRAM data width 16 bits */ +#define EXMC_SDRAM_DATABUS_WIDTH_32B SDCTL_SDW(2) /*!< SDRAM data width 32 bits */ + +/* SDRAM row address bit width */ +#define SDCTL_RAW(regval) (BITS(2,3) & ((uint32_t)(regval) << 2)) +#define EXMC_SDRAM_ROW_ADDRESS_11 SDCTL_RAW(0) /*!< row address bit width is 11 bits */ +#define EXMC_SDRAM_ROW_ADDRESS_12 SDCTL_RAW(1) /*!< row address bit width is 12 bits */ +#define EXMC_SDRAM_ROW_ADDRESS_13 SDCTL_RAW(2) /*!< row address bit width is 13 bits */ + +/* SDRAM column address bit width */ +#define SDCTL_CAW(regval) (BITS(0,1) & ((uint32_t)(regval) << 0)) +#define EXMC_SDRAM_COW_ADDRESS_8 SDCTL_CAW(0) /*!< column address bit width is 8 bits */ +#define EXMC_SDRAM_COW_ADDRESS_9 SDCTL_CAW(1) /*!< column address bit width is 9 bits */ +#define EXMC_SDRAM_COW_ADDRESS_10 SDCTL_CAW(2) /*!< column address bit width is 10 bits */ +#define EXMC_SDRAM_COW_ADDRESS_11 SDCTL_CAW(3) /*!< column address bit width is 11 bits */ + +/* SDRAM number of successive auto-refresh */ +#define SDCMD_NARF(regval) (BITS(5,8) & ((uint32_t)(regval) << 5)) +#define EXMC_SDRAM_AUTO_REFLESH_1_SDCLK SDCMD_NARF(0) /*!< 1 auto-refresh cycle */ +#define EXMC_SDRAM_AUTO_REFLESH_2_SDCLK SDCMD_NARF(1) /*!< 2 auto-refresh cycles */ +#define EXMC_SDRAM_AUTO_REFLESH_3_SDCLK SDCMD_NARF(2) /*!< 3 auto-refresh cycles */ +#define EXMC_SDRAM_AUTO_REFLESH_4_SDCLK SDCMD_NARF(3) /*!< 4 auto-refresh cycles */ +#define EXMC_SDRAM_AUTO_REFLESH_5_SDCLK SDCMD_NARF(4) /*!< 5 auto-refresh cycles */ +#define EXMC_SDRAM_AUTO_REFLESH_6_SDCLK SDCMD_NARF(5) /*!< 6 auto-refresh cycles */ +#define EXMC_SDRAM_AUTO_REFLESH_7_SDCLK SDCMD_NARF(6) /*!< 7 auto-refresh cycles */ +#define EXMC_SDRAM_AUTO_REFLESH_8_SDCLK SDCMD_NARF(7) /*!< 8 auto-refresh cycles */ +#define EXMC_SDRAM_AUTO_REFLESH_9_SDCLK SDCMD_NARF(8) /*!< 9 auto-refresh cycles */ +#define EXMC_SDRAM_AUTO_REFLESH_10_SDCLK SDCMD_NARF(9) /*!< 10 auto-refresh cycles */ +#define EXMC_SDRAM_AUTO_REFLESH_11_SDCLK SDCMD_NARF(10) /*!< 11 auto-refresh cycles */ +#define EXMC_SDRAM_AUTO_REFLESH_12_SDCLK SDCMD_NARF(11) /*!< 12 auto-refresh cycles */ +#define EXMC_SDRAM_AUTO_REFLESH_13_SDCLK SDCMD_NARF(12) /*!< 13 auto-refresh cycles */ +#define EXMC_SDRAM_AUTO_REFLESH_14_SDCLK SDCMD_NARF(13) /*!< 14 auto-refresh cycles */ +#define EXMC_SDRAM_AUTO_REFLESH_15_SDCLK SDCMD_NARF(14) /*!< 15 auto-refresh cycles */ + +/* SDRAM command select */ +#define SDCMD_CMD(regval) (BITS(0,2) & ((uint32_t)(regval) << 0)) +#define EXMC_SDRAM_NORMAL_OPERATION SDCMD_CMD(0) /*!< normal operation command */ +#define EXMC_SDRAM_CLOCK_ENABLE SDCMD_CMD(1) /*!< clock enable command */ +#define EXMC_SDRAM_PRECHARGE_ALL SDCMD_CMD(2) /*!< precharge all command */ +#define EXMC_SDRAM_AUTO_REFRESH SDCMD_CMD(3) /*!< auto-refresh command */ +#define EXMC_SDRAM_LOAD_MODE_REGISTER SDCMD_CMD(4) /*!< load mode register command */ +#define EXMC_SDRAM_SELF_REFRESH SDCMD_CMD(5) /*!< self-refresh command */ +#define EXMC_SDRAM_POWERDOWN_ENTRY SDCMD_CMD(6) /*!< power-down entry command */ + +/* SDRAM the delayed sample clock of read data */ +#define SDRSCTL_SDSC(regval) (BITS(4,7) & ((uint32_t)(regval) << 4)) +#define EXMC_SDRAM_0_DELAY_CELL SDRSCTL_SDSC(0) /*!< select the clock after 0 delay cell */ +#define EXMC_SDRAM_1_DELAY_CELL SDRSCTL_SDSC(1) /*!< select the clock after 1 delay cell */ +#define EXMC_SDRAM_2_DELAY_CELL SDRSCTL_SDSC(2) /*!< select the clock after 2 delay cell */ +#define EXMC_SDRAM_3_DELAY_CELL SDRSCTL_SDSC(3) /*!< select the clock after 3 delay cell */ +#define EXMC_SDRAM_4_DELAY_CELL SDRSCTL_SDSC(4) /*!< select the clock after 4 delay cell */ +#define EXMC_SDRAM_5_DELAY_CELL SDRSCTL_SDSC(5) /*!< select the clock after 5 delay cell */ +#define EXMC_SDRAM_6_DELAY_CELL SDRSCTL_SDSC(6) /*!< select the clock after 6 delay cell */ +#define EXMC_SDRAM_7_DELAY_CELL SDRSCTL_SDSC(7) /*!< select the clock after 7 delay cell */ +#define EXMC_SDRAM_8_DELAY_CELL SDRSCTL_SDSC(8) /*!< select the clock after 8 delay cell */ +#define EXMC_SDRAM_9_DELAY_CELL SDRSCTL_SDSC(9) /*!< select the clock after 9 delay cell */ +#define EXMC_SDRAM_10_DELAY_CELL SDRSCTL_SDSC(10) /*!< select the clock after 10 delay cell */ +#define EXMC_SDRAM_11_DELAY_CELL SDRSCTL_SDSC(11) /*!< select the clock after 11 delay cell */ +#define EXMC_SDRAM_12_DELAY_CELL SDRSCTL_SDSC(12) /*!< select the clock after 12 delay cell */ +#define EXMC_SDRAM_13_DELAY_CELL SDRSCTL_SDSC(13) /*!< select the clock after 13 delay cell */ +#define EXMC_SDRAM_14_DELAY_CELL SDRSCTL_SDSC(14) /*!< select the clock after 14 delay cell */ +#define EXMC_SDRAM_15_DELAY_CELL SDRSCTL_SDSC(15) /*!< select the clock after 15 delay cell */ + +/* SPI PSRAM ID length */ +#define SINIT_IDL(regval) (BITS(29,30) & ((uint32_t)(regval) << 29)) +#define EXMC_SQPIPSRAM_ID_LENGTH_64B SINIT_IDL(0) /*!< SPI PSRAM ID length is 64 bits */ +#define EXMC_SQPIPSRAM_ID_LENGTH_32B SINIT_IDL(1) /*!< SPI PSRAM ID length is 32 bits */ +#define EXMC_SQPIPSRAM_ID_LENGTH_16B SINIT_IDL(2) /*!< SPI PSRAM ID length is 16 bits */ +#define EXMC_SQPIPSRAM_ID_LENGTH_8B SINIT_IDL(3) /*!< SPI PSRAM ID length is 8 bits */ + +/* SPI PSRAM bit number of address phase */ +#define SINIT_ADRBIT(regval) (BITS(24,28) & ((uint32_t)(regval) << 24)) +#define EXMC_SQPIPSRAM_ADDR_LENGTH_1B SINIT_ADRBIT(1) /*!< SPI PSRAM address is 1 bit */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_2B SINIT_ADRBIT(2) /*!< SPI PSRAM address is 2 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_3B SINIT_ADRBIT(3) /*!< SPI PSRAM address is 3 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_4B SINIT_ADRBIT(4) /*!< SPI PSRAM address is 4 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_5B SINIT_ADRBIT(5) /*!< SPI PSRAM address is 5 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_6B SINIT_ADRBIT(6) /*!< SPI PSRAM address is 6 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_7B SINIT_ADRBIT(7) /*!< SPI PSRAM address is 7 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_8B SINIT_ADRBIT(8) /*!< SPI PSRAM address is 8 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_9B SINIT_ADRBIT(9) /*!< SPI PSRAM address is 9 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_10B SINIT_ADRBIT(10) /*!< SPI PSRAM address is 10 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_11B SINIT_ADRBIT(11) /*!< SPI PSRAM address is 11 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_12B SINIT_ADRBIT(12) /*!< SPI PSRAM address is 12 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_13B SINIT_ADRBIT(13) /*!< SPI PSRAM address is 13 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_14B SINIT_ADRBIT(14) /*!< SPI PSRAM address is 14 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_15B SINIT_ADRBIT(15) /*!< SPI PSRAM address is 15 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_16B SINIT_ADRBIT(16) /*!< SPI PSRAM address is 16 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_17B SINIT_ADRBIT(17) /*!< SPI PSRAM address is 17 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_18B SINIT_ADRBIT(18) /*!< SPI PSRAM address is 18 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_19B SINIT_ADRBIT(19) /*!< SPI PSRAM address is 19 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_20B SINIT_ADRBIT(20) /*!< SPI PSRAM address is 20 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_21B SINIT_ADRBIT(21) /*!< SPI PSRAM address is 21 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_22B SINIT_ADRBIT(22) /*!< SPI PSRAM address is 22 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_23B SINIT_ADRBIT(23) /*!< SPI PSRAM address is 23 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_24B SINIT_ADRBIT(24) /*!< SPI PSRAM address is 24 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_25B SINIT_ADRBIT(25) /*!< SPI PSRAM address is 25 bits */ +#define EXMC_SQPIPSRAM_ADDR_LENGTH_26B SINIT_ADRBIT(26) /*!< SPI PSRAM address is 26 bits */ + +/* SPI PSRAM bit number of command phase */ +#define SINIT_CMDBIT(regval) (BITS(16,17) & ((uint32_t)(regval) << 16)) +#define EXMC_SQPIPSRAM_COMMAND_LENGTH_4B SINIT_CMDBIT(0) /*!< SPI PSRAM command is 4 bits */ +#define EXMC_SQPIPSRAM_COMMAND_LENGTH_8B SINIT_CMDBIT(1) /*!< SPI PSRAM command is 8 bits */ +#define EXMC_SQPIPSRAM_COMMAND_LENGTH_16B SINIT_CMDBIT(2) /*!< SPI PSRAM command is 16 bits */ + +/* SPI PSRAM read command mode */ +#define SRCMD_RMODE(regval) (BITS(20,21) & ((uint32_t)(regval) << 20)) +#define EXMC_SQPIPSRAM_READ_MODE_DISABLE SRCMD_RMODE(0) /*!< not SPI mode */ +#define EXMC_SQPIPSRAM_READ_MODE_SPI SRCMD_RMODE(1) /*!< SPI mode */ +#define EXMC_SQPIPSRAM_READ_MODE_SQPI SRCMD_RMODE(2) /*!< SQPI mode */ +#define EXMC_SQPIPSRAM_READ_MODE_QPI SRCMD_RMODE(3) /*!< QPI mode */ + +/* SPI PSRAM write command mode */ +#define SRCMD_WMODE(regval) (BITS(20,21) & ((uint32_t)(regval) << 20)) +#define EXMC_SQPIPSRAM_WRITE_MODE_DISABLE SRCMD_WMODE(0) /*!< not SPI mode */ +#define EXMC_SQPIPSRAM_WRITE_MODE_SPI SRCMD_WMODE(1) /*!< SPI mode */ +#define EXMC_SQPIPSRAM_WRITE_MODE_SQPI SRCMD_WMODE(2) /*!< SQPI mode */ +#define EXMC_SQPIPSRAM_WRITE_MODE_QPI SRCMD_WMODE(3) /*!< QPI mode */ + +/* EXMC NOR/SRAM bank region definition */ +#define EXMC_BANK0_NORSRAM_REGION0 ((uint32_t)0x00000000U) /*!< bank0 NOR/SRAM region0 */ +#define EXMC_BANK0_NORSRAM_REGION1 ((uint32_t)0x00000001U) /*!< bank0 NOR/SRAM region1 */ +#define EXMC_BANK0_NORSRAM_REGION2 ((uint32_t)0x00000002U) /*!< bank0 NOR/SRAM region2 */ +#define EXMC_BANK0_NORSRAM_REGION3 ((uint32_t)0x00000003U) /*!< bank0 NOR/SRAM region3 */ + +/* EXMC consecutive clock */ +#define EXMC_CLOCK_SYN_MODE ((uint32_t)0x00000000U) /*!< EXMC_CLK is generated only during synchronous access */ +#define EXMC_CLOCK_UNCONDITIONALLY EXMC_SNCTL_CCK /*!< EXMC_CLK is generated unconditionally */ + +/* EXMC NOR/SRAM write mode */ +#define EXMC_ASYN_WRITE ((uint32_t)0x00000000U) /*!< asynchronous write mode */ +#define EXMC_SYN_WRITE EXMC_SNCTL_SYNCWR /*!< synchronous write mode */ + +/* EXMC NWAIT signal configuration */ +#define EXMC_NWAIT_CONFIG_BEFORE ((uint32_t)0x00000000U) /*!< NWAIT signal is active one data cycle before wait state */ +#define EXMC_NWAIT_CONFIG_DURING EXMC_SNCTL_NRWTCFG /*!< NWAIT signal is active during wait state */ + +/* EXMC NWAIT signal polarity configuration */ +#define EXMC_NWAIT_POLARITY_LOW ((uint32_t)0x00000000U) /*!< low level is active of NWAIT */ +#define EXMC_NWAIT_POLARITY_HIGH EXMC_SNCTL_NRWTPOL /*!< high level is active of NWAIT */ + +/* EXMC NAND/PC card bank definition */ +#define EXMC_BANK1_NAND ((uint32_t)0x00000001U) /*!< NAND flash bank1 */ +#define EXMC_BANK2_NAND ((uint32_t)0x00000002U) /*!< NAND flash bank2 */ +#define EXMC_BANK3_PCCARD ((uint32_t)0x00000003U) /*!< PC card bank3 */ + +/* EXMC SDRAM bank definition */ +#define EXMC_SDRAM_DEVICE0 ((uint32_t)0x00000004U) /*!< SDRAM device0 */ +#define EXMC_SDRAM_DEVICE1 ((uint32_t)0x00000005U) /*!< SDRAM device1 */ + +/* EXMC SDRAM internal banks */ +#define EXMC_SDRAM_2_INTER_BANK ((uint32_t)0x00000000U) /*!< 2 internal banks */ +#define EXMC_SDRAM_4_INTER_BANK EXMC_SDCTL_NBK /*!< 4 internal banks */ + +/* SDRAM device0 select */ +#define EXMC_SDRAM_DEVICE0_UNSELECT ((uint32_t)0x00000000U) /*!< SDRAM device0 unselect */ +#define EXMC_SDRAM_DEVICE0_SELECT EXMC_SDCMD_DS0 /*!< SDRAM device0 select */ + +/* SDRAM device1 select */ +#define EXMC_SDRAM_DEVICE1_UNSELECT ((uint32_t)0x00000000U) /*!< SDRAM device1 unselect */ +#define EXMC_SDRAM_DEVICE1_SELECT EXMC_SDCMD_DS1 /*!< SDRAM device1 select */ + +/* SDRAM device status */ +#define EXMC_SDRAM_DEVICE_NORMAL ((uint32_t)0x00000000U) /*!< normal status */ +#define EXMC_SDRAM_DEVICE_SELF_REFRESH ((uint32_t)0x00000001U) /*!< self refresh status */ +#define EXMC_SDRAM_DEVICE_POWER_DOWN ((uint32_t)0x00000002U) /*!< power down status */ + +/* sample cycle of read data */ +#define EXMC_SDRAM_READSAMPLE_0_EXTRAHCLK ((uint32_t)0x00000000U) /*!< add 0 extra HCLK cycle to the read data sample clock besides the delay chain */ +#define EXMC_SDRAM_READSAMPLE_1_EXTRAHCLK EXMC_SDRSCTL_SSCR /*!< add 1 extra HCLK cycle to the read data sample clock besides the delay chain */ + +/* read data sample polarity */ +#define EXMC_SQPIPSRAM_SAMPLE_RISING_EDGE ((uint32_t)0x00000000U) /*!< sample data at rising edge */ +#define EXMC_SQPIPSRAM_SAMPLE_FALLING_EDGE EXMC_SINIT_POL /*!< sample data at falling edge */ + +/* SQPI SRAM command flag */ +#define EXMC_SEND_COMMAND_FLAG_RDID EXMC_SRCMD_RDID /*!< EXMC_SRCMD_RDID flag bit */ +#define EXMC_SEND_COMMAND_FLAG_SC EXMC_SWCMD_SC /*!< EXMC_SWCMD_SC flag bit */ + +/* EXMC flag bits */ +#define EXMC_NAND_PCCARD_FLAG_RISE EXMC_NPINTEN_INTRS /*!< interrupt rising edge status */ +#define EXMC_NAND_PCCARD_FLAG_LEVEL EXMC_NPINTEN_INTHS /*!< interrupt high-level status */ +#define EXMC_NAND_PCCARD_FLAG_FALL EXMC_NPINTEN_INTFS /*!< interrupt falling edge status */ +#define EXMC_NAND_PCCARD_FLAG_FIFOE EXMC_NPINTEN_FFEPT /*!< FIFO empty flag */ +#define EXMC_SDRAM_FLAG_REFRESH EXMC_SDSDAT_REIF /*!< refresh error interrupt flag */ +#define EXMC_SDRAM_FLAG_NREADY EXMC_SDSDAT_NRDY /*!< not ready status */ + +/* EXMC interrupt flag bits */ +#define EXMC_NAND_PCCARD_INT_FLAG_RISE EXMC_NPINTEN_INTREN /*!< rising edge interrupt and flag */ +#define EXMC_NAND_PCCARD_INT_FLAG_LEVEL EXMC_NPINTEN_INTHEN /*!< high-level interrupt and flag */ +#define EXMC_NAND_PCCARD_INT_FLAG_FALL EXMC_NPINTEN_INTFEN /*!< falling edge interrupt and flag */ +#define EXMC_SDRAM_INT_FLAG_REFRESH EXMC_SDARI_REIE /*!< refresh error interrupt and flag */ + +/* function declarations */ +/* initialization functions */ +/* NOR/SRAM */ +/* deinitialize EXMC NOR/SRAM region */ +void exmc_norsram_deinit(uint32_t exmc_norsram_region); +/* initialize exmc_norsram_parameter_struct with the default values */ +void exmc_norsram_struct_para_init(exmc_norsram_parameter_struct* exmc_norsram_init_struct); +/* initialize EXMC NOR/SRAM region */ +void exmc_norsram_init(exmc_norsram_parameter_struct* exmc_norsram_init_struct); +/* enable EXMC NOR/SRAM region */ +void exmc_norsram_enable(uint32_t exmc_norsram_region); +/* disable EXMC NOR/SRAM region */ +void exmc_norsram_disable(uint32_t exmc_norsram_region); +/* NAND */ +/* deinitialize EXMC NAND bank */ +void exmc_nand_deinit(uint32_t exmc_nand_bank); +/* initialize exmc_norsram_parameter_struct with the default values */ +void exmc_nand_struct_para_init(exmc_nand_parameter_struct* exmc_nand_init_struct); +/* initialize EXMC NAND bank */ +void exmc_nand_init(exmc_nand_parameter_struct* exmc_nand_init_struct); +/* enable EXMC NAND bank */ +void exmc_nand_enable(uint32_t exmc_nand_bank); +/* disable EXMC NAND bank */ +void exmc_nand_disable(uint32_t exmc_nand_bank); +/* PC card */ +/* deinitialize EXMC PC card bank */ +void exmc_pccard_deinit(void); +/* initialize exmc_pccard_parameter_struct with the default values */ +void exmc_pccard_struct_para_init(exmc_pccard_parameter_struct* exmc_pccard_init_struct); +/* initialize EXMC PC card bank */ +void exmc_pccard_init(exmc_pccard_parameter_struct* exmc_pccard_init_struct); +/* enable EXMC PC card bank */ +void exmc_pccard_enable(void); +/* disable EXMC PC card bank */ +void exmc_pccard_disable(void); +/* SDRAM */ +/* deinitialize EXMC SDRAM device */ +void exmc_sdram_deinit(uint32_t exmc_sdram_device); +/* initialize exmc_sdram_parameter_struct with the default values */ +void exmc_sdram_struct_para_init(exmc_sdram_parameter_struct* exmc_sdram_init_struct); +/* initialize EXMC SDRAM device */ +void exmc_sdram_init(exmc_sdram_parameter_struct* exmc_sdram_init_struct); +/* SQPIPSRAM */ +/* deinitialize EXMC SQPIPSRAM */ +void exmc_sqpipsram_deinit(void); +/* initialize exmc_sqpipsram_parameter_struct with the default values */ +void exmc_sqpipsram_struct_para_init(exmc_sqpipsram_parameter_struct* exmc_sqpipsram_init_struct); +/* initialize EXMC SQPIPSRAM */ +void exmc_sqpipsram_init(exmc_sqpipsram_parameter_struct* exmc_sqpipsram_init_struct); + +/* function configuration */ +/* NOR/SRAM */ +/* configure consecutive clock */ +void exmc_norsram_consecutive_clock_config(uint32_t clock_mode); +/* configure CRAM page size */ +void exmc_norsram_page_size_config(uint32_t exmc_norsram_region, uint32_t page_size); +/* NAND */ +/* enable or disable the EXMC NAND ECC function */ +void exmc_nand_ecc_config(uint32_t exmc_nand_bank, ControlStatus newvalue); +/* get the EXMC ECC value */ +uint32_t exmc_ecc_get(uint32_t exmc_nand_bank); +/* SDRAM */ +/* enable or disable read sample */ +void exmc_sdram_readsample_enable(ControlStatus newvalue); +/* configure the delayed sample clock of read data */ +void exmc_sdram_readsample_config(uint32_t delay_cell, uint32_t extra_hclk); +/* configure the SDRAM memory command */ +void exmc_sdram_command_config(exmc_sdram_command_parameter_struct* exmc_sdram_command_init_struct); +/* set auto-refresh interval */ +void exmc_sdram_refresh_count_set(uint32_t exmc_count); +/* set the number of successive auto-refresh command */ +void exmc_sdram_autorefresh_number_set(uint32_t exmc_number); +/* config the write protection function */ +void exmc_sdram_write_protection_config(uint32_t exmc_sdram_device, ControlStatus newvalue); +/* get the status of SDRAM device0 or device1 */ +uint32_t exmc_sdram_bankstatus_get(uint32_t exmc_sdram_device); +/* SQPIPSRAM */ +/* set the read command */ +void exmc_sqpipsram_read_command_set(uint32_t read_command_mode,uint32_t read_wait_cycle,uint32_t read_command_code); +/* set the write command */ +void exmc_sqpipsram_write_command_set(uint32_t write_command_mode,uint32_t write_wait_cycle,uint32_t write_command_code); +/* send SPI read ID command */ +void exmc_sqpipsram_read_id_command_send(void); +/* send SPI special command which does not have address and data phase */ +void exmc_sqpipsram_write_cmd_send(void); +/* get the EXMC SPI ID low data */ +uint32_t exmc_sqpipsram_low_id_get(void); +/* get the EXMC SPI ID high data */ +uint32_t exmc_sqpipsram_high_id_get(void); +/* get the bit value of EXMC send write command bit or read ID command */ +FlagStatus exmc_sqpipsram_send_command_state_get(uint32_t send_command_flag); + +/* interrupt & flag functions */ +/* enable EXMC interrupt */ +void exmc_interrupt_enable(uint32_t exmc_bank,uint32_t interrupt); +/* disable EXMC interrupt */ +void exmc_interrupt_disable(uint32_t exmc_bank,uint32_t interrupt); +/* get EXMC flag status */ +FlagStatus exmc_flag_get(uint32_t exmc_bank,uint32_t flag); +/* clear EXMC flag status */ +void exmc_flag_clear(uint32_t exmc_bank,uint32_t flag); +/* get EXMC interrupt flag */ +FlagStatus exmc_interrupt_flag_get(uint32_t exmc_bank,uint32_t interrupt); +/* clear EXMC interrupt flag */ +void exmc_interrupt_flag_clear(uint32_t exmc_bank,uint32_t interrupt); + +#endif /* GD32F4XX_EXMC_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_exti.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_exti.h new file mode 100644 index 0000000000..d0f73f4099 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_exti.h @@ -0,0 +1,277 @@ +/*! + \file gd32f4xx_exti.h + \brief definitions for the EXTI + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.1, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_EXTI_H +#define GD32F4XX_EXTI_H + +#include "gd32f4xx.h" + +/* EXTI definitions */ +#define EXTI EXTI_BASE + +/* registers definitions */ +#define EXTI_INTEN REG32(EXTI + 0x00U) /*!< interrupt enable register */ +#define EXTI_EVEN REG32(EXTI + 0x04U) /*!< event enable register */ +#define EXTI_RTEN REG32(EXTI + 0x08U) /*!< rising edge trigger enable register */ +#define EXTI_FTEN REG32(EXTI + 0x0CU) /*!< falling trigger enable register */ +#define EXTI_SWIEV REG32(EXTI + 0x10U) /*!< software interrupt event register */ +#define EXTI_PD REG32(EXTI + 0x14U) /*!< pending register */ + +/* bits definitions */ +/* EXTI_INTEN */ +#define EXTI_INTEN_INTEN0 BIT(0) /*!< interrupt from line 0 */ +#define EXTI_INTEN_INTEN1 BIT(1) /*!< interrupt from line 1 */ +#define EXTI_INTEN_INTEN2 BIT(2) /*!< interrupt from line 2 */ +#define EXTI_INTEN_INTEN3 BIT(3) /*!< interrupt from line 3 */ +#define EXTI_INTEN_INTEN4 BIT(4) /*!< interrupt from line 4 */ +#define EXTI_INTEN_INTEN5 BIT(5) /*!< interrupt from line 5 */ +#define EXTI_INTEN_INTEN6 BIT(6) /*!< interrupt from line 6 */ +#define EXTI_INTEN_INTEN7 BIT(7) /*!< interrupt from line 7 */ +#define EXTI_INTEN_INTEN8 BIT(8) /*!< interrupt from line 8 */ +#define EXTI_INTEN_INTEN9 BIT(9) /*!< interrupt from line 9 */ +#define EXTI_INTEN_INTEN10 BIT(10) /*!< interrupt from line 10 */ +#define EXTI_INTEN_INTEN11 BIT(11) /*!< interrupt from line 11 */ +#define EXTI_INTEN_INTEN12 BIT(12) /*!< interrupt from line 12 */ +#define EXTI_INTEN_INTEN13 BIT(13) /*!< interrupt from line 13 */ +#define EXTI_INTEN_INTEN14 BIT(14) /*!< interrupt from line 14 */ +#define EXTI_INTEN_INTEN15 BIT(15) /*!< interrupt from line 15 */ +#define EXTI_INTEN_INTEN16 BIT(16) /*!< interrupt from line 16 */ +#define EXTI_INTEN_INTEN17 BIT(17) /*!< interrupt from line 17 */ +#define EXTI_INTEN_INTEN18 BIT(18) /*!< interrupt from line 18 */ +#define EXTI_INTEN_INTEN19 BIT(19) /*!< interrupt from line 19 */ +#define EXTI_INTEN_INTEN20 BIT(20) /*!< interrupt from line 20 */ +#define EXTI_INTEN_INTEN21 BIT(21) /*!< interrupt from line 21 */ +#define EXTI_INTEN_INTEN22 BIT(22) /*!< interrupt from line 22 */ + +/* EXTI_EVEN */ +#define EXTI_EVEN_EVEN0 BIT(0) /*!< event from line 0 */ +#define EXTI_EVEN_EVEN1 BIT(1) /*!< event from line 1 */ +#define EXTI_EVEN_EVEN2 BIT(2) /*!< event from line 2 */ +#define EXTI_EVEN_EVEN3 BIT(3) /*!< event from line 3 */ +#define EXTI_EVEN_EVEN4 BIT(4) /*!< event from line 4 */ +#define EXTI_EVEN_EVEN5 BIT(5) /*!< event from line 5 */ +#define EXTI_EVEN_EVEN6 BIT(6) /*!< event from line 6 */ +#define EXTI_EVEN_EVEN7 BIT(7) /*!< event from line 7 */ +#define EXTI_EVEN_EVEN8 BIT(8) /*!< event from line 8 */ +#define EXTI_EVEN_EVEN9 BIT(9) /*!< event from line 9 */ +#define EXTI_EVEN_EVEN10 BIT(10) /*!< event from line 10 */ +#define EXTI_EVEN_EVEN11 BIT(11) /*!< event from line 11 */ +#define EXTI_EVEN_EVEN12 BIT(12) /*!< event from line 12 */ +#define EXTI_EVEN_EVEN13 BIT(13) /*!< event from line 13 */ +#define EXTI_EVEN_EVEN14 BIT(14) /*!< event from line 14 */ +#define EXTI_EVEN_EVEN15 BIT(15) /*!< event from line 15 */ +#define EXTI_EVEN_EVEN16 BIT(16) /*!< event from line 16 */ +#define EXTI_EVEN_EVEN17 BIT(17) /*!< event from line 17 */ +#define EXTI_EVEN_EVEN18 BIT(18) /*!< event from line 18 */ +#define EXTI_EVEN_EVEN19 BIT(19) /*!< event from line 19 */ +#define EXTI_EVEN_EVEN20 BIT(20) /*!< event from line 20 */ +#define EXTI_EVEN_EVEN21 BIT(21) /*!< event from line 21 */ +#define EXTI_EVEN_EVEN22 BIT(22) /*!< event from line 22 */ + +/* EXTI_RTEN */ +#define EXTI_RTEN_RTEN0 BIT(0) /*!< rising edge from line 0 */ +#define EXTI_RTEN_RTEN1 BIT(1) /*!< rising edge from line 1 */ +#define EXTI_RTEN_RTEN2 BIT(2) /*!< rising edge from line 2 */ +#define EXTI_RTEN_RTEN3 BIT(3) /*!< rising edge from line 3 */ +#define EXTI_RTEN_RTEN4 BIT(4) /*!< rising edge from line 4 */ +#define EXTI_RTEN_RTEN5 BIT(5) /*!< rising edge from line 5 */ +#define EXTI_RTEN_RTEN6 BIT(6) /*!< rising edge from line 6 */ +#define EXTI_RTEN_RTEN7 BIT(7) /*!< rising edge from line 7 */ +#define EXTI_RTEN_RTEN8 BIT(8) /*!< rising edge from line 8 */ +#define EXTI_RTEN_RTEN9 BIT(9) /*!< rising edge from line 9 */ +#define EXTI_RTEN_RTEN10 BIT(10) /*!< rising edge from line 10 */ +#define EXTI_RTEN_RTEN11 BIT(11) /*!< rising edge from line 11 */ +#define EXTI_RTEN_RTEN12 BIT(12) /*!< rising edge from line 12 */ +#define EXTI_RTEN_RTEN13 BIT(13) /*!< rising edge from line 13 */ +#define EXTI_RTEN_RTEN14 BIT(14) /*!< rising edge from line 14 */ +#define EXTI_RTEN_RTEN15 BIT(15) /*!< rising edge from line 15 */ +#define EXTI_RTEN_RTEN16 BIT(16) /*!< rising edge from line 16 */ +#define EXTI_RTEN_RTEN17 BIT(17) /*!< rising edge from line 17 */ +#define EXTI_RTEN_RTEN18 BIT(18) /*!< rising edge from line 18 */ +#define EXTI_RTEN_RTEN19 BIT(19) /*!< rising edge from line 19 */ +#define EXTI_RTEN_RTEN20 BIT(20) /*!< rising edge from line 20 */ +#define EXTI_RTEN_RTEN21 BIT(21) /*!< rising edge from line 21 */ +#define EXTI_RTEN_RTEN22 BIT(22) /*!< rising edge from line 22 */ + +/* EXTI_FTEN */ +#define EXTI_FTEN_FTEN0 BIT(0) /*!< falling edge from line 0 */ +#define EXTI_FTEN_FTEN1 BIT(1) /*!< falling edge from line 1 */ +#define EXTI_FTEN_FTEN2 BIT(2) /*!< falling edge from line 2 */ +#define EXTI_FTEN_FTEN3 BIT(3) /*!< falling edge from line 3 */ +#define EXTI_FTEN_FTEN4 BIT(4) /*!< falling edge from line 4 */ +#define EXTI_FTEN_FTEN5 BIT(5) /*!< falling edge from line 5 */ +#define EXTI_FTEN_FTEN6 BIT(6) /*!< falling edge from line 6 */ +#define EXTI_FTEN_FTEN7 BIT(7) /*!< falling edge from line 7 */ +#define EXTI_FTEN_FTEN8 BIT(8) /*!< falling edge from line 8 */ +#define EXTI_FTEN_FTEN9 BIT(9) /*!< falling edge from line 9 */ +#define EXTI_FTEN_FTEN10 BIT(10) /*!< falling edge from line 10 */ +#define EXTI_FTEN_FTEN11 BIT(11) /*!< falling edge from line 11 */ +#define EXTI_FTEN_FTEN12 BIT(12) /*!< falling edge from line 12 */ +#define EXTI_FTEN_FTEN13 BIT(13) /*!< falling edge from line 13 */ +#define EXTI_FTEN_FTEN14 BIT(14) /*!< falling edge from line 14 */ +#define EXTI_FTEN_FTEN15 BIT(15) /*!< falling edge from line 15 */ +#define EXTI_FTEN_FTEN16 BIT(16) /*!< falling edge from line 16 */ +#define EXTI_FTEN_FTEN17 BIT(17) /*!< falling edge from line 17 */ +#define EXTI_FTEN_FTEN18 BIT(18) /*!< falling edge from line 18 */ +#define EXTI_FTEN_FTEN19 BIT(19) /*!< falling edge from line 19 */ +#define EXTI_FTEN_FTEN20 BIT(20) /*!< falling edge from line 20 */ +#define EXTI_FTEN_FTEN21 BIT(21) /*!< falling edge from line 21 */ +#define EXTI_FTEN_FTEN22 BIT(22) /*!< falling edge from line 22 */ + +/* EXTI_SWIEV */ +#define EXTI_SWIEV_SWIEV0 BIT(0) /*!< software interrupt/event request from line 0 */ +#define EXTI_SWIEV_SWIEV1 BIT(1) /*!< software interrupt/event request from line 1 */ +#define EXTI_SWIEV_SWIEV2 BIT(2) /*!< software interrupt/event request from line 2 */ +#define EXTI_SWIEV_SWIEV3 BIT(3) /*!< software interrupt/event request from line 3 */ +#define EXTI_SWIEV_SWIEV4 BIT(4) /*!< software interrupt/event request from line 4 */ +#define EXTI_SWIEV_SWIEV5 BIT(5) /*!< software interrupt/event request from line 5 */ +#define EXTI_SWIEV_SWIEV6 BIT(6) /*!< software interrupt/event request from line 6 */ +#define EXTI_SWIEV_SWIEV7 BIT(7) /*!< software interrupt/event request from line 7 */ +#define EXTI_SWIEV_SWIEV8 BIT(8) /*!< software interrupt/event request from line 8 */ +#define EXTI_SWIEV_SWIEV9 BIT(9) /*!< software interrupt/event request from line 9 */ +#define EXTI_SWIEV_SWIEV10 BIT(10) /*!< software interrupt/event request from line 10 */ +#define EXTI_SWIEV_SWIEV11 BIT(11) /*!< software interrupt/event request from line 11 */ +#define EXTI_SWIEV_SWIEV12 BIT(12) /*!< software interrupt/event request from line 12 */ +#define EXTI_SWIEV_SWIEV13 BIT(13) /*!< software interrupt/event request from line 13 */ +#define EXTI_SWIEV_SWIEV14 BIT(14) /*!< software interrupt/event request from line 14 */ +#define EXTI_SWIEV_SWIEV15 BIT(15) /*!< software interrupt/event request from line 15 */ +#define EXTI_SWIEV_SWIEV16 BIT(16) /*!< software interrupt/event request from line 16 */ +#define EXTI_SWIEV_SWIEV17 BIT(17) /*!< software interrupt/event request from line 17 */ +#define EXTI_SWIEV_SWIEV18 BIT(18) /*!< software interrupt/event request from line 18 */ +#define EXTI_SWIEV_SWIEV19 BIT(19) /*!< software interrupt/event request from line 19 */ +#define EXTI_SWIEV_SWIEV20 BIT(20) /*!< software interrupt/event request from line 20 */ +#define EXTI_SWIEV_SWIEV21 BIT(21) /*!< software interrupt/event request from line 21 */ +#define EXTI_SWIEV_SWIEV22 BIT(22) /*!< software interrupt/event request from line 22 */ + +/* EXTI_PD */ +#define EXTI_PD_PD0 BIT(0) /*!< interrupt/event pending status from line 0 */ +#define EXTI_PD_PD1 BIT(1) /*!< interrupt/event pending status from line 1 */ +#define EXTI_PD_PD2 BIT(2) /*!< interrupt/event pending status from line 2 */ +#define EXTI_PD_PD3 BIT(3) /*!< interrupt/event pending status from line 3 */ +#define EXTI_PD_PD4 BIT(4) /*!< interrupt/event pending status from line 4 */ +#define EXTI_PD_PD5 BIT(5) /*!< interrupt/event pending status from line 5 */ +#define EXTI_PD_PD6 BIT(6) /*!< interrupt/event pending status from line 6 */ +#define EXTI_PD_PD7 BIT(7) /*!< interrupt/event pending status from line 7 */ +#define EXTI_PD_PD8 BIT(8) /*!< interrupt/event pending status from line 8 */ +#define EXTI_PD_PD9 BIT(9) /*!< interrupt/event pending status from line 9 */ +#define EXTI_PD_PD10 BIT(10) /*!< interrupt/event pending status from line 10 */ +#define EXTI_PD_PD11 BIT(11) /*!< interrupt/event pending status from line 11 */ +#define EXTI_PD_PD12 BIT(12) /*!< interrupt/event pending status from line 12 */ +#define EXTI_PD_PD13 BIT(13) /*!< interrupt/event pending status from line 13 */ +#define EXTI_PD_PD14 BIT(14) /*!< interrupt/event pending status from line 14 */ +#define EXTI_PD_PD15 BIT(15) /*!< interrupt/event pending status from line 15 */ +#define EXTI_PD_PD16 BIT(16) /*!< interrupt/event pending status from line 16 */ +#define EXTI_PD_PD17 BIT(17) /*!< interrupt/event pending status from line 17 */ +#define EXTI_PD_PD18 BIT(18) /*!< interrupt/event pending status from line 18 */ +#define EXTI_PD_PD19 BIT(19) /*!< interrupt/event pending status from line 19 */ +#define EXTI_PD_PD20 BIT(20) /*!< interrupt/event pending status from line 20 */ +#define EXTI_PD_PD21 BIT(21) /*!< interrupt/event pending status from line 21 */ +#define EXTI_PD_PD22 BIT(22) /*!< interrupt/event pending status from line 22 */ + +/* constants definitions */ +/* EXTI line number */ +typedef enum +{ + EXTI_0 = BIT(0), /*!< EXTI line 0 */ + EXTI_1 = BIT(1), /*!< EXTI line 1 */ + EXTI_2 = BIT(2), /*!< EXTI line 2 */ + EXTI_3 = BIT(3), /*!< EXTI line 3 */ + EXTI_4 = BIT(4), /*!< EXTI line 4 */ + EXTI_5 = BIT(5), /*!< EXTI line 5 */ + EXTI_6 = BIT(6), /*!< EXTI line 6 */ + EXTI_7 = BIT(7), /*!< EXTI line 7 */ + EXTI_8 = BIT(8), /*!< EXTI line 8 */ + EXTI_9 = BIT(9), /*!< EXTI line 9 */ + EXTI_10 = BIT(10), /*!< EXTI line 10 */ + EXTI_11 = BIT(11), /*!< EXTI line 11 */ + EXTI_12 = BIT(12), /*!< EXTI line 12 */ + EXTI_13 = BIT(13), /*!< EXTI line 13 */ + EXTI_14 = BIT(14), /*!< EXTI line 14 */ + EXTI_15 = BIT(15), /*!< EXTI line 15 */ + EXTI_16 = BIT(16), /*!< EXTI line 16 */ + EXTI_17 = BIT(17), /*!< EXTI line 17 */ + EXTI_18 = BIT(18), /*!< EXTI line 18 */ + EXTI_19 = BIT(19), /*!< EXTI line 19 */ + EXTI_20 = BIT(20), /*!< EXTI line 20 */ + EXTI_21 = BIT(21), /*!< EXTI line 21 */ + EXTI_22 = BIT(22), /*!< EXTI line 22 */ +}exti_line_enum; + +/* external interrupt and event */ +typedef enum +{ + EXTI_INTERRUPT = 0, /*!< EXTI interrupt mode */ + EXTI_EVENT /*!< EXTI event mode */ +}exti_mode_enum; + +/* interrupt trigger mode */ +typedef enum +{ + EXTI_TRIG_RISING = 0, /*!< EXTI rising edge trigger */ + EXTI_TRIG_FALLING, /*!< EXTI falling edge trigger */ + EXTI_TRIG_BOTH, /*!< EXTI rising and falling edge trigger */ + EXTI_TRIG_NONE /*!< none EXTI edge trigger */ +}exti_trig_type_enum; + +/* function declarations */ +/* deinitialize the EXTI */ +void exti_deinit(void); +/* enable the configuration of EXTI initialize */ +void exti_init(exti_line_enum linex, exti_mode_enum mode, exti_trig_type_enum trig_type); +/* enable the interrupts from EXTI line x */ +void exti_interrupt_enable(exti_line_enum linex); +/* disable the interrupts from EXTI line x */ +void exti_interrupt_disable(exti_line_enum linex); +/* enable the events from EXTI line x */ +void exti_event_enable(exti_line_enum linex); +/* disable the events from EXTI line x */ +void exti_event_disable(exti_line_enum linex); +/* EXTI software interrupt event enable */ +void exti_software_interrupt_enable(exti_line_enum linex); +/* EXTI software interrupt event disable */ +void exti_software_interrupt_disable(exti_line_enum linex); + +/* interrupt & flag functions */ +/* get EXTI lines pending flag */ +FlagStatus exti_flag_get(exti_line_enum linex); +/* clear EXTI lines pending flag */ +void exti_flag_clear(exti_line_enum linex); +/* get EXTI lines flag when the interrupt flag is set */ +FlagStatus exti_interrupt_flag_get(exti_line_enum linex); +/* clear EXTI lines pending flag */ +void exti_interrupt_flag_clear(exti_line_enum linex); + +#endif /* GD32F4XX_EXTI_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_fmc.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_fmc.h new file mode 100644 index 0000000000..a364c53448 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_fmc.h @@ -0,0 +1,383 @@ +/*! + \file gd32f4xx_fmc.h + \brief definitions for the FMC + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + + +#ifndef GD32F4XX_FMC_H +#define GD32F4XX_FMC_H + +#include "gd32f4xx.h" + +/* FMC and option byte definition */ +#define FMC FMC_BASE /*!< FMC register base address */ +#define OB OB_BASE /*!< option byte base address */ + +/* registers definitions */ +#define FMC_WS REG32((FMC) + 0x0000U) /*!< FMC wait state register */ +#define FMC_KEY REG32((FMC) + 0x0004U) /*!< FMC unlock key register */ +#define FMC_OBKEY REG32((FMC) + 0x0008U) /*!< FMC option byte unlock key register */ +#define FMC_STAT REG32((FMC) + 0x000CU) /*!< FMC status register */ +#define FMC_CTL REG32((FMC) + 0x0010U) /*!< FMC control register */ +#define FMC_OBCTL0 REG32((FMC) + 0x0014U) /*!< FMC option byte control register 0 */ +#define FMC_OBCTL1 REG32((FMC) + 0x0018U) /*!< FMC option byte control register 1 */ +#define FMC_WSEN REG32((FMC) + 0x00FCU) /*!< FMC wait state enable register */ +#define FMC_PID REG32((FMC) + 0x0100U) /*!< FMC product ID register */ + +#define OB_WP1 REG32((OB) + 0x00000008U) /*!< option byte write protection 1 */ +#define OB_USER REG32((OB) + 0x00010000U) /*!< option byte user value*/ +#define OB_SPC REG32((OB) + 0x00010001U) /*!< option byte security protection value */ +#define OB_WP0 REG32((OB) + 0x00010008U) /*!< option byte write protection 0 */ + +/* bits definitions */ +/* FMC_WS */ +#define FMC_WC_WSCNT BITS(0,3) /*!< wait state counter */ + +/* FMC_KEY */ +#define FMC_KEY_KEY BITS(0,31) /*!< FMC main flash key bits */ + +/* FMC_OBKEY */ +#define FMC_OBKEY_OBKEY BITS(0,31) /*!< option byte key bits */ + +/* FMC_STAT */ +#define FMC_STAT_END BIT(0) /*!< end of operation flag bit */ +#define FMC_STAT_OPERR BIT(1) /*!< flash operation error flag bit */ +#define FMC_STAT_WPERR BIT(4) /*!< erase/Program protection error flag bit */ +#define FMC_STAT_PGMERR BIT(6) /*!< program size not match error flag bit */ +#define FMC_STAT_PGSERR BIT(7) /*!< program sequence error flag bit */ +#define FMC_STAT_RDDERR BIT(8) /*!< read D-bus protection error flag bit */ +#define FMC_STAT_BUSY BIT(16) /*!< flash busy flag bit */ + +/* FMC_CTL */ +#define FMC_CTL_PG BIT(0) /*!< main flash program command bit */ +#define FMC_CTL_SER BIT(1) /*!< main flash sector erase command bit */ +#define FMC_CTL_MER0 BIT(2) /*!< main flash mass erase for bank0 command bit */ +#define FMC_CTL_SN BITS(3,7) /*!< select which sector number to be erased */ +#define FMC_CTL_PSZ BITS(8,9) /*!< program size bit */ +#define FMC_CTL_MER1 BIT(15) /*!< main flash mass erase for bank1 command bit */ +#define FMC_CTL_START BIT(16) /*!< send erase command to FMC bit */ +#define FMC_CTL_ENDIE BIT(24) /*!< end of operation interrupt enable bit */ +#define FMC_CTL_ERRIE BIT(25) /*!< error interrupt enable bit */ +#define FMC_CTL_LK BIT(31) /*!< FMC_CTL lock bit */ + +/* FMC_OBCTL0 */ +#define FMC_OBCTL0_OB_LK BIT(0) /*!< FMC_OBCTL0 lock bit */ +#define FMC_OBCTL0_OB_START BIT(1) /*!< send option byte change command to FMC bit */ +#define FMC_OBCTL0_BOR_TH BITS(2,3) /*!< option byte BOR threshold value */ +#define FMC_OBCTL0_BB BIT(4) /*!< option byte boot bank value */ +#define FMC_OBCTL0_NWDG_HW BIT(5) /*!< option byte watchdog value */ +#define FMC_OBCTL0_NRST_DPSLP BIT(6) /*!< option byte deepsleep reset value */ +#define FMC_OBCTL0_NRST_STDBY BIT(7) /*!< option byte standby reset value */ +#define FMC_OBCTL0_SPC BITS(8,15) /*!< option byte Security Protection code */ +#define FMC_OBCTL0_WP0 BITS(16,27) /*!< erase/program protection of each sector when DRP is 0 */ +#define FMC_OBCTL0_DBS BIT(30) /*!< double banks or single bank selection when flash size is 1M bytes */ +#define FMC_OBCTL0_DRP BIT(31) /*!< D-bus read protection bit */ + +/* FMC_OBCTL1 */ +#define FMC_OBCTL1_WP1 BITS(16,27) /*!< erase/program protection of each sector when DRP is 0 */ + +/* FMC_WSEN */ +#define FMC_WSEN_WSEN BIT(0) /*!< FMC wait state enable bit */ + +/* FMC_PID */ +#define FMC_PID_PID BITS(0,31) /*!< product ID bits */ + +/* constants definitions */ +/* fmc state */ +typedef enum +{ + FMC_READY, /*!< the operation has been completed */ + FMC_BUSY, /*!< the operation is in progress */ + FMC_RDDERR, /*!< read D-bus protection error */ + FMC_PGSERR, /*!< program sequence error */ + FMC_PGMERR, /*!< program size not match error */ + FMC_WPERR, /*!< erase/program protection error */ + FMC_OPERR, /*!< operation error */ + FMC_PGERR, /*!< program error */ +}fmc_state_enum; + +/* unlock key */ +#define UNLOCK_KEY0 ((uint32_t)0x45670123U) /*!< unlock key 0 */ +#define UNLOCK_KEY1 ((uint32_t)0xCDEF89ABU) /*!< unlock key 1 */ + +#define OB_UNLOCK_KEY0 ((uint32_t)0x08192A3BU) /*!< ob unlock key 0 */ +#define OB_UNLOCK_KEY1 ((uint32_t)0x4C5D6E7FU) /*!< ob unlock key 1 */ + +/* option byte write protection */ +#define OB_LWP ((uint32_t)0x000000FFU) /*!< write protection low bits */ +#define OB_HWP ((uint32_t)0x0000FF00U) /*!< write protection high bits */ + +/* FMC wait state counter */ +#define WC_WSCNT(regval) (BITS(0,3) & ((uint32_t)(regval))) +#define WS_WSCNT_0 WC_WSCNT(0) /*!< FMC 0 wait */ +#define WS_WSCNT_1 WC_WSCNT(1) /*!< FMC 1 wait */ +#define WS_WSCNT_2 WC_WSCNT(2) /*!< FMC 2 wait */ +#define WS_WSCNT_3 WC_WSCNT(3) /*!< FMC 3 wait */ +#define WS_WSCNT_4 WC_WSCNT(4) /*!< FMC 4 wait */ +#define WS_WSCNT_5 WC_WSCNT(5) /*!< FMC 5 wait */ +#define WS_WSCNT_6 WC_WSCNT(6) /*!< FMC 6 wait */ +#define WS_WSCNT_7 WC_WSCNT(7) /*!< FMC 7 wait */ +#define WS_WSCNT_8 WC_WSCNT(8) /*!< FMC 8 wait */ +#define WS_WSCNT_9 WC_WSCNT(9) /*!< FMC 9 wait */ +#define WS_WSCNT_10 WC_WSCNT(10) /*!< FMC 10 wait */ +#define WS_WSCNT_11 WC_WSCNT(11) /*!< FMC 11 wait */ +#define WS_WSCNT_12 WC_WSCNT(12) /*!< FMC 12 wait */ +#define WS_WSCNT_13 WC_WSCNT(13) /*!< FMC 13 wait */ +#define WS_WSCNT_14 WC_WSCNT(14) /*!< FMC 14 wait */ +#define WS_WSCNT_15 WC_WSCNT(15) /*!< FMC 15 wait */ + +/* option byte BOR threshold value */ +#define OBCTL0_BOR_TH(regval) (BITS(2,3) & ((uint32_t)(regval))<< 2) +#define OB_BOR_TH_VALUE3 OBCTL0_BOR_TH(0) /*!< BOR threshold value 3 */ +#define OB_BOR_TH_VALUE2 OBCTL0_BOR_TH(1) /*!< BOR threshold value 2 */ +#define OB_BOR_TH_VALUE1 OBCTL0_BOR_TH(2) /*!< BOR threshold value 1 */ +#define OB_BOR_TH_OFF OBCTL0_BOR_TH(3) /*!< no BOR function */ + +/* option byte boot bank value */ +#define OBCTL0_BB(regval) (BIT(4) & ((uint32_t)(regval)<<4)) +#define OB_BB_DISABLE OBCTL0_BB(0) /*!< boot from bank0 */ +#define OB_BB_ENABLE OBCTL0_BB(1) /*!< boot from bank1 or bank0 if bank1 is void */ + +/* option byte software/hardware free watch dog timer */ +#define OBCTL0_NWDG_HW(regval) (BIT(5) & ((uint32_t)(regval))<< 5) +#define OB_FWDGT_SW OBCTL0_NWDG_HW(1) /*!< software free watchdog */ +#define OB_FWDGT_HW OBCTL0_NWDG_HW(0) /*!< hardware free watchdog */ + +/* option byte reset or not entering deep sleep mode */ +#define OBCTL0_NRST_DPSLP(regval) (BIT(6) & ((uint32_t)(regval))<< 6) +#define OB_DEEPSLEEP_NRST OBCTL0_NRST_DPSLP(1) /*!< no reset when entering deepsleep mode */ +#define OB_DEEPSLEEP_RST OBCTL0_NRST_DPSLP(0) /*!< generate a reset instead of entering deepsleep mode */ + +/* option byte reset or not entering standby mode */ +#define OBCTL0_NRST_STDBY(regval) (BIT(7) & ((uint32_t)(regval))<< 7) +#define OB_STDBY_NRST OBCTL0_NRST_STDBY(1) /*!< no reset when entering deepsleep mode */ +#define OB_STDBY_RST OBCTL0_NRST_STDBY(0) /*!< generate a reset instead of entering standby mode */ + +/* read protect configure */ +#define FMC_NSPC ((uint8_t)0xAAU) /*!< no security protection */ +#define FMC_LSPC ((uint8_t)0xABU) /*!< low security protection */ +#define FMC_HSPC ((uint8_t)0xCCU) /*!< high security protection */ + +/* option bytes write protection */ +#define OB_WP_0 ((uint32_t)0x00000001U) /*!< erase/program protection of sector 0 */ +#define OB_WP_1 ((uint32_t)0x00000002U) /*!< erase/program protection of sector 1 */ +#define OB_WP_2 ((uint32_t)0x00000004U) /*!< erase/program protection of sector 2 */ +#define OB_WP_3 ((uint32_t)0x00000008U) /*!< erase/program protection of sector 3 */ +#define OB_WP_4 ((uint32_t)0x00000010U) /*!< erase/program protection of sector 4 */ +#define OB_WP_5 ((uint32_t)0x00000020U) /*!< erase/program protection of sector 5 */ +#define OB_WP_6 ((uint32_t)0x00000040U) /*!< erase/program protection of sector 6 */ +#define OB_WP_7 ((uint32_t)0x00000080U) /*!< erase/program protection of sector 7 */ +#define OB_WP_8 ((uint32_t)0x00000100U) /*!< erase/program protection of sector 8 */ +#define OB_WP_9 ((uint32_t)0x00000200U) /*!< erase/program protection of sector 9 */ +#define OB_WP_10 ((uint32_t)0x00000400U) /*!< erase/program protection of sector 10 */ +#define OB_WP_11 ((uint32_t)0x00000800U) /*!< erase/program protection of sector 11 */ +#define OB_WP_12 ((uint32_t)0x00010000U) /*!< erase/program protection of sector 12 */ +#define OB_WP_13 ((uint32_t)0x00020000U) /*!< erase/program protection of sector 13 */ +#define OB_WP_14 ((uint32_t)0x00040000U) /*!< erase/program protection of sector 14 */ +#define OB_WP_15 ((uint32_t)0x00080000U) /*!< erase/program protection of sector 15 */ +#define OB_WP_16 ((uint32_t)0x00100000U) /*!< erase/program protection of sector 16 */ +#define OB_WP_17 ((uint32_t)0x00200000U) /*!< erase/program protection of sector 17 */ +#define OB_WP_18 ((uint32_t)0x00400000U) /*!< erase/program protection of sector 18 */ +#define OB_WP_19 ((uint32_t)0x00800000U) /*!< erase/program protection of sector 19 */ +#define OB_WP_20 ((uint32_t)0x01000000U) /*!< erase/program protection of sector 20 */ +#define OB_WP_21 ((uint32_t)0x02000000U) /*!< erase/program protection of sector 21 */ +#define OB_WP_22 ((uint32_t)0x04000000U) /*!< erase/program protection of sector 22 */ +#define OB_WP_23_27 ((uint32_t)0x08000000U) /*!< erase/program protection of sector 23~27 */ +#define OB_WP_ALL ((uint32_t)0x0FFF0FFFU) /*!< erase/program protection of all sectors */ + +/* option bytes D-bus read protection */ +#define OB_DRP_0 ((uint32_t)0x00000001U) /*!< D-bus read protection protection of sector 0 */ +#define OB_DRP_1 ((uint32_t)0x00000002U) /*!< D-bus read protection protection of sector 1 */ +#define OB_DRP_2 ((uint32_t)0x00000004U) /*!< D-bus read protection protection of sector 2 */ +#define OB_DRP_3 ((uint32_t)0x00000008U) /*!< D-bus read protection protection of sector 3 */ +#define OB_DRP_4 ((uint32_t)0x00000010U) /*!< D-bus read protection protection of sector 4 */ +#define OB_DRP_5 ((uint32_t)0x00000020U) /*!< D-bus read protection protection of sector 5 */ +#define OB_DRP_6 ((uint32_t)0x00000040U) /*!< D-bus read protection protection of sector 6 */ +#define OB_DRP_7 ((uint32_t)0x00000080U) /*!< D-bus read protection protection of sector 7 */ +#define OB_DRP_8 ((uint32_t)0x00000100U) /*!< D-bus read protection protection of sector 8 */ +#define OB_DRP_9 ((uint32_t)0x00000200U) /*!< D-bus read protection protection of sector 9 */ +#define OB_DRP_10 ((uint32_t)0x00000400U) /*!< D-bus read protection protection of sector 10 */ +#define OB_DRP_11 ((uint32_t)0x00000800U) /*!< D-bus read protection protection of sector 11 */ +#define OB_DRP_12 ((uint32_t)0x00010000U) /*!< D-bus read protection protection of sector 12 */ +#define OB_DRP_13 ((uint32_t)0x00020000U) /*!< D-bus read protection protection of sector 13 */ +#define OB_DRP_14 ((uint32_t)0x00040000U) /*!< D-bus read protection protection of sector 14 */ +#define OB_DRP_15 ((uint32_t)0x00080000U) /*!< D-bus read protection protection of sector 15 */ +#define OB_DRP_16 ((uint32_t)0x00100000U) /*!< D-bus read protection protection of sector 16 */ +#define OB_DRP_17 ((uint32_t)0x00200000U) /*!< D-bus read protection protection of sector 17 */ +#define OB_DRP_18 ((uint32_t)0x00400000U) /*!< D-bus read protection protection of sector 18 */ +#define OB_DRP_19 ((uint32_t)0x00800000U) /*!< D-bus read protection protection of sector 19 */ +#define OB_DRP_20 ((uint32_t)0x01000000U) /*!< D-bus read protection protection of sector 20 */ +#define OB_DRP_21 ((uint32_t)0x02000000U) /*!< D-bus read protection protection of sector 21 */ +#define OB_DRP_22 ((uint32_t)0x04000000U) /*!< D-bus read protection protection of sector 22 */ +#define OB_DRP_23_27 ((uint32_t)0x08000000U) /*!< D-bus read protection protection of sector 23~27 */ + +/* double banks or single bank selection when flash size is 1M bytes */ +#define OBCTL0_DBS(regval) (BIT(30) & ((uint32_t)(regval)<<30)) +#define OB_DBS_DISABLE OBCTL0_DBS(0) /*!< single bank when flash size is 1M bytes */ +#define OB_DBS_ENABLE OBCTL0_DBS(1) /*!< double bank when flash size is 1M bytes */ + +/* option bytes D-bus read protection mode */ +#define OBCTL0_DRP(regval) (BIT(31) & ((uint32_t)(regval)<<31)) +#define OB_DRP_DISABLE OBCTL0_DRP(0) /*!< the WPx bits used as erase/program protection of each sector */ +#define OB_DRP_ENABLE OBCTL0_DRP(1) /*!< the WPx bits used as erase/program protection and D-bus read protection of each sector */ + +/* FMC sectors */ +#define CTL_SN(regval) (BITS(3,7) & ((uint32_t)(regval))<< 3) +#define CTL_SECTOR_NUMBER_0 CTL_SN(0) /*!< sector 0 */ +#define CTL_SECTOR_NUMBER_1 CTL_SN(1) /*!< sector 1 */ +#define CTL_SECTOR_NUMBER_2 CTL_SN(2) /*!< sector 2 */ +#define CTL_SECTOR_NUMBER_3 CTL_SN(3) /*!< sector 3 */ +#define CTL_SECTOR_NUMBER_4 CTL_SN(4) /*!< sector 4 */ +#define CTL_SECTOR_NUMBER_5 CTL_SN(5) /*!< sector 5 */ +#define CTL_SECTOR_NUMBER_6 CTL_SN(6) /*!< sector 6 */ +#define CTL_SECTOR_NUMBER_7 CTL_SN(7) /*!< sector 7 */ +#define CTL_SECTOR_NUMBER_8 CTL_SN(8) /*!< sector 8 */ +#define CTL_SECTOR_NUMBER_9 CTL_SN(9) /*!< sector 9 */ +#define CTL_SECTOR_NUMBER_10 CTL_SN(10) /*!< sector 10 */ +#define CTL_SECTOR_NUMBER_11 CTL_SN(11) /*!< sector 11 */ +#define CTL_SECTOR_NUMBER_24 CTL_SN(12) /*!< sector 24 */ +#define CTL_SECTOR_NUMBER_25 CTL_SN(13) /*!< sector 25 */ +#define CTL_SECTOR_NUMBER_26 CTL_SN(14) /*!< sector 26 */ +#define CTL_SECTOR_NUMBER_27 CTL_SN(15) /*!< sector 27 */ +#define CTL_SECTOR_NUMBER_12 CTL_SN(16) /*!< sector 12 */ +#define CTL_SECTOR_NUMBER_13 CTL_SN(17) /*!< sector 13 */ +#define CTL_SECTOR_NUMBER_14 CTL_SN(18) /*!< sector 14 */ +#define CTL_SECTOR_NUMBER_15 CTL_SN(19) /*!< sector 15 */ +#define CTL_SECTOR_NUMBER_16 CTL_SN(20) /*!< sector 16 */ +#define CTL_SECTOR_NUMBER_17 CTL_SN(21) /*!< sector 17 */ +#define CTL_SECTOR_NUMBER_18 CTL_SN(22) /*!< sector 18 */ +#define CTL_SECTOR_NUMBER_19 CTL_SN(23) /*!< sector 19 */ +#define CTL_SECTOR_NUMBER_20 CTL_SN(24) /*!< sector 20 */ +#define CTL_SECTOR_NUMBER_21 CTL_SN(25) /*!< sector 21 */ +#define CTL_SECTOR_NUMBER_22 CTL_SN(26) /*!< sector 22 */ +#define CTL_SECTOR_NUMBER_23 CTL_SN(27) /*!< sector 23 */ + + +/* FMC program size */ +#define CTL_PSZ(regval) (BITS(8,9) & ((uint32_t)(regval))<< 8) +#define CTL_PSZ_BYTE CTL_PSZ(0) /*!< FMC program by byte access */ +#define CTL_PSZ_HALF_WORD CTL_PSZ(1) /*!< FMC program by half-word access */ +#define CTL_PSZ_WORD CTL_PSZ(2) /*!< FMC program by word access */ + +/* FMC interrupt enable */ +#define FMC_INT_END ((uint32_t)0x01000000U) /*!< enable FMC end of program interrupt */ +#define FMC_INT_ERR ((uint32_t)0x02000000U) /*!< enable FMC error interrupt */ + +/* FMC flags */ +#define FMC_FLAG_END ((uint32_t)0x00000001U) /*!< FMC end of operation flag bit */ +#define FMC_FLAG_OPERR ((uint32_t)0x00000002U) /*!< FMC operation error flag bit */ +#define FMC_FLAG_WPERR ((uint32_t)0x00000010U) /*!< FMC erase/program protection error flag bit */ +#define FMC_FLAG_PGMERR ((uint32_t)0x00000040U) /*!< FMC program size not match error flag bit */ +#define FMC_FLAG_PGSERR ((uint32_t)0x00000080U) /*!< FMC program sequence error flag bit */ +#define FMC_FLAG_RDDERR ((uint32_t)0x00000100U) /*!< FMC read D-bus protection error flag bit */ +#define FMC_FLAG_BUSY ((uint32_t)0x00010000U) /*!< FMC busy flag */ + +/* function declarations */ +/* FMC main memory programming functions */ +/* set the FMC wait state counter */ +void fmc_wscnt_set(uint32_t wscnt); +/* unlock the main FMC operation */ +void fmc_unlock(void); +/* lock the main FMC operation */ +void fmc_lock(void); +/* FMC erase sector */ +fmc_state_enum fmc_sector_erase(uint32_t fmc_sector); +/* FMC erase whole chip */ +fmc_state_enum fmc_mass_erase(void); +/* FMC erase whole bank0 */ +fmc_state_enum fmc_bank0_erase(void); +/* FMC erase whole bank1 */ +fmc_state_enum fmc_bank1_erase(void); +/* FMC program a word at the corresponding address */ +fmc_state_enum fmc_word_program(uint32_t address, uint32_t data); +/* FMC program a half word at the corresponding address */ +fmc_state_enum fmc_halfword_program(uint32_t address, uint16_t data); +/* FMC program a byte at the corresponding address */ +fmc_state_enum fmc_byte_program(uint32_t address, uint8_t data); + +/* FMC option bytes programming functions */ +/* unlock the option byte operation */ +void ob_unlock(void); +/* lock the option byte operation */ +void ob_lock(void); +/* send option byte change command */ +void ob_start(void); +/* erase option byte */ +void ob_erase(void); +/* enable write protect */ +void ob_write_protection_enable(uint32_t ob_wp); +/* disable write protect */ +void ob_write_protection_disable(uint32_t ob_wp); +/* enable erase/program protection and D-bus read protection */ +void ob_drp_enable(uint32_t ob_drp); +/* disable erase/program protection and D-bus read protection */ +void ob_drp_disable(uint32_t ob_drp); +/* set the option byte security protection level */ +void ob_security_protection_config(uint8_t ob_spc); +/* write the FMC option byte user */ +void ob_user_write(uint32_t ob_fwdgt, uint32_t ob_deepsleep, uint32_t ob_stdby); +/* option byte BOR threshold value */ +void ob_user_bor_threshold(uint32_t ob_bor_th); +/* configure the boot mode */ +void ob_boot_mode_config(uint32_t boot_mode); +/* get the FMC option byte user */ +uint8_t ob_user_get(void); +/* get the FMC option byte write protection */ +uint16_t ob_write_protection0_get(void); +/* get the FMC option byte write protection */ +uint16_t ob_write_protection1_get(void); +/* get the FMC erase/program protection and D-bus read protection option bytes value */ +uint16_t ob_drp0_get(void); +/* get the FMC erase/program protection and D-bus read protection option bytes value */ +uint16_t ob_drp1_get(void); +/* get option byte security protection code value */ +FlagStatus ob_spc_get(void); +/* get the FMC threshold value */ +uint8_t ob_user_bor_threshold_get(void); + +/* FMC interrupts and flags management functions */ +/* enable FMC interrupt */ +void fmc_interrupt_enable(uint32_t fmc_int); +/* disable FMC interrupt */ +void fmc_interrupt_disable(uint32_t fmc_int); +/* get flag set or reset */ +FlagStatus fmc_flag_get(uint32_t fmc_flag); +/* clear the FMC pending flag */ +void fmc_flag_clear(uint32_t fmc_flag); +/* return the FMC state */ +fmc_state_enum fmc_state_get(void); +/* check FMC ready or not */ +fmc_state_enum fmc_ready_wait(void); + +#endif /* GD32F4XX_FMC_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_fwdgt.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_fwdgt.h new file mode 100644 index 0000000000..a3efd96234 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_fwdgt.h @@ -0,0 +1,106 @@ +/*! + \file gd32f4xx_fwdgt.h + \brief definitions for the FWDGT + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_FWDGT_H +#define GD32F4XX_FWDGT_H + +#include "gd32f4xx.h" + +/* FWDGT definitions */ +#define FWDGT FWDGT_BASE + +/* registers definitions */ +#define FWDGT_CTL REG32((FWDGT) + 0x00U) /*!< FWDGT control register */ +#define FWDGT_PSC REG32((FWDGT) + 0x04U) /*!< FWDGT prescaler register */ +#define FWDGT_RLD REG32((FWDGT) + 0x08U) /*!< FWDGT reload register */ +#define FWDGT_STAT REG32((FWDGT) + 0x0CU) /*!< FWDGT status register */ + +/* bits definitions */ +/* FWDGT_CTL */ +#define FWDGT_CTL_CMD BITS(0,15) /*!< FWDGT command value */ + +/* FWDGT_PSC */ +#define FWDGT_PSC_PSC BITS(0,2) /*!< FWDGT prescaler divider value */ + +/* FWDGT_RLD */ +#define FWDGT_RLD_RLD BITS(0,11) /*!< FWDGT counter reload value */ + +/* FWDGT_STAT */ +#define FWDGT_STAT_PUD BIT(0) /*!< FWDGT prescaler divider value update */ +#define FWDGT_STAT_RUD BIT(1) /*!< FWDGT counter reload value update */ + +/* constants definitions */ +/* psc register value */ +#define PSC_PSC(regval) (BITS(0,2) & ((uint32_t)(regval) << 0)) +#define FWDGT_PSC_DIV4 ((uint8_t)PSC_PSC(0)) /*!< FWDGT prescaler set to 4 */ +#define FWDGT_PSC_DIV8 ((uint8_t)PSC_PSC(1)) /*!< FWDGT prescaler set to 8 */ +#define FWDGT_PSC_DIV16 ((uint8_t)PSC_PSC(2)) /*!< FWDGT prescaler set to 16 */ +#define FWDGT_PSC_DIV32 ((uint8_t)PSC_PSC(3)) /*!< FWDGT prescaler set to 32 */ +#define FWDGT_PSC_DIV64 ((uint8_t)PSC_PSC(4)) /*!< FWDGT prescaler set to 64 */ +#define FWDGT_PSC_DIV128 ((uint8_t)PSC_PSC(5)) /*!< FWDGT prescaler set to 128 */ +#define FWDGT_PSC_DIV256 ((uint8_t)PSC_PSC(6)) /*!< FWDGT prescaler set to 256 */ + +/* control value */ +#define FWDGT_WRITEACCESS_ENABLE ((uint16_t)0x5555U) /*!< FWDGT_CTL bits write access enable value */ +#define FWDGT_WRITEACCESS_DISABLE ((uint16_t)0x0000U) /*!< FWDGT_CTL bits write access disable value */ +#define FWDGT_KEY_RELOAD ((uint16_t)0xAAAAU) /*!< FWDGT_CTL bits fwdgt counter reload value */ +#define FWDGT_KEY_ENABLE ((uint16_t)0xCCCCU) /*!< FWDGT_CTL bits fwdgt counter enable value */ + +/* FWDGT timeout value */ +#define FWDGT_PSC_TIMEOUT ((uint32_t)0x000FFFFFU) /*!< FWDGT_PSC register write operation state flag timeout */ +#define FWDGT_RLD_TIMEOUT ((uint32_t)0x000FFFFFU) /*!< FWDGT_RLD register write operation state flag timeout */ + +/* FWDGT flag definitions */ +#define FWDGT_FLAG_PUD FWDGT_STAT_PUD /*!< FWDGT prescaler divider value update flag */ +#define FWDGT_FLAG_RUD FWDGT_STAT_RUD /*!< FWDGT counter reload value update flag */ + +/* function declarations */ +/* enable write access to FWDGT_PSC and FWDGT_RLD */ +void fwdgt_write_enable(void); +/* disable write access to FWDGT_PSC and FWDGT_RLD */ +void fwdgt_write_disable(void); +/* start the free watchdog timer counter */ +void fwdgt_enable(void); + +/* reload the counter of FWDGT */ +void fwdgt_counter_reload(void); +/* configure counter reload value, and prescaler divider value */ +ErrStatus fwdgt_config(uint16_t reload_value, uint8_t prescaler_div); + +/* get flag state of FWDGT */ +FlagStatus fwdgt_flag_get(uint16_t flag); + +#endif /* GD32F4XX_FWDGT_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_gpio.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_gpio.h new file mode 100644 index 0000000000..6a0d4ed628 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_gpio.h @@ -0,0 +1,408 @@ +/*! + \file gd32f4xx_gpio.h + \brief definitions for the GPIO + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_GPIO_H +#define GD32F4XX_GPIO_H + +#include "gd32f4xx.h" + +/* GPIOx(x=A,B,C,D,E,F,G,H,I) definitions */ +#define GPIOA (GPIO_BASE + 0x00000000U) +#define GPIOB (GPIO_BASE + 0x00000400U) +#define GPIOC (GPIO_BASE + 0x00000800U) +#define GPIOD (GPIO_BASE + 0x00000C00U) +#define GPIOE (GPIO_BASE + 0x00001000U) +#define GPIOF (GPIO_BASE + 0x00001400U) +#define GPIOG (GPIO_BASE + 0x00001800U) +#define GPIOH (GPIO_BASE + 0x00001C00U) +#define GPIOI (GPIO_BASE + 0x00002000U) + +/* registers definitions */ +#define GPIO_CTL(gpiox) REG32((gpiox) + 0x00U) /*!< GPIO port control register */ +#define GPIO_OMODE(gpiox) REG32((gpiox) + 0x04U) /*!< GPIO port output mode register */ +#define GPIO_OSPD(gpiox) REG32((gpiox) + 0x08U) /*!< GPIO port output speed register */ +#define GPIO_PUD(gpiox) REG32((gpiox) + 0x0CU) /*!< GPIO port pull-up/pull-down register */ +#define GPIO_ISTAT(gpiox) REG32((gpiox) + 0x10U) /*!< GPIO port input status register */ +#define GPIO_OCTL(gpiox) REG32((gpiox) + 0x14U) /*!< GPIO port output control register */ +#define GPIO_BOP(gpiox) REG32((gpiox) + 0x18U) /*!< GPIO port bit operation register */ +#define GPIO_LOCK(gpiox) REG32((gpiox) + 0x1CU) /*!< GPIO port configuration lock register */ +#define GPIO_AFSEL0(gpiox) REG32((gpiox) + 0x20U) /*!< GPIO alternate function selected register 0 */ +#define GPIO_AFSEL1(gpiox) REG32((gpiox) + 0x24U) /*!< GPIO alternate function selected register 1 */ +#define GPIO_BC(gpiox) REG32((gpiox) + 0x28U) /*!< GPIO bit clear register */ +#define GPIO_TG(gpiox) REG32((gpiox) + 0x2CU) /*!< GPIO port bit toggle register */ + +/* bits definitions */ +/* GPIO_CTL */ +#define GPIO_CTL_CTL0 BITS(0,1) /*!< pin 0 configuration bits */ +#define GPIO_CTL_CTL1 BITS(2,3) /*!< pin 1 configuration bits */ +#define GPIO_CTL_CTL2 BITS(4,5) /*!< pin 2 configuration bits */ +#define GPIO_CTL_CTL3 BITS(6,7) /*!< pin 3 configuration bits */ +#define GPIO_CTL_CTL4 BITS(8,9) /*!< pin 4 configuration bits */ +#define GPIO_CTL_CTL5 BITS(10,11) /*!< pin 5 configuration bits */ +#define GPIO_CTL_CTL6 BITS(12,13) /*!< pin 6 configuration bits */ +#define GPIO_CTL_CTL7 BITS(14,15) /*!< pin 7 configuration bits */ +#define GPIO_CTL_CTL8 BITS(16,17) /*!< pin 8 configuration bits */ +#define GPIO_CTL_CTL9 BITS(18,19) /*!< pin 9 configuration bits */ +#define GPIO_CTL_CTL10 BITS(20,21) /*!< pin 10 configuration bits */ +#define GPIO_CTL_CTL11 BITS(22,23) /*!< pin 11 configuration bits */ +#define GPIO_CTL_CTL12 BITS(24,25) /*!< pin 12 configuration bits */ +#define GPIO_CTL_CTL13 BITS(26,27) /*!< pin 13 configuration bits */ +#define GPIO_CTL_CTL14 BITS(28,29) /*!< pin 14 configuration bits */ +#define GPIO_CTL_CTL15 BITS(30,31) /*!< pin 15 configuration bits */ + +/* GPIO_OMODE */ +#define GPIO_OMODE_OM0 BIT(0) /*!< pin 0 output mode bit */ +#define GPIO_OMODE_OM1 BIT(1) /*!< pin 1 output mode bit */ +#define GPIO_OMODE_OM2 BIT(2) /*!< pin 2 output mode bit */ +#define GPIO_OMODE_OM3 BIT(3) /*!< pin 3 output mode bit */ +#define GPIO_OMODE_OM4 BIT(4) /*!< pin 4 output mode bit */ +#define GPIO_OMODE_OM5 BIT(5) /*!< pin 5 output mode bit */ +#define GPIO_OMODE_OM6 BIT(6) /*!< pin 6 output mode bit */ +#define GPIO_OMODE_OM7 BIT(7) /*!< pin 7 output mode bit */ +#define GPIO_OMODE_OM8 BIT(8) /*!< pin 8 output mode bit */ +#define GPIO_OMODE_OM9 BIT(9) /*!< pin 9 output mode bit */ +#define GPIO_OMODE_OM10 BIT(10) /*!< pin 10 output mode bit */ +#define GPIO_OMODE_OM11 BIT(11) /*!< pin 11 output mode bit */ +#define GPIO_OMODE_OM12 BIT(12) /*!< pin 12 output mode bit */ +#define GPIO_OMODE_OM13 BIT(13) /*!< pin 13 output mode bit */ +#define GPIO_OMODE_OM14 BIT(14) /*!< pin 14 output mode bit */ +#define GPIO_OMODE_OM15 BIT(15) /*!< pin 15 output mode bit */ + +/* GPIO_OSPD */ +#define GPIO_OSPD_OSPD0 BITS(0,1) /*!< pin 0 output max speed bits */ +#define GPIO_OSPD_OSPD1 BITS(2,3) /*!< pin 1 output max speed bits */ +#define GPIO_OSPD_OSPD2 BITS(4,5) /*!< pin 2 output max speed bits */ +#define GPIO_OSPD_OSPD3 BITS(6,7) /*!< pin 3 output max speed bits */ +#define GPIO_OSPD_OSPD4 BITS(8,9) /*!< pin 4 output max speed bits */ +#define GPIO_OSPD_OSPD5 BITS(10,11) /*!< pin 5 output max speed bits */ +#define GPIO_OSPD_OSPD6 BITS(12,13) /*!< pin 6 output max speed bits */ +#define GPIO_OSPD_OSPD7 BITS(14,15) /*!< pin 7 output max speed bits */ +#define GPIO_OSPD_OSPD8 BITS(16,17) /*!< pin 8 output max speed bits */ +#define GPIO_OSPD_OSPD9 BITS(18,19) /*!< pin 9 output max speed bits */ +#define GPIO_OSPD_OSPD10 BITS(20,21) /*!< pin 10 output max speed bits */ +#define GPIO_OSPD_OSPD11 BITS(22,23) /*!< pin 11 output max speed bits */ +#define GPIO_OSPD_OSPD12 BITS(24,25) /*!< pin 12 output max speed bits */ +#define GPIO_OSPD_OSPD13 BITS(26,27) /*!< pin 13 output max speed bits */ +#define GPIO_OSPD_OSPD14 BITS(28,29) /*!< pin 14 output max speed bits */ +#define GPIO_OSPD_OSPD15 BITS(30,31) /*!< pin 15 output max speed bits */ + +/* GPIO_PUD */ +#define GPIO_PUD_PUD0 BITS(0,1) /*!< pin 0 pull-up or pull-down bits */ +#define GPIO_PUD_PUD1 BITS(2,3) /*!< pin 1 pull-up or pull-down bits */ +#define GPIO_PUD_PUD2 BITS(4,5) /*!< pin 2 pull-up or pull-down bits */ +#define GPIO_PUD_PUD3 BITS(6,7) /*!< pin 3 pull-up or pull-down bits */ +#define GPIO_PUD_PUD4 BITS(8,9) /*!< pin 4 pull-up or pull-down bits */ +#define GPIO_PUD_PUD5 BITS(10,11) /*!< pin 5 pull-up or pull-down bits */ +#define GPIO_PUD_PUD6 BITS(12,13) /*!< pin 6 pull-up or pull-down bits */ +#define GPIO_PUD_PUD7 BITS(14,15) /*!< pin 7 pull-up or pull-down bits */ +#define GPIO_PUD_PUD8 BITS(16,17) /*!< pin 8 pull-up or pull-down bits */ +#define GPIO_PUD_PUD9 BITS(18,19) /*!< pin 9 pull-up or pull-down bits */ +#define GPIO_PUD_PUD10 BITS(20,21) /*!< pin 10 pull-up or pull-down bits */ +#define GPIO_PUD_PUD11 BITS(22,23) /*!< pin 11 pull-up or pull-down bits */ +#define GPIO_PUD_PUD12 BITS(24,25) /*!< pin 12 pull-up or pull-down bits */ +#define GPIO_PUD_PUD13 BITS(26,27) /*!< pin 13 pull-up or pull-down bits */ +#define GPIO_PUD_PUD14 BITS(28,29) /*!< pin 14 pull-up or pull-down bits */ +#define GPIO_PUD_PUD15 BITS(30,31) /*!< pin 15 pull-up or pull-down bits */ + +/* GPIO_ISTAT */ +#define GPIO_ISTAT_ISTAT0 BIT(0) /*!< pin 0 input status */ +#define GPIO_ISTAT_ISTAT1 BIT(1) /*!< pin 1 input status */ +#define GPIO_ISTAT_ISTAT2 BIT(2) /*!< pin 2 input status */ +#define GPIO_ISTAT_ISTAT3 BIT(3) /*!< pin 3 input status */ +#define GPIO_ISTAT_ISTAT4 BIT(4) /*!< pin 4 input status */ +#define GPIO_ISTAT_ISTAT5 BIT(5) /*!< pin 5 input status */ +#define GPIO_ISTAT_ISTAT6 BIT(6) /*!< pin 6 input status */ +#define GPIO_ISTAT_ISTAT7 BIT(7) /*!< pin 7 input status */ +#define GPIO_ISTAT_ISTAT8 BIT(8) /*!< pin 8 input status */ +#define GPIO_ISTAT_ISTAT9 BIT(9) /*!< pin 9 input status */ +#define GPIO_ISTAT_ISTAT10 BIT(10) /*!< pin 10 input status */ +#define GPIO_ISTAT_ISTAT11 BIT(11) /*!< pin 11 input status */ +#define GPIO_ISTAT_ISTAT12 BIT(12) /*!< pin 12 input status */ +#define GPIO_ISTAT_ISTAT13 BIT(13) /*!< pin 13 input status */ +#define GPIO_ISTAT_ISTAT14 BIT(14) /*!< pin 14 input status */ +#define GPIO_ISTAT_ISTAT15 BIT(15) /*!< pin 15 input status */ + +/* GPIO_OCTL */ +#define GPIO_OCTL_OCTL0 BIT(0) /*!< pin 0 output bit */ +#define GPIO_OCTL_OCTL1 BIT(1) /*!< pin 1 output bit */ +#define GPIO_OCTL_OCTL2 BIT(2) /*!< pin 2 output bit */ +#define GPIO_OCTL_OCTL3 BIT(3) /*!< pin 3 output bit */ +#define GPIO_OCTL_OCTL4 BIT(4) /*!< pin 4 output bit */ +#define GPIO_OCTL_OCTL5 BIT(5) /*!< pin 5 output bit */ +#define GPIO_OCTL_OCTL6 BIT(6) /*!< pin 6 output bit */ +#define GPIO_OCTL_OCTL7 BIT(7) /*!< pin 7 output bit */ +#define GPIO_OCTL_OCTL8 BIT(8) /*!< pin 8 output bit */ +#define GPIO_OCTL_OCTL9 BIT(9) /*!< pin 9 output bit */ +#define GPIO_OCTL_OCTL10 BIT(10) /*!< pin 10 output bit */ +#define GPIO_OCTL_OCTL11 BIT(11) /*!< pin 11 output bit */ +#define GPIO_OCTL_OCTL12 BIT(12) /*!< pin 12 output bit */ +#define GPIO_OCTL_OCTL13 BIT(13) /*!< pin 13 output bit */ +#define GPIO_OCTL_OCTL14 BIT(14) /*!< pin 14 output bit */ +#define GPIO_OCTL_OCTL15 BIT(15) /*!< pin 15 output bit */ + +/* GPIO_BOP */ +#define GPIO_BOP_BOP0 BIT(0) /*!< pin 0 set bit */ +#define GPIO_BOP_BOP1 BIT(1) /*!< pin 1 set bit */ +#define GPIO_BOP_BOP2 BIT(2) /*!< pin 2 set bit */ +#define GPIO_BOP_BOP3 BIT(3) /*!< pin 3 set bit */ +#define GPIO_BOP_BOP4 BIT(4) /*!< pin 4 set bit */ +#define GPIO_BOP_BOP5 BIT(5) /*!< pin 5 set bit */ +#define GPIO_BOP_BOP6 BIT(6) /*!< pin 6 set bit */ +#define GPIO_BOP_BOP7 BIT(7) /*!< pin 7 set bit */ +#define GPIO_BOP_BOP8 BIT(8) /*!< pin 8 set bit */ +#define GPIO_BOP_BOP9 BIT(9) /*!< pin 9 set bit */ +#define GPIO_BOP_BOP10 BIT(10) /*!< pin 10 set bit */ +#define GPIO_BOP_BOP11 BIT(11) /*!< pin 11 set bit */ +#define GPIO_BOP_BOP12 BIT(12) /*!< pin 12 set bit */ +#define GPIO_BOP_BOP13 BIT(13) /*!< pin 13 set bit */ +#define GPIO_BOP_BOP14 BIT(14) /*!< pin 14 set bit */ +#define GPIO_BOP_BOP15 BIT(15) /*!< pin 15 set bit */ +#define GPIO_BOP_CR0 BIT(16) /*!< pin 0 clear bit */ +#define GPIO_BOP_CR1 BIT(17) /*!< pin 1 clear bit */ +#define GPIO_BOP_CR2 BIT(18) /*!< pin 2 clear bit */ +#define GPIO_BOP_CR3 BIT(19) /*!< pin 3 clear bit */ +#define GPIO_BOP_CR4 BIT(20) /*!< pin 4 clear bit */ +#define GPIO_BOP_CR5 BIT(21) /*!< pin 5 clear bit */ +#define GPIO_BOP_CR6 BIT(22) /*!< pin 6 clear bit */ +#define GPIO_BOP_CR7 BIT(23) /*!< pin 7 clear bit */ +#define GPIO_BOP_CR8 BIT(24) /*!< pin 8 clear bit */ +#define GPIO_BOP_CR9 BIT(25) /*!< pin 9 clear bit */ +#define GPIO_BOP_CR10 BIT(26) /*!< pin 10 clear bit */ +#define GPIO_BOP_CR11 BIT(27) /*!< pin 11 clear bit */ +#define GPIO_BOP_CR12 BIT(28) /*!< pin 12 clear bit */ +#define GPIO_BOP_CR13 BIT(29) /*!< pin 13 clear bit */ +#define GPIO_BOP_CR14 BIT(30) /*!< pin 14 clear bit */ +#define GPIO_BOP_CR15 BIT(31) /*!< pin 15 clear bit */ + +/* GPIO_LOCK */ +#define GPIO_LOCK_LK0 BIT(0) /*!< pin 0 lock bit */ +#define GPIO_LOCK_LK1 BIT(1) /*!< pin 1 lock bit */ +#define GPIO_LOCK_LK2 BIT(2) /*!< pin 2 lock bit */ +#define GPIO_LOCK_LK3 BIT(3) /*!< pin 3 lock bit */ +#define GPIO_LOCK_LK4 BIT(4) /*!< pin 4 lock bit */ +#define GPIO_LOCK_LK5 BIT(5) /*!< pin 5 lock bit */ +#define GPIO_LOCK_LK6 BIT(6) /*!< pin 6 lock bit */ +#define GPIO_LOCK_LK7 BIT(7) /*!< pin 7 lock bit */ +#define GPIO_LOCK_LK8 BIT(8) /*!< pin 8 lock bit */ +#define GPIO_LOCK_LK9 BIT(9) /*!< pin 9 lock bit */ +#define GPIO_LOCK_LK10 BIT(10) /*!< pin 10 lock bit */ +#define GPIO_LOCK_LK11 BIT(11) /*!< pin 11 lock bit */ +#define GPIO_LOCK_LK12 BIT(12) /*!< pin 12 lock bit */ +#define GPIO_LOCK_LK13 BIT(13) /*!< pin 13 lock bit */ +#define GPIO_LOCK_LK14 BIT(14) /*!< pin 14 lock bit */ +#define GPIO_LOCK_LK15 BIT(15) /*!< pin 15 lock bit */ +#define GPIO_LOCK_LKK BIT(16) /*!< pin sequence lock key */ + +/* GPIO_AFSEL0 */ +#define GPIO_AFSEL0_SEL0 BITS(0,3) /*!< pin 0 alternate function selected */ +#define GPIO_AFSEL0_SEL1 BITS(4,7) /*!< pin 1 alternate function selected */ +#define GPIO_AFSEL0_SEL2 BITS(8,11) /*!< pin 2 alternate function selected */ +#define GPIO_AFSEL0_SEL3 BITS(12,15) /*!< pin 3 alternate function selected */ +#define GPIO_AFSEL0_SEL4 BITS(16,19) /*!< pin 4 alternate function selected */ +#define GPIO_AFSEL0_SEL5 BITS(20,23) /*!< pin 5 alternate function selected */ +#define GPIO_AFSEL0_SEL6 BITS(24,27) /*!< pin 6 alternate function selected */ +#define GPIO_AFSEL0_SEL7 BITS(28,31) /*!< pin 7 alternate function selected */ + +/* GPIO_AFSEL1 */ +#define GPIO_AFSEL1_SEL8 BITS(0,3) /*!< pin 8 alternate function selected */ +#define GPIO_AFSEL1_SEL9 BITS(4,7) /*!< pin 9 alternate function selected */ +#define GPIO_AFSEL1_SEL10 BITS(8,11) /*!< pin 10 alternate function selected */ +#define GPIO_AFSEL1_SEL11 BITS(12,15) /*!< pin 11 alternate function selected */ +#define GPIO_AFSEL1_SEL12 BITS(16,19) /*!< pin 12 alternate function selected */ +#define GPIO_AFSEL1_SEL13 BITS(20,23) /*!< pin 13 alternate function selected */ +#define GPIO_AFSEL1_SEL14 BITS(24,27) /*!< pin 14 alternate function selected */ +#define GPIO_AFSEL1_SEL15 BITS(28,31) /*!< pin 15 alternate function selected */ + +/* GPIO_BC */ +#define GPIO_BC_CR0 BIT(0) /*!< pin 0 clear bit */ +#define GPIO_BC_CR1 BIT(1) /*!< pin 1 clear bit */ +#define GPIO_BC_CR2 BIT(2) /*!< pin 2 clear bit */ +#define GPIO_BC_CR3 BIT(3) /*!< pin 3 clear bit */ +#define GPIO_BC_CR4 BIT(4) /*!< pin 4 clear bit */ +#define GPIO_BC_CR5 BIT(5) /*!< pin 5 clear bit */ +#define GPIO_BC_CR6 BIT(6) /*!< pin 6 clear bit */ +#define GPIO_BC_CR7 BIT(7) /*!< pin 7 clear bit */ +#define GPIO_BC_CR8 BIT(8) /*!< pin 8 clear bit */ +#define GPIO_BC_CR9 BIT(9) /*!< pin 9 clear bit */ +#define GPIO_BC_CR10 BIT(10) /*!< pin 10 clear bit */ +#define GPIO_BC_CR11 BIT(11) /*!< pin 11 clear bit */ +#define GPIO_BC_CR12 BIT(12) /*!< pin 12 clear bit */ +#define GPIO_BC_CR13 BIT(13) /*!< pin 13 clear bit */ +#define GPIO_BC_CR14 BIT(14) /*!< pin 14 clear bit */ +#define GPIO_BC_CR15 BIT(15) /*!< pin 15 clear bit */ + +/* GPIO_TG */ +#define GPIO_TG_TG0 BIT(0) /*!< pin 0 toggle bit */ +#define GPIO_TG_TG1 BIT(1) /*!< pin 1 toggle bit */ +#define GPIO_TG_TG2 BIT(2) /*!< pin 2 toggle bit */ +#define GPIO_TG_TG3 BIT(3) /*!< pin 3 toggle bit */ +#define GPIO_TG_TG4 BIT(4) /*!< pin 4 toggle bit */ +#define GPIO_TG_TG5 BIT(5) /*!< pin 5 toggle bit */ +#define GPIO_TG_TG6 BIT(6) /*!< pin 6 toggle bit */ +#define GPIO_TG_TG7 BIT(7) /*!< pin 7 toggle bit */ +#define GPIO_TG_TG8 BIT(8) /*!< pin 8 toggle bit */ +#define GPIO_TG_TG9 BIT(9) /*!< pin 9 toggle bit */ +#define GPIO_TG_TG10 BIT(10) /*!< pin 10 toggle bit */ +#define GPIO_TG_TG11 BIT(11) /*!< pin 11 toggle bit */ +#define GPIO_TG_TG12 BIT(12) /*!< pin 12 toggle bit */ +#define GPIO_TG_TG13 BIT(13) /*!< pin 13 toggle bit */ +#define GPIO_TG_TG14 BIT(14) /*!< pin 14 toggle bit */ +#define GPIO_TG_TG15 BIT(15) /*!< pin 15 toggle bit */ + +/* constants definitions */ +typedef FlagStatus bit_status; + +/* output mode definitions */ +#define CTL_CLTR(regval) (BITS(0,1) & ((uint32_t)(regval) << 0)) +#define GPIO_MODE_INPUT CTL_CLTR(0) /*!< input mode */ +#define GPIO_MODE_OUTPUT CTL_CLTR(1) /*!< output mode */ +#define GPIO_MODE_AF CTL_CLTR(2) /*!< alternate function mode */ +#define GPIO_MODE_ANALOG CTL_CLTR(3) /*!< analog mode */ + +/* pull-up/ pull-down definitions */ +#define PUD_PUPD(regval) (BITS(0,1) & ((uint32_t)(regval) << 0)) +#define GPIO_PUPD_NONE PUD_PUPD(0) /*!< floating mode, no pull-up and pull-down resistors */ +#define GPIO_PUPD_PULLUP PUD_PUPD(1) /*!< with pull-up resistor */ +#define GPIO_PUPD_PULLDOWN PUD_PUPD(2) /*!< with pull-down resistor */ + +/* GPIO pin definitions */ +#define GPIO_PIN_0 BIT(0) /*!< GPIO pin 0 */ +#define GPIO_PIN_1 BIT(1) /*!< GPIO pin 1 */ +#define GPIO_PIN_2 BIT(2) /*!< GPIO pin 2 */ +#define GPIO_PIN_3 BIT(3) /*!< GPIO pin 3 */ +#define GPIO_PIN_4 BIT(4) /*!< GPIO pin 4 */ +#define GPIO_PIN_5 BIT(5) /*!< GPIO pin 5 */ +#define GPIO_PIN_6 BIT(6) /*!< GPIO pin 6 */ +#define GPIO_PIN_7 BIT(7) /*!< GPIO pin 7 */ +#define GPIO_PIN_8 BIT(8) /*!< GPIO pin 8 */ +#define GPIO_PIN_9 BIT(9) /*!< GPIO pin 9 */ +#define GPIO_PIN_10 BIT(10) /*!< GPIO pin 10 */ +#define GPIO_PIN_11 BIT(11) /*!< GPIO pin 11 */ +#define GPIO_PIN_12 BIT(12) /*!< GPIO pin 12 */ +#define GPIO_PIN_13 BIT(13) /*!< GPIO pin 13 */ +#define GPIO_PIN_14 BIT(14) /*!< GPIO pin 14 */ +#define GPIO_PIN_15 BIT(15) /*!< GPIO pin 15 */ +#define GPIO_PIN_ALL BITS(0,15) /*!< GPIO pin all */ + +/* GPIO mode configuration values */ +#define GPIO_MODE_SET(n, mode) ((uint32_t)((uint32_t)(mode) << (2U * (n)))) +#define GPIO_MODE_MASK(n) (0x3U << (2U * (n))) + +/* GPIO pull-up/ pull-down values */ +#define GPIO_PUPD_SET(n, pupd) ((uint32_t)((uint32_t)(pupd) << (2U * (n)))) +#define GPIO_PUPD_MASK(n) (0x3U << (2U * (n))) + +/* GPIO output speed values */ +#define GPIO_OSPEED_SET(n, speed) ((uint32_t)((uint32_t)(speed) << (2U * (n)))) +#define GPIO_OSPEED_MASK(n) (0x3U << (2U * (n))) + +/* GPIO output type */ +#define GPIO_OTYPE_PP ((uint8_t)(0x00U)) /*!< push pull mode */ +#define GPIO_OTYPE_OD ((uint8_t)(0x01U)) /*!< open drain mode */ + +/* GPIO output max speed level */ +#define OSPD_OSPD(regval) (BITS(0,1) & ((uint32_t)(regval) << 0)) +#define GPIO_OSPEED_LEVEL0 OSPD_OSPD(0) /*!< output max speed level 0 */ +#define GPIO_OSPEED_LEVEL1 OSPD_OSPD(1) /*!< output max speed level 1 */ +#define GPIO_OSPEED_LEVEL2 OSPD_OSPD(2) /*!< output max speed level 2 */ +#define GPIO_OSPEED_LEVEL3 OSPD_OSPD(3) /*!< output max speed level 3 */ + +/* GPIO output max speed value */ +#define GPIO_OSPEED_2MHZ GPIO_OSPEED_LEVEL0 /*!< output max speed 2MHz */ +#define GPIO_OSPEED_25MHZ GPIO_OSPEED_LEVEL1 /*!< output max speed 25MHz */ +#define GPIO_OSPEED_50MHZ GPIO_OSPEED_LEVEL2 /*!< output max speed 50MHz */ +#define GPIO_OSPEED_200MHZ GPIO_OSPEED_LEVEL3 /*!< output max speed 200MHz */ + +/* GPIO alternate function values */ +#define GPIO_AFR_SET(n, af) ((uint32_t)((uint32_t)(af) << (4U * (n)))) +#define GPIO_AFR_MASK(n) (0xFU << (4U * (n))) + +/* GPIO alternate function */ +#define AF(regval) (BITS(0,3) & ((uint32_t)(regval) << 0)) +#define GPIO_AF_0 AF(0) /*!< alternate function 0 selected */ +#define GPIO_AF_1 AF(1) /*!< alternate function 1 selected */ +#define GPIO_AF_2 AF(2) /*!< alternate function 2 selected */ +#define GPIO_AF_3 AF(3) /*!< alternate function 3 selected */ +#define GPIO_AF_4 AF(4) /*!< alternate function 4 selected */ +#define GPIO_AF_5 AF(5) /*!< alternate function 5 selected */ +#define GPIO_AF_6 AF(6) /*!< alternate function 6 selected */ +#define GPIO_AF_7 AF(7) /*!< alternate function 7 selected */ +#define GPIO_AF_8 AF(8) /*!< alternate function 8 selected */ +#define GPIO_AF_9 AF(9) /*!< alternate function 9 selected */ +#define GPIO_AF_10 AF(10) /*!< alternate function 10 selected */ +#define GPIO_AF_11 AF(11) /*!< alternate function 11 selected */ +#define GPIO_AF_12 AF(12) /*!< alternate function 12 selected */ +#define GPIO_AF_13 AF(13) /*!< alternate function 13 selected */ +#define GPIO_AF_14 AF(14) /*!< alternate function 14 selected */ +#define GPIO_AF_15 AF(15) /*!< alternate function 15 selected */ + +/* function declarations */ +/* reset GPIO port */ +void gpio_deinit(uint32_t gpio_periph); +/* set GPIO mode */ +void gpio_mode_set(uint32_t gpio_periph, uint32_t mode, uint32_t pull_up_down, uint32_t pin); +/* set GPIO output type and speed */ +void gpio_output_options_set(uint32_t gpio_periph, uint8_t otype, uint32_t speed, uint32_t pin); + +/* set GPIO pin bit */ +void gpio_bit_set(uint32_t gpio_periph, uint32_t pin); +/* reset GPIO pin bit */ +void gpio_bit_reset(uint32_t gpio_periph, uint32_t pin); +/* write data to the specified GPIO pin */ +void gpio_bit_write(uint32_t gpio_periph, uint32_t pin, bit_status bit_value); +/* write data to the specified GPIO port */ +void gpio_port_write(uint32_t gpio_periph, uint16_t data); + +/* get GPIO pin input status */ +FlagStatus gpio_input_bit_get(uint32_t gpio_periph, uint32_t pin); +/* get GPIO port input status */ +uint16_t gpio_input_port_get(uint32_t gpio_periph); +/* get GPIO pin output status */ +FlagStatus gpio_output_bit_get(uint32_t gpio_periph, uint32_t pin); +/* get GPIO port output status */ +uint16_t gpio_output_port_get(uint32_t gpio_periph); + +/* set GPIO alternate function */ +void gpio_af_set(uint32_t gpio_periph, uint32_t alt_func_num, uint32_t pin); +/* lock GPIO pin bit */ +void gpio_pin_lock(uint32_t gpio_periph, uint32_t pin); + +/* toggle GPIO pin status */ +void gpio_bit_toggle(uint32_t gpio_periph, uint32_t pin); +/* toggle GPIO port status */ +void gpio_port_toggle(uint32_t gpio_periph); + +#endif /* GD32F4XX_GPIO_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_i2c.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_i2c.h new file mode 100644 index 0000000000..dac49e2d8e --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_i2c.h @@ -0,0 +1,422 @@ +/*! + \file gd32f4xx_i2c.h + \brief definitions for the I2C + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2019-04-16, V2.0.1, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + + +#ifndef GD32F4XX_I2C_H +#define GD32F4XX_I2C_H + +#include "gd32f4xx.h" + +/* I2Cx(x=0,1,2) definitions */ +#define I2C0 I2C_BASE /*!< I2C0 base address */ +#define I2C1 (I2C_BASE+0x400U) /*!< I2C1 base address */ +#define I2C2 (I2C_BASE+0x800U) /*!< I2C2 base address */ + +/* registers definitions */ +#define I2C_CTL0(i2cx) REG32((i2cx) + 0x00U) /*!< I2C control register 0 */ +#define I2C_CTL1(i2cx) REG32((i2cx) + 0x04U) /*!< I2C control register 1 */ +#define I2C_SADDR0(i2cx) REG32((i2cx) + 0x08U) /*!< I2C slave address register 0 */ +#define I2C_SADDR1(i2cx) REG32((i2cx) + 0x0CU) /*!< I2C slave address register 1 */ +#define I2C_DATA(i2cx) REG32((i2cx) + 0x10U) /*!< I2C transfer buffer register */ +#define I2C_STAT0(i2cx) REG32((i2cx) + 0x14U) /*!< I2C transfer status register 0 */ +#define I2C_STAT1(i2cx) REG32((i2cx) + 0x18U) /*!< I2C transfer status register */ +#define I2C_CKCFG(i2cx) REG32((i2cx) + 0x1CU) /*!< I2C clock configure register */ +#define I2C_RT(i2cx) REG32((i2cx) + 0x20U) /*!< I2C rise time register */ +#define I2C_FCTL(i2cx) REG32((i2cx) + 0x24U) /*!< I2C filter control register */ +#define I2C_SAMCS(i2cx) REG32((i2cx) + 0x80U) /*!< I2C SAM control and status register */ + +/* bits definitions */ +/* I2Cx_CTL0 */ +#define I2C_CTL0_I2CEN BIT(0) /*!< peripheral enable */ +#define I2C_CTL0_SMBEN BIT(1) /*!< SMBus mode */ +#define I2C_CTL0_SMBSEL BIT(3) /*!< SMBus type */ +#define I2C_CTL0_ARPEN BIT(4) /*!< ARP enable */ +#define I2C_CTL0_PECEN BIT(5) /*!< PEC enable */ +#define I2C_CTL0_GCEN BIT(6) /*!< general call enable */ +#define I2C_CTL0_SS BIT(7) /*!< clock stretching disable (slave mode) */ +#define I2C_CTL0_START BIT(8) /*!< start generation */ +#define I2C_CTL0_STOP BIT(9) /*!< stop generation */ +#define I2C_CTL0_ACKEN BIT(10) /*!< acknowledge enable */ +#define I2C_CTL0_POAP BIT(11) /*!< acknowledge/PEC position (for data reception) */ +#define I2C_CTL0_PECTRANS BIT(12) /*!< packet error checking */ +#define I2C_CTL0_SALT BIT(13) /*!< SMBus alert */ +#define I2C_CTL0_SRESET BIT(15) /*!< software reset */ + +/* I2Cx_CTL1 */ +#define I2C_CTL1_I2CCLK BITS(0,5) /*!< I2CCLK[5:0] bits (peripheral clock frequency) */ +#define I2C_CTL1_ERRIE BIT(8) /*!< error interrupt enable */ +#define I2C_CTL1_EVIE BIT(9) /*!< event interrupt enable */ +#define I2C_CTL1_BUFIE BIT(10) /*!< buffer interrupt enable */ +#define I2C_CTL1_DMAON BIT(11) /*!< DMA requests enable */ +#define I2C_CTL1_DMALST BIT(12) /*!< DMA last transfer */ + +/* I2Cx_SADDR0 */ +#define I2C_SADDR0_ADDRESS0 BIT(0) /*!< bit 0 of a 10-bit address */ +#define I2C_SADDR0_ADDRESS BITS(1,7) /*!< 7-bit address or bits 7:1 of a 10-bit address */ +#define I2C_SADDR0_ADDRESS_H BITS(8,9) /*!< highest two bits of a 10-bit address */ +#define I2C_SADDR0_ADDFORMAT BIT(15) /*!< address mode for the I2C slave */ + +/* I2Cx_SADDR1 */ +#define I2C_SADDR1_DUADEN BIT(0) /*!< aual-address mode switch */ +#define I2C_SADDR1_ADDRESS2 BITS(1,7) /*!< second I2C address for the slave in dual-address mode */ + +/* I2Cx_DATA */ +#define I2C_DATA_TRB BITS(0,7) /*!< 8-bit data register */ + +/* I2Cx_STAT0 */ +#define I2C_STAT0_SBSEND BIT(0) /*!< start bit (master mode) */ +#define I2C_STAT0_ADDSEND BIT(1) /*!< address sent (master mode)/matched (slave mode) */ +#define I2C_STAT0_BTC BIT(2) /*!< byte transfer finished */ +#define I2C_STAT0_ADD10SEND BIT(3) /*!< 10-bit header sent (master mode) */ +#define I2C_STAT0_STPDET BIT(4) /*!< stop detection (slave mode) */ +#define I2C_STAT0_RBNE BIT(6) /*!< data register not empty (receivers) */ +#define I2C_STAT0_TBE BIT(7) /*!< data register empty (transmitters) */ +#define I2C_STAT0_BERR BIT(8) /*!< bus error */ +#define I2C_STAT0_LOSTARB BIT(9) /*!< arbitration lost (master mode) */ +#define I2C_STAT0_AERR BIT(10) /*!< acknowledge failure */ +#define I2C_STAT0_OUERR BIT(11) /*!< overrun/underrun */ +#define I2C_STAT0_PECERR BIT(12) /*!< PEC error in reception */ +#define I2C_STAT0_SMBTO BIT(14) /*!< timeout signal in SMBus mode */ +#define I2C_STAT0_SMBALT BIT(15) /*!< SMBus alert status */ + +/* I2Cx_STAT1 */ +#define I2C_STAT1_MASTER BIT(0) /*!< master/slave */ +#define I2C_STAT1_I2CBSY BIT(1) /*!< bus busy */ +#define I2C_STAT1_TR BIT(2) /*!< transmitter/receiver */ +#define I2C_STAT1_RXGC BIT(4) /*!< general call address (slave mode) */ +#define I2C_STAT1_DEFSMB BIT(5) /*!< SMBus device default address (slave mode) */ +#define I2C_STAT1_HSTSMB BIT(6) /*!< SMBus host header (slave mode) */ +#define I2C_STAT1_DUMODF BIT(7) /*!< dual flag (slave mode) */ +#define I2C_STAT1_PECV BITS(8,15) /*!< packet error checking value */ + +/* I2Cx_CKCFG */ +#define I2C_CKCFG_CLKC BITS(0,11) /*!< clock control register in fast/standard mode (master mode) */ +#define I2C_CKCFG_DTCY BIT(14) /*!< fast mode duty cycle */ +#define I2C_CKCFG_FAST BIT(15) /*!< I2C speed selection in master mode */ + +/* I2Cx_RT */ +#define I2C_RT_RISETIME BITS(0,5) /*!< maximum rise time in fast/standard mode (Master mode) */ + +/* I2Cx_FCTL */ +#define I2C_FCTL_DF BITS(0,3) /*!< digital noise filter */ +#define I2C_FCTL_AFD BIT(4) /*!< analog noise filter disable */ + +/* I2Cx_SAMCS */ +#define I2C_SAMCS_SAMEN BIT(0) /*!< SAM_V interface enable */ +#define I2C_SAMCS_STOEN BIT(1) /*!< SAM_V interface timeout detect enable */ +#define I2C_SAMCS_TFFIE BIT(4) /*!< txframe fall interrupt enable */ +#define I2C_SAMCS_TFRIE BIT(5) /*!< txframe rise interrupt enable */ +#define I2C_SAMCS_RFFIE BIT(6) /*!< rxframe fall interrupt enable */ +#define I2C_SAMCS_RFRIE BIT(7) /*!< rxframe rise interrupt enable */ +#define I2C_SAMCS_TXF BIT(8) /*!< level of txframe signal */ +#define I2C_SAMCS_RXF BIT(9) /*!< level of rxframe signal */ +#define I2C_SAMCS_TFF BIT(12) /*!< txframe fall flag, cleared by software write 0 */ +#define I2C_SAMCS_TFR BIT(13) /*!< txframe rise flag, cleared by software write 0 */ +#define I2C_SAMCS_RFF BIT(14) /*!< rxframe fall flag, cleared by software write 0 */ +#define I2C_SAMCS_RFR BIT(15) /*!< rxframe rise flag, cleared by software write 0 */ + +/* constants definitions */ + +/* the digital noise filter can filter spikes's length */ +typedef enum { + I2C_DF_DISABLE, /*!< disable digital noise filter */ + I2C_DF_1PCLK, /*!< enable digital noise filter and the maximum filtered spiker's length 1 PCLK1 */ + I2C_DF_2PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 2 PCLK1 */ + I2C_DF_3PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 3 PCLK1 */ + I2C_DF_4PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 4 PCLK1 */ + I2C_DF_5PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 5 PCLK1 */ + I2C_DF_6PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 6 PCLK1 */ + I2C_DF_7PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 7 PCLK1 */ + I2C_DF_8PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 8 PCLK1 */ + I2C_DF_9PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 9 PCLK1 */ + I2C_DF_10PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 10 PCLK1 */ + I2C_DF_11PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 11 PCLK1 */ + I2C_DF_12PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 12 PCLK1 */ + I2C_DF_13PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 13 PCLK1 */ + I2C_DF_14PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 14 PCLK1 */ + I2C_DF_15PCLKS /*!< enable digital noise filter and the maximum filtered spiker's length 15 PCLK1 */ +}i2c_digital_filter_enum; + +/* constants definitions */ +/* define the I2C bit position and its register index offset */ +#define I2C_REGIDX_BIT(regidx, bitpos) (((uint32_t)(regidx) << 6) | (uint32_t)(bitpos)) +#define I2C_REG_VAL(i2cx, offset) (REG32((i2cx) + (((uint32_t)(offset) & 0xFFFFU) >> 6))) +#define I2C_BIT_POS(val) ((uint32_t)(val) & 0x1FU) +#define I2C_REGIDX_BIT2(regidx, bitpos, regidx2, bitpos2) (((uint32_t)(regidx2) << 22) | (uint32_t)((bitpos2) << 16)\ + | (((uint32_t)(regidx) << 6) | (uint32_t)(bitpos))) +#define I2C_REG_VAL2(i2cx, offset) (REG32((i2cx) + ((uint32_t)(offset) >> 22))) +#define I2C_BIT_POS2(val) (((uint32_t)(val) & 0x1F0000U) >> 16) + +/* register offset */ +#define I2C_CTL1_REG_OFFSET 0x04U /*!< CTL1 register offset */ +#define I2C_STAT0_REG_OFFSET 0x14U /*!< STAT0 register offset */ +#define I2C_STAT1_REG_OFFSET 0x18U /*!< STAT1 register offset */ +#define I2C_SAMCS_REG_OFFSET 0x80U /*!< SAMCS register offset */ + +/* I2C flags */ +typedef enum +{ + /* flags in STAT0 register */ + I2C_FLAG_SBSEND = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 0U), /*!< start condition sent out in master mode */ + I2C_FLAG_ADDSEND = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 1U), /*!< address is sent in master mode or received and matches in slave mode */ + I2C_FLAG_BTC = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 2U), /*!< byte transmission finishes */ + I2C_FLAG_ADD10SEND = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 3U), /*!< header of 10-bit address is sent in master mode */ + I2C_FLAG_STPDET = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 4U), /*!< stop condition detected in slave mode */ + I2C_FLAG_RBNE = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 6U), /*!< I2C_DATA is not Empty during receiving */ + I2C_FLAG_TBE = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 7U), /*!< I2C_DATA is empty during transmitting */ + I2C_FLAG_BERR = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 8U), /*!< a bus error occurs indication a unexpected start or stop condition on I2C bus */ + I2C_FLAG_LOSTARB = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 9U), /*!< arbitration lost in master mode */ + I2C_FLAG_AERR = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 10U), /*!< acknowledge error */ + I2C_FLAG_OUERR = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 11U), /*!< over-run or under-run situation occurs in slave mode */ + I2C_FLAG_PECERR = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 12U), /*!< PEC error when receiving data */ + I2C_FLAG_SMBTO = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 14U), /*!< timeout signal in SMBus mode */ + I2C_FLAG_SMBALT = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 15U), /*!< SMBus alert status */ + /* flags in STAT1 register */ + I2C_FLAG_MASTER = I2C_REGIDX_BIT(I2C_STAT1_REG_OFFSET, 0U), /*!< a flag indicating whether I2C block is in master or slave mode */ + I2C_FLAG_I2CBSY = I2C_REGIDX_BIT(I2C_STAT1_REG_OFFSET, 1U), /*!< busy flag */ + I2C_FLAG_TRS = I2C_REGIDX_BIT(I2C_STAT1_REG_OFFSET, 2U), /*!< whether the I2C is a transmitter or a receiver */ + I2C_FLAG_RXGC = I2C_REGIDX_BIT(I2C_STAT1_REG_OFFSET, 4U), /*!< general call address (00h) received */ + I2C_FLAG_DEFSMB = I2C_REGIDX_BIT(I2C_STAT1_REG_OFFSET, 5U), /*!< default address of SMBus device */ + I2C_FLAG_HSTSMB = I2C_REGIDX_BIT(I2C_STAT1_REG_OFFSET, 6U), /*!< SMBus host header detected in slave mode */ + I2C_FLAG_DUMOD = I2C_REGIDX_BIT(I2C_STAT1_REG_OFFSET, 7U), /*!< dual flag in slave mode indicating which address is matched in dual-address mode */ + /* flags in SAMCS register */ + I2C_FLAG_TFF = I2C_REGIDX_BIT(I2C_SAMCS_REG_OFFSET, 12U), /*!< txframe fall flag */ + I2C_FLAG_TFR = I2C_REGIDX_BIT(I2C_SAMCS_REG_OFFSET, 13U), /*!< txframe rise flag */ + I2C_FLAG_RFF = I2C_REGIDX_BIT(I2C_SAMCS_REG_OFFSET, 14U), /*!< rxframe fall flag */ + I2C_FLAG_RFR = I2C_REGIDX_BIT(I2C_SAMCS_REG_OFFSET, 15U) /*!< rxframe rise flag */ +}i2c_flag_enum; + +/* I2C interrupt flags */ +typedef enum +{ + /* interrupt flags in CTL1 register */ + I2C_INT_FLAG_SBSEND = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 9U, I2C_STAT0_REG_OFFSET, 0U), /*!< start condition sent out in master mode interrupt flag */ + I2C_INT_FLAG_ADDSEND = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 9U, I2C_STAT0_REG_OFFSET, 1U), /*!< address is sent in master mode or received and matches in slave mode interrupt flag */ + I2C_INT_FLAG_BTC = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 9U, I2C_STAT0_REG_OFFSET, 2U), /*!< byte transmission finishes */ + I2C_INT_FLAG_ADD10SEND = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 9U, I2C_STAT0_REG_OFFSET, 3U), /*!< header of 10-bit address is sent in master mode interrupt flag */ + I2C_INT_FLAG_STPDET = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 9U, I2C_STAT0_REG_OFFSET, 4U), /*!< stop condition detected in slave mode interrupt flag */ + I2C_INT_FLAG_RBNE = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 9U, I2C_STAT0_REG_OFFSET, 6U), /*!< I2C_DATA is not Empty during receiving interrupt flag */ + I2C_INT_FLAG_TBE = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 9U, I2C_STAT0_REG_OFFSET, 7U), /*!< I2C_DATA is empty during transmitting interrupt flag */ + I2C_INT_FLAG_BERR = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 8U, I2C_STAT0_REG_OFFSET, 8U), /*!< a bus error occurs indication a unexpected start or stop condition on I2C bus interrupt flag */ + I2C_INT_FLAG_LOSTARB = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 8U, I2C_STAT0_REG_OFFSET, 9U), /*!< arbitration lost in master mode interrupt flag */ + I2C_INT_FLAG_AERR = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 8U, I2C_STAT0_REG_OFFSET, 10U), /*!< acknowledge error interrupt flag */ + I2C_INT_FLAG_OUERR = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 8U, I2C_STAT0_REG_OFFSET, 11U), /*!< over-run or under-run situation occurs in slave mode interrupt flag */ + I2C_INT_FLAG_PECERR = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 8U, I2C_STAT0_REG_OFFSET, 12U), /*!< PEC error when receiving data interrupt flag */ + I2C_INT_FLAG_SMBTO = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 8U, I2C_STAT0_REG_OFFSET, 14U), /*!< timeout signal in SMBus mode interrupt flag */ + I2C_INT_FLAG_SMBALT = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 8U, I2C_STAT0_REG_OFFSET, 15U), /*!< SMBus Alert status interrupt flag */ + /* interrupt flags in SAMCS register */ + I2C_INT_FLAG_TFF = I2C_REGIDX_BIT2(I2C_SAMCS_REG_OFFSET, 4U, I2C_SAMCS_REG_OFFSET, 12U), /*!< txframe fall interrupt flag */ + I2C_INT_FLAG_TFR = I2C_REGIDX_BIT2(I2C_SAMCS_REG_OFFSET, 5U, I2C_SAMCS_REG_OFFSET, 13U), /*!< txframe rise interrupt flag */ + I2C_INT_FLAG_RFF = I2C_REGIDX_BIT2(I2C_SAMCS_REG_OFFSET, 6U, I2C_SAMCS_REG_OFFSET, 14U), /*!< rxframe fall interrupt flag */ + I2C_INT_FLAG_RFR = I2C_REGIDX_BIT2(I2C_SAMCS_REG_OFFSET, 7U, I2C_SAMCS_REG_OFFSET, 15U) /*!< rxframe rise interrupt flag */ +}i2c_interrupt_flag_enum; + +/* I2C interrupt enable or disable */ +typedef enum +{ + /* interrupt in CTL1 register */ + I2C_INT_ERR = I2C_REGIDX_BIT(I2C_CTL1_REG_OFFSET, 8U), /*!< error interrupt enable */ + I2C_INT_EV = I2C_REGIDX_BIT(I2C_CTL1_REG_OFFSET, 9U), /*!< event interrupt enable */ + I2C_INT_BUF = I2C_REGIDX_BIT(I2C_CTL1_REG_OFFSET, 10U), /*!< buffer interrupt enable */ + /* interrupt in SAMCS register */ + I2C_INT_TFF = I2C_REGIDX_BIT(I2C_SAMCS_REG_OFFSET, 4U), /*!< txframe fall interrupt enable */ + I2C_INT_TFR = I2C_REGIDX_BIT(I2C_SAMCS_REG_OFFSET, 5U), /*!< txframe rise interrupt enable */ + I2C_INT_RFF = I2C_REGIDX_BIT(I2C_SAMCS_REG_OFFSET, 6U), /*!< rxframe fall interrupt enable */ + I2C_INT_RFR = I2C_REGIDX_BIT(I2C_SAMCS_REG_OFFSET, 7U) /*!< rxframe rise interrupt enable */ +}i2c_interrupt_enum; + +/* SMBus/I2C mode switch and SMBus type selection */ +#define I2C_I2CMODE_ENABLE ((uint32_t)0x00000000U) /*!< I2C mode */ +#define I2C_SMBUSMODE_ENABLE I2C_CTL0_SMBEN /*!< SMBus mode */ + +/* SMBus/I2C mode switch and SMBus type selection */ +#define I2C_SMBUS_DEVICE ((uint32_t)0x00000000U) /*!< SMBus mode device type */ +#define I2C_SMBUS_HOST I2C_CTL0_SMBSEL /*!< SMBus mode host type */ + +/* I2C transfer direction */ +#define I2C_RECEIVER ((uint32_t)0x00000001U) /*!< receiver */ +#define I2C_TRANSMITTER ((uint32_t)0xFFFFFFFEU) /*!< transmitter */ + +/* whether or not to send an ACK */ +#define I2C_ACK_DISABLE ((uint32_t)0x00000000U) /*!< ACK will be not sent */ +#define I2C_ACK_ENABLE ((uint32_t)0x00000001U) /*!< ACK will be sent */ + +/* I2C POAP position*/ +#define I2C_ACKPOS_NEXT ((uint32_t)0x00000000U) /*!< ACKEN bit decides whether or not to send ACK for the next byte */ +#define I2C_ACKPOS_CURRENT ((uint32_t)0x00000001U) /*!< ACKEN bit decides whether or not to send ACK or not for the current byte */ + +/* I2C dual-address mode switch */ +#define I2C_DUADEN_DISABLE ((uint32_t)0x00000000U) /*!< dual-address mode disabled */ +#define I2C_DUADEN_ENABLE ((uint32_t)0x00000001U) /*!< dual-address mode enabled */ + +/* whether or not to stretch SCL low */ +#define I2C_SCLSTRETCH_ENABLE ((uint32_t)0x00000000U) /*!< SCL stretching is enabled */ +#define I2C_SCLSTRETCH_DISABLE I2C_CTL0_SS /*!< SCL stretching is disabled */ + +/* whether or not to response to a general call */ +#define I2C_GCEN_ENABLE I2C_CTL0_GCEN /*!< slave will response to a general call */ +#define I2C_GCEN_DISABLE ((uint32_t)0x00000000U) /*!< slave will not response to a general call */ + +/* software reset I2C */ +#define I2C_SRESET_SET I2C_CTL0_SRESET /*!< I2C is under reset */ +#define I2C_SRESET_RESET ((uint32_t)0x00000000U) /*!< I2C is not under reset */ + +/* I2C DMA mode configure */ +/* DMA mode switch */ +#define I2C_DMA_ON I2C_CTL1_DMAON /*!< DMA mode enabled */ +#define I2C_DMA_OFF ((uint32_t)0x00000000U) /*!< DMA mode disabled */ + +/* flag indicating DMA last transfer */ +#define I2C_DMALST_ON I2C_CTL1_DMALST /*!< next DMA EOT is the last transfer */ +#define I2C_DMALST_OFF ((uint32_t)0x00000000U) /*!< next DMA EOT is not the last transfer */ + +/* I2C PEC configure */ +/* PEC enable */ +#define I2C_PEC_ENABLE I2C_CTL0_PECEN /*!< PEC calculation on */ +#define I2C_PEC_DISABLE ((uint32_t)0x00000000U) /*!< PEC calculation off */ + +/* PEC transfer */ +#define I2C_PECTRANS_ENABLE I2C_CTL0_PECTRANS /*!< transfer PEC */ +#define I2C_PECTRANS_DISABLE ((uint32_t)0x00000000U) /*!< not transfer PEC value */ + +/* I2C SMBus configure */ +/* issue or not alert through SMBA pin */ +#define I2C_SALTSEND_ENABLE I2C_CTL0_SALT /*!< issue alert through SMBA pin */ +#define I2C_SALTSEND_DISABLE ((uint32_t)0x00000000U) /*!< not issue alert through SMBA */ + +/* ARP protocol in SMBus switch */ +#define I2C_ARP_ENABLE I2C_CTL0_ARPEN /*!< ARP is enabled */ +#define I2C_ARP_DISABLE ((uint32_t)0x00000000U) /*!< ARP is disabled */ + +/* transmit I2C data */ +#define DATA_TRANS(regval) (BITS(0,7) & ((uint32_t)(regval) << 0)) + +/* receive I2C data */ +#define DATA_RECV(regval) GET_BITS((uint32_t)(regval), 0, 7) + +/* I2C duty cycle in fast mode */ +#define I2C_DTCY_2 ((uint32_t)0x00000000U) /*!< I2C fast mode Tlow/Thigh = 2 */ +#define I2C_DTCY_16_9 I2C_CKCFG_DTCY /*!< I2C fast mode Tlow/Thigh = 16/9 */ + +/* address mode for the I2C slave */ +#define I2C_ADDFORMAT_7BITS ((uint32_t)0x00000000U) /*!< address:7 bits */ +#define I2C_ADDFORMAT_10BITS I2C_SADDR0_ADDFORMAT /*!< address:10 bits */ + +/* function declarations */ +/* reset I2C */ +void i2c_deinit(uint32_t i2c_periph); +/* configure I2C clock */ +void i2c_clock_config(uint32_t i2c_periph, uint32_t clkspeed, uint32_t dutycyc); +/* configure I2C address */ +void i2c_mode_addr_config(uint32_t i2c_periph, uint32_t mode, uint32_t addformat, uint32_t addr); +/* SMBus type selection */ +void i2c_smbus_type_config(uint32_t i2c_periph, uint32_t type); +/* whether or not to send an ACK */ +void i2c_ack_config(uint32_t i2c_periph, uint32_t ack); +/* configure I2C POAP position */ +void i2c_ackpos_config(uint32_t i2c_periph, uint32_t pos); +/* master sends slave address */ +void i2c_master_addressing(uint32_t i2c_periph, uint32_t addr, uint32_t trandirection); +/* enable dual-address mode */ +void i2c_dualaddr_enable(uint32_t i2c_periph, uint32_t addr); +/* disable dual-address mode */ +void i2c_dualaddr_disable(uint32_t i2c_periph); +/* enable I2C */ +void i2c_enable(uint32_t i2c_periph); +/* disable I2C */ +void i2c_disable(uint32_t i2c_periph); + +/* generate a START condition on I2C bus */ +void i2c_start_on_bus(uint32_t i2c_periph); +/* generate a STOP condition on I2C bus */ +void i2c_stop_on_bus(uint32_t i2c_periph); +/* I2C transmit data function */ +void i2c_data_transmit(uint32_t i2c_periph, uint8_t data); +/* I2C receive data function */ +uint8_t i2c_data_receive(uint32_t i2c_periph); +/* enable I2C DMA mode */ +void i2c_dma_enable(uint32_t i2c_periph, uint32_t dmastate); +/* configure whether next DMA EOT is DMA last transfer or not */ +void i2c_dma_last_transfer_config(uint32_t i2c_periph, uint32_t dmalast); +/* whether to stretch SCL low when data is not ready in slave mode */ +void i2c_stretch_scl_low_config(uint32_t i2c_periph, uint32_t stretchpara); +/* whether or not to response to a general call */ +void i2c_slave_response_to_gcall_config(uint32_t i2c_periph, uint32_t gcallpara); +/* software reset I2C */ +void i2c_software_reset_config(uint32_t i2c_periph, uint32_t sreset); + +/* I2C PEC calculation on or off */ +void i2c_pec_enable(uint32_t i2c_periph, uint32_t pecstate); +/* I2C whether to transfer PEC value */ +void i2c_pec_transfer_enable(uint32_t i2c_periph, uint32_t pecpara); +/* packet error checking value */ +uint8_t i2c_pec_value_get(uint32_t i2c_periph); +/* I2C issue alert through SMBA pin */ +void i2c_smbus_issue_alert(uint32_t i2c_periph, uint32_t smbuspara); +/* I2C ARP protocol in SMBus switch */ +void i2c_smbus_arp_enable(uint32_t i2c_periph, uint32_t arpstate); + +/* I2C analog noise filter disable */ +void i2c_analog_noise_filter_disable(uint32_t i2c_periph); +/* I2C analog noise filter enable */ +void i2c_analog_noise_filter_enable(uint32_t i2c_periph); +/* digital noise filter */ +void i2c_digital_noise_filter_config(uint32_t i2c_periph,i2c_digital_filter_enum dfilterpara); + +/* enable SAM_V interface */ +void i2c_sam_enable(uint32_t i2c_periph); +/* disable SAM_V interface */ +void i2c_sam_disable(uint32_t i2c_periph); +/* enable SAM_V interface timeout detect */ +void i2c_sam_timeout_enable(uint32_t i2c_periph); +/* disable SAM_V interface timeout detect */ +void i2c_sam_timeout_disable(uint32_t i2c_periph); + +/* check I2C flag is set or not */ +FlagStatus i2c_flag_get(uint32_t i2c_periph, i2c_flag_enum flag); +/* clear I2C flag */ +void i2c_flag_clear(uint32_t i2c_periph, i2c_flag_enum flag); +/* enable I2C interrupt */ +void i2c_interrupt_enable(uint32_t i2c_periph, i2c_interrupt_enum interrupt); +/* disable I2C interrupt */ +void i2c_interrupt_disable(uint32_t i2c_periph, i2c_interrupt_enum interrupt); +/* check I2C interrupt flag */ +FlagStatus i2c_interrupt_flag_get(uint32_t i2c_periph, i2c_interrupt_flag_enum int_flag); +/* clear I2C interrupt flag */ +void i2c_interrupt_flag_clear(uint32_t i2c_periph, i2c_interrupt_flag_enum int_flag); + +#endif /* GD32F4XX_I2C_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_ipa.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_ipa.h new file mode 100644 index 0000000000..ee2f0438d5 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_ipa.h @@ -0,0 +1,384 @@ +/*! + \file gd32f4xx_ipa.h + \brief definitions for the IPA + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_IPA_H +#define GD32F4XX_IPA_H + +#include "gd32f4xx.h" + +/* TLI definitions */ +#define IPA IPA_BASE /*!< IPA base address */ + +/* bits definitions */ +/* registers definitions */ +#define IPA_CTL REG32(IPA + 0x00U) /*!< IPA control register */ +#define IPA_INTF REG32(IPA + 0x04U) /*!< IPA interrupt flag register */ +#define IPA_INTC REG32(IPA + 0x08U) /*!< IPA interrupt flag clear register */ +#define IPA_FMADDR REG32(IPA + 0x0CU) /*!< IPA foreground memory base address register */ +#define IPA_FLOFF REG32(IPA + 0x10U) /*!< IPA foreground line offset register */ +#define IPA_BMADDR REG32(IPA + 0x14U) /*!< IPA background memory base address register */ +#define IPA_BLOFF REG32(IPA + 0x18U) /*!< IPA background line offset register */ +#define IPA_FPCTL REG32(IPA + 0x1CU) /*!< IPA foreground pixel control register */ +#define IPA_FPV REG32(IPA + 0x20U) /*!< IPA foreground pixel value register */ +#define IPA_BPCTL REG32(IPA + 0x24U) /*!< IPA background pixel control register */ +#define IPA_BPV REG32(IPA + 0x28U) /*!< IPA background pixel value register */ +#define IPA_FLMADDR REG32(IPA + 0x2CU) /*!< IPA foreground LUT memory base address register */ +#define IPA_BLMADDR REG32(IPA + 0x30U) /*!< IPA background LUT memory base address register */ +#define IPA_DPCTL REG32(IPA + 0x34U) /*!< IPA destination pixel control register */ +#define IPA_DPV REG32(IPA + 0x38U) /*!< IPA destination pixel value register */ +#define IPA_DMADDR REG32(IPA + 0x3CU) /*!< IPA destination memory base address register */ +#define IPA_DLOFF REG32(IPA + 0x40U) /*!< IPA destination line offset register */ +#define IPA_IMS REG32(IPA + 0x44U) /*!< IPA image size register */ +#define IPA_LM REG32(IPA + 0x48U) /*!< IPA line mark register */ +#define IPA_ITCTL REG32(IPA + 0x4CU) /*!< IPA inter-timer control register */ + +/* IPA_CTL */ +#define IPA_CTL_TEN BIT(0) /*!< transfer enable */ +#define IPA_CTL_THU BIT(1) /*!< transfer hang up */ +#define IPA_CTL_TST BIT(2) /*!< transfer stop */ +#define IPA_CTL_TAEIE BIT(8) /*!< enable bit for transfer access error interrupt */ +#define IPA_CTL_FTFIE BIT(9) /*!< enable bit for full transfer finish interrup */ +#define IPA_CTL_TLMIE BIT(10) /*!< enable bit for transfer line mark interrupt */ +#define IPA_CTL_LACIE BIT(11) /*!< enable bit for LUT access conflict interrupt */ +#define IPA_CTL_LLFIE BIT(12) /*!< enable bit for LUT loading finish interrupt */ +#define IPA_CTL_WCFIE BIT(13) /*!< enable bit for wrong configuration interrupt */ +#define IPA_CTL_PFCM BITS(16,17) /*!< pixel format convert mode */ + +/* IPA_INTF */ +#define IPA_INTF_TAEIF BIT(0) /*!< transfer access error interrupt flag */ +#define IPA_INTF_FTFIF BIT(1) /*!< full transfer finish interrupt flag */ +#define IPA_INTF_TLMIF BIT(2) /*!< transfer line mark interrupt flag */ +#define IPA_INTF_LACIF BIT(3) /*!< LUT access conflict interrupt flag */ +#define IPA_INTF_LLFIF BIT(4) /*!< LUT loading finish interrupt flag */ +#define IPA_INTF_WCFIF BIT(5) /*!< wrong configuration interrupt flag */ + +/* IPA_INTC */ +#define IPA_INTC_TAEIFC BIT(0) /*!< clear bit for transfer access error interrupt flag */ +#define IPA_INTC_FTFIFC BIT(1) /*!< clear bit for full transfer finish interrupt flag */ +#define IPA_INTC_TLMIFC BIT(2) /*!< clear bit for transfer line mark interrupt flag */ +#define IPA_INTC_LACIFC BIT(3) /*!< clear bit for LUT access conflict interrupt flag */ +#define IPA_INTC_LLFIFC BIT(4) /*!< clear bit for LUT loading finish interrupt flag */ +#define IPA_INTC_WCFIFC BIT(5) /*!< clear bit for wrong configuration interrupt flag */ + +/* IPA_FMADDR */ +#define IPA_FMADDR_FMADDR BITS(0,31) /*!< foreground memory base address */ + +/* IPA_FLOFF */ +#define IPA_FLOFF_FLOFF BITS(0,13) /*!< foreground line offset */ + +/* IPA_BMADDR */ +#define IPA_BMADDR_BMADDR BITS(0,31) /*!< background memory base address */ + +/* IPA_BLOFF */ +#define IPA_BLOFF_BLOFF BITS(0,13) /*!< background line offset */ + +/* IPA_FPCTL */ +#define IPA_FPCTL_FPF BITS(0,3) /*!< foreground pixel format */ +#define IPA_FPCTL_FLPF BIT(4) /*!< foreground LUT pixel format */ +#define IPA_FPCTL_FLLEN BIT(5) /*!< foreground LUT loading enable */ +#define IPA_FPCTL_FCNP BITS(8,15) /*!< foreground LUT number of pixel */ +#define IPA_FPCTL_FAVCA BITS(16,17) /*!< foreground alpha value calculation algorithm */ +#define IPA_FPCTL_FPDAV BITS(24,31) /*!< foreground pre- defined alpha value */ + +/* IPA_FPV */ +#define IPA_FPV_FPDBV BITS(0,7) /*!< foreground pre-defined red value */ +#define IPA_FPV_FPDGV BITS(8,15) /*!< foreground pre-defined green value */ +#define IPA_FPV_FPDRV BITS(16,23) /*!< foreground pre-defined red value */ + +/* IPA_BPCTL */ +#define IPA_BPCTL_BPF BITS(0,3) /*!< background pixel format */ +#define IPA_BPCTL_BLPF BIT(4) /*!< background LUT pixel format */ +#define IPA_BPCTL_BLLEN BIT(5) /*!< background LUT loading enable */ +#define IPA_BPCTL_BCNP BITS(8,15) /*!< background LUT number of pixel */ +#define IPA_BPCTL_BAVCA BITS(16,17) /*!< background alpha value calculation algorithm */ +#define IPA_BPCTL_BPDAV BITS(24,31) /*!< background pre- defined alpha value */ + +/* IPA_BPV */ +#define IPA_BPV_BPDBV BITS(0,7) /*!< background pre-defined blue value */ +#define IPA_BPV_BPDGV BITS(8,15) /*!< background pre-defined green value */ +#define IPA_BPV_BPDRV BITS(16,23) /*!< background pre-defined red value */ + +/* IPA_FLMADDR */ +#define IPA_FLMADDR_FLMADDR BITS(0,31) /*!< foreground LUT memory base address */ + +/* IPA_BLMADDR */ +#define IPA_BLMADDR_BLMADDR BITS(0,31) /*!< background LUT memory base address */ + +/* IPA_DPCTL */ +#define IPA_DPCTL_DPF BITS(0,2) /*!< destination pixel control register */ + +/* IPA_DPV */ +/* destination pixel format ARGB8888 */ +#define IPA_DPV_DPDBV_0 BITS(0,7) /*!< destination pre-defined blue value */ +#define IPA_DPV_DPDGV_0 BITS(8,15) /*!< destination pre-defined green value */ +#define IPA_DPV_DPDRV_0 BITS(16,23) /*!< destination pre-defined red value */ +#define IPA_DPV_DPDAV_0 BITS(24,31) /*!< destination pre-defined alpha value */ + +/* destination pixel format RGB8888 */ +#define IPA_DPV_DPDBV_1 BITS(0,7) /*!< destination pre-defined blue value */ +#define IPA_DPV_DPDGV_1 BITS(8,15) /*!< destination pre-defined green value */ +#define IPA_DPV_DPDRV_1 BITS(16,23) /*!< destination pre-defined red value */ + +/* destination pixel format RGB565 */ +#define IPA_DPV_DPDBV_2 BITS(0,4) /*!< destination pre-defined blue value */ +#define IPA_DPV_DPDGV_2 BITS(5,10) /*!< destination pre-defined green value */ +#define IPA_DPV_DPDRV_2 BITS(11,15) /*!< destination pre-defined red value */ + +/* destination pixel format ARGB1555 */ +#define IPA_DPV_DPDBV_3 BITS(0,4) /*!< destination pre-defined blue value */ +#define IPA_DPV_DPDGV_3 BITS(5,9) /*!< destination pre-defined green value */ +#define IPA_DPV_DPDRV_3 BITS(10,14) /*!< destination pre-defined red value */ +#define IPA_DPV_DPDAV_3 BIT(15) /*!< destination pre-defined alpha value */ + +/* destination pixel format ARGB4444 */ +#define IPA_DPV_DPDBV_4 BITS(0,3) /*!< destination pre-defined blue value */ +#define IPA_DPV_DPDGV_4 BITS(4,7) /*!< destination pre-defined green value */ +#define IPA_DPV_DPDRV_4 BITS(8,11) /*!< destination pre-defined red value */ +#define IPA_DPV_DPDAV_4 BITS(12,15) /*!< destination pre-defined alpha value */ + +/* IPA_DMADDR */ +#define IPA_DMADDR_DMADDR BITS(0,31) /*!< destination memory base address */ + +/* IPA_DLOFF */ +#define IPA_DLOFF_DLOFF BITS(0,13) /*!< destination line offset */ + +/* IPA_IMS */ +#define IPA_IMS_HEIGHT BITS(0,15) /*!< height of the image to be processed */ +#define IPA_IMS_WIDTH BITS(16,29) /*!< width of the image to be processed */ + +/* IPA_LM */ +#define IPA_LM_LM BITS(0,15) /*!< line mark */ + +/* IPA_ITCTL */ +#define IPA_ITCTL_ITEN BIT(0) /*!< inter-timer enable */ +#define IPA_ITCTL_NCCI BITS(8,15) /*!< number of clock cycles interval */ + + +/* constants definitions */ +/* IPA foreground parameter struct definitions */ +typedef struct +{ + uint32_t foreground_memaddr; /*!< foreground memory base address */ + uint32_t foreground_lineoff; /*!< foreground line offset */ + uint32_t foreground_prealpha; /*!< foreground pre-defined alpha value */ + uint32_t foreground_alpha_algorithm; /*!< foreground alpha value calculation algorithm */ + uint32_t foreground_pf; /*!< foreground pixel format */ + uint32_t foreground_prered; /*!< foreground pre-defined red value */ + uint32_t foreground_pregreen; /*!< foreground pre-defined green value */ + uint32_t foreground_preblue; /*!< foreground pre-defined blue value */ +}ipa_foreground_parameter_struct; + +/* IPA background parameter struct definitions */ +typedef struct +{ + uint32_t background_memaddr; /*!< background memory base address */ + uint32_t background_lineoff; /*!< background line offset */ + uint32_t background_prealpha; /*!< background pre-defined alpha value */ + uint32_t background_alpha_algorithm; /*!< background alpha value calculation algorithm */ + uint32_t background_pf; /*!< background pixel format */ + uint32_t background_prered; /*!< background pre-defined red value */ + uint32_t background_pregreen; /*!< background pre-defined green value */ + uint32_t background_preblue; /*!< background pre-defined blue value */ +}ipa_background_parameter_struct; + +/* IPA destination parameter struct definitions */ +typedef struct +{ + uint32_t destination_memaddr; /*!< destination memory base address */ + uint32_t destination_lineoff; /*!< destination line offset */ + uint32_t destination_prealpha; /*!< destination pre-defined alpha value */ + uint32_t destination_pf; /*!< destination pixel format */ + uint32_t destination_prered; /*!< destination pre-defined red value */ + uint32_t destination_pregreen; /*!< destination pre-defined green value */ + uint32_t destination_preblue; /*!< destination pre-defined blue value */ + uint32_t image_width; /*!< width of the image to be processed */ + uint32_t image_height; /*!< height of the image to be processed */ +}ipa_destination_parameter_struct; + +/* destination pixel format */ +typedef enum +{ + IPA_DPF_ARGB8888, /*!< destination pixel format ARGB8888 */ + IPA_DPF_RGB888, /*!< destination pixel format RGB888 */ + IPA_DPF_RGB565, /*!< destination pixel format RGB565 */ + IPA_DPF_ARGB1555, /*!< destination pixel format ARGB1555 */ + IPA_DPF_ARGB4444 /*!< destination pixel format ARGB4444 */ +} ipa_dpf_enum; + +/* LUT pixel format */ +#define IPA_LUT_PF_ARGB8888 ((uint8_t)0x00U) /*!< LUT pixel format ARGB8888 */ +#define IPA_LUT_PF_RGB888 ((uint8_t)0x01U) /*!< LUT pixel format RGB888 */ + +/* Inter-timer */ +#define IPA_INTER_TIMER_DISABLE ((uint8_t)0x00U) /*!< inter-timer disable */ +#define IPA_INTER_TIMER_ENABLE ((uint8_t)0x01U) /*!< inter-timer enable */ + +/* IPA pixel format convert mode */ +#define CTL_PFCM(regval) (BITS(16,17) & ((uint32_t)(regval) << 16)) +#define IPA_FGTODE CTL_PFCM(0) /*!< foreground memory to destination memory without pixel format convert */ +#define IPA_FGTODE_PF_CONVERT CTL_PFCM(1) /*!< foreground memory to destination memory with pixel format convert */ +#define IPA_FGBGTODE CTL_PFCM(2) /*!< blending foreground and background memory to destination memory */ +#define IPA_FILL_UP_DE CTL_PFCM(3) /*!< fill up destination memory with specific color */ + +/* foreground alpha value calculation algorithm */ +#define FPCTL_FAVCA(regval) (BITS(16,17) & ((uint32_t)(regval) << 16)) +#define IPA_FG_ALPHA_MODE_0 FPCTL_FAVCA(0) /*!< no effect */ +#define IPA_FG_ALPHA_MODE_1 FPCTL_FAVCA(1) /*!< FPDAV[7:0] is selected as the foreground alpha value */ +#define IPA_FG_ALPHA_MODE_2 FPCTL_FAVCA(2) /*!< FPDAV[7:0] multiplied by read alpha value */ + +/* background alpha value calculation algorithm */ +#define BPCTL_BAVCA(regval) (BITS(16,17) & ((uint32_t)(regval) << 16)) +#define IPA_BG_ALPHA_MODE_0 BPCTL_BAVCA(0) /*!< no effect */ +#define IPA_BG_ALPHA_MODE_1 BPCTL_BAVCA(1) /*!< BPDAV[7:0] is selected as the background alpha value */ +#define IPA_BG_ALPHA_MODE_2 BPCTL_BAVCA(2) /*!< BPDAV[7:0] multiplied by read alpha value */ + +/* foreground pixel format */ +#define FPCTL_PPF(regval) (BITS(0,3) & ((uint32_t)(regval))) +#define FOREGROUND_PPF_ARGB8888 FPCTL_PPF(0) /*!< foreground pixel format ARGB8888 */ +#define FOREGROUND_PPF_RGB888 FPCTL_PPF(1) /*!< foreground pixel format RGB888 */ +#define FOREGROUND_PPF_RGB565 FPCTL_PPF(2) /*!< foreground pixel format RGB565 */ +#define FOREGROUND_PPF_ARG1555 FPCTL_PPF(3) /*!< foreground pixel format ARGB1555 */ +#define FOREGROUND_PPF_ARGB4444 FPCTL_PPF(4) /*!< foreground pixel format ARGB4444 */ +#define FOREGROUND_PPF_L8 FPCTL_PPF(5) /*!< foreground pixel format L8 */ +#define FOREGROUND_PPF_AL44 FPCTL_PPF(6) /*!< foreground pixel format AL44 */ +#define FOREGROUND_PPF_AL88 FPCTL_PPF(7) /*!< foreground pixel format AL88 */ +#define FOREGROUND_PPF_L4 FPCTL_PPF(8) /*!< foreground pixel format L4 */ +#define FOREGROUND_PPF_A8 FPCTL_PPF(9) /*!< foreground pixel format A8 */ +#define FOREGROUND_PPF_A4 FPCTL_PPF(10) /*!< foreground pixel format A4 */ + +/* background pixel format */ +#define BPCTL_PPF(regval) (BITS(0,3) & ((uint32_t)(regval))) +#define BACKGROUND_PPF_ARGB8888 BPCTL_PPF(0) /*!< background pixel format ARGB8888 */ +#define BACKGROUND_PPF_RGB888 BPCTL_PPF(1) /*!< background pixel format RGB888 */ +#define BACKGROUND_PPF_RGB565 BPCTL_PPF(2) /*!< background pixel format RGB565 */ +#define BACKGROUND_PPF_ARG1555 BPCTL_PPF(3) /*!< background pixel format ARGB1555 */ +#define BACKGROUND_PPF_ARGB4444 BPCTL_PPF(4) /*!< background pixel format ARGB4444 */ +#define BACKGROUND_PPF_L8 BPCTL_PPF(5) /*!< background pixel format L8 */ +#define BACKGROUND_PPF_AL44 BPCTL_PPF(6) /*!< background pixel format AL44 */ +#define BACKGROUND_PPF_AL88 BPCTL_PPF(7) /*!< background pixel format AL88 */ +#define BACKGROUND_PPF_L4 BPCTL_PPF(8) /*!< background pixel format L4 */ +#define BACKGROUND_PPF_A8 BPCTL_PPF(9) /*!< background pixel format A8 */ +#define BACKGROUND_PPF_A4 BPCTL_PPF(10) /*!< background pixel format A4 */ + +/* IPA flags */ +#define IPA_FLAG_TAE IPA_INTF_TAEIF /*!< transfer access error interrupt flag */ +#define IPA_FLAG_FTF IPA_INTF_FTFIF /*!< full transfer finish interrupt flag */ +#define IPA_FLAG_TLM IPA_INTF_TLMIF /*!< transfer line mark interrupt flag */ +#define IPA_FLAG_LAC IPA_INTF_LACIF /*!< LUT access conflict interrupt flag */ +#define IPA_FLAG_LLF IPA_INTF_LLFIF /*!< LUT loading finish interrupt flag */ +#define IPA_FLAG_WCF IPA_INTF_WCFIF /*!< wrong configuration interrupt flag */ + +/* IPA interrupt enable or disable */ +#define IPA_INT_TAE IPA_CTL_TAEIE /*!< transfer access error interrupt */ +#define IPA_INT_FTF IPA_CTL_FTFIE /*!< full transfer finish interrupt */ +#define IPA_INT_TLM IPA_CTL_TLMIE /*!< transfer line mark interrupt */ +#define IPA_INT_LAC IPA_CTL_LACIE /*!< LUT access conflict interrupt */ +#define IPA_INT_LLF IPA_CTL_LLFIE /*!< LUT loading finish interrupt */ +#define IPA_INT_WCF IPA_CTL_WCFIE /*!< wrong configuration interrupt */ + +/* IPA interrupt flags */ +#define IPA_INT_FLAG_TAE IPA_INTF_TAEIF /*!< transfer access error interrupt flag */ +#define IPA_INT_FLAG_FTF IPA_INTF_FTFIF /*!< full transfer finish interrupt flag */ +#define IPA_INT_FLAG_TLM IPA_INTF_TLMIF /*!< transfer line mark interrupt flag */ +#define IPA_INT_FLAG_LAC IPA_INTF_LACIF /*!< LUT access conflict interrupt flag */ +#define IPA_INT_FLAG_LLF IPA_INTF_LLFIF /*!< LUT loading finish interrupt flag */ +#define IPA_INT_FLAG_WCF IPA_INTF_WCFIF /*!< wrong configuration interrupt flag */ + +/* function declarations */ +/* functions enable or disable, pixel format convert mode set */ +/* deinitialize IPA */ +void ipa_deinit(void); +/* enable IPA transfer */ +void ipa_transfer_enable(void); +/* enable IPA transfer hang up */ +void ipa_transfer_hangup_enable(void); +/* disable IPA transfer hang up */ +void ipa_transfer_hangup_disable(void); +/* enable IPA transfer stop */ +void ipa_transfer_stop_enable(void); +/* disable IPA transfer stop */ +void ipa_transfer_stop_disable(void); +/* enable IPA foreground LUT loading */ +void ipa_foreground_lut_loading_enable(void); +/* enable IPA background LUT loading */ +void ipa_background_lut_loading_enable(void); +/* set pixel format convert mode, the function is invalid when the IPA transfer is enabled */ +void ipa_pixel_format_convert_mode_set(uint32_t pfcm); + +/* structure initialization, foreground, background, destination and LUT initialization */ +/* initialize the structure of IPA foreground parameter struct with the default values, it is + suggested that call this function after an ipa_foreground_parameter_struct structure is defined */ +void ipa_foreground_struct_para_init(ipa_foreground_parameter_struct* foreground_struct); +/* initialize foreground parameters */ +void ipa_foreground_init(ipa_foreground_parameter_struct* foreground_struct); +/* initialize the structure of IPA background parameter struct with the default values, it is + suggested that call this function after an ipa_background_parameter_struct structure is defined */ +void ipa_background_struct_para_init(ipa_background_parameter_struct* background_struct); +/* initialize background parameters */ +void ipa_background_init(ipa_background_parameter_struct* background_struct); +/* initialize the structure of IPA destination parameter struct with the default values, it is + suggested that call this function after an ipa_destination_parameter_struct structure is defined */ +void ipa_destination_struct_para_init(ipa_destination_parameter_struct* destination_struct); +/* initialize destination parameters */ +void ipa_destination_init(ipa_destination_parameter_struct* destination_struct); +/* initialize IPA foreground LUT parameters */ +void ipa_foreground_lut_init(uint8_t fg_lut_num, uint8_t fg_lut_pf, uint32_t fg_lut_addr); +/* initialize IPA background LUT parameters */ +void ipa_background_lut_init(uint8_t bg_lut_num, uint8_t bg_lut_pf, uint32_t bg_lut_addr); + +/* configuration functions */ +/* configure IPA line mark */ +void ipa_line_mark_config(uint16_t line_num); +/* inter-timer enable or disable */ +void ipa_inter_timer_config(uint8_t timer_cfg); +/* configure the number of clock cycles interval */ +void ipa_interval_clock_num_config(uint8_t clk_num); + +/* flag and interrupt functions */ +/* get IPA flag status in IPA_INTF register */ +FlagStatus ipa_flag_get(uint32_t flag); +/* clear IPA flag in IPA_INTF register */ +void ipa_flag_clear(uint32_t flag); +/* enable IPA interrupt */ +void ipa_interrupt_enable(uint32_t int_flag); +/* disable IPA interrupt */ +void ipa_interrupt_disable(uint32_t int_flag); +/* get IPA interrupt flag */ +FlagStatus ipa_interrupt_flag_get(uint32_t int_flag); +/* clear IPA interrupt flag */ +void ipa_interrupt_flag_clear(uint32_t int_flag); + +#endif /* GD32F4XX_IPA_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_iref.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_iref.h new file mode 100644 index 0000000000..b66eb4734d --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_iref.h @@ -0,0 +1,186 @@ +/*! + \file gd32f4xx_iref.h + \brief definitions for the IREF + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_IREF_H +#define GD32F4XX_IREF_H + +#include "gd32f4xx.h" + +/* IREF definitions */ +#define IREF IREF_BASE /*!< IREF base address */ + +/* registers definitions */ +#define IREF_CTL REG32(IREF + 0x300U) /*!< IREF control register */ + +/* bits definitions */ +/* IREF_CTL */ +#define IREF_CTL_CSDT BITS(0,5) /*!< current step data */ +#define IREF_CTL_SCMOD BIT(7) /*!< sink current mode */ +#define IREF_CTL_CPT BITS(8,12) /*!< current precision trim */ +#define IREF_CTL_SSEL BIT(14) /*!< step selection */ +#define IREF_CTL_CREN BIT(15) /*!< current reference enable */ + +/* constants definitions */ +/* IREF current precision trim */ +#define CTL_CPT(regval) (BITS(8,12) & ((uint32_t)(regval) << 8)) +#define IREF_CUR_PRECISION_TRIM_0 CTL_CPT(0) /*!< IREF current precision trim 0 */ +#define IREF_CUR_PRECISION_TRIM_1 CTL_CPT(1) /*!< IREF current precision trim 1 */ +#define IREF_CUR_PRECISION_TRIM_2 CTL_CPT(2) /*!< IREF current precision trim 2 */ +#define IREF_CUR_PRECISION_TRIM_3 CTL_CPT(3) /*!< IREF current precision trim 3 */ +#define IREF_CUR_PRECISION_TRIM_4 CTL_CPT(4) /*!< IREF current precision trim 4 */ +#define IREF_CUR_PRECISION_TRIM_5 CTL_CPT(5) /*!< IREF current precision trim 5 */ +#define IREF_CUR_PRECISION_TRIM_6 CTL_CPT(6) /*!< IREF current precision trim 6 */ +#define IREF_CUR_PRECISION_TRIM_7 CTL_CPT(7) /*!< IREF current precision trim 7 */ +#define IREF_CUR_PRECISION_TRIM_8 CTL_CPT(8) /*!< IREF current precision trim 8 */ +#define IREF_CUR_PRECISION_TRIM_9 CTL_CPT(9) /*!< IREF current precision trim 9 */ +#define IREF_CUR_PRECISION_TRIM_10 CTL_CPT(10) /*!< IREF current precision trim 10 */ +#define IREF_CUR_PRECISION_TRIM_11 CTL_CPT(11) /*!< IREF current precision trim 11 */ +#define IREF_CUR_PRECISION_TRIM_12 CTL_CPT(12) /*!< IREF current precision trim 12 */ +#define IREF_CUR_PRECISION_TRIM_13 CTL_CPT(13) /*!< IREF current precision trim 13 */ +#define IREF_CUR_PRECISION_TRIM_14 CTL_CPT(14) /*!< IREF current precision trim 14 */ +#define IREF_CUR_PRECISION_TRIM_15 CTL_CPT(15) /*!< IREF current precision trim 15 */ +#define IREF_CUR_PRECISION_TRIM_16 CTL_CPT(16) /*!< IREF current precision trim 16 */ +#define IREF_CUR_PRECISION_TRIM_17 CTL_CPT(17) /*!< IREF current precision trim 17 */ +#define IREF_CUR_PRECISION_TRIM_18 CTL_CPT(18) /*!< IREF current precision trim 18 */ +#define IREF_CUR_PRECISION_TRIM_19 CTL_CPT(19) /*!< IREF current precision trim 19 */ +#define IREF_CUR_PRECISION_TRIM_20 CTL_CPT(20) /*!< IREF current precision trim 20 */ +#define IREF_CUR_PRECISION_TRIM_21 CTL_CPT(21) /*!< IREF current precision trim 21 */ +#define IREF_CUR_PRECISION_TRIM_22 CTL_CPT(22) /*!< IREF current precision trim 22 */ +#define IREF_CUR_PRECISION_TRIM_23 CTL_CPT(23) /*!< IREF current precision trim 23 */ +#define IREF_CUR_PRECISION_TRIM_24 CTL_CPT(24) /*!< IREF current precision trim 24 */ +#define IREF_CUR_PRECISION_TRIM_25 CTL_CPT(25) /*!< IREF current precision trim 25 */ +#define IREF_CUR_PRECISION_TRIM_26 CTL_CPT(26) /*!< IREF current precision trim 26 */ +#define IREF_CUR_PRECISION_TRIM_27 CTL_CPT(27) /*!< IREF current precision trim 27 */ +#define IREF_CUR_PRECISION_TRIM_28 CTL_CPT(28) /*!< IREF current precision trim 28 */ +#define IREF_CUR_PRECISION_TRIM_29 CTL_CPT(29) /*!< IREF current precision trim 29 */ +#define IREF_CUR_PRECISION_TRIM_30 CTL_CPT(30) /*!< IREF current precision trim 30 */ +#define IREF_CUR_PRECISION_TRIM_31 CTL_CPT(31) /*!< IREF current precision trim 31 */ + +/* IREF current step */ +#define CTL_CSDT(regval) (BITS(0,5) & ((uint32_t)(regval) << 0)) +#define IREF_CUR_STEP_DATA_0 CTL_CSDT(0) /*!< IREF current step data 0 */ +#define IREF_CUR_STEP_DATA_1 CTL_CSDT(1) /*!< IREF current step data 1 */ +#define IREF_CUR_STEP_DATA_2 CTL_CSDT(2) /*!< IREF current step data 2 */ +#define IREF_CUR_STEP_DATA_3 CTL_CSDT(3) /*!< IREF current step data 3 */ +#define IREF_CUR_STEP_DATA_4 CTL_CSDT(4) /*!< IREF current step data 4 */ +#define IREF_CUR_STEP_DATA_5 CTL_CSDT(5) /*!< IREF current step data 5 */ +#define IREF_CUR_STEP_DATA_6 CTL_CSDT(6) /*!< IREF current step data 6 */ +#define IREF_CUR_STEP_DATA_7 CTL_CSDT(7) /*!< IREF current step data 7 */ +#define IREF_CUR_STEP_DATA_8 CTL_CSDT(8) /*!< IREF current step data 8 */ +#define IREF_CUR_STEP_DATA_9 CTL_CSDT(9) /*!< IREF current step data 9 */ +#define IREF_CUR_STEP_DATA_10 CTL_CSDT(10) /*!< IREF current step data 10 */ +#define IREF_CUR_STEP_DATA_11 CTL_CSDT(11) /*!< IREF current step data 11 */ +#define IREF_CUR_STEP_DATA_12 CTL_CSDT(12) /*!< IREF current step data 12 */ +#define IREF_CUR_STEP_DATA_13 CTL_CSDT(13) /*!< IREF current step data 13 */ +#define IREF_CUR_STEP_DATA_14 CTL_CSDT(14) /*!< IREF current step data 14 */ +#define IREF_CUR_STEP_DATA_15 CTL_CSDT(15) /*!< IREF current step data 15 */ +#define IREF_CUR_STEP_DATA_16 CTL_CSDT(16) /*!< IREF current step data 16 */ +#define IREF_CUR_STEP_DATA_17 CTL_CSDT(17) /*!< IREF current step data 17 */ +#define IREF_CUR_STEP_DATA_18 CTL_CSDT(18) /*!< IREF current step data 18 */ +#define IREF_CUR_STEP_DATA_19 CTL_CSDT(19) /*!< IREF current step data 19 */ +#define IREF_CUR_STEP_DATA_20 CTL_CSDT(20) /*!< IREF current step data 20 */ +#define IREF_CUR_STEP_DATA_21 CTL_CSDT(21) /*!< IREF current step data 21 */ +#define IREF_CUR_STEP_DATA_22 CTL_CSDT(22) /*!< IREF current step data 22 */ +#define IREF_CUR_STEP_DATA_23 CTL_CSDT(23) /*!< IREF current step data 23 */ +#define IREF_CUR_STEP_DATA_24 CTL_CSDT(24) /*!< IREF current step data 24 */ +#define IREF_CUR_STEP_DATA_25 CTL_CSDT(25) /*!< IREF current step data 25 */ +#define IREF_CUR_STEP_DATA_26 CTL_CSDT(26) /*!< IREF current step data 26 */ +#define IREF_CUR_STEP_DATA_27 CTL_CSDT(27) /*!< IREF current step data 27 */ +#define IREF_CUR_STEP_DATA_28 CTL_CSDT(28) /*!< IREF current step data 28 */ +#define IREF_CUR_STEP_DATA_29 CTL_CSDT(29) /*!< IREF current step data 29 */ +#define IREF_CUR_STEP_DATA_30 CTL_CSDT(30) /*!< IREF current step data 30 */ +#define IREF_CUR_STEP_DATA_31 CTL_CSDT(31) /*!< IREF current step data 31 */ +#define IREF_CUR_STEP_DATA_32 CTL_CSDT(32) /*!< IREF current step data 32 */ +#define IREF_CUR_STEP_DATA_33 CTL_CSDT(33) /*!< IREF current step data 33 */ +#define IREF_CUR_STEP_DATA_34 CTL_CSDT(34) /*!< IREF current step data 34 */ +#define IREF_CUR_STEP_DATA_35 CTL_CSDT(35) /*!< IREF current step data 35 */ +#define IREF_CUR_STEP_DATA_36 CTL_CSDT(36) /*!< IREF current step data 36 */ +#define IREF_CUR_STEP_DATA_37 CTL_CSDT(37) /*!< IREF current step data 37 */ +#define IREF_CUR_STEP_DATA_38 CTL_CSDT(38) /*!< IREF current step data 38 */ +#define IREF_CUR_STEP_DATA_39 CTL_CSDT(39) /*!< IREF current step data 39 */ +#define IREF_CUR_STEP_DATA_40 CTL_CSDT(40) /*!< IREF current step data 40 */ +#define IREF_CUR_STEP_DATA_41 CTL_CSDT(41) /*!< IREF current step data 41 */ +#define IREF_CUR_STEP_DATA_42 CTL_CSDT(42) /*!< IREF current step data 42 */ +#define IREF_CUR_STEP_DATA_43 CTL_CSDT(43) /*!< IREF current step data 43 */ +#define IREF_CUR_STEP_DATA_44 CTL_CSDT(44) /*!< IREF current step data 44 */ +#define IREF_CUR_STEP_DATA_45 CTL_CSDT(45) /*!< IREF current step data 45 */ +#define IREF_CUR_STEP_DATA_46 CTL_CSDT(46) /*!< IREF current step data 46 */ +#define IREF_CUR_STEP_DATA_47 CTL_CSDT(47) /*!< IREF current step data 47 */ +#define IREF_CUR_STEP_DATA_48 CTL_CSDT(48) /*!< IREF current step data 48 */ +#define IREF_CUR_STEP_DATA_49 CTL_CSDT(49) /*!< IREF current step data 49 */ +#define IREF_CUR_STEP_DATA_50 CTL_CSDT(50) /*!< IREF current step data 50 */ +#define IREF_CUR_STEP_DATA_51 CTL_CSDT(51) /*!< IREF current step data 51 */ +#define IREF_CUR_STEP_DATA_52 CTL_CSDT(52) /*!< IREF current step data 52 */ +#define IREF_CUR_STEP_DATA_53 CTL_CSDT(53) /*!< IREF current step data 53 */ +#define IREF_CUR_STEP_DATA_54 CTL_CSDT(54) /*!< IREF current step data 54 */ +#define IREF_CUR_STEP_DATA_55 CTL_CSDT(55) /*!< IREF current step data 54 */ +#define IREF_CUR_STEP_DATA_56 CTL_CSDT(56) /*!< IREF current step data 54 */ +#define IREF_CUR_STEP_DATA_57 CTL_CSDT(57) /*!< IREF current step data 57 */ +#define IREF_CUR_STEP_DATA_58 CTL_CSDT(58) /*!< IREF current step data 58 */ +#define IREF_CUR_STEP_DATA_59 CTL_CSDT(59) /*!< IREF current step data 59 */ +#define IREF_CUR_STEP_DATA_60 CTL_CSDT(60) /*!< IREF current step data 60 */ +#define IREF_CUR_STEP_DATA_61 CTL_CSDT(61) /*!< IREF current step data 61 */ +#define IREF_CUR_STEP_DATA_62 CTL_CSDT(62) /*!< IREF current step data 62 */ +#define IREF_CUR_STEP_DATA_63 CTL_CSDT(63) /*!< IREF current step data 63 */ + +/* IREF mode selection */ +#define IREF_STEP(regval) (BIT(14) & ((uint32_t)(regval) << 14)) +#define IREF_MODE_LOW_POWER IREF_STEP(0) /*!< low power, 1uA step */ +#define IREF_MODE_HIGH_CURRENT IREF_STEP(1) /*!< high current, 8uA step */ + +/* IREF sink current mode*/ +#define IREF_CURRENT(regval) (BIT(7) & ((uint32_t)(regval) << 7)) +#define IREF_SOURCE_CURRENT IREF_CURRENT(0) /*!< IREF source current */ +#define IREF_SINK_CURRENT IREF_CURRENT(1) /*!< IREF sink current */ + +/* function declarations */ +/* deinit IREF */ +void iref_deinit(void); +/* enable IREF */ +void iref_enable(void); +/* disable IREF */ +void iref_disable(void); + +/* set IREF mode*/ +void iref_mode_set(uint32_t step); +/* set IREF sink current mode*/ +void iref_sink_set(uint32_t sinkmode); +/* set IREF current precision trim value */ +void iref_precision_trim_value_set(uint32_t precisiontrim); +/* set IREF step data*/ +void iref_step_data_config(uint32_t stepdata); + +#endif /* GD32F4XX_IREF_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_misc.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_misc.h new file mode 100644 index 0000000000..68a2b93909 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_misc.h @@ -0,0 +1,93 @@ +/*! + \file gd32f4xx_misc.h + \brief definitions for the MISC + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_MISC_H +#define GD32F4XX_MISC_H + +#include "gd32f4xx.h" + +/* constants definitions */ +/* set the RAM and FLASH base address */ +#define NVIC_VECTTAB_RAM ((uint32_t)0x20000000) /*!< RAM base address */ +#define NVIC_VECTTAB_FLASH ((uint32_t)0x08000000) /*!< Flash base address */ + +/* set the NVIC vector table offset mask */ +#define NVIC_VECTTAB_OFFSET_MASK ((uint32_t)0x1FFFFF80) + +/* the register key mask, if you want to do the write operation, you should write 0x5FA to VECTKEY bits */ +#define NVIC_AIRCR_VECTKEY_MASK ((uint32_t)0x05FA0000) + +/* priority group - define the pre-emption priority and the subpriority */ +#define NVIC_PRIGROUP_PRE0_SUB4 ((uint32_t)0x700) /*!< 0 bits for pre-emption priority 4 bits for subpriority */ +#define NVIC_PRIGROUP_PRE1_SUB3 ((uint32_t)0x600) /*!< 1 bits for pre-emption priority 3 bits for subpriority */ +#define NVIC_PRIGROUP_PRE2_SUB2 ((uint32_t)0x500) /*!< 2 bits for pre-emption priority 2 bits for subpriority */ +#define NVIC_PRIGROUP_PRE3_SUB1 ((uint32_t)0x400) /*!< 3 bits for pre-emption priority 1 bits for subpriority */ +#define NVIC_PRIGROUP_PRE4_SUB0 ((uint32_t)0x300) /*!< 4 bits for pre-emption priority 0 bits for subpriority */ + +/* choose the method to enter or exit the lowpower mode */ +#define SCB_SCR_SLEEPONEXIT ((uint8_t)0x02) /*!< choose the the system whether enter low power mode by exiting from ISR */ +#define SCB_SCR_SLEEPDEEP ((uint8_t)0x04) /*!< choose the the system enter the DEEPSLEEP mode or SLEEP mode */ +#define SCB_SCR_SEVONPEND ((uint8_t)0x10) /*!< choose the interrupt source that can wake up the lowpower mode */ + +#define SCB_LPM_SLEEP_EXIT_ISR SCB_SCR_SLEEPONEXIT +#define SCB_LPM_DEEPSLEEP SCB_SCR_SLEEPDEEP +#define SCB_LPM_WAKE_BY_ALL_INT SCB_SCR_SEVONPEND + +/* choose the systick clock source */ +#define SYSTICK_CLKSOURCE_HCLK_DIV8 ((uint32_t)0xFFFFFFFBU) /*!< systick clock source is from HCLK/8 */ +#define SYSTICK_CLKSOURCE_HCLK ((uint32_t)0x00000004U) /*!< systick clock source is from HCLK */ + +/* function declarations */ +/* set the priority group */ +void nvic_priority_group_set(uint32_t nvic_prigroup); + +/* enable NVIC request */ +void nvic_irq_enable(uint8_t nvic_irq, uint8_t nvic_irq_pre_priority, uint8_t nvic_irq_sub_priority); +/* disable NVIC request */ +void nvic_irq_disable(uint8_t nvic_irq); + +/* set the NVIC vector table base address */ +void nvic_vector_table_set(uint32_t nvic_vict_tab, uint32_t offset); + +/* set the state of the low power mode */ +void system_lowpower_set(uint8_t lowpower_mode); +/* reset the state of the low power mode */ +void system_lowpower_reset(uint8_t lowpower_mode); + +/* set the systick clock source */ +void systick_clksource_set(uint32_t systick_clksource); + +#endif /* GD32F4XX_MISC_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_pmu.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_pmu.h new file mode 100644 index 0000000000..72a63ec8b6 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_pmu.h @@ -0,0 +1,199 @@ +/*! + \file gd32f4xx_pmu.h + \brief definitions for the PMU + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + + +#ifndef GD32F4XX_PMU_H +#define GD32F4XX_PMU_H + +#include "gd32f4xx.h" + +/* PMU definitions */ +#define PMU PMU_BASE /*!< PMU base address */ + +/* registers definitions */ +#define PMU_CTL REG32((PMU) + 0x00U) /*!< PMU control register */ +#define PMU_CS REG32((PMU) + 0x04U) /*!< PMU control and status register */ + +/* bits definitions */ +/* PMU_CTL */ +#define PMU_CTL_LDOLP BIT(0) /*!< LDO low power mode */ +#define PMU_CTL_STBMOD BIT(1) /*!< standby mode */ +#define PMU_CTL_WURST BIT(2) /*!< wakeup flag reset */ +#define PMU_CTL_STBRST BIT(3) /*!< standby flag reset */ +#define PMU_CTL_LVDEN BIT(4) /*!< low voltage detector enable */ +#define PMU_CTL_LVDT BITS(5,7) /*!< low voltage detector threshold */ +#define PMU_CTL_BKPWEN BIT(8) /*!< backup domain write enable */ +#define PMU_CTL_LDLP BIT(10) /*!< low-driver mode when use low power LDO */ +#define PMU_CTL_LDNP BIT(11) /*!< low-driver mode when use normal power LDO */ +#define PMU_CTL_LDOVS BITS(14,15) /*!< LDO output voltage select */ +#define PMU_CTL_HDEN BIT(16) /*!< high-driver mode enable */ +#define PMU_CTL_HDS BIT(17) /*!< high-driver mode switch */ +#define PMU_CTL_LDEN BITS(18,19) /*!< low-driver mode enable in deep-sleep mode */ + +/* PMU_CS */ +#define PMU_CS_WUF BIT(0) /*!< wakeup flag */ +#define PMU_CS_STBF BIT(1) /*!< standby flag */ +#define PMU_CS_LVDF BIT(2) /*!< low voltage detector status flag */ +#define PMU_CS_BLDORF BIT(3) /*!< backup SRAM LDO ready flag */ +#define PMU_CS_WUPEN BIT(8) /*!< wakeup pin enable */ +#define PMU_CS_BLDOON BIT(9) /*!< backup SRAM LDO on */ +#define PMU_CS_LDOVSRF BIT(14) /*!< LDO voltage select ready flag */ +#define PMU_CS_HDRF BIT(16) /*!< high-driver ready flag */ +#define PMU_CS_HDSRF BIT(17) /*!< high-driver switch ready flag */ +#define PMU_CS_LDRF BITS(18,19) /*!< Low-driver mode ready flag */ + +/* constants definitions */ +/* PMU low voltage detector threshold definitions */ +#define CTL_LVDT(regval) (BITS(5,7)&((uint32_t)(regval)<<5)) +#define PMU_LVDT_0 CTL_LVDT(0) /*!< voltage threshold is 2.1V */ +#define PMU_LVDT_1 CTL_LVDT(1) /*!< voltage threshold is 2.3V */ +#define PMU_LVDT_2 CTL_LVDT(2) /*!< voltage threshold is 2.4V */ +#define PMU_LVDT_3 CTL_LVDT(3) /*!< voltage threshold is 2.6V */ +#define PMU_LVDT_4 CTL_LVDT(4) /*!< voltage threshold is 2.7V */ +#define PMU_LVDT_5 CTL_LVDT(5) /*!< voltage threshold is 2.9V */ +#define PMU_LVDT_6 CTL_LVDT(6) /*!< voltage threshold is 3.0V */ +#define PMU_LVDT_7 CTL_LVDT(7) /*!< voltage threshold is 3.1V */ + +/* PMU LDO output voltage select definitions */ +#define CTL_LDOVS(regval) (BITS(14,15)&((uint32_t)(regval)<<14)) +#define PMU_LDOVS_LOW CTL_LDOVS(1) /*!< LDO output voltage low mode */ +#define PMU_LDOVS_MID CTL_LDOVS(2) /*!< LDO output voltage mid mode */ +#define PMU_LDOVS_HIGH CTL_LDOVS(3) /*!< LDO output voltage high mode */ + +/* PMU low-driver mode enable in deep-sleep mode */ +#define CTL_LDEN(regval) (BITS(18,19)&((uint32_t)(regval)<<18)) +#define PMU_LOWDRIVER_DISABLE CTL_LDEN(0) /*!< low-driver mode disable in deep-sleep mode */ +#define PMU_LOWDRIVER_ENABLE CTL_LDEN(3) /*!< low-driver mode enable in deep-sleep mode */ + +/* PMU high-driver mode switch */ +#define CTL_HDS(regval) (BIT(17)&((uint32_t)(regval)<<17)) +#define PMU_HIGHDR_SWITCH_NONE CTL_HDS(0) /*!< no high-driver mode switch */ +#define PMU_HIGHDR_SWITCH_EN CTL_HDS(1) /*!< high-driver mode switch */ + +/* PMU low-driver mode when use low power LDO */ +#define CTL_LDLP(regval) (BIT(10)&((uint32_t)(regval)<<10)) +#define PMU_NORMALDR_LOWPWR CTL_LDLP(0) /*!< normal driver when use low power LDO */ +#define PMU_LOWDR_LOWPWR CTL_LDLP(1) /*!< low-driver mode enabled when LDEN is 11 and use low power LDO */ + +/* PMU low-driver mode when use normal power LDO */ +#define CTL_LDNP(regval) (BIT(11)&((uint32_t)(regval)<<11)) +#define PMU_NORMALDR_NORMALPWR CTL_LDNP(0) /*!< normal driver when use normal power LDO */ +#define PMU_LOWDR_NORMALPWR CTL_LDNP(1) /*!< low-driver mode enabled when LDEN is 11 and use normal power LDO */ + +/* PMU low power mode ready flag definitions */ +#define CS_LDRF(regval) (BITS(18,19)&((uint32_t)(regval)<<18)) +#define PMU_LDRF_NORMAL CS_LDRF(0) /*!< normal driver in deep-sleep mode */ +#define PMU_LDRF_LOWDRIVER CS_LDRF(3) /*!< low-driver mode in deep-sleep mode */ + +/* PMU backup SRAM LDO on or off */ +#define CS_BLDOON(regval) (BIT(9)&((uint32_t)(regval)<<9)) +#define PMU_BLDOON_OFF CS_BLDOON(0) /*!< backup SRAM LDO off */ +#define PMU_BLDOON_ON CS_BLDOON(1) /*!< the backup SRAM LDO on */ + +/* PMU flag definitions */ +#define PMU_FLAG_WAKEUP PMU_CS_WUF /*!< wakeup flag status */ +#define PMU_FLAG_STANDBY PMU_CS_STBF /*!< standby flag status */ +#define PMU_FLAG_LVD PMU_CS_LVDF /*!< lvd flag status */ +#define PMU_FLAG_BLDORF PMU_CS_BLDORF /*!< backup SRAM LDO ready flag */ +#define PMU_FLAG_LDOVSRF PMU_CS_LDOVSRF /*!< LDO voltage select ready flag */ +#define PMU_FLAG_HDRF PMU_CS_HDRF /*!< high-driver ready flag */ +#define PMU_FLAG_HDSRF PMU_CS_HDSRF /*!< high-driver switch ready flag */ +#define PMU_FLAG_LDRF PMU_CS_LDRF /*!< low-driver mode ready flag */ + +/* PMU ldo definitions */ +#define PMU_LDO_NORMAL ((uint32_t)0x00000000U) /*!< LDO normal work when PMU enter deepsleep mode */ +#define PMU_LDO_LOWPOWER PMU_CTL_LDOLP /*!< LDO work at low power status when PMU enter deepsleep mode */ + +/* PMU flag reset definitions */ +#define PMU_FLAG_RESET_WAKEUP ((uint8_t)0x00U) /*!< wakeup flag reset */ +#define PMU_FLAG_RESET_STANDBY ((uint8_t)0x01U) /*!< standby flag reset */ + +/* PMU command constants definitions */ +#define WFI_CMD ((uint8_t)0x00U) /*!< use WFI command */ +#define WFE_CMD ((uint8_t)0x01U) /*!< use WFE command */ + +/* function declarations */ +/* reset PMU register */ +void pmu_deinit(void); + +/* select low voltage detector threshold */ +void pmu_lvd_select(uint32_t lvdt_n); +/* LDO output voltage select */ +void pmu_ldo_output_select(uint32_t ldo_output); +/* PMU lvd disable */ +void pmu_lvd_disable(void); + +/* functions of low-driver mode and high-driver mode in deep-sleep mode */ +/* high-driver mode switch */ +void pmu_highdriver_switch_select(uint32_t highdr_switch); +/* high-driver mode enable */ +void pmu_highdriver_mode_enable(void); +/* high-driver mode disable */ +void pmu_highdriver_mode_disable(void); +/* low-driver mode enable in deep-sleep mode */ +void pmu_low_driver_mode_enable(uint32_t lowdr_mode); +/* in deep-sleep mode, low-driver mode when use low power LDO */ +void pmu_lowdriver_lowpower_config(uint32_t mode); +/* in deep-sleep mode, low-driver mode when use normal power LDO */ +void pmu_lowdriver_normalpower_config(uint32_t mode); + +/* set PMU mode */ +/* PMU work at sleep mode */ +void pmu_to_sleepmode(uint8_t sleepmodecmd); +/* PMU work at deepsleep mode */ +void pmu_to_deepsleepmode(uint32_t ldo, uint8_t deepsleepmodecmd); +/* PMU work at standby mode */ +void pmu_to_standbymode(uint8_t standbymodecmd); +/* PMU wakeup pin enable */ +void pmu_wakeup_pin_enable(void); +/* PMU wakeup pin disable */ +void pmu_wakeup_pin_disable(void); + +/* backup related functions */ +/* backup SRAM LDO on */ +void pmu_backup_ldo_config(uint32_t bkp_ldo); +/* backup domain write enable */ +void pmu_backup_write_enable(void); +/* backup domain write disable */ +void pmu_backup_write_disable(void); + +/* flag functions */ +/* reset flag bit */ +void pmu_flag_reset(uint32_t flag_reset); +/* get flag status */ +FlagStatus pmu_flag_get(uint32_t pmu_flag); + +#endif /* GD32F4XX_PMU_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_rcu.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_rcu.h new file mode 100644 index 0000000000..da53d66f82 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_rcu.h @@ -0,0 +1,1179 @@ +/*! + \file gd32f4xx_rcu.h + \brief definitions for the RCU + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_RCU_H +#define GD32F4XX_RCU_H + +#include "gd32f4xx.h" + +/* RCU definitions */ +#define RCU RCU_BASE + +/* registers definitions */ +#define RCU_CTL REG32(RCU + 0x00U) /*!< control register */ +#define RCU_PLL REG32(RCU + 0x04U) /*!< PLL register */ +#define RCU_CFG0 REG32(RCU + 0x08U) /*!< clock configuration register 0 */ +#define RCU_INT REG32(RCU + 0x0CU) /*!< clock interrupt register */ +#define RCU_AHB1RST REG32(RCU + 0x10U) /*!< AHB1 reset register */ +#define RCU_AHB2RST REG32(RCU + 0x14U) /*!< AHB2 reset register */ +#define RCU_AHB3RST REG32(RCU + 0x18U) /*!< AHB3 reset register */ +#define RCU_APB1RST REG32(RCU + 0x20U) /*!< APB1 reset register */ +#define RCU_APB2RST REG32(RCU + 0x24U) /*!< APB2 reset register */ +#define RCU_AHB1EN REG32(RCU + 0x30U) /*!< AHB1 enable register */ +#define RCU_AHB2EN REG32(RCU + 0x34U) /*!< AHB2 enable register */ +#define RCU_AHB3EN REG32(RCU + 0x38U) /*!< AHB3 enable register */ +#define RCU_APB1EN REG32(RCU + 0x40U) /*!< APB1 enable register */ +#define RCU_APB2EN REG32(RCU + 0x44U) /*!< APB2 enable register */ +#define RCU_AHB1SPEN REG32(RCU + 0x50U) /*!< AHB1 sleep mode enable register */ +#define RCU_AHB2SPEN REG32(RCU + 0x54U) /*!< AHB2 sleep mode enable register */ +#define RCU_AHB3SPEN REG32(RCU + 0x58U) /*!< AHB3 sleep mode enable register */ +#define RCU_APB1SPEN REG32(RCU + 0x60U) /*!< APB1 sleep mode enable register */ +#define RCU_APB2SPEN REG32(RCU + 0x64U) /*!< APB2 sleep mode enable register */ +#define RCU_BDCTL REG32(RCU + 0x70U) /*!< backup domain control register */ +#define RCU_RSTSCK REG32(RCU + 0x74U) /*!< reset source / clock register */ +#define RCU_PLLSSCTL REG32(RCU + 0x80U) /*!< PLL clock spread spectrum control register */ +#define RCU_PLLI2S REG32(RCU + 0x84U) /*!< PLLI2S register */ +#define RCU_PLLSAI REG32(RCU + 0x88U) /*!< PLLSAI register */ +#define RCU_CFG1 REG32(RCU + 0x8CU) /*!< clock configuration register 1 */ +#define RCU_ADDCTL REG32(RCU + 0xC0U) /*!< Additional clock control register */ +#define RCU_ADDINT REG32(RCU + 0xCCU) /*!< Additional clock interrupt register */ +#define RCU_ADDAPB1RST REG32(RCU + 0xE0U) /*!< APB1 additional reset register */ +#define RCU_ADDAPB1EN REG32(RCU + 0xE4U) /*!< APB1 additional enable register */ +#define RCU_ADDAPB1SPEN REG32(RCU + 0xE8U) /*!< APB1 additional sleep mode enable register */ +#define RCU_VKEY REG32(RCU + 0x100U) /*!< voltage key register */ +#define RCU_DSV REG32(RCU + 0x134U) /*!< deep-sleep mode voltage register */ + +/* bits definitions */ +/* RCU_CTL */ +#define RCU_CTL_IRC16MEN BIT(0) /*!< internal high speed oscillator enable */ +#define RCU_CTL_IRC16MSTB BIT(1) /*!< IRC16M high speed internal oscillator stabilization flag */ +#define RCU_CTL_IRC16MADJ BITS(3,7) /*!< high speed internal oscillator clock trim adjust value */ +#define RCU_CTL_IRC16MCALIB BITS(8,15) /*!< high speed internal oscillator calibration value register */ +#define RCU_CTL_HXTALEN BIT(16) /*!< external high speed oscillator enable */ +#define RCU_CTL_HXTALSTB BIT(17) /*!< external crystal oscillator clock stabilization flag */ +#define RCU_CTL_HXTALBPS BIT(18) /*!< external crystal oscillator clock bypass mode enable */ +#define RCU_CTL_CKMEN BIT(19) /*!< HXTAL clock monitor enable */ +#define RCU_CTL_PLLEN BIT(24) /*!< PLL enable */ +#define RCU_CTL_PLLSTB BIT(25) /*!< PLL Clock Stabilization Flag */ +#define RCU_CTL_PLLI2SEN BIT(26) /*!< PLLI2S enable */ +#define RCU_CTL_PLLI2SSTB BIT(27) /*!< PLLI2S Clock Stabilization Flag */ +#define RCU_CTL_PLLSAIEN BIT(28) /*!< PLLSAI enable */ +#define RCU_CTL_PLLSAISTB BIT(29) /*!< PLLSAI Clock Stabilization Flag */ + +/* RCU_PLL */ +#define RCU_PLL_PLLPSC BITS(0,5) /*!< The PLL VCO source clock prescaler */ +#define RCU_PLL_PLLN BITS(6,14) /*!< The PLL VCO clock multi factor */ +#define RCU_PLL_PLLP BITS(16,17) /*!< The PLLP output frequency division factor from PLL VCO clock */ +#define RCU_PLL_PLLSEL BIT(22) /*!< PLL Clock Source Selection */ +#define RCU_PLL_PLLQ BITS(24,27) /*!< The PLL Q output frequency division factor from PLL VCO clock */ + +/* RCU_CFG0 */ +#define RCU_CFG0_SCS BITS(0,1) /*!< system clock switch */ +#define RCU_CFG0_SCSS BITS(2,3) /*!< system clock switch status */ +#define RCU_CFG0_AHBPSC BITS(4,7) /*!< AHB prescaler selection */ +#define RCU_CFG0_APB1PSC BITS(10,12) /*!< APB1 prescaler selection */ +#define RCU_CFG0_APB2PSC BITS(13,15) /*!< APB2 prescaler selection */ +#define RCU_CFG0_RTCDIV BITS(16,20) /*!< RTC clock divider factor */ +#define RCU_CFG0_CKOUT0SEL BITS(21,22) /*!< CKOUT0 Clock Source Selection */ +#define RCU_CFG0_I2SSEL BIT(23) /*!< I2S Clock Source Selection */ +#define RCU_CFG0_CKOUT0DIV BITS(24,26) /*!< The CK_OUT0 divider which the CK_OUT0 frequency can be reduced */ +#define RCU_CFG0_CKOUT1DIV BITS(27,29) /*!< The CK_OUT1 divider which the CK_OUT1 frequency can be reduced */ +#define RCU_CFG0_CKOUT1SEL BITS(30,31) /*!< CKOUT1 Clock Source Selection */ + +/* RCU_INT */ +#define RCU_INT_IRC32KSTBIF BIT(0) /*!< IRC32K stabilization interrupt flag */ +#define RCU_INT_LXTALSTBIF BIT(1) /*!< LXTAL stabilization interrupt flag */ +#define RCU_INT_IRC16MSTBIF BIT(2) /*!< IRC16M stabilization interrupt flag */ +#define RCU_INT_HXTALSTBIF BIT(3) /*!< HXTAL stabilization interrupt flag */ +#define RCU_INT_PLLSTBIF BIT(4) /*!< PLL stabilization interrupt flag */ +#define RCU_INT_PLLI2SSTBIF BIT(5) /*!< PLLI2S stabilization interrupt flag */ +#define RCU_INT_PLLSAISTBIF BIT(6) /*!< PLLSAI stabilization interrupt flag */ +#define RCU_INT_CKMIF BIT(7) /*!< HXTAL clock stuck interrupt flag */ +#define RCU_INT_IRC32KSTBIE BIT(8) /*!< IRC32K stabilization interrupt enable */ +#define RCU_INT_LXTALSTBIE BIT(9) /*!< LXTAL stabilization interrupt enable */ +#define RCU_INT_IRC16MSTBIE BIT(10) /*!< IRC16M stabilization interrupt enable */ +#define RCU_INT_HXTALSTBIE BIT(11) /*!< HXTAL stabilization interrupt enable */ +#define RCU_INT_PLLSTBIE BIT(12) /*!< PLL stabilization interrupt enable */ +#define RCU_INT_PLLI2SSTBIE BIT(13) /*!< PLLI2S Stabilization Interrupt Enable */ +#define RCU_INT_PLLSAISTBIE BIT(14) /*!< PLLSAI Stabilization Interrupt Enable */ +#define RCU_INT_IRC32KSTBIC BIT(16) /*!< IRC32K Stabilization Interrupt Clear */ +#define RCU_INT_LXTALSTBIC BIT(17) /*!< LXTAL Stabilization Interrupt Clear */ +#define RCU_INT_IRC16MSTBIC BIT(18) /*!< IRC16M Stabilization Interrupt Clear */ +#define RCU_INT_HXTALSTBIC BIT(19) /*!< HXTAL Stabilization Interrupt Clear */ +#define RCU_INT_PLLSTBIC BIT(20) /*!< PLL stabilization Interrupt Clear */ +#define RCU_INT_PLLI2SSTBIC BIT(21) /*!< PLLI2S stabilization Interrupt Clear */ +#define RCU_INT_PLLSAISTBIC BIT(22) /*!< PLLSAI stabilization Interrupt Clear */ +#define RCU_INT_CKMIC BIT(23) /*!< HXTAL Clock Stuck Interrupt Clear */ + +/* RCU_AHB1RST */ +#define RCU_AHB1RST_PARST BIT(0) /*!< GPIO port A reset */ +#define RCU_AHB1RST_PBRST BIT(1) /*!< GPIO port B reset */ +#define RCU_AHB1RST_PCRST BIT(2) /*!< GPIO port C reset */ +#define RCU_AHB1RST_PDRST BIT(3) /*!< GPIO port D reset */ +#define RCU_AHB1RST_PERST BIT(4) /*!< GPIO port E reset */ +#define RCU_AHB1RST_PFRST BIT(5) /*!< GPIO port F reset */ +#define RCU_AHB1RST_PGRST BIT(6) /*!< GPIO port G reset */ +#define RCU_AHB1RST_PHRST BIT(7) /*!< GPIO port H reset */ +#define RCU_AHB1RST_PIRST BIT(8) /*!< GPIO port I reset */ +#define RCU_AHB1RST_CRCRST BIT(12) /*!< CRC reset */ +#define RCU_AHB1RST_DMA0RST BIT(21) /*!< DMA0 reset */ +#define RCU_AHB1RST_DMA1RST BIT(22) /*!< DMA1 reset */ +#define RCU_AHB1RST_IPARST BIT(23) /*!< IPA reset */ +#define RCU_AHB1RST_ENETRST BIT(25) /*!< ENET reset */ +#define RCU_AHB1RST_USBHSRST BIT(29) /*!< USBHS reset */ + +/* RCU_AHB2RST */ +#define RCU_AHB2RST_DCIRST BIT(0) /*!< DCI reset */ +#define RCU_AHB2RST_TRNGRST BIT(6) /*!< TRNG reset */ +#define RCU_AHB2RST_USBFSRST BIT(7) /*!< USBFS reset */ + +/* RCU_AHB3RST */ +#define RCU_AHB3RST_EXMCRST BIT(0) /*!< EXMC reset */ + +/* RCU_APB1RST */ +#define RCU_APB1RST_TIMER1RST BIT(0) /*!< TIMER1 reset */ +#define RCU_APB1RST_TIMER2RST BIT(1) /*!< TIMER2 reset */ +#define RCU_APB1RST_TIMER3RST BIT(2) /*!< TIMER3 reset */ +#define RCU_APB1RST_TIMER4RST BIT(3) /*!< TIMER4 reset */ +#define RCU_APB1RST_TIMER5RST BIT(4) /*!< TIMER5 reset */ +#define RCU_APB1RST_TIMER6RST BIT(5) /*!< TIMER6 reset */ +#define RCU_APB1RST_TIMER11RST BIT(6) /*!< TIMER11 reset */ +#define RCU_APB1RST_TIMER12RST BIT(7) /*!< TIMER12 reset */ +#define RCU_APB1RST_TIMER13RST BIT(8) /*!< TIMER13 reset */ +#define RCU_APB1RST_WWDGTRST BIT(11) /*!< WWDGT reset */ +#define RCU_APB1RST_SPI1RST BIT(14) /*!< SPI1 reset */ +#define RCU_APB1RST_SPI2RST BIT(15) /*!< SPI2 reset */ +#define RCU_APB1RST_USART1RST BIT(17) /*!< USART1 reset */ +#define RCU_APB1RST_USART2RST BIT(18) /*!< USART2 reset */ +#define RCU_APB1RST_UART3RST BIT(19) /*!< UART3 reset */ +#define RCU_APB1RST_UART4RST BIT(20) /*!< UART4 reset */ +#define RCU_APB1RST_I2C0RST BIT(21) /*!< I2C0 reset */ +#define RCU_APB1RST_I2C1RST BIT(22) /*!< I2C1 reset */ +#define RCU_APB1RST_I2C2RST BIT(23) /*!< I2C2 reset */ +#define RCU_APB1RST_CAN0RST BIT(25) /*!< CAN0 reset */ +#define RCU_APB1RST_CAN1RST BIT(26) /*!< CAN1 reset */ +#define RCU_APB1RST_PMURST BIT(28) /*!< PMU reset */ +#define RCU_APB1RST_DACRST BIT(29) /*!< DAC reset */ +#define RCU_APB1RST_UART6RST BIT(30) /*!< UART6 reset */ +#define RCU_APB1RST_UART7RST BIT(31) /*!< UART7 reset */ + +/* RCU_APB2RST */ +#define RCU_APB2RST_TIMER0RST BIT(0) /*!< TIMER0 reset */ +#define RCU_APB2RST_TIMER7RST BIT(1) /*!< TIMER7 reset */ +#define RCU_APB2RST_USART0RST BIT(4) /*!< USART0 reset */ +#define RCU_APB2RST_USART5RST BIT(5) /*!< USART5 reset */ +#define RCU_APB2RST_ADCRST BIT(8) /*!< ADC reset */ +#define RCU_APB2RST_SDIORST BIT(11) /*!< SDIO reset */ +#define RCU_APB2RST_SPI0RST BIT(12) /*!< SPI0 reset */ +#define RCU_APB2RST_SPI3RST BIT(13) /*!< SPI3 reset */ +#define RCU_APB2RST_SYSCFGRST BIT(14) /*!< SYSCFG reset */ +#define RCU_APB2RST_TIMER8RST BIT(16) /*!< TIMER8 reset */ +#define RCU_APB2RST_TIMER9RST BIT(17) /*!< TIMER9 reset */ +#define RCU_APB2RST_TIMER10RST BIT(18) /*!< TIMER10 reset */ +#define RCU_APB2RST_SPI4RST BIT(20) /*!< SPI4 reset */ +#define RCU_APB2RST_SPI5RST BIT(21) /*!< SPI5 reset */ +#define RCU_APB2RST_TLIRST BIT(26) /*!< TLI reset */ + +/* RCU_AHB1EN */ +#define RCU_AHB1EN_PAEN BIT(0) /*!< GPIO port A clock enable */ +#define RCU_AHB1EN_PBEN BIT(1) /*!< GPIO port B clock enable */ +#define RCU_AHB1EN_PCEN BIT(2) /*!< GPIO port C clock enable */ +#define RCU_AHB1EN_PDEN BIT(3) /*!< GPIO port D clock enable */ +#define RCU_AHB1EN_PEEN BIT(4) /*!< GPIO port E clock enable */ +#define RCU_AHB1EN_PFEN BIT(5) /*!< GPIO port F clock enable */ +#define RCU_AHB1EN_PGEN BIT(6) /*!< GPIO port G clock enable */ +#define RCU_AHB1EN_PHEN BIT(7) /*!< GPIO port H clock enable */ +#define RCU_AHB1EN_PIEN BIT(8) /*!< GPIO port I clock enable */ +#define RCU_AHB1EN_CRCEN BIT(12) /*!< CRC clock enable */ +#define RCU_AHB1EN_BKPSRAMEN BIT(18) /*!< BKPSRAM clock enable */ +#define RCU_AHB1EN_TCMSRAMEN BIT(20) /*!< TCMSRAM clock enable */ +#define RCU_AHB1EN_DMA0EN BIT(21) /*!< DMA0 clock enable */ +#define RCU_AHB1EN_DMA1EN BIT(22) /*!< DMA1 clock enable */ +#define RCU_AHB1EN_IPAEN BIT(23) /*!< IPA clock enable */ +#define RCU_AHB1EN_ENETEN BIT(25) /*!< ENET clock enable */ +#define RCU_AHB1EN_ENETTXEN BIT(26) /*!< Ethernet TX clock enable */ +#define RCU_AHB1EN_ENETRXEN BIT(27) /*!< Ethernet RX clock enable */ +#define RCU_AHB1EN_ENETPTPEN BIT(28) /*!< Ethernet PTP clock enable */ +#define RCU_AHB1EN_USBHSEN BIT(29) /*!< USBHS clock enable */ +#define RCU_AHB1EN_USBHSULPIEN BIT(30) /*!< USBHS ULPI clock enable */ + +/* RCU_AHB2EN */ +#define RCU_AHB2EN_DCIEN BIT(0) /*!< DCI clock enable */ +#define RCU_AHB2EN_TRNGEN BIT(6) /*!< TRNG clock enable */ +#define RCU_AHB2EN_USBFSEN BIT(7) /*!< USBFS clock enable */ + +/* RCU_AHB3EN */ +#define RCU_AHB3EN_EXMCEN BIT(0) /*!< EXMC clock enable */ + +/* RCU_APB1EN */ +#define RCU_APB1EN_TIMER1EN BIT(0) /*!< TIMER1 clock enable */ +#define RCU_APB1EN_TIMER2EN BIT(1) /*!< TIMER2 clock enable */ +#define RCU_APB1EN_TIMER3EN BIT(2) /*!< TIMER3 clock enable */ +#define RCU_APB1EN_TIMER4EN BIT(3) /*!< TIMER4 clock enable */ +#define RCU_APB1EN_TIMER5EN BIT(4) /*!< TIMER5 clock enable */ +#define RCU_APB1EN_TIMER6EN BIT(5) /*!< TIMER6 clock enable */ +#define RCU_APB1EN_TIMER11EN BIT(6) /*!< TIMER11 clock enable */ +#define RCU_APB1EN_TIMER12EN BIT(7) /*!< TIMER12 clock enable */ +#define RCU_APB1EN_TIMER13EN BIT(8) /*!< TIMER13 clock enable */ +#define RCU_APB1EN_WWDGTEN BIT(11) /*!< WWDGT clock enable */ +#define RCU_APB1EN_SPI1EN BIT(14) /*!< SPI1 clock enable */ +#define RCU_APB1EN_SPI2EN BIT(15) /*!< SPI2 clock enable */ +#define RCU_APB1EN_USART1EN BIT(17) /*!< USART1 clock enable */ +#define RCU_APB1EN_USART2EN BIT(18) /*!< USART2 clock enable */ +#define RCU_APB1EN_UART3EN BIT(19) /*!< UART3 clock enable */ +#define RCU_APB1EN_UART4EN BIT(20) /*!< UART4 clock enable */ +#define RCU_APB1EN_I2C0EN BIT(21) /*!< I2C0 clock enable */ +#define RCU_APB1EN_I2C1EN BIT(22) /*!< I2C1 clock enable */ +#define RCU_APB1EN_I2C2EN BIT(23) /*!< I2C2 clock enable */ +#define RCU_APB1EN_CAN0EN BIT(25) /*!< CAN0 clock enable */ +#define RCU_APB1EN_CAN1EN BIT(26) /*!< CAN1 clock enable */ +#define RCU_APB1EN_PMUEN BIT(28) /*!< PMU clock enable */ +#define RCU_APB1EN_DACEN BIT(29) /*!< DAC clock enable */ +#define RCU_APB1EN_UART6EN BIT(30) /*!< UART6 clock enable */ +#define RCU_APB1EN_UART7EN BIT(31) /*!< UART7 clock enable */ + +/* RCU_APB2EN */ +#define RCU_APB2EN_TIMER0EN BIT(0) /*!< TIMER0 clock enable */ +#define RCU_APB2EN_TIMER7EN BIT(1) /*!< TIMER7 clock enable */ +#define RCU_APB2EN_USART0EN BIT(4) /*!< USART0 clock enable */ +#define RCU_APB2EN_USART5EN BIT(5) /*!< USART5 clock enable */ +#define RCU_APB2EN_ADC0EN BIT(8) /*!< ADC0 clock enable */ +#define RCU_APB2EN_ADC1EN BIT(9) /*!< ADC1 clock enable */ +#define RCU_APB2EN_ADC2EN BIT(10) /*!< ADC2 clock enable */ +#define RCU_APB2EN_SDIOEN BIT(11) /*!< SDIO clock enable */ +#define RCU_APB2EN_SPI0EN BIT(12) /*!< SPI0 clock enable */ +#define RCU_APB2EN_SPI3EN BIT(13) /*!< SPI3 clock enable */ +#define RCU_APB2EN_SYSCFGEN BIT(14) /*!< SYSCFG clock enable */ +#define RCU_APB2EN_TIMER8EN BIT(16) /*!< TIMER8 clock enable */ +#define RCU_APB2EN_TIMER9EN BIT(17) /*!< TIMER9 clock enable */ +#define RCU_APB2EN_TIMER10EN BIT(18) /*!< TIMER10 clock enable */ +#define RCU_APB2EN_SPI4EN BIT(20) /*!< SPI4 clock enable */ +#define RCU_APB2EN_SPI5EN BIT(21) /*!< SPI5 clock enable */ +#define RCU_APB2EN_TLIEN BIT(26) /*!< TLI clock enable */ + +/* RCU_AHB1SPEN */ +#define RCU_AHB1SPEN_PASPEN BIT(0) /*!< GPIO port A clock enable when sleep mode */ +#define RCU_AHB1SPEN_PBSPEN BIT(1) /*!< GPIO port B clock enable when sleep mode */ +#define RCU_AHB1SPEN_PCSPEN BIT(2) /*!< GPIO port C clock enable when sleep mode */ +#define RCU_AHB1SPEN_PDSPEN BIT(3) /*!< GPIO port D clock enable when sleep mode */ +#define RCU_AHB1SPEN_PESPEN BIT(4) /*!< GPIO port E clock enable when sleep mode */ +#define RCU_AHB1SPEN_PFSPEN BIT(5) /*!< GPIO port F clock enable when sleep mode */ +#define RCU_AHB1SPEN_PGSPEN BIT(6) /*!< GPIO port G clock enable when sleep mode */ +#define RCU_AHB1SPEN_PHSPEN BIT(7) /*!< GPIO port H clock enable when sleep mode */ +#define RCU_AHB1SPEN_PISPEN BIT(8) /*!< GPIO port I clock enable when sleep mode */ +#define RCU_AHB1SPEN_CRCSPEN BIT(12) /*!< CRC clock enable when sleep mode */ +#define RCU_AHB1SPEN_FMCSPEN BIT(15) /*!< FMC clock enable when sleep mode */ +#define RCU_AHB1SPEN_SRAM0SPEN BIT(16) /*!< SRAM0 clock enable when sleep mode */ +#define RCU_AHB1SPEN_SRAM1SPEN BIT(17) /*!< SRAM1 clock enable when sleep mode */ +#define RCU_AHB1SPEN_BKPSRAMSPEN BIT(18) /*!< BKPSRAM clock enable when sleep mode */ +#define RCU_AHB1SPEN_SRAM2SPEN BIT(19) /*!< SRAM2 clock enable when sleep mode */ +#define RCU_AHB1SPEN_DMA0SPEN BIT(21) /*!< DMA0 clock when sleep mode enable */ +#define RCU_AHB1SPEN_DMA1SPEN BIT(22) /*!< DMA1 clock when sleep mode enable */ +#define RCU_AHB1SPEN_IPASPEN BIT(23) /*!< IPA clock enable when sleep mode */ +#define RCU_AHB1SPEN_ENETSPEN BIT(25) /*!< ENET clock enable when sleep mode */ +#define RCU_AHB1SPEN_ENETTXSPEN BIT(26) /*!< Ethernet TX clock enable when sleep mode */ +#define RCU_AHB1SPEN_ENETRXSPEN BIT(27) /*!< Ethernet RX clock enable when sleep mode */ +#define RCU_AHB1SPEN_ENETPTPSPEN BIT(28) /*!< Ethernet PTP clock enable when sleep mode */ +#define RCU_AHB1SPEN_USBHSSPEN BIT(29) /*!< USBHS clock enable when sleep mode */ +#define RCU_AHB1SPEN_USBHSULPISPEN BIT(30) /*!< USBHS ULPI clock enable when sleep mode */ + +/* RCU_AHB2SPEN */ +#define RCU_AHB2SPEN_DCISPEN BIT(0) /*!< DCI clock enable when sleep mode */ +#define RCU_AHB2SPEN_TRNGSPEN BIT(6) /*!< TRNG clock enable when sleep mode */ +#define RCU_AHB2SPEN_USBFSSPEN BIT(7) /*!< USBFS clock enable when sleep mode */ + +/* RCU_AHB3SPEN */ +#define RCU_AHB3SPEN_EXMCSPEN BIT(0) /*!< EXMC clock enable when sleep mode */ + +/* RCU_APB1SPEN */ +#define RCU_APB1SPEN_TIMER1SPEN BIT(0) /*!< TIMER1 clock enable when sleep mode */ +#define RCU_APB1SPEN_TIMER2SPEN BIT(1) /*!< TIMER2 clock enable when sleep mode */ +#define RCU_APB1SPEN_TIMER3SPEN BIT(2) /*!< TIMER3 clock enable when sleep mode */ +#define RCU_APB1SPEN_TIMER4SPEN BIT(3) /*!< TIMER4 clock enable when sleep mode */ +#define RCU_APB1SPEN_TIMER5SPEN BIT(4) /*!< TIMER5 clock enable when sleep mode */ +#define RCU_APB1SPEN_TIMER6SPEN BIT(5) /*!< TIMER6 clock enable when sleep mode */ +#define RCU_APB1SPEN_TIMER11SPEN BIT(6) /*!< TIMER11 clock enable when sleep mode */ +#define RCU_APB1SPEN_TIMER12SPEN BIT(7) /*!< TIMER12 clock enable when sleep mode */ +#define RCU_APB1SPEN_TIMER13SPEN BIT(8) /*!< TIMER13 clock enable when sleep mode */ +#define RCU_APB1SPEN_WWDGTSPEN BIT(11) /*!< WWDGT clock enable when sleep mode */ +#define RCU_APB1SPEN_SPI1SPEN BIT(14) /*!< SPI1 clock enable when sleep mode */ +#define RCU_APB1SPEN_SPI2SPEN BIT(15) /*!< SPI2 clock enable when sleep mode */ +#define RCU_APB1SPEN_USART1SPEN BIT(17) /*!< USART1 clock enable when sleep mode*/ +#define RCU_APB1SPEN_USART2SPEN BIT(18) /*!< USART2 clock enable when sleep mode*/ +#define RCU_APB1SPEN_UART3SPEN BIT(19) /*!< UART3 clock enable when sleep mode*/ +#define RCU_APB1SPEN_UART4SPEN BIT(20) /*!< UART4 clock enable when sleep mode */ +#define RCU_APB1SPEN_I2C0SPEN BIT(21) /*!< I2C0 clock enable when sleep mode */ +#define RCU_APB1SPEN_I2C1SPEN BIT(22) /*!< I2C1 clock enable when sleep mode*/ +#define RCU_APB1SPEN_I2C2SPEN BIT(23) /*!< I2C2 clock enable when sleep mode */ +#define RCU_APB1SPEN_CAN0SPEN BIT(25) /*!< CAN0 clock enable when sleep mode*/ +#define RCU_APB1SPEN_CAN1SPEN BIT(26) /*!< CAN1 clock enable when sleep mode */ +#define RCU_APB1SPEN_PMUSPEN BIT(28) /*!< PMU clock enable when sleep mode */ +#define RCU_APB1SPEN_DACSPEN BIT(29) /*!< DAC clock enable when sleep mode */ +#define RCU_APB1SPEN_UART6SPEN BIT(30) /*!< UART6 clock enable when sleep mode */ +#define RCU_APB1SPEN_UART7SPEN BIT(31) /*!< UART7 clock enable when sleep mode */ + +/* RCU_APB2SPEN */ +#define RCU_APB2SPEN_TIMER0SPEN BIT(0) /*!< TIMER0 clock enable when sleep mode */ +#define RCU_APB2SPEN_TIMER7SPEN BIT(1) /*!< TIMER7 clock enable when sleep mode */ +#define RCU_APB2SPEN_USART0SPEN BIT(4) /*!< USART0 clock enable when sleep mode */ +#define RCU_APB2SPEN_USART5SPEN BIT(5) /*!< USART5 clock enable when sleep mode */ +#define RCU_APB2SPEN_ADC0SPEN BIT(8) /*!< ADC0 clock enable when sleep mode */ +#define RCU_APB2SPEN_ADC1SPEN BIT(9) /*!< ADC1 clock enable when sleep mode */ +#define RCU_APB2SPEN_ADC2SPEN BIT(10) /*!< ADC2 clock enable when sleep mode */ +#define RCU_APB2SPEN_SDIOSPEN BIT(11) /*!< SDIO clock enable when sleep mode */ +#define RCU_APB2SPEN_SPI0SPEN BIT(12) /*!< SPI0 clock enable when sleep mode */ +#define RCU_APB2SPEN_SPI3SPEN BIT(13) /*!< SPI3 clock enable when sleep mode */ +#define RCU_APB2SPEN_SYSCFGSPEN BIT(14) /*!< SYSCFG clock enable when sleep mode */ +#define RCU_APB2SPEN_TIMER8SPEN BIT(16) /*!< TIMER8 clock enable when sleep mode */ +#define RCU_APB2SPEN_TIMER9SPEN BIT(17) /*!< TIMER9 clock enable when sleep mode */ +#define RCU_APB2SPEN_TIMER10SPEN BIT(18) /*!< TIMER10 clock enable when sleep mode */ +#define RCU_APB2SPEN_SPI4SPEN BIT(20) /*!< SPI4 clock enable when sleep mode */ +#define RCU_APB2SPEN_SPI5SPEN BIT(21) /*!< SPI5 clock enable when sleep mode */ +#define RCU_APB2SPEN_TLISPEN BIT(26) /*!< TLI clock enable when sleep mode*/ + +/* RCU_BDCTL */ +#define RCU_BDCTL_LXTALEN BIT(0) /*!< LXTAL enable */ +#define RCU_BDCTL_LXTALSTB BIT(1) /*!< low speed crystal oscillator stabilization flag */ +#define RCU_BDCTL_LXTALBPS BIT(2) /*!< LXTAL bypass mode enable */ +#define RCU_BDCTL_LXTALDRI BIT(3) /*!< LXTAL drive capability */ +#define RCU_BDCTL_RTCSRC BITS(8,9) /*!< RTC clock entry selection */ +#define RCU_BDCTL_RTCEN BIT(15) /*!< RTC clock enable */ +#define RCU_BDCTL_BKPRST BIT(16) /*!< backup domain reset */ + +/* RCU_RSTSCK */ +#define RCU_RSTSCK_IRC32KEN BIT(0) /*!< IRC32K enable */ +#define RCU_RSTSCK_IRC32KSTB BIT(1) /*!< IRC32K stabilization flag */ +#define RCU_RSTSCK_RSTFC BIT(24) /*!< reset flag clear */ +#define RCU_RSTSCK_BORRSTF BIT(25) /*!< BOR reset flag */ +#define RCU_RSTSCK_EPRSTF BIT(26) /*!< external pin reset flag */ +#define RCU_RSTSCK_PORRSTF BIT(27) /*!< power reset flag */ +#define RCU_RSTSCK_SWRSTF BIT(28) /*!< software reset flag */ +#define RCU_RSTSCK_FWDGTRSTF BIT(29) /*!< free watchdog timer reset flag */ +#define RCU_RSTSCK_WWDGTRSTF BIT(30) /*!< window watchdog timer reset flag */ +#define RCU_RSTSCK_LPRSTF BIT(31) /*!< low-power reset flag */ + +/* RCU_PLLSSCTL */ +#define RCU_PLLSSCTL_MODCNT BITS(0,12) /*!< these bits configure PLL spread spectrum modulation + profile amplitude and frequency. the following criteria + must be met: MODSTEP*MODCNT=215-1 */ +#define RCU_PLLSSCTL_MODSTEP BITS(13,27) /*!< these bits configure PLL spread spectrum modulation + profile amplitude and frequency. the following criteria + must be met: MODSTEP*MODCNT=215-1 */ +#define RCU_PLLSSCTL_SS_TYPE BIT(30) /*!< PLL spread spectrum modulation type select */ +#define RCU_PLLSSCTL_SSCGON BIT(31) /*!< PLL spread spectrum modulation enable */ + +/* RCU_PLLI2S */ +#define RCU_PLLI2S_PLLI2SN BITS(6,14) /*!< the PLLI2S VCO clock multi factor */ +#define RCU_PLLI2S_PLLI2SQ BITS(24,27) /*!< the PLLI2S Q output frequency division factor from PLLI2S VCO clock */ +#define RCU_PLLI2S_PLLI2SR BITS(28,30) /*!< the PLLI2S R output frequency division factor from PLLI2S VCO clock */ + +/* RCU_PLLSAI */ +#define RCU_PLLSAI_PLLSAIN BITS(6,14) /*!< the PLLSAI VCO clock multi factor */ +#define RCU_PLLSAI_PLLSAIP BITS(16,17) /*!< the PLLSAI P output frequency division factor from PLLSAI VCO clock */ +#define RCU_PLLSAI_PLLSAIQ BITS(24,27) /*!< the PLLSAI Q output frequency division factor from PLLSAI VCO clock */ +#define RCU_PLLSAI_PLLSAIR BITS(28,30) /*!< the PLLSAI R output frequency division factor from PLLSAI VCO clock */ + +/* RCU_CFG1 */ +#define RCU_CFG1_PLLSAIRDIV BITS(16,17) /*!< the divider factor from PLLSAIR clock */ +#define RCU_CFG1_TIMERSEL BIT(24) /*!< TIMER clock selection */ + +/* RCU_ADDCTL */ +#define RCU_ADDCTL_CK48MSEL BIT(0) /*!< 48MHz clock selection */ +#define RCU_ADDCTL_PLL48MSEL BIT(1) /*!< PLL48M clock selection */ +#define RCU_ADDCTL_IRC48MEN BIT(16) /*!< internal 48MHz RC oscillator enable */ +#define RCU_ADDCTL_IRC48MSTB BIT(17) /*!< internal 48MHz RC oscillator clock stabilization flag */ +#define RCU_ADDCTL_IRC48MCAL BITS(24,31) /*!< internal 48MHz RC oscillator calibration value register */ + +/* RCU_ADDINT */ +#define RCU_ADDINT_IRC48MSTBIF BIT(6) /*!< IRC48M stabilization interrupt flag */ +#define RCU_ADDINT_IRC48MSTBIE BIT(14) /*!< internal 48 MHz RC oscillator stabilization interrupt enable */ +#define RCU_ADDINT_IRC48MSTBIC BIT(22) /*!< internal 48 MHz RC oscillator stabilization interrupt clear */ + +/* RCU_ADDAPB1RST */ +#define RCU_ADDAPB1RST_CTCRST BIT(27) /*!< CTC reset */ +#define RCU_ADDAPB1RST_IREFRST BIT(31) /*!< IREF reset */ + +/* RCU_ADDAPB1EN */ +#define RCU_ADDAPB1EN_CTCEN BIT(27) /*!< CTC clock enable */ +#define RCU_ADDAPB1EN_IREFEN BIT(31) /*!< IREF interface clock enable */ + +/* RCU_ADDAPB1SPEN */ +#define RCU_ADDAPB1SPEN_CTCSPEN BIT(27) /*!< CTC clock enable during sleep mode */ +#define RCU_ADDAPB1SPEN_IREFSPEN BIT(31) /*!< IREF interface clock enable during sleep mode */ + +/* RCU_VKEY */ +#define RCU_VKEY_KEY BITS(0,31) /*!< RCU_DSV key register */ + +/* RCU_DSV */ +#define RCU_DSV_DSLPVS BITS(0,2) /*!< deep-sleep mode voltage select */ + +/* constants definitions */ +/* define the peripheral clock enable bit position and its register index offset */ +#define RCU_REGIDX_BIT(regidx, bitpos) (((uint32_t)(regidx) << 6) | (uint32_t)(bitpos)) +#define RCU_REG_VAL(periph) (REG32(RCU + ((uint32_t)(periph) >> 6))) +#define RCU_BIT_POS(val) ((uint32_t)(val) & 0x1FU) +/* define the voltage key unlock value */ +#define RCU_VKEY_UNLOCK ((uint32_t)0x1A2B3C4DU) + +/* register offset */ +/* peripherals enable */ +#define AHB1EN_REG_OFFSET 0x30U /*!< AHB1 enable register offset */ +#define AHB2EN_REG_OFFSET 0x34U /*!< AHB2 enable register offset */ +#define AHB3EN_REG_OFFSET 0x38U /*!< AHB3 enable register offset */ +#define APB1EN_REG_OFFSET 0x40U /*!< APB1 enable register offset */ +#define APB2EN_REG_OFFSET 0x44U /*!< APB2 enable register offset */ +#define AHB1SPEN_REG_OFFSET 0x50U /*!< AHB1 sleep mode enable register offset */ +#define AHB2SPEN_REG_OFFSET 0x54U /*!< AHB2 sleep mode enable register offset */ +#define AHB3SPEN_REG_OFFSET 0x58U /*!< AHB3 sleep mode enable register offset */ +#define APB1SPEN_REG_OFFSET 0x60U /*!< APB1 sleep mode enable register offset */ +#define APB2SPEN_REG_OFFSET 0x64U /*!< APB2 sleep mode enable register offset */ +#define ADD_APB1EN_REG_OFFSET 0xE4U /*!< APB1 additional enable register offset */ +#define ADD_APB1SPEN_REG_OFFSET 0xE8U /*!< APB1 additional sleep mode enable register offset */ + +/* peripherals reset */ +#define AHB1RST_REG_OFFSET 0x10U /*!< AHB1 reset register offset */ +#define AHB2RST_REG_OFFSET 0x14U /*!< AHB2 reset register offset */ +#define AHB3RST_REG_OFFSET 0x18U /*!< AHB3 reset register offset */ +#define APB1RST_REG_OFFSET 0x20U /*!< APB1 reset register offset */ +#define APB2RST_REG_OFFSET 0x24U /*!< APB2 reset register offset */ +#define ADD_APB1RST_REG_OFFSET 0xE0U /*!< APB1 additional reset register offset */ +#define RSTSCK_REG_OFFSET 0x74U /*!< reset source/clock register offset */ + +/* clock control */ +#define CTL_REG_OFFSET 0x00U /*!< control register offset */ +#define BDCTL_REG_OFFSET 0x70U /*!< backup domain control register offset */ +#define ADDCTL_REG_OFFSET 0xC0U /*!< additional clock control register offset */ + +/* clock stabilization and stuck interrupt */ +#define INT_REG_OFFSET 0x0CU /*!< clock interrupt register offset */ +#define ADDINT_REG_OFFSET 0xCCU /*!< additional clock interrupt register offset */ + +/* configuration register */ +#define PLL_REG_OFFSET 0x04U /*!< PLL register offset */ +#define CFG0_REG_OFFSET 0x08U /*!< clock configuration register 0 offset */ +#define PLLSSCTL_REG_OFFSET 0x80U /*!< PLL clock spread spectrum control register offset */ +#define PLLI2S_REG_OFFSET 0x84U /*!< PLLI2S register offset */ +#define PLLSAI_REG_OFFSET 0x88U /*!< PLLSAI register offset */ +#define CFG1_REG_OFFSET 0x8CU /*!< clock configuration register 1 offset */ + +/* peripheral clock enable */ +typedef enum +{ + /* AHB1 peripherals */ + RCU_GPIOA = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 0U), /*!< GPIOA clock */ + RCU_GPIOB = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 1U), /*!< GPIOB clock */ + RCU_GPIOC = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 2U), /*!< GPIOC clock */ + RCU_GPIOD = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 3U), /*!< GPIOD clock */ + RCU_GPIOE = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 4U), /*!< GPIOE clock */ + RCU_GPIOF = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 5U), /*!< GPIOF clock */ + RCU_GPIOG = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 6U), /*!< GPIOG clock */ + RCU_GPIOH = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 7U), /*!< GPIOH clock */ + RCU_GPIOI = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 8U), /*!< GPIOI clock */ + RCU_CRC = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 12U), /*!< CRC clock */ + RCU_BKPSRAM = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 18U), /*!< BKPSRAM clock */ + RCU_TCMSRAM = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 20U), /*!< TCMSRAM clock */ + RCU_DMA0 = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 21U), /*!< DMA0 clock */ + RCU_DMA1 = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 22U), /*!< DMA1 clock */ + RCU_IPA = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 23U), /*!< IPA clock */ + RCU_ENET = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 25U), /*!< ENET clock */ + RCU_ENETTX = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 26U), /*!< ENETTX clock */ + RCU_ENETRX = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 27U), /*!< ENETRX clock */ + RCU_ENETPTP = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 28U), /*!< ENETPTP clock */ + RCU_USBHS = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 29U), /*!< USBHS clock */ + RCU_USBHSULPI = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 30U), /*!< USBHSULPI clock */ + /* AHB2 peripherals */ + RCU_DCI = RCU_REGIDX_BIT(AHB2EN_REG_OFFSET, 0U), /*!< DCI clock */ + RCU_TRNG = RCU_REGIDX_BIT(AHB2EN_REG_OFFSET, 6U), /*!< TRNG clock */ + RCU_USBFS = RCU_REGIDX_BIT(AHB2EN_REG_OFFSET, 7U), /*!< USBFS clock */ + /* AHB3 peripherals */ + RCU_EXMC = RCU_REGIDX_BIT(AHB3EN_REG_OFFSET, 0U), /*!< EXMC clock */ + /* APB1 peripherals */ + RCU_TIMER1 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 0U), /*!< TIMER1 clock */ + RCU_TIMER2 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 1U), /*!< TIMER2 clock */ + RCU_TIMER3 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 2U), /*!< TIMER3 clock */ + RCU_TIMER4 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 3U), /*!< TIMER4 clock */ + RCU_TIMER5 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 4U), /*!< TIMER5 clock */ + RCU_TIMER6 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 5U), /*!< TIMER6 clock */ + RCU_TIMER11 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 6U), /*!< TIMER11 clock */ + RCU_TIMER12 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 7U), /*!< TIMER12 clock */ + RCU_TIMER13 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 8U), /*!< TIMER13 clock */ + RCU_WWDGT = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 11U), /*!< WWDGT clock */ + RCU_SPI1 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 14U), /*!< SPI1 clock */ + RCU_SPI2 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 15U), /*!< SPI2 clock */ + RCU_USART1 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 17U), /*!< USART1 clock */ + RCU_USART2 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 18U), /*!< USART2 clock */ + RCU_UART3 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 19U), /*!< UART3 clock */ + RCU_UART4 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 20U), /*!< UART4 clock */ + RCU_I2C0 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 21U), /*!< I2C0 clock */ + RCU_I2C1 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 22U), /*!< I2C1 clock */ + RCU_I2C2 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 23U), /*!< I2C2 clock */ + RCU_CAN0 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 25U), /*!< CAN0 clock */ + RCU_CAN1 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 26U), /*!< CAN1 clock */ + RCU_PMU = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 28U), /*!< PMU clock */ + RCU_DAC = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 29U), /*!< DAC clock */ + RCU_UART6 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 30U), /*!< UART6 clock */ + RCU_UART7 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 31U), /*!< UART7 clock */ + RCU_RTC = RCU_REGIDX_BIT(BDCTL_REG_OFFSET, 15U), /*!< RTC clock */ + /* APB2 peripherals */ + RCU_TIMER0 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 0U), /*!< TIMER0 clock */ + RCU_TIMER7 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 1U), /*!< TIMER7 clock */ + RCU_USART0 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 4U), /*!< USART0 clock */ + RCU_USART5 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 5U), /*!< USART5 clock */ + RCU_ADC0 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 8U), /*!< ADC0 clock */ + RCU_ADC1 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 9U), /*!< ADC1 clock */ + RCU_ADC2 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 10U), /*!< ADC2 clock */ + RCU_SDIO = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 11U), /*!< SDIO clock */ + RCU_SPI0 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 12U), /*!< SPI0 clock */ + RCU_SPI3 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 13U), /*!< SPI3 clock */ + RCU_SYSCFG = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 14U), /*!< SYSCFG clock */ + RCU_TIMER8 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 16U), /*!< TIMER8 clock */ + RCU_TIMER9 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 17U), /*!< TIMER9 clock */ + RCU_TIMER10 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 18U), /*!< TIMER10 clock */ + RCU_SPI4 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 20U), /*!< SPI4 clock */ + RCU_SPI5 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 21U), /*!< SPI5 clock */ + RCU_TLI = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 26U), /*!< TLI clock */ + /* APB1 additional peripherals */ + RCU_CTC = RCU_REGIDX_BIT(ADD_APB1EN_REG_OFFSET, 27U), /*!< CTC clock */ + RCU_IREF = RCU_REGIDX_BIT(ADD_APB1EN_REG_OFFSET, 31U), /*!< IREF clock */ +}rcu_periph_enum; + +/* peripheral clock enable when sleep mode*/ +typedef enum +{ + /* AHB1 peripherals */ + RCU_GPIOA_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 0U), /*!< GPIOA clock */ + RCU_GPIOB_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 1U), /*!< GPIOB clock */ + RCU_GPIOC_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 2U), /*!< GPIOC clock */ + RCU_GPIOD_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 3U), /*!< GPIOD clock */ + RCU_GPIOE_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 4U), /*!< GPIOE clock */ + RCU_GPIOF_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 5U), /*!< GPIOF clock */ + RCU_GPIOG_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 6U), /*!< GPIOG clock */ + RCU_GPIOH_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 7U), /*!< GPIOH clock */ + RCU_GPIOI_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 8U), /*!< GPIOI clock */ + RCU_CRC_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 12U), /*!< CRC clock */ + RCU_FMC_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 15U), /*!< FMC clock */ + RCU_SRAM0_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 16U), /*!< SRAM0 clock */ + RCU_SRAM1_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 17U), /*!< SRAM1 clock */ + RCU_BKPSRAM_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 18U), /*!< BKPSRAM clock */ + RCU_SRAM2_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 19U), /*!< SRAM2 clock */ + RCU_DMA0_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 21U), /*!< DMA0 clock */ + RCU_DMA1_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 22U), /*!< DMA1 clock */ + RCU_IPA_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 23U), /*!< IPA clock */ + RCU_ENET_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 25U), /*!< ENET clock */ + RCU_ENETTX_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 26U), /*!< ENETTX clock */ + RCU_ENETRX_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 27U), /*!< ENETRX clock */ + RCU_ENETPTP_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 28U), /*!< ENETPTP clock */ + RCU_USBHS_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 29U), /*!< USBHS clock */ + RCU_USBHSULPI_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 30U), /*!< USBHSULPI clock */ + /* AHB2 peripherals */ + RCU_DCI_SLP = RCU_REGIDX_BIT(AHB2SPEN_REG_OFFSET, 0U), /*!< DCI clock */ + RCU_TRNG_SLP = RCU_REGIDX_BIT(AHB2SPEN_REG_OFFSET, 6U), /*!< TRNG clock */ + RCU_USBFS_SLP = RCU_REGIDX_BIT(AHB2SPEN_REG_OFFSET, 7U), /*!< USBFS clock */ + /* AHB3 peripherals */ + RCU_EXMC_SLP = RCU_REGIDX_BIT(AHB3SPEN_REG_OFFSET, 0U), /*!< EXMC clock */ + /* APB1 peripherals */ + RCU_TIMER1_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 0U), /*!< TIMER1 clock */ + RCU_TIMER2_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 1U), /*!< TIMER2 clock */ + RCU_TIMER3_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 2U), /*!< TIMER3 clock */ + RCU_TIMER4_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 3U), /*!< TIMER4 clock */ + RCU_TIMER5_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 4U), /*!< TIMER5 clock */ + RCU_TIMER6_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 5U), /*!< TIMER6 clock */ + RCU_TIMER11_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 6U), /*!< TIMER11 clock */ + RCU_TIMER12_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 7U), /*!< TIMER12 clock */ + RCU_TIMER13_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 8U), /*!< TIMER13 clock */ + RCU_WWDGT_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 11U), /*!< WWDGT clock */ + RCU_SPI1_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 14U), /*!< SPI1 clock */ + RCU_SPI2_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 15U), /*!< SPI2 clock */ + RCU_USART1_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 17U), /*!< USART1 clock */ + RCU_USART2_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 18U), /*!< USART2 clock */ + RCU_UART3_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 19U), /*!< UART3 clock */ + RCU_UART4_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 20U), /*!< UART4 clock */ + RCU_I2C0_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 21U), /*!< I2C0 clock */ + RCU_I2C1_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 22U), /*!< I2C1 clock */ + RCU_I2C2_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 23U), /*!< I2C2 clock */ + RCU_CAN0_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 25U), /*!< CAN0 clock */ + RCU_CAN1_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 26U), /*!< CAN1 clock */ + RCU_PMU_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 28U), /*!< PMU clock */ + RCU_DAC_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 29U), /*!< DAC clock */ + RCU_UART6_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 30U), /*!< UART6 clock */ + RCU_UART7_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 31U), /*!< UART7 clock */ + /* APB2 peripherals */ + RCU_TIMER0_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 0U), /*!< TIMER0 clock */ + RCU_TIMER7_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 1U), /*!< TIMER7 clock */ + RCU_USART0_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 4U), /*!< USART0 clock */ + RCU_USART5_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 5U), /*!< USART5 clock */ + RCU_ADC0_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 8U), /*!< ADC0 clock */ + RCU_ADC1_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 9U), /*!< ADC1 clock */ + RCU_ADC2_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 10U), /*!< ADC2 clock */ + RCU_SDIO_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 11U), /*!< SDIO clock */ + RCU_SPI0_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 12U), /*!< SPI0 clock */ + RCU_SPI3_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 13U), /*!< SPI3 clock */ + RCU_SYSCFG_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 14U), /*!< SYSCFG clock */ + RCU_TIMER8_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 16U), /*!< TIMER8 clock */ + RCU_TIMER9_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 17U), /*!< TIMER9 clock */ + RCU_TIMER10_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 18U), /*!< TIMER10 clock */ + RCU_SPI4_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 20U), /*!< SPI4 clock */ + RCU_SPI5_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 21U), /*!< SPI5 clock */ + RCU_TLI_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 26U), /*!< TLI clock */ + /* APB1 additional peripherals */ + RCU_CTC_SLP = RCU_REGIDX_BIT(ADD_APB1SPEN_REG_OFFSET, 27U), /*!< CTC clock */ + RCU_IREF_SLP = RCU_REGIDX_BIT(ADD_APB1SPEN_REG_OFFSET, 31U), /*!< IREF clock */ +}rcu_periph_sleep_enum; + +/* peripherals reset */ +typedef enum +{ + /* AHB1 peripherals */ + RCU_GPIOARST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 0U), /*!< GPIOA clock reset */ + RCU_GPIOBRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 1U), /*!< GPIOB clock reset */ + RCU_GPIOCRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 2U), /*!< GPIOC clock reset */ + RCU_GPIODRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 3U), /*!< GPIOD clock reset */ + RCU_GPIOERST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 4U), /*!< GPIOE clock reset */ + RCU_GPIOFRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 5U), /*!< GPIOF clock reset */ + RCU_GPIOGRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 6U), /*!< GPIOG clock reset */ + RCU_GPIOHRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 7U), /*!< GPIOH clock reset */ + RCU_GPIOIRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 8U), /*!< GPIOI clock reset */ + RCU_CRCRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 12U), /*!< CRC clock reset */ + RCU_DMA0RST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 21U), /*!< DMA0 clock reset */ + RCU_DMA1RST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 22U), /*!< DMA1 clock reset */ + RCU_IPARST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 23U), /*!< IPA clock reset */ + RCU_ENETRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 25U), /*!< ENET clock reset */ + RCU_USBHSRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 29U), /*!< USBHS clock reset */ + /* AHB2 peripherals */ + RCU_DCIRST = RCU_REGIDX_BIT(AHB2RST_REG_OFFSET, 0U), /*!< DCI clock reset */ + RCU_TRNGRST = RCU_REGIDX_BIT(AHB2RST_REG_OFFSET, 6U), /*!< TRNG clock reset */ + RCU_USBFSRST = RCU_REGIDX_BIT(AHB2RST_REG_OFFSET, 7U), /*!< USBFS clock reset */ + /* AHB3 peripherals */ + RCU_EXMCRST = RCU_REGIDX_BIT(AHB3RST_REG_OFFSET, 0U), /*!< EXMC clock reset */ + /* APB1 peripherals */ + RCU_TIMER1RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 0U), /*!< TIMER1 clock reset */ + RCU_TIMER2RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 1U), /*!< TIMER2 clock reset */ + RCU_TIMER3RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 2U), /*!< TIMER3 clock reset */ + RCU_TIMER4RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 3U), /*!< TIMER4 clock reset */ + RCU_TIMER5RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 4U), /*!< TIMER5 clock reset */ + RCU_TIMER6RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 5U), /*!< TIMER6 clock reset */ + RCU_TIMER11RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 6U), /*!< TIMER11 clock reset */ + RCU_TIMER12RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 7U), /*!< TIMER12 clock reset */ + RCU_TIMER13RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 8U), /*!< TIMER13 clock reset */ + RCU_WWDGTRST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 11U), /*!< WWDGT clock reset */ + RCU_SPI1RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 14U), /*!< SPI1 clock reset */ + RCU_SPI2RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 15U), /*!< SPI2 clock reset */ + RCU_USART1RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 17U), /*!< USART1 clock reset */ + RCU_USART2RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 18U), /*!< USART2 clock reset */ + RCU_UART3RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 19U), /*!< UART3 clock reset */ + RCU_UART4RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 20U), /*!< UART4 clock reset */ + RCU_I2C0RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 21U), /*!< I2C0 clock reset */ + RCU_I2C1RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 22U), /*!< I2C1 clock reset */ + RCU_I2C2RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 23U), /*!< I2C2 clock reset */ + RCU_CAN0RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 25U), /*!< CAN0 clock reset */ + RCU_CAN1RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 26U), /*!< CAN1 clock reset */ + RCU_PMURST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 28U), /*!< PMU clock reset */ + RCU_DACRST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 29U), /*!< DAC clock reset */ + RCU_UART6RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 30U), /*!< UART6 clock reset */ + RCU_UART7RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 31U), /*!< UART7 clock reset */ + /* APB2 peripherals */ + RCU_TIMER0RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 0U), /*!< TIMER0 clock reset */ + RCU_TIMER7RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 1U), /*!< TIMER7 clock reset */ + RCU_USART0RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 4U), /*!< USART0 clock reset */ + RCU_USART5RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 5U), /*!< USART5 clock reset */ + RCU_ADCRST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 8U), /*!< ADCs all clock reset */ + RCU_SDIORST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 11U), /*!< SDIO clock reset */ + RCU_SPI0RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 12U), /*!< SPI0 clock reset */ + RCU_SPI3RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 13U), /*!< SPI3 clock reset */ + RCU_SYSCFGRST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 14U), /*!< SYSCFG clock reset */ + RCU_TIMER8RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 16U), /*!< TIMER8 clock reset */ + RCU_TIMER9RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 17U), /*!< TIMER9 clock reset */ + RCU_TIMER10RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 18U), /*!< TIMER10 clock reset */ + RCU_SPI4RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 20U), /*!< SPI4 clock reset */ + RCU_SPI5RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 21U), /*!< SPI5 clock reset */ + RCU_TLIRST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 26U), /*!< TLI clock reset */ + /* APB1 additional peripherals */ + RCU_CTCRST = RCU_REGIDX_BIT(ADD_APB1RST_REG_OFFSET, 27U), /*!< CTC clock reset */ + RCU_IREFRST = RCU_REGIDX_BIT(ADD_APB1RST_REG_OFFSET, 31U) /*!< IREF clock reset */ +}rcu_periph_reset_enum; + +/* clock stabilization and peripheral reset flags */ +typedef enum +{ + /* clock stabilization flags */ + RCU_FLAG_IRC16MSTB = RCU_REGIDX_BIT(CTL_REG_OFFSET, 1U), /*!< IRC16M stabilization flags */ + RCU_FLAG_HXTALSTB = RCU_REGIDX_BIT(CTL_REG_OFFSET, 17U), /*!< HXTAL stabilization flags */ + RCU_FLAG_PLLSTB = RCU_REGIDX_BIT(CTL_REG_OFFSET, 25U), /*!< PLL stabilization flags */ + RCU_FLAG_PLLI2SSTB = RCU_REGIDX_BIT(CTL_REG_OFFSET, 27U), /*!< PLLI2S stabilization flags */ + RCU_FLAG_PLLSAISTB = RCU_REGIDX_BIT(CTL_REG_OFFSET, 29U), /*!< PLLSAI stabilization flags */ + RCU_FLAG_LXTALSTB = RCU_REGIDX_BIT(BDCTL_REG_OFFSET, 1U), /*!< LXTAL stabilization flags */ + RCU_FLAG_IRC32KSTB = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 1U), /*!< IRC32K stabilization flags */ + RCU_FLAG_IRC48MSTB = RCU_REGIDX_BIT(ADDCTL_REG_OFFSET, 17U), /*!< IRC48M stabilization flags */ + /* reset source flags */ + RCU_FLAG_BORRST = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 25U), /*!< BOR reset flags */ + RCU_FLAG_EPRST = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 26U), /*!< External PIN reset flags */ + RCU_FLAG_PORRST = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 27U), /*!< power reset flags */ + RCU_FLAG_SWRST = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 28U), /*!< Software reset flags */ + RCU_FLAG_FWDGTRST = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 29U), /*!< FWDGT reset flags */ + RCU_FLAG_WWDGTRST = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 30U), /*!< WWDGT reset flags */ + RCU_FLAG_LPRST = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 31U), /*!< Low-power reset flags */ +}rcu_flag_enum; + +/* clock stabilization and ckm interrupt flags */ +typedef enum +{ + RCU_INT_FLAG_IRC32KSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 0U), /*!< IRC32K stabilization interrupt flag */ + RCU_INT_FLAG_LXTALSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 1U), /*!< LXTAL stabilization interrupt flag */ + RCU_INT_FLAG_IRC16MSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 2U), /*!< IRC16M stabilization interrupt flag */ + RCU_INT_FLAG_HXTALSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 3U), /*!< HXTAL stabilization interrupt flag */ + RCU_INT_FLAG_PLLSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 4U), /*!< PLL stabilization interrupt flag */ + RCU_INT_FLAG_PLLI2SSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 5U), /*!< PLLI2S stabilization interrupt flag */ + RCU_INT_FLAG_PLLSAISTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 6U), /*!< PLLSAI stabilization interrupt flag */ + RCU_INT_FLAG_CKM = RCU_REGIDX_BIT(INT_REG_OFFSET, 7U), /*!< HXTAL clock stuck interrupt flag */ + RCU_INT_FLAG_IRC48MSTB = RCU_REGIDX_BIT(ADDINT_REG_OFFSET, 6U), /*!< IRC48M stabilization interrupt flag */ +}rcu_int_flag_enum; + +/* clock stabilization and stuck interrupt flags clear */ +typedef enum +{ + RCU_INT_FLAG_IRC32KSTB_CLR = RCU_REGIDX_BIT(INT_REG_OFFSET, 16U), /*!< IRC32K stabilization interrupt flags clear */ + RCU_INT_FLAG_LXTALSTB_CLR = RCU_REGIDX_BIT(INT_REG_OFFSET, 17U), /*!< LXTAL stabilization interrupt flags clear */ + RCU_INT_FLAG_IRC16MSTB_CLR = RCU_REGIDX_BIT(INT_REG_OFFSET, 18U), /*!< IRC16M stabilization interrupt flags clear */ + RCU_INT_FLAG_HXTALSTB_CLR = RCU_REGIDX_BIT(INT_REG_OFFSET, 19U), /*!< HXTAL stabilization interrupt flags clear */ + RCU_INT_FLAG_PLLSTB_CLR = RCU_REGIDX_BIT(INT_REG_OFFSET, 20U), /*!< PLL stabilization interrupt flags clear */ + RCU_INT_FLAG_PLLI2SSTB_CLR = RCU_REGIDX_BIT(INT_REG_OFFSET, 21U), /*!< PLLI2S stabilization interrupt flags clear */ + RCU_INT_FLAG_PLLSAISTB_CLR = RCU_REGIDX_BIT(INT_REG_OFFSET, 22U), /*!< PLLSAI stabilization interrupt flags clear */ + RCU_INT_FLAG_CKM_CLR = RCU_REGIDX_BIT(INT_REG_OFFSET, 23U), /*!< CKM interrupt flags clear */ + RCU_INT_FLAG_IRC48MSTB_CLR = RCU_REGIDX_BIT(ADDINT_REG_OFFSET, 22U), /*!< internal 48 MHz RC oscillator stabilization interrupt clear */ +}rcu_int_flag_clear_enum; + +/* clock stabilization interrupt enable or disable */ +typedef enum +{ + RCU_INT_IRC32KSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 8U), /*!< IRC32K stabilization interrupt */ + RCU_INT_LXTALSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 9U), /*!< LXTAL stabilization interrupt */ + RCU_INT_IRC16MSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 10U), /*!< IRC16M stabilization interrupt */ + RCU_INT_HXTALSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 11U), /*!< HXTAL stabilization interrupt */ + RCU_INT_PLLSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 12U), /*!< PLL stabilization interrupt */ + RCU_INT_PLLI2SSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 13U), /*!< PLLI2S stabilization interrupt */ + RCU_INT_PLLSAISTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 14U), /*!< PLLSAI stabilization interrupt */ + RCU_INT_IRC48MSTB = RCU_REGIDX_BIT(ADDINT_REG_OFFSET, 14U), /*!< internal 48 MHz RC oscillator stabilization interrupt */ +}rcu_int_enum; + +/* oscillator types */ +typedef enum +{ + RCU_HXTAL = RCU_REGIDX_BIT(CTL_REG_OFFSET, 16U), /*!< HXTAL */ + RCU_LXTAL = RCU_REGIDX_BIT(BDCTL_REG_OFFSET, 0U), /*!< LXTAL */ + RCU_IRC16M = RCU_REGIDX_BIT(CTL_REG_OFFSET, 0U), /*!< IRC16M */ + RCU_IRC48M = RCU_REGIDX_BIT(ADDCTL_REG_OFFSET, 16U), /*!< IRC48M */ + RCU_IRC32K = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 0U), /*!< IRC32K */ + RCU_PLL_CK = RCU_REGIDX_BIT(CTL_REG_OFFSET, 24U), /*!< PLL */ + RCU_PLLI2S_CK = RCU_REGIDX_BIT(CTL_REG_OFFSET, 26U), /*!< PLLI2S */ + RCU_PLLSAI_CK = RCU_REGIDX_BIT(CTL_REG_OFFSET, 28U), /*!< PLLSAI */ +}rcu_osci_type_enum; + +/* rcu clock frequency */ +typedef enum +{ + CK_SYS = 0, /*!< system clock */ + CK_AHB, /*!< AHB clock */ + CK_APB1, /*!< APB1 clock */ + CK_APB2, /*!< APB2 clock */ +}rcu_clock_freq_enum; + +/* RCU_CFG0 register bit define */ +/* system clock source select */ +#define CFG0_SCS(regval) (BITS(0,1) & ((uint32_t)(regval) << 0)) +#define RCU_CKSYSSRC_IRC16M CFG0_SCS(0) /*!< system clock source select IRC16M */ +#define RCU_CKSYSSRC_HXTAL CFG0_SCS(1) /*!< system clock source select HXTAL */ +#define RCU_CKSYSSRC_PLLP CFG0_SCS(2) /*!< system clock source select PLLP */ + +/* system clock source select status */ +#define CFG0_SCSS(regval) (BITS(2,3) & ((uint32_t)(regval) << 2)) +#define RCU_SCSS_IRC16M CFG0_SCSS(0) /*!< system clock source select IRC16M */ +#define RCU_SCSS_HXTAL CFG0_SCSS(1) /*!< system clock source select HXTAL */ +#define RCU_SCSS_PLLP CFG0_SCSS(2) /*!< system clock source select PLLP */ + +/* AHB prescaler selection */ +#define CFG0_AHBPSC(regval) (BITS(4,7) & ((uint32_t)(regval) << 4)) +#define RCU_AHB_CKSYS_DIV1 CFG0_AHBPSC(0) /*!< AHB prescaler select CK_SYS */ +#define RCU_AHB_CKSYS_DIV2 CFG0_AHBPSC(8) /*!< AHB prescaler select CK_SYS/2 */ +#define RCU_AHB_CKSYS_DIV4 CFG0_AHBPSC(9) /*!< AHB prescaler select CK_SYS/4 */ +#define RCU_AHB_CKSYS_DIV8 CFG0_AHBPSC(10) /*!< AHB prescaler select CK_SYS/8 */ +#define RCU_AHB_CKSYS_DIV16 CFG0_AHBPSC(11) /*!< AHB prescaler select CK_SYS/16 */ +#define RCU_AHB_CKSYS_DIV64 CFG0_AHBPSC(12) /*!< AHB prescaler select CK_SYS/64 */ +#define RCU_AHB_CKSYS_DIV128 CFG0_AHBPSC(13) /*!< AHB prescaler select CK_SYS/128 */ +#define RCU_AHB_CKSYS_DIV256 CFG0_AHBPSC(14) /*!< AHB prescaler select CK_SYS/256 */ +#define RCU_AHB_CKSYS_DIV512 CFG0_AHBPSC(15) /*!< AHB prescaler select CK_SYS/512 */ + +/* APB1 prescaler selection */ +#define CFG0_APB1PSC(regval) (BITS(10,12) & ((uint32_t)(regval) << 10)) +#define RCU_APB1_CKAHB_DIV1 CFG0_APB1PSC(0) /*!< APB1 prescaler select CK_AHB */ +#define RCU_APB1_CKAHB_DIV2 CFG0_APB1PSC(4) /*!< APB1 prescaler select CK_AHB/2 */ +#define RCU_APB1_CKAHB_DIV4 CFG0_APB1PSC(5) /*!< APB1 prescaler select CK_AHB/4 */ +#define RCU_APB1_CKAHB_DIV8 CFG0_APB1PSC(6) /*!< APB1 prescaler select CK_AHB/8 */ +#define RCU_APB1_CKAHB_DIV16 CFG0_APB1PSC(7) /*!< APB1 prescaler select CK_AHB/16 */ + +/* APB2 prescaler selection */ +#define CFG0_APB2PSC(regval) (BITS(13,15) & ((uint32_t)(regval) << 13)) +#define RCU_APB2_CKAHB_DIV1 CFG0_APB2PSC(0) /*!< APB2 prescaler select CK_AHB */ +#define RCU_APB2_CKAHB_DIV2 CFG0_APB2PSC(4) /*!< APB2 prescaler select CK_AHB/2 */ +#define RCU_APB2_CKAHB_DIV4 CFG0_APB2PSC(5) /*!< APB2 prescaler select CK_AHB/4 */ +#define RCU_APB2_CKAHB_DIV8 CFG0_APB2PSC(6) /*!< APB2 prescaler select CK_AHB/8 */ +#define RCU_APB2_CKAHB_DIV16 CFG0_APB2PSC(7) /*!< APB2 prescaler select CK_AHB/16 */ + +/* RTC clock divider factor from HXTAL clock */ +#define CFG0_RTCDIV(regval) (BITS(16,20) & ((uint32_t)(regval) << 16)) +#define RCU_RTC_HXTAL_NONE CFG0_RTCDIV(0) /*!< no clock for RTC */ +#define RCU_RTC_HXTAL_DIV2 CFG0_RTCDIV(2) /*!< RTCDIV clock select CK_HXTAL/2 */ +#define RCU_RTC_HXTAL_DIV3 CFG0_RTCDIV(3) /*!< RTCDIV clock select CK_HXTAL/3 */ +#define RCU_RTC_HXTAL_DIV4 CFG0_RTCDIV(4) /*!< RTCDIV clock select CK_HXTAL/4 */ +#define RCU_RTC_HXTAL_DIV5 CFG0_RTCDIV(5) /*!< RTCDIV clock select CK_HXTAL/5 */ +#define RCU_RTC_HXTAL_DIV6 CFG0_RTCDIV(6) /*!< RTCDIV clock select CK_HXTAL/6 */ +#define RCU_RTC_HXTAL_DIV7 CFG0_RTCDIV(7) /*!< RTCDIV clock select CK_HXTAL/7 */ +#define RCU_RTC_HXTAL_DIV8 CFG0_RTCDIV(8) /*!< RTCDIV clock select CK_HXTAL/8 */ +#define RCU_RTC_HXTAL_DIV9 CFG0_RTCDIV(9) /*!< RTCDIV clock select CK_HXTAL/9 */ +#define RCU_RTC_HXTAL_DIV10 CFG0_RTCDIV(10) /*!< RTCDIV clock select CK_HXTAL/10 */ +#define RCU_RTC_HXTAL_DIV11 CFG0_RTCDIV(11) /*!< RTCDIV clock select CK_HXTAL/11 */ +#define RCU_RTC_HXTAL_DIV12 CFG0_RTCDIV(12) /*!< RTCDIV clock select CK_HXTAL/12 */ +#define RCU_RTC_HXTAL_DIV13 CFG0_RTCDIV(13) /*!< RTCDIV clock select CK_HXTAL/13 */ +#define RCU_RTC_HXTAL_DIV14 CFG0_RTCDIV(14) /*!< RTCDIV clock select CK_HXTAL/14 */ +#define RCU_RTC_HXTAL_DIV15 CFG0_RTCDIV(15) /*!< RTCDIV clock select CK_HXTAL/15 */ +#define RCU_RTC_HXTAL_DIV16 CFG0_RTCDIV(16) /*!< RTCDIV clock select CK_HXTAL/16 */ +#define RCU_RTC_HXTAL_DIV17 CFG0_RTCDIV(17) /*!< RTCDIV clock select CK_HXTAL/17 */ +#define RCU_RTC_HXTAL_DIV18 CFG0_RTCDIV(18) /*!< RTCDIV clock select CK_HXTAL/18 */ +#define RCU_RTC_HXTAL_DIV19 CFG0_RTCDIV(19) /*!< RTCDIV clock select CK_HXTAL/19 */ +#define RCU_RTC_HXTAL_DIV20 CFG0_RTCDIV(20) /*!< RTCDIV clock select CK_HXTAL/20 */ +#define RCU_RTC_HXTAL_DIV21 CFG0_RTCDIV(21) /*!< RTCDIV clock select CK_HXTAL/21 */ +#define RCU_RTC_HXTAL_DIV22 CFG0_RTCDIV(22) /*!< RTCDIV clock select CK_HXTAL/22 */ +#define RCU_RTC_HXTAL_DIV23 CFG0_RTCDIV(23) /*!< RTCDIV clock select CK_HXTAL/23 */ +#define RCU_RTC_HXTAL_DIV24 CFG0_RTCDIV(24) /*!< RTCDIV clock select CK_HXTAL/24 */ +#define RCU_RTC_HXTAL_DIV25 CFG0_RTCDIV(25) /*!< RTCDIV clock select CK_HXTAL/25 */ +#define RCU_RTC_HXTAL_DIV26 CFG0_RTCDIV(26) /*!< RTCDIV clock select CK_HXTAL/26 */ +#define RCU_RTC_HXTAL_DIV27 CFG0_RTCDIV(27) /*!< RTCDIV clock select CK_HXTAL/27 */ +#define RCU_RTC_HXTAL_DIV28 CFG0_RTCDIV(28) /*!< RTCDIV clock select CK_HXTAL/28 */ +#define RCU_RTC_HXTAL_DIV29 CFG0_RTCDIV(29) /*!< RTCDIV clock select CK_HXTAL/29 */ +#define RCU_RTC_HXTAL_DIV30 CFG0_RTCDIV(30) /*!< RTCDIV clock select CK_HXTAL/30 */ +#define RCU_RTC_HXTAL_DIV31 CFG0_RTCDIV(31) /*!< RTCDIV clock select CK_HXTAL/31 */ + +/* CKOUT0 Clock source selection */ +#define CFG0_CKOUT0SEL(regval) (BITS(21,22) & ((uint32_t)(regval) << 21)) +#define RCU_CKOUT0SRC_IRC16M CFG0_CKOUT0SEL(0) /*!< internal 16M RC oscillator clock selected */ +#define RCU_CKOUT0SRC_LXTAL CFG0_CKOUT0SEL(1) /*!< low speed crystal oscillator clock (LXTAL) selected */ +#define RCU_CKOUT0SRC_HXTAL CFG0_CKOUT0SEL(2) /*!< high speed crystal oscillator clock (HXTAL) selected */ +#define RCU_CKOUT0SRC_PLLP CFG0_CKOUT0SEL(3) /*!< CK_PLLP clock selected */ + +/* I2S Clock source selection */ +#define RCU_I2SSRC_PLLI2S ((uint32_t)0x00000000U) /*!< PLLI2S output clock selected as I2S source clock */ +#define RCU_I2SSRC_I2S_CKIN RCU_CFG0_I2SSEL /*!< external I2S_CKIN pin selected as I2S source clock */ + +/* The CK_OUT0 divider */ +#define CFG0_CKOUT0DIV(regval) (BITS(24,26) & ((uint32_t)(regval) << 24)) +#define RCU_CKOUT0_DIV1 CFG0_CKOUT0DIV(0) /*!< CK_OUT0 is divided by 1 */ +#define RCU_CKOUT0_DIV2 CFG0_CKOUT0DIV(4) /*!< CK_OUT0 is divided by 2 */ +#define RCU_CKOUT0_DIV3 CFG0_CKOUT0DIV(5) /*!< CK_OUT0 is divided by 3 */ +#define RCU_CKOUT0_DIV4 CFG0_CKOUT0DIV(6) /*!< CK_OUT0 is divided by 4 */ +#define RCU_CKOUT0_DIV5 CFG0_CKOUT0DIV(7) /*!< CK_OUT0 is divided by 5 */ + +/* The CK_OUT1 divider */ +#define CFG0_CKOUT1DIV(regval) (BITS(27,29) & ((uint32_t)(regval) << 27)) +#define RCU_CKOUT1_DIV1 CFG0_CKOUT1DIV(0) /*!< CK_OUT1 is divided by 1 */ +#define RCU_CKOUT1_DIV2 CFG0_CKOUT1DIV(4) /*!< CK_OUT1 is divided by 2 */ +#define RCU_CKOUT1_DIV3 CFG0_CKOUT1DIV(5) /*!< CK_OUT1 is divided by 3 */ +#define RCU_CKOUT1_DIV4 CFG0_CKOUT1DIV(6) /*!< CK_OUT1 is divided by 4 */ +#define RCU_CKOUT1_DIV5 CFG0_CKOUT1DIV(7) /*!< CK_OUT1 is divided by 5 */ + +/* CKOUT1 Clock source selection */ +#define CFG0_CKOUT1SEL(regval) (BITS(30,31) & ((uint32_t)(regval) << 30)) +#define RCU_CKOUT1SRC_SYSTEMCLOCK CFG0_CKOUT1SEL(0) /*!< system clock selected */ +#define RCU_CKOUT1SRC_PLLI2SR CFG0_CKOUT1SEL(1) /*!< CK_PLLI2SR clock selected */ +#define RCU_CKOUT1SRC_HXTAL CFG0_CKOUT1SEL(2) /*!< high speed crystal oscillator clock (HXTAL) selected */ +#define RCU_CKOUT1SRC_PLLP CFG0_CKOUT1SEL(3) /*!< CK_PLLP clock selected */ + +/* RCU_CFG1 register bit define */ +/* the divider factor from PLLI2SQ clock */ +#define CFG1_PLLI2SQDIV(regval) (BITS(0,4) & ((uint32_t)(regval) << 0)) +#define RCU_PLLI2SQ_DIV1 CFG1_PLLI2SQDIV(0) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/1 */ +#define RCU_PLLI2SQ_DIV2 CFG1_PLLI2SQDIV(1) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/2 */ +#define RCU_PLLI2SQ_DIV3 CFG1_PLLI2SQDIV(2) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/3 */ +#define RCU_PLLI2SQ_DIV4 CFG1_PLLI2SQDIV(3) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/4 */ +#define RCU_PLLI2SQ_DIV5 CFG1_PLLI2SQDIV(4) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/5 */ +#define RCU_PLLI2SQ_DIV6 CFG1_PLLI2SQDIV(5) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/6 */ +#define RCU_PLLI2SQ_DIV7 CFG1_PLLI2SQDIV(6) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/7 */ +#define RCU_PLLI2SQ_DIV8 CFG1_PLLI2SQDIV(7) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/8 */ +#define RCU_PLLI2SQ_DIV9 CFG1_PLLI2SQDIV(8) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/9 */ +#define RCU_PLLI2SQ_DIV10 CFG1_PLLI2SQDIV(9) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/10 */ +#define RCU_PLLI2SQ_DIV11 CFG1_PLLI2SQDIV(10) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/11 */ +#define RCU_PLLI2SQ_DIV12 CFG1_PLLI2SQDIV(11) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/12 */ +#define RCU_PLLI2SQ_DIV13 CFG1_PLLI2SQDIV(12) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/13 */ +#define RCU_PLLI2SQ_DIV14 CFG1_PLLI2SQDIV(13) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/14 */ +#define RCU_PLLI2SQ_DIV15 CFG1_PLLI2SQDIV(14) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/15 */ +#define RCU_PLLI2SQ_DIV16 CFG1_PLLI2SQDIV(15) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/16 */ +#define RCU_PLLI2SQ_DIV17 CFG1_PLLI2SQDIV(16) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/17 */ +#define RCU_PLLI2SQ_DIV18 CFG1_PLLI2SQDIV(17) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/18 */ +#define RCU_PLLI2SQ_DIV19 CFG1_PLLI2SQDIV(18) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/19 */ +#define RCU_PLLI2SQ_DIV20 CFG1_PLLI2SQDIV(19) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/20 */ +#define RCU_PLLI2SQ_DIV21 CFG1_PLLI2SQDIV(20) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/21 */ +#define RCU_PLLI2SQ_DIV22 CFG1_PLLI2SQDIV(21) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/22 */ +#define RCU_PLLI2SQ_DIV23 CFG1_PLLI2SQDIV(22) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/23 */ +#define RCU_PLLI2SQ_DIV24 CFG1_PLLI2SQDIV(23) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/24 */ +#define RCU_PLLI2SQ_DIV25 CFG1_PLLI2SQDIV(24) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/25 */ +#define RCU_PLLI2SQ_DIV26 CFG1_PLLI2SQDIV(25) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/26 */ +#define RCU_PLLI2SQ_DIV27 CFG1_PLLI2SQDIV(26) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/27 */ +#define RCU_PLLI2SQ_DIV28 CFG1_PLLI2SQDIV(27) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/28 */ +#define RCU_PLLI2SQ_DIV29 CFG1_PLLI2SQDIV(28) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/29 */ +#define RCU_PLLI2SQ_DIV30 CFG1_PLLI2SQDIV(29) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/30 */ +#define RCU_PLLI2SQ_DIV31 CFG1_PLLI2SQDIV(30) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/31 */ +#define RCU_PLLI2SQ_DIV32 CFG1_PLLI2SQDIV(31) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/32 */ + +/* the divider factor from PLLSAIR clock */ +#define CFG1_PLLSAIRDIV(regval) (BITS(16,17) & ((uint32_t)(regval) << 16)) +#define RCU_PLLSAIR_DIV2 CFG1_PLLSAIRDIV(0) /*!< CK_PLLSAIRDIV clock select CK_PLLSAIR/2 */ +#define RCU_PLLSAIR_DIV4 CFG1_PLLSAIRDIV(1) /*!< CK_PLLSAIRDIV clock select CK_PLLSAIR/4 */ +#define RCU_PLLSAIR_DIV8 CFG1_PLLSAIRDIV(2) /*!< CK_PLLSAIRDIV clock select CK_PLLSAIR/8 */ +#define RCU_PLLSAIR_DIV16 CFG1_PLLSAIRDIV(3) /*!< CK_PLLSAIRDIV clock select CK_PLLSAIR/16 */ + +/* TIMER clock selection */ +#define RCU_TIMER_PSC_MUL2 ~RCU_CFG1_TIMERSEL /*!< if APB1PSC/APB2PSC in RCU_CFG0 register is 0b0xx(CK_APBx = CK_AHB) + or 0b100(CK_APBx = CK_AHB/2), the TIMER clock is equal to CK_AHB(CK_TIMERx = CK_AHB). + or else, the TIMER clock is twice the corresponding APB clock (TIMER in APB1 domain: CK_TIMERx = 2 x CK_APB1; + TIMER in APB2 domain: CK_TIMERx = 2 x CK_APB2) */ +#define RCU_TIMER_PSC_MUL4 RCU_CFG1_TIMERSEL /*!< if APB1PSC/APB2PSC in RCU_CFG0 register is 0b0xx(CK_APBx = CK_AHB), + 0b100(CK_APBx = CK_AHB/2), or 0b101(CK_APBx = CK_AHB/4), the TIMER clock is equal to CK_AHB(CK_TIMERx = CK_AHB). + or else, the TIMER clock is four timers the corresponding APB clock (TIMER in APB1 domain: CK_TIMERx = 4 x CK_APB1; + TIMER in APB2 domain: CK_TIMERx = 4 x CK_APB2) */ + +/* RCU_PLLSSCTL register bit define */ +/* PLL spread spectrum modulation type select */ +#define RCU_SS_TYPE_CENTER ((uint32_t)0x00000000U) /*!< center type is selected */ +#define RCU_SS_TYPE_DOWN RCU_PLLSSCTL_SS_TYPE /*!< down type is selected */ + +/* RCU_PLL register bit define */ +/* The PLL VCO source clock prescaler */ +#define RCU_PLLPSC_DIV_MIN ((uint32_t)2U) /*!< PLLPSC_DIV min value */ +#define RCU_PLLPSC_DIV_MAX ((uint32_t)63U) /*!< PLLPSC_DIV max value */ + +/* The PLL VCO clock multi factor */ +#define RCU_PLLN_MUL_MIN ((uint32_t)64U) /*!< PLLN_MUL min value */ +#define RCU_PLLN_MUL_MAX ((uint32_t)500U) /*!< PLLN_MUL max value */ +#define RCU_SS_MODULATION_CENTER_INC ((uint32_t)5U) /*!< minimum factor of PLLN in center mode */ +#define RCU_SS_MODULATION_DOWN_INC ((uint32_t)7U) /*!< minimum factor of PLLN in down mode */ + +/* The PLLP output frequency division factor from PLL VCO clock */ +#define RCU_PLLP_DIV_MIN ((uint32_t)2U) /*!< PLLP_DIV min value */ +#define RCU_PLLP_DIV_MAX ((uint32_t)8U) /*!< PLLP_DIV max value */ + +/* PLL Clock Source Selection */ +#define RCU_PLLSRC_IRC16M ((uint32_t)0x00000000U) /*!< IRC16M clock selected as source clock of PLL, PLLSAI, PLLI2S */ +#define RCU_PLLSRC_HXTAL RCU_PLL_PLLSEL /*!< HXTAL clock selected as source clock of PLL, PLLSAI, PLLI2S */ + +/* The PLL Q output frequency division factor from PLL VCO clock */ +#define RCU_PLLQ_DIV_MIN ((uint32_t)2U) /*!< PLLQ_DIV min value */ +#define RCU_PLLQ_DIV_MAX ((uint32_t)15U) /*!< PLLQ_DIV max value */ + +#define CHECK_PLL_PSC_VALID(val) (((val) >= RCU_PLLPSC_DIV_MIN)&&((val) <= RCU_PLLPSC_DIV_MAX)) +#define CHECK_PLL_N_VALID(val, inc) (((val) >= (RCU_PLLN_MUL_MIN + (inc)))&&((val) <= RCU_PLLN_MUL_MAX)) +#define CHECK_PLL_P_VALID(val) (((val) == 2U) || ((val) == 4U) || ((val) == 6U) || ((val) == 8U)) +#define CHECK_PLL_Q_VALID(val) (((val) >= RCU_PLLQ_DIV_MIN)&&((val) <= RCU_PLLQ_DIV_MAX)) + +/* RCU_BDCTL register bit define */ +/* LXTAL drive capability */ +#define RCU_LXTALDRI_LOWER_DRIVE ((uint32_t)0x00000000) /*!< LXTAL drive capability is selected lower */ +#define RCU_LXTALDRI_HIGHER_DRIVE RCU_BDCTL_LXTALDRI /*!< LXTAL drive capability is selected higher */ + +/* RTC clock entry selection */ +#define BDCTL_RTCSRC(regval) (BITS(8,9) & ((uint32_t)(regval) << 8)) +#define RCU_RTCSRC_NONE BDCTL_RTCSRC(0) /*!< no clock selected */ +#define RCU_RTCSRC_LXTAL BDCTL_RTCSRC(1) /*!< RTC source clock select LXTAL */ +#define RCU_RTCSRC_IRC32K BDCTL_RTCSRC(2) /*!< RTC source clock select IRC32K */ +#define RCU_RTCSRC_HXTAL_DIV_RTCDIV BDCTL_RTCSRC(3) /*!< RTC source clock select HXTAL/RTCDIV */ + +/* RCU_PLLI2S register bit define */ +/* The PLLI2S VCO clock multi factor */ +#define RCU_PLLI2SN_MUL_MIN 50U +#define RCU_PLLI2SN_MUL_MAX 500U + +/* The PLLI2S Q output frequency division factor from PLLI2S VCO clock */ +#define RCU_PLLI2SQ_DIV_MIN 2U +#define RCU_PLLI2SQ_DIV_MAX 15U + +/* The PLLI2S R output frequency division factor from PLLI2S VCO clock */ +#define RCU_PLLI2SR_DIV_MIN 2U +#define RCU_PLLI2SR_DIV_MAX 7U + +/* RCU_PLLSAI register bit define */ +/* The PLLSAI VCO clock multi factor */ +#define RCU_PLLSAIN_MUL_MIN 50U +#define RCU_PLLSAIN_MUL_MAX 500U + +/* The PLLSAI P output frequency division factor from PLLSAI VCO clock */ +#define RCU_PLLSAIP_DIV_MIN 2U +#define RCU_PLLSAIP_DIV_MAX 8U + +/* The PLLSAI Q output frequency division factor from PLLSAI VCO clock */ +#define RCU_PLLSAIQ_DIV_MIN 2U +#define RCU_PLLSAIQ_DIV_MAX 15U + +/* The PLLSAI R output frequency division factor from PLLSAI VCO clock */ +#define RCU_PLLSAIR_DIV_MIN 2U +#define RCU_PLLSAIR_DIV_MAX 7U + +#define CHECK_PLLI2S_PSC_VALID(val) (((val) >= RCU_PLLI2SPSC_DIV_MIN)&&((val) <= RCU_PLLI2SPSC_DIV_MAX)) +#define CHECK_PLLI2S_N_VALID(val) (((val) >= RCU_PLLI2SN_MUL_MIN)&&((val) <= RCU_PLLI2SN_MUL_MAX)) +#define CHECK_PLLI2S_Q_VALID(val) (((val) >= RCU_PLLI2SQ_DIV_MIN)&&((val) <= RCU_PLLI2SQ_DIV_MAX)) +#define CHECK_PLLI2S_R_VALID(val) (((val) >= RCU_PLLI2SR_DIV_MIN)&&((val) <= RCU_PLLI2SR_DIV_MAX)) + +#define CHECK_PLLSAI_N_VALID(val) (((val) >= (RCU_PLLSAIN_MUL_MIN))&&((val) <= RCU_PLLSAIN_MUL_MAX)) +#define CHECK_PLLSAI_P_VALID(val) (((val) == 2U) || ((val) == 4U) || ((val) == 6U) || ((val) == 8U)) +#define CHECK_PLLSAI_Q_VALID(val) (((val) >= RCU_PLLSAIQ_DIV_MIN)&&((val) <= RCU_PLLSAIQ_DIV_MAX)) +#define CHECK_PLLSAI_R_VALID(val) (((val) >= RCU_PLLSAIR_DIV_MIN)&&((val) <= RCU_PLLSAIR_DIV_MAX)) + +/* RCU_ADDCTL register bit define */ +/* 48MHz clock selection */ +#define RCU_CK48MSRC_PLL48M ((uint32_t)0x00000000U) /*!< CK48M source clock select PLL48M */ +#define RCU_CK48MSRC_IRC48M RCU_ADDCTL_CK48MSEL /*!< CK48M source clock select IRC48M */ + +/* PLL48M clock selection */ +#define RCU_PLL48MSRC_PLLQ ((uint32_t)0x00000000U) /*!< PLL48M source clock select PLLQ */ +#define RCU_PLL48MSRC_PLLSAIP RCU_ADDCTL_PLL48MSEL /*!< PLL48M source clock select PLLSAIP */ + +/* Deep-sleep mode voltage */ +#define DSV_DSLPVS(regval) (BITS(0,2) & ((uint32_t)(regval) << 0)) +#define RCU_DEEPSLEEP_V_1_2 DSV_DSLPVS(0) /*!< core voltage is 1.2V in deep-sleep mode */ +#define RCU_DEEPSLEEP_V_1_1 DSV_DSLPVS(1) /*!< core voltage is 1.1V in deep-sleep mode */ +#define RCU_DEEPSLEEP_V_1_0 DSV_DSLPVS(2) /*!< core voltage is 1.0V in deep-sleep mode */ +#define RCU_DEEPSLEEP_V_0_9 DSV_DSLPVS(3) /*!< core voltage is 0.9V in deep-sleep mode */ + + +/* function declarations */ +/* deinitialize the RCU */ +void rcu_deinit(void); +/* enable the peripherals clock */ +void rcu_periph_clock_enable(rcu_periph_enum periph); +/* disable the peripherals clock */ +void rcu_periph_clock_disable(rcu_periph_enum periph); +/* enable the peripherals clock when sleep mode */ +void rcu_periph_clock_sleep_enable(rcu_periph_sleep_enum periph); +/* disable the peripherals clock when sleep mode */ +void rcu_periph_clock_sleep_disable(rcu_periph_sleep_enum periph); +/* reset the peripherals */ +void rcu_periph_reset_enable(rcu_periph_reset_enum periph_reset); +/* disable reset the peripheral */ +void rcu_periph_reset_disable(rcu_periph_reset_enum periph_reset); +/* reset the BKP */ +void rcu_bkp_reset_enable(void); +/* disable the BKP reset */ +void rcu_bkp_reset_disable(void); + +/* configure the system clock source */ +void rcu_system_clock_source_config(uint32_t ck_sys); +/* get the system clock source */ +uint32_t rcu_system_clock_source_get(void); +/* configure the AHB prescaler selection */ +void rcu_ahb_clock_config(uint32_t ck_ahb); +/* configure the APB1 prescaler selection */ +void rcu_apb1_clock_config(uint32_t ck_apb1); +/* configure the APB2 prescaler selection */ +void rcu_apb2_clock_config(uint32_t ck_apb2); +/* configure the CK_OUT0 clock source and divider */ +void rcu_ckout0_config(uint32_t ckout0_src, uint32_t ckout0_div); +/* configure the CK_OUT1 clock source and divider */ +void rcu_ckout1_config(uint32_t ckout1_src, uint32_t ckout1_div); +/* configure the PLL clock source selection and PLL multiply factor */ +ErrStatus rcu_pll_config(uint32_t pll_src, uint32_t pll_psc, uint32_t pll_n, uint32_t pll_p, uint32_t pll_q); +/* configure the PLLI2S clock */ +ErrStatus rcu_plli2s_config(uint32_t plli2s_n, uint32_t plli2s_r); +/* configure the PLLSAI clock */ +ErrStatus rcu_pllsai_config(uint32_t pllsai_n, uint32_t pllsai_p, uint32_t pllsai_r); +/* configure the RTC clock source selection */ +void rcu_rtc_clock_config(uint32_t rtc_clock_source); +/* cconfigure the frequency division of RTC clock when HXTAL was selected as its clock source */ +void rcu_rtc_div_config(uint32_t rtc_div); +/* configure the I2S clock source selection */ +void rcu_i2s_clock_config(uint32_t i2s_clock_source); +/* configure the CK48M clock selection */ +void rcu_ck48m_clock_config(uint32_t ck48m_clock_source); +/* configure the PLL48M clock selection */ +void rcu_pll48m_clock_config(uint32_t pll48m_clock_source); +/* configure the TIMER clock prescaler selection */ +void rcu_timer_clock_prescaler_config(uint32_t timer_clock_prescaler); +/* configure the TLI clock division selection */ +void rcu_tli_clock_div_config(uint32_t pllsai_r_div); + + +/* get the clock stabilization and periphral reset flags */ +FlagStatus rcu_flag_get(rcu_flag_enum flag); +/* clear the reset flag */ +void rcu_all_reset_flag_clear(void); +/* get the clock stabilization interrupt and ckm flags */ +FlagStatus rcu_interrupt_flag_get(rcu_int_flag_enum int_flag); +/* clear the interrupt flags */ +void rcu_interrupt_flag_clear(rcu_int_flag_clear_enum int_flag); +/* enable the stabilization interrupt */ +void rcu_interrupt_enable(rcu_int_enum interrupt); +/* disable the stabilization interrupt */ +void rcu_interrupt_disable(rcu_int_enum interrupt); + +/* configure the LXTAL drive capability */ +void rcu_lxtal_drive_capability_config(uint32_t lxtal_dricap); +/* wait for oscillator stabilization flags is SET or oscillator startup is timeout */ +ErrStatus rcu_osci_stab_wait(rcu_osci_type_enum osci); +/* turn on the oscillator */ +void rcu_osci_on(rcu_osci_type_enum osci); +/* turn off the oscillator */ +void rcu_osci_off(rcu_osci_type_enum osci); +/* enable the oscillator bypass mode, HXTALEN or LXTALEN must be reset before it */ +void rcu_osci_bypass_mode_enable(rcu_osci_type_enum osci); +/* disable the oscillator bypass mode, HXTALEN or LXTALEN must be reset before it */ +void rcu_osci_bypass_mode_disable(rcu_osci_type_enum osci); +/* enable the HXTAL clock monitor */ +void rcu_hxtal_clock_monitor_enable(void); +/* disable the HXTAL clock monitor */ +void rcu_hxtal_clock_monitor_disable(void); + +/* set the IRC16M adjust value */ +void rcu_irc16m_adjust_value_set(uint32_t irc16m_adjval); +/* configure the spread spectrum modulation for the main PLL clock */ +void rcu_spread_spectrum_config(uint32_t spread_spectrum_type, uint32_t modstep, uint32_t modcnt); +/* enable the spread spectrum modulation for the main PLL clock */ +void rcu_spread_spectrum_enable(void); +/* disable the spread spectrum modulation for the main PLL clock */ +void rcu_spread_spectrum_disable(void); +/* unlock the voltage key */ +void rcu_voltage_key_unlock(void); +/* set the deep sleep mode voltage */ +void rcu_deepsleep_voltage_set(uint32_t dsvol); + +/* get the system clock, bus and peripheral clock frequency */ +uint32_t rcu_clock_freq_get(rcu_clock_freq_enum clock); + +#endif /* GD32F4XX_RCU_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_rtc.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_rtc.h new file mode 100644 index 0000000000..7da693faf4 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_rtc.h @@ -0,0 +1,640 @@ +/*! + \file gd32f4xx_rtc.c + \brief definitions for the RTC + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + + +#ifndef GD32F4XX_RTC_H +#define GD32F4XX_RTC_H + +#include "gd32f4xx.h" + +/* RTC definitions */ +#define RTC RTC_BASE + +/* registers definitions */ +#define RTC_TIME REG32((RTC) + 0x00U) /*!< RTC time of day register */ +#define RTC_DATE REG32((RTC) + 0x04U) /*!< RTC date register */ +#define RTC_CTL REG32((RTC) + 0x08U) /*!< RTC control register */ +#define RTC_STAT REG32((RTC) + 0x0CU) /*!< RTC status register */ +#define RTC_PSC REG32((RTC) + 0x10U) /*!< RTC time prescaler register */ +#define RTC_WUT REG32((RTC) + 0x14U) /*!< RTC wakeup timer regiser */ +#define RTC_COSC REG32((RTC) + 0x18U) /*!< RTC coarse calibration register */ +#define RTC_ALRM0TD REG32((RTC) + 0x1CU) /*!< RTC alarm 0 time and date register */ +#define RTC_ALRM1TD REG32((RTC) + 0x20U) /*!< RTC alarm 1 time and date register */ +#define RTC_WPK REG32((RTC) + 0x24U) /*!< RTC write protection key register */ +#define RTC_SS REG32((RTC) + 0x28U) /*!< RTC sub second register */ +#define RTC_SHIFTCTL REG32((RTC) + 0x2CU) /*!< RTC shift function control register */ +#define RTC_TTS REG32((RTC) + 0x30U) /*!< RTC time of timestamp register */ +#define RTC_DTS REG32((RTC) + 0x34U) /*!< RTC date of timestamp register */ +#define RTC_SSTS REG32((RTC) + 0x38U) /*!< RTC sub second of timestamp register */ +#define RTC_HRFC REG32((RTC) + 0x3CU) /*!< RTC high resolution frequency compensation registor */ +#define RTC_TAMP REG32((RTC) + 0x40U) /*!< RTC tamper register */ +#define RTC_ALRM0SS REG32((RTC) + 0x44U) /*!< RTC alarm 0 sub second register */ +#define RTC_ALRM1SS REG32((RTC) + 0x48U) /*!< RTC alarm 1 sub second register */ +#define RTC_BKP0 REG32((RTC) + 0x50U) /*!< RTC backup register */ +#define RTC_BKP1 REG32((RTC) + 0x54U) /*!< RTC backup register */ +#define RTC_BKP2 REG32((RTC) + 0x58U) /*!< RTC backup register */ +#define RTC_BKP3 REG32((RTC) + 0x5CU) /*!< RTC backup register */ +#define RTC_BKP4 REG32((RTC) + 0x60U) /*!< RTC backup register */ +#define RTC_BKP5 REG32((RTC) + 0x64U) /*!< RTC backup register */ +#define RTC_BKP6 REG32((RTC) + 0x68U) /*!< RTC backup register */ +#define RTC_BKP7 REG32((RTC) + 0x6CU) /*!< RTC backup register */ +#define RTC_BKP8 REG32((RTC) + 0x70U) /*!< RTC backup register */ +#define RTC_BKP9 REG32((RTC) + 0x74U) /*!< RTC backup register */ +#define RTC_BKP10 REG32((RTC) + 0x78U) /*!< RTC backup register */ +#define RTC_BKP11 REG32((RTC) + 0x7CU) /*!< RTC backup register */ +#define RTC_BKP12 REG32((RTC) + 0x80U) /*!< RTC backup register */ +#define RTC_BKP13 REG32((RTC) + 0x84U) /*!< RTC backup register */ +#define RTC_BKP14 REG32((RTC) + 0x88U) /*!< RTC backup register */ +#define RTC_BKP15 REG32((RTC) + 0x8CU) /*!< RTC backup register */ +#define RTC_BKP16 REG32((RTC) + 0x90U) /*!< RTC backup register */ +#define RTC_BKP17 REG32((RTC) + 0x94U) /*!< RTC backup register */ +#define RTC_BKP18 REG32((RTC) + 0x98U) /*!< RTC backup register */ +#define RTC_BKP19 REG32((RTC) + 0x9CU) /*!< RTC backup register */ + +/* bits definitions */ +/* RTC_TIME */ +#define RTC_TIME_SCU BITS(0,3) /*!< second units in BCD code */ +#define RTC_TIME_SCT BITS(4,6) /*!< second tens in BCD code */ +#define RTC_TIME_MNU BITS(8,11) /*!< minute units in BCD code */ +#define RTC_TIME_MNT BITS(12,14) /*!< minute tens in BCD code */ +#define RTC_TIME_HRU BITS(16,19) /*!< hour units in BCD code */ +#define RTC_TIME_HRT BITS(20,21) /*!< hour tens in BCD code */ +#define RTC_TIME_PM BIT(22) /*!< AM/PM notation */ + +/* RTC_DATE */ +#define RTC_DATE_DAYU BITS(0,3) /*!< date units in BCD code */ +#define RTC_DATE_DAYT BITS(4,5) /*!< date tens in BCD code */ +#define RTC_DATE_MONU BITS(8,11) /*!< month units in BCD code */ +#define RTC_DATE_MONT BIT(12) /*!< month tens in BCD code */ +#define RTC_DATE_DOW BITS(13,15) /*!< day of week units */ +#define RTC_DATE_YRU BITS(16,19) /*!< year units in BCD code */ +#define RTC_DATE_YRT BITS(20,23) /*!< year tens in BCD code */ + +/* RTC_CTL */ +#define RTC_CTL_WTCS BITS(0,2) /*!< auto wakeup timer clock selection */ +#define RTC_CTL_TSEG BIT(3) /*!< valid event edge of time-stamp */ +#define RTC_CTL_REFEN BIT(4) /*!< reference clock detection function enable */ +#define RTC_CTL_BPSHAD BIT(5) /*!< shadow registers bypass control */ +#define RTC_CTL_CS BIT(6) /*!< display format of clock system */ +#define RTC_CTL_CCEN BIT(7) /*!< coarse calibration function enable */ +#define RTC_CTL_ALRM0EN BIT(8) /*!< alarm0 function enable */ +#define RTC_CTL_ALRM1EN BIT(9) /*!< alarm1 function enable */ +#define RTC_CTL_WTEN BIT(10) /*!< auto wakeup timer function enable */ +#define RTC_CTL_TSEN BIT(11) /*!< time-stamp function enable */ +#define RTC_CTL_ALRM0IE BIT(12) /*!< RTC alarm0 interrupt enable */ +#define RTC_CTL_ALRM1IE BIT(13) /*!< RTC alarm1 interrupt enable */ +#define RTC_CTL_WTIE BIT(14) /*!< auto wakeup timer interrupt enable */ +#define RTC_CTL_TSIE BIT(15) /*!< time-stamp interrupt enable */ +#define RTC_CTL_A1H BIT(16) /*!< add 1 hour(summer time change) */ +#define RTC_CTL_S1H BIT(17) /*!< subtract 1 hour(winter time change) */ +#define RTC_CTL_DSM BIT(18) /*!< daylight saving mark */ +#define RTC_CTL_COS BIT(19) /*!< calibration output selection */ +#define RTC_CTL_OPOL BIT(20) /*!< output polarity */ +#define RTC_CTL_OS BITS(21,22) /*!< output selection */ +#define RTC_CTL_COEN BIT(23) /*!< calibration output enable */ + +/* RTC_STAT */ +#define RTC_STAT_ALRM0WF BIT(0) /*!< alarm0 configuration can be write flag */ +#define RTC_STAT_ALRM1WF BIT(1) /*!< alarm1 configuration can be write flag */ +#define RTC_STAT_WTWF BIT(2) /*!< wakeup timer can be write flag */ +#define RTC_STAT_SOPF BIT(3) /*!< shift function operation pending flag */ +#define RTC_STAT_YCM BIT(4) /*!< year configuration mark status flag */ +#define RTC_STAT_RSYNF BIT(5) /*!< register synchronization flag */ +#define RTC_STAT_INITF BIT(6) /*!< initialization state flag */ +#define RTC_STAT_INITM BIT(7) /*!< enter initialization mode */ +#define RTC_STAT_ALRM0F BIT(8) /*!< alarm0 occurs flag */ +#define RTC_STAT_ALRM1F BIT(9) /*!< alarm1 occurs flag */ +#define RTC_STAT_WTF BIT(10) /*!< wakeup timer occurs flag */ +#define RTC_STAT_TSF BIT(11) /*!< time-stamp flag */ +#define RTC_STAT_TSOVRF BIT(12) /*!< time-stamp overflow flag */ +#define RTC_STAT_TP0F BIT(13) /*!< RTC tamper 0 detected flag */ +#define RTC_STAT_TP1F BIT(14) /*!< RTC tamper 1 detected flag */ +#define RTC_STAT_SCPF BIT(16) /*!< smooth calibration pending flag */ + +/* RTC_PSC */ +#define RTC_PSC_FACTOR_S BITS(0,14) /*!< synchronous prescaler factor */ +#define RTC_PSC_FACTOR_A BITS(16,22) /*!< asynchronous prescaler factor */ + +/* RTC_WUT */ +#define RTC_WUT_WTRV BITS(0,15) /*!< auto wakeup timer reloads value */ + +/* RTC_COSC */ +#define RTC_COSC_COSS BITS(0,4) /*!< coarse calibration step */ +#define RTC_COSC_COSD BIT(7) /*!< coarse calibration direction */ + +/* RTC_ALRMxTD */ +#define RTC_ALRMXTD_SCU BITS(0,3) /*!< second units in BCD code */ +#define RTC_ALRMXTD_SCT BITS(4,6) /*!< second tens in BCD code */ +#define RTC_ALRMXTD_MSKS BIT(7) /*!< alarm second mask bit */ +#define RTC_ALRMXTD_MNU BITS(8,11) /*!< minutes units in BCD code */ +#define RTC_ALRMXTD_MNT BITS(12,14) /*!< minutes tens in BCD code */ +#define RTC_ALRMXTD_MSKM BIT(15) /*!< alarm minutes mask bit */ +#define RTC_ALRMXTD_HRU BITS(16,19) /*!< hour units in BCD code */ +#define RTC_ALRMXTD_HRT BITS(20,21) /*!< hour units in BCD code */ +#define RTC_ALRMXTD_PM BIT(22) /*!< AM/PM flag */ +#define RTC_ALRMXTD_MSKH BIT(23) /*!< alarm hour mask bit */ +#define RTC_ALRMXTD_DAYU BITS(24,27) /*!< date units or week day in BCD code */ +#define RTC_ALRMXTD_DAYT BITS(28,29) /*!< date tens in BCD code */ +#define RTC_ALRMXTD_DOWS BIT(30) /*!< day of week selection */ +#define RTC_ALRMXTD_MSKD BIT(31) /*!< alarm date mask bit */ + +/* RTC_WPK */ +#define RTC_WPK_WPK BITS(0,7) /*!< key for write protection */ + +/* RTC_SS */ +#define RTC_SS_SSC BITS(0,15) /*!< sub second value */ + +/* RTC_SHIFTCTL */ +#define RTC_SHIFTCTL_SFS BITS(0,14) /*!< subtract a fraction of a second */ +#define RTC_SHIFTCTL_A1S BIT(31) /*!< one second add */ + +/* RTC_TTS */ +#define RTC_TTS_SCU BITS(0,3) /*!< second units in BCD code */ +#define RTC_TTS_SCT BITS(4,6) /*!< second units in BCD code */ +#define RTC_TTS_MNU BITS(8,11) /*!< minute units in BCD code */ +#define RTC_TTS_MNT BITS(12,14) /*!< minute tens in BCD code */ +#define RTC_TTS_HRU BITS(16,19) /*!< hour units in BCD code */ +#define RTC_TTS_HRT BITS(20,21) /*!< hour tens in BCD code */ +#define RTC_TTS_PM BIT(22) /*!< AM/PM notation */ + +/* RTC_DTS */ +#define RTC_DTS_DAYU BITS(0,3) /*!< date units in BCD code */ +#define RTC_DTS_DAYT BITS(4,5) /*!< date tens in BCD code */ +#define RTC_DTS_MONU BITS(8,11) /*!< month units in BCD code */ +#define RTC_DTS_MONT BIT(12) /*!< month tens in BCD code */ +#define RTC_DTS_DOW BITS(13,15) /*!< day of week units */ + +/* RTC_SSTS */ +#define RTC_SSTS_SSC BITS(0,15) /*!< timestamp sub second units */ + +/* RTC_HRFC */ +#define RTC_HRFC_CMSK BITS(0,8) /*!< calibration mask number */ +#define RTC_HRFC_CWND16 BIT(13) /*!< calibration window select 16 seconds */ +#define RTC_HRFC_CWND8 BIT(14) /*!< calibration window select 16 seconds */ +#define RTC_HRFC_FREQI BIT(15) /*!< increase RTC frequency by 488.5ppm */ + +/* RTC_TAMP */ +#define RTC_TAMP_TP0EN BIT(0) /*!< tamper 0 detection enable */ +#define RTC_TAMP_TP0EG BIT(1) /*!< tamper 0 event trigger edge for RTC tamp 0 input */ +#define RTC_TAMP_TPIE BIT(2) /*!< tamper detection interrupt enable */ +#define RTC_TAMP_TP1EN BIT(3) /*!< tamper 1 detection enable */ +#define RTC_TAMP_TP1EG BIT(4) /*!< Tamper 1 event trigger edge for RTC tamp 1 input */ +#define RTC_TAMP_TPTS BIT(7) /*!< make tamper function used for timestamp function */ +#define RTC_TAMP_FREQ BITS(8,10) /*!< sample frequency of tamper event detection */ +#define RTC_TAMP_FLT BITS(11,12) /*!< RTC tamp x filter count setting */ +#define RTC_TAMP_PRCH BITS(13,14) /*!< precharge duration time of RTC tamp x */ +#define RTC_TAMP_DISPU BIT(15) /*!< RTC tamp x pull up disable bit */ +#define RTC_TAMP_TP0SEL BIT(16) /*!< Tamper 0 function input mapping selection */ +#define RTC_TAMP_TSSEL BIT(17) /*!< Timestamp input mapping selection */ +#define RTC_TAMP_AOT BIT(18) /*!< RTC_ALARM output Type */ + +/* RTC_ALRM0SS */ +#define RTC_ALRM0SS_SSC BITS(0,14) /*!< alarm0 sub second value */ +#define RTC_ALRM0SS_MASKSSC BITS(24,27) /*!< mask control bit of SS */ + +/* RTC_ALRM1SS */ +#define RTC_ALRM1SS_SSC BITS(0,14) /*!< alarm1 sub second value */ +#define RTC_ALRM1SS_MASKSSC BITS(24,27) /*!< mask control bit of SS */ + +/* constants definitions */ +/* structure for initialization of the RTC */ +typedef struct +{ + uint8_t year; /*!< RTC year value: 0x0 - 0x99(BCD format) */ + uint8_t month; /*!< RTC month value */ + uint8_t date; /*!< RTC date value: 0x1 - 0x31(BCD format) */ + uint8_t day_of_week; /*!< RTC weekday value */ + uint8_t hour; /*!< RTC hour value */ + uint8_t minute; /*!< RTC minute value: 0x0 - 0x59(BCD format) */ + uint8_t second; /*!< RTC second value: 0x0 - 0x59(BCD format) */ + uint16_t factor_asyn; /*!< RTC asynchronous prescaler value: 0x0 - 0x7F */ + uint16_t factor_syn; /*!< RTC synchronous prescaler value: 0x0 - 0x7FFF */ + uint32_t am_pm; /*!< RTC AM/PM value */ + uint32_t display_format; /*!< RTC time notation */ +}rtc_parameter_struct; + +/* structure for RTC alarm configuration */ +typedef struct +{ + uint32_t alarm_mask; /*!< RTC alarm mask */ + uint32_t weekday_or_date; /*!< specify RTC alarm is on date or weekday */ + uint8_t alarm_day; /*!< RTC alarm date or weekday value*/ + uint8_t alarm_hour; /*!< RTC alarm hour value */ + uint8_t alarm_minute; /*!< RTC alarm minute value: 0x0 - 0x59(BCD format) */ + uint8_t alarm_second; /*!< RTC alarm second value: 0x0 - 0x59(BCD format) */ + uint32_t am_pm; /*!< RTC alarm AM/PM value */ +}rtc_alarm_struct; + +/* structure for RTC time-stamp configuration */ +typedef struct +{ + uint8_t timestamp_month; /*!< RTC time-stamp month value */ + uint8_t timestamp_date; /*!< RTC time-stamp date value: 0x1 - 0x31(BCD format) */ + uint8_t timestamp_day; /*!< RTC time-stamp weekday value */ + uint8_t timestamp_hour; /*!< RTC time-stamp hour value */ + uint8_t timestamp_minute; /*!< RTC time-stamp minute value: 0x0 - 0x59(BCD format) */ + uint8_t timestamp_second; /*!< RTC time-stamp second value: 0x0 - 0x59(BCD format) */ + uint32_t am_pm; /*!< RTC time-stamp AM/PM value */ +}rtc_timestamp_struct; + +/* structure for RTC tamper configuration */ +typedef struct +{ + uint32_t tamper_source; /*!< RTC tamper source */ + uint32_t tamper_trigger; /*!< RTC tamper trigger */ + uint32_t tamper_filter; /*!< RTC tamper consecutive samples needed during a voltage level detection */ + uint32_t tamper_sample_frequency; /*!< RTC tamper sampling frequency during a voltage level detection */ + ControlStatus tamper_precharge_enable; /*!< RTC tamper precharge feature during a voltage level detection */ + uint32_t tamper_precharge_time; /*!< RTC tamper precharge duration if precharge feature is enabled */ + ControlStatus tamper_with_timestamp; /*!< RTC tamper time-stamp feature */ +}rtc_tamper_struct; + +/* time register value */ +#define TIME_SC(regval) (BITS(0,6) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_TIME_SC bit field */ +#define GET_TIME_SC(regval) GET_BITS((regval),0,6) /*!< get value of RTC_TIME_SC bit field */ + +#define TIME_MN(regval) (BITS(8,14) & ((uint32_t)(regval) << 8)) /*!< write value to RTC_TIME_MN bit field */ +#define GET_TIME_MN(regval) GET_BITS((regval),8,14) /*!< get value of RTC_TIME_MN bit field */ + +#define TIME_HR(regval) (BITS(16,21) & ((uint32_t)(regval) << 16)) /*!< write value to RTC_TIME_HR bit field */ +#define GET_TIME_HR(regval) GET_BITS((regval),16,21) /*!< get value of RTC_TIME_HR bit field */ + +#define RTC_AM ((uint32_t)0x00000000U) /*!< AM format */ +#define RTC_PM RTC_TIME_PM /*!< PM format */ + +/* date register value */ +#define DATE_DAY(regval) (BITS(0,5) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_DATE_DAY bit field */ +#define GET_DATE_DAY(regval) GET_BITS((regval),0,5) /*!< get value of RTC_DATE_DAY bit field */ + +#define DATE_MON(regval) (BITS(8,12) & ((uint32_t)(regval) << 8)) /*!< write value to RTC_DATE_MON bit field */ +#define GET_DATE_MON(regval) GET_BITS((regval),8,12) /*!< get value of RTC_DATE_MON bit field */ +#define RTC_JAN ((uint8_t)0x01U) /*!< janurary */ +#define RTC_FEB ((uint8_t)0x02U) /*!< february */ +#define RTC_MAR ((uint8_t)0x03U) /*!< march */ +#define RTC_APR ((uint8_t)0x04U) /*!< april */ +#define RTC_MAY ((uint8_t)0x05U) /*!< may */ +#define RTC_JUN ((uint8_t)0x06U) /*!< june */ +#define RTC_JUL ((uint8_t)0x07U) /*!< july */ +#define RTC_AUG ((uint8_t)0x08U) /*!< august */ +#define RTC_SEP ((uint8_t)0x09U) /*!< september */ +#define RTC_OCT ((uint8_t)0x10U) /*!< october */ +#define RTC_NOV ((uint8_t)0x11U) /*!< november */ +#define RTC_DEC ((uint8_t)0x12U) /*!< december */ + +#define DATE_DOW(regval) (BITS(13,15) & ((uint32_t)(regval) << 13)) /*!< write value to RTC_DATE_DOW bit field */ +#define GET_DATE_DOW(regval) GET_BITS((uint32_t)(regval),13,15) /*!< get value of RTC_DATE_DOW bit field */ +#define RTC_MONDAY ((uint8_t)0x01) /*!< monday */ +#define RTC_TUESDAY ((uint8_t)0x02) /*!< tuesday */ +#define RTC_WEDSDAY ((uint8_t)0x03) /*!< wednesday */ +#define RTC_THURSDAY ((uint8_t)0x04) /*!< thursday */ +#define RTC_FRIDAY ((uint8_t)0x05) /*!< friday */ +#define RTC_SATURDAY ((uint8_t)0x06) /*!< saturday */ +#define RTC_SUNDAY ((uint8_t)0x07) /*!< sunday */ + +#define DATE_YR(regval) (BITS(16,23) & ((uint32_t)(regval) << 16)) /*!< write value to RTC_DATE_YR bit field */ +#define GET_DATE_YR(regval) GET_BITS((regval),16,23) /*!< get value of RTC_DATE_YR bit field */ + +/* ctl register value */ +#define CTL_OS(regval) (BITS(21,22) & ((uint32_t)(regval) << 21)) /*!< write value to RTC_CTL_OS bit field */ +#define RTC_OS_DISABLE CTL_OS(0) /*!< disable output RTC_ALARM */ +#define RTC_OS_ALARM0 CTL_OS(1) /*!< enable alarm0 flag output */ +#define RTC_OS_ALARM1 CTL_OS(2) /*!< enable alarm1 flag output */ +#define RTC_OS_WAKEUP CTL_OS(3) /*!< enable wakeup flag output */ + +#define RTC_CALIBRATION_512HZ RTC_CTL_COEN /*!< calibration output of 512Hz is enable */ +#define RTC_CALIBRATION_1HZ (RTC_CTL_COEN | RTC_CTL_COS) /*!< calibration output of 1Hz is enable */ +#define RTC_ALARM0_HIGH RTC_OS_ALARM0 /*!< enable alarm0 flag output with high level */ +#define RTC_ALARM0_LOW (RTC_OS_ALARM0 | RTC_CTL_OPOL) /*!< enable alarm0 flag output with low level*/ +#define RTC_ALARM1_HIGH RTC_OS_ALARM1 /*!< enable alarm1 flag output with high level */ +#define RTC_ALARM1_LOW (RTC_OS_ALARM1 | RTC_CTL_OPOL) /*!< enable alarm1 flag output with low level*/ +#define RTC_WAKEUP_HIGH RTC_OS_WAKEUP /*!< enable wakeup flag output with high level */ +#define RTC_WAKEUP_LOW (RTC_OS_WAKEUP | RTC_CTL_OPOL) /*!< enable wakeup flag output with low level*/ + +#define RTC_24HOUR ((uint32_t)0x00000000U) /*!< 24-hour format */ +#define RTC_12HOUR RTC_CTL_CS /*!< 12-hour format */ + +#define RTC_TIMESTAMP_RISING_EDGE ((uint32_t)0x00000000U) /*!< rising edge is valid event edge for time-stamp event */ +#define RTC_TIMESTAMP_FALLING_EDGE RTC_CTL_TSEG /*!< falling edge is valid event edge for time-stamp event */ + +/* psc register value */ +#define PSC_FACTOR_S(regval) (BITS(0,14) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_PSC_FACTOR_S bit field */ +#define GET_PSC_FACTOR_S(regval) GET_BITS((regval),0,14) /*!< get value of RTC_PSC_FACTOR_S bit field */ + +#define PSC_FACTOR_A(regval) (BITS(16,22) & ((uint32_t)(regval) << 16)) /*!< write value to RTC_PSC_FACTOR_A bit field */ +#define GET_PSC_FACTOR_A(regval) GET_BITS((regval),16,22) /*!< get value of RTC_PSC_FACTOR_A bit field */ + +/* alrmtd register value */ +#define ALRMTD_SC(regval) (BITS(0,6) & ((uint32_t)(regval)<< 0)) /*!< write value to RTC_ALRMTD_SC bit field */ +#define GET_ALRMTD_SC(regval) GET_BITS((regval),0,6) /*!< get value of RTC_ALRMTD_SC bit field */ + +#define ALRMTD_MN(regval) (BITS(8,14) & ((uint32_t)(regval) << 8)) /*!< write value to RTC_ALRMTD_MN bit field */ +#define GET_ALRMTD_MN(regval) GET_BITS((regval),8,14) /*!< get value of RTC_ALRMTD_MN bit field */ + +#define ALRMTD_HR(regval) (BITS(16,21) & ((uint32_t)(regval) << 16)) /*!< write value to RTC_ALRMTD_HR bit field */ +#define GET_ALRMTD_HR(regval) GET_BITS((regval),16,21) /*!< get value of RTC_ALRMTD_HR bit field */ + +#define ALRMTD_DAY(regval) (BITS(24,29) & ((uint32_t)(regval) << 24)) /*!< write value to RTC_ALRMTD_DAY bit field */ +#define GET_ALRMTD_DAY(regval) GET_BITS((regval),24,29) /*!< get value of RTC_ALRMTD_DAY bit field */ + +#define RTC_ALARM_NONE_MASK ((uint32_t)0x00000000U) /*!< alarm none mask */ +#define RTC_ALARM_DATE_MASK RTC_ALRMXTD_MSKD /*!< alarm date mask */ +#define RTC_ALARM_HOUR_MASK RTC_ALRMXTD_MSKH /*!< alarm hour mask */ +#define RTC_ALARM_MINUTE_MASK RTC_ALRMXTD_MSKM /*!< alarm minute mask */ +#define RTC_ALARM_SECOND_MASK RTC_ALRMXTD_MSKS /*!< alarm second mask */ +#define RTC_ALARM_ALL_MASK (RTC_ALRMXTD_MSKD|RTC_ALRMXTD_MSKH|RTC_ALRMXTD_MSKM|RTC_ALRMXTD_MSKS) /*!< alarm all mask */ + +#define RTC_ALARM_DATE_SELECTED ((uint32_t)0x00000000U) /*!< alarm date format selected */ +#define RTC_ALARM_WEEKDAY_SELECTED RTC_ALRMXTD_DOWS /*!< alarm weekday format selected */ + +/* wpk register value */ +#define WPK_WPK(regval) (BITS(0,7) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_WPK_WPK bit field */ + +/* ss register value */ +#define SS_SSC(regval) (BITS(0,15) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_SS_SSC bit field */ + +/* shiftctl register value */ +#define SHIFTCTL_SFS(regval) (BITS(0,14) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_SHIFTCTL_SFS bit field */ + +#define RTC_SHIFT_ADD1S_RESET ((uint32_t)0x00000000U) /*!< not add 1 second */ +#define RTC_SHIFT_ADD1S_SET RTC_SHIFTCTL_A1S /*!< add one second to the clock */ + +/* tts register value */ +#define TTS_SC(regval) (BITS(0,6) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_TTS_SC bit field */ +#define GET_TTS_SC(regval) GET_BITS((regval),0,6) /*!< get value of RTC_TTS_SC bit field */ + +#define TTS_MN(regval) (BITS(8,14) & ((uint32_t)(regval) << 8)) /*!< write value to RTC_TTS_MN bit field */ +#define GET_TTS_MN(regval) GET_BITS((regval),8,14) /*!< get value of RTC_TTS_MN bit field */ + +#define TTS_HR(regval) (BITS(16,21) & ((uint32_t)(regval) << 16)) /*!< write value to RTC_TTS_HR bit field */ +#define GET_TTS_HR(regval) GET_BITS((regval),16,21) /*!< get value of RTC_TTS_HR bit field */ + +/* dts register value */ +#define DTS_DAY(regval) (BITS(0,5) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_DTS_DAY bit field */ +#define GET_DTS_DAY(regval) GET_BITS((regval),0,5) /*!< get value of RTC_DTS_DAY bit field */ + +#define DTS_MON(regval) (BITS(8,12) & ((uint32_t)(regval) << 8)) /*!< write value to RTC_DTS_MON bit field */ +#define GET_DTS_MON(regval) GET_BITS((regval),8,12) /*!< get value of RTC_DTS_MON bit field */ + +#define DTS_DOW(regval) (BITS(13,15) & ((uint32_t)(regval) << 13)) /*!< write value to RTC_DTS_DOW bit field */ +#define GET_DTS_DOW(regval) GET_BITS((regval),13,15) /*!< get value of RTC_DTS_DOW bit field */ + +/* ssts register value */ +#define SSTS_SSC(regval) (BITS(0,15) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_SSTS_SSC bit field */ + +/* hrfc register value */ +#define HRFC_CMSK(regval) (BITS(0,8) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_HRFC_CMSK bit field */ + +#define RTC_CALIBRATION_WINDOW_32S ((uint32_t)0x00000000U) /*!< 2exp20 RTCCLK cycles, 32s if RTCCLK = 32768 Hz */ +#define RTC_CALIBRATION_WINDOW_16S RTC_HRFC_CWND16 /*!< 2exp19 RTCCLK cycles, 16s if RTCCLK = 32768 Hz */ +#define RTC_CALIBRATION_WINDOW_8S RTC_HRFC_CWND8 /*!< 2exp18 RTCCLK cycles, 8s if RTCCLK = 32768 Hz */ + +#define RTC_CALIBRATION_PLUS_SET RTC_HRFC_FREQI /*!< increase RTC frequency by 488.5ppm */ +#define RTC_CALIBRATION_PLUS_RESET ((uint32_t)0x00000000U) /*!< no effect */ + +/* tamp register value */ +#define TAMP_FREQ(regval) (BITS(8,10) & ((uint32_t)(regval) << 8)) /*!< write value to RTC_TAMP_FREQ bit field */ +#define RTC_FREQ_DIV32768 TAMP_FREQ(0) /*!< sample once every 32768 RTCCLK(1Hz if RTCCLK=32.768KHz) */ +#define RTC_FREQ_DIV16384 TAMP_FREQ(1) /*!< sample once every 16384 RTCCLK(2Hz if RTCCLK=32.768KHz) */ +#define RTC_FREQ_DIV8192 TAMP_FREQ(2) /*!< sample once every 8192 RTCCLK(4Hz if RTCCLK=32.768KHz) */ +#define RTC_FREQ_DIV4096 TAMP_FREQ(3) /*!< sample once every 4096 RTCCLK(8Hz if RTCCLK=32.768KHz) */ +#define RTC_FREQ_DIV2048 TAMP_FREQ(4) /*!< sample once every 2048 RTCCLK(16Hz if RTCCLK=32.768KHz) */ +#define RTC_FREQ_DIV1024 TAMP_FREQ(5) /*!< sample once every 1024 RTCCLK(32Hz if RTCCLK=32.768KHz) */ +#define RTC_FREQ_DIV512 TAMP_FREQ(6) /*!< sample once every 512 RTCCLK(64Hz if RTCCLK=32.768KHz) */ +#define RTC_FREQ_DIV256 TAMP_FREQ(7) /*!< sample once every 256 RTCCLK(128Hz if RTCCLK=32.768KHz) */ + +#define TAMP_FLT(regval) (BITS(11,12) & ((uint32_t)(regval) << 11)) /*!< write value to RTC_TAMP_FLT bit field */ +#define RTC_FLT_EDGE TAMP_FLT(0) /*!< detecting tamper event using edge mode. precharge duration is disabled automatically */ +#define RTC_FLT_2S TAMP_FLT(1) /*!< detecting tamper event using level mode.2 consecutive valid level samples will make a effective tamper event */ +#define RTC_FLT_4S TAMP_FLT(2) /*!< detecting tamper event using level mode.4 consecutive valid level samples will make an effective tamper event */ +#define RTC_FLT_8S TAMP_FLT(3) /*!< detecting tamper event using level mode.8 consecutive valid level samples will make a effective tamper event */ + +#define TAMP_PRCH(regval) (BITS(13,14) & ((uint32_t)(regval) << 13)) /*!< write value to RTC_TAMP_PRCH bit field */ +#define RTC_PRCH_1C TAMP_PRCH(0) /*!< 1 RTC clock prechagre time before each sampling */ +#define RTC_PRCH_2C TAMP_PRCH(1) /*!< 2 RTC clock prechagre time before each sampling */ +#define RTC_PRCH_4C TAMP_PRCH(2) /*!< 4 RTC clock prechagre time before each sampling */ +#define RTC_PRCH_8C TAMP_PRCH(3) /*!< 8 RTC clock prechagre time before each sampling */ + +#define RTC_TAMPER0 RTC_TAMP_TP0EN /*!< tamper 0 detection enable */ +#define RTC_TAMPER1 RTC_TAMP_TP1EN /*!< tamper 1 detection enable */ + +#define RTC_TAMPER_TRIGGER_EDGE_RISING ((uint32_t)0x00000000U) /*!< tamper detection is in rising edge mode */ +#define RTC_TAMPER_TRIGGER_EDGE_FALLING RTC_TAMP_TP0EG /*!< tamper detection is in falling edge mode */ +#define RTC_TAMPER_TRIGGER_LEVEL_LOW ((uint32_t)0x00000000U) /*!< tamper detection is in low level mode */ +#define RTC_TAMPER_TRIGGER_LEVEL_HIGH RTC_TAMP_TP0EG /*!< tamper detection is in high level mode */ + +#define RTC_TAMPER_TRIGGER_POS ((uint32_t)0x00000001U) /* shift position of trigger relative to source */ + +#define RTC_ALARM_OUTPUT_OD ((uint32_t)0x00000000U) /*!< RTC alarm output open-drain mode */ +#define RTC_ALARM_OUTPUT_PP RTC_TAMP_AOT /*!< RTC alarm output push-pull mode */ + +/* ALRMXSS register value */ +#define ALRMXSS_SSC(regval) (BITS(0,14) & ((uint32_t)(regval)<< 0)) /*!< write value to RTC_ALRMXSS_SSC bit field */ + +#define ALRMXSS_MASKSSC(regval) (BITS(24,27) & ((uint32_t)(regval) << 24)) /*!< write value to RTC_ALRMXSS_MASKSSC bit field */ +#define RTC_MASKSSC_0_14 ALRMXSS_MASKSSC(0) /*!< mask alarm subsecond configuration */ +#define RTC_MASKSSC_1_14 ALRMXSS_MASKSSC(1) /*!< mask RTC_ALRMXSS_SSC[14:1], and RTC_ALRMXSS_SSC[0] is to be compared */ +#define RTC_MASKSSC_2_14 ALRMXSS_MASKSSC(2) /*!< mask RTC_ALRMXSS_SSC[14:2], and RTC_ALRMXSS_SSC[1:0] is to be compared */ +#define RTC_MASKSSC_3_14 ALRMXSS_MASKSSC(3) /*!< mask RTC_ALRMXSS_SSC[14:3], and RTC_ALRMXSS_SSC[2:0] is to be compared */ +#define RTC_MASKSSC_4_14 ALRMXSS_MASKSSC(4) /*!< mask RTC_ALRMXSS_SSC[14:4]], and RTC_ALRMXSS_SSC[3:0] is to be compared */ +#define RTC_MASKSSC_5_14 ALRMXSS_MASKSSC(5) /*!< mask RTC_ALRMXSS_SSC[14:5], and RTC_ALRMXSS_SSC[4:0] is to be compared */ +#define RTC_MASKSSC_6_14 ALRMXSS_MASKSSC(6) /*!< mask RTC_ALRMXSS_SSC[14:6], and RTC_ALRMXSS_SSC[5:0] is to be compared */ +#define RTC_MASKSSC_7_14 ALRMXSS_MASKSSC(7) /*!< mask RTC_ALRMXSS_SSC[14:7], and RTC_ALRMXSS_SSC[6:0] is to be compared */ +#define RTC_MASKSSC_8_14 ALRMXSS_MASKSSC(8) /*!< mask RTC_ALRMXSS_SSC[14:7], and RTC_ALRMXSS_SSC[6:0] is to be compared */ +#define RTC_MASKSSC_9_14 ALRMXSS_MASKSSC(9) /*!< mask RTC_ALRMXSS_SSC[14:9], and RTC_ALRMXSS_SSC[8:0] is to be compared */ +#define RTC_MASKSSC_10_14 ALRMXSS_MASKSSC(10) /*!< mask RTC_ALRMXSS_SSC[14:10], and RTC_ALRMXSS_SSC[9:0] is to be compared */ +#define RTC_MASKSSC_11_14 ALRMXSS_MASKSSC(11) /*!< mask RTC_ALRMXSS_SSC[14:11], and RTC_ALRMXSS_SSC[10:0] is to be compared */ +#define RTC_MASKSSC_12_14 ALRMXSS_MASKSSC(12) /*!< mask RTC_ALRMXSS_SSC[14:12], and RTC_ALRMXSS_SSC[11:0] is to be compared */ +#define RTC_MASKSSC_13_14 ALRMXSS_MASKSSC(13) /*!< mask RTC_ALRMXSS_SSC[14:13], and RTC_ALRMXSS_SSC[12:0] is to be compared */ +#define RTC_MASKSSC_14 ALRMXSS_MASKSSC(14) /*!< mask RTC_ALRMXSS_SSC[14], and RTC_ALRMXSS_SSC[13:0] is to be compared */ +#define RTC_MASKSSC_NONE ALRMXSS_MASKSSC(15) /*!< mask none, and RTC_ALRMXSS_SSC[14:0] is to be compared */ + +/* RTC interrupt source */ +#define RTC_INT_TIMESTAMP RTC_CTL_TSIE /*!< time-stamp interrupt enable */ +#define RTC_INT_ALARM0 RTC_CTL_ALRM0IE /*!< RTC alarm0 interrupt enable */ +#define RTC_INT_ALARM1 RTC_CTL_ALRM1IE /*!< RTC alarm1 interrupt enable */ +#define RTC_INT_TAMP RTC_TAMP_TPIE /*!< tamper detection interrupt enable */ +#define RTC_INT_WAKEUP RTC_CTL_WTIE /*!< RTC wakeup timer interrupt enable */ + +/* write protect key */ +#define RTC_UNLOCK_KEY1 ((uint8_t)0xCAU) /*!< RTC unlock key1 */ +#define RTC_UNLOCK_KEY2 ((uint8_t)0x53U) /*!< RTC unlock key2 */ +#define RTC_LOCK_KEY ((uint8_t)0xFFU) /*!< RTC lock key */ + +/* registers reset value */ +#define RTC_REGISTER_RESET ((uint32_t)0x00000000U) /*!< RTC common register reset value */ +#define RTC_DATE_RESET ((uint32_t)0x00002101U) /*!< RTC_DATE register reset value */ +#define RTC_STAT_RESET ((uint32_t)0x00000000U) /*!< RTC_STAT register reset value */ +#define RTC_PSC_RESET ((uint32_t)0x007F00FFU) /*!< RTC_PSC register reset value */ +#define RTC_WUT_RESET ((uint32_t)0x0000FFFFU) /*!< RTC_WUT register reset value */ + +/* RTC alarm */ +#define RTC_ALARM0 ((uint8_t)0x01U) /*!< RTC alarm 0 */ +#define RTC_ALARM1 ((uint8_t)0x02U) /*!< RTC alarm 1 */ + +/* RTC coarse calibration direction */ +#define CALIB_INCREASE ((uint8_t)0x01U) /*!< RTC coarse calibration increase */ +#define CALIB_DECREASE ((uint8_t)0x02U) /*!< RTC coarse calibration decrease */ + +/* RTC wakeup timer clock */ +#define CTL_WTCS(regval) (BITS(0,2) & ((regval)<< 0)) +#define WAKEUP_RTCCK_DIV16 CTL_WTCS(0) /*!< wakeup timer clock is RTC clock divided by 16 */ +#define WAKEUP_RTCCK_DIV8 CTL_WTCS(1) /*!< wakeup timer clock is RTC clock divided by 8 */ +#define WAKEUP_RTCCK_DIV4 CTL_WTCS(2) /*!< wakeup timer clock is RTC clock divided by 4 */ +#define WAKEUP_RTCCK_DIV2 CTL_WTCS(3) /*!< wakeup timer clock is RTC clock divided by 2 */ +#define WAKEUP_CKSPRE CTL_WTCS(4) /*!< wakeup timer clock is ckapre */ +#define WAKEUP_CKSPRE_2EXP16 CTL_WTCS(6) /*!< wakeup timer clock is ckapre and wakeup timer add 2exp16 */ + +/* RTC_AF pin */ +#define RTC_AF0_TIMESTAMP ((uint32_t)0x00000000) /*!< RTC_AF0 use for timestamp */ +#define RTC_AF1_TIMESTAMP RTC_TAMP_TSSEL /*!< RTC_AF1 use for timestamp */ +#define RTC_AF0_TAMPER0 ((uint32_t)0x00000000) /*!< RTC_AF0 use for tamper0 */ +#define RTC_AF1_TAMPER0 RTC_TAMP_TP0SEL /*!< RTC_AF1 use for tamper0 */ + +/* RTC flags */ +#define RTC_FLAG_ALRM0W RTC_STAT_ALRM0WF /*!< alarm0 configuration can be write flag */ +#define RTC_FLAG_ALRM1W RTC_STAT_ALRM1WF /*!< alarm1 configuration can be write flag */ +#define RTC_FLAG_WTW RTC_STAT_WTWF /*!< wakeup timer can be write flag */ +#define RTC_FLAG_SOP RTC_STAT_SOPF /*!< shift function operation pending flag */ +#define RTC_FLAG_YCM RTC_STAT_YCM /*!< year configuration mark status flag */ +#define RTC_FLAG_RSYN RTC_STAT_RSYNF /*!< register synchronization flag */ +#define RTC_FLAG_INIT RTC_STAT_INITF /*!< initialization state flag */ +#define RTC_FLAG_ALRM0 RTC_STAT_ALRM0F /*!< alarm0 occurs flag */ +#define RTC_FLAG_ALRM1 RTC_STAT_ALRM1F /*!< alarm1 occurs flag */ +#define RTC_FLAG_WT RTC_STAT_WTF /*!< wakeup timer occurs flag */ +#define RTC_FLAG_TS RTC_STAT_TSF /*!< time-stamp flag */ +#define RTC_FLAG_TSOVR RTC_STAT_TSOVRF /*!< time-stamp overflow flag */ +#define RTC_FLAG_TP0 RTC_STAT_TP0F /*!< RTC tamper 0 detected flag */ +#define RTC_FLAG_TP1 RTC_STAT_TP1F /*!< RTC tamper 1 detected flag */ +#define RTC_STAT_SCP RTC_STAT_SCPF /*!< smooth calibration pending flag */ + +/* function declarations */ +/* reset most of the RTC registers */ +ErrStatus rtc_deinit(void); +/* initialize RTC registers */ +ErrStatus rtc_init(rtc_parameter_struct* rtc_initpara_struct); +/* enter RTC init mode */ +ErrStatus rtc_init_mode_enter(void); +/* exit RTC init mode */ +void rtc_init_mode_exit(void); +/* wait until RTC_TIME and RTC_DATE registers are synchronized with APB clock, and the shadow registers are updated */ +ErrStatus rtc_register_sync_wait(void); + +/* get current time and date */ +void rtc_current_time_get(rtc_parameter_struct* rtc_initpara_struct); +/* get current subsecond value */ +uint32_t rtc_subsecond_get(void); + +/* configure RTC alarm */ +void rtc_alarm_config(uint8_t rtc_alarm, rtc_alarm_struct* rtc_alarm_time); +/* configure subsecond of RTC alarm */ +void rtc_alarm_subsecond_config(uint8_t rtc_alarm, uint32_t mask_subsecond, uint32_t subsecond); +/* get RTC alarm */ +void rtc_alarm_get(uint8_t rtc_alarm,rtc_alarm_struct* rtc_alarm_time); +/* get RTC alarm subsecond */ +uint32_t rtc_alarm_subsecond_get(uint8_t rtc_alarm); +/* enable RTC alarm */ +void rtc_alarm_enable(uint8_t rtc_alarm); +/* disable RTC alarm */ +ErrStatus rtc_alarm_disable(uint8_t rtc_alarm); + +/* enable RTC time-stamp */ +void rtc_timestamp_enable(uint32_t edge); +/* disable RTC time-stamp */ +void rtc_timestamp_disable(void); +/* get RTC timestamp time and date */ +void rtc_timestamp_get(rtc_timestamp_struct* rtc_timestamp); +/* get RTC time-stamp subsecond */ +uint32_t rtc_timestamp_subsecond_get(void); +/* RTC time-stamp pin map */ +void rtc_timestamp_pin_map(uint32_t rtc_af); + +/* enable RTC tamper */ +void rtc_tamper_enable(rtc_tamper_struct* rtc_tamper); +/* disable RTC tamper */ +void rtc_tamper_disable(uint32_t source); +/* RTC tamper0 pin map */ +void rtc_tamper0_pin_map(uint32_t rtc_af); + +/* enable specified RTC interrupt */ +void rtc_interrupt_enable(uint32_t interrupt); +/* disble specified RTC interrupt */ +void rtc_interrupt_disable(uint32_t interrupt); +/* check specified flag */ +FlagStatus rtc_flag_get(uint32_t flag); +/* clear specified flag */ +void rtc_flag_clear(uint32_t flag); + +/* configure RTC alarm output source */ +void rtc_alarm_output_config(uint32_t source, uint32_t mode); +/* configure RTC calibration output source */ +void rtc_calibration_output_config(uint32_t source); + +/* adjust the daylight saving time by adding or substracting one hour from the current time */ +void rtc_hour_adjust(uint32_t operation); +/* adjust RTC second or subsecond value of current time */ +ErrStatus rtc_second_adjust(uint32_t add, uint32_t minus); + +/* enable RTC bypass shadow registers function */ +void rtc_bypass_shadow_enable(void); +/* disable RTC bypass shadow registers function */ +void rtc_bypass_shadow_disable(void); + +/* enable RTC reference clock detection function */ +ErrStatus rtc_refclock_detection_enable(void); +/* disable RTC reference clock detection function */ +ErrStatus rtc_refclock_detection_disable(void); + +/* enable RTC wakeup timer */ +void rtc_wakeup_enable(void); +/* disable RTC wakeup timer */ +ErrStatus rtc_wakeup_disable(void); +/* set auto wakeup timer clock */ +ErrStatus rtc_wakeup_clock_set(uint8_t wakeup_clock); +/* set auto wakeup timer value */ +ErrStatus rtc_wakeup_timer_set(uint16_t wakeup_timer); +/* get auto wakeup timer value */ +uint16_t rtc_wakeup_timer_get(void); + +/* configure RTC smooth calibration */ +ErrStatus rtc_smooth_calibration_config(uint32_t window, uint32_t plus, uint32_t minus); +/* enable RTC coarse calibration */ +ErrStatus rtc_coarse_calibration_enable(void); +/* disable RTC coarse calibration */ +ErrStatus rtc_coarse_calibration_disable(void); +/* configure RTC coarse calibration direction and step */ +ErrStatus rtc_coarse_calibration_config(uint8_t direction, uint8_t step); + +#endif /* GD32F4XX_RTC_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_sdio.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_sdio.h new file mode 100644 index 0000000000..7008156035 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_sdio.h @@ -0,0 +1,433 @@ +/*! + \file gd32f4xx_sdio.h + \brief definitions for the SDIO + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_SDIO_H +#define GD32F4XX_SDIO_H + +#include "gd32f4xx.h" + +/* SDIO definitions */ +#define SDIO SDIO_BASE + +/* registers definitions */ +#define SDIO_PWRCTL REG32(SDIO + 0x00U) /*!< SDIO power control register */ +#define SDIO_CLKCTL REG32(SDIO + 0x04U) /*!< SDIO clock control register */ +#define SDIO_CMDAGMT REG32(SDIO + 0x08U) /*!< SDIO command argument register */ +#define SDIO_CMDCTL REG32(SDIO + 0x0CU) /*!< SDIO command control register */ +#define SDIO_RSPCMDIDX REG32(SDIO + 0x10U) /*!< SDIO command index response register */ +#define SDIO_RESP0 REG32(SDIO + 0x14U) /*!< SDIO response register 0 */ +#define SDIO_RESP1 REG32(SDIO + 0x18U) /*!< SDIO response register 1 */ +#define SDIO_RESP2 REG32(SDIO + 0x1CU) /*!< SDIO response register 2 */ +#define SDIO_RESP3 REG32(SDIO + 0x20U) /*!< SDIO response register 3 */ +#define SDIO_DATATO REG32(SDIO + 0x24U) /*!< SDIO data timeout register */ +#define SDIO_DATALEN REG32(SDIO + 0x28U) /*!< SDIO data length register */ +#define SDIO_DATACTL REG32(SDIO + 0x2CU) /*!< SDIO data control register */ +#define SDIO_DATACNT REG32(SDIO + 0x30U) /*!< SDIO data counter register */ +#define SDIO_STAT REG32(SDIO + 0x34U) /*!< SDIO status register */ +#define SDIO_INTC REG32(SDIO + 0x38U) /*!< SDIO interrupt clear register */ +#define SDIO_INTEN REG32(SDIO + 0x3CU) /*!< SDIO interrupt enable register */ +#define SDIO_FIFOCNT REG32(SDIO + 0x48U) /*!< SDIO FIFO counter register */ +#define SDIO_FIFO REG32(SDIO + 0x80U) /*!< SDIO FIFO data register */ + +/* bits definitions */ +/* SDIO_PWRCTL */ +#define SDIO_PWRCTL_PWRCTL BITS(0,1) /*!< SDIO power control bits */ + +/* SDIO_CLKCTL */ +#define SDIO_CLKCTL_DIV BITS(0,7) /*!< clock division */ +#define SDIO_CLKCTL_CLKEN BIT(8) /*!< SDIO_CLK clock output enable bit */ +#define SDIO_CLKCTL_CLKPWRSAV BIT(9) /*!< SDIO_CLK clock dynamic switch on/off for power saving */ +#define SDIO_CLKCTL_CLKBYP BIT(10) /*!< clock bypass enable bit */ +#define SDIO_CLKCTL_BUSMODE BITS(11,12) /*!< SDIO card bus mode control bit */ +#define SDIO_CLKCTL_CLKEDGE BIT(13) /*!< SDIO_CLK clock edge selection bit */ +#define SDIO_CLKCTL_HWCLKEN BIT(14) /*!< hardware clock control enable bit */ +#define SDIO_CLKCTL_DIV8 BIT(31) /*!< MSB of clock division */ + +/* SDIO_CMDAGMT */ +#define SDIO_CMDAGMT_CMDAGMT BITS(0,31) /*!< SDIO card command argument */ + +/* SDIO_CMDCTL */ +#define SDIO_CMDCTL_CMDIDX BITS(0,5) /*!< command index */ +#define SDIO_CMDCTL_CMDRESP BITS(6,7) /*!< command response type bits */ +#define SDIO_CMDCTL_INTWAIT BIT(8) /*!< interrupt wait instead of timeout */ +#define SDIO_CMDCTL_WAITDEND BIT(9) /*!< wait for ends of data transfer */ +#define SDIO_CMDCTL_CSMEN BIT(10) /*!< command state machine(CSM) enable bit */ +#define SDIO_CMDCTL_SUSPEND BIT(11) /*!< SD I/O suspend command(SD I/O only) */ +#define SDIO_CMDCTL_ENCMDC BIT(12) /*!< CMD completion signal enabled (CE-ATA only) */ +#define SDIO_CMDCTL_NINTEN BIT(13) /*!< no CE-ATA interrupt (CE-ATA only) */ +#define SDIO_CMDCTL_ATAEN BIT(14) /*!< CE-ATA command enable(CE-ATA only) */ + +/* SDIO_DATATO */ +#define SDIO_DATATO_DATATO BITS(0,31) /*!< data timeout period */ + +/* SDIO_DATALEN */ +#define SDIO_DATALEN_DATALEN BITS(0,24) /*!< data transfer length */ + +/* SDIO_DATACTL */ +#define SDIO_DATACTL_DATAEN BIT(0) /*!< data transfer enabled bit */ +#define SDIO_DATACTL_DATADIR BIT(1) /*!< data transfer direction */ +#define SDIO_DATACTL_TRANSMOD BIT(2) /*!< data transfer mode */ +#define SDIO_DATACTL_DMAEN BIT(3) /*!< DMA enable bit */ +#define SDIO_DATACTL_BLKSZ BITS(4,7) /*!< data block size */ +#define SDIO_DATACTL_RWEN BIT(8) /*!< read wait mode enabled(SD I/O only) */ +#define SDIO_DATACTL_RWSTOP BIT(9) /*!< read wait stop(SD I/O only) */ +#define SDIO_DATACTL_RWTYPE BIT(10) /*!< read wait type(SD I/O only) */ +#define SDIO_DATACTL_IOEN BIT(11) /*!< SD I/O specific function enable(SD I/O only) */ + +/* SDIO_STAT */ +#define SDIO_STAT_CCRCERR BIT(0) /*!< command response received (CRC check failed) */ +#define SDIO_STAT_DTCRCERR BIT(1) /*!< data block sent/received (CRC check failed) */ +#define SDIO_STAT_CMDTMOUT BIT(2) /*!< command response timeout */ +#define SDIO_STAT_DTTMOUT BIT(3) /*!< data timeout */ +#define SDIO_STAT_TXURE BIT(4) /*!< transmit FIFO underrun error occurs */ +#define SDIO_STAT_RXORE BIT(5) /*!< received FIFO overrun error occurs */ +#define SDIO_STAT_CMDRECV BIT(6) /*!< command response received (CRC check passed) */ +#define SDIO_STAT_CMDSEND BIT(7) /*!< command sent (no response required) */ +#define SDIO_STAT_DTEND BIT(8) /*!< data end (data counter, SDIO_DATACNT, is zero) */ +#define SDIO_STAT_STBITE BIT(9) /*!< start bit error in the bus */ +#define SDIO_STAT_DTBLKEND BIT(10) /*!< data block sent/received (CRC check passed) */ +#define SDIO_STAT_CMDRUN BIT(11) /*!< command transmission in progress */ +#define SDIO_STAT_TXRUN BIT(12) /*!< data transmission in progress */ +#define SDIO_STAT_RXRUN BIT(13) /*!< data reception in progress */ +#define SDIO_STAT_TFH BIT(14) /*!< transmit FIFO is half empty: at least 8 words can be written into the FIFO */ +#define SDIO_STAT_RFH BIT(15) /*!< receive FIFO is half full: at least 8 words can be read in the FIFO */ +#define SDIO_STAT_TFF BIT(16) /*!< transmit FIFO is full */ +#define SDIO_STAT_RFF BIT(17) /*!< receive FIFO is full */ +#define SDIO_STAT_TFE BIT(18) /*!< transmit FIFO is empty */ +#define SDIO_STAT_RFE BIT(19) /*!< receive FIFO is empty */ +#define SDIO_STAT_TXDTVAL BIT(20) /*!< data is valid in transmit FIFO */ +#define SDIO_STAT_RXDTVAL BIT(21) /*!< data is valid in receive FIFO */ +#define SDIO_STAT_SDIOINT BIT(22) /*!< SD I/O interrupt received */ +#define SDIO_STAT_ATAEND BIT(23) /*!< CE-ATA command completion signal received (only for CMD61) */ + +/* SDIO_INTC */ +#define SDIO_INTC_CCRCERRC BIT(0) /*!< CCRCERR flag clear bit */ +#define SDIO_INTC_DTCRCERRC BIT(1) /*!< DTCRCERR flag clear bit */ +#define SDIO_INTC_CMDTMOUTC BIT(2) /*!< CMDTMOUT flag clear bit */ +#define SDIO_INTC_DTTMOUTC BIT(3) /*!< DTTMOUT flag clear bit */ +#define SDIO_INTC_TXUREC BIT(4) /*!< TXURE flag clear bit */ +#define SDIO_INTC_RXOREC BIT(5) /*!< RXORE flag clear bit */ +#define SDIO_INTC_CMDRECVC BIT(6) /*!< CMDRECV flag clear bit */ +#define SDIO_INTC_CMDSENDC BIT(7) /*!< CMDSEND flag clear bit */ +#define SDIO_INTC_DTENDC BIT(8) /*!< DTEND flag clear bit */ +#define SDIO_INTC_STBITEC BIT(9) /*!< STBITE flag clear bit */ +#define SDIO_INTC_DTBLKENDC BIT(10) /*!< DTBLKEND flag clear bit */ +#define SDIO_INTC_SDIOINTC BIT(22) /*!< SDIOINT flag clear bit */ +#define SDIO_INTC_ATAENDC BIT(23) /*!< ATAEND flag clear bit */ + +/* SDIO_INTEN */ +#define SDIO_INTEN_CCRCERRIE BIT(0) /*!< command response CRC fail interrupt enable */ +#define SDIO_INTEN_DTCRCERRIE BIT(1) /*!< data CRC fail interrupt enable */ +#define SDIO_INTEN_CMDTMOUTIE BIT(2) /*!< command response timeout interrupt enable */ +#define SDIO_INTEN_DTTMOUTIE BIT(3) /*!< data timeout interrupt enable */ +#define SDIO_INTEN_TXUREIE BIT(4) /*!< transmit FIFO underrun error interrupt enable */ +#define SDIO_INTEN_RXOREIE BIT(5) /*!< received FIFO overrun error interrupt enable */ +#define SDIO_INTEN_CMDRECVIE BIT(6) /*!< command response received interrupt enable */ +#define SDIO_INTEN_CMDSENDIE BIT(7) /*!< command sent interrupt enable */ +#define SDIO_INTEN_DTENDIE BIT(8) /*!< data end interrupt enable */ +#define SDIO_INTEN_STBITEIE BIT(9) /*!< start bit error interrupt enable */ +#define SDIO_INTEN_DTBLKENDIE BIT(10) /*!< data block end interrupt enable */ +#define SDIO_INTEN_CMDRUNIE BIT(11) /*!< command transmission interrupt enable */ +#define SDIO_INTEN_TXRUNIE BIT(12) /*!< data transmission interrupt enable */ +#define SDIO_INTEN_RXRUNIE BIT(13) /*!< data reception interrupt enable */ +#define SDIO_INTEN_TFHIE BIT(14) /*!< transmit FIFO half empty interrupt enable */ +#define SDIO_INTEN_RFHIE BIT(15) /*!< receive FIFO half full interrupt enable */ +#define SDIO_INTEN_TFFIE BIT(16) /*!< transmit FIFO full interrupt enable */ +#define SDIO_INTEN_RFFIE BIT(17) /*!< receive FIFO full interrupt enable */ +#define SDIO_INTEN_TFEIE BIT(18) /*!< transmit FIFO empty interrupt enable */ +#define SDIO_INTEN_RFEIE BIT(19) /*!< receive FIFO empty interrupt enable */ +#define SDIO_INTEN_TXDTVALIE BIT(20) /*!< data valid in transmit FIFO interrupt enable */ +#define SDIO_INTEN_RXDTVALIE BIT(21) /*!< data valid in receive FIFO interrupt enable */ +#define SDIO_INTEN_SDIOINTIE BIT(22) /*!< SD I/O interrupt received interrupt enable */ +#define SDIO_INTEN_ATAENDIE BIT(23) /*!< CE-ATA command completion signal received interrupt enable */ + +/* SDIO_FIFO */ +#define SDIO_FIFO_FIFODT BITS(0,31) /*!< receive FIFO data or transmit FIFO data */ + +/* constants definitions */ +/* SDIO flags */ +#define SDIO_FLAG_CCRCERR BIT(0) /*!< command response received (CRC check failed) flag */ +#define SDIO_FLAG_DTCRCERR BIT(1) /*!< data block sent/received (CRC check failed) flag */ +#define SDIO_FLAG_CMDTMOUT BIT(2) /*!< command response timeout flag */ +#define SDIO_FLAG_DTTMOUT BIT(3) /*!< data timeout flag */ +#define SDIO_FLAG_TXURE BIT(4) /*!< transmit FIFO underrun error occurs flag */ +#define SDIO_FLAG_RXORE BIT(5) /*!< received FIFO overrun error occurs flag */ +#define SDIO_FLAG_CMDRECV BIT(6) /*!< command response received (CRC check passed) flag */ +#define SDIO_FLAG_CMDSEND BIT(7) /*!< command sent (no response required) flag */ +#define SDIO_FLAG_DTEND BIT(8) /*!< data end (data counter, SDIO_DATACNT, is zero) flag */ +#define SDIO_FLAG_STBITE BIT(9) /*!< start bit error in the bus flag */ +#define SDIO_FLAG_DTBLKEND BIT(10) /*!< data block sent/received (CRC check passed) flag */ +#define SDIO_FLAG_CMDRUN BIT(11) /*!< command transmission in progress flag */ +#define SDIO_FLAG_TXRUN BIT(12) /*!< data transmission in progress flag */ +#define SDIO_FLAG_RXRUN BIT(13) /*!< data reception in progress flag */ +#define SDIO_FLAG_TFH BIT(14) /*!< transmit FIFO is half empty flag: at least 8 words can be written into the FIFO */ +#define SDIO_FLAG_RFH BIT(15) /*!< receive FIFO is half full flag: at least 8 words can be read in the FIFO */ +#define SDIO_FLAG_TFF BIT(16) /*!< transmit FIFO is full flag */ +#define SDIO_FLAG_RFF BIT(17) /*!< receive FIFO is full flag */ +#define SDIO_FLAG_TFE BIT(18) /*!< transmit FIFO is empty flag */ +#define SDIO_FLAG_RFE BIT(19) /*!< receive FIFO is empty flag */ +#define SDIO_FLAG_TXDTVAL BIT(20) /*!< data is valid in transmit FIFO flag */ +#define SDIO_FLAG_RXDTVAL BIT(21) /*!< data is valid in receive FIFO flag */ +#define SDIO_FLAG_SDIOINT BIT(22) /*!< SD I/O interrupt received flag */ +#define SDIO_FLAG_ATAEND BIT(23) /*!< CE-ATA command completion signal received (only for CMD61) flag */ + +/* SDIO interrupt enable or disable */ +#define SDIO_INT_CCRCERR BIT(0) /*!< SDIO CCRCERR interrupt */ +#define SDIO_INT_DTCRCERR BIT(1) /*!< SDIO DTCRCERR interrupt */ +#define SDIO_INT_CMDTMOUT BIT(2) /*!< SDIO CMDTMOUT interrupt */ +#define SDIO_INT_DTTMOUT BIT(3) /*!< SDIO DTTMOUT interrupt */ +#define SDIO_INT_TXURE BIT(4) /*!< SDIO TXURE interrupt */ +#define SDIO_INT_RXORE BIT(5) /*!< SDIO RXORE interrupt */ +#define SDIO_INT_CMDRECV BIT(6) /*!< SDIO CMDRECV interrupt */ +#define SDIO_INT_CMDSEND BIT(7) /*!< SDIO CMDSEND interrupt */ +#define SDIO_INT_DTEND BIT(8) /*!< SDIO DTEND interrupt */ +#define SDIO_INT_STBITE BIT(9) /*!< SDIO STBITE interrupt */ +#define SDIO_INT_DTBLKEND BIT(10) /*!< SDIO DTBLKEND interrupt */ +#define SDIO_INT_CMDRUN BIT(11) /*!< SDIO CMDRUN interrupt */ +#define SDIO_INT_TXRUN BIT(12) /*!< SDIO TXRUN interrupt */ +#define SDIO_INT_RXRUN BIT(13) /*!< SDIO RXRUN interrupt */ +#define SDIO_INT_TFH BIT(14) /*!< SDIO TFH interrupt */ +#define SDIO_INT_RFH BIT(15) /*!< SDIO RFH interrupt */ +#define SDIO_INT_TFF BIT(16) /*!< SDIO TFF interrupt */ +#define SDIO_INT_RFF BIT(17) /*!< SDIO RFF interrupt */ +#define SDIO_INT_TFE BIT(18) /*!< SDIO TFE interrupt */ +#define SDIO_INT_RFE BIT(19) /*!< SDIO RFE interrupt */ +#define SDIO_INT_TXDTVAL BIT(20) /*!< SDIO TXDTVAL interrupt */ +#define SDIO_INT_RXDTVAL BIT(21) /*!< SDIO RXDTVAL interrupt */ +#define SDIO_INT_SDIOINT BIT(22) /*!< SDIO SDIOINT interrupt */ +#define SDIO_INT_ATAEND BIT(23) /*!< SDIO ATAEND interrupt */ + +/* SDIO interrupt flags */ +#define SDIO_INT_FLAG_CCRCERR BIT(0) /*!< SDIO CCRCERR interrupt flag */ +#define SDIO_INT_FLAG_DTCRCERR BIT(1) /*!< SDIO DTCRCERR interrupt flag */ +#define SDIO_INT_FLAG_CMDTMOUT BIT(2) /*!< SDIO CMDTMOUT interrupt flag */ +#define SDIO_INT_FLAG_DTTMOUT BIT(3) /*!< SDIO DTTMOUT interrupt flag */ +#define SDIO_INT_FLAG_TXURE BIT(4) /*!< SDIO TXURE interrupt flag */ +#define SDIO_INT_FLAG_RXORE BIT(5) /*!< SDIO RXORE interrupt flag */ +#define SDIO_INT_FLAG_CMDRECV BIT(6) /*!< SDIO CMDRECV interrupt flag */ +#define SDIO_INT_FLAG_CMDSEND BIT(7) /*!< SDIO CMDSEND interrupt flag */ +#define SDIO_INT_FLAG_DTEND BIT(8) /*!< SDIO DTEND interrupt flag */ +#define SDIO_INT_FLAG_STBITE BIT(9) /*!< SDIO STBITE interrupt flag */ +#define SDIO_INT_FLAG_DTBLKEND BIT(10) /*!< SDIO DTBLKEND interrupt flag */ +#define SDIO_INT_FLAG_CMDRUN BIT(11) /*!< SDIO CMDRUN interrupt flag */ +#define SDIO_INT_FLAG_TXRUN BIT(12) /*!< SDIO TXRUN interrupt flag */ +#define SDIO_INT_FLAG_RXRUN BIT(13) /*!< SDIO RXRUN interrupt flag */ +#define SDIO_INT_FLAG_TFH BIT(14) /*!< SDIO TFH interrupt flag */ +#define SDIO_INT_FLAG_RFH BIT(15) /*!< SDIO RFH interrupt flag */ +#define SDIO_INT_FLAG_TFF BIT(16) /*!< SDIO TFF interrupt flag */ +#define SDIO_INT_FLAG_RFF BIT(17) /*!< SDIO RFF interrupt flag */ +#define SDIO_INT_FLAG_TFE BIT(18) /*!< SDIO TFE interrupt flag */ +#define SDIO_INT_FLAG_RFE BIT(19) /*!< SDIO RFE interrupt flag */ +#define SDIO_INT_FLAG_TXDTVAL BIT(20) /*!< SDIO TXDTVAL interrupt flag */ +#define SDIO_INT_FLAG_RXDTVAL BIT(21) /*!< SDIO RXDTVAL interrupt flag */ +#define SDIO_INT_FLAG_SDIOINT BIT(22) /*!< SDIO SDIOINT interrupt flag */ +#define SDIO_INT_FLAG_ATAEND BIT(23) /*!< SDIO ATAEND interrupt flag */ + +/* SDIO power control */ +#define PWRCTL_PWRCTL(regval) (BITS(0,1) & ((uint32_t)(regval) << 0)) +#define SDIO_POWER_OFF PWRCTL_PWRCTL(0) /*!< SDIO power off */ +#define SDIO_POWER_ON PWRCTL_PWRCTL(3) /*!< SDIO power on */ + +/* SDIO card bus mode control */ +#define CLKCTL_BUSMODE(regval) (BITS(11,12) & ((uint32_t)(regval) << 11)) +#define SDIO_BUSMODE_1BIT CLKCTL_BUSMODE(0) /*!< 1-bit SDIO card bus mode */ +#define SDIO_BUSMODE_4BIT CLKCTL_BUSMODE(1) /*!< 4-bit SDIO card bus mode */ +#define SDIO_BUSMODE_8BIT CLKCTL_BUSMODE(2) /*!< 8-bit SDIO card bus mode */ + +/* SDIO_CLK clock edge selection */ +#define SDIO_SDIOCLKEDGE_RISING (uint32_t)0x00000000U /*!< select the rising edge of the SDIOCLK to generate SDIO_CLK */ +#define SDIO_SDIOCLKEDGE_FALLING SDIO_CLKCTL_CLKEDGE /*!< select the falling edge of the SDIOCLK to generate SDIO_CLK */ + +/* clock bypass enable or disable */ +#define SDIO_CLOCKBYPASS_DISABLE (uint32_t)0x00000000U /*!< no bypass */ +#define SDIO_CLOCKBYPASS_ENABLE SDIO_CLKCTL_CLKBYP /*!< clock bypass */ + +/* SDIO_CLK clock dynamic switch on/off for power saving */ +#define SDIO_CLOCKPWRSAVE_DISABLE (uint32_t)0x00000000U /*!< SDIO_CLK clock is always on */ +#define SDIO_CLOCKPWRSAVE_ENABLE SDIO_CLKCTL_CLKPWRSAV /*!< SDIO_CLK closed when bus is idle */ + +/* SDIO command response type */ +#define CMDCTL_CMDRESP(regval) (BITS(6,7) & ((uint32_t)(regval) << 6)) +#define SDIO_RESPONSETYPE_NO CMDCTL_CMDRESP(0) /*!< no response */ +#define SDIO_RESPONSETYPE_SHORT CMDCTL_CMDRESP(1) /*!< short response */ +#define SDIO_RESPONSETYPE_LONG CMDCTL_CMDRESP(3) /*!< long response */ + +/* command state machine wait type */ +#define SDIO_WAITTYPE_NO (uint32_t)0x00000000U /*!< not wait interrupt */ +#define SDIO_WAITTYPE_INTERRUPT SDIO_CMDCTL_INTWAIT /*!< wait interrupt */ +#define SDIO_WAITTYPE_DATAEND SDIO_CMDCTL_WAITDEND /*!< wait the end of data transfer */ + +#define SDIO_RESPONSE0 (uint32_t)0x00000000U /*!< card response[31:0]/card response[127:96] */ +#define SDIO_RESPONSE1 (uint32_t)0x00000001U /*!< card response[95:64] */ +#define SDIO_RESPONSE2 (uint32_t)0x00000002U /*!< card response[63:32] */ +#define SDIO_RESPONSE3 (uint32_t)0x00000003U /*!< card response[31:1], plus bit 0 */ + +/* SDIO data block size */ +#define DATACTL_BLKSZ(regval) (BITS(4,7) & ((uint32_t)(regval) << 4)) +#define SDIO_DATABLOCKSIZE_1BYTE DATACTL_BLKSZ(0) /*!< block size = 1 byte */ +#define SDIO_DATABLOCKSIZE_2BYTES DATACTL_BLKSZ(1) /*!< block size = 2 bytes */ +#define SDIO_DATABLOCKSIZE_4BYTES DATACTL_BLKSZ(2) /*!< block size = 4 bytes */ +#define SDIO_DATABLOCKSIZE_8BYTES DATACTL_BLKSZ(3) /*!< block size = 8 bytes */ +#define SDIO_DATABLOCKSIZE_16BYTES DATACTL_BLKSZ(4) /*!< block size = 16 bytes */ +#define SDIO_DATABLOCKSIZE_32BYTES DATACTL_BLKSZ(5) /*!< block size = 32 bytes */ +#define SDIO_DATABLOCKSIZE_64BYTES DATACTL_BLKSZ(6) /*!< block size = 64 bytes */ +#define SDIO_DATABLOCKSIZE_128BYTES DATACTL_BLKSZ(7) /*!< block size = 128 bytes */ +#define SDIO_DATABLOCKSIZE_256BYTES DATACTL_BLKSZ(8) /*!< block size = 256 bytes */ +#define SDIO_DATABLOCKSIZE_512BYTES DATACTL_BLKSZ(9) /*!< block size = 512 bytes */ +#define SDIO_DATABLOCKSIZE_1024BYTES DATACTL_BLKSZ(10) /*!< block size = 1024 bytes */ +#define SDIO_DATABLOCKSIZE_2048BYTES DATACTL_BLKSZ(11) /*!< block size = 2048 bytes */ +#define SDIO_DATABLOCKSIZE_4096BYTES DATACTL_BLKSZ(12) /*!< block size = 4096 bytes */ +#define SDIO_DATABLOCKSIZE_8192BYTES DATACTL_BLKSZ(13) /*!< block size = 8192 bytes */ +#define SDIO_DATABLOCKSIZE_16384BYTES DATACTL_BLKSZ(14) /*!< block size = 16384 bytes */ + +/* SDIO data transfer mode */ +#define SDIO_TRANSMODE_BLOCK (uint32_t)0x00000000U /*!< block transfer */ +#define SDIO_TRANSMODE_STREAM SDIO_DATACTL_TRANSMOD /*!< stream transfer or SDIO multibyte transfer */ + +/* SDIO data transfer direction */ +#define SDIO_TRANSDIRECTION_TOCARD (uint32_t)0x00000000U /*!< write data to card */ +#define SDIO_TRANSDIRECTION_TOSDIO SDIO_DATACTL_DATADIR /*!< read data from card */ + +/* SDIO read wait type */ +#define SDIO_READWAITTYPE_DAT2 (uint32_t)0x00000000U /*!< read wait control using SDIO_DAT[2] */ +#define SDIO_READWAITTYPE_CLK SDIO_DATACTL_RWTYPE /*!< read wait control by stopping SDIO_CLK */ + +/* function declarations */ +/* de/initialization functions, hardware clock, bus mode, power_state and SDIO clock configuration */ +/* deinitialize the SDIO */ +void sdio_deinit(void); +/* configure the SDIO clock */ +void sdio_clock_config(uint32_t clock_edge, uint32_t clock_bypass, uint32_t clock_powersave, uint16_t clock_division); +/* enable hardware clock control */ +void sdio_hardware_clock_enable(void); +/* disable hardware clock control */ +void sdio_hardware_clock_disable(void); +/* set different SDIO card bus mode */ +void sdio_bus_mode_set(uint32_t bus_mode); +/* set the SDIO power state */ +void sdio_power_state_set(uint32_t power_state); +/* get the SDIO power state */ +uint32_t sdio_power_state_get(void); +/* enable SDIO_CLK clock output */ +void sdio_clock_enable(void); +/* disable SDIO_CLK clock output */ +void sdio_clock_disable(void); + +/* configure the command index, argument, response type, wait type and CSM to send command functions */ +/* configure the command and response */ +void sdio_command_response_config(uint32_t cmd_index, uint32_t cmd_argument, uint32_t response_type); +/* set the command state machine wait type */ +void sdio_wait_type_set(uint32_t wait_type); +/* enable the CSM(command state machine) */ +void sdio_csm_enable(void); +/* disable the CSM(command state machine) */ +void sdio_csm_disable(void); +/* get the last response command index */ +uint8_t sdio_command_index_get(void); +/* get the response for the last received command */ +uint32_t sdio_response_get(uint32_t sdio_responsex); + +/* configure the data timeout, length, block size, transfer mode, direction and DSM for data transfer functions */ +/* configure the data timeout, data length and data block size */ +void sdio_data_config(uint32_t data_timeout, uint32_t data_length, uint32_t data_blocksize); +/* configure the data transfer mode and direction */ +void sdio_data_transfer_config(uint32_t transfer_mode, uint32_t transfer_direction); +/* enable the DSM(data state machine) for data transfer */ +void sdio_dsm_enable(void); +/* disable the DSM(data state machine) */ +void sdio_dsm_disable(void); +/* write data(one word) to the transmit FIFO */ +void sdio_data_write(uint32_t data); +/* read data(one word) from the receive FIFO */ +uint32_t sdio_data_read(void); +/* get the number of remaining data bytes to be transferred to card */ +uint32_t sdio_data_counter_get(void); +/* get the number of words remaining to be written or read from FIFO */ +uint32_t sdio_fifo_counter_get(void); +/* enable the DMA request for SDIO */ +void sdio_dma_enable(void); +/* disable the DMA request for SDIO */ +void sdio_dma_disable(void); + +/* flag and interrupt functions */ +/* get the flags state of SDIO */ +FlagStatus sdio_flag_get(uint32_t flag); +/* clear the pending flags of SDIO */ +void sdio_flag_clear(uint32_t flag); +/* enable the SDIO interrupt */ +void sdio_interrupt_enable(uint32_t int_flag); +/* disable the SDIO interrupt */ +void sdio_interrupt_disable(uint32_t int_flag); +/* get the interrupt flags state of SDIO */ +FlagStatus sdio_interrupt_flag_get(uint32_t int_flag); +/* clear the interrupt pending flags of SDIO */ +void sdio_interrupt_flag_clear(uint32_t int_flag); + +/* SD I/O card functions */ +/* enable the read wait mode(SD I/O only) */ +void sdio_readwait_enable(void); +/* disable the read wait mode(SD I/O only) */ +void sdio_readwait_disable(void); +/* enable the function that stop the read wait process(SD I/O only) */ +void sdio_stop_readwait_enable(void); +/* disable the function that stop the read wait process(SD I/O only) */ +void sdio_stop_readwait_disable(void); +/* set the read wait type(SD I/O only) */ +void sdio_readwait_type_set(uint32_t readwait_type); +/* enable the SD I/O mode specific operation(SD I/O only) */ +void sdio_operation_enable(void); +/* disable the SD I/O mode specific operation(SD I/O only) */ +void sdio_operation_disable(void); +/* enable the SD I/O suspend operation(SD I/O only) */ +void sdio_suspend_enable(void); +/* disable the SD I/O suspend operation(SD I/O only) */ +void sdio_suspend_disable(void); + +/* CE-ATA functions */ +/* enable the CE-ATA command(CE-ATA only) */ +void sdio_ceata_command_enable(void); +/* disable the CE-ATA command(CE-ATA only) */ +void sdio_ceata_command_disable(void); +/* enable the CE-ATA interrupt(CE-ATA only) */ +void sdio_ceata_interrupt_enable(void); +/* disable the CE-ATA interrupt(CE-ATA only) */ +void sdio_ceata_interrupt_disable(void); +/* enable the CE-ATA command completion signal(CE-ATA only) */ +void sdio_ceata_command_completion_enable(void); +/* disable the CE-ATA command completion signal(CE-ATA only) */ +void sdio_ceata_command_completion_disable(void); + +#endif /* GD32F4XX_SDIO_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_spi.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_spi.h new file mode 100644 index 0000000000..fdad2183ff --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_spi.h @@ -0,0 +1,379 @@ +/*! + \file gd32f4xx_spi.h + \brief definitions for the SPI + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + + +#ifndef GD32F4XX_SPI_H +#define GD32F4XX_SPI_H + +#include "gd32f4xx.h" + +/* SPIx(x=0,1,2,3,4,5) definitions */ +#define SPI0 (SPI_BASE + 0x0000F800U) +#define SPI1 SPI_BASE +#define SPI2 (SPI_BASE + 0x00000400U) +#define SPI3 (SPI_BASE + 0x0000FC00U) +#define SPI4 (SPI_BASE + 0x00011800U) +#define SPI5 (SPI_BASE + 0x00011C00U) + +/* I2Sx_ADD(x=1,2) definitions */ +#define I2S1_ADD I2S_ADD_BASE +#define I2S2_ADD (I2S_ADD_BASE + 0x00000C00U) + +/* SPI registers definitions */ +#define SPI_CTL0(spix) REG32((spix) + 0x00U) /*!< SPI control register 0 */ +#define SPI_CTL1(spix) REG32((spix) + 0x04U) /*!< SPI control register 1*/ +#define SPI_STAT(spix) REG32((spix) + 0x08U) /*!< SPI status register */ +#define SPI_DATA(spix) REG32((spix) + 0x0CU) /*!< SPI data register */ +#define SPI_CRCPOLY(spix) REG32((spix) + 0x10U) /*!< SPI CRC polynomial register */ +#define SPI_RCRC(spix) REG32((spix) + 0x14U) /*!< SPI receive CRC register */ +#define SPI_TCRC(spix) REG32((spix) + 0x18U) /*!< SPI transmit CRC register */ +#define SPI_I2SCTL(spix) REG32((spix) + 0x1CU) /*!< SPI I2S control register */ +#define SPI_I2SPSC(spix) REG32((spix) + 0x20U) /*!< SPI I2S clock prescaler register */ +#define SPI_QCTL(spix) REG32((spix) + 0x80U) /*!< SPI quad mode control register */ + +/* I2S_ADD registers definitions */ +#define I2S_ADD_CTL0(i2sx_add) REG32((i2sx_add) + 0x00U) /*!< I2S_ADD control register 0 */ +#define I2S_ADD_CTL1(i2sx_add) REG32((i2sx_add) + 0x04U) /*!< I2S_ADD control register 1*/ +#define I2S_ADD_STAT(i2sx_add) REG32((i2sx_add) + 0x08U) /*!< I2S_ADD status register */ +#define I2S_ADD_DATA(i2sx_add) REG32((i2sx_add) + 0x0CU) /*!< I2S_ADD data register */ +#define I2S_ADD_CRCPOLY(i2sx_add) REG32((i2sx_add) + 0x10U) /*!< I2S_ADD CRC polynomial register */ +#define I2S_ADD_RCRC(i2sx_add) REG32((i2sx_add) + 0x14U) /*!< I2S_ADD receive CRC register */ +#define I2S_ADD_TCRC(i2sx_add) REG32((i2sx_add) + 0x18U) /*!< I2S_ADD transmit CRC register */ +#define I2S_ADD_I2SCTL(i2sx_add) REG32((i2sx_add) + 0x1CU) /*!< I2S_ADD I2S control register */ +#define I2S_ADD_I2SPSC(i2sx_add) REG32((i2sx_add) + 0x20U) /*!< I2S_ADD I2S clock prescaler register */ + +/* bits definitions */ +/* SPI_CTL0 */ +#define SPI_CTL0_CKPH BIT(0) /*!< clock phase selection*/ +#define SPI_CTL0_CKPL BIT(1) /*!< clock polarity selection */ +#define SPI_CTL0_MSTMOD BIT(2) /*!< master mode enable */ +#define SPI_CTL0_PSC BITS(3,5) /*!< master clock prescaler selection */ +#define SPI_CTL0_SPIEN BIT(6) /*!< SPI enable*/ +#define SPI_CTL0_LF BIT(7) /*!< lsb first mode */ +#define SPI_CTL0_SWNSS BIT(8) /*!< nss pin selection in nss software mode */ +#define SPI_CTL0_SWNSSEN BIT(9) /*!< nss software mode selection */ +#define SPI_CTL0_RO BIT(10) /*!< receive only */ +#define SPI_CTL0_FF16 BIT(11) /*!< data frame size */ +#define SPI_CTL0_CRCNT BIT(12) /*!< CRC next transfer */ +#define SPI_CTL0_CRCEN BIT(13) /*!< CRC calculation enable */ +#define SPI_CTL0_BDOEN BIT(14) /*!< bidirectional transmit output enable*/ +#define SPI_CTL0_BDEN BIT(15) /*!< bidirectional enable */ + +/* SPI_CTL1 */ +#define SPI_CTL1_DMAREN BIT(0) /*!< receive buffer dma enable */ +#define SPI_CTL1_DMATEN BIT(1) /*!< transmit buffer dma enable */ +#define SPI_CTL1_NSSDRV BIT(2) /*!< drive nss output */ +#define SPI_CTL1_TMOD BIT(4) /*!< SPI TI mode enable */ +#define SPI_CTL1_ERRIE BIT(5) /*!< errors interrupt enable */ +#define SPI_CTL1_RBNEIE BIT(6) /*!< receive buffer not empty interrupt enable */ +#define SPI_CTL1_TBEIE BIT(7) /*!< transmit buffer empty interrupt enable */ + +/* SPI_STAT */ +#define SPI_STAT_RBNE BIT(0) /*!< receive buffer not empty */ +#define SPI_STAT_TBE BIT(1) /*!< transmit buffer empty */ +#define SPI_STAT_I2SCH BIT(2) /*!< I2S channel side */ +#define SPI_STAT_TXURERR BIT(3) /*!< I2S transmission underrun error bit */ +#define SPI_STAT_CRCERR BIT(4) /*!< SPI CRC error bit */ +#define SPI_STAT_CONFERR BIT(5) /*!< SPI configuration error bit */ +#define SPI_STAT_RXORERR BIT(6) /*!< SPI reception overrun error bit */ +#define SPI_STAT_TRANS BIT(7) /*!< transmitting on-going bit */ +#define SPI_STAT_FERR BIT(8) /*!< format error bit */ + +/* SPI_DATA */ +#define SPI_DATA_DATA BITS(0,15) /*!< data transfer register */ + +/* SPI_CRCPOLY */ +#define SPI_CRCPOLY_CPR BITS(0,15) /*!< CRC polynomial register */ + +/* SPI_RCRC */ +#define SPI_RCRC_RCR BITS(0,15) /*!< RX CRC register */ + +/* SPI_TCRC */ +#define SPI_TCRC_TCR BITS(0,15) /*!< TX CRC register */ + +/* SPI_I2SCTL */ +#define SPI_I2SCTL_CHLEN BIT(0) /*!< channel length */ +#define SPI_I2SCTL_DTLEN BITS(1,2) /*!< data length */ +#define SPI_I2SCTL_CKPL BIT(3) /*!< idle state clock polarity */ +#define SPI_I2SCTL_I2SSTD BITS(4,5) /*!< I2S standard selection */ +#define SPI_I2SCTL_PCMSMOD BIT(7) /*!< PCM frame synchronization mode */ +#define SPI_I2SCTL_I2SOPMOD BITS(8,9) /*!< I2S operation mode */ +#define SPI_I2SCTL_I2SEN BIT(10) /*!< I2S enable */ +#define SPI_I2SCTL_I2SSEL BIT(11) /*!< I2S mode selection */ + +/* SPI_I2S_PSC */ +#define SPI_I2SPSC_DIV BITS(0,7) /*!< dividing factor for the prescaler */ +#define SPI_I2SPSC_OF BIT(8) /*!< odd factor for the prescaler */ +#define SPI_I2SPSC_MCKOEN BIT(9) /*!< I2S MCK output enable */ + +/* SPI_SPI_QCTL(only SPI5) */ +#define SPI_QCTL_QMOD BIT(0) /*!< quad-SPI mode enable */ +#define SPI_QCTL_QRD BIT(1) /*!< quad-SPI mode read select */ +#define SPI_QCTL_IO23_DRV BIT(2) /*!< drive SPI_IO2 and SPI_IO3 enable */ + +/* constants definitions */ +/* SPI and I2S parameter struct definitions */ +typedef struct +{ + uint32_t device_mode; /*!< SPI master or slave */ + uint32_t trans_mode; /*!< SPI transtype */ + uint32_t frame_size; /*!< SPI frame size */ + uint32_t nss; /*!< SPI nss control by handware or software */ + uint32_t endian; /*!< SPI big endian or little endian */ + uint32_t clock_polarity_phase; /*!< SPI clock phase and polarity */ + uint32_t prescale; /*!< SPI prescale factor */ +}spi_parameter_struct; + +/* SPI mode definitions */ +#define SPI_MASTER (SPI_CTL0_MSTMOD | SPI_CTL0_SWNSS) /*!< SPI as master */ +#define SPI_SLAVE ((uint32_t)0x00000000U) /*!< SPI as slave */ + +/* SPI bidirectional transfer direction */ +#define SPI_BIDIRECTIONAL_TRANSMIT SPI_CTL0_BDOEN /*!< SPI work in transmit-only mode */ +#define SPI_BIDIRECTIONAL_RECEIVE (~SPI_CTL0_BDOEN) /*!< SPI work in receive-only mode */ + +/* SPI transmit type */ +#define SPI_TRANSMODE_FULLDUPLEX ((uint32_t)0x00000000U) /*!< SPI receive and send data at fullduplex communication */ +#define SPI_TRANSMODE_RECEIVEONLY SPI_CTL0_RO /*!< SPI only receive data */ +#define SPI_TRANSMODE_BDRECEIVE SPI_CTL0_BDEN /*!< bidirectional receive data */ +#define SPI_TRANSMODE_BDTRANSMIT (SPI_CTL0_BDEN | SPI_CTL0_BDOEN) /*!< bidirectional transmit data*/ + +/* SPI frame size */ +#define SPI_FRAMESIZE_16BIT SPI_CTL0_FF16 /*!< SPI frame size is 16 bits */ +#define SPI_FRAMESIZE_8BIT ((uint32_t)0x00000000U) /*!< SPI frame size is 8 bits */ + +/* SPI NSS control mode */ +#define SPI_NSS_SOFT SPI_CTL0_SWNSSEN /*!< SPI nss control by sofrware */ +#define SPI_NSS_HARD ((uint32_t)0x00000000U) /*!< SPI nss control by hardware */ + +/* SPI transmit way */ +#define SPI_ENDIAN_MSB ((uint32_t)0x00000000U) /*!< SPI transmit way is big endian: transmit MSB first */ +#define SPI_ENDIAN_LSB SPI_CTL0_LF /*!< SPI transmit way is little endian: transmit LSB first */ + +/* SPI clock polarity and phase */ +#define SPI_CK_PL_LOW_PH_1EDGE ((uint32_t)0x00000000U) /*!< SPI clock polarity is low level and phase is first edge */ +#define SPI_CK_PL_HIGH_PH_1EDGE SPI_CTL0_CKPL /*!< SPI clock polarity is high level and phase is first edge */ +#define SPI_CK_PL_LOW_PH_2EDGE SPI_CTL0_CKPH /*!< SPI clock polarity is low level and phase is second edge */ +#define SPI_CK_PL_HIGH_PH_2EDGE (SPI_CTL0_CKPL|SPI_CTL0_CKPH) /*!< SPI clock polarity is high level and phase is second edge */ + +/* SPI clock prescale factor */ +#define CTL0_PSC(regval) (BITS(3,5)&((uint32_t)(regval)<<3)) +#define SPI_PSC_2 CTL0_PSC(0) /*!< SPI clock prescale factor is 2 */ +#define SPI_PSC_4 CTL0_PSC(1) /*!< SPI clock prescale factor is 4 */ +#define SPI_PSC_8 CTL0_PSC(2) /*!< SPI clock prescale factor is 8 */ +#define SPI_PSC_16 CTL0_PSC(3) /*!< SPI clock prescale factor is 16 */ +#define SPI_PSC_32 CTL0_PSC(4) /*!< SPI clock prescale factor is 32 */ +#define SPI_PSC_64 CTL0_PSC(5) /*!< SPI clock prescale factor is 64 */ +#define SPI_PSC_128 CTL0_PSC(6) /*!< SPI clock prescale factor is 128 */ +#define SPI_PSC_256 CTL0_PSC(7) /*!< SPI clock prescale factor is 256 */ + +/* I2S audio sample rate */ +#define I2S_AUDIOSAMPLE_8K ((uint32_t)8000U) /*!< I2S audio sample rate is 8KHz */ +#define I2S_AUDIOSAMPLE_11K ((uint32_t)11025U) /*!< I2S audio sample rate is 11KHz */ +#define I2S_AUDIOSAMPLE_16K ((uint32_t)16000U) /*!< I2S audio sample rate is 16KHz */ +#define I2S_AUDIOSAMPLE_22K ((uint32_t)22050U) /*!< I2S audio sample rate is 22KHz */ +#define I2S_AUDIOSAMPLE_32K ((uint32_t)32000U) /*!< I2S audio sample rate is 32KHz */ +#define I2S_AUDIOSAMPLE_44K ((uint32_t)44100U) /*!< I2S audio sample rate is 44KHz */ +#define I2S_AUDIOSAMPLE_48K ((uint32_t)48000U) /*!< I2S audio sample rate is 48KHz */ +#define I2S_AUDIOSAMPLE_96K ((uint32_t)96000U) /*!< I2S audio sample rate is 96KHz */ +#define I2S_AUDIOSAMPLE_192K ((uint32_t)192000U) /*!< I2S audio sample rate is 192KHz */ + +/* I2S frame format */ +#define I2SCTL_DTLEN(regval) (BITS(1,2)&((uint32_t)(regval)<<1)) +#define I2S_FRAMEFORMAT_DT16B_CH16B I2SCTL_DTLEN(0) /*!< I2S data length is 16 bit and channel length is 16 bit */ +#define I2S_FRAMEFORMAT_DT16B_CH32B (I2SCTL_DTLEN(0)|SPI_I2SCTL_CHLEN) /*!< I2S data length is 16 bit and channel length is 32 bit */ +#define I2S_FRAMEFORMAT_DT24B_CH32B (I2SCTL_DTLEN(1)|SPI_I2SCTL_CHLEN) /*!< I2S data length is 24 bit and channel length is 32 bit */ +#define I2S_FRAMEFORMAT_DT32B_CH32B (I2SCTL_DTLEN(2)|SPI_I2SCTL_CHLEN) /*!< I2S data length is 32 bit and channel length is 32 bit */ + +/* I2S master clock output */ +#define I2S_MCKOUT_DISABLE ((uint32_t)0x00000000U) /*!< I2S master clock output disable */ +#define I2S_MCKOUT_ENABLE SPI_I2SPSC_MCKOEN /*!< I2S master clock output enable */ + +/* I2S operation mode */ +#define I2SCTL_I2SOPMOD(regval) (BITS(8,9)&((uint32_t)(regval)<<8)) +#define I2S_MODE_SLAVETX I2SCTL_I2SOPMOD(0) /*!< I2S slave transmit mode */ +#define I2S_MODE_SLAVERX I2SCTL_I2SOPMOD(1) /*!< I2S slave receive mode */ +#define I2S_MODE_MASTERTX I2SCTL_I2SOPMOD(2) /*!< I2S master transmit mode */ +#define I2S_MODE_MASTERRX I2SCTL_I2SOPMOD(3) /*!< I2S master receive mode */ + +/* I2S standard */ +#define I2SCTL_I2SSTD(regval) (BITS(4,5)&((uint32_t)(regval)<<4)) +#define I2S_STD_PHILLIPS I2SCTL_I2SSTD(0) /*!< I2S phillips standard */ +#define I2S_STD_MSB I2SCTL_I2SSTD(1) /*!< I2S MSB standard */ +#define I2S_STD_LSB I2SCTL_I2SSTD(2) /*!< I2S LSB standard */ +#define I2S_STD_PCMSHORT I2SCTL_I2SSTD(3) /*!< I2S PCM short standard */ +#define I2S_STD_PCMLONG (I2SCTL_I2SSTD(3) | SPI_I2SCTL_PCMSMOD) /*!< I2S PCM long standard */ + +/* I2S clock polarity */ +#define I2S_CKPL_LOW ((uint32_t)0x00000000U) /*!< I2S clock polarity low level */ +#define I2S_CKPL_HIGH SPI_I2SCTL_CKPL /*!< I2S clock polarity high level */ + +/* SPI DMA constants definitions */ +#define SPI_DMA_TRANSMIT ((uint8_t)0x00U) /*!< SPI transmit data use DMA */ +#define SPI_DMA_RECEIVE ((uint8_t)0x01U) /*!< SPI receive data use DMA */ + +/* SPI CRC constants definitions */ +#define SPI_CRC_TX ((uint8_t)0x00U) /*!< SPI transmit CRC value */ +#define SPI_CRC_RX ((uint8_t)0x01U) /*!< SPI receive CRC value */ + +/* SPI/I2S interrupt enable/disable constants definitions */ +#define SPI_I2S_INT_TBE ((uint8_t)0x00U) /*!< transmit buffer empty interrupt */ +#define SPI_I2S_INT_RBNE ((uint8_t)0x01U) /*!< receive buffer not empty interrupt */ +#define SPI_I2S_INT_ERR ((uint8_t)0x02U) /*!< error interrupt */ + +/* SPI/I2S interrupt flag constants definitions */ +#define SPI_I2S_INT_FLAG_TBE ((uint8_t)0x00U) /*!< transmit buffer empty interrupt flag */ +#define SPI_I2S_INT_FLAG_RBNE ((uint8_t)0x01U) /*!< receive buffer not empty interrupt flag */ +#define SPI_I2S_INT_FLAG_RXORERR ((uint8_t)0x02U) /*!< overrun interrupt flag */ +#define SPI_INT_FLAG_CONFERR ((uint8_t)0x03U) /*!< config error interrupt flag */ +#define SPI_INT_FLAG_CRCERR ((uint8_t)0x04U) /*!< CRC error interrupt flag */ +#define I2S_INT_FLAG_TXURERR ((uint8_t)0x05U) /*!< underrun error interrupt flag */ +#define SPI_I2S_INT_FLAG_FERR ((uint8_t)0x06U) /*!< format error interrupt flag */ + +/* SPI/I2S flag definitions */ +#define SPI_FLAG_RBNE SPI_STAT_RBNE /*!< receive buffer not empty flag */ +#define SPI_FLAG_TBE SPI_STAT_TBE /*!< transmit buffer empty flag */ +#define SPI_FLAG_CRCERR SPI_STAT_CRCERR /*!< CRC error flag */ +#define SPI_FLAG_CONFERR SPI_STAT_CONFERR /*!< mode config error flag */ +#define SPI_FLAG_RXORERR SPI_STAT_RXORERR /*!< receive overrun error flag */ +#define SPI_FLAG_TRANS SPI_STAT_TRANS /*!< transmit on-going flag */ +#define SPI_FLAG_FERR SPI_STAT_FERR /*!< format error flag */ +#define I2S_FLAG_RBNE SPI_STAT_RBNE /*!< receive buffer not empty flag */ +#define I2S_FLAG_TBE SPI_STAT_TBE /*!< transmit buffer empty flag */ +#define I2S_FLAG_CH SPI_STAT_I2SCH /*!< channel side flag */ +#define I2S_FLAG_TXURERR SPI_STAT_TXURERR /*!< underrun error flag */ +#define I2S_FLAG_RXORERR SPI_STAT_RXORERR /*!< overrun error flag */ +#define I2S_FLAG_TRANS SPI_STAT_TRANS /*!< transmit on-going flag */ +#define I2S_FLAG_FERR SPI_STAT_FERR /*!< format error flag */ + +/* function declarations */ +/* initialization functions */ +/* deinitialize SPI and I2S */ +void spi_i2s_deinit(uint32_t spi_periph); +/* initialize the parameters of SPI struct with the default values */ +void spi_struct_para_init(spi_parameter_struct* spi_struct); +/* initialize SPI parameter */ +void spi_init(uint32_t spi_periph,spi_parameter_struct* spi_struct); +/* enable SPI */ +void spi_enable(uint32_t spi_periph); +/* disable SPI */ +void spi_disable(uint32_t spi_periph); + +/* initialize I2S parameter */ +void i2s_init(uint32_t spi_periph,uint32_t i2s_mode,uint32_t i2s_standard,uint32_t i2s_ckpl); +/* configure I2S prescale */ +void i2s_psc_config(uint32_t spi_periph,uint32_t i2s_audiosample,uint32_t i2s_frameformat,uint32_t i2s_mckout); +/* enable I2S */ +void i2s_enable(uint32_t spi_periph); +/* disable I2S */ +void i2s_disable(uint32_t spi_periph); + +/* NSS functions */ +/* enable SPI nss output */ +void spi_nss_output_enable(uint32_t spi_periph); +/* disable SPI nss output */ +void spi_nss_output_disable(uint32_t spi_periph); +/* SPI nss pin high level in software mode */ +void spi_nss_internal_high(uint32_t spi_periph); +/* SPI nss pin low level in software mode */ +void spi_nss_internal_low(uint32_t spi_periph); + +/* SPI DMA functions */ +/* enable SPI DMA */ +void spi_dma_enable(uint32_t spi_periph,uint8_t spi_dma); +/* disable SPI DMA */ +void spi_dma_disable(uint32_t spi_periph,uint8_t spi_dma); + +/* SPI/I2S transfer configure functions */ +/* configure SPI/I2S data frame format */ +void spi_i2s_data_frame_format_config(uint32_t spi_periph,uint16_t frame_format); +/* SPI transmit data */ +void spi_i2s_data_transmit(uint32_t spi_periph,uint16_t data); +/* SPI receive data */ +uint16_t spi_i2s_data_receive(uint32_t spi_periph); +/* configure SPI bidirectional transfer direction */ +void spi_bidirectional_transfer_config(uint32_t spi_periph,uint32_t transfer_direction); + +/* SPI CRC functions */ +/* set SPI CRC polynomial */ +void spi_crc_polynomial_set(uint32_t spi_periph,uint16_t crc_poly); +/* get SPI CRC polynomial */ +uint16_t spi_crc_polynomial_get(uint32_t spi_periph); +/* turn on SPI CRC function */ +void spi_crc_on(uint32_t spi_periph); +/* turn off SPI CRC function */ +void spi_crc_off(uint32_t spi_periph); +/* SPI next data is CRC value */ +void spi_crc_next(uint32_t spi_periph); +/* get SPI CRC send value or receive value */ +uint16_t spi_crc_get(uint32_t spi_periph,uint8_t spi_crc); + +/* SPI TI mode functions */ +/* enable SPI TI mode */ +void spi_ti_mode_enable(uint32_t spi_periph); +/* disable SPI TI mode */ +void spi_ti_mode_disable(uint32_t spi_periph); + +/* configure i2s full duplex mode */ +void i2s_full_duplex_mode_config(uint32_t i2s_add_periph,uint32_t i2s_mode,uint32_t i2s_standard,uint32_t i2s_ckpl,uint32_t i2s_frameformat); + +/* quad wire SPI functions */ +/* enable quad wire SPI */ +void qspi_enable(uint32_t spi_periph); +/* disable quad wire SPI */ +void qspi_disable(uint32_t spi_periph); +/* enable quad wire SPI write */ +void qspi_write_enable(uint32_t spi_periph); +/* enable quad wire SPI read */ +void qspi_read_enable(uint32_t spi_periph); +/* enable quad wire SPI_IO2 and SPI_IO3 pin output */ +void qspi_io23_output_enable(uint32_t spi_periph); +/* disable quad wire SPI_IO2 and SPI_IO3 pin output */ +void qspi_io23_output_disable(uint32_t spi_periph); + +/* flag & interrupt functions */ +/* enable SPI interrupt */ +void spi_i2s_interrupt_enable(uint32_t spi_periph,uint8_t spi_i2s_int); +/* disable SPI interrupt */ +void spi_i2s_interrupt_disable(uint32_t spi_periph,uint8_t spi_i2s_int); +/* get SPI and I2S interrupt status*/ +FlagStatus spi_i2s_interrupt_flag_get(uint32_t spi_periph,uint8_t spi_i2s_int); +/* get SPI and I2S flag status */ +FlagStatus spi_i2s_flag_get(uint32_t spi_periph,uint32_t spi_i2s_flag); +/* clear SPI CRC error flag status */ +void spi_crc_error_clear(uint32_t spi_periph); + +#endif /* GD32F4XX_SPI_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_syscfg.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_syscfg.h new file mode 100644 index 0000000000..edee55e21c --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_syscfg.h @@ -0,0 +1,181 @@ +/*! + \file gd32f4xx_syscfg.h + \brief definitions for the SYSCFG + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_SYSCFG_H +#define GD32F4XX_SYSCFG_H + +#include "gd32f4xx.h" + +/* SYSCFG definitions */ +#define SYSCFG SYSCFG_BASE + +/* registers definitions */ +#define SYSCFG_CFG0 REG32(SYSCFG + 0x00U) /*!< system configuration register 0 */ +#define SYSCFG_CFG1 REG32(SYSCFG + 0x04U) /*!< system configuration register 1 */ +#define SYSCFG_EXTISS0 REG32(SYSCFG + 0x08U) /*!< EXTI sources selection register 0 */ +#define SYSCFG_EXTISS1 REG32(SYSCFG + 0x0CU) /*!< EXTI sources selection register 1 */ +#define SYSCFG_EXTISS2 REG32(SYSCFG + 0x10U) /*!< EXTI sources selection register 2 */ +#define SYSCFG_EXTISS3 REG32(SYSCFG + 0x14U) /*!< EXTI sources selection register 3 */ +#define SYSCFG_CPSCTL REG32(SYSCFG + 0x20U) /*!< system I/O compensation control register */ + +/* SYSCFG_CFG0 bits definitions */ +#define SYSCFG_CFG0_BOOT_MODE BITS(0,2) /*!< SYSCFG memory remap config */ +#define SYSCFG_CFG0_FMC_SWP BIT(8) /*!< FMC memory swap config */ +#define SYSCFG_CFG0_EXMC_SWP BITS(10,11) /*!< EXMC memory swap config */ + +/* SYSCFG_CFG1 bits definitions */ +#define SYSCFG_CFG1_ENET_PHY_SEL BIT(23) /*!< Ethernet PHY selection config */ + +/* SYSCFG_EXTISS0 bits definitions */ +#define SYSCFG_EXTISS0_EXTI0_SS BITS(0,3) /*!< EXTI 0 configuration */ +#define SYSCFG_EXTISS0_EXTI1_SS BITS(4,7) /*!< EXTI 1 configuration */ +#define SYSCFG_EXTISS0_EXTI2_SS BITS(8,11) /*!< EXTI 2 configuration */ +#define SYSCFG_EXTISS0_EXTI3_SS BITS(12,15) /*!< EXTI 3 configuration */ + +/* SYSCFG_EXTISS1 bits definitions */ +#define SYSCFG_EXTISS1_EXTI4_SS BITS(0,3) /*!< EXTI 4 configuration */ +#define SYSCFG_EXTISS1_EXTI5_SS BITS(4,7) /*!< EXTI 5 configuration */ +#define SYSCFG_EXTISS1_EXTI6_SS BITS(8,11) /*!< EXTI 6 configuration */ +#define SYSCFG_EXTISS1_EXTI7_SS BITS(12,15) /*!< EXTI 7 configuration */ + +/* SYSCFG_EXTISS2 bits definitions */ +#define SYSCFG_EXTISS2_EXTI8_SS BITS(0,3) /*!< EXTI 8 configuration */ +#define SYSCFG_EXTISS2_EXTI9_SS BITS(4,7) /*!< EXTI 9 configuration */ +#define SYSCFG_EXTISS2_EXTI10_SS BITS(8,11) /*!< EXTI 10 configuration */ +#define SYSCFG_EXTISS2_EXTI11_SS BITS(12,15) /*!< EXTI 11 configuration */ + +/* SYSCFG_EXTISS3 bits definitions */ +#define SYSCFG_EXTISS3_EXTI12_SS BITS(0,3) /*!< EXTI 12 configuration */ +#define SYSCFG_EXTISS3_EXTI13_SS BITS(4,7) /*!< EXTI 13 configuration */ +#define SYSCFG_EXTISS3_EXTI14_SS BITS(8,11) /*!< EXTI 14 configuration */ +#define SYSCFG_EXTISS3_EXTI15_SS BITS(12,15) /*!< EXTI 15 configuration */ + +/* SYSCFG_CPSCTL bits definitions */ +#define SYSCFG_CPSCTL_CPS_EN BIT(0) /*!< I/O compensation cell enable */ +#define SYSCFG_CPSCTL_CPS_RDY BIT(8) /*!< I/O compensation cell is ready or not */ + +/* constants definitions */ +/* boot mode definitions */ +#define SYSCFG_BOOTMODE_FLASH ((uint8_t)0x00U) /*!< main flash memory remap */ +#define SYSCFG_BOOTMODE_BOOTLOADER ((uint8_t)0x01U) /*!< boot loader remap */ +#define SYSCFG_BOOTMODE_EXMC_SRAM ((uint8_t)0x02U) /*!< SRAM/NOR 0 and 1 of EXMC remap */ +#define SYSCFG_BOOTMODE_SRAM ((uint8_t)0x03U) /*!< SRAM0 of on-chip SRAM remap */ +#define SYSCFG_BOOTMODE_EXMC_SDRAM ((uint8_t)0x04U) /*!< SDRAM bank0 of EXMC remap */ + +/* FMC swap definitions */ +#define SYSCFG_FMC_SWP_BANK0 ((uint32_t)0x00000000U) /*!< main flash Bank 0 is mapped at address 0x08000000 */ +#define SYSCFG_FMC_SWP_BANK1 ((uint32_t)0x00000100U) /*!< main flash Bank 1 is mapped at address 0x08000000 */ + +/* EXMC swap enable/disable */ +#define SYSCFG_EXMC_SWP_ENABLE ((uint32_t)0x00000400U) /*!< SDRAM bank 0 and bank 1 are swapped with NAND bank 1 and PC card */ +#define SYSCFG_EXMC_SWP_DISABLE ((uint32_t)0x00000000U) /*!< no memory mapping swap */ + +/* EXTI source select definition */ +#define EXTISS0 ((uint8_t)0x00U) /*!< EXTI source select GPIOx pin 0~3 */ +#define EXTISS1 ((uint8_t)0x01U) /*!< EXTI source select GPIOx pin 4~7 */ +#define EXTISS2 ((uint8_t)0x02U) /*!< EXTI source select GPIOx pin 8~11 */ +#define EXTISS3 ((uint8_t)0x03U) /*!< EXTI source select GPIOx pin 12~15 */ + +/* EXTI source select mask bits definition */ +#define EXTI_SS_MASK BITS(0,3) /*!< EXTI source select mask */ + +/* EXTI source select jumping step definition */ +#define EXTI_SS_JSTEP ((uint8_t)(0x04U)) /*!< EXTI source select jumping step */ + +/* EXTI source select moving step definition */ +#define EXTI_SS_MSTEP(pin) (EXTI_SS_JSTEP*((pin)%EXTI_SS_JSTEP)) /*!< EXTI source select moving step */ + +/* EXTI source port definitions */ +#define EXTI_SOURCE_GPIOA ((uint8_t)0x00U) /*!< EXTI GPIOA configuration */ +#define EXTI_SOURCE_GPIOB ((uint8_t)0x01U) /*!< EXTI GPIOB configuration */ +#define EXTI_SOURCE_GPIOC ((uint8_t)0x02U) /*!< EXTI GPIOC configuration */ +#define EXTI_SOURCE_GPIOD ((uint8_t)0x03U) /*!< EXTI GPIOD configuration */ +#define EXTI_SOURCE_GPIOE ((uint8_t)0x04U) /*!< EXTI GPIOE configuration */ +#define EXTI_SOURCE_GPIOF ((uint8_t)0x05U) /*!< EXTI GPIOF configuration */ +#define EXTI_SOURCE_GPIOG ((uint8_t)0x06U) /*!< EXTI GPIOG configuration */ +#define EXTI_SOURCE_GPIOH ((uint8_t)0x07U) /*!< EXTI GPIOH configuration */ +#define EXTI_SOURCE_GPIOI ((uint8_t)0x08U) /*!< EXTI GPIOI configuration */ + +/* EXTI source pin definitions */ +#define EXTI_SOURCE_PIN0 ((uint8_t)0x00U) /*!< EXTI GPIO pin0 configuration */ +#define EXTI_SOURCE_PIN1 ((uint8_t)0x01U) /*!< EXTI GPIO pin1 configuration */ +#define EXTI_SOURCE_PIN2 ((uint8_t)0x02U) /*!< EXTI GPIO pin2 configuration */ +#define EXTI_SOURCE_PIN3 ((uint8_t)0x03U) /*!< EXTI GPIO pin3 configuration */ +#define EXTI_SOURCE_PIN4 ((uint8_t)0x04U) /*!< EXTI GPIO pin4 configuration */ +#define EXTI_SOURCE_PIN5 ((uint8_t)0x05U) /*!< EXTI GPIO pin5 configuration */ +#define EXTI_SOURCE_PIN6 ((uint8_t)0x06U) /*!< EXTI GPIO pin6 configuration */ +#define EXTI_SOURCE_PIN7 ((uint8_t)0x07U) /*!< EXTI GPIO pin7 configuration */ +#define EXTI_SOURCE_PIN8 ((uint8_t)0x08U) /*!< EXTI GPIO pin8 configuration */ +#define EXTI_SOURCE_PIN9 ((uint8_t)0x09U) /*!< EXTI GPIO pin9 configuration */ +#define EXTI_SOURCE_PIN10 ((uint8_t)0x0AU) /*!< EXTI GPIO pin10 configuration */ +#define EXTI_SOURCE_PIN11 ((uint8_t)0x0BU) /*!< EXTI GPIO pin11 configuration */ +#define EXTI_SOURCE_PIN12 ((uint8_t)0x0CU) /*!< EXTI GPIO pin12 configuration */ +#define EXTI_SOURCE_PIN13 ((uint8_t)0x0DU) /*!< EXTI GPIO pin13 configuration */ +#define EXTI_SOURCE_PIN14 ((uint8_t)0x0EU) /*!< EXTI GPIO pin14 configuration */ +#define EXTI_SOURCE_PIN15 ((uint8_t)0x0FU) /*!< EXTI GPIO pin15 configuration */ + +/* ethernet PHY selection */ +#define SYSCFG_ENET_PHY_MII ((uint32_t)0x00000000U) /*!< MII is selected for the Ethernet MAC */ +#define SYSCFG_ENET_PHY_RMII ((uint32_t)0x00800000U) /*!< RMII is selected for the Ethernet MAC */ + +/* I/O compensation cell enable/disable */ +#define SYSCFG_COMPENSATION_ENABLE ((uint32_t)0x00000001U) /*!< I/O compensation cell enable */ +#define SYSCFG_COMPENSATION_DISABLE ((uint32_t)0x00000000U) /*!< I/O compensation cell disable */ + +/* function declarations */ +/* initialization functions */ +/* deinit syscfg module */ +void syscfg_deinit(void); + +/* function configuration */ +/* configure the boot mode */ +void syscfg_bootmode_config(uint8_t syscfg_bootmode); +/* configure FMC memory mapping swap */ +void syscfg_fmc_swap_config(uint32_t syscfg_fmc_swap); +/* configure the EXMC swap */ +void syscfg_exmc_swap_config(uint32_t syscfg_exmc_swap); +/* configure the GPIO pin as EXTI Line */ +void syscfg_exti_line_config(uint8_t exti_port, uint8_t exti_pin); +/* configure the PHY interface for the ethernet MAC */ +void syscfg_enet_phy_interface_config(uint32_t syscfg_enet_phy_interface); +/* configure the I/O compensation cell */ +void syscfg_compensation_config(uint32_t syscfg_compensation); + +/* interrupt & flag functions */ +/* check the I/O compensation cell is ready or not */ +FlagStatus syscfg_flag_get(void); + +#endif /* GD32F4XX_SYSCFG_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_timer.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_timer.h new file mode 100644 index 0000000000..cac902a222 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_timer.h @@ -0,0 +1,781 @@ +/*! + \file gd32f4xx_timer.h + \brief definitions for the TIMER + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + All rights reserved. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_TIMER_H +#define GD32F4XX_TIMER_H + +#include "gd32f4xx.h" + +/* TIMERx(x=0..13) definitions */ +#define TIMER0 (TIMER_BASE + 0x00010000U) +#define TIMER1 (TIMER_BASE + 0x00000000U) +#define TIMER2 (TIMER_BASE + 0x00000400U) +#define TIMER3 (TIMER_BASE + 0x00000800U) +#define TIMER4 (TIMER_BASE + 0x00000C00U) +#define TIMER5 (TIMER_BASE + 0x00001000U) +#define TIMER6 (TIMER_BASE + 0x00001400U) +#define TIMER7 (TIMER_BASE + 0x00010400U) +#define TIMER8 (TIMER_BASE + 0x00014000U) +#define TIMER9 (TIMER_BASE + 0x00014400U) +#define TIMER10 (TIMER_BASE + 0x00014800U) +#define TIMER11 (TIMER_BASE + 0x00001800U) +#define TIMER12 (TIMER_BASE + 0x00001C00U) +#define TIMER13 (TIMER_BASE + 0x00002000U) + +/* registers definitions */ +#define TIMER_CTL0(timerx) REG32((timerx) + 0x00U) /*!< TIMER control register 0 */ +#define TIMER_CTL1(timerx) REG32((timerx) + 0x04U) /*!< TIMER control register 1 */ +#define TIMER_SMCFG(timerx) REG32((timerx) + 0x08U) /*!< TIMER slave mode configuration register */ +#define TIMER_DMAINTEN(timerx) REG32((timerx) + 0x0CU) /*!< TIMER DMA and interrupt enable register */ +#define TIMER_INTF(timerx) REG32((timerx) + 0x10U) /*!< TIMER interrupt flag register */ +#define TIMER_SWEVG(timerx) REG32((timerx) + 0x14U) /*!< TIMER software event generation register */ +#define TIMER_CHCTL0(timerx) REG32((timerx) + 0x18U) /*!< TIMER channel control register 0 */ +#define TIMER_CHCTL1(timerx) REG32((timerx) + 0x1CU) /*!< TIMER channel control register 1 */ +#define TIMER_CHCTL2(timerx) REG32((timerx) + 0x20U) /*!< TIMER channel control register 2 */ +#define TIMER_CNT(timerx) REG32((timerx) + 0x24U) /*!< TIMER counter register */ +#define TIMER_PSC(timerx) REG32((timerx) + 0x28U) /*!< TIMER prescaler register */ +#define TIMER_CAR(timerx) REG32((timerx) + 0x2CU) /*!< TIMER counter auto reload register */ +#define TIMER_CREP(timerx) REG32((timerx) + 0x30U) /*!< TIMER counter repetition register */ +#define TIMER_CH0CV(timerx) REG32((timerx) + 0x34U) /*!< TIMER channel 0 capture/compare value register */ +#define TIMER_CH1CV(timerx) REG32((timerx) + 0x38U) /*!< TIMER channel 1 capture/compare value register */ +#define TIMER_CH2CV(timerx) REG32((timerx) + 0x3CU) /*!< TIMER channel 2 capture/compare value register */ +#define TIMER_CH3CV(timerx) REG32((timerx) + 0x40U) /*!< TIMER channel 3 capture/compare value register */ +#define TIMER_CCHP(timerx) REG32((timerx) + 0x44U) /*!< TIMER complementary channel protection register */ +#define TIMER_DMACFG(timerx) REG32((timerx) + 0x48U) /*!< TIMER DMA configuration register */ +#define TIMER_DMATB(timerx) REG32((timerx) + 0x4CU) /*!< TIMER DMA transfer buffer register */ +#define TIMER_IRMP(timerx) REG32((timerx) + 0x50U) /*!< TIMER channel input remap register */ +#define TIMER_CFG(timerx) REG32((timerx) + 0xFCU) /*!< TIMER configuration register */ + +/* bits definitions */ +/* TIMER_CTL0 */ +#define TIMER_CTL0_CEN BIT(0) /*!< TIMER counter enable */ +#define TIMER_CTL0_UPDIS BIT(1) /*!< update disable */ +#define TIMER_CTL0_UPS BIT(2) /*!< update source */ +#define TIMER_CTL0_SPM BIT(3) /*!< single pulse mode */ +#define TIMER_CTL0_DIR BIT(4) /*!< timer counter direction */ +#define TIMER_CTL0_CAM BITS(5,6) /*!< center-aligned mode selection */ +#define TIMER_CTL0_ARSE BIT(7) /*!< auto-reload shadow enable */ +#define TIMER_CTL0_CKDIV BITS(8,9) /*!< clock division */ + +/* TIMER_CTL1 */ +#define TIMER_CTL1_CCSE BIT(0) /*!< commutation control shadow enable */ +#define TIMER_CTL1_CCUC BIT(2) /*!< commutation control shadow register update control */ +#define TIMER_CTL1_DMAS BIT(3) /*!< DMA request source selection */ +#define TIMER_CTL1_MMC BITS(4,6) /*!< master mode control */ +#define TIMER_CTL1_TI0S BIT(7) /*!< channel 0 trigger input selection(hall mode selection) */ +#define TIMER_CTL1_ISO0 BIT(8) /*!< idle state of channel 0 output */ +#define TIMER_CTL1_ISO0N BIT(9) /*!< idle state of channel 0 complementary output */ +#define TIMER_CTL1_ISO1 BIT(10) /*!< idle state of channel 1 output */ +#define TIMER_CTL1_ISO1N BIT(11) /*!< idle state of channel 1 complementary output */ +#define TIMER_CTL1_ISO2 BIT(12) /*!< idle state of channel 2 output */ +#define TIMER_CTL1_ISO2N BIT(13) /*!< idle state of channel 2 complementary output */ +#define TIMER_CTL1_ISO3 BIT(14) /*!< idle state of channel 3 output */ + +/* TIMER_SMCFG */ +#define TIMER_SMCFG_SMC BITS(0,2) /*!< slave mode control */ +#define TIMER_SMCFG_TRGS BITS(4,6) /*!< trigger selection */ +#define TIMER_SMCFG_MSM BIT(7) /*!< master-slave mode */ +#define TIMER_SMCFG_ETFC BITS(8,11) /*!< external trigger filter control */ +#define TIMER_SMCFG_ETPSC BITS(12,13) /*!< external trigger prescaler */ +#define TIMER_SMCFG_SMC1 BIT(14) /*!< part of SMC for enable external clock mode 1 */ +#define TIMER_SMCFG_ETP BIT(15) /*!< external trigger polarity */ + +/* TIMER_DMAINTEN */ +#define TIMER_DMAINTEN_UPIE BIT(0) /*!< update interrupt enable */ +#define TIMER_DMAINTEN_CH0IE BIT(1) /*!< channel 0 capture/compare interrupt enable */ +#define TIMER_DMAINTEN_CH1IE BIT(2) /*!< channel 1 capture/compare interrupt enable */ +#define TIMER_DMAINTEN_CH2IE BIT(3) /*!< channel 2 capture/compare interrupt enable */ +#define TIMER_DMAINTEN_CH3IE BIT(4) /*!< channel 3 capture/compare interrupt enable */ +#define TIMER_DMAINTEN_CMTIE BIT(5) /*!< commutation interrupt request enable */ +#define TIMER_DMAINTEN_TRGIE BIT(6) /*!< trigger interrupt enable */ +#define TIMER_DMAINTEN_BRKIE BIT(7) /*!< break interrupt enable */ +#define TIMER_DMAINTEN_UPDEN BIT(8) /*!< update DMA request enable */ +#define TIMER_DMAINTEN_CH0DEN BIT(9) /*!< channel 0 DMA request enable */ +#define TIMER_DMAINTEN_CH1DEN BIT(10) /*!< channel 1 DMA request enable */ +#define TIMER_DMAINTEN_CH2DEN BIT(11) /*!< channel 2 DMA request enable */ +#define TIMER_DMAINTEN_CH3DEN BIT(12) /*!< channel 3 DMA request enable */ +#define TIMER_DMAINTEN_CMTDEN BIT(13) /*!< commutation DMA request enable */ +#define TIMER_DMAINTEN_TRGDEN BIT(14) /*!< trigger DMA request enable */ + +/* TIMER_INTF */ +#define TIMER_INTF_UPIF BIT(0) /*!< update interrupt flag */ +#define TIMER_INTF_CH0IF BIT(1) /*!< channel 0 capture/compare interrupt flag */ +#define TIMER_INTF_CH1IF BIT(2) /*!< channel 1 capture/compare interrupt flag */ +#define TIMER_INTF_CH2IF BIT(3) /*!< channel 2 capture/compare interrupt flag */ +#define TIMER_INTF_CH3IF BIT(4) /*!< channel 3 capture/compare interrupt flag */ +#define TIMER_INTF_CMTIF BIT(5) /*!< channel commutation interrupt flag */ +#define TIMER_INTF_TRGIF BIT(6) /*!< trigger interrupt flag */ +#define TIMER_INTF_BRKIF BIT(7) /*!< break interrupt flag */ +#define TIMER_INTF_CH0OF BIT(9) /*!< channel 0 overcapture flag */ +#define TIMER_INTF_CH1OF BIT(10) /*!< channel 1 overcapture flag */ +#define TIMER_INTF_CH2OF BIT(11) /*!< channel 2 overcapture flag */ +#define TIMER_INTF_CH3OF BIT(12) /*!< channel 3 overcapture flag */ + +/* TIMER_SWEVG */ +#define TIMER_SWEVG_UPG BIT(0) /*!< update event generate */ +#define TIMER_SWEVG_CH0G BIT(1) /*!< channel 0 capture or compare event generation */ +#define TIMER_SWEVG_CH1G BIT(2) /*!< channel 1 capture or compare event generation */ +#define TIMER_SWEVG_CH2G BIT(3) /*!< channel 2 capture or compare event generation */ +#define TIMER_SWEVG_CH3G BIT(4) /*!< channel 3 capture or compare event generation */ +#define TIMER_SWEVG_CMTG BIT(5) /*!< channel commutation event generation */ +#define TIMER_SWEVG_TRGG BIT(6) /*!< trigger event generation */ +#define TIMER_SWEVG_BRKG BIT(7) /*!< break event generation */ + +/* TIMER_CHCTL0 */ +/* output compare mode */ +#define TIMER_CHCTL0_CH0MS BITS(0,1) /*!< channel 0 mode selection */ +#define TIMER_CHCTL0_CH0COMFEN BIT(2) /*!< channel 0 output compare fast enable */ +#define TIMER_CHCTL0_CH0COMSEN BIT(3) /*!< channel 0 output compare shadow enable */ +#define TIMER_CHCTL0_CH0COMCTL BITS(4,6) /*!< channel 0 output compare mode */ +#define TIMER_CHCTL0_CH0COMCEN BIT(7) /*!< channel 0 output compare clear enable */ +#define TIMER_CHCTL0_CH1MS BITS(8,9) /*!< channel 1 mode selection */ +#define TIMER_CHCTL0_CH1COMFEN BIT(10) /*!< channel 1 output compare fast enable */ +#define TIMER_CHCTL0_CH1COMSEN BIT(11) /*!< channel 1 output compare shadow enable */ +#define TIMER_CHCTL0_CH1COMCTL BITS(12,14) /*!< channel 1 output compare mode */ +#define TIMER_CHCTL0_CH1COMCEN BIT(15) /*!< channel 1 output compare clear enable */ +/* input capture mode */ +#define TIMER_CHCTL0_CH0CAPPSC BITS(2,3) /*!< channel 0 input capture prescaler */ +#define TIMER_CHCTL0_CH0CAPFLT BITS(4,7) /*!< channel 0 input capture filter control */ +#define TIMER_CHCTL0_CH1CAPPSC BITS(10,11) /*!< channel 1 input capture prescaler */ +#define TIMER_CHCTL0_CH1CAPFLT BITS(12,15) /*!< channel 1 input capture filter control */ + +/* TIMER_CHCTL1 */ +/* output compare mode */ +#define TIMER_CHCTL1_CH2MS BITS(0,1) /*!< channel 2 mode selection */ +#define TIMER_CHCTL1_CH2COMFEN BIT(2) /*!< channel 2 output compare fast enable */ +#define TIMER_CHCTL1_CH2COMSEN BIT(3) /*!< channel 2 output compare shadow enable */ +#define TIMER_CHCTL1_CH2COMCTL BITS(4,6) /*!< channel 2 output compare mode */ +#define TIMER_CHCTL1_CH2COMCEN BIT(7) /*!< channel 2 output compare clear enable */ +#define TIMER_CHCTL1_CH3MS BITS(8,9) /*!< channel 3 mode selection */ +#define TIMER_CHCTL1_CH3COMFEN BIT(10) /*!< channel 3 output compare fast enable */ +#define TIMER_CHCTL1_CH3COMSEN BIT(11) /*!< channel 3 output compare shadow enable */ +#define TIMER_CHCTL1_CH3COMCTL BITS(12,14) /*!< channel 3 output compare mode */ +#define TIMER_CHCTL1_CH3COMCEN BIT(15) /*!< channel 3 output compare clear enable */ +/* input capture mode */ +#define TIMER_CHCTL1_CH2CAPPSC BITS(2,3) /*!< channel 2 input capture prescaler */ +#define TIMER_CHCTL1_CH2CAPFLT BITS(4,7) /*!< channel 2 input capture filter control */ +#define TIMER_CHCTL1_CH3CAPPSC BITS(10,11) /*!< channel 3 input capture prescaler */ +#define TIMER_CHCTL1_CH3CAPFLT BITS(12,15) /*!< channel 3 input capture filter control */ + +/* TIMER_CHCTL2 */ +#define TIMER_CHCTL2_CH0EN BIT(0) /*!< channel 0 capture/compare function enable */ +#define TIMER_CHCTL2_CH0P BIT(1) /*!< channel 0 capture/compare function polarity */ +#define TIMER_CHCTL2_CH0NEN BIT(2) /*!< channel 0 complementary output enable */ +#define TIMER_CHCTL2_CH0NP BIT(3) /*!< channel 0 complementary output polarity */ +#define TIMER_CHCTL2_CH1EN BIT(4) /*!< channel 1 capture/compare function enable */ +#define TIMER_CHCTL2_CH1P BIT(5) /*!< channel 1 capture/compare function polarity */ +#define TIMER_CHCTL2_CH1NEN BIT(6) /*!< channel 1 complementary output enable */ +#define TIMER_CHCTL2_CH1NP BIT(7) /*!< channel 1 complementary output polarity */ +#define TIMER_CHCTL2_CH2EN BIT(8) /*!< channel 2 capture/compare function enable */ +#define TIMER_CHCTL2_CH2P BIT(9) /*!< channel 2 capture/compare function polarity */ +#define TIMER_CHCTL2_CH2NEN BIT(10) /*!< channel 2 complementary output enable */ +#define TIMER_CHCTL2_CH2NP BIT(11) /*!< channel 2 complementary output polarity */ +#define TIMER_CHCTL2_CH3EN BIT(12) /*!< channel 3 capture/compare function enable */ +#define TIMER_CHCTL2_CH3P BIT(13) /*!< channel 3 capture/compare function polarity */ + +/* TIMER_CNT */ +#define TIMER_CNT_CNT16 BITS(0,15) /*!< 16 bit timer counter */ +#define TIMER_CNT_CNT32 BITS(0,31) /*!< 32 bit(TIMER1,TIMER4) timer counter */ + +/* TIMER_PSC */ +#define TIMER_PSC_PSC BITS(0,15) /*!< prescaler value of the counter clock */ + +/* TIMER_CAR */ +#define TIMER_CAR_CARL16 BITS(0,15) /*!< 16 bit counter auto reload value */ +#define TIMER_CAR_CARL32 BITS(0,31) /*!< 32 bit(TIMER1,TIMER4) counter auto reload value */ + +/* TIMER_CREP */ +#define TIMER_CREP_CREP BITS(0,7) /*!< counter repetition value */ + +/* TIMER_CH0CV */ +#define TIMER_CH0CV_CH0VAL16 BITS(0,15) /*!< 16 bit capture/compare value of channel 0 */ +#define TIMER_CH0CV_CH0VAL32 BITS(0,31) /*!< 32 bit(TIMER1,TIMER4) capture/compare value of channel 0 */ + +/* TIMER_CH1CV */ +#define TIMER_CH1CV_CH1VAL16 BITS(0,15) /*!< 16 bit capture/compare value of channel 1 */ +#define TIMER_CH1CV_CH1VAL32 BITS(0,31) /*!< 32 bit(TIMER1,TIMER4) capture/compare value of channel 1 */ + +/* TIMER_CH2CV */ +#define TIMER_CH2CV_CH2VAL16 BITS(0,15) /*!< 16 bit capture/compare value of channel 2 */ +#define TIMER_CH2CV_CH2VAL32 BITS(0,31) /*!< 32 bit(TIMER1,TIMER4) capture/compare value of channel 2 */ + +/* TIMER_CH3CV */ +#define TIMER_CH3CV_CH3VAL16 BITS(0,15) /*!< 16 bit capture/compare value of channel 3 */ +#define TIMER_CH3CV_CH3VAL32 BITS(0,31) /*!< 32 bit(TIMER1,TIMER4) capture/compare value of channel 3 */ + +/* TIMER_CCHP */ +#define TIMER_CCHP_DTCFG BITS(0,7) /*!< dead time configure */ +#define TIMER_CCHP_PROT BITS(8,9) /*!< complementary register protect control */ +#define TIMER_CCHP_IOS BIT(10) /*!< idle mode off-state configure */ +#define TIMER_CCHP_ROS BIT(11) /*!< run mode off-state configure */ +#define TIMER_CCHP_BRKEN BIT(12) /*!< break enable */ +#define TIMER_CCHP_BRKP BIT(13) /*!< break polarity */ +#define TIMER_CCHP_OAEN BIT(14) /*!< output automatic enable */ +#define TIMER_CCHP_POEN BIT(15) /*!< primary output enable */ + +/* TIMER_DMACFG */ +#define TIMER_DMACFG_DMATA BITS(0,4) /*!< DMA transfer access start address */ +#define TIMER_DMACFG_DMATC BITS(8,12) /*!< DMA transfer count */ + +/* TIMER_DMATB */ +#define TIMER_DMATB_DMATB BITS(0,15) /*!< DMA transfer buffer address */ + +/* TIMER_IRMP */ +#define TIMER1_IRMP_ITI1_RMP BITS(10,11) /*!< TIMER1 internal trigger input 1 remap */ +#define TIMER4_IRMP_CI3_RMP BITS(6,7) /*!< TIMER4 channel 3 input remap */ +#define TIMER10_IRMP_ITI1_RMP BITS(0,1) /*!< TIMER10 internal trigger input 1 remap */ + +/* TIMER_CFG */ +#define TIMER_CFG_OUTSEL BIT(0) /*!< the output value selection */ +#define TIMER_CFG_CHVSEL BIT(1) /*!< write CHxVAL register selection */ + +/* constants definitions */ +/* TIMER init parameter struct definitions*/ +typedef struct +{ + uint16_t prescaler; /*!< prescaler value */ + uint16_t alignedmode; /*!< aligned mode */ + uint16_t counterdirection; /*!< counter direction */ + uint16_t clockdivision; /*!< clock division value */ + uint32_t period; /*!< period value */ + uint8_t repetitioncounter; /*!< the counter repetition value */ +}timer_parameter_struct; + +/* break parameter struct definitions*/ +typedef struct +{ + uint16_t runoffstate; /*!< run mode off-state */ + uint16_t ideloffstate; /*!< idle mode off-state */ + uint16_t deadtime; /*!< dead time */ + uint16_t breakpolarity; /*!< break polarity */ + uint16_t outputautostate; /*!< output automatic enable */ + uint16_t protectmode; /*!< complementary register protect control */ + uint16_t breakstate; /*!< break enable */ +}timer_break_parameter_struct; + +/* channel output parameter struct definitions */ +typedef struct +{ + uint16_t outputstate; /*!< channel output state */ + uint16_t outputnstate; /*!< channel complementary output state */ + uint16_t ocpolarity; /*!< channel output polarity */ + uint16_t ocnpolarity; /*!< channel complementary output polarity */ + uint16_t ocidlestate; /*!< idle state of channel output */ + uint16_t ocnidlestate; /*!< idle state of channel complementary output */ +}timer_oc_parameter_struct; + +/* channel input parameter struct definitions */ +typedef struct +{ + uint16_t icpolarity; /*!< channel input polarity */ + uint16_t icselection; /*!< channel input mode selection */ + uint16_t icprescaler; /*!< channel input capture prescaler */ + uint16_t icfilter; /*!< channel input capture filter control */ +}timer_ic_parameter_struct; + +/* TIMER interrupt enable or disable */ +#define TIMER_INT_UP TIMER_DMAINTEN_UPIE /*!< update interrupt */ +#define TIMER_INT_CH0 TIMER_DMAINTEN_CH0IE /*!< channel 0 interrupt */ +#define TIMER_INT_CH1 TIMER_DMAINTEN_CH1IE /*!< channel 1 interrupt */ +#define TIMER_INT_CH2 TIMER_DMAINTEN_CH2IE /*!< channel 2 interrupt */ +#define TIMER_INT_CH3 TIMER_DMAINTEN_CH3IE /*!< channel 3 interrupt */ +#define TIMER_INT_CMT TIMER_DMAINTEN_CMTIE /*!< channel commutation interrupt flag */ +#define TIMER_INT_TRG TIMER_DMAINTEN_TRGIE /*!< trigger interrupt */ +#define TIMER_INT_BRK TIMER_DMAINTEN_BRKIE /*!< break interrupt */ + +/* TIMER flag */ +#define TIMER_FLAG_UP TIMER_INTF_UPIF /*!< update flag */ +#define TIMER_FLAG_CH0 TIMER_INTF_CH0IF /*!< channel 0 flag */ +#define TIMER_FLAG_CH1 TIMER_INTF_CH1IF /*!< channel 1 flag */ +#define TIMER_FLAG_CH2 TIMER_INTF_CH2IF /*!< channel 2 flag */ +#define TIMER_FLAG_CH3 TIMER_INTF_CH3IF /*!< channel 3 flag */ +#define TIMER_FLAG_CMT TIMER_INTF_CMTIF /*!< channel commutation flag */ +#define TIMER_FLAG_TRG TIMER_INTF_TRGIF /*!< trigger flag */ +#define TIMER_FLAG_BRK TIMER_INTF_BRKIF /*!< break flag */ +#define TIMER_FLAG_CH0O TIMER_INTF_CH0OF /*!< channel 0 overcapture flag */ +#define TIMER_FLAG_CH1O TIMER_INTF_CH1OF /*!< channel 1 overcapture flag */ +#define TIMER_FLAG_CH2O TIMER_INTF_CH2OF /*!< channel 2 overcapture flag */ +#define TIMER_FLAG_CH3O TIMER_INTF_CH3OF /*!< channel 3 overcapture flag */ + +/* TIMER interrupt flag */ +#define TIMER_INT_FLAG_UP TIMER_INTF_UPIF /*!< update interrupt flag */ +#define TIMER_INT_FLAG_CH0 TIMER_INTF_CH0IF /*!< channel 0 interrupt flag */ +#define TIMER_INT_FLAG_CH1 TIMER_INTF_CH1IF /*!< channel 1 interrupt flag */ +#define TIMER_INT_FLAG_CH2 TIMER_INTF_CH2IF /*!< channel 2 interrupt flag */ +#define TIMER_INT_FLAG_CH3 TIMER_INTF_CH3IF /*!< channel 3 interrupt flag */ +#define TIMER_INT_FLAG_CMT TIMER_INTF_CMTIF /*!< channel commutation interrupt flag */ +#define TIMER_INT_FLAG_TRG TIMER_INTF_TRGIF /*!< trigger interrupt flag */ +#define TIMER_INT_FLAG_BRK TIMER_INTF_BRKIF + + + +/* TIMER DMA source enable */ +#define TIMER_DMA_UPD ((uint16_t)TIMER_DMAINTEN_UPDEN) /*!< update DMA enable */ +#define TIMER_DMA_CH0D ((uint16_t)TIMER_DMAINTEN_CH0DEN) /*!< channel 0 DMA enable */ +#define TIMER_DMA_CH1D ((uint16_t)TIMER_DMAINTEN_CH1DEN) /*!< channel 1 DMA enable */ +#define TIMER_DMA_CH2D ((uint16_t)TIMER_DMAINTEN_CH2DEN) /*!< channel 2 DMA enable */ +#define TIMER_DMA_CH3D ((uint16_t)TIMER_DMAINTEN_CH3DEN) /*!< channel 3 DMA enable */ +#define TIMER_DMA_CMTD ((uint16_t)TIMER_DMAINTEN_CMTDEN) /*!< commutation DMA request enable */ +#define TIMER_DMA_TRGD ((uint16_t)TIMER_DMAINTEN_TRGDEN) /*!< trigger DMA enable */ + +/* channel DMA request source selection */ +#define TIMER_DMAREQUEST_UPDATEEVENT ((uint8_t)0x00U) /*!< DMA request of channel y is sent when update event occurs */ +#define TIMER_DMAREQUEST_CHANNELEVENT ((uint8_t)0x01U) /*!< DMA request of channel y is sent when channel y event occurs */ + +/* DMA access base address */ +#define DMACFG_DMATA(regval) (BITS(0, 4) & ((uint32_t)(regval) << 0U)) +#define TIMER_DMACFG_DMATA_CTL0 DMACFG_DMATA(0) /*!< DMA transfer address is TIMER_CTL0 */ +#define TIMER_DMACFG_DMATA_CTL1 DMACFG_DMATA(1) /*!< DMA transfer address is TIMER_CTL1 */ +#define TIMER_DMACFG_DMATA_SMCFG DMACFG_DMATA(2) /*!< DMA transfer address is TIMER_SMCFG */ +#define TIMER_DMACFG_DMATA_DMAINTEN DMACFG_DMATA(3) /*!< DMA transfer address is TIMER_DMAINTEN */ +#define TIMER_DMACFG_DMATA_INTF DMACFG_DMATA(4) /*!< DMA transfer address is TIMER_INTF */ +#define TIMER_DMACFG_DMATA_SWEVG DMACFG_DMATA(5) /*!< DMA transfer address is TIMER_SWEVG */ +#define TIMER_DMACFG_DMATA_CHCTL0 DMACFG_DMATA(6) /*!< DMA transfer address is TIMER_CHCTL0 */ +#define TIMER_DMACFG_DMATA_CHCTL1 DMACFG_DMATA(7) /*!< DMA transfer address is TIMER_CHCTL1 */ +#define TIMER_DMACFG_DMATA_CHCTL2 DMACFG_DMATA(8) /*!< DMA transfer address is TIMER_CHCTL2 */ +#define TIMER_DMACFG_DMATA_CNT DMACFG_DMATA(9) /*!< DMA transfer address is TIMER_CNT */ +#define TIMER_DMACFG_DMATA_PSC DMACFG_DMATA(10) /*!< DMA transfer address is TIMER_PSC */ +#define TIMER_DMACFG_DMATA_CAR DMACFG_DMATA(11) /*!< DMA transfer address is TIMER_CAR */ +#define TIMER_DMACFG_DMATA_CREP DMACFG_DMATA(12) /*!< DMA transfer address is TIMER_CREP */ +#define TIMER_DMACFG_DMATA_CH0CV DMACFG_DMATA(13) /*!< DMA transfer address is TIMER_CH0CV */ +#define TIMER_DMACFG_DMATA_CH1CV DMACFG_DMATA(14) /*!< DMA transfer address is TIMER_CH1CV */ +#define TIMER_DMACFG_DMATA_CH2CV DMACFG_DMATA(15) /*!< DMA transfer address is TIMER_CH2CV */ +#define TIMER_DMACFG_DMATA_CH3CV DMACFG_DMATA(16) /*!< DMA transfer address is TIMER_CH3CV */ +#define TIMER_DMACFG_DMATA_CCHP DMACFG_DMATA(17) /*!< DMA transfer address is TIMER_CCHP */ +#define TIMER_DMACFG_DMATA_DMACFG DMACFG_DMATA(18) /*!< DMA transfer address is TIMER_DMACFG */ +#define TIMER_DMACFG_DMATA_DMATB DMACFG_DMATA(19) /*!< DMA transfer address is TIMER_DMATB */ + +/* DMA access burst length */ +#define DMACFG_DMATC(regval) (BITS(8, 12) & ((uint32_t)(regval) << 8U)) +#define TIMER_DMACFG_DMATC_1TRANSFER DMACFG_DMATC(0) /*!< DMA transfer 1 time */ +#define TIMER_DMACFG_DMATC_2TRANSFER DMACFG_DMATC(1) /*!< DMA transfer 2 times */ +#define TIMER_DMACFG_DMATC_3TRANSFER DMACFG_DMATC(2) /*!< DMA transfer 3 times */ +#define TIMER_DMACFG_DMATC_4TRANSFER DMACFG_DMATC(3) /*!< DMA transfer 4 times */ +#define TIMER_DMACFG_DMATC_5TRANSFER DMACFG_DMATC(4) /*!< DMA transfer 5 times */ +#define TIMER_DMACFG_DMATC_6TRANSFER DMACFG_DMATC(5) /*!< DMA transfer 6 times */ +#define TIMER_DMACFG_DMATC_7TRANSFER DMACFG_DMATC(6) /*!< DMA transfer 7 times */ +#define TIMER_DMACFG_DMATC_8TRANSFER DMACFG_DMATC(7) /*!< DMA transfer 8 times */ +#define TIMER_DMACFG_DMATC_9TRANSFER DMACFG_DMATC(8) /*!< DMA transfer 9 times */ +#define TIMER_DMACFG_DMATC_10TRANSFER DMACFG_DMATC(9) /*!< DMA transfer 10 times */ +#define TIMER_DMACFG_DMATC_11TRANSFER DMACFG_DMATC(10) /*!< DMA transfer 11 times */ +#define TIMER_DMACFG_DMATC_12TRANSFER DMACFG_DMATC(11) /*!< DMA transfer 12 times */ +#define TIMER_DMACFG_DMATC_13TRANSFER DMACFG_DMATC(12) /*!< DMA transfer 13 times */ +#define TIMER_DMACFG_DMATC_14TRANSFER DMACFG_DMATC(13) /*!< DMA transfer 14 times */ +#define TIMER_DMACFG_DMATC_15TRANSFER DMACFG_DMATC(14) /*!< DMA transfer 15 times */ +#define TIMER_DMACFG_DMATC_16TRANSFER DMACFG_DMATC(15) /*!< DMA transfer 16 times */ +#define TIMER_DMACFG_DMATC_17TRANSFER DMACFG_DMATC(16) /*!< DMA transfer 17 times */ +#define TIMER_DMACFG_DMATC_18TRANSFER DMACFG_DMATC(17) /*!< DMA transfer 18 times */ + +/* TIMER software event generation source */ +#define TIMER_EVENT_SRC_UPG ((uint16_t)0x0001U) /*!< update event generation */ +#define TIMER_EVENT_SRC_CH0G ((uint16_t)0x0002U) /*!< channel 0 capture or compare event generation */ +#define TIMER_EVENT_SRC_CH1G ((uint16_t)0x0004U) /*!< channel 1 capture or compare event generation */ +#define TIMER_EVENT_SRC_CH2G ((uint16_t)0x0008U) /*!< channel 2 capture or compare event generation */ +#define TIMER_EVENT_SRC_CH3G ((uint16_t)0x0010U) /*!< channel 3 capture or compare event generation */ +#define TIMER_EVENT_SRC_CMTG ((uint16_t)0x0020U) /*!< channel commutation event generation */ +#define TIMER_EVENT_SRC_TRGG ((uint16_t)0x0040U) /*!< trigger event generation */ +#define TIMER_EVENT_SRC_BRKG ((uint16_t)0x0080U) /*!< break event generation */ + +/* center-aligned mode selection */ +#define CTL0_CAM(regval) ((uint16_t)(BITS(5, 6) & ((uint32_t)(regval) << 5U))) +#define TIMER_COUNTER_EDGE CTL0_CAM(0) /*!< edge-aligned mode */ +#define TIMER_COUNTER_CENTER_DOWN CTL0_CAM(1) /*!< center-aligned and counting down assert mode */ +#define TIMER_COUNTER_CENTER_UP CTL0_CAM(2) /*!< center-aligned and counting up assert mode */ +#define TIMER_COUNTER_CENTER_BOTH CTL0_CAM(3) /*!< center-aligned and counting up/down assert mode */ + +/* TIMER prescaler reload mode */ +#define TIMER_PSC_RELOAD_NOW ((uint32_t)0x00000000U) /*!< the prescaler is loaded right now */ +#define TIMER_PSC_RELOAD_UPDATE ((uint32_t)0x00000001U) /*!< the prescaler is loaded at the next update event */ + +/* count direction */ +#define TIMER_COUNTER_UP ((uint16_t)0x0000U) /*!< counter up direction */ +#define TIMER_COUNTER_DOWN ((uint16_t)TIMER_CTL0_DIR) /*!< counter down direction */ + +/* specify division ratio between TIMER clock and dead-time and sampling clock */ +#define CTL0_CKDIV(regval) ((uint16_t)(BITS(8, 9) & ((uint32_t)(regval) << 8U))) +#define TIMER_CKDIV_DIV1 CTL0_CKDIV(0) /*!< clock division value is 1,fDTS=fTIMER_CK */ +#define TIMER_CKDIV_DIV2 CTL0_CKDIV(1) /*!< clock division value is 2,fDTS= fTIMER_CK/2 */ +#define TIMER_CKDIV_DIV4 CTL0_CKDIV(2) /*!< clock division value is 4, fDTS= fTIMER_CK/4 */ + +/* single pulse mode */ +#define TIMER_SP_MODE_SINGLE ((uint32_t)0x00000000U) /*!< single pulse mode */ +#define TIMER_SP_MODE_REPETITIVE ((uint32_t)0x00000001U) /*!< repetitive pulse mode */ + +/* update source */ +#define TIMER_UPDATE_SRC_REGULAR ((uint32_t)0x00000000U) /*!< update generate only by counter overflow/underflow */ +#define TIMER_UPDATE_SRC_GLOBAL ((uint32_t)0x00000001U) /*!< update generate by setting of UPG bit or the counter overflow/underflow,or the slave mode controller trigger */ + +/* run mode off-state configure */ +#define TIMER_ROS_STATE_ENABLE ((uint16_t)TIMER_CCHP_ROS) /*!< when POEN bit is set, the channel output signals (CHx_O/CHx_ON) are enabled, with relationship to CHxEN/CHxNEN bits */ +#define TIMER_ROS_STATE_DISABLE ((uint16_t)0x0000U) /*!< when POEN bit is set, the channel output signals (CHx_O/CHx_ON) are disabled */ + +/* idle mode off-state configure */ +#define TIMER_IOS_STATE_ENABLE ((uint16_t)TIMER_CCHP_IOS) /*!< when POEN bit is reset, the channel output signals (CHx_O/CHx_ON) are enabled, with relationship to CHxEN/CHxNEN bits */ +#define TIMER_IOS_STATE_DISABLE ((uint16_t)0x0000U) /*!< when POEN bit is reset, the channel output signals (CHx_O/CHx_ON) are disabled */ + +/* break input polarity */ +#define TIMER_BREAK_POLARITY_LOW ((uint16_t)0x0000U) /*!< break input polarity is low */ +#define TIMER_BREAK_POLARITY_HIGH ((uint16_t)TIMER_CCHP_BRKP) /*!< break input polarity is high */ + +/* output automatic enable */ +#define TIMER_OUTAUTO_ENABLE ((uint16_t)TIMER_CCHP_OAEN) /*!< output automatic enable */ +#define TIMER_OUTAUTO_DISABLE ((uint16_t)0x0000U) /*!< output automatic disable */ + +/* complementary register protect control */ +#define CCHP_PROT(regval) ((uint16_t)(BITS(8, 9) & ((uint32_t)(regval) << 8U))) +#define TIMER_CCHP_PROT_OFF CCHP_PROT(0) /*!< protect disable */ +#define TIMER_CCHP_PROT_0 CCHP_PROT(1) /*!< PROT mode 0 */ +#define TIMER_CCHP_PROT_1 CCHP_PROT(2) /*!< PROT mode 1 */ +#define TIMER_CCHP_PROT_2 CCHP_PROT(3) /*!< PROT mode 2 */ + +/* break input enable */ +#define TIMER_BREAK_ENABLE ((uint16_t)TIMER_CCHP_BRKEN) /*!< break input enable */ +#define TIMER_BREAK_DISABLE ((uint16_t)0x0000U) /*!< break input disable */ + +/* TIMER channel n(n=0,1,2,3) */ +#define TIMER_CH_0 ((uint16_t)0x0000U) /*!< TIMER channel 0(TIMERx(x=0..4,7..13)) */ +#define TIMER_CH_1 ((uint16_t)0x0001U) /*!< TIMER channel 1(TIMERx(x=0..4,7,8,11)) */ +#define TIMER_CH_2 ((uint16_t)0x0002U) /*!< TIMER channel 2(TIMERx(x=0..4,7)) */ +#define TIMER_CH_3 ((uint16_t)0x0003U) /*!< TIMER channel 3(TIMERx(x=0..4,7)) */ + +/* channel enable state*/ +#define TIMER_CCX_ENABLE ((uint32_t)0x00000001U) /*!< channel enable */ +#define TIMER_CCX_DISABLE ((uint32_t)0x00000000U) /*!< channel disable */ + +/* channel complementary output enable state*/ +#define TIMER_CCXN_ENABLE ((uint16_t)0x0004U) /*!< channel complementary enable */ +#define TIMER_CCXN_DISABLE ((uint16_t)0x0000U) /*!< channel complementary disable */ + +/* channel output polarity */ +#define TIMER_OC_POLARITY_HIGH ((uint16_t)0x0000U) /*!< channel output polarity is high */ +#define TIMER_OC_POLARITY_LOW ((uint16_t)0x0002U) /*!< channel output polarity is low */ + +/* channel complementary output polarity */ +#define TIMER_OCN_POLARITY_HIGH ((uint16_t)0x0000U) /*!< channel complementary output polarity is high */ +#define TIMER_OCN_POLARITY_LOW ((uint16_t)0x0008U) /*!< channel complementary output polarity is low */ + +/* idle state of channel output */ +#define TIMER_OC_IDLE_STATE_HIGH ((uint16_t)0x0100) /*!< idle state of channel output is high */ +#define TIMER_OC_IDLE_STATE_LOW ((uint16_t)0x0000) /*!< idle state of channel output is low */ + +/* idle state of channel complementary output */ +#define TIMER_OCN_IDLE_STATE_HIGH ((uint16_t)0x0200U) /*!< idle state of channel complementary output is high */ +#define TIMER_OCN_IDLE_STATE_LOW ((uint16_t)0x0000U) /*!< idle state of channel complementary output is low */ + +/* channel output compare mode */ +#define TIMER_OC_MODE_TIMING ((uint16_t)0x0000U) /*!< timing mode */ +#define TIMER_OC_MODE_ACTIVE ((uint16_t)0x0010U) /*!< active mode */ +#define TIMER_OC_MODE_INACTIVE ((uint16_t)0x0020U) /*!< inactive mode */ +#define TIMER_OC_MODE_TOGGLE ((uint16_t)0x0030U) /*!< toggle mode */ +#define TIMER_OC_MODE_LOW ((uint16_t)0x0040U) /*!< force low mode */ +#define TIMER_OC_MODE_HIGH ((uint16_t)0x0050U) /*!< force high mode */ +#define TIMER_OC_MODE_PWM0 ((uint16_t)0x0060U) /*!< PWM0 mode */ +#define TIMER_OC_MODE_PWM1 ((uint16_t)0x0070U) /*!< PWM1 mode*/ + +/* channel output compare shadow enable */ +#define TIMER_OC_SHADOW_ENABLE ((uint16_t)0x0008U) /*!< channel output shadow state enable */ +#define TIMER_OC_SHADOW_DISABLE ((uint16_t)0x0000U) /*!< channel output shadow state disable */ + +/* channel output compare fast enable */ +#define TIMER_OC_FAST_ENABLE ((uint16_t)0x0004) /*!< channel output fast function enable */ +#define TIMER_OC_FAST_DISABLE ((uint16_t)0x0000) /*!< channel output fast function disable */ + +/* channel output compare clear enable */ +#define TIMER_OC_CLEAR_ENABLE ((uint16_t)0x0080U) /*!< channel output clear function enable */ +#define TIMER_OC_CLEAR_DISABLE ((uint16_t)0x0000U) /*!< channel output clear function disable */ + +/* channel control shadow register update control */ +#define TIMER_UPDATECTL_CCU ((uint32_t)0x00000000U) /*!< the shadow registers are updated when CMTG bit is set */ +#define TIMER_UPDATECTL_CCUTRI ((uint32_t)0x00000001U) /*!< the shadow registers update by when CMTG bit is set or an rising edge of TRGI occurs */ + +/* channel input capture polarity */ +#define TIMER_IC_POLARITY_RISING ((uint16_t)0x0000U) /*!< input capture rising edge */ +#define TIMER_IC_POLARITY_FALLING ((uint16_t)0x0002U) /*!< input capture falling edge */ +#define TIMER_IC_POLARITY_BOTH_EDGE ((uint16_t)0x000AU) /*!< input capture both edge */ + +/* TIMER input capture selection */ +#define TIMER_IC_SELECTION_DIRECTTI ((uint16_t)0x0001U) /*!< channel y is configured as input and icy is mapped on CIy */ +#define TIMER_IC_SELECTION_INDIRECTTI ((uint16_t)0x0002U) /*!< channel y is configured as input and icy is mapped on opposite input */ +#define TIMER_IC_SELECTION_ITS ((uint16_t)0x0003U) /*!< channel y is configured as input and icy is mapped on ITS */ + +/* channel input capture prescaler */ +#define TIMER_IC_PSC_DIV1 ((uint16_t)0x0000U) /*!< no prescaler */ +#define TIMER_IC_PSC_DIV2 ((uint16_t)0x0004U) /*!< divided by 2 */ +#define TIMER_IC_PSC_DIV4 ((uint16_t)0x0008U) /*!< divided by 4*/ +#define TIMER_IC_PSC_DIV8 ((uint16_t)0x000CU) /*!< divided by 8 */ + +/* trigger selection */ +#define SMCFG_TRGSEL(regval) (BITS(4, 6) & ((uint32_t)(regval) << 4U)) +#define TIMER_SMCFG_TRGSEL_ITI0 SMCFG_TRGSEL(0) /*!< internal trigger 0 */ +#define TIMER_SMCFG_TRGSEL_ITI1 SMCFG_TRGSEL(1) /*!< internal trigger 1 */ +#define TIMER_SMCFG_TRGSEL_ITI2 SMCFG_TRGSEL(2) /*!< internal trigger 2 */ +#define TIMER_SMCFG_TRGSEL_ITI3 SMCFG_TRGSEL(3) /*!< internal trigger 3 */ +#define TIMER_SMCFG_TRGSEL_CI0F_ED SMCFG_TRGSEL(4) /*!< TI0 Edge Detector */ +#define TIMER_SMCFG_TRGSEL_CI0FE0 SMCFG_TRGSEL(5) /*!< filtered TIMER input 0 */ +#define TIMER_SMCFG_TRGSEL_CI1FE1 SMCFG_TRGSEL(6) /*!< filtered TIMER input 1 */ +#define TIMER_SMCFG_TRGSEL_ETIFP SMCFG_TRGSEL(7) /*!< external trigger */ + +/* master mode control */ +#define CTL1_MMC(regval) (BITS(4, 6) & ((uint32_t)(regval) << 4U)) +#define TIMER_TRI_OUT_SRC_RESET CTL1_MMC(0) /*!< the UPG bit as trigger output */ +#define TIMER_TRI_OUT_SRC_ENABLE CTL1_MMC(1) /*!< the counter enable signal TIMER_CTL0_CEN as trigger output */ +#define TIMER_TRI_OUT_SRC_UPDATE CTL1_MMC(2) /*!< update event as trigger output */ +#define TIMER_TRI_OUT_SRC_CH0 CTL1_MMC(3) /*!< a capture or a compare match occurred in channal0 as trigger output TRGO */ +#define TIMER_TRI_OUT_SRC_O0CPRE CTL1_MMC(4) /*!< O0CPRE as trigger output */ +#define TIMER_TRI_OUT_SRC_O1CPRE CTL1_MMC(5) /*!< O1CPRE as trigger output */ +#define TIMER_TRI_OUT_SRC_O2CPRE CTL1_MMC(6) /*!< O2CPRE as trigger output */ +#define TIMER_TRI_OUT_SRC_O3CPRE CTL1_MMC(7) /*!< O3CPRE as trigger output */ + +/* slave mode control */ +#define SMCFG_SMC(regval) (BITS(0, 2) & ((uint32_t)(regval) << 0U)) +#define TIMER_SLAVE_MODE_DISABLE SMCFG_SMC(0) /*!< slave mode disable */ +#define TIMER_ENCODER_MODE0 SMCFG_SMC(1) /*!< encoder mode 0 */ +#define TIMER_ENCODER_MODE1 SMCFG_SMC(2) /*!< encoder mode 1 */ +#define TIMER_ENCODER_MODE2 SMCFG_SMC(3) /*!< encoder mode 2 */ +#define TIMER_SLAVE_MODE_RESTART SMCFG_SMC(4) /*!< restart mode */ +#define TIMER_SLAVE_MODE_PAUSE SMCFG_SMC(5) /*!< pause mode */ +#define TIMER_SLAVE_MODE_EVENT SMCFG_SMC(6) /*!< event mode */ +#define TIMER_SLAVE_MODE_EXTERNAL0 SMCFG_SMC(7) /*!< external clock mode 0 */ + +/* master slave mode selection */ +#define TIMER_MASTER_SLAVE_MODE_ENABLE ((uint32_t)0x00000000U) /*!< master slave mode enable */ +#define TIMER_MASTER_SLAVE_MODE_DISABLE ((uint32_t)0x00000001U) /*!< master slave mode disable */ + +/* external trigger prescaler */ +#define SMCFG_ETPSC(regval) (BITS(12, 13) & ((uint32_t)(regval) << 12U)) +#define TIMER_EXT_TRI_PSC_OFF SMCFG_ETPSC(0) /*!< no divided */ +#define TIMER_EXT_TRI_PSC_DIV2 SMCFG_ETPSC(1) /*!< divided by 2 */ +#define TIMER_EXT_TRI_PSC_DIV4 SMCFG_ETPSC(2) /*!< divided by 4 */ +#define TIMER_EXT_TRI_PSC_DIV8 SMCFG_ETPSC(3) /*!< divided by 8 */ + +/* external trigger polarity */ +#define TIMER_ETP_FALLING TIMER_SMCFG_ETP /*!< active low or falling edge active */ +#define TIMER_ETP_RISING ((uint32_t)0x00000000U) /*!< active high or rising edge active */ + +/* channel 0 trigger input selection */ +#define TIMER_HALLINTERFACE_ENABLE ((uint32_t)0x00000000U) /*!< TIMER hall sensor mode enable */ +#define TIMER_HALLINTERFACE_DISABLE ((uint32_t)0x00000001U) /*!< TIMER hall sensor mode disable */ + +/* timer1 internal trigger input1 remap */ +#define TIMER1_IRMP(regval) (BITS(10, 11) & ((uint32_t)(regval) << 10U)) +#define TIMER1_ITI1_RMP_TIMER7_TRGO TIMER1_IRMP(0) /*!< timer1 internal trigger input 1 remap to TIMER7_TRGO */ +#define TIMER1_ITI1_RMP_ETHERNET_PTP TIMER1_IRMP(1) /*!< timer1 internal trigger input 1 remap to ethernet PTP */ +#define TIMER1_ITI1_RMP_USB_FS_SOF TIMER1_IRMP(2) /*!< timer1 internal trigger input 1 remap to USB FS SOF */ +#define TIMER1_ITI1_RMP_USB_HS_SOF TIMER1_IRMP(3) /*!< timer1 internal trigger input 1 remap to USB HS SOF */ + +/* timer4 channel 3 input remap */ +#define TIMER4_IRMP(regval) (BITS(6, 7) & ((uint32_t)(regval) << 6U)) +#define TIMER4_CI3_RMP_GPIO TIMER4_IRMP(0) /*!< timer4 channel 3 input remap to GPIO pin */ +#define TIMER4_CI3_RMP_IRC32K TIMER4_IRMP(1) /*!< timer4 channel 3 input remap to IRC32K */ +#define TIMER4_CI3_RMP_LXTAL TIMER4_IRMP(2) /*!< timer4 channel 3 input remap to LXTAL */ +#define TIMER4_CI3_RMP_RTC_WAKEUP_INT TIMER4_IRMP(3) /*!< timer4 channel 3 input remap to RTC wakeup interrupt */ + +/* timer10 internal trigger input1 remap */ +#define TIMER10_IRMP(regval) (BITS(0, 1) & ((uint32_t)(regval) << 0U)) +#define TIMER10_ITI1_RMP_GPIO TIMER10_IRMP(0) /*!< timer10 internal trigger input1 remap based on GPIO setting */ +#define TIMER10_ITI1_RMP_RTC_HXTAL_DIV TIMER10_IRMP(2) /*!< timer10 internal trigger input1 remap HXTAL _DIV(clock used for RTC which is HXTAL clock divided by RTCDIV bits in RCU_CFG0 register) */ + +/* timerx(x=0,1,2,13,14,15,16) write cc register selection */ +#define TIMER_CHVSEL_ENABLE ((uint16_t)0x0002U) /*!< write CHxVAL register selection enable */ +#define TIMER_CHVSEL_DISABLE ((uint16_t)0x0000U) /*!< write CHxVAL register selection disable */ + +/* the output value selection */ +#define TIMER_OUTSEL_ENABLE ((uint16_t)0x0001U) /*!< output value selection enable */ +#define TIMER_OUTSEL_DISABLE ((uint16_t)0x0000U) /*!< output value selection disable */ + +/* function declarations */ +/* TIMER timebase*/ +/* deinit a TIMER */ +void timer_deinit(uint32_t timer_periph); +/* initialize TIMER init parameter struct */ +void timer_struct_para_init(timer_parameter_struct* initpara); +/* initialize TIMER counter */ +void timer_init(uint32_t timer_periph, timer_parameter_struct* initpara); +/* enable a TIMER */ +void timer_enable(uint32_t timer_periph); +/* disable a TIMER */ +void timer_disable(uint32_t timer_periph); +/* enable the auto reload shadow function */ +void timer_auto_reload_shadow_enable(uint32_t timer_periph); +/* disable the auto reload shadow function */ +void timer_auto_reload_shadow_disable(uint32_t timer_periph); +/* enable the update event */ +void timer_update_event_enable(uint32_t timer_periph); +/* disable the update event */ +void timer_update_event_disable(uint32_t timer_periph); +/* set TIMER counter alignment mode */ +void timer_counter_alignment(uint32_t timer_periph, uint16_t aligned); +/* set TIMER counter up direction */ +void timer_counter_up_direction(uint32_t timer_periph); +/* set TIMER counter down direction */ +void timer_counter_down_direction(uint32_t timer_periph); +/* configure TIMER prescaler */ +void timer_prescaler_config(uint32_t timer_periph, uint16_t prescaler, uint8_t pscreload); +/* configure TIMER repetition register value */ +void timer_repetition_value_config(uint32_t timer_periph, uint16_t repetition); +/* configure TIMER autoreload register value */ +void timer_autoreload_value_config(uint32_t timer_periph,uint32_t autoreload); +/* configure TIMER counter register value */ +void timer_counter_value_config(uint32_t timer_periph , uint32_t counter); +/* read TIMER counter value */ +uint32_t timer_counter_read(uint32_t timer_periph); +/* read TIMER prescaler value */ +uint16_t timer_prescaler_read(uint32_t timer_periph); +/* configure TIMER single pulse mode */ +void timer_single_pulse_mode_config(uint32_t timer_periph, uint32_t spmode); +/* configure TIMER update source */ +void timer_update_source_config(uint32_t timer_periph, uint32_t update); + +/* TIMER interrupt and flag*/ +/* enable the TIMER interrupt */ +void timer_interrupt_enable(uint32_t timer_periph, uint32_t interrupt); +/* disable the TIMER interrupt */ +void timer_interrupt_disable(uint32_t timer_periph, uint32_t interrupt); +/* get timer interrupt flag */ +FlagStatus timer_interrupt_flag_get(uint32_t timer_periph, uint32_t interrupt); +/* clear TIMER interrupt flag */ +void timer_interrupt_flag_clear(uint32_t timer_periph, uint32_t interrupt); +/* get TIMER flags */ +FlagStatus timer_flag_get(uint32_t timer_periph, uint32_t flag); +/* clear TIMER flags */ +void timer_flag_clear(uint32_t timer_periph, uint32_t flag); + +/* timer DMA and event*/ +/* enable the TIMER DMA */ +void timer_dma_enable(uint32_t timer_periph, uint16_t dma); +/* disable the TIMER DMA */ +void timer_dma_disable(uint32_t timer_periph, uint16_t dma); +/* channel DMA request source selection */ +void timer_channel_dma_request_source_select(uint32_t timer_periph, uint8_t dma_request); +/* configure the TIMER DMA transfer */ +void timer_dma_transfer_config(uint32_t timer_periph,uint32_t dma_baseaddr, uint32_t dma_lenth); +/* software generate events */ +void timer_event_software_generate(uint32_t timer_periph, uint16_t event); + +/* TIMER channel complementary protection */ +/* initialize TIMER break parameter struct */ +void timer_break_struct_para_init(timer_break_parameter_struct* breakpara); +/* configure TIMER break function */ +void timer_break_config(uint32_t timer_periph, timer_break_parameter_struct* breakpara); +/* enable TIMER break function */ +void timer_break_enable(uint32_t timer_periph); +/* disable TIMER break function */ +void timer_break_disable(uint32_t timer_periph); +/* enable TIMER output automatic function */ +void timer_automatic_output_enable(uint32_t timer_periph); +/* disable TIMER output automatic function */ +void timer_automatic_output_disable(uint32_t timer_periph); +/* enable or disable TIMER primary output function */ +void timer_primary_output_config(uint32_t timer_periph, ControlStatus newvalue); +/* enable or disable channel capture/compare control shadow register */ +void timer_channel_control_shadow_config(uint32_t timer_periph, ControlStatus newvalue); +/* configure TIMER channel control shadow register update control */ +void timer_channel_control_shadow_update_config(uint32_t timer_periph, uint8_t ccuctl); + +/* TIMER channel output */ +/* initialize TIMER channel output parameter struct */ +void timer_channel_output_struct_para_init(timer_oc_parameter_struct* ocpara); +/* configure TIMER channel output function */ +void timer_channel_output_config(uint32_t timer_periph,uint16_t channel, timer_oc_parameter_struct* ocpara); +/* configure TIMER channel output compare mode */ +void timer_channel_output_mode_config(uint32_t timer_periph, uint16_t channel,uint16_t ocmode); +/* configure TIMER channel output pulse value */ +void timer_channel_output_pulse_value_config(uint32_t timer_periph, uint16_t channel, uint32_t pulse); +/* configure TIMER channel output shadow function */ +void timer_channel_output_shadow_config(uint32_t timer_periph, uint16_t channel, uint16_t ocshadow); +/* configure TIMER channel output fast function */ +void timer_channel_output_fast_config(uint32_t timer_periph, uint16_t channel, uint16_t ocfast); +/* configure TIMER channel output clear function */ +void timer_channel_output_clear_config(uint32_t timer_periph,uint16_t channel,uint16_t occlear); +/* configure TIMER channel output polarity */ +void timer_channel_output_polarity_config(uint32_t timer_periph, uint16_t channel, uint16_t ocpolarity); +/* configure TIMER channel complementary output polarity */ +void timer_channel_complementary_output_polarity_config(uint32_t timer_periph, uint16_t channel, uint16_t ocnpolarity); +/* configure TIMER channel enable state */ +void timer_channel_output_state_config(uint32_t timer_periph, uint16_t channel, uint32_t state); +/* configure TIMER channel complementary output enable state */ +void timer_channel_complementary_output_state_config(uint32_t timer_periph, uint16_t channel, uint16_t ocnstate); + +/* TIMER channel input */ +/* initialize TIMER channel input parameter struct */ +void timer_channel_input_struct_para_init(timer_ic_parameter_struct* icpara); +/* configure TIMER input capture parameter */ +void timer_input_capture_config(uint32_t timer_periph, uint16_t channel, timer_ic_parameter_struct* icpara); +/* configure TIMER channel input capture prescaler value */ +void timer_channel_input_capture_prescaler_config(uint32_t timer_periph, uint16_t channel, uint16_t prescaler); +/* read TIMER channel capture compare register value */ +uint32_t timer_channel_capture_value_register_read(uint32_t timer_periph, uint16_t channel); +/* configure TIMER input pwm capture function */ +void timer_input_pwm_capture_config(uint32_t timer_periph, uint16_t channel, timer_ic_parameter_struct* icpwm); +/* configure TIMER hall sensor mode */ +void timer_hall_mode_config(uint32_t timer_periph, uint32_t hallmode); + +/* TIMER master and slave */ +/* select TIMER input trigger source */ +void timer_input_trigger_source_select(uint32_t timer_periph, uint32_t intrigger); +/* select TIMER master mode output trigger source */ +void timer_master_output_trigger_source_select(uint32_t timer_periph, uint32_t outrigger); +/* select TIMER slave mode */ +void timer_slave_mode_select(uint32_t timer_periph,uint32_t slavemode); +/* configure TIMER master slave mode */ +void timer_master_slave_mode_config(uint32_t timer_periph, uint32_t masterslave); +/* configure TIMER external trigger input */ +void timer_external_trigger_config(uint32_t timer_periph, uint32_t extprescaler, uint32_t extpolarity, uint32_t extfilter); +/* configure TIMER quadrature decoder mode */ +void timer_quadrature_decoder_mode_config(uint32_t timer_periph, uint32_t decomode, uint16_t ic0polarity, uint16_t ic1polarity); +/* configure TIMER internal clock mode */ +void timer_internal_clock_config(uint32_t timer_periph); +/* configure TIMER the internal trigger as external clock input */ +void timer_internal_trigger_as_external_clock_config(uint32_t timer_periph, uint32_t intrigger); +/* configure TIMER the external trigger as external clock input */ +void timer_external_trigger_as_external_clock_config(uint32_t timer_periph, uint32_t extrigger, uint16_t extpolarity,uint32_t extfilter); +/* configure TIMER the external clock mode 0 */ +void timer_external_clock_mode0_config(uint32_t timer_periph, uint32_t extprescaler, uint32_t extpolarity, uint32_t extfilter); +/* configure TIMER the external clock mode 1 */ +void timer_external_clock_mode1_config(uint32_t timer_periph, uint32_t extprescaler, uint32_t extpolarity, uint32_t extfilter); +/* disable TIMER the external clock mode 1 */ +void timer_external_clock_mode1_disable(uint32_t timer_periph); +/* configure TIMER channel remap function */ +void timer_channel_remap_config(uint32_t timer_periph,uint32_t remap); + +/* TIMER configure */ +/* configure TIMER write CHxVAL register selection */ +void timer_write_chxval_register_config(uint32_t timer_periph, uint16_t ccsel); +/* configure TIMER output value selection */ +void timer_output_value_selection_config(uint32_t timer_periph, uint16_t outsel); + +#endif /* GD32F4XX_TIMER_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_tli.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_tli.h new file mode 100644 index 0000000000..bb56747f99 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_tli.h @@ -0,0 +1,376 @@ +/*! + \file gd32f4xx_tli.h + \brief definitions for the TLI + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_TLI_H +#define GD32F4XX_TLI_H + +#include "gd32f4xx.h" + +/* TLI definitions */ +#define TLI TLI_BASE /*!< TLI base address */ +/* TLI layer definitions */ +#define LAYER0 TLI_BASE /*!< TLI layer0 base address */ +#define LAYER1 (TLI_BASE+0x80) /*!< TLI layer1 base address */ + +/* registers definitions */ +#define TLI_SPSZ REG32(TLI + 0x08U) /*!< TLI synchronous pulse size register */ +#define TLI_BPSZ REG32(TLI + 0x0CU) /*!< TLI back-porch size register */ +#define TLI_ASZ REG32(TLI + 0x10U) /*!< TLI active size register */ +#define TLI_TSZ REG32(TLI + 0x14U) /*!< TLI total size register */ +#define TLI_CTL REG32(TLI + 0x18U) /*!< TLI control register */ +#define TLI_RL REG32(TLI + 0x24U) /*!< TLI reload Layer register */ +#define TLI_BGC REG32(TLI + 0x2CU) /*!< TLI background color register */ +#define TLI_INTEN REG32(TLI + 0x34U) /*!< TLI interrupt enable register */ +#define TLI_INTF REG32(TLI + 0x38U) /*!< TLI interrupt flag register */ +#define TLI_INTC REG32(TLI + 0x3CU) /*!< TLI interrupt flag clear register */ +#define TLI_LM REG32(TLI + 0x40U) /*!< TLI line mark register */ +#define TLI_CPPOS REG32(TLI + 0x44U) /*!< TLI current pixel position register */ +#define TLI_STAT REG32(TLI + 0x48U) /*!< TLI status register */ +#define TLI_LxCTL(layerx) REG32((layerx) + 0x84U) /*!< TLI layer x control register */ +#define TLI_LxHPOS(layerx) REG32((layerx) + 0x88U) /*!< TLI layer x horizontal position parameters register */ +#define TLI_LxVPOS(layerx) REG32((layerx) + 0x8CU) /*!< TLI layer x vertical position parameters register */ +#define TLI_LxCKEY(layerx) REG32((layerx) + 0x90U) /*!< TLI layer x color key register */ +#define TLI_LxPPF(layerx) REG32((layerx) + 0x94U) /*!< TLI layer x packeted pixel format register */ +#define TLI_LxSA(layerx) REG32((layerx) + 0x98U) /*!< TLI layer x specified alpha register */ +#define TLI_LxDC(layerx) REG32((layerx) + 0x9CU) /*!< TLI layer x default color register */ +#define TLI_LxBLEND(layerx) REG32((layerx) + 0xA0U) /*!< TLI layer x blending register */ +#define TLI_LxFBADDR(layerx) REG32((layerx) + 0xACU) /*!< TLI layer x frame base address register */ +#define TLI_LxFLLEN(layerx) REG32((layerx) + 0xB0U) /*!< TLI layer x frame line length register */ +#define TLI_LxFTLN(layerx) REG32((layerx) + 0xB4U) /*!< TLI layer x frame total line number register */ +#define TLI_LxLUT(layerx) REG32((layerx) + 0xC4U) /*!< TLI layer x look up table register */ + +/* bits definitions */ +/* TLI_SPSZ */ +#define TLI_SPSZ_VPSZ BITS(0,11) /*!< size of the vertical synchronous pulse */ +#define TLI_SPSZ_HPSZ BITS(16,27) /*!< size of the horizontal synchronous pulse */ + +/* TLI_BPSZ */ +#define TLI_BPSZ_VBPSZ BITS(0,11) /*!< size of the vertical back porch plus synchronous pulse */ +#define TLI_BPSZ_HBPSZ BITS(16,27) /*!< size of the horizontal back porch plus synchronous pulse */ + +/* TLI_ASZ */ +#define TLI_ASZ_VASZ BITS(0,11) /*!< size of the vertical active area width plus back porch and synchronous pulse */ +#define TLI_ASZ_HASZ BITS(16,27) /*!< size of the horizontal active area width plus back porch and synchronous pulse */ + +/* TLI_SPSZ */ +#define TLI_TSZ_VTSZ BITS(0,11) /*!< vertical total size of the display, including active area, back porch, synchronous pulse and front porch */ +#define TLI_TSZ_HTSZ BITS(16,27) /*!< horizontal total size of the display, including active area, back porch, synchronous pulse and front porch */ + +/* TLI_CTL */ +#define TLI_CTL_TLIEN BIT(0) /*!< TLI enable bit */ +#define TLI_CTL_BDB BITS(4,6) /*!< blue channel dither bits number */ +#define TLI_CTL_GDB BITS(8,10) /*!< green channel dither bits number */ +#define TLI_CTL_RDB BITS(12,14) /*!< red channel dither bits number */ +#define TLI_CTL_DFEN BIT(16) /*!< dither function enable */ +#define TLI_CTL_CLKPS BIT(28) /*!< pixel clock polarity selection */ +#define TLI_CTL_DEPS BIT(29) /*!< data enable polarity selection */ +#define TLI_CTL_VPPS BIT(30) /*!< vertical pulse polarity selection */ +#define TLI_CTL_HPPS BIT(31) /*!< horizontal pulse polarity selection */ + +/* TLI_RL */ +#define TLI_RL_RQR BIT(0) /*!< request reload */ +#define TLI_RL_FBR BIT(1) /*!< frame blank reload */ + +/* TLI_BGC */ +#define TLI_BGC_BVB BITS(0,7) /*!< background value blue */ +#define TLI_BGC_BVG BITS(8,15) /*!< background value green */ +#define TLI_BGC_BVR BITS(16,23) /*!< background value red */ + +/* TLI_INTEN */ +#define TLI_INTEN_LMIE BIT(0) /*!< line mark interrupt enable */ +#define TLI_INTEN_FEIE BIT(1) /*!< FIFO error interrupt enable */ +#define TLI_INTEN_TEIE BIT(2) /*!< transaction error interrupt enable */ +#define TLI_INTEN_LCRIE BIT(3) /*!< layer configuration reloaded interrupt enable */ + +/* TLI_INTF */ +#define TLI_INTF_LMF BIT(0) /*!< line mark flag */ +#define TLI_INTF_FEF BIT(1) /*!< FIFO error flag */ +#define TLI_INTF_TEF BIT(2) /*!< transaction error flag */ +#define TLI_INTF_LCRF BIT(3) /*!< layer configuration reloaded flag */ + +/* TLI_INTC */ +#define TLI_INTC_LMC BIT(0) /*!< line mark flag clear */ +#define TLI_INTC_FEC BIT(1) /*!< FIFO error flag clear */ +#define TLI_INTC_TEC BIT(2) /*!< transaction error flag clear */ +#define TLI_INTC_LCRC BIT(3) /*!< layer configuration reloaded flag clear */ + +/* TLI_LM */ +#define TLI_LM_LM BITS(0,10) /*!< line mark value */ + +/* TLI_CPPOS */ +#define TLI_CPPOS_VPOS BITS(0,15) /*!< vertical position */ +#define TLI_CPPOS_HPOS BITS(16,31) /*!< horizontal position */ + +/* TLI_STAT */ +#define TLI_STAT_VDE BIT(0) /*!< current VDE status */ +#define TLI_STAT_HDE BIT(1) /*!< current HDE status */ +#define TLI_STAT_VS BIT(2) /*!< current VS status of the TLI */ +#define TLI_STAT_HS BIT(3) /*!< current HS status of the TLI */ + +/* TLI_LxCTL */ +#define TLI_LxCTL_LEN BIT(0) /*!< layer enable */ +#define TLI_LxCTL_CKEYEN BIT(1) /*!< color keying enable */ +#define TLI_LxCTL_LUTEN BIT(4) /*!< LUT enable */ + +/* TLI_LxHPOS */ +#define TLI_LxHPOS_WLP BITS(0,11) /*!< window left position */ +#define TLI_LxHPOS_WRP BITS(16,27) /*!< window right position */ + +/* TLI_LxVPOS */ +#define TLI_LxVPOS_WTP BITS(0,11) /*!< window top position */ +#define TLI_LxVPOS_WBP BITS(16,27) /*!< window bottom position */ + +/* TLI_LxCKEY */ +#define TLI_LxCKEY_CKEYB BITS(0,7) /*!< color key blue */ +#define TLI_LxCKEY_CKEYG BITS(8,15) /*!< color key green */ +#define TLI_LxCKEY_CKEYR BITS(16,23) /*!< color key red */ + +/* TLI_LxPPF */ +#define TLI_LxPPF_PPF BITS(0,2) /*!< packeted pixel format */ + +/* TLI_LxSA */ +#define TLI_LxSA_SA BITS(0,7) /*!< specified alpha */ + +/* TLI_LxDC */ +#define TLI_LxDC_DCB BITS(0,7) /*!< the default color blue */ +#define TLI_LxDC_DCG BITS(8,15) /*!< the default color green */ +#define TLI_LxDC_DCR BITS(16,23) /*!< the default color red */ +#define TLI_LxDC_DCA BITS(24,31) /*!< the default color alpha */ + +/* TLI_LxBLEND */ +#define TLI_LxBLEND_ACF2 BITS(0,2) /*!< alpha calculation factor 2 of blending method */ +#define TLI_LxBLEND_ACF1 BITS(8,10) /*!< alpha calculation factor 1 of blending method */ + +/* TLI_LxFBADDR */ +#define TLI_LxFBADDR_FBADD BITS(0,31) /*!< frame buffer base address */ + +/* TLI_LxFLLEN */ +#define TLI_LxFLLEN_FLL BITS(0,13) /*!< frame line length */ +#define TLI_LxFLLEN_STDOFF BITS(16,29) /*!< frame buffer stride offset */ + +/* TLI_LxFTLN */ +#define TLI_LxFTLN_FTLN BITS(0,10) /*!< frame total line number */ + +/* TLI_LxLUT */ +#define TLI_LxLUT_TB BITS(0,7) /*!< blue channel of a LUT entry */ +#define TLI_LxLUT_TG BITS(8,15) /*!< green channel of a LUT entry */ +#define TLI_LxLUT_TR BITS(16,23) /*!< red channel of a LUT entry */ +#define TLI_LxLUT_TADD BITS(24,31) /*!< look up table write address */ + +/* constants definitions */ +/* TLI parameter struct definitions */ +typedef struct +{ + uint16_t synpsz_vpsz; /*!< size of the vertical synchronous pulse */ + uint16_t synpsz_hpsz; /*!< size of the horizontal synchronous pulse */ + uint16_t backpsz_vbpsz; /*!< size of the vertical back porch plus synchronous pulse */ + uint16_t backpsz_hbpsz; /*!< size of the horizontal back porch plus synchronous pulse */ + uint32_t activesz_vasz; /*!< size of the vertical active area width plus back porch and synchronous pulse */ + uint32_t activesz_hasz; /*!< size of the horizontal active area width plus back porch and synchronous pulse */ + uint32_t totalsz_vtsz; /*!< vertical total size of the display */ + uint32_t totalsz_htsz; /*!< horizontal total size of the display */ + uint32_t backcolor_red; /*!< background value red */ + uint32_t backcolor_green; /*!< background value green */ + uint32_t backcolor_blue; /*!< background value blue */ + uint32_t signalpolarity_hs; /*!< horizontal pulse polarity selection */ + uint32_t signalpolarity_vs; /*!< vertical pulse polarity selection */ + uint32_t signalpolarity_de; /*!< data enable polarity selection */ + uint32_t signalpolarity_pixelck; /*!< pixel clock polarity selection */ +}tli_parameter_struct; + +/* TLI layer parameter struct definitions */ +typedef struct +{ + uint16_t layer_window_rightpos; /*!< window right position */ + uint16_t layer_window_leftpos; /*!< window left position */ + uint16_t layer_window_bottompos; /*!< window bottom position */ + uint16_t layer_window_toppos; /*!< window top position */ + uint32_t layer_ppf; /*!< packeted pixel format */ + uint8_t layer_sa; /*!< specified alpha */ + uint8_t layer_default_alpha; /*!< the default color alpha */ + uint8_t layer_default_red; /*!< the default color red */ + uint8_t layer_default_green; /*!< the default color green */ + uint8_t layer_default_blue; /*!< the default color blue */ + uint32_t layer_acf1; /*!< alpha calculation factor 1 of blending method */ + uint32_t layer_acf2; /*!< alpha calculation factor 2 of blending method */ + uint32_t layer_frame_bufaddr; /*!< frame buffer base address */ + uint16_t layer_frame_buf_stride_offset; /*!< frame buffer stride offset */ + uint16_t layer_frame_line_length; /*!< frame line length */ + uint16_t layer_frame_total_line_number; /*!< frame total line number */ +}tli_layer_parameter_struct; + +/* TLI layer LUT parameter struct definitions */ +typedef struct +{ + uint32_t layer_table_addr; /*!< look up table write address */ + uint8_t layer_lut_channel_red; /*!< red channel of a LUT entry */ + uint8_t layer_lut_channel_green; /*!< green channel of a LUT entry */ + uint8_t layer_lut_channel_blue; /*!< blue channel of a LUT entry */ +}tli_layer_lut_parameter_struct; + +/* packeted pixel format */ +typedef enum +{ + LAYER_PPF_ARGB8888, /*!< layerx pixel format ARGB8888 */ + LAYER_PPF_RGB888, /*!< layerx pixel format RGB888 */ + LAYER_PPF_RGB565, /*!< layerx pixel format RGB565 */ + LAYER_PPF_ARGB1555, /*!< layerx pixel format ARGB1555 */ + LAYER_PPF_ARGB4444, /*!< layerx pixel format ARGB4444 */ + LAYER_PPF_L8, /*!< layerx pixel format L8 */ + LAYER_PPF_AL44, /*!< layerx pixel format AL44 */ + LAYER_PPF_AL88 /*!< layerx pixel format AL88 */ +}tli_layer_ppf_enum; + +/* TLI flags */ +#define TLI_FLAG_VDE TLI_STAT_VDE /*!< current VDE status */ +#define TLI_FLAG_HDE TLI_STAT_HDE /*!< current HDE status */ +#define TLI_FLAG_VS TLI_STAT_VS /*!< current VS status of the TLI */ +#define TLI_FLAG_HS TLI_STAT_HS /*!< current HS status of the TLI */ +#define TLI_FLAG_LM BIT(0) | BIT(31) /*!< line mark interrupt flag */ +#define TLI_FLAG_FE BIT(1) | BIT(31) /*!< FIFO error interrupt flag */ +#define TLI_FLAG_TE BIT(2) | BIT(31) /*!< transaction error interrupt flag */ +#define TLI_FLAG_LCR BIT(3) | BIT(31) /*!< layer configuration reloaded interrupt flag */ + +/* TLI interrupt enable or disable */ +#define TLI_INT_LM BIT(0) /*!< line mark interrupt */ +#define TLI_INT_FE BIT(1) /*!< FIFO error interrupt */ +#define TLI_INT_TE BIT(2) /*!< transaction error interrupt */ +#define TLI_INT_LCR BIT(3) /*!< layer configuration reloaded interrupt */ + +/* TLI interrupt flag */ +#define TLI_INT_FLAG_LM BIT(0) /*!< line mark interrupt flag */ +#define TLI_INT_FLAG_FE BIT(1) /*!< FIFO error interrupt flag */ +#define TLI_INT_FLAG_TE BIT(2) /*!< transaction error interrupt flag */ +#define TLI_INT_FLAG_LCR BIT(3) /*!< layer configuration reloaded interrupt flag */ + +/* layer reload configure */ +#define TLI_FRAME_BLANK_RELOAD_EN ((uint8_t)0x00U) /*!< the layer configuration will be reloaded at frame blank */ +#define TLI_REQUEST_RELOAD_EN ((uint8_t)0x01U) /*!< the layer configuration will be reloaded after this bit sets */ + +/* dither function */ +#define TLI_DITHER_DISABLE ((uint8_t)0x00U) /*!< dither function disable */ +#define TLI_DITHER_ENABLE ((uint8_t)0x01U) /*!< dither function enable */ + +/* horizontal pulse polarity selection */ +#define TLI_HSYN_ACTLIVE_LOW ((uint32_t)0x00000000U) /*!< horizontal synchronous pulse active low */ +#define TLI_HSYN_ACTLIVE_HIGHT TLI_CTL_HPPS /*!< horizontal synchronous pulse active high */ + +/* vertical pulse polarity selection */ +#define TLI_VSYN_ACTLIVE_LOW ((uint32_t)0x00000000U) /*!< vertical synchronous pulse active low */ +#define TLI_VSYN_ACTLIVE_HIGHT TLI_CTL_VPPS /*!< vertical synchronous pulse active high */ + +/* pixel clock polarity selection */ +#define TLI_PIXEL_CLOCK_TLI ((uint32_t)0x00000000U) /*!< pixel clock is TLI clock */ +#define TLI_PIXEL_CLOCK_INVERTEDTLI TLI_CTL_CLKPS /*!< pixel clock is inverted TLI clock */ + +/* data enable polarity selection */ +#define TLI_DE_ACTLIVE_LOW ((uint32_t)0x00000000U) /*!< data enable active low */ +#define TLI_DE_ACTLIVE_HIGHT TLI_CTL_DEPS /*!< data enable active high */ + +/* alpha calculation factor 1 of blending method */ +#define LxBLEND_ACF1(regval) (BITS(8,10) & ((uint32_t)(regval)<<8)) +#define LAYER_ACF1_SA LxBLEND_ACF1(4) /*!< normalization specified alpha */ +#define LAYER_ACF1_PASA LxBLEND_ACF1(6) /*!< normalization pixel alpha * normalization specified alpha */ + +/* alpha calculation factor 2 of blending method */ +#define LxBLEND_ACF2(regval) (BITS(0,2) & ((uint32_t)(regval))) +#define LAYER_ACF2_SA LxBLEND_ACF2(5) /*!< normalization specified alpha */ +#define LAYER_ACF2_PASA LxBLEND_ACF2(7) /*!< normalization pixel alpha * normalization specified alpha */ + +/* function declarations */ +/* initialization functions, TLI enable or disable, TLI reload mode configuration */ +/* deinitialize TLI registers */ +void tli_deinit(void); +/* initialize the parameters of TLI parameter structure with the default values, it is suggested + that call this function after a tli_parameter_struct structure is defined */ +void tli_struct_para_init(tli_parameter_struct *tli_struct); +/* initialize TLI */ +void tli_init(tli_parameter_struct *tli_struct); +/* configure TLI dither function */ +void tli_dither_config(uint8_t dither_stat); +/* enable TLI */ +void tli_enable(void); +/* disable TLI */ +void tli_disable(void); +/* configurate TLI reload mode */ +void tli_reload_config(uint8_t reload_mod); + +/* TLI layer configuration functions */ +/* initialize the parameters of TLI layer structure with the default values, it is suggested + that call this function after a tli_layer_parameter_struct structure is defined */ +void tli_layer_struct_para_init(tli_layer_parameter_struct *layer_struct); +/* initialize TLI layer */ +void tli_layer_init(uint32_t layerx,tli_layer_parameter_struct *layer_struct); +/* reconfigure window position */ +void tli_layer_window_offset_modify(uint32_t layerx,uint16_t offset_x,uint16_t offset_y); +/* initialize the parameters of TLI layer LUT structure with the default values, it is suggested + that call this function after a tli_layer_lut_parameter_struct structure is defined */ +void tli_lut_struct_para_init(tli_layer_lut_parameter_struct *lut_struct); +/* initialize TLI layer LUT */ +void tli_lut_init(uint32_t layerx,tli_layer_lut_parameter_struct *lut_struct); +/* initialize TLI layer color key */ +void tli_color_key_init(uint32_t layerx,uint8_t redkey,uint8_t greenkey,uint8_t bluekey); +/* enable TLI layer */ +void tli_layer_enable(uint32_t layerx); +/* disable TLI layer */ +void tli_layer_disable(uint32_t layerx); +/* enable TLI layer color keying */ +void tli_color_key_enable(uint32_t layerx); +/* disable TLI layer color keying */ +void tli_color_key_disable(uint32_t layerx); +/* enable TLI layer LUT */ +void tli_lut_enable(uint32_t layerx); +/* disable TLI layer LUT */ +void tli_lut_disable(uint32_t layerx); + +/* set line mark value */ +void tli_line_mark_set(uint16_t line_num); +/* get current displayed position */ +uint32_t tli_current_pos_get(void); + +/* flag and interrupt functions */ +/* enable TLI interrupt */ +void tli_interrupt_enable(uint32_t int_flag); +/* disable TLI interrupt */ +void tli_interrupt_disable(uint32_t int_flag); +/* get TLI interrupt flag */ +FlagStatus tli_interrupt_flag_get(uint32_t int_flag); +/* clear TLI interrupt flag */ +void tli_interrupt_flag_clear(uint32_t int_flag); +/* get TLI flag or state in TLI_INTF register or TLI_STAT register */ +FlagStatus tli_flag_get(uint32_t flag); + +#endif /* GD32F4XX_TLI_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_trng.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_trng.h new file mode 100644 index 0000000000..651e5bc063 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_trng.h @@ -0,0 +1,104 @@ +/*! + \file gd32f4xx_trng.h + \brief definitions for the TRNG + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_TRNG_H +#define GD32F4XX_TRNG_H + +#include "gd32f4xx.h" + +/* TRNG definitions */ +#define TRNG TRNG_BASE + +/* registers definitions */ +#define TRNG_CTL REG32(TRNG + 0x00U) /*!< control register */ +#define TRNG_STAT REG32(TRNG + 0x04U) /*!< status register */ +#define TRNG_DATA REG32(TRNG + 0x08U) /*!< data register */ + +/* bits definitions */ +/* TRNG_CTL */ +#define TRNG_CTL_TRNGEN BIT(2) /*!< TRNG enable bit */ +#define TRNG_CTL_IE BIT(3) /*!< interrupt enable bit */ + +/* TRNG_STAT */ +#define TRNG_STAT_DRDY BIT(0) /*!< random data ready status bit */ +#define TRNG_STAT_CECS BIT(1) /*!< clock error current status */ +#define TRNG_STAT_SECS BIT(2) /*!< seed error current status */ +#define TRNG_STAT_CEIF BIT(5) /*!< clock error interrupt flag */ +#define TRNG_STAT_SEIF BIT(6) /*!< seed error interrupt flag */ + +/* TRNG_DATA */ +#define TRNG_DATA_TRNDATA BITS(0,31) /*!< 32-Bit Random data */ + +/* constants definitions */ +/* trng status flag */ +typedef enum +{ + TRNG_FLAG_DRDY = TRNG_STAT_DRDY, /*!< random Data ready status */ + TRNG_FLAG_CECS = TRNG_STAT_CECS, /*!< clock error current status */ + TRNG_FLAG_SECS = TRNG_STAT_SECS /*!< seed error current status */ +}trng_flag_enum; + +/* trng inerrupt flag */ +typedef enum +{ + TRNG_INT_FLAG_CEIF = TRNG_STAT_CEIF, /*!< clock error interrupt flag */ + TRNG_INT_FLAG_SEIF = TRNG_STAT_SEIF /*!< seed error interrupt flag */ +}trng_int_flag_enum; + +/* function declarations */ +/* initialization functions */ +/* deinitialize the TRNG */ +void trng_deinit(void); +/* enable the TRNG interface */ +void trng_enable(void); +/* disable the TRNG interface */ +void trng_disable(void); +/* get the true random data */ +uint32_t trng_get_true_random_data(void); + +/* flag & interrupt functions */ +/* trng interrupt enable */ +void trng_interrupt_enable(void); +/* trng interrupt disable */ +void trng_interrupt_disable(void); +/* get the trng status flags */ +FlagStatus trng_flag_get(trng_flag_enum flag); +/* get the trng interrupt flags */ +FlagStatus trng_interrupt_flag_get(trng_int_flag_enum int_flag); +/* clear the trng interrupt flags */ +void trng_interrupt_flag_clear(trng_int_flag_enum int_flag); + +#endif /* GD32F4XX_TRNG_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_usart.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_usart.h new file mode 100644 index 0000000000..30927f42fe --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_usart.h @@ -0,0 +1,495 @@ +/*! + \file gd32f4xx_usart.h + \brief definitions for the USART + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_USART_H +#define GD32F4XX_USART_H + +#include "gd32f4xx.h" + +/* USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) definitions */ +#define USART1 USART_BASE /*!< USART1 base address */ +#define USART2 (USART_BASE+0x00000400U) /*!< USART2 base address */ +#define UART3 (USART_BASE+0x00000800U) /*!< UART3 base address */ +#define UART4 (USART_BASE+0x00000C00U) /*!< UART4 base address */ +#define UART6 (USART_BASE+0x00003400U) /*!< UART6 base address */ +#define UART7 (USART_BASE+0x00003800U) /*!< UART7 base address */ +#define USART0 (USART_BASE+0x0000CC00U) /*!< USART0 base address */ +#define USART5 (USART_BASE+0x0000D000U) /*!< USART5 base address */ + +/* registers definitions */ +#define USART_STAT0(usartx) REG32((usartx) + 0x00U) /*!< USART status register 0 */ +#define USART_DATA(usartx) REG32((usartx) + 0x04U) /*!< USART data register */ +#define USART_BAUD(usartx) REG32((usartx) + 0x08U) /*!< USART baud rate register */ +#define USART_CTL0(usartx) REG32((usartx) + 0x0CU) /*!< USART control register 0 */ +#define USART_CTL1(usartx) REG32((usartx) + 0x10U) /*!< USART control register 1 */ +#define USART_CTL2(usartx) REG32((usartx) + 0x14U) /*!< USART control register 2 */ +#define USART_GP(usartx) REG32((usartx) + 0x18U) /*!< USART guard time and prescaler register */ +#define USART_CTL3(usartx) REG32((usartx) + 0x80U) /*!< USART control register 3 */ +#define USART_RT(usartx) REG32((usartx) + 0x84U) /*!< USART receiver timeout register */ +#define USART_STAT1(usartx) REG32((usartx) + 0x88U) /*!< USART status register 1 */ +#define USART_CHC(usartx) REG32((usartx) + 0xC0U) /*!< USART coherence control register */ + +/* bits definitions */ +/* USARTx_STAT0 */ +#define USART_STAT0_PERR BIT(0) /*!< parity error flag */ +#define USART_STAT0_FERR BIT(1) /*!< frame error flag */ +#define USART_STAT0_NERR BIT(2) /*!< noise error flag */ +#define USART_STAT0_ORERR BIT(3) /*!< overrun error */ +#define USART_STAT0_IDLEF BIT(4) /*!< IDLE frame detected flag */ +#define USART_STAT0_RBNE BIT(5) /*!< read data buffer not empty */ +#define USART_STAT0_TC BIT(6) /*!< transmission complete */ +#define USART_STAT0_TBE BIT(7) /*!< transmit data buffer empty */ +#define USART_STAT0_LBDF BIT(8) /*!< LIN break detected flag */ +#define USART_STAT0_CTSF BIT(9) /*!< CTS change flag */ + +/* USARTx_DATA */ +#define USART_DATA_DATA BITS(0,8) /*!< transmit or read data value */ + +/* USARTx_BAUD */ +#define USART_BAUD_FRADIV BITS(0,3) /*!< fraction part of baud-rate divider */ +#define USART_BAUD_INTDIV BITS(4,15) /*!< integer part of baud-rate divider */ + +/* USARTx_CTL0 */ +#define USART_CTL0_SBKCMD BIT(0) /*!< send break command */ +#define USART_CTL0_RWU BIT(1) /*!< receiver wakeup from mute mode */ +#define USART_CTL0_REN BIT(2) /*!< receiver enable */ +#define USART_CTL0_TEN BIT(3) /*!< transmitter enable */ +#define USART_CTL0_IDLEIE BIT(4) /*!< idle line detected interrupt enable */ +#define USART_CTL0_RBNEIE BIT(5) /*!< read data buffer not empty interrupt and overrun error interrupt enable */ +#define USART_CTL0_TCIE BIT(6) /*!< transmission complete interrupt enable */ +#define USART_CTL0_TBEIE BIT(7) /*!< transmitter buffer empty interrupt enable */ +#define USART_CTL0_PERRIE BIT(8) /*!< parity error interrupt enable */ +#define USART_CTL0_PM BIT(9) /*!< parity mode */ +#define USART_CTL0_PCEN BIT(10) /*!< parity check function enable */ +#define USART_CTL0_WM BIT(11) /*!< wakeup method in mute mode */ +#define USART_CTL0_WL BIT(12) /*!< word length */ +#define USART_CTL0_UEN BIT(13) /*!< USART enable */ +#define USART_CTL0_OVSMOD BIT(15) /*!< oversample mode */ + +/* USARTx_CTL1 */ +#define USART_CTL1_ADDR BITS(0,3) /*!< address of USART */ +#define USART_CTL1_LBLEN BIT(5) /*!< LIN break frame length */ +#define USART_CTL1_LBDIE BIT(6) /*!< LIN break detected interrupt eanble */ +#define USART_CTL1_CLEN BIT(8) /*!< CK length */ +#define USART_CTL1_CPH BIT(9) /*!< CK phase */ +#define USART_CTL1_CPL BIT(10) /*!< CK polarity */ +#define USART_CTL1_CKEN BIT(11) /*!< CK pin enable */ +#define USART_CTL1_STB BITS(12,13) /*!< STOP bits length */ +#define USART_CTL1_LMEN BIT(14) /*!< LIN mode enable */ + +/* USARTx_CTL2 */ +#define USART_CTL2_ERRIE BIT(0) /*!< error interrupt enable */ +#define USART_CTL2_IREN BIT(1) /*!< IrDA mode enable */ +#define USART_CTL2_IRLP BIT(2) /*!< IrDA low-power */ +#define USART_CTL2_HDEN BIT(3) /*!< half-duplex enable */ +#define USART_CTL2_NKEN BIT(4) /*!< NACK enable in smartcard mode */ +#define USART_CTL2_SCEN BIT(5) /*!< smartcard mode enable */ +#define USART_CTL2_DENR BIT(6) /*!< DMA request enable for reception */ +#define USART_CTL2_DENT BIT(7) /*!< DMA request enable for transmission */ +#define USART_CTL2_RTSEN BIT(8) /*!< RTS enable */ +#define USART_CTL2_CTSEN BIT(9) /*!< CTS enable */ +#define USART_CTL2_CTSIE BIT(10) /*!< CTS interrupt enable */ +#define USART_CTL2_OSB BIT(11) /*!< one sample bit method */ + +/* USARTx_GP */ +#define USART_GP_PSC BITS(0,7) /*!< prescaler value for dividing the system clock */ +#define USART_GP_GUAT BITS(8,15) /*!< guard time value in smartcard mode */ + +/* USARTx_CTL3 */ +#define USART_CTL3_RTEN BIT(0) /*!< receiver timeout enable */ +#define USART_CTL3_SCRTNUM BITS(1,3) /*!< smartcard auto-retry number */ +#define USART_CTL3_RTIE BIT(4) /*!< interrupt enable bit of receive timeout event */ +#define USART_CTL3_EBIE BIT(5) /*!< interrupt enable bit of end of block event */ +#define USART_CTL3_RINV BIT(8) /*!< RX pin level inversion */ +#define USART_CTL3_TINV BIT(9) /*!< TX pin level inversion */ +#define USART_CTL3_DINV BIT(10) /*!< data bit level inversion */ +#define USART_CTL3_MSBF BIT(11) /*!< most significant bit first */ + +/* USARTx_RT */ +#define USART_RT_RT BITS(0,23) /*!< receiver timeout threshold */ +#define USART_RT_BL BITS(24,31) /*!< block length */ + +/* USARTx_STAT1 */ +#define USART_STAT1_RTF BIT(11) /*!< receiver timeout flag */ +#define USART_STAT1_EBF BIT(12) /*!< end of block flag */ +#define USART_STAT1_BSY BIT(16) /*!< busy flag */ + +/* USARTx_CHC */ +#define USART_CHC_HCM BIT(0) /*!< hardware flow control coherence mode */ +#define USART_CHC_PCM BIT(1) /*!< parity check coherence mode */ +#define USART_CHC_BCM BIT(2) /*!< break frame coherence mode */ +#define USART_CHC_EPERR BIT(8) /*!< early parity error flag */ + +/* constants definitions */ +/* define the USART bit position and its register index offset */ +#define USART_REGIDX_BIT(regidx, bitpos) (((uint32_t)(regidx) << 6) | (uint32_t)(bitpos)) +#define USART_REG_VAL(usartx, offset) (REG32((usartx) + (((uint32_t)(offset) & 0xFFFFU) >> 6))) +#define USART_BIT_POS(val) ((uint32_t)(val) & 0x1FU) +#define USART_REGIDX_BIT2(regidx, bitpos, regidx2, bitpos2) (((uint32_t)(regidx2) << 22) | (uint32_t)((bitpos2) << 16)\ + | (((uint32_t)(regidx) << 6) | (uint32_t)(bitpos))) +#define USART_REG_VAL2(usartx, offset) (REG32((usartx) + ((uint32_t)(offset) >> 22))) +#define USART_BIT_POS2(val) (((uint32_t)(val) & 0x1F0000U) >> 16) + +/* register offset */ +#define USART_STAT0_REG_OFFSET 0x00U /*!< STAT0 register offset */ +#define USART_STAT1_REG_OFFSET 0x88U /*!< STAT1 register offset */ +#define USART_CTL0_REG_OFFSET 0x0CU /*!< CTL0 register offset */ +#define USART_CTL1_REG_OFFSET 0x10U /*!< CTL1 register offset */ +#define USART_CTL2_REG_OFFSET 0x14U /*!< CTL2 register offset */ +#define USART_CTL3_REG_OFFSET 0x80U /*!< CTL3 register offset */ +#define USART_CHC_REG_OFFSET 0xC0U /*!< CHC register offset */ + +/* USART flags */ +typedef enum +{ + /* flags in STAT0 register */ + USART_FLAG_CTS = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 9U), /*!< CTS change flag */ + USART_FLAG_LBD = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 8U), /*!< LIN break detected flag */ + USART_FLAG_TBE = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 7U), /*!< transmit data buffer empty */ + USART_FLAG_TC = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 6U), /*!< transmission complete */ + USART_FLAG_RBNE = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 5U), /*!< read data buffer not empty */ + USART_FLAG_IDLE = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 4U), /*!< IDLE frame detected flag */ + USART_FLAG_ORERR = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 3U), /*!< overrun error */ + USART_FLAG_NERR = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 2U), /*!< noise error flag */ + USART_FLAG_FERR = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 1U), /*!< frame error flag */ + USART_FLAG_PERR = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 0U), /*!< parity error flag */ + /* flags in STAT1 register */ + USART_FLAG_BSY = USART_REGIDX_BIT(USART_STAT1_REG_OFFSET, 16U), /*!< busy flag */ + USART_FLAG_EB = USART_REGIDX_BIT(USART_STAT1_REG_OFFSET, 12U), /*!< end of block flag */ + USART_FLAG_RT = USART_REGIDX_BIT(USART_STAT1_REG_OFFSET, 11U), /*!< receiver timeout flag */ + /* flags in CHC register */ + USART_FLAG_EPERR = USART_REGIDX_BIT(USART_CHC_REG_OFFSET, 8U), /*!< early parity error flag */ +}usart_flag_enum; + +/* USART interrupt flags */ +typedef enum +{ + /* interrupt flags in CTL0 register */ + USART_INT_FLAG_PERR = USART_REGIDX_BIT2(USART_CTL0_REG_OFFSET, 8U, USART_STAT0_REG_OFFSET, 0U), /*!< parity error interrupt and flag */ + USART_INT_FLAG_TBE = USART_REGIDX_BIT2(USART_CTL0_REG_OFFSET, 7U, USART_STAT0_REG_OFFSET, 7U), /*!< transmitter buffer empty interrupt and flag */ + USART_INT_FLAG_TC = USART_REGIDX_BIT2(USART_CTL0_REG_OFFSET, 6U, USART_STAT0_REG_OFFSET, 6U), /*!< transmission complete interrupt and flag */ + USART_INT_FLAG_RBNE = USART_REGIDX_BIT2(USART_CTL0_REG_OFFSET, 5U, USART_STAT0_REG_OFFSET, 5U), /*!< read data buffer not empty interrupt and flag */ + USART_INT_FLAG_RBNE_ORERR = USART_REGIDX_BIT2(USART_CTL0_REG_OFFSET, 5U, USART_STAT0_REG_OFFSET, 3U), /*!< read data buffer not empty interrupt and overrun error flag */ + USART_INT_FLAG_IDLE = USART_REGIDX_BIT2(USART_CTL0_REG_OFFSET, 4U, USART_STAT0_REG_OFFSET, 4U), /*!< IDLE line detected interrupt and flag */ + /* interrupt flags in CTL1 register */ + USART_INT_FLAG_LBD = USART_REGIDX_BIT2(USART_CTL1_REG_OFFSET, 6U, USART_STAT0_REG_OFFSET, 8U), /*!< LIN break detected interrupt and flag */ + /* interrupt flags in CTL2 register */ + USART_INT_FLAG_CTS = USART_REGIDX_BIT2(USART_CTL2_REG_OFFSET, 10U, USART_STAT0_REG_OFFSET, 9U), /*!< CTS interrupt and flag */ + USART_INT_FLAG_ERR_ORERR = USART_REGIDX_BIT2(USART_CTL2_REG_OFFSET, 0U, USART_STAT0_REG_OFFSET, 3U), /*!< error interrupt and overrun error */ + USART_INT_FLAG_ERR_NERR = USART_REGIDX_BIT2(USART_CTL2_REG_OFFSET, 0U, USART_STAT0_REG_OFFSET, 2U), /*!< error interrupt and noise error flag */ + USART_INT_FLAG_ERR_FERR = USART_REGIDX_BIT2(USART_CTL2_REG_OFFSET, 0U, USART_STAT0_REG_OFFSET, 1U), /*!< error interrupt and frame error flag */ + /* interrupt flags in CTL3 register */ + USART_INT_FLAG_EB = USART_REGIDX_BIT2(USART_CTL3_REG_OFFSET, 5U, USART_STAT1_REG_OFFSET, 12U), /*!< interrupt enable bit of end of block event and flag */ + USART_INT_FLAG_RT = USART_REGIDX_BIT2(USART_CTL3_REG_OFFSET, 4U, USART_STAT1_REG_OFFSET, 11U), /*!< interrupt enable bit of receive timeout event and flag */ +}usart_interrupt_flag_enum; + +/* USART interrupt flags */ +typedef enum +{ + /* interrupt in CTL0 register */ + USART_INT_PERR = USART_REGIDX_BIT(USART_CTL0_REG_OFFSET, 8U), /*!< parity error interrupt */ + USART_INT_TBE = USART_REGIDX_BIT(USART_CTL0_REG_OFFSET, 7U), /*!< transmitter buffer empty interrupt */ + USART_INT_TC = USART_REGIDX_BIT(USART_CTL0_REG_OFFSET, 6U), /*!< transmission complete interrupt */ + USART_INT_RBNE = USART_REGIDX_BIT(USART_CTL0_REG_OFFSET, 5U), /*!< read data buffer not empty interrupt and overrun error interrupt */ + USART_INT_IDLE = USART_REGIDX_BIT(USART_CTL0_REG_OFFSET, 4U), /*!< IDLE line detected interrupt */ + /* interrupt in CTL1 register */ + USART_INT_LBD = USART_REGIDX_BIT(USART_CTL1_REG_OFFSET, 6U), /*!< LIN break detected interrupt */ + /* interrupt in CTL2 register */ + USART_INT_CTS = USART_REGIDX_BIT(USART_CTL2_REG_OFFSET, 10U), /*!< CTS interrupt */ + USART_INT_ERR = USART_REGIDX_BIT(USART_CTL2_REG_OFFSET, 0U), /*!< error interrupt */ + /* interrupt in CTL3 register */ + USART_INT_EB = USART_REGIDX_BIT(USART_CTL3_REG_OFFSET, 5U), /*!< interrupt enable bit of end of block event */ + USART_INT_RT = USART_REGIDX_BIT(USART_CTL3_REG_OFFSET, 4U), /*!< interrupt enable bit of receive timeout event */ +}usart_interrupt_enum; + +/* USART invert configure */ +typedef enum +{ + /* data bit level inversion */ + USART_DINV_ENABLE, /*!< data bit level inversion */ + USART_DINV_DISABLE, /*!< data bit level not inversion */ + /* TX pin level inversion */ + USART_TXPIN_ENABLE, /*!< TX pin level inversion */ + USART_TXPIN_DISABLE, /*!< TX pin level not inversion */ + /* RX pin level inversion */ + USART_RXPIN_ENABLE, /*!< RX pin level inversion */ + USART_RXPIN_DISABLE, /*!< RX pin level not inversion */ +}usart_invert_enum; + +/* USART receiver configure */ +#define CTL0_REN(regval) (BIT(2) & ((uint32_t)(regval) << 2)) +#define USART_RECEIVE_ENABLE CTL0_REN(1) /*!< enable receiver */ +#define USART_RECEIVE_DISABLE CTL0_REN(0) /*!< disable receiver */ + +/* USART transmitter configure */ +#define CTL0_TEN(regval) (BIT(3) & ((uint32_t)(regval) << 3)) +#define USART_TRANSMIT_ENABLE CTL0_TEN(1) /*!< enable transmitter */ +#define USART_TRANSMIT_DISABLE CTL0_TEN(0) /*!< disable transmitter */ + +/* USART parity bits definitions */ +#define CTL0_PM(regval) (BITS(9,10) & ((uint32_t)(regval) << 9)) +#define USART_PM_NONE CTL0_PM(0) /*!< no parity */ +#define USART_PM_EVEN CTL0_PM(2) /*!< even parity */ +#define USART_PM_ODD CTL0_PM(3) /*!< odd parity */ + +/* USART wakeup method in mute mode */ +#define CTL0_WM(regval) (BIT(11) & ((uint32_t)(regval) << 11)) +#define USART_WM_IDLE CTL0_WM(0) /*!< idle Line */ +#define USART_WM_ADDR CTL0_WM(1) /*!< address mask */ + +/* USART word length definitions */ +#define CTL0_WL(regval) (BIT(12) & ((uint32_t)(regval) << 12)) +#define USART_WL_8BIT CTL0_WL(0) /*!< 8 bits */ +#define USART_WL_9BIT CTL0_WL(1) /*!< 9 bits */ + +/* USART oversampling mode definitions */ +#define CTL0_OVSMOD(regval) (BIT(15) & ((uint32_t)(regval) << 15)) +#define USART_OVSMOD_16 CTL0_OVSMOD(0) /*!< 16 bits */ +#define USART_OVSMOD_8 CTL0_OVSMOD(1) /*!< 8 bits */ + +/* USART stop bits definitions */ +#define CTL1_STB(regval) (BITS(12,13) & ((uint32_t)(regval) << 12)) +#define USART_STB_1BIT CTL1_STB(0) /*!< 1 bit */ +#define USART_STB_0_5BIT CTL1_STB(1) /*!< 0.5 bit */ +#define USART_STB_2BIT CTL1_STB(2) /*!< 2 bits */ +#define USART_STB_1_5BIT CTL1_STB(3) /*!< 1.5 bits */ + +/* USART LIN break frame length */ +#define CTL1_LBLEN(regval) (BIT(5) & ((uint32_t)(regval) << 5)) +#define USART_LBLEN_10B CTL1_LBLEN(0) /*!< 10 bits */ +#define USART_LBLEN_11B CTL1_LBLEN(1) /*!< 11 bits */ + +/* USART CK length */ +#define CTL1_CLEN(regval) (BIT(8) & ((uint32_t)(regval) << 8)) +#define USART_CLEN_NONE CTL1_CLEN(0) /*!< there are 7 CK pulses for an 8 bit frame and 8 CK pulses for a 9 bit frame */ +#define USART_CLEN_EN CTL1_CLEN(1) /*!< there are 8 CK pulses for an 8 bit frame and 9 CK pulses for a 9 bit frame */ + +/* USART clock phase */ +#define CTL1_CPH(regval) (BIT(9) & ((uint32_t)(regval) << 9)) +#define USART_CPH_1CK CTL1_CPH(0) /*!< first clock transition is the first data capture edge */ +#define USART_CPH_2CK CTL1_CPH(1) /*!< second clock transition is the first data capture edge */ + +/* USART clock polarity */ +#define CTL1_CPL(regval) (BIT(10) & ((uint32_t)(regval) << 10)) +#define USART_CPL_LOW CTL1_CPL(0) /*!< steady low value on CK pin */ +#define USART_CPL_HIGH CTL1_CPL(1) /*!< steady high value on CK pin */ + +/* USART DMA request for receive configure */ +#define CLT2_DENR(regval) (BIT(6) & ((uint32_t)(regval) << 6)) +#define USART_DENR_ENABLE CLT2_DENR(1) /*!< DMA request enable for reception */ +#define USART_DENR_DISABLE CLT2_DENR(0) /*!< DMA request disable for reception */ + +/* USART DMA request for transmission configure */ +#define CLT2_DENT(regval) (BIT(7) & ((uint32_t)(regval) << 7)) +#define USART_DENT_ENABLE CLT2_DENT(1) /*!< DMA request enable for transmission */ +#define USART_DENT_DISABLE CLT2_DENT(0) /*!< DMA request disable for transmission */ + +/* USART RTS configure */ +#define CLT2_RTSEN(regval) (BIT(8) & ((uint32_t)(regval) << 8)) +#define USART_RTS_ENABLE CLT2_RTSEN(1) /*!< RTS enable */ +#define USART_RTS_DISABLE CLT2_RTSEN(0) /*!< RTS disable */ + +/* USART CTS configure */ +#define CLT2_CTSEN(regval) (BIT(9) & ((uint32_t)(regval) << 9)) +#define USART_CTS_ENABLE CLT2_CTSEN(1) /*!< CTS enable */ +#define USART_CTS_DISABLE CLT2_CTSEN(0) /*!< CTS disable */ + +/* USART one sample bit method configure */ +#define CTL2_OSB(regval) (BIT(11) & ((uint32_t)(regval) << 11)) +#define USART_OSB_1bit CTL2_OSB(1) /*!< 1 bit */ +#define USART_OSB_3bit CTL2_OSB(0) /*!< 3 bits */ + +/* USART IrDA low-power enable */ +#define CTL2_IRLP(regval) (BIT(2) & ((uint32_t)(regval) << 2)) +#define USART_IRLP_LOW CTL2_IRLP(1) /*!< low-power */ +#define USART_IRLP_NORMAL CTL2_IRLP(0) /*!< normal */ + +/* USART data is transmitted/received with the LSB/MSB first */ +#define CTL3_MSBF(regval) (BIT(11) & ((uint32_t)(regval) << 11)) +#define USART_MSBF_LSB CTL3_MSBF(0) /*!< LSB first */ +#define USART_MSBF_MSB CTL3_MSBF(1) /*!< MSB first */ + +/* break frame coherence mode */ +#define CHC_BCM(regval) (BIT(2) & ((uint32_t)(regval) << 2)) +#define USART_BCM_NONE CHC_BCM(0) /*!< no parity error is detected */ +#define USART_BCM_EN CHC_BCM(1) /*!< parity error is detected */ + +/* USART parity check coherence mode */ +#define CHC_PCM(regval) (BIT(1) & ((uint32_t)(regval) << 1)) +#define USART_PCM_NONE CHC_PCM(0) /*!< not check parity */ +#define USART_PCM_EN CHC_PCM(1) /*!< check the parity */ + +/* USART hardware flow control coherence mode */ +#define CHC_HCM(regval) (BIT(0) & ((uint32_t)(regval) << 0)) +#define USART_HCM_NONE CHC_HCM(0) /*!< nRTS signal equals to the rxne status register */ +#define USART_HCM_EN CHC_HCM(1) /*!< nRTS signal is set when the last data bit has been sampled */ + +/* function declarations */ +/* initialization functions */ +/* reset USART */ +void usart_deinit(uint32_t usart_periph); +/* configure usart baud rate value */ +void usart_baudrate_set(uint32_t usart_periph, uint32_t baudval); +/* configure usart parity function */ +void usart_parity_config(uint32_t usart_periph, uint32_t paritycfg); +/* configure usart word length */ +void usart_word_length_set(uint32_t usart_periph, uint32_t wlen); +/* configure usart stop bit length */ +void usart_stop_bit_set(uint32_t usart_periph, uint32_t stblen); +/* enable usart */ +void usart_enable(uint32_t usart_periph); +/* disable usart */ +void usart_disable(uint32_t usart_periph); +/* configure USART transmitter */ +void usart_transmit_config(uint32_t usart_periph, uint32_t txconfig); +/* configure USART receiver */ +void usart_receive_config(uint32_t usart_periph, uint32_t rxconfig); + +/* USART normal mode communication */ +/* data is transmitted/received with the LSB/MSB first */ +void usart_data_first_config(uint32_t usart_periph, uint32_t msbf); +/* configure USART inverted */ +void usart_invert_config(uint32_t usart_periph, usart_invert_enum invertpara); +/* configure the USART oversample mode */ +void usart_oversample_config(uint32_t usart_periph, uint32_t oversamp); +/* configure sample bit method */ +void usart_sample_bit_config(uint32_t usart_periph, uint32_t obsm); +/* enable receiver timeout */ +void usart_receiver_timeout_enable(uint32_t usart_periph); +/* disable receiver timeout */ +void usart_receiver_timeout_disable(uint32_t usart_periph); +/* configure receiver timeout threshold */ +void usart_receiver_timeout_threshold_config(uint32_t usart_periph, uint32_t rtimeout); +/* USART transmit data function */ +void usart_data_transmit(uint32_t usart_periph, uint32_t data); +/* USART receive data function */ +uint16_t usart_data_receive(uint32_t usart_periph); + +/* multi-processor communication */ +/* configure address of the USART */ +void usart_address_config(uint32_t usart_periph, uint8_t addr); +/* enable mute mode */ +void usart_mute_mode_enable(uint32_t usart_periph); +/* disable mute mode */ +void usart_mute_mode_disable(uint32_t usart_periph); +/* configure wakeup method in mute mode */ +void usart_mute_mode_wakeup_config(uint32_t usart_periph, uint32_t wmehtod); + +/* LIN mode communication */ +/* enable LIN mode */ +void usart_lin_mode_enable(uint32_t usart_periph); +/* disable LIN mode */ +void usart_lin_mode_disable(uint32_t usart_periph); +/* LIN break detection length */ +void usart_lin_break_detection_length_config(uint32_t usart_periph, uint32_t lblen); +/* send break frame */ +void usart_send_break(uint32_t usart_periph); + +/* half-duplex communication */ +/* enable half-duplex mode */ +void usart_halfduplex_enable(uint32_t usart_periph); +/* disable half-duplex mode */ +void usart_halfduplex_disable(uint32_t usart_periph); + +/* synchronous communication */ +/* enable CK pin in synchronous mode */ +void usart_synchronous_clock_enable(uint32_t usart_periph); +/* disable CK pin in synchronous mode */ +void usart_synchronous_clock_disable(uint32_t usart_periph); +/* configure usart synchronous mode parameters */ +void usart_synchronous_clock_config(uint32_t usart_periph, uint32_t clen, uint32_t cph, uint32_t cpl); + +/* smartcard communication */ +/* configure guard time value in smartcard mode */ +void usart_guard_time_config(uint32_t usart_periph, uint32_t guat); +/* enable smartcard mode */ +void usart_smartcard_mode_enable(uint32_t usart_periph); +/* disable smartcard mode */ +void usart_smartcard_mode_disable(uint32_t usart_periph); +/* enable NACK in smartcard mode */ +void usart_smartcard_mode_nack_enable(uint32_t usart_periph); +/* disable NACK in smartcard mode */ +void usart_smartcard_mode_nack_disable(uint32_t usart_periph); +/* configure smartcard auto-retry number */ +void usart_smartcard_autoretry_config(uint32_t usart_periph, uint32_t scrtnum); +/* configure block length */ +void usart_block_length_config(uint32_t usart_periph, uint32_t bl); + +/* IrDA communication */ +/* enable IrDA mode */ +void usart_irda_mode_enable(uint32_t usart_periph); +/* disable IrDA mode */ +void usart_irda_mode_disable(uint32_t usart_periph); +/* configure the peripheral clock prescaler */ +void usart_prescaler_config(uint32_t usart_periph, uint8_t psc); +/* configure IrDA low-power */ +void usart_irda_lowpower_config(uint32_t usart_periph, uint32_t irlp); + +/* hardware flow communication */ +/* configure hardware flow control RTS */ +void usart_hardware_flow_rts_config(uint32_t usart_periph, uint32_t rtsconfig); +/* configure hardware flow control CTS */ +void usart_hardware_flow_cts_config(uint32_t usart_periph, uint32_t ctsconfig); + +/* coherence control */ +/* configure break frame coherence mode */ +void usart_break_frame_coherence_config(uint32_t usart_periph, uint32_t bcm); +/* configure parity check coherence mode */ +void usart_parity_check_coherence_config(uint32_t usart_periph, uint32_t pcm); +/* configure hardware flow control coherence mode */ +void usart_hardware_flow_coherence_config(uint32_t usart_periph, uint32_t hcm); + +/* DMA communication */ +/* configure USART DMA for reception */ +void usart_dma_receive_config(uint32_t usart_periph, uint32_t dmacmd); +/* configure USART DMA for transmission */ +void usart_dma_transmit_config(uint32_t usart_periph, uint32_t dmacmd); + +/* flag & interrupt functions */ +/* get flag in STAT0/STAT1 register */ +FlagStatus usart_flag_get(uint32_t usart_periph, usart_flag_enum flag); +/* clear flag in STAT0/STAT1 register */ +void usart_flag_clear(uint32_t usart_periph, usart_flag_enum flag); +/* enable USART interrupt */ +void usart_interrupt_enable(uint32_t usart_periph, usart_interrupt_enum interrupt); +/* disable USART interrupt */ +void usart_interrupt_disable(uint32_t usart_periph, usart_interrupt_enum interrupt); +/* get USART interrupt and flag status */ +FlagStatus usart_interrupt_flag_get(uint32_t usart_periph, usart_interrupt_flag_enum int_flag); +/* clear interrupt flag in STAT0/STAT1 register */ +void usart_interrupt_flag_clear(uint32_t usart_periph, usart_interrupt_flag_enum int_flag); + +#endif /* GD32F4XX_USART_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_wwdgt.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_wwdgt.h new file mode 100644 index 0000000000..5fe1433719 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_wwdgt.h @@ -0,0 +1,88 @@ +/*! + \file gd32f4xx_wwdgt.h + \brief definitions for the WWDGT + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_WWDGT_H +#define GD32F4XX_WWDGT_H + +#include "gd32f4xx.h" + +/* WWDGT definitions */ +#define WWDGT WWDGT_BASE + +/* registers definitions */ +#define WWDGT_CTL REG32((WWDGT) + 0x00U) /*!< WWDGT control register */ +#define WWDGT_CFG REG32((WWDGT) + 0x04U) /*!< WWDGT configuration register */ +#define WWDGT_STAT REG32((WWDGT) + 0x08U) /*!< WWDGT status register */ + +/* bits definitions */ +/* WWDGT_CTL */ +#define WWDGT_CTL_CNT BITS(0,6) /*!< WWDGT counter value */ +#define WWDGT_CTL_WDGTEN BIT(7) /*!< WWDGT counter enable */ + +/* WWDGT_CFG */ +#define WWDGT_CFG_WIN BITS(0,6) /*!< WWDGT counter window value */ +#define WWDGT_CFG_PSC BITS(7,8) /*!< WWDGT prescaler divider value */ +#define WWDGT_CFG_EWIE BIT(9) /*!< early wakeup interrupt enable */ + +/* WWDGT_STAT */ +#define WWDGT_STAT_EWIF BIT(0) /*!< early wakeup interrupt flag */ + +/* constants definitions */ +#define CFG_PSC(regval) (BITS(7,8) & ((uint32_t)(regval) << 7)) /*!< write value to WWDGT_CFG_PSC bit field */ +#define WWDGT_CFG_PSC_DIV1 CFG_PSC(0) /*!< the time base of WWDGT = (PCLK1/4096)/1 */ +#define WWDGT_CFG_PSC_DIV2 CFG_PSC(1) /*!< the time base of WWDGT = (PCLK1/4096)/2 */ +#define WWDGT_CFG_PSC_DIV4 CFG_PSC(2) /*!< the time base of WWDGT = (PCLK1/4096)/4 */ +#define WWDGT_CFG_PSC_DIV8 CFG_PSC(3) /*!< the time base of WWDGT = (PCLK1/4096)/8 */ + +/* function declarations */ +/* reset the window watchdog timer configuration */ +void wwdgt_deinit(void); +/* start the window watchdog timer counter */ +void wwdgt_enable(void); + +/* configure the window watchdog timer counter value */ +void wwdgt_counter_update(uint16_t counter_value); +/* configure counter value, window value, and prescaler divider value */ +void wwdgt_config(uint16_t counter, uint16_t window, uint32_t prescaler); + +/* enable early wakeup interrupt of WWDGT */ +void wwdgt_interrupt_enable(void); +/* check early wakeup interrupt state of WWDGT */ +FlagStatus wwdgt_flag_get(void); +/* clear early wakeup interrupt state of WWDGT */ +void wwdgt_flag_clear(void); + +#endif /* GD32F4XX_WWDGT_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_adc.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_adc.c new file mode 100644 index 0000000000..a626053b31 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_adc.c @@ -0,0 +1,1202 @@ +/*! + \file gd32f4xx_adc.c + \brief ADC driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_adc.h" + +#define REGULAR_TRIGGER_MODE ((uint32_t)28U) +#define INSERTED_TRIGGER_MODE ((uint32_t)20U) +/* discontinuous mode macro*/ +#define ADC_CHANNEL_LENGTH_SUBTRACT_ONE ((uint8_t)1U) + +/* ADC regular channel macro */ +#define ADC_REGULAR_CHANNEL_RANK_SIX ((uint8_t)6U) +#define ADC_REGULAR_CHANNEL_RANK_TWELVE ((uint8_t)12U) +#define ADC_REGULAR_CHANNEL_RANK_SIXTEEN ((uint8_t)16U) +#define ADC_REGULAR_CHANNEL_RANK_LENGTH ((uint8_t)5U) + +/* ADC sampling time macro */ +#define ADC_CHANNEL_SAMPLE_TEN ((uint8_t)10U) +#define ADC_CHANNEL_SAMPLE_EIGHTEEN ((uint8_t)18U) +#define ADC_CHANNEL_SAMPLE_LENGTH ((uint8_t)3U) + +/* ADC inserted channel macro */ +#define ADC_INSERTED_CHANNEL_RANK_LENGTH ((uint8_t)5U) +#define ADC_INSERTED_CHANNEL_SHIFT_LENGTH ((uint8_t)15U) + +/* ADC inserted channel offset macro */ +#define ADC_OFFSET_LENGTH ((uint8_t)3U) +#define ADC_OFFSET_SHIFT_LENGTH ((uint8_t)4U) + +/*! + \brief reset ADC + \param[in] none + \param[out] none + \retval none +*/ +void adc_deinit(void) +{ + rcu_periph_reset_enable(RCU_ADCRST); + rcu_periph_reset_disable(RCU_ADCRST); +} + +/*! + \brief configure the ADC clock for all the ADCs + \param[in] prescaler: configure ADCs prescaler ratio + only one parameter can be selected which is shown as below: + \arg ADC_ADCCK_PCLK2_DIV2: PCLK2 div2 + \arg ADC_ADCCK_PCLK2_DIV4: PCLK2 div4 + \arg ADC_ADCCK_PCLK2_DIV6: PCLK2 div6 + \arg ADC_ADCCK_PCLK2_DIV8: PCLK2 div8 + \arg ADC_ADCCK_HCLK_DIV5: HCLK div5 + \arg ADC_ADCCK_HCLK_DIV6: HCLK div6 + \arg ADC_ADCCK_HCLK_DIV10: HCLK div10 + \arg ADC_ADCCK_HCLK_DIV20: HCLK div20 + \param[out] none + \retval none +*/ +void adc_clock_config(uint32_t prescaler) +{ + ADC_SYNCCTL &= ~((uint32_t)ADC_SYNCCTL_ADCCK); + ADC_SYNCCTL |= (uint32_t) prescaler; +} + +/*! + \brief enable or disable ADC special function + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] function: the function to config + only one parameter can be selected which is shown as below: + \arg ADC_SCAN_MODE: scan mode select + \arg ADC_INSERTED_CHANNEL_AUTO: inserted channel group convert automatically + \arg ADC_CONTINUOUS_MODE: continuous mode select + \param[in] newvalue: ENABLE or DISABLE + \param[out] none + \retval none +*/ +void adc_special_function_config(uint32_t adc_periph , uint32_t function , ControlStatus newvalue) +{ + if(newvalue){ + if(0U != (function & ADC_SCAN_MODE)){ + /* enable scan mode */ + ADC_CTL0(adc_periph) |= ADC_SCAN_MODE; + } + if(0U != (function & ADC_INSERTED_CHANNEL_AUTO)){ + /* enable inserted channel group convert automatically */ + ADC_CTL0(adc_periph) |= ADC_INSERTED_CHANNEL_AUTO; + } + if(0U != (function & ADC_CONTINUOUS_MODE)){ + /* enable continuous mode */ + ADC_CTL1(adc_periph) |= ADC_CONTINUOUS_MODE; + } + }else{ + if(0U != (function & ADC_SCAN_MODE)){ + /* disable scan mode */ + ADC_CTL0(adc_periph) &= ~ADC_SCAN_MODE; + } + if(0U != (function & ADC_INSERTED_CHANNEL_AUTO)){ + /* disable inserted channel group convert automatically */ + ADC_CTL0(adc_periph) &= ~ADC_INSERTED_CHANNEL_AUTO; + } + if(0U != (function & ADC_CONTINUOUS_MODE)){ + /* disable continuous mode */ + ADC_CTL1(adc_periph) &= ~ADC_CONTINUOUS_MODE; + } + } +} + +/*! + \brief configure ADC data alignment + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] data_alignment: data alignment select + only one parameter can be selected which is shown as below: + \arg ADC_DATAALIGN_RIGHT: LSB alignment + \arg ADC_DATAALIGN_LEFT: MSB alignment + \param[out] none + \retval none +*/ +void adc_data_alignment_config(uint32_t adc_periph , uint32_t data_alignment) +{ + if(ADC_DATAALIGN_RIGHT != data_alignment){ + /* MSB alignment */ + ADC_CTL1(adc_periph) |= ADC_CTL1_DAL; + }else{ + /* LSB alignment */ + ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_DAL); + } +} + +/*! + \brief enable ADC interface + \param[in] adc_periph: ADCx,x=0,1,2 + \param[out] none + \retval none +*/ +void adc_enable(uint32_t adc_periph) +{ + if(RESET == (ADC_CTL1(adc_periph) & ADC_CTL1_ADCON)){ + /* enable ADC */ + ADC_CTL1(adc_periph) |= (uint32_t)ADC_CTL1_ADCON; + } +} + +/*! + \brief disable ADC interface + \param[in] adc_periph: ADCx,x=0,1,2 + \param[out] none + \retval none +*/ +void adc_disable(uint32_t adc_periph) +{ + /* disable ADC */ + ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_ADCON); +} + +/*! + \brief ADC calibration and reset calibration + \param[in] adc_periph: ADCx,x=0,1,2 + \param[out] none + \retval none +*/ +void adc_calibration_enable(uint32_t adc_periph) +{ + /* reset the selected ADC calibration registers */ + ADC_CTL1(adc_periph) |= (uint32_t) ADC_CTL1_RSTCLB; + /* check the RSTCLB bit state */ + while(RESET != (ADC_CTL1(adc_periph) & ADC_CTL1_RSTCLB)){ + } + /* enable ADC calibration process */ + ADC_CTL1(adc_periph) |= ADC_CTL1_CLB; + /* check the CLB bit state */ + while(RESET != (ADC_CTL1(adc_periph) & ADC_CTL1_CLB)){ + } +} + +/*! + \brief configure temperature sensor and internal reference voltage channel or VBAT channel function + \param[in] function: temperature sensor and internal reference voltage channel or VBAT channel + only one parameter can be selected which is shown as below: + \arg ADC_VBAT_CHANNEL_SWITCH: channel 18 (1/4 voltate of external battery) switch of ADC0 + \arg ADC_TEMP_VREF_CHANNEL_SWITCH: channel 16 (temperature sensor) and 17 (internal reference voltage) switch of ADC0 + \param[in] newvalue: ENABLE or DISABLE +\param[out] none + \retval none +*/ +void adc_channel_16_to_18(uint32_t function, ControlStatus newvalue) +{ + if(newvalue){ + if(RESET != (function & ADC_VBAT_CHANNEL_SWITCH)){ + /* enable ADC0 Vbat channel */ + ADC_SYNCCTL |= ADC_VBAT_CHANNEL_SWITCH; + } + if(RESET != (function & ADC_TEMP_VREF_CHANNEL_SWITCH)){ + /* enable ADC0 Vref and Temperature channel */ + ADC_SYNCCTL |= ADC_TEMP_VREF_CHANNEL_SWITCH; + } + }else{ + if(RESET != (function & ADC_VBAT_CHANNEL_SWITCH)){ + /* disable ADC0 Vbat channel */ + ADC_SYNCCTL &= ~ADC_VBAT_CHANNEL_SWITCH; + } + if(RESET != (function & ADC_TEMP_VREF_CHANNEL_SWITCH)){ + /* disable ADC0 Vref and Temperature channel */ + ADC_SYNCCTL &= ~ADC_TEMP_VREF_CHANNEL_SWITCH; + } + } +} + +/*! + \brief configure ADC resolution + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] resolution: ADC resolution + only one parameter can be selected which is shown as below: + \arg ADC_RESOLUTION_12B: 12-bit ADC resolution + \arg ADC_RESOLUTION_10B: 10-bit ADC resolution + \arg ADC_RESOLUTION_8B: 8-bit ADC resolution + \arg ADC_RESOLUTION_6B: 6-bit ADC resolution + \param[out] none + \retval none +*/ +void adc_resolution_config(uint32_t adc_periph , uint32_t resolution) +{ + ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_DRES); + ADC_CTL0(adc_periph) |= (uint32_t)resolution; +} + +/*! + \brief configure ADC oversample mode + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] mode: ADC oversampling mode + only one parameter can be selected which is shown as below: + \arg ADC_OVERSAMPLING_ALL_CONVERT: all oversampled conversions for a channel are done consecutively after a trigger + \arg ADC_OVERSAMPLING_ONE_CONVERT: each oversampled conversion for a channel needs a trigger + \param[in] shift: ADC oversampling shift + only one parameter can be selected which is shown as below: + \arg ADC_OVERSAMPLING_SHIFT_NONE: no oversampling shift + \arg ADC_OVERSAMPLING_SHIFT_1B: 1-bit oversampling shift + \arg ADC_OVERSAMPLING_SHIFT_2B: 2-bit oversampling shift + \arg ADC_OVERSAMPLING_SHIFT_3B: 3-bit oversampling shift + \arg ADC_OVERSAMPLING_SHIFT_4B: 3-bit oversampling shift + \arg ADC_OVERSAMPLING_SHIFT_5B: 5-bit oversampling shift + \arg ADC_OVERSAMPLING_SHIFT_6B: 6-bit oversampling shift + \arg ADC_OVERSAMPLING_SHIFT_7B: 7-bit oversampling shift + \arg ADC_OVERSAMPLING_SHIFT_8B: 8-bit oversampling shift + \param[in] ratio: ADC oversampling ratio + only one parameter can be selected which is shown as below: + \arg ADC_OVERSAMPLING_RATIO_MUL2: oversampling ratio multiple 2 + \arg ADC_OVERSAMPLING_RATIO_MUL4: oversampling ratio multiple 4 + \arg ADC_OVERSAMPLING_RATIO_MUL8: oversampling ratio multiple 8 + \arg ADC_OVERSAMPLING_RATIO_MUL16: oversampling ratio multiple 16 + \arg ADC_OVERSAMPLING_RATIO_MUL32: oversampling ratio multiple 32 + \arg ADC_OVERSAMPLING_RATIO_MUL64: oversampling ratio multiple 64 + \arg ADC_OVERSAMPLING_RATIO_MUL128: oversampling ratio multiple 128 + \arg ADC_OVERSAMPLING_RATIO_MUL256: oversampling ratio multiple 256 + \param[out] none + \retval none +*/ +void adc_oversample_mode_config(uint32_t adc_periph , uint32_t mode , uint16_t shift , uint8_t ratio) +{ + if(ADC_OVERSAMPLING_ONE_CONVERT == mode){ + ADC_OVSAMPCTL(adc_periph) |= (uint32_t)ADC_OVSAMPCTL_TOVS; + }else{ + ADC_OVSAMPCTL(adc_periph) &= ~((uint32_t)ADC_OVSAMPCTL_TOVS); + } + /* config the shift and ratio */ + ADC_OVSAMPCTL(adc_periph) &= ~((uint32_t)(ADC_OVSAMPCTL_OVSR | ADC_OVSAMPCTL_OVSS)); + ADC_OVSAMPCTL(adc_periph) |= ((uint32_t)shift | (uint32_t)ratio); +} + +/*! + \brief enable ADC oversample mode + \param[in] adc_periph: ADCx,x=0,1,2 + \param[out] none + \retval none +*/ +void adc_oversample_mode_enable(uint32_t adc_periph) +{ + ADC_OVSAMPCTL(adc_periph) |= ADC_OVSAMPCTL_OVSEN; +} + +/*! + \brief disable ADC oversample mode + \param[in] adc_periph: ADCx,x=0,1,2 + \param[out] none + \retval none +*/ +void adc_oversample_mode_disable(uint32_t adc_periph) +{ + ADC_OVSAMPCTL(adc_periph) &= ~((uint32_t)ADC_OVSAMPCTL_OVSEN); +} + +/*! + \brief enable DMA request + \param[in] adc_periph: ADCx,x=0,1,2 + \param[out] none + \retval none +*/ +void adc_dma_mode_enable(uint32_t adc_periph) +{ + /* enable DMA request */ + ADC_CTL1(adc_periph) |= (uint32_t)(ADC_CTL1_DMA); +} + +/*! + \brief disable DMA request + \param[in] adc_periph: ADCx,x=0,1,2 + \param[out] none + \retval none +*/ +void adc_dma_mode_disable(uint32_t adc_periph) +{ + /* disable DMA request */ + ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_DMA); +} + +/*! + \brief when DMA=1, the DMA engine issues a request at end of each regular conversion + \param[in] adc_periph: ADCx,x=0,1,2 + \param[out] none + \retval none +*/ +void adc_dma_request_after_last_enable(uint32_t adc_periph) +{ + ADC_CTL1(adc_periph) |= (uint32_t)(ADC_CTL1_DDM); +} + +/*! + \brief the DMA engine is disabled after the end of transfer signal from DMA controller is detected + \param[in] adc_periph: ADCx,x=0,1,2 + \param[out] none + \retval none +*/ +void adc_dma_request_after_last_disable(uint32_t adc_periph) +{ + ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_DDM); +} + +/*! + \brief configure ADC discontinuous mode + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] adc_channel_group: select the channel group + only one parameter can be selected which is shown as below: + \arg ADC_REGULAR_CHANNEL: regular channel group + \arg ADC_INSERTED_CHANNEL: inserted channel group + \arg ADC_CHANNEL_DISCON_DISABLE: disable discontinuous mode of regular & inserted channel + \param[in] length: number of conversions in discontinuous mode,the number can be 1..8 + for regular channel ,the number has no effect for inserted channel + \param[out] none + \retval none +*/ +void adc_discontinuous_mode_config(uint32_t adc_periph , uint8_t adc_channel_group , uint8_t length) +{ + /* disable discontinuous mode of regular & inserted channel */ + ADC_CTL0(adc_periph) &= ~((uint32_t)( ADC_CTL0_DISRC | ADC_CTL0_DISIC )); + switch(adc_channel_group){ + case ADC_REGULAR_CHANNEL: + /* config the number of conversions in discontinuous mode */ + ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_DISNUM); + if((length <= 8U) && (length >= 1U)){ + ADC_CTL0(adc_periph) |= CTL0_DISNUM(((uint32_t)length - ADC_CHANNEL_LENGTH_SUBTRACT_ONE)); + } + /* enable regular channel group discontinuous mode */ + ADC_CTL0(adc_periph) |= (uint32_t)ADC_CTL0_DISRC; + break; + case ADC_INSERTED_CHANNEL: + /* enable inserted channel group discontinuous mode */ + ADC_CTL0(adc_periph) |= (uint32_t)ADC_CTL0_DISIC; + break; + case ADC_CHANNEL_DISCON_DISABLE: + /* disable discontinuous mode of regular & inserted channel */ + default: + break; + } +} + +/*! + \brief configure the length of regular channel group or inserted channel group + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] adc_channel_group: select the channel group + only one parameter can be selected which is shown as below: + \arg ADC_REGULAR_CHANNEL: regular channel group + \arg ADC_INSERTED_CHANNEL: inserted channel group + \param[in] length: the length of the channel + regular channel 1-16 + inserted channel 1-4 + \param[out] none + \retval none +*/ +void adc_channel_length_config(uint32_t adc_periph , uint8_t adc_channel_group , uint32_t length) +{ + switch(adc_channel_group){ + case ADC_REGULAR_CHANNEL: + if((length >= 1U) && (length <= 16U)){ + ADC_RSQ0(adc_periph) &= ~((uint32_t)ADC_RSQ0_RL); + ADC_RSQ0(adc_periph) |= RSQ0_RL((uint32_t)(length-ADC_CHANNEL_LENGTH_SUBTRACT_ONE)); + } + break; + case ADC_INSERTED_CHANNEL: + if((length >= 1U) && (length <= 4U)){ + ADC_ISQ(adc_periph) &= ~((uint32_t)ADC_ISQ_IL); + ADC_ISQ(adc_periph) |= ISQ_IL((uint32_t)(length-ADC_CHANNEL_LENGTH_SUBTRACT_ONE)); + } + break; + default: + break; + } +} + +/*! + \brief configure ADC regular channel + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] rank: the regular group sequencer rank,this parameter must be between 0 to 15 + \param[in] adc_channel: the selected ADC channel + only one parameter can be selected which is shown as below: + \arg ADC_CHANNEL_x(x=0..18): ADC Channelx + \param[in] sample_time: the sample time value + only one parameter can be selected which is shown as below: + \arg ADC_SAMPLETIME_3: 3 cycles + \arg ADC_SAMPLETIME_15: 15 cycles + \arg ADC_SAMPLETIME_28: 28 cycles + \arg ADC_SAMPLETIME_56: 56 cycles + \arg ADC_SAMPLETIME_84: 84 cycles + \arg ADC_SAMPLETIME_112: 112 cycles + \arg ADC_SAMPLETIME_144: 144 cycles + \arg ADC_SAMPLETIME_480: 480 cycles + \param[out] none + \retval none +*/ +void adc_regular_channel_config(uint32_t adc_periph , uint8_t rank , uint8_t adc_channel , uint32_t sample_time) +{ + uint32_t rsq,sampt; + + /* ADC regular sequence config */ + if(rank < ADC_REGULAR_CHANNEL_RANK_SIX){ + /* the regular group sequence rank is smaller than six */ + rsq = ADC_RSQ2(adc_periph); + rsq &= ~((uint32_t)(ADC_RSQX_RSQN << (ADC_REGULAR_CHANNEL_RANK_LENGTH*rank))); + /* the channel number is written to these bits to select a channel as the nth conversion in the regular channel group */ + rsq |= ((uint32_t)adc_channel << (ADC_REGULAR_CHANNEL_RANK_LENGTH*rank)); + ADC_RSQ2(adc_periph) = rsq; + }else if(rank < ADC_REGULAR_CHANNEL_RANK_TWELVE){ + /* the regular group sequence rank is smaller than twelve */ + rsq = ADC_RSQ1(adc_periph); + rsq &= ~((uint32_t)(ADC_RSQX_RSQN << (ADC_REGULAR_CHANNEL_RANK_LENGTH*(rank-ADC_REGULAR_CHANNEL_RANK_SIX)))); + /* the channel number is written to these bits to select a channel as the nth conversion in the regular channel group */ + rsq |= ((uint32_t)adc_channel << (ADC_REGULAR_CHANNEL_RANK_LENGTH*(rank-ADC_REGULAR_CHANNEL_RANK_SIX))); + ADC_RSQ1(adc_periph) = rsq; + }else if(rank < ADC_REGULAR_CHANNEL_RANK_SIXTEEN){ + /* the regular group sequence rank is smaller than sixteen */ + rsq = ADC_RSQ0(adc_periph); + rsq &= ~((uint32_t)(ADC_RSQX_RSQN << (ADC_REGULAR_CHANNEL_RANK_LENGTH*(rank-ADC_REGULAR_CHANNEL_RANK_TWELVE)))); + /* the channel number is written to these bits to select a channel as the nth conversion in the regular channel group */ + rsq |= ((uint32_t)adc_channel << (ADC_REGULAR_CHANNEL_RANK_LENGTH*(rank-ADC_REGULAR_CHANNEL_RANK_TWELVE))); + ADC_RSQ0(adc_periph) = rsq; + }else{ + } + + /* ADC sampling time config */ + if(adc_channel < ADC_CHANNEL_SAMPLE_TEN){ + /* the regular group sequence rank is smaller than ten */ + sampt = ADC_SAMPT1(adc_periph); + sampt &= ~((uint32_t)(ADC_SAMPTX_SPTN << (ADC_CHANNEL_SAMPLE_LENGTH*adc_channel))); + /* channel sample time set*/ + sampt |= (uint32_t)(sample_time << (ADC_CHANNEL_SAMPLE_LENGTH*adc_channel)); + ADC_SAMPT1(adc_periph) = sampt; + }else if(adc_channel <= ADC_CHANNEL_SAMPLE_EIGHTEEN){ + /* the regular group sequence rank is smaller than eighteen */ + sampt = ADC_SAMPT0(adc_periph); + sampt &= ~((uint32_t)(ADC_SAMPTX_SPTN << (ADC_CHANNEL_SAMPLE_LENGTH*(adc_channel-ADC_CHANNEL_SAMPLE_TEN)))); + /* channel sample time set*/ + sampt |= (uint32_t)(sample_time << (ADC_CHANNEL_SAMPLE_LENGTH*(adc_channel-ADC_CHANNEL_SAMPLE_TEN))); + ADC_SAMPT0(adc_periph) = sampt; + }else{ + } +} + +/*! + \brief configure ADC inserted channel + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] rank: the inserted group sequencer rank,this parameter must be between 0 to 3 + \param[in] adc_channel: the selected ADC channel + only one parameter can be selected which is shown as below: + \arg ADC_CHANNEL_x(x=0..18): ADC Channelx + \param[in] sample_time: The sample time value + only one parameter can be selected which is shown as below: + \arg ADC_SAMPLETIME_3: 3 cycles + \arg ADC_SAMPLETIME_15: 15 cycles + \arg ADC_SAMPLETIME_28: 28 cycles + \arg ADC_SAMPLETIME_56: 56 cycles + \arg ADC_SAMPLETIME_84: 84 cycles + \arg ADC_SAMPLETIME_112: 112 cycles + \arg ADC_SAMPLETIME_144: 144 cycles + \arg ADC_SAMPLETIME_480: 480 cycles + \param[out] none + \retval none +*/ +void adc_inserted_channel_config(uint32_t adc_periph , uint8_t rank , uint8_t adc_channel , uint32_t sample_time) +{ + uint8_t inserted_length; + uint32_t isq,sampt; + + /* get inserted channel group length */ + inserted_length = (uint8_t)GET_BITS(ADC_ISQ(adc_periph) , 20U , 21U); + /* the channel number is written to these bits to select a channel as the nth conversion in the inserted channel group */ + if(rank < 4U){ + isq = ADC_ISQ(adc_periph); + isq &= ~((uint32_t)(ADC_ISQ_ISQN << (ADC_INSERTED_CHANNEL_SHIFT_LENGTH-(inserted_length-rank)*ADC_INSERTED_CHANNEL_RANK_LENGTH))); + isq |= ((uint32_t)adc_channel << (ADC_INSERTED_CHANNEL_SHIFT_LENGTH-(inserted_length-rank)*ADC_INSERTED_CHANNEL_RANK_LENGTH)); + ADC_ISQ(adc_periph) = isq; + } + + /* ADC sampling time config */ + if(adc_channel < ADC_CHANNEL_SAMPLE_TEN){ + /* the inserted group sequence rank is smaller than ten */ + sampt = ADC_SAMPT1(adc_periph); + sampt &= ~((uint32_t)(ADC_SAMPTX_SPTN << (ADC_CHANNEL_SAMPLE_LENGTH*adc_channel))); + /* channel sample time set*/ + sampt |= (uint32_t) sample_time << (ADC_CHANNEL_SAMPLE_LENGTH*adc_channel); + ADC_SAMPT1(adc_periph) = sampt; + }else if(adc_channel <= ADC_CHANNEL_SAMPLE_EIGHTEEN){ + /* the inserted group sequence rank is smaller than eighteen */ + sampt = ADC_SAMPT0(adc_periph); + sampt &= ~((uint32_t)(ADC_SAMPTX_SPTN << (ADC_CHANNEL_SAMPLE_LENGTH*(adc_channel - ADC_CHANNEL_SAMPLE_TEN)))); + /* channel sample time set*/ + sampt |= ((uint32_t)sample_time << (ADC_CHANNEL_SAMPLE_LENGTH*(adc_channel - ADC_CHANNEL_SAMPLE_TEN))); + ADC_SAMPT0(adc_periph) = sampt; + }else{ + } +} + +/*! + \brief configure ADC inserted channel offset + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] inserted_channel : insert channel select + only one parameter can be selected which is shown as below: + \arg ADC_INSERTED_CHANNEL_0: inserted channel0 + \arg ADC_INSERTED_CHANNEL_1: inserted channel1 + \arg ADC_INSERTED_CHANNEL_2: inserted channel2 + \arg ADC_INSERTED_CHANNEL_3: inserted channel3 + \param[in] offset : the offset data + \param[out] none + \retval none +*/ +void adc_inserted_channel_offset_config(uint32_t adc_periph , uint8_t inserted_channel , uint16_t offset) +{ + uint8_t inserted_length; + uint32_t num = 0U; + + inserted_length = (uint8_t)GET_BITS(ADC_ISQ(adc_periph) , 20U , 21U); + num = ((uint32_t)ADC_OFFSET_LENGTH - ((uint32_t)inserted_length - (uint32_t)inserted_channel)); + + if(num <= ADC_OFFSET_LENGTH){ + /* calculate the offset of the register */ + num = num * ADC_OFFSET_SHIFT_LENGTH; + /* config the offset of the selected channels */ + REG32((adc_periph) + 0x14U + num) = IOFFX_IOFF((uint32_t)offset); + } +} + +/*! + \brief configure ADC external trigger source + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] adc_channel_group: select the channel group + only one parameter can be selected which is shown as below: + \arg ADC_REGULAR_CHANNEL: regular channel group + \arg ADC_INSERTED_CHANNEL: inserted channel group + \param[in] external_trigger_source: regular or inserted group trigger source + for regular channel: + only one parameter can be selected which is shown as below: + \arg ADC_EXTTRIG_REGULAR_T0_CH0: external trigger timer 0 CC0 event select for regular channel + \arg ADC_EXTTRIG_REGULAR_T0_CH1: external trigger timer 0 CC1 event select for regular channel + \arg ADC_EXTTRIG_REGULAR_T0_CH2: external trigger timer 0 CC2 event select for regular channel + \arg ADC_EXTTRIG_REGULAR_T1_CH1: external trigger timer 1 CC1 event select for regular channel + \arg ADC_EXTTRIG_REGULAR_T1_CH2: external trigger timer 1 CC2 event select for regular channel + \arg ADC_EXTTRIG_REGULAR_T1_CH3: external trigger timer 1 CC3 event select for regular channel + \arg ADC_EXTTRIG_REGULAR_T1_TRGO: external trigger timer 1 TRGO event select for regular channel + \arg ADC_EXTTRIG_REGULAR_T2_CH0 : external trigger timer 2 CC0 event select for regular channel + \arg ADC_EXTTRIG_REGULAR_T2_TRGO : external trigger timer 2 TRGO event select for regular channel + \arg ADC_EXTTRIG_REGULAR_T3_CH3: external trigger timer 3 CC3 event select for regular channel + \arg ADC_EXTTRIG_REGULAR_T4_CH0: external trigger timer 4 CC0 event select for regular channel + \arg ADC_EXTTRIG_REGULAR_T4_CH1: external trigger timer 4 CC1 event select for regular channel + \arg ADC_EXTTRIG_REGULAR_T4_CH2: external trigger timer 4 CC2 event select for regular channel + \arg ADC_EXTTRIG_REGULAR_T7_CH0: external trigger timer 7 CC0 event select for regular channel + \arg ADC_EXTTRIG_REGULAR_T7_TRGO: external trigger timer 7 TRGO event select for regular channel + \arg ADC_EXTTRIG_REGULAR_EXTI_11: external trigger extiline 11 select for regular channel + for inserted channel: + only one parameter can be selected which is shown as below: + \arg ADC_EXTTRIG_INSERTED_T0_CH3: timer0 capture compare 3 + \arg ADC_EXTTRIG_INSERTED_T0_TRGO: timer0 TRGO event + \arg ADC_EXTTRIG_INSERTED_T1_CH0: timer1 capture compare 0 + \arg ADC_EXTTRIG_INSERTED_T1_TRGO: timer1 TRGO event + \arg ADC_EXTTRIG_INSERTED_T2_CH1: timer2 capture compare 1 + \arg ADC_EXTTRIG_INSERTED_T2_CH3: timer2 capture compare 3 + \arg ADC_EXTTRIG_INSERTED_T3_CH0: timer3 capture compare 0 + \arg ADC_EXTTRIG_INSERTED_T3_CH1: timer3 capture compare 1 + \arg ADC_EXTTRIG_INSERTED_T3_CH2: timer3 capture compare 2 + \arg ADC_EXTTRIG_INSERTED_T3_TRGO: timer3 capture compare TRGO + \arg ADC_EXTTRIG_INSERTED_T4_CH3: timer4 capture compare 3 + \arg ADC_EXTTRIG_INSERTED_T4_TRGO: timer4 capture compare TRGO + \arg ADC_EXTTRIG_INSERTED_T7_CH1: timer7 capture compare 1 + \arg ADC_EXTTRIG_INSERTED_T7_CH2: timer7 capture compare 2 + \arg ADC_EXTTRIG_INSERTED_T7_CH3: timer7 capture compare 3 + \arg ADC_EXTTRIG_INSERTED_EXTI_15: external interrupt line 15 + \param[out] none + \retval none +*/ +void adc_external_trigger_source_config(uint32_t adc_periph , uint8_t adc_channel_group , uint32_t external_trigger_source) +{ + switch(adc_channel_group){ + case ADC_REGULAR_CHANNEL: + /* configure ADC regular group external trigger source */ + ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_ETSRC); + ADC_CTL1(adc_periph) |= (uint32_t)external_trigger_source; + break; + case ADC_INSERTED_CHANNEL: + /* configure ADC inserted group external trigger source */ + ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_ETSIC); + ADC_CTL1(adc_periph) |= (uint32_t)external_trigger_source; + break; + default: + break; + } +} + +/*! + \brief enable ADC external trigger + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] adc_channel_group: select the channel group + only one parameter can be selected which is shown as below: + \arg ADC_REGULAR_CHANNEL: regular channel group + \arg ADC_INSERTED_CHANNEL: inserted channel group + \param[in] trigger_mode: external trigger mode + only one parameter can be selected which is shown as below: + \arg EXTERNAL_TRIGGER_DISABLE: external trigger disable + \arg EXTERNAL_TRIGGER_RISING: rising edge of external trigger + \arg EXTERNAL_TRIGGER_FALLING: falling edge of external trigger + \arg EXTERNAL_TRIGGER_RISING_FALLING: rising and falling edge of external trigger + \param[out] none + \retval none +*/ +void adc_external_trigger_config(uint32_t adc_periph , uint8_t adc_channel_group , uint32_t trigger_mode) +{ + switch(adc_channel_group){ + case ADC_REGULAR_CHANNEL: + /* configure ADC regular channel group external trigger mode */ + ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_ETMRC); + ADC_CTL1(adc_periph) |= (uint32_t) (trigger_mode << REGULAR_TRIGGER_MODE); + break; + case ADC_INSERTED_CHANNEL: + /* configure ADC inserted channel group external trigger mode */ + ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_ETMIC); + ADC_CTL1(adc_periph) |= (uint32_t) (trigger_mode << INSERTED_TRIGGER_MODE); + break; + default: + break; + } +} + +/*! + \brief enable ADC software trigger + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] adc_channel_group: select the channel group + only one parameter can be selected which is shown as below: + \arg ADC_REGULAR_CHANNEL: regular channel group + \arg ADC_INSERTED_CHANNEL: inserted channel group + \param[out] none + \retval none +*/ +void adc_software_trigger_enable(uint32_t adc_periph , uint8_t adc_channel_group) +{ + switch(adc_channel_group){ + case ADC_REGULAR_CHANNEL: + /* enable ADC regular channel group software trigger */ + ADC_CTL1(adc_periph) |= (uint32_t)ADC_CTL1_SWRCST; + break; + case ADC_INSERTED_CHANNEL: + /* enable ADC inserted channel group software trigger */ + ADC_CTL1(adc_periph) |= (uint32_t)ADC_CTL1_SWICST; + break; + default: + break; + } +} + +/*! + \brief configure end of conversion mode + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] end_selection: end of conversion mode + only one parameter can be selected which is shown as below: + \arg ADC_EOC_SET_SEQUENCE: only at the end of a sequence of regular conversions, the EOC bit is set.Overflow detection is disabled unless DMA=1. + \arg ADC_EOC_SET_CONVERSION: at the end of each regular conversion, the EOC bit is set.Overflow is detected automatically. + \param[out] none + \retval none +*/ +void adc_end_of_conversion_config(uint32_t adc_periph , uint8_t end_selection) +{ + switch(end_selection){ + case ADC_EOC_SET_SEQUENCE: + /* only at the end of a sequence of regular conversions, the EOC bit is set */ + ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_EOCM); + break; + case ADC_EOC_SET_CONVERSION: + /* at the end of each regular conversion, the EOC bit is set.Overflow is detected automatically */ + ADC_CTL1(adc_periph) |= (uint32_t)(ADC_CTL1_EOCM); + break; + default: + break; + } +} + +/*! + \brief read ADC regular group data register + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] none + \param[out] none + \retval the conversion value +*/ +uint16_t adc_regular_data_read(uint32_t adc_periph) +{ + return (uint16_t)(ADC_RDATA(adc_periph)); +} + +/*! + \brief read ADC inserted group data register + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] inserted_channel : insert channel select + only one parameter can be selected which is shown as below: + \arg ADC_INSERTED_CHANNEL_0: inserted Channel0 + \arg ADC_INSERTED_CHANNEL_1: inserted channel1 + \arg ADC_INSERTED_CHANNEL_2: inserted Channel2 + \arg ADC_INSERTED_CHANNEL_3: inserted Channel3 + \param[out] none + \retval the conversion value +*/ +uint16_t adc_inserted_data_read(uint32_t adc_periph , uint8_t inserted_channel) +{ + uint32_t idata; + /* read the data of the selected channel */ + switch(inserted_channel){ + case ADC_INSERTED_CHANNEL_0: + /* read the data of channel 0 */ + idata = ADC_IDATA0(adc_periph); + break; + case ADC_INSERTED_CHANNEL_1: + /* read the data of channel 1 */ + idata = ADC_IDATA1(adc_periph); + break; + case ADC_INSERTED_CHANNEL_2: + /* read the data of channel 2 */ + idata = ADC_IDATA2(adc_periph); + break; + case ADC_INSERTED_CHANNEL_3: + /* read the data of channel 3 */ + idata = ADC_IDATA3(adc_periph); + break; + default: + idata = 0U; + break; + } + return (uint16_t)idata; +} + +/*! + \brief disable ADC analog watchdog single channel + \param[in] adc_periph: ADCx,x=0,1,2 + \param[out] none + \retval none +*/ +void adc_watchdog_single_channel_disable(uint32_t adc_periph ) +{ + ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_WDSC); +} + +/*! + \brief enable ADC analog watchdog single channel + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] adc_channel: the selected ADC channel + only one parameter can be selected which is shown as below: + \arg ADC_CHANNEL_x: ADC Channelx(x=0..18) + \param[out] none + \retval none +*/ +void adc_watchdog_single_channel_enable(uint32_t adc_periph , uint8_t adc_channel) +{ + ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_WDCHSEL); + + /* analog watchdog channel select */ + ADC_CTL0(adc_periph) |= (uint32_t)adc_channel; + ADC_CTL0(adc_periph) |= (uint32_t) ADC_CTL0_WDSC; +} + +/*! + \brief configure ADC analog watchdog group channel + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] adc_channel_group: the channel group use analog watchdog + only one parameter can be selected which is shown as below: + \arg ADC_REGULAR_CHANNEL: regular channel group + \arg ADC_INSERTED_CHANNEL: inserted channel group + \arg ADC_REGULAR_INSERTED_CHANNEL: both regular and inserted group + \param[out] none + \retval none +*/ +void adc_watchdog_group_channel_enable(uint32_t adc_periph , uint8_t adc_channel_group) +{ + ADC_CTL0(adc_periph) &= ~((uint32_t)(ADC_CTL0_RWDEN | ADC_CTL0_IWDEN | ADC_CTL0_WDSC)); + /* select the group */ + switch(adc_channel_group){ + case ADC_REGULAR_CHANNEL: + /* regular channel analog watchdog enable */ + ADC_CTL0(adc_periph) |= (uint32_t) ADC_CTL0_RWDEN; + break; + case ADC_INSERTED_CHANNEL: + /* inserted channel analog watchdog enable */ + ADC_CTL0(adc_periph) |= (uint32_t) ADC_CTL0_IWDEN; + break; + case ADC_REGULAR_INSERTED_CHANNEL: + /* regular and inserted channel analog watchdog enable */ + ADC_CTL0(adc_periph) |= (uint32_t)(ADC_CTL0_RWDEN | ADC_CTL0_IWDEN); + break; + default: + break; + } +} + +/*! + \brief disable ADC analog watchdog + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] adc_channel_group: the channel group use analog watchdog + only one parameter can be selected which is shown as below: + \arg ADC_REGULAR_CHANNEL: regular channel group + \arg ADC_INSERTED_CHANNEL: inserted channel group + \arg ADC_REGULAR_INSERTED_CHANNEL: both regular and inserted group + \param[out] none + \retval none +*/ +void adc_watchdog_disable(uint32_t adc_periph , uint8_t adc_channel_group) +{ + /* select the group */ + switch(adc_channel_group){ + case ADC_REGULAR_CHANNEL: + /* disable ADC analog watchdog regular channel group */ + ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_RWDEN); + break; + case ADC_INSERTED_CHANNEL: + /* disable ADC analog watchdog inserted channel group */ + ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_IWDEN); + break; + case ADC_REGULAR_INSERTED_CHANNEL: + /* disable ADC analog watchdog regular and inserted channel group */ + ADC_CTL0(adc_periph) &= ~((uint32_t)(ADC_CTL0_RWDEN | ADC_CTL0_IWDEN)); + break; + default: + break; + } +} + +/*! + \brief configure ADC analog watchdog threshold + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] low_threshold: analog watchdog low threshold,0..4095 + \param[in] high_threshold: analog watchdog high threshold,0..4095 + \param[out] none + \retval none +*/ +void adc_watchdog_threshold_config(uint32_t adc_periph , uint16_t low_threshold , uint16_t high_threshold) +{ + /* configure ADC analog watchdog low threshold */ + ADC_WDLT(adc_periph) = (uint32_t)WDLT_WDLT(low_threshold); + /* configure ADC analog watchdog high threshold */ + ADC_WDHT(adc_periph) = (uint32_t)WDHT_WDHT(high_threshold); +} + +/*! + \brief get the ADC flag bits + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] adc_flag: the adc flag bits + only one parameter can be selected which is shown as below: + \arg ADC_FLAG_WDE: analog watchdog event flag + \arg ADC_FLAG_EOC: end of group conversion flag + \arg ADC_FLAG_EOIC: end of inserted group conversion flag + \arg ADC_FLAG_STIC: start flag of inserted channel group + \arg ADC_FLAG_STRC: start flag of regular channel group + \arg ADC_FLAG_ROVF: regular data register overflow flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus adc_flag_get(uint32_t adc_periph , uint32_t adc_flag) +{ + FlagStatus reval = RESET; + if(ADC_STAT(adc_periph) & adc_flag){ + reval = SET; + } + return reval; + +} + +/*! + \brief clear the ADC flag bits + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] adc_flag: the adc flag bits + only one parameter can be selected which is shown as below: + \arg ADC_FLAG_WDE: analog watchdog event flag + \arg ADC_FLAG_EOC: end of group conversion flag + \arg ADC_FLAG_EOIC: end of inserted group conversion flag + \arg ADC_FLAG_STIC: start flag of inserted channel group + \arg ADC_FLAG_STRC: start flag of regular channel group + \arg ADC_FLAG_ROVF: regular data register overflow flag + \param[out] none + \retval none +*/ +void adc_flag_clear(uint32_t adc_periph , uint32_t adc_flag) +{ + ADC_STAT(adc_periph) &= ~((uint32_t)adc_flag); +} + +/*! + \brief get the bit state of ADCx software start conversion + \param[in] adc_periph: ADCx, x=0,1,2 only one among these parameters can be selected + \param[in] none + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus adc_regular_software_startconv_flag_get(uint32_t adc_periph) +{ + FlagStatus reval = RESET; + if((uint32_t)RESET != (ADC_STAT(adc_periph) & ADC_STAT_STRC)){ + reval = SET; + } + return reval; +} + +/*! + \brief get the bit state of ADCx software inserted channel start conversion + \param[in] adc_periph: ADCx, x=0,1,2 only one among these parameters can be selected + \param[in] none + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus adc_inserted_software_startconv_flag_get(uint32_t adc_periph) +{ + FlagStatus reval = RESET; + if((uint32_t)RESET != (ADC_STAT(adc_periph) & ADC_STAT_STIC)){ + reval = SET; + } + return reval; +} + +/*! + \brief get the ADC interrupt bits + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] adc_interrupt: the adc interrupt bits + only one parameter can be selected which is shown as below: + \arg ADC_INT_FLAG_WDE: analog watchdog interrupt + \arg ADC_INT_FLAG_EOC: end of group conversion interrupt + \arg ADC_INT_FLAG_EOIC: end of inserted group conversion interrupt + \arg ADC_INT_FLAG_ROVF: regular data register overflow interrupt + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus adc_interrupt_flag_get(uint32_t adc_periph , uint32_t adc_interrupt) +{ + FlagStatus interrupt_flag = RESET; + uint32_t state; + /* check the interrupt bits */ + switch(adc_interrupt){ + case ADC_INT_FLAG_WDE: + /* get the ADC analog watchdog interrupt bits */ + state = ADC_STAT(adc_periph) & ADC_STAT_WDE; + if((ADC_CTL0(adc_periph) & ADC_CTL0_WDEIE) && state){ + interrupt_flag = SET; + } + break; + case ADC_INT_FLAG_EOC: + /* get the ADC end of group conversion interrupt bits */ + state = ADC_STAT(adc_periph) & ADC_STAT_EOC; + if((ADC_CTL0(adc_periph) & ADC_CTL0_EOCIE) && state){ + interrupt_flag = SET; + } + break; + case ADC_INT_FLAG_EOIC: + /* get the ADC end of inserted group conversion interrupt bits */ + state = ADC_STAT(adc_periph) & ADC_STAT_EOIC; + if((ADC_CTL0(adc_periph) & ADC_CTL0_EOICIE) && state){ + interrupt_flag = SET; + } + break; + case ADC_INT_FLAG_ROVF: + /* get the ADC regular data register overflow interrupt bits */ + state = ADC_STAT(adc_periph) & ADC_STAT_ROVF; + if((ADC_CTL0(adc_periph) & ADC_CTL0_ROVFIE) && state){ + interrupt_flag = SET; + } + break; + default: + break; + } + return interrupt_flag; +} + +/*! + \brief clear the ADC flag + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] adc_interrupt: the adc status flag + only one parameter can be selected which is shown as below: + \arg ADC_INT_FLAG_WDE: analog watchdog interrupt + \arg ADC_INT_FLAG_EOC: end of group conversion interrupt + \arg ADC_INT_FLAG_EOIC: end of inserted group conversion interrupt + \arg ADC_INT_FLAG_ROVF: regular data register overflow interrupt + \param[out] none + \retval none +*/ +void adc_interrupt_flag_clear(uint32_t adc_periph , uint32_t adc_interrupt) +{ + ADC_STAT(adc_periph) &= ~((uint32_t)adc_interrupt); +} + +/*! + \brief enable ADC interrupt + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] adc_interrupt: the adc interrupt flag + only one parameter can be selected which is shown as below: + \arg ADC_INT_WDE: analog watchdog interrupt flag + \arg ADC_INT_EOC: end of group conversion interrupt flag + \arg ADC_INT_EOIC: end of inserted group conversion interrupt flag + \arg ADC_INT_ROVF: regular data register overflow interrupt flag + \param[out] none + \retval none +*/ +void adc_interrupt_enable(uint32_t adc_periph , uint32_t adc_interrupt) +{ + switch(adc_interrupt){ + case ADC_INT_WDE: + /* enable analog watchdog interrupt */ + ADC_CTL0(adc_periph) |= (uint32_t) ADC_CTL0_WDEIE; + break; + case ADC_INT_EOC: + /* enable end of group conversion interrupt */ + ADC_CTL0(adc_periph) |= (uint32_t) ADC_CTL0_EOCIE; + break; + case ADC_INT_EOIC: + /* enable end of inserted group conversion interrupt */ + ADC_CTL0(adc_periph) |= (uint32_t) ADC_CTL0_EOICIE; + break; + case ADC_INT_ROVF: + ADC_CTL0(adc_periph) |= (uint32_t) ADC_CTL0_ROVFIE; + break; + default: + break; + } +} + +/*! + \brief disable ADC interrupt + \param[in] adc_periph: ADCx,x=0,1,2 + \param[in] adc_flag: the adc interrupt flag + only one parameter can be selected which is shown as below: + \arg ADC_INT_WDE: analog watchdog interrupt flag + \arg ADC_INT_EOC: end of group conversion interrupt flag + \arg ADC_INT_EOIC: end of inserted group conversion interrupt flag + \arg ADC_INT_ROVF: regular data register overflow interrupt flag + \param[out] none + \retval none +*/ +void adc_interrupt_disable(uint32_t adc_periph , uint32_t adc_interrupt) +{ + switch(adc_interrupt){ + /* select the interrupt source */ + case ADC_INT_WDE: + ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_WDEIE); + break; + case ADC_INT_EOC: + ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_EOCIE); + break; + case ADC_INT_EOIC: + ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_EOICIE); + break; + case ADC_INT_ROVF: + ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_ROVFIE); + break; + default: + break; + } +} + +/*! + \brief configure the ADC sync mode + \param[in] sync_mode: ADC sync mode + only one parameter can be selected which is shown as below: + \arg ADC_SYNC_MODE_INDEPENDENT: all the ADCs work independently + \arg ADC_DAUL_REGULAL_PARALLEL_INSERTED_PARALLEL: ADC0 and ADC1 work in combined regular parallel & inserted parallel mode + \arg ADC_DAUL_REGULAL_PARALLEL_INSERTED_ROTATION: ADC0 and ADC1 work in combined regular parallel & trigger rotation mode + \arg ADC_DAUL_INSERTED_PARALLEL: ADC0 and ADC1 work in inserted parallel mode + \arg ADC_DAUL_REGULAL_PARALLEL: ADC0 and ADC1 work in regular parallel mode + \arg ADC_DAUL_REGULAL_FOLLOW_UP: ADC0 and ADC1 work in follow-up mode + \arg ADC_DAUL_INSERTED_TRRIGGER_ROTATION: ADC0 and ADC1 work in trigger rotation mode + \arg ADC_ALL_REGULAL_PARALLEL_INSERTED_PARALLEL: all ADCs work in combined regular parallel & inserted parallel mode + \arg ADC_ALL_REGULAL_PARALLEL_INSERTED_ROTATION: all ADCs work in combined regular parallel & trigger rotation mode + \arg ADC_ALL_INSERTED_PARALLEL: all ADCs work in inserted parallel mode + \arg ADC_ALL_REGULAL_PARALLEL: all ADCs work in regular parallel mode + \arg ADC_ALL_REGULAL_FOLLOW_UP: all ADCs work in follow-up mode + \arg ADC_ALL_INSERTED_TRRIGGER_ROTATION: all ADCs work in trigger rotation mode + \param[out] none + \retval none +*/ +void adc_sync_mode_config(uint32_t sync_mode) +{ + ADC_SYNCCTL &= ~(ADC_SYNCCTL_SYNCM); + ADC_SYNCCTL |= sync_mode; +} + +/*! + \brief configure the delay between 2 sampling phases in ADC sync modes + \param[in] sample_delay: the delay between 2 sampling phases in ADC sync modes + only one parameter can be selected which is shown as below: + \arg ADC_SYNC_DELAY_xCYCLE: x=5..20,the delay between 2 sampling phases in ADC sync modes is x ADC clock cycles + \param[out] none + \retval none +*/ +void adc_sync_delay_config(uint32_t sample_delay) +{ + ADC_SYNCCTL &= ~(ADC_SYNCCTL_SYNCDLY); + ADC_SYNCCTL |= sample_delay; +} + +/*! + \brief configure ADC sync DMA mode selection + \param[in] dma_mode: ADC sync DMA mode + only one parameter can be selected which is shown as below: + \arg ADC_SYNC_DMA_DISABLE: ADC sync DMA disabled + \arg ADC_SYNC_DMA_MODE0: ADC sync DMA mode 0 + \arg ADC_SYNC_DMA_MODE1: ADC sync DMA mode 1 + \param[out] none + \retval none +*/ +void adc_sync_dma_config(uint32_t dma_mode ) +{ + ADC_SYNCCTL &= ~(ADC_SYNCCTL_SYNCDMA); + ADC_SYNCCTL |= dma_mode; +} + +/*! + \brief configure ADC sync DMA engine is disabled after the end of transfer signal from DMA controller is detected + \param[in] none + \param[out] none + \retval none +*/ +void adc_sync_dma_request_after_last_enable(void) +{ + ADC_SYNCCTL |= ADC_SYNCCTL_SYNCDDM; +} + +/*! + \brief configure ADC sync DMA engine issues requests according to the SYNCDMA bits + \param[in] none + \param[out] none + \retval none +*/ +void adc_sync_dma_request_after_last_disable(void) +{ + ADC_SYNCCTL &= ~(ADC_SYNCCTL_SYNCDDM); +} + +/*! + \brief read ADC sync regular data register + \param[in] none + \param[out] none + \retval sync regular data +*/ +uint32_t adc_sync_regular_data_read(void) +{ + return (uint32_t)ADC_SYNCDATA; +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_can.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_can.c new file mode 100644 index 0000000000..11f1ccfc87 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_can.c @@ -0,0 +1,1018 @@ +/*! + \file gd32f4xx_can.c + \brief CAN driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2019-11-27, V2.0.1, firmware for GD32F4xx + \version 2020-07-14, V2.0.2, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_can.h" + +#define CAN_ERROR_HANDLE(s) do{}while(1) + +/*! + \brief deinitialize CAN + \param[in] can_periph + \arg CANx(x=0,1) + \param[out] none + \retval none +*/ +void can_deinit(uint32_t can_periph) +{ + if(CAN0 == can_periph){ + rcu_periph_reset_enable(RCU_CAN0RST); + rcu_periph_reset_disable(RCU_CAN0RST); + }else{ + rcu_periph_reset_enable(RCU_CAN1RST); + rcu_periph_reset_disable(RCU_CAN1RST); + } +} + +/*! + \brief initialize CAN parameter struct with a default value + \param[in] type: the type of CAN parameter struct + only one parameter can be selected which is shown as below: + \arg CAN_INIT_STRUCT: the CAN initial struct + \arg CAN_FILTER_STRUCT: the CAN filter struct + \arg CAN_TX_MESSAGE_STRUCT: the CAN TX message struct + \arg CAN_RX_MESSAGE_STRUCT: the CAN RX message struct + \param[in] p_struct: the pointer of the specific struct + \param[out] none + \retval none +*/ +void can_struct_para_init(can_struct_type_enum type, void* p_struct) +{ + uint8_t i; + + /* get type of the struct */ + switch(type){ + /* used for can_init() */ + case CAN_INIT_STRUCT: + ((can_parameter_struct*)p_struct)->auto_bus_off_recovery = DISABLE; + ((can_parameter_struct*)p_struct)->no_auto_retrans = DISABLE; + ((can_parameter_struct*)p_struct)->auto_wake_up = DISABLE; + ((can_parameter_struct*)p_struct)->prescaler = 0x03FFU; + ((can_parameter_struct*)p_struct)->rec_fifo_overwrite = DISABLE; + ((can_parameter_struct*)p_struct)->resync_jump_width = CAN_BT_SJW_1TQ; + ((can_parameter_struct*)p_struct)->time_segment_1 = CAN_BT_BS1_3TQ; + ((can_parameter_struct*)p_struct)->time_segment_2 = CAN_BT_BS2_1TQ; + ((can_parameter_struct*)p_struct)->time_triggered = DISABLE; + ((can_parameter_struct*)p_struct)->trans_fifo_order = DISABLE; + ((can_parameter_struct*)p_struct)->working_mode = CAN_NORMAL_MODE; + + break; + /* used for can_filter_init() */ + case CAN_FILTER_STRUCT: + ((can_filter_parameter_struct*)p_struct)->filter_bits = CAN_FILTERBITS_32BIT; + ((can_filter_parameter_struct*)p_struct)->filter_enable = DISABLE; + ((can_filter_parameter_struct*)p_struct)->filter_fifo_number = CAN_FIFO0; + ((can_filter_parameter_struct*)p_struct)->filter_list_high = 0x0000U; + ((can_filter_parameter_struct*)p_struct)->filter_list_low = 0x0000U; + ((can_filter_parameter_struct*)p_struct)->filter_mask_high = 0x0000U; + ((can_filter_parameter_struct*)p_struct)->filter_mask_low = 0x0000U; + ((can_filter_parameter_struct*)p_struct)->filter_mode = CAN_FILTERMODE_MASK; + ((can_filter_parameter_struct*)p_struct)->filter_number = 0U; + + break; + /* used for can_message_transmit() */ + case CAN_TX_MESSAGE_STRUCT: + for(i = 0U; i < 8U; i++){ + ((can_trasnmit_message_struct*)p_struct)->tx_data[i] = 0U; + } + + ((can_trasnmit_message_struct*)p_struct)->tx_dlen = 0u; + ((can_trasnmit_message_struct*)p_struct)->tx_efid = 0U; + ((can_trasnmit_message_struct*)p_struct)->tx_ff = (uint8_t)CAN_FF_STANDARD; + ((can_trasnmit_message_struct*)p_struct)->tx_ft = (uint8_t)CAN_FT_DATA; + ((can_trasnmit_message_struct*)p_struct)->tx_sfid = 0U; + + break; + /* used for can_message_receive() */ + case CAN_RX_MESSAGE_STRUCT: + for(i = 0U; i < 8U; i++){ + ((can_receive_message_struct*)p_struct)->rx_data[i] = 0U; + } + + ((can_receive_message_struct*)p_struct)->rx_dlen = 0U; + ((can_receive_message_struct*)p_struct)->rx_efid = 0U; + ((can_receive_message_struct*)p_struct)->rx_ff = (uint8_t)CAN_FF_STANDARD; + ((can_receive_message_struct*)p_struct)->rx_fi = 0U; + ((can_receive_message_struct*)p_struct)->rx_ft = (uint8_t)CAN_FT_DATA; + ((can_receive_message_struct*)p_struct)->rx_sfid = 0U; + + break; + + default: + CAN_ERROR_HANDLE("parameter is invalid \r\n"); + } +} + +/*! + \brief initialize CAN + \param[in] can_periph + \arg CANx(x=0,1) + \param[in] can_parameter_init: parameters for CAN initializtion + \arg working_mode: CAN_NORMAL_MODE, CAN_LOOPBACK_MODE, CAN_SILENT_MODE, CAN_SILENT_LOOPBACK_MODE + \arg resync_jump_width: CAN_BT_SJW_xTQ(x=1, 2, 3, 4) + \arg time_segment_1: CAN_BT_BS1_xTQ(1..16) + \arg time_segment_2: CAN_BT_BS2_xTQ(1..8) + \arg time_triggered: ENABLE or DISABLE + \arg auto_bus_off_recovery: ENABLE or DISABLE + \arg auto_wake_up: ENABLE or DISABLE + \arg no_auto_retrans: ENABLE or DISABLE + \arg rec_fifo_overwrite: ENABLE or DISABLE + \arg trans_fifo_order: ENABLE or DISABLE + \arg prescaler: 0x0001 - 0x0400 + \param[out] none + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus can_init(uint32_t can_periph, can_parameter_struct* can_parameter_init) +{ + uint32_t timeout = CAN_TIMEOUT; + ErrStatus flag = ERROR; + + /* disable sleep mode */ + CAN_CTL(can_periph) &= ~CAN_CTL_SLPWMOD; + /* enable initialize mode */ + CAN_CTL(can_periph) |= CAN_CTL_IWMOD; + /* wait ACK */ + while((CAN_STAT_IWS != (CAN_STAT(can_periph) & CAN_STAT_IWS)) && (0U != timeout)){ + timeout--; + } + /* check initialize working success */ + if(CAN_STAT_IWS != (CAN_STAT(can_periph) & CAN_STAT_IWS)){ + flag = ERROR; + }else{ + /* set the bit timing register */ + CAN_BT(can_periph) = (BT_MODE((uint32_t)can_parameter_init->working_mode) | \ + BT_SJW((uint32_t)can_parameter_init->resync_jump_width) | \ + BT_BS1((uint32_t)can_parameter_init->time_segment_1) | \ + BT_BS2((uint32_t)can_parameter_init->time_segment_2) | \ + BT_BAUDPSC(((uint32_t)(can_parameter_init->prescaler) - 1U))); + + /* time trigger communication mode */ + if(ENABLE == can_parameter_init->time_triggered){ + CAN_CTL(can_periph) |= CAN_CTL_TTC; + }else{ + CAN_CTL(can_periph) &= ~CAN_CTL_TTC; + } + /* automatic bus-off managment */ + if(ENABLE == can_parameter_init->auto_bus_off_recovery){ + CAN_CTL(can_periph) |= CAN_CTL_ABOR; + }else{ + CAN_CTL(can_periph) &= ~CAN_CTL_ABOR; + } + /* automatic wakeup mode */ + if(ENABLE == can_parameter_init->auto_wake_up){ + CAN_CTL(can_periph) |= CAN_CTL_AWU; + }else{ + CAN_CTL(can_periph) &= ~CAN_CTL_AWU; + } + /* automatic retransmission mode disable*/ + if(ENABLE == can_parameter_init->no_auto_retrans){ + CAN_CTL(can_periph) |= CAN_CTL_ARD; + }else{ + CAN_CTL(can_periph) &= ~CAN_CTL_ARD; + } + /* receive fifo overwrite mode */ + if(ENABLE == can_parameter_init->rec_fifo_overwrite){ + CAN_CTL(can_periph) |= CAN_CTL_RFOD; + }else{ + CAN_CTL(can_periph) &= ~CAN_CTL_RFOD; + } + /* transmit fifo order */ + if(ENABLE == can_parameter_init->trans_fifo_order){ + CAN_CTL(can_periph) |= CAN_CTL_TFO; + }else{ + CAN_CTL(can_periph) &= ~CAN_CTL_TFO; + } + /* disable initialize mode */ + CAN_CTL(can_periph) &= ~CAN_CTL_IWMOD; + timeout = CAN_TIMEOUT; + /* wait the ACK */ + while((CAN_STAT_IWS == (CAN_STAT(can_periph) & CAN_STAT_IWS)) && (0U != timeout)){ + timeout--; + } + /* check exit initialize mode */ + if(0U != timeout){ + flag = SUCCESS; + } + } + return flag; +} + +/*! + \brief initialize CAN filter + \param[in] can_filter_parameter_init: struct for CAN filter initialization + \arg filter_list_high: 0x0000 - 0xFFFF + \arg filter_list_low: 0x0000 - 0xFFFF + \arg filter_mask_high: 0x0000 - 0xFFFF + \arg filter_mask_low: 0x0000 - 0xFFFF + \arg filter_fifo_number: CAN_FIFO0, CAN_FIFO1 + \arg filter_number: 0 - 27 + \arg filter_mode: CAN_FILTERMODE_MASK, CAN_FILTERMODE_LIST + \arg filter_bits: CAN_FILTERBITS_32BIT, CAN_FILTERBITS_16BIT + \arg filter_enable: ENABLE or DISABLE + \param[out] none + \retval none +*/ +void can_filter_init(can_filter_parameter_struct* can_filter_parameter_init) +{ + uint32_t val = 0U; + + val = ((uint32_t)1) << (can_filter_parameter_init->filter_number); + /* filter lock disable */ + CAN_FCTL(CAN0) |= CAN_FCTL_FLD; + /* disable filter */ + CAN_FW(CAN0) &= ~(uint32_t)val; + + /* filter 16 bits */ + if(CAN_FILTERBITS_16BIT == can_filter_parameter_init->filter_bits){ + /* set filter 16 bits */ + CAN_FSCFG(CAN0) &= ~(uint32_t)val; + /* first 16 bits list and first 16 bits mask or first 16 bits list and second 16 bits list */ + CAN_FDATA0(CAN0, can_filter_parameter_init->filter_number) = \ + FDATA_MASK_HIGH((can_filter_parameter_init->filter_mask_low) & CAN_FILTER_MASK_16BITS) | \ + FDATA_MASK_LOW((can_filter_parameter_init->filter_list_low) & CAN_FILTER_MASK_16BITS); + /* second 16 bits list and second 16 bits mask or third 16 bits list and fourth 16 bits list */ + CAN_FDATA1(CAN0, can_filter_parameter_init->filter_number) = \ + FDATA_MASK_HIGH((can_filter_parameter_init->filter_mask_high) & CAN_FILTER_MASK_16BITS) | \ + FDATA_MASK_LOW((can_filter_parameter_init->filter_list_high) & CAN_FILTER_MASK_16BITS); + } + /* filter 32 bits */ + if(CAN_FILTERBITS_32BIT == can_filter_parameter_init->filter_bits){ + /* set filter 32 bits */ + CAN_FSCFG(CAN0) |= (uint32_t)val; + /* 32 bits list or first 32 bits list */ + CAN_FDATA0(CAN0, can_filter_parameter_init->filter_number) = \ + FDATA_MASK_HIGH((can_filter_parameter_init->filter_list_high) & CAN_FILTER_MASK_16BITS) | + FDATA_MASK_LOW((can_filter_parameter_init->filter_list_low) & CAN_FILTER_MASK_16BITS); + /* 32 bits mask or second 32 bits list */ + CAN_FDATA1(CAN0, can_filter_parameter_init->filter_number) = \ + FDATA_MASK_HIGH((can_filter_parameter_init->filter_mask_high) & CAN_FILTER_MASK_16BITS) | + FDATA_MASK_LOW((can_filter_parameter_init->filter_mask_low) & CAN_FILTER_MASK_16BITS); + } + + /* filter mode */ + if(CAN_FILTERMODE_MASK == can_filter_parameter_init->filter_mode){ + /* mask mode */ + CAN_FMCFG(CAN0) &= ~(uint32_t)val; + }else{ + /* list mode */ + CAN_FMCFG(CAN0) |= (uint32_t)val; + } + + /* filter FIFO */ + if(CAN_FIFO0 == (can_filter_parameter_init->filter_fifo_number)){ + /* FIFO0 */ + CAN_FAFIFO(CAN0) &= ~(uint32_t)val; + }else{ + /* FIFO1 */ + CAN_FAFIFO(CAN0) |= (uint32_t)val; + } + + /* filter working */ + if(ENABLE == can_filter_parameter_init->filter_enable){ + + CAN_FW(CAN0) |= (uint32_t)val; + } + + /* filter lock enable */ + CAN_FCTL(CAN0) &= ~CAN_FCTL_FLD; +} + +/*! + \brief set CAN1 fliter start bank number + \param[in] start_bank: CAN1 start bank number + only one parameter can be selected which is shown as below: + \arg (1..27) + \param[out] none + \retval none +*/ +void can1_filter_start_bank(uint8_t start_bank) +{ + /* filter lock disable */ + CAN_FCTL(CAN0) |= CAN_FCTL_FLD; + /* set CAN1 filter start number */ + CAN_FCTL(CAN0) &= ~(uint32_t)CAN_FCTL_HBC1F; + CAN_FCTL(CAN0) |= FCTL_HBC1F(start_bank); + /* filter lock enaable */ + CAN_FCTL(CAN0) &= ~CAN_FCTL_FLD; +} + +/*! + \brief enable CAN debug freeze + \param[in] can_periph + \arg CANx(x=0,1) + \param[out] none + \retval none +*/ +void can_debug_freeze_enable(uint32_t can_periph) +{ + /* set DFZ bit */ + CAN_CTL(can_periph) |= CAN_CTL_DFZ; + if(CAN0 == can_periph){ + dbg_periph_enable(DBG_CAN0_HOLD); + }else{ + dbg_periph_enable(DBG_CAN1_HOLD); + } +} + +/*! + \brief disable CAN debug freeze + \param[in] can_periph + \arg CANx(x=0,1) + \param[out] none + \retval none +*/ +void can_debug_freeze_disable(uint32_t can_periph) +{ + /* set DFZ bit */ + CAN_CTL(can_periph) &= ~CAN_CTL_DFZ; + if(CAN0 == can_periph){ + dbg_periph_disable(DBG_CAN0_HOLD); + }else{ + dbg_periph_disable(DBG_CAN1_HOLD); + } +} + +/*! + \brief enable CAN time trigger mode + \param[in] can_periph + \arg CANx(x=0,1) + \param[out] none + \retval none +*/ +void can_time_trigger_mode_enable(uint32_t can_periph) +{ + uint8_t mailbox_number; + + /* enable the tcc mode */ + CAN_CTL(can_periph) |= CAN_CTL_TTC; + /* enable time stamp */ + for(mailbox_number = 0U; mailbox_number < 3U; mailbox_number++){ + CAN_TMP(can_periph, mailbox_number) |= CAN_TMP_TSEN; + } +} + +/*! + \brief disable CAN time trigger mode + \param[in] can_periph + \arg CANx(x=0,1) + \param[out] none + \retval none +*/ +void can_time_trigger_mode_disable(uint32_t can_periph) +{ + uint8_t mailbox_number; + + /* disable the TCC mode */ + CAN_CTL(can_periph) &= ~CAN_CTL_TTC; + /* reset TSEN bits */ + for(mailbox_number = 0U; mailbox_number < 3U; mailbox_number++){ + CAN_TMP(can_periph, mailbox_number) &= ~CAN_TMP_TSEN; + } +} + +/*! + \brief transmit CAN message + \param[in] can_periph + \arg CANx(x=0,1) + \param[in] transmit_message: struct for CAN transmit message + \arg tx_sfid: 0x00000000 - 0x000007FF + \arg tx_efid: 0x00000000 - 0x1FFFFFFF + \arg tx_ff: CAN_FF_STANDARD, CAN_FF_EXTENDED + \arg tx_ft: CAN_FT_DATA, CAN_FT_REMOTE + \arg tx_dlen: 0 - 8 + \arg tx_data[]: 0x00 - 0xFF + \param[out] none + \retval mailbox_number +*/ +uint8_t can_message_transmit(uint32_t can_periph, can_trasnmit_message_struct* transmit_message) +{ + uint8_t mailbox_number = CAN_MAILBOX0; + + /* select one empty mailbox */ + if(CAN_TSTAT_TME0 == (CAN_TSTAT(can_periph)&CAN_TSTAT_TME0)){ + mailbox_number = CAN_MAILBOX0; + }else if(CAN_TSTAT_TME1 == (CAN_TSTAT(can_periph)&CAN_TSTAT_TME1)){ + mailbox_number = CAN_MAILBOX1; + }else if(CAN_TSTAT_TME2 == (CAN_TSTAT(can_periph)&CAN_TSTAT_TME2)){ + mailbox_number = CAN_MAILBOX2; + }else{ + mailbox_number = CAN_NOMAILBOX; + } + /* return no mailbox empty */ + if(CAN_NOMAILBOX == mailbox_number){ + return CAN_NOMAILBOX; + } + + CAN_TMI(can_periph, mailbox_number) &= CAN_TMI_TEN; + if(CAN_FF_STANDARD == transmit_message->tx_ff){ + /* set transmit mailbox standard identifier */ + CAN_TMI(can_periph, mailbox_number) |= (uint32_t)(TMI_SFID(transmit_message->tx_sfid) | \ + transmit_message->tx_ft); + }else{ + /* set transmit mailbox extended identifier */ + CAN_TMI(can_periph, mailbox_number) |= (uint32_t)(TMI_EFID(transmit_message->tx_efid) | \ + transmit_message->tx_ff | \ + transmit_message->tx_ft); + } + /* set the data length */ + CAN_TMP(can_periph, mailbox_number) &= ~CAN_TMP_DLENC; + CAN_TMP(can_periph, mailbox_number) |= transmit_message->tx_dlen; + /* set the data */ + CAN_TMDATA0(can_periph, mailbox_number) = TMDATA0_DB3(transmit_message->tx_data[3]) | \ + TMDATA0_DB2(transmit_message->tx_data[2]) | \ + TMDATA0_DB1(transmit_message->tx_data[1]) | \ + TMDATA0_DB0(transmit_message->tx_data[0]); + CAN_TMDATA1(can_periph, mailbox_number) = TMDATA1_DB7(transmit_message->tx_data[7]) | \ + TMDATA1_DB6(transmit_message->tx_data[6]) | \ + TMDATA1_DB5(transmit_message->tx_data[5]) | \ + TMDATA1_DB4(transmit_message->tx_data[4]); + /* enable transmission */ + CAN_TMI(can_periph, mailbox_number) |= CAN_TMI_TEN; + + return mailbox_number; +} + +/*! + \brief get CAN transmit state + \param[in] can_periph + \arg CANx(x=0,1) + \param[in] mailbox_number + only one parameter can be selected which is shown as below: + \arg CAN_MAILBOX(x=0,1,2) + \param[out] none + \retval can_transmit_state_enum +*/ +can_transmit_state_enum can_transmit_states(uint32_t can_periph, uint8_t mailbox_number) +{ + can_transmit_state_enum state = CAN_TRANSMIT_FAILED; + uint32_t val = 0U; + + /* check selected mailbox state */ + switch(mailbox_number){ + /* mailbox0 */ + case CAN_MAILBOX0: + val = CAN_TSTAT(can_periph) & (CAN_TSTAT_MTF0 | CAN_TSTAT_MTFNERR0 | CAN_TSTAT_TME0); + break; + /* mailbox1 */ + case CAN_MAILBOX1: + val = CAN_TSTAT(can_periph) & (CAN_TSTAT_MTF1 | CAN_TSTAT_MTFNERR1 | CAN_TSTAT_TME1); + break; + /* mailbox2 */ + case CAN_MAILBOX2: + val = CAN_TSTAT(can_periph) & (CAN_TSTAT_MTF2 | CAN_TSTAT_MTFNERR2 | CAN_TSTAT_TME2); + break; + default: + val = CAN_TRANSMIT_FAILED; + break; + } + + switch(val){ + /* transmit pending */ + case (CAN_STATE_PENDING): + state = CAN_TRANSMIT_PENDING; + break; + /* mailbox0 transmit succeeded */ + case (CAN_TSTAT_MTF0 | CAN_TSTAT_MTFNERR0 | CAN_TSTAT_TME0): + state = CAN_TRANSMIT_OK; + break; + /* mailbox1 transmit succeeded */ + case (CAN_TSTAT_MTF1 | CAN_TSTAT_MTFNERR1 | CAN_TSTAT_TME1): + state = CAN_TRANSMIT_OK; + break; + /* mailbox2 transmit succeeded */ + case (CAN_TSTAT_MTF2 | CAN_TSTAT_MTFNERR2 | CAN_TSTAT_TME2): + state = CAN_TRANSMIT_OK; + break; + /* transmit failed */ + default: + state = CAN_TRANSMIT_FAILED; + break; + } + return state; +} + +/*! + \brief stop CAN transmission + \param[in] can_periph + \arg CANx(x=0,1) + \param[in] mailbox_number + only one parameter can be selected which is shown as below: + \arg CAN_MAILBOXx(x=0,1,2) + \param[out] none + \retval none +*/ +void can_transmission_stop(uint32_t can_periph, uint8_t mailbox_number) +{ + if(CAN_MAILBOX0 == mailbox_number){ + CAN_TSTAT(can_periph) |= CAN_TSTAT_MST0; + while(CAN_TSTAT_MST0 == (CAN_TSTAT(can_periph) & CAN_TSTAT_MST0)){ + } + }else if(CAN_MAILBOX1 == mailbox_number){ + CAN_TSTAT(can_periph) |= CAN_TSTAT_MST1; + while(CAN_TSTAT_MST1 == (CAN_TSTAT(can_periph) & CAN_TSTAT_MST1)){ + } + }else if(CAN_MAILBOX2 == mailbox_number){ + CAN_TSTAT(can_periph) |= CAN_TSTAT_MST2; + while(CAN_TSTAT_MST2 == (CAN_TSTAT(can_periph) & CAN_TSTAT_MST2)){ + } + }else{ + /* illegal parameters */ + } +} + +/*! + \brief CAN receive message + \param[in] can_periph + \arg CANx(x=0,1) + \param[in] fifo_number + \arg CAN_FIFOx(x=0,1) + \param[out] receive_message: struct for CAN receive message + \arg rx_sfid: 0x00000000 - 0x000007FF + \arg rx_efid: 0x00000000 - 0x1FFFFFFF + \arg rx_ff: CAN_FF_STANDARD, CAN_FF_EXTENDED + \arg rx_ft: CAN_FT_DATA, CAN_FT_REMOTE + \arg rx_dlen: 0 - 8 + \arg rx_data[]: 0x00 - 0xFF + \arg rx_fi: 0 - 27 + \retval none +*/ +void can_message_receive(uint32_t can_periph, uint8_t fifo_number, can_receive_message_struct* receive_message) +{ + /* get the frame format */ + receive_message->rx_ff = (uint8_t)(CAN_RFIFOMI_FF & CAN_RFIFOMI(can_periph, fifo_number)); + if(CAN_FF_STANDARD == receive_message->rx_ff){ + /* get standard identifier */ + receive_message->rx_sfid = (uint32_t)(GET_RFIFOMI_SFID(CAN_RFIFOMI(can_periph, fifo_number))); + }else{ + /* get extended identifier */ + receive_message->rx_efid = (uint32_t)(GET_RFIFOMI_EFID(CAN_RFIFOMI(can_periph, fifo_number))); + } + + /* get frame type */ + receive_message->rx_ft = (uint8_t)(CAN_RFIFOMI_FT & CAN_RFIFOMI(can_periph, fifo_number)); + /* filtering index */ + receive_message->rx_fi = (uint8_t)(GET_RFIFOMP_FI(CAN_RFIFOMP(can_periph, fifo_number))); + /* get recevie data length */ + receive_message->rx_dlen = (uint8_t)(GET_RFIFOMP_DLENC(CAN_RFIFOMP(can_periph, fifo_number))); + + /* receive data */ + receive_message -> rx_data[0] = (uint8_t)(GET_RFIFOMDATA0_DB0(CAN_RFIFOMDATA0(can_periph, fifo_number))); + receive_message -> rx_data[1] = (uint8_t)(GET_RFIFOMDATA0_DB1(CAN_RFIFOMDATA0(can_periph, fifo_number))); + receive_message -> rx_data[2] = (uint8_t)(GET_RFIFOMDATA0_DB2(CAN_RFIFOMDATA0(can_periph, fifo_number))); + receive_message -> rx_data[3] = (uint8_t)(GET_RFIFOMDATA0_DB3(CAN_RFIFOMDATA0(can_periph, fifo_number))); + receive_message -> rx_data[4] = (uint8_t)(GET_RFIFOMDATA1_DB4(CAN_RFIFOMDATA1(can_periph, fifo_number))); + receive_message -> rx_data[5] = (uint8_t)(GET_RFIFOMDATA1_DB5(CAN_RFIFOMDATA1(can_periph, fifo_number))); + receive_message -> rx_data[6] = (uint8_t)(GET_RFIFOMDATA1_DB6(CAN_RFIFOMDATA1(can_periph, fifo_number))); + receive_message -> rx_data[7] = (uint8_t)(GET_RFIFOMDATA1_DB7(CAN_RFIFOMDATA1(can_periph, fifo_number))); + + /* release FIFO */ + if(CAN_FIFO0 == fifo_number){ + CAN_RFIFO0(can_periph) |= CAN_RFIFO0_RFD0; + }else{ + CAN_RFIFO1(can_periph) |= CAN_RFIFO1_RFD1; + } +} + +/*! + \brief release FIFO0 + \param[in] can_periph + \arg CANx(x=0,1) + \param[in] fifo_number + only one parameter can be selected which is shown as below: + \arg CAN_FIFOx(x=0,1) + \param[out] none + \retval none +*/ +void can_fifo_release(uint32_t can_periph, uint8_t fifo_number) +{ + if(CAN_FIFO0 == fifo_number){ + CAN_RFIFO0(can_periph) |= CAN_RFIFO0_RFD0; + }else if(CAN_FIFO1 == fifo_number){ + CAN_RFIFO1(can_periph) |= CAN_RFIFO1_RFD1; + }else{ + /* illegal parameters */ + CAN_ERROR_HANDLE("CAN FIFO NUM is invalid \r\n"); + } +} + +/*! + \brief CAN receive message length + \param[in] can_periph + \arg CANx(x=0,1) + \param[in] fifo_number + only one parameter can be selected which is shown as below: + \arg CAN_FIFOx(x=0,1) + \param[out] none + \retval message length +*/ +uint8_t can_receive_message_length_get(uint32_t can_periph, uint8_t fifo_number) +{ + uint8_t val = 0U; + + if(CAN_FIFO0 == fifo_number){ + /* FIFO0 */ + val = (uint8_t)(CAN_RFIFO0(can_periph) & CAN_RFIF_RFL_MASK); + }else if(CAN_FIFO1 == fifo_number){ + /* FIFO1 */ + val = (uint8_t)(CAN_RFIFO1(can_periph) & CAN_RFIF_RFL_MASK); + }else{ + /* illegal parameters */ + } + return val; +} + +/*! + \brief set CAN working mode + \param[in] can_periph + \arg CANx(x=0,1) + \param[in] can_working_mode + only one parameter can be selected which is shown as below: + \arg CAN_MODE_INITIALIZE + \arg CAN_MODE_NORMAL + \arg CAN_MODE_SLEEP + \param[out] none + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus can_working_mode_set(uint32_t can_periph, uint8_t working_mode) +{ + ErrStatus flag = ERROR; + /* timeout for IWS or also for SLPWS bits */ + uint32_t timeout = CAN_TIMEOUT; + + if(CAN_MODE_INITIALIZE == working_mode){ + /* disable sleep mode */ + CAN_CTL(can_periph) &= (~(uint32_t)CAN_CTL_SLPWMOD); + /* set initialize mode */ + CAN_CTL(can_periph) |= (uint8_t)CAN_CTL_IWMOD; + /* wait the acknowledge */ + while((CAN_STAT_IWS != (CAN_STAT(can_periph) & CAN_STAT_IWS)) && (0U != timeout)){ + timeout--; + } + if(CAN_STAT_IWS != (CAN_STAT(can_periph) & CAN_STAT_IWS)){ + flag = ERROR; + }else{ + flag = SUCCESS; + } + }else if(CAN_MODE_NORMAL == working_mode){ + /* enter normal mode */ + CAN_CTL(can_periph) &= ~(uint32_t)(CAN_CTL_SLPWMOD | CAN_CTL_IWMOD); + /* wait the acknowledge */ + while((0U != (CAN_STAT(can_periph) & (CAN_STAT_IWS | CAN_STAT_SLPWS))) && (0U != timeout)){ + timeout--; + } + if(0U != (CAN_STAT(can_periph) & (CAN_STAT_IWS | CAN_STAT_SLPWS))){ + flag = ERROR; + }else{ + flag = SUCCESS; + } + }else if(CAN_MODE_SLEEP == working_mode){ + /* disable initialize mode */ + CAN_CTL(can_periph) &= (~(uint32_t)CAN_CTL_IWMOD); + /* set sleep mode */ + CAN_CTL(can_periph) |= (uint8_t)CAN_CTL_SLPWMOD; + /* wait the acknowledge */ + while((CAN_STAT_SLPWS != (CAN_STAT(can_periph) & CAN_STAT_SLPWS)) && (0U != timeout)){ + timeout--; + } + if(CAN_STAT_SLPWS != (CAN_STAT(can_periph) & CAN_STAT_SLPWS)){ + flag = ERROR; + }else{ + flag = SUCCESS; + } + }else{ + flag = ERROR; + } + return flag; +} + +/*! + \brief wake up CAN + \param[in] can_periph + \arg CANx(x=0,1) + \param[out] none + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus can_wakeup(uint32_t can_periph) +{ + ErrStatus flag = ERROR; + uint32_t timeout = CAN_TIMEOUT; + + /* wakeup */ + CAN_CTL(can_periph) &= ~CAN_CTL_SLPWMOD; + + while((0U != (CAN_STAT(can_periph) & CAN_STAT_SLPWS)) && (0x00U != timeout)){ + timeout--; + } + /* check state */ + if(0U != (CAN_STAT(can_periph) & CAN_STAT_SLPWS)){ + flag = ERROR; + }else{ + flag = SUCCESS; + } + return flag; +} + +/*! + \brief get CAN error type + \param[in] can_periph + \arg CANx(x=0,1) + \param[out] none + \retval can_error_enum + \arg CAN_ERROR_NONE: no error + \arg CAN_ERROR_FILL: fill error + \arg CAN_ERROR_FORMATE: format error + \arg CAN_ERROR_ACK: ACK error + \arg CAN_ERROR_BITRECESSIVE: bit recessive + \arg CAN_ERROR_BITDOMINANTER: bit dominant error + \arg CAN_ERROR_CRC: CRC error + \arg CAN_ERROR_SOFTWARECFG: software configure +*/ +can_error_enum can_error_get(uint32_t can_periph) +{ + can_error_enum error; + error = CAN_ERROR_NONE; + + /* get error type */ + error = (can_error_enum)(GET_ERR_ERRN(CAN_ERR(can_periph))); + return error; +} + +/*! + \brief get CAN receive error number + \param[in] can_periph + \arg CANx(x=0,1) + \param[out] none + \retval error number +*/ +uint8_t can_receive_error_number_get(uint32_t can_periph) +{ + uint8_t val; + + /* get error count */ + val = (uint8_t)(GET_ERR_RECNT(CAN_ERR(can_periph))); + return val; +} + +/*! + \brief get CAN transmit error number + \param[in] can_periph + \arg CANx(x=0,1) + \param[out] none + \retval error number +*/ +uint8_t can_transmit_error_number_get(uint32_t can_periph) +{ + uint8_t val; + + val = (uint8_t)(GET_ERR_TECNT(CAN_ERR(can_periph))); + return val; +} + +/*! + \brief enable CAN interrupt + \param[in] can_periph + \arg CANx(x=0,1) + \param[in] interrupt + one or more parameters can be selected which are shown as below: + \arg CAN_INT_TME: transmit mailbox empty interrupt enable + \arg CAN_INT_RFNE0: receive FIFO0 not empty interrupt enable + \arg CAN_INT_RFF0: receive FIFO0 full interrupt enable + \arg CAN_INT_RFO0: receive FIFO0 overfull interrupt enable + \arg CAN_INT_RFNE1: receive FIFO1 not empty interrupt enable + \arg CAN_INT_RFF1: receive FIFO1 full interrupt enable + \arg CAN_INT_RFO1: receive FIFO1 overfull interrupt enable + \arg CAN_INT_WERR: warning error interrupt enable + \arg CAN_INT_PERR: passive error interrupt enable + \arg CAN_INT_BO: bus-off interrupt enable + \arg CAN_INT_ERRN: error number interrupt enable + \arg CAN_INT_ERR: error interrupt enable + \arg CAN_INT_WU: wakeup interrupt enable + \arg CAN_INT_SLPW: sleep working interrupt enable + \param[out] none + \retval none +*/ +void can_interrupt_enable(uint32_t can_periph, uint32_t interrupt) +{ + CAN_INTEN(can_periph) |= interrupt; +} + +/*! + \brief disable CAN interrupt + \param[in] can_periph + \arg CANx(x=0,1) + \param[in] interrupt + one or more parameters can be selected which are shown as below: + \arg CAN_INT_TME: transmit mailbox empty interrupt enable + \arg CAN_INT_RFNE0: receive FIFO0 not empty interrupt enable + \arg CAN_INT_RFF0: receive FIFO0 full interrupt enable + \arg CAN_INT_RFO0: receive FIFO0 overfull interrupt enable + \arg CAN_INT_RFNE1: receive FIFO1 not empty interrupt enable + \arg CAN_INT_RFF1: receive FIFO1 full interrupt enable + \arg CAN_INT_RFO1: receive FIFO1 overfull interrupt enable + \arg CAN_INT_WERR: warning error interrupt enable + \arg CAN_INT_PERR: passive error interrupt enable + \arg CAN_INT_BO: bus-off interrupt enable + \arg CAN_INT_ERRN: error number interrupt enable + \arg CAN_INT_ERR: error interrupt enable + \arg CAN_INT_WU: wakeup interrupt enable + \arg CAN_INT_SLPW: sleep working interrupt enable + \param[out] none + \retval none +*/ +void can_interrupt_disable(uint32_t can_periph, uint32_t interrupt) +{ + CAN_INTEN(can_periph) &= ~interrupt; +} + +/*! + \brief get CAN flag state + \param[in] can_periph + \arg CANx(x=0,1) + \param[in] flag: CAN flags, refer to can_flag_enum + only one parameter can be selected which is shown as below: + \arg CAN_FLAG_RXL: RX level + \arg CAN_FLAG_LASTRX: last sample value of RX pin + \arg CAN_FLAG_RS: receiving state + \arg CAN_FLAG_TS: transmitting state + \arg CAN_FLAG_SLPIF: status change flag of entering sleep working mode + \arg CAN_FLAG_WUIF: status change flag of wakeup from sleep working mode + \arg CAN_FLAG_ERRIF: error flag + \arg CAN_FLAG_SLPWS: sleep working state + \arg CAN_FLAG_IWS: initial working state + \arg CAN_FLAG_TMLS2: transmit mailbox 2 last sending in Tx FIFO + \arg CAN_FLAG_TMLS1: transmit mailbox 1 last sending in Tx FIFO + \arg CAN_FLAG_TMLS0: transmit mailbox 0 last sending in Tx FIFO + \arg CAN_FLAG_TME2: transmit mailbox 2 empty + \arg CAN_FLAG_TME1: transmit mailbox 1 empty + \arg CAN_FLAG_TME0: transmit mailbox 0 empty + \arg CAN_FLAG_MTE2: mailbox 2 transmit error + \arg CAN_FLAG_MTE1: mailbox 1 transmit error + \arg CAN_FLAG_MTE0: mailbox 0 transmit error + \arg CAN_FLAG_MAL2: mailbox 2 arbitration lost + \arg CAN_FLAG_MAL1: mailbox 1 arbitration lost + \arg CAN_FLAG_MAL0: mailbox 0 arbitration lost + \arg CAN_FLAG_MTFNERR2: mailbox 2 transmit finished with no error + \arg CAN_FLAG_MTFNERR1: mailbox 1 transmit finished with no error + \arg CAN_FLAG_MTFNERR0: mailbox 0 transmit finished with no error + \arg CAN_FLAG_MTF2: mailbox 2 transmit finished + \arg CAN_FLAG_MTF1: mailbox 1 transmit finished + \arg CAN_FLAG_MTF0: mailbox 0 transmit finished + \arg CAN_FLAG_RFO0: receive FIFO0 overfull + \arg CAN_FLAG_RFF0: receive FIFO0 full + \arg CAN_FLAG_RFO1: receive FIFO1 overfull + \arg CAN_FLAG_RFF1: receive FIFO1 full + \arg CAN_FLAG_BOERR: bus-off error + \arg CAN_FLAG_PERR: passive error + \arg CAN_FLAG_WERR: warning error + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus can_flag_get(uint32_t can_periph, can_flag_enum flag) +{ + /* get flag and interrupt enable state */ + if(RESET != (CAN_REG_VAL(can_periph, flag) & BIT(CAN_BIT_POS(flag)))){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear CAN flag state + \param[in] can_periph + \arg CANx(x=0,1) + \param[in] flag: CAN flags, refer to can_flag_enum + only one parameter can be selected which is shown as below: + \arg CAN_FLAG_SLPIF: status change flag of entering sleep working mode + \arg CAN_FLAG_WUIF: status change flag of wakeup from sleep working mode + \arg CAN_FLAG_ERRIF: error flag + \arg CAN_FLAG_MTE2: mailbox 2 transmit error + \arg CAN_FLAG_MTE1: mailbox 1 transmit error + \arg CAN_FLAG_MTE0: mailbox 0 transmit error + \arg CAN_FLAG_MAL2: mailbox 2 arbitration lost + \arg CAN_FLAG_MAL1: mailbox 1 arbitration lost + \arg CAN_FLAG_MAL0: mailbox 0 arbitration lost + \arg CAN_FLAG_MTFNERR2: mailbox 2 transmit finished with no error + \arg CAN_FLAG_MTFNERR1: mailbox 1 transmit finished with no error + \arg CAN_FLAG_MTFNERR0: mailbox 0 transmit finished with no error + \arg CAN_FLAG_MTF2: mailbox 2 transmit finished + \arg CAN_FLAG_MTF1: mailbox 1 transmit finished + \arg CAN_FLAG_MTF0: mailbox 0 transmit finished + \arg CAN_FLAG_RFO0: receive FIFO0 overfull + \arg CAN_FLAG_RFF0: receive FIFO0 full + \arg CAN_FLAG_RFO1: receive FIFO1 overfull + \arg CAN_FLAG_RFF1: receive FIFO1 full + \param[out] none + \retval none +*/ +void can_flag_clear(uint32_t can_periph, can_flag_enum flag) +{ + CAN_REG_VAL(can_periph, flag) = BIT(CAN_BIT_POS(flag)); +} + +/*! + \brief get CAN interrupt flag state + \param[in] can_periph + \arg CANx(x=0,1) + \param[in] flag: CAN interrupt flags, refer to can_interrupt_flag_enum + only one parameter can be selected which is shown as below: + \arg CAN_INT_FLAG_SLPIF: status change interrupt flag of sleep working mode entering + \arg CAN_INT_FLAG_WUIF: status change interrupt flag of wakeup from sleep working mode + \arg CAN_INT_FLAG_ERRIF: error interrupt flag + \arg CAN_INT_FLAG_MTF2: mailbox 2 transmit finished interrupt flag + \arg CAN_INT_FLAG_MTF1: mailbox 1 transmit finished interrupt flag + \arg CAN_INT_FLAG_MTF0: mailbox 0 transmit finished interrupt flag + \arg CAN_INT_FLAG_RFO0: receive FIFO0 overfull interrupt flag + \arg CAN_INT_FLAG_RFF0: receive FIFO0 full interrupt flag + \arg CAN_INT_FLAG_RFL0: receive FIFO0 not empty interrupt flag + \arg CAN_INT_FLAG_RFO1: receive FIFO1 overfull interrupt flag + \arg CAN_INT_FLAG_RFF1: receive FIFO1 full interrupt flag + \arg CAN_INT_FLAG_RFL1: receive FIFO1 not empty interrupt flag + \arg CAN_INT_FLAG_ERRN: error number interrupt flag + \arg CAN_INT_FLAG_BOERR: bus-off error interrupt flag + \arg CAN_INT_FLAG_PERR: passive error interrupt flag + \arg CAN_INT_FLAG_WERR: warning error interrupt flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus can_interrupt_flag_get(uint32_t can_periph, can_interrupt_flag_enum flag) +{ + uint32_t ret1 = RESET; + uint32_t ret2 = RESET; + + /* get the staus of interrupt flag */ + if (flag == CAN_INT_FLAG_RFF0) { + ret1 = can_receive_message_length_get(can_periph, CAN_FIFO0); + } else if (flag == CAN_INT_FLAG_RFF1) { + ret1 = can_receive_message_length_get(can_periph, CAN_FIFO1); + } else if (flag == CAN_INT_FLAG_ERRN) { + ret1 = can_error_get(can_periph); + } else { + ret1 = CAN_REG_VALS(can_periph, flag) & BIT(CAN_BIT_POS0(flag)); + } + /* get the staus of interrupt enale bit */ + ret2 = CAN_INTEN(can_periph) & BIT(CAN_BIT_POS1(flag)); + if(ret1 && ret2){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear CAN interrupt flag state + \param[in] can_periph + \arg CANx(x=0,1) + \param[in] flag: CAN interrupt flags, refer to can_interrupt_flag_enum + only one parameter can be selected which is shown as below: + \arg CAN_INT_FLAG_SLPIF: status change interrupt flag of sleep working mode entering + \arg CAN_INT_FLAG_WUIF: status change interrupt flag of wakeup from sleep working mode + \arg CAN_INT_FLAG_ERRIF: error interrupt flag + \arg CAN_INT_FLAG_MTF2: mailbox 2 transmit finished interrupt flag + \arg CAN_INT_FLAG_MTF1: mailbox 1 transmit finished interrupt flag + \arg CAN_INT_FLAG_MTF0: mailbox 0 transmit finished interrupt flag + \arg CAN_INT_FLAG_RFO0: receive FIFO0 overfull interrupt flag + \arg CAN_INT_FLAG_RFF0: receive FIFO0 full interrupt flag + \arg CAN_INT_FLAG_RFO1: receive FIFO1 overfull interrupt flag + \arg CAN_INT_FLAG_RFF1: receive FIFO1 full interrupt flag + \param[out] none + \retval none +*/ +void can_interrupt_flag_clear(uint32_t can_periph, can_interrupt_flag_enum flag) +{ + CAN_REG_VALS(can_periph, flag) = BIT(CAN_BIT_POS0(flag)); +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_crc.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_crc.c new file mode 100644 index 0000000000..673b60798e --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_crc.c @@ -0,0 +1,128 @@ +/*! + \file gd32f4xx_crc.c + \brief CRC driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_crc.h" + +#define CRC_DATA_RESET_VALUE ((uint32_t)0xFFFFFFFFU) +#define CRC_FDATA_RESET_VALUE ((uint32_t)0x00000000U) +/*! + \brief deinit CRC calculation unit + \param[in] none + \param[out] none + \retval none +*/ +void crc_deinit(void) +{ + CRC_DATA = CRC_DATA_RESET_VALUE; + CRC_FDATA = CRC_FDATA_RESET_VALUE; + CRC_CTL = (uint32_t)CRC_CTL_RST; +} + +/*! + \brief reset data register(CRC_DATA) to the value of 0xFFFFFFFF + \param[in] none + \param[out] none + \retval none +*/ +void crc_data_register_reset(void) +{ + CRC_CTL |= (uint32_t)CRC_CTL_RST; +} + +/*! + \brief read the value of the data register + \param[in] none + \param[out] none + \retval 32-bit value of the data register +*/ +uint32_t crc_data_register_read(void) +{ + uint32_t data; + data = CRC_DATA; + return (data); +} + +/*! + \brief read the value of the free data register + \param[in] none + \param[out] none + \retval 8-bit value of the free data register +*/ +uint8_t crc_free_data_register_read(void) +{ + uint8_t fdata; + fdata = (uint8_t)CRC_FDATA; + return (fdata); +} + +/*! + \brief write data to the free data register + \param[in] free_data: specified 8-bit data + \param[out] none + \retval none +*/ +void crc_free_data_register_write(uint8_t free_data) +{ + CRC_FDATA = (uint32_t)free_data; +} + +/*! + \brief calculate the CRC value of a 32-bit data + \param[in] sdata: specified 32-bit data + \param[out] none + \retval 32-bit value calculated by CRC +*/ +uint32_t crc_single_data_calculate(uint32_t sdata) +{ + CRC_DATA = sdata; + return (CRC_DATA); +} + +/*! + \brief calculate the CRC value of an array of 32-bit values + \param[in] array: pointer to an array of 32-bit values + \param[in] size: size of the array + \param[out] none + \retval 32-bit value calculated by CRC +*/ +uint32_t crc_block_data_calculate(uint32_t array[], uint32_t size) +{ + uint32_t index; + for(index = 0U; index < size; index++){ + CRC_DATA = array[index]; + } + return (CRC_DATA); +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_ctc.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_ctc.c new file mode 100644 index 0000000000..62025628c3 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_ctc.c @@ -0,0 +1,405 @@ +/*! + \file gd32f4xx_ctc.c + \brief CTC driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_ctc.h" + +#define CTC_FLAG_MASK ((uint32_t)0x00000700U) + +/* CTC register bit offset */ +#define CTC_TRIMVALUE_OFFSET ((uint32_t)8U) +#define CTC_TRIM_VALUE_OFFSET ((uint32_t)8U) +#define CTC_REFCAP_OFFSET ((uint32_t)16U) +#define CTC_LIMIT_VALUE_OFFSET ((uint32_t)16U) + +/*! + \brief reset CTC clock trim controller + \param[in] none + \param[out] none + \retval none +*/ +void ctc_deinit(void) +{ + /* reset CTC */ + rcu_periph_reset_enable(RCU_CTCRST); + rcu_periph_reset_disable(RCU_CTCRST); +} + +/*! + \brief enable CTC trim counter + \param[in] none + \param[out] none + \retval none +*/ +void ctc_counter_enable(void) +{ + CTC_CTL0 |= (uint32_t)CTC_CTL0_CNTEN; +} + +/*! + \brief disable CTC trim counter + \param[in] none + \param[out] none + \retval none +*/ +void ctc_counter_disable(void) +{ + CTC_CTL0 &= (uint32_t)(~CTC_CTL0_CNTEN); +} + +/*! + \brief configure the IRC48M trim value + \param[in] ctc_trim_value: 8-bit IRC48M trim value + \arg 0x00 - 0x3F + \param[out] none + \retval none +*/ +void ctc_irc48m_trim_value_config(uint8_t trim_value) +{ + /* clear TRIMVALUE bits */ + CTC_CTL0 &= (~(uint32_t)CTC_CTL0_TRIMVALUE); + /* set TRIMVALUE bits */ + CTC_CTL0 |= ((uint32_t)trim_value << CTC_TRIM_VALUE_OFFSET); +} + +/*! + \brief generate software reference source sync pulse + \param[in] none + \param[out] none + \retval none +*/ +void ctc_software_refsource_pulse_generate(void) +{ + CTC_CTL0 |= (uint32_t)CTC_CTL0_SWREFPUL; +} + +/*! + \brief configure hardware automatically trim mode + \param[in] hardmode: + only one parameter can be selected which is shown as below: + \arg CTC_HARDWARE_TRIM_MODE_ENABLE: hardware automatically trim mode enable + \arg CTC_HARDWARE_TRIM_MODE_DISABLE: hardware automatically trim mode disable + \param[out] none + \retval none +*/ +void ctc_hardware_trim_mode_config(uint32_t hardmode) +{ + CTC_CTL0 &= (uint32_t)(~CTC_CTL0_AUTOTRIM); + CTC_CTL0 |= (uint32_t)hardmode; +} + +/*! + \brief configure reference signal source polarity + \param[in] polarity: + only one parameter can be selected which is shown as below: + \arg CTC_REFSOURCE_POLARITY_FALLING: reference signal source polarity is falling edge + \arg CTC_REFSOURCE_POLARITY_RISING: reference signal source polarity is rising edge + \param[out] none + \retval none +*/ +void ctc_refsource_polarity_config(uint32_t polarity) +{ + CTC_CTL1 &= (uint32_t)(~CTC_CTL1_REFPOL); + CTC_CTL1 |= (uint32_t)polarity; +} + +/*! + \brief select USBFS or USBHS SOF signal + \param[in] usbsof: + \arg CTC_USBSOFSEL_USBHS: USBHS SOF signal is selected + \arg CTC_USBSOFSEL_USBFS: USBFS SOF signal is selected + \param[out] none + \retval none +*/ +void ctc_usbsof_signal_select(uint32_t usbsof) +{ + CTC_CTL1 &= (uint32_t)(~CTC_CTL1_USBSOFSEL); + CTC_CTL1 |= (uint32_t)usbsof; +} + +/*! + \brief select reference signal source + \param[in] refs: + only one parameter can be selected which is shown as below: + \arg CTC_REFSOURCE_GPIO: GPIO is selected + \arg CTC_REFSOURCE_LXTAL: LXTAL is selected + \arg CTC_REFSOURCE_USBSOF: USBSOF is selected + \param[out] none + \retval none +*/ +void ctc_refsource_signal_select(uint32_t refs) +{ + CTC_CTL1 &= (uint32_t)(~CTC_CTL1_REFSEL); + CTC_CTL1 |= (uint32_t)refs; +} + +/*! + \brief configure reference signal source prescaler + \param[in] prescaler: + only one parameter can be selected which is shown as below: + \arg CTC_REFSOURCE_PSC_OFF: reference signal not divided + \arg CTC_REFSOURCE_PSC_DIV2: reference signal divided by 2 + \arg CTC_REFSOURCE_PSC_DIV4: reference signal divided by 4 + \arg CTC_REFSOURCE_PSC_DIV8: reference signal divided by 8 + \arg CTC_REFSOURCE_PSC_DIV16: reference signal divided by 16 + \arg CTC_REFSOURCE_PSC_DIV32: reference signal divided by 32 + \arg CTC_REFSOURCE_PSC_DIV64: reference signal divided by 64 + \arg CTC_REFSOURCE_PSC_DIV128: reference signal divided by 128 + \param[out] none + \retval none +*/ +void ctc_refsource_prescaler_config(uint32_t prescaler) +{ + CTC_CTL1 &= (uint32_t)(~CTC_CTL1_REFPSC); + CTC_CTL1 |= (uint32_t)prescaler; +} + +/*! + \brief configure clock trim base limit value + \param[in] limit_value: 8-bit clock trim base limit value + \arg 0x00 - 0xFF + \param[out] none + \retval none +*/ +void ctc_clock_limit_value_config(uint8_t limit_value) +{ + CTC_CTL1 &= (uint32_t)(~CTC_CTL1_CKLIM); + CTC_CTL1 |= (uint32_t)((uint32_t)limit_value << CTC_LIMIT_VALUE_OFFSET); +} + +/*! + \brief configure CTC counter reload value + \param[in] reload_value: 16-bit CTC counter reload value + \arg 0x0000 - 0xFFFF + \param[out] none + \retval none +*/ +void ctc_counter_reload_value_config(uint16_t reload_value) +{ + CTC_CTL1 &= (uint32_t)(~CTC_CTL1_RLVALUE); + CTC_CTL1 |= (uint32_t)reload_value; +} + +/*! + \brief read CTC counter capture value when reference sync pulse occurred + \param[in] none + \param[out] none + \retval the 16-bit CTC counter capture value +*/ +uint16_t ctc_counter_capture_value_read(void) +{ + uint16_t capture_value = 0U; + capture_value = (uint16_t)((CTC_STAT & CTC_STAT_REFCAP)>> CTC_REFCAP_OFFSET); + return (capture_value); +} + +/*! + \brief read CTC trim counter direction when reference sync pulse occurred + \param[in] none + \param[out] none + \retval FlagStatus: SET or RESET + \arg SET: CTC trim counter direction is down-counting + \arg RESET: CTC trim counter direction is up-counting +*/ +FlagStatus ctc_counter_direction_read(void) +{ + if(RESET != (CTC_STAT & CTC_STAT_REFDIR)){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief read CTC counter reload value + \param[in] none + \param[out] none + \retval the 16-bit CTC counter reload value +*/ +uint16_t ctc_counter_reload_value_read(void) +{ + uint16_t reload_value = 0U; + reload_value = (uint16_t)(CTC_CTL1 & CTC_CTL1_RLVALUE); + return (reload_value); +} + +/*! + \brief read the IRC48M trim value + \param[in] none + \param[out] none + \retval the 8-bit IRC48M trim value +*/ +uint8_t ctc_irc48m_trim_value_read(void) +{ + uint8_t trim_value = 0U; + trim_value = (uint8_t)((CTC_CTL0 & CTC_CTL0_TRIMVALUE) >> CTC_TRIMVALUE_OFFSET); + return (trim_value); +} + +/*! + \brief enable the CTC interrupt + \param[in] interrupt: CTC interrupt enable + one or more parameters can be selected which are shown as below: + \arg CTC_INT_CKOK: clock trim OK interrupt enable + \arg CTC_INT_CKWARN: clock trim warning interrupt enable + \arg CTC_INT_ERR: error interrupt enable + \arg CTC_INT_EREF: expect reference interrupt enable + \param[out] none + \retval none +*/ +void ctc_interrupt_enable(uint32_t interrupt) +{ + CTC_CTL0 |= (uint32_t)interrupt; +} + +/*! + \brief disable the CTC interrupt + \param[in] interrupt: CTC interrupt enable source + one or more parameters can be selected which are shown as below: + \arg CTC_INT_CKOK: clock trim OK interrupt enable + \arg CTC_INT_CKWARN: clock trim warning interrupt enable + \arg CTC_INT_ERR: error interrupt enable + \arg CTC_INT_EREF: expect reference interrupt enable + \param[out] none + \retval none +*/ +void ctc_interrupt_disable(uint32_t interrupt) +{ + CTC_CTL0 &= (uint32_t)(~interrupt); +} + +/*! + \brief get CTC interrupt flag + \param[in] int_flag: the CTC interrupt flag + only one parameter can be selected which is shown as below: + \arg CTC_INT_FLAG_CKOK: clock trim OK interrupt + \arg CTC_INT_FLAG_CKWARN: clock trim warning interrupt + \arg CTC_INT_FLAG_ERR: error interrupt + \arg CTC_INT_FLAG_EREF: expect reference interrupt + \arg CTC_INT_FLAG_CKERR: clock trim error bit interrupt + \arg CTC_INT_FLAG_REFMISS: reference sync pulse miss interrupt + \arg CTC_INT_FLAG_TRIMERR: trim value error interrupt + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus ctc_interrupt_flag_get(uint32_t int_flag) +{ + uint32_t interrupt_flag = 0U, intenable = 0U; + + /* check whether the interrupt is enabled */ + if(RESET != (int_flag & CTC_FLAG_MASK)){ + intenable = CTC_CTL0 & CTC_CTL0_ERRIE; + }else{ + intenable = CTC_CTL0 & int_flag; + } + + /* get interrupt flag status */ + interrupt_flag = CTC_STAT & int_flag; + + if(interrupt_flag && intenable){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear CTC interrupt flag + \param[in] int_flag: the CTC interrupt flag + only one parameter can be selected which is shown as below: + \arg CTC_INT_FLAG_CKOK: clock trim OK interrupt + \arg CTC_INT_FLAG_CKWARN: clock trim warning interrupt + \arg CTC_INT_FLAG_ERR: error interrupt + \arg CTC_INT_FLAG_EREF: expect reference interrupt + \arg CTC_INT_FLAG_CKERR: clock trim error bit interrupt + \arg CTC_INT_FLAG_REFMISS: reference sync pulse miss interrupt + \arg CTC_INT_FLAG_TRIMERR: trim value error interrupt + \param[out] none + \retval none +*/ +void ctc_interrupt_flag_clear(uint32_t int_flag) +{ + if(RESET != (int_flag & CTC_FLAG_MASK)){ + CTC_INTC |= CTC_INTC_ERRIC; + }else{ + CTC_INTC |= int_flag; + } +} + +/*! + \brief get CTC flag + \param[in] flag: the CTC flag + only one parameter can be selected which is shown as below: + \arg CTC_FLAG_CKOK: clock trim OK flag + \arg CTC_FLAG_CKWARN: clock trim warning flag + \arg CTC_FLAG_ERR: error flag + \arg CTC_FLAG_EREF: expect reference flag + \arg CTC_FLAG_CKERR: clock trim error bit + \arg CTC_FLAG_REFMISS: reference sync pulse miss + \arg CTC_FLAG_TRIMERR: trim value error bit + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus ctc_flag_get(uint32_t flag) +{ + if(RESET != (CTC_STAT & flag)){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear CTC flag + \param[in] flag: the CTC flag + only one parameter can be selected which is shown as below: + \arg CTC_FLAG_CKOK: clock trim OK flag + \arg CTC_FLAG_CKWARN: clock trim warning flag + \arg CTC_FLAG_ERR: error flag + \arg CTC_FLAG_EREF: expect reference flag + \arg CTC_FLAG_CKERR: clock trim error bit + \arg CTC_FLAG_REFMISS: reference sync pulse miss + \arg CTC_FLAG_TRIMERR: trim value error bit + \param[out] none + \retval none +*/ +void ctc_flag_clear(uint32_t flag) +{ + if(RESET != (flag & CTC_FLAG_MASK)){ + CTC_INTC |= CTC_INTC_ERRIC; + }else{ + CTC_INTC |= flag; + } +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dac.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dac.c new file mode 100644 index 0000000000..5549cbf9c8 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dac.c @@ -0,0 +1,677 @@ +/*! + \file gd32f4xx_dac.c + \brief DAC driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_dac.h" + +/* DAC register bit offset */ +#define DAC1_REG_OFFSET ((uint32_t)16U) +#define DH_12BIT_OFFSET ((uint32_t)16U) +#define DH_8BIT_OFFSET ((uint32_t)8U) + +/*! + \brief deinitialize DAC + \param[in] none + \param[out] none + \retval none +*/ +void dac_deinit(void) +{ + rcu_periph_reset_enable(RCU_DACRST); + rcu_periph_reset_disable(RCU_DACRST); +} + +/*! + \brief enable DAC + \param[in] dac_periph: DACx(x = 0,1) + \param[out] none + \retval none +*/ +void dac_enable(uint32_t dac_periph) +{ + if(DAC0 == dac_periph){ + DAC_CTL |= DAC_CTL_DEN0; + }else{ + DAC_CTL |= DAC_CTL_DEN1; + } +} + +/*! + \brief disable DAC + \param[in] dac_periph: DACx(x = 0,1) + \param[out] none + \retval none +*/ +void dac_disable(uint32_t dac_periph) +{ + if(DAC0 == dac_periph){ + DAC_CTL &= ~DAC_CTL_DEN0; + }else{ + DAC_CTL &= ~DAC_CTL_DEN1; + } +} + +/*! + \brief enable DAC DMA function + \param[in] dac_periph: DACx(x = 0,1) + \param[out] none + \retval none +*/ +void dac_dma_enable(uint32_t dac_periph) +{ + if(DAC0 == dac_periph){ + DAC_CTL |= DAC_CTL_DDMAEN0; + }else{ + DAC_CTL |= DAC_CTL_DDMAEN1; + } +} + +/*! + \brief disable DAC DMA function + \param[in] dac_periph: DACx(x = 0,1) + \param[out] none + \retval none +*/ +void dac_dma_disable(uint32_t dac_periph) +{ + if(DAC0 == dac_periph){ + DAC_CTL &= ~DAC_CTL_DDMAEN0; + }else{ + DAC_CTL &= ~DAC_CTL_DDMAEN1; + } +} + +/*! + \brief enable DAC output buffer + \param[in] dac_periph: DACx(x = 0,1) + \param[out] none + \retval none +*/ +void dac_output_buffer_enable(uint32_t dac_periph) +{ + if(DAC0 == dac_periph){ + DAC_CTL &= ~DAC_CTL_DBOFF0; + }else{ + DAC_CTL &= ~DAC_CTL_DBOFF1; + } +} + +/*! + \brief disable DAC output buffer + \param[in] dac_periph: DACx(x = 0,1) + \param[out] none + \retval none +*/ +void dac_output_buffer_disable(uint32_t dac_periph) +{ + if(DAC0 == dac_periph){ + DAC_CTL |= DAC_CTL_DBOFF0; + }else{ + DAC_CTL |= DAC_CTL_DBOFF1; + } +} + +/*! + \brief get DAC output value + \param[in] dac_periph: DACx(x = 0,1) + \param[out] none + \retval DAC output data +*/ +uint16_t dac_output_value_get(uint32_t dac_periph) +{ + uint16_t data = 0U; + if(DAC0 == dac_periph){ + /* store the DAC0 output value */ + data = (uint16_t)DAC0_DO; + }else{ + /* store the DAC1 output value */ + data = (uint16_t)DAC1_DO; + } + return data; +} + +/*! + \brief set the DAC specified data holding register value + \param[in] dac_periph: DACx(x = 0,1) + \param[in] dac_align: data alignment + only one parameter can be selected which is shown as below: + \arg DAC_ALIGN_8B_R: data right 8 bit alignment + \arg DAC_ALIGN_12B_R: data right 12 bit alignment + \arg DAC_ALIGN_12B_L: data left 12 bit alignment + \param[in] data: data to be loaded + \param[out] none + \retval none +*/ +void dac_data_set(uint32_t dac_periph, uint32_t dac_align, uint16_t data) +{ + if(DAC0 == dac_periph){ + switch(dac_align){ + /* data right 12 bit alignment */ + case DAC_ALIGN_12B_R: + DAC0_R12DH = data; + break; + /* data left 12 bit alignment */ + case DAC_ALIGN_12B_L: + DAC0_L12DH = data; + break; + /* data right 8 bit alignment */ + case DAC_ALIGN_8B_R: + DAC0_R8DH = data; + break; + default: + break; + } + }else{ + switch(dac_align){ + /* data right 12 bit alignment */ + case DAC_ALIGN_12B_R: + DAC1_R12DH = data; + break; + /* data left 12 bit alignment */ + case DAC_ALIGN_12B_L: + DAC1_L12DH = data; + break; + /* data right 8 bit alignment */ + case DAC_ALIGN_8B_R: + DAC1_R8DH = data; + break; + default: + break; + } + } +} + +/*! + \brief enable DAC trigger + \param[in] dac_periph: DACx(x = 0,1) + \param[out] none + \retval none +*/ +void dac_trigger_enable(uint32_t dac_periph) +{ + if(DAC0 == dac_periph){ + DAC_CTL |= DAC_CTL_DTEN0; + }else{ + DAC_CTL |= DAC_CTL_DTEN1; + } +} + +/*! + \brief disable DAC trigger + \param[in] dac_periph: DACx(x = 0,1) + \param[out] none + \retval none +*/ +void dac_trigger_disable(uint32_t dac_periph) +{ + if(DAC0 == dac_periph){ + DAC_CTL &= ~DAC_CTL_DTEN0; + }else{ + DAC_CTL &= ~DAC_CTL_DTEN1; + } +} + +/*! + \brief set DAC trigger source + \param[in] dac_periph: DACx(x = 0,1) + \param[in] triggersource: external triggers of DAC + only one parameter can be selected which is shown as below: + \arg DAC_TRIGGER_T1_TRGO: TIMER1 TRGO + \arg DAC_TRIGGER_T3_TRGO: TIMER3 TRGO + \arg DAC_TRIGGER_T4_TRGO: TIMER4 TRGO + \arg DAC_TRIGGER_T5_TRGO: TIMER5 TRGO + \arg DAC_TRIGGER_T6_TRGO: TIMER6 TRGO + \arg DAC_TRIGGER_T7_TRGO: TIMER7 TRGO + \arg DAC_TRIGGER_EXTI_9: EXTI interrupt line9 event + \arg DAC_TRIGGER_SOFTWARE: software trigger + \param[out] none + \retval none +*/ +void dac_trigger_source_config(uint32_t dac_periph,uint32_t triggersource) +{ + if(DAC0 == dac_periph){ + /* configure DAC0 trigger source */ + DAC_CTL &= ~DAC_CTL_DTSEL0; + DAC_CTL |= triggersource; + }else{ + /* configure DAC1 trigger source */ + DAC_CTL &= ~DAC_CTL_DTSEL1; + DAC_CTL |= (triggersource << DAC1_REG_OFFSET); + } +} + +/*! + \brief enable DAC software trigger + \param[in] dac_periph: DACx(x = 0,1) + \retval none +*/ +void dac_software_trigger_enable(uint32_t dac_periph) +{ + if(DAC0 == dac_periph){ + DAC_SWT |= DAC_SWT_SWTR0; + }else{ + DAC_SWT |= DAC_SWT_SWTR1; + } +} + +/*! + \brief disable DAC software trigger + \param[in] dac_periph: DACx(x = 0,1) + \param[out] none + \retval none +*/ +void dac_software_trigger_disable(uint32_t dac_periph) +{ + if(DAC0 == dac_periph){ + DAC_SWT &= ~DAC_SWT_SWTR0; + }else{ + DAC_SWT &= ~DAC_SWT_SWTR1; + } +} + +/*! + \brief configure DAC wave mode + \param[in] dac_periph: DACx(x = 0,1) + \param[in] wave_mode: noise wave mode + only one parameter can be selected which is shown as below: + \arg DAC_WAVE_DISABLE: wave disable + \arg DAC_WAVE_MODE_LFSR: LFSR noise mode + \arg DAC_WAVE_MODE_TRIANGLE: triangle noise mode + \param[out] none + \retval none +*/ +void dac_wave_mode_config(uint32_t dac_periph, uint32_t wave_mode) +{ + if(DAC0 == dac_periph){ + /* configure DAC0 wave mode */ + DAC_CTL &= ~DAC_CTL_DWM0; + DAC_CTL |= wave_mode; + }else{ + /* configure DAC1 wave mode */ + DAC_CTL &= ~DAC_CTL_DWM1; + DAC_CTL |= (wave_mode << DAC1_REG_OFFSET); + } +} + +/*! + \brief configure DAC wave bit width + \param[in] dac_periph: DACx(x = 0,1) + \param[in] bit_width: noise wave bit width + only one parameter can be selected which is shown as below: + \arg DAC_WAVE_BIT_WIDTH_1: bit width of the wave signal is 1 + \arg DAC_WAVE_BIT_WIDTH_2: bit width of the wave signal is 2 + \arg DAC_WAVE_BIT_WIDTH_3: bit width of the wave signal is 3 + \arg DAC_WAVE_BIT_WIDTH_4: bit width of the wave signal is 4 + \arg DAC_WAVE_BIT_WIDTH_5: bit width of the wave signal is 5 + \arg DAC_WAVE_BIT_WIDTH_6: bit width of the wave signal is 6 + \arg DAC_WAVE_BIT_WIDTH_7: bit width of the wave signal is 7 + \arg DAC_WAVE_BIT_WIDTH_8: bit width of the wave signal is 8 + \arg DAC_WAVE_BIT_WIDTH_9: bit width of the wave signal is 9 + \arg DAC_WAVE_BIT_WIDTH_10: bit width of the wave signal is 10 + \arg DAC_WAVE_BIT_WIDTH_11: bit width of the wave signal is 11 + \arg DAC_WAVE_BIT_WIDTH_12: bit width of the wave signal is 12 + \param[out] none + \retval none +*/ +void dac_wave_bit_width_config(uint32_t dac_periph, uint32_t bit_width) +{ + if(DAC0 == dac_periph){ + /* configure DAC0 wave bit width */ + DAC_CTL &= ~DAC_CTL_DWBW0; + DAC_CTL |= bit_width; + }else{ + /* configure DAC1 wave bit width */ + DAC_CTL &= ~DAC_CTL_DWBW1; + DAC_CTL |= (bit_width << DAC1_REG_OFFSET); + } +} + +/*! + \brief configure DAC LFSR noise mode + \param[in] dac_periph: DACx(x = 0,1) + \param[in] unmask_bits: unmask LFSR bits in DAC LFSR noise mode + only one parameter can be selected which is shown as below: + \arg DAC_LFSR_BIT0: unmask the LFSR bit0 + \arg DAC_LFSR_BITS1_0: unmask the LFSR bits[1:0] + \arg DAC_LFSR_BITS2_0: unmask the LFSR bits[2:0] + \arg DAC_LFSR_BITS3_0: unmask the LFSR bits[3:0] + \arg DAC_LFSR_BITS4_0: unmask the LFSR bits[4:0] + \arg DAC_LFSR_BITS5_0: unmask the LFSR bits[5:0] + \arg DAC_LFSR_BITS6_0: unmask the LFSR bits[6:0] + \arg DAC_LFSR_BITS7_0: unmask the LFSR bits[7:0] + \arg DAC_LFSR_BITS8_0: unmask the LFSR bits[8:0] + \arg DAC_LFSR_BITS9_0: unmask the LFSR bits[9:0] + \arg DAC_LFSR_BITS10_0: unmask the LFSR bits[10:0] + \arg DAC_LFSR_BITS11_0: unmask the LFSR bits[11:0] + \param[out] none + \retval none +*/ +void dac_lfsr_noise_config(uint32_t dac_periph, uint32_t unmask_bits) +{ + if(DAC0 == dac_periph){ + /* configure DAC0 LFSR noise mode */ + DAC_CTL &= ~DAC_CTL_DWBW0; + DAC_CTL |= unmask_bits; + }else{ + /* configure DAC1 LFSR noise mode */ + DAC_CTL &= ~DAC_CTL_DWBW1; + DAC_CTL |= (unmask_bits << DAC1_REG_OFFSET); + } +} + +/*! + \brief configure DAC triangle noise mode + \param[in] dac_periph: DACx(x = 0,1) + \param[in] amplitude: triangle amplitude in DAC triangle noise mode + only one parameter can be selected which is shown as below: + \arg DAC_TRIANGLE_AMPLITUDE_1: triangle amplitude is 1 + \arg DAC_TRIANGLE_AMPLITUDE_3: triangle amplitude is 3 + \arg DAC_TRIANGLE_AMPLITUDE_7: triangle amplitude is 7 + \arg DAC_TRIANGLE_AMPLITUDE_15: triangle amplitude is 15 + \arg DAC_TRIANGLE_AMPLITUDE_31: triangle amplitude is 31 + \arg DAC_TRIANGLE_AMPLITUDE_63: triangle amplitude is 63 + \arg DAC_TRIANGLE_AMPLITUDE_127: triangle amplitude is 127 + \arg DAC_TRIANGLE_AMPLITUDE_255: triangle amplitude is 255 + \arg DAC_TRIANGLE_AMPLITUDE_511: triangle amplitude is 511 + \arg DAC_TRIANGLE_AMPLITUDE_1023: triangle amplitude is 1023 + \arg DAC_TRIANGLE_AMPLITUDE_2047: triangle amplitude is 2047 + \arg DAC_TRIANGLE_AMPLITUDE_4095: triangle amplitude is 4095 + \param[out] none + \retval none +*/ +void dac_triangle_noise_config(uint32_t dac_periph, uint32_t amplitude) +{ + if(DAC0 == dac_periph){ + /* configure DAC0 triangle noise mode */ + DAC_CTL &= ~DAC_CTL_DWBW0; + DAC_CTL |= amplitude; + }else{ + /* configure DAC1 triangle noise mode */ + DAC_CTL &= ~DAC_CTL_DWBW1; + DAC_CTL |= (amplitude << DAC1_REG_OFFSET); + } +} + +/*! + \brief enable DAC concurrent mode + \param[in] none + \param[out] none + \retval none +*/ +void dac_concurrent_enable(void) +{ + uint32_t ctl = 0U; + ctl = DAC_CTL_DEN0 | DAC_CTL_DEN1; + DAC_CTL |= (ctl); +} + +/*! + \brief disable DAC concurrent mode + \param[in] none + \param[out] none + \retval none +*/ +void dac_concurrent_disable(void) +{ + uint32_t ctl = 0U; + ctl = DAC_CTL_DEN0 | DAC_CTL_DEN1; + DAC_CTL &= (~ctl); +} + +/*! + \brief enable DAC concurrent software trigger function + \param[in] none + \param[out] none + \retval none +*/ +void dac_concurrent_software_trigger_enable(void) +{ + uint32_t swt = 0U; + swt = DAC_SWT_SWTR0 | DAC_SWT_SWTR1; + DAC_SWT |= (swt); +} + +/*! + \brief disable DAC concurrent software trigger function + \param[in] none + \param[out] none + \retval none +*/ +void dac_concurrent_software_trigger_disable(void) +{ + uint32_t swt = 0U; + swt = DAC_SWT_SWTR0 | DAC_SWT_SWTR1; + DAC_SWT &= (~swt); +} + +/*! + \brief enable DAC concurrent buffer function + \param[in] none + \param[out] none + \retval none +*/ +void dac_concurrent_output_buffer_enable(void) +{ + uint32_t ctl = 0U; + ctl = DAC_CTL_DBOFF0 | DAC_CTL_DBOFF1; + DAC_CTL &= (~ctl); +} + +/*! + \brief disable DAC concurrent buffer function + \param[in] none + \param[out] none + \retval none +*/ +void dac_concurrent_output_buffer_disable(void) +{ + uint32_t ctl = 0U; + ctl = DAC_CTL_DBOFF0 | DAC_CTL_DBOFF1; + DAC_CTL |= (ctl); +} + +/*! + \brief set DAC concurrent mode data holding register value + \param[in] dac_align: data alignment + only one parameter can be selected which is shown as below: + \arg DAC_ALIGN_8B_R: data right 8b alignment + \arg DAC_ALIGN_12B_R: data right 12b alignment + \arg DAC_ALIGN_12B_L: data left 12b alignment + \param[in] data0: data to be loaded + \param[in] data1: data to be loaded + \param[out] none + \retval none +*/ +void dac_concurrent_data_set(uint32_t dac_align, uint16_t data0, uint16_t data1) +{ + uint32_t data = 0U; + switch(dac_align){ + /* data right 12b alignment */ + case DAC_ALIGN_12B_R: + data = ((uint32_t)data1 << DH_12BIT_OFFSET) | data0; + DACC_R12DH = data; + break; + /* data left 12b alignment */ + case DAC_ALIGN_12B_L: + data = ((uint32_t)data1 << DH_12BIT_OFFSET) | data0; + DACC_L12DH = data; + break; + /* data right 8b alignment */ + case DAC_ALIGN_8B_R: + data = ((uint32_t)data1 << DH_8BIT_OFFSET) | data0; + DACC_R8DH = data; + break; + default: + break; + } +} + +/*! + \brief enable DAC concurrent interrupt funcution + \param[in] none + \param[out] none + \retval none +*/ +void dac_concurrent_interrupt_enable(void) +{ + uint32_t ctl = 0U; + ctl = DAC_CTL_DDUDRIE0 | DAC_CTL_DDUDRIE1; + DAC_CTL |= (ctl); +} + +/*! + \brief disable DAC concurrent interrupt funcution + \param[in] none + \param[out] none + \retval none +*/ +void dac_concurrent_interrupt_disable(void) +{ + uint32_t ctl = 0U; + ctl = DAC_CTL_DDUDRIE0 | DAC_CTL_DDUDRIE1; + DAC_CTL &= (~ctl); +} + +/*! + \brief enable DAC interrupt(DAC DMA underrun interrupt) + \param[in] dac_periph: DACx(x = 0,1) + \param[out] none + \retval none +*/ +void dac_interrupt_enable(uint32_t dac_periph) +{ + if(DAC0 == dac_periph){ + DAC_CTL |= DAC_CTL_DDUDRIE0; + }else{ + DAC_CTL |= DAC_CTL_DDUDRIE1; + } +} + +/*! + \brief disable DAC interrupt(DAC DMA underrun interrupt) + \param[in] dac_periph: DACx(x = 0,1) + \param[out] none + \retval none +*/ +void dac_interrupt_disable(uint32_t dac_periph) +{ + if(DAC0 == dac_periph){ + DAC_CTL &= ~DAC_CTL_DDUDRIE0; + }else{ + DAC_CTL &= ~DAC_CTL_DDUDRIE1; + } +} + +/*! + \brief get the specified DAC flag (DAC DMA underrun flag) + \param[in] dac_periph: DACx(x = 0,1) + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus dac_flag_get(uint32_t dac_periph) +{ + FlagStatus temp_flag = RESET; + if(DAC0 == dac_periph){ + /* check the DMA underrun flag */ + if(RESET != (DAC_STAT & DAC_STAT_DDUDR0)){ + temp_flag = SET; + } + }else{ + /* check the DMA underrun flag */ + if(RESET != (DAC_STAT & DAC_STAT_DDUDR1)){ + temp_flag = SET; + } + } + return temp_flag; +} + +/*! + \brief clear the specified DAC flag (DAC DMA underrun flag) + \param[in] dac_periph: DACx(x = 0,1) + \param[out] none + \retval none +*/ +void dac_flag_clear(uint32_t dac_periph) +{ + if(DAC0 == dac_periph){ + DAC_STAT |= DAC_STAT_DDUDR0; + }else{ + DAC_STAT |= DAC_STAT_DDUDR1; + } +} + +/*! + \brief get the specified DAC interrupt flag (DAC DMA underrun interrupt flag) + \param[in] dac_periph: DACx(x = 0,1) + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus dac_interrupt_flag_get(uint32_t dac_periph) +{ + FlagStatus temp_flag = RESET; + uint32_t ddudr_flag = 0U, ddudrie_flag = 0U; + + if(DAC0 == dac_periph){ + /* check the DMA underrun flag and DAC DMA underrun interrupt enable flag */ + ddudr_flag = DAC_STAT & DAC_STAT_DDUDR0; + ddudrie_flag = DAC_CTL & DAC_CTL_DDUDRIE0; + if((RESET != ddudr_flag) && (RESET != ddudrie_flag)){ + temp_flag = SET; + } + }else{ + /* check the DMA underrun flag and DAC DMA underrun interrupt enable flag */ + ddudr_flag = DAC_STAT & DAC_STAT_DDUDR1; + ddudrie_flag = DAC_CTL & DAC_CTL_DDUDRIE1; + if((RESET != ddudr_flag) && (RESET != ddudrie_flag)){ + temp_flag = SET; + } + } + return temp_flag; +} + +/*! + \brief clear the specified DAC interrupt flag (DAC DMA underrun interrupt flag) + \param[in] dac_periph: DACx(x = 0,1) + \param[out] none + \retval none +*/ +void dac_interrupt_flag_clear(uint32_t dac_periph) +{ + if(DAC0 == dac_periph){ + DAC_STAT |= DAC_STAT_DDUDR0; + }else{ + DAC_STAT |= DAC_STAT_DDUDR1; + } +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dbg.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dbg.c new file mode 100644 index 0000000000..e74c668501 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dbg.c @@ -0,0 +1,198 @@ +/*! + \file gd32f4xx_dbg.c + \brief DBG driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_dbg.h" + +#define DBG_RESET_VAL 0x00000000U + +/*! + \brief deinitialize the DBG + \param[in] none + \param[out] none + \retval none +*/ +void dbg_deinit(void) +{ + DBG_CTL0 = DBG_RESET_VAL; + DBG_CTL1 = DBG_RESET_VAL; +} + +/*! + \brief read DBG_ID code register + \param[in] none + \param[out] none + \retval DBG_ID code +*/ +uint32_t dbg_id_get(void) +{ + return DBG_ID; +} + +/*! + \brief enable low power behavior when the mcu is in debug mode + \param[in] dbg_low_power: + this parameter can be any combination of the following values: + \arg DBG_LOW_POWER_SLEEP: keep debugger connection during sleep mode + \arg DBG_LOW_POWER_DEEPSLEEP: keep debugger connection during deepsleep mode + \arg DBG_LOW_POWER_STANDBY: keep debugger connection during standby mode + \param[out] none + \retval none +*/ +void dbg_low_power_enable(uint32_t dbg_low_power) +{ + DBG_CTL0 |= dbg_low_power; +} + +/*! + \brief disable low power behavior when the mcu is in debug mode + \param[in] dbg_low_power: + this parameter can be any combination of the following values: + \arg DBG_LOW_POWER_SLEEP: donot keep debugger connection during sleep mode + \arg DBG_LOW_POWER_DEEPSLEEP: donot keep debugger connection during deepsleep mode + \arg DBG_LOW_POWER_STANDBY: donot keep debugger connection during standby mode + \param[out] none + \retval none +*/ +void dbg_low_power_disable(uint32_t dbg_low_power) +{ + DBG_CTL0 &= ~dbg_low_power; +} + +/*! + \brief enable peripheral behavior when the mcu is in debug mode + \param[in] dbg_periph: dbg_periph_enum + only one parameter can be selected which is shown as below: + \arg DBG_TIMER1_HOLD: hold TIMER1 counter when core is halted + \arg DBG_TIMER2_HOLD: hold TIMER2 counter when core is halted + \arg DBG_TIMER3_HOLD: hold TIMER3 counter when core is halted + \arg DBG_TIMER4_HOLD: hold TIMER4 counter when core is halted + \arg DBG_TIMER5_HOLD: hold TIMER5 counter when core is halted + \arg DBG_TIMER6_HOLD: hold TIMER6 counter when core is halted + \arg DBG_TIMER11_HOLD: hold TIMER11 counter when core is halted + \arg DBG_TIMER12_HOLD: hold TIMER12 counter when core is halted + \arg DBG_TIMER13_HOLD: hold TIMER13 counter when core is halted + \arg DBG_RTC_HOLD: hold RTC calendar and wakeup counter when core is halted + \arg DBG_WWDGT_HOLD: debug WWDGT kept when core is halted + \arg DBG_FWDGT_HOLD: debug FWDGT kept when core is halted + \arg DBG_I2C0_HOLD: hold I2C0 smbus when core is halted + \arg DBG_I2C1_HOLD: hold I2C1 smbus when core is halted + \arg DBG_I2C2_HOLD: hold I2C2 smbus when core is halted + \arg DBG_CAN0_HOLD: debug CAN0 kept when core is halted + \arg DBG_CAN1_HOLD: debug CAN1 kept when core is halted + \arg DBG_TIMER0_HOLD: hold TIMER0 counter when core is halted + \arg DBG_TIMER7_HOLD: hold TIMER7 counter when core is halted + \arg DBG_TIMER8_HOLD: hold TIMER8 counter when core is halted + \arg DBG_TIMER9_HOLD: hold TIMER9 counter when core is halted + \arg DBG_TIMER10_HOLD: hold TIMER10 counter when core is halted + \arg \param[out] none + \retval none +*/ +void dbg_periph_enable(dbg_periph_enum dbg_periph) +{ + DBG_REG_VAL(dbg_periph) |= BIT(DBG_BIT_POS(dbg_periph)); +} + +/*! + \brief disable peripheral behavior when the mcu is in debug mode + \param[in] dbg_periph: dbg_periph_enum + only one parameter can be selected which is shown as below: + \arg DBG_TIMER1_HOLD: hold TIMER1 counter when core is halted + \arg DBG_TIMER2_HOLD: hold TIMER2 counter when core is halted + \arg DBG_TIMER3_HOLD: hold TIMER3 counter when core is halted + \arg DBG_TIMER4_HOLD: hold TIMER4 counter when core is halted + \arg DBG_TIMER5_HOLD: hold TIMER5 counter when core is halted + \arg DBG_TIMER6_HOLD: hold TIMER6 counter when core is halted + \arg DBG_TIMER11_HOLD: hold TIMER11 counter when core is halted + \arg DBG_TIMER12_HOLD: hold TIMER12 counter when core is halted + \arg DBG_TIMER13_HOLD: hold TIMER13 counter when core is halted + \arg DBG_RTC_HOLD: hold RTC calendar and wakeup counter when core is halted + \arg DBG_WWDGT_HOLD: debug WWDGT kept when core is halted + \arg DBG_FWDGT_HOLD: debug FWDGT kept when core is halted + \arg DBG_I2C0_HOLD: hold I2C0 smbus when core is halted + \arg DBG_I2C1_HOLD: hold I2C1 smbus when core is halted + \arg DBG_I2C2_HOLD: hold I2C2 smbus when core is halted + \arg DBG_CAN0_HOLD: debug CAN0 kept when core is halted + \arg DBG_CAN1_HOLD: debug CAN1 kept when core is halted + \arg DBG_TIMER0_HOLD: hold TIMER0 counter when core is halted + \arg DBG_TIMER7_HOLD: hold TIMER7 counter when core is halted + \arg DBG_TIMER8_HOLD: hold TIMER8 counter when core is halted + \arg DBG_TIMER9_HOLD: hold TIMER9 counter when core is halted + \arg DBG_TIMER10_HOLD: hold TIMER10 counter when core is halted + \param[out] none + \retval none +*/ +void dbg_periph_disable(dbg_periph_enum dbg_periph) +{ + DBG_REG_VAL(dbg_periph) &= ~BIT(DBG_BIT_POS(dbg_periph)); +} + +/*! + \brief enable trace pin assignment + \param[in] none + \param[out] none + \retval none +*/ +void dbg_trace_pin_enable(void) +{ + DBG_CTL0 |= DBG_CTL0_TRACE_IOEN; +} + +/*! + \brief disable trace pin assignment + \param[in] none + \param[out] none + \retval none +*/ +void dbg_trace_pin_disable(void) +{ + DBG_CTL0 &= ~DBG_CTL0_TRACE_IOEN; +} + +/*! + \brief trace pin mode selection + \param[in] trace_mode: + \arg TRACE_MODE_ASYNC: trace pin used for async mode + \arg TRACE_MODE_SYNC_DATASIZE_1: trace pin used for sync mode and data size is 1 + \arg TRACE_MODE_SYNC_DATASIZE_2: trace pin used for sync mode and data size is 2 + \arg TRACE_MODE_SYNC_DATASIZE_4: trace pin used for sync mode and data size is 4 + \param[out] none + \retval none +*/ +void dbg_trace_pin_mode_set(uint32_t trace_mode) +{ + DBG_CTL0 &= ~DBG_CTL0_TRACE_MODE; + DBG_CTL0 |= trace_mode; +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dci.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dci.c new file mode 100644 index 0000000000..586c825718 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dci.c @@ -0,0 +1,345 @@ +/*! + \file gd32f4xx_dci.c + \brief DCI driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_dci.h" + +/*! + \brief DCI deinit + \param[in] none + \param[out] none + \retval none +*/ +void dci_deinit(void) +{ + rcu_periph_reset_enable(RCU_DCIRST); + rcu_periph_reset_disable(RCU_DCIRST); +} + +/*! + \brief initialize DCI registers + \param[in] dci_struct: DCI parameter initialization structure + members of the structure and the member values are shown as below: + capture_mode : DCI_CAPTURE_MODE_CONTINUOUS, DCI_CAPTURE_MODE_SNAPSHOT + colck_polarity : DCI_CK_POLARITY_FALLING, DCI_CK_POLARITY_RISING + hsync_polarity : DCI_HSYNC_POLARITY_LOW, DCI_HSYNC_POLARITY_HIGH + vsync_polarity : DCI_VSYNC_POLARITY_LOW, DCI_VSYNC_POLARITY_HIGH + frame_rate : DCI_FRAME_RATE_ALL, DCI_FRAME_RATE_1_2, DCI_FRAME_RATE_1_4 + interface_format: DCI_INTERFACE_FORMAT_8BITS, DCI_INTERFACE_FORMAT_10BITS, + DCI_INTERFACE_FORMAT_12BITS, DCI_INTERFACE_FORMAT_14BITS + \param[out] none + \retval none +*/ +void dci_init(dci_parameter_struct* dci_struct) +{ + uint32_t reg = 0U; + /* disable capture function and DCI */ + DCI_CTL &= ~(DCI_CTL_CAP | DCI_CTL_DCIEN); + /* configure DCI parameter */ + reg |= dci_struct->capture_mode; + reg |= dci_struct->clock_polarity; + reg |= dci_struct->hsync_polarity; + reg |= dci_struct->vsync_polarity; + reg |= dci_struct->frame_rate; + reg |= dci_struct->interface_format; + + DCI_CTL = reg; +} + +/*! + \brief enable DCI function + \param[in] none + \param[out] none + \retval none +*/ +void dci_enable(void) +{ + DCI_CTL |= DCI_CTL_DCIEN; +} + +/*! + \brief disable DCI function + \param[in] none + \param[out] none + \retval none +*/ +void dci_disable(void) +{ + DCI_CTL &= ~DCI_CTL_DCIEN; +} + +/*! + \brief enable DCI capture + \param[in] none + \param[out] none + \retval none +*/ +void dci_capture_enable(void) +{ + DCI_CTL |= DCI_CTL_CAP; +} + +/*! + \brief disable DCI capture + \param[in] none + \param[out] none + \retval none +*/ +void dci_capture_disable(void) +{ + DCI_CTL &= ~DCI_CTL_CAP; +} + +/*! + \brief enable DCI jpeg mode + \param[in] none + \param[out] none + \retval none +*/ +void dci_jpeg_enable(void) +{ + DCI_CTL |= DCI_CTL_JM; +} + +/*! + \brief disable DCI jpeg mode + \param[in] none + \param[out] none + \retval none +*/ +void dci_jpeg_disable(void) +{ + DCI_CTL &= ~DCI_CTL_JM; +} + +/*! + \brief enable cropping window function + \param[in] none + \param[out] none + \retval none +*/ +void dci_crop_window_enable(void) +{ + DCI_CTL |= DCI_CTL_WDEN; +} + +/*! + \brief disable cropping window function + \param[in] none + \param[out] none + \retval none +*/ +void dci_crop_window_disable(void) +{ + DCI_CTL &= ~DCI_CTL_WDEN; +} + +/*! + \brief configure DCI cropping window + \param[in] start_x: window horizontal start position + \param[in] start_y: window vertical start position + \param[in] size_width: window horizontal size + \param[in] size_height: window vertical size + \param[out] none + \retval none +*/ +void dci_crop_window_config(uint16_t start_x, uint16_t start_y, uint16_t size_width, uint16_t size_height) +{ + DCI_CWSPOS = ((uint32_t)start_x | ((uint32_t)start_y<<16)); + DCI_CWSZ = ((uint32_t)size_width | ((uint32_t)size_height<<16)); +} + +/*! + \brief enable embedded synchronous mode + \param[in] none + \param[out] none + \retval none +*/ +void dci_embedded_sync_enable(void) +{ + DCI_CTL |= DCI_CTL_ESM; +} + +/*! + \brief disble embedded synchronous mode + \param[in] none + \param[out] none + \retval none +*/ +void dci_embedded_sync_disable(void) +{ + DCI_CTL &= ~DCI_CTL_ESM; +} +/*! + \brief config synchronous codes in embedded synchronous mode + \param[in] frame_start: frame start code in embedded synchronous mode + \param[in] line_start: line start code in embedded synchronous mode + \param[in] line_end: line end code in embedded synchronous mode + \param[in] frame_end: frame end code in embedded synchronous mode + \param[out] none + \retval none +*/ +void dci_sync_codes_config(uint8_t frame_start, uint8_t line_start, uint8_t line_end, uint8_t frame_end) +{ + DCI_SC = ((uint32_t)frame_start | ((uint32_t)line_start<<8) | ((uint32_t)line_end<<16) | ((uint32_t)frame_end<<24)); +} + +/*! + \brief config synchronous codes unmask in embedded synchronous mode + \param[in] frame_start: frame start code unmask bits in embedded synchronous mode + \param[in] line_start: line start code unmask bits in embedded synchronous mode + \param[in] line_end: line end code unmask bits in embedded synchronous mode + \param[in] frame_end: frame end code unmask bits in embedded synchronous mode + \param[out] none + \retval none +*/ +void dci_sync_codes_unmask_config(uint8_t frame_start, uint8_t line_start, uint8_t line_end, uint8_t frame_end) +{ + DCI_SCUMSK = ((uint32_t)frame_start | ((uint32_t)line_start<<8) | ((uint32_t)line_end<<16) | ((uint32_t)frame_end<<24)); +} + +/*! + \brief read DCI data register + \param[in] none + \param[out] none + \retval data +*/ +uint32_t dci_data_read(void) +{ + return DCI_DATA; +} + +/*! + \brief get specified flag + \param[in] flag: + \arg DCI_FLAG_HS: HS line status + \arg DCI_FLAG_VS: VS line status + \arg DCI_FLAG_FV:FIFO valid + \arg DCI_FLAG_EF: end of frame flag + \arg DCI_FLAG_OVR: FIFO overrun flag + \arg DCI_FLAG_ESE: embedded synchronous error flag + \arg DCI_FLAG_VSYNC: vsync flag + \arg DCI_FLAG_EL: end of line flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus dci_flag_get(uint32_t flag) +{ + uint32_t stat = 0U; + + if(flag >> 31){ + /* get flag status from DCI_STAT1 register */ + stat = DCI_STAT1; + }else{ + /* get flag status from DCI_STAT0 register */ + stat = DCI_STAT0; + } + + if(flag & stat){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief enable specified DCI interrupt + \param[in] interrupt: + \arg DCI_INT_EF: end of frame interrupt + \arg DCI_INT_OVR: FIFO overrun interrupt + \arg DCI_INT_ESE: embedded synchronous error interrupt + \arg DCI_INT_VSYNC: vsync interrupt + \arg DCI_INT_EL: end of line interrupt + \param[out] none + \retval none +*/ +void dci_interrupt_enable(uint32_t interrupt) +{ + DCI_INTEN |= interrupt; +} + +/*! + \brief disable specified DCI interrupt + \param[in] interrupt: + \arg DCI_INT_EF: end of frame interrupt + \arg DCI_INT_OVR: FIFO overrun interrupt + \arg DCI_INT_ESE: embedded synchronous error interrupt + \arg DCI_INT_VSYNC: vsync interrupt + \arg DCI_INT_EL: end of line interrupt + \param[out] none + \retval none +*/ +void dci_interrupt_disable(uint32_t interrupt) +{ + DCI_INTEN &= ~interrupt; +} + +/*! + \brief clear specified interrupt flag + \param[in] int_flag: + \arg DCI_INT_EF: end of frame interrupt + \arg DCI_INT_OVR: FIFO overrun interrupt + \arg DCI_INT_ESE: embedded synchronous error interrupt + \arg DCI_INT_VSYNC: vsync interrupt + \arg DCI_INT_EL: end of line interrupt + \param[out] none + \retval none +*/ +void dci_interrupt_flag_clear(uint32_t int_flag) +{ + DCI_INTC |= int_flag; +} + +/*! + \brief get specified interrupt flag + \param[in] int_flag: + \arg DCI_INT_FLAG_EF: end of frame interrupt flag + \arg DCI_INT_FLAG_OVR: FIFO overrun interrupt flag + \arg DCI_INT_FLAG_ESE: embedded synchronous error interrupt flag + \arg DCI_INT_FLAG_VSYNC: vsync interrupt flag + \arg DCI_INT_FLAG_EL: end of line interrupt flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus dci_interrupt_flag_get(uint32_t int_flag) +{ + if(RESET == (DCI_INTF & int_flag)){ + return RESET; + }else{ + return SET; + } +} + + diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dma.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dma.c new file mode 100644 index 0000000000..f72c1190c1 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dma.c @@ -0,0 +1,905 @@ +/*! + \file gd32f4xx_dma.c + \brief DMA driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + + +#include "gd32f4xx_dma.h" + +/* DMA register bit offset */ +#define CHXCTL_PERIEN_OFFSET ((uint32_t)25U) + +/*! + \brief deinitialize DMA a channel registers + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel is deinitialized + \arg DMA_CHx(x=0..7) + \param[out] none + \retval none +*/ +void dma_deinit(uint32_t dma_periph, dma_channel_enum channelx) +{ + /* disable DMA a channel */ + DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_CHEN; + /* reset DMA channel registers */ + DMA_CHCTL(dma_periph,channelx) = DMA_CHCTL_RESET_VALUE; + DMA_CHCNT(dma_periph,channelx) = DMA_CHCNT_RESET_VALUE; + DMA_CHPADDR(dma_periph,channelx) = DMA_CHPADDR_RESET_VALUE; + DMA_CHM0ADDR(dma_periph,channelx) = DMA_CHMADDR_RESET_VALUE; + DMA_CHM1ADDR(dma_periph,channelx) = DMA_CHMADDR_RESET_VALUE; + DMA_CHFCTL(dma_periph,channelx) = DMA_CHFCTL_RESET_VALUE; + if(channelx < DMA_CH4){ + DMA_INTC0(dma_periph) |= DMA_FLAG_ADD(DMA_CHINTF_RESET_VALUE,channelx); + }else{ + channelx -= (dma_channel_enum)4; + DMA_INTC1(dma_periph) |= DMA_FLAG_ADD(DMA_CHINTF_RESET_VALUE,channelx); + } +} + +/*! + \brief initialize the DMA single data mode parameters struct with the default values + \param[in] init_struct: the initialization data needed to initialize DMA channel + \param[out] none + \retval none +*/ +void dma_single_data_para_struct_init(dma_single_data_parameter_struct* init_struct) +{ + /* set the DMA struct with the default values */ + init_struct->periph_addr = 0U; + init_struct->periph_inc = DMA_PERIPH_INCREASE_DISABLE; + init_struct->memory0_addr = 0U; + init_struct->memory_inc = DMA_MEMORY_INCREASE_DISABLE; + init_struct->periph_memory_width = 0U; + init_struct->circular_mode = DMA_CIRCULAR_MODE_DISABLE; + init_struct->direction = DMA_PERIPH_TO_MEMORY; + init_struct->number = 0U; + init_struct->priority = DMA_PRIORITY_LOW; +} + +/*! + \brief initialize the DMA multi data mode parameters struct with the default values + \param[in] init_struct: the initialization data needed to initialize DMA channel + \param[out] none + \retval none +*/ +void dma_multi_data_para_struct_init(dma_multi_data_parameter_struct* init_struct) +{ + /* set the DMA struct with the default values */ + init_struct->periph_addr = 0U; + init_struct->periph_width = 0U; + init_struct->periph_inc = DMA_PERIPH_INCREASE_DISABLE; + init_struct->memory0_addr = 0U; + init_struct->memory_width = 0U; + init_struct->memory_inc = DMA_MEMORY_INCREASE_DISABLE; + init_struct->memory_burst_width = 0U; + init_struct->periph_burst_width = 0U; + init_struct->circular_mode = DMA_CIRCULAR_MODE_DISABLE; + init_struct->direction = DMA_PERIPH_TO_MEMORY; + init_struct->number = 0U; + init_struct->priority = DMA_PRIORITY_LOW; +} + +/*! + \brief initialize DMA single data mode + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel is initialized + \arg DMA_CHx(x=0..7) + \param[in] init_struct: the data needed to initialize DMA single data mode + periph_addr: peripheral base address + periph_inc: DMA_PERIPH_INCREASE_ENABLE,DMA_PERIPH_INCREASE_DISABLE,DMA_PERIPH_INCREASE_FIX + memory0_addr: memory base address + memory_inc: DMA_MEMORY_INCREASE_ENABLE,DMA_MEMORY_INCREASE_DISABLE + periph_memory_width: DMA_PERIPH_WIDTH_8BIT,DMA_PERIPH_WIDTH_16BIT,DMA_PERIPH_WIDTH_32BIT + circular_mode: DMA_CIRCULAR_MODE_ENABLE,DMA_CIRCULAR_MODE_DISABLE + direction: DMA_PERIPH_TO_MEMORY,DMA_MEMORY_TO_PERIPH,DMA_MEMORY_TO_MEMORY + number: the number of remaining data to be transferred by the DMA + priority: DMA_PRIORITY_LOW,DMA_PRIORITY_MEDIUM,DMA_PRIORITY_HIGH,DMA_PRIORITY_ULTRA_HIGH + \param[out] none + \retval none +*/ +void dma_single_data_mode_init(uint32_t dma_periph, dma_channel_enum channelx, dma_single_data_parameter_struct* init_struct) +{ + uint32_t ctl; + + /* select single data mode */ + DMA_CHFCTL(dma_periph,channelx) &= ~DMA_CHXFCTL_MDMEN; + + /* configure peripheral base address */ + DMA_CHPADDR(dma_periph,channelx) = init_struct->periph_addr; + + /* configure memory base address */ + DMA_CHM0ADDR(dma_periph,channelx) = init_struct->memory0_addr; + + /* configure the number of remaining data to be transferred */ + DMA_CHCNT(dma_periph,channelx) = init_struct->number; + + /* configure peripheral and memory transfer width,channel priotity,transfer mode */ + ctl = DMA_CHCTL(dma_periph,channelx); + ctl &= ~(DMA_CHXCTL_PWIDTH | DMA_CHXCTL_MWIDTH | DMA_CHXCTL_PRIO | DMA_CHXCTL_TM); + ctl |= (init_struct->periph_memory_width | (init_struct->periph_memory_width << 2) | init_struct->priority | init_struct->direction); + DMA_CHCTL(dma_periph,channelx) = ctl; + + /* configure peripheral increasing mode */ + if(DMA_PERIPH_INCREASE_ENABLE == init_struct->periph_inc){ + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_PNAGA; + }else if(DMA_PERIPH_INCREASE_DISABLE == init_struct->periph_inc){ + DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_PNAGA; + }else{ + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_PAIF; + } + + /* configure memory increasing mode */ + if(DMA_MEMORY_INCREASE_ENABLE == init_struct->memory_inc){ + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_MNAGA; + }else{ + DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_MNAGA; + } + + /* configure DMA circular mode */ + if(DMA_CIRCULAR_MODE_ENABLE == init_struct->circular_mode){ + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_CMEN; + }else{ + DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_CMEN; + } +} + +/*! + \brief initialize DMA multi data mode + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel is initialized + \arg DMA_CHx(x=0..7) + \param[in] dma_multi_data_parameter_struct: the data needed to initialize DMA multi data mode + periph_addr: peripheral base address + periph_width: DMA_PERIPH_WIDTH_8BIT,DMA_PERIPH_WIDTH_16BIT,DMA_PERIPH_WIDTH_32BIT + periph_inc: DMA_PERIPH_INCREASE_ENABLE,DMA_PERIPH_INCREASE_DISABLE,DMA_PERIPH_INCREASE_FIX + memory0_addr: memory0 base address + memory_width: DMA_MEMORY_WIDTH_8BIT,DMA_MEMORY_WIDTH_16BIT,DMA_MEMORY_WIDTH_32BIT + memory_inc: DMA_MEMORY_INCREASE_ENABLE,DMA_MEMORY_INCREASE_DISABLE + memory_burst_width: DMA_MEMORY_BURST_SINGLE,DMA_MEMORY_BURST_4_BEAT,DMA_MEMORY_BURST_8_BEAT,DMA_MEMORY_BURST_16_BEAT + periph_burst_width: DMA_PERIPH_BURST_SINGLE,DMA_PERIPH_BURST_4_BEAT,DMA_PERIPH_BURST_8_BEAT,DMA_PERIPH_BURST_16_BEAT + critical_value: DMA_FIFO_1_WORD,DMA_FIFO_2_WORD,DMA_FIFO_3_WORD,DMA_FIFO_4_WORD + circular_mode: DMA_CIRCULAR_MODE_ENABLE,DMA_CIRCULAR_MODE_DISABLE + direction: DMA_PERIPH_TO_MEMORY,DMA_MEMORY_TO_PERIPH,DMA_MEMORY_TO_MEMORY + number: the number of remaining data to be transferred by the DMA + priority: DMA_PRIORITY_LOW,DMA_PRIORITY_MEDIUM,DMA_PRIORITY_HIGH,DMA_PRIORITY_ULTRA_HIGH + \param[out] none + \retval none +*/ +void dma_multi_data_mode_init(uint32_t dma_periph, dma_channel_enum channelx, dma_multi_data_parameter_struct* init_struct) +{ + uint32_t ctl; + + /* select multi data mode and configure FIFO critical value */ + DMA_CHFCTL(dma_periph,channelx) |= (DMA_CHXFCTL_MDMEN | init_struct->critical_value); + + /* configure peripheral base address */ + DMA_CHPADDR(dma_periph,channelx) = init_struct->periph_addr; + + /* configure memory base address */ + DMA_CHM0ADDR(dma_periph,channelx) = init_struct->memory0_addr; + + /* configure the number of remaining data to be transferred */ + DMA_CHCNT(dma_periph,channelx) = init_struct->number; + + /* configure peripheral and memory transfer width,channel priotity,transfer mode,peripheral and memory burst transfer width */ + ctl = DMA_CHCTL(dma_periph,channelx); + ctl &= ~(DMA_CHXCTL_PWIDTH | DMA_CHXCTL_MWIDTH | DMA_CHXCTL_PRIO | DMA_CHXCTL_TM | DMA_CHXCTL_PBURST | DMA_CHXCTL_MBURST); + ctl |= (init_struct->periph_width | (init_struct->memory_width ) | init_struct->priority | init_struct->direction | init_struct->memory_burst_width | init_struct->periph_burst_width); + DMA_CHCTL(dma_periph,channelx) = ctl; + + /* configure peripheral increasing mode */ + if(DMA_PERIPH_INCREASE_ENABLE == init_struct->periph_inc){ + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_PNAGA; + }else if(DMA_PERIPH_INCREASE_DISABLE == init_struct->periph_inc){ + DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_PNAGA; + }else{ + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_PAIF; + } + + /* configure memory increasing mode */ + if(DMA_MEMORY_INCREASE_ENABLE == init_struct->memory_inc){ + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_MNAGA; + }else{ + DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_MNAGA; + } + + /* configure DMA circular mode */ + if(DMA_CIRCULAR_MODE_ENABLE == init_struct->circular_mode){ + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_CMEN; + }else{ + DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_CMEN; + } +} + +/*! + \brief set DMA peripheral base address + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel to set peripheral base address + \arg DMA_CHx(x=0..7) + \param[in] address: peripheral base address + \param[out] none + \retval none +*/ +void dma_periph_address_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t address) +{ + DMA_CHPADDR(dma_periph,channelx) = address; +} + +/*! + \brief set DMA Memory0 base address + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel to set Memory base address + \arg DMA_CHx(x=0..7) + \param[in] memory_flag: DMA_MEMORY_x(x=0,1) + \param[in] address: Memory base address + \param[out] none + \retval none +*/ +void dma_memory_address_config(uint32_t dma_periph, dma_channel_enum channelx, uint8_t memory_flag, uint32_t address) +{ + if(memory_flag){ + DMA_CHM1ADDR(dma_periph,channelx) = address; + }else{ + DMA_CHM0ADDR(dma_periph,channelx) = address; + } +} + +/*! + \brief set the number of remaining data to be transferred by the DMA + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel to set number + \arg DMA_CHx(x=0..7) + \param[in] number: the number of remaining data to be transferred by the DMA + \param[out] none + \retval none +*/ +void dma_transfer_number_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t number) +{ + DMA_CHCNT(dma_periph,channelx) = number; +} + +/*! + \brief get the number of remaining data to be transferred by the DMA + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel to set number + \arg DMA_CHx(x=0..7) + \param[out] none + \retval uint32_t: the number of remaining data to be transferred by the DMA +*/ +uint32_t dma_transfer_number_get(uint32_t dma_periph, dma_channel_enum channelx) +{ + return (uint32_t)DMA_CHCNT(dma_periph,channelx); +} + +/*! + \brief configure priority level of DMA channel + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[in] priority: priority Level of this channel + only one parameter can be selected which is shown as below: + \arg DMA_PRIORITY_LOW: low priority + \arg DMA_PRIORITY_MEDIUM: medium priority + \arg DMA_PRIORITY_HIGH: high priority + \arg DMA_PRIORITY_ULTRA_HIGH: ultra high priority + \param[out] none + \retval none +*/ +void dma_priority_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t priority) +{ + uint32_t ctl; + /* acquire DMA_CHxCTL register */ + ctl = DMA_CHCTL(dma_periph,channelx); + /* assign regiser */ + ctl &= ~DMA_CHXCTL_PRIO; + ctl |= priority; + DMA_CHCTL(dma_periph,channelx) = ctl; +} + +/*! + \brief configure transfer burst beats of memory + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[in] mbeat: transfer burst beats + \arg DMA_MEMORY_BURST_SINGLE: memory transfer single burst + \arg DMA_MEMORY_BURST_4_BEAT: memory transfer 4-beat burst + \arg DMA_MEMORY_BURST_8_BEAT: memory transfer 8-beat burst + \arg DMA_MEMORY_BURST_16_BEAT: memory transfer 16-beat burst + \param[out] none + \retval none +*/ +void dma_memory_burst_beats_config (uint32_t dma_periph, dma_channel_enum channelx, uint32_t mbeat) +{ + uint32_t ctl; + /* acquire DMA_CHxCTL register */ + ctl = DMA_CHCTL(dma_periph,channelx); + /* assign regiser */ + ctl &= ~DMA_CHXCTL_MBURST; + ctl |= mbeat; + DMA_CHCTL(dma_periph,channelx) = ctl; +} + +/*! + \brief configure transfer burst beats of peripheral + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[in] pbeat: transfer burst beats + only one parameter can be selected which is shown as below: + \arg DMA_PERIPH_BURST_SINGLE: peripheral transfer single burst + \arg DMA_PERIPH_BURST_4_BEAT: peripheral transfer 4-beat burst + \arg DMA_PERIPH_BURST_8_BEAT: peripheral transfer 8-beat burst + \arg DMA_PERIPH_BURST_16_BEAT: peripheral transfer 16-beat burst + \param[out] none + \retval none +*/ +void dma_periph_burst_beats_config (uint32_t dma_periph, dma_channel_enum channelx, uint32_t pbeat) +{ + uint32_t ctl; + /* acquire DMA_CHxCTL register */ + ctl = DMA_CHCTL(dma_periph,channelx); + /* assign regiser */ + ctl &= ~DMA_CHXCTL_PBURST; + ctl |= pbeat; + DMA_CHCTL(dma_periph,channelx) = ctl; +} + +/*! + \brief configure transfer data size of memory + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[in] msize: transfer data size of memory + only one parameter can be selected which is shown as below: + \arg DMA_MEMORY_WIDTH_8BIT: transfer data size of memory is 8-bit + \arg DMA_MEMORY_WIDTH_16BIT: transfer data size of memory is 16-bit + \arg DMA_MEMORY_WIDTH_32BIT: transfer data size of memory is 32-bit + \param[out] none + \retval none +*/ +void dma_memory_width_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t msize) +{ + uint32_t ctl; + /* acquire DMA_CHxCTL register */ + ctl = DMA_CHCTL(dma_periph,channelx); + /* assign regiser */ + ctl &= ~DMA_CHXCTL_MWIDTH; + ctl |= msize; + DMA_CHCTL(dma_periph,channelx) = ctl; +} + +/*! + \brief configure transfer data size of peripheral + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[in] msize: transfer data size of peripheral + only one parameter can be selected which is shown as below: + \arg DMA_PERIPHERAL_WIDTH_8BIT: transfer data size of peripheral is 8-bit + \arg DMA_PERIPHERAL_WIDTH_16BIT: transfer data size of peripheral is 16-bit + \arg DMA_PERIPHERAL_WIDTH_32BIT: transfer data size of peripheral is 32-bit + \param[out] none + \retval none +*/ +void dma_periph_width_config (uint32_t dma_periph, dma_channel_enum channelx, uint32_t psize) +{ + uint32_t ctl; + /* acquire DMA_CHxCTL register */ + ctl = DMA_CHCTL(dma_periph,channelx); + /* assign regiser */ + ctl &= ~DMA_CHXCTL_PWIDTH; + ctl |= psize; + DMA_CHCTL(dma_periph,channelx) = ctl; +} + +/*! + \brief configure memory address generation generation_algorithm + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[in] generation_algorithm: the address generation algorithm + only one parameter can be selected which is shown as below: + \arg DMA_MEMORY_INCREASE_ENABLE: next address of memory is increasing address mode + \arg DMA_MEMORY_INCREASE_DISABLE: next address of memory is fixed address mode + \param[out] none + \retval none +*/ +void dma_memory_address_generation_config(uint32_t dma_periph, dma_channel_enum channelx, uint8_t generation_algorithm) +{ + if(DMA_MEMORY_INCREASE_ENABLE == generation_algorithm){ + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_MNAGA; + }else{ + DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_MNAGA; + } +} + +/*! + \brief configure peripheral address generation_algorithm + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[in] generation_algorithm: the address generation algorithm + only one parameter can be selected which is shown as below: + \arg DMA_PERIPH_INCREASE_ENABLE: next address of peripheral is increasing address mode + \arg DMA_PERIPH_INCREASE_DISABLE: next address of peripheral is fixed address mode + \arg DMA_PERIPH_INCREASE_FIX: increasing steps of peripheral address is fixed + \param[out] none + \retval none +*/ +void dma_peripheral_address_generation_config(uint32_t dma_periph, dma_channel_enum channelx, uint8_t generation_algorithm) +{ + if(DMA_PERIPH_INCREASE_ENABLE == generation_algorithm){ + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_PNAGA; + }else if(DMA_PERIPH_INCREASE_DISABLE == generation_algorithm){ + DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_PNAGA; + }else{ + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_PNAGA; + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_PAIF; + } +} + +/*! + \brief enable DMA circulation mode + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[out] none + \retval none +*/ +void dma_circulation_enable(uint32_t dma_periph, dma_channel_enum channelx) +{ + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_CMEN; +} + +/*! + \brief disable DMA circulation mode + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[out] none + \retval none +*/ +void dma_circulation_disable(uint32_t dma_periph, dma_channel_enum channelx) +{ + DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_CMEN; +} + +/*! + \brief enable DMA channel + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[out] none + \retval none +*/ +void dma_channel_enable(uint32_t dma_periph, dma_channel_enum channelx) +{ + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_CHEN; +} + +/*! + \brief disable DMA channel + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[out] none + \retval none +*/ +void dma_channel_disable(uint32_t dma_periph, dma_channel_enum channelx) +{ + DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_CHEN; +} + +/*! + \brief configure the direction of data transfer on the channel + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[in] direction: specify the direction of data transfer + only one parameter can be selected which is shown as below: + \arg DMA_PERIPH_TO_MEMORY: read from peripheral and write to memory + \arg DMA_MEMORY_TO_PERIPH: read from memory and write to peripheral + \arg DMA_MEMORY_TO_MEMORY: read from memory and write to memory + \param[out] none + \retval none +*/ +void dma_transfer_direction_config(uint32_t dma_periph, dma_channel_enum channelx, uint8_t direction) +{ + uint32_t ctl; + /* acquire DMA_CHxCTL register */ + ctl = DMA_CHCTL(dma_periph,channelx); + /* assign regiser */ + ctl &= ~DMA_CHXCTL_TM; + ctl |= direction; + + DMA_CHCTL(dma_periph,channelx) = ctl; +} + +/*! + \brief DMA switch buffer mode config + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[in] memory1_addr: memory1 base address + \param[in] memory_select: DMA_MEMORY_0 or DMA_MEMORY_1 + \param[out] none + \retval none +*/ +void dma_switch_buffer_mode_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t memory1_addr, uint32_t memory_select) +{ + /* configure memory1 base address */ + DMA_CHM1ADDR(dma_periph,channelx) = memory1_addr; + + if(DMA_MEMORY_0 == memory_select){ + DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_MBS; + }else{ + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_MBS; + } +} + +/*! + \brief DMA using memory get + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[out] none + \retval the using memory +*/ +uint32_t dma_using_memory_get(uint32_t dma_periph, dma_channel_enum channelx) +{ + if((DMA_CHCTL(dma_periph,channelx)) & DMA_CHXCTL_MBS){ + return DMA_MEMORY_1; + }else{ + return DMA_MEMORY_0; + } +} + +/*! + \brief DMA channel peripheral select + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[in] sub_periph: specify DMA channel peripheral + \arg DMA_SUBPERIx(x=0..7) + \param[out] none + \retval none +*/ +void dma_channel_subperipheral_select(uint32_t dma_periph, dma_channel_enum channelx, dma_subperipheral_enum sub_periph) +{ + uint32_t ctl; + /* acquire DMA_CHxCTL register */ + ctl = DMA_CHCTL(dma_periph,channelx); + /* assign regiser */ + ctl &= ~DMA_CHXCTL_PERIEN; + ctl |= ((uint32_t)sub_periph << CHXCTL_PERIEN_OFFSET); + + DMA_CHCTL(dma_periph,channelx) = ctl; +} + +/*! + \brief DMA flow controller configure + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[in] controller: specify DMA flow controler + only one parameter can be selected which is shown as below: + \arg DMA_FLOW_CONTROLLER_DMA: DMA is the flow controller + \arg DMA_FLOW_CONTROLLER_PERI: peripheral is the flow controller + \param[out] none + \retval none +*/ +void dma_flow_controller_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t controller) +{ + if(DMA_FLOW_CONTROLLER_DMA == controller){ + DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_TFCS; + }else{ + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_TFCS; + } +} + +/*! + \brief DMA switch buffer mode enable + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[in] newvalue: ENABLE or DISABLE + \param[out] none + \retval none +*/ +void dma_switch_buffer_mode_enable(uint32_t dma_periph, dma_channel_enum channelx, ControlStatus newvalue) +{ + if(ENABLE == newvalue){ + /* switch buffer mode enable */ + DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_SBMEN; + }else{ + /* switch buffer mode disable */ + DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_SBMEN; + } +} + +/*! + \brief DMA FIFO status get + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[out] none + \retval the using memory +*/ +uint32_t dma_fifo_status_get(uint32_t dma_periph, dma_channel_enum channelx) +{ + return (DMA_CHFCTL(dma_periph,channelx) & DMA_CHXFCTL_FCNT); +} + +/*! + \brief get DMA flag is set or not + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel to get flag + \arg DMA_CHx(x=0..7) + \param[in] flag: specify get which flag + only one parameter can be selected which is shown as below: + \arg DMA_FLAG_FEE: FIFO error and exception flag + \arg DMA_FLAG_SDE: single data mode exception flag + \arg DMA_FLAG_TAE: transfer access error flag + \arg DMA_FLAG_HTF: half transfer finish flag + \arg DMA_FLAG_FTF: full transger finish flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus dma_flag_get(uint32_t dma_periph, dma_channel_enum channelx, uint32_t flag) +{ + if(channelx < DMA_CH4){ + if(DMA_INTF0(dma_periph) & DMA_FLAG_ADD(flag,channelx)){ + return SET; + }else{ + return RESET; + } + }else{ + channelx -= (dma_channel_enum)4; + if(DMA_INTF1(dma_periph) & DMA_FLAG_ADD(flag,channelx)){ + return SET; + }else{ + return RESET; + } + } +} + +/*! + \brief clear DMA a channel flag + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel to get flag + \arg DMA_CHx(x=0..7) + \param[in] flag: specify get which flag + only one parameter can be selected which is shown as below: + \arg DMA_FLAG_FEE: FIFO error and exception flag + \arg DMA_FLAG_SDE: single data mode exception flag + \arg DMA_FLAG_TAE: transfer access error flag + \arg DMA_FLAG_HTF: half transfer finish flag + \arg DMA_FLAG_FTF: full transger finish flag + \param[out] none + \retval none +*/ +void dma_flag_clear(uint32_t dma_periph, dma_channel_enum channelx, uint32_t flag) +{ + if(channelx < DMA_CH4){ + DMA_INTC0(dma_periph) |= DMA_FLAG_ADD(flag,channelx); + }else{ + channelx -= (dma_channel_enum)4; + DMA_INTC1(dma_periph) |= DMA_FLAG_ADD(flag,channelx); + } +} + +/*! + \brief get DMA interrupt flag is set or not + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel to get interrupt flag + \arg DMA_CHx(x=0..7) + \param[in] interrupt: specify get which flag + only one parameter can be selected which is shown as below: + \arg DMA_INT_FLAG_FEE: FIFO error and exception flag + \arg DMA_INT_FLAG_SDE: single data mode exception flag + \arg DMA_INT_FLAG_TAE: transfer access error flag + \arg DMA_INT_FLAG_HTF: half transfer finish flag + \arg DMA_INT_FLAG_FTF: full transger finish flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus dma_interrupt_flag_get(uint32_t dma_periph, dma_channel_enum channelx, uint32_t interrupt) +{ + uint32_t interrupt_enable = 0U,interrupt_flag = 0U; + dma_channel_enum channel_flag_offset = channelx; + if(channelx < DMA_CH4){ + switch(interrupt){ + case DMA_INTF_FEEIF: + interrupt_flag = DMA_INTF0(dma_periph) & DMA_FLAG_ADD(interrupt,channelx); + interrupt_enable = DMA_CHFCTL(dma_periph,channelx) & DMA_CHXFCTL_FEEIE; + break; + case DMA_INTF_SDEIF: + interrupt_flag = DMA_INTF0(dma_periph) & DMA_FLAG_ADD(interrupt,channelx); + interrupt_enable = DMA_CHCTL(dma_periph,channelx) & DMA_CHXCTL_SDEIE; + break; + case DMA_INTF_TAEIF: + interrupt_flag = DMA_INTF0(dma_periph) & DMA_FLAG_ADD(interrupt,channelx); + interrupt_enable = DMA_CHCTL(dma_periph,channelx) & DMA_CHXCTL_TAEIE; + break; + case DMA_INTF_HTFIF: + interrupt_flag = DMA_INTF0(dma_periph) & DMA_FLAG_ADD(interrupt,channelx); + interrupt_enable = DMA_CHCTL(dma_periph,channelx) & DMA_CHXCTL_HTFIE; + break; + case DMA_INTF_FTFIF: + interrupt_flag = (DMA_INTF0(dma_periph) & DMA_FLAG_ADD(interrupt,channelx)); + interrupt_enable = (DMA_CHCTL(dma_periph,channelx) & DMA_CHXCTL_FTFIE); + break; + default: + break; + } + }else{ + channel_flag_offset -= (dma_channel_enum)4; + switch(interrupt){ + case DMA_INTF_FEEIF: + interrupt_flag = DMA_INTF1(dma_periph) & DMA_FLAG_ADD(interrupt,channel_flag_offset); + interrupt_enable = DMA_CHFCTL(dma_periph,channelx) & DMA_CHXFCTL_FEEIE; + break; + case DMA_INTF_SDEIF: + interrupt_flag = DMA_INTF1(dma_periph) & DMA_FLAG_ADD(interrupt,channel_flag_offset); + interrupt_enable = DMA_CHCTL(dma_periph,channelx) & DMA_CHXCTL_SDEIE; + break; + case DMA_INTF_TAEIF: + interrupt_flag = DMA_INTF1(dma_periph) & DMA_FLAG_ADD(interrupt,channel_flag_offset); + interrupt_enable = DMA_CHCTL(dma_periph,channelx) & DMA_CHXCTL_TAEIE; + break; + case DMA_INTF_HTFIF: + interrupt_flag = DMA_INTF1(dma_periph) & DMA_FLAG_ADD(interrupt,channel_flag_offset); + interrupt_enable = DMA_CHCTL(dma_periph,channelx) & DMA_CHXCTL_HTFIE; + break; + case DMA_INTF_FTFIF: + interrupt_flag = DMA_INTF1(dma_periph) & DMA_FLAG_ADD(interrupt,channel_flag_offset); + interrupt_enable = DMA_CHCTL(dma_periph,channelx) & DMA_CHXCTL_FTFIE; + break; + default: + break; + } + } + + if(interrupt_flag && interrupt_enable){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear DMA a channel interrupt flag + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel to clear interrupt flag + \arg DMA_CHx(x=0..7) + \param[in] interrupt: specify get which flag + only one parameter can be selected which is shown as below: + \arg DMA_INT_FLAG_FEE: FIFO error and exception flag + \arg DMA_INT_FLAG_SDE: single data mode exception flag + \arg DMA_INT_FLAG_TAE: transfer access error flag + \arg DMA_INT_FLAG_HTF: half transfer finish flag + \arg DMA_INT_FLAG_FTF: full transger finish flag + \param[out] none + \retval none +*/ +void dma_interrupt_flag_clear(uint32_t dma_periph, dma_channel_enum channelx, uint32_t interrupt) +{ + if(channelx < DMA_CH4){ + DMA_INTC0(dma_periph) |= DMA_FLAG_ADD(interrupt,channelx); + }else{ + channelx -= (dma_channel_enum)4; + DMA_INTC1(dma_periph) |= DMA_FLAG_ADD(interrupt,channelx); + } +} + +/*! + \brief enable DMA interrupt + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[in] source: specify which interrupt to enbale + one or more parameters can be selected which are shown as below: + \arg DMA_CHXCTL_SDEIE: single data mode exception interrupt enable + \arg DMA_CHXCTL_TAEIE: tranfer access error interrupt enable + \arg DMA_CHXCTL_HTFIE: half transfer finish interrupt enable + \arg DMA_CHXCTL_FTFIE: full transfer finish interrupt enable + \arg DMA_CHXFCTL_FEEIE: FIFO exception interrupt enable + \param[out] none + \retval none +*/ +void dma_interrupt_enable(uint32_t dma_periph, dma_channel_enum channelx, uint32_t source) +{ + if(DMA_CHXFCTL_FEEIE != source){ + DMA_CHCTL(dma_periph,channelx) |= source; + }else{ + DMA_CHFCTL(dma_periph,channelx) |= source; + } +} + +/*! + \brief disable DMA interrupt + \param[in] dma_periph: DMAx(x=0,1) + \arg DMAx(x=0,1) + \param[in] channelx: specify which DMA channel + \arg DMA_CHx(x=0..7) + \param[in] source: specify which interrupt to disbale + one or more parameters can be selected which are shown as below: + \arg DMA_CHXCTL_SDEIE: single data mode exception interrupt enable + \arg DMA_CHXCTL_TAEIE: tranfer access error interrupt enable + \arg DMA_CHXCTL_HTFIE: half transfer finish interrupt enable + \arg DMA_CHXCTL_FTFIE: full transfer finish interrupt enable + \arg DMA_CHXFCTL_FEEIE: FIFO exception interrupt enable + \param[out] none + \retval none +*/ +void dma_interrupt_disable(uint32_t dma_periph, dma_channel_enum channelx, uint32_t source) +{ + if(DMA_CHXFCTL_FEEIE != source){ + DMA_CHCTL(dma_periph,channelx) &= ~source; + }else{ + DMA_CHFCTL(dma_periph,channelx) &= ~source; + } +} + diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_enet.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_enet.c new file mode 100644 index 0000000000..3aa814e609 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_enet.c @@ -0,0 +1,3505 @@ +/*! + \file gd32f4xx_enet.c + \brief ENET driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_enet.h" + +#if defined (__CC_ARM) /*!< ARM compiler */ +__align(4) +enet_descriptors_struct rxdesc_tab[ENET_RXBUF_NUM]; /*!< ENET RxDMA descriptor */ +__align(4) +enet_descriptors_struct txdesc_tab[ENET_TXBUF_NUM]; /*!< ENET TxDMA descriptor */ +__align(4) +uint8_t rx_buff[ENET_RXBUF_NUM][ENET_RXBUF_SIZE]; /*!< ENET receive buffer */ +__align(4) +uint8_t tx_buff[ENET_TXBUF_NUM][ENET_TXBUF_SIZE]; /*!< ENET transmit buffer */ + +#elif defined ( __ICCARM__ ) /*!< IAR compiler */ +#pragma data_alignment=4 +enet_descriptors_struct rxdesc_tab[ENET_RXBUF_NUM]; /*!< ENET RxDMA descriptor */ +#pragma data_alignment=4 +enet_descriptors_struct txdesc_tab[ENET_TXBUF_NUM]; /*!< ENET TxDMA descriptor */ +#pragma data_alignment=4 +uint8_t rx_buff[ENET_RXBUF_NUM][ENET_RXBUF_SIZE]; /*!< ENET receive buffer */ +#pragma data_alignment=4 +uint8_t tx_buff[ENET_TXBUF_NUM][ENET_TXBUF_SIZE]; /*!< ENET transmit buffer */ + +#elif defined (__GNUC__) /* GNU Compiler */ +enet_descriptors_struct rxdesc_tab[ENET_RXBUF_NUM] __attribute__ ((aligned (4))); /*!< ENET RxDMA descriptor */ +enet_descriptors_struct txdesc_tab[ENET_TXBUF_NUM] __attribute__ ((aligned (4))); /*!< ENET TxDMA descriptor */ +uint8_t rx_buff[ENET_RXBUF_NUM][ENET_RXBUF_SIZE] __attribute__ ((aligned (4))); /*!< ENET receive buffer */ +uint8_t tx_buff[ENET_TXBUF_NUM][ENET_TXBUF_SIZE] __attribute__ ((aligned (4))); /*!< ENET transmit buffer */ + +#endif /* __CC_ARM */ + +/* global transmit and receive descriptors pointers */ +enet_descriptors_struct *dma_current_txdesc; +enet_descriptors_struct *dma_current_rxdesc; + +/* structure pointer of ptp descriptor for normal mode */ +enet_descriptors_struct *dma_current_ptp_txdesc = NULL; +enet_descriptors_struct *dma_current_ptp_rxdesc = NULL; + +/* init structure parameters for ENET initialization */ +static enet_initpara_struct enet_initpara ={0,0,0,0,0,0,0,0,0,0,0,0,0,0,0}; +static uint32_t enet_unknow_err = 0U; +/* array of register offset for debug information get */ +static const uint16_t enet_reg_tab[] = { +0x0000, 0x0004, 0x0008, 0x000C, 0x0010, 0x0014, 0x0018, 0x001C, 0x0028, 0x002C, 0x0034, +0x0038, 0x003C, 0x0040, 0x0044, 0x0048, 0x004C, 0x0050, 0x0054, 0x0058, 0x005C, 0x1080, + +0x0100, 0x0104, 0x0108, 0x010C, 0x0110, 0x014C, 0x0150, 0x0168, 0x0194, 0x0198, 0x01C4, + +0x0700, 0x0704,0x0708, 0x070C, 0x0710, 0x0714, 0x0718, 0x071C, 0x0720, 0x0728, 0x072C, + +0x1000, 0x1004, 0x1008, 0x100C, 0x1010, 0x1014, 0x1018, 0x101C, 0x1020, 0x1024, 0x1048, +0x104C, 0x1050, 0x1054}; + +/* initialize ENET peripheral with generally concerned parameters, call it by enet_init() */ +static void enet_default_init(void); +#ifdef USE_DELAY +/* user can provide more timing precise _ENET_DELAY_ function */ +#define _ENET_DELAY_ delay_ms +#else +/* insert a delay time */ +static void enet_delay(uint32_t ncount); +/* default _ENET_DELAY_ function with less precise timing */ +#define _ENET_DELAY_ enet_delay +#endif + + +/*! + \brief deinitialize the ENET, and reset structure parameters for ENET initialization + \param[in] none + \param[out] none + \retval none +*/ +void enet_deinit(void) +{ + rcu_periph_reset_enable(RCU_ENETRST); + rcu_periph_reset_disable(RCU_ENETRST); + enet_initpara_reset(); +} + +/*! + \brief configure the parameters which are usually less cared for initialization + note -- this function must be called before enet_init(), otherwise + configuration will be no effect + \param[in] option: different function option, which is related to several parameters, refer to enet_option_enum + only one parameter can be selected which is shown as below + \arg FORWARD_OPTION: choose to configure the frame forward related parameters + \arg DMABUS_OPTION: choose to configure the DMA bus mode related parameters + \arg DMA_MAXBURST_OPTION: choose to configure the DMA max burst related parameters + \arg DMA_ARBITRATION_OPTION: choose to configure the DMA arbitration related parameters + \arg STORE_OPTION: choose to configure the store forward mode related parameters + \arg DMA_OPTION: choose to configure the DMA descriptor related parameters + \arg VLAN_OPTION: choose to configure vlan related parameters + \arg FLOWCTL_OPTION: choose to configure flow control related parameters + \arg HASHH_OPTION: choose to configure hash high + \arg HASHL_OPTION: choose to configure hash low + \arg FILTER_OPTION: choose to configure frame filter related parameters + \arg HALFDUPLEX_OPTION: choose to configure halfduplex mode related parameters + \arg TIMER_OPTION: choose to configure time counter related parameters + \arg INTERFRAMEGAP_OPTION: choose to configure the inter frame gap related parameters + \param[in] para: the related parameters according to the option + all the related parameters should be configured which are shown as below + FORWARD_OPTION related parameters: + - ENET_AUTO_PADCRC_DROP_ENABLE/ ENET_AUTO_PADCRC_DROP_DISABLE ; + - ENET_TYPEFRAME_CRC_DROP_ENABLE/ ENET_TYPEFRAME_CRC_DROP_DISABLE ; + - ENET_FORWARD_ERRFRAMES_ENABLE/ ENET_FORWARD_ERRFRAMES_DISABLE ; + - ENET_FORWARD_UNDERSZ_GOODFRAMES_ENABLE/ ENET_FORWARD_UNDERSZ_GOODFRAMES_DISABLE . + DMABUS_OPTION related parameters: + - ENET_ADDRESS_ALIGN_ENABLE/ ENET_ADDRESS_ALIGN_DISABLE ; + - ENET_FIXED_BURST_ENABLE/ ENET_FIXED_BURST_DISABLE ; + - ENET_MIXED_BURST_ENABLE/ ENET_MIXED_BURST_DISABLE ; + DMA_MAXBURST_OPTION related parameters: + - ENET_RXDP_1BEAT/ ENET_RXDP_2BEAT/ ENET_RXDP_4BEAT/ + ENET_RXDP_8BEAT/ ENET_RXDP_16BEAT/ ENET_RXDP_32BEAT/ + ENET_RXDP_4xPGBL_4BEAT/ ENET_RXDP_4xPGBL_8BEAT/ + ENET_RXDP_4xPGBL_16BEAT/ ENET_RXDP_4xPGBL_32BEAT/ + ENET_RXDP_4xPGBL_64BEAT/ ENET_RXDP_4xPGBL_128BEAT ; + - ENET_PGBL_1BEAT/ ENET_PGBL_2BEAT/ ENET_PGBL_4BEAT/ + ENET_PGBL_8BEAT/ ENET_PGBL_16BEAT/ ENET_PGBL_32BEAT/ + ENET_PGBL_4xPGBL_4BEAT/ ENET_PGBL_4xPGBL_8BEAT/ + ENET_PGBL_4xPGBL_16BEAT/ ENET_PGBL_4xPGBL_32BEAT/ + ENET_PGBL_4xPGBL_64BEAT/ ENET_PGBL_4xPGBL_128BEAT ; + - ENET_RXTX_DIFFERENT_PGBL/ ENET_RXTX_SAME_PGBL ; + DMA_ARBITRATION_OPTION related parameters: + - ENET_ARBITRATION_RXPRIORTX + - ENET_ARBITRATION_RXTX_1_1/ ENET_ARBITRATION_RXTX_2_1/ + ENET_ARBITRATION_RXTX_3_1/ ENET_ARBITRATION_RXTX_4_1/. + STORE_OPTION related parameters: + - ENET_RX_MODE_STOREFORWARD/ ENET_RX_MODE_CUTTHROUGH ; + - ENET_TX_MODE_STOREFORWARD/ ENET_TX_MODE_CUTTHROUGH ; + - ENET_RX_THRESHOLD_64BYTES/ ENET_RX_THRESHOLD_32BYTES/ + ENET_RX_THRESHOLD_96BYTES/ ENET_RX_THRESHOLD_128BYTES ; + - ENET_TX_THRESHOLD_64BYTES/ ENET_TX_THRESHOLD_128BYTES/ + ENET_TX_THRESHOLD_192BYTES/ ENET_TX_THRESHOLD_256BYTES/ + ENET_TX_THRESHOLD_40BYTES/ ENET_TX_THRESHOLD_32BYTES/ + ENET_TX_THRESHOLD_24BYTES/ ENET_TX_THRESHOLD_16BYTES . + DMA_OPTION related parameters: + - ENET_FLUSH_RXFRAME_ENABLE/ ENET_FLUSH_RXFRAME_DISABLE ; + - ENET_SECONDFRAME_OPT_ENABLE/ ENET_SECONDFRAME_OPT_DISABLE ; + - ENET_ENHANCED_DESCRIPTOR/ ENET_NORMAL_DESCRIPTOR . + VLAN_OPTION related parameters: + - ENET_VLANTAGCOMPARISON_12BIT/ ENET_VLANTAGCOMPARISON_16BIT ; + - MAC_VLT_VLTI(regval) . + FLOWCTL_OPTION related parameters: + - MAC_FCTL_PTM(regval) ; + - ENET_ZERO_QUANTA_PAUSE_ENABLE/ ENET_ZERO_QUANTA_PAUSE_DISABLE ; + - ENET_PAUSETIME_MINUS4/ ENET_PAUSETIME_MINUS28/ + ENET_PAUSETIME_MINUS144/ENET_PAUSETIME_MINUS256 ; + - ENET_MAC0_AND_UNIQUE_ADDRESS_PAUSEDETECT/ ENET_UNIQUE_PAUSEDETECT ; + - ENET_RX_FLOWCONTROL_ENABLE/ ENET_RX_FLOWCONTROL_DISABLE ; + - ENET_TX_FLOWCONTROL_ENABLE/ ENET_TX_FLOWCONTROL_DISABLE . + HASHH_OPTION related parameters: + - 0x0~0xFFFF FFFFU + HASHL_OPTION related parameters: + - 0x0~0xFFFF FFFFU + FILTER_OPTION related parameters: + - ENET_SRC_FILTER_NORMAL_ENABLE/ ENET_SRC_FILTER_INVERSE_ENABLE/ + ENET_SRC_FILTER_DISABLE ; + - ENET_DEST_FILTER_INVERSE_ENABLE/ ENET_DEST_FILTER_INVERSE_DISABLE ; + - ENET_MULTICAST_FILTER_HASH_OR_PERFECT/ ENET_MULTICAST_FILTER_HASH/ + ENET_MULTICAST_FILTER_PERFECT/ ENET_MULTICAST_FILTER_NONE ; + - ENET_UNICAST_FILTER_EITHER/ ENET_UNICAST_FILTER_HASH/ + ENET_UNICAST_FILTER_PERFECT ; + - ENET_PCFRM_PREVENT_ALL/ ENET_PCFRM_PREVENT_PAUSEFRAME/ + ENET_PCFRM_FORWARD_ALL/ ENET_PCFRM_FORWARD_FILTERED . + HALFDUPLEX_OPTION related parameters: + - ENET_CARRIERSENSE_ENABLE/ ENET_CARRIERSENSE_DISABLE ; + - ENET_RECEIVEOWN_ENABLE/ ENET_RECEIVEOWN_DISABLE ; + - ENET_RETRYTRANSMISSION_ENABLE/ ENET_RETRYTRANSMISSION_DISABLE ; + - ENET_BACKOFFLIMIT_10/ ENET_BACKOFFLIMIT_8/ + ENET_BACKOFFLIMIT_4/ ENET_BACKOFFLIMIT_1 ; + - ENET_DEFERRALCHECK_ENABLE/ ENET_DEFERRALCHECK_DISABLE . + TIMER_OPTION related parameters: + - ENET_WATCHDOG_ENABLE/ ENET_WATCHDOG_DISABLE ; + - ENET_JABBER_ENABLE/ ENET_JABBER_DISABLE ; + INTERFRAMEGAP_OPTION related parameters: + - ENET_INTERFRAMEGAP_96BIT/ ENET_INTERFRAMEGAP_88BIT/ + ENET_INTERFRAMEGAP_80BIT/ ENET_INTERFRAMEGAP_72BIT/ + ENET_INTERFRAMEGAP_64BIT/ ENET_INTERFRAMEGAP_56BIT/ + ENET_INTERFRAMEGAP_48BIT/ ENET_INTERFRAMEGAP_40BIT . + \param[out] none + \retval none +*/ +void enet_initpara_config(enet_option_enum option, uint32_t para) +{ + switch(option){ + case FORWARD_OPTION: + /* choose to configure forward_frame, and save the configuration parameters */ + enet_initpara.option_enable |= (uint32_t)FORWARD_OPTION; + enet_initpara.forward_frame = para; + break; + case DMABUS_OPTION: + /* choose to configure dmabus_mode, and save the configuration parameters */ + enet_initpara.option_enable |= (uint32_t)DMABUS_OPTION; + enet_initpara.dmabus_mode = para; + break; + case DMA_MAXBURST_OPTION: + /* choose to configure dma_maxburst, and save the configuration parameters */ + enet_initpara.option_enable |= (uint32_t)DMA_MAXBURST_OPTION; + enet_initpara.dma_maxburst = para; + break; + case DMA_ARBITRATION_OPTION: + /* choose to configure dma_arbitration, and save the configuration parameters */ + enet_initpara.option_enable |= (uint32_t)DMA_ARBITRATION_OPTION; + enet_initpara.dma_arbitration = para; + break; + case STORE_OPTION: + /* choose to configure store_forward_mode, and save the configuration parameters */ + enet_initpara.option_enable |= (uint32_t)STORE_OPTION; + enet_initpara.store_forward_mode = para; + break; + case DMA_OPTION: + /* choose to configure dma_function, and save the configuration parameters */ + enet_initpara.option_enable |= (uint32_t)DMA_OPTION; + +#ifndef SELECT_DESCRIPTORS_ENHANCED_MODE + para &= ~ENET_ENHANCED_DESCRIPTOR; +#endif /* SELECT_DESCRIPTORS_ENHANCED_MODE */ + + enet_initpara.dma_function = para; + break; + case VLAN_OPTION: + /* choose to configure vlan_config, and save the configuration parameters */ + enet_initpara.option_enable |= (uint32_t)VLAN_OPTION; + enet_initpara.vlan_config = para; + break; + case FLOWCTL_OPTION: + /* choose to configure flow_control, and save the configuration parameters */ + enet_initpara.option_enable |= (uint32_t)FLOWCTL_OPTION; + enet_initpara.flow_control = para; + break; + case HASHH_OPTION: + /* choose to configure hashtable_high, and save the configuration parameters */ + enet_initpara.option_enable |= (uint32_t)HASHH_OPTION; + enet_initpara.hashtable_high = para; + break; + case HASHL_OPTION: + /* choose to configure hashtable_low, and save the configuration parameters */ + enet_initpara.option_enable |= (uint32_t)HASHL_OPTION; + enet_initpara.hashtable_low = para; + break; + case FILTER_OPTION: + /* choose to configure framesfilter_mode, and save the configuration parameters */ + enet_initpara.option_enable |= (uint32_t)FILTER_OPTION; + enet_initpara.framesfilter_mode = para; + break; + case HALFDUPLEX_OPTION: + /* choose to configure halfduplex_param, and save the configuration parameters */ + enet_initpara.option_enable |= (uint32_t)HALFDUPLEX_OPTION; + enet_initpara.halfduplex_param = para; + break; + case TIMER_OPTION: + /* choose to configure timer_config, and save the configuration parameters */ + enet_initpara.option_enable |= (uint32_t)TIMER_OPTION; + enet_initpara.timer_config = para; + break; + case INTERFRAMEGAP_OPTION: + /* choose to configure interframegap, and save the configuration parameters */ + enet_initpara.option_enable |= (uint32_t)INTERFRAMEGAP_OPTION; + enet_initpara.interframegap = para; + break; + default: + break; + } +} + +/*! + \brief initialize ENET peripheral with generally concerned parameters and the less cared + parameters + \param[in] mediamode: PHY mode and mac loopback configurations, refer to enet_mediamode_enum + only one parameter can be selected which is shown as below + \arg ENET_AUTO_NEGOTIATION: PHY auto negotiation + \arg ENET_100M_FULLDUPLEX: 100Mbit/s, full-duplex + \arg ENET_100M_HALFDUPLEX: 100Mbit/s, half-duplex + \arg ENET_10M_FULLDUPLEX: 10Mbit/s, full-duplex + \arg ENET_10M_HALFDUPLEX: 10Mbit/s, half-duplex + \arg ENET_LOOPBACKMODE: MAC in loopback mode at the MII + \param[in] checksum: IP frame checksum offload function, refer to enet_mediamode_enum + only one parameter can be selected which is shown as below + \arg ENET_NO_AUTOCHECKSUM: disable IP frame checksum function + \arg ENET_AUTOCHECKSUM_DROP_FAILFRAMES: enable IP frame checksum function + \arg ENET_AUTOCHECKSUM_ACCEPT_FAILFRAMES: enable IP frame checksum function, and the received frame + with only payload error but no other errors will not be dropped + \param[in] recept: frame filter function, refer to enet_frmrecept_enum + only one parameter can be selected which is shown as below + \arg ENET_PROMISCUOUS_MODE: promiscuous mode enabled + \arg ENET_RECEIVEALL: all received frame are forwarded to application + \arg ENET_BROADCAST_FRAMES_PASS: the address filters pass all received broadcast frames + \arg ENET_BROADCAST_FRAMES_DROP: the address filters filter all incoming broadcast frames + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus enet_init(enet_mediamode_enum mediamode, enet_chksumconf_enum checksum, enet_frmrecept_enum recept) +{ + uint32_t reg_value=0U, reg_temp = 0U, temp = 0U; + uint32_t media_temp = 0U; + uint32_t timeout = 0U; + uint16_t phy_value = 0U; + ErrStatus phy_state= ERROR, enet_state = ERROR; + + /* PHY interface configuration, configure SMI clock and reset PHY chip */ + if(ERROR == enet_phy_config()){ + _ENET_DELAY_(PHY_RESETDELAY); + if(ERROR == enet_phy_config()){ + return enet_state; + } + } + /* initialize ENET peripheral with generally concerned parameters */ + enet_default_init(); + + /* 1st, configure mediamode */ + media_temp = (uint32_t)mediamode; + /* if is PHY auto negotiation */ + if((uint32_t)ENET_AUTO_NEGOTIATION == media_temp){ + /* wait for PHY_LINKED_STATUS bit be set */ + do{ + enet_phy_write_read(ENET_PHY_READ, PHY_ADDRESS, PHY_REG_BSR, &phy_value); + phy_value &= PHY_LINKED_STATUS; + timeout++; + }while((RESET == phy_value) && (timeout < PHY_READ_TO)); + /* return ERROR due to timeout */ + if(PHY_READ_TO == timeout){ + return enet_state; + } + /* reset timeout counter */ + timeout = 0U; + + /* enable auto-negotiation */ + phy_value = PHY_AUTONEGOTIATION; + phy_state = enet_phy_write_read(ENET_PHY_WRITE, PHY_ADDRESS, PHY_REG_BCR, &phy_value); + if(!phy_state){ + /* return ERROR due to write timeout */ + return enet_state; + } + + /* wait for the PHY_AUTONEGO_COMPLETE bit be set */ + do{ + enet_phy_write_read(ENET_PHY_READ, PHY_ADDRESS, PHY_REG_BSR, &phy_value); + phy_value &= PHY_AUTONEGO_COMPLETE; + timeout++; + }while((RESET == phy_value) && (timeout < (uint32_t)PHY_READ_TO)); + /* return ERROR due to timeout */ + if(PHY_READ_TO == timeout){ + return enet_state; + } + /* reset timeout counter */ + timeout = 0U; + + /* read the result of the auto-negotiation */ + enet_phy_write_read(ENET_PHY_READ, PHY_ADDRESS, PHY_SR, &phy_value); + /* configure the duplex mode of MAC following the auto-negotiation result */ + if((uint16_t)RESET != (phy_value & PHY_DUPLEX_STATUS)){ + media_temp = ENET_MODE_FULLDUPLEX; + }else{ + media_temp = ENET_MODE_HALFDUPLEX; + } + /* configure the communication speed of MAC following the auto-negotiation result */ + if((uint16_t)RESET !=(phy_value & PHY_SPEED_STATUS)){ + media_temp |= ENET_SPEEDMODE_10M; + }else{ + media_temp |= ENET_SPEEDMODE_100M; + } + }else{ + phy_value = (uint16_t)((media_temp & ENET_MAC_CFG_DPM) >> 3); + phy_value |= (uint16_t)((media_temp & ENET_MAC_CFG_SPD) >> 1); + phy_state = enet_phy_write_read(ENET_PHY_WRITE, PHY_ADDRESS, PHY_REG_BCR, &phy_value); + if(!phy_state){ + /* return ERROR due to write timeout */ + return enet_state; + } + /* PHY configuration need some time */ + _ENET_DELAY_(PHY_CONFIGDELAY); + } + /* after configuring the PHY, use mediamode to configure registers */ + reg_value = ENET_MAC_CFG; + /* configure ENET_MAC_CFG register */ + reg_value &= (~(ENET_MAC_CFG_SPD |ENET_MAC_CFG_DPM |ENET_MAC_CFG_LBM)); + reg_value |= media_temp; + ENET_MAC_CFG = reg_value; + + + /* 2st, configure checksum */ + if(RESET != ((uint32_t)checksum & ENET_CHECKSUMOFFLOAD_ENABLE)){ + ENET_MAC_CFG |= ENET_CHECKSUMOFFLOAD_ENABLE; + + reg_value = ENET_DMA_CTL; + /* configure ENET_DMA_CTL register */ + reg_value &= ~ENET_DMA_CTL_DTCERFD; + reg_value |= ((uint32_t)checksum & ENET_DMA_CTL_DTCERFD); + ENET_DMA_CTL = reg_value; + } + + /* 3rd, configure recept */ + ENET_MAC_FRMF |= (uint32_t)recept; + + /* 4th, configure different function options */ + /* configure forward_frame related registers */ + if(RESET != (enet_initpara.option_enable & (uint32_t)FORWARD_OPTION)){ + reg_temp = enet_initpara.forward_frame; + + reg_value = ENET_MAC_CFG; + temp = reg_temp; + /* configure ENET_MAC_CFG register */ + reg_value &= (~(ENET_MAC_CFG_TFCD |ENET_MAC_CFG_APCD)); + temp &= (ENET_MAC_CFG_TFCD | ENET_MAC_CFG_APCD); + reg_value |= temp; + ENET_MAC_CFG = reg_value; + + reg_value = ENET_DMA_CTL; + temp = reg_temp; + /* configure ENET_DMA_CTL register */ + reg_value &= (~(ENET_DMA_CTL_FERF |ENET_DMA_CTL_FUF)); + temp &= ((ENET_DMA_CTL_FERF | ENET_DMA_CTL_FUF)<<2); + reg_value |= (temp >> 2); + ENET_DMA_CTL = reg_value; + } + + /* configure dmabus_mode related registers */ + if(RESET != (enet_initpara.option_enable & (uint32_t)DMABUS_OPTION)){ + temp = enet_initpara.dmabus_mode; + + reg_value = ENET_DMA_BCTL; + /* configure ENET_DMA_BCTL register */ + reg_value &= ~(ENET_DMA_BCTL_AA | ENET_DMA_BCTL_FB \ + |ENET_DMA_BCTL_FPBL | ENET_DMA_BCTL_MB); + reg_value |= temp; + ENET_DMA_BCTL = reg_value; + } + + /* configure dma_maxburst related registers */ + if(RESET != (enet_initpara.option_enable & (uint32_t)DMA_MAXBURST_OPTION)){ + temp = enet_initpara.dma_maxburst; + + reg_value = ENET_DMA_BCTL; + /* configure ENET_DMA_BCTL register */ + reg_value &= ~(ENET_DMA_BCTL_RXDP| ENET_DMA_BCTL_PGBL | ENET_DMA_BCTL_UIP); + reg_value |= temp; + ENET_DMA_BCTL = reg_value; + } + + /* configure dma_arbitration related registers */ + if(RESET != (enet_initpara.option_enable & (uint32_t)DMA_ARBITRATION_OPTION)){ + temp = enet_initpara.dma_arbitration; + + reg_value = ENET_DMA_BCTL; + /* configure ENET_DMA_BCTL register */ + reg_value &= ~(ENET_DMA_BCTL_RTPR | ENET_DMA_BCTL_DAB); + reg_value |= temp; + ENET_DMA_BCTL = reg_value; + } + + /* configure store_forward_mode related registers */ + if(RESET != (enet_initpara.option_enable & (uint32_t)STORE_OPTION)){ + temp = enet_initpara.store_forward_mode; + + reg_value = ENET_DMA_CTL; + /* configure ENET_DMA_CTL register */ + reg_value &= ~(ENET_DMA_CTL_RSFD | ENET_DMA_CTL_TSFD| ENET_DMA_CTL_RTHC| ENET_DMA_CTL_TTHC); + reg_value |= temp; + ENET_DMA_CTL = reg_value; + } + + /* configure dma_function related registers */ + if(RESET != (enet_initpara.option_enable & (uint32_t)DMA_OPTION)){ + reg_temp = enet_initpara.dma_function; + + reg_value = ENET_DMA_CTL; + temp = reg_temp; + /* configure ENET_DMA_CTL register */ + reg_value &= (~(ENET_DMA_CTL_DAFRF |ENET_DMA_CTL_OSF)); + temp &= (ENET_DMA_CTL_DAFRF | ENET_DMA_CTL_OSF); + reg_value |= temp; + ENET_DMA_CTL = reg_value; + + reg_value = ENET_DMA_BCTL; + temp = reg_temp; + /* configure ENET_DMA_BCTL register */ + reg_value &= (~ENET_DMA_BCTL_DFM); + temp &= ENET_DMA_BCTL_DFM; + reg_value |= temp; + ENET_DMA_BCTL = reg_value; + } + + /* configure vlan_config related registers */ + if(RESET != (enet_initpara.option_enable & (uint32_t)VLAN_OPTION)){ + reg_temp = enet_initpara.vlan_config; + + reg_value = ENET_MAC_VLT; + /* configure ENET_MAC_VLT register */ + reg_value &= ~(ENET_MAC_VLT_VLTI | ENET_MAC_VLT_VLTC); + reg_value |= reg_temp; + ENET_MAC_VLT = reg_value; + } + + /* configure flow_control related registers */ + if(RESET != (enet_initpara.option_enable & (uint32_t)FLOWCTL_OPTION)){ + reg_temp = enet_initpara.flow_control; + + reg_value = ENET_MAC_FCTL; + temp = reg_temp; + /* configure ENET_MAC_FCTL register */ + reg_value &= ~(ENET_MAC_FCTL_PTM |ENET_MAC_FCTL_DZQP |ENET_MAC_FCTL_PLTS \ + | ENET_MAC_FCTL_UPFDT |ENET_MAC_FCTL_RFCEN |ENET_MAC_FCTL_TFCEN); + temp &= (ENET_MAC_FCTL_PTM |ENET_MAC_FCTL_DZQP |ENET_MAC_FCTL_PLTS \ + | ENET_MAC_FCTL_UPFDT |ENET_MAC_FCTL_RFCEN |ENET_MAC_FCTL_TFCEN); + reg_value |= temp; + ENET_MAC_FCTL = reg_value; + + reg_value = ENET_MAC_FCTH; + temp = reg_temp; + /* configure ENET_MAC_FCTH register */ + reg_value &= ~(ENET_MAC_FCTH_RFA |ENET_MAC_FCTH_RFD); + temp &= ((ENET_MAC_FCTH_RFA | ENET_MAC_FCTH_RFD )<<8); + reg_value |= (temp >> 8); + ENET_MAC_FCTH = reg_value; + } + + /* configure hashtable_high related registers */ + if(RESET != (enet_initpara.option_enable & (uint32_t)HASHH_OPTION)){ + ENET_MAC_HLH = enet_initpara.hashtable_high; + } + + /* configure hashtable_low related registers */ + if(RESET != (enet_initpara.option_enable & (uint32_t)HASHL_OPTION)){ + ENET_MAC_HLL = enet_initpara.hashtable_low; + } + + /* configure framesfilter_mode related registers */ + if(RESET != (enet_initpara.option_enable & (uint32_t)FILTER_OPTION)){ + reg_temp = enet_initpara.framesfilter_mode; + + reg_value = ENET_MAC_FRMF; + /* configure ENET_MAC_FRMF register */ + reg_value &= ~(ENET_MAC_FRMF_SAFLT | ENET_MAC_FRMF_SAIFLT | ENET_MAC_FRMF_DAIFLT \ + | ENET_MAC_FRMF_HMF | ENET_MAC_FRMF_HPFLT | ENET_MAC_FRMF_MFD \ + | ENET_MAC_FRMF_HUF | ENET_MAC_FRMF_PCFRM); + reg_value |= reg_temp; + ENET_MAC_FRMF = reg_value; + } + + /* configure halfduplex_param related registers */ + if(RESET != (enet_initpara.option_enable & (uint32_t)HALFDUPLEX_OPTION)){ + reg_temp = enet_initpara.halfduplex_param; + + reg_value = ENET_MAC_CFG; + /* configure ENET_MAC_CFG register */ + reg_value &= ~(ENET_MAC_CFG_CSD | ENET_MAC_CFG_ROD | ENET_MAC_CFG_RTD \ + | ENET_MAC_CFG_BOL | ENET_MAC_CFG_DFC); + reg_value |= reg_temp; + ENET_MAC_CFG = reg_value; + } + + /* configure timer_config related registers */ + if(RESET != (enet_initpara.option_enable & (uint32_t)TIMER_OPTION)){ + reg_temp = enet_initpara.timer_config; + + reg_value = ENET_MAC_CFG; + /* configure ENET_MAC_CFG register */ + reg_value &= ~(ENET_MAC_CFG_WDD | ENET_MAC_CFG_JBD); + reg_value |= reg_temp; + ENET_MAC_CFG = reg_value; + } + + /* configure interframegap related registers */ + if(RESET != (enet_initpara.option_enable & (uint32_t)INTERFRAMEGAP_OPTION)){ + reg_temp = enet_initpara.interframegap; + + reg_value = ENET_MAC_CFG; + /* configure ENET_MAC_CFG register */ + reg_value &= ~ENET_MAC_CFG_IGBS; + reg_value |= reg_temp; + ENET_MAC_CFG = reg_value; + } + + enet_state = SUCCESS; + return enet_state; +} + +/*! + \brief reset all core internal registers located in CLK_TX and CLK_RX + \param[in] none + \param[out] none + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus enet_software_reset(void) +{ + uint32_t timeout = 0U; + ErrStatus enet_state = ERROR; + uint32_t dma_flag; + + /* reset all core internal registers located in CLK_TX and CLK_RX */ + ENET_DMA_BCTL |= ENET_DMA_BCTL_SWR; + + /* wait for reset operation complete */ + do{ + dma_flag = (ENET_DMA_BCTL & ENET_DMA_BCTL_SWR); + timeout++; + }while((RESET != dma_flag) && (ENET_DELAY_TO != timeout)); + + /* reset operation complete */ + if(RESET == (ENET_DMA_BCTL & ENET_DMA_BCTL_SWR)){ + enet_state = SUCCESS; + } + + return enet_state; +} + +/*! + \brief check receive frame valid and return frame size + \param[in] none + \param[out] none + \retval size of received frame: 0x0 - 0x3FFF +*/ +uint32_t enet_rxframe_size_get(void) +{ + uint32_t size = 0U; + uint32_t status; + + /* get rdes0 information of current RxDMA descriptor */ + status = dma_current_rxdesc->status; + + /* if the desciptor is owned by DMA */ + if((uint32_t)RESET != (status & ENET_RDES0_DAV)){ + return 0U; + } + + /* if has any error, or the frame uses two or more descriptors */ + if((((uint32_t)RESET) != (status & ENET_RDES0_ERRS)) || + (((uint32_t)RESET) == (status & ENET_RDES0_LDES)) || + (((uint32_t)RESET) == (status & ENET_RDES0_FDES))){ + /* drop current receive frame */ + enet_rxframe_drop(); + + return 1U; + } +#ifdef SELECT_DESCRIPTORS_ENHANCED_MODE + /* if is an ethernet-type frame, and IP frame payload error occurred */ + if(((uint32_t)RESET) != (dma_current_rxdesc->status & ENET_RDES0_FRMT) && + ((uint32_t)RESET) != (dma_current_rxdesc->extended_status & ENET_RDES4_IPPLDERR)){ + /* drop current receive frame */ + enet_rxframe_drop(); + + return 1U; + } +#else + /* if is an ethernet-type frame, and IP frame payload error occurred */ + if((((uint32_t)RESET) != (status & ENET_RDES0_FRMT)) && + (((uint32_t)RESET) != (status & ENET_RDES0_PCERR))){ + /* drop current receive frame */ + enet_rxframe_drop(); + + return 1U; + } +#endif + /* if CPU owns current descriptor, no error occured, the frame uses only one descriptor */ + if((((uint32_t)RESET) == (status & ENET_RDES0_DAV)) && + (((uint32_t)RESET) == (status & ENET_RDES0_ERRS)) && + (((uint32_t)RESET) != (status & ENET_RDES0_LDES)) && + (((uint32_t)RESET) != (status & ENET_RDES0_FDES))){ + /* get the size of the received data including CRC */ + size = GET_RDES0_FRML(status); + /* substract the CRC size */ + size = size - 4U; + + /* if is a type frame, and CRC is not included in forwarding frame */ + if((RESET != (ENET_MAC_CFG & ENET_MAC_CFG_TFCD)) && (RESET != (status & ENET_RDES0_FRMT))){ + size = size + 4U; + } + }else{ + enet_unknow_err++; + enet_rxframe_drop(); + + return 1U; + } + + /* return packet size */ + return size; +} + +/*! + \brief initialize the DMA Tx/Rx descriptors's parameters in chain mode + \param[in] direction: the descriptors which users want to init, refer to enet_dmadirection_enum + only one parameter can be selected which is shown as below + \arg ENET_DMA_TX: DMA Tx descriptors + \arg ENET_DMA_RX: DMA Rx descriptors + \param[out] none + \retval none +*/ +void enet_descriptors_chain_init(enet_dmadirection_enum direction) +{ + uint32_t num = 0U, count = 0U, maxsize = 0U; + uint32_t desc_status = 0U, desc_bufsize = 0U; + enet_descriptors_struct *desc, *desc_tab; + uint8_t *buf; + + /* if want to initialize DMA Tx descriptors */ + if (ENET_DMA_TX == direction){ + /* save a copy of the DMA Tx descriptors */ + desc_tab = txdesc_tab; + buf = &tx_buff[0][0]; + count = ENET_TXBUF_NUM; + maxsize = ENET_TXBUF_SIZE; + + /* select chain mode */ + desc_status = ENET_TDES0_TCHM; + + /* configure DMA Tx descriptor table address register */ + ENET_DMA_TDTADDR = (uint32_t)desc_tab; + dma_current_txdesc = desc_tab; + }else{ + /* if want to initialize DMA Rx descriptors */ + /* save a copy of the DMA Rx descriptors */ + desc_tab = rxdesc_tab; + buf = &rx_buff[0][0]; + count = ENET_RXBUF_NUM; + maxsize = ENET_RXBUF_SIZE; + + /* enable receiving */ + desc_status = ENET_RDES0_DAV; + /* select receive chained mode and set buffer1 size */ + desc_bufsize = ENET_RDES1_RCHM | (uint32_t)ENET_RXBUF_SIZE; + + /* configure DMA Rx descriptor table address register */ + ENET_DMA_RDTADDR = (uint32_t)desc_tab; + dma_current_rxdesc = desc_tab; + } + dma_current_ptp_rxdesc = NULL; + dma_current_ptp_txdesc = NULL; + + /* configure each descriptor */ + for(num=0U; num < count; num++){ + /* get the pointer to the next descriptor of the descriptor table */ + desc = desc_tab + num; + + /* configure descriptors */ + desc->status = desc_status; + desc->control_buffer_size = desc_bufsize; + desc->buffer1_addr = (uint32_t)(&buf[num * maxsize]); + + /* if is not the last descriptor */ + if(num < (count - 1U)){ + /* configure the next descriptor address */ + desc->buffer2_next_desc_addr = (uint32_t)(desc_tab + num + 1U); + }else{ + /* when it is the last descriptor, the next descriptor address + equals to first descriptor address in descriptor table */ + desc->buffer2_next_desc_addr = (uint32_t) desc_tab; + } + } +} + +/*! + \brief initialize the DMA Tx/Rx descriptors's parameters in ring mode + \param[in] direction: the descriptors which users want to init, refer to enet_dmadirection_enum + only one parameter can be selected which is shown as below + \arg ENET_DMA_TX: DMA Tx descriptors + \arg ENET_DMA_RX: DMA Rx descriptors + \param[out] none + \retval none +*/ +void enet_descriptors_ring_init(enet_dmadirection_enum direction) +{ + uint32_t num = 0U, count = 0U, maxsize = 0U; + uint32_t desc_status = 0U, desc_bufsize = 0U; + enet_descriptors_struct *desc; + enet_descriptors_struct *desc_tab; + uint8_t *buf; + + /* configure descriptor skip length */ + ENET_DMA_BCTL &= ~ENET_DMA_BCTL_DPSL; + ENET_DMA_BCTL |= DMA_BCTL_DPSL(0); + + /* if want to initialize DMA Tx descriptors */ + if (ENET_DMA_TX == direction){ + /* save a copy of the DMA Tx descriptors */ + desc_tab = txdesc_tab; + buf = &tx_buff[0][0]; + count = ENET_TXBUF_NUM; + maxsize = ENET_TXBUF_SIZE; + + /* configure DMA Tx descriptor table address register */ + ENET_DMA_TDTADDR = (uint32_t)desc_tab; + dma_current_txdesc = desc_tab; + }else{ + /* if want to initialize DMA Rx descriptors */ + /* save a copy of the DMA Rx descriptors */ + desc_tab = rxdesc_tab; + buf = &rx_buff[0][0]; + count = ENET_RXBUF_NUM; + maxsize = ENET_RXBUF_SIZE; + + /* enable receiving */ + desc_status = ENET_RDES0_DAV; + /* set buffer1 size */ + desc_bufsize = ENET_RXBUF_SIZE; + + /* configure DMA Rx descriptor table address register */ + ENET_DMA_RDTADDR = (uint32_t)desc_tab; + dma_current_rxdesc = desc_tab; + } + dma_current_ptp_rxdesc = NULL; + dma_current_ptp_txdesc = NULL; + + /* configure each descriptor */ + for(num=0U; num < count; num++){ + /* get the pointer to the next descriptor of the descriptor table */ + desc = desc_tab + num; + + /* configure descriptors */ + desc->status = desc_status; + desc->control_buffer_size = desc_bufsize; + desc->buffer1_addr = (uint32_t)(&buf[num * maxsize]); + + /* when it is the last descriptor */ + if(num == (count - 1U)){ + if (ENET_DMA_TX == direction){ + /* configure transmit end of ring mode */ + desc->status |= ENET_TDES0_TERM; + }else{ + /* configure receive end of ring mode */ + desc->control_buffer_size |= ENET_RDES1_RERM; + } + } + } +} + +/*! + \brief handle current received frame data to application buffer + \param[in] bufsize: the size of buffer which is the parameter in function + \param[out] buffer: pointer to the received frame data + note -- if the input is NULL, user should copy data in application by himself + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus enet_frame_receive(uint8_t *buffer, uint32_t bufsize) +{ + uint32_t offset = 0U, size = 0U; + + /* the descriptor is busy due to own by the DMA */ + if((uint32_t)RESET != (dma_current_rxdesc->status & ENET_RDES0_DAV)){ + return ERROR; + } + + + /* if buffer pointer is null, indicates that users has copied data in application */ + if(NULL != buffer){ + /* if no error occurs, and the frame uses only one descriptor */ + if((((uint32_t)RESET) == (dma_current_rxdesc->status & ENET_RDES0_ERRS)) && + (((uint32_t)RESET) != (dma_current_rxdesc->status & ENET_RDES0_LDES)) && + (((uint32_t)RESET) != (dma_current_rxdesc->status & ENET_RDES0_FDES))){ + /* get the frame length except CRC */ + size = GET_RDES0_FRML(dma_current_rxdesc->status); + size = size - 4U; + + /* if is a type frame, and CRC is not included in forwarding frame */ + if((RESET != (ENET_MAC_CFG & ENET_MAC_CFG_TFCD)) && (RESET != (dma_current_rxdesc->status & ENET_RDES0_FRMT))){ + size = size + 4U; + } + + /* to avoid situation that the frame size exceeds the buffer length */ + if(size > bufsize){ + return ERROR; + } + + /* copy data from Rx buffer to application buffer */ + for(offset = 0U; offsetbuffer1_addr) + offset)); + } + + }else{ + /* return ERROR */ + return ERROR; + } + } + /* enable reception, descriptor is owned by DMA */ + dma_current_rxdesc->status = ENET_RDES0_DAV; + + /* check Rx buffer unavailable flag status */ + if ((uint32_t)RESET != (ENET_DMA_STAT & ENET_DMA_STAT_RBU)){ + /* clear RBU flag */ + ENET_DMA_STAT = ENET_DMA_STAT_RBU; + /* resume DMA reception by writing to the RPEN register*/ + ENET_DMA_RPEN = 0U; + } + + /* update the current RxDMA descriptor pointer to the next decriptor in RxDMA decriptor table */ + /* chained mode */ + if((uint32_t)RESET != (dma_current_rxdesc->control_buffer_size & ENET_RDES1_RCHM)){ + dma_current_rxdesc = (enet_descriptors_struct*) (dma_current_rxdesc->buffer2_next_desc_addr); + }else{ + /* ring mode */ + if((uint32_t)RESET != (dma_current_rxdesc->control_buffer_size & ENET_RDES1_RERM)){ + /* if is the last descriptor in table, the next descriptor is the table header */ + dma_current_rxdesc = (enet_descriptors_struct*) (ENET_DMA_RDTADDR); + }else{ + /* the next descriptor is the current address, add the descriptor size, and descriptor skip length */ + dma_current_rxdesc = (enet_descriptors_struct*) (uint32_t)((uint32_t)dma_current_rxdesc + ETH_DMARXDESC_SIZE + (GET_DMA_BCTL_DPSL(ENET_DMA_BCTL))); + } + } + + return SUCCESS; +} + +/*! + \brief handle application buffer data to transmit it + \param[in] buffer: pointer to the frame data to be transmitted, + note -- if the input is NULL, user should handle the data in application by himself + \param[in] length: the length of frame data to be transmitted + \param[out] none + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus enet_frame_transmit(uint8_t *buffer, uint32_t length) +{ + uint32_t offset = 0U; + uint32_t dma_tbu_flag, dma_tu_flag; + + /* the descriptor is busy due to own by the DMA */ + if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_DAV)){ + return ERROR; + } + + /* only frame length no more than ENET_MAX_FRAME_SIZE is allowed */ + if(length > ENET_MAX_FRAME_SIZE){ + return ERROR; + } + + /* if buffer pointer is null, indicates that users has handled data in application */ + if(NULL != buffer){ + /* copy frame data from application buffer to Tx buffer */ + for(offset = 0U; offset < length; offset++){ + (*(__IO uint8_t *) (uint32_t)((dma_current_txdesc->buffer1_addr) + offset)) = (*(buffer + offset)); + } + } + + /* set the frame length */ + dma_current_txdesc->control_buffer_size = length; + /* set the segment of frame, frame is transmitted in one descriptor */ + dma_current_txdesc->status |= ENET_TDES0_LSG | ENET_TDES0_FSG; + /* enable the DMA transmission */ + dma_current_txdesc->status |= ENET_TDES0_DAV; + + /* check Tx buffer unavailable flag status */ + dma_tbu_flag = (ENET_DMA_STAT & ENET_DMA_STAT_TBU); + dma_tu_flag = (ENET_DMA_STAT & ENET_DMA_STAT_TU); + + if ((RESET != dma_tbu_flag) || (RESET != dma_tu_flag)){ + /* clear TBU and TU flag */ + ENET_DMA_STAT = (dma_tbu_flag | dma_tu_flag); + /* resume DMA transmission by writing to the TPEN register*/ + ENET_DMA_TPEN = 0U; + } + + /* update the current TxDMA descriptor pointer to the next decriptor in TxDMA decriptor table*/ + /* chained mode */ + if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_TCHM)){ + dma_current_txdesc = (enet_descriptors_struct*) (dma_current_txdesc->buffer2_next_desc_addr); + }else{ + /* ring mode */ + if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_TERM)){ + /* if is the last descriptor in table, the next descriptor is the table header */ + dma_current_txdesc = (enet_descriptors_struct*) (ENET_DMA_TDTADDR); + }else{ + /* the next descriptor is the current address, add the descriptor size, and descriptor skip length */ + dma_current_txdesc = (enet_descriptors_struct*) (uint32_t)((uint32_t)dma_current_txdesc + ETH_DMATXDESC_SIZE + (GET_DMA_BCTL_DPSL(ENET_DMA_BCTL))); + } + } + + return SUCCESS; +} + +/*! + \brief configure the transmit IP frame checksum offload calculation and insertion + \param[in] desc: the descriptor pointer which users want to configure, refer to enet_descriptors_struct + \param[in] checksum: IP frame checksum configuration + only one parameter can be selected which is shown as below + \arg ENET_CHECKSUM_DISABLE: checksum insertion disabled + \arg ENET_CHECKSUM_IPV4HEADER: only IP header checksum calculation and insertion are enabled + \arg ENET_CHECKSUM_TCPUDPICMP_SEGMENT: TCP/UDP/ICMP checksum insertion calculated but pseudo-header + \arg ENET_CHECKSUM_TCPUDPICMP_FULL: TCP/UDP/ICMP checksum insertion fully calculated + \param[out] none + \retval none +*/ +void enet_transmit_checksum_config(enet_descriptors_struct *desc, uint32_t checksum) +{ + desc->status &= ~ENET_TDES0_CM; + desc->status |= checksum; +} + +/*! + \brief ENET Tx and Rx function enable (include MAC and DMA module) + \param[in] none + \param[out] none + \retval none +*/ +void enet_enable(void) +{ + enet_tx_enable(); + enet_rx_enable(); +} + +/*! + \brief ENET Tx and Rx function disable (include MAC and DMA module) + \param[in] none + \param[out] none + \retval none +*/ +void enet_disable(void) +{ + enet_tx_disable(); + enet_rx_disable(); +} + +/*! + \brief configure MAC address + \param[in] mac_addr: select which MAC address will be set, refer to enet_macaddress_enum + only one parameter can be selected which is shown as below + \arg ENET_MAC_ADDRESS0: set MAC address 0 filter + \arg ENET_MAC_ADDRESS1: set MAC address 1 filter + \arg ENET_MAC_ADDRESS2: set MAC address 2 filter + \arg ENET_MAC_ADDRESS3: set MAC address 3 filter + \param[in] paddr: the buffer pointer which stores the MAC address + (little-ending store, such as MAC address is aa:bb:cc:dd:ee:22, the buffer is {22, ee, dd, cc, bb, aa}) + \param[out] none + \retval none +*/ +void enet_mac_address_set(enet_macaddress_enum mac_addr, uint8_t paddr[]) +{ + REG32(ENET_ADDRH_BASE + (uint32_t)mac_addr) = ENET_SET_MACADDRH(paddr); + REG32(ENET_ADDRL_BASE + (uint32_t)mac_addr) = ENET_SET_MACADDRL(paddr); +} + +/*! + \brief get MAC address + \param[in] mac_addr: select which MAC address will be get, refer to enet_macaddress_enum + only one parameter can be selected which is shown as below + \arg ENET_MAC_ADDRESS0: get MAC address 0 filter + \arg ENET_MAC_ADDRESS1: get MAC address 1 filter + \arg ENET_MAC_ADDRESS2: get MAC address 2 filter + \arg ENET_MAC_ADDRESS3: get MAC address 3 filter + \param[out] paddr: the buffer pointer which is stored the MAC address + (little-ending store, such as mac address is aa:bb:cc:dd:ee:22, the buffer is {22, ee, dd, cc, bb, aa}) + \retval none +*/ +void enet_mac_address_get(enet_macaddress_enum mac_addr, uint8_t paddr[]) +{ + paddr[0] = ENET_GET_MACADDR(mac_addr, 0U); + paddr[1] = ENET_GET_MACADDR(mac_addr, 1U); + paddr[2] = ENET_GET_MACADDR(mac_addr, 2U); + paddr[3] = ENET_GET_MACADDR(mac_addr, 3U); + paddr[4] = ENET_GET_MACADDR(mac_addr, 4U); + paddr[5] = ENET_GET_MACADDR(mac_addr, 5U); +} + +/*! + \brief get the ENET MAC/MSC/PTP/DMA status flag + \param[in] enet_flag: ENET status flag, refer to enet_flag_enum, + only one parameter can be selected which is shown as below + \arg ENET_MAC_FLAG_MPKR: magic packet received flag + \arg ENET_MAC_FLAG_WUFR: wakeup frame received flag + \arg ENET_MAC_FLAG_FLOWCONTROL: flow control status flag + \arg ENET_MAC_FLAG_WUM: WUM status flag + \arg ENET_MAC_FLAG_MSC: MSC status flag + \arg ENET_MAC_FLAG_MSCR: MSC receive status flag + \arg ENET_MAC_FLAG_MSCT: MSC transmit status flag + \arg ENET_MAC_FLAG_TMST: time stamp trigger status flag + \arg ENET_PTP_FLAG_TSSCO: timestamp second counter overflow flag + \arg ENET_PTP_FLAG_TTM: target time match flag + \arg ENET_MSC_FLAG_RFCE: received frames CRC error flag + \arg ENET_MSC_FLAG_RFAE: received frames alignment error flag + \arg ENET_MSC_FLAG_RGUF: received good unicast frames flag + \arg ENET_MSC_FLAG_TGFSC: transmitted good frames single collision flag + \arg ENET_MSC_FLAG_TGFMSC: transmitted good frames more single collision flag + \arg ENET_MSC_FLAG_TGF: transmitted good frames flag + \arg ENET_DMA_FLAG_TS: transmit status flag + \arg ENET_DMA_FLAG_TPS: transmit process stopped status flag + \arg ENET_DMA_FLAG_TBU: transmit buffer unavailable status flag + \arg ENET_DMA_FLAG_TJT: transmit jabber timeout status flag + \arg ENET_DMA_FLAG_RO: receive overflow status flag + \arg ENET_DMA_FLAG_TU: transmit underflow status flag + \arg ENET_DMA_FLAG_RS: receive status flag + \arg ENET_DMA_FLAG_RBU: receive buffer unavailable status flag + \arg ENET_DMA_FLAG_RPS: receive process stopped status flag + \arg ENET_DMA_FLAG_RWT: receive watchdog timeout status flag + \arg ENET_DMA_FLAG_ET: early transmit status flag + \arg ENET_DMA_FLAG_FBE: fatal bus error status flag + \arg ENET_DMA_FLAG_ER: early receive status flag + \arg ENET_DMA_FLAG_AI: abnormal interrupt summary flag + \arg ENET_DMA_FLAG_NI: normal interrupt summary flag + \arg ENET_DMA_FLAG_EB_DMA_ERROR: DMA error flag + \arg ENET_DMA_FLAG_EB_TRANSFER_ERROR: transfer error flag + \arg ENET_DMA_FLAG_EB_ACCESS_ERROR: access error flag + \arg ENET_DMA_FLAG_MSC: MSC status flag + \arg ENET_DMA_FLAG_WUM: WUM status flag + \arg ENET_DMA_FLAG_TST: timestamp trigger status flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus enet_flag_get(enet_flag_enum enet_flag) +{ + if(RESET != (ENET_REG_VAL(enet_flag) & BIT(ENET_BIT_POS(enet_flag)))){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear the ENET DMA status flag + \param[in] enet_flag: ENET DMA flag clear, refer to enet_flag_clear_enum + only one parameter can be selected which is shown as below + \arg ENET_DMA_FLAG_TS_CLR: transmit status flag clear + \arg ENET_DMA_FLAG_TPS_CLR: transmit process stopped status flag clear + \arg ENET_DMA_FLAG_TBU_CLR: transmit buffer unavailable status flag clear + \arg ENET_DMA_FLAG_TJT_CLR: transmit jabber timeout status flag clear + \arg ENET_DMA_FLAG_RO_CLR: receive overflow status flag clear + \arg ENET_DMA_FLAG_TU_CLR: transmit underflow status flag clear + \arg ENET_DMA_FLAG_RS_CLR: receive status flag clear + \arg ENET_DMA_FLAG_RBU_CLR: receive buffer unavailable status flag clear + \arg ENET_DMA_FLAG_RPS_CLR: receive process stopped status flag clear + \arg ENET_DMA_FLAG_RWT_CLR: receive watchdog timeout status flag clear + \arg ENET_DMA_FLAG_ET_CLR: early transmit status flag clear + \arg ENET_DMA_FLAG_FBE_CLR: fatal bus error status flag clear + \arg ENET_DMA_FLAG_ER_CLR: early receive status flag clear + \arg ENET_DMA_FLAG_AI_CLR: abnormal interrupt summary flag clear + \arg ENET_DMA_FLAG_NI_CLR: normal interrupt summary flag clear + \param[out] none + \retval none +*/ +void enet_flag_clear(enet_flag_clear_enum enet_flag) +{ + /* write 1 to the corresponding bit in ENET_DMA_STAT, to clear it */ + ENET_REG_VAL(enet_flag) = BIT(ENET_BIT_POS(enet_flag)); +} + +/*! + \brief enable ENET MAC/MSC/DMA interrupt + \param[in] enet_int: ENET interrupt,, refer to enet_int_enum + only one parameter can be selected which is shown as below + \arg ENET_MAC_INT_WUMIM: WUM interrupt mask + \arg ENET_MAC_INT_TMSTIM: timestamp trigger interrupt mask + \arg ENET_MSC_INT_RFCEIM: received frame CRC error interrupt mask + \arg ENET_MSC_INT_RFAEIM: received frames alignment error interrupt mask + \arg ENET_MSC_INT_RGUFIM: received good unicast frames interrupt mask + \arg ENET_MSC_INT_TGFSCIM: transmitted good frames single collision interrupt mask + \arg ENET_MSC_INT_TGFMSCIM: transmitted good frames more single collision interrupt mask + \arg ENET_MSC_INT_TGFIM: transmitted good frames interrupt mask + \arg ENET_DMA_INT_TIE: transmit interrupt enable + \arg ENET_DMA_INT_TPSIE: transmit process stopped interrupt enable + \arg ENET_DMA_INT_TBUIE: transmit buffer unavailable interrupt enable + \arg ENET_DMA_INT_TJTIE: transmit jabber timeout interrupt enable + \arg ENET_DMA_INT_ROIE: receive overflow interrupt enable + \arg ENET_DMA_INT_TUIE: transmit underflow interrupt enable + \arg ENET_DMA_INT_RIE: receive interrupt enable + \arg ENET_DMA_INT_RBUIE: receive buffer unavailable interrupt enable + \arg ENET_DMA_INT_RPSIE: receive process stopped interrupt enable + \arg ENET_DMA_INT_RWTIE: receive watchdog timeout interrupt enable + \arg ENET_DMA_INT_ETIE: early transmit interrupt enable + \arg ENET_DMA_INT_FBEIE: fatal bus error interrupt enable + \arg ENET_DMA_INT_ERIE: early receive interrupt enable + \arg ENET_DMA_INT_AIE: abnormal interrupt summary enable + \arg ENET_DMA_INT_NIE: normal interrupt summary enable + \param[out] none + \retval none +*/ +void enet_interrupt_enable(enet_int_enum enet_int) +{ + if(DMA_INTEN_REG_OFFSET == ((uint32_t)enet_int >> 6)){ + /* ENET_DMA_INTEN register interrupt */ + ENET_REG_VAL(enet_int) |= BIT(ENET_BIT_POS(enet_int)); + }else{ + /* other INTMSK register interrupt */ + ENET_REG_VAL(enet_int) &= ~BIT(ENET_BIT_POS(enet_int)); + } +} + +/*! + \brief disable ENET MAC/MSC/DMA interrupt + \param[in] enet_int: ENET interrupt, refer to enet_int_enum + only one parameter can be selected which is shown as below + \arg ENET_MAC_INT_WUMIM: WUM interrupt mask + \arg ENET_MAC_INT_TMSTIM: timestamp trigger interrupt mask + \arg ENET_MSC_INT_RFCEIM: received frame CRC error interrupt mask + \arg ENET_MSC_INT_RFAEIM: received frames alignment error interrupt mask + \arg ENET_MSC_INT_RGUFIM: received good unicast frames interrupt mask + \arg ENET_MSC_INT_TGFSCIM: transmitted good frames single collision interrupt mask + \arg ENET_MSC_INT_TGFMSCIM: transmitted good frames more single collision interrupt mask + \arg ENET_MSC_INT_TGFIM: transmitted good frames interrupt mask + \arg ENET_DMA_INT_TIE: transmit interrupt enable + \arg ENET_DMA_INT_TPSIE: transmit process stopped interrupt enable + \arg ENET_DMA_INT_TBUIE: transmit buffer unavailable interrupt enable + \arg ENET_DMA_INT_TJTIE: transmit jabber timeout interrupt enable + \arg ENET_DMA_INT_ROIE: receive overflow interrupt enable + \arg ENET_DMA_INT_TUIE: transmit underflow interrupt enable + \arg ENET_DMA_INT_RIE: receive interrupt enable + \arg ENET_DMA_INT_RBUIE: receive buffer unavailable interrupt enable + \arg ENET_DMA_INT_RPSIE: receive process stopped interrupt enable + \arg ENET_DMA_INT_RWTIE: receive watchdog timeout interrupt enable + \arg ENET_DMA_INT_ETIE: early transmit interrupt enable + \arg ENET_DMA_INT_FBEIE: fatal bus error interrupt enable + \arg ENET_DMA_INT_ERIE: early receive interrupt enable + \arg ENET_DMA_INT_AIE: abnormal interrupt summary enable + \arg ENET_DMA_INT_NIE: normal interrupt summary enable + \param[out] none + \retval none +*/ +void enet_interrupt_disable(enet_int_enum enet_int) +{ + if(DMA_INTEN_REG_OFFSET == ((uint32_t)enet_int >> 6)){ + /* ENET_DMA_INTEN register interrupt */ + ENET_REG_VAL(enet_int) &= ~BIT(ENET_BIT_POS(enet_int)); + }else{ + /* other INTMSK register interrupt */ + ENET_REG_VAL(enet_int) |= BIT(ENET_BIT_POS(enet_int)); + } +} + +/*! + \brief get ENET MAC/MSC/DMA interrupt flag + \param[in] int_flag: ENET interrupt flag, refer to enet_int_flag_enum + only one parameter can be selected which is shown as below + \arg ENET_MAC_INT_FLAG_WUM: WUM status flag + \arg ENET_MAC_INT_FLAG_MSC: MSC status flag + \arg ENET_MAC_INT_FLAG_MSCR: MSC receive status flag + \arg ENET_MAC_INT_FLAG_MSCT: MSC transmit status flag + \arg ENET_MAC_INT_FLAG_TMST: time stamp trigger status flag + \arg ENET_MSC_INT_FLAG_RFCE: received frames CRC error flag + \arg ENET_MSC_INT_FLAG_RFAE: received frames alignment error flag + \arg ENET_MSC_INT_FLAG_RGUF: received good unicast frames flag + \arg ENET_MSC_INT_FLAG_TGFSC: transmitted good frames single collision flag + \arg ENET_MSC_INT_FLAG_TGFMSC: transmitted good frames more single collision flag + \arg ENET_MSC_INT_FLAG_TGF: transmitted good frames flag + \arg ENET_DMA_INT_FLAG_TS: transmit status flag + \arg ENET_DMA_INT_FLAG_TPS: transmit process stopped status flag + \arg ENET_DMA_INT_FLAG_TBU: transmit buffer unavailable status flag + \arg ENET_DMA_INT_FLAG_TJT: transmit jabber timeout status flag + \arg ENET_DMA_INT_FLAG_RO: receive overflow status flag + \arg ENET_DMA_INT_FLAG_TU: transmit underflow status flag + \arg ENET_DMA_INT_FLAG_RS: receive status flag + \arg ENET_DMA_INT_FLAG_RBU: receive buffer unavailable status flag + \arg ENET_DMA_INT_FLAG_RPS: receive process stopped status flag + \arg ENET_DMA_INT_FLAG_RWT: receive watchdog timeout status flag + \arg ENET_DMA_INT_FLAG_ET: early transmit status flag + \arg ENET_DMA_INT_FLAG_FBE: fatal bus error status flag + \arg ENET_DMA_INT_FLAG_ER: early receive status flag + \arg ENET_DMA_INT_FLAG_AI: abnormal interrupt summary flag + \arg ENET_DMA_INT_FLAG_NI: normal interrupt summary flag + \arg ENET_DMA_INT_FLAG_MSC: MSC status flag + \arg ENET_DMA_INT_FLAG_WUM: WUM status flag + \arg ENET_DMA_INT_FLAG_TST: timestamp trigger status flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus enet_interrupt_flag_get(enet_int_flag_enum int_flag) +{ + if(RESET != (ENET_REG_VAL(int_flag) & BIT(ENET_BIT_POS(int_flag)))){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear ENET DMA interrupt flag + \param[in] int_flag_clear: clear ENET interrupt flag, refer to enet_int_flag_clear_enum + only one parameter can be selected which is shown as below + \arg ENET_DMA_INT_FLAG_TS_CLR: transmit status flag + \arg ENET_DMA_INT_FLAG_TPS_CLR: transmit process stopped status flag + \arg ENET_DMA_INT_FLAG_TBU_CLR: transmit buffer unavailable status flag + \arg ENET_DMA_INT_FLAG_TJT_CLR: transmit jabber timeout status flag + \arg ENET_DMA_INT_FLAG_RO_CLR: receive overflow status flag + \arg ENET_DMA_INT_FLAG_TU_CLR: transmit underflow status flag + \arg ENET_DMA_INT_FLAG_RS_CLR: receive status flag + \arg ENET_DMA_INT_FLAG_RBU_CLR: receive buffer unavailable status flag + \arg ENET_DMA_INT_FLAG_RPS_CLR: receive process stopped status flag + \arg ENET_DMA_INT_FLAG_RWT_CLR: receive watchdog timeout status flag + \arg ENET_DMA_INT_FLAG_ET_CLR: early transmit status flag + \arg ENET_DMA_INT_FLAG_FBE_CLR: fatal bus error status flag + \arg ENET_DMA_INT_FLAG_ER_CLR: early receive status flag + \arg ENET_DMA_INT_FLAG_AI_CLR: abnormal interrupt summary flag + \arg ENET_DMA_INT_FLAG_NI_CLR: normal interrupt summary flag + \param[out] none + \retval none +*/ +void enet_interrupt_flag_clear(enet_int_flag_clear_enum int_flag_clear) +{ + /* write 1 to the corresponding bit in ENET_DMA_STAT, to clear it */ + ENET_REG_VAL(int_flag_clear) = BIT(ENET_BIT_POS(int_flag_clear)); +} + +/*! + \brief ENET Tx function enable (include MAC and DMA module) + \param[in] none + \param[out] none + \retval none +*/ +void enet_tx_enable(void) +{ + ENET_MAC_CFG |= ENET_MAC_CFG_TEN; + enet_txfifo_flush(); + ENET_DMA_CTL |= ENET_DMA_CTL_STE; +} + +/*! + \brief ENET Tx function disable (include MAC and DMA module) + \param[in] none + \param[out] none + \retval none +*/ +void enet_tx_disable(void) +{ + ENET_DMA_CTL &= ~ENET_DMA_CTL_STE; + enet_txfifo_flush(); + ENET_MAC_CFG &= ~ENET_MAC_CFG_TEN; +} + +/*! + \brief ENET Rx function enable (include MAC and DMA module) + \param[in] none + \param[out] none + \retval none +*/ +void enet_rx_enable(void) +{ + ENET_MAC_CFG |= ENET_MAC_CFG_REN; + ENET_DMA_CTL |= ENET_DMA_CTL_SRE; +} + +/*! + \brief ENET Rx function disable (include MAC and DMA module) + \param[in] none + \param[out] none + \retval none +*/ +void enet_rx_disable(void) +{ + ENET_DMA_CTL &= ~ENET_DMA_CTL_SRE; + ENET_MAC_CFG &= ~ENET_MAC_CFG_REN; +} + +/*! + \brief put registers value into the application buffer + \param[in] type: register type which will be get, refer to enet_registers_type_enum, + only one parameter can be selected which is shown as below + \arg ALL_MAC_REG: get the registers within the offset scope between ENET_MAC_CFG and ENET_MAC_FCTH + \arg ALL_MSC_REG: get the registers within the offset scope between ENET_MSC_CTL and ENET_MSC_RGUFCNT + \arg ALL_PTP_REG: get the registers within the offset scope between ENET_PTP_TSCTL and ENET_PTP_PPSCTL + \arg ALL_DMA_REG: get the registers within the offset scope between ENET_DMA_BCTL and ENET_DMA_CRBADDR + \param[in] num: the number of registers that the user want to get + \param[out] preg: the application buffer pointer for storing the register value + \retval none +*/ +void enet_registers_get(enet_registers_type_enum type, uint32_t *preg, uint32_t num) +{ + uint32_t offset = 0U, max = 0U, limit = 0U; + + offset = (uint32_t)type; + max = (uint32_t)type + num; + limit = sizeof(enet_reg_tab)/sizeof(uint16_t); + + /* prevent element in this array is out of range */ + if(max > limit){ + max = limit; + } + + for(; offset < max; offset++){ + /* get value of the corresponding register */ + *preg = REG32((ENET) + enet_reg_tab[offset]); + preg++; + } +} + +/*! + \brief get the enet debug status from the debug register + \param[in] mac_debug: enet debug status + only one parameter can be selected which is shown as below + \arg ENET_MAC_RECEIVER_NOT_IDLE: MAC receiver is not in idle state + \arg ENET_RX_ASYNCHRONOUS_FIFO_STATE: Rx asynchronous FIFO status + \arg ENET_RXFIFO_WRITING: RxFIFO is doing write operation + \arg ENET_RXFIFO_READ_STATUS: RxFIFO read operation status + \arg ENET_RXFIFO_STATE: RxFIFO state + \arg ENET_MAC_TRANSMITTER_NOT_IDLE: MAC transmitter is not in idle state + \arg ENET_MAC_TRANSMITTER_STATUS: status of MAC transmitter + \arg ENET_PAUSE_CONDITION_STATUS: pause condition status + \arg ENET_TXFIFO_READ_STATUS: TxFIFO read operation status + \arg ENET_TXFIFO_WRITING: TxFIFO is doing write operation + \arg ENET_TXFIFO_NOT_EMPTY: TxFIFO is not empty + \arg ENET_TXFIFO_FULL: TxFIFO is full + \param[out] none + \retval value of the status users want to get +*/ +uint32_t enet_debug_status_get(uint32_t mac_debug) +{ + uint32_t temp_state = 0U; + + switch(mac_debug){ + case ENET_RX_ASYNCHRONOUS_FIFO_STATE: + temp_state = GET_MAC_DBG_RXAFS(ENET_MAC_DBG); + break; + case ENET_RXFIFO_READ_STATUS: + temp_state = GET_MAC_DBG_RXFRS(ENET_MAC_DBG); + break; + case ENET_RXFIFO_STATE: + temp_state = GET_MAC_DBG_RXFS(ENET_MAC_DBG); + break; + case ENET_MAC_TRANSMITTER_STATUS: + temp_state = GET_MAC_DBG_SOMT(ENET_MAC_DBG); + break; + case ENET_TXFIFO_READ_STATUS: + temp_state = GET_MAC_DBG_TXFRS(ENET_MAC_DBG); + break; + default: + if(RESET != (ENET_MAC_DBG & mac_debug)){ + temp_state = 0x1U; + } + break; + } + return temp_state; +} + +/*! + \brief enable the MAC address filter + \param[in] mac_addr: select which MAC address will be enable, refer to enet_macaddress_enum + \arg ENET_MAC_ADDRESS1: enable MAC address 1 filter + \arg ENET_MAC_ADDRESS2: enable MAC address 2 filter + \arg ENET_MAC_ADDRESS3: enable MAC address 3 filter + \param[out] none + \retval none +*/ +void enet_address_filter_enable(enet_macaddress_enum mac_addr) +{ + REG32(ENET_ADDRH_BASE + mac_addr) |= ENET_MAC_ADDR1H_AFE; +} + +/*! + \brief disable the MAC address filter + \param[in] mac_addr: select which MAC address will be disable, refer to enet_macaddress_enum + only one parameter can be selected which is shown as below + \arg ENET_MAC_ADDRESS1: disable MAC address 1 filter + \arg ENET_MAC_ADDRESS2: disable MAC address 2 filter + \arg ENET_MAC_ADDRESS3: disable MAC address 3 filter + \param[out] none + \retval none +*/ +void enet_address_filter_disable(enet_macaddress_enum mac_addr) +{ + REG32(ENET_ADDRH_BASE + mac_addr) &= ~ENET_MAC_ADDR1H_AFE; +} + +/*! + \brief configure the MAC address filter + \param[in] mac_addr: select which MAC address will be configured, refer to enet_macaddress_enum + only one parameter can be selected which is shown as below + \arg ENET_MAC_ADDRESS1: configure MAC address 1 filter + \arg ENET_MAC_ADDRESS2: configure MAC address 2 filter + \arg ENET_MAC_ADDRESS3: configure MAC address 3 filter + \param[in] addr_mask: select which MAC address bytes will be mask + one or more parameters can be selected which are shown as below + \arg ENET_ADDRESS_MASK_BYTE0: mask ENET_MAC_ADDR1L[7:0] bits + \arg ENET_ADDRESS_MASK_BYTE1: mask ENET_MAC_ADDR1L[15:8] bits + \arg ENET_ADDRESS_MASK_BYTE2: mask ENET_MAC_ADDR1L[23:16] bits + \arg ENET_ADDRESS_MASK_BYTE3: mask ENET_MAC_ADDR1L [31:24] bits + \arg ENET_ADDRESS_MASK_BYTE4: mask ENET_MAC_ADDR1H [7:0] bits + \arg ENET_ADDRESS_MASK_BYTE5: mask ENET_MAC_ADDR1H [15:8] bits + \param[in] filter_type: select which MAC address filter type will be selected + only one parameter can be selected which is shown as below + \arg ENET_ADDRESS_FILTER_SA: The MAC address is used to compared with the SA field of the received frame + \arg ENET_ADDRESS_FILTER_DA: The MAC address is used to compared with the DA field of the received frame + \param[out] none + \retval none +*/ +void enet_address_filter_config(enet_macaddress_enum mac_addr, uint32_t addr_mask, uint32_t filter_type) +{ + uint32_t reg; + + /* get the address filter register value which is to be configured */ + reg = REG32(ENET_ADDRH_BASE + mac_addr); + + /* clear and configure the address filter register */ + reg &= ~(ENET_MAC_ADDR1H_MB | ENET_MAC_ADDR1H_SAF); + reg |= (addr_mask | filter_type); + REG32(ENET_ADDRH_BASE + mac_addr) = reg; +} + +/*! + \brief PHY interface configuration (configure SMI clock and reset PHY chip) + \param[in] none + \param[out] none + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus enet_phy_config(void) +{ + uint32_t ahbclk; + uint32_t reg; + uint16_t phy_value; + ErrStatus enet_state = ERROR; + + /* clear the previous MDC clock */ + reg = ENET_MAC_PHY_CTL; + reg &= ~ENET_MAC_PHY_CTL_CLR; + + /* get the HCLK frequency */ + ahbclk = rcu_clock_freq_get(CK_AHB); + + /* configure MDC clock according to HCLK frequency range */ + if(ENET_RANGE(ahbclk, 20000000U, 35000000U)){ + reg |= ENET_MDC_HCLK_DIV16; + }else if(ENET_RANGE(ahbclk, 35000000U, 60000000U)){ + reg |= ENET_MDC_HCLK_DIV26; + }else if(ENET_RANGE(ahbclk, 60000000U, 100000000U)){ + reg |= ENET_MDC_HCLK_DIV42; + }else if(ENET_RANGE(ahbclk, 100000000U, 150000000U)){ + reg |= ENET_MDC_HCLK_DIV62; + }else if((ENET_RANGE(ahbclk, 150000000U, 200000000U))||(200000000U == ahbclk)){ + reg |= ENET_MDC_HCLK_DIV102; + }else{ + return enet_state; + } + ENET_MAC_PHY_CTL = reg; + + /* reset PHY */ + phy_value = PHY_RESET; + if(ERROR == (enet_phy_write_read(ENET_PHY_WRITE, PHY_ADDRESS, PHY_REG_BCR, &phy_value))){ + return enet_state; + } + /* PHY reset need some time */ + _ENET_DELAY_(ENET_DELAY_TO); + + /* check whether PHY reset is complete */ + if(ERROR == (enet_phy_write_read(ENET_PHY_READ, PHY_ADDRESS, PHY_REG_BCR, &phy_value))){ + return enet_state; + } + + /* PHY reset complete */ + if(RESET == (phy_value & PHY_RESET)){ + enet_state = SUCCESS; + } + + return enet_state; +} + +/*! + \brief write to / read from a PHY register + \param[in] direction: only one parameter can be selected which is shown as below, refer to enet_phydirection_enum + \arg ENET_PHY_WRITE: write data to phy register + \arg ENET_PHY_READ: read data from phy register + \param[in] phy_address: 0x0000 - 0x001F + \param[in] phy_reg: 0x0000 - 0x001F + \param[in] pvalue: the value will be written to the PHY register in ENET_PHY_WRITE direction + \param[out] pvalue: the value will be read from the PHY register in ENET_PHY_READ direction + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus enet_phy_write_read(enet_phydirection_enum direction, uint16_t phy_address, uint16_t phy_reg, uint16_t *pvalue) +{ + uint32_t reg, phy_flag; + uint32_t timeout = 0U; + ErrStatus enet_state = ERROR; + + /* configure ENET_MAC_PHY_CTL with write/read operation */ + reg = ENET_MAC_PHY_CTL; + reg &= ~(ENET_MAC_PHY_CTL_PB | ENET_MAC_PHY_CTL_PW | ENET_MAC_PHY_CTL_PR | ENET_MAC_PHY_CTL_PA); + reg |= (direction | MAC_PHY_CTL_PR(phy_reg) | MAC_PHY_CTL_PA(phy_address) | ENET_MAC_PHY_CTL_PB); + + /* if do the write operation, write value to the register */ + if(ENET_PHY_WRITE == direction){ + ENET_MAC_PHY_DATA = *pvalue; + } + + /* do PHY write/read operation, and wait the operation complete */ + ENET_MAC_PHY_CTL = reg; + do{ + phy_flag = (ENET_MAC_PHY_CTL & ENET_MAC_PHY_CTL_PB); + timeout++; + } + while((RESET != phy_flag) && (ENET_DELAY_TO != timeout)); + + /* write/read operation complete */ + if(RESET == (ENET_MAC_PHY_CTL & ENET_MAC_PHY_CTL_PB)){ + enet_state = SUCCESS; + } + + /* if do the read operation, get value from the register */ + if(ENET_PHY_READ == direction){ + *pvalue = (uint16_t)ENET_MAC_PHY_DATA; + } + + return enet_state; +} + +/*! + \brief enable the loopback function of PHY chip + \param[in] none + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus enet_phyloopback_enable(void) +{ + uint16_t temp_phy = 0U; + ErrStatus phy_state = ERROR; + + /* get the PHY configuration to update it */ + enet_phy_write_read(ENET_PHY_READ, PHY_ADDRESS, PHY_REG_BCR, &temp_phy); + + /* enable the PHY loopback mode */ + temp_phy |= PHY_LOOPBACK; + + /* update the PHY control register with the new configuration */ + phy_state = enet_phy_write_read(ENET_PHY_WRITE, PHY_ADDRESS, PHY_REG_BCR, &temp_phy); + + return phy_state; +} + +/*! + \brief disable the loopback function of PHY chip + \param[in] none + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus enet_phyloopback_disable(void) +{ + uint16_t temp_phy = 0U; + ErrStatus phy_state = ERROR; + + /* get the PHY configuration to update it */ + enet_phy_write_read(ENET_PHY_READ, PHY_ADDRESS, PHY_REG_BCR, &temp_phy); + + /* disable the PHY loopback mode */ + temp_phy &= (uint16_t)~PHY_LOOPBACK; + + /* update the PHY control register with the new configuration */ + phy_state = enet_phy_write_read(ENET_PHY_WRITE, PHY_ADDRESS, PHY_REG_BCR, &temp_phy); + + return phy_state; +} + +/*! + \brief enable ENET forward feature + \param[in] feature: the feature of ENET forward mode + one or more parameters can be selected which are shown as below + \arg ENET_AUTO_PADCRC_DROP: the function of the MAC strips the Pad/FCS field on received frames + \arg ENET_TYPEFRAME_CRC_DROP: the function that FCS field(last 4 bytes) of frame will be dropped before forwarding + \arg ENET_FORWARD_ERRFRAMES: the function that all frame received with error except runt error are forwarded to memory + \arg ENET_FORWARD_UNDERSZ_GOODFRAMES: the function that forwarding undersized good frames + \param[out] none + \retval none +*/ +void enet_forward_feature_enable(uint32_t feature) +{ + uint32_t mask; + + mask = (feature & (~(ENET_FORWARD_ERRFRAMES | ENET_FORWARD_UNDERSZ_GOODFRAMES))); + ENET_MAC_CFG |= mask; + + mask = (feature & (~(ENET_AUTO_PADCRC_DROP | ENET_TYPEFRAME_CRC_DROP))); + ENET_DMA_CTL |= (mask >> 2); +} + +/*! + \brief disable ENET forward feature + \param[in] feature: the feature of ENET forward mode + one or more parameters can be selected which are shown as below + \arg ENET_AUTO_PADCRC_DROP: the automatic zero-quanta generation function + \arg ENET_TYPEFRAME_CRC_DROP: the flow control operation in the MAC + \arg ENET_FORWARD_ERRFRAMES: decoding function for the received pause frame and process it + \arg ENET_FORWARD_UNDERSZ_GOODFRAMES: back pressure operation in the MAC(only use in half-dulex mode) + \param[out] none + \retval none +*/ +void enet_forward_feature_disable(uint32_t feature) +{ + uint32_t mask; + + mask = (feature & (~(ENET_FORWARD_ERRFRAMES | ENET_FORWARD_UNDERSZ_GOODFRAMES))); + ENET_MAC_CFG &= ~mask; + + mask = (feature & (~(ENET_AUTO_PADCRC_DROP | ENET_TYPEFRAME_CRC_DROP))); + ENET_DMA_CTL &= ~(mask >> 2); +} + +/*! + \brief enable ENET fliter feature + \param[in] feature: the feature of ENET fliter mode + one or more parameters can be selected which are shown as below + \arg ENET_SRC_FILTER: filter source address function + \arg ENET_SRC_FILTER_INVERSE: inverse source address filtering result function + \arg ENET_DEST_FILTER_INVERSE: inverse DA filtering result function + \arg ENET_MULTICAST_FILTER_PASS: pass all multicast frames function + \arg ENET_MULTICAST_FILTER_HASH_MODE: HASH multicast filter function + \arg ENET_UNICAST_FILTER_HASH_MODE: HASH unicast filter function + \arg ENET_FILTER_MODE_EITHER: HASH or perfect filter function + \param[out] none + \retval none +*/ +void enet_fliter_feature_enable(uint32_t feature) +{ + ENET_MAC_FRMF |= feature; +} + +/*! + \brief disable ENET fliter feature + \param[in] feature: the feature of ENET fliter mode + one or more parameters can be selected which are shown as below + \arg ENET_SRC_FILTER: filter source address function + \arg ENET_SRC_FILTER_INVERSE: inverse source address filtering result function + \arg ENET_DEST_FILTER_INVERSE: inverse DA filtering result function + \arg ENET_MULTICAST_FILTER_PASS: pass all multicast frames function + \arg ENET_MULTICAST_FILTER_HASH_MODE: HASH multicast filter function + \arg ENET_UNICAST_FILTER_HASH_MODE: HASH unicast filter function + \arg ENET_FILTER_MODE_EITHER: HASH or perfect filter function + \param[out] none + \retval none +*/ +void enet_fliter_feature_disable(uint32_t feature) +{ + ENET_MAC_FRMF &= ~feature; +} + +/*! + \brief generate the pause frame, ENET will send pause frame after enable transmit flow control + this function only use in full-dulex mode + \param[in] none + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus enet_pauseframe_generate(void) +{ + ErrStatus enet_state =ERROR; + uint32_t temp = 0U; + + /* in full-duplex mode, must make sure this bit is 0 before writing register */ + temp = ENET_MAC_FCTL & ENET_MAC_FCTL_FLCBBKPA; + if(RESET == temp){ + ENET_MAC_FCTL |= ENET_MAC_FCTL_FLCBBKPA; + enet_state = SUCCESS; + } + return enet_state; +} + +/*! + \brief configure the pause frame detect type + \param[in] detect: pause frame detect type + only one parameter can be selected which is shown as below + \arg ENET_MAC0_AND_UNIQUE_ADDRESS_PAUSEDETECT: besides the unique multicast address, MAC can also + use the MAC0 address to detecting pause frame + \arg ENET_UNIQUE_PAUSEDETECT: only the unique multicast address for pause frame which is specified + in IEEE802.3 can be detected + \param[out] none + \retval none +*/ +void enet_pauseframe_detect_config(uint32_t detect) +{ + ENET_MAC_FCTL &= ~ENET_MAC_FCTL_UPFDT; + ENET_MAC_FCTL |= detect; +} + +/*! + \brief configure the pause frame parameters + \param[in] pausetime: pause time in transmit pause control frame + \param[in] pause_threshold: the threshold of the pause timer for retransmitting frames automatically + this value must make sure to be less than configured pause time + only one parameter can be selected which is shown as below + \arg ENET_PAUSETIME_MINUS4: pause time minus 4 slot times + \arg ENET_PAUSETIME_MINUS28: pause time minus 28 slot times + \arg ENET_PAUSETIME_MINUS144: pause time minus 144 slot times + \arg ENET_PAUSETIME_MINUS256: pause time minus 256 slot times + \param[out] none + \retval none +*/ +void enet_pauseframe_config(uint32_t pausetime, uint32_t pause_threshold) +{ + ENET_MAC_FCTL &= ~(ENET_MAC_FCTL_PTM | ENET_MAC_FCTL_PLTS); + ENET_MAC_FCTL |= (MAC_FCTL_PTM(pausetime) | pause_threshold); +} + +/*! + \brief configure the threshold of the flow control(deactive and active threshold) + \param[in] deactive: the threshold of the deactive flow control + this value should always be less than active flow control value + only one parameter can be selected which is shown as below + \arg ENET_DEACTIVE_THRESHOLD_256BYTES: threshold level is 256 bytes + \arg ENET_DEACTIVE_THRESHOLD_512BYTES: threshold level is 512 bytes + \arg ENET_DEACTIVE_THRESHOLD_768BYTES: threshold level is 768 bytes + \arg ENET_DEACTIVE_THRESHOLD_1024BYTES: threshold level is 1024 bytes + \arg ENET_DEACTIVE_THRESHOLD_1280BYTES: threshold level is 1280 bytes + \arg ENET_DEACTIVE_THRESHOLD_1536BYTES: threshold level is 1536 bytes + \arg ENET_DEACTIVE_THRESHOLD_1792BYTES: threshold level is 1792 bytes + \param[in] active: the threshold of the active flow control + only one parameter can be selected which is shown as below + \arg ENET_ACTIVE_THRESHOLD_256BYTES: threshold level is 256 bytes + \arg ENET_ACTIVE_THRESHOLD_512BYTES: threshold level is 512 bytes + \arg ENET_ACTIVE_THRESHOLD_768BYTES: threshold level is 768 bytes + \arg ENET_ACTIVE_THRESHOLD_1024BYTES: threshold level is 1024 bytes + \arg ENET_ACTIVE_THRESHOLD_1280BYTES: threshold level is 1280 bytes + \arg ENET_ACTIVE_THRESHOLD_1536BYTES: threshold level is 1536 bytes + \arg ENET_ACTIVE_THRESHOLD_1792BYTES: threshold level is 1792 bytes + \param[out] none + \retval none +*/ +void enet_flowcontrol_threshold_config(uint32_t deactive, uint32_t active) +{ + ENET_MAC_FCTH = ((deactive | active) >> 8); +} + +/*! + \brief enable ENET flow control feature + \param[in] feature: the feature of ENET flow control mode + one or more parameters can be selected which are shown as below + \arg ENET_ZERO_QUANTA_PAUSE: the automatic zero-quanta generation function + \arg ENET_TX_FLOWCONTROL: the flow control operation in the MAC + \arg ENET_RX_FLOWCONTROL: decoding function for the received pause frame and process it + \arg ENET_BACK_PRESSURE: back pressure operation in the MAC(only use in half-dulex mode) + \param[out] none + \retval none +*/ +void enet_flowcontrol_feature_enable(uint32_t feature) +{ + if(RESET != (feature & ENET_ZERO_QUANTA_PAUSE)){ + ENET_MAC_FCTL &= ~ENET_ZERO_QUANTA_PAUSE; + } + feature &= ~ENET_ZERO_QUANTA_PAUSE; + ENET_MAC_FCTL |= feature; +} + +/*! + \brief disable ENET flow control feature + \param[in] feature: the feature of ENET flow control mode + one or more parameters can be selected which are shown as below + \arg ENET_ZERO_QUANTA_PAUSE: the automatic zero-quanta generation function + \arg ENET_TX_FLOWCONTROL: the flow control operation in the MAC + \arg ENET_RX_FLOWCONTROL: decoding function for the received pause frame and process it + \arg ENET_BACK_PRESSURE: back pressure operation in the MAC(only use in half-dulex mode) + \param[out] none + \retval none +*/ +void enet_flowcontrol_feature_disable(uint32_t feature) +{ + if(RESET != (feature & ENET_ZERO_QUANTA_PAUSE)){ + ENET_MAC_FCTL |= ENET_ZERO_QUANTA_PAUSE; + } + feature &= ~ENET_ZERO_QUANTA_PAUSE; + ENET_MAC_FCTL &= ~feature; +} + +/*! + \brief get the dma transmit/receive process state + \param[in] direction: choose the direction of dma process which users want to check, refer to enet_dmadirection_enum + only one parameter can be selected which is shown as below + \arg ENET_DMA_TX: dma transmit process + \arg ENET_DMA_RX: dma receive process + \param[out] none + \retval state of dma process, the value range shows below: + ENET_RX_STATE_STOPPED, ENET_RX_STATE_FETCHING, ENET_RX_STATE_WAITING, + ENET_RX_STATE_SUSPENDED, ENET_RX_STATE_CLOSING, ENET_RX_STATE_QUEUING, + ENET_TX_STATE_STOPPED, ENET_TX_STATE_FETCHING, ENET_TX_STATE_WAITING, + ENET_TX_STATE_READING, ENET_TX_STATE_SUSPENDED, ENET_TX_STATE_CLOSING +*/ +uint32_t enet_dmaprocess_state_get(enet_dmadirection_enum direction) +{ + uint32_t reval; + reval = (uint32_t)(ENET_DMA_STAT & (uint32_t)direction); + return reval; +} + +/*! + \brief poll the DMA transmission/reception enable by writing any value to the + ENET_DMA_TPEN/ENET_DMA_RPEN register, this will make the DMA to resume transmission/reception + \param[in] direction: choose the direction of DMA process which users want to resume, refer to enet_dmadirection_enum + only one parameter can be selected which is shown as below + \arg ENET_DMA_TX: DMA transmit process + \arg ENET_DMA_RX: DMA receive process + \param[out] none + \retval none +*/ +void enet_dmaprocess_resume(enet_dmadirection_enum direction) +{ + if(ENET_DMA_TX == direction){ + ENET_DMA_TPEN = 0U; + }else{ + ENET_DMA_RPEN = 0U; + } +} + +/*! + \brief check and recover the Rx process + \param[in] none + \param[out] none + \retval none +*/ +void enet_rxprocess_check_recovery(void) +{ + uint32_t status; + + /* get DAV information of current RxDMA descriptor */ + status = dma_current_rxdesc->status; + status &= ENET_RDES0_DAV; + + /* if current descriptor is owned by DMA, but the descriptor address mismatches with + receive descriptor address pointer updated by RxDMA controller */ + if((ENET_DMA_CRDADDR != ((uint32_t)dma_current_rxdesc)) && + (ENET_RDES0_DAV == status)){ + dma_current_rxdesc = (enet_descriptors_struct*)ENET_DMA_CRDADDR; + } +} + +/*! + \brief flush the ENET transmit FIFO, and wait until the flush operation completes + \param[in] none + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus enet_txfifo_flush(void) +{ + uint32_t flush_state; + uint32_t timeout = 0U; + ErrStatus enet_state = ERROR; + + /* set the FTF bit for flushing transmit FIFO */ + ENET_DMA_CTL |= ENET_DMA_CTL_FTF; + /* wait until the flush operation completes */ + do{ + flush_state = ENET_DMA_CTL & ENET_DMA_CTL_FTF; + timeout++; + }while((RESET != flush_state) && (timeout < ENET_DELAY_TO)); + /* return ERROR due to timeout */ + if(RESET == flush_state){ + enet_state = SUCCESS; + } + + return enet_state; +} + +/*! + \brief get the transmit/receive address of current descriptor, or current buffer, or descriptor table + \param[in] addr_get: choose the address which users want to get, refer to enet_desc_reg_enum + only one parameter can be selected which is shown as below + \arg ENET_RX_DESC_TABLE: the start address of the receive descriptor table + \arg ENET_RX_CURRENT_DESC: the start descriptor address of the current receive descriptor read by + the RxDMA controller + \arg ENET_RX_CURRENT_BUFFER: the current receive buffer address being read by the RxDMA controller + \arg ENET_TX_DESC_TABLE: the start address of the transmit descriptor table + \arg ENET_TX_CURRENT_DESC: the start descriptor address of the current transmit descriptor read by + the TxDMA controller + \arg ENET_TX_CURRENT_BUFFER: the current transmit buffer address being read by the TxDMA controller + \param[out] none + \retval address value +*/ +uint32_t enet_current_desc_address_get(enet_desc_reg_enum addr_get) +{ + uint32_t reval = 0U; + + reval = REG32((ENET) +(uint32_t)addr_get); + return reval; +} + +/*! + \brief get the Tx or Rx descriptor information + \param[in] desc: the descriptor pointer which users want to get information + \param[in] info_get: the descriptor information type which is selected, refer to enet_descstate_enum + only one parameter can be selected which is shown as below + \arg RXDESC_BUFFER_1_SIZE: receive buffer 1 size + \arg RXDESC_BUFFER_2_SIZE: receive buffer 2 size + \arg RXDESC_FRAME_LENGTH: the byte length of the received frame that was transferred to the buffer + \arg TXDESC_COLLISION_COUNT: the number of collisions occurred before the frame was transmitted + \arg RXDESC_BUFFER_1_ADDR: the buffer1 address of the Rx frame + \arg TXDESC_BUFFER_1_ADDR: the buffer1 address of the Tx frame + \param[out] none + \retval descriptor information, if value is 0xFFFFFFFFU, means the false input parameter +*/ +uint32_t enet_desc_information_get(enet_descriptors_struct *desc, enet_descstate_enum info_get) +{ + uint32_t reval = 0xFFFFFFFFU; + + switch(info_get){ + case RXDESC_BUFFER_1_SIZE: + reval = GET_RDES1_RB1S(desc->control_buffer_size); + break; + case RXDESC_BUFFER_2_SIZE: + reval = GET_RDES1_RB2S(desc->control_buffer_size); + break; + case RXDESC_FRAME_LENGTH: + reval = GET_RDES0_FRML(desc->status); + if(reval > 4U){ + reval = reval - 4U; + + /* if is a type frame, and CRC is not included in forwarding frame */ + if((RESET != (ENET_MAC_CFG & ENET_MAC_CFG_TFCD)) && (RESET != (desc->status & ENET_RDES0_FRMT))){ + reval = reval + 4U; + } + }else{ + reval = 0U; + } + + break; + case RXDESC_BUFFER_1_ADDR: + reval = desc->buffer1_addr; + break; + case TXDESC_BUFFER_1_ADDR: + reval = desc->buffer1_addr; + break; + case TXDESC_COLLISION_COUNT: + reval = GET_TDES0_COCNT(desc->status); + break; + default: + break; + } + return reval; +} + +/*! + \brief get the number of missed frames during receiving + \param[in] none + \param[out] rxfifo_drop: pointer to the number of frames dropped by RxFIFO + \param[out] rxdma_drop: pointer to the number of frames missed by the RxDMA controller + \retval none +*/ +void enet_missed_frame_counter_get(uint32_t *rxfifo_drop, uint32_t *rxdma_drop) +{ + uint32_t temp_counter = 0U; + + temp_counter = ENET_DMA_MFBOCNT; + *rxfifo_drop = GET_DMA_MFBOCNT_MSFA(temp_counter); + *rxdma_drop = GET_DMA_MFBOCNT_MSFC(temp_counter); +} + +/*! + \brief get the bit flag of ENET DMA descriptor + \param[in] desc: the descriptor pointer which users want to get flag + \param[in] desc_flag: the bit flag of ENET DMA descriptor + only one parameter can be selected which is shown as below + \arg ENET_TDES0_DB: deferred + \arg ENET_TDES0_UFE: underflow error + \arg ENET_TDES0_EXD: excessive deferral + \arg ENET_TDES0_VFRM: VLAN frame + \arg ENET_TDES0_ECO: excessive collision + \arg ENET_TDES0_LCO: late collision + \arg ENET_TDES0_NCA: no carrier + \arg ENET_TDES0_LCA: loss of carrier + \arg ENET_TDES0_IPPE: IP payload error + \arg ENET_TDES0_FRMF: frame flushed + \arg ENET_TDES0_JT: jabber timeout + \arg ENET_TDES0_ES: error summary + \arg ENET_TDES0_IPHE: IP header error + \arg ENET_TDES0_TTMSS: transmit timestamp status + \arg ENET_TDES0_TCHM: the second address chained mode + \arg ENET_TDES0_TERM: transmit end of ring mode + \arg ENET_TDES0_TTSEN: transmit timestamp function enable + \arg ENET_TDES0_DPAD: disable adding pad + \arg ENET_TDES0_DCRC: disable CRC + \arg ENET_TDES0_FSG: first segment + \arg ENET_TDES0_LSG: last segment + \arg ENET_TDES0_INTC: interrupt on completion + \arg ENET_TDES0_DAV: DAV bit + + \arg ENET_RDES0_PCERR: payload checksum error + \arg ENET_RDES0_EXSV: extended status valid + \arg ENET_RDES0_CERR: CRC error + \arg ENET_RDES0_DBERR: dribble bit error + \arg ENET_RDES0_RERR: receive error + \arg ENET_RDES0_RWDT: receive watchdog timeout + \arg ENET_RDES0_FRMT: frame type + \arg ENET_RDES0_LCO: late collision + \arg ENET_RDES0_IPHERR: IP frame header error + \arg ENET_RDES0_TSV: timestamp valid + \arg ENET_RDES0_LDES: last descriptor + \arg ENET_RDES0_FDES: first descriptor + \arg ENET_RDES0_VTAG: VLAN tag + \arg ENET_RDES0_OERR: overflow error + \arg ENET_RDES0_LERR: length error + \arg ENET_RDES0_SAFF: SA filter fail + \arg ENET_RDES0_DERR: descriptor error + \arg ENET_RDES0_ERRS: error summary + \arg ENET_RDES0_DAFF: destination address filter fail + \arg ENET_RDES0_DAV: descriptor available + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus enet_desc_flag_get(enet_descriptors_struct *desc, uint32_t desc_flag) +{ + FlagStatus enet_flag = RESET; + + if ((uint32_t)RESET != (desc->status & desc_flag)){ + enet_flag = SET; + } + + return enet_flag; +} + +/*! + \brief set the bit flag of ENET DMA descriptor + \param[in] desc: the descriptor pointer which users want to set flag + \param[in] desc_flag: the bit flag of ENET DMA descriptor + only one parameter can be selected which is shown as below + \arg ENET_TDES0_VFRM: VLAN frame + \arg ENET_TDES0_FRMF: frame flushed + \arg ENET_TDES0_TCHM: the second address chained mode + \arg ENET_TDES0_TERM: transmit end of ring mode + \arg ENET_TDES0_TTSEN: transmit timestamp function enable + \arg ENET_TDES0_DPAD: disable adding pad + \arg ENET_TDES0_DCRC: disable CRC + \arg ENET_TDES0_FSG: first segment + \arg ENET_TDES0_LSG: last segment + \arg ENET_TDES0_INTC: interrupt on completion + \arg ENET_TDES0_DAV: DAV bit + \arg ENET_RDES0_DAV: descriptor available + \param[out] none + \retval none +*/ +void enet_desc_flag_set(enet_descriptors_struct *desc, uint32_t desc_flag) +{ + desc->status |= desc_flag; +} + +/*! + \brief clear the bit flag of ENET DMA descriptor + \param[in] desc: the descriptor pointer which users want to clear flag + \param[in] desc_flag: the bit flag of ENET DMA descriptor + only one parameter can be selected which is shown as below + \arg ENET_TDES0_VFRM: VLAN frame + \arg ENET_TDES0_FRMF: frame flushed + \arg ENET_TDES0_TCHM: the second address chained mode + \arg ENET_TDES0_TERM: transmit end of ring mode + \arg ENET_TDES0_TTSEN: transmit timestamp function enable + \arg ENET_TDES0_DPAD: disable adding pad + \arg ENET_TDES0_DCRC: disable CRC + \arg ENET_TDES0_FSG: first segment + \arg ENET_TDES0_LSG: last segment + \arg ENET_TDES0_INTC: interrupt on completion + \arg ENET_TDES0_DAV: DAV bit + \arg ENET_RDES0_DAV: descriptor available + \param[out] none + \retval none +*/ +void enet_desc_flag_clear(enet_descriptors_struct *desc, uint32_t desc_flag) +{ + desc->status &= ~desc_flag; +} + +/*! + \brief when receiving completed, set RS bit in ENET_DMA_STAT register will immediately set + \param[in] desc: the descriptor pointer which users want to configure + \param[out] none + \retval none +*/ +void enet_rx_desc_immediate_receive_complete_interrupt(enet_descriptors_struct *desc) +{ + desc->control_buffer_size &= ~ENET_RDES1_DINTC; +} + +/*! + \brief when receiving completed, set RS bit in ENET_DMA_STAT register will is set after a configurable delay time + \param[in] desc: the descriptor pointer which users want to configure + \param[in] delay_time: delay a time of 256*delay_time HCLK(0x00000000 - 0x000000FF) + \param[out] none + \retval none +*/ +void enet_rx_desc_delay_receive_complete_interrupt(enet_descriptors_struct *desc, uint32_t delay_time) +{ + desc->control_buffer_size |= ENET_RDES1_DINTC; + ENET_DMA_RSWDC = DMA_RSWDC_WDCFRS(delay_time); +} + +/*! + \brief drop current receive frame + \param[in] none + \param[out] none + \retval none +*/ +void enet_rxframe_drop(void) +{ + /* enable reception, descriptor is owned by DMA */ + dma_current_rxdesc->status = ENET_RDES0_DAV; + + /* chained mode */ + if((uint32_t)RESET != (dma_current_rxdesc->control_buffer_size & ENET_RDES1_RCHM)){ + if(NULL != dma_current_ptp_rxdesc){ + dma_current_rxdesc = (enet_descriptors_struct*) (dma_current_ptp_rxdesc->buffer2_next_desc_addr); + /* if it is the last ptp descriptor */ + if(0U != dma_current_ptp_rxdesc->status){ + /* pointer back to the first ptp descriptor address in the desc_ptptab list address */ + dma_current_ptp_rxdesc = (enet_descriptors_struct*) (dma_current_ptp_rxdesc->status); + }else{ + /* ponter to the next ptp descriptor */ + dma_current_ptp_rxdesc++; + } + }else{ + dma_current_rxdesc = (enet_descriptors_struct*) (dma_current_rxdesc->buffer2_next_desc_addr); + } + + }else{ + /* ring mode */ + if((uint32_t)RESET != (dma_current_rxdesc->control_buffer_size & ENET_RDES1_RERM)){ + /* if is the last descriptor in table, the next descriptor is the table header */ + dma_current_rxdesc = (enet_descriptors_struct*) (ENET_DMA_RDTADDR); + if(NULL != dma_current_ptp_rxdesc){ + dma_current_ptp_rxdesc = (enet_descriptors_struct*) (dma_current_ptp_rxdesc->status); + } + }else{ + /* the next descriptor is the current address, add the descriptor size, and descriptor skip length */ + dma_current_rxdesc = (enet_descriptors_struct*) (uint32_t)((uint32_t)dma_current_rxdesc + ETH_DMARXDESC_SIZE + GET_DMA_BCTL_DPSL(ENET_DMA_BCTL)); + if(NULL != dma_current_ptp_rxdesc){ + dma_current_ptp_rxdesc++; + } + } + } +} + +/*! + \brief enable DMA feature + \param[in] feature: the feature of DMA mode + one or more parameters can be selected which are shown as below + \arg ENET_NO_FLUSH_RXFRAME: RxDMA does not flushes frames function + \arg ENET_SECONDFRAME_OPT: TxDMA controller operate on second frame function + \param[out] none + \retval none +*/ +void enet_dma_feature_enable(uint32_t feature) +{ + ENET_DMA_CTL |= feature; +} + +/*! + \brief disable DMA feature + \param[in] feature: the feature of DMA mode + one or more parameters can be selected which are shown as below + \arg ENET_NO_FLUSH_RXFRAME: RxDMA does not flushes frames function + \arg ENET_SECONDFRAME_OPT: TxDMA controller operate on second frame function + \param[out] none + \retval none +*/ +void enet_dma_feature_disable(uint32_t feature) +{ + ENET_DMA_CTL &= ~feature; +} + +#ifdef SELECT_DESCRIPTORS_ENHANCED_MODE +/*! + \brief get the bit of extended status flag in ENET DMA descriptor + \param[in] desc: the descriptor pointer which users want to get the extended status flag + \param[in] desc_status: the extended status want to get + only one parameter can be selected which is shown as below + \arg ENET_RDES4_IPPLDT: IP frame payload type + \arg ENET_RDES4_IPHERR: IP frame header error + \arg ENET_RDES4_IPPLDERR: IP frame payload error + \arg ENET_RDES4_IPCKSB: IP frame checksum bypassed + \arg ENET_RDES4_IPF4: IP frame in version 4 + \arg ENET_RDES4_IPF6: IP frame in version 6 + \arg ENET_RDES4_PTPMT: PTP message type + \arg ENET_RDES4_PTPOEF: PTP on ethernet frame + \arg ENET_RDES4_PTPVF: PTP version format + \param[out] none + \retval value of extended status +*/ +uint32_t enet_rx_desc_enhanced_status_get(enet_descriptors_struct *desc, uint32_t desc_status) +{ + uint32_t reval = 0xFFFFFFFFU; + + switch (desc_status){ + case ENET_RDES4_IPPLDT: + reval = GET_RDES4_IPPLDT(desc->extended_status); + break; + case ENET_RDES4_PTPMT: + reval = GET_RDES4_PTPMT(desc->extended_status); + break; + default: + if ((uint32_t)RESET != (desc->extended_status & desc_status)){ + reval = 1U; + }else{ + reval = 0U; + } + } + + return reval; +} + +/*! + \brief configure descriptor to work in enhanced mode + \param[in] none + \param[out] none + \retval none +*/ +void enet_desc_select_enhanced_mode(void) +{ + ENET_DMA_BCTL |= ENET_DMA_BCTL_DFM; +} + +/*! + \brief initialize the DMA Tx/Rx descriptors's parameters in enhanced chain mode with ptp function + \param[in] direction: the descriptors which users want to init, refer to enet_dmadirection_enum + only one parameter can be selected which is shown as below + \arg ENET_DMA_TX: DMA Tx descriptors + \arg ENET_DMA_RX: DMA Rx descriptors + \param[out] none + \retval none +*/ +void enet_ptp_enhanced_descriptors_chain_init(enet_dmadirection_enum direction) +{ + uint32_t num = 0U, count = 0U, maxsize = 0U; + uint32_t desc_status = 0U, desc_bufsize = 0U; + enet_descriptors_struct *desc, *desc_tab; + uint8_t *buf; + + /* if want to initialize DMA Tx descriptors */ + if (ENET_DMA_TX == direction){ + /* save a copy of the DMA Tx descriptors */ + desc_tab = txdesc_tab; + buf = &tx_buff[0][0]; + count = ENET_TXBUF_NUM; + maxsize = ENET_TXBUF_SIZE; + + /* select chain mode, and enable transmit timestamp function */ + desc_status = ENET_TDES0_TCHM | ENET_TDES0_TTSEN; + + /* configure DMA Tx descriptor table address register */ + ENET_DMA_TDTADDR = (uint32_t)desc_tab; + dma_current_txdesc = desc_tab; + }else{ + /* if want to initialize DMA Rx descriptors */ + /* save a copy of the DMA Rx descriptors */ + desc_tab = rxdesc_tab; + buf = &rx_buff[0][0]; + count = ENET_RXBUF_NUM; + maxsize = ENET_RXBUF_SIZE; + + /* enable receiving */ + desc_status = ENET_RDES0_DAV; + /* select receive chained mode and set buffer1 size */ + desc_bufsize = ENET_RDES1_RCHM | (uint32_t)ENET_RXBUF_SIZE; + + /* configure DMA Rx descriptor table address register */ + ENET_DMA_RDTADDR = (uint32_t)desc_tab; + dma_current_rxdesc = desc_tab; + } + + /* configuration each descriptor */ + for(num = 0U; num < count; num++){ + /* get the pointer to the next descriptor of the descriptor table */ + desc = desc_tab + num; + + /* configure descriptors */ + desc->status = desc_status; + desc->control_buffer_size = desc_bufsize; + desc->buffer1_addr = (uint32_t)(&buf[num * maxsize]); + + /* if is not the last descriptor */ + if(num < (count - 1U)){ + /* configure the next descriptor address */ + desc->buffer2_next_desc_addr = (uint32_t)(desc_tab + num + 1U); + }else{ + /* when it is the last descriptor, the next descriptor address + equals to first descriptor address in descriptor table */ + desc->buffer2_next_desc_addr = (uint32_t)desc_tab; + } + } +} + +/*! + \brief initialize the DMA Tx/Rx descriptors's parameters in enhanced ring mode with ptp function + \param[in] direction: the descriptors which users want to init, refer to enet_dmadirection_enum + only one parameter can be selected which is shown as below + \arg ENET_DMA_TX: DMA Tx descriptors + \arg ENET_DMA_RX: DMA Rx descriptors + \param[out] none + \retval none +*/ +void enet_ptp_enhanced_descriptors_ring_init(enet_dmadirection_enum direction) +{ + uint32_t num = 0U, count = 0U, maxsize = 0U; + uint32_t desc_status = 0U, desc_bufsize = 0U; + enet_descriptors_struct *desc; + enet_descriptors_struct *desc_tab; + uint8_t *buf; + + /* configure descriptor skip length */ + ENET_DMA_BCTL &= ~ENET_DMA_BCTL_DPSL; + ENET_DMA_BCTL |= DMA_BCTL_DPSL(0); + + /* if want to initialize DMA Tx descriptors */ + if (ENET_DMA_TX == direction){ + /* save a copy of the DMA Tx descriptors */ + desc_tab = txdesc_tab; + buf = &tx_buff[0][0]; + count = ENET_TXBUF_NUM; + maxsize = ENET_TXBUF_SIZE; + + /* select ring mode, and enable transmit timestamp function */ + desc_status = ENET_TDES0_TTSEN; + + /* configure DMA Tx descriptor table address register */ + ENET_DMA_TDTADDR = (uint32_t)desc_tab; + dma_current_txdesc = desc_tab; + }else{ + /* if want to initialize DMA Rx descriptors */ + /* save a copy of the DMA Rx descriptors */ + desc_tab = rxdesc_tab; + buf = &rx_buff[0][0]; + count = ENET_RXBUF_NUM; + maxsize = ENET_RXBUF_SIZE; + + /* enable receiving */ + desc_status = ENET_RDES0_DAV; + /* set buffer1 size */ + desc_bufsize = ENET_RXBUF_SIZE; + + /* configure DMA Rx descriptor table address register */ + ENET_DMA_RDTADDR = (uint32_t)desc_tab; + dma_current_rxdesc = desc_tab; + } + + /* configure each descriptor */ + for(num=0U; num < count; num++){ + /* get the pointer to the next descriptor of the descriptor table */ + desc = desc_tab + num; + + /* configure descriptors */ + desc->status = desc_status; + desc->control_buffer_size = desc_bufsize; + desc->buffer1_addr = (uint32_t)(&buf[num * maxsize]); + + /* when it is the last descriptor */ + if(num == (count - 1U)){ + if (ENET_DMA_TX == direction){ + /* configure transmit end of ring mode */ + desc->status |= ENET_TDES0_TERM; + }else{ + /* configure receive end of ring mode */ + desc->control_buffer_size |= ENET_RDES1_RERM; + } + } + } +} + +/*! + \brief receive a packet data with timestamp values to application buffer, when the DMA is in enhanced mode + \param[in] bufsize: the size of buffer which is the parameter in function + \param[out] buffer: pointer to the application buffer + note -- if the input is NULL, user should copy data in application by himself + \param[out] timestamp: pointer to the table which stores the timestamp high and low + note -- if the input is NULL, timestamp is ignored + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus enet_ptpframe_receive_enhanced_mode(uint8_t *buffer, uint32_t bufsize, uint32_t timestamp[]) +{ + uint32_t offset = 0U, size = 0U; + uint32_t timeout = 0U; + uint32_t rdes0_tsv_flag; + + /* the descriptor is busy due to own by the DMA */ + if((uint32_t)RESET != (dma_current_rxdesc->status & ENET_RDES0_DAV)){ + return ERROR; + } + + /* if buffer pointer is null, indicates that users has copied data in application */ + if(NULL != buffer){ + /* if no error occurs, and the frame uses only one descriptor */ + if(((uint32_t)RESET == (dma_current_rxdesc->status & ENET_RDES0_ERRS)) && + ((uint32_t)RESET != (dma_current_rxdesc->status & ENET_RDES0_LDES)) && + ((uint32_t)RESET != (dma_current_rxdesc->status & ENET_RDES0_FDES))){ + /* get the frame length except CRC */ + size = GET_RDES0_FRML(dma_current_rxdesc->status) - 4U; + + /* if is a type frame, and CRC is not included in forwarding frame */ + if((RESET != (ENET_MAC_CFG & ENET_MAC_CFG_TFCD)) && (RESET != (dma_current_rxdesc->status & ENET_RDES0_FRMT))){ + size = size + 4U; + } + + /* to avoid situation that the frame size exceeds the buffer length */ + if(size > bufsize){ + return ERROR; + } + + /* copy data from Rx buffer to application buffer */ + for(offset = 0; offset < size; offset++){ + (*(buffer + offset)) = (*(__IO uint8_t *)((dma_current_rxdesc->buffer1_addr) + offset)); + } + }else{ + return ERROR; + } + } + + /* if timestamp pointer is null, indicates that users don't care timestamp in application */ + if(NULL != timestamp){ + /* wait for ENET_RDES0_TSV flag to be set, the timestamp value is taken and + write to the RDES6 and RDES7 */ + do{ + rdes0_tsv_flag = (dma_current_rxdesc->status & ENET_RDES0_TSV); + timeout++; + }while ((RESET == rdes0_tsv_flag) && (timeout < ENET_DELAY_TO)); + + /* return ERROR due to timeout */ + if(ENET_DELAY_TO == timeout){ + return ERROR; + } + + /* clear the ENET_RDES0_TSV flag */ + dma_current_rxdesc->status &= ~ENET_RDES0_TSV; + /* get the timestamp value of the received frame */ + timestamp[0] = dma_current_rxdesc->timestamp_low; + timestamp[1] = dma_current_rxdesc->timestamp_high; + } + + /* enable reception, descriptor is owned by DMA */ + dma_current_rxdesc->status = ENET_RDES0_DAV; + + /* check Rx buffer unavailable flag status */ + if ((uint32_t)RESET != (ENET_DMA_STAT & ENET_DMA_STAT_RBU)){ + /* Clear RBU flag */ + ENET_DMA_STAT = ENET_DMA_STAT_RBU; + /* resume DMA reception by writing to the RPEN register*/ + ENET_DMA_RPEN = 0; + } + + /* update the current RxDMA descriptor pointer to the next decriptor in RxDMA decriptor table */ + /* chained mode */ + if((uint32_t)RESET != (dma_current_rxdesc->control_buffer_size & ENET_RDES1_RCHM)){ + dma_current_rxdesc = (enet_descriptors_struct*) (dma_current_rxdesc->buffer2_next_desc_addr); + }else{ + /* ring mode */ + if((uint32_t)RESET != (dma_current_rxdesc->control_buffer_size & ENET_RDES1_RERM)){ + /* if is the last descriptor in table, the next descriptor is the table header */ + dma_current_rxdesc = (enet_descriptors_struct*) (ENET_DMA_RDTADDR); + }else{ + /* the next descriptor is the current address, add the descriptor size, and descriptor skip length */ + dma_current_rxdesc = (enet_descriptors_struct*) ((uint32_t)dma_current_rxdesc + ETH_DMARXDESC_SIZE + GET_DMA_BCTL_DPSL(ENET_DMA_BCTL)); + } + } + + return SUCCESS; +} + +/*! + \brief send data with timestamp values in application buffer as a transmit packet, when the DMA is in enhanced mode + \param[in] buffer: pointer on the application buffer + note -- if the input is NULL, user should copy data in application by himself + \param[in] length: the length of frame data to be transmitted + \param[out] timestamp: pointer to the table which stores the timestamp high and low + note -- if the input is NULL, timestamp is ignored + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus enet_ptpframe_transmit_enhanced_mode(uint8_t *buffer, uint32_t length, uint32_t timestamp[]) +{ + uint32_t offset = 0; + uint32_t dma_tbu_flag, dma_tu_flag; + uint32_t tdes0_ttmss_flag; + uint32_t timeout = 0; + + /* the descriptor is busy due to own by the DMA */ + if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_DAV)){ + return ERROR; + } + + /* only frame length no more than ENET_MAX_FRAME_SIZE is allowed */ + if(length > ENET_MAX_FRAME_SIZE){ + return ERROR; + } + + /* if buffer pointer is null, indicates that users has handled data in application */ + if(NULL != buffer){ + /* copy frame data from application buffer to Tx buffer */ + for(offset = 0; offset < length; offset++){ + (*(__IO uint8_t *)((dma_current_txdesc->buffer1_addr) + offset)) = (*(buffer + offset)); + } + } + /* set the frame length */ + dma_current_txdesc->control_buffer_size = length; + /* set the segment of frame, frame is transmitted in one descriptor */ + dma_current_txdesc->status |= ENET_TDES0_LSG | ENET_TDES0_FSG; + /* enable the DMA transmission */ + dma_current_txdesc->status |= ENET_TDES0_DAV; + + /* check Tx buffer unavailable flag status */ + dma_tbu_flag = (ENET_DMA_STAT & ENET_DMA_STAT_TBU); + dma_tu_flag = (ENET_DMA_STAT & ENET_DMA_STAT_TU); + + if ((RESET != dma_tbu_flag) || (RESET != dma_tu_flag)){ + /* Clear TBU and TU flag */ + ENET_DMA_STAT = (dma_tbu_flag | dma_tu_flag); + /* resume DMA transmission by writing to the TPEN register*/ + ENET_DMA_TPEN = 0; + } + + /* if timestamp pointer is null, indicates that users don't care timestamp in application */ + if(NULL != timestamp){ + /* wait for ENET_TDES0_TTMSS flag to be set, a timestamp was captured */ + do{ + tdes0_ttmss_flag = (dma_current_txdesc->status & ENET_TDES0_TTMSS); + timeout++; + }while((RESET == tdes0_ttmss_flag) && (timeout < ENET_DELAY_TO)); + + /* return ERROR due to timeout */ + if(ENET_DELAY_TO == timeout){ + return ERROR; + } + + /* clear the ENET_TDES0_TTMSS flag */ + dma_current_txdesc->status &= ~ENET_TDES0_TTMSS; + /* get the timestamp value of the transmit frame */ + timestamp[0] = dma_current_txdesc->timestamp_low; + timestamp[1] = dma_current_txdesc->timestamp_high; + } + + /* update the current TxDMA descriptor pointer to the next decriptor in TxDMA decriptor table*/ + /* chained mode */ + if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_TCHM)){ + dma_current_txdesc = (enet_descriptors_struct*) (dma_current_txdesc->buffer2_next_desc_addr); + }else{ + /* ring mode */ + if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_TERM)){ + /* if is the last descriptor in table, the next descriptor is the table header */ + dma_current_txdesc = (enet_descriptors_struct*) (ENET_DMA_TDTADDR); + }else{ + /* the next descriptor is the current address, add the descriptor size, and descriptor skip length */ + dma_current_txdesc = (enet_descriptors_struct*) ((uint32_t)dma_current_txdesc + ETH_DMATXDESC_SIZE + GET_DMA_BCTL_DPSL(ENET_DMA_BCTL)); + } + } + + return SUCCESS; +} + +#else + +/*! + \brief configure descriptor to work in normal mode + \param[in] none + \param[out] none + \retval none +*/ +void enet_desc_select_normal_mode(void) +{ + ENET_DMA_BCTL &= ~ENET_DMA_BCTL_DFM; +} + +/*! + \brief initialize the DMA Tx/Rx descriptors's parameters in normal chain mode with PTP function + \param[in] direction: the descriptors which users want to init, refer to enet_dmadirection_enum + only one parameter can be selected which is shown as below + \arg ENET_DMA_TX: DMA Tx descriptors + \arg ENET_DMA_RX: DMA Rx descriptors + \param[in] desc_ptptab: pointer to the first descriptor address of PTP Rx descriptor table + \param[out] none + \retval none +*/ +void enet_ptp_normal_descriptors_chain_init(enet_dmadirection_enum direction, enet_descriptors_struct *desc_ptptab) +{ + uint32_t num = 0U, count = 0U, maxsize = 0U; + uint32_t desc_status = 0U, desc_bufsize = 0U; + enet_descriptors_struct *desc, *desc_tab; + uint8_t *buf; + + /* if want to initialize DMA Tx descriptors */ + if (ENET_DMA_TX == direction){ + /* save a copy of the DMA Tx descriptors */ + desc_tab = txdesc_tab; + buf = &tx_buff[0][0]; + count = ENET_TXBUF_NUM; + maxsize = ENET_TXBUF_SIZE; + + /* select chain mode, and enable transmit timestamp function */ + desc_status = ENET_TDES0_TCHM | ENET_TDES0_TTSEN; + + /* configure DMA Tx descriptor table address register */ + ENET_DMA_TDTADDR = (uint32_t)desc_tab; + dma_current_txdesc = desc_tab; + dma_current_ptp_txdesc = desc_ptptab; + }else{ + /* if want to initialize DMA Rx descriptors */ + /* save a copy of the DMA Rx descriptors */ + desc_tab = rxdesc_tab; + buf = &rx_buff[0][0]; + count = ENET_RXBUF_NUM; + maxsize = ENET_RXBUF_SIZE; + + /* enable receiving */ + desc_status = ENET_RDES0_DAV; + /* select receive chained mode and set buffer1 size */ + desc_bufsize = ENET_RDES1_RCHM | (uint32_t)ENET_RXBUF_SIZE; + + /* configure DMA Rx descriptor table address register */ + ENET_DMA_RDTADDR = (uint32_t)desc_tab; + dma_current_rxdesc = desc_tab; + dma_current_ptp_rxdesc = desc_ptptab; + } + + /* configure each descriptor */ + for(num = 0U; num < count; num++){ + /* get the pointer to the next descriptor of the descriptor table */ + desc = desc_tab + num; + + /* configure descriptors */ + desc->status = desc_status; + desc->control_buffer_size = desc_bufsize; + desc->buffer1_addr = (uint32_t)(&buf[num * maxsize]); + + /* if is not the last descriptor */ + if(num < (count - 1U)){ + /* configure the next descriptor address */ + desc->buffer2_next_desc_addr = (uint32_t)(desc_tab + num + 1U); + }else{ + /* when it is the last descriptor, the next descriptor address + equals to first descriptor address in descriptor table */ + desc->buffer2_next_desc_addr = (uint32_t)desc_tab; + } + /* set desc_ptptab equal to desc_tab */ + (&desc_ptptab[num])->buffer1_addr = desc->buffer1_addr; + (&desc_ptptab[num])->buffer2_next_desc_addr = desc->buffer2_next_desc_addr; + } + /* when it is the last ptp descriptor, preserve the first descriptor + address of desc_ptptab in ptp descriptor status */ + (&desc_ptptab[num-1U])->status = (uint32_t)desc_ptptab; +} + +/*! + \brief initialize the DMA Tx/Rx descriptors's parameters in normal ring mode with PTP function + \param[in] direction: the descriptors which users want to init, refer to enet_dmadirection_enum + only one parameter can be selected which is shown as below + \arg ENET_DMA_TX: DMA Tx descriptors + \arg ENET_DMA_RX: DMA Rx descriptors + \param[in] desc_ptptab: pointer to the first descriptor address of PTP Rx descriptor table + \param[out] none + \retval none +*/ +void enet_ptp_normal_descriptors_ring_init(enet_dmadirection_enum direction, enet_descriptors_struct *desc_ptptab) +{ + uint32_t num = 0U, count = 0U, maxsize = 0U; + uint32_t desc_status = 0U, desc_bufsize = 0U; + enet_descriptors_struct *desc, *desc_tab; + uint8_t *buf; + + /* configure descriptor skip length */ + ENET_DMA_BCTL &= ~ENET_DMA_BCTL_DPSL; + ENET_DMA_BCTL |= DMA_BCTL_DPSL(0); + + /* if want to initialize DMA Tx descriptors */ + if (ENET_DMA_TX == direction){ + /* save a copy of the DMA Tx descriptors */ + desc_tab = txdesc_tab; + buf = &tx_buff[0][0]; + count = ENET_TXBUF_NUM; + maxsize = ENET_TXBUF_SIZE; + + /* select ring mode, and enable transmit timestamp function */ + desc_status = ENET_TDES0_TTSEN; + + /* configure DMA Tx descriptor table address register */ + ENET_DMA_TDTADDR = (uint32_t)desc_tab; + dma_current_txdesc = desc_tab; + dma_current_ptp_txdesc = desc_ptptab; + }else{ + /* if want to initialize DMA Rx descriptors */ + /* save a copy of the DMA Rx descriptors */ + desc_tab = rxdesc_tab; + buf = &rx_buff[0][0]; + count = ENET_RXBUF_NUM; + maxsize = ENET_RXBUF_SIZE; + + /* enable receiving */ + desc_status = ENET_RDES0_DAV; + /* select receive ring mode and set buffer1 size */ + desc_bufsize = (uint32_t)ENET_RXBUF_SIZE; + + /* configure DMA Rx descriptor table address register */ + ENET_DMA_RDTADDR = (uint32_t)desc_tab; + dma_current_rxdesc = desc_tab; + dma_current_ptp_rxdesc = desc_ptptab; + } + + /* configure each descriptor */ + for(num = 0U; num < count; num++){ + /* get the pointer to the next descriptor of the descriptor table */ + desc = desc_tab + num; + + /* configure descriptors */ + desc->status = desc_status; + desc->control_buffer_size = desc_bufsize; + desc->buffer1_addr = (uint32_t)(&buf[num * maxsize]); + + /* when it is the last descriptor */ + if(num == (count - 1U)){ + if (ENET_DMA_TX == direction){ + /* configure transmit end of ring mode */ + desc->status |= ENET_TDES0_TERM; + }else{ + /* configure receive end of ring mode */ + desc->control_buffer_size |= ENET_RDES1_RERM; + } + } + /* set desc_ptptab equal to desc_tab */ + (&desc_ptptab[num])->buffer1_addr = desc->buffer1_addr; + (&desc_ptptab[num])->buffer2_next_desc_addr = desc->buffer2_next_desc_addr; + } + /* when it is the last ptp descriptor, preserve the first descriptor + address of desc_ptptab in ptp descriptor status */ + (&desc_ptptab[num-1U])->status = (uint32_t)desc_ptptab; +} + +/*! + \brief receive a packet data with timestamp values to application buffer, when the DMA is in normal mode + \param[in] bufsize: the size of buffer which is the parameter in function + \param[out] buffer: pointer to the application buffer + note -- if the input is NULL, user should copy data in application by himself + \param[out] timestamp: pointer to the table which stores the timestamp high and low + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus enet_ptpframe_receive_normal_mode(uint8_t *buffer, uint32_t bufsize, uint32_t timestamp[]) +{ + uint32_t offset = 0U, size = 0U; + + /* the descriptor is busy due to own by the DMA */ + if((uint32_t)RESET != (dma_current_rxdesc->status & ENET_RDES0_DAV)){ + return ERROR; + } + + /* if buffer pointer is null, indicates that users has copied data in application */ + if(NULL != buffer){ + /* if no error occurs, and the frame uses only one descriptor */ + if(((uint32_t)RESET == (dma_current_rxdesc->status & ENET_RDES0_ERRS)) && + ((uint32_t)RESET != (dma_current_rxdesc->status & ENET_RDES0_LDES)) && + ((uint32_t)RESET != (dma_current_rxdesc->status & ENET_RDES0_FDES))){ + + /* get the frame length except CRC */ + size = GET_RDES0_FRML(dma_current_rxdesc->status) - 4U; + /* if is a type frame, and CRC is not included in forwarding frame */ + if((RESET != (ENET_MAC_CFG & ENET_MAC_CFG_TFCD)) && (RESET != (dma_current_rxdesc->status & ENET_RDES0_FRMT))){ + size = size + 4U; + } + + /* to avoid situation that the frame size exceeds the buffer length */ + if(size > bufsize){ + return ERROR; + } + + /* copy data from Rx buffer to application buffer */ + for(offset = 0U; offset < size; offset++){ + (*(buffer + offset)) = (*(__IO uint8_t *)(uint32_t)((dma_current_ptp_rxdesc->buffer1_addr) + offset)); + } + + }else{ + return ERROR; + } + } + /* copy timestamp value from Rx descriptor to application array */ + timestamp[0] = dma_current_rxdesc->buffer1_addr; + timestamp[1] = dma_current_rxdesc->buffer2_next_desc_addr; + + dma_current_rxdesc->buffer1_addr = dma_current_ptp_rxdesc ->buffer1_addr ; + dma_current_rxdesc->buffer2_next_desc_addr = dma_current_ptp_rxdesc ->buffer2_next_desc_addr; + + /* enable reception, descriptor is owned by DMA */ + dma_current_rxdesc->status = ENET_RDES0_DAV; + + /* check Rx buffer unavailable flag status */ + if ((uint32_t)RESET != (ENET_DMA_STAT & ENET_DMA_STAT_RBU)){ + /* clear RBU flag */ + ENET_DMA_STAT = ENET_DMA_STAT_RBU; + /* resume DMA reception by writing to the RPEN register*/ + ENET_DMA_RPEN = 0U; + } + + + /* update the current RxDMA descriptor pointer to the next decriptor in RxDMA decriptor table */ + /* chained mode */ + if((uint32_t)RESET != (dma_current_rxdesc->control_buffer_size & ENET_RDES1_RCHM)){ + dma_current_rxdesc = (enet_descriptors_struct*) (dma_current_ptp_rxdesc->buffer2_next_desc_addr); + /* if it is the last ptp descriptor */ + if(0U != dma_current_ptp_rxdesc->status){ + /* pointer back to the first ptp descriptor address in the desc_ptptab list address */ + dma_current_ptp_rxdesc = (enet_descriptors_struct*) (dma_current_ptp_rxdesc->status); + }else{ + /* ponter to the next ptp descriptor */ + dma_current_ptp_rxdesc++; + } + }else{ + /* ring mode */ + if((uint32_t)RESET != (dma_current_rxdesc->control_buffer_size & ENET_RDES1_RERM)){ + /* if is the last descriptor in table, the next descriptor is the table header */ + dma_current_rxdesc = (enet_descriptors_struct*) (ENET_DMA_RDTADDR); + /* RDES2 and RDES3 will not be covered by buffer address, so do not need to preserve a new table, + use the same table with RxDMA descriptor */ + dma_current_ptp_rxdesc = (enet_descriptors_struct*) (dma_current_ptp_rxdesc->status); + }else{ + /* the next descriptor is the current address, add the descriptor size, and descriptor skip length */ + dma_current_rxdesc = (enet_descriptors_struct*) (uint32_t)((uint32_t)dma_current_rxdesc + ETH_DMARXDESC_SIZE + GET_DMA_BCTL_DPSL(ENET_DMA_BCTL)); + dma_current_ptp_rxdesc ++; + } + } + + return SUCCESS; +} + +/*! + \brief send data with timestamp values in application buffer as a transmit packet, when the DMA is in normal mode + \param[in] buffer: pointer on the application buffer + note -- if the input is NULL, user should copy data in application by himself + \param[in] length: the length of frame data to be transmitted + \param[out] timestamp: pointer to the table which stores the timestamp high and low + note -- if the input is NULL, timestamp is ignored + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus enet_ptpframe_transmit_normal_mode(uint8_t *buffer, uint32_t length, uint32_t timestamp[]) +{ + uint32_t offset = 0U, timeout = 0U; + uint32_t dma_tbu_flag, dma_tu_flag, tdes0_ttmss_flag; + + /* the descriptor is busy due to own by the DMA */ + if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_DAV)){ + return ERROR; + } + + /* only frame length no more than ENET_MAX_FRAME_SIZE is allowed */ + if(length > ENET_MAX_FRAME_SIZE){ + return ERROR; + } + + /* if buffer pointer is null, indicates that users has handled data in application */ + if(NULL != buffer){ + /* copy frame data from application buffer to Tx buffer */ + for(offset = 0U; offset < length; offset++){ + (*(__IO uint8_t *) (uint32_t)((dma_current_ptp_txdesc->buffer1_addr) + offset)) = (*(buffer + offset)); + } + } + /* set the frame length */ + dma_current_txdesc->control_buffer_size = (length & (uint32_t)0x1FFF); + /* set the segment of frame, frame is transmitted in one descriptor */ + dma_current_txdesc->status |= ENET_TDES0_LSG | ENET_TDES0_FSG; + /* enable the DMA transmission */ + dma_current_txdesc->status |= ENET_TDES0_DAV; + + /* check Tx buffer unavailable flag status */ + dma_tbu_flag = (ENET_DMA_STAT & ENET_DMA_STAT_TBU); + dma_tu_flag = (ENET_DMA_STAT & ENET_DMA_STAT_TU); + + if((RESET != dma_tbu_flag) || (RESET != dma_tu_flag)){ + /* clear TBU and TU flag */ + ENET_DMA_STAT = (dma_tbu_flag | dma_tu_flag); + /* resume DMA transmission by writing to the TPEN register*/ + ENET_DMA_TPEN = 0U; + } + + /* if timestamp pointer is null, indicates that users don't care timestamp in application */ + if(NULL != timestamp){ + /* wait for ENET_TDES0_TTMSS flag to be set, a timestamp was captured */ + do{ + tdes0_ttmss_flag = (dma_current_txdesc->status & ENET_TDES0_TTMSS); + timeout++; + }while((RESET == tdes0_ttmss_flag) && (timeout < ENET_DELAY_TO)); + + /* return ERROR due to timeout */ + if(ENET_DELAY_TO == timeout){ + return ERROR; + } + + /* clear the ENET_TDES0_TTMSS flag */ + dma_current_txdesc->status &= ~ENET_TDES0_TTMSS; + /* get the timestamp value of the transmit frame */ + timestamp[0] = dma_current_txdesc->buffer1_addr; + timestamp[1] = dma_current_txdesc->buffer2_next_desc_addr; + } + dma_current_txdesc->buffer1_addr = dma_current_ptp_txdesc ->buffer1_addr ; + dma_current_txdesc->buffer2_next_desc_addr = dma_current_ptp_txdesc ->buffer2_next_desc_addr; + + /* update the current TxDMA descriptor pointer to the next decriptor in TxDMA decriptor table */ + /* chained mode */ + if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_TCHM)){ + dma_current_txdesc = (enet_descriptors_struct*) (dma_current_ptp_txdesc->buffer2_next_desc_addr); + /* if it is the last ptp descriptor */ + if(0U != dma_current_ptp_txdesc->status){ + /* pointer back to the first ptp descriptor address in the desc_ptptab list address */ + dma_current_ptp_txdesc = (enet_descriptors_struct*) (dma_current_ptp_txdesc->status); + }else{ + /* ponter to the next ptp descriptor */ + dma_current_ptp_txdesc++; + } + }else{ + /* ring mode */ + if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_TERM)){ + /* if is the last descriptor in table, the next descriptor is the table header */ + dma_current_txdesc = (enet_descriptors_struct*) (ENET_DMA_TDTADDR); + /* TDES2 and TDES3 will not be covered by buffer address, so do not need to preserve a new table, + use the same table with TxDMA descriptor */ + dma_current_ptp_txdesc = (enet_descriptors_struct*) (dma_current_ptp_txdesc->status); + }else{ + /* the next descriptor is the current address, add the descriptor size, and descriptor skip length */ + dma_current_txdesc = (enet_descriptors_struct*) (uint32_t)((uint32_t)dma_current_txdesc + ETH_DMATXDESC_SIZE + GET_DMA_BCTL_DPSL(ENET_DMA_BCTL)); + dma_current_ptp_txdesc ++; + } + } + return SUCCESS; +} + +#endif /* SELECT_DESCRIPTORS_ENHANCED_MODE */ + +/*! + \brief wakeup frame filter register pointer reset + \param[in] none + \param[out] none + \retval none +*/ +void enet_wum_filter_register_pointer_reset(void) +{ + ENET_MAC_WUM |= ENET_MAC_WUM_WUFFRPR; +} + +/*! + \brief set the remote wakeup frame registers + \param[in] pdata: pointer to buffer data which is written to remote wakeup frame registers (8 words total) + \param[out] none + \retval none +*/ +void enet_wum_filter_config(uint32_t pdata[]) +{ + uint32_t num = 0U; + + /* configure ENET_MAC_RWFF register */ + for(num = 0U; num < ETH_WAKEUP_REGISTER_LENGTH; num++){ + ENET_MAC_RWFF = pdata[num]; + } +} + +/*! + \brief enable wakeup management features + \param[in] feature: the wake up type which is selected + one or more parameters can be selected which are shown as below + \arg ENET_WUM_POWER_DOWN: power down mode + \arg ENET_WUM_MAGIC_PACKET_FRAME: enable a wakeup event due to magic packet reception + \arg ENET_WUM_WAKE_UP_FRAME: enable a wakeup event due to wakeup frame reception + \arg ENET_WUM_GLOBAL_UNICAST: any received unicast frame passed filter is considered to be a wakeup frame + \param[out] none + \retval none +*/ +void enet_wum_feature_enable(uint32_t feature) +{ + ENET_MAC_WUM |= feature; +} + +/*! + \brief disable wakeup management features + \param[in] feature: the wake up type which is selected + one or more parameters can be selected which are shown as below + \arg ENET_WUM_MAGIC_PACKET_FRAME: enable a wakeup event due to magic packet reception + \arg ENET_WUM_WAKE_UP_FRAME: enable a wakeup event due to wakeup frame reception + \arg ENET_WUM_GLOBAL_UNICAST: any received unicast frame passed filter is considered to be a wakeup frame + \param[out] none + \retval none +*/ +void enet_wum_feature_disable(uint32_t feature) +{ + ENET_MAC_WUM &= (~feature); +} + +/*! + \brief reset the MAC statistics counters + \param[in] none + \param[out] none + \retval none +*/ +void enet_msc_counters_reset(void) +{ + /* reset all counters */ + ENET_MSC_CTL |= ENET_MSC_CTL_CTR; +} + +/*! + \brief enable the MAC statistics counter features + \param[in] feature: the feature of MAC statistics counter + one or more parameters can be selected which are shown as below + \arg ENET_MSC_COUNTER_STOP_ROLLOVER: counter stop rollover + \arg ENET_MSC_RESET_ON_READ: reset on read + \arg ENET_MSC_COUNTERS_FREEZE: MSC counter freeze + \param[out] none + \retval none +*/ +void enet_msc_feature_enable(uint32_t feature) +{ + ENET_MSC_CTL |= feature; +} + +/*! + \brief disable the MAC statistics counter features + \param[in] feature: the feature of MAC statistics counter + one or more parameters can be selected which are shown as below + \arg ENET_MSC_COUNTER_STOP_ROLLOVER: counter stop rollover + \arg ENET_MSC_RESET_ON_READ: reset on read + \arg ENET_MSC_COUNTERS_FREEZE: MSC counter freeze + \param[out] none + \retval none +*/ +void enet_msc_feature_disable(uint32_t feature) +{ + ENET_MSC_CTL &= (~feature); +} + +/*! + \brief configure MAC statistics counters preset mode + \param[in] mode: MSC counters preset mode, refer to enet_msc_preset_enum + only one parameter can be selected which is shown as below + \arg ENET_MSC_PRESET_NONE: do not preset MSC counter + \arg ENET_MSC_PRESET_HALF: preset all MSC counters to almost-half(0x7FFF FFF0) value + \arg ENET_MSC_PRESET_FULL: preset all MSC counters to almost-full(0xFFFF FFF0) value + \param[out] none + \retval none +*/ +void enet_msc_counters_preset_config(enet_msc_preset_enum mode) +{ + ENET_MSC_CTL &= ENET_MSC_PRESET_MASK; + ENET_MSC_CTL |= (uint32_t)mode; +} + +/*! + \brief get MAC statistics counter + \param[in] counter: MSC counters which is selected, refer to enet_msc_counter_enum + only one parameter can be selected which is shown as below + \arg ENET_MSC_TX_SCCNT: MSC transmitted good frames after a single collision counter + \arg ENET_MSC_TX_MSCCNT: MSC transmitted good frames after more than a single collision counter + \arg ENET_MSC_TX_TGFCNT: MSC transmitted good frames counter + \arg ENET_MSC_RX_RFCECNT: MSC received frames with CRC error counter + \arg ENET_MSC_RX_RFAECNT: MSC received frames with alignment error counter + \arg ENET_MSC_RX_RGUFCNT: MSC received good unicast frames counter + \param[out] none + \retval the MSC counter value +*/ +uint32_t enet_msc_counters_get(enet_msc_counter_enum counter) +{ + uint32_t reval; + + reval = REG32((ENET + (uint32_t)counter)); + + return reval; +} + +/*! + \brief enable the PTP features + \param[in] feature: the feature of ENET PTP mode + one or more parameters can be selected which are shown as below + \arg ENET_RXTX_TIMESTAMP: timestamp function for transmit and receive frames + \arg ENET_PTP_TIMESTAMP_INT: timestamp interrupt trigger + \arg ENET_ALL_RX_TIMESTAMP: all received frames are taken snapshot + \arg ENET_NONTYPE_FRAME_SNAPSHOT: take snapshot when received non type frame + \arg ENET_IPV6_FRAME_SNAPSHOT: take snapshot for IPv6 frame + \arg ENET_IPV4_FRAME_SNAPSHOT: take snapshot for IPv4 frame + \arg ENET_PTP_FRAME_USE_MACADDRESS_FILTER: use MAC address1-3 to filter the PTP frame + \param[out] none + \retval none +*/ +void enet_ptp_feature_enable(uint32_t feature) +{ + ENET_PTP_TSCTL |= feature; +} + +/*! + \brief disable the PTP features + \param[in] feature: the feature of ENET PTP mode + one or more parameters can be selected which are shown as below + \arg ENET_RXTX_TIMESTAMP: timestamp function for transmit and receive frames + \arg ENET_PTP_TIMESTAMP_INT: timestamp interrupt trigger + \arg ENET_ALL_RX_TIMESTAMP: all received frames are taken snapshot + \arg ENET_NONTYPE_FRAME_SNAPSHOT: take snapshot when received non type frame + \arg ENET_IPV6_FRAME_SNAPSHOT: take snapshot for IPv6 frame + \arg ENET_IPV4_FRAME_SNAPSHOT: take snapshot for IPv4 frame + \arg ENET_PTP_FRAME_USE_MACADDRESS_FILTER: use MAC address1-3 to filter the PTP frame + \param[out] none + \retval none +*/ +void enet_ptp_feature_disable(uint32_t feature) +{ + ENET_PTP_TSCTL &= ~feature; +} + +/*! + \brief configure the PTP timestamp function + \param[in] func: the function of PTP timestamp + only one parameter can be selected which is shown as below + \arg ENET_CKNT_ORDINARY: type of ordinary clock node type for timestamp + \arg ENET_CKNT_BOUNDARY: type of boundary clock node type for timestamp + \arg ENET_CKNT_END_TO_END: type of end-to-end transparent clock node type for timestamp + \arg ENET_CKNT_PEER_TO_PEER: type of peer-to-peer transparent clock node type for timestamp + \arg ENET_PTP_ADDEND_UPDATE: addend register update + \arg ENET_PTP_SYSTIME_UPDATE: timestamp update + \arg ENET_PTP_SYSTIME_INIT: timestamp initialize + \arg ENET_PTP_FINEMODE: the system timestamp uses the fine method for updating + \arg ENET_PTP_COARSEMODE: the system timestamp uses the coarse method for updating + \arg ENET_SUBSECOND_DIGITAL_ROLLOVER: digital rollover mode + \arg ENET_SUBSECOND_BINARY_ROLLOVER: binary rollover mode + \arg ENET_SNOOPING_PTP_VERSION_2: version 2 + \arg ENET_SNOOPING_PTP_VERSION_1: version 1 + \arg ENET_EVENT_TYPE_MESSAGES_SNAPSHOT: only event type messages are taken snapshot + \arg ENET_ALL_TYPE_MESSAGES_SNAPSHOT: all type messages are taken snapshot except announce, + management and signaling message + \arg ENET_MASTER_NODE_MESSAGE_SNAPSHOT: snapshot is only take for master node message + \arg ENET_SLAVE_NODE_MESSAGE_SNAPSHOT: snapshot is only taken for slave node message + \param[out] none + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus enet_ptp_timestamp_function_config(enet_ptp_function_enum func) +{ + uint32_t temp_config = 0U, temp_state = 0U; + uint32_t timeout = 0U; + ErrStatus enet_state = SUCCESS; + + switch(func){ + case ENET_CKNT_ORDINARY: + case ENET_CKNT_BOUNDARY: + case ENET_CKNT_END_TO_END: + case ENET_CKNT_PEER_TO_PEER: + ENET_PTP_TSCTL &= ~ENET_PTP_TSCTL_CKNT; + ENET_PTP_TSCTL |= (uint32_t)func; + break; + case ENET_PTP_ADDEND_UPDATE: + /* this bit must be read as zero before application set it */ + do{ + temp_state = ENET_PTP_TSCTL & ENET_PTP_TSCTL_TMSARU; + timeout++; + }while((RESET != temp_state) && (timeout < ENET_DELAY_TO)); + /* return ERROR due to timeout */ + if(ENET_DELAY_TO == timeout){ + enet_state = ERROR; + }else{ + ENET_PTP_TSCTL |= ENET_PTP_TSCTL_TMSARU; + } + break; + case ENET_PTP_SYSTIME_UPDATE: + /* both the TMSSTU and TMSSTI bits must be read as zero before application set this bit */ + do{ + temp_state = ENET_PTP_TSCTL & (ENET_PTP_TSCTL_TMSSTU | ENET_PTP_TSCTL_TMSSTI); + timeout++; + }while((RESET != temp_state) && (timeout < ENET_DELAY_TO)); + /* return ERROR due to timeout */ + if(ENET_DELAY_TO == timeout){ + enet_state = ERROR; + }else{ + ENET_PTP_TSCTL |= ENET_PTP_TSCTL_TMSSTU; + } + break; + case ENET_PTP_SYSTIME_INIT: + /* this bit must be read as zero before application set it */ + do{ + temp_state = ENET_PTP_TSCTL & ENET_PTP_TSCTL_TMSSTI; + timeout++; + }while((RESET != temp_state) && (timeout < ENET_DELAY_TO)); + /* return ERROR due to timeout */ + if(ENET_DELAY_TO == timeout){ + enet_state = ERROR; + }else{ + ENET_PTP_TSCTL |= ENET_PTP_TSCTL_TMSSTI; + } + break; + default: + temp_config = (uint32_t)func & (~BIT(31)); + if(RESET != ((uint32_t)func & BIT(31))){ + ENET_PTP_TSCTL |= temp_config; + }else{ + ENET_PTP_TSCTL &= ~temp_config; + } + break; + } + + return enet_state; +} + +/*! + \brief configure system time subsecond increment value + \param[in] subsecond: the value will be added to the subsecond value of system time(0x00000000 - 0x000000FF) + \param[out] none + \retval none +*/ +void enet_ptp_subsecond_increment_config(uint32_t subsecond) +{ + ENET_PTP_SSINC = PTP_SSINC_STMSSI(subsecond); +} + +/*! + \brief adjusting the clock frequency only in fine update mode + \param[in] add: the value will be added to the accumulator register to achieve time synchronization + \param[out] none + \retval none +*/ +void enet_ptp_timestamp_addend_config(uint32_t add) +{ + ENET_PTP_TSADDEND = add; +} + +/*! + \brief initialize or add/subtract to second of the system time + \param[in] sign: timestamp update positive or negative sign + only one parameter can be selected which is shown as below + \arg ENET_PTP_ADD_TO_TIME: timestamp update value is added to system time + \arg ENET_PTP_SUBSTRACT_FROM_TIME: timestamp update value is subtracted from system time + \param[in] second: initializing or adding/subtracting to second of the system time + \param[in] subsecond: the current subsecond of the system time + with 0.46 ns accuracy if required accuracy is 20 ns + \param[out] none + \retval none +*/ +void enet_ptp_timestamp_update_config(uint32_t sign, uint32_t second, uint32_t subsecond) +{ + ENET_PTP_TSUH = second; + ENET_PTP_TSUL = sign | PTP_TSUL_TMSUSS(subsecond); +} + +/*! + \brief configure the expected target time + \param[in] second: the expected target second time + \param[in] nanosecond: the expected target nanosecond time (signed) + \param[out] none + \retval none +*/ +void enet_ptp_expected_time_config(uint32_t second, uint32_t nanosecond) +{ + ENET_PTP_ETH = second; + ENET_PTP_ETL = nanosecond; +} + +/*! + \brief get the current system time + \param[in] none + \param[out] systime_struct: pointer to a enet_ptp_systime_struct structure which contains + parameters of PTP system time + members of the structure and the member values are shown as below: + second: 0x0 - 0xFFFF FFFF + subsecond: 0x0 - 0x7FFF FFFF + sign: ENET_PTP_TIME_POSITIVE, ENET_PTP_TIME_NEGATIVE + \retval none +*/ +void enet_ptp_system_time_get(enet_ptp_systime_struct *systime_struct) +{ + uint32_t temp_sec = 0U, temp_subs = 0U; + + /* get the value of sysytem time registers */ + temp_sec = (uint32_t)ENET_PTP_TSH; + temp_subs = (uint32_t)ENET_PTP_TSL; + + /* get sysytem time and construct the enet_ptp_systime_struct structure */ + systime_struct->second = temp_sec; + systime_struct->subsecond = GET_PTP_TSL_STMSS(temp_subs); + systime_struct->sign = GET_PTP_TSL_STS(temp_subs); +} + +/*! + \brief configure the PPS output frequency + \param[in] freq: PPS output frequency + only one parameter can be selected which is shown as below + \arg ENET_PPSOFC_1HZ: PPS output 1Hz frequency + \arg ENET_PPSOFC_2HZ: PPS output 2Hz frequency + \arg ENET_PPSOFC_4HZ: PPS output 4Hz frequency + \arg ENET_PPSOFC_8HZ: PPS output 8Hz frequency + \arg ENET_PPSOFC_16HZ: PPS output 16Hz frequency + \arg ENET_PPSOFC_32HZ: PPS output 32Hz frequency + \arg ENET_PPSOFC_64HZ: PPS output 64Hz frequency + \arg ENET_PPSOFC_128HZ: PPS output 128Hz frequency + \arg ENET_PPSOFC_256HZ: PPS output 256Hz frequency + \arg ENET_PPSOFC_512HZ: PPS output 512Hz frequency + \arg ENET_PPSOFC_1024HZ: PPS output 1024Hz frequency + \arg ENET_PPSOFC_2048HZ: PPS output 2048Hz frequency + \arg ENET_PPSOFC_4096HZ: PPS output 4096Hz frequency + \arg ENET_PPSOFC_8192HZ: PPS output 8192Hz frequency + \arg ENET_PPSOFC_16384HZ: PPS output 16384Hz frequency + \arg ENET_PPSOFC_32768HZ: PPS output 32768Hz frequency + \param[out] none + \retval none +*/ +void enet_ptp_pps_output_frequency_config(uint32_t freq) +{ + ENET_PTP_PPSCTL = freq; +} + +/*! + \brief reset the ENET initpara struct, call it before using enet_initpara_config() + \param[in] none + \param[out] none + \retval none +*/ +void enet_initpara_reset(void) +{ + enet_initpara.option_enable = 0U; + enet_initpara.forward_frame = 0U; + enet_initpara.dmabus_mode = 0U; + enet_initpara.dma_maxburst = 0U; + enet_initpara.dma_arbitration = 0U; + enet_initpara.store_forward_mode = 0U; + enet_initpara.dma_function = 0U; + enet_initpara.vlan_config = 0U; + enet_initpara.flow_control = 0U; + enet_initpara.hashtable_high = 0U; + enet_initpara.hashtable_low = 0U; + enet_initpara.framesfilter_mode = 0U; + enet_initpara.halfduplex_param = 0U; + enet_initpara.timer_config = 0U; + enet_initpara.interframegap = 0U; +} + +/*! + \brief initialize ENET peripheral with generally concerned parameters, call it by enet_init() + \param[in] none + \param[out] none + \retval none +*/ +static void enet_default_init(void) +{ + uint32_t reg_value = 0U; + + /* MAC */ + /* configure ENET_MAC_CFG register */ + reg_value = ENET_MAC_CFG; + reg_value &= MAC_CFG_MASK; + reg_value |= ENET_WATCHDOG_ENABLE | ENET_JABBER_ENABLE | ENET_INTERFRAMEGAP_96BIT \ + | ENET_SPEEDMODE_10M |ENET_MODE_HALFDUPLEX | ENET_LOOPBACKMODE_DISABLE \ + | ENET_CARRIERSENSE_ENABLE | ENET_RECEIVEOWN_ENABLE \ + | ENET_RETRYTRANSMISSION_ENABLE | ENET_BACKOFFLIMIT_10 \ + | ENET_DEFERRALCHECK_DISABLE \ + | ENET_TYPEFRAME_CRC_DROP_DISABLE \ + | ENET_AUTO_PADCRC_DROP_DISABLE \ + | ENET_CHECKSUMOFFLOAD_DISABLE; + ENET_MAC_CFG = reg_value; + + /* configure ENET_MAC_FRMF register */ + ENET_MAC_FRMF = ENET_SRC_FILTER_DISABLE |ENET_DEST_FILTER_INVERSE_DISABLE \ + |ENET_MULTICAST_FILTER_PERFECT |ENET_UNICAST_FILTER_PERFECT \ + |ENET_PCFRM_PREVENT_ALL |ENET_BROADCASTFRAMES_ENABLE \ + |ENET_PROMISCUOUS_DISABLE |ENET_RX_FILTER_ENABLE; + + /* configure ENET_MAC_HLH, ENET_MAC_HLL register */ + ENET_MAC_HLH = 0x0U; + + ENET_MAC_HLL = 0x0U; + + /* configure ENET_MAC_FCTL, ENET_MAC_FCTH register */ + reg_value = ENET_MAC_FCTL; + reg_value &= MAC_FCTL_MASK; + reg_value |= MAC_FCTL_PTM(0) |ENET_ZERO_QUANTA_PAUSE_DISABLE \ + |ENET_PAUSETIME_MINUS4 |ENET_UNIQUE_PAUSEDETECT \ + |ENET_RX_FLOWCONTROL_DISABLE |ENET_TX_FLOWCONTROL_DISABLE; + ENET_MAC_FCTL = reg_value; + + ENET_MAC_FCTH = ENET_DEACTIVE_THRESHOLD_512BYTES |ENET_ACTIVE_THRESHOLD_1536BYTES; + + /* configure ENET_MAC_VLT register */ + ENET_MAC_VLT = ENET_VLANTAGCOMPARISON_16BIT |MAC_VLT_VLTI(0); + + /* DMA */ + /* configure ENET_DMA_CTL register */ + reg_value = ENET_DMA_CTL; + reg_value &= DMA_CTL_MASK; + reg_value |= ENET_TCPIP_CKSUMERROR_DROP |ENET_RX_MODE_STOREFORWARD \ + |ENET_FLUSH_RXFRAME_ENABLE |ENET_TX_MODE_STOREFORWARD \ + |ENET_TX_THRESHOLD_64BYTES |ENET_RX_THRESHOLD_64BYTES \ + |ENET_FORWARD_ERRFRAMES_DISABLE |ENET_FORWARD_UNDERSZ_GOODFRAMES_DISABLE \ + |ENET_SECONDFRAME_OPT_DISABLE; + ENET_DMA_CTL = reg_value; + + /* configure ENET_DMA_BCTL register */ + reg_value = ENET_DMA_BCTL; + reg_value &= DMA_BCTL_MASK; + reg_value = ENET_ADDRESS_ALIGN_ENABLE |ENET_ARBITRATION_RXTX_2_1 \ + |ENET_RXDP_32BEAT |ENET_PGBL_32BEAT |ENET_RXTX_DIFFERENT_PGBL \ + |ENET_FIXED_BURST_ENABLE |ENET_MIXED_BURST_DISABLE \ + |ENET_NORMAL_DESCRIPTOR; + ENET_DMA_BCTL = reg_value; +} + +#ifndef USE_DELAY +/*! + \brief insert a delay time + \param[in] ncount: specifies the delay time length + \param[out] none + \param[out] none +*/ +static void enet_delay(uint32_t ncount) +{ + __IO uint32_t delay_time = 0U; + + for(delay_time = ncount; delay_time != 0U; delay_time--){ + } +} +#endif /* USE_DELAY */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_exmc.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_exmc.c new file mode 100644 index 0000000000..8765181911 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_exmc.c @@ -0,0 +1,1237 @@ +/*! + \file gd32f4xx_exmc.c + \brief EXMC driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_exmc.h" + +/* EXMC bank0 register reset value */ +#define BANK0_SNCTL_RESET ((uint32_t)0x000030DAU) +#define BANK0_SNTCFG_RESET ((uint32_t)0x0FFFFFFFU) +#define BANK0_SNWTCFG_RESET ((uint32_t)0x0FFFFFFFU) + +/* EXMC bank1/2 register reset mask */ +#define BANK1_2_NPCTL_RESET ((uint32_t)0x00000008U) +#define BANK1_2_NPINTEN_RESET ((uint32_t)0x00000042U) +#define BANK1_2_NPCTCFG_RESET ((uint32_t)0xFFFFFFFFU) +#define BANK1_2_NPATCFG_RESET ((uint32_t)0xFFFFFFFFU) + +/* EXMC bank3 register reset mask */ +#define BANK3_NPCTL_RESET ((uint32_t)0x00000008U) +#define BANK3_NPINTEN_RESET ((uint32_t)0x00000040U) +#define BANK3_NPCTCFG_RESET ((uint32_t)0xFFFFFFFFU) +#define BANK3_NPATCFG_RESET ((uint32_t)0xFFFFFFFFU) +#define BANK3_PIOTCFG3_RESET ((uint32_t)0xFFFFFFFFU) + +/* EXMC SDRAM device register reset mask */ +#define SDRAM_DEVICE_SDCTL_RESET ((uint32_t)0x000002D0U) +#define SDRAM_DEVICE_SDTCFG_RESET ((uint32_t)0x0FFFFFFFU) +#define SDRAM_DEVICE_SDCMD_RESET ((uint32_t)0x00000000U) +#define SDRAM_DEVICE_SDARI_RESET ((uint32_t)0x00000000U) +#define SDRAM_DEVICE_SDSTAT_RESET ((uint32_t)0x00000000U) +#define SDRAM_DEVICE_SDRSCTL_RESET ((uint32_t)0x00000000U) + +/* EXMC bank0 SQPI-PSRAM register reset mask */ +#define BANK0_SQPI_SINIT_RESET ((uint32_t)0x18010000U) +#define BANK0_SQPI_SRCMD_RESET ((uint32_t)0x00000000U) +#define BANK0_SQPI_SWCMD_RESET ((uint32_t)0x00000000U) +#define BANK0_SQPI_SIDL_RESET ((uint32_t)0x00000000U) +#define BANK0_SQPI_SIDH_RESET ((uint32_t)0x00000000U) + +/* EXMC register bit offset */ +#define SNCTL_NRMUX_OFFSET ((uint32_t)1U) +#define SNCTL_SBRSTEN_OFFSET ((uint32_t)8U) +#define SNCTL_WRAPEN_OFFSET ((uint32_t)10U) +#define SNCTL_WREN_OFFSET ((uint32_t)12U) +#define SNCTL_NRWTEN_OFFSET ((uint32_t)13U) +#define SNCTL_EXMODEN_OFFSET ((uint32_t)14U) +#define SNCTL_ASYNCWAIT_OFFSET ((uint32_t)15U) + +#define SNTCFG_AHLD_OFFSET ((uint32_t)4U) +#define SNTCFG_DSET_OFFSET ((uint32_t)8U) +#define SNTCFG_BUSLAT_OFFSET ((uint32_t)16U) + +#define NPCTL_NDWTEN_OFFSET ((uint32_t)1U) +#define NPCTL_ECCEN_OFFSET ((uint32_t)6U) + +#define NPCTCFG_COMWAIT_OFFSET ((uint32_t)8U) +#define NPCTCFG_COMHLD_OFFSET ((uint32_t)16U) +#define NPCTCFG_COMHIZ_OFFSET ((uint32_t)24U) + +#define NPATCFG_ATTWAIT_OFFSET ((uint32_t)8U) +#define NPATCFG_ATTHLD_OFFSET ((uint32_t)16U) +#define NPATCFG_ATTHIZ_OFFSET ((uint32_t)24U) + +#define PIOTCFG_IOWAIT_OFFSET ((uint32_t)8U) +#define PIOTCFG_IOHLD_OFFSET ((uint32_t)16U) +#define PIOTCFG_IOHIZ_OFFSET ((uint32_t)24U) + +#define SDCTL_WPEN_OFFSET ((uint32_t)9U) +#define SDCTL_BRSTRD_OFFSET ((uint32_t)12U) + +#define SDTCFG_XSRD_OFFSET ((uint32_t)4U) +#define SDTCFG_RASD_OFFSET ((uint32_t)8U) +#define SDTCFG_ARFD_OFFSET ((uint32_t)12U) +#define SDTCFG_WRD_OFFSET ((uint32_t)16U) +#define SDTCFG_RPD_OFFSET ((uint32_t)20U) +#define SDTCFG_RCD_OFFSET ((uint32_t)24U) + +#define SDCMD_NARF_OFFSET ((uint32_t)5U) +#define SDCMD_MRC_OFFSET ((uint32_t)9U) + +#define SDARI_ARINTV_OFFSET ((uint32_t)1U) + +#define SDRSCTL_SSCR_OFFSET ((uint32_t)1U) +#define SDRSCTL_SDSC_OFFSET ((uint32_t)4U) + +#define SDSTAT_STA0_OFFSET ((uint32_t)1U) +#define SDSTAT_STA1_OFFSET ((uint32_t)3U) + +#define SRCMD_RWAITCYCLE_OFFSET ((uint32_t)16U) +#define SWCMD_WWAITCYCLE_OFFSET ((uint32_t)16U) + +#define INTEN_INTS_OFFSET ((uint32_t)3U) + +/*! + \brief deinitialize EXMC NOR/SRAM region + \param[in] exmc_norsram_region: select the region of bank0 + only one parameter can be selected which is shown as below: + \arg EXMC_BANK0_NORSRAM_REGIONx(x=0..3) + \param[out] none + \retval none +*/ +void exmc_norsram_deinit(uint32_t exmc_norsram_region) +{ + /* reset the registers */ + EXMC_SNCTL(exmc_norsram_region) = BANK0_SNCTL_RESET; + EXMC_SNTCFG(exmc_norsram_region) = BANK0_SNTCFG_RESET; + EXMC_SNWTCFG(exmc_norsram_region) = BANK0_SNWTCFG_RESET; +} + +/*! + \brief initialize exmc_norsram_parameter_struct with the default values + \param[in] none + \param[out] exmc_norsram_init_struct: the initialized struct exmc_norsram_parameter_struct pointer + \retval none +*/ +void exmc_norsram_struct_para_init(exmc_norsram_parameter_struct* exmc_norsram_init_struct) +{ + /* configure the structure with default values */ + exmc_norsram_init_struct->norsram_region = EXMC_BANK0_NORSRAM_REGION0; + exmc_norsram_init_struct->address_data_mux = ENABLE; + exmc_norsram_init_struct->memory_type = EXMC_MEMORY_TYPE_SRAM; + exmc_norsram_init_struct->databus_width = EXMC_NOR_DATABUS_WIDTH_8B; + exmc_norsram_init_struct->burst_mode = DISABLE; + exmc_norsram_init_struct->nwait_polarity = EXMC_NWAIT_POLARITY_LOW; + exmc_norsram_init_struct->wrap_burst_mode = DISABLE; + exmc_norsram_init_struct->nwait_config = EXMC_NWAIT_CONFIG_BEFORE; + exmc_norsram_init_struct->memory_write = ENABLE; + exmc_norsram_init_struct->nwait_signal = ENABLE; + exmc_norsram_init_struct->extended_mode = DISABLE; + exmc_norsram_init_struct->asyn_wait = DISABLE; + exmc_norsram_init_struct->write_mode = EXMC_ASYN_WRITE; + + /* configure read/write timing */ + exmc_norsram_init_struct->read_write_timing->asyn_address_setuptime = 0xFU; + exmc_norsram_init_struct->read_write_timing->asyn_address_holdtime = 0xFU; + exmc_norsram_init_struct->read_write_timing->asyn_data_setuptime = 0xFFU; + exmc_norsram_init_struct->read_write_timing->bus_latency = 0xFU; + exmc_norsram_init_struct->read_write_timing->syn_clk_division = EXMC_SYN_CLOCK_RATIO_16_CLK; + exmc_norsram_init_struct->read_write_timing->syn_data_latency = EXMC_DATALAT_17_CLK; + exmc_norsram_init_struct->read_write_timing->asyn_access_mode = EXMC_ACCESS_MODE_A; + + /* write timing configure, when extended mode is used */ + exmc_norsram_init_struct->write_timing->asyn_address_setuptime = 0xFU; + exmc_norsram_init_struct->write_timing->asyn_address_holdtime = 0xFU; + exmc_norsram_init_struct->write_timing->asyn_data_setuptime = 0xFFU; + exmc_norsram_init_struct->write_timing->bus_latency = 0xFU; + exmc_norsram_init_struct->write_timing->asyn_access_mode = EXMC_ACCESS_MODE_A; +} + +/*! + \brief initialize EXMC NOR/SRAM region + \param[in] exmc_norsram_parameter_struct: configure the EXMC NOR/SRAM parameter + norsram_region: EXMC_BANK0_NORSRAM_REGIONx, x=0..3 + write_mode: EXMC_ASYN_WRITE, EXMC_SYN_WRITE + extended_mode: ENABLE or DISABLE + asyn_wait: ENABLE or DISABLE + nwait_signal: ENABLE or DISABLE + memory_write: ENABLE or DISABLE + nwait_config: EXMC_NWAIT_CONFIG_BEFORE, EXMC_NWAIT_CONFIG_DURING + wrap_burst_mode: ENABLE or DISABLE + nwait_polarity: EXMC_NWAIT_POLARITY_LOW, EXMC_NWAIT_POLARITY_HIGH + burst_mode: ENABLE or DISABLE + databus_width: EXMC_NOR_DATABUS_WIDTH_8B, EXMC_NOR_DATABUS_WIDTH_16B + memory_type: EXMC_MEMORY_TYPE_SRAM, EXMC_MEMORY_TYPE_PSRAM, EXMC_MEMORY_TYPE_NOR + address_data_mux: ENABLE or DISABLE + read_write_timing: struct exmc_norsram_timing_parameter_struct set the time + asyn_access_mode: EXMC_ACCESS_MODE_A, EXMC_ACCESS_MODE_B, EXMC_ACCESS_MODE_C, EXMC_ACCESS_MODE_D + syn_data_latency: EXMC_DATALAT_x_CLK, x=2..17 + syn_clk_division: EXMC_SYN_CLOCK_RATIO_x_CLK, x=2..16 + bus_latency: 0x0U~0xFU + asyn_data_setuptime: 0x01U~0xFFU + asyn_address_holdtime: 0x1U~0xFU + asyn_address_setuptime: 0x0U~0xFU + write_timing: struct exmc_norsram_timing_parameter_struct set the time + asyn_access_mode: EXMC_ACCESS_MODE_A, EXMC_ACCESS_MODE_B, EXMC_ACCESS_MODE_C, EXMC_ACCESS_MODE_D + syn_data_latency: EXMC_DATALAT_x_CLK, x=2..17 + syn_clk_division: EXMC_SYN_CLOCK_RATIO_x_CLK, x=2..16 + bus_latency: 0x0U~0xFU + asyn_data_setuptime: 0x01U~0xFFU + asyn_address_holdtime: 0x1U~0xFU + asyn_address_setuptime: 0x0U~0xFU + \param[out] none + \retval none +*/ +void exmc_norsram_init(exmc_norsram_parameter_struct* exmc_norsram_init_struct) +{ + uint32_t snctl = 0x00000000U,sntcfg = 0x00000000U,snwtcfg = 0x00000000U; + + /* get the register value */ + snctl = EXMC_SNCTL(exmc_norsram_init_struct->norsram_region); + + /* clear relative bits */ + snctl &= ((uint32_t)~(EXMC_SNCTL_NREN | EXMC_SNCTL_NRTP | EXMC_SNCTL_NRW | EXMC_SNCTL_SBRSTEN | + EXMC_SNCTL_NRWTPOL | EXMC_SNCTL_WRAPEN | EXMC_SNCTL_NRWTCFG | EXMC_SNCTL_WREN | + EXMC_SNCTL_NRWTEN | EXMC_SNCTL_EXMODEN | EXMC_SNCTL_ASYNCWAIT | EXMC_SNCTL_SYNCWR | + EXMC_SNCTL_NRMUX )); + + snctl |= (uint32_t)(exmc_norsram_init_struct->address_data_mux << SNCTL_NRMUX_OFFSET) | + exmc_norsram_init_struct->memory_type | + exmc_norsram_init_struct->databus_width | + (exmc_norsram_init_struct->burst_mode << SNCTL_SBRSTEN_OFFSET) | + exmc_norsram_init_struct->nwait_polarity | + (exmc_norsram_init_struct->wrap_burst_mode << SNCTL_WRAPEN_OFFSET) | + exmc_norsram_init_struct->nwait_config | + (exmc_norsram_init_struct->memory_write << SNCTL_WREN_OFFSET) | + (exmc_norsram_init_struct->nwait_signal << SNCTL_NRWTEN_OFFSET) | + (exmc_norsram_init_struct->extended_mode << SNCTL_EXMODEN_OFFSET) | + (exmc_norsram_init_struct->asyn_wait << SNCTL_ASYNCWAIT_OFFSET) | + exmc_norsram_init_struct->write_mode; + + sntcfg = (uint32_t)exmc_norsram_init_struct->read_write_timing->asyn_address_setuptime | + (exmc_norsram_init_struct->read_write_timing->asyn_address_holdtime << SNTCFG_AHLD_OFFSET) | + (exmc_norsram_init_struct->read_write_timing->asyn_data_setuptime << SNTCFG_DSET_OFFSET) | + (exmc_norsram_init_struct->read_write_timing->bus_latency << SNTCFG_BUSLAT_OFFSET) | + exmc_norsram_init_struct->read_write_timing->syn_clk_division | + exmc_norsram_init_struct->read_write_timing->syn_data_latency | + exmc_norsram_init_struct->read_write_timing->asyn_access_mode; + + /* nor flash access enable */ + if(EXMC_MEMORY_TYPE_NOR == exmc_norsram_init_struct->memory_type){ + snctl |= (uint32_t)EXMC_SNCTL_NREN; + } + + /* extended mode configure */ + if(ENABLE == exmc_norsram_init_struct->extended_mode){ + snwtcfg = (uint32_t)exmc_norsram_init_struct->write_timing->asyn_address_setuptime | + (exmc_norsram_init_struct->write_timing->asyn_address_holdtime << SNTCFG_AHLD_OFFSET )| + (exmc_norsram_init_struct->write_timing->asyn_data_setuptime << SNTCFG_DSET_OFFSET) | + (exmc_norsram_init_struct->write_timing->bus_latency << SNTCFG_BUSLAT_OFFSET) | + exmc_norsram_init_struct->write_timing->asyn_access_mode; + }else{ + snwtcfg = BANK0_SNWTCFG_RESET; + } + + /* configure the registers */ + EXMC_SNCTL(exmc_norsram_init_struct->norsram_region) = snctl; + EXMC_SNTCFG(exmc_norsram_init_struct->norsram_region) = sntcfg; + EXMC_SNWTCFG(exmc_norsram_init_struct->norsram_region) = snwtcfg; +} + +/*! + \brief enable EXMC NOR/PSRAM bank region + \param[in] exmc_norsram_region: specifie the region of NOR/PSRAM bank + only one parameter can be selected which is shown as below: + \arg EXMC_BANK0_NORSRAM_REGIONx(x=0..3) + \param[out] none + \retval none +*/ +void exmc_norsram_enable(uint32_t exmc_norsram_region) +{ + EXMC_SNCTL(exmc_norsram_region) |= (uint32_t)EXMC_SNCTL_NRBKEN; +} + +/*! + \brief disable EXMC NOR/PSRAM bank region + \param[in] exmc_norsram_region: specifie the region of NOR/PSRAM Bank + only one parameter can be selected which is shown as below: + \arg EXMC_BANK0_NORSRAM_REGIONx(x=0..3) + \param[out] none + \retval none +*/ +void exmc_norsram_disable(uint32_t exmc_norsram_region) +{ + EXMC_SNCTL(exmc_norsram_region) &= ~(uint32_t)EXMC_SNCTL_NRBKEN; +} + +/*! + \brief deinitialize EXMC NAND bank + \param[in] exmc_nand_bank: select the bank of NAND + only one parameter can be selected which is shown as below: + \arg EXMC_BANKx_NAND(x=1..2) + \param[out] none + \retval none +*/ +void exmc_nand_deinit(uint32_t exmc_nand_bank) +{ + /* EXMC_BANK1_NAND or EXMC_BANK2_NAND */ + EXMC_NPCTL(exmc_nand_bank) = BANK1_2_NPCTL_RESET; + EXMC_NPINTEN(exmc_nand_bank) = BANK1_2_NPINTEN_RESET; + EXMC_NPCTCFG(exmc_nand_bank) = BANK1_2_NPCTCFG_RESET; + EXMC_NPATCFG(exmc_nand_bank) = BANK1_2_NPATCFG_RESET; +} + +/*! + \brief initialize exmc_norsram_parameter_struct with the default values + \param[in] none + \param[out] the initialized struct exmc_norsram_parameter_struct pointer + \retval none +*/ +void exmc_nand_struct_para_init(exmc_nand_parameter_struct* exmc_nand_init_struct) +{ + /* configure the structure with default values */ + exmc_nand_init_struct->nand_bank = EXMC_BANK1_NAND; + exmc_nand_init_struct->wait_feature = DISABLE; + exmc_nand_init_struct->databus_width = EXMC_NAND_DATABUS_WIDTH_8B; + exmc_nand_init_struct->ecc_logic = DISABLE; + exmc_nand_init_struct->ecc_size = EXMC_ECC_SIZE_256BYTES; + exmc_nand_init_struct->ctr_latency = 0x0U; + exmc_nand_init_struct->atr_latency = 0x0U; + exmc_nand_init_struct->common_space_timing->setuptime = 0xFCU; + exmc_nand_init_struct->common_space_timing->waittime = 0xFCU; + exmc_nand_init_struct->common_space_timing->holdtime = 0xFCU; + exmc_nand_init_struct->common_space_timing->databus_hiztime = 0xFCU; + exmc_nand_init_struct->attribute_space_timing->setuptime = 0xFCU; + exmc_nand_init_struct->attribute_space_timing->waittime = 0xFCU; + exmc_nand_init_struct->attribute_space_timing->holdtime = 0xFCU; + exmc_nand_init_struct->attribute_space_timing->databus_hiztime = 0xFCU; +} + +/*! + \brief initialize EXMC NAND bank + \param[in] exmc_nand_parameter_struct: configure the EXMC NAND parameter + nand_bank: EXMC_BANK1_NAND,EXMC_BANK2_NAND + ecc_size: EXMC_ECC_SIZE_xBYTES,x=256,512,1024,2048,4096 + atr_latency: EXMC_ALE_RE_DELAY_x_HCLK,x=1..16 + ctr_latency: EXMC_CLE_RE_DELAY_x_HCLK,x=1..16 + ecc_logic: ENABLE or DISABLE + databus_width: EXMC_NAND_DATABUS_WIDTH_8B,EXMC_NAND_DATABUS_WIDTH_16B + wait_feature: ENABLE or DISABLE + common_space_timing: struct exmc_nand_pccard_timing_parameter_struct set the time + databus_hiztime: 0x01U~0xFFU + holdtime: 0x01U~0xFEU + waittime: 0x02U~0xFFU + setuptime: 0x01U~0xFFU + attribute_space_timing: struct exmc_nand_pccard_timing_parameter_struct set the time + databus_hiztime: 0x00U~0xFEU + holdtime: 0x01U~0xFEU + waittime: 0x02U~0xFFU + setuptime: 0x01U~0xFFU + \param[out] none + \retval none +*/ +void exmc_nand_init(exmc_nand_parameter_struct* exmc_nand_init_struct) +{ + uint32_t npctl = 0x00000000U, npctcfg = 0x00000000U, npatcfg = 0x00000000U; + + npctl = (uint32_t)(exmc_nand_init_struct->wait_feature << NPCTL_NDWTEN_OFFSET)| + EXMC_NPCTL_NDTP | + exmc_nand_init_struct->databus_width | + (exmc_nand_init_struct->ecc_logic << NPCTL_ECCEN_OFFSET)| + exmc_nand_init_struct->ecc_size | + exmc_nand_init_struct->ctr_latency | + exmc_nand_init_struct->atr_latency; + + npctcfg = (uint32_t)((exmc_nand_init_struct->common_space_timing->setuptime - 1U) & EXMC_NPCTCFG_COMSET ) | + (((exmc_nand_init_struct->common_space_timing->waittime - 1U) << NPCTCFG_COMWAIT_OFFSET) & EXMC_NPCTCFG_COMWAIT ) | + ((exmc_nand_init_struct->common_space_timing->holdtime << NPCTCFG_COMHLD_OFFSET) & EXMC_NPCTCFG_COMHLD ) | + (((exmc_nand_init_struct->common_space_timing->databus_hiztime - 1U) << NPCTCFG_COMHIZ_OFFSET) & EXMC_NPCTCFG_COMHIZ ); + + npatcfg = (uint32_t)((exmc_nand_init_struct->attribute_space_timing->setuptime - 1U) & EXMC_NPATCFG_ATTSET ) | + (((exmc_nand_init_struct->attribute_space_timing->waittime - 1U) << NPATCFG_ATTWAIT_OFFSET) & EXMC_NPATCFG_ATTWAIT ) | + ((exmc_nand_init_struct->attribute_space_timing->holdtime << NPATCFG_ATTHLD_OFFSET) & EXMC_NPATCFG_ATTHLD ) | + ((exmc_nand_init_struct->attribute_space_timing->databus_hiztime << NPATCFG_ATTHIZ_OFFSET) & EXMC_NPATCFG_ATTHIZ ); + + /* EXMC_BANK1_NAND or EXMC_BANK2_NAND initialize */ + EXMC_NPCTL(exmc_nand_init_struct->nand_bank) = npctl; + EXMC_NPCTCFG(exmc_nand_init_struct->nand_bank) = npctcfg; + EXMC_NPATCFG(exmc_nand_init_struct->nand_bank) = npatcfg; +} + +/*! + \brief enable NAND bank + \param[in] exmc_nand_bank: specifie the NAND bank + only one parameter can be selected which is shown as below: + \arg EXMC_BANKx_NAND(x=1,2) + \param[out] none + \retval none +*/ +void exmc_nand_enable(uint32_t exmc_nand_bank) +{ + EXMC_NPCTL(exmc_nand_bank) |= EXMC_NPCTL_NDBKEN; +} + +/*! + \brief disable NAND bank + \param[in] exmc_nand_bank: specifie the NAND bank + only one parameter can be selected which is shown as below: + \arg EXMC_BANKx_NAND(x=1,2) + \param[out] none + \retval none +*/ +void exmc_nand_disable(uint32_t exmc_nand_bank) +{ + EXMC_NPCTL(exmc_nand_bank) &= ~EXMC_NPCTL_NDBKEN; +} + +/*! + \brief deinitialize EXMC PC card bank + \param[in] none + \param[out] none + \retval none +*/ +void exmc_pccard_deinit(void) +{ + /* EXMC_BANK3_PCCARD */ + EXMC_NPCTL3 = BANK3_NPCTL_RESET; + EXMC_NPINTEN3 = BANK3_NPINTEN_RESET; + EXMC_NPCTCFG3 = BANK3_NPCTCFG_RESET; + EXMC_NPATCFG3 = BANK3_NPATCFG_RESET; + EXMC_PIOTCFG3 = BANK3_PIOTCFG3_RESET; +} + +/*! + \brief initialize exmc_pccard_parameter_struct with the default values + \param[in] none + \param[out] the initialized struct exmc_pccard_parameter_struct pointer + \retval none +*/ +void exmc_pccard_struct_para_init(exmc_pccard_parameter_struct* exmc_pccard_init_struct) +{ + /* configure the structure with default values */ + exmc_pccard_init_struct->wait_feature = DISABLE; + exmc_pccard_init_struct->ctr_latency = 0x0U; + exmc_pccard_init_struct->atr_latency = 0x0U; + exmc_pccard_init_struct->common_space_timing->setuptime = 0xFCU; + exmc_pccard_init_struct->common_space_timing->waittime = 0xFCU; + exmc_pccard_init_struct->common_space_timing->holdtime = 0xFCU; + exmc_pccard_init_struct->common_space_timing->databus_hiztime = 0xFCU; + exmc_pccard_init_struct->attribute_space_timing->setuptime = 0xFCU; + exmc_pccard_init_struct->attribute_space_timing->waittime = 0xFCU; + exmc_pccard_init_struct->attribute_space_timing->holdtime = 0xFCU; + exmc_pccard_init_struct->attribute_space_timing->databus_hiztime = 0xFCU; + exmc_pccard_init_struct->io_space_timing->setuptime = 0xFCU; + exmc_pccard_init_struct->io_space_timing->waittime = 0xFCU; + exmc_pccard_init_struct->io_space_timing->holdtime = 0xFCU; + exmc_pccard_init_struct->io_space_timing->databus_hiztime = 0xFCU; +} + +/*! + \brief initialize EXMC PC card bank + \param[in] exmc_pccard_parameter_struct: configure the EXMC NAND parameter + atr_latency: EXMC_ALE_RE_DELAY_x_HCLK,x=1..16 + ctr_latency: EXMC_CLE_RE_DELAY_x_HCLK,x=1..16 + wait_feature: ENABLE or DISABLE + common_space_timing: struct exmc_nand_pccard_timing_parameter_struct set the time + databus_hiztime: 0x01U~0xFFU + holdtime: 0x01U~0xFEU + waittime: 0x02U~0xFFU + setuptime: 0x01U~0xFFU + attribute_space_timing: struct exmc_nand_pccard_timing_parameter_struct set the time + databus_hiztime: 0x00U~0xFEU + holdtime: 0x01U~0xFEU + waittime: 0x02U~0xFFU + setuptime: 0x01U~0xFFU + io_space_timing: exmc_nand_pccard_timing_parameter_struct set the time + databus_hiztime: 0x00U~0xFFU + holdtime: 0x01U~0xFFU + waittime: 0x02U~0x100U + setuptime: 0x01U~0x100U + \param[out] none + \retval none +*/ +void exmc_pccard_init(exmc_pccard_parameter_struct* exmc_pccard_init_struct) +{ + /* configure the EXMC bank3 PC card control register */ + EXMC_NPCTL3 = (uint32_t)(exmc_pccard_init_struct->wait_feature << NPCTL_NDWTEN_OFFSET) | + EXMC_NAND_DATABUS_WIDTH_16B | + exmc_pccard_init_struct->ctr_latency | + exmc_pccard_init_struct->atr_latency ; + + /* configure the EXMC bank3 PC card common space timing configuration register */ + EXMC_NPCTCFG3 = (uint32_t)((exmc_pccard_init_struct->common_space_timing->setuptime - 1U) & EXMC_NPCTCFG_COMSET ) | + (((exmc_pccard_init_struct->common_space_timing->waittime - 1U) << NPCTCFG_COMWAIT_OFFSET) & EXMC_NPCTCFG_COMWAIT ) | + ((exmc_pccard_init_struct->common_space_timing->holdtime << NPCTCFG_COMHLD_OFFSET) & EXMC_NPCTCFG_COMHLD ) | + (((exmc_pccard_init_struct->common_space_timing->databus_hiztime - 1U) << NPCTCFG_COMHIZ_OFFSET) & EXMC_NPCTCFG_COMHIZ ); + + /* configure the EXMC bank3 PC card attribute space timing configuration register */ + EXMC_NPATCFG3 = (uint32_t)((exmc_pccard_init_struct->attribute_space_timing->setuptime - 1U) & EXMC_NPATCFG_ATTSET ) | + (((exmc_pccard_init_struct->attribute_space_timing->waittime - 1U) << NPATCFG_ATTWAIT_OFFSET) & EXMC_NPATCFG_ATTWAIT ) | + ((exmc_pccard_init_struct->attribute_space_timing->holdtime << NPATCFG_ATTHLD_OFFSET) & EXMC_NPATCFG_ATTHLD ) | + ((exmc_pccard_init_struct->attribute_space_timing->databus_hiztime << NPATCFG_ATTHIZ_OFFSET) & EXMC_NPATCFG_ATTHIZ); + + /* configure the EXMC bank3 PC card io space timing configuration register */ + EXMC_PIOTCFG3 = (uint32_t)((exmc_pccard_init_struct->io_space_timing->setuptime - 1U) & EXMC_PIOTCFG3_IOSET ) | + (((exmc_pccard_init_struct->io_space_timing->waittime - 1U) << PIOTCFG_IOWAIT_OFFSET) & EXMC_PIOTCFG3_IOWAIT ) | + ((exmc_pccard_init_struct->io_space_timing->holdtime << PIOTCFG_IOHLD_OFFSET) & EXMC_PIOTCFG3_IOHLD ) | + ((exmc_pccard_init_struct->io_space_timing->databus_hiztime << PIOTCFG_IOHIZ_OFFSET) & EXMC_PIOTCFG3_IOHIZ ); +} + +/*! + \brief enable PC Card Bank + \param[in] none + \param[out] none + \retval none +*/ +void exmc_pccard_enable(void) +{ + EXMC_NPCTL3 |= EXMC_NPCTL_NDBKEN; +} + +/*! + \brief disable PC Card Bank + \param[in] none + \param[out] none + \retval none +*/ +void exmc_pccard_disable(void) +{ + EXMC_NPCTL3 &= ~EXMC_NPCTL_NDBKEN; +} + +/*! + \brief deinitialize EXMC SDRAM device + \param[in] exmc_sdram_device: select the SRAM device + only one parameter can be selected which is shown as below: + \arg EXMC_SDRAM_DEVICEx(x=0, 1) + \param[in] none + \param[out] none + \retval none +*/ +void exmc_sdram_deinit(uint32_t exmc_sdram_device) +{ + /* reset SDRAM registers */ + EXMC_SDCTL(exmc_sdram_device) = SDRAM_DEVICE_SDCTL_RESET; + EXMC_SDTCFG(exmc_sdram_device) = SDRAM_DEVICE_SDTCFG_RESET; + EXMC_SDCMD = SDRAM_DEVICE_SDCMD_RESET; + EXMC_SDARI = SDRAM_DEVICE_SDARI_RESET; + EXMC_SDRSCTL = SDRAM_DEVICE_SDRSCTL_RESET; +} + +/*! + \brief initialize exmc_sdram_parameter_struct with the default values + \param[in] none + \param[out] the initialized struct exmc_pccard_parameter_struct pointer + \retval none +*/ +void exmc_sdram_struct_para_init(exmc_sdram_parameter_struct* exmc_sdram_init_struct) +{ + /* configure the structure with default values */ + exmc_sdram_init_struct->sdram_device = EXMC_SDRAM_DEVICE0; + exmc_sdram_init_struct->column_address_width = EXMC_SDRAM_COW_ADDRESS_8; + exmc_sdram_init_struct->row_address_width = EXMC_SDRAM_ROW_ADDRESS_11; + exmc_sdram_init_struct->data_width = EXMC_SDRAM_DATABUS_WIDTH_16B; + exmc_sdram_init_struct->internal_bank_number = EXMC_SDRAM_4_INTER_BANK; + exmc_sdram_init_struct->cas_latency = EXMC_CAS_LATENCY_1_SDCLK; + exmc_sdram_init_struct->write_protection = ENABLE; + exmc_sdram_init_struct->sdclock_config = EXMC_SDCLK_DISABLE; + exmc_sdram_init_struct->brust_read_switch = DISABLE; + exmc_sdram_init_struct->pipeline_read_delay = EXMC_PIPELINE_DELAY_0_HCLK; + + exmc_sdram_init_struct->timing->load_mode_register_delay = 16U; + exmc_sdram_init_struct->timing->exit_selfrefresh_delay = 16U; + exmc_sdram_init_struct->timing->row_address_select_delay = 16U; + exmc_sdram_init_struct->timing->auto_refresh_delay = 16U; + exmc_sdram_init_struct->timing->write_recovery_delay = 16U; + exmc_sdram_init_struct->timing->row_precharge_delay = 16U; + exmc_sdram_init_struct->timing->row_to_column_delay = 16U; +} + +/*! + \brief initialize EXMC SDRAM device + \param[in] exmc_sdram_parameter_struct: configure the EXMC SDRAM parameter + sdram_device: EXMC_SDRAM_DEVICE0,EXMC_SDRAM_DEVICE1 + pipeline_read_delay: EXMC_PIPELINE_DELAY_x_HCLK,x=0..2 + brust_read_switch: ENABLE or DISABLE + sdclock_config: EXMC_SDCLK_DISABLE,EXMC_SDCLK_PERIODS_2_HCLK,EXMC_SDCLK_PERIODS_3_HCLK + write_protection: ENABLE or DISABLE + cas_latency: EXMC_CAS_LATENCY_x_SDCLK,x=1..3 + internal_bank_number: EXMC_SDRAM_2_INTER_BANK,EXMC_SDRAM_4_INTER_BANK + data_width: EXMC_SDRAM_DATABUS_WIDTH_8B,EXMC_SDRAM_DATABUS_WIDTH_16B,EXMC_SDRAM_DATABUS_WIDTH_32B + row_address_width: EXMC_SDRAM_ROW_ADDRESS_x,x=11..13 + column_address_width: EXMC_SDRAM_COW_ADDRESS_x,x=8..11 + timing: exmc_sdram_timing_parameter_struct set the time + row_to_column_delay: 1U~16U + row_precharge_delay: 1U~16U + write_recovery_delay: 1U~16U + auto_refresh_delay: 1U~16U + row_address_select_delay: 1U~16U + exit_selfrefresh_delay: 1U~16U + load_mode_register_delay: 1U~16U + \param[out] none + \retval none +*/ +void exmc_sdram_init(exmc_sdram_parameter_struct* exmc_sdram_init_struct) +{ + uint32_t sdctl0, sdctl1, sdtcfg0, sdtcfg1; + + /* configuration EXMC_SDCTL0 or EXMC_SDCTL1 */ + if(EXMC_SDRAM_DEVICE0 == exmc_sdram_init_struct->sdram_device){ + /* configuration EXMC_SDCTL0 */ + EXMC_SDCTL(EXMC_SDRAM_DEVICE0) = (uint32_t)exmc_sdram_init_struct->column_address_width | + exmc_sdram_init_struct->row_address_width | + exmc_sdram_init_struct->data_width | + exmc_sdram_init_struct->internal_bank_number | + exmc_sdram_init_struct->cas_latency | + (exmc_sdram_init_struct->write_protection << SDCTL_WPEN_OFFSET)| + exmc_sdram_init_struct->sdclock_config | + (exmc_sdram_init_struct->brust_read_switch << SDCTL_BRSTRD_OFFSET)| + exmc_sdram_init_struct->pipeline_read_delay; + + /* configuration EXMC_SDTCFG0 */ + EXMC_SDTCFG(EXMC_SDRAM_DEVICE0) = (uint32_t)((exmc_sdram_init_struct->timing->load_mode_register_delay)-1U) | + (((exmc_sdram_init_struct->timing->exit_selfrefresh_delay)-1U) << SDTCFG_XSRD_OFFSET) | + (((exmc_sdram_init_struct->timing->row_address_select_delay)-1U) << SDTCFG_RASD_OFFSET) | + (((exmc_sdram_init_struct->timing->auto_refresh_delay)-1U) << SDTCFG_ARFD_OFFSET) | + (((exmc_sdram_init_struct->timing->write_recovery_delay)-1U) << SDTCFG_WRD_OFFSET) | + (((exmc_sdram_init_struct->timing->row_precharge_delay)-1U) << SDTCFG_RPD_OFFSET) | + (((exmc_sdram_init_struct->timing->row_to_column_delay)-1U) << SDTCFG_RCD_OFFSET); + }else{ + /* configuration EXMC_SDCTL0 and EXMC_SDCTL1 */ + /* some bits in the EXMC_SDCTL1 register are reserved */ + sdctl0 = EXMC_SDCTL(EXMC_SDRAM_DEVICE0) & (~( EXMC_SDCTL_PIPED | EXMC_SDCTL_BRSTRD | EXMC_SDCTL_SDCLK )); + + sdctl0 |= (uint32_t)exmc_sdram_init_struct->sdclock_config | + exmc_sdram_init_struct->brust_read_switch | + exmc_sdram_init_struct->pipeline_read_delay; + + sdctl1 = (uint32_t)exmc_sdram_init_struct->column_address_width | + exmc_sdram_init_struct->row_address_width | + exmc_sdram_init_struct->data_width | + exmc_sdram_init_struct->internal_bank_number | + exmc_sdram_init_struct->cas_latency | + exmc_sdram_init_struct->write_protection ; + + EXMC_SDCTL(EXMC_SDRAM_DEVICE0) = sdctl0; + EXMC_SDCTL(EXMC_SDRAM_DEVICE1) = sdctl1; + + /* configuration EXMC_SDTCFG0 and EXMC_SDTCFG1 */ + /* some bits in the EXMC_SDTCFG1 register are reserved */ + sdtcfg0 = EXMC_SDTCFG(EXMC_SDRAM_DEVICE0) & (~(EXMC_SDTCFG_RPD | EXMC_SDTCFG_WRD | EXMC_SDTCFG_ARFD)); + + sdtcfg0 |= (uint32_t)(((exmc_sdram_init_struct->timing->auto_refresh_delay)-1U) << SDTCFG_ARFD_OFFSET) | + (((exmc_sdram_init_struct->timing->row_precharge_delay)-1U) << SDTCFG_RPD_OFFSET) | + (((exmc_sdram_init_struct->timing->write_recovery_delay)-1U) << SDTCFG_WRD_OFFSET); + + sdtcfg1 = (uint32_t)((exmc_sdram_init_struct->timing->load_mode_register_delay)-1U) | + (((exmc_sdram_init_struct->timing->exit_selfrefresh_delay)-1U) << SDTCFG_XSRD_OFFSET) | + (((exmc_sdram_init_struct->timing->row_address_select_delay)-1U) << SDTCFG_RASD_OFFSET) | + (((exmc_sdram_init_struct->timing->row_to_column_delay)-1U) << SDTCFG_RCD_OFFSET); + + EXMC_SDTCFG(EXMC_SDRAM_DEVICE0) = sdtcfg0; + EXMC_SDTCFG(EXMC_SDRAM_DEVICE1) = sdtcfg1; + } +} + +/*! + \brief deinitialize exmc SQPIPSRAM + \param[in] none + \param[out] none + \retval none +*/ +void exmc_sqpipsram_deinit(void) +{ + /* reset the registers */ + EXMC_SINIT = BANK0_SQPI_SINIT_RESET; + EXMC_SRCMD = BANK0_SQPI_SRCMD_RESET; + EXMC_SWCMD = BANK0_SQPI_SWCMD_RESET; + EXMC_SIDL = BANK0_SQPI_SIDL_RESET; + EXMC_SIDH = BANK0_SQPI_SIDH_RESET; +} + +/*! + \brief initialize exmc_sqpipsram_parameter_struct with the default values + \param[in] the struct exmc_sqpipsram_parameter_struct pointer + \param[out] none + \retval none +*/ +void exmc_sqpipsram_struct_para_init(exmc_sqpipsram_parameter_struct* exmc_sqpipsram_init_struct) +{ + /* configure the structure with default values */ + exmc_sqpipsram_init_struct->sample_polarity = EXMC_SQPIPSRAM_SAMPLE_RISING_EDGE; + exmc_sqpipsram_init_struct->id_length = EXMC_SQPIPSRAM_ID_LENGTH_64B; + exmc_sqpipsram_init_struct->address_bits = EXMC_SQPIPSRAM_ADDR_LENGTH_24B; + exmc_sqpipsram_init_struct->command_bits = EXMC_SQPIPSRAM_COMMAND_LENGTH_8B; +} + +/*! + \brief initialize EXMC SQPIPSRAM + \param[in] exmc_sqpipsram_parameter_struct: configure the EXMC SQPIPSRAM parameter + sample_polarity: EXMC_SQPIPSRAM_SAMPLE_RISING_EDGE,EXMC_SQPIPSRAM_SAMPLE_FALLING_EDGE + id_length: EXMC_SQPIPSRAM_ID_LENGTH_xB,x=8,16,32,64 + address_bits: EXMC_SQPIPSRAM_ADDR_LENGTH_xB,x=1..26 + command_bits: EXMC_SQPIPSRAM_COMMAND_LENGTH_xB,x=4,8,16 + \param[out] none + \retval none +*/ +void exmc_sqpipsram_init(exmc_sqpipsram_parameter_struct* exmc_sqpipsram_init_struct) +{ + /* initialize SQPI controller */ + EXMC_SINIT = (uint32_t)exmc_sqpipsram_init_struct->sample_polarity | + exmc_sqpipsram_init_struct->id_length | + exmc_sqpipsram_init_struct->address_bits | + exmc_sqpipsram_init_struct->command_bits; +} + +/*! + \brief configure consecutive clock + \param[in] clock_mode: specifie when the clock is generated + only one parameter can be selected which is shown as below: + \arg EXMC_CLOCK_SYN_MODE: the clock is generated only during synchronous access + \arg EXMC_CLOCK_UNCONDITIONALLY: the clock is generated unconditionally + \param[out] none + \retval none +*/ +void exmc_norsram_consecutive_clock_config(uint32_t clock_mode) +{ + if (EXMC_CLOCK_UNCONDITIONALLY == clock_mode){ + EXMC_SNCTL(EXMC_BANK0_NORSRAM_REGION0) |= EXMC_CLOCK_UNCONDITIONALLY; + }else{ + EXMC_SNCTL(EXMC_BANK0_NORSRAM_REGION0) &= ~EXMC_CLOCK_UNCONDITIONALLY; + } +} + +/*! + \brief configure CRAM page size + \param[in] exmc_norsram_region: select the region of bank0 + only one parameter can be selected which is shown as below: + \arg EXMC_BANK0_NORSRAM_REGIONx(x=0..3) + \param[in] page_size: CRAM page size + only one parameter can be selected which is shown as below: + \arg EXMC_CRAM_AUTO_SPLIT: the clock is generated only during synchronous access + \arg EXMC_CRAM_PAGE_SIZE_128_BYTES: page size is 128 bytes + \arg EXMC_CRAM_PAGE_SIZE_256_BYTES: page size is 256 bytes + \arg EXMC_CRAM_PAGE_SIZE_512_BYTES: page size is 512 bytes + \arg EXMC_CRAM_PAGE_SIZE_1024_BYTES: page size is 1024 bytes + \param[out] none + \retval none +*/ +void exmc_norsram_page_size_config(uint32_t exmc_norsram_region, uint32_t page_size) +{ + /* reset the bits */ + EXMC_SNCTL(exmc_norsram_region) &= ~EXMC_SNCTL_CPS; + + /* set the CPS bits */ + EXMC_SNCTL(exmc_norsram_region) |= page_size; +} + +/*! + \brief enable or disable the EXMC NAND ECC function + \param[in] exmc_nand_bank: specifie the NAND bank + only one parameter can be selected which is shown as below: + \arg EXMC_BANKx_NAND(x=1,2) + \param[in] newvalue: ENABLE or DISABLE + \param[out] none + \retval none +*/ +void exmc_nand_ecc_config(uint32_t exmc_nand_bank, ControlStatus newvalue) +{ + if (ENABLE == newvalue){ + /* enable the selected NAND bank ECC function */ + EXMC_NPCTL(exmc_nand_bank) |= EXMC_NPCTL_ECCEN; + }else{ + /* disable the selected NAND bank ECC function */ + EXMC_NPCTL(exmc_nand_bank) &= ~EXMC_NPCTL_ECCEN; + } +} + +/*! + \brief get the EXMC ECC value + \param[in] exmc_nand_bank: specifie the NAND bank + only one parameter can be selected which is shown as below: + \arg EXMC_BANKx_NAND(x=1,2) + \param[out] none + \retval the error correction code(ECC) value +*/ +uint32_t exmc_ecc_get(uint32_t exmc_nand_bank) +{ + return(EXMC_NECC(exmc_nand_bank)); +} + +/*! + \brief enable or disable read sample + \param[in] newvalue: ENABLE or DISABLE + \param[out] none + \retval none +*/ +void exmc_sdram_readsample_enable(ControlStatus newvalue) +{ + if (ENABLE == newvalue){ + EXMC_SDRSCTL |= EXMC_SDRSCTL_RSEN; + }else{ + EXMC_SDRSCTL &= (uint32_t)(~EXMC_SDRSCTL_RSEN); + } +} + +/*! + \brief configure the delayed sample clock of read data + \param[in] delay_cell: SDRAM the delayed sample clock of read data + only one parameter can be selected which is shown as below: + \arg EXMC_SDRAM_x_DELAY_CELL(x=0..15) + \param[in] extra_hclk: sample cycle of read data + only one parameter can be selected which is shown as below: + \arg EXMC_SDRAM_READSAMPLE_x_EXTRAHCLK(x=0,1) + \param[out] none + \retval none +*/ +void exmc_sdram_readsample_config(uint32_t delay_cell, uint32_t extra_hclk) +{ + uint32_t sdrsctl = 0U; + + /* reset the bits */ + sdrsctl = EXMC_SDRSCTL & (~(EXMC_SDRSCTL_SDSC | EXMC_SDRSCTL_SSCR)); + /* set the bits */ + sdrsctl |= (uint32_t)(delay_cell & EXMC_SDRSCTL_SDSC) | + ((extra_hclk << SDRSCTL_SSCR_OFFSET) & EXMC_SDRSCTL_SSCR); + EXMC_SDRSCTL = sdrsctl; +} + +/*! + \brief configure the SDRAM memory command + \param[in] exmc_sdram_command_init_struct: initialize EXMC SDRAM command + mode_register_content: + auto_refresh_number: EXMC_SDRAM_AUTO_REFLESH_x_SDCLK, x=1..15 + bank_select: EXMC_SDRAM_DEVICE0_SELECT, EXMC_SDRAM_DEVICE1_SELECT, EXMC_SDRAM_DEVICE0_1_SELECT + command: EXMC_SDRAM_NORMAL_OPERATION, EXMC_SDRAM_CLOCK_ENABLE, EXMC_SDRAM_PRECHARGE_ALL, + EXMC_SDRAM_AUTO_REFRESH, EXMC_SDRAM_LOAD_MODE_REGISTER, EXMC_SDRAM_SELF_REFRESH, + EXMC_SDRAM_POWERDOWN_ENTRY + \param[out] none + \retval none +*/ +void exmc_sdram_command_config(exmc_sdram_command_parameter_struct* exmc_sdram_command_init_struct) +{ + /* configure command register */ + EXMC_SDCMD = (uint32_t)((exmc_sdram_command_init_struct->command) | + (exmc_sdram_command_init_struct->bank_select) | + ((exmc_sdram_command_init_struct->auto_refresh_number)) | + ((exmc_sdram_command_init_struct->mode_register_content)<> SDSTAT_STA0_OFFSET); + }else{ + sdstat = ((uint32_t)(EXMC_SDSTAT & EXMC_SDSDAT_STA1) >> SDSTAT_STA1_OFFSET); + } + + return sdstat; +} + +/*! + \brief set the read command + \param[in] read_command_mode: configure SPI PSRAM read command mode + only one parameter can be selected which is shown as below: + \arg EXMC_SQPIPSRAM_READ_MODE_DISABLE: not SPI mode + \arg EXMC_SQPIPSRAM_READ_MODE_SPI: SPI mode + \arg EXMC_SQPIPSRAM_READ_MODE_SQPI: SQPI mode + \arg EXMC_SQPIPSRAM_READ_MODE_QPI: QPI mode + \param[in] read_wait_cycle: wait cycle number after address phase,0..15 + \param[in] read_command_code: read command for AHB read transfer + \param[out] none + \retval none +*/ +void exmc_sqpipsram_read_command_set(uint32_t read_command_mode,uint32_t read_wait_cycle, uint32_t read_command_code) +{ + uint32_t srcmd; + + srcmd = (uint32_t) read_command_mode | + ((read_wait_cycle << SRCMD_RWAITCYCLE_OFFSET) & EXMC_SRCMD_RWAITCYCLE) | + ((read_command_code & EXMC_SRCMD_RCMD)); + EXMC_SRCMD = srcmd; +} + +/*! + \brief set the write command + \param[in] write_command_mode: configure SPI PSRAM write command mode + only one parameter can be selected which is shown as below: + \arg EXMC_SQPIPSRAM_WRITE_MODE_DISABLE: not SPI mode + \arg EXMC_SQPIPSRAM_WRITE_MODE_SPI: SPI mode + \arg EXMC_SQPIPSRAM_WRITE_MODE_SQPI: SQPI mode + \arg EXMC_SQPIPSRAM_WRITE_MODE_QPI: QPI mode + \param[in] write_wait_cycle: wait cycle number after address phase,0..15 + \param[in] write_command_code: read command for AHB read transfer + \param[out] none + \retval none +*/ +void exmc_sqpipsram_write_command_set(uint32_t write_command_mode,uint32_t write_wait_cycle, uint32_t write_command_code) +{ + uint32_t swcmd; + + swcmd = (uint32_t) write_command_mode | + ((write_wait_cycle << SWCMD_WWAITCYCLE_OFFSET) & EXMC_SWCMD_WWAITCYCLE) | + ((write_command_code & EXMC_SWCMD_WCMD)); + EXMC_SWCMD = swcmd; +} + +/*! + \brief send SPI read ID command + \param[in] none + \param[out] none + \retval none +*/ +void exmc_sqpipsram_read_id_command_send(void) +{ + EXMC_SRCMD |= EXMC_SRCMD_RDID; +} + +/*! + \brief send SPI special command which does not have address and data phase + \param[in] none + \param[out] none + \retval none +*/ +void exmc_sqpipsram_write_cmd_send(void) +{ + EXMC_SWCMD |= EXMC_SWCMD_SC; +} + +/*! + \brief get the EXMC SPI ID low data + \param[in] none + \param[out] none + \retval the ID low data +*/ +uint32_t exmc_sqpipsram_low_id_get(void) +{ + return (EXMC_SIDL); +} + +/*! + \brief get the EXMC SPI ID high data + \param[in] none + \param[out] none + \retval the ID high data +*/ +uint32_t exmc_sqpipsram_high_id_get(void) +{ + return (EXMC_SIDH); +} + +/*! + \brief get the bit value of EXMC send write command bit or read ID command + \param[in] send_command_flag: the send command flag + only one parameter can be selected which is shown as below: + \arg EXMC_SEND_COMMAND_FLAG_RDID: EXMC_SRCMD_RDID flag bit + \arg EXMC_SEND_COMMAND_FLAG_SC: EXMC_SWCMD_SC flag bit + \param[out] none + \retval the new value of send command flag +*/ +FlagStatus exmc_sqpipsram_send_command_state_get(uint32_t send_command_flag) +{ + uint32_t flag = 0x00000000U; + + if(EXMC_SEND_COMMAND_FLAG_RDID == send_command_flag){ + flag = EXMC_SRCMD; + }else if(EXMC_SEND_COMMAND_FLAG_SC == send_command_flag){ + flag = EXMC_SWCMD; + }else{ + } + + if (flag & send_command_flag){ + /* flag is set */ + return SET; + }else{ + /* flag is reset */ + return RESET; + } +} + +/*! + \brief enable EXMC interrupt + \param[in] exmc_bank: specifies the NAND bank,PC card bank or SDRAM device + only one parameter can be selected which is shown as below: + \arg EXMC_BANK1_NAND: the NAND bank1 + \arg EXMC_BANK2_NAND: the NAND bank2 + \arg EXMC_BANK3_PCCARD: the PC card bank + \arg EXMC_SDRAM_DEVICE0: the SDRAM device0 + \arg EXMC_SDRAM_DEVICE1: the SDRAM device1 + \param[in] interrupt: specify get which interrupt flag + only one parameter can be selected which is shown as below: + \arg EXMC_NAND_PCCARD_INT_FLAG_RISE: rising edge interrupt and flag + \arg EXMC_NAND_PCCARD_INT_FLAG_LEVEL: high-level interrupt and flag + \arg EXMC_NAND_PCCARD_INT_FLAG_FALL: falling edge interrupt and flag + \arg EXMC_SDRAM_INT_FLAG_REFRESH: refresh error interrupt and flag + \param[out] none + \retval none +*/ +void exmc_interrupt_enable(uint32_t exmc_bank, uint32_t interrupt) +{ + if((EXMC_BANK1_NAND == exmc_bank) || (EXMC_BANK2_NAND == exmc_bank) || (EXMC_BANK3_PCCARD == exmc_bank)){ + /* NAND bank1,bank2 or PC card bank3 */ + EXMC_NPINTEN(exmc_bank) |= interrupt; + }else{ + /* SDRAM device0 or device1 */ + EXMC_SDARI |= EXMC_SDARI_REIE; + } +} + +/*! + \brief disable EXMC interrupt + \param[in] exmc_bank: specifies the NAND bank , PC card bank or SDRAM device + only one parameter can be selected which is shown as below: + \arg EXMC_BANK1_NAND: the NAND bank1 + \arg EXMC_BANK2_NAND: the NAND bank2 + \arg EXMC_BANK3_PCCARD: the PC card bank + \arg EXMC_SDRAM_DEVICE0: the SDRAM device0 + \arg EXMC_SDRAM_DEVICE1: the SDRAM device1 + \param[in] interrupt: specify get which interrupt flag + only one parameter can be selected which is shown as below: + \arg EXMC_NAND_PCCARD_INT_FLAG_RISE: rising edge interrupt and flag + \arg EXMC_NAND_PCCARD_INT_FLAG_LEVEL: high-level interrupt and flag + \arg EXMC_NAND_PCCARD_INT_FLAG_FALL: falling edge interrupt and flag + \arg EXMC_SDRAM_INT_FLAG_REFRESH: refresh error interrupt and flag + \param[out] none + \retval none +*/ +void exmc_interrupt_disable(uint32_t exmc_bank, uint32_t interrupt) +{ + if((EXMC_BANK1_NAND == exmc_bank) || (EXMC_BANK2_NAND == exmc_bank) || (EXMC_BANK3_PCCARD == exmc_bank)){ + /* NAND bank1,bank2 or PC card bank3 */ + EXMC_NPINTEN(exmc_bank) &= ~interrupt; + }else{ + /* SDRAM device0 or device1 */ + EXMC_SDARI &= ~EXMC_SDARI_REIE; + } +} + +/*! + \brief get EXMC flag status + \param[in] exmc_bank: specifies the NAND bank , PC card bank or SDRAM device + only one parameter can be selected which is shown as below: + \arg EXMC_BANK1_NAND: the NAND bank1 + \arg EXMC_BANK2_NAND: the NAND bank2 + \arg EXMC_BANK3_PCCARD: the PC Card bank + \arg EXMC_SDRAM_DEVICE0: the SDRAM device0 + \arg EXMC_SDRAM_DEVICE1: the SDRAM device1 + \param[in] flag: EXMC status and flag + only one parameter can be selected which is shown as below: + \arg EXMC_NAND_PCCARD_FLAG_RISE: interrupt rising edge status + \arg EXMC_NAND_PCCARD_FLAG_LEVEL: interrupt high-level status + \arg EXMC_NAND_PCCARD_FLAG_FALL: interrupt falling edge status + \arg EXMC_NAND_PCCARD_FLAG_FIFOE: FIFO empty flag + \arg EXMC_SDRAM_FLAG_REFRESH: refresh error interrupt flag + \arg EXMC_SDRAM_FLAG_NREADY: not ready status + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus exmc_flag_get(uint32_t exmc_bank,uint32_t flag) +{ + uint32_t status = 0x00000000U; + + if((EXMC_BANK1_NAND == exmc_bank) || (EXMC_BANK2_NAND == exmc_bank) || (EXMC_BANK3_PCCARD == exmc_bank)){ + /* NAND bank1,bank2 or PC card bank3 */ + status = EXMC_NPINTEN(exmc_bank); + }else{ + /* SDRAM device0 or device1 */ + status = EXMC_SDSTAT; + } + + if ((status & flag) != (uint32_t)flag ){ + /* flag is reset */ + return RESET; + }else{ + /* flag is set */ + return SET; + } +} + +/*! + \brief clear EXMC flag status + \param[in] exmc_bank: specifie the NAND bank , PCCARD bank or SDRAM device + only one parameter can be selected which is shown as below: + \arg EXMC_BANK1_NAND: the NAND bank1 + \arg EXMC_BANK2_NAND: the NAND bank2 + \arg EXMC_BANK3_PCCARD: the PC card bank + \arg EXMC_SDRAM_DEVICE0: the SDRAM device0 + \arg EXMC_SDRAM_DEVICE1: the SDRAM device1 + \param[in] flag: EXMC status and flag + only one parameter can be selected which is shown as below: + \arg EXMC_NAND_PCCARD_FLAG_RISE: interrupt rising edge status + \arg EXMC_NAND_PCCARD_FLAG_LEVEL: interrupt high-level status + \arg EXMC_NAND_PCCARD_FLAG_FALL: interrupt falling edge status + \arg EXMC_NAND_PCCARD_FLAG_FIFOE: FIFO empty flag + \arg EXMC_SDRAM_FLAG_REFRESH: refresh error interrupt flag + \arg EXMC_SDRAM_FLAG_NREADY: not ready status + \param[out] none + \retval none +*/ +void exmc_flag_clear(uint32_t exmc_bank, uint32_t flag) +{ + if((EXMC_BANK1_NAND == exmc_bank) || (EXMC_BANK2_NAND == exmc_bank) || (EXMC_BANK3_PCCARD == exmc_bank)){ + /* NAND bank1,bank2 or PC card bank3 */ + EXMC_NPINTEN(exmc_bank) &= ~flag; + }else{ + /* SDRAM device0 or device1 */ + EXMC_SDSTAT &= ~flag; + } +} + +/*! + \brief get EXMC interrupt flag + \param[in] exmc_bank: specifies the NAND bank , PC card bank or SDRAM device + only one parameter can be selected which is shown as below: + \arg EXMC_BANK1_NAND: the NAND bank1 + \arg EXMC_BANK2_NAND: the NAND bank2 + \arg EXMC_BANK3_PCCARD: the PC card bank + \arg EXMC_SDRAM_DEVICE0: the SDRAM device0 + \arg EXMC_SDRAM_DEVICE1: the SDRAM device1 + \param[in] interrupt: EXMC interrupt flag + only one parameter can be selected which is shown as below: + \arg EXMC_NAND_PCCARD_INT_FLAG_RISE: rising edge interrupt and flag + \arg EXMC_NAND_PCCARD_INT_FLAG_LEVEL: high-level interrupt and flag + \arg EXMC_NAND_PCCARD_INT_FLAG_FALL: falling edge interrupt and flag + \arg EXMC_SDRAM_INT_FLAG_REFRESH: refresh error interrupt and flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus exmc_interrupt_flag_get(uint32_t exmc_bank, uint32_t interrupt) +{ + uint32_t status = 0x00000000U,interrupt_enable = 0x00000000U,interrupt_state = 0x00000000U; + + if((EXMC_BANK1_NAND == exmc_bank) || (EXMC_BANK2_NAND == exmc_bank) || (EXMC_BANK3_PCCARD == exmc_bank)){ + /* NAND bank1,bank2 or PC card bank3 */ + status = EXMC_NPINTEN(exmc_bank); + interrupt_state = (status & (interrupt >> INTEN_INTS_OFFSET)); + }else{ + /* SDRAM device0 or device1 */ + status = EXMC_SDARI; + interrupt_state = (EXMC_SDSTAT & EXMC_SDSDAT_REIF); + } + + interrupt_enable = (status & interrupt); + + if ((interrupt_enable) && (interrupt_state)){ + /* interrupt flag is set */ + return SET; + }else{ + /* interrupt flag is reset */ + return RESET; + } +} + +/*! + \brief clear EXMC interrupt flag + \param[in] exmc_bank: specifies the NAND bank , PC card bank or SDRAM device + only one parameter can be selected which is shown as below: + \arg EXMC_BANK1_NAND: the NAND bank1 + \arg EXMC_BANK2_NAND: the NAND bank2 + \arg EXMC_BANK3_PCCARD: the PC card bank + \arg EXMC_SDRAM_DEVICE0: the SDRAM device0 + \arg EXMC_SDRAM_DEVICE1: the SDRAM device1 + \param[in] interrupt: EXMC interrupt flag + only one parameter can be selected which is shown as below: + \arg EXMC_NAND_PCCARD_INT_FLAG_RISE: rising edge interrupt and flag + \arg EXMC_NAND_PCCARD_INT_FLAG_LEVEL: high-level interrupt and flag + \arg EXMC_NAND_PCCARD_INT_FLAG_FALL: falling edge interrupt and flag + \arg EXMC_SDRAM_INT_FLAG_REFRESH: refresh error interrupt and flag + \param[out] none + \retval none +*/ +void exmc_interrupt_flag_clear(uint32_t exmc_bank, uint32_t interrupt) +{ + if((EXMC_BANK1_NAND == exmc_bank) || (EXMC_BANK2_NAND == exmc_bank) || (EXMC_BANK3_PCCARD == exmc_bank)){ + /* NAND bank1,bank2 or PC card bank3 */ + EXMC_NPINTEN(exmc_bank) &= ~(interrupt >> INTEN_INTS_OFFSET); + }else{ + /* SDRAM device0 or device1 */ + EXMC_SDARI |= EXMC_SDARI_REC; + } +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_exti.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_exti.c new file mode 100644 index 0000000000..7a8785446d --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_exti.c @@ -0,0 +1,257 @@ +/*! + \file gd32f4xx_exti.c + \brief EXTI driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.1, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_exti.h" + +/*! + \brief deinitialize the EXTI + \param[in] none + \param[out] none + \retval none +*/ +void exti_deinit(void) +{ + /* reset the value of all the EXTI registers */ + EXTI_INTEN = (uint32_t)0x00000000U; + EXTI_EVEN = (uint32_t)0x00000000U; + EXTI_RTEN = (uint32_t)0x00000000U; + EXTI_FTEN = (uint32_t)0x00000000U; + EXTI_SWIEV = (uint32_t)0x00000000U; +} + +/*! + \brief initialize the EXTI + \param[in] linex: EXTI line number, refer to exti_line_enum + only one parameter can be selected which is shown as below: + \arg EXTI_x (x=0..22): EXTI line x + \param[in] mode: interrupt or event mode, refer to exti_mode_enum + only one parameter can be selected which is shown as below: + \arg EXTI_INTERRUPT: interrupt mode + \arg EXTI_EVENT: event mode + \param[in] trig_type: interrupt trigger type, refer to exti_trig_type_enum + only one parameter can be selected which is shown as below: + \arg EXTI_TRIG_RISING: rising edge trigger + \arg EXTI_TRIG_FALLING: falling trigger + \arg EXTI_TRIG_BOTH: rising and falling trigger + \arg EXTI_TRIG_NONE: without rising edge or falling edge trigger + \param[out] none + \retval none +*/ +void exti_init(exti_line_enum linex, \ + exti_mode_enum mode, \ + exti_trig_type_enum trig_type) +{ + /* reset the EXTI line x */ + EXTI_INTEN &= ~(uint32_t)linex; + EXTI_EVEN &= ~(uint32_t)linex; + EXTI_RTEN &= ~(uint32_t)linex; + EXTI_FTEN &= ~(uint32_t)linex; + + /* set the EXTI mode and enable the interrupts or events from EXTI line x */ + switch(mode){ + case EXTI_INTERRUPT: + EXTI_INTEN |= (uint32_t)linex; + break; + case EXTI_EVENT: + EXTI_EVEN |= (uint32_t)linex; + break; + default: + break; + } + + /* set the EXTI trigger type */ + switch(trig_type){ + case EXTI_TRIG_RISING: + EXTI_RTEN |= (uint32_t)linex; + EXTI_FTEN &= ~(uint32_t)linex; + break; + case EXTI_TRIG_FALLING: + EXTI_RTEN &= ~(uint32_t)linex; + EXTI_FTEN |= (uint32_t)linex; + break; + case EXTI_TRIG_BOTH: + EXTI_RTEN |= (uint32_t)linex; + EXTI_FTEN |= (uint32_t)linex; + break; + case EXTI_TRIG_NONE: + default: + break; + } +} + +/*! + \brief enable the interrupts from EXTI line x + \param[in] linex: EXTI line number, refer to exti_line_enum + only one parameter can be selected which is shown as below: + \arg EXTI_x (x=0..22): EXTI line x + \param[out] none + \retval none +*/ +void exti_interrupt_enable(exti_line_enum linex) +{ + EXTI_INTEN |= (uint32_t)linex; +} + +/*! + \brief disable the interrupt from EXTI line x + \param[in] linex: EXTI line number, refer to exti_line_enum + only one parameter can be selected which is shown as below: + \arg EXTI_x (x=0..22): EXTI line x + \param[out] none + \retval none +*/ +void exti_interrupt_disable(exti_line_enum linex) +{ + EXTI_INTEN &= ~(uint32_t)linex; +} + +/*! + \brief enable the events from EXTI line x + \param[in] linex: EXTI line number, refer to exti_line_enum + only one parameter can be selected which is shown as below: + \arg EXTI_x (x=0..22): EXTI line x + \param[out] none + \retval none +*/ +void exti_event_enable(exti_line_enum linex) +{ + EXTI_EVEN |= (uint32_t)linex; +} + +/*! + \brief disable the events from EXTI line x + \param[in] linex: EXTI line number, refer to exti_line_enum + only one parameter can be selected which is shown as below: + \arg EXTI_x (x=0..22): EXTI line x + \param[out] none + \retval none +*/ +void exti_event_disable(exti_line_enum linex) +{ + EXTI_EVEN &= ~(uint32_t)linex; +} + +/*! + \brief enable EXTI software interrupt event + \param[in] linex: EXTI line number, refer to exti_line_enum + only one parameter can be selected which is shown as below: + \arg EXTI_x (x=0..22): EXTI line x + \param[out] none + \retval none +*/ +void exti_software_interrupt_enable(exti_line_enum linex) +{ + EXTI_SWIEV |= (uint32_t)linex; +} + +/*! + \brief disable EXTI software interrupt event + \param[in] linex: EXTI line number, refer to exti_line_enum + only one parameter can be selected which is shown as below: + \arg EXTI_x (x=0..22): EXTI line x + \param[out] none + \retval none +*/ +void exti_software_interrupt_disable(exti_line_enum linex) +{ + EXTI_SWIEV &= ~(uint32_t)linex; +} + +/*! + \brief get EXTI lines flag + \param[in] linex: EXTI line number, refer to exti_line_enum + only one parameter can be selected which is shown as below: + \arg EXTI_x (x=0..22): EXTI line x + \param[out] none + \retval FlagStatus: status of flag (RESET or SET) +*/ +FlagStatus exti_flag_get(exti_line_enum linex) +{ + if(RESET != (EXTI_PD & (uint32_t)linex)){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear EXTI lines pending flag + \param[in] linex: EXTI line number, refer to exti_line_enum + only one parameter can be selected which is shown as below: + \arg EXTI_x (x=0..22): EXTI line x + \param[out] none + \retval none +*/ +void exti_flag_clear(exti_line_enum linex) +{ + EXTI_PD = (uint32_t)linex; +} + +/*! + \brief get EXTI lines flag when the interrupt flag is set + \param[in] linex: EXTI line number, refer to exti_line_enum + only one parameter can be selected which is shown as below: + \arg EXTI_x (x=0..22): EXTI line x + \param[out] none + \retval FlagStatus: status of flag (RESET or SET) +*/ +FlagStatus exti_interrupt_flag_get(exti_line_enum linex) +{ + uint32_t flag_left, flag_right; + + flag_left = EXTI_PD & (uint32_t)linex; + flag_right = EXTI_INTEN & (uint32_t)linex; + + if((RESET != flag_left) && (RESET != flag_right)){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear EXTI lines pending flag + \param[in] linex: EXTI line number, refer to exti_line_enum + only one parameter can be selected which is shown as below: + \arg EXTI_x (x=0..22): EXTI line x + \param[out] none + \retval none +*/ +void exti_interrupt_flag_clear(exti_line_enum linex) +{ + EXTI_PD = (uint32_t)linex; +} + diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_fmc.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_fmc.c new file mode 100644 index 0000000000..f0aa3d2ea8 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_fmc.c @@ -0,0 +1,932 @@ +/*! + \file gd32f4xx_fmc.c + \brief FMC driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + + +#include "gd32f4xx_fmc.h" + +/*! + \brief set the wait state counter value + \param[in] wscnt: wait state counter value + only one parameter can be selected which is shown as below: + \arg WS_WSCNT_0: FMC 0 wait + \arg WS_WSCNT_1: FMC 1 wait + \arg WS_WSCNT_2: FMC 2 wait + \arg WS_WSCNT_3: FMC 3 wait + \arg WS_WSCNT_4: FMC 4 wait + \arg WS_WSCNT_5: FMC 5 wait + \arg WS_WSCNT_6: FMC 6 wait + \arg WS_WSCNT_7: FMC 7 wait + \arg WS_WSCNT_8: FMC 8 wait + \arg WS_WSCNT_9: FMC 9 wait + \arg WS_WSCNT_10: FMC 10 wait + \arg WS_WSCNT_11: FMC 11 wait + \arg WS_WSCNT_12: FMC 12 wait + \arg WS_WSCNT_13: FMC 13 wait + \arg WS_WSCNT_14: FMC 14 wait + \arg WS_WSCNT_15: FMC 15 wait + \param[out] none + \retval none +*/ +void fmc_wscnt_set(uint32_t wscnt) +{ + uint32_t reg; + + reg = FMC_WS; + /* set the wait state counter value */ + reg &= ~FMC_WC_WSCNT; + FMC_WS = (reg | wscnt); +} + +/*! + \brief unlock the main FMC operation + \param[in] none + \param[out] none + \retval none +*/ +void fmc_unlock(void) +{ + if((RESET != (FMC_CTL & FMC_CTL_LK))){ + /* write the FMC key */ + FMC_KEY = UNLOCK_KEY0; + FMC_KEY = UNLOCK_KEY1; + } +} + +/*! + \brief lock the main FMC operation + \param[in] none + \param[out] none + \retval none +*/ +void fmc_lock(void) +{ + /* set the LK bit*/ + FMC_CTL |= FMC_CTL_LK; +} + +/*! + \brief erase sector + \param[in] fmc_sector: select the sector to erase + only one parameter can be selected which is shown as below: + \arg CTL_SECTOR_NUMBER_0: sector 0 + \arg CTL_SECTOR_NUMBER_1: sector 1 + \arg CTL_SECTOR_NUMBER_2: sector 2 + \arg CTL_SECTOR_NUMBER_3: sector 3 + \arg CTL_SECTOR_NUMBER_4: sector 4 + \arg CTL_SECTOR_NUMBER_5: sector 5 + \arg CTL_SECTOR_NUMBER_6: sector 6 + \arg CTL_SECTOR_NUMBER_7: sector 7 + \arg CTL_SECTOR_NUMBER_8: sector 8 + \arg CTL_SECTOR_NUMBER_9: sector 9 + \arg CTL_SECTOR_NUMBER_10: sector 10 + \arg CTL_SECTOR_NUMBER_11: sector 11 + \arg CTL_SECTOR_NUMBER_12: sector 12 + \arg CTL_SECTOR_NUMBER_13: sector 13 + \arg CTL_SECTOR_NUMBER_14: sector 14 + \arg CTL_SECTOR_NUMBER_15: sector 15 + \arg CTL_SECTOR_NUMBER_16: sector 16 + \arg CTL_SECTOR_NUMBER_17: sector 17 + \arg CTL_SECTOR_NUMBER_18: sector 18 + \arg CTL_SECTOR_NUMBER_19: sector 19 + \arg CTL_SECTOR_NUMBER_20: sector 20 + \arg CTL_SECTOR_NUMBER_21: sector 21 + \arg CTL_SECTOR_NUMBER_22: sector 22 + \arg CTL_SECTOR_NUMBER_23: sector 23 + \arg CTL_SECTOR_NUMBER_24: sector 24 + \arg CTL_SECTOR_NUMBER_25: sector 25 + \arg CTL_SECTOR_NUMBER_26: sector 26 + \arg CTL_SECTOR_NUMBER_27: sector 27 + \param[out] none + \retval state of FMC + \arg FMC_READY: the operation has been completed + \arg FMC_BUSY: the operation is in progress + \arg FMC_RDDERR: read D-bus protection error + \arg FMC_PGSERR: program sequence error + \arg FMC_PGMERR: program size not match error + \arg FMC_WPERR: erase/program protection error + \arg FMC_OPERR: operation error + \arg FMC_PGERR: program error +*/ +fmc_state_enum fmc_sector_erase(uint32_t fmc_sector) +{ + fmc_state_enum fmc_state = FMC_READY; + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + if(FMC_READY == fmc_state){ + /* start sector erase */ + FMC_CTL &= ~FMC_CTL_SN; + FMC_CTL |= (FMC_CTL_SER | fmc_sector); + FMC_CTL |= FMC_CTL_START; + + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + /* reset the SER bit */ + FMC_CTL &= (~FMC_CTL_SER); + FMC_CTL &= ~FMC_CTL_SN; + } + + /* return the FMC state */ + return fmc_state; +} + +/*! + \brief erase whole chip + \param[in] none + \param[out] none + \retval state of FMC + \arg FMC_READY: the operation has been completed + \arg FMC_BUSY: the operation is in progress + \arg FMC_RDDERR: read D-bus protection error + \arg FMC_PGSERR: program sequence error + \arg FMC_PGMERR: program size not match error + \arg FMC_WPERR: erase/program protection error + \arg FMC_OPERR: operation error + \arg FMC_PGERR: program error +*/ +fmc_state_enum fmc_mass_erase(void) +{ + fmc_state_enum fmc_state = FMC_READY; + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + if(FMC_READY == fmc_state){ + /* start whole chip erase */ + FMC_CTL |= (FMC_CTL_MER0 | FMC_CTL_MER1); + FMC_CTL |= FMC_CTL_START; + + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + /* reset the MER bits */ + FMC_CTL &= ~(FMC_CTL_MER0 | FMC_CTL_MER1); + } + + /* return the fmc state */ + return fmc_state; +} + +/*! + \brief erase all FMC sectors in bank0 + \param[in] none + \param[out] none + \retval state of FMC + \arg FMC_READY: the operation has been completed + \arg FMC_BUSY: the operation is in progress + \arg FMC_RDDERR: read D-bus protection error + \arg FMC_PGSERR: program sequence error + \arg FMC_PGMERR: program size not match error + \arg FMC_WPERR: erase/program protection error + \arg FMC_OPERR: operation error + \arg FMC_PGERR: program error +*/ +fmc_state_enum fmc_bank0_erase(void) +{ + fmc_state_enum fmc_state = FMC_READY; + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + if(FMC_READY == fmc_state){ + /* start FMC bank0 erase */ + FMC_CTL |= FMC_CTL_MER0; + FMC_CTL |= FMC_CTL_START; + + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + /* reset the MER0 bit */ + FMC_CTL &= (~FMC_CTL_MER0); + } + + /* return the fmc state */ + return fmc_state; +} + +/*! + \brief erase all FMC sectors in bank1 + \param[in] none + \param[out] none + \retval state of FMC + \arg FMC_READY: the operation has been completed + \arg FMC_BUSY: the operation is in progress + \arg FMC_RDDERR: read D-bus protection error + \arg FMC_PGSERR: program sequence error + \arg FMC_PGMERR: program size not match error + \arg FMC_WPERR: erase/program protection error + \arg FMC_OPERR: operation error + \arg FMC_PGERR: program error +*/ +fmc_state_enum fmc_bank1_erase(void) +{ + fmc_state_enum fmc_state = FMC_READY; + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + if(FMC_READY == fmc_state){ + /* start FMC bank1 erase */ + FMC_CTL |= FMC_CTL_MER1; + FMC_CTL |= FMC_CTL_START; + + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + /* reset the MER1 bit */ + FMC_CTL &= (~FMC_CTL_MER1); + } + + /* return the fmc state */ + return fmc_state; +} + +/*! + \brief program a word at the corresponding address + \param[in] address: address to program + \param[in] data: word to program(0x00000000 - 0xFFFFFFFF) + \param[out] none + \retval state of FMC + \arg FMC_READY: the operation has been completed + \arg FMC_BUSY: the operation is in progress + \arg FMC_RDDERR: read D-bus protection error + \arg FMC_PGSERR: program sequence error + \arg FMC_PGMERR: program size not match error + \arg FMC_WPERR: erase/program protection error + \arg FMC_OPERR: operation error + \arg FMC_PGERR: program error +*/ +fmc_state_enum fmc_word_program(uint32_t address, uint32_t data) +{ + fmc_state_enum fmc_state = FMC_READY; + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + if(FMC_READY == fmc_state){ + /* set the PG bit to start program */ + FMC_CTL &= ~FMC_CTL_PSZ; + FMC_CTL |= CTL_PSZ_WORD; + FMC_CTL |= FMC_CTL_PG; + + REG32(address) = data; + + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + /* reset the PG bit */ + FMC_CTL &= ~FMC_CTL_PG; + } + + /* return the FMC state */ + return fmc_state; +} + +/*! + \brief program a half word at the corresponding address + \param[in] address: address to program + \param[in] data: halfword to program(0x0000 - 0xFFFF) + \param[out] none + \retval state of FMC + \arg FMC_READY: the operation has been completed + \arg FMC_BUSY: the operation is in progress + \arg FMC_RDDERR: read D-bus protection error + \arg FMC_PGSERR: program sequence error + \arg FMC_PGMERR: program size not match error + \arg FMC_WPERR: erase/program protection error + \arg FMC_OPERR: operation error + \arg FMC_PGERR: program error +*/ +fmc_state_enum fmc_halfword_program(uint32_t address, uint16_t data) +{ + fmc_state_enum fmc_state = FMC_READY; + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + if(FMC_READY == fmc_state){ + /* set the PG bit to start program */ + FMC_CTL &= ~FMC_CTL_PSZ; + FMC_CTL |= CTL_PSZ_HALF_WORD; + FMC_CTL |= FMC_CTL_PG; + + REG16(address) = data; + + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + /* reset the PG bit */ + FMC_CTL &= ~FMC_CTL_PG; + } + + /* return the FMC state */ + return fmc_state; +} + +/*! + \brief program a byte at the corresponding address + \param[in] address: address to program + \param[in] data: byte to program(0x00 - 0xFF) + \param[out] none + \retval state of FMC + \arg FMC_READY: the operation has been completed + \arg FMC_BUSY: the operation is in progress + \arg FMC_RDDERR: read D-bus protection error + \arg FMC_PGSERR: program sequence error + \arg FMC_PGMERR: program size not match error + \arg FMC_WPERR: erase/program protection error + \arg FMC_OPERR: operation error + \arg FMC_PGERR: program error +*/ +fmc_state_enum fmc_byte_program(uint32_t address, uint8_t data) +{ + fmc_state_enum fmc_state = FMC_READY; + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + if(FMC_READY == fmc_state){ + /* set the PG bit to start program */ + FMC_CTL &= ~FMC_CTL_PSZ; + FMC_CTL |= CTL_PSZ_BYTE; + FMC_CTL |= FMC_CTL_PG; + + REG8(address) = data; + + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + /* reset the PG bit */ + FMC_CTL &= ~FMC_CTL_PG; + } + + /* return the FMC state */ + return fmc_state; +} + +/*! + \brief unlock the option byte operation + \param[in] none + \param[out] none + \retval none +*/ +void ob_unlock(void) +{ + if(RESET != (FMC_OBCTL0 & FMC_OBCTL0_OB_LK)){ + /* write the FMC key */ + FMC_OBKEY = OB_UNLOCK_KEY0; + FMC_OBKEY = OB_UNLOCK_KEY1; + } +} + +/*! + \brief lock the option byte operation + \param[in] none + \param[out] none + \retval none +*/ +void ob_lock(void) +{ + /* reset the OB_LK bit */ + FMC_OBCTL0 |= FMC_OBCTL0_OB_LK; +} + +/*! + \brief send option byte change command + \param[in] none + \param[out] none + \retval none +*/ +void ob_start(void) +{ + fmc_state_enum fmc_state = FMC_READY; + /* set the OB_START bit in OBCTL0 register */ + FMC_OBCTL0 |= FMC_OBCTL0_OB_START; + fmc_state = fmc_ready_wait(); + if(FMC_READY != fmc_state){ + while(1){ + } + } +} + +/*! + \brief erase option byte + \param[in] none + \param[out] none + \retval none +*/ +void ob_erase(void) +{ + uint32_t reg, reg1; + fmc_state_enum fmc_state = FMC_READY; + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + if(FMC_READY == fmc_state){ + reg = FMC_OBCTL0; + reg1 = FMC_OBCTL1; + + /* reset the OB_FWDGT, OB_DEEPSLEEP and OB_STDBY, set according to ob_fwdgt ,ob_deepsleep and ob_stdby */ + reg |= (FMC_OBCTL0_NWDG_HW | FMC_OBCTL0_NRST_DPSLP | FMC_OBCTL0_NRST_STDBY); + /* reset the BOR level */ + reg |= FMC_OBCTL0_BOR_TH; + /* reset option byte boot bank value */ + reg &= ~FMC_OBCTL0_BB; + /* reset option byte dbs value */ + reg &= ~FMC_OBCTL0_DBS; + + /* reset drp and wp value */ + reg |= FMC_OBCTL0_WP0; + reg &= (~FMC_OBCTL0_DRP); + FMC_OBCTL0 = reg; + + reg1 |= FMC_OBCTL1_WP1; + FMC_OBCTL1 = reg1; + + FMC_OBCTL0 = reg; + } +} + +/*! + \brief enable write protection + \param[in] ob_wp: specify sector to be write protected + one or more parameters can be selected which are shown as below: + \arg OB_WP_x(x=0..22):sector x(x = 0,1,2...22) + \arg OB_WP_23_27: sector23~27 + \arg OB_WP_ALL: all sector + \param[out] none + \retval none +*/ +void ob_write_protection_enable(uint32_t ob_wp) +{ + uint32_t reg0 = FMC_OBCTL0; + uint32_t reg1 = FMC_OBCTL1; + fmc_state_enum fmc_state = FMC_READY; + if(RESET != (FMC_OBCTL0 & FMC_OBCTL0_DRP)){ + while(1){ + } + } + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + if(FMC_READY == fmc_state){ + reg0 &= (~((uint32_t)ob_wp << 16)); + reg1 &= (~(ob_wp & 0xFFFF0000U)); + FMC_OBCTL0 = reg0; + FMC_OBCTL1 = reg1; + } +} + +/*! + \brief disable write protection + \param[in] ob_wp: specify sector to be write protected + one or more parameters can be selected which are shown as below: + \arg OB_WP_x(x=0..22):sector x(x = 0,1,2...22) + \arg OB_WP_23_27: sector23~27 + \arg OB_WP_ALL: all sector + \param[out] none + \retval none +*/ +void ob_write_protection_disable(uint32_t ob_wp) +{ + uint32_t reg0 = FMC_OBCTL0; + uint32_t reg1 = FMC_OBCTL1; + fmc_state_enum fmc_state = FMC_READY; + if(RESET != (FMC_OBCTL0 & FMC_OBCTL0_DRP)){ + while(1){ + } + } + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + if(FMC_READY == fmc_state){ + reg0 |= ((uint32_t)ob_wp << 16); + reg1 |= (ob_wp & 0xFFFF0000U); + FMC_OBCTL0 = reg0; + FMC_OBCTL1 = reg1; + } +} + +/*! + \brief enable erase/program protection and D-bus read protection + \param[in] ob_drp: enable the WPx bits used as erase/program protection and D-bus read protection of each sector + one or more parameters can be selected which are shown as below: + \arg OB_DRP_x(x=0..22): sector x(x = 0,1,2...22) + \arg OB_DRP_23_27: sector23~27 + \arg OB_DRP_ALL: all sector + \param[out] none + \retval none +*/ +void ob_drp_enable(uint32_t ob_drp) +{ + uint32_t reg0 = FMC_OBCTL0; + uint32_t reg1 = FMC_OBCTL1; + fmc_state_enum fmc_state = FMC_READY; + uint32_t drp_state = FMC_OBCTL0 & FMC_OBCTL0_DRP; + uint32_t wp0_state = FMC_OBCTL0 & FMC_OBCTL0_WP0; + uint32_t wp1_state = FMC_OBCTL1 & FMC_OBCTL1_WP1; + /*disable write protection before enable D-bus read protection*/ + if((RESET != drp_state) && ((FMC_OBCTL0_WP0 != wp0_state) && (FMC_OBCTL1_WP1 != wp1_state))){ + while(1){ + } + } + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + if(FMC_READY == fmc_state){ + reg0 &= ~FMC_OBCTL0_WP0; + reg1 &= ~FMC_OBCTL1_WP1; + reg0 |= ((uint32_t)ob_drp << 16); + reg1 |= ((uint32_t)ob_drp & 0xFFFF0000U); + FMC_OBCTL0 = reg0; + FMC_OBCTL1 = reg1; + FMC_OBCTL0 |= FMC_OBCTL0_DRP; + } +} + +/*! + \brief disable erase/program protection and D-bus read protection + \param[in] ob_drp: disable the WPx bits used as erase/program protection and D-bus read protection of each sector + one or more parameters can be selected which are shown as below: + \arg OB_DRP_x(x=0..22): sector x(x = 0,1,2...22) + \arg OB_DRP_23_27: sector23~27 + \arg OB_DRP_ALL: all sector + \param[out] none + \retval none +*/ +void ob_drp_disable(uint32_t ob_drp) +{ + uint32_t reg0 = FMC_OBCTL0; + uint32_t reg1 = FMC_OBCTL1; + fmc_state_enum fmc_state = FMC_READY; + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + if(FMC_READY == fmc_state){ + reg0 |= FMC_OBCTL0_WP0; + reg0 &= (~FMC_OBCTL0_DRP); + FMC_OBCTL0 = reg0; + + reg1 |= FMC_OBCTL1_WP1; + FMC_OBCTL1 = reg1; + } +} + +/*! + \brief configure security protection level + \param[in] ob_spc: specify security protection level + only one parameter can be selected which is shown as below: + \arg FMC_NSPC: no security protection + \arg FMC_LSPC: low security protection + \arg FMC_HSPC: high security protection + \param[out] none + \retval none +*/ +void ob_security_protection_config(uint8_t ob_spc) +{ + fmc_state_enum fmc_state = FMC_READY; + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + if(FMC_READY == fmc_state){ + uint32_t reg; + + reg = FMC_OBCTL0; + /* reset the OBCTL0_SPC, set according to ob_spc */ + reg &= ~FMC_OBCTL0_SPC; + reg |= ((uint32_t)ob_spc << 8); + FMC_OBCTL0 = reg; + } +} + +/*! + \brief program the FMC user option byte + \param[in] ob_fwdgt: option byte watchdog value + only one parameter can be selected which is shown as below: + \arg OB_FWDGT_SW: software free watchdog + \arg OB_FWDGT_HW: hardware free watchdog + \param[in] ob_deepsleep: option byte deepsleep reset value + only one parameter can be selected which is shown as below: + \arg OB_DEEPSLEEP_NRST: no reset when entering deepsleep mode + \arg OB_DEEPSLEEP_RST: generate a reset instead of entering deepsleep mode + \param[in] ob_stdby:option byte standby reset value + only one parameter can be selected which is shown as below: + \arg OB_STDBY_NRST: no reset when entering standby mode + \arg OB_STDBY_RST: generate a reset instead of entering standby mode + \param[out] none + \retval none +*/ +void ob_user_write(uint32_t ob_fwdgt, uint32_t ob_deepsleep, uint32_t ob_stdby) +{ + fmc_state_enum fmc_state = FMC_READY; + + /* wait for the FMC ready */ + fmc_state = fmc_ready_wait(); + + if(FMC_READY == fmc_state){ + uint32_t reg; + + reg = FMC_OBCTL0; + /* reset the OB_FWDGT, OB_DEEPSLEEP and OB_STDBY, set according to ob_fwdgt ,ob_deepsleep and ob_stdby */ + reg &= ~(FMC_OBCTL0_NWDG_HW | FMC_OBCTL0_NRST_DPSLP | FMC_OBCTL0_NRST_STDBY); + FMC_OBCTL0 = (reg | ob_fwdgt | ob_deepsleep | ob_stdby); + } +} + +/*! + \brief program the option byte BOR threshold value + \param[in] ob_bor_th: user option byte + only one parameter can be selected which is shown as below: + \arg OB_BOR_TH_VALUE3: BOR threshold value 3 + \arg OB_BOR_TH_VALUE2: BOR threshold value 2 + \arg OB_BOR_TH_VALUE1: BOR threshold value 1 + \arg OB_BOR_TH_OFF: no BOR function + \param[out] none + \retval none +*/ +void ob_user_bor_threshold(uint32_t ob_bor_th) +{ + uint32_t reg; + + reg = FMC_OBCTL0; + /* set the BOR level */ + reg &= ~FMC_OBCTL0_BOR_TH; + FMC_OBCTL0 = (reg | ob_bor_th); +} + +/*! + \brief configure the option byte boot bank value + \param[in] boot_mode: specifies the option byte boot bank value + only one parameter can be selected which is shown as below: + \arg OB_BB_DISABLE: boot from bank0 + \arg OB_BB_ENABLE: boot from bank1 or bank0 if bank1 is void + \param[out] none + \retval none +*/ +void ob_boot_mode_config(uint32_t boot_mode) +{ + uint32_t reg; + + reg = FMC_OBCTL0; + /* set option byte boot bank value */ + reg &= ~FMC_OBCTL0_BB; + FMC_OBCTL0 = (reg | boot_mode); +} + +/*! + \brief get the FMC user option byte + \param[in] none + \param[out] none + \retval the FMC user option byte values: ob_fwdgt(Bit0), ob_deepsleep(Bit1), ob_stdby(Bit2) +*/ +uint8_t ob_user_get(void) +{ + return (uint8_t)((uint8_t)(FMC_OBCTL0 >> 5) & (uint8_t)0x07); +} + +/*! + \brief get the FMC option byte write protection + \param[in] none + \param[out] none + \retval the FMC write protection option byte value +*/ +uint16_t ob_write_protection0_get(void) +{ + /* return the FMC write protection option byte value */ + return (uint16_t)(((uint16_t)(FMC_OBCTL0 >> 16)) & (uint16_t)0x0FFF); +} + +/*! + \brief get the FMC option byte write protection + \param[in] none + \param[out] none + \retval the FMC write protection option byte value +*/ +uint16_t ob_write_protection1_get(void) +{ + /* return the the FMC write protection option byte value */ + return (uint16_t)(((uint16_t)(FMC_OBCTL1 >> 16)) & (uint16_t)0x0FFF); +} + +/*! + \brief get the FMC D-bus read protection protection + \param[in] none + \param[out] none + \retval the FMC erase/program protection and D-bus read protection option bytes value +*/ +uint16_t ob_drp0_get(void) +{ + /* return the FMC erase/program protection and D-bus read protection option bytes value */ + return (uint16_t)(((uint16_t)(FMC_OBCTL0 >> 16)) & (uint16_t)0x0FFF); +} + +/*! + \brief get the FMC D-bus read protection protection + \param[in] none + \param[out] none + \retval the FMC erase/program protection and D-bus read protection option bytes value +*/ +uint16_t ob_drp1_get(void) +{ + /* return the FMC erase/program protection and D-bus read protection option bytes value */ + return (uint16_t)(((uint16_t)(FMC_OBCTL1 >> 16)) & (uint16_t)0x0FFF); +} + +/*! + \brief get the FMC option byte security protection + \param[in] none + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus ob_spc_get(void) +{ + FlagStatus spc_state = RESET; + + if (((uint8_t)(FMC_OBCTL0 >> 8)) != (uint8_t)FMC_NSPC){ + spc_state = SET; + }else{ + spc_state = RESET; + } + return spc_state; +} + +/*! + \brief get the FMC option byte BOR threshold value + \param[in] none + \param[out] none + \retval the FMC BOR threshold value:OB_BOR_TH_OFF,OB_BOR_TH_VALUE1,OB_BOR_TH_VALUE2,OB_BOR_TH_VALUE3 +*/ +uint8_t ob_user_bor_threshold_get(void) +{ + /* return the FMC BOR threshold value */ + return (uint8_t)((uint8_t)FMC_OBCTL0 & (uint8_t)0x0C); +} + +/*! + \brief enable FMC interrupt + \param[in] fmc_int: the FMC interrupt source + only one parameter can be selected which is shown as below: + \arg FMC_INT_END: enable FMC end of program interrupt + \arg FMC_INT_ERR: enable FMC error interrupt + \param[out] none + \retval none +*/ +void fmc_interrupt_enable(uint32_t fmc_int) +{ + FMC_CTL |= fmc_int; +} + +/*! + \brief disable FMC interrupt + \param[in] fmc_int: the FMC interrupt source + only one parameter can be selected which is shown as below: + \arg FMC_INT_END: disable FMC end of program interrupt + \arg FMC_INT_ERR: disable FMC error interrupt + \param[out] none + \retval none +*/ +void fmc_interrupt_disable(uint32_t fmc_int) +{ + FMC_CTL &= ~(uint32_t)fmc_int; +} + +/*! + \brief get flag set or reset + \param[in] fmc_flag: check FMC flag + only one parameter can be selected which is shown as below: + \arg FMC_FLAG_BUSY: FMC busy flag bit + \arg FMC_FLAG_RDDERR: FMC read D-bus protection error flag bit + \arg FMC_FLAG_PGSERR: FMC program sequence error flag bit + \arg FMC_FLAG_PGMERR: FMC program size not match error flag bit + \arg FMC_FLAG_WPERR: FMC Erase/Program protection error flag bit + \arg FMC_FLAG_OPERR: FMC operation error flag bit + \arg FMC_FLAG_END: FMC end of operation flag bit + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus fmc_flag_get(uint32_t fmc_flag) +{ + if(FMC_STAT & fmc_flag){ + return SET; + } + /* return the state of corresponding FMC flag */ + return RESET; +} + +/*! + \brief clear the FMC pending flag + \param[in] FMC_flag: clear FMC flag + only one parameter can be selected which is shown as below: + \arg FMC_FLAG_RDDERR: FMC read D-bus protection error flag bit + \arg FMC_FLAG_PGSERR: FMC program sequence error flag bit + \arg FMC_FLAG_PGMERR: FMC program size not match error flag bit + \arg FMC_FLAG_WPERR: FMC erase/program protection error flag bit + \arg FMC_FLAG_OPERR: FMC operation error flag bit + \arg FMC_FLAG_END: FMC end of operation flag bit + \param[out] none + \retval none +*/ +void fmc_flag_clear(uint32_t fmc_flag) +{ + /* clear the flags */ + FMC_STAT = fmc_flag; +} + +/*! + \brief get the FMC state + \param[in] none + \param[out] none + \retval state of FMC + \arg FMC_READY: the operation has been completed + \arg FMC_BUSY: the operation is in progress + \arg FMC_RDDERR: read D-bus protection error + \arg FMC_PGSERR: program sequence error + \arg FMC_PGMERR: program size not match error + \arg FMC_WPERR: erase/program protection error + \arg FMC_OPERR: operation error + \arg FMC_PGERR: program error +*/ +fmc_state_enum fmc_state_get(void) +{ + fmc_state_enum fmc_state = FMC_READY; + + if((FMC_STAT & FMC_FLAG_BUSY) == FMC_FLAG_BUSY){ + fmc_state = FMC_BUSY; + }else{ + if((FMC_STAT & FMC_FLAG_WPERR) != (uint32_t)0x00){ + fmc_state = FMC_WPERR; + }else{ + if((FMC_STAT & FMC_FLAG_RDDERR) != (uint32_t)0x00){ + fmc_state = FMC_RDDERR; + }else{ + if((FMC_STAT & (uint32_t)0xEF) != (uint32_t)0x00){ + fmc_state = FMC_PGERR; + }else{ + if((FMC_STAT & FMC_FLAG_OPERR) != (uint32_t)0x00){ + fmc_state = FMC_OPERR; + }else{ + fmc_state = FMC_READY; + } + } + } + } + } + /* return the FMC state */ + return fmc_state; +} + +/*! + \brief check whether FMC is ready or not + \param[in] none + \param[out] none + \retval state of FMC + \arg FMC_READY: the operation has been completed + \arg FMC_BUSY: the operation is in progress + \arg FMC_RDDERR: read D-bus protection error + \arg FMC_PGSERR: program sequence error + \arg FMC_PGMERR: program size not match error + \arg FMC_WPERR: erase/program protection error + \arg FMC_OPERR: operation error + \arg FMC_PGERR: program error +*/ +fmc_state_enum fmc_ready_wait(void) +{ + fmc_state_enum fmc_state = FMC_BUSY; + + /* wait for FMC ready */ + do{ + /* get FMC state */ + fmc_state = fmc_state_get(); + }while(FMC_BUSY == fmc_state); + + /* return the FMC state */ + return fmc_state; +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_fwdgt.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_fwdgt.c new file mode 100644 index 0000000000..7ddaf1dc03 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_fwdgt.c @@ -0,0 +1,157 @@ +/*! + \file gd32f4xx_fwdgt.c + \brief FWDGT driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_fwdgt.h" + +/* write value to FWDGT_CTL_CMD bit field */ +#define CTL_CMD(regval) (BITS(0,15) & ((uint32_t)(regval) << 0)) +/* write value to FWDGT_RLD_RLD bit field */ +#define RLD_RLD(regval) (BITS(0,11) & ((uint32_t)(regval) << 0)) + +/*! + \brief enable write access to FWDGT_PSC and FWDGT_RLD + \param[in] none + \param[out] none + \retval none +*/ +void fwdgt_write_enable(void) +{ + FWDGT_CTL = FWDGT_WRITEACCESS_ENABLE; +} + +/*! + \brief disable write access to FWDGT_PSC and FWDGT_RLD + \param[in] none + \param[out] none + \retval none +*/ +void fwdgt_write_disable(void) +{ + FWDGT_CTL = FWDGT_WRITEACCESS_DISABLE; +} + +/*! + \brief start the free watchdog timer counter + \param[in] none + \param[out] none + \retval none +*/ +void fwdgt_enable(void) +{ + FWDGT_CTL = FWDGT_KEY_ENABLE; +} + +/*! + \brief reload the counter of FWDGT + \param[in] none + \param[out] none + \retval none +*/ +void fwdgt_counter_reload(void) +{ + FWDGT_CTL = FWDGT_KEY_RELOAD; +} + +/*! + \brief configure counter reload value, and prescaler divider value + \param[in] reload_value: specify reload value(0x0000 - 0x0FFF) + \param[in] prescaler_div: FWDGT prescaler value + only one parameter can be selected which is shown as below: + \arg FWDGT_PSC_DIV4: FWDGT prescaler set to 4 + \arg FWDGT_PSC_DIV8: FWDGT prescaler set to 8 + \arg FWDGT_PSC_DIV16: FWDGT prescaler set to 16 + \arg FWDGT_PSC_DIV32: FWDGT prescaler set to 32 + \arg FWDGT_PSC_DIV64: FWDGT prescaler set to 64 + \arg FWDGT_PSC_DIV128: FWDGT prescaler set to 128 + \arg FWDGT_PSC_DIV256: FWDGT prescaler set to 256 + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus fwdgt_config(uint16_t reload_value, uint8_t prescaler_div) +{ + uint32_t timeout = FWDGT_PSC_TIMEOUT; + uint32_t flag_status = RESET; + + /* enable write access to FWDGT_PSC,and FWDGT_RLD */ + FWDGT_CTL = FWDGT_WRITEACCESS_ENABLE; + + /* wait until the PUD flag to be reset */ + do{ + flag_status = FWDGT_STAT & FWDGT_STAT_PUD; + }while((--timeout > 0U) && ((uint32_t)RESET != flag_status)); + + if ((uint32_t)RESET != flag_status){ + return ERROR; + } + + /* configure FWDGT */ + FWDGT_PSC = (uint32_t)prescaler_div; + + timeout = FWDGT_RLD_TIMEOUT; + /* wait until the RUD flag to be reset */ + do{ + flag_status = FWDGT_STAT & FWDGT_STAT_RUD; + }while((--timeout > 0U) && ((uint32_t)RESET != flag_status)); + + if ((uint32_t)RESET != flag_status){ + return ERROR; + } + + FWDGT_RLD = RLD_RLD(reload_value); + + /* reload the counter */ + FWDGT_CTL = FWDGT_KEY_RELOAD; + + return SUCCESS; +} + +/*! + \brief get flag state of FWDGT + \param[in] flag: flag to get + only one parameter can be selected which is shown as below: + \arg FWDGT_STAT_PUD: a write operation to FWDGT_PSC register is on going + \arg FWDGT_STAT_RUD: a write operation to FWDGT_RLD register is on going + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus fwdgt_flag_get(uint16_t flag) +{ + if(RESET != (FWDGT_STAT & flag)){ + return SET; + } + + return RESET; +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_gpio.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_gpio.c new file mode 100644 index 0000000000..e0ded56f74 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_gpio.c @@ -0,0 +1,433 @@ +/*! + \file gd32f4xx_gpio.c + \brief GPIO driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_gpio.h" + +/*! + \brief reset GPIO port + \param[in] gpio_periph: GPIO port + only one parameter can be selected which is shown as below: + \arg GPIOx(x = A,B,C,D,E,F,G,H,I) + \param[out] none + \retval none +*/ +void gpio_deinit(uint32_t gpio_periph) +{ + switch(gpio_periph){ + case GPIOA: + /* reset GPIOA */ + rcu_periph_reset_enable(RCU_GPIOARST); + rcu_periph_reset_disable(RCU_GPIOARST); + break; + case GPIOB: + /* reset GPIOB */ + rcu_periph_reset_enable(RCU_GPIOBRST); + rcu_periph_reset_disable(RCU_GPIOBRST); + break; + case GPIOC: + /* reset GPIOC */ + rcu_periph_reset_enable(RCU_GPIOCRST); + rcu_periph_reset_disable(RCU_GPIOCRST); + break; + case GPIOD: + /* reset GPIOD */ + rcu_periph_reset_enable(RCU_GPIODRST); + rcu_periph_reset_disable(RCU_GPIODRST); + break; + case GPIOE: + /* reset GPIOE */ + rcu_periph_reset_enable(RCU_GPIOERST); + rcu_periph_reset_disable(RCU_GPIOERST); + break; + case GPIOF: + /* reset GPIOF */ + rcu_periph_reset_enable(RCU_GPIOFRST); + rcu_periph_reset_disable(RCU_GPIOFRST); + break; + case GPIOG: + /* reset GPIOG */ + rcu_periph_reset_enable(RCU_GPIOGRST); + rcu_periph_reset_disable(RCU_GPIOGRST); + break; + case GPIOH: + /* reset GPIOH */ + rcu_periph_reset_enable(RCU_GPIOHRST); + rcu_periph_reset_disable(RCU_GPIOHRST); + break; + case GPIOI: + /* reset GPIOI */ + rcu_periph_reset_enable(RCU_GPIOIRST); + rcu_periph_reset_disable(RCU_GPIOIRST); + break; + default: + break; + } +} + +/*! + \brief set GPIO mode + \param[in] gpio_periph: GPIO port + only one parameter can be selected which is shown as below: + \arg GPIOx(x = A,B,C,D,E,F,G,H,I) + \param[in] mode: GPIO pin mode + \arg GPIO_MODE_INPUT: input mode + \arg GPIO_MODE_OUTPUT: output mode + \arg GPIO_MODE_AF: alternate function mode + \arg GPIO_MODE_ANALOG: analog mode + \param[in] pull_up_down: GPIO pin with pull-up or pull-down resistor + \arg GPIO_PUPD_NONE: floating mode, no pull-up and pull-down resistors + \arg GPIO_PUPD_PULLUP: with pull-up resistor + \arg GPIO_PUPD_PULLDOWN:with pull-down resistor + \param[in] pin: GPIO pin + one or more parameters can be selected which are shown as below: + \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL + \param[out] none + \retval none +*/ +void gpio_mode_set(uint32_t gpio_periph, uint32_t mode, uint32_t pull_up_down, uint32_t pin) +{ + uint16_t i; + uint32_t ctl, pupd; + + ctl = GPIO_CTL(gpio_periph); + pupd = GPIO_PUD(gpio_periph); + + for(i = 0U;i < 16U;i++){ + if((1U << i) & pin){ + /* clear the specified pin mode bits */ + ctl &= ~GPIO_MODE_MASK(i); + /* set the specified pin mode bits */ + ctl |= GPIO_MODE_SET(i, mode); + + /* clear the specified pin pupd bits */ + pupd &= ~GPIO_PUPD_MASK(i); + /* set the specified pin pupd bits */ + pupd |= GPIO_PUPD_SET(i, pull_up_down); + } + } + + GPIO_CTL(gpio_periph) = ctl; + GPIO_PUD(gpio_periph) = pupd; +} + +/*! + \brief set GPIO output type and speed + \param[in] gpio_periph: GPIO port + only one parameter can be selected which is shown as below: + \arg GPIOx(x = A,B,C,D,E,F,G,H,I) + \param[in] otype: GPIO pin output mode + \arg GPIO_OTYPE_PP: push pull mode + \arg GPIO_OTYPE_OD: open drain mode + \param[in] speed: GPIO pin output max speed + \arg GPIO_OSPEED_2MHZ: output max speed 2MHz + \arg GPIO_OSPEED_25MHZ: output max speed 25MHz + \arg GPIO_OSPEED_50MHZ: output max speed 50MHz + \arg GPIO_OSPEED_200MHZ: output max speed 200MHz + \param[in] pin: GPIO pin + one or more parameters can be selected which are shown as below: + \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL + \param[out] none + \retval none +*/ +void gpio_output_options_set(uint32_t gpio_periph, uint8_t otype, uint32_t speed, uint32_t pin) +{ + uint16_t i; + uint32_t ospeedr; + + if(GPIO_OTYPE_OD == otype){ + GPIO_OMODE(gpio_periph) |= (uint32_t)pin; + }else{ + GPIO_OMODE(gpio_periph) &= (uint32_t)(~pin); + } + + /* get the specified pin output speed bits value */ + ospeedr = GPIO_OSPD(gpio_periph); + + for(i = 0U;i < 16U;i++){ + if((1U << i) & pin){ + /* clear the specified pin output speed bits */ + ospeedr &= ~GPIO_OSPEED_MASK(i); + /* set the specified pin output speed bits */ + ospeedr |= GPIO_OSPEED_SET(i,speed); + } + } + GPIO_OSPD(gpio_periph) = ospeedr; +} + +/*! + \brief set GPIO pin bit + \param[in] gpio_periph: GPIO port + only one parameter can be selected which is shown as below: + \arg GPIOx(x = A,B,C,D,E,F,G,H,I) + \param[in] pin: GPIO pin + one or more parameters can be selected which are shown as below: + \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL + \param[out] none + \retval none +*/ +void gpio_bit_set(uint32_t gpio_periph, uint32_t pin) +{ + GPIO_BOP(gpio_periph) = (uint32_t)pin; +} + +/*! + \brief reset GPIO pin bit + \param[in] gpio_periph: GPIO port + only one parameter can be selected which is shown as below: + \arg GPIOx(x = A,B,C,D,E,F,G,H,I) + \param[in] pin: GPIO pin + one or more parameters can be selected which are shown as below: + \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL + \param[out] none + \retval none +*/ +void gpio_bit_reset(uint32_t gpio_periph, uint32_t pin) +{ + GPIO_BC(gpio_periph) = (uint32_t)pin; +} + +/*! + \brief write data to the specified GPIO pin + \param[in] gpio_periph: GPIO port + only one parameter can be selected which is shown as below: + \arg GPIOx(x = A,B,C,D,E,F,G,H,I) + \param[in] pin: GPIO pin + one or more parameters can be selected which are shown as below: + \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL + \param[in] bit_value: SET or RESET + \arg RESET: clear the port pin + \arg SET: set the port pin + \param[out] none + \retval none +*/ +void gpio_bit_write(uint32_t gpio_periph, uint32_t pin, bit_status bit_value) +{ + if(RESET != bit_value){ + GPIO_BOP(gpio_periph) = (uint32_t)pin; + }else{ + GPIO_BC(gpio_periph) = (uint32_t)pin; + } +} + +/*! + \brief write data to the specified GPIO port + \param[in] gpio_periph: GPIO port + only one parameter can be selected which is shown as below: + \arg GPIOx(x = A,B,C,D,E,F,G,H,I) + \param[in] data: specify the value to be written to the port output control register + \param[out] none + \retval none +*/ +void gpio_port_write(uint32_t gpio_periph, uint16_t data) +{ + GPIO_OCTL(gpio_periph) = (uint32_t)data; +} + +/*! + \brief get GPIO pin input status + \param[in] gpio_periph: GPIO port + only one parameter can be selected which is shown as below: + \arg GPIOx(x = A,B,C,D,E,F,G,H,I) + \param[in] pin: GPIO pin + one or more parameters can be selected which are shown as below: + \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL + \param[out] none + \retval input status of GPIO pin: SET or RESET +*/ +FlagStatus gpio_input_bit_get(uint32_t gpio_periph, uint32_t pin) +{ + if((uint32_t)RESET != (GPIO_ISTAT(gpio_periph)&(pin))){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief get GPIO all pins input status + \param[in] gpio_periph: GPIO port + only one parameter can be selected which is shown as below: + \arg GPIOx(x = A,B,C,D,E,F,G,H,I) + \param[out] none + \retval input status of GPIO all pins +*/ +uint16_t gpio_input_port_get(uint32_t gpio_periph) +{ + return ((uint16_t)GPIO_ISTAT(gpio_periph)); +} + +/*! + \brief get GPIO pin output status + \param[in] gpio_periph: GPIO port + only one parameter can be selected which is shown as below: + \arg GPIOx(x = A,B,C,D,E,F,G,H,I) + \param[in] pin: GPIO pin + one or more parameters can be selected which are shown as below: + \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL + \param[out] none + \retval output status of GPIO pin: SET or RESET +*/ +FlagStatus gpio_output_bit_get(uint32_t gpio_periph, uint32_t pin) +{ + if((uint32_t)RESET !=(GPIO_OCTL(gpio_periph)&(pin))){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief get GPIO all pins output status + \param[in] gpio_periph: GPIO port + only one parameter can be selected which is shown as below: + \arg GPIOx(x = A,B,C,D,E,F,G,H,I) + \param[out] none + \retval output status of GPIO all pins +*/ +uint16_t gpio_output_port_get(uint32_t gpio_periph) +{ + return ((uint16_t)GPIO_OCTL(gpio_periph)); +} + +/*! + \brief set GPIO alternate function + \param[in] gpio_periph: GPIO port + only one parameter can be selected which is shown as below: + \arg GPIOx(x = A,B,C,D,E,F,G,H,I) + \param[in] alt_func_num: GPIO pin af function + \arg GPIO_AF_0: SYSTEM + \arg GPIO_AF_1: TIMER0, TIMER1 + \arg GPIO_AF_2: TIMER2, TIMER3, TIMER4 + \arg GPIO_AF_3: TIMER7, TIMER8, TIMER9, TIMER10 + \arg GPIO_AF_4: I2C0, I2C1, I2C2 + \arg GPIO_AF_5: SPI0, SPI1, SPI2, SPI3, SPI4, SPI5 + \arg GPIO_AF_6: SPI1, SPI2, SAI0 + \arg GPIO_AF_7: USART0, USART1, USART2 + \arg GPIO_AF_8: UART3, UART4, USART5, UART6, UART7 + \arg GPIO_AF_9: CAN0, CAN1, TLI, TIMER11, TIMER12, TIMER13 + \arg GPIO_AF_10: USB_FS, USB_HS + \arg GPIO_AF_11: ENET + \arg GPIO_AF_12: EXMC, SDIO, USB_HS + \arg GPIO_AF_13: DCI + \arg GPIO_AF_14: TLI + \arg GPIO_AF_15: EVENTOUT + \param[in] pin: GPIO pin + one or more parameters can be selected which are shown as below: + \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL + \param[out] none + \retval none +*/ +void gpio_af_set(uint32_t gpio_periph, uint32_t alt_func_num, uint32_t pin) +{ + uint16_t i; + uint32_t afrl, afrh; + + afrl = GPIO_AFSEL0(gpio_periph); + afrh = GPIO_AFSEL1(gpio_periph); + + for(i = 0U;i < 8U;i++){ + if((1U << i) & pin){ + /* clear the specified pin alternate function bits */ + afrl &= ~GPIO_AFR_MASK(i); + afrl |= GPIO_AFR_SET(i,alt_func_num); + } + } + + for(i = 8U;i < 16U;i++){ + if((1U << i) & pin){ + /* clear the specified pin alternate function bits */ + afrh &= ~GPIO_AFR_MASK(i - 8U); + afrh |= GPIO_AFR_SET(i - 8U,alt_func_num); + } + } + + GPIO_AFSEL0(gpio_periph) = afrl; + GPIO_AFSEL1(gpio_periph) = afrh; +} + +/*! + \brief lock GPIO pin bit + \param[in] gpio_periph: GPIO port + only one parameter can be selected which is shown as below: + \arg GPIOx(x = A,B,C,D,E,F,G,H,I) + \param[in] pin: GPIO pin + one or more parameters can be selected which are shown as below: + \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL + \param[out] none + \retval none +*/ +void gpio_pin_lock(uint32_t gpio_periph, uint32_t pin) +{ + uint32_t lock = 0x00010000U; + lock |= pin; + + /* lock key writing sequence: write 1->write 0->write 1->read 0->read 1 */ + GPIO_LOCK(gpio_periph) = (uint32_t)lock; + GPIO_LOCK(gpio_periph) = (uint32_t)pin; + GPIO_LOCK(gpio_periph) = (uint32_t)lock; + lock = GPIO_LOCK(gpio_periph); + lock = GPIO_LOCK(gpio_periph); +} + +/*! + \brief toggle GPIO pin status + \param[in] gpio_periph: GPIO port + only one parameter can be selected which is shown as below: + \arg GPIOx(x = A,B,C,D,E,F,G,H,I) + \param[in] pin: GPIO pin + one or more parameters can be selected which are shown as below: + \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL + \param[out] none + \retval none +*/ +void gpio_bit_toggle(uint32_t gpio_periph, uint32_t pin) +{ + GPIO_TG(gpio_periph) = (uint32_t)pin; +} + +/*! + \brief toggle GPIO port status + \param[in] gpio_periph: GPIO port + only one parameter can be selected which is shown as below: + \arg GPIOx(x = A,B,C,D,E,F,G,H,I) + + \param[out] none + \retval none +*/ +void gpio_port_toggle(uint32_t gpio_periph) +{ + GPIO_TG(gpio_periph) = 0x0000FFFFU; +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_i2c.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_i2c.c new file mode 100644 index 0000000000..c2670b6eb7 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_i2c.c @@ -0,0 +1,819 @@ +/*! + \file gd32f4xx_i2c.c + \brief I2C driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2019-04-16, V2.0.2, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_i2c.h" + +/* I2C register bit mask */ +#define I2CCLK_MAX ((uint32_t)0x00000032U) /*!< i2cclk maximum value */ +#define I2CCLK_MIN ((uint32_t)0x00000002U) /*!< i2cclk minimum value */ +#define I2C_FLAG_MASK ((uint32_t)0x0000FFFFU) /*!< i2c flag mask */ +#define I2C_ADDRESS_MASK ((uint32_t)0x000003FFU) /*!< i2c address mask */ +#define I2C_ADDRESS2_MASK ((uint32_t)0x000000FEU) /*!< the second i2c address mask */ + +/* I2C register bit offset */ +#define STAT1_PECV_OFFSET ((uint32_t)8U) /* bit offset of PECV in I2C_STAT1 */ + +/*! + \brief reset I2C + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[out] none + \retval none +*/ +void i2c_deinit(uint32_t i2c_periph) +{ + switch(i2c_periph){ + case I2C0: + /* reset I2C0 */ + rcu_periph_reset_enable(RCU_I2C0RST); + rcu_periph_reset_disable(RCU_I2C0RST); + break; + case I2C1: + /* reset I2C1 */ + rcu_periph_reset_enable(RCU_I2C1RST); + rcu_periph_reset_disable(RCU_I2C1RST); + break; + case I2C2: + /* reset I2C2 */ + rcu_periph_reset_enable(RCU_I2C2RST); + rcu_periph_reset_disable(RCU_I2C2RST); + break; + default: + break; + } +} + +/*! + \brief configure I2C clock + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] clkspeed: I2C clock speed, supports standard mode (up to 100 kHz), fast mode (up to 400 kHz) + \param[in] dutycyc: duty cycle in fast mode + only one parameter can be selected which is shown as below: + \arg I2C_DTCY_2: T_low/T_high=2 + \arg I2C_DTCY_16_9: T_low/T_high=16/9 + \param[out] none + \retval none +*/ +void i2c_clock_config(uint32_t i2c_periph, uint32_t clkspeed, uint32_t dutycyc) +{ + uint32_t pclk1, clkc, freq, risetime; + uint32_t temp; + + pclk1 = rcu_clock_freq_get(CK_APB1); + /* I2C peripheral clock frequency */ + freq = (uint32_t)(pclk1/1000000U); + if(freq >= I2CCLK_MAX){ + freq = I2CCLK_MAX; + } + temp = I2C_CTL1(i2c_periph); + temp &= ~I2C_CTL1_I2CCLK; + temp |= freq; + + I2C_CTL1(i2c_periph) = temp; + + if(100000U >= clkspeed){ + /* the maximum SCL rise time is 1000ns in standard mode */ + risetime = (uint32_t)((pclk1/1000000U)+1U); + if(risetime >= I2CCLK_MAX){ + I2C_RT(i2c_periph) = I2CCLK_MAX; + }else{ + I2C_RT(i2c_periph) = risetime; + } + clkc = (uint32_t)(pclk1/(clkspeed*2U)); + if(clkc < 0x04U){ + /* the CLKC in standard mode minmum value is 4 */ + clkc = 0x04U; + } + + I2C_CKCFG(i2c_periph) |= (I2C_CKCFG_CLKC & clkc); + + }else if(400000U >= clkspeed){ + /* the maximum SCL rise time is 300ns in fast mode */ + I2C_RT(i2c_periph) = (uint32_t)(((freq*(uint32_t)300U)/(uint32_t)1000U)+(uint32_t)1U); + if(I2C_DTCY_2 == dutycyc){ + /* I2C duty cycle is 2 */ + clkc = (uint32_t)(pclk1/(clkspeed*3U)); + I2C_CKCFG(i2c_periph) &= ~I2C_CKCFG_DTCY; + }else{ + /* I2C duty cycle is 16/9 */ + clkc = (uint32_t)(pclk1/(clkspeed*25U)); + I2C_CKCFG(i2c_periph) |= I2C_CKCFG_DTCY; + } + if(0U == (clkc & I2C_CKCFG_CLKC)){ + /* the CLKC in fast mode minmum value is 1 */ + clkc |= 0x0001U; + } + I2C_CKCFG(i2c_periph) |= I2C_CKCFG_FAST; + I2C_CKCFG(i2c_periph) |= clkc; + }else{ + } +} + +/*! + \brief configure I2C address + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] mode: + only one parameter can be selected which is shown as below: + \arg I2C_I2CMODE_ENABLE: I2C mode + \arg I2C_SMBUSMODE_ENABLE: SMBus mode + \param[in] addformat: 7bits or 10bits + only one parameter can be selected which is shown as below: + \arg I2C_ADDFORMAT_7BITS: 7bits + \arg I2C_ADDFORMAT_10BITS: 10bits + \param[in] addr: I2C address + \param[out] none + \retval none +*/ +void i2c_mode_addr_config(uint32_t i2c_periph, uint32_t mode, uint32_t addformat, uint32_t addr) +{ + /* SMBus/I2C mode selected */ + uint32_t ctl = 0U; + + ctl = I2C_CTL0(i2c_periph); + ctl &= ~(I2C_CTL0_SMBEN); + ctl |= mode; + I2C_CTL0(i2c_periph) = ctl; + /* configure address */ + addr = addr & I2C_ADDRESS_MASK; + I2C_SADDR0(i2c_periph) = (addformat | addr); +} + +/*! + \brief SMBus type selection + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] type: + only one parameter can be selected which is shown as below: + \arg I2C_SMBUS_DEVICE: device + \arg I2C_SMBUS_HOST: host + \param[out] none + \retval none +*/ +void i2c_smbus_type_config(uint32_t i2c_periph, uint32_t type) +{ + if(I2C_SMBUS_HOST == type){ + I2C_CTL0(i2c_periph) |= I2C_CTL0_SMBSEL; + }else{ + I2C_CTL0(i2c_periph) &= ~(I2C_CTL0_SMBSEL); + } +} + +/*! + \brief whether or not to send an ACK + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] ack: + only one parameter can be selected which is shown as below: + \arg I2C_ACK_ENABLE: ACK will be sent + \arg I2C_ACK_DISABLE: ACK will not be sent + \param[out] none + \retval none +*/ +void i2c_ack_config(uint32_t i2c_periph, uint32_t ack) +{ + if(I2C_ACK_ENABLE == ack){ + I2C_CTL0(i2c_periph) |= I2C_CTL0_ACKEN; + }else{ + I2C_CTL0(i2c_periph) &= ~(I2C_CTL0_ACKEN); + } +} + +/*! + \brief configure I2C POAP position + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] pos: + only one parameter can be selected which is shown as below: + \arg I2C_ACKPOS_CURRENT: whether to send ACK or not for the current + \arg I2C_ACKPOS_NEXT: whether to send ACK or not for the next byte + \param[out] none + \retval none +*/ +void i2c_ackpos_config(uint32_t i2c_periph, uint32_t pos) +{ + /* configure I2C POAP position */ + if(I2C_ACKPOS_NEXT == pos){ + I2C_CTL0(i2c_periph) |= I2C_CTL0_POAP; + }else{ + I2C_CTL0(i2c_periph) &= ~(I2C_CTL0_POAP); + } +} + +/*! + \brief master sends slave address + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] addr: slave address + \param[in] trandirection: transmitter or receiver + only one parameter can be selected which is shown as below: + \arg I2C_TRANSMITTER: transmitter + \arg I2C_RECEIVER: receiver + \param[out] none + \retval none +*/ +void i2c_master_addressing(uint32_t i2c_periph, uint32_t addr, uint32_t trandirection) +{ + /* master is a transmitter or a receiver */ + if(I2C_TRANSMITTER == trandirection){ + addr = addr & I2C_TRANSMITTER; + }else{ + addr = addr | I2C_RECEIVER; + } + /* send slave address */ + I2C_DATA(i2c_periph) = addr; +} + +/*! + \brief enable dual-address mode + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] addr: the second address in dual-address mode + \param[out] none + \retval none +*/ +void i2c_dualaddr_enable(uint32_t i2c_periph, uint32_t addr) +{ + /* configure address */ + addr = addr & I2C_ADDRESS2_MASK; + I2C_SADDR1(i2c_periph) = (I2C_SADDR1_DUADEN | addr); +} + +/*! + \brief disable dual-address mode + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[out] none + \retval none +*/ +void i2c_dualaddr_disable(uint32_t i2c_periph) +{ + I2C_SADDR1(i2c_periph) &= ~(I2C_SADDR1_DUADEN); +} + +/*! + \brief enable I2C + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[out] none + \retval none +*/ +void i2c_enable(uint32_t i2c_periph) +{ + I2C_CTL0(i2c_periph) |= I2C_CTL0_I2CEN; +} + +/*! + \brief disable I2C + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[out] none + \retval none +*/ +void i2c_disable(uint32_t i2c_periph) +{ + I2C_CTL0(i2c_periph) &= ~(I2C_CTL0_I2CEN); +} + +/*! + \brief generate a START condition on I2C bus + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[out] none + \retval none +*/ +void i2c_start_on_bus(uint32_t i2c_periph) +{ + I2C_CTL0(i2c_periph) |= I2C_CTL0_START; +} + +/*! + \brief generate a STOP condition on I2C bus + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[out] none + \retval none +*/ +void i2c_stop_on_bus(uint32_t i2c_periph) +{ + I2C_CTL0(i2c_periph) |= I2C_CTL0_STOP; +} + +/*! + \brief I2C transmit data function + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] data: data of transmission + \param[out] none + \retval none +*/ +void i2c_data_transmit(uint32_t i2c_periph, uint8_t data) +{ + I2C_DATA(i2c_periph) = DATA_TRANS(data); +} + +/*! + \brief I2C receive data function + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[out] none + \retval data of received +*/ +uint8_t i2c_data_receive(uint32_t i2c_periph) +{ + return (uint8_t)DATA_RECV(I2C_DATA(i2c_periph)); +} + +/*! + \brief enable I2C DMA mode + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] dmastate: + only one parameter can be selected which is shown as below: + \arg I2C_DMA_ON: DMA mode enable + \arg I2C_DMA_OFF: DMA mode disable + \param[out] none + \retval none +*/ +void i2c_dma_enable(uint32_t i2c_periph, uint32_t dmastate) +{ + /* configure I2C DMA function */ + uint32_t ctl = 0U; + + ctl = I2C_CTL1(i2c_periph); + ctl &= ~(I2C_CTL1_DMAON); + ctl |= dmastate; + I2C_CTL1(i2c_periph) = ctl; +} + +/*! + \brief configure whether next DMA EOT is DMA last transfer or not + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] dmalast: + only one parameter can be selected which is shown as below: + \arg I2C_DMALST_ON: next DMA EOT is the last transfer + \arg I2C_DMALST_OFF: next DMA EOT is not the last transfer + \param[out] none + \retval none +*/ +void i2c_dma_last_transfer_config(uint32_t i2c_periph, uint32_t dmalast) +{ + /* configure DMA last transfer */ + uint32_t ctl = 0U; + + ctl = I2C_CTL1(i2c_periph); + ctl &= ~(I2C_CTL1_DMALST); + ctl |= dmalast; + I2C_CTL1(i2c_periph) = ctl; +} + +/*! + \brief whether to stretch SCL low when data is not ready in slave mode + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] stretchpara: + only one parameter can be selected which is shown as below: + \arg I2C_SCLSTRETCH_ENABLE: SCL stretching is enabled + \arg I2C_SCLSTRETCH_DISABLE: SCL stretching is disabled + \param[out] none + \retval none +*/ +void i2c_stretch_scl_low_config(uint32_t i2c_periph, uint32_t stretchpara) +{ + /* configure I2C SCL strerching enable or disable */ + uint32_t ctl = 0U; + + ctl = I2C_CTL0(i2c_periph); + ctl &= ~(I2C_CTL0_SS); + ctl |= stretchpara; + I2C_CTL0(i2c_periph) = ctl; +} + +/*! + \brief whether or not to response to a general call + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] gcallpara: + only one parameter can be selected which is shown as below: + \arg I2C_GCEN_ENABLE: slave will response to a general call + \arg I2C_GCEN_DISABLE: slave will not response to a general call + \param[out] none + \retval none +*/ +void i2c_slave_response_to_gcall_config(uint32_t i2c_periph, uint32_t gcallpara) +{ + /* configure slave response to a general call enable or disable */ + uint32_t ctl = 0U; + + ctl = I2C_CTL0(i2c_periph); + ctl &= ~(I2C_CTL0_GCEN); + ctl |= gcallpara; + I2C_CTL0(i2c_periph) = ctl; +} + +/*! + \brief software reset I2C + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] sreset: + only one parameter can be selected which is shown as below: + \arg I2C_SRESET_SET: I2C is under reset + \arg I2C_SRESET_RESET: I2C is not under reset + \param[out] none + \retval none +*/ +void i2c_software_reset_config(uint32_t i2c_periph, uint32_t sreset) +{ + /* modify CTL0 and configure software reset I2C state */ + uint32_t ctl = 0U; + + ctl = I2C_CTL0(i2c_periph); + ctl &= ~(I2C_CTL0_SRESET); + ctl |= sreset; + I2C_CTL0(i2c_periph) = ctl; +} + +/*! + \brief I2C PEC calculation on or off + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] pecstate: + only one parameter can be selected which is shown as below: + \arg I2C_PEC_ENABLE: PEC calculation on + \arg I2C_PEC_DISABLE: PEC calculation off + \param[out] none + \retval none +*/ +void i2c_pec_enable(uint32_t i2c_periph, uint32_t pecstate) +{ + /* on/off PEC calculation */ + uint32_t ctl = 0U; + + ctl = I2C_CTL0(i2c_periph); + ctl &= ~(I2C_CTL0_PECEN); + ctl |= pecstate; + I2C_CTL0(i2c_periph) = ctl; +} + +/*! + \brief I2C whether to transfer PEC value + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] pecpara: + only one parameter can be selected which is shown as below: + \arg I2C_PECTRANS_ENABLE: transfer PEC + \arg I2C_PECTRANS_DISABLE: not transfer PEC + \param[out] none + \retval none +*/ +void i2c_pec_transfer_enable(uint32_t i2c_periph, uint32_t pecpara) +{ + /* whether to transfer PEC */ + uint32_t ctl = 0U; + + ctl = I2C_CTL0(i2c_periph); + ctl &= ~(I2C_CTL0_PECTRANS); + ctl |= pecpara; + I2C_CTL0(i2c_periph) = ctl; +} + +/*! + \brief get packet error checking value + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[out] none + \retval PEC value +*/ +uint8_t i2c_pec_value_get(uint32_t i2c_periph) +{ + return (uint8_t)((I2C_STAT1(i2c_periph) & I2C_STAT1_PECV)>>STAT1_PECV_OFFSET); +} + +/*! + \brief I2C issue alert through SMBA pin + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] smbuspara: + only one parameter can be selected which is shown as below: + \arg I2C_SALTSEND_ENABLE: issue alert through SMBA pin + \arg I2C_SALTSEND_DISABLE: not issue alert through SMBA pin + \param[out] none + \retval none +*/ +void i2c_smbus_issue_alert(uint32_t i2c_periph, uint32_t smbuspara) +{ + /* issue alert through SMBA pin configure*/ + uint32_t ctl = 0U; + + ctl = I2C_CTL0(i2c_periph); + ctl &= ~(I2C_CTL0_SALT); + ctl |= smbuspara; + I2C_CTL0(i2c_periph) = ctl; +} + +/*! + \brief enable or disable I2C ARP protocol in SMBus switch + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] arpstate: + only one parameter can be selected which is shown as below: + \arg I2C_ARP_ENABLE: enable ARP + \arg I2C_ARP_DISABLE: disable ARP + \param[out] none + \retval none +*/ +void i2c_smbus_arp_enable(uint32_t i2c_periph, uint32_t arpstate) +{ + /* enable or disable I2C ARP protocol*/ + uint32_t ctl = 0U; + + ctl = I2C_CTL0(i2c_periph); + ctl &= ~(I2C_CTL0_ARPEN); + ctl |= arpstate; + I2C_CTL0(i2c_periph) = ctl; +} + +/*! + \brief analog noise filter disable + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[out] none + \retval none +*/ +void i2c_analog_noise_filter_disable(uint32_t i2c_periph) +{ + I2C_FCTL(i2c_periph) |= I2C_FCTL_AFD; +} + +/*! + \brief analog noise filter enable + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[out] none + \retval none +*/ +void i2c_analog_noise_filter_enable(uint32_t i2c_periph) +{ + I2C_FCTL(i2c_periph) &= ~(I2C_FCTL_AFD); +} + +/*! + \brief digital noise filter configuration + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] dfilterpara: refer to enum i2c_digital_filter_enum + \param[out] none + \retval none +*/ +void i2c_digital_noise_filter_config(uint32_t i2c_periph,i2c_digital_filter_enum dfilterpara) +{ + I2C_FCTL(i2c_periph) |= dfilterpara; +} + +/*! + \brief enable SAM_V interface + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[out] none + \retval none +*/ +void i2c_sam_enable(uint32_t i2c_periph) +{ + I2C_SAMCS(i2c_periph) |= I2C_SAMCS_SAMEN; +} + +/*! + \brief disable SAM_V interface + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[out] none + \retval none +*/ +void i2c_sam_disable(uint32_t i2c_periph) +{ + I2C_SAMCS(i2c_periph) &= ~(I2C_SAMCS_SAMEN); +} + +/*! + \brief enable SAM_V interface timeout detect + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[out] none + \retval none +*/ +void i2c_sam_timeout_enable(uint32_t i2c_periph) +{ + I2C_SAMCS(i2c_periph) |= I2C_SAMCS_STOEN; +} + +/*! + \brief disable SAM_V interface timeout detect + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[out] none + \retval none +*/ +void i2c_sam_timeout_disable(uint32_t i2c_periph) +{ + I2C_SAMCS(i2c_periph) &= ~(I2C_SAMCS_STOEN); +} + +/*! + \brief check I2C flag is set or not + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] flag: I2C flags, refer to i2c_flag_enum + only one parameter can be selected which is shown as below: + \arg I2C_FLAG_SBSEND: start condition send out + \arg I2C_FLAG_ADDSEND: address is sent in master mode or received and matches in slave mode + \arg I2C_FLAG_BTC: byte transmission finishes + \arg I2C_FLAG_ADD10SEND: header of 10-bit address is sent in master mode + \arg I2C_FLAG_STPDET: stop condition detected in slave mode + \arg I2C_FLAG_RBNE: I2C_DATA is not Empty during receiving + \arg I2C_FLAG_TBE: I2C_DATA is empty during transmitting + \arg I2C_FLAG_BERR: a bus error occurs indication a unexpected start or stop condition on I2C bus + \arg I2C_FLAG_LOSTARB: arbitration lost in master mode + \arg I2C_FLAG_AERR: acknowledge error + \arg I2C_FLAG_OUERR: overrun or underrun situation occurs in slave mode + \arg I2C_FLAG_PECERR: PEC error when receiving data + \arg I2C_FLAG_SMBTO: timeout signal in SMBus mode + \arg I2C_FLAG_SMBALT: SMBus alert status + \arg I2C_FLAG_MASTER: a flag indicating whether I2C block is in master or slave mode + \arg I2C_FLAG_I2CBSY: busy flag + \arg I2C_FLAG_TRS: whether the I2C is a transmitter or a receiver + \arg I2C_FLAG_RXGC: general call address (00h) received + \arg I2C_FLAG_DEFSMB: default address of SMBus device + \arg I2C_FLAG_HSTSMB: SMBus host header detected in slave mode + \arg I2C_FLAG_DUMOD: dual flag in slave mode indicating which address is matched in dual-address mode + \arg I2C_FLAG_TFF: txframe fall flag + \arg I2C_FLAG_TFR: txframe rise flag + \arg I2C_FLAG_RFF: rxframe fall flag + \arg I2C_FLAG_RFR: rxframe rise flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus i2c_flag_get(uint32_t i2c_periph, i2c_flag_enum flag) +{ + if(RESET != (I2C_REG_VAL(i2c_periph, flag) & BIT(I2C_BIT_POS(flag)))){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear I2C flag + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] flag: I2C flags, refer to i2c_flag_enum + only one parameter can be selected which is shown as below: + \arg I2C_FLAG_SMBALT: SMBus Alert status + \arg I2C_FLAG_SMBTO: timeout signal in SMBus mode + \arg I2C_FLAG_PECERR: PEC error when receiving data + \arg I2C_FLAG_OUERR: over-run or under-run situation occurs in slave mode + \arg I2C_FLAG_AERR: acknowledge error + \arg I2C_FLAG_LOSTARB: arbitration lost in master mode + \arg I2C_FLAG_BERR: a bus error + \arg I2C_FLAG_ADDSEND: cleared by reading I2C_STAT0 and reading I2C_STAT1 + \arg I2C_FLAG_TFF: txframe fall flag + \arg I2C_FLAG_TFR: txframe rise flag + \arg I2C_FLAG_RFF: rxframe fall flag + \arg I2C_FLAG_RFR: rxframe rise flag + \param[out] none + \retval none +*/ +void i2c_flag_clear(uint32_t i2c_periph, i2c_flag_enum flag) +{ + if(I2C_FLAG_ADDSEND == flag){ + /* read I2C_STAT0 and then read I2C_STAT1 to clear ADDSEND */ + I2C_STAT0(i2c_periph); + I2C_STAT1(i2c_periph); + }else{ + I2C_REG_VAL(i2c_periph, flag) &= ~BIT(I2C_BIT_POS(flag)); + } +} + +/*! + \brief enable I2C interrupt + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] interrupt: I2C interrupts, refer to i2c_interrupt_enum + only one parameter can be selected which is shown as below: + \arg I2C_INT_ERR: error interrupt enable + \arg I2C_INT_EV: event interrupt enable + \arg I2C_INT_BUF: buffer interrupt enable + \arg I2C_INT_TFF: txframe fall interrupt enable + \arg I2C_INT_TFR: txframe rise interrupt enable + \arg I2C_INT_RFF: rxframe fall interrupt enable + \arg I2C_INT_RFR: rxframe rise interrupt enable + \param[out] none + \retval none +*/ +void i2c_interrupt_enable(uint32_t i2c_periph, i2c_interrupt_enum interrupt) +{ + I2C_REG_VAL(i2c_periph, interrupt) |= BIT(I2C_BIT_POS(interrupt)); +} + +/*! + \brief disable I2C interrupt + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] interrupt: I2C interrupts, refer to i2c_flag_enum + only one parameter can be selected which is shown as below: + \arg I2C_INT_ERR: error interrupt enable + \arg I2C_INT_EV: event interrupt enable + \arg I2C_INT_BUF: buffer interrupt enable + \arg I2C_INT_TFF: txframe fall interrupt enable + \arg I2C_INT_TFR: txframe rise interrupt enable + \arg I2C_INT_RFF: rxframe fall interrupt enable + \arg I2C_INT_RFR: rxframe rise interrupt enable + \param[out] none + \retval none +*/ +void i2c_interrupt_disable(uint32_t i2c_periph, i2c_interrupt_enum interrupt) +{ + I2C_REG_VAL(i2c_periph, interrupt) &= ~BIT(I2C_BIT_POS(interrupt)); +} + +/*! + \brief check I2C interrupt flag + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] int_flag: I2C interrupt flags, refer to i2c_interrupt_flag_enum + only one parameter can be selected which is shown as below: + \arg I2C_INT_FLAG_SBSEND: start condition sent out in master mode interrupt flag + \arg I2C_INT_FLAG_ADDSEND: address is sent in master mode or received and matches in slave mode interrupt flag + \arg I2C_INT_FLAG_BTC: byte transmission finishes + \arg I2C_INT_FLAG_ADD10SEND: header of 10-bit address is sent in master mode interrupt flag + \arg I2C_INT_FLAG_STPDET: etop condition detected in slave mode interrupt flag + \arg I2C_INT_FLAG_RBNE: I2C_DATA is not Empty during receiving interrupt flag + \arg I2C_INT_FLAG_TBE: I2C_DATA is empty during transmitting interrupt flag + \arg I2C_INT_FLAG_BERR: a bus error occurs indication a unexpected start or stop condition on I2C bus interrupt flag + \arg I2C_INT_FLAG_LOSTARB: arbitration lost in master mode interrupt flag + \arg I2C_INT_FLAG_AERR: acknowledge error interrupt flag + \arg I2C_INT_FLAG_OUERR: over-run or under-run situation occurs in slave mode interrupt flag + \arg I2C_INT_FLAG_PECERR: PEC error when receiving data interrupt flag + \arg I2C_INT_FLAG_SMBTO: timeout signal in SMBus mode interrupt flag + \arg I2C_INT_FLAG_SMBALT: SMBus Alert status interrupt flag + \arg I2C_INT_FLAG_TFF: txframe fall interrupt flag + \arg I2C_INT_FLAG_TFR: txframe rise interrupt flag + \arg I2C_INT_FLAG_RFF: rxframe fall interrupt flag + \arg I2C_INT_FLAG_RFR: rxframe rise interrupt flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus i2c_interrupt_flag_get(uint32_t i2c_periph, i2c_interrupt_flag_enum int_flag) +{ + uint32_t intenable = 0U, flagstatus = 0U, bufie; + + /* check BUFIE */ + bufie = I2C_CTL1(i2c_periph)&I2C_CTL1_BUFIE; + + /* get the interrupt enable bit status */ + intenable = (I2C_REG_VAL(i2c_periph, int_flag) & BIT(I2C_BIT_POS(int_flag))); + /* get the corresponding flag bit status */ + flagstatus = (I2C_REG_VAL2(i2c_periph, int_flag) & BIT(I2C_BIT_POS2(int_flag))); + + if((I2C_INT_FLAG_RBNE == int_flag) || (I2C_INT_FLAG_TBE == int_flag)){ + if(intenable && bufie){ + intenable = 1U; + }else{ + intenable = 0U; + } + } + if((0U != flagstatus) && (0U != intenable)){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear I2C interrupt flag + \param[in] i2c_periph: I2Cx(x=0,1,2) + \param[in] int_flag: I2C interrupt flags, refer to i2c_interrupt_flag_enum + only one parameter can be selected which is shown as below: + \arg I2C_INT_FLAG_ADDSEND: address is sent in master mode or received and matches in slave mode interrupt flag + \arg I2C_INT_FLAG_BERR: a bus error occurs indication a unexpected start or stop condition on I2C bus interrupt flag + \arg I2C_INT_FLAG_LOSTARB: arbitration lost in master mode interrupt flag + \arg I2C_INT_FLAG_AERR: acknowledge error interrupt flag + \arg I2C_INT_FLAG_OUERR: over-run or under-run situation occurs in slave mode interrupt flag + \arg I2C_INT_FLAG_PECERR: PEC error when receiving data interrupt flag + \arg I2C_INT_FLAG_SMBTO: timeout signal in SMBus mode interrupt flag + \arg I2C_INT_FLAG_SMBALT: SMBus Alert status interrupt flag + \arg I2C_INT_FLAG_TFF: txframe fall interrupt flag + \arg I2C_INT_FLAG_TFR: txframe rise interrupt flag + \arg I2C_INT_FLAG_RFF: rxframe fall interrupt flag + \arg I2C_INT_FLAG_RFR: rxframe rise interrupt flag + \param[out] none + \retval none +*/ +void i2c_interrupt_flag_clear(uint32_t i2c_periph, i2c_interrupt_flag_enum int_flag) +{ + if(I2C_INT_FLAG_ADDSEND == int_flag){ + /* read I2C_STAT0 and then read I2C_STAT1 to clear ADDSEND */ + I2C_STAT0(i2c_periph); + I2C_STAT1(i2c_periph); + }else{ + I2C_REG_VAL2(i2c_periph, int_flag) &= ~BIT(I2C_BIT_POS2(int_flag)); + } +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_ipa.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_ipa.c new file mode 100644 index 0000000000..963cd04623 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_ipa.c @@ -0,0 +1,637 @@ +/*! + \file gd32f4xx_ipa.c + \brief IPA driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_ipa.h" + +#define IPA_DEFAULT_VALUE 0x00000000U + +/*! + \brief deinitialize IPA registers + \param[in] none + \param[out] none + \retval none +*/ +void ipa_deinit(void) +{ + rcu_periph_reset_enable(RCU_IPARST); + rcu_periph_reset_disable(RCU_IPARST); +} + +/*! + \brief enable IPA transfer + \param[in] none + \param[out] none + \retval none +*/ +void ipa_transfer_enable(void) +{ + IPA_CTL |= IPA_CTL_TEN; +} + +/*! + \brief enable IPA transfer hang up + \param[in] none + \param[out] none + \retval none +*/ +void ipa_transfer_hangup_enable(void) +{ + IPA_CTL |= IPA_CTL_THU; +} + +/*! + \brief disable IPA transfer hang up + \param[in] none + \param[out] none + \retval none +*/ +void ipa_transfer_hangup_disable(void) +{ + IPA_CTL &= ~(IPA_CTL_THU); +} + +/*! + \brief enable IPA transfer stop + \param[in] none + \param[out] none + \retval none +*/ +void ipa_transfer_stop_enable(void) +{ + IPA_CTL |= IPA_CTL_TST; +} + +/*! + \brief disable IPA transfer stop + \param[in] none + \param[out] none + \retval none +*/ +void ipa_transfer_stop_disable(void) +{ + IPA_CTL &= ~(IPA_CTL_TST); +} +/*! + \brief enable IPA foreground LUT loading + \param[in] none + \param[out] none + \retval none +*/ +void ipa_foreground_lut_loading_enable(void) +{ + IPA_FPCTL |= IPA_FPCTL_FLLEN; +} + +/*! + \brief enable IPA background LUT loading + \param[in] none + \param[out] none + \retval none +*/ +void ipa_background_lut_loading_enable(void) +{ + IPA_BPCTL |= IPA_BPCTL_BLLEN; +} + +/*! + \brief set pixel format convert mode, the function is invalid when the IPA transfer is enabled + \param[in] pfcm: pixel format convert mode + only one parameter can be selected which is shown as below: + \arg IPA_FGTODE: foreground memory to destination memory without pixel format convert + \arg IPA_FGTODE_PF_CONVERT: foreground memory to destination memory with pixel format convert + \arg IPA_FGBGTODE: blending foreground and background memory to destination memory + \arg IPA_FILL_UP_DE: fill up destination memory with specific color + \param[out] none + \retval none +*/ +void ipa_pixel_format_convert_mode_set(uint32_t pfcm) +{ + IPA_CTL |= pfcm; +} + +/*! + \brief initialize the structure of IPA foreground parameter struct with the default values, it is + suggested that call this function after an ipa_foreground_parameter_struct structure is defined + \param[in] none + \param[out] foreground_struct: the data needed to initialize foreground + foreground_memaddr: foreground memory base address + foreground_lineoff: foreground line offset + foreground_prealpha: foreground pre-defined alpha value + foreground_alpha_algorithm: IPA_FG_ALPHA_MODE_0,IPA_FG_ALPHA_MODE_1,IPA_FG_ALPHA_MODE_2 + foreground_pf: foreground pixel format(FOREGROUND_PPF_ARGB8888,FOREGROUND_PPF_RGB888,FOREGROUND_PPF_RGB565, + FOREGROUND_PPF_ARG1555,FOREGROUND_PPF_ARGB4444,FOREGROUND_PPF_L8,FOREGROUND_PPF_AL44, + FOREGROUND_PPF_AL88,FOREGROUND_PPF_L4,FOREGROUND_PPF_A8,FOREGROUND_PPF_A4) + foreground_prered: foreground pre-defined red value + foreground_pregreen: foreground pre-defined green value + foreground_preblue: foreground pre-defined blue value + \retval none +*/ +void ipa_foreground_struct_para_init(ipa_foreground_parameter_struct* foreground_struct) +{ + /* initialize the struct parameters with default values */ + foreground_struct->foreground_memaddr = IPA_DEFAULT_VALUE; + foreground_struct->foreground_lineoff = IPA_DEFAULT_VALUE; + foreground_struct->foreground_prealpha = IPA_DEFAULT_VALUE; + foreground_struct->foreground_alpha_algorithm = IPA_FG_ALPHA_MODE_0; + foreground_struct->foreground_pf = FOREGROUND_PPF_ARGB8888; + foreground_struct->foreground_prered = IPA_DEFAULT_VALUE; + foreground_struct->foreground_pregreen = IPA_DEFAULT_VALUE; + foreground_struct->foreground_preblue = IPA_DEFAULT_VALUE; +} + +/*! + \brief initialize foreground parameters + \param[in] foreground_struct: the data needed to initialize foreground + foreground_memaddr: foreground memory base address + foreground_lineoff: foreground line offset + foreground_prealpha: foreground pre-defined alpha value + foreground_alpha_algorithm: IPA_FG_ALPHA_MODE_0,IPA_FG_ALPHA_MODE_1,IPA_FG_ALPHA_MODE_2 + foreground_pf: foreground pixel format(FOREGROUND_PPF_ARGB8888,FOREGROUND_PPF_RGB888,FOREGROUND_PPF_RGB565, + FOREGROUND_PPF_ARG1555,FOREGROUND_PPF_ARGB4444,FOREGROUND_PPF_L8,FOREGROUND_PPF_AL44, + FOREGROUND_PPF_AL88,FOREGROUND_PPF_L4,FOREGROUND_PPF_A8,FOREGROUND_PPF_A4) + foreground_prered: foreground pre-defined red value + foreground_pregreen: foreground pre-defined green value + foreground_preblue: foreground pre-defined blue value + \param[out] none + \retval none +*/ +void ipa_foreground_init(ipa_foreground_parameter_struct* foreground_struct) +{ + FlagStatus tempflag = RESET; + if(RESET != (IPA_CTL & IPA_CTL_TEN)){ + tempflag = SET; + /* reset the TEN in order to configure the following bits */ + IPA_CTL &= ~IPA_CTL_TEN; + } + + /* foreground memory base address configuration */ + IPA_FMADDR &= ~(IPA_FMADDR_FMADDR); + IPA_FMADDR = foreground_struct->foreground_memaddr; + /* foreground line offset configuration */ + IPA_FLOFF &= ~(IPA_FLOFF_FLOFF); + IPA_FLOFF = foreground_struct->foreground_lineoff; + /* foreground pixel format pre-defined alpha, alpha calculation algorithm configuration */ + IPA_FPCTL &= ~(IPA_FPCTL_FPDAV|IPA_FPCTL_FAVCA|IPA_FPCTL_FPF); + IPA_FPCTL |= (foreground_struct->foreground_prealpha<<24U); + IPA_FPCTL |= foreground_struct->foreground_alpha_algorithm; + IPA_FPCTL |= foreground_struct->foreground_pf; + /* foreground pre-defined red green blue configuration */ + IPA_FPV &= ~(IPA_FPV_FPDRV|IPA_FPV_FPDGV|IPA_FPV_FPDBV); + IPA_FPV |= ((foreground_struct->foreground_prered<<16U)|(foreground_struct->foreground_pregreen<<8U) + |(foreground_struct->foreground_preblue)); + + if(SET == tempflag){ + /* restore the state of TEN */ + IPA_CTL |= IPA_CTL_TEN; + } +} + +/*! + \brief initialize the structure of IPA background parameter struct with the default values, it is + suggested that call this function after an ipa_background_parameter_struct structure is defined + \param[in] none + \param[out] background_struct: the data needed to initialize background + background_memaddr: background memory base address + background_lineoff: background line offset + background_prealpha: background pre-defined alpha value + background_alpha_algorithm: IPA_BG_ALPHA_MODE_0,IPA_BG_ALPHA_MODE_1,IPA_BG_ALPHA_MODE_2 + background_pf: background pixel format(BACKGROUND_PPF_ARGB8888,BACKGROUND_PPF_RGB888,BACKGROUND_PPF_RGB565, + BACKGROUND_PPF_ARG1555,BACKGROUND_PPF_ARGB4444,BACKGROUND_PPF_L8,BACKGROUND_PPF_AL44, + BACKGROUND_PPF_AL88,BACKGROUND_PPF_L4,BACKGROUND_PPF_A8,BACKGROUND_PPF_A4) + background_prered: background pre-defined red value + background_pregreen: background pre-defined green value + background_preblue: background pre-defined blue value + \retval none +*/ +void ipa_background_struct_para_init(ipa_background_parameter_struct* background_struct) +{ + /* initialize the struct parameters with default values */ + background_struct->background_memaddr = IPA_DEFAULT_VALUE; + background_struct->background_lineoff = IPA_DEFAULT_VALUE; + background_struct->background_prealpha = IPA_DEFAULT_VALUE; + background_struct->background_alpha_algorithm = IPA_BG_ALPHA_MODE_0; + background_struct->background_pf = BACKGROUND_PPF_ARGB8888; + background_struct->background_prered = IPA_DEFAULT_VALUE; + background_struct->background_pregreen = IPA_DEFAULT_VALUE; + background_struct->background_preblue = IPA_DEFAULT_VALUE; +} + +/*! + \brief initialize background parameters + \param[in] background_struct: the data needed to initialize background + background_memaddr: background memory base address + background_lineoff: background line offset + background_prealpha: background pre-defined alpha value + background_alpha_algorithm: IPA_BG_ALPHA_MODE_0,IPA_FG_ALPHA_MODE_1,IPA_FG_ALPHA_MODE_2 + background_pf: background pixel format(BACKGROUND_PPF_ARGB8888,BACKGROUND_PPF_RGB888,BACKGROUND_PPF_RGB565, + BACKGROUND_PPF_ARG1555,BACKGROUND_PPF_ARGB4444,BACKGROUND_PPF_L8,BACKGROUND_PPF_AL44, + BACKGROUND_PPF_AL88,BACKGROUND_PPF_L4,BACKGROUND_PPF_A8,BACKGROUND_PPF_A4) + background_prered: background pre-defined red value + background_pregreen: background pre-defined green value + background_preblue: background pre-defined blue value + \param[out] none + \retval none +*/ +void ipa_background_init(ipa_background_parameter_struct* background_struct) +{ + FlagStatus tempflag = RESET; + if(RESET != (IPA_CTL & IPA_CTL_TEN)){ + tempflag = SET; + /* reset the TEN in order to configure the following bits */ + IPA_CTL &= ~IPA_CTL_TEN; + } + + /* background memory base address configuration */ + IPA_BMADDR &= ~(IPA_BMADDR_BMADDR); + IPA_BMADDR = background_struct->background_memaddr; + /* background line offset configuration */ + IPA_BLOFF &= ~(IPA_BLOFF_BLOFF); + IPA_BLOFF = background_struct->background_lineoff; + /* background pixel format pre-defined alpha, alpha calculation algorithm configuration */ + IPA_BPCTL &= ~(IPA_BPCTL_BPDAV|IPA_BPCTL_BAVCA|IPA_BPCTL_BPF); + IPA_BPCTL |= (background_struct->background_prealpha<<24U); + IPA_BPCTL |= background_struct->background_alpha_algorithm; + IPA_BPCTL |= background_struct->background_pf; + /* background pre-defined red green blue configuration */ + IPA_BPV &= ~(IPA_BPV_BPDRV|IPA_BPV_BPDGV|IPA_BPV_BPDBV); + IPA_BPV |= ((background_struct->background_prered<<16U)|(background_struct->background_pregreen<<8U) + |(background_struct->background_preblue)); + + if(SET == tempflag){ + /* restore the state of TEN */ + IPA_CTL |= IPA_CTL_TEN; + } +} + +/*! + \brief initialize the structure of IPA destination parameter struct with the default values, it is + suggested that call this function after an ipa_destination_parameter_struct structure is defined + \param[in] none + \param[out] destination_struct: the data needed to initialize destination parameter + destination_pf: IPA_DPF_ARGB8888,IPA_DPF_RGB888,IPA_DPF_RGB565,IPA_DPF_ARGB1555, + IPA_DPF_ARGB4444,refer to ipa_dpf_enum + destination_lineoff: destination line offset + destination_prealpha: destination pre-defined alpha value + destination_prered: destination pre-defined red value + destination_pregreen: destination pre-defined green value + destination_preblue: destination pre-defined blue value + destination_memaddr: destination memory base address + image_width: width of the image to be processed + image_height: height of the image to be processed + \retval none +*/ +void ipa_destination_struct_para_init(ipa_destination_parameter_struct* destination_struct) +{ + /* initialize the struct parameters with default values */ + destination_struct->destination_pf = IPA_DPF_ARGB8888; + destination_struct->destination_lineoff = IPA_DEFAULT_VALUE; + destination_struct->destination_prealpha = IPA_DEFAULT_VALUE; + destination_struct->destination_prered = IPA_DEFAULT_VALUE; + destination_struct->destination_pregreen = IPA_DEFAULT_VALUE; + destination_struct->destination_preblue = IPA_DEFAULT_VALUE; + destination_struct->destination_memaddr = IPA_DEFAULT_VALUE; + destination_struct->image_width = IPA_DEFAULT_VALUE; + destination_struct->image_height = IPA_DEFAULT_VALUE; +} + +/*! + \brief initialize destination parameters + \param[in] destination_struct: the data needed to initialize destination parameters + destination_pf: IPA_DPF_ARGB8888,IPA_DPF_RGB888,IPA_DPF_RGB565,IPA_DPF_ARGB1555, + IPA_DPF_ARGB4444,refer to ipa_dpf_enum + destination_lineoff: destination line offset + destination_prealpha: destination pre-defined alpha value + destination_prered: destination pre-defined red value + destination_pregreen: destination pre-defined green value + destination_preblue: destination pre-defined blue value + destination_memaddr: destination memory base address + image_width: width of the image to be processed + image_height: height of the image to be processed + \param[out] none + \retval none +*/ +void ipa_destination_init(ipa_destination_parameter_struct* destination_struct) +{ + uint32_t destination_pixelformat; + FlagStatus tempflag = RESET; + if(RESET != (IPA_CTL & IPA_CTL_TEN)){ + tempflag = SET; + /* reset the TEN in order to configure the following bits */ + IPA_CTL &= ~IPA_CTL_TEN; + } + + /* destination pixel format configuration */ + IPA_DPCTL &= ~(IPA_DPCTL_DPF); + IPA_DPCTL = destination_struct->destination_pf; + destination_pixelformat = destination_struct->destination_pf; + /* destination pixel format ARGB8888 */ + switch(destination_pixelformat){ + case IPA_DPF_ARGB8888: + IPA_DPV &= ~(IPA_DPV_DPDBV_0|(IPA_DPV_DPDGV_0)|(IPA_DPV_DPDRV_0)|(IPA_DPV_DPDAV_0)); + IPA_DPV = (destination_struct->destination_preblue|(destination_struct->destination_pregreen<<8U) + |(destination_struct->destination_prered<<16U) + |(destination_struct->destination_prealpha<<24U)); + break; + /* destination pixel format RGB888 */ + case IPA_DPF_RGB888: + IPA_DPV &= ~(IPA_DPV_DPDBV_1|(IPA_DPV_DPDGV_1)|(IPA_DPV_DPDRV_1)); + IPA_DPV = (destination_struct->destination_preblue|(destination_struct->destination_pregreen<<8U) + |(destination_struct->destination_prered<<16U)); + break; + /* destination pixel format RGB565 */ + case IPA_DPF_RGB565: + IPA_DPV &= ~(IPA_DPV_DPDBV_2|(IPA_DPV_DPDGV_2)|(IPA_DPV_DPDRV_2)); + IPA_DPV = (destination_struct->destination_preblue|(destination_struct->destination_pregreen<<5U) + |(destination_struct->destination_prered<<11U)); + break; + /* destination pixel format ARGB1555 */ + case IPA_DPF_ARGB1555: + IPA_DPV &= ~(IPA_DPV_DPDBV_3|(IPA_DPV_DPDGV_3)|(IPA_DPV_DPDRV_3)|(IPA_DPV_DPDAV_3)); + IPA_DPV = (destination_struct->destination_preblue|(destination_struct->destination_pregreen<<5U) + |(destination_struct->destination_prered<<10U) + |(destination_struct->destination_prealpha<<15U)); + break; + /* destination pixel format ARGB4444 */ + case IPA_DPF_ARGB4444: + IPA_DPV &= ~(IPA_DPV_DPDBV_4|(IPA_DPV_DPDGV_4)|(IPA_DPV_DPDRV_4)|(IPA_DPV_DPDAV_4)); + IPA_DPV = (destination_struct->destination_preblue|(destination_struct->destination_pregreen<<4U) + |(destination_struct->destination_prered<<8U) + |(destination_struct->destination_prealpha<<12U)); + break; + default: + break; + } + /* destination memory base address configuration */ + IPA_DMADDR &= ~(IPA_DMADDR_DMADDR); + IPA_DMADDR = destination_struct->destination_memaddr; + /* destination line offset configuration */ + IPA_DLOFF &= ~(IPA_DLOFF_DLOFF); + IPA_DLOFF =destination_struct->destination_lineoff; + /* image size configuration */ + IPA_IMS &= ~(IPA_IMS_HEIGHT|IPA_IMS_WIDTH); + IPA_IMS |= ((destination_struct->image_width<<16U)|(destination_struct->image_height)); + + if(SET == tempflag){ + /* restore the state of TEN */ + IPA_CTL |= IPA_CTL_TEN; + } +} + +/*! + \brief initialize IPA foreground LUT parameters + \param[in] fg_lut_num: foreground LUT number of pixel + \param[in] fg_lut_pf: foreground LUT pixel format(IPA_LUT_PF_ARGB8888, IPA_LUT_PF_RGB888) + \param[in] fg_lut_addr: foreground LUT memory base address + \param[out] none + \retval none +*/ +void ipa_foreground_lut_init(uint8_t fg_lut_num, uint8_t fg_lut_pf, uint32_t fg_lut_addr) +{ + FlagStatus tempflag = RESET; + if(RESET != (IPA_FPCTL & IPA_FPCTL_FLLEN)){ + tempflag = SET; + /* reset the FLLEN in order to configure the following bits */ + IPA_FPCTL &= ~IPA_FPCTL_FLLEN; + } + + /* foreground LUT number of pixel configuration */ + IPA_FPCTL |= ((uint32_t)fg_lut_num<<8U); + /* foreground LUT pixel format configuration */ + if(IPA_LUT_PF_RGB888 == fg_lut_pf){ + IPA_FPCTL |= IPA_FPCTL_FLPF; + }else{ + IPA_FPCTL &= ~(IPA_FPCTL_FLPF); + } + /* foreground LUT memory base address configuration */ + IPA_FLMADDR &= ~(IPA_FLMADDR_FLMADDR); + IPA_FLMADDR = fg_lut_addr; + + if(SET == tempflag){ + /* restore the state of FLLEN */ + IPA_FPCTL |= IPA_FPCTL_FLLEN; + } +} + +/*! + \brief initialize IPA background LUT parameters + \param[in] bg_lut_num: background LUT number of pixel + \param[in] bg_lut_pf: background LUT pixel format(IPA_LUT_PF_ARGB8888, IPA_LUT_PF_RGB888) + \param[in] bg_lut_addr: background LUT memory base address + \param[out] none + \retval none +*/ +void ipa_background_lut_init(uint8_t bg_lut_num, uint8_t bg_lut_pf, uint32_t bg_lut_addr) +{ + FlagStatus tempflag = RESET; + if(RESET != (IPA_BPCTL & IPA_BPCTL_BLLEN)){ + tempflag = SET; + /* reset the BLLEN in order to configure the following bits */ + IPA_BPCTL &= ~IPA_BPCTL_BLLEN; + } + + /* background LUT number of pixel configuration */ + IPA_BPCTL |= ((uint32_t)bg_lut_num<<8U); + /* background LUT pixel format configuration */ + if(IPA_LUT_PF_RGB888 == bg_lut_pf){ + IPA_BPCTL |= IPA_BPCTL_BLPF; + }else{ + IPA_BPCTL &= ~(IPA_BPCTL_BLPF); + } + /* background LUT memory base address configuration */ + IPA_BLMADDR &= ~(IPA_BLMADDR_BLMADDR); + IPA_BLMADDR = bg_lut_addr; + + if(SET == tempflag){ + /* restore the state of BLLEN */ + IPA_BPCTL |= IPA_BPCTL_BLLEN; + } +} + +/*! + \brief configure IPA line mark + \param[in] line_num: line number + \param[out] none + \retval none +*/ +void ipa_line_mark_config(uint16_t line_num) +{ + IPA_LM &= ~(IPA_LM_LM); + IPA_LM = line_num; +} + +/*! + \brief inter-timer enable or disable + \param[in] timer_cfg: IPA_INTER_TIMER_ENABLE,IPA_INTER_TIMER_DISABLE + \param[out] none + \retval none +*/ +void ipa_inter_timer_config(uint8_t timer_cfg) +{ + if(IPA_INTER_TIMER_ENABLE == timer_cfg){ + IPA_ITCTL |= IPA_ITCTL_ITEN; + }else{ + IPA_ITCTL &= ~(IPA_ITCTL_ITEN); + } +} + +/*! + \brief configure the number of clock cycles interval + \param[in] clk_num: the number of clock cycles + \param[out] none + \retval none +*/ +void ipa_interval_clock_num_config(uint8_t clk_num) +{ + /* NCCI[7:0] bits have no meaning if ITEN is '0' */ + IPA_ITCTL &= ~(IPA_ITCTL_NCCI); + IPA_ITCTL |= ((uint32_t)clk_num<<8U); +} + +/*! + \brief get IPA flag status in IPA_INTF register + \param[in] flag: IPA flags + one or more parameters can be selected which are shown as below: + \arg IPA_FLAG_TAE: transfer access error interrupt flag + \arg IPA_FLAG_FTF: full transfer finish interrupt flag + \arg IPA_FLAG_TLM: transfer line mark interrupt flag + \arg IPA_FLAG_LAC: LUT access conflict interrupt flag + \arg IPA_FLAG_LLF: LUT loading finish interrupt flag + \arg IPA_FLAG_WCF: wrong configuration interrupt flag + \param[out] none + \retval none +*/ +FlagStatus ipa_flag_get(uint32_t flag) +{ + if(RESET != (IPA_INTF & flag)){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear IPA flag in IPA_INTF register + \param[in] flag: IPA flags + one or more parameters can be selected which are shown as below: + \arg IPA_FLAG_TAE: transfer access error interrupt flag + \arg IPA_FLAG_FTF: full transfer finish interrupt flag + \arg IPA_FLAG_TLM: transfer line mark interrupt flag + \arg IPA_FLAG_LAC: LUT access conflict interrupt flag + \arg IPA_FLAG_LLF: LUT loading finish interrupt flag + \arg IPA_FLAG_WCF: wrong configuration interrupt flag + \param[out] none + \retval none +*/ +void ipa_flag_clear(uint32_t flag) +{ + IPA_INTC |= (flag); +} + +/*! + \brief enable IPA interrupt + \param[in] int_flag: IPA interrupt flags + one or more parameters can be selected which are shown as below: + \arg IPA_INT_TAE: transfer access error interrupt + \arg IPA_INT_FTF: full transfer finish interrupt + \arg IPA_INT_TLM: transfer line mark interrupt + \arg IPA_INT_LAC: LUT access conflict interrupt + \arg IPA_INT_LLF: LUT loading finish interrupt + \arg IPA_INT_WCF: wrong configuration interrupt + \param[out] none + \retval none +*/ +void ipa_interrupt_enable(uint32_t int_flag) +{ + IPA_CTL |= (int_flag); +} + +/*! + \brief disable IPA interrupt + \param[in] int_flag: IPA interrupt flags + one or more parameters can be selected which are shown as below: + \arg IPA_INT_TAE: transfer access error interrupt + \arg IPA_INT_FTF: full transfer finish interrupt + \arg IPA_INT_TLM: transfer line mark interrupt + \arg IPA_INT_LAC: LUT access conflict interrupt + \arg IPA_INT_LLF: LUT loading finish interrupt + \arg IPA_INT_WCF: wrong configuration interrupt + \param[out] none + \retval none +*/ +void ipa_interrupt_disable(uint32_t int_flag) +{ + IPA_CTL &= ~(int_flag); +} + +/*! + \brief get IPA interrupt flag + \param[in] int_flag: IPA interrupt flag flags + one or more parameters can be selected which are shown as below: + \arg IPA_INT_FLAG_TAE: transfer access error interrupt flag + \arg IPA_INT_FLAG_FTF: full transfer finish interrupt flag + \arg IPA_INT_FLAG_TLM: transfer line mark interrupt flag + \arg IPA_INT_FLAG_LAC: LUT access conflict interrupt flag + \arg IPA_INT_FLAG_LLF: LUT loading finish interrupt flag + \arg IPA_INT_FLAG_WCF: wrong configuration interrupt flag + \param[out] none + \retval none +*/ +FlagStatus ipa_interrupt_flag_get(uint32_t int_flag) +{ + if(0U != (IPA_INTF & int_flag)){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear IPA interrupt flag + \param[in] int_flag: IPA interrupt flag flags + one or more parameters can be selected which are shown as below: + \arg IPA_INT_FLAG_TAE: transfer access error interrupt flag + \arg IPA_INT_FLAG_FTF: full transfer finish interrupt flag + \arg IPA_INT_FLAG_TLM: transfer line mark interrupt flag + \arg IPA_INT_FLAG_LAC: LUT access conflict interrupt flag + \arg IPA_INT_FLAG_LLF: LUT loading finish interrupt flag + \arg IPA_INT_FLAG_WCF: wrong configuration interrupt flag + \param[out] none + \retval none +*/ +void ipa_interrupt_flag_clear(uint32_t int_flag) +{ + IPA_INTC |= (int_flag); +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_iref.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_iref.c new file mode 100644 index 0000000000..a9f6b667ee --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_iref.c @@ -0,0 +1,126 @@ +/*! + \file gd32f4xx_iref.c + \brief IREF driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_iref.h" + +/*! + \brief deinit IREF + \param[in] none + \param[out] none + \retval none +*/ +void iref_deinit(void) +{ + rcu_periph_reset_enable(RCU_IREFRST); + rcu_periph_reset_disable(RCU_IREFRST); +} + +/*! + \brief enable IREF + \param[in] none + \param[out] none + \retval none +*/ +void iref_enable(void) +{ + IREF_CTL |= IREF_CTL_CREN; +} + +/*! + \brief disable IREF + \param[in] none + \param[out] none + \retval none +*/ +void iref_disable(void) +{ + IREF_CTL &= ~IREF_CTL_CREN; +} + +/*! + \brief set IREF mode + \param[in] step + \arg IREF_MODE_LOW_POWER: 1uA step + \arg IREF_MODE_HIGH_CURRENT: 8uA step + \param[out] none + \retval none +*/ +void iref_mode_set(uint32_t step) +{ + IREF_CTL &= ~IREF_CTL_SSEL; + IREF_CTL |= step; +} + +/*! + \brief set IREF precision_trim_value + \param[in] precisiontrim + \arg IREF_CUR_PRECISION_TRIM_X(x=0..31): (-15+ x)% + \param[out] none + \retval none +*/ +void iref_precision_trim_value_set(uint32_t precisiontrim) +{ + IREF_CTL &= ~IREF_CTL_CPT; + IREF_CTL |= precisiontrim; +} + +/*! + \brief set IREF sink mode + \param[in] sinkmode + \arg IREF_SOURCE_CURRENT : source current. + \arg IREF_SINK_CURRENT: sink current + \param[out] none + \retval none +*/ +void iref_sink_set(uint32_t sinkmode) +{ + IREF_CTL &= ~IREF_CTL_SCMOD; + IREF_CTL |= sinkmode; +} + +/*! + \brief set IREF step data + \param[in] stepdata + \arg IREF_CUR_STEP_DATA_X:(x=0..63): step*x + \param[out] none + \retval none +*/ + +void iref_step_data_config(uint32_t stepdata) +{ + IREF_CTL &= ~IREF_CTL_CSDT; + IREF_CTL |= stepdata; +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_misc.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_misc.c new file mode 100644 index 0000000000..5a316fa6c3 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_misc.c @@ -0,0 +1,174 @@ +/*! + \file gd32f4xx_misc.c + \brief MISC driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_misc.h" + +/*! + \brief set the priority group + \param[in] nvic_prigroup: the NVIC priority group + \arg NVIC_PRIGROUP_PRE0_SUB4:0 bits for pre-emption priority 4 bits for subpriority + \arg NVIC_PRIGROUP_PRE1_SUB3:1 bits for pre-emption priority 3 bits for subpriority + \arg NVIC_PRIGROUP_PRE2_SUB2:2 bits for pre-emption priority 2 bits for subpriority + \arg NVIC_PRIGROUP_PRE3_SUB1:3 bits for pre-emption priority 1 bits for subpriority + \arg NVIC_PRIGROUP_PRE4_SUB0:4 bits for pre-emption priority 0 bits for subpriority + \param[out] none + \retval none +*/ +void nvic_priority_group_set(uint32_t nvic_prigroup) +{ + /* set the priority group value */ + SCB->AIRCR = NVIC_AIRCR_VECTKEY_MASK | nvic_prigroup; +} + +/*! + \brief enable NVIC request + \param[in] nvic_irq: the NVIC interrupt request, detailed in IRQn_Type + \param[in] nvic_irq_pre_priority: the pre-emption priority needed to set + \param[in] nvic_irq_sub_priority: the subpriority needed to set + \param[out] none + \retval none +*/ +void nvic_irq_enable(uint8_t nvic_irq, uint8_t nvic_irq_pre_priority, + uint8_t nvic_irq_sub_priority) +{ + uint32_t temp_priority = 0x00U, temp_pre = 0x00U, temp_sub = 0x00U; + /* use the priority group value to get the temp_pre and the temp_sub */ + if(((SCB->AIRCR) & (uint32_t)0x700U)==NVIC_PRIGROUP_PRE0_SUB4){ + temp_pre=0U; + temp_sub=0x4U; + }else if(((SCB->AIRCR) & (uint32_t)0x700U)==NVIC_PRIGROUP_PRE1_SUB3){ + temp_pre=1U; + temp_sub=0x3U; + }else if(((SCB->AIRCR) & (uint32_t)0x700U)==NVIC_PRIGROUP_PRE2_SUB2){ + temp_pre=2U; + temp_sub=0x2U; + }else if(((SCB->AIRCR) & (uint32_t)0x700U)==NVIC_PRIGROUP_PRE3_SUB1){ + temp_pre=3U; + temp_sub=0x1U; + }else if(((SCB->AIRCR) & (uint32_t)0x700U)==NVIC_PRIGROUP_PRE4_SUB0){ + temp_pre=4U; + temp_sub=0x0U; + }else{ + nvic_priority_group_set(NVIC_PRIGROUP_PRE2_SUB2); + temp_pre=2U; + temp_sub=0x2U; + } + /* get the temp_priority to fill the NVIC->IP register */ + temp_priority = (uint32_t)nvic_irq_pre_priority << (0x4U - temp_pre); + temp_priority |= nvic_irq_sub_priority &(0x0FU >> (0x4U - temp_sub)); + temp_priority = temp_priority << 0x04U; + NVIC->IP[nvic_irq] = (uint8_t)temp_priority; + /* enable the selected IRQ */ + NVIC->ISER[nvic_irq >> 0x05U] = (uint32_t)0x01U << (nvic_irq & (uint8_t)0x1FU); +} + +/*! + \brief disable NVIC request + \param[in] nvic_irq: the NVIC interrupt request, detailed in IRQn_Type + \param[out] none + \retval none +*/ +void nvic_irq_disable(uint8_t nvic_irq) +{ + /* disable the selected IRQ.*/ + NVIC->ICER[nvic_irq >> 0x05] = (uint32_t)0x01 << (nvic_irq & (uint8_t)0x1F); +} + +/*! + \brief set the NVIC vector table base address + \param[in] nvic_vict_tab: the RAM or FLASH base address + \arg NVIC_VECTTAB_RAM: RAM base address + \are NVIC_VECTTAB_FLASH: Flash base address + \param[in] offset: Vector Table offset + \param[out] none + \retval none +*/ +void nvic_vector_table_set(uint32_t nvic_vict_tab, uint32_t offset) +{ + SCB->VTOR = nvic_vict_tab | (offset & NVIC_VECTTAB_OFFSET_MASK); +} + +/*! + \brief set the state of the low power mode + \param[in] lowpower_mode: the low power mode state + \arg SCB_LPM_SLEEP_EXIT_ISR: if chose this para, the system always enter low power + mode by exiting from ISR + \arg SCB_LPM_DEEPSLEEP: if chose this para, the system will enter the DEEPSLEEP mode + \arg SCB_LPM_WAKE_BY_ALL_INT: if chose this para, the lowpower mode can be woke up + by all the enable and disable interrupts + \param[out] none + \retval none +*/ +void system_lowpower_set(uint8_t lowpower_mode) +{ + SCB->SCR |= (uint32_t)lowpower_mode; +} + +/*! + \brief reset the state of the low power mode + \param[in] lowpower_mode: the low power mode state + \arg SCB_LPM_SLEEP_EXIT_ISR: if chose this para, the system will exit low power + mode by exiting from ISR + \arg SCB_LPM_DEEPSLEEP: if chose this para, the system will enter the SLEEP mode + \arg SCB_LPM_WAKE_BY_ALL_INT: if chose this para, the lowpower mode only can be + woke up by the enable interrupts + \param[out] none + \retval none +*/ +void system_lowpower_reset(uint8_t lowpower_mode) +{ + SCB->SCR &= (~(uint32_t)lowpower_mode); +} + +/*! + \brief set the systick clock source + \param[in] systick_clksource: the systick clock source needed to choose + \arg SYSTICK_CLKSOURCE_HCLK: systick clock source is from HCLK + \arg SYSTICK_CLKSOURCE_HCLK_DIV8: systick clock source is from HCLK/8 + \param[out] none + \retval none +*/ + +void systick_clksource_set(uint32_t systick_clksource) +{ + if(SYSTICK_CLKSOURCE_HCLK == systick_clksource ){ + /* set the systick clock source from HCLK */ + SysTick->CTRL |= SYSTICK_CLKSOURCE_HCLK; + }else{ + /* set the systick clock source from HCLK/8 */ + SysTick->CTRL &= SYSTICK_CLKSOURCE_HCLK_DIV8; + } +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_pmu.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_pmu.c new file mode 100644 index 0000000000..98a77fecf4 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_pmu.c @@ -0,0 +1,391 @@ +/*! + \file gd32f4xx_pmu.c + \brief PMU driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_pmu.h" +#include "core_cm4.h" +/*! + \brief reset PMU register + \param[in] none + \param[out] none + \retval none +*/ +void pmu_deinit(void) +{ + /* reset PMU */ + rcu_periph_reset_enable(RCU_PMURST); + rcu_periph_reset_disable(RCU_PMURST); +} + +/*! + \brief select low voltage detector threshold + \param[in] lvdt_n: + \arg PMU_LVDT_0: voltage threshold is 2.1V + \arg PMU_LVDT_1: voltage threshold is 2.3V + \arg PMU_LVDT_2: voltage threshold is 2.4V + \arg PMU_LVDT_3: voltage threshold is 2.6V + \arg PMU_LVDT_4: voltage threshold is 2.7V + \arg PMU_LVDT_5: voltage threshold is 2.9V + \arg PMU_LVDT_6: voltage threshold is 3.0V + \arg PMU_LVDT_7: voltage threshold is 3.1V + \param[out] none + \retval none +*/ +void pmu_lvd_select(uint32_t lvdt_n) +{ + /* disable LVD */ + PMU_CTL &= ~PMU_CTL_LVDEN; + /* clear LVDT bits */ + PMU_CTL &= ~PMU_CTL_LVDT; + /* set LVDT bits according to pmu_lvdt_n */ + PMU_CTL |= lvdt_n; + /* enable LVD */ + PMU_CTL |= PMU_CTL_LVDEN; +} + +/*! + \brief select LDO output voltage + this bit set by software when the main PLL closed, before closing PLL, change the system clock to IRC16M or HXTAL + \param[in] ldo_output: + \arg PMU_LDOVS_LOW: low-driver mode enable in deep-sleep mode + \arg PMU_LDOVS_MID: mid-driver mode disable in deep-sleep mode + \arg PMU_LDOVS_HIGH: high-driver mode disable in deep-sleep mode + \param[out] none + \retval none +*/ +void pmu_ldo_output_select(uint32_t ldo_output) +{ + PMU_CTL &= ~PMU_CTL_LDOVS; + PMU_CTL |= ldo_output; +} + +/*! + \brief enable low-driver mode in deep-sleep mode + \param[in] lowdr_mode: + \arg PMU_LOWDRIVER_ENABLE: enable low-driver mode in deep-sleep mode + \arg PMU_LOWDRIVER_DISABLE: disable low-driver mode in deep-sleep mode + \param[out] none + \retval none +*/ +void pmu_low_driver_mode_enable(uint32_t lowdr_mode) +{ + PMU_CTL &= ~PMU_CTL_LDEN; + PMU_CTL |= lowdr_mode; +} + +/*! + \brief switch high-driver mode + this bit set by software only when IRC16M or HXTAL used as system clock + \param[in] highdr_switch: + \arg PMU_HIGHDR_SWITCH_NONE: disable high-driver mode switch + \arg PMU_HIGHDR_SWITCH_EN: enable high-driver mode switch + \param[out] none + \retval none +*/ +void pmu_highdriver_switch_select(uint32_t highdr_switch) +{ + /* wait for HDRF flag set */ + while(SET != pmu_flag_get(PMU_FLAG_HDRF)){ + } + PMU_CTL &= ~PMU_CTL_HDS; + PMU_CTL |= highdr_switch; +} + +/*! + \brief enable high-driver mode + this bit set by software only when IRC16M or HXTAL used as system clock + \param[in] none + \param[out] none + \retval none +*/ +void pmu_highdriver_mode_enable(void) +{ + PMU_CTL |= PMU_CTL_HDEN; +} + +/*! + \brief disable high-driver mode + \param[in] none + \param[out] none + \retval none +*/ +void pmu_highdriver_mode_disable(void) +{ + PMU_CTL &= ~PMU_CTL_HDEN; +} + +/*! + \brief disable PMU lvd + \param[in] none + \param[out] none + \retval none +*/ +void pmu_lvd_disable(void) +{ + /* disable LVD */ + PMU_CTL &= ~PMU_CTL_LVDEN; +} + +/*! + \brief low-driver mode when use low power LDO + \param[in] mode: + \arg PMU_NORMALDR_LOWPWR: normal driver when use low power LDO + \arg PMU_LOWDR_LOWPWR: low-driver mode enabled when LDEN is 11 and use low power LDO + \param[out] none + \retval none +*/ +void pmu_lowdriver_lowpower_config(uint32_t mode) +{ + PMU_CTL &= ~PMU_CTL_LDLP; + PMU_CTL |= mode; +} + +/*! + \brief low-driver mode when use normal power LDO + \param[in] mode: + \arg PMU_NORMALDR_NORMALPWR: normal driver when use normal power LDO + \arg PMU_LOWDR_NORMALPWR: low-driver mode enabled when LDEN is 11 and use normal power LDO + \param[out] none + \retval none +*/ +void pmu_lowdriver_normalpower_config(uint32_t mode) +{ + PMU_CTL &= ~PMU_CTL_LDNP; + PMU_CTL |= mode; +} + +/*! + \brief PMU work at sleep mode + \param[in] sleepmodecmd: + \arg WFI_CMD: use WFI command + \arg WFE_CMD: use WFE command + \param[out] none + \retval none +*/ +void pmu_to_sleepmode(uint8_t sleepmodecmd) +{ + /* clear sleepdeep bit of Cortex-M4 system control register */ + SCB->SCR &= ~((uint32_t)SCB_SCR_SLEEPDEEP_Msk); + + /* select WFI or WFE command to enter sleep mode */ + if(WFI_CMD == sleepmodecmd){ + __WFI(); + }else{ + __WFE(); + } +} + +/*! + \brief PMU work at deepsleep mode + \param[in] ldo + \arg PMU_LDO_NORMAL: LDO normal work when pmu enter deepsleep mode + \arg PMU_LDO_LOWPOWER: LDO work at low power mode when pmu enter deepsleep mode + \param[in] deepsleepmodecmd: + \arg WFI_CMD: use WFI command + \arg WFE_CMD: use WFE command + \param[out] none + \retval none +*/ +void pmu_to_deepsleepmode(uint32_t ldo,uint8_t deepsleepmodecmd) +{ + static uint32_t reg_snap[ 4 ]; + /* clear stbmod and ldolp bits */ + PMU_CTL &= ~((uint32_t)(PMU_CTL_STBMOD | PMU_CTL_LDOLP)); + + /* set ldolp bit according to pmu_ldo */ + PMU_CTL |= ldo; + + /* set sleepdeep bit of Cortex-M4 system control register */ + SCB->SCR |= SCB_SCR_SLEEPDEEP_Msk; + + reg_snap[ 0 ] = REG32( 0xE000E010U ); + reg_snap[ 1 ] = REG32( 0xE000E100U ); + reg_snap[ 2 ] = REG32( 0xE000E104U ); + reg_snap[ 3 ] = REG32( 0xE000E108U ); + + REG32( 0xE000E010U ) &= 0x00010004U; + REG32( 0xE000E180U ) = 0XFF7FF831U; + REG32( 0xE000E184U ) = 0XBFFFF8FFU; + REG32( 0xE000E188U ) = 0xFFFFEFFFU; + + /* select WFI or WFE command to enter deepsleep mode */ + if(WFI_CMD == deepsleepmodecmd){ + __WFI(); + }else{ + __SEV(); + __WFE(); + __WFE(); + } + + REG32( 0xE000E010U ) = reg_snap[ 0 ] ; + REG32( 0xE000E100U ) = reg_snap[ 1 ] ; + REG32( 0xE000E104U ) = reg_snap[ 2 ] ; + REG32( 0xE000E108U ) = reg_snap[ 3 ] ; + + /* reset sleepdeep bit of Cortex-M4 system control register */ + SCB->SCR &= ~((uint32_t)SCB_SCR_SLEEPDEEP_Msk); +} + +/*! + \brief pmu work at standby mode + \param[in] standbymodecmd: + \arg WFI_CMD: use WFI command + \arg WFE_CMD: use WFE command + \param[out] none + \retval none +*/ +void pmu_to_standbymode(uint8_t standbymodecmd) +{ + /* set sleepdeep bit of Cortex-M4 system control register */ + SCB->SCR |= SCB_SCR_SLEEPDEEP_Msk; + + /* set stbmod bit */ + PMU_CTL |= PMU_CTL_STBMOD; + + /* reset wakeup flag */ + PMU_CTL |= PMU_CTL_WURST; + + /* select WFI or WFE command to enter standby mode */ + if(WFI_CMD == standbymodecmd){ + __WFI(); + }else{ + __WFE(); + } +} + +/*! + \brief backup SRAM LDO on + \param[in] bkp_ldo: + \arg PMU_BLDOON_OFF: backup SRAM LDO closed + \arg PMU_BLDOON_ON: open the backup SRAM LDO + \param[out] none + \retval none +*/ +void pmu_backup_ldo_config(uint32_t bkp_ldo) +{ + PMU_CS &= ~PMU_CS_BLDOON; + PMU_CS |= bkp_ldo; +} + +/*! + \brief reset flag bit + \param[in] flag_reset: + \arg PMU_FLAG_RESET_WAKEUP: reset wakeup flag + \arg PMU_FLAG_RESET_STANDBY: reset standby flag + \param[out] none + \retval none +*/ +void pmu_flag_reset(uint32_t flag_reset) +{ + switch(flag_reset){ + case PMU_FLAG_RESET_WAKEUP: + /* reset wakeup flag */ + PMU_CTL |= PMU_CTL_WURST; + break; + case PMU_FLAG_RESET_STANDBY: + /* reset standby flag */ + PMU_CTL |= PMU_CTL_STBRST; + break; + default : + break; + } +} + +/*! + \brief get flag state + \param[in] pmu_flag: + \arg PMU_FLAG_WAKEUP: wakeup flag + \arg PMU_FLAG_STANDBY: standby flag + \arg PMU_FLAG_LVD: lvd flag + \arg PMU_FLAG_BLDORF: backup SRAM LDO ready flag + \arg PMU_FLAG_LDOVSRF: LDO voltage select ready flag + \arg PMU_FLAG_HDRF: high-driver ready flag + \arg PMU_FLAG_HDSRF: high-driver switch ready flag + \arg PMU_FLAG_LDRF: low-driver mode ready flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus pmu_flag_get(uint32_t pmu_flag) +{ + if(PMU_CS & pmu_flag){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief enable backup domain write + \param[in] none + \param[out] none + \retval none +*/ +void pmu_backup_write_enable(void) +{ + PMU_CTL |= PMU_CTL_BKPWEN; +} + +/*! + \brief disable backup domain write + \param[in] none + \param[out] none + \retval none +*/ +void pmu_backup_write_disable(void) +{ + PMU_CTL &= ~PMU_CTL_BKPWEN; +} + +/*! + \brief enable wakeup pin + \param[in] none + \param[out] none + \retval none +*/ +void pmu_wakeup_pin_enable(void) +{ + PMU_CS |= PMU_CS_WUPEN; +} + +/*! + \brief disable wakeup pin + \param[in] none + \param[out] none + \retval none +*/ +void pmu_wakeup_pin_disable(void) +{ + PMU_CS &= ~PMU_CS_WUPEN; +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_rcu.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_rcu.c new file mode 100644 index 0000000000..883f067969 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_rcu.c @@ -0,0 +1,1329 @@ +/*! + \file gd32f4xx_rcu.c + \brief RCU driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_rcu.h" + +/* define clock source */ +#define SEL_IRC16M ((uint16_t)0U) /* IRC16M is selected as CK_SYS */ +#define SEL_HXTAL ((uint16_t)1U) /* HXTAL is selected as CK_SYS */ +#define SEL_PLLP ((uint16_t)2U) /* PLLP is selected as CK_SYS */ +/* define startup timeout count */ +#define OSC_STARTUP_TIMEOUT ((uint32_t)0x000fffffU) +#define LXTAL_STARTUP_TIMEOUT ((uint32_t)0x0fffffffU) + +/* RCU IRC16M adjust value mask and offset*/ +#define RCU_IRC16M_ADJUST_MASK ((uint8_t)0x1FU) +#define RCU_IRC16M_ADJUST_OFFSET ((uint32_t)3U) + +/*! + \brief deinitialize the RCU + \param[in] none + \param[out] none + \retval none +*/ +void rcu_deinit(void) +{ + /* enable IRC16M */ + RCU_CTL |= RCU_CTL_IRC16MEN; + rcu_osci_stab_wait(RCU_IRC16M); + /* reset CFG0 register */ + RCU_CFG0 &= ~(RCU_CFG0_SCS | RCU_CFG0_AHBPSC | RCU_CFG0_APB1PSC | RCU_CFG0_APB2PSC | + RCU_CFG0_RTCDIV | RCU_CFG0_CKOUT0SEL | RCU_CFG0_I2SSEL | RCU_CFG0_CKOUT0DIV | + RCU_CFG0_CKOUT1DIV | RCU_CFG0_CKOUT1SEL); + /* reset CTL register */ + RCU_CTL &= ~(RCU_CTL_HXTALEN | RCU_CTL_CKMEN | RCU_CTL_PLLEN | RCU_CTL_PLLI2SEN + | RCU_CTL_PLLSAIEN); + RCU_CTL &= ~(RCU_CTL_HXTALBPS); + /* reset PLL register */ + RCU_PLL = 0x24003010U; + /* reset PLLI2S register */ + RCU_PLLI2S = 0x24003000U; + /* reset PLLSAI register */ + RCU_PLLSAI = 0x24003010U; + /* reset INT register */ + RCU_INT = 0x00000000U; + /* reset CFG1 register */ + RCU_CFG1 &= ~(RCU_CFG1_PLLSAIRDIV | RCU_CFG1_TIMERSEL); +} + +/*! + \brief enable the peripherals clock + \param[in] periph: RCU peripherals, refer to rcu_periph_enum + only one parameter can be selected which is shown as below: + \arg RCU_GPIOx (x=A,B,C,D,E,F,G,H,I): GPIO ports clock + \arg RCU_CRC: CRC clock + \arg RCU_BKPSRAM: BKPSRAM clock + \arg RCU_TCMSRAM: TCMSRAM clock + \arg RCU_DMAx (x=0,1): DMA clock + \arg RCU_IPA: IPA clock + \arg RCU_ENET: ENET clock + \arg RCU_ENETTX: ENETTX clock + \arg RCU_ENETRX: ENETRX clock + \arg RCU_ENETPTP: ENETPTP clock + \arg RCU_USBHS: USBHS clock + \arg RCU_USBHSULPI: USBHSULPI clock + \arg RCU_DCI: DCI clock + \arg RCU_TRNG: TRNG clock + \arg RCU_USBFS: USBFS clock + \arg RCU_EXMC: EXMC clock + \arg RCU_TIMERx (x=0,1,2,3,4,5,6,7,8,9,10,11,12,13): TIMER clock + \arg RCU_WWDGT: WWDGT clock + \arg RCU_SPIx (x=0,1,2,3,4,5): SPI clock + \arg RCU_USARTx (x=0,1,2,5): USART clock + \arg RCU_UARTx (x=3,4,6,7): UART clock + \arg RCU_I2Cx (x=0,1,2): I2C clock + \arg RCU_CANx (x=0,1): CAN clock + \arg RCU_PMU: PMU clock + \arg RCU_DAC: DAC clock + \arg RCU_RTC: RTC clock + \arg RCU_ADCx (x=0,1,2): ADC clock + \arg RCU_SDIO: SDIO clock + \arg RCU_SYSCFG: SYSCFG clock + \arg RCU_TLI: TLI clock + \arg RCU_CTC: CTC clock + \arg RCU_IREF: IREF clock + \param[out] none + \retval none +*/ +void rcu_periph_clock_enable(rcu_periph_enum periph) +{ + RCU_REG_VAL(periph) |= BIT(RCU_BIT_POS(periph)); +} + +/*! + \brief disable the peripherals clock + \param[in] periph: RCU peripherals, refer to rcu_periph_enum + only one parameter can be selected which is shown as below: + \arg RCU_GPIOx (x=A,B,C,D,E,F,G,H,I): GPIO ports clock + \arg RCU_CRC: CRC clock + \arg RCU_BKPSRAM: BKPSRAM clock + \arg RCU_TCMSRAM: TCMSRAM clock + \arg RCU_DMAx (x=0,1): DMA clock + \arg RCU_IPA: IPA clock + \arg RCU_ENET: ENET clock + \arg RCU_ENETTX: ENETTX clock + \arg RCU_ENETRX: ENETRX clock + \arg RCU_ENETPTP: ENETPTP clock + \arg RCU_USBHS: USBHS clock + \arg RCU_USBHSULPI: USBHSULPI clock + \arg RCU_DCI: DCI clock + \arg RCU_TRNG: TRNG clock + \arg RCU_USBFS: USBFS clock + \arg RCU_EXMC: EXMC clock + \arg RCU_TIMERx (x=0,1,2,3,4,5,6,7,8,9,10,11,12,13): TIMER clock + \arg RCU_WWDGT: WWDGT clock + \arg RCU_SPIx (x=0,1,2,3,4,5): SPI clock + \arg RCU_USARTx (x=0,1,2,5): USART clock + \arg RCU_UARTx (x=3,4,6,7): UART clock + \arg RCU_I2Cx (x=0,1,2): I2C clock + \arg RCU_CANx (x=0,1): CAN clock + \arg RCU_PMU: PMU clock + \arg RCU_DAC: DAC clock + \arg RCU_RTC: RTC clock + \arg RCU_ADCx (x=0,1,2): ADC clock + \arg RCU_SDIO: SDIO clock + \arg RCU_SYSCFG: SYSCFG clock + \arg RCU_TLI: TLI clock + \arg RCU_CTC: CTC clock + \arg RCU_IREF: IREF clock + \param[out] none + \retval none +*/ +void rcu_periph_clock_disable(rcu_periph_enum periph) +{ + RCU_REG_VAL(periph) &= ~BIT(RCU_BIT_POS(periph)); +} + +/*! + \brief enable the peripherals clock when sleep mode + \param[in] periph: RCU peripherals, refer to rcu_periph_sleep_enum + only one parameter can be selected which is shown as below: + \arg RCU_GPIOx_SLP (x=A,B,C,D,E,F,G,H,I): GPIO ports clock + \arg RCU_CRC_SLP: CRC clock + \arg RCU_FMC_SLP: FMC clock + \arg RCU_SRAM0_SLP: SRAM0 clock + \arg RCU_SRAM1_SLP: SRAM1 clock + \arg RCU_BKPSRAM: BKPSRAM clock + \arg RCU_SRAM2_SLP: SRAM2 clock + \arg RCU_DMAx_SLP (x=0,1): DMA clock + \arg RCU_IPA_SLP: IPA clock + \arg RCU_ENET_SLP: ENET clock + \arg RCU_ENETTX_SLP: ENETTX clock + \arg RCU_ENETRX_SLP: ENETRX clock + \arg RCU_ENETPTP_SLP: ENETPTP clock + \arg RCU_USBHS_SLP: USBHS clock + \arg RCU_USBHSULPI_SLP: USBHSULPI clock + \arg RCU_DCI_SLP: DCI clock + \arg RCU_TRNG_SLP: TRNG clock + \arg RCU_USBFS_SLP: USBFS clock + \arg RCU_EXMC_SLP: EXMC clock + \arg RCU_TIMERx_SLP (x=0,1,2,3,4,5,6,7,8,9,10,11,12,13): TIMER clock + \arg RCU_WWDGT_SLP: WWDGT clock + \arg RCU_SPIx_SLP (x=0,1,2,3,4,5): SPI clock + \arg RCU_USARTx_SLP (x=0,1,2,5): USART clock + \arg RCU_UARTx_SLP (x=3,4,6,7): UART clock + \arg RCU_I2Cx_SLP (x=0,1,2): I2C clock + \arg RCU_CANx_SLP (x=0,1): CAN clock + \arg RCU_PMU_SLP: PMU clock + \arg RCU_DAC_SLP: DAC clock + \arg RCU_RTC_SLP: RTC clock + \arg RCU_ADCx_SLP (x=0,1,2): ADC clock + \arg RCU_SDIO_SLP: SDIO clock + \arg RCU_SYSCFG_SLP: SYSCFG clock + \arg RCU_TLI_SLP: TLI clock + \arg RCU_CTC_SLP: CTC clock + \arg RCU_IREF_SLP: IREF clock + \param[out] none + \retval none +*/ +void rcu_periph_clock_sleep_enable(rcu_periph_sleep_enum periph) +{ + RCU_REG_VAL(periph) |= BIT(RCU_BIT_POS(periph)); +} + +/*! + \brief disable the peripherals clock when sleep mode + \param[in] periph: RCU peripherals, refer to rcu_periph_sleep_enum + only one parameter can be selected which is shown as below: + \arg RCU_GPIOx_SLP (x=A,B,C,D,E,F,G,H,I): GPIO ports clock + \arg RCU_CRC_SLP: CRC clock + \arg RCU_FMC_SLP: FMC clock + \arg RCU_SRAM0_SLP: SRAM0 clock + \arg RCU_SRAM1_SLP: SRAM1 clock + \arg RCU_BKPSRAM: BKPSRAM clock + \arg RCU_SRAM2_SLP: SRAM2 clock + \arg RCU_DMAx_SLP (x=0,1): DMA clock + \arg RCU_IPA_SLP: IPA clock + \arg RCU_ENET_SLP: ENET clock + \arg RCU_ENETTX_SLP: ENETTX clock + \arg RCU_ENETRX_SLP: ENETRX clock + \arg RCU_ENETPTP_SLP: ENETPTP clock + \arg RCU_USBHS_SLP: USBHS clock + \arg RCU_USBHSULPI_SLP: USBHSULPI clock + \arg RCU_DCI_SLP: DCI clock + \arg RCU_TRNG_SLP: TRNG clock + \arg RCU_USBFS_SLP: USBFS clock + \arg RCU_EXMC_SLP: EXMC clock + \arg RCU_TIMERx_SLP (x=0,1,2,3,4,5,6,7,8,9,10,11,12,13): TIMER clock + \arg RCU_WWDGT_SLP: WWDGT clock + \arg RCU_SPIx_SLP (x=0,1,2,3,4,5): SPI clock + \arg RCU_USARTx_SLP (x=0,1,2,5): USART clock + \arg RCU_UARTx_SLP (x=3,4,6,7): UART clock + \arg RCU_I2Cx_SLP (x=0,1,2): I2C clock + \arg RCU_CANx_SLP (x=0,1): CAN clock + \arg RCU_PMU_SLP: PMU clock + \arg RCU_DAC_SLP: DAC clock + \arg RCU_RTC_SLP: RTC clock + \arg RCU_ADCx_SLP (x=0,1,2): ADC clock + \arg RCU_SDIO_SLP: SDIO clock + \arg RCU_SYSCFG_SLP: SYSCFG clock + \arg RCU_TLI_SLP: TLI clock + \arg RCU_CTC_SLP: CTC clock + \arg RCU_IREF_SLP: IREF clock + \param[out] none + \retval none +*/ +void rcu_periph_clock_sleep_disable(rcu_periph_sleep_enum periph) +{ + RCU_REG_VAL(periph) &= ~BIT(RCU_BIT_POS(periph)); +} + +/*! + \brief reset the peripherals + \param[in] periph_reset: RCU peripherals reset, refer to rcu_periph_reset_enum + only one parameter can be selected which is shown as below: + \arg RCU_GPIOxRST (x=A,B,C,D,E,F,G,H,I): reset GPIO ports + \arg RCU_CRCRST: reset CRC + \arg RCU_DMAxRST (x=0,1): reset DMA + \arg RCU_IPARST: reset IPA + \arg RCU_ENETRST: reset ENET + \arg RCU_USBHSRST: reset USBHS + \arg RCU_DCIRST: reset DCI + \arg RCU_TRNGRST: reset TRNG + \arg RCU_USBFSRST: reset USBFS + \arg RCU_EXMCRST: reset EXMC + \arg RCU_TIMERxRST (x=0,1,2,3,4,5,6,7,8,9,10,11,12,13): reset TIMER + \arg RCU_WWDGTRST: reset WWDGT + \arg RCU_SPIxRST (x=0,1,2,3,4,5): reset SPI + \arg RCU_USARTxRST (x=0,1,2,5): reset USART + \arg RCU_UARTxRST (x=3,4,6,7): reset UART + \arg RCU_I2CxRST (x=0,1,2): reset I2C + \arg RCU_CANxRST (x=0,1): reset CAN + \arg RCU_PMURST: reset PMU + \arg RCU_DACRST: reset DAC + \arg RCU_ADCRST (x=0,1,2): reset ADC + \arg RCU_SDIORST: reset SDIO + \arg RCU_SYSCFGRST: reset SYSCFG + \arg RCU_TLIRST: reset TLI + \arg RCU_CTCRST: reset CTC + \arg RCU_IREFRST: reset IREF + \param[out] none + \retval none +*/ +void rcu_periph_reset_enable(rcu_periph_reset_enum periph_reset) +{ + RCU_REG_VAL(periph_reset) |= BIT(RCU_BIT_POS(periph_reset)); +} + +/*! + \brief disable reset the peripheral + \param[in] periph_reset: RCU peripherals reset, refer to rcu_periph_reset_enum + only one parameter can be selected which is shown as below: + \arg RCU_GPIOxRST (x=A,B,C,D,E,F,G,H,I): reset GPIO ports + \arg RCU_CRCRST: reset CRC + \arg RCU_DMAxRST (x=0,1): reset DMA + \arg RCU_IPARST: reset IPA + \arg RCU_ENETRST: reset ENET + \arg RCU_USBHSRST: reset USBHS + \arg RCU_DCIRST: reset DCI + \arg RCU_TRNGRST: reset TRNG + \arg RCU_USBFSRST: reset USBFS + \arg RCU_EXMCRST: reset EXMC + \arg RCU_TIMERxRST (x=0,1,2,3,4,5,6,7,8,9,10,11,12,13): reset TIMER + \arg RCU_WWDGTRST: reset WWDGT + \arg RCU_SPIxRST (x=0,1,2,3,4,5): reset SPI + \arg RCU_USARTxRST (x=0,1,2,5): reset USART + \arg RCU_UARTxRST (x=3,4,6,7): reset UART + \arg RCU_I2CxRST (x=0,1,2): reset I2C + \arg RCU_CANxRST (x=0,1): reset CAN + \arg RCU_PMURST: reset PMU + \arg RCU_DACRST: reset DAC + \arg RCU_ADCRST (x=0,1,2): reset ADC + \arg RCU_SDIORST: reset SDIO + \arg RCU_SYSCFGRST: reset SYSCFG + \arg RCU_TLIRST: reset TLI + \arg RCU_CTCRST: reset CTC + \arg RCU_IREFRST: reset IREF + \param[out] none + \retval none +*/ +void rcu_periph_reset_disable(rcu_periph_reset_enum periph_reset) +{ + RCU_REG_VAL(periph_reset) &= ~BIT(RCU_BIT_POS(periph_reset)); +} + +/*! + \brief reset the BKP + \param[in] none + \param[out] none + \retval none +*/ +void rcu_bkp_reset_enable(void) +{ + RCU_BDCTL |= RCU_BDCTL_BKPRST; +} + +/*! + \brief disable the BKP reset + \param[in] none + \param[out] none + \retval none +*/ +void rcu_bkp_reset_disable(void) +{ + RCU_BDCTL &= ~RCU_BDCTL_BKPRST; +} + +/*! + \brief configure the system clock source + \param[in] ck_sys: system clock source select + only one parameter can be selected which is shown as below: + \arg RCU_CKSYSSRC_IRC16M: select CK_IRC16M as the CK_SYS source + \arg RCU_CKSYSSRC_HXTAL: select CK_HXTAL as the CK_SYS source + \arg RCU_CKSYSSRC_PLLP: select CK_PLLP as the CK_SYS source + \param[out] none + \retval none +*/ +void rcu_system_clock_source_config(uint32_t ck_sys) +{ + uint32_t reg; + + reg = RCU_CFG0; + /* reset the SCS bits and set according to ck_sys */ + reg &= ~RCU_CFG0_SCS; + RCU_CFG0 = (reg | ck_sys); +} + +/*! + \brief get the system clock source + \param[in] none + \param[out] none + \retval which clock is selected as CK_SYS source + \arg RCU_SCSS_IRC16M: CK_IRC16M is selected as the CK_SYS source + \arg RCU_SCSS_HXTAL: CK_HXTAL is selected as the CK_SYS source + \arg RCU_SCSS_PLLP: CK_PLLP is selected as the CK_SYS source +*/ +uint32_t rcu_system_clock_source_get(void) +{ + return (RCU_CFG0 & RCU_CFG0_SCSS); +} + +/*! + \brief configure the AHB clock prescaler selection + \param[in] ck_ahb: AHB clock prescaler selection + only one parameter can be selected which is shown as below: + \arg RCU_AHB_CKSYS_DIVx, x=1, 2, 4, 8, 16, 64, 128, 256, 512 + \param[out] none + \retval none +*/ +void rcu_ahb_clock_config(uint32_t ck_ahb) +{ + uint32_t reg; + + reg = RCU_CFG0; + /* reset the AHBPSC bits and set according to ck_ahb */ + reg &= ~RCU_CFG0_AHBPSC; + RCU_CFG0 = (reg | ck_ahb); +} + +/*! + \brief configure the APB1 clock prescaler selection + \param[in] ck_apb1: APB1 clock prescaler selection + only one parameter can be selected which is shown as below: + \arg RCU_APB1_CKAHB_DIV1: select CK_AHB as CK_APB1 + \arg RCU_APB1_CKAHB_DIV2: select CK_AHB/2 as CK_APB1 + \arg RCU_APB1_CKAHB_DIV4: select CK_AHB/4 as CK_APB1 + \arg RCU_APB1_CKAHB_DIV8: select CK_AHB/8 as CK_APB1 + \arg RCU_APB1_CKAHB_DIV16: select CK_AHB/16 as CK_APB1 + \param[out] none + \retval none +*/ +void rcu_apb1_clock_config(uint32_t ck_apb1) +{ + uint32_t reg; + + reg = RCU_CFG0; + /* reset the APB1PSC and set according to ck_apb1 */ + reg &= ~RCU_CFG0_APB1PSC; + RCU_CFG0 = (reg | ck_apb1); +} + +/*! + \brief configure the APB2 clock prescaler selection + \param[in] ck_apb2: APB2 clock prescaler selection + only one parameter can be selected which is shown as below: + \arg RCU_APB2_CKAHB_DIV1: select CK_AHB as CK_APB2 + \arg RCU_APB2_CKAHB_DIV2: select CK_AHB/2 as CK_APB2 + \arg RCU_APB2_CKAHB_DIV4: select CK_AHB/4 as CK_APB2 + \arg RCU_APB2_CKAHB_DIV8: select CK_AHB/8 as CK_APB2 + \arg RCU_APB2_CKAHB_DIV16: select CK_AHB/16 as CK_APB2 + \param[out] none + \retval none +*/ +void rcu_apb2_clock_config(uint32_t ck_apb2) +{ + uint32_t reg; + + reg = RCU_CFG0; + /* reset the APB2PSC and set according to ck_apb2 */ + reg &= ~RCU_CFG0_APB2PSC; + RCU_CFG0 = (reg | ck_apb2); +} + +/*! + \brief configure the CK_OUT0 clock source and divider + \param[in] ckout0_src: CK_OUT0 clock source selection + only one parameter can be selected which is shown as below: + \arg RCU_CKOUT0SRC_IRC16M: IRC16M selected + \arg RCU_CKOUT0SRC_LXTAL: LXTAL selected + \arg RCU_CKOUT0SRC_HXTAL: HXTAL selected + \arg RCU_CKOUT0SRC_PLLP: PLLP selected + \param[in] ckout0_div: CK_OUT0 divider + \arg RCU_CKOUT0_DIVx(x=1,2,3,4,5): CK_OUT0 is divided by x + \param[out] none + \retval none +*/ +void rcu_ckout0_config(uint32_t ckout0_src, uint32_t ckout0_div) +{ + uint32_t reg; + + reg = RCU_CFG0; + /* reset the CKOUT0SRC, CKOUT0DIV and set according to ckout0_src and ckout0_div */ + reg &= ~(RCU_CFG0_CKOUT0SEL | RCU_CFG0_CKOUT0DIV ); + RCU_CFG0 = (reg | ckout0_src | ckout0_div); +} + +/*! + \brief configure the CK_OUT1 clock source and divider + \param[in] ckout1_src: CK_OUT1 clock source selection + only one parameter can be selected which is shown as below: + \arg RCU_CKOUT1SRC_SYSTEMCLOCK: system clock selected + \arg RCU_CKOUT1SRC_PLLI2SR: PLLI2SR selected + \arg RCU_CKOUT1SRC_HXTAL: HXTAL selected + \arg RCU_CKOUT1SRC_PLLP: PLLP selected + \param[in] ckout1_div: CK_OUT1 divider + \arg RCU_CKOUT1_DIVx(x=1,2,3,4,5): CK_OUT1 is divided by x + \param[out] none + \retval none +*/ +void rcu_ckout1_config(uint32_t ckout1_src, uint32_t ckout1_div) +{ + uint32_t reg; + + reg = RCU_CFG0; + /* reset the CKOUT1SRC, CKOUT1DIV and set according to ckout1_src and ckout1_div */ + reg &= ~(RCU_CFG0_CKOUT1SEL | RCU_CFG0_CKOUT1DIV); + RCU_CFG0 = (reg | ckout1_src | ckout1_div); +} + +/*! + \brief configure the main PLL clock + \param[in] pll_src: PLL clock source selection + \arg RCU_PLLSRC_IRC16M: select IRC16M as PLL source clock + \arg RCU_PLLSRC_HXTAL: select HXTAL as PLL source clock + \param[in] pll_psc: the PLL VCO source clock prescaler + \arg this parameter should be selected between 2 and 63 + \param[in] pll_n: the PLL VCO clock multi factor + \arg this parameter should be selected between 64 and 500 + \param[in] pll_p: the PLLP output frequency division factor from PLL VCO clock + \arg this parameter should be selected 2,4,6,8 + \param[in] pll_q: the PLL Q output frequency division factor from PLL VCO clock + \arg this parameter should be selected between 2 and 15 + \param[out] none + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus rcu_pll_config(uint32_t pll_src, uint32_t pll_psc, uint32_t pll_n, uint32_t pll_p, uint32_t pll_q) +{ + uint32_t ss_modulation_inc; + uint32_t ss_modulation_reg; + + ss_modulation_inc = 0U; + ss_modulation_reg = RCU_PLLSSCTL; + + /* calculate the minimum factor of PLLN */ + if((ss_modulation_reg & RCU_PLLSSCTL_SSCGON) == RCU_PLLSSCTL_SSCGON){ + if((ss_modulation_reg & RCU_SS_TYPE_DOWN) == RCU_SS_TYPE_DOWN){ + ss_modulation_inc += RCU_SS_MODULATION_DOWN_INC; + }else{ + ss_modulation_inc += RCU_SS_MODULATION_CENTER_INC; + } + } + + /* check the function parameter */ + if(CHECK_PLL_PSC_VALID(pll_psc) && CHECK_PLL_N_VALID(pll_n,ss_modulation_inc) && + CHECK_PLL_P_VALID(pll_p) && CHECK_PLL_Q_VALID(pll_q)){ + RCU_PLL = pll_psc | (pll_n << 6) | (((pll_p >> 1) - 1U) << 16) | + (pll_src) | (pll_q << 24); + }else{ + /* return status */ + return ERROR; + } + + /* return status */ + return SUCCESS; +} + +/*! + \brief configure the PLLI2S clock + \param[in] plli2s_n: the PLLI2S VCO clock multi factor + \arg this parameter should be selected between 50 and 500 + \param[in] plli2s_r: the PLLI2S R output frequency division factor from PLLI2S VCO clock + \arg this parameter should be selected between 2 and 7 + \param[out] none + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus rcu_plli2s_config(uint32_t plli2s_n, uint32_t plli2s_r) +{ + /* check the function parameter */ + if(CHECK_PLLI2S_N_VALID(plli2s_n) && CHECK_PLLI2S_R_VALID(plli2s_r)){ + RCU_PLLI2S = (plli2s_n << 6) | (plli2s_r << 28); + }else{ + /* return status */ + return ERROR; + } + + /* return status */ + return SUCCESS; +} + +/*! + \brief configure the PLLSAI clock + \param[in] pllsai_n: the PLLSAI VCO clock multi factor + \arg this parameter should be selected between 50 and 500 + \param[in] pllsai_p: the PLLSAI P output frequency division factor from PLL VCO clock + \arg this parameter should be selected 2,4,6,8 + \param[in] pllsai_r: the PLLSAI R output frequency division factor from PLL VCO clock + \arg this parameter should be selected between 2 and 7 + \param[out] none + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus rcu_pllsai_config(uint32_t pllsai_n, uint32_t pllsai_p, uint32_t pllsai_r) +{ + /* check the function parameter */ + if(CHECK_PLLSAI_N_VALID(pllsai_n) && CHECK_PLLSAI_P_VALID(pllsai_p) && CHECK_PLLSAI_R_VALID(pllsai_r)){ + RCU_PLLSAI = (pllsai_n << 6U) | (((pllsai_p >> 1U) - 1U) << 16U) | (pllsai_r << 28U); + }else{ + /* return status */ + return ERROR; + } + + /* return status */ + return SUCCESS; +} + +/*! + \brief configure the RTC clock source selection + \param[in] rtc_clock_source: RTC clock source selection + only one parameter can be selected which is shown as below: + \arg RCU_RTCSRC_NONE: no clock selected + \arg RCU_RTCSRC_LXTAL: CK_LXTAL selected as RTC source clock + \arg RCU_RTCSRC_IRC32K: CK_IRC32K selected as RTC source clock + \arg RCU_RTCSRC_HXTAL_DIV_RTCDIV: CK_HXTAL/RTCDIV selected as RTC source clock + \param[out] none + \retval none +*/ +void rcu_rtc_clock_config(uint32_t rtc_clock_source) +{ + uint32_t reg; + + reg = RCU_BDCTL; + /* reset the RTCSRC bits and set according to rtc_clock_source */ + reg &= ~RCU_BDCTL_RTCSRC; + RCU_BDCTL = (reg | rtc_clock_source); +} + +/*! + \brief configure the frequency division of RTC clock when HXTAL was selected as its clock source + \param[in] rtc_div: RTC clock frequency division + only one parameter can be selected which is shown as below: + \arg RCU_RTC_HXTAL_NONE: no clock for RTC + \arg RCU_RTC_HXTAL_DIVx: RTCDIV clock select CK_HXTAL/x, x = 2....31 + \param[out] none + \retval none +*/ +void rcu_rtc_div_config(uint32_t rtc_div) +{ + uint32_t reg; + + reg = RCU_CFG0; + /* reset the RTCDIV bits and set according to rtc_div value */ + reg &= ~RCU_CFG0_RTCDIV; + RCU_CFG0 = (reg | rtc_div); +} + + +/*! + \brief configure the I2S clock source selection + \param[in] i2s_clock_source: I2S clock source selection + only one parameter can be selected which is shown as below: + \arg RCU_I2SSRC_PLLI2S: CK_PLLI2S selected as I2S source clock + \arg RCU_I2SSRC_I2S_CKIN: external i2s_ckin pin selected as I2S source clock + \param[out] none + \retval none +*/ +void rcu_i2s_clock_config(uint32_t i2s_clock_source) +{ + uint32_t reg; + + reg = RCU_CFG0; + /* reset the I2SSEL bit and set according to i2s_clock_source */ + reg &= ~RCU_CFG0_I2SSEL; + RCU_CFG0 = (reg | i2s_clock_source); +} + +/*! + \brief configure the CK48M clock source selection + \param[in] ck48m_clock_source: CK48M clock source selection + only one parameter can be selected which is shown as below: + \arg RCU_CK48MSRC_PLL48M: CK_PLL48M selected as CK48M source clock + \arg RCU_CK48MSRC_IRC48M: CK_IRC48M selected as CK48M source clock + \param[out] none + \retval none +*/ +void rcu_ck48m_clock_config(uint32_t ck48m_clock_source) +{ + uint32_t reg; + + reg = RCU_ADDCTL; + /* reset the CK48MSEL bit and set according to i2s_clock_source */ + reg &= ~RCU_ADDCTL_CK48MSEL; + RCU_ADDCTL = (reg | ck48m_clock_source); +} + +/*! + \brief configure the PLL48M clock source selection + \param[in] pll48m_clock_source: PLL48M clock source selection + only one parameter can be selected which is shown as below: + \arg RCU_PLL48MSRC_PLLQ: CK_PLLQ selected as PLL48M source clock + \arg RCU_PLL48MSRC_PLLSAIP: CK_PLLSAIP selected as PLL48M source clock + \param[out] none + \retval none +*/ +void rcu_pll48m_clock_config(uint32_t pll48m_clock_source) +{ + uint32_t reg; + + reg = RCU_ADDCTL; + /* reset the PLL48MSEL bit and set according to pll48m_clock_source */ + reg &= ~RCU_ADDCTL_PLL48MSEL; + RCU_ADDCTL = (reg | pll48m_clock_source); +} + +/*! + \brief configure the TIMER clock prescaler selection + \param[in] timer_clock_prescaler: TIMER clock selection + only one parameter can be selected which is shown as below: + \arg RCU_TIMER_PSC_MUL2: if APB1PSC/APB2PSC in RCU_CFG0 register is 0b0xx(CK_APBx = CK_AHB) + or 0b100(CK_APBx = CK_AHB/2), the TIMER clock is equal to CK_AHB(CK_TIMERx = CK_AHB). + or else, the TIMER clock is twice the corresponding APB clock (TIMER in APB1 domain: CK_TIMERx = 2 x CK_APB1; + TIMER in APB2 domain: CK_TIMERx = 2 x CK_APB2) + \arg RCU_TIMER_PSC_MUL4: if APB1PSC/APB2PSC in RCU_CFG0 register is 0b0xx(CK_APBx = CK_AHB), + 0b100(CK_APBx = CK_AHB/2), or 0b101(CK_APBx = CK_AHB/4), the TIMER clock is equal to CK_AHB(CK_TIMERx = CK_AHB). + or else, the TIMER clock is four timers the corresponding APB clock (TIMER in APB1 domain: CK_TIMERx = 4 x CK_APB1; + TIMER in APB2 domain: CK_TIMERx = 4 x CK_APB2) + \param[out] none + \retval none +*/ +void rcu_timer_clock_prescaler_config(uint32_t timer_clock_prescaler) +{ + /* configure the TIMERSEL bit and select the TIMER clock prescaler */ + if(timer_clock_prescaler == RCU_TIMER_PSC_MUL2){ + RCU_CFG1 &= timer_clock_prescaler; + }else{ + RCU_CFG1 |= timer_clock_prescaler; + } +} + +/*! + \brief configure the PLLSAIR divider used as input of TLI + \param[in] pllsai_r_div: PLLSAIR divider used as input of TLI + only one parameter can be selected which is shown as below: + \arg RCU_PLLSAIR_DIVx(x=2,4,8,16): PLLSAIR divided x used as input of TLI + \param[out] none + \retval none +*/ +void rcu_tli_clock_div_config(uint32_t pllsai_r_div) +{ + uint32_t reg; + + reg = RCU_CFG1; + /* reset the PLLSAIRDIV bit and set according to pllsai_r_div */ + reg &= ~RCU_CFG1_PLLSAIRDIV; + RCU_CFG1 = (reg | pllsai_r_div); +} + +/*! + \brief get the clock stabilization and periphral reset flags + \param[in] flag: the clock stabilization and periphral reset flags, refer to rcu_flag_enum + only one parameter can be selected which is shown as below: + \arg RCU_FLAG_IRC16MSTB: IRC16M stabilization flag + \arg RCU_FLAG_HXTALSTB: HXTAL stabilization flag + \arg RCU_FLAG_PLLSTB: PLL stabilization flag + \arg RCU_FLAG_PLLI2SSTB: PLLI2S stabilization flag + \arg RCU_FLAG_PLLSAISTB: PLLSAI stabilization flag + \arg RCU_FLAG_LXTALSTB: LXTAL stabilization flag + \arg RCU_FLAG_IRC32KSTB: IRC32K stabilization flag + \arg RCU_FLAG_IRC48MSTB: IRC48M stabilization flag + \arg RCU_FLAG_BORRST: BOR reset flags + \arg RCU_FLAG_EPRST: external PIN reset flag + \arg RCU_FLAG_PORRST: Power reset flag + \arg RCU_FLAG_SWRST: software reset flag + \arg RCU_FLAG_FWDGTRST: free watchdog timer reset flag + \arg RCU_FLAG_WWDGTRST: window watchdog timer reset flag + \arg RCU_FLAG_LPRST: low-power reset flag + \param[out] none + \retval none +*/ +FlagStatus rcu_flag_get(rcu_flag_enum flag) +{ + /* get the rcu flag */ + if(RESET != (RCU_REG_VAL(flag) & BIT(RCU_BIT_POS(flag)))){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear all the reset flag + \param[in] none + \param[out] none + \retval none +*/ +void rcu_all_reset_flag_clear(void) +{ + RCU_RSTSCK |= RCU_RSTSCK_RSTFC; +} + +/*! + \brief get the clock stabilization interrupt and ckm flags + \param[in] int_flag: interrupt and ckm flags, refer to rcu_int_flag_enum + only one parameter can be selected which is shown as below: + \arg RCU_INT_FLAG_IRC32KSTB: IRC32K stabilization interrupt flag + \arg RCU_INT_FLAG_LXTALSTB: LXTAL stabilization interrupt flag + \arg RCU_INT_FLAG_IRC16MSTB: IRC16M stabilization interrupt flag + \arg RCU_INT_FLAG_HXTALSTB: HXTAL stabilization interrupt flag + \arg RCU_INT_FLAG_PLLSTB: PLL stabilization interrupt flag + \arg RCU_INT_FLAG_PLLI2SSTB: PLLI2S stabilization interrupt flag + \arg RCU_INT_FLAG_PLLSAISTB: PLLSAI stabilization interrupt flag + \arg RCU_INT_FLAG_CKM: HXTAL clock stuck interrupt flag + \arg RCU_INT_FLAG_IRC48MSTB: IRC48M stabilization interrupt flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus rcu_interrupt_flag_get(rcu_int_flag_enum int_flag) +{ + /* get the rcu interrupt flag */ + if(RESET != (RCU_REG_VAL(int_flag) & BIT(RCU_BIT_POS(int_flag)))){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear the interrupt flags + \param[in] int_flag: clock stabilization and stuck interrupt flags clear, refer to rcu_int_flag_clear_enum + only one parameter can be selected which is shown as below: + \arg RCU_INT_FLAG_IRC32KSTB_CLR: IRC32K stabilization interrupt flag clear + \arg RCU_INT_FLAG_LXTALSTB_CLR: LXTAL stabilization interrupt flag clear + \arg RCU_INT_FLAG_IRC16MSTB_CLR: IRC16M stabilization interrupt flag clear + \arg RCU_INT_FLAG_HXTALSTB_CLR: HXTAL stabilization interrupt flag clear + \arg RCU_INT_FLAG_PLLSTB_CLR: PLL stabilization interrupt flag clear + \arg RCU_INT_FLAG_PLLI2SSTB_CLR: PLLI2S stabilization interrupt flag clear + \arg RCU_INT_FLAG_PLLSAISTB_CLR: PLLSAI stabilization interrupt flag clear + \arg RCU_INT_FLAG_CKM_CLR: clock stuck interrupt flag clear + \arg RCU_INT_FLAG_IRC48MSTB_CLR: IRC48M stabilization interrupt flag clear + \param[out] none + \retval none +*/ +void rcu_interrupt_flag_clear(rcu_int_flag_clear_enum int_flag) +{ + RCU_REG_VAL(int_flag) |= BIT(RCU_BIT_POS(int_flag)); +} + +/*! + \brief enable the stabilization interrupt + \param[in] interrupt: clock stabilization interrupt, refer to rcu_int_enum + Only one parameter can be selected which is shown as below: + \arg RCU_INT_IRC32KSTB: IRC32K stabilization interrupt enable + \arg RCU_INT_LXTALSTB: LXTAL stabilization interrupt enable + \arg RCU_INT_IRC16MSTB: IRC16M stabilization interrupt enable + \arg RCU_INT_HXTALSTB: HXTAL stabilization interrupt enable + \arg RCU_INT_PLLSTB: PLL stabilization interrupt enable + \arg RCU_INT_PLLI2SSTB: PLLI2S stabilization interrupt enable + \arg RCU_INT_PLLSAISTB: PLLSAI stabilization interrupt enable + \arg RCU_INT_IRC48MSTB: IRC48M stabilization interrupt enable + \param[out] none + \retval none +*/ +void rcu_interrupt_enable(rcu_int_enum interrupt) +{ + RCU_REG_VAL(interrupt) |= BIT(RCU_BIT_POS(interrupt)); +} + + +/*! + \brief disable the stabilization interrupt + \param[in] interrupt: clock stabilization interrupt, refer to rcu_int_enum + only one parameter can be selected which is shown as below: + \arg RCU_INT_IRC32KSTB: IRC32K stabilization interrupt disable + \arg RCU_INT_LXTALSTB: LXTAL stabilization interrupt disable + \arg RCU_INT_IRC16MSTB: IRC16M stabilization interrupt disable + \arg RCU_INT_HXTALSTB: HXTAL stabilization interrupt disable + \arg RCU_INT_PLLSTB: PLL stabilization interrupt disable + \arg RCU_INT_PLLI2SSTB: PLLI2S stabilization interrupt disable + \arg RCU_INT_PLLSAISTB: PLLSAI stabilization interrupt disable + \arg RCU_INT_IRC48MSTB: IRC48M stabilization interrupt disable + \param[out] none + \retval none +*/ +void rcu_interrupt_disable(rcu_int_enum interrupt) +{ + RCU_REG_VAL(interrupt) &= ~BIT(RCU_BIT_POS(interrupt)); +} + +/*! + \brief configure the LXTAL drive capability + \param[in] lxtal_dricap: drive capability of LXTAL + only one parameter can be selected which is shown as below: + \arg RCU_LXTALDRI_LOWER_DRIVE: lower driving capability + \arg RCU_LXTALDRI_HIGHER_DRIVE: higher driving capability + \param[out] none + \retval none +*/ +void rcu_lxtal_drive_capability_config(uint32_t lxtal_dricap) +{ + uint32_t reg; + + reg = RCU_BDCTL; + + /* reset the LXTALDRI bits and set according to lxtal_dricap */ + reg &= ~RCU_BDCTL_LXTALDRI; + RCU_BDCTL = (reg | lxtal_dricap); +} + +/*! + \brief wait for oscillator stabilization flags is SET or oscillator startup is timeout + \param[in] osci: oscillator types, refer to rcu_osci_type_enum + only one parameter can be selected which is shown as below: + \arg RCU_HXTAL: HXTAL + \arg RCU_LXTAL: LXTAL + \arg RCU_IRC16M: IRC16M + \arg RCU_IRC48M: IRC48M + \arg RCU_IRC32K: IRC32K + \arg RCU_PLL_CK: PLL + \arg RCU_PLLI2S_CK: PLLI2S + \arg RCU_PLLSAI_CK: PLLSAI + \param[out] none + \retval ErrStatus: SUCCESS or ERROR +*/ +ErrStatus rcu_osci_stab_wait(rcu_osci_type_enum osci) +{ + uint32_t stb_cnt = 0U; + ErrStatus reval = ERROR; + FlagStatus osci_stat = RESET; + + switch(osci){ + /* wait HXTAL stable */ + case RCU_HXTAL: + while((RESET == osci_stat) && (HXTAL_STARTUP_TIMEOUT != stb_cnt)){ + osci_stat = rcu_flag_get(RCU_FLAG_HXTALSTB); + stb_cnt++; + } + + /* check whether flag is set */ + if(RESET != rcu_flag_get(RCU_FLAG_HXTALSTB)){ + reval = SUCCESS; + } + break; + /* wait LXTAL stable */ + case RCU_LXTAL: + while((RESET == osci_stat) && (LXTAL_STARTUP_TIMEOUT != stb_cnt)){ + osci_stat = rcu_flag_get(RCU_FLAG_LXTALSTB); + stb_cnt++; + } + + /* check whether flag is set */ + if(RESET != rcu_flag_get(RCU_FLAG_LXTALSTB)){ + reval = SUCCESS; + } + break; + /* wait IRC16M stable */ + case RCU_IRC16M: + while((RESET == osci_stat) && (IRC16M_STARTUP_TIMEOUT != stb_cnt)){ + osci_stat = rcu_flag_get(RCU_FLAG_IRC16MSTB); + stb_cnt++; + } + + /* check whether flag is set */ + if(RESET != rcu_flag_get(RCU_FLAG_IRC16MSTB)){ + reval = SUCCESS; + } + break; + /* wait IRC48M stable */ + case RCU_IRC48M: + while((RESET == osci_stat) && (OSC_STARTUP_TIMEOUT != stb_cnt)){ + osci_stat = rcu_flag_get(RCU_FLAG_IRC48MSTB); + stb_cnt++; + } + + /* check whether flag is set */ + if (RESET != rcu_flag_get(RCU_FLAG_IRC48MSTB)){ + reval = SUCCESS; + } + break; + /* wait IRC32K stable */ + case RCU_IRC32K: + while((RESET == osci_stat) && (OSC_STARTUP_TIMEOUT != stb_cnt)){ + osci_stat = rcu_flag_get(RCU_FLAG_IRC32KSTB); + stb_cnt++; + } + + /* check whether flag is set */ + if(RESET != rcu_flag_get(RCU_FLAG_IRC32KSTB)){ + reval = SUCCESS; + } + break; + /* wait PLL stable */ + case RCU_PLL_CK: + while((RESET == osci_stat) && (OSC_STARTUP_TIMEOUT != stb_cnt)){ + osci_stat = rcu_flag_get(RCU_FLAG_PLLSTB); + stb_cnt++; + } + + /* check whether flag is set */ + if(RESET != rcu_flag_get(RCU_FLAG_PLLSTB)){ + reval = SUCCESS; + } + break; + /* wait PLLI2S stable */ + case RCU_PLLI2S_CK: + while((RESET == osci_stat) && (OSC_STARTUP_TIMEOUT != stb_cnt)){ + osci_stat = rcu_flag_get(RCU_FLAG_PLLI2SSTB); + stb_cnt++; + } + + /* check whether flag is set */ + if(RESET != rcu_flag_get(RCU_FLAG_PLLI2SSTB)){ + reval = SUCCESS; + } + break; + /* wait PLLSAI stable */ + case RCU_PLLSAI_CK: + while((RESET == osci_stat) && (OSC_STARTUP_TIMEOUT != stb_cnt)){ + osci_stat = rcu_flag_get(RCU_FLAG_PLLSAISTB); + stb_cnt++; + } + + /* check whether flag is set */ + if(RESET != rcu_flag_get(RCU_FLAG_PLLSAISTB)){ + reval = SUCCESS; + } + break; + + default: + break; + } + + /* return value */ + return reval; +} + +/*! + \brief turn on the oscillator + \param[in] osci: oscillator types, refer to rcu_osci_type_enum + only one parameter can be selected which is shown as below: + \arg RCU_HXTAL: HXTAL + \arg RCU_LXTAL: LXTAL + \arg RCU_IRC16M: IRC16M + \arg RCU_IRC48M: IRC48M + \arg RCU_IRC32K: IRC32K + \arg RCU_PLL_CK: PLL + \arg RCU_PLLI2S_CK: PLLI2S + \arg RCU_PLLSAI_CK: PLLSAI + \param[out] none + \retval none +*/ +void rcu_osci_on(rcu_osci_type_enum osci) +{ + RCU_REG_VAL(osci) |= BIT(RCU_BIT_POS(osci)); +} + +/*! + \brief turn off the oscillator + \param[in] osci: oscillator types, refer to rcu_osci_type_enum + only one parameter can be selected which is shown as below: + \arg RCU_HXTAL: HXTAL + \arg RCU_LXTAL: LXTAL + \arg RCU_IRC16M: IRC16M + \arg RCU_IRC48M: IRC48M + \arg RCU_IRC32K: IRC32K + \arg RCU_PLL_CK: PLL + \arg RCU_PLLI2S_CK: PLLI2S + \arg RCU_PLLSAI_CK: PLLSAI + \param[out] none + \retval none +*/ +void rcu_osci_off(rcu_osci_type_enum osci) +{ + RCU_REG_VAL(osci) &= ~BIT(RCU_BIT_POS(osci)); +} + +/*! + \brief enable the oscillator bypass mode, HXTALEN or LXTALEN must be reset before it + \param[in] osci: oscillator types, refer to rcu_osci_type_enum + only one parameter can be selected which is shown as below: + \arg RCU_HXTAL: high speed crystal oscillator(HXTAL) + \arg RCU_LXTAL: low speed crystal oscillator(LXTAL) + \param[out] none + \retval none +*/ +void rcu_osci_bypass_mode_enable(rcu_osci_type_enum osci) +{ + uint32_t reg; + + switch(osci){ + /* enable HXTAL to bypass mode */ + case RCU_HXTAL: + reg = RCU_CTL; + RCU_CTL &= ~RCU_CTL_HXTALEN; + RCU_CTL = (reg | RCU_CTL_HXTALBPS); + break; + /* enable LXTAL to bypass mode */ + case RCU_LXTAL: + reg = RCU_BDCTL; + RCU_BDCTL &= ~RCU_BDCTL_LXTALEN; + RCU_BDCTL = (reg | RCU_BDCTL_LXTALBPS); + break; + case RCU_IRC16M: + case RCU_IRC48M: + case RCU_IRC32K: + case RCU_PLL_CK: + case RCU_PLLI2S_CK: + case RCU_PLLSAI_CK: + break; + default: + break; + } +} + +/*! + \brief disable the oscillator bypass mode, HXTALEN or LXTALEN must be reset before it + \param[in] osci: oscillator types, refer to rcu_osci_type_enum + only one parameter can be selected which is shown as below: + \arg RCU_HXTAL: high speed crystal oscillator(HXTAL) + \arg RCU_LXTAL: low speed crystal oscillator(LXTAL) + \param[out] none + \retval none +*/ +void rcu_osci_bypass_mode_disable(rcu_osci_type_enum osci) +{ + uint32_t reg; + + switch(osci){ + /* disable HXTAL to bypass mode */ + case RCU_HXTAL: + reg = RCU_CTL; + RCU_CTL &= ~RCU_CTL_HXTALEN; + RCU_CTL = (reg & ~RCU_CTL_HXTALBPS); + break; + /* disable LXTAL to bypass mode */ + case RCU_LXTAL: + reg = RCU_BDCTL; + RCU_BDCTL &= ~RCU_BDCTL_LXTALEN; + RCU_BDCTL = (reg & ~RCU_BDCTL_LXTALBPS); + break; + case RCU_IRC16M: + case RCU_IRC48M: + case RCU_IRC32K: + case RCU_PLL_CK: + case RCU_PLLI2S_CK: + case RCU_PLLSAI_CK: + break; + default: + break; + } +} + +/*! + \brief enable the HXTAL clock monitor + \param[in] none + \param[out] none + \retval none +*/ + +void rcu_hxtal_clock_monitor_enable(void) +{ + RCU_CTL |= RCU_CTL_CKMEN; +} + +/*! + \brief disable the HXTAL clock monitor + \param[in] none + \param[out] none + \retval none +*/ +void rcu_hxtal_clock_monitor_disable(void) +{ + RCU_CTL &= ~RCU_CTL_CKMEN; +} + +/*! + \brief set the IRC16M adjust value + \param[in] irc16m_adjval: IRC16M adjust value, must be between 0 and 0x1F + \arg 0x00 - 0x1F + \param[out] none + \retval none +*/ +void rcu_irc16m_adjust_value_set(uint32_t irc16m_adjval) +{ + uint32_t reg; + + reg = RCU_CTL; + /* reset the IRC16MADJ bits and set according to irc16m_adjval */ + reg &= ~RCU_CTL_IRC16MADJ; + RCU_CTL = (reg | ((irc16m_adjval & RCU_IRC16M_ADJUST_MASK) << RCU_IRC16M_ADJUST_OFFSET)); +} + +/*! + \brief unlock the voltage key + \param[in] none + \param[out] none + \retval none +*/ +void rcu_voltage_key_unlock(void) +{ + RCU_VKEY = RCU_VKEY_UNLOCK; +} + +/*! + \brief deep-sleep mode voltage select + \param[in] dsvol: deep sleep mode voltage + only one parameter can be selected which is shown as below: + \arg RCU_DEEPSLEEP_V_1_2: the core voltage is 1.2V + \arg RCU_DEEPSLEEP_V_1_1: the core voltage is 1.1V + \arg RCU_DEEPSLEEP_V_1_0: the core voltage is 1.0V + \arg RCU_DEEPSLEEP_V_0_9: the core voltage is 0.9V + \param[out] none + \retval none +*/ +void rcu_deepsleep_voltage_set(uint32_t dsvol) +{ + dsvol &= RCU_DSV_DSLPVS; + RCU_DSV = dsvol; +} + +/*! + \brief configure the spread spectrum modulation for the main PLL clock + \param[in] spread_spectrum_type: PLL spread spectrum modulation type select + \arg RCU_SS_TYPE_CENTER: center spread type is selected + \arg RCU_SS_TYPE_DOWN: down spread type is selected + \param[in] modstep: configure PLL spread spectrum modulation profile amplitude and frequency + \arg This parameter should be selected between 0 and 7FFF.The following criteria must be met: MODSTEP*MODCNT <=2^15-1 + \param[in] modcnt: configure PLL spread spectrum modulation profile amplitude and frequency + \arg This parameter should be selected between 0 and 1FFF.The following criteria must be met: MODSTEP*MODCNT <=2^15-1 + \param[out] none + \retval none +*/ +void rcu_spread_spectrum_config(uint32_t spread_spectrum_type, uint32_t modstep, uint32_t modcnt) +{ + uint32_t reg; + + reg = RCU_PLLSSCTL; + /* reset the RCU_PLLSSCTL register bits */ + reg &= ~(RCU_PLLSSCTL_MODCNT | RCU_PLLSSCTL_MODSTEP | RCU_PLLSSCTL_SS_TYPE); + RCU_PLLSSCTL = (reg | spread_spectrum_type | modstep << 13 | modcnt); +} + +/*! + \brief enable the PLL spread spectrum modulation + \param[in] none + \param[out] none + \retval none +*/ +void rcu_spread_spectrum_enable(void) +{ + RCU_PLLSSCTL |= RCU_PLLSSCTL_SSCGON; +} + +/*! + \brief disable the PLL spread spectrum modulation + \param[in] none + \param[out] none + \retval none +*/ +void rcu_spread_spectrum_disable(void) +{ + RCU_PLLSSCTL &= ~RCU_PLLSSCTL_SSCGON; +} + +/*! + \brief get the system clock, bus and peripheral clock frequency + \param[in] clock: the clock frequency which to get + only one parameter can be selected which is shown as below: + \arg CK_SYS: system clock frequency + \arg CK_AHB: AHB clock frequency + \arg CK_APB1: APB1 clock frequency + \arg CK_APB2: APB2 clock frequency + \param[out] none + \retval clock frequency of system, AHB, APB1, APB2 +*/ +uint32_t rcu_clock_freq_get(rcu_clock_freq_enum clock) +{ + uint32_t sws, ck_freq = 0U; + uint32_t cksys_freq, ahb_freq, apb1_freq, apb2_freq; + uint32_t pllpsc, plln, pllsel, pllp, ck_src, idx, clk_exp; + + /* exponent of AHB, APB1 and APB2 clock divider */ + const uint8_t ahb_exp[16] = {0, 0, 0, 0, 0, 0, 0, 0, 1, 2, 3, 4, 6, 7, 8, 9}; + const uint8_t apb1_exp[8] = {0, 0, 0, 0, 1, 2, 3, 4}; + const uint8_t apb2_exp[8] = {0, 0, 0, 0, 1, 2, 3, 4}; + + sws = GET_BITS(RCU_CFG0, 2, 3); + switch(sws){ + /* IRC16M is selected as CK_SYS */ + case SEL_IRC16M: + cksys_freq = IRC16M_VALUE; + break; + /* HXTAL is selected as CK_SYS */ + case SEL_HXTAL: + cksys_freq = HXTAL_VALUE; + break; + /* PLLP is selected as CK_SYS */ + case SEL_PLLP: + /* get the value of PLLPSC[5:0] */ + pllpsc = GET_BITS(RCU_PLL, 0U, 5U); + plln = GET_BITS(RCU_PLL, 6U, 14U); + pllp = (GET_BITS(RCU_PLL, 16U, 17U) + 1U) * 2U; + /* PLL clock source selection, HXTAL or IRC16M/2 */ + pllsel = (RCU_PLL & RCU_PLL_PLLSEL); + if (RCU_PLLSRC_HXTAL == pllsel) { + ck_src = HXTAL_VALUE; + } else { + ck_src = IRC16M_VALUE; + } + cksys_freq = ((ck_src / pllpsc) * plln)/pllp; + break; + /* IRC16M is selected as CK_SYS */ + default: + cksys_freq = IRC16M_VALUE; + break; + } + /* calculate AHB clock frequency */ + idx = GET_BITS(RCU_CFG0, 4, 7); + clk_exp = ahb_exp[idx]; + ahb_freq = cksys_freq >> clk_exp; + + /* calculate APB1 clock frequency */ + idx = GET_BITS(RCU_CFG0, 10, 12); + clk_exp = apb1_exp[idx]; + apb1_freq = ahb_freq >> clk_exp; + + /* calculate APB2 clock frequency */ + idx = GET_BITS(RCU_CFG0, 13, 15); + clk_exp = apb2_exp[idx]; + apb2_freq = ahb_freq >> clk_exp; + + /* return the clocks frequency */ + switch(clock){ + case CK_SYS: + ck_freq = cksys_freq; + break; + case CK_AHB: + ck_freq = ahb_freq; + break; + case CK_APB1: + ck_freq = apb1_freq; + break; + case CK_APB2: + ck_freq = apb2_freq; + break; + default: + break; + } + return ck_freq; +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_rtc.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_rtc.c new file mode 100644 index 0000000000..0115eb589c --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_rtc.c @@ -0,0 +1,1295 @@ +/*! + \file gd32f4xx_rtc.c + \brief RTC driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + + +#include "gd32f4xx_rtc.h" + +/* RTC timeout value */ +#define RTC_WTWF_TIMEOUT ((uint32_t)0x00004000U) /*!< wakeup timer can be write flag timeout */ +#define RTC_INITM_TIMEOUT ((uint32_t)0x00004000U) /*!< initialization state flag timeout */ +#define RTC_RSYNF_TIMEOUT ((uint32_t)0x00008000U) /*!< register synchronization flag timeout */ +#define RTC_HRFC_TIMEOUT ((uint32_t)0x20000000U) /*!< recalibration pending flag timeout */ +#define RTC_SHIFTCTL_TIMEOUT ((uint32_t)0x00001000U) /*!< shift function operation pending flag timeout */ +#define RTC_ALRMXWF_TIMEOUT ((uint32_t)0x00008000U) /*!< alarm configuration can be write flag timeout */ + + +/*! + \brief reset most of the RTC registers + \param[in] none + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus rtc_deinit(void) +{ + ErrStatus error_status = ERROR; + volatile uint32_t time_index = RTC_WTWF_TIMEOUT; + uint32_t flag_status = RESET; + /* RTC_TAMP register is not under write protection */ + RTC_TAMP = RTC_REGISTER_RESET; + + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + /* enter init mode */ + error_status = rtc_init_mode_enter(); + + if(ERROR != error_status){ + /* reset RTC_CTL register, but RTC_CTL[2��0] */ + RTC_CTL &= (RTC_REGISTER_RESET | RTC_CTL_WTCS); + /* before reset RTC_TIME and RTC_DATE, BPSHAD bit in RTC_CTL should be reset as the condition. + in order to read calendar from shadow register, not the real registers being reset */ + RTC_TIME = RTC_REGISTER_RESET; + RTC_DATE = RTC_DATE_RESET; + + RTC_PSC = RTC_PSC_RESET; + /* only when RTC_CTL_WTEN=0 and RTC_STAT_WTWF=1 can write RTC_CTL[2��0] */ + /* wait until the WTWF flag to be set */ + do{ + flag_status = RTC_STAT & RTC_STAT_WTWF; + }while((--time_index > 0U) && ((uint32_t)RESET == flag_status)); + + if ((uint32_t)RESET == flag_status){ + error_status = ERROR; + }else{ + RTC_CTL &= RTC_REGISTER_RESET; + RTC_WUT = RTC_WUT_RESET; + RTC_COSC = RTC_REGISTER_RESET; + /* to write RTC_ALRMxSS register, ALRMxEN bit in RTC_CTL register should be reset as the condition */ + RTC_ALRM0TD = RTC_REGISTER_RESET; + RTC_ALRM1TD = RTC_REGISTER_RESET; + RTC_ALRM0SS = RTC_REGISTER_RESET; + RTC_ALRM1SS = RTC_REGISTER_RESET; + /* reset RTC_STAT register, also exit init mode. + at the same time, RTC_STAT_SOPF bit is reset, as the condition to reset RTC_SHIFTCTL register later */ + RTC_STAT = RTC_STAT_RESET; + /* reset RTC_SHIFTCTL and RTC_HRFC register, this can be done without the init mode */ + RTC_SHIFTCTL = RTC_REGISTER_RESET; + RTC_HRFC = RTC_REGISTER_RESET; + error_status = rtc_register_sync_wait(); + } + } + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; + + return error_status; +} + +/*! + \brief initialize RTC registers + \param[in] rtc_initpara_struct: pointer to a rtc_parameter_struct structure which contains + parameters for initialization of the rtc peripheral + members of the structure and the member values are shown as below: + year: 0x0 - 0x99(BCD format) + month: RTC_JAN, RTC_FEB, RTC_MAR, RTC_APR, RTC_MAY, RTC_JUN, + RTC_JUL, RTC_AUG, RTC_SEP, RTC_OCT, RTC_NOV, RTC_DEC + date: 0x1 - 0x31(BCD format) + day_of_week: RTC_MONDAY, RTC_TUESDAY, RTC_WEDSDAY, RTC_THURSDAY + RTC_FRIDAY, RTC_SATURDAY, RTC_SUNDAY + hour: 0x0 - 0x12(BCD format) or 0x0 - 0x23(BCD format) depending on the rtc_display_format chose + minute: 0x0 - 0x59(BCD format) + second: 0x0 - 0x59(BCD format) + factor_asyn: 0x0 - 0x7F + factor_syn: 0x0 - 0x7FFF + am_pm: RTC_AM, RTC_PM + display_format: RTC_24HOUR, RTC_12HOUR + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus rtc_init(rtc_parameter_struct* rtc_initpara_struct) +{ + ErrStatus error_status = ERROR; + uint32_t reg_time = 0U, reg_date = 0U; + + reg_date = (DATE_YR(rtc_initpara_struct->year) | \ + DATE_DOW(rtc_initpara_struct->day_of_week) | \ + DATE_MON(rtc_initpara_struct->month) | \ + DATE_DAY(rtc_initpara_struct->date)); + + reg_time = (rtc_initpara_struct->am_pm| \ + TIME_HR(rtc_initpara_struct->hour) | \ + TIME_MN(rtc_initpara_struct->minute) | \ + TIME_SC(rtc_initpara_struct->second)); + + /* 1st: disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + /* 2nd: enter init mode */ + error_status = rtc_init_mode_enter(); + + if(ERROR != error_status){ + RTC_PSC = (uint32_t)(PSC_FACTOR_A(rtc_initpara_struct->factor_asyn)| \ + PSC_FACTOR_S(rtc_initpara_struct->factor_syn)); + + RTC_TIME = (uint32_t)reg_time; + RTC_DATE = (uint32_t)reg_date; + + RTC_CTL &= (uint32_t)(~RTC_CTL_CS); + RTC_CTL |= rtc_initpara_struct->display_format; + + /* 3rd: exit init mode */ + rtc_init_mode_exit(); + + /* 4th: wait the RSYNF flag to set */ + error_status = rtc_register_sync_wait(); + } + + /* 5th: enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; + + return error_status; +} + +/*! + \brief enter RTC init mode + \param[in] none + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus rtc_init_mode_enter(void) +{ + volatile uint32_t time_index = RTC_INITM_TIMEOUT; + uint32_t flag_status = RESET; + ErrStatus error_status = ERROR; + + /* check whether it has been in init mode */ + if ((uint32_t)RESET == (RTC_STAT & RTC_STAT_INITF)){ + RTC_STAT |= RTC_STAT_INITM; + + /* wait until the INITF flag to be set */ + do{ + flag_status = RTC_STAT & RTC_STAT_INITF; + }while((--time_index > 0U) && ((uint32_t)RESET == flag_status)); + + if ((uint32_t)RESET != flag_status){ + error_status = SUCCESS; + } + }else{ + error_status = SUCCESS; + } + return error_status; +} + +/*! + \brief exit RTC init mode + \param[in] none + \param[out] none + \retval none +*/ +void rtc_init_mode_exit(void) +{ + RTC_STAT &= (uint32_t)(~RTC_STAT_INITM); +} + +/*! + \brief wait until RTC_TIME and RTC_DATE registers are synchronized with APB clock, and the shadow + registers are updated + \param[in] none + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus rtc_register_sync_wait(void) +{ + volatile uint32_t time_index = RTC_RSYNF_TIMEOUT; + uint32_t flag_status = RESET; + ErrStatus error_status = ERROR; + + if ((uint32_t)RESET == (RTC_CTL & RTC_CTL_BPSHAD)){ + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + /* firstly clear RSYNF flag */ + RTC_STAT &= (uint32_t)(~RTC_STAT_RSYNF); + + /* wait until RSYNF flag to be set */ + do{ + flag_status = RTC_STAT & RTC_STAT_RSYNF; + }while((--time_index > 0U) && ((uint32_t)RESET == flag_status)); + + if ((uint32_t)RESET != flag_status){ + error_status = SUCCESS; + } + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; + }else{ + error_status = SUCCESS; + } + + return error_status; +} + +/*! + \brief get current time and date + \param[in] none + \param[out] rtc_initpara_struct: pointer to a rtc_parameter_struct structure which contains + parameters for initialization of the rtc peripheral + members of the structure and the member values are shown as below: + year: 0x0 - 0x99(BCD format) + month: RTC_JAN, RTC_FEB, RTC_MAR, RTC_APR, RTC_MAY, RTC_JUN, + RTC_JUL, RTC_AUG, RTC_SEP, RTC_OCT, RTC_NOV, RTC_DEC + date: 0x1 - 0x31(BCD format) + day_of_week: RTC_MONDAY, RTC_TUESDAY, RTC_WEDSDAY, RTC_THURSDAY + RTC_FRIDAY, RTC_SATURDAY, RTC_SUNDAY + hour: 0x0 - 0x12(BCD format) or 0x0 - 0x23(BCD format) depending on the rtc_display_format chose + minute: 0x0 - 0x59(BCD format) + second: 0x0 - 0x59(BCD format) + factor_asyn: 0x0 - 0x7F + factor_syn: 0x0 - 0x7FFF + am_pm: RTC_AM, RTC_PM + display_format: RTC_24HOUR, RTC_12HOUR + \retval none +*/ +void rtc_current_time_get(rtc_parameter_struct* rtc_initpara_struct) +{ + uint32_t temp_tr = 0U, temp_dr = 0U, temp_pscr = 0U, temp_ctlr = 0U; + + temp_tr = (uint32_t)RTC_TIME; + temp_dr = (uint32_t)RTC_DATE; + temp_pscr = (uint32_t)RTC_PSC; + temp_ctlr = (uint32_t)RTC_CTL; + + /* get current time and construct rtc_parameter_struct structure */ + rtc_initpara_struct->year = (uint8_t)GET_DATE_YR(temp_dr); + rtc_initpara_struct->month = (uint8_t)GET_DATE_MON(temp_dr); + rtc_initpara_struct->date = (uint8_t)GET_DATE_DAY(temp_dr); + rtc_initpara_struct->day_of_week = (uint8_t)GET_DATE_DOW(temp_dr); + rtc_initpara_struct->hour = (uint8_t)GET_TIME_HR(temp_tr); + rtc_initpara_struct->minute = (uint8_t)GET_TIME_MN(temp_tr); + rtc_initpara_struct->second = (uint8_t)GET_TIME_SC(temp_tr); + rtc_initpara_struct->factor_asyn = (uint16_t)GET_PSC_FACTOR_A(temp_pscr); + rtc_initpara_struct->factor_syn = (uint16_t)GET_PSC_FACTOR_S(temp_pscr); + rtc_initpara_struct->am_pm = (uint32_t)(temp_pscr & RTC_TIME_PM); + rtc_initpara_struct->display_format = (uint32_t)(temp_ctlr & RTC_CTL_CS); +} + +/*! + \brief get current subsecond value + \param[in] none + \param[out] none + \retval current subsecond value +*/ +uint32_t rtc_subsecond_get(void) +{ + uint32_t reg = 0U; + /* if BPSHAD bit is reset, reading RTC_SS will lock RTC_TIME and RTC_DATE automatically */ + reg = (uint32_t)RTC_SS; + /* read RTC_DATE to unlock the 3 shadow registers */ + (void) (RTC_DATE); + + return reg; +} + +/*! + \brief configure RTC alarm + \param[in] rtc_alarm: RTC_ALARM0 or RTC_ALARM1 + \param[in] rtc_alarm_time: pointer to a rtc_alarm_struct structure which contains + parameters for RTC alarm configuration + members of the structure and the member values are shown as below: + alarm_mask: RTC_ALARM_NONE_MASK, RTC_ALARM_DATE_MASK, RTC_ALARM_HOUR_MASK + RTC_ALARM_MINUTE_MASK, RTC_ALARM_SECOND_MASK, RTC_ALARM_ALL_MASK + weekday_or_date: RTC_ALARM_DATE_SELECTED, RTC_ALARM_WEEKDAY_SELECTED + alarm_day: 1) 0x1 - 0x31(BCD format) if RTC_ALARM_DATE_SELECTED is set + 2) RTC_MONDAY, RTC_TUESDAY, RTC_WEDSDAY, RTC_THURSDAY, RTC_FRIDAY, + RTC_SATURDAY, RTC_SUNDAY if RTC_ALARM_WEEKDAY_SELECTED is set + alarm_hour: 0x0 - 0x12(BCD format) or 0x0 - 0x23(BCD format) depending on the rtc_display_format + alarm_minute: 0x0 - 0x59(BCD format) + alarm_second: 0x0 - 0x59(BCD format) + am_pm: RTC_AM, RTC_PM + \param[out] none + \retval none +*/ +void rtc_alarm_config(uint8_t rtc_alarm, rtc_alarm_struct* rtc_alarm_time) +{ + uint32_t reg_alrmtd = 0U; + + reg_alrmtd =(rtc_alarm_time->alarm_mask | \ + rtc_alarm_time->weekday_or_date | \ + rtc_alarm_time->am_pm | \ + ALRMTD_DAY(rtc_alarm_time->alarm_day) | \ + ALRMTD_HR(rtc_alarm_time->alarm_hour) | \ + ALRMTD_MN(rtc_alarm_time->alarm_minute) | \ + ALRMTD_SC(rtc_alarm_time->alarm_second)); + + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + if(RTC_ALARM0 == rtc_alarm){ + RTC_ALRM0TD = (uint32_t)reg_alrmtd; + + }else{ + RTC_ALRM1TD = (uint32_t)reg_alrmtd; + } + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; +} + +/*! + \brief configure subsecond of RTC alarm + \param[in] rtc_alarm: RTC_ALARM0 or RTC_ALARM1 + \param[in] mask_subsecond: alarm subsecond mask + \arg RTC_MASKSSC_0_14: mask alarm subsecond configuration + \arg RTC_MASKSSC_1_14: mask RTC_ALRMXSS_SSC[14:1], and RTC_ALRMXSS_SSC[0] is to be compared + \arg RTC_MASKSSC_2_14: mask RTC_ALRMXSS_SSC[14:2], and RTC_ALRMXSS_SSC[1:0] is to be compared + \arg RTC_MASKSSC_3_14: mask RTC_ALRMXSS_SSC[14:3], and RTC_ALRMXSS_SSC[2:0] is to be compared + \arg RTC_MASKSSC_4_14: mask RTC_ALRMXSS_SSC[14:4]], and RTC_ALRMXSS_SSC[3:0] is to be compared + \arg RTC_MASKSSC_5_14: mask RTC_ALRMXSS_SSC[14:5], and RTC_ALRMXSS_SSC[4:0] is to be compared + \arg RTC_MASKSSC_6_14: mask RTC_ALRMXSS_SSC[14:6], and RTC_ALRMXSS_SSC[5:0] is to be compared + \arg RTC_MASKSSC_7_14: mask RTC_ALRMXSS_SSC[14:7], and RTC_ALRMXSS_SSC[6:0] is to be compared + \arg RTC_MASKSSC_8_14: mask RTC_ALRMXSS_SSC[14:8], and RTC_ALRMXSS_SSC[7:0] is to be compared + \arg RTC_MASKSSC_9_14: mask RTC_ALRMXSS_SSC[14:9], and RTC_ALRMXSS_SSC[8:0] is to be compared + \arg RTC_MASKSSC_10_14: mask RTC_ALRMXSS_SSC[14:10], and RTC_ALRMXSS_SSC[9:0] is to be compared + \arg RTC_MASKSSC_11_14: mask RTC_ALRMXSS_SSC[14:11], and RTC_ALRMXSS_SSC[10:0] is to be compared + \arg RTC_MASKSSC_12_14: mask RTC_ALRMXSS_SSC[14:12], and RTC_ALRMXSS_SSC[11:0] is to be compared + \arg RTC_MASKSSC_13_14: mask RTC_ALRMXSS_SSC[14:13], and RTC_ALRMXSS_SSC[12:0] is to be compared + \arg RTC_MASKSSC_14: mask RTC_ALRMXSS_SSC[14], and RTC_ALRMXSS_SSC[13:0] is to be compared + \arg RTC_MASKSSC_NONE: mask none, and RTC_ALRMXSS_SSC[14:0] is to be compared + \param[in] subsecond: alarm subsecond value(0x000 - 0x7FFF) + \param[out] none + \retval none +*/ +void rtc_alarm_subsecond_config(uint8_t rtc_alarm, uint32_t mask_subsecond, uint32_t subsecond) +{ + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + if(RTC_ALARM0 == rtc_alarm){ + RTC_ALRM0SS = mask_subsecond | subsecond; + }else{ + RTC_ALRM1SS = mask_subsecond | subsecond; + } + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; +} + +/*! + \brief get RTC alarm + \param[in] rtc_alarm: RTC_ALARM0 or RTC_ALARM1 + \param[out] rtc_alarm_time: pointer to a rtc_alarm_struct structure which contains + parameters for RTC alarm configuration + members of the structure and the member values are shown as below: + alarm_mask: RTC_ALARM_NONE_MASK, RTC_ALARM_DATE_MASK, RTC_ALARM_HOUR_MASK + RTC_ALARM_MINUTE_MASK, RTC_ALARM_SECOND_MASK, RTC_ALARM_ALL_MASK + weekday_or_date: RTC_ALARM_DATE_SELECTED, RTC_ALARM_WEEKDAY_SELECTED + alarm_day: 1) 0x1 - 0x31(BCD format) if RTC_ALARM_DATE_SELECTED is set + 2) RTC_MONDAY, RTC_TUESDAY, RTC_WEDSDAY, RTC_THURSDAY, RTC_FRIDAY, + RTC_SATURDAY, RTC_SUNDAY if RTC_ALARM_WEEKDAY_SELECTED is set + alarm_hour: 0x0 - 0x12(BCD format) or 0x0 - 0x23(BCD format) depending on the rtc_display_format + alarm_minute: 0x0 - 0x59(BCD format) + alarm_second: 0x0 - 0x59(BCD format) + am_pm: RTC_AM, RTC_PM + \retval none +*/ +void rtc_alarm_get(uint8_t rtc_alarm, rtc_alarm_struct* rtc_alarm_time) +{ + uint32_t reg_alrmtd = 0U; + + /* get the value of RTC_ALRM0TD register */ + if(RTC_ALARM0 == rtc_alarm){ + reg_alrmtd = RTC_ALRM0TD; + }else{ + reg_alrmtd = RTC_ALRM1TD; + } + /* get alarm parameters and construct the rtc_alarm_struct structure */ + rtc_alarm_time->alarm_mask = reg_alrmtd & RTC_ALARM_ALL_MASK; + rtc_alarm_time->am_pm = (uint32_t)(reg_alrmtd & RTC_ALRMXTD_PM); + rtc_alarm_time->weekday_or_date = (uint32_t)(reg_alrmtd & RTC_ALRMXTD_DOWS); + rtc_alarm_time->alarm_day = (uint8_t)GET_ALRMTD_DAY(reg_alrmtd); + rtc_alarm_time->alarm_hour = (uint8_t)GET_ALRMTD_HR(reg_alrmtd); + rtc_alarm_time->alarm_minute = (uint8_t)GET_ALRMTD_MN(reg_alrmtd); + rtc_alarm_time->alarm_second = (uint8_t)GET_ALRMTD_SC(reg_alrmtd); +} + +/*! + \brief get RTC alarm subsecond + \param[in] rtc_alarm: RTC_ALARM0 or RTC_ALARM1 + \param[out] none + \retval RTC alarm subsecond value +*/ +uint32_t rtc_alarm_subsecond_get(uint8_t rtc_alarm) +{ + if(RTC_ALARM0 == rtc_alarm){ + return ((uint32_t)(RTC_ALRM0SS & RTC_ALRM0SS_SSC)); + }else{ + return ((uint32_t)(RTC_ALRM1SS & RTC_ALRM1SS_SSC)); + } +} + +/*! + \brief enable RTC alarm + \param[in] rtc_alarm: RTC_ALARM0 or RTC_ALARM1 + \param[out] none + \retval none +*/ +void rtc_alarm_enable(uint8_t rtc_alarm) +{ + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + if(RTC_ALARM0 == rtc_alarm){ + RTC_CTL |= RTC_CTL_ALRM0EN; + }else{ + RTC_CTL |= RTC_CTL_ALRM1EN; + } + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; +} + +/*! + \brief disable RTC alarm + \param[in] rtc_alarm: RTC_ALARM0 or RTC_ALARM1 + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus rtc_alarm_disable(uint8_t rtc_alarm) +{ + volatile uint32_t time_index = RTC_ALRMXWF_TIMEOUT; + ErrStatus error_status = ERROR; + uint32_t flag_status = RESET; + + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + /* clear the state of alarm */ + if(RTC_ALARM0 == rtc_alarm){ + RTC_CTL &= (uint32_t)(~RTC_CTL_ALRM0EN); + /* wait until ALRM0WF flag to be set after the alarm is disabled */ + do{ + flag_status = RTC_STAT & RTC_STAT_ALRM0WF; + }while((--time_index > 0U) && ((uint32_t)RESET == flag_status)); + }else{ + RTC_CTL &= (uint32_t)(~RTC_CTL_ALRM1EN); + /* wait until ALRM1WF flag to be set after the alarm is disabled */ + do{ + flag_status = RTC_STAT & RTC_STAT_ALRM1WF; + }while((--time_index > 0U) && ((uint32_t)RESET == flag_status)); + } + + if ((uint32_t)RESET != flag_status){ + error_status = SUCCESS; + } + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; + + return error_status; +} + +/*! + \brief enable RTC time-stamp + \param[in] edge: specify which edge to detect of time-stamp + \arg RTC_TIMESTAMP_RISING_EDGE: rising edge is valid event edge for timestamp event + \arg RTC_TIMESTAMP_FALLING_EDGE: falling edge is valid event edge for timestamp event + \param[out] none + \retval none +*/ +void rtc_timestamp_enable(uint32_t edge) +{ + uint32_t reg_ctl = 0U; + + /* clear the bits to be configured in RTC_CTL */ + reg_ctl = (uint32_t)(RTC_CTL & (uint32_t)(~(RTC_CTL_TSEG | RTC_CTL_TSEN))); + + /* new configuration */ + reg_ctl |= (uint32_t)(edge | RTC_CTL_TSEN); + + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + RTC_CTL = (uint32_t)reg_ctl; + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; +} + +/*! + \brief disable RTC time-stamp + \param[in] none + \param[out] none + \retval none +*/ +void rtc_timestamp_disable(void) +{ + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + /* clear the TSEN bit */ + RTC_CTL &= (uint32_t)(~ RTC_CTL_TSEN); + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; +} + +/*! + \brief get RTC timestamp time and date + \param[in] none + \param[out] rtc_timestamp: pointer to a rtc_timestamp_struct structure which contains + parameters for RTC time-stamp configuration + members of the structure and the member values are shown as below: + timestamp_month: RTC_JAN, RTC_FEB, RTC_MAR, RTC_APR, RTC_MAY, RTC_JUN, + RTC_JUL, RTC_AUG, RTC_SEP, RTC_OCT, RTC_NOV, RTC_DEC + timestamp_date: 0x1 - 0x31(BCD format) + timestamp_day: RTC_MONDAY, RTC_TUESDAY, RTC_WEDSDAY, RTC_THURSDAY, RTC_FRIDAY, + RTC_SATURDAY, RTC_SUNDAY if RTC_ALARM_WEEKDAY_SELECTED is set + timestamp_hour: 0x0 - 0x12(BCD format) or 0x0 - 0x23(BCD format) depending on the rtc_display_format + timestamp_minute: 0x0 - 0x59(BCD format) + timestamp_second: 0x0 - 0x59(BCD format) + am_pm: RTC_AM, RTC_PM + \retval none +*/ +void rtc_timestamp_get(rtc_timestamp_struct* rtc_timestamp) +{ + uint32_t temp_tts = 0U, temp_dts = 0U; + + /* get the value of time_stamp registers */ + temp_tts = (uint32_t)RTC_TTS; + temp_dts = (uint32_t)RTC_DTS; + + /* get timestamp time and construct the rtc_timestamp_struct structure */ + rtc_timestamp->am_pm = (uint32_t)(temp_tts & RTC_TTS_PM); + rtc_timestamp->timestamp_month = (uint8_t)GET_DTS_MON(temp_dts); + rtc_timestamp->timestamp_date = (uint8_t)GET_DTS_DAY(temp_dts); + rtc_timestamp->timestamp_day = (uint8_t)GET_DTS_DOW(temp_dts); + rtc_timestamp->timestamp_hour = (uint8_t)GET_TTS_HR(temp_tts); + rtc_timestamp->timestamp_minute = (uint8_t)GET_TTS_MN(temp_tts); + rtc_timestamp->timestamp_second = (uint8_t)GET_TTS_SC(temp_tts); +} + +/*! + \brief get RTC time-stamp subsecond + \param[in] none + \param[out] none + \retval RTC time-stamp subsecond value +*/ +uint32_t rtc_timestamp_subsecond_get(void) +{ + return ((uint32_t)RTC_SSTS); +} + +/*! + \brief RTC time-stamp mapping + \param[in] rtc_af: + \arg RTC_AF0_TIMESTAMP: RTC_AF0 use for timestamp + \arg RTC_AF1_TIMESTAMP: RTC_AF1 use for timestamp + \param[out] none + \retval none +*/ +void rtc_timestamp_pin_map(uint32_t rtc_af) +{ + RTC_TAMP &= ~RTC_TAMP_TSSEL; + RTC_TAMP |= rtc_af; +} + +/*! + \brief enable RTC tamper + \param[in] rtc_tamper: pointer to a rtc_tamper_struct structure which contains + parameters for RTC tamper configuration + members of the structure and the member values are shown as below: + detecting tamper event can using edge mode or level mode + (1) using edge mode configuration: + tamper_source: RTC_TAMPER0, RTC_TAMPER1 + tamper_trigger: RTC_TAMPER_TRIGGER_EDGE_RISING, RTC_TAMPER_TRIGGER_EDGE_FALLING + tamper_filter: RTC_FLT_EDGE + tamper_with_timestamp: DISABLE, ENABLE + (2) using level mode configuration: + tamper_source: RTC_TAMPER0, RTC_TAMPER1 + tamper_trigger:RTC_TAMPER_TRIGGER_LEVEL_LOW, RTC_TAMPER_TRIGGER_LEVEL_HIGH + tamper_filter: RTC_FLT_2S, RTC_FLT_4S, RTC_FLT_8S + tamper_sample_frequency: RTC_FREQ_DIV32768, RTC_FREQ_DIV16384, RTC_FREQ_DIV8192, + RTC_FREQ_DIV4096, RTC_FREQ_DIV2048, RTC_FREQ_DIV1024, + RTC_FREQ_DIV512, RTC_FREQ_DIV256 + tamper_precharge_enable: DISABLE, ENABLE + tamper_precharge_time: RTC_PRCH_1C, RTC_PRCH_2C, RTC_PRCH_4C, RTC_PRCH_8C + tamper_with_timestamp: DISABLE, ENABLE + \param[out] none + \retval none +*/ +void rtc_tamper_enable(rtc_tamper_struct* rtc_tamper) +{ + /* disable tamper */ + RTC_TAMP &= (uint32_t)~(rtc_tamper->tamper_source); + + /* tamper filter must be used when the tamper source is voltage level detection */ + RTC_TAMP &= (uint32_t)~RTC_TAMP_FLT; + + /* the tamper source is voltage level detection */ + if((uint32_t)(rtc_tamper->tamper_filter) != RTC_FLT_EDGE ){ + RTC_TAMP &= (uint32_t)~(RTC_TAMP_DISPU | RTC_TAMP_PRCH | RTC_TAMP_FREQ | RTC_TAMP_FLT); + + /* check if the tamper pin need precharge, if need, then configure the precharge time */ + if(DISABLE == rtc_tamper->tamper_precharge_enable){ + RTC_TAMP |= (uint32_t)RTC_TAMP_DISPU; + }else{ + RTC_TAMP |= (uint32_t)(rtc_tamper->tamper_precharge_time); + } + + RTC_TAMP |= (uint32_t)(rtc_tamper->tamper_sample_frequency); + RTC_TAMP |= (uint32_t)(rtc_tamper->tamper_filter); + + /* configure the tamper trigger */ + RTC_TAMP &= ((uint32_t)~((rtc_tamper->tamper_source) << RTC_TAMPER_TRIGGER_POS)); + if(RTC_TAMPER_TRIGGER_LEVEL_LOW != rtc_tamper->tamper_trigger){ + RTC_TAMP |= (uint32_t)((rtc_tamper->tamper_source)<< RTC_TAMPER_TRIGGER_POS); + } + }else{ + + /* configure the tamper trigger */ + RTC_TAMP &= ((uint32_t)~((rtc_tamper->tamper_source) << RTC_TAMPER_TRIGGER_POS)); + if(RTC_TAMPER_TRIGGER_EDGE_RISING != rtc_tamper->tamper_trigger){ + RTC_TAMP |= (uint32_t)((rtc_tamper->tamper_source)<< RTC_TAMPER_TRIGGER_POS); + } + } + + RTC_TAMP &= (uint32_t)~RTC_TAMP_TPTS; + if(DISABLE != rtc_tamper->tamper_with_timestamp){ + /* the tamper event also cause a time-stamp event */ + RTC_TAMP |= (uint32_t)RTC_TAMP_TPTS; + } + /* enable tamper */ + RTC_TAMP |= (uint32_t)(rtc_tamper->tamper_source); +} + +/*! + \brief disable RTC tamper + \param[in] source: specify which tamper source to be disabled + \arg RTC_TAMPER0 + \arg RTC_TAMPER1 + \param[out] none + \retval none +*/ +void rtc_tamper_disable(uint32_t source) +{ + /* disable tamper */ + RTC_TAMP &= (uint32_t)~source; + +} + +/*! + \brief RTC tamper0 mapping + \param[in] rtc_af: + \arg RTC_AF0_TAMPER0: RTC_AF0 use for tamper0 + \arg RTC_AF1_TAMPER0: RTC_AF1 use for tamper0 + \param[out] none + \retval none +*/ +void rtc_tamper0_pin_map(uint32_t rtc_af) +{ + RTC_TAMP &= ~(RTC_TAMP_TP0EN | RTC_TAMP_TP0SEL); + RTC_TAMP |= rtc_af; +} + +/*! + \brief enable specified RTC interrupt + \param[in] interrupt: specify which interrupt source to be enabled + \arg RTC_INT_TIMESTAMP: timestamp interrupt + \arg RTC_INT_ALARM0: alarm0 interrupt + \arg RTC_INT_ALARM1: alarm1 interrupt + \arg RTC_INT_TAMP: tamper detection interrupt + \arg RTC_INT_WAKEUP: wakeup timer interrupt + \param[out] none + \retval none +*/ +void rtc_interrupt_enable(uint32_t interrupt) +{ + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + /* enable the interrupts in RTC_CTL register */ + RTC_CTL |= (uint32_t)(interrupt & (uint32_t)~RTC_TAMP_TPIE); + /* enable the interrupts in RTC_TAMP register */ + RTC_TAMP |= (uint32_t)(interrupt & RTC_TAMP_TPIE); + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; +} + +/*! + \brief disble specified RTC interrupt + \param[in] interrupt: specify which interrupt source to be disabled + \arg RTC_INT_TIMESTAMP: timestamp interrupt + \arg RTC_INT_ALARM0: alarm interrupt + \arg RTC_INT_ALARM1: alarm interrupt + \arg RTC_INT_TAMP: tamper detection interrupt + \arg RTC_INT_WAKEUP: wakeup timer interrupt + \param[out] none + \retval none +*/ +void rtc_interrupt_disable(uint32_t interrupt) +{ + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + /* disable the interrupts in RTC_CTL register */ + RTC_CTL &= (uint32_t)~(interrupt & (uint32_t)~RTC_TAMP_TPIE); + /* disable the interrupts in RTC_TAMP register */ + RTC_TAMP &= (uint32_t)~(interrupt & RTC_TAMP_TPIE); + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; +} + +/*! + \brief check specified flag + \param[in] flag: specify which flag to check + \arg RTC_STAT_SCP: smooth calibration pending flag + \arg RTC_FLAG_TP1: RTC tamper 1 detected flag + \arg RTC_FLAG_TP0: RTC tamper 0 detected flag + \arg RTC_FLAG_TSOVR: time-stamp overflow flag + \arg RTC_FLAG_TS: time-stamp flag + \arg RTC_FLAG_ALARM0: alarm0 occurs flag + \arg RTC_FLAG_ALARM1: alarm1 occurs flag + \arg RTC_FLAG_WT: wakeup timer occurs flag + \arg RTC_FLAG_INIT: initialization state flag + \arg RTC_FLAG_RSYN: register synchronization flag + \arg RTC_FLAG_YCM: year configuration mark status flag + \arg RTC_FLAG_SOP: shift function operation pending flag + \arg RTC_FLAG_ALRM0W: alarm0 configuration can be write flag + \arg RTC_FLAG_ALRM1W: alarm1 configuration can be write flag + \arg RTC_FLAG_WTW: wakeup timer can be write flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus rtc_flag_get(uint32_t flag) +{ + FlagStatus flag_state = RESET; + + if ((uint32_t)RESET != (RTC_STAT & flag)){ + flag_state = SET; + } + return flag_state; +} + +/*! + \brief clear specified flag + \arg RTC_FLAG_TP1: RTC tamper 1 detected flag + \arg RTC_FLAG_TP0: RTC tamper 0 detected flag + \arg RTC_FLAG_TSOVR: time-stamp overflow flag + \arg RTC_FLAG_TS: time-stamp flag + \arg RTC_FLAG_WT: wakeup timer occurs flag + \arg RTC_FLAG_ALARM0: alarm0 occurs flag + \arg RTC_FLAG_ALARM1: alarm1 occurs flag + \arg RTC_FLAG_RSYN: register synchronization flag + \param[out] none + \retval none +*/ +void rtc_flag_clear(uint32_t flag) +{ + RTC_STAT &= (uint32_t)(~flag); +} + +/*! + \brief configure rtc alarm output source + \param[in] source: specify signal to output + \arg RTC_ALARM0_HIGH: when the alarm0 flag is set, the output pin is high + \arg RTC_ALARM0_LOW: when the alarm0 flag is set, the output pin is low + \arg RTC_ALARM1_HIGH: when the alarm1 flag is set, the output pin is high + \arg RTC_ALARM1_LOW: when the alarm1 flag is set, the output pin is low + \arg RTC_WAKEUP_HIGH: when the wakeup flag is set, the output pin is high + \arg RTC_WAKEUP_LOW: when the wakeup flag is set, the output pin is low + \param[in] mode: specify the output pin mode when output alarm signal + \arg RTC_ALARM_OUTPUT_OD: open drain mode + \arg RTC_ALARM_OUTPUT_PP: push pull mode + \param[out] none + \retval none +*/ +void rtc_alarm_output_config(uint32_t source, uint32_t mode) +{ + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + RTC_CTL &= ~(RTC_CTL_OS | RTC_CTL_OPOL); + RTC_TAMP &= ~RTC_TAMP_AOT; + + RTC_CTL |= (uint32_t)(source); + /* alarm output */ + RTC_TAMP |= (uint32_t)(mode); + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; +} + +/*! + \brief configure rtc calibration output source + \param[in] source: specify signal to output + \arg RTC_CALIBRATION_512HZ: when the LSE freqency is 32768Hz and the RTC_PSC + is the default value, output 512Hz signal + \arg RTC_CALIBRATION_1HZ: when the LSE freqency is 32768Hz and the RTC_PSC + is the default value, output 1Hz signal + \param[out] none + \retval none +*/ +void rtc_calibration_output_config(uint32_t source) +{ + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + RTC_CTL &= (uint32_t)~(RTC_CTL_COEN | RTC_CTL_COS); + + RTC_CTL |= (uint32_t)(source); + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; +} + + +/*! + \brief adjust the daylight saving time by adding or substracting one hour from the current time + \param[in] operation: hour adjustment operation + \arg RTC_CTL_A1H: add one hour + \arg RTC_CTL_S1H: substract one hour + \param[out] none + \retval none +*/ +void rtc_hour_adjust(uint32_t operation) +{ + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + RTC_CTL |= (uint32_t)(operation); + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; +} + +/*! + \brief adjust RTC second or subsecond value of current time + \param[in] add: add 1s to current time or not + \arg RTC_SHIFT_ADD1S_RESET: no effect + \arg RTC_SHIFT_ADD1S_SET: add 1s to current time + \param[in] minus: number of subsecond to minus from current time(0x0 - 0x7FFF) + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus rtc_second_adjust(uint32_t add, uint32_t minus) +{ + volatile uint32_t time_index = RTC_SHIFTCTL_TIMEOUT; + ErrStatus error_status = ERROR; + uint32_t flag_status = RESET; + uint32_t temp=0U; + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + /* check if a shift operation is ongoing */ + do{ + flag_status = RTC_STAT & RTC_STAT_SOPF; + }while((--time_index > 0U) && ((uint32_t)RESET != flag_status)); + + /* check if the function of reference clock detection is disabled */ + temp = RTC_CTL & RTC_CTL_REFEN; + if((RESET == flag_status) && (RESET == temp)){ + RTC_SHIFTCTL = (uint32_t)(add | SHIFTCTL_SFS(minus)); + error_status = rtc_register_sync_wait(); + } + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; + + return error_status; +} + +/*! + \brief enable RTC bypass shadow registers function + \param[in] none + \param[out] none + \retval none +*/ +void rtc_bypass_shadow_enable(void) +{ + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + RTC_CTL |= RTC_CTL_BPSHAD; + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; +} + +/*! + \brief disable RTC bypass shadow registers function + \param[in] none + \param[out] none + \retval none +*/ +void rtc_bypass_shadow_disable(void) +{ + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + RTC_CTL &= ~RTC_CTL_BPSHAD; + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; +} + +/*! + \brief enable RTC reference clock detection function + \param[in] none + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus rtc_refclock_detection_enable(void) +{ + ErrStatus error_status = ERROR; + + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + /* enter init mode */ + error_status = rtc_init_mode_enter(); + + if(ERROR != error_status){ + RTC_CTL |= (uint32_t)RTC_CTL_REFEN; + /* exit init mode */ + rtc_init_mode_exit(); + } + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; + + return error_status; +} + +/*! + \brief disable RTC reference clock detection function + \param[in] none + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus rtc_refclock_detection_disable(void) +{ + ErrStatus error_status = ERROR; + + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + /* enter init mode */ + error_status = rtc_init_mode_enter(); + + if(ERROR != error_status){ + RTC_CTL &= (uint32_t)~RTC_CTL_REFEN; + /* exit init mode */ + rtc_init_mode_exit(); + } + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; + + return error_status; +} + +/*! + \brief enable RTC auto wakeup function + \param[in] none + \param[out] none + \retval none +*/ +void rtc_wakeup_enable(void) +{ + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + RTC_CTL |= RTC_CTL_WTEN; + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; +} + +/*! + \brief disable RTC auto wakeup function + \param[in] none + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus rtc_wakeup_disable(void) +{ + ErrStatus error_status = ERROR; + volatile uint32_t time_index = RTC_WTWF_TIMEOUT; + uint32_t flag_status = RESET; + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + RTC_CTL &= ~RTC_CTL_WTEN; + /* wait until the WTWF flag to be set */ + do{ + flag_status = RTC_STAT & RTC_STAT_WTWF; + }while((--time_index > 0U) && ((uint32_t)RESET == flag_status)); + + if ((uint32_t)RESET == flag_status){ + error_status = ERROR; + }else{ + error_status = SUCCESS; + } + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; + return error_status; +} + +/*! + \brief set RTC auto wakeup timer clock + \param[in] wakeup_clock: + \arg WAKEUP_RTCCK_DIV16: RTC auto wakeup timer clock is RTC clock divided by 16 + \arg WAKEUP_RTCCK_DIV8: RTC auto wakeup timer clock is RTC clock divided by 8 + \arg WAKEUP_RTCCK_DIV4: RTC auto wakeup timer clock is RTC clock divided by 4 + \arg WAKEUP_RTCCK_DIV2: RTC auto wakeup timer clock is RTC clock divided by 2 + \arg WAKEUP_CKSPRE: RTC auto wakeup timer clock is ckspre + \arg WAKEUP_CKSPRE_2EXP16: RTC auto wakeup timer clock is ckspre and wakeup timer add 2exp16 + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus rtc_wakeup_clock_set(uint8_t wakeup_clock) +{ + ErrStatus error_status = ERROR; + volatile uint32_t time_index = RTC_WTWF_TIMEOUT; + uint32_t flag_status = RESET; + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + /* only when RTC_CTL_WTEN=0 and RTC_STAT_WTWF=1 can write RTC_CTL[2��0] */ + /* wait until the WTWF flag to be set */ + do{ + flag_status = RTC_STAT & RTC_STAT_WTWF; + }while((--time_index > 0U) && ((uint32_t)RESET == flag_status)); + + if ((uint32_t)RESET == flag_status){ + error_status = ERROR; + }else{ + RTC_CTL &= (uint32_t)~ RTC_CTL_WTCS; + RTC_CTL |= (uint32_t)wakeup_clock; + error_status = SUCCESS; + } + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; + + return error_status; +} + +/*! + \brief set wakeup timer value + \param[in] wakeup_timer: 0x0000-0xffff + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus rtc_wakeup_timer_set(uint16_t wakeup_timer) +{ + ErrStatus error_status = ERROR; + volatile uint32_t time_index = RTC_WTWF_TIMEOUT; + uint32_t flag_status = RESET; + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + /* wait until the WTWF flag to be set */ + do{ + flag_status = RTC_STAT & RTC_STAT_WTWF; + }while((--time_index > 0U) && ((uint32_t)RESET == flag_status)); + + if ((uint32_t)RESET == flag_status){ + error_status = ERROR; + }else{ + RTC_WUT = (uint32_t)wakeup_timer; + error_status = SUCCESS; + } + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; + return error_status; +} + +/*! + \brief get wakeup timer value + \param[in] none + \param[out] none + \retval wakeup timer value +*/ + uint16_t rtc_wakeup_timer_get(void) +{ + return (uint16_t)RTC_WUT; +} + +/*! + \brief configure RTC smooth calibration + \param[in] window: select calibration window + \arg RTC_CALIBRATION_WINDOW_32S: 2exp20 RTCCLK cycles, 32s if RTCCLK = 32768 Hz + \arg RTC_CALIBRATION_WINDOW_16S: 2exp19 RTCCLK cycles, 16s if RTCCLK = 32768 Hz + \arg RTC_CALIBRATION_WINDOW_8S: 2exp18 RTCCLK cycles, 8s if RTCCLK = 32768 Hz + \param[in] plus: add RTC clock or not + \arg RTC_CALIBRATION_PLUS_SET: add one RTC clock every 2048 rtc clock + \arg RTC_CALIBRATION_PLUS_RESET: no effect + \param[in] minus: the RTC clock to minus during the calibration window(0x0 - 0x1FF) + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus rtc_smooth_calibration_config(uint32_t window, uint32_t plus, uint32_t minus) +{ + volatile uint32_t time_index = RTC_HRFC_TIMEOUT; + ErrStatus error_status = ERROR; + uint32_t flag_status = RESET; + + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + /* check if a smooth calibration operation is ongoing */ + do{ + flag_status = RTC_STAT & RTC_STAT_SCPF; + }while((--time_index > 0U) && ((uint32_t)RESET != flag_status)); + + if((uint32_t)RESET == flag_status){ + RTC_HRFC = (uint32_t)(window | plus | HRFC_CMSK(minus)); + error_status = SUCCESS; + } + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; + + return error_status; +} + +/*! + \brief enable RTC coarse calibration + \param[in] none + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus rtc_coarse_calibration_enable(void) +{ + ErrStatus error_status = ERROR; + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + /* enter init mode */ + error_status = rtc_init_mode_enter(); + + if(ERROR != error_status){ + RTC_CTL |= (uint32_t)RTC_CTL_CCEN; + /* exit init mode */ + rtc_init_mode_exit(); + } + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; + return error_status; +} + +/*! + \brief disable RTC coarse calibration + \param[in] none + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus rtc_coarse_calibration_disable(void) +{ + ErrStatus error_status = ERROR; + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + /* enter init mode */ + error_status = rtc_init_mode_enter(); + + if(ERROR != error_status){ + RTC_CTL &= (uint32_t)~RTC_CTL_CCEN; + /* exit init mode */ + rtc_init_mode_exit(); + } + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; + return error_status; +} + +/*! + \brief config coarse calibration direction and step + \param[in] direction: CALIB_INCREASE or CALIB_DECREASE + \param[in] step: 0x00-0x1F + COSD=0: + 0x00:+0 PPM + 0x01:+4 PPM + 0x02:+8 PPM + .... + 0x1F:+126 PPM + COSD=1: + 0x00:-0 PPM + 0x01:-2 PPM + 0x02:-4 PPM + .... + 0x1F:-63 PPM + \param[out] none + \retval ErrStatus: ERROR or SUCCESS +*/ +ErrStatus rtc_coarse_calibration_config(uint8_t direction, uint8_t step) +{ + ErrStatus error_status = ERROR; + /* disable the write protection */ + RTC_WPK = RTC_UNLOCK_KEY1; + RTC_WPK = RTC_UNLOCK_KEY2; + + /* enter init mode */ + error_status = rtc_init_mode_enter(); + + if(ERROR != error_status){ + if(CALIB_DECREASE == direction){ + RTC_COSC |= (uint32_t)RTC_COSC_COSD; + }else{ + RTC_COSC &= (uint32_t)~RTC_COSC_COSD; + } + RTC_COSC &= ~RTC_COSC_COSS; + RTC_COSC |= (uint32_t)((uint32_t)step & 0x1FU); + /* exit init mode */ + rtc_init_mode_exit(); + } + + /* enable the write protection */ + RTC_WPK = RTC_LOCK_KEY; + + return error_status; +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_sdio.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_sdio.c new file mode 100644 index 0000000000..44f65e4748 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_sdio.c @@ -0,0 +1,803 @@ +/*! + \file gd32f4xx_sdio.c + \brief SDIO driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.1, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_sdio.h" + +/*! + \brief deinitialize the SDIO + \param[in] none + \param[out] none + \retval none +*/ +void sdio_deinit(void) +{ + rcu_periph_reset_enable(RCU_SDIORST); + rcu_periph_reset_disable(RCU_SDIORST); +} + +/*! + \brief configure the SDIO clock + \param[in] clock_edge: SDIO_CLK clock edge + only one parameter can be selected which is shown as below: + \arg SDIO_SDIOCLKEDGE_RISING: select the rising edge of the SDIOCLK to generate SDIO_CLK + \arg SDIO_SDIOCLKEDGE_FALLING: select the falling edge of the SDIOCLK to generate SDIO_CLK + \param[in] clock_bypass: clock bypass + only one parameter can be selected which is shown as below: + \arg SDIO_CLOCKBYPASS_ENABLE: clock bypass + \arg SDIO_CLOCKBYPASS_DISABLE: no bypass + \param[in] clock_powersave: SDIO_CLK clock dynamic switch on/off for power saving + only one parameter can be selected which is shown as below: + \arg SDIO_CLOCKPWRSAVE_ENABLE: SDIO_CLK closed when bus is idle + \arg SDIO_CLOCKPWRSAVE_DISABLE: SDIO_CLK clock is always on + \param[in] clock_division: clock division, less than 512 + \param[out] none + \retval none +*/ +void sdio_clock_config(uint32_t clock_edge, uint32_t clock_bypass, uint32_t clock_powersave, uint16_t clock_division) +{ + uint32_t clock_config = 0U; + clock_config = SDIO_CLKCTL; + /* reset the CLKEDGE, CLKBYP, CLKPWRSAV, DIV */ + clock_config &= ~(SDIO_CLKCTL_CLKEDGE | SDIO_CLKCTL_CLKBYP | SDIO_CLKCTL_CLKPWRSAV | SDIO_CLKCTL_DIV8 | SDIO_CLKCTL_DIV); + /* if the clock division is greater or equal to 256, set the DIV[8] */ + if(clock_division >= 256U){ + clock_config |= SDIO_CLKCTL_DIV8; + clock_division -= 256U; + } + /* configure the SDIO_CLKCTL according to the parameters */ + clock_config |= (clock_edge | clock_bypass | clock_powersave | clock_division); + SDIO_CLKCTL = clock_config; +} + +/*! + \brief enable hardware clock control + \param[in] none + \param[out] none + \retval none +*/ +void sdio_hardware_clock_enable(void) +{ + SDIO_CLKCTL |= SDIO_CLKCTL_HWCLKEN; +} + +/*! + \brief disable hardware clock control + \param[in] none + \param[out] none + \retval none +*/ +void sdio_hardware_clock_disable(void) +{ + SDIO_CLKCTL &= ~SDIO_CLKCTL_HWCLKEN; +} + +/*! + \brief set different SDIO card bus mode + \param[in] bus_mode: SDIO card bus mode + only one parameter can be selected which is shown as below: + \arg SDIO_BUSMODE_1BIT: 1-bit SDIO card bus mode + \arg SDIO_BUSMODE_4BIT: 4-bit SDIO card bus mode + \arg SDIO_BUSMODE_8BIT: 8-bit SDIO card bus mode + \param[out] none + \retval none +*/ +void sdio_bus_mode_set(uint32_t bus_mode) +{ + /* reset the SDIO card bus mode bits and set according to bus_mode */ + SDIO_CLKCTL &= ~SDIO_CLKCTL_BUSMODE; + SDIO_CLKCTL |= bus_mode; +} + +/*! + \brief set the SDIO power state + \param[in] power_state: SDIO power state + only one parameter can be selected which is shown as below: + \arg SDIO_POWER_ON: SDIO power on + \arg SDIO_POWER_OFF: SDIO power off + \param[out] none + \retval none +*/ +void sdio_power_state_set(uint32_t power_state) +{ + SDIO_PWRCTL = power_state; +} + +/*! + \brief get the SDIO power state + \param[in] none + \param[out] none + \retval SDIO power state + \arg SDIO_POWER_ON: SDIO power on + \arg SDIO_POWER_OFF: SDIO power off +*/ +uint32_t sdio_power_state_get(void) +{ + return SDIO_PWRCTL; +} + +/*! + \brief enable SDIO_CLK clock output + \param[in] none + \param[out] none + \retval none +*/ +void sdio_clock_enable(void) +{ + SDIO_CLKCTL |= SDIO_CLKCTL_CLKEN; +} + +/*! + \brief disable SDIO_CLK clock output + \param[in] none + \param[out] none + \retval none +*/ +void sdio_clock_disable(void) +{ + SDIO_CLKCTL &= ~SDIO_CLKCTL_CLKEN; +} + +/*! + \brief configure the command and response + \param[in] cmd_index: command index, refer to the related specifications + \param[in] cmd_argument: command argument, refer to the related specifications + \param[in] response_type: response type + only one parameter can be selected which is shown as below: + \arg SDIO_RESPONSETYPE_NO: no response + \arg SDIO_RESPONSETYPE_SHORT: short response + \arg SDIO_RESPONSETYPE_LONG: long response + \param[out] none + \retval none +*/ +void sdio_command_response_config(uint32_t cmd_index, uint32_t cmd_argument, uint32_t response_type) +{ + uint32_t cmd_config = 0U; + /* disable the CSM */ + SDIO_CMDCTL &= ~SDIO_CMDCTL_CSMEN; + /* reset the command index, command argument and response type */ + SDIO_CMDAGMT &= ~SDIO_CMDAGMT_CMDAGMT; + SDIO_CMDAGMT = cmd_argument; + cmd_config = SDIO_CMDCTL; + cmd_config &= ~(SDIO_CMDCTL_CMDIDX | SDIO_CMDCTL_CMDRESP); + /* configure SDIO_CMDCTL and SDIO_CMDAGMT according to the parameters */ + cmd_config |= (cmd_index | response_type); + SDIO_CMDCTL = cmd_config; +} + +/*! + \brief set the command state machine wait type + \param[in] wait_type: wait type + only one parameter can be selected which is shown as below: + \arg SDIO_WAITTYPE_NO: not wait interrupt + \arg SDIO_WAITTYPE_INTERRUPT: wait interrupt + \arg SDIO_WAITTYPE_DATAEND: wait the end of data transfer + \param[out] none + \retval none +*/ +void sdio_wait_type_set(uint32_t wait_type) +{ + /* reset INTWAIT and WAITDEND */ + SDIO_CMDCTL &= ~(SDIO_CMDCTL_INTWAIT | SDIO_CMDCTL_WAITDEND); + /* set the wait type according to wait_type */ + SDIO_CMDCTL |= wait_type; +} + +/*! + \brief enable the CSM(command state machine) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_csm_enable(void) +{ + SDIO_CMDCTL |= SDIO_CMDCTL_CSMEN; +} + +/*! + \brief disable the CSM(command state machine) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_csm_disable(void) +{ + SDIO_CMDCTL &= ~SDIO_CMDCTL_CSMEN; +} + +/*! + \brief get the last response command index + \param[in] none + \param[out] none + \retval last response command index +*/ +uint8_t sdio_command_index_get(void) +{ + return (uint8_t)SDIO_RSPCMDIDX; +} + +/*! + \brief get the response for the last received command + \param[in] sdio_responsex: SDIO response + only one parameter can be selected which is shown as below: + \arg SDIO_RESPONSE0: card response[31:0]/card response[127:96] + \arg SDIO_RESPONSE1: card response[95:64] + \arg SDIO_RESPONSE2: card response[63:32] + \arg SDIO_RESPONSE3: card response[31:1], plus bit 0 + \param[out] none + \retval response for the last received command +*/ +uint32_t sdio_response_get(uint32_t sdio_responsex) +{ + uint32_t resp_content = 0U; + switch(sdio_responsex){ + case SDIO_RESPONSE0: + resp_content = SDIO_RESP0; + break; + case SDIO_RESPONSE1: + resp_content = SDIO_RESP1; + break; + case SDIO_RESPONSE2: + resp_content = SDIO_RESP2; + break; + case SDIO_RESPONSE3: + resp_content = SDIO_RESP3; + break; + default: + break; + } + return resp_content; +} + +/*! + \brief configure the data timeout, data length and data block size + \param[in] data_timeout: data timeout period in card bus clock periods + \param[in] data_length: number of data bytes to be transferred + \param[in] data_blocksize: size of data block for block transfer + only one parameter can be selected which is shown as below: + \arg SDIO_DATABLOCKSIZE_1BYTE: block size = 1 byte + \arg SDIO_DATABLOCKSIZE_2BYTES: block size = 2 bytes + \arg SDIO_DATABLOCKSIZE_4BYTES: block size = 4 bytes + \arg SDIO_DATABLOCKSIZE_8BYTES: block size = 8 bytes + \arg SDIO_DATABLOCKSIZE_16BYTES: block size = 16 bytes + \arg SDIO_DATABLOCKSIZE_32BYTES: block size = 32 bytes + \arg SDIO_DATABLOCKSIZE_64BYTES: block size = 64 bytes + \arg SDIO_DATABLOCKSIZE_128BYTES: block size = 128 bytes + \arg SDIO_DATABLOCKSIZE_256BYTES: block size = 256 bytes + \arg SDIO_DATABLOCKSIZE_512BYTES: block size = 512 bytes + \arg SDIO_DATABLOCKSIZE_1024BYTES: block size = 1024 bytes + \arg SDIO_DATABLOCKSIZE_2048BYTES: block size = 2048 bytes + \arg SDIO_DATABLOCKSIZE_4096BYTES: block size = 4096 bytes + \arg SDIO_DATABLOCKSIZE_8192BYTES: block size = 8192 bytes + \arg SDIO_DATABLOCKSIZE_16384BYTES: block size = 16384 bytes + \param[out] none + \retval none +*/ +void sdio_data_config(uint32_t data_timeout, uint32_t data_length, uint32_t data_blocksize) +{ + /* reset data timeout, data length and data block size */ + SDIO_DATATO &= ~SDIO_DATATO_DATATO; + SDIO_DATALEN &= ~SDIO_DATALEN_DATALEN; + SDIO_DATACTL &= ~SDIO_DATACTL_BLKSZ; + /* configure the related parameters of data */ + SDIO_DATATO = data_timeout; + SDIO_DATALEN = data_length; + SDIO_DATACTL |= data_blocksize; +} + +/*! + \brief configure the data transfer mode and direction + \param[in] transfer_mode: mode of data transfer + only one parameter can be selected which is shown as below: + \arg SDIO_TRANSMODE_BLOCK: block transfer + \arg SDIO_TRANSMODE_STREAM: stream transfer or SDIO multibyte transfer + \param[in] transfer_direction: data transfer direction, read or write + only one parameter can be selected which is shown as below: + \arg SDIO_TRANSDIRECTION_TOCARD: write data to card + \arg SDIO_TRANSDIRECTION_TOSDIO: read data from card + \param[out] none + \retval none +*/ +void sdio_data_transfer_config(uint32_t transfer_mode, uint32_t transfer_direction) +{ + uint32_t data_trans = 0U; + /* reset the data transfer mode, transfer direction and set according to the parameters */ + data_trans = SDIO_DATACTL; + data_trans &= ~(SDIO_DATACTL_TRANSMOD | SDIO_DATACTL_DATADIR); + data_trans |= (transfer_mode | transfer_direction); + SDIO_DATACTL = data_trans; +} + +/*! + \brief enable the DSM(data state machine) for data transfer + \param[in] none + \param[out] none + \retval none +*/ +void sdio_dsm_enable(void) +{ + SDIO_DATACTL |= SDIO_DATACTL_DATAEN; +} + +/*! + \brief disable the DSM(data state machine) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_dsm_disable(void) +{ + SDIO_DATACTL &= ~SDIO_DATACTL_DATAEN; +} + +/*! + \brief write data(one word) to the transmit FIFO + \param[in] data: 32-bit data write to card + \param[out] none + \retval none +*/ +void sdio_data_write(uint32_t data) +{ + SDIO_FIFO = data; +} + +/*! + \brief read data(one word) from the receive FIFO + \param[in] none + \param[out] none + \retval received data +*/ +uint32_t sdio_data_read(void) +{ + return SDIO_FIFO; +} + +/*! + \brief get the number of remaining data bytes to be transferred to card + \param[in] none + \param[out] none + \retval number of remaining data bytes to be transferred +*/ +uint32_t sdio_data_counter_get(void) +{ + return SDIO_DATACNT; +} + +/*! + \brief get the number of words remaining to be written or read from FIFO + \param[in] none + \param[out] none + \retval remaining number of words +*/ +uint32_t sdio_fifo_counter_get(void) +{ + return SDIO_FIFOCNT; +} + +/*! + \brief enable the DMA request for SDIO + \param[in] none + \param[out] none + \retval none +*/ +void sdio_dma_enable(void) +{ + SDIO_DATACTL |= SDIO_DATACTL_DMAEN; +} + +/*! + \brief disable the DMA request for SDIO + \param[in] none + \param[out] none + \retval none +*/ +void sdio_dma_disable(void) +{ + SDIO_DATACTL &= ~SDIO_DATACTL_DMAEN; +} + +/*! + \brief get the flags state of SDIO + \param[in] flag: flags state of SDIO + one or more parameters can be selected which are shown as below: + \arg SDIO_FLAG_CCRCERR: command response received (CRC check failed) flag + \arg SDIO_FLAG_DTCRCERR: data block sent/received (CRC check failed) flag + \arg SDIO_FLAG_CMDTMOUT: command response timeout flag + \arg SDIO_FLAG_DTTMOUT: data timeout flag + \arg SDIO_FLAG_TXURE: transmit FIFO underrun error occurs flag + \arg SDIO_FLAG_RXORE: received FIFO overrun error occurs flag + \arg SDIO_FLAG_CMDRECV: command response received (CRC check passed) flag + \arg SDIO_FLAG_CMDSEND: command sent (no response required) flag + \arg SDIO_FLAG_DTEND: data end (data counter, SDIO_DATACNT, is zero) flag + \arg SDIO_FLAG_STBITE: start bit error in the bus flag + \arg SDIO_FLAG_DTBLKEND: data block sent/received (CRC check passed) flag + \arg SDIO_FLAG_CMDRUN: command transmission in progress flag + \arg SDIO_FLAG_TXRUN: data transmission in progress flag + \arg SDIO_FLAG_RXRUN: data reception in progress flag + \arg SDIO_FLAG_TFH: transmit FIFO is half empty flag: at least 8 words can be written into the FIFO + \arg SDIO_FLAG_RFH: receive FIFO is half full flag: at least 8 words can be read in the FIFO + \arg SDIO_FLAG_TFF: transmit FIFO is full flag + \arg SDIO_FLAG_RFF: receive FIFO is full flag + \arg SDIO_FLAG_TFE: transmit FIFO is empty flag + \arg SDIO_FLAG_RFE: receive FIFO is empty flag + \arg SDIO_FLAG_TXDTVAL: data is valid in transmit FIFO flag + \arg SDIO_FLAG_RXDTVAL: data is valid in receive FIFO flag + \arg SDIO_FLAG_SDIOINT: SD I/O interrupt received flag + \arg SDIO_FLAG_ATAEND: CE-ATA command completion signal received (only for CMD61) flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus sdio_flag_get(uint32_t flag) +{ + FlagStatus temp_flag = RESET; + if(RESET != (SDIO_STAT & flag)){ + temp_flag = SET; + } + return temp_flag; +} + +/*! + \brief clear the pending flags of SDIO + \param[in] flag: flags state of SDIO + one or more parameters can be selected which are shown as below: + \arg SDIO_FLAG_CCRCERR: command response received (CRC check failed) flag + \arg SDIO_FLAG_DTCRCERR: data block sent/received (CRC check failed) flag + \arg SDIO_FLAG_CMDTMOUT: command response timeout flag + \arg SDIO_FLAG_DTTMOUT: data timeout flag + \arg SDIO_FLAG_TXURE: transmit FIFO underrun error occurs flag + \arg SDIO_FLAG_RXORE: received FIFO overrun error occurs flag + \arg SDIO_FLAG_CMDRECV: command response received (CRC check passed) flag + \arg SDIO_FLAG_CMDSEND: command sent (no response required) flag + \arg SDIO_FLAG_DTEND: data end (data counter, SDIO_DATACNT, is zero) flag + \arg SDIO_FLAG_STBITE: start bit error in the bus flag + \arg SDIO_FLAG_DTBLKEND: data block sent/received (CRC check passed) flag + \arg SDIO_FLAG_SDIOINT: SD I/O interrupt received flag + \arg SDIO_FLAG_ATAEND: CE-ATA command completion signal received (only for CMD61) flag + \param[out] none + \retval none +*/ +void sdio_flag_clear(uint32_t flag) +{ + SDIO_INTC = flag; +} + +/*! + \brief enable the SDIO interrupt + \param[in] int_flag: interrupt flags state of SDIO + one or more parameters can be selected which are shown as below: + \arg SDIO_INT_CCRCERR: SDIO CCRCERR interrupt + \arg SDIO_INT_DTCRCERR: SDIO DTCRCERR interrupt + \arg SDIO_INT_CMDTMOUT: SDIO CMDTMOUT interrupt + \arg SDIO_INT_DTTMOUT: SDIO DTTMOUT interrupt + \arg SDIO_INT_TXURE: SDIO TXURE interrupt + \arg SDIO_INT_RXORE: SDIO RXORE interrupt + \arg SDIO_INT_CMDRECV: SDIO CMDRECV interrupt + \arg SDIO_INT_CMDSEND: SDIO CMDSEND interrupt + \arg SDIO_INT_DTEND: SDIO DTEND interrupt + \arg SDIO_INT_STBITE: SDIO STBITE interrupt + \arg SDIO_INT_DTBLKEND: SDIO DTBLKEND interrupt + \arg SDIO_INT_CMDRUN: SDIO CMDRUN interrupt + \arg SDIO_INT_TXRUN: SDIO TXRUN interrupt + \arg SDIO_INT_RXRUN: SDIO RXRUN interrupt + \arg SDIO_INT_TFH: SDIO TFH interrupt + \arg SDIO_INT_RFH: SDIO RFH interrupt + \arg SDIO_INT_TFF: SDIO TFF interrupt + \arg SDIO_INT_RFF: SDIO RFF interrupt + \arg SDIO_INT_TFE: SDIO TFE interrupt + \arg SDIO_INT_RFE: SDIO RFE interrupt + \arg SDIO_INT_TXDTVAL: SDIO TXDTVAL interrupt + \arg SDIO_INT_RXDTVAL: SDIO RXDTVAL interrupt + \arg SDIO_INT_SDIOINT: SDIO SDIOINT interrupt + \arg SDIO_INT_ATAEND: SDIO ATAEND interrupt + \param[out] none + \retval none +*/ +void sdio_interrupt_enable(uint32_t int_flag) +{ + SDIO_INTEN |= int_flag; +} + +/*! + \brief disable the SDIO interrupt + \param[in] int_flag: interrupt flags state of SDIO + one or more parameters can be selected which are shown as below: + \arg SDIO_INT_CCRCERR: SDIO CCRCERR interrupt + \arg SDIO_INT_DTCRCERR: SDIO DTCRCERR interrupt + \arg SDIO_INT_CMDTMOUT: SDIO CMDTMOUT interrupt + \arg SDIO_INT_DTTMOUT: SDIO DTTMOUT interrupt + \arg SDIO_INT_TXURE: SDIO TXURE interrupt + \arg SDIO_INT_RXORE: SDIO RXORE interrupt + \arg SDIO_INT_CMDRECV: SDIO CMDRECV interrupt + \arg SDIO_INT_CMDSEND: SDIO CMDSEND interrupt + \arg SDIO_INT_DTEND: SDIO DTEND interrupt + \arg SDIO_INT_STBITE: SDIO STBITE interrupt + \arg SDIO_INT_DTBLKEND: SDIO DTBLKEND interrupt + \arg SDIO_INT_CMDRUN: SDIO CMDRUN interrupt + \arg SDIO_INT_TXRUN: SDIO TXRUN interrupt + \arg SDIO_INT_RXRUN: SDIO RXRUN interrupt + \arg SDIO_INT_TFH: SDIO TFH interrupt + \arg SDIO_INT_RFH: SDIO RFH interrupt + \arg SDIO_INT_TFF: SDIO TFF interrupt + \arg SDIO_INT_RFF: SDIO RFF interrupt + \arg SDIO_INT_TFE: SDIO TFE interrupt + \arg SDIO_INT_RFE: SDIO RFE interrupt + \arg SDIO_INT_TXDTVAL: SDIO TXDTVAL interrupt + \arg SDIO_INT_RXDTVAL: SDIO RXDTVAL interrupt + \arg SDIO_INT_SDIOINT: SDIO SDIOINT interrupt + \arg SDIO_INT_ATAEND: SDIO ATAEND interrupt + \param[out] none + \retval none +*/ +void sdio_interrupt_disable(uint32_t int_flag) +{ + SDIO_INTEN &= ~int_flag; +} + +/*! + \brief get the interrupt flags state of SDIO + \param[in] int_flag: interrupt flags state of SDIO + one or more parameters can be selected which are shown as below: + \arg SDIO_INT_FLAG_CCRCERR: SDIO CCRCERR interrupt flag + \arg SDIO_INT_FLAG_DTCRCERR: SDIO DTCRCERR interrupt flag + \arg SDIO_INT_FLAG_CMDTMOUT: SDIO CMDTMOUT interrupt flag + \arg SDIO_INT_FLAG_DTTMOUT: SDIO DTTMOUT interrupt flag + \arg SDIO_INT_FLAG_TXURE: SDIO TXURE interrupt flag + \arg SDIO_INT_FLAG_RXORE: SDIO RXORE interrupt flag + \arg SDIO_INT_FLAG_CMDRECV: SDIO CMDRECV interrupt flag + \arg SDIO_INT_FLAG_CMDSEND: SDIO CMDSEND interrupt flag + \arg SDIO_INT_FLAG_DTEND: SDIO DTEND interrupt flag + \arg SDIO_INT_FLAG_STBITE: SDIO STBITE interrupt flag + \arg SDIO_INT_FLAG_DTBLKEND: SDIO DTBLKEND interrupt flag + \arg SDIO_INT_FLAG_CMDRUN: SDIO CMDRUN interrupt flag + \arg SDIO_INT_FLAG_TXRUN: SDIO TXRUN interrupt flag + \arg SDIO_INT_FLAG_RXRUN: SDIO RXRUN interrupt flag + \arg SDIO_INT_FLAG_TFH: SDIO TFH interrupt flag + \arg SDIO_INT_FLAG_RFH: SDIO RFH interrupt flag + \arg SDIO_INT_FLAG_TFF: SDIO TFF interrupt flag + \arg SDIO_INT_FLAG_RFF: SDIO RFF interrupt flag + \arg SDIO_INT_FLAG_TFE: SDIO TFE interrupt flag + \arg SDIO_INT_FLAG_RFE: SDIO RFE interrupt flag + \arg SDIO_INT_FLAG_TXDTVAL: SDIO TXDTVAL interrupt flag + \arg SDIO_INT_FLAG_RXDTVAL: SDIO RXDTVAL interrupt flag + \arg SDIO_INT_FLAG_SDIOINT: SDIO SDIOINT interrupt flag + \arg SDIO_INT_FLAG_ATAEND: SDIO ATAEND interrupt flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus sdio_interrupt_flag_get(uint32_t int_flag) +{ + FlagStatus temp_flag = RESET; + if(RESET != (SDIO_STAT & int_flag)){ + temp_flag = SET; + } + return temp_flag; +} + +/*! + \brief clear the interrupt pending flags of SDIO + \param[in] int_flag: interrupt flags state of SDIO + one or more parameters can be selected which are shown as below: + \arg SDIO_INT_FLAG_CCRCERR: command response received (CRC check failed) flag + \arg SDIO_INT_FLAG_DTCRCERR: data block sent/received (CRC check failed) flag + \arg SDIO_INT_FLAG_CMDTMOUT: command response timeout flag + \arg SDIO_INT_FLAG_DTTMOUT: data timeout flag + \arg SDIO_INT_FLAG_TXURE: transmit FIFO underrun error occurs flag + \arg SDIO_INT_FLAG_RXORE: received FIFO overrun error occurs flag + \arg SDIO_INT_FLAG_CMDRECV: command response received (CRC check passed) flag + \arg SDIO_INT_FLAG_CMDSEND: command sent (no response required) flag + \arg SDIO_INT_FLAG_DTEND: data end (data counter, SDIO_DATACNT, is zero) flag + \arg SDIO_INT_FLAG_STBITE: start bit error in the bus flag + \arg SDIO_INT_FLAG_DTBLKEND: data block sent/received (CRC check passed) flag + \arg SDIO_INT_FLAG_SDIOINT: SD I/O interrupt received flag + \arg SDIO_INT_FLAG_ATAEND: CE-ATA command completion signal received (only for CMD61) flag + \param[out] none + \retval none +*/ +void sdio_interrupt_flag_clear(uint32_t int_flag) +{ + SDIO_INTC = int_flag; +} + +/*! + \brief enable the read wait mode(SD I/O only) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_readwait_enable(void) +{ + SDIO_DATACTL |= SDIO_DATACTL_RWEN; +} + +/*! + \brief disable the read wait mode(SD I/O only) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_readwait_disable(void) +{ + SDIO_DATACTL &= ~SDIO_DATACTL_RWEN; +} + +/*! + \brief enable the function that stop the read wait process(SD I/O only) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_stop_readwait_enable(void) +{ + SDIO_DATACTL |= SDIO_DATACTL_RWSTOP; +} + +/*! + \brief disable the function that stop the read wait process(SD I/O only) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_stop_readwait_disable(void) +{ + SDIO_DATACTL &= ~SDIO_DATACTL_RWSTOP; +} + +/*! + \brief set the read wait type(SD I/O only) + \param[in] readwait_type: SD I/O read wait type + only one parameter can be selected which is shown as below: + \arg SDIO_READWAITTYPE_CLK: read wait control by stopping SDIO_CLK + \arg SDIO_READWAITTYPE_DAT2: read wait control using SDIO_DAT[2] + \param[out] none + \retval none +*/ +void sdio_readwait_type_set(uint32_t readwait_type) +{ + if(SDIO_READWAITTYPE_CLK == readwait_type){ + SDIO_DATACTL |= SDIO_DATACTL_RWTYPE; + }else{ + SDIO_DATACTL &= ~SDIO_DATACTL_RWTYPE; + } +} + +/*! + \brief enable the SD I/O mode specific operation(SD I/O only) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_operation_enable(void) +{ + SDIO_DATACTL |= SDIO_DATACTL_IOEN; +} + +/*! + \brief disable the SD I/O mode specific operation(SD I/O only) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_operation_disable(void) +{ + SDIO_DATACTL &= ~SDIO_DATACTL_IOEN; +} + +/*! + \brief enable the SD I/O suspend operation(SD I/O only) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_suspend_enable(void) +{ + SDIO_CMDCTL |= SDIO_CMDCTL_SUSPEND; +} + +/*! + \brief disable the SD I/O suspend operation(SD I/O only) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_suspend_disable(void) +{ + SDIO_CMDCTL &= ~SDIO_CMDCTL_SUSPEND; +} + +/*! + \brief enable the CE-ATA command(CE-ATA only) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_ceata_command_enable(void) +{ + SDIO_CMDCTL |= SDIO_CMDCTL_ATAEN; +} + +/*! + \brief disable the CE-ATA command(CE-ATA only) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_ceata_command_disable(void) +{ + SDIO_CMDCTL &= ~SDIO_CMDCTL_ATAEN; +} + +/*! + \brief enable the CE-ATA interrupt(CE-ATA only) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_ceata_interrupt_enable(void) +{ + SDIO_CMDCTL &= ~SDIO_CMDCTL_NINTEN; +} + +/*! + \brief disable the CE-ATA interrupt(CE-ATA only) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_ceata_interrupt_disable(void) +{ + SDIO_CMDCTL |= SDIO_CMDCTL_NINTEN; +} + +/*! + \brief enable the CE-ATA command completion signal(CE-ATA only) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_ceata_command_completion_enable(void) +{ + SDIO_CMDCTL |= SDIO_CMDCTL_ENCMDC; +} + +/*! + \brief disable the CE-ATA command completion signal(CE-ATA only) + \param[in] none + \param[out] none + \retval none +*/ +void sdio_ceata_command_completion_disable(void) +{ + SDIO_CMDCTL &= ~SDIO_CMDCTL_ENCMDC; +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_spi.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_spi.c new file mode 100644 index 0000000000..25917254ec --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_spi.c @@ -0,0 +1,882 @@ +/*! + \file gd32f4xx_spi.c + \brief SPI driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + + +#include "gd32f4xx_spi.h" +#include "gd32f4xx_rcu.h" + +/* SPI/I2S parameter initialization mask */ +#define SPI_INIT_MASK ((uint32_t)0x00003040U) /*!< SPI parameter initialization mask */ +#define I2S_INIT_MASK ((uint32_t)0x0000F047U) /*!< I2S parameter initialization mask */ +#define I2S_FULL_DUPLEX_MASK ((uint32_t)0x00000480U) /*!< I2S full duples mode configure parameter initialization mask */ + +/* default value */ +#define SPI_I2SPSC_DEFAULT_VALUE ((uint32_t)0x00000002U) /*!< default value of SPI_I2SPSC register */ + +/*! + \brief deinitialize SPI and I2S + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5),include I2S1_ADD and I2S2_ADD + \param[out] none + \retval none +*/ +void spi_i2s_deinit(uint32_t spi_periph) +{ + switch(spi_periph){ + case SPI0: + /* reset SPI0 */ + rcu_periph_reset_enable(RCU_SPI0RST); + rcu_periph_reset_disable(RCU_SPI0RST); + break; + case SPI1: + /* reset SPI1,I2S1 and I2S1_ADD */ + rcu_periph_reset_enable(RCU_SPI1RST); + rcu_periph_reset_disable(RCU_SPI1RST); + break; + case SPI2: + /* reset SPI2,I2S2 and I2S2_ADD */ + rcu_periph_reset_enable(RCU_SPI2RST); + rcu_periph_reset_disable(RCU_SPI2RST); + break; + case SPI3: + /* reset SPI3 */ + rcu_periph_reset_enable(RCU_SPI3RST); + rcu_periph_reset_disable(RCU_SPI3RST); + break; + case SPI4: + /* reset SPI4 */ + rcu_periph_reset_enable(RCU_SPI4RST); + rcu_periph_reset_disable(RCU_SPI4RST); + break; + case SPI5: + /* reset SPI5 */ + rcu_periph_reset_enable(RCU_SPI5RST); + rcu_periph_reset_disable(RCU_SPI5RST); + break; + default : + break; + } +} + +/*! + \brief initialize the parameters of SPI struct with default values + \param[in] none + \param[out] spi_parameter_struct: the initialized struct spi_parameter_struct pointer + \retval none +*/ +void spi_struct_para_init(spi_parameter_struct *spi_struct) +{ + /* configure the structure with default value */ + spi_struct->device_mode = SPI_SLAVE; + spi_struct->trans_mode = SPI_TRANSMODE_FULLDUPLEX; + spi_struct->frame_size = SPI_FRAMESIZE_8BIT; + spi_struct->nss = SPI_NSS_HARD; + spi_struct->clock_polarity_phase = SPI_CK_PL_LOW_PH_1EDGE; + spi_struct->prescale = SPI_PSC_2; + spi_struct->endian = SPI_ENDIAN_MSB; +} +/*! + \brief initialize SPI parameter + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[in] spi_struct: SPI parameter initialization stuct members of the structure + and the member values are shown as below: + device_mode: SPI_MASTER, SPI_SLAVE. + trans_mode: SPI_TRANSMODE_FULLDUPLEX, SPI_TRANSMODE_RECEIVEONLY, + SPI_TRANSMODE_BDRECEIVE, SPI_TRANSMODE_BDTRANSMIT + frame_size: SPI_FRAMESIZE_16BIT, SPI_FRAMESIZE_8BIT + nss: SPI_NSS_SOFT, SPI_NSS_HARD + endian: SPI_ENDIAN_MSB, SPI_ENDIAN_LSB + clock_polarity_phase: SPI_CK_PL_LOW_PH_1EDGE, SPI_CK_PL_HIGH_PH_1EDGE + SPI_CK_PL_LOW_PH_2EDGE, SPI_CK_PL_HIGH_PH_2EDGE + prescale: SPI_PSC_n (n=2,4,8,16,32,64,128,256) + \param[out] none + \retval none +*/ +void spi_init(uint32_t spi_periph, spi_parameter_struct* spi_struct) +{ + uint32_t reg = 0U; + reg = SPI_CTL0(spi_periph); + reg &= SPI_INIT_MASK; + + /* select SPI as master or slave */ + reg |= spi_struct->device_mode; + /* select SPI transfer mode */ + reg |= spi_struct->trans_mode; + /* select SPI frame size */ + reg |= spi_struct->frame_size; + /* select SPI nss use hardware or software */ + reg |= spi_struct->nss; + /* select SPI LSB or MSB */ + reg |= spi_struct->endian; + /* select SPI polarity and phase */ + reg |= spi_struct->clock_polarity_phase; + /* select SPI prescale to adjust transmit speed */ + reg |= spi_struct->prescale; + + /* write to SPI_CTL0 register */ + SPI_CTL0(spi_periph) = (uint32_t)reg; + + SPI_I2SCTL(spi_periph) &= (uint32_t)(~SPI_I2SCTL_I2SSEL); +} + +/*! + \brief enable SPI + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[out] none + \retval none +*/ +void spi_enable(uint32_t spi_periph) +{ + SPI_CTL0(spi_periph) |= (uint32_t)SPI_CTL0_SPIEN; +} + +/*! + \brief disable SPI + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[out] none + \retval none +*/ +void spi_disable(uint32_t spi_periph) +{ + SPI_CTL0(spi_periph) &= (uint32_t)(~SPI_CTL0_SPIEN); +} + +/*! + \brief initialize I2S parameter + \param[in] spi_periph: SPIx(x=1,2) + \param[in] i2s_mode: I2S operation mode + only one parameter can be selected which is shown as below: + \arg I2S_MODE_SLAVETX : I2S slave transmit mode + \arg I2S_MODE_SLAVERX : I2S slave receive mode + \arg I2S_MODE_MASTERTX : I2S master transmit mode + \arg I2S_MODE_MASTERRX : I2S master receive mode + \param[in] i2s_standard: I2S standard + only one parameter can be selected which is shown as below: + \arg I2S_STD_PHILLIPS : I2S phillips standard + \arg I2S_STD_MSB : I2S MSB standard + \arg I2S_STD_LSB : I2S LSB standard + \arg I2S_STD_PCMSHORT : I2S PCM short standard + \arg I2S_STD_PCMLONG : I2S PCM long standard + \param[in] i2s_ckpl: I2S idle state clock polarity + only one parameter can be selected which is shown as below: + \arg I2S_CKPL_LOW : I2S clock polarity low level + \arg I2S_CKPL_HIGH : I2S clock polarity high level + \param[out] none + \retval none +*/ +void i2s_init(uint32_t spi_periph, uint32_t i2s_mode, uint32_t i2s_standard, uint32_t i2s_ckpl) +{ + uint32_t reg= 0U; + reg = SPI_I2SCTL(spi_periph); + reg &= I2S_INIT_MASK; + + /* enable I2S mode */ + reg |= (uint32_t)SPI_I2SCTL_I2SSEL; + /* select I2S mode */ + reg |= (uint32_t)i2s_mode; + /* select I2S standard */ + reg |= (uint32_t)i2s_standard; + /* select I2S polarity */ + reg |= (uint32_t)i2s_ckpl; + + /* write to SPI_I2SCTL register */ + SPI_I2SCTL(spi_periph) = (uint32_t)reg; +} + +/*! + \brief configure I2S prescale + \param[in] spi_periph: SPIx(x=1,2) + \param[in] i2s_audiosample: I2S audio sample rate + only one parameter can be selected which is shown as below: + \arg I2S_AUDIOSAMPLE_8K: audio sample rate is 8KHz + \arg I2S_AUDIOSAMPLE_11K: audio sample rate is 11KHz + \arg I2S_AUDIOSAMPLE_16K: audio sample rate is 16KHz + \arg I2S_AUDIOSAMPLE_22K: audio sample rate is 22KHz + \arg I2S_AUDIOSAMPLE_32K: audio sample rate is 32KHz + \arg I2S_AUDIOSAMPLE_44K: audio sample rate is 44KHz + \arg I2S_AUDIOSAMPLE_48K: audio sample rate is 48KHz + \arg I2S_AUDIOSAMPLE_96K: audio sample rate is 96KHz + \arg I2S_AUDIOSAMPLE_192K: audio sample rate is 192KHz + \param[in] i2s_frameformat: I2S data length and channel length + only one parameter can be selected which is shown as below: + \arg I2S_FRAMEFORMAT_DT16B_CH16B: I2S data length is 16 bit and channel length is 16 bit + \arg I2S_FRAMEFORMAT_DT16B_CH32B: I2S data length is 16 bit and channel length is 32 bit + \arg I2S_FRAMEFORMAT_DT24B_CH32B: I2S data length is 24 bit and channel length is 32 bit + \arg I2S_FRAMEFORMAT_DT32B_CH32B: I2S data length is 32 bit and channel length is 32 bit + \param[in] i2s_mckout: I2S master clock output + only one parameter can be selected which is shown as below: + \arg I2S_MCKOUT_ENABLE: I2S master clock output enable + \arg I2S_MCKOUT_DISABLE: I2S master clock output disable + \param[out] none + \retval none +*/ +void i2s_psc_config(uint32_t spi_periph, uint32_t i2s_audiosample, uint32_t i2s_frameformat, uint32_t i2s_mckout) +{ + uint32_t i2sdiv = 2U, i2sof = 0U; + uint32_t clks = 0U; + uint32_t i2sclock = 0U; + +#ifndef I2S_EXTERNAL_CLOCK_IN + uint32_t plli2sm = 0U, plli2sn = 0U, plli2sr = 0U; +#endif /* I2S_EXTERNAL_CLOCK_IN */ + + /* deinit SPI_I2SPSC register */ + SPI_I2SPSC(spi_periph) = SPI_I2SPSC_DEFAULT_VALUE; + +#ifdef I2S_EXTERNAL_CLOCK_IN + rcu_i2s_clock_config(RCU_I2SSRC_I2S_CKIN); + + /* set the I2S clock to the external clock input value */ + i2sclock = I2S_EXTERNAL_CLOCK_IN; +#else + + /* turn on the oscillator HXTAL */ + rcu_osci_on(RCU_HXTAL); + /* wait for oscillator stabilization flags is SET */ + rcu_osci_stab_wait(RCU_HXTAL); + /* turn on the PLLI2S */ + rcu_osci_on(RCU_PLLI2S_CK); + /* wait for PLLI2S flags is SET */ + rcu_osci_stab_wait(RCU_PLLI2S_CK); + /* configure the I2S clock source selection */ + rcu_i2s_clock_config(RCU_I2SSRC_PLLI2S); + + /* get the RCU_PLL_PLLPSC value */ + plli2sm = (uint32_t)(RCU_PLL & RCU_PLL_PLLPSC); + /* get the RCU_PLLI2S_PLLI2SN value */ + plli2sn = (uint32_t)((RCU_PLLI2S & RCU_PLLI2S_PLLI2SN) >> 6); + /* get the RCU_PLLI2S_PLLI2SR value */ + plli2sr = (uint32_t)((RCU_PLLI2S & RCU_PLLI2S_PLLI2SR) >> 28); + + if((RCU_PLL & RCU_PLL_PLLSEL) == RCU_PLLSRC_HXTAL) + { + /* get the I2S source clock value */ + i2sclock = (uint32_t)(((HXTAL_VALUE / plli2sm) * plli2sn) / plli2sr); + } + else + { /* get the I2S source clock value */ + i2sclock = (uint32_t)(((IRC16M_VALUE / plli2sm) * plli2sn) / plli2sr); + } +#endif /* I2S_EXTERNAL_CLOCK_IN */ + + /* config the prescaler depending on the mclk output state, the frame format and audio sample rate */ + if(I2S_MCKOUT_ENABLE == i2s_mckout){ + clks = (uint32_t)(((i2sclock / 256U) * 10U) / i2s_audiosample); + }else{ + if(I2S_FRAMEFORMAT_DT16B_CH16B == i2s_frameformat){ + clks = (uint32_t)(((i2sclock / 32U) *10U ) / i2s_audiosample); + }else{ + clks = (uint32_t)(((i2sclock / 64U) *10U ) / i2s_audiosample); + } + } + /* remove the floating point */ + clks = (clks + 5U) / 10U; + i2sof = (clks & 0x00000001U); + i2sdiv = ((clks - i2sof) / 2U); + i2sof = (i2sof << 8U); + + /* set the default values */ + if((i2sdiv< 2U) || (i2sdiv > 255U)){ + i2sdiv = 2U; + i2sof = 0U; + } + + /* configure SPI_I2SPSC */ + SPI_I2SPSC(spi_periph) = (uint32_t)(i2sdiv | i2sof | i2s_mckout); + + /* clear SPI_I2SCTL_DTLEN and SPI_I2SCTL_CHLEN bits */ + SPI_I2SCTL(spi_periph) &= (uint32_t)(~(SPI_I2SCTL_DTLEN|SPI_I2SCTL_CHLEN)); + /* configure data frame format */ + SPI_I2SCTL(spi_periph) |= (uint32_t)i2s_frameformat; +} + +/*! + \brief enable I2S + \param[in] spi_periph: SPIx(x=1,2) + \param[out] none + \retval none +*/ +void i2s_enable(uint32_t spi_periph) +{ + SPI_I2SCTL(spi_periph) |= (uint32_t)SPI_I2SCTL_I2SEN; +} + +/*! + \brief disable I2S + \param[in] spi_periph: SPIx(x=1,2) + \param[out] none + \retval none +*/ +void i2s_disable(uint32_t spi_periph) +{ + SPI_I2SCTL(spi_periph) &= (uint32_t)(~SPI_I2SCTL_I2SEN); +} + +/*! + \brief enable SPI nss output + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[out] none + \retval none +*/ +void spi_nss_output_enable(uint32_t spi_periph) +{ + SPI_CTL1(spi_periph) |= (uint32_t)SPI_CTL1_NSSDRV; +} + +/*! + \brief disable SPI nss output + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[out] none + \retval none +*/ +void spi_nss_output_disable(uint32_t spi_periph) +{ + SPI_CTL1(spi_periph) &= (uint32_t)(~SPI_CTL1_NSSDRV); +} + +/*! + \brief SPI nss pin high level in software mode + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[out] none + \retval none +*/ +void spi_nss_internal_high(uint32_t spi_periph) +{ + SPI_CTL0(spi_periph) |= (uint32_t)SPI_CTL0_SWNSS; +} + +/*! + \brief SPI nss pin low level in software mode + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[out] none + \retval none +*/ +void spi_nss_internal_low(uint32_t spi_periph) +{ + SPI_CTL0(spi_periph) &= (uint32_t)(~SPI_CTL0_SWNSS); +} + +/*! + \brief enable SPI DMA send or receive + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[in] spi_dma: SPI DMA mode + only one parameter can be selected which is shown as below: + \arg SPI_DMA_TRANSMIT: SPI transmit data use DMA + \arg SPI_DMA_RECEIVE: SPI receive data use DMA + \param[out] none + \retval none +*/ +void spi_dma_enable(uint32_t spi_periph, uint8_t spi_dma) +{ + if(SPI_DMA_TRANSMIT == spi_dma){ + SPI_CTL1(spi_periph) |= (uint32_t)SPI_CTL1_DMATEN; + }else{ + SPI_CTL1(spi_periph) |= (uint32_t)SPI_CTL1_DMAREN; + } +} + +/*! + \brief diable SPI DMA send or receive + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[in] spi_dma: SPI DMA mode + only one parameter can be selected which is shown as below: + \arg SPI_DMA_TRANSMIT: SPI transmit data use DMA + \arg SPI_DMA_RECEIVE: SPI receive data use DMA + \param[out] none + \retval none +*/ +void spi_dma_disable(uint32_t spi_periph, uint8_t spi_dma) +{ + if(SPI_DMA_TRANSMIT == spi_dma){ + SPI_CTL1(spi_periph) &= (uint32_t)(~SPI_CTL1_DMATEN); + }else{ + SPI_CTL1(spi_periph) &= (uint32_t)(~SPI_CTL1_DMAREN); + } +} + +/*! + \brief configure SPI/I2S data frame format + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[in] frame_format: SPI frame size + only one parameter can be selected which is shown as below: + \arg SPI_FRAMESIZE_16BIT: SPI frame size is 16 bits + \arg SPI_FRAMESIZE_8BIT: SPI frame size is 8 bits + \param[out] none + \retval none +*/ +void spi_i2s_data_frame_format_config(uint32_t spi_periph, uint16_t frame_format) +{ + /* clear SPI_CTL0_FF16 bit */ + SPI_CTL0(spi_periph) &= (uint32_t)(~SPI_CTL0_FF16); + /* configure SPI_CTL0_FF16 bit */ + SPI_CTL0(spi_periph) |= (uint32_t)frame_format; +} + +/*! + \brief SPI transmit data + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[in] data: 16-bit data + \param[out] none + \retval none +*/ +void spi_i2s_data_transmit(uint32_t spi_periph, uint16_t data) +{ + SPI_DATA(spi_periph) = (uint32_t)data; +} + +/*! + \brief SPI receive data + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[out] none + \retval 16-bit data +*/ +uint16_t spi_i2s_data_receive(uint32_t spi_periph) +{ + return ((uint16_t)SPI_DATA(spi_periph)); +} + +/*! + \brief configure SPI bidirectional transfer direction + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[in] transfer_direction: SPI transfer direction + only one parameter can be selected which is shown as below: + \arg SPI_BIDIRECTIONAL_TRANSMIT: SPI work in transmit-only mode + \arg SPI_BIDIRECTIONAL_RECEIVE: SPI work in receive-only mode + \retval none +*/ +void spi_bidirectional_transfer_config(uint32_t spi_periph, uint32_t transfer_direction) +{ + if(SPI_BIDIRECTIONAL_TRANSMIT == transfer_direction){ + /* set the transmit only mode */ + SPI_CTL0(spi_periph) |= (uint32_t)SPI_BIDIRECTIONAL_TRANSMIT; + }else{ + /* set the receive only mode */ + SPI_CTL0(spi_periph) &= SPI_BIDIRECTIONAL_RECEIVE; + } +} + +/*! + \brief set SPI CRC polynomial + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[in] crc_poly: CRC polynomial value + \param[out] none + \retval none +*/ +void spi_crc_polynomial_set(uint32_t spi_periph,uint16_t crc_poly) +{ + /* enable SPI CRC */ + SPI_CTL0(spi_periph) |= (uint32_t)SPI_CTL0_CRCEN; + + /* set SPI CRC polynomial */ + SPI_CRCPOLY(spi_periph) = (uint32_t)crc_poly; +} + +/*! + \brief get SPI CRC polynomial + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[out] none + \retval 16-bit CRC polynomial +*/ +uint16_t spi_crc_polynomial_get(uint32_t spi_periph) +{ + return ((uint16_t)SPI_CRCPOLY(spi_periph)); +} + +/*! + \brief turn on CRC function + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[out] none + \retval none +*/ +void spi_crc_on(uint32_t spi_periph) +{ + SPI_CTL0(spi_periph) |= (uint32_t)SPI_CTL0_CRCEN; +} + +/*! + \brief turn off CRC function + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[out] none + \retval none +*/ +void spi_crc_off(uint32_t spi_periph) +{ + SPI_CTL0(spi_periph) &= (uint32_t)(~SPI_CTL0_CRCEN); +} + +/*! + \brief SPI next data is CRC value + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[out] none + \retval none +*/ +void spi_crc_next(uint32_t spi_periph) +{ + SPI_CTL0(spi_periph) |= (uint32_t)SPI_CTL0_CRCNT; +} + +/*! + \brief get SPI CRC send value or receive value + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[in] spi_crc: SPI crc value + only one parameter can be selected which is shown as below: + \arg SPI_CRC_TX: get transmit crc value + \arg SPI_CRC_RX: get receive crc value + \param[out] none + \retval 16-bit CRC value +*/ +uint16_t spi_crc_get(uint32_t spi_periph,uint8_t spi_crc) +{ + if(SPI_CRC_TX == spi_crc){ + return ((uint16_t)(SPI_TCRC(spi_periph))); + }else{ + return ((uint16_t)(SPI_RCRC(spi_periph))); + } +} + +/*! + \brief enable SPI TI mode + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[out] none + \retval none +*/ +void spi_ti_mode_enable(uint32_t spi_periph) +{ + SPI_CTL1(spi_periph) |= (uint32_t)SPI_CTL1_TMOD; +} + +/*! + \brief disable SPI TI mode + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[out] none + \retval none +*/ +void spi_ti_mode_disable(uint32_t spi_periph) +{ + SPI_CTL1(spi_periph) &= (uint32_t)(~SPI_CTL1_TMOD); +} + +/*! + \brief configure i2s full duplex mode + \param[in] i2s_add_periph: I2Sx_ADD(x=1,2) + \param[in] i2s_mode: + \arg I2S_MODE_SLAVETX : I2S slave transmit mode + \arg I2S_MODE_SLAVERX : I2S slave receive mode + \arg I2S_MODE_MASTERTX : I2S master transmit mode + \arg I2S_MODE_MASTERRX : I2S master receive mode + \param[in] i2s_standard: + \arg I2S_STD_PHILLIPS : I2S phillips standard + \arg I2S_STD_MSB : I2S MSB standard + \arg I2S_STD_LSB : I2S LSB standard + \arg I2S_STD_PCMSHORT : I2S PCM short standard + \arg I2S_STD_PCMLONG : I2S PCM long standard + \param[in] i2s_ckpl: + \arg I2S_CKPL_LOW : I2S clock polarity low level + \arg I2S_CKPL_HIGH : I2S clock polarity high level + \param[in] i2s_frameformat: + \arg I2S_FRAMEFORMAT_DT16B_CH16B: I2S data length is 16 bit and channel length is 16 bit + \arg I2S_FRAMEFORMAT_DT16B_CH32B: I2S data length is 16 bit and channel length is 32 bit + \arg I2S_FRAMEFORMAT_DT24B_CH32B: I2S data length is 24 bit and channel length is 32 bit + \arg I2S_FRAMEFORMAT_DT32B_CH32B: I2S data length is 32 bit and channel length is 32 bit + \param[out] none + \retval none +*/ +void i2s_full_duplex_mode_config(uint32_t i2s_add_periph, uint32_t i2s_mode, uint32_t i2s_standard, + uint32_t i2s_ckpl, uint32_t i2s_frameformat) +{ + uint32_t reg = 0U, tmp = 0U; + + reg = I2S_ADD_I2SCTL(i2s_add_periph); + reg &= I2S_FULL_DUPLEX_MASK; + + /* get the mode of the extra I2S module I2Sx_ADD */ + if((I2S_MODE_MASTERTX == i2s_mode) || (I2S_MODE_SLAVETX == i2s_mode)){ + tmp = I2S_MODE_SLAVERX; + }else{ + tmp = I2S_MODE_SLAVETX; + } + + /* enable I2S mode */ + reg |= (uint32_t)SPI_I2SCTL_I2SSEL; + /* select I2S mode */ + reg |= (uint32_t)tmp; + /* select I2S standard */ + reg |= (uint32_t)i2s_standard; + /* select I2S polarity */ + reg |= (uint32_t)i2s_ckpl; + /* configure data frame format */ + reg |= (uint32_t)i2s_frameformat; + + /* write to SPI_I2SCTL register */ + I2S_ADD_I2SCTL(i2s_add_periph) = (uint32_t)reg; +} + +/*! + \brief enable quad wire SPI + \param[in] spi_periph: SPIx(only x=5) + \param[out] none + \retval none +*/ +void qspi_enable(uint32_t spi_periph) +{ + SPI_QCTL(spi_periph) |= (uint32_t)SPI_QCTL_QMOD; +} + +/*! + \brief disable quad wire SPI + \param[in] spi_periph: SPIx(only x=5) + \param[out] none + \retval none +*/ +void qspi_disable(uint32_t spi_periph) +{ + SPI_QCTL(spi_periph) &= (uint32_t)(~SPI_QCTL_QMOD); +} + +/*! + \brief enable quad wire SPI write + \param[in] spi_periph: SPIx(only x=5) + \param[out] none + \retval none +*/ +void qspi_write_enable(uint32_t spi_periph) +{ + SPI_QCTL(spi_periph) &= (uint32_t)(~SPI_QCTL_QRD); +} + +/*! + \brief enable quad wire SPI read + \param[in] spi_periph: SPIx(only x=5) + \param[out] none + \retval none +*/ +void qspi_read_enable(uint32_t spi_periph) +{ + SPI_QCTL(spi_periph) |= (uint32_t)SPI_QCTL_QRD; +} + +/*! + \brief enable SPI_IO2 and SPI_IO3 pin output + \param[in] spi_periph: SPIx(only x=5) + \param[out] none + \retval none +*/ +void qspi_io23_output_enable(uint32_t spi_periph) +{ + SPI_QCTL(spi_periph) |= (uint32_t)SPI_QCTL_IO23_DRV; +} + + /*! + \brief disable SPI_IO2 and SPI_IO3 pin output + \param[in] spi_periph: SPIx(only x=5) + \param[out] none + \retval none +*/ + void qspi_io23_output_disable(uint32_t spi_periph) +{ + SPI_QCTL(spi_periph) &= (uint32_t)(~SPI_QCTL_IO23_DRV); +} + +/*! + \brief enable SPI and I2S interrupt + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[in] spi_i2s_int: SPI/I2S interrupt + only one parameter can be selected which is shown as below: + \arg SPI_I2S_INT_TBE: transmit buffer empty interrupt + \arg SPI_I2S_INT_RBNE: receive buffer not empty interrupt + \arg SPI_I2S_INT_ERR: CRC error,configuration error,reception overrun error, + transmission underrun error and format error interrupt + \param[out] none + \retval none +*/ +void spi_i2s_interrupt_enable(uint32_t spi_periph, uint8_t spi_i2s_int) +{ + switch(spi_i2s_int){ + /* SPI/I2S transmit buffer empty interrupt */ + case SPI_I2S_INT_TBE: + SPI_CTL1(spi_periph) |= (uint32_t)SPI_CTL1_TBEIE; + break; + /* SPI/I2S receive buffer not empty interrupt */ + case SPI_I2S_INT_RBNE: + SPI_CTL1(spi_periph) |= (uint32_t)SPI_CTL1_RBNEIE; + break; + /* SPI/I2S error */ + case SPI_I2S_INT_ERR: + SPI_CTL1(spi_periph) |= (uint32_t)SPI_CTL1_ERRIE; + break; + default: + break; + } +} + +/*! + \brief disable SPI and I2S interrupt + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[in] spi_i2s_int: SPI/I2S interrupt + only one parameter can be selected which is shown as below: + \arg SPI_I2S_INT_TBE: transmit buffer empty interrupt + \arg SPI_I2S_INT_RBNE: receive buffer not empty interrupt + \arg SPI_I2S_INT_ERR: CRC error,configuration error,reception overrun error, + transmission underrun error and format error interrupt + \param[out] none + \retval none +*/ +void spi_i2s_interrupt_disable(uint32_t spi_periph, uint8_t spi_i2s_int) +{ + switch(spi_i2s_int){ + /* SPI/I2S transmit buffer empty interrupt */ + case SPI_I2S_INT_TBE : + SPI_CTL1(spi_periph) &= (uint32_t)(~SPI_CTL1_TBEIE); + break; + /* SPI/I2S receive buffer not empty interrupt */ + case SPI_I2S_INT_RBNE : + SPI_CTL1(spi_periph) &= (uint32_t)(~SPI_CTL1_RBNEIE); + break; + /* SPI/I2S error */ + case SPI_I2S_INT_ERR : + SPI_CTL1(spi_periph) &= (uint32_t)(~SPI_CTL1_ERRIE); + break; + default : + break; + } +} + +/*! + \brief get SPI and I2S interrupt flag status + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[in] spi_i2s_int: SPI/I2S interrupt flag status + \arg SPI_I2S_INT_FLAG_TBE: transmit buffer empty interrupt flag + \arg SPI_I2S_INT_FLAG_RBNE: receive buffer not empty interrupt flag + \arg SPI_I2S_INT_FLAG_RXORERR: overrun interrupt flag + \arg SPI_INT_FLAG_CONFERR: config error interrupt flag + \arg SPI_INT_FLAG_CRCERR: CRC error interrupt flag + \arg I2S_INT_FLAG_TXURERR: underrun error interrupt flag + \arg SPI_I2S_INT_FLAG_FERR: format error interrupt flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus spi_i2s_interrupt_flag_get(uint32_t spi_periph, uint8_t spi_i2s_int) +{ + uint32_t reg1 = SPI_STAT(spi_periph); + uint32_t reg2 = SPI_CTL1(spi_periph); + + switch(spi_i2s_int){ + /* SPI/I2S transmit buffer empty interrupt */ + case SPI_I2S_INT_FLAG_TBE : + reg1 = reg1 & SPI_STAT_TBE; + reg2 = reg2 & SPI_CTL1_TBEIE; + break; + /* SPI/I2S receive buffer not empty interrupt */ + case SPI_I2S_INT_FLAG_RBNE : + reg1 = reg1 & SPI_STAT_RBNE; + reg2 = reg2 & SPI_CTL1_RBNEIE; + break; + /* SPI/I2S overrun interrupt */ + case SPI_I2S_INT_FLAG_RXORERR : + reg1 = reg1 & SPI_STAT_RXORERR; + reg2 = reg2 & SPI_CTL1_ERRIE; + break; + /* SPI config error interrupt */ + case SPI_INT_FLAG_CONFERR : + reg1 = reg1 & SPI_STAT_CONFERR; + reg2 = reg2 & SPI_CTL1_ERRIE; + break; + /* SPI CRC error interrupt */ + case SPI_INT_FLAG_CRCERR : + reg1 = reg1 & SPI_STAT_CRCERR; + reg2 = reg2 & SPI_CTL1_ERRIE; + break; + /* I2S underrun error interrupt */ + case I2S_INT_FLAG_TXURERR : + reg1 = reg1 & SPI_STAT_TXURERR; + reg2 = reg2 & SPI_CTL1_ERRIE; + break; + /* SPI/I2S format error interrupt */ + case SPI_I2S_INT_FLAG_FERR : + reg1 = reg1 & SPI_STAT_FERR; + reg2 = reg2 & SPI_CTL1_ERRIE; + break; + default : + break; + } + /*get SPI/I2S interrupt flag status */ + if(reg1 && reg2){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief get SPI and I2S flag status + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[in] spi_i2s_flag: SPI/I2S flag status + \arg SPI_FLAG_TBE: transmit buffer empty flag + \arg SPI_FLAG_RBNE: receive buffer not empty flag + \arg SPI_FLAG_TRANS: transmit on-going flag + \arg SPI_FLAG_RXORERR: receive overrun error flag + \arg SPI_FLAG_CONFERR: mode config error flag + \arg SPI_FLAG_CRCERR: CRC error flag + \arg SPI_FLAG_FERR: format error flag + \arg I2S_FLAG_TBE: transmit buffer empty flag + \arg I2S_FLAG_RBNE: receive buffer not empty flag + \arg I2S_FLAG_TRANS: transmit on-going flag + \arg I2S_FLAG_RXORERR: overrun error flag + \arg I2S_FLAG_TXURERR: underrun error flag + \arg I2S_FLAG_CH: channel side flag + \arg I2S_FLAG_FERR: format error flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus spi_i2s_flag_get(uint32_t spi_periph, uint32_t spi_i2s_flag) +{ + if(SPI_STAT(spi_periph) & spi_i2s_flag){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear SPI CRC error flag status + \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) + \param[out] none + \retval none +*/ +void spi_crc_error_clear(uint32_t spi_periph) +{ + SPI_STAT(spi_periph) &= (uint32_t)(~SPI_FLAG_CRCERR); +} + diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_syscfg.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_syscfg.c new file mode 100644 index 0000000000..0f6133a2c7 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_syscfg.c @@ -0,0 +1,204 @@ +/*! + \file gd32f4xx_syscfg.c + \brief SYSCFG driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_syscfg.h" + +/*! + \brief reset the SYSCFG registers + \param[in] none + \param[out] none + \retval none +*/ +void syscfg_deinit(void) +{ + rcu_periph_reset_enable(RCU_SYSCFGRST); + rcu_periph_reset_disable(RCU_SYSCFGRST); +} + +/*! + \brief configure the boot mode + \param[in] syscfg_bootmode: selects the memory remapping + only one parameter can be selected which is shown as below: + \arg SYSCFG_BOOTMODE_FLASH: main flash memory (0x08000000~0x083BFFFF) is mapped at address 0x00000000 + \arg SYSCFG_BOOTMODE_BOOTLOADER: boot loader (0x1FFF0000 - 0x1FFF77FF) is mapped at address 0x00000000 + \arg SYSCFG_BOOTMODE_EXMC_SRAM: SRAM/NOR 0 and 1 of EXMC (0x60000000~0x67FFFFFF) is mapped at address 0x00000000 + \arg SYSCFG_BOOTMODE_SRAM: SRAM0 of on-chip SRAM (0x20000000~0x2001BFFF) is mapped at address 0x00000000 + \arg SYSCFG_BOOTMODE_EXMC_SDRAM: SDRAM bank0 of EXMC (0xC0000000~0xC7FFFFFF) is mapped at address 0x00000000 + \param[out] none + \retval none +*/ +void syscfg_bootmode_config(uint8_t syscfg_bootmode) +{ + /* reset the SYSCFG_CFG0_BOOT_MODE bit and set according to syscfg_bootmode */ + SYSCFG_CFG0 &= ~SYSCFG_CFG0_BOOT_MODE; + SYSCFG_CFG0 |= (uint32_t)syscfg_bootmode; +} + +/*! + \brief FMC memory mapping swap + \param[in] syscfg_fmc_swap: selects the interal flash bank swapping + only one parameter can be selected which is shown as below: + \arg SYSCFG_FMC_SWP_BANK0: bank 0 is mapped at address 0x08000000 and bank 1 is mapped at address 0x08100000 + \arg SYSCFG_FMC_SWP_BANK1: bank 1 is mapped at address 0x08000000 and bank 0 is mapped at address 0x08100000 + \param[out] none + \retval none +*/ +void syscfg_fmc_swap_config(uint32_t syscfg_fmc_swap) +{ + uint32_t reg; + reg = SYSCFG_CFG0; + /* reset the FMC_SWP bit and set according to syscfg_fmc_swap */ + reg &= ~SYSCFG_CFG0_FMC_SWP; + SYSCFG_CFG0 = (reg | syscfg_fmc_swap); +} + +/*! + \brief EXMC memory mapping swap + \param[in] syscfg_exmc_swap: selects the memories in EXMC swapping + only one parameter can be selected which is shown as below: + \arg SYSCFG_EXMC_SWP_ENABLE: SDRAM bank 0 and bank 1 are swapped with NAND bank 1 and PC card + \arg SYSCFG_EXMC_SWP_DISABLE: no memory mapping swap + \param[out] none + \retval none +*/ +void syscfg_exmc_swap_config(uint32_t syscfg_exmc_swap) +{ + uint32_t reg; + + reg = SYSCFG_CFG0; + /* reset the SYSCFG_CFG0_EXMC_SWP bits and set according to syscfg_exmc_swap */ + reg &= ~SYSCFG_CFG0_EXMC_SWP; + SYSCFG_CFG0 = (reg | syscfg_exmc_swap); +} + +/*! + \brief configure the GPIO pin as EXTI Line + \param[in] exti_port: specify the GPIO port used in EXTI + only one parameter can be selected which is shown as below: + \arg EXTI_SOURCE_GPIOx(x = A,B,C,D,E,F,G,H,I): EXTI GPIO port + \param[in] exti_pin: specify the EXTI line + only one parameter can be selected which is shown as below: + \arg EXTI_SOURCE_PINx(x = 0..15): EXTI GPIO pin + \param[out] none + \retval none +*/ +void syscfg_exti_line_config(uint8_t exti_port, uint8_t exti_pin) +{ + uint32_t clear_exti_mask = ~((uint32_t)EXTI_SS_MASK << (EXTI_SS_MSTEP(exti_pin))); + uint32_t config_exti_mask = ((uint32_t)exti_port) << (EXTI_SS_MSTEP(exti_pin)); + + switch(exti_pin/EXTI_SS_JSTEP){ + case EXTISS0: + /* clear EXTI source line(0..3) */ + SYSCFG_EXTISS0 &= clear_exti_mask; + /* configure EXTI soure line(0..3) */ + SYSCFG_EXTISS0 |= config_exti_mask; + break; + case EXTISS1: + /* clear EXTI soure line(4..7) */ + SYSCFG_EXTISS1 &= clear_exti_mask; + /* configure EXTI soure line(4..7) */ + SYSCFG_EXTISS1 |= config_exti_mask; + break; + case EXTISS2: + /* clear EXTI soure line(8..11) */ + SYSCFG_EXTISS2 &= clear_exti_mask; + /* configure EXTI soure line(8..11) */ + SYSCFG_EXTISS2 |= config_exti_mask; + break; + case EXTISS3: + /* clear EXTI soure line(12..15) */ + SYSCFG_EXTISS3 &= clear_exti_mask; + /* configure EXTI soure line(12..15) */ + SYSCFG_EXTISS3 |= config_exti_mask; + break; + default: + break; + } +} + +/*! + \brief configure the PHY interface for the ethernet MAC + \param[in] syscfg_enet_phy_interface: specifies the media interface mode. + only one parameter can be selected which is shown as below: + \arg SYSCFG_ENET_PHY_MII: MII mode is selected + \arg SYSCFG_ENET_PHY_RMII: RMII mode is selected + \param[out] none + \retval none +*/ +void syscfg_enet_phy_interface_config(uint32_t syscfg_enet_phy_interface) +{ + uint32_t reg; + + reg = SYSCFG_CFG1; + /* reset the ENET_PHY_SEL bit and set according to syscfg_enet_phy_interface */ + reg &= ~SYSCFG_CFG1_ENET_PHY_SEL; + SYSCFG_CFG1 = (reg | syscfg_enet_phy_interface); +} + +/*! + \brief configure the I/O compensation cell + \param[in] syscfg_compensation: specifies the I/O compensation cell mode + only one parameter can be selected which is shown as below: + \arg SYSCFG_COMPENSATION_ENABLE: I/O compensation cell is enabled + \arg SYSCFG_COMPENSATION_DISABLE: I/O compensation cell is disabled + \param[out] none + \retval none +*/ +void syscfg_compensation_config(uint32_t syscfg_compensation) +{ + uint32_t reg; + + reg = SYSCFG_CPSCTL; + /* reset the SYSCFG_CPSCTL_CPS_EN bit and set according to syscfg_compensation */ + reg &= ~SYSCFG_CPSCTL_CPS_EN; + SYSCFG_CPSCTL = (reg | syscfg_compensation); +} + +/*! + \brief checks whether the I/O compensation cell ready flag is set or not + \param[in] none + \param[out] none + \retval FlagStatus: SET or RESET + */ +FlagStatus syscfg_flag_get(void) +{ + if(((uint32_t)RESET) != (SYSCFG_CPSCTL & SYSCFG_CPSCTL_CPS_RDY)){ + return SET; + }else{ + return RESET; + } +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_timer.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_timer.c new file mode 100644 index 0000000000..ce78de29dd --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_timer.c @@ -0,0 +1,2063 @@ +/*! + \file gd32f4xx_timer.c + \brief TIMER driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + + +#include "gd32f4xx_timer.h" + +/*! + \brief deinit a TIMER + \param[in] timer_periph: TIMERx(x=0..13) + \param[out] none + \retval none +*/ +void timer_deinit(uint32_t timer_periph) +{ + switch(timer_periph){ + case TIMER0: + /* reset TIMER0 */ + rcu_periph_reset_enable(RCU_TIMER0RST); + rcu_periph_reset_disable(RCU_TIMER0RST); + break; + case TIMER1: + /* reset TIMER1 */ + rcu_periph_reset_enable(RCU_TIMER1RST); + rcu_periph_reset_disable(RCU_TIMER1RST); + break; + case TIMER2: + /* reset TIMER2 */ + rcu_periph_reset_enable(RCU_TIMER2RST); + rcu_periph_reset_disable(RCU_TIMER2RST); + break; + case TIMER3: + /* reset TIMER3 */ + rcu_periph_reset_enable(RCU_TIMER3RST); + rcu_periph_reset_disable(RCU_TIMER3RST); + break; + case TIMER4: + /* reset TIMER4 */ + rcu_periph_reset_enable(RCU_TIMER4RST); + rcu_periph_reset_disable(RCU_TIMER4RST); + break; + case TIMER5: + /* reset TIMER5 */ + rcu_periph_reset_enable(RCU_TIMER5RST); + rcu_periph_reset_disable(RCU_TIMER5RST); + break; + case TIMER6: + /* reset TIMER6 */ + rcu_periph_reset_enable(RCU_TIMER6RST); + rcu_periph_reset_disable(RCU_TIMER6RST); + break; + case TIMER7: + /* reset TIMER7 */ + rcu_periph_reset_enable(RCU_TIMER7RST); + rcu_periph_reset_disable(RCU_TIMER7RST); + break; + case TIMER8: + /* reset TIMER8 */ + rcu_periph_reset_enable(RCU_TIMER8RST); + rcu_periph_reset_disable(RCU_TIMER8RST); + break; + case TIMER9: + /* reset TIMER9 */ + rcu_periph_reset_enable(RCU_TIMER9RST); + rcu_periph_reset_disable(RCU_TIMER9RST); + break; + case TIMER10: + /* reset TIMER10 */ + rcu_periph_reset_enable(RCU_TIMER10RST); + rcu_periph_reset_disable(RCU_TIMER10RST); + break; + case TIMER11: + /* reset TIMER11 */ + rcu_periph_reset_enable(RCU_TIMER11RST); + rcu_periph_reset_disable(RCU_TIMER11RST); + break; + case TIMER12: + /* reset TIMER12 */ + rcu_periph_reset_enable(RCU_TIMER12RST); + rcu_periph_reset_disable(RCU_TIMER12RST); + break; + case TIMER13: + /* reset TIMER13 */ + rcu_periph_reset_enable(RCU_TIMER13RST); + rcu_periph_reset_disable(RCU_TIMER13RST); + break; + default: + break; + } +} + +/*! + \brief initialize TIMER init parameter struct with a default value + \param[in] initpara: init parameter struct + \param[out] none + \retval none +*/ +void timer_struct_para_init(timer_parameter_struct* initpara) +{ + /* initialize the init parameter struct member with the default value */ + initpara->prescaler = 0U; + initpara->alignedmode = TIMER_COUNTER_EDGE; + initpara->counterdirection = TIMER_COUNTER_UP; + initpara->period = 65535U; + initpara->clockdivision = TIMER_CKDIV_DIV1; + initpara->repetitioncounter = 0U; +} + +/*! + \brief initialize TIMER counter + \param[in] timer_periph: TIMERx(x=0..13) + \param[in] initpara: init parameter struct + prescaler: prescaler value of the counter clock,0~65535 + alignedmode: TIMER_COUNTER_EDGE,TIMER_COUNTER_CENTER_DOWN,TIMER_COUNTER_CENTER_UP,TIMER_COUNTER_CENTER_BOTH + counterdirection: TIMER_COUNTER_UP,TIMER_COUNTER_DOWN + period: counter auto reload value,(TIMER1,TIMER4,32 bit) + clockdivision: TIMER_CKDIV_DIV1,TIMER_CKDIV_DIV2,TIMER_CKDIV_DIV4 + repetitioncounter: counter repetition value,0~255 + \param[out] none + \retval none +*/ +void timer_init(uint32_t timer_periph, timer_parameter_struct* initpara) +{ + /* configure the counter prescaler value */ + TIMER_PSC(timer_periph) = (uint16_t)initpara->prescaler; + + /* configure the counter direction and aligned mode */ + if((TIMER0 == timer_periph) || (TIMER1 == timer_periph) || (TIMER2 == timer_periph) + || (TIMER3 == timer_periph) || (TIMER4 == timer_periph) || (TIMER7 == timer_periph)){ + TIMER_CTL0(timer_periph) &= ~(uint32_t)(TIMER_CTL0_DIR|TIMER_CTL0_CAM); + TIMER_CTL0(timer_periph) |= (uint32_t)initpara->alignedmode; + TIMER_CTL0(timer_periph) |= (uint32_t)initpara->counterdirection; + } + + /* configure the autoreload value */ + TIMER_CAR(timer_periph) = (uint32_t)initpara->period; + + if((TIMER5 != timer_periph) && (TIMER6 != timer_periph)){ + /* reset the CKDIV bit */ + TIMER_CTL0(timer_periph) &= ~(uint32_t)TIMER_CTL0_CKDIV; + TIMER_CTL0(timer_periph) |= (uint32_t)initpara->clockdivision; + } + + if((TIMER0 == timer_periph) || (TIMER7 == timer_periph)){ + /* configure the repetition counter value */ + TIMER_CREP(timer_periph) = (uint32_t)initpara->repetitioncounter; + } + + /* generate an update event */ + TIMER_SWEVG(timer_periph) |= (uint32_t)TIMER_SWEVG_UPG; +} + +/*! + \brief enable a TIMER + \param[in] timer_periph: TIMERx(x=0..13) + \param[out] none + \retval none +*/ +void timer_enable(uint32_t timer_periph) +{ + TIMER_CTL0(timer_periph) |= (uint32_t)TIMER_CTL0_CEN; +} + +/*! + \brief disable a TIMER + \param[in] timer_periph: TIMERx(x=0..13) + \param[out] none + \retval none +*/ +void timer_disable(uint32_t timer_periph) +{ + TIMER_CTL0(timer_periph) &= ~(uint32_t)TIMER_CTL0_CEN; +} + +/*! + \brief enable the auto reload shadow function + \param[in] timer_periph: TIMERx(x=0..13) + \param[out] none + \retval none +*/ +void timer_auto_reload_shadow_enable(uint32_t timer_periph) +{ + TIMER_CTL0(timer_periph) |= (uint32_t)TIMER_CTL0_ARSE; +} + +/*! + \brief disable the auto reload shadow function + \param[in] timer_periph: TIMERx(x=0..13) + \param[out] none + \retval none +*/ +void timer_auto_reload_shadow_disable(uint32_t timer_periph) +{ + TIMER_CTL0(timer_periph) &= ~(uint32_t)TIMER_CTL0_ARSE; +} + +/*! + \brief enable the update event + \param[in] timer_periph: TIMERx(x=0..13) + \param[out] none + \retval none +*/ +void timer_update_event_enable(uint32_t timer_periph) +{ + TIMER_CTL0(timer_periph) &= ~(uint32_t)TIMER_CTL0_UPDIS; +} + +/*! + \brief disable the update event + \param[in] timer_periph: TIMERx(x=0..13) + \param[out] none + \retval none +*/ +void timer_update_event_disable(uint32_t timer_periph) +{ + TIMER_CTL0(timer_periph) |= (uint32_t) TIMER_CTL0_UPDIS; +} + +/*! + \brief set TIMER counter alignment mode + \param[in] timer_periph: TIMERx(x=0..4,7) + \param[in] aligned: + only one parameter can be selected which is shown as below: + \arg TIMER_COUNTER_EDGE: edge-aligned mode + \arg TIMER_COUNTER_CENTER_DOWN: center-aligned and counting down assert mode + \arg TIMER_COUNTER_CENTER_UP: center-aligned and counting up assert mode + \arg TIMER_COUNTER_CENTER_BOTH: center-aligned and counting up/down assert mode + \param[out] none + \retval none +*/ +void timer_counter_alignment(uint32_t timer_periph, uint16_t aligned) +{ + TIMER_CTL0(timer_periph) &= ~(uint32_t)TIMER_CTL0_CAM; + TIMER_CTL0(timer_periph) |= (uint32_t)aligned; +} + +/*! + \brief set TIMER counter up direction + \param[in] timer_periph: TIMERx(x=0..4,7) + \param[out] none + \retval none +*/ +void timer_counter_up_direction(uint32_t timer_periph) +{ + TIMER_CTL0(timer_periph) &= ~(uint32_t)TIMER_CTL0_DIR; +} + +/*! + \brief set TIMER counter down direction + \param[in] timer_periph: TIMERx(x=0..4,7) + \param[out] none + \retval none +*/ +void timer_counter_down_direction(uint32_t timer_periph) +{ + TIMER_CTL0(timer_periph) |= (uint32_t)TIMER_CTL0_DIR; +} + +/*! + \brief configure TIMER prescaler + \param[in] timer_periph: TIMERx(x=0..13) + \param[in] prescaler: prescaler value,0~65535 + \param[in] pscreload: prescaler reload mode + only one parameter can be selected which is shown as below: + \arg TIMER_PSC_RELOAD_NOW: the prescaler is loaded right now + \arg TIMER_PSC_RELOAD_UPDATE: the prescaler is loaded at the next update event + \param[out] none + \retval none +*/ +void timer_prescaler_config(uint32_t timer_periph, uint16_t prescaler, uint8_t pscreload) +{ + TIMER_PSC(timer_periph) = (uint32_t)prescaler; + + if(TIMER_PSC_RELOAD_NOW == pscreload){ + TIMER_SWEVG(timer_periph) |= (uint32_t)TIMER_SWEVG_UPG; + } +} + +/*! + \brief configure TIMER repetition register value + \param[in] timer_periph: TIMERx(x=0,7) + \param[in] repetition: the counter repetition value,0~255 + \param[out] none + \retval none +*/ +void timer_repetition_value_config(uint32_t timer_periph, uint16_t repetition) +{ + TIMER_CREP(timer_periph) = (uint32_t)repetition; +} + +/*! + \brief configure TIMER autoreload register value + \param[in] timer_periph: TIMERx(x=0..13) + \param[in] autoreload: the counter auto-reload value + \param[out] none + \retval none +*/ +void timer_autoreload_value_config(uint32_t timer_periph,uint32_t autoreload) +{ + TIMER_CAR(timer_periph) = (uint32_t)autoreload; +} + +/*! + \brief configure TIMER counter register value + \param[in] timer_periph: TIMERx(x=0..13) + \param[in] counter: the counter value,0~65535 + \param[out] none + \retval none +*/ +void timer_counter_value_config(uint32_t timer_periph , uint32_t counter) +{ + TIMER_CNT(timer_periph) = (uint32_t)counter; +} + +/*! + \brief read TIMER counter value + \param[in] timer_periph: TIMERx(x=0..13) + \param[out] none + \retval counter value +*/ +uint32_t timer_counter_read(uint32_t timer_periph) +{ + uint32_t count_value = 0U; + count_value = TIMER_CNT(timer_periph); + return (count_value); +} + +/*! + \brief read TIMER prescaler value + \param[in] timer_periph: TIMERx(x=0..13) + \param[out] none + \retval prescaler register value +*/ +uint16_t timer_prescaler_read(uint32_t timer_periph) +{ + uint16_t prescaler_value = 0U; + prescaler_value = (uint16_t)(TIMER_PSC(timer_periph)); + return (prescaler_value); +} + +/*! + \brief configure TIMER single pulse mode + \param[in] timer_periph: TIMERx(x=0..8,11) + \param[in] spmode: + only one parameter can be selected which is shown as below: + \arg TIMER_SP_MODE_SINGLE: single pulse mode + \arg TIMER_SP_MODE_REPETITIVE: repetitive pulse mode + \param[out] none + \retval none +*/ +void timer_single_pulse_mode_config(uint32_t timer_periph, uint32_t spmode) +{ + if(TIMER_SP_MODE_SINGLE == spmode){ + TIMER_CTL0(timer_periph) |= (uint32_t)TIMER_CTL0_SPM; + }else if(TIMER_SP_MODE_REPETITIVE == spmode){ + TIMER_CTL0(timer_periph) &= ~((uint32_t)TIMER_CTL0_SPM); + }else{ + /* illegal parameters */ + } +} + +/*! + \brief configure TIMER update source + \param[in] timer_periph: TIMERx(x=0..13) + \param[in] update: + only one parameter can be selected which is shown as below: + \arg TIMER_UPDATE_SRC_GLOBAL: update generate by setting of UPG bit or the counter overflow/underflow,or the slave mode controller trigger + \arg TIMER_UPDATE_SRC_REGULAR: update generate only by counter overflow/underflow + \param[out] none + \retval none +*/ +void timer_update_source_config(uint32_t timer_periph, uint32_t update) +{ + if(TIMER_UPDATE_SRC_REGULAR == update){ + TIMER_CTL0(timer_periph) |= (uint32_t)TIMER_CTL0_UPS; + }else if(TIMER_UPDATE_SRC_GLOBAL == update){ + TIMER_CTL0(timer_periph) &= ~(uint32_t)TIMER_CTL0_UPS; + }else{ + /* illegal parameters */ + } +} + +/*! + \brief enable the TIMER interrupt + \param[in] timer_periph: please refer to the following parameters + \param[in] interrupt: timer interrupt enable source + only one parameter can be selected which is shown as below: + \arg TIMER_INT_UP: update interrupt enable, TIMERx(x=0..13) + \arg TIMER_INT_CH0: channel 0 interrupt enable, TIMERx(x=0..4,7..13) + \arg TIMER_INT_CH1: channel 1 interrupt enable, TIMERx(x=0..4,7,8,11) + \arg TIMER_INT_CH2: channel 2 interrupt enable, TIMERx(x=0..4,7) + \arg TIMER_INT_CH3: channel 3 interrupt enable , TIMERx(x=0..4,7) + \arg TIMER_INT_CMT: commutation interrupt enable, TIMERx(x=0,7) + \arg TIMER_INT_TRG: trigger interrupt enable, TIMERx(x=0..4,7,8,11) + \arg TIMER_INT_BRK: break interrupt enable, TIMERx(x=0,7) + \param[out] none + \retval none +*/ +void timer_interrupt_enable(uint32_t timer_periph, uint32_t interrupt) +{ + TIMER_DMAINTEN(timer_periph) |= (uint32_t) interrupt; +} + +/*! + \brief disable the TIMER interrupt + \param[in] timer_periph: please refer to the following parameters + \param[in] interrupt: timer interrupt source enable + only one parameter can be selected which is shown as below: + \arg TIMER_INT_UP: update interrupt enable, TIMERx(x=0..13) + \arg TIMER_INT_CH0: channel 0 interrupt enable, TIMERx(x=0..4,7..13) + \arg TIMER_INT_CH1: channel 1 interrupt enable, TIMERx(x=0..4,7,8,11) + \arg TIMER_INT_CH2: channel 2 interrupt enable, TIMERx(x=0..4,7) + \arg TIMER_INT_CH3: channel 3 interrupt enable , TIMERx(x=0..4,7) + \arg TIMER_INT_CMT: commutation interrupt enable, TIMERx(x=0,7) + \arg TIMER_INT_TRG: trigger interrupt enable, TIMERx(x=0..4,7,8,11) + \arg TIMER_INT_BRK: break interrupt enable, TIMERx(x=0,7) + \param[out] none + \retval none +*/ +void timer_interrupt_disable(uint32_t timer_periph, uint32_t interrupt) +{ + TIMER_DMAINTEN(timer_periph) &= (~(uint32_t)interrupt); +} + +/*! + \brief get timer interrupt flag + \param[in] timer_periph: please refer to the following parameters + \param[in] interrupt: the timer interrupt bits + only one parameter can be selected which is shown as below: + \arg TIMER_INT_FLAG_UP: update interrupt flag,TIMERx(x=0..13) + \arg TIMER_INT_FLAG_CH0: channel 0 interrupt flag,TIMERx(x=0..4,7..13) + \arg TIMER_INT_FLAG_CH1: channel 1 interrupt flag,TIMERx(x=0..4,7,8,11) + \arg TIMER_INT_FLAG_CH2: channel 2 interrupt flag,TIMERx(x=0..4,7) + \arg TIMER_INT_FLAG_CH3: channel 3 interrupt flag,TIMERx(x=0..4,7) + \arg TIMER_INT_FLAG_CMT: channel commutation interrupt flag,TIMERx(x=0,7) + \arg TIMER_INT_FLAG_TRG: trigger interrupt flag,TIMERx(x=0,7,8,11) + \arg TIMER_INT_FLAG_BRK: break interrupt flag,TIMERx(x=0,7) + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus timer_interrupt_flag_get(uint32_t timer_periph, uint32_t interrupt) +{ + uint32_t val; + val = (TIMER_DMAINTEN(timer_periph) & interrupt); + if((RESET != (TIMER_INTF(timer_periph) & interrupt) ) && (RESET != val)){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear TIMER interrupt flag + \param[in] timer_periph: please refer to the following parameters + \param[in] interrupt: the timer interrupt bits + only one parameter can be selected which is shown as below: + \arg TIMER_INT_FLAG_UP: update interrupt flag,TIMERx(x=0..13) + \arg TIMER_INT_FLAG_CH0: channel 0 interrupt flag,TIMERx(x=0..4,7..13) + \arg TIMER_INT_FLAG_CH1: channel 1 interrupt flag,TIMERx(x=0..4,7,8,11) + \arg TIMER_INT_FLAG_CH2: channel 2 interrupt flag,TIMERx(x=0..4,7) + \arg TIMER_INT_FLAG_CH3: channel 3 interrupt flag,TIMERx(x=0..4,7) + \arg TIMER_INT_FLAG_CMT: channel commutation interrupt flag,TIMERx(x=0,7) + \arg TIMER_INT_FLAG_TRG: trigger interrupt flag,TIMERx(x=0,7,8,11) + \arg TIMER_INT_FLAG_BRK: break interrupt flag,TIMERx(x=0,7) + \param[out] none + \retval none +*/ +void timer_interrupt_flag_clear(uint32_t timer_periph, uint32_t interrupt) +{ + TIMER_INTF(timer_periph) = (~(uint32_t)interrupt); +} + +/*! + \brief get TIMER flags + \param[in] timer_periph: please refer to the following parameters + \param[in] flag: the timer interrupt flags + only one parameter can be selected which is shown as below: + \arg TIMER_FLAG_UP: update flag,TIMERx(x=0..13) + \arg TIMER_FLAG_CH0: channel 0 flag,TIMERx(x=0..4,7..13) + \arg TIMER_FLAG_CH1: channel 1 flag,TIMERx(x=0..4,7,8,11) + \arg TIMER_FLAG_CH2: channel 2 flag,TIMERx(x=0..4,7) + \arg TIMER_FLAG_CH3: channel 3 flag,TIMERx(x=0..4,7) + \arg TIMER_FLAG_CMT: channel control update flag,TIMERx(x=0,7) + \arg TIMER_FLAG_TRG: trigger flag,TIMERx(x=0,7,8,11) + \arg TIMER_FLAG_BRK: break flag,TIMERx(x=0,7) + \arg TIMER_FLAG_CH0OF: channel 0 overcapture flag,TIMERx(x=0..4,7..11) + \arg TIMER_FLAG_CH1OF: channel 1 overcapture flag,TIMERx(x=0..4,7,8,11) + \arg TIMER_FLAG_CH2OF: channel 2 overcapture flag,TIMERx(x=0..4,7) + \arg TIMER_FLAG_CH3OF: channel 3 overcapture flag,TIMERx(x=0..4,7) + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus timer_flag_get(uint32_t timer_periph, uint32_t flag) +{ + if(RESET != (TIMER_INTF(timer_periph) & flag)){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear TIMER flags + \param[in] timer_periph: please refer to the following parameters + \param[in] flag: the timer interrupt flags + only one parameter can be selected which is shown as below: + \arg TIMER_FLAG_UP: update flag,TIMERx(x=0..13) + \arg TIMER_FLAG_CH0: channel 0 flag,TIMERx(x=0..4,7..13) + \arg TIMER_FLAG_CH1: channel 1 flag,TIMERx(x=0..4,7,8,11) + \arg TIMER_FLAG_CH2: channel 2 flag,TIMERx(x=0..4,7) + \arg TIMER_FLAG_CH3: channel 3 flag,TIMERx(x=0..4,7) + \arg TIMER_FLAG_CMT: channel control update flag,TIMERx(x=0,7) + \arg TIMER_FLAG_TRG: trigger flag,TIMERx(x=0,7,8,11) + \arg TIMER_FLAG_BRK: break flag,TIMERx(x=0,7) + \arg TIMER_FLAG_CH0OF: channel 0 overcapture flag,TIMERx(x=0..4,7..11) + \arg TIMER_FLAG_CH1OF: channel 1 overcapture flag,TIMERx(x=0..4,7,8,11) + \arg TIMER_FLAG_CH2OF: channel 2 overcapture flag,TIMERx(x=0..4,7) + \arg TIMER_FLAG_CH3OF: channel 3 overcapture flag,TIMERx(x=0..4,7) + \param[out] none + \retval none +*/ +void timer_flag_clear(uint32_t timer_periph, uint32_t flag) +{ + TIMER_INTF(timer_periph) = (~(uint32_t)flag); +} + +/*! + \brief enable the TIMER DMA + \param[in] timer_periph: please refer to the following parameters + \param[in] dma: specify which DMA to enable + one or more parameters can be selected which is shown as below: + \arg TIMER_DMA_UPD: update DMA,TIMERx(x=0..7) + \arg TIMER_DMA_CH0D: channel 0 DMA request,TIMERx(x=0..4,7) + \arg TIMER_DMA_CH1D: channel 1 DMA request,TIMERx(x=0..4,7) + \arg TIMER_DMA_CH2D: channel 2 DMA request,TIMERx(x=0..4,7) + \arg TIMER_DMA_CH3D: channel 3 DMA request,TIMERx(x=0..4,7) + \arg TIMER_DMA_CMTD: commutation DMA request,TIMERx(x=0,7) + \arg TIMER_DMA_TRGD: trigger DMA request,TIMERx(x=0..4,7) + \param[out] none + \retval none +*/ +void timer_dma_enable(uint32_t timer_periph, uint16_t dma) +{ + TIMER_DMAINTEN(timer_periph) |= (uint32_t) dma; +} + +/*! + \brief disable the TIMER DMA + \param[in] timer_periph: please refer to the following parameters + \param[in] dma: specify which DMA to disable + one or more parameters can be selected which are shown as below: + \arg TIMER_DMA_UPD: update DMA,TIMERx(x=0..7) + \arg TIMER_DMA_CH0D: channel 0 DMA request,TIMERx(x=0..4,7) + \arg TIMER_DMA_CH1D: channel 1 DMA request,TIMERx(x=0..4,7) + \arg TIMER_DMA_CH2D: channel 2 DMA request,TIMERx(x=0..4,7) + \arg TIMER_DMA_CH3D: channel 3 DMA request,TIMERx(x=0..4,7) + \arg TIMER_DMA_CMTD: commutation DMA request ,TIMERx(x=0,7) + \arg TIMER_DMA_TRGD: trigger DMA request,TIMERx(x=0..4,7) + \param[out] none + \retval none +*/ +void timer_dma_disable(uint32_t timer_periph, uint16_t dma) +{ + TIMER_DMAINTEN(timer_periph) &= (~(uint32_t)(dma)); +} + +/*! + \brief channel DMA request source selection + \param[in] timer_periph: TIMERx(x=0..4,7) + \param[in] dma_request: channel DMA request source selection + only one parameter can be selected which is shown as below: + \arg TIMER_DMAREQUEST_CHANNELEVENT: DMA request of channel y is sent when channel y event occurs + \arg TIMER_DMAREQUEST_UPDATEEVENT: DMA request of channel y is sent when update event occurs + \param[out] none + \retval none +*/ +void timer_channel_dma_request_source_select(uint32_t timer_periph, uint8_t dma_request) +{ + if(TIMER_DMAREQUEST_UPDATEEVENT == dma_request){ + TIMER_CTL1(timer_periph) |= (uint32_t)TIMER_CTL1_DMAS; + }else if(TIMER_DMAREQUEST_CHANNELEVENT == dma_request){ + TIMER_CTL1(timer_periph) &= ~(uint32_t)TIMER_CTL1_DMAS; + }else{ + /* illegal parameters */ + } +} + +/*! + \brief configure the TIMER DMA transfer + \param[in] timer_periph: please refer to the following parameters + \param[in] dma_baseaddr: + only one parameter can be selected which is shown as below: + \arg TIMER_DMACFG_DMATA_CTL0: DMA transfer address is TIMER_CTL0,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_CTL1: DMA transfer address is TIMER_CTL1,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_SMCFG: DMA transfer address is TIMER_SMCFG,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_DMAINTEN: DMA transfer address is TIMER_DMAINTEN,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_INTF: DMA transfer address is TIMER_INTF,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_SWEVG: DMA transfer address is TIMER_SWEVG,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_CHCTL0: DMA transfer address is TIMER_CHCTL0,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_CHCTL1: DMA transfer address is TIMER_CHCTL1,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_CHCTL2: DMA transfer address is TIMER_CHCTL2,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_CNT: DMA transfer address is TIMER_CNT,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_PSC: DMA transfer address is TIMER_PSC,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_CAR: DMA transfer address is TIMER_CAR,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_CREP: DMA transfer address is TIMER_CREP,TIMERx(x=0,7) + \arg TIMER_DMACFG_DMATA_CH0CV: DMA transfer address is TIMER_CH0CV,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_CH1CV: DMA transfer address is TIMER_CH1CV,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_CH2CV: DMA transfer address is TIMER_CH2CV,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_CH3CV: DMA transfer address is TIMER_CH3CV,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_CCHP: DMA transfer address is TIMER_CCHP,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_DMACFG: DMA transfer address is TIMER_DMACFG,TIMERx(x=0..4,7) + \arg TIMER_DMACFG_DMATA_DMATB: DMA transfer address is TIMER_DMATB,TIMERx(x=0..4,7) + \param[in] dma_lenth: + only one parameter can be selected which is shown as below: + \arg TIMER_DMACFG_DMATC_xTRANSFER(x=1..18): DMA transfer x time + \param[out] none + \retval none +*/ +void timer_dma_transfer_config(uint32_t timer_periph, uint32_t dma_baseaddr, uint32_t dma_lenth) +{ + TIMER_DMACFG(timer_periph) &= (~(uint32_t)(TIMER_DMACFG_DMATA | TIMER_DMACFG_DMATC)); + TIMER_DMACFG(timer_periph) |= (uint32_t)(dma_baseaddr | dma_lenth); +} + +/*! + \brief software generate events + \param[in] timer_periph: please refer to the following parameters + \param[in] event: the timer software event generation sources + one or more parameters can be selected which are shown as below: + \arg TIMER_EVENT_SRC_UPG: update event,TIMERx(x=0..13) + \arg TIMER_EVENT_SRC_CH0G: channel 0 capture or compare event generation,TIMERx(x=0..4,7..13) + \arg TIMER_EVENT_SRC_CH1G: channel 1 capture or compare event generation,TIMERx(x=0..4,7,8,11) + \arg TIMER_EVENT_SRC_CH2G: channel 2 capture or compare event generation,TIMERx(x=0..4,7) + \arg TIMER_EVENT_SRC_CH3G: channel 3 capture or compare event generation,TIMERx(x=0..4,7) + \arg TIMER_EVENT_SRC_CMTG: channel commutation event generation,TIMERx(x=0,7) + \arg TIMER_EVENT_SRC_TRGG: trigger event generation,TIMERx(x=0..4,7,8,11) + \arg TIMER_EVENT_SRC_BRKG: break event generation,TIMERx(x=0,7) + \param[out] none + \retval none +*/ +void timer_event_software_generate(uint32_t timer_periph, uint16_t event) +{ + TIMER_SWEVG(timer_periph) |= (uint32_t)event; +} + +/*! + \brief initialize TIMER break parameter struct with a default value + \param[in] breakpara: TIMER break parameter struct + \param[out] none + \retval none +*/ +void timer_break_struct_para_init(timer_break_parameter_struct* breakpara) +{ + /* initialize the break parameter struct member with the default value */ + breakpara->runoffstate = TIMER_ROS_STATE_DISABLE; + breakpara->ideloffstate = TIMER_IOS_STATE_DISABLE; + breakpara->deadtime = 0U; + breakpara->breakpolarity = TIMER_BREAK_POLARITY_LOW; + breakpara->outputautostate = TIMER_OUTAUTO_DISABLE; + breakpara->protectmode = TIMER_CCHP_PROT_OFF; + breakpara->breakstate = TIMER_BREAK_DISABLE; +} + +/*! + \brief configure TIMER break function + \param[in] timer_periph: TIMERx(x=0,7) + \param[in] breakpara: TIMER break parameter struct + runoffstate: TIMER_ROS_STATE_ENABLE,TIMER_ROS_STATE_DISABLE + ideloffstate: TIMER_IOS_STATE_ENABLE,TIMER_IOS_STATE_DISABLE + deadtime: 0~255 + breakpolarity: TIMER_BREAK_POLARITY_LOW,TIMER_BREAK_POLARITY_HIGH + outputautostate: TIMER_OUTAUTO_ENABLE,TIMER_OUTAUTO_DISABLE + protectmode: TIMER_CCHP_PROT_OFF,TIMER_CCHP_PROT_0,TIMER_CCHP_PROT_1,TIMER_CCHP_PROT_2 + breakstate: TIMER_BREAK_ENABLE,TIMER_BREAK_DISABLE + \param[out] none + \retval none +*/ +void timer_break_config(uint32_t timer_periph, timer_break_parameter_struct* breakpara) +{ + TIMER_CCHP(timer_periph) = (uint32_t)(((uint32_t)(breakpara->runoffstate))| + ((uint32_t)(breakpara->ideloffstate))| + ((uint32_t)(breakpara->deadtime))| + ((uint32_t)(breakpara->breakpolarity))| + ((uint32_t)(breakpara->outputautostate)) | + ((uint32_t)(breakpara->protectmode))| + ((uint32_t)(breakpara->breakstate))) ; +} + +/*! + \brief enable TIMER break function + \param[in] timer_periph: TIMERx(x=0,7) + \param[out] none + \retval none +*/ +void timer_break_enable(uint32_t timer_periph) +{ + TIMER_CCHP(timer_periph) |= (uint32_t)TIMER_CCHP_BRKEN; +} + +/*! + \brief disable TIMER break function + \param[in] timer_periph: TIMERx(x=0,7) + \param[out] none + \retval none +*/ +void timer_break_disable(uint32_t timer_periph) +{ + TIMER_CCHP(timer_periph) &= ~(uint32_t)TIMER_CCHP_BRKEN; +} + +/*! + \brief enable TIMER output automatic function + \param[in] timer_periph: TIMERx(x=0,7) + \param[out] none + \retval none +*/ +void timer_automatic_output_enable(uint32_t timer_periph) +{ + TIMER_CCHP(timer_periph) |= (uint32_t)TIMER_CCHP_OAEN; +} + +/*! + \brief disable TIMER output automatic function + \param[in] timer_periph: TIMERx(x=0,7) + \param[out] none + \retval none +*/ +void timer_automatic_output_disable(uint32_t timer_periph) +{ + TIMER_CCHP(timer_periph) &= ~(uint32_t)TIMER_CCHP_OAEN; +} + +/*! + \brief configure TIMER primary output function + \param[in] timer_periph: TIMERx(x=0,7) + \param[in] newvalue: ENABLE or DISABLE + \param[out] none + \retval none +*/ +void timer_primary_output_config(uint32_t timer_periph, ControlStatus newvalue) +{ + if(ENABLE == newvalue){ + TIMER_CCHP(timer_periph) |= (uint32_t)TIMER_CCHP_POEN; + }else{ + TIMER_CCHP(timer_periph) &= (~(uint32_t)TIMER_CCHP_POEN); + } +} + +/*! + \brief enable or disable channel capture/compare control shadow register + \param[in] timer_periph: TIMERx(x=0,7) + \param[in] newvalue: ENABLE or DISABLE + \param[out] none + \retval none +*/ +void timer_channel_control_shadow_config(uint32_t timer_periph, ControlStatus newvalue) +{ + if(ENABLE == newvalue){ + TIMER_CTL1(timer_periph) |= (uint32_t)TIMER_CTL1_CCSE; + }else{ + TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_CCSE); + } +} + +/*! + \brief configure TIMER channel control shadow register update control + \param[in] timer_periph: TIMERx(x=0,7) + \param[in] ccuctl: channel control shadow register update control + only one parameter can be selected which is shown as below: + \arg TIMER_UPDATECTL_CCU: the shadow registers update by when CMTG bit is set + \arg TIMER_UPDATECTL_CCUTRI: the shadow registers update by when CMTG bit is set or an rising edge of TRGI occurs + \param[out] none + \retval none +*/ +void timer_channel_control_shadow_update_config(uint32_t timer_periph, uint8_t ccuctl) +{ + if(TIMER_UPDATECTL_CCU == ccuctl){ + TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_CCUC); + }else if(TIMER_UPDATECTL_CCUTRI == ccuctl){ + TIMER_CTL1(timer_periph) |= (uint32_t)TIMER_CTL1_CCUC; + }else{ + /* illegal parameters */ + } +} + +/*! + \brief initialize TIMER channel output parameter struct with a default value + \param[in] ocpara: TIMER channel n output parameter struct + \param[out] none + \retval none +*/ +void timer_channel_output_struct_para_init(timer_oc_parameter_struct* ocpara) +{ + /* initialize the channel output parameter struct member with the default value */ + ocpara->outputstate = (uint16_t)TIMER_CCX_DISABLE; + ocpara->outputnstate = TIMER_CCXN_DISABLE; + ocpara->ocpolarity = TIMER_OC_POLARITY_HIGH; + ocpara->ocnpolarity = TIMER_OCN_POLARITY_HIGH; + ocpara->ocidlestate = TIMER_OC_IDLE_STATE_LOW; + ocpara->ocnidlestate = TIMER_OCN_IDLE_STATE_LOW; +} + +/*! + \brief configure TIMER channel output function + \param[in] timer_periph: please refer to the following parameters + \param[in] channel: + only one parameter can be selected which is shown as below: + \arg TIMER_CH_0: TIMER channel 0(TIMERx(x=0..4,7..13)) + \arg TIMER_CH_1: TIMER channel 1(TIMERx(x=0..4,7,8,11)) + \arg TIMER_CH_2: TIMER channel 2(TIMERx(x=0..4,7)) + \arg TIMER_CH_3: TIMER channel 3(TIMERx(x=0..4,7)) + \param[in] ocpara: TIMER channeln output parameter struct + outputstate: TIMER_CCX_ENABLE,TIMER_CCX_DISABLE + outputnstate: TIMER_CCXN_ENABLE,TIMER_CCXN_DISABLE + ocpolarity: TIMER_OC_POLARITY_HIGH,TIMER_OC_POLARITY_LOW + ocnpolarity: TIMER_OCN_POLARITY_HIGH,TIMER_OCN_POLARITY_LOW + ocidlestate: TIMER_OC_IDLE_STATE_LOW,TIMER_OC_IDLE_STATE_HIGH + ocnidlestate: TIMER_OCN_IDLE_STATE_LOW,TIMER_OCN_IDLE_STATE_HIGH + \param[out] none + \retval none +*/ +void timer_channel_output_config(uint32_t timer_periph, uint16_t channel, timer_oc_parameter_struct* ocpara) +{ + switch(channel){ + /* configure TIMER_CH_0 */ + case TIMER_CH_0: + /* reset the CH0EN bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0EN); + TIMER_CHCTL0(timer_periph) &= ~(uint32_t)TIMER_CHCTL0_CH0MS; + /* set the CH0EN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)ocpara->outputstate; + /* reset the CH0P bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0P); + /* set the CH0P bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)ocpara->ocpolarity; + + if((TIMER0 == timer_periph) || (TIMER7 == timer_periph)){ + /* reset the CH0NEN bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0NEN); + /* set the CH0NEN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)ocpara->outputnstate; + /* reset the CH0NP bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0NP); + /* set the CH0NP bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)ocpara->ocnpolarity; + /* reset the ISO0 bit */ + TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_ISO0); + /* set the ISO0 bit */ + TIMER_CTL1(timer_periph) |= (uint32_t)ocpara->ocidlestate; + /* reset the ISO0N bit */ + TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_ISO0N); + /* set the ISO0N bit */ + TIMER_CTL1(timer_periph) |= (uint32_t)ocpara->ocnidlestate; + } + break; + /* configure TIMER_CH_1 */ + case TIMER_CH_1: + /* reset the CH1EN bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1EN); + TIMER_CHCTL0(timer_periph) &= ~(uint32_t)TIMER_CHCTL0_CH1MS; + /* set the CH1EN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocpara->outputstate << 4U); + /* reset the CH1P bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1P); + /* set the CH1P bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocpolarity) << 4U); + + if((TIMER0 == timer_periph) || (TIMER7 == timer_periph)){ + /* reset the CH1NEN bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1NEN); + /* set the CH1NEN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(ocpara->outputnstate) << 4U); + /* reset the CH1NP bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1NP); + /* set the CH1NP bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocnpolarity) << 4U); + /* reset the ISO1 bit */ + TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_ISO1); + /* set the ISO1 bit */ + TIMER_CTL1(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocidlestate) << 2U); + /* reset the ISO1N bit */ + TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_ISO1N); + /* set the ISO1N bit */ + TIMER_CTL1(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocnidlestate) << 2U); + } + break; + /* configure TIMER_CH_2 */ + case TIMER_CH_2: + /* reset the CH2EN bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2EN); + TIMER_CHCTL1(timer_periph) &= ~(uint32_t)TIMER_CHCTL1_CH2MS; + /* set the CH2EN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocpara->outputstate << 8U); + /* reset the CH2P bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2P); + /* set the CH2P bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocpolarity) << 8U); + + if((TIMER0 == timer_periph) || (TIMER7 == timer_periph)){ + /* reset the CH2NEN bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2NEN); + /* set the CH2NEN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(ocpara->outputnstate) << 8U); + /* reset the CH2NP bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2NP); + /* set the CH2NP bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocnpolarity) << 8U); + /* reset the ISO2 bit */ + TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_ISO2); + /* set the ISO2 bit */ + TIMER_CTL1(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocidlestate) << 4U); + /* reset the ISO2N bit */ + TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_ISO2N); + /* set the ISO2N bit */ + TIMER_CTL1(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocnidlestate) << 4U); + } + break; + /* configure TIMER_CH_3 */ + case TIMER_CH_3: + /* reset the CH3EN bit */ + TIMER_CHCTL2(timer_periph) &=(~(uint32_t)TIMER_CHCTL2_CH3EN); + TIMER_CHCTL1(timer_periph) &= ~(uint32_t)TIMER_CHCTL1_CH3MS; + /* set the CH3EN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocpara->outputstate << 12U); + /* reset the CH3P bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH3P); + /* set the CH3P bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocpolarity) << 12U); + + if((TIMER0 == timer_periph) || (TIMER7 == timer_periph)){ + /* reset the ISO3 bit */ + TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_ISO3); + /* set the ISO3 bit */ + TIMER_CTL1(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocidlestate) << 6U); + } + break; + default: + break; + } +} + +/*! + \brief configure TIMER channel output compare mode + \param[in] timer_periph: please refer to the following parameters + \param[in] channel: + only one parameter can be selected which is shown as below: + \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) + \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) + \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) + \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) + \param[in] ocmode: channel output compare mode + only one parameter can be selected which is shown as below: + \arg TIMER_OC_MODE_TIMING: timing mode + \arg TIMER_OC_MODE_ACTIVE: active mode + \arg TIMER_OC_MODE_INACTIVE: inactive mode + \arg TIMER_OC_MODE_TOGGLE: toggle mode + \arg TIMER_OC_MODE_LOW: force low mode + \arg TIMER_OC_MODE_HIGH: force high mode + \arg TIMER_OC_MODE_PWM0: PWM0 mode + \arg TIMER_OC_MODE_PWM1: PWM1 mode + \param[out] none + \retval none +*/ +void timer_channel_output_mode_config(uint32_t timer_periph, uint16_t channel, uint16_t ocmode) +{ + switch(channel){ + /* configure TIMER_CH_0 */ + case TIMER_CH_0: + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0COMCTL); + TIMER_CHCTL0(timer_periph) |= (uint32_t)ocmode; + break; + /* configure TIMER_CH_1 */ + case TIMER_CH_1: + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1COMCTL); + TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)(ocmode) << 8U); + break; + /* configure TIMER_CH_2 */ + case TIMER_CH_2: + TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH2COMCTL); + TIMER_CHCTL1(timer_periph) |= (uint32_t)ocmode; + break; + /* configure TIMER_CH_3 */ + case TIMER_CH_3: + TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH3COMCTL); + TIMER_CHCTL1(timer_periph) |= (uint32_t)((uint32_t)(ocmode) << 8U); + break; + default: + break; + } +} + +/*! + \brief configure TIMER channel output pulse value + \param[in] timer_periph: please refer to the following parameters + \param[in] channel: + only one parameter can be selected which is shown as below: + \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) + \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) + \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) + \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) + \param[in] pulse: channel output pulse value,0~65535 + \param[out] none + \retval none +*/ +void timer_channel_output_pulse_value_config(uint32_t timer_periph, uint16_t channel, uint32_t pulse) +{ + switch(channel){ + /* configure TIMER_CH_0 */ + case TIMER_CH_0: + TIMER_CH0CV(timer_periph) = (uint32_t)pulse; + break; + /* configure TIMER_CH_1 */ + case TIMER_CH_1: + TIMER_CH1CV(timer_periph) = (uint32_t)pulse; + break; + /* configure TIMER_CH_2 */ + case TIMER_CH_2: + TIMER_CH2CV(timer_periph) = (uint32_t)pulse; + break; + /* configure TIMER_CH_3 */ + case TIMER_CH_3: + TIMER_CH3CV(timer_periph) = (uint32_t)pulse; + break; + default: + break; + } +} + +/*! + \brief configure TIMER channel output shadow function + \param[in] timer_periph: please refer to the following parameters + \param[in] channel: + only one parameter can be selected which is shown as below: + \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) + \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) + \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) + \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) + \param[in] ocshadow: channel output shadow state + only one parameter can be selected which is shown as below: + \arg TIMER_OC_SHADOW_ENABLE: channel output shadow state enable + \arg TIMER_OC_SHADOW_DISABLE: channel output shadow state disable + \param[out] none + \retval none +*/ +void timer_channel_output_shadow_config(uint32_t timer_periph, uint16_t channel, uint16_t ocshadow) +{ + switch(channel){ + /* configure TIMER_CH_0 */ + case TIMER_CH_0: + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0COMSEN); + TIMER_CHCTL0(timer_periph) |= (uint32_t)ocshadow; + break; + /* configure TIMER_CH_1 */ + case TIMER_CH_1: + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1COMSEN); + TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)(ocshadow) << 8U); + break; + /* configure TIMER_CH_2 */ + case TIMER_CH_2: + TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH2COMSEN); + TIMER_CHCTL1(timer_periph) |= (uint32_t)ocshadow; + break; + /* configure TIMER_CH_3 */ + case TIMER_CH_3: + TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH3COMSEN); + TIMER_CHCTL1(timer_periph) |= (uint32_t)((uint32_t)(ocshadow) << 8U); + break; + default: + break; + } +} + +/*! + \brief configure TIMER channel output fast function + \param[in] timer_periph: please refer to the following parameters + \param[in] channel: + only one parameter can be selected which is shown as below: + \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) + \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) + \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) + \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) + \param[in] ocfast: channel output fast function + only one parameter can be selected which is shown as below: + \arg TIMER_OC_FAST_ENABLE: channel output fast function enable + \arg TIMER_OC_FAST_DISABLE: channel output fast function disable + \param[out] none + \retval none +*/ +void timer_channel_output_fast_config(uint32_t timer_periph, uint16_t channel, uint16_t ocfast) +{ + switch(channel){ + /* configure TIMER_CH_0 */ + case TIMER_CH_0: + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0COMFEN); + TIMER_CHCTL0(timer_periph) |= (uint32_t)ocfast; + break; + /* configure TIMER_CH_1 */ + case TIMER_CH_1: + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1COMFEN); + TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)ocfast << 8U); + break; + /* configure TIMER_CH_2 */ + case TIMER_CH_2: + TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH2COMFEN); + TIMER_CHCTL1(timer_periph) |= (uint32_t)ocfast; + break; + /* configure TIMER_CH_3 */ + case TIMER_CH_3: + TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH3COMFEN); + TIMER_CHCTL1(timer_periph) |= (uint32_t)((uint32_t)ocfast << 8U); + break; + default: + break; + } +} + +/*! + \brief configure TIMER channel output clear function + \param[in] timer_periph: please refer to the following parameters + \param[in] channel: + only one parameter can be selected which is shown as below: + \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7)) + \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7)) + \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) + \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) + \param[in] occlear: channel output clear function + only one parameter can be selected which is shown as below: + \arg TIMER_OC_CLEAR_ENABLE: channel output clear function enable + \arg TIMER_OC_CLEAR_DISABLE: channel output clear function disable + \param[out] none + \retval none +*/ +void timer_channel_output_clear_config(uint32_t timer_periph, uint16_t channel, uint16_t occlear) +{ + switch(channel){ + /* configure TIMER_CH_0 */ + case TIMER_CH_0: + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0COMCEN); + TIMER_CHCTL0(timer_periph) |= (uint32_t)occlear; + break; + /* configure TIMER_CH_1 */ + case TIMER_CH_1: + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1COMCEN); + TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)occlear << 8U); + break; + /* configure TIMER_CH_2 */ + case TIMER_CH_2: + TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH2COMCEN); + TIMER_CHCTL1(timer_periph) |= (uint32_t)occlear; + break; + /* configure TIMER_CH_3 */ + case TIMER_CH_3: + TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH3COMCEN); + TIMER_CHCTL1(timer_periph) |= (uint32_t)((uint32_t)occlear << 8U); + break; + default: + break; + } +} + +/*! + \brief configure TIMER channel output polarity + \param[in] timer_periph: please refer to the following parameters + \param[in] channel: + only one parameter can be selected which is shown as below: + \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) + \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) + \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) + \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) + \param[in] ocpolarity: channel output polarity + only one parameter can be selected which is shown as below: + \arg TIMER_OC_POLARITY_HIGH: channel output polarity is high + \arg TIMER_OC_POLARITY_LOW: channel output polarity is low + \param[out] none + \retval none +*/ +void timer_channel_output_polarity_config(uint32_t timer_periph, uint16_t channel, uint16_t ocpolarity) +{ + switch(channel){ + /* configure TIMER_CH_0 */ + case TIMER_CH_0: + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0P); + TIMER_CHCTL2(timer_periph) |= (uint32_t)ocpolarity; + break; + /* configure TIMER_CH_1 */ + case TIMER_CH_1: + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1P); + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocpolarity << 4U); + break; + /* configure TIMER_CH_2 */ + case TIMER_CH_2: + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2P); + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocpolarity << 8U); + break; + /* configure TIMER_CH_3 */ + case TIMER_CH_3: + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH3P); + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocpolarity << 12U); + break; + default: + break; + } +} + +/*! + \brief configure TIMER channel complementary output polarity + \param[in] timer_periph: please refer to the following parameters + \param[in] channel: + only one parameter can be selected which is shown as below: + \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) + \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) + \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) + \param[in] ocnpolarity: channel complementary output polarity + only one parameter can be selected which is shown as below: + \arg TIMER_OCN_POLARITY_HIGH: channel complementary output polarity is high + \arg TIMER_OCN_POLARITY_LOW: channel complementary output polarity is low + \param[out] none + \retval none +*/ +void timer_channel_complementary_output_polarity_config(uint32_t timer_periph, uint16_t channel, uint16_t ocnpolarity) +{ + switch(channel){ + /* configure TIMER_CH_0 */ + case TIMER_CH_0: + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0NP); + TIMER_CHCTL2(timer_periph) |= (uint32_t)ocnpolarity; + break; + /* configure TIMER_CH_1 */ + case TIMER_CH_1: + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1NP); + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocnpolarity << 4U); + break; + /* configure TIMER_CH_2 */ + case TIMER_CH_2: + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2NP); + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocnpolarity << 8U); + break; + default: + break; + } +} + +/*! + \brief configure TIMER channel enable state + \param[in] timer_periph: please refer to the following parameters + \param[in] channel: + only one parameter can be selected which is shown as below: + \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) + \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) + \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) + \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) + \param[in] state: TIMER channel enable state + only one parameter can be selected which is shown as below: + \arg TIMER_CCX_ENABLE: channel enable + \arg TIMER_CCX_DISABLE: channel disable + \param[out] none + \retval none +*/ +void timer_channel_output_state_config(uint32_t timer_periph, uint16_t channel, uint32_t state) +{ + switch(channel){ + /* configure TIMER_CH_0 */ + case TIMER_CH_0: + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0EN); + TIMER_CHCTL2(timer_periph) |= (uint32_t)state; + break; + /* configure TIMER_CH_1 */ + case TIMER_CH_1: + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1EN); + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)state << 4U); + break; + /* configure TIMER_CH_2 */ + case TIMER_CH_2: + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2EN); + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)state << 8U); + break; + /* configure TIMER_CH_3 */ + case TIMER_CH_3: + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH3EN); + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)state << 12U); + break; + default: + break; + } +} + +/*! + \brief configure TIMER channel complementary output enable state + \param[in] timer_periph: TIMERx(x=0,7) + \param[in] channel: + only one parameter can be selected which is shown as below: + \arg TIMER_CH_0: TIMER channel0 + \arg TIMER_CH_1: TIMER channel1 + \arg TIMER_CH_2: TIMER channel2 + \param[in] ocnstate: TIMER channel complementary output enable state + only one parameter can be selected which is shown as below: + \arg TIMER_CCXN_ENABLE: channel complementary enable + \arg TIMER_CCXN_DISABLE: channel complementary disable + \param[out] none + \retval none +*/ +void timer_channel_complementary_output_state_config(uint32_t timer_periph, uint16_t channel, uint16_t ocnstate) +{ + switch(channel){ + /* configure TIMER_CH_0 */ + case TIMER_CH_0: + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0NEN); + TIMER_CHCTL2(timer_periph) |= (uint32_t)ocnstate; + break; + /* configure TIMER_CH_1 */ + case TIMER_CH_1: + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1NEN); + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocnstate << 4U); + break; + /* configure TIMER_CH_2 */ + case TIMER_CH_2: + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2NEN); + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocnstate << 8U); + break; + default: + break; + } +} + +/*! + \brief initialize TIMER channel input parameter struct with a default value + \param[in] icpara: TIMER channel intput parameter struct + \param[out] none + \retval none +*/ +void timer_channel_input_struct_para_init(timer_ic_parameter_struct* icpara) +{ + /* initialize the channel input parameter struct member with the default value */ + icpara->icpolarity = TIMER_IC_POLARITY_RISING; + icpara->icselection = TIMER_IC_SELECTION_DIRECTTI; + icpara->icprescaler = TIMER_IC_PSC_DIV1; + icpara->icfilter = 0U; +} + +/*! + \brief configure TIMER input capture parameter + \param[in] timer_periph: please refer to the following parameters + \param[in] channel: + only one parameter can be selected which is shown as below: + \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) + \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) + \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) + \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) + \param[in] icpara: TIMER channel intput parameter struct + icpolarity: TIMER_IC_POLARITY_RISING,TIMER_IC_POLARITY_FALLING,TIMER_IC_POLARITY_BOTH_EDGE + icselection: TIMER_IC_SELECTION_DIRECTTI,TIMER_IC_SELECTION_INDIRECTTI,TIMER_IC_SELECTION_ITS + icprescaler: TIMER_IC_PSC_DIV1,TIMER_IC_PSC_DIV2,TIMER_IC_PSC_DIV4,TIMER_IC_PSC_DIV8 + icfilter: 0~15 + \param[out] none + \retval none +*/ +void timer_input_capture_config(uint32_t timer_periph,uint16_t channel, timer_ic_parameter_struct* icpara) +{ + switch(channel){ + /* configure TIMER_CH_0 */ + case TIMER_CH_0: + /* reset the CH0EN bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0EN); + + /* reset the CH0P and CH0NP bits */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH0P | TIMER_CHCTL2_CH0NP)); + TIMER_CHCTL2(timer_periph) |= (uint32_t)(icpara->icpolarity); + /* reset the CH0MS bit */ + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0MS); + TIMER_CHCTL0(timer_periph) |= (uint32_t)(icpara->icselection); + /* reset the CH0CAPFLT bit */ + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0CAPFLT); + TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)(icpara->icfilter) << 4U); + + /* set the CH0EN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH0EN; + break; + + /* configure TIMER_CH_1 */ + case TIMER_CH_1: + /* reset the CH1EN bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1EN); + + /* reset the CH1P and CH1NP bits */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH1P | TIMER_CHCTL2_CH1NP)); + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(icpara->icpolarity) << 4U); + /* reset the CH1MS bit */ + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1MS); + TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)(icpara->icselection) << 8U); + /* reset the CH1CAPFLT bit */ + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1CAPFLT); + TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)(icpara->icfilter) << 12U); + + /* set the CH1EN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH1EN; + break; + /* configure TIMER_CH_2 */ + case TIMER_CH_2: + /* reset the CH2EN bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2EN); + + /* reset the CH2P and CH2NP bits */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH2P|TIMER_CHCTL2_CH2NP)); + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(icpara->icpolarity) << 8U); + + /* reset the CH2MS bit */ + TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH2MS); + TIMER_CHCTL1(timer_periph) |= (uint32_t)((uint32_t)(icpara->icselection)); + + /* reset the CH2CAPFLT bit */ + TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH2CAPFLT); + TIMER_CHCTL1(timer_periph) |= (uint32_t)((uint32_t)(icpara->icfilter) << 4U); + + /* set the CH2EN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH2EN; + break; + /* configure TIMER_CH_3 */ + case TIMER_CH_3: + /* reset the CH3EN bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH3EN); + + /* reset the CH3P bits */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH3P)); + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(icpara->icpolarity) << 12U); + + /* reset the CH3MS bit */ + TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH3MS); + TIMER_CHCTL1(timer_periph) |= (uint32_t)((uint32_t)(icpara->icselection) << 8U); + + /* reset the CH3CAPFLT bit */ + TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH3CAPFLT); + TIMER_CHCTL1(timer_periph) |= (uint32_t)((uint32_t)(icpara->icfilter) << 12U); + + /* set the CH3EN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH3EN; + break; + default: + break; + } + /* configure TIMER channel input capture prescaler value */ + timer_channel_input_capture_prescaler_config(timer_periph, channel, (uint16_t)(icpara->icprescaler)); +} + +/*! + \brief configure TIMER channel input capture prescaler value + \param[in] timer_periph: please refer to the following parameters + \param[in] channel: + only one parameter can be selected which is shown as below: + \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) + \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) + \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) + \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) + \param[in] prescaler: channel input capture prescaler value + only one parameter can be selected which is shown as below: + \arg TIMER_IC_PSC_DIV1: no prescaler + \arg TIMER_IC_PSC_DIV2: divided by 2 + \arg TIMER_IC_PSC_DIV4: divided by 4 + \arg TIMER_IC_PSC_DIV8: divided by 8 + \param[out] none + \retval none +*/ +void timer_channel_input_capture_prescaler_config(uint32_t timer_periph, uint16_t channel, uint16_t prescaler) +{ + switch(channel){ + /* configure TIMER_CH_0 */ + case TIMER_CH_0: + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0CAPPSC); + TIMER_CHCTL0(timer_periph) |= (uint32_t)prescaler; + break; + /* configure TIMER_CH_1 */ + case TIMER_CH_1: + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1CAPPSC); + TIMER_CHCTL0(timer_periph) |= ((uint32_t)prescaler << 8U); + break; + /* configure TIMER_CH_2 */ + case TIMER_CH_2: + TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH2CAPPSC); + TIMER_CHCTL1(timer_periph) |= (uint32_t)prescaler; + break; + /* configure TIMER_CH_3 */ + case TIMER_CH_3: + TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH3CAPPSC); + TIMER_CHCTL1(timer_periph) |= ((uint32_t)prescaler << 8U); + break; + default: + break; + } +} + +/*! + \brief read TIMER channel capture compare register value + \param[in] timer_periph: please refer to the following parameters + \param[in] channel: + only one parameter can be selected which is shown as below: + \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) + \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) + \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) + \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) + \param[out] none + \retval channel capture compare register value +*/ +uint32_t timer_channel_capture_value_register_read(uint32_t timer_periph, uint16_t channel) +{ + uint32_t count_value = 0U; + + switch(channel){ + /* read TIMER channel 0 capture compare register value */ + case TIMER_CH_0: + count_value = TIMER_CH0CV(timer_periph); + break; + /* read TIMER channel 1 capture compare register value */ + case TIMER_CH_1: + count_value = TIMER_CH1CV(timer_periph); + break; + /* read TIMER channel 2 capture compare register value */ + case TIMER_CH_2: + count_value = TIMER_CH2CV(timer_periph); + break; + /* read TIMER channel 3 capture compare register value */ + case TIMER_CH_3: + count_value = TIMER_CH3CV(timer_periph); + break; + default: + break; + } + return (count_value); +} + +/*! + \brief configure TIMER input pwm capture function + \param[in] timer_periph: TIMERx(x=0..4,7,8,11) + \param[in] channel: + only one parameter can be selected which is shown as below: + \arg TIMER_CH_0: TIMER channel0 + \arg TIMER_CH_1: TIMER channel1 + \param[in] icpwm:TIMER channel intput pwm parameter struct + icpolarity: TIMER_IC_POLARITY_RISING,TIMER_IC_POLARITY_FALLING + icselection: TIMER_IC_SELECTION_DIRECTTI,TIMER_IC_SELECTION_INDIRECTTI + icprescaler: TIMER_IC_PSC_DIV1,TIMER_IC_PSC_DIV2,TIMER_IC_PSC_DIV4,TIMER_IC_PSC_DIV8 + icfilter: 0~15 + \param[out] none + \retval none +*/ +void timer_input_pwm_capture_config(uint32_t timer_periph, uint16_t channel, timer_ic_parameter_struct* icpwm) +{ + uint16_t icpolarity = 0x0U; + uint16_t icselection = 0x0U; + + /* Set channel input polarity */ + if(TIMER_IC_POLARITY_RISING == icpwm->icpolarity){ + icpolarity = TIMER_IC_POLARITY_FALLING; + }else{ + icpolarity = TIMER_IC_POLARITY_RISING; + } + + /* Set channel input mode selection */ + if(TIMER_IC_SELECTION_DIRECTTI == icpwm->icselection){ + icselection = TIMER_IC_SELECTION_INDIRECTTI; + }else{ + icselection = TIMER_IC_SELECTION_DIRECTTI; + } + + if(TIMER_CH_0 == channel){ + /* reset the CH0EN bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0EN); + /* reset the CH0P and CH0NP bits */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH0P|TIMER_CHCTL2_CH0NP)); + /* set the CH0P and CH0NP bits */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)(icpwm->icpolarity); + /* reset the CH0MS bit */ + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0MS); + /* set the CH0MS bit */ + TIMER_CHCTL0(timer_periph) |= (uint32_t)(icpwm->icselection); + /* reset the CH0CAPFLT bit */ + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0CAPFLT); + /* set the CH0CAPFLT bit */ + TIMER_CHCTL0(timer_periph) |= ((uint32_t)(icpwm->icfilter) << 4U); + /* set the CH0EN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH0EN; + /* configure TIMER channel input capture prescaler value */ + timer_channel_input_capture_prescaler_config(timer_periph,TIMER_CH_0,(uint16_t)(icpwm->icprescaler)); + + /* reset the CH1EN bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1EN); + /* reset the CH1P and CH1NP bits */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH1P|TIMER_CHCTL2_CH1NP)); + /* set the CH1P and CH1NP bits */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)icpolarity << 4U); + /* reset the CH1MS bit */ + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1MS); + /* set the CH1MS bit */ + TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)icselection << 8U); + /* reset the CH1CAPFLT bit */ + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1CAPFLT); + /* set the CH1CAPFLT bit */ + TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)(icpwm->icfilter) << 12U); + /* set the CH1EN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH1EN; + /* configure TIMER channel input capture prescaler value */ + timer_channel_input_capture_prescaler_config(timer_periph,TIMER_CH_1,(uint16_t)(icpwm->icprescaler)); + }else{ + /* reset the CH1EN bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1EN); + /* reset the CH1P and CH1NP bits */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH1P|TIMER_CHCTL2_CH1NP)); + /* set the CH1P and CH1NP bits */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(icpwm->icpolarity) << 4U); + /* reset the CH1MS bit */ + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1MS); + /* set the CH1MS bit */ + TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)(icpwm->icselection) << 8U); + /* reset the CH1CAPFLT bit */ + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1CAPFLT); + /* set the CH1CAPFLT bit */ + TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)(icpwm->icfilter) << 12U); + /* set the CH1EN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH1EN; + /* configure TIMER channel input capture prescaler value */ + timer_channel_input_capture_prescaler_config(timer_periph, TIMER_CH_1, (uint16_t)(icpwm->icprescaler)); + + /* reset the CH0EN bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0EN); + /* reset the CH0P and CH0NP bits */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH0P|TIMER_CHCTL2_CH0NP)); + /* set the CH0P and CH0NP bits */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)icpolarity; + /* reset the CH0MS bit */ + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0MS); + /* set the CH0MS bit */ + TIMER_CHCTL0(timer_periph) |= (uint32_t)icselection; + /* reset the CH0CAPFLT bit */ + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0CAPFLT); + /* set the CH0CAPFLT bit */ + TIMER_CHCTL0(timer_periph) |= ((uint32_t)(icpwm->icfilter) << 4U); + /* set the CH0EN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH0EN; + /* configure TIMER channel input capture prescaler value */ + timer_channel_input_capture_prescaler_config(timer_periph, TIMER_CH_0, (uint16_t)(icpwm->icprescaler)); + } +} + +/*! + \brief configure TIMER hall sensor mode + \param[in] timer_periph: TIMERx(x=0..4,7) + \param[in] hallmode: + only one parameter can be selected which is shown as below: + \arg TIMER_HALLINTERFACE_ENABLE: TIMER hall sensor mode enable + \arg TIMER_HALLINTERFACE_DISABLE: TIMER hall sensor mode disable + \param[out] none + \retval none +*/ +void timer_hall_mode_config(uint32_t timer_periph, uint32_t hallmode) +{ + if(TIMER_HALLINTERFACE_ENABLE == hallmode){ + TIMER_CTL1(timer_periph) |= (uint32_t)TIMER_CTL1_TI0S; + }else if(TIMER_HALLINTERFACE_DISABLE == hallmode){ + TIMER_CTL1(timer_periph) &= ~(uint32_t)TIMER_CTL1_TI0S; + }else{ + /* illegal parameters */ + } +} + +/*! + \brief select TIMER input trigger source + \param[in] timer_periph: please refer to the following parameters + \param[in] intrigger: + only one parameter can be selected which is shown as below: + \arg TIMER_SMCFG_TRGSEL_ITI0: internal trigger 0(TIMERx(x=0..4,7,8,11)) + \arg TIMER_SMCFG_TRGSEL_ITI1: internal trigger 1(TIMERx(x=0..4,7,8,11)) + \arg TIMER_SMCFG_TRGSEL_ITI2: internal trigger 2(TIMERx(x=0..4,7,8,11)) + \arg TIMER_SMCFG_TRGSEL_ITI3: internal trigger 3(TIMERx(x=0..4,7,8,11)) + \arg TIMER_SMCFG_TRGSEL_CI0F_ED: TI0 edge detector(TIMERx(x=0..4,7,8,11)) + \arg TIMER_SMCFG_TRGSEL_CI0FE0: filtered TIMER input 0(TIMERx(x=0..4,7,8,11)) + \arg TIMER_SMCFG_TRGSEL_CI1FE1: filtered TIMER input 1(TIMERx(x=0..4,7,8,11)) + \arg TIMER_SMCFG_TRGSEL_ETIFP: external trigger(TIMERx(x=0..4,7,8,11)) + \param[out] none + \retval none +*/ +void timer_input_trigger_source_select(uint32_t timer_periph, uint32_t intrigger) +{ + TIMER_SMCFG(timer_periph) &= (~(uint32_t)TIMER_SMCFG_TRGS); + TIMER_SMCFG(timer_periph) |= (uint32_t)intrigger; +} + +/*! + \brief select TIMER master mode output trigger source + \param[in] timer_periph: TIMERx(x=0..7) + \param[in] outrigger: + only one parameter can be selected which is shown as below: + \arg TIMER_TRI_OUT_SRC_RESET: the UPG bit as trigger output(TIMERx(x=0..7,9,10,12,13)) + \arg TIMER_TRI_OUT_SRC_ENABLE: the counter enable signal TIMER_CTL0_CEN as trigger output(TIMERx(x=0..7,9,10,12,13)) + \arg TIMER_TRI_OUT_SRC_UPDATE: update event as trigger output(TIMERx(x=0..7,9,10,12,13)) + \arg TIMER_TRI_OUT_SRC_CH0: a capture or a compare match occurred in channal0 as trigger output TRGO(TIMERx(x=0..4,7,9,10,12,13)) + \arg TIMER_TRI_OUT_SRC_O0CPRE: O0CPRE as trigger output(TIMERx(x=0..4,7,9,10,12,13)) + \arg TIMER_TRI_OUT_SRC_O1CPRE: O1CPRE as trigger output(TIMERx(x=0..4,7)) + \arg TIMER_TRI_OUT_SRC_O2CPRE: O2CPRE as trigger output(TIMERx(x=0..4,7)) + \arg TIMER_TRI_OUT_SRC_O3CPRE: O3CPRE as trigger output(TIMERx(x=0..4,7)) + \param[out] none + \retval none +*/ +void timer_master_output_trigger_source_select(uint32_t timer_periph, uint32_t outrigger) +{ + TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_MMC); + TIMER_CTL1(timer_periph) |= (uint32_t)outrigger; +} + +/*! + \brief select TIMER slave mode + \param[in] timer_periph: TIMERx(x=0..4,7,8,11) + \param[in] slavemode: + only one parameter can be selected which is shown as below: + \arg TIMER_SLAVE_MODE_DISABLE: slave mode disable(TIMERx(x=0..4,7,8,11)) + \arg TIMER_ENCODER_MODE0: encoder mode 0(TIMERx(x=0..4,7)) + \arg TIMER_ENCODER_MODE1: encoder mode 1(TIMERx(x=0..4,7)) + \arg TIMER_ENCODER_MODE2: encoder mode 2(TIMERx(x=0..4,7)) + \arg TIMER_SLAVE_MODE_RESTART: restart mode(TIMERx(x=0..4,7,8,11)) + \arg TIMER_SLAVE_MODE_PAUSE: pause mode(TIMERx(x=0..4,7,8,11)) + \arg TIMER_SLAVE_MODE_EVENT: event mode(TIMERx(x=0..4,7,8,11)) + \arg TIMER_SLAVE_MODE_EXTERNAL0: external clock mode 0.(TIMERx(x=0..4,7,8,11)) + \param[out] none + \retval none +*/ + +void timer_slave_mode_select(uint32_t timer_periph, uint32_t slavemode) +{ + TIMER_SMCFG(timer_periph) &= (~(uint32_t)TIMER_SMCFG_SMC); + + TIMER_SMCFG(timer_periph) |= (uint32_t)slavemode; +} + +/*! + \brief configure TIMER master slave mode + \param[in] timer_periph: TIMERx(x=0..4,7,8,11) + \param[in] masterslave: + only one parameter can be selected which is shown as below: + \arg TIMER_MASTER_SLAVE_MODE_ENABLE: master slave mode enable + \arg TIMER_MASTER_SLAVE_MODE_DISABLE: master slave mode disable + \param[out] none + \retval none +*/ +void timer_master_slave_mode_config(uint32_t timer_periph, uint32_t masterslave) +{ + if(TIMER_MASTER_SLAVE_MODE_ENABLE == masterslave){ + TIMER_SMCFG(timer_periph) |= (uint32_t)TIMER_SMCFG_MSM; + }else if(TIMER_MASTER_SLAVE_MODE_DISABLE == masterslave){ + TIMER_SMCFG(timer_periph) &= ~(uint32_t)TIMER_SMCFG_MSM; + }else{ + /* illegal parameters */ + } +} + +/*! + \brief configure TIMER external trigger input + \param[in] timer_periph: TIMERx(x=0..4,7) + \param[in] extprescaler: + only one parameter can be selected which is shown as below: + \arg TIMER_EXT_TRI_PSC_OFF: no divided + \arg TIMER_EXT_TRI_PSC_DIV2: divided by 2 + \arg TIMER_EXT_TRI_PSC_DIV4: divided by 4 + \arg TIMER_EXT_TRI_PSC_DIV8: divided by 8 + \param[in] extpolarity: + only one parameter can be selected which is shown as below: + \arg TIMER_ETP_FALLING: active low or falling edge active + \arg TIMER_ETP_RISING: active high or rising edge active + \param[in] extfilter: a value between 0 and 15 + \param[out] none + \retval none +*/ +void timer_external_trigger_config(uint32_t timer_periph, uint32_t extprescaler, + uint32_t extpolarity, uint32_t extfilter) +{ + TIMER_SMCFG(timer_periph) &= (~(uint32_t)(TIMER_SMCFG_ETP | TIMER_SMCFG_ETPSC | TIMER_SMCFG_ETFC)); + TIMER_SMCFG(timer_periph) |= (uint32_t)(extprescaler | extpolarity); + TIMER_SMCFG(timer_periph) |= (uint32_t)(extfilter << 8U); +} + +/*! + \brief configure TIMER quadrature decoder mode + \param[in] timer_periph: TIMERx(x=0..4,7,8,11) + \param[in] decomode: + only one parameter can be selected which is shown as below: + \arg TIMER_ENCODER_MODE0: counter counts on CI0FE0 edge depending on CI1FE1 level + \arg TIMER_ENCODER_MODE1: counter counts on CI1FE1 edge depending on CI0FE0 level + \arg TIMER_ENCODER_MODE2: counter counts on both CI0FE0 and CI1FE1 edges depending on the level of the other input + \param[in] ic0polarity: + only one parameter can be selected which is shown as below: + \arg TIMER_IC_POLARITY_RISING: capture rising edge + \arg TIMER_IC_POLARITY_FALLING: capture falling edge + \param[in] ic1polarity: + only one parameter can be selected which is shown as below: + \arg TIMER_IC_POLARITY_RISING: capture rising edge + \arg TIMER_IC_POLARITY_FALLING: capture falling edge + \param[out] none + \retval none +*/ +void timer_quadrature_decoder_mode_config(uint32_t timer_periph, uint32_t decomode, + uint16_t ic0polarity, uint16_t ic1polarity) +{ + TIMER_SMCFG(timer_periph) &= (~(uint32_t)TIMER_SMCFG_SMC); + TIMER_SMCFG(timer_periph) |= (uint32_t)decomode; + + TIMER_CHCTL0(timer_periph) &= (uint32_t)(((~(uint32_t)TIMER_CHCTL0_CH0MS))&((~(uint32_t)TIMER_CHCTL0_CH1MS))); + TIMER_CHCTL0(timer_periph) |= (uint32_t)(TIMER_IC_SELECTION_DIRECTTI|((uint32_t)TIMER_IC_SELECTION_DIRECTTI << 8U)); + + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH0P|TIMER_CHCTL2_CH0NP)); + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH1P|TIMER_CHCTL2_CH1NP)); + TIMER_CHCTL2(timer_periph) |= ((uint32_t)ic0polarity|((uint32_t)ic1polarity << 4U)); +} + +/*! + \brief configure TIMER internal clock mode + \param[in] timer_periph: TIMERx(x=0..4,7,8,11) + \param[out] none + \retval none +*/ +void timer_internal_clock_config(uint32_t timer_periph) +{ + TIMER_SMCFG(timer_periph) &= ~(uint32_t)TIMER_SMCFG_SMC; +} + +/*! + \brief configure TIMER the internal trigger as external clock input + \param[in] timer_periph: TIMERx(x=0..4,7,8,11) + \param[in] intrigger: + only one parameter can be selected which is shown as below: + \arg TIMER_SMCFG_TRGSEL_ITI0: internal trigger 0 + \arg TIMER_SMCFG_TRGSEL_ITI1: internal trigger 1 + \arg TIMER_SMCFG_TRGSEL_ITI2: internal trigger 2 + \arg TIMER_SMCFG_TRGSEL_ITI3: internal trigger 3 + \param[out] none + \retval none +*/ +void timer_internal_trigger_as_external_clock_config(uint32_t timer_periph, uint32_t intrigger) +{ + timer_input_trigger_source_select(timer_periph, intrigger); + TIMER_SMCFG(timer_periph) &= ~(uint32_t)TIMER_SMCFG_SMC; + TIMER_SMCFG(timer_periph) |= (uint32_t)TIMER_SLAVE_MODE_EXTERNAL0; +} + +/*! + \brief configure TIMER the external trigger as external clock input + \param[in] timer_periph: TIMERx(x=0..4,7,8,11) + \param[in] extrigger: + only one parameter can be selected which is shown as below: + \arg TIMER_SMCFG_TRGSEL_CI0F_ED: TI0 edge detector + \arg TIMER_SMCFG_TRGSEL_CI0FE0: filtered TIMER input 0 + \arg TIMER_SMCFG_TRGSEL_CI1FE1: filtered TIMER input 1 + \param[in] extpolarity: + only one parameter can be selected which is shown as below: + \arg TIMER_IC_POLARITY_RISING: active high or rising edge active + \arg TIMER_IC_POLARITY_FALLING: active low or falling edge active + \param[in] extfilter: a value between 0 and 15 + \param[out] none + \retval none +*/ +void timer_external_trigger_as_external_clock_config(uint32_t timer_periph, uint32_t extrigger, + uint16_t extpolarity, uint32_t extfilter) +{ + if(TIMER_SMCFG_TRGSEL_CI1FE1 == extrigger){ + /* reset the CH1EN bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1EN); + /* reset the CH1NP bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH1P|TIMER_CHCTL2_CH1NP)); + /* set the CH1NP bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)extpolarity << 4U); + /* reset the CH1MS bit */ + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1MS); + /* set the CH1MS bit */ + TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)TIMER_IC_SELECTION_DIRECTTI << 8U); + /* reset the CH1CAPFLT bit */ + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1CAPFLT); + /* set the CH1CAPFLT bit */ + TIMER_CHCTL0(timer_periph) |= (uint32_t)(extfilter << 12U); + /* set the CH1EN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH1EN; + }else{ + /* reset the CH0EN bit */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0EN); + /* reset the CH0P and CH0NP bits */ + TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH0P|TIMER_CHCTL2_CH0NP)); + /* set the CH0P and CH0NP bits */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)extpolarity; + /* reset the CH0MS bit */ + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0MS); + /* set the CH0MS bit */ + TIMER_CHCTL0(timer_periph) |= (uint32_t)TIMER_IC_SELECTION_DIRECTTI; + /* reset the CH0CAPFLT bit */ + TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0CAPFLT); + /* reset the CH0CAPFLT bit */ + TIMER_CHCTL0(timer_periph) |= (uint32_t)(extfilter << 4U); + /* set the CH0EN bit */ + TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH0EN; + } + /* select TIMER input trigger source */ + timer_input_trigger_source_select(timer_periph,extrigger); + /* reset the SMC bit */ + TIMER_SMCFG(timer_periph) &= (~(uint32_t)TIMER_SMCFG_SMC); + /* set the SMC bit */ + TIMER_SMCFG(timer_periph) |= (uint32_t)TIMER_SLAVE_MODE_EXTERNAL0; +} + +/*! + \brief configure TIMER the external clock mode0 + \param[in] timer_periph: TIMERx(x=0..4,7,8,11) + \param[in] extprescaler: + only one parameter can be selected which is shown as below: + \arg TIMER_EXT_TRI_PSC_OFF: no divided + \arg TIMER_EXT_TRI_PSC_DIV2: divided by 2 + \arg TIMER_EXT_TRI_PSC_DIV4: divided by 4 + \arg TIMER_EXT_TRI_PSC_DIV8: divided by 8 + \param[in] extpolarity: + only one parameter can be selected which is shown as below: + \arg TIMER_ETP_FALLING: active low or falling edge active + \arg TIMER_ETP_RISING: active high or rising edge active + \param[in] extfilter: a value between 0 and 15 + \param[out] none + \retval none +*/ +void timer_external_clock_mode0_config(uint32_t timer_periph, uint32_t extprescaler, + uint32_t extpolarity, uint32_t extfilter) +{ + /* configure TIMER external trigger input */ + timer_external_trigger_config(timer_periph, extprescaler, extpolarity, extfilter); + + /* reset the SMC bit,TRGS bit */ + TIMER_SMCFG(timer_periph) &= (~(uint32_t)(TIMER_SMCFG_SMC | TIMER_SMCFG_TRGS)); + /* set the SMC bit,TRGS bit */ + TIMER_SMCFG(timer_periph) |= (uint32_t)(TIMER_SLAVE_MODE_EXTERNAL0 | TIMER_SMCFG_TRGSEL_ETIFP); +} + +/*! + \brief configure TIMER the external clock mode1 + \param[in] timer_periph: TIMERx(x=0..4,7) + \param[in] extprescaler: + only one parameter can be selected which is shown as below: + \arg TIMER_EXT_TRI_PSC_OFF: no divided + \arg TIMER_EXT_TRI_PSC_DIV2: divided by 2 + \arg TIMER_EXT_TRI_PSC_DIV4: divided by 4 + \arg TIMER_EXT_TRI_PSC_DIV8: divided by 8 + \param[in] extpolarity: + only one parameter can be selected which is shown as below: + \arg TIMER_ETP_FALLING: active low or falling edge active + \arg TIMER_ETP_RISING: active high or rising edge active + \param[in] extfilter: a value between 0 and 15 + \param[out] none + \retval none +*/ +void timer_external_clock_mode1_config(uint32_t timer_periph, uint32_t extprescaler, + uint32_t extpolarity, uint32_t extfilter) +{ + /* configure TIMER external trigger input */ + timer_external_trigger_config(timer_periph, extprescaler, extpolarity, extfilter); + + TIMER_SMCFG(timer_periph) |= (uint32_t)TIMER_SMCFG_SMC1; +} + +/*! + \brief disable TIMER the external clock mode1 + \param[in] timer_periph: TIMERx(x=0..4,7) + \param[out] none + \retval none +*/ +void timer_external_clock_mode1_disable(uint32_t timer_periph) +{ + TIMER_SMCFG(timer_periph) &= ~(uint32_t)TIMER_SMCFG_SMC1; +} + +/*! + \brief configure TIMER channel remap function + \param[in] timer_periph: TIMERx(x=1,4,10) + \param[in] remap: + only one parameter can be selected which is shown as below: + \arg TIMER1_ITI1_RMP_TIMER7_TRGO: timer1 internal trigger input1 remap to TIMER7_TRGO + \arg TIMER1_ITI1_RMP_ETHERNET_PTP: timer1 internal trigger input1 remap to ethernet PTP + \arg TIMER1_ITI1_RMP_USB_FS_SOF: timer1 internal trigger input1 remap to USB FS SOF + \arg TIMER1_ITI1_RMP_USB_HS_SOF: timer1 internal trigger input1 remap to USB HS SOF + \arg TIMER4_CI3_RMP_GPIO: timer4 channel 3 input remap to GPIO pin + \arg TIMER4_CI3_RMP_IRC32K: timer4 channel 3 input remap to IRC32K + \arg TIMER4_CI3_RMP_LXTAL: timer4 channel 3 input remap to LXTAL + \arg TIMER4_CI3_RMP_RTC_WAKEUP_INT: timer4 channel 3 input remap to RTC wakeup interrupt + \arg TIMER10_ITI1_RMP_GPIO: timer10 internal trigger input1 remap based on GPIO setting + \arg TIMER10_ITI1_RMP_RTC_HXTAL_DIV: timer10 internal trigger input1 remap HXTAL _DIV(clock used for RTC which is HXTAL clock divided by RTCDIV bits in RCU_CFG0 register) + \param[out] none + \retval none +*/ +void timer_channel_remap_config(uint32_t timer_periph, uint32_t remap) +{ + TIMER_IRMP(timer_periph) = (uint32_t)remap; +} + +/*! + \brief configure TIMER write CHxVAL register selection + \param[in] timer_periph: TIMERx(x=0,1,2,13,14,15,16) + \param[in] ccsel: + only one parameter can be selected which is shown as below: + \arg TIMER_CHVSEL_DISABLE: no effect + \arg TIMER_CHVSEL_ENABLE: when write the CHxVAL register, if the write value is same as the CHxVAL value, the write access is ignored + \param[out] none + \retval none +*/ +void timer_write_chxval_register_config(uint32_t timer_periph, uint16_t ccsel) +{ + if(TIMER_CHVSEL_ENABLE == ccsel){ + TIMER_CFG(timer_periph) |= (uint32_t)TIMER_CFG_CHVSEL; + }else if(TIMER_CHVSEL_DISABLE == ccsel){ + TIMER_CFG(timer_periph) &= ~(uint32_t)TIMER_CFG_CHVSEL; + }else{ + /* illegal parameters */ + } +} + +/*! + \brief configure TIMER output value selection + \param[in] timer_periph: TIMERx(x=0,7) + \param[in] outsel: + only one parameter can be selected which is shown as below: + \arg TIMER_OUTSEL_DISABLE: no effect + \arg TIMER_OUTSEL_ENABLE: if POEN and IOS is 0, the output disabled + \param[out] none + \retval none +*/ +void timer_output_value_selection_config(uint32_t timer_periph, uint16_t outsel) +{ + if(TIMER_OUTSEL_ENABLE == outsel){ + TIMER_CFG(timer_periph) |= (uint32_t)TIMER_CFG_OUTSEL; + }else if(TIMER_OUTSEL_DISABLE == outsel){ + TIMER_CFG(timer_periph) &= ~(uint32_t)TIMER_CFG_OUTSEL; + }else{ + /* illegal parameters */ + } +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_tli.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_tli.c new file mode 100644 index 0000000000..b65e283675 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_tli.c @@ -0,0 +1,598 @@ +/*! + \file gd32f4xx_tli.c + \brief TLI driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_tli.h" + +#define TLI_DEFAULT_VALUE 0x00000000U +#define TLI_OPAQUE_VALUE 0x000000FFU + +/*! + \brief deinitialize TLI registers + \param[in] none + \param[out] none + \retval none +*/ +void tli_deinit(void) +{ + rcu_periph_reset_enable(RCU_TLIRST); + rcu_periph_reset_disable(RCU_TLIRST); +} + +/*! + \brief initialize the parameters of TLI parameter structure with the default values, it is suggested + that call this function after a tli_parameter_struct structure is defined + \param[in] none + \param[out] tli_struct: the data needed to initialize TLI + synpsz_vpsz: size of the vertical synchronous pulse + synpsz_hpsz: size of the horizontal synchronous pulse + backpsz_vbpsz: size of the vertical back porch plus synchronous pulse + backpsz_hbpsz: size of the horizontal back porch plus synchronous pulse + activesz_vasz: size of the vertical active area width plus back porch and synchronous pulse + activesz_hasz: size of the horizontal active area width plus back porch and synchronous pulse + totalsz_vtsz: vertical total size of the display, including active area, back porch, synchronous + totalsz_htsz: vorizontal total size of the display, including active area, back porch, synchronous + backcolor_red: background value red + backcolor_green: background value green + backcolor_blue: background value blue + signalpolarity_hs: TLI_HSYN_ACTLIVE_LOW,TLI_HSYN_ACTLIVE_HIGHT + signalpolarity_vs: TLI_VSYN_ACTLIVE_LOW,TLI_VSYN_ACTLIVE_HIGHT + signalpolarity_de: TLI_DE_ACTLIVE_LOW,TLI_DE_ACTLIVE_HIGHT + signalpolarity_pixelck: TLI_PIXEL_CLOCK_TLI,TLI_PIXEL_CLOCK_INVERTEDTLI + \retval none +*/ +void tli_struct_para_init(tli_parameter_struct *tli_struct) +{ + /* initialize the struct parameters with default values */ + tli_struct->synpsz_vpsz = TLI_DEFAULT_VALUE; + tli_struct->synpsz_hpsz = TLI_DEFAULT_VALUE; + tli_struct->backpsz_vbpsz = TLI_DEFAULT_VALUE; + tli_struct->backpsz_hbpsz = TLI_DEFAULT_VALUE; + tli_struct->activesz_vasz = TLI_DEFAULT_VALUE; + tli_struct->activesz_hasz = TLI_DEFAULT_VALUE; + tli_struct->totalsz_vtsz = TLI_DEFAULT_VALUE; + tli_struct->totalsz_htsz = TLI_DEFAULT_VALUE; + tli_struct->backcolor_red = TLI_DEFAULT_VALUE; + tli_struct->backcolor_green = TLI_DEFAULT_VALUE; + tli_struct->backcolor_blue = TLI_DEFAULT_VALUE; + tli_struct->signalpolarity_hs = TLI_HSYN_ACTLIVE_LOW; + tli_struct->signalpolarity_vs = TLI_VSYN_ACTLIVE_LOW; + tli_struct->signalpolarity_de = TLI_DE_ACTLIVE_LOW; + tli_struct->signalpolarity_pixelck = TLI_PIXEL_CLOCK_TLI; +} + +/*! + \brief initialize TLI display timing parameters + \param[in] tli_struct: the data needed to initialize TLI + synpsz_vpsz: size of the vertical synchronous pulse + synpsz_hpsz: size of the horizontal synchronous pulse + backpsz_vbpsz: size of the vertical back porch plus synchronous pulse + backpsz_hbpsz: size of the horizontal back porch plus synchronous pulse + activesz_vasz: size of the vertical active area width plus back porch and synchronous pulse + activesz_hasz: size of the horizontal active area width plus back porch and synchronous pulse + totalsz_vtsz: vertical total size of the display, including active area, back porch, synchronous + totalsz_htsz: vorizontal total size of the display, including active area, back porch, synchronous + backcolor_red: background value red + backcolor_green: background value green + backcolor_blue: background value blue + signalpolarity_hs: TLI_HSYN_ACTLIVE_LOW,TLI_HSYN_ACTLIVE_HIGHT + signalpolarity_vs: TLI_VSYN_ACTLIVE_LOW,TLI_VSYN_ACTLIVE_HIGHT + signalpolarity_de: TLI_DE_ACTLIVE_LOW,TLI_DE_ACTLIVE_HIGHT + signalpolarity_pixelck: TLI_PIXEL_CLOCK_TLI,TLI_PIXEL_CLOCK_INVERTEDTLI + \param[out] none + \retval none +*/ +void tli_init(tli_parameter_struct *tli_struct) +{ + /* synchronous pulse size configuration */ + TLI_SPSZ &= ~(TLI_SPSZ_VPSZ|TLI_SPSZ_HPSZ); + TLI_SPSZ = (uint32_t)((uint32_t)tli_struct->synpsz_vpsz|((uint32_t)tli_struct->synpsz_hpsz<<16U)); + /* back-porch size configuration */ + TLI_BPSZ &= ~(TLI_BPSZ_VBPSZ|TLI_BPSZ_HBPSZ); + TLI_BPSZ = (uint32_t)((uint32_t)tli_struct->backpsz_vbpsz|((uint32_t)tli_struct->backpsz_hbpsz<<16U)); + /* active size configuration */ + TLI_ASZ &= ~(TLI_ASZ_VASZ|TLI_ASZ_HASZ); + TLI_ASZ = (tli_struct->activesz_vasz|(tli_struct->activesz_hasz<<16U)); + /* total size configuration */ + TLI_TSZ &= ~(TLI_TSZ_VTSZ|TLI_TSZ_HTSZ); + TLI_TSZ = (tli_struct->totalsz_vtsz|(tli_struct->totalsz_htsz<<16U)); + /* background color configuration */ + TLI_BGC &= ~(TLI_BGC_BVB|(TLI_BGC_BVG)|(TLI_BGC_BVR)); + TLI_BGC = (tli_struct->backcolor_blue|(tli_struct->backcolor_green<<8U)|(tli_struct->backcolor_red<<16U)); + TLI_CTL &= ~(TLI_CTL_HPPS|TLI_CTL_VPPS|TLI_CTL_DEPS|TLI_CTL_CLKPS); + TLI_CTL |= (tli_struct->signalpolarity_hs|tli_struct->signalpolarity_vs|\ + tli_struct->signalpolarity_de|tli_struct->signalpolarity_pixelck); + +} + +/*! + \brief configure TLI dither function + \param[in] dither_stat + only one parameter can be selected which is shown as below: + \arg TLI_DITHER_ENABLE + \arg TLI_DITHER_DISABLE + \param[out] none + \retval none +*/ +void tli_dither_config(uint8_t dither_stat) +{ + if(TLI_DITHER_ENABLE == dither_stat){ + TLI_CTL |= TLI_CTL_DFEN; + }else{ + TLI_CTL &= ~(TLI_CTL_DFEN); + } +} + +/*! + \brief enable TLI + \param[in] none + \param[out] none + \retval none +*/ +void tli_enable(void) +{ + TLI_CTL |= TLI_CTL_TLIEN; +} + +/*! + \brief disable TLI + \param[in] none + \param[out] none + \retval none +*/ +void tli_disable(void) +{ + TLI_CTL &= ~(TLI_CTL_TLIEN); +} + +/*! + \brief configure TLI reload mode + \param[in] reload_mod + only one parameter can be selected which is shown as below: + \arg TLI_FRAME_BLANK_RELOAD_EN + \arg TLI_REQUEST_RELOAD_EN + \param[out] none + \retval none +*/ +void tli_reload_config(uint8_t reload_mod) +{ + if(TLI_FRAME_BLANK_RELOAD_EN == reload_mod){ + /* the layer configuration will be reloaded at frame blank */ + TLI_RL |= TLI_RL_FBR; + }else{ + /* the layer configuration will be reloaded after this bit sets */ + TLI_RL |= TLI_RL_RQR; + } +} + +/*! + \brief initialize the parameters of TLI layer structure with the default values, it is suggested + that call this function after a tli_layer_parameter_struct structure is defined + \param[in] none + \param[out] layer_struct: TLI Layer parameter struct + layer_window_rightpos: window right position + layer_window_leftpos: window left position + layer_window_bottompos: window bottom position + layer_window_toppos: window top position + layer_ppf: LAYER_PPF_ARGB8888,LAYER_PPF_RGB888,LAYER_PPF_RGB565, + LAYER_PPF_ARG1555,LAYER_PPF_ARGB4444,LAYER_PPF_L8, + LAYER_PPF_AL44,LAYER_PPF_AL88 + layer_sa: specified alpha + layer_default_alpha: the default color alpha + layer_default_red: the default color red + layer_default_green: the default color green + layer_default_blue: the default color blue + layer_acf1: LAYER_ACF1_SA,LAYER_ACF1_PASA + layer_acf2: LAYER_ACF2_SA,LAYER_ACF2_PASA + layer_frame_bufaddr: frame buffer base address + layer_frame_buf_stride_offset: frame buffer stride offset + layer_frame_line_length: frame line length + layer_frame_total_line_number: frame total line number + \retval none +*/ +void tli_layer_struct_para_init(tli_layer_parameter_struct *layer_struct) +{ + /* initialize the struct parameters with default values */ + layer_struct->layer_window_rightpos = TLI_DEFAULT_VALUE; + layer_struct->layer_window_leftpos = TLI_DEFAULT_VALUE; + layer_struct->layer_window_bottompos = TLI_DEFAULT_VALUE; + layer_struct->layer_window_toppos = TLI_DEFAULT_VALUE; + layer_struct->layer_ppf = LAYER_PPF_ARGB8888; + layer_struct->layer_sa = TLI_OPAQUE_VALUE; + layer_struct->layer_default_alpha = TLI_DEFAULT_VALUE; + layer_struct->layer_default_red = TLI_DEFAULT_VALUE; + layer_struct->layer_default_green = TLI_DEFAULT_VALUE; + layer_struct->layer_default_blue = TLI_DEFAULT_VALUE; + layer_struct->layer_acf1 = LAYER_ACF1_PASA; + layer_struct->layer_acf2 = LAYER_ACF2_PASA; + layer_struct->layer_frame_bufaddr = TLI_DEFAULT_VALUE; + layer_struct->layer_frame_buf_stride_offset = TLI_DEFAULT_VALUE; + layer_struct->layer_frame_line_length = TLI_DEFAULT_VALUE; + layer_struct->layer_frame_total_line_number = TLI_DEFAULT_VALUE; +} + +/*! + \brief initialize TLI layer + \param[in] layerx: LAYERx(x=0,1) + \param[in] layer_struct: TLI Layer parameter struct + layer_window_rightpos: window right position + layer_window_leftpos: window left position + layer_window_bottompos: window bottom position + layer_window_toppos: window top position + layer_ppf: LAYER_PPF_ARGB8888,LAYER_PPF_RGB888,LAYER_PPF_RGB565, + LAYER_PPF_ARG1555,LAYER_PPF_ARGB4444,LAYER_PPF_L8, + LAYER_PPF_AL44,LAYER_PPF_AL88 + layer_sa: specified alpha + layer_default_alpha: the default color alpha + layer_default_red: the default color red + layer_default_green: the default color green + layer_default_blue: the default color blue + layer_acf1: LAYER_ACF1_SA,LAYER_ACF1_PASA + layer_acf2: LAYER_ACF2_SA,LAYER_ACF2_PASA + layer_frame_bufaddr: frame buffer base address + layer_frame_buf_stride_offset: frame buffer stride offset + layer_frame_line_length: frame line length + layer_frame_total_line_number: frame total line number + \param[out] none + \retval none +*/ +void tli_layer_init(uint32_t layerx,tli_layer_parameter_struct *layer_struct) +{ + /* configure layer window horizontal position */ + TLI_LxHPOS(layerx) &= ~(TLI_LxHPOS_WLP|(TLI_LxHPOS_WRP)); + TLI_LxHPOS(layerx) = (uint32_t)((uint32_t)layer_struct->layer_window_leftpos|((uint32_t)layer_struct->layer_window_rightpos<<16U)); + /* configure layer window vertical position */ + TLI_LxVPOS(layerx) &= ~(TLI_LxVPOS_WTP|(TLI_LxVPOS_WBP)); + TLI_LxVPOS(layerx) = (uint32_t)((uint32_t)layer_struct->layer_window_toppos|((uint32_t)layer_struct->layer_window_bottompos<<16U)); + /* configure layer packeted pixel format */ + TLI_LxPPF(layerx) &= ~(TLI_LxPPF_PPF); + TLI_LxPPF(layerx) = layer_struct->layer_ppf; + /* configure layer specified alpha */ + TLI_LxSA(layerx) &= ~(TLI_LxSA_SA); + TLI_LxSA(layerx) = layer_struct->layer_sa; + /* configure layer default color */ + TLI_LxDC(layerx) &= ~(TLI_LxDC_DCB|(TLI_LxDC_DCG)|(TLI_LxDC_DCR)|(TLI_LxDC_DCA)); + TLI_LxDC(layerx) = (uint32_t)((uint32_t)layer_struct->layer_default_blue|((uint32_t)layer_struct->layer_default_green<<8U) + |((uint32_t)layer_struct->layer_default_red<<16U) + |((uint32_t)layer_struct->layer_default_alpha<<24U)); + + /* configure layer alpha calculation factors */ + TLI_LxBLEND(layerx) &= ~(TLI_LxBLEND_ACF2|(TLI_LxBLEND_ACF1)); + TLI_LxBLEND(layerx) = ((layer_struct->layer_acf2)|(layer_struct->layer_acf1)); + /* configure layer frame buffer base address */ + TLI_LxFBADDR(layerx) &= ~(TLI_LxFBADDR_FBADD); + TLI_LxFBADDR(layerx) = (layer_struct->layer_frame_bufaddr); + /* configure layer frame line length */ + TLI_LxFLLEN(layerx) &= ~(TLI_LxFLLEN_FLL|(TLI_LxFLLEN_STDOFF)); + TLI_LxFLLEN(layerx) = (uint32_t)((uint32_t)layer_struct->layer_frame_line_length|((uint32_t)layer_struct->layer_frame_buf_stride_offset<<16U)); + /* configure layer frame total line number */ + TLI_LxFTLN(layerx) &= ~(TLI_LxFTLN_FTLN); + TLI_LxFTLN(layerx) = (uint32_t)(layer_struct->layer_frame_total_line_number); + +} + +/*! + \brief reconfigure window position + \param[in] layerx: LAYERx(x=0,1) + \param[in] offset_x: new horizontal offset + \param[in] offset_y: new vertical offset + \param[out] none + \retval none +*/ +void tli_layer_window_offset_modify(uint32_t layerx,uint16_t offset_x,uint16_t offset_y) +{ + /* configure window start position */ + uint32_t layer_ppf, line_num, hstart, vstart; + uint32_t line_length = 0U; + TLI_LxHPOS(layerx) &= ~(TLI_LxHPOS_WLP|(TLI_LxHPOS_WRP)); + TLI_LxVPOS(layerx) &= ~(TLI_LxVPOS_WTP|(TLI_LxVPOS_WBP)); + hstart = (uint32_t)offset_x+(((TLI_BPSZ & TLI_BPSZ_HBPSZ)>>16U)+1U); + vstart = (uint32_t)offset_y+((TLI_BPSZ & TLI_BPSZ_VBPSZ)+1U); + line_num = (TLI_LxFTLN(layerx) & TLI_LxFTLN_FTLN); + layer_ppf = (TLI_LxPPF(layerx) & TLI_LxPPF_PPF); + /* the bytes of a line equal TLI_LxFLLEN_FLL bits value minus 3 */ + switch(layer_ppf){ + case LAYER_PPF_ARGB8888: + /* each pixel includes 4bytes, when pixel format is ARGB8888 */ + line_length = (((TLI_LxFLLEN(layerx) & TLI_LxFLLEN_FLL)-3U)/4U); + break; + case LAYER_PPF_RGB888: + /* each pixel includes 3bytes, when pixel format is RGB888 */ + line_length = (((TLI_LxFLLEN(layerx) & TLI_LxFLLEN_FLL)-3U)/3U); + break; + case LAYER_PPF_RGB565: + case LAYER_PPF_ARGB1555: + case LAYER_PPF_ARGB4444: + case LAYER_PPF_AL88: + /* each pixel includes 2bytes, when pixel format is RGB565,ARG1555,ARGB4444 or AL88 */ + line_length = (((TLI_LxFLLEN(layerx) & TLI_LxFLLEN_FLL)-3U)/2U); + break; + case LAYER_PPF_L8: + case LAYER_PPF_AL44: + /* each pixel includes 1byte, when pixel format is L8 or AL44 */ + line_length = (((TLI_LxFLLEN(layerx) & TLI_LxFLLEN_FLL)-3U)); + break; + default: + break; + } + /* reconfigure window position */ + TLI_LxHPOS(layerx) = (hstart|((hstart+line_length-1U)<<16U)); + TLI_LxVPOS(layerx) = (vstart|((vstart+line_num-1U)<<16U)); +} + +/*! + \brief initialize the parameters of TLI layer LUT structure with the default values, it is suggested + that call this function after a tli_layer_lut_parameter_struct structure is defined + \param[in] none + \param[out] lut_struct: TLI layer LUT parameter struct + layer_table_addr: look up table write address + layer_lut_channel_red: red channel of a LUT entry + layer_lut_channel_green: green channel of a LUT entry + layer_lut_channel_blue: blue channel of a LUT entry + \retval none +*/ +void tli_lut_struct_para_init(tli_layer_lut_parameter_struct *lut_struct) +{ + /* initialize the struct parameters with default values */ + lut_struct->layer_table_addr = TLI_DEFAULT_VALUE; + lut_struct->layer_lut_channel_red = TLI_DEFAULT_VALUE; + lut_struct->layer_lut_channel_green = TLI_DEFAULT_VALUE; + lut_struct->layer_lut_channel_blue = TLI_DEFAULT_VALUE; +} + +/*! + \brief initialize TLI layer LUT + \param[in] layerx: LAYERx(x=0,1) + \param[in] lut_struct: TLI layer LUT parameter struct + layer_table_addr: look up table write address + layer_lut_channel_red: red channel of a LUT entry + layer_lut_channel_green: green channel of a LUT entry + layer_lut_channel_blue: blue channel of a LUT entry + \param[out] none + \retval none +*/ +void tli_lut_init(uint32_t layerx,tli_layer_lut_parameter_struct *lut_struct) +{ + TLI_LxLUT(layerx) &= ~(TLI_LxLUT_TB|TLI_LxLUT_TG|TLI_LxLUT_TR|TLI_LxLUT_TADD); + TLI_LxLUT(layerx) = (uint32_t)(((uint32_t)lut_struct->layer_lut_channel_blue)|((uint32_t)lut_struct->layer_lut_channel_green<<8U) + |((uint32_t)lut_struct->layer_lut_channel_red<<16U + |((uint32_t)lut_struct->layer_table_addr<<24U))); +} + +/*! + \brief initialize TLI layer color key + \param[in] layerx: LAYERx(x=0,1) + \param[in] redkey: color key red + \param[in] greenkey: color key green + \param[in] bluekey: color key blue + \param[out] none + \retval none +*/ +void tli_color_key_init(uint32_t layerx,uint8_t redkey,uint8_t greenkey,uint8_t bluekey) +{ + TLI_LxCKEY(layerx) = (((uint32_t)bluekey)|((uint32_t)greenkey<<8U)|((uint32_t)redkey<<16U)); +} + +/*! + \brief enable TLI layer + \param[in] layerx: LAYERx(x=0,1) + \param[out] none + \retval none +*/ +void tli_layer_enable(uint32_t layerx) +{ + TLI_LxCTL(layerx) |= TLI_LxCTL_LEN; +} + +/*! + \brief disable TLI layer + \param[in] layerx: LAYERx(x=0,1) + \param[out] none + \retval none +*/ +void tli_layer_disable(uint32_t layerx) +{ + TLI_LxCTL(layerx) &= ~(TLI_LxCTL_LEN); +} + +/*! + \brief enable TLI layer color keying + \param[in] layerx: LAYERx(x=0,1) + \param[out] none + \retval none +*/ +void tli_color_key_enable(uint32_t layerx) +{ + TLI_LxCTL(layerx) |= TLI_LxCTL_CKEYEN; +} + +/*! + \brief disable TLI layer color keying + \param[in] layerx: LAYERx(x=0,1) + \param[out] none + \retval none +*/ +void tli_color_key_disable(uint32_t layerx) +{ + TLI_LxCTL(layerx) &= ~(TLI_LxCTL_CKEYEN); +} + +/*! + \brief enable TLI layer LUT + \param[in] layerx: LAYERx(x=0,1) + \param[out] none + \retval none +*/ +void tli_lut_enable(uint32_t layerx) +{ + TLI_LxCTL(layerx) |= TLI_LxCTL_LUTEN; +} + +/*! + \brief disable TLI layer LUT + \param[in] layerx: LAYERx(x=0,1) + \param[out] none + \retval none +*/ +void tli_lut_disable(uint32_t layerx) +{ + TLI_LxCTL(layerx) &= ~(TLI_LxCTL_LUTEN); +} + +/*! + \brief set line mark value + \param[in] line_num: line number + \param[out] none + \retval none +*/ +void tli_line_mark_set(uint16_t line_num) +{ + TLI_LM &= ~(TLI_LM_LM); + TLI_LM = (uint32_t)line_num; +} + +/*! + \brief get current displayed position + \param[in] none + \param[out] none + \retval position of current pixel +*/ +uint32_t tli_current_pos_get(void) +{ + return TLI_CPPOS; +} + +/*! + \brief enable TLI interrupt + \param[in] int_flag: TLI interrupt flags + one or more parameters can be selected which are shown as below: + \arg TLI_INT_LM: line mark interrupt + \arg TLI_INT_FE: FIFO error interrupt + \arg TLI_INT_TE: transaction error interrupt + \arg TLI_INT_LCR: layer configuration reloaded interrupt + \param[out] none + \retval none +*/ +void tli_interrupt_enable(uint32_t int_flag) +{ + TLI_INTEN |= (int_flag); +} + +/*! + \brief disable TLI interrupt + \param[in] int_flag: TLI interrupt flags + one or more parameters can be selected which are shown as below: + \arg TLI_INT_LM: line mark interrupt + \arg TLI_INT_FE: FIFO error interrupt + \arg TLI_INT_TE: transaction error interrupt + \arg TLI_INT_LCR: layer configuration reloaded interrupt + \param[out] none + \retval none +*/ +void tli_interrupt_disable(uint32_t int_flag) +{ + TLI_INTEN &= ~(int_flag); +} + +/*! + \brief get TLI interrupt flag + \param[in] int_flag: TLI interrupt flags + one or more parameters can be selected which are shown as below: + \arg TLI_INT_FLAG_LM: line mark interrupt flag + \arg TLI_INT_FLAG_FE: FIFO error interrupt flag + \arg TLI_INT_FLAG_TE: transaction error interrupt flag + \arg TLI_INT_FLAG_LCR: layer configuration reloaded interrupt flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus tli_interrupt_flag_get(uint32_t int_flag) +{ + uint32_t state; + state = TLI_INTF; + if(state & int_flag){ + state = TLI_INTEN; + if(state & int_flag){ + return SET; + } + } + return RESET; +} + +/*! + \brief clear TLI interrupt flag + \param[in] int_flag: TLI interrupt flags + one or more parameters can be selected which are shown as below: + \arg TLI_INT_FLAG_LM: line mark interrupt flag + \arg TLI_INT_FLAG_FE: FIFO error interrupt flag + \arg TLI_INT_FLAG_TE: transaction error interrupt flag + \arg TLI_INT_FLAG_LCR: layer configuration reloaded interrupt flag + \param[out] none + \retval none +*/ +void tli_interrupt_flag_clear(uint32_t int_flag) +{ + TLI_INTC |= (int_flag); +} + +/*! + \brief get TLI flag or state in TLI_INTF register or TLI_STAT register + \param[in] flag: TLI flags or states + only one parameter can be selected which is shown as below: + \arg TLI_FLAG_VDE: current VDE state + \arg TLI_FLAG_HDE: current HDE state + \arg TLI_FLAG_VS: current VS status of the TLI + \arg TLI_FLAG_HS: current HS status of the TLI + \arg TLI_FLAG_LM: line mark interrupt flag + \arg TLI_FLAG_FE: FIFO error interrupt flag + \arg TLI_FLAG_TE: transaction error interrupt flag + \arg TLI_FLAG_LCR: layer configuration reloaded interrupt flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus tli_flag_get(uint32_t flag) +{ + uint32_t stat; + /* choose which register to get flag or state */ + if(flag >> 31U){ + stat = TLI_INTF; + }else{ + stat = TLI_STAT; + } + if(flag & stat){ + return SET; + }else{ + return RESET; + } +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_trng.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_trng.c new file mode 100644 index 0000000000..b70ac9fb0c --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_trng.c @@ -0,0 +1,155 @@ +/*! + \file gd32f4xx_trng.c + \brief TRNG driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gd32f4xx_trng.h" + +/*! + \brief deinitialize the TRNG + \param[in] none + \param[out] none + \retval none +*/ +void trng_deinit(void) +{ + rcu_periph_reset_enable(RCU_TRNGRST); + rcu_periph_reset_disable(RCU_TRNGRST); +} + +/*! + \brief enable the TRNG interface + \param[in] none + \param[out] none + \retval none +*/ +void trng_enable(void) +{ + TRNG_CTL |= TRNG_CTL_TRNGEN; +} + +/*! + \brief disable the TRNG interface + \param[in] none + \param[out] none + \retval none +*/ +void trng_disable(void) +{ + TRNG_CTL &= ~TRNG_CTL_TRNGEN; +} + +/*! + \brief get the true random data + \param[in] none + \param[out] none + \retval the generated random data +*/ +uint32_t trng_get_true_random_data(void) +{ + return (TRNG_DATA); +} + +/*! + \brief enable the TRNG interrupt + \param[in] none + \param[out] none + \retval none +*/ +void trng_interrupt_enable(void) +{ + TRNG_CTL |= TRNG_CTL_IE; +} + +/*! + \brief disable the TRNG interrupt + \param[in] none + \param[out] none + \retval none +*/ +void trng_interrupt_disable(void) +{ + TRNG_CTL &= ~TRNG_CTL_IE; +} + +/*! + \brief get the trng status flags + \param[in] flag: trng status flag, refer to trng_flag_enum + only one parameter can be selected which is shown as below: + \arg TRNG_FLAG_DRDY: Random Data ready status + \arg TRNG_FLAG_CECS: Clock error current status + \arg TRNG_FLAG_SECS: Seed error current status + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus trng_flag_get(trng_flag_enum flag) +{ + if(RESET != (TRNG_STAT & flag)){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief get the trng interrupt flags + \param[in] int_flag: trng interrupt flag, refer to trng_int_flag_enum + only one parameter can be selected which is shown as below: + \arg TRNG_INT_FLAG_CEIF: clock error interrupt flag + \arg TRNG_INT_FLAG_SEIF: Seed error interrupt flag + \param[out] none + \retval FlagStatus: SET or RESET +*/ +FlagStatus trng_interrupt_flag_get(trng_int_flag_enum int_flag) +{ + if(RESET != (TRNG_STAT & int_flag)){ + return SET; + }else{ + return RESET; + } +} + +/*! + \brief clear the trng interrupt flags + \param[in] int_flag: trng interrupt flag, refer to trng_int_flag_enum + only one parameter can be selected which is shown as below: + \arg TRNG_INT_FLAG_CEIF: clock error interrupt flag + \arg TRNG_INT_FLAG_SEIF: Seed error interrupt flag + \param[out] none + \retval none +*/ +void trng_interrupt_flag_clear(trng_int_flag_enum int_flag) +{ + TRNG_STAT &= ~(uint32_t)int_flag; +} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_usart.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_usart.c new file mode 100644 index 0000000000..c2f3bf6037 --- /dev/null +++ b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_usart.c @@ -0,0 +1,1009 @@ +/*! + \file gd32f4xx_usart.c + \brief USART driver + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + + +#include "gd32f4xx_usart.h" + +/* USART register bit offset */ +#define GP_GUAT_OFFSET ((uint32_t)8U) /* bit offset of GUAT in USART_GP */ +#define CTL3_SCRTNUM_OFFSET ((uint32_t)1U) /* bit offset of SCRTNUM in USART_CTL3 */ +#define RT_BL_OFFSET ((uint32_t)24U) /* bit offset of BL in USART_RT */ + +/*! + \brief reset USART/UART + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[out] none + \retval none +*/ +void usart_deinit(uint32_t usart_periph) +{ + switch(usart_periph){ + case USART0: + rcu_periph_reset_enable(RCU_USART0RST); + rcu_periph_reset_disable(RCU_USART0RST); + break; + case USART1: + rcu_periph_reset_enable(RCU_USART1RST); + rcu_periph_reset_disable(RCU_USART1RST); + break; + case USART2: + rcu_periph_reset_enable(RCU_USART2RST); + rcu_periph_reset_disable(RCU_USART2RST); + break; + case USART5: + rcu_periph_reset_enable(RCU_USART5RST); + rcu_periph_reset_disable(RCU_USART5RST); + break; + case UART3: + rcu_periph_reset_enable(RCU_UART3RST); + rcu_periph_reset_disable(RCU_UART3RST); + break; + case UART4: + rcu_periph_reset_enable(RCU_UART4RST); + rcu_periph_reset_disable(RCU_UART4RST); + break; + case UART6: + rcu_periph_reset_enable(RCU_UART6RST); + rcu_periph_reset_disable(RCU_UART6RST); + break; + case UART7: + rcu_periph_reset_enable(RCU_UART7RST); + rcu_periph_reset_disable(RCU_UART7RST); + break; + default: + break; + } +} + +/*! + \brief configure USART baud rate value + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[in] baudval: baud rate value + \param[out] none + \retval none +*/ +void usart_baudrate_set(uint32_t usart_periph, uint32_t baudval) +{ + uint32_t uclk=0U, intdiv=0U, fradiv=0U, udiv=0U; + switch(usart_periph){ + /* get clock frequency */ + case USART0: + uclk=rcu_clock_freq_get(CK_APB2); + break; + case USART5: + uclk=rcu_clock_freq_get(CK_APB2); + break; + case USART1: + uclk=rcu_clock_freq_get(CK_APB1); + break; + case USART2: + uclk=rcu_clock_freq_get(CK_APB1); + break; + case UART3: + uclk=rcu_clock_freq_get(CK_APB1); + break; + case UART4: + uclk=rcu_clock_freq_get(CK_APB1); + break; + case UART6: + uclk=rcu_clock_freq_get(CK_APB1); + break; + case UART7: + uclk=rcu_clock_freq_get(CK_APB1); + break; + default: + break; + } + if(USART_CTL0(usart_periph) & USART_CTL0_OVSMOD){ + /* when oversampling by 8, configure the value of USART_BAUD */ + udiv = ((2U*uclk) + baudval/2U)/baudval; + intdiv = udiv & 0xfff0U; + fradiv = (udiv>>1U) & 0x7U; + USART_BAUD(usart_periph) = ((USART_BAUD_FRADIV | USART_BAUD_INTDIV) & (intdiv | fradiv)); + }else{ + /* when oversampling by 16, configure the value of USART_BAUD */ + udiv = (uclk+baudval/2U)/baudval; + intdiv = udiv & 0xfff0U; + fradiv = udiv & 0xfU; + USART_BAUD(usart_periph) = ((USART_BAUD_FRADIV | USART_BAUD_INTDIV) & (intdiv | fradiv)); + } +} + +/*! + \brief configure USART parity function + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[in] paritycfg: configure USART parity + only one parameter can be selected which is shown as below: + \arg USART_PM_NONE: no parity + \arg USART_PM_EVEN: even parity + \arg USART_PM_ODD: odd parity + \param[out] none + \retval none +*/ +void usart_parity_config(uint32_t usart_periph, uint32_t paritycfg) +{ + /* clear USART_CTL0 PM,PCEN Bits */ + USART_CTL0(usart_periph) &= ~(USART_CTL0_PM | USART_CTL0_PCEN); + /* configure USART parity mode */ + USART_CTL0(usart_periph) |= paritycfg ; +} + +/*! + \brief configure USART word length + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[in] wlen: USART word length configure + only one parameter can be selected which is shown as below: + \arg USART_WL_8BIT: 8 bits + \arg USART_WL_9BIT: 9 bits + \param[out] none + \retval none +*/ +void usart_word_length_set(uint32_t usart_periph, uint32_t wlen) +{ + /* clear USART_CTL0 WL bit */ + USART_CTL0(usart_periph) &= ~USART_CTL0_WL; + /* configure USART word length */ + USART_CTL0(usart_periph) |= wlen; +} + +/*! + \brief configure USART stop bit length + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[in] stblen: USART stop bit configure + only one parameter can be selected which is shown as below: + \arg USART_STB_1BIT: 1 bit + \arg USART_STB_0_5BIT: 0.5 bit(not available for UARTx(x=3,4,6,7)) + \arg USART_STB_2BIT: 2 bits + \arg USART_STB_1_5BIT: 1.5 bits(not available for UARTx(x=3,4,6,7)) + \param[out] none + \retval none +*/ +void usart_stop_bit_set(uint32_t usart_periph, uint32_t stblen) +{ + /* clear USART_CTL1 STB bits */ + USART_CTL1(usart_periph) &= ~USART_CTL1_STB; + /* configure USART stop bits */ + USART_CTL1(usart_periph) |= stblen; +} +/*! + \brief enable USART + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[out] none + \retval none +*/ +void usart_enable(uint32_t usart_periph) +{ + USART_CTL0(usart_periph) |= USART_CTL0_UEN; +} + +/*! + \brief disable USART + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[out] none + \retval none +*/ +void usart_disable(uint32_t usart_periph) +{ + USART_CTL0(usart_periph) &= ~(USART_CTL0_UEN); +} + +/*! + \brief configure USART transmitter + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[in] txconfig: enable or disable USART transmitter + only one parameter can be selected which is shown as below: + \arg USART_TRANSMIT_ENABLE: enable USART transmission + \arg USART_TRANSMIT_DISABLE: enable USART transmission + \param[out] none + \retval none +*/ +void usart_transmit_config(uint32_t usart_periph, uint32_t txconfig) +{ + uint32_t ctl = 0U; + + ctl = USART_CTL0(usart_periph); + ctl &= ~USART_CTL0_TEN; + ctl |= txconfig; + /* configure transfer mode */ + USART_CTL0(usart_periph) = ctl; +} + +/*! + \brief configure USART receiver + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[in] rxconfig: enable or disable USART receiver + only one parameter can be selected which is shown as below: + \arg USART_RECEIVE_ENABLE: enable USART reception + \arg USART_RECEIVE_DISABLE: disable USART reception + \param[out] none + \retval none +*/ +void usart_receive_config(uint32_t usart_periph, uint32_t rxconfig) +{ + uint32_t ctl = 0U; + + ctl = USART_CTL0(usart_periph); + ctl &= ~USART_CTL0_REN; + ctl |= rxconfig; + /* configure transfer mode */ + USART_CTL0(usart_periph) = ctl; +} + +/*! + \brief data is transmitted/received with the LSB/MSB first + \param[in] usart_periph: USARTx(x=0,1,2,5) + \param[in] msbf: LSB/MSB + only one parameter can be selected which is shown as below: + \arg USART_MSBF_LSB: LSB first + \arg USART_MSBF_MSB: MSB first + \param[out] none + \retval none +*/ +void usart_data_first_config(uint32_t usart_periph, uint32_t msbf) +{ + uint32_t ctl = 0U; + + ctl = USART_CTL3(usart_periph); + ctl &= ~(USART_CTL3_MSBF); + ctl |= msbf; + /* configure data transmitted/received mode */ + USART_CTL3(usart_periph) = ctl; +} + +/*! + \brief configure USART inversion + \param[in] usart_periph: USARTx(x=0,1,2,5) + \param[in] invertpara: refer to enum USART_INVERT_CONFIG + only one parameter can be selected which is shown as below: + \arg USART_DINV_ENABLE: data bit level inversion + \arg USART_DINV_DISABLE: data bit level not inversion + \arg USART_TXPIN_ENABLE: TX pin level inversion + \arg USART_TXPIN_DISABLE: TX pin level not inversion + \arg USART_RXPIN_ENABLE: RX pin level inversion + \arg USART_RXPIN_DISABLE: RX pin level not inversion + \param[out] none + \retval none +*/ +void usart_invert_config(uint32_t usart_periph, usart_invert_enum invertpara) +{ + /* inverted or not the specified siginal */ + switch(invertpara){ + case USART_DINV_ENABLE: + USART_CTL3(usart_periph) |= USART_CTL3_DINV; + break; + case USART_TXPIN_ENABLE: + USART_CTL3(usart_periph) |= USART_CTL3_TINV; + break; + case USART_RXPIN_ENABLE: + USART_CTL3(usart_periph) |= USART_CTL3_RINV; + break; + case USART_DINV_DISABLE: + USART_CTL3(usart_periph) &= ~(USART_CTL3_DINV); + break; + case USART_TXPIN_DISABLE: + USART_CTL3(usart_periph) &= ~(USART_CTL3_TINV); + break; + case USART_RXPIN_DISABLE: + USART_CTL3(usart_periph) &= ~(USART_CTL3_RINV); + break; + default: + break; + } +} + +/*! + \brief configure the USART oversample mode + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[in] oversamp: oversample value + only one parameter can be selected which is shown as below: + \arg USART_OVSMOD_8: 8 bits + \arg USART_OVSMOD_16: 16 bits + \param[out] none + \retval none +*/ +void usart_oversample_config(uint32_t usart_periph, uint32_t oversamp) +{ + /* clear OVSMOD bit */ + USART_CTL0(usart_periph) &= ~(USART_CTL0_OVSMOD); + USART_CTL0(usart_periph) |= oversamp; +} + +/*! + \brief configure sample bit method + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[in] obsm: sample bit + only one parameter can be selected which is shown as below: + \arg USART_OSB_1bit: 1 bit + \arg USART_OSB_3bit: 3 bits + \param[out] none + \retval none +*/ +void usart_sample_bit_config(uint32_t usart_periph, uint32_t obsm) +{ + USART_CTL2(usart_periph) &= ~(USART_CTL2_OSB); + USART_CTL2(usart_periph) |= obsm; +} + +/*! + \brief enable receiver timeout of USART + \param[in] usart_periph: USARTx(x=0,1,2,5) + \param[out] none + \retval none +*/ +void usart_receiver_timeout_enable(uint32_t usart_periph) +{ + USART_CTL3(usart_periph) |= USART_CTL3_RTEN; +} + +/*! + \brief disable receiver timeout of USART + \param[in] usart_periph: USARTx(x=0,1,2,5) + \param[out] none + \retval none +*/ +void usart_receiver_timeout_disable(uint32_t usart_periph) +{ + USART_CTL3(usart_periph) &= ~(USART_CTL3_RTEN); +} + +/*! + \brief set the receiver timeout threshold of USART + \param[in] usart_periph: USARTx(x=0,1,2,5) + \param[in] rtimeout: 0-0x00FFFFFF + \param[out] none + \retval none +*/ +void usart_receiver_timeout_threshold_config(uint32_t usart_periph, uint32_t rtimeout) +{ + USART_RT(usart_periph) &= ~(USART_RT_RT); + USART_RT(usart_periph) |= rtimeout; +} + +/*! + \brief USART transmit data function + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[in] data: data of transmission + \param[out] none + \retval none +*/ +void usart_data_transmit(uint32_t usart_periph, uint32_t data) +{ + USART_DATA(usart_periph) = ((uint16_t)USART_DATA_DATA & data); +} + +/*! + \brief USART receive data function + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[out] none + \retval data of received +*/ +uint16_t usart_data_receive(uint32_t usart_periph) +{ + return (uint16_t)(GET_BITS(USART_DATA(usart_periph), 0U, 8U)); +} + +/*! + \brief configure the address of the USART in wake up by address match mode + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[in] addr: address of USART/UART + \param[out] none + \retval none +*/ +void usart_address_config(uint32_t usart_periph, uint8_t addr) +{ + USART_CTL1(usart_periph) &= ~(USART_CTL1_ADDR); + USART_CTL1(usart_periph) |= (USART_CTL1_ADDR & addr); +} + +/*! + \brief enable mute mode + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[out] none + \retval none +*/ +void usart_mute_mode_enable(uint32_t usart_periph) +{ + USART_CTL0(usart_periph) |= USART_CTL0_RWU; +} + +/*! + \brief disable mute mode + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[out] none + \retval none +*/ +void usart_mute_mode_disable(uint32_t usart_periph) +{ + USART_CTL0(usart_periph) &= ~(USART_CTL0_RWU); +} + +/*! + \brief configure wakeup method in mute mode + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[in] wmehtod: two method be used to enter or exit the mute mode + only one parameter can be selected which is shown as below: + \arg USART_WM_IDLE: idle line + \arg USART_WM_ADDR: address mask + \param[out] none + \retval none +*/ +void usart_mute_mode_wakeup_config(uint32_t usart_periph, uint32_t wmehtod) +{ + USART_CTL0(usart_periph) &= ~(USART_CTL0_WM); + USART_CTL0(usart_periph) |= wmehtod; +} + +/*! + \brief enable LIN mode + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[out] none + \retval none +*/ +void usart_lin_mode_enable(uint32_t usart_periph) +{ + USART_CTL1(usart_periph) |= USART_CTL1_LMEN; +} + +/*! + \brief disable LIN mode + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[out] none + \retval none +*/ +void usart_lin_mode_disable(uint32_t usart_periph) +{ + USART_CTL1(usart_periph) &= ~(USART_CTL1_LMEN); +} + +/*! + \brief configure lin break frame length + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[in] lblen: lin break frame length + only one parameter can be selected which is shown as below: + \arg USART_LBLEN_10B: 10 bits + \arg USART_LBLEN_11B: 11 bits + \param[out] none + \retval none +*/ +void usart_lin_break_detection_length_config(uint32_t usart_periph, uint32_t lblen) +{ + USART_CTL1(usart_periph) &= ~(USART_CTL1_LBLEN); + USART_CTL1(usart_periph) |= (USART_CTL1_LBLEN & lblen); +} + +/*! + \brief send break frame + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[out] none + \retval none +*/ +void usart_send_break(uint32_t usart_periph) +{ + USART_CTL0(usart_periph) |= USART_CTL0_SBKCMD; +} + +/*! + \brief enable half duplex mode + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[out] none + \retval none +*/ +void usart_halfduplex_enable(uint32_t usart_periph) +{ + USART_CTL2(usart_periph) |= USART_CTL2_HDEN; +} + +/*! + \brief disable half duplex mode + \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) + \param[out] none + \retval none +*/ +void usart_halfduplex_disable(uint32_t usart_periph) +{ + USART_CTL2(usart_periph) &= ~(USART_CTL2_HDEN); +} + +/*! + \brief enable CK pin in synchronous mode + \param[in] usart_periph: USARTx(x=0,1,2,5) + \param[out] none + \retval none +*/ +void usart_synchronous_clock_enable(uint32_t usart_periph) +{ + USART_CTL1(usart_periph) |= USART_CTL1_CKEN; +} + +/*! + \brief disable CK pin in synchronous mode + \param[in] usart_periph: USARTx(x=0,1,2,5) + \param[out] none + \retval none +*/ +void usart_synchronous_clock_disable(uint32_t usart_periph) +{ + USART_CTL1(usart_periph) &= ~(USART_CTL1_CKEN); +} + +/*! + \brief configure USART synchronous mode parameters + \param[in] usart_periph: USARTx(x=0,1,2,5) + \param[in] clen: CK length + only one parameter can be selected which is shown as below: + \arg USART_CLEN_NONE: there are 7 CK pulses for an 8 bit frame and 8 CK pulses for a 9 bit frame + \arg USART_CLEN_EN: there are 8 CK pulses for an 8 bit frame and 9 CK pulses for a 9 bit frame + \param[in] cph: clock phase + only one parameter can be selected which is shown as below: + \arg USART_CPH_1CK: first clock transition is the first data capture edge + \arg USART_CPH_2CK: second clock transition is the first data capture edge + \param[in] cpl: clock polarity + only one parameter can be selected which is shown as below: + \arg USART_CPL_LOW: steady low value on CK pin + \arg USART_CPL_HIGH: steady high value on CK pin + \param[out] none + \retval none +*/ +void usart_synchronous_clock_config(uint32_t usart_periph, uint32_t clen, uint32_t cph, uint32_t cpl) +{ + uint32_t ctl = 0U; + + /* read USART_CTL1 register */ + ctl = USART_CTL1(usart_periph); + ctl &= ~(USART_CTL1_CLEN | USART_CTL1_CPH | USART_CTL1_CPL); + /* set CK length, CK phase, CK polarity */ + ctl |= (USART_CTL1_CLEN & clen) | (USART_CTL1_CPH & cph) | (USART_CTL1_CPL & cpl); + + USART_CTL1(usart_periph) = ctl; +} + +/*! + \brief configure guard time value in smartcard mode + \param[in] usart_periph: USARTx(x=0,1,2,5) + \param[in] guat: guard time value, 0-0xFF + \param[out] none + \retval none +*/ +void usart_guard_time_config(uint32_t usart_periph,uint32_t guat) +{ + USART_GP(usart_periph) &= ~(USART_GP_GUAT); + USART_GP(usart_periph) |= (USART_GP_GUAT & ((guat)<", + "+<*.cpp>", + "+<*.h>" + ] + }, + "frameworks": "arduino", + "platforms": "*" +} + diff --git a/Marlin/lib/GD32F4xx_usb_library/library.json b/Marlin/lib/GD32F4xx_usb_library/library.json new file mode 100644 index 0000000000..f72ba63d1d --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/library.json @@ -0,0 +1,16 @@ +{ + "name": "GD32F4xx_usb_library", + "version": "0.0.1", + "keywords": "gd32f4xx usb lib. port by langgo", + "description": "gd32f4xx usb library for marlin. port by langgo.", + "build": { + "srcFilter": [ + "+<*.c>", + "+<*.cpp>", + "+<*.h>" + ] + }, + "frameworks": "arduino", + "platforms": "*" +} + diff --git a/Marlin/lib/GD32F4xx_usb_library/src/cdc_acm_core.c b/Marlin/lib/GD32F4xx_usb_library/src/cdc_acm_core.c new file mode 100644 index 0000000000..074c742c88 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/cdc_acm_core.c @@ -0,0 +1,515 @@ +/*! + \file cdc_acm_core.c + \brief CDC ACM driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "cdc_acm_core.h" + +#define USBD_VID 0x28E9U +#define USBD_PID 0x018AU + +/* note:it should use the C99 standard when compiling the below codes */ +/* USB standard device descriptor */ +__ALIGN_BEGIN const usb_desc_dev cdc_dev_desc __ALIGN_END = +{ + .header = + { + .bLength = USB_DEV_DESC_LEN, + .bDescriptorType = USB_DESCTYPE_DEV, + }, + .bcdUSB = 0x0200U, + .bDeviceClass = USB_CLASS_CDC, + .bDeviceSubClass = 0x00U, + .bDeviceProtocol = 0x00U, + .bMaxPacketSize0 = USB_FS_EP0_MAX_LEN, + .idVendor = USBD_VID, + .idProduct = USBD_PID, + .bcdDevice = 0x0100U, + .iManufacturer = STR_IDX_MFC, + .iProduct = STR_IDX_PRODUCT, + .iSerialNumber = STR_IDX_SERIAL, + .bNumberConfigurations = USBD_CFG_MAX_NUM, +}; + +/* USB device configuration descriptor */ +__ALIGN_BEGIN const usb_cdc_desc_config_set cdc_config_desc __ALIGN_END = +{ + .config = + { + .header = + { + .bLength = sizeof(usb_desc_config), + .bDescriptorType = USB_DESCTYPE_CONFIG, + }, + .wTotalLength = USB_CDC_ACM_CONFIG_DESC_SIZE, + .bNumInterfaces = 0x02U, + .bConfigurationValue = 0x01U, + .iConfiguration = 0x00U, + .bmAttributes = 0x80U, + .bMaxPower = 0x32U + }, + + .cmd_itf = + { + .header = + { + .bLength = sizeof(usb_desc_itf), + .bDescriptorType = USB_DESCTYPE_ITF + }, + .bInterfaceNumber = 0x00U, + .bAlternateSetting = 0x00U, + .bNumEndpoints = 0x01U, + .bInterfaceClass = USB_CLASS_CDC, + .bInterfaceSubClass = USB_CDC_SUBCLASS_ACM, + .bInterfaceProtocol = USB_CDC_PROTOCOL_AT, + .iInterface = 0x00U + }, + + .cdc_header = + { + .header = + { + .bLength = sizeof(usb_desc_header_func), + .bDescriptorType = USB_DESCTYPE_CS_INTERFACE + }, + .bDescriptorSubtype = 0x00U, + .bcdCDC = 0x0110U + }, + + .cdc_call_managment = + { + .header = + { + .bLength = sizeof(usb_desc_call_managment_func), + .bDescriptorType = USB_DESCTYPE_CS_INTERFACE + }, + .bDescriptorSubtype = 0x01U, + .bmCapabilities = 0x00U, + .bDataInterface = 0x01U + }, + + .cdc_acm = + { + .header = + { + .bLength = sizeof(usb_desc_acm_func), + .bDescriptorType = USB_DESCTYPE_CS_INTERFACE + }, + .bDescriptorSubtype = 0x02U, + .bmCapabilities = 0x02U, + }, + + .cdc_union = + { + .header = + { + .bLength = sizeof(usb_desc_union_func), + .bDescriptorType = USB_DESCTYPE_CS_INTERFACE + }, + .bDescriptorSubtype = 0x06U, + .bMasterInterface = 0x00U, + .bSlaveInterface0 = 0x01U, + }, + + .cdc_cmd_endpoint = + { + .header = + { + .bLength = sizeof(usb_desc_ep), + .bDescriptorType = USB_DESCTYPE_EP, + }, + .bEndpointAddress = CDC_CMD_EP, + .bmAttributes = USB_EP_ATTR_INT, + .wMaxPacketSize = USB_CDC_CMD_PACKET_SIZE, + .bInterval = 0x0AU + }, + + .cdc_data_interface = + { + .header = + { + .bLength = sizeof(usb_desc_itf), + .bDescriptorType = USB_DESCTYPE_ITF, + }, + .bInterfaceNumber = 0x01U, + .bAlternateSetting = 0x00U, + .bNumEndpoints = 0x02U, + .bInterfaceClass = USB_CLASS_DATA, + .bInterfaceSubClass = 0x00U, + .bInterfaceProtocol = USB_CDC_PROTOCOL_NONE, + .iInterface = 0x00U + }, + + .cdc_out_endpoint = + { + .header = + { + .bLength = sizeof(usb_desc_ep), + .bDescriptorType = USB_DESCTYPE_EP, + }, + .bEndpointAddress = CDC_DATA_OUT_EP, + .bmAttributes = USB_EP_ATTR_BULK, + .wMaxPacketSize = USB_CDC_DATA_PACKET_SIZE, + .bInterval = 0x00U + }, + + .cdc_in_endpoint = + { + .header = + { + .bLength = sizeof(usb_desc_ep), + .bDescriptorType = USB_DESCTYPE_EP + }, + .bEndpointAddress = CDC_DATA_IN_EP, + .bmAttributes = USB_EP_ATTR_BULK, + .wMaxPacketSize = USB_CDC_DATA_PACKET_SIZE, + .bInterval = 0x00U + } +}; + +/* USB language ID Descriptor */ +static __ALIGN_BEGIN const usb_desc_LANGID usbd_language_id_desc __ALIGN_END = +{ + .header = + { + .bLength = sizeof(usb_desc_LANGID), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .wLANGID = ENG_LANGID +}; + +/* USB manufacture string */ +static __ALIGN_BEGIN const usb_desc_str manufacturer_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(10), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'i', 'g', 'a', 'D', 'e', 'v', 'i', 'c', 'e'} +}; + +/* USB product string */ +static __ALIGN_BEGIN const usb_desc_str product_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(12), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'D', '3', '2', '-', 'C', 'D', 'C', '_', 'A', 'C', 'M'} +}; + +/* USBD serial string */ +static __ALIGN_BEGIN usb_desc_str serial_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(12), + .bDescriptorType = USB_DESCTYPE_STR, + } +}; + +/* USB string descriptor set */ +void *const usbd_cdc_strings[] = +{ + [STR_IDX_LANGID] = (uint8_t *)&usbd_language_id_desc, + [STR_IDX_MFC] = (uint8_t *)&manufacturer_string, + [STR_IDX_PRODUCT] = (uint8_t *)&product_string, + [STR_IDX_SERIAL] = (uint8_t *)&serial_string +}; + +usb_desc cdc_desc = +{ + .dev_desc = (uint8_t *)&cdc_dev_desc, + .config_desc = (uint8_t *)&cdc_config_desc, + .strings = usbd_cdc_strings +}; + +/* local function prototypes ('static') */ +static uint8_t cdc_acm_init (usb_dev *udev, uint8_t config_index); +static uint8_t cdc_acm_deinit (usb_dev *udev, uint8_t config_index); +static uint8_t cdc_acm_req (usb_dev *udev, usb_req *req); +static uint8_t cdc_acm_in (usb_dev *udev, uint8_t ep_num); +static uint8_t cdc_acm_out (usb_dev *udev, uint8_t ep_num); + +/* USB CDC device class callbacks structure */ +usb_class_core cdc_class = +{ + .command = NO_CMD, + .alter_set = 0U, + + .init = cdc_acm_init, + .deinit = cdc_acm_deinit, + + .req_proc = cdc_acm_req, + + .data_in = cdc_acm_in, + .data_out = cdc_acm_out +}; + +/*! + \brief check CDC ACM is ready for data transfer + \param[in] udev: pointer to USB device instance + \param[out] none + \retval 0 if CDC is ready, 5 else +*/ +uint8_t cdc_acm_check_ready(usb_dev *udev) +{ + if (udev->dev.class_data[CDC_COM_INTERFACE] != NULL) { + usb_cdc_handler *cdc = (usb_cdc_handler *)udev->dev.class_data[CDC_COM_INTERFACE]; + + if ((1U == cdc->packet_receive) && (1U == cdc->packet_sent)) { + return 0U; + } + } + + return 1U; +} + +/*! + \brief send CDC ACM data + \param[in] udev: pointer to USB device instance + \param[out] none + \retval USB device operation status +*/ +void cdc_acm_data_send (usb_dev *udev) +{ + usb_cdc_handler *cdc = (usb_cdc_handler *)udev->dev.class_data[CDC_COM_INTERFACE]; + + if (0U != cdc->receive_length) { + cdc->packet_sent = 0U; + + usbd_ep_send (udev, CDC_DATA_IN_EP, (uint8_t*)(cdc->data), cdc->receive_length); + + cdc->receive_length = 0U; + } +} + +/*! + \brief receive CDC ACM data + \param[in] udev: pointer to USB device instance + \param[out] none + \retval USB device operation status +*/ +void cdc_acm_data_receive (usb_dev *udev) +{ + usb_cdc_handler *cdc = (usb_cdc_handler *)udev->dev.class_data[CDC_COM_INTERFACE]; + + cdc->packet_receive = 0U; + cdc->packet_sent = 0U; + + usbd_ep_recev(udev, CDC_DATA_OUT_EP, (uint8_t*)(cdc->data), USB_CDC_DATA_PACKET_SIZE); +} + +/*! + \brief initialize the CDC ACM device + \param[in] udev: pointer to USB device instance + \param[in] config_index: configuration index + \param[out] none + \retval USB device operation status +*/ +static uint8_t cdc_acm_init (usb_dev *udev, uint8_t config_index) +{ + static __ALIGN_BEGIN usb_cdc_handler cdc_handler __ALIGN_END; + + /* initialize the data TX endpoint */ + usbd_ep_setup (udev, &(cdc_config_desc.cdc_in_endpoint)); + + /* initialize the data RX endpoint */ + usbd_ep_setup (udev, &(cdc_config_desc.cdc_out_endpoint)); + + /* initialize the command TX endpoint */ + usbd_ep_setup (udev, &(cdc_config_desc.cdc_cmd_endpoint)); + + /* initialize CDC handler structure */ + cdc_handler.packet_receive = 1U; + cdc_handler.packet_sent = 1U; + cdc_handler.receive_length = 0U; + + cdc_handler.line_coding = (acm_line){ + .dwDTERate = 115200, + .bCharFormat = 0, + .bParityType = 0, + .bDataBits = 0x08 + }; + + udev->dev.class_data[CDC_COM_INTERFACE] = (void *)&cdc_handler; + + return USBD_OK; +} + +/*! + \brief de-initialize the CDC ACM device + \param[in] udev: pointer to USB device instance + \param[in] config_index: configuration index + \param[out] none + \retval USB device operation status +*/ +static uint8_t cdc_acm_deinit (usb_dev *udev, uint8_t config_index) +{ + /* deinitialize the data TX/RX endpoint */ + usbd_ep_clear (udev, CDC_DATA_IN_EP); + usbd_ep_clear (udev, CDC_DATA_OUT_EP); + + /* deinitialize the command TX endpoint */ + usbd_ep_clear (udev, CDC_CMD_EP); + + return USBD_OK; +} + +/*! + \brief handle the CDC ACM class-specific requests + \param[in] udev: pointer to USB device instance + \param[in] req: device class-specific request + \param[out] none + \retval USB device operation status +*/ +static uint8_t cdc_acm_req (usb_dev *udev, usb_req *req) +{ + usb_cdc_handler *cdc = (usb_cdc_handler *)udev->dev.class_data[CDC_COM_INTERFACE]; + + usb_transc *transc = &udev->dev.transc_in[0]; + + switch (req->bRequest) { + case SEND_ENCAPSULATED_COMMAND: + /* no operation for this driver */ + break; + + case GET_ENCAPSULATED_RESPONSE: + /* no operation for this driver */ + break; + + case SET_COMM_FEATURE: + /* no operation for this driver */ + break; + + case GET_COMM_FEATURE: + /* no operation for this driver */ + break; + + case CLEAR_COMM_FEATURE: + /* no operation for this driver */ + break; + + case SET_LINE_CODING: + /* set the value of the current command to be processed */ + udev->dev.class_core->alter_set = req->bRequest; + + /* enable EP0 prepare to receive command data packet */ + transc->remain_len = req->wLength; + transc->xfer_buf = cdc->cmd; + break; + + case GET_LINE_CODING: + cdc->cmd[0] = (uint8_t)(cdc->line_coding.dwDTERate); + cdc->cmd[1] = (uint8_t)(cdc->line_coding.dwDTERate >> 8); + cdc->cmd[2] = (uint8_t)(cdc->line_coding.dwDTERate >> 16); + cdc->cmd[3] = (uint8_t)(cdc->line_coding.dwDTERate >> 24); + cdc->cmd[4] = cdc->line_coding.bCharFormat; + cdc->cmd[5] = cdc->line_coding.bParityType; + cdc->cmd[6] = cdc->line_coding.bDataBits; + + transc->xfer_buf = cdc->cmd; + transc->remain_len = 7U; + break; + + case SET_CONTROL_LINE_STATE: + /* no operation for this driver */ + break; + + case SEND_BREAK: + /* no operation for this driver */ + break; + + default: + break; + } + + return USBD_OK; +} + +/*! + \brief handle CDC ACM data + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint identifier + \param[out] none + \retval USB device operation status +*/ +static uint8_t cdc_acm_in (usb_dev *udev, uint8_t ep_num) +{ + usb_transc *transc = &udev->dev.transc_in[EP_ID(ep_num)]; + + usb_cdc_handler *cdc = (usb_cdc_handler *)udev->dev.class_data[CDC_COM_INTERFACE]; + + if ((0U == transc->xfer_len % transc->max_len) && (0U != transc->xfer_len)) { + usbd_ep_send (udev, ep_num, NULL, 0U); //包长是单包的整数倍 发空包 + } else { + cdc->packet_sent = 1U; + } + + return USBD_OK; +} + +/*! + \brief handle CDC ACM data + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint identifier + \param[out] none + \retval USB device operation status +*/ +static uint8_t cdc_acm_out (usb_dev *udev, uint8_t ep_num) +{ + usb_cdc_handler *cdc = (usb_cdc_handler *)udev->dev.class_data[CDC_COM_INTERFACE]; + + if (0U == ep_num) { + if (udev->dev.class_core->alter_set != NO_CMD) + { + /* process the command data */ + cdc->line_coding.dwDTERate = (uint32_t)((uint32_t)cdc->cmd[0] | + ((uint32_t)cdc->cmd[1] << 8U) | + ((uint32_t)cdc->cmd[2] << 16U) | + ((uint32_t)cdc->cmd[3] << 24U)); + + cdc->line_coding.bCharFormat = cdc->cmd[4]; + cdc->line_coding.bParityType = cdc->cmd[5]; + cdc->line_coding.bDataBits = cdc->cmd[6]; + + udev->dev.class_core->alter_set = NO_CMD; + } + } else { + cdc->packet_receive = 1U; + cdc->receive_length = ((usb_core_driver *)udev)->dev.transc_out[ep_num].xfer_count; + } + + return USBD_OK; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/cdc_acm_core.h b/Marlin/lib/GD32F4xx_usb_library/src/cdc_acm_core.h new file mode 100644 index 0000000000..aaed117fb2 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/cdc_acm_core.h @@ -0,0 +1,66 @@ +/*! + \file cdc_acm_core.h + \brief the header file of cdc acm driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __CDC_ACM_CORE_H +#define __CDC_ACM_CORE_H + +#include "gdusbd_enum.h" +#include "gdusb_cdc.h" + +#define USB_CDC_RX_LEN 64 + +typedef struct { + uint8_t data[USB_CDC_RX_LEN]; + uint8_t cmd[USB_CDC_CMD_PACKET_SIZE]; + + uint8_t packet_sent; + uint8_t packet_receive; + + uint32_t receive_length; + + acm_line line_coding; +} usb_cdc_handler; + +extern usb_desc cdc_desc; +extern usb_class_core cdc_class; + +/* function declarations */ +/* check CDC ACM is ready for data transfer */ +uint8_t cdc_acm_check_ready(usb_dev *udev); +/* send CDC ACM data */ +void cdc_acm_data_send(usb_dev *udev); +/* receive CDC ACM data */ +void cdc_acm_data_receive(usb_dev *udev); + +#endif /* __CDC_ACM_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Include/audio_core.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Include/audio_core.h new file mode 100644 index 0000000000..698c07990a --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Include/audio_core.h @@ -0,0 +1,300 @@ +/*! + \file audio_core.h + \brief the header file of USB audio device class core functions + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __AUDIO_CORE_H +#define __AUDIO_CORE_H + +#include "usbd_enum.h" + +#define FORMAT_24BIT(x) (uint8_t)(x);(uint8_t)(x >> 8U);(uint8_t)(x >> 16U) + +/* number of sub-packets in the audio transfer buffer. you can modify this value but always make sure + that it is an even number and higher than 3 */ +#define OUT_PACKET_NUM 4U + +/* total size of the audio transfer buffer */ +#define OUT_BUF_MARGIN 4U +#define TOTAL_OUT_BUF_SIZE ((uint32_t)((SPEAKER_OUT_PACKET + OUT_BUF_MARGIN) * OUT_PACKET_NUM)) + +#define AUDIO_CONFIG_DESC_SET_LEN (sizeof(usb_desc_config_set)) +#define AUDIO_INTERFACE_DESC_SIZE 9U + +#define USB_AUDIO_DESC_SIZ 0x09U +#define AUDIO_STANDARD_EP_DESC_SIZE 0x09U +#define AUDIO_STREAMING_EP_DESC_SIZE 0x07U + +/* audio interface class code */ +#define USB_CLASS_AUDIO 0x01U + +/* audio interface subclass codes */ +#define AUDIO_SUBCLASS_CONTROL 0x01U +#define AUDIO_SUBCLASS_AUDIOSTREAMING 0x02U +#define AUDIO_SUBCLASS_MIDISTREAMING 0x03U + +/* audio interface protocol codes */ +#define AUDIO_PROTOCOL_UNDEFINED 0x00U +#define AUDIO_STREAMING_GENERAL 0x01U +#define AUDIO_STREAMING_FORMAT_TYPE 0x02U + +/* audio class-specific descriptor types */ +#define AUDIO_DESCTYPE_UNDEFINED 0x20U +#define AUDIO_DESCTYPE_DEVICE 0x21U +#define AUDIO_DESCTYPE_CONFIGURATION 0x22U +#define AUDIO_DESCTYPE_STRING 0x23U +#define AUDIO_DESCTYPE_INTERFACE 0x24U +#define AUDIO_DESCTYPE_ENDPOINT 0x25U + +/* audio control interface descriptor subtypes */ +#define AUDIO_CONTROL_HEADER 0x01U +#define AUDIO_CONTROL_INPUT_TERMINAL 0x02U +#define AUDIO_CONTROL_OUTPUT_TERMINAL 0x03U +#define AUDIO_CONTROL_MIXER_UNIT 0x04U +#define AUDIO_CONTROL_SELECTOR_UNIT 0x05U +#define AUDIO_CONTROL_FEATURE_UNIT 0x06U +#define AUDIO_CONTROL_PROCESSING_UNIT 0x07U +#define AUDIO_CONTROL_EXTENSION_UNIT 0x08U + +#define AUDIO_INPUT_TERMINAL_DESC_SIZE 0x0CU +#define AUDIO_OUTPUT_TERMINAL_DESC_SIZE 0x09U +#define AUDIO_STREAMING_INTERFACE_DESC_SIZE 0x07U + +#define AUDIO_CONTROL_MUTE 0x01U +#define AUDIO_CONTROL_VOLUME 0x02U + +#define AUDIO_FORMAT_TYPE_I 0x01U +#define AUDIO_FORMAT_TYPE_III 0x03U + +#define USB_ENDPOINT_TYPE_ISOCHRONOUS 0x01U +#define AUDIO_ENDPOINT_GENERAL 0x01U + +#define AUDIO_REQ_UNDEFINED 0x00U +#define AUDIO_REQ_SET_CUR 0x01U +#define AUDIO_REQ_GET_CUR 0x81U +#define AUDIO_REQ_SET_MIN 0x02U +#define AUDIO_REQ_GET_MIN 0x82U +#define AUDIO_REQ_SET_MAX 0x03U +#define AUDIO_REQ_GET_MAX 0x83U +#define AUDIO_REQ_SET_RES 0x04U +#define AUDIO_REQ_GET_RES 0x84U +#define AUDIO_REQ_SET_MEM 0x05U +#define AUDIO_REQ_GET_MEM 0x85U +#define AUDIO_REQ_GET_STAT 0xFFU + +#define AUDIO_OUT_STREAMING_CTRL 0x05U +#define AUDIO_IN_STREAMING_CTRL 0x02U + +/* audio stream interface number */ +enum +{ +#ifdef USE_USB_AUDIO_MICPHONE + MIC_INTERFACE_COUNT, +#endif +#ifdef USE_USB_AUDIO_SPEAKER + SPEAK_INTERFACE_COUNT, +#endif + CONFIG_DESC_AS_ITF_COUNT, +}; + +#define AC_ITF_TOTAL_LEN (sizeof(usb_desc_AC_itf) + CONFIG_DESC_AS_ITF_COUNT*(sizeof(usb_desc_input_terminal) + \ + sizeof(usb_desc_mono_feature_unit) + sizeof(usb_desc_output_terminal))) + +#pragma pack(1) + +typedef struct +{ + usb_desc_header header; /*!< descriptor header, including type and size */ + uint8_t bDescriptorSubtype; /*!< header descriptor subtype */ + uint16_t bcdADC; /*!< audio device class specification release number in binary-coded decimal */ + uint16_t wTotalLength; /*!< total number of bytes */ + uint8_t bInCollection; /*!< the number of the streaming interfaces */ +#ifdef USE_USB_AUDIO_MICPHONE + uint8_t baInterfaceNr0; /*!< interface number of the streaming interfaces */ +#endif + +#ifdef USE_USB_AUDIO_SPEAKER + uint8_t baInterfaceNr1; /*!< interface number of the streaming interfaces */ +#endif +} usb_desc_AC_itf; + +typedef struct +{ + usb_desc_header header; /*!< descriptor header, including type and size */ + uint8_t bDescriptorSubtype; /*!< AS_GENERAL descriptor subtype */ + uint8_t bTerminalLink; /*!< the terminal ID */ + uint8_t bDelay; /*!< delay introduced by the data path */ + uint16_t wFormatTag; /*!< the audio data format */ +} usb_desc_AS_itf; + +typedef struct +{ + usb_desc_header header; /*!< descriptor header, including type and size */ + uint8_t bDescriptorSubtype; /*!< INPUT_TERMINAL descriptor subtype. */ + uint8_t bTerminalID; /*!< constant uniquely identifying the terminal within the audio function */ + uint16_t wTerminalType; /*!< constant characterizing the type of terminal */ + uint8_t bAssocTerminal; /*!< ID of the output terminal */ + uint8_t bNrChannels; /*!< number of logical output channels */ + uint16_t wChannelConfig; /*!< describes the spatial location of the logical channels */ + uint8_t iChannelNames; /*!< index of a string descriptor */ + uint8_t iTerminal; /*!< index of a string descriptor */ +} usb_desc_input_terminal; + +typedef struct +{ + usb_desc_header header; /*!< descriptor header, including type and size */ + uint8_t bDescriptorSubtype; /*!< OUTPUT_TERMINAL descriptor subtype */ + uint8_t bTerminalID; /*!< constant uniquely identifying the terminal within the audio function */ + uint16_t wTerminalType; /*!< constant characterizing the type of terminal */ + uint8_t bAssocTerminal; /*!< constant, identifying the input terminal to which this output terminal is associated */ + uint8_t bSourceID; /*!< ID of the unit or terminal */ + uint8_t iTerminal; /*!< index of a string descriptor */ +} usb_desc_output_terminal; + +typedef struct +{ + usb_desc_header header; /*!< descriptor header, including type and size */ + uint8_t bDescriptorSubtype; /*!< FEATURE_UNIT descriptor subtype */ + uint8_t bUnitID; /*!< constant uniquely identifying the unit within the audio function */ + uint8_t bSourceID; /*!< ID of the unit or terminal */ + uint8_t bControlSize; /*!< size in bytes of an element of the bmaControls() array */ + uint8_t bmaControls0; /*!< a bit set to 1 indicates that the mentioned control is supported for master channel 0 */ + uint8_t bmaControls1; /*!< a bit set to 1 indicates that the mentioned control is supported for logical channel 1 */ + uint8_t iFeature; /*!< index of a string descriptor */ +} usb_desc_mono_feature_unit; + +typedef struct +{ + usb_desc_header header; /*!< descriptor header, including type and size */ + uint8_t bDescriptorSubtype; /*!< FEATURE_UNIT descriptor subtype */ + uint8_t bUnitID; /*!< constant uniquely identifying the unit within the audio function */ + uint8_t bSourceID; /*!< ID of the unit or terminal */ + uint8_t bControlSize; /*!< size in bytes of an element of the bmaControls() array */ + uint16_t bmaControls0; /*!< a bit set to 1 indicates that the mentioned control is supported for master channel 0 */ + uint16_t bmaControls1; /*!< a bit set to 1 indicates that the mentioned control is supported for logical channel 1 */ + uint16_t bmaControls2; /*!< a bit set to 1 indicates that the mentioned control is supported for logical channel 2 */ + uint8_t iFeature; /*!< index of a string descriptor */ +} usb_desc_stereo_feature_unit; + +typedef struct +{ + usb_desc_header header; /*!< descriptor header, including type and size */ + uint8_t bDescriptorSubtype; /*!< FORMAT_TYPE descriptor subtype */ + uint8_t bFormatType; /*!< constant identifying the format type */ + uint8_t bNrChannels; /*!< indicates the number of physical channels in the audio data stream */ + uint8_t bSubFrameSize; /*!< the number of bytes occupied by one audio subframe */ + uint8_t bBitResolution; /*!< the number of effectively used bits from the available bits in an audio subframe */ + uint8_t bSamFreqType; /*!< indicates how the sampling frequency can be programmed */ + uint8_t bSamFreq[3]; /*!< sampling frequency ns in Hz for this isochronous data endpoint */ +} usb_desc_format_type; + +typedef struct +{ + usb_desc_header header; /*!< descriptor header, including type and size */ + uint8_t bEndpointAddress; /*!< the address of the endpoint */ + uint8_t bmAttributes; /*!< transfer type and synchronization type */ + uint16_t wMaxPacketSize; /*!< maximum packet size this endpoint is capable of sending or receiving */ + uint8_t bInterval; /*!< left to the designer's discretion */ + uint8_t bRefresh; /*!< reset to 0 */ + uint8_t bSynchAddress; /*!< reset to 0 */ +} usb_desc_std_ep; + +typedef struct +{ + usb_desc_header header; /*!< descriptor header, including type and size */ + uint8_t bDescriptorSubtype; /*!< EP_GENERAL descriptor subtype */ + uint8_t bmAttributes; /*!< transfer type and synchronization type */ + uint8_t bLockDelayUnits; /*!< indicates the units used for the wLockDelay field */ + uint16_t wLockDelay; /*!< indicates the time it takes this endpoint to reliably lock its internal clock recovery circuitry */ +} usb_desc_AS_ep; + +#pragma pack() + +/* USB configuration descriptor structure */ +typedef struct +{ + usb_desc_config config; + usb_desc_itf std_itf; + usb_desc_AC_itf ac_itf; + +#ifdef USE_USB_AUDIO_MICPHONE + usb_desc_input_terminal mic_in_terminal; + usb_desc_mono_feature_unit mic_feature_unit; + usb_desc_output_terminal mic_out_terminal; +#endif + +#ifdef USE_USB_AUDIO_SPEAKER + usb_desc_input_terminal speak_in_terminal; + usb_desc_mono_feature_unit speak_feature_unit; + usb_desc_output_terminal speak_out_terminal; +#endif + +#ifdef USE_USB_AUDIO_MICPHONE + usb_desc_itf mic_std_as_itf_zeroband; + usb_desc_itf mic_std_as_itf_opera; + usb_desc_AS_itf mic_as_itf; + usb_desc_format_type mic_format_typeI; + usb_desc_std_ep mic_std_endpoint; + usb_desc_AS_ep mic_as_endpoint; +#endif + +#ifdef USE_USB_AUDIO_SPEAKER + usb_desc_itf speak_std_as_itf_zeroband; + usb_desc_itf speak_std_as_itf_opera; + usb_desc_AS_itf speak_as_itf; + usb_desc_format_type speak_format_typeI; + usb_desc_std_ep speak_std_endpoint; + usb_desc_AS_ep speak_as_endpoint; +#endif +} usb_desc_config_set; + +typedef struct +{ + /* main buffer for audio data out transfers and its relative pointers */ + uint8_t isoc_out_buff[TOTAL_OUT_BUF_SIZE * 2U]; + uint8_t* isoc_out_wrptr; + uint8_t* isoc_out_rdptr; + + /* main buffer for audio control requests transfers and its relative variables */ + uint8_t audioctl[64]; + uint8_t audioctl_unit; + uint32_t audioctl_len; + +#ifdef USE_USB_AUDIO_SPEAKER + uint32_t play_flag; +#endif /* USE_USB_AUDIO_SPEAKER */ +} usbd_audio_handler; + +extern usb_desc audio_desc; +extern usb_class_core usbd_audio_cb; + +#endif /* __AUDIO_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Include/audio_out_itf.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Include/audio_out_itf.h new file mode 100644 index 0000000000..389e56ff2e --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Include/audio_out_itf.h @@ -0,0 +1,76 @@ +/*! + \file audio_out_itf.h + \brief audio OUT (playback) interface header file + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __AUDIO_OUT_ITF_H +#define __AUDIO_OUT_ITF_H + +#include "usbd_conf.h" + +/* audio commands enumeration */ +typedef enum +{ + AUDIO_CMD_PLAY = 1U, + AUDIO_CMD_PAUSE, + AUDIO_CMD_STOP, +}audio_cmd_enum; + +/* mute commands */ +#define AUDIO_MUTE 0x01U +#define AUDIO_UNMUTE 0x00U + +/* functions return value */ +#define AUDIO_OK 0x00U +#define AUDIO_FAIL 0xFFU + +/* audio machine states */ +#define AUDIO_STATE_INACTIVE 0x00U +#define AUDIO_STATE_ACTIVE 0x01U +#define AUDIO_STATE_PLAYING 0x02U +#define AUDIO_STATE_PAUSED 0x03U +#define AUDIO_STATE_STOPPED 0x04U +#define AUDIO_STATE_ERROR 0x05U + +typedef struct { + uint8_t (*audio_init) (uint32_t audio_freq, uint32_t volume, uint32_t options); + uint8_t (*audio_deinit) (uint32_t options); + uint8_t (*audio_cmd) (uint8_t* pbuf, uint32_t size, uint8_t cmd); + uint8_t (*audio_volume_ctl) (uint8_t vol); + uint8_t (*audio_mute_ctl) (uint8_t cmd); + uint8_t (*audio_periodic_tc) (uint8_t cmd); + uint8_t (*audio_state_get) (void); +} audio_fops_struct; + +extern audio_fops_struct audio_out_fops; + +#endif /* __AUDIO_OUT_ITF_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Source/audio_core.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Source/audio_core.c new file mode 100644 index 0000000000..00814265bd --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Source/audio_core.c @@ -0,0 +1,777 @@ +/*! + \file audio_core.c + \brief USB audio device class core functions + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "audio_out_itf.h" +#include "audio_core.h" +#include + +#define USBD_VID 0x28E9U +#define USBD_PID 0x9574U + +#ifdef USE_USB_AUDIO_MICPHONE +extern volatile uint32_t count_data; +extern const char wavetestdata[]; +#define LENGTH_DATA (1747 * 32) +#endif + +/* local function prototypes ('static') */ +static uint8_t audio_init (usb_dev *udev, uint8_t config_index); +static uint8_t audio_deinit (usb_dev *udev, uint8_t config_index); +static uint8_t audio_req_handler (usb_dev *udev, usb_req *req); +static uint8_t audio_data_in (usb_dev *udev, uint8_t ep_num); +static uint8_t audio_data_out (usb_dev *udev, uint8_t ep_num); +static uint8_t usbd_audio_sof (usb_dev *udev); + +usb_class_core usbd_audio_cb = { + .init = audio_init, + .deinit = audio_deinit, + .req_proc = audio_req_handler, + .data_in = audio_data_in, + .data_out = audio_data_out, + .SOF = usbd_audio_sof +}; + +#define VOL_MIN 0U /* volume Minimum Value */ +#define VOL_MAX 100U /* volume Maximum Value */ +#define VOL_RES 1U /* volume Resolution */ +#define VOL_0dB 70U /* 0dB is in the middle of VOL_MIN and VOL_MAX */ + +/* note:it should use the c99 standard when compiling the below codes */ +/* USB standard device descriptor */ +__ALIGN_BEGIN const usb_desc_dev audio_dev_desc __ALIGN_END = +{ + .header = + { + .bLength = USB_DEV_DESC_LEN, + .bDescriptorType = USB_DESCTYPE_DEV + }, + .bcdUSB = 0x0200U, + .bDeviceClass = 0x00U, + .bDeviceSubClass = 0x00U, + .bDeviceProtocol = 0x00U, + .bMaxPacketSize0 = USB_FS_EP0_MAX_LEN, + .idVendor = USBD_VID, + .idProduct = USBD_PID, + .bcdDevice = 0x0100U, + .iManufacturer = STR_IDX_MFC, + .iProduct = STR_IDX_PRODUCT, + .iSerialNumber = STR_IDX_SERIAL, + .bNumberConfigurations = USBD_CFG_MAX_NUM +}; + +/* USB device configuration descriptor */ +__ALIGN_BEGIN const usb_desc_config_set audio_config_set __ALIGN_END = +{ + .config = + { + .header = + { + .bLength = sizeof(usb_desc_config), + .bDescriptorType = USB_DESCTYPE_CONFIG + }, + .wTotalLength = AUDIO_CONFIG_DESC_SET_LEN, + .bNumInterfaces = 0x01U + CONFIG_DESC_AS_ITF_COUNT, + .bConfigurationValue = 0x01U, + .iConfiguration = 0x00U, + .bmAttributes = 0xC0U, + .bMaxPower = 0x32U + }, + + .std_itf = + { + .header = + { + .bLength = sizeof(usb_desc_itf), + .bDescriptorType = USB_DESCTYPE_ITF + }, + .bInterfaceNumber = 0x00U, + .bAlternateSetting = 0x00U, + .bNumEndpoints = 0x00U, + .bInterfaceClass = USB_CLASS_AUDIO, + .bInterfaceSubClass = AUDIO_SUBCLASS_CONTROL, + .bInterfaceProtocol = AUDIO_PROTOCOL_UNDEFINED, + .iInterface = 0x00U + }, + + .ac_itf = + { + .header = + { + .bLength = sizeof(usb_desc_AC_itf), + .bDescriptorType = AUDIO_DESCTYPE_INTERFACE + }, + .bDescriptorSubtype = 0x01U, + .bcdADC = 0x0100U, + .wTotalLength = AC_ITF_TOTAL_LEN, + .bInCollection = CONFIG_DESC_AS_ITF_COUNT, +#ifdef USE_USB_AUDIO_MICPHONE + .baInterfaceNr0 = 0x01U, +#endif +#ifdef USE_USB_AUDIO_SPEAKER + .baInterfaceNr1 = 0x02U +#endif + }, + +#ifdef USE_USB_AUDIO_MICPHONE + .mic_in_terminal = + { + .header = + { + .bLength = sizeof(usb_desc_input_terminal), + .bDescriptorType = AUDIO_DESCTYPE_INTERFACE + }, + .bDescriptorSubtype = 0x02U, + .bTerminalID = 0x01U, + .wTerminalType = 0x0201U, + .bAssocTerminal = 0x00U, + .bNrChannels = 0x02U, + .wChannelConfig = 0x0003U, + .iChannelNames = 0x00U, + .iTerminal = 0x00U + }, + + .mic_feature_unit = + { + .header = + { + .bLength = sizeof(usb_desc_mono_feature_unit), + .bDescriptorType = AUDIO_DESCTYPE_INTERFACE + }, + .bDescriptorSubtype = AUDIO_CONTROL_FEATURE_UNIT, + .bUnitID = AUDIO_IN_STREAMING_CTRL, + .bSourceID = 0x01U, + .bControlSize = 0x01U, + .bmaControls0 = AUDIO_CONTROL_MUTE, + .bmaControls1 = AUDIO_CONTROL_VOLUME, + .iFeature = 0x00U + }, + + .mic_out_terminal = + { + .header = + { + .bLength = sizeof(usb_desc_output_terminal), + .bDescriptorType = AUDIO_DESCTYPE_INTERFACE + }, + .bDescriptorSubtype = AUDIO_CONTROL_OUTPUT_TERMINAL, + .bTerminalID = 0x03U, + .wTerminalType = 0x0101U, + .bAssocTerminal = 0x00U, + .bSourceID = 0x02U, + .iTerminal = 0x00U + }, +#endif + +#ifdef USE_USB_AUDIO_SPEAKER + .speak_in_terminal = + { + .header = + { + .bLength = sizeof(usb_desc_input_terminal), + .bDescriptorType = AUDIO_DESCTYPE_INTERFACE + }, + .bDescriptorSubtype = AUDIO_CONTROL_INPUT_TERMINAL, + .bTerminalID = 0x04U, + .wTerminalType = 0x0101U, + .bAssocTerminal = 0x00U, + .bNrChannels = 0x02U, + .wChannelConfig = 0x0003U, + .iChannelNames = 0x00U, + .iTerminal = 0x00U + }, + + .speak_feature_unit = + { + .header = + { + .bLength = sizeof(usb_desc_mono_feature_unit), + .bDescriptorType = AUDIO_DESCTYPE_INTERFACE + }, + .bDescriptorSubtype = AUDIO_CONTROL_FEATURE_UNIT, + .bUnitID = AUDIO_OUT_STREAMING_CTRL, + .bSourceID = 0x04U, + .bControlSize = 0x01U, + .bmaControls0 = AUDIO_CONTROL_MUTE, + .bmaControls1 = AUDIO_CONTROL_VOLUME, + .iFeature = 0x00U + }, + + .speak_out_terminal = + { + .header = + { + .bLength = sizeof(usb_desc_output_terminal), + .bDescriptorType = AUDIO_DESCTYPE_INTERFACE + }, + .bDescriptorSubtype = AUDIO_CONTROL_OUTPUT_TERMINAL, + .bTerminalID = 0x06U, + .wTerminalType = 0x0301U, + .bAssocTerminal = 0x00U, + .bSourceID = 0x05U, + .iTerminal = 0x00U + }, +#endif + +#ifdef USE_USB_AUDIO_MICPHONE + .mic_std_as_itf_zeroband = + { + .header = + { + .bLength = sizeof(usb_desc_itf), + .bDescriptorType = USB_DESCTYPE_ITF + }, + .bInterfaceNumber = 0x01U, + .bAlternateSetting = 0x00U, + .bNumEndpoints = 0x00U, + .bInterfaceClass = USB_CLASS_AUDIO, + .bInterfaceSubClass = AUDIO_SUBCLASS_AUDIOSTREAMING, + .bInterfaceProtocol = AUDIO_PROTOCOL_UNDEFINED, + .iInterface = 0x00U + }, + + .mic_std_as_itf_opera = + { + .header = + { + .bLength = sizeof(usb_desc_itf), + .bDescriptorType = USB_DESCTYPE_ITF + }, + .bInterfaceNumber = 0x01U, + .bAlternateSetting = 0x01U, + .bNumEndpoints = 0x01U, + .bInterfaceClass = USB_CLASS_AUDIO, + .bInterfaceSubClass = AUDIO_SUBCLASS_AUDIOSTREAMING, + .bInterfaceProtocol = AUDIO_PROTOCOL_UNDEFINED, + .iInterface = 0x00U + }, + + .mic_as_itf = + { + .header = + { + .bLength = sizeof(usb_desc_AS_itf), + .bDescriptorType = AUDIO_DESCTYPE_INTERFACE + }, + .bDescriptorSubtype = AUDIO_STREAMING_GENERAL, + .bTerminalLink = 0x03U, + .bDelay = 0x01U, + .wFormatTag = 0x0001U, + }, + + .mic_format_typeI = + { + .header = + { + .bLength = sizeof(usb_desc_format_type), + .bDescriptorType = AUDIO_DESCTYPE_INTERFACE + }, + .bDescriptorSubtype = AUDIO_STREAMING_FORMAT_TYPE, + .bFormatType = AUDIO_FORMAT_TYPE_I, + .bNrChannels = MIC_IN_CHANNEL_NBR, + .bSubFrameSize = 0x02U, + .bBitResolution = MIC_IN_BIT_RESOLUTION, + .bSamFreqType = 0x01U, + .bSamFreq[0] = (uint8_t)USBD_MIC_FREQ, + .bSamFreq[1] = USBD_MIC_FREQ >> 8U, + .bSamFreq[2] = USBD_MIC_FREQ >> 16U + }, + + .mic_std_endpoint = + { + .header = + { + .bLength = sizeof(usb_desc_std_ep), + .bDescriptorType = USB_DESCTYPE_EP + }, + .bEndpointAddress = AUDIO_IN_EP, + .bmAttributes = USB_ENDPOINT_TYPE_ISOCHRONOUS, + .wMaxPacketSize = MIC_IN_PACKET, + .bInterval = 0x01U, + .bRefresh = 0x00U, + .bSynchAddress = 0x00U + }, + + .mic_as_endpoint = + { + .header = + { + .bLength = sizeof(usb_desc_AS_ep), + .bDescriptorType = AUDIO_DESCTYPE_ENDPOINT + }, + .bDescriptorSubtype = AUDIO_ENDPOINT_GENERAL, + .bmAttributes = 0x00U, + .bLockDelayUnits = 0x00U, + .wLockDelay = 0x0000U, + }, +#endif + +#ifdef USE_USB_AUDIO_SPEAKER + .speak_std_as_itf_zeroband = + { + .header = + { + .bLength = sizeof(usb_desc_itf), + .bDescriptorType = USB_DESCTYPE_ITF + }, + .bInterfaceNumber = 0x02U, + .bAlternateSetting = 0x00U, + .bNumEndpoints = 0x00U, + .bInterfaceClass = USB_CLASS_AUDIO, + .bInterfaceSubClass = AUDIO_SUBCLASS_AUDIOSTREAMING, + .bInterfaceProtocol = AUDIO_PROTOCOL_UNDEFINED, + .iInterface = 0x00U + }, + + .speak_std_as_itf_opera = + { + .header = + { + .bLength = sizeof(usb_desc_itf), + .bDescriptorType = USB_DESCTYPE_ITF + }, + .bInterfaceNumber = 0x02U, + .bAlternateSetting = 0x01U, + .bNumEndpoints = 0x01U, + .bInterfaceClass = USB_CLASS_AUDIO, + .bInterfaceSubClass = AUDIO_SUBCLASS_AUDIOSTREAMING, + .bInterfaceProtocol = AUDIO_PROTOCOL_UNDEFINED, + .iInterface = 0x00U + }, + + .speak_as_itf = + { + .header = + { + .bLength = sizeof(usb_desc_AS_itf), + .bDescriptorType = AUDIO_DESCTYPE_INTERFACE + }, + .bDescriptorSubtype = AUDIO_STREAMING_GENERAL, + .bTerminalLink = 0x04U, + .bDelay = 0x01U, + .wFormatTag = 0x0001U, + }, + + .speak_format_typeI = + { + .header = + { + .bLength = sizeof(usb_desc_format_type), + .bDescriptorType = AUDIO_DESCTYPE_INTERFACE + }, + .bDescriptorSubtype = AUDIO_STREAMING_FORMAT_TYPE, + .bFormatType = AUDIO_FORMAT_TYPE_I, + .bNrChannels = SPEAKER_OUT_CHANNEL_NBR, + .bSubFrameSize = 0x02U, + .bBitResolution = SPEAKER_OUT_BIT_RESOLUTION, + .bSamFreqType = 0x01U, + .bSamFreq[0] = (uint8_t)USBD_SPEAKER_FREQ, + .bSamFreq[1] = USBD_SPEAKER_FREQ >> 8U, + .bSamFreq[2] = USBD_SPEAKER_FREQ >> 16U + }, + + .speak_std_endpoint = + { + .header = + { + .bLength = sizeof(usb_desc_std_ep), + .bDescriptorType = USB_DESCTYPE_EP + }, + .bEndpointAddress = AUDIO_OUT_EP, + .bmAttributes = USB_ENDPOINT_TYPE_ISOCHRONOUS, + .wMaxPacketSize = SPEAKER_OUT_PACKET, + .bInterval = 0x01U, + .bRefresh = 0x00U, + .bSynchAddress = 0x00U + }, + + .speak_as_endpoint = + { + .header = + { + .bLength = sizeof(usb_desc_AS_ep), + .bDescriptorType = AUDIO_DESCTYPE_ENDPOINT + }, + .bDescriptorSubtype = AUDIO_ENDPOINT_GENERAL, + .bmAttributes = 0x00U, + .bLockDelayUnits = 0x00U, + .wLockDelay = 0x0000U, + } +#endif +}; + +/* USB language ID descriptor */ +static __ALIGN_BEGIN const usb_desc_LANGID usbd_language_id_desc __ALIGN_END = +{ + .header = + { + .bLength = sizeof(usb_desc_LANGID), + .bDescriptorType = USB_DESCTYPE_STR + }, + + .wLANGID = ENG_LANGID +}; + +/* USB manufacture string */ +static __ALIGN_BEGIN const usb_desc_str manufacturer_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(10), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'i', 'g', 'a', 'D', 'e', 'v', 'i', 'c', 'e'} +}; + +/* USB product string */ +static __ALIGN_BEGIN const usb_desc_str product_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(14), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'D', '3', '2', '-', 'U', 'S', 'B', '_', 'A', 'u', 'd', 'i', 'o'} +}; + +/* USBD serial string */ +static __ALIGN_BEGIN usb_desc_str serial_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(12), + .bDescriptorType = USB_DESCTYPE_STR, + } +}; + +/* USB string descriptor */ +void *const usbd_audio_strings[] = +{ + [STR_IDX_LANGID] = (uint8_t *)&usbd_language_id_desc, + [STR_IDX_MFC] = (uint8_t *)&manufacturer_string, + [STR_IDX_PRODUCT] = (uint8_t *)&product_string, + [STR_IDX_SERIAL] = (uint8_t *)&serial_string +}; + +usb_desc audio_desc = { + .dev_desc = (uint8_t *)&audio_dev_desc, + .config_desc = (uint8_t *)&audio_config_set, + .strings = usbd_audio_strings +}; + +/*! + \brief initialize the AUDIO device + \param[in] udev: pointer to USB device instance + \param[in] config_index: configuration index + \param[out] none + \retval USB device operation status +*/ +static uint8_t audio_init (usb_dev *udev, uint8_t config_index) +{ + static __ALIGN_BEGIN usbd_audio_handler audio_handler __ALIGN_END; + + memset((void *)&audio_handler, 0, sizeof(usbd_audio_handler)); + +#ifdef USE_USB_AUDIO_MICPHONE +{ + usb_desc_std_ep std_ep = audio_config_set.mic_std_endpoint; + + usb_desc_ep ep = { + .header = std_ep.header, + .bEndpointAddress = std_ep.bEndpointAddress, + .bmAttributes = std_ep.bmAttributes, + .wMaxPacketSize = std_ep.wMaxPacketSize, + .bInterval = std_ep.bInterval + }; + + /* initialize TX endpoint */ + usbd_ep_setup (udev, &ep); +} +#endif + +#ifdef USE_USB_AUDIO_SPEAKER +{ + audio_handler.isoc_out_rdptr = audio_handler.isoc_out_buff; + audio_handler.isoc_out_wrptr = audio_handler.isoc_out_buff; + + usb_desc_std_ep std_ep = audio_config_set.speak_std_endpoint; + + usb_desc_ep ep = { + .header = std_ep.header, + .bEndpointAddress = std_ep.bEndpointAddress, + .bmAttributes = std_ep.bmAttributes, + .wMaxPacketSize = std_ep.wMaxPacketSize, + .bInterval = std_ep.bInterval + }; + + /* initialize RX endpoint */ + usbd_ep_setup (udev, &ep); + + /* initialize the audio output hardware layer */ + if (USBD_OK != audio_out_fops.audio_init(USBD_AUDIO_FREQ_16K, DEFAULT_VOLUME, 0U)) { + return USBD_FAIL; + } + + /* prepare OUT endpoint to receive audio data */ + usbd_ep_recev (udev, AUDIO_OUT_EP, (uint8_t*)audio_handler.isoc_out_buff, SPEAKER_OUT_PACKET); +} +#endif + + udev->dev.class_data[USBD_AUDIO_INTERFACE] = (void *)&audio_handler; + + return USBD_OK; +} + +/*! + \brief de-initialize the AUDIO device + \param[in] udev: pointer to USB device instance + \param[in] config_index: configuration index + \param[out] none + \retval USB device operation status +*/ +static uint8_t audio_deinit (usb_dev *udev, uint8_t config_index) +{ +#ifdef USE_USB_AUDIO_MICPHONE + /* deinitialize AUDIO endpoints */ + usbd_ep_clear(udev, AUDIO_IN_EP); +#endif + +#ifdef USE_USB_AUDIO_SPEAKER + /* deinitialize AUDIO endpoints */ + usbd_ep_clear(udev, AUDIO_OUT_EP); + + /* deinitialize the audio output hardware layer */ + if (USBD_OK != audio_out_fops.audio_deinit(0U)) { + return USBD_FAIL; + } +#endif + + return USBD_OK; +} + +/*! + \brief handle the AUDIO class-specific requests + \param[in] udev: pointer to USB device instance + \param[in] req: device class-specific request + \param[out] none + \retval USB device operation status +*/ +static uint8_t audio_req_handler (usb_dev *udev, usb_req *req) +{ + uint8_t status = REQ_NOTSUPP; + + usbd_audio_handler *audio = (usbd_audio_handler *)udev->dev.class_data[USBD_AUDIO_INTERFACE]; + + usb_transc *transc_in = &udev->dev.transc_in[0]; + usb_transc *transc_out = &udev->dev.transc_out[0]; + + switch (req->bRequest) { + case AUDIO_REQ_GET_CUR: + transc_in->xfer_buf = audio->audioctl; + transc_in->remain_len = req->wLength; + + status = REQ_SUPP; + break; + + case AUDIO_REQ_SET_CUR: + if (req->wLength) { + transc_out->xfer_buf = audio->audioctl; + transc_out->remain_len = req->wLength; + + udev->dev.class_core->command = AUDIO_REQ_SET_CUR; + + audio->audioctl_len = req->wLength; + audio->audioctl_unit = BYTE_HIGH(req->wIndex); + + status = REQ_SUPP; + } + break; + + case AUDIO_REQ_GET_MIN: + *((uint16_t *)audio->audioctl) = VOL_MIN; + transc_in->xfer_buf = audio->audioctl; + transc_in->remain_len = req->wLength; + status = REQ_SUPP; + break; + + case AUDIO_REQ_GET_MAX: + *((uint16_t *)audio->audioctl) = VOL_MAX; + transc_in->xfer_buf = audio->audioctl; + transc_in->remain_len = req->wLength; + status = REQ_SUPP; + break; + + case AUDIO_REQ_GET_RES: + *((uint16_t *)audio->audioctl) = VOL_RES; + transc_in->xfer_buf = audio->audioctl; + transc_in->remain_len = req->wLength; + status = REQ_SUPP; + break; + + default: + break; + } + + return status; +} + +/*! + \brief handles the audio IN data stage + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint number + \param[out] none + \retval USB device operation status +*/ +static uint8_t audio_data_in (usb_dev *udev, uint8_t ep_num) +{ +#ifdef USE_USB_AUDIO_MICPHONE + if(count_data < LENGTH_DATA){ + /* Prepare next buffer to be sent: dummy data */ + usbd_ep_send(udev, AUDIO_IN_EP,(uint8_t*)&wavetestdata[count_data],MIC_IN_PACKET); + count_data += MIC_IN_PACKET; + } else { + usbd_ep_send(udev, AUDIO_IN_EP,(uint8_t*)wavetestdata,MIC_IN_PACKET); + count_data = MIC_IN_PACKET; + } +#endif + + return USBD_OK; +} + +/*! + \brief handles the audio OUT data stage + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint number + \param[out] none + \retval USB device operation status +*/ +static uint8_t audio_data_out (usb_dev *udev, uint8_t ep_num) +{ +#ifdef USE_USB_AUDIO_SPEAKER + usbd_audio_handler *audio = (usbd_audio_handler *)udev->dev.class_data[USBD_AUDIO_INTERFACE]; + + if (AUDIO_OUT_EP == ep_num) { + /* increment the Buffer pointer or roll it back when all buffers are full */ + if (audio->isoc_out_wrptr >= (audio->isoc_out_buff + (SPEAKER_OUT_PACKET * OUT_PACKET_NUM))) { + /* all buffers are full: roll back */ + audio->isoc_out_wrptr = audio->isoc_out_buff; + } else { + /* increment the buffer pointer */ + audio->isoc_out_wrptr += SPEAKER_OUT_PACKET; + } + + /* Toggle the frame index */ + udev->dev.transc_out[ep_num].frame_num = + (udev->dev.transc_out[ep_num].frame_num)? 0U:1U; + + /* prepare out endpoint to receive next audio packet */ + usbd_ep_recev (udev, AUDIO_OUT_EP, (uint8_t*)(audio->isoc_out_wrptr), SPEAKER_OUT_PACKET); + + /* trigger the start of streaming only when half buffer is full */ + if ((0U == audio->play_flag) && (audio->isoc_out_wrptr >= (audio->isoc_out_buff + ((SPEAKER_OUT_PACKET * OUT_PACKET_NUM) / 2U)))) { + /* enable start of streaming */ + audio->play_flag = 1U; + } + } else { + /* handles audio control requests data */ + /* check if an audio_control request has been issued */ + if (AUDIO_REQ_SET_CUR == udev->dev.class_core->command) { + /* in this driver, to simplify code, only SET_CUR request is managed */ + + /* check for which addressed unit the audio_control request has been issued */ + if (AUDIO_OUT_STREAMING_CTRL == audio->audioctl_unit) { + /* in this driver, to simplify code, only one unit is manage */ + + /* call the audio interface mute function */ + audio_out_fops.audio_mute_ctl(audio->audioctl[0]); + + /* reset the audioctl_cmd variable to prevent re-entering this function */ + udev->dev.class_core->command = 0U; + + audio->audioctl_len = 0U; + } + } + } +#endif + + return USBD_OK; +} + +/*! + \brief handles the SOF event (data buffer update and synchronization) + \param[in] udev: pointer to USB device instance + \param[out] none + \retval USB device operation status +*/ +static uint8_t usbd_audio_sof (usb_dev *udev) +{ +#ifdef USE_USB_AUDIO_SPEAKER + usbd_audio_handler *audio = (usbd_audio_handler *)udev->dev.class_data[USBD_AUDIO_INTERFACE]; + + /* check if there are available data in stream buffer. + in this function, a single variable (play_flag) is used to avoid software delays. + the play operation must be executed as soon as possible after the SOF detection. */ + if (audio->play_flag) { + /* start playing received packet */ + audio_out_fops.audio_cmd((uint8_t*)(audio->isoc_out_rdptr), /* samples buffer pointer */ + SPEAKER_OUT_PACKET, /* number of samples in Bytes */ + AUDIO_CMD_PLAY); /* command to be processed */ + + /* increment the Buffer pointer or roll it back when all buffers all full */ + if (audio->isoc_out_rdptr >= (audio->isoc_out_buff + (SPEAKER_OUT_PACKET * OUT_PACKET_NUM))) { + /* roll back to the start of buffer */ + audio->isoc_out_rdptr = audio->isoc_out_buff; + } else { + /* increment to the next sub-buffer */ + audio->isoc_out_rdptr += SPEAKER_OUT_PACKET; + } + + /* if all available buffers have been consumed, stop playing */ + if (audio->isoc_out_rdptr == audio->isoc_out_wrptr) { + /* Pause the audio stream */ + audio_out_fops.audio_cmd((uint8_t*)(audio->isoc_out_buff), /* samples buffer pointer */ + SPEAKER_OUT_PACKET, /* number of samples in Bytes */ + AUDIO_CMD_PAUSE); /* command to be processed */ + + /* stop entering play loop */ + audio->play_flag = 0U; + + /* reset buffer pointers */ + audio->isoc_out_rdptr = audio->isoc_out_buff; + audio->isoc_out_wrptr = audio->isoc_out_buff; + } + } +#endif + + return USBD_OK; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Source/audio_out_itf.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Source/audio_out_itf.c new file mode 100644 index 0000000000..b5a3127293 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Source/audio_out_itf.c @@ -0,0 +1,228 @@ +/*! + \file audio_out_itf.c + \brief audio OUT (playback) interface functions + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "audio_core.h" +#include "audio_out_itf.h" + +static uint8_t init (uint32_t audiofreq, uint32_t volume, uint32_t options); +static uint8_t deinit (uint32_t options); +static uint8_t audio_cmd (uint8_t* pbuf, uint32_t size, uint8_t cmd); +static uint8_t volume_ctl (uint8_t vol); +static uint8_t mute_ctl (uint8_t cmd); +static uint8_t periodic_tc (uint8_t cmd); +static uint8_t get_state (void); + +audio_fops_struct audio_out_fops = +{ + init, + deinit, + audio_cmd, + volume_ctl, + mute_ctl, + periodic_tc, + get_state +}; + +static uint8_t audio_state = AUDIO_STATE_INACTIVE; + +/*! + \brief initialize and configures all required resources for audio play function + \param[in] audio_freq: statrt_up audio frequency + \param[in] volume: start_up volume to be set + \param[in] options: specific options passed to low layer function + \param[out] none + \retval AUDIO_OK if all operations succeed, AUDIO_FAIL else +*/ +static uint8_t init (uint32_t audio_freq, uint32_t volume, uint32_t options) +{ + static uint32_t initialized = 0U; + + /* check if the low layer has already been initialized */ + if (0U == initialized) { + /* call low layer function */ + if (0U != eval_audio_init(OUTPUT_DEVICE_AUTO, (uint8_t)volume, audio_freq)) { + audio_state = AUDIO_STATE_ERROR; + + return AUDIO_FAIL; + } + + /* set the initialization flag to prevent reinitializing the interface again */ + initialized = 1U; + } + + /* update the audio state machine */ + audio_state = AUDIO_STATE_ACTIVE; + + return AUDIO_OK; +} + +/*! + \brief free all resources used by low layer and stops audio-play function + \param[in] options: specific options passed to low layer function + \param[out] none + \retval AUDIO_OK if all operations succeed, AUDIO_FAIL else +*/ +static uint8_t deinit (uint32_t options) +{ + /* update the audio state machine */ + audio_state = AUDIO_STATE_INACTIVE; + + return AUDIO_OK; +} + +/*! + \brief play, stop, pause or resume current file + \param[in] pbuf: address from which file should be played + \param[in] size: size of the current buffer/file + \param[in] cmd: command to be executed, can be: + \arg AUDIO_CMD_PLAY + \arg AUDIO_CMD_PAUSE + \arg AUDIO_CMD_RESUME + \arg AUDIO_CMD_STOP + \param[out] none + \retval AUDIO_OK if all operations succeed, AUDIO_FAIL else +*/ +static uint8_t audio_cmd (uint8_t* pbuf, uint32_t size, uint8_t cmd) +{ + /* check the current state */ + if ((AUDIO_STATE_INACTIVE == audio_state) || (AUDIO_STATE_ERROR == audio_state)) { + audio_state = AUDIO_STATE_ERROR; + + return AUDIO_FAIL; + } + + switch (cmd) { + /* process the play command */ + case AUDIO_CMD_PLAY: + /* if current state is active or stopped */ + if ((AUDIO_STATE_ACTIVE == audio_state) || \ + (AUDIO_STATE_STOPPED == audio_state) || \ + (AUDIO_STATE_PLAYING == audio_state)) { + audio_mal_play((uint32_t)pbuf, size); + audio_state = AUDIO_STATE_PLAYING; + + return AUDIO_OK; + } else if (AUDIO_STATE_PAUSED == audio_state) { + if (eval_audio_pause_resume(AUDIO_RESUME, (uint32_t)pbuf, (size / 2U))) { + audio_state = AUDIO_STATE_ERROR; + + return AUDIO_FAIL; + } else { + audio_state = AUDIO_STATE_PLAYING; + + return AUDIO_OK; + } + } else { + return AUDIO_FAIL; + } + + /* process the stop command */ + case AUDIO_CMD_STOP: + if (AUDIO_STATE_PLAYING != audio_state) { + /* unsupported command */ + return AUDIO_FAIL; + } else if (eval_audio_stop(CODEC_PDWN_SW)) { + audio_state = AUDIO_STATE_ERROR; + + return AUDIO_FAIL; + } else { + audio_state = AUDIO_STATE_STOPPED; + + return AUDIO_OK; + } + + /* process the pause command */ + case AUDIO_CMD_PAUSE: + if (AUDIO_STATE_PLAYING != audio_state) { + /* unsupported command */ + return AUDIO_FAIL; + } else if (eval_audio_pause_resume(AUDIO_PAUSE, (uint32_t)pbuf, (size / 2U))) { + audio_state = AUDIO_STATE_ERROR; + + return AUDIO_FAIL; + } else { + audio_state = AUDIO_STATE_PAUSED; + + return AUDIO_OK; + } + + /* unsupported command */ + default: + return AUDIO_FAIL; + } +} + +/*! + \brief set the volume level + \param[in] vol: volume level to be set in % (from 0% to 100%) + \param[out] none + \retval AUDIO_OK if all operations succeed, AUDIO_FAIL else +*/ +static uint8_t volume_ctl (uint8_t vol) +{ + return AUDIO_OK; +} + +/*! + \brief mute or unmute the audio current output + \param[in] cmd: can be 0 to unmute, or 1 to mute + \param[out] none + \retval AUDIO_OK if all operations succeed, AUDIO_FAIL else +*/ +static uint8_t mute_ctl (uint8_t cmd) +{ + return AUDIO_OK; +} + +/*! + \brief periodic transfer control + \param[in] cmd: command + \param[out] none + \retval AUDIO_OK if all operations succeed, AUDIO_FAIL else +*/ +static uint8_t periodic_tc (uint8_t cmd) +{ + return AUDIO_OK; +} + +/*! + \brief return the current state of the audio machine + \param[in] none + \param[out] none + \retval AUDIO_OK if all operations succeed, AUDIO_FAIL else +*/ +static uint8_t get_state (void) +{ + return audio_state; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Include/dfu_core.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Include/dfu_core.h new file mode 100644 index 0000000000..54baa6dd88 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Include/dfu_core.h @@ -0,0 +1,176 @@ +/*! + \file dfu_core.h + \brief the header file of USB DFU device class core functions + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __DFU_CORE_H +#define __DFU_CORE_H + +#include "usbd_enum.h" + +/* DFU class code */ +#define USB_DFU_CLASS 0xFEU + +/* DFU subclass code */ +#define USB_DFU_SUBCLASS_UPGRADE 0x01U + +/* DFU protocol code */ +#define USB_DFU_PROTOCL_RUNTIME 0x01U +#define USB_DFU_PROTOCL_DFU 0x02U + +/* manifestation state */ +#define MANIFEST_COMPLETE 0x00U +#define MANIFEST_IN_PROGRESS 0x01U + +/* DFU attributes code */ +#define USB_DFU_CAN_DOWNLOAD 0x01U +#define USB_DFU_CAN_UPLOAD 0x02U +#define USB_DFU_MANIFEST_TOLERANT 0x04U +#define USB_DFU_WILL_DETACH 0x08U + +/* special commands with download request */ +#define GET_COMMANDS 0x00U +#define SET_ADDRESS_POINTER 0x21U +#define ERASE 0x41U + +/* memory operation command */ +#define CMD_ERASE 0U +#define CMD_WRITE 1U + +#define _BYTE1(x) (uint8_t)((x) & 0xFFU) /*!< addressing cycle 1st byte */ +#define _BYTE2(x) (uint8_t)(((x) & 0xFF00U) >> 8U) /*!< addressing cycle 2nd byte */ +#define _BYTE3(x) (uint8_t)(((x) & 0xFF0000U) >> 16U) /*!< addressing cycle 3rd byte */ + +#define FLASH_ERASE_TIMEOUT 60U +#define FLASH_WRITE_TIMEOUT 80U + +/* bit detach capable = bit 3 in bmAttributes field */ +#define DFU_DETACH_MASK (uint8_t)(0x10U) + +#define USB_SERIAL_STR_LEN 0x06U + +#define USB_DFU_CONFIG_DESC_SIZE 27U + +#define DFU_DESC_TYPE 0x21U + +/* DFU device state defines */ +typedef enum { + STATE_APP_IDLE = 0x00U, + STATE_APP_DETACH, + STATE_DFU_IDLE, + STATE_DFU_DNLOAD_SYNC, + STATE_DFU_DNBUSY, + STATE_DFU_DNLOAD_IDLE, + STATE_DFU_MANIFEST_SYNC, + STATE_DFU_MANIFEST, + STATE_DFU_MANIFEST_WAIT_RESET, + STATE_DFU_UPLOAD_IDLE, + STATE_DFU_ERROR +} dfu_state; + +/* DFU device status defines */ +typedef enum { + STATUS_OK = 0x00U, + STATUS_ERR_TARGET, + STATUS_ERR_FILE, + STATUS_ERR_WRITE, + STATUS_ERR_ERASE, + STATUS_ERR_CHECK_ERASED, + STATUS_ERR_PROG, + STATUS_ERR_VERIFY, + STATUS_ERR_ADDRESS, + STATUS_ERR_NOTDONE, + STATUS_ERR_FIRMWARE, + STATUS_ERR_VENDOR, + STATUS_ERR_USBR, + STATUS_ERR_POR, + STATUS_ERR_UNKNOWN, + STATUS_ERR_STALLEDPKT +} dfu_status; + +/* DFU class-specific requests */ +typedef enum { + DFU_DETACH = 0U, + DFU_DNLOAD, + DFU_UPLOAD, + DFU_GETSTATUS, + DFU_CLRSTATUS, + DFU_GETSTATE, + DFU_ABORT, + DFU_REQ_MAX +} dfu_requests; + +#pragma pack(1) + +/* USB DFU function descriptor structure */ +typedef struct +{ + usb_desc_header header; /*!< descriptor header, including type and size */ + uint8_t bmAttributes; /*!< DFU attributes */ + uint16_t wDetachTimeOut; /*!< time, in milliseconds, that the device will wait after receipt of the DFU_DETACH request. If */ + uint16_t wTransferSize; /*!< maximum number of bytes that the device can accept per control-write transaction */ + uint16_t bcdDFUVersion; /*!< numeric expression identifying the version of the DFU Specification release. */ +} usb_desc_dfu_func; + +#pragma pack() + +/* USB configuration descriptor structure */ +typedef struct +{ + usb_desc_config config; + usb_desc_itf dfu_itf; + usb_desc_dfu_func dfu_func; +} usb_dfu_desc_config_set; + +typedef struct +{ + uint8_t bStatus; + uint8_t bwPollTimeout0; + uint8_t bwPollTimeout1; + uint8_t bwPollTimeout2; + uint8_t bState; + uint8_t iString; + + uint8_t manifest_state; + uint32_t data_len; + uint16_t block_num; + uint32_t base_addr; + + uint8_t buf[TRANSFER_SIZE]; +} usbd_dfu_handler; + +typedef void (*app_func) (void); + +extern usb_desc dfu_desc; +extern usb_class_core dfu_class; + +#endif /* DFU_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Include/dfu_mal.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Include/dfu_mal.h new file mode 100644 index 0000000000..9dc27adc85 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Include/dfu_mal.h @@ -0,0 +1,84 @@ +/*! + \file dfu_mal.h + \brief USB DFU device media access layer header file + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __DFU_MAL_H +#define __DFU_MAL_H + +#include "usbd_conf.h" + +typedef struct _dfu_mal_prop +{ + const uint8_t* pstr_desc; + + uint8_t (*mal_init) (void); + uint8_t (*mal_deinit) (void); + uint8_t (*mal_erase) (uint32_t addr); + uint8_t (*mal_write) (uint8_t *buf, uint32_t addr, uint32_t len); + uint8_t* (*mal_read) (uint8_t *buf, uint32_t addr, uint32_t len); + uint8_t (*mal_checkaddr) (uint32_t addr); + + const uint32_t erase_timeout; + const uint32_t write_timeout; +} dfu_mal_prop; + +typedef enum +{ + MAL_OK = 0, + MAL_FAIL +} MAL_Status; + +#define _1st_BYTE(x) (uint8_t)((x) & 0xFF) /*!< addressing cycle 1st byte */ +#define _2nd_BYTE(x) (uint8_t)(((x) & 0xFF00) >> 8) /*!< addressing cycle 2nd byte */ +#define _3rd_BYTE(x) (uint8_t)(((x) & 0xFF0000) >> 16) /*!< addressing cycle 3rd byte */ + +#define SET_POLLING_TIMEOUT(x) buffer[0] = _1st_BYTE(x);\ + buffer[1] = _2nd_BYTE(x);\ + buffer[2] = _3rd_BYTE(x); + +/* function declarations */ +/* initialize the memory media on the GD32 */ +uint8_t dfu_mal_init(void); +/* deinitialize the memory media on the GD32 */ +uint8_t dfu_mal_deinit(void); +/* erase a memory sector */ +uint8_t dfu_mal_erase(uint32_t addr); +/* write data to sectors of memory */ +uint8_t dfu_mal_write(uint8_t *buf, uint32_t addr, uint32_t len); +/* read data from sectors of memory */ +uint8_t* dfu_mal_read(uint8_t *buf, uint32_t addr, uint32_t len); +/* get the status of a given memory and store in buffer */ +uint8_t dfu_mal_getstatus(uint32_t addr, uint8_t cmd, uint8_t *buffer); + +#endif /* __DFU_MAL_H */ + diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Source/dfu_core.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Source/dfu_core.c new file mode 100644 index 0000000000..61190b4c0b --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Source/dfu_core.c @@ -0,0 +1,653 @@ +/*! + \file dfu_core.c + \brief USB DFU device class core functions + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "dfu_core.h" +#include "drv_usb_hw.h" +#include "dfu_mal.h" +#include "flash_if.h" +#include + +#define USBD_VID 0x28E9U +#define USBD_PID 0x0189U + +/* local function prototypes ('static') */ +static uint8_t dfu_init(usb_dev *udev, uint8_t config_index); +static uint8_t dfu_deinit(usb_dev *udev, uint8_t config_index); +static uint8_t dfu_req_handler(usb_dev *udev, usb_req *req); +static uint8_t dfu_data_in(usb_dev *udev, uint8_t ep_num); +static void dfu_detach(usb_dev *udev, usb_req *req); +static void dfu_dnload(usb_dev *udev, usb_req *req); +static void dfu_upload(usb_dev *udev, usb_req *req); +static void dfu_getstatus(usb_dev *udev, usb_req *req); +static void dfu_clrstatus(usb_dev *udev, usb_req *req); +static void dfu_getstate(usb_dev *udev, usb_req *req); +static void dfu_abort(usb_dev *udev, usb_req *req); +static void dfu_mode_leave(usb_dev *udev); +static uint8_t dfu_getstatus_complete (usb_dev *udev); + +static void (*dfu_request_process[])(usb_dev *udev, usb_req *req) = +{ + [DFU_DETACH] = dfu_detach, + [DFU_DNLOAD] = dfu_dnload, + [DFU_UPLOAD] = dfu_upload, + [DFU_GETSTATUS] = dfu_getstatus, + [DFU_CLRSTATUS] = dfu_clrstatus, + [DFU_GETSTATE] = dfu_getstate, + [DFU_ABORT] = dfu_abort +}; + +/* note:it should use the c99 standard when compiling the below codes */ +/* USB standard device descriptor */ +__ALIGN_BEGIN const usb_desc_dev dfu_dev_desc __ALIGN_END = +{ + .header = + { + .bLength = USB_DEV_DESC_LEN, + .bDescriptorType = USB_DESCTYPE_DEV + }, + .bcdUSB = 0x0200U, + .bDeviceClass = 0x00U, + .bDeviceSubClass = 0x00U, + .bDeviceProtocol = 0x00U, + .bMaxPacketSize0 = USB_FS_EP0_MAX_LEN, + .idVendor = USBD_VID, + .idProduct = USBD_PID, + .bcdDevice = 0x0100U, + .iManufacturer = STR_IDX_MFC, + .iProduct = STR_IDX_PRODUCT, + .iSerialNumber = STR_IDX_SERIAL, + .bNumberConfigurations = USBD_CFG_MAX_NUM +}; + +/* USB device configuration descriptor */ +__ALIGN_BEGIN const usb_dfu_desc_config_set dfu_config_desc __ALIGN_END = +{ + .config = + { + .header = + { + .bLength = sizeof(usb_desc_config), + .bDescriptorType = USB_DESCTYPE_CONFIG + }, + .wTotalLength = USB_DFU_CONFIG_DESC_SIZE, + .bNumInterfaces = 0x01U, + .bConfigurationValue = 0x01U, + .iConfiguration = 0x00U, + .bmAttributes = 0x80U, + .bMaxPower = 0x32U + }, + + .dfu_itf = + { + .header = + { + .bLength = sizeof(usb_desc_itf), + .bDescriptorType = USB_DESCTYPE_ITF + }, + .bInterfaceNumber = 0x00U, + .bAlternateSetting = 0x00U, + .bNumEndpoints = 0x00U, + .bInterfaceClass = USB_DFU_CLASS, + .bInterfaceSubClass = USB_DFU_SUBCLASS_UPGRADE, + .bInterfaceProtocol = USB_DFU_PROTOCL_DFU, + .iInterface = 0x05U + }, + + .dfu_func = + { + .header = + { + .bLength = sizeof(usb_desc_dfu_func), + .bDescriptorType = DFU_DESC_TYPE + }, + .bmAttributes = USB_DFU_CAN_DOWNLOAD | USB_DFU_CAN_UPLOAD | USB_DFU_WILL_DETACH, + .wDetachTimeOut = 0x00FFU, + .wTransferSize = TRANSFER_SIZE, + .bcdDFUVersion = 0x011AU, + }, +}; + +/* USB language ID Descriptor */ +static __ALIGN_BEGIN const usb_desc_LANGID usbd_language_id_desc __ALIGN_END = +{ + .header = { + .bLength = sizeof(usb_desc_LANGID), + .bDescriptorType = USB_DESCTYPE_STR + }, + .wLANGID = ENG_LANGID +}; + +/* USB manufacture string */ +static __ALIGN_BEGIN const usb_desc_str manufacturer_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(10U), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'i', 'g', 'a', 'D', 'e', 'v', 'i', 'c', 'e'} +}; + +/* USB product string */ +static __ALIGN_BEGIN const usb_desc_str product_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(12U), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'D', '3', '2', '-', 'U', 'S', 'B', '_', 'D', 'F', 'U'} +}; + +/* USBD serial string */ +static __ALIGN_BEGIN usb_desc_str serial_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(2U), + .bDescriptorType = USB_DESCTYPE_STR, + } +}; + +/* USB configure string */ +static __ALIGN_BEGIN const usb_desc_str config_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(15U), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'D', '3', '2', ' ', 'U', 'S', 'B', ' ', 'C', 'O', 'N', 'F', 'I', 'G'} +}; + +static __ALIGN_BEGIN const usb_desc_str interface_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(44U), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'@', 'I', 'n', 't', 'e', 'r', 'n', 'a', 'l', 'F', 'l', 'a', 's', 'h', ' ', '/', '0', 'x', '0', '8', '0', '0', + '0', '0', '0', '0', '/', '1', '6', '*', '0', '0', '1', 'K', 'a', ',', '4', '8', '*', '0', '0', '1', 'K', 'g'} +}; + +void *const usbd_dfu_strings[] = +{ + [STR_IDX_LANGID] = (uint8_t *)&usbd_language_id_desc, + [STR_IDX_MFC] = (uint8_t *)&manufacturer_string, + [STR_IDX_PRODUCT] = (uint8_t *)&product_string, + [STR_IDX_SERIAL] = (uint8_t *)&serial_string, + [STR_IDX_CONFIG] = (uint8_t *)&config_string, + [STR_IDX_ITF] = (uint8_t *)&interface_string +}; + +usb_desc dfu_desc = { + .dev_desc = (uint8_t *)&dfu_dev_desc, + .config_desc = (uint8_t *)&dfu_config_desc, + .strings = usbd_dfu_strings +}; + +usb_class_core dfu_class = { + .init = dfu_init, + .deinit = dfu_deinit, + .req_proc = dfu_req_handler, + .data_in = dfu_data_in +}; + +/*! + \brief initialize the DFU device + \param[in] udev: pointer to USB device instance + \param[in] config_index: configuration index + \param[out] none + \retval USB device operation status +*/ +static uint8_t dfu_init (usb_dev *udev, uint8_t config_index) +{ + static __ALIGN_BEGIN usbd_dfu_handler dfu_handler __ALIGN_END; + + /* unlock the internal flash */ + dfu_mal_init(); + + memset((void *)&dfu_handler, 0, sizeof(usbd_dfu_handler)); + + dfu_handler.base_addr = APP_LOADED_ADDR; + dfu_handler.manifest_state = MANIFEST_COMPLETE; + dfu_handler.bState = STATE_DFU_IDLE; + dfu_handler.bStatus = STATUS_OK; + + udev->dev.class_data[USBD_DFU_INTERFACE] = (void *)&dfu_handler; + + return USBD_OK; +} + +/*! + \brief de-initialize the DFU device + \param[in] udev: pointer to USB device instance + \param[in] config_index: configuration index + \param[out] none + \retval USB device operation status +*/ +static uint8_t dfu_deinit (usb_dev *udev, uint8_t config_index) +{ + usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; + + /* restore device default state */ + memset(udev->dev.class_data[USBD_DFU_INTERFACE], 0, sizeof(usbd_dfu_handler)); + + dfu->bState = STATE_DFU_IDLE; + dfu->bStatus = STATUS_OK; + + /* lock the internal flash */ + dfu_mal_deinit(); + + return USBD_OK; +} + +/*! + \brief handle the DFU class-specific requests + \param[in] udev: pointer to USB device instance + \param[in] req: device class-specific request + \param[out] none + \retval USB device operation status +*/ +static uint8_t dfu_req_handler (usb_dev *udev, usb_req *req) +{ + if (req->bRequest < DFU_REQ_MAX) { + dfu_request_process[req->bRequest](udev, req); + } else { + return USBD_FAIL; + } + + return USBD_OK; +} + +/*! + \brief handle data Stage + \param[in] udev: pointer to USB device instance + \param[in] ep_num: the endpoint number + \param[out] none + \retval USB device operation status +*/ +static uint8_t dfu_data_in (usb_dev *udev, uint8_t ep_num) +{ + if (0U == ep_num) { + dfu_getstatus_complete(udev); + } + + return USBD_OK; +} + +/*! + \brief leave DFU mode and reset device to jump to user loaded code + \param[in] udev: pointer to USB device instance + \param[out] none + \retval none +*/ +static void dfu_mode_leave (usb_dev *udev) +{ + usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; + + dfu->manifest_state = MANIFEST_COMPLETE; + + if (dfu_config_desc.dfu_func.bmAttributes & 0x04U) { + dfu->bState = STATE_DFU_MANIFEST_SYNC; + } else { + dfu->bState = STATE_DFU_MANIFEST_WAIT_RESET; + + /* lock the internal flash */ + dfu_mal_deinit(); + + /* generate system reset to allow jumping to the user code */ + NVIC_SystemReset(); + } +} + +/*! + \brief handle data IN stage in control endpoint 0 + \param[in] udev: pointer to USB device instance + \param[out] none + \retval USB device operation status + */ +static uint8_t dfu_getstatus_complete (usb_dev *udev) +{ + uint32_t addr; + + usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; + + if (STATE_DFU_DNBUSY == dfu->bState) { + /* decode the special command */ + if (0U == dfu->block_num) { + if (1U == dfu->data_len){ + if (GET_COMMANDS == dfu->buf[0]) { + /* no operation */ + } + } else if (5U == dfu->data_len) { + if (SET_ADDRESS_POINTER == dfu->buf[0]) { + /* set flash operation address */ + dfu->base_addr = *(uint32_t *)(dfu->buf + 1U); + } else if (ERASE == dfu->buf[0]) { + dfu->base_addr = *(uint32_t *)(dfu->buf + 1U); + + dfu_mal_erase(dfu->base_addr); + } else { + /* no operation */ + } + } else { + /* no operation */ + } + } else if (dfu->block_num > 1U) { /* regular download command */ + /* decode the required address */ + addr = (dfu->block_num - 2U) * TRANSFER_SIZE + dfu->base_addr; + + dfu_mal_write (dfu->buf, addr, dfu->data_len); + + dfu->block_num = 0U; + } else { + /* no operation */ + } + + dfu->data_len = 0U; + + /* update the device state and poll timeout */ + dfu->bState = STATE_DFU_DNLOAD_SYNC; + + return USBD_OK; + } else if (dfu->bState == STATE_DFU_MANIFEST) { /* manifestation in progress */ + /* start leaving DFU mode */ + dfu_mode_leave(udev); + } else { + /* no operation */ + } + + return USBD_OK; +} + +/*! + \brief handle the DFU_DETACH request + \param[in] udev: pointer to USB device instance + \param[in] req: DFU class request + \param[out] none + \retval none. +*/ +static void dfu_detach(usb_dev *udev, usb_req *req) +{ + usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; + + switch (dfu->bState) { + case STATE_DFU_IDLE: + case STATE_DFU_DNLOAD_SYNC: + case STATE_DFU_DNLOAD_IDLE: + case STATE_DFU_MANIFEST_SYNC: + case STATE_DFU_UPLOAD_IDLE: + dfu->bStatus = STATUS_OK; + dfu->bState = STATE_DFU_IDLE; + dfu->iString = 0U; /* iString */ + + dfu->block_num = 0U; + dfu->data_len = 0U; + break; + + default: + break; + } + + /* check the detach capability in the DFU functional descriptor */ + if (dfu_config_desc.dfu_func.wDetachTimeOut & DFU_DETACH_MASK) { + usbd_disconnect (udev); + + usbd_connect (udev); + } else { + /* wait for the period of time specified in detach request */ + usb_mdelay (4U); + } +} + +/*! + \brief handle the DFU_DNLOAD request + \param[in] udev: pointer to USB device instance + \param[in] req: DFU class request + \param[out] none + \retval none +*/ +static void dfu_dnload(usb_dev *udev, usb_req *req) +{ + usb_transc *transc = &udev->dev.transc_out[0]; + usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; + + switch (dfu->bState) { + case STATE_DFU_IDLE: + case STATE_DFU_DNLOAD_IDLE: + if (req->wLength > 0U) { + /* update the global length and block number */ + dfu->block_num = req->wValue; + dfu->data_len = req->wLength; + + dfu->bState = STATE_DFU_DNLOAD_SYNC; + + transc->remain_len = dfu->data_len; + transc->xfer_buf = dfu->buf; + } else { + dfu->manifest_state = MANIFEST_IN_PROGRESS; + dfu->bState = STATE_DFU_MANIFEST_SYNC; + } + break; + + default: + break; + } +} + +/*! + \brief handles the DFU UPLOAD request. + \param[in] udev: pointer to USB device instance + \param[in] req: DFU class request + \param[out] none + \retval none +*/ +static void dfu_upload (usb_dev *udev, usb_req *req) +{ + uint8_t *phy_addr = NULL; + uint32_t addr = 0U; + usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; + + usb_transc *transc = &udev->dev.transc_in[0]; + + if(req->wLength <= 0U) { + dfu->bState = STATE_DFU_IDLE; + return; + } + + switch (dfu->bState) { + case STATE_DFU_IDLE: + case STATE_DFU_UPLOAD_IDLE: + /* update the global length and block number */ + dfu->block_num = req->wValue; + dfu->data_len = req->wLength; + + /* DFU get command */ + if (0U == dfu->block_num) { + /* update the state machine */ + dfu->bState = (dfu->data_len > 3U) ? STATE_DFU_IDLE : STATE_DFU_UPLOAD_IDLE; + + /* store the values of all supported commands */ + dfu->buf[0] = GET_COMMANDS; + dfu->buf[1] = SET_ADDRESS_POINTER; + dfu->buf[2] = ERASE; + + /* send the status data over EP0 */ + transc->xfer_buf = &(dfu->buf[0]); + transc->remain_len = 3U; + } else if (dfu->block_num > 1U) { + dfu->bState = STATE_DFU_UPLOAD_IDLE; + + /* change is accelerated */ + addr = (dfu->block_num - 2U) * TRANSFER_SIZE + dfu->base_addr; + + /* return the physical address where data are stored */ + phy_addr = dfu_mal_read (dfu->buf, addr, dfu->data_len); + + /* send the status data over EP0 */ + transc->xfer_buf = phy_addr; + transc->remain_len = dfu->data_len; + } else { + dfu->bState = STATUS_ERR_STALLEDPKT; + } + break; + + default: + dfu->data_len = 0U; + dfu->block_num = 0U; + break; + } +} + +/*! + \brief handle the DFU_GETSTATUS request + \param[in] udev: pointer to USB device instance + \param[in] req: DFU class request + \param[out] none + \retval none +*/ +static void dfu_getstatus (usb_dev *udev, usb_req *req) +{ + usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; + + usb_transc *transc = &udev->dev.transc_in[0]; + + switch (dfu->bState) { + case STATE_DFU_DNLOAD_SYNC: + if (0U != dfu->data_len) { + dfu->bState = STATE_DFU_DNBUSY; + + if (0U == dfu->block_num) { + if (ERASE == dfu->buf[0]) { + dfu_mal_getstatus (dfu->base_addr, CMD_ERASE, (uint8_t *)&dfu->bwPollTimeout0); + } else { + dfu_mal_getstatus (dfu->base_addr, CMD_WRITE, (uint8_t *)&dfu->bwPollTimeout0); + } + } + } else { + dfu->bState = STATE_DFU_DNLOAD_IDLE; + } + break; + + case STATE_DFU_MANIFEST_SYNC: + if (MANIFEST_IN_PROGRESS == dfu->manifest_state) { + dfu->bState = STATE_DFU_MANIFEST; + dfu->bwPollTimeout0 = 1U; + } else if ((MANIFEST_COMPLETE == dfu->manifest_state) && \ + (dfu_config_desc.dfu_func.bmAttributes & 0x04U)){ + dfu->bState = STATE_DFU_IDLE; + dfu->bwPollTimeout0 = 0U; + } else { + /* no operation */ + } + break; + + default: + break; + } + + /* send the status data of DFU interface to host over EP0 */ + transc->xfer_buf = (uint8_t *)&(dfu->bStatus); + transc->remain_len = 6U; +} + +/*! + \brief handle the DFU_CLRSTATUS request + \param udev: pointer to USB device instance + \param[out] none + \retval none +*/ +static void dfu_clrstatus (usb_dev *udev, usb_req *req) +{ + usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; + + if (STATE_DFU_ERROR == dfu->bState) { + dfu->bStatus = STATUS_OK; + dfu->bState = STATE_DFU_IDLE; + } else { + /* state error */ + dfu->bStatus = STATUS_ERR_UNKNOWN; + dfu->bState = STATE_DFU_ERROR; + } + + dfu->iString = 0U; /* iString: index = 0 */ +} + +/*! + \brief handle the DFU_GETSTATE request + \param[in] udev: pointer to USB device instance + \param[out] none + \retval none +*/ +static void dfu_getstate (usb_dev *udev, usb_req *req) +{ + usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; + + usb_transc *transc = &udev->dev.transc_in[0]; + + /* send the current state of the DFU interface to host */ + transc->xfer_buf = &(dfu->bState); + transc->remain_len = 1U; +} + +/*! + \brief handle the DFU_ABORT request + \param[in] udev: pointer to USB device instance + \param[out] none + \retval none +*/ +static void dfu_abort (usb_dev *udev, usb_req *req) +{ + usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; + + switch (dfu->bState){ + case STATE_DFU_IDLE: + case STATE_DFU_DNLOAD_SYNC: + case STATE_DFU_DNLOAD_IDLE: + case STATE_DFU_MANIFEST_SYNC: + case STATE_DFU_UPLOAD_IDLE: + dfu->bStatus = STATUS_OK; + dfu->bState = STATE_DFU_IDLE; + dfu->iString = 0U; /* iString: index = 0 */ + + dfu->block_num = 0U; + dfu->data_len = 0U; + break; + + default: + break; + } +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Source/dfu_mal.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Source/dfu_mal.c new file mode 100644 index 0000000000..49070d9c34 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Source/dfu_mal.c @@ -0,0 +1,233 @@ +/*! + \file dfu_mal.c + \brief USB DFU device media access layer functions + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "dfu_mal.h" +#include "flash_if.h" +#include "drv_usb_hw.h" +#include "usbd_transc.h" + +extern usb_core_driver usb_dfu_dev; + +extern struct { + uint8_t buf[TRANSFER_SIZE]; + uint16_t data_len; + uint16_t block_num; + uint32_t base_addr; +} prog; + +dfu_mal_prop* tMALTab[MAX_USED_MEMORY_MEDIA] = { + &DFU_Flash_cb +}; + +/* The list of memory interface string descriptor pointers. This list + can be updated whenever a memory has to be added or removed */ +const uint8_t* USBD_DFU_StringDesc[MAX_USED_MEMORY_MEDIA] = +{ + (const uint8_t *)FLASH_IF_STRING +}; + +static uint8_t dfu_mal_checkaddr (uint32_t addr); + +/*! + \brief initialize the memory media on the GD32 + \param[in] none + \param[out] none + \retval MAL_OK +*/ +uint8_t dfu_mal_init (void) +{ + uint32_t mem_index = 0U; + + /* initialize all supported memory medias */ + for (mem_index = 0U; mem_index < MAX_USED_MEMORY_MEDIA; mem_index++) { + /* check if the memory media exists */ + if (NULL != tMALTab[mem_index]->mal_init) { + tMALTab[mem_index]->mal_init(); + } + } + + return MAL_OK; +} + +/*! + \brief deinitialize the memory media on the GD32 + \param[in] none + \param[out] none + \retval MAL_OK +*/ +uint8_t dfu_mal_deinit (void) +{ + uint32_t mem_index = 0U; + + /* deinitialize all supported memory medias */ + for (mem_index = 0U; mem_index < MAX_USED_MEMORY_MEDIA; mem_index++) { + /* check if the memory media exists */ + if (NULL != tMALTab[mem_index]->mal_deinit) { + tMALTab[mem_index]->mal_deinit(); + } + } + + return MAL_OK; +} + +/*! + \brief erase a memory sector + \param[in] addr: memory sector address/code + \param[out] none + \retval MAL_OK +*/ +uint8_t dfu_mal_erase (uint32_t addr) +{ + uint32_t mem_index = dfu_mal_checkaddr(addr); + + /* check if the address is in protected area */ + if (IS_PROTECTED_AREA(addr)) { + return MAL_FAIL; + } + + if (mem_index < MAX_USED_MEMORY_MEDIA) { + /* check if the operation is supported */ + if (NULL != tMALTab[mem_index]->mal_erase) { + return tMALTab[mem_index]->mal_erase(addr); + } else { + return MAL_FAIL; + } + } else { + return MAL_FAIL; + } +} + +/*! + \brief write data to sectors of memory + \param[in] buf: the data buffer to be write + \param[in] addr: memory sector address/code + \param[in] len: data length + \param[out] none + \retval MAL_OK +*/ +uint8_t dfu_mal_write (uint8_t *buf, uint32_t addr, uint32_t len) +{ + uint32_t mem_index = dfu_mal_checkaddr(addr); + + /* check if the address is in protected area */ + if (IS_PROTECTED_AREA(addr)) { + return MAL_FAIL; + } + + if (mem_index < MAX_USED_MEMORY_MEDIA) { + /* check if the operation is supported */ + if (NULL != tMALTab[mem_index]->mal_write) { + return tMALTab[mem_index]->mal_write(buf, addr, len); + } else { + return MAL_FAIL; + } + } else { + return MAL_FAIL; + } +} + +/*! + \brief read data from sectors of memory + \param[in] buf: the data buffer to be write + \param[in] addr: memory sector address/code + \param[in] len: data length + \param[out] none + \retval pointer to buffer +*/ +uint8_t* dfu_mal_read (uint8_t *buf, uint32_t addr, uint32_t len) +{ + uint32_t mem_index = 0U; + + if (OB_RDPT != addr) { + mem_index = dfu_mal_checkaddr(addr); + } + + if (mem_index < MAX_USED_MEMORY_MEDIA) { + /* check if the operation is supported */ + if (NULL != tMALTab[mem_index]->mal_read) { + return tMALTab[mem_index]->mal_read(buf, addr, len); + } else { + return buf; + } + } else { + return buf; + } +} + +/*! + \brief get the status of a given memory and store in buffer + \param[in] addr: memory sector address/code + \param[in] cmd: 0 for erase and 1 for write + \param[in] buffer: pointer to the buffer where the status data will be stored + \param[out] none + \retval MAL_OK if all operations are OK, MAL_FAIL else +*/ +uint8_t dfu_mal_getstatus (uint32_t addr, uint8_t cmd, uint8_t *buffer) +{ + uint32_t mem_index = dfu_mal_checkaddr(addr); + + if (mem_index < MAX_USED_MEMORY_MEDIA) { + if (cmd & 0x01U) { + SET_POLLING_TIMEOUT(tMALTab[mem_index]->write_timeout); + } else { + SET_POLLING_TIMEOUT(tMALTab[mem_index]->erase_timeout); + } + + return MAL_OK; + } else { + return MAL_FAIL; + } +} + +/*! + \brief check the address is supported + \param[in] addr: memory sector address/code + \param[out] none + \retval index of the addressed memory +*/ +static uint8_t dfu_mal_checkaddr (uint32_t addr) +{ + uint8_t mem_index = 0U; + + /* check with all supported memories */ + for (mem_index = 0U; mem_index < MAX_USED_MEMORY_MEDIA; mem_index++) { + /* if the check address is supported, return the memory index */ + if (MAL_OK == tMALTab[mem_index]->mal_checkaddr(addr)) { + return mem_index; + } + } + + /* if there is no memory found, return MAX_USED_MEMORY_MEDIA */ + return (MAX_USED_MEMORY_MEDIA); +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Include/custom_hid_core.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Include/custom_hid_core.h new file mode 100644 index 0000000000..ba52099681 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Include/custom_hid_core.h @@ -0,0 +1,69 @@ +/*! + \file custom_hid_core.h + \brief definitions for HID core + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __CUSTOM_HID_CORE_H +#define __CUSTOM_HID_CORE_H + +#include "usbd_enum.h" +#include "usb_hid.h" + +#define DESC_LEN_REPORT 96U +#define DESC_LEN_CONFIG 41U + +#define NO_CMD 0xFFU + +#define MAX_PERIPH_NUM 4U + +typedef struct { + uint8_t data[2]; + + uint8_t reportID; + uint8_t idlestate; + uint8_t protocol; +} custom_hid_handler; + +typedef struct { + void (*periph_config[MAX_PERIPH_NUM])(void); +} hid_fop_handler; + +extern usb_desc custom_hid_desc; +extern usb_class_core usbd_custom_hid_cb; + +/* function declarations */ +/* register HID interface operation functions */ +uint8_t custom_hid_itfop_register (usb_dev *udev, hid_fop_handler *hid_fop); +/* send custom HID report */ +uint8_t custom_hid_report_send (usb_dev *udev, uint8_t *report, uint32_t len); + +#endif /* __CUSTOM_HID_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Include/standard_hid_core.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Include/standard_hid_core.h new file mode 100644 index 0000000000..cb1edfec70 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Include/standard_hid_core.h @@ -0,0 +1,68 @@ +/*! + \file standard_hid_core.h + \brief definitions for HID core + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __STANDARD_HID_CORE_H +#define __STANDARD_HID_CORE_H + +#include "usbd_enum.h" +#include "usb_hid.h" + +#define USB_HID_CONFIG_DESC_LEN 0x22U +#define USB_HID_REPORT_DESC_LEN 0x29U + +#define NO_CMD 0xFFU + +typedef struct { + uint32_t protocol; + uint32_t idle_state; + + uint8_t data[HID_IN_PACKET]; + __IO uint8_t prev_transfer_complete; +} standard_hid_handler; + +typedef struct { + void (*hid_itf_config) (void); + void (*hid_itf_data_process) (usb_dev *udev); +} hid_fop_handler; + +extern usb_desc hid_desc; +extern usb_class_core usbd_hid_cb; + +/* function declarations */ +/* register HID interface operation functions */ +uint8_t hid_itfop_register (usb_dev *udev, hid_fop_handler *hid_fop); +/* send keyboard report */ +uint8_t hid_report_send (usb_dev *udev, uint8_t *report, uint32_t len); + +#endif /* __STANDARD_HID_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Source/custom_hid_core.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Source/custom_hid_core.c new file mode 100644 index 0000000000..9706c542d1 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Source/custom_hid_core.c @@ -0,0 +1,486 @@ +/*! + \file custom_hid_core.c + \brief custom HID class driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "custom_hid_core.h" +#include "usbd_enum.h" +#include + +#define USBD_VID 0x28E9U +#define USBD_PID 0x028AU + +/* Note:it should use the C99 standard when compiling the below codes */ +/* USB standard device descriptor */ +__ALIGN_BEGIN const usb_desc_dev custom_hid_dev_desc __ALIGN_END = +{ + .header = + { + .bLength = USB_DEV_DESC_LEN, + .bDescriptorType = USB_DESCTYPE_DEV, + }, + .bcdUSB = 0x0200U, + .bDeviceClass = 0x00U, + .bDeviceSubClass = 0x00U, + .bDeviceProtocol = 0x00U, + .bMaxPacketSize0 = USB_FS_EP0_MAX_LEN, + .idVendor = USBD_VID, + .idProduct = USBD_PID, + .bcdDevice = 0x0100U, + .iManufacturer = STR_IDX_MFC, + .iProduct = STR_IDX_PRODUCT, + .iSerialNumber = STR_IDX_SERIAL, + .bNumberConfigurations = USBD_CFG_MAX_NUM, +}; + +/* USB device configuration descriptor */ +__ALIGN_BEGIN const usb_hid_desc_config_set custom_hid_config_desc __ALIGN_END = +{ + .config = + { + .header = + { + .bLength = sizeof(usb_desc_config), + .bDescriptorType = USB_DESCTYPE_CONFIG + }, + .wTotalLength = DESC_LEN_CONFIG, + .bNumInterfaces = 0x01U, + .bConfigurationValue = 0x01U, + .iConfiguration = 0x00U, + .bmAttributes = 0x80U, + .bMaxPower = 0x32U + }, + + .hid_itf = + { + .header = + { + .bLength = sizeof(usb_desc_itf), + .bDescriptorType = USB_DESCTYPE_ITF + }, + .bInterfaceNumber = 0x00U, + .bAlternateSetting = 0x00U, + .bNumEndpoints = 0x02U, + .bInterfaceClass = USB_HID_CLASS, + .bInterfaceSubClass = 0x00U, + .bInterfaceProtocol = 0x00U, + .iInterface = 0x00U + }, + + .hid_vendor = + { + .header = + { + .bLength = sizeof(usb_desc_hid), + .bDescriptorType = USB_DESCTYPE_HID + }, + .bcdHID = 0x0111U, + .bCountryCode = 0x00U, + .bNumDescriptors = 0x01U, + .bDescriptorType = USB_DESCTYPE_REPORT, + .wDescriptorLength = DESC_LEN_REPORT, + }, + + .hid_epin = + { + .header = + { + .bLength = sizeof(usb_desc_ep), + .bDescriptorType = USB_DESCTYPE_EP + }, + .bEndpointAddress = CUSTOMHID_IN_EP, + .bmAttributes = USB_EP_ATTR_INT, + .wMaxPacketSize = CUSTOMHID_IN_PACKET, + .bInterval = 0x20U + }, + + .hid_epout = + { + .header = + { + .bLength = sizeof(usb_desc_ep), + .bDescriptorType = USB_DESCTYPE_EP + }, + .bEndpointAddress = CUSTOMHID_OUT_EP, + .bmAttributes = USB_EP_ATTR_INT, + .wMaxPacketSize = CUSTOMHID_OUT_PACKET, + .bInterval = 0x20U + } +}; + +/* USB language ID descriptor */ +static __ALIGN_BEGIN const usb_desc_LANGID usbd_language_id_desc __ALIGN_END = +{ + .header = + { + .bLength = sizeof(usb_desc_LANGID), + .bDescriptorType = USB_DESCTYPE_STR + }, + .wLANGID = ENG_LANGID +}; + +/* USB manufacture string */ +static __ALIGN_BEGIN const usb_desc_str manufacturer_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(10U), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'i', 'g', 'a', 'D', 'e', 'v', 'i', 'c', 'e'} +}; + +/* USB product string */ +static __ALIGN_BEGIN const usb_desc_str product_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(14U), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'D', '3', '2', '-', 'C', 'u', 's', 't', 'o', 'm', 'H', 'I', 'D'} +}; + +/* USBD serial string */ +static __ALIGN_BEGIN usb_desc_str serial_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(12U), + .bDescriptorType = USB_DESCTYPE_STR, + } +}; + +/* USB string descriptor set */ +void *const usbd_hid_strings[] = +{ + [STR_IDX_LANGID] = (uint8_t *)&usbd_language_id_desc, + [STR_IDX_MFC] = (uint8_t *)&manufacturer_string, + [STR_IDX_PRODUCT] = (uint8_t *)&product_string, + [STR_IDX_SERIAL] = (uint8_t *)&serial_string +}; + +usb_desc custom_hid_desc = { + .dev_desc = (uint8_t *)&custom_hid_dev_desc, + .config_desc = (uint8_t *)&custom_hid_config_desc, + .strings = usbd_hid_strings +}; + +__ALIGN_BEGIN const uint8_t customhid_report_descriptor[DESC_LEN_REPORT] __ALIGN_END = +{ + 0x06, 0x00, 0xFF, /* USAGE_PAGE (Vendor Defined: 0xFF00) */ + 0x09, 0x00, /* USAGE (Custom Device) */ + 0xa1, 0x01, /* COLLECTION (Application) */ + + /* led 1 */ + 0x85, 0x11, /* REPORT_ID (0x11) */ + 0x09, 0x01, /* USAGE (LED 1) */ + 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ + 0x25, 0x01, /* LOGICAL_MAXIMUM (1) */ + 0x75, 0x08, /* REPORT_SIZE (8) */ + 0x95, 0x01, /* REPORT_COUNT (1) */ + 0x91, 0x82, /* OUTPUT (Data,Var,Abs,Vol) */ + + /* led 2 */ + 0x85, 0x12, /* REPORT_ID (0x12) */ + 0x09, 0x02, /* USAGE (LED 2) */ + 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ + 0x25, 0x01, /* LOGICAL_MAXIMUM (1) */ + 0x75, 0x08, /* REPORT_SIZE (8) */ + 0x95, 0x01, /* REPORT_COUNT (1) */ + 0x91, 0x82, /* OUTPUT (Data,Var,Abs,Vol) */ + + /* led 3 */ + 0x85, 0x13, /* REPORT_ID (0x13) */ + 0x09, 0x03, /* USAGE (LED 3) */ + 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ + 0x25, 0x01, /* LOGICAL_MAXIMUM (1) */ + 0x75, 0x08, /* REPORT_SIZE (8) */ + 0x95, 0x01, /* REPORT_COUNT (1) */ + 0x91, 0x82, /* OUTPUT (Data,Var,Abs,Vol) */ + + /* led 4 */ + 0x85, 0x14, /* REPORT_ID (0x14) */ + 0x09, 0x04, /* USAGE (LED 4) */ + 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ + 0x25, 0x01, /* LOGICAL_MAXIMUM (1) */ + 0x75, 0x08, /* REPORT_SIZE (8) */ + 0x95, 0x01, /* REPORT_COUNT (1) */ + 0x91, 0x82, /* OUTPUT (Data,Var,Abs,Vol) */ + + /* wakeup key */ + 0x85, 0x15, /* REPORT_ID (0x15) */ + 0x09, 0x05, /* USAGE (Push Button) */ + 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ + 0x25, 0x01, /* LOGICAL_MAXIMUM (1) */ + 0x75, 0x01, /* REPORT_SIZE (1) */ + 0x81, 0x02, /* INPUT (Data,Var,Abs,Vol) */ + + 0x75, 0x07, /* REPORT_SIZE (7) */ + 0x81, 0x03, /* INPUT (Cnst,Var,Abs,Vol) */ + + /* tamper key */ + 0x85, 0x16, /* REPORT_ID (0x16) */ + 0x09, 0x06, /* USAGE (Push Button) */ + 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ + 0x25, 0x01, /* LOGICAL_MAXIMUM (1) */ + 0x75, 0x01, /* REPORT_SIZE (1) */ + 0x81, 0x02, /* INPUT (Data,Var,Abs,Vol) */ + + 0x75, 0x07, /* REPORT_SIZE (7) */ + 0x81, 0x03, /* INPUT (Cnst,Var,Abs,Vol) */ + + 0xc0 /* END_COLLECTION */ +}; + +/* local function prototypes ('static') */ +static uint8_t custom_hid_init (usb_dev *udev, uint8_t config_index); +static uint8_t custom_hid_deinit (usb_dev *udev, uint8_t config_index); +static uint8_t custom_hid_req_handler (usb_dev *udev, usb_req *req); + +static uint8_t custom_hid_data_in (usb_dev *udev, uint8_t ep_num); +static uint8_t custom_hid_data_out (usb_dev *udev, uint8_t ep_num); + +usb_class_core usbd_custom_hid_cb = +{ + .command = NO_CMD, + .alter_set = 0U, + + .init = custom_hid_init, + .deinit = custom_hid_deinit, + + .req_proc = custom_hid_req_handler, + + .data_in = custom_hid_data_in, + .data_out = custom_hid_data_out +}; + +/*! + \brief register HID interface operation functions + \param[in] udev: pointer to USB device instance + \param[in] hid_fop: HID operation functions structure + \param[out] none + \retval USB device operation status +*/ +uint8_t custom_hid_itfop_register (usb_dev *udev, hid_fop_handler *hid_fop) +{ + if (NULL != hid_fop) { + udev->dev.user_data = hid_fop; + + return USBD_OK; + } + + return USBD_FAIL; +} + +/*! + \brief send custom HID report + \param[in] udev: pointer to USB device instance + \param[in] report: pointer to HID report + \param[in] len: data length + \param[out] none + \retval USB device operation status +*/ +uint8_t custom_hid_report_send (usb_dev *udev, uint8_t *report, uint32_t len) +{ + usbd_ep_send (udev, CUSTOMHID_IN_EP, report, len); + + return USBD_OK; +} + +/*! + \brief initialize the HID device + \param[in] udev: pointer to USB device instance + \param[in] config_index: configuration index + \param[out] none + \retval USB device operation status +*/ +static uint8_t custom_hid_init (usb_dev *udev, uint8_t config_index) +{ + static __ALIGN_BEGIN custom_hid_handler hid_handler __ALIGN_END; + + memset((void *)&hid_handler, 0U, sizeof(custom_hid_handler)); + + /* initialize the data TX endpoint */ + usbd_ep_setup (udev, &(custom_hid_config_desc.hid_epin)); + + /* Initialize the data RX endpoint */ + usbd_ep_setup (udev, &(custom_hid_config_desc.hid_epout)); + + /* prepare receive data */ + usbd_ep_recev (udev, CUSTOMHID_OUT_EP, hid_handler.data, 2U); + + udev->dev.class_data[CUSTOM_HID_INTERFACE] = (void *)&hid_handler; + + if (udev->dev.user_data != NULL) { + for (uint8_t i = 0U; i < MAX_PERIPH_NUM; i++) { + if (((hid_fop_handler *)udev->dev.user_data)->periph_config[i] != NULL) { + ((hid_fop_handler *)udev->dev.user_data)->periph_config[i](); + } + } + } + + return USBD_OK; +} + +/*! + \brief de-initialize the HID device + \param[in] udev: pointer to USB device instance + \param[in] config_index: configuration index + \param[out] none + \retval USB device operation status +*/ +static uint8_t custom_hid_deinit (usb_dev *udev, uint8_t config_index) +{ + /* deinitialize HID endpoints */ + usbd_ep_clear(udev, CUSTOMHID_IN_EP); + usbd_ep_clear(udev, CUSTOMHID_OUT_EP); + + return USBD_OK; +} + +/*! + \brief handle the HID class-specific requests + \param[in] udev: pointer to USB device instance + \param[in] req: device class-specific request + \param[out] none + \retval USB device operation status +*/ +static uint8_t custom_hid_req_handler (usb_dev *udev, usb_req *req) +{ + usb_transc *transc = &udev->dev.transc_in[0]; + + custom_hid_handler *hid = (custom_hid_handler *)udev->dev.class_data[CUSTOM_HID_INTERFACE]; + + switch (req->bRequest) { + case GET_REPORT: + break; + + case GET_IDLE: + transc->xfer_buf = (uint8_t *)&hid->idlestate; + transc->remain_len = 1U; + break; + + case GET_PROTOCOL: + transc->xfer_buf = (uint8_t *)&hid->protocol; + transc->remain_len = 1U; + break; + + case SET_REPORT: + hid->reportID = (uint8_t)(req->wValue); + break; + + case SET_IDLE: + hid->idlestate = (uint8_t)(req->wValue >> 8U); + break; + + case SET_PROTOCOL: + hid->protocol = (uint8_t)(req->wValue); + break; + + case USB_GET_DESCRIPTOR: + if (USB_DESCTYPE_REPORT == (req->wValue >> 8U)) { + transc->remain_len = USB_MIN(DESC_LEN_REPORT, req->wLength); + transc->xfer_buf = (uint8_t *)customhid_report_descriptor; + } + break; + + default: + return USBD_FAIL; + } + + return USBD_OK; +} + +/*! + \brief handle custom HID data + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint identifier + \param[out] none + \retval USB device operation status +*/ +static uint8_t custom_hid_data_in (usb_dev *udev, uint8_t ep_num) +{ + return USBD_OK; +} + +/*! + \brief handle custom HID data + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint identifier + \param[out] none + \retval USB device operation status +*/ +static uint8_t custom_hid_data_out (usb_dev *udev, uint8_t ep_num) +{ + custom_hid_handler *hid = (custom_hid_handler *)udev->dev.class_data[CUSTOM_HID_INTERFACE]; + + if ((CUSTOMHID_OUT_EP & 0x7FU) == ep_num) { + switch (hid->data[0]){ + case 0x11U: + if (RESET != hid->data[1]) { + gd_eval_led_on(LED1); + } else { + gd_eval_led_off(LED1); + } + break; + + case 0x12U: + if (RESET != hid->data[1]) { + gd_eval_led_on(LED2); + } else { + gd_eval_led_off(LED2); + } + break; + + case 0x13U: + if (RESET != hid->data[1]) { + gd_eval_led_on(LED3); + } else { + gd_eval_led_off(LED3); + } + break; + + case 0x14U: + break; + + default: + break; + } + + usbd_ep_recev (udev, CUSTOMHID_IN_EP, hid->data, 2U); + + return USBD_OK; + } + + return USBD_FAIL; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Source/standard_hid_core.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Source/standard_hid_core.c new file mode 100644 index 0000000000..213bef747c --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Source/standard_hid_core.c @@ -0,0 +1,384 @@ +/*! + \file standard_hid_core.c + \brief HID class driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "standard_hid_core.h" +#include + +#define USBD_VID 0x28e9U +#define USBD_PID 0x0380U + +/* Note:it should use the C99 standard when compiling the below codes */ +/* USB standard device descriptor */ +__ALIGN_BEGIN const usb_desc_dev hid_dev_desc __ALIGN_END = +{ + .header = + { + .bLength = USB_DEV_DESC_LEN, + .bDescriptorType = USB_DESCTYPE_DEV + }, + .bcdUSB = 0x0200U, + .bDeviceClass = 0x00U, + .bDeviceSubClass = 0x00U, + .bDeviceProtocol = 0x00U, + .bMaxPacketSize0 = USB_FS_EP0_MAX_LEN, + .idVendor = USBD_VID, + .idProduct = USBD_PID, + .bcdDevice = 0x0100U, + .iManufacturer = STR_IDX_MFC, + .iProduct = STR_IDX_PRODUCT, + .iSerialNumber = STR_IDX_SERIAL, + .bNumberConfigurations = USBD_CFG_MAX_NUM +}; + +__ALIGN_BEGIN const usb_hid_desc_config_set hid_config_desc __ALIGN_END = +{ + .config = + { + .header = + { + .bLength = sizeof(usb_desc_config), + .bDescriptorType = USB_DESCTYPE_CONFIG + }, + .wTotalLength = USB_HID_CONFIG_DESC_LEN, + .bNumInterfaces = 0x01U, + .bConfigurationValue = 0x01U, + .iConfiguration = 0x00U, + .bmAttributes = 0xA0U, + .bMaxPower = 0x32U + }, + + .hid_itf = + { + .header = + { + .bLength = sizeof(usb_desc_itf), + .bDescriptorType = USB_DESCTYPE_ITF + }, + .bInterfaceNumber = 0x00U, + .bAlternateSetting = 0x00U, + .bNumEndpoints = 0x01U, + .bInterfaceClass = USB_HID_CLASS, + .bInterfaceSubClass = USB_HID_SUBCLASS_BOOT_ITF, + .bInterfaceProtocol = USB_HID_PROTOCOL_KEYBOARD, + .iInterface = 0x00U + }, + + .hid_vendor = + { + .header = + { + .bLength = sizeof(usb_desc_hid), + .bDescriptorType = USB_DESCTYPE_HID + }, + .bcdHID = 0x0111U, + .bCountryCode = 0x00U, + .bNumDescriptors = 0x01U, + .bDescriptorType = USB_DESCTYPE_REPORT, + .wDescriptorLength = USB_HID_REPORT_DESC_LEN, + }, + + .hid_epin = + { + .header = + { + .bLength = sizeof(usb_desc_ep), + .bDescriptorType = USB_DESCTYPE_EP + }, + .bEndpointAddress = HID_IN_EP, + .bmAttributes = USB_EP_ATTR_INT, + .wMaxPacketSize = HID_IN_PACKET, + .bInterval = 0x40U + } +}; + +/* USB language ID Descriptor */ +static __ALIGN_BEGIN const usb_desc_LANGID usbd_language_id_desc __ALIGN_END = +{ + .header = + { + .bLength = sizeof(usb_desc_LANGID), + .bDescriptorType = USB_DESCTYPE_STR + }, + .wLANGID = ENG_LANGID +}; + +/* USB manufacture string */ +static __ALIGN_BEGIN const usb_desc_str manufacturer_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(10U), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'i', 'g', 'a', 'D', 'e', 'v', 'i', 'c', 'e'} +}; + +/* USB product string */ +static __ALIGN_BEGIN const usb_desc_str product_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(17U), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'D', '3', '2', '-','U', 'S', 'B', '_', 'K', 'e', 'y', 'b', 'o', 'a', 'r', 'd'} +}; + +/* USBD serial string */ +static __ALIGN_BEGIN usb_desc_str serial_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(12U), + .bDescriptorType = USB_DESCTYPE_STR, + } +}; + +void *const usbd_hid_strings[] = +{ + [STR_IDX_LANGID] = (uint8_t *)&usbd_language_id_desc, + [STR_IDX_MFC] = (uint8_t *)&manufacturer_string, + [STR_IDX_PRODUCT] = (uint8_t *)&product_string, + [STR_IDX_SERIAL] = (uint8_t *)&serial_string +}; + +usb_desc hid_desc = { + .dev_desc = (uint8_t *)&hid_dev_desc, + .config_desc = (uint8_t *)&hid_config_desc, + .strings = usbd_hid_strings +}; + +__ALIGN_BEGIN const uint8_t hid_report_desc[USB_HID_REPORT_DESC_LEN] __ALIGN_END = +{ + 0x05, 0x01, /* USAGE_PAGE (Generic Desktop) */ + 0x09, 0x06, /* USAGE (Keyboard) */ + 0xa1, 0x01, /* COLLECTION (Application) */ + + 0x05, 0x07, /* USAGE_PAGE (Keyboard/Keypad) */ + 0x19, 0xe0, /* USAGE_MINIMUM (Keyboard LeftControl) */ + 0x29, 0xe7, /* USAGE_MAXIMUM (Keyboard Right GUI) */ + 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ + 0x25, 0x01, /* LOGICAL_MAXIMUM (1) */ + 0x95, 0x08, /* REPORT_COUNT (8) */ + 0x75, 0x01, /* REPORT_SIZE (1) */ + 0x81, 0x02, /* INPUT (Data,Var,Abs) */ + + 0x95, 0x01, /* REPORT_COUNT (1) */ + 0x75, 0x08, /* REPORT_SIZE (8) */ + 0x81, 0x03, /* INPUT (Cnst,Var,Abs) */ + + 0x95, 0x06, /* REPORT_COUNT (6) */ + 0x75, 0x08, /* REPORT_SIZE (8) */ + 0x25, 0xFF, /* LOGICAL_MAXIMUM (255) */ + 0x19, 0x00, /* USAGE_MINIMUM (Reserved (no event indicated)) */ + 0x29, 0x65, /* USAGE_MAXIMUM (Keyboard Application) */ + 0x81, 0x00, /* INPUT (Data,Ary,Abs) */ + + 0xc0 /* END_COLLECTION */ +}; + +/* local function prototypes ('static') */ +static uint8_t hid_init (usb_dev *udev, uint8_t config_index); +static uint8_t hid_deinit (usb_dev *udev, uint8_t config_index); +static uint8_t hid_req (usb_dev *udev, usb_req *req); +static uint8_t hid_data_in (usb_dev *udev, uint8_t ep_num); + +usb_class_core usbd_hid_cb = { + .command = NO_CMD, + .alter_set = 0U, + + .init = hid_init, + .deinit = hid_deinit, + .req_proc = hid_req, + .data_in = hid_data_in +}; + +/*! + \brief register HID interface operation functions + \param[in] udev: pointer to USB device instance + \param[in] hid_fop: HID operation function structure + \param[out] none + \retval USB device operation status +*/ +uint8_t hid_itfop_register (usb_dev *udev, hid_fop_handler *hid_fop) +{ + if (NULL != hid_fop) { + udev->dev.user_data = (void *)hid_fop; + + return USBD_OK; + } + + return USBD_FAIL; +} + +/*! + \brief send keyboard report + \param[in] udev: pointer to USB device instance + \param[in] report: pointer to HID report + \param[in] len: data length + \param[out] none + \retval USB device operation status +*/ +uint8_t hid_report_send (usb_dev *udev, uint8_t *report, uint32_t len) +{ + standard_hid_handler *hid = (standard_hid_handler *)udev->dev.class_data[USBD_HID_INTERFACE]; + + hid->prev_transfer_complete = 0U; + + usbd_ep_send(udev, HID_IN_EP, report, len); + + return USBD_OK; +} + +/*! + \brief initialize the HID device + \param[in] udev: pointer to USB device instance + \param[in] config_index: configuration index + \param[out] none + \retval USB device operation status +*/ +static uint8_t hid_init (usb_dev *udev, uint8_t config_index) +{ + static __ALIGN_BEGIN standard_hid_handler hid_handler __ALIGN_END; + + memset((void *)&hid_handler, 0U, sizeof(standard_hid_handler)); + + /* initialize the data TX endpoint */ + usbd_ep_setup (udev, &(hid_config_desc.hid_epin)); + + hid_handler.prev_transfer_complete = 1U; + + udev->dev.class_data[USBD_HID_INTERFACE] = (void *)&hid_handler; + + if (NULL != udev->dev.user_data) { + ((hid_fop_handler *)udev->dev.user_data)->hid_itf_config(); + } + + return USBD_OK; +} + +/*! + \brief de-initialize the HID device + \param[in] udev: pointer to USB device instance + \param[in] config_index: configuration index + \param[out] none + \retval USB device operation status +*/ +static uint8_t hid_deinit (usb_dev *udev, uint8_t config_index) +{ + /* deinitialize HID endpoints */ + usbd_ep_clear(udev, HID_IN_EP); + + return USBD_OK; +} + +/*! + \brief handle the HID class-specific requests + \param[in] udev: pointer to USB device instance + \param[in] req: device class-specific request + \param[out] none + \retval USB device operation status +*/ +static uint8_t hid_req (usb_dev *udev, usb_req *req) +{ + usb_transc *transc = &udev->dev.transc_in[0]; + + standard_hid_handler *hid = (standard_hid_handler *)udev->dev.class_data[USBD_HID_INTERFACE]; + + switch (req->bRequest) { + case GET_REPORT: + /* no use for this driver */ + break; + + case GET_IDLE: + transc->xfer_buf = (uint8_t *)&hid->idle_state; + + transc->remain_len = 1U; + break; + + case GET_PROTOCOL: + transc->xfer_buf = (uint8_t *)&hid->protocol; + + transc->remain_len = 1U; + break; + + case SET_REPORT: + /* no use for this driver */ + break; + + case SET_IDLE: + hid->idle_state = (uint8_t)(req->wValue >> 8U); + break; + + case SET_PROTOCOL: + hid->protocol = (uint8_t)(req->wValue); + break; + + case USB_GET_DESCRIPTOR: + if (USB_DESCTYPE_REPORT == (req->wValue >> 8U)) { + transc->remain_len = USB_MIN(USB_HID_REPORT_DESC_LEN, req->wLength); + transc->xfer_buf = (uint8_t *)hid_report_desc; + + return REQ_SUPP; + } + break; + + default: + break; + } + + return USBD_OK; +} + +/*! + \brief handle data stage + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint identifier + \param[out] none + \retval USB device operation status +*/ +static uint8_t hid_data_in (usb_dev *udev, uint8_t ep_num) +{ + standard_hid_handler *hid = (standard_hid_handler *)udev->dev.class_data[USBD_HID_INTERFACE]; + + if (0U != hid->data[2]) { + hid->data[2] = 0x00U; + + usbd_ep_send(udev, HID_IN_EP, hid->data, HID_IN_PACKET); + } else { + hid->prev_transfer_complete = 1U; + } + + return USBD_OK; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/iap/Include/usb_iap_core.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/iap/Include/usb_iap_core.h new file mode 100644 index 0000000000..7b0a286807 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/iap/Include/usb_iap_core.h @@ -0,0 +1,93 @@ +/*! + \file usb_iap_core.h + \brief the header file of IAP driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USB_IAP_CORE_H +#define __USB_IAP_CORE_H + +#include "usbd_enum.h" +#include "usb_hid.h" + +#define USB_SERIAL_STRING_SIZE 0x06U + +#ifdef USE_USB_FS + #define USB_DESC_LEN_IAP_REPORT 35U +#elif defined(USE_USB_HS) + #define USB_DESC_LEN_IAP_REPORT 36U +#else + #error "please select 'USE_USB_FS' or 'USE_USB_HS'" +#endif + +#define USB_DESC_LEN_IAP_CONFIG_SET 41U + +/* special commands with download request */ +#define IAP_OPTION_BYTE1 0x01U +#define IAP_ERASE 0x02U +#define IAP_DNLOAD 0x03U +#define IAP_LEAVE 0x04U +#define IAP_GETBIN_ADDRESS 0x05U +#define IAP_OPTION_BYTE2 0x06U + +typedef struct +{ + uint8_t option_byte[IAP_IN_PACKET]; + + /* state machine variables */ + uint8_t dev_status[IAP_IN_PACKET]; + uint8_t bin_addr[IAP_IN_PACKET]; + + uint8_t report_buf[IAP_OUT_PACKET + 1U]; + + uint8_t reportID; + uint8_t flag; + + uint32_t protocol; + uint32_t idlestate; + + uint16_t transfer_times; + uint16_t page_count; + uint16_t lps; /* last packet size */ + uint32_t file_length; + uint32_t base_address; +} usbd_iap_handler; + +typedef void (*app_func) (void); + +extern usb_desc iap_desc; +extern usb_class_core iap_class; + +/* function declarations */ +/* send IAP report */ +uint8_t iap_report_send (usb_dev *udev, uint8_t *report, uint32_t len); + +#endif /* __USB_IAP_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/iap/Source/usb_iap_core.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/iap/Source/usb_iap_core.c new file mode 100644 index 0000000000..6230f1bdca --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/iap/Source/usb_iap_core.c @@ -0,0 +1,571 @@ +/*! + \file usb_iap_core.c + \brief IAP driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "usb_iap_core.h" +#include "flash_operation.h" +#include + +#define USBD_VID 0x28E9U +#define USBD_PID 0x0228U + +/* Note:it should use the C99 standard when compiling the below codes */ +/* USB standard device descriptor */ +__ALIGN_BEGIN const usb_desc_dev iap_dev_desc __ALIGN_END = +{ + .header = + { + .bLength = USB_DEV_DESC_LEN, + .bDescriptorType = USB_DESCTYPE_DEV + }, + .bcdUSB = 0x0200U, + .bDeviceClass = 0x00U, + .bDeviceSubClass = 0x00U, + .bDeviceProtocol = 0x00U, + .bMaxPacketSize0 = USB_FS_EP0_MAX_LEN, + .idVendor = USBD_VID, + .idProduct = USBD_PID, + .bcdDevice = 0x0100U, + .iManufacturer = STR_IDX_MFC, + .iProduct = STR_IDX_PRODUCT, + .iSerialNumber = STR_IDX_SERIAL, + .bNumberConfigurations = USBD_CFG_MAX_NUM +}; + +__ALIGN_BEGIN const usb_hid_desc_config_set iap_config_desc __ALIGN_END = +{ + .config = + { + .header = + { + .bLength = sizeof(usb_desc_config), + .bDescriptorType = USB_DESCTYPE_CONFIG + }, + .wTotalLength = USB_DESC_LEN_IAP_CONFIG_SET, + .bNumInterfaces = 0x01U, + .bConfigurationValue = 0x01U, + .iConfiguration = 0x00U, + .bmAttributes = 0x80U, + .bMaxPower = 0x32U + }, + + .hid_itf = + { + .header = + { + .bLength = sizeof(usb_desc_itf), + .bDescriptorType = USB_DESCTYPE_ITF + }, + .bInterfaceNumber = 0x00U, + .bAlternateSetting = 0x00U, + .bNumEndpoints = 0x02U, + .bInterfaceClass = USB_HID_CLASS, + .bInterfaceSubClass = 0x00U, + .bInterfaceProtocol = 0x00U, + .iInterface = 0x00U + }, + + .hid_vendor = + { + .header = + { + .bLength = sizeof(usb_desc_hid), + .bDescriptorType = USB_DESCTYPE_HID + }, + .bcdHID = 0x0111U, + .bCountryCode = 0x00U, + .bNumDescriptors = 0x01U, + .bDescriptorType = USB_DESCTYPE_REPORT, + .wDescriptorLength = USB_DESC_LEN_IAP_REPORT, + }, + + .hid_epin = + { + .header = + { + .bLength = sizeof(usb_desc_ep), + .bDescriptorType = USB_DESCTYPE_EP + }, + .bEndpointAddress = IAP_IN_EP, + .bmAttributes = USB_EP_ATTR_INT, + .wMaxPacketSize = IAP_IN_PACKET, + .bInterval = 0x01U + }, + + .hid_epout = + { + .header = + { + .bLength = sizeof(usb_desc_ep), + .bDescriptorType = USB_DESCTYPE_EP + }, + .bEndpointAddress = IAP_OUT_EP, + .bmAttributes = USB_EP_ATTR_INT, + .wMaxPacketSize = IAP_OUT_PACKET, + .bInterval = 0x01U + } +}; + +/* USB language ID Descriptor */ +static __ALIGN_BEGIN const usb_desc_LANGID usbd_language_id_desc __ALIGN_END = +{ + .header = + { + .bLength = sizeof(usb_desc_LANGID), + .bDescriptorType = USB_DESCTYPE_STR + }, + .wLANGID = ENG_LANGID +}; + +/* USB manufacture string */ +static __ALIGN_BEGIN const usb_desc_str manufacturer_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(10U), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'i', 'g', 'a', 'D', 'e', 'v', 'i', 'c', 'e'} +}; + +/* USB product string */ +static __ALIGN_BEGIN const usb_desc_str product_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(12U), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'D', '3', '2', '-', 'U', 'S', 'B', '_', 'I', 'A', 'P'} +}; + +/* USBD serial string */ +static __ALIGN_BEGIN usb_desc_str serial_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(2U), + .bDescriptorType = USB_DESCTYPE_STR, + } +}; + +void *const usbd_iap_strings[] = +{ + [STR_IDX_LANGID] = (uint8_t *)&usbd_language_id_desc, + [STR_IDX_MFC] = (uint8_t *)&manufacturer_string, + [STR_IDX_PRODUCT] = (uint8_t *)&product_string, + [STR_IDX_SERIAL] = (uint8_t *)&serial_string +}; + +usb_desc iap_desc = { + .dev_desc = (uint8_t *)&iap_dev_desc, + .config_desc = (uint8_t *)&iap_config_desc, + .strings = usbd_iap_strings +}; + +/* local function prototypes ('static') */ +static uint8_t iap_init (usb_dev *udev, uint8_t config_index); +static uint8_t iap_deinit (usb_dev *udev, uint8_t config_index); +static uint8_t iap_req_handler (usb_dev *udev, usb_req *req); +static uint8_t iap_data_out (usb_dev *udev, uint8_t ep_num); + +/* IAP requests management functions */ +static void iap_req_erase (usb_dev *udev); +static void iap_req_dnload (usb_dev *udev); +static void iap_req_optionbyte(usb_dev *udev, uint8_t option_num); +static void iap_req_leave (usb_dev *udev); +static void iap_address_send (usb_dev *udev); + +usb_class_core iap_class = { + .init = iap_init, + .deinit = iap_deinit, + .req_proc = iap_req_handler, + .data_out = iap_data_out +}; + +/* USB custom HID device report descriptor */ +__ALIGN_BEGIN const uint8_t iap_report_desc[USB_DESC_LEN_IAP_REPORT] __ALIGN_END = +{ + 0x05, 0x01, /* USAGE_PAGE (Generic Desktop) */ + 0x09, 0x00, /* USAGE (Custom Device) */ + 0xa1, 0x01, /* COLLECTION (Application) */ + + /* IAP command and data */ + 0x85, 0x01, /* REPORT_ID (0x01) */ + 0x09, 0x01, /* USAGE (IAP command) */ + 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ + 0x25, 0xff, /* LOGICAL_MAXIMUM (255) */ + 0x75, 0x08, /* REPORT_SIZE (8) */ +#ifdef USE_USB_FS + 0x95, REPORT_OUT_COUNT, +#else + #ifdef USE_ULPI_PHY + 0x96, BYTE_LOW(REPORT_OUT_COUNT), BYTE_HIGH(REPORT_OUT_COUNT), + #elif defined(USE_EMBEDDED_PHY) + 0x95, REPORT_OUT_COUNT, + #endif +#endif + 0x91, 0x82, /* OUTPUT (Data,Var,Abs,Vol) */ + + /* device status and option byte */ + 0x85, 0x02, /* REPORT_ID (0x02) */ + 0x09, 0x02, /* USAGE (Status and option byte) */ + 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ + 0x25, 0xff, /* LOGICAL_MAXIMUM (255) */ + 0x75, 0x08, /* REPORT_SIZE (8) */ + 0x95, REPORT_IN_COUNT, /* REPORT_COUNT (23) */ + 0x81, 0x82, /* INPUT (Data,Var,Abs,Vol) */ + + 0xc0 /* END_COLLECTION */ +}; + +/*! + \brief send IAP report + \param[in] udev: pointer to USB device instance + \param[in] report: pointer to HID report + \param[in] len: data length + \param[out] none + \retval USB device operation status +*/ +uint8_t iap_report_send (usb_dev *udev, uint8_t *report, uint32_t len) +{ + usbd_ep_send (udev, IAP_IN_EP, report, len); + + return USBD_OK; +} + +/*! + \brief initialize the IAP device + \param[in] udev: pointer to USB device instance + \param[in] config_index: configuration index + \param[out] none + \retval USB device operation status +*/ +static uint8_t iap_init (usb_dev *udev, uint8_t config_index) +{ + static __ALIGN_BEGIN usbd_iap_handler iap_handler __ALIGN_END; + + /* initialize TX endpoint */ + usbd_ep_setup(udev, &(iap_config_desc.hid_epin)); + + /* initialize RX endpoint */ + usbd_ep_setup(udev, &(iap_config_desc.hid_epout)); + + /* unlock the internal flash */ + fmc_unlock(); + + memset((void *)&iap_handler, 0U, sizeof(usbd_iap_handler)); + + /* prepare receive data */ + usbd_ep_recev(udev, IAP_OUT_EP, iap_handler.report_buf, IAP_OUT_PACKET); + + iap_handler.base_address = APP_LOADED_ADDR; + + udev->dev.class_data[USBD_IAP_INTERFACE] = (void *)&iap_handler; + + return USBD_OK; +} + +/*! + \brief deinitialize the IAP device + \param[in] udev: pointer to USB device instance + \param[in] config_index: configuration index + \param[out] none + \retval USB device operation status +*/ +static uint8_t iap_deinit (usb_dev *udev, uint8_t config_index) +{ + /* deinitialize IAP endpoints */ + usbd_ep_clear (udev, IAP_IN_EP); + usbd_ep_clear (udev, IAP_OUT_EP); + + /* lock the internal flash */ + fmc_lock(); + + return USBD_OK; +} + +/*! + \brief handle the IAP class-specific requests + \param[in] udev: pointer to USB device instance + \param[in] req: device class-specific request + \param[out] none + \retval USB device operation status +*/ +static uint8_t iap_req_handler (usb_dev *udev, usb_req *req) +{ + usb_transc *transc = &udev->dev.transc_in[0]; + + usbd_iap_handler *iap = (usbd_iap_handler *)udev->dev.class_data[USBD_IAP_INTERFACE]; + + switch (req->bRequest) { + case GET_REPORT: + /* no use for this driver */ + break; + + case GET_IDLE: + transc->xfer_buf = (uint8_t *)&iap->idlestate; + transc->remain_len = 1U; + break; + + case GET_PROTOCOL: + transc->xfer_buf = (uint8_t *)&iap->protocol; + transc->remain_len = 1U; + break; + + case SET_REPORT: + iap->reportID = (uint8_t)(req->wValue); + break; + + case SET_IDLE: + iap->idlestate = (uint8_t)(req->wValue >> 8U); + break; + + case SET_PROTOCOL: + iap->protocol = (uint8_t)(req->wValue); + break; + + case USB_GET_DESCRIPTOR: + if (USB_DESCTYPE_REPORT == (req->wValue >> 8U)) { + transc->remain_len = USB_MIN(USB_DESC_LEN_IAP_REPORT, req->wLength); + transc->xfer_buf = (uint8_t *)iap_report_desc; + } + break; + + default: + return USBD_FAIL; + } + + return USBD_OK; +} + +/*! + \brief handle data out stage + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint identifier + \param[out] none + \retval none +*/ +static uint8_t iap_data_out (usb_dev *udev ,uint8_t ep_num) +{ + usbd_iap_handler *iap = (usbd_iap_handler *)udev->dev.class_data[USBD_IAP_INTERFACE]; + + if ((IAP_OUT_EP & 0x7FU) == ep_num) { + if (0x01U == iap->report_buf[0]) { + switch (iap->report_buf[1]) { + case IAP_DNLOAD: + iap_req_dnload(udev); + break; + + case IAP_ERASE: + iap_req_erase(udev); + break; + + case IAP_OPTION_BYTE1: + iap_req_optionbyte(udev, 0x01U); + break; + + case IAP_LEAVE: + iap_req_leave(udev); + break; + + case IAP_GETBIN_ADDRESS: + iap_address_send(udev); + break; + + case IAP_OPTION_BYTE2: + iap_req_optionbyte(udev, 0x02U); + break; + + default: + break; + } + } + + usbd_ep_recev(udev, IAP_OUT_EP, iap->report_buf, IAP_OUT_PACKET); + } + + return USBD_OK; +} + +/*! + \brief handle the IAP_DNLOAD request + \param[in] udev: pointer to USB device instance + \param[out] none + \retval none +*/ +static void iap_req_dnload(usb_dev *udev) +{ + usbd_iap_handler *iap = (usbd_iap_handler *)udev->dev.class_data[USBD_IAP_INTERFACE]; + + if (0U != iap->transfer_times) { + if (1U == iap->transfer_times) { + if (0U == iap->lps) { + iap_data_write(&iap->report_buf[2], iap->base_address, TRANSFER_SIZE); + } else { + iap_data_write(&iap->report_buf[2], iap->base_address, iap->file_length % TRANSFER_SIZE); + iap->lps = 0U; + } + + iap->dev_status[0] = 0x02U; + iap->dev_status[1] = 0x02U; + iap_report_send (udev, iap->dev_status, IAP_IN_PACKET); + } else { + iap_data_write(&iap->report_buf[2], iap->base_address, TRANSFER_SIZE); + + iap->base_address += TRANSFER_SIZE; + } + + iap->transfer_times--; + } +} + +/*! + \brief handle the IAP_ERASE request + \param[in] udev: pointer to USB device instance + \param[out] none + \retval none +*/ +static void iap_req_erase(usb_dev *udev) +{ + uint32_t addr = 0U; + + usbd_iap_handler *iap = (usbd_iap_handler *)udev->dev.class_data[USBD_IAP_INTERFACE]; + + /* get base address to erase */ + iap->base_address = iap->report_buf[2]; + iap->base_address |= iap->report_buf[3] << 8U; + iap->base_address |= iap->report_buf[4] << 16U; + iap->base_address |= iap->report_buf[5] << 24U; + + /* get file length */ + iap->file_length = iap->report_buf[7]; + iap->file_length |= iap->report_buf[8] << 8U; + iap->file_length |= iap->report_buf[9] << 16U; + iap->file_length |= iap->report_buf[10] << 24U; + + iap->lps = iap->file_length % TRANSFER_SIZE; + if (0U == iap->lps) { + iap->transfer_times = iap->file_length / TRANSFER_SIZE; + } else { + iap->transfer_times = iap->file_length / TRANSFER_SIZE + 1U; + } + + /* check if the address is in protected area */ + if (IS_PROTECTED_AREA(iap->base_address)) { + return; + } + + addr = iap->base_address; + + /* unlock the flash program erase controller */ + fmc_unlock(); + + flash_erase(addr, iap->file_length, iap->report_buf); + + fmc_lock(); + + iap->dev_status[0] = 0x02U; + iap->dev_status[1] = 0x01U; + + usbd_ep_send(udev, IAP_IN_EP, iap->dev_status, IAP_IN_PACKET); +} + +/*! + \brief handle the IAP_OPTION_BYTE request + \param[in] udev: pointer to USB device instance + \param[in] option_num: number of option byte + \param[out] none + \retval none +*/ +static void iap_req_optionbyte(usb_dev *udev, uint8_t option_num) +{ + uint8_t i = 0U; + uint32_t address = 0U; + + usbd_iap_handler *iap = (usbd_iap_handler *)udev->dev.class_data[USBD_IAP_INTERFACE]; + + iap->option_byte[0]= 0x02U; + + if (0x01U == option_num) { + address = OPT_BYTE_ADDR1; +#ifdef OPT_BYTE_ADDR2 + } else if (0x02U == option_num) { + address = OPT_BYTE_ADDR2; +#endif + } else { + return; + } + + for (i = 1U; i < 17U; i++) { + iap->option_byte[i] = *(uint8_t *)address; + address++; + } + + iap_report_send (udev, iap->option_byte, IAP_IN_PACKET); +} + +/*! + \brief handle the IAP_LEAVE request + \param[in] udev: pointer to USB device instance + \param[out] none + \retval none +*/ +static void iap_req_leave(usb_dev *udev) +{ + /* lock the internal flash */ + fmc_lock(); + + /* generate system reset to allow jumping to the user code */ + NVIC_SystemReset(); +} + +/*! + \brief handle the IAP_SEND_ADDRESS request + \param[in] udev: pointer to USB device instance + \param[out] none + \retval none +*/ +static void iap_address_send(usb_dev *udev) +{ + usbd_iap_handler *iap = (usbd_iap_handler *)udev->dev.class_data[USBD_IAP_INTERFACE]; + + iap->bin_addr[0] = 0x02U; + + iap->bin_addr[1] = (uint8_t)(APP_LOADED_ADDR); + iap->bin_addr[2] = (uint8_t)(APP_LOADED_ADDR >> 8U); + iap->bin_addr[3] = (uint8_t)(APP_LOADED_ADDR >> 16U); + iap->bin_addr[4] = (uint8_t)(APP_LOADED_ADDR >> 24U); + + iap_report_send (udev, iap->bin_addr, IAP_IN_PACKET); +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_bbb.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_bbb.h new file mode 100644 index 0000000000..97402f0a54 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_bbb.h @@ -0,0 +1,101 @@ +/*! + \file usbd_msc_bbb.h + \brief the header file of the usbd_msc_bot.c file + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBD_MSC_BBB_H +#define __USBD_MSC_BBB_H + +#include "gd32_usbd_core.h" +#include "msc_bbb.h" +#include "usbd_msc_mem.h" +#include "usbd_msc_scsi.h" + +/* MSC BBB state */ +enum msc_bbb_state { + BBB_IDLE = 0U, /*!< idle state */ + BBB_DATA_OUT, /*!< data OUT state */ + BBB_DATA_IN, /*!< data IN state */ + BBB_LAST_DATA_IN, /*!< last data IN state */ + BBB_SEND_DATA /*!< send immediate data state */ +}; + +/* MSC BBB status */ +enum msc_bbb_status { + BBB_STATUS_NORMAL = 0U, /*!< normal status */ + BBB_STATUS_RECOVERY, /*!< recovery status*/ + BBB_STATUS_ERROR /*!< error status */ +}; + +typedef struct +{ + uint8_t bbb_data[MSC_MEDIA_PACKET_SIZE]; + + uint8_t max_lun; + uint8_t bbb_state; + uint8_t bbb_status; + + uint32_t bbb_datalen; + + msc_bbb_cbw bbb_cbw; + msc_bbb_csw bbb_csw; + + uint8_t scsi_sense_head; + uint8_t scsi_sense_tail; + + uint32_t scsi_blk_size[MEM_LUN_NUM]; + uint32_t scsi_blk_nbr[MEM_LUN_NUM]; + + uint32_t scsi_blk_addr; + uint32_t scsi_blk_len; + uint32_t scsi_disk_pop; + + msc_scsi_sense scsi_sense[SENSE_LIST_DEEPTH]; +} usbd_msc_handler; + +/* function declarations */ +/* initialize the bbb process */ +void msc_bbb_init (usb_core_driver *udev); +/* reset the BBB machine */ +void msc_bbb_reset (usb_core_driver *udev); +/* deinitialize the BBB machine */ +void msc_bbb_deinit (usb_core_driver *udev); +/* handle BBB data IN stage */ +void msc_bbb_data_in (usb_core_driver *udev, uint8_t ep_num); +/* handle BBB data OUT stage */ +void msc_bbb_data_out (usb_core_driver *udev, uint8_t ep_num); +/* send the CSW(command status wrapper) */ +void msc_bbb_csw_send (usb_core_driver *udev, uint8_t csw_status); +/* complete the clear feature request */ +void msc_bbb_clrfeature (usb_core_driver *udev, uint8_t ep_num); + +#endif /* __USBD_MSC_BBB_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_core.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_core.h new file mode 100644 index 0000000000..235db9eacd --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_core.h @@ -0,0 +1,59 @@ +/*! + \file usbd_msc_core.h + \brief the header file of USB MSC device class core functions + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBD_MSC_CORE_H +#define __USBD_MSC_CORE_H + +#include "gd32_usbd_core.h" +#include "usb_msc.h" + +#define USB_MSC_CONFIG_DESC_SIZE 32U + +#define MSC_EPIN_SIZE MSC_DATA_PACKET_SIZE +#define MSC_EPOUT_SIZE MSC_DATA_PACKET_SIZE + +/* USB configuration descriptor structure */ +typedef struct +{ + usb_desc_config config; + + usb_desc_itf msc_itf; + usb_desc_ep msc_epin; + usb_desc_ep msc_epout; +} usb_desc_config_set; + +extern usb_desc msc_desc; +extern usb_class_core msc_class; + +#endif /* __USBD_MSC_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_data.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_data.h new file mode 100644 index 0000000000..b2598eb85d --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_data.h @@ -0,0 +1,49 @@ +/*! + \file usbd_msc_data.h + \brief the header file of the usbd_msc_data.c file + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBD_MSC_DATA_H +#define __USBD_MSC_DATA_H + +#include "usbd_conf.h" + +#define MODE_SENSE6_LENGTH 8U +#define MODE_SENSE10_LENGTH 8U +#define INQUIRY_PAGE00_LENGTH 96U +#define FORMAT_CAPACITIES_LENGTH 20U + +extern const uint8_t msc_page00_inquiry_data[]; +extern const uint8_t msc_mode_sense6_data[]; +extern const uint8_t msc_mode_sense10_data[]; + +#endif /* __USBD_MSC_DATA_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_mem.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_mem.h new file mode 100644 index 0000000000..633e31a0f1 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_mem.h @@ -0,0 +1,59 @@ +/*! + \file usbd_msc_mem.h + \brief header file for storage memory + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBD_MSC_MEM_H +#define __USBD_MSC_MEM_H + +#include "usbd_conf.h" + +#define USBD_STD_INQUIRY_LENGTH 36U + +typedef struct +{ + int8_t (*mem_init) (uint8_t lun); + int8_t (*mem_ready) (uint8_t lun); + int8_t (*mem_protected) (uint8_t lun); + int8_t (*mem_read) (uint8_t lun, uint8_t *buf, uint32_t block_addr, uint16_t block_len); + int8_t (*mem_write) (uint8_t lun, uint8_t *buf, uint32_t block_addr, uint16_t block_len); + int8_t (*mem_maxlun) (void); + + uint8_t *mem_toc_data; + uint8_t *mem_inquiry_data[MEM_LUN_NUM]; + uint32_t mem_block_size[MEM_LUN_NUM]; + uint32_t mem_block_len[MEM_LUN_NUM]; +}usbd_mem_cb; + +extern usbd_mem_cb *usbd_mem_fops; + +#endif /* __USBD_MSC_MEM_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_scsi.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_scsi.h new file mode 100644 index 0000000000..a423456c2a --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_scsi.h @@ -0,0 +1,50 @@ +/*! + \file usbd_msc_scsi.h + \brief the header file of the usbd_msc_scsi.c file + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBD_MSC_SCSI_H +#define __USBD_MSC_SCSI_H + +#include "usbd_msc_data.h" +#include "usbd_msc_bbb.h" +#include "msc_scsi.h" + +#define SENSE_LIST_DEEPTH 4U + +/* function declarations */ +/* process SCSI commands */ +int8_t scsi_process_cmd (usb_core_driver *udev, uint8_t lun, uint8_t *cmd); +/* load the last error code in the error list */ +void scsi_sense_code (usb_core_driver *udev, uint8_t lun, uint8_t skey, uint8_t asc); + +#endif /* __USBD_MSC_SCSI_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_bbb.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_bbb.c new file mode 100644 index 0000000000..fd47623c29 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_bbb.c @@ -0,0 +1,287 @@ +/*! + \file usbd_msc_bbb.c + \brief USB BBB(Bulk/Bulk/Bulk) protocol core functions + \note BBB means Bulk-only transport protocol for USB MSC + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "usbd_enum.h" +#include "usbd_msc_bbb.h" + +/* local function prototypes ('static') */ +static void msc_bbb_cbw_decode (usb_core_driver *udev); +static void msc_bbb_data_send (usb_core_driver *udev, uint8_t *pbuf, uint32_t Len); +static void msc_bbb_abort (usb_core_driver *udev); + +/*! + \brief initialize the bbb process + \param[in] udev: pointer to USB device instance + \param[out] none + \retval none +*/ +void msc_bbb_init (usb_core_driver *udev) +{ + uint8_t lun_num; + + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + msc->bbb_state = BBB_IDLE; + msc->bbb_status = BBB_STATUS_NORMAL; + + /* initializes the storage logic unit */ + for(lun_num = 0U; lun_num < MEM_LUN_NUM; lun_num++) { + usbd_mem_fops->mem_init(lun_num); + } + + /* flush the RX FIFO */ + usbd_fifo_flush (udev, MSC_OUT_EP); + + /* flush the TX FIFO */ + usbd_fifo_flush (udev, MSC_IN_EP); + + /* prepare endpoint to receive the first BBB CBW */ + usbd_ep_recev (udev, MSC_OUT_EP, (uint8_t *)&msc->bbb_cbw, BBB_CBW_LENGTH); +} + +/*! + \brief reset the BBB machine + \param[in] udev: pointer to USB device instance + \param[out] none + \retval none +*/ +void msc_bbb_reset (usb_core_driver *udev) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + msc->bbb_state = BBB_IDLE; + msc->bbb_status = BBB_STATUS_RECOVERY; + + /* prepare endpoint to receive the first BBB command */ + usbd_ep_recev (udev, MSC_OUT_EP, (uint8_t *)&msc->bbb_cbw, BBB_CBW_LENGTH); +} + +/*! + \brief de-initialize the BBB machine + \param[in] udev: pointer to USB device instance + \param[out] none + \retval none +*/ +void msc_bbb_deinit (usb_core_driver *udev) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + msc->bbb_state = BBB_IDLE; +} + +/*! + \brief handle BBB data IN stage + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint number + \param[out] none + \retval none +*/ +void msc_bbb_data_in (usb_core_driver *udev, uint8_t ep_num) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + switch (msc->bbb_state) { + case BBB_DATA_IN: + if (scsi_process_cmd (udev, msc->bbb_cbw.bCBWLUN, &msc->bbb_cbw.CBWCB[0]) < 0) { + msc_bbb_csw_send (udev, CSW_CMD_FAILED); + } + break; + + case BBB_SEND_DATA: + case BBB_LAST_DATA_IN: + msc_bbb_csw_send (udev, CSW_CMD_PASSED); + break; + + default: + break; + } +} + +/*! + \brief handle BBB data OUT stage + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint number + \param[out] none + \retval none +*/ +void msc_bbb_data_out (usb_core_driver *udev, uint8_t ep_num) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + switch (msc->bbb_state) { + case BBB_IDLE: + msc_bbb_cbw_decode (udev); + break; + + case BBB_DATA_OUT: + if (scsi_process_cmd (udev, msc->bbb_cbw.bCBWLUN, &msc->bbb_cbw.CBWCB[0]) < 0) { + msc_bbb_csw_send (udev, CSW_CMD_FAILED); + } + break; + + default: + break; + } +} + +/*! + \brief send the CSW(command status wrapper) + \param[in] udev: pointer to USB device instance + \param[in] csw_status: CSW status + \param[out] none + \retval none +*/ +void msc_bbb_csw_send (usb_core_driver *udev, uint8_t csw_status) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + msc->bbb_csw.dCSWSignature = BBB_CSW_SIGNATURE; + msc->bbb_csw.bCSWStatus = csw_status; + msc->bbb_state = BBB_IDLE; + + usbd_ep_send (udev, MSC_IN_EP, (uint8_t *)&msc->bbb_csw, BBB_CSW_LENGTH); + + /* prepare endpoint to receive next command */ + usbd_ep_recev (udev, MSC_OUT_EP, (uint8_t *)&msc->bbb_cbw, BBB_CBW_LENGTH); +} + +/*! + \brief complete the clear feature request + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint number + \param[out] none + \retval none +*/ +void msc_bbb_clrfeature (usb_core_driver *udev, uint8_t ep_num) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + if (msc->bbb_status == BBB_STATUS_ERROR)/* bad CBW signature */ { + usbd_ep_stall(udev, MSC_IN_EP); + + msc->bbb_status = BBB_STATUS_NORMAL; + } else if(((ep_num & 0x80U) == 0x80U) && (msc->bbb_status != BBB_STATUS_RECOVERY)) { + msc_bbb_csw_send (udev, CSW_CMD_FAILED); + } else { + + } +} + +/*! + \brief decode the CBW command and set the BBB state machine accordingly + \param[in] udev: pointer to USB device instance + \param[out] none + \retval none +*/ +static void msc_bbb_cbw_decode (usb_core_driver *udev) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + msc->bbb_csw.dCSWTag = msc->bbb_cbw.dCBWTag; + msc->bbb_csw.dCSWDataResidue = msc->bbb_cbw.dCBWDataTransferLength; + + if ((BBB_CBW_LENGTH != usbd_rxcount_get (udev, MSC_OUT_EP)) || + (BBB_CBW_SIGNATURE != msc->bbb_cbw.dCBWSignature)|| + (msc->bbb_cbw.bCBWLUN > 1U) || + (msc->bbb_cbw.bCBWCBLength < 1U) || + (msc->bbb_cbw.bCBWCBLength > 16U)) { + /* illegal command handler */ + scsi_sense_code (udev, msc->bbb_cbw.bCBWLUN, ILLEGAL_REQUEST, INVALID_CDB); + + msc->bbb_status = BBB_STATUS_ERROR; + + msc_bbb_abort (udev); + } else { + if (scsi_process_cmd (udev, msc->bbb_cbw.bCBWLUN, &msc->bbb_cbw.CBWCB[0]) < 0) { + msc_bbb_abort (udev); + } else if ((BBB_DATA_IN != msc->bbb_state) && + (BBB_DATA_OUT != msc->bbb_state) && + (BBB_LAST_DATA_IN != msc->bbb_state)) { /* burst xfer handled internally */ + if (msc->bbb_datalen > 0U) { + msc_bbb_data_send (udev, msc->bbb_data, msc->bbb_datalen); + } else if (0U == msc->bbb_datalen) { + msc_bbb_csw_send (udev, CSW_CMD_PASSED); + } else { + + } + } else { + + } + } +} + +/*! + \brief send the requested data + \param[in] udev: pointer to USB device instance + \param[in] buf: pointer to data buffer + \param[in] len: data length + \param[out] none + \retval none +*/ +static void msc_bbb_data_send (usb_core_driver *udev, uint8_t *buf, uint32_t len) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + len = USB_MIN (msc->bbb_cbw.dCBWDataTransferLength, len); + + msc->bbb_csw.dCSWDataResidue -= len; + msc->bbb_csw.bCSWStatus = CSW_CMD_PASSED; + msc->bbb_state = BBB_SEND_DATA; + + usbd_ep_send (udev, MSC_IN_EP, buf, len); +} + +/*! + \brief abort the current transfer + \param[in] udev: pointer to USB device instance + \param[out] none + \retval none +*/ +static void msc_bbb_abort (usb_core_driver *udev) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + if ((0U == msc->bbb_cbw.bmCBWFlags) && + (0U != msc->bbb_cbw.dCBWDataTransferLength) && + (BBB_STATUS_NORMAL == msc->bbb_status)) { + usbd_ep_stall(udev, MSC_OUT_EP); + } + + usbd_ep_stall(udev, MSC_IN_EP); + + if (msc->bbb_status == BBB_STATUS_ERROR) { + usbd_ep_recev (udev, MSC_OUT_EP, (uint8_t *)&msc->bbb_cbw, BBB_CBW_LENGTH); + } +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_core.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_core.c new file mode 100644 index 0000000000..fd26bc5646 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_core.c @@ -0,0 +1,322 @@ +/*! + \file usbd_msc_core.c + \brief USB MSC device class core functions + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "usbd_enum.h" +#include "usbd_msc_bbb.h" +#include "usbd_msc_core.h" +#include + +#define USBD_VID 0x28E9U +#define USBD_PID 0x028FU + +/* local function prototypes ('static') */ +static uint8_t msc_core_init (usb_dev *udev, uint8_t config_index); +static uint8_t msc_core_deinit (usb_dev *udev, uint8_t config_index); +static uint8_t msc_core_req (usb_dev *udev, usb_req *req); +static uint8_t msc_core_in (usb_dev *udev, uint8_t ep_num); +static uint8_t msc_core_out (usb_dev *udev, uint8_t ep_num); + +usb_class_core msc_class = +{ + .init = msc_core_init, + .deinit = msc_core_deinit, + + .req_proc = msc_core_req, + + .data_in = msc_core_in, + .data_out = msc_core_out +}; + +/* note: it should use the C99 standard when compiling the below codes */ +/* USB standard device descriptor */ +__ALIGN_BEGIN const usb_desc_dev msc_dev_desc __ALIGN_END = +{ + .header = { + .bLength = USB_DEV_DESC_LEN, + .bDescriptorType = USB_DESCTYPE_DEV + }, + .bcdUSB = 0x0200U, + .bDeviceClass = 0x00U, + .bDeviceSubClass = 0x00U, + .bDeviceProtocol = 0x00U, + .bMaxPacketSize0 = USB_FS_EP0_MAX_LEN, + .idVendor = USBD_VID, + .idProduct = USBD_PID, + .bcdDevice = 0x0100U, + .iManufacturer = STR_IDX_MFC, + .iProduct = STR_IDX_PRODUCT, + .iSerialNumber = STR_IDX_SERIAL, + .bNumberConfigurations = USBD_CFG_MAX_NUM +}; + +/* USB device configuration descriptor */ +__ALIGN_BEGIN const usb_desc_config_set msc_config_desc __ALIGN_END = +{ + .config = + { + .header = { + .bLength = sizeof(usb_desc_config), + .bDescriptorType = USB_DESCTYPE_CONFIG + }, + .wTotalLength = USB_MSC_CONFIG_DESC_SIZE, + .bNumInterfaces = 0x01U, + .bConfigurationValue = 0x01U, + .iConfiguration = 0x00U, + .bmAttributes = 0xC0U, + .bMaxPower = 0x32U + }, + + .msc_itf = + { + .header = { + .bLength = sizeof(usb_desc_itf), + .bDescriptorType = USB_DESCTYPE_ITF + }, + .bInterfaceNumber = 0x00U, + .bAlternateSetting = 0x00U, + .bNumEndpoints = 0x02U, + .bInterfaceClass = USB_CLASS_MSC, + .bInterfaceSubClass = USB_MSC_SUBCLASS_SCSI, + .bInterfaceProtocol = USB_MSC_PROTOCOL_BBB, + .iInterface = 0x00U + }, + + .msc_epin = + { + .header = { + .bLength = sizeof(usb_desc_ep), + .bDescriptorType = USB_DESCTYPE_EP + }, + .bEndpointAddress = MSC_IN_EP, + .bmAttributes = USB_EP_ATTR_BULK, + .wMaxPacketSize = MSC_EPIN_SIZE, + .bInterval = 0x00U + }, + + .msc_epout = + { + .header = { + .bLength = sizeof(usb_desc_ep), + .bDescriptorType = USB_DESCTYPE_EP + }, + .bEndpointAddress = MSC_OUT_EP, + .bmAttributes = USB_EP_ATTR_BULK, + .wMaxPacketSize = MSC_EPOUT_SIZE, + .bInterval = 0x00U + } +}; + +/* USB language ID descriptor */ +static __ALIGN_BEGIN const usb_desc_LANGID usbd_language_id_desc __ALIGN_END = +{ + .header = + { + .bLength = sizeof(usb_desc_LANGID), + .bDescriptorType = USB_DESCTYPE_STR + }, + .wLANGID = ENG_LANGID +}; + +/* USB manufacture string */ +static __ALIGN_BEGIN const usb_desc_str manufacturer_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(10U), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'i', 'g', 'a', 'D', 'e', 'v', 'i', 'c', 'e'} +}; + +/* USB product string */ +static __ALIGN_BEGIN const usb_desc_str product_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(12U), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'D', '3', '2', '-', 'U', 'S', 'B', '_', 'M', 'S', 'C'} +}; + +/* USBD serial string */ +static __ALIGN_BEGIN usb_desc_str serial_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(12U), + .bDescriptorType = USB_DESCTYPE_STR, + } +}; + +/* USB string descriptor */ +static void *const usbd_msc_strings[] = +{ + [STR_IDX_LANGID] = (uint8_t *)&usbd_language_id_desc, + [STR_IDX_MFC] = (uint8_t *)&manufacturer_string, + [STR_IDX_PRODUCT] = (uint8_t *)&product_string, + [STR_IDX_SERIAL] = (uint8_t *)&serial_string +}; + +usb_desc msc_desc = { + .dev_desc = (uint8_t *)&msc_dev_desc, + .config_desc = (uint8_t *)&msc_config_desc, + .strings = usbd_msc_strings +}; + +static __ALIGN_BEGIN uint8_t usbd_msc_maxlun = 0U __ALIGN_END; + +/*! + \brief initialize the MSC device + \param[in] udev: pointer to USB device instance + \param[in] config_index: configuration index + \param[out] none + \retval USB device operation status +*/ +static uint8_t msc_core_init (usb_dev *udev, uint8_t config_index) +{ + static __ALIGN_BEGIN usbd_msc_handler msc_handler __ALIGN_END; + + memset((void *)&msc_handler, 0U, sizeof(usbd_msc_handler)); + + udev->dev.class_data[USBD_MSC_INTERFACE] = (void *)&msc_handler; + + /* configure MSC TX endpoint */ + usbd_ep_setup (udev, &(msc_config_desc.msc_epin)); + + /* configure MSC RX endpoint */ + usbd_ep_setup (udev, &(msc_config_desc.msc_epout)); + + /* initialize the BBB layer */ + msc_bbb_init(udev); + + return USBD_OK; +} + +/*! + \brief de-initialize the MSC device + \param[in] udev: pointer to USB device instance + \param[in] config_index: configuration index + \param[out] none + \retval USB device operation status +*/ +static uint8_t msc_core_deinit (usb_dev *udev, uint8_t config_index) +{ + /* clear MSC endpoints */ + usbd_ep_clear (udev, MSC_IN_EP); + usbd_ep_clear (udev, MSC_OUT_EP); + + /* deinitialize the BBB layer */ + msc_bbb_deinit(udev); + + return USBD_OK; +} + +/*! + \brief handle the MSC class-specific and standard requests + \param[in] udev: pointer to USB device instance + \param[in] req: device class-specific request + \param[out] none + \retval USB device operation status +*/ +static uint8_t msc_core_req (usb_dev *udev, usb_req *req) +{ + usb_transc *transc = &udev->dev.transc_in[0]; + + switch (req->bRequest) { + case BBB_GET_MAX_LUN : + if((0U == req->wValue) && + (1U == req->wLength) && + (0x80U == (req->bmRequestType & 0x80U))) { + usbd_msc_maxlun = (uint8_t)usbd_mem_fops->mem_maxlun(); + + transc->xfer_buf = &usbd_msc_maxlun; + transc->remain_len = 1U; + } else { + return USBD_FAIL; + } + break; + + case BBB_RESET : + if((0U == req->wValue) && + (0U == req->wLength) && + (0x80U != (req->bmRequestType & 0x80U))) { + msc_bbb_reset(udev); + } else { + return USBD_FAIL; + } + break; + + case USB_CLEAR_FEATURE: + msc_bbb_clrfeature (udev, (uint8_t)req->wIndex); + break; + + default: + return USBD_FAIL; + } + + return USBD_OK; +} + +/*! + \brief handle data in stage + \param[in] udev: pointer to USB device instance + \param[in] ep_num: the endpoint number + \param[out] none + \retval none +*/ +static uint8_t msc_core_in (usb_dev *udev, uint8_t ep_num) +{ + if ((MSC_IN_EP & 0x7FU) == ep_num) { + msc_bbb_data_in(udev, ep_num); + } + + return USBD_OK; +} + +/*! + \brief handle data out stage + \param[in] udev: pointer to USB device instance + \param[in] ep_num: the endpoint number + \param[out] none + \retval none +*/ +static uint8_t msc_core_out (usb_dev *udev, uint8_t ep_num) +{ + if (MSC_OUT_EP == ep_num) { + msc_bbb_data_out (udev, ep_num); + } + + return USBD_OK; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_data.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_data.c new file mode 100644 index 0000000000..0f95ac8db5 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_data.c @@ -0,0 +1,73 @@ +/*! + \file usbd_msc_data.c + \brief USB MSC vital inquiry pages and sense data + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "usbd_msc_data.h" + +/* USB mass storage page 0 inquiry data */ +const uint8_t msc_page00_inquiry_data[] = +{ + 0x00U, + 0x00U, + 0x00U, + 0x00U, + (INQUIRY_PAGE00_LENGTH - 4U), + 0x80U, + 0x83U, +}; + +/* USB mass storage sense 6 data */ +const uint8_t msc_mode_sense6_data[] = +{ + 0x00U, + 0x00U, + 0x00U, + 0x00U, + 0x00U, + 0x00U, + 0x00U, + 0x00U +}; + +/* USB mass storage sense 10 data */ +const uint8_t msc_mode_sense10_data[] = +{ + 0x00U, + 0x06U, + 0x00U, + 0x00U, + 0x00U, + 0x00U, + 0x00U, + 0x00U +}; diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_scsi.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_scsi.c new file mode 100644 index 0000000000..44adc519ce --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_scsi.c @@ -0,0 +1,685 @@ +/*! + \file usbd_msc_scsi.c + \brief USB SCSI layer functions + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ +#include "usbd_enum.h" +#include "usbd_msc_bbb.h" +#include "usbd_msc_scsi.h" +#include "usbd_msc_data.h" + +/* local function prototypes ('static') */ +static int8_t scsi_test_unit_ready (usb_core_driver *udev, uint8_t lun, uint8_t *params); +static int8_t scsi_inquiry (usb_core_driver *udev, uint8_t lun, uint8_t *params); +static int8_t scsi_read_format_capacity (usb_core_driver *udev, uint8_t lun, uint8_t *params); +static int8_t scsi_read_capacity10 (usb_core_driver *udev, uint8_t lun, uint8_t *params); +static int8_t scsi_request_sense (usb_core_driver *udev, uint8_t lun, uint8_t *params); +static int8_t scsi_mode_sense6 (usb_core_driver *udev, uint8_t lun, uint8_t *params); +static int8_t scsi_toc_cmd_read (usb_core_driver *udev, uint8_t lun, uint8_t *params); +static int8_t scsi_mode_sense10 (usb_core_driver *udev, uint8_t lun, uint8_t *params); +static int8_t scsi_write10 (usb_core_driver *udev, uint8_t lun, uint8_t *params); +static int8_t scsi_read10 (usb_core_driver *udev, uint8_t lun, uint8_t *params); +static int8_t scsi_verify10 (usb_core_driver *udev, uint8_t lun, uint8_t *params); + +static int8_t scsi_process_read (usb_core_driver *udev, uint8_t lun); +static int8_t scsi_process_write (usb_core_driver *udev, uint8_t lun); + +static inline int8_t scsi_check_address_range (usb_core_driver *udev, uint8_t lun, uint32_t blk_offset, uint16_t blk_nbr); +static inline int8_t scsi_format_cmd (usb_core_driver *udev, uint8_t lun); +static inline int8_t scsi_start_stop_unit (usb_core_driver *udev, uint8_t lun, uint8_t *params); +static inline int8_t scsi_allow_medium_removal (usb_core_driver *udev, uint8_t lun, uint8_t *params); + +/*! + \brief process SCSI commands + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[in] params: command parameters + \param[out] none + \retval status +*/ +int8_t scsi_process_cmd(usb_core_driver *udev, uint8_t lun, uint8_t *params) +{ + switch (params[0]) { + case SCSI_TEST_UNIT_READY: + return scsi_test_unit_ready (udev, lun, params); + + case SCSI_REQUEST_SENSE: + return scsi_request_sense (udev, lun, params); + + case SCSI_INQUIRY: + return scsi_inquiry (udev, lun, params); + + case SCSI_START_STOP_UNIT: + return scsi_start_stop_unit (udev, lun, params); + + case SCSI_ALLOW_MEDIUM_REMOVAL: + return scsi_allow_medium_removal (udev, lun, params); + + case SCSI_MODE_SENSE6: + return scsi_mode_sense6 (udev, lun, params); + + case SCSI_MODE_SENSE10: + return scsi_mode_sense10 (udev, lun, params); + + case SCSI_READ_FORMAT_CAPACITIES: + return scsi_read_format_capacity (udev, lun, params); + + case SCSI_READ_CAPACITY10: + return scsi_read_capacity10 (udev, lun, params); + + case SCSI_READ10: + return scsi_read10 (udev, lun, params); + + case SCSI_WRITE10: + return scsi_write10 (udev, lun, params); + + case SCSI_VERIFY10: + return scsi_verify10 (udev, lun, params); + + case SCSI_FORMAT_UNIT: + return scsi_format_cmd (udev, lun); + + case SCSI_READ_TOC_DATA: + return scsi_toc_cmd_read (udev, lun, params); + + default: + scsi_sense_code (udev, lun, ILLEGAL_REQUEST, INVALID_CDB); + return -1; + } +} + +/*! + \brief load the last error code in the error list + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[in] skey: sense key + \param[in] asc: additional sense key + \param[out] none + \retval none +*/ +void scsi_sense_code (usb_core_driver *udev, uint8_t lun, uint8_t skey, uint8_t asc) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + msc->scsi_sense[msc->scsi_sense_tail].SenseKey = skey; + msc->scsi_sense[msc->scsi_sense_tail].ASC = asc << 8U; + msc->scsi_sense_tail++; + + if (SENSE_LIST_DEEPTH == msc->scsi_sense_tail) { + msc->scsi_sense_tail = 0U; + } +} + +/*! + \brief process SCSI Test Unit Ready command + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[in] params: command parameters + \param[out] none + \retval status +*/ +static int8_t scsi_test_unit_ready (usb_core_driver *udev, uint8_t lun, uint8_t *params) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + /* case 9 : Hi > D0 */ + if (0U != msc->bbb_cbw.dCBWDataTransferLength) { + scsi_sense_code (udev, msc->bbb_cbw.bCBWLUN, ILLEGAL_REQUEST, INVALID_CDB); + + return -1; + } + + if (0 != usbd_mem_fops->mem_ready(lun)) { + scsi_sense_code(udev, lun, NOT_READY, MEDIUM_NOT_PRESENT); + + return -1; + } + + if (1U == msc->scsi_disk_pop) { + usbd_disconnect (udev); + } + + msc->bbb_datalen = 0U; + + return 0; +} + +/*! + \brief process Inquiry command + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[in] params: command parameters + \param[out] none + \retval status +*/ +static int8_t scsi_inquiry (usb_core_driver *udev, uint8_t lun, uint8_t *params) +{ + uint8_t *page = NULL; + uint16_t len = 0U; + + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + if (params[1] & 0x01U) { + page = (uint8_t *)msc_page00_inquiry_data; + + len = INQUIRY_PAGE00_LENGTH; + } else { + page = (uint8_t *)usbd_mem_fops->mem_inquiry_data[lun]; + + len = (uint16_t)(page[4] + 5U); + + if (params[4] <= len) { + len = params[4]; + } + } + + msc->bbb_datalen = len; + + while (len) { + len--; + msc->bbb_data[len] = page[len]; + } + + return 0; +} + +/*! + \brief process Read Capacity 10 command + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[in] params: command parameters + \param[out] none + \retval status +*/ +static int8_t scsi_read_capacity10 (usb_core_driver *udev, uint8_t lun, uint8_t *params) +{ + uint32_t blk_num = usbd_mem_fops->mem_block_len[lun] - 1U; + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + msc->scsi_blk_nbr[lun] = usbd_mem_fops->mem_block_len[lun]; + msc->scsi_blk_size[lun] = usbd_mem_fops->mem_block_size[lun]; + + msc->bbb_data[0] = (uint8_t)(blk_num >> 24U); + msc->bbb_data[1] = (uint8_t)(blk_num >> 16U); + msc->bbb_data[2] = (uint8_t)(blk_num >> 8U); + msc->bbb_data[3] = (uint8_t)(blk_num); + + msc->bbb_data[4] = (uint8_t)(msc->scsi_blk_size[lun] >> 24U); + msc->bbb_data[5] = (uint8_t)(msc->scsi_blk_size[lun] >> 16U); + msc->bbb_data[6] = (uint8_t)(msc->scsi_blk_size[lun] >> 8U); + msc->bbb_data[7] = (uint8_t)(msc->scsi_blk_size[lun]); + + msc->bbb_datalen = 8U; + + return 0; +} + +/*! + \brief process Read Format Capacity command + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[in] params: command parameters + \param[out] none + \retval status +*/ +static int8_t scsi_read_format_capacity (usb_core_driver *udev, uint8_t lun, uint8_t *params) +{ + uint16_t i = 0U; + uint32_t blk_size = usbd_mem_fops->mem_block_size[lun]; + uint32_t blk_num = usbd_mem_fops->mem_block_len[lun]; + uint32_t blk_nbr = blk_num - 1U; + + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + for (i = 0U; i < 12U; i++) { + msc->bbb_data[i] = 0U; + } + + msc->bbb_data[3] = 0x08U; + msc->bbb_data[4] = (uint8_t)(blk_nbr >> 24U); + msc->bbb_data[5] = (uint8_t)(blk_nbr >> 16U); + msc->bbb_data[6] = (uint8_t)(blk_nbr >> 8U); + msc->bbb_data[7] = (uint8_t)(blk_nbr); + + msc->bbb_data[8] = 0x02U; + msc->bbb_data[9] = (uint8_t)(blk_size >> 16U); + msc->bbb_data[10] = (uint8_t)(blk_size >> 8U); + msc->bbb_data[11] = (uint8_t)(blk_size); + + msc->bbb_datalen = 12U; + + return 0; +} + +/*! + \brief process Mode Sense6 command + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[in] params: command parameters + \param[out] none + \retval status +*/ +static int8_t scsi_mode_sense6 (usb_core_driver *udev, uint8_t lun, uint8_t *params) +{ + uint16_t len = 8U; + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + msc->bbb_datalen = len; + + while (len) { + len--; + msc->bbb_data[len] = msc_mode_sense6_data[len]; + } + + return 0; +} + +/*! + \brief process Mode Sense10 command + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[in] params: command parameters + \param[out] none + \retval status +*/ +static int8_t scsi_mode_sense10 (usb_core_driver *udev, uint8_t lun, uint8_t *params) +{ + uint16_t len = 8U; + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + msc->bbb_datalen = len; + + while (len) { + len--; + msc->bbb_data[len] = msc_mode_sense10_data[len]; + } + + return 0; +} + +/*! + \brief process Request Sense command + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[in] params: command parameters + \param[out] none + \retval status +*/ +static int8_t scsi_request_sense (usb_core_driver *udev, uint8_t lun, uint8_t *params) +{ + uint8_t i = 0U; + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + for (i = 0U; i < REQUEST_SENSE_DATA_LEN; i++) { + msc->bbb_data[i] = 0U; + } + + msc->bbb_data[0] = 0x70U; + msc->bbb_data[7] = REQUEST_SENSE_DATA_LEN - 6U; + + if ((msc->scsi_sense_head != msc->scsi_sense_tail)) { + msc->bbb_data[2] = msc->scsi_sense[msc->scsi_sense_head].SenseKey; + msc->bbb_data[12] = msc->scsi_sense[msc->scsi_sense_head].ASCQ; + msc->bbb_data[13] = msc->scsi_sense[msc->scsi_sense_head].ASC; + msc->scsi_sense_head++; + + if (msc->scsi_sense_head == SENSE_LIST_DEEPTH) { + msc->scsi_sense_head = 0U; + } + } + + msc->bbb_datalen = USB_MIN(REQUEST_SENSE_DATA_LEN, params[4]); + + return 0; +} + +/*! + \brief process Start Stop Unit command + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[in] params: command parameters + \param[out] none + \retval status +*/ +static inline int8_t scsi_start_stop_unit (usb_core_driver *udev, uint8_t lun, uint8_t *params) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + msc->bbb_datalen = 0U; + msc->scsi_disk_pop = 1U; + + return 0; +} + +/*! + \brief process Allow Medium Removal command + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[in] params: command parameters + \param[out] none + \retval status +*/ +static inline int8_t scsi_allow_medium_removal (usb_core_driver *udev, uint8_t lun, uint8_t *params) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + msc->bbb_datalen = 0U; + + return 0; +} + +/*! + \brief process Read10 command + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[in] params: command parameters + \param[out] none + \retval status +*/ +static int8_t scsi_read10 (usb_core_driver *udev, uint8_t lun, uint8_t *params) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + if (msc->bbb_state == BBB_IDLE) { + /* direction is from device to host */ + if (0x80U != (msc->bbb_cbw.bmCBWFlags & 0x80U)) { + scsi_sense_code (udev, msc->bbb_cbw.bCBWLUN, ILLEGAL_REQUEST, INVALID_CDB); + + return -1; + } + + if (0 != usbd_mem_fops->mem_ready(lun)) { + scsi_sense_code (udev, lun, NOT_READY, MEDIUM_NOT_PRESENT); + + return -1; + } + + msc->scsi_blk_addr = (params[2] << 24U) | (params[3] << 16U) | \ + (params[4] << 8U) | params[5]; + + msc->scsi_blk_len = (params[7] << 8U) | params[8]; + + if (scsi_check_address_range (udev, lun, msc->scsi_blk_addr, (uint16_t)msc->scsi_blk_len) < 0) { + return -1; /* error */ + } + + msc->bbb_state = BBB_DATA_IN; + + msc->scsi_blk_addr *= msc->scsi_blk_size[lun]; + msc->scsi_blk_len *= msc->scsi_blk_size[lun]; + + /* cases 4,5 : Hi <> Dn */ + if (msc->bbb_cbw.dCBWDataTransferLength != msc->scsi_blk_len) { + scsi_sense_code (udev, msc->bbb_cbw.bCBWLUN, ILLEGAL_REQUEST, INVALID_CDB); + + return -1; + } + } + + msc->bbb_datalen = MSC_MEDIA_PACKET_SIZE; + + return scsi_process_read (udev, lun); +} + +/*! + \brief process Write10 command + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[in] params: command parameters + \param[out] none + \retval status +*/ +static int8_t scsi_write10 (usb_core_driver *udev, uint8_t lun, uint8_t *params) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + if (BBB_IDLE == msc->bbb_state) { + /* case 8 : Hi <> Do */ + if (0x80U == (msc->bbb_cbw.bmCBWFlags & 0x80U)) { + scsi_sense_code (udev, msc->bbb_cbw.bCBWLUN, ILLEGAL_REQUEST, INVALID_CDB); + + return -1; + } + + /* check whether media is ready */ + if (0 != usbd_mem_fops->mem_ready(lun)) { + scsi_sense_code (udev, lun, NOT_READY, MEDIUM_NOT_PRESENT); + + return -1; + } + + /* check if media is write-protected */ + if (0 != usbd_mem_fops->mem_protected(lun)) { + scsi_sense_code (udev, lun, NOT_READY, WRITE_PROTECTED); + + return -1; + } + + msc->scsi_blk_addr = (params[2] << 24U) | (params[3] << 16U) | \ + (params[4] << 8U) | params[5]; + + msc->scsi_blk_len = (params[7] << 8U) | params[8]; + + /* check if LBA address is in the right range */ + if (scsi_check_address_range (udev, lun, msc->scsi_blk_addr, (uint16_t)msc->scsi_blk_len) < 0) { + return -1; /* error */ + } + + msc->scsi_blk_addr *= msc->scsi_blk_size[lun]; + msc->scsi_blk_len *= msc->scsi_blk_size[lun]; + + /* cases 3,11,13 : Hn,Ho <> D0 */ + if (msc->bbb_cbw.dCBWDataTransferLength != msc->scsi_blk_len) { + scsi_sense_code (udev, msc->bbb_cbw.bCBWLUN, ILLEGAL_REQUEST, INVALID_CDB); + + return -1; + } + + /* prepare endpoint to receive first data packet */ + msc->bbb_state = BBB_DATA_OUT; + + usbd_ep_recev (udev, + MSC_OUT_EP, + msc->bbb_data, + USB_MIN (msc->scsi_blk_len, MSC_MEDIA_PACKET_SIZE)); + } else { /* write process ongoing */ + return scsi_process_write (udev, lun); + } + + return 0; +} + +/*! + \brief process Verify10 command + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[in] params: command parameters + \param[out] none + \retval status +*/ +static int8_t scsi_verify10 (usb_core_driver *udev, uint8_t lun, uint8_t *params) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + if (0x02U == (params[1] & 0x02U)) { + scsi_sense_code (udev, lun, ILLEGAL_REQUEST, INVALID_FIELED_IN_COMMAND); + + return -1; /* error, verify mode not supported*/ + } + + if (scsi_check_address_range (udev, lun, msc->scsi_blk_addr, (uint16_t)msc->scsi_blk_len) < 0) { + return -1; /* error */ + } + + msc->bbb_datalen = 0U; + + return 0; +} + +/*! + \brief check address range + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[in] blk_offset: block offset + \param[in] blk_nbr: number of block to be processed + \param[out] none + \retval status +*/ +static inline int8_t scsi_check_address_range (usb_core_driver *udev, uint8_t lun, uint32_t blk_offset, uint16_t blk_nbr) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + if ((blk_offset + blk_nbr) > msc->scsi_blk_nbr[lun]) { + scsi_sense_code (udev, lun, ILLEGAL_REQUEST, ADDRESS_OUT_OF_RANGE); + + return -1; + } + + return 0; +} + +/*! + \brief handle read process + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[out] none + \retval status +*/ +static int8_t scsi_process_read (usb_core_driver *udev, uint8_t lun) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + uint32_t len = USB_MIN(msc->scsi_blk_len, MSC_MEDIA_PACKET_SIZE); + + if (usbd_mem_fops->mem_read(lun, + msc->bbb_data, + msc->scsi_blk_addr, + (uint16_t)(len / msc->scsi_blk_size[lun])) < 0) { + scsi_sense_code(udev, lun, HARDWARE_ERROR, UNRECOVERED_READ_ERROR); + + return -1; + } + + usbd_ep_send (udev, MSC_IN_EP, msc->bbb_data, len); + + msc->scsi_blk_addr += len; + msc->scsi_blk_len -= len; + + /* case 6 : Hi = Di */ + msc->bbb_csw.dCSWDataResidue -= len; + + if (0U == msc->scsi_blk_len) { + msc->bbb_state = BBB_LAST_DATA_IN; + } + + return 0; +} + +/*! + \brief handle write process + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[out] none + \retval status +*/ +static int8_t scsi_process_write (usb_core_driver *udev, uint8_t lun) +{ + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + uint32_t len = USB_MIN(msc->scsi_blk_len, MSC_MEDIA_PACKET_SIZE); + + if (usbd_mem_fops->mem_write (lun, + msc->bbb_data, + msc->scsi_blk_addr, + (uint16_t)(len / msc->scsi_blk_size[lun])) < 0) { + scsi_sense_code(udev, lun, HARDWARE_ERROR, WRITE_FAULT); + + return -1; + } + + msc->scsi_blk_addr += len; + msc->scsi_blk_len -= len; + + /* case 12 : Ho = Do */ + msc->bbb_csw.dCSWDataResidue -= len; + + if (0U == msc->scsi_blk_len) { + msc_bbb_csw_send (udev, CSW_CMD_PASSED); + } else { + /* prepare endpoint to receive next packet */ + usbd_ep_recev (udev, + MSC_OUT_EP, + msc->bbb_data, + USB_MIN (msc->scsi_blk_len, MSC_MEDIA_PACKET_SIZE)); + } + + return 0; +} + +/*! + \brief process Format Unit command + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[out] none + \retval status +*/ +static inline int8_t scsi_format_cmd (usb_core_driver *udev, uint8_t lun) +{ + return 0; +} + +/*! + \brief process Read_Toc command + \param[in] udev: pointer to USB device instance + \param[in] lun: logical unit number + \param[in] params: command parameters + \param[out] none + \retval status +*/ +static int8_t scsi_toc_cmd_read (usb_core_driver *udev, uint8_t lun, uint8_t *params) +{ + uint8_t* pPage; + uint16_t len; + + usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; + + pPage = (uint8_t *)&usbd_mem_fops->mem_toc_data[lun * READ_TOC_CMD_LEN]; + len = (uint16_t)pPage[1] + 2U; + + msc->bbb_datalen = len; + + while (len) { + len--; + msc->bbb_data[len] = pPage[len]; + } + + return 0; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/printer/Include/printer_core.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/printer/Include/printer_core.h new file mode 100644 index 0000000000..365c65ec72 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/printer/Include/printer_core.h @@ -0,0 +1,78 @@ +/*! + \file printer_core.h + \brief the header file of USB printer device class core functions + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __PRINTER_CORE_H +#define __PRINTER_CORE_H + +#include "usbd_enum.h" +#include "usb_ch9_std.h" + +/* USB printing device class code */ +#define USB_CLASS_PRINTER 0x07U + +/* printing device subclass code */ +#define USB_SUBCLASS_PRINTER 0x01U + +/* printing device protocol code */ +#define PROTOCOL_UNIDIRECTIONAL_ITF 0x01U +#define PROTOCOL_BI_DIRECTIONAL_ITF 0x02U +#define PROTOCOL_1284_4_ITF 0x03U +#define PROTOCOL_VENDOR 0xFFU + +#define DEVICE_ID_LEN 103U + +#define USB_PRINTER_CONFIG_DESC_LEN 32U + +/* printing device specific-class request */ +#define GET_DEVICE_ID 0x00U +#define GET_PORT_STATUS 0x01U +#define SOFT_RESET 0x02U + +#pragma pack(1) + +/* USB configuration descriptor structure */ +typedef struct +{ + usb_desc_config config; + usb_desc_itf printer_itf; + usb_desc_ep printer_epin; + usb_desc_ep printer_epout; +} usb_printer_desc_config_set; + +#pragma pack() + +extern usb_desc printer_desc; +extern usb_class_core usbd_printer_cb; + +#endif /* __PRINTER_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/printer/Source/printer_core.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/printer/Source/printer_core.c new file mode 100644 index 0000000000..dbeb82c193 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/device/class/printer/Source/printer_core.c @@ -0,0 +1,310 @@ +/*! + \file printer_core.c + \brief USB printer device class core functions + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "printer_core.h" + +#define USBD_VID 0x28E9U +#define USBD_PID 0x028DU + +/* printer port status: paper not empty/selected/no error */ +static uint8_t g_port_status = 0x18U; + +uint8_t g_printer_data_buf[PRINTER_OUT_PACKET]; + +__ALIGN_BEGIN uint8_t PRINTER_DEVICE_ID[DEVICE_ID_LEN] __ALIGN_END = +{ + 0x00, 0x67, + 'M', 'A', 'N', 'U', 'F', 'A', 'C', 'T', 'U', 'R', 'E', 'R', ':', + 'G', 'I', 'G', 'A', ' ', 'D', 'E', 'V', 'I', 'C', 'E', '-', ';', + 'C', 'O', 'M', 'M', 'A', 'N', 'D', ' ', 'S', 'E', 'T', ':', + 'P', 'C', 'L', ',', 'M', 'P', 'L', ';', + 'M', 'O', 'D', 'E', 'L', ':', + 'L', 'a', 's', 'e', 'r', 'B', 'e', 'a', 'm', '?', ';', + 'C', 'O', 'M', 'M', 'E', 'N', 'T', ':', + 'G', 'o', 'o', 'd', ' ', '!', ';', + 'A', 'C', 'T', 'I', 'V', 'E', ' ', 'C', 'O', 'M', 'M', 'A', 'N', 'D', ' ', 'S', 'E', 'T', ':', + 'P', 'C', 'L', ';' +}; + +/* USB standard device descriptor */ +__ALIGN_BEGIN const usb_desc_dev printer_dev_desc __ALIGN_END = +{ + .header = + { + .bLength = USB_DEV_DESC_LEN, + .bDescriptorType = USB_DESCTYPE_DEV, + }, + .bcdUSB = 0x0200U, + .bDeviceClass = 0x00U, + .bDeviceSubClass = 0x00U, + .bDeviceProtocol = 0x00U, + .bMaxPacketSize0 = USB_FS_EP0_MAX_LEN, + .idVendor = USBD_VID, + .idProduct = USBD_PID, + .bcdDevice = 0x0100U, + .iManufacturer = STR_IDX_MFC, + .iProduct = STR_IDX_PRODUCT, + .iSerialNumber = STR_IDX_SERIAL, + .bNumberConfigurations = USBD_CFG_MAX_NUM, +}; + +/* USB device configuration descriptor */ +__ALIGN_BEGIN const usb_printer_desc_config_set printer_config_desc __ALIGN_END = +{ + .config = + { + .header = + { + .bLength = sizeof(usb_desc_config), + .bDescriptorType = USB_DESCTYPE_CONFIG + }, + .wTotalLength = USB_PRINTER_CONFIG_DESC_LEN, + .bNumInterfaces = 0x01U, + .bConfigurationValue = 0x01U, + .iConfiguration = 0x00U, + .bmAttributes = 0xA0U, + .bMaxPower = 0x32U + }, + + .printer_itf = + { + .header = + { + .bLength = sizeof(usb_desc_itf), + .bDescriptorType = USB_DESCTYPE_ITF + }, + .bInterfaceNumber = 0x00U, + .bAlternateSetting = 0x00U, + .bNumEndpoints = 0x02U, + .bInterfaceClass = USB_CLASS_PRINTER, + .bInterfaceSubClass = USB_SUBCLASS_PRINTER, + .bInterfaceProtocol = PROTOCOL_BI_DIRECTIONAL_ITF, + .iInterface = 0x00U + }, + + .printer_epin = + { + .header = + { + .bLength = sizeof(usb_desc_ep), + .bDescriptorType = USB_DESCTYPE_EP + }, + .bEndpointAddress = PRINTER_IN_EP, + .bmAttributes = USB_EP_ATTR_BULK, + .wMaxPacketSize = PRINTER_IN_PACKET, + .bInterval = 0x00U + }, + + .printer_epout = + { + .header = + { + .bLength = sizeof(usb_desc_ep), + .bDescriptorType = USB_DESCTYPE_EP + }, + .bEndpointAddress = PRINTER_OUT_EP, + .bmAttributes = USB_EP_ATTR_BULK, + .wMaxPacketSize = PRINTER_OUT_PACKET, + .bInterval = 0x00U + }, +}; + +/* USB language ID Descriptor */ +static __ALIGN_BEGIN const usb_desc_LANGID usbd_language_id_desc __ALIGN_END = +{ + .header = + { + .bLength = sizeof(usb_desc_LANGID), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .wLANGID = ENG_LANGID +}; + +/* USB manufacture string */ +static __ALIGN_BEGIN const usb_desc_str manufacturer_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(10U), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'i', 'g', 'a', 'D', 'e', 'v', 'i', 'c', 'e'} +}; + +/* USB product string */ +static __ALIGN_BEGIN const usb_desc_str product_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(16U), + .bDescriptorType = USB_DESCTYPE_STR, + }, + .unicode_string = {'G', 'D', '3', '2', '-', 'U', 'S', 'B', '_', 'P', 'r', 'i', 'n', 't', 'e', 'r'} +}; + +/* USBD serial string */ +static __ALIGN_BEGIN usb_desc_str serial_string __ALIGN_END = +{ + .header = + { + .bLength = USB_STRING_LEN(12U), + .bDescriptorType = USB_DESCTYPE_STR, + } +}; + +/* USB string descriptor */ +static void *const usbd_msc_strings[] = +{ + [STR_IDX_LANGID] = (uint8_t *)&usbd_language_id_desc, + [STR_IDX_MFC] = (uint8_t *)&manufacturer_string, + [STR_IDX_PRODUCT] = (uint8_t *)&product_string, + [STR_IDX_SERIAL] = (uint8_t *)&serial_string +}; + +usb_desc printer_desc = { + .dev_desc = (uint8_t *)&printer_dev_desc, + .config_desc = (uint8_t *)&printer_config_desc, + .strings = usbd_msc_strings +}; + +/* local function prototypes ('static') */ +static uint8_t printer_init (usb_dev *udev, uint8_t config_index); +static uint8_t printer_deinit (usb_dev *udev, uint8_t config_index); +static uint8_t printer_req (usb_dev *udev, usb_req *req); +static uint8_t printer_in (usb_dev *udev, uint8_t ep_num); +static uint8_t printer_out (usb_dev *udev, uint8_t ep_num); + +usb_class_core usbd_printer_cb = { + .init = printer_init, + .deinit = printer_deinit, + + .req_proc = printer_req, + + .data_in = printer_in, + .data_out = printer_out +}; + +/*! + \brief initialize the printer device + \param[in] udev: pointer to USB device instance + \param[in] config_index: configuration index + \param[out] none + \retval USB device operation status +*/ +static uint8_t printer_init (usb_dev *udev, uint8_t config_index) +{ + /* initialize the data TX endpoint */ + usbd_ep_setup (udev, &(printer_config_desc.printer_epin)); + + /* initialize the data RX endpoint */ + usbd_ep_setup (udev, &(printer_config_desc.printer_epout)); + + /* prepare to receive data */ + usbd_ep_recev(udev, PRINTER_OUT_EP, g_printer_data_buf, PRINTER_OUT_PACKET); + + return USBD_OK; +} + +/*! + \brief deinitialize the printer device + \param[in] udev: pointer to USB device instance + \param[in] config_index: configuration index + \param[out] none + \retval USB device operation status +*/ +static uint8_t printer_deinit (usb_dev *udev, uint8_t config_index) +{ + /* deinitialize the data TX/RX endpoint */ + usbd_ep_clear (udev, PRINTER_IN_EP); + usbd_ep_clear (udev, PRINTER_OUT_EP); + + return USBD_OK; +} + +/*! + \brief handle the printer class-specific requests + \param[in] udev: pointer to USB device instance + \param[in] req: device class-specific request + \param[out] none + \retval USB device operation status +*/ +static uint8_t printer_req(usb_dev *udev, usb_req *req) +{ + usb_transc *transc = &udev->dev.transc_in[0]; + + switch (req->bRequest) { + case GET_DEVICE_ID: + transc->xfer_buf = (uint8_t *)PRINTER_DEVICE_ID; + transc->remain_len = DEVICE_ID_LEN; + break; + + case GET_PORT_STATUS: + transc->xfer_buf = (uint8_t *)&g_port_status; + transc->remain_len = 1U; + break; + + case SOFT_RESET: + usbd_ep_recev(udev, PRINTER_OUT_EP, g_printer_data_buf, PRINTER_OUT_PACKET); + break; + + default: + return USBD_FAIL; + } + + return USBD_OK; +} + +/*! + \brief handle printer data + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint number + \param[out] none + \retval USB device operation status +*/ +static uint8_t printer_in (usb_dev *udev, uint8_t ep_num) +{ + return USBD_OK; +} + +/*! + \brief handle printer data + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint number + \param[out] none + \retval USB device operation status +*/ +static uint8_t printer_out (usb_dev *udev, uint8_t ep_num) +{ + return USBD_OK; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_core.c b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_core.c new file mode 100644 index 0000000000..377f2b7135 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_core.c @@ -0,0 +1,363 @@ +/*! + \file drv_usb_core.c + \brief USB core driver which can operate in host and device mode + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "drv_usb_core.h" +#include "drv_usb_hw.h" + +/* local function prototypes ('static') */ +static void usb_core_reset (usb_core_regs *usb_regs); + +/*! + \brief configure USB core basic + \param[in] usb_basic: pointer to USB capabilities + \param[in] usb_regs: USB core registers + \param[in] usb_core: USB core + \param[out] none + \retval operation status +*/ +usb_status usb_basic_init (usb_core_basic *usb_basic, + usb_core_regs *usb_regs, + usb_core_enum usb_core) +{ + /* configure USB default transfer mode as FIFO mode */ + usb_basic->transfer_mode = (uint8_t)USB_USE_FIFO; + + /* USB default speed is full-speed */ + usb_basic->core_speed = (uint8_t)USB_SPEED_FULL; + + usb_basic->core_enum = (uint8_t)usb_core; + + switch (usb_core) { + case USB_CORE_ENUM_HS: + usb_basic->base_reg = (uint32_t)USBHS_REG_BASE; + + /* set the host channel numbers */ + usb_basic->num_pipe = USBHS_MAX_CHANNEL_COUNT; + + /* set the device endpoint numbers */ + usb_basic->num_ep = USBHS_MAX_EP_COUNT; + +#ifdef USB_ULPI_PHY_ENABLED + usb_basic->phy_itf = USB_ULPI_PHY; +#else + usb_basic->phy_itf = USB_EMBEDDED_PHY; +#endif /* USB_ULPI_PHY_ENABLED */ + +#ifdef USB_HS_INTERNAL_DMA_ENABLED + usb_basic->transfer_mode = USB_USE_DMA; +#endif /* USB_HS_INTERNAL_DMA_ENABLED */ + break; + + case USB_CORE_ENUM_FS: + usb_basic->base_reg = (uint32_t)USBFS_REG_BASE; + + /* set the host channel numbers */ + usb_basic->num_pipe = USBFS_MAX_CHANNEL_COUNT; + + /* set the device endpoint numbers */ + usb_basic->num_ep = USBFS_MAX_EP_COUNT; + + /* USBFS core use embedded physical layer */ + usb_basic->phy_itf = USB_EMBEDDED_PHY; + break; + + default: + return USB_FAIL; + } + + usb_basic->sof_enable = USB_SOF_OUTPUT; + usb_basic->low_power = USB_LOW_POWER; + + /* assign main registers address */ + *usb_regs = (usb_core_regs) { + .gr = (usb_gr*) (usb_basic->base_reg + USB_REG_OFFSET_CORE), + .hr = (usb_hr*) (usb_basic->base_reg + USB_REG_OFFSET_HOST), + .dr = (usb_dr*) (usb_basic->base_reg + USB_REG_OFFSET_DEV), + + .HPCS = (uint32_t*) (usb_basic->base_reg + USB_REG_OFFSET_PORT), + .PWRCLKCTL = (uint32_t*) (usb_basic->base_reg + USB_REG_OFFSET_PWRCLKCTL) + }; + + /* assign device endpoint registers address */ + for (uint8_t i = 0U; i < usb_basic->num_ep; i++) { + usb_regs->er_in[i] = (usb_erin *) \ + (usb_basic->base_reg + USB_REG_OFFSET_EP_IN + (i * USB_REG_OFFSET_EP)); + + usb_regs->er_out[i] = (usb_erout *)\ + (usb_basic->base_reg + USB_REG_OFFSET_EP_OUT + (i * USB_REG_OFFSET_EP)); + } + + /* assign host pipe registers address */ + for (uint8_t i = 0U; i < usb_basic->num_pipe; i++) { + usb_regs->pr[i] = (usb_pr *) \ + (usb_basic->base_reg + USB_REG_OFFSET_CH_INOUT + (i * USB_REG_OFFSET_CH)); + + usb_regs->DFIFO[i] = (uint32_t *) \ + (usb_basic->base_reg + USB_DATA_FIFO_OFFSET + (i * USB_DATA_FIFO_SIZE)); + } + + return USB_OK; +} + +/*! + \brief initializes the USB controller registers and + prepares the core device mode or host mode operation + \param[in] usb_basic: pointer to USB capabilities + \param[in] usb_regs: pointer to USB core registers + \param[out] none + \retval operation status +*/ +usb_status usb_core_init (usb_core_basic usb_basic, usb_core_regs *usb_regs) +{ + if (USB_ULPI_PHY == usb_basic.phy_itf) { + usb_regs->gr->GCCFG &= ~GCCFG_PWRON; + + if (usb_basic.sof_enable) { + usb_regs->gr->GCCFG |= GCCFG_SOFOEN; + } + + /* initialize the ULPI interface */ + usb_regs->gr->GUSBCS &= ~(GUSBCS_EMBPHY | GUSBCS_ULPIEOI); + +#ifdef USBHS_EXTERNAL_VBUS_ENABLED + /* use external VBUS driver */ + usb_regs->gr->GUSBCS |= GUSBCS_ULPIEVD; +#else + /* use internal VBUS driver */ + usb_regs->gr->GUSBCS &= ~GUSBCS_ULPIEVD; +#endif /* USBHS_EXTERNAL_VBUS_ENABLED */ + + /* soft reset the core */ + usb_core_reset (usb_regs); + } else { + usb_regs->gr->GUSBCS |= GUSBCS_EMBPHY; + + /* soft reset the core */ + usb_core_reset (usb_regs); + + /* active the transceiver and enable VBUS sensing */ + usb_regs->gr->GCCFG |= GCCFG_PWRON | GCCFG_VBUSACEN | GCCFG_VBUSBCEN; + +#ifndef VBUS_SENSING_ENABLED + usb_regs->gr->GCCFG |= GCCFG_VBUSIG; +#endif /* VBUS_SENSING_ENABLED */ + + /* enable SOF output */ + if (usb_basic.sof_enable) { + usb_regs->gr->GCCFG |= GCCFG_SOFOEN; + } + + usb_mdelay(20U); + } + + if ((uint8_t)USB_USE_DMA == usb_basic.transfer_mode) { + usb_regs->gr->GAHBCS &= ~GAHBCS_BURST; + usb_regs->gr->GAHBCS |= DMA_INCR8 | GAHBCS_DMAEN; + } + +#ifdef USE_OTG_MODE + + /* enable USB OTG features */ + usb_regs->gr->GUSBCS |= GUSBCS_HNPCEN | GUSBCS_SRPCEN; + + /* enable the USB wakeup and suspend interrupts */ + usb_regs->gr->GINTF = 0xBFFFFFFFU; + + usb_regs->gr->GINTEN = GINTEN_WKUPIE | GINTEN_SPIE | \ + GINTEN_OTGIE | GINTEN_SESIE | GINTEN_CIDPSCIE; + +#endif /* USE_OTG_MODE */ + + return USB_OK; +} + +/*! + \brief write a packet into the TX FIFO associated with the endpoint + \param[in] usb_regs: pointer to USB core registers + \param[in] src_buf: pointer to source buffer + \param[in] fifo_num: FIFO number which is in (0..3) + \param[in] byte_count: packet byte count + \param[out] none + \retval operation status +*/ +usb_status usb_txfifo_write (usb_core_regs *usb_regs, + uint8_t *src_buf, + uint8_t fifo_num, + uint16_t byte_count) +{ + uint32_t word_count = (byte_count + 3U) / 4U; + + __IO uint32_t *fifo = usb_regs->DFIFO[fifo_num]; + + while (word_count-- > 0U) { + *fifo = *((__packed uint32_t *)src_buf); + + src_buf += 4U; + } + + return USB_OK; +} + +/*! + \brief read a packet from the Rx FIFO associated with the endpoint + \param[in] usb_regs: pointer to USB core registers + \param[in] dest_buf: pointer to destination buffer + \param[in] byte_count: packet byte count + \param[out] none + \retval void type pointer +*/ +void *usb_rxfifo_read (usb_core_regs *usb_regs, uint8_t *dest_buf, uint16_t byte_count) +{ + uint32_t word_count = (byte_count + 3U) / 4U; + + __IO uint32_t *fifo = usb_regs->DFIFO[0]; + + while (word_count-- > 0U) { + *(__packed uint32_t *)dest_buf = *fifo; + + dest_buf += 4U; + } + + return ((void *)dest_buf); +} + +/*! + \brief flush a TX FIFO or all TX FIFOs + \param[in] usb_regs: pointer to USB core registers + \param[in] fifo_num: FIFO number which is in (0..3) + \param[out] none + \retval operation status +*/ +usb_status usb_txfifo_flush (usb_core_regs *usb_regs, uint8_t fifo_num) +{ + usb_regs->gr->GRSTCTL = ((uint32_t)fifo_num << 6U) | GRSTCTL_TXFF; + + /* wait for TX FIFO flush bit is set */ + while (usb_regs->gr->GRSTCTL & GRSTCTL_TXFF) { + /* no operation */ + } + + /* wait for 3 PHY clocks*/ + usb_udelay(3U); + + return USB_OK; +} + +/*! + \brief flush the entire Rx FIFO + \param[in] usb_regs: pointer to USB core registers + \param[out] none + \retval operation status +*/ +usb_status usb_rxfifo_flush (usb_core_regs *usb_regs) +{ + usb_regs->gr->GRSTCTL = GRSTCTL_RXFF; + + /* wait for RX FIFO flush bit is set */ + while (usb_regs->gr->GRSTCTL & GRSTCTL_RXFF) { + /* no operation */ + } + + /* wait for 3 PHY clocks */ + usb_udelay(3U); + + return USB_OK; +} + +/*! + \brief set endpoint or channel TX FIFO size + \param[in] usb_regs: pointer to USB core registers + \param[in] fifo: TX FIFO number + \param[in] size: assigned TX FIFO size + \param[out] none + \retval none +*/ +void usb_set_txfifo(usb_core_regs *usb_regs, uint8_t fifo, uint16_t size) +{ + uint32_t tx_offset; + + tx_offset = usb_regs->gr->GRFLEN; + + if (fifo == 0U) { + usb_regs->gr->DIEP0TFLEN_HNPTFLEN = ((uint32_t)size << 16) | tx_offset; + } else { + tx_offset += (usb_regs->gr->DIEP0TFLEN_HNPTFLEN) >> 16; + + for (uint8_t i = 0U; i < (fifo - 1U); i++) { + tx_offset += (usb_regs->gr->DIEPTFLEN[i] >> 16); + } + + /* multiply Tx_Size by 2 to get higher performance */ + usb_regs->gr->DIEPTFLEN[fifo - 1U] = ((uint32_t)size << 16) | tx_offset; + } +} + +/*! + \brief set USB current mode + \param[in] usb_regs: pointer to USB core registers + \param[out] none + \retval none +*/ +void usb_curmode_set(usb_core_regs *usb_regs, uint8_t mode) +{ + usb_regs->gr->GUSBCS &= ~(GUSBCS_FDM | GUSBCS_FHM); + + if (DEVICE_MODE == mode) { + usb_regs->gr->GUSBCS |= GUSBCS_FDM; + } else if (HOST_MODE == mode) { + usb_regs->gr->GUSBCS |= GUSBCS_FHM; + } else { + /* OTG mode and other mode can not be here! */ + } +} + +/*! + \brief configure USB core to soft reset + \param[in] usb_regs: pointer to USB core registers + \param[out] none + \retval none +*/ +static void usb_core_reset (usb_core_regs *usb_regs) +{ + /* enable core soft reset */ + usb_regs->gr->GRSTCTL |= GRSTCTL_CSRST; + + /* wait for the core to be soft reset */ + while (usb_regs->gr->GRSTCTL & GRSTCTL_CSRST) { + /* no operation */ + } + + /* wait for additional 3 PHY clocks */ + usb_udelay(3U); +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_core.h b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_core.h new file mode 100644 index 0000000000..47aaa1ba5b --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_core.h @@ -0,0 +1,343 @@ +/*! + \file drv_usb_core.h + \brief USB core low level driver header file + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __DRV_USB_CORE_H +#define __DRV_USB_CORE_H + +#include "drv_usb_regs.h" +#include "usb_ch9_std.h" + +#ifdef USE_DEVICE_MODE + #include "gdusbd_conf.h" +#endif /* USE_DEVICE_MODE */ + +#define USB_FS_EP0_MAX_LEN 64U /*!< maximum packet size of endpoint 0 */ +#define HC_MAX_PACKET_COUNT 140U /*!< maximum packet count */ + +#define EP_ID(x) ((uint8_t)((x) & 0x7FU)) /*!< endpoint number */ +#define EP_DIR(x) ((uint8_t)((x) >> 7)) /*!< endpoint direction */ + +enum _usb_mode { + DEVICE_MODE = 0U, /*!< device mode */ + HOST_MODE, /*!< host mode */ + OTG_MODE /*!< OTG mode */ +}; + +enum _usb_eptype { + USB_EPTYPE_CTRL = 0U, /*!< control endpoint type */ + USB_EPTYPE_ISOC = 1U, /*!< isochronous endpoint type */ + USB_EPTYPE_BULK = 2U, /*!< bulk endpoint type */ + USB_EPTYPE_INTR = 3U, /*!< interrupt endpoint type */ + USB_EPTYPE_MASK = 3U /*!< endpoint type mask */ +}; + +typedef enum +{ + USB_OTG_OK = 0U, /*!< USB OTG status OK*/ + USB_OTG_FAIL /*!< USB OTG status fail*/ +} usb_otg_status; + +typedef enum +{ + USB_OK = 0U, /*!< USB status OK*/ + USB_FAIL /*!< USB status fail*/ +} usb_status; + +typedef enum +{ + USB_USE_FIFO, /*!< USB use FIFO transfer mode */ + USB_USE_DMA /*!< USB use DMA transfer mode */ +} usb_transfer_mode; + +typedef struct +{ + uint8_t core_enum; /*!< USB core type */ + uint8_t core_speed; /*!< USB core speed */ + uint8_t num_pipe; /*!< USB host channel numbers */ + uint8_t num_ep; /*!< USB device endpoint numbers */ + uint8_t transfer_mode; /*!< USB transfer mode */ + uint8_t phy_itf; /*!< USB core PHY interface */ + uint8_t sof_enable; /*!< USB SOF output */ + uint8_t low_power; /*!< USB low power */ + uint8_t lpm_enable; /*!< USB link power mode(LPM) */ + uint8_t vbus_sensing_enable; /*!< USB VBUS sensing feature */ + uint8_t use_dedicated_ep1; /*!< USB dedicated endpoint1 interrupt */ + uint8_t use_external_vbus; /*!< enable or disable the use of the external VBUS */ + uint32_t base_reg; /*!< base register address */ +} usb_core_basic; + +#ifdef USE_DEVICE_MODE + +/* USB descriptor */ +typedef struct _usb_desc { + uint8_t *dev_desc; /*!< device descriptor */ + uint8_t *config_desc; /*!< configure descriptor */ + uint8_t *bos_desc; /*!< BOS descriptor */ + + void* const *strings; /*!< string descriptor */ +} usb_desc; + +/* USB power management */ +typedef struct _usb_pm { + uint8_t power_mode; /*!< power mode */ + uint8_t power_low; /*!< power low */ + uint8_t dev_remote_wakeup; /*!< remote wakeup */ + uint8_t remote_wakeup_on; /*!< remote wakeup on */ +} usb_pm; + +/* USB control information */ +typedef struct _usb_control { + usb_req req; /*!< USB standard device request */ + + uint8_t ctl_state; /*!< USB control transfer state */ + uint8_t ctl_zlp; /*!< zero length package */ +} usb_control; + +typedef struct +{ + struct { + uint8_t num: 4; /*!< the endpoint number.it can be from 0 to 6 */ + uint8_t pad: 3; /*!< padding between number and direction */ + uint8_t dir: 1; /*!< the endpoint direction */ + } ep_addr; + + uint8_t ep_type; /*!< USB endpoint type */ + uint8_t ep_stall; /*!< USB endpoint stall status */ + + uint8_t frame_num; /*!< number of frame */ + uint16_t max_len; /*!< Maximum packet length */ + + /* transaction level variables */ + uint8_t *xfer_buf; /*!< transmit buffer */ + uint32_t xfer_len; /*!< transmit buffer length */ + uint32_t xfer_count; /*!< transmit buffer count */ + + uint32_t remain_len; /*!< remain packet length */ + + uint32_t dma_addr; /*!< DMA address */ +} usb_transc; + +typedef struct _usb_core_driver usb_dev; + +typedef struct _usb_class_core +{ + uint8_t command; /*!< device class request command */ + uint8_t alter_set; /*!< alternative set */ + + uint8_t (*init) (usb_dev *udev, uint8_t config_index); /*!< initialize handler */ + uint8_t (*deinit) (usb_dev *udev, uint8_t config_index); /*!< de-initialize handler */ + + uint8_t (*req_proc) (usb_dev *udev, usb_req *req); /*!< device request handler */ + + uint8_t (*set_intf) (usb_dev *udev, usb_req *req); /*!< device set interface callback */ + + uint8_t (*data_in) (usb_dev *udev, uint8_t ep_num); /*!< device data in handler */ + uint8_t (*data_out) (usb_dev *udev, uint8_t ep_num); /*!< device data out handler */ + + uint8_t (*SOF) (usb_dev *udev); /*!< Start of frame handler */ + + uint8_t (*incomplete_isoc_in) (usb_dev *udev); /*!< Incomplete synchronization IN transfer handler */ + uint8_t (*incomplete_isoc_out) (usb_dev *udev); /*!< Incomplete synchronization OUT transfer handler */ +} usb_class_core; + +typedef struct _usb_perp_dev +{ + uint8_t config; /*!< configuration */ + uint8_t dev_addr; /*!< device address */ + + __IO uint8_t cur_status; /*!< current status */ + __IO uint8_t backup_status; /*!< backup status */ + + usb_transc transc_in[USBFS_MAX_TX_FIFOS]; /*!< endpoint IN transaction */ + usb_transc transc_out[USBFS_MAX_TX_FIFOS]; /*!< endpoint OUT transaction */ + + usb_pm pm; /*!< power management */ + usb_control control; /*!< USB control information */ + usb_desc *desc; /*!< USB descriptors pointer */ + usb_class_core *class_core; /*!< class driver */ + void *class_data[USBD_ITF_MAX_NUM]; /*!< class data pointer */ + void *user_data; /*!< user data pointer */ + void *pdata; /*!< reserved data pointer */ +} usb_perp_dev; + +#endif /* USE_DEVICE_MODE */ + +#ifdef USE_HOST_MODE + +typedef enum _usb_pipe_status +{ + PIPE_IDLE = 0U, + PIPE_XF, + PIPE_HALTED, + PIPE_NAK, + PIPE_NYET, + PIPE_STALL, + PIPE_TRACERR, + PIPE_BBERR, + PIPE_REQOVR, + PIPE_DTGERR, +} usb_pipe_staus; + +typedef enum _usb_urb_state +{ + GD_URB_IDLE = 0U, + GD_URB_DONE, + GD_URB_NOTREADY, + GD_URB_ERROR, + GD_URB_STALL, + GD_URB_PING +} usb_urb_state; + +typedef struct _usb_pipe +{ + uint8_t in_used; + uint8_t dev_addr; + uint32_t dev_speed; + + struct { + uint8_t num; + uint8_t dir; + uint8_t type; + uint16_t mps; + } ep; + + uint8_t ping; + uint32_t DPID; + + uint8_t *xfer_buf; + uint32_t xfer_len; + uint32_t xfer_count; + + uint8_t data_toggle_in; + uint8_t data_toggle_out; + + __IO uint32_t err_count; + __IO usb_pipe_staus pp_status; + __IO usb_urb_state urb_state; +} usb_pipe; + +typedef struct _usb_host_drv +{ + __IO uint32_t connect_status; + __IO uint32_t port_enabled; + __IO uint32_t backup_xfercount[USBFS_MAX_TX_FIFOS]; + + usb_pipe pipe[USBFS_MAX_TX_FIFOS]; + void *data; +} usb_host_drv; + +#endif /* USE_HOST_MODE */ + +typedef struct _usb_core_driver +{ + usb_core_basic bp; /*!< USB basic parameters */ + usb_core_regs regs; /*!< USB registers */ + +#ifdef USE_DEVICE_MODE + usb_perp_dev dev; /*!< USB peripheral device */ +#endif /* USE_DEVICE_MODE */ + +#ifdef USE_HOST_MODE + usb_host_drv host; +#endif /* USE_HOST_MODE */ +} usb_core_driver; + +/* static inline function definitions */ + +/*! + \brief get the global interrupts + \param[in] usb_regs: pointer to USB core registers + \param[out] none + \retval interrupt status +*/ +__STATIC_INLINE uint32_t usb_coreintr_get(usb_core_regs *usb_regs) +{ + return usb_regs->gr->GINTEN & usb_regs->gr->GINTF; +} + +/*! + \brief set USB RX FIFO size + \param[in] usb_regs: pointer to USB core registers + \param[in] size: assigned FIFO size + \param[out] none + \retval none +*/ +__STATIC_INLINE void usb_set_rxfifo(usb_core_regs *usb_regs, uint16_t size) +{ + usb_regs->gr->GRFLEN = size; +} + +/*! + \brief enable the global interrupts + \param[in] usb_regs: pointer to USB core registers + \param[out] none + \retval none +*/ +__STATIC_INLINE void usb_globalint_enable(usb_core_regs *usb_regs) +{ + /* enable USB global interrupt */ + usb_regs->gr->GAHBCS |= GAHBCS_GINTEN; +} + +/*! + \brief disable the global interrupts + \param[in] usb_regs: pointer to USB core registers + \param[out] none + \retval none +*/ +__STATIC_INLINE void usb_globalint_disable(usb_core_regs *usb_regs) +{ + /* disable USB global interrupt */ + usb_regs->gr->GAHBCS &= ~GAHBCS_GINTEN; +} + +/* function declarations */ +/* configure core capabilities */ +usb_status usb_basic_init (usb_core_basic *usb_basic, usb_core_regs *usb_regs, usb_core_enum usb_core); +/* initializes the USB controller registers and prepares the core device mode or host mode operation */ +usb_status usb_core_init (usb_core_basic usb_basic, usb_core_regs *usb_regs); +/* write a packet into the TX FIFO associated with the endpoint */ +usb_status usb_txfifo_write (usb_core_regs *usb_regs, uint8_t *src_buf, uint8_t fifo_num, uint16_t byte_count); +/* read a packet from the RX FIFO associated with the endpoint */ +void *usb_rxfifo_read (usb_core_regs *usb_regs, uint8_t *dest_buf, uint16_t byte_count); +/* flush a TX FIFO or all TX FIFOs */ +usb_status usb_txfifo_flush (usb_core_regs *usb_regs, uint8_t fifo_num); +/* flush the entire RX FIFO */ +usb_status usb_rxfifo_flush (usb_core_regs *usb_regs); +/* set endpoint or channel TX FIFO size */ +void usb_set_txfifo(usb_core_regs *usb_regs, uint8_t fifo, uint16_t size); +/* set USB current mode */ +void usb_curmode_set(usb_core_regs *usb_regs, uint8_t mode); + +#endif /* __DRV_USB_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_dev.c b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_dev.c new file mode 100644 index 0000000000..43fd5e3eed --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_dev.c @@ -0,0 +1,664 @@ +/*! + \file drv_usb_dev.c + \brief USB device mode low level driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "drv_usb_hw.h" +#include "drv_usb_core.h" +#include "drv_usb_dev.h" + +/* endpoint 0 max packet length */ +static const uint8_t EP0_MAXLEN[4] = { + [DSTAT_EM_HS_PHY_30MHZ_60MHZ] = EP0MPL_64, + [DSTAT_EM_FS_PHY_30MHZ_60MHZ] = EP0MPL_64, + [DSTAT_EM_FS_PHY_48MHZ] = EP0MPL_64, + [DSTAT_EM_LS_PHY_6MHZ] = EP0MPL_8 +}; + +#ifdef USB_FS_CORE + +/* USB endpoint Tx FIFO size */ +static uint16_t USBFS_TX_FIFO_SIZE[USBFS_MAX_EP_COUNT] = +{ + (uint16_t)TX0_FIFO_FS_SIZE, + (uint16_t)TX1_FIFO_FS_SIZE, + (uint16_t)TX2_FIFO_FS_SIZE, + (uint16_t)TX3_FIFO_FS_SIZE +}; + +#endif /* USBFS_CORE */ + +#ifdef USB_HS_CORE + +uint16_t USBHS_TX_FIFO_SIZE[USBHS_MAX_EP_COUNT] = +{ + (uint16_t)TX0_FIFO_HS_SIZE, + (uint16_t)TX1_FIFO_HS_SIZE, + (uint16_t)TX2_FIFO_HS_SIZE, + (uint16_t)TX3_FIFO_HS_SIZE, + (uint16_t)TX4_FIFO_HS_SIZE, + (uint16_t)TX5_FIFO_HS_SIZE +}; + +#endif /* USBHS_CORE */ + +/*! + \brief initialize USB core registers for device mode + \param[in] udev: pointer to USB device + \param[out] none + \retval operation status +*/ +usb_status usb_devcore_init (usb_core_driver *udev) +{ + uint8_t i; + + /* restart the PHY clock (maybe don't need to...) */ + *udev->regs.PWRCLKCTL = 0U; + + /* configure periodic frame interval to default value */ + udev->regs.dr->DCFG &= ~DCFG_EOPFT; + udev->regs.dr->DCFG |= FRAME_INTERVAL_80; + + udev->regs.dr->DCFG &= ~DCFG_DS; + +#ifdef USB_FS_CORE + if (udev->bp.core_enum == (uint8_t)USB_CORE_ENUM_FS) { + /* set full-speed PHY */ + udev->regs.dr->DCFG |= USB_SPEED_INP_FULL; + + /* set Rx FIFO size */ + usb_set_rxfifo(&udev->regs, RX_FIFO_FS_SIZE); + + /* set endpoint 0 to 3's TX FIFO length and RAM address */ + for (i = 0U; i < USBFS_MAX_EP_COUNT; i++) { + usb_set_txfifo(&udev->regs, i, USBFS_TX_FIFO_SIZE[i]); + } + } +#endif /* USB_FS_CORE */ + +#ifdef USB_HS_CORE + if (udev->bp.core_enum == USB_CORE_ENUM_HS) { + if (udev->bp.phy_itf == USB_ULPI_PHY) { + udev->regs.dr->DCFG |= USB_SPEED_EXP_HIGH; + } else {/* set High speed PHY in Full speed mode */ + udev->regs.dr->DCFG |= USB_SPEED_EXP_FULL; + } + + /* Set Rx FIFO size */ + usb_set_rxfifo(&udev->regs, RX_FIFO_HS_SIZE); + + /* Set endpoint 0 to 6's TX FIFO length and RAM address */ + for (i = 0; i < USBHS_MAX_EP_COUNT; i++) { + usb_set_txfifo(&udev->regs, i, USBHS_TX_FIFO_SIZE[i]); + } + } +#endif /* USB_FS_CORE */ + + /* make sure all FIFOs are flushed */ + + /* flush all TX FIFOs */ + (void)usb_txfifo_flush (&udev->regs, 0x10U); + + /* flush entire RX FIFO */ + (void)usb_rxfifo_flush (&udev->regs); + + /* clear all pending device interrupts */ + udev->regs.dr->DIEPINTEN = 0U; + udev->regs.dr->DOEPINTEN = 0U; + udev->regs.dr->DAEPINT = 0xFFFFFFFFU; + udev->regs.dr->DAEPINTEN = 0U; + + /* configure all IN/OUT endpoints */ + for (i = 0U; i < udev->bp.num_ep; i++) { + if (udev->regs.er_in[i]->DIEPCTL & DEPCTL_EPEN) { + udev->regs.er_in[i]->DIEPCTL |= DEPCTL_EPD | DEPCTL_SNAK; + } else { + udev->regs.er_in[i]->DIEPCTL = 0U; + } + + /* set IN endpoint transfer length to 0 */ + udev->regs.er_in[i]->DIEPLEN = 0U; + + /* clear all pending IN endpoint interrupts */ + udev->regs.er_in[i]->DIEPINTF = 0xFFU; + + if (udev->regs.er_out[i]->DOEPCTL & DEPCTL_EPEN) { + udev->regs.er_out[i]->DOEPCTL |= DEPCTL_EPD | DEPCTL_SNAK; + } else { + udev->regs.er_out[i]->DOEPCTL = 0U; + } + + /* set OUT endpoint transfer length to 0 */ + udev->regs.er_out[i]->DOEPLEN = 0U; + + /* clear all pending OUT endpoint interrupts */ + udev->regs.er_out[i]->DOEPINTF = 0xFFU; + } + + udev->regs.dr->DIEPINTEN |= DIEPINTEN_EPTXFUDEN; + + (void)usb_devint_enable (udev); + + return USB_OK; +} + +/*! + \brief enable the USB device mode interrupts + \param[in] udev: pointer to USB device + \param[out] none + \retval operation status +*/ +usb_status usb_devint_enable (usb_core_driver *udev) +{ + /* clear any pending USB OTG interrupts */ + udev->regs.gr->GOTGINTF = 0xFFFFFFFFU; + + /* clear any pending interrupts */ + udev->regs.gr->GINTF = 0xBFFFFFFFU; + + /* enable the USB wakeup and suspend interrupts */ + udev->regs.gr->GINTEN = GINTEN_WKUPIE | GINTEN_SPIE; + + /* enable device_mode-related interrupts */ + if ((uint8_t)USB_USE_FIFO == udev->bp.transfer_mode) { + udev->regs.gr->GINTEN |= GINTEN_RXFNEIE; + } + + udev->regs.gr->GINTEN |= GINTEN_RSTIE | GINTEN_ENUMFIE | GINTEN_IEPIE |\ + GINTEN_OEPIE | GINTEN_SOFIE | GINTEN_ISOONCIE | GINTEN_ISOINCIE; + +#ifdef VBUS_SENSING_ENABLED + udev->regs.gr->GINTEN |= GINTEN_SESIE | GINTEN_OTGIE; +#endif /* VBUS_SENSING_ENABLED */ + + return USB_OK; +} + +/*! + \brief active the USB endpoint0 transaction + \param[in] udev: pointer to USB device + \param[in] transc: the USB endpoint0 transaction + \param[out] none + \retval operation status +*/ +usb_status usb_transc0_active (usb_core_driver *udev, usb_transc *transc) +{ + __IO uint32_t *reg_addr = NULL; + + /* get the endpoint number */ + uint8_t ep_num = transc->ep_addr.num; + + if (ep_num) { + /* not endpoint 0 */ + return USB_FAIL; + } + + if (transc->ep_addr.dir) { + reg_addr = &udev->regs.er_in[0]->DIEPCTL; + } else { + reg_addr = &udev->regs.er_out[0]->DOEPCTL; + } + + /* endpoint 0 is activated after USB clock is enabled */ + + *reg_addr &= ~(DEPCTL_MPL | DEPCTL_EPTYPE | DIEPCTL_TXFNUM); + + /* set endpoint 0 maximum packet length */ + *reg_addr |= EP0_MAXLEN[udev->regs.dr->DSTAT & DSTAT_ES]; + + /* activate endpoint */ + *reg_addr |= ((uint32_t)transc->ep_type << 18U) | ((uint32_t)ep_num << 22U) | DEPCTL_SD0PID | DEPCTL_EPACT; + + return USB_OK; +} + +/*! + \brief active the USB transaction + \param[in] udev: pointer to USB device + \param[in] transc: the USB transaction + \param[out] none + \retval status +*/ +usb_status usb_transc_active (usb_core_driver *udev, usb_transc *transc) +{ + __IO uint32_t *reg_addr = NULL; + __IO uint32_t epinten = 0U; + + /* get the endpoint number */ + uint8_t ep_num = transc->ep_addr.num; + + /* enable endpoint interrupt number */ + if (transc->ep_addr.dir) { + reg_addr = &udev->regs.er_in[ep_num]->DIEPCTL; + + epinten = 1U << ep_num; + } else { + reg_addr = &udev->regs.er_out[ep_num]->DOEPCTL; + + epinten = 1U << (16U + ep_num); + } + + /* if the endpoint is not active, need change the endpoint control register */ + if (!(*reg_addr & DEPCTL_EPACT)) { + *reg_addr &= ~(DEPCTL_MPL | DEPCTL_EPTYPE | DIEPCTL_TXFNUM); + + /* set endpoint maximum packet length */ + if (0U == ep_num) { + *reg_addr |= EP0_MAXLEN[udev->regs.dr->DSTAT & DSTAT_ES]; + } else { + *reg_addr |= transc->max_len; + } + + /* activate endpoint */ + *reg_addr |= ((uint32_t)transc->ep_type << 18U) | ((uint32_t)ep_num << 22U) | DEPCTL_SD0PID | DEPCTL_EPACT; + } + +#ifdef USB_HS_DEDICATED_EP1_ENABLED + if ((ep_num == 1U) && (udev->bp.core_enum == USB_CORE_ENUM_HS)) { + udev->regs.dr->DEP1INTEN |= epinten; + } + else +#endif /* USB_HS_DEDICATED_EP1_ENABLED */ + { + /* enable the interrupts for this endpoint */ + udev->regs.dr->DAEPINTEN |= epinten; + } + + return USB_OK; +} + +/*! + \brief deactivate the USB transaction + \param[in] udev: pointer to USB device + \param[in] transc: the USB transaction + \param[out] none + \retval status +*/ +usb_status usb_transc_deactivate(usb_core_driver *udev, usb_transc *transc) +{ + uint32_t epinten = 0U; + + uint8_t ep_num = transc->ep_addr.num; + + /* disable endpoint interrupt number */ + if (transc->ep_addr.dir) { + epinten = 1U << ep_num; + + udev->regs.er_in[ep_num]->DIEPCTL &= ~DEPCTL_EPACT; + } else { + epinten = 1U << (ep_num + 16U); + + udev->regs.er_out[ep_num]->DOEPCTL &= ~DEPCTL_EPACT; + } + +#ifdef USB_HS_DEDICATED_EP1_ENABLED + if ((ep_num == 1U) && (udev->bp.core_enum == USB_CORE_ENUM_HS)) { + udev->regs.dr->DEP1INTEN &= ~epinten; + } + else +#endif /* USB_HS_DEDICATED_EP1_ENABLED */ + { + /* disable the interrupts for this endpoint */ + udev->regs.dr->DAEPINTEN &= ~epinten; + } + + return USB_OK; +} + +/*! + \brief configure USB transaction to start IN transfer + \param[in] udev: pointer to USB device + \param[in] transc: the USB IN transaction + \param[out] none + \retval operation status +*/ +usb_status usb_transc_inxfer (usb_core_driver *udev, usb_transc *transc) +{ + usb_status status = USB_OK; + + uint8_t ep_num = transc->ep_addr.num; + + __IO uint32_t epctl = udev->regs.er_in[ep_num]->DIEPCTL; + __IO uint32_t eplen = udev->regs.er_in[ep_num]->DIEPLEN; + + eplen &= ~(DEPLEN_TLEN | DEPLEN_PCNT); + + /* zero length packet or endpoint 0 */ + if (0U == transc->xfer_len) { + /* set transfer packet count to 1 */ + eplen |= 1U << 19U; + } else { + /* set transfer packet count */ + if (0U == ep_num) { + transc->xfer_len = USB_MIN(transc->xfer_len, transc->max_len); + + eplen |= 1U << 19U; + } else { + eplen |= (((transc->xfer_len - 1U) + transc->max_len) / transc->max_len) << 19U; + } + + /* set endpoint transfer length */ + eplen |= transc->xfer_len; + + if (transc->ep_type == (uint8_t)USB_EPTYPE_ISOC) { + eplen |= DIEPLEN_MCNT & (1U << 29U); + } + } + + udev->regs.er_in[ep_num]->DIEPLEN = eplen; + + if (transc->ep_type == (uint8_t)USB_EPTYPE_ISOC) { + if (((udev->regs.dr->DSTAT & DSTAT_FNRSOF) >> 8U) & 0x01U) { + epctl |= DEPCTL_SEVNFRM; + } else { + epctl |= DEPCTL_SODDFRM; + } + } + + if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { + udev->regs.er_in[ep_num]->DIEPDMAADDR = transc->dma_addr; + } + + /* enable the endpoint and clear the NAK */ + epctl |= DEPCTL_CNAK | DEPCTL_EPEN; + + udev->regs.er_in[ep_num]->DIEPCTL = epctl; + + if ((uint8_t)USB_USE_FIFO == udev->bp.transfer_mode) { + udev->regs.er_in[ep_num]->DIEPCTL = epctl; + + if (transc->ep_type != (uint8_t)USB_EPTYPE_ISOC) { + /* enable the TX FIFO empty interrupt for this endpoint */ + if (transc->xfer_len > 0U) { + udev->regs.dr->DIEPFEINTEN |= 1U << ep_num; + } + } else { + (void)usb_txfifo_write (&udev->regs, transc->xfer_buf, ep_num, (uint16_t)transc->xfer_len); + } + } + + return status; +} + +/*! + \brief configure USB transaction to start OUT transfer + \param[in] udev: pointer to USB device + \param[in] transc: the USB OUT transaction + \param[out] none + \retval status +*/ +usb_status usb_transc_outxfer (usb_core_driver *udev, usb_transc *transc) +{ + usb_status status = USB_OK; + + uint8_t ep_num = transc->ep_addr.num; + + uint32_t epctl = udev->regs.er_out[ep_num]->DOEPCTL; + uint32_t eplen = udev->regs.er_out[ep_num]->DOEPLEN; + + eplen &= ~(DEPLEN_TLEN | DEPLEN_PCNT); + + /* zero length packet or endpoint 0 */ + if ((0U == transc->xfer_len) || (0U == ep_num)) { + /* set the transfer length to max packet size */ + eplen |= transc->max_len; + + /* set the transfer packet count to 1 */ + eplen |= 1U << 19U; + } else { + /* configure the transfer size and packet count as follows: + * pktcnt = N + * xfersize = N * maxpacket + */ + uint32_t packet_count = (transc->xfer_len + transc->max_len - 1U) / transc->max_len; + + eplen |= packet_count << 19U; + eplen |= packet_count * transc->max_len; + +#ifdef INT_HIGH_BW + if (transc->ep_type == (uint8_t)USB_EPTYPE_INTR) { + eplen |= DIEPLEN_MCNT & (3U << 29U); + } +#endif /* INT_HIGH_BW */ + } + + udev->regs.er_out[ep_num]->DOEPLEN = eplen; + + if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { + udev->regs.er_out[ep_num]->DOEPDMAADDR = transc->dma_addr; + } + + if (transc->ep_type == (uint8_t)USB_EPTYPE_ISOC) { + if (transc->frame_num) { + epctl |= DEPCTL_SD1PID; + } else { + epctl |= DEPCTL_SD0PID; + } + } + + /* enable the endpoint and clear the NAK */ + epctl |= DEPCTL_EPEN | DEPCTL_CNAK; + + udev->regs.er_out[ep_num]->DOEPCTL = epctl; + + return status; +} + +/*! + \brief set the USB transaction STALL status + \param[in] udev: pointer to USB device + \param[in] transc: the USB transaction + \param[out] none + \retval status +*/ +usb_status usb_transc_stall (usb_core_driver *udev, usb_transc *transc) +{ + __IO uint32_t *reg_addr = NULL; + + uint8_t ep_num = transc->ep_addr.num; + + if (transc->ep_addr.dir) { + reg_addr = &(udev->regs.er_in[ep_num]->DIEPCTL); + + /* set the endpoint disable bit */ + if (*reg_addr & DEPCTL_EPEN) { + *reg_addr |= DEPCTL_EPD; + } + } else { + /* set the endpoint stall bit */ + reg_addr = &(udev->regs.er_out[ep_num]->DOEPCTL); + } + + /* set the endpoint stall bit */ + *reg_addr |= DEPCTL_STALL; + + return USB_OK; +} + +/*! + \brief clear the USB transaction STALL status + \param[in] udev: pointer to USB device + \param[in] transc: the USB transaction + \param[out] none + \retval operation status +*/ +usb_status usb_transc_clrstall(usb_core_driver *udev, usb_transc *transc) +{ + __IO uint32_t *reg_addr = NULL; + + uint8_t ep_num = transc->ep_addr.num; + + if (transc->ep_addr.dir) { + reg_addr = &(udev->regs.er_in[ep_num]->DIEPCTL); + } else { + reg_addr = &(udev->regs.er_out[ep_num]->DOEPCTL); + } + + /* clear the endpoint stall bits */ + *reg_addr &= ~DEPCTL_STALL; + + /* reset data PID of the periodic endpoints */ + if ((transc->ep_type == (uint8_t)USB_EPTYPE_INTR) || (transc->ep_type == (uint8_t)USB_EPTYPE_BULK)) { + *reg_addr |= DEPCTL_SD0PID; + } + + return USB_OK; +} + +/*! + \brief read device IN endpoint interrupt flag register + \param[in] udev: pointer to USB device + \param[in] ep_num: endpoint number + \param[out] none + \retval interrupt value +*/ +uint32_t usb_iepintr_read (usb_core_driver *udev, uint8_t ep_num) +{ + uint32_t value = 0U, fifoemptymask, commonintmask; + + commonintmask = udev->regs.dr->DIEPINTEN; + fifoemptymask = udev->regs.dr->DIEPFEINTEN; + + /* check FIFO empty interrupt enable bit */ + commonintmask |= ((fifoemptymask >> ep_num) & 0x1U) << 7; + + value = udev->regs.er_in[ep_num]->DIEPINTF & commonintmask; + + return value; +} + +/*! + \brief configures OUT endpoint 0 to receive SETUP packets + \param[in] udev: pointer to USB device + \param[out] none + \retval none +*/ +void usb_ctlep_startout (usb_core_driver *udev) +{ + /* set OUT endpoint 0 receive length to 24 bytes, 1 packet and 3 setup packets */ + udev->regs.er_out[0]->DOEPLEN = DOEP0_TLEN(8U * 3U) | DOEP0_PCNT(1U) | DOEP0_STPCNT(3U); + + if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { + udev->regs.er_out[0]->DOEPDMAADDR = (uint32_t)&udev->dev.control.req; + + /* endpoint enable */ + udev->regs.er_out[0]->DOEPCTL |= DEPCTL_EPACT | DEPCTL_EPEN; + } +} + +/*! + \brief active remote wakeup signaling + \param[in] udev: pointer to USB device + \param[out] none + \retval none +*/ +void usb_rwkup_active (usb_core_driver *udev) +{ + if (udev->dev.pm.dev_remote_wakeup) { + if (udev->regs.dr->DSTAT & DSTAT_SPST) { + if (udev->bp.low_power) { + /* ungate USB core clock */ + *udev->regs.PWRCLKCTL &= ~(PWRCLKCTL_SHCLK | PWRCLKCTL_SUCLK); + } + + /* active remote wakeup signaling */ + udev->regs.dr->DCTL |= DCTL_RWKUP; + + usb_mdelay(5U); + + udev->regs.dr->DCTL &= ~DCTL_RWKUP; + } + } +} + +/*! + \brief active USB core clock + \param[in] udev: pointer to USB device + \param[out] none + \retval none +*/ +void usb_clock_active (usb_core_driver *udev) +{ + if (udev->bp.low_power) { + if (udev->regs.dr->DSTAT & DSTAT_SPST) { + /* ungate USB Core clock */ + *udev->regs.PWRCLKCTL &= ~(PWRCLKCTL_SHCLK | PWRCLKCTL_SUCLK); + } + } +} + +/*! + \brief USB device suspend + \param[in] udev: pointer to USB device + \param[out] none + \retval none +*/ +void usb_dev_suspend (usb_core_driver *udev) +{ + __IO uint32_t devstat = udev->regs.dr->DSTAT; + + if ((udev->bp.low_power) && (devstat & DSTAT_SPST)) { + /* switch-off the USB clocks */ + *udev->regs.PWRCLKCTL |= PWRCLKCTL_SHCLK; + + /* enter DEEP_SLEEP mode with LDO in low power mode */ + pmu_to_deepsleepmode(PMU_LDO_LOWPOWER, WFI_CMD); + } +} + +/*! + \brief stop the device and clean up FIFOs + \param[in] udev: pointer to USB device + \param[out] none + \retval none +*/ +void usb_dev_stop (usb_core_driver *udev) +{ + uint32_t i; + + udev->dev.cur_status = 1U; + + /* clear all interrupt flag and enable bits */ + for (i = 0U; i < udev->bp.num_ep; i++) { + udev->regs.er_in[i]->DIEPINTF = 0xFFU; + udev->regs.er_out[i]->DOEPINTF = 0xFFU; + } + + udev->regs.dr->DIEPINTEN = 0U; + udev->regs.dr->DOEPINTEN = 0U; + udev->regs.dr->DAEPINTEN = 0U; + udev->regs.dr->DAEPINT = 0xFFFFFFFFU; + + /* flush the FIFO */ + (void)usb_rxfifo_flush (&udev->regs); + (void)usb_txfifo_flush (&udev->regs, 0x10U); +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_dev.h b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_dev.h new file mode 100644 index 0000000000..2a47c9ba13 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_dev.h @@ -0,0 +1,197 @@ +/*! + \file drv_usb_dev.h + \brief USB device low level driver header file + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __DRV_USB_DEV_H +#define __DRV_USB_DEV_H + +#include "gdusbd_conf.h" +#include "drv_usb_core.h" + +#define EP_IN(x) ((uint8_t)(0x80U | (x))) /*!< device IN endpoint */ +#define EP_OUT(x) ((uint8_t)(x)) /*!< device OUT endpoint */ + +enum usb_ctl_status { + USB_CTL_IDLE = 0U, /*!< USB control transfer idle state */ + USB_CTL_DATA_IN, /*!< USB control transfer data in state */ + USB_CTL_LAST_DATA_IN, /*!< USB control transfer last data in state */ + USB_CTL_DATA_OUT, /*!< USB control transfer data out state */ + USB_CTL_LAST_DATA_OUT, /*!< USB control transfer last data out state */ + USB_CTL_STATUS_IN, /*!< USB control transfer status in state*/ + USB_CTL_STATUS_OUT /*!< USB control transfer status out state */ +}; + +/* static inline function definitions */ + +/*! + \brief configure the USB device to be disconnected + \param[in] udev: pointer to USB device + \param[out] none + \retval operation status +*/ +__STATIC_INLINE void usb_dev_disconnect (usb_core_driver *udev) +{ + udev->regs.dr->DCTL |= DCTL_SD; +} + +/*! + \brief configure the USB device to be connected + \param[in] udev: pointer to USB device + \param[out] none + \retval operation status +*/ +__STATIC_INLINE void usb_dev_connect (usb_core_driver *udev) +{ + udev->regs.dr->DCTL &= ~DCTL_SD; +} + +/*! + \brief set the USB device address + \param[in] udev: pointer to USB device + \param[in] dev_addr: device address for setting + \param[out] none + \retval operation status +*/ +__STATIC_INLINE void usb_devaddr_set (usb_core_driver *udev, uint8_t dev_addr) +{ + udev->regs.dr->DCFG &= ~DCFG_DAR; + udev->regs.dr->DCFG |= (uint32_t)dev_addr << 4U; +} + +/*! + \brief read device all OUT endpoint interrupt register + \param[in] udev: pointer to USB device + \param[out] none + \retval interrupt status +*/ +__STATIC_INLINE uint32_t usb_oepintnum_read (usb_core_driver *udev) +{ + uint32_t value = udev->regs.dr->DAEPINT; + + value &= udev->regs.dr->DAEPINTEN; + + return (value & DAEPINT_OEPITB) >> 16U; +} + +/*! + \brief read device OUT endpoint interrupt flag register + \param[in] udev: pointer to USB device + \param[in] ep_num: endpoint number + \param[out] none + \retval interrupt status +*/ +__STATIC_INLINE uint32_t usb_oepintr_read (usb_core_driver *udev, uint8_t ep_num) +{ + uint32_t value = udev->regs.er_out[ep_num]->DOEPINTF; + + value &= udev->regs.dr->DOEPINTEN; + + return value; +} + +/*! + \brief read device all IN endpoint interrupt register + \param[in] udev: pointer to USB device + \param[out] none + \retval interrupt status +*/ +__STATIC_INLINE uint32_t usb_iepintnum_read (usb_core_driver *udev) +{ + uint32_t value = udev->regs.dr->DAEPINT; + + value &= udev->regs.dr->DAEPINTEN; + + return value & DAEPINT_IEPITB; +} + +/*! + \brief set remote wakeup signaling + \param[in] udev: pointer to USB device + \param[out] none + \retval none +*/ +__STATIC_INLINE void usb_rwkup_set (usb_core_driver *udev) +{ + if (udev->dev.pm.dev_remote_wakeup) { + /* enable remote wakeup signaling */ + udev->regs.dr->DCTL |= DCTL_RWKUP; + } +} + +/*! + \brief reset remote wakeup signaling + \param[in] udev: pointer to USB device + \param[out] none + \retval none +*/ +__STATIC_INLINE void usb_rwkup_reset (usb_core_driver *udev) +{ + if (udev->dev.pm.dev_remote_wakeup) { + /* disable remote wakeup signaling */ + udev->regs.dr->DCTL &= ~DCTL_RWKUP; + } +} + +/* function declarations */ +/* initialize USB core registers for device mode */ +usb_status usb_devcore_init (usb_core_driver *udev); +/* enable the USB device mode interrupts */ +usb_status usb_devint_enable (usb_core_driver *udev); +/* active the USB endpoint 0 transaction */ +usb_status usb_transc0_active (usb_core_driver *udev, usb_transc *transc); +/* active the USB transaction */ +usb_status usb_transc_active (usb_core_driver *udev, usb_transc *transc); +/* deactivate the USB transaction */ +usb_status usb_transc_deactivate (usb_core_driver *udev, usb_transc *transc); +/* configure USB transaction to start IN transfer */ +usb_status usb_transc_inxfer (usb_core_driver *udev, usb_transc *transc); +/* configure USB transaction to start OUT transfer */ +usb_status usb_transc_outxfer (usb_core_driver *udev, usb_transc *transc); +/* set the USB transaction STALL status */ +usb_status usb_transc_stall (usb_core_driver *udev, usb_transc *transc); +/* clear the USB transaction STALL status */ +usb_status usb_transc_clrstall (usb_core_driver *udev, usb_transc *transc); +/* read device IN endpoint interrupt flag register */ +uint32_t usb_iepintr_read (usb_core_driver *udev, uint8_t ep_num); +/* configures OUT endpoint 0 to receive SETUP packets */ +void usb_ctlep_startout (usb_core_driver *udev); +/* active remote wakeup signaling */ +void usb_rwkup_active (usb_core_driver *udev); +/* active USB core clock */ +void usb_clock_active (usb_core_driver *udev); +/* USB device suspend */ +void usb_dev_suspend (usb_core_driver *udev); +/* stop the device and clean up FIFOs */ +void usb_dev_stop (usb_core_driver *udev); + +#endif /* __DRV_USB_DEV_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_host.c b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_host.c new file mode 100644 index 0000000000..873950af1e --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_host.c @@ -0,0 +1,476 @@ +/*! + \file drv_usb_host.c + \brief USB host mode low level driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "drv_usb_hw.h" +#include "drv_usb_core.h" +#include "drv_usb_host.h" + +const uint32_t PIPE_DPID[2] = { + PIPE_DPID_DATA0, + PIPE_DPID_DATA1 +}; + +/*! + \brief initializes USB core for host mode + \param[in] udev: pointer to selected USB host + \param[out] none + \retval operation status +*/ +usb_status usb_host_init (usb_core_driver *udev) +{ + uint32_t i = 0U, inten = 0U; + + uint32_t nptxfifolen = 0U; + uint32_t ptxfifolen = 0U; + + /* restart the PHY Clock */ + *udev->regs.PWRCLKCTL = 0U; + + /* initialize host configuration register */ + if (USB_ULPI_PHY == udev->bp.phy_itf) { + usb_phyclock_config (udev, HCTL_30_60MHZ); + } else { + usb_phyclock_config (udev, HCTL_48MHZ); + } + + /* support FS/LS only */ + udev->regs.hr->HCTL &= ~HCTL_SPDFSLS; + + /* configure data FIFOs size */ +#ifdef USB_FS_CORE + if (USB_CORE_ENUM_FS == udev->bp.core_enum) { + /* set Rx FIFO size */ + udev->regs.gr->GRFLEN = USB_RX_FIFO_FS_SIZE; + + /* set non-periodic TX FIFO size and address */ + nptxfifolen |= USB_RX_FIFO_FS_SIZE; + nptxfifolen |= USB_HTX_NPFIFO_FS_SIZE << 16U; + udev->regs.gr->DIEP0TFLEN_HNPTFLEN = nptxfifolen; + + /* set periodic TX FIFO size and address */ + ptxfifolen |= USB_RX_FIFO_FS_SIZE + USB_HTX_NPFIFO_FS_SIZE; + ptxfifolen |= USB_HTX_PFIFO_FS_SIZE << 16U; + udev->regs.gr->HPTFLEN = ptxfifolen; + } +#endif /* USB_FS_CORE */ + +#ifdef USB_HS_CORE + if (USB_CORE_ENUM_HS == udev->bp.core_enum) { + /* set Rx FIFO size */ + udev->regs.gr->GRFLEN = USB_RX_FIFO_HS_SIZE; + + /* set non-periodic Tx FIFO size and address */ + nptxfifolen |= USB_RX_FIFO_HS_SIZE; + nptxfifolen |= USB_HTX_NPFIFO_HS_SIZE << 16U; + udev->regs.gr->DIEP0TFLEN_HNPTFLEN = nptxfifolen; + + /* set periodic Tx FIFO size and address */ + ptxfifolen |= USB_RX_FIFO_HS_SIZE + USB_HTX_NPFIFO_HS_SIZE; + ptxfifolen |= USB_HTX_PFIFO_HS_SIZE << 16U; + udev->regs.gr->HPTFLEN = ptxfifolen; + } +#endif /* USB_HS_CORE */ + +#ifdef USE_OTG_MODE + + /* clear host set HNP enable in the usb_otg control register */ + udev->regs.gr->GOTGCS &= ~GOTGCS_HHNPEN; + +#endif /* USE_OTG_MODE */ + + /* make sure the FIFOs are flushed */ + + /* flush all TX FIFOs in device or host mode */ + usb_txfifo_flush (&udev->regs, 0x10U); + + /* flush the entire Rx FIFO */ + usb_rxfifo_flush (&udev->regs); + + /* disable all interrupts */ + udev->regs.gr->GINTEN = 0U; + + /* clear any pending USB OTG interrupts */ + udev->regs.gr->GOTGINTF = 0xFFFFFFFFU; + + /* enable the USB wakeup and suspend interrupts */ + udev->regs.gr->GINTF = 0xBFFFFFFFU; + + /* clear all pending host channel interrupts */ + for (i = 0U; i < udev->bp.num_pipe; i++) { + udev->regs.pr[i]->HCHINTF = 0xFFFFFFFFU; + udev->regs.pr[i]->HCHINTEN = 0U; + } + +#ifndef USE_OTG_MODE + usb_portvbus_switch (udev, 1U); +#endif /* USE_OTG_MODE */ + + udev->regs.gr->GINTEN = GINTEN_WKUPIE | GINTEN_SPIE; + + /* enable host_mode-related interrupts */ + if (USB_USE_FIFO == udev->bp.transfer_mode) { + inten = GINTEN_RXFNEIE; + } + + inten |= GINTEN_SESIE | GINTEN_HPIE | GINTEN_HCIE | GINTEN_ISOINCIE; + + udev->regs.gr->GINTEN |= inten; + + inten = GINTEN_DISCIE | GINTEN_SOFIE; + + udev->regs.gr->GINTEN &= ~inten; + + return USB_OK; +} + +/*! + \brief control the VBUS to power + \param[in] udev: pointer to selected usb host + \param[in] state: VBUS state + \param[out] none + \retval none +*/ +void usb_portvbus_switch (usb_core_driver *udev, uint8_t state) +{ + uint32_t port = 0U; + + /* enable or disable the external charge pump */ + // usb_vbus_drive (state); + + /* turn on the host port power. */ + port = usb_port_read (udev); + + if (!(port & HPCS_PP) && (1U == state)) { + port |= HPCS_PP; + } + + if ((port & HPCS_PP) && (0U == state)) { + port &= ~HPCS_PP; + } + + *udev->regs.HPCS = port; + + usb_mdelay (200U); +} + +/*! + \brief reset host port + \param[in] udev: pointer to USB device + \param[out] none + \retval operation status +*/ +uint32_t usb_port_reset (usb_core_driver *udev) +{ + __IO uint32_t port = usb_port_read (udev); + + *udev->regs.HPCS = port | HPCS_PRST; + + usb_mdelay(20U); /* see note */ + + *udev->regs.HPCS = port & ~HPCS_PRST; + + usb_mdelay(20U); + + return 1U; +} + +/*! + \brief initialize host pipe + \param[in] udev: pointer to USB device + \param[in] pipe_num: host pipe number which is in (0..7) + \param[out] none + \retval operation status +*/ +usb_status usb_pipe_init (usb_core_driver *udev, uint8_t pipe_num) +{ + usb_status status = USB_OK; + + __IO uint32_t pp_ctl = 0U; + __IO uint32_t pp_inten = HCHINTEN_TFIE; + + usb_pipe *pp = &udev->host.pipe[pipe_num]; + + /* clear old interrupt conditions for this host channel */ + udev->regs.pr[pipe_num]->HCHINTF = 0xFFFFFFFFU; + + if (USB_USE_DMA == udev->bp.transfer_mode) { + pp_inten |= HCHINTEN_DMAERIE; + } + + if (pp->ep.dir) { + pp_inten |= HCHINTEN_BBERIE; + } + + /* enable channel interrupts required for this transfer */ + switch (pp->ep.type) { + case USB_EPTYPE_CTRL: + case USB_EPTYPE_BULK: + pp_inten |= HCHINTEN_STALLIE | HCHINTEN_USBERIE \ + | HCHINTEN_DTERIE | HCHINTEN_NAKIE; + + if (!pp->ep.dir) { + pp_inten |= HCHINTEN_NYETIE; + + if (pp->ping) { + pp_inten |= HCHINTEN_ACKIE; + } + } + break; + + case USB_EPTYPE_INTR: + pp_inten |= HCHINTEN_STALLIE | HCHINTEN_USBERIE | HCHINTEN_DTERIE \ + | HCHINTEN_NAKIE | HCHINTEN_REQOVRIE; + break; + + case USB_EPTYPE_ISOC: + pp_inten |= HCHINTEN_REQOVRIE | HCHINTEN_ACKIE; + + if (pp->ep.dir) { + pp_inten |= HCHINTEN_USBERIE; + } + break; + + default: + break; + } + + udev->regs.pr[pipe_num]->HCHINTEN = pp_inten; + + /* enable the top level host channel interrupt */ + udev->regs.hr->HACHINTEN |= 1U << pipe_num; + + /* make sure host channel interrupts are enabled */ + udev->regs.gr->GINTEN |= GINTEN_HCIE; + + /* program the host channel control register */ + pp_ctl |= PIPE_CTL_DAR(pp->dev_addr); + pp_ctl |= PIPE_CTL_EPNUM(pp->ep.num); + pp_ctl |= PIPE_CTL_EPDIR(pp->ep.dir); + pp_ctl |= PIPE_CTL_EPTYPE(pp->ep.type); + pp_ctl |= PIPE_CTL_LSD(pp->dev_speed == PORT_SPEED_LOW); + + pp_ctl |= pp->ep.mps; + pp_ctl |= ((uint32_t)(pp->ep.type == USB_EPTYPE_INTR) << 29U) & HCHCTL_ODDFRM; + + udev->regs.pr[pipe_num]->HCHCTL = pp_ctl; + + return status; +} + +/*! + \brief prepare host channel for transferring packets + \param[in] udev: pointer to USB device + \param[in] pipe_num: host pipe number which is in (0..7) + \param[out] none + \retval operation status +*/ +usb_status usb_pipe_xfer (usb_core_driver *udev, uint8_t pipe_num) +{ + usb_status status = USB_OK; + + uint16_t dword_len = 0U; + uint16_t packet_count = 0U; + + __IO uint32_t pp_ctl = 0U; + + usb_pipe *pp = &udev->host.pipe[pipe_num]; + + uint16_t max_packet_len = pp->ep.mps; + + /* compute the expected number of packets associated to the transfer */ + if (pp->xfer_len > 0U) { + packet_count = (uint16_t)((pp->xfer_len + max_packet_len - 1U) / max_packet_len); + + if (packet_count > HC_MAX_PACKET_COUNT) { + packet_count = HC_MAX_PACKET_COUNT; + pp->xfer_len = (uint16_t)(packet_count * max_packet_len); + } + } else { + packet_count = 1U; + } + + if (pp->ep.dir) { + pp->xfer_len = (uint16_t)(packet_count * max_packet_len); + } + + /* initialize the host channel transfer information */ + udev->regs.pr[pipe_num]->HCHLEN = pp->xfer_len | pp->DPID | PIPE_XFER_PCNT(packet_count); + + if (USB_USE_DMA == udev->bp.transfer_mode) { + udev->regs.pr[pipe_num]->HCHDMAADDR = (unsigned int)pp->xfer_buf; + } + + pp_ctl = udev->regs.pr[pipe_num]->HCHCTL; + + if (usb_frame_even(udev)) { + pp_ctl |= HCHCTL_ODDFRM; + } else { + pp_ctl &= ~HCHCTL_ODDFRM; + } + + /* set host channel enabled */ + pp_ctl |= HCHCTL_CEN; + pp_ctl &= ~HCHCTL_CDIS; + + udev->regs.pr[pipe_num]->HCHCTL = pp_ctl; + + if (USB_USE_FIFO == udev->bp.transfer_mode) { + if ((0U == pp->ep.dir) && (pp->xfer_len > 0U)) { + switch (pp->ep.type) { + /* non-periodic transfer */ + case USB_EPTYPE_CTRL: + case USB_EPTYPE_BULK: + dword_len = (uint16_t)((pp->xfer_len + 3U) / 4U); + + /* check if there is enough space in FIFO space */ + if (dword_len > (udev->regs.gr->HNPTFQSTAT & HNPTFQSTAT_NPTXFS)) { + /* need to process data in nptxfempty interrupt */ + udev->regs.gr->GINTEN |= GINTEN_NPTXFEIE; + } + break; + + /* periodic transfer */ + case USB_EPTYPE_INTR: + case USB_EPTYPE_ISOC: + dword_len = (uint16_t)((pp->xfer_len + 3U) / 4U); + + /* check if there is enough space in fifo space */ + if (dword_len > (udev->regs.hr->HPTFQSTAT & HPTFQSTAT_PTXFS)) { + /* need to process data in ptxfempty interrupt */ + udev->regs.gr->GINTEN |= GINTEN_PTXFEIE; + } + break; + + default: + break; + } + + /* write packet into the TX fifo. */ + usb_txfifo_write (&udev->regs, pp->xfer_buf, pipe_num, (uint16_t)pp->xfer_len); + } + } + + return status; +} + +/*! + \brief halt pipe + \param[in] udev: pointer to USB device + \param[in] pipe_num: host pipe number which is in (0..7) + \param[out] none + \retval operation status +*/ +usb_status usb_pipe_halt (usb_core_driver *udev, uint8_t pipe_num) +{ + __IO uint32_t pp_ctl = udev->regs.pr[pipe_num]->HCHCTL; + + uint8_t ep_type = (uint8_t)((pp_ctl & HCHCTL_EPTYPE) >> 18U); + + pp_ctl |= HCHCTL_CEN | HCHCTL_CDIS; + + switch (ep_type) { + case USB_EPTYPE_CTRL: + case USB_EPTYPE_BULK: + if (0U == (udev->regs.gr->HNPTFQSTAT & HNPTFQSTAT_NPTXFS)) { + pp_ctl &= ~HCHCTL_CEN; + } + break; + + case USB_EPTYPE_INTR: + case USB_EPTYPE_ISOC: + if (0U == (udev->regs.hr->HPTFQSTAT & HPTFQSTAT_PTXFS)) { + pp_ctl &= ~HCHCTL_CEN; + } + break; + + default: + break; + } + + udev->regs.pr[pipe_num]->HCHCTL = pp_ctl; + + return USB_OK; +} + +/*! + \brief configure host pipe to do ping operation + \param[in] udev: pointer to USB device + \param[in] pipe_num: host pipe number which is in (0..7) + \param[out] none + \retval operation status +*/ +usb_status usb_pipe_ping (usb_core_driver *udev, uint8_t pipe_num) +{ + uint32_t pp_ctl = 0U; + + udev->regs.pr[pipe_num]->HCHLEN = HCHLEN_PING | (HCHLEN_PCNT & (1U << 19U)); + + pp_ctl = udev->regs.pr[pipe_num]->HCHCTL; + + pp_ctl |= HCHCTL_CEN; + pp_ctl &= ~HCHCTL_CDIS; + + udev->regs.pr[pipe_num]->HCHCTL = pp_ctl; + + return USB_OK; +} + +/*! + \brief stop the USB host and clean up FIFO + \param[in] udev: pointer to USB device + \param[out] none + \retval none +*/ +void usb_host_stop (usb_core_driver *udev) +{ + uint32_t i; + __IO uint32_t pp_ctl = 0U; + + udev->regs.hr->HACHINTEN = 0x0U; + udev->regs.hr->HACHINT = 0xFFFFFFFFU; + + /* flush out any leftover queued requests. */ + for (i = 0U; i < udev->bp.num_pipe; i++) { + pp_ctl = udev->regs.pr[i]->HCHCTL; + + pp_ctl &= ~(HCHCTL_CEN | HCHCTL_EPDIR); + pp_ctl |= HCHCTL_CDIS; + + udev->regs.pr[i]->HCHCTL = pp_ctl; + } + + /* flush the FIFO */ + usb_rxfifo_flush (&udev->regs); + usb_txfifo_flush (&udev->regs, 0x10U); +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_host.h b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_host.h new file mode 100644 index 0000000000..93db50a88f --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_host.h @@ -0,0 +1,123 @@ +/*! + \file drv_usb_host.h + \brief USB host mode low level driver header file + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __DRV_USB_HOST_H +#define __DRV_USB_HOST_H + +#include "drv_usb_regs.h" +#include "usb_ch9_std.h" +#include "drv_usb_core.h" + +typedef enum _usb_pipe_mode +{ + PIPE_PERIOD = 0U, + PIPE_NON_PERIOD = 1U +} usb_pipe_mode; + +/*! + \brief get USB even frame + \param[in] udev: pointer to USB device + \param[out] none + \retval none +*/ +__STATIC_INLINE uint8_t usb_frame_even (usb_core_driver *udev) +{ + return (uint8_t)!(udev->regs.hr->HFINFR & 0x01U); +} + +/*! + \brief configure USB clock of PHY + \param[in] udev: pointer to USB device + \param[in] clock: PHY clock + \param[out] none + \retval none +*/ +__STATIC_INLINE void usb_phyclock_config (usb_core_driver *udev, uint8_t clock) +{ + udev->regs.hr->HCTL &= ~HCTL_CLKSEL; + udev->regs.hr->HCTL |= clock; +} + +/*! + \brief read USB port + \param[in] udev: pointer to USB device + \param[out] none + \retval port status +*/ +__STATIC_INLINE uint32_t usb_port_read (usb_core_driver *udev) +{ + return *udev->regs.HPCS & ~(HPCS_PE | HPCS_PCD | HPCS_PEDC); +} + +/*! + \brief get USB current speed + \param[in] udev: pointer to USB device + \param[out] none + \retval USB current speed +*/ +__STATIC_INLINE uint32_t usb_curspeed_get (usb_core_driver *udev) +{ + return *udev->regs.HPCS & HPCS_PS; +} + +/*! + \brief get USB current frame + \param[in] udev: pointer to USB device + \param[out] none + \retval USB current frame +*/ +__STATIC_INLINE uint32_t usb_curframe_get (usb_core_driver *udev) +{ + return (udev->regs.hr->HFINFR & 0xFFFFU); +} + +/* function declarations */ +/* initializes USB core for host mode */ +usb_status usb_host_init (usb_core_driver *udev); +/* control the VBUS to power */ +void usb_portvbus_switch (usb_core_driver *udev, uint8_t state); +/* reset host port */ +uint32_t usb_port_reset (usb_core_driver *udev); +/* initialize host pipe */ +usb_status usb_pipe_init (usb_core_driver *udev, uint8_t pipe_num); +/* prepare host pipe for transferring packets */ +usb_status usb_pipe_xfer (usb_core_driver *udev, uint8_t pipe_num); +/* halt host pipe */ +usb_status usb_pipe_halt (usb_core_driver *udev, uint8_t pipe_num); +/* configure host pipe to do ping operation */ +usb_status usb_pipe_ping (usb_core_driver *udev, uint8_t pipe_num); +/* stop the USB host and clean up FIFO */ +void usb_host_stop (usb_core_driver *udev); + +#endif /* __DRV_USB_HOST_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_hw.h b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_hw.h new file mode 100644 index 0000000000..9bf7ad8d27 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_hw.h @@ -0,0 +1,73 @@ +/*! + \file drv_usb_hw.h + \brief usb hardware configuration header file + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __DRV_USB_HW_H +#define __DRV_USB_HW_H + +#include "gdusb_conf.h" +#include "wiring_time.h" +/* function declarations */ +/* configure USB clock */ +void usb_rcu_config (void); +/* configure USB data line gpio */ +void usb_gpio_config (void); +/* configure USB interrupt */ +void usb_intr_config (void); +/* initializes delay unit using Timer2 */ +void usb_timer_init (void); +/* delay in micro seconds */ +// void usb_udelay (const uint32_t usec); +#define usb_udelay(x) delay(1) +/* delay in milliseconds */ +#define usb_mdelay(x) delay(x) +// void usb_mdelay (const uint32_t msec); +/* configures system clock after wakeup from STOP mode */ +void system_clk_config_stop(void); + +/* configure the CTC peripheral */ +#ifdef USE_IRC48M + void ctc_config(void); +#endif /* USE_IRC48M */ + +#ifdef USE_HOST_MODE + void systick_config(void); + + /* configure USB VBus */ + void usb_vbus_config (void); + + /* drive USB VBus */ + void usb_vbus_drive (uint8_t State); +#endif /* USE_HOST_MODE */ + +#endif /* __DRV_USB_HW_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_regs.h b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_regs.h new file mode 100644 index 0000000000..19c9c200bc --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_regs.h @@ -0,0 +1,663 @@ +/*! + \file drv_usb_regs.h + \brief USB cell registers definition and handle macros + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __DRV_USB_REGS_H +#define __DRV_USB_REGS_H + +#include "gdusb_conf.h" + + +#define USBHS_REG_BASE 0x40040000L /*!< base address of USBHS registers */ +#define USBFS_REG_BASE 0x50000000L /*!< base address of USBFS registers */ + +#define USBFS_MAX_TX_FIFOS 15U /*!< FIFO number */ + +#define USBFS_MAX_PACKET_SIZE 64U /*!< USBFS max packet size */ +#define USBFS_MAX_CHANNEL_COUNT 8U /*!< USBFS host channel count */ +#define USBFS_MAX_EP_COUNT 4U /*!< USBFS device endpoint count */ +#define USBFS_MAX_FIFO_WORDLEN 320U /*!< USBFS max fifo size in words */ + +#define USBHS_MAX_PACKET_SIZE 512U /*!< USBHS max packet size */ +#define USBHS_MAX_CHANNEL_COUNT 12U /*!< USBHS host channel count */ +#define USBHS_MAX_EP_COUNT 6U /*!< USBHS device endpoint count */ +#define USBHS_MAX_FIFO_WORDLEN 1280U /*!< USBHS max fifo size in words */ + +#define USB_DATA_FIFO_OFFSET 0x1000U /*!< USB data fifo offset */ +#define USB_DATA_FIFO_SIZE 0x1000U /*!< USB data fifo size */ + +typedef enum +{ + USB_CORE_ENUM_HS = 0, /*!< USB core type is HS */ + USB_CORE_ENUM_FS = 1 /*!< USB core type is FS */ +} usb_core_enum; + +enum USB_SPEED { + USB_SPEED_UNKNOWN = 0, /*!< USB speed unknown */ + USB_SPEED_LOW, /*!< USB speed low */ + USB_SPEED_FULL, /*!< USB speed full */ + USB_SPEED_HIGH, /*!< USB speed high */ +}; + +enum usb_reg_offset { + USB_REG_OFFSET_CORE = 0x0000U, /*!< global OTG control and status register */ + USB_REG_OFFSET_DEV = 0x0800U, /*!< device mode control and status registers */ + USB_REG_OFFSET_EP = 0x0020U, + USB_REG_OFFSET_EP_IN = 0x0900U, /*!< device IN endpoint 0 control register */ + USB_REG_OFFSET_EP_OUT = 0x0B00U, /*!< device OUT endpoint 0 control register */ + USB_REG_OFFSET_HOST = 0x0400U, /*!< host control register */ + USB_REG_OFFSET_CH = 0x0020U, + USB_REG_OFFSET_PORT = 0x0440U, /*!< host port control and status register */ + USB_REG_OFFSET_CH_INOUT = 0x0500U, /*!< Host channel-x control registers */ + USB_REG_OFFSET_PWRCLKCTL = 0x0E00U, /*!< power and clock register */ +}; + +typedef struct +{ + __IO uint32_t GOTGCS; /*!< USB global OTG control and status register 000h */ + __IO uint32_t GOTGINTF; /*!< USB global OTG interrupt flag register 004h */ + __IO uint32_t GAHBCS; /*!< USB global AHB control and status register 008h */ + __IO uint32_t GUSBCS; /*!< USB global USB control and status register 00Ch */ + __IO uint32_t GRSTCTL; /*!< USB global reset control register 010h */ + __IO uint32_t GINTF; /*!< USB global interrupt flag register 014h */ + __IO uint32_t GINTEN; /*!< USB global interrupt enable register 018h */ + __IO uint32_t GRSTATR; /*!< USB receive status debug read register 01Ch */ + __IO uint32_t GRSTATP; /*!< USB receive status and pop register 020h */ + __IO uint32_t GRFLEN; /*!< USB global receive FIFO length register 024h */ + __IO uint32_t DIEP0TFLEN_HNPTFLEN; /*!< USB device IN endpoint 0/host non-periodic transmit FIFO length register 028h */ + __IO uint32_t HNPTFQSTAT; /*!< USB host non-periodic FIFO/queue status register 02Ch */ + uint32_t Reserved30[2]; /*!< Reserved 030h */ + __IO uint32_t GCCFG; /*!< USB global core configuration register 038h */ + __IO uint32_t CID; /*!< USB core ID register 03Ch */ + uint32_t Reserved40[48]; /*!< Reserved 040h-0FFh */ + __IO uint32_t HPTFLEN; /*!< USB host periodic transmit FIFO length register 100h */ + __IO uint32_t DIEPTFLEN[15]; /*!< USB device IN endpoint transmit FIFO length register 104h */ +} usb_gr; + + +typedef struct +{ + __IO uint32_t HCTL; /*!< USB host control register 400h */ + __IO uint32_t HFT; /*!< USB host frame interval register 404h */ + __IO uint32_t HFINFR; /*!< USB host frame information remaining register 408h */ + uint32_t Reserved40C; /*!< Reserved 40Ch */ + __IO uint32_t HPTFQSTAT; /*!< USB host periodic transmit FIFO/queue status register 410h */ + __IO uint32_t HACHINT; /*!< USB host all channels interrupt register 414h */ + __IO uint32_t HACHINTEN; /*!< USB host all channels interrupt enable register 418h */ +} usb_hr; + +typedef struct +{ + __IO uint32_t HCHCTL; /*!< USB host channel control register 500h */ + __IO uint32_t HCHSTCTL; /*!< Reserved 504h */ + __IO uint32_t HCHINTF; /*!< USB host channel interrupt flag register 508h */ + __IO uint32_t HCHINTEN; /*!< USB host channel interrupt enable register 50Ch */ + __IO uint32_t HCHLEN; /*!< USB host channel transfer length register 510h */ + __IO uint32_t HCHDMAADDR; /*!< USB host channel-x DMA address register 514h*/ + uint32_t Reserved[2]; +} usb_pr; + +typedef struct +{ + __IO uint32_t DCFG; /*!< USB device configuration register 800h */ + __IO uint32_t DCTL; /*!< USB device control register 804h */ + __IO uint32_t DSTAT; /*!< USB device status register 808h */ + uint32_t Reserved0C; /*!< Reserved 80Ch */ + __IO uint32_t DIEPINTEN; /*!< USB device IN endpoint common interrupt enable register 810h */ + __IO uint32_t DOEPINTEN; /*!< USB device OUT endpoint common interrupt enable register 814h */ + __IO uint32_t DAEPINT; /*!< USB device all endpoints interrupt register 818h */ + __IO uint32_t DAEPINTEN; /*!< USB device all endpoints interrupt enable register 81Ch */ + uint32_t Reserved20; /*!< Reserved 820h */ + uint32_t Reserved24; /*!< Reserved 824h */ + __IO uint32_t DVBUSDT; /*!< USB device VBUS discharge time register 828h */ + __IO uint32_t DVBUSPT; /*!< USB device VBUS pulsing time register 82Ch */ + __IO uint32_t DTHRCTL; /*!< device threshold control 830h */ + __IO uint32_t DIEPFEINTEN; /*!< USB Device IN endpoint FIFO empty interrupt enable register 834h */ + __IO uint32_t DEP1INT; /*!< USB device endpoint 1 interrupt register 838h */ + __IO uint32_t DEP1INTEN; /*!< USB device endpoint 1 interrupt enable register 83Ch */ + uint32_t Reserved40; /*!< Reserved 840h */ + __IO uint32_t DIEP1INTEN; /*!< USB device IN endpoint-1 interrupt enable register 844h */ + uint32_t Reserved48[15]; /*!< Reserved 848-880h */ + __IO uint32_t DOEP1INTEN; /*!< USB device OUT endpoint-1 interrupt enable register 884h */ +} usb_dr; + +typedef struct +{ + __IO uint32_t DIEPCTL; /*!< USB device IN endpoint control register 900h + (EpNum * 20h) + 00h */ + uint32_t Reserved04; /*!< Reserved 900h + (EpNum * 20h) + 04h */ + __IO uint32_t DIEPINTF; /*!< USB device IN endpoint interrupt flag register 900h + (EpNum * 20h) + 08h */ + uint32_t Reserved0C; /*!< Reserved 900h + (EpNum * 20h) + 0Ch */ + __IO uint32_t DIEPLEN; /*!< USB device IN endpoint transfer length register 900h + (EpNum * 20h) + 10h */ + __IO uint32_t DIEPDMAADDR; /*!< Device IN endpoint-x DMA address register 900h + (EpNum * 20h) + 14h */ + __IO uint32_t DIEPTFSTAT; /*!< USB device IN endpoint transmit FIFO status register 900h + (EpNum * 20h) + 18h */ +} usb_erin; + +typedef struct +{ + __IO uint32_t DOEPCTL; /*!< USB device IN endpoint control register B00h + (EpNum * 20h) + 00h */ + uint32_t Reserved04; /*!< Reserved B00h + (EpNum * 20h) + 04h */ + __IO uint32_t DOEPINTF; /*!< USB device IN endpoint interrupt flag register B00h + (EpNum * 20h) + 08h */ + uint32_t Reserved0C; /*!< Reserved B00h + (EpNum * 20h) + 0Ch */ + __IO uint32_t DOEPLEN; /*!< USB device IN endpoint transfer length register B00h + (EpNum * 20h) + 10h */ + __IO uint32_t DOEPDMAADDR; /*!< Device OUT endpoint-x DMA address register B00h + (EpNum * 20h) + 0Ch */ +} usb_erout; + +typedef struct _usb_regs +{ + usb_gr *gr; /*!< USBFS global registers */ + usb_dr *dr; /*!< Device control and status registers */ + usb_hr *hr; /*!< Host control and status registers */ + usb_erin *er_in[6]; /*!< USB device IN endpoint register */ + usb_erout *er_out[6]; /*!< USB device OUT endpoint register */ + usb_pr *pr[15]; /*!< USB Host channel-x control register */ + + __IO uint32_t *HPCS; /*!< USB host port control and status register */ + __IO uint32_t *DFIFO[USBFS_MAX_TX_FIFOS]; + __IO uint32_t *PWRCLKCTL; /*!< USB power and clock control register */ +} usb_core_regs; + +/* global OTG control and status register bits definitions */ +#define GOTGCS_BSV BIT(19) /*!< B-Session Valid */ +#define GOTGCS_ASV BIT(18) /*!< A-session valid */ +#define GOTGCS_DI BIT(17) /*!< debounce interval */ +#define GOTGCS_CIDPS BIT(16) /*!< id pin status */ +#define GOTGCS_DHNPEN BIT(11) /*!< device HNP enable */ +#define GOTGCS_HHNPEN BIT(10) /*!< host HNP enable */ +#define GOTGCS_HNPREQ BIT(9) /*!< HNP request */ +#define GOTGCS_HNPS BIT(8) /*!< HNP successes */ +#define GOTGCS_SRPREQ BIT(1) /*!< SRP request */ +#define GOTGCS_SRPS BIT(0) /*!< SRP successes */ + +/* global OTG interrupt flag register bits definitions */ +#define GOTGINTF_DF BIT(19) /*!< debounce finish */ +#define GOTGINTF_ADTO BIT(18) /*!< A-device timeout */ +#define GOTGINTF_HNPDET BIT(17) /*!< host negotiation request detected */ +#define GOTGINTF_HNPEND BIT(9) /*!< HNP end */ +#define GOTGINTF_SRPEND BIT(8) /*!< SRP end */ +#define GOTGINTF_SESEND BIT(2) /*!< session end */ + +/* global AHB control and status register bits definitions */ +#define GAHBCS_PTXFTH BIT(8) /*!< periodic Tx FIFO threshold */ +#define GAHBCS_TXFTH BIT(7) /*!< tx FIFO threshold */ +#define GAHBCS_DMAEN BIT(5) /*!< DMA function Enable */ +#define GAHBCS_BURST BITS(1, 4) /*!< the AHB burst type used by DMA */ +#define GAHBCS_GINTEN BIT(0) /*!< global interrupt enable */ + +/* global USB control and status register bits definitions */ +#define GUSBCS_FDM BIT(30) /*!< force device mode */ +#define GUSBCS_FHM BIT(29) /*!< force host mode */ +#define GUSBCS_ULPIEOI BIT(21) /*!< ULPI external over-current indicator */ +#define GUSBCS_ULPIEVD BIT(20) /*!< ULPI external VBUS driver */ +#define GUSBCS_UTT BITS(10, 13) /*!< USB turnaround time */ +#define GUSBCS_HNPCEN BIT(9) /*!< HNP capability enable */ +#define GUSBCS_SRPCEN BIT(8) /*!< SRP capability enable */ +#define GUSBCS_EMBPHY BIT(6) /*!< embedded PHY selected */ +#define GUSBCS_TOC BITS(0, 2) /*!< timeout calibration */ + +/* global reset control register bits definitions */ +#define GRSTCTL_DMAIDL BIT(31) /*!< DMA idle state */ +#define GRSTCTL_DMABSY BIT(30) /*!< DMA busy */ +#define GRSTCTL_TXFNUM BITS(6, 10) /*!< tx FIFO number */ +#define GRSTCTL_TXFF BIT(5) /*!< tx FIFO flush */ +#define GRSTCTL_RXFF BIT(4) /*!< rx FIFO flush */ +#define GRSTCTL_HFCRST BIT(2) /*!< host frame counter reset */ +#define GRSTCTL_HCSRST BIT(1) /*!< HCLK soft reset */ +#define GRSTCTL_CSRST BIT(0) /*!< core soft reset */ + +/* global interrupt flag register bits definitions */ +#define GINTF_WKUPIF BIT(31) /*!< wakeup interrupt flag */ +#define GINTF_SESIF BIT(30) /*!< session interrupt flag */ +#define GINTF_DISCIF BIT(29) /*!< disconnect interrupt flag */ +#define GINTF_IDPSC BIT(28) /*!< id pin status change */ +#define GINTF_PTXFEIF BIT(26) /*!< periodic tx FIFO empty interrupt flag */ +#define GINTF_HCIF BIT(25) /*!< host channels interrupt flag */ +#define GINTF_HPIF BIT(24) /*!< host port interrupt flag */ +#define GINTF_PXNCIF BIT(21) /*!< periodic transfer not complete interrupt flag */ +#define GINTF_ISOONCIF BIT(21) /*!< isochronous OUT transfer not complete interrupt flag */ +#define GINTF_ISOINCIF BIT(20) /*!< isochronous IN transfer not complete interrupt flag */ +#define GINTF_OEPIF BIT(19) /*!< OUT endpoint interrupt flag */ +#define GINTF_IEPIF BIT(18) /*!< IN endpoint interrupt flag */ +#define GINTF_EOPFIF BIT(15) /*!< end of periodic frame interrupt flag */ +#define GINTF_ISOOPDIF BIT(14) /*!< isochronous OUT packet dropped interrupt flag */ +#define GINTF_ENUMFIF BIT(13) /*!< enumeration finished */ +#define GINTF_RST BIT(12) /*!< USB reset */ +#define GINTF_SP BIT(11) /*!< USB suspend */ +#define GINTF_ESP BIT(10) /*!< early suspend */ +#define GINTF_GONAK BIT(7) /*!< global OUT NAK effective */ +#define GINTF_GNPINAK BIT(6) /*!< global IN non-periodic NAK effective */ +#define GINTF_NPTXFEIF BIT(5) /*!< non-periodic tx FIFO empty interrupt flag */ +#define GINTF_RXFNEIF BIT(4) /*!< rx FIFO non-empty interrupt flag */ +#define GINTF_SOF BIT(3) /*!< start of frame */ +#define GINTF_OTGIF BIT(2) /*!< OTG interrupt flag */ +#define GINTF_MFIF BIT(1) /*!< mode fault interrupt flag */ +#define GINTF_COPM BIT(0) /*!< current operation mode */ + +/* global interrupt enable register bits definitions */ +#define GINTEN_WKUPIE BIT(31) /*!< wakeup interrupt enable */ +#define GINTEN_SESIE BIT(30) /*!< session interrupt enable */ +#define GINTEN_DISCIE BIT(29) /*!< disconnect interrupt enable */ +#define GINTEN_IDPSCIE BIT(28) /*!< id pin status change interrupt enable */ +#define GINTEN_PTXFEIE BIT(26) /*!< periodic tx FIFO empty interrupt enable */ +#define GINTEN_HCIE BIT(25) /*!< host channels interrupt enable */ +#define GINTEN_HPIE BIT(24) /*!< host port interrupt enable */ +#define GINTEN_IPXIE BIT(21) /*!< periodic transfer not complete interrupt enable */ +#define GINTEN_ISOONCIE BIT(21) /*!< isochronous OUT transfer not complete interrupt enable */ +#define GINTEN_ISOINCIE BIT(20) /*!< isochronous IN transfer not complete interrupt enable */ +#define GINTEN_OEPIE BIT(19) /*!< OUT endpoints interrupt enable */ +#define GINTEN_IEPIE BIT(18) /*!< IN endpoints interrupt enable */ +#define GINTEN_EOPFIE BIT(15) /*!< end of periodic frame interrupt enable */ +#define GINTEN_ISOOPDIE BIT(14) /*!< isochronous OUT packet dropped interrupt enable */ +#define GINTEN_ENUMFIE BIT(13) /*!< enumeration finish enable */ +#define GINTEN_RSTIE BIT(12) /*!< USB reset interrupt enable */ +#define GINTEN_SPIE BIT(11) /*!< USB suspend interrupt enable */ +#define GINTEN_ESPIE BIT(10) /*!< early suspend interrupt enable */ +#define GINTEN_GONAKIE BIT(7) /*!< global OUT NAK effective interrupt enable */ +#define GINTEN_GNPINAKIE BIT(6) /*!< global non-periodic IN NAK effective interrupt enable */ +#define GINTEN_NPTXFEIE BIT(5) /*!< non-periodic Tx FIFO empty interrupt enable */ +#define GINTEN_RXFNEIE BIT(4) /*!< receive FIFO non-empty interrupt enable */ +#define GINTEN_SOFIE BIT(3) /*!< start of frame interrupt enable */ +#define GINTEN_OTGIE BIT(2) /*!< OTG interrupt enable */ +#define GINTEN_MFIE BIT(1) /*!< mode fault interrupt enable */ + +/* global receive status read and pop register bits definitions */ +#define GRSTATRP_RPCKST BITS(17, 20) /*!< received packet status */ +#define GRSTATRP_DPID BITS(15, 16) /*!< data PID */ +#define GRSTATRP_BCOUNT BITS(4, 14) /*!< byte count */ +#define GRSTATRP_CNUM BITS(0, 3) /*!< channel number */ +#define GRSTATRP_EPNUM BITS(0, 3) /*!< endpoint number */ + +/* global receive FIFO length register bits definitions */ +#define GRFLEN_RXFD BITS(0, 15) /*!< rx FIFO depth */ + +/* host non-periodic transmit FIFO length register bits definitions */ +#define HNPTFLEN_HNPTXFD BITS(16, 31) /*!< non-periodic Tx FIFO depth */ +#define HNPTFLEN_HNPTXRSAR BITS(0, 15) /*!< non-periodic Tx RAM start address */ + +/** + * @brief USB IN endpoint 0 transmit FIFO length register bits definitions + */ +#define DIEP0TFLEN_IEP0TXFD BITS(16, 31) /*!< IN Endpoint 0 Tx FIFO depth */ +#define DIEP0TFLEN_IEP0TXRSAR BITS(0, 15) /*!< IN Endpoint 0 TX RAM start address */ + +/* host non-periodic transmit FIFO/queue status register bits definitions */ +#define HNPTFQSTAT_NPTXRQTOP BITS(24, 30) /*!< top entry of the non-periodic Tx request queue */ +#define HNPTFQSTAT_NPTXRQS BITS(16, 23) /*!< non-periodic Tx request queue space */ +#define HNPTFQSTAT_NPTXFS BITS(0, 15) /*!< non-periodic Tx FIFO space */ +#define HNPTFQSTAT_CNUM BITS(27, 30) /*!< channel number*/ +#define HNPTFQSTAT_EPNUM BITS(27, 30) /*!< endpoint number */ +#define HNPTFQSTAT_TYPE BITS(25, 26) /*!< token type */ +#define HNPTFQSTAT_TMF BIT(24) /*!< terminate flag */ + +/* global core configuration register bits definitions */ +#define GCCFG_VBUSIG BIT(21) /*!< vbus ignored */ +#define GCCFG_SOFOEN BIT(20) /*!< SOF output enable */ +#define GCCFG_VBUSBCEN BIT(19) /*!< the VBUS B-device comparer enable */ +#define GCCFG_VBUSACEN BIT(18) /*!< the VBUS A-device comparer enable */ +#define GCCFG_PWRON BIT(16) /*!< power on */ + +/* core ID register bits definitions */ +#define CID_CID BITS(0, 31) /*!< core ID */ + +/* host periodic transmit FIFO length register bits definitions */ +#define HPTFLEN_HPTXFD BITS(16, 31) /*!< host periodic Tx FIFO depth */ +#define HPTFLEN_HPTXFSAR BITS(0, 15) /*!< host periodic Tx RAM start address */ + +/* device IN endpoint transmit FIFO length register bits definitions */ +#define DIEPTFLEN_IEPTXFD BITS(16, 31) /*!< IN endpoint Tx FIFO x depth */ +#define DIEPTFLEN_IEPTXRSAR BITS(0, 15) /*!< IN endpoint FIFOx Tx x RAM start address */ + +/* host control register bits definitions */ +#define HCTL_SPDFSLS BIT(2) /*!< speed limited to FS and LS */ +#define HCTL_CLKSEL BITS(0, 1) /*!< clock select for USB clock */ + +/* host frame interval register bits definitions */ +#define HFT_FRI BITS(0, 15) /*!< frame interval */ + +/* host frame information remaining register bits definitions */ +#define HFINFR_FRT BITS(16, 31) /*!< frame remaining time */ +#define HFINFR_FRNUM BITS(0, 15) /*!< frame number */ + +/* host periodic transmit FIFO/queue status register bits definitions */ +#define HPTFQSTAT_PTXREQT BITS(24, 31) /*!< top entry of the periodic Tx request queue */ +#define HPTFQSTAT_PTXREQS BITS(16, 23) /*!< periodic Tx request queue space */ +#define HPTFQSTAT_PTXFS BITS(0, 15) /*!< periodic Tx FIFO space */ +#define HPTFQSTAT_OEFRM BIT(31) /*!< odd/eveb frame */ +#define HPTFQSTAT_CNUM BITS(27, 30) /*!< channel number */ +#define HPTFQSTAT_EPNUM BITS(27, 30) /*!< endpoint number */ +#define HPTFQSTAT_TYPE BITS(25, 26) /*!< token type */ +#define HPTFQSTAT_TMF BIT(24) /*!< terminate flag */ + + +#define TFQSTAT_TXFS BITS(0, 15) +#define TFQSTAT_CNUM BITS(27, 30) + +/* host all channels interrupt register bits definitions */ +#define HACHINT_HACHINT BITS(0, 11) /*!< host all channel interrupts */ + +/* host all channels interrupt enable register bits definitions */ +#define HACHINTEN_CINTEN BITS(0, 11) /*!< channel interrupt enable */ + +/* host port control and status register bits definitions */ +#define HPCS_PS BITS(17, 18) /*!< port speed */ +#define HPCS_PP BIT(12) /*!< port power */ +#define HPCS_PLST BITS(10, 11) /*!< port line status */ +#define HPCS_PRST BIT(8) /*!< port reset */ +#define HPCS_PSP BIT(7) /*!< port suspend */ +#define HPCS_PREM BIT(6) /*!< port resume */ +#define HPCS_PEDC BIT(3) /*!< port enable/disable change */ +#define HPCS_PE BIT(2) /*!< port enable */ +#define HPCS_PCD BIT(1) /*!< port connect detected */ +#define HPCS_PCST BIT(0) /*!< port connect status */ + +/* host channel-x control register bits definitions */ +#define HCHCTL_CEN BIT(31) /*!< channel enable */ +#define HCHCTL_CDIS BIT(30) /*!< channel disable */ +#define HCHCTL_ODDFRM BIT(29) /*!< odd frame */ +#define HCHCTL_DAR BITS(22, 28) /*!< device address */ +#define HCHCTL_MPC BITS(20, 21) /*!< multiple packet count */ +#define HCHCTL_EPTYPE BITS(18, 19) /*!< endpoint type */ +#define HCHCTL_LSD BIT(17) /*!< low-speed device */ +#define HCHCTL_EPDIR BIT(15) /*!< endpoint direction */ +#define HCHCTL_EPNUM BITS(11, 14) /*!< endpoint number */ +#define HCHCTL_MPL BITS(0, 10) /*!< maximum packet length */ + +/* host channel-x split transaction register bits definitions */ +#define HCHSTCTL_SPLEN BIT(31) /*!< enable high-speed split transaction */ +#define HCHSTCTL_CSPLT BIT(16) /*!< complete-split enable */ +#define HCHSTCTL_ISOPCE BITS(14, 15) /*!< isochronous OUT payload continuation encoding */ +#define HCHSTCTL_HADDR BITS(7, 13) /*!< HUB address */ +#define HCHSTCTL_PADDR BITS(0, 6) /*!< port address */ + +/* host channel-x interrupt flag register bits definitions */ +#define HCHINTF_DTER BIT(10) /*!< data toggle error */ +#define HCHINTF_REQOVR BIT(9) /*!< request queue overrun */ +#define HCHINTF_BBER BIT(8) /*!< babble error */ +#define HCHINTF_USBER BIT(7) /*!< USB bus Error */ +#define HCHINTF_NYET BIT(6) /*!< NYET */ +#define HCHINTF_ACK BIT(5) /*!< ACK */ +#define HCHINTF_NAK BIT(4) /*!< NAK */ +#define HCHINTF_STALL BIT(3) /*!< STALL */ +#define HCHINTF_DMAER BIT(2) /*!< DMA error */ +#define HCHINTF_CH BIT(1) /*!< channel halted */ +#define HCHINTF_TF BIT(0) /*!< transfer finished */ + +/* host channel-x interrupt enable register bits definitions */ +#define HCHINTEN_DTERIE BIT(10) /*!< data toggle error interrupt enable */ +#define HCHINTEN_REQOVRIE BIT(9) /*!< request queue overrun interrupt enable */ +#define HCHINTEN_BBERIE BIT(8) /*!< babble error interrupt enable */ +#define HCHINTEN_USBERIE BIT(7) /*!< USB bus error interrupt enable */ +#define HCHINTEN_NYETIE BIT(6) /*!< NYET interrupt enable */ +#define HCHINTEN_ACKIE BIT(5) /*!< ACK interrupt enable */ +#define HCHINTEN_NAKIE BIT(4) /*!< NAK interrupt enable */ +#define HCHINTEN_STALLIE BIT(3) /*!< STALL interrupt enable */ +#define HCHINTEN_DMAERIE BIT(2) /*!< DMA error interrupt enable */ +#define HCHINTEN_CHIE BIT(1) /*!< channel halted interrupt enable */ +#define HCHINTEN_TFIE BIT(0) /*!< transfer finished interrupt enable */ + +/* host channel-x transfer length register bits definitions */ +#define HCHLEN_PING BIT(31) /*!< PING token request */ +#define HCHLEN_DPID BITS(29, 30) /*!< data PID */ +#define HCHLEN_PCNT BITS(19, 28) /*!< packet count */ +#define HCHLEN_TLEN BITS(0, 18) /*!< transfer length */ + +/* host channel-x DMA address register bits definitions */ +#define HCHDMAADDR_DMAADDR BITS(0, 31) /*!< DMA address */ + + +#define PORT_SPEED(x) (((uint32_t)(x) << 17) & HPCS_PS) /*!< Port speed */ + +#define PORT_SPEED_HIGH PORT_SPEED(0U) /*!< high speed */ +#define PORT_SPEED_FULL PORT_SPEED(1U) /*!< full speed */ +#define PORT_SPEED_LOW PORT_SPEED(2U) /*!< low speed */ + +#define PIPE_CTL_DAR(x) (((uint32_t)(x) << 22) & HCHCTL_DAR) /*!< device address */ +#define PIPE_CTL_EPTYPE(x) (((uint32_t)(x) << 18) & HCHCTL_EPTYPE) /*!< endpoint type */ +#define PIPE_CTL_EPNUM(x) (((uint32_t)(x) << 11) & HCHCTL_EPNUM) /*!< endpoint number */ +#define PIPE_CTL_EPDIR(x) (((uint32_t)(x) << 15) & HCHCTL_EPDIR) /*!< endpoint direction */ +#define PIPE_CTL_EPMPL(x) (((uint32_t)(x) << 0) & HCHCTL_MPL) /*!< maximum packet length */ +#define PIPE_CTL_LSD(x) (((uint32_t)(x) << 17) & HCHCTL_LSD) /*!< low-Speed device */ + +#define PIPE_XFER_PCNT(x) (((uint32_t)(x) << 19) & HCHLEN_PCNT) /*!< packet count */ +#define PIPE_XFER_DPID(x) (((uint32_t)(x) << 29) & HCHLEN_DPID) /*!< data PID */ + +#define PIPE_DPID_DATA0 PIPE_XFER_DPID(0) /*!< DATA0 */ +#define PIPE_DPID_DATA1 PIPE_XFER_DPID(2) /*!< DATA1 */ +#define PIPE_DPID_DATA2 PIPE_XFER_DPID(1) /*!< DATA2 */ +#define PIPE_DPID_SETUP PIPE_XFER_DPID(3) /*!< MDATA (non-control)/SETUP (control) */ + +extern const uint32_t PIPE_DPID[2]; + +/* device configuration registers bits definitions */ +#define DCFG_EOPFT BITS(11, 12) /*!< end of periodic frame time */ +#define DCFG_DAR BITS(4, 10) /*!< device address */ +#define DCFG_NZLSOH BIT(2) /*!< non-zero-length status OUT handshake */ +#define DCFG_DS BITS(0, 1) /*!< device speed */ + +/* device control registers bits definitions */ +#define DCTL_POIF BIT(11) /*!< power-on initialization finished */ +#define DCTL_CGONAK BIT(10) /*!< clear global OUT NAK */ +#define DCTL_SGONAK BIT(9) /*!< set global OUT NAK */ +#define DCTL_CGINAK BIT(8) /*!< clear global IN NAK */ +#define DCTL_SGINAK BIT(7) /*!< set global IN NAK */ +#define DCTL_GONS BIT(3) /*!< global OUT NAK status */ +#define DCTL_GINS BIT(2) /*!< global IN NAK status */ +#define DCTL_SD BIT(1) /*!< soft disconnect */ +#define DCTL_RWKUP BIT(0) /*!< remote wakeup */ + +/* device status registers bits definitions */ +#define DSTAT_FNRSOF BITS(8, 21) /*!< the frame number of the received SOF. */ +#define DSTAT_ES BITS(1, 2) /*!< enumerated speed */ +#define DSTAT_SPST BIT(0) /*!< suspend status */ + +/* device IN endpoint common interrupt enable registers bits definitions */ +#define DIEPINTEN_NAKEN BIT(13) /*!< NAK handshake sent by USBHS interrupt enable bit */ +#define DIEPINTEN_TXFEEN BIT(7) /*!< transmit FIFO empty interrupt enable bit */ +#define DIEPINTEN_IEPNEEN BIT(6) /*!< IN endpoint NAK effective interrupt enable bit */ +#define DIEPINTEN_EPTXFUDEN BIT(4) /*!< endpoint Tx FIFO underrun interrupt enable bit */ +#define DIEPINTEN_CITOEN BIT(3) /*!< control In Timeout interrupt enable bit */ +#define DIEPINTEN_EPDISEN BIT(1) /*!< endpoint disabled interrupt enable bit */ +#define DIEPINTEN_TFEN BIT(0) /*!< transfer finished interrupt enable bit */ + +/* device OUT endpoint common interrupt enable registers bits definitions */ +#define DOEPINTEN_NYETEN BIT(14) /*!< NYET handshake is sent interrupt enable bit */ +#define DOEPINTEN_BTBSTPEN BIT(6) /*!< back-to-back SETUP packets interrupt enable bit */ +#define DOEPINTEN_EPRXFOVREN BIT(4) /*!< endpoint Rx FIFO overrun interrupt enable bit */ +#define DOEPINTEN_STPFEN BIT(3) /*!< SETUP phase finished interrupt enable bit */ +#define DOEPINTEN_EPDISEN BIT(1) /*!< endpoint disabled interrupt enable bit */ +#define DOEPINTEN_TFEN BIT(0) /*!< transfer finished interrupt enable bit */ + +/* device all endpoints interrupt registers bits definitions */ +#define DAEPINT_OEPITB BITS(16, 21) /*!< device all OUT endpoint interrupt bits */ +#define DAEPINT_IEPITB BITS(0, 5) /*!< device all IN endpoint interrupt bits */ + +/* device all endpoints interrupt enable registers bits definitions */ +#define DAEPINTEN_OEPIE BITS(16, 21) /*!< OUT endpoint interrupt enable */ +#define DAEPINTEN_IEPIE BITS(0, 3) /*!< IN endpoint interrupt enable */ + +/* device Vbus discharge time registers bits definitions */ +#define DVBUSDT_DVBUSDT BITS(0, 15) /*!< device VBUS discharge time */ + +/* device Vbus pulsing time registers bits definitions */ +#define DVBUSPT_DVBUSPT BITS(0, 11) /*!< device VBUS pulsing time */ + +/* device IN endpoint FIFO empty interrupt enable register bits definitions */ +#define DIEPFEINTEN_IEPTXFEIE BITS(0, 5) /*!< IN endpoint Tx FIFO empty interrupt enable bits */ + +/* device endpoint 0 control register bits definitions */ +#define DEP0CTL_EPEN BIT(31) /*!< endpoint enable */ +#define DEP0CTL_EPD BIT(30) /*!< endpoint disable */ +#define DEP0CTL_SNAK BIT(27) /*!< set NAK */ +#define DEP0CTL_CNAK BIT(26) /*!< clear NAK */ +#define DIEP0CTL_TXFNUM BITS(22, 25) /*!< tx FIFO number */ +#define DEP0CTL_STALL BIT(21) /*!< STALL handshake */ +#define DOEP0CTL_SNOOP BIT(20) /*!< snoop mode */ +#define DEP0CTL_EPTYPE BITS(18, 19) /*!< endpoint type */ +#define DEP0CTL_NAKS BIT(17) /*!< NAK status */ +#define DEP0CTL_EPACT BIT(15) /*!< endpoint active */ +#define DEP0CTL_MPL BITS(0, 1) /*!< maximum packet length */ + +/* device endpoint x control register bits definitions */ +#define DEPCTL_EPEN BIT(31) /*!< endpoint enable */ +#define DEPCTL_EPD BIT(30) /*!< endpoint disable */ +#define DEPCTL_SODDFRM BIT(29) /*!< set odd frame */ +#define DEPCTL_SD1PID BIT(29) /*!< set DATA1 PID */ +#define DEPCTL_SEVNFRM BIT(28) /*!< set even frame */ +#define DEPCTL_SD0PID BIT(28) /*!< set DATA0 PID */ +#define DEPCTL_SNAK BIT(27) /*!< set NAK */ +#define DEPCTL_CNAK BIT(26) /*!< clear NAK */ +#define DIEPCTL_TXFNUM BITS(22, 25) /*!< tx FIFO number */ +#define DEPCTL_STALL BIT(21) /*!< STALL handshake */ +#define DOEPCTL_SNOOP BIT(20) /*!< snoop mode */ +#define DEPCTL_EPTYPE BITS(18, 19) /*!< endpoint type */ +#define DEPCTL_NAKS BIT(17) /*!< NAK status */ +#define DEPCTL_EOFRM BIT(16) /*!< even/odd frame */ +#define DEPCTL_DPID BIT(16) /*!< endpoint data PID */ +#define DEPCTL_EPACT BIT(15) /*!< endpoint active */ +#define DEPCTL_MPL BITS(0, 10) /*!< maximum packet length */ + +/* device IN endpoint-x interrupt flag register bits definitions */ +#define DIEPINTF_NAK BIT(13) /*!< NAK handshake sent by USBHS */ +#define DIEPINTF_TXFE BIT(7) /*!< transmit FIFO empty */ +#define DIEPINTF_IEPNE BIT(6) /*!< IN endpoint NAK effective */ +#define DIEPINTF_EPTXFUD BIT(4) /*!< endpoint Tx FIFO underrun */ +#define DIEPINTF_CITO BIT(3) /*!< control In Timeout interrupt */ +#define DIEPINTF_EPDIS BIT(1) /*!< endpoint disabled */ +#define DIEPINTF_TF BIT(0) /*!< transfer finished */ + +/* device OUT endpoint-x interrupt flag register bits definitions */ +#define DOEPINTF_NYET BIT(14) /*!< NYET handshake is sent */ +#define DOEPINTF_BTBSTP BIT(6) /*!< back-to-back SETUP packets */ +#define DOEPINTF_EPRXFOVR BIT(4) /*!< endpoint Rx FIFO overrun */ +#define DOEPINTF_STPF BIT(3) /*!< SETUP phase finished */ +#define DOEPINTF_EPDIS BIT(1) /*!< endpoint disabled */ +#define DOEPINTF_TF BIT(0) /*!< transfer finished */ + +/* device IN endpoint 0 transfer length register bits definitions */ +#define DIEP0LEN_PCNT BITS(19, 20) /*!< packet count */ +#define DIEP0LEN_TLEN BITS(0, 6) /*!< transfer length */ + +/* device OUT endpoint 0 transfer length register bits definitions */ +#define DOEP0LEN_STPCNT BITS(29, 30) /*!< SETUP packet count */ +#define DOEP0LEN_PCNT BIT(19) /*!< packet count */ +#define DOEP0LEN_TLEN BITS(0, 6) /*!< transfer length */ + +/* device OUT endpoint-x transfer length register bits definitions */ +#define DOEPLEN_RXDPID BITS(29, 30) /*!< received data PID */ +#define DOEPLEN_STPCNT BITS(29, 30) /*!< SETUP packet count */ +#define DIEPLEN_MCNT BITS(29, 30) /*!< multi count */ +#define DEPLEN_PCNT BITS(19, 28) /*!< packet count */ +#define DEPLEN_TLEN BITS(0, 18) /*!< transfer length */ + +/* device IN endpoint-x DMA address register bits definitions */ +#define DIEPDMAADDR_DMAADDR BITS(0, 31) /*!< DMA address */ + +/* device OUT endpoint-x DMA address register bits definitions */ +#define DOEPDMAADDR_DMAADDR BITS(0, 31) /*!< DMA address */ + +/* device IN endpoint-x transmit FIFO status register bits definitions */ +#define DIEPTFSTAT_IEPTFS BITS(0, 15) /*!< IN endpoint Tx FIFO space remaining */ + +/* USB power and clock registers bits definition */ +#define PWRCLKCTL_SHCLK BIT(1) /*!< stop HCLK */ +#define PWRCLKCTL_SUCLK BIT(0) /*!< stop the USB clock */ + +#define RSTAT_GOUT_NAK 1U /* global OUT NAK (triggers an interrupt) */ +#define RSTAT_DATA_UPDT 2U /* OUT data packet received */ +#define RSTAT_XFER_COMP 3U /* OUT transfer completed (triggers an interrupt) */ +#define RSTAT_SETUP_COMP 4U /* SETUP transaction completed (triggers an interrupt) */ +#define RSTAT_SETUP_UPDT 6U /* SETUP data packet received */ + +#define DSTAT_EM_HS_PHY_30MHZ_60MHZ 0U /* USB enumerate speed use high-speed PHY clock in 30MHz or 60MHz */ +#define DSTAT_EM_FS_PHY_30MHZ_60MHZ 1U /* USB enumerate speed use full-speed PHY clock in 30MHz or 60MHz */ +#define DSTAT_EM_LS_PHY_6MHZ 2U /* USB enumerate speed use low-speed PHY clock in 6MHz */ +#define DSTAT_EM_FS_PHY_48MHZ 3U /* USB enumerate speed use full-speed PHY clock in 48MHz */ + +#define DPID_DATA0 0U /* device endpoint data PID is DATA0 */ +#define DPID_DATA1 2U /* device endpoint data PID is DATA1 */ +#define DPID_DATA2 1U /* device endpoint data PID is DATA2 */ +#define DPID_MDATA 3U /* device endpoint data PID is MDATA */ + +#define GAHBCS_DMAINCR(regval) (GAHBCS_BURST & ((regval) << 1)) /*!< AHB burst type used by DMA*/ + +#define DMA_INCR0 GAHBCS_DMAINCR(0U) /*!< single burst type used by DMA*/ +#define DMA_INCR1 GAHBCS_DMAINCR(1U) /*!< 4-beat incrementing burst type used by DMA*/ +#define DMA_INCR4 GAHBCS_DMAINCR(3U) /*!< 8-beat incrementing burst type used by DMA*/ +#define DMA_INCR8 GAHBCS_DMAINCR(5U) /*!< 16-beat incrementing burst type used by DMA*/ +#define DMA_INCR16 GAHBCS_DMAINCR(7U) /*!< 32-beat incrementing burst type used by DMA*/ + +#define DCFG_PFRI(regval) (DCFG_EOPFT & ((regval) << 11)) /*!< end of periodic frame time configuration */ + +#define FRAME_INTERVAL_80 DCFG_PFRI(0U) /*!< 80% of the frame time */ +#define FRAME_INTERVAL_85 DCFG_PFRI(1U) /*!< 85% of the frame time */ +#define FRAME_INTERVAL_90 DCFG_PFRI(2U) /*!< 90% of the frame time */ +#define FRAME_INTERVAL_95 DCFG_PFRI(3U) /*!< 95% of the frame time */ + +#define DCFG_DEVSPEED(regval) (DCFG_DS & ((regval) << 0)) /*!< device speed configuration */ + +#define USB_SPEED_EXP_HIGH DCFG_DEVSPEED(0U) /*!< device external PHY high speed */ +#define USB_SPEED_EXP_FULL DCFG_DEVSPEED(1U) /*!< device external PHY full speed */ +#define USB_SPEED_INP_FULL DCFG_DEVSPEED(3U) /*!< device internal PHY full speed */ + +#define DEP0_MPL(regval) (DEP0CTL_MPL & ((regval) << 0)) /*!< maximum packet length configuration */ + +#define EP0MPL_64 DEP0_MPL(0U) /*!< maximum packet length 64 bytes */ +#define EP0MPL_32 DEP0_MPL(1U) /*!< maximum packet length 32 bytes */ +#define EP0MPL_16 DEP0_MPL(2U) /*!< maximum packet length 16 bytes */ +#define EP0MPL_8 DEP0_MPL(3U) /*!< maximum packet length 8 bytes */ + +#define DOEP0_TLEN(regval) (DOEP0LEN_TLEN & ((regval) << 0)) /*!< transfer length */ +#define DOEP0_PCNT(regval) (DOEP0LEN_PCNT & ((regval) << 19)) /*!< packet count */ +#define DOEP0_STPCNT(regval) (DOEP0LEN_STPCNT & ((regval) << 29)) /*!< SETUP packet count */ + +#define USB_ULPI_PHY 1U /*!< ULPI interface external PHY */ +#define USB_EMBEDDED_PHY 2U /*!< embedded PHY */ + +#define GRXSTS_PKTSTS_IN 2U +#define GRXSTS_PKTSTS_IN_XFER_COMP 3U +#define GRXSTS_PKTSTS_DATA_TOGGLE_ERR 5U +#define GRXSTS_PKTSTS_CH_HALTED 7U + +#define HCTL_30_60MHZ 0U /*!< USB clock 30-60MHZ */ +#define HCTL_48MHZ 1U /*!< USB clock 48MHZ */ +#define HCTL_6MHZ 2U /*!< USB clock 6MHZ */ + +#define EP0_OUT ((uint8_t)0x00) /*!< endpoint out 0 */ +#define EP0_IN ((uint8_t)0x80) /*!< endpoint in 0 */ +#define EP1_OUT ((uint8_t)0x01) /*!< endpoint out 1 */ +#define EP1_IN ((uint8_t)0x81) /*!< endpoint in 1 */ +#define EP2_OUT ((uint8_t)0x02) /*!< endpoint out 2 */ +#define EP2_IN ((uint8_t)0x82) /*!< endpoint in 2 */ +#define EP3_OUT ((uint8_t)0x03) /*!< endpoint out 3 */ +#define EP3_IN ((uint8_t)0x83) /*!< endpoint in 3 */ + +#endif /* __DRV_USB_REGS_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usbd_int.c b/Marlin/lib/GD32F4xx_usb_library/src/drv_usbd_int.c new file mode 100644 index 0000000000..34ac190c6b --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/drv_usbd_int.c @@ -0,0 +1,587 @@ +/*! + \file drv_usbd_int.c + \brief USB device mode interrupt routines + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gdusbd_conf.h" +#include "drv_usbd_int.h" +#include "gdusbd_transc.h" + +static uint32_t usbd_int_epout (usb_core_driver *udev); +static uint32_t usbd_int_epin (usb_core_driver *udev); +static uint32_t usbd_int_rxfifo (usb_core_driver *udev); +static uint32_t usbd_int_reset (usb_core_driver *udev); +static uint32_t usbd_int_enumfinish (usb_core_driver *udev); +static uint32_t usbd_int_suspend (usb_core_driver *udev); + +static uint32_t usbd_emptytxfifo_write (usb_core_driver *udev, uint32_t ep_num); + +static const uint8_t USB_SPEED[4] = { + [DSTAT_EM_HS_PHY_30MHZ_60MHZ] = (uint8_t)USB_SPEED_HIGH, + [DSTAT_EM_FS_PHY_30MHZ_60MHZ] = (uint8_t)USB_SPEED_FULL, + [DSTAT_EM_FS_PHY_48MHZ] = (uint8_t)USB_SPEED_FULL, + [DSTAT_EM_LS_PHY_6MHZ] = (uint8_t)USB_SPEED_LOW +}; + +/*! + \brief USB device-mode interrupts global service routine handler + \param[in] udev: pointer to USB device instance + \param[out] none + \retval none +*/ +void usbd_isr (usb_core_driver *udev) +{ + if (HOST_MODE != (udev->regs.gr->GINTF & GINTF_COPM)) { + uint32_t intr = udev->regs.gr->GINTF & udev->regs.gr->GINTEN; + + /* there are no interrupts, avoid spurious interrupt */ + if (!intr) { + return; + } + + /* OUT endpoints interrupts */ + if (intr & GINTF_OEPIF) { + (void)usbd_int_epout (udev); + } + + /* IN endpoints interrupts */ + if (intr & GINTF_IEPIF) { + (void)usbd_int_epin (udev); + } + + /* suspend interrupt */ + if (intr & GINTF_SP) { + (void)usbd_int_suspend (udev); + } + + /* wakeup interrupt */ + if (intr & GINTF_WKUPIF) { + /* inform upper layer by the resume event */ + udev->dev.cur_status = USBD_CONFIGURED; + + /* clear interrupt */ + udev->regs.gr->GINTF = GINTF_WKUPIF; + } + + /* start of frame interrupt */ + if (intr & GINTF_SOF) { + if (udev->dev.class_core->SOF) { + (void)udev->dev.class_core->SOF(udev); + } + + /* clear interrupt */ + udev->regs.gr->GINTF = GINTF_SOF; + } + + /* receive FIFO not empty interrupt */ + if (intr & GINTF_RXFNEIF) { + (void)usbd_int_rxfifo (udev); + } + + /* USB reset interrupt */ + if (intr & GINTF_RST) { + (void)usbd_int_reset (udev); + } + + /* enumeration has been done interrupt */ + if (intr & GINTF_ENUMFIF) { + (void)usbd_int_enumfinish (udev); + } + + /* incomplete synchronization IN transfer interrupt*/ + if (intr & GINTF_ISOINCIF) { + if (NULL != udev->dev.class_core->incomplete_isoc_in) { + (void)udev->dev.class_core->incomplete_isoc_in(udev); + } + + /* Clear interrupt */ + udev->regs.gr->GINTF = GINTF_ISOINCIF; + } + + /* incomplete synchronization OUT transfer interrupt*/ + if (intr & GINTF_ISOONCIF) { + if (NULL != udev->dev.class_core->incomplete_isoc_out) { + (void)udev->dev.class_core->incomplete_isoc_out(udev); + } + + /* clear interrupt */ + udev->regs.gr->GINTF = GINTF_ISOONCIF; + } + +#ifdef VBUS_SENSING_ENABLED + + /* session request interrupt */ + if (intr & GINTF_SESIF) { + udev->regs.gr->GINTF = GINTF_SESIF; + } + + /* OTG mode interrupt */ + if (intr & GINTF_OTGIF) { + if(udev->regs.gr->GOTGINTF & GOTGINTF_SESEND) { + + } + + /* clear OTG interrupt */ + udev->regs.gr->GINTF = GINTF_OTGIF; + } +#endif /* VBUS_SENSING_ENABLED */ + } +} + +#ifdef USB_HS_DEDICATED_EP1_ENABLED + +/*! + \brief USB dedicated OUT endpoint 1 interrupt service routine handler + \param[in] udev: pointer to USB device instance + \param[out] none + \retval operation status +*/ +uint32_t usbd_int_dedicated_ep1out (usb_core_driver *udev) +{ + uint32_t oepintr = 0U; + uint32_t oeplen = 0U; + + oepintr = udev->regs.er_out[1]->DOEPINTF; + oepintr &= udev->regs.dr->DOEP1INTEN; + + /* transfer complete */ + if(oepintr & DOEPINTF_TF){ + /* clear the bit in DOEPINTn for this interrupt */ + udev->regs.er_out[1]->DOEPINTF = DOEPINTF_TF; + + if(USB_USE_DMA == udev->bp.transfer_mode){ + oeplen = udev->regs.er_out[1]->DOEPLEN; + + /* to do : handle more than one single max packet size packet */ + udev->dev.transc_out[1].xfer_count = udev->dev.transc_out[1].max_len - \ + (oeplen & DEPLEN_TLEN); + } + + /* rx complete */ + usbd_out_transc (udev, 1U); + } + + return 1U; +} + +/*! + \brief USB dedicated IN endpoint 1 interrupt service routine handler + \param[in] udev: pointer to USB device instance + \param[out] none + \retval operation status +*/ +uint32_t usbd_int_dedicated_ep1in (usb_core_driver *udev) +{ + uint32_t inten, intr, emptyen; + + inten = udev->regs.dr->DIEP1INTEN; + emptyen = udev->regs.dr->DIEPFEINTEN; + + inten |= ((emptyen >> 1 ) & 0x1) << 7; + + intr = udev->regs.er_in[1]->DIEPINTF & inten; + + if(intr & DIEPINTF_TF){ + udev->regs.dr->DIEPFEINTEN &= ~(0x1 << 1); + + udev->regs.er_in[1]->DIEPINTF = DIEPINTF_TF; + + /* TX complete */ + usbd_in_transc (udev, 1); + } + + if(intr & DIEPINTF_TXFE){ + usbd_emptytxfifo_write(udev, 1); + + udev->regs.er_in[1]->DIEPINTF = DIEPINTF_TXFE; + } + + return 1; +} + +#endif + +/*! + \brief indicates that an OUT endpoint has a pending interrupt + \param[in] udev: pointer to USB device instance + \param[out] none + \retval operation status +*/ +static uint32_t usbd_int_epout (usb_core_driver *udev) +{ + uint32_t epintnum = 0U; + uint8_t ep_num = 0U; + + for (epintnum = usb_oepintnum_read (udev); epintnum; epintnum >>= 1, ep_num++) { + if (epintnum & 0x01U) { + __IO uint32_t oepintr = usb_oepintr_read (udev, ep_num); + + /* transfer complete interrupt */ + if (oepintr & DOEPINTF_TF) { + /* clear the bit in DOEPINTF for this interrupt */ + udev->regs.er_out[ep_num]->DOEPINTF = DOEPINTF_TF; + + if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { + __IO uint32_t eplen = udev->regs.er_out[ep_num]->DOEPLEN; + + udev->dev.transc_out[ep_num].xfer_count = udev->dev.transc_out[ep_num].max_len - \ + (eplen & DEPLEN_TLEN); + } + + /* inform upper layer: data ready */ + (void)usbd_out_transc (udev, ep_num); + + if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { + if ((0U == ep_num) && ((uint8_t)USB_CTL_STATUS_OUT == udev->dev.control.ctl_state)) { + usb_ctlep_startout (udev); + } + } + } + + /* setup phase finished interrupt (control endpoints) */ + if (oepintr & DOEPINTF_STPF) { + /* inform the upper layer that a setup packet is available */ + (void)usbd_setup_transc (udev); + + udev->regs.er_out[ep_num]->DOEPINTF = DOEPINTF_STPF; + } + } + } + + return 1U; +} + +/*! + \brief indicates that an IN endpoint has a pending interrupt + \param[in] udev: pointer to USB device instance + \param[out] none + \retval operation status +*/ +static uint32_t usbd_int_epin (usb_core_driver *udev) +{ + uint32_t epintnum = 0U; + uint8_t ep_num = 0U; + + for (epintnum = usb_iepintnum_read (udev); epintnum; epintnum >>= 1, ep_num++) { + if (epintnum & 0x1U) { + __IO uint32_t iepintr = usb_iepintr_read (udev, ep_num); + + if (iepintr & DIEPINTF_TF) { + udev->regs.er_in[ep_num]->DIEPINTF = DIEPINTF_TF; + + /* data transmission is completed */ + (void)usbd_in_transc (udev, ep_num); + + if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { + if ((0U == ep_num) && ((uint8_t)USB_CTL_STATUS_IN == udev->dev.control.ctl_state)) { + usb_ctlep_startout (udev); + } + } + } + + if (iepintr & DIEPINTF_TXFE) { + usbd_emptytxfifo_write (udev, (uint32_t)ep_num); + + udev->regs.er_in[ep_num]->DIEPINTF = DIEPINTF_TXFE; + } + } + } + + return 1U; +} + +/*! + \brief handle the RX status queue level interrupt + \param[in] udev: pointer to USB device instance + \param[out] none + \retval operation status +*/ +static uint32_t usbd_int_rxfifo (usb_core_driver *udev) +{ + usb_transc *transc = NULL; + + uint8_t data_PID = 0U; + uint32_t bcount = 0U; + + __IO uint32_t devrxstat = 0U; + + /* disable the Rx status queue non-empty interrupt */ + udev->regs.gr->GINTEN &= ~GINTEN_RXFNEIE; + + /* get the status from the top of the FIFO */ + devrxstat = udev->regs.gr->GRSTATP; + + uint8_t ep_num = (uint8_t)(devrxstat & GRSTATRP_EPNUM); + + transc = &udev->dev.transc_out[ep_num]; + + bcount = (devrxstat & GRSTATRP_BCOUNT) >> 4U; + data_PID = (uint8_t)((devrxstat & GRSTATRP_DPID) >> 15U); + +#ifdef USE_USB_HS + #ifndef USE_450Z_EVAL + /* ensure no-DMA mode can work */ + if ((1U == ep_num) && (0U == (udev->regs.er_out[ep_num]->DOEPLEN & DEPLEN_PCNT))) { + uint32_t devepctl = udev->regs.er_out[ep_num]->DOEPCTL; + + devepctl |= DEPCTL_SNAK; + devepctl &= ~DEPCTL_EPEN; + devepctl &= ~DEPCTL_EPD; + + udev->regs.er_out[ep_num]->DOEPCTL = devepctl; + } + #endif /* USE_450Z_EVAL */ +#endif /* USE_USB_HS */ + + switch ((devrxstat & GRSTATRP_RPCKST) >> 17U) { + case RSTAT_GOUT_NAK: + break; + + case RSTAT_DATA_UPDT: + if (bcount > 0U) { + (void)usb_rxfifo_read (&udev->regs, transc->xfer_buf, (uint16_t)bcount); + + transc->xfer_buf += bcount; + transc->xfer_count += bcount; + } + break; + + case RSTAT_XFER_COMP: + /* trigger the OUT endpoint interrupt */ + break; + + case RSTAT_SETUP_COMP: + /* trigger the OUT endpoint interrupt */ + break; + + case RSTAT_SETUP_UPDT: + if ((0U == transc->ep_addr.num) && (8U == bcount) && (DPID_DATA0 == data_PID)) { + /* copy the setup packet received in FIFO into the setup buffer in RAM */ + (void)usb_rxfifo_read (&udev->regs, (uint8_t *)&udev->dev.control.req, (uint16_t)bcount); + + transc->xfer_count += bcount; + } + break; + + default: + break; + } + + /* enable the Rx status queue level interrupt */ + udev->regs.gr->GINTEN |= GINTEN_RXFNEIE; + + return 1U; +} + +/*! + \brief handle USB reset interrupt + \param[in] udev: pointer to USB device instance + \param[out] none + \retval status +*/ +static uint32_t usbd_int_reset (usb_core_driver *udev) +{ + uint32_t i; + + /* clear the remote wakeup signaling */ + udev->regs.dr->DCTL &= ~DCTL_RWKUP; + + /* flush the TX FIFO */ + (void)usb_txfifo_flush (&udev->regs, 0U); + + for (i = 0U; i < udev->bp.num_ep; i++) { + udev->regs.er_in[i]->DIEPINTF = 0xFFU; + udev->regs.er_out[i]->DOEPINTF = 0xFFU; + } + + /* clear all pending device endpoint interrupts */ + udev->regs.dr->DAEPINT = 0xFFFFFFFFU; + + /* enable endpoint 0 interrupts */ + udev->regs.dr->DAEPINTEN = 1U | (1U << 16U); + + /* enable OUT endpoint interrupts */ + udev->regs.dr->DOEPINTEN = DOEPINTEN_STPFEN | DOEPINTEN_TFEN; + +#ifdef USB_HS_DEDICATED_EP1_ENABLED + udev->regs.dr->DOEP1INTEN = DOEPINTEN_STPFEN | DOEPINTEN_TFEN; +#endif + + /* enable IN endpoint interrupts */ + udev->regs.dr->DIEPINTEN = DIEPINTEN_TFEN; + +#ifdef USB_HS_DEDICATED_EP1_ENABLED + udev->regs.dr->DIEP1INTEN = DIEPINTEN_TFEN; +#endif + + /* reset device address */ + udev->regs.dr->DCFG &= ~DCFG_DAR; + + /* configure endpoint 0 to receive SETUP packets */ + usb_ctlep_startout (udev); + + /* clear USB reset interrupt */ + udev->regs.gr->GINTF = GINTF_RST; + + udev->dev.transc_out[0] = (usb_transc) { + .ep_type = USB_EPTYPE_CTRL, + .max_len = USB_FS_EP0_MAX_LEN + }; + + (void)usb_transc_active (udev, &udev->dev.transc_out[0]); + + udev->dev.transc_in[0] = (usb_transc) { + .ep_addr = { + .dir = 1U + }, + + .ep_type = USB_EPTYPE_CTRL, + .max_len = USB_FS_EP0_MAX_LEN + }; + + (void)usb_transc_active (udev, &udev->dev.transc_in[0]); + + /* upon reset call user call back */ + udev->dev.cur_status = (uint8_t)USBD_DEFAULT; + + return 1U; +} + +/*! + \brief handle USB speed enumeration finish interrupt + \param[in] udev: pointer to USB device instance + \param[out] none + \retval status +*/ +static uint32_t usbd_int_enumfinish (usb_core_driver *udev) +{ + uint8_t enum_speed = (uint8_t)((udev->regs.dr->DSTAT & DSTAT_ES) >> 1U); + + udev->regs.dr->DCTL &= ~DCTL_CGINAK; + udev->regs.dr->DCTL |= DCTL_CGINAK; + + udev->regs.gr->GUSBCS &= ~GUSBCS_UTT; + + /* set USB turn-around time based on device speed and PHY interface */ + if (USB_SPEED[enum_speed] == (uint8_t)USB_SPEED_HIGH) { + udev->bp.core_speed = (uint8_t)USB_SPEED_HIGH; + + udev->regs.gr->GUSBCS |= 0x09U << 10U; + } else { + udev->bp.core_speed = (uint8_t)USB_SPEED_FULL; + + udev->regs.gr->GUSBCS |= 0x05U << 10U; + } + + /* clear interrupt */ + udev->regs.gr->GINTF = GINTF_ENUMFIF; + + return 1U; +} + +/*! + \brief USB suspend interrupt handler + \param[in] udev: pointer to USB device instance + \param[out] none + \retval operation status +*/ +static uint32_t usbd_int_suspend (usb_core_driver *udev) +{ + __IO uint8_t low_power = udev->bp.low_power; + __IO uint8_t suspend = (uint8_t)(udev->regs.dr->DSTAT & DSTAT_SPST); + __IO uint8_t is_configured = (udev->dev.cur_status == (uint8_t)USBD_CONFIGURED)? 1U : 0U; + + udev->dev.backup_status = udev->dev.cur_status; + udev->dev.cur_status = (uint8_t)USBD_SUSPENDED; + + if (low_power && suspend && is_configured) { + /* switch-off the OTG clocks */ + *udev->regs.PWRCLKCTL |= PWRCLKCTL_SUCLK | PWRCLKCTL_SHCLK; + + /* enter DEEP_SLEEP mode with LDO in low power mode */ + // pmu_to_deepsleepmode(PMU_LDO_LOWPOWER, WFI_CMD); + } + + /* clear interrupt */ + udev->regs.gr->GINTF = GINTF_SP; + + return 1U; +} + +/*! + \brief check FIFO for the next packet to be loaded + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint identifier which is in (0..3) + \param[out] none + \retval status +*/ +static uint32_t usbd_emptytxfifo_write (usb_core_driver *udev, uint32_t ep_num) +{ + uint32_t len; + uint32_t word_count; + + usb_transc *transc = &udev->dev.transc_in[ep_num]; + + len = transc->xfer_len - transc->xfer_count; + + /* get the data length to write */ + if (len > transc->max_len) { + len = transc->max_len; + } + + word_count = (len + 3U) / 4U; + + while (((udev->regs.er_in[ep_num]->DIEPTFSTAT & DIEPTFSTAT_IEPTFS) >= word_count) && \ + (transc->xfer_count < transc->xfer_len)) { + len = transc->xfer_len - transc->xfer_count; + + if (len > transc->max_len) { + len = transc->max_len; + } + + /* write FIFO in word(4bytes) */ + word_count = (len + 3U) / 4U; + + /* write the FIFO */ + (void)usb_txfifo_write (&udev->regs, transc->xfer_buf, (uint8_t)ep_num, (uint16_t)len); + + transc->xfer_buf += len; + transc->xfer_count += len; + + if (transc->xfer_count == transc->xfer_len) { + /* disable the device endpoint FIFO empty interrupt */ + udev->regs.dr->DIEPFEINTEN &= ~(0x01U << ep_num); + } + } + + return 1U; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usbd_int.h b/Marlin/lib/GD32F4xx_usb_library/src/drv_usbd_int.h new file mode 100644 index 0000000000..b98f349a79 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/drv_usbd_int.h @@ -0,0 +1,52 @@ +/*! + \file drv_usbd_int.h + \brief USB device mode interrupt header file + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __DRV_USBD_INT_H +#define __DRV_USBD_INT_H + +#include "drv_usb_core.h" +#include "drv_usb_dev.h" + +/* function declarations */ +/* USB device-mode interrupts global service routine handler */ +void usbd_isr (usb_core_driver *udev); + +#ifdef USB_HS_DEDICATED_EP1_ENABLED +/* USB dedicated IN endpoint 1 interrupt service routine handler */ +uint32_t usbd_int_dedicated_ep1in (usb_core_driver *udev); +/* USB dedicated OUT endpoint 1 interrupt service routine handler */ +uint32_t usbd_int_dedicated_ep1out (usb_core_driver *udev); +#endif /* USB_HS_DEDICATED_EP1_ENABLED */ + +#endif /* __DRV_USBD_INT_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usbh_int.c b/Marlin/lib/GD32F4xx_usb_library/src/drv_usbh_int.c new file mode 100644 index 0000000000..285d041b05 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/drv_usbh_int.c @@ -0,0 +1,622 @@ +/*! + \file drv_usbh_int.c + \brief USB host mode interrupt handler file + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "drv_usb_core.h" +#include "drv_usb_host.h" +#include "drv_usbh_int.h" +#include "gdusbh_core.h" + +#if defined (__CC_ARM) /*!< ARM compiler */ + #pragma O0 +#elif defined (__GNUC__) /*!< GNU compiler */ + #pragma GCC optimize ("O0") +#elif defined (__TASKING__) /*!< TASKING compiler */ + #pragma optimize=0 +#endif /* __CC_ARM */ + +/* local function prototypes ('static') */ +static uint32_t usbh_int_port (usb_core_driver *udev); +static uint32_t usbh_int_pipe (usb_core_driver *udev); +static uint32_t usbh_int_pipe_in (usb_core_driver *udev, uint32_t pp_num); +static uint32_t usbh_int_pipe_out (usb_core_driver *udev, uint32_t pp_num); +static uint32_t usbh_int_rxfifonoempty (usb_core_driver *udev); +static uint32_t usbh_int_txfifoempty (usb_core_driver *udev, usb_pipe_mode pp_mode); + +/*! + \brief handle global host interrupt + \param[in] udev: pointer to USB core instance + \param[out] none + \retval operation status +*/ +uint32_t usbh_isr (usb_core_driver *udev) +{ + uint32_t retval = 0U; + + __IO uint32_t intr = 0U; + + /* check if host mode */ + if (HOST_MODE == (udev->regs.gr->GINTF & GINTF_COPM)) { + intr = usb_coreintr_get(&udev->regs); + + if (!intr) { + return 0U; + } + + if (intr & GINTF_SOF) { + usbh_int_fop->SOF(udev->host.data); + + /* clear interrupt */ + udev->regs.gr->GINTF = GINTF_SOF; + } + + if (intr & GINTF_RXFNEIF) { + retval |= usbh_int_rxfifonoempty (udev); + } + + if (intr & GINTF_NPTXFEIF) { + retval |= usbh_int_txfifoempty (udev, PIPE_NON_PERIOD); + } + + if (intr & GINTF_PTXFEIF) { + retval |= usbh_int_txfifoempty (udev, PIPE_PERIOD); + } + + if (intr & GINTF_HCIF) { + retval |= usbh_int_pipe (udev); + } + + if (intr & GINTF_HPIF) { + retval |= usbh_int_port (udev); + } + + if (intr & GINTF_DISCIF) { + usbh_int_fop->disconnect(udev->host.data); + + /* clear interrupt */ + udev->regs.gr->GINTF = GINTF_DISCIF; + } + + if (intr & GINTF_ISOONCIF) { + udev->regs.pr[0]->HCHCTL |= HCHCTL_CEN | HCHCTL_CDIS; + + /* clear interrupt */ + udev->regs.gr->GINTF = GINTF_ISOONCIF; + } + + if (intr & GINTF_SESIF) { + usb_portvbus_switch (udev, 1U); + + udev->regs.gr->GINTF = GINTF_SESIF; + } + + if (intr & GINTF_WKUPIF) { + /* clear interrupt */ + udev->regs.gr->GINTF = GINTF_WKUPIF; + } + } + + return retval; +} + +/*! + \brief handle USB pipe halt + \param[in] udev: pointer to USB core instance + \param[in] pp_num: pp_num: host channel number which is in (0..7) + \param[in] pp_int: pipe interrupt + \param[in] pp_status: pipe status + \param[out] none + \retval none +*/ +static inline void usb_pp_halt (usb_core_driver *udev, + uint8_t pp_num, + uint32_t pp_int, + usb_pipe_staus pp_status) +{ + udev->regs.pr[pp_num]->HCHINTEN |= HCHINTEN_CHIE; + + usb_pipe_halt(udev, pp_num); + + udev->regs.pr[pp_num]->HCHINTF = pp_int; + + udev->host.pipe[pp_num].pp_status = pp_status; +} + +/*! + \brief handle the host port interrupt + \param[in] udev: pointer to USB device instance + \param[out] none + \retval operation status +*/ +#if defined (__ICCARM__) /*!< IAR compiler */ + #pragma optimize = none +#endif /* __ICCARM */ +static uint32_t usbh_int_port (usb_core_driver *udev) +{ + uint32_t retval = 0U; + + /* note: when the USB PHY use USB HS PHY, the flag is needed */ + uint8_t port_reset = 0U; + + __IO uint32_t port_state = *udev->regs.HPCS; + + /* clear the interrupt bits in GINTSTS */ + port_state &= ~(HPCS_PE | HPCS_PCD | HPCS_PEDC); + + /* port connect detected */ + if (*udev->regs.HPCS & HPCS_PCD) { + port_state |= HPCS_PCD; + + usbh_int_fop->connect(udev->host.data); + + retval |= 1U; + } + + /* port enable changed */ + if (*udev->regs.HPCS & HPCS_PEDC) { + port_state |= HPCS_PEDC; + + if (*udev->regs.HPCS & HPCS_PE) { + uint32_t port_speed = usb_curspeed_get(udev); + uint32_t clock_type = udev->regs.hr->HCTL & HCTL_CLKSEL; + + udev->host.connect_status = 1U; + + if (PORT_SPEED_LOW == port_speed) { + udev->regs.hr->HFT = 6000U; + + if (HCTL_6MHZ != clock_type) { + if (USB_EMBEDDED_PHY == udev->bp.phy_itf) { + usb_phyclock_config (udev, HCTL_6MHZ); + } + + port_reset = 1U; + } + } else if (PORT_SPEED_FULL == port_speed) { + udev->regs.hr->HFT = 48000U; + + if (HCTL_48MHZ != clock_type) { + usb_phyclock_config (udev, HCTL_48MHZ); + } + + port_reset = 1U; + } else { + /* for high speed device and others */ + port_reset = 1U; + } + + usbh_int_fop->port_enabled(udev->host.data); + + udev->regs.gr->GINTEN |= GINTEN_DISCIE | GINTEN_SOFIE; + } else { + usbh_int_fop->port_disabled(udev->host.data); + } + } + + if (port_reset) { + usb_port_reset(udev); + } + + /* clear port interrupts */ + *udev->regs.HPCS = port_state; + + return retval; +} + +/*! + \brief handle all host channels interrupt + \param[in] udev: pointer to USB device instance + \param[out] none + \retval operation status +*/ +static uint32_t usbh_int_pipe (usb_core_driver *udev) +{ + uint32_t pp_num = 0U; + uint32_t retval = 0U; + + for (pp_num = 0U; pp_num < udev->bp.num_pipe; pp_num++) { + if ((udev->regs.hr->HACHINT & HACHINT_HACHINT) & (1UL << pp_num)) { + if (udev->regs.pr[pp_num]->HCHCTL & HCHCTL_EPDIR) { + retval |= usbh_int_pipe_in (udev, pp_num); + } else { + retval |= usbh_int_pipe_out (udev, pp_num); + } + } + } + + return retval; +} + +/*! + \brief handle the IN channel interrupt + \param[in] udev: pointer to USB device instance + \param[in] pp_num: host channel number which is in (0..7) + \param[out] none + \retval operation status +*/ +#if defined (__ICCARM__) /*!< IAR compiler */ + #pragma optimize = none +#endif /* __ICCARM */ +static uint32_t usbh_int_pipe_in (usb_core_driver *udev, uint32_t pp_num) +{ + usb_pr *pp_reg = udev->regs.pr[pp_num]; + + usb_pipe *pp = &udev->host.pipe[pp_num]; + + __IO uint32_t intr_pp = pp_reg->HCHINTF & pp_reg->HCHINTEN; + + uint8_t ep_type = (uint8_t)((pp_reg->HCHCTL & HCHCTL_EPTYPE) >> 18U); + + if (intr_pp & HCHINTF_ACK) { + pp_reg->HCHINTF = HCHINTF_ACK; + } else if (intr_pp & HCHINTF_STALL) { + usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_STALL, PIPE_STALL); + pp_reg->HCHINTF = HCHINTF_NAK; + + /* note: When there is a 'STALL', reset also NAK, + else, the udev->host.pp_status = HC_STALL + will be overwritten by 'NAK' in code below */ + intr_pp &= ~HCHINTF_NAK; + } else if (intr_pp & HCHINTF_DTER) { + usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_DTER, PIPE_DTGERR); + pp_reg->HCHINTF = HCHINTF_NAK; + } else { + /* no operation */ + } + + if (intr_pp & HCHINTF_REQOVR) { + usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_REQOVR, PIPE_REQOVR); + } else if (intr_pp & HCHINTF_TF) { + if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { + udev->host.backup_xfercount[pp_num] = pp->xfer_len - (pp_reg->HCHLEN & HCHLEN_TLEN); + } + + pp->pp_status = PIPE_XF; + pp->err_count = 0U; + + pp_reg->HCHINTF = HCHINTF_TF; + + switch (ep_type) { + case USB_EPTYPE_CTRL: + case USB_EPTYPE_BULK: + usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_NAK, PIPE_XF); + + pp->data_toggle_in ^= 1U; + break; + + case USB_EPTYPE_INTR: + case USB_EPTYPE_ISOC: + pp_reg->HCHCTL |= HCHCTL_ODDFRM; + pp->urb_state = GD_URB_DONE; + break; + + default: + break; + } + } else if (intr_pp & HCHINTF_CH) { + pp_reg->HCHINTEN &= ~HCHINTEN_CHIE; + + switch (pp->pp_status) { + case PIPE_XF: + pp->urb_state = GD_URB_DONE; + break; + + case PIPE_STALL: + pp->urb_state = GD_URB_STALL; + break; + + case PIPE_TRACERR: + case PIPE_DTGERR: + pp->err_count = 0U; + pp->urb_state = GD_URB_ERROR; + + pp->data_toggle_in ^= 1U; + break; + + case PIPE_IDLE: + case PIPE_HALTED: + case PIPE_NAK: + case PIPE_NYET: + case PIPE_BBERR: + case PIPE_REQOVR: + default: + if((uint8_t)USB_EPTYPE_INTR == ep_type) { + pp->data_toggle_in ^= 1U; + } + break; + } + + pp_reg->HCHINTF = HCHINTF_CH; + } else if (intr_pp & HCHINTF_USBER) { + pp->err_count++; + usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_USBER, PIPE_TRACERR); + } else if (intr_pp & HCHINTF_NAK) { + switch (ep_type) { + case USB_EPTYPE_CTRL: + case USB_EPTYPE_BULK: + /* re-activate the channel */ + pp_reg->HCHCTL = (pp_reg->HCHCTL | HCHCTL_CEN) & ~HCHCTL_CDIS; + break; + + case USB_EPTYPE_INTR: + pp_reg->HCHINTEN |= HCHINTEN_CHIE; + + (void)usb_pipe_halt(udev, (uint8_t)pp_num); + break; + + default: + break; + } + + pp->pp_status = PIPE_NAK; + + pp_reg->HCHINTF = HCHINTF_NAK; + } else { + /* no operation */ + } + + return 1U; +} + +/*! + \brief handle the OUT channel interrupt + \param[in] udev: pointer to USB device instance + \param[in] pp_num: host channel number which is in (0..7) + \param[out] none + \retval operation status +*/ +#if defined (__ICCARM__) /*!< IAR compiler */ + #pragma optimize = none +#endif /* __ICCARM */ +static uint32_t usbh_int_pipe_out (usb_core_driver *udev, uint32_t pp_num) +{ + usb_pr *pp_reg = udev->regs.pr[pp_num]; + + usb_pipe *pp = &udev->host.pipe[pp_num]; + + uint32_t intr_pp = pp_reg->HCHINTF & pp_reg->HCHINTEN; + + if (intr_pp & HCHINTF_ACK) { + if (GD_URB_PING == pp->urb_state) { + pp->err_count = 0U; + usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_TF, PIPE_XF); + } + + pp_reg->HCHINTF = HCHINTF_ACK; + } else if (intr_pp & HCHINTF_STALL) { + usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_STALL, PIPE_STALL); + } else if (intr_pp & HCHINTF_DTER) { + usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_DTER, PIPE_DTGERR); + pp_reg->HCHINTF = HCHINTF_NAK; + } else if (intr_pp & HCHINTF_REQOVR) { + usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_REQOVR, PIPE_REQOVR); + } else if (intr_pp & HCHINTF_TF) { + pp->err_count = 0U; + usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_TF, PIPE_XF); + } else if (intr_pp & HCHINTF_NAK) { + pp->err_count = 0U; + usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_NAK, PIPE_NAK); + } else if (intr_pp & HCHINTF_USBER) { + pp->err_count++; + usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_USBER, PIPE_TRACERR); + } else if (intr_pp & HCHINTF_NYET) { + pp->err_count = 0U; + usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_NYET, PIPE_NYET); + } else if (intr_pp & HCHINTF_CH) { + udev->regs.pr[pp_num]->HCHINTEN &= ~HCHINTEN_CHIE; + + switch (pp->pp_status) { + case PIPE_XF: + pp->urb_state = GD_URB_DONE; + + if ((uint8_t)USB_EPTYPE_BULK == ((pp_reg->HCHCTL & HCHCTL_EPTYPE) >> 18U)) { + pp->data_toggle_out ^= 1U; + } + break; + + case PIPE_NAK: + + if (GD_URB_PING == pp->urb_state) { + (void)usb_pipe_ping (udev, (uint8_t)pp_num); + } else { + pp->urb_state = GD_URB_NOTREADY; + } + break; + + case PIPE_NYET: + if (1U == udev->host.pipe[pp_num].ping) { + (void)usb_pipe_ping (udev, (uint8_t)pp_num); + pp->urb_state = GD_URB_PING; + } + else { + pp->urb_state = GD_URB_NOTREADY; + } + break; + + case PIPE_STALL: + pp->urb_state = GD_URB_STALL; + break; + + case PIPE_TRACERR: + if (3U == pp->err_count) { + pp->urb_state = GD_URB_ERROR; + pp->err_count = 0U; + } + break; + + case PIPE_IDLE: + case PIPE_HALTED: + case PIPE_BBERR: + case PIPE_REQOVR: + case PIPE_DTGERR: + default: + break; + } + + pp_reg->HCHINTF = HCHINTF_CH; + } else { + /* no operation */ + } + + return 1U; +} + +/*! + \brief handle the RX FIFO non-empty interrupt + \param[in] udev: pointer to USB device instance + \param[out] none + \retval operation status +*/ +#if defined (__ICCARM__) /*!< IAR compiler */ + #pragma optimize = none +#endif /* __ICCARM */ +static uint32_t usbh_int_rxfifonoempty (usb_core_driver *udev) +{ + uint32_t count = 0U; + + __IO uint8_t pp_num = 0U; + __IO uint32_t rx_stat = 0U; + + /* disable the RX status queue level interrupt */ + udev->regs.gr->GINTEN &= ~GINTEN_RXFNEIE; + + rx_stat = udev->regs.gr->GRSTATP; + pp_num = (uint8_t)(rx_stat & GRSTATRP_CNUM); + + switch ((rx_stat & GRSTATRP_RPCKST) >> 17U) { + case GRXSTS_PKTSTS_IN: + count = (rx_stat & GRSTATRP_BCOUNT) >> 4U; + + /* read the data into the host buffer. */ + if ((count > 0U) && (NULL != udev->host.pipe[pp_num].xfer_buf)) { + (void)usb_rxfifo_read (&udev->regs, udev->host.pipe[pp_num].xfer_buf, (uint16_t)count); + + /* manage multiple transfer packet */ + udev->host.pipe[pp_num].xfer_buf += count; + udev->host.pipe[pp_num].xfer_count += count; + + udev->host.backup_xfercount[pp_num] = udev->host.pipe[pp_num].xfer_count; + + if (udev->regs.pr[pp_num]->HCHLEN & HCHLEN_PCNT) { + /* re-activate the channel when more packets are expected */ + __IO uint32_t pp_ctl = udev->regs.pr[pp_num]->HCHCTL; + + pp_ctl |= HCHCTL_CEN; + pp_ctl &= ~HCHCTL_CDIS; + + udev->regs.pr[pp_num]->HCHCTL = pp_ctl; + } + } + break; + + case GRXSTS_PKTSTS_IN_XFER_COMP: + break; + + case GRXSTS_PKTSTS_DATA_TOGGLE_ERR: + count = (rx_stat & GRSTATRP_BCOUNT) >> 4U; + + while (count > 0U) { + rx_stat = udev->regs.gr->GRSTATP; + count--; + } + break; + + case GRXSTS_PKTSTS_CH_HALTED: + break; + + default: + break; + } + + /* enable the RX status queue level interrupt */ + udev->regs.gr->GINTEN |= GINTEN_RXFNEIE; + + return 1U; +} + +/*! + \brief handle the TX FIFO empty interrupt + \param[in] udev: pointer to USB device instance + \param[in] pp_mode: pipe mode + \param[out] none + \retval operation status +*/ +#if defined (__ICCARM__) /*!< IAR compiler */ + #pragma optimize = none +#endif /* __ICCARM */ +static uint32_t usbh_int_txfifoempty (usb_core_driver *udev, usb_pipe_mode pp_mode) +{ + uint8_t pp_num = 0U; + uint16_t word_count = 0U, len = 0U; + __IO uint32_t *txfiforeg = 0U, txfifostate = 0U; + + if (PIPE_NON_PERIOD == pp_mode) { + txfiforeg = &udev->regs.gr->HNPTFQSTAT; + } else if (PIPE_PERIOD == pp_mode) { + txfiforeg = &udev->regs.hr->HPTFQSTAT; + } else { + return 0U; + } + + txfifostate = *txfiforeg; + + pp_num = (uint8_t)((txfifostate & TFQSTAT_CNUM) >> 27U); + + word_count = (uint16_t)(udev->host.pipe[pp_num].xfer_len + 3U) / 4U; + + while (((txfifostate & TFQSTAT_TXFS) >= word_count) && (0U != udev->host.pipe[pp_num].xfer_len)) { + len = (uint16_t)(txfifostate & TFQSTAT_TXFS) * 4U; + + if (len > udev->host.pipe[pp_num].xfer_len) { + /* last packet */ + len = (uint16_t)udev->host.pipe[pp_num].xfer_len; + + if (PIPE_NON_PERIOD == pp_mode) { + udev->regs.gr->GINTEN &= ~GINTEN_NPTXFEIE; + } else { + udev->regs.gr->GINTEN &= ~GINTEN_PTXFEIE; + } + } + + word_count = (uint16_t)((udev->host.pipe[pp_num].xfer_len + 3U) / 4U); + usb_txfifo_write (&udev->regs, udev->host.pipe[pp_num].xfer_buf, pp_num, len); + + udev->host.pipe[pp_num].xfer_buf += len; + udev->host.pipe[pp_num].xfer_len -= len; + udev->host.pipe[pp_num].xfer_count += len; + + txfifostate = *txfiforeg; + } + + return 1U; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usbh_int.h b/Marlin/lib/GD32F4xx_usb_library/src/drv_usbh_int.h new file mode 100644 index 0000000000..727cea3cf8 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/drv_usbh_int.h @@ -0,0 +1,56 @@ +/*! + \file drv_usbh_int.h.h + \brief USB host mode interrupt management header file + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __DRV_USBH_INT_H +#define __DRV_USBH_INT_H + +#include "drv_usb_host.h" +#include "gdusbh_core.h" + +typedef struct _usbh_int_cb +{ + uint8_t (*connect) (usbh_host *uhost); + uint8_t (*disconnect) (usbh_host *uhost); + uint8_t (*port_enabled) (usbh_host *uhost); + uint8_t (*port_disabled) (usbh_host *uhost); + uint8_t (*SOF) (usbh_host *uhost); +} usbh_int_cb; + +extern usbh_int_cb *usbh_int_fop; + +/* function declarations */ +/* handle global host interrupt */ +uint32_t usbh_isr (usb_core_driver *udev); + +#endif /* __DRV_USBH_INT_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gd32_usb_helper.h b/Marlin/lib/GD32F4xx_usb_library/src/gd32_usb_helper.h new file mode 100644 index 0000000000..d260efee19 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/gd32_usb_helper.h @@ -0,0 +1,30 @@ +#pragma once + +#include +#include + + +#ifndef NULL + #define NULL 0 +#endif + +#ifndef __IO + #define __IO volatile +#endif + +/* bit operations */ +#define REG32(addr) (*(volatile uint32_t *)(uint32_t)(addr)) +#define REG16(addr) (*(volatile uint16_t *)(uint32_t)(addr)) +#define REG8(addr) (*(volatile uint8_t *)(uint32_t)(addr)) +#define BIT(x) ((uint32_t)((uint32_t)0x01U<<(x))) +#define BITS(start, end) ((0xFFFFFFFFUL << (start)) & (0xFFFFFFFFUL >> (31U - (uint32_t)(end)))) +#define GET_BITS(regval, start, end) (((regval) & BITS((start),(end))) >> (start)) + +/* bits definitions */ +/* PMU_CTL */ +#define PMU_CTL_LDOLP BIT(0) /*!< LDO low power mode */ +#define PMU_LDO_LOWPOWER PMU_CTL_LDOLP /*!< LDO work at low power status when PMU enter deepsleep mode */ + +/* PMU command constants definitions */ +#define WFI_CMD ((uint8_t)0x00U) /*!< use WFI command */ +#define WFE_CMD ((uint8_t)0x01U) /*!< use WFE command */ \ No newline at end of file diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gd32f4xx.h b/Marlin/lib/GD32F4xx_usb_library/src/gd32f4xx.h new file mode 100644 index 0000000000..44b228c55e --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/gd32f4xx.h @@ -0,0 +1,367 @@ +/*! + \file gd32f4xx.h + \brief general definitions for GD32F4xx + + \version 2016-08-15, V1.0.0, firmware for GD32F4xx + \version 2018-12-12, V2.0.0, firmware for GD32F4xx + \version 2020-09-30, V2.1.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef GD32F4XX_H +#define GD32F4XX_H + +#ifdef __cplusplus + extern "C" { +#endif + +/* define GD32F4xx */ +#if !defined (GD32F450) && !defined (GD32F405) && !defined (GD32F407) + /* #define GD32F450 */ + /* #define GD32F405 */ + /* #define GD32F407 */ +#endif /* define GD32F4xx */ + +#if !defined (GD32F450) && !defined (GD32F405) && !defined (GD32F407) + #error "Please select the target GD32F4xx device in gd32f4xx.h file" +#endif /* undefine GD32F4xx tip */ + +/* define value of high speed crystal oscillator (HXTAL) in Hz */ +#if !defined (HXTAL_VALUE) +#define HXTAL_VALUE ((uint32_t)25000000) +#endif /* high speed crystal oscillator value */ + +/* define startup timeout value of high speed crystal oscillator (HXTAL) */ +#if !defined (HXTAL_STARTUP_TIMEOUT) +#define HXTAL_STARTUP_TIMEOUT ((uint16_t)0xFFFF) +#endif /* high speed crystal oscillator startup timeout */ + +/* define value of internal 16MHz RC oscillator (IRC16M) in Hz */ +#if !defined (IRC16M_VALUE) +#define IRC16M_VALUE ((uint32_t)16000000) +#endif /* internal 16MHz RC oscillator value */ + +/* define startup timeout value of internal 16MHz RC oscillator (IRC16M) */ +#if !defined (IRC16M_STARTUP_TIMEOUT) +#define IRC16M_STARTUP_TIMEOUT ((uint16_t)0x0500) +#endif /* internal 16MHz RC oscillator startup timeout */ + +/* define value of internal 32KHz RC oscillator(IRC32K) in Hz */ +#if !defined (IRC32K_VALUE) +#define IRC32K_VALUE ((uint32_t)32000) +#endif /* internal 32KHz RC oscillator value */ + +/* define value of low speed crystal oscillator (LXTAL)in Hz */ +#if !defined (LXTAL_VALUE) +#define LXTAL_VALUE ((uint32_t)32768) +#endif /* low speed crystal oscillator value */ + +/* I2S external clock in selection */ +//#define I2S_EXTERNAL_CLOCK_IN (uint32_t)12288000U + +/* GD32F4xx firmware library version number V1.0 */ +#define __GD32F4xx_STDPERIPH_VERSION_MAIN (0x03) /*!< [31:24] main version */ +#define __GD32F4xx_STDPERIPH_VERSION_SUB1 (0x00) /*!< [23:16] sub1 version */ +#define __GD32F4xx_STDPERIPH_VERSION_SUB2 (0x00) /*!< [15:8] sub2 version */ +#define __GD32F4xx_STDPERIPH_VERSION_RC (0x00) /*!< [7:0] release candidate */ +#define __GD32F4xx_STDPERIPH_VERSION ((__GD32F4xx_STDPERIPH_VERSION_MAIN << 24)\ + |(__GD32F4xx_STDPERIPH_VERSION_SUB1 << 16)\ + |(__GD32F4xx_STDPERIPH_VERSION_SUB2 << 8)\ + |(__GD32F4xx_STDPERIPH_VERSION_RC)) + +/* configuration of the cortex-M4 processor and core peripherals */ +#define __CM4_REV 0x0001 /*!< core revision r0p1 */ +#define __MPU_PRESENT 1 /*!< GD32F4xx provide MPU */ +#define __NVIC_PRIO_BITS 4 /*!< GD32F4xx uses 4 bits for the priority levels */ +#define __Vendor_SysTickConfig 0 /*!< set to 1 if different sysTick config is used */ +#define __FPU_PRESENT 1 /*!< FPU present */ + +#if 0 +/* define interrupt number */ +typedef enum IRQn +{ + /* cortex-M4 processor exceptions numbers */ + NonMaskableInt_IRQn = -14, /*!< 2 non maskable interrupt */ + MemoryManagement_IRQn = -12, /*!< 4 cortex-M4 memory management interrupt */ + BusFault_IRQn = -11, /*!< 5 cortex-M4 bus fault interrupt */ + UsageFault_IRQn = -10, /*!< 6 cortex-M4 usage fault interrupt */ + SVCall_IRQn = -5, /*!< 11 cortex-M4 SV call interrupt */ + DebugMonitor_IRQn = -4, /*!< 12 cortex-M4 debug monitor interrupt */ + PendSV_IRQn = -2, /*!< 14 cortex-M4 pend SV interrupt */ + SysTick_IRQn = -1, /*!< 15 cortex-M4 system tick interrupt */ + /* interruput numbers */ + WWDGT_IRQn = 0, /*!< window watchdog timer interrupt */ + LVD_IRQn = 1, /*!< LVD through EXTI line detect interrupt */ + TAMPER_STAMP_IRQn = 2, /*!< tamper and timestamp through EXTI line detect */ + RTC_WKUP_IRQn = 3, /*!< RTC wakeup through EXTI line interrupt */ + FMC_IRQn = 4, /*!< FMC interrupt */ + RCU_CTC_IRQn = 5, /*!< RCU and CTC interrupt */ + EXTI0_IRQn = 6, /*!< EXTI line 0 interrupts */ + EXTI1_IRQn = 7, /*!< EXTI line 1 interrupts */ + EXTI2_IRQn = 8, /*!< EXTI line 2 interrupts */ + EXTI3_IRQn = 9, /*!< EXTI line 3 interrupts */ + EXTI4_IRQn = 10, /*!< EXTI line 4 interrupts */ + DMA0_Channel0_IRQn = 11, /*!< DMA0 channel0 Interrupt */ + DMA0_Channel1_IRQn = 12, /*!< DMA0 channel1 Interrupt */ + DMA0_Channel2_IRQn = 13, /*!< DMA0 channel2 interrupt */ + DMA0_Channel3_IRQn = 14, /*!< DMA0 channel3 interrupt */ + DMA0_Channel4_IRQn = 15, /*!< DMA0 channel4 interrupt */ + DMA0_Channel5_IRQn = 16, /*!< DMA0 channel5 interrupt */ + DMA0_Channel6_IRQn = 17, /*!< DMA0 channel6 interrupt */ + ADC_IRQn = 18, /*!< ADC interrupt */ + CAN0_TX_IRQn = 19, /*!< CAN0 TX interrupt */ + CAN0_RX0_IRQn = 20, /*!< CAN0 RX0 interrupt */ + CAN0_RX1_IRQn = 21, /*!< CAN0 RX1 interrupt */ + CAN0_EWMC_IRQn = 22, /*!< CAN0 EWMC interrupt */ + EXTI5_9_IRQn = 23, /*!< EXTI[9:5] interrupts */ + TIMER0_BRK_TIMER8_IRQn = 24, /*!< TIMER0 break and TIMER8 interrupts */ + TIMER0_UP_TIMER9_IRQn = 25, /*!< TIMER0 update and TIMER9 interrupts */ + TIMER0_TRG_CMT_TIMER10_IRQn = 26, /*!< TIMER0 trigger and commutation and TIMER10 interrupts */ + TIMER0_Channel_IRQn = 27, /*!< TIMER0 channel capture compare interrupt */ + TIMER1_IRQn = 28, /*!< TIMER1 interrupt */ + TIMER2_IRQn = 29, /*!< TIMER2 interrupt */ + TIMER3_IRQn = 30, /*!< TIMER3 interrupts */ + I2C0_EV_IRQn = 31, /*!< I2C0 event interrupt */ + I2C0_ER_IRQn = 32, /*!< I2C0 error interrupt */ + I2C1_EV_IRQn = 33, /*!< I2C1 event interrupt */ + I2C1_ER_IRQn = 34, /*!< I2C1 error interrupt */ + SPI0_IRQn = 35, /*!< SPI0 interrupt */ + SPI1_IRQn = 36, /*!< SPI1 interrupt */ + USART0_IRQn = 37, /*!< USART0 interrupt */ + USART1_IRQn = 38, /*!< USART1 interrupt */ + USART2_IRQn = 39, /*!< USART2 interrupt */ + EXTI10_15_IRQn = 40, /*!< EXTI[15:10] interrupts */ + RTC_Alarm_IRQn = 41, /*!< RTC alarm interrupt */ + USBFS_WKUP_IRQn = 42, /*!< USBFS wakeup interrupt */ + TIMER7_BRK_TIMER11_IRQn = 43, /*!< TIMER7 break and TIMER11 interrupts */ + TIMER7_UP_TIMER12_IRQn = 44, /*!< TIMER7 update and TIMER12 interrupts */ + TIMER7_TRG_CMT_TIMER13_IRQn = 45, /*!< TIMER7 trigger and commutation and TIMER13 interrupts */ + TIMER7_Channel_IRQn = 46, /*!< TIMER7 channel capture compare interrupt */ + DMA0_Channel7_IRQn = 47, /*!< DMA0 channel7 interrupt */ + +#if defined (GD32F450) + EXMC_IRQn = 48, /*!< EXMC interrupt */ + SDIO_IRQn = 49, /*!< SDIO interrupt */ + TIMER4_IRQn = 50, /*!< TIMER4 interrupt */ + SPI2_IRQn = 51, /*!< SPI2 interrupt */ + UART3_IRQn = 52, /*!< UART3 interrupt */ + UART4_IRQn = 53, /*!< UART4 interrupt */ + TIMER5_DAC_IRQn = 54, /*!< TIMER5 and DAC0 DAC1 underrun error interrupts */ + TIMER6_IRQn = 55, /*!< TIMER6 interrupt */ + DMA1_Channel0_IRQn = 56, /*!< DMA1 channel0 interrupt */ + DMA1_Channel1_IRQn = 57, /*!< DMA1 channel1 interrupt */ + DMA1_Channel2_IRQn = 58, /*!< DMA1 channel2 interrupt */ + DMA1_Channel3_IRQn = 59, /*!< DMA1 channel3 interrupt */ + DMA1_Channel4_IRQn = 60, /*!< DMA1 channel4 interrupt */ + ENET_IRQn = 61, /*!< ENET interrupt */ + ENET_WKUP_IRQn = 62, /*!< ENET wakeup through EXTI line interrupt */ + CAN1_TX_IRQn = 63, /*!< CAN1 TX interrupt */ + CAN1_RX0_IRQn = 64, /*!< CAN1 RX0 interrupt */ + CAN1_RX1_IRQn = 65, /*!< CAN1 RX1 interrupt */ + CAN1_EWMC_IRQn = 66, /*!< CAN1 EWMC interrupt */ + USBFS_IRQn = 67, /*!< USBFS interrupt */ + DMA1_Channel5_IRQn = 68, /*!< DMA1 channel5 interrupt */ + DMA1_Channel6_IRQn = 69, /*!< DMA1 channel6 interrupt */ + DMA1_Channel7_IRQn = 70, /*!< DMA1 channel7 interrupt */ + USART5_IRQn = 71, /*!< USART5 interrupt */ + I2C2_EV_IRQn = 72, /*!< I2C2 event interrupt */ + I2C2_ER_IRQn = 73, /*!< I2C2 error interrupt */ + USBHS_EP1_Out_IRQn = 74, /*!< USBHS endpoint 1 out interrupt */ + USBHS_EP1_In_IRQn = 75, /*!< USBHS endpoint 1 in interrupt */ + USBHS_WKUP_IRQn = 76, /*!< USBHS wakeup through EXTI line interrupt */ + USBHS_IRQn = 77, /*!< USBHS interrupt */ + DCI_IRQn = 78, /*!< DCI interrupt */ + TRNG_IRQn = 80, /*!< TRNG interrupt */ + FPU_IRQn = 81, /*!< FPU interrupt */ + UART6_IRQn = 82, /*!< UART6 interrupt */ + UART7_IRQn = 83, /*!< UART7 interrupt */ + SPI3_IRQn = 84, /*!< SPI3 interrupt */ + SPI4_IRQn = 85, /*!< SPI4 interrupt */ + SPI5_IRQn = 86, /*!< SPI5 interrupt */ + TLI_IRQn = 88, /*!< TLI interrupt */ + TLI_ER_IRQn = 89, /*!< TLI error interrupt */ + IPA_IRQn = 90, /*!< IPA interrupt */ +#endif /* GD32F450 */ + +#if defined (GD32F405) + SDIO_IRQn = 49, /*!< SDIO interrupt */ + TIMER4_IRQn = 50, /*!< TIMER4 interrupt */ + SPI2_IRQn = 51, /*!< SPI2 interrupt */ + UART3_IRQn = 52, /*!< UART3 interrupt */ + UART4_IRQn = 53, /*!< UART4 interrupt */ + TIMER5_DAC_IRQn = 54, /*!< TIMER5 and DAC0 DAC1 underrun error interrupts */ + TIMER6_IRQn = 55, /*!< TIMER6 interrupt */ + DMA1_Channel0_IRQn = 56, /*!< DMA1 channel0 interrupt */ + DMA1_Channel1_IRQn = 57, /*!< DMA1 channel1 interrupt */ + DMA1_Channel2_IRQn = 58, /*!< DMA1 channel2 interrupt */ + DMA1_Channel3_IRQn = 59, /*!< DMA1 channel3 interrupt */ + DMA1_Channel4_IRQn = 60, /*!< DMA1 channel4 interrupt */ + CAN1_TX_IRQn = 63, /*!< CAN1 TX interrupt */ + CAN1_RX0_IRQn = 64, /*!< CAN1 RX0 interrupt */ + CAN1_RX1_IRQn = 65, /*!< CAN1 RX1 interrupt */ + CAN1_EWMC_IRQn = 66, /*!< CAN1 EWMC interrupt */ + USBFS_IRQn = 67, /*!< USBFS interrupt */ + DMA1_Channel5_IRQn = 68, /*!< DMA1 channel5 interrupt */ + DMA1_Channel6_IRQn = 69, /*!< DMA1 channel6 interrupt */ + DMA1_Channel7_IRQn = 70, /*!< DMA1 channel7 interrupt */ + USART5_IRQn = 71, /*!< USART5 interrupt */ + I2C2_EV_IRQn = 72, /*!< I2C2 event interrupt */ + I2C2_ER_IRQn = 73, /*!< I2C2 error interrupt */ + USBHS_EP1_Out_IRQn = 74, /*!< USBHS endpoint 1 Out interrupt */ + USBHS_EP1_In_IRQn = 75, /*!< USBHS endpoint 1 in interrupt */ + USBHS_WKUP_IRQn = 76, /*!< USBHS wakeup through EXTI line interrupt */ + USBHS_IRQn = 77, /*!< USBHS interrupt */ + DCI_IRQn = 78, /*!< DCI interrupt */ + TRNG_IRQn = 80, /*!< TRNG interrupt */ + FPU_IRQn = 81, /*!< FPU interrupt */ +#endif /* GD32F405 */ + +#if defined (GD32F407) + EXMC_IRQn = 48, /*!< EXMC interrupt */ + SDIO_IRQn = 49, /*!< SDIO interrupt */ + TIMER4_IRQn = 50, /*!< TIMER4 interrupt */ + SPI2_IRQn = 51, /*!< SPI2 interrupt */ + UART3_IRQn = 52, /*!< UART3 interrupt */ + UART4_IRQn = 53, /*!< UART4 interrupt */ + TIMER5_DAC_IRQn = 54, /*!< TIMER5 and DAC0 DAC1 underrun error interrupts */ + TIMER6_IRQn = 55, /*!< TIMER6 interrupt */ + DMA1_Channel0_IRQn = 56, /*!< DMA1 channel0 interrupt */ + DMA1_Channel1_IRQn = 57, /*!< DMA1 channel1 interrupt */ + DMA1_Channel2_IRQn = 58, /*!< DMA1 channel2 interrupt */ + DMA1_Channel3_IRQn = 59, /*!< DMA1 channel3 interrupt */ + DMA1_Channel4_IRQn = 60, /*!< DMA1 channel4 interrupt */ + ENET_IRQn = 61, /*!< ENET interrupt */ + ENET_WKUP_IRQn = 62, /*!< ENET wakeup through EXTI line interrupt */ + CAN1_TX_IRQn = 63, /*!< CAN1 TX interrupt */ + CAN1_RX0_IRQn = 64, /*!< CAN1 RX0 interrupt */ + CAN1_RX1_IRQn = 65, /*!< CAN1 RX1 interrupt */ + CAN1_EWMC_IRQn = 66, /*!< CAN1 EWMC interrupt */ + USBFS_IRQn = 67, /*!< USBFS interrupt */ + DMA1_Channel5_IRQn = 68, /*!< DMA1 channel5 interrupt */ + DMA1_Channel6_IRQn = 69, /*!< DMA1 channel6 interrupt */ + DMA1_Channel7_IRQn = 70, /*!< DMA1 channel7 interrupt */ + USART5_IRQn = 71, /*!< USART5 interrupt */ + I2C2_EV_IRQn = 72, /*!< I2C2 event interrupt */ + I2C2_ER_IRQn = 73, /*!< I2C2 error interrupt */ + USBHS_EP1_Out_IRQn = 74, /*!< USBHS endpoint 1 out interrupt */ + USBHS_EP1_In_IRQn = 75, /*!< USBHS endpoint 1 in interrupt */ + USBHS_WKUP_IRQn = 76, /*!< USBHS wakeup through EXTI line interrupt */ + USBHS_IRQn = 77, /*!< USBHS interrupt */ + DCI_IRQn = 78, /*!< DCI interrupt */ + TRNG_IRQn = 80, /*!< TRNG interrupt */ + FPU_IRQn = 81, /*!< FPU interrupt */ +#endif /* GD32F407 */ + +} IRQn_Type; +#endif +/* includes */ +#include "core_cm4.h" +// #include "system_gd32f4xx.h" +#include + +/* enum definitions */ +typedef enum {DISABLE = 0, ENABLE = !DISABLE} EventStatus, ControlStatus; +typedef enum {RESET = 0, SET = !RESET} FlagStatus; +typedef enum {ERROR = 0, SUCCESS = !ERROR} ErrStatus; + +/* bit operations */ +#define REG32(addr) (*(volatile uint32_t *)(uint32_t)(addr)) +#define REG16(addr) (*(volatile uint16_t *)(uint32_t)(addr)) +#define REG8(addr) (*(volatile uint8_t *)(uint32_t)(addr)) +#define BIT(x) ((uint32_t)((uint32_t)0x01U<<(x))) +#define BITS(start, end) ((0xFFFFFFFFUL << (start)) & (0xFFFFFFFFUL >> (31U - (uint32_t)(end)))) +#define GET_BITS(regval, start, end) (((regval) & BITS((start),(end))) >> (start)) + +/* main flash and SRAM memory map */ +#define FLASH_BASE ((uint32_t)0x08000000U) /*!< main FLASH base address */ +#define TCMSRAM_BASE ((uint32_t)0x10000000U) /*!< TCMSRAM(64KB) base address */ +#define OPTION_BASE ((uint32_t)0x1FFEC000U) /*!< Option bytes base address */ +#define SRAM_BASE ((uint32_t)0x20000000U) /*!< SRAM0 base address */ + +/* peripheral memory map */ +#define APB1_BUS_BASE ((uint32_t)0x40000000U) /*!< apb1 base address */ +#define APB2_BUS_BASE ((uint32_t)0x40010000U) /*!< apb2 base address */ +#define AHB1_BUS_BASE ((uint32_t)0x40020000U) /*!< ahb1 base address */ +#define AHB2_BUS_BASE ((uint32_t)0x50000000U) /*!< ahb2 base address */ + +/* EXMC memory map */ +#define EXMC_BASE ((uint32_t)0xA0000000U) /*!< EXMC register base address */ + +/* advanced peripheral bus 1 memory map */ +#define TIMER_BASE (APB1_BUS_BASE + 0x00000000U) /*!< TIMER base address */ +#define RTC_BASE (APB1_BUS_BASE + 0x00002800U) /*!< RTC base address */ +#define WWDGT_BASE (APB1_BUS_BASE + 0x00002C00U) /*!< WWDGT base address */ +#define FWDGT_BASE (APB1_BUS_BASE + 0x00003000U) /*!< FWDGT base address */ +#define I2S_ADD_BASE (APB1_BUS_BASE + 0x00003400U) /*!< I2S1_add base address */ +#define SPI_BASE (APB1_BUS_BASE + 0x00003800U) /*!< SPI base address */ +#define USART_BASE (APB1_BUS_BASE + 0x00004400U) /*!< USART base address */ +#define I2C_BASE (APB1_BUS_BASE + 0x00005400U) /*!< I2C base address */ +#define CAN_BASE (APB1_BUS_BASE + 0x00006400U) /*!< CAN base address */ +#define CTC_BASE (APB1_BUS_BASE + 0x00006C00U) /*!< CTC base address */ +#define PMU_BASE (APB1_BUS_BASE + 0x00007000U) /*!< PMU base address */ +#define DAC_BASE (APB1_BUS_BASE + 0x00007400U) /*!< DAC base address */ +#define IREF_BASE (APB1_BUS_BASE + 0x0000C400U) /*!< IREF base address */ + +/* advanced peripheral bus 2 memory map */ +#define TLI_BASE (APB2_BUS_BASE + 0x00006800U) /*!< TLI base address */ +#define SYSCFG_BASE (APB2_BUS_BASE + 0x00003800U) /*!< SYSCFG base address */ +#define EXTI_BASE (APB2_BUS_BASE + 0x00003C00U) /*!< EXTI base address */ +#define SDIO_BASE (APB2_BUS_BASE + 0x00002C00U) /*!< SDIO base address */ +#define ADC_BASE (APB2_BUS_BASE + 0x00002000U) /*!< ADC base address */ +/* advanced high performance bus 1 memory map */ +#define GPIO_BASE (AHB1_BUS_BASE + 0x00000000U) /*!< GPIO base address */ +#define CRC_BASE (AHB1_BUS_BASE + 0x00003000U) /*!< CRC base address */ +#define RCU_BASE (AHB1_BUS_BASE + 0x00003800U) /*!< RCU base address */ +#define FMC_BASE (AHB1_BUS_BASE + 0x00003C00U) /*!< FMC base address */ +#define BKPSRAM_BASE (AHB1_BUS_BASE + 0x00004000U) /*!< BKPSRAM base address */ +#define DMA_BASE (AHB1_BUS_BASE + 0x00006000U) /*!< DMA base address */ +#define ENET_BASE (AHB1_BUS_BASE + 0x00008000U) /*!< ENET base address */ +#define IPA_BASE (AHB1_BUS_BASE + 0x0000B000U) /*!< IPA base address */ +#define USBHS_BASE (AHB1_BUS_BASE + 0x00020000U) /*!< USBHS base address */ + +/* advanced high performance bus 2 memory map */ +#define USBFS_BASE (AHB2_BUS_BASE + 0x00000000U) /*!< USBFS base address */ +#define DCI_BASE (AHB2_BUS_BASE + 0x00050000U) /*!< DCI base address */ +#define TRNG_BASE (AHB2_BUS_BASE + 0x00060800U) /*!< TRNG base address */ +/* option byte and debug memory map */ +#define OB_BASE ((uint32_t)0x1FFEC000U) /*!< OB base address */ +#define DBG_BASE ((uint32_t)0xE0042000U) /*!< DBG base address */ + +/* define marco USE_STDPERIPH_DRIVER */ +#if !defined USE_STDPERIPH_DRIVER +#define USE_STDPERIPH_DRIVER +#endif +#ifdef USE_STDPERIPH_DRIVER +//#include "gd32f4xx_libopt.h" +#endif /* USE_STDPERIPH_DRIVER */ + +#ifdef __cplusplus +} +#endif +#endif diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusb_cdc.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusb_cdc.h new file mode 100644 index 0000000000..8b1bc62901 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/gdusb_cdc.h @@ -0,0 +1,180 @@ +/*! + \file usb_cdc.h + \brief the header file of communication device class standard + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USB_CDC_H +#define __USB_CDC_H + +#include "usb_ch9_std.h" + +/* communications device class code */ +#define USB_CLASS_CDC 0x02U + +/* communications interface class control protocol codes */ +#define USB_CDC_PROTOCOL_NONE 0x00U +#define USB_CDC_PROTOCOL_AT 0x01U +#define USB_CDC_PROTOCOL_VENDOR 0xFFU + +/* data interface class code */ +#define USB_CLASS_DATA 0x0AU + +#define USB_DESCTYPE_CDC_ACM 0x21U +#define USB_DESCTYPE_CS_INTERFACE 0x24U + +#define USB_CDC_ACM_CONFIG_DESC_SIZE 0x43U + +/* class-specific notification codes for pstn subclasses */ +#define USB_CDC_NOTIFY_SERIAL_STATE 0x20U + +/* class-specific request codes */ +#define SEND_ENCAPSULATED_COMMAND 0x00U +#define GET_ENCAPSULATED_RESPONSE 0x01U +#define SET_COMM_FEATURE 0x02U +#define GET_COMM_FEATURE 0x03U +#define CLEAR_COMM_FEATURE 0x04U + +#define SET_AUX_LINE_STATE 0x10U +#define SET_HOOK_STATE 0x11U +#define PULSE_SETUP 0x12U +#define SEND_PULSE 0x13U +#define SET_PULSE_TIME 0x14U +#define RING_AUX_JACK 0x15U + +#define SET_LINE_CODING 0x20U +#define GET_LINE_CODING 0x21U +#define SET_CONTROL_LINE_STATE 0x22U +#define SEND_BREAK 0x23U +#define NO_CMD 0xFFU + +#define SET_RINGER_PARMS 0x30U +#define GET_RINGER_PARMS 0x31U +#define SET_OPERATION_PARMS 0x32U +#define GET_OPERATION_PARMS 0x33U +#define SET_LINE_PARMS 0x34U +#define GET_LINE_PARMS 0x35U +#define DIAL_DIGITS 0x36U +#define SET_UNIT_PARAMETER 0x37U +#define GET_UNIT_PARAMETER 0x38U +#define CLEAR_UNIT_PARAMETER 0x39U +#define GET_PROFILE 0x3AU + +#define SET_ETHERNET_MULTICAST_FILTERS 0x40U +#define SET_ETHERNET_POWER_MANAGEMENT_PATTERN FILTER 0x41U +#define GET_ETHERNET_POWER_MANAGEMENT_PATTERN FILTER 0x42U +#define SET_ETHERNET_PACKET_FILTER 0x43U +#define GET_ETHERNET_STATISTIC 0x44U + +#define SET_ATM_DATA_FORMAT 0x50U +#define GET_ATM_DEVICE_STATISTICS 0x51U +#define SET_ATM_DEFAULT_VC 0x52U +#define GET_ATM_VC_STATISTICS 0x53U + +/* wValue for set control line state */ +#define CDC_ACTIVATE_CARRIER_SIGNAL_RTS 0x0002U +#define CDC_DEACTIVATE_CARRIER_SIGNAL_RTS 0x0000U +#define CDC_ACTIVATE_SIGNAL_DTR 0x0001U +#define CDC_DEACTIVATE_SIGNAL_DTR 0x0000U + +/* CDC subclass code */ +enum usb_cdc_subclass { + USB_CDC_SUBCLASS_RESERVED = 0U, /*!< reserved */ + USB_CDC_SUBCLASS_DLCM, /*!< direct line control mode */ + USB_CDC_SUBCLASS_ACM, /*!< abstract control mode */ + USB_CDC_SUBCLASS_TCM, /*!< telephone control mode */ + USB_CDC_SUBCLASS_MCM, /*!< multichannel control model */ + USB_CDC_SUBCLASS_CCM, /*!< CAPI control model */ + USB_CDC_SUBCLASS_ENCM, /*!< ethernet networking control model */ + USB_CDC_SUBCLASS_ANCM /*!< ATM networking control model */ +}; + +#pragma pack(1) + +/* cdc acm line coding structure */ +typedef struct { + uint32_t dwDTERate; /*!< data terminal rate */ + uint8_t bCharFormat; /*!< stop bits */ + uint8_t bParityType; /*!< parity */ + uint8_t bDataBits; /*!< data bits */ +} acm_line; + +/* notification structure */ +typedef struct { + uint8_t bmRequestType; /*!< type of request */ + uint8_t bNotification; /*!< communication interface class notifications */ + uint16_t wValue; /*!< value of notification */ + uint16_t wIndex; /*!< index of interface */ + uint16_t wLength; /*!< length of notification data */ +} acm_notification; + +typedef struct { + usb_desc_header header; /*!< descriptor header, including type and size. */ + uint8_t bDescriptorSubtype; /*!< bDescriptorSubtype: header function descriptor */ + uint16_t bcdCDC; /*!< bcdCDC: low byte of spec release number (CDC1.10) */ +} usb_desc_header_func; + +typedef struct { + usb_desc_header header; /*!< descriptor header, including type and size. */ + uint8_t bDescriptorSubtype; /*!< bDescriptorSubtype: call management function descriptor */ + uint8_t bmCapabilities; /*!< bmCapabilities: D0 is reset, D1 is ignored */ + uint8_t bDataInterface; /*!< bDataInterface: 1 interface used for call management */ +} usb_desc_call_managment_func; + +typedef struct { + usb_desc_header header; /*!< descriptor header, including type and size. */ + uint8_t bDescriptorSubtype; /*!< bDescriptorSubtype: abstract control management descriptor */ + uint8_t bmCapabilities; /*!< bmCapabilities: D1 */ +} usb_desc_acm_func; + +typedef struct { + usb_desc_header header; /*!< descriptor header, including type and size. */ + uint8_t bDescriptorSubtype; /*!< bDescriptorSubtype: union function descriptor */ + uint8_t bMasterInterface; /*!< bMasterInterface: communication class interface */ + uint8_t bSlaveInterface0; /*!< bSlaveInterface0: data class interface */ +} usb_desc_union_func; + +#pragma pack() + +typedef struct { + usb_desc_config config; + usb_desc_itf cmd_itf; + usb_desc_header_func cdc_header; + usb_desc_call_managment_func cdc_call_managment; + usb_desc_acm_func cdc_acm; + usb_desc_union_func cdc_union; + usb_desc_ep cdc_cmd_endpoint; + usb_desc_itf cdc_data_interface; + usb_desc_ep cdc_out_endpoint; + usb_desc_ep cdc_in_endpoint; +} usb_cdc_desc_config_set; + +#endif /* __USB_CDC_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusb_conf.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusb_conf.h new file mode 100644 index 0000000000..7a9a55c4f0 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/gdusb_conf.h @@ -0,0 +1,182 @@ +/*! + \file usb_conf.h + \brief general low level driver configuration + + \version 2020-09-04, V3.0.0, demo for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USB_CONF_H +#define __USB_CONF_H + +#include "gd32_usb_helper.h" +// #include "gd32f4xx.h" +// #include "gd32f407v_start.h" + +#define USE_USB_FS +#define USE_USB_HS + +/****************** USB OTG FS PHY CONFIGURATION ******************************* + * The USB OTG FS Core supports one on-chip Full Speed PHY. + * The USE_EMBEDDED_PHY symbol is defined in the project compiler preprocessor + * when FS core is used. +*******************************************************************************/ + +#if 1//def USE_USB_FS + #define USB_FS_CORE +#endif + +#if 1 //def USE_USB_HS + #define USB_HS_CORE +#endif + +/******************************************************************************* + * FIFO Size Configuration in Host mode + * + * (i) Receive data FIFO size = (Largest Packet Size / 4) + 1 or + * 2x (Largest Packet Size / 4) + 1, If a + * high-bandwidth channel or multiple isochronous + * channels are enabled + * + * (ii) For the host nonperiodic Transmit FIFO is the largest maximum packet size + * for all supported nonperiodic OUT channels. Typically, a space + * corresponding to two Largest Packet Size is recommended. + * + * (iii) The minimum amount of RAM required for Host periodic Transmit FIFO is + * the largest maximum packet size for all supported periodic OUT channels. + * If there is at least one High Bandwidth Isochronous OUT endpoint, + * then the space must be at least two times the maximum packet size for + * that channel. +*******************************************************************************/ + +/****************** USB OTG FS CONFIGURATION **********************************/ +#ifdef USB_FS_CORE + + #define RX_FIFO_FS_SIZE 128 + #define TX0_FIFO_FS_SIZE 64 + #define TX1_FIFO_FS_SIZE 64 + #define TX2_FIFO_FS_SIZE 64 + #define TX3_FIFO_FS_SIZE 0 + + #define USB_RX_FIFO_FS_SIZE 128 + #define USB_HTX_NPFIFO_FS_SIZE 96 + #define USB_HTX_PFIFO_FS_SIZE 96 + + +#endif + +#ifdef USB_HS_CORE + #define RX_FIFO_HS_SIZE 512 + #define TX0_FIFO_HS_SIZE 128 + #define TX1_FIFO_HS_SIZE 128 + #define TX2_FIFO_HS_SIZE 128 + #define TX3_FIFO_HS_SIZE 0 + #define TX4_FIFO_HS_SIZE 0 + #define TX5_FIFO_HS_SIZE 0 + + #define USB_RX_FIFO_HS_SIZE 512 + #define USB_HTX_NPFIFO_HS_SIZE 256 + #define USB_HTX_PFIFO_HS_SIZE 256 + + + #ifdef USE_ULPI_PHY + #define USB_ULPI_PHY_ENABLED + #endif + + #ifdef USE_EMBEDDED_PHY + #define USB_EMBEDDED_PHY_ENABLED + #endif + +// #define USB_HS_INTERNAL_DMA_ENABLED +#endif + +#define USB_SOF_OUTPUT 0 +#define USB_LOW_POWER 0 + +//#define USB_LOW_PWR_ENABLE + +/****************** USB OTG MODE CONFIGURATION ********************************/ +#define USE_HOST_MODE +#define USE_DEVICE_MODE +//#define USE_OTG_MODE + +#ifndef USB_FS_CORE + #ifndef USB_HS_CORE + #error "USB_HS_CORE or USB_FS_CORE should be defined" + #endif +#endif + +#ifndef USE_DEVICE_MODE + #ifndef USE_HOST_MODE + #error "USE_DEVICE_MODE or USE_HOST_MODE should be defined" + #endif +#endif + +// #ifndef USE_USB_HS +// #ifndef USE_USB_FS +// #error "USE_USB_HS or USE_USB_FS should be defined" +// #endif +// #endif + +/****************** C Compilers dependent keywords ****************************/ +/* In HS mode and when the DMA is used, all variables and data structures dealing + with the DMA during the transaction process should be 4-bytes aligned */ +#ifdef USB_HS_INTERNAL_DMA_ENABLED + #if defined (__GNUC__) /* GNU Compiler */ + #define __ALIGN_END __attribute__ ((aligned(4))) + #define __ALIGN_BEGIN + #else + #define __ALIGN_END + #if defined (__CC_ARM) /* ARM Compiler */ + #define __ALIGN_BEGIN __align(4) + #elif defined (__ICCARM__) /* IAR Compiler */ + #define __ALIGN_BEGIN + #elif defined (__TASKING__) /* TASKING Compiler */ + #define __ALIGN_BEGIN __align(4) + #endif /* __CC_ARM */ + #endif /* __GNUC__ */ +#else + #define __ALIGN_BEGIN + #define __ALIGN_END +#endif /* USB_OTG_HS_INTERNAL_DMA_ENABLED */ + +/* __packed keyword used to decrease the data type alignment to 1-byte */ +#if defined (__CC_ARM) /* ARM Compiler */ + #define __packed __packed +#elif defined (__ICCARM__) /* IAR Compiler */ + #define __packed __packed +#elif defined ( __GNUC__ ) /* GNU Compiler */ + #ifndef __packed + #define __packed __attribute__ ((__packed__)) + #endif +#elif defined (__TASKING__) /* TASKING Compiler */ + #define __packed __unaligned +#endif /* __CC_ARM */ + +#endif /* __USB_CONF_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusb_msc.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusb_msc.h new file mode 100644 index 0000000000..0ce94650e6 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/gdusb_msc.h @@ -0,0 +1,68 @@ +/*! + \file usb_msc.h + \brief definitions for the USB MSC class + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USB_MSC_H +#define __USB_MSC_H + +#include "usb_ch9_std.h" + +/* mass storage device class code */ +#define USB_CLASS_MSC 0x08U + +/* mass storage subclass code */ +#define USB_MSC_SUBCLASS_RBC 0x01U +#define USB_MSC_SUBCLASS_ATAPI 0x02U +#define USB_MSC_SUBCLASS_UFI 0x04U +#define USB_MSC_SUBCLASS_SCSI 0x06U +#define USB_MSC_SUBCLASS_LOCKABLE 0x07U +#define USB_MSC_SUBCLASS_IEEE1667 0x08U + +/* mass storage interface class control protocol codes */ +#define USB_MSC_PROTOCOL_CBI 0x00U +#define USB_MSC_PROTOCOL_CBI_ALT 0x01U +#define USB_MSC_PROTOCOL_BBB 0x50U + +/* mass storage request codes */ +#define USB_MSC_REQ_CODES_ADSC 0x00U +#define USB_MSC_REQ_CODES_GET 0xFCU +#define USB_MSC_REQ_CODES_PUT 0xFDU +#define USB_MSC_REQ_CODES_GML 0xFEU +#define USB_MSC_REQ_CODES_BOMSR 0xFFU + +#define BBB_GET_MAX_LUN 0xFEU +#define BBB_RESET 0xFFU + +#define SCSI_CMD_LENGTH 16U + +#endif /* __USB_MSC_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_conf.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_conf.h new file mode 100644 index 0000000000..64329b8c31 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_conf.h @@ -0,0 +1,72 @@ +/*! + \file usbd_conf.h + \brief the header file of USB device configuration + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBD_CONF_H +#define __USBD_CONF_H + +#include "gdusb_conf.h" + +#define USBD_CFG_MAX_NUM 1 +#define USBD_ITF_MAX_NUM 1 + +#define CDC_COM_INTERFACE 0 + +#define USB_STR_DESC_MAX_SIZE 255 + +#define CDC_DATA_IN_EP EP1_IN /* EP1 for data IN */ +#define CDC_DATA_OUT_EP EP3_OUT /* EP3 for data OUT */ +#define CDC_CMD_EP EP2_IN /* EP2 for CDC commands */ + +#define USB_STRING_COUNT 4U + +#define USB_CDC_CMD_PACKET_SIZE 8 /* Control Endpoint Packet size */ + +#define APP_RX_DATA_SIZE 2048 /* Total size of IN buffer: + APP_RX_DATA_SIZE*8 / MAX_BAUDARATE * 1000 should be > CDC_IN_FRAME_INTERVAL*8 */ + +/* CDC endpoints parameters: you can fine tune these values depending on the needed baud rate and performance */ +#ifdef USE_USB_HS + #ifdef USE_ULPI_PHY + #define USB_CDC_DATA_PACKET_SIZE 512 /* Endpoint IN & OUT Packet size */ + #define CDC_IN_FRAME_INTERVAL 40 /* Number of micro-frames between IN transfers */ + #else + #define USB_CDC_DATA_PACKET_SIZE 64 /* Endpoint IN & OUT Packet size */ + #define CDC_IN_FRAME_INTERVAL 5 /* Number of frames between IN transfers */ + #endif +#else + #define USB_CDC_DATA_PACKET_SIZE 64 /* Endpoint IN & OUT Packet size */ + #define CDC_IN_FRAME_INTERVAL 5 /* Number of frames between IN transfers */ +#endif /* USE_USB_HS */ + +#endif /* __USBD_CONF_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_core.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_core.h new file mode 100644 index 0000000000..79298f7b4e --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_core.h @@ -0,0 +1,103 @@ +/*! + \file usbd_core.h + \brief USB device mode core functions protype + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBD_CORE_H +#define __USBD_CORE_H + +#include "drv_usb_core.h" +#include "drv_usb_dev.h" + +typedef enum +{ + USBD_OK = 0U, /*!< status OK */ + USBD_BUSY, /*!< status busy */ + USBD_FAIL, /*!< status fail */ +} usbd_status; + +enum _usbd_status { + USBD_DEFAULT = 1U, /*!< default status */ + USBD_ADDRESSED = 2U, /*!< address send status */ + USBD_CONFIGURED = 3U, /*!< configured status */ + USBD_SUSPENDED = 4U /*!< suspended status */ +}; + +/* static inline function definitions */ + +/*! + \brief set USB device address + \param[in] udev: pointer to USB core instance + \param[in] addr: device address to set + \param[out] none + \retval none +*/ +__STATIC_INLINE void usbd_addr_set (usb_core_driver *udev, uint8_t addr) +{ + usb_devaddr_set(udev, addr); +} + +/*! + \brief get the received data length + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint number + \param[out] none + \retval USB device operation cur_status +*/ +__STATIC_INLINE uint16_t usbd_rxcount_get (usb_core_driver *udev, uint8_t ep_num) +{ + return (uint16_t)udev->dev.transc_out[ep_num].xfer_count; +} + +/* function declarations */ +/* initializes the USB device-mode stack and load the class driver */ +void usbd_init (usb_core_driver *udev, usb_core_enum core, usb_desc *desc, usb_class_core *class_core); +/* endpoint initialization */ +uint32_t usbd_ep_setup (usb_core_driver *udev, const usb_desc_ep *ep_desc); +/* configure the endpoint when it is disabled */ +uint32_t usbd_ep_clear (usb_core_driver *udev, uint8_t ep_addr); +/* endpoint prepare to receive data */ +uint32_t usbd_ep_recev (usb_core_driver *udev, uint8_t ep_addr, uint8_t *pbuf, uint32_t len); +/* endpoint prepare to transmit data */ +uint32_t usbd_ep_send (usb_core_driver *udev, uint8_t ep_addr, uint8_t *pbuf, uint32_t len); +/* set an endpoint to STALL status */ +uint32_t usbd_ep_stall (usb_core_driver *udev, uint8_t ep_addr); +/* clear endpoint STALLed status */ +uint32_t usbd_ep_stall_clear (usb_core_driver *udev, uint8_t ep_addr); +/* flush the endpoint FIFOs */ +uint32_t usbd_fifo_flush (usb_core_driver *udev, uint8_t ep_addr); +/* device connect */ +void usbd_connect (usb_core_driver *udev); +/* device disconnect */ +void usbd_disconnect (usb_core_driver *udev); + +#endif /* __USBD_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_enum.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_enum.h new file mode 100644 index 0000000000..84084425cb --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_enum.h @@ -0,0 +1,105 @@ +/*! + \file usbd_enum.h + \brief USB enumeration definitions + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBD_ENUM_H +#define __USBD_ENUM_H + +#include "gdusbd_core.h" +#include "gdusbd_conf.h" +#include + +#ifndef NULL + #define NULL 0U +#endif + +typedef enum _usb_reqsta { + REQ_SUPP = 0x0U, /* request support */ + REQ_NOTSUPP = 0x1U, /* request not support */ +} usb_reqsta; + +/* string descriptor index */ +enum _str_index +{ + STR_IDX_LANGID = 0x0U, /* language ID string index */ + STR_IDX_MFC = 0x1U, /* manufacturer string index */ + STR_IDX_PRODUCT = 0x2U, /* product string index */ + STR_IDX_SERIAL = 0x3U, /* serial string index */ + STR_IDX_CONFIG = 0x4U, /* configuration string index */ + STR_IDX_ITF = 0x5U, /* interface string index */ +#ifndef WINUSB_EXEMPT_DRIVER + STR_IDX_MAX = 0x6U, /* string maximum index */ +#else + STR_IDX_MAX = 0xEFU, /* string maximum index */ +#endif /* WINUSB_EXEMPT_DRIVER */ +}; + +typedef enum _usb_pwrsta { + USB_PWRSTA_SELF_POWERED = 0x1U, /* USB is in self powered status */ + USB_PWRSTA_REMOTE_WAKEUP = 0x2U, /* USB is in remote wakeup status */ +} usb_pwrsta; + +typedef enum _usb_feature +{ + USB_FEATURE_EP_HALT = 0x0U, /* USB has endpoint halt feature */ + USB_FEATURE_REMOTE_WAKEUP = 0x1U, /* USB has endpoint remote wakeup feature */ + USB_FEATURE_TEST_MODE = 0x2U, /* USB has endpoint test mode feature */ +} usb_feature; + +#define ENG_LANGID 0x0409U /* english language ID */ +#define CHN_LANGID 0x0804U /* chinese language ID */ + +/* USB device exported macros */ +#define CTL_EP(ep) (((ep) == 0x00U) || ((ep) == 0x80U)) + +#define DEVICE_ID1 (0x1FFF7A10U) /* device ID1 */ +#define DEVICE_ID2 (0x1FFF7A14U) /* device ID2 */ +#define DEVICE_ID3 (0x1FFF7A18U) /* device ID3 */ + +#define DEVICE_ID (0x40023D00U) + +/* function declarations */ +/* handle USB standard device request */ +usb_reqsta usbd_standard_request (usb_core_driver *udev, usb_req *req); +/* handle USB device class request */ +usb_reqsta usbd_class_request (usb_core_driver *udev, usb_req *req); +/* handle USB vendor request */ +usb_reqsta usbd_vendor_request (usb_core_driver *udev, usb_req *req); +/* handle USB enumeration error */ +void usbd_enum_error (usb_core_driver *udev, usb_req *req); +/* convert hex 32bits value into unicode char */ +void int_to_unicode (uint32_t value, uint8_t *pbuf, uint8_t len); +/* get serial string */ +void serial_string_get (uint16_t *unicode_str); + +#endif /* __USBD_ENUM_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_transc.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_transc.h new file mode 100644 index 0000000000..1aacc790f6 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_transc.h @@ -0,0 +1,56 @@ +/*! + \file usbd_transc.h + \brief USB transaction core functions prototype + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBD_TRANSC_H +#define __USBD_TRANSC_H + +#include "gdusbd_core.h" + +/* function declarations */ +/* USB send data in the control transaction */ +usbd_status usbd_ctl_send (usb_core_driver *udev); +/* USB receive data in control transaction */ +usbd_status usbd_ctl_recev (usb_core_driver *udev); +/* USB send control transaction status */ +usbd_status usbd_ctl_status_send (usb_core_driver *udev); +/* USB control receive status */ +usbd_status usbd_ctl_status_recev (usb_core_driver *udev); +/* USB setup stage processing */ +uint8_t usbd_setup_transc (usb_core_driver *udev); +/* data out stage processing */ +uint8_t usbd_out_transc (usb_core_driver *udev, uint8_t ep_num); +/* data in stage processing */ +uint8_t usbd_in_transc (usb_core_driver *udev, uint8_t ep_num); + +#endif /* __USBD_TRANSC_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_conf.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_conf.h new file mode 100644 index 0000000000..7827ec04ea --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_conf.h @@ -0,0 +1,46 @@ +/*! + \file usbh_conf.h + \brief general low level driver configuration + + \version 2020-09-04, V3.0.0, demo for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBH_CONF_H +#define __USBH_CONF_H + +#define USBH_MAX_EP_NUM 2 +#define USBH_MAX_INTERFACES_NUM 2 +#define USBH_MAX_ALT_SETTING 2 +#define USBH_MAX_SUPPORTED_CLASS 2 + +#define USBH_DATA_BUF_MAX_LEN 0x200 +#define USBH_CFGSET_MAX_LEN 0x200 + +#endif /* __USBH_CONF_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_core.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_core.h new file mode 100644 index 0000000000..f087c721ad --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_core.h @@ -0,0 +1,284 @@ +/*! + \file usbh_core.h + \brief USB host core state machine header file + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBH_CORE_H +#define __USBH_CORE_H + +#include "gdusbh_conf.h" +#include "drv_usb_host.h" + +#define MSC_CLASS 0x08U +#define HID_CLASS 0x03U +#define MSC_PROTOCOL 0x50U +#define CBI_PROTOCOL 0x01U + +#define USBH_MAX_ERROR_COUNT 3U + +#define USBH_DEV_ADDR_DEFAULT 0U +#define USBH_DEV_ADDR 1U + +typedef enum +{ + USBH_OK = 0U, + USBH_BUSY, + USBH_FAIL, + USBH_NOT_SUPPORTED, + USBH_UNRECOVERED_ERROR, + USBH_SPEED_UNKNOWN_ERROR, + USBH_APPLY_DEINIT +} usbh_status; + +/* USB host global operation state */ +typedef enum +{ + HOST_DEFAULT = 0U, + HOST_DETECT_DEV_SPEED, + HOST_DEV_ATTACHED, + HOST_DEV_DETACHED, + HOST_ENUM, + HOST_SET_WAKEUP_FEATURE, + HOST_CHECK_CLASS, + HOST_CLASS_ENUM, + HOST_CLASS_HANDLER, + HOST_USER_INPUT, + HOST_SUSPENDED, + HOST_WAKEUP, + HOST_ERROR +} usb_host_state; + +/* USB host enumeration state */ +typedef enum +{ + ENUM_DEFAULT = 0U, + ENUM_GET_DEV_DESC, + ENUM_SET_ADDR, + ENUM_GET_CFG_DESC, + ENUM_GET_CFG_DESC_SET, + ENUM_GET_STR_DESC, +#ifdef USB_MTP + ENUM_GET_MTP_STR, +#endif + ENUM_SET_CONFIGURATION, + ENUM_DEV_CONFIGURED +} usbh_enum_state; + +/* USB host control transfer state */ +typedef enum +{ + CTL_IDLE = 0U, + CTL_SETUP, + CTL_SETUP_WAIT, + CTL_DATA_IN, + CTL_DATA_IN_WAIT, + CTL_DATA_OUT, + CTL_DATA_OUT_WAIT, + CTL_STATUS_IN, + CTL_STATUS_IN_WAIT, + CTL_STATUS_OUT, + CTL_STATUS_OUT_WAIT, + CTL_ERROR, + CTL_FINISH +} usbh_ctl_state; + +/* user action state */ +typedef enum +{ + USBH_USER_NO_RESP = 0U, + USBH_USER_RESP_OK = 1U, +} usbh_user_status; + +typedef enum +{ + USBH_PORT_EVENT = 1U, + USBH_URB_EVENT, + USBH_CONTROL_EVENT, + USBH_CLASS_EVENT, + USBH_STATE_CHANGED_EVENT, +}usbh_os_event; + +/* control transfer information */ +typedef struct _usbh_control +{ + uint8_t pipe_in_num; + uint8_t pipe_out_num; + uint8_t max_len; + uint8_t error_count; + + uint8_t *buf; + uint16_t ctl_len; + uint16_t timer; + + usb_setup setup; + usbh_ctl_state ctl_state; +} usbh_control; + +/* USB interface descriptor set */ +typedef struct _usb_desc_itf_set +{ + usb_desc_itf itf_desc; + usb_desc_ep ep_desc[USBH_MAX_EP_NUM]; +} usb_desc_itf_set; + +/* USB configure descriptor set */ +typedef struct _usb_desc_cfg_set +{ + usb_desc_config cfg_desc; + usb_desc_itf_set itf_desc_set[USBH_MAX_INTERFACES_NUM][USBH_MAX_ALT_SETTING]; +} usb_desc_cfg_set; + +/* USB device property */ +typedef struct +{ + uint8_t data[USBH_DATA_BUF_MAX_LEN]; /* if DMA is used, the data array must be located in the first position */ + uint8_t cur_itf; + uint8_t addr; + + uint32_t speed; + + usb_desc_dev dev_desc; + usb_desc_cfg_set cfg_desc_set; + +#if (USBH_KEEP_CFG_DESCRIPTOR == 1U) + uint8_t cfgdesc_rawdata[USBH_CFGSET_MAX_LEN]; +#endif /* (USBH_KEEP_CFG_DESCRIPTOR == 1U) */ +} usb_dev_prop; + +struct _usbh_host; + +/* device class callbacks */ +typedef struct +{ + uint8_t class_code; /*!< USB class type */ + + usbh_status (*class_init) (struct _usbh_host *phost); + void (*class_deinit) (struct _usbh_host *phost); + usbh_status (*class_requests) (struct _usbh_host *phost); + usbh_status (*class_machine) (struct _usbh_host *phost); + usbh_status (*class_sof) (struct _usbh_host *uhost); + + void *class_data; +} usbh_class; + +/* user callbacks */ +typedef struct +{ + void (*dev_init) (void); + void (*dev_deinit) (void); + void (*dev_attach) (void); + void (*dev_reset) (void); + void (*dev_detach) (void); + void (*dev_over_currented) (void); + void (*dev_speed_detected) (uint32_t dev_speed); + void (*dev_devdesc_assigned) (void *dev_desc); + void (*dev_address_set) (void); + + void (*dev_cfgdesc_assigned) (usb_desc_config *cfg_desc, + usb_desc_itf *itf_desc, + usb_desc_ep *ep_desc); + + void (*dev_mfc_str) (void *mfc_str); + void (*dev_prod_str) (void *prod_str); + void (*dev_seral_str) (void *serial_str); + void (*dev_enumerated) (void); + usbh_user_status (*dev_user_input) (void); + int (*dev_user_app) (void); + void (*dev_not_supported) (void); + void (*dev_error) (void); +} usbh_user_cb; + +/* host information */ +typedef struct _usbh_host +{ + usb_host_state cur_state; /*!< host state machine value */ + usb_host_state backup_state; /*!< backup of previous state machine value */ + usbh_enum_state enum_state; /*!< enumeration state machine */ + usbh_control control; /*!< USB host control state machine */ + usb_dev_prop dev_prop; /*!< USB device property */ + + usbh_class *uclass[USBH_MAX_SUPPORTED_CLASS]; /*!< USB host supported class */ + usbh_class *active_class; /*!< USB active class */ + usbh_user_cb *usr_cb; /*!< USB user callback */ + + uint8_t class_num; /*!< USB class number */ + + void *data; /*!< used for... */ + +#ifdef USB_LOW_PWR_ENABLE + uint8_t suspend_flag; +#endif /* USB_LOW_PWR_ENABLE*/ +} usbh_host; + +/*! + \brief get USB URB state + \param[in] udev: pointer to USB core instance + \param[in] pp_num: pipe number + \param[out] none + \retval none +*/ +static inline usb_urb_state usbh_urbstate_get (usb_core_driver *udev, uint8_t pp_num) +{ + return udev->host.pipe[pp_num].urb_state; +} + +/*! + \brief get USB transfer data count + \param[in] udev: pointer to USB core instance + \param[in] pp_num: pipe number + \param[out] none + \retval none +*/ +static inline uint32_t usbh_xfercount_get (usb_core_driver *udev, uint8_t pp_num) +{ + return udev->host.backup_xfercount[pp_num]; +} + +/* function declarations */ +/* USB host stack initializations */ +void usbh_init (usbh_host *uhost, usb_core_driver *udev, usb_core_enum usb_core, usbh_user_cb *user_cb); +/* USB host register device class */ +usbh_status usbh_class_register (usbh_host *uhost, usbh_class *puclass); +/* de-initialize USB host */ +usbh_status usbh_deinit (usbh_host *uhost); +/* USB host core main state machine process */ +void usbh_core_task (usbh_host *uhost); +/* handle the error on USB host side */ +void usbh_error_handler (usbh_host *uhost, usbh_status err_type); +#ifdef USB_LOW_PWR_ENABLE +/* handles the USB resume from suspend mode */ +void usb_hwp_resume(usb_core_driver *udev); +#endif /* USB_LOW_PWR_ENABLE */ + +// extern uint8_t udiskMounted; + +#endif /* __USBH_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_enum.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_enum.h new file mode 100644 index 0000000000..48b1e5bf75 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_enum.h @@ -0,0 +1,74 @@ +/*! + \file usbh_enum.h + \brief USB host mode USB enumeration header file + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBH_ENUM_H +#define __USBH_ENUM_H + +#include "gdusb_conf.h" +#include "gdusbh_core.h" + +#if 0 //defined(USE_GD32) +/* function declarations */ +/* configure USB control status parameters */ +void usbh_ctlstate_config (usbh_host *uhost, uint8_t *buf, uint16_t len); +/* get device descriptor from the USB device */ +usbh_status usbh_devdesc_get (usbh_host *uhost, uint8_t len); +/* get configuration descriptor from the USB device */ +usbh_status usbh_cfgdesc_get (usbh_host *uhost, uint16_t len); +/* get string descriptor from the USB device */ +usbh_status usbh_strdesc_get (usbh_host *uhost,uint8_t str_index, uint8_t *buf, uint16_t len); +/* set the address to the connected device */ +usbh_status usbh_setaddress (usbh_host *uhost, uint8_t dev_addr); +/* set the configuration value to the connected device */ +usbh_status usbh_setcfg (usbh_host *uhost, uint16_t config); +/* set the interface value to the connected device */ +usbh_status usbh_setinterface (usbh_host *uhost, uint8_t itf_num, uint8_t alter_setting); +/* set or enable a specific device feature */ +usbh_status usbh_setdevfeature (usbh_host *uhost, uint8_t feature_selector, uint16_t windex); +/* clear or disable a specific device feature */ +usbh_status usbh_clrdevfeature (usbh_host *uhost, uint8_t feature_selector, uint16_t windex); +/* clear or disable a specific feature */ +usbh_status usbh_clrfeature (usbh_host *uhost, uint8_t ep_addr, uint8_t pp_num); +/* get the next descriptor header */ +usb_desc_header *usbh_nextdesc_get (uint8_t *pbuf, uint16_t *ptr); +/* select an interface */ +usbh_status usbh_interface_select (usb_dev_prop *udev, uint8_t interface); +/* find the interface index for a specific class */ +uint8_t usbh_interface_find (usb_dev_prop *udev, uint8_t main_class, uint8_t sub_class, uint8_t protocol); +/* find the interface index for a specific class interface and alternate setting number */ +uint8_t usbh_interfaceindex_find (usb_dev_prop *udev, uint8_t interface_number, uint8_t alt_settings); + +#endif + +#endif /* __USBH_ENUM_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_pipe.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_pipe.h new file mode 100644 index 0000000000..0f5ec5f516 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_pipe.h @@ -0,0 +1,100 @@ +/*! + \file usbh_pipe.h + \brief USB host mode pipe header file + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBH_PIPE_H +#define __USBH_PIPE_H + +#include "gdusbh_core.h" + +#define HC_MAX 8U + +#define HC_OK 0x0000U +#define HC_USED 0x8000U +#define HC_ERROR 0xFFFFU +#define HC_USED_MASK 0x7FFFU + +/*! + \brief set toggle for a pipe + \param[in] udev: pointer to USB core instance + \param[in] pp_num: pipe number + \param[in] toggle: toggle (0/1) + \param[out] none + \retval operation status +*/ +__STATIC_INLINE void usbh_pipe_toggle_set (usb_core_driver *udev, uint8_t pp_num, uint8_t toggle) +{ + if (udev->host.pipe[pp_num].ep.dir) { + udev->host.pipe[pp_num].data_toggle_in = toggle; + } else { + udev->host.pipe[pp_num].data_toggle_out = toggle; + } +} + +/*! + \brief get toggle flag of pipe + \param[in] udev: pointer to USB core instance + \param[in] pp_num: pipe number + \param[out] none + \retval operation status +*/ +__STATIC_INLINE uint8_t usbh_pipe_toggle_get (usb_core_driver *udev, uint8_t pp_num) +{ + if (udev->host.pipe[pp_num].ep.dir) { + return udev->host.pipe[pp_num].data_toggle_in; + } else { + return udev->host.pipe[pp_num].data_toggle_out; + } +} + +/* function declarations */ +/* create a pipe */ +uint8_t usbh_pipe_create (usb_core_driver *udev, + usb_dev_prop *dev, + uint8_t pp_num, + uint8_t ep_type, + uint16_t ep_mpl); +/* modify a pipe */ +uint8_t usbh_pipe_update (usb_core_driver *udev, + uint8_t pp_num, + uint8_t dev_addr, + uint32_t dev_speed, + uint16_t ep_mpl); +/* allocate a new pipe */ +uint8_t usbh_pipe_allocate (usb_core_driver *udev, uint8_t ep_addr); +/* free a pipe */ +uint8_t usbh_pipe_free (usb_core_driver *udev, uint8_t pp_num); +/* delete all USB host pipe */ +uint8_t usbh_pipe_delete (usb_core_driver *udev); + +#endif /* __USBH_PIPE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_usr.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_usr.h new file mode 100644 index 0000000000..0eae37e800 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_usr.h @@ -0,0 +1,97 @@ +/*! + \file usbh_usr.c + \brief USB host user callbacks + + \version 2020-09-04, V3.0.0, demo for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBH_USR_H +#define __USBH_USR_H + +#include "ff.h" +#include "gdusb_conf.h" +#include "gdusbh_core.h" +#include + +#if 0 //defined(USE_GD32) + +extern usbh_user_cb usr_cb; +extern uint8_t USBH_USR_ApplicationState; + +/* state machine for the USBH_USR_ApplicationState */ +#define USBH_USR_FS_INIT 0 +#define USBH_USR_FS_READLIST 1 +#define USBH_USR_FS_WRITEFILE 2 +#define USBH_USR_FS_DRAW 3 +#define USBH_USR_FS_DEMOEND 4 + +/* function declarations */ +/* user operation for host-mode initialization */ +void usbh_user_init (void); +/* deinitialize user state and associated variables */ +void usbh_user_deinit (void); +/* user operation for device attached */ +void usbh_user_device_connected (void); +/* user operation for reset USB Device */ +void usbh_user_device_reset (void); +/* user operation for device disconnect event */ +void usbh_user_device_disconnected (void); +/* user operation for device over current detection event */ +void usbh_user_over_current_detected (void); +/* user operation for detecting device speed */ +void usbh_user_device_speed_detected (uint32_t DeviceSpeed); +/* user operation when device descriptor is available */ +void usbh_user_device_desc_available (void *); +/* usb device is successfully assigned the address */ +void usbh_user_device_address_assigned (void); +/* user operation when configuration descriptor is available */ +void usbh_user_configuration_descavailable (usb_desc_config *cfgDesc, + usb_desc_itf *itfDesc, + usb_desc_ep *epDesc); +/* user operation when manufacturer string exists */ +void usbh_user_manufacturer_string (void *); +/* user operation when product string exists */ +void usbh_user_product_string (void *); +/* user operation when serialNum string exists */ +void usbh_user_serialnum_string (void *); +/* user response request is displayed to ask for application jump to class */ +void usbh_user_enumeration_finish (void); +/* user action for application state entry */ +usbh_user_status usbh_user_userinput (void); +/* user operation when device is not supported */ +void usbh_user_device_not_supported (void); +/* user operation when unrecovered error happens */ +void usbh_user_unrecovered_error (void); +/* demo application for mass storage */ +int usbh_usr_msc_application (void); + +#endif + +#endif /*__USBH_USR_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_core.h b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_core.h new file mode 100644 index 0000000000..23728cbf44 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_core.h @@ -0,0 +1,212 @@ +/*! + \file usbh_hid_core.h + \brief header file for the usbh_hid_core.c + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBH_HID_CORE_H +#define __USBH_HID_CORE_H + +#include "usb_hid.h" +#include "gdusbh_enum.h" +#include "usbh_transc.h" + +#define HID_MIN_POLL 10U +#define HID_REPORT_SIZE 16U +#define HID_MAX_USAGE 10U +#define HID_MAX_NBR_REPORT_FMT 10U +#define HID_QUEUE_SIZE 10U + +#define HID_ITEM_LONG 0xFEU + +#define HID_ITEM_TYPE_MAIN 0x00U +#define HID_ITEM_TYPE_GLOBAL 0x01U +#define HID_ITEM_TYPE_LOCAL 0x02U +#define HID_ITEM_TYPE_RESERVED 0x03U + +#define HID_MAIN_ITEM_TAG_INPUT 0x08U +#define HID_MAIN_ITEM_TAG_OUTPUT 0x09U +#define HID_MAIN_ITEM_TAG_COLLECTION 0x0AU +#define HID_MAIN_ITEM_TAG_FEATURE 0x0BU +#define HID_MAIN_ITEM_TAG_ENDCOLLECTION 0x0CU + +#define HID_GLOBAL_ITEM_TAG_USAGE_PAGE 0x00U +#define HID_GLOBAL_ITEM_TAG_LOG_MIN 0x01U +#define HID_GLOBAL_ITEM_TAG_LOG_MAX 0x02U +#define HID_GLOBAL_ITEM_TAG_PHY_MIN 0x03U +#define HID_GLOBAL_ITEM_TAG_PHY_MAX 0x04U +#define HID_GLOBAL_ITEM_TAG_UNIT_EXPONENT 0x05U +#define HID_GLOBAL_ITEM_TAG_UNIT 0x06U +#define HID_GLOBAL_ITEM_TAG_REPORT_SIZE 0x07U +#define HID_GLOBAL_ITEM_TAG_REPORT_ID 0x08U +#define HID_GLOBAL_ITEM_TAG_REPORT_COUNT 0x09U +#define HID_GLOBAL_ITEM_TAG_PUSH 0x0AU +#define HID_GLOBAL_ITEM_TAG_POP 0x0BU + +#define HID_LOCAL_ITEM_TAG_USAGE 0x00U +#define HID_LOCAL_ITEM_TAG_USAGE_MIN 0x01U +#define HID_LOCAL_ITEM_TAG_USAGE_MAX 0x02U +#define HID_LOCAL_ITEM_TAG_DESIGNATOR_INDEX 0x03U +#define HID_LOCAL_ITEM_TAG_DESIGNATOR_MIN 0x04U +#define HID_LOCAL_ITEM_TAG_DESIGNATOR_MAX 0x05U +#define HID_LOCAL_ITEM_TAG_STRING_INDEX 0x07U +#define HID_LOCAL_ITEM_TAG_STRING_MIN 0x08U +#define HID_LOCAL_ITEM_TAG_STRING_MAX 0x09U +#define HID_LOCAL_ITEM_TAG_DELIMITER 0x0AU + +#define USB_HID_DESC_SIZE 9U + +/* states for HID state machine */ +typedef enum { + HID_INIT = 0U, + HID_IDLE, + HID_SEND_DATA, + HID_BUSY, + HID_GET_DATA, + HID_SYNC, + HID_POLL, + HID_ERROR, +} hid_state; + +typedef enum { + HID_REQ_INIT = 0U, + HID_REQ_IDLE, + HID_REQ_GET_REPORT_DESC, + HID_REQ_GET_HID_DESC, + HID_REQ_SET_IDLE, + HID_REQ_SET_PROTOCOL, + HID_REQ_SET_REPORT, +} hid_ctlstate; + +typedef enum +{ + HID_MOUSE = 0x01U, + HID_KEYBOARD = 0x02U, + HID_UNKNOWN = 0xFFU, +} hid_type; + +typedef struct _hid_report_data +{ + uint8_t ReportID; + uint8_t ReportType; + uint16_t UsagePage; + uint32_t Usage[HID_MAX_USAGE]; + uint32_t NbrUsage; + uint32_t UsageMin; + uint32_t UsageMax; + int32_t LogMin; + int32_t LogMax; + int32_t PhyMin; + int32_t PhyMax; + int32_t UnitExp; + uint32_t Unit; + uint32_t ReportSize; + uint32_t ReportCnt; + uint32_t Flag; + uint32_t PhyUsage; + uint32_t AppUsage; + uint32_t LogUsage; +} hid_report_data; + +typedef struct _hid_report_ID +{ + uint8_t size; /*!< report size return by the device ID */ + uint8_t reportID; /*!< report ID */ + uint8_t type; /*!< report type (INPUT/OUTPUT/FEATURE) */ +} hid_report_ID; + +typedef struct _hid_collection +{ + uint32_t usage; + uint8_t type; + struct _hid_collection *next_ptr; +} hid_collection; + +typedef struct _hid_appcollection +{ + uint32_t usage; + uint8_t type; + uint8_t nbr_report_fmt; + hid_report_data report_data[HID_MAX_NBR_REPORT_FMT]; +} hid_appcollection; + +typedef struct +{ + uint8_t *buf; + uint16_t head; + uint16_t tail; + uint16_t size; + uint8_t lock; +} data_fifo; + +/* structure for HID process */ +typedef struct _hid_process +{ + uint8_t pipe_in; + uint8_t pipe_out; + uint8_t ep_addr; + uint8_t ep_in; + uint8_t ep_out; + __IO uint8_t data_ready; + uint8_t *pdata; + uint16_t len; + uint16_t poll; + + __IO uint32_t timer; + + data_fifo fifo; + usb_desc_hid hid_desc; + hid_report_data hid_report; + + hid_state state; + hid_ctlstate ctl_state; + usbh_status (*init)(usb_core_driver *udev, usbh_host *uhost); + void (*machine)(usb_core_driver *udev, usbh_host *uhost); +} usbh_hid_handler; + +extern usbh_class usbh_hid; + +/* function declarations */ +/* set HID report */ +usbh_status usbh_set_report (usb_core_driver *udev, + usbh_host *uhost, + uint8_t report_type, + uint8_t report_ID, + uint8_t report_len, + uint8_t *report_buf); +/* read data from FIFO */ +uint16_t usbh_hid_fifo_read (data_fifo *fifo, void *buf, uint16_t nbytes); +/* write data to FIFO */ +uint16_t usbh_hid_fifo_write (data_fifo *fifo, void *buf, uint16_t nbytes); +/* initialize FIFO */ +void usbh_hid_fifo_init (data_fifo *fifo, uint8_t *buf, uint16_t size); + +#endif /* __USBH_HID_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_keybd.h b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_keybd.h new file mode 100644 index 0000000000..f451665d5c --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_keybd.h @@ -0,0 +1,303 @@ +/*! + \file usbh_hid_keybd.h + \brief header file for usbh_hid_keybd.c + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBH_HID_KEYBD_H +#define __USBH_HID_KEYBD_H + +#include "usb_conf.h" +#include "usbh_hid_core.h" + +//#define AZERTY_KEYBOARD +#define QWERTY_KEYBOARD + +#define KBD_LEFT_CTRL 0x01U +#define KBD_LEFT_SHIFT 0x02U +#define KBD_LEFT_ALT 0x04U +#define KBD_LEFT_GUI 0x08U +#define KBD_RIGHT_CTRL 0x10U +#define KBD_RIGHT_SHIFT 0x20U +#define KBD_RIGHT_ALT 0x40U +#define KBD_RIGHT_GUI 0x80U + +#define KEY_NONE 0x00U +#define KEY_ERRORROLLOVER 0x01U +#define KEY_POSTFAIL 0x02U +#define KEY_ERRORUNDEFINED 0x03U +#define KEY_A 0x04U +#define KEY_B 0x05U +#define KEY_C 0x06U +#define KEY_D 0x07U +#define KEY_E 0x08U +#define KEY_F 0x09U +#define KEY_G 0x0AU +#define KEY_H 0x0BU +#define KEY_I 0x0CU +#define KEY_J 0x0DU +#define KEY_K 0x0EU +#define KEY_L 0x0FU +#define KEY_M 0x10U +#define KEY_N 0x11U +#define KEY_O 0x12U +#define KEY_P 0x13U +#define KEY_Q 0x14U +#define KEY_R 0x15U +#define KEY_S 0x16U +#define KEY_T 0x17U +#define KEY_U 0x18U +#define KEY_V 0x19U +#define KEY_W 0x1AU +#define KEY_X 0x1BU +#define KEY_Y 0x1CU +#define KEY_Z 0x1DU +#define KEY_1_EXCLAMATION_MARK 0x1EU +#define KEY_2_AT 0x1FU +#define KEY_3_NUMBER_SIGN 0x20U +#define KEY_4_DOLLAR 0x21U +#define KEY_5_PERCENT 0x22U +#define KEY_6_CARET 0x23U +#define KEY_7_AMPERSAND 0x24U +#define KEY_8_ASTERISK 0x25U +#define KEY_9_OPARENTHESIS 0x26U +#define KEY_0_CPARENTHESIS 0x27U +#define KEY_ENTER 0x28U +#define KEY_ESCAPE 0x29U +#define KEY_BACKSPACE 0x2AU +#define KEY_TAB 0x2BU +#define KEY_SPACEBAR 0x2CU +#define KEY_MINUS_UNDERSCORE 0x2DU +#define KEY_EQUAL_PLUS 0x2EU +#define KEY_OBRACKET_AND_OBRACE 0x2FU +#define KEY_CBRACKET_AND_CBRACE 0x30U +#define KEY_BACKSLASH_VERTICAL_BAR 0x31U +#define KEY_NONUS_NUMBER_SIGN_TILDE 0x32U +#define KEY_SEMICOLON_COLON 0x33U +#define KEY_SINGLE_AND_DOUBLE_QUOTE 0x34U +#define KEY_GRAVE ACCENT AND TILDE 0x35U +#define KEY_COMMA_AND_LESS 0x36U +#define KEY_DOT_GREATER 0x37U +#define KEY_SLASH_QUESTION 0x38U +#define KEY_CAPS LOCK 0x39U +#define KEY_F1 0x3AU +#define KEY_F2 0x3BU +#define KEY_F3 0x3CU +#define KEY_F4 0x3DU +#define KEY_F5 0x3EU +#define KEY_F6 0x3FU +#define KEY_F7 0x40U +#define KEY_F8 0x41U +#define KEY_F9 0x42U +#define KEY_F10 0x43U +#define KEY_F11 0x44U +#define KEY_F12 0x45U +#define KEY_PRINTSCREEN 0x46U +#define KEY_SCROLL LOCK 0x47U +#define KEY_PAUSE 0x48U +#define KEY_INSERT 0x49U +#define KEY_HOME 0x4AU +#define KEY_PAGEUP 0x4BU +#define KEY_DELETE 0x4CU +#define KEY_END1 0x4DU +#define KEY_PAGEDOWN 0x4EU +#define KEY_RIGHTARROW 0x4FU +#define KEY_LEFTARROW 0x50U +#define KEY_DOWNARROW 0x51U +#define KEY_UPARROW 0x52U +#define KEY_KEYPAD_NUM_LOCK_AND_CLEAR 0x53U +#define KEY_KEYPAD_SLASH 0x54U +#define KEY_KEYPAD_ASTERIKS 0x55U +#define KEY_KEYPAD_MINUS 0x56U +#define KEY_KEYPAD_PLUS 0x57U +#define KEY_KEYPAD_ENTER 0x58U +#define KEY_KEYPAD_1_END 0x59U +#define KEY_KEYPAD_2_DOWN_ARROW 0x5AU +#define KEY_KEYPAD_3_PAGEDN 0x5BU +#define KEY_KEYPAD_4_LEFT_ARROW 0x5CU +#define KEY_KEYPAD_5 0x5DU +#define KEY_KEYPAD_6_RIGHT_ARROW 0x5EU +#define KEY_KEYPAD_7_HOME 0x5FU +#define KEY_KEYPAD_8_UP_ARROW 0x60U +#define KEY_KEYPAD_9_PAGEUP 0x61U +#define KEY_KEYPAD_0_INSERT 0x62U +#define KEY_KEYPAD_DECIMAL_SEPARATOR_DELETE 0x63U +#define KEY_NONUS_BACK_SLASH_VERTICAL_BAR 0x64U +#define KEY_APPLICATION 0x65U +#define KEY_POWER 0x66U +#define KEY_KEYPAD_EQUAL 0x67U +#define KEY_F13 0x68U +#define KEY_F14 0x69U +#define KEY_F15 0x6AU +#define KEY_F16 0x6BU +#define KEY_F17 0x6CU +#define KEY_F18 0x6DU +#define KEY_F19 0x6EU +#define KEY_F20 0x6FU +#define KEY_F21 0x70U +#define KEY_F22 0x71U +#define KEY_F23 0x72U +#define KEY_F24 0x73U +#define KEY_EXECUTE 0x74U +#define KEY_HELP 0x75U +#define KEY_MENU 0x76U +#define KEY_SELECT 0x77U +#define KEY_STOP 0x78U +#define KEY_AGAIN 0x79U +#define KEY_UNDO 0x7AU +#define KEY_CUT 0x7BU +#define KEY_COPY 0x7CU +#define KEY_PASTE 0x7DU +#define KEY_FIND 0x7EU +#define KEY_MUTE 0x7FU +#define KEY_VOLUME_UP 0x80U +#define KEY_VOLUME_DOWN 0x81U +#define KEY_LOCKING_CAPS_LOCK 0x82U +#define KEY_LOCKING_NUM_LOCK 0x83U +#define KEY_LOCKING_SCROLL_LOCK 0x84U +#define KEY_KEYPAD_COMMA 0x85U +#define KEY_KEYPAD_EQUAL_SIGN 0x86U +#define KEY_INTERNATIONAL1 0x87U +#define KEY_INTERNATIONAL2 0x88U +#define KEY_INTERNATIONAL3 0x89U +#define KEY_INTERNATIONAL4 0x8AU +#define KEY_INTERNATIONAL5 0x8BU +#define KEY_INTERNATIONAL6 0x8CU +#define KEY_INTERNATIONAL7 0x8DU +#define KEY_INTERNATIONAL8 0x8EU +#define KEY_INTERNATIONAL9 0x8FU +#define KEY_LANG1 0x90U +#define KEY_LANG2 0x91U +#define KEY_LANG3 0x92U +#define KEY_LANG4 0x93U +#define KEY_LANG5 0x94U +#define KEY_LANG6 0x95U +#define KEY_LANG7 0x96U +#define KEY_LANG8 0x97U +#define KEY_LANG9 0x98U +#define KEY_ALTERNATE_ERASE 0x99U +#define KEY_SYSREQ 0x9AU +#define KEY_CANCEL 0x9BU +#define KEY_CLEAR 0x9CU +#define KEY_PRIOR 0x9DU +#define KEY_RETURN 0x9EU +#define KEY_SEPARATOR 0x9FU +#define KEY_OUT 0xA0U +#define KEY_OPER 0xA1U +#define KEY_CLEAR_AGAIN 0xA2U +#define KEY_CRSEL 0xA3U +#define KEY_EXSEL 0xA4U +#define KEY_KEYPAD_00 0xB0U +#define KEY_KEYPAD_000 0xB1U +#define KEY_THOUSANDS_SEPARATOR 0xB2U +#define KEY_DECIMAL_SEPARATOR 0xB3U +#define KEY_CURRENCY_UNIT 0xB4U +#define KEY_CURRENCY_SUB_UNIT 0xB5U +#define KEY_KEYPAD_OPARENTHESIS 0xB6U +#define KEY_KEYPAD_CPARENTHESIS 0xB7U +#define KEY_KEYPAD_OBRACE 0xB8U +#define KEY_KEYPAD_CBRACE 0xB9U +#define KEY_KEYPAD_TAB 0xBAU +#define KEY_KEYPAD_BACKSPACE 0xBBU +#define KEY_KEYPAD_A 0xBCU +#define KEY_KEYPAD_B 0xBDU +#define KEY_KEYPAD_C 0xBEU +#define KEY_KEYPAD_D 0xBFU +#define KEY_KEYPAD_E 0xC0U +#define KEY_KEYPAD_F 0xC1U +#define KEY_KEYPAD_XOR 0xC2U +#define KEY_KEYPAD_CARET 0xC3U +#define KEY_KEYPAD_PERCENT 0xC4U +#define KEY_KEYPAD_LESS 0xC5U +#define KEY_KEYPAD_GREATER 0xC6U +#define KEY_KEYPAD_AMPERSAND 0xC7U +#define KEY_KEYPAD_LOGICAL_AND 0xC8U +#define KEY_KEYPAD_VERTICAL_BAR 0xC9U +#define KEY_KEYPAD_LOGIACL_OR 0xCAU +#define KEY_KEYPAD_COLON 0xCBU +#define KEY_KEYPAD_NUMBER_SIGN 0xCCU +#define KEY_KEYPAD_SPACE 0xCDU +#define KEY_KEYPAD_AT 0xCEU +#define KEY_KEYPAD_EXCLAMATION_MARK 0xCFU +#define KEY_KEYPAD_MEMORY_STORE 0xD0U +#define KEY_KEYPAD_MEMORY_RECALL 0xD1U +#define KEY_KEYPAD_MEMORY_CLEAR 0xD2U +#define KEY_KEYPAD_MEMORY_ADD 0xD3U +#define KEY_KEYPAD_MEMORY_SUBTRACT 0xD4U +#define KEY_KEYPAD_MEMORY_MULTIPLY 0xD5U +#define KEY_KEYPAD_MEMORY_DIVIDE 0xD6U +#define KEY_KEYPAD_PLUSMINUS 0xD7U +#define KEY_KEYPAD_CLEAR 0xD8U +#define KEY_KEYPAD_CLEAR_ENTRY 0xD9U +#define KEY_KEYPAD_BINARY 0xDAU +#define KEY_KEYPAD_OCTAL 0xDBU +#define KEY_KEYPAD_DECIMAL 0xDCU +#define KEY_KEYPAD_HEXADECIMAL 0xDDU +#define KEY_LEFTCONTROL 0xE0U +#define KEY_LEFTSHIFT 0xE1U +#define KEY_LEFTALT 0xE2U +#define KEY_LEFT_GUI 0xE3U +#define KEY_RIGHTCONTROL 0xE4U +#define KEY_RIGHTSHIFT 0xE5U +#define KEY_RIGHTALT 0xE6U +#define KEY_RIGHT_GUI 0xE7U + +#define KBR_MAX_NBR_PRESSED 6U + +typedef struct +{ + uint8_t state; + uint8_t lctrl; + uint8_t lshift; + uint8_t lalt; + uint8_t lgui; + uint8_t rctrl; + uint8_t rshift; + uint8_t ralt; + uint8_t rgui; + uint8_t keys[6]; +} hid_keybd_info; + +/* function declarations */ +/* initialize keyboard */ +void usr_keybrd_init (void); +/* process keyboard data */ +void usr_keybrd_process_data (uint8_t pbuf); +/* initialize the keyboard function */ +usbh_status usbh_hid_keybd_init (usb_core_driver *udev, usbh_host *uhost); +/* get keyboard information */ +hid_keybd_info *usbh_hid_keybd_info_get (usb_core_driver *udev, usbh_host *uhost); +/* get the ascii code of hid */ +uint8_t usbh_hid_ascii_code_get (hid_keybd_info *info); +/* keyboard machine */ +void usbh_hid_keybrd_machine (usb_core_driver *udev, usbh_host *uhost); + +#endif /* __USBH_HID_KEYBD_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_mouse.h b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_mouse.h new file mode 100644 index 0000000000..3d360d5e93 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_mouse.h @@ -0,0 +1,59 @@ +/*! + \file usbh_hid_mouse.h + \brief header file for the usbh_hid_mouse.c + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBH_HID_MOUSE_H +#define __USBH_HID_MOUSE_H + +#include "usbh_hid_core.h" + +typedef struct _hid_mouse_info +{ + uint8_t x; + uint8_t y; + uint8_t buttons[3]; +} hid_mouse_info; + +/* function declarations */ +/* initialize mouse */ +void usr_mouse_init (void); +/* process mouse data */ +void usr_mouse_process_data (hid_mouse_info *data); +/* initialize mouse function */ +usbh_status usbh_hid_mouse_init (usb_core_driver *udev, usbh_host *uhost); +/* get mouse information */ +hid_mouse_info *usbh_hid_mouse_info_get (usb_core_driver *udev, usbh_host *uhost); +/* mouse machine */ +void usbh_hid_mouse_machine (usb_core_driver *udev, usbh_host *uhost); + +#endif /* __USBH_HID_MOUSE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_parser.h b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_parser.h new file mode 100644 index 0000000000..7ae22a126b --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_parser.h @@ -0,0 +1,61 @@ +/*! + \file usbh_hid_core.h + \brief header file for the usbh_hid_core.c + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBH_HID_PARSER_H +#define __USBH_HID_PARSER_H + +#include "usbh_hid_core.h" +#include "usbh_hid_usage.h" + +typedef struct +{ + uint8_t *data; + uint32_t size; + uint8_t shift; + uint8_t count; + uint8_t sign; + uint32_t logical_min; /*min value device can return*/ + uint32_t logical_max; /*max value device can return*/ + uint32_t physical_min; /*min vale read can report*/ + uint32_t physical_max; /*max value read can report*/ + uint32_t resolution; +} hid_report_item; + +/* function declarations */ +/* read a hid report item */ +uint32_t hid_item_read (hid_report_item *ri, uint8_t ndx); +/* write a hid report item */ +uint32_t hid_item_write (hid_report_item *ri, uint32_t value, uint8_t ndx); + +#endif /* __USBH_HID_PARSER_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_usage.h b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_usage.h new file mode 100644 index 0000000000..aeac22776d --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_usage.h @@ -0,0 +1,141 @@ +/*! + \file usbh_hid_core.h + \brief header file for the usbh_hid_core.c + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USDH_HID_USAGE_H +#define __USDH_HID_USAGE_H + +/* HID 1.11 usage pages */ +#define HID_USAGE_PAGE_UNDEFINED uint16_t (0x00) /* Undefined */ + +/* top level pages */ +#define HID_USAGE_PAGE_GEN_DES uint16_t (0x01) /* Generic Desktop Controls*/ +#define HID_USAGE_PAGE_SIM_CTR uint16_t (0x02) /* Simulation Controls */ +#define HID_USAGE_PAGE_VR_CTR uint16_t (0x03) /* VR Controls */ +#define HID_USAGE_PAGE_SPORT_CTR uint16_t (0x04) /* Sport Controls */ +#define HID_USAGE_PAGE_GAME_CTR uint16_t (0x05) /* Game Controls */ +#define HID_USAGE_PAGE_GEN_DEV uint16_t (0x06) /* Generic Device Controls */ +#define HID_USAGE_PAGE_KEYB uint16_t (0x07) /* Keyboard/Keypad */ +#define HID_USAGE_PAGE_LED uint16_t (0x08) /* LEDs */ +#define HID_USAGE_PAGE_BUTTON uint16_t (0x09) /* Button */ +#define HID_USAGE_PAGE_ORDINAL uint16_t (0x0A) /* Ordinal */ +#define HID_USAGE_PAGE_PHONE uint16_t (0x0B) /* Telephony */ +#define HID_USAGE_PAGE_CONSUMER uint16_t (0x0C) /* Consumer */ +#define HID_USAGE_PAGE_DIGITIZER uint16_t (0x0D) /* Digitizer*/ +#define HID_USAGE_PAGE_PID uint16_t (0x0F) /* PID Page (force feedback and related devices) */ +#define HID_USAGE_PAGE_UNICODE uint16_t (0x10) /* Unicode */ +#define HID_USAGE_PAGE_ALNUM_DISP uint16_t (0x14) /* Alphanumeric Display */ +/* end of top level pages */ + +#define HID_USAGE_PAGE_MEDICAL uint16_t (0x40) /* Medical Instruments */ + +/* 80-83 Monitor pages USB Device Class Definition for Monitor Devices */ +/* 84-87 Power pages USB Device Class Definition for Power Devices */ +#define HID_USAGE_PAGE_BARCODE uint16_t (0x8C) /* Bar Code Scanner page */ +#define HID_USAGE_PAGE_SCALE uint16_t (0x8D) /* Scale page */ +#define HID_USAGE_PAGE_MSR uint16_t (0x8E) /* Magnetic Stripe Reading (MSR) Devices */ +#define HID_USAGE_PAGE_POS uint16_t (0x8F) /* Reserved Point of Sale pages */ +#define HID_USAGE_PAGE_CAMERA_CTR uint16_t (0x90) /* Camera Control Page */ +#define HID_USAGE_PAGE_ARCADE uint16_t (0x91) /* Arcade Page */ + +/* usage definitions for the "generic desktop" page */ +#define HID_USAGE_UNDEFINED uint16_t (0x00) /* Undefined */ +#define HID_USAGE_POINTER uint16_t (0x01) /* Pointer (Physical Collection) */ +#define HID_USAGE_MOUSE uint16_t (0x02) /* Mouse (Application Collection) */ +#define HID_USAGE_JOYSTICK uint16_t (0x04) /* Joystick (Application Collection) */ +#define HID_USAGE_GAMEPAD uint16_t (0x05) /* Game Pad (Application Collection) */ +#define HID_USAGE_KBD uint16_t (0x06) /* Keyboard (Application Collection) */ +#define HID_USAGE_KEYPAD uint16_t (0x07) /* Keypad (Application Collection) */ +#define HID_USAGE_MAX_CTR uint16_t (0x08) /* Multi-axis Controller (Application Collection) */ +#define HID_USAGE_X uint16_t (0x30) /* X (Dynamic Value) */ +#define HID_USAGE_Y uint16_t (0x31) /* Y (Dynamic Value) */ +#define HID_USAGE_Z uint16_t (0x32) /* Z (Dynamic Value) */ +#define HID_USAGE_RX uint16_t (0x33) /* Rx (Dynamic Value) */ +#define HID_USAGE_RY uint16_t (0x34) /* Ry (Dynamic Value) */ +#define HID_USAGE_RZ uint16_t (0x35) /* Rz (Dynamic Value) */ +#define HID_USAGE_SLIDER uint16_t (0x36) /* Slider (Dynamic Value) */ +#define HID_USAGE_DIAL uint16_t (0x37) /* Dial (Dynamic Value) */ +#define HID_USAGE_WHEEL uint16_t (0x38) /* Wheel (Dynamic Value) */ +#define HID_USAGE_HATSW uint16_t (0x39) /* Hat switch (Dynamic Value) */ +#define HID_USAGE_COUNTEDBUF uint16_t (0x3A) /* Counted Buffer (Logical Collection) */ +#define HID_USAGE_BYTECOUNT uint16_t (0x3B) /* Byte Count (Dynamic Value) */ +#define HID_USAGE_MOTIONWAKE uint16_t (0x3C) /* Motion Wakeup (One Shot Control) */ +#define HID_USAGE_START uint16_t (0x3D) /* Start (On/Off Control) */ +#define HID_USAGE_SELECT uint16_t (0x3E) /* Select (On/Off Control) */ +#define HID_USAGE_VX uint16_t (0x40) /* Vx (Dynamic Value) */ +#define HID_USAGE_VY uint16_t (0x41) /* Vy (Dynamic Value) */ +#define HID_USAGE_VZ uint16_t (0x42) /* Vz (Dynamic Value) */ +#define HID_USAGE_VBRX uint16_t (0x43) /* Vbrx (Dynamic Value) */ +#define HID_USAGE_VBRY uint16_t (0x44) /* Vbry (Dynamic Value) */ +#define HID_USAGE_VBRZ uint16_t (0x45) /* Vbrz (Dynamic Value) */ +#define HID_USAGE_VNO uint16_t (0x46) /* Vno (Dynamic Value) */ +#define HID_USAGE_FEATNOTIF uint16_t (0x47) /* Feature Notification (Dynamic Value),(Dynamic Flag) */ +#define HID_USAGE_SYSCTL uint16_t (0x80) /* System Control (Application Collection) */ +#define HID_USAGE_PWDOWN uint16_t (0x81) /* System Power Down (One Shot Control) */ +#define HID_USAGE_SLEEP uint16_t (0x82) /* System Sleep (One Shot Control) */ +#define HID_USAGE_WAKEUP uint16_t (0x83) /* System Wake Up (One Shot Control) */ +#define HID_USAGE_CONTEXTM uint16_t (0x84) /* System Context Menu (One Shot Control) */ +#define HID_USAGE_MAINM uint16_t (0x85) /* System Main Menu (One Shot Control) */ +#define HID_USAGE_APPM uint16_t (0x86) /* System App Menu (One Shot Control) */ +#define HID_USAGE_MENUHELP uint16_t (0x87) /* System Menu Help (One Shot Control) */ +#define HID_USAGE_MENUEXIT uint16_t (0x88) /* System Menu Exit (One Shot Control) */ +#define HID_USAGE_MENUSELECT uint16_t (0x89) /* System Menu Select (One Shot Control) */ +#define HID_USAGE_SYSM_RIGHT uint16_t (0x8A) /* System Menu Right (Re-Trigger Control) */ +#define HID_USAGE_SYSM_LEFT uint16_t (0x8B) /* System Menu Left (Re-Trigger Control) */ +#define HID_USAGE_SYSM_UP uint16_t (0x8C) /* System Menu Up (Re-Trigger Control) */ +#define HID_USAGE_SYSM_DOWN uint16_t (0x8D) /* System Menu Down (Re-Trigger Control) */ +#define HID_USAGE_COLDRESET uint16_t (0x8E) /* System Cold Restart (One Shot Control) */ +#define HID_USAGE_WARMRESET uint16_t (0x8F) /* System Warm Restart (One Shot Control) */ +#define HID_USAGE_DUP uint16_t (0x90) /* D-pad Up (On/Off Control) */ +#define HID_USAGE_DDOWN uint16_t (0x91) /* D-pad Down (On/Off Control) */ +#define HID_USAGE_DRIGHT uint16_t (0x92) /* D-pad Right (On/Off Control) */ +#define HID_USAGE_DLEFT uint16_t (0x93) /* D-pad Left (On/Off Control) */ +#define HID_USAGE_SYS_DOCK uint16_t (0xA0) /* System Dock (One Shot Control) */ +#define HID_USAGE_SYS_UNDOCK uint16_t (0xA1) /* System Undock (One Shot Control) */ +#define HID_USAGE_SYS_SETUP uint16_t (0xA2) /* System Setup (One Shot Control) */ +#define HID_USAGE_SYS_BREAK uint16_t (0xA3) /* System Break (One Shot Control) */ +#define HID_USAGE_SYS_DBGBRK uint16_t (0xA4) /* System Debugger Break (One Shot Control) */ +#define HID_USAGE_APP_BRK uint16_t (0xA5) /* Application Break (One Shot Control) */ +#define HID_USAGE_APP_DBGBRK uint16_t (0xA6) /* Application Debugger Break (One Shot Control) */ +#define HID_USAGE_SYS_SPKMUTE uint16_t (0xA7) /* System Speaker Mute (One Shot Control) */ +#define HID_USAGE_SYS_HIBERN uint16_t (0xA8) /* System Hibernate (One Shot Control) */ +#define HID_USAGE_SYS_SIDPINV uint16_t (0xB0) /* System Display Invert (One Shot Control) */ +#define HID_USAGE_SYS_DISPINT uint16_t (0xB1) /* System Display Internal (One Shot Control) */ +#define HID_USAGE_SYS_DISPEXT uint16_t (0xB2) /* System Display External (One Shot Control) */ +#define HID_USAGE_SYS_DISPBOTH uint16_t (0xB3) /* System Display Both (One Shot Control) */ +#define HID_USAGE_SYS_DISPDUAL uint16_t (0xB4) /* System Display Dual (One Shot Control) */ +#define HID_USAGE_SYS_DISPTGLIE uint16_t (0xB5) /* System Display Toggle Int/Ext (One Shot Control) */ +#define HID_USAGE_SYS_DISP_SWAP uint16_t (0xB6) /* System Display Swap Primary/Secondary (One Shot Control) */ +#define HID_USAGE_SYS_DIPS_LCDA uint16_t (0xB7) /* System Display LCD Autoscale (One Shot Control) */ + +#endif /* __USDH_HID_USAGE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_core.c b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_core.c new file mode 100644 index 0000000000..de214b69ab --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_core.c @@ -0,0 +1,675 @@ +/*! + \file usbh_hid_core.c + \brief USB host HID class driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gdusbh_pipe.h" +#include "usbh_hid_core.h" +#include "usbh_hid_mouse.h" +#include "usbh_hid_keybd.h" + +#include +#include + +static void usbh_hiddesc_parse (usb_desc_hid *hid_desc, uint8_t *buf); +static void usbh_hid_itf_deinit (usbh_host *uhost); +static usbh_status usbh_hid_itf_init (usbh_host *uhost); +static usbh_status usbh_hid_class_req (usbh_host *uhost); +static usbh_status usbh_hid_handle (usbh_host *uhost); +static usbh_status usbh_hid_reportdesc_get (usbh_host *uhost, uint16_t len); +static usbh_status usbh_hid_sof(usbh_host *uhost); +static usbh_status usbh_hid_desc_get (usbh_host *uhost, uint16_t len); +static usbh_status usbh_set_idle (usbh_host *uhost, uint8_t duration, uint8_t report_ID); +static usbh_status usbh_set_protocol (usbh_host *uhost, uint8_t protocol); + +usbh_class usbh_hid = +{ + USB_HID_CLASS, + usbh_hid_itf_init, + usbh_hid_itf_deinit, + usbh_hid_class_req, + usbh_hid_handle, + usbh_hid_sof +}; + +/*! + \brief get report + \param[in] uhost: pointer to USB host + \param[in] report_type: duration for HID set idle request + \param[in] report_ID: targeted report ID for HID set idle request + \param[in] report_len: length of data report to be send + \param[in] report_buf: report buffer + \param[out] none + \retval operation status +*/ +usbh_status usbh_get_report (usbh_host *uhost, + uint8_t report_type, + uint8_t report_ID, + uint8_t report_len, + uint8_t *report_buf) +{ + usbh_status status = USBH_BUSY; + + if (CTL_IDLE == uhost->control.ctl_state) { + uhost->control.setup.req = (usb_req) { + .bmRequestType = USB_TRX_IN | USB_RECPTYPE_ITF | USB_REQTYPE_CLASS, + .bRequest = GET_REPORT, + .wValue = (report_type << 8U) | report_ID, + .wIndex = 0U, + .wLength = report_len + }; + + usbh_ctlstate_config (uhost, report_buf, report_len); + } + + status = usbh_ctl_handler (uhost); + + return status; +} + +/*! + \brief set report + \param[in] udev: pointer to USB core instance + \param[in] uhost: pointer to USB host + \param[in] report_type: duration for HID set idle request + \param[in] report_ID: targeted report ID for HID set idle request + \param[in] report_len: length of data report to be send + \param[in] report_buf: report buffer + \param[out] none + \retval operation status +*/ +usbh_status usbh_set_report (usb_core_driver *udev, + usbh_host *uhost, + uint8_t report_type, + uint8_t report_ID, + uint8_t report_len, + uint8_t *report_buf) +{ + usbh_status status = USBH_BUSY; + + if (CTL_IDLE == uhost->control.ctl_state) { + uhost->control.setup.req = (usb_req) { + .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_ITF | USB_REQTYPE_CLASS, + .bRequest = SET_REPORT, + .wValue = (report_type << 8U) | report_ID, + .wIndex = 0U, + .wLength = report_len + }; + + usbh_ctlstate_config (uhost, report_buf, report_len); + } + + status = usbh_ctl_handler (uhost); + + return status; +} + +/*! + \brief deinitialize the host pipes used for the HID class + \param[in] uhost: pointer to USB host + \param[out] none + \retval operation status +*/ +void usbh_hid_itf_deinit (usbh_host *uhost) +{ + usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; + + if (0x00U != hid->pipe_in) { + usb_pipe_halt (uhost->data, hid->pipe_in); + + usbh_pipe_free (uhost->data, hid->pipe_in); + + hid->pipe_in = 0U; /* reset the pipe as free */ + } + + if (0x00U != hid->pipe_out) { + usb_pipe_halt (uhost->data, hid->pipe_out); + + usbh_pipe_free (uhost->data, hid->pipe_out); + + hid->pipe_out = 0U; /* reset the channel as free */ + } +} + +/*! + \brief return device type + \param[in] udev: pointer to USB core instance + \param[in] uhost: pointer to USB host + \param[out] none + \retval hid_type +*/ +hid_type usbh_hid_device_type_get(usb_core_driver *udev, usbh_host *uhost) +{ + hid_type type = HID_UNKNOWN; + uint8_t interface_protocol; + + if (HOST_CLASS_HANDLER == uhost->cur_state) { + interface_protocol = uhost->dev_prop.cfg_desc_set.itf_desc_set[uhost->dev_prop.cur_itf][0].itf_desc.bInterfaceProtocol; + + if (USB_HID_PROTOCOL_KEYBOARD == interface_protocol) { + type = HID_KEYBOARD; + } else { + if (USB_HID_PROTOCOL_MOUSE == interface_protocol) { + type = HID_MOUSE; + } + } + } + + return type; +} + +/*! + \brief return HID device poll time + \param[in] udev: pointer to USB core instance + \param[in] uhost: pointer to USB host + \param[out] none + \retval poll time (ms) +*/ +uint8_t usbh_hid_poll_interval_get (usb_core_driver *udev, usbh_host *uhost) +{ + usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; + + if ((HOST_CLASS_ENUM == uhost->cur_state) || + (HOST_USER_INPUT == uhost->cur_state) || + (HOST_CHECK_CLASS == uhost->cur_state) || + (HOST_CLASS_HANDLER == uhost->cur_state)) { + return (uint8_t)(hid->poll); + } else { + return 0U; + } +} + +/*! + \brief read from FIFO + \param[in] fifo: fifo address + \param[in] buf: read buffer + \param[in] nbytes: number of item to read + \param[out] none + \retval number of read items +*/ +uint16_t usbh_hid_fifo_read (data_fifo *fifo, void *buf, uint16_t nbytes) +{ + uint16_t i = 0U; + uint8_t *p = (uint8_t*) buf; + + if (0U == fifo->lock) { + fifo->lock = 1U; + + for (i = 0U; i < nbytes; i++) { + if (fifo->tail != fifo->head) { + *p++ = fifo->buf[fifo->tail]; + fifo->tail++; + + if (fifo->tail == fifo->size) { + fifo->tail = 0U; + } + } else { + fifo->lock = 0U; + + return i; + } + } + } + + fifo->lock = 0U; + + return nbytes; +} + +/*! + \brief write to FIFO + \param[in] fifo: fifo address + \param[in] buf: read buffer + \param[in] nbytes: number of item to read + \param[out] none + \retval number of write items +*/ +uint16_t usbh_hid_fifo_write (data_fifo *fifo, void *buf, uint16_t nbytes) +{ + uint16_t i = 0U; + uint8_t *p = (uint8_t*) buf; + + if (0U == fifo->lock) { + fifo->lock = 1U; + + for (i = 0U; i < nbytes; i++) { + if ((fifo->head + 1U == fifo->tail) || + ((fifo->head + 1U == fifo->size) && (0U == fifo->tail))) { + fifo->lock = 0U; + + return i; + } else { + fifo->buf[fifo->head] = *p++; + fifo->head++; + + if (fifo->head == fifo->size) { + fifo->head = 0U; + } + } + } + } + + fifo->lock = 0U; + + return nbytes; +} + +/*! + \brief initialize FIFO + \param[in] fifo: fifo address + \param[in] buf: read buffer + \param[in] size: size of FIFO + \param[out] none + \retval none +*/ +void usbh_hid_fifo_init (data_fifo *fifo, uint8_t *buf, uint16_t size) +{ + fifo->head = 0U; + fifo->tail = 0U; + fifo->lock = 0U; + fifo->size = size; + fifo->buf = buf; +} + +/*! + \brief initialize the hid class + \param[in] uhost: pointer to USB host + \param[out] none + \retval operation status +*/ +static usbh_status usbh_hid_itf_init (usbh_host *uhost) +{ + uint8_t num = 0U, ep_num = 0U, interface = 0U; + usbh_status status = USBH_BUSY; + + interface = usbh_interface_find(&uhost->dev_prop, USB_HID_CLASS, USB_HID_SUBCLASS_BOOT_ITF, 0xFFU); + + if (0xFFU == interface) { + uhost->usr_cb->dev_not_supported(); + + status = USBH_FAIL; + } else { + usbh_interface_select(&uhost->dev_prop, interface); + + static usbh_hid_handler hid_handler; + + memset((void*)&hid_handler, 0, sizeof(usbh_hid_handler)); + + hid_handler.state = HID_ERROR; + + uint8_t itf_protocol = uhost->dev_prop.cfg_desc_set.itf_desc_set[uhost->dev_prop.cur_itf][0].itf_desc.bInterfaceProtocol; + if (USB_HID_PROTOCOL_KEYBOARD == itf_protocol) { + hid_handler.init = usbh_hid_keybd_init; + hid_handler.machine = usbh_hid_keybrd_machine; + } else if (USB_HID_PROTOCOL_MOUSE == itf_protocol) { + hid_handler.init = usbh_hid_mouse_init; + hid_handler.machine = usbh_hid_mouse_machine; + } else { + status = USBH_FAIL; + } + + hid_handler.state = HID_INIT; + hid_handler.ctl_state = HID_REQ_INIT; + hid_handler.ep_addr = uhost->dev_prop.cfg_desc_set.itf_desc_set[uhost->dev_prop.cur_itf][0].ep_desc[0].bEndpointAddress; + hid_handler.len = uhost->dev_prop.cfg_desc_set.itf_desc_set[uhost->dev_prop.cur_itf][0].ep_desc[0].wMaxPacketSize; + hid_handler.poll = uhost->dev_prop.cfg_desc_set.itf_desc_set[uhost->dev_prop.cur_itf][0].ep_desc[0].bInterval; + + if (hid_handler.poll < HID_MIN_POLL) { + hid_handler.poll = HID_MIN_POLL; + } + + /* check fifo available number of endpoints */ + /* find the number of endpoints in the interface descriptor */ + /* choose the lower number in order not to overrun the buffer allocated */ + ep_num = USB_MIN(uhost->dev_prop.cfg_desc_set.itf_desc_set[uhost->dev_prop.cur_itf][0].itf_desc.bNumEndpoints, USBH_MAX_EP_NUM); + + /* decode endpoint IN and OUT address from interface descriptor */ + for (num = 0U; num < ep_num; num++) { + usb_desc_ep *ep_desc = &uhost->dev_prop.cfg_desc_set.itf_desc_set[uhost->dev_prop.cur_itf][0].ep_desc[num]; + + uint8_t ep_addr = ep_desc->bEndpointAddress; + + if (ep_addr & 0x80U) { + hid_handler.ep_in = ep_addr; + hid_handler.pipe_in = usbh_pipe_allocate (uhost->data, ep_addr); + + /* open channel for IN endpoint */ + usbh_pipe_create (uhost->data, + &uhost->dev_prop, + hid_handler.pipe_in, + USB_EPTYPE_INTR, + hid_handler.len); + + usbh_pipe_toggle_set(uhost->data, hid_handler.pipe_in, 0U); + } else { + hid_handler.ep_out = ep_addr; + hid_handler.pipe_out = usbh_pipe_allocate (uhost->data, ep_addr); + + /* open channel for OUT endpoint */ + usbh_pipe_create (uhost->data, + &uhost->dev_prop, + hid_handler.pipe_out, + USB_EPTYPE_INTR, + hid_handler.len); + + usbh_pipe_toggle_set(uhost->data, hid_handler.pipe_out, 0U); + } + } + + uhost->active_class->class_data = (void *)&hid_handler; + + status = USBH_OK; + } + + return status; +} + +/*! + \brief handle HID class requests for HID class + \param[in] uhost: pointer to USB host + \param[out] none + \retval operation status +*/ +static usbh_status usbh_hid_class_req (usbh_host *uhost) +{ + usbh_status status = USBH_BUSY; + usbh_status class_req_status = USBH_BUSY; + + usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; + + /* handle HID control state machine */ + switch (hid->ctl_state) { + case HID_REQ_INIT: + case HID_REQ_GET_HID_DESC: + /* get HID descriptor */ + if (USBH_OK == usbh_hid_desc_get (uhost, USB_HID_DESC_SIZE)) { + usbh_hiddesc_parse(&hid->hid_desc, uhost->dev_prop.data); + + hid->ctl_state = HID_REQ_GET_REPORT_DESC; + } + break; + + case HID_REQ_GET_REPORT_DESC: + /* get report descriptor */ + if (USBH_OK == usbh_hid_reportdesc_get(uhost, hid->hid_desc.wDescriptorLength)) { + hid->ctl_state = HID_REQ_SET_IDLE; + } + break; + + case HID_REQ_SET_IDLE: + class_req_status = usbh_set_idle (uhost, 0U, 0U); + + /* set idle */ + if (USBH_OK == class_req_status) { + hid->ctl_state = HID_REQ_SET_PROTOCOL; + } else { + if(USBH_NOT_SUPPORTED == class_req_status) { + hid->ctl_state = HID_REQ_SET_PROTOCOL; + } + } + break; + + case HID_REQ_SET_PROTOCOL: + /* set protocol */ + if (USBH_OK == usbh_set_protocol (uhost, 0U)) { + hid->ctl_state = HID_REQ_IDLE; + + /* all requests performed */ + status = USBH_OK; + } + break; + + case HID_REQ_IDLE: + default: + break; + } + + return status; +} + +/*! + \brief manage state machine for HID data transfers + \param[in] uhost: pointer to USB host + \param[out] none + \retval operation status +*/ +static usbh_status usbh_hid_handle (usbh_host *uhost) +{ + usbh_status status = USBH_OK; + usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; + + switch (hid->state) { + case HID_INIT: + hid->init(uhost->data, uhost); + hid->state = HID_IDLE; + break; + + case HID_IDLE: + hid->state = HID_SYNC; + status = USBH_OK; + break; + + case HID_SYNC: + /* sync with start of even frame */ + if (true == usb_frame_even(uhost->data)) { + hid->state = HID_GET_DATA; + } + break; + + case HID_GET_DATA: + usbh_data_recev (uhost->data, hid->pdata, hid->pipe_in, hid->len); + + hid->state = HID_POLL; + hid->timer = usb_curframe_get (uhost->data); + hid->data_ready = 0U; + break; + + case HID_POLL: + if (GD_URB_DONE == usbh_urbstate_get (uhost->data, hid->pipe_in)) { + if (0U == hid->data_ready) { /* handle data once */ + usbh_hid_fifo_write(&hid->fifo, hid->pdata, hid->len); + hid->data_ready = 1U; + + hid->machine(uhost->data, uhost); + } + } else { + if (GD_URB_STALL == usbh_urbstate_get (uhost->data, hid->pipe_in)) { /* IN endpoint stalled */ + /* issue clear feature on interrupt in endpoint */ + if (USBH_OK == (usbh_clrfeature (uhost, hid->ep_addr, hid->pipe_in))) { + /* change state to issue next in token */ + hid->state = HID_GET_DATA; + } + } + } + break; + + default: + break; + } + return status; +} + +/*! + \brief send get report descriptor command to the device + \param[in] uhost: pointer to USB host + \param[in] len: HID report descriptor length + \param[out] none + \retval operation status +*/ +static usbh_status usbh_hid_reportdesc_get (usbh_host *uhost, uint16_t len) +{ + usbh_status status = USBH_BUSY; + + if (CTL_IDLE == uhost->control.ctl_state) { + uhost->control.setup.req = (usb_req) { + .bmRequestType = USB_TRX_IN | USB_RECPTYPE_ITF | USB_REQTYPE_STRD, + .bRequest = USB_GET_DESCRIPTOR, + .wValue = USBH_DESC(USB_DESCTYPE_REPORT), + .wIndex = 0U, + .wLength = len + }; + + usbh_ctlstate_config (uhost, uhost->dev_prop.data, len); + } + + status = usbh_ctl_handler (uhost); + + return status; +} + +/*! + \brief managing the SOF process + \param[in] uhost: pointer to USB host + \param[out] none + \retval operation status +*/ +static usbh_status usbh_hid_sof(usbh_host *uhost) +{ + usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; + + if (HID_POLL == hid->state) { + uint32_t frame_count = usb_curframe_get (uhost->data); + + if ((frame_count > hid->timer) && ((frame_count - hid->timer) >= hid->poll)) { + hid->state = HID_GET_DATA; + } else if ((frame_count < hid->timer) && ((frame_count + 0x3FFFU - hid->timer) >= hid->poll)) { + hid->state = HID_GET_DATA; + } else { + /* no operation */ + } + } + + return USBH_OK; +} + +/*! + \brief send the command of get HID descriptor to the device + \param[in] uhost: pointer to USB host + \param[in] len: HID descriptor length + \param[out] none + \retval operation status +*/ +static usbh_status usbh_hid_desc_get (usbh_host *uhost, uint16_t len) +{ + usbh_status status = USBH_BUSY; + + if (CTL_IDLE == uhost->control.ctl_state) { + uhost->control.setup.req = (usb_req) { + .bmRequestType = USB_TRX_IN | USB_RECPTYPE_ITF | USB_REQTYPE_STRD, + .bRequest = USB_GET_DESCRIPTOR, + .wValue = USBH_DESC(USB_DESCTYPE_HID), + .wIndex = 0U, + .wLength = len + }; + + usbh_ctlstate_config (uhost, uhost->dev_prop.data, len); + } + + status = usbh_ctl_handler (uhost); + + return status; +} + +/*! + \brief set idle state + \param[in] uhost: pointer to USB host + \param[in] duration: duration for HID set idle request + \param[in] report_ID: targeted report ID for HID set idle request + \param[out] none + \retval operation status +*/ +static usbh_status usbh_set_idle (usbh_host *uhost, uint8_t duration, uint8_t report_ID) +{ + usbh_status status = USBH_BUSY; + + if (CTL_IDLE == uhost->control.ctl_state) { + uhost->control.setup.req = (usb_req) { + .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_ITF | USB_REQTYPE_CLASS, + .bRequest = SET_IDLE, + .wValue = (duration << 8U) | report_ID, + .wIndex = 0U, + .wLength = 0U + }; + + usbh_ctlstate_config (uhost, NULL, 0U); + } + + status = usbh_ctl_handler (uhost); + + return status; +} + +/*! + \brief set protocol state + \param[in] uhost: pointer to USB host + \param[in] protocol: boot/report protocol + \param[out] none + \retval operation status +*/ +static usbh_status usbh_set_protocol (usbh_host *uhost, uint8_t protocol) +{ + usbh_status status = USBH_BUSY; + + if (CTL_IDLE == uhost->control.ctl_state) { + uhost->control.setup.req = (usb_req) { + .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_ITF | USB_REQTYPE_CLASS, + .bRequest = SET_PROTOCOL, + .wValue = !protocol, + .wIndex = 0U, + .wLength = 0U + }; + + usbh_ctlstate_config (uhost, NULL, 0U); + } + + status = usbh_ctl_handler (uhost); + + return status; +} + +/*! + \brief parse the HID descriptor + \param[in] hid_desc: pointer to HID descriptor + \param[in] buf: pointer to buffer where the source descriptor is available + \param[out] none + \retval none +*/ +static void usbh_hiddesc_parse (usb_desc_hid *hid_desc, uint8_t *buf) +{ + hid_desc->header.bLength = *(uint8_t *)(buf + 0U); + hid_desc->header.bDescriptorType = *(uint8_t *)(buf + 1U); + hid_desc->bcdHID = BYTE_SWAP(buf + 2U); + hid_desc->bCountryCode = *(uint8_t *)(buf + 4U); + hid_desc->bNumDescriptors = *(uint8_t *)(buf + 5U); + hid_desc->bDescriptorType = *(uint8_t *)(buf + 6U); + hid_desc->wDescriptorLength = BYTE_SWAP(buf + 7U); +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_keybd.c b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_keybd.c new file mode 100644 index 0000000000..b857e3e8a6 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_keybd.c @@ -0,0 +1,399 @@ +/*! + \file usbh_hid_keybd.c + \brief USB host HID keyboard driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "usbh_hid_keybd.h" +#include "usbh_hid_parser.h" +#include + +hid_keybd_info keybd_info; + +uint32_t keybd_report_data[2]; + +static const hid_report_item imp_0_lctrl = +{ + (uint8_t*)(void *)keybd_report_data + 0, /* data */ + 1, /* size */ + 0, /* shift */ + 0, /* count (only for array items) */ + 0, /* signed */ + 0, /* min value read can return */ + 1, /* max value read can return */ + 0, /* min vale device can report */ + 1, /* max value device can report */ + 1 /* resolution */ +}; + +static const hid_report_item imp_0_lshift = +{ + (uint8_t*)(void *)keybd_report_data + 0, /* data */ + 1, /* size */ + 1, /* shift */ + 0, /* count (only for array items) */ + 0, /* signed */ + 0, /* min value read can return */ + 1, /* max value read can return */ + 0, /* min vale device can report */ + 1, /* max value device can report */ + 1 /* resolution */ +}; + +static const hid_report_item imp_0_lalt = +{ + (uint8_t*)(void *)keybd_report_data + 0, /* data */ + 1, /* size */ + 2, /* shift */ + 0, /* count (only for array items) */ + 0, /* signed */ + 0, /* min value read can return */ + 1, /* max value read can return */ + 0, /* min vale device can report */ + 1, /* max value device can report */ + 1 /* resolution */ +}; + +static const hid_report_item imp_0_lgui = +{ + (uint8_t*)(void *)keybd_report_data + 0, /* data */ + 1, /* size */ + 3, /* shift */ + 0, /* count (only for array items) */ + 0, /* signed */ + 0, /* min value read can return */ + 1, /* max value read can return */ + 0, /* min vale device can report */ + 1, /* max value device can report */ + 1 /* resolution */ +}; + +static const hid_report_item imp_0_rctrl = +{ + (uint8_t*)(void *)keybd_report_data + 0, /* data */ + 1, /* size */ + 4, /* shift */ + 0, /* count (only for array items) */ + 0, /* signed */ + 0, /* min value read can return */ + 1, /* max value read can return */ + 0, /* min vale device can report */ + 1, /* max value device can report */ + 1 /* resolution */ +}; + +static const hid_report_item imp_0_rshift = +{ + (uint8_t*)(void *)keybd_report_data + 0, /* data */ + 1, /* size */ + 5, /* shift */ + 0, /* count (only for array items) */ + 0, /* signed */ + 0, /* min value read can return */ + 1, /* max value read can return */ + 0, /* min vale device can report */ + 1, /* max value device can report */ + 1 /* resolution */ +}; + +static const hid_report_item imp_0_ralt = +{ + (uint8_t*)(void *)keybd_report_data + 0, /* data */ + 1, /* size */ + 6, /* shift */ + 0, /* count (only for array items) */ + 0, /* signed */ + 0, /* min value read can return */ + 1, /* max value read can return */ + 0, /* min vale device can report */ + 1, /* max value device can report */ + 1 /* resolution */ +}; + +static const hid_report_item imp_0_rgui = +{ + (uint8_t*)(void *)keybd_report_data + 0, /* data */ + 1, /* size */ + 7, /* shift */ + 0, /* count (only for array items) */ + 0, /* signed */ + 0, /* min value read can return */ + 1, /* max value read can return */ + 0, /* min vale device can report */ + 1, /* max value device can report */ + 1 /* resolution */ +}; + +static const hid_report_item imp_0_key_array = +{ + (uint8_t*)(void *)keybd_report_data + 2, /* data */ + 8, /* size */ + 0, /* shift */ + 6, /* count (only for array items) */ + 0, /* signed */ + 0, /* min value read can return */ + 101, /* max value read can return */ + 0, /* min vale device can report */ + 101, /* max value device can report */ + 1 /* resolution */ +}; + +/* local constants */ +static const uint8_t hid_keybrd_codes[] = +{ + 0, 0, 0, 0, 31, 50, 48, 33, + 19, 34, 35, 36, 24, 37, 38, 39, /* 0x00 - 0x0F */ + 52, 51, 25, 26, 17, 20, 32, 21, + 23, 49, 18, 47, 22, 46, 2, 3, /* 0x10 - 0x1F */ + 4, 5, 6, 7, 8, 9, 10, 11, + 43, 110, 15, 16, 61, 12, 13, 27, /* 0x20 - 0x2F */ + 28, 29, 42, 40, 41, 1, 53, 54, + 55, 30, 112, 113, 114, 115, 116, 117, /* 0x30 - 0x3F */ + 118, 119, 120, 121, 122, 123, 124, 125, + 126, 75, 80, 85, 76, 81, 86, 89, /* 0x40 - 0x4F */ + 79, 84, 83, 90, 95, 100, 105, 106, + 108, 93, 98, 103, 92, 97, 102, 91, /* 0x50 - 0x5F */ + 96, 101, 99, 104, 45, 129, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, /* 0x60 - 0x6F */ + 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, /* 0x70 - 0x7F */ + 0, 0, 0, 0, 0, 107, 0, 56, + 0, 0, 0, 0, 0, 0, 0, 0, /* 0x80 - 0x8F */ + 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, /* 0x90 - 0x9F */ + 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, /* 0xA0 - 0xAF */ + 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, /* 0xB0 - 0xBF */ + 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, /* 0xC0 - 0xCF */ + 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, /* 0xD0 - 0xDF */ + 58, 44, 60, 127, 64, 57, 62, 128 /* 0xE0 - 0xE7 */ +}; + +#ifdef QWERTY_KEYBOARD + +static const int8_t hid_keybrd_key[] = +{ + '\0', '`', '1', '2', '3', '4', '5', '6', + '7', '8', '9', '0', '-', '=', '\0', '\r', + '\t', 'q', 'w', 'e', 'r', 't', 'y', 'u', + 'i', 'o', 'p', '[', ']', '\\', + '\0', 'a', 's', 'd', 'f', 'g', 'h', 'j', + 'k', 'l', ';', '\'', '\0', '\n', + '\0', '\0', 'z', 'x', 'c', 'v', 'b', 'n', + 'm', ',', '.', '/', '\0', '\0', + '\0', '\0', '\0', ' ', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\r', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', + '\0', '\0', '7', '4', '1', + '\0', '/', '8', '5', '2', + '0', '*', '9', '6', '3', + '.', '-', '+', '\0', '\n', '\0', '\0', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0' +}; + +static const int8_t hid_keybrd_shiftkey[] = { + '\0', '~', '!', '@', '#', '$', '%', '^', '&', '*', '(', ')', + '_', '+', '\0', '\0', '\0', 'Q', 'W', 'E', 'R', 'T', 'Y', 'U', + 'I', 'O', 'P', '{', '}', '|', '\0', 'A', 'S', 'D', 'F', 'G', + 'H', 'J', 'K', 'L', ':', '"', '\0', '\n', '\0', '\0', 'Z', 'X', + 'C', 'V', 'B', 'N', 'M', '<', '>', '?', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0' +}; + +#else + +static const int8_t hid_keybrd_key[] = { + '\0', '`', '1', '2', '3', '4', '5', '6', '7', '8', '9', '0', + '-', '=', '\0', '\r', '\t', 'a', 'z', 'e', 'r', 't', 'y', 'u', + 'i', 'o', 'p', '[', ']', '\\', '\0', 'q', 's', 'd', 'f', 'g', + 'h', 'j', 'k', 'l', 'm', '\0', '\0', '\n', '\0', '\0', 'w', 'x', + 'c', 'v', 'b', 'n', ',', ';', ':', '!', '\0', '\0', '\0', '\0', + '\0', ' ', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\r', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', '\0', '7', '4', '1', '\0', '/', + '8', '5', '2', '0', '*', '9', '6', '3', '.', '-', '+', '\0', + '\n', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0' +}; + +static const int8_t hid_keybrd_shiftkey[] = { + '\0', '~', '!', '@', '#', '$', '%', '^', '&', '*', '(', ')', '_', + '+', '\0', '\0', '\0', 'A', 'Z', 'E', 'R', 'T', 'Y', 'U', 'I', 'O', + 'P', '{', '}', '*', '\0', 'Q', 'S', 'D', 'F', 'G', 'H', 'J', 'K', + 'L', 'M', '%', '\0', '\n', '\0', '\0', 'W', 'X', 'C', 'V', 'B', 'N', + '?', '.', '/', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', + '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0' +}; + +#endif + +/* local function prototypes ('static') */ +static usbh_status usbh_hid_keybrd_decode (usb_core_driver *udev, usbh_host *uhost); + +/*! + \brief initialize the keyboard function + \param[in] udev: pointer to USB core instance + \param[in] uhost: pointer to USB host + \param[out] none + \retval operation status +*/ +usbh_status usbh_hid_keybd_init (usb_core_driver *udev, usbh_host *uhost) +{ + usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; + + keybd_info.lctrl = keybd_info.lshift = 0U; + keybd_info.lalt = keybd_info.lgui = 0U; + keybd_info.rctrl = keybd_info.rshift = 0U; + keybd_info.ralt = keybd_info.rgui = 0U; + + for (uint32_t x = 0U; x < (sizeof(keybd_report_data) / sizeof(uint32_t)); x++) { + keybd_report_data[x] = 0U; + } + + if (hid->len > (sizeof(keybd_report_data) / sizeof(uint32_t))) { + hid->len = (sizeof(keybd_report_data) / sizeof(uint32_t)); + } + + hid->pdata = (uint8_t*)(void *)keybd_report_data; + + usbh_hid_fifo_init (&hid->fifo, uhost->dev_prop.data, HID_QUEUE_SIZE * sizeof(keybd_report_data)); + + /* call user initialization*/ + usr_keybrd_init(); + + return USBH_OK; +} + +/*! + \brief get keyboard information + \param[in] udev: pointer to USB core instance + \param[in] uhost: pointer to USB host handler + \param[out] none + \retval keyboard information +*/ +hid_keybd_info *usbh_hid_keybd_info_get (usb_core_driver *udev, usbh_host *uhost) +{ + if (USBH_OK == usbh_hid_keybrd_decode(udev, uhost)) { + return &keybd_info; + } else { + return NULL; + } +} + +/*! + \brief get ascii code + \param[in] info: keyboard information + \param[out] none + \retval output +*/ +uint8_t usbh_hid_ascii_code_get (hid_keybd_info *info) +{ + uint8_t output; + if ((1U == info->lshift) || (info->rshift)) { + output = hid_keybrd_shiftkey[hid_keybrd_codes[info->keys[0]]]; + } else { + output = hid_keybrd_key[hid_keybrd_codes[info->keys[0]]]; + } + + return output; +} + +/*! + \brief decode the pressed keys + \param[in] udev: pointer to USB core instance + \param[in] uhost: pointer to USB host + \param[out] none + \retval none +*/ +void usbh_hid_keybrd_machine (usb_core_driver *udev, usbh_host *uhost) +{ + hid_keybd_info *k_pinfo; + + k_pinfo = usbh_hid_keybd_info_get(udev, uhost); + + if (k_pinfo != NULL) { + char c = usbh_hid_ascii_code_get(k_pinfo); + + if (c != 0U) { + usr_keybrd_process_data(c); + } + } +} + +/*! + \brief decode keyboard information + \param[in] udev: pointer to USB core instance + \param[in] uhost: pointer to USB host + \param[out] none + \retval operation status +*/ +static usbh_status usbh_hid_keybrd_decode (usb_core_driver *udev, usbh_host *uhost) +{ + usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; + + if (hid->len == 0U) { + return USBH_FAIL; + } + + /* fill report */ + if (usbh_hid_fifo_read (&hid->fifo, &keybd_report_data, hid->len) == hid->len) { + keybd_info.lctrl = (uint8_t)hid_item_read((hid_report_item *)&imp_0_lctrl, 0U); + keybd_info.lshift = (uint8_t)hid_item_read((hid_report_item *)&imp_0_lshift, 0U); + keybd_info.lalt = (uint8_t)hid_item_read((hid_report_item *)&imp_0_lalt, 0U); + keybd_info.lgui = (uint8_t)hid_item_read((hid_report_item *)&imp_0_lgui, 0U); + keybd_info.rctrl = (uint8_t)hid_item_read((hid_report_item *)&imp_0_rctrl, 0U); + keybd_info.rshift = (uint8_t)hid_item_read((hid_report_item *)&imp_0_rshift, 0U); + keybd_info.ralt = (uint8_t)hid_item_read((hid_report_item *)&imp_0_ralt, 0U); + keybd_info.rgui = (uint8_t)hid_item_read((hid_report_item *)&imp_0_rgui, 0U); + + for (uint8_t x = 0U; x < sizeof(keybd_info.keys); x++) { + keybd_info.keys[x] = (uint8_t)hid_item_read((hid_report_item *)&imp_0_key_array, x); + } + + return USBH_OK; + } + + return USBH_FAIL; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_mouse.c b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_mouse.c new file mode 100644 index 0000000000..f6d20c9bf2 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_mouse.c @@ -0,0 +1,216 @@ +/*! + \file usbh_hid_mouse.c + \brief USB host HID mouse driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "usbh_hid_mouse.h" +#include "usbh_hid_parser.h" + +hid_mouse_info mouse_info; +uint32_t mouse_report_data[1]; + +/* structures defining how to access items in a hid mouse report */ +/* access button 1 state. */ +static const hid_report_item prop_b1 = +{ + (uint8_t *)(void *)mouse_report_data + 0, /* data */ + 1, /* size */ + 0, /* shift */ + 0, /* count (only for array items) */ + 0, /* signed? */ + 0, /* min value read can return */ + 1, /* max value read can return */ + 0, /* min value device can report */ + 1, /* max value device can report */ + 1 /* resolution */ +}; + +/* access button 2 state. */ +static const hid_report_item prop_b2 = +{ + (uint8_t *)(void *)mouse_report_data + 0, /* data */ + 1, /* size */ + 1, /* shift */ + 0, /* count (only for array items) */ + 0, /* signed? */ + 0, /* min value read can return */ + 1, /* max value read can return */ + 0, /* min value device can report */ + 1, /* max value device can report */ + 1 /* resolution */ +}; + +/* access button 3 state. */ +static const hid_report_item prop_b3 = +{ + (uint8_t *)(void *)mouse_report_data + 0, /* data */ + 1, /* size */ + 2, /* shift */ + 0, /* count (only for array items) */ + 0, /* signed? */ + 0, /* min value read can return */ + 1, /* max value read can return */ + 0, /* min vale device can report */ + 1, /* max value device can report */ + 1 /* resolution */ +}; + +/* access x coordinate change. */ +static const hid_report_item prop_x = +{ + (uint8_t *)(void *)mouse_report_data + 1, /* data */ + 8, /* size */ + 0, /* shift */ + 0, /* count (only for array items) */ + 1, /* signed? */ + 0, /* min value read can return */ + 0xFFFF,/* max value read can return */ + 0, /* min vale device can report */ + 0xFFFF,/* max value device can report */ + 1 /* resolution */ +}; + +/* access y coordinate change. */ +static const hid_report_item prop_y = +{ + (uint8_t *)(void *)mouse_report_data + 2, /* data */ + 8, /* size */ + 0, /* shift */ + 0, /* count (only for array items) */ + 1, /* signed? */ + 0, /* min value read can return */ + 0xFFFF,/* max value read can return */ + 0, /* min vale device can report */ + 0xFFFF,/* max value device can report */ + 1 /* resolution */ +}; + +/* local function prototypes ('static') */ +static usbh_status usbh_hid_mouse_decode(usb_core_driver *udev, usbh_host *uhost); + +/*! + \brief initialize the mouse function + \param[in] udev: pointer to USB core instance + \param[in] uhost: pointer to USB host + \param[out] none + \retval none +*/ +usbh_status usbh_hid_mouse_init (usb_core_driver *udev, usbh_host *uhost) +{ + usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; + + mouse_info.x = 0U; + mouse_info.y = 0U; + mouse_info.buttons[0] = 0U; + mouse_info.buttons[1] = 0U; + mouse_info.buttons[2] = 0U; + + mouse_report_data[0] = 0U; + + if(hid->len > sizeof(mouse_report_data)) { + hid->len = sizeof(mouse_report_data); + } + + hid->pdata = (uint8_t *)(void *)mouse_report_data; + + usbh_hid_fifo_init(&hid->fifo, uhost->dev_prop.data, HID_QUEUE_SIZE * sizeof(mouse_report_data)); + + usr_mouse_init(); + + return USBH_OK; +} + +/*! + \brief get mouse information + \param[in] udev: pointer to USB core instance + \param[in] uhost: pointer to USB host + \param[out] none + \retval mouse information +*/ +hid_mouse_info *usbh_hid_mouse_info_get (usb_core_driver *udev, usbh_host *uhost) +{ + if(usbh_hid_mouse_decode(udev, uhost)== USBH_OK) { + return &mouse_info; + } else { + return NULL; + } +} + +/*! + \brief decode mouse data + \param[in] udev: pointer to USB core instance + \param[in] uhost: pointer to USB host + \param[out] none + \retval none +*/ +void usbh_hid_mouse_machine (usb_core_driver *udev, usbh_host *uhost) +{ + hid_mouse_info *m_pinfo = NULL; + + m_pinfo = usbh_hid_mouse_info_get(udev, uhost); + + if (NULL != m_pinfo) { + /* handle mouse data position */ + usr_mouse_process_data(&mouse_info); + } +} + +/*! + \brief decode mouse information + \param[in] udev: pointer to USB core instance + \param[in] uhost: pointer to USB host + \param[out] none + \retval operation status +*/ +static usbh_status usbh_hid_mouse_decode(usb_core_driver *udev, usbh_host *uhost) +{ + usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; + + if (0U == hid->len) { + return USBH_FAIL; + } + + /* fill report */ + if (usbh_hid_fifo_read(&hid->fifo, &mouse_report_data, hid->len) == hid->len) { + /* decode report */ + mouse_info.x = (uint8_t)hid_item_read((hid_report_item *)&prop_x, 0U); + mouse_info.y = (uint8_t)hid_item_read((hid_report_item *)&prop_y, 0U); + + mouse_info.buttons[0] = (uint8_t)hid_item_read((hid_report_item *)&prop_b1, 0U); + mouse_info.buttons[1] = (uint8_t)hid_item_read((hid_report_item *)&prop_b2, 0U); + mouse_info.buttons[2] = (uint8_t)hid_item_read((hid_report_item *)&prop_b3, 0U); + + return USBH_OK; + } + + return USBH_FAIL; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_parser.c b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_parser.c new file mode 100644 index 0000000000..7deec2424c --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_parser.c @@ -0,0 +1,148 @@ +/*! + \file usbh_hid_parser.c + \brief USB host HID parser driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "usbh_hid_parser.h" + +/*! + \brief read a hid report item + \param[in] ri: pointer to report item + \param[in] ndx: report index + \param[out] none + \retval operation status (0: fail otherwise: item value) +*/ +uint32_t hid_item_read (hid_report_item *ri, uint8_t ndx) +{ + uint32_t val = 0U; + uint32_t bofs = 0U; + uint8_t *data = ri->data; + uint8_t shift = ri->shift; + + /* get the logical value of the item */ + + /* if this is an array, wee may need to offset ri->data.*/ + if (ri->count > 0U) { + /* if app tries to read outside of the array. */ + if (ri->count <= ndx) { + return(0U); + } + + /* calculate bit offset */ + bofs = ndx * ri->size; + bofs += shift; + + /* calculate byte offset + shift pair from bit offset. */ + data += bofs / 8U; + shift = (uint8_t)(bofs % 8U); + } + + /* read data bytes in little endian order */ + for (uint32_t x = 0U; x < ((ri->size & 0x7U) ? (ri->size / 8U) + 1U : (ri->size / 8U)); x++) { + val=(uint32_t)((uint32_t)(*data) << (x * 8U)); + } + + val=(val >> shift) & ((1U << ri->size) - 1U); + + if ((val < ri->logical_min) || (val > ri->logical_max)) { + return(0U); + } + + /* convert logical value to physical value */ + /* see if the number is negative or not. */ + if ((ri->sign) && (val & (1U << (ri->size - 1U)))) { + /* yes, so sign extend value to 32 bits. */ + uint32_t vs = (uint32_t)((0xffffffffU & ~((1U << (ri->size)) - 1U)) | val); + + if (1U == ri->resolution) { + return((uint32_t)vs); + } + return((uint32_t)(vs * ri->resolution)); + } else { + if (1U == ri->resolution) { + return(val); + } + + return (val * ri->resolution); + } +} + +/*! + \brief write a hid report item + \param[in] ri: pointer to report item + \param[in] value: the value to be write + \param[in] ndx: report index + \param[out] none + \retval operation status (1: fail 0: OK) +*/ +uint32_t hid_item_write(hid_report_item *ri, uint32_t value, uint8_t ndx) +{ + uint32_t mask; + uint32_t bofs; + uint8_t *data = ri->data; + uint8_t shift = ri->shift; + + if ((value < ri->physical_min) || (value > ri->physical_max)) { + return(1U); + } + + /* if this is an array, wee may need to offset ri->data.*/ + if (ri->count > 0U) { + /* if app tries to read outside of the array. */ + if (ri->count >= ndx) { + return(0U); + } + + /* calculate bit offset */ + bofs = ndx * ri->size; + bofs += shift; + + /* calculate byte offset + shift pair from bit offset. */ + data += bofs / 8U; + shift = (uint8_t)(bofs % 8U); + } + + /* convert physical value to logical value. */ + if (1U != ri->resolution) { + value = value / ri->resolution; + } + + /* write logical value to report in little endian order. */ + mask = (1U << ri->size) - 1U; + value = (value & mask) << shift; + + for (uint32_t x = 0U; x < ((ri->size & 0x7U) ? (ri->size / 8U) + 1U : (ri->size / 8U)); x++) { + *(ri->data + x) = (uint8_t)((*(ri->data+x) & ~(mask>>(x* 8U))) | ((value >> (x * 8U)) & (mask >> (x * 8U)))); + } + + return 0U; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/msc_bbb.h b/Marlin/lib/GD32F4xx_usb_library/src/msc_bbb.h new file mode 100644 index 0000000000..a8d735a8b9 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/msc_bbb.h @@ -0,0 +1,69 @@ +/*! + \file msc_bbb.h + \brief definitions for the USB MSC BBB(bulk/bulk/bulk) protocol + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __MSC_BBB_H +#define __MSC_BBB_H + +#include "usb_ch9_std.h" + +#define BBB_CBW_SIGNATURE 0x43425355U +#define BBB_CSW_SIGNATURE 0x53425355U +#define BBB_CBW_LENGTH 31U +#define BBB_CSW_LENGTH 13U + +typedef struct { + uint32_t dCBWSignature; + uint32_t dCBWTag; + uint32_t dCBWDataTransferLength; + uint8_t bmCBWFlags; + uint8_t bCBWLUN; + uint8_t bCBWCBLength; + uint8_t CBWCB[16]; +}msc_bbb_cbw; + +typedef struct { + uint32_t dCSWSignature; + uint32_t dCSWTag; + uint32_t dCSWDataResidue; + uint8_t bCSWStatus; +}msc_bbb_csw; + +/* CSW command status */ +enum msc_csw_status { + CSW_CMD_PASSED = 0, + CSW_CMD_FAILED, + CSW_PHASE_ERROR +}; + +#endif /* __MSC_BBB_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/msc_scsi.h b/Marlin/lib/GD32F4xx_usb_library/src/msc_scsi.h new file mode 100644 index 0000000000..78bcebe6b6 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/msc_scsi.h @@ -0,0 +1,117 @@ +/*! + \file msc_scsi.h + \brief definitions for the USB MSC SCSI commands + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __MSC_SCSI_H +#define __MSC_SCSI_H + +#include "usb_ch9_std.h" + +/* SCSI commands */ +#define SCSI_FORMAT_UNIT 0x04U +#define SCSI_INQUIRY 0x12U +#define SCSI_MODE_SELECT6 0x15U +#define SCSI_MODE_SELECT10 0x55U +#define SCSI_MODE_SENSE6 0x1AU +#define SCSI_READ_TOC_DATA 0x43U +#define SCSI_MODE_SENSE10 0x5AU +#define SCSI_ALLOW_MEDIUM_REMOVAL 0x1EU +#define SCSI_READ6 0x08U +#define SCSI_READ10 0x28U +#define SCSI_READ12 0xA8U +#define SCSI_READ16 0x88U + +#define SCSI_READ_CAPACITY10 0x25U +#define SCSI_READ_CAPACITY16 0x9EU + +#define SCSI_REQUEST_SENSE 0x03U +#define SCSI_START_STOP_UNIT 0x1BU +#define SCSI_TEST_UNIT_READY 0x00U +#define SCSI_WRITE6 0x0AU +#define SCSI_WRITE10 0x2AU +#define SCSI_WRITE12 0xAAU +#define SCSI_WRITE16 0x8AU + +#define SCSI_VERIFY10 0x2FU +#define SCSI_VERIFY12 0xAFU +#define SCSI_VERIFY16 0x8FU + +#define SCSI_SEND_DIAGNOSTIC 0x1DU +#define SCSI_READ_FORMAT_CAPACITIES 0x23U + +#define INVALID_CDB 0x20U +#define INVALID_FIELED_IN_COMMAND 0x24U +#define PARAMETER_LIST_LENGTH_ERROR 0x1AU +#define INVALID_FIELD_IN_PARAMETER_LIST 0x26U +#define ADDRESS_OUT_OF_RANGE 0x21U +#define MEDIUM_NOT_PRESENT 0x3AU +#define MEDIUM_HAVE_CHANGED 0x28U +#define WRITE_PROTECTED 0x27U +#define UNRECOVERED_READ_ERROR 0x11U +#define WRITE_FAULT 0x03U + +#define READ_FORMAT_CAPACITY_DATA_LEN 0x0CU +#define READ_CAPACITY10_DATA_LEN 0x08U +#define MODE_SENSE10_DATA_LEN 0x08U +#define MODE_SENSE6_DATA_LEN 0x04U +#define READ_TOC_CMD_LEN 0x14U +#define REQUEST_SENSE_DATA_LEN 0x12U +#define STANDARD_INQUIRY_DATA_LEN 0x24U +#define BLKVFY 0x04U + +enum sense_state { + NO_SENSE = 0U, + RECOVERED_ERROR, + NOT_READY, + MEDIUM_ERROR, + HARDWARE_ERROR, + ILLEGAL_REQUEST, + UNIT_ATTENTION, + DATA_PROTECT, + BLANK_CHECK, + VENDOR_SPECIFIC, + COPY_ABORTED, + ABORTED_COMMAND, + RESERVED, + VOLUME_OVERFLOW, + MISCOMPARE +}; + +typedef struct { + uint8_t SenseKey; + uint32_t Information; + uint8_t ASC; + uint8_t ASCQ; +} msc_scsi_sense; + +#endif /* __MSC_SCSI_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usb_ch9_std.h b/Marlin/lib/GD32F4xx_usb_library/src/usb_ch9_std.h new file mode 100644 index 0000000000..d71f25ad1f --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/usb_ch9_std.h @@ -0,0 +1,248 @@ +/*! + \file usb_ch9_std.h + \brief USB 2.0 standard defines + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USB_CH9_STD_H +#define __USB_CH9_STD_H + +#include "gdusb_conf.h" + +#define USB_DEV_QUALIFIER_DESC_LEN 0x0AU /*!< USB device qualifier descriptor length */ +#define USB_DEV_DESC_LEN 0x12U /*!< USB device descriptor length */ +#define USB_CFG_DESC_LEN 0x09U /*!< USB configuration descriptor length */ +#define USB_ITF_DESC_LEN 0x09U /*!< USB interface descriptor length */ +#define USB_EP_DESC_LEN 0x07U /*!< USB endpoint descriptor length */ +#define USB_IAD_DESC_LEN 0x08U /*!< USB IAD descriptor length */ +#define USB_OTG_DESC_LEN 0x03U /*!< USB device OTG descriptor length */ + +#define USB_SETUP_PACKET_LEN 0x08U /*!< USB setup packet length */ + +/* bit 7 of bmRequestType: data phase transfer direction */ +#define USB_TRX_MASK 0x80U /*!< USB transfer direction mask */ +#define USB_TRX_OUT 0x00U /*!< USB transfer OUT direction */ +#define USB_TRX_IN 0x80U /*!< USB transfer IN direction */ + +/* bit 6..5 of bmRequestType: request type */ +#define USB_REQTYPE_STRD 0x00U /*!< USB standard request */ +#define USB_REQTYPE_CLASS 0x20U /*!< USB class request */ +#define USB_REQTYPE_VENDOR 0x40U /*!< USB vendor request */ +#define USB_REQTYPE_MASK 0x60U /*!< USB request mask */ + +#define USBD_BUS_POWERED 0x00U /*!< USB bus power supply */ +#define USBD_SELF_POWERED 0x01U /*!< USB self power supply */ + +#define USB_STATUS_REMOTE_WAKEUP 2U /*!< USB is in remote wakeup status */ +#define USB_STATUS_SELF_POWERED 1U /*!< USB is in self powered status */ + +/* bit 4..0 of bmRequestType: recipient type */ +enum _usb_recp_type { + USB_RECPTYPE_DEV = 0x0U, /*!< USB device request type */ + USB_RECPTYPE_ITF = 0x1U, /*!< USB interface request type */ + USB_RECPTYPE_EP = 0x2U, /*!< USB endpoint request type */ + USB_RECPTYPE_MASK = 0x3U /*!< USB request type mask */ +}; + +/* bRequest value */ +enum _usb_request { + USB_GET_STATUS = 0x0U, /*!< USB get status request */ + USB_CLEAR_FEATURE = 0x1U, /*!< USB clear feature request */ + USB_RESERVED2 = 0x2U, + USB_SET_FEATURE = 0x3U, /*!< USB set feature request */ + USB_RESERVED4 = 0x4U, + USB_SET_ADDRESS = 0x5U, /*!< USB set address request */ + USB_GET_DESCRIPTOR = 0x6U, /*!< USB get descriptor request */ + USB_SET_DESCRIPTOR = 0x7U, /*!< USB set descriptor request */ + USB_GET_CONFIGURATION = 0x8U, /*!< USB get configuration request */ + USB_SET_CONFIGURATION = 0x9U, /*!< USB set configuration request */ + USB_GET_INTERFACE = 0xAU, /*!< USB get interface request */ + USB_SET_INTERFACE = 0xBU, /*!< USB set interface request */ + USB_SYNCH_FRAME = 0xCU /*!< USB synchronize frame request */ +}; + +/* descriptor types of USB specifications */ +enum _usb_desctype { + USB_DESCTYPE_DEV = 0x1U, /*!< USB device descriptor type */ + USB_DESCTYPE_CONFIG = 0x2U, /*!< USB configuration descriptor type */ + USB_DESCTYPE_STR = 0x3U, /*!< USB string descriptor type */ + USB_DESCTYPE_ITF = 0x4U, /*!< USB interface descriptor type */ + USB_DESCTYPE_EP = 0x5U, /*!< USB endpoint descriptor type */ + USB_DESCTYPE_DEV_QUALIFIER = 0x6U, /*!< USB device qualifier descriptor type */ + USB_DESCTYPE_OTHER_SPD_CONFIG = 0x7U, /*!< USB other speed configuration descriptor type */ + USB_DESCTYPE_ITF_POWER = 0x8U, /*!< USB interface power descriptor type */ + USB_DESCTYPE_IAD = 0xBU, /*!< USB interface association descriptor type */ + USB_DESCTYPE_BOS = 0xFU /*!< USB BOS descriptor type */ +}; + +/* USB Endpoint Descriptor bmAttributes bit definitions */ +/* bits 1..0 : transfer type */ +enum _usbx_type { + USB_EP_ATTR_CTL = 0x0U, /*!< USB control transfer type */ + USB_EP_ATTR_ISO = 0x1U, /*!< USB Isochronous transfer type */ + USB_EP_ATTR_BULK = 0x2U, /*!< USB Bulk transfer type */ + USB_EP_ATTR_INT = 0x3U /*!< USB Interrupt transfer type */ +}; + +/* bits 3..2 : Sync type (only if ISOCHRONOUS) */ +#define USB_EP_ATTR_NOSYNC 0x00U /*!< No Synchronization */ +#define USB_EP_ATTR_ASYNC 0x04U /*!< Asynchronous */ +#define USB_EP_ATTR_ADAPTIVE 0x08U /*!< Adaptive */ +#define USB_EP_ATTR_SYNC 0x0CU /*!< Synchronous */ +#define USB_EP_ATTR_SYNCTYPE 0x0CU /*!< Synchronous type */ + +/* bits 5..4 : usage type (only if ISOCHRONOUS) */ +#define USB_EP_ATTR_DATA 0x00U /*!< Data endpoint */ +#define USB_EP_ATTR_FEEDBACK 0x10U /*!< Feedback endpoint */ +#define USB_EP_ATTR_IMPLICIT_FEEDBACK_DATA 0x20U /*!< Implicit feedback Data endpoint */ +#define USB_EP_ATTR_USAGETYPE 0x30U /*!< Usage type */ + +/* endpoint max packet size bits12..11 */ +#define USB_EP_MPS_ADD_0 (0x00 << 11) /*!< None(1 transaction per microframe */ +#define USB_EP_MPS_ADD_1 (0x01 << 11) /*!< 1 additional(2 transaction per microframe */ +#define USB_EP_MPS_ADD_2 (0x02 << 11) /*!< 2 additional(3 transaction per microframe */ + +#define FEATURE_SELECTOR_EP 0x00U /*!< USB endpoint feature selector */ +#define FEATURE_SELECTOR_DEV 0x01U /*!< USB device feature selector */ +#define FEATURE_SELECTOR_REMOTEWAKEUP 0x01U /*!< USB feature selector remote wakeup */ + +#define BYTE_SWAP(addr) (((uint16_t)(*((uint8_t *)(addr)))) + \ + (uint16_t)(((uint16_t)(*(((uint8_t *)(addr)) + 1U))) << 8U)) + +#define BYTE_LOW(x) ((uint8_t)((x) & 0x00FFU)) +#define BYTE_HIGH(x) ((uint8_t)(((x) & 0xFF00U) >> 8U)) + +#define USB_MIN(a, b) (((a) < (b)) ? (a) : (b)) + +#define USB_DEFAULT_CONFIG 0U + +/* USB classes */ +#define USB_CLASS_HID 0x03U /*!< USB HID class */ +#define USB_CLASS_MSC 0x08U /*!< USB MSC class */ + +/* use the following values when USB host need to get descriptor */ +#define USBH_DESC(x) (((x)<< 8U) & 0xFF00U) + +/* as per USB specs 9.2.6.4 :standard request with data request timeout: 5sec + standard request with no data stage timeout : 50ms */ +#define DATA_STAGE_TIMEOUT 5000U /*!< USB data stage timeout*/ +#define NODATA_STAGE_TIMEOUT 50U /*!< USB no data stage timeout*/ + +#pragma pack(1) + +/* USB standard device request structure */ +typedef struct _usb_req { + uint8_t bmRequestType; /*!< type of request */ + uint8_t bRequest; /*!< request of setup packet */ + uint16_t wValue; /*!< value of setup packet */ + uint16_t wIndex; /*!< index of setup packet */ + uint16_t wLength; /*!< length of setup packet */ +} usb_req; + +/* USB setup packet define */ +typedef union _usb_setup { + uint8_t data[8]; + + usb_req req; +} usb_setup; + +/* USB descriptor defines */ + +typedef struct _usb_desc_header { + uint8_t bLength; /*!< size of the descriptor */ + uint8_t bDescriptorType; /*!< type of the descriptor */ +} usb_desc_header; + +typedef struct _usb_desc_dev { + usb_desc_header header; /*!< descriptor header, including type and size */ + + uint16_t bcdUSB; /*!< BCD of the supported USB specification */ + uint8_t bDeviceClass; /*!< USB device class */ + uint8_t bDeviceSubClass; /*!< USB device subclass */ + uint8_t bDeviceProtocol; /*!< USB device protocol */ + uint8_t bMaxPacketSize0; /*!< size of the control (address 0) endpoint's bank in bytes */ + uint16_t idVendor; /*!< vendor ID for the USB product */ + uint16_t idProduct; /*!< unique product ID for the USB product */ + uint16_t bcdDevice; /*!< product release (version) number */ + uint8_t iManufacturer; /*!< string index for the manufacturer's name */ + uint8_t iProduct; /*!< string index for the product name/details */ + uint8_t iSerialNumber; /*!< string index for the product's globally unique hexadecimal serial number */ + uint8_t bNumberConfigurations; /*!< total number of configurations supported by the device */ +} usb_desc_dev; + +typedef struct _usb_desc_config { + usb_desc_header header; /*!< descriptor header, including type and size */ + + uint16_t wTotalLength; /*!< size of the configuration descriptor header,and all sub descriptors inside the configuration */ + uint8_t bNumInterfaces; /*!< total number of interfaces in the configuration */ + uint8_t bConfigurationValue; /*!< configuration index of the current configuration */ + uint8_t iConfiguration; /*!< index of a string descriptor describing the configuration */ + uint8_t bmAttributes; /*!< configuration attributes */ + uint8_t bMaxPower; /*!< maximum power consumption of the device while in the current configuration */ +} usb_desc_config; + +typedef struct _usb_desc_itf { + usb_desc_header header; /*!< descriptor header, including type and size */ + + uint8_t bInterfaceNumber; /*!< index of the interface in the current configuration */ + uint8_t bAlternateSetting; /*!< alternate setting for the interface number */ + uint8_t bNumEndpoints; /*!< total number of endpoints in the interface */ + uint8_t bInterfaceClass; /*!< interface class ID */ + uint8_t bInterfaceSubClass; /*!< interface subclass ID */ + uint8_t bInterfaceProtocol; /*!< interface protocol ID */ + uint8_t iInterface; /*!< index of the string descriptor describing the interface */ +} usb_desc_itf; + +typedef struct _usb_desc_ep { + usb_desc_header header; /*!< descriptor header, including type and size. */ + + uint8_t bEndpointAddress; /*!< logical address of the endpoint */ + uint8_t bmAttributes; /*!< endpoint attributes */ + uint16_t wMaxPacketSize; /*!< size of the endpoint bank, in bytes */ + uint8_t bInterval; /*!< polling interval in milliseconds for the endpoint if it is an INTERRUPT or ISOCHRONOUS type */ +} usb_desc_ep; + +typedef struct _usb_desc_LANGID { + usb_desc_header header; /*!< descriptor header, including type and size. */ + uint16_t wLANGID; /*!< LANGID code */ +} usb_desc_LANGID; + +typedef struct _usb_desc_str { + usb_desc_header header; /*!< descriptor header, including type and size. */ + uint16_t unicode_string[64]; /*!< unicode string data */ +} usb_desc_str; + +#pragma pack() + +/* compute string descriptor length */ +#define USB_STRING_LEN(unicode_chars) (sizeof(usb_desc_header) + ((unicode_chars) << 1U)) + +#endif /* __USB_CH9_STD_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbd_core.c b/Marlin/lib/GD32F4xx_usb_library/src/usbd_core.c new file mode 100644 index 0000000000..453305df56 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/usbd_core.c @@ -0,0 +1,320 @@ +/*! + \file usbd_core.c + \brief USB device mode core functions + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gdusbd_core.h" +#include "gdusbd_enum.h" +#include "drv_usb_hw.h" + +/* endpoint type */ +const uint32_t ep_type[] = { + [USB_EP_ATTR_CTL] = (uint32_t)USB_EPTYPE_CTRL, + [USB_EP_ATTR_BULK] = (uint32_t)USB_EPTYPE_BULK, + [USB_EP_ATTR_INT] = (uint32_t)USB_EPTYPE_INTR, + [USB_EP_ATTR_ISO] = (uint32_t)USB_EPTYPE_ISOC +}; + +/*! + \brief initializes the USB device-mode stack and load the class driver + \param[in] udev: pointer to USB core instance + \param[in] core: USB core type + \param[in] desc: pointer to USB descriptor + \param[in] class_core: class driver + \param[out] none + \retval none +*/ +void usbd_init (usb_core_driver *udev, usb_core_enum core, usb_desc *desc, usb_class_core *class_core) +{ + udev->dev.desc = desc; + + /* class callbacks */ + udev->dev.class_core = class_core; + + /* create serial string */ + serial_string_get(udev->dev.desc->strings[STR_IDX_SERIAL]); + + /* configure USB capabilities */ + (void)usb_basic_init (&udev->bp, &udev->regs, core); + + usb_globalint_disable(&udev->regs); + + /* initializes the USB core*/ + (void)usb_core_init (udev->bp, &udev->regs); + + /* set device disconnect */ + usbd_disconnect (udev); + +#ifndef USE_OTG_MODE + usb_curmode_set(&udev->regs, DEVICE_MODE); +#endif + + /* initializes device mode */ + (void)usb_devcore_init (udev); + + usb_globalint_enable(&udev->regs); + + /* set device connect */ + usbd_connect (udev); + + udev->dev.cur_status = (uint8_t)USBD_DEFAULT; +} + +/*! + \brief endpoint initialization + \param[in] udev: pointer to USB core instance + \param[in] ep_desc: pointer to endpoint descriptor + \param[out] none + \retval none +*/ +uint32_t usbd_ep_setup (usb_core_driver *udev, const usb_desc_ep *ep_desc) +{ + usb_transc *transc; + + uint8_t ep_addr = ep_desc->bEndpointAddress; + uint16_t max_len = ep_desc->wMaxPacketSize; + + /* set endpoint direction */ + if (EP_DIR(ep_addr)) { + transc = &udev->dev.transc_in[EP_ID(ep_addr)]; + + transc->ep_addr.dir = 1U; + } else { + transc = &udev->dev.transc_out[ep_addr]; + + transc->ep_addr.dir = 0U; + } + + transc->ep_addr.num = EP_ID(ep_addr); + transc->max_len = max_len; + transc->ep_type = (uint8_t)ep_type[ep_desc->bmAttributes & (uint8_t)USB_EPTYPE_MASK]; + + /* active USB endpoint function */ + (void)usb_transc_active (udev, transc); + + return 0U; +} + +/*! + \brief configure the endpoint when it is disabled + \param[in] udev: pointer to USB core instance + \param[in] ep_addr: endpoint address + in this parameter: + bit0..bit6: endpoint number (0..7) + bit7: endpoint direction which can be IN(1) or OUT(0) + \param[out] none + \retval none +*/ +uint32_t usbd_ep_clear (usb_core_driver *udev, uint8_t ep_addr) +{ + usb_transc *transc; + + if (EP_DIR(ep_addr)) { + transc = &udev->dev.transc_in[EP_ID(ep_addr)]; + } else { + transc = &udev->dev.transc_out[ep_addr]; + } + + /* deactivate USB endpoint function */ + (void)usb_transc_deactivate (udev, transc); + + return 0U; +} + +/*! + \brief endpoint prepare to receive data + \param[in] udev: pointer to USB core instance + \param[in] ep_addr: endpoint address + in this parameter: + bit0..bit6: endpoint number (0..7) + bit7: endpoint direction which can be IN(1) or OUT(0) + \param[in] pbuf: user buffer address pointer + \param[in] len: buffer length + \param[out] none + \retval none +*/ +uint32_t usbd_ep_recev (usb_core_driver *udev, uint8_t ep_addr, uint8_t *pbuf, uint32_t len) +{ + usb_transc *transc = &udev->dev.transc_out[EP_ID(ep_addr)]; + + /* setup the transfer */ + transc->xfer_buf = pbuf; + transc->xfer_len = len; + transc->xfer_count = 0U; + + if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { + transc->dma_addr = (uint32_t)pbuf; + } + + /* start the transfer */ + (void)usb_transc_outxfer (udev, transc); + + return 0U; +} + +/*! + \brief endpoint prepare to transmit data + \param[in] udev: pointer to USB core instance + \param[in] ep_addr: endpoint address + in this parameter: + bit0..bit6: endpoint number (0..7) + bit7: endpoint direction which can be IN(1) or OUT(0) + \param[in] pbuf: transmit buffer address pointer + \param[in] len: buffer length + \param[out] none + \retval none +*/ +uint32_t usbd_ep_send (usb_core_driver *udev, uint8_t ep_addr, uint8_t *pbuf, uint32_t len) +{ + usb_transc *transc = &udev->dev.transc_in[EP_ID(ep_addr)]; + + /* setup the transfer */ + transc->xfer_buf = pbuf; + transc->xfer_len = len; + transc->xfer_count = 0U; + + if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { + transc->dma_addr = (uint32_t)pbuf; + } + + /* start the transfer */ + (void)usb_transc_inxfer (udev, transc); + + return 0U; +} + +/*! + \brief set an endpoint to STALL status + \param[in] udev: pointer to USB core instance + \param[in] ep_addr: endpoint address + in this parameter: + bit0..bit6: endpoint number (0..7) + bit7: endpoint direction which can be IN(1) or OUT(0) + \param[out] none + \retval none +*/ +uint32_t usbd_ep_stall (usb_core_driver *udev, uint8_t ep_addr) +{ + usb_transc *transc = NULL; + + if (EP_DIR(ep_addr)) { + transc = &udev->dev.transc_in[EP_ID(ep_addr)]; + } else { + transc = &udev->dev.transc_out[ep_addr]; + } + + transc->ep_stall = 1U; + + (void)usb_transc_stall (udev, transc); + + return (0U); +} + +/*! + \brief clear endpoint STALLed status + \param[in] udev: pointer to USB core instance + \param[in] ep_addr: endpoint address + in this parameter: + bit0..bit6: endpoint number (0..7) + bit7: endpoint direction which can be IN(1) or OUT(0) + \param[out] none + \retval none +*/ +uint32_t usbd_ep_stall_clear (usb_core_driver *udev, uint8_t ep_addr) +{ + usb_transc *transc = NULL; + + if (EP_DIR(ep_addr)) { + transc = &udev->dev.transc_in[EP_ID(ep_addr)]; + } else { + transc = &udev->dev.transc_out[ep_addr]; + } + + transc->ep_stall = 0U; + + (void)usb_transc_clrstall (udev, transc); + + return (0U); +} + +/*! + \brief flush the endpoint FIFOs + \param[in] udev: pointer to USB core instance + \param[in] ep_addr: endpoint address + in this parameter: + bit0..bit6: endpoint number (0..7) + bit7: endpoint direction which can be IN(1) or OUT(0) + \param[out] none + \retval none +*/ +uint32_t usbd_fifo_flush (usb_core_driver *udev, uint8_t ep_addr) +{ + if (EP_DIR(ep_addr)) { + (void)usb_txfifo_flush (&udev->regs, EP_ID(ep_addr)); + } else { + (void)usb_rxfifo_flush (&udev->regs); + } + + return (0U); +} + +/*! + \brief device connect + \param[in] udev: pointer to USB device instance + \param[out] none + \retval none +*/ +void usbd_connect (usb_core_driver *udev) +{ +#ifndef USE_OTG_MODE + /* connect device */ + usb_dev_connect (udev); + + usb_mdelay(3U); +#endif /* USE_OTG_MODE */ +} + +/*! + \brief device disconnect + \param[in] udev: pointer to USB device instance + \param[out] none + \retval none +*/ +void usbd_disconnect (usb_core_driver *udev) +{ +#ifndef USE_OTG_MODE + /* disconnect device for 3ms */ + usb_dev_disconnect (udev); + + usb_mdelay(3U); +#endif /* USE_OTG_MODE */ +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbd_enum.c b/Marlin/lib/GD32F4xx_usb_library/src/usbd_enum.c new file mode 100644 index 0000000000..dbcf826dc3 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/usbd_enum.c @@ -0,0 +1,764 @@ +/*! + \file usbd_enum.c + \brief USB enumeration function + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gdusbd_enum.h" +#include "usb_ch9_std.h" + +#ifdef WINUSB_EXEMPT_DRIVER + +extern usbd_status usbd_OEM_req(usb_dev *udev, usb_req *req); + +#endif /* WINUSB_EXEMPT_DRIVER */ + +/* local function prototypes ('static') */ +static usb_reqsta _usb_std_reserved (usb_core_driver *udev, usb_req *req); +static uint8_t* _usb_dev_desc_get (usb_core_driver *udev, uint8_t index, uint16_t *len); +static uint8_t* _usb_config_desc_get (usb_core_driver *udev, uint8_t index, uint16_t *len); +static uint8_t* _usb_bos_desc_get (usb_core_driver *udev, uint8_t index, uint16_t *len); +static uint8_t* _usb_str_desc_get (usb_core_driver *udev, uint8_t index, uint16_t *len); +static usb_reqsta _usb_std_getstatus (usb_core_driver *udev, usb_req *req); +static usb_reqsta _usb_std_clearfeature (usb_core_driver *udev, usb_req *req); +static usb_reqsta _usb_std_setfeature (usb_core_driver *udev, usb_req *req); +static usb_reqsta _usb_std_setaddress (usb_core_driver *udev, usb_req *req); +static usb_reqsta _usb_std_getdescriptor (usb_core_driver *udev, usb_req *req); +static usb_reqsta _usb_std_setdescriptor (usb_core_driver *udev, usb_req *req); +static usb_reqsta _usb_std_getconfiguration (usb_core_driver *udev, usb_req *req); +static usb_reqsta _usb_std_setconfiguration (usb_core_driver *udev, usb_req *req); +static usb_reqsta _usb_std_getinterface (usb_core_driver *udev, usb_req *req); +static usb_reqsta _usb_std_setinterface (usb_core_driver *udev, usb_req *req); +static usb_reqsta _usb_std_synchframe (usb_core_driver *udev, usb_req *req); + +static usb_reqsta (*_std_dev_req[])(usb_core_driver *udev, usb_req *req) = +{ + [USB_GET_STATUS] = _usb_std_getstatus, + [USB_CLEAR_FEATURE] = _usb_std_clearfeature, + [USB_RESERVED2] = _usb_std_reserved, + [USB_SET_FEATURE] = _usb_std_setfeature, + [USB_RESERVED4] = _usb_std_reserved, + [USB_SET_ADDRESS] = _usb_std_setaddress, + [USB_GET_DESCRIPTOR] = _usb_std_getdescriptor, + [USB_SET_DESCRIPTOR] = _usb_std_setdescriptor, + [USB_GET_CONFIGURATION] = _usb_std_getconfiguration, + [USB_SET_CONFIGURATION] = _usb_std_setconfiguration, + [USB_GET_INTERFACE] = _usb_std_getinterface, + [USB_SET_INTERFACE] = _usb_std_setinterface, + [USB_SYNCH_FRAME] = _usb_std_synchframe, +}; + +/* get standard descriptor handler */ +static uint8_t* (*std_desc_get[])(usb_core_driver *udev, uint8_t index, uint16_t *len) = { + [(uint8_t)USB_DESCTYPE_DEV - 1U] = _usb_dev_desc_get, + [(uint8_t)USB_DESCTYPE_CONFIG - 1U] = _usb_config_desc_get, + [(uint8_t)USB_DESCTYPE_STR - 1U] = _usb_str_desc_get +}; + +/*! + \brief handle USB standard device request + \param[in] udev: pointer to USB device instance + \param[in] req: pointer to USB device request + \param[out] none + \retval USB device request status +*/ +usb_reqsta usbd_standard_request (usb_core_driver *udev, usb_req *req) +{ + return (*_std_dev_req[req->bRequest])(udev, req); +} + +/*! + \brief handle USB device class request + \param[in] udev: pointer to USB device instance + \param[in] req: pointer to USB device class request + \param[out] none + \retval USB device request status +*/ +usb_reqsta usbd_class_request (usb_core_driver *udev, usb_req *req) +{ + if ((uint8_t)USBD_CONFIGURED == udev->dev.cur_status) { + if (BYTE_LOW(req->wIndex) <= USBD_ITF_MAX_NUM) { + /* call device class handle function */ + return (usb_reqsta)udev->dev.class_core->req_proc(udev, req); + } + } + + return REQ_NOTSUPP; +} + +/*! + \brief handle USB vendor request + \param[in] udev: pointer to USB device instance + \param[in] req: pointer to USB vendor request + \param[out] none + \retval USB device request status +*/ +usb_reqsta usbd_vendor_request (usb_core_driver *udev, usb_req *req) +{ + (void)udev; + (void)req; + + /* added by user... */ +#ifdef WINUSB_EXEMPT_DRIVER + usbd_OEM_req(udev, req); +#endif + + return REQ_SUPP; +} + +/*! + \brief handle USB enumeration error + \param[in] udev: pointer to USB device instance + \param[in] req: pointer to USB device request + \param[out] none + \retval none +*/ +void usbd_enum_error (usb_core_driver *udev, usb_req *req) +{ + (void)req; + + (void)usbd_ep_stall (udev, 0x80U); + (void)usbd_ep_stall (udev, 0x00U); + + usb_ctlep_startout(udev); +} + +/*! + \brief convert hex 32bits value into unicode char + \param[in] value: hex 32bits value + \param[in] pbuf: buffer pointer to store unicode char + \param[in] len: value length + \param[out] none + \retval none +*/ +void int_to_unicode (uint32_t value, uint8_t *pbuf, uint8_t len) +{ + uint8_t index; + + for (index = 0U; index < len; index++) { + if ((value >> 28U) < 0x0AU) { + pbuf[2U * index] = (uint8_t)((value >> 28U) + '0'); + } else { + pbuf[2U * index] = (uint8_t)((value >> 28U) + 'A' - 10U); + } + + value = value << 4U; + + pbuf[2U * index + 1U] = 0U; + } +} + +/*! + \brief convert hex 32bits value into unicode char + \param[in] unicode_str: pointer to unicode string + \param[out] none + \retval none +*/ +void serial_string_get (uint16_t *unicode_str) +{ + if ((unicode_str[0] & 0x00FFU) != 6U) { + uint32_t DeviceSerial0, DeviceSerial1, DeviceSerial2; + + DeviceSerial0 = *(uint32_t*)DEVICE_ID1; + DeviceSerial1 = *(uint32_t*)DEVICE_ID2; + DeviceSerial2 = *(uint32_t*)DEVICE_ID3; + + DeviceSerial0 += DeviceSerial2; + + if (0U != DeviceSerial0) { + int_to_unicode(DeviceSerial0, (uint8_t*)&(unicode_str[1]), 8U); + int_to_unicode(DeviceSerial1, (uint8_t*)&(unicode_str[9]), 4U); + } + } else { + uint32_t device_serial = *(uint32_t*)DEVICE_ID; + + if(0U != device_serial) { + unicode_str[1] = (uint16_t)(device_serial & 0x0000FFFFU); + unicode_str[2] = (uint16_t)((device_serial & 0xFFFF0000U) >> 16U); + + } + } +} + +/*! + \brief no operation, just for reserved + \param[in] udev: pointer to USB device instance + \param[in] req: pointer to USB vendor request + \param[out] none + \retval USB device request status +*/ +static usb_reqsta _usb_std_reserved (usb_core_driver *udev, usb_req *req) +{ + (void)udev; + (void)req; + + /* no operation... */ + + return REQ_NOTSUPP; +} + +/*! + \brief get the device descriptor + \param[in] udev: pointer to USB device instance + \param[in] index: no use + \param[out] len: data length pointer + \retval descriptor buffer pointer +*/ +static uint8_t* _usb_dev_desc_get (usb_core_driver *udev, uint8_t index, uint16_t *len) +{ + (void)index; + + *len = udev->dev.desc->dev_desc[0]; + + return udev->dev.desc->dev_desc; +} + +/*! + \brief get the configuration descriptor + \brief[in] udev: pointer to USB device instance + \brief[in] index: no use + \param[out] len: data length pointer + \retval descriptor buffer pointer +*/ +static uint8_t* _usb_config_desc_get (usb_core_driver *udev, uint8_t index, uint16_t *len) +{ + (void)index; + + *len = udev->dev.desc->config_desc[2]; + + return udev->dev.desc->config_desc; +} + +/*! + \brief get the BOS descriptor + \brief[in] udev: pointer to USB device instance + \brief[in] index: no use + \param[out] len: data length pointer + \retval descriptor buffer pointer +*/ +static uint8_t* _usb_bos_desc_get (usb_core_driver *udev, uint8_t index, uint16_t *len) +{ + (void)index; + + *len = udev->dev.desc->bos_desc[2]; + + return udev->dev.desc->bos_desc; +} + +/*! + \brief get string descriptor + \param[in] udev: pointer to USB device instance + \param[in] index: string descriptor index + \param[out] len: pointer to string length + \retval descriptor buffer pointer +*/ +static uint8_t* _usb_str_desc_get (usb_core_driver *udev, uint8_t index, uint16_t *len) +{ + uint8_t *desc = udev->dev.desc->strings[index]; + + *len = desc[0]; + + return desc; +} + +/*! + \brief handle Get_Status request + \param[in] udev: pointer to USB device instance + \param[in] req: pointer to USB device request + \param[out] none + \retval USB device request status +*/ +static usb_reqsta _usb_std_getstatus (usb_core_driver *udev, usb_req *req) +{ + uint8_t recp = BYTE_LOW(req->wIndex); + usb_reqsta req_status = REQ_NOTSUPP; + usb_transc *transc = &udev->dev.transc_in[0]; + + static uint8_t status[2] = {0}; + + switch(req->bmRequestType & (uint8_t)USB_RECPTYPE_MASK) { + case USB_RECPTYPE_DEV: + if (((uint8_t)USBD_ADDRESSED == udev->dev.cur_status) || \ + ((uint8_t)USBD_CONFIGURED == udev->dev.cur_status)) { + + if (udev->dev.pm.power_mode) { + status[0] = USB_STATUS_SELF_POWERED; + } else { + status[0] = 0U; + } + + if (udev->dev.pm.dev_remote_wakeup) { + status[0] |= USB_STATUS_REMOTE_WAKEUP; + } else { + status[0] = 0U; + } + + req_status = REQ_SUPP; + } + break; + + case USB_RECPTYPE_ITF: + if (((uint8_t)USBD_CONFIGURED == udev->dev.cur_status) && (recp <= USBD_ITF_MAX_NUM)) { + req_status = REQ_SUPP; + } + break; + + case USB_RECPTYPE_EP: + if ((uint8_t)USBD_CONFIGURED == udev->dev.cur_status) { + if (0x80U == (recp & 0x80U)) { + status[0] = udev->dev.transc_in[EP_ID(recp)].ep_stall; + } else { + status[0] = udev->dev.transc_out[recp].ep_stall; + } + + req_status = REQ_SUPP; + } + break; + + default: + break; + } + + if (REQ_SUPP == req_status) { + transc->xfer_buf = status; + transc->remain_len = 2U; + } + + return req_status; +} + +/*! + \brief handle USB Clear_Feature request + \param[in] udev: pointer to USB device instance + \param[in] req: USB device request + \param[out] none + \retval USB device request status +*/ +static usb_reqsta _usb_std_clearfeature (usb_core_driver *udev, usb_req *req) +{ + uint8_t ep = 0U; + + switch(req->bmRequestType & (uint8_t)USB_RECPTYPE_MASK) { + case USB_RECPTYPE_DEV: + if (((uint8_t)USBD_ADDRESSED == udev->dev.cur_status) || \ + ((uint8_t)USBD_CONFIGURED == udev->dev.cur_status)) { + + /* clear device remote wakeup feature */ + if ((uint16_t)USB_FEATURE_REMOTE_WAKEUP == req->wValue) { + udev->dev.pm.dev_remote_wakeup = 0U; + + return REQ_SUPP; + } + } + break; + + case USB_RECPTYPE_ITF: + break; + + case USB_RECPTYPE_EP: + /* get endpoint address */ + ep = BYTE_LOW(req->wIndex); + + if ((uint8_t)USBD_CONFIGURED == udev->dev.cur_status) { + /* clear endpoint halt feature */ + if (((uint16_t)USB_FEATURE_EP_HALT == req->wValue) && (!CTL_EP(ep))) { + (void)usbd_ep_stall_clear (udev, ep); + + (void)udev->dev.class_core->req_proc (udev, req); + } + + return REQ_SUPP; + } + break; + + default: + break; + } + + return REQ_NOTSUPP; +} + +/*! + \brief handle USB Set_Feature request + \param[in] udev: pointer to USB device instance + \param[in] req: pointer to USB device request + \param[out] none + \retval USB device request status +*/ +static usb_reqsta _usb_std_setfeature (usb_core_driver *udev, usb_req *req) +{ + uint8_t ep = 0U; + + switch (req->bmRequestType & (uint8_t)USB_RECPTYPE_MASK) { + case USB_RECPTYPE_DEV: + if (((uint8_t)USBD_ADDRESSED == udev->dev.cur_status) || \ + ((uint8_t)USBD_CONFIGURED == udev->dev.cur_status)) { + /* set device remote wakeup feature */ + if ((uint16_t)USB_FEATURE_REMOTE_WAKEUP == req->wValue) { + udev->dev.pm.dev_remote_wakeup = 1U; + } + + return REQ_SUPP; + } + break; + + case USB_RECPTYPE_ITF: + break; + + case USB_RECPTYPE_EP: + /* get endpoint address */ + ep = BYTE_LOW(req->wIndex); + + if ((uint8_t)USBD_CONFIGURED == udev->dev.cur_status) { + /* set endpoint halt feature */ + if (((uint16_t)USB_FEATURE_EP_HALT == req->wValue) && (!CTL_EP(ep))) { + (void)usbd_ep_stall (udev, ep); + } + + return REQ_SUPP; + } + break; + + default: + break; + } + + return REQ_NOTSUPP; +} + +/*! + \brief handle USB Set_Address request + \param[in] udev: pointer to USB device instance + \param[in] req: pointer to USB device request + \param[out] none + \retval USB device request status +*/ +static usb_reqsta _usb_std_setaddress (usb_core_driver *udev, usb_req *req) +{ + if ((0U == req->wIndex) && (0U == req->wLength)) { + udev->dev.dev_addr = (uint8_t)(req->wValue) & 0x7FU; + + if (udev->dev.cur_status != (uint8_t)USBD_CONFIGURED) { + usbd_addr_set (udev, udev->dev.dev_addr); + + if (udev->dev.dev_addr) { + udev->dev.cur_status = (uint8_t)USBD_ADDRESSED; + } else { + udev->dev.cur_status = (uint8_t)USBD_DEFAULT; + } + + return REQ_SUPP; + } + } + + return REQ_NOTSUPP; +} + +/*! + \brief handle USB Get_Descriptor request + \param[in] udev: pointer to USB device instance + \param[in] req: pointer to USB device request + \param[out] none + \retval USB device request status +*/ +static usb_reqsta _usb_std_getdescriptor (usb_core_driver *udev, usb_req *req) +{ + uint8_t desc_type = 0U; + uint8_t desc_index = 0U; + + usb_reqsta status = REQ_NOTSUPP; + + usb_transc *transc = &udev->dev.transc_in[0]; + + /* get device standard descriptor */ + switch (req->bmRequestType & USB_RECPTYPE_MASK) { + case USB_RECPTYPE_DEV: + desc_type = BYTE_HIGH(req->wValue); + desc_index = BYTE_LOW(req->wValue); + + switch (desc_type) { + case USB_DESCTYPE_DEV: + transc->xfer_buf = std_desc_get[desc_type - 1U](udev, desc_index, (uint16_t *)&(transc->remain_len)); + + if (64U == req->wLength) { + transc->remain_len = 8U; + } + break; + + case USB_DESCTYPE_CONFIG: + transc->xfer_buf = std_desc_get[desc_type - 1U](udev, desc_index, (uint16_t *)&(transc->remain_len)); + break; + + case USB_DESCTYPE_STR: + if (desc_index < (uint8_t)STR_IDX_MAX) { + transc->xfer_buf = std_desc_get[desc_type - 1U](udev, desc_index, (uint16_t *)&(transc->remain_len)); + } + break; + + case USB_DESCTYPE_ITF: + case USB_DESCTYPE_EP: + case USB_DESCTYPE_DEV_QUALIFIER: + case USB_DESCTYPE_OTHER_SPD_CONFIG: + case USB_DESCTYPE_ITF_POWER: + break; + + case USB_DESCTYPE_BOS: + transc->xfer_buf = _usb_bos_desc_get(udev, desc_index, (uint16_t *)&(transc->remain_len)); + break; + + default: + break; + } + break; + + case USB_RECPTYPE_ITF: + /* get device class special descriptor */ + status = (usb_reqsta)(udev->dev.class_core->req_proc(udev, req)); + break; + + case USB_RECPTYPE_EP: + break; + + default: + break; + } + + if ((0U != transc->remain_len) && (0U != req->wLength)) { + if (transc->remain_len < req->wLength) { + if ((transc->remain_len >= transc->max_len) && (0U == (transc->remain_len % transc->max_len))) { + udev->dev.control.ctl_zlp = 1U; + } + } else { + transc->remain_len = req->wLength; + } + + status = REQ_SUPP; + } + + return status; +} + +/*! + \brief handle USB Set_Descriptor request + \param[in] udev: pointer to USB device instance + \param[in] req: pointer to USB device request + \param[out] none + \retval USB device request status +*/ +static usb_reqsta _usb_std_setdescriptor (usb_core_driver *udev, usb_req *req) +{ + (void)udev; + (void)req; + + /* no handle... */ + return REQ_SUPP; +} + +/*! + \brief handle USB Get_Configuration request + \param[in] udev: pointer to USB device instance + \param[in] req: pointer to USB device request + \param[out] none + \retval USB device request status +*/ +static usb_reqsta _usb_std_getconfiguration (usb_core_driver *udev, usb_req *req) +{ + (void)req; + + usb_reqsta req_status = REQ_NOTSUPP; + usb_transc *transc = &udev->dev.transc_in[0]; + + switch (udev->dev.cur_status) { + case USBD_ADDRESSED: + if (USB_DEFAULT_CONFIG == udev->dev.config) { + req_status = REQ_SUPP; + } + break; + + case USBD_CONFIGURED: + if (udev->dev.config != USB_DEFAULT_CONFIG) { + req_status = REQ_SUPP; + } + break; + + default: + break; + } + + if (REQ_SUPP == req_status) { + transc->xfer_buf = &(udev->dev.config); + transc->remain_len = 1U; + } + + return req_status; +} + +/*! + \brief handle USB Set_Configuration request + \param[in] udev: pointer to USB device instance + \param[in] req: pointer to USB device request + \param[out] none + \retval USB device request status +*/ +static usb_reqsta _usb_std_setconfiguration (usb_core_driver *udev, usb_req *req) +{ + static uint8_t config; + usb_reqsta status = REQ_NOTSUPP; + + config = (uint8_t)(req->wValue); + + if (config <= USBD_CFG_MAX_NUM) { + switch (udev->dev.cur_status) { + case USBD_ADDRESSED: + if (config){ + (void)udev->dev.class_core->init(udev, config); + + udev->dev.config = config; + udev->dev.cur_status = (uint8_t)USBD_CONFIGURED; + } + + status = REQ_SUPP; + break; + + case USBD_CONFIGURED: + if (USB_DEFAULT_CONFIG == config) { + (void)udev->dev.class_core->deinit(udev, config); + + udev->dev.config = config; + udev->dev.cur_status = (uint8_t)USBD_ADDRESSED; + } else if (config != udev->dev.config) { + /* clear old configuration */ + (void)udev->dev.class_core->deinit(udev, config); + + /* set new configuration */ + udev->dev.config = config; + + (void)udev->dev.class_core->init(udev, config); + } else { + /* no operation */ + } + + status = REQ_SUPP; + break; + + case USBD_DEFAULT: + break; + + default: + break; + } + } + + return status; +} + +/*! + \brief handle USB Get_Interface request + \param[in] udev: pointer to USB device instance + \param[in] req: pointer to USB device request + \param[out] none + \retval USB device request status +*/ +static usb_reqsta _usb_std_getinterface (usb_core_driver *udev, usb_req *req) +{ + switch (udev->dev.cur_status) { + case USBD_DEFAULT: + break; + + case USBD_ADDRESSED: + break; + + case USBD_CONFIGURED: + if (BYTE_LOW(req->wIndex) <= USBD_ITF_MAX_NUM) { + usb_transc *transc = &udev->dev.transc_in[0]; + + transc->xfer_buf = &(udev->dev.class_core->alter_set); + transc->remain_len = 1U; + + return REQ_SUPP; + } + break; + + default: + break; + } + + return REQ_NOTSUPP; +} + +/*! + \brief handle USB Set_Interface request + \param[in] udev: pointer to USB device instance + \param[in] req: pointer to USB device request + \param[out] none + \retval USB device request status +*/ +static usb_reqsta _usb_std_setinterface (usb_core_driver *udev, usb_req *req) +{ + switch (udev->dev.cur_status) { + case USBD_DEFAULT: + break; + + case USBD_ADDRESSED: + break; + + case USBD_CONFIGURED: + if (BYTE_LOW(req->wIndex) <= USBD_ITF_MAX_NUM) { + if (NULL != udev->dev.class_core->set_intf) { + (void)udev->dev.class_core->set_intf (udev, req); + } + + return REQ_SUPP; + } + break; + + default: + break; + } + + return REQ_NOTSUPP; +} + +/*! + \brief handle USB SynchFrame request + \param[in] udev: pointer to USB device instance + \param[in] req: pointer to USB device request + \param[out] none + \retval USB device request status +*/ +static usb_reqsta _usb_std_synchframe (usb_core_driver *udev, usb_req *req) +{ + (void)udev; + (void)req; + + /* no handle */ + return REQ_SUPP; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbd_transc.c b/Marlin/lib/GD32F4xx_usb_library/src/usbd_transc.c new file mode 100644 index 0000000000..26a0445ef6 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/usbd_transc.c @@ -0,0 +1,264 @@ +/*! + \file usbd_transc.c + \brief USB transaction core functions + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gdusbd_enum.h" +#include "gdusbd_transc.h" + +/*! + \brief USB send data in the control transaction + \param[in] udev: pointer to USB device instance + \param[out] none + \retval USB device operation cur_status +*/ +usbd_status usbd_ctl_send (usb_core_driver *udev) +{ + usb_transc *transc = &udev->dev.transc_in[0]; + + (void)usbd_ep_send(udev, 0U, transc->xfer_buf, transc->remain_len); + + if (transc->remain_len > transc->max_len) { + udev->dev.control.ctl_state = (uint8_t)USB_CTL_DATA_IN; + } else { + udev->dev.control.ctl_state = (uint8_t)USB_CTL_LAST_DATA_IN; + } + + return USBD_OK; +} + +/*! + \brief USB receive data in control transaction + \param[in] udev: pointer to USB device instance + \param[out] none + \retval USB device operation cur_status +*/ +usbd_status usbd_ctl_recev (usb_core_driver *udev) +{ + usb_transc *transc = &udev->dev.transc_out[0]; + + (void)usbd_ep_recev (udev, 0U, transc->xfer_buf, transc->remain_len); + + if (transc->remain_len > transc->max_len) { + udev->dev.control.ctl_state = (uint8_t)USB_CTL_DATA_OUT; + } else { + udev->dev.control.ctl_state = (uint8_t)USB_CTL_LAST_DATA_OUT; + } + + return USBD_OK; +} + +/*! + \brief USB send control transaction status + \param[in] udev: pointer to USB device instance + \param[out] none + \retval USB device operation cur_status +*/ +usbd_status usbd_ctl_status_send (usb_core_driver *udev) +{ + udev->dev.control.ctl_state = (uint8_t)USB_CTL_STATUS_IN; + + (void)usbd_ep_send (udev, 0U, NULL, 0U); + + usb_ctlep_startout(udev); + + return USBD_OK; +} + +/*! + \brief USB control receive status + \param[in] udev: pointer to USB device instance + \param[out] none + \retval USB device operation cur_status +*/ +usbd_status usbd_ctl_status_recev (usb_core_driver *udev) +{ + udev->dev.control.ctl_state = (uint8_t)USB_CTL_STATUS_OUT; + + (void)usbd_ep_recev (udev, 0U, NULL, 0U); + + usb_ctlep_startout(udev); + + return USBD_OK; +} + +/*! + \brief USB setup stage processing + \param[in] udev: pointer to USB device instance + \param[out] none + \retval USB device operation cur_status +*/ +uint8_t usbd_setup_transc (usb_core_driver *udev) +{ + usb_reqsta reqstat = REQ_NOTSUPP; + + usb_req req = udev->dev.control.req; + + switch (req.bmRequestType & USB_REQTYPE_MASK) { + /* standard device request */ + case USB_REQTYPE_STRD: + reqstat = usbd_standard_request (udev, &req); + break; + + /* device class request */ + case USB_REQTYPE_CLASS: + reqstat = usbd_class_request (udev, &req); + break; + + /* vendor defined request */ + case USB_REQTYPE_VENDOR: + reqstat = usbd_vendor_request (udev, &req); + break; + + default: + break; + } + + if (REQ_SUPP == reqstat) { + if (0U == req.wLength) { + (void)usbd_ctl_status_send (udev); + } else { + if (req.bmRequestType & 0x80U) { + (void)usbd_ctl_send (udev); + } else { + (void)usbd_ctl_recev (udev); + } + } + } else { + usbd_enum_error (udev, &req); + } + + return (uint8_t)USBD_OK; +} + +/*! + \brief data out stage processing + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint identifier(0..7) + \param[out] none + \retval USB device operation cur_status +*/ +uint8_t usbd_out_transc (usb_core_driver *udev, uint8_t ep_num) +{ + if (0U == ep_num) { + usb_transc *transc = &udev->dev.transc_out[0]; + + switch (udev->dev.control.ctl_state) { + case USB_CTL_DATA_OUT: + /* update transfer length */ + transc->remain_len -= transc->max_len; + + if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { + transc->xfer_buf += transc->max_len; + } + + (void)usbd_ctl_recev (udev); + break; + + case USB_CTL_LAST_DATA_OUT: + if (udev->dev.cur_status == (uint8_t)USBD_CONFIGURED) { + if (udev->dev.class_core->data_out != NULL) { + (void)udev->dev.class_core->data_out (udev, 0U); + } + } + + transc->remain_len = 0U; + + (void)usbd_ctl_status_send (udev); + break; + + default: + break; + } + } else if ((udev->dev.class_core->data_out != NULL) && (udev->dev.cur_status == (uint8_t)USBD_CONFIGURED)) { + (void)udev->dev.class_core->data_out (udev, ep_num); + } else { + /* no operation */ + } + + return (uint8_t)USBD_OK; +} + +/*! + \brief data in stage processing + \param[in] udev: pointer to USB device instance + \param[in] ep_num: endpoint identifier(0..7) + \param[out] none + \retval USB device operation cur_status +*/ +uint8_t usbd_in_transc (usb_core_driver *udev, uint8_t ep_num) +{ + if (0U == ep_num) { + usb_transc *transc = &udev->dev.transc_in[0]; + + switch (udev->dev.control.ctl_state) { + case USB_CTL_DATA_IN: + /* update transfer length */ + transc->remain_len -= transc->max_len; + + if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { + transc->xfer_buf += transc->max_len; + } + + (void)usbd_ctl_send (udev); + break; + + case USB_CTL_LAST_DATA_IN: + /* last packet is MPS multiple, so send ZLP packet */ + if (udev->dev.control.ctl_zlp) { + (void)usbd_ep_send (udev, 0U, NULL, 0U); + + udev->dev.control.ctl_zlp = 0U; + } else { + if (udev->dev.cur_status == (uint8_t)USBD_CONFIGURED) { + if (udev->dev.class_core->data_in != NULL) { + (void)udev->dev.class_core->data_in (udev, 0U); + } + } + + transc->remain_len = 0U; + + (void)usbd_ctl_status_recev (udev); + } + break; + + default: + break; + } + } else { + if ((udev->dev.cur_status == (uint8_t)USBD_CONFIGURED) && (udev->dev.class_core->data_in != NULL)) { + (void)udev->dev.class_core->data_in (udev, ep_num); + } + } + + return (uint8_t)USBD_OK; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_core.c b/Marlin/lib/GD32F4xx_usb_library/src/usbh_core.c new file mode 100644 index 0000000000..720ef5f9b6 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/usbh_core.c @@ -0,0 +1,669 @@ +/*! + \file usbh_core.c + \brief USB host core state machine driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "drv_usb_hw.h" +#include "gdusbh_pipe.h" +#include "gdusbh_enum.h" +#include "gdusbh_core.h" +#include "drv_usbh_int.h" +#include + +// #include "../../../src/feature/powerloss.h" + +/* local function prototypes ('static') */ +static uint8_t usbh_sof (usbh_host *uhost); +static uint8_t usbh_connect (usbh_host *uhost); +static uint8_t usbh_disconnect (usbh_host *uhost); +static uint8_t usbh_port_enabled (usbh_host *uhost); +static uint8_t usbh_port_disabled (usbh_host *uhost); +static usbh_status usbh_enum_task (usbh_host *uhost); + +#ifdef USB_LOW_PWR_ENABLE +static void usb_hwp_suspend(usb_core_driver *udev); +#endif + +// extern uint8_t udiskMounted; +// extern uint16_t plr_num; +extern bool plr_flag; + +usbh_int_cb usbh_int_op = +{ + usbh_connect, + usbh_disconnect, + usbh_port_enabled, + usbh_port_disabled, + usbh_sof +}; + +usbh_int_cb *usbh_int_fop = &usbh_int_op; + +/*! + \brief USB host stack initializations + \param[in] uhost: pointer to USB host + \param[in] user_cb: pointer to user callback + \param[out] none + \retval none +*/ +void usbh_init (usbh_host *uhost, usb_core_driver *udev, usb_core_enum usb_core, usbh_user_cb *user_cb) +{ + /* host deinitialization */ + usbh_deinit(uhost); + + uhost->usr_cb = user_cb; + + udev->host.connect_status = 0U; + + for (uint8_t i = 0U; i < USBFS_MAX_TX_FIFOS; i++) { + udev->host.pipe[i].err_count = 0U; + udev->host.pipe[i].pp_status = PIPE_IDLE; + udev->host.backup_xfercount[i] = 0U; + } + + udev->host.pipe[0].ep.mps = 8U; + + usb_basic_init (&udev->bp, &udev->regs, usb_core); + +#ifndef DUAL_ROLE_MODE_ENABLED + usb_globalint_disable(&udev->regs); + + usb_core_init (udev->bp, &udev->regs); + +#ifndef USE_OTG_MODE + usb_curmode_set (&udev->regs, HOST_MODE); +#endif /* USE_OTG_MODE */ + + usb_host_init (udev); + + usb_globalint_enable(&udev->regs); +#endif /* DUAL_ROLE_MODE_ENABLED */ + + /* link driver to the stack */ + udev->host.data = (void *)uhost; + uhost->data = (void *)udev; + + /* upon initialize call usr call back */ + uhost->usr_cb->dev_init(); +} + +/*! + \brief USB host register device class + \param[in] uhost: pointer to USB host instance + \param[in] puclass: pointer to USB device class + \param[out] none + \retval operation status +*/ +usbh_status usbh_class_register (usbh_host *uhost, usbh_class *puclass) +{ + usbh_status status = USBH_OK; + + if (NULL != puclass) { + if (uhost->class_num < USBH_MAX_SUPPORTED_CLASS) { + uhost->uclass[uhost->class_num++] = puclass; + } else { + status = USBH_FAIL; + } + } else { + status = USBH_FAIL; + } + + return status; +} + +/*! + \brief de-initialize USB host + \param[in] uhost: pointer to USB host + \param[out] none + \retval operation status +*/ +usbh_status usbh_deinit(usbh_host *uhost) +{ + usb_core_driver *udev = (usb_core_driver *)uhost->data; + + /* software initialize */ + uhost->cur_state = HOST_DEFAULT; + uhost->backup_state = HOST_DEFAULT; + uhost->enum_state = ENUM_DEFAULT; + + uhost->control.ctl_state = CTL_IDLE; + uhost->control.max_len = USB_FS_EP0_MAX_LEN; + + uhost->dev_prop.addr = USBH_DEV_ADDR_DEFAULT; + uhost->dev_prop.speed = PORT_SPEED_FULL; + uhost->dev_prop.cur_itf = 0xFFU; + + usbh_pipe_free(udev, uhost->control.pipe_in_num); + usbh_pipe_free(udev, uhost->control.pipe_out_num); + + return USBH_OK; +} + +/*! + \brief USB host core main state machine process + \param[in] uhost: pointer to USB host + \param[out] none + \retval none +*/ +void usbh_core_task (usbh_host *uhost) +{ + volatile usbh_status status = USBH_FAIL; + usb_core_driver *udev = (usb_core_driver *)uhost->data; + + /* check for host port events */ + if (((0U == udev->host.connect_status) || (0U == udev->host.port_enabled)) && (HOST_DEFAULT != uhost->cur_state)) { + if (uhost->cur_state != HOST_DEV_DETACHED) { + uhost->cur_state = HOST_DEV_DETACHED; + } + } + + switch (uhost->cur_state) { + case HOST_DEFAULT: + if (udev->host.connect_status) { + uhost->cur_state = HOST_DETECT_DEV_SPEED; + + usb_mdelay (100U); + + usb_port_reset (udev); + + uhost->usr_cb->dev_reset(); + } + break; + + case HOST_DETECT_DEV_SPEED: + if (udev->host.port_enabled) { + uhost->cur_state = HOST_DEV_ATTACHED; + + uhost->dev_prop.speed = usb_curspeed_get (udev); + + uhost->usr_cb->dev_speed_detected(uhost->dev_prop.speed); + + usb_mdelay (50U); + } + break; + + case HOST_DEV_ATTACHED: + uhost->usr_cb->dev_attach(); + uhost->control.pipe_out_num = usbh_pipe_allocate(udev, 0x00U); + uhost->control.pipe_in_num = usbh_pipe_allocate(udev, 0x80U); + + /* open IN control pipe */ + usbh_pipe_create (udev, + &uhost->dev_prop, + uhost->control.pipe_in_num, + USB_EPTYPE_CTRL, + (uint16_t)uhost->control.max_len); + + /* open OUT control pipe */ + usbh_pipe_create (udev, + &uhost->dev_prop, + uhost->control.pipe_out_num, + USB_EPTYPE_CTRL, + (uint16_t)uhost->control.max_len); + + uhost->cur_state = HOST_ENUM; + break; + + case HOST_ENUM: + /* check for enumeration status */ + if (USBH_OK == usbh_enum_task (uhost)) { + /* the function shall return USBH_OK when full enumeration is complete */ + + /* user callback for end of device basic enumeration */ + uhost->usr_cb->dev_enumerated(); + +#ifdef USB_LOW_PWR_ENABLE + uhost->cur_state = HOST_SUSPENDED; +#else + uhost->cur_state = HOST_SET_WAKEUP_FEATURE; +#endif + } + break; + + case HOST_SET_WAKEUP_FEATURE: + if ((uhost->dev_prop.cfg_desc_set.cfg_desc.bmAttributes) & (1U << 5)) { + if (usbh_setdevfeature(uhost, FEATURE_SELECTOR_REMOTEWAKEUP, 0U) == USBH_OK) { + uhost->cur_state = HOST_CHECK_CLASS; + } + } else { + uhost->cur_state = HOST_CHECK_CLASS; + } + break; + + case HOST_CHECK_CLASS: + if (0U == uhost->class_num) { + uhost->cur_state = HOST_ERROR; + } else { + uhost->active_class = NULL; + + uint8_t itf_class = uhost->dev_prop.cfg_desc_set.itf_desc_set[0][0].itf_desc.bInterfaceClass; + + for (uint8_t index = 0U; index < uhost->class_num; index++) { + if ((uhost->uclass[index]->class_code == itf_class) || (0xFFU == itf_class)) { + uhost->active_class = uhost->uclass[index]; + } + } + + if (uhost->active_class != NULL) { + uhost->cur_state = HOST_USER_INPUT; + } else { + uhost->cur_state = HOST_ERROR; + } + } + break; + + case HOST_USER_INPUT: + /* the function should return user response true to move to class state */ + if (USBH_USER_RESP_OK == uhost->usr_cb->dev_user_input()) { + if ((USBH_OK == uhost->active_class->class_init(uhost))) { + uhost->cur_state = HOST_CLASS_ENUM; + } + } + break; + +#ifdef USB_LOW_PWR_ENABLE + case HOST_SUSPENDED: + if (USBH_OK == usbh_setdevfeature(uhost, FEATURE_SELECTOR_DEV, 0U)) { + uhost->suspend_flag = 1; + usb_hwp_suspend(uhost->data); + uhost->usr_cb->dev_user_input(); + pmu_to_deepsleepmode(PMU_LDO_LOWPOWER, WFI_CMD); + uhost->cur_state = HOST_WAKEUP; + } + break; + + case HOST_WAKEUP: + if (USBH_OK == usbh_clrdevfeature(uhost, FEATURE_SELECTOR_DEV, 0U)) { + /* user callback for initialization */ + uhost->usr_cb->dev_init(); + + uhost->cur_state = HOST_CHECK_CLASS; + } + break; +#endif + + case HOST_CLASS_ENUM: + /* process class standard control requests state machine */ + status = uhost->active_class->class_requests(uhost); + + if (USBH_OK == status) { + uhost->cur_state = HOST_CLASS_HANDLER; + + // udisk du + // udiskMounted = 1; + // delay(1000); + // delay(1000); + } else { + usbh_error_handler (uhost, status); + } + break; + + case HOST_CLASS_HANDLER: + /* process class state machine */ + status = uhost->active_class->class_machine(uhost); + + usbh_error_handler (uhost, status); + break; + + case HOST_ERROR: + /* initialize host for new enumeration */ + usbh_deinit (uhost); + uhost->usr_cb->dev_deinit(); + uhost->active_class->class_deinit(uhost); + break; + + case HOST_DEV_DETACHED: + /* manage user disconnect operations*/ + uhost->usr_cb->dev_detach(); + + /* re-initialize host for new enumeration */ + usbh_deinit(uhost); + uhost->usr_cb->dev_deinit(); + uhost->active_class->class_deinit(uhost); + usbh_pipe_delete(udev); + uhost->cur_state = HOST_DEFAULT; + + // udisk du + // udiskMounted = 2; + // plr_num = 0; + plr_flag = false; + break; + + default: + break; + } +} + +/*! + \brief handle the error on USB host side + \param[in] uhost: pointer to USB host + \param[in] err_type: type of error or busy/OK state + \param[out] none + \retval none +*/ +void usbh_error_handler (usbh_host *uhost, usbh_status err_type) +{ + /* error unrecovered or not supported device speed */ + if ((USBH_SPEED_UNKNOWN_ERROR == err_type) || (USBH_UNRECOVERED_ERROR == err_type)) { + uhost->usr_cb->dev_error(); + + uhost->cur_state = HOST_ERROR; + } else if (USBH_APPLY_DEINIT == err_type) { + uhost->cur_state = HOST_ERROR; + + /* user callback for initialization */ + uhost->usr_cb->dev_init(); + } else { + /* no operation */ + } +} + +/*! + \brief USB SOF callback function from the interrupt + \param[in] uhost: pointer to USB host + \param[out] none + \retval operation status +*/ +static uint8_t usbh_sof (usbh_host *uhost) +{ + usb_core_driver *udev = (usb_core_driver *)uhost->data; + + /* this callback could be used to implement a scheduler process */ + uhost->control.timer = (uint16_t)usb_curframe_get(udev); + + if (uhost->active_class != NULL) { + if (uhost->active_class->class_sof != NULL) { + uhost->active_class->class_sof(uhost); + } + } + + return 0U; +} + +/*! + \brief USB connect callback function from the interrupt + \param[in] uhost: pointer to USB host + \param[out] none + \retval operation status +*/ +static uint8_t usbh_connect (usbh_host *uhost) +{ + usb_core_driver *udev = (usb_core_driver *)uhost->data; + udev->host.connect_status = 1U; + + return 0U; +} + +/*! + \brief USB disconnect callback function from the interrupt + \param[in] uhost: pointer to USB host + \param[out] none + \retval operation status +*/ +static uint8_t usbh_disconnect (usbh_host *uhost) +{ + usb_core_driver *udev = (usb_core_driver *)uhost->data; + udev->host.connect_status = 0U; + + return 0U; +} + +/*! + \brief USB port enable callback function from the interrupt + \param[in] uhost: pointer to USB host + \param[out] none + \retval operation status +*/ +static uint8_t usbh_port_enabled (usbh_host *uhost) +{ + usb_core_driver *udev = (usb_core_driver *)uhost->data; + udev->host.port_enabled = 1U; + + return 0U; +} + +/*! + \brief USB port disabled callback function from the interrupt + \param[in] uhost: pointer to USB host + \param[out] none + \retval operation status +*/ +static uint8_t usbh_port_disabled (usbh_host *uhost) +{ + usb_core_driver *udev = (usb_core_driver *)uhost->data; + udev->host.port_enabled = 0U; + + return 0U; +} + +/*! + \brief handle the USB enumeration task + \param[in] uhost: pointer to host + \param[out] none + \retval none +*/ +static usbh_status usbh_enum_task (usbh_host *uhost) +{ + uint8_t str_buf[64]; + usbh_status status = USBH_BUSY; + usb_core_driver *udev = (usb_core_driver *)uhost->data; + + static uint8_t index_mfc_str = 0U, index_prod_str = 0U, index_serial_str = 0U; + + switch (uhost->enum_state) { + case ENUM_DEFAULT: + /* get device descriptor for only 1st 8 bytes : to get ep0 max packet size */ + if (USBH_OK == usbh_devdesc_get (uhost, 8U)) { + uhost->control.max_len = uhost->dev_prop.dev_desc.bMaxPacketSize0; + + /* modify control channels configuration for maximum packet size */ + usbh_pipe_update (udev, + uhost->control.pipe_out_num, + 0U, 0U, + (uint16_t)uhost->control.max_len); + + usbh_pipe_update (udev, + uhost->control.pipe_in_num, + 0U, 0U, + (uint16_t)uhost->control.max_len); + + uhost->enum_state = ENUM_GET_DEV_DESC; + } + break; + + case ENUM_GET_DEV_DESC: + /* get full device descriptor */ + if (USBH_OK == usbh_devdesc_get (uhost, USB_DEV_DESC_LEN)) { + uhost->usr_cb->dev_devdesc_assigned(&uhost->dev_prop.dev_desc); + + index_mfc_str = uhost->dev_prop.dev_desc.iManufacturer; + index_prod_str = uhost->dev_prop.dev_desc.iProduct; + index_serial_str = uhost->dev_prop.dev_desc.iSerialNumber; + + uhost->enum_state = ENUM_SET_ADDR; + } + break; + + case ENUM_SET_ADDR: + /* set address */ + if (USBH_OK == usbh_setaddress (uhost, USBH_DEV_ADDR)) { + usb_mdelay (2U); + + uhost->dev_prop.addr = USBH_DEV_ADDR; + + /* user callback for device address assigned */ + uhost->usr_cb->dev_address_set(); + + /* modify control channels to update device address */ + usbh_pipe_update (udev, + uhost->control.pipe_in_num, + uhost->dev_prop.addr, + 0U, 0U); + + usbh_pipe_update (udev, + uhost->control.pipe_out_num, + uhost->dev_prop.addr, + 0U, 0U); + + uhost->enum_state = ENUM_GET_CFG_DESC; + } + break; + + case ENUM_GET_CFG_DESC: + /* get standard configuration descriptor */ + if (USBH_OK == usbh_cfgdesc_get (uhost, USB_CFG_DESC_LEN)) { + uhost->enum_state = ENUM_GET_CFG_DESC_SET; + } + break; + + case ENUM_GET_CFG_DESC_SET: + /* get full configure descriptor (config, interface, endpoints) */ + if (USBH_OK == usbh_cfgdesc_get (uhost, uhost->dev_prop.cfg_desc_set.cfg_desc.wTotalLength)) { + /* user callback for configuration descriptors available */ + uhost->usr_cb->dev_cfgdesc_assigned (&uhost->dev_prop.cfg_desc_set.cfg_desc, + &uhost->dev_prop.cfg_desc_set.itf_desc_set[0][0].itf_desc, + &uhost->dev_prop.cfg_desc_set.itf_desc_set[0][0].ep_desc[0]); + + uhost->enum_state = ENUM_GET_STR_DESC; + } + break; + + case ENUM_GET_STR_DESC: + if (index_mfc_str) { + if (USBH_OK == usbh_strdesc_get (uhost, + uhost->dev_prop.dev_desc.iManufacturer, + str_buf, + 0xFFU)) { + /* user callback for manufacturing string */ + uhost->usr_cb->dev_mfc_str(str_buf); + + index_mfc_str = 0U; + } + } else { + if (index_prod_str) { + /* check that product string is available */ + if (USBH_OK == usbh_strdesc_get (uhost, + uhost->dev_prop.dev_desc.iProduct, + str_buf, + 0xFFU)) { + uhost->usr_cb->dev_prod_str(str_buf); + + index_prod_str = 0U; + } + } else { + if (index_serial_str) { + if (USBH_OK == usbh_strdesc_get (uhost, + uhost->dev_prop.dev_desc.iSerialNumber, + str_buf, + 0xFFU)) { + uhost->usr_cb->dev_seral_str(str_buf); + uhost->enum_state = ENUM_SET_CONFIGURATION; + index_serial_str = 0U; + } + } else { + uhost->enum_state = ENUM_SET_CONFIGURATION; + } + } + } + break; + + case ENUM_SET_CONFIGURATION: + if (USBH_OK == usbh_setcfg (uhost, (uint16_t)uhost->dev_prop.cfg_desc_set.cfg_desc.bConfigurationValue)) { + uhost->enum_state = ENUM_DEV_CONFIGURED; + } + break; + + case ENUM_DEV_CONFIGURED: + status = USBH_OK; + break; + + default: + break; + } + + return status; +} + +#ifdef USB_LOW_PWR_ENABLE + +/*! + \brief handles the USB resume from suspend mode + \param[in] udev: pointer to selected USB device + \param[out] none + \retval none +*/ +void usb_hwp_resume(usb_core_driver *udev) +{ + __IO uint32_t hprt = 0U; + + /* switch-on the clocks */ + *udev->regs.PWRCLKCTL &= ~PWRCLKCTL_SUCLK; + + *udev->regs.PWRCLKCTL &= ~PWRCLKCTL_SHCLK; + + hprt = usb_port_read(udev); + + hprt &= ~HPCS_PSP; + hprt |= HPCS_PREM; + + *udev->regs.HPCS = hprt; + + usb_mdelay (20U); + + hprt &= ~HPCS_PREM; + + *udev->regs.HPCS = hprt; +} + +/*! + \brief handles the USB enter to suspend mode + \param[in] udev: pointer to selected USB device + \param[out] none + \retval none +*/ +static void usb_hwp_suspend(usb_core_driver *udev) +{ + __IO uint32_t hprt = 0U; + + hprt = usb_port_read(udev); + + hprt |= HPCS_PSP; + + *udev->regs.HPCS = hprt; + + /* switch-off the clocks */ + *udev->regs.PWRCLKCTL |= PWRCLKCTL_SUCLK; + + *udev->regs.PWRCLKCTL |= PWRCLKCTL_SHCLK; +} + +#endif /* USB_LOW_PWR_ENABLE */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_enum.c b/Marlin/lib/GD32F4xx_usb_library/src/usbh_enum.c new file mode 100644 index 0000000000..72b51f0037 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/usbh_enum.c @@ -0,0 +1,693 @@ +/*! + \file usbh_enum.c + \brief USB host mode enumeration driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gdusbh_pipe.h" +#include "usbh_transc.h" +#include "gdusbh_enum.h" + +/* local function prototypes ('static') */ +static void usbh_devdesc_parse (usb_desc_dev *dev_desc, uint8_t *buf, uint16_t len); +static void usbh_cfgdesc_parse (usb_desc_config *cfg_desc, uint8_t *buf); +static void usbh_cfgset_parse (usb_dev_prop *udev, uint8_t *buf); +static void usbh_itfdesc_parse (usb_desc_itf *itf_desc, uint8_t *buf); +static void usbh_epdesc_parse (usb_desc_ep *ep_desc, uint8_t *buf); +static void usbh_strdesc_parse (uint8_t *psrc, uint8_t *pdest, uint16_t len); + +/*! + \brief configure USB control status parameters + \param[in] uhost: pointer to USB host + \param[in] buf: control transfer data buffer pointer + \param[in] len: length of the data buffer + \param[out] none + \retval none +*/ +void usbh_ctlstate_config (usbh_host *uhost, uint8_t *buf, uint16_t len) +{ + /* prepare the transactions */ + uhost->control.buf = buf; + uhost->control.ctl_len = len; + + uhost->control.ctl_state = CTL_SETUP; +} + +/*! + \brief get device descriptor from the USB device + \param[in] uhost: pointer to USB host + \param[in] len: length of the descriptor + \param[out] none + \retval operation status +*/ +usbh_status usbh_devdesc_get (usbh_host *uhost, uint8_t len) +{ + usbh_status status = USBH_BUSY; + + usbh_control *usb_ctl = &uhost->control; + + if (CTL_IDLE == usb_ctl->ctl_state) { + usb_ctl->setup.req = (usb_req) { + .bmRequestType = USB_TRX_IN | USB_RECPTYPE_DEV | USB_REQTYPE_STRD, + .bRequest = USB_GET_DESCRIPTOR, + .wValue = USBH_DESC(USB_DESCTYPE_DEV), + .wIndex = 0U, + .wLength = len + }; + + usbh_ctlstate_config (uhost, uhost->dev_prop.data, (uint16_t)len); + } + + status = usbh_ctl_handler (uhost); + + if (USBH_OK == status) { + /* commands successfully sent and response received */ + usbh_devdesc_parse (&uhost->dev_prop.dev_desc, uhost->dev_prop.data, (uint16_t)len); + } + + return status; +} + +/*! + \brief get configuration descriptor from the USB device + \param[in] uhost: pointer to USB host + \param[in] len: length of the descriptor + \param[out] none + \retval operation status +*/ +usbh_status usbh_cfgdesc_get (usbh_host *uhost, uint16_t len) +{ + uint8_t *pdata = NULL; + + usbh_status status = USBH_BUSY; + + usbh_control *usb_ctl = &uhost->control; + +#if (USBH_KEEP_CFG_DESCRIPTOR == 1U) + pdata = uhost->dev_prop.cfgdesc_rawdata; +#else + pdata = uhost->dev_prop.data; +#endif + + if (CTL_IDLE == usb_ctl->ctl_state) { + usb_ctl->setup.req = (usb_req) { + .bmRequestType = USB_TRX_IN | USB_RECPTYPE_DEV | USB_REQTYPE_STRD, + .bRequest = USB_GET_DESCRIPTOR, + .wValue = USBH_DESC(USB_DESCTYPE_CONFIG), + .wIndex = 0U, + .wLength = len + }; + + usbh_ctlstate_config (uhost, pdata, len); + } + + status = usbh_ctl_handler (uhost); + + if (USBH_OK == status) { + if (len <= USB_CFG_DESC_LEN) { + usbh_cfgdesc_parse (&uhost->dev_prop.cfg_desc_set.cfg_desc, pdata); + } else { + usbh_cfgset_parse (&uhost->dev_prop, pdata); + } + } + + return status; +} + +/*! + \brief get string descriptor from the USB device + \param[in] uhost: pointer to USB host + \param[in] str_index: index for the string descriptor + \param[in] buf: buffer pointer to the string descriptor + \param[in] len: length of the descriptor + \param[out] none + \retval operation status +*/ +usbh_status usbh_strdesc_get (usbh_host *uhost, + uint8_t str_index, + uint8_t *buf, + uint16_t len) +{ + usbh_status status = USBH_BUSY; + + usbh_control *usb_ctl = &uhost->control; + + if (CTL_IDLE == usb_ctl->ctl_state) { + usb_ctl->setup.req = (usb_req) { + .bmRequestType = USB_TRX_IN | USB_RECPTYPE_DEV | USB_REQTYPE_STRD, + .bRequest = USB_GET_DESCRIPTOR, + .wValue = USBH_DESC(USB_DESCTYPE_STR) | str_index, + .wIndex = 0x0409U, + .wLength = len + }; + + usbh_ctlstate_config (uhost, uhost->dev_prop.data, len); + } + + status = usbh_ctl_handler (uhost); + + if (USBH_OK == status) { + /* commands successfully sent and response received */ + usbh_strdesc_parse (uhost->dev_prop.data, buf, len); + } + + return status; +} + +/*! + \brief set the address to the connected device + \param[in] uhost: pointer to USB host + \param[in] dev_addr: device address to assign + \param[out] none + \retval operation status +*/ +usbh_status usbh_setaddress (usbh_host *uhost, uint8_t dev_addr) +{ + usbh_status status = USBH_BUSY; + + usbh_control *usb_ctl = &uhost->control; + + if (CTL_IDLE == usb_ctl->ctl_state) { + usb_ctl->setup.req = (usb_req) { + .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_DEV | USB_REQTYPE_STRD, + .bRequest = USB_SET_ADDRESS, + .wValue = (uint16_t)dev_addr, + .wIndex = 0U, + .wLength = 0U + }; + + usbh_ctlstate_config (uhost, NULL, 0U); + } + + status = usbh_ctl_handler (uhost); + + return status; +} + +/*! + \brief set the configuration value to the connected device + \param[in] uhost: pointer to USB host + \param[in] config_index: configuration value + \param[out] none + \retval operation status +*/ +usbh_status usbh_setcfg (usbh_host *uhost, uint16_t config_index) +{ + usbh_status status = USBH_BUSY; + + usbh_control *usb_ctl = &uhost->control; + + if (CTL_IDLE == usb_ctl->ctl_state) { + usb_ctl->setup.req = (usb_req) { + .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_DEV | USB_REQTYPE_STRD, + .bRequest = USB_SET_CONFIGURATION, + .wValue = config_index, + .wIndex = 0U, + .wLength = 0U + }; + + usbh_ctlstate_config (uhost, NULL, 0U); + } + + status = usbh_ctl_handler (uhost); + + return status; +} + +/*! + \brief set the interface value to the connected device + \param[in] uhost: pointer to USB host + \param[in] itf_num: interface number + \param[in] set: alternated setting value + \param[out] none + \retval operation status +*/ +usbh_status usbh_setinterface (usbh_host *uhost, uint8_t itf_num, uint8_t set) +{ + usbh_status status = USBH_BUSY; + + usbh_control *usb_ctl = &uhost->control; + + if (CTL_IDLE == usb_ctl->ctl_state) { + usb_ctl->setup.req = (usb_req) { + .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_ITF | USB_REQTYPE_STRD, + .bRequest = USB_SET_INTERFACE, + .wValue = set, + .wIndex = itf_num, + .wLength = 0U + }; + + usbh_ctlstate_config (uhost, NULL, 0U); + } + + status = usbh_ctl_handler (uhost); + + return status; +} + +/*! + \brief set the interface value to the connected device + \param[in] uhost: pointer to USB host + \param[in] feature_selector: feature selector + \param[in] windex: index value + \param[out] none + \retval operation status +*/ +usbh_status usbh_setdevfeature (usbh_host *uhost, uint8_t feature_selector, uint16_t windex) +{ + usbh_status status = USBH_BUSY; + + usbh_control *usb_ctl = &uhost->control; + + if (CTL_IDLE == usb_ctl->ctl_state) { + usb_ctl->setup.req = (usb_req) { + .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_DEV | USB_REQTYPE_STRD, + .bRequest = USB_SET_FEATURE, + .wValue = feature_selector, + .wIndex = windex, + .wLength = 0U + }; + + usbh_ctlstate_config (uhost, NULL, 0U); + } + + status = usbh_ctl_handler (uhost); + + return status; +} + +/*! + \brief clear the interface value to the connected device + \param[in] uhost: pointer to USB host + \param[in] feature_selector: feature selector + \param[in] windex: index value + \param[out] none + \retval operation status +*/ +usbh_status usbh_clrdevfeature (usbh_host *uhost, uint8_t feature_selector, uint16_t windex) +{ + usbh_status status = USBH_BUSY; + + usbh_control *usb_ctl = &uhost->control; + + if (CTL_IDLE == usb_ctl->ctl_state) { + usb_ctl->setup.req = (usb_req) { + .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_DEV | USB_REQTYPE_STRD, + .bRequest = USB_CLEAR_FEATURE, + .wValue = feature_selector, + .wIndex = windex, + .wLength = 0U + }; + + usbh_ctlstate_config (uhost, NULL, 0U); + } + + status = usbh_ctl_handler (uhost); + + return status; +} + +/*! + \brief clear or disable a specific feature + \param[in] uhost: pointer to USB host + \param[in] ep_addr: endpoint address + \param[in] pp_num: pipe number + \param[out] none + \retval operation status +*/ +usbh_status usbh_clrfeature (usbh_host *uhost, uint8_t ep_addr, uint8_t pp_num) +{ + usbh_status status = USBH_BUSY; + usbh_control *usb_ctl = &uhost->control; + usb_core_driver *udev = (usb_core_driver *)uhost->data; + + if (CTL_IDLE == usb_ctl->ctl_state) { + usb_ctl->setup.req = (usb_req) { + .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_EP | USB_REQTYPE_STRD, + .bRequest = USB_CLEAR_FEATURE, + .wValue = FEATURE_SELECTOR_EP, + .wIndex = ep_addr, + .wLength = 0U + }; + + if (EP_ID(ep_addr) == udev->host.pipe[pp_num].ep.num) { + usbh_pipe_toggle_set(udev, pp_num, 0U); + } else { + return USBH_FAIL; + } + + usbh_ctlstate_config (uhost, NULL, 0U); + } + + status = usbh_ctl_handler (uhost); + + return status; +} + +/*! + \brief get the next descriptor header + \param[in] pbuf: pointer to buffer where the configuration descriptor set is available + \param[in] ptr: data pointer inside the configuration descriptor set + \param[out] none + \retval return descriptor header +*/ +usb_desc_header *usbh_nextdesc_get (uint8_t *pbuf, uint16_t *ptr) +{ + usb_desc_header *pnext; + + *ptr += ((usb_desc_header *)pbuf)->bLength; + + pnext = (usb_desc_header *)((uint8_t *)pbuf + ((usb_desc_header *)pbuf)->bLength); + + return (pnext); +} + +/*! + \brief get the next descriptor header + \param[in] udev: pointer to device property + \param[in] interface: interface number + \param[out] none + \retval operation status +*/ +usbh_status usbh_interface_select (usb_dev_prop *udev, uint8_t interface) +{ + usbh_status status = USBH_OK; + + if (interface < udev->cfg_desc_set.cfg_desc.bNumInterfaces) { + udev->cur_itf = interface; + } else { + status = USBH_FAIL; + } + + return status; +} + +/*! + \brief find the interface index for a specific class + \param[in] udev: pointer to device property + \param[in] main_class: class code + \param[in] sub_class: subclass code + \param[in] protocol: Protocol code + \param[out] none + \retval interface index in the configuration structure + \note interface index 0xFF means interface index not found +*/ +uint8_t usbh_interface_find (usb_dev_prop *udev, uint8_t main_class, uint8_t sub_class, uint8_t protocol) +{ + usb_desc_itf *pif; + + uint8_t if_ix = 0U; + + pif = (usb_desc_itf *)0; + + while (if_ix < udev->cfg_desc_set.cfg_desc.bNumInterfaces) { + pif = &udev->cfg_desc_set.itf_desc_set[if_ix][0].itf_desc; + + if (((pif->bInterfaceClass == main_class) || (main_class == 0xFFU))&& + ((pif->bInterfaceSubClass == sub_class) || (sub_class == 0xFFU))&& + ((pif->bInterfaceProtocol == protocol) || (protocol == 0xFFU))) { + return if_ix; + } + + if_ix++; + } + + return 0xFFU; +} + +/*! + \brief find the interface index for a specific class interface and alternate setting number + \param[in] udev: pointer to device property + \param[in] interface_number: interface number + \param[in] alt_settings: alternate setting number + \param[out] none + \retval interface index in the configuration structure + \note interface index 0xFF means interface index not found +*/ +uint8_t usbh_interfaceindex_find (usb_dev_prop *udev, uint8_t interface_number, uint8_t alt_settings) +{ + usb_desc_itf *pif; + + uint8_t if_ix = 0U; + + pif = (usb_desc_itf *)0; + + while (if_ix < USBH_MAX_INTERFACES_NUM) { + pif = &udev->cfg_desc_set.itf_desc_set[if_ix][alt_settings].itf_desc; + + if ((pif->bInterfaceNumber == interface_number) && (pif->bAlternateSetting == alt_settings)) { + return if_ix; + } + + if_ix++; + } + + return 0xFFU; +} + +/*! + \brief parse the device descriptor + \param[in] dev_desc: pointer to USB device descriptor buffer + \param[in] buf: pointer to the source descriptor buffer + \param[in] len: length of the descriptor + \param[out] none + \retval none +*/ +static void usbh_devdesc_parse (usb_desc_dev *dev_desc, uint8_t *buf, uint16_t len) +{ + *dev_desc = (usb_desc_dev) { + .header = { + .bLength = *(uint8_t *)(buf + 0U), + .bDescriptorType = *(uint8_t *)(buf + 1U) + }, + + .bcdUSB = BYTE_SWAP(buf + 2U), + .bDeviceClass = *(uint8_t *)(buf + 4U), + .bDeviceSubClass = *(uint8_t *)(buf + 5U), + .bDeviceProtocol = *(uint8_t *)(buf + 6U), + .bMaxPacketSize0 = *(uint8_t *)(buf + 7U) + }; + + if (len > 8U) { + /* for 1st time after device connection, host may issue only 8 bytes for device descriptor length */ + dev_desc->idVendor = BYTE_SWAP(buf + 8U); + dev_desc->idProduct = BYTE_SWAP(buf + 10U); + dev_desc->bcdDevice = BYTE_SWAP(buf + 12U); + dev_desc->iManufacturer = *(uint8_t *)(buf + 14U); + dev_desc->iProduct = *(uint8_t *)(buf + 15U); + dev_desc->iSerialNumber = *(uint8_t *)(buf + 16U); + dev_desc->bNumberConfigurations = *(uint8_t *)(buf + 17U); + } +} + +/*! + \brief parse the configuration descriptor + \param[in] cfg_desc: pointer to USB configuration descriptor buffer + \param[in] buf: pointer to the source descriptor buffer + \param[out] none + \retval none +*/ +static void usbh_cfgdesc_parse (usb_desc_config *cfg_desc, uint8_t *buf) +{ + /* parse configuration descriptor */ + *cfg_desc = (usb_desc_config) { + .header = { + .bLength = *(uint8_t *)(buf + 0U), + .bDescriptorType = *(uint8_t *)(buf + 1U), + }, + + .wTotalLength = BYTE_SWAP(buf + 2U), + .bNumInterfaces = *(uint8_t *)(buf + 4U), + .bConfigurationValue = *(uint8_t *)(buf + 5U), + .iConfiguration = *(uint8_t *)(buf + 6U), + .bmAttributes = *(uint8_t *)(buf + 7U), + .bMaxPower = *(uint8_t *)(buf + 8U) + }; +} + +/*! + \brief parse the configuration descriptor set + \param[in] udev: pointer to device property + \param[in] buf: pointer to the source descriptor buffer + \param[out] none + \retval none +*/ +static void usbh_cfgset_parse (usb_dev_prop *udev, uint8_t *buf) +{ + usb_desc_ep *ep = NULL; + usb_desc_itf_set *itf = NULL; + usb_desc_itf itf_value; + usb_desc_config *cfg = NULL; + + usb_desc_header *pdesc = (usb_desc_header *)buf; + + uint8_t itf_index = 0U, ep_index = 0U, alt_setting = 0U; + uint8_t pre_itf_index = 0U; + uint16_t ptr; + + /* parse configuration descriptor */ + usbh_cfgdesc_parse (&udev->cfg_desc_set.cfg_desc, buf); + cfg = &udev->cfg_desc_set.cfg_desc; + ptr = USB_CFG_DESC_LEN; + + if (cfg->bNumInterfaces > USBH_MAX_INTERFACES_NUM) { + return; + } + + while (ptr < cfg->wTotalLength) { + pdesc = usbh_nextdesc_get ((uint8_t *)pdesc, &ptr); + + if (pdesc->bDescriptorType == USB_DESCTYPE_ITF) { + itf_index = *(((uint8_t *)pdesc) + 2U); + + if (pre_itf_index != itf_index) { + alt_setting = 0U; + } + + itf = &udev->cfg_desc_set.itf_desc_set[itf_index][alt_setting]; + + alt_setting++; + + if ((*((uint8_t *)pdesc + 3U)) < 3U) { + usbh_itfdesc_parse (&itf_value, (uint8_t *)pdesc); + + /* parse endpoint descriptors relative to the current interface */ + if (itf_value.bNumEndpoints > USBH_MAX_EP_NUM) { + return; + } + + usbh_itfdesc_parse (&itf->itf_desc, (uint8_t *)&itf_value); + + /* store the previous interface index */ + pre_itf_index = itf_index; + + if (0U == itf_value.bNumEndpoints) { + continue; + } + + for (ep_index = 0U; ep_index < itf_value.bNumEndpoints; ) { + pdesc = usbh_nextdesc_get ((void*)pdesc, &ptr); + + if (pdesc->bDescriptorType == USB_DESCTYPE_EP) { + ep = &itf->ep_desc[ep_index]; + + usbh_epdesc_parse (ep, (uint8_t *)pdesc); + + ep_index++; + } + } + } + } + } +} + +/*! + \brief parse the interface descriptor + \param[in] itf_desc: pointer to USB interface descriptor buffer + \param[in] buf: pointer to the source descriptor buffer + \param[out] none + \retval none +*/ +static void usbh_itfdesc_parse (usb_desc_itf *itf_desc, uint8_t *buf) +{ + *itf_desc = (usb_desc_itf) { + .header = { + .bLength = *(uint8_t *)(buf + 0U), + .bDescriptorType = *(uint8_t *)(buf + 1U), + }, + + .bInterfaceNumber = *(uint8_t *)(buf + 2U), + .bAlternateSetting = *(uint8_t *)(buf + 3U), + .bNumEndpoints = *(uint8_t *)(buf + 4U), + .bInterfaceClass = *(uint8_t *)(buf + 5U), + .bInterfaceSubClass = *(uint8_t *)(buf + 6U), + .bInterfaceProtocol = *(uint8_t *)(buf + 7U), + .iInterface = *(uint8_t *)(buf + 8U) + }; +} + +/*! + \brief parse the endpoint descriptor + \param[in] ep_desc: pointer to USB endpoint descriptor buffer + \param[in] buf: pointer to the source descriptor buffer + \param[out] none + \retval none +*/ +static void usbh_epdesc_parse (usb_desc_ep *ep_desc, uint8_t *buf) +{ + *ep_desc = (usb_desc_ep) { + .header = { + .bLength = *(uint8_t *)(buf + 0U), + .bDescriptorType = *(uint8_t *)(buf + 1U) + }, + + .bEndpointAddress = *(uint8_t *)(buf + 2U), + .bmAttributes = *(uint8_t *)(buf + 3U), + .wMaxPacketSize = BYTE_SWAP(buf + 4U), + .bInterval = *(uint8_t *)(buf + 6U) + }; +} + +/*! + \brief parse the string descriptor + \param[in] psrc: source pointer containing the descriptor data + \param[in] pdest: destination address pointer + \param[in] len: length of the descriptor + \param[out] none + \retval none +*/ +static void usbh_strdesc_parse (uint8_t *psrc, uint8_t *pdest, uint16_t len) +{ + uint16_t str_len = 0U, index = 0U; + + /* the unicode string descriptor is not NULL-terminated. The string length is + * computed by substracting two from the value of the first byte of the descriptor. + */ + + /* check which is lower size, the size of string or the length of bytes read from the device */ + if (USB_DESCTYPE_STR == psrc[1]) { + /* make sure the descriptor is string type */ + + /* psrc[0] contains Size of Descriptor, subtract 2 to get the length of string */ + str_len = USB_MIN((uint16_t)psrc[0] - 2U, len); + + psrc += 2U; /* adjust the offset ignoring the string len and descriptor type */ + + for (index = 0U; index < str_len; index += 2U) { + /* copy only the string and ignore the unicode id, hence add the src */ + *pdest = psrc[index]; + + pdest++; + } + + *pdest = 0U; /* mark end of string */ + } +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_bbb.c b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_bbb.c new file mode 100644 index 0000000000..6408018dc6 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_bbb.c @@ -0,0 +1,362 @@ +/*! + \file usbh_msc_bbb.c + \brief USB MSC BBB protocol related functions + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gdusbh_pipe.h" +#include "usbh_msc_core.h" +#include "usbh_msc_scsi.h" +#include "usbh_msc_bbb.h" +#include "usbh_transc.h" +#include "drv_usbh_int.h" + +/*! + \brief initialize the mass storage parameters + \param[in] uhost: pointer to USB host handler + \param[out] none + \retval none +*/ +void usbh_msc_bot_init (usbh_host *uhost) +{ + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + msc->bot.cbw.field.dCBWSignature = BBB_CBW_SIGNATURE; + msc->bot.cbw.field.dCBWTag = USBH_MSC_BOT_CBW_TAG; + msc->bot.state = BOT_SEND_CBW; + msc->bot.cmd_state = BOT_CMD_SEND; +} + +/*! + \brief manage the different states of BOT transfer and updates the status to upper layer + \param[in] uhost: pointer to usb host handler + \param[in] lun: logic unit number + \param[out] none + \retval operation status +*/ +usbh_status usbh_msc_bot_process (usbh_host *uhost, uint8_t lun) +{ + bot_csw_status csw_status = BOT_CSW_CMD_FAILED; + usbh_status status = USBH_BUSY; + usbh_status error = USBH_BUSY; + usb_urb_state urb_status = GD_URB_IDLE; + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + switch (msc->bot.state) { + case BOT_SEND_CBW: + msc->bot.cbw.field.bCBWLUN = lun; + msc->bot.state = BOT_SEND_CBW_WAIT; + /* send CBW */ + usbh_data_send (uhost->data, + msc->bot.cbw.CBWArray, + msc->pipe_out, + BBB_CBW_LENGTH); + break; + + case BOT_SEND_CBW_WAIT: + urb_status = usbh_urbstate_get(uhost->data, msc->pipe_out); + + if (GD_URB_DONE == urb_status) { + if (0U != msc->bot.cbw.field.dCBWDataTransferLength) { + if (USB_TRX_IN == (msc->bot.cbw.field.bmCBWFlags & USB_TRX_MASK)) { + msc->bot.state = BOT_DATA_IN; + } else { + msc->bot.state = BOT_DATA_OUT; + } + } else { + msc->bot.state = BOT_RECEIVE_CSW; + } + + } else if (GD_URB_NOTREADY == urb_status) { + msc->bot.state = BOT_SEND_CBW; + } else { + if (GD_URB_STALL == urb_status) { + msc->bot.state = BOT_ERROR_OUT; + } + } + break; + + case BOT_DATA_IN: + usbh_data_recev (uhost->data, + msc->bot.pbuf, + msc->pipe_in, + msc->ep_size_in); + + msc->bot.state = BOT_DATA_IN_WAIT; + break; + + case BOT_DATA_IN_WAIT: + urb_status = usbh_urbstate_get(uhost->data, msc->pipe_in); + + /* BOT DATA IN stage */ + if (GD_URB_DONE == urb_status) { + if (msc->bot.cbw.field.dCBWDataTransferLength > msc->ep_size_in) { + msc->bot.pbuf += msc->ep_size_in; + msc->bot.cbw.field.dCBWDataTransferLength -= msc->ep_size_in; + } else { + msc->bot.cbw.field.dCBWDataTransferLength = 0U; + } + + if (msc->bot.cbw.field.dCBWDataTransferLength > 0U) { + usbh_data_recev (uhost->data, + msc->bot.pbuf, + msc->pipe_in, + msc->ep_size_in); + } else { + msc->bot.state = BOT_RECEIVE_CSW; + } + } else if(GD_URB_STALL == urb_status) { + /* this is data stage stall condition */ + msc->bot.state = BOT_ERROR_IN; + } else { + /* no operation */ + } + break; + + case BOT_DATA_OUT: + usbh_data_send (uhost->data, + msc->bot.pbuf, + msc->pipe_out, + msc->ep_size_out); + + msc->bot.state = BOT_DATA_OUT_WAIT; + break; + + case BOT_DATA_OUT_WAIT: + /* BOT DATA OUT stage */ + urb_status = usbh_urbstate_get(uhost->data, msc->pipe_out); + if (GD_URB_DONE == urb_status) { + if (msc->bot.cbw.field.dCBWDataTransferLength > msc->ep_size_out) { + msc->bot.pbuf += msc->ep_size_out; + msc->bot.cbw.field.dCBWDataTransferLength -= msc->ep_size_out; + } else { + msc->bot.cbw.field.dCBWDataTransferLength = 0; /* reset this value and keep in same state */ + } + + if (msc->bot.cbw.field.dCBWDataTransferLength > 0) { + usbh_data_send (uhost->data, + msc->bot.pbuf, + msc->pipe_out, + msc->ep_size_out); + } else { + msc->bot.state = BOT_RECEIVE_CSW; + } + } else if (GD_URB_NOTREADY == urb_status) { + msc->bot.state = BOT_DATA_OUT; + } else if (GD_URB_STALL == urb_status) { + msc->bot.state = BOT_ERROR_OUT; + } else { + /* no operation */ + } + break; + + case BOT_RECEIVE_CSW: + /* BOT CSW stage */ + usbh_data_recev (uhost->data, + msc->bot.csw.CSWArray, + msc->pipe_in, + BBB_CSW_LENGTH); + + msc->bot.state = BOT_RECEIVE_CSW_WAIT; + break; + + case BOT_RECEIVE_CSW_WAIT: + urb_status = usbh_urbstate_get(uhost->data, msc->pipe_in); + + /* decode CSW */ + if (GD_URB_DONE == urb_status) { + msc->bot.state = BOT_SEND_CBW; + msc->bot.cmd_state = BOT_CMD_SEND; + + csw_status = usbh_msc_csw_decode(uhost); + if (BOT_CSW_CMD_PASSED == csw_status) { + status = USBH_OK; + } else { + status = USBH_FAIL; + } + } else if (GD_URB_STALL == urb_status) { + msc->bot.state = BOT_ERROR_IN; + } else { + /* no operation */ + } + break; + + case BOT_ERROR_IN: + error = usbh_msc_bot_abort(uhost, USBH_MSC_DIR_IN); + + if (USBH_OK == error) { + msc->bot.state = BOT_RECEIVE_CSW; + } else if (USBH_UNRECOVERED_ERROR == status) { + /* this means that there is a stall error limit, do reset recovery */ + msc->bot.state = BOT_UNRECOVERED_ERROR; + } else { + /* no operation */ + } + break; + + case BOT_ERROR_OUT: + status = usbh_msc_bot_abort (uhost, USBH_MSC_DIR_OUT); + + if (USBH_OK == status) { + uint8_t toggle = usbh_pipe_toggle_get(uhost->data, msc->pipe_out); + usbh_pipe_toggle_set(uhost->data, msc->pipe_out, 1U - toggle); + usbh_pipe_toggle_set(uhost->data, msc->pipe_in, 0U); + msc->bot.state = BOT_ERROR_IN; + } else { + if (USBH_UNRECOVERED_ERROR == status) { + msc->bot.state = BOT_UNRECOVERED_ERROR; + } + } + break; + + case BOT_UNRECOVERED_ERROR: + status = usbh_msc_bot_reset(uhost); + if (USBH_OK == status) { + msc->bot.state = BOT_SEND_CBW; + } + break; + + default: + break; + } + + return status; +} + +/*! + \brief manages the different error handling for stall + \param[in] uhost: pointer to USB host handler + \param[in] direction: data IN or OUT + \param[out] none + \retval operation status +*/ +usbh_status usbh_msc_bot_abort (usbh_host *uhost, uint8_t direction) +{ + usbh_status status = USBH_BUSY; + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + switch (direction) { + case USBH_MSC_DIR_IN : + /* send clear feature command on bulk IN endpoint */ + status = usbh_clrfeature(uhost, + msc->ep_in, + msc->pipe_in); + break; + + case USBH_MSC_DIR_OUT : + /*send clear feature command on bulk OUT endpoint */ + status = usbh_clrfeature(uhost, + msc->ep_out, + msc->pipe_out); + break; + + default: + break; + } + + return status; +} + +/*! + \brief reset MSC bot transfer + \param[in] uhost: pointer to USB host handler + \param[out] none + \retval operation status +*/ +usbh_status usbh_msc_bot_reset (usbh_host *uhost) +{ + usbh_status status = USBH_BUSY; + + if (CTL_IDLE == uhost->control.ctl_state) { + uhost->control.setup.req = (usb_req) { + .bmRequestType = USB_TRX_OUT | USB_REQTYPE_CLASS | USB_RECPTYPE_ITF, + .bRequest = BBB_RESET, + .wValue = 0U, + .wIndex = 0U, + .wLength = 0U + }; + + usbh_ctlstate_config (uhost, NULL, 0U); + } + + status = usbh_ctl_handler (uhost); + + return status; +} + +/*! + \brief decode the CSW received by the device and updates the same to upper layer + \param[in] uhost: pointer to USB host + \param[out] none + \retval on success USBH_MSC_OK, on failure USBH_MSC_FAIL + \notes + Refer to USB Mass-Storage Class: BOT (www.usb.org) + 6.3.1 Valid CSW Conditions : + The host shall consider the CSW valid when: + 1. dCSWSignature is equal to 53425355h + 2. the CSW is 13 (Dh) bytes in length, + 3. dCSWTag matches the dCBWTag from the corresponding CBW. +*/ +bot_csw_status usbh_msc_csw_decode (usbh_host *uhost) +{ + bot_csw_status status = BOT_CSW_CMD_FAILED; + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + /* checking if the transfer length is different than 13 */ + if (BBB_CSW_LENGTH != usbh_xfercount_get (uhost->data, msc->pipe_in)) { + status = BOT_CSW_PHASE_ERROR; + } else { + /* CSW length is correct */ + + /* check validity of the CSW Signature and CSWStatus */ + if (BBB_CSW_SIGNATURE == msc->bot.csw.field.dCSWSignature) { + /* check condition 1. dCSWSignature is equal to 53425355h */ + if (msc->bot.csw.field.dCSWTag == msc->bot.cbw.field.dCBWTag) { + /* check condition 3. dCSWTag matches the dCBWTag from the corresponding CBW */ + if (0U == msc->bot.csw.field.bCSWStatus) { + status = BOT_CSW_CMD_PASSED; + } else if (1U == msc->bot.csw.field.bCSWStatus) { + status = BOT_CSW_CMD_FAILED; + } else if (2U == msc->bot.csw.field.bCSWStatus) { + status = BOT_CSW_PHASE_ERROR; + } else { + /* no operation */ + } + } + } else { + /* If the CSW signature is not valid, we shall return the phase error to + upper layers for reset recovery */ + status = BOT_CSW_PHASE_ERROR; + } + } + + return status; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_bbb.h b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_bbb.h new file mode 100644 index 0000000000..e0089ce91b --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_bbb.h @@ -0,0 +1,150 @@ +/*! + \file usbh_msc_bbb.h + \brief header file for usbh_msc_bbb.c + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBH_MSC_BBB_H +#define __USBH_MSC_BBB_H + +#include "gdusbh_enum.h" +#include "msc_bbb.h" + +typedef union { + msc_bbb_cbw field; + + uint8_t CBWArray[31]; +}usbh_cbw_pkt; + +typedef union { + msc_bbb_csw field; + + uint8_t CSWArray[13]; +}usbh_csw_pkt; + +enum usbh_msc_state { + USBH_MSC_BOT_INIT_STATE = 0U, + USBH_MSC_BOT_RESET, + USBH_MSC_GET_MAX_LUN, + USBH_MSC_TEST_UNIT_READY, + USBH_MSC_READ_CAPACITY10, + USBH_MSC_MODE_SENSE6, + USBH_MSC_REQUEST_SENSE, + USBH_MSC_BOT_USB_TRANSFERS, + USBH_MSC_DEFAULT_APPLI_STATE, + USBH_MSC_CTRL_ERROR_STATE, + USBH_MSC_UNRECOVERED_STATE +}; + +typedef enum +{ + BOT_OK = 0U, + BOT_FAIL, + BOT_PHASE_ERROR, + BOT_BUSY +} bot_status; + +typedef enum +{ + BOT_CMD_IDLE = 0U, + BOT_CMD_SEND, + BOT_CMD_WAIT, +} bot_cmd_state; + +/* csw status definitions */ +typedef enum +{ + BOT_CSW_CMD_PASSED = 0U, + BOT_CSW_CMD_FAILED, + BOT_CSW_PHASE_ERROR, +} bot_csw_status; + +typedef enum +{ + BOT_SEND_CBW = 1U, + BOT_SEND_CBW_WAIT, + BOT_DATA_IN, + BOT_DATA_IN_WAIT, + BOT_DATA_OUT, + BOT_DATA_OUT_WAIT, + BOT_RECEIVE_CSW, + BOT_RECEIVE_CSW_WAIT, + BOT_ERROR_IN, + BOT_ERROR_OUT, + BOT_UNRECOVERED_ERROR +} bot_state; + +typedef struct +{ + uint8_t *pbuf; + uint32_t data[16]; + bot_state state; + bot_state prev_state; + bot_cmd_state cmd_state; + usbh_cbw_pkt cbw; + usbh_csw_pkt csw; +} bot_handle; + +#define USBH_MSC_BOT_CBW_TAG 0x20304050U + +#define USBH_MSC_CSW_MAX_LENGTH 63U + +#define USBH_MSC_SEND_CSW_DISABLE 0U +#define USBH_MSC_SEND_CSW_ENABLE 1U + +#define USBH_MSC_DIR_IN 0U +#define USBH_MSC_DIR_OUT 1U +#define USBH_MSC_BOTH_DIR 2U + +#define USBH_MSC_PAGE_LENGTH 512U + +#define CBW_CB_LENGTH 16U +#define CBW_LENGTH 10U +#define CBW_LENGTH_TEST_UNIT_READY 0U + +#define MAX_BULK_STALL_COUNT_LIMIT 0x04U /*!< If STALL is seen on Bulk + Endpoint continously, this means + that device and Host has phase error + Hence a Reset is needed */ + +/* function declarations */ +/* initialize the mass storage parameters */ +void usbh_msc_bot_init (usbh_host *uhost); +/* manage the different states of BOT transfer and updates the status to upper layer */ +usbh_status usbh_msc_bot_process (usbh_host *uhost, uint8_t lun); +/* manages the different error handling for stall */ +usbh_status usbh_msc_bot_abort (usbh_host *uhost, uint8_t direction); +/* reset MSC bot request structure */ +usbh_status usbh_msc_bot_reset (usbh_host *uhost); +/* decode the CSW received by the device and updates the same to upper layer */ +bot_csw_status usbh_msc_csw_decode (usbh_host *uhost); + +#endif /* __USBH_MSC_BBB_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_core.c b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_core.c new file mode 100644 index 0000000000..b6f99287ca --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_core.c @@ -0,0 +1,558 @@ +/*! + \file usbh_core.c + \brief USB MSC(mass storage device) class driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "usbh_msc_core.h" +#include "usbh_msc_scsi.h" +#include "usbh_msc_bbb.h" +#include "gdusbh_pipe.h" +#include "usbh_transc.h" +#include +#include + +/* local function prototypes ('static') */ +static void usbh_msc_itf_deinit (usbh_host *uhost); +static usbh_status usbh_msc_itf_init (usbh_host *uhost); +static usbh_status usbh_msc_req (usbh_host *uhost); +static usbh_status usbh_msc_handle (usbh_host *uhost); +static usbh_status usbh_msc_maxlun_get (usbh_host *uhost, uint8_t *maxlun); +static usbh_status usbh_msc_rdwr_process(usbh_host *uhost, uint8_t lun); + +usbh_class usbh_msc = +{ + USB_CLASS_MSC, + usbh_msc_itf_init, + usbh_msc_itf_deinit, + usbh_msc_req, + usbh_msc_handle, +}; + +/*! + \brief interface initialization for MSC class + \param[in] uhost: pointer to usb host + \param[out] none + \retval operation status +*/ +static usbh_status usbh_msc_itf_init (usbh_host *uhost) +{ + usbh_status status = USBH_OK; + + uint8_t interface = usbh_interface_find(&uhost->dev_prop, MSC_CLASS, USB_MSC_SUBCLASS_SCSI, MSC_PROTOCOL); + + if (0xFFU == interface) { + uhost->usr_cb->dev_not_supported(); + + status = USBH_FAIL; + } else { + uhost->active_class->class_data = (usbh_msc_handler *)malloc(sizeof(usbh_msc_handler)); + + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + memset(msc, 0U, sizeof(usbh_msc_handler)); + + usbh_interface_select(&uhost->dev_prop, interface); + + usb_desc_ep *ep_desc = &uhost->dev_prop.cfg_desc_set.itf_desc_set[interface][0].ep_desc[0]; + + if (ep_desc->bEndpointAddress & 0x80) { + msc->ep_in = ep_desc->bEndpointAddress; + msc->ep_size_in = ep_desc->wMaxPacketSize; + } else { + msc->ep_out = ep_desc->bEndpointAddress; + msc->ep_size_out = ep_desc->wMaxPacketSize; + } + + ep_desc = &uhost->dev_prop.cfg_desc_set.itf_desc_set[interface][0].ep_desc[1]; + + if (ep_desc->bEndpointAddress & 0x80) { + msc->ep_in = ep_desc->bEndpointAddress; + msc->ep_size_in = ep_desc->wMaxPacketSize; + } else { + msc->ep_out = ep_desc->bEndpointAddress; + msc->ep_size_out = ep_desc->wMaxPacketSize; + } + + msc->state = MSC_INIT; + msc->error = MSC_OK; + msc->req_state = MSC_REQ_IDLE; + msc->pipe_out = usbh_pipe_allocate(uhost->data, msc->ep_out); + msc->pipe_in = usbh_pipe_allocate(uhost->data, msc->ep_in); + + usbh_msc_bot_init(uhost); + + /* open the new channels */ + usbh_pipe_create (uhost->data, + &uhost->dev_prop, + msc->pipe_out, + USB_EPTYPE_BULK, + msc->ep_size_out); + + usbh_pipe_create (uhost->data, + &uhost->dev_prop, + msc->pipe_in, + USB_EPTYPE_BULK, + msc->ep_size_in); + + usbh_pipe_toggle_set (uhost->data, msc->pipe_out, 0U); + usbh_pipe_toggle_set (uhost->data, msc->pipe_in, 0U); + } + + return status; +} + +/*! + \brief de-initialize interface by freeing host channels allocated to interface + \param[in] uhost: pointer to usb host + \param[out] none + \retval operation status +*/ +void usbh_msc_itf_deinit (usbh_host *uhost) +{ + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + if (msc->pipe_out) { + usb_pipe_halt (uhost->data, msc->pipe_out); + usbh_pipe_free (uhost->data, msc->pipe_out); + + msc->pipe_out = 0U; + } + + if (msc->pipe_in) { + usb_pipe_halt (uhost->data, msc->pipe_in); + usbh_pipe_free (uhost->data, msc->pipe_in); + + msc->pipe_in = 0U; + } +} + +/*! + \brief initialize the MSC state machine + \param[in] uhost: pointer to usb host + \param[out] none + \retval operation status +*/ +static usbh_status usbh_msc_req (usbh_host *uhost) +{ + usbh_status status = USBH_BUSY; + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + switch (msc->req_state) { + case MSC_REQ_IDLE: + case MSC_REQ_GET_MAX_LUN: + /* issue Get_MaxLun request */ + status = usbh_msc_maxlun_get (uhost, (uint8_t *)&msc->max_lun); + + if (USBH_OK == status) { + msc->max_lun = ((uint8_t)msc->max_lun > MSC_MAX_SUPPORTED_LUN) ? MSC_MAX_SUPPORTED_LUN : (uint8_t)msc->max_lun + 1U; + + for (uint8_t i = 0U; i < msc->max_lun; i++) { + msc->unit[i].prev_ready_state = USBH_FAIL; + msc->unit[i].state_changed = 0U; + } + } else { + if (USBH_NOT_SUPPORTED == status) { + msc->max_lun = 0U; + status = USBH_OK; + } + } + break; + + case MSC_REQ_ERROR: + /* issue clear feature request */ + if (USBH_OK == usbh_clrfeature(uhost, 0x00U, uhost->control.pipe_out_num)) { + msc->req_state = msc->prev_req_state; + } + break; + + default: + break; + } + + return status; +} + +/*! + \brief MSC state machine handler + \param[in] uhost: pointer to usb host + \param[out] none + \retval operation status +*/ +static usbh_status usbh_msc_handle (usbh_host *uhost) +{ + usbh_status status = USBH_BUSY; + uint8_t scsi_status = USBH_BUSY; + uint8_t ready_status = USBH_BUSY; + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + + switch (msc->state) { + case MSC_INIT: + if (msc->cur_lun < msc->max_lun) { + msc->unit[msc->cur_lun].error = MSC_NOT_READY; + + switch (msc->unit[msc->cur_lun].state) { + case MSC_INIT: + msc->unit[msc->cur_lun].state = MSC_READ_INQUIRY; + msc->timer = uhost->control.timer; + break; + + case MSC_READ_INQUIRY: + scsi_status = usbh_msc_scsi_inquiry(uhost, msc->cur_lun, &msc->unit[msc->cur_lun].inquiry); + + if (USBH_OK == scsi_status) { + msc->unit[msc->cur_lun].state = MSC_TEST_UNIT_READY; + } else if (scsi_status == USBH_FAIL) { + msc->unit[msc->cur_lun].state = MSC_REQUEST_SENSE; + } else { + if (scsi_status == USBH_UNRECOVERED_ERROR) { + msc->unit[msc->cur_lun].state = MSC_IDLE; + msc->unit[msc->cur_lun].error = MSC_ERROR; + } + } + break; + + case MSC_TEST_UNIT_READY: + /* issue SCSI command TestUnitReady */ + ready_status = usbh_msc_test_unitready(uhost, msc->cur_lun); + + if (USBH_OK == ready_status) { + if (USBH_OK != msc->unit[msc->cur_lun].prev_ready_state) { + msc->unit[msc->cur_lun].state_changed = 1U; + } else { + msc->unit[msc->cur_lun].state_changed = 0U; + } + + msc->unit[msc->cur_lun].state = MSC_READ_CAPACITY10; + msc->unit[msc->cur_lun].error = MSC_OK; + msc->unit[msc->cur_lun].prev_ready_state = USBH_OK; + } else if (USBH_FAIL == ready_status) { + if (USBH_FAIL != msc->unit[msc->cur_lun].prev_ready_state) { + msc->unit[msc->cur_lun].state_changed = 1U; + } else { + msc->unit[msc->cur_lun].state_changed = 0U; + } + + msc->unit[msc->cur_lun].state = MSC_REQUEST_SENSE; + msc->unit[msc->cur_lun].error = MSC_NOT_READY; + msc->unit[msc->cur_lun].prev_ready_state = USBH_FAIL; + } else { + if (USBH_UNRECOVERED_ERROR == ready_status) { + msc->unit[msc->cur_lun].state = MSC_IDLE; + msc->unit[msc->cur_lun].error = MSC_ERROR; + } + } + break; + + case MSC_READ_CAPACITY10: + /* issue READ_CAPACITY10 SCSI command */ + scsi_status = usbh_msc_read_capacity10(uhost, msc->cur_lun, &msc->unit[msc->cur_lun].capacity); + + if (USBH_OK == scsi_status) { + if (1U == msc->unit[msc->cur_lun].state_changed) { + } + msc->unit[msc->cur_lun].state = MSC_IDLE; + msc->unit[msc->cur_lun].error = MSC_OK; + msc->cur_lun ++; + } else if (USBH_FAIL == scsi_status) { + msc->unit[msc->cur_lun].state = MSC_REQUEST_SENSE; + } else { + if (USBH_UNRECOVERED_ERROR == scsi_status) { + msc->unit[msc->cur_lun].state = MSC_IDLE; + msc->unit[msc->cur_lun].error = MSC_ERROR; + } + } + break; + + case MSC_REQUEST_SENSE: + /* issue RequestSense SCSI command for receiving error code */ + scsi_status = usbh_msc_request_sense (uhost, msc->cur_lun, &msc->unit[msc->cur_lun].sense); + if (USBH_OK == scsi_status) { + if ((msc->unit[msc->cur_lun].sense.SenseKey == UNIT_ATTENTION) || (msc->unit[msc->cur_lun].sense.SenseKey == NOT_READY)) { + if ((uhost->control.timer - msc->timer) < 10000U) { + msc->unit[msc->cur_lun].state = MSC_TEST_UNIT_READY; + break; + } + } + + msc->unit[msc->cur_lun].state = MSC_IDLE; + msc->cur_lun++; + } else if (USBH_FAIL == scsi_status) { + msc->unit[msc->cur_lun].state = MSC_UNRECOVERED_ERROR; + } else { + if (MSC_UNRECOVERED_ERROR == scsi_status) { + msc->unit[msc->cur_lun].state = MSC_IDLE; + msc->unit[msc->cur_lun].error = MSC_ERROR; + } + } + break; + + case MSC_UNRECOVERED_ERROR: + msc->cur_lun ++; + break; + + default: + break; + } + } else { + msc->cur_lun = 0U; + msc->state = MSC_IDLE; + } + break; + + case MSC_IDLE: + uhost->usr_cb->dev_user_app(); + status = USBH_OK; + break; + + default: + break; + } + + return status; +} + +/*! + \brief get max lun of the mass storage device + \param[in] uhost: pointer to USB host + \param[in] maxlun: pointer to max lun + \param[out] none + \retval operation status +*/ +static usbh_status usbh_msc_maxlun_get (usbh_host *uhost, uint8_t *maxlun) +{ + usbh_status status = USBH_BUSY; + + if (uhost->control.ctl_state == CTL_IDLE) { + uhost->control.setup.req = (usb_req) { + .bmRequestType = USB_TRX_IN | USB_REQTYPE_CLASS | USB_RECPTYPE_ITF, + .bRequest = BBB_GET_MAX_LUN, + .wValue = 0U, + .wIndex = 0U, + .wLength = 1U + }; + + usbh_ctlstate_config (uhost, maxlun, 1U); + } + + status = usbh_ctl_handler (uhost); + + return status; +} + +/*! + \brief get max lun of the mass storage device + \param[in] uhost: pointer to USB host + \param[in] lun: logic unit number + \param[out] none + \retval operation status +*/ +static usbh_status usbh_msc_rdwr_process(usbh_host *uhost, uint8_t lun) +{ + usbh_status error = USBH_BUSY; + usbh_status scsi_status = USBH_BUSY; + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + /* switch msc req state machine */ + switch (msc->unit[lun].state) { + case MSC_READ: + scsi_status = usbh_msc_read10(uhost, lun, NULL, 0U, 0U); + + if (USBH_OK == scsi_status) { + msc->unit[lun].state = MSC_IDLE; + error = USBH_OK; + } else if (USBH_FAIL == scsi_status) { + msc->unit[lun].state = MSC_REQUEST_SENSE; + } else { + if (USBH_UNRECOVERED_ERROR == scsi_status) { + msc->unit[lun].state = MSC_UNRECOVERED_ERROR; + error = USBH_FAIL; + } + } + break; + + case MSC_WRITE: + scsi_status = usbh_msc_write10(uhost, lun, NULL, 0U, 0U); + + if (USBH_OK == scsi_status) { + msc->unit[lun].state = MSC_IDLE; + error = USBH_OK; + } else if(USBH_FAIL == scsi_status) { + msc->unit[lun].state = MSC_REQUEST_SENSE; + } else { + if (USBH_UNRECOVERED_ERROR == scsi_status) { + msc->unit[lun].state = MSC_UNRECOVERED_ERROR; + error = USBH_FAIL; + } + } + break; + + case MSC_REQUEST_SENSE: + scsi_status = usbh_msc_request_sense (uhost, lun, &msc->unit[lun].sense); + + if (USBH_OK == scsi_status) { + msc->unit[lun].state = MSC_IDLE; + msc->unit[lun].error = MSC_ERROR; + + error = USBH_FAIL; + } + + if (USBH_FAIL == scsi_status) { + } else { + if (USBH_UNRECOVERED_ERROR == scsi_status) { + msc->unit[lun].state = MSC_UNRECOVERED_ERROR; + error = USBH_FAIL; + } + } + break; + + default: + break; + } + + return error; +} + +/*! + \brief get lun information + \param[in] uhost: pointer to USB host + \param[in] lun: logic unit number + \param[in] info: pointer to lun information + \param[out] none + \retval operation status +*/ +usbh_status usbh_msc_lun_info_get (usbh_host *uhost, uint8_t lun, msc_lun *info) +{ + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + if (HOST_CLASS_HANDLER == uhost->cur_state) { + memcpy(info, &msc->unit[lun], sizeof(msc_lun)); + + return USBH_OK; + } else { + return USBH_FAIL; + } +} + +/*! + \brief handle msc read operation + \param[in] uhost: pointer to USB host + \param[in] lun: logic unit number + \param[in] address: data address + \param[in] pbuf: pointer to data buffer + \param[in] length: buffer length + \param[out] none + \retval operation status +*/ +usbh_status usbh_msc_read (usbh_host *uhost, + uint8_t lun, + uint32_t address, + uint8_t *pbuf, + uint32_t length) +{ + uint32_t timeout = 0U; + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + usb_core_driver *udev = (usb_core_driver *)uhost->data; + + if ((0U == udev->host.connect_status) || + (HOST_CLASS_HANDLER != uhost->cur_state) || + (MSC_IDLE != msc->unit[lun].state)) { + return USBH_FAIL; + } + + msc->state = MSC_READ; + msc->unit[lun].state = MSC_READ; + msc->rw_lun = lun; + + usbh_msc_read10(uhost, lun, pbuf, address, length); + + timeout = uhost->control.timer; + + while (USBH_BUSY == usbh_msc_rdwr_process(uhost, lun)) { + if(uhost->control.timer < timeout) + timeout = 0; + if (((uhost->control.timer - timeout) > (1000U * length)) || (0U == udev->host.connect_status)) { + msc->state = MSC_IDLE; + return USBH_FAIL; + } + } + + msc->state = MSC_IDLE; + + return USBH_OK; +} + +/*! + \brief handle msc write operation + \param[in] uhost: pointer to USB host + \param[in] lun: logic unit number + \param[in] address: data address + \param[in] pbuf: pointer to data buffer + \param[in] length: buffer length + \param[out] none + \retval operation status +*/ +usbh_status usbh_msc_write (usbh_host *uhost, + uint8_t lun, + uint32_t address, + uint8_t *pbuf, + uint32_t length) +{ + uint32_t timeout = 0U; + usb_core_driver *udev = (usb_core_driver *)uhost->data; + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + if ((0U == udev->host.connect_status) || + (HOST_CLASS_HANDLER != uhost->cur_state) || + (MSC_IDLE != msc->unit[lun].state)) { + return USBH_FAIL; + } + + msc->state = MSC_WRITE; + msc->unit[lun].state = MSC_WRITE; + msc->rw_lun = lun; + + usbh_msc_write10(uhost, lun, pbuf, address, length); + + timeout = uhost->control.timer; + + while (USBH_BUSY == usbh_msc_rdwr_process(uhost, lun)) { + if (((uhost->control.timer - timeout) > (1000U * length)) || (0U == udev->host.connect_status)) { + msc->state = MSC_IDLE; + return USBH_FAIL; + } + } + + msc->state = MSC_IDLE; + + return USBH_OK; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_core.h b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_core.h new file mode 100644 index 0000000000..bdf6200b26 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_core.h @@ -0,0 +1,124 @@ +/*! + \file usbh_core.h + \brief header file for the usbh_core.c + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBH_MSC_CORE_H +#define __USBH_MSC_CORE_H + +#include "gdusb_msc.h" +#include "usbh_msc_scsi.h" +#include "usbh_msc_bbb.h" + +#define MSC_MAX_SUPPORTED_LUN 2U + +typedef enum +{ + MSC_INIT = 0U, + MSC_IDLE, + MSC_TEST_UNIT_READY, + MSC_READ_CAPACITY10, + MSC_READ_INQUIRY, + MSC_REQUEST_SENSE, + MSC_READ, + MSC_WRITE, + MSC_UNRECOVERED_ERROR, + MSC_PERIODIC_CHECK, +} msc_state; + +typedef enum +{ + MSC_OK, + MSC_NOT_READY, + MSC_ERROR, +} msc_error; + +typedef enum +{ + MSC_REQ_IDLE = 0U, + MSC_REQ_RESET, + MSC_REQ_GET_MAX_LUN, + MSC_REQ_ERROR, +} msc_req_state; + +/* Structure for LUN */ +typedef struct +{ + msc_state state; + msc_error error; + msc_scsi_sense sense; + scsi_capacity capacity; + scsi_std_inquiry_data inquiry; + usbh_status prev_ready_state; + uint8_t state_changed; +} msc_lun; + +/* structure for MSC process */ +typedef struct _msc_process +{ + uint8_t pipe_in; + uint8_t pipe_out; + uint8_t ep_in; + uint8_t ep_out; + uint16_t ep_size_in; + uint16_t ep_size_out; + uint8_t cur_lun; + uint16_t rw_lun; + uint32_t max_lun; + msc_state state; + msc_error error; + msc_req_state req_state; + msc_req_state prev_req_state; + bot_handle bot; + msc_lun unit[MSC_MAX_SUPPORTED_LUN]; + uint32_t timer; +} usbh_msc_handler; + +extern usbh_class usbh_msc; + +/* function declarations */ +/* get msc logic unit information */ +usbh_status usbh_msc_lun_info_get (usbh_host *uhost, uint8_t lun, msc_lun *info); +/* msc read interface */ +usbh_status usbh_msc_read (usbh_host *uhost, + uint8_t lun, + uint32_t address, + uint8_t *pbuf, + uint32_t length); +/* msc write interface */ +usbh_status usbh_msc_write (usbh_host *uhost, + uint8_t lun, + uint32_t address, + uint8_t *pbuf, + uint32_t length); + +#endif /* __USBH_MSC_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_scsi.c b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_scsi.c new file mode 100644 index 0000000000..af7a9e134a --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_scsi.c @@ -0,0 +1,400 @@ +/*! + \file usbh_msc_scsi.c + \brief USB MSC SCSI commands implementing + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "usbh_msc_core.h" +#include "usbh_msc_scsi.h" +#include "usbh_msc_bbb.h" + +#include + +/*! + \brief send 'Inquiry' command to the device + \param[in] uhost: pointer to USB host handler + \param[in] lun: logic unit number + \param[in] inquiry: pointer to the inquiry structure + \param[out] none + \retval operation status +*/ +usbh_status usbh_msc_scsi_inquiry (usbh_host *uhost, uint8_t lun, scsi_std_inquiry_data *inquiry) +{ + usbh_status error = USBH_FAIL; + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + switch (msc->bot.cmd_state) { + case BOT_CMD_SEND: + /* prepare the CBW and relevant field*/ + msc->bot.cbw.field.dCBWDataTransferLength = STANDARD_INQUIRY_DATA_LEN; + msc->bot.cbw.field.bmCBWFlags = USB_TRX_IN; + msc->bot.cbw.field.bCBWCBLength = CBW_LENGTH; + + memset(msc->bot.cbw.field.CBWCB, 0U, CBW_LENGTH); + + msc->bot.cbw.field.CBWCB[0] = SCSI_INQUIRY; + msc->bot.cbw.field.CBWCB[1] = (lun << 5U); + msc->bot.cbw.field.CBWCB[4] = 0x24U; + + msc->bot.state = BOT_SEND_CBW; + msc->bot.cmd_state = BOT_CMD_WAIT; + msc->bot.pbuf = (uint8_t *)(void *)msc->bot.data; + error = USBH_BUSY; + break; + + case BOT_CMD_WAIT: + error = usbh_msc_bot_process(uhost, lun); + + if (USBH_OK == error) { + memset(inquiry, 0U, sizeof(scsi_std_inquiry_data)); + + /* assign inquiry data */ + inquiry->device_type = msc->bot.pbuf[0] & 0x1FU; + inquiry->peripheral_qualifier = msc->bot.pbuf[0] >> 5U; + + if (0x80U == ((uint32_t)msc->bot.pbuf[1] & 0x80U)) { + inquiry->removable_media = 1U; + } else { + inquiry->removable_media = 0U; + } + + memcpy (inquiry->vendor_id, &msc->bot.pbuf[8], 8U); + memcpy (inquiry->product_id, &msc->bot.pbuf[16], 16U); + memcpy (inquiry->revision_id, &msc->bot.pbuf[32], 4U); + } + break; + + default: + break; + } + + return error; +} + +/*! + \brief send 'Test unit ready' command to the device + \param[in] uhost: pointer to USB host handler + \param[in] lun: logic unit number + \param[out] none + \retval operation status +*/ +usbh_status usbh_msc_test_unitready (usbh_host *uhost, uint8_t lun) +{ + usbh_status status = USBH_FAIL; + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + + switch (msc->bot.cmd_state) { + case BOT_CMD_SEND: + /* prepare the CBW and relevant field */ + msc->bot.cbw.field.dCBWDataTransferLength = CBW_LENGTH_TEST_UNIT_READY; + msc->bot.cbw.field.bmCBWFlags = USB_TRX_OUT; + msc->bot.cbw.field.bCBWCBLength = CBW_LENGTH; + + memset(msc->bot.cbw.field.CBWCB, 0U, CBW_CB_LENGTH); + + msc->bot.cbw.field.CBWCB[0] = SCSI_TEST_UNIT_READY; + msc->bot.state = BOT_SEND_CBW; + msc->bot.cmd_state = BOT_CMD_WAIT; + + status = USBH_BUSY; + break; + + case BOT_CMD_WAIT: + status = usbh_msc_bot_process(uhost, lun); + break; + + default: + break; + } + + return status; +} + +/*! + \brief send the read capacity command to the device + \param[in] uhost: pointer to USB host handler + \param[in] lun: logic unit number + \param[in] capacity: pointer to SCSI capacity + \param[out] none + \retval operation status +*/ +usbh_status usbh_msc_read_capacity10 (usbh_host *uhost, uint8_t lun, scsi_capacity *capacity) +{ + usbh_status status = USBH_FAIL; + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + switch (msc->bot.cmd_state) { + case BOT_CMD_SEND: + /* prepare the CBW and relevant field */ + msc->bot.cbw.field.dCBWDataTransferLength = READ_CAPACITY10_DATA_LEN; + msc->bot.cbw.field.bmCBWFlags = USB_TRX_IN; + msc->bot.cbw.field.bCBWCBLength = CBW_LENGTH; + + memset(msc->bot.cbw.field.CBWCB, 0U, CBW_CB_LENGTH); + + msc->bot.cbw.field.CBWCB[0] = SCSI_READ_CAPACITY10; + msc->bot.state = BOT_SEND_CBW; + msc->bot.cmd_state = BOT_CMD_WAIT; + msc->bot.pbuf = (uint8_t *)(void *)msc->bot.data; + + status = USBH_BUSY; + break; + + case BOT_CMD_WAIT: + status = usbh_msc_bot_process(uhost, lun); + + if (USBH_OK == status) { + capacity->block_nbr = msc->bot.pbuf[3] | \ + ((uint32_t)msc->bot.pbuf[2] << 8U) | \ + ((uint32_t)msc->bot.pbuf[1] << 16U) | \ + ((uint32_t)msc->bot.pbuf[0] << 24U); + + capacity->block_size = (uint16_t)(msc->bot.pbuf[7] | ((uint32_t)msc->bot.pbuf[6] << 8U)); + } + break; + + default: + break; + } + + return status; +} + +/*! + \brief send the mode sense6 command to the device + \param[in] uhost: pointer to USB host handler + \param[in] lun: logic unit number + \param[out] none + \retval operation status +*/ +usbh_status usbh_msc_mode_sense6 (usbh_host *uhost, uint8_t lun) +{ + usbh_status status = USBH_FAIL; + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + + switch (msc->bot.cmd_state) { + case BOT_CMD_SEND: + /* prepare the CBW and relevant field */ + msc->bot.cbw.field.dCBWDataTransferLength = XFER_LEN_MODE_SENSE6; + msc->bot.cbw.field.bmCBWFlags = USB_TRX_IN; + msc->bot.cbw.field.bCBWCBLength = CBW_LENGTH; + + memset(msc->bot.cbw.field.CBWCB, 0U, CBW_CB_LENGTH); + + msc->bot.cbw.field.CBWCB[0] = SCSI_MODE_SENSE6; + msc->bot.cbw.field.CBWCB[2] = MODE_SENSE_PAGE_CONTROL_FIELD | MODE_SENSE_PAGE_CODE; + msc->bot.cbw.field.CBWCB[4] = XFER_LEN_MODE_SENSE6; + msc->bot.state = BOT_SEND_CBW; + msc->bot.cmd_state = BOT_CMD_WAIT; + msc->bot.pbuf = (uint8_t *)(void *)msc->bot.data; + + status = USBH_BUSY; + break; + + case BOT_CMD_WAIT: + status = usbh_msc_bot_process(uhost, lun); + + if (USBH_OK == status) { + if (msc->bot.data[2] & MASK_MODE_SENSE_WRITE_PROTECT) { + + } else { + + } + } + break; + + default: + break; + } + + + return status; +} + +/*! + \brief send the Request Sense command to the device + \param[in] uhost: pointer to USB host handler + \param[in] lun: logic unit number + \param[in] sense_data: pointer to sense data + \param[out] none + \retval operation status +*/ +usbh_status usbh_msc_request_sense (usbh_host *uhost, uint8_t lun, msc_scsi_sense *sense_data) +{ + usbh_status status = USBH_FAIL; + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + switch (msc->bot.cmd_state) { + case BOT_CMD_SEND: + /* prepare the CBW and relevant field */ + msc->bot.cbw.field.dCBWDataTransferLength = ALLOCATION_LENGTH_REQUEST_SENSE; + msc->bot.cbw.field.bmCBWFlags = USB_TRX_IN; + msc->bot.cbw.field.bCBWCBLength = CBW_LENGTH; + + memset(msc->bot.cbw.field.CBWCB, 0U, CBW_CB_LENGTH); + + msc->bot.cbw.field.CBWCB[0] = SCSI_REQUEST_SENSE; + msc->bot.cbw.field.CBWCB[1] = (lun << 5U); + msc->bot.cbw.field.CBWCB[4] = ALLOCATION_LENGTH_REQUEST_SENSE; + + msc->bot.state = BOT_SEND_CBW; + msc->bot.cmd_state = BOT_CMD_WAIT; + msc->bot.pbuf = (uint8_t *)(void *)msc->bot.data; + + status = USBH_BUSY; + break; + + case BOT_CMD_WAIT: + status = usbh_msc_bot_process(uhost, lun); + + if (status == USBH_OK) { + /* get sense data */ + sense_data->SenseKey = msc->bot.pbuf[2] & 0x0FU; + sense_data->ASC = msc->bot.pbuf[12]; + sense_data->ASCQ = msc->bot.pbuf[13]; + } + break; + + default: + break; + } + + return status; +} + +/*! + \brief send the write10 command to the device + \param[in] uhost: pointer to USB host handler + \param[in] lun: logic unit number + \param[in] data_buf: data buffer contains the data to write + \param[in] addr: address to which the data will be written + \param[in] sector_num: number of sector to be written + \param[out] none + \retval operation status +*/ +usbh_status usbh_msc_write10 (usbh_host *uhost, uint8_t lun, uint8_t *data_buf, uint32_t addr, uint32_t sector_num) +{ + usbh_status status = USBH_FAIL; + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + switch (msc->bot.cmd_state) { + case BOT_CMD_SEND: + msc->bot.cbw.field.dCBWDataTransferLength = sector_num * msc->unit[lun].capacity.block_size; + msc->bot.cbw.field.bmCBWFlags = USB_TRX_OUT; + msc->bot.cbw.field.bCBWCBLength = CBW_LENGTH; + + memset(msc->bot.cbw.field.CBWCB, 0U, CBW_CB_LENGTH); + + msc->bot.cbw.field.CBWCB[0] = SCSI_WRITE10; + + /* logical block address */ + msc->bot.cbw.field.CBWCB[2] = (((uint8_t*)&addr)[3]); + msc->bot.cbw.field.CBWCB[3] = (((uint8_t*)&addr)[2]); + msc->bot.cbw.field.CBWCB[4] = (((uint8_t*)&addr)[1]); + msc->bot.cbw.field.CBWCB[5] = (((uint8_t*)&addr)[0]); + + /* transfer length */ + msc->bot.cbw.field.CBWCB[7] = (((uint8_t *)§or_num)[1]); + msc->bot.cbw.field.CBWCB[8] = (((uint8_t *)§or_num)[0]); + + msc->bot.state = BOT_SEND_CBW; + msc->bot.cmd_state = BOT_CMD_WAIT; + msc->bot.pbuf = data_buf; + + status = USBH_BUSY; + break; + + case BOT_CMD_WAIT: + status = usbh_msc_bot_process(uhost, lun); + break; + + default: + break; + } + + return status; +} + +/*! + \brief send the read10 command to the device + \param[in] uhost: pointer to USB host handler + \param[in] lun: logic unit number + \param[in] data_buf: data buffer contains the data to write + \param[in] addr: address to which the data will be read + \param[in] sector_num: number of sector to be read + \param[out] none + \retval operation status +*/ +usbh_status usbh_msc_read10 (usbh_host *uhost, uint8_t lun, uint8_t *data_buf, uint32_t addr, uint32_t sector_num) +{ + usbh_status status = USBH_FAIL; + usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; + + switch (msc->bot.cmd_state) { + case BOT_CMD_SEND: + /* prepare the CBW and relevant field */ + msc->bot.cbw.field.dCBWDataTransferLength = sector_num * msc->unit[lun].capacity.block_size; + msc->bot.cbw.field.bmCBWFlags = USB_TRX_IN; + msc->bot.cbw.field.bCBWCBLength = CBW_LENGTH; + + memset(msc->bot.cbw.field.CBWCB, 0U, CBW_CB_LENGTH); + + msc->bot.cbw.field.CBWCB[0] = SCSI_READ10; + + /* logical block address */ + msc->bot.cbw.field.CBWCB[2] = (((uint8_t*)&addr)[3]); + msc->bot.cbw.field.CBWCB[3] = (((uint8_t*)&addr)[2]); + msc->bot.cbw.field.CBWCB[4] = (((uint8_t*)&addr)[1]); + msc->bot.cbw.field.CBWCB[5] = (((uint8_t*)&addr)[0]); + + /* transfer length */ + msc->bot.cbw.field.CBWCB[7] = (((uint8_t *)§or_num)[1]); + msc->bot.cbw.field.CBWCB[8] = (((uint8_t *)§or_num)[0]); + + msc->bot.state = BOT_SEND_CBW; + msc->bot.cmd_state = BOT_CMD_WAIT; + msc->bot.pbuf = data_buf; + + status = USBH_BUSY; + break; + + case BOT_CMD_WAIT: + status = usbh_msc_bot_process(uhost, lun); + break; + + default: + break; + } + + return status; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_scsi.h b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_scsi.h new file mode 100644 index 0000000000..5c0b31cc79 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_scsi.h @@ -0,0 +1,100 @@ +/*! + \file usbh_msc_scsi.h + \brief header file for usbh_msc_scsi.c + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBH_MSC_SCSI_H +#define __USBH_MSC_SCSI_H + +#include "msc_scsi.h" +#include "gdusbh_enum.h" + +/* capacity data */ +typedef struct +{ + uint32_t block_nbr; + uint16_t block_size; +} scsi_capacity; + +/* inquiry data */ +typedef struct +{ + uint8_t peripheral_qualifier; + uint8_t device_type; + uint8_t removable_media; + uint8_t vendor_id[9]; + uint8_t product_id[17]; + uint8_t revision_id[5]; +} scsi_std_inquiry_data; + +typedef struct +{ + uint32_t msc_capacity; + uint32_t msc_sense_key; + uint16_t msc_page_len; + uint8_t msc_write_protect; +}usbh_msc_parameter; + +#define DESC_REQUEST_SENSE 0x00U +#define ALLOCATION_LENGTH_REQUEST_SENSE 63U +#define XFER_LEN_MODE_SENSE6 63U + +#define MASK_MODE_SENSE_WRITE_PROTECT 0x80U +#define MODE_SENSE_PAGE_CONTROL_FIELD 0x00U +#define MODE_SENSE_PAGE_CODE 0x3FU +#define DISK_WRITE_PROTECTED 0x01U + +/* function declarations */ +/* send 'Inquiry' command to the device */ +usbh_status usbh_msc_scsi_inquiry (usbh_host *uhost, uint8_t lun, scsi_std_inquiry_data *inquiry); +/* send 'Test unit ready' command to the device */ +usbh_status usbh_msc_test_unitready (usbh_host *uhost, uint8_t lun); +/* send the read capacity command to the device */ +usbh_status usbh_msc_read_capacity10 (usbh_host *uhost, uint8_t lun, scsi_capacity *capacity); +/* send the mode sense6 command to the device */ +usbh_status usbh_msc_mode_sense6 (usbh_host *uhost, uint8_t lun); +/* send the Request Sense command to the device */ +usbh_status usbh_msc_request_sense (usbh_host *uhost, uint8_t lun, msc_scsi_sense *sense_data); +/* send the write10 command to the device */ +usbh_status usbh_msc_write10 (usbh_host *uhost, + uint8_t lun, + uint8_t *data_buf, + uint32_t addr, + uint32_t byte_num); +/* send the read10 command to the device */ +usbh_status usbh_msc_read10 (usbh_host *uhost, + uint8_t lun, + uint8_t *data_buf, + uint32_t addr, + uint32_t byte_num); + +#endif /* __USBH_MSC_SCSI_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_pipe.c b/Marlin/lib/GD32F4xx_usb_library/src/usbh_pipe.c new file mode 100644 index 0000000000..ba64624b39 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/usbh_pipe.c @@ -0,0 +1,174 @@ +/*! + \file usbh_pipe.c + \brief USB host mode pipe operation driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "gdusbh_pipe.h" + +/* local function prototypes ('static') */ +static uint16_t usbh_freepipe_get (usb_core_driver *udev); + +/*! + \brief create a pipe + \param[in] udev: pointer to USB core instance + \param[in] dev: USB device + \param[in] pp_num: pipe number + \param[in] ep_type: endpoint type + \param[in] ep_mpl: endpoint max packet length + \param[out] none + \retval operation status +*/ +uint8_t usbh_pipe_create (usb_core_driver *udev, + usb_dev_prop *dev, + uint8_t pp_num, + uint8_t ep_type, + uint16_t ep_mpl) +{ + usb_pipe *pp = &udev->host.pipe[pp_num]; + + pp->dev_addr = dev->addr; + pp->dev_speed = dev->speed; + pp->ep.type = ep_type; + pp->ep.mps = ep_mpl; + pp->ping = (uint8_t)(dev->speed == PORT_SPEED_HIGH); + + usb_pipe_init (udev, pp_num); + + return HC_OK; +} + +/*! + \brief modify a pipe + \param[in] udev: pointer to USB core instance + \param[in] pp_num: pipe number + \param[in] dev_addr: device address + \param[in] dev_speed: device speed + \param[in] ep_mpl: endpoint max packet length + \param[out] none + \retval operation status +*/ +uint8_t usbh_pipe_update (usb_core_driver *udev, + uint8_t pp_num, + uint8_t dev_addr, + uint32_t dev_speed, + uint16_t ep_mpl) +{ + usb_pipe *pp = &udev->host.pipe[pp_num]; + + if ((pp->dev_addr != dev_addr) && (dev_addr)) { + pp->dev_addr = dev_addr; + } + + if ((pp->dev_speed != dev_speed) && (dev_speed)) { + pp->dev_speed = dev_speed; + } + + if ((pp->ep.mps != ep_mpl) && (ep_mpl)) { + pp->ep.mps = ep_mpl; + } + + usb_pipe_init (udev, pp_num); + + return HC_OK; +} + +/*! + \brief allocate a new pipe + \param[in] udev: pointer to USB core instance + \param[in] ep_addr: endpoint address + \param[out] none + \retval operation status +*/ +uint8_t usbh_pipe_allocate (usb_core_driver *udev, uint8_t ep_addr) +{ + uint16_t pp_num = usbh_freepipe_get (udev); + + if (HC_ERROR != pp_num) { + udev->host.pipe[pp_num].in_used = 1U; + udev->host.pipe[pp_num].ep.dir = EP_DIR(ep_addr); + udev->host.pipe[pp_num].ep.num = EP_ID(ep_addr); + } + + return (uint8_t)pp_num; +} + +/*! + \brief free a pipe + \param[in] udev: pointer to USB core instance + \param[in] pp_num: pipe number + \param[out] none + \retval operation status +*/ +uint8_t usbh_pipe_free (usb_core_driver *udev, uint8_t pp_num) +{ + if (pp_num < HC_MAX) { + udev->host.pipe[pp_num].in_used = 0U; + } + + return USBH_OK; +} + +/*! + \brief delete all USB host pipe + \param[in] udev: pointer to USB core instance + \param[out] none + \retval operation status +*/ +uint8_t usbh_pipe_delete (usb_core_driver *udev) +{ + uint8_t pp_num = 0U; + + for (pp_num = 2U; pp_num < HC_MAX; pp_num++) { + udev->host.pipe[pp_num] = (usb_pipe) {0}; + } + + return USBH_OK; +} + +/*! + \brief get a free pipe number for allocation + \param[in] udev: pointer to USB core instance + \param[out] none + \retval operation status +*/ +static uint16_t usbh_freepipe_get (usb_core_driver *udev) +{ + uint8_t pp_num = 0U; + + for (pp_num = 0U; pp_num < HC_MAX; pp_num++) { + if (0U == udev->host.pipe[pp_num].in_used) { + return (uint16_t)pp_num; + } + } + + return HC_ERROR; +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_transc.c b/Marlin/lib/GD32F4xx_usb_library/src/usbh_transc.c new file mode 100644 index 0000000000..38e27a1ac0 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/usbh_transc.c @@ -0,0 +1,370 @@ +/*! + \file usbh_transc.c + \brief USB host mode transactions driver + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "drv_usb_hw.h" +#include "gdusbh_pipe.h" +#include "usbh_transc.h" + +/* local function prototypes ('static') */ +static usb_urb_state usbh_urb_wait (usbh_host *uhost, uint8_t pp_num, uint32_t wait_time); +static void usbh_setup_transc (usbh_host *uhost); +static void usbh_data_in_transc (usbh_host *uhost); +static void usbh_data_out_transc (usbh_host *uhost); +static void usbh_status_in_transc (usbh_host *uhost); +static void usbh_status_out_transc (usbh_host *uhost); +static uint32_t usbh_request_submit (usb_core_driver *udev, uint8_t pp_num); + +/*! + \brief send the setup packet to the USB device + \param[in] udev: pointer to USB core instance + \param[in] buf: data buffer which will be sent to USB device + \param[in] pp_num: pipe number + \param[out] none + \retval operation status +*/ +usbh_status usbh_ctlsetup_send (usb_core_driver *udev, uint8_t *buf, uint8_t pp_num) +{ + usb_pipe *pp = &udev->host.pipe[pp_num]; + + pp->DPID = PIPE_DPID_SETUP; + pp->xfer_buf = buf; + pp->xfer_len = USB_SETUP_PACKET_LEN; + + return (usbh_status)usbh_request_submit (udev, pp_num); +} + +/*! + \brief send a data packet to the USB device + \param[in] udev: pointer to USB core instance + \param[in] buf: data buffer which will be sent to USB device + \param[in] pp_num: pipe number + \param[in] len: length of the data to be sent + \param[out] none + \retval operation status +*/ +usbh_status usbh_data_send (usb_core_driver *udev, uint8_t *buf, uint8_t pp_num, uint16_t len) +{ + usb_pipe *pp = &udev->host.pipe[pp_num]; + + pp->xfer_buf = buf; + pp->xfer_len = len; + + switch (pp->ep.type) { + case USB_EPTYPE_CTRL: + if (0U == len) { + pp->data_toggle_out = 1U; + } + + pp->DPID = PIPE_DPID[pp->data_toggle_out]; + break; + + case USB_EPTYPE_INTR: + pp->DPID = PIPE_DPID[pp->data_toggle_out]; + + pp->data_toggle_out ^= 1U; + break; + + case USB_EPTYPE_BULK: + pp->DPID = PIPE_DPID[pp->data_toggle_out]; + break; + + case USB_EPTYPE_ISOC: + pp->DPID = PIPE_DPID[0]; + break; + + default: + break; + } + + usbh_request_submit (udev, pp_num); + + return USBH_OK; +} + +/*! + \brief receive a data packet from the USB device + \param[in] udev: pointer to USB core instance + \param[in] buf: data buffer which will be received from USB device + \param[in] pp_num: pipe number + \param[in] len: length of the data to be received + \param[out] none + \retval operation status +*/ +usbh_status usbh_data_recev (usb_core_driver *udev, uint8_t *buf, uint8_t pp_num, uint16_t len) +{ + usb_pipe *pp = &udev->host.pipe[pp_num]; + + pp->xfer_buf = buf; + pp->xfer_len = len; + + switch (pp->ep.type) { + case USB_EPTYPE_CTRL: + pp->DPID = PIPE_DPID[1]; + break; + + case USB_EPTYPE_INTR: + pp->DPID = PIPE_DPID[pp->data_toggle_in]; + + /* Toggle DATA PID */ + pp->data_toggle_in ^= 1U; + break; + + case USB_EPTYPE_BULK: + pp->DPID = PIPE_DPID[pp->data_toggle_in]; + break; + + case USB_EPTYPE_ISOC: + pp->DPID = PIPE_DPID[0]; + break; + + default: + break; + } + + usbh_request_submit (udev, pp_num); + + return USBH_OK; +} + +/*! + \brief USB control transfer handler + \param[in] uhost: pointer to USB host + \param[out] none + \retval operation status +*/ +usbh_status usbh_ctl_handler (usbh_host *uhost) +{ + usbh_status status = USBH_BUSY; + + switch (uhost->control.ctl_state) { + case CTL_SETUP: + usbh_setup_transc (uhost); + break; + + case CTL_DATA_IN: + usbh_data_in_transc (uhost); + break; + + case CTL_DATA_OUT: + usbh_data_out_transc (uhost); + break; + + case CTL_STATUS_IN: + usbh_status_in_transc (uhost); + break; + + case CTL_STATUS_OUT: + usbh_status_out_transc (uhost); + break; + + case CTL_FINISH: + uhost->control.ctl_state = CTL_IDLE; + + status = USBH_OK; + break; + + case CTL_ERROR: + if (++uhost->control.error_count <= USBH_MAX_ERROR_COUNT) { + /* do the transmission again, starting from SETUP packet */ + uhost->control.ctl_state = CTL_SETUP; + } else { + status = USBH_FAIL; + } + break; + + default: + break; + } + + return status; +} + +/*! + \brief wait for USB URB(USB request block) state + \param[in] uhost: pointer to USB host + \param[in] pp_num: pipe number + \param[in] wait_time: wait time + \param[out] none + \retval USB URB state +*/ +static usb_urb_state usbh_urb_wait (usbh_host *uhost, uint8_t pp_num, uint32_t wait_time) +{ + usb_urb_state urb_status = GD_URB_IDLE; + + while (GD_URB_DONE != (urb_status = usbh_urbstate_get(uhost->data, pp_num))) { + if (GD_URB_NOTREADY == urb_status) { + break; + } else if (GD_URB_STALL == urb_status) { + uhost->control.ctl_state = CTL_SETUP; + break; + } else if (GD_URB_ERROR == urb_status) { + uhost->control.ctl_state = CTL_ERROR; + break; + } else if ((wait_time > 0U) && ((usb_curframe_get(uhost->data)- uhost->control.timer) > wait_time)) { + /* timeout for in transfer */ + uhost->control.ctl_state = CTL_ERROR; + break; + } else { + /* no operation, just wait */ + } + } + + return urb_status; +} + +/*! + \brief USB setup transaction + \param[in] uhost: pointer to USB host + \param[out] none + \retval none +*/ +static void usbh_setup_transc (usbh_host *uhost) +{ + /* send a SETUP packet */ + usbh_ctlsetup_send (uhost->data, + uhost->control.setup.data, + uhost->control.pipe_out_num); + + if (GD_URB_DONE == usbh_urb_wait (uhost, uhost->control.pipe_out_num, 0U)) { + uint8_t dir = (uhost->control.setup.req.bmRequestType & USB_TRX_MASK); + + if (uhost->control.setup.req.wLength) { + if (USB_TRX_IN == dir) { + uhost->control.ctl_state = CTL_DATA_IN; + } else { + uhost->control.ctl_state = CTL_DATA_OUT; + } + } else { + if (USB_TRX_IN == dir) { + uhost->control.ctl_state = CTL_STATUS_OUT; + } else { + uhost->control.ctl_state = CTL_STATUS_IN; + } + } + + /* set the delay timer to enable timeout for data stage completion */ + uhost->control.timer = (uint16_t)usb_curframe_get(uhost->data); + } +} + +/*! + \brief USB data IN transaction + \param[in] uhost: pointer to USB host + \param[out] none + \retval none +*/ +static void usbh_data_in_transc (usbh_host *uhost) +{ + usbh_data_recev (uhost->data, + uhost->control.buf, + uhost->control.pipe_in_num, + uhost->control.ctl_len); + + if (GD_URB_DONE == usbh_urb_wait (uhost, uhost->control.pipe_in_num, DATA_STAGE_TIMEOUT)) { + uhost->control.ctl_state = CTL_STATUS_OUT; + + uhost->control.timer = (uint16_t)usb_curframe_get(uhost->data); + } +} + +/*! + \brief USB data OUT transaction + \param[in] uhost: pointer to USB host + \param[out] none + \retval none +*/ +static void usbh_data_out_transc (usbh_host *uhost) +{ + usbh_pipe_toggle_set(uhost->data, uhost->control.pipe_out_num, 1U); + + usbh_data_send (uhost->data, + uhost->control.buf, + uhost->control.pipe_out_num, + uhost->control.ctl_len); + + if (GD_URB_DONE == usbh_urb_wait (uhost, uhost->control.pipe_out_num, DATA_STAGE_TIMEOUT)) { + uhost->control.ctl_state = CTL_STATUS_IN; + + uhost->control.timer = (uint16_t)usb_curframe_get(uhost->data); + } +} + +/*! + \brief USB status IN transaction + \param[in] uhost: pointer to USB host + \param[out] none + \retval none +*/ +static void usbh_status_in_transc (usbh_host *uhost) +{ + uint8_t pp_num = uhost->control.pipe_in_num; + + usbh_data_recev (uhost->data, NULL, pp_num, 0U); + + if (GD_URB_DONE == usbh_urb_wait (uhost, pp_num, NODATA_STAGE_TIMEOUT)) { + uhost->control.ctl_state = CTL_FINISH; + } +} + +/*! + \brief USB status OUT transaction + \param[in] uhost: pointer to USB host + \param[out] none + \retval none +*/ +static void usbh_status_out_transc (usbh_host *uhost) +{ + uint8_t pp_num = uhost->control.pipe_out_num; + + usbh_data_send (uhost->data, NULL, pp_num, 0U); + + if (GD_URB_DONE == usbh_urb_wait (uhost, pp_num, NODATA_STAGE_TIMEOUT)) { + uhost->control.ctl_state = CTL_FINISH; + } +} + +/*! + \brief prepare a pipe and start a transfer + \param[in] udev: pointer to USB core instance + \param[in] pp_num: pipe number + \param[out] none + \retval operation status +*/ +static uint32_t usbh_request_submit (usb_core_driver *udev, uint8_t pp_num) +{ + udev->host.pipe[pp_num].urb_state = GD_URB_IDLE; + udev->host.pipe[pp_num].xfer_count = 0U; + + return (uint32_t)usb_pipe_xfer (udev, pp_num); +} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_transc.h b/Marlin/lib/GD32F4xx_usb_library/src/usbh_transc.h new file mode 100644 index 0000000000..2a0b642219 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/usbh_transc.h @@ -0,0 +1,51 @@ +/*! + \file usbh_transc.h + \brief USB host mode transactions header file + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USBH_TRANSC_H +#define __USBH_TRANSC_H + +#include "gdusb_conf.h" +#include "gdusbh_core.h" + +/* function declarations */ +/* send the setup packet to the USB device */ +usbh_status usbh_ctlsetup_send (usb_core_driver *udev, uint8_t *buf, uint8_t pp_num); +/* send a data packet to the USB device */ +usbh_status usbh_data_send (usb_core_driver *udev, uint8_t *buf, uint8_t pp_num, uint16_t len); +/* receive a data packet from the USB device */ +usbh_status usbh_data_recev (usb_core_driver *udev, uint8_t *buf, uint8_t pp_num, uint16_t len); +/* USB control transfer handler */ +usbh_status usbh_ctl_handler (usbh_host *uhost); + +#endif /* __USBH_TRANSC_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/ustd/class/hid/usb_hid.h b/Marlin/lib/GD32F4xx_usb_library/src/ustd/class/hid/usb_hid.h new file mode 100644 index 0000000000..63d2b08dd8 --- /dev/null +++ b/Marlin/lib/GD32F4xx_usb_library/src/ustd/class/hid/usb_hid.h @@ -0,0 +1,83 @@ +/*! + \file usb_hid.h + \brief definitions for the USB HID class + + \version 2020-08-01, V3.0.0, firmware for GD32F4xx +*/ + +/* + Copyright (c) 2020, GigaDevice Semiconductor Inc. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#ifndef __USB_HID_H +#define __USB_HID_H + +#include "usb_ch9_std.h" + +#define USB_HID_CLASS 0x03U + +#define USB_DESCTYPE_HID 0x21U +#define USB_DESCTYPE_REPORT 0x22U + +/* HID subclass code */ +#define USB_HID_SUBCLASS_BOOT_ITF 0x01U + +/* HID protocol codes */ +#define USB_HID_PROTOCOL_KEYBOARD 0x01U +#define USB_HID_PROTOCOL_MOUSE 0x02U + +#define GET_REPORT 0x01U +#define GET_IDLE 0x02U +#define GET_PROTOCOL 0x03U +#define SET_REPORT 0x09U +#define SET_IDLE 0x0AU +#define SET_PROTOCOL 0x0BU + +#pragma pack(1) + +typedef struct +{ + usb_desc_header header; /*!< regular descriptor header containing the descriptor's type and length */ + + uint16_t bcdHID; /*!< BCD encoded version that the HID descriptor and device complies to */ + uint8_t bCountryCode; /*!< country code of the localized device, or zero if universal */ + uint8_t bNumDescriptors; /*!< total number of HID report descriptors for the interface */ + uint8_t bDescriptorType; /*!< type of HID report */ + uint16_t wDescriptorLength; /*!< length of the associated HID report descriptor, in bytes */ +} usb_desc_hid; + +#pragma pack() + +typedef struct +{ + usb_desc_config config; + usb_desc_itf hid_itf; + usb_desc_hid hid_vendor; + usb_desc_ep hid_epin; + usb_desc_ep hid_epout; +}usb_hid_desc_config_set; + +#endif /* __USB_HID_H */ diff --git a/Marlin/lib/LodePNG/LICENSE b/Marlin/lib/LodePNG/LICENSE new file mode 100644 index 0000000000..a5fb0603d9 --- /dev/null +++ b/Marlin/lib/LodePNG/LICENSE @@ -0,0 +1,21 @@ +Copyright (c) 2005-2018 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. + diff --git a/Marlin/lib/LodePNG/Makefile b/Marlin/lib/LodePNG/Makefile new file mode 100644 index 0000000000..78afa1ba58 --- /dev/null +++ b/Marlin/lib/LodePNG/Makefile @@ -0,0 +1,34 @@ +# This makefile only makes the unit test, benchmark and pngdetail and showpng +# utilities. It does not make the PNG codec itself as shared or static library. +# That is because: +# LodePNG itself has only 1 source file (lodepng.cpp, can be renamed to +# lodepng.c) and is intended to be included as source file in other projects and +# their build system directly. + + +CC ?= gcc +CXX ?= g++ + +override CFLAGS := -W -Wall -Wextra -ansi -pedantic -O3 -Wno-unused-function $(CFLAGS) +override CXXFLAGS := -W -Wall -Wextra -ansi -pedantic -O3 $(CXXFLAGS) + +all: unittest benchmark pngdetail showpng + +%.o: %.cpp + @mkdir -p `dirname $@` + $(CXX) -I ./ $(CXXFLAGS) -c $< -o $@ + +unittest: lodepng.o lodepng_util.o lodepng_unittest.o + $(CXX) $^ $(CXXFLAGS) -o $@ + +benchmark: lodepng.o lodepng_benchmark.o + $(CXX) $^ $(CXXFLAGS) -lSDL2 -o $@ + +pngdetail: lodepng.o lodepng_util.o pngdetail.o + $(CXX) $^ $(CXXFLAGS) -o $@ + +showpng: lodepng.o examples/example_sdl.o + $(CXX) -I ./ $^ $(CXXFLAGS) -lSDL2 -o $@ + +clean: + rm -f unittest benchmark pngdetail showpng lodepng_unittest.o lodepng_benchmark.o lodepng.o lodepng_util.o pngdetail.o examples/example_sdl.o diff --git a/Marlin/lib/LodePNG/README.md b/Marlin/lib/LodePNG/README.md new file mode 100644 index 0000000000..b50f83795e --- /dev/null +++ b/Marlin/lib/LodePNG/README.md @@ -0,0 +1,75 @@ +LodePNG +------- + +PNG encoder and decoder in C and C++, without dependencies + +Home page: http://lodev.org/lodepng/ + +### Documentation + +Detailed documentation is included in a large comment in the second half of the +header file `lodepng.h`. + +Source code examples using LodePNG can be found in the examples directory. + +An FAQ can be found on http://lodev.org/lodepng/ + +### Building + +Only two files are needed to encode and decode PNGs: + +* `lodepng.cpp` (or renamed to `lodepng.c`) +* `lodepng.h` + +All other files are just source code examples, tests, misc utilities, etc..., +which are normally not needed in projects using this. + +You can include the files directly in your project's source tree and its +makefile, IDE project file, or other build system. No library is necessary. + +In addition to C++, LodePNG also supports ANSI C (C89), with all the same +functionality: C++ only adds extra convenience API. + +For C, rename `lodepng.cpp` to `lodepng.c`. + +Consider using git submodules to include LodePNG in your project. + +### Compiling in C++ + +If you have a hypothetical `your_program.cpp` that #includes and uses `lodepng.h`, +you can build as follows: + +`g++ your_program.cpp lodepng.cpp -Wall -Wextra -pedantic -ansi -O3` + +or: + +`clang++ your_program.cpp lodepng.cpp -Wall -Wextra -pedantic -ansi -O3` + +This shows compiler flags it was designed for, but normally one would use the +compiler or build system of their project instead of those commands, and other +C++ compilers are supported. + +### Compiling in C + +Rename `lodepng.cpp` to `lodepng.c` for this. + +If you have a hypothetical your_program.c that #includes and uses lodepng.h, +you can build as follows: + +`gcc your_program.c lodepng.c -ansi -pedantic -Wall -Wextra -O3` + +or + +`clang your_program.c lodepng.c -ansi -pedantic -Wall -Wextra -O3` + +This shows compiler flags it was designed for, but normally one would use the +compiler or build system of their project instead of those commands, and other +C compilers are supported. + +### Makefile + +There is a Makefile, but this is not intended for using LodePNG itself since the +way to use that one is to include its source files in your program. The Makefile +only builds development and testing utilities. It can be used as follows: + +`make -j` diff --git a/Marlin/lib/LodePNG/examples/example_4bit_palette.cpp b/Marlin/lib/LodePNG/examples/example_4bit_palette.cpp new file mode 100644 index 0000000000..1490ddfc9a --- /dev/null +++ b/Marlin/lib/LodePNG/examples/example_4bit_palette.cpp @@ -0,0 +1,101 @@ +/* +LodePNG Examples + +Copyright (c) 2005-2012 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +//g++ lodepng.cpp example_4bit_palette.cpp -ansi -pedantic -Wall -Wextra -O3 + + + +/* +LodePNG 4-bit palette example. +This example encodes a 511x511 PNG with a 4-bit palette. +Both image and palette contain sine waves, resulting in a sort of plasma. +The 511 (rather than power of two 512) size is of course chosen on purpose to +confirm that scanlines not filling up an entire byte size are working. + +NOTE: a PNG image with a translucent palette is perfectly valid. However there +exist some programs that cannot correctly read those, including, surprisingly, +Gimp 2.8 image editor (until you set mode to RGB). +*/ + +#include +#include + +#include "lodepng.h" + +int main(int argc, char *argv[]) { + //check if user gave a filename + if(argc < 2) { + std::cout << "please provide a filename to save to" << std::endl; + return 0; + } + + //create encoder and set settings and info (optional) + lodepng::State state; + + //generate palette + for(int i = 0; i < 16; i++) { + unsigned char r = 127 * (1 + std::sin(5 * i * 6.28318531 / 16)); + unsigned char g = 127 * (1 + std::sin(2 * i * 6.28318531 / 16)); + unsigned char b = 127 * (1 + std::sin(3 * i * 6.28318531 / 16)); + unsigned char a = 63 * (1 + std::sin(8 * i * 6.28318531 / 16)) + 128; /*alpha channel of the palette (tRNS chunk)*/ + + //palette must be added both to input and output color mode, because in this + //sample both the raw image and the expected PNG image use that palette. + lodepng_palette_add(&state.info_png.color, r, g, b, a); + lodepng_palette_add(&state.info_raw, r, g, b, a); + } + + //both the raw image and the encoded image must get colorType 3 (palette) + state.info_png.color.colortype = LCT_PALETTE; //if you comment this line, and create the above palette in info_raw instead, then you get the same image in a RGBA PNG. + state.info_png.color.bitdepth = 4; + state.info_raw.colortype = LCT_PALETTE; + state.info_raw.bitdepth = 4; + state.encoder.auto_convert = 0; //we specify ourselves exactly what output PNG color mode we want + + //generate some image + const unsigned w = 511; + const unsigned h = 511; + std::vector image; + image.resize((w * h * 4 + 7) / 8, 0); + for(unsigned y = 0; y < h; y++) + for(unsigned x = 0; x < w; x++) { + size_t byte_index = (y * w + x) / 2; + bool byte_half = (y * w + x) % 2 == 1; + + int color = (int)(4 * ((1 + std::sin(2.0 * 6.28318531 * x / (double)w)) + + (1 + std::sin(2.0 * 6.28318531 * y / (double)h))) ); + + image[byte_index] |= (unsigned char)(color << (byte_half ? 0 : 4)); + } + + //encode and save + std::vector buffer; + unsigned error = lodepng::encode(buffer, image.empty() ? 0 : &image[0], w, h, state); + if(error) { + std::cout << "encoder error " << error << ": "<< lodepng_error_text(error) << std::endl; + return 0; + } + lodepng::save_file(buffer, argv[1]); +} diff --git a/Marlin/lib/LodePNG/examples/example_bmp2png.cpp b/Marlin/lib/LodePNG/examples/example_bmp2png.cpp new file mode 100644 index 0000000000..19f77635b7 --- /dev/null +++ b/Marlin/lib/LodePNG/examples/example_bmp2png.cpp @@ -0,0 +1,125 @@ +/* +LodePNG Examples + +Copyright (c) 2005-2010 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +/* +Load a BMP image and convert it to a PNG image. This example also shows how +to use other data with the same memory structure as BMP, such as the image +format native to win32, GDI (HBITMAP, BITMAPINFO, ...) often encountered if +you're programming for Windows in Visual Studio. + +This example only supports uncompressed 24-bit RGB or 32-bit RGBA bitmaps. +For other types of BMP's, use a full fledged BMP decoder, or convert the +bitmap to 24-bit or 32-bit format. + +NOTE: it overwrites the output file without warning if it exists! +*/ + +//g++ lodepng.cpp example_bmp2png.cpp -ansi -pedantic -Wall -Wextra -O3 + +#include "lodepng.h" + +#include + +//returns 0 if all went ok, non-0 if error +//output image is always given in RGBA (with alpha channel), even if it's a BMP without alpha channel +unsigned decodeBMP(std::vector& image, unsigned& w, unsigned& h, const std::vector& bmp) { + static const unsigned MINHEADER = 54; //minimum BMP header size + + if(bmp.size() < MINHEADER) return -1; + if(bmp[0] != 'B' || bmp[1] != 'M') return 1; //It's not a BMP file if it doesn't start with marker 'BM' + unsigned pixeloffset = bmp[10] + 256 * bmp[11]; //where the pixel data starts + //read width and height from BMP header + w = bmp[18] + bmp[19] * 256; + h = bmp[22] + bmp[23] * 256; + //read number of channels from BMP header + if(bmp[28] != 24 && bmp[28] != 32) return 2; //only 24-bit and 32-bit BMPs are supported. + unsigned numChannels = bmp[28] / 8; + + //The amount of scanline bytes is width of image times channels, with extra bytes added if needed + //to make it a multiple of 4 bytes. + unsigned scanlineBytes = w * numChannels; + if(scanlineBytes % 4 != 0) scanlineBytes = (scanlineBytes / 4) * 4 + 4; + + unsigned dataSize = scanlineBytes * h; + if(bmp.size() < dataSize + pixeloffset) return 3; //BMP file too small to contain all pixels + + image.resize(w * h * 4); + + /* + There are 3 differences between BMP and the raw image buffer for LodePNG: + -it's upside down + -it's in BGR instead of RGB format (or BRGA instead of RGBA) + -each scanline has padding bytes to make it a multiple of 4 if needed + The 2D for loop below does all these 3 conversions at once. + */ + for(unsigned y = 0; y < h; y++) + for(unsigned x = 0; x < w; x++) { + //pixel start byte position in the BMP + unsigned bmpos = pixeloffset + (h - y - 1) * scanlineBytes + numChannels * x; + //pixel start byte position in the new raw image + unsigned newpos = 4 * y * w + 4 * x; + if(numChannels == 3) { + image[newpos + 0] = bmp[bmpos + 2]; //R + image[newpos + 1] = bmp[bmpos + 1]; //G + image[newpos + 2] = bmp[bmpos + 0]; //B + image[newpos + 3] = 255; //A + } else { + image[newpos + 0] = bmp[bmpos + 2]; //R + image[newpos + 1] = bmp[bmpos + 1]; //G + image[newpos + 2] = bmp[bmpos + 0]; //B + image[newpos + 3] = bmp[bmpos + 3]; //A + } + } + return 0; +} + +int main(int argc, char *argv[]) { + if(argc < 3) { + std::cout << "Please provide input BMP and output PNG file names" << std::endl; + return 0; + } + + std::vector bmp; + lodepng::load_file(bmp, argv[1]); + std::vector image; + unsigned w, h; + unsigned error = decodeBMP(image, w, h, bmp); + + if(error) { + std::cout << "BMP decoding error " << error << std::endl; + return 0; + } + + std::vector png; + error = lodepng::encode(png, image, w, h); + + if(error) { + std::cout << "PNG encoding error " << error << ": " << lodepng_error_text(error) << std::endl; + return 0; + } + + lodepng::save_file(png, argv[2]); + +} diff --git a/Marlin/lib/LodePNG/examples/example_decode.c b/Marlin/lib/LodePNG/examples/example_decode.c new file mode 100644 index 0000000000..86ff6f3627 --- /dev/null +++ b/Marlin/lib/LodePNG/examples/example_decode.c @@ -0,0 +1,109 @@ +/* +LodePNG Examples + +Copyright (c) 2005-2012 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +#include "lodepng.h" + +#include +#include + +/* +3 ways to decode a PNG from a file to RGBA pixel data (and 2 in-memory ways). +*/ + +/* +Example 1 +Decode from disk to raw pixels with a single function call +*/ +void decodeOneStep(const char* filename) { + unsigned error; + unsigned char* image = 0; + unsigned width, height; + + error = lodepng_decode32_file(&image, &width, &height, filename); + if(error) printf("error %u: %s\n", error, lodepng_error_text(error)); + + /*use image here*/ + + free(image); +} + +/* +Example 2 +Load PNG file from disk to memory first, then decode to raw pixels in memory. +*/ +void decodeTwoSteps(const char* filename) { + unsigned error; + unsigned char* image = 0; + unsigned width, height; + unsigned char* png = 0; + size_t pngsize; + + error = lodepng_load_file(&png, &pngsize, filename); + if(!error) error = lodepng_decode32(&image, &width, &height, png, pngsize); + if(error) printf("error %u: %s\n", error, lodepng_error_text(error)); + + free(png); + + /*use image here*/ + + free(image); +} + +/* +Example 3 +Load PNG file from disk using a State, normally needed for more advanced usage. +*/ +void decodeWithState(const char* filename) { + unsigned error; + unsigned char* image = 0; + unsigned width, height; + unsigned char* png = 0; + size_t pngsize; + LodePNGState state; + + lodepng_state_init(&state); + /*optionally customize the state*/ + + error = lodepng_load_file(&png, &pngsize, filename); + if(!error) error = lodepng_decode(&image, &width, &height, &state, png, pngsize); + if(error) printf("error %u: %s\n", error, lodepng_error_text(error)); + + free(png); + + /*use image here*/ + /*state contains extra information about the PNG such as text chunks, ...*/ + + lodepng_state_cleanup(&state); + free(image); +} + +int main(int argc, char *argv[]) { + const char* filename = argc > 1 ? argv[1] : "test.png"; + + decodeOneStep(filename); + + return 0; +} + diff --git a/Marlin/lib/LodePNG/examples/example_decode.cpp b/Marlin/lib/LodePNG/examples/example_decode.cpp new file mode 100644 index 0000000000..3a778408f3 --- /dev/null +++ b/Marlin/lib/LodePNG/examples/example_decode.cpp @@ -0,0 +1,91 @@ +/* +LodePNG Examples + +Copyright (c) 2005-2012 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +#include "lodepng.h" +#include + +/* +3 ways to decode a PNG from a file to RGBA pixel data (and 2 in-memory ways). +*/ + +//g++ lodepng.cpp example_decode.cpp -ansi -pedantic -Wall -Wextra -O3 + + +//Example 1 +//Decode from disk to raw pixels with a single function call +void decodeOneStep(const char* filename) { + std::vector image; //the raw pixels + unsigned width, height; + + //decode + unsigned error = lodepng::decode(image, width, height, filename); + + //if there's an error, display it + if(error) std::cout << "decoder error " << error << ": " << lodepng_error_text(error) << std::endl; + + //the pixels are now in the vector "image", 4 bytes per pixel, ordered RGBARGBA..., use it as texture, draw it, ... +} + +//Example 2 +//Load PNG file from disk to memory first, then decode to raw pixels in memory. +void decodeTwoSteps(const char* filename) { + std::vector png; + std::vector image; //the raw pixels + unsigned width, height; + + //load and decode + unsigned error = lodepng::load_file(png, filename); + if(!error) error = lodepng::decode(image, width, height, png); + + //if there's an error, display it + if(error) std::cout << "decoder error " << error << ": " << lodepng_error_text(error) << std::endl; + + //the pixels are now in the vector "image", 4 bytes per pixel, ordered RGBARGBA..., use it as texture, draw it, ... +} + +//Example 3 +//Load PNG file from disk using a State, normally needed for more advanced usage. +void decodeWithState(const char* filename) { + std::vector png; + std::vector image; //the raw pixels + unsigned width, height; + lodepng::State state; //optionally customize this one + + unsigned error = lodepng::load_file(png, filename); //load the image file with given filename + if(!error) error = lodepng::decode(image, width, height, state, png); + + //if there's an error, display it + if(error) std::cout << "decoder error " << error << ": "<< lodepng_error_text(error) << std::endl; + + //the pixels are now in the vector "image", 4 bytes per pixel, ordered RGBARGBA..., use it as texture, draw it, ... + //State state contains extra information about the PNG such as text chunks, ... +} + +int main(int argc, char *argv[]) { + const char* filename = argc > 1 ? argv[1] : "test.png"; + + decodeOneStep(filename); +} + diff --git a/Marlin/lib/LodePNG/examples/example_encode.c b/Marlin/lib/LodePNG/examples/example_encode.c new file mode 100644 index 0000000000..11149ee4a3 --- /dev/null +++ b/Marlin/lib/LodePNG/examples/example_encode.c @@ -0,0 +1,111 @@ +/* +LodePNG Examples + +Copyright (c) 2005-2012 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +#include "lodepng.h" + +#include +#include + +/* +3 ways to encode a PNG from RGBA pixel data to a file (and 2 in-memory ways). +NOTE: these samples overwrite the file or test.png without warning! +*/ + +/* +Example 1 +Encode from raw pixels to disk with a single function call +The image argument has width * height RGBA pixels or width * height * 4 bytes +*/ +void encodeOneStep(const char* filename, const unsigned char* image, unsigned width, unsigned height) { + /*Encode the image*/ + unsigned error = lodepng_encode32_file(filename, image, width, height); + + /*if there's an error, display it*/ + if(error) printf("error %u: %s\n", error, lodepng_error_text(error)); +} + +/* +Example 2 +Encode from raw pixels to an in-memory PNG file first, then write it to disk +The image argument has width * height RGBA pixels or width * height * 4 bytes +*/ +void encodeTwoSteps(const char* filename, const unsigned char* image, unsigned width, unsigned height) { + unsigned char* png; + size_t pngsize; + + unsigned error = lodepng_encode32(&png, &pngsize, image, width, height); + if(!error) lodepng_save_file(png, pngsize, filename); + + /*if there's an error, display it*/ + if(error) printf("error %u: %s\n", error, lodepng_error_text(error)); + + free(png); +} + +/* +Example 3 +Save a PNG file to disk using a State, normally needed for more advanced usage. +The image argument has width * height RGBA pixels or width * height * 4 bytes +*/ +void encodeWithState(const char* filename, const unsigned char* image, unsigned width, unsigned height) { + unsigned error; + unsigned char* png; + size_t pngsize; + LodePNGState state; + + lodepng_state_init(&state); + /*optionally customize the state*/ + + error = lodepng_encode(&png, &pngsize, image, width, height, &state); + if(!error) lodepng_save_file(png, pngsize, filename); + + /*if there's an error, display it*/ + if(error) printf("error %u: %s\n", error, lodepng_error_text(error)); + + lodepng_state_cleanup(&state); + free(png); +} + +int main(int argc, char *argv[]) { + const char* filename = argc > 1 ? argv[1] : "test.png"; + + /*generate some image*/ + unsigned width = 512, height = 512; + unsigned char* image = malloc(width * height * 4); + unsigned x, y; + for(y = 0; y < height; y++) + for(x = 0; x < width; x++) { + image[4 * width * y + 4 * x + 0] = 255 * !(x & y); + image[4 * width * y + 4 * x + 1] = x ^ y; + image[4 * width * y + 4 * x + 2] = x | y; + image[4 * width * y + 4 * x + 3] = 255; + } + + /*run an example*/ + encodeOneStep(filename, image, width, height); + + free(image); + return 0; +} diff --git a/Marlin/lib/LodePNG/examples/example_encode.cpp b/Marlin/lib/LodePNG/examples/example_encode.cpp new file mode 100644 index 0000000000..fc1a0047b5 --- /dev/null +++ b/Marlin/lib/LodePNG/examples/example_encode.cpp @@ -0,0 +1,92 @@ +/* +LodePNG Examples + +Copyright (c) 2005-2012 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +#include "lodepng.h" +#include + +/* +3 ways to encode a PNG from RGBA pixel data to a file (and 2 in-memory ways). +NOTE: these samples overwrite the file or test.png without warning! +*/ + +//g++ lodepng.cpp examples/example_encode.cpp -I./ -ansi -pedantic -Wall -Wextra -O3 + +//Example 1 +//Encode from raw pixels to disk with a single function call +//The image argument has width * height RGBA pixels or width * height * 4 bytes +void encodeOneStep(const char* filename, std::vector& image, unsigned width, unsigned height) { + //Encode the image + unsigned error = lodepng::encode(filename, image, width, height); + + //if there's an error, display it + if(error) std::cout << "encoder error " << error << ": "<< lodepng_error_text(error) << std::endl; +} + +//Example 2 +//Encode from raw pixels to an in-memory PNG file first, then write it to disk +//The image argument has width * height RGBA pixels or width * height * 4 bytes +void encodeTwoSteps(const char* filename, std::vector& image, unsigned width, unsigned height) { + std::vector png; + + unsigned error = lodepng::encode(png, image, width, height); + if(!error) lodepng::save_file(png, filename); + + //if there's an error, display it + if(error) std::cout << "encoder error " << error << ": "<< lodepng_error_text(error) << std::endl; +} + +//Example 3 +//Save a PNG file to disk using a State, normally needed for more advanced usage. +//The image argument has width * height RGBA pixels or width * height * 4 bytes +void encodeWithState(const char* filename, std::vector& image, unsigned width, unsigned height) { + std::vector png; + lodepng::State state; //optionally customize this one + + unsigned error = lodepng::encode(png, image, width, height, state); + if(!error) lodepng::save_file(png, filename); + + //if there's an error, display it + if(error) std::cout << "encoder error " << error << ": "<< lodepng_error_text(error) << std::endl; +} + +//saves image to filename given as argument. Warning, this overwrites the file without warning! +int main(int argc, char *argv[]) { + //NOTE: this sample will overwrite the file or test.png without warning! + const char* filename = argc > 1 ? argv[1] : "test.png"; + + //generate some image + unsigned width = 512, height = 512; + std::vector image; + image.resize(width * height * 4); + for(unsigned y = 0; y < height; y++) + for(unsigned x = 0; x < width; x++) { + image[4 * width * y + 4 * x + 0] = 255 * !(x & y); + image[4 * width * y + 4 * x + 1] = x ^ y; + image[4 * width * y + 4 * x + 2] = x | y; + image[4 * width * y + 4 * x + 3] = 255; + } + + encodeOneStep(filename, image, width, height); +} diff --git a/Marlin/lib/LodePNG/examples/example_encode_type.cpp b/Marlin/lib/LodePNG/examples/example_encode_type.cpp new file mode 100644 index 0000000000..c133b2417e --- /dev/null +++ b/Marlin/lib/LodePNG/examples/example_encode_type.cpp @@ -0,0 +1,76 @@ +/* +LodePNG Examples + +Copyright (c) 2005-2015 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +//g++ -I ./ lodepng.cpp examples/example_encode_type.cpp -ansi -pedantic -Wall -Wextra -O3 + + + +/* +This example shows how to enforce a certain color type of the PNG image when +encoding a PNG (because by default, LodePNG automatically chooses an optimal +color type, no matter what your raw data's color type is) +*/ + +#include +#include + +#include "lodepng.h" + +int main(int argc, char *argv[]) { + //check if user gave a filename + if(argc < 2) { + std::cout << "please provide a filename to save to" << std::endl; + return 0; + } + + //generate some image + const unsigned w = 256; + const unsigned h = 256; + std::vector image(w * h * 4); + for(unsigned y = 0; y < h; y++) + for(unsigned x = 0; x < w; x++) { + int index = y * w * 4 + x * 4; + image[index + 0] = 0; + image[index + 1] = 0; + image[index + 2] = 0; + image[index + 3] = 255; + } + + // we're going to encode with a state rather than a convenient function, because enforcing a color type requires setting options + lodepng::State state; + // input color type + state.info_raw.colortype = LCT_RGBA; + state.info_raw.bitdepth = 8; + // output color type + state.info_png.color.colortype = LCT_RGBA; + state.info_png.color.bitdepth = 8; + state.encoder.auto_convert = 0; // without this, it would ignore the output color type specified above and choose an optimal one instead + + //encode and save + std::vector buffer; + unsigned error = lodepng::encode(buffer, &image[0], w, h, state); + if(error) std::cout << "encoder error " << error << ": "<< lodepng_error_text(error) << std::endl; + else lodepng::save_file(buffer, argv[1]); +} diff --git a/Marlin/lib/LodePNG/examples/example_gzip.cpp b/Marlin/lib/LodePNG/examples/example_gzip.cpp new file mode 100644 index 0000000000..60545aa38d --- /dev/null +++ b/Marlin/lib/LodePNG/examples/example_gzip.cpp @@ -0,0 +1,91 @@ +/* +LodePNG Examples + +Copyright (c) 2005-2012 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +#include "lodepng.h" +#include +#include + +/* +Encodes given file as a gzip file. + +See also the gzip specification, RFC 1952: http://www.gzip.org/zlib/rfc-gzip.html +*/ + +//g++ lodepng.cpp example_gzip.cpp -ansi -pedantic -Wall -Wextra -O3 + +//saves image to filename given as argument. Warning, this overwrites the file without warning! +int main(int argc, char *argv[]) { + if(argc < 2) { + std::cout << "Please provide input filename (output is input with .gz)" << std::endl; + return 0; + } + + //NOTE: this sample will overwrite the output file without warning! + std::string infilename = argv[1]; + std::string outfilename = infilename + ".gz"; + + std::vector in; + lodepng::load_file(in, infilename); + + size_t outsize = 10; + unsigned char* out = (unsigned char*)malloc(outsize); + out[0] = 31; //ID1 + out[1] = 139; //ID2 + out[2] = 8; //CM + out[3] = 0; //FLG + //MTIME + out[4] = 0; + out[5] = 0; + out[6] = 0; + out[7] = 0; + + out[8] = 2; //2 = slow, 4 = fast compression + out[9] = 255; //OS unknown + + lodepng_deflate(&out, &outsize, &in[0], in.size(), &lodepng_default_compress_settings); + + unsigned crc = lodepng_crc32(&in[0], in.size()); + + size_t footer = outsize; + + outsize += 8; + out = (unsigned char*)realloc(out, outsize); + + //CRC + out[footer + 0] = crc % 256; + out[footer + 1] = (crc >> 8) % 256; + out[footer + 2] = (crc >> 16) % 256; + out[footer + 3] = (crc >> 24) % 256; + + //ISIZE + out[footer + 4] = in.size() % 256; + out[footer + 5] = (in.size() >> 8) % 256; + out[footer + 6] = (in.size() >> 16) % 256; + out[footer + 7] = (in.size() >> 24) % 256; + + lodepng_save_file(out, outsize, outfilename.c_str()); + + free(out); +} diff --git a/Marlin/lib/LodePNG/examples/example_opengl.cpp b/Marlin/lib/LodePNG/examples/example_opengl.cpp new file mode 100644 index 0000000000..a4352ebdad --- /dev/null +++ b/Marlin/lib/LodePNG/examples/example_opengl.cpp @@ -0,0 +1,153 @@ +/* +LodePNG Examples + +Copyright (c) 2005-2012 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +//Compile command for Linux: +//g++ lodepng.cpp example_opengl.cpp -lSDL -lGL -O3 + +/* +LodePNG OpenGL example. Decodes a PNG and shows it in OpenGL. PNG filename +should be given as a command line parameter. + +It's written for the most basic old OpenGL version, and a correction for non +power of two textures had to be added. + +Only very few lines on the sample are about loading the PNG. Most of the +sample lines show a way to render a texture in 2D in OpenGL. + +No fancy 3D graphics are shown, it only shows the image statically. The sample +shows LodePNG can be used to load PNG images as textures in OpenGL. +*/ + +#include "lodepng.h" + +#include +#include +#include + +int main(int argc, char *argv[]) { + if(argc < 2) { + std::cout << "Please provide a filename." << std::endl; + return 1; + } + const char* filename = argv[1]; + + // Load file and decode image. + std::vector image; + unsigned width, height; + unsigned error = lodepng::decode(image, width, height, filename); + + // If there's an error, display it. + if(error != 0) { + std::cout << "error " << error << ": " << lodepng_error_text(error) << std::endl; + return 1; + } + + // Here the PNG is loaded in "image". All the rest of the code is SDL and OpenGL stuff. + + int screenw = width; + if(screenw > 1024) screenw = 1024; + int screenh = height; + if(screenh > 768) screenw = 768; + + if(SDL_Init(SDL_INIT_VIDEO) < 0) { + std::cout << "Error: Unable to init SDL: " << SDL_GetError() << std::endl; + return 1; + } + + SDL_Surface* scr = SDL_SetVideoMode(screenw, screenh, 32, SDL_OPENGL); + + if(scr == 0) { + std::cout << "Error: Unable to set video. SDL error message: " << SDL_GetError() << std::endl; + return 1; + } + + // The official code for "Setting Your Raster Position to a Pixel Location" (i.e. set up a camera for 2D screen) + glViewport(0, 0, screenw, screenh); + glMatrixMode(GL_PROJECTION); + glLoadIdentity(); + glOrtho(0, screenw, screenh, 0, -1, 1); + glMatrixMode(GL_MODELVIEW); + glLoadIdentity(); + + // Make some OpenGL properties better for 2D and enable alpha channel. + glDisable(GL_CULL_FACE); + glDisable(GL_DEPTH_TEST); + glBlendFunc(GL_SRC_ALPHA, GL_ONE_MINUS_SRC_ALPHA); + glEnable(GL_BLEND); + glDisable(GL_ALPHA_TEST); + + if(glGetError() != GL_NO_ERROR) { + std::cout << "Error initing GL" << std::endl; + return 1; + } + + // Texture size must be power of two for the primitive OpenGL version this is written for. Find next power of two. + size_t u2 = 1; while(u2 < width) u2 *= 2; + size_t v2 = 1; while(v2 < height) v2 *= 2; + // Ratio for power of two version compared to actual version, to render the non power of two image with proper size. + double u3 = (double)width / u2; + double v3 = (double)height / v2; + + // Make power of two version of the image. + std::vector image2(u2 * v2 * 4); + for(size_t y = 0; y < height; y++) + for(size_t x = 0; x < width; x++) + for(size_t c = 0; c < 4; c++) { + image2[4 * u2 * y + 4 * x + c] = image[4 * width * y + 4 * x + c]; + } + + // Enable the texture for OpenGL. + glEnable(GL_TEXTURE_2D); + glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_NEAREST); //GL_NEAREST = no smoothing + glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_NEAREST); + glTexImage2D(GL_TEXTURE_2D, 0, 4, u2, v2, 0, GL_RGBA, GL_UNSIGNED_BYTE, &image2[0]); + + bool done = false; + SDL_Event event = {0}; + glColor4ub(255, 255, 255, 255); + + while(!done) { + // Quit the loop when receiving quit event. + while(SDL_PollEvent(&event)) { + if(event.type == SDL_QUIT) done = 1; + } + + // Draw the texture on a quad, using u3 and v3 to correct non power of two texture size. + glBegin(GL_QUADS); + glTexCoord2d( 0, 0); glVertex2f( 0, 0); + glTexCoord2d(u3, 0); glVertex2f(width, 0); + glTexCoord2d(u3, v3); glVertex2f(width, height); + glTexCoord2d( 0, v3); glVertex2f( 0, height); + glEnd(); + + // Redraw and clear screen. + SDL_GL_SwapBuffers(); + glClearColor(0, 0, 0, 0); + glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT); + + //Limit frames per second, to not heat up the CPU and GPU too much. + SDL_Delay(16); + } +} diff --git a/Marlin/lib/LodePNG/examples/example_optimize_png.cpp b/Marlin/lib/LodePNG/examples/example_optimize_png.cpp new file mode 100644 index 0000000000..4fa2ac1c69 --- /dev/null +++ b/Marlin/lib/LodePNG/examples/example_optimize_png.cpp @@ -0,0 +1,129 @@ +/* +LodePNG Examples + +Copyright (c) 2005-2012 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +/* +This example saves the PNG with the best compression LodePNG can do, and with +unnecessary chunks removed. It tries out several combinations of settings and +keeps the smallest one. + +NOTE: This is not as good as a true PNG optimizer like optipng or pngcrush. +*/ + +//g++ lodepng.cpp example_optimize_png.cpp -ansi -pedantic -Wall -Wextra -O3 + +#include "lodepng.h" + +#include + +int main(int argc, char *argv[]) { + std::vector image; + unsigned w, h; + std::vector buffer; + unsigned error; + + //check if user gave a filename + if(argc < 3) { + std::cout << "please provide in and out filename" << std::endl; + return 0; + } + + lodepng::load_file(buffer, argv[1]); + error = lodepng::decode(image, w, h, buffer); + + if(error) { + std::cout << "decoding error " << error << ": " << lodepng_error_text(error) << std::endl; + return 0; + } + + size_t origsize = buffer.size(); + std::cout << "Original size: " << origsize << " (" << (origsize / 1024) << "K)" << std::endl; + buffer.clear(); + + //Now encode as hard as possible with several filter types and window sizes + + lodepng::State state; + state.encoder.filter_palette_zero = 0; //We try several filter types, including zero, allow trying them all on palette images too. + state.encoder.add_id = false; //Don't add LodePNG version chunk to save more bytes + state.encoder.text_compression = 1; //Not needed because we don't add text chunks, but this demonstrates another optimization setting + state.encoder.zlibsettings.nicematch = 258; //Set this to the max possible, otherwise it can hurt compression + state.encoder.zlibsettings.lazymatching = 1; //Definitely use lazy matching for better compression + state.encoder.zlibsettings.windowsize = 32768; //Use maximum possible window size for best compression + + size_t bestsize = 0; + bool inited = false; + + int beststrategy = 0; + LodePNGFilterStrategy strategies[4] = { LFS_ZERO, LFS_MINSUM, LFS_ENTROPY, LFS_BRUTE_FORCE }; + std::string strategynames[4] = { "LFS_ZERO", "LFS_MINSUM", "LFS_ENTROPY", "LFS_BRUTE_FORCE" }; + + // min match 3 allows all deflate lengths. min match 6 is similar to "Z_FILTERED" of zlib. + int minmatches[2] = { 3, 6 }; + int bestminmatch = 0; + + int autoconverts[2] = { 0, 1 }; + std::string autoconvertnames[2] = { "0", "1" }; + int bestautoconvert = 0; + + int bestblocktype = 0; + + // Try out all combinations of everything + for(int i = 0; i < 4; i++) //filter strategy + for(int j = 0; j < 2; j++) //min match + for(int k = 0; k < 2; k++) //block type (for small images only) + for(int l = 0; l < 2; l++) { //color convert strategy + if(bestsize > 3000 && (k > 0 || l > 0)) continue; /* these only make sense on small images */ + std::vector temp; + state.encoder.filter_strategy = strategies[i]; + state.encoder.zlibsettings.minmatch = minmatches[j]; + state.encoder.zlibsettings.btype = k == 0 ? 2 : 1; + state.encoder.auto_convert = autoconverts[l]; + error = lodepng::encode(temp, image, w, h, state); + + if(error) + { + std::cout << "encoding error " << error << ": " << lodepng_error_text(error) << std::endl; + return 0; + } + + if(!inited || temp.size() < bestsize) + { + bestsize = temp.size(); + beststrategy = i; + bestminmatch = state.encoder.zlibsettings.minmatch; + bestautoconvert = l; + bestblocktype = state.encoder.zlibsettings.btype; + temp.swap(buffer); + inited = true; + } + } + + std::cout << "Chosen filter strategy: " << strategynames[beststrategy] << std::endl; + std::cout << "Chosen min match: " << bestminmatch << std::endl; + std::cout << "Chosen block type: " << bestblocktype << std::endl; + std::cout << "Chosen auto convert: " << autoconvertnames[bestautoconvert] << std::endl; + + lodepng::save_file(buffer, argv[2]); + std::cout << "New size: " << buffer.size() << " (" << (buffer.size() / 1024) << "K)" << std::endl; +} diff --git a/Marlin/lib/LodePNG/examples/example_png2bmp.cpp b/Marlin/lib/LodePNG/examples/example_png2bmp.cpp new file mode 100644 index 0000000000..daa1ee62fd --- /dev/null +++ b/Marlin/lib/LodePNG/examples/example_png2bmp.cpp @@ -0,0 +1,125 @@ +/* +LodePNG Examples + +Copyright (c) 2005-2012 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +#include "lodepng.h" +#include + +/* +This example converts a PNG file to a BMP file. +NOTE: it overwrites the output file without warning if it exists! +Give the PNG and the BMP file names as command line arguments. +*/ + +/* +g++ lodepng.cpp example_png2bmp.cpp -Wall -Wextra -pedantic -ansi -lSDL -O3 +*/ + + + +//Input image must be RGB buffer (3 bytes per pixel), but you can easily make it +//support RGBA input and output by changing the inputChannels and/or outputChannels +//in the function to 4. +void encodeBMP(std::vector& bmp, const unsigned char* image, int w, int h) { + //3 bytes per pixel used for both input and output. + int inputChannels = 3; + int outputChannels = 3; + + //bytes 0-13 + bmp.push_back('B'); bmp.push_back('M'); //0: bfType + bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); //2: bfSize; size not yet known for now, filled in later. + bmp.push_back(0); bmp.push_back(0); //6: bfReserved1 + bmp.push_back(0); bmp.push_back(0); //8: bfReserved2 + bmp.push_back(54 % 256); bmp.push_back(54 / 256); bmp.push_back(0); bmp.push_back(0); //10: bfOffBits (54 header bytes) + + //bytes 14-53 + bmp.push_back(40); bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); //14: biSize + bmp.push_back(w % 256); bmp.push_back(w / 256); bmp.push_back(0); bmp.push_back(0); //18: biWidth + bmp.push_back(h % 256); bmp.push_back(h / 256); bmp.push_back(0); bmp.push_back(0); //22: biHeight + bmp.push_back(1); bmp.push_back(0); //26: biPlanes + bmp.push_back(outputChannels * 8); bmp.push_back(0); //28: biBitCount + bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); //30: biCompression + bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); //34: biSizeImage + bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); //38: biXPelsPerMeter + bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); //42: biYPelsPerMeter + bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); //46: biClrUsed + bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); //50: biClrImportant + + /* + Convert the input RGBRGBRGB pixel buffer to the BMP pixel buffer format. There are 3 differences with the input buffer: + -BMP stores the rows inversed, from bottom to top + -BMP stores the color channels in BGR instead of RGB order + -BMP requires each row to have a multiple of 4 bytes, so sometimes padding bytes are added between rows + */ + + int imagerowbytes = outputChannels * w; + imagerowbytes = imagerowbytes % 4 == 0 ? imagerowbytes : imagerowbytes + (4 - imagerowbytes % 4); //must be multiple of 4 + + for(int y = h - 1; y >= 0; y--) { //the rows are stored inversed in bmp + int c = 0; + for(int x = 0; x < imagerowbytes; x++) { + if(x < w * outputChannels) { + int inc = c; + //Convert RGB(A) into BGR(A) + if(c == 0) inc = 2; + else if(c == 2) inc = 0; + bmp.push_back(image[inputChannels * (w * y + x / outputChannels) + inc]); + } + else bmp.push_back(0); + c++; + if(c >= outputChannels) c = 0; + } + } + + // Fill in the size + bmp[2] = bmp.size() % 256; + bmp[3] = (bmp.size() / 256) % 256; + bmp[4] = (bmp.size() / 65536) % 256; + bmp[5] = bmp.size() / 16777216; +} + +int main(int argc, char *argv[]) { + if(argc < 3) { + std::cout << "Please provide input PNG and output BMP file names" << std::endl; + return 0; + } + const char* infile = argv[1]; + const char* outfile = argv[2]; + + + std::vector image; //the raw pixels + unsigned width, height; + + unsigned error = lodepng::decode(image, width, height, infile, LCT_RGB, 8); + + if(error) { + std::cout << "error " << error << ": " << lodepng_error_text(error) << std::endl; + return 0; + } + + std::vector bmp; + encodeBMP(bmp, &image[0], width, height); + + lodepng::save_file(bmp, outfile); +} diff --git a/Marlin/lib/LodePNG/examples/example_png_info.cpp b/Marlin/lib/LodePNG/examples/example_png_info.cpp new file mode 100644 index 0000000000..e321afee44 --- /dev/null +++ b/Marlin/lib/LodePNG/examples/example_png_info.cpp @@ -0,0 +1,313 @@ +/* +LodePNG Examples + +Copyright (c) 2005-2012 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +//g++ lodepng.cpp example_png_info.cpp -ansi -pedantic -Wall -Wextra -lSDL -O3 + +/* +This sample shows a lot of information in the console about a PNG file, +including color type, text chunks, the names of all chunks in the image, +etc... +*/ + + +#include "lodepng.h" +#include + +/* +Display general info about the PNG. +*/ +void displayPNGInfo(const LodePNGInfo& info) { + const LodePNGColorMode& color = info.color; + + std::cout << "Compression method: " << info.compression_method << std::endl; + std::cout << "Filter method: " << info.filter_method << std::endl; + std::cout << "Interlace method: " << info.interlace_method << std::endl; + std::cout << "Color type: " << color.colortype << std::endl; + std::cout << "Bit depth: " << color.bitdepth << std::endl; + std::cout << "Bits per pixel: " << lodepng_get_bpp(&color) << std::endl; + std::cout << "Channels per pixel: " << lodepng_get_channels(&color) << std::endl; + std::cout << "Is greyscale type: " << lodepng_is_greyscale_type(&color) << std::endl; + std::cout << "Can have alpha: " << lodepng_can_have_alpha(&color) << std::endl; + std::cout << "Palette size: " << color.palettesize << std::endl; + std::cout << "Has color key: " << color.key_defined << std::endl; + if(color.key_defined) { + std::cout << "Color key r: " << color.key_r << std::endl; + std::cout << "Color key g: " << color.key_g << std::endl; + std::cout << "Color key b: " << color.key_b << std::endl; + } + std::cout << "Texts: " << info.text_num << std::endl; + for(size_t i = 0; i < info.text_num; i++) { + std::cout << "Text: " << info.text_keys[i] << ": " << info.text_strings[i] << std::endl << std::endl; + } + std::cout << "International texts: " << info.itext_num << std::endl; + for(size_t i = 0; i < info.itext_num; i++) { + std::cout << "Text: " + << info.itext_keys[i] << ", " + << info.itext_langtags[i] << ", " + << info.itext_transkeys[i] << ": " + << info.itext_strings[i] << std::endl << std::endl; + } + std::cout << "Time defined: " << info.time_defined << std::endl; + if(info.time_defined) { + const LodePNGTime& time = info.time; + std::cout << "year: " << time.year << std::endl; + std::cout << "month: " << time.month << std::endl; + std::cout << "day: " << time.day << std::endl; + std::cout << "hour: " << time.hour << std::endl; + std::cout << "minute: " << time.minute << std::endl; + std::cout << "second: " << time.second << std::endl; + } + std::cout << "Physics defined: " << info.phys_defined << std::endl; + if(info.phys_defined) { + std::cout << "physics X: " << info.phys_x << std::endl; + std::cout << "physics Y: " << info.phys_y << std::endl; + std::cout << "physics unit: " << info.phys_unit << std::endl; + } +} + + +/* +Display the names and sizes of all chunks in the PNG file. +*/ +void displayChunkNames(const std::vector& buffer) { + // Listing chunks is based on the original file, not the decoded png info. + const unsigned char *chunk, *end; + end = &buffer.back() + 1; + chunk = &buffer.front() + 8; + + std::cout << std::endl << "Chunks:" << std::endl; + std::cout << " type: length(s)"; + std::string last_type; + while(chunk < end && end - chunk >= 8) { + char type[5]; + lodepng_chunk_type(type, chunk); + if(std::string(type).size() != 4) { + std::cout << "this is probably not a PNG" << std::endl; + return; + } + + if(last_type != type) { + std::cout << std::endl; + std::cout << " " << type << ": "; + } + last_type = type; + + std::cout << lodepng_chunk_length(chunk) << ", "; + + chunk = lodepng_chunk_next_const(chunk, end); + } + std::cout << std::endl; +} + + +/* +Show ASCII art preview of the image +*/ +void displayAsciiArt(const std::vector& image, unsigned w, unsigned h) { + if(w > 0 && h > 0) { + std::cout << std::endl << "ASCII Art Preview: " << std::endl; + unsigned w2 = 48; + if(w < w2) w2 = w; + unsigned h2 = h * w2 / w; + h2 = (h2 * 2) / 3; //compensate for non-square characters in terminal + if(h2 > (w2 * 2)) h2 = w2 * 2; //avoid too large output + + std::cout << '+'; + for(unsigned x = 0; x < w2; x++) std::cout << '-'; + std::cout << '+' << std::endl; + for(unsigned y = 0; y < h2; y++) { + std::cout << "|"; + for(unsigned x = 0; x < w2; x++) { + unsigned x2 = x * w / w2; + unsigned y2 = y * h / h2; + int r = image[y2 * w * 4 + x2 * 4 + 0]; + int g = image[y2 * w * 4 + x2 * 4 + 1]; + int b = image[y2 * w * 4 + x2 * 4 + 2]; + int a = image[y2 * w * 4 + x2 * 4 + 3]; + int lightness = ((r + g + b) / 3) * a / 255; + int min = (r < g && r < b) ? r : (g < b ? g : b); + int max = (r > g && r > b) ? r : (g > b ? g : b); + int saturation = max - min; + int letter = 'i'; //i for grey, or r,y,g,c,b,m for colors + if(saturation > 32) { + int h = lightness >= (min + max) / 2; + if(h) letter = (min == r ? 'c' : (min == g ? 'm' : 'y')); + else letter = (max == r ? 'r' : (max == g ? 'g' : 'b')); + } + int symbol = ' '; + if(lightness > 224) symbol = '@'; + else if(lightness > 128) symbol = letter - 32; + else if(lightness > 32) symbol = letter; + else if(lightness > 16) symbol = '.'; + std::cout << (char)symbol; + } + std::cout << "|"; + std::cout << std::endl; + } + std::cout << '+'; + for(unsigned x = 0; x < w2; x++) std::cout << '-'; + std::cout << '+' << std::endl; + } +} + + +/* +Show the filtertypes of each scanline in this PNG image. +*/ +void displayFilterTypes(const std::vector& buffer, bool ignore_checksums) { + //Get color type and interlace type + lodepng::State state; + if(ignore_checksums) { + state.decoder.ignore_crc = 1; + state.decoder.zlibsettings.ignore_adler32 = 1; + } + unsigned w, h; + unsigned error; + error = lodepng_inspect(&w, &h, &state, &buffer[0], buffer.size()); + + if(error) { + std::cout << "inspect error " << error << ": " << lodepng_error_text(error) << std::endl; + return; + } + + if(state.info_png.interlace_method == 1) { + std::cout << "showing filtertypes for interlaced PNG not supported by this example" << std::endl; + return; + } + + //Read literal data from all IDAT chunks + const unsigned char *chunk, *begin, *end; + end = &buffer.back() + 1; + begin = chunk = &buffer.front() + 8; + + std::vector zdata; + + while(chunk < end && end - chunk >= 8) { + char type[5]; + lodepng_chunk_type(type, chunk); + if(std::string(type).size() != 4) { + std::cout << "this is probably not a PNG" << std::endl; + return; + } + + if(std::string(type) == "IDAT") { + const unsigned char* cdata = lodepng_chunk_data_const(chunk); + unsigned clength = lodepng_chunk_length(chunk); + if(chunk + clength + 12 > end || clength > buffer.size() || chunk + clength + 12 < begin) { + std::cout << "invalid chunk length" << std::endl; + return; + } + + for(unsigned i = 0; i < clength; i++) { + zdata.push_back(cdata[i]); + } + } + + chunk = lodepng_chunk_next_const(chunk, end); + } + + //Decompress all IDAT data + std::vector data; + error = lodepng::decompress(data, &zdata[0], zdata.size()); + + if(error) { + std::cout << "decompress error " << error << ": " << lodepng_error_text(error) << std::endl; + return; + } + + //A line is 1 filter byte + all pixels + size_t linebytes = 1 + lodepng_get_raw_size(w, 1, &state.info_png.color); + + if(linebytes == 0) { + std::cout << "error: linebytes is 0" << std::endl; + return; + } + + std::cout << "Filter types: "; + for(size_t i = 0; i < data.size(); i += linebytes) { + std::cout << (int)(data[i]) << " "; + } + std::cout << std::endl; + +} + + +/* +Main +*/ +int main(int argc, char *argv[]) /*list the chunks*/ { + bool ignore_checksums = false; + std::string filename = ""; + for (int i = 1; i < argc; i++) { + if(std::string(argv[i]) == "--ignore_checksums") ignore_checksums = true; + else filename = argv[i]; + } + if(filename == "") { + std::cout << "Please provide a filename to preview" << std::endl; + return 0; + } + + std::vector buffer; + std::vector image; + unsigned w, h; + + lodepng::load_file(buffer, filename); //load the image file with given filename + + lodepng::State state; + if(ignore_checksums) { + state.decoder.ignore_crc = 1; + state.decoder.zlibsettings.ignore_adler32 = 1; + } + + unsigned error = lodepng::decode(image, w, h, state, buffer); + + if(error) { + std::cout << "decoder error " << error << ": " << lodepng_error_text(error) << std::endl; + return 0; + } + + std::cout << "Filesize: " << buffer.size() << " (" << buffer.size() / 1024 << "K)" << std::endl; + std::cout << "Width: " << w << std::endl; + std::cout << "Height: " << h << std::endl; + std::cout << "Num pixels: " << w * h << std::endl; + + if(w > 0 && h > 0) { + std::cout << "Top left pixel color:" + << " r: " << (int)image[0] + << " g: " << (int)image[1] + << " b: " << (int)image[2] + << " a: " << (int)image[3] + << std::endl; + } + + + displayPNGInfo(state.info_png); + std::cout << std::endl; + displayChunkNames(buffer); + std::cout << std::endl; + displayFilterTypes(buffer, ignore_checksums); + std::cout << std::endl; + displayAsciiArt(image, w, h); +} diff --git a/Marlin/lib/LodePNG/examples/example_reencode.cpp b/Marlin/lib/LodePNG/examples/example_reencode.cpp new file mode 100644 index 0000000000..d316bc91d0 --- /dev/null +++ b/Marlin/lib/LodePNG/examples/example_reencode.cpp @@ -0,0 +1,72 @@ +/* +LodePNG Examples + +Copyright (c) 2005-2010 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +/* +LodePNG decode-encode: decodes the image, then encodes it again, with all the +same information, chunks, color types, etc... as the original image had. +This sample shows how LodePNG can be used for a conforming PNG editor. +*/ + +//g++ lodepng.cpp example_reencode.cpp -ansi -pedantic -Wall -Wextra -lSDL -O3 -o reencode + +#include "lodepng.h" + +#include + +int main(int argc, char *argv[]) { + std::vector image; + unsigned w, h; + std::vector buffer; + lodepng::State state; + unsigned error; + + //check if user gave a filename + if(argc < 3) { + std::cout << "please provide in and out filename" << std::endl; + return 0; + } + + state.decoder.color_convert = 0; + state.decoder.remember_unknown_chunks = 1; //make it reproduce even unknown chunks in the saved image + + lodepng::load_file(buffer, argv[1]); + error = lodepng::decode(image, w, h, state, buffer); + if(error) { + std::cout << "decoder error " << error << ": " << lodepng_error_text(error) << std::endl; + return 0; + } + + buffer.clear(); + + state.encoder.text_compression = 1; + + error = lodepng::encode(buffer, image, w, h, state); + if(error) { + std::cout << "encoder error " << error << ": " << lodepng_error_text(error) << std::endl; + return 0; + } + + lodepng::save_file(buffer, argv[2]); +} diff --git a/Marlin/lib/LodePNG/examples/example_sdl.c b/Marlin/lib/LodePNG/examples/example_sdl.c new file mode 100644 index 0000000000..72686c2453 --- /dev/null +++ b/Marlin/lib/LodePNG/examples/example_sdl.c @@ -0,0 +1,142 @@ +/* +LodePNG Examples + +Copyright (c) 2005-2012 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +/* +Compile command for Linux: +gcc lodepng.c example_sdl.c -ansi -pedantic -Wall -Wextra -lSDL2 -O3 -o showpng + +*/ + +/* +LodePNG SDL example +This example displays a PNG with a checkerboard pattern to show tranparency. +It requires the SDL2 library to compile and run. +If multiple filenames are given to the command line, it shows all of them. +Press any key to see next image, or esc to quit. +*/ + +#include "lodepng.h" + +#include + + +/*shows image with SDL. Returns 1 if user wants to fully quit, 0 if user wants to see next image.*/ +int show(const char* filename) { + unsigned error; + unsigned char* image; + unsigned w, h, x, y; + int done; + size_t jump = 1; + SDL_Window* sdl_window; + SDL_Renderer* sdl_renderer; + SDL_Texture* sdl_texture; + SDL_Event sdl_event; + size_t screenw, screenh, pitch; + Uint32* sdl_pixels; + + printf("showing %s\n", filename); + + /*load the PNG in one function call*/ + error = lodepng_decode32_file(&image, &w, &h, filename); + + /*stop if there is an error*/ + if(error) { + printf("decoder error %u: %s\n", error, lodepng_error_text(error)); + return 0; + } + + /* avoid too large window size by downscaling large image */ + if(w / 1024 >= jump) jump = w / 1024 + 1; + if(h / 1024 >= jump) jump = h / 1024 + 1; + + screenw = w / jump; + screenh = h / jump; + pitch = screenw * sizeof(Uint32); + /* init SDL */ + SDL_CreateWindowAndRenderer(screenw, screenh, SDL_WINDOW_OPENGL, &sdl_window, &sdl_renderer); + SDL_SetWindowTitle(sdl_window, filename); + if(!sdl_window) { + printf("Error, no SDL screen\n"); + return 0; + } + sdl_texture = SDL_CreateTexture(sdl_renderer, SDL_PIXELFORMAT_ARGB8888, + SDL_TEXTUREACCESS_STREAMING, screenw, screenh); + sdl_pixels = (Uint32*)malloc(screenw * screenh * sizeof(Uint32)); + if(!sdl_pixels) { + printf("Failed to allocate pixels\n"); + return 0; + } + + /* plot the pixels of the PNG file */ + for(y = 0; y + jump - 1 < h; y += jump) + for(x = 0; x + jump - 1 < w; x += jump) { + /* get RGBA components */ + Uint32 r = image[4 * y * w + 4 * x + 0]; /* red */ + Uint32 g = image[4 * y * w + 4 * x + 1]; /* green */ + Uint32 b = image[4 * y * w + 4 * x + 2]; /* blue */ + Uint32 a = image[4 * y * w + 4 * x + 3]; /* alpha */ + + /* make translucency visible by placing checkerboard pattern behind image */ + int checkerColor = 191 + 64 * (((x / 16) % 2) == ((y / 16) % 2)); + r = (a * r + (255 - a) * checkerColor) / 255; + g = (a * g + (255 - a) * checkerColor) / 255; + b = (a * b + (255 - a) * checkerColor) / 255; + + /* give the color value to the pixel of the screenbuffer */ + sdl_pixels[(y * screenw + x) / jump] = 65536 * r + 256 * g + b; + } + + /* render the pixels to the screen */ + SDL_UpdateTexture(sdl_texture, NULL, sdl_pixels, pitch); + SDL_RenderClear(sdl_renderer); + SDL_RenderCopy(sdl_renderer, sdl_texture, NULL, NULL); + SDL_RenderPresent(sdl_renderer); + + /* pause until you press escape and meanwhile redraw screen */ + done = 0; + while(done == 0) { + while(SDL_PollEvent(&sdl_event)) { + if(sdl_event.type == SDL_QUIT) done = 2; + else if(SDL_GetKeyboardState(NULL)[SDLK_ESCAPE]) done = 2; + else if(sdl_event.type == SDL_KEYDOWN) done = 1; /* press any other key for next image */ + } + SDL_Delay(5); /* pause 5 ms so it consumes less processing power */ + } + + SDL_Quit(); + free(sdl_pixels); + return done == 2 ? 1 : 0; +} + +int main(int argc, char* argv[]) { + int i; + + if(argc <= 1) printf("Please enter PNG file name(s) to display\n");; + + for(i = 1; i < argc; i++) { + if(show(argv[i])) return 0; + } + return 0; +} diff --git a/Marlin/lib/LodePNG/examples/example_sdl.cpp b/Marlin/lib/LodePNG/examples/example_sdl.cpp new file mode 100644 index 0000000000..ac964cf062 --- /dev/null +++ b/Marlin/lib/LodePNG/examples/example_sdl.cpp @@ -0,0 +1,129 @@ +/* +LodePNG Examples + +Copyright (c) 2005-2012 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +//Compile command for Linux: +//g++ lodepng.cpp example_sdl.cpp -lSDL2 -O3 -o showpng + +/* +LodePNG SDL example +This example displays a PNG with a checkerboard pattern to show tranparency. +It requires the SDL2 library to compile and run. +If multiple filenames are given to the command line, it shows all of them. +Press any key to see next image, or esc to quit. +*/ + +#include "lodepng.h" + +#include +#include + +int show(const std::string& caption, const unsigned char* rgba, unsigned w, unsigned h) { + //avoid too large window size by downscaling large image + unsigned jump = 1; + if(w / 1024 >= jump) jump = w / 1024 + 1; + if(h / 1024 >= jump) jump = h / 1024 + 1; + + size_t screenw = w / jump; + size_t screenh = h / jump; + size_t pitch = screenw * sizeof(Uint32); + //init SDL + SDL_Window* sdl_window; + SDL_Renderer* sdl_renderer; + SDL_CreateWindowAndRenderer(screenw, screenh, SDL_WINDOW_OPENGL, &sdl_window, &sdl_renderer); + SDL_SetWindowTitle(sdl_window, caption.c_str()); + if(!sdl_window) { + std::cout << "error, no SDL screen" << std::endl; + return 0; + } + SDL_Texture* sdl_texture = SDL_CreateTexture(sdl_renderer, SDL_PIXELFORMAT_ARGB8888, + SDL_TEXTUREACCESS_STREAMING, screenw, screenh); + std::vector sdl_pixels(screenw * screenh * sizeof(Uint32)); + + //plot the pixels of the PNG file + for(unsigned y = 0; y + jump - 1 < h; y += jump) + for(unsigned x = 0; x + jump - 1 < w; x += jump) { + //get RGBA components + Uint32 r = rgba[4 * y * w + 4 * x + 0]; //red + Uint32 g = rgba[4 * y * w + 4 * x + 1]; //green + Uint32 b = rgba[4 * y * w + 4 * x + 2]; //blue + Uint32 a = rgba[4 * y * w + 4 * x + 3]; //alpha + + //make translucency visible by placing checkerboard pattern behind image + int checkerColor = 191 + 64 * (((x / 16) % 2) == ((y / 16) % 2)); + r = (a * r + (255 - a) * checkerColor) / 255; + g = (a * g + (255 - a) * checkerColor) / 255; + b = (a * b + (255 - a) * checkerColor) / 255; + + //give the color value to the pixel of the screenbuffer + sdl_pixels[(y * screenw + x) / jump] = 65536 * r + 256 * g + b; + } + + // render the pixels to the screen + SDL_UpdateTexture(sdl_texture, NULL, sdl_pixels.data(), pitch); + SDL_RenderClear(sdl_renderer); + SDL_RenderCopy(sdl_renderer, sdl_texture, NULL, NULL); + SDL_RenderPresent(sdl_renderer); + + //pause until you press escape and meanwhile redraw screen + SDL_Event event; + int done = 0; + while(done == 0) { + while(SDL_PollEvent(&event)) { + if(event.type == SDL_QUIT) done = 2; + else if(SDL_GetKeyboardState(NULL)[SDLK_ESCAPE]) done = 2; + else if(event.type == SDL_KEYDOWN) done = 1; //press any other key for next image + } + SDL_Delay(5); //pause 5 ms so it consumes less processing power + } + + SDL_Quit(); + return done == 2 ? 1 : 0; +} + +/*shows image with SDL. Returns 1 if user wants to fully quit, 0 if user wants to see next image.*/ +int showfile(const char* filename) { + std::cout << "showing " << filename << std::endl; + + std::vector buffer, image; + lodepng::load_file(buffer, filename); //load the image file with given filename + unsigned w, h; + unsigned error = lodepng::decode(image, w, h, buffer); //decode the png + + //stop if there is an error + if(error) { + std::cout << "decoder error " << error << ": " << lodepng_error_text(error) << std::endl; + return 0; + } + + return show(filename, &image[0], w, h); +} + +int main(int argc, char* argv[]) { + if(argc <= 1) std::cout << "Please enter PNG file name(s) to display" << std::endl; + + for(int i = 1; i < argc; i++) { + if(showfile(argv[i])) return 0; + } +} diff --git a/Marlin/lib/LodePNG/lodepng.cpp b/Marlin/lib/LodePNG/lodepng.cpp new file mode 100644 index 0000000000..1f8967764f --- /dev/null +++ b/Marlin/lib/LodePNG/lodepng.cpp @@ -0,0 +1,6658 @@ +/* +LodePNG version 20220717 + +Copyright (c) 2005-2022 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +/* +The manual and changelog are in the header file "lodepng.h" +Rename this file to lodepng.cpp to use it for C++, or to lodepng.c to use it for C. +*/ + +#include "lodepng.h" + +#ifdef LODEPNG_COMPILE_DISK +#include /* LONG_MAX */ +#include /* file handling */ +#endif /* LODEPNG_COMPILE_DISK */ + +#ifdef LODEPNG_COMPILE_ALLOCATORS +#include /* allocations */ +#endif /* LODEPNG_COMPILE_ALLOCATORS */ + +#if defined(_MSC_VER) && (_MSC_VER >= 1310) /*Visual Studio: A few warning types are not desired here.*/ +#pragma warning( disable : 4244 ) /*implicit conversions: not warned by gcc -Wall -Wextra and requires too much casts*/ +#pragma warning( disable : 4996 ) /*VS does not like fopen, but fopen_s is not standard C so unusable here*/ +#endif /*_MSC_VER */ + +const char* LODEPNG_VERSION_STRING = "20220717"; + +/* +This source file is divided into the following large parts. The code sections +with the "LODEPNG_COMPILE_" #defines divide this up further in an intermixed way. +-Tools for C and common code for PNG and Zlib +-C Code for Zlib (huffman, deflate, ...) +-C Code for PNG (file format chunks, adam7, PNG filters, color conversions, ...) +-The C++ wrapper around all of the above +*/ + +/* ////////////////////////////////////////////////////////////////////////// */ +/* ////////////////////////////////////////////////////////////////////////// */ +/* // Tools for C, and common code for PNG and Zlib. // */ +/* ////////////////////////////////////////////////////////////////////////// */ +/* ////////////////////////////////////////////////////////////////////////// */ + +/*The malloc, realloc and free functions defined here with "lodepng_" in front +of the name, so that you can easily change them to others related to your +platform if needed. Everything else in the code calls these. Pass +-DLODEPNG_NO_COMPILE_ALLOCATORS to the compiler, or comment out +#define LODEPNG_COMPILE_ALLOCATORS in the header, to disable the ones here and +define them in your own project's source files without needing to change +lodepng source code. Don't forget to remove "static" if you copypaste them +from here.*/ + +#ifdef LODEPNG_COMPILE_ALLOCATORS +static void* lodepng_malloc(size_t size) { +#ifdef LODEPNG_MAX_ALLOC + if(size > LODEPNG_MAX_ALLOC) return 0; +#endif + return malloc(size); +} + +/* NOTE: when realloc returns NULL, it leaves the original memory untouched */ +static void* lodepng_realloc(void* ptr, size_t new_size) { +#ifdef LODEPNG_MAX_ALLOC + if(new_size > LODEPNG_MAX_ALLOC) return 0; +#endif + return realloc(ptr, new_size); +} + +static void lodepng_free(void* ptr) { + free(ptr); +} +#else /*LODEPNG_COMPILE_ALLOCATORS*/ +/* TODO: support giving additional void* payload to the custom allocators */ +void* lodepng_malloc(size_t size); +void* lodepng_realloc(void* ptr, size_t new_size); +void lodepng_free(void* ptr); +#endif /*LODEPNG_COMPILE_ALLOCATORS*/ + +/* convince the compiler to inline a function, for use when this measurably improves performance */ +/* inline is not available in C90, but use it when supported by the compiler */ +#if (defined(__STDC_VERSION__) && (__STDC_VERSION__ >= 199901L)) || (defined(__cplusplus) && (__cplusplus >= 199711L)) +#define LODEPNG_INLINE inline +#else +#define LODEPNG_INLINE /* not available */ +#endif + +/* restrict is not available in C90, but use it when supported by the compiler */ +#if (defined(__GNUC__) && (__GNUC__ > 3 || (__GNUC__ == 3 && __GNUC_MINOR__ >= 1))) ||\ + (defined(_MSC_VER) && (_MSC_VER >= 1400)) || \ + (defined(__WATCOMC__) && (__WATCOMC__ >= 1250) && !defined(__cplusplus)) +#define LODEPNG_RESTRICT __restrict +#else +#define LODEPNG_RESTRICT /* not available */ +#endif + +/* Replacements for C library functions such as memcpy and strlen, to support platforms +where a full C library is not available. The compiler can recognize them and compile +to something as fast. */ + +static void lodepng_memcpy(void* LODEPNG_RESTRICT dst, + const void* LODEPNG_RESTRICT src, size_t size) { + size_t i; + for(i = 0; i < size; i++) ((char*)dst)[i] = ((const char*)src)[i]; +} + +static void lodepng_memset(void* LODEPNG_RESTRICT dst, + int value, size_t num) { + size_t i; + for(i = 0; i < num; i++) ((char*)dst)[i] = (char)value; +} + +/* does not check memory out of bounds, do not use on untrusted data */ +static size_t lodepng_strlen(const char* a) { + const char* orig = a; + /* avoid warning about unused function in case of disabled COMPILE... macros */ + (void)(&lodepng_strlen); + while(*a) a++; + return (size_t)(a - orig); +} + +#define LODEPNG_MAX(a, b) (((a) > (b)) ? (a) : (b)) +#define LODEPNG_MIN(a, b) (((a) < (b)) ? (a) : (b)) +#define LODEPNG_ABS(x) ((x) < 0 ? -(x) : (x)) + +#if defined(LODEPNG_COMPILE_PNG) || defined(LODEPNG_COMPILE_DECODER) +/* Safely check if adding two integers will overflow (no undefined +behavior, compiler removing the code, etc...) and output result. */ +static int lodepng_addofl(size_t a, size_t b, size_t* result) { + *result = a + b; /* Unsigned addition is well defined and safe in C90 */ + return *result < a; +} +#endif /*defined(LODEPNG_COMPILE_PNG) || defined(LODEPNG_COMPILE_DECODER)*/ + +#ifdef LODEPNG_COMPILE_DECODER +/* Safely check if multiplying two integers will overflow (no undefined +behavior, compiler removing the code, etc...) and output result. */ +static int lodepng_mulofl(size_t a, size_t b, size_t* result) { + *result = a * b; /* Unsigned multiplication is well defined and safe in C90 */ + return (a != 0 && *result / a != b); +} + +#ifdef LODEPNG_COMPILE_ZLIB +/* Safely check if a + b > c, even if overflow could happen. */ +static int lodepng_gtofl(size_t a, size_t b, size_t c) { + size_t d; + if(lodepng_addofl(a, b, &d)) return 1; + return d > c; +} +#endif /*LODEPNG_COMPILE_ZLIB*/ +#endif /*LODEPNG_COMPILE_DECODER*/ + + +/* +Often in case of an error a value is assigned to a variable and then it breaks +out of a loop (to go to the cleanup phase of a function). This macro does that. +It makes the error handling code shorter and more readable. + +Example: if(!uivector_resize(&lz77_encoded, datasize)) ERROR_BREAK(83); +*/ +#define CERROR_BREAK(errorvar, code){\ + errorvar = code;\ + break;\ +} + +/*version of CERROR_BREAK that assumes the common case where the error variable is named "error"*/ +#define ERROR_BREAK(code) CERROR_BREAK(error, code) + +/*Set error var to the error code, and return it.*/ +#define CERROR_RETURN_ERROR(errorvar, code){\ + errorvar = code;\ + return code;\ +} + +/*Try the code, if it returns error, also return the error.*/ +#define CERROR_TRY_RETURN(call){\ + unsigned error = call;\ + if(error) return error;\ +} + +/*Set error var to the error code, and return from the void function.*/ +#define CERROR_RETURN(errorvar, code){\ + errorvar = code;\ + return;\ +} + +/* +About uivector, ucvector and string: +-All of them wrap dynamic arrays or text strings in a similar way. +-LodePNG was originally written in C++. The vectors replace the std::vectors that were used in the C++ version. +-The string tools are made to avoid problems with compilers that declare things like strncat as deprecated. +-They're not used in the interface, only internally in this file as static functions. +-As with many other structs in this file, the init and cleanup functions serve as ctor and dtor. +*/ + +#ifdef LODEPNG_COMPILE_ZLIB +#ifdef LODEPNG_COMPILE_ENCODER +/*dynamic vector of unsigned ints*/ +typedef struct uivector { + unsigned* data; + size_t size; /*size in number of unsigned longs*/ + size_t allocsize; /*allocated size in bytes*/ +} uivector; + +static void uivector_cleanup(void* p) { + ((uivector*)p)->size = ((uivector*)p)->allocsize = 0; + lodepng_free(((uivector*)p)->data); + ((uivector*)p)->data = NULL; +} + +/*returns 1 if success, 0 if failure ==> nothing done*/ +static unsigned uivector_resize(uivector* p, size_t size) { + size_t allocsize = size * sizeof(unsigned); + if(allocsize > p->allocsize) { + size_t newsize = allocsize + (p->allocsize >> 1u); + void* data = lodepng_realloc(p->data, newsize); + if(data) { + p->allocsize = newsize; + p->data = (unsigned*)data; + } + else return 0; /*error: not enough memory*/ + } + p->size = size; + return 1; /*success*/ +} + +static void uivector_init(uivector* p) { + p->data = NULL; + p->size = p->allocsize = 0; +} + +/*returns 1 if success, 0 if failure ==> nothing done*/ +static unsigned uivector_push_back(uivector* p, unsigned c) { + if(!uivector_resize(p, p->size + 1)) return 0; + p->data[p->size - 1] = c; + return 1; +} +#endif /*LODEPNG_COMPILE_ENCODER*/ +#endif /*LODEPNG_COMPILE_ZLIB*/ + +/* /////////////////////////////////////////////////////////////////////////// */ + +/*dynamic vector of unsigned chars*/ +typedef struct ucvector { + unsigned char* data; + size_t size; /*used size*/ + size_t allocsize; /*allocated size*/ +} ucvector; + +/*returns 1 if success, 0 if failure ==> nothing done*/ +static unsigned ucvector_reserve(ucvector* p, size_t size) { + if(size > p->allocsize) { + size_t newsize = size + (p->allocsize >> 1u); + void* data = lodepng_realloc(p->data, newsize); + if(data) { + p->allocsize = newsize; + p->data = (unsigned char*)data; + } + else return 0; /*error: not enough memory*/ + } + return 1; /*success*/ +} + +/*returns 1 if success, 0 if failure ==> nothing done*/ +static unsigned ucvector_resize(ucvector* p, size_t size) { + p->size = size; + return ucvector_reserve(p, size); +} + +static ucvector ucvector_init(unsigned char* buffer, size_t size) { + ucvector v; + v.data = buffer; + v.allocsize = v.size = size; + return v; +} + +/* ////////////////////////////////////////////////////////////////////////// */ + +#ifdef LODEPNG_COMPILE_PNG +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + +/*free string pointer and set it to NULL*/ +static void string_cleanup(char** out) { + lodepng_free(*out); + *out = NULL; +} + +/*also appends null termination character*/ +static char* alloc_string_sized(const char* in, size_t insize) { + char* out = (char*)lodepng_malloc(insize + 1); + if(out) { + lodepng_memcpy(out, in, insize); + out[insize] = 0; + } + return out; +} + +/* dynamically allocates a new string with a copy of the null terminated input text */ +static char* alloc_string(const char* in) { + return alloc_string_sized(in, lodepng_strlen(in)); +} +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ +#endif /*LODEPNG_COMPILE_PNG*/ + +/* ////////////////////////////////////////////////////////////////////////// */ + +#if defined(LODEPNG_COMPILE_DECODER) || defined(LODEPNG_COMPILE_PNG) +static unsigned lodepng_read32bitInt(const unsigned char* buffer) { + return (((unsigned)buffer[0] << 24u) | ((unsigned)buffer[1] << 16u) | + ((unsigned)buffer[2] << 8u) | (unsigned)buffer[3]); +} +#endif /*defined(LODEPNG_COMPILE_DECODER) || defined(LODEPNG_COMPILE_PNG)*/ + +#if defined(LODEPNG_COMPILE_PNG) || defined(LODEPNG_COMPILE_ENCODER) +/*buffer must have at least 4 allocated bytes available*/ +static void lodepng_set32bitInt(unsigned char* buffer, unsigned value) { + buffer[0] = (unsigned char)((value >> 24) & 0xff); + buffer[1] = (unsigned char)((value >> 16) & 0xff); + buffer[2] = (unsigned char)((value >> 8) & 0xff); + buffer[3] = (unsigned char)((value ) & 0xff); +} +#endif /*defined(LODEPNG_COMPILE_PNG) || defined(LODEPNG_COMPILE_ENCODER)*/ + +/* ////////////////////////////////////////////////////////////////////////// */ +/* / File IO / */ +/* ////////////////////////////////////////////////////////////////////////// */ + +#ifdef LODEPNG_COMPILE_DISK + +/* returns negative value on error. This should be pure C compatible, so no fstat. */ +static long lodepng_filesize(const char* filename) { + FILE* file; + long size; + file = fopen(filename, "rb"); + if(!file) return -1; + + if(fseek(file, 0, SEEK_END) != 0) { + fclose(file); + return -1; + } + + size = ftell(file); + /* It may give LONG_MAX as directory size, this is invalid for us. */ + if(size == LONG_MAX) size = -1; + + fclose(file); + return size; +} + +/* load file into buffer that already has the correct allocated size. Returns error code.*/ +static unsigned lodepng_buffer_file(unsigned char* out, size_t size, const char* filename) { + FILE* file; + size_t readsize; + file = fopen(filename, "rb"); + if(!file) return 78; + + readsize = fread(out, 1, size, file); + fclose(file); + + if(readsize != size) return 78; + return 0; +} + +unsigned lodepng_load_file(unsigned char** out, size_t* outsize, const char* filename) { + long size = lodepng_filesize(filename); + if(size < 0) return 78; + *outsize = (size_t)size; + + *out = (unsigned char*)lodepng_malloc((size_t)size); + if(!(*out) && size > 0) return 83; /*the above malloc failed*/ + + return lodepng_buffer_file(*out, (size_t)size, filename); +} + +/*write given buffer to the file, overwriting the file, it doesn't append to it.*/ +unsigned lodepng_save_file(const unsigned char* buffer, size_t buffersize, const char* filename) { + FILE* file; + file = fopen(filename, "wb" ); + if(!file) return 79; + fwrite(buffer, 1, buffersize, file); + fclose(file); + return 0; +} + +#endif /*LODEPNG_COMPILE_DISK*/ + +/* ////////////////////////////////////////////////////////////////////////// */ +/* ////////////////////////////////////////////////////////////////////////// */ +/* // End of common code and tools. Begin of Zlib related code. // */ +/* ////////////////////////////////////////////////////////////////////////// */ +/* ////////////////////////////////////////////////////////////////////////// */ + +#ifdef LODEPNG_COMPILE_ZLIB +#ifdef LODEPNG_COMPILE_ENCODER + +typedef struct { + ucvector* data; + unsigned char bp; /*ok to overflow, indicates bit pos inside byte*/ +} LodePNGBitWriter; + +static void LodePNGBitWriter_init(LodePNGBitWriter* writer, ucvector* data) { + writer->data = data; + writer->bp = 0; +} + +/*TODO: this ignores potential out of memory errors*/ +#define WRITEBIT(writer, bit){\ + /* append new byte */\ + if(((writer->bp) & 7u) == 0) {\ + if(!ucvector_resize(writer->data, writer->data->size + 1)) return;\ + writer->data->data[writer->data->size - 1] = 0;\ + }\ + (writer->data->data[writer->data->size - 1]) |= (bit << ((writer->bp) & 7u));\ + ++writer->bp;\ +} + +/* LSB of value is written first, and LSB of bytes is used first */ +static void writeBits(LodePNGBitWriter* writer, unsigned value, size_t nbits) { + if(nbits == 1) { /* compiler should statically compile this case if nbits == 1 */ + WRITEBIT(writer, value); + } else { + /* TODO: increase output size only once here rather than in each WRITEBIT */ + size_t i; + for(i = 0; i != nbits; ++i) { + WRITEBIT(writer, (unsigned char)((value >> i) & 1)); + } + } +} + +/* This one is to use for adding huffman symbol, the value bits are written MSB first */ +static void writeBitsReversed(LodePNGBitWriter* writer, unsigned value, size_t nbits) { + size_t i; + for(i = 0; i != nbits; ++i) { + /* TODO: increase output size only once here rather than in each WRITEBIT */ + WRITEBIT(writer, (unsigned char)((value >> (nbits - 1u - i)) & 1u)); + } +} +#endif /*LODEPNG_COMPILE_ENCODER*/ + +#ifdef LODEPNG_COMPILE_DECODER + +typedef struct { + const unsigned char* data; + size_t size; /*size of data in bytes*/ + size_t bitsize; /*size of data in bits, end of valid bp values, should be 8*size*/ + size_t bp; + unsigned buffer; /*buffer for reading bits. NOTE: 'unsigned' must support at least 32 bits*/ +} LodePNGBitReader; + +/* data size argument is in bytes. Returns error if size too large causing overflow */ +static unsigned LodePNGBitReader_init(LodePNGBitReader* reader, const unsigned char* data, size_t size) { + size_t temp; + reader->data = data; + reader->size = size; + /* size in bits, return error if overflow (if size_t is 32 bit this supports up to 500MB) */ + if(lodepng_mulofl(size, 8u, &reader->bitsize)) return 105; + /*ensure incremented bp can be compared to bitsize without overflow even when it would be incremented 32 too much and + trying to ensure 32 more bits*/ + if(lodepng_addofl(reader->bitsize, 64u, &temp)) return 105; + reader->bp = 0; + reader->buffer = 0; + return 0; /*ok*/ +} + +/* +ensureBits functions: +Ensures the reader can at least read nbits bits in one or more readBits calls, +safely even if not enough bits are available. +The nbits parameter is unused but is given for documentation purposes, error +checking for amount of bits must be done beforehand. +*/ + +/*See ensureBits documentation above. This one ensures up to 9 bits */ +static LODEPNG_INLINE void ensureBits9(LodePNGBitReader* reader, size_t nbits) { + size_t start = reader->bp >> 3u; + size_t size = reader->size; + if(start + 1u < size) { + reader->buffer = (unsigned)reader->data[start + 0] | ((unsigned)reader->data[start + 1] << 8u); + reader->buffer >>= (reader->bp & 7u); + } else { + reader->buffer = 0; + if(start + 0u < size) reader->buffer = reader->data[start + 0]; + reader->buffer >>= (reader->bp & 7u); + } + (void)nbits; +} + +/*See ensureBits documentation above. This one ensures up to 17 bits */ +static LODEPNG_INLINE void ensureBits17(LodePNGBitReader* reader, size_t nbits) { + size_t start = reader->bp >> 3u; + size_t size = reader->size; + if(start + 2u < size) { + reader->buffer = (unsigned)reader->data[start + 0] | ((unsigned)reader->data[start + 1] << 8u) | + ((unsigned)reader->data[start + 2] << 16u); + reader->buffer >>= (reader->bp & 7u); + } else { + reader->buffer = 0; + if(start + 0u < size) reader->buffer |= reader->data[start + 0]; + if(start + 1u < size) reader->buffer |= ((unsigned)reader->data[start + 1] << 8u); + reader->buffer >>= (reader->bp & 7u); + } + (void)nbits; +} + +/*See ensureBits documentation above. This one ensures up to 25 bits */ +static LODEPNG_INLINE void ensureBits25(LodePNGBitReader* reader, size_t nbits) { + size_t start = reader->bp >> 3u; + size_t size = reader->size; + if(start + 3u < size) { + reader->buffer = (unsigned)reader->data[start + 0] | ((unsigned)reader->data[start + 1] << 8u) | + ((unsigned)reader->data[start + 2] << 16u) | ((unsigned)reader->data[start + 3] << 24u); + reader->buffer >>= (reader->bp & 7u); + } else { + reader->buffer = 0; + if(start + 0u < size) reader->buffer |= reader->data[start + 0]; + if(start + 1u < size) reader->buffer |= ((unsigned)reader->data[start + 1] << 8u); + if(start + 2u < size) reader->buffer |= ((unsigned)reader->data[start + 2] << 16u); + reader->buffer >>= (reader->bp & 7u); + } + (void)nbits; +} + +/*See ensureBits documentation above. This one ensures up to 32 bits */ +static LODEPNG_INLINE void ensureBits32(LodePNGBitReader* reader, size_t nbits) { + size_t start = reader->bp >> 3u; + size_t size = reader->size; + if(start + 4u < size) { + reader->buffer = (unsigned)reader->data[start + 0] | ((unsigned)reader->data[start + 1] << 8u) | + ((unsigned)reader->data[start + 2] << 16u) | ((unsigned)reader->data[start + 3] << 24u); + reader->buffer >>= (reader->bp & 7u); + reader->buffer |= (((unsigned)reader->data[start + 4] << 24u) << (8u - (reader->bp & 7u))); + } else { + reader->buffer = 0; + if(start + 0u < size) reader->buffer |= reader->data[start + 0]; + if(start + 1u < size) reader->buffer |= ((unsigned)reader->data[start + 1] << 8u); + if(start + 2u < size) reader->buffer |= ((unsigned)reader->data[start + 2] << 16u); + if(start + 3u < size) reader->buffer |= ((unsigned)reader->data[start + 3] << 24u); + reader->buffer >>= (reader->bp & 7u); + } + (void)nbits; +} + +/* Get bits without advancing the bit pointer. Must have enough bits available with ensureBits. Max nbits is 31. */ +static LODEPNG_INLINE unsigned peekBits(LodePNGBitReader* reader, size_t nbits) { + /* The shift allows nbits to be only up to 31. */ + return reader->buffer & ((1u << nbits) - 1u); +} + +/* Must have enough bits available with ensureBits */ +static LODEPNG_INLINE void advanceBits(LodePNGBitReader* reader, size_t nbits) { + reader->buffer >>= nbits; + reader->bp += nbits; +} + +/* Must have enough bits available with ensureBits */ +static LODEPNG_INLINE unsigned readBits(LodePNGBitReader* reader, size_t nbits) { + unsigned result = peekBits(reader, nbits); + advanceBits(reader, nbits); + return result; +} +#endif /*LODEPNG_COMPILE_DECODER*/ + +static unsigned reverseBits(unsigned bits, unsigned num) { + /*TODO: implement faster lookup table based version when needed*/ + unsigned i, result = 0; + for(i = 0; i < num; i++) result |= ((bits >> (num - i - 1u)) & 1u) << i; + return result; +} + +/* ////////////////////////////////////////////////////////////////////////// */ +/* / Deflate - Huffman / */ +/* ////////////////////////////////////////////////////////////////////////// */ + +#define FIRST_LENGTH_CODE_INDEX 257 +#define LAST_LENGTH_CODE_INDEX 285 +/*256 literals, the end code, some length codes, and 2 unused codes*/ +#define NUM_DEFLATE_CODE_SYMBOLS 288 +/*the distance codes have their own symbols, 30 used, 2 unused*/ +#define NUM_DISTANCE_SYMBOLS 32 +/*the code length codes. 0-15: code lengths, 16: copy previous 3-6 times, 17: 3-10 zeros, 18: 11-138 zeros*/ +#define NUM_CODE_LENGTH_CODES 19 + +/*the base lengths represented by codes 257-285*/ +static const unsigned LENGTHBASE[29] + = {3, 4, 5, 6, 7, 8, 9, 10, 11, 13, 15, 17, 19, 23, 27, 31, 35, 43, 51, 59, + 67, 83, 99, 115, 131, 163, 195, 227, 258}; + +/*the extra bits used by codes 257-285 (added to base length)*/ +static const unsigned LENGTHEXTRA[29] + = {0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3, + 4, 4, 4, 4, 5, 5, 5, 5, 0}; + +/*the base backwards distances (the bits of distance codes appear after length codes and use their own huffman tree)*/ +static const unsigned DISTANCEBASE[30] + = {1, 2, 3, 4, 5, 7, 9, 13, 17, 25, 33, 49, 65, 97, 129, 193, 257, 385, 513, + 769, 1025, 1537, 2049, 3073, 4097, 6145, 8193, 12289, 16385, 24577}; + +/*the extra bits of backwards distances (added to base)*/ +static const unsigned DISTANCEEXTRA[30] + = {0, 0, 0, 0, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8, + 8, 9, 9, 10, 10, 11, 11, 12, 12, 13, 13}; + +/*the order in which "code length alphabet code lengths" are stored as specified by deflate, out of this the huffman +tree of the dynamic huffman tree lengths is generated*/ +static const unsigned CLCL_ORDER[NUM_CODE_LENGTH_CODES] + = {16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15}; + +/* ////////////////////////////////////////////////////////////////////////// */ + +/* +Huffman tree struct, containing multiple representations of the tree +*/ +typedef struct HuffmanTree { + unsigned* codes; /*the huffman codes (bit patterns representing the symbols)*/ + unsigned* lengths; /*the lengths of the huffman codes*/ + unsigned maxbitlen; /*maximum number of bits a single code can get*/ + unsigned numcodes; /*number of symbols in the alphabet = number of codes*/ + /* for reading only */ + unsigned char* table_len; /*length of symbol from lookup table, or max length if secondary lookup needed*/ + unsigned short* table_value; /*value of symbol from lookup table, or pointer to secondary table if needed*/ +} HuffmanTree; + +static void HuffmanTree_init(HuffmanTree* tree) { + tree->codes = 0; + tree->lengths = 0; + tree->table_len = 0; + tree->table_value = 0; +} + +static void HuffmanTree_cleanup(HuffmanTree* tree) { + lodepng_free(tree->codes); + lodepng_free(tree->lengths); + lodepng_free(tree->table_len); + lodepng_free(tree->table_value); +} + +/* amount of bits for first huffman table lookup (aka root bits), see HuffmanTree_makeTable and huffmanDecodeSymbol.*/ +/* values 8u and 9u work the fastest */ +#define FIRSTBITS 9u + +/* a symbol value too big to represent any valid symbol, to indicate reading disallowed huffman bits combination, +which is possible in case of only 0 or 1 present symbols. */ +#define INVALIDSYMBOL 65535u + +/* make table for huffman decoding */ +static unsigned HuffmanTree_makeTable(HuffmanTree* tree) { + static const unsigned headsize = 1u << FIRSTBITS; /*size of the first table*/ + static const unsigned mask = (1u << FIRSTBITS) /*headsize*/ - 1u; + size_t i, numpresent, pointer, size; /*total table size*/ + unsigned* maxlens = (unsigned*)lodepng_malloc(headsize * sizeof(unsigned)); + if(!maxlens) return 83; /*alloc fail*/ + + /* compute maxlens: max total bit length of symbols sharing prefix in the first table*/ + lodepng_memset(maxlens, 0, headsize * sizeof(*maxlens)); + for(i = 0; i < tree->numcodes; i++) { + unsigned symbol = tree->codes[i]; + unsigned l = tree->lengths[i]; + unsigned index; + if(l <= FIRSTBITS) continue; /*symbols that fit in first table don't increase secondary table size*/ + /*get the FIRSTBITS MSBs, the MSBs of the symbol are encoded first. See later comment about the reversing*/ + index = reverseBits(symbol >> (l - FIRSTBITS), FIRSTBITS); + maxlens[index] = LODEPNG_MAX(maxlens[index], l); + } + /* compute total table size: size of first table plus all secondary tables for symbols longer than FIRSTBITS */ + size = headsize; + for(i = 0; i < headsize; ++i) { + unsigned l = maxlens[i]; + if(l > FIRSTBITS) size += (1u << (l - FIRSTBITS)); + } + tree->table_len = (unsigned char*)lodepng_malloc(size * sizeof(*tree->table_len)); + tree->table_value = (unsigned short*)lodepng_malloc(size * sizeof(*tree->table_value)); + if(!tree->table_len || !tree->table_value) { + lodepng_free(maxlens); + /* freeing tree->table values is done at a higher scope */ + return 83; /*alloc fail*/ + } + /*initialize with an invalid length to indicate unused entries*/ + for(i = 0; i < size; ++i) tree->table_len[i] = 16; + + /*fill in the first table for long symbols: max prefix size and pointer to secondary tables*/ + pointer = headsize; + for(i = 0; i < headsize; ++i) { + unsigned l = maxlens[i]; + if(l <= FIRSTBITS) continue; + tree->table_len[i] = l; + tree->table_value[i] = pointer; + pointer += (1u << (l - FIRSTBITS)); + } + lodepng_free(maxlens); + + /*fill in the first table for short symbols, or secondary table for long symbols*/ + numpresent = 0; + for(i = 0; i < tree->numcodes; ++i) { + unsigned l = tree->lengths[i]; + unsigned symbol, reverse; + if(l == 0) continue; + symbol = tree->codes[i]; /*the huffman bit pattern. i itself is the value.*/ + /*reverse bits, because the huffman bits are given in MSB first order but the bit reader reads LSB first*/ + reverse = reverseBits(symbol, l); + numpresent++; + + if(l <= FIRSTBITS) { + /*short symbol, fully in first table, replicated num times if l < FIRSTBITS*/ + unsigned num = 1u << (FIRSTBITS - l); + unsigned j; + for(j = 0; j < num; ++j) { + /*bit reader will read the l bits of symbol first, the remaining FIRSTBITS - l bits go to the MSB's*/ + unsigned index = reverse | (j << l); + if(tree->table_len[index] != 16) return 55; /*invalid tree: long symbol shares prefix with short symbol*/ + tree->table_len[index] = l; + tree->table_value[index] = i; + } + } else { + /*long symbol, shares prefix with other long symbols in first lookup table, needs second lookup*/ + /*the FIRSTBITS MSBs of the symbol are the first table index*/ + unsigned index = reverse & mask; + unsigned maxlen = tree->table_len[index]; + /*log2 of secondary table length, should be >= l - FIRSTBITS*/ + unsigned tablelen = maxlen - FIRSTBITS; + unsigned start = tree->table_value[index]; /*starting index in secondary table*/ + unsigned num = 1u << (tablelen - (l - FIRSTBITS)); /*amount of entries of this symbol in secondary table*/ + unsigned j; + if(maxlen < l) return 55; /*invalid tree: long symbol shares prefix with short symbol*/ + for(j = 0; j < num; ++j) { + unsigned reverse2 = reverse >> FIRSTBITS; /* l - FIRSTBITS bits */ + unsigned index2 = start + (reverse2 | (j << (l - FIRSTBITS))); + tree->table_len[index2] = l; + tree->table_value[index2] = i; + } + } + } + + if(numpresent < 2) { + /* In case of exactly 1 symbol, in theory the huffman symbol needs 0 bits, + but deflate uses 1 bit instead. In case of 0 symbols, no symbols can + appear at all, but such huffman tree could still exist (e.g. if distance + codes are never used). In both cases, not all symbols of the table will be + filled in. Fill them in with an invalid symbol value so returning them from + huffmanDecodeSymbol will cause error. */ + for(i = 0; i < size; ++i) { + if(tree->table_len[i] == 16) { + /* As length, use a value smaller than FIRSTBITS for the head table, + and a value larger than FIRSTBITS for the secondary table, to ensure + valid behavior for advanceBits when reading this symbol. */ + tree->table_len[i] = (i < headsize) ? 1 : (FIRSTBITS + 1); + tree->table_value[i] = INVALIDSYMBOL; + } + } + } else { + /* A good huffman tree has N * 2 - 1 nodes, of which N - 1 are internal nodes. + If that is not the case (due to too long length codes), the table will not + have been fully used, and this is an error (not all bit combinations can be + decoded): an oversubscribed huffman tree, indicated by error 55. */ + for(i = 0; i < size; ++i) { + if(tree->table_len[i] == 16) return 55; + } + } + + return 0; +} + +/* +Second step for the ...makeFromLengths and ...makeFromFrequencies functions. +numcodes, lengths and maxbitlen must already be filled in correctly. return +value is error. +*/ +static unsigned HuffmanTree_makeFromLengths2(HuffmanTree* tree) { + unsigned* blcount; + unsigned* nextcode; + unsigned error = 0; + unsigned bits, n; + + tree->codes = (unsigned*)lodepng_malloc(tree->numcodes * sizeof(unsigned)); + blcount = (unsigned*)lodepng_malloc((tree->maxbitlen + 1) * sizeof(unsigned)); + nextcode = (unsigned*)lodepng_malloc((tree->maxbitlen + 1) * sizeof(unsigned)); + if(!tree->codes || !blcount || !nextcode) error = 83; /*alloc fail*/ + + if(!error) { + for(n = 0; n != tree->maxbitlen + 1; n++) blcount[n] = nextcode[n] = 0; + /*step 1: count number of instances of each code length*/ + for(bits = 0; bits != tree->numcodes; ++bits) ++blcount[tree->lengths[bits]]; + /*step 2: generate the nextcode values*/ + for(bits = 1; bits <= tree->maxbitlen; ++bits) { + nextcode[bits] = (nextcode[bits - 1] + blcount[bits - 1]) << 1u; + } + /*step 3: generate all the codes*/ + for(n = 0; n != tree->numcodes; ++n) { + if(tree->lengths[n] != 0) { + tree->codes[n] = nextcode[tree->lengths[n]]++; + /*remove superfluous bits from the code*/ + tree->codes[n] &= ((1u << tree->lengths[n]) - 1u); + } + } + } + + lodepng_free(blcount); + lodepng_free(nextcode); + + if(!error) error = HuffmanTree_makeTable(tree); + return error; +} + +/* +given the code lengths (as stored in the PNG file), generate the tree as defined +by Deflate. maxbitlen is the maximum bits that a code in the tree can have. +return value is error. +*/ +static unsigned HuffmanTree_makeFromLengths(HuffmanTree* tree, const unsigned* bitlen, + size_t numcodes, unsigned maxbitlen) { + unsigned i; + tree->lengths = (unsigned*)lodepng_malloc(numcodes * sizeof(unsigned)); + if(!tree->lengths) return 83; /*alloc fail*/ + for(i = 0; i != numcodes; ++i) tree->lengths[i] = bitlen[i]; + tree->numcodes = (unsigned)numcodes; /*number of symbols*/ + tree->maxbitlen = maxbitlen; + return HuffmanTree_makeFromLengths2(tree); +} + +#ifdef LODEPNG_COMPILE_ENCODER + +/*BPM: Boundary Package Merge, see "A Fast and Space-Economical Algorithm for Length-Limited Coding", +Jyrki Katajainen, Alistair Moffat, Andrew Turpin, 1995.*/ + +/*chain node for boundary package merge*/ +typedef struct BPMNode { + int weight; /*the sum of all weights in this chain*/ + unsigned index; /*index of this leaf node (called "count" in the paper)*/ + struct BPMNode* tail; /*the next nodes in this chain (null if last)*/ + int in_use; +} BPMNode; + +/*lists of chains*/ +typedef struct BPMLists { + /*memory pool*/ + unsigned memsize; + BPMNode* memory; + unsigned numfree; + unsigned nextfree; + BPMNode** freelist; + /*two heads of lookahead chains per list*/ + unsigned listsize; + BPMNode** chains0; + BPMNode** chains1; +} BPMLists; + +/*creates a new chain node with the given parameters, from the memory in the lists */ +static BPMNode* bpmnode_create(BPMLists* lists, int weight, unsigned index, BPMNode* tail) { + unsigned i; + BPMNode* result; + + /*memory full, so garbage collect*/ + if(lists->nextfree >= lists->numfree) { + /*mark only those that are in use*/ + for(i = 0; i != lists->memsize; ++i) lists->memory[i].in_use = 0; + for(i = 0; i != lists->listsize; ++i) { + BPMNode* node; + for(node = lists->chains0[i]; node != 0; node = node->tail) node->in_use = 1; + for(node = lists->chains1[i]; node != 0; node = node->tail) node->in_use = 1; + } + /*collect those that are free*/ + lists->numfree = 0; + for(i = 0; i != lists->memsize; ++i) { + if(!lists->memory[i].in_use) lists->freelist[lists->numfree++] = &lists->memory[i]; + } + lists->nextfree = 0; + } + + result = lists->freelist[lists->nextfree++]; + result->weight = weight; + result->index = index; + result->tail = tail; + return result; +} + +/*sort the leaves with stable mergesort*/ +static void bpmnode_sort(BPMNode* leaves, size_t num) { + BPMNode* mem = (BPMNode*)lodepng_malloc(sizeof(*leaves) * num); + size_t width, counter = 0; + for(width = 1; width < num; width *= 2) { + BPMNode* a = (counter & 1) ? mem : leaves; + BPMNode* b = (counter & 1) ? leaves : mem; + size_t p; + for(p = 0; p < num; p += 2 * width) { + size_t q = (p + width > num) ? num : (p + width); + size_t r = (p + 2 * width > num) ? num : (p + 2 * width); + size_t i = p, j = q, k; + for(k = p; k < r; k++) { + if(i < q && (j >= r || a[i].weight <= a[j].weight)) b[k] = a[i++]; + else b[k] = a[j++]; + } + } + counter++; + } + if(counter & 1) lodepng_memcpy(leaves, mem, sizeof(*leaves) * num); + lodepng_free(mem); +} + +/*Boundary Package Merge step, numpresent is the amount of leaves, and c is the current chain.*/ +static void boundaryPM(BPMLists* lists, BPMNode* leaves, size_t numpresent, int c, int num) { + unsigned lastindex = lists->chains1[c]->index; + + if(c == 0) { + if(lastindex >= numpresent) return; + lists->chains0[c] = lists->chains1[c]; + lists->chains1[c] = bpmnode_create(lists, leaves[lastindex].weight, lastindex + 1, 0); + } else { + /*sum of the weights of the head nodes of the previous lookahead chains.*/ + int sum = lists->chains0[c - 1]->weight + lists->chains1[c - 1]->weight; + lists->chains0[c] = lists->chains1[c]; + if(lastindex < numpresent && sum > leaves[lastindex].weight) { + lists->chains1[c] = bpmnode_create(lists, leaves[lastindex].weight, lastindex + 1, lists->chains1[c]->tail); + return; + } + lists->chains1[c] = bpmnode_create(lists, sum, lastindex, lists->chains1[c - 1]); + /*in the end we are only interested in the chain of the last list, so no + need to recurse if we're at the last one (this gives measurable speedup)*/ + if(num + 1 < (int)(2 * numpresent - 2)) { + boundaryPM(lists, leaves, numpresent, c - 1, num); + boundaryPM(lists, leaves, numpresent, c - 1, num); + } + } +} + +unsigned lodepng_huffman_code_lengths(unsigned* lengths, const unsigned* frequencies, + size_t numcodes, unsigned maxbitlen) { + unsigned error = 0; + unsigned i; + size_t numpresent = 0; /*number of symbols with non-zero frequency*/ + BPMNode* leaves; /*the symbols, only those with > 0 frequency*/ + + if(numcodes == 0) return 80; /*error: a tree of 0 symbols is not supposed to be made*/ + if((1u << maxbitlen) < (unsigned)numcodes) return 80; /*error: represent all symbols*/ + + leaves = (BPMNode*)lodepng_malloc(numcodes * sizeof(*leaves)); + if(!leaves) return 83; /*alloc fail*/ + + for(i = 0; i != numcodes; ++i) { + if(frequencies[i] > 0) { + leaves[numpresent].weight = (int)frequencies[i]; + leaves[numpresent].index = i; + ++numpresent; + } + } + + lodepng_memset(lengths, 0, numcodes * sizeof(*lengths)); + + /*ensure at least two present symbols. There should be at least one symbol + according to RFC 1951 section 3.2.7. Some decoders incorrectly require two. To + make these work as well ensure there are at least two symbols. The + Package-Merge code below also doesn't work correctly if there's only one + symbol, it'd give it the theoretical 0 bits but in practice zlib wants 1 bit*/ + if(numpresent == 0) { + lengths[0] = lengths[1] = 1; /*note that for RFC 1951 section 3.2.7, only lengths[0] = 1 is needed*/ + } else if(numpresent == 1) { + lengths[leaves[0].index] = 1; + lengths[leaves[0].index == 0 ? 1 : 0] = 1; + } else { + BPMLists lists; + BPMNode* node; + + bpmnode_sort(leaves, numpresent); + + lists.listsize = maxbitlen; + lists.memsize = 2 * maxbitlen * (maxbitlen + 1); + lists.nextfree = 0; + lists.numfree = lists.memsize; + lists.memory = (BPMNode*)lodepng_malloc(lists.memsize * sizeof(*lists.memory)); + lists.freelist = (BPMNode**)lodepng_malloc(lists.memsize * sizeof(BPMNode*)); + lists.chains0 = (BPMNode**)lodepng_malloc(lists.listsize * sizeof(BPMNode*)); + lists.chains1 = (BPMNode**)lodepng_malloc(lists.listsize * sizeof(BPMNode*)); + if(!lists.memory || !lists.freelist || !lists.chains0 || !lists.chains1) error = 83; /*alloc fail*/ + + if(!error) { + for(i = 0; i != lists.memsize; ++i) lists.freelist[i] = &lists.memory[i]; + + bpmnode_create(&lists, leaves[0].weight, 1, 0); + bpmnode_create(&lists, leaves[1].weight, 2, 0); + + for(i = 0; i != lists.listsize; ++i) { + lists.chains0[i] = &lists.memory[0]; + lists.chains1[i] = &lists.memory[1]; + } + + /*each boundaryPM call adds one chain to the last list, and we need 2 * numpresent - 2 chains.*/ + for(i = 2; i != 2 * numpresent - 2; ++i) boundaryPM(&lists, leaves, numpresent, (int)maxbitlen - 1, (int)i); + + for(node = lists.chains1[maxbitlen - 1]; node; node = node->tail) { + for(i = 0; i != node->index; ++i) ++lengths[leaves[i].index]; + } + } + + lodepng_free(lists.memory); + lodepng_free(lists.freelist); + lodepng_free(lists.chains0); + lodepng_free(lists.chains1); + } + + lodepng_free(leaves); + return error; +} + +/*Create the Huffman tree given the symbol frequencies*/ +static unsigned HuffmanTree_makeFromFrequencies(HuffmanTree* tree, const unsigned* frequencies, + size_t mincodes, size_t numcodes, unsigned maxbitlen) { + unsigned error = 0; + while(!frequencies[numcodes - 1] && numcodes > mincodes) --numcodes; /*trim zeroes*/ + tree->lengths = (unsigned*)lodepng_malloc(numcodes * sizeof(unsigned)); + if(!tree->lengths) return 83; /*alloc fail*/ + tree->maxbitlen = maxbitlen; + tree->numcodes = (unsigned)numcodes; /*number of symbols*/ + + error = lodepng_huffman_code_lengths(tree->lengths, frequencies, numcodes, maxbitlen); + if(!error) error = HuffmanTree_makeFromLengths2(tree); + return error; +} +#endif /*LODEPNG_COMPILE_ENCODER*/ + +/*get the literal and length code tree of a deflated block with fixed tree, as per the deflate specification*/ +static unsigned generateFixedLitLenTree(HuffmanTree* tree) { + unsigned i, error = 0; + unsigned* bitlen = (unsigned*)lodepng_malloc(NUM_DEFLATE_CODE_SYMBOLS * sizeof(unsigned)); + if(!bitlen) return 83; /*alloc fail*/ + + /*288 possible codes: 0-255=literals, 256=endcode, 257-285=lengthcodes, 286-287=unused*/ + for(i = 0; i <= 143; ++i) bitlen[i] = 8; + for(i = 144; i <= 255; ++i) bitlen[i] = 9; + for(i = 256; i <= 279; ++i) bitlen[i] = 7; + for(i = 280; i <= 287; ++i) bitlen[i] = 8; + + error = HuffmanTree_makeFromLengths(tree, bitlen, NUM_DEFLATE_CODE_SYMBOLS, 15); + + lodepng_free(bitlen); + return error; +} + +/*get the distance code tree of a deflated block with fixed tree, as specified in the deflate specification*/ +static unsigned generateFixedDistanceTree(HuffmanTree* tree) { + unsigned i, error = 0; + unsigned* bitlen = (unsigned*)lodepng_malloc(NUM_DISTANCE_SYMBOLS * sizeof(unsigned)); + if(!bitlen) return 83; /*alloc fail*/ + + /*there are 32 distance codes, but 30-31 are unused*/ + for(i = 0; i != NUM_DISTANCE_SYMBOLS; ++i) bitlen[i] = 5; + error = HuffmanTree_makeFromLengths(tree, bitlen, NUM_DISTANCE_SYMBOLS, 15); + + lodepng_free(bitlen); + return error; +} + +#ifdef LODEPNG_COMPILE_DECODER + +/* +returns the code. The bit reader must already have been ensured at least 15 bits +*/ +static unsigned huffmanDecodeSymbol(LodePNGBitReader* reader, const HuffmanTree* codetree) { + unsigned short code = peekBits(reader, FIRSTBITS); + unsigned short l = codetree->table_len[code]; + unsigned short value = codetree->table_value[code]; + if(l <= FIRSTBITS) { + advanceBits(reader, l); + return value; + } else { + advanceBits(reader, FIRSTBITS); + value += peekBits(reader, l - FIRSTBITS); + advanceBits(reader, codetree->table_len[value] - FIRSTBITS); + return codetree->table_value[value]; + } +} +#endif /*LODEPNG_COMPILE_DECODER*/ + +#ifdef LODEPNG_COMPILE_DECODER + +/* ////////////////////////////////////////////////////////////////////////// */ +/* / Inflator (Decompressor) / */ +/* ////////////////////////////////////////////////////////////////////////// */ + +/*get the tree of a deflated block with fixed tree, as specified in the deflate specification +Returns error code.*/ +static unsigned getTreeInflateFixed(HuffmanTree* tree_ll, HuffmanTree* tree_d) { + unsigned error = generateFixedLitLenTree(tree_ll); + if(error) return error; + return generateFixedDistanceTree(tree_d); +} + +/*get the tree of a deflated block with dynamic tree, the tree itself is also Huffman compressed with a known tree*/ +static unsigned getTreeInflateDynamic(HuffmanTree* tree_ll, HuffmanTree* tree_d, + LodePNGBitReader* reader) { + /*make sure that length values that aren't filled in will be 0, or a wrong tree will be generated*/ + unsigned error = 0; + unsigned n, HLIT, HDIST, HCLEN, i; + + /*see comments in deflateDynamic for explanation of the context and these variables, it is analogous*/ + unsigned* bitlen_ll = 0; /*lit,len code lengths*/ + unsigned* bitlen_d = 0; /*dist code lengths*/ + /*code length code lengths ("clcl"), the bit lengths of the huffman tree used to compress bitlen_ll and bitlen_d*/ + unsigned* bitlen_cl = 0; + HuffmanTree tree_cl; /*the code tree for code length codes (the huffman tree for compressed huffman trees)*/ + + if(reader->bitsize - reader->bp < 14) return 49; /*error: the bit pointer is or will go past the memory*/ + ensureBits17(reader, 14); + + /*number of literal/length codes + 257. Unlike the spec, the value 257 is added to it here already*/ + HLIT = readBits(reader, 5) + 257; + /*number of distance codes. Unlike the spec, the value 1 is added to it here already*/ + HDIST = readBits(reader, 5) + 1; + /*number of code length codes. Unlike the spec, the value 4 is added to it here already*/ + HCLEN = readBits(reader, 4) + 4; + + bitlen_cl = (unsigned*)lodepng_malloc(NUM_CODE_LENGTH_CODES * sizeof(unsigned)); + if(!bitlen_cl) return 83 /*alloc fail*/; + + HuffmanTree_init(&tree_cl); + + while(!error) { + /*read the code length codes out of 3 * (amount of code length codes) bits*/ + if(lodepng_gtofl(reader->bp, HCLEN * 3, reader->bitsize)) { + ERROR_BREAK(50); /*error: the bit pointer is or will go past the memory*/ + } + for(i = 0; i != HCLEN; ++i) { + ensureBits9(reader, 3); /*out of bounds already checked above */ + bitlen_cl[CLCL_ORDER[i]] = readBits(reader, 3); + } + for(i = HCLEN; i != NUM_CODE_LENGTH_CODES; ++i) { + bitlen_cl[CLCL_ORDER[i]] = 0; + } + + error = HuffmanTree_makeFromLengths(&tree_cl, bitlen_cl, NUM_CODE_LENGTH_CODES, 7); + if(error) break; + + /*now we can use this tree to read the lengths for the tree that this function will return*/ + bitlen_ll = (unsigned*)lodepng_malloc(NUM_DEFLATE_CODE_SYMBOLS * sizeof(unsigned)); + bitlen_d = (unsigned*)lodepng_malloc(NUM_DISTANCE_SYMBOLS * sizeof(unsigned)); + if(!bitlen_ll || !bitlen_d) ERROR_BREAK(83 /*alloc fail*/); + lodepng_memset(bitlen_ll, 0, NUM_DEFLATE_CODE_SYMBOLS * sizeof(*bitlen_ll)); + lodepng_memset(bitlen_d, 0, NUM_DISTANCE_SYMBOLS * sizeof(*bitlen_d)); + + /*i is the current symbol we're reading in the part that contains the code lengths of lit/len and dist codes*/ + i = 0; + while(i < HLIT + HDIST) { + unsigned code; + ensureBits25(reader, 22); /* up to 15 bits for huffman code, up to 7 extra bits below*/ + code = huffmanDecodeSymbol(reader, &tree_cl); + if(code <= 15) /*a length code*/ { + if(i < HLIT) bitlen_ll[i] = code; + else bitlen_d[i - HLIT] = code; + ++i; + } else if(code == 16) /*repeat previous*/ { + unsigned replength = 3; /*read in the 2 bits that indicate repeat length (3-6)*/ + unsigned value; /*set value to the previous code*/ + + if(i == 0) ERROR_BREAK(54); /*can't repeat previous if i is 0*/ + + replength += readBits(reader, 2); + + if(i < HLIT + 1) value = bitlen_ll[i - 1]; + else value = bitlen_d[i - HLIT - 1]; + /*repeat this value in the next lengths*/ + for(n = 0; n < replength; ++n) { + if(i >= HLIT + HDIST) ERROR_BREAK(13); /*error: i is larger than the amount of codes*/ + if(i < HLIT) bitlen_ll[i] = value; + else bitlen_d[i - HLIT] = value; + ++i; + } + } else if(code == 17) /*repeat "0" 3-10 times*/ { + unsigned replength = 3; /*read in the bits that indicate repeat length*/ + replength += readBits(reader, 3); + + /*repeat this value in the next lengths*/ + for(n = 0; n < replength; ++n) { + if(i >= HLIT + HDIST) ERROR_BREAK(14); /*error: i is larger than the amount of codes*/ + + if(i < HLIT) bitlen_ll[i] = 0; + else bitlen_d[i - HLIT] = 0; + ++i; + } + } else if(code == 18) /*repeat "0" 11-138 times*/ { + unsigned replength = 11; /*read in the bits that indicate repeat length*/ + replength += readBits(reader, 7); + + /*repeat this value in the next lengths*/ + for(n = 0; n < replength; ++n) { + if(i >= HLIT + HDIST) ERROR_BREAK(15); /*error: i is larger than the amount of codes*/ + + if(i < HLIT) bitlen_ll[i] = 0; + else bitlen_d[i - HLIT] = 0; + ++i; + } + } else /*if(code == INVALIDSYMBOL)*/ { + ERROR_BREAK(16); /*error: tried to read disallowed huffman symbol*/ + } + /*check if any of the ensureBits above went out of bounds*/ + if(reader->bp > reader->bitsize) { + /*return error code 10 or 11 depending on the situation that happened in huffmanDecodeSymbol + (10=no endcode, 11=wrong jump outside of tree)*/ + /* TODO: revise error codes 10,11,50: the above comment is no longer valid */ + ERROR_BREAK(50); /*error, bit pointer jumps past memory*/ + } + } + if(error) break; + + if(bitlen_ll[256] == 0) ERROR_BREAK(64); /*the length of the end code 256 must be larger than 0*/ + + /*now we've finally got HLIT and HDIST, so generate the code trees, and the function is done*/ + error = HuffmanTree_makeFromLengths(tree_ll, bitlen_ll, NUM_DEFLATE_CODE_SYMBOLS, 15); + if(error) break; + error = HuffmanTree_makeFromLengths(tree_d, bitlen_d, NUM_DISTANCE_SYMBOLS, 15); + + break; /*end of error-while*/ + } + + lodepng_free(bitlen_cl); + lodepng_free(bitlen_ll); + lodepng_free(bitlen_d); + HuffmanTree_cleanup(&tree_cl); + + return error; +} + +/*inflate a block with dynamic of fixed Huffman tree. btype must be 1 or 2.*/ +static unsigned inflateHuffmanBlock(ucvector* out, LodePNGBitReader* reader, + unsigned btype, size_t max_output_size) { + unsigned error = 0; + HuffmanTree tree_ll; /*the huffman tree for literal and length codes*/ + HuffmanTree tree_d; /*the huffman tree for distance codes*/ + const size_t reserved_size = 260; /* must be at least 258 for max length, and a few extra for adding a few extra literals */ + int done = 0; + + if(!ucvector_reserve(out, out->size + reserved_size)) return 83; /*alloc fail*/ + + HuffmanTree_init(&tree_ll); + HuffmanTree_init(&tree_d); + + if(btype == 1) error = getTreeInflateFixed(&tree_ll, &tree_d); + else /*if(btype == 2)*/ error = getTreeInflateDynamic(&tree_ll, &tree_d, reader); + + + while(!error && !done) /*decode all symbols until end reached, breaks at end code*/ { + /*code_ll is literal, length or end code*/ + unsigned code_ll; + /* ensure enough bits for 2 huffman code reads (15 bits each): if the first is a literal, a second literal is read at once. This + appears to be slightly faster, than ensuring 20 bits here for 1 huffman symbol and the potential 5 extra bits for the length symbol.*/ + ensureBits32(reader, 30); + code_ll = huffmanDecodeSymbol(reader, &tree_ll); + if(code_ll <= 255) { + /*slightly faster code path if multiple literals in a row*/ + out->data[out->size++] = (unsigned char)code_ll; + code_ll = huffmanDecodeSymbol(reader, &tree_ll); + } + if(code_ll <= 255) /*literal symbol*/ { + out->data[out->size++] = (unsigned char)code_ll; + } else if(code_ll >= FIRST_LENGTH_CODE_INDEX && code_ll <= LAST_LENGTH_CODE_INDEX) /*length code*/ { + unsigned code_d, distance; + unsigned numextrabits_l, numextrabits_d; /*extra bits for length and distance*/ + size_t start, backward, length; + + /*part 1: get length base*/ + length = LENGTHBASE[code_ll - FIRST_LENGTH_CODE_INDEX]; + + /*part 2: get extra bits and add the value of that to length*/ + numextrabits_l = LENGTHEXTRA[code_ll - FIRST_LENGTH_CODE_INDEX]; + if(numextrabits_l != 0) { + /* bits already ensured above */ + ensureBits25(reader, 5); + length += readBits(reader, numextrabits_l); + } + + /*part 3: get distance code*/ + ensureBits32(reader, 28); /* up to 15 for the huffman symbol, up to 13 for the extra bits */ + code_d = huffmanDecodeSymbol(reader, &tree_d); + if(code_d > 29) { + if(code_d <= 31) { + ERROR_BREAK(18); /*error: invalid distance code (30-31 are never used)*/ + } else /* if(code_d == INVALIDSYMBOL) */{ + ERROR_BREAK(16); /*error: tried to read disallowed huffman symbol*/ + } + } + distance = DISTANCEBASE[code_d]; + + /*part 4: get extra bits from distance*/ + numextrabits_d = DISTANCEEXTRA[code_d]; + if(numextrabits_d != 0) { + /* bits already ensured above */ + distance += readBits(reader, numextrabits_d); + } + + /*part 5: fill in all the out[n] values based on the length and dist*/ + start = out->size; + if(distance > start) ERROR_BREAK(52); /*too long backward distance*/ + backward = start - distance; + + out->size += length; + if(distance < length) { + size_t forward; + lodepng_memcpy(out->data + start, out->data + backward, distance); + start += distance; + for(forward = distance; forward < length; ++forward) { + out->data[start++] = out->data[backward++]; + } + } else { + lodepng_memcpy(out->data + start, out->data + backward, length); + } + } else if(code_ll == 256) { + done = 1; /*end code, finish the loop*/ + } else /*if(code_ll == INVALIDSYMBOL)*/ { + ERROR_BREAK(16); /*error: tried to read disallowed huffman symbol*/ + } + if(out->allocsize - out->size < reserved_size) { + if(!ucvector_reserve(out, out->size + reserved_size)) ERROR_BREAK(83); /*alloc fail*/ + } + /*check if any of the ensureBits above went out of bounds*/ + if(reader->bp > reader->bitsize) { + /*return error code 10 or 11 depending on the situation that happened in huffmanDecodeSymbol + (10=no endcode, 11=wrong jump outside of tree)*/ + /* TODO: revise error codes 10,11,50: the above comment is no longer valid */ + ERROR_BREAK(51); /*error, bit pointer jumps past memory*/ + } + if(max_output_size && out->size > max_output_size) { + ERROR_BREAK(109); /*error, larger than max size*/ + } + } + + HuffmanTree_cleanup(&tree_ll); + HuffmanTree_cleanup(&tree_d); + + return error; +} + +static unsigned inflateNoCompression(ucvector* out, LodePNGBitReader* reader, + const LodePNGDecompressSettings* settings) { + size_t bytepos; + size_t size = reader->size; + unsigned LEN, NLEN, error = 0; + + /*go to first boundary of byte*/ + bytepos = (reader->bp + 7u) >> 3u; + + /*read LEN (2 bytes) and NLEN (2 bytes)*/ + if(bytepos + 4 >= size) return 52; /*error, bit pointer will jump past memory*/ + LEN = (unsigned)reader->data[bytepos] + ((unsigned)reader->data[bytepos + 1] << 8u); bytepos += 2; + NLEN = (unsigned)reader->data[bytepos] + ((unsigned)reader->data[bytepos + 1] << 8u); bytepos += 2; + + /*check if 16-bit NLEN is really the one's complement of LEN*/ + if(!settings->ignore_nlen && LEN + NLEN != 65535) { + return 21; /*error: NLEN is not one's complement of LEN*/ + } + + if(!ucvector_resize(out, out->size + LEN)) return 83; /*alloc fail*/ + + /*read the literal data: LEN bytes are now stored in the out buffer*/ + if(bytepos + LEN > size) return 23; /*error: reading outside of in buffer*/ + + /*out->data can be NULL (when LEN is zero), and arithmetics on NULL ptr is undefined*/ + if (LEN) { + lodepng_memcpy(out->data + out->size - LEN, reader->data + bytepos, LEN); + bytepos += LEN; + } + + reader->bp = bytepos << 3u; + + return error; +} + +static unsigned lodepng_inflatev(ucvector* out, + const unsigned char* in, size_t insize, + const LodePNGDecompressSettings* settings) { + unsigned BFINAL = 0; + LodePNGBitReader reader; + unsigned error = LodePNGBitReader_init(&reader, in, insize); + + if(error) return error; + + while(!BFINAL) { + unsigned BTYPE; + if(reader.bitsize - reader.bp < 3) return 52; /*error, bit pointer will jump past memory*/ + ensureBits9(&reader, 3); + BFINAL = readBits(&reader, 1); + BTYPE = readBits(&reader, 2); + + if(BTYPE == 3) return 20; /*error: invalid BTYPE*/ + else if(BTYPE == 0) error = inflateNoCompression(out, &reader, settings); /*no compression*/ + else error = inflateHuffmanBlock(out, &reader, BTYPE, settings->max_output_size); /*compression, BTYPE 01 or 10*/ + if(!error && settings->max_output_size && out->size > settings->max_output_size) error = 109; + if(error) break; + } + + return error; +} + +unsigned lodepng_inflate(unsigned char** out, size_t* outsize, + const unsigned char* in, size_t insize, + const LodePNGDecompressSettings* settings) { + ucvector v = ucvector_init(*out, *outsize); + unsigned error = lodepng_inflatev(&v, in, insize, settings); + *out = v.data; + *outsize = v.size; + return error; +} + +static unsigned inflatev(ucvector* out, const unsigned char* in, size_t insize, + const LodePNGDecompressSettings* settings) { + if(settings->custom_inflate) { + unsigned error = settings->custom_inflate(&out->data, &out->size, in, insize, settings); + out->allocsize = out->size; + if(error) { + /*the custom inflate is allowed to have its own error codes, however, we translate it to code 110*/ + error = 110; + /*if there's a max output size, and the custom zlib returned error, then indicate that error instead*/ + if(settings->max_output_size && out->size > settings->max_output_size) error = 109; + } + return error; + } else { + return lodepng_inflatev(out, in, insize, settings); + } +} + +#endif /*LODEPNG_COMPILE_DECODER*/ + +#ifdef LODEPNG_COMPILE_ENCODER + +/* ////////////////////////////////////////////////////////////////////////// */ +/* / Deflator (Compressor) / */ +/* ////////////////////////////////////////////////////////////////////////// */ + +static const size_t MAX_SUPPORTED_DEFLATE_LENGTH = 258; + +/*search the index in the array, that has the largest value smaller than or equal to the given value, +given array must be sorted (if no value is smaller, it returns the size of the given array)*/ +static size_t searchCodeIndex(const unsigned* array, size_t array_size, size_t value) { + /*binary search (only small gain over linear). TODO: use CPU log2 instruction for getting symbols instead*/ + size_t left = 1; + size_t right = array_size - 1; + + while(left <= right) { + size_t mid = (left + right) >> 1; + if(array[mid] >= value) right = mid - 1; + else left = mid + 1; + } + if(left >= array_size || array[left] > value) left--; + return left; +} + +static void addLengthDistance(uivector* values, size_t length, size_t distance) { + /*values in encoded vector are those used by deflate: + 0-255: literal bytes + 256: end + 257-285: length/distance pair (length code, followed by extra length bits, distance code, extra distance bits) + 286-287: invalid*/ + + unsigned length_code = (unsigned)searchCodeIndex(LENGTHBASE, 29, length); + unsigned extra_length = (unsigned)(length - LENGTHBASE[length_code]); + unsigned dist_code = (unsigned)searchCodeIndex(DISTANCEBASE, 30, distance); + unsigned extra_distance = (unsigned)(distance - DISTANCEBASE[dist_code]); + + size_t pos = values->size; + /*TODO: return error when this fails (out of memory)*/ + unsigned ok = uivector_resize(values, values->size + 4); + if(ok) { + values->data[pos + 0] = length_code + FIRST_LENGTH_CODE_INDEX; + values->data[pos + 1] = extra_length; + values->data[pos + 2] = dist_code; + values->data[pos + 3] = extra_distance; + } +} + +/*3 bytes of data get encoded into two bytes. The hash cannot use more than 3 +bytes as input because 3 is the minimum match length for deflate*/ +static const unsigned HASH_NUM_VALUES = 65536; +static const unsigned HASH_BIT_MASK = 65535; /*HASH_NUM_VALUES - 1, but C90 does not like that as initializer*/ + +typedef struct Hash { + int* head; /*hash value to head circular pos - can be outdated if went around window*/ + /*circular pos to prev circular pos*/ + unsigned short* chain; + int* val; /*circular pos to hash value*/ + + /*TODO: do this not only for zeros but for any repeated byte. However for PNG + it's always going to be the zeros that dominate, so not important for PNG*/ + int* headz; /*similar to head, but for chainz*/ + unsigned short* chainz; /*those with same amount of zeros*/ + unsigned short* zeros; /*length of zeros streak, used as a second hash chain*/ +} Hash; + +static unsigned hash_init(Hash* hash, unsigned windowsize) { + unsigned i; + hash->head = (int*)lodepng_malloc(sizeof(int) * HASH_NUM_VALUES); + hash->val = (int*)lodepng_malloc(sizeof(int) * windowsize); + hash->chain = (unsigned short*)lodepng_malloc(sizeof(unsigned short) * windowsize); + + hash->zeros = (unsigned short*)lodepng_malloc(sizeof(unsigned short) * windowsize); + hash->headz = (int*)lodepng_malloc(sizeof(int) * (MAX_SUPPORTED_DEFLATE_LENGTH + 1)); + hash->chainz = (unsigned short*)lodepng_malloc(sizeof(unsigned short) * windowsize); + + if(!hash->head || !hash->chain || !hash->val || !hash->headz|| !hash->chainz || !hash->zeros) { + return 83; /*alloc fail*/ + } + + /*initialize hash table*/ + for(i = 0; i != HASH_NUM_VALUES; ++i) hash->head[i] = -1; + for(i = 0; i != windowsize; ++i) hash->val[i] = -1; + for(i = 0; i != windowsize; ++i) hash->chain[i] = i; /*same value as index indicates uninitialized*/ + + for(i = 0; i <= MAX_SUPPORTED_DEFLATE_LENGTH; ++i) hash->headz[i] = -1; + for(i = 0; i != windowsize; ++i) hash->chainz[i] = i; /*same value as index indicates uninitialized*/ + + return 0; +} + +static void hash_cleanup(Hash* hash) { + lodepng_free(hash->head); + lodepng_free(hash->val); + lodepng_free(hash->chain); + + lodepng_free(hash->zeros); + lodepng_free(hash->headz); + lodepng_free(hash->chainz); +} + + + +static unsigned getHash(const unsigned char* data, size_t size, size_t pos) { + unsigned result = 0; + if(pos + 2 < size) { + /*A simple shift and xor hash is used. Since the data of PNGs is dominated + by zeroes due to the filters, a better hash does not have a significant + effect on speed in traversing the chain, and causes more time spend on + calculating the hash.*/ + result ^= ((unsigned)data[pos + 0] << 0u); + result ^= ((unsigned)data[pos + 1] << 4u); + result ^= ((unsigned)data[pos + 2] << 8u); + } else { + size_t amount, i; + if(pos >= size) return 0; + amount = size - pos; + for(i = 0; i != amount; ++i) result ^= ((unsigned)data[pos + i] << (i * 8u)); + } + return result & HASH_BIT_MASK; +} + +static unsigned countZeros(const unsigned char* data, size_t size, size_t pos) { + const unsigned char* start = data + pos; + const unsigned char* end = start + MAX_SUPPORTED_DEFLATE_LENGTH; + if(end > data + size) end = data + size; + data = start; + while(data != end && *data == 0) ++data; + /*subtracting two addresses returned as 32-bit number (max value is MAX_SUPPORTED_DEFLATE_LENGTH)*/ + return (unsigned)(data - start); +} + +/*wpos = pos & (windowsize - 1)*/ +static void updateHashChain(Hash* hash, size_t wpos, unsigned hashval, unsigned short numzeros) { + hash->val[wpos] = (int)hashval; + if(hash->head[hashval] != -1) hash->chain[wpos] = hash->head[hashval]; + hash->head[hashval] = (int)wpos; + + hash->zeros[wpos] = numzeros; + if(hash->headz[numzeros] != -1) hash->chainz[wpos] = hash->headz[numzeros]; + hash->headz[numzeros] = (int)wpos; +} + +/* +LZ77-encode the data. Return value is error code. The input are raw bytes, the output +is in the form of unsigned integers with codes representing for example literal bytes, or +length/distance pairs. +It uses a hash table technique to let it encode faster. When doing LZ77 encoding, a +sliding window (of windowsize) is used, and all past bytes in that window can be used as +the "dictionary". A brute force search through all possible distances would be slow, and +this hash technique is one out of several ways to speed this up. +*/ +static unsigned encodeLZ77(uivector* out, Hash* hash, + const unsigned char* in, size_t inpos, size_t insize, unsigned windowsize, + unsigned minmatch, unsigned nicematch, unsigned lazymatching) { + size_t pos; + unsigned i, error = 0; + /*for large window lengths, assume the user wants no compression loss. Otherwise, max hash chain length speedup.*/ + unsigned maxchainlength = windowsize >= 8192 ? windowsize : windowsize / 8u; + unsigned maxlazymatch = windowsize >= 8192 ? MAX_SUPPORTED_DEFLATE_LENGTH : 64; + + unsigned usezeros = 1; /*not sure if setting it to false for windowsize < 8192 is better or worse*/ + unsigned numzeros = 0; + + unsigned offset; /*the offset represents the distance in LZ77 terminology*/ + unsigned length; + unsigned lazy = 0; + unsigned lazylength = 0, lazyoffset = 0; + unsigned hashval; + unsigned current_offset, current_length; + unsigned prev_offset; + const unsigned char *lastptr, *foreptr, *backptr; + unsigned hashpos; + + if(windowsize == 0 || windowsize > 32768) return 60; /*error: windowsize smaller/larger than allowed*/ + if((windowsize & (windowsize - 1)) != 0) return 90; /*error: must be power of two*/ + + if(nicematch > MAX_SUPPORTED_DEFLATE_LENGTH) nicematch = MAX_SUPPORTED_DEFLATE_LENGTH; + + for(pos = inpos; pos < insize; ++pos) { + size_t wpos = pos & (windowsize - 1); /*position for in 'circular' hash buffers*/ + unsigned chainlength = 0; + + hashval = getHash(in, insize, pos); + + if(usezeros && hashval == 0) { + if(numzeros == 0) numzeros = countZeros(in, insize, pos); + else if(pos + numzeros > insize || in[pos + numzeros - 1] != 0) --numzeros; + } else { + numzeros = 0; + } + + updateHashChain(hash, wpos, hashval, numzeros); + + /*the length and offset found for the current position*/ + length = 0; + offset = 0; + + hashpos = hash->chain[wpos]; + + lastptr = &in[insize < pos + MAX_SUPPORTED_DEFLATE_LENGTH ? insize : pos + MAX_SUPPORTED_DEFLATE_LENGTH]; + + /*search for the longest string*/ + prev_offset = 0; + for(;;) { + if(chainlength++ >= maxchainlength) break; + current_offset = (unsigned)(hashpos <= wpos ? wpos - hashpos : wpos - hashpos + windowsize); + + if(current_offset < prev_offset) break; /*stop when went completely around the circular buffer*/ + prev_offset = current_offset; + if(current_offset > 0) { + /*test the next characters*/ + foreptr = &in[pos]; + backptr = &in[pos - current_offset]; + + /*common case in PNGs is lots of zeros. Quickly skip over them as a speedup*/ + if(numzeros >= 3) { + unsigned skip = hash->zeros[hashpos]; + if(skip > numzeros) skip = numzeros; + backptr += skip; + foreptr += skip; + } + + while(foreptr != lastptr && *backptr == *foreptr) /*maximum supported length by deflate is max length*/ { + ++backptr; + ++foreptr; + } + current_length = (unsigned)(foreptr - &in[pos]); + + if(current_length > length) { + length = current_length; /*the longest length*/ + offset = current_offset; /*the offset that is related to this longest length*/ + /*jump out once a length of max length is found (speed gain). This also jumps + out if length is MAX_SUPPORTED_DEFLATE_LENGTH*/ + if(current_length >= nicematch) break; + } + } + + if(hashpos == hash->chain[hashpos]) break; + + if(numzeros >= 3 && length > numzeros) { + hashpos = hash->chainz[hashpos]; + if(hash->zeros[hashpos] != numzeros) break; + } else { + hashpos = hash->chain[hashpos]; + /*outdated hash value, happens if particular value was not encountered in whole last window*/ + if(hash->val[hashpos] != (int)hashval) break; + } + } + + if(lazymatching) { + if(!lazy && length >= 3 && length <= maxlazymatch && length < MAX_SUPPORTED_DEFLATE_LENGTH) { + lazy = 1; + lazylength = length; + lazyoffset = offset; + continue; /*try the next byte*/ + } + if(lazy) { + lazy = 0; + if(pos == 0) ERROR_BREAK(81); + if(length > lazylength + 1) { + /*push the previous character as literal*/ + if(!uivector_push_back(out, in[pos - 1])) ERROR_BREAK(83 /*alloc fail*/); + } else { + length = lazylength; + offset = lazyoffset; + hash->head[hashval] = -1; /*the same hashchain update will be done, this ensures no wrong alteration*/ + hash->headz[numzeros] = -1; /*idem*/ + --pos; + } + } + } + if(length >= 3 && offset > windowsize) ERROR_BREAK(86 /*too big (or overflown negative) offset*/); + + /*encode it as length/distance pair or literal value*/ + if(length < 3) /*only lengths of 3 or higher are supported as length/distance pair*/ { + if(!uivector_push_back(out, in[pos])) ERROR_BREAK(83 /*alloc fail*/); + } else if(length < minmatch || (length == 3 && offset > 4096)) { + /*compensate for the fact that longer offsets have more extra bits, a + length of only 3 may be not worth it then*/ + if(!uivector_push_back(out, in[pos])) ERROR_BREAK(83 /*alloc fail*/); + } else { + addLengthDistance(out, length, offset); + for(i = 1; i < length; ++i) { + ++pos; + wpos = pos & (windowsize - 1); + hashval = getHash(in, insize, pos); + if(usezeros && hashval == 0) { + if(numzeros == 0) numzeros = countZeros(in, insize, pos); + else if(pos + numzeros > insize || in[pos + numzeros - 1] != 0) --numzeros; + } else { + numzeros = 0; + } + updateHashChain(hash, wpos, hashval, numzeros); + } + } + } /*end of the loop through each character of input*/ + + return error; +} + +/* /////////////////////////////////////////////////////////////////////////// */ + +static unsigned deflateNoCompression(ucvector* out, const unsigned char* data, size_t datasize) { + /*non compressed deflate block data: 1 bit BFINAL,2 bits BTYPE,(5 bits): it jumps to start of next byte, + 2 bytes LEN, 2 bytes NLEN, LEN bytes literal DATA*/ + + size_t i, numdeflateblocks = (datasize + 65534u) / 65535u; + unsigned datapos = 0; + for(i = 0; i != numdeflateblocks; ++i) { + unsigned BFINAL, BTYPE, LEN, NLEN; + unsigned char firstbyte; + size_t pos = out->size; + + BFINAL = (i == numdeflateblocks - 1); + BTYPE = 0; + + LEN = 65535; + if(datasize - datapos < 65535u) LEN = (unsigned)datasize - datapos; + NLEN = 65535 - LEN; + + if(!ucvector_resize(out, out->size + LEN + 5)) return 83; /*alloc fail*/ + + firstbyte = (unsigned char)(BFINAL + ((BTYPE & 1u) << 1u) + ((BTYPE & 2u) << 1u)); + out->data[pos + 0] = firstbyte; + out->data[pos + 1] = (unsigned char)(LEN & 255); + out->data[pos + 2] = (unsigned char)(LEN >> 8u); + out->data[pos + 3] = (unsigned char)(NLEN & 255); + out->data[pos + 4] = (unsigned char)(NLEN >> 8u); + lodepng_memcpy(out->data + pos + 5, data + datapos, LEN); + datapos += LEN; + } + + return 0; +} + +/* +write the lz77-encoded data, which has lit, len and dist codes, to compressed stream using huffman trees. +tree_ll: the tree for lit and len codes. +tree_d: the tree for distance codes. +*/ +static void writeLZ77data(LodePNGBitWriter* writer, const uivector* lz77_encoded, + const HuffmanTree* tree_ll, const HuffmanTree* tree_d) { + size_t i = 0; + for(i = 0; i != lz77_encoded->size; ++i) { + unsigned val = lz77_encoded->data[i]; + writeBitsReversed(writer, tree_ll->codes[val], tree_ll->lengths[val]); + if(val > 256) /*for a length code, 3 more things have to be added*/ { + unsigned length_index = val - FIRST_LENGTH_CODE_INDEX; + unsigned n_length_extra_bits = LENGTHEXTRA[length_index]; + unsigned length_extra_bits = lz77_encoded->data[++i]; + + unsigned distance_code = lz77_encoded->data[++i]; + + unsigned distance_index = distance_code; + unsigned n_distance_extra_bits = DISTANCEEXTRA[distance_index]; + unsigned distance_extra_bits = lz77_encoded->data[++i]; + + writeBits(writer, length_extra_bits, n_length_extra_bits); + writeBitsReversed(writer, tree_d->codes[distance_code], tree_d->lengths[distance_code]); + writeBits(writer, distance_extra_bits, n_distance_extra_bits); + } + } +} + +/*Deflate for a block of type "dynamic", that is, with freely, optimally, created huffman trees*/ +static unsigned deflateDynamic(LodePNGBitWriter* writer, Hash* hash, + const unsigned char* data, size_t datapos, size_t dataend, + const LodePNGCompressSettings* settings, unsigned final) { + unsigned error = 0; + + /* + A block is compressed as follows: The PNG data is lz77 encoded, resulting in + literal bytes and length/distance pairs. This is then huffman compressed with + two huffman trees. One huffman tree is used for the lit and len values ("ll"), + another huffman tree is used for the dist values ("d"). These two trees are + stored using their code lengths, and to compress even more these code lengths + are also run-length encoded and huffman compressed. This gives a huffman tree + of code lengths "cl". The code lengths used to describe this third tree are + the code length code lengths ("clcl"). + */ + + /*The lz77 encoded data, represented with integers since there will also be length and distance codes in it*/ + uivector lz77_encoded; + HuffmanTree tree_ll; /*tree for lit,len values*/ + HuffmanTree tree_d; /*tree for distance codes*/ + HuffmanTree tree_cl; /*tree for encoding the code lengths representing tree_ll and tree_d*/ + unsigned* frequencies_ll = 0; /*frequency of lit,len codes*/ + unsigned* frequencies_d = 0; /*frequency of dist codes*/ + unsigned* frequencies_cl = 0; /*frequency of code length codes*/ + unsigned* bitlen_lld = 0; /*lit,len,dist code lengths (int bits), literally (without repeat codes).*/ + unsigned* bitlen_lld_e = 0; /*bitlen_lld encoded with repeat codes (this is a rudimentary run length compression)*/ + size_t datasize = dataend - datapos; + + /* + If we could call "bitlen_cl" the the code length code lengths ("clcl"), that is the bit lengths of codes to represent + tree_cl in CLCL_ORDER, then due to the huffman compression of huffman tree representations ("two levels"), there are + some analogies: + bitlen_lld is to tree_cl what data is to tree_ll and tree_d. + bitlen_lld_e is to bitlen_lld what lz77_encoded is to data. + bitlen_cl is to bitlen_lld_e what bitlen_lld is to lz77_encoded. + */ + + unsigned BFINAL = final; + size_t i; + size_t numcodes_ll, numcodes_d, numcodes_lld, numcodes_lld_e, numcodes_cl; + unsigned HLIT, HDIST, HCLEN; + + uivector_init(&lz77_encoded); + HuffmanTree_init(&tree_ll); + HuffmanTree_init(&tree_d); + HuffmanTree_init(&tree_cl); + /* could fit on stack, but >1KB is on the larger side so allocate instead */ + frequencies_ll = (unsigned*)lodepng_malloc(286 * sizeof(*frequencies_ll)); + frequencies_d = (unsigned*)lodepng_malloc(30 * sizeof(*frequencies_d)); + frequencies_cl = (unsigned*)lodepng_malloc(NUM_CODE_LENGTH_CODES * sizeof(*frequencies_cl)); + + if(!frequencies_ll || !frequencies_d || !frequencies_cl) error = 83; /*alloc fail*/ + + /*This while loop never loops due to a break at the end, it is here to + allow breaking out of it to the cleanup phase on error conditions.*/ + while(!error) { + lodepng_memset(frequencies_ll, 0, 286 * sizeof(*frequencies_ll)); + lodepng_memset(frequencies_d, 0, 30 * sizeof(*frequencies_d)); + lodepng_memset(frequencies_cl, 0, NUM_CODE_LENGTH_CODES * sizeof(*frequencies_cl)); + + if(settings->use_lz77) { + error = encodeLZ77(&lz77_encoded, hash, data, datapos, dataend, settings->windowsize, + settings->minmatch, settings->nicematch, settings->lazymatching); + if(error) break; + } else { + if(!uivector_resize(&lz77_encoded, datasize)) ERROR_BREAK(83 /*alloc fail*/); + for(i = datapos; i < dataend; ++i) lz77_encoded.data[i - datapos] = data[i]; /*no LZ77, but still will be Huffman compressed*/ + } + + /*Count the frequencies of lit, len and dist codes*/ + for(i = 0; i != lz77_encoded.size; ++i) { + unsigned symbol = lz77_encoded.data[i]; + ++frequencies_ll[symbol]; + if(symbol > 256) { + unsigned dist = lz77_encoded.data[i + 2]; + ++frequencies_d[dist]; + i += 3; + } + } + frequencies_ll[256] = 1; /*there will be exactly 1 end code, at the end of the block*/ + + /*Make both huffman trees, one for the lit and len codes, one for the dist codes*/ + error = HuffmanTree_makeFromFrequencies(&tree_ll, frequencies_ll, 257, 286, 15); + if(error) break; + /*2, not 1, is chosen for mincodes: some buggy PNG decoders require at least 2 symbols in the dist tree*/ + error = HuffmanTree_makeFromFrequencies(&tree_d, frequencies_d, 2, 30, 15); + if(error) break; + + numcodes_ll = LODEPNG_MIN(tree_ll.numcodes, 286); + numcodes_d = LODEPNG_MIN(tree_d.numcodes, 30); + /*store the code lengths of both generated trees in bitlen_lld*/ + numcodes_lld = numcodes_ll + numcodes_d; + bitlen_lld = (unsigned*)lodepng_malloc(numcodes_lld * sizeof(*bitlen_lld)); + /*numcodes_lld_e never needs more size than bitlen_lld*/ + bitlen_lld_e = (unsigned*)lodepng_malloc(numcodes_lld * sizeof(*bitlen_lld_e)); + if(!bitlen_lld || !bitlen_lld_e) ERROR_BREAK(83); /*alloc fail*/ + numcodes_lld_e = 0; + + for(i = 0; i != numcodes_ll; ++i) bitlen_lld[i] = tree_ll.lengths[i]; + for(i = 0; i != numcodes_d; ++i) bitlen_lld[numcodes_ll + i] = tree_d.lengths[i]; + + /*run-length compress bitlen_ldd into bitlen_lld_e by using repeat codes 16 (copy length 3-6 times), + 17 (3-10 zeroes), 18 (11-138 zeroes)*/ + for(i = 0; i != numcodes_lld; ++i) { + unsigned j = 0; /*amount of repetitions*/ + while(i + j + 1 < numcodes_lld && bitlen_lld[i + j + 1] == bitlen_lld[i]) ++j; + + if(bitlen_lld[i] == 0 && j >= 2) /*repeat code for zeroes*/ { + ++j; /*include the first zero*/ + if(j <= 10) /*repeat code 17 supports max 10 zeroes*/ { + bitlen_lld_e[numcodes_lld_e++] = 17; + bitlen_lld_e[numcodes_lld_e++] = j - 3; + } else /*repeat code 18 supports max 138 zeroes*/ { + if(j > 138) j = 138; + bitlen_lld_e[numcodes_lld_e++] = 18; + bitlen_lld_e[numcodes_lld_e++] = j - 11; + } + i += (j - 1); + } else if(j >= 3) /*repeat code for value other than zero*/ { + size_t k; + unsigned num = j / 6u, rest = j % 6u; + bitlen_lld_e[numcodes_lld_e++] = bitlen_lld[i]; + for(k = 0; k < num; ++k) { + bitlen_lld_e[numcodes_lld_e++] = 16; + bitlen_lld_e[numcodes_lld_e++] = 6 - 3; + } + if(rest >= 3) { + bitlen_lld_e[numcodes_lld_e++] = 16; + bitlen_lld_e[numcodes_lld_e++] = rest - 3; + } + else j -= rest; + i += j; + } else /*too short to benefit from repeat code*/ { + bitlen_lld_e[numcodes_lld_e++] = bitlen_lld[i]; + } + } + + /*generate tree_cl, the huffmantree of huffmantrees*/ + for(i = 0; i != numcodes_lld_e; ++i) { + ++frequencies_cl[bitlen_lld_e[i]]; + /*after a repeat code come the bits that specify the number of repetitions, + those don't need to be in the frequencies_cl calculation*/ + if(bitlen_lld_e[i] >= 16) ++i; + } + + error = HuffmanTree_makeFromFrequencies(&tree_cl, frequencies_cl, + NUM_CODE_LENGTH_CODES, NUM_CODE_LENGTH_CODES, 7); + if(error) break; + + /*compute amount of code-length-code-lengths to output*/ + numcodes_cl = NUM_CODE_LENGTH_CODES; + /*trim zeros at the end (using CLCL_ORDER), but minimum size must be 4 (see HCLEN below)*/ + while(numcodes_cl > 4u && tree_cl.lengths[CLCL_ORDER[numcodes_cl - 1u]] == 0) { + numcodes_cl--; + } + + /* + Write everything into the output + + After the BFINAL and BTYPE, the dynamic block consists out of the following: + - 5 bits HLIT, 5 bits HDIST, 4 bits HCLEN + - (HCLEN+4)*3 bits code lengths of code length alphabet + - HLIT + 257 code lengths of lit/length alphabet (encoded using the code length + alphabet, + possible repetition codes 16, 17, 18) + - HDIST + 1 code lengths of distance alphabet (encoded using the code length + alphabet, + possible repetition codes 16, 17, 18) + - compressed data + - 256 (end code) + */ + + /*Write block type*/ + writeBits(writer, BFINAL, 1); + writeBits(writer, 0, 1); /*first bit of BTYPE "dynamic"*/ + writeBits(writer, 1, 1); /*second bit of BTYPE "dynamic"*/ + + /*write the HLIT, HDIST and HCLEN values*/ + /*all three sizes take trimmed ending zeroes into account, done either by HuffmanTree_makeFromFrequencies + or in the loop for numcodes_cl above, which saves space. */ + HLIT = (unsigned)(numcodes_ll - 257); + HDIST = (unsigned)(numcodes_d - 1); + HCLEN = (unsigned)(numcodes_cl - 4); + writeBits(writer, HLIT, 5); + writeBits(writer, HDIST, 5); + writeBits(writer, HCLEN, 4); + + /*write the code lengths of the code length alphabet ("bitlen_cl")*/ + for(i = 0; i != numcodes_cl; ++i) writeBits(writer, tree_cl.lengths[CLCL_ORDER[i]], 3); + + /*write the lengths of the lit/len AND the dist alphabet*/ + for(i = 0; i != numcodes_lld_e; ++i) { + writeBitsReversed(writer, tree_cl.codes[bitlen_lld_e[i]], tree_cl.lengths[bitlen_lld_e[i]]); + /*extra bits of repeat codes*/ + if(bitlen_lld_e[i] == 16) writeBits(writer, bitlen_lld_e[++i], 2); + else if(bitlen_lld_e[i] == 17) writeBits(writer, bitlen_lld_e[++i], 3); + else if(bitlen_lld_e[i] == 18) writeBits(writer, bitlen_lld_e[++i], 7); + } + + /*write the compressed data symbols*/ + writeLZ77data(writer, &lz77_encoded, &tree_ll, &tree_d); + /*error: the length of the end code 256 must be larger than 0*/ + if(tree_ll.lengths[256] == 0) ERROR_BREAK(64); + + /*write the end code*/ + writeBitsReversed(writer, tree_ll.codes[256], tree_ll.lengths[256]); + + break; /*end of error-while*/ + } + + /*cleanup*/ + uivector_cleanup(&lz77_encoded); + HuffmanTree_cleanup(&tree_ll); + HuffmanTree_cleanup(&tree_d); + HuffmanTree_cleanup(&tree_cl); + lodepng_free(frequencies_ll); + lodepng_free(frequencies_d); + lodepng_free(frequencies_cl); + lodepng_free(bitlen_lld); + lodepng_free(bitlen_lld_e); + + return error; +} + +static unsigned deflateFixed(LodePNGBitWriter* writer, Hash* hash, + const unsigned char* data, + size_t datapos, size_t dataend, + const LodePNGCompressSettings* settings, unsigned final) { + HuffmanTree tree_ll; /*tree for literal values and length codes*/ + HuffmanTree tree_d; /*tree for distance codes*/ + + unsigned BFINAL = final; + unsigned error = 0; + size_t i; + + HuffmanTree_init(&tree_ll); + HuffmanTree_init(&tree_d); + + error = generateFixedLitLenTree(&tree_ll); + if(!error) error = generateFixedDistanceTree(&tree_d); + + if(!error) { + writeBits(writer, BFINAL, 1); + writeBits(writer, 1, 1); /*first bit of BTYPE*/ + writeBits(writer, 0, 1); /*second bit of BTYPE*/ + + if(settings->use_lz77) /*LZ77 encoded*/ { + uivector lz77_encoded; + uivector_init(&lz77_encoded); + error = encodeLZ77(&lz77_encoded, hash, data, datapos, dataend, settings->windowsize, + settings->minmatch, settings->nicematch, settings->lazymatching); + if(!error) writeLZ77data(writer, &lz77_encoded, &tree_ll, &tree_d); + uivector_cleanup(&lz77_encoded); + } else /*no LZ77, but still will be Huffman compressed*/ { + for(i = datapos; i < dataend; ++i) { + writeBitsReversed(writer, tree_ll.codes[data[i]], tree_ll.lengths[data[i]]); + } + } + /*add END code*/ + if(!error) writeBitsReversed(writer,tree_ll.codes[256], tree_ll.lengths[256]); + } + + /*cleanup*/ + HuffmanTree_cleanup(&tree_ll); + HuffmanTree_cleanup(&tree_d); + + return error; +} + +static unsigned lodepng_deflatev(ucvector* out, const unsigned char* in, size_t insize, + const LodePNGCompressSettings* settings) { + unsigned error = 0; + size_t i, blocksize, numdeflateblocks; + Hash hash; + LodePNGBitWriter writer; + + LodePNGBitWriter_init(&writer, out); + + if(settings->btype > 2) return 61; + else if(settings->btype == 0) return deflateNoCompression(out, in, insize); + else if(settings->btype == 1) blocksize = insize; + else /*if(settings->btype == 2)*/ { + /*on PNGs, deflate blocks of 65-262k seem to give most dense encoding*/ + blocksize = insize / 8u + 8; + if(blocksize < 65536) blocksize = 65536; + if(blocksize > 262144) blocksize = 262144; + } + + numdeflateblocks = (insize + blocksize - 1) / blocksize; + if(numdeflateblocks == 0) numdeflateblocks = 1; + + error = hash_init(&hash, settings->windowsize); + + if(!error) { + for(i = 0; i != numdeflateblocks && !error; ++i) { + unsigned final = (i == numdeflateblocks - 1); + size_t start = i * blocksize; + size_t end = start + blocksize; + if(end > insize) end = insize; + + if(settings->btype == 1) error = deflateFixed(&writer, &hash, in, start, end, settings, final); + else if(settings->btype == 2) error = deflateDynamic(&writer, &hash, in, start, end, settings, final); + } + } + + hash_cleanup(&hash); + + return error; +} + +unsigned lodepng_deflate(unsigned char** out, size_t* outsize, + const unsigned char* in, size_t insize, + const LodePNGCompressSettings* settings) { + ucvector v = ucvector_init(*out, *outsize); + unsigned error = lodepng_deflatev(&v, in, insize, settings); + *out = v.data; + *outsize = v.size; + return error; +} + +static unsigned deflate(unsigned char** out, size_t* outsize, + const unsigned char* in, size_t insize, + const LodePNGCompressSettings* settings) { + if(settings->custom_deflate) { + unsigned error = settings->custom_deflate(out, outsize, in, insize, settings); + /*the custom deflate is allowed to have its own error codes, however, we translate it to code 111*/ + return error ? 111 : 0; + } else { + return lodepng_deflate(out, outsize, in, insize, settings); + } +} + +#endif /*LODEPNG_COMPILE_DECODER*/ + +/* ////////////////////////////////////////////////////////////////////////// */ +/* / Adler32 / */ +/* ////////////////////////////////////////////////////////////////////////// */ + +static unsigned update_adler32(unsigned adler, const unsigned char* data, unsigned len) { + unsigned s1 = adler & 0xffffu; + unsigned s2 = (adler >> 16u) & 0xffffu; + + while(len != 0u) { + unsigned i; + /*at least 5552 sums can be done before the sums overflow, saving a lot of module divisions*/ + unsigned amount = len > 5552u ? 5552u : len; + len -= amount; + for(i = 0; i != amount; ++i) { + s1 += (*data++); + s2 += s1; + } + s1 %= 65521u; + s2 %= 65521u; + } + + return (s2 << 16u) | s1; +} + +/*Return the adler32 of the bytes data[0..len-1]*/ +static unsigned adler32(const unsigned char* data, unsigned len) { + return update_adler32(1u, data, len); +} + +/* ////////////////////////////////////////////////////////////////////////// */ +/* / Zlib / */ +/* ////////////////////////////////////////////////////////////////////////// */ + +#ifdef LODEPNG_COMPILE_DECODER + +static unsigned lodepng_zlib_decompressv(ucvector* out, + const unsigned char* in, size_t insize, + const LodePNGDecompressSettings* settings) { + unsigned error = 0; + unsigned CM, CINFO, FDICT; + + if(insize < 2) return 53; /*error, size of zlib data too small*/ + /*read information from zlib header*/ + if((in[0] * 256 + in[1]) % 31 != 0) { + /*error: 256 * in[0] + in[1] must be a multiple of 31, the FCHECK value is supposed to be made that way*/ + return 24; + } + + CM = in[0] & 15; + CINFO = (in[0] >> 4) & 15; + /*FCHECK = in[1] & 31;*/ /*FCHECK is already tested above*/ + FDICT = (in[1] >> 5) & 1; + /*FLEVEL = (in[1] >> 6) & 3;*/ /*FLEVEL is not used here*/ + + if(CM != 8 || CINFO > 7) { + /*error: only compression method 8: inflate with sliding window of 32k is supported by the PNG spec*/ + return 25; + } + if(FDICT != 0) { + /*error: the specification of PNG says about the zlib stream: + "The additional flags shall not specify a preset dictionary."*/ + return 26; + } + + error = inflatev(out, in + 2, insize - 2, settings); + if(error) return error; + + if(!settings->ignore_adler32) { + unsigned ADLER32 = lodepng_read32bitInt(&in[insize - 4]); + unsigned checksum = adler32(out->data, (unsigned)(out->size)); + if(checksum != ADLER32) return 58; /*error, adler checksum not correct, data must be corrupted*/ + } + + return 0; /*no error*/ +} + + +unsigned lodepng_zlib_decompress(unsigned char** out, size_t* outsize, const unsigned char* in, + size_t insize, const LodePNGDecompressSettings* settings) { + ucvector v = ucvector_init(*out, *outsize); + unsigned error = lodepng_zlib_decompressv(&v, in, insize, settings); + *out = v.data; + *outsize = v.size; + return error; +} + +/*expected_size is expected output size, to avoid intermediate allocations. Set to 0 if not known. */ +static unsigned zlib_decompress(unsigned char** out, size_t* outsize, size_t expected_size, + const unsigned char* in, size_t insize, const LodePNGDecompressSettings* settings) { + unsigned error; + if(settings->custom_zlib) { + error = settings->custom_zlib(out, outsize, in, insize, settings); + if(error) { + /*the custom zlib is allowed to have its own error codes, however, we translate it to code 110*/ + error = 110; + /*if there's a max output size, and the custom zlib returned error, then indicate that error instead*/ + if(settings->max_output_size && *outsize > settings->max_output_size) error = 109; + } + } else { + ucvector v = ucvector_init(*out, *outsize); + if(expected_size) { + /*reserve the memory to avoid intermediate reallocations*/ + ucvector_resize(&v, *outsize + expected_size); + v.size = *outsize; + } + error = lodepng_zlib_decompressv(&v, in, insize, settings); + *out = v.data; + *outsize = v.size; + } + return error; +} + +#endif /*LODEPNG_COMPILE_DECODER*/ + +#ifdef LODEPNG_COMPILE_ENCODER + +unsigned lodepng_zlib_compress(unsigned char** out, size_t* outsize, const unsigned char* in, + size_t insize, const LodePNGCompressSettings* settings) { + size_t i; + unsigned error; + unsigned char* deflatedata = 0; + size_t deflatesize = 0; + + error = deflate(&deflatedata, &deflatesize, in, insize, settings); + + *out = NULL; + *outsize = 0; + if(!error) { + *outsize = deflatesize + 6; + *out = (unsigned char*)lodepng_malloc(*outsize); + if(!*out) error = 83; /*alloc fail*/ + } + + if(!error) { + unsigned ADLER32 = adler32(in, (unsigned)insize); + /*zlib data: 1 byte CMF (CM+CINFO), 1 byte FLG, deflate data, 4 byte ADLER32 checksum of the Decompressed data*/ + unsigned CMF = 120; /*0b01111000: CM 8, CINFO 7. With CINFO 7, any window size up to 32768 can be used.*/ + unsigned FLEVEL = 0; + unsigned FDICT = 0; + unsigned CMFFLG = 256 * CMF + FDICT * 32 + FLEVEL * 64; + unsigned FCHECK = 31 - CMFFLG % 31; + CMFFLG += FCHECK; + + (*out)[0] = (unsigned char)(CMFFLG >> 8); + (*out)[1] = (unsigned char)(CMFFLG & 255); + for(i = 0; i != deflatesize; ++i) (*out)[i + 2] = deflatedata[i]; + lodepng_set32bitInt(&(*out)[*outsize - 4], ADLER32); + } + + lodepng_free(deflatedata); + return error; +} + +/* compress using the default or custom zlib function */ +static unsigned zlib_compress(unsigned char** out, size_t* outsize, const unsigned char* in, + size_t insize, const LodePNGCompressSettings* settings) { + if(settings->custom_zlib) { + unsigned error = settings->custom_zlib(out, outsize, in, insize, settings); + /*the custom zlib is allowed to have its own error codes, however, we translate it to code 111*/ + return error ? 111 : 0; + } else { + return lodepng_zlib_compress(out, outsize, in, insize, settings); + } +} + +#endif /*LODEPNG_COMPILE_ENCODER*/ + +#else /*no LODEPNG_COMPILE_ZLIB*/ + +#ifdef LODEPNG_COMPILE_DECODER +static unsigned zlib_decompress(unsigned char** out, size_t* outsize, size_t expected_size, + const unsigned char* in, size_t insize, const LodePNGDecompressSettings* settings) { + if(!settings->custom_zlib) return 87; /*no custom zlib function provided */ + (void)expected_size; + return settings->custom_zlib(out, outsize, in, insize, settings); +} +#endif /*LODEPNG_COMPILE_DECODER*/ +#ifdef LODEPNG_COMPILE_ENCODER +static unsigned zlib_compress(unsigned char** out, size_t* outsize, const unsigned char* in, + size_t insize, const LodePNGCompressSettings* settings) { + if(!settings->custom_zlib) return 87; /*no custom zlib function provided */ + return settings->custom_zlib(out, outsize, in, insize, settings); +} +#endif /*LODEPNG_COMPILE_ENCODER*/ + +#endif /*LODEPNG_COMPILE_ZLIB*/ + +/* ////////////////////////////////////////////////////////////////////////// */ + +#ifdef LODEPNG_COMPILE_ENCODER + +/*this is a good tradeoff between speed and compression ratio*/ +#define DEFAULT_WINDOWSIZE 2048 + +void lodepng_compress_settings_init(LodePNGCompressSettings* settings) { + /*compress with dynamic huffman tree (not in the mathematical sense, just not the predefined one)*/ + settings->btype = 2; + settings->use_lz77 = 1; + settings->windowsize = DEFAULT_WINDOWSIZE; + settings->minmatch = 3; + settings->nicematch = 128; + settings->lazymatching = 1; + + settings->custom_zlib = 0; + settings->custom_deflate = 0; + settings->custom_context = 0; +} + +const LodePNGCompressSettings lodepng_default_compress_settings = {2, 1, DEFAULT_WINDOWSIZE, 3, 128, 1, 0, 0, 0}; + + +#endif /*LODEPNG_COMPILE_ENCODER*/ + +#ifdef LODEPNG_COMPILE_DECODER + +void lodepng_decompress_settings_init(LodePNGDecompressSettings* settings) { + settings->ignore_adler32 = 0; + settings->ignore_nlen = 0; + settings->max_output_size = 0; + + settings->custom_zlib = 0; + settings->custom_inflate = 0; + settings->custom_context = 0; +} + +const LodePNGDecompressSettings lodepng_default_decompress_settings = {0, 0, 0, 0, 0, 0}; + +#endif /*LODEPNG_COMPILE_DECODER*/ + +/* ////////////////////////////////////////////////////////////////////////// */ +/* ////////////////////////////////////////////////////////////////////////// */ +/* // End of Zlib related code. Begin of PNG related code. // */ +/* ////////////////////////////////////////////////////////////////////////// */ +/* ////////////////////////////////////////////////////////////////////////// */ + +#ifdef LODEPNG_COMPILE_PNG + +/* ////////////////////////////////////////////////////////////////////////// */ +/* / CRC32 / */ +/* ////////////////////////////////////////////////////////////////////////// */ + + +#ifdef LODEPNG_COMPILE_CRC +/* CRC polynomial: 0xedb88320 */ +static unsigned lodepng_crc32_table[256] = { + 0u, 1996959894u, 3993919788u, 2567524794u, 124634137u, 1886057615u, 3915621685u, 2657392035u, + 249268274u, 2044508324u, 3772115230u, 2547177864u, 162941995u, 2125561021u, 3887607047u, 2428444049u, + 498536548u, 1789927666u, 4089016648u, 2227061214u, 450548861u, 1843258603u, 4107580753u, 2211677639u, + 325883990u, 1684777152u, 4251122042u, 2321926636u, 335633487u, 1661365465u, 4195302755u, 2366115317u, + 997073096u, 1281953886u, 3579855332u, 2724688242u, 1006888145u, 1258607687u, 3524101629u, 2768942443u, + 901097722u, 1119000684u, 3686517206u, 2898065728u, 853044451u, 1172266101u, 3705015759u, 2882616665u, + 651767980u, 1373503546u, 3369554304u, 3218104598u, 565507253u, 1454621731u, 3485111705u, 3099436303u, + 671266974u, 1594198024u, 3322730930u, 2970347812u, 795835527u, 1483230225u, 3244367275u, 3060149565u, + 1994146192u, 31158534u, 2563907772u, 4023717930u, 1907459465u, 112637215u, 2680153253u, 3904427059u, + 2013776290u, 251722036u, 2517215374u, 3775830040u, 2137656763u, 141376813u, 2439277719u, 3865271297u, + 1802195444u, 476864866u, 2238001368u, 4066508878u, 1812370925u, 453092731u, 2181625025u, 4111451223u, + 1706088902u, 314042704u, 2344532202u, 4240017532u, 1658658271u, 366619977u, 2362670323u, 4224994405u, + 1303535960u, 984961486u, 2747007092u, 3569037538u, 1256170817u, 1037604311u, 2765210733u, 3554079995u, + 1131014506u, 879679996u, 2909243462u, 3663771856u, 1141124467u, 855842277u, 2852801631u, 3708648649u, + 1342533948u, 654459306u, 3188396048u, 3373015174u, 1466479909u, 544179635u, 3110523913u, 3462522015u, + 1591671054u, 702138776u, 2966460450u, 3352799412u, 1504918807u, 783551873u, 3082640443u, 3233442989u, + 3988292384u, 2596254646u, 62317068u, 1957810842u, 3939845945u, 2647816111u, 81470997u, 1943803523u, + 3814918930u, 2489596804u, 225274430u, 2053790376u, 3826175755u, 2466906013u, 167816743u, 2097651377u, + 4027552580u, 2265490386u, 503444072u, 1762050814u, 4150417245u, 2154129355u, 426522225u, 1852507879u, + 4275313526u, 2312317920u, 282753626u, 1742555852u, 4189708143u, 2394877945u, 397917763u, 1622183637u, + 3604390888u, 2714866558u, 953729732u, 1340076626u, 3518719985u, 2797360999u, 1068828381u, 1219638859u, + 3624741850u, 2936675148u, 906185462u, 1090812512u, 3747672003u, 2825379669u, 829329135u, 1181335161u, + 3412177804u, 3160834842u, 628085408u, 1382605366u, 3423369109u, 3138078467u, 570562233u, 1426400815u, + 3317316542u, 2998733608u, 733239954u, 1555261956u, 3268935591u, 3050360625u, 752459403u, 1541320221u, + 2607071920u, 3965973030u, 1969922972u, 40735498u, 2617837225u, 3943577151u, 1913087877u, 83908371u, + 2512341634u, 3803740692u, 2075208622u, 213261112u, 2463272603u, 3855990285u, 2094854071u, 198958881u, + 2262029012u, 4057260610u, 1759359992u, 534414190u, 2176718541u, 4139329115u, 1873836001u, 414664567u, + 2282248934u, 4279200368u, 1711684554u, 285281116u, 2405801727u, 4167216745u, 1634467795u, 376229701u, + 2685067896u, 3608007406u, 1308918612u, 956543938u, 2808555105u, 3495958263u, 1231636301u, 1047427035u, + 2932959818u, 3654703836u, 1088359270u, 936918000u, 2847714899u, 3736837829u, 1202900863u, 817233897u, + 3183342108u, 3401237130u, 1404277552u, 615818150u, 3134207493u, 3453421203u, 1423857449u, 601450431u, + 3009837614u, 3294710456u, 1567103746u, 711928724u, 3020668471u, 3272380065u, 1510334235u, 755167117u +}; + +/*Return the CRC of the bytes buf[0..len-1].*/ +unsigned lodepng_crc32(const unsigned char* data, size_t length) { + unsigned r = 0xffffffffu; + size_t i; + for(i = 0; i < length; ++i) { + r = lodepng_crc32_table[(r ^ data[i]) & 0xffu] ^ (r >> 8u); + } + return r ^ 0xffffffffu; +} +#else /* LODEPNG_COMPILE_CRC */ +/*in this case, the function is only declared here, and must be defined externally +so that it will be linked in*/ +unsigned lodepng_crc32(const unsigned char* data, size_t length); +#endif /* LODEPNG_COMPILE_CRC */ + +/* ////////////////////////////////////////////////////////////////////////// */ +/* / Reading and writing PNG color channel bits / */ +/* ////////////////////////////////////////////////////////////////////////// */ + +/* The color channel bits of less-than-8-bit pixels are read with the MSB of bytes first, +so LodePNGBitWriter and LodePNGBitReader can't be used for those. */ + +static unsigned char readBitFromReversedStream(size_t* bitpointer, const unsigned char* bitstream) { + unsigned char result = (unsigned char)((bitstream[(*bitpointer) >> 3] >> (7 - ((*bitpointer) & 0x7))) & 1); + ++(*bitpointer); + return result; +} + +/* TODO: make this faster */ +static unsigned readBitsFromReversedStream(size_t* bitpointer, const unsigned char* bitstream, size_t nbits) { + unsigned result = 0; + size_t i; + for(i = 0 ; i < nbits; ++i) { + result <<= 1u; + result |= (unsigned)readBitFromReversedStream(bitpointer, bitstream); + } + return result; +} + +static void setBitOfReversedStream(size_t* bitpointer, unsigned char* bitstream, unsigned char bit) { + /*the current bit in bitstream may be 0 or 1 for this to work*/ + if(bit == 0) bitstream[(*bitpointer) >> 3u] &= (unsigned char)(~(1u << (7u - ((*bitpointer) & 7u)))); + else bitstream[(*bitpointer) >> 3u] |= (1u << (7u - ((*bitpointer) & 7u))); + ++(*bitpointer); +} + +/* ////////////////////////////////////////////////////////////////////////// */ +/* / PNG chunks / */ +/* ////////////////////////////////////////////////////////////////////////// */ + +unsigned lodepng_chunk_length(const unsigned char* chunk) { + return lodepng_read32bitInt(chunk); +} + +void lodepng_chunk_type(char type[5], const unsigned char* chunk) { + unsigned i; + for(i = 0; i != 4; ++i) type[i] = (char)chunk[4 + i]; + type[4] = 0; /*null termination char*/ +} + +unsigned char lodepng_chunk_type_equals(const unsigned char* chunk, const char* type) { + if(lodepng_strlen(type) != 4) return 0; + return (chunk[4] == type[0] && chunk[5] == type[1] && chunk[6] == type[2] && chunk[7] == type[3]); +} + +unsigned char lodepng_chunk_ancillary(const unsigned char* chunk) { + return((chunk[4] & 32) != 0); +} + +unsigned char lodepng_chunk_private(const unsigned char* chunk) { + return((chunk[6] & 32) != 0); +} + +unsigned char lodepng_chunk_safetocopy(const unsigned char* chunk) { + return((chunk[7] & 32) != 0); +} + +unsigned char* lodepng_chunk_data(unsigned char* chunk) { + return &chunk[8]; +} + +const unsigned char* lodepng_chunk_data_const(const unsigned char* chunk) { + return &chunk[8]; +} + +unsigned lodepng_chunk_check_crc(const unsigned char* chunk) { + unsigned length = lodepng_chunk_length(chunk); + unsigned CRC = lodepng_read32bitInt(&chunk[length + 8]); + /*the CRC is taken of the data and the 4 chunk type letters, not the length*/ + unsigned checksum = lodepng_crc32(&chunk[4], length + 4); + if(CRC != checksum) return 1; + else return 0; +} + +void lodepng_chunk_generate_crc(unsigned char* chunk) { + unsigned length = lodepng_chunk_length(chunk); + unsigned CRC = lodepng_crc32(&chunk[4], length + 4); + lodepng_set32bitInt(chunk + 8 + length, CRC); +} + +unsigned char* lodepng_chunk_next(unsigned char* chunk, unsigned char* end) { + size_t available_size = (size_t)(end - chunk); + if(chunk >= end || available_size < 12) return end; /*too small to contain a chunk*/ + if(chunk[0] == 0x89 && chunk[1] == 0x50 && chunk[2] == 0x4e && chunk[3] == 0x47 + && chunk[4] == 0x0d && chunk[5] == 0x0a && chunk[6] == 0x1a && chunk[7] == 0x0a) { + /* Is PNG magic header at start of PNG file. Jump to first actual chunk. */ + return chunk + 8; + } else { + size_t total_chunk_length; + if(lodepng_addofl(lodepng_chunk_length(chunk), 12, &total_chunk_length)) return end; + if(total_chunk_length > available_size) return end; /*outside of range*/ + return chunk + total_chunk_length; + } +} + +const unsigned char* lodepng_chunk_next_const(const unsigned char* chunk, const unsigned char* end) { + size_t available_size = (size_t)(end - chunk); + if(chunk >= end || available_size < 12) return end; /*too small to contain a chunk*/ + if(chunk[0] == 0x89 && chunk[1] == 0x50 && chunk[2] == 0x4e && chunk[3] == 0x47 + && chunk[4] == 0x0d && chunk[5] == 0x0a && chunk[6] == 0x1a && chunk[7] == 0x0a) { + /* Is PNG magic header at start of PNG file. Jump to first actual chunk. */ + return chunk + 8; + } else { + size_t total_chunk_length; + if(lodepng_addofl(lodepng_chunk_length(chunk), 12, &total_chunk_length)) return end; + if(total_chunk_length > available_size) return end; /*outside of range*/ + return chunk + total_chunk_length; + } +} + +unsigned char* lodepng_chunk_find(unsigned char* chunk, unsigned char* end, const char type[5]) { + for(;;) { + if(chunk >= end || end - chunk < 12) return 0; /* past file end: chunk + 12 > end */ + if(lodepng_chunk_type_equals(chunk, type)) return chunk; + chunk = lodepng_chunk_next(chunk, end); + } +} + +const unsigned char* lodepng_chunk_find_const(const unsigned char* chunk, const unsigned char* end, const char type[5]) { + for(;;) { + if(chunk >= end || end - chunk < 12) return 0; /* past file end: chunk + 12 > end */ + if(lodepng_chunk_type_equals(chunk, type)) return chunk; + chunk = lodepng_chunk_next_const(chunk, end); + } +} + +unsigned lodepng_chunk_append(unsigned char** out, size_t* outsize, const unsigned char* chunk) { + unsigned i; + size_t total_chunk_length, new_length; + unsigned char *chunk_start, *new_buffer; + + if(lodepng_addofl(lodepng_chunk_length(chunk), 12, &total_chunk_length)) return 77; + if(lodepng_addofl(*outsize, total_chunk_length, &new_length)) return 77; + + new_buffer = (unsigned char*)lodepng_realloc(*out, new_length); + if(!new_buffer) return 83; /*alloc fail*/ + (*out) = new_buffer; + (*outsize) = new_length; + chunk_start = &(*out)[new_length - total_chunk_length]; + + for(i = 0; i != total_chunk_length; ++i) chunk_start[i] = chunk[i]; + + return 0; +} + +/*Sets length and name and allocates the space for data and crc but does not +set data or crc yet. Returns the start of the chunk in chunk. The start of +the data is at chunk + 8. To finalize chunk, add the data, then use +lodepng_chunk_generate_crc */ +static unsigned lodepng_chunk_init(unsigned char** chunk, + ucvector* out, + unsigned length, const char* type) { + size_t new_length = out->size; + if(lodepng_addofl(new_length, length, &new_length)) return 77; + if(lodepng_addofl(new_length, 12, &new_length)) return 77; + if(!ucvector_resize(out, new_length)) return 83; /*alloc fail*/ + *chunk = out->data + new_length - length - 12u; + + /*1: length*/ + lodepng_set32bitInt(*chunk, length); + + /*2: chunk name (4 letters)*/ + lodepng_memcpy(*chunk + 4, type, 4); + + return 0; +} + +/* like lodepng_chunk_create but with custom allocsize */ +static unsigned lodepng_chunk_createv(ucvector* out, + unsigned length, const char* type, const unsigned char* data) { + unsigned char* chunk; + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, length, type)); + + /*3: the data*/ + lodepng_memcpy(chunk + 8, data, length); + + /*4: CRC (of the chunkname characters and the data)*/ + lodepng_chunk_generate_crc(chunk); + + return 0; +} + +unsigned lodepng_chunk_create(unsigned char** out, size_t* outsize, + unsigned length, const char* type, const unsigned char* data) { + ucvector v = ucvector_init(*out, *outsize); + unsigned error = lodepng_chunk_createv(&v, length, type, data); + *out = v.data; + *outsize = v.size; + return error; +} + +/* ////////////////////////////////////////////////////////////////////////// */ +/* / Color types, channels, bits / */ +/* ////////////////////////////////////////////////////////////////////////// */ + +/*checks if the colortype is valid and the bitdepth bd is allowed for this colortype. +Return value is a LodePNG error code.*/ +static unsigned checkColorValidity(LodePNGColorType colortype, unsigned bd) { + switch(colortype) { + case LCT_GREY: if(!(bd == 1 || bd == 2 || bd == 4 || bd == 8 || bd == 16)) return 37; break; + case LCT_RGB: if(!( bd == 8 || bd == 16)) return 37; break; + case LCT_PALETTE: if(!(bd == 1 || bd == 2 || bd == 4 || bd == 8 )) return 37; break; + case LCT_GREY_ALPHA: if(!( bd == 8 || bd == 16)) return 37; break; + case LCT_RGBA: if(!( bd == 8 || bd == 16)) return 37; break; + case LCT_MAX_OCTET_VALUE: return 31; /* invalid color type */ + default: return 31; /* invalid color type */ + } + return 0; /*allowed color type / bits combination*/ +} + +static unsigned getNumColorChannels(LodePNGColorType colortype) { + switch(colortype) { + case LCT_GREY: return 1; + case LCT_RGB: return 3; + case LCT_PALETTE: return 1; + case LCT_GREY_ALPHA: return 2; + case LCT_RGBA: return 4; + case LCT_MAX_OCTET_VALUE: return 0; /* invalid color type */ + default: return 0; /*invalid color type*/ + } +} + +static unsigned lodepng_get_bpp_lct(LodePNGColorType colortype, unsigned bitdepth) { + /*bits per pixel is amount of channels * bits per channel*/ + return getNumColorChannels(colortype) * bitdepth; +} + +/* ////////////////////////////////////////////////////////////////////////// */ + +void lodepng_color_mode_init(LodePNGColorMode* info) { + info->key_defined = 0; + info->key_r = info->key_g = info->key_b = 0; + info->colortype = LCT_RGBA; + info->bitdepth = 8; + info->palette = 0; + info->palettesize = 0; +} + +/*allocates palette memory if needed, and initializes all colors to black*/ +static void lodepng_color_mode_alloc_palette(LodePNGColorMode* info) { + size_t i; + /*if the palette is already allocated, it will have size 1024 so no reallocation needed in that case*/ + /*the palette must have room for up to 256 colors with 4 bytes each.*/ + if(!info->palette) info->palette = (unsigned char*)lodepng_malloc(1024); + if(!info->palette) return; /*alloc fail*/ + for(i = 0; i != 256; ++i) { + /*Initialize all unused colors with black, the value used for invalid palette indices. + This is an error according to the PNG spec, but common PNG decoders make it black instead. + That makes color conversion slightly faster due to no error handling needed.*/ + info->palette[i * 4 + 0] = 0; + info->palette[i * 4 + 1] = 0; + info->palette[i * 4 + 2] = 0; + info->palette[i * 4 + 3] = 255; + } +} + +void lodepng_color_mode_cleanup(LodePNGColorMode* info) { + lodepng_palette_clear(info); +} + +unsigned lodepng_color_mode_copy(LodePNGColorMode* dest, const LodePNGColorMode* source) { + lodepng_color_mode_cleanup(dest); + lodepng_memcpy(dest, source, sizeof(LodePNGColorMode)); + if(source->palette) { + dest->palette = (unsigned char*)lodepng_malloc(1024); + if(!dest->palette && source->palettesize) return 83; /*alloc fail*/ + lodepng_memcpy(dest->palette, source->palette, source->palettesize * 4); + } + return 0; +} + +LodePNGColorMode lodepng_color_mode_make(LodePNGColorType colortype, unsigned bitdepth) { + LodePNGColorMode result; + lodepng_color_mode_init(&result); + result.colortype = colortype; + result.bitdepth = bitdepth; + return result; +} + +static int lodepng_color_mode_equal(const LodePNGColorMode* a, const LodePNGColorMode* b) { + size_t i; + if(a->colortype != b->colortype) return 0; + if(a->bitdepth != b->bitdepth) return 0; + if(a->key_defined != b->key_defined) return 0; + if(a->key_defined) { + if(a->key_r != b->key_r) return 0; + if(a->key_g != b->key_g) return 0; + if(a->key_b != b->key_b) return 0; + } + if(a->palettesize != b->palettesize) return 0; + for(i = 0; i != a->palettesize * 4; ++i) { + if(a->palette[i] != b->palette[i]) return 0; + } + return 1; +} + +void lodepng_palette_clear(LodePNGColorMode* info) { + if(info->palette) lodepng_free(info->palette); + info->palette = 0; + info->palettesize = 0; +} + +unsigned lodepng_palette_add(LodePNGColorMode* info, + unsigned char r, unsigned char g, unsigned char b, unsigned char a) { + if(!info->palette) /*allocate palette if empty*/ { + lodepng_color_mode_alloc_palette(info); + if(!info->palette) return 83; /*alloc fail*/ + } + if(info->palettesize >= 256) { + return 108; /*too many palette values*/ + } + info->palette[4 * info->palettesize + 0] = r; + info->palette[4 * info->palettesize + 1] = g; + info->palette[4 * info->palettesize + 2] = b; + info->palette[4 * info->palettesize + 3] = a; + ++info->palettesize; + return 0; +} + +/*calculate bits per pixel out of colortype and bitdepth*/ +unsigned lodepng_get_bpp(const LodePNGColorMode* info) { + return lodepng_get_bpp_lct(info->colortype, info->bitdepth); +} + +unsigned lodepng_get_channels(const LodePNGColorMode* info) { + return getNumColorChannels(info->colortype); +} + +unsigned lodepng_is_greyscale_type(const LodePNGColorMode* info) { + return info->colortype == LCT_GREY || info->colortype == LCT_GREY_ALPHA; +} + +unsigned lodepng_is_alpha_type(const LodePNGColorMode* info) { + return (info->colortype & 4) != 0; /*4 or 6*/ +} + +unsigned lodepng_is_palette_type(const LodePNGColorMode* info) { + return info->colortype == LCT_PALETTE; +} + +unsigned lodepng_has_palette_alpha(const LodePNGColorMode* info) { + size_t i; + for(i = 0; i != info->palettesize; ++i) { + if(info->palette[i * 4 + 3] < 255) return 1; + } + return 0; +} + +unsigned lodepng_can_have_alpha(const LodePNGColorMode* info) { + return info->key_defined + || lodepng_is_alpha_type(info) + || lodepng_has_palette_alpha(info); +} + +static size_t lodepng_get_raw_size_lct(unsigned w, unsigned h, LodePNGColorType colortype, unsigned bitdepth) { + size_t bpp = lodepng_get_bpp_lct(colortype, bitdepth); + size_t n = (size_t)w * (size_t)h; + return ((n / 8u) * bpp) + ((n & 7u) * bpp + 7u) / 8u; +} + +size_t lodepng_get_raw_size(unsigned w, unsigned h, const LodePNGColorMode* color) { + return lodepng_get_raw_size_lct(w, h, color->colortype, color->bitdepth); +} + + +#ifdef LODEPNG_COMPILE_PNG + +/*in an idat chunk, each scanline is a multiple of 8 bits, unlike the lodepng output buffer, +and in addition has one extra byte per line: the filter byte. So this gives a larger +result than lodepng_get_raw_size. Set h to 1 to get the size of 1 row including filter byte. */ +static size_t lodepng_get_raw_size_idat(unsigned w, unsigned h, unsigned bpp) { + /* + 1 for the filter byte, and possibly plus padding bits per line. */ + /* Ignoring casts, the expression is equal to (w * bpp + 7) / 8 + 1, but avoids overflow of w * bpp */ + size_t line = ((size_t)(w / 8u) * bpp) + 1u + ((w & 7u) * bpp + 7u) / 8u; + return (size_t)h * line; +} + +#ifdef LODEPNG_COMPILE_DECODER +/*Safely checks whether size_t overflow can be caused due to amount of pixels. +This check is overcautious rather than precise. If this check indicates no overflow, +you can safely compute in a size_t (but not an unsigned): +-(size_t)w * (size_t)h * 8 +-amount of bytes in IDAT (including filter, padding and Adam7 bytes) +-amount of bytes in raw color model +Returns 1 if overflow possible, 0 if not. +*/ +static int lodepng_pixel_overflow(unsigned w, unsigned h, + const LodePNGColorMode* pngcolor, const LodePNGColorMode* rawcolor) { + size_t bpp = LODEPNG_MAX(lodepng_get_bpp(pngcolor), lodepng_get_bpp(rawcolor)); + size_t numpixels, total; + size_t line; /* bytes per line in worst case */ + + if(lodepng_mulofl((size_t)w, (size_t)h, &numpixels)) return 1; + if(lodepng_mulofl(numpixels, 8, &total)) return 1; /* bit pointer with 8-bit color, or 8 bytes per channel color */ + + /* Bytes per scanline with the expression "(w / 8u) * bpp) + ((w & 7u) * bpp + 7u) / 8u" */ + if(lodepng_mulofl((size_t)(w / 8u), bpp, &line)) return 1; + if(lodepng_addofl(line, ((w & 7u) * bpp + 7u) / 8u, &line)) return 1; + + if(lodepng_addofl(line, 5, &line)) return 1; /* 5 bytes overhead per line: 1 filterbyte, 4 for Adam7 worst case */ + if(lodepng_mulofl(line, h, &total)) return 1; /* Total bytes in worst case */ + + return 0; /* no overflow */ +} +#endif /*LODEPNG_COMPILE_DECODER*/ +#endif /*LODEPNG_COMPILE_PNG*/ + +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + +static void LodePNGUnknownChunks_init(LodePNGInfo* info) { + unsigned i; + for(i = 0; i != 3; ++i) info->unknown_chunks_data[i] = 0; + for(i = 0; i != 3; ++i) info->unknown_chunks_size[i] = 0; +} + +static void LodePNGUnknownChunks_cleanup(LodePNGInfo* info) { + unsigned i; + for(i = 0; i != 3; ++i) lodepng_free(info->unknown_chunks_data[i]); +} + +static unsigned LodePNGUnknownChunks_copy(LodePNGInfo* dest, const LodePNGInfo* src) { + unsigned i; + + LodePNGUnknownChunks_cleanup(dest); + + for(i = 0; i != 3; ++i) { + size_t j; + dest->unknown_chunks_size[i] = src->unknown_chunks_size[i]; + dest->unknown_chunks_data[i] = (unsigned char*)lodepng_malloc(src->unknown_chunks_size[i]); + if(!dest->unknown_chunks_data[i] && dest->unknown_chunks_size[i]) return 83; /*alloc fail*/ + for(j = 0; j < src->unknown_chunks_size[i]; ++j) { + dest->unknown_chunks_data[i][j] = src->unknown_chunks_data[i][j]; + } + } + + return 0; +} + +/******************************************************************************/ + +static void LodePNGText_init(LodePNGInfo* info) { + info->text_num = 0; + info->text_keys = NULL; + info->text_strings = NULL; +} + +static void LodePNGText_cleanup(LodePNGInfo* info) { + size_t i; + for(i = 0; i != info->text_num; ++i) { + string_cleanup(&info->text_keys[i]); + string_cleanup(&info->text_strings[i]); + } + lodepng_free(info->text_keys); + lodepng_free(info->text_strings); +} + +static unsigned LodePNGText_copy(LodePNGInfo* dest, const LodePNGInfo* source) { + size_t i = 0; + dest->text_keys = NULL; + dest->text_strings = NULL; + dest->text_num = 0; + for(i = 0; i != source->text_num; ++i) { + CERROR_TRY_RETURN(lodepng_add_text(dest, source->text_keys[i], source->text_strings[i])); + } + return 0; +} + +static unsigned lodepng_add_text_sized(LodePNGInfo* info, const char* key, const char* str, size_t size) { + char** new_keys = (char**)(lodepng_realloc(info->text_keys, sizeof(char*) * (info->text_num + 1))); + char** new_strings = (char**)(lodepng_realloc(info->text_strings, sizeof(char*) * (info->text_num + 1))); + + if(new_keys) info->text_keys = new_keys; + if(new_strings) info->text_strings = new_strings; + + if(!new_keys || !new_strings) return 83; /*alloc fail*/ + + ++info->text_num; + info->text_keys[info->text_num - 1] = alloc_string(key); + info->text_strings[info->text_num - 1] = alloc_string_sized(str, size); + if(!info->text_keys[info->text_num - 1] || !info->text_strings[info->text_num - 1]) return 83; /*alloc fail*/ + + return 0; +} + +unsigned lodepng_add_text(LodePNGInfo* info, const char* key, const char* str) { + return lodepng_add_text_sized(info, key, str, lodepng_strlen(str)); +} + +void lodepng_clear_text(LodePNGInfo* info) { + LodePNGText_cleanup(info); +} + +/******************************************************************************/ + +static void LodePNGIText_init(LodePNGInfo* info) { + info->itext_num = 0; + info->itext_keys = NULL; + info->itext_langtags = NULL; + info->itext_transkeys = NULL; + info->itext_strings = NULL; +} + +static void LodePNGIText_cleanup(LodePNGInfo* info) { + size_t i; + for(i = 0; i != info->itext_num; ++i) { + string_cleanup(&info->itext_keys[i]); + string_cleanup(&info->itext_langtags[i]); + string_cleanup(&info->itext_transkeys[i]); + string_cleanup(&info->itext_strings[i]); + } + lodepng_free(info->itext_keys); + lodepng_free(info->itext_langtags); + lodepng_free(info->itext_transkeys); + lodepng_free(info->itext_strings); +} + +static unsigned LodePNGIText_copy(LodePNGInfo* dest, const LodePNGInfo* source) { + size_t i = 0; + dest->itext_keys = NULL; + dest->itext_langtags = NULL; + dest->itext_transkeys = NULL; + dest->itext_strings = NULL; + dest->itext_num = 0; + for(i = 0; i != source->itext_num; ++i) { + CERROR_TRY_RETURN(lodepng_add_itext(dest, source->itext_keys[i], source->itext_langtags[i], + source->itext_transkeys[i], source->itext_strings[i])); + } + return 0; +} + +void lodepng_clear_itext(LodePNGInfo* info) { + LodePNGIText_cleanup(info); +} + +static unsigned lodepng_add_itext_sized(LodePNGInfo* info, const char* key, const char* langtag, + const char* transkey, const char* str, size_t size) { + char** new_keys = (char**)(lodepng_realloc(info->itext_keys, sizeof(char*) * (info->itext_num + 1))); + char** new_langtags = (char**)(lodepng_realloc(info->itext_langtags, sizeof(char*) * (info->itext_num + 1))); + char** new_transkeys = (char**)(lodepng_realloc(info->itext_transkeys, sizeof(char*) * (info->itext_num + 1))); + char** new_strings = (char**)(lodepng_realloc(info->itext_strings, sizeof(char*) * (info->itext_num + 1))); + + if(new_keys) info->itext_keys = new_keys; + if(new_langtags) info->itext_langtags = new_langtags; + if(new_transkeys) info->itext_transkeys = new_transkeys; + if(new_strings) info->itext_strings = new_strings; + + if(!new_keys || !new_langtags || !new_transkeys || !new_strings) return 83; /*alloc fail*/ + + ++info->itext_num; + + info->itext_keys[info->itext_num - 1] = alloc_string(key); + info->itext_langtags[info->itext_num - 1] = alloc_string(langtag); + info->itext_transkeys[info->itext_num - 1] = alloc_string(transkey); + info->itext_strings[info->itext_num - 1] = alloc_string_sized(str, size); + + return 0; +} + +unsigned lodepng_add_itext(LodePNGInfo* info, const char* key, const char* langtag, + const char* transkey, const char* str) { + return lodepng_add_itext_sized(info, key, langtag, transkey, str, lodepng_strlen(str)); +} + +/* same as set but does not delete */ +static unsigned lodepng_assign_icc(LodePNGInfo* info, const char* name, const unsigned char* profile, unsigned profile_size) { + if(profile_size == 0) return 100; /*invalid ICC profile size*/ + + info->iccp_name = alloc_string(name); + info->iccp_profile = (unsigned char*)lodepng_malloc(profile_size); + + if(!info->iccp_name || !info->iccp_profile) return 83; /*alloc fail*/ + + lodepng_memcpy(info->iccp_profile, profile, profile_size); + info->iccp_profile_size = profile_size; + + return 0; /*ok*/ +} + +unsigned lodepng_set_icc(LodePNGInfo* info, const char* name, const unsigned char* profile, unsigned profile_size) { + if(info->iccp_name) lodepng_clear_icc(info); + info->iccp_defined = 1; + + return lodepng_assign_icc(info, name, profile, profile_size); +} + +void lodepng_clear_icc(LodePNGInfo* info) { + string_cleanup(&info->iccp_name); + lodepng_free(info->iccp_profile); + info->iccp_profile = NULL; + info->iccp_profile_size = 0; + info->iccp_defined = 0; +} +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + +void lodepng_info_init(LodePNGInfo* info) { + lodepng_color_mode_init(&info->color); + info->interlace_method = 0; + info->compression_method = 0; + info->filter_method = 0; +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + info->background_defined = 0; + info->background_r = info->background_g = info->background_b = 0; + + LodePNGText_init(info); + LodePNGIText_init(info); + + info->time_defined = 0; + info->phys_defined = 0; + + info->gama_defined = 0; + info->chrm_defined = 0; + info->srgb_defined = 0; + info->iccp_defined = 0; + info->iccp_name = NULL; + info->iccp_profile = NULL; + + info->sbit_defined = 0; + info->sbit_r = info->sbit_g = info->sbit_b = info->sbit_a = 0; + + LodePNGUnknownChunks_init(info); +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ +} + +void lodepng_info_cleanup(LodePNGInfo* info) { + lodepng_color_mode_cleanup(&info->color); +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + LodePNGText_cleanup(info); + LodePNGIText_cleanup(info); + + lodepng_clear_icc(info); + + LodePNGUnknownChunks_cleanup(info); +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ +} + +unsigned lodepng_info_copy(LodePNGInfo* dest, const LodePNGInfo* source) { + lodepng_info_cleanup(dest); + lodepng_memcpy(dest, source, sizeof(LodePNGInfo)); + lodepng_color_mode_init(&dest->color); + CERROR_TRY_RETURN(lodepng_color_mode_copy(&dest->color, &source->color)); + +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + CERROR_TRY_RETURN(LodePNGText_copy(dest, source)); + CERROR_TRY_RETURN(LodePNGIText_copy(dest, source)); + if(source->iccp_defined) { + CERROR_TRY_RETURN(lodepng_assign_icc(dest, source->iccp_name, source->iccp_profile, source->iccp_profile_size)); + } + + LodePNGUnknownChunks_init(dest); + CERROR_TRY_RETURN(LodePNGUnknownChunks_copy(dest, source)); +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + return 0; +} + +/* ////////////////////////////////////////////////////////////////////////// */ + +/*index: bitgroup index, bits: bitgroup size(1, 2 or 4), in: bitgroup value, out: octet array to add bits to*/ +static void addColorBits(unsigned char* out, size_t index, unsigned bits, unsigned in) { + unsigned m = bits == 1 ? 7 : bits == 2 ? 3 : 1; /*8 / bits - 1*/ + /*p = the partial index in the byte, e.g. with 4 palettebits it is 0 for first half or 1 for second half*/ + unsigned p = index & m; + in &= (1u << bits) - 1u; /*filter out any other bits of the input value*/ + in = in << (bits * (m - p)); + if(p == 0) out[index * bits / 8u] = in; + else out[index * bits / 8u] |= in; +} + +typedef struct ColorTree ColorTree; + +/* +One node of a color tree +This is the data structure used to count the number of unique colors and to get a palette +index for a color. It's like an octree, but because the alpha channel is used too, each +node has 16 instead of 8 children. +*/ +struct ColorTree { + ColorTree* children[16]; /*up to 16 pointers to ColorTree of next level*/ + int index; /*the payload. Only has a meaningful value if this is in the last level*/ +}; + +static void color_tree_init(ColorTree* tree) { + lodepng_memset(tree->children, 0, 16 * sizeof(*tree->children)); + tree->index = -1; +} + +static void color_tree_cleanup(ColorTree* tree) { + int i; + for(i = 0; i != 16; ++i) { + if(tree->children[i]) { + color_tree_cleanup(tree->children[i]); + lodepng_free(tree->children[i]); + } + } +} + +/*returns -1 if color not present, its index otherwise*/ +static int color_tree_get(ColorTree* tree, unsigned char r, unsigned char g, unsigned char b, unsigned char a) { + int bit = 0; + for(bit = 0; bit < 8; ++bit) { + int i = 8 * ((r >> bit) & 1) + 4 * ((g >> bit) & 1) + 2 * ((b >> bit) & 1) + 1 * ((a >> bit) & 1); + if(!tree->children[i]) return -1; + else tree = tree->children[i]; + } + return tree ? tree->index : -1; +} + +#ifdef LODEPNG_COMPILE_ENCODER +static int color_tree_has(ColorTree* tree, unsigned char r, unsigned char g, unsigned char b, unsigned char a) { + return color_tree_get(tree, r, g, b, a) >= 0; +} +#endif /*LODEPNG_COMPILE_ENCODER*/ + +/*color is not allowed to already exist. +Index should be >= 0 (it's signed to be compatible with using -1 for "doesn't exist") +Returns error code, or 0 if ok*/ +static unsigned color_tree_add(ColorTree* tree, + unsigned char r, unsigned char g, unsigned char b, unsigned char a, unsigned index) { + int bit; + for(bit = 0; bit < 8; ++bit) { + int i = 8 * ((r >> bit) & 1) + 4 * ((g >> bit) & 1) + 2 * ((b >> bit) & 1) + 1 * ((a >> bit) & 1); + if(!tree->children[i]) { + tree->children[i] = (ColorTree*)lodepng_malloc(sizeof(ColorTree)); + if(!tree->children[i]) return 83; /*alloc fail*/ + color_tree_init(tree->children[i]); + } + tree = tree->children[i]; + } + tree->index = (int)index; + return 0; +} + +/*put a pixel, given its RGBA color, into image of any color type*/ +static unsigned rgba8ToPixel(unsigned char* out, size_t i, + const LodePNGColorMode* mode, ColorTree* tree /*for palette*/, + unsigned char r, unsigned char g, unsigned char b, unsigned char a) { + if(mode->colortype == LCT_GREY) { + unsigned char gray = r; /*((unsigned short)r + g + b) / 3u;*/ + if(mode->bitdepth == 8) out[i] = gray; + else if(mode->bitdepth == 16) out[i * 2 + 0] = out[i * 2 + 1] = gray; + else { + /*take the most significant bits of gray*/ + gray = ((unsigned)gray >> (8u - mode->bitdepth)) & ((1u << mode->bitdepth) - 1u); + addColorBits(out, i, mode->bitdepth, gray); + } + } else if(mode->colortype == LCT_RGB) { + if(mode->bitdepth == 8) { + out[i * 3 + 0] = r; + out[i * 3 + 1] = g; + out[i * 3 + 2] = b; + } else { + out[i * 6 + 0] = out[i * 6 + 1] = r; + out[i * 6 + 2] = out[i * 6 + 3] = g; + out[i * 6 + 4] = out[i * 6 + 5] = b; + } + } else if(mode->colortype == LCT_PALETTE) { + int index = color_tree_get(tree, r, g, b, a); + if(index < 0) return 82; /*color not in palette*/ + if(mode->bitdepth == 8) out[i] = index; + else addColorBits(out, i, mode->bitdepth, (unsigned)index); + } else if(mode->colortype == LCT_GREY_ALPHA) { + unsigned char gray = r; /*((unsigned short)r + g + b) / 3u;*/ + if(mode->bitdepth == 8) { + out[i * 2 + 0] = gray; + out[i * 2 + 1] = a; + } else if(mode->bitdepth == 16) { + out[i * 4 + 0] = out[i * 4 + 1] = gray; + out[i * 4 + 2] = out[i * 4 + 3] = a; + } + } else if(mode->colortype == LCT_RGBA) { + if(mode->bitdepth == 8) { + out[i * 4 + 0] = r; + out[i * 4 + 1] = g; + out[i * 4 + 2] = b; + out[i * 4 + 3] = a; + } else { + out[i * 8 + 0] = out[i * 8 + 1] = r; + out[i * 8 + 2] = out[i * 8 + 3] = g; + out[i * 8 + 4] = out[i * 8 + 5] = b; + out[i * 8 + 6] = out[i * 8 + 7] = a; + } + } + + return 0; /*no error*/ +} + +/*put a pixel, given its RGBA16 color, into image of any color 16-bitdepth type*/ +static void rgba16ToPixel(unsigned char* out, size_t i, + const LodePNGColorMode* mode, + unsigned short r, unsigned short g, unsigned short b, unsigned short a) { + if(mode->colortype == LCT_GREY) { + unsigned short gray = r; /*((unsigned)r + g + b) / 3u;*/ + out[i * 2 + 0] = (gray >> 8) & 255; + out[i * 2 + 1] = gray & 255; + } else if(mode->colortype == LCT_RGB) { + out[i * 6 + 0] = (r >> 8) & 255; + out[i * 6 + 1] = r & 255; + out[i * 6 + 2] = (g >> 8) & 255; + out[i * 6 + 3] = g & 255; + out[i * 6 + 4] = (b >> 8) & 255; + out[i * 6 + 5] = b & 255; + } else if(mode->colortype == LCT_GREY_ALPHA) { + unsigned short gray = r; /*((unsigned)r + g + b) / 3u;*/ + out[i * 4 + 0] = (gray >> 8) & 255; + out[i * 4 + 1] = gray & 255; + out[i * 4 + 2] = (a >> 8) & 255; + out[i * 4 + 3] = a & 255; + } else if(mode->colortype == LCT_RGBA) { + out[i * 8 + 0] = (r >> 8) & 255; + out[i * 8 + 1] = r & 255; + out[i * 8 + 2] = (g >> 8) & 255; + out[i * 8 + 3] = g & 255; + out[i * 8 + 4] = (b >> 8) & 255; + out[i * 8 + 5] = b & 255; + out[i * 8 + 6] = (a >> 8) & 255; + out[i * 8 + 7] = a & 255; + } +} + +/*Get RGBA8 color of pixel with index i (y * width + x) from the raw image with given color type.*/ +static void getPixelColorRGBA8(unsigned char* r, unsigned char* g, + unsigned char* b, unsigned char* a, + const unsigned char* in, size_t i, + const LodePNGColorMode* mode) { + if(mode->colortype == LCT_GREY) { + if(mode->bitdepth == 8) { + *r = *g = *b = in[i]; + if(mode->key_defined && *r == mode->key_r) *a = 0; + else *a = 255; + } else if(mode->bitdepth == 16) { + *r = *g = *b = in[i * 2 + 0]; + if(mode->key_defined && 256U * in[i * 2 + 0] + in[i * 2 + 1] == mode->key_r) *a = 0; + else *a = 255; + } else { + unsigned highest = ((1U << mode->bitdepth) - 1U); /*highest possible value for this bit depth*/ + size_t j = i * mode->bitdepth; + unsigned value = readBitsFromReversedStream(&j, in, mode->bitdepth); + *r = *g = *b = (value * 255) / highest; + if(mode->key_defined && value == mode->key_r) *a = 0; + else *a = 255; + } + } else if(mode->colortype == LCT_RGB) { + if(mode->bitdepth == 8) { + *r = in[i * 3 + 0]; *g = in[i * 3 + 1]; *b = in[i * 3 + 2]; + if(mode->key_defined && *r == mode->key_r && *g == mode->key_g && *b == mode->key_b) *a = 0; + else *a = 255; + } else { + *r = in[i * 6 + 0]; + *g = in[i * 6 + 2]; + *b = in[i * 6 + 4]; + if(mode->key_defined && 256U * in[i * 6 + 0] + in[i * 6 + 1] == mode->key_r + && 256U * in[i * 6 + 2] + in[i * 6 + 3] == mode->key_g + && 256U * in[i * 6 + 4] + in[i * 6 + 5] == mode->key_b) *a = 0; + else *a = 255; + } + } else if(mode->colortype == LCT_PALETTE) { + unsigned index; + if(mode->bitdepth == 8) index = in[i]; + else { + size_t j = i * mode->bitdepth; + index = readBitsFromReversedStream(&j, in, mode->bitdepth); + } + /*out of bounds of palette not checked: see lodepng_color_mode_alloc_palette.*/ + *r = mode->palette[index * 4 + 0]; + *g = mode->palette[index * 4 + 1]; + *b = mode->palette[index * 4 + 2]; + *a = mode->palette[index * 4 + 3]; + } else if(mode->colortype == LCT_GREY_ALPHA) { + if(mode->bitdepth == 8) { + *r = *g = *b = in[i * 2 + 0]; + *a = in[i * 2 + 1]; + } else { + *r = *g = *b = in[i * 4 + 0]; + *a = in[i * 4 + 2]; + } + } else if(mode->colortype == LCT_RGBA) { + if(mode->bitdepth == 8) { + *r = in[i * 4 + 0]; + *g = in[i * 4 + 1]; + *b = in[i * 4 + 2]; + *a = in[i * 4 + 3]; + } else { + *r = in[i * 8 + 0]; + *g = in[i * 8 + 2]; + *b = in[i * 8 + 4]; + *a = in[i * 8 + 6]; + } + } +} + +/*Similar to getPixelColorRGBA8, but with all the for loops inside of the color +mode test cases, optimized to convert the colors much faster, when converting +to the common case of RGBA with 8 bit per channel. buffer must be RGBA with +enough memory.*/ +static void getPixelColorsRGBA8(unsigned char* LODEPNG_RESTRICT buffer, size_t numpixels, + const unsigned char* LODEPNG_RESTRICT in, + const LodePNGColorMode* mode) { + unsigned num_channels = 4; + size_t i; + if(mode->colortype == LCT_GREY) { + if(mode->bitdepth == 8) { + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + buffer[0] = buffer[1] = buffer[2] = in[i]; + buffer[3] = 255; + } + if(mode->key_defined) { + buffer -= numpixels * num_channels; + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + if(buffer[0] == mode->key_r) buffer[3] = 0; + } + } + } else if(mode->bitdepth == 16) { + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + buffer[0] = buffer[1] = buffer[2] = in[i * 2]; + buffer[3] = mode->key_defined && 256U * in[i * 2 + 0] + in[i * 2 + 1] == mode->key_r ? 0 : 255; + } + } else { + unsigned highest = ((1U << mode->bitdepth) - 1U); /*highest possible value for this bit depth*/ + size_t j = 0; + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + unsigned value = readBitsFromReversedStream(&j, in, mode->bitdepth); + buffer[0] = buffer[1] = buffer[2] = (value * 255) / highest; + buffer[3] = mode->key_defined && value == mode->key_r ? 0 : 255; + } + } + } else if(mode->colortype == LCT_RGB) { + if(mode->bitdepth == 8) { + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + lodepng_memcpy(buffer, &in[i * 3], 3); + buffer[3] = 255; + } + if(mode->key_defined) { + buffer -= numpixels * num_channels; + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + if(buffer[0] == mode->key_r && buffer[1]== mode->key_g && buffer[2] == mode->key_b) buffer[3] = 0; + } + } + } else { + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + buffer[0] = in[i * 6 + 0]; + buffer[1] = in[i * 6 + 2]; + buffer[2] = in[i * 6 + 4]; + buffer[3] = mode->key_defined + && 256U * in[i * 6 + 0] + in[i * 6 + 1] == mode->key_r + && 256U * in[i * 6 + 2] + in[i * 6 + 3] == mode->key_g + && 256U * in[i * 6 + 4] + in[i * 6 + 5] == mode->key_b ? 0 : 255; + } + } + } else if(mode->colortype == LCT_PALETTE) { + if(mode->bitdepth == 8) { + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + unsigned index = in[i]; + /*out of bounds of palette not checked: see lodepng_color_mode_alloc_palette.*/ + lodepng_memcpy(buffer, &mode->palette[index * 4], 4); + } + } else { + size_t j = 0; + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + unsigned index = readBitsFromReversedStream(&j, in, mode->bitdepth); + /*out of bounds of palette not checked: see lodepng_color_mode_alloc_palette.*/ + lodepng_memcpy(buffer, &mode->palette[index * 4], 4); + } + } + } else if(mode->colortype == LCT_GREY_ALPHA) { + if(mode->bitdepth == 8) { + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + buffer[0] = buffer[1] = buffer[2] = in[i * 2 + 0]; + buffer[3] = in[i * 2 + 1]; + } + } else { + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + buffer[0] = buffer[1] = buffer[2] = in[i * 4 + 0]; + buffer[3] = in[i * 4 + 2]; + } + } + } else if(mode->colortype == LCT_RGBA) { + if(mode->bitdepth == 8) { + lodepng_memcpy(buffer, in, numpixels * 4); + } else { + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + buffer[0] = in[i * 8 + 0]; + buffer[1] = in[i * 8 + 2]; + buffer[2] = in[i * 8 + 4]; + buffer[3] = in[i * 8 + 6]; + } + } + } +} + +/*Similar to getPixelColorsRGBA8, but with 3-channel RGB output.*/ +static void getPixelColorsRGB8(unsigned char* LODEPNG_RESTRICT buffer, size_t numpixels, + const unsigned char* LODEPNG_RESTRICT in, + const LodePNGColorMode* mode) { + const unsigned num_channels = 3; + size_t i; + if(mode->colortype == LCT_GREY) { + if(mode->bitdepth == 8) { + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + buffer[0] = buffer[1] = buffer[2] = in[i]; + } + } else if(mode->bitdepth == 16) { + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + buffer[0] = buffer[1] = buffer[2] = in[i * 2]; + } + } else { + unsigned highest = ((1U << mode->bitdepth) - 1U); /*highest possible value for this bit depth*/ + size_t j = 0; + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + unsigned value = readBitsFromReversedStream(&j, in, mode->bitdepth); + buffer[0] = buffer[1] = buffer[2] = (value * 255) / highest; + } + } + } else if(mode->colortype == LCT_RGB) { + if(mode->bitdepth == 8) { + lodepng_memcpy(buffer, in, numpixels * 3); + } else { + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + buffer[0] = in[i * 6 + 0]; + buffer[1] = in[i * 6 + 2]; + buffer[2] = in[i * 6 + 4]; + } + } + } else if(mode->colortype == LCT_PALETTE) { + if(mode->bitdepth == 8) { + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + unsigned index = in[i]; + /*out of bounds of palette not checked: see lodepng_color_mode_alloc_palette.*/ + lodepng_memcpy(buffer, &mode->palette[index * 4], 3); + } + } else { + size_t j = 0; + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + unsigned index = readBitsFromReversedStream(&j, in, mode->bitdepth); + /*out of bounds of palette not checked: see lodepng_color_mode_alloc_palette.*/ + lodepng_memcpy(buffer, &mode->palette[index * 4], 3); + } + } + } else if(mode->colortype == LCT_GREY_ALPHA) { + if(mode->bitdepth == 8) { + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + buffer[0] = buffer[1] = buffer[2] = in[i * 2 + 0]; + } + } else { + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + buffer[0] = buffer[1] = buffer[2] = in[i * 4 + 0]; + } + } + } else if(mode->colortype == LCT_RGBA) { + if(mode->bitdepth == 8) { + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + lodepng_memcpy(buffer, &in[i * 4], 3); + } + } else { + for(i = 0; i != numpixels; ++i, buffer += num_channels) { + buffer[0] = in[i * 8 + 0]; + buffer[1] = in[i * 8 + 2]; + buffer[2] = in[i * 8 + 4]; + } + } + } +} + +/*Get RGBA16 color of pixel with index i (y * width + x) from the raw image with +given color type, but the given color type must be 16-bit itself.*/ +static void getPixelColorRGBA16(unsigned short* r, unsigned short* g, unsigned short* b, unsigned short* a, + const unsigned char* in, size_t i, const LodePNGColorMode* mode) { + if(mode->colortype == LCT_GREY) { + *r = *g = *b = 256 * in[i * 2 + 0] + in[i * 2 + 1]; + if(mode->key_defined && 256U * in[i * 2 + 0] + in[i * 2 + 1] == mode->key_r) *a = 0; + else *a = 65535; + } else if(mode->colortype == LCT_RGB) { + *r = 256u * in[i * 6 + 0] + in[i * 6 + 1]; + *g = 256u * in[i * 6 + 2] + in[i * 6 + 3]; + *b = 256u * in[i * 6 + 4] + in[i * 6 + 5]; + if(mode->key_defined + && 256u * in[i * 6 + 0] + in[i * 6 + 1] == mode->key_r + && 256u * in[i * 6 + 2] + in[i * 6 + 3] == mode->key_g + && 256u * in[i * 6 + 4] + in[i * 6 + 5] == mode->key_b) *a = 0; + else *a = 65535; + } else if(mode->colortype == LCT_GREY_ALPHA) { + *r = *g = *b = 256u * in[i * 4 + 0] + in[i * 4 + 1]; + *a = 256u * in[i * 4 + 2] + in[i * 4 + 3]; + } else if(mode->colortype == LCT_RGBA) { + *r = 256u * in[i * 8 + 0] + in[i * 8 + 1]; + *g = 256u * in[i * 8 + 2] + in[i * 8 + 3]; + *b = 256u * in[i * 8 + 4] + in[i * 8 + 5]; + *a = 256u * in[i * 8 + 6] + in[i * 8 + 7]; + } +} + +unsigned lodepng_convert(unsigned char* out, const unsigned char* in, + const LodePNGColorMode* mode_out, const LodePNGColorMode* mode_in, + unsigned w, unsigned h) { + size_t i; + ColorTree tree; + size_t numpixels = (size_t)w * (size_t)h; + unsigned error = 0; + + if(mode_in->colortype == LCT_PALETTE && !mode_in->palette) { + return 107; /* error: must provide palette if input mode is palette */ + } + + if(lodepng_color_mode_equal(mode_out, mode_in)) { + size_t numbytes = lodepng_get_raw_size(w, h, mode_in); + lodepng_memcpy(out, in, numbytes); + return 0; + } + + if(mode_out->colortype == LCT_PALETTE) { + size_t palettesize = mode_out->palettesize; + const unsigned char* palette = mode_out->palette; + size_t palsize = (size_t)1u << mode_out->bitdepth; + /*if the user specified output palette but did not give the values, assume + they want the values of the input color type (assuming that one is palette). + Note that we never create a new palette ourselves.*/ + if(palettesize == 0) { + palettesize = mode_in->palettesize; + palette = mode_in->palette; + /*if the input was also palette with same bitdepth, then the color types are also + equal, so copy literally. This to preserve the exact indices that were in the PNG + even in case there are duplicate colors in the palette.*/ + if(mode_in->colortype == LCT_PALETTE && mode_in->bitdepth == mode_out->bitdepth) { + size_t numbytes = lodepng_get_raw_size(w, h, mode_in); + lodepng_memcpy(out, in, numbytes); + return 0; + } + } + if(palettesize < palsize) palsize = palettesize; + color_tree_init(&tree); + for(i = 0; i != palsize; ++i) { + const unsigned char* p = &palette[i * 4]; + error = color_tree_add(&tree, p[0], p[1], p[2], p[3], (unsigned)i); + if(error) break; + } + } + + if(!error) { + if(mode_in->bitdepth == 16 && mode_out->bitdepth == 16) { + for(i = 0; i != numpixels; ++i) { + unsigned short r = 0, g = 0, b = 0, a = 0; + getPixelColorRGBA16(&r, &g, &b, &a, in, i, mode_in); + rgba16ToPixel(out, i, mode_out, r, g, b, a); + } + } else if(mode_out->bitdepth == 8 && mode_out->colortype == LCT_RGBA) { + getPixelColorsRGBA8(out, numpixels, in, mode_in); + } else if(mode_out->bitdepth == 8 && mode_out->colortype == LCT_RGB) { + getPixelColorsRGB8(out, numpixels, in, mode_in); + } else { + unsigned char r = 0, g = 0, b = 0, a = 0; + for(i = 0; i != numpixels; ++i) { + getPixelColorRGBA8(&r, &g, &b, &a, in, i, mode_in); + error = rgba8ToPixel(out, i, mode_out, &tree, r, g, b, a); + if(error) break; + } + } + } + + if(mode_out->colortype == LCT_PALETTE) { + color_tree_cleanup(&tree); + } + + return error; +} + + +/* Converts a single rgb color without alpha from one type to another, color bits truncated to +their bitdepth. In case of single channel (gray or palette), only the r channel is used. Slow +function, do not use to process all pixels of an image. Alpha channel not supported on purpose: +this is for bKGD, supporting alpha may prevent it from finding a color in the palette, from the +specification it looks like bKGD should ignore the alpha values of the palette since it can use +any palette index but doesn't have an alpha channel. Idem with ignoring color key. */ +unsigned lodepng_convert_rgb( + unsigned* r_out, unsigned* g_out, unsigned* b_out, + unsigned r_in, unsigned g_in, unsigned b_in, + const LodePNGColorMode* mode_out, const LodePNGColorMode* mode_in) { + unsigned r = 0, g = 0, b = 0; + unsigned mul = 65535 / ((1u << mode_in->bitdepth) - 1u); /*65535, 21845, 4369, 257, 1*/ + unsigned shift = 16 - mode_out->bitdepth; + + if(mode_in->colortype == LCT_GREY || mode_in->colortype == LCT_GREY_ALPHA) { + r = g = b = r_in * mul; + } else if(mode_in->colortype == LCT_RGB || mode_in->colortype == LCT_RGBA) { + r = r_in * mul; + g = g_in * mul; + b = b_in * mul; + } else if(mode_in->colortype == LCT_PALETTE) { + if(r_in >= mode_in->palettesize) return 82; + r = mode_in->palette[r_in * 4 + 0] * 257u; + g = mode_in->palette[r_in * 4 + 1] * 257u; + b = mode_in->palette[r_in * 4 + 2] * 257u; + } else { + return 31; + } + + /* now convert to output format */ + if(mode_out->colortype == LCT_GREY || mode_out->colortype == LCT_GREY_ALPHA) { + *r_out = r >> shift ; + } else if(mode_out->colortype == LCT_RGB || mode_out->colortype == LCT_RGBA) { + *r_out = r >> shift ; + *g_out = g >> shift ; + *b_out = b >> shift ; + } else if(mode_out->colortype == LCT_PALETTE) { + unsigned i; + /* a 16-bit color cannot be in the palette */ + if((r >> 8) != (r & 255) || (g >> 8) != (g & 255) || (b >> 8) != (b & 255)) return 82; + for(i = 0; i < mode_out->palettesize; i++) { + unsigned j = i * 4; + if((r >> 8) == mode_out->palette[j + 0] && (g >> 8) == mode_out->palette[j + 1] && + (b >> 8) == mode_out->palette[j + 2]) { + *r_out = i; + return 0; + } + } + return 82; + } else { + return 31; + } + + return 0; +} + +#ifdef LODEPNG_COMPILE_ENCODER + +void lodepng_color_stats_init(LodePNGColorStats* stats) { + /*stats*/ + stats->colored = 0; + stats->key = 0; + stats->key_r = stats->key_g = stats->key_b = 0; + stats->alpha = 0; + stats->numcolors = 0; + stats->bits = 1; + stats->numpixels = 0; + /*settings*/ + stats->allow_palette = 1; + stats->allow_greyscale = 1; +} + +/*function used for debug purposes with C++*/ +/*void printColorStats(LodePNGColorStats* p) { + std::cout << "colored: " << (int)p->colored << ", "; + std::cout << "key: " << (int)p->key << ", "; + std::cout << "key_r: " << (int)p->key_r << ", "; + std::cout << "key_g: " << (int)p->key_g << ", "; + std::cout << "key_b: " << (int)p->key_b << ", "; + std::cout << "alpha: " << (int)p->alpha << ", "; + std::cout << "numcolors: " << (int)p->numcolors << ", "; + std::cout << "bits: " << (int)p->bits << std::endl; +}*/ + +/*Returns how many bits needed to represent given value (max 8 bit)*/ +static unsigned getValueRequiredBits(unsigned char value) { + if(value == 0 || value == 255) return 1; + /*The scaling of 2-bit and 4-bit values uses multiples of 85 and 17*/ + if(value % 17 == 0) return value % 85 == 0 ? 2 : 4; + return 8; +} + +/*stats must already have been inited. */ +unsigned lodepng_compute_color_stats(LodePNGColorStats* stats, + const unsigned char* in, unsigned w, unsigned h, + const LodePNGColorMode* mode_in) { + size_t i; + ColorTree tree; + size_t numpixels = (size_t)w * (size_t)h; + unsigned error = 0; + + /* mark things as done already if it would be impossible to have a more expensive case */ + unsigned colored_done = lodepng_is_greyscale_type(mode_in) ? 1 : 0; + unsigned alpha_done = lodepng_can_have_alpha(mode_in) ? 0 : 1; + unsigned numcolors_done = 0; + unsigned bpp = lodepng_get_bpp(mode_in); + unsigned bits_done = (stats->bits == 1 && bpp == 1) ? 1 : 0; + unsigned sixteen = 0; /* whether the input image is 16 bit */ + unsigned maxnumcolors = 257; + if(bpp <= 8) maxnumcolors = LODEPNG_MIN(257, stats->numcolors + (1u << bpp)); + + stats->numpixels += numpixels; + + /*if palette not allowed, no need to compute numcolors*/ + if(!stats->allow_palette) numcolors_done = 1; + + color_tree_init(&tree); + + /*If the stats was already filled in from previous data, fill its palette in tree + and mark things as done already if we know they are the most expensive case already*/ + if(stats->alpha) alpha_done = 1; + if(stats->colored) colored_done = 1; + if(stats->bits == 16) numcolors_done = 1; + if(stats->bits >= bpp) bits_done = 1; + if(stats->numcolors >= maxnumcolors) numcolors_done = 1; + + if(!numcolors_done) { + for(i = 0; i < stats->numcolors; i++) { + const unsigned char* color = &stats->palette[i * 4]; + error = color_tree_add(&tree, color[0], color[1], color[2], color[3], i); + if(error) goto cleanup; + } + } + + /*Check if the 16-bit input is truly 16-bit*/ + if(mode_in->bitdepth == 16 && !sixteen) { + unsigned short r = 0, g = 0, b = 0, a = 0; + for(i = 0; i != numpixels; ++i) { + getPixelColorRGBA16(&r, &g, &b, &a, in, i, mode_in); + if((r & 255) != ((r >> 8) & 255) || (g & 255) != ((g >> 8) & 255) || + (b & 255) != ((b >> 8) & 255) || (a & 255) != ((a >> 8) & 255)) /*first and second byte differ*/ { + stats->bits = 16; + sixteen = 1; + bits_done = 1; + numcolors_done = 1; /*counting colors no longer useful, palette doesn't support 16-bit*/ + break; + } + } + } + + if(sixteen) { + unsigned short r = 0, g = 0, b = 0, a = 0; + + for(i = 0; i != numpixels; ++i) { + getPixelColorRGBA16(&r, &g, &b, &a, in, i, mode_in); + + if(!colored_done && (r != g || r != b)) { + stats->colored = 1; + colored_done = 1; + } + + if(!alpha_done) { + unsigned matchkey = (r == stats->key_r && g == stats->key_g && b == stats->key_b); + if(a != 65535 && (a != 0 || (stats->key && !matchkey))) { + stats->alpha = 1; + stats->key = 0; + alpha_done = 1; + } else if(a == 0 && !stats->alpha && !stats->key) { + stats->key = 1; + stats->key_r = r; + stats->key_g = g; + stats->key_b = b; + } else if(a == 65535 && stats->key && matchkey) { + /* Color key cannot be used if an opaque pixel also has that RGB color. */ + stats->alpha = 1; + stats->key = 0; + alpha_done = 1; + } + } + if(alpha_done && numcolors_done && colored_done && bits_done) break; + } + + if(stats->key && !stats->alpha) { + for(i = 0; i != numpixels; ++i) { + getPixelColorRGBA16(&r, &g, &b, &a, in, i, mode_in); + if(a != 0 && r == stats->key_r && g == stats->key_g && b == stats->key_b) { + /* Color key cannot be used if an opaque pixel also has that RGB color. */ + stats->alpha = 1; + stats->key = 0; + alpha_done = 1; + } + } + } + } else /* < 16-bit */ { + unsigned char r = 0, g = 0, b = 0, a = 0; + for(i = 0; i != numpixels; ++i) { + getPixelColorRGBA8(&r, &g, &b, &a, in, i, mode_in); + + if(!bits_done && stats->bits < 8) { + /*only r is checked, < 8 bits is only relevant for grayscale*/ + unsigned bits = getValueRequiredBits(r); + if(bits > stats->bits) stats->bits = bits; + } + bits_done = (stats->bits >= bpp); + + if(!colored_done && (r != g || r != b)) { + stats->colored = 1; + colored_done = 1; + if(stats->bits < 8) stats->bits = 8; /*PNG has no colored modes with less than 8-bit per channel*/ + } + + if(!alpha_done) { + unsigned matchkey = (r == stats->key_r && g == stats->key_g && b == stats->key_b); + if(a != 255 && (a != 0 || (stats->key && !matchkey))) { + stats->alpha = 1; + stats->key = 0; + alpha_done = 1; + if(stats->bits < 8) stats->bits = 8; /*PNG has no alphachannel modes with less than 8-bit per channel*/ + } else if(a == 0 && !stats->alpha && !stats->key) { + stats->key = 1; + stats->key_r = r; + stats->key_g = g; + stats->key_b = b; + } else if(a == 255 && stats->key && matchkey) { + /* Color key cannot be used if an opaque pixel also has that RGB color. */ + stats->alpha = 1; + stats->key = 0; + alpha_done = 1; + if(stats->bits < 8) stats->bits = 8; /*PNG has no alphachannel modes with less than 8-bit per channel*/ + } + } + + if(!numcolors_done) { + if(!color_tree_has(&tree, r, g, b, a)) { + error = color_tree_add(&tree, r, g, b, a, stats->numcolors); + if(error) goto cleanup; + if(stats->numcolors < 256) { + unsigned char* p = stats->palette; + unsigned n = stats->numcolors; + p[n * 4 + 0] = r; + p[n * 4 + 1] = g; + p[n * 4 + 2] = b; + p[n * 4 + 3] = a; + } + ++stats->numcolors; + numcolors_done = stats->numcolors >= maxnumcolors; + } + } + + if(alpha_done && numcolors_done && colored_done && bits_done) break; + } + + if(stats->key && !stats->alpha) { + for(i = 0; i != numpixels; ++i) { + getPixelColorRGBA8(&r, &g, &b, &a, in, i, mode_in); + if(a != 0 && r == stats->key_r && g == stats->key_g && b == stats->key_b) { + /* Color key cannot be used if an opaque pixel also has that RGB color. */ + stats->alpha = 1; + stats->key = 0; + alpha_done = 1; + if(stats->bits < 8) stats->bits = 8; /*PNG has no alphachannel modes with less than 8-bit per channel*/ + } + } + } + + /*make the stats's key always 16-bit for consistency - repeat each byte twice*/ + stats->key_r += (stats->key_r << 8); + stats->key_g += (stats->key_g << 8); + stats->key_b += (stats->key_b << 8); + } + +cleanup: + color_tree_cleanup(&tree); + return error; +} + +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS +/*Adds a single color to the color stats. The stats must already have been inited. The color must be given as 16-bit +(with 2 bytes repeating for 8-bit and 65535 for opaque alpha channel). This function is expensive, do not call it for +all pixels of an image but only for a few additional values. */ +static unsigned lodepng_color_stats_add(LodePNGColorStats* stats, + unsigned r, unsigned g, unsigned b, unsigned a) { + unsigned error = 0; + unsigned char image[8]; + LodePNGColorMode mode; + lodepng_color_mode_init(&mode); + image[0] = r >> 8; image[1] = r; image[2] = g >> 8; image[3] = g; + image[4] = b >> 8; image[5] = b; image[6] = a >> 8; image[7] = a; + mode.bitdepth = 16; + mode.colortype = LCT_RGBA; + error = lodepng_compute_color_stats(stats, image, 1, 1, &mode); + lodepng_color_mode_cleanup(&mode); + return error; +} +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + +/*Computes a minimal PNG color model that can contain all colors as indicated by the stats. +The stats should be computed with lodepng_compute_color_stats. +mode_in is raw color profile of the image the stats were computed on, to copy palette order from when relevant. +Minimal PNG color model means the color type and bit depth that gives smallest amount of bits in the output image, +e.g. gray if only grayscale pixels, palette if less than 256 colors, color key if only single transparent color, ... +This is used if auto_convert is enabled (it is by default). +*/ +static unsigned auto_choose_color(LodePNGColorMode* mode_out, + const LodePNGColorMode* mode_in, + const LodePNGColorStats* stats) { + unsigned error = 0; + unsigned palettebits; + size_t i, n; + size_t numpixels = stats->numpixels; + unsigned palette_ok, gray_ok; + + unsigned alpha = stats->alpha; + unsigned key = stats->key; + unsigned bits = stats->bits; + + mode_out->key_defined = 0; + + if(key && numpixels <= 16) { + alpha = 1; /*too few pixels to justify tRNS chunk overhead*/ + key = 0; + if(bits < 8) bits = 8; /*PNG has no alphachannel modes with less than 8-bit per channel*/ + } + + gray_ok = !stats->colored; + if(!stats->allow_greyscale) gray_ok = 0; + if(!gray_ok && bits < 8) bits = 8; + + n = stats->numcolors; + palettebits = n <= 2 ? 1 : (n <= 4 ? 2 : (n <= 16 ? 4 : 8)); + palette_ok = n <= 256 && bits <= 8 && n != 0; /*n==0 means likely numcolors wasn't computed*/ + if(numpixels < n * 2) palette_ok = 0; /*don't add palette overhead if image has only a few pixels*/ + if(gray_ok && !alpha && bits <= palettebits) palette_ok = 0; /*gray is less overhead*/ + if(!stats->allow_palette) palette_ok = 0; + + if(palette_ok) { + const unsigned char* p = stats->palette; + lodepng_palette_clear(mode_out); /*remove potential earlier palette*/ + for(i = 0; i != stats->numcolors; ++i) { + error = lodepng_palette_add(mode_out, p[i * 4 + 0], p[i * 4 + 1], p[i * 4 + 2], p[i * 4 + 3]); + if(error) break; + } + + mode_out->colortype = LCT_PALETTE; + mode_out->bitdepth = palettebits; + + if(mode_in->colortype == LCT_PALETTE && mode_in->palettesize >= mode_out->palettesize + && mode_in->bitdepth == mode_out->bitdepth) { + /*If input should have same palette colors, keep original to preserve its order and prevent conversion*/ + lodepng_color_mode_cleanup(mode_out); /*clears palette, keeps the above set colortype and bitdepth fields as-is*/ + lodepng_color_mode_copy(mode_out, mode_in); + } + } else /*8-bit or 16-bit per channel*/ { + mode_out->bitdepth = bits; + mode_out->colortype = alpha ? (gray_ok ? LCT_GREY_ALPHA : LCT_RGBA) + : (gray_ok ? LCT_GREY : LCT_RGB); + if(key) { + unsigned mask = (1u << mode_out->bitdepth) - 1u; /*stats always uses 16-bit, mask converts it*/ + mode_out->key_r = stats->key_r & mask; + mode_out->key_g = stats->key_g & mask; + mode_out->key_b = stats->key_b & mask; + mode_out->key_defined = 1; + } + } + + return error; +} + +#endif /* #ifdef LODEPNG_COMPILE_ENCODER */ + +/* +Paeth predictor, used by PNG filter type 4 +The parameters are of type short, but should come from unsigned chars, the shorts +are only needed to make the paeth calculation correct. +*/ +static unsigned char paethPredictor(short a, short b, short c) { + short pa = LODEPNG_ABS(b - c); + short pb = LODEPNG_ABS(a - c); + short pc = LODEPNG_ABS(a + b - c - c); + /* return input value associated with smallest of pa, pb, pc (with certain priority if equal) */ + if(pb < pa) { a = b; pa = pb; } + return (pc < pa) ? c : a; +} + +/*shared values used by multiple Adam7 related functions*/ + +static const unsigned ADAM7_IX[7] = { 0, 4, 0, 2, 0, 1, 0 }; /*x start values*/ +static const unsigned ADAM7_IY[7] = { 0, 0, 4, 0, 2, 0, 1 }; /*y start values*/ +static const unsigned ADAM7_DX[7] = { 8, 8, 4, 4, 2, 2, 1 }; /*x delta values*/ +static const unsigned ADAM7_DY[7] = { 8, 8, 8, 4, 4, 2, 2 }; /*y delta values*/ + +/* +Outputs various dimensions and positions in the image related to the Adam7 reduced images. +passw: output containing the width of the 7 passes +passh: output containing the height of the 7 passes +filter_passstart: output containing the index of the start and end of each + reduced image with filter bytes +padded_passstart output containing the index of the start and end of each + reduced image when without filter bytes but with padded scanlines +passstart: output containing the index of the start and end of each reduced + image without padding between scanlines, but still padding between the images +w, h: width and height of non-interlaced image +bpp: bits per pixel +"padded" is only relevant if bpp is less than 8 and a scanline or image does not + end at a full byte +*/ +static void Adam7_getpassvalues(unsigned passw[7], unsigned passh[7], size_t filter_passstart[8], + size_t padded_passstart[8], size_t passstart[8], unsigned w, unsigned h, unsigned bpp) { + /*the passstart values have 8 values: the 8th one indicates the byte after the end of the 7th (= last) pass*/ + unsigned i; + + /*calculate width and height in pixels of each pass*/ + for(i = 0; i != 7; ++i) { + passw[i] = (w + ADAM7_DX[i] - ADAM7_IX[i] - 1) / ADAM7_DX[i]; + passh[i] = (h + ADAM7_DY[i] - ADAM7_IY[i] - 1) / ADAM7_DY[i]; + if(passw[i] == 0) passh[i] = 0; + if(passh[i] == 0) passw[i] = 0; + } + + filter_passstart[0] = padded_passstart[0] = passstart[0] = 0; + for(i = 0; i != 7; ++i) { + /*if passw[i] is 0, it's 0 bytes, not 1 (no filtertype-byte)*/ + filter_passstart[i + 1] = filter_passstart[i] + + ((passw[i] && passh[i]) ? passh[i] * (1u + (passw[i] * bpp + 7u) / 8u) : 0); + /*bits padded if needed to fill full byte at end of each scanline*/ + padded_passstart[i + 1] = padded_passstart[i] + passh[i] * ((passw[i] * bpp + 7u) / 8u); + /*only padded at end of reduced image*/ + passstart[i + 1] = passstart[i] + (passh[i] * passw[i] * bpp + 7u) / 8u; + } +} + +#ifdef LODEPNG_COMPILE_DECODER + +/* ////////////////////////////////////////////////////////////////////////// */ +/* / PNG Decoder / */ +/* ////////////////////////////////////////////////////////////////////////// */ + +/*read the information from the header and store it in the LodePNGInfo. return value is error*/ +unsigned lodepng_inspect(unsigned* w, unsigned* h, LodePNGState* state, + const unsigned char* in, size_t insize) { + unsigned width, height; + LodePNGInfo* info = &state->info_png; + if(insize == 0 || in == 0) { + CERROR_RETURN_ERROR(state->error, 48); /*error: the given data is empty*/ + } + if(insize < 33) { + CERROR_RETURN_ERROR(state->error, 27); /*error: the data length is smaller than the length of a PNG header*/ + } + + /*when decoding a new PNG image, make sure all parameters created after previous decoding are reset*/ + /* TODO: remove this. One should use a new LodePNGState for new sessions */ + lodepng_info_cleanup(info); + lodepng_info_init(info); + + if(in[0] != 137 || in[1] != 80 || in[2] != 78 || in[3] != 71 + || in[4] != 13 || in[5] != 10 || in[6] != 26 || in[7] != 10) { + CERROR_RETURN_ERROR(state->error, 28); /*error: the first 8 bytes are not the correct PNG signature*/ + } + if(lodepng_chunk_length(in + 8) != 13) { + CERROR_RETURN_ERROR(state->error, 94); /*error: header size must be 13 bytes*/ + } + if(!lodepng_chunk_type_equals(in + 8, "IHDR")) { + CERROR_RETURN_ERROR(state->error, 29); /*error: it doesn't start with a IHDR chunk!*/ + } + + /*read the values given in the header*/ + width = lodepng_read32bitInt(&in[16]); + height = lodepng_read32bitInt(&in[20]); + /*TODO: remove the undocumented feature that allows to give null pointers to width or height*/ + if(w) *w = width; + if(h) *h = height; + info->color.bitdepth = in[24]; + info->color.colortype = (LodePNGColorType)in[25]; + info->compression_method = in[26]; + info->filter_method = in[27]; + info->interlace_method = in[28]; + + /*errors returned only after the parsing so other values are still output*/ + + /*error: invalid image size*/ + if(width == 0 || height == 0) CERROR_RETURN_ERROR(state->error, 93); + /*error: invalid colortype or bitdepth combination*/ + state->error = checkColorValidity(info->color.colortype, info->color.bitdepth); + if(state->error) return state->error; + /*error: only compression method 0 is allowed in the specification*/ + if(info->compression_method != 0) CERROR_RETURN_ERROR(state->error, 32); + /*error: only filter method 0 is allowed in the specification*/ + if(info->filter_method != 0) CERROR_RETURN_ERROR(state->error, 33); + /*error: only interlace methods 0 and 1 exist in the specification*/ + if(info->interlace_method > 1) CERROR_RETURN_ERROR(state->error, 34); + + if(!state->decoder.ignore_crc) { + unsigned CRC = lodepng_read32bitInt(&in[29]); + unsigned checksum = lodepng_crc32(&in[12], 17); + if(CRC != checksum) { + CERROR_RETURN_ERROR(state->error, 57); /*invalid CRC*/ + } + } + + return state->error; +} + +static unsigned unfilterScanline(unsigned char* recon, const unsigned char* scanline, const unsigned char* precon, + size_t bytewidth, unsigned char filterType, size_t length) { + /* + For PNG filter method 0 + unfilter a PNG image scanline by scanline. when the pixels are smaller than 1 byte, + the filter works byte per byte (bytewidth = 1) + precon is the previous unfiltered scanline, recon the result, scanline the current one + the incoming scanlines do NOT include the filtertype byte, that one is given in the parameter filterType instead + recon and scanline MAY be the same memory address! precon must be disjoint. + */ + + size_t i; + switch(filterType) { + case 0: + for(i = 0; i != length; ++i) recon[i] = scanline[i]; + break; + case 1: { + size_t j = 0; + for(i = 0; i != bytewidth; ++i) recon[i] = scanline[i]; + for(i = bytewidth; i != length; ++i, ++j) recon[i] = scanline[i] + recon[j]; + break; + } + case 2: + if(precon) { + for(i = 0; i != length; ++i) recon[i] = scanline[i] + precon[i]; + } else { + for(i = 0; i != length; ++i) recon[i] = scanline[i]; + } + break; + case 3: + if(precon) { + size_t j = 0; + for(i = 0; i != bytewidth; ++i) recon[i] = scanline[i] + (precon[i] >> 1u); + /* Unroll independent paths of this predictor. A 6x and 8x version is also possible but that adds + too much code. Whether this speeds up anything depends on compiler and settings. */ + if(bytewidth >= 4) { + for(; i + 3 < length; i += 4, j += 4) { + unsigned char s0 = scanline[i + 0], s1 = scanline[i + 1], s2 = scanline[i + 2], s3 = scanline[i + 3]; + unsigned char r0 = recon[j + 0], r1 = recon[j + 1], r2 = recon[j + 2], r3 = recon[j + 3]; + unsigned char p0 = precon[i + 0], p1 = precon[i + 1], p2 = precon[i + 2], p3 = precon[i + 3]; + recon[i + 0] = s0 + ((r0 + p0) >> 1u); + recon[i + 1] = s1 + ((r1 + p1) >> 1u); + recon[i + 2] = s2 + ((r2 + p2) >> 1u); + recon[i + 3] = s3 + ((r3 + p3) >> 1u); + } + } else if(bytewidth >= 3) { + for(; i + 2 < length; i += 3, j += 3) { + unsigned char s0 = scanline[i + 0], s1 = scanline[i + 1], s2 = scanline[i + 2]; + unsigned char r0 = recon[j + 0], r1 = recon[j + 1], r2 = recon[j + 2]; + unsigned char p0 = precon[i + 0], p1 = precon[i + 1], p2 = precon[i + 2]; + recon[i + 0] = s0 + ((r0 + p0) >> 1u); + recon[i + 1] = s1 + ((r1 + p1) >> 1u); + recon[i + 2] = s2 + ((r2 + p2) >> 1u); + } + } else if(bytewidth >= 2) { + for(; i + 1 < length; i += 2, j += 2) { + unsigned char s0 = scanline[i + 0], s1 = scanline[i + 1]; + unsigned char r0 = recon[j + 0], r1 = recon[j + 1]; + unsigned char p0 = precon[i + 0], p1 = precon[i + 1]; + recon[i + 0] = s0 + ((r0 + p0) >> 1u); + recon[i + 1] = s1 + ((r1 + p1) >> 1u); + } + } + for(; i != length; ++i, ++j) recon[i] = scanline[i] + ((recon[j] + precon[i]) >> 1u); + } else { + size_t j = 0; + for(i = 0; i != bytewidth; ++i) recon[i] = scanline[i]; + for(i = bytewidth; i != length; ++i, ++j) recon[i] = scanline[i] + (recon[j] >> 1u); + } + break; + case 4: + if(precon) { + size_t j = 0; + for(i = 0; i != bytewidth; ++i) { + recon[i] = (scanline[i] + precon[i]); /*paethPredictor(0, precon[i], 0) is always precon[i]*/ + } + + /* Unroll independent paths of the paeth predictor. A 6x and 8x version is also possible but that + adds too much code. Whether this speeds up anything depends on compiler and settings. */ + if(bytewidth >= 4) { + for(; i + 3 < length; i += 4, j += 4) { + unsigned char s0 = scanline[i + 0], s1 = scanline[i + 1], s2 = scanline[i + 2], s3 = scanline[i + 3]; + unsigned char r0 = recon[j + 0], r1 = recon[j + 1], r2 = recon[j + 2], r3 = recon[j + 3]; + unsigned char p0 = precon[i + 0], p1 = precon[i + 1], p2 = precon[i + 2], p3 = precon[i + 3]; + unsigned char q0 = precon[j + 0], q1 = precon[j + 1], q2 = precon[j + 2], q3 = precon[j + 3]; + recon[i + 0] = s0 + paethPredictor(r0, p0, q0); + recon[i + 1] = s1 + paethPredictor(r1, p1, q1); + recon[i + 2] = s2 + paethPredictor(r2, p2, q2); + recon[i + 3] = s3 + paethPredictor(r3, p3, q3); + } + } else if(bytewidth >= 3) { + for(; i + 2 < length; i += 3, j += 3) { + unsigned char s0 = scanline[i + 0], s1 = scanline[i + 1], s2 = scanline[i + 2]; + unsigned char r0 = recon[j + 0], r1 = recon[j + 1], r2 = recon[j + 2]; + unsigned char p0 = precon[i + 0], p1 = precon[i + 1], p2 = precon[i + 2]; + unsigned char q0 = precon[j + 0], q1 = precon[j + 1], q2 = precon[j + 2]; + recon[i + 0] = s0 + paethPredictor(r0, p0, q0); + recon[i + 1] = s1 + paethPredictor(r1, p1, q1); + recon[i + 2] = s2 + paethPredictor(r2, p2, q2); + } + } else if(bytewidth >= 2) { + for(; i + 1 < length; i += 2, j += 2) { + unsigned char s0 = scanline[i + 0], s1 = scanline[i + 1]; + unsigned char r0 = recon[j + 0], r1 = recon[j + 1]; + unsigned char p0 = precon[i + 0], p1 = precon[i + 1]; + unsigned char q0 = precon[j + 0], q1 = precon[j + 1]; + recon[i + 0] = s0 + paethPredictor(r0, p0, q0); + recon[i + 1] = s1 + paethPredictor(r1, p1, q1); + } + } + + for(; i != length; ++i, ++j) { + recon[i] = (scanline[i] + paethPredictor(recon[i - bytewidth], precon[i], precon[j])); + } + } else { + size_t j = 0; + for(i = 0; i != bytewidth; ++i) { + recon[i] = scanline[i]; + } + for(i = bytewidth; i != length; ++i, ++j) { + /*paethPredictor(recon[i - bytewidth], 0, 0) is always recon[i - bytewidth]*/ + recon[i] = (scanline[i] + recon[j]); + } + } + break; + default: return 36; /*error: invalid filter type given*/ + } + return 0; +} + +static unsigned unfilter(unsigned char* out, const unsigned char* in, unsigned w, unsigned h, unsigned bpp) { + /* + For PNG filter method 0 + this function unfilters a single image (e.g. without interlacing this is called once, with Adam7 seven times) + out must have enough bytes allocated already, in must have the scanlines + 1 filtertype byte per scanline + w and h are image dimensions or dimensions of reduced image, bpp is bits per pixel + in and out are allowed to be the same memory address (but aren't the same size since in has the extra filter bytes) + */ + + unsigned y; + unsigned char* prevline = 0; + + /*bytewidth is used for filtering, is 1 when bpp < 8, number of bytes per pixel otherwise*/ + size_t bytewidth = (bpp + 7u) / 8u; + /*the width of a scanline in bytes, not including the filter type*/ + size_t linebytes = lodepng_get_raw_size_idat(w, 1, bpp) - 1u; + + for(y = 0; y < h; ++y) { + size_t outindex = linebytes * y; + size_t inindex = (1 + linebytes) * y; /*the extra filterbyte added to each row*/ + unsigned char filterType = in[inindex]; + + CERROR_TRY_RETURN(unfilterScanline(&out[outindex], &in[inindex + 1], prevline, bytewidth, filterType, linebytes)); + + prevline = &out[outindex]; + } + + return 0; +} + +/* +in: Adam7 interlaced image, with no padding bits between scanlines, but between + reduced images so that each reduced image starts at a byte. +out: the same pixels, but re-ordered so that they're now a non-interlaced image with size w*h +bpp: bits per pixel +out has the following size in bits: w * h * bpp. +in is possibly bigger due to padding bits between reduced images. +out must be big enough AND must be 0 everywhere if bpp < 8 in the current implementation +(because that's likely a little bit faster) +NOTE: comments about padding bits are only relevant if bpp < 8 +*/ +static void Adam7_deinterlace(unsigned char* out, const unsigned char* in, unsigned w, unsigned h, unsigned bpp) { + unsigned passw[7], passh[7]; + size_t filter_passstart[8], padded_passstart[8], passstart[8]; + unsigned i; + + Adam7_getpassvalues(passw, passh, filter_passstart, padded_passstart, passstart, w, h, bpp); + + if(bpp >= 8) { + for(i = 0; i != 7; ++i) { + unsigned x, y, b; + size_t bytewidth = bpp / 8u; + for(y = 0; y < passh[i]; ++y) + for(x = 0; x < passw[i]; ++x) { + size_t pixelinstart = passstart[i] + (y * passw[i] + x) * bytewidth; + size_t pixeloutstart = ((ADAM7_IY[i] + (size_t)y * ADAM7_DY[i]) * (size_t)w + + ADAM7_IX[i] + (size_t)x * ADAM7_DX[i]) * bytewidth; + for(b = 0; b < bytewidth; ++b) { + out[pixeloutstart + b] = in[pixelinstart + b]; + } + } + } + } else /*bpp < 8: Adam7 with pixels < 8 bit is a bit trickier: with bit pointers*/ { + for(i = 0; i != 7; ++i) { + unsigned x, y, b; + unsigned ilinebits = bpp * passw[i]; + unsigned olinebits = bpp * w; + size_t obp, ibp; /*bit pointers (for out and in buffer)*/ + for(y = 0; y < passh[i]; ++y) + for(x = 0; x < passw[i]; ++x) { + ibp = (8 * passstart[i]) + (y * ilinebits + x * bpp); + obp = (ADAM7_IY[i] + (size_t)y * ADAM7_DY[i]) * olinebits + (ADAM7_IX[i] + (size_t)x * ADAM7_DX[i]) * bpp; + for(b = 0; b < bpp; ++b) { + unsigned char bit = readBitFromReversedStream(&ibp, in); + setBitOfReversedStream(&obp, out, bit); + } + } + } + } +} + +static void removePaddingBits(unsigned char* out, const unsigned char* in, + size_t olinebits, size_t ilinebits, unsigned h) { + /* + After filtering there are still padding bits if scanlines have non multiple of 8 bit amounts. They need + to be removed (except at last scanline of (Adam7-reduced) image) before working with pure image buffers + for the Adam7 code, the color convert code and the output to the user. + in and out are allowed to be the same buffer, in may also be higher but still overlapping; in must + have >= ilinebits*h bits, out must have >= olinebits*h bits, olinebits must be <= ilinebits + also used to move bits after earlier such operations happened, e.g. in a sequence of reduced images from Adam7 + only useful if (ilinebits - olinebits) is a value in the range 1..7 + */ + unsigned y; + size_t diff = ilinebits - olinebits; + size_t ibp = 0, obp = 0; /*input and output bit pointers*/ + for(y = 0; y < h; ++y) { + size_t x; + for(x = 0; x < olinebits; ++x) { + unsigned char bit = readBitFromReversedStream(&ibp, in); + setBitOfReversedStream(&obp, out, bit); + } + ibp += diff; + } +} + +/*out must be buffer big enough to contain full image, and in must contain the full decompressed data from +the IDAT chunks (with filter index bytes and possible padding bits) +return value is error*/ +static unsigned postProcessScanlines(unsigned char* out, unsigned char* in, + unsigned w, unsigned h, const LodePNGInfo* info_png) { + /* + This function converts the filtered-padded-interlaced data into pure 2D image buffer with the PNG's colortype. + Steps: + *) if no Adam7: 1) unfilter 2) remove padding bits (= possible extra bits per scanline if bpp < 8) + *) if adam7: 1) 7x unfilter 2) 7x remove padding bits 3) Adam7_deinterlace + NOTE: the in buffer will be overwritten with intermediate data! + */ + unsigned bpp = lodepng_get_bpp(&info_png->color); + if(bpp == 0) return 31; /*error: invalid colortype*/ + + if(info_png->interlace_method == 0) { + if(bpp < 8 && w * bpp != ((w * bpp + 7u) / 8u) * 8u) { + CERROR_TRY_RETURN(unfilter(in, in, w, h, bpp)); + removePaddingBits(out, in, w * bpp, ((w * bpp + 7u) / 8u) * 8u, h); + } + /*we can immediately filter into the out buffer, no other steps needed*/ + else CERROR_TRY_RETURN(unfilter(out, in, w, h, bpp)); + } else /*interlace_method is 1 (Adam7)*/ { + unsigned passw[7], passh[7]; size_t filter_passstart[8], padded_passstart[8], passstart[8]; + unsigned i; + + Adam7_getpassvalues(passw, passh, filter_passstart, padded_passstart, passstart, w, h, bpp); + + for(i = 0; i != 7; ++i) { + CERROR_TRY_RETURN(unfilter(&in[padded_passstart[i]], &in[filter_passstart[i]], passw[i], passh[i], bpp)); + /*TODO: possible efficiency improvement: if in this reduced image the bits fit nicely in 1 scanline, + move bytes instead of bits or move not at all*/ + if(bpp < 8) { + /*remove padding bits in scanlines; after this there still may be padding + bits between the different reduced images: each reduced image still starts nicely at a byte*/ + removePaddingBits(&in[passstart[i]], &in[padded_passstart[i]], passw[i] * bpp, + ((passw[i] * bpp + 7u) / 8u) * 8u, passh[i]); + } + } + + Adam7_deinterlace(out, in, w, h, bpp); + } + + return 0; +} + +static unsigned readChunk_PLTE(LodePNGColorMode* color, const unsigned char* data, size_t chunkLength) { + unsigned pos = 0, i; + color->palettesize = chunkLength / 3u; + if(color->palettesize == 0 || color->palettesize > 256) return 38; /*error: palette too small or big*/ + lodepng_color_mode_alloc_palette(color); + if(!color->palette && color->palettesize) { + color->palettesize = 0; + return 83; /*alloc fail*/ + } + + for(i = 0; i != color->palettesize; ++i) { + color->palette[4 * i + 0] = data[pos++]; /*R*/ + color->palette[4 * i + 1] = data[pos++]; /*G*/ + color->palette[4 * i + 2] = data[pos++]; /*B*/ + color->palette[4 * i + 3] = 255; /*alpha*/ + } + + return 0; /* OK */ +} + +static unsigned readChunk_tRNS(LodePNGColorMode* color, const unsigned char* data, size_t chunkLength) { + unsigned i; + if(color->colortype == LCT_PALETTE) { + /*error: more alpha values given than there are palette entries*/ + if(chunkLength > color->palettesize) return 39; + + for(i = 0; i != chunkLength; ++i) color->palette[4 * i + 3] = data[i]; + } else if(color->colortype == LCT_GREY) { + /*error: this chunk must be 2 bytes for grayscale image*/ + if(chunkLength != 2) return 30; + + color->key_defined = 1; + color->key_r = color->key_g = color->key_b = 256u * data[0] + data[1]; + } else if(color->colortype == LCT_RGB) { + /*error: this chunk must be 6 bytes for RGB image*/ + if(chunkLength != 6) return 41; + + color->key_defined = 1; + color->key_r = 256u * data[0] + data[1]; + color->key_g = 256u * data[2] + data[3]; + color->key_b = 256u * data[4] + data[5]; + } + else return 42; /*error: tRNS chunk not allowed for other color models*/ + + return 0; /* OK */ +} + + +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS +/*background color chunk (bKGD)*/ +static unsigned readChunk_bKGD(LodePNGInfo* info, const unsigned char* data, size_t chunkLength) { + if(info->color.colortype == LCT_PALETTE) { + /*error: this chunk must be 1 byte for indexed color image*/ + if(chunkLength != 1) return 43; + + /*error: invalid palette index, or maybe this chunk appeared before PLTE*/ + if(data[0] >= info->color.palettesize) return 103; + + info->background_defined = 1; + info->background_r = info->background_g = info->background_b = data[0]; + } else if(info->color.colortype == LCT_GREY || info->color.colortype == LCT_GREY_ALPHA) { + /*error: this chunk must be 2 bytes for grayscale image*/ + if(chunkLength != 2) return 44; + + /*the values are truncated to bitdepth in the PNG file*/ + info->background_defined = 1; + info->background_r = info->background_g = info->background_b = 256u * data[0] + data[1]; + } else if(info->color.colortype == LCT_RGB || info->color.colortype == LCT_RGBA) { + /*error: this chunk must be 6 bytes for grayscale image*/ + if(chunkLength != 6) return 45; + + /*the values are truncated to bitdepth in the PNG file*/ + info->background_defined = 1; + info->background_r = 256u * data[0] + data[1]; + info->background_g = 256u * data[2] + data[3]; + info->background_b = 256u * data[4] + data[5]; + } + + return 0; /* OK */ +} + +/*text chunk (tEXt)*/ +static unsigned readChunk_tEXt(LodePNGInfo* info, const unsigned char* data, size_t chunkLength) { + unsigned error = 0; + char *key = 0, *str = 0; + + while(!error) /*not really a while loop, only used to break on error*/ { + unsigned length, string2_begin; + + length = 0; + while(length < chunkLength && data[length] != 0) ++length; + /*even though it's not allowed by the standard, no error is thrown if + there's no null termination char, if the text is empty*/ + if(length < 1 || length > 79) CERROR_BREAK(error, 89); /*keyword too short or long*/ + + key = (char*)lodepng_malloc(length + 1); + if(!key) CERROR_BREAK(error, 83); /*alloc fail*/ + + lodepng_memcpy(key, data, length); + key[length] = 0; + + string2_begin = length + 1; /*skip keyword null terminator*/ + + length = (unsigned)(chunkLength < string2_begin ? 0 : chunkLength - string2_begin); + str = (char*)lodepng_malloc(length + 1); + if(!str) CERROR_BREAK(error, 83); /*alloc fail*/ + + lodepng_memcpy(str, data + string2_begin, length); + str[length] = 0; + + error = lodepng_add_text(info, key, str); + + break; + } + + lodepng_free(key); + lodepng_free(str); + + return error; +} + +/*compressed text chunk (zTXt)*/ +static unsigned readChunk_zTXt(LodePNGInfo* info, const LodePNGDecoderSettings* decoder, + const unsigned char* data, size_t chunkLength) { + unsigned error = 0; + + /*copy the object to change parameters in it*/ + LodePNGDecompressSettings zlibsettings = decoder->zlibsettings; + + unsigned length, string2_begin; + char *key = 0; + unsigned char* str = 0; + size_t size = 0; + + while(!error) /*not really a while loop, only used to break on error*/ { + for(length = 0; length < chunkLength && data[length] != 0; ++length) ; + if(length + 2 >= chunkLength) CERROR_BREAK(error, 75); /*no null termination, corrupt?*/ + if(length < 1 || length > 79) CERROR_BREAK(error, 89); /*keyword too short or long*/ + + key = (char*)lodepng_malloc(length + 1); + if(!key) CERROR_BREAK(error, 83); /*alloc fail*/ + + lodepng_memcpy(key, data, length); + key[length] = 0; + + if(data[length + 1] != 0) CERROR_BREAK(error, 72); /*the 0 byte indicating compression must be 0*/ + + string2_begin = length + 2; + if(string2_begin > chunkLength) CERROR_BREAK(error, 75); /*no null termination, corrupt?*/ + + length = (unsigned)chunkLength - string2_begin; + zlibsettings.max_output_size = decoder->max_text_size; + /*will fail if zlib error, e.g. if length is too small*/ + error = zlib_decompress(&str, &size, 0, &data[string2_begin], + length, &zlibsettings); + /*error: compressed text larger than decoder->max_text_size*/ + if(error && size > zlibsettings.max_output_size) error = 112; + if(error) break; + error = lodepng_add_text_sized(info, key, (char*)str, size); + break; + } + + lodepng_free(key); + lodepng_free(str); + + return error; +} + +/*international text chunk (iTXt)*/ +static unsigned readChunk_iTXt(LodePNGInfo* info, const LodePNGDecoderSettings* decoder, + const unsigned char* data, size_t chunkLength) { + unsigned error = 0; + unsigned i; + + /*copy the object to change parameters in it*/ + LodePNGDecompressSettings zlibsettings = decoder->zlibsettings; + + unsigned length, begin, compressed; + char *key = 0, *langtag = 0, *transkey = 0; + + while(!error) /*not really a while loop, only used to break on error*/ { + /*Quick check if the chunk length isn't too small. Even without check + it'd still fail with other error checks below if it's too short. This just gives a different error code.*/ + if(chunkLength < 5) CERROR_BREAK(error, 30); /*iTXt chunk too short*/ + + /*read the key*/ + for(length = 0; length < chunkLength && data[length] != 0; ++length) ; + if(length + 3 >= chunkLength) CERROR_BREAK(error, 75); /*no null termination char, corrupt?*/ + if(length < 1 || length > 79) CERROR_BREAK(error, 89); /*keyword too short or long*/ + + key = (char*)lodepng_malloc(length + 1); + if(!key) CERROR_BREAK(error, 83); /*alloc fail*/ + + lodepng_memcpy(key, data, length); + key[length] = 0; + + /*read the compression method*/ + compressed = data[length + 1]; + if(data[length + 2] != 0) CERROR_BREAK(error, 72); /*the 0 byte indicating compression must be 0*/ + + /*even though it's not allowed by the standard, no error is thrown if + there's no null termination char, if the text is empty for the next 3 texts*/ + + /*read the langtag*/ + begin = length + 3; + length = 0; + for(i = begin; i < chunkLength && data[i] != 0; ++i) ++length; + + langtag = (char*)lodepng_malloc(length + 1); + if(!langtag) CERROR_BREAK(error, 83); /*alloc fail*/ + + lodepng_memcpy(langtag, data + begin, length); + langtag[length] = 0; + + /*read the transkey*/ + begin += length + 1; + length = 0; + for(i = begin; i < chunkLength && data[i] != 0; ++i) ++length; + + transkey = (char*)lodepng_malloc(length + 1); + if(!transkey) CERROR_BREAK(error, 83); /*alloc fail*/ + + lodepng_memcpy(transkey, data + begin, length); + transkey[length] = 0; + + /*read the actual text*/ + begin += length + 1; + + length = (unsigned)chunkLength < begin ? 0 : (unsigned)chunkLength - begin; + + if(compressed) { + unsigned char* str = 0; + size_t size = 0; + zlibsettings.max_output_size = decoder->max_text_size; + /*will fail if zlib error, e.g. if length is too small*/ + error = zlib_decompress(&str, &size, 0, &data[begin], + length, &zlibsettings); + /*error: compressed text larger than decoder->max_text_size*/ + if(error && size > zlibsettings.max_output_size) error = 112; + if(!error) error = lodepng_add_itext_sized(info, key, langtag, transkey, (char*)str, size); + lodepng_free(str); + } else { + error = lodepng_add_itext_sized(info, key, langtag, transkey, (char*)(data + begin), length); + } + + break; + } + + lodepng_free(key); + lodepng_free(langtag); + lodepng_free(transkey); + + return error; +} + +static unsigned readChunk_tIME(LodePNGInfo* info, const unsigned char* data, size_t chunkLength) { + if(chunkLength != 7) return 73; /*invalid tIME chunk size*/ + + info->time_defined = 1; + info->time.year = 256u * data[0] + data[1]; + info->time.month = data[2]; + info->time.day = data[3]; + info->time.hour = data[4]; + info->time.minute = data[5]; + info->time.second = data[6]; + + return 0; /* OK */ +} + +static unsigned readChunk_pHYs(LodePNGInfo* info, const unsigned char* data, size_t chunkLength) { + if(chunkLength != 9) return 74; /*invalid pHYs chunk size*/ + + info->phys_defined = 1; + info->phys_x = 16777216u * data[0] + 65536u * data[1] + 256u * data[2] + data[3]; + info->phys_y = 16777216u * data[4] + 65536u * data[5] + 256u * data[6] + data[7]; + info->phys_unit = data[8]; + + return 0; /* OK */ +} + +static unsigned readChunk_gAMA(LodePNGInfo* info, const unsigned char* data, size_t chunkLength) { + if(chunkLength != 4) return 96; /*invalid gAMA chunk size*/ + + info->gama_defined = 1; + info->gama_gamma = 16777216u * data[0] + 65536u * data[1] + 256u * data[2] + data[3]; + + return 0; /* OK */ +} + +static unsigned readChunk_cHRM(LodePNGInfo* info, const unsigned char* data, size_t chunkLength) { + if(chunkLength != 32) return 97; /*invalid cHRM chunk size*/ + + info->chrm_defined = 1; + info->chrm_white_x = 16777216u * data[ 0] + 65536u * data[ 1] + 256u * data[ 2] + data[ 3]; + info->chrm_white_y = 16777216u * data[ 4] + 65536u * data[ 5] + 256u * data[ 6] + data[ 7]; + info->chrm_red_x = 16777216u * data[ 8] + 65536u * data[ 9] + 256u * data[10] + data[11]; + info->chrm_red_y = 16777216u * data[12] + 65536u * data[13] + 256u * data[14] + data[15]; + info->chrm_green_x = 16777216u * data[16] + 65536u * data[17] + 256u * data[18] + data[19]; + info->chrm_green_y = 16777216u * data[20] + 65536u * data[21] + 256u * data[22] + data[23]; + info->chrm_blue_x = 16777216u * data[24] + 65536u * data[25] + 256u * data[26] + data[27]; + info->chrm_blue_y = 16777216u * data[28] + 65536u * data[29] + 256u * data[30] + data[31]; + + return 0; /* OK */ +} + +static unsigned readChunk_sRGB(LodePNGInfo* info, const unsigned char* data, size_t chunkLength) { + if(chunkLength != 1) return 98; /*invalid sRGB chunk size (this one is never ignored)*/ + + info->srgb_defined = 1; + info->srgb_intent = data[0]; + + return 0; /* OK */ +} + +static unsigned readChunk_iCCP(LodePNGInfo* info, const LodePNGDecoderSettings* decoder, + const unsigned char* data, size_t chunkLength) { + unsigned error = 0; + unsigned i; + size_t size = 0; + /*copy the object to change parameters in it*/ + LodePNGDecompressSettings zlibsettings = decoder->zlibsettings; + + unsigned length, string2_begin; + + info->iccp_defined = 1; + if(info->iccp_name) lodepng_clear_icc(info); + + for(length = 0; length < chunkLength && data[length] != 0; ++length) ; + if(length + 2 >= chunkLength) return 75; /*no null termination, corrupt?*/ + if(length < 1 || length > 79) return 89; /*keyword too short or long*/ + + info->iccp_name = (char*)lodepng_malloc(length + 1); + if(!info->iccp_name) return 83; /*alloc fail*/ + + info->iccp_name[length] = 0; + for(i = 0; i != length; ++i) info->iccp_name[i] = (char)data[i]; + + if(data[length + 1] != 0) return 72; /*the 0 byte indicating compression must be 0*/ + + string2_begin = length + 2; + if(string2_begin > chunkLength) return 75; /*no null termination, corrupt?*/ + + length = (unsigned)chunkLength - string2_begin; + zlibsettings.max_output_size = decoder->max_icc_size; + error = zlib_decompress(&info->iccp_profile, &size, 0, + &data[string2_begin], + length, &zlibsettings); + /*error: ICC profile larger than decoder->max_icc_size*/ + if(error && size > zlibsettings.max_output_size) error = 113; + info->iccp_profile_size = size; + if(!error && !info->iccp_profile_size) error = 100; /*invalid ICC profile size*/ + return error; +} + +/*significant bits chunk (sBIT)*/ +static unsigned readChunk_sBIT(LodePNGInfo* info, const unsigned char* data, size_t chunkLength) { + unsigned bitdepth = (info->color.colortype == LCT_PALETTE) ? 8 : info->color.bitdepth; + if(info->color.colortype == LCT_GREY) { + /*error: this chunk must be 1 bytes for grayscale image*/ + if(chunkLength != 1) return 114; + if(data[0] == 0 || data[0] > bitdepth) return 115; + info->sbit_defined = 1; + info->sbit_r = info->sbit_g = info->sbit_b = data[0]; /*setting g and b is not required, but sensible*/ + } else if(info->color.colortype == LCT_RGB || info->color.colortype == LCT_PALETTE) { + /*error: this chunk must be 3 bytes for RGB and palette image*/ + if(chunkLength != 3) return 114; + if(data[0] == 0 || data[1] == 0 || data[2] == 0) return 115; + if(data[0] > bitdepth || data[1] > bitdepth || data[2] > bitdepth) return 115; + info->sbit_defined = 1; + info->sbit_r = data[0]; + info->sbit_g = data[1]; + info->sbit_b = data[2]; + } else if(info->color.colortype == LCT_GREY_ALPHA) { + /*error: this chunk must be 2 byte for grayscale with alpha image*/ + if(chunkLength != 2) return 114; + if(data[0] == 0 || data[1] == 0) return 115; + if(data[0] > bitdepth || data[1] > bitdepth) return 115; + info->sbit_defined = 1; + info->sbit_r = info->sbit_g = info->sbit_b = data[0]; /*setting g and b is not required, but sensible*/ + info->sbit_a = data[1]; + } else if(info->color.colortype == LCT_RGBA) { + /*error: this chunk must be 4 bytes for grayscale image*/ + if(chunkLength != 4) return 114; + if(data[0] == 0 || data[1] == 0 || data[2] == 0 || data[3] == 0) return 115; + if(data[0] > bitdepth || data[1] > bitdepth || data[2] > bitdepth || data[3] > bitdepth) return 115; + info->sbit_defined = 1; + info->sbit_r = data[0]; + info->sbit_g = data[1]; + info->sbit_b = data[2]; + info->sbit_a = data[3]; + } + + return 0; /* OK */ +} +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + +unsigned lodepng_inspect_chunk(LodePNGState* state, size_t pos, + const unsigned char* in, size_t insize) { + const unsigned char* chunk = in + pos; + unsigned chunkLength; + const unsigned char* data; + unsigned unhandled = 0; + unsigned error = 0; + + if(pos + 4 > insize) return 30; + chunkLength = lodepng_chunk_length(chunk); + if(chunkLength > 2147483647) return 63; + data = lodepng_chunk_data_const(chunk); + if(chunkLength + 12 > insize - pos) return 30; + + if(lodepng_chunk_type_equals(chunk, "PLTE")) { + error = readChunk_PLTE(&state->info_png.color, data, chunkLength); + } else if(lodepng_chunk_type_equals(chunk, "tRNS")) { + error = readChunk_tRNS(&state->info_png.color, data, chunkLength); +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + } else if(lodepng_chunk_type_equals(chunk, "bKGD")) { + error = readChunk_bKGD(&state->info_png, data, chunkLength); + } else if(lodepng_chunk_type_equals(chunk, "tEXt")) { + error = readChunk_tEXt(&state->info_png, data, chunkLength); + } else if(lodepng_chunk_type_equals(chunk, "zTXt")) { + error = readChunk_zTXt(&state->info_png, &state->decoder, data, chunkLength); + } else if(lodepng_chunk_type_equals(chunk, "iTXt")) { + error = readChunk_iTXt(&state->info_png, &state->decoder, data, chunkLength); + } else if(lodepng_chunk_type_equals(chunk, "tIME")) { + error = readChunk_tIME(&state->info_png, data, chunkLength); + } else if(lodepng_chunk_type_equals(chunk, "pHYs")) { + error = readChunk_pHYs(&state->info_png, data, chunkLength); + } else if(lodepng_chunk_type_equals(chunk, "gAMA")) { + error = readChunk_gAMA(&state->info_png, data, chunkLength); + } else if(lodepng_chunk_type_equals(chunk, "cHRM")) { + error = readChunk_cHRM(&state->info_png, data, chunkLength); + } else if(lodepng_chunk_type_equals(chunk, "sRGB")) { + error = readChunk_sRGB(&state->info_png, data, chunkLength); + } else if(lodepng_chunk_type_equals(chunk, "iCCP")) { + error = readChunk_iCCP(&state->info_png, &state->decoder, data, chunkLength); + } else if(lodepng_chunk_type_equals(chunk, "sBIT")) { + error = readChunk_sBIT(&state->info_png, data, chunkLength); +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + } else { + /* unhandled chunk is ok (is not an error) */ + unhandled = 1; + } + + if(!error && !unhandled && !state->decoder.ignore_crc) { + if(lodepng_chunk_check_crc(chunk)) return 57; /*invalid CRC*/ + } + + return error; +} + +/*read a PNG, the result will be in the same color type as the PNG (hence "generic")*/ +static void decodeGeneric(unsigned char** out, unsigned* w, unsigned* h, + LodePNGState* state, + const unsigned char* in, size_t insize) { + unsigned char IEND = 0; + const unsigned char* chunk; /*points to beginning of next chunk*/ + unsigned char* idat; /*the data from idat chunks, zlib compressed*/ + size_t idatsize = 0; + unsigned char* scanlines = 0; + size_t scanlines_size = 0, expected_size = 0; + size_t outsize = 0; + + /*for unknown chunk order*/ + unsigned unknown = 0; +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + unsigned critical_pos = 1; /*1 = after IHDR, 2 = after PLTE, 3 = after IDAT*/ +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + + + /* safe output values in case error happens */ + *out = 0; + *w = *h = 0; + + state->error = lodepng_inspect(w, h, state, in, insize); /*reads header and resets other parameters in state->info_png*/ + if(state->error) return; + + if(lodepng_pixel_overflow(*w, *h, &state->info_png.color, &state->info_raw)) { + CERROR_RETURN(state->error, 92); /*overflow possible due to amount of pixels*/ + } + + /*the input filesize is a safe upper bound for the sum of idat chunks size*/ + idat = (unsigned char*)lodepng_malloc(insize); + if(!idat) CERROR_RETURN(state->error, 83); /*alloc fail*/ + + chunk = &in[33]; /*first byte of the first chunk after the header*/ + + /*loop through the chunks, ignoring unknown chunks and stopping at IEND chunk. + IDAT data is put at the start of the in buffer*/ + while(!IEND && !state->error) { + unsigned chunkLength; + const unsigned char* data; /*the data in the chunk*/ + size_t pos = (size_t)(chunk - in); + + /*error: next chunk out of bounds of the in buffer*/ + if(chunk < in || pos + 12 > insize) { + if(state->decoder.ignore_end) break; /*other errors may still happen though*/ + CERROR_BREAK(state->error, 30); + } + + /*length of the data of the chunk, excluding the 12 bytes for length, chunk type and CRC*/ + chunkLength = lodepng_chunk_length(chunk); + /*error: chunk length larger than the max PNG chunk size*/ + if(chunkLength > 2147483647) { + if(state->decoder.ignore_end) break; /*other errors may still happen though*/ + CERROR_BREAK(state->error, 63); + } + + if(pos + (size_t)chunkLength + 12 > insize || pos + (size_t)chunkLength + 12 < pos) { + CERROR_BREAK(state->error, 64); /*error: size of the in buffer too small to contain next chunk (or int overflow)*/ + } + + data = lodepng_chunk_data_const(chunk); + + unknown = 0; + + /*IDAT chunk, containing compressed image data*/ + if(lodepng_chunk_type_equals(chunk, "IDAT")) { + size_t newsize; + if(lodepng_addofl(idatsize, chunkLength, &newsize)) CERROR_BREAK(state->error, 95); + if(newsize > insize) CERROR_BREAK(state->error, 95); + lodepng_memcpy(idat + idatsize, data, chunkLength); + idatsize += chunkLength; +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + critical_pos = 3; +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + } else if(lodepng_chunk_type_equals(chunk, "IEND")) { + /*IEND chunk*/ + IEND = 1; + } else if(lodepng_chunk_type_equals(chunk, "PLTE")) { + /*palette chunk (PLTE)*/ + state->error = readChunk_PLTE(&state->info_png.color, data, chunkLength); + if(state->error) break; +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + critical_pos = 2; +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + } else if(lodepng_chunk_type_equals(chunk, "tRNS")) { + /*palette transparency chunk (tRNS). Even though this one is an ancillary chunk , it is still compiled + in without 'LODEPNG_COMPILE_ANCILLARY_CHUNKS' because it contains essential color information that + affects the alpha channel of pixels. */ + state->error = readChunk_tRNS(&state->info_png.color, data, chunkLength); + if(state->error) break; +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + /*background color chunk (bKGD)*/ + } else if(lodepng_chunk_type_equals(chunk, "bKGD")) { + state->error = readChunk_bKGD(&state->info_png, data, chunkLength); + if(state->error) break; + } else if(lodepng_chunk_type_equals(chunk, "tEXt")) { + /*text chunk (tEXt)*/ + if(state->decoder.read_text_chunks) { + state->error = readChunk_tEXt(&state->info_png, data, chunkLength); + if(state->error) break; + } + } else if(lodepng_chunk_type_equals(chunk, "zTXt")) { + /*compressed text chunk (zTXt)*/ + if(state->decoder.read_text_chunks) { + state->error = readChunk_zTXt(&state->info_png, &state->decoder, data, chunkLength); + if(state->error) break; + } + } else if(lodepng_chunk_type_equals(chunk, "iTXt")) { + /*international text chunk (iTXt)*/ + if(state->decoder.read_text_chunks) { + state->error = readChunk_iTXt(&state->info_png, &state->decoder, data, chunkLength); + if(state->error) break; + } + } else if(lodepng_chunk_type_equals(chunk, "tIME")) { + state->error = readChunk_tIME(&state->info_png, data, chunkLength); + if(state->error) break; + } else if(lodepng_chunk_type_equals(chunk, "pHYs")) { + state->error = readChunk_pHYs(&state->info_png, data, chunkLength); + if(state->error) break; + } else if(lodepng_chunk_type_equals(chunk, "gAMA")) { + state->error = readChunk_gAMA(&state->info_png, data, chunkLength); + if(state->error) break; + } else if(lodepng_chunk_type_equals(chunk, "cHRM")) { + state->error = readChunk_cHRM(&state->info_png, data, chunkLength); + if(state->error) break; + } else if(lodepng_chunk_type_equals(chunk, "sRGB")) { + state->error = readChunk_sRGB(&state->info_png, data, chunkLength); + if(state->error) break; + } else if(lodepng_chunk_type_equals(chunk, "iCCP")) { + state->error = readChunk_iCCP(&state->info_png, &state->decoder, data, chunkLength); + if(state->error) break; + } else if(lodepng_chunk_type_equals(chunk, "sBIT")) { + state->error = readChunk_sBIT(&state->info_png, data, chunkLength); + if(state->error) break; +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + } else /*it's not an implemented chunk type, so ignore it: skip over the data*/ { + /*error: unknown critical chunk (5th bit of first byte of chunk type is 0)*/ + if(!state->decoder.ignore_critical && !lodepng_chunk_ancillary(chunk)) { + CERROR_BREAK(state->error, 69); + } + + unknown = 1; +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + if(state->decoder.remember_unknown_chunks) { + state->error = lodepng_chunk_append(&state->info_png.unknown_chunks_data[critical_pos - 1], + &state->info_png.unknown_chunks_size[critical_pos - 1], chunk); + if(state->error) break; + } +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + } + + if(!state->decoder.ignore_crc && !unknown) /*check CRC if wanted, only on known chunk types*/ { + if(lodepng_chunk_check_crc(chunk)) CERROR_BREAK(state->error, 57); /*invalid CRC*/ + } + + if(!IEND) chunk = lodepng_chunk_next_const(chunk, in + insize); + } + + if(!state->error && state->info_png.color.colortype == LCT_PALETTE && !state->info_png.color.palette) { + state->error = 106; /* error: PNG file must have PLTE chunk if color type is palette */ + } + + if(!state->error) { + /*predict output size, to allocate exact size for output buffer to avoid more dynamic allocation. + If the decompressed size does not match the prediction, the image must be corrupt.*/ + if(state->info_png.interlace_method == 0) { + size_t bpp = lodepng_get_bpp(&state->info_png.color); + expected_size = lodepng_get_raw_size_idat(*w, *h, bpp); + } else { + size_t bpp = lodepng_get_bpp(&state->info_png.color); + /*Adam-7 interlaced: expected size is the sum of the 7 sub-images sizes*/ + expected_size = 0; + expected_size += lodepng_get_raw_size_idat((*w + 7) >> 3, (*h + 7) >> 3, bpp); + if(*w > 4) expected_size += lodepng_get_raw_size_idat((*w + 3) >> 3, (*h + 7) >> 3, bpp); + expected_size += lodepng_get_raw_size_idat((*w + 3) >> 2, (*h + 3) >> 3, bpp); + if(*w > 2) expected_size += lodepng_get_raw_size_idat((*w + 1) >> 2, (*h + 3) >> 2, bpp); + expected_size += lodepng_get_raw_size_idat((*w + 1) >> 1, (*h + 1) >> 2, bpp); + if(*w > 1) expected_size += lodepng_get_raw_size_idat((*w + 0) >> 1, (*h + 1) >> 1, bpp); + expected_size += lodepng_get_raw_size_idat((*w + 0), (*h + 0) >> 1, bpp); + } + + state->error = zlib_decompress(&scanlines, &scanlines_size, expected_size, idat, idatsize, &state->decoder.zlibsettings); + } + if(!state->error && scanlines_size != expected_size) state->error = 91; /*decompressed size doesn't match prediction*/ + lodepng_free(idat); + + if(!state->error) { + outsize = lodepng_get_raw_size(*w, *h, &state->info_png.color); + *out = (unsigned char*)lodepng_malloc(outsize); + if(!*out) state->error = 83; /*alloc fail*/ + } + if(!state->error) { + lodepng_memset(*out, 0, outsize); + state->error = postProcessScanlines(*out, scanlines, *w, *h, &state->info_png); + } + lodepng_free(scanlines); +} + +unsigned lodepng_decode(unsigned char** out, unsigned* w, unsigned* h, + LodePNGState* state, + const unsigned char* in, size_t insize) { + *out = 0; + decodeGeneric(out, w, h, state, in, insize); + if(state->error) return state->error; + if(!state->decoder.color_convert || lodepng_color_mode_equal(&state->info_raw, &state->info_png.color)) { + /*same color type, no copying or converting of data needed*/ + /*store the info_png color settings on the info_raw so that the info_raw still reflects what colortype + the raw image has to the end user*/ + if(!state->decoder.color_convert) { + state->error = lodepng_color_mode_copy(&state->info_raw, &state->info_png.color); + if(state->error) return state->error; + } + } else { /*color conversion needed*/ + unsigned char* data = *out; + size_t outsize; + + /*TODO: check if this works according to the statement in the documentation: "The converter can convert + from grayscale input color type, to 8-bit grayscale or grayscale with alpha"*/ + if(!(state->info_raw.colortype == LCT_RGB || state->info_raw.colortype == LCT_RGBA) + && !(state->info_raw.bitdepth == 8)) { + return 56; /*unsupported color mode conversion*/ + } + + outsize = lodepng_get_raw_size(*w, *h, &state->info_raw); + *out = (unsigned char*)lodepng_malloc(outsize); + if(!(*out)) { + state->error = 83; /*alloc fail*/ + } + else state->error = lodepng_convert(*out, data, &state->info_raw, + &state->info_png.color, *w, *h); + lodepng_free(data); + } + return state->error; +} + +unsigned lodepng_decode_memory(unsigned char** out, unsigned* w, unsigned* h, const unsigned char* in, + size_t insize, LodePNGColorType colortype, unsigned bitdepth) { + unsigned error; + LodePNGState state; + lodepng_state_init(&state); + state.info_raw.colortype = colortype; + state.info_raw.bitdepth = bitdepth; +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + /*disable reading things that this function doesn't output*/ + state.decoder.read_text_chunks = 0; + state.decoder.remember_unknown_chunks = 0; +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + error = lodepng_decode(out, w, h, &state, in, insize); + lodepng_state_cleanup(&state); + return error; +} + +unsigned lodepng_decode32(unsigned char** out, unsigned* w, unsigned* h, const unsigned char* in, size_t insize) { + return lodepng_decode_memory(out, w, h, in, insize, LCT_RGBA, 8); +} + +unsigned lodepng_decode24(unsigned char** out, unsigned* w, unsigned* h, const unsigned char* in, size_t insize) { + return lodepng_decode_memory(out, w, h, in, insize, LCT_RGB, 8); +} + +#ifdef LODEPNG_COMPILE_DISK +unsigned lodepng_decode_file(unsigned char** out, unsigned* w, unsigned* h, const char* filename, + LodePNGColorType colortype, unsigned bitdepth) { + unsigned char* buffer = 0; + size_t buffersize; + unsigned error; + /* safe output values in case error happens */ + *out = 0; + *w = *h = 0; + error = lodepng_load_file(&buffer, &buffersize, filename); + if(!error) error = lodepng_decode_memory(out, w, h, buffer, buffersize, colortype, bitdepth); + lodepng_free(buffer); + return error; +} + +unsigned lodepng_decode32_file(unsigned char** out, unsigned* w, unsigned* h, const char* filename) { + return lodepng_decode_file(out, w, h, filename, LCT_RGBA, 8); +} + +unsigned lodepng_decode24_file(unsigned char** out, unsigned* w, unsigned* h, const char* filename) { + return lodepng_decode_file(out, w, h, filename, LCT_RGB, 8); +} +#endif /*LODEPNG_COMPILE_DISK*/ + +void lodepng_decoder_settings_init(LodePNGDecoderSettings* settings) { + settings->color_convert = 1; +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + settings->read_text_chunks = 1; + settings->remember_unknown_chunks = 0; + settings->max_text_size = 16777216; + settings->max_icc_size = 16777216; /* 16MB is much more than enough for any reasonable ICC profile */ +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + settings->ignore_crc = 0; + settings->ignore_critical = 0; + settings->ignore_end = 0; + lodepng_decompress_settings_init(&settings->zlibsettings); +} + +#endif /*LODEPNG_COMPILE_DECODER*/ + +#if defined(LODEPNG_COMPILE_DECODER) || defined(LODEPNG_COMPILE_ENCODER) + +void lodepng_state_init(LodePNGState* state) { +#ifdef LODEPNG_COMPILE_DECODER + lodepng_decoder_settings_init(&state->decoder); +#endif /*LODEPNG_COMPILE_DECODER*/ +#ifdef LODEPNG_COMPILE_ENCODER + lodepng_encoder_settings_init(&state->encoder); +#endif /*LODEPNG_COMPILE_ENCODER*/ + lodepng_color_mode_init(&state->info_raw); + lodepng_info_init(&state->info_png); + state->error = 1; +} + +void lodepng_state_cleanup(LodePNGState* state) { + lodepng_color_mode_cleanup(&state->info_raw); + lodepng_info_cleanup(&state->info_png); +} + +void lodepng_state_copy(LodePNGState* dest, const LodePNGState* source) { + lodepng_state_cleanup(dest); + *dest = *source; + lodepng_color_mode_init(&dest->info_raw); + lodepng_info_init(&dest->info_png); + dest->error = lodepng_color_mode_copy(&dest->info_raw, &source->info_raw); if(dest->error) return; + dest->error = lodepng_info_copy(&dest->info_png, &source->info_png); if(dest->error) return; +} + +#endif /* defined(LODEPNG_COMPILE_DECODER) || defined(LODEPNG_COMPILE_ENCODER) */ + +#ifdef LODEPNG_COMPILE_ENCODER + +/* ////////////////////////////////////////////////////////////////////////// */ +/* / PNG Encoder / */ +/* ////////////////////////////////////////////////////////////////////////// */ + + +static unsigned writeSignature(ucvector* out) { + size_t pos = out->size; + const unsigned char signature[] = {137, 80, 78, 71, 13, 10, 26, 10}; + /*8 bytes PNG signature, aka the magic bytes*/ + if(!ucvector_resize(out, out->size + 8)) return 83; /*alloc fail*/ + lodepng_memcpy(out->data + pos, signature, 8); + return 0; +} + +static unsigned addChunk_IHDR(ucvector* out, unsigned w, unsigned h, + LodePNGColorType colortype, unsigned bitdepth, unsigned interlace_method) { + unsigned char *chunk, *data; + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 13, "IHDR")); + data = chunk + 8; + + lodepng_set32bitInt(data + 0, w); /*width*/ + lodepng_set32bitInt(data + 4, h); /*height*/ + data[8] = (unsigned char)bitdepth; /*bit depth*/ + data[9] = (unsigned char)colortype; /*color type*/ + data[10] = 0; /*compression method*/ + data[11] = 0; /*filter method*/ + data[12] = interlace_method; /*interlace method*/ + + lodepng_chunk_generate_crc(chunk); + return 0; +} + +/* only adds the chunk if needed (there is a key or palette with alpha) */ +static unsigned addChunk_PLTE(ucvector* out, const LodePNGColorMode* info) { + unsigned char* chunk; + size_t i, j = 8; + + if(info->palettesize == 0 || info->palettesize > 256) { + return 68; /*invalid palette size, it is only allowed to be 1-256*/ + } + + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, info->palettesize * 3, "PLTE")); + + for(i = 0; i != info->palettesize; ++i) { + /*add all channels except alpha channel*/ + chunk[j++] = info->palette[i * 4 + 0]; + chunk[j++] = info->palette[i * 4 + 1]; + chunk[j++] = info->palette[i * 4 + 2]; + } + + lodepng_chunk_generate_crc(chunk); + return 0; +} + +static unsigned addChunk_tRNS(ucvector* out, const LodePNGColorMode* info) { + unsigned char* chunk = 0; + + if(info->colortype == LCT_PALETTE) { + size_t i, amount = info->palettesize; + /*the tail of palette values that all have 255 as alpha, does not have to be encoded*/ + for(i = info->palettesize; i != 0; --i) { + if(info->palette[4 * (i - 1) + 3] != 255) break; + --amount; + } + if(amount) { + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, amount, "tRNS")); + /*add the alpha channel values from the palette*/ + for(i = 0; i != amount; ++i) chunk[8 + i] = info->palette[4 * i + 3]; + } + } else if(info->colortype == LCT_GREY) { + if(info->key_defined) { + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 2, "tRNS")); + chunk[8] = (unsigned char)(info->key_r >> 8); + chunk[9] = (unsigned char)(info->key_r & 255); + } + } else if(info->colortype == LCT_RGB) { + if(info->key_defined) { + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 6, "tRNS")); + chunk[8] = (unsigned char)(info->key_r >> 8); + chunk[9] = (unsigned char)(info->key_r & 255); + chunk[10] = (unsigned char)(info->key_g >> 8); + chunk[11] = (unsigned char)(info->key_g & 255); + chunk[12] = (unsigned char)(info->key_b >> 8); + chunk[13] = (unsigned char)(info->key_b & 255); + } + } + + if(chunk) lodepng_chunk_generate_crc(chunk); + return 0; +} + +static unsigned addChunk_IDAT(ucvector* out, const unsigned char* data, size_t datasize, + LodePNGCompressSettings* zlibsettings) { + unsigned error = 0; + unsigned char* zlib = 0; + size_t zlibsize = 0; + + error = zlib_compress(&zlib, &zlibsize, data, datasize, zlibsettings); + if(!error) { + error = lodepng_chunk_createv(out, zlibsize, "IDAT", zlib); + } + lodepng_free(zlib); + return error; +} + +static unsigned addChunk_IEND(ucvector* out) { + return lodepng_chunk_createv(out, 0, "IEND", 0); +} + +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + +static unsigned addChunk_tEXt(ucvector* out, const char* keyword, const char* textstring) { + unsigned char* chunk = 0; + size_t keysize = lodepng_strlen(keyword), textsize = lodepng_strlen(textstring); + size_t size = keysize + 1 + textsize; + if(keysize < 1 || keysize > 79) return 89; /*error: invalid keyword size*/ + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, size, "tEXt")); + lodepng_memcpy(chunk + 8, keyword, keysize); + chunk[8 + keysize] = 0; /*null termination char*/ + lodepng_memcpy(chunk + 9 + keysize, textstring, textsize); + lodepng_chunk_generate_crc(chunk); + return 0; +} + +static unsigned addChunk_zTXt(ucvector* out, const char* keyword, const char* textstring, + LodePNGCompressSettings* zlibsettings) { + unsigned error = 0; + unsigned char* chunk = 0; + unsigned char* compressed = 0; + size_t compressedsize = 0; + size_t textsize = lodepng_strlen(textstring); + size_t keysize = lodepng_strlen(keyword); + if(keysize < 1 || keysize > 79) return 89; /*error: invalid keyword size*/ + + error = zlib_compress(&compressed, &compressedsize, + (const unsigned char*)textstring, textsize, zlibsettings); + if(!error) { + size_t size = keysize + 2 + compressedsize; + error = lodepng_chunk_init(&chunk, out, size, "zTXt"); + } + if(!error) { + lodepng_memcpy(chunk + 8, keyword, keysize); + chunk[8 + keysize] = 0; /*null termination char*/ + chunk[9 + keysize] = 0; /*compression method: 0*/ + lodepng_memcpy(chunk + 10 + keysize, compressed, compressedsize); + lodepng_chunk_generate_crc(chunk); + } + + lodepng_free(compressed); + return error; +} + +static unsigned addChunk_iTXt(ucvector* out, unsigned compress, const char* keyword, const char* langtag, + const char* transkey, const char* textstring, LodePNGCompressSettings* zlibsettings) { + unsigned error = 0; + unsigned char* chunk = 0; + unsigned char* compressed = 0; + size_t compressedsize = 0; + size_t textsize = lodepng_strlen(textstring); + size_t keysize = lodepng_strlen(keyword), langsize = lodepng_strlen(langtag), transsize = lodepng_strlen(transkey); + + if(keysize < 1 || keysize > 79) return 89; /*error: invalid keyword size*/ + + if(compress) { + error = zlib_compress(&compressed, &compressedsize, + (const unsigned char*)textstring, textsize, zlibsettings); + } + if(!error) { + size_t size = keysize + 3 + langsize + 1 + transsize + 1 + (compress ? compressedsize : textsize); + error = lodepng_chunk_init(&chunk, out, size, "iTXt"); + } + if(!error) { + size_t pos = 8; + lodepng_memcpy(chunk + pos, keyword, keysize); + pos += keysize; + chunk[pos++] = 0; /*null termination char*/ + chunk[pos++] = (compress ? 1 : 0); /*compression flag*/ + chunk[pos++] = 0; /*compression method: 0*/ + lodepng_memcpy(chunk + pos, langtag, langsize); + pos += langsize; + chunk[pos++] = 0; /*null termination char*/ + lodepng_memcpy(chunk + pos, transkey, transsize); + pos += transsize; + chunk[pos++] = 0; /*null termination char*/ + if(compress) { + lodepng_memcpy(chunk + pos, compressed, compressedsize); + } else { + lodepng_memcpy(chunk + pos, textstring, textsize); + } + lodepng_chunk_generate_crc(chunk); + } + + lodepng_free(compressed); + return error; +} + +static unsigned addChunk_bKGD(ucvector* out, const LodePNGInfo* info) { + unsigned char* chunk = 0; + if(info->color.colortype == LCT_GREY || info->color.colortype == LCT_GREY_ALPHA) { + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 2, "bKGD")); + chunk[8] = (unsigned char)(info->background_r >> 8); + chunk[9] = (unsigned char)(info->background_r & 255); + } else if(info->color.colortype == LCT_RGB || info->color.colortype == LCT_RGBA) { + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 6, "bKGD")); + chunk[8] = (unsigned char)(info->background_r >> 8); + chunk[9] = (unsigned char)(info->background_r & 255); + chunk[10] = (unsigned char)(info->background_g >> 8); + chunk[11] = (unsigned char)(info->background_g & 255); + chunk[12] = (unsigned char)(info->background_b >> 8); + chunk[13] = (unsigned char)(info->background_b & 255); + } else if(info->color.colortype == LCT_PALETTE) { + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 1, "bKGD")); + chunk[8] = (unsigned char)(info->background_r & 255); /*palette index*/ + } + if(chunk) lodepng_chunk_generate_crc(chunk); + return 0; +} + +static unsigned addChunk_tIME(ucvector* out, const LodePNGTime* time) { + unsigned char* chunk; + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 7, "tIME")); + chunk[8] = (unsigned char)(time->year >> 8); + chunk[9] = (unsigned char)(time->year & 255); + chunk[10] = (unsigned char)time->month; + chunk[11] = (unsigned char)time->day; + chunk[12] = (unsigned char)time->hour; + chunk[13] = (unsigned char)time->minute; + chunk[14] = (unsigned char)time->second; + lodepng_chunk_generate_crc(chunk); + return 0; +} + +static unsigned addChunk_pHYs(ucvector* out, const LodePNGInfo* info) { + unsigned char* chunk; + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 9, "pHYs")); + lodepng_set32bitInt(chunk + 8, info->phys_x); + lodepng_set32bitInt(chunk + 12, info->phys_y); + chunk[16] = info->phys_unit; + lodepng_chunk_generate_crc(chunk); + return 0; +} + +static unsigned addChunk_gAMA(ucvector* out, const LodePNGInfo* info) { + unsigned char* chunk; + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 4, "gAMA")); + lodepng_set32bitInt(chunk + 8, info->gama_gamma); + lodepng_chunk_generate_crc(chunk); + return 0; +} + +static unsigned addChunk_cHRM(ucvector* out, const LodePNGInfo* info) { + unsigned char* chunk; + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 32, "cHRM")); + lodepng_set32bitInt(chunk + 8, info->chrm_white_x); + lodepng_set32bitInt(chunk + 12, info->chrm_white_y); + lodepng_set32bitInt(chunk + 16, info->chrm_red_x); + lodepng_set32bitInt(chunk + 20, info->chrm_red_y); + lodepng_set32bitInt(chunk + 24, info->chrm_green_x); + lodepng_set32bitInt(chunk + 28, info->chrm_green_y); + lodepng_set32bitInt(chunk + 32, info->chrm_blue_x); + lodepng_set32bitInt(chunk + 36, info->chrm_blue_y); + lodepng_chunk_generate_crc(chunk); + return 0; +} + +static unsigned addChunk_sRGB(ucvector* out, const LodePNGInfo* info) { + unsigned char data = info->srgb_intent; + return lodepng_chunk_createv(out, 1, "sRGB", &data); +} + +static unsigned addChunk_iCCP(ucvector* out, const LodePNGInfo* info, LodePNGCompressSettings* zlibsettings) { + unsigned error = 0; + unsigned char* chunk = 0; + unsigned char* compressed = 0; + size_t compressedsize = 0; + size_t keysize = lodepng_strlen(info->iccp_name); + + if(keysize < 1 || keysize > 79) return 89; /*error: invalid keyword size*/ + error = zlib_compress(&compressed, &compressedsize, + info->iccp_profile, info->iccp_profile_size, zlibsettings); + if(!error) { + size_t size = keysize + 2 + compressedsize; + error = lodepng_chunk_init(&chunk, out, size, "iCCP"); + } + if(!error) { + lodepng_memcpy(chunk + 8, info->iccp_name, keysize); + chunk[8 + keysize] = 0; /*null termination char*/ + chunk[9 + keysize] = 0; /*compression method: 0*/ + lodepng_memcpy(chunk + 10 + keysize, compressed, compressedsize); + lodepng_chunk_generate_crc(chunk); + } + + lodepng_free(compressed); + return error; +} + +static unsigned addChunk_sBIT(ucvector* out, const LodePNGInfo* info) { + unsigned bitdepth = (info->color.colortype == LCT_PALETTE) ? 8 : info->color.bitdepth; + unsigned char* chunk = 0; + if(info->color.colortype == LCT_GREY) { + if(info->sbit_r == 0 || info->sbit_r > bitdepth) return 115; + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 1, "sBIT")); + chunk[8] = info->sbit_r; + } else if(info->color.colortype == LCT_RGB || info->color.colortype == LCT_PALETTE) { + if(info->sbit_r == 0 || info->sbit_g == 0 || info->sbit_b == 0) return 115; + if(info->sbit_r > bitdepth || info->sbit_g > bitdepth || info->sbit_b > bitdepth) return 115; + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 3, "sBIT")); + chunk[8] = info->sbit_r; + chunk[9] = info->sbit_g; + chunk[10] = info->sbit_b; + } else if(info->color.colortype == LCT_GREY_ALPHA) { + if(info->sbit_r == 0 || info->sbit_a == 0) return 115; + if(info->sbit_r > bitdepth || info->sbit_a > bitdepth) return 115; + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 2, "sBIT")); + chunk[8] = info->sbit_r; + chunk[9] = info->sbit_a; + } else if(info->color.colortype == LCT_RGBA) { + if(info->sbit_r == 0 || info->sbit_g == 0 || info->sbit_b == 0 || info->sbit_a == 0 || + info->sbit_r > bitdepth || info->sbit_g > bitdepth || + info->sbit_b > bitdepth || info->sbit_a > bitdepth) { + return 115; + } + CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 4, "sBIT")); + chunk[8] = info->sbit_r; + chunk[9] = info->sbit_g; + chunk[10] = info->sbit_b; + chunk[11] = info->sbit_a; + } + if(chunk) lodepng_chunk_generate_crc(chunk); + return 0; +} + +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + +static void filterScanline(unsigned char* out, const unsigned char* scanline, const unsigned char* prevline, + size_t length, size_t bytewidth, unsigned char filterType) { + size_t i; + switch(filterType) { + case 0: /*None*/ + for(i = 0; i != length; ++i) out[i] = scanline[i]; + break; + case 1: /*Sub*/ + for(i = 0; i != bytewidth; ++i) out[i] = scanline[i]; + for(i = bytewidth; i < length; ++i) out[i] = scanline[i] - scanline[i - bytewidth]; + break; + case 2: /*Up*/ + if(prevline) { + for(i = 0; i != length; ++i) out[i] = scanline[i] - prevline[i]; + } else { + for(i = 0; i != length; ++i) out[i] = scanline[i]; + } + break; + case 3: /*Average*/ + if(prevline) { + for(i = 0; i != bytewidth; ++i) out[i] = scanline[i] - (prevline[i] >> 1); + for(i = bytewidth; i < length; ++i) out[i] = scanline[i] - ((scanline[i - bytewidth] + prevline[i]) >> 1); + } else { + for(i = 0; i != bytewidth; ++i) out[i] = scanline[i]; + for(i = bytewidth; i < length; ++i) out[i] = scanline[i] - (scanline[i - bytewidth] >> 1); + } + break; + case 4: /*Paeth*/ + if(prevline) { + /*paethPredictor(0, prevline[i], 0) is always prevline[i]*/ + for(i = 0; i != bytewidth; ++i) out[i] = (scanline[i] - prevline[i]); + for(i = bytewidth; i < length; ++i) { + out[i] = (scanline[i] - paethPredictor(scanline[i - bytewidth], prevline[i], prevline[i - bytewidth])); + } + } else { + for(i = 0; i != bytewidth; ++i) out[i] = scanline[i]; + /*paethPredictor(scanline[i - bytewidth], 0, 0) is always scanline[i - bytewidth]*/ + for(i = bytewidth; i < length; ++i) out[i] = (scanline[i] - scanline[i - bytewidth]); + } + break; + default: return; /*invalid filter type given*/ + } +} + +/* integer binary logarithm, max return value is 31 */ +static size_t ilog2(size_t i) { + size_t result = 0; + if(i >= 65536) { result += 16; i >>= 16; } + if(i >= 256) { result += 8; i >>= 8; } + if(i >= 16) { result += 4; i >>= 4; } + if(i >= 4) { result += 2; i >>= 2; } + if(i >= 2) { result += 1; /*i >>= 1;*/ } + return result; +} + +/* integer approximation for i * log2(i), helper function for LFS_ENTROPY */ +static size_t ilog2i(size_t i) { + size_t l; + if(i == 0) return 0; + l = ilog2(i); + /* approximate i*log2(i): l is integer logarithm, ((i - (1u << l)) << 1u) + linearly approximates the missing fractional part multiplied by i */ + return i * l + ((i - (1u << l)) << 1u); +} + +static unsigned filter(unsigned char* out, const unsigned char* in, unsigned w, unsigned h, + const LodePNGColorMode* color, const LodePNGEncoderSettings* settings) { + /* + For PNG filter method 0 + out must be a buffer with as size: h + (w * h * bpp + 7u) / 8u, because there are + the scanlines with 1 extra byte per scanline + */ + + unsigned bpp = lodepng_get_bpp(color); + /*the width of a scanline in bytes, not including the filter type*/ + size_t linebytes = lodepng_get_raw_size_idat(w, 1, bpp) - 1u; + + /*bytewidth is used for filtering, is 1 when bpp < 8, number of bytes per pixel otherwise*/ + size_t bytewidth = (bpp + 7u) / 8u; + const unsigned char* prevline = 0; + unsigned x, y; + unsigned error = 0; + LodePNGFilterStrategy strategy = settings->filter_strategy; + + /* + There is a heuristic called the minimum sum of absolute differences heuristic, suggested by the PNG standard: + * If the image type is Palette, or the bit depth is smaller than 8, then do not filter the image (i.e. + use fixed filtering, with the filter None). + * (The other case) If the image type is Grayscale or RGB (with or without Alpha), and the bit depth is + not smaller than 8, then use adaptive filtering heuristic as follows: independently for each row, apply + all five filters and select the filter that produces the smallest sum of absolute values per row. + This heuristic is used if filter strategy is LFS_MINSUM and filter_palette_zero is true. + + If filter_palette_zero is true and filter_strategy is not LFS_MINSUM, the above heuristic is followed, + but for "the other case", whatever strategy filter_strategy is set to instead of the minimum sum + heuristic is used. + */ + if(settings->filter_palette_zero && + (color->colortype == LCT_PALETTE || color->bitdepth < 8)) strategy = LFS_ZERO; + + if(bpp == 0) return 31; /*error: invalid color type*/ + + if(strategy >= LFS_ZERO && strategy <= LFS_FOUR) { + unsigned char type = (unsigned char)strategy; + for(y = 0; y != h; ++y) { + size_t outindex = (1 + linebytes) * y; /*the extra filterbyte added to each row*/ + size_t inindex = linebytes * y; + out[outindex] = type; /*filter type byte*/ + filterScanline(&out[outindex + 1], &in[inindex], prevline, linebytes, bytewidth, type); + prevline = &in[inindex]; + } + } else if(strategy == LFS_MINSUM) { + /*adaptive filtering*/ + unsigned char* attempt[5]; /*five filtering attempts, one for each filter type*/ + size_t smallest = 0; + unsigned char type, bestType = 0; + + for(type = 0; type != 5; ++type) { + attempt[type] = (unsigned char*)lodepng_malloc(linebytes); + if(!attempt[type]) error = 83; /*alloc fail*/ + } + + if(!error) { + for(y = 0; y != h; ++y) { + /*try the 5 filter types*/ + for(type = 0; type != 5; ++type) { + size_t sum = 0; + filterScanline(attempt[type], &in[y * linebytes], prevline, linebytes, bytewidth, type); + + /*calculate the sum of the result*/ + if(type == 0) { + for(x = 0; x != linebytes; ++x) sum += (unsigned char)(attempt[type][x]); + } else { + for(x = 0; x != linebytes; ++x) { + /*For differences, each byte should be treated as signed, values above 127 are negative + (converted to signed char). Filtertype 0 isn't a difference though, so use unsigned there. + This means filtertype 0 is almost never chosen, but that is justified.*/ + unsigned char s = attempt[type][x]; + sum += s < 128 ? s : (255U - s); + } + } + + /*check if this is smallest sum (or if type == 0 it's the first case so always store the values)*/ + if(type == 0 || sum < smallest) { + bestType = type; + smallest = sum; + } + } + + prevline = &in[y * linebytes]; + + /*now fill the out values*/ + out[y * (linebytes + 1)] = bestType; /*the first byte of a scanline will be the filter type*/ + for(x = 0; x != linebytes; ++x) out[y * (linebytes + 1) + 1 + x] = attempt[bestType][x]; + } + } + + for(type = 0; type != 5; ++type) lodepng_free(attempt[type]); + } else if(strategy == LFS_ENTROPY) { + unsigned char* attempt[5]; /*five filtering attempts, one for each filter type*/ + size_t bestSum = 0; + unsigned type, bestType = 0; + unsigned count[256]; + + for(type = 0; type != 5; ++type) { + attempt[type] = (unsigned char*)lodepng_malloc(linebytes); + if(!attempt[type]) error = 83; /*alloc fail*/ + } + + if(!error) { + for(y = 0; y != h; ++y) { + /*try the 5 filter types*/ + for(type = 0; type != 5; ++type) { + size_t sum = 0; + filterScanline(attempt[type], &in[y * linebytes], prevline, linebytes, bytewidth, type); + lodepng_memset(count, 0, 256 * sizeof(*count)); + for(x = 0; x != linebytes; ++x) ++count[attempt[type][x]]; + ++count[type]; /*the filter type itself is part of the scanline*/ + for(x = 0; x != 256; ++x) { + sum += ilog2i(count[x]); + } + /*check if this is smallest sum (or if type == 0 it's the first case so always store the values)*/ + if(type == 0 || sum > bestSum) { + bestType = type; + bestSum = sum; + } + } + + prevline = &in[y * linebytes]; + + /*now fill the out values*/ + out[y * (linebytes + 1)] = bestType; /*the first byte of a scanline will be the filter type*/ + for(x = 0; x != linebytes; ++x) out[y * (linebytes + 1) + 1 + x] = attempt[bestType][x]; + } + } + + for(type = 0; type != 5; ++type) lodepng_free(attempt[type]); + } else if(strategy == LFS_PREDEFINED) { + for(y = 0; y != h; ++y) { + size_t outindex = (1 + linebytes) * y; /*the extra filterbyte added to each row*/ + size_t inindex = linebytes * y; + unsigned char type = settings->predefined_filters[y]; + out[outindex] = type; /*filter type byte*/ + filterScanline(&out[outindex + 1], &in[inindex], prevline, linebytes, bytewidth, type); + prevline = &in[inindex]; + } + } else if(strategy == LFS_BRUTE_FORCE) { + /*brute force filter chooser. + deflate the scanline after every filter attempt to see which one deflates best. + This is very slow and gives only slightly smaller, sometimes even larger, result*/ + size_t size[5]; + unsigned char* attempt[5]; /*five filtering attempts, one for each filter type*/ + size_t smallest = 0; + unsigned type = 0, bestType = 0; + unsigned char* dummy; + LodePNGCompressSettings zlibsettings; + lodepng_memcpy(&zlibsettings, &settings->zlibsettings, sizeof(LodePNGCompressSettings)); + /*use fixed tree on the attempts so that the tree is not adapted to the filtertype on purpose, + to simulate the true case where the tree is the same for the whole image. Sometimes it gives + better result with dynamic tree anyway. Using the fixed tree sometimes gives worse, but in rare + cases better compression. It does make this a bit less slow, so it's worth doing this.*/ + zlibsettings.btype = 1; + /*a custom encoder likely doesn't read the btype setting and is optimized for complete PNG + images only, so disable it*/ + zlibsettings.custom_zlib = 0; + zlibsettings.custom_deflate = 0; + for(type = 0; type != 5; ++type) { + attempt[type] = (unsigned char*)lodepng_malloc(linebytes); + if(!attempt[type]) error = 83; /*alloc fail*/ + } + if(!error) { + for(y = 0; y != h; ++y) /*try the 5 filter types*/ { + for(type = 0; type != 5; ++type) { + unsigned testsize = (unsigned)linebytes; + /*if(testsize > 8) testsize /= 8;*/ /*it already works good enough by testing a part of the row*/ + + filterScanline(attempt[type], &in[y * linebytes], prevline, linebytes, bytewidth, type); + size[type] = 0; + dummy = 0; + zlib_compress(&dummy, &size[type], attempt[type], testsize, &zlibsettings); + lodepng_free(dummy); + /*check if this is smallest size (or if type == 0 it's the first case so always store the values)*/ + if(type == 0 || size[type] < smallest) { + bestType = type; + smallest = size[type]; + } + } + prevline = &in[y * linebytes]; + out[y * (linebytes + 1)] = bestType; /*the first byte of a scanline will be the filter type*/ + for(x = 0; x != linebytes; ++x) out[y * (linebytes + 1) + 1 + x] = attempt[bestType][x]; + } + } + for(type = 0; type != 5; ++type) lodepng_free(attempt[type]); + } + else return 88; /* unknown filter strategy */ + + return error; +} + +static void addPaddingBits(unsigned char* out, const unsigned char* in, + size_t olinebits, size_t ilinebits, unsigned h) { + /*The opposite of the removePaddingBits function + olinebits must be >= ilinebits*/ + unsigned y; + size_t diff = olinebits - ilinebits; + size_t obp = 0, ibp = 0; /*bit pointers*/ + for(y = 0; y != h; ++y) { + size_t x; + for(x = 0; x < ilinebits; ++x) { + unsigned char bit = readBitFromReversedStream(&ibp, in); + setBitOfReversedStream(&obp, out, bit); + } + /*obp += diff; --> no, fill in some value in the padding bits too, to avoid + "Use of uninitialised value of size ###" warning from valgrind*/ + for(x = 0; x != diff; ++x) setBitOfReversedStream(&obp, out, 0); + } +} + +/* +in: non-interlaced image with size w*h +out: the same pixels, but re-ordered according to PNG's Adam7 interlacing, with + no padding bits between scanlines, but between reduced images so that each + reduced image starts at a byte. +bpp: bits per pixel +there are no padding bits, not between scanlines, not between reduced images +in has the following size in bits: w * h * bpp. +out is possibly bigger due to padding bits between reduced images +NOTE: comments about padding bits are only relevant if bpp < 8 +*/ +static void Adam7_interlace(unsigned char* out, const unsigned char* in, unsigned w, unsigned h, unsigned bpp) { + unsigned passw[7], passh[7]; + size_t filter_passstart[8], padded_passstart[8], passstart[8]; + unsigned i; + + Adam7_getpassvalues(passw, passh, filter_passstart, padded_passstart, passstart, w, h, bpp); + + if(bpp >= 8) { + for(i = 0; i != 7; ++i) { + unsigned x, y, b; + size_t bytewidth = bpp / 8u; + for(y = 0; y < passh[i]; ++y) + for(x = 0; x < passw[i]; ++x) { + size_t pixelinstart = ((ADAM7_IY[i] + y * ADAM7_DY[i]) * w + ADAM7_IX[i] + x * ADAM7_DX[i]) * bytewidth; + size_t pixeloutstart = passstart[i] + (y * passw[i] + x) * bytewidth; + for(b = 0; b < bytewidth; ++b) { + out[pixeloutstart + b] = in[pixelinstart + b]; + } + } + } + } else /*bpp < 8: Adam7 with pixels < 8 bit is a bit trickier: with bit pointers*/ { + for(i = 0; i != 7; ++i) { + unsigned x, y, b; + unsigned ilinebits = bpp * passw[i]; + unsigned olinebits = bpp * w; + size_t obp, ibp; /*bit pointers (for out and in buffer)*/ + for(y = 0; y < passh[i]; ++y) + for(x = 0; x < passw[i]; ++x) { + ibp = (ADAM7_IY[i] + y * ADAM7_DY[i]) * olinebits + (ADAM7_IX[i] + x * ADAM7_DX[i]) * bpp; + obp = (8 * passstart[i]) + (y * ilinebits + x * bpp); + for(b = 0; b < bpp; ++b) { + unsigned char bit = readBitFromReversedStream(&ibp, in); + setBitOfReversedStream(&obp, out, bit); + } + } + } + } +} + +/*out must be buffer big enough to contain uncompressed IDAT chunk data, and in must contain the full image. +return value is error**/ +static unsigned preProcessScanlines(unsigned char** out, size_t* outsize, const unsigned char* in, + unsigned w, unsigned h, + const LodePNGInfo* info_png, const LodePNGEncoderSettings* settings) { + /* + This function converts the pure 2D image with the PNG's colortype, into filtered-padded-interlaced data. Steps: + *) if no Adam7: 1) add padding bits (= possible extra bits per scanline if bpp < 8) 2) filter + *) if adam7: 1) Adam7_interlace 2) 7x add padding bits 3) 7x filter + */ + unsigned bpp = lodepng_get_bpp(&info_png->color); + unsigned error = 0; + + if(info_png->interlace_method == 0) { + *outsize = h + (h * ((w * bpp + 7u) / 8u)); /*image size plus an extra byte per scanline + possible padding bits*/ + *out = (unsigned char*)lodepng_malloc(*outsize); + if(!(*out) && (*outsize)) error = 83; /*alloc fail*/ + + if(!error) { + /*non multiple of 8 bits per scanline, padding bits needed per scanline*/ + if(bpp < 8 && w * bpp != ((w * bpp + 7u) / 8u) * 8u) { + unsigned char* padded = (unsigned char*)lodepng_malloc(h * ((w * bpp + 7u) / 8u)); + if(!padded) error = 83; /*alloc fail*/ + if(!error) { + addPaddingBits(padded, in, ((w * bpp + 7u) / 8u) * 8u, w * bpp, h); + error = filter(*out, padded, w, h, &info_png->color, settings); + } + lodepng_free(padded); + } else { + /*we can immediately filter into the out buffer, no other steps needed*/ + error = filter(*out, in, w, h, &info_png->color, settings); + } + } + } else /*interlace_method is 1 (Adam7)*/ { + unsigned passw[7], passh[7]; + size_t filter_passstart[8], padded_passstart[8], passstart[8]; + unsigned char* adam7; + + Adam7_getpassvalues(passw, passh, filter_passstart, padded_passstart, passstart, w, h, bpp); + + *outsize = filter_passstart[7]; /*image size plus an extra byte per scanline + possible padding bits*/ + *out = (unsigned char*)lodepng_malloc(*outsize); + if(!(*out)) error = 83; /*alloc fail*/ + + adam7 = (unsigned char*)lodepng_malloc(passstart[7]); + if(!adam7 && passstart[7]) error = 83; /*alloc fail*/ + + if(!error) { + unsigned i; + + Adam7_interlace(adam7, in, w, h, bpp); + for(i = 0; i != 7; ++i) { + if(bpp < 8) { + unsigned char* padded = (unsigned char*)lodepng_malloc(padded_passstart[i + 1] - padded_passstart[i]); + if(!padded) ERROR_BREAK(83); /*alloc fail*/ + addPaddingBits(padded, &adam7[passstart[i]], + ((passw[i] * bpp + 7u) / 8u) * 8u, passw[i] * bpp, passh[i]); + error = filter(&(*out)[filter_passstart[i]], padded, + passw[i], passh[i], &info_png->color, settings); + lodepng_free(padded); + } else { + error = filter(&(*out)[filter_passstart[i]], &adam7[padded_passstart[i]], + passw[i], passh[i], &info_png->color, settings); + } + + if(error) break; + } + } + + lodepng_free(adam7); + } + + return error; +} + +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS +static unsigned addUnknownChunks(ucvector* out, unsigned char* data, size_t datasize) { + unsigned char* inchunk = data; + while((size_t)(inchunk - data) < datasize) { + CERROR_TRY_RETURN(lodepng_chunk_append(&out->data, &out->size, inchunk)); + out->allocsize = out->size; /*fix the allocsize again*/ + inchunk = lodepng_chunk_next(inchunk, data + datasize); + } + return 0; +} + +static unsigned isGrayICCProfile(const unsigned char* profile, unsigned size) { + /* + It is a gray profile if bytes 16-19 are "GRAY", rgb profile if bytes 16-19 + are "RGB ". We do not perform any full parsing of the ICC profile here, other + than check those 4 bytes to grayscale profile. Other than that, validity of + the profile is not checked. This is needed only because the PNG specification + requires using a non-gray color model if there is an ICC profile with "RGB " + (sadly limiting compression opportunities if the input data is grayscale RGB + data), and requires using a gray color model if it is "GRAY". + */ + if(size < 20) return 0; + return profile[16] == 'G' && profile[17] == 'R' && profile[18] == 'A' && profile[19] == 'Y'; +} + +static unsigned isRGBICCProfile(const unsigned char* profile, unsigned size) { + /* See comment in isGrayICCProfile*/ + if(size < 20) return 0; + return profile[16] == 'R' && profile[17] == 'G' && profile[18] == 'B' && profile[19] == ' '; +} +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + +unsigned lodepng_encode(unsigned char** out, size_t* outsize, + const unsigned char* image, unsigned w, unsigned h, + LodePNGState* state) { + unsigned char* data = 0; /*uncompressed version of the IDAT chunk data*/ + size_t datasize = 0; + ucvector outv = ucvector_init(NULL, 0); + LodePNGInfo info; + const LodePNGInfo* info_png = &state->info_png; + LodePNGColorMode auto_color; + + lodepng_info_init(&info); + lodepng_color_mode_init(&auto_color); + + /*provide some proper output values if error will happen*/ + *out = 0; + *outsize = 0; + state->error = 0; + + /*check input values validity*/ + if((info_png->color.colortype == LCT_PALETTE || state->encoder.force_palette) + && (info_png->color.palettesize == 0 || info_png->color.palettesize > 256)) { + /*this error is returned even if auto_convert is enabled and thus encoder could + generate the palette by itself: while allowing this could be possible in theory, + it may complicate the code or edge cases, and always requiring to give a palette + when setting this color type is a simpler contract*/ + state->error = 68; /*invalid palette size, it is only allowed to be 1-256*/ + goto cleanup; + } + if(state->encoder.zlibsettings.btype > 2) { + state->error = 61; /*error: invalid btype*/ + goto cleanup; + } + if(info_png->interlace_method > 1) { + state->error = 71; /*error: invalid interlace mode*/ + goto cleanup; + } + state->error = checkColorValidity(info_png->color.colortype, info_png->color.bitdepth); + if(state->error) goto cleanup; /*error: invalid color type given*/ + state->error = checkColorValidity(state->info_raw.colortype, state->info_raw.bitdepth); + if(state->error) goto cleanup; /*error: invalid color type given*/ + + /* color convert and compute scanline filter types */ + lodepng_info_copy(&info, &state->info_png); + if(state->encoder.auto_convert) { + LodePNGColorStats stats; + unsigned allow_convert = 1; + lodepng_color_stats_init(&stats); +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + if(info_png->iccp_defined && + isGrayICCProfile(info_png->iccp_profile, info_png->iccp_profile_size)) { + /*the PNG specification does not allow to use palette with a GRAY ICC profile, even + if the palette has only gray colors, so disallow it.*/ + stats.allow_palette = 0; + } + if(info_png->iccp_defined && + isRGBICCProfile(info_png->iccp_profile, info_png->iccp_profile_size)) { + /*the PNG specification does not allow to use grayscale color with RGB ICC profile, so disallow gray.*/ + stats.allow_greyscale = 0; + } +#endif /* LODEPNG_COMPILE_ANCILLARY_CHUNKS */ + state->error = lodepng_compute_color_stats(&stats, image, w, h, &state->info_raw); + if(state->error) goto cleanup; +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + if(info_png->background_defined) { + /*the background chunk's color must be taken into account as well*/ + unsigned r = 0, g = 0, b = 0; + LodePNGColorMode mode16 = lodepng_color_mode_make(LCT_RGB, 16); + lodepng_convert_rgb(&r, &g, &b, + info_png->background_r, info_png->background_g, info_png->background_b, &mode16, &info_png->color); + state->error = lodepng_color_stats_add(&stats, r, g, b, 65535); + if(state->error) goto cleanup; + } +#endif /* LODEPNG_COMPILE_ANCILLARY_CHUNKS */ + state->error = auto_choose_color(&auto_color, &state->info_raw, &stats); + if(state->error) goto cleanup; +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + if(info_png->sbit_defined) { + /*if sbit is defined, due to strict requirements of which sbit values can be present for which color modes, + auto_convert can't be done in many cases. However, do support a few cases here. + TODO: more conversions may be possible, and it may also be possible to get a more appropriate color type out of + auto_choose_color if knowledge about sbit is used beforehand + */ + unsigned sbit_max = LODEPNG_MAX(LODEPNG_MAX(LODEPNG_MAX(info_png->sbit_r, info_png->sbit_g), + info_png->sbit_b), info_png->sbit_a); + unsigned equal = (!info_png->sbit_g || info_png->sbit_g == info_png->sbit_r) + && (!info_png->sbit_b || info_png->sbit_b == info_png->sbit_r) + && (!info_png->sbit_a || info_png->sbit_a == info_png->sbit_r); + allow_convert = 0; + if(info.color.colortype == LCT_PALETTE && + auto_color.colortype == LCT_PALETTE) { + /* input and output are palette, and in this case it may happen that palette data is + expected to be copied from info_raw into the info_png */ + allow_convert = 1; + } + /*going from 8-bit RGB to palette (or 16-bit as long as sbit_max <= 8) is possible + since both are 8-bit RGB for sBIT's purposes*/ + if(info.color.colortype == LCT_RGB && + auto_color.colortype == LCT_PALETTE && sbit_max <= 8) { + allow_convert = 1; + } + /*going from 8-bit RGBA to palette is also ok but only if sbit_a is exactly 8*/ + if(info.color.colortype == LCT_RGBA && auto_color.colortype == LCT_PALETTE && + info_png->sbit_a == 8 && sbit_max <= 8) { + allow_convert = 1; + } + /*going from 16-bit RGB(A) to 8-bit RGB(A) is ok if all sbit values are <= 8*/ + if((info.color.colortype == LCT_RGB || info.color.colortype == LCT_RGBA) && info.color.bitdepth == 16 && + auto_color.colortype == info.color.colortype && auto_color.bitdepth == 8 && + sbit_max <= 8) { + allow_convert = 1; + } + /*going to less channels is ok if all bit values are equal (all possible values in sbit, + as well as the chosen bitdepth of the result). Due to how auto_convert works, + we already know that auto_color.colortype has less than or equal amount of channels than + info.colortype. Palette is not used here. This conversion is not allowed if + info_png->sbit_r < auto_color.bitdepth, because specifically for alpha, non-presence of + an sbit value heavily implies that alpha's bit depth is equal to the PNG bit depth (rather + than the bit depths set in the r, g and b sbit values, by how the PNG specification describes + handling tRNS chunk case with sBIT), so be conservative here about ignoring user input.*/ + if(info.color.colortype != LCT_PALETTE && auto_color.colortype != LCT_PALETTE && + equal && info_png->sbit_r == auto_color.bitdepth) { + allow_convert = 1; + } + } +#endif + if(state->encoder.force_palette) { + if(info.color.colortype != LCT_GREY && info.color.colortype != LCT_GREY_ALPHA && + (auto_color.colortype == LCT_GREY || auto_color.colortype == LCT_GREY_ALPHA)) { + /*user speficially forced a PLTE palette, so cannot convert to grayscale types because + the PNG specification only allows writing a suggested palette in PLTE for truecolor types*/ + allow_convert = 0; + } + } + if(allow_convert) { + lodepng_color_mode_copy(&info.color, &auto_color); +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + /*also convert the background chunk*/ + if(info_png->background_defined) { + if(lodepng_convert_rgb(&info.background_r, &info.background_g, &info.background_b, + info_png->background_r, info_png->background_g, info_png->background_b, &info.color, &info_png->color)) { + state->error = 104; + goto cleanup; + } + } +#endif /* LODEPNG_COMPILE_ANCILLARY_CHUNKS */ + } + } +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + if(info_png->iccp_defined) { + unsigned gray_icc = isGrayICCProfile(info_png->iccp_profile, info_png->iccp_profile_size); + unsigned rgb_icc = isRGBICCProfile(info_png->iccp_profile, info_png->iccp_profile_size); + unsigned gray_png = info.color.colortype == LCT_GREY || info.color.colortype == LCT_GREY_ALPHA; + if(!gray_icc && !rgb_icc) { + state->error = 100; /* Disallowed profile color type for PNG */ + goto cleanup; + } + if(gray_icc != gray_png) { + /*Not allowed to use RGB/RGBA/palette with GRAY ICC profile or vice versa, + or in case of auto_convert, it wasn't possible to find appropriate model*/ + state->error = state->encoder.auto_convert ? 102 : 101; + goto cleanup; + } + } +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + if(!lodepng_color_mode_equal(&state->info_raw, &info.color)) { + unsigned char* converted; + size_t size = ((size_t)w * (size_t)h * (size_t)lodepng_get_bpp(&info.color) + 7u) / 8u; + + converted = (unsigned char*)lodepng_malloc(size); + if(!converted && size) state->error = 83; /*alloc fail*/ + if(!state->error) { + state->error = lodepng_convert(converted, image, &info.color, &state->info_raw, w, h); + } + if(!state->error) { + state->error = preProcessScanlines(&data, &datasize, converted, w, h, &info, &state->encoder); + } + lodepng_free(converted); + if(state->error) goto cleanup; + } else { + state->error = preProcessScanlines(&data, &datasize, image, w, h, &info, &state->encoder); + if(state->error) goto cleanup; + } + + /* output all PNG chunks */ { +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + size_t i; +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + /*write signature and chunks*/ + state->error = writeSignature(&outv); + if(state->error) goto cleanup; + /*IHDR*/ + state->error = addChunk_IHDR(&outv, w, h, info.color.colortype, info.color.bitdepth, info.interlace_method); + if(state->error) goto cleanup; +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + /*unknown chunks between IHDR and PLTE*/ + if(info.unknown_chunks_data[0]) { + state->error = addUnknownChunks(&outv, info.unknown_chunks_data[0], info.unknown_chunks_size[0]); + if(state->error) goto cleanup; + } + /*color profile chunks must come before PLTE */ + if(info.iccp_defined) { + state->error = addChunk_iCCP(&outv, &info, &state->encoder.zlibsettings); + if(state->error) goto cleanup; + } + if(info.srgb_defined) { + state->error = addChunk_sRGB(&outv, &info); + if(state->error) goto cleanup; + } + if(info.gama_defined) { + state->error = addChunk_gAMA(&outv, &info); + if(state->error) goto cleanup; + } + if(info.chrm_defined) { + state->error = addChunk_cHRM(&outv, &info); + if(state->error) goto cleanup; + } + if(info_png->sbit_defined) { + state->error = addChunk_sBIT(&outv, &info); + if(state->error) goto cleanup; + } +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + /*PLTE*/ + if(info.color.colortype == LCT_PALETTE) { + state->error = addChunk_PLTE(&outv, &info.color); + if(state->error) goto cleanup; + } + if(state->encoder.force_palette && (info.color.colortype == LCT_RGB || info.color.colortype == LCT_RGBA)) { + /*force_palette means: write suggested palette for truecolor in PLTE chunk*/ + state->error = addChunk_PLTE(&outv, &info.color); + if(state->error) goto cleanup; + } + /*tRNS (this will only add if when necessary) */ + state->error = addChunk_tRNS(&outv, &info.color); + if(state->error) goto cleanup; +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + /*bKGD (must come between PLTE and the IDAt chunks*/ + if(info.background_defined) { + state->error = addChunk_bKGD(&outv, &info); + if(state->error) goto cleanup; + } + /*pHYs (must come before the IDAT chunks)*/ + if(info.phys_defined) { + state->error = addChunk_pHYs(&outv, &info); + if(state->error) goto cleanup; + } + + /*unknown chunks between PLTE and IDAT*/ + if(info.unknown_chunks_data[1]) { + state->error = addUnknownChunks(&outv, info.unknown_chunks_data[1], info.unknown_chunks_size[1]); + if(state->error) goto cleanup; + } +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + /*IDAT (multiple IDAT chunks must be consecutive)*/ + state->error = addChunk_IDAT(&outv, data, datasize, &state->encoder.zlibsettings); + if(state->error) goto cleanup; +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + /*tIME*/ + if(info.time_defined) { + state->error = addChunk_tIME(&outv, &info.time); + if(state->error) goto cleanup; + } + /*tEXt and/or zTXt*/ + for(i = 0; i != info.text_num; ++i) { + if(lodepng_strlen(info.text_keys[i]) > 79) { + state->error = 66; /*text chunk too large*/ + goto cleanup; + } + if(lodepng_strlen(info.text_keys[i]) < 1) { + state->error = 67; /*text chunk too small*/ + goto cleanup; + } + if(state->encoder.text_compression) { + state->error = addChunk_zTXt(&outv, info.text_keys[i], info.text_strings[i], &state->encoder.zlibsettings); + if(state->error) goto cleanup; + } else { + state->error = addChunk_tEXt(&outv, info.text_keys[i], info.text_strings[i]); + if(state->error) goto cleanup; + } + } + /*LodePNG version id in text chunk*/ + if(state->encoder.add_id) { + unsigned already_added_id_text = 0; + for(i = 0; i != info.text_num; ++i) { + const char* k = info.text_keys[i]; + /* Could use strcmp, but we're not calling or reimplementing this C library function for this use only */ + if(k[0] == 'L' && k[1] == 'o' && k[2] == 'd' && k[3] == 'e' && + k[4] == 'P' && k[5] == 'N' && k[6] == 'G' && k[7] == '\0') { + already_added_id_text = 1; + break; + } + } + if(already_added_id_text == 0) { + state->error = addChunk_tEXt(&outv, "LodePNG", LODEPNG_VERSION_STRING); /*it's shorter as tEXt than as zTXt chunk*/ + if(state->error) goto cleanup; + } + } + /*iTXt*/ + for(i = 0; i != info.itext_num; ++i) { + if(lodepng_strlen(info.itext_keys[i]) > 79) { + state->error = 66; /*text chunk too large*/ + goto cleanup; + } + if(lodepng_strlen(info.itext_keys[i]) < 1) { + state->error = 67; /*text chunk too small*/ + goto cleanup; + } + state->error = addChunk_iTXt( + &outv, state->encoder.text_compression, + info.itext_keys[i], info.itext_langtags[i], info.itext_transkeys[i], info.itext_strings[i], + &state->encoder.zlibsettings); + if(state->error) goto cleanup; + } + + /*unknown chunks between IDAT and IEND*/ + if(info.unknown_chunks_data[2]) { + state->error = addUnknownChunks(&outv, info.unknown_chunks_data[2], info.unknown_chunks_size[2]); + if(state->error) goto cleanup; + } +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + state->error = addChunk_IEND(&outv); + if(state->error) goto cleanup; + } + +cleanup: + lodepng_info_cleanup(&info); + lodepng_free(data); + lodepng_color_mode_cleanup(&auto_color); + + /*instead of cleaning the vector up, give it to the output*/ + *out = outv.data; + *outsize = outv.size; + + return state->error; +} + +unsigned lodepng_encode_memory(unsigned char** out, size_t* outsize, const unsigned char* image, + unsigned w, unsigned h, LodePNGColorType colortype, unsigned bitdepth) { + unsigned error; + LodePNGState state; + lodepng_state_init(&state); + state.info_raw.colortype = colortype; + state.info_raw.bitdepth = bitdepth; + state.info_png.color.colortype = colortype; + state.info_png.color.bitdepth = bitdepth; + lodepng_encode(out, outsize, image, w, h, &state); + error = state.error; + lodepng_state_cleanup(&state); + return error; +} + +unsigned lodepng_encode32(unsigned char** out, size_t* outsize, const unsigned char* image, unsigned w, unsigned h) { + return lodepng_encode_memory(out, outsize, image, w, h, LCT_RGBA, 8); +} + +unsigned lodepng_encode24(unsigned char** out, size_t* outsize, const unsigned char* image, unsigned w, unsigned h) { + return lodepng_encode_memory(out, outsize, image, w, h, LCT_RGB, 8); +} + +#ifdef LODEPNG_COMPILE_DISK +unsigned lodepng_encode_file(const char* filename, const unsigned char* image, unsigned w, unsigned h, + LodePNGColorType colortype, unsigned bitdepth) { + unsigned char* buffer; + size_t buffersize; + unsigned error = lodepng_encode_memory(&buffer, &buffersize, image, w, h, colortype, bitdepth); + if(!error) error = lodepng_save_file(buffer, buffersize, filename); + lodepng_free(buffer); + return error; +} + +unsigned lodepng_encode32_file(const char* filename, const unsigned char* image, unsigned w, unsigned h) { + return lodepng_encode_file(filename, image, w, h, LCT_RGBA, 8); +} + +unsigned lodepng_encode24_file(const char* filename, const unsigned char* image, unsigned w, unsigned h) { + return lodepng_encode_file(filename, image, w, h, LCT_RGB, 8); +} +#endif /*LODEPNG_COMPILE_DISK*/ + +void lodepng_encoder_settings_init(LodePNGEncoderSettings* settings) { + lodepng_compress_settings_init(&settings->zlibsettings); + settings->filter_palette_zero = 1; + settings->filter_strategy = LFS_MINSUM; + settings->auto_convert = 1; + settings->force_palette = 0; + settings->predefined_filters = 0; +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + settings->add_id = 0; + settings->text_compression = 1; +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ +} + +#endif /*LODEPNG_COMPILE_ENCODER*/ +#endif /*LODEPNG_COMPILE_PNG*/ + +#ifdef LODEPNG_COMPILE_ERROR_TEXT +/* +This returns the description of a numerical error code in English. This is also +the documentation of all the error codes. +*/ +const char* lodepng_error_text(unsigned code) { + switch(code) { + case 0: return "no error, everything went ok"; + case 1: return "nothing done yet"; /*the Encoder/Decoder has done nothing yet, error checking makes no sense yet*/ + case 10: return "end of input memory reached without huffman end code"; /*while huffman decoding*/ + case 11: return "error in code tree made it jump outside of huffman tree"; /*while huffman decoding*/ + case 13: return "problem while processing dynamic deflate block"; + case 14: return "problem while processing dynamic deflate block"; + case 15: return "problem while processing dynamic deflate block"; + /*this error could happen if there are only 0 or 1 symbols present in the huffman code:*/ + case 16: return "invalid code while processing dynamic deflate block"; + case 17: return "end of out buffer memory reached while inflating"; + case 18: return "invalid distance code while inflating"; + case 19: return "end of out buffer memory reached while inflating"; + case 20: return "invalid deflate block BTYPE encountered while decoding"; + case 21: return "NLEN is not ones complement of LEN in a deflate block"; + + /*end of out buffer memory reached while inflating: + This can happen if the inflated deflate data is longer than the amount of bytes required to fill up + all the pixels of the image, given the color depth and image dimensions. Something that doesn't + happen in a normal, well encoded, PNG image.*/ + case 22: return "end of out buffer memory reached while inflating"; + case 23: return "end of in buffer memory reached while inflating"; + case 24: return "invalid FCHECK in zlib header"; + case 25: return "invalid compression method in zlib header"; + case 26: return "FDICT encountered in zlib header while it's not used for PNG"; + case 27: return "PNG file is smaller than a PNG header"; + /*Checks the magic file header, the first 8 bytes of the PNG file*/ + case 28: return "incorrect PNG signature, it's no PNG or corrupted"; + case 29: return "first chunk is not the header chunk"; + case 30: return "chunk length too large, chunk broken off at end of file"; + case 31: return "illegal PNG color type or bpp"; + case 32: return "illegal PNG compression method"; + case 33: return "illegal PNG filter method"; + case 34: return "illegal PNG interlace method"; + case 35: return "chunk length of a chunk is too large or the chunk too small"; + case 36: return "illegal PNG filter type encountered"; + case 37: return "illegal bit depth for this color type given"; + case 38: return "the palette is too small or too big"; /*0, or more than 256 colors*/ + case 39: return "tRNS chunk before PLTE or has more entries than palette size"; + case 40: return "tRNS chunk has wrong size for grayscale image"; + case 41: return "tRNS chunk has wrong size for RGB image"; + case 42: return "tRNS chunk appeared while it was not allowed for this color type"; + case 43: return "bKGD chunk has wrong size for palette image"; + case 44: return "bKGD chunk has wrong size for grayscale image"; + case 45: return "bKGD chunk has wrong size for RGB image"; + case 48: return "empty input buffer given to decoder. Maybe caused by non-existing file?"; + case 49: return "jumped past memory while generating dynamic huffman tree"; + case 50: return "jumped past memory while generating dynamic huffman tree"; + case 51: return "jumped past memory while inflating huffman block"; + case 52: return "jumped past memory while inflating"; + case 53: return "size of zlib data too small"; + case 54: return "repeat symbol in tree while there was no value symbol yet"; + /*jumped past tree while generating huffman tree, this could be when the + tree will have more leaves than symbols after generating it out of the + given lengths. They call this an oversubscribed dynamic bit lengths tree in zlib.*/ + case 55: return "jumped past tree while generating huffman tree"; + case 56: return "given output image colortype or bitdepth not supported for color conversion"; + case 57: return "invalid CRC encountered (checking CRC can be disabled)"; + case 58: return "invalid ADLER32 encountered (checking ADLER32 can be disabled)"; + case 59: return "requested color conversion not supported"; + case 60: return "invalid window size given in the settings of the encoder (must be 0-32768)"; + case 61: return "invalid BTYPE given in the settings of the encoder (only 0, 1 and 2 are allowed)"; + /*LodePNG leaves the choice of RGB to grayscale conversion formula to the user.*/ + case 62: return "conversion from color to grayscale not supported"; + /*(2^31-1)*/ + case 63: return "length of a chunk too long, max allowed for PNG is 2147483647 bytes per chunk"; + /*this would result in the inability of a deflated block to ever contain an end code. It must be at least 1.*/ + case 64: return "the length of the END symbol 256 in the Huffman tree is 0"; + case 66: return "the length of a text chunk keyword given to the encoder is longer than the maximum of 79 bytes"; + case 67: return "the length of a text chunk keyword given to the encoder is smaller than the minimum of 1 byte"; + case 68: return "tried to encode a PLTE chunk with a palette that has less than 1 or more than 256 colors"; + case 69: return "unknown chunk type with 'critical' flag encountered by the decoder"; + case 71: return "invalid interlace mode given to encoder (must be 0 or 1)"; + case 72: return "while decoding, invalid compression method encountering in zTXt or iTXt chunk (it must be 0)"; + case 73: return "invalid tIME chunk size"; + case 74: return "invalid pHYs chunk size"; + /*length could be wrong, or data chopped off*/ + case 75: return "no null termination char found while decoding text chunk"; + case 76: return "iTXt chunk too short to contain required bytes"; + case 77: return "integer overflow in buffer size"; + case 78: return "failed to open file for reading"; /*file doesn't exist or couldn't be opened for reading*/ + case 79: return "failed to open file for writing"; + case 80: return "tried creating a tree of 0 symbols"; + case 81: return "lazy matching at pos 0 is impossible"; + case 82: return "color conversion to palette requested while a color isn't in palette, or index out of bounds"; + case 83: return "memory allocation failed"; + case 84: return "given image too small to contain all pixels to be encoded"; + case 86: return "impossible offset in lz77 encoding (internal bug)"; + case 87: return "must provide custom zlib function pointer if LODEPNG_COMPILE_ZLIB is not defined"; + case 88: return "invalid filter strategy given for LodePNGEncoderSettings.filter_strategy"; + case 89: return "text chunk keyword too short or long: must have size 1-79"; + /*the windowsize in the LodePNGCompressSettings. Requiring POT(==> & instead of %) makes encoding 12% faster.*/ + case 90: return "windowsize must be a power of two"; + case 91: return "invalid decompressed idat size"; + case 92: return "integer overflow due to too many pixels"; + case 93: return "zero width or height is invalid"; + case 94: return "header chunk must have a size of 13 bytes"; + case 95: return "integer overflow with combined idat chunk size"; + case 96: return "invalid gAMA chunk size"; + case 97: return "invalid cHRM chunk size"; + case 98: return "invalid sRGB chunk size"; + case 99: return "invalid sRGB rendering intent"; + case 100: return "invalid ICC profile color type, the PNG specification only allows RGB or GRAY"; + case 101: return "PNG specification does not allow RGB ICC profile on gray color types and vice versa"; + case 102: return "not allowed to set grayscale ICC profile with colored pixels by PNG specification"; + case 103: return "invalid palette index in bKGD chunk. Maybe it came before PLTE chunk?"; + case 104: return "invalid bKGD color while encoding (e.g. palette index out of range)"; + case 105: return "integer overflow of bitsize"; + case 106: return "PNG file must have PLTE chunk if color type is palette"; + case 107: return "color convert from palette mode requested without setting the palette data in it"; + case 108: return "tried to add more than 256 values to a palette"; + /*this limit can be configured in LodePNGDecompressSettings*/ + case 109: return "tried to decompress zlib or deflate data larger than desired max_output_size"; + case 110: return "custom zlib or inflate decompression failed"; + case 111: return "custom zlib or deflate compression failed"; + /*max text size limit can be configured in LodePNGDecoderSettings. This error prevents + unreasonable memory consumption when decoding due to impossibly large text sizes.*/ + case 112: return "compressed text unreasonably large"; + /*max ICC size limit can be configured in LodePNGDecoderSettings. This error prevents + unreasonable memory consumption when decoding due to impossibly large ICC profile*/ + case 113: return "ICC profile unreasonably large"; + case 114: return "sBIT chunk has wrong size for the color type of the image"; + case 115: return "sBIT value out of range"; + } + return "unknown error code"; +} +#endif /*LODEPNG_COMPILE_ERROR_TEXT*/ + +/* ////////////////////////////////////////////////////////////////////////// */ +/* ////////////////////////////////////////////////////////////////////////// */ +/* // C++ Wrapper // */ +/* ////////////////////////////////////////////////////////////////////////// */ +/* ////////////////////////////////////////////////////////////////////////// */ + +#ifdef LODEPNG_COMPILE_CPP +namespace lodepng { + +#ifdef LODEPNG_COMPILE_DISK +unsigned load_file(std::vector& buffer, const std::string& filename) { + long size = lodepng_filesize(filename.c_str()); + if(size < 0) return 78; + buffer.resize((size_t)size); + return size == 0 ? 0 : lodepng_buffer_file(&buffer[0], (size_t)size, filename.c_str()); +} + +/*write given buffer to the file, overwriting the file, it doesn't append to it.*/ +unsigned save_file(const std::vector& buffer, const std::string& filename) { + return lodepng_save_file(buffer.empty() ? 0 : &buffer[0], buffer.size(), filename.c_str()); +} +#endif /* LODEPNG_COMPILE_DISK */ + +#ifdef LODEPNG_COMPILE_ZLIB +#ifdef LODEPNG_COMPILE_DECODER +unsigned decompress(std::vector& out, const unsigned char* in, size_t insize, + const LodePNGDecompressSettings& settings) { + unsigned char* buffer = 0; + size_t buffersize = 0; + unsigned error = zlib_decompress(&buffer, &buffersize, 0, in, insize, &settings); + if(buffer) { + out.insert(out.end(), buffer, &buffer[buffersize]); + lodepng_free(buffer); + } + return error; +} + +unsigned decompress(std::vector& out, const std::vector& in, + const LodePNGDecompressSettings& settings) { + return decompress(out, in.empty() ? 0 : &in[0], in.size(), settings); +} +#endif /* LODEPNG_COMPILE_DECODER */ + +#ifdef LODEPNG_COMPILE_ENCODER +unsigned compress(std::vector& out, const unsigned char* in, size_t insize, + const LodePNGCompressSettings& settings) { + unsigned char* buffer = 0; + size_t buffersize = 0; + unsigned error = zlib_compress(&buffer, &buffersize, in, insize, &settings); + if(buffer) { + out.insert(out.end(), buffer, &buffer[buffersize]); + lodepng_free(buffer); + } + return error; +} + +unsigned compress(std::vector& out, const std::vector& in, + const LodePNGCompressSettings& settings) { + return compress(out, in.empty() ? 0 : &in[0], in.size(), settings); +} +#endif /* LODEPNG_COMPILE_ENCODER */ +#endif /* LODEPNG_COMPILE_ZLIB */ + + +#ifdef LODEPNG_COMPILE_PNG + +State::State() { + lodepng_state_init(this); +} + +State::State(const State& other) { + lodepng_state_init(this); + lodepng_state_copy(this, &other); +} + +State::~State() { + lodepng_state_cleanup(this); +} + +State& State::operator=(const State& other) { + lodepng_state_copy(this, &other); + return *this; +} + +#ifdef LODEPNG_COMPILE_DECODER + +unsigned decode(std::vector& out, unsigned& w, unsigned& h, const unsigned char* in, + size_t insize, LodePNGColorType colortype, unsigned bitdepth) { + unsigned char* buffer = 0; + unsigned error = lodepng_decode_memory(&buffer, &w, &h, in, insize, colortype, bitdepth); + if(buffer && !error) { + State state; + state.info_raw.colortype = colortype; + state.info_raw.bitdepth = bitdepth; + size_t buffersize = lodepng_get_raw_size(w, h, &state.info_raw); + out.insert(out.end(), buffer, &buffer[buffersize]); + } + lodepng_free(buffer); + return error; +} + +unsigned decode(std::vector& out, unsigned& w, unsigned& h, + const std::vector& in, LodePNGColorType colortype, unsigned bitdepth) { + return decode(out, w, h, in.empty() ? 0 : &in[0], (unsigned)in.size(), colortype, bitdepth); +} + +unsigned decode(std::vector& out, unsigned& w, unsigned& h, + State& state, + const unsigned char* in, size_t insize) { + unsigned char* buffer = NULL; + unsigned error = lodepng_decode(&buffer, &w, &h, &state, in, insize); + if(buffer && !error) { + size_t buffersize = lodepng_get_raw_size(w, h, &state.info_raw); + out.insert(out.end(), buffer, &buffer[buffersize]); + } + lodepng_free(buffer); + return error; +} + +unsigned decode(std::vector& out, unsigned& w, unsigned& h, + State& state, + const std::vector& in) { + return decode(out, w, h, state, in.empty() ? 0 : &in[0], in.size()); +} + +#ifdef LODEPNG_COMPILE_DISK +unsigned decode(std::vector& out, unsigned& w, unsigned& h, const std::string& filename, + LodePNGColorType colortype, unsigned bitdepth) { + std::vector buffer; + /* safe output values in case error happens */ + w = h = 0; + unsigned error = load_file(buffer, filename); + if(error) return error; + return decode(out, w, h, buffer, colortype, bitdepth); +} +#endif /* LODEPNG_COMPILE_DECODER */ +#endif /* LODEPNG_COMPILE_DISK */ + +#ifdef LODEPNG_COMPILE_ENCODER +unsigned encode(std::vector& out, const unsigned char* in, unsigned w, unsigned h, + LodePNGColorType colortype, unsigned bitdepth) { + unsigned char* buffer; + size_t buffersize; + unsigned error = lodepng_encode_memory(&buffer, &buffersize, in, w, h, colortype, bitdepth); + if(buffer) { + out.insert(out.end(), buffer, &buffer[buffersize]); + lodepng_free(buffer); + } + return error; +} + +unsigned encode(std::vector& out, + const std::vector& in, unsigned w, unsigned h, + LodePNGColorType colortype, unsigned bitdepth) { + if(lodepng_get_raw_size_lct(w, h, colortype, bitdepth) > in.size()) return 84; + return encode(out, in.empty() ? 0 : &in[0], w, h, colortype, bitdepth); +} + +unsigned encode(std::vector& out, + const unsigned char* in, unsigned w, unsigned h, + State& state) { + unsigned char* buffer; + size_t buffersize; + unsigned error = lodepng_encode(&buffer, &buffersize, in, w, h, &state); + if(buffer) { + out.insert(out.end(), buffer, &buffer[buffersize]); + lodepng_free(buffer); + } + return error; +} + +unsigned encode(std::vector& out, + const std::vector& in, unsigned w, unsigned h, + State& state) { + if(lodepng_get_raw_size(w, h, &state.info_raw) > in.size()) return 84; + return encode(out, in.empty() ? 0 : &in[0], w, h, state); +} + +#ifdef LODEPNG_COMPILE_DISK +unsigned encode(const std::string& filename, + const unsigned char* in, unsigned w, unsigned h, + LodePNGColorType colortype, unsigned bitdepth) { + std::vector buffer; + unsigned error = encode(buffer, in, w, h, colortype, bitdepth); + if(!error) error = save_file(buffer, filename); + return error; +} + +unsigned encode(const std::string& filename, + const std::vector& in, unsigned w, unsigned h, + LodePNGColorType colortype, unsigned bitdepth) { + if(lodepng_get_raw_size_lct(w, h, colortype, bitdepth) > in.size()) return 84; + return encode(filename, in.empty() ? 0 : &in[0], w, h, colortype, bitdepth); +} +#endif /* LODEPNG_COMPILE_DISK */ +#endif /* LODEPNG_COMPILE_ENCODER */ +#endif /* LODEPNG_COMPILE_PNG */ +} /* namespace lodepng */ +#endif /*LODEPNG_COMPILE_CPP*/ diff --git a/Marlin/lib/LodePNG/lodepng.h b/Marlin/lib/LodePNG/lodepng.h new file mode 100644 index 0000000000..fdafc770e4 --- /dev/null +++ b/Marlin/lib/LodePNG/lodepng.h @@ -0,0 +1,2085 @@ +/* +LodePNG version 20220717 + +Copyright (c) 2005-2022 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +#ifndef LODEPNG_H +#define LODEPNG_H + +#include /*for size_t*/ + +extern const char* LODEPNG_VERSION_STRING; + +/* +The following #defines are used to create code sections. They can be disabled +to disable code sections, which can give faster compile time and smaller binary. +The "NO_COMPILE" defines are designed to be used to pass as defines to the +compiler command to disable them without modifying this header, e.g. +-DLODEPNG_NO_COMPILE_ZLIB for gcc or clang. +*/ +/*deflate & zlib. If disabled, you must specify alternative zlib functions in +the custom_zlib field of the compress and decompress settings*/ +#ifndef LODEPNG_NO_COMPILE_ZLIB +/*pass -DLODEPNG_NO_COMPILE_ZLIB to the compiler to disable this, or comment out LODEPNG_COMPILE_ZLIB below*/ +#define LODEPNG_COMPILE_ZLIB +#endif + +/*png encoder and png decoder*/ +#ifndef LODEPNG_NO_COMPILE_PNG +/*pass -DLODEPNG_NO_COMPILE_PNG to the compiler to disable this, or comment out LODEPNG_COMPILE_PNG below*/ +#define LODEPNG_COMPILE_PNG +#endif + +/*deflate&zlib decoder and png decoder*/ +#ifndef LODEPNG_NO_COMPILE_DECODER +/*pass -DLODEPNG_NO_COMPILE_DECODER to the compiler to disable this, or comment out LODEPNG_COMPILE_DECODER below*/ +#define LODEPNG_COMPILE_DECODER +#endif + +/*deflate&zlib encoder and png encoder*/ +#ifndef LODEPNG_NO_COMPILE_ENCODER +/*pass -DLODEPNG_NO_COMPILE_ENCODER to the compiler to disable this, or comment out LODEPNG_COMPILE_ENCODER below*/ +#define LODEPNG_COMPILE_ENCODER +#endif + +/*the optional built in harddisk file loading and saving functions*/ +#ifndef LODEPNG_NO_COMPILE_DISK +/*pass -DLODEPNG_NO_COMPILE_DISK to the compiler to disable this, or comment out LODEPNG_COMPILE_DISK below*/ +#define LODEPNG_COMPILE_DISK +#endif + +/*support for chunks other than IHDR, IDAT, PLTE, tRNS, IEND: ancillary and unknown chunks*/ +#ifndef LODEPNG_NO_COMPILE_ANCILLARY_CHUNKS +/*pass -DLODEPNG_NO_COMPILE_ANCILLARY_CHUNKS to the compiler to disable this, +or comment out LODEPNG_COMPILE_ANCILLARY_CHUNKS below*/ +#define LODEPNG_COMPILE_ANCILLARY_CHUNKS +#endif + +/*ability to convert error numerical codes to English text string*/ +#ifndef LODEPNG_NO_COMPILE_ERROR_TEXT +/*pass -DLODEPNG_NO_COMPILE_ERROR_TEXT to the compiler to disable this, +or comment out LODEPNG_COMPILE_ERROR_TEXT below*/ +#define LODEPNG_COMPILE_ERROR_TEXT +#endif + +/*Compile the default allocators (C's free, malloc and realloc). If you disable this, +you can define the functions lodepng_free, lodepng_malloc and lodepng_realloc in your +source files with custom allocators.*/ +#ifndef LODEPNG_NO_COMPILE_ALLOCATORS +/*pass -DLODEPNG_NO_COMPILE_ALLOCATORS to the compiler to disable the built-in ones, +or comment out LODEPNG_COMPILE_ALLOCATORS below*/ +#define LODEPNG_COMPILE_ALLOCATORS +#endif + +/*Disable built-in CRC function, in that case a custom implementation of +lodepng_crc32 must be defined externally so that it can be linked in.*/ +#ifndef LODEPNG_NO_COMPILE_CRC +/*pass -DLODEPNG_NO_COMPILE_CRC to the compiler to disable the built-in one, +or comment out LODEPNG_COMPILE_CRC below*/ +#define LODEPNG_COMPILE_CRC +#endif + +/*compile the C++ version (you can disable the C++ wrapper here even when compiling for C++)*/ +#ifdef __cplusplus +#ifndef LODEPNG_NO_COMPILE_CPP +/*pass -DLODEPNG_NO_COMPILE_CPP to the compiler to disable C++ (not needed if a C-only compiler), +or comment out LODEPNG_COMPILE_CPP below*/ +#define LODEPNG_COMPILE_CPP +#endif +#endif + +#ifdef LODEPNG_COMPILE_CPP +#include +#include +#endif /*LODEPNG_COMPILE_CPP*/ + +#ifdef LODEPNG_COMPILE_PNG +/*The PNG color types (also used for raw image).*/ +typedef enum LodePNGColorType { + LCT_GREY = 0, /*grayscale: 1,2,4,8,16 bit*/ + LCT_RGB = 2, /*RGB: 8,16 bit*/ + LCT_PALETTE = 3, /*palette: 1,2,4,8 bit*/ + LCT_GREY_ALPHA = 4, /*grayscale with alpha: 8,16 bit*/ + LCT_RGBA = 6, /*RGB with alpha: 8,16 bit*/ + /*LCT_MAX_OCTET_VALUE lets the compiler allow this enum to represent any invalid + byte value from 0 to 255 that could be present in an invalid PNG file header. Do + not use, compare with or set the name LCT_MAX_OCTET_VALUE, instead either use + the valid color type names above, or numeric values like 1 or 7 when checking for + particular disallowed color type byte values, or cast to integer to print it.*/ + LCT_MAX_OCTET_VALUE = 255 +} LodePNGColorType; + +#ifdef LODEPNG_COMPILE_DECODER +/* +Converts PNG data in memory to raw pixel data. +out: Output parameter. Pointer to buffer that will contain the raw pixel data. + After decoding, its size is w * h * (bytes per pixel) bytes larger than + initially. Bytes per pixel depends on colortype and bitdepth. + Must be freed after usage with free(*out). + Note: for 16-bit per channel colors, uses big endian format like PNG does. +w: Output parameter. Pointer to width of pixel data. +h: Output parameter. Pointer to height of pixel data. +in: Memory buffer with the PNG file. +insize: size of the in buffer. +colortype: the desired color type for the raw output image. See explanation on PNG color types. +bitdepth: the desired bit depth for the raw output image. See explanation on PNG color types. +Return value: LodePNG error code (0 means no error). +*/ +unsigned lodepng_decode_memory(unsigned char** out, unsigned* w, unsigned* h, + const unsigned char* in, size_t insize, + LodePNGColorType colortype, unsigned bitdepth); + +/*Same as lodepng_decode_memory, but always decodes to 32-bit RGBA raw image*/ +unsigned lodepng_decode32(unsigned char** out, unsigned* w, unsigned* h, + const unsigned char* in, size_t insize); + +/*Same as lodepng_decode_memory, but always decodes to 24-bit RGB raw image*/ +unsigned lodepng_decode24(unsigned char** out, unsigned* w, unsigned* h, + const unsigned char* in, size_t insize); + +#ifdef LODEPNG_COMPILE_DISK +/* +Load PNG from disk, from file with given name. +Same as the other decode functions, but instead takes a filename as input. + +NOTE: Wide-character filenames are not supported, you can use an external method +to handle such files and decode in-memory.*/ +unsigned lodepng_decode_file(unsigned char** out, unsigned* w, unsigned* h, + const char* filename, + LodePNGColorType colortype, unsigned bitdepth); + +/*Same as lodepng_decode_file, but always decodes to 32-bit RGBA raw image. + +NOTE: Wide-character filenames are not supported, you can use an external method +to handle such files and decode in-memory.*/ +unsigned lodepng_decode32_file(unsigned char** out, unsigned* w, unsigned* h, + const char* filename); + +/*Same as lodepng_decode_file, but always decodes to 24-bit RGB raw image. + +NOTE: Wide-character filenames are not supported, you can use an external method +to handle such files and decode in-memory.*/ +unsigned lodepng_decode24_file(unsigned char** out, unsigned* w, unsigned* h, + const char* filename); +#endif /*LODEPNG_COMPILE_DISK*/ +#endif /*LODEPNG_COMPILE_DECODER*/ + + +#ifdef LODEPNG_COMPILE_ENCODER +/* +Converts raw pixel data into a PNG image in memory. The colortype and bitdepth + of the output PNG image cannot be chosen, they are automatically determined + by the colortype, bitdepth and content of the input pixel data. + Note: for 16-bit per channel colors, needs big endian format like PNG does. +out: Output parameter. Pointer to buffer that will contain the PNG image data. + Must be freed after usage with free(*out). +outsize: Output parameter. Pointer to the size in bytes of the out buffer. +image: The raw pixel data to encode. The size of this buffer should be + w * h * (bytes per pixel), bytes per pixel depends on colortype and bitdepth. +w: width of the raw pixel data in pixels. +h: height of the raw pixel data in pixels. +colortype: the color type of the raw input image. See explanation on PNG color types. +bitdepth: the bit depth of the raw input image. See explanation on PNG color types. +Return value: LodePNG error code (0 means no error). +*/ +unsigned lodepng_encode_memory(unsigned char** out, size_t* outsize, + const unsigned char* image, unsigned w, unsigned h, + LodePNGColorType colortype, unsigned bitdepth); + +/*Same as lodepng_encode_memory, but always encodes from 32-bit RGBA raw image.*/ +unsigned lodepng_encode32(unsigned char** out, size_t* outsize, + const unsigned char* image, unsigned w, unsigned h); + +/*Same as lodepng_encode_memory, but always encodes from 24-bit RGB raw image.*/ +unsigned lodepng_encode24(unsigned char** out, size_t* outsize, + const unsigned char* image, unsigned w, unsigned h); + +#ifdef LODEPNG_COMPILE_DISK +/* +Converts raw pixel data into a PNG file on disk. +Same as the other encode functions, but instead takes a filename as output. + +NOTE: This overwrites existing files without warning! + +NOTE: Wide-character filenames are not supported, you can use an external method +to handle such files and encode in-memory.*/ +unsigned lodepng_encode_file(const char* filename, + const unsigned char* image, unsigned w, unsigned h, + LodePNGColorType colortype, unsigned bitdepth); + +/*Same as lodepng_encode_file, but always encodes from 32-bit RGBA raw image. + +NOTE: Wide-character filenames are not supported, you can use an external method +to handle such files and encode in-memory.*/ +unsigned lodepng_encode32_file(const char* filename, + const unsigned char* image, unsigned w, unsigned h); + +/*Same as lodepng_encode_file, but always encodes from 24-bit RGB raw image. + +NOTE: Wide-character filenames are not supported, you can use an external method +to handle such files and encode in-memory.*/ +unsigned lodepng_encode24_file(const char* filename, + const unsigned char* image, unsigned w, unsigned h); +#endif /*LODEPNG_COMPILE_DISK*/ +#endif /*LODEPNG_COMPILE_ENCODER*/ + + +#ifdef LODEPNG_COMPILE_CPP +namespace lodepng { +#ifdef LODEPNG_COMPILE_DECODER +/*Same as lodepng_decode_memory, but decodes to an std::vector. The colortype +is the format to output the pixels to. Default is RGBA 8-bit per channel.*/ +unsigned decode(std::vector& out, unsigned& w, unsigned& h, + const unsigned char* in, size_t insize, + LodePNGColorType colortype = LCT_RGBA, unsigned bitdepth = 8); +unsigned decode(std::vector& out, unsigned& w, unsigned& h, + const std::vector& in, + LodePNGColorType colortype = LCT_RGBA, unsigned bitdepth = 8); +#ifdef LODEPNG_COMPILE_DISK +/* +Converts PNG file from disk to raw pixel data in memory. +Same as the other decode functions, but instead takes a filename as input. + +NOTE: Wide-character filenames are not supported, you can use an external method +to handle such files and decode in-memory. +*/ +unsigned decode(std::vector& out, unsigned& w, unsigned& h, + const std::string& filename, + LodePNGColorType colortype = LCT_RGBA, unsigned bitdepth = 8); +#endif /* LODEPNG_COMPILE_DISK */ +#endif /* LODEPNG_COMPILE_DECODER */ + +#ifdef LODEPNG_COMPILE_ENCODER +/*Same as lodepng_encode_memory, but encodes to an std::vector. colortype +is that of the raw input data. The output PNG color type will be auto chosen.*/ +unsigned encode(std::vector& out, + const unsigned char* in, unsigned w, unsigned h, + LodePNGColorType colortype = LCT_RGBA, unsigned bitdepth = 8); +unsigned encode(std::vector& out, + const std::vector& in, unsigned w, unsigned h, + LodePNGColorType colortype = LCT_RGBA, unsigned bitdepth = 8); +#ifdef LODEPNG_COMPILE_DISK +/* +Converts 32-bit RGBA raw pixel data into a PNG file on disk. +Same as the other encode functions, but instead takes a filename as output. + +NOTE: This overwrites existing files without warning! + +NOTE: Wide-character filenames are not supported, you can use an external method +to handle such files and decode in-memory. +*/ +unsigned encode(const std::string& filename, + const unsigned char* in, unsigned w, unsigned h, + LodePNGColorType colortype = LCT_RGBA, unsigned bitdepth = 8); +unsigned encode(const std::string& filename, + const std::vector& in, unsigned w, unsigned h, + LodePNGColorType colortype = LCT_RGBA, unsigned bitdepth = 8); +#endif /* LODEPNG_COMPILE_DISK */ +#endif /* LODEPNG_COMPILE_ENCODER */ +} /* namespace lodepng */ +#endif /*LODEPNG_COMPILE_CPP*/ +#endif /*LODEPNG_COMPILE_PNG*/ + +#ifdef LODEPNG_COMPILE_ERROR_TEXT +/*Returns an English description of the numerical error code.*/ +const char* lodepng_error_text(unsigned code); +#endif /*LODEPNG_COMPILE_ERROR_TEXT*/ + +#ifdef LODEPNG_COMPILE_DECODER +/*Settings for zlib decompression*/ +typedef struct LodePNGDecompressSettings LodePNGDecompressSettings; +struct LodePNGDecompressSettings { + /* Check LodePNGDecoderSettings for more ignorable errors such as ignore_crc */ + unsigned ignore_adler32; /*if 1, continue and don't give an error message if the Adler32 checksum is corrupted*/ + unsigned ignore_nlen; /*ignore complement of len checksum in uncompressed blocks*/ + + /*Maximum decompressed size, beyond this the decoder may (and is encouraged to) stop decoding, + return an error, output a data size > max_output_size and all the data up to that point. This is + not hard limit nor a guarantee, but can prevent excessive memory usage. This setting is + ignored by the PNG decoder, but is used by the deflate/zlib decoder and can be used by custom ones. + Set to 0 to impose no limit (the default).*/ + size_t max_output_size; + + /*use custom zlib decoder instead of built in one (default: null). + Should return 0 if success, any non-0 if error (numeric value not exposed).*/ + unsigned (*custom_zlib)(unsigned char**, size_t*, + const unsigned char*, size_t, + const LodePNGDecompressSettings*); + /*use custom deflate decoder instead of built in one (default: null) + if custom_zlib is not null, custom_inflate is ignored (the zlib format uses deflate). + Should return 0 if success, any non-0 if error (numeric value not exposed).*/ + unsigned (*custom_inflate)(unsigned char**, size_t*, + const unsigned char*, size_t, + const LodePNGDecompressSettings*); + + const void* custom_context; /*optional custom settings for custom functions*/ +}; + +extern const LodePNGDecompressSettings lodepng_default_decompress_settings; +void lodepng_decompress_settings_init(LodePNGDecompressSettings* settings); +#endif /*LODEPNG_COMPILE_DECODER*/ + +#ifdef LODEPNG_COMPILE_ENCODER +/* +Settings for zlib compression. Tweaking these settings tweaks the balance +between speed and compression ratio. +*/ +typedef struct LodePNGCompressSettings LodePNGCompressSettings; +struct LodePNGCompressSettings /*deflate = compress*/ { + /*LZ77 related settings*/ + unsigned btype; /*the block type for LZ (0, 1, 2 or 3, see zlib standard). Should be 2 for proper compression.*/ + unsigned use_lz77; /*whether or not to use LZ77. Should be 1 for proper compression.*/ + unsigned windowsize; /*must be a power of two <= 32768. higher compresses more but is slower. Default value: 2048.*/ + unsigned minmatch; /*minimum lz77 length. 3 is normally best, 6 can be better for some PNGs. Default: 0*/ + unsigned nicematch; /*stop searching if >= this length found. Set to 258 for best compression. Default: 128*/ + unsigned lazymatching; /*use lazy matching: better compression but a bit slower. Default: true*/ + + /*use custom zlib encoder instead of built in one (default: null)*/ + unsigned (*custom_zlib)(unsigned char**, size_t*, + const unsigned char*, size_t, + const LodePNGCompressSettings*); + /*use custom deflate encoder instead of built in one (default: null) + if custom_zlib is used, custom_deflate is ignored since only the built in + zlib function will call custom_deflate*/ + unsigned (*custom_deflate)(unsigned char**, size_t*, + const unsigned char*, size_t, + const LodePNGCompressSettings*); + + const void* custom_context; /*optional custom settings for custom functions*/ +}; + +extern const LodePNGCompressSettings lodepng_default_compress_settings; +void lodepng_compress_settings_init(LodePNGCompressSettings* settings); +#endif /*LODEPNG_COMPILE_ENCODER*/ + +#ifdef LODEPNG_COMPILE_PNG +/* +Color mode of an image. Contains all information required to decode the pixel +bits to RGBA colors. This information is the same as used in the PNG file +format, and is used both for PNG and raw image data in LodePNG. +*/ +typedef struct LodePNGColorMode { + /*header (IHDR)*/ + LodePNGColorType colortype; /*color type, see PNG standard or documentation further in this header file*/ + unsigned bitdepth; /*bits per sample, see PNG standard or documentation further in this header file*/ + + /* + palette (PLTE and tRNS) + + Dynamically allocated with the colors of the palette, including alpha. + This field may not be allocated directly, use lodepng_color_mode_init first, + then lodepng_palette_add per color to correctly initialize it (to ensure size + of exactly 1024 bytes). + + The alpha channels must be set as well, set them to 255 for opaque images. + + When decoding, with the default settings you can ignore this palette, since + LodePNG already fills the palette colors in the pixels of the raw RGBA output, + but when decoding to the original PNG color mode it is needed to reconstruct + the colors. + + The palette is only supported for color type 3. + */ + unsigned char* palette; /*palette in RGBARGBA... order. Must be either 0, or when allocated must have 1024 bytes*/ + size_t palettesize; /*palette size in number of colors (amount of used bytes is 4 * palettesize)*/ + + /* + transparent color key (tRNS) + + This color uses the same bit depth as the bitdepth value in this struct, which can be 1-bit to 16-bit. + For grayscale PNGs, r, g and b will all 3 be set to the same. + + When decoding, by default you can ignore this information, since LodePNG sets + pixels with this key to transparent already in the raw RGBA output. + + The color key is only supported for color types 0 and 2. + */ + unsigned key_defined; /*is a transparent color key given? 0 = false, 1 = true*/ + unsigned key_r; /*red/grayscale component of color key*/ + unsigned key_g; /*green component of color key*/ + unsigned key_b; /*blue component of color key*/ +} LodePNGColorMode; + +/*init, cleanup and copy functions to use with this struct*/ +void lodepng_color_mode_init(LodePNGColorMode* info); +void lodepng_color_mode_cleanup(LodePNGColorMode* info); +/*return value is error code (0 means no error)*/ +unsigned lodepng_color_mode_copy(LodePNGColorMode* dest, const LodePNGColorMode* source); +/* Makes a temporary LodePNGColorMode that does not need cleanup (no palette) */ +LodePNGColorMode lodepng_color_mode_make(LodePNGColorType colortype, unsigned bitdepth); + +void lodepng_palette_clear(LodePNGColorMode* info); +/*add 1 color to the palette*/ +unsigned lodepng_palette_add(LodePNGColorMode* info, + unsigned char r, unsigned char g, unsigned char b, unsigned char a); + +/*get the total amount of bits per pixel, based on colortype and bitdepth in the struct*/ +unsigned lodepng_get_bpp(const LodePNGColorMode* info); +/*get the amount of color channels used, based on colortype in the struct. +If a palette is used, it counts as 1 channel.*/ +unsigned lodepng_get_channels(const LodePNGColorMode* info); +/*is it a grayscale type? (only colortype 0 or 4)*/ +unsigned lodepng_is_greyscale_type(const LodePNGColorMode* info); +/*has it got an alpha channel? (only colortype 2 or 6)*/ +unsigned lodepng_is_alpha_type(const LodePNGColorMode* info); +/*has it got a palette? (only colortype 3)*/ +unsigned lodepng_is_palette_type(const LodePNGColorMode* info); +/*only returns true if there is a palette and there is a value in the palette with alpha < 255. +Loops through the palette to check this.*/ +unsigned lodepng_has_palette_alpha(const LodePNGColorMode* info); +/* +Check if the given color info indicates the possibility of having non-opaque pixels in the PNG image. +Returns true if the image can have translucent or invisible pixels (it still be opaque if it doesn't use such pixels). +Returns false if the image can only have opaque pixels. +In detail, it returns true only if it's a color type with alpha, or has a palette with non-opaque values, +or if "key_defined" is true. +*/ +unsigned lodepng_can_have_alpha(const LodePNGColorMode* info); +/*Returns the byte size of a raw image buffer with given width, height and color mode*/ +size_t lodepng_get_raw_size(unsigned w, unsigned h, const LodePNGColorMode* color); + +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS +/*The information of a Time chunk in PNG.*/ +typedef struct LodePNGTime { + unsigned year; /*2 bytes used (0-65535)*/ + unsigned month; /*1-12*/ + unsigned day; /*1-31*/ + unsigned hour; /*0-23*/ + unsigned minute; /*0-59*/ + unsigned second; /*0-60 (to allow for leap seconds)*/ +} LodePNGTime; +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + +/*Information about the PNG image, except pixels, width and height.*/ +typedef struct LodePNGInfo { + /*header (IHDR), palette (PLTE) and transparency (tRNS) chunks*/ + unsigned compression_method;/*compression method of the original file. Always 0.*/ + unsigned filter_method; /*filter method of the original file*/ + unsigned interlace_method; /*interlace method of the original file: 0=none, 1=Adam7*/ + LodePNGColorMode color; /*color type and bits, palette and transparency of the PNG file*/ + +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + /* + Suggested background color chunk (bKGD) + + This uses the same color mode and bit depth as the PNG (except no alpha channel), + with values truncated to the bit depth in the unsigned integer. + + For grayscale and palette PNGs, the value is stored in background_r. The values + in background_g and background_b are then unused. The decoder will set them + equal to background_r, the encoder ignores them in this case. + + When decoding, you may get these in a different color mode than the one you requested + for the raw pixels: the colortype and bitdepth defined by info_png.color, that is the + ones defined in the header of the PNG image, are used. + + When encoding with auto_convert, you must use the color model defined in info_png.color for + these values. The encoder normally ignores info_png.color when auto_convert is on, but will + use it to interpret these values (and convert copies of them to its chosen color model). + + When encoding, avoid setting this to an expensive color, such as a non-gray value + when the image is gray, or the compression will be worse since it will be forced to + write the PNG with a more expensive color mode (when auto_convert is on). + + The decoder does not use this background color to edit the color of pixels. This is a + completely optional metadata feature. + */ + unsigned background_defined; /*is a suggested background color given?*/ + unsigned background_r; /*red/gray/palette component of suggested background color*/ + unsigned background_g; /*green component of suggested background color*/ + unsigned background_b; /*blue component of suggested background color*/ + + /* + Non-international text chunks (tEXt and zTXt) + + The char** arrays each contain num strings. The actual messages are in + text_strings, while text_keys are keywords that give a short description what + the actual text represents, e.g. Title, Author, Description, or anything else. + + All the string fields below including strings, keys, names and language tags are null terminated. + The PNG specification uses null characters for the keys, names and tags, and forbids null + characters to appear in the main text which is why we can use null termination everywhere here. + + A keyword is minimum 1 character and maximum 79 characters long (plus the + additional null terminator). It's discouraged to use a single line length + longer than 79 characters for texts. + + Don't allocate these text buffers yourself. Use the init/cleanup functions + correctly and use lodepng_add_text and lodepng_clear_text. + + Standard text chunk keywords and strings are encoded using Latin-1. + */ + size_t text_num; /*the amount of texts in these char** buffers (there may be more texts in itext)*/ + char** text_keys; /*the keyword of a text chunk (e.g. "Comment")*/ + char** text_strings; /*the actual text*/ + + /* + International text chunks (iTXt) + Similar to the non-international text chunks, but with additional strings + "langtags" and "transkeys", and the following text encodings are used: + keys: Latin-1, langtags: ASCII, transkeys and strings: UTF-8. + keys must be 1-79 characters (plus the additional null terminator), the other + strings are any length. + */ + size_t itext_num; /*the amount of international texts in this PNG*/ + char** itext_keys; /*the English keyword of the text chunk (e.g. "Comment")*/ + char** itext_langtags; /*language tag for this text's language, ISO/IEC 646 string, e.g. ISO 639 language tag*/ + char** itext_transkeys; /*keyword translated to the international language - UTF-8 string*/ + char** itext_strings; /*the actual international text - UTF-8 string*/ + + /*time chunk (tIME)*/ + unsigned time_defined; /*set to 1 to make the encoder generate a tIME chunk*/ + LodePNGTime time; + + /*phys chunk (pHYs)*/ + unsigned phys_defined; /*if 0, there is no pHYs chunk and the values below are undefined, if 1 else there is one*/ + unsigned phys_x; /*pixels per unit in x direction*/ + unsigned phys_y; /*pixels per unit in y direction*/ + unsigned phys_unit; /*may be 0 (unknown unit) or 1 (metre)*/ + + /* + Color profile related chunks: gAMA, cHRM, sRGB, iCPP, sBIT + + LodePNG does not apply any color conversions on pixels in the encoder or decoder and does not interpret these color + profile values. It merely passes on the information. If you wish to use color profiles and convert colors, please + use these values with a color management library. + + See the PNG, ICC and sRGB specifications for more information about the meaning of these values. + */ + + /* gAMA chunk: optional, overridden by sRGB or iCCP if those are present. */ + unsigned gama_defined; /* Whether a gAMA chunk is present (0 = not present, 1 = present). */ + unsigned gama_gamma; /* Gamma exponent times 100000 */ + + /* cHRM chunk: optional, overridden by sRGB or iCCP if those are present. */ + unsigned chrm_defined; /* Whether a cHRM chunk is present (0 = not present, 1 = present). */ + unsigned chrm_white_x; /* White Point x times 100000 */ + unsigned chrm_white_y; /* White Point y times 100000 */ + unsigned chrm_red_x; /* Red x times 100000 */ + unsigned chrm_red_y; /* Red y times 100000 */ + unsigned chrm_green_x; /* Green x times 100000 */ + unsigned chrm_green_y; /* Green y times 100000 */ + unsigned chrm_blue_x; /* Blue x times 100000 */ + unsigned chrm_blue_y; /* Blue y times 100000 */ + + /* + sRGB chunk: optional. May not appear at the same time as iCCP. + If gAMA is also present gAMA must contain value 45455. + If cHRM is also present cHRM must contain respectively 31270,32900,64000,33000,30000,60000,15000,6000. + */ + unsigned srgb_defined; /* Whether an sRGB chunk is present (0 = not present, 1 = present). */ + unsigned srgb_intent; /* Rendering intent: 0=perceptual, 1=rel. colorimetric, 2=saturation, 3=abs. colorimetric */ + + /* + iCCP chunk: optional. May not appear at the same time as sRGB. + + LodePNG does not parse or use the ICC profile (except its color space header field for an edge case), a + separate library to handle the ICC data (not included in LodePNG) format is needed to use it for color + management and conversions. + + For encoding, if iCCP is present, gAMA and cHRM are recommended to be added as well with values that match the ICC + profile as closely as possible, if you wish to do this you should provide the correct values for gAMA and cHRM and + enable their '_defined' flags since LodePNG will not automatically compute them from the ICC profile. + + For encoding, the ICC profile is required by the PNG specification to be an "RGB" profile for non-gray + PNG color types and a "GRAY" profile for gray PNG color types. If you disable auto_convert, you must ensure + the ICC profile type matches your requested color type, else the encoder gives an error. If auto_convert is + enabled (the default), and the ICC profile is not a good match for the pixel data, this will result in an encoder + error if the pixel data has non-gray pixels for a GRAY profile, or a silent less-optimal compression of the pixel + data if the pixels could be encoded as grayscale but the ICC profile is RGB. + + To avoid this do not set an ICC profile in the image unless there is a good reason for it, and when doing so + make sure you compute it carefully to avoid the above problems. + */ + unsigned iccp_defined; /* Whether an iCCP chunk is present (0 = not present, 1 = present). */ + char* iccp_name; /* Null terminated string with profile name, 1-79 bytes */ + /* + The ICC profile in iccp_profile_size bytes. + Don't allocate this buffer yourself. Use the init/cleanup functions + correctly and use lodepng_set_icc and lodepng_clear_icc. + */ + unsigned char* iccp_profile; + unsigned iccp_profile_size; /* The size of iccp_profile in bytes */ + + /* + sBIT chunk: significant bits. Optional metadata, only set this if needed. + + If defined, these values give the bit depth of the original data. Since PNG only stores 1, 2, 4, 8 or 16-bit + per channel data, the significant bits value can be used to indicate the original encoded data has another + sample depth, such as 10 or 12. + + Encoders using this value, when storing the pixel data, should use the most significant bits + of the data to store the original bits, and use a good sample depth scaling method such as + "left bit replication" to fill in the least significant bits, rather than fill zeroes. + + Decoders using this value, if able to work with data that's e.g. 10-bit or 12-bit, should right + shift the data to go back to the original bit depth, but decoders are also allowed to ignore + sbit and work e.g. with the 8-bit or 16-bit data from the PNG directly, since thanks + to the encoder contract, the values encoded in PNG are in valid range for the PNG bit depth. + + For grayscale images, sbit_g and sbit_b are not used, and for images that don't use color + type RGBA or grayscale+alpha, sbit_a is not used (it's not used even for palette images with + translucent palette values, or images with color key). The values that are used must be + greater than zero and smaller than or equal to the PNG bit depth. + + The color type from the header in the PNG image defines these used and unused fields: if + decoding with a color mode conversion, such as always decoding to RGBA, this metadata still + only uses the color type of the original PNG, and may e.g. lack the alpha channel info + if the PNG was RGB. When encoding with auto_convert (as well as without), also always the + color model defined in info_png.color determines this. + + NOTE: enabling sbit can hurt compression, because the encoder can then not always use + auto_convert to choose a more optimal color mode for the data, because the PNG format has + strict requirements for the allowed sbit values in combination with color modes. + For example, setting these fields to 10-bit will force the encoder to keep using a 16-bit per channel + color mode, even if the pixel data would in fact fit in a more efficient 8-bit mode. + */ + unsigned sbit_defined; /*is significant bits given? if not, the values below are unused*/ + unsigned sbit_r; /*red or gray component of significant bits*/ + unsigned sbit_g; /*green component of significant bits*/ + unsigned sbit_b; /*blue component of significant bits*/ + unsigned sbit_a; /*alpha component of significant bits*/ + + /* End of color profile related chunks */ + + + /* + unknown chunks: chunks not known by LodePNG, passed on byte for byte. + + There are 3 buffers, one for each position in the PNG where unknown chunks can appear. + Each buffer contains all unknown chunks for that position consecutively. + The 3 positions are: + 0: between IHDR and PLTE, 1: between PLTE and IDAT, 2: between IDAT and IEND. + + For encoding, do not store critical chunks or known chunks that are enabled with a "_defined" flag + above in here, since the encoder will blindly follow this and could then encode an invalid PNG file + (such as one with two IHDR chunks or the disallowed combination of sRGB with iCCP). But do use + this if you wish to store an ancillary chunk that is not supported by LodePNG (such as sPLT or hIST), + or any non-standard PNG chunk. + + Do not allocate or traverse this data yourself. Use the chunk traversing functions declared + later, such as lodepng_chunk_next and lodepng_chunk_append, to read/write this struct. + */ + unsigned char* unknown_chunks_data[3]; + size_t unknown_chunks_size[3]; /*size in bytes of the unknown chunks, given for protection*/ +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ +} LodePNGInfo; + +/*init, cleanup and copy functions to use with this struct*/ +void lodepng_info_init(LodePNGInfo* info); +void lodepng_info_cleanup(LodePNGInfo* info); +/*return value is error code (0 means no error)*/ +unsigned lodepng_info_copy(LodePNGInfo* dest, const LodePNGInfo* source); + +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS +unsigned lodepng_add_text(LodePNGInfo* info, const char* key, const char* str); /*push back both texts at once*/ +void lodepng_clear_text(LodePNGInfo* info); /*use this to clear the texts again after you filled them in*/ + +unsigned lodepng_add_itext(LodePNGInfo* info, const char* key, const char* langtag, + const char* transkey, const char* str); /*push back the 4 texts of 1 chunk at once*/ +void lodepng_clear_itext(LodePNGInfo* info); /*use this to clear the itexts again after you filled them in*/ + +/*replaces if exists*/ +unsigned lodepng_set_icc(LodePNGInfo* info, const char* name, const unsigned char* profile, unsigned profile_size); +void lodepng_clear_icc(LodePNGInfo* info); /*use this to clear the texts again after you filled them in*/ +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + +/* +Converts raw buffer from one color type to another color type, based on +LodePNGColorMode structs to describe the input and output color type. +See the reference manual at the end of this header file to see which color conversions are supported. +return value = LodePNG error code (0 if all went ok, an error if the conversion isn't supported) +The out buffer must have size (w * h * bpp + 7) / 8, where bpp is the bits per pixel +of the output color type (lodepng_get_bpp). +For < 8 bpp images, there should not be padding bits at the end of scanlines. +For 16-bit per channel colors, uses big endian format like PNG does. +Return value is LodePNG error code +*/ +unsigned lodepng_convert(unsigned char* out, const unsigned char* in, + const LodePNGColorMode* mode_out, const LodePNGColorMode* mode_in, + unsigned w, unsigned h); + +#ifdef LODEPNG_COMPILE_DECODER +/* +Settings for the decoder. This contains settings for the PNG and the Zlib +decoder, but not the Info settings from the Info structs. +*/ +typedef struct LodePNGDecoderSettings { + LodePNGDecompressSettings zlibsettings; /*in here is the setting to ignore Adler32 checksums*/ + + /* Check LodePNGDecompressSettings for more ignorable errors such as ignore_adler32 */ + unsigned ignore_crc; /*ignore CRC checksums*/ + unsigned ignore_critical; /*ignore unknown critical chunks*/ + unsigned ignore_end; /*ignore issues at end of file if possible (missing IEND chunk, too large chunk, ...)*/ + /* TODO: make a system involving warnings with levels and a strict mode instead. Other potentially recoverable + errors: srgb rendering intent value, size of content of ancillary chunks, more than 79 characters for some + strings, placement/combination rules for ancillary chunks, crc of unknown chunks, allowed characters + in string keys, etc... */ + + unsigned color_convert; /*whether to convert the PNG to the color type you want. Default: yes*/ + +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + unsigned read_text_chunks; /*if false but remember_unknown_chunks is true, they're stored in the unknown chunks*/ + + /*store all bytes from unknown chunks in the LodePNGInfo (off by default, useful for a png editor)*/ + unsigned remember_unknown_chunks; + + /* maximum size for decompressed text chunks. If a text chunk's text is larger than this, an error is returned, + unless reading text chunks is disabled or this limit is set higher or disabled. Set to 0 to allow any size. + By default it is a value that prevents unreasonably large strings from hogging memory. */ + size_t max_text_size; + + /* maximum size for compressed ICC chunks. If the ICC profile is larger than this, an error will be returned. Set to + 0 to allow any size. By default this is a value that prevents ICC profiles that would be much larger than any + legitimate profile could be to hog memory. */ + size_t max_icc_size; +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ +} LodePNGDecoderSettings; + +void lodepng_decoder_settings_init(LodePNGDecoderSettings* settings); +#endif /*LODEPNG_COMPILE_DECODER*/ + +#ifdef LODEPNG_COMPILE_ENCODER +/*automatically use color type with less bits per pixel if losslessly possible. Default: AUTO*/ +typedef enum LodePNGFilterStrategy { + /*every filter at zero*/ + LFS_ZERO = 0, + /*every filter at 1, 2, 3 or 4 (paeth), unlike LFS_ZERO not a good choice, but for testing*/ + LFS_ONE = 1, + LFS_TWO = 2, + LFS_THREE = 3, + LFS_FOUR = 4, + /*Use filter that gives minimum sum, as described in the official PNG filter heuristic.*/ + LFS_MINSUM, + /*Use the filter type that gives smallest Shannon entropy for this scanline. Depending + on the image, this is better or worse than minsum.*/ + LFS_ENTROPY, + /* + Brute-force-search PNG filters by compressing each filter for each scanline. + Experimental, very slow, and only rarely gives better compression than MINSUM. + */ + LFS_BRUTE_FORCE, + /*use predefined_filters buffer: you specify the filter type for each scanline*/ + LFS_PREDEFINED +} LodePNGFilterStrategy; + +/*Gives characteristics about the integer RGBA colors of the image (count, alpha channel usage, bit depth, ...), +which helps decide which color model to use for encoding. +Used internally by default if "auto_convert" is enabled. Public because it's useful for custom algorithms.*/ +typedef struct LodePNGColorStats { + unsigned colored; /*not grayscale*/ + unsigned key; /*image is not opaque and color key is possible instead of full alpha*/ + unsigned short key_r; /*key values, always as 16-bit, in 8-bit case the byte is duplicated, e.g. 65535 means 255*/ + unsigned short key_g; + unsigned short key_b; + unsigned alpha; /*image is not opaque and alpha channel or alpha palette required*/ + unsigned numcolors; /*amount of colors, up to 257. Not valid if bits == 16 or allow_palette is disabled.*/ + unsigned char palette[1024]; /*Remembers up to the first 256 RGBA colors, in no particular order, only valid when numcolors is valid*/ + unsigned bits; /*bits per channel (not for palette). 1,2 or 4 for grayscale only. 16 if 16-bit per channel required.*/ + size_t numpixels; + + /*user settings for computing/using the stats*/ + unsigned allow_palette; /*default 1. if 0, disallow choosing palette colortype in auto_choose_color, and don't count numcolors*/ + unsigned allow_greyscale; /*default 1. if 0, choose RGB or RGBA even if the image only has gray colors*/ +} LodePNGColorStats; + +void lodepng_color_stats_init(LodePNGColorStats* stats); + +/*Get a LodePNGColorStats of the image. The stats must already have been inited. +Returns error code (e.g. alloc fail) or 0 if ok.*/ +unsigned lodepng_compute_color_stats(LodePNGColorStats* stats, + const unsigned char* image, unsigned w, unsigned h, + const LodePNGColorMode* mode_in); + +/*Settings for the encoder.*/ +typedef struct LodePNGEncoderSettings { + LodePNGCompressSettings zlibsettings; /*settings for the zlib encoder, such as window size, ...*/ + + unsigned auto_convert; /*automatically choose output PNG color type. Default: true*/ + + /*If true, follows the official PNG heuristic: if the PNG uses a palette or lower than + 8 bit depth, set all filters to zero. Otherwise use the filter_strategy. Note that to + completely follow the official PNG heuristic, filter_palette_zero must be true and + filter_strategy must be LFS_MINSUM*/ + unsigned filter_palette_zero; + /*Which filter strategy to use when not using zeroes due to filter_palette_zero. + Set filter_palette_zero to 0 to ensure always using your chosen strategy. Default: LFS_MINSUM*/ + LodePNGFilterStrategy filter_strategy; + /*used if filter_strategy is LFS_PREDEFINED. In that case, this must point to a buffer with + the same length as the amount of scanlines in the image, and each value must <= 5. You + have to cleanup this buffer, LodePNG will never free it. Don't forget that filter_palette_zero + must be set to 0 to ensure this is also used on palette or low bitdepth images.*/ + const unsigned char* predefined_filters; + + /*force creating a PLTE chunk if colortype is 2 or 6 (= a suggested palette). + If colortype is 3, PLTE is always created. If color type is explicitely set + to a grayscale type (1 or 4), this is not done and is ignored. If enabling this, + a palette must be present in the info_png. + NOTE: enabling this may worsen compression if auto_convert is used to choose + optimal color mode, because it cannot use grayscale color modes in this case*/ + unsigned force_palette; +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + /*add LodePNG identifier and version as a text chunk, for debugging*/ + unsigned add_id; + /*encode text chunks as zTXt chunks instead of tEXt chunks, and use compression in iTXt chunks*/ + unsigned text_compression; +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ +} LodePNGEncoderSettings; + +void lodepng_encoder_settings_init(LodePNGEncoderSettings* settings); +#endif /*LODEPNG_COMPILE_ENCODER*/ + + +#if defined(LODEPNG_COMPILE_DECODER) || defined(LODEPNG_COMPILE_ENCODER) +/*The settings, state and information for extended encoding and decoding.*/ +typedef struct LodePNGState { +#ifdef LODEPNG_COMPILE_DECODER + LodePNGDecoderSettings decoder; /*the decoding settings*/ +#endif /*LODEPNG_COMPILE_DECODER*/ +#ifdef LODEPNG_COMPILE_ENCODER + LodePNGEncoderSettings encoder; /*the encoding settings*/ +#endif /*LODEPNG_COMPILE_ENCODER*/ + LodePNGColorMode info_raw; /*specifies the format in which you would like to get the raw pixel buffer*/ + LodePNGInfo info_png; /*info of the PNG image obtained after decoding*/ + unsigned error; +} LodePNGState; + +/*init, cleanup and copy functions to use with this struct*/ +void lodepng_state_init(LodePNGState* state); +void lodepng_state_cleanup(LodePNGState* state); +void lodepng_state_copy(LodePNGState* dest, const LodePNGState* source); +#endif /* defined(LODEPNG_COMPILE_DECODER) || defined(LODEPNG_COMPILE_ENCODER) */ + +#ifdef LODEPNG_COMPILE_DECODER +/* +Same as lodepng_decode_memory, but uses a LodePNGState to allow custom settings and +getting much more information about the PNG image and color mode. +*/ +unsigned lodepng_decode(unsigned char** out, unsigned* w, unsigned* h, + LodePNGState* state, + const unsigned char* in, size_t insize); + +/* +Read the PNG header, but not the actual data. This returns only the information +that is in the IHDR chunk of the PNG, such as width, height and color type. The +information is placed in the info_png field of the LodePNGState. +*/ +unsigned lodepng_inspect(unsigned* w, unsigned* h, + LodePNGState* state, + const unsigned char* in, size_t insize); +#endif /*LODEPNG_COMPILE_DECODER*/ + +/* +Reads one metadata chunk (other than IHDR, which is handled by lodepng_inspect) +of the PNG file and outputs what it read in the state. Returns error code on failure. +Use lodepng_inspect first with a new state, then e.g. lodepng_chunk_find_const +to find the desired chunk type, and if non null use lodepng_inspect_chunk (with +chunk_pointer - start_of_file as pos). +Supports most metadata chunks from the PNG standard (gAMA, bKGD, tEXt, ...). +Ignores unsupported, unknown, non-metadata or IHDR chunks (without error). +Requirements: &in[pos] must point to start of a chunk, must use regular +lodepng_inspect first since format of most other chunks depends on IHDR, and if +there is a PLTE chunk, that one must be inspected before tRNS or bKGD. +*/ +unsigned lodepng_inspect_chunk(LodePNGState* state, size_t pos, + const unsigned char* in, size_t insize); + +#ifdef LODEPNG_COMPILE_ENCODER +/*This function allocates the out buffer with standard malloc and stores the size in *outsize.*/ +unsigned lodepng_encode(unsigned char** out, size_t* outsize, + const unsigned char* image, unsigned w, unsigned h, + LodePNGState* state); +#endif /*LODEPNG_COMPILE_ENCODER*/ + +/* +The lodepng_chunk functions are normally not needed, except to traverse the +unknown chunks stored in the LodePNGInfo struct, or add new ones to it. +It also allows traversing the chunks of an encoded PNG file yourself. + +The chunk pointer always points to the beginning of the chunk itself, that is +the first byte of the 4 length bytes. + +In the PNG file format, chunks have the following format: +-4 bytes length: length of the data of the chunk in bytes (chunk itself is 12 bytes longer) +-4 bytes chunk type (ASCII a-z,A-Z only, see below) +-length bytes of data (may be 0 bytes if length was 0) +-4 bytes of CRC, computed on chunk name + data + +The first chunk starts at the 8th byte of the PNG file, the entire rest of the file +exists out of concatenated chunks with the above format. + +PNG standard chunk ASCII naming conventions: +-First byte: uppercase = critical, lowercase = ancillary +-Second byte: uppercase = public, lowercase = private +-Third byte: must be uppercase +-Fourth byte: uppercase = unsafe to copy, lowercase = safe to copy +*/ + +/* +Gets the length of the data of the chunk. Total chunk length has 12 bytes more. +There must be at least 4 bytes to read from. If the result value is too large, +it may be corrupt data. +*/ +unsigned lodepng_chunk_length(const unsigned char* chunk); + +/*puts the 4-byte type in null terminated string*/ +void lodepng_chunk_type(char type[5], const unsigned char* chunk); + +/*check if the type is the given type*/ +unsigned char lodepng_chunk_type_equals(const unsigned char* chunk, const char* type); + +/*0: it's one of the critical chunk types, 1: it's an ancillary chunk (see PNG standard)*/ +unsigned char lodepng_chunk_ancillary(const unsigned char* chunk); + +/*0: public, 1: private (see PNG standard)*/ +unsigned char lodepng_chunk_private(const unsigned char* chunk); + +/*0: the chunk is unsafe to copy, 1: the chunk is safe to copy (see PNG standard)*/ +unsigned char lodepng_chunk_safetocopy(const unsigned char* chunk); + +/*get pointer to the data of the chunk, where the input points to the header of the chunk*/ +unsigned char* lodepng_chunk_data(unsigned char* chunk); +const unsigned char* lodepng_chunk_data_const(const unsigned char* chunk); + +/*returns 0 if the crc is correct, 1 if it's incorrect (0 for OK as usual!)*/ +unsigned lodepng_chunk_check_crc(const unsigned char* chunk); + +/*generates the correct CRC from the data and puts it in the last 4 bytes of the chunk*/ +void lodepng_chunk_generate_crc(unsigned char* chunk); + +/* +Iterate to next chunks, allows iterating through all chunks of the PNG file. +Input must be at the beginning of a chunk (result of a previous lodepng_chunk_next call, +or the 8th byte of a PNG file which always has the first chunk), or alternatively may +point to the first byte of the PNG file (which is not a chunk but the magic header, the +function will then skip over it and return the first real chunk). +Will output pointer to the start of the next chunk, or at or beyond end of the file if there +is no more chunk after this or possibly if the chunk is corrupt. +Start this process at the 8th byte of the PNG file. +In a non-corrupt PNG file, the last chunk should have name "IEND". +*/ +unsigned char* lodepng_chunk_next(unsigned char* chunk, unsigned char* end); +const unsigned char* lodepng_chunk_next_const(const unsigned char* chunk, const unsigned char* end); + +/*Finds the first chunk with the given type in the range [chunk, end), or returns NULL if not found.*/ +unsigned char* lodepng_chunk_find(unsigned char* chunk, unsigned char* end, const char type[5]); +const unsigned char* lodepng_chunk_find_const(const unsigned char* chunk, const unsigned char* end, const char type[5]); + +/* +Appends chunk to the data in out. The given chunk should already have its chunk header. +The out variable and outsize are updated to reflect the new reallocated buffer. +Returns error code (0 if it went ok) +*/ +unsigned lodepng_chunk_append(unsigned char** out, size_t* outsize, const unsigned char* chunk); + +/* +Appends new chunk to out. The chunk to append is given by giving its length, type +and data separately. The type is a 4-letter string. +The out variable and outsize are updated to reflect the new reallocated buffer. +Returne error code (0 if it went ok) +*/ +unsigned lodepng_chunk_create(unsigned char** out, size_t* outsize, unsigned length, + const char* type, const unsigned char* data); + + +/*Calculate CRC32 of buffer*/ +unsigned lodepng_crc32(const unsigned char* buf, size_t len); +#endif /*LODEPNG_COMPILE_PNG*/ + + +#ifdef LODEPNG_COMPILE_ZLIB +/* +This zlib part can be used independently to zlib compress and decompress a +buffer. It cannot be used to create gzip files however, and it only supports the +part of zlib that is required for PNG, it does not support dictionaries. +*/ + +#ifdef LODEPNG_COMPILE_DECODER +/*Inflate a buffer. Inflate is the decompression step of deflate. Out buffer must be freed after use.*/ +unsigned lodepng_inflate(unsigned char** out, size_t* outsize, + const unsigned char* in, size_t insize, + const LodePNGDecompressSettings* settings); + +/* +Decompresses Zlib data. Reallocates the out buffer and appends the data. The +data must be according to the zlib specification. +Either, *out must be NULL and *outsize must be 0, or, *out must be a valid +buffer and *outsize its size in bytes. out must be freed by user after usage. +*/ +unsigned lodepng_zlib_decompress(unsigned char** out, size_t* outsize, + const unsigned char* in, size_t insize, + const LodePNGDecompressSettings* settings); +#endif /*LODEPNG_COMPILE_DECODER*/ + +#ifdef LODEPNG_COMPILE_ENCODER +/* +Compresses data with Zlib. Reallocates the out buffer and appends the data. +Zlib adds a small header and trailer around the deflate data. +The data is output in the format of the zlib specification. +Either, *out must be NULL and *outsize must be 0, or, *out must be a valid +buffer and *outsize its size in bytes. out must be freed by user after usage. +*/ +unsigned lodepng_zlib_compress(unsigned char** out, size_t* outsize, + const unsigned char* in, size_t insize, + const LodePNGCompressSettings* settings); + +/* +Find length-limited Huffman code for given frequencies. This function is in the +public interface only for tests, it's used internally by lodepng_deflate. +*/ +unsigned lodepng_huffman_code_lengths(unsigned* lengths, const unsigned* frequencies, + size_t numcodes, unsigned maxbitlen); + +/*Compress a buffer with deflate. See RFC 1951. Out buffer must be freed after use.*/ +unsigned lodepng_deflate(unsigned char** out, size_t* outsize, + const unsigned char* in, size_t insize, + const LodePNGCompressSettings* settings); + +#endif /*LODEPNG_COMPILE_ENCODER*/ +#endif /*LODEPNG_COMPILE_ZLIB*/ + +#ifdef LODEPNG_COMPILE_DISK +/* +Load a file from disk into buffer. The function allocates the out buffer, and +after usage you should free it. +out: output parameter, contains pointer to loaded buffer. +outsize: output parameter, size of the allocated out buffer +filename: the path to the file to load +return value: error code (0 means ok) + +NOTE: Wide-character filenames are not supported, you can use an external method +to handle such files and decode in-memory. +*/ +unsigned lodepng_load_file(unsigned char** out, size_t* outsize, const char* filename); + +/* +Save a file from buffer to disk. Warning, if it exists, this function overwrites +the file without warning! +buffer: the buffer to write +buffersize: size of the buffer to write +filename: the path to the file to save to +return value: error code (0 means ok) + +NOTE: Wide-character filenames are not supported, you can use an external method +to handle such files and encode in-memory +*/ +unsigned lodepng_save_file(const unsigned char* buffer, size_t buffersize, const char* filename); +#endif /*LODEPNG_COMPILE_DISK*/ + +#ifdef LODEPNG_COMPILE_CPP +/* The LodePNG C++ wrapper uses std::vectors instead of manually allocated memory buffers. */ +namespace lodepng { +#ifdef LODEPNG_COMPILE_PNG +class State : public LodePNGState { + public: + State(); + State(const State& other); + ~State(); + State& operator=(const State& other); +}; + +#ifdef LODEPNG_COMPILE_DECODER +/* Same as other lodepng::decode, but using a State for more settings and information. */ +unsigned decode(std::vector& out, unsigned& w, unsigned& h, + State& state, + const unsigned char* in, size_t insize); +unsigned decode(std::vector& out, unsigned& w, unsigned& h, + State& state, + const std::vector& in); +#endif /*LODEPNG_COMPILE_DECODER*/ + +#ifdef LODEPNG_COMPILE_ENCODER +/* Same as other lodepng::encode, but using a State for more settings and information. */ +unsigned encode(std::vector& out, + const unsigned char* in, unsigned w, unsigned h, + State& state); +unsigned encode(std::vector& out, + const std::vector& in, unsigned w, unsigned h, + State& state); +#endif /*LODEPNG_COMPILE_ENCODER*/ + +#ifdef LODEPNG_COMPILE_DISK +/* +Load a file from disk into an std::vector. +return value: error code (0 means ok) + +NOTE: Wide-character filenames are not supported, you can use an external method +to handle such files and decode in-memory +*/ +unsigned load_file(std::vector& buffer, const std::string& filename); + +/* +Save the binary data in an std::vector to a file on disk. The file is overwritten +without warning. + +NOTE: Wide-character filenames are not supported, you can use an external method +to handle such files and encode in-memory +*/ +unsigned save_file(const std::vector& buffer, const std::string& filename); +#endif /* LODEPNG_COMPILE_DISK */ +#endif /* LODEPNG_COMPILE_PNG */ + +#ifdef LODEPNG_COMPILE_ZLIB +#ifdef LODEPNG_COMPILE_DECODER +/* Zlib-decompress an unsigned char buffer */ +unsigned decompress(std::vector& out, const unsigned char* in, size_t insize, + const LodePNGDecompressSettings& settings = lodepng_default_decompress_settings); + +/* Zlib-decompress an std::vector */ +unsigned decompress(std::vector& out, const std::vector& in, + const LodePNGDecompressSettings& settings = lodepng_default_decompress_settings); +#endif /* LODEPNG_COMPILE_DECODER */ + +#ifdef LODEPNG_COMPILE_ENCODER +/* Zlib-compress an unsigned char buffer */ +unsigned compress(std::vector& out, const unsigned char* in, size_t insize, + const LodePNGCompressSettings& settings = lodepng_default_compress_settings); + +/* Zlib-compress an std::vector */ +unsigned compress(std::vector& out, const std::vector& in, + const LodePNGCompressSettings& settings = lodepng_default_compress_settings); +#endif /* LODEPNG_COMPILE_ENCODER */ +#endif /* LODEPNG_COMPILE_ZLIB */ +} /* namespace lodepng */ +#endif /*LODEPNG_COMPILE_CPP*/ + +/* +TODO: +[.] test if there are no memory leaks or security exploits - done a lot but needs to be checked often +[.] check compatibility with various compilers - done but needs to be redone for every newer version +[X] converting color to 16-bit per channel types +[X] support color profile chunk types (but never let them touch RGB values by default) +[ ] support all public PNG chunk types (almost done except sPLT and hIST) +[ ] make sure encoder generates no chunks with size > (2^31)-1 +[ ] partial decoding (stream processing) +[X] let the "isFullyOpaque" function check color keys and transparent palettes too +[X] better name for the variables "codes", "codesD", "codelengthcodes", "clcl" and "lldl" +[ ] allow treating some errors like warnings, when image is recoverable (e.g. 69, 57, 58) +[ ] make warnings like: oob palette, checksum fail, data after iend, wrong/unknown crit chunk, no null terminator in text, ... +[ ] error messages with line numbers (and version) +[ ] errors in state instead of as return code? +[ ] new errors/warnings like suspiciously big decompressed ztxt or iccp chunk +[ ] let the C++ wrapper catch exceptions coming from the standard library and return LodePNG error codes +[ ] allow user to provide custom color conversion functions, e.g. for premultiplied alpha, padding bits or not, ... +[ ] allow user to give data (void*) to custom allocator +[X] provide alternatives for C library functions not present on some platforms (memcpy, ...) +*/ + +#endif /*LODEPNG_H inclusion guard*/ + +/* +LodePNG Documentation +--------------------- + +0. table of contents +-------------------- + + 1. about + 1.1. supported features + 1.2. features not supported + 2. C and C++ version + 3. security + 4. decoding + 5. encoding + 6. color conversions + 6.1. PNG color types + 6.2. color conversions + 6.3. padding bits + 6.4. A note about 16-bits per channel and endianness + 7. error values + 8. chunks and PNG editing + 9. compiler support + 10. examples + 10.1. decoder C++ example + 10.2. decoder C example + 11. state settings reference + 12. changes + 13. contact information + + +1. about +-------- + +PNG is a file format to store raster images losslessly with good compression, +supporting different color types and alpha channel. + +LodePNG is a PNG codec according to the Portable Network Graphics (PNG) +Specification (Second Edition) - W3C Recommendation 10 November 2003. + +The specifications used are: + +*) Portable Network Graphics (PNG) Specification (Second Edition): + http://www.w3.org/TR/2003/REC-PNG-20031110 +*) RFC 1950 ZLIB Compressed Data Format version 3.3: + http://www.gzip.org/zlib/rfc-zlib.html +*) RFC 1951 DEFLATE Compressed Data Format Specification ver 1.3: + http://www.gzip.org/zlib/rfc-deflate.html + +The most recent version of LodePNG can currently be found at +http://lodev.org/lodepng/ + +LodePNG works both in C (ISO C90) and C++, with a C++ wrapper that adds +extra functionality. + +LodePNG exists out of two files: +-lodepng.h: the header file for both C and C++ +-lodepng.c(pp): give it the name lodepng.c or lodepng.cpp (or .cc) depending on your usage + +If you want to start using LodePNG right away without reading this doc, get the +examples from the LodePNG website to see how to use it in code, or check the +smaller examples in chapter 13 here. + +LodePNG is simple but only supports the basic requirements. To achieve +simplicity, the following design choices were made: There are no dependencies +on any external library. There are functions to decode and encode a PNG with +a single function call, and extended versions of these functions taking a +LodePNGState struct allowing to specify or get more information. By default +the colors of the raw image are always RGB or RGBA, no matter what color type +the PNG file uses. To read and write files, there are simple functions to +convert the files to/from buffers in memory. + +This all makes LodePNG suitable for loading textures in games, demos and small +programs, ... It's less suitable for full fledged image editors, loading PNGs +over network (it requires all the image data to be available before decoding can +begin), life-critical systems, ... + +1.1. supported features +----------------------- + +The following features are supported by the decoder: + +*) decoding of PNGs with any color type, bit depth and interlace mode, to a 24- or 32-bit color raw image, + or the same color type as the PNG +*) encoding of PNGs, from any raw image to 24- or 32-bit color, or the same color type as the raw image +*) Adam7 interlace and deinterlace for any color type +*) loading the image from harddisk or decoding it from a buffer from other sources than harddisk +*) support for alpha channels, including RGBA color model, translucent palettes and color keying +*) zlib decompression (inflate) +*) zlib compression (deflate) +*) CRC32 and ADLER32 checksums +*) colorimetric color profile conversions: currently experimentally available in lodepng_util.cpp only, + plus alternatively ability to pass on chroma/gamma/ICC profile information to other color management system. +*) handling of unknown chunks, allowing making a PNG editor that stores custom and unknown chunks. +*) the following chunks are supported by both encoder and decoder: + IHDR: header information + PLTE: color palette + IDAT: pixel data + IEND: the final chunk + tRNS: transparency for palettized images + tEXt: textual information + zTXt: compressed textual information + iTXt: international textual information + bKGD: suggested background color + pHYs: physical dimensions + tIME: modification time + cHRM: RGB chromaticities + gAMA: RGB gamma correction + iCCP: ICC color profile + sRGB: rendering intent + sBIT: significant bits + +1.2. features not supported +--------------------------- + +The following features are not (yet) supported: + +*) some features needed to make a conformant PNG-Editor might be still missing. +*) partial loading/stream processing. All data must be available and is processed in one call. +*) The hIST and sPLT public chunks are not (yet) supported but treated as unknown chunks + + +2. C and C++ version +-------------------- + +The C version uses buffers allocated with alloc that you need to free() +yourself. You need to use init and cleanup functions for each struct whenever +using a struct from the C version to avoid exploits and memory leaks. + +The C++ version has extra functions with std::vectors in the interface and the +lodepng::State class which is a LodePNGState with constructor and destructor. + +These files work without modification for both C and C++ compilers because all +the additional C++ code is in "#ifdef __cplusplus" blocks that make C-compilers +ignore it, and the C code is made to compile both with strict ISO C90 and C++. + +To use the C++ version, you need to rename the source file to lodepng.cpp +(instead of lodepng.c), and compile it with a C++ compiler. + +To use the C version, you need to rename the source file to lodepng.c (instead +of lodepng.cpp), and compile it with a C compiler. + + +3. Security +----------- + +Even if carefully designed, it's always possible that LodePNG contains possible +exploits. If you discover one, please let me know, and it will be fixed. + +When using LodePNG, care has to be taken with the C version of LodePNG, as well +as the C-style structs when working with C++. The following conventions are used +for all C-style structs: + +-if a struct has a corresponding init function, always call the init function when making a new one +-if a struct has a corresponding cleanup function, call it before the struct disappears to avoid memory leaks +-if a struct has a corresponding copy function, use the copy function instead of "=". + The destination must also be inited already. + + +4. Decoding +----------- + +Decoding converts a PNG compressed image to a raw pixel buffer. + +Most documentation on using the decoder is at its declarations in the header +above. For C, simple decoding can be done with functions such as +lodepng_decode32, and more advanced decoding can be done with the struct +LodePNGState and lodepng_decode. For C++, all decoding can be done with the +various lodepng::decode functions, and lodepng::State can be used for advanced +features. + +When using the LodePNGState, it uses the following fields for decoding: +*) LodePNGInfo info_png: it stores extra information about the PNG (the input) in here +*) LodePNGColorMode info_raw: here you can say what color mode of the raw image (the output) you want to get +*) LodePNGDecoderSettings decoder: you can specify a few extra settings for the decoder to use + +LodePNGInfo info_png +-------------------- + +After decoding, this contains extra information of the PNG image, except the actual +pixels, width and height because these are already gotten directly from the decoder +functions. + +It contains for example the original color type of the PNG image, text comments, +suggested background color, etc... More details about the LodePNGInfo struct are +at its declaration documentation. + +LodePNGColorMode info_raw +------------------------- + +When decoding, here you can specify which color type you want +the resulting raw image to be. If this is different from the colortype of the +PNG, then the decoder will automatically convert the result. This conversion +always works, except if you want it to convert a color PNG to grayscale or to +a palette with missing colors. + +By default, 32-bit color is used for the result. + +LodePNGDecoderSettings decoder +------------------------------ + +The settings can be used to ignore the errors created by invalid CRC and Adler32 +chunks, and to disable the decoding of tEXt chunks. + +There's also a setting color_convert, true by default. If false, no conversion +is done, the resulting data will be as it was in the PNG (after decompression) +and you'll have to puzzle the colors of the pixels together yourself using the +color type information in the LodePNGInfo. + + +5. Encoding +----------- + +Encoding converts a raw pixel buffer to a PNG compressed image. + +Most documentation on using the encoder is at its declarations in the header +above. For C, simple encoding can be done with functions such as +lodepng_encode32, and more advanced decoding can be done with the struct +LodePNGState and lodepng_encode. For C++, all encoding can be done with the +various lodepng::encode functions, and lodepng::State can be used for advanced +features. + +Like the decoder, the encoder can also give errors. However it gives less errors +since the encoder input is trusted, the decoder input (a PNG image that could +be forged by anyone) is not trusted. + +When using the LodePNGState, it uses the following fields for encoding: +*) LodePNGInfo info_png: here you specify how you want the PNG (the output) to be. +*) LodePNGColorMode info_raw: here you say what color type of the raw image (the input) has +*) LodePNGEncoderSettings encoder: you can specify a few settings for the encoder to use + +LodePNGInfo info_png +-------------------- + +When encoding, you use this the opposite way as when decoding: for encoding, +you fill in the values you want the PNG to have before encoding. By default it's +not needed to specify a color type for the PNG since it's automatically chosen, +but it's possible to choose it yourself given the right settings. + +The encoder will not always exactly match the LodePNGInfo struct you give, +it tries as close as possible. Some things are ignored by the encoder. The +encoder uses, for example, the following settings from it when applicable: +colortype and bitdepth, text chunks, time chunk, the color key, the palette, the +background color, the interlace method, unknown chunks, ... + +When encoding to a PNG with colortype 3, the encoder will generate a PLTE chunk. +If the palette contains any colors for which the alpha channel is not 255 (so +there are translucent colors in the palette), it'll add a tRNS chunk. + +LodePNGColorMode info_raw +------------------------- + +You specify the color type of the raw image that you give to the input here, +including a possible transparent color key and palette you happen to be using in +your raw image data. + +By default, 32-bit color is assumed, meaning your input has to be in RGBA +format with 4 bytes (unsigned chars) per pixel. + +LodePNGEncoderSettings encoder +------------------------------ + +The following settings are supported (some are in sub-structs): +*) auto_convert: when this option is enabled, the encoder will +automatically choose the smallest possible color mode (including color key) that +can encode the colors of all pixels without information loss. +*) btype: the block type for LZ77. 0 = uncompressed, 1 = fixed huffman tree, + 2 = dynamic huffman tree (best compression). Should be 2 for proper + compression. +*) use_lz77: whether or not to use LZ77 for compressed block types. Should be + true for proper compression. +*) windowsize: the window size used by the LZ77 encoder (1 - 32768). Has value + 2048 by default, but can be set to 32768 for better, but slow, compression. +*) force_palette: if colortype is 2 or 6, you can make the encoder write a PLTE + chunk if force_palette is true. This can used as suggested palette to convert + to by viewers that don't support more than 256 colors (if those still exist) +*) add_id: add text chunk "Encoder: LodePNG " to the image. +*) text_compression: default 1. If 1, it'll store texts as zTXt instead of tEXt chunks. + zTXt chunks use zlib compression on the text. This gives a smaller result on + large texts but a larger result on small texts (such as a single program name). + It's all tEXt or all zTXt though, there's no separate setting per text yet. + + +6. color conversions +-------------------- + +An important thing to note about LodePNG, is that the color type of the PNG, and +the color type of the raw image, are completely independent. By default, when +you decode a PNG, you get the result as a raw image in the color type you want, +no matter whether the PNG was encoded with a palette, grayscale or RGBA color. +And if you encode an image, by default LodePNG will automatically choose the PNG +color type that gives good compression based on the values of colors and amount +of colors in the image. It can be configured to let you control it instead as +well, though. + +To be able to do this, LodePNG does conversions from one color mode to another. +It can convert from almost any color type to any other color type, except the +following conversions: RGB to grayscale is not supported, and converting to a +palette when the palette doesn't have a required color is not supported. This is +not supported on purpose: this is information loss which requires a color +reduction algorithm that is beyond the scope of a PNG encoder (yes, RGB to gray +is easy, but there are multiple ways if you want to give some channels more +weight). + +By default, when decoding, you get the raw image in 32-bit RGBA or 24-bit RGB +color, no matter what color type the PNG has. And by default when encoding, +LodePNG automatically picks the best color model for the output PNG, and expects +the input image to be 32-bit RGBA or 24-bit RGB. So, unless you want to control +the color format of the images yourself, you can skip this chapter. + +6.1. PNG color types +-------------------- + +A PNG image can have many color types, ranging from 1-bit color to 64-bit color, +as well as palettized color modes. After the zlib decompression and unfiltering +in the PNG image is done, the raw pixel data will have that color type and thus +a certain amount of bits per pixel. If you want the output raw image after +decoding to have another color type, a conversion is done by LodePNG. + +The PNG specification gives the following color types: + +0: grayscale, bit depths 1, 2, 4, 8, 16 +2: RGB, bit depths 8 and 16 +3: palette, bit depths 1, 2, 4 and 8 +4: grayscale with alpha, bit depths 8 and 16 +6: RGBA, bit depths 8 and 16 + +Bit depth is the amount of bits per pixel per color channel. So the total amount +of bits per pixel is: amount of channels * bitdepth. + +6.2. color conversions +---------------------- + +As explained in the sections about the encoder and decoder, you can specify +color types and bit depths in info_png and info_raw to change the default +behaviour. + +If, when decoding, you want the raw image to be something else than the default, +you need to set the color type and bit depth you want in the LodePNGColorMode, +or the parameters colortype and bitdepth of the simple decoding function. + +If, when encoding, you use another color type than the default in the raw input +image, you need to specify its color type and bit depth in the LodePNGColorMode +of the raw image, or use the parameters colortype and bitdepth of the simple +encoding function. + +If, when encoding, you don't want LodePNG to choose the output PNG color type +but control it yourself, you need to set auto_convert in the encoder settings +to false, and specify the color type you want in the LodePNGInfo of the +encoder (including palette: it can generate a palette if auto_convert is true, +otherwise not). + +If the input and output color type differ (whether user chosen or auto chosen), +LodePNG will do a color conversion, which follows the rules below, and may +sometimes result in an error. + +To avoid some confusion: +-the decoder converts from PNG to raw image +-the encoder converts from raw image to PNG +-the colortype and bitdepth in LodePNGColorMode info_raw, are those of the raw image +-the colortype and bitdepth in the color field of LodePNGInfo info_png, are those of the PNG +-when encoding, the color type in LodePNGInfo is ignored if auto_convert + is enabled, it is automatically generated instead +-when decoding, the color type in LodePNGInfo is set by the decoder to that of the original + PNG image, but it can be ignored since the raw image has the color type you requested instead +-if the color type of the LodePNGColorMode and PNG image aren't the same, a conversion + between the color types is done if the color types are supported. If it is not + supported, an error is returned. If the types are the same, no conversion is done. +-even though some conversions aren't supported, LodePNG supports loading PNGs from any + colortype and saving PNGs to any colortype, sometimes it just requires preparing + the raw image correctly before encoding. +-both encoder and decoder use the same color converter. + +The function lodepng_convert does the color conversion. It is available in the +interface but normally isn't needed since the encoder and decoder already call +it. + +Non supported color conversions: +-color to grayscale when non-gray pixels are present: no error is thrown, but +the result will look ugly because only the red channel is taken (it assumes all +three channels are the same in this case so ignores green and blue). The reason +no error is given is to allow converting from three-channel grayscale images to +one-channel even if there are numerical imprecisions. +-anything to palette when the palette does not have an exact match for a from-color +in it: in this case an error is thrown + +Supported color conversions: +-anything to 8-bit RGB, 8-bit RGBA, 16-bit RGB, 16-bit RGBA +-any gray or gray+alpha, to gray or gray+alpha +-anything to a palette, as long as the palette has the requested colors in it +-removing alpha channel +-higher to smaller bitdepth, and vice versa + +If you want no color conversion to be done (e.g. for speed or control): +-In the encoder, you can make it save a PNG with any color type by giving the +raw color mode and LodePNGInfo the same color mode, and setting auto_convert to +false. +-In the decoder, you can make it store the pixel data in the same color type +as the PNG has, by setting the color_convert setting to false. Settings in +info_raw are then ignored. + +6.3. padding bits +----------------- + +In the PNG file format, if a less than 8-bit per pixel color type is used and the scanlines +have a bit amount that isn't a multiple of 8, then padding bits are used so that each +scanline starts at a fresh byte. But that is NOT true for the LodePNG raw input and output. +The raw input image you give to the encoder, and the raw output image you get from the decoder +will NOT have these padding bits, e.g. in the case of a 1-bit image with a width +of 7 pixels, the first pixel of the second scanline will the 8th bit of the first byte, +not the first bit of a new byte. + +6.4. A note about 16-bits per channel and endianness +---------------------------------------------------- + +LodePNG uses unsigned char arrays for 16-bit per channel colors too, just like +for any other color format. The 16-bit values are stored in big endian (most +significant byte first) in these arrays. This is the opposite order of the +little endian used by x86 CPU's. + +LodePNG always uses big endian because the PNG file format does so internally. +Conversions to other formats than PNG uses internally are not supported by +LodePNG on purpose, there are myriads of formats, including endianness of 16-bit +colors, the order in which you store R, G, B and A, and so on. Supporting and +converting to/from all that is outside the scope of LodePNG. + +This may mean that, depending on your use case, you may want to convert the big +endian output of LodePNG to little endian with a for loop. This is certainly not +always needed, many applications and libraries support big endian 16-bit colors +anyway, but it means you cannot simply cast the unsigned char* buffer to an +unsigned short* buffer on x86 CPUs. + + +7. error values +--------------- + +All functions in LodePNG that return an error code, return 0 if everything went +OK, or a non-zero code if there was an error. + +The meaning of the LodePNG error values can be retrieved with the function +lodepng_error_text: given the numerical error code, it returns a description +of the error in English as a string. + +Check the implementation of lodepng_error_text to see the meaning of each code. + +It is not recommended to use the numerical values to programmatically make +different decisions based on error types as the numbers are not guaranteed to +stay backwards compatible. They are for human consumption only. Programmatically +only 0 or non-0 matter. + + +8. chunks and PNG editing +------------------------- + +If you want to add extra chunks to a PNG you encode, or use LodePNG for a PNG +editor that should follow the rules about handling of unknown chunks, or if your +program is able to read other types of chunks than the ones handled by LodePNG, +then that's possible with the chunk functions of LodePNG. + +A PNG chunk has the following layout: + +4 bytes length +4 bytes type name +length bytes data +4 bytes CRC + +8.1. iterating through chunks +----------------------------- + +If you have a buffer containing the PNG image data, then the first chunk (the +IHDR chunk) starts at byte number 8 of that buffer. The first 8 bytes are the +signature of the PNG and are not part of a chunk. But if you start at byte 8 +then you have a chunk, and can check the following things of it. + +NOTE: none of these functions check for memory buffer boundaries. To avoid +exploits, always make sure the buffer contains all the data of the chunks. +When using lodepng_chunk_next, make sure the returned value is within the +allocated memory. + +unsigned lodepng_chunk_length(const unsigned char* chunk): + +Get the length of the chunk's data. The total chunk length is this length + 12. + +void lodepng_chunk_type(char type[5], const unsigned char* chunk): +unsigned char lodepng_chunk_type_equals(const unsigned char* chunk, const char* type): + +Get the type of the chunk or compare if it's a certain type + +unsigned char lodepng_chunk_critical(const unsigned char* chunk): +unsigned char lodepng_chunk_private(const unsigned char* chunk): +unsigned char lodepng_chunk_safetocopy(const unsigned char* chunk): + +Check if the chunk is critical in the PNG standard (only IHDR, PLTE, IDAT and IEND are). +Check if the chunk is private (public chunks are part of the standard, private ones not). +Check if the chunk is safe to copy. If it's not, then, when modifying data in a critical +chunk, unsafe to copy chunks of the old image may NOT be saved in the new one if your +program doesn't handle that type of unknown chunk. + +unsigned char* lodepng_chunk_data(unsigned char* chunk): +const unsigned char* lodepng_chunk_data_const(const unsigned char* chunk): + +Get a pointer to the start of the data of the chunk. + +unsigned lodepng_chunk_check_crc(const unsigned char* chunk): +void lodepng_chunk_generate_crc(unsigned char* chunk): + +Check if the crc is correct or generate a correct one. + +unsigned char* lodepng_chunk_next(unsigned char* chunk): +const unsigned char* lodepng_chunk_next_const(const unsigned char* chunk): + +Iterate to the next chunk. This works if you have a buffer with consecutive chunks. Note that these +functions do no boundary checking of the allocated data whatsoever, so make sure there is enough +data available in the buffer to be able to go to the next chunk. + +unsigned lodepng_chunk_append(unsigned char** out, size_t* outsize, const unsigned char* chunk): +unsigned lodepng_chunk_create(unsigned char** out, size_t* outsize, unsigned length, + const char* type, const unsigned char* data): + +These functions are used to create new chunks that are appended to the data in *out that has +length *outsize. The append function appends an existing chunk to the new data. The create +function creates a new chunk with the given parameters and appends it. Type is the 4-letter +name of the chunk. + +8.2. chunks in info_png +----------------------- + +The LodePNGInfo struct contains fields with the unknown chunk in it. It has 3 +buffers (each with size) to contain 3 types of unknown chunks: +the ones that come before the PLTE chunk, the ones that come between the PLTE +and the IDAT chunks, and the ones that come after the IDAT chunks. +It's necessary to make the distinction between these 3 cases because the PNG +standard forces to keep the ordering of unknown chunks compared to the critical +chunks, but does not force any other ordering rules. + +info_png.unknown_chunks_data[0] is the chunks before PLTE +info_png.unknown_chunks_data[1] is the chunks after PLTE, before IDAT +info_png.unknown_chunks_data[2] is the chunks after IDAT + +The chunks in these 3 buffers can be iterated through and read by using the same +way described in the previous subchapter. + +When using the decoder to decode a PNG, you can make it store all unknown chunks +if you set the option settings.remember_unknown_chunks to 1. By default, this +option is off (0). + +The encoder will always encode unknown chunks that are stored in the info_png. +If you need it to add a particular chunk that isn't known by LodePNG, you can +use lodepng_chunk_append or lodepng_chunk_create to the chunk data in +info_png.unknown_chunks_data[x]. + +Chunks that are known by LodePNG should not be added in that way. E.g. to make +LodePNG add a bKGD chunk, set background_defined to true and add the correct +parameters there instead. + + +9. compiler support +------------------- + +No libraries other than the current standard C library are needed to compile +LodePNG. For the C++ version, only the standard C++ library is needed on top. +Add the files lodepng.c(pp) and lodepng.h to your project, include +lodepng.h where needed, and your program can read/write PNG files. + +It is compatible with C90 and up, and C++03 and up. + +If performance is important, use optimization when compiling! For both the +encoder and decoder, this makes a large difference. + +Make sure that LodePNG is compiled with the same compiler of the same version +and with the same settings as the rest of the program, or the interfaces with +std::vectors and std::strings in C++ can be incompatible. + +CHAR_BITS must be 8 or higher, because LodePNG uses unsigned chars for octets. + +*) gcc and g++ + +LodePNG is developed in gcc so this compiler is natively supported. It gives no +warnings with compiler options "-Wall -Wextra -pedantic -ansi", with gcc and g++ +version 4.7.1 on Linux, 32-bit and 64-bit. + +*) Clang + +Fully supported and warning-free. + +*) Mingw + +The Mingw compiler (a port of gcc for Windows) should be fully supported by +LodePNG. + +*) Visual Studio and Visual C++ Express Edition + +LodePNG should be warning-free with warning level W4. Two warnings were disabled +with pragmas though: warning 4244 about implicit conversions, and warning 4996 +where it wants to use a non-standard function fopen_s instead of the standard C +fopen. + +Visual Studio may want "stdafx.h" files to be included in each source file and +give an error "unexpected end of file while looking for precompiled header". +This is not standard C++ and will not be added to the stock LodePNG. You can +disable it for lodepng.cpp only by right clicking it, Properties, C/C++, +Precompiled Headers, and set it to Not Using Precompiled Headers there. + +NOTE: Modern versions of VS should be fully supported, but old versions, e.g. +VS6, are not guaranteed to work. + +*) Compilers on Macintosh + +LodePNG has been reported to work both with gcc and LLVM for Macintosh, both for +C and C++. + +*) Other Compilers + +If you encounter problems on any compilers, feel free to let me know and I may +try to fix it if the compiler is modern and standards compliant. + + +10. examples +------------ + +This decoder example shows the most basic usage of LodePNG. More complex +examples can be found on the LodePNG website. + +NOTE: these examples do not support wide-character filenames, you can use an +external method to handle such files and encode or decode in-memory + +10.1. decoder C++ example +------------------------- + +#include "lodepng.h" +#include + +int main(int argc, char *argv[]) { + const char* filename = argc > 1 ? argv[1] : "test.png"; + + //load and decode + std::vector image; + unsigned width, height; + unsigned error = lodepng::decode(image, width, height, filename); + + //if there's an error, display it + if(error) std::cout << "decoder error " << error << ": " << lodepng_error_text(error) << std::endl; + + //the pixels are now in the vector "image", 4 bytes per pixel, ordered RGBARGBA..., use it as texture, draw it, ... +} + +10.2. decoder C example +----------------------- + +#include "lodepng.h" + +int main(int argc, char *argv[]) { + unsigned error; + unsigned char* image; + size_t width, height; + const char* filename = argc > 1 ? argv[1] : "test.png"; + + error = lodepng_decode32_file(&image, &width, &height, filename); + + if(error) printf("decoder error %u: %s\n", error, lodepng_error_text(error)); + + / * use image here * / + + free(image); + return 0; +} + +11. state settings reference +---------------------------- + +A quick reference of some settings to set on the LodePNGState + +For decoding: + +state.decoder.zlibsettings.ignore_adler32: ignore ADLER32 checksums +state.decoder.zlibsettings.custom_...: use custom inflate function +state.decoder.ignore_crc: ignore CRC checksums +state.decoder.ignore_critical: ignore unknown critical chunks +state.decoder.ignore_end: ignore missing IEND chunk. May fail if this corruption causes other errors +state.decoder.color_convert: convert internal PNG color to chosen one +state.decoder.read_text_chunks: whether to read in text metadata chunks +state.decoder.remember_unknown_chunks: whether to read in unknown chunks +state.info_raw.colortype: desired color type for decoded image +state.info_raw.bitdepth: desired bit depth for decoded image +state.info_raw....: more color settings, see struct LodePNGColorMode +state.info_png....: no settings for decoder but ouput, see struct LodePNGInfo + +For encoding: + +state.encoder.zlibsettings.btype: disable compression by setting it to 0 +state.encoder.zlibsettings.use_lz77: use LZ77 in compression +state.encoder.zlibsettings.windowsize: tweak LZ77 windowsize +state.encoder.zlibsettings.minmatch: tweak min LZ77 length to match +state.encoder.zlibsettings.nicematch: tweak LZ77 match where to stop searching +state.encoder.zlibsettings.lazymatching: try one more LZ77 matching +state.encoder.zlibsettings.custom_...: use custom deflate function +state.encoder.auto_convert: choose optimal PNG color type, if 0 uses info_png +state.encoder.filter_palette_zero: PNG filter strategy for palette +state.encoder.filter_strategy: PNG filter strategy to encode with +state.encoder.force_palette: add palette even if not encoding to one +state.encoder.add_id: add LodePNG identifier and version as a text chunk +state.encoder.text_compression: use compressed text chunks for metadata +state.info_raw.colortype: color type of raw input image you provide +state.info_raw.bitdepth: bit depth of raw input image you provide +state.info_raw: more color settings, see struct LodePNGColorMode +state.info_png.color.colortype: desired color type if auto_convert is false +state.info_png.color.bitdepth: desired bit depth if auto_convert is false +state.info_png.color....: more color settings, see struct LodePNGColorMode +state.info_png....: more PNG related settings, see struct LodePNGInfo + + +12. changes +----------- + +The version number of LodePNG is the date of the change given in the format +yyyymmdd. + +Some changes aren't backwards compatible. Those are indicated with a (!) +symbol. + +Not all changes are listed here, the commit history in github lists more: +https://github.com/lvandeve/lodepng + +*) 13 jun 2022: added support for the sBIT chunk. +*) 09 jan 2022: minor decoder speed improvements. +*) 27 jun 2021: added warnings that file reading/writing functions don't support + wide-character filenames (support for this is not planned, opening files is + not the core part of PNG decoding/decoding and is platform dependent). +*) 17 okt 2020: prevent decoding too large text/icc chunks by default. +*) 06 mar 2020: simplified some of the dynamic memory allocations. +*) 12 jan 2020: (!) added 'end' argument to lodepng_chunk_next to allow correct + overflow checks. +*) 14 aug 2019: around 25% faster decoding thanks to huffman lookup tables. +*) 15 jun 2019: (!) auto_choose_color API changed (for bugfix: don't use palette + if gray ICC profile) and non-ICC LodePNGColorProfile renamed to + LodePNGColorStats. +*) 30 dec 2018: code style changes only: removed newlines before opening braces. +*) 10 sep 2018: added way to inspect metadata chunks without full decoding. +*) 19 aug 2018: (!) fixed color mode bKGD is encoded with and made it use + palette index in case of palette. +*) 10 aug 2018: (!) added support for gAMA, cHRM, sRGB and iCCP chunks. This + change is backwards compatible unless you relied on unknown_chunks for those. +*) 11 jun 2018: less restrictive check for pixel size integer overflow +*) 14 jan 2018: allow optionally ignoring a few more recoverable errors +*) 17 sep 2017: fix memory leak for some encoder input error cases +*) 27 nov 2016: grey+alpha auto color model detection bugfix +*) 18 apr 2016: Changed qsort to custom stable sort (for platforms w/o qsort). +*) 09 apr 2016: Fixed colorkey usage detection, and better file loading (within + the limits of pure C90). +*) 08 dec 2015: Made load_file function return error if file can't be opened. +*) 24 okt 2015: Bugfix with decoding to palette output. +*) 18 apr 2015: Boundary PM instead of just package-merge for faster encoding. +*) 24 aug 2014: Moved to github +*) 23 aug 2014: Reduced needless memory usage of decoder. +*) 28 jun 2014: Removed fix_png setting, always support palette OOB for + simplicity. Made ColorProfile public. +*) 09 jun 2014: Faster encoder by fixing hash bug and more zeros optimization. +*) 22 dec 2013: Power of two windowsize required for optimization. +*) 15 apr 2013: Fixed bug with LAC_ALPHA and color key. +*) 25 mar 2013: Added an optional feature to ignore some PNG errors (fix_png). +*) 11 mar 2013: (!) Bugfix with custom free. Changed from "my" to "lodepng_" + prefix for the custom allocators and made it possible with a new #define to + use custom ones in your project without needing to change lodepng's code. +*) 28 jan 2013: Bugfix with color key. +*) 27 okt 2012: Tweaks in text chunk keyword length error handling. +*) 8 okt 2012: (!) Added new filter strategy (entropy) and new auto color mode. + (no palette). Better deflate tree encoding. New compression tweak settings. + Faster color conversions while decoding. Some internal cleanups. +*) 23 sep 2012: Reduced warnings in Visual Studio a little bit. +*) 1 sep 2012: (!) Removed #define's for giving custom (de)compression functions + and made it work with function pointers instead. +*) 23 jun 2012: Added more filter strategies. Made it easier to use custom alloc + and free functions and toggle #defines from compiler flags. Small fixes. +*) 6 may 2012: (!) Made plugging in custom zlib/deflate functions more flexible. +*) 22 apr 2012: (!) Made interface more consistent, renaming a lot. Removed + redundant C++ codec classes. Reduced amount of structs. Everything changed, + but it is cleaner now imho and functionality remains the same. Also fixed + several bugs and shrunk the implementation code. Made new samples. +*) 6 nov 2011: (!) By default, the encoder now automatically chooses the best + PNG color model and bit depth, based on the amount and type of colors of the + raw image. For this, autoLeaveOutAlphaChannel replaced by auto_choose_color. +*) 9 okt 2011: simpler hash chain implementation for the encoder. +*) 8 sep 2011: lz77 encoder lazy matching instead of greedy matching. +*) 23 aug 2011: tweaked the zlib compression parameters after benchmarking. + A bug with the PNG filtertype heuristic was fixed, so that it chooses much + better ones (it's quite significant). A setting to do an experimental, slow, + brute force search for PNG filter types is added. +*) 17 aug 2011: (!) changed some C zlib related function names. +*) 16 aug 2011: made the code less wide (max 120 characters per line). +*) 17 apr 2011: code cleanup. Bugfixes. Convert low to 16-bit per sample colors. +*) 21 feb 2011: fixed compiling for C90. Fixed compiling with sections disabled. +*) 11 dec 2010: encoding is made faster, based on suggestion by Peter Eastman + to optimize long sequences of zeros. +*) 13 nov 2010: added LodePNG_InfoColor_hasPaletteAlpha and + LodePNG_InfoColor_canHaveAlpha functions for convenience. +*) 7 nov 2010: added LodePNG_error_text function to get error code description. +*) 30 okt 2010: made decoding slightly faster +*) 26 okt 2010: (!) changed some C function and struct names (more consistent). + Reorganized the documentation and the declaration order in the header. +*) 08 aug 2010: only changed some comments and external samples. +*) 05 jul 2010: fixed bug thanks to warnings in the new gcc version. +*) 14 mar 2010: fixed bug where too much memory was allocated for char buffers. +*) 02 sep 2008: fixed bug where it could create empty tree that linux apps could + read by ignoring the problem but windows apps couldn't. +*) 06 jun 2008: added more error checks for out of memory cases. +*) 26 apr 2008: added a few more checks here and there to ensure more safety. +*) 06 mar 2008: crash with encoding of strings fixed +*) 02 feb 2008: support for international text chunks added (iTXt) +*) 23 jan 2008: small cleanups, and #defines to divide code in sections +*) 20 jan 2008: support for unknown chunks allowing using LodePNG for an editor. +*) 18 jan 2008: support for tIME and pHYs chunks added to encoder and decoder. +*) 17 jan 2008: ability to encode and decode compressed zTXt chunks added + Also various fixes, such as in the deflate and the padding bits code. +*) 13 jan 2008: Added ability to encode Adam7-interlaced images. Improved + filtering code of encoder. +*) 07 jan 2008: (!) changed LodePNG to use ISO C90 instead of C++. A + C++ wrapper around this provides an interface almost identical to before. + Having LodePNG be pure ISO C90 makes it more portable. The C and C++ code + are together in these files but it works both for C and C++ compilers. +*) 29 dec 2007: (!) changed most integer types to unsigned int + other tweaks +*) 30 aug 2007: bug fixed which makes this Borland C++ compatible +*) 09 aug 2007: some VS2005 warnings removed again +*) 21 jul 2007: deflate code placed in new namespace separate from zlib code +*) 08 jun 2007: fixed bug with 2- and 4-bit color, and small interlaced images +*) 04 jun 2007: improved support for Visual Studio 2005: crash with accessing + invalid std::vector element [0] fixed, and level 3 and 4 warnings removed +*) 02 jun 2007: made the encoder add a tag with version by default +*) 27 may 2007: zlib and png code separated (but still in the same file), + simple encoder/decoder functions added for more simple usage cases +*) 19 may 2007: minor fixes, some code cleaning, new error added (error 69), + moved some examples from here to lodepng_examples.cpp +*) 12 may 2007: palette decoding bug fixed +*) 24 apr 2007: changed the license from BSD to the zlib license +*) 11 mar 2007: very simple addition: ability to encode bKGD chunks. +*) 04 mar 2007: (!) tEXt chunk related fixes, and support for encoding + palettized PNG images. Plus little interface change with palette and texts. +*) 03 mar 2007: Made it encode dynamic Huffman shorter with repeat codes. + Fixed a bug where the end code of a block had length 0 in the Huffman tree. +*) 26 feb 2007: Huffman compression with dynamic trees (BTYPE 2) now implemented + and supported by the encoder, resulting in smaller PNGs at the output. +*) 27 jan 2007: Made the Adler-32 test faster so that a timewaste is gone. +*) 24 jan 2007: gave encoder an error interface. Added color conversion from any + greyscale type to 8-bit greyscale with or without alpha. +*) 21 jan 2007: (!) Totally changed the interface. It allows more color types + to convert to and is more uniform. See the manual for how it works now. +*) 07 jan 2007: Some cleanup & fixes, and a few changes over the last days: + encode/decode custom tEXt chunks, separate classes for zlib & deflate, and + at last made the decoder give errors for incorrect Adler32 or Crc. +*) 01 jan 2007: Fixed bug with encoding PNGs with less than 8 bits per channel. +*) 29 dec 2006: Added support for encoding images without alpha channel, and + cleaned out code as well as making certain parts faster. +*) 28 dec 2006: Added "Settings" to the encoder. +*) 26 dec 2006: The encoder now does LZ77 encoding and produces much smaller files now. + Removed some code duplication in the decoder. Fixed little bug in an example. +*) 09 dec 2006: (!) Placed output parameters of public functions as first parameter. + Fixed a bug of the decoder with 16-bit per color. +*) 15 okt 2006: Changed documentation structure +*) 09 okt 2006: Encoder class added. It encodes a valid PNG image from the + given image buffer, however for now it's not compressed. +*) 08 sep 2006: (!) Changed to interface with a Decoder class +*) 30 jul 2006: (!) LodePNG_InfoPng , width and height are now retrieved in different + way. Renamed decodePNG to decodePNGGeneric. +*) 29 jul 2006: (!) Changed the interface: image info is now returned as a + struct of type LodePNG::LodePNG_Info, instead of a vector, which was a bit clumsy. +*) 28 jul 2006: Cleaned the code and added new error checks. + Corrected terminology "deflate" into "inflate". +*) 23 jun 2006: Added SDL example in the documentation in the header, this + example allows easy debugging by displaying the PNG and its transparency. +*) 22 jun 2006: (!) Changed way to obtain error value. Added + loadFile function for convenience. Made decodePNG32 faster. +*) 21 jun 2006: (!) Changed type of info vector to unsigned. + Changed position of palette in info vector. Fixed an important bug that + happened on PNGs with an uncompressed block. +*) 16 jun 2006: Internally changed unsigned into unsigned where + needed, and performed some optimizations. +*) 07 jun 2006: (!) Renamed functions to decodePNG and placed them + in LodePNG namespace. Changed the order of the parameters. Rewrote the + documentation in the header. Renamed files to lodepng.cpp and lodepng.h +*) 22 apr 2006: Optimized and improved some code +*) 07 sep 2005: (!) Changed to std::vector interface +*) 12 aug 2005: Initial release (C++, decoder only) + + +13. contact information +----------------------- + +Feel free to contact me with suggestions, problems, comments, ... concerning +LodePNG. If you encounter a PNG image that doesn't work properly with this +decoder, feel free to send it and I'll use it to find and fix the problem. + +My email address is (puzzle the account and domain together with an @ symbol): +Domain: gmail dot com. +Account: lode dot vandevenne. + + +Copyright (c) 2005-2022 Lode Vandevenne +*/ diff --git a/Marlin/lib/LodePNG/lodepng_benchmark.cpp b/Marlin/lib/LodePNG/lodepng_benchmark.cpp new file mode 100644 index 0000000000..ca3f8cb969 --- /dev/null +++ b/Marlin/lib/LodePNG/lodepng_benchmark.cpp @@ -0,0 +1,355 @@ +/* +LodePNG Benchmark + +Copyright (c) 2005-2019 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +//g++ lodepng.cpp lodepng_benchmark.cpp -Wall -Wextra -pedantic -ansi -lSDL -O3 +//g++ lodepng.cpp lodepng_benchmark.cpp -Wall -Wextra -pedantic -ansi -lSDL -O3 && ./a.out +#if 0 + +#include "lodepng.h" + +#include +#include +#include +#include +#include + +#include +#include + +#include //SDL is used for timing. + +bool apply_mods = false; + +#define NUM_DECODE 5 //decode multiple times to measure better. Must be at least 1. + +size_t total_pixels = 0; +size_t total_png_orig_size = 0; +size_t total_raw_orig_size = 0; // This is the uncompressed data in the raw color format in the original input PNGs + +double total_dec_time = 0; +size_t total_png_in_size = 0; +size_t total_raw_in_size = 0; // This is the uncompressed data in the raw color format in the input PNGs given to the decoder (not same as orig when using the encoded ones) +size_t total_raw_dec_size = 0; // This is the uncompressed data in the raw color format of raw image buffers output by the decoder + +double total_enc_time = 0; +size_t total_raw_enc_size = 0; // This is the uncompressed data in the raw color format of the raw images given to the encoder +size_t total_png_out_size = 0; +size_t total_raw_out_size = 0; // This is the uncompressed data in the raw color format of the encoded PNGs + +bool verbose = false; +bool do_decode = false; +bool do_encode = false; +bool decode_encoded = false; // do the decoding benchmark on the encoded images rather than the original inputs + +std::string dumpdir; + +//////////////////////////////////////////////////////////////////////////////// + +double getTime() { + return SDL_GetTicks() / 1000.0; +} + +template +void assertEquals(const T& expected, const U& actual, const std::string& message = "") { + if(expected != (T)actual) { + std::cout << "Error: Not equal! Expected " << expected << " got " << actual << "." << std::endl; + std::cout << "Message: " << message << std::endl; + std::exit(1); + } +} + +void assertTrue(bool value, const std::string& message = "") { + if(!value) { + std::cout << "Error: expected true." << std::endl; + std::cout << "Message: " << message << std::endl; + std::exit(1); + } +} + +//Test image data +struct Image { + std::vector data; + unsigned width; + unsigned height; + LodePNGColorType colorType; + unsigned bitDepth; + std::string name; +}; + +//Utility for debug messages +template +std::string valtostr(const T& val) { + std::ostringstream sstream; + sstream << val; + return sstream.str(); +} + +template +void printValue(const std::string& name, const T& value, const std::string& unit = "") { + std::cout << name << ": " << value << unit << std::endl; +} + +template +void printValue(const std::string& name, const T& value, const std::string& s2, const U& value2, const std::string& unit = "") { + std::cout << name << ": " << value << s2 << value2 << unit << std::endl; +} + +//Test LodePNG encoding and decoding the encoded result, using the C interface +std::vector testEncode(Image& image) { + unsigned char* encoded = 0; + size_t encoded_size = 0; + lodepng::State state; + state.info_raw.colortype = image.colorType; + state.info_raw.bitdepth = image.bitDepth; + + // Try custom compression settings + if(apply_mods) { + //state.encoder.filter_strategy = LFS_ZERO; + //state.encoder.filter_strategy = LFS_ENTROPY; + //state.encoder.filter_strategy = LFS_FOUR; + //state.encoder.zlibsettings.btype = 0; + //state.encoder.zlibsettings.btype = 1; + //state.encoder.auto_convert = 0; + //state.encoder.zlibsettings.use_lz77 = 0; + state.encoder.zlibsettings.windowsize = 1; + //state.encoder.zlibsettings.windowsize = 32768; + } + + double t_enc0 = getTime(); + + unsigned error_enc = lodepng_encode(&encoded, &encoded_size, &image.data[0], + image.width, image.height, &state); + + double t_enc1 = getTime(); + + assertEquals(0, error_enc, "encoder error"); + + total_raw_enc_size += lodepng_get_raw_size(image.width, image.height, &state.info_raw); + total_png_out_size += encoded_size; + total_enc_time += (t_enc1 - t_enc0); + + if(verbose) { + printValue("encoding time", t_enc1 - t_enc0, "s"); + std::cout << "compression: " << ((double)(encoded_size) / (double)(image.data.size())) * 100 << "%" + << ", ratio: " << ((double)(image.data.size()) / (double)(encoded_size)) + << ", size: " << encoded_size + << ", bpp: " << (8.0 * encoded_size / image.width / image.height) << std::endl; + } + + if(!dumpdir.empty()) { + std::string dumpname = dumpdir; + if(dumpname[dumpname.size() - 1] != '/') dumpname += "/"; + dumpname += image.name; + if(lodepng_save_file(encoded, encoded_size, dumpname.c_str())) { + std::cout << "WARNING: failed to dump " << dumpname << ". The dir must already exist." << std::endl; + } else if(verbose) { + std::cout << "saved to: " << dumpname << std::endl; + } + } + + // output image stats + { + lodepng::State inspect; + unsigned w, h; + lodepng_inspect(&w, &h, &inspect, encoded, encoded_size); + total_raw_out_size += lodepng_get_raw_size(w, h, &inspect.info_png.color); + } + + std::vector result(encoded, encoded + encoded_size); + free(encoded); + return result; +} + +void testDecode(const std::vector& png) { + lodepng::State state; + unsigned char* decoded = 0; + unsigned w, h; + + // Try custom decompression settings + if(apply_mods) { + state.decoder.color_convert = 0; + //state.decoder.ignore_crc = 1; + } + + double t_dec0 = getTime(); + for(int i = 0; i < NUM_DECODE; i++) { + unsigned error_dec = lodepng_decode(&decoded, &w, &h, &state, png.data(), png.size()); + assertEquals(0, error_dec, "decoder error"); + } + double t_dec1 = getTime(); + + total_dec_time += (t_dec1 - t_dec0); + + total_raw_dec_size += lodepng_get_raw_size(w, h, &state.info_raw); + + if(verbose) { + printValue("decoding time", t_dec1 - t_dec0, "/", NUM_DECODE, " s"); + } + free(decoded); + + // input image stats + { + lodepng::State inspect; + unsigned w, h; + lodepng_inspect(&w, &h, &inspect, png.data(), png.size()); + total_raw_in_size += lodepng_get_raw_size(w, h, &inspect.info_png.color); + total_png_in_size += png.size(); + } +} + +std::string getFilePart(const std::string& path) { + if(path.empty()) return ""; + int slash = path.size() - 1; + while(slash >= 0 && path[slash] != '/') slash--; + return path.substr(slash + 1); +} + +void testFile(const std::string& filename) { + if(verbose) std::cout << "file " << filename << std::endl; + + std::vector png; + if(lodepng::load_file(png, filename)) { + std::cout << "\nfailed to load file " << filename << std::endl << std::endl; + return; + } + + // input image stats + { + lodepng::State inspect; + unsigned w, h; + lodepng_inspect(&w, &h, &inspect, png.data(), png.size()); + total_pixels += (w * h); + total_png_orig_size += png.size(); + size_t raw_size = lodepng_get_raw_size(w, h, &inspect.info_png.color); + total_raw_orig_size += raw_size; + if(verbose) std::cout << "orig compressed size: " << png.size() << ", pixels: " << (w * h) << ", raw size: " << raw_size << std::endl; + } + + if(do_encode) { + Image image; + image.name = getFilePart(filename); + image.colorType = LCT_RGBA; + image.bitDepth = 8; + assertEquals(0, lodepng::decode(image.data, image.width, image.height, filename, image.colorType, image.bitDepth)); + + std::vector temp = testEncode(image); + if(decode_encoded) png = temp; + } + + if(do_decode) { + testDecode(png); + } + + if(verbose) std::cout << std::endl; +} + +void showHelp(int argc, char *argv[]) { + (void)argc; + std::cout << "Usage: " << argv[0] << " png_filenames... [OPTIONS...] [--dumpdir directory]" << std::endl; + std::cout << "Options:" << std::endl; + std::cout << " -h: show this help" << std::endl; + std::cout << " -v: verbose" << std::endl; + std::cout << " -d: decode only" << std::endl; + std::cout << " -e: encode only" << std::endl; + std::cout << " -o: decode on original images rather than encoded ones (always true if -d without -e)" << std::endl; + std::cout << " -m: apply modifications to encoder and decoder settings, the modification itself must be implemented or changed in the benchmark source code (search for apply_mods in the code, for encode and for decode)" << std::endl; +} + +int main(int argc, char *argv[]) { + verbose = false; + do_decode = true; + do_encode = true; + decode_encoded = true; + + std::vector files; + + for(int i = 1; i < argc; i++) { + std::string arg = argv[i]; + if(arg == "-v") verbose = true; + else if(arg == "-h" || arg == "--help") { showHelp(argc, argv); return 0; } + else if(arg == "-d") do_decode ? (do_encode = false) : (do_decode = true); + else if(arg == "-e") do_encode ? (do_decode = false) : (do_encode = true); + else if(arg == "-o") decode_encoded = false; + else if(arg == "-m") apply_mods = true; + else if(arg == "--dumpdir" && i + 1 < argc) { + dumpdir = argv[++i]; + } + else files.push_back(arg); + } + + if(!do_encode) decode_encoded = false; + + if(files.empty()) { + std::cout << "must give .png filenames to benchamrk" << std::endl; + showHelp(argc, argv); + return 1; + } + + + + for(size_t i = 0; i < files.size(); i++) { + testFile(files[i]); + } + + // test images stats + if(verbose) { + std::cout << "Final Summary: " << std::endl; + std::cout << "input images: " << files.size() << std::endl; + std::cout << "total_pixels: " << total_pixels << std::endl; + // file size of original PNGs that were given as command line arguments to the tool + std::cout << "total_png_orig_size: " << total_png_orig_size << " (" << (8.0 * total_png_orig_size / total_pixels) << " bpp)" << std::endl; + // size of the data inside the original PNGs, dependent on color encoding (bit depth used in the PNG) + std::cout << "total_raw_orig_size: " << total_raw_orig_size << " (" << (8.0 * total_raw_orig_size / total_pixels) << " bpp)" << std::endl; + // size of the pixel data given to the benchmark encoder, dependent on color encoding (bit depth used in the image representation in the benchmark tool, probably 32 bits) + if(do_encode) std::cout << "total_raw_enc_size: " << total_raw_enc_size << " (" << (8.0 * total_raw_enc_size / total_pixels) << " bpp)" << std::endl; + // file size of PNGs created by the benchmark encoder + if(do_encode) std::cout << "total_png_out_size: " << total_png_out_size << " (" << (8.0 * total_png_out_size / total_pixels) << " bpp)" << std::endl; + // size of the data inside the PNGs created by the benchmark encoder, dependent on color encoding (bit depth used in the PNG), may differ from total_raw_orig_size since the encoder may choose to use a different color encoding + if(do_encode) std::cout << "total_raw_out_size: " << total_raw_out_size << " (" << (8.0 * total_raw_out_size / total_pixels) << " bpp)" << std::endl; + // size of file size of the PNGs given to the benchmark decoder, this could either be the original ones or the ones encoded by the benchmark encoder depending on user options + if(do_decode) std::cout << "total_png_in_size: " << total_png_in_size << " (" << (8.0 * total_png_in_size / total_pixels) << " bpp)" << std::endl; + // size of the data inside the PNGs mentioned at total_png_in_size, dependent on color encoding (bit depth used in the image representation in the benchmark tool, probably 32 bits) + if(do_decode) std::cout << "total_raw_in_size: " << total_raw_in_size << " (" << (8.0 * total_raw_in_size / total_pixels) << " bpp)" << std::endl; + // size of the pixel data requested from the benchmark decoder, dependent on color encoding requested (bit depth used in the image representation in the benchmark tool, probably 32 bits) + if(do_decode) std::cout << "total_raw_dec_size: " << total_raw_dec_size << " (" << (8.0 * total_raw_dec_size / total_pixels) << " bpp)" << std::endl; + } + + // final encoding stats + if(do_encode) { + std::cout << "encoding time: " << total_enc_time << "s on " << total_pixels << " pixels and " << total_raw_out_size << " raw bytes (" + << ((total_raw_enc_size/1024.0/1024.0)/(total_enc_time)) << " MB/s, " << ((total_pixels/1024.0/1024.0)/(total_enc_time)) << " MP/s)" << std::endl; + std::cout << "encoded size: " << total_png_out_size << " (" << (100.0 * total_png_out_size / total_raw_out_size) << "%), bpp: " + << (8.0 * total_png_out_size / total_pixels) << std::endl; + } + + // final decoding stats + if(do_decode) { + if(verbose) std::cout << "decoding iterations: " << NUM_DECODE << std::endl; + std::cout << "decoding time: " << total_dec_time/NUM_DECODE << "s on " << total_pixels << " pixels and " << total_png_in_size + << " compressed bytes (" << ((total_raw_in_size/1024.0/1024.0)/(total_dec_time/NUM_DECODE)) << " MB/s, " + << ((total_pixels/1024.0/1024.0)/(total_dec_time/NUM_DECODE)) << " MP/s)" << std::endl; + } +} +#endif diff --git a/Marlin/lib/LodePNG/lodepng_fuzzer.cpp b/Marlin/lib/LodePNG/lodepng_fuzzer.cpp new file mode 100644 index 0000000000..3a94db6058 --- /dev/null +++ b/Marlin/lib/LodePNG/lodepng_fuzzer.cpp @@ -0,0 +1,99 @@ +/* +LodePNG Fuzzer + +Copyright (c) 2005-2019 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +// clang++ -fsanitize=fuzzer lodepng.cpp lodepng_fuzzer.cpp -O3 && ./a.out +#if 0 + +#include "lodepng.h" + +#include + +namespace { +// Amount of valid colortype/bidthdepth combinations in the PNG file format. +const size_t num_combinations = 15; + +LodePNGColorType colortypes[num_combinations] = { + LCT_GREY, LCT_GREY, LCT_GREY, LCT_GREY, LCT_GREY, // 1, 2, 4, 8 or 16 bits + LCT_RGB, LCT_RGB, // 8 or 16 bits + LCT_PALETTE, LCT_PALETTE, LCT_PALETTE, LCT_PALETTE, // 1, 2, 4 or 8 bits + LCT_GREY_ALPHA, LCT_GREY_ALPHA, // 8 or 16 bits + LCT_RGBA, LCT_RGBA, // 8 or 16 bits +}; + +unsigned bitdepths[num_combinations] = { + 1, 2, 4, 8, 16, // gray + 8, 16, // rgb + 1, 2, 4, 8, // palette + 8, 16, // gray+alpha + 8, 16, // rgb+alpha +}; + +unsigned testDecode(lodepng::State& state, const uint8_t* data, size_t size) { + unsigned w, h; + std::vector image; + return lodepng::decode(image, w, h, state, (const unsigned char*)data, size); +} +} // end anonymous namespace + +extern "C" int LLVMFuzzerTestOneInput(const uint8_t* data, size_t size) { + if(size == 0) return 0; + + // Setting last byte of input as random_color_type + // Fuzzer will still be able to mutate the data accordingly as + // last byte of png file can be changed and file will still remain valid. + size_t random_color_type = data[size-1] % num_combinations; + + lodepng::State state; + + // Make the decoder ignore three types of checksums the PNG/zlib format have + // built-in, because they are less likely to be correct in the random input + // data, and if invalid make the decoder return an error before much gets ran. + state.decoder.zlibsettings.ignore_adler32 = 1; + state.decoder.zlibsettings.ignore_nlen = 1; + state.decoder.ignore_crc = 1; + // Also make decoder attempt to support partial files with missing ending to + // go further with parsing. + state.decoder.ignore_end = 1; + + // First test without color conversion (keep color type of the PNG) + state.decoder.color_convert = 0; + + unsigned error = testDecode(state, data, size); + + // If valid PNG found, try decoding with color conversion to the most common + // default color type, and to the randomly chosen type. + if(error == 0) { + state.decoder.color_convert = 1; + testDecode(state, data, size); + + state.info_raw.colortype = colortypes[random_color_type]; + state.info_raw.bitdepth = bitdepths[random_color_type]; + testDecode(state, data, size); + } + + return 0; +} + +#endif diff --git a/Marlin/lib/LodePNG/lodepng_unittest.cpp b/Marlin/lib/LodePNG/lodepng_unittest.cpp new file mode 100644 index 0000000000..9e4ce86c60 --- /dev/null +++ b/Marlin/lib/LodePNG/lodepng_unittest.cpp @@ -0,0 +1,3843 @@ +/* +LodePNG Unit Test + +Copyright (c) 2005-2022 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +//g++ lodepng.cpp lodepng_util.cpp lodepng_unittest.cpp -Wall -Wextra -Wsign-conversion -pedantic -ansi -O3 + +/* +Testing instructions: + +*) Ensure no tests commented out below or early return in doMain + +*) Compile with g++ with all warnings and run the unit test +g++ lodepng.cpp lodepng_util.cpp lodepng_unittest.cpp -Werror -Wall -Wextra -Wsign-conversion -Wshadow -pedantic -ansi -O3 && ./a.out + +*) Compile with clang, which may sometimes give different warnings +clang++ lodepng.cpp lodepng_util.cpp lodepng_unittest.cpp -Werror -Wall -Wextra -Wsign-conversion -Wshadow -pedantic -ansi -O3 + +*) Compile with pure ISO C90 and all warnings: +mv lodepng.cpp lodepng.c ; gcc -I ./ lodepng.c examples/example_decode.c -ansi -pedantic -Werror -Wall -Wextra -O3 ; mv lodepng.c lodepng.cpp + +mv lodepng.cpp lodepng.c ; clang -I ./ lodepng.c examples/example_decode.c -ansi -pedantic -Werror -Wall -Wextra -O3 ; mv lodepng.c lodepng.cpp + +*) Compile with C with -pedantic but not -ansi flag so it warns about // style comments in C++-only ifdefs +mv lodepng.cpp lodepng.c ; gcc -I ./ lodepng.c examples/example_decode.c -pedantic -Werror -Wall -Wextra -O3 ; mv lodepng.c lodepng.cpp + +*) test other compilers + +*) try lodepng_benchmark.cpp +g++ lodepng.cpp lodepng_benchmark.cpp -Werror -Wall -Wextra -pedantic -ansi -lSDL2 -O3 && ./a.out testdata/corpus/''* + +*) try the fuzzer +clang++ -fsanitize=fuzzer -DLODEPNG_MAX_ALLOC=100000000 lodepng.cpp lodepng_fuzzer.cpp -O3 -o fuzzer && ./fuzzer + +clang++ -fsanitize=fuzzer,address,undefined -DLODEPNG_MAX_ALLOC=100000000 lodepng.cpp lodepng_fuzzer.cpp -O3 -o fuzzer && ./fuzzer + +*) Check if all C++ examples compile without warnings: +g++ -I ./ lodepng.cpp examples/''*.cpp -Werror -W -Wall -ansi -pedantic -O3 -c + +*) Check if all C examples compile without warnings: +mv lodepng.cpp lodepng.c ; gcc -I ./ lodepng.c examples/''*.c -Werror -W -Wall -ansi -pedantic -O3 -c ; mv lodepng.c lodepng.cpp + +*) Check pngdetail.cpp: +g++ lodepng.cpp lodepng_util.cpp pngdetail.cpp -Werror -W -Wall -ansi -pedantic -O3 -o pngdetail +./pngdetail testdata/PngSuite/basi0g01.png + +*) Test compiling with some code sections with #defines disabled, for unused static function warnings etc... +g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_CRC +g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_ZLIB +g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_PNG +g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_DECODER +g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_ENCODER +g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_DISK +g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_ANCILLARY_CHUNKS +g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_ERROR_TEXT +g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_CPP +g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_ZLIB -DLODEPNG_NO_COMPILE_DECODER +g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_ZLIB -DLODEPNG_NO_COMPILE_ENCODER +g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_PNG -DLODEPNG_NO_COMPILE_DECODER +g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_PNG -DLODEPNG_NO_COMPILE_ENCODER +g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_DECODER -DLODEPNG_NO_COMPILE_ANCILLARY_CHUNKS -DLODEPNG_NO_COMPILE_ERROR_TEXT -DLODEPNG_NO_COMPILE_DISK +g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_ENCODER -DLODEPNG_NO_COMPILE_ANCILLARY_CHUNKS -DLODEPNG_NO_COMPILE_ERROR_TEXT -DLODEPNG_NO_COMPILE_DISK +rm *.o + +*) analyze with clang: +clang++ lodepng.cpp --analyze + +More verbose: +clang++ --analyze -Xanalyzer -analyzer-output=text lodepng.cpp + +Or html, look under lodepng.plist dir afterwards and find the numbered locations in the pages: +clang++ --analyze -Xanalyzer -analyzer-output=html lodepng.cpp + +*) check for memory leaks and vulnerabilities with valgrind +(DISABLE_SLOW disables a few tests that are very slow with valgrind) +g++ -DDISABLE_SLOW lodepng.cpp lodepng_util.cpp lodepng_unittest.cpp -Wall -Wextra -pedantic -ansi -O3 -DLODEPNG_MAX_ALLOC=100000000 && valgrind --leak-check=full --track-origins=yes ./a.out + +*) Try with clang++ and address sanitizer (to get line numbers, make sure 'llvm' is also installed to get 'llvm-symbolizer' +clang++ -O3 -fsanitize=address,undefined lodepng.cpp lodepng_util.cpp lodepng_unittest.cpp -Werror -Wall -Wextra -Wshadow -pedantic -ansi && ASAN_OPTIONS=allocator_may_return_null=1 ./a.out + +clang++ -g3 -fsanitize=address,undefined lodepng.cpp lodepng_util.cpp lodepng_unittest.cpp -Werror -Wall -Wextra -Wshadow -pedantic -ansi && ASAN_OPTIONS=allocator_may_return_null=1 ./a.out + +*) remove "#include " from lodepng.cpp if it's still in there (some are legit) +cat lodepng.cpp lodepng_util.cpp | grep iostream +cat lodepng.cpp lodepng_util.cpp | grep stdio +cat lodepng.cpp lodepng_util.cpp | grep "#include" + +*) try the Makefile +make clean && make -j +rm *.o *.obj + +*) check that no plain free, malloc, realloc, strlen, memcpy, memset, ... used, but the lodepng_* versions instead + +*) check version dates in copyright message and LODEPNG_VERSION_STRING + +*) check year in copyright message at top of all files as well as at bottom of lodepng.h + +*) check examples/sdl.cpp with the png test suite images (the "x" ones are expected to show error) +g++ -I ./ lodepng.cpp examples/example_sdl.cpp -Werror -Wall -Wextra -pedantic -ansi -O3 -lSDL2 -o showpng && ./showpng testdata/PngSuite/''*.png + +*) strip trailing spaces and ensure consistent newlines + +*) test warnings in other compilers + +*) check diff of lodepng.cpp and lodepng.h before submitting +git difftool -y + +*/ +#if 0 +#include "lodepng.h" +#include "lodepng_util.h" + +#include +#include +#include +#include +#include +#include +#include + +#include +#include + +//////////////////////////////////////////////////////////////////////////////// + +void fail() { + throw 1; //that's how to let a unittest fail +} + +//Utility for debug messages +template +std::string valtostr(const T& val) { + std::ostringstream sstream; + sstream << val; + return sstream.str(); +} + +//Print char as a numeric value rather than a character +template<> +std::string valtostr(const unsigned char& val) { + std::ostringstream sstream; + sstream << (int)val; + return sstream.str(); +} + +//Print char pointer as pointer, not as string +template +std::string valtostr(const T* val) { + std::ostringstream sstream; + sstream << (const void*)val; + return sstream.str(); +} + +template +std::string valtostr(const std::vector& val) { + std::ostringstream sstream; + sstream << "[vector with size " << val.size() << "]"; + return sstream.str(); +} + +// TODO: remove, use only ASSERT_EQUALS (it prints line number). Requires adding extra message ability to ASSERT_EQUALS +template +void assertEquals(const T& expected, const U& actual, const std::string& message = "") { + if(expected != (T)actual) { + std::cout << "Error: Not equal! Expected " << valtostr(expected) + << " got " << valtostr((T)actual) << ". " + << "Message: " << message << std::endl; + fail(); + } +} + +// TODO: remove, use only ASSERT_TRUE (it prints line number). Requires adding extra message ability to ASSERT_TRUE +void assertTrue(bool value, const std::string& message = "") { + if(!value) { + std::cout << "Error: expected true. " << "Message: " << message << std::endl; + fail(); + } +} + +//assert that no error +void assertNoPNGError(unsigned error, const std::string& message = "") { + if(error) { + std::string msg = (message == "") ? lodepng_error_text(error) + : message + std::string(": ") + lodepng_error_text(error); + assertEquals(0, error, msg); + } +} + +void assertNoError(unsigned error) { + if(error) { + assertEquals(0, error, "Expected no error"); + } +} + +#define STR_EXPAND(s) #s +#define STR(s) STR_EXPAND(s) +#define ASSERT_TRUE(v) {\ + if(!(v)) {\ + std::cout << std::string("line ") + STR(__LINE__) + ": " + STR(v) + " ASSERT_TRUE failed: ";\ + std::cout << "Expected true but got " << valtostr(v) << ". " << std::endl;\ + fail();\ + }\ +} +#define ASSERT_EQUALS(e, v) {\ + if((e) != (v)) {\ + std::cout << std::string("line ") + STR(__LINE__) + ": " + STR(v) + " ASSERT_EQUALS failed: ";\ + std::cout << "Expected " << valtostr(e) << " but got " << valtostr(v) << ". " << std::endl;\ + fail();\ + }\ +} +#define ASSERT_NOT_EQUALS(e, v) {\ + if((e) == (v)) {\ + std::cout << std::string("line ") + STR(__LINE__) + ": " + STR(v) + " ASSERT_NOT_EQUALS failed: ";\ + std::cout << "Expected not " << valtostr(e) << " but got " << valtostr(v) << ". " << std::endl;\ + fail();\ + }\ +} + +template +bool isNear(T e, U v, V maxdist) { + T dist = e > (T)v ? e - (T)v : (T)v - e; + return dist <= (T)maxdist; +} + +template +T diff(T e, U v) { + return v > e ? v - e : e - v; +} + +#define ASSERT_NEAR(e, v, maxdist) {\ + if(!isNear(e, v, maxdist)) {\ + std::cout << std::string("line ") + STR(__LINE__) + ": " + STR(v) + " ASSERT_NEAR failed: ";\ + std::cout << "dist too great! Expected near " << valtostr(e) << " but got " << valtostr(v) << ", with max dist " << valtostr(maxdist)\ + << " but got dist " << valtostr(diff(e, v)) << ". " << std::endl;\ + fail();\ + }\ +} + +#define ASSERT_STRING_EQUALS(e, v) ASSERT_EQUALS(std::string(e), std::string(v)) +#define ASSERT_NO_PNG_ERROR_MSG(error, message) assertNoPNGError(error, std::string("line ") + STR(__LINE__) + (std::string(message).empty() ? std::string("") : (": " + std::string(message)))) +#define ASSERT_NO_PNG_ERROR(error) ASSERT_NO_PNG_ERROR_MSG(error, std::string("")) + +static const std::string BASE64 = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/"; + + + +//T and U can be std::string or std::vector +template +void toBase64(T& out, const U& in) { + for(size_t i = 0; i < in.size(); i += 3) { + int v = 65536 * in[i]; + if(i + 1 < in.size()) v += 256 * in[i + 1]; + if(i + 2 < in.size()) v += in[i + 2]; + out.push_back(BASE64[(v >> 18) & 0x3f]); + out.push_back(BASE64[(v >> 12) & 0x3f]); + if(i + 1 < in.size()) out.push_back(BASE64[(v >> 6) & 0x3f]); + else out.push_back('='); + if(i + 2 < in.size()) out.push_back(BASE64[(v >> 0) & 0x3f]); + else out.push_back('='); + } +} + +int fromBase64(int v) { + if(v >= 'A' && v <= 'Z') return (v - 'A'); + if(v >= 'a' && v <= 'z') return (v - 'a' + 26); + if(v >= '0' && v <= '9') return (v - '0' + 52); + if(v == '+') return 62; + if(v == '/') return 63; + return 0; //v == '=' +} + +//T and U can be std::string or std::vector +template +void fromBase64(T& out, const U& in) { + for(size_t i = 0; i + 3 < in.size(); i += 4) { + int v = 262144 * fromBase64(in[i]) + 4096 * fromBase64(in[i + 1]) + 64 * fromBase64(in[i + 2]) + fromBase64(in[i + 3]); + out.push_back((v >> 16) & 0xff); + if(in[i + 2] != '=') out.push_back((v >> 8) & 0xff); + if(in[i + 3] != '=') out.push_back((v >> 0) & 0xff); + } +} + +unsigned getRandom() { + static unsigned s = 1000000000; + // xorshift32, good enough for testing + s ^= (s << 13); + s ^= (s >> 17); + s ^= (s << 5); + return s; +} + +//////////////////////////////////////////////////////////////////////////////// + + +unsigned leftrotate(unsigned x, unsigned c) { + return (x << c) | (x >> (32u - c)); +} + +// the 128-bit result is output in 4 32-bit integers a0..d0 (to make 16-byte digest: append a0|b0|c0|d0 in little endian) +void md5sum(const unsigned char* in, size_t size, unsigned* a0, unsigned* b0, unsigned* c0, unsigned* d0) { + ASSERT_EQUALS(4, sizeof(unsigned)); + // per-round shift amounts + static const unsigned s[64] = { + 7, 12, 17, 22, 7, 12, 17, 22, 7, 12, 17, 22, 7, 12, 17, 22, 5, 9, 14, 20, 5, 9, 14, 20, 5, 9, 14, 20, 5, 9, 14, 20, + 4, 11, 16, 23, 4, 11, 16, 23, 4, 11, 16, 23, 4, 11, 16, 23, 6, 10, 15, 21, 6, 10, 15, 21, 6, 10, 15, 21, 6, 10, 15, 21, + }; + // precomputed table from sines + static const unsigned k[64] = { + 0xd76aa478, 0xe8c7b756, 0x242070db, 0xc1bdceee, 0xf57c0faf, 0x4787c62a, 0xa8304613, 0xfd469501, + 0x698098d8, 0x8b44f7af, 0xffff5bb1, 0x895cd7be, 0x6b901122, 0xfd987193, 0xa679438e, 0x49b40821, + 0xf61e2562, 0xc040b340, 0x265e5a51, 0xe9b6c7aa, 0xd62f105d, 0x02441453, 0xd8a1e681, 0xe7d3fbc8, + 0x21e1cde6, 0xc33707d6, 0xf4d50d87, 0x455a14ed, 0xa9e3e905, 0xfcefa3f8, 0x676f02d9, 0x8d2a4c8a, + 0xfffa3942, 0x8771f681, 0x6d9d6122, 0xfde5380c, 0xa4beea44, 0x4bdecfa9, 0xf6bb4b60, 0xbebfbc70, + 0x289b7ec6, 0xeaa127fa, 0xd4ef3085, 0x04881d05, 0xd9d4d039, 0xe6db99e5, 0x1fa27cf8, 0xc4ac5665, + 0xf4292244, 0x432aff97, 0xab9423a7, 0xfc93a039, 0x655b59c3, 0x8f0ccc92, 0xffeff47d, 0x85845dd1, + 0x6fa87e4f, 0xfe2ce6e0, 0xa3014314, 0x4e0811a1, 0xf7537e82, 0xbd3af235, 0x2ad7d2bb, 0xeb86d391, + }; + + *a0 = 0x67452301; + *b0 = 0xefcdab89; + *c0 = 0x98badcfe; + *d0 = 0x10325476; + + // append bit, padding and size to input + std::vector data(in, in + size); + data.resize(((size + 1 + 8 + 63) / 64) * 64, 0); + data[size] = 128; // append 1 bit (msb) + size_t bitsize = size * 8; // append the size (shifts > 31 are avoided) + data[data.size() - 1] = ((bitsize >> 28u) >> 28u) & 255u; + data[data.size() - 2] = ((bitsize >> 24u) >> 24u) & 255u; + data[data.size() - 3] = ((bitsize >> 20u) >> 20u) & 255u; + data[data.size() - 4] = ((bitsize >> 16u) >> 16u) & 255u; + data[data.size() - 5] = (bitsize >> 24u) & 255u; + data[data.size() - 6] = (bitsize >> 16u) & 255u; + data[data.size() - 7] = (bitsize >> 8u) & 255u; + data[data.size() - 8] = bitsize & 255u; + + // per chunk + for(size_t i = 0; i < data.size(); i += 64) { + unsigned a = *a0; + unsigned b = *b0; + unsigned c = *c0; + unsigned d = *d0; + + for(size_t j = 0; j < 64; j++) { + unsigned f, g; + if(j <= 15u) { + f = (b & c) | (~b & d); + g = j; + } else if(j <= 31u) { + f = (d & b) | (~d & c); + g = (5u * j + 1u) & 15u; + } else if(j <= 47u) { + f = b ^ c ^ d; + g = (3u * j + 5u) & 15u; + } else { + f = c ^ (b | ~d); + g = (7u * j) & 15u; + } + unsigned m = (unsigned)(data[i + g * 4 + 3] << 24u) | (unsigned)(data[i + g * 4 + 2] << 16u) + | (unsigned)(data[i + g * 4 + 1] << 8u) | (unsigned)data[i + g * 4]; + f += a + k[j] + m; + a = d; + d = c; + c = b; + b += leftrotate(f, s[j]); + } + *a0 += a; + *b0 += b; + *c0 += c; + *d0 += d; + } +} + +std::string md5sum(const std::vector& in) { + unsigned a0, b0, c0, d0; + md5sum(in.data(), in.size(), &a0, &b0, &c0, &d0); + char result[33]; + //sprintf(result, "%8.8x%8.8x%8.8x%8.8x", a0, b0, c0, d0); + sprintf(result, "%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x", + a0 & 255, (a0 >> 8) & 255, (a0 >> 16) & 255, (a0 >> 24) & 255, + b0 & 255, (b0 >> 8) & 255, (b0 >> 16) & 255, (b0 >> 24) & 255, + c0 & 255, (c0 >> 8) & 255, (c0 >> 16) & 255, (c0 >> 24) & 255, + d0 & 255, (d0 >> 8) & 255, (d0 >> 16) & 255, (d0 >> 24) & 255); + return std::string(result); +} + +//////////////////////////////////////////////////////////////////////////////// + +//Test image data +struct Image { + std::vector data; + unsigned width; + unsigned height; + LodePNGColorType colorType; + unsigned bitDepth; +}; + +//Get number of color channels for a given PNG color type +unsigned getNumColorChannels(unsigned colorType) { + switch(colorType) { + case 0: return 1; /*gray*/ + case 2: return 3; /*RGB*/ + case 3: return 1; /*palette*/ + case 4: return 2; /*gray + alpha*/ + case 6: return 4; /*RGBA*/ + } + return 0; /*unexisting color type*/ +} + +//Generate a test image with some data in it, the contents of the data is unspecified, +//except the content is not just one plain color, and not true random either to be compressible. +void generateTestImage(Image& image, unsigned width, unsigned height, LodePNGColorType colorType = LCT_RGBA, unsigned bitDepth = 8) { + image.width = width; + image.height = height; + image.colorType = colorType; + image.bitDepth = bitDepth; + + size_t bits = bitDepth * getNumColorChannels(colorType); //bits per pixel + size_t size = (width * height * bits + 7) / 8; //total image size in bytes + image.data.resize(size); + unsigned char value = 128; + for(size_t i = 0; i < size; i++) { + image.data[i] = value++; + } +} + +//Generate a 16-bit test image with minimal size that requires at minimum the given color type (bit depth, grayscaleness, ...) +//If key is true, makes it such that exactly one color is transparent, so it can use a key. If false, adds a translucent color depending on +//whether it's an alpha color type or not. +void generateTestImageRequiringColorType16(Image& image, LodePNGColorType colorType, unsigned bitDepth, bool key) { + image.colorType = colorType; + image.bitDepth = bitDepth; + unsigned w = 1; + unsigned h = 1; + + bool gray = colorType == LCT_GREY || colorType == LCT_GREY_ALPHA; + bool alpha = colorType == LCT_RGBA || colorType == LCT_GREY_ALPHA; + + if(colorType == LCT_PALETTE) { + w = 1u << bitDepth; + h = 256; // ensure it'll really choose palette, not omit it due to small image size + image.data.resize(w * h * 8); + for(size_t y = 0; y < h; y++) { + for(size_t x = 0; x < w; x++) { + size_t i = y * w * 8 + x * 8; + image.data[i + 0] = image.data[i + 1] = y; + image.data[i + 2] = image.data[i + 3] = 255; + image.data[i + 4] = image.data[i + 5] = 0; + image.data[i + 6] = image.data[i + 7] = (key && y == 0) ? 0 : 255; + } + } + } else if(bitDepth == 16) { + // one color suffices for this model. But add one more to support key. + w = 2; + image.data.resize(w * h * 8); + image.data[0] = 10; image.data[1] = 20; + image.data[2] = 10; image.data[3] = 20; + image.data[4] = gray ? 10 : 110; image.data[5] = gray ? 20 : 120; + image.data[6] = alpha ? 128 : 255; image.data[7] = alpha ? 20 : 255; + + image.data[8] = 40; image.data[9] = 50; + image.data[10] = 40; image.data[11] = 50; + image.data[12] = gray ? 40 : 140; image.data[13] = gray ? 50 : 150; + image.data[14] = key ? 0 : 255; image.data[15] = key ? 0 : 255; + } else if(gray) { + w = 2; + unsigned v = 255u / ((1u << bitDepth) - 1u); // value that forces at least this bitdepth + image.data.resize(w * h * 8); + image.data[0] = v; image.data[1] = v; + image.data[2] = v; image.data[3] = v; + image.data[4] = v; image.data[5] = v; + image.data[6] = alpha ? v : 255; image.data[7] = alpha ? v : 255; + + image.data[8] = image.data[9] = 0; + image.data[10] = image.data[11] = 0; + image.data[12] = image.data[13] = 0; + image.data[14] = image.data[15] = key ? 0 : 255; + } else { + // now it's RGB or RGBA with bitdepth 8 + w = 257; // must have at least more than 256 colors so it won't use palette + image.data.resize(w * h * 8); + for(size_t y = 0; y < h; y++) { + for(size_t x = 0; x < w; x++) { + size_t i = y * w * 8 + x * 8; + image.data[i + 0] = image.data[i + 1] = i / 2; + image.data[i + 2] = image.data[i + 3] = i / 3; + image.data[i + 4] = image.data[i + 5] = i / 5; + image.data[i + 6] = image.data[i + 7] = (key && y == 0) ? 0 : (alpha ? i : 255); + } + } + } + + image.width = w; + image.height = h; +} + +//Generate a 8-bit test image with minimal size that requires at minimum the given color type (bit depth, grayscaleness, ...). bitDepth max 8 here. +//If key is true, makes it such that exactly one color is transparent, so it can use a key. If false, adds a translucent color depending on +//whether it's an alpha color type or not. +void generateTestImageRequiringColorType8(Image& image, LodePNGColorType colorType, unsigned bitDepth, bool key) { + image.colorType = colorType; + image.bitDepth = bitDepth; + unsigned w = 1; + unsigned h = 1; + + bool gray = colorType == LCT_GREY || colorType == LCT_GREY_ALPHA; + bool alpha = colorType == LCT_RGBA || colorType == LCT_GREY_ALPHA; + + if(colorType == LCT_PALETTE) { + w = 1u << bitDepth; + h = 256; // ensure it'll really choose palette, not omit it due to small image size + image.data.resize(w * h * 4); + for(size_t y = 0; y < h; y++) { + for(size_t x = 0; x < w; x++) { + size_t i = y * w * 4 + x * 4; + image.data[i + 0] = x; + image.data[i + 1] = 255; + image.data[i + 2] = 0; + image.data[i + 3] = (key && x == 0) ? 0 : 255; + } + } + } else if(gray) { + w = 2; + unsigned v = 255u / ((1u << bitDepth) - 1u); // value that forces at least this bitdepth + image.data.resize(w * h * 4); + image.data[0] = v; + image.data[1] = v; + image.data[2] = v; + image.data[3] = alpha ? v : 255; + + image.data[4] = 0; + image.data[5] = 0; + image.data[6] = 0; + image.data[7] = key ? 0 : 255; + } else { + // now it's RGB or RGBA with bitdepth 8 + w = 257; // must have at least more than 256 colors so it won't use palette + image.data.resize(w * h * 4); + for(size_t y = 0; y < h; y++) { + for(size_t x = 0; x < w; x++) { + size_t i = y * w * 4 + x * 4; + image.data[i + 0] = i / 2; + image.data[i + 1] = i / 3; + image.data[i + 2] = i / 5; + image.data[i + 3] = (key && x == 0) ? 0 : (alpha ? i : 255); + } + } + } + + image.width = w; + image.height = h; +} + +//Check that the decoded PNG pixels are the same as the pixels in the image +void assertPixels(Image& image, const unsigned char* decoded, const std::string& message) { + for(size_t i = 0; i < image.data.size(); i++) { + int byte_expected = image.data[i]; + int byte_actual = decoded[i]; + + //last byte is special due to possible random padding bits which need not to be equal + if(i == image.data.size() - 1) { + size_t numbits = getNumColorChannels(image.colorType) * image.bitDepth * image.width * image.height; + size_t padding = 8u - (numbits - 8u * (numbits / 8u)); + if(padding != 8u) { + //set all padding bits of both to 0 + for(size_t j = 0; j < padding; j++) { + byte_expected = (byte_expected & (~(1 << j))) % 256; + byte_actual = (byte_actual & (~(1 << j))) % 256; + } + } + } + + assertEquals(byte_expected, byte_actual, message + " " + valtostr(i)); + } +} + +//Test LodePNG encoding and decoding the encoded result, using the C interface +void doCodecTestC(Image& image) { + unsigned char* encoded = 0; + size_t encoded_size = 0; + unsigned char* decoded = 0; + unsigned decoded_w; + unsigned decoded_h; + + struct OnExitScope { + unsigned char** a; + unsigned char** b; + OnExitScope(unsigned char** ca, unsigned char** cb) : a(ca), b(cb) {} + ~OnExitScope() { free(*a); free(*b); } + } onExitScope(&encoded, &decoded); + + unsigned error_enc = lodepng_encode_memory(&encoded, &encoded_size, &image.data[0], + image.width, image.height, image.colorType, image.bitDepth); + + if(error_enc != 0) std::cout << "Error: " << lodepng_error_text(error_enc) << std::endl; + ASSERT_NO_PNG_ERROR_MSG(error_enc, "encoder error C"); + + //if the image is large enough, compressing it should result in smaller size + if(image.data.size() > 512) assertTrue(encoded_size < image.data.size(), "compressed size"); + + unsigned error_dec = lodepng_decode_memory(&decoded, &decoded_w, &decoded_h, + encoded, encoded_size, image.colorType, image.bitDepth); + + if(error_dec != 0) std::cout << "Error: " << lodepng_error_text(error_dec) << std::endl; + ASSERT_NO_PNG_ERROR_MSG(error_dec, "decoder error C"); + + ASSERT_EQUALS(image.width, decoded_w); + ASSERT_EQUALS(image.height, decoded_h); + assertPixels(image, decoded, "Pixels C"); +} + +//Test LodePNG encoding and decoding the encoded result, using the C++ interface +void doCodecTestCPP(Image& image) { + std::vector encoded; + std::vector decoded; + unsigned decoded_w; + unsigned decoded_h; + + unsigned error_enc = lodepng::encode(encoded, image.data, image.width, image.height, + image.colorType, image.bitDepth); + + ASSERT_NO_PNG_ERROR_MSG(error_enc, "encoder error C++"); + + //if the image is large enough, compressing it should result in smaller size + if(image.data.size() > 512) assertTrue(encoded.size() < image.data.size(), "compressed size"); + + unsigned error_dec = lodepng::decode(decoded, decoded_w, decoded_h, encoded, image.colorType, image.bitDepth); + + ASSERT_NO_PNG_ERROR_MSG(error_dec, "decoder error C++"); + + ASSERT_EQUALS(image.width, decoded_w); + ASSERT_EQUALS(image.height, decoded_h); + ASSERT_EQUALS(image.data.size(), decoded.size()); + assertPixels(image, &decoded[0], "Pixels C++"); +} + + +void doCodecTestWithEncState(Image& image, lodepng::State& state) { + std::vector encoded; + std::vector decoded; + unsigned decoded_w; + unsigned decoded_h; + state.info_raw.colortype = image.colorType; + state.info_raw.bitdepth = image.bitDepth; + + + unsigned error_enc = lodepng::encode(encoded, image.data, image.width, image.height, state); + ASSERT_NO_PNG_ERROR_MSG(error_enc, "encoder error uncompressed"); + + unsigned error_dec = lodepng::decode(decoded, decoded_w, decoded_h, encoded, image.colorType, image.bitDepth); + + ASSERT_NO_PNG_ERROR_MSG(error_dec, "decoder error uncompressed"); + + ASSERT_EQUALS(image.width, decoded_w); + ASSERT_EQUALS(image.height, decoded_h); + ASSERT_EQUALS(image.data.size(), decoded.size()); + assertPixels(image, &decoded[0], "Pixels uncompressed"); +} + + +//Test LodePNG encoding and decoding the encoded result, using the C++ interface +void doCodecTestUncompressed(Image& image) { + lodepng::State state; + state.encoder.zlibsettings.btype = 0; + doCodecTestWithEncState(image, state); +} + +void doCodecTestNoLZ77(Image& image) { + lodepng::State state; + state.encoder.zlibsettings.use_lz77 = 0; + doCodecTestWithEncState(image, state); +} + +void testGetFilterTypes() { + std::cout << "testGetFilterTypes" << std::endl; + // Test that getFilterTypes works on the special case of 1-pixel wide interlaced image + std::string png64 = "iVBORw0KGgoAAAANSUhEUgAAAAEAAAAHCAIAAAExKYBVAAAAHUlEQVR4ASXHAQoAAAjCwPX/R9tK4ZBN4EHKcPcLXCgGAQa0TV8AAAAASUVORK5CYII="; + std::vector png; + fromBase64(png, png64); + std::vector types; + lodepng::getFilterTypes(types, png); + ASSERT_EQUALS(7, types.size()); + ASSERT_EQUALS(1, types[0]); + ASSERT_EQUALS(1, types[1]); + ASSERT_EQUALS(1, types[2]); + ASSERT_EQUALS(0, types[3]); + ASSERT_EQUALS(1, types[4]); + ASSERT_EQUALS(1, types[5]); + ASSERT_EQUALS(1, types[6]); +} + +//Test LodePNG encoding and decoding the encoded result, using the C++ interface, with interlace +void doCodecTestInterlaced(Image& image) { + std::vector encoded; + std::vector decoded; + unsigned decoded_w; + unsigned decoded_h; + + lodepng::State state; + state.info_png.interlace_method = 1; + state.info_raw.colortype = image.colorType; + state.info_raw.bitdepth = image.bitDepth; + + unsigned error_enc = lodepng::encode(encoded, image.data, image.width, image.height, state); + + ASSERT_NO_PNG_ERROR_MSG(error_enc, "encoder error interlaced"); + + //if the image is large enough, compressing it should result in smaller size + if(image.data.size() > 512) assertTrue(encoded.size() < image.data.size(), "compressed size"); + + state.info_raw.colortype = image.colorType; + state.info_raw.bitdepth = image.bitDepth; + unsigned error_dec = lodepng::decode(decoded, decoded_w, decoded_h, state, encoded); + + ASSERT_NO_PNG_ERROR_MSG(error_dec, "decoder error interlaced"); + + ASSERT_EQUALS(image.width, decoded_w); + ASSERT_EQUALS(image.height, decoded_h); + ASSERT_EQUALS(image.data.size(), decoded.size()); + assertPixels(image, &decoded[0], "Pixels interlaced"); +} + +//Test LodePNG encoding and decoding the encoded result +void doCodecTest(Image& image) { + doCodecTestC(image); + doCodecTestCPP(image); + doCodecTestInterlaced(image); + doCodecTestUncompressed(image); + doCodecTestNoLZ77(image); +} + + +//Test LodePNG encoding and decoding using some image generated with the given parameters +void codecTest(unsigned width, unsigned height, LodePNGColorType colorType = LCT_RGBA, unsigned bitDepth = 8) { + std::cout << "codec test " << width << " " << height << std::endl; + Image image; + generateTestImage(image, width, height, colorType, bitDepth); + doCodecTest(image); +} + +std::string removeSpaces(const std::string& s) { + std::string result; + for(size_t i = 0; i < s.size(); i++) if(s[i] != ' ') result += s[i]; + return result; +} + +void bitStringToBytes(std::vector& bytes, const std::string& bits_) { + std::string bits = removeSpaces(bits_); + bytes.resize((bits.size()) + 7 / 8); + for(size_t i = 0; i < bits.size(); i++) { + size_t j = i / 8; + size_t k = i % 8; + char c = bits[i]; + if(k == 0) bytes[j] = 0; + if(c == '1') bytes[j] |= (1 << (7 - k)); + } +} + +/* +test color convert on a single pixel. Testing palette and testing color keys is +not supported by this function. Pixel values given using bits in an std::string +of 0's and 1's. +*/ +void colorConvertTest(const std::string& bits_in, LodePNGColorType colorType_in, unsigned bitDepth_in, + const std::string& bits_out, LodePNGColorType colorType_out, unsigned bitDepth_out) { + std::cout << "color convert test " << bits_in << " - " << bits_out << std::endl; + + std::vector expected, actual, image; + bitStringToBytes(expected, bits_out); + actual.resize(expected.size()); + bitStringToBytes(image, bits_in); + LodePNGColorMode mode_in, mode_out; + lodepng_color_mode_init(&mode_in); + lodepng_color_mode_init(&mode_out); + mode_in.colortype = colorType_in; + mode_in.bitdepth = bitDepth_in; + mode_out.colortype = colorType_out; + mode_out.bitdepth = bitDepth_out; + unsigned error = lodepng_convert(&actual[0], &image[0], &mode_out, &mode_in, 1, 1); + + ASSERT_NO_PNG_ERROR_MSG(error, "convert error"); + + for(size_t i = 0; i < expected.size(); i++) { + assertEquals((int)expected[i], (int)actual[i], "byte " + valtostr(i)); + } + + lodepng_color_mode_cleanup(&mode_in); + lodepng_color_mode_cleanup(&mode_out); +} + +void testOtherPattern1() { + std::cout << "codec other pattern 1" << std::endl; + + Image image1; + size_t w = 192; + size_t h = 192; + image1.width = w; + image1.height = h; + image1.colorType = LCT_RGBA; + image1.bitDepth = 8; + image1.data.resize(w * h * 4u); + for(size_t y = 0; y < h; y++) + for(size_t x = 0; x < w; x++) { + //pattern 1 + image1.data[4u * w * y + 4u * x + 0u] = (unsigned char)(127 * (1 + std::sin(( x * x + y * y) / (w * h / 8.0)))); + image1.data[4u * w * y + 4u * x + 1u] = (unsigned char)(127 * (1 + std::sin(((w - x - 1) * (w - x - 1) + y * y) / (w * h / 8.0)))); + image1.data[4u * w * y + 4u * x + 2u] = (unsigned char)(127 * (1 + std::sin(( x * x + (h - y - 1) * (h - y - 1)) / (w * h / 8.0)))); + image1.data[4u * w * y + 4u * x + 3u] = (unsigned char)(127 * (1 + std::sin(((w - x - 1) * (w - x - 1) + (h - y - 1) * (h - y - 1)) / (w * h / 8.0)))); + } + + doCodecTest(image1); +} + +void testOtherPattern2() { + std::cout << "codec other pattern 2" << std::endl; + + Image image1; + size_t w = 192; + size_t h = 192; + image1.width = w; + image1.height = h; + image1.colorType = LCT_RGBA; + image1.bitDepth = 8; + image1.data.resize(w * h * 4u); + for(size_t y = 0; y < h; y++) + for(size_t x = 0; x < w; x++) { + image1.data[4u * w * y + 4u * x + 0u] = 255 * !(x & y); + image1.data[4u * w * y + 4u * x + 1u] = x ^ y; + image1.data[4u * w * y + 4u * x + 2u] = x | y; + image1.data[4u * w * y + 4u * x + 3u] = 255; + } + + doCodecTest(image1); +} + +void testSinglePixel(int r, int g, int b, int a) { + std::cout << "codec single pixel " << r << " " << g << " " << b << " " << a << std::endl; + Image pixel; + pixel.width = 1; + pixel.height = 1; + pixel.colorType = LCT_RGBA; + pixel.bitDepth = 8; + pixel.data.resize(4); + pixel.data[0] = r; + pixel.data[1] = g; + pixel.data[2] = b; + pixel.data[3] = a; + + doCodecTest(pixel); +} + +void testColor(int r, int g, int b, int a) { + std::cout << "codec test color " << r << " " << g << " " << b << " " << a << std::endl; + Image image; + image.width = 20; + image.height = 20; + image.colorType = LCT_RGBA; + image.bitDepth = 8; + image.data.resize(20 * 20 * 4); + for(size_t y = 0; y < 20; y++) + for(size_t x = 0; x < 20; x++) { + image.data[20 * 4 * y + 4 * x + 0] = r; + image.data[20 * 4 * y + 4 * x + 0] = g; + image.data[20 * 4 * y + 4 * x + 0] = b; + image.data[20 * 4 * y + 4 * x + 0] = a; + } + + doCodecTest(image); + + Image image2 = image; + image2.data[3] = 0; //one fully transparent pixel + doCodecTest(image2); + image2.data[3] = 128; //one semi transparent pixel + doCodecTest(image2); + + Image image3 = image; + // add 255 different colors + for(size_t i = 0; i < 255; i++) { + image.data[i * 4 + 0] = i; + image.data[i * 4 + 1] = i; + image.data[i * 4 + 2] = i; + image.data[i * 4 + 3] = 255; + } + doCodecTest(image3); + // a 256th color + image.data[255 * 4 + 0] = 255; + image.data[255 * 4 + 1] = 255; + image.data[255 * 4 + 2] = 255; + image.data[255 * 4 + 3] = 255; + doCodecTest(image3); + + testSinglePixel(r, g, b, a); +} + +// Tests combinations of various colors in different orders +void testFewColors() { + std::cout << "codec test few colors " << std::endl; + Image image; + image.width = 4; + image.height = 4; + image.colorType = LCT_RGBA; + image.bitDepth = 8; + image.data.resize(image.width * image.height * 4); + std::vector colors; + colors.push_back(0); colors.push_back(0); colors.push_back(0); colors.push_back(255); // black + colors.push_back(255); colors.push_back(255); colors.push_back(255); colors.push_back(255); // white + colors.push_back(128); colors.push_back(128); colors.push_back(128); colors.push_back(255); // gray + colors.push_back(0); colors.push_back(0); colors.push_back(255); colors.push_back(255); // blue + colors.push_back(255); colors.push_back(255); colors.push_back(255); colors.push_back(0); // transparent white + colors.push_back(255); colors.push_back(255); colors.push_back(255); colors.push_back(1); // translucent white + for(size_t i = 0; i < colors.size(); i += 4) + for(size_t j = 0; j < colors.size(); j += 4) + for(size_t k = 0; k < colors.size(); k += 4) + for(size_t l = 0; l < colors.size(); l += 4) { + for(unsigned y = 0; y < image.height; y++) + for(unsigned x = 0; x < image.width; x++) { + size_t a = (y * image.width + x) & 3; + size_t b = (a == 0) ? i : ((a == 1) ? j : ((a == 2) ? k : l)); + for(size_t c = 0; c < 4; c++) { + image.data[y * image.width * 4 + x * 4 + c] = colors[b + c]; + } + } + doCodecTest(image); + } + image.width = 20; + image.height = 20; + image.data.resize(image.width * image.height * 4); + for(size_t i = 0; i < colors.size(); i += 4) + for(size_t j = 0; j < colors.size(); j += 4) + for(size_t k = 0; k < colors.size(); k += 4) { + for(unsigned y = 0; y < image.height; y++) + for(unsigned x = 0; x < image.width; x++) { + size_t a = (y * image.width + x) % 3; + size_t b = (a == 0) ? i : ((a == 1) ? j : k); + for(size_t c = 0; c < 4; c++) { + image.data[y * image.width * 4 + x * 4 + c] = colors[b + c]; + } + } + doCodecTest(image); + } +} + +void testSize(unsigned w, unsigned h) { + std::cout << "codec test size " << w << " " << h << std::endl; + Image image; + image.width = w; + image.height = h; + image.colorType = LCT_RGBA; + image.bitDepth = 8; + image.data.resize(w * h * 4); + for(size_t y = 0; y < h; y++) + for(size_t x = 0; x < w; x++) { + image.data[w * 4 * y + 4 * x + 0] = x % 256; + image.data[w * 4 * y + 4 * x + 0] = y % 256; + image.data[w * 4 * y + 4 * x + 0] = 255; + image.data[w * 4 * y + 4 * x + 0] = 255; + } + + doCodecTest(image); +} + +void testPNGCodec() { + codecTest(1, 1); + codecTest(2, 2); + codecTest(1, 1, LCT_GREY, 1); + codecTest(7, 7, LCT_GREY, 1); +#ifndef DISABLE_SLOW + codecTest(127, 127); + codecTest(127, 127, LCT_GREY, 1); + codecTest(320, 320); + codecTest(1, 10000); + codecTest(10000, 1); + + testOtherPattern1(); + testOtherPattern2(); +#endif // DISABLE_SLOW + + testColor(255, 255, 255, 255); + testColor(0, 0, 0, 255); + testColor(1, 2, 3, 255); + testColor(255, 0, 0, 255); + testColor(0, 255, 0, 255); + testColor(0, 0, 255, 255); + testColor(0, 0, 0, 255); + testColor(1, 1, 1, 255); + testColor(1, 1, 1, 1); + testColor(0, 0, 0, 128); + testColor(255, 0, 0, 128); + testColor(127, 127, 127, 255); + testColor(128, 128, 128, 255); + testColor(127, 127, 127, 128); + testColor(128, 128, 128, 128); + //transparent single pixels + testColor(0, 0, 0, 0); + testColor(255, 0, 0, 0); + testColor(1, 2, 3, 0); + testColor(255, 255, 255, 0); + testColor(254, 254, 254, 0); + + // This is mainly to test the Adam7 interlacing + for(unsigned h = 1; h < 12; h++) + for(unsigned w = 1; w < 12; w++) { + testSize(w, h); + } +} + +//Tests some specific color conversions with specific color bit combinations +void testColorConvert() { + //test color conversions to RGBA8 + colorConvertTest("1", LCT_GREY, 1, "11111111 11111111 11111111 11111111", LCT_RGBA, 8); + colorConvertTest("10", LCT_GREY, 2, "10101010 10101010 10101010 11111111", LCT_RGBA, 8); + colorConvertTest("1001", LCT_GREY, 4, "10011001 10011001 10011001 11111111", LCT_RGBA, 8); + colorConvertTest("10010101", LCT_GREY, 8, "10010101 10010101 10010101 11111111", LCT_RGBA, 8); + colorConvertTest("10010101 11111110", LCT_GREY_ALPHA, 8, "10010101 10010101 10010101 11111110", LCT_RGBA, 8); + colorConvertTest("10010101 00000001 11111110 00000001", LCT_GREY_ALPHA, 16, "10010101 10010101 10010101 11111110", LCT_RGBA, 8); + colorConvertTest("01010101 00000000 00110011", LCT_RGB, 8, "01010101 00000000 00110011 11111111", LCT_RGBA, 8); + colorConvertTest("01010101 00000000 00110011 10101010", LCT_RGBA, 8, "01010101 00000000 00110011 10101010", LCT_RGBA, 8); + colorConvertTest("10101010 01010101 11111111 00000000 11001100 00110011", LCT_RGB, 16, "10101010 11111111 11001100 11111111", LCT_RGBA, 8); + colorConvertTest("10101010 01010101 11111111 00000000 11001100 00110011 11100111 00011000", LCT_RGBA, 16, "10101010 11111111 11001100 11100111", LCT_RGBA, 8); + + //test color conversions to RGB8 + colorConvertTest("1", LCT_GREY, 1, "11111111 11111111 11111111", LCT_RGB, 8); + colorConvertTest("10", LCT_GREY, 2, "10101010 10101010 10101010", LCT_RGB, 8); + colorConvertTest("1001", LCT_GREY, 4, "10011001 10011001 10011001", LCT_RGB, 8); + colorConvertTest("10010101", LCT_GREY, 8, "10010101 10010101 10010101", LCT_RGB, 8); + colorConvertTest("10010101 11111110", LCT_GREY_ALPHA, 8, "10010101 10010101 10010101", LCT_RGB, 8); + colorConvertTest("10010101 00000001 11111110 00000001", LCT_GREY_ALPHA, 16, "10010101 10010101 10010101", LCT_RGB, 8); + colorConvertTest("01010101 00000000 00110011", LCT_RGB, 8, "01010101 00000000 00110011", LCT_RGB, 8); + colorConvertTest("01010101 00000000 00110011 10101010", LCT_RGBA, 8, "01010101 00000000 00110011", LCT_RGB, 8); + colorConvertTest("10101010 01010101 11111111 00000000 11001100 00110011", LCT_RGB, 16, "10101010 11111111 11001100", LCT_RGB, 8); + colorConvertTest("10101010 01010101 11111111 00000000 11001100 00110011 11100111 00011000", LCT_RGBA, 16, "10101010 11111111 11001100", LCT_RGB, 8); + + //test color conversions to RGBA16 + colorConvertTest("1", LCT_GREY, 1, "11111111 11111111 11111111 11111111 11111111 11111111 11111111 11111111", LCT_RGBA, 16); + colorConvertTest("10", LCT_GREY, 2, "10101010 10101010 10101010 10101010 10101010 10101010 11111111 11111111", LCT_RGBA, 16); + + //test grayscale color conversions + colorConvertTest("1", LCT_GREY, 1, "11111111", LCT_GREY, 8); + colorConvertTest("1", LCT_GREY, 1, "1111111111111111", LCT_GREY, 16); + colorConvertTest("0", LCT_GREY, 1, "00000000", LCT_GREY, 8); + colorConvertTest("0", LCT_GREY, 1, "0000000000000000", LCT_GREY, 16); + colorConvertTest("11", LCT_GREY, 2, "11111111", LCT_GREY, 8); + colorConvertTest("11", LCT_GREY, 2, "1111111111111111", LCT_GREY, 16); + colorConvertTest("10", LCT_GREY, 2, "10101010", LCT_GREY, 8); + colorConvertTest("10", LCT_GREY, 2, "1010101010101010", LCT_GREY, 16); + colorConvertTest("1000", LCT_GREY, 4, "10001000", LCT_GREY, 8); + colorConvertTest("1000", LCT_GREY, 4, "1000100010001000", LCT_GREY, 16); + colorConvertTest("10110101", LCT_GREY, 8, "1011010110110101", LCT_GREY, 16); + colorConvertTest("1011010110110101", LCT_GREY, 16, "10110101", LCT_GREY, 8); + + //others + colorConvertTest("11111111 11111111 11111111 00000000 00000000 00000000", LCT_RGB, 8, "10", LCT_GREY, 1); + colorConvertTest("11111111 11111111 11111111 11111111 11111111 11111111 00000000 00000000 00000000 00000000 00000000 00000000", LCT_RGB, 16, "10", LCT_GREY, 1); +} + +//This tests color conversions from any color model to any color model, with any bit depth +//But it tests only with colors black and white, because that are the only colors every single model supports +void testColorConvert2() { + std::cout << "testColorConvert2" << std::endl; + struct Combo { + LodePNGColorType colortype; + unsigned bitdepth; + }; + + Combo combos[15] = { { LCT_GREY, 1}, { LCT_GREY, 2}, { LCT_GREY, 4}, { LCT_GREY, 8}, { LCT_GREY, 16}, { LCT_RGB, 8}, { LCT_RGB, 16}, { LCT_PALETTE, 1}, { LCT_PALETTE, 2}, { LCT_PALETTE, 4}, { LCT_PALETTE, 8}, { LCT_GREY_ALPHA, 8}, { LCT_GREY_ALPHA, 16}, { LCT_RGBA, 8}, { LCT_RGBA, 16}, + }; + + lodepng::State state; + LodePNGColorMode& mode_in = state.info_png.color; + LodePNGColorMode& mode_out = state.info_raw; + LodePNGColorMode mode_8; + lodepng_color_mode_init(&mode_8); + + for(size_t i = 0; i < 256; i++) { + size_t j = i == 1 ? 255 : i; + lodepng_palette_add(&mode_in, j, j, j, 255); + lodepng_palette_add(&mode_out, j, j, j, 255); + } + + for(size_t i = 0; i < 15; i++) { + mode_in.colortype = combos[i].colortype; + mode_in.bitdepth = combos[i].bitdepth; + + for(size_t j = 0; j < 15; j++) { + mode_out.colortype = combos[i].colortype; + mode_out.bitdepth = combos[i].bitdepth; + + unsigned char eight[36] = { + 0,0,0,255, 255,255,255,255, + 0,0,0,255, 255,255,255,255, + 255,255,255,255, 0,0,0,255, + 255,255,255,255, 255,255,255,255, + 0,0,0,255 }; //input in RGBA8 + unsigned char in[72]; //custom input color type + unsigned char out[72]; //custom output color type + unsigned char eight2[36]; //back in RGBA8 after all conversions to check correctness + unsigned error = 0; + + error |= lodepng_convert(in, eight, &mode_in, &mode_8, 3, 3); + if(!error) error |= lodepng_convert(out, in, &mode_out, &mode_in, 3, 3); //Test input to output type + if(!error) error |= lodepng_convert(eight2, out, &mode_8, &mode_out, 3, 3); + + if(!error) { + for(size_t k = 0; k < 36; k++) { + if(eight[k] != eight2[k]) { + error = 99999; + break; + } + } + } + + if(error) { + std::cout << "Error " << error << " i: " << i << " j: " << j + << " colortype i: " << combos[i].colortype + << " bitdepth i: " << combos[i].bitdepth + << " colortype j: " << combos[j].colortype + << " bitdepth j: " << combos[j].bitdepth + << std::endl; + if(error != 99999) ASSERT_NO_PNG_ERROR(error); + else fail(); + } + } + } +} + +//if compressible is true, the test will also assert that the compressed string is smaller +void testCompressStringZlib(const std::string& text, bool compressible) { + if(text.size() < 500) std::cout << "compress test with text: " << text << std::endl; + else std::cout << "compress test with text length: " << text.size() << std::endl; + + std::vector in(text.size()); + for(size_t i = 0; i < text.size(); i++) in[i] = (unsigned char)text[i]; + unsigned char* out = 0; + size_t outsize = 0; + unsigned error = 0; + + error = lodepng_zlib_compress(&out, &outsize, in.empty() ? 0 : &in[0], in.size(), &lodepng_default_compress_settings); + ASSERT_NO_PNG_ERROR(error); + if(compressible) assertTrue(outsize < in.size()); + + unsigned char* out2 = 0; + size_t outsize2 = 0; + + error = lodepng_zlib_decompress(&out2, &outsize2, out, outsize, &lodepng_default_decompress_settings); + ASSERT_NO_PNG_ERROR(error); + ASSERT_EQUALS(outsize2, in.size()); + for(size_t i = 0; i < in.size(); i++) ASSERT_EQUALS(in[i], out2[i]); + + free(out); + free(out2); +} + +void testCompressZlib() { + testCompressStringZlib("", false); + testCompressStringZlib("a", false); + testCompressStringZlib("aa", false); + testCompressStringZlib("ababababababababababababababababababababababababababababababababababababababababababab", true); + testCompressStringZlib("abaaaabaabbbaabbabbababbbbabababbbaabbbaaaabbbbabbbabbbaababbbbbaaabaabbabaaaabbbbbbab", true); + testCompressStringZlib("aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaab", true); + testCompressStringZlib("omnomnomnomnomnomnomnomnomnomnom", true); + testCompressStringZlib("the quick brown fox jumps over the lazy dog. the quick brown fox jumps over the lazy dog.", true); + testCompressStringZlib("abracadabra", false); + testCompressStringZlib("hello hello hello hello hello hello hello hello hello hello hello?", true); + testCompressStringZlib("WPgZX2D*um0H::,4/KU\"kt\"Ne\"#Qa.&# buffer; + lodepng::load_file(buffer, filename); + std::string f; + for(size_t i = 0; i < buffer.size(); i++) f += (char)buffer[i]; + testCompressStringZlib(f, false); +} + +void testDiskPNG(const std::string& filename) { + std::cout << "testDiskPNG: File " << filename << std::endl; + + Image image; + image.colorType = LCT_RGB; + image.bitDepth = 8; + unsigned error = lodepng::decode(image.data, image.width, image.height, filename, image.colorType, image.bitDepth); + ASSERT_NO_PNG_ERROR(error); + + doCodecTest(image); +} + +std::vector strtovector(const std::string& numbers) { + std::vector result; + std::stringstream ss(numbers); + unsigned i; + while(ss >> i) result.push_back(i); + return result; +} + +void doTestHuffmanCodeLengths(const std::string& expectedstr, const std::string& counts, size_t bitlength) { + std::vector expected = strtovector(expectedstr); + std::vector count = strtovector(counts); + std::cout << "doTestHuffmanCodeLengths: " << counts << std::endl; + std::vector result(count.size()); + unsigned error = lodepng_huffman_code_lengths(&result[0], &count[0], count.size(), bitlength); + ASSERT_NO_PNG_ERROR_MSG(error, "errorcode"); + std::stringstream ss1, ss2; + for(size_t i = 0; i < count.size(); i++) { + ss1 << expected[i] << " "; + ss2 << result[i] << " "; + } + assertEquals(ss1.str(), ss2.str(), "value"); +} + +void testHuffmanCodeLengths() { + bool atleasttwo = true; //LodePNG generates at least two, instead of at least one, symbol + if(atleasttwo) { + doTestHuffmanCodeLengths("1 1", "0 0", 16); + doTestHuffmanCodeLengths("1 1 0", "0 0 0", 16); + doTestHuffmanCodeLengths("1 1", "1 0", 16); + doTestHuffmanCodeLengths("1 1 0 0 0 0 0 0 0", "0 0 0 0 0 0 0 0 0", 16); + doTestHuffmanCodeLengths("1 1 0 0 0 0 0 0 0", "1 0 0 0 0 0 0 0 0", 16); + doTestHuffmanCodeLengths("1 1 0 0 0 0 0 0 0", "0 1 0 0 0 0 0 0 0", 16); + doTestHuffmanCodeLengths("1 0 0 0 0 0 0 0 1", "0 0 0 0 0 0 0 0 1", 16); + doTestHuffmanCodeLengths("0 0 0 0 0 0 0 1 1", "0 0 0 0 0 0 0 1 1", 16); + } else { + doTestHuffmanCodeLengths("1 0", "0 0", 16); + doTestHuffmanCodeLengths("1 0 0", "0 0 0", 16); + doTestHuffmanCodeLengths("1 0", "1 0", 16); + doTestHuffmanCodeLengths("1", "1", 16); + doTestHuffmanCodeLengths("1", "0", 16); + } + doTestHuffmanCodeLengths("1 1", "1 1", 16); + doTestHuffmanCodeLengths("1 1", "1 100", 16); + doTestHuffmanCodeLengths("2 2 1", "1 2 3", 16); + doTestHuffmanCodeLengths("2 1 2", "2 3 1", 16); + doTestHuffmanCodeLengths("1 2 2", "3 1 2", 16); + doTestHuffmanCodeLengths("3 3 2 1", "1 30 31 32", 16); + doTestHuffmanCodeLengths("2 2 2 2", "1 30 31 32", 2); + doTestHuffmanCodeLengths("5 5 4 4 4 3 3 1", "1 2 3 4 5 6 7 500", 16); +} + +/* +Create a PNG image with all known chunks (except only one of tEXt or zTXt) plus +unknown chunks, and a palette. +*/ +void createComplexPNG(std::vector& png) { + unsigned w = 16, h = 17; + std::vector image(w * h); + for(size_t i = 0; i < w * h; i++) { + image[i] = i % 256; + } + + lodepng::State state; + LodePNGInfo& info = state.info_png; + info.color.colortype = LCT_PALETTE; + info.color.bitdepth = 8; + state.info_raw.colortype = LCT_PALETTE; + state.info_raw.bitdepth = 8; + state.encoder.auto_convert = false; + state.encoder.text_compression = 1; + state.encoder.add_id = 1; + for(size_t i = 0; i < 256; i++) { + lodepng_palette_add(&info.color, i, i, i, i); + lodepng_palette_add(&state.info_raw, i, i, i, i); + } + + info.background_defined = 1; + info.background_r = 127; + + lodepng_add_text(&info, "key0", "string0"); + lodepng_add_text(&info, "key1", "string1"); + + lodepng_add_itext(&info, "ikey0", "ilangtag0", "itranskey0", "istring0"); + lodepng_add_itext(&info, "ikey1", "ilangtag1", "itranskey1", "istring1"); + + info.time_defined = 1; + info.time.year = 2012; + info.time.month = 1; + info.time.day = 2; + info.time.hour = 3; + info.time.minute = 4; + info.time.second = 5; + + info.phys_defined = 1; + info.phys_x = 1; + info.phys_y = 2; + info.phys_unit = 1; + + lodepng_chunk_create(&info.unknown_chunks_data[0], &info.unknown_chunks_size[0], 3, "uNKa", (unsigned char*)"a00"); + lodepng_chunk_create(&info.unknown_chunks_data[0], &info.unknown_chunks_size[0], 3, "uNKa", (unsigned char*)"a01"); + lodepng_chunk_create(&info.unknown_chunks_data[1], &info.unknown_chunks_size[1], 3, "uNKb", (unsigned char*)"b00"); + lodepng_chunk_create(&info.unknown_chunks_data[2], &info.unknown_chunks_size[2], 3, "uNKc", (unsigned char*)"c00"); + + unsigned error = lodepng::encode(png, &image[0], w, h, state); + ASSERT_NO_PNG_ERROR(error); +} + +std::string extractChunkNames(const std::vector& png) { + const unsigned char* chunk = &png[8]; + const unsigned char* end = &png.back() + 1; + char name[5]; + std::string result = ""; + for(;;) { + lodepng_chunk_type(name, chunk); + result += (std::string(" ") + name); + if(std::string(name) == "IEND") break; + chunk = lodepng_chunk_next_const(chunk, end); + assertTrue(chunk < &png.back(), "jumped out of chunks"); + } + return result; +} + +void testComplexPNG() { + std::cout << "testComplexPNG" << std::endl; + + std::vector png; + createComplexPNG(png); + { + lodepng::State state; + LodePNGInfo& info = state.info_png; + unsigned w, h; + std::vector image; + unsigned error = lodepng::decode(image, w, h, state, &png[0], png.size()); + ASSERT_NO_PNG_ERROR(error); + + ASSERT_EQUALS(16, w); + ASSERT_EQUALS(17, h); + ASSERT_EQUALS(1, info.background_defined); + ASSERT_EQUALS(127, info.background_r); + ASSERT_EQUALS(1, info.time_defined); + ASSERT_EQUALS(2012, info.time.year); + ASSERT_EQUALS(1, info.time.month); + ASSERT_EQUALS(2, info.time.day); + ASSERT_EQUALS(3, info.time.hour); + ASSERT_EQUALS(4, info.time.minute); + ASSERT_EQUALS(5, info.time.second); + ASSERT_EQUALS(1, info.phys_defined); + ASSERT_EQUALS(1, info.phys_x); + ASSERT_EQUALS(2, info.phys_y); + ASSERT_EQUALS(1, info.phys_unit); + + std::string chunknames = extractChunkNames(png); + //std::string expectednames = " IHDR uNKa uNKa PLTE tRNS bKGD pHYs uNKb IDAT tIME tEXt tEXt tEXt iTXt iTXt uNKc IEND"; + std::string expectednames = " IHDR uNKa uNKa PLTE tRNS bKGD pHYs uNKb IDAT tIME zTXt zTXt tEXt iTXt iTXt uNKc IEND"; + ASSERT_EQUALS(expectednames, chunknames); + + ASSERT_EQUALS(3, info.text_num); + ASSERT_STRING_EQUALS("key0", info.text_keys[0]); + ASSERT_STRING_EQUALS("string0", info.text_strings[0]); + ASSERT_STRING_EQUALS("key1", info.text_keys[1]); + ASSERT_STRING_EQUALS("string1", info.text_strings[1]); + ASSERT_STRING_EQUALS("LodePNG", info.text_keys[2]); + ASSERT_STRING_EQUALS(LODEPNG_VERSION_STRING, info.text_strings[2]); + + ASSERT_EQUALS(2, info.itext_num); + ASSERT_STRING_EQUALS("ikey0", info.itext_keys[0]); + ASSERT_STRING_EQUALS("ilangtag0", info.itext_langtags[0]); + ASSERT_STRING_EQUALS("itranskey0", info.itext_transkeys[0]); + ASSERT_STRING_EQUALS("istring0", info.itext_strings[0]); + ASSERT_STRING_EQUALS("ikey1", info.itext_keys[1]); + ASSERT_STRING_EQUALS("ilangtag1", info.itext_langtags[1]); + ASSERT_STRING_EQUALS("itranskey1", info.itext_transkeys[1]); + ASSERT_STRING_EQUALS("istring1", info.itext_strings[1]); + + // TODO: test if unknown chunks listed too + } + + + // Test that if read_text_chunks is disabled, we do not get the texts + { + lodepng::State state; + state.decoder.read_text_chunks = 0; + unsigned w, h; + std::vector image; + unsigned error = lodepng::decode(image, w, h, state, &png[0], png.size()); + ASSERT_NO_PNG_ERROR(error); + + ASSERT_EQUALS(0, state.info_png.text_num); + ASSERT_EQUALS(0, state.info_png.itext_num); + + // But we should still get other values. + ASSERT_EQUALS(2012, state.info_png.time.year); + } +} + +// Tests lodepng_inspect_chunk, and also lodepng_chunk_find to find the chunk to inspect +void testInspectChunk() { + std::cout << "testInspectChunk" << std::endl; + + std::vector png; + createComplexPNG(png); + + const unsigned char* chunk; + lodepng::State state; + LodePNGInfo& info = state.info_png; + state.decoder.read_text_chunks = 0; + lodepng_inspect(0, 0, &state, png.data(), png.size()); + chunk = lodepng_chunk_find(png.data(), png.data() + png.size(), "tIME"); + ASSERT_NOT_EQUALS((const unsigned char*)0, chunk); // should be non-null, since it should find it + ASSERT_EQUALS(0, info.time_defined); + lodepng_inspect_chunk(&state, (size_t)(chunk - png.data()), png.data(), png.size()); + ASSERT_EQUALS(1, info.time_defined); + ASSERT_EQUALS(2012, state.info_png.time.year); + ASSERT_EQUALS(1, info.time.month); + ASSERT_EQUALS(2, info.time.day); + ASSERT_EQUALS(3, info.time.hour); + ASSERT_EQUALS(4, info.time.minute); + ASSERT_EQUALS(5, info.time.second); + + ASSERT_EQUALS(0, info.text_num); + chunk = lodepng_chunk_find_const(png.data(), png.data() + png.size(), "zTXt"); + lodepng_inspect_chunk(&state, (size_t)(chunk - png.data()), png.data(), png.size()); + ASSERT_EQUALS(1, info.text_num); + chunk = lodepng_chunk_find_const(chunk, png.data() + png.size(), "zTXt"); + lodepng_inspect_chunk(&state, (size_t)(chunk - png.data()), png.data(), png.size()); + ASSERT_EQUALS(2, info.text_num); +} + +//test that, by default, it chooses filter type zero for all scanlines if the image has a palette +void testPaletteFilterTypesZero() { + std::cout << "testPaletteFilterTypesZero" << std::endl; + + std::vector png; + createComplexPNG(png); + + std::vector filterTypes; + lodepng::getFilterTypes(filterTypes, png); + + ASSERT_EQUALS(17, filterTypes.size()); + for(size_t i = 0; i < 17; i++) ASSERT_EQUALS(0, filterTypes[i]); +} + +//tests that there are no crashes with auto color chooser in case of palettes with translucency etc... +void testPaletteToPaletteConvert() { + std::cout << "testPaletteToPaletteConvert" << std::endl; + unsigned error; + unsigned w = 16, h = 16; + std::vector image(w * h); + for(size_t i = 0; i < w * h; i++) image[i] = i % 256; + lodepng::State state; + LodePNGInfo& info = state.info_png; + info.color.colortype = state.info_raw.colortype = LCT_PALETTE; + info.color.bitdepth = state.info_raw.bitdepth = 8; + ASSERT_EQUALS(true, state.encoder.auto_convert); + for(size_t i = 0; i < 256; i++) { + lodepng_palette_add(&info.color, i, i, i, i); + } + std::vector png; + for(size_t i = 0; i < 256; i++) { + lodepng_palette_add(&state.info_raw, i, i, i, i); + } + error = lodepng::encode(png, &image[0], w, h, state); + ASSERT_NO_PNG_ERROR(error); +} + +//for this test, you have to choose palette colors that cause LodePNG to actually use a palette, +//so don't use all grayscale colors for example +void doRGBAToPaletteTest(unsigned char* palette, size_t size, LodePNGColorType expectedType = LCT_PALETTE) { + std::cout << "testRGBToPaletteConvert " << size << std::endl; + unsigned error; + unsigned w = size, h = 257 /*LodePNG encodes no palette if image is too small*/; + std::vector image(w * h * 4); + for(size_t i = 0; i < image.size(); i++) image[i] = palette[i % (size * 4)]; + std::vector png; + error = lodepng::encode(png, &image[0], w, h); + ASSERT_NO_PNG_ERROR(error); + lodepng::State state; + std::vector image2; + error = lodepng::decode(image2, w, h, state, png); + ASSERT_NO_PNG_ERROR(error); + ASSERT_EQUALS(image.size(), image2.size()); + for(size_t i = 0; i < image.size(); i++) ASSERT_EQUALS(image[i], image2[i]); + + ASSERT_EQUALS(expectedType, state.info_png.color.colortype); + if(expectedType == LCT_PALETTE) { + + ASSERT_EQUALS(size, state.info_png.color.palettesize); + for(size_t i = 0; i < size * 4; i++) ASSERT_EQUALS(state.info_png.color.palette[i], image[i]); + } +} + +void testRGBToPaletteConvert() { + unsigned char palette1[4] = {1,2,3,4}; + doRGBAToPaletteTest(palette1, 1); + unsigned char palette2[8] = {1,2,3,4, 5,6,7,8}; + doRGBAToPaletteTest(palette2, 2); + unsigned char palette3[12] = {1,1,1,255, 20,20,20,255, 20,20,21,255}; + doRGBAToPaletteTest(palette3, 3); + + std::vector palette; + for(int i = 0; i < 256; i++) { + palette.push_back(i); + palette.push_back(5); + palette.push_back(6); + palette.push_back(128); + } + doRGBAToPaletteTest(&palette[0], 256); + palette.push_back(5); + palette.push_back(6); + palette.push_back(7); + palette.push_back(8); + doRGBAToPaletteTest(&palette[0], 257, LCT_RGBA); +} + +void testColorKeyConvert() { + std::cout << "testColorKeyConvert" << std::endl; + unsigned error; + unsigned w = 32, h = 32; + std::vector image(w * h * 4); + for(size_t i = 0; i < w * h; i++) { + image[i * 4 + 0] = i % 256; + image[i * 4 + 1] = i / 256; + image[i * 4 + 2] = 0; + image[i * 4 + 3] = i == 23 ? 0 : 255; + } + std::vector png; + error = lodepng::encode(png, &image[0], w, h); + ASSERT_NO_PNG_ERROR(error); + + lodepng::State state; + std::vector image2; + error = lodepng::decode(image2, w, h, state, png); + ASSERT_NO_PNG_ERROR(error); + ASSERT_EQUALS(32, w); + ASSERT_EQUALS(32, h); + ASSERT_EQUALS(1, state.info_png.color.key_defined); + ASSERT_EQUALS(23, state.info_png.color.key_r); + ASSERT_EQUALS(0, state.info_png.color.key_g); + ASSERT_EQUALS(0, state.info_png.color.key_b); + ASSERT_EQUALS(image.size(), image2.size()); + for(size_t i = 0; i < image.size(); i++) { + ASSERT_EQUALS(image[i], image2[i]); + } +} + +void testNoAutoConvert() { + std::cout << "testNoAutoConvert" << std::endl; + unsigned error; + unsigned w = 32, h = 32; + std::vector image(w * h * 4); + for(size_t i = 0; i < w * h; i++) { + image[i * 4 + 0] = (i % 2) ? 255 : 0; + image[i * 4 + 1] = (i % 2) ? 255 : 0; + image[i * 4 + 2] = (i % 2) ? 255 : 0; + image[i * 4 + 3] = 0; + } + std::vector png; + lodepng::State state; + state.info_png.color.colortype = LCT_RGBA; + state.info_png.color.bitdepth = 8; + state.encoder.auto_convert = false; + error = lodepng::encode(png, &image[0], w, h, state); + ASSERT_NO_PNG_ERROR(error); + + lodepng::State state2; + std::vector image2; + error = lodepng::decode(image2, w, h, state2, png); + ASSERT_NO_PNG_ERROR(error); + ASSERT_EQUALS(32, w); + ASSERT_EQUALS(32, h); + ASSERT_EQUALS(LCT_RGBA, state2.info_png.color.colortype); + ASSERT_EQUALS(8, state2.info_png.color.bitdepth); + ASSERT_EQUALS(image.size(), image2.size()); + for(size_t i = 0; i < image.size(); i++) { + ASSERT_EQUALS(image[i], image2[i]); + } +} + +unsigned char flipBit(unsigned char c, int bitpos) { + return c ^ (1 << bitpos); +} + +//Test various broken inputs. Returned errors are not checked, what is tested is +//that is doesn't crash, and, when run with valgrind, no memory warnings are +//given. +void testFuzzing() { + std::cout << "testFuzzing" << std::endl; + std::vector png; + createComplexPNG(png); + std::vector broken = png; + std::vector result; + std::map errors; + unsigned w, h; + lodepng::State state; + state.decoder.ignore_crc = 1; + state.decoder.zlibsettings.ignore_adler32 = 1; + for(size_t i = 0; i < png.size(); i++) { + result.clear(); + broken[i] = ~png[i]; + errors[lodepng::decode(result, w, h, state, broken)]++; + broken[i] = 0; + errors[lodepng::decode(result, w, h, state, broken)]++; + for(int j = 0; j < 8; j++) { + broken[i] = flipBit(png[i], j); + errors[lodepng::decode(result, w, h, state, broken)]++; + } + broken[i] = 255; + errors[lodepng::decode(result, w, h, state, broken)]++; + broken[i] = png[i]; //fix it again for the next test + } + std::cout << "testFuzzing shrinking" << std::endl; + broken = png; + while(broken.size() > 0) { + broken.resize(broken.size() - 1); + errors[lodepng::decode(result, w, h, state, broken)]++; + } + + //For fun, print the number of each error + std::cout << "Fuzzing error code counts: "; + for(std::map::iterator it = errors.begin(); it != errors.end(); ++it) { + std::cout << it->first << ":" << it->second << ", "; + } + std::cout << std::endl; +} + +int custom_proof = 0; // global variable for nested function to call. Of course when this test is switched to modern C++ we can use a lamba instead. + +void testCustomZlibCompress() { + std::cout << "testCustomZlibCompress" << std::endl; + Image image; + generateTestImage(image, 5, 5, LCT_RGBA, 8); + + std::vector encoded; + int customcontext = 5; + + struct TestFun { + static unsigned custom_zlib(unsigned char**, size_t*, + const unsigned char*, size_t, + const LodePNGCompressSettings* settings) { + ASSERT_EQUALS(5, *(int*)(settings->custom_context)); + custom_proof = 1; + return 5555; // return a custom error code, which will be converted to an error known to lodepng. + } + }; + + lodepng::State state; + state.encoder.zlibsettings.custom_zlib = TestFun::custom_zlib; + state.encoder.zlibsettings.custom_context = &customcontext; + + custom_proof = 0; + unsigned error = lodepng::encode(encoded, image.data, image.width, image.height, state); + ASSERT_EQUALS(1, custom_proof); // check that the custom zlib was called + + ASSERT_EQUALS(111, error); // expect a known lodepng error, not the custom 5555 +} + +void testCustomZlibCompress2() { + std::cout << "testCustomZlibCompress2" << std::endl; + Image image; + generateTestImage(image, 5, 5, LCT_RGBA, 8); + + std::vector encoded; + + lodepng::State state; + state.encoder.zlibsettings.custom_zlib = lodepng_zlib_compress; + + unsigned error = lodepng::encode(encoded, image.data, image.width, image.height, + state); + ASSERT_NO_PNG_ERROR(error); + + std::vector decoded; + unsigned w, h; + state.decoder.zlibsettings.ignore_adler32 = 0; + state.decoder.ignore_crc = 0; + error = lodepng::decode(decoded, w, h, state, encoded); + ASSERT_NO_PNG_ERROR(error); + ASSERT_EQUALS(5, w); + ASSERT_EQUALS(5, h); +} + +void testCustomDeflate() { + std::cout << "testCustomDeflate" << std::endl; + Image image; + generateTestImage(image, 5, 5, LCT_RGBA, 8); + + std::vector encoded; + int customcontext = 5; + + struct TestFun { + static unsigned custom_deflate(unsigned char**, size_t*, + const unsigned char*, size_t, + const LodePNGCompressSettings* settings) { + ASSERT_EQUALS(5, *(int*)(settings->custom_context)); + custom_proof = 1; + return 5555; // return a custom error code, which will be converted to an error known to lodepng. + } + }; + + lodepng::State state; + state.encoder.zlibsettings.custom_deflate = TestFun::custom_deflate; + state.encoder.zlibsettings.custom_context = &customcontext; + + custom_proof = 0; + unsigned error = lodepng::encode(encoded, image.data, image.width, image.height, state); + ASSERT_EQUALS(1, custom_proof); // check that the custom deflate was called + + ASSERT_EQUALS(111, error); // expect a known lodepng error, not the custom 5555 +} + +void testCustomZlibDecompress() { + std::cout << "testCustomZlibDecompress" << std::endl; + Image image; + generateTestImage(image, 5, 5, LCT_RGBA, 8); + + std::vector encoded; + + unsigned error_enc = lodepng::encode(encoded, image.data, image.width, image.height, + image.colorType, image.bitDepth); + ASSERT_NO_PNG_ERROR_MSG(error_enc, "encoder error not expected"); + + + std::vector decoded; + unsigned w, h; + int customcontext = 5; + + struct TestFun { + static unsigned custom_zlib(unsigned char**, size_t*, + const unsigned char*, size_t, + const LodePNGDecompressSettings* settings) { + ASSERT_EQUALS(5, *(int*)(settings->custom_context)); + custom_proof = 1; + return 5555; // return a custom error code, which will be converted to an error known to lodepng. + } + }; + + lodepng::State state; + state.decoder.zlibsettings.custom_zlib = TestFun::custom_zlib; + state.decoder.zlibsettings.custom_context = &customcontext; + state.decoder.zlibsettings.ignore_adler32 = 0; + state.decoder.ignore_crc = 0; + custom_proof = 0; + unsigned error = lodepng::decode(decoded, w, h, state, encoded); + ASSERT_EQUALS(1, custom_proof); // check that the custom zlib was called + + ASSERT_EQUALS(110, error); +} + +void testCustomInflate() { + std::cout << "testCustomInflate" << std::endl; + Image image; + generateTestImage(image, 5, 5, LCT_RGBA, 8); + + std::vector encoded; + + unsigned error_enc = lodepng::encode(encoded, image.data, image.width, image.height, + image.colorType, image.bitDepth); + ASSERT_NO_PNG_ERROR_MSG(error_enc, "encoder error not expected"); + + + std::vector decoded; + unsigned w, h; + int customcontext = 5; + + struct TestFun { + static unsigned custom_inflate(unsigned char**, size_t*, + const unsigned char*, size_t, + const LodePNGDecompressSettings* settings) { + ASSERT_EQUALS(5, *(int*)(settings->custom_context)); + custom_proof = 1; + return 5555; // return a custom error code, which will be converted to an error known to lodepng. + } + }; + + lodepng::State state; + state.decoder.zlibsettings.custom_inflate = TestFun::custom_inflate; + state.decoder.zlibsettings.custom_context = &customcontext; + state.decoder.zlibsettings.ignore_adler32 = 0; + state.decoder.ignore_crc = 0; + custom_proof = 0; + unsigned error = lodepng::decode(decoded, w, h, state, encoded); + ASSERT_EQUALS(1, custom_proof); // check that the custom zlib was called + + ASSERT_EQUALS(110, error); +} + + +void testChunkUtil() { + std::cout << "testChunkUtil" << std::endl; + std::vector png; + createComplexPNG(png); + + std::vector names[3]; + std::vector > chunks[3]; + + assertNoError(lodepng::getChunks(names, chunks, png)); + + std::vector > chunks2[3]; + chunks2[0].push_back(chunks[2][2]); //zTXt + chunks2[1].push_back(chunks[2][3]); //tEXt + chunks2[2].push_back(chunks[2][4]); //iTXt + + assertNoError(lodepng::insertChunks(png, chunks2)); + + std::string chunknames = extractChunkNames(png); + // chunks2[0] chunks2[1] chunks2[2] + // v v v + std::string expectednames = " IHDR uNKa uNKa zTXt PLTE tRNS bKGD pHYs uNKb tEXt IDAT tIME zTXt zTXt tEXt iTXt iTXt uNKc iTXt IEND"; + ASSERT_EQUALS(expectednames, chunknames); + + std::vector image; + unsigned w, h; + ASSERT_NO_PNG_ERROR(lodepng::decode(image, w, h, png)); +} + +//Test that when decoding to 16-bit per channel, it always uses big endian consistently. +//It should always output big endian, the convention used inside of PNG, even though x86 CPU's are little endian. +void test16bitColorEndianness() { + std::cout << "test16bitColorEndianness" << std::endl; + + //basn0g16.png from the PNG test suite + std::string base64 = "iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAYagMeiWXwAAAF5JREFU" + "eJzV0jEKwDAMQ1E5W+9/xtygk8AoezLVKgSj2Y8/OICnuFcTE2OgOoJgHQiZAN2C9kDKBOgW3AZC" + "JkC3oD2QMgG6BbeBkAnQLWgPpExgP28H7E/0GTjPfwAW2EvYX64rn9cAAAAASUVORK5CYII="; + std::vector png; + fromBase64(png, base64); + unsigned w, h; + std::vector image; + lodepng::State state; + + // Decode from 16-bit gray image to 16-bit per channel RGBA + state.info_raw.bitdepth = 16; + ASSERT_NO_PNG_ERROR(lodepng::decode(image, w, h, state, png)); + ASSERT_EQUALS(0x09, image[8]); + ASSERT_EQUALS(0x00, image[9]); + + // Decode from 16-bit gray image to 16-bit gray raw image (no conversion) + image.clear(); + state = lodepng::State(); + state.decoder.color_convert = false; + ASSERT_NO_PNG_ERROR(lodepng::decode(image, w, h, state, png)); + ASSERT_EQUALS(0x09, image[2]); + ASSERT_EQUALS(0x00, image[3]); + + // Decode from 16-bit per channel RGB image to 16-bit per channel RGBA + base64 = "iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAIAAACsiDHgAAAABGdBTUEAAYagMeiWXwAAAANzQklU" + "DQ0N0DeNwQAAAH5JREFUeJztl8ENxEAIAwcJ6cpI+q8qKeNepAgelq2dCjz4AdQM1jRcf3WIDQ13" + "qUNsiBBQZ1gR0cARUFIz3pug3586wo5+rOcfIaBOsCSggSOgpcB8D4D3R9DgfUyECIhDbAhp4Ajo" + "KPD+CBq8P4IG72MiQkCdYUVEA0dAyQcwUyZpXH92ZwAAAABJRU5ErkJggg=="; //cs3n2c16.png + png.clear(); + fromBase64(png, base64); + image.clear(); + state = lodepng::State(); + state.info_raw.bitdepth = 16; + ASSERT_NO_PNG_ERROR(lodepng::decode(image, w, h, state, png)); + ASSERT_EQUALS(0x1f, image[258]); + ASSERT_EQUALS(0xf9, image[259]); + + // Decode from 16-bit per channel RGB image to 16-bit per channel RGBA raw image (no conversion) + image.clear(); + state = lodepng::State(); + state.decoder.color_convert = false; + ASSERT_NO_PNG_ERROR(lodepng::decode(image, w, h, state, png)); + + ASSERT_EQUALS(0x1f, image[194]); + ASSERT_EQUALS(0xf9, image[195]); + + image.clear(); + state = lodepng::State(); + + // Decode from palette image to 16-bit per channel RGBA + base64 = "iVBORw0KGgoAAAANSUhEUgAAAAcAAAAHAgMAAAC5PL9AAAAABGdBTUEAAYagMeiWXwAAAANzQklU" + "BAQEd/i1owAAAAxQTFRF/wB3AP93//8AAAD/G0OznAAAABpJREFUeJxj+P+H4WoMw605DDfmgEgg" + "+/8fAHF5CrkeXW0HAAAAAElFTkSuQmCC"; //s07n3p02.png + png.clear(); + fromBase64(png, base64); + image.clear(); + state = lodepng::State(); + state.info_raw.bitdepth = 16; + ASSERT_NO_PNG_ERROR(lodepng::decode(image, w, h, state, png)); + ASSERT_EQUALS(0x77, image[84]); + ASSERT_EQUALS(0x77, image[85]); +} + +void testPredefinedFilters() { + size_t w = 32, h = 32; + std::cout << "testPredefinedFilters" << std::endl; + Image image; + generateTestImage(image, w, h, LCT_RGBA, 8); + + // everything to filter type '3' + std::vector predefined(h, 3); + lodepng::State state; + state.encoder.filter_strategy = LFS_PREDEFINED; + state.encoder.filter_palette_zero = 0; + state.encoder.predefined_filters = &predefined[0]; + + std::vector png; + unsigned error = lodepng::encode(png, &image.data[0], w, h, state); + assertNoError(error); + + std::vector outfilters; + error = lodepng::getFilterTypes(outfilters, png); + assertNoError(error); + + ASSERT_EQUALS(outfilters.size(), h); + for(size_t i = 0; i < h; i++) ASSERT_EQUALS(3, outfilters[i]); +} + +void testEncoderErrors() { + std::cout << "testEncoderErrors" << std::endl; + + std::vector png; + unsigned w = 32, h = 32; + Image image; + generateTestImage(image, w, h); + + lodepng::State def; + + lodepng::State state; + + ASSERT_EQUALS(0, lodepng::encode(png, &image.data[0], w, h, state)); + + // test window sizes + state.encoder.zlibsettings.windowsize = 0; + ASSERT_EQUALS(60, lodepng::encode(png, &image.data[0], w, h, state)); + state.encoder.zlibsettings.windowsize = 65536; + ASSERT_EQUALS(60, lodepng::encode(png, &image.data[0], w, h, state)); + state.encoder.zlibsettings.windowsize = 1000; // not power of two + ASSERT_EQUALS(90, lodepng::encode(png, &image.data[0], w, h, state)); + state.encoder.zlibsettings.windowsize = 256; + ASSERT_EQUALS(0, lodepng::encode(png, &image.data[0], w, h, state)); + + state = def; + state.info_png.color.bitdepth = 3; + ASSERT_EQUALS(37, lodepng::encode(png, &image.data[0], w, h, state)); + + state = def; + state.info_png.color.colortype = (LodePNGColorType)5; + ASSERT_EQUALS(31, lodepng::encode(png, &image.data[0], w, h, state)); + + state = def; + state.info_png.color.colortype = LCT_PALETTE; + ASSERT_EQUALS(68, lodepng::encode(png, &image.data[0], w, h, state)); + + state = def; + state.info_png.interlace_method = 0; + ASSERT_EQUALS(0, lodepng::encode(png, &image.data[0], w, h, state)); + state.info_png.interlace_method = 1; + ASSERT_EQUALS(0, lodepng::encode(png, &image.data[0], w, h, state)); + state.info_png.interlace_method = 2; + ASSERT_EQUALS(71, lodepng::encode(png, &image.data[0], w, h, state)); + + state = def; + state.encoder.zlibsettings.btype = 0; + ASSERT_EQUALS(0, lodepng::encode(png, &image.data[0], w, h, state)); + state.encoder.zlibsettings.btype = 1; + ASSERT_EQUALS(0, lodepng::encode(png, &image.data[0], w, h, state)); + state.encoder.zlibsettings.btype = 2; + ASSERT_EQUALS(0, lodepng::encode(png, &image.data[0], w, h, state)); + state.encoder.zlibsettings.btype = 3; + ASSERT_EQUALS(61, lodepng::encode(png, &image.data[0], w, h, state)); +} + +void addColor(std::vector& colors, unsigned char r, unsigned char g, unsigned char b, unsigned char a) { + colors.push_back(r); + colors.push_back(g); + colors.push_back(b); + colors.push_back(a); +} + +void addColor16(std::vector& colors, unsigned short r, unsigned short g, unsigned short b, unsigned short a) { + colors.push_back(r & 255); + colors.push_back((r >> 8) & 255); + colors.push_back(g & 255); + colors.push_back((g >> 8) & 255); + colors.push_back(b & 255); + colors.push_back((b >> 8) & 255); + colors.push_back(a & 255); + colors.push_back((a >> 8) & 255); +} + +// Tests auto_convert +// colors is in RGBA, inbitdepth must be 8 or 16, the amount of bits per channel. +// colortype and bitdepth are the expected values. insize is amount of pixels. So the amount of bytes is insize * 4 * (inbitdepth / 8) +void testAutoColorModel(const std::vector& colors, unsigned inbitdepth, LodePNGColorType colortype, unsigned bitdepth, bool key) { + std::cout << "testAutoColorModel " << inbitdepth << " " << colortype << " " << bitdepth << " " << key << std::endl; + size_t innum = colors.size() / 4 * inbitdepth / 8; + size_t num = innum < 65536 ? 65536 : innum; // Make image bigger so the convert doesn't avoid palette due to small image. + std::vector colors2(num * 4 * (inbitdepth / 8)); + for(size_t i = 0; i < colors2.size(); i++) colors2[i] = colors[i % colors.size()]; + + std::vector png; + lodepng::encode(png, colors2, num, 1, LCT_RGBA, inbitdepth); + + // now extract the color type it chose + unsigned w, h; + lodepng::State state; + std::vector decoded; + lodepng::decode(decoded, w, h, state, png); + ASSERT_EQUALS(num, w); + ASSERT_EQUALS(1, h); + ASSERT_EQUALS(colortype, state.info_png.color.colortype); + ASSERT_EQUALS(bitdepth, state.info_png.color.bitdepth); + ASSERT_EQUALS(key, state.info_png.color.key_defined); + // also check that the PNG decoded correctly and has same colors as input + if(inbitdepth == 8) { for(size_t i = 0; i < colors.size(); i++) ASSERT_EQUALS(colors[i], decoded[i]); } + else { for(size_t i = 0; i < colors.size() / 2; i++) ASSERT_EQUALS(colors[i * 2], decoded[i]); } +} + +void testAutoColorModels() { + // 1-bit gray + std::vector gray1; + for(size_t i = 0; i < 2; i++) addColor(gray1, i * 255, i * 255, i * 255, 255); + testAutoColorModel(gray1, 8, LCT_GREY, 1, false); + + // 2-bit gray + std::vector gray2; + for(size_t i = 0; i < 4; i++) addColor(gray2, i * 85, i * 85, i * 85, 255); + testAutoColorModel(gray2, 8, LCT_GREY, 2, false); + + // 4-bit gray + std::vector gray4; + for(size_t i = 0; i < 16; i++) addColor(gray4, i * 17, i * 17, i * 17, 255); + testAutoColorModel(gray4, 8, LCT_GREY, 4, false); + + // 8-bit gray + std::vector gray8; + for(size_t i = 0; i < 256; i++) addColor(gray8, i, i, i, 255); + testAutoColorModel(gray8, 8, LCT_GREY, 8, false); + + // 16-bit gray + std::vector gray16; + for(size_t i = 0; i < 257; i++) addColor16(gray16, i, i, i, 65535); + testAutoColorModel(gray16, 16, LCT_GREY, 16, false); + + // 8-bit gray+alpha + std::vector gray8a; + for(size_t i = 0; i < 17; i++) addColor(gray8a, i, i, i, i); + testAutoColorModel(gray8a, 8, LCT_PALETTE, 8, false); + // palette not possible, becomes gray alpha + for(size_t i = 0; i < 256; i++) addColor(gray8a, i, i, i, i ^ 1); + testAutoColorModel(gray8a, 8, LCT_GREY_ALPHA, 8, false); + + // 16-bit gray+alpha + std::vector gray16a; + for(size_t i = 0; i < 257; i++) addColor16(gray16a, i, i, i, i); + testAutoColorModel(gray16a, 16, LCT_GREY_ALPHA, 16, false); + + + // various palette tests + std::vector palette; + addColor(palette, 0, 0, 1, 255); + testAutoColorModel(palette, 8, LCT_PALETTE, 1, false); + addColor(palette, 0, 0, 2, 255); + testAutoColorModel(palette, 8, LCT_PALETTE, 1, false); + for(int i = 3; i <= 4; i++) addColor(palette, 0, 0, i, 255); + testAutoColorModel(palette, 8, LCT_PALETTE, 2, false); + for(int i = 5; i <= 7; i++) addColor(palette, 0, 0, i, 255); + testAutoColorModel(palette, 8, LCT_PALETTE, 4, false); + for(int i = 8; i <= 17; i++) addColor(palette, 0, 0, i, 255); + testAutoColorModel(palette, 8, LCT_PALETTE, 8, false); + addColor(palette, 0, 0, 18, 0); // transparent + testAutoColorModel(palette, 8, LCT_PALETTE, 8, false); + addColor(palette, 0, 0, 18, 1); // translucent + testAutoColorModel(palette, 8, LCT_PALETTE, 8, false); + + // 1-bit gray + alpha not possible, becomes palette + std::vector gray1a; + for(size_t i = 0; i < 2; i++) addColor(gray1a, i, i, i, 128); + testAutoColorModel(gray1a, 8, LCT_PALETTE, 1, false); + + // 2-bit gray + alpha not possible, becomes palette + std::vector gray2a; + for(size_t i = 0; i < 4; i++) addColor(gray2a, i, i, i, 128); + testAutoColorModel(gray2a, 8, LCT_PALETTE, 2, false); + + // 4-bit gray + alpha not possible, becomes palette + std::vector gray4a; + for(size_t i = 0; i < 16; i++) addColor(gray4a, i, i, i, 128); + testAutoColorModel(gray4a, 8, LCT_PALETTE, 4, false); + + // 8-bit rgb + std::vector rgb = gray8; + addColor(rgb, 255, 0, 0, 255); + testAutoColorModel(rgb, 8, LCT_RGB, 8, false); + + // 8-bit rgb + key + std::vector rgb_key = rgb; + addColor(rgb_key, 128, 0, 0, 0); + testAutoColorModel(rgb_key, 8, LCT_RGB, 8, true); + + // 8-bit rgb, not key due to edge case: single key color, but opaque color has same RGB value + std::vector rgb_key2 = rgb_key; + addColor(rgb_key2, 128, 0, 0, 255); // same color but opaque ==> no more key + testAutoColorModel(rgb_key2, 8, LCT_RGBA, 8, false); + + // 8-bit rgb, not key due to semi translucent + std::vector rgb_key3 = rgb_key; + addColor(rgb_key3, 128, 0, 0, 255); // semi-translucent ==> no more key + testAutoColorModel(rgb_key3, 8, LCT_RGBA, 8, false); + + // 8-bit rgb, not key due to multiple transparent colors + std::vector rgb_key4 = rgb_key; + addColor(rgb_key4, 128, 0, 0, 255); + addColor(rgb_key4, 129, 0, 0, 255); // two different transparent colors ==> no more key + testAutoColorModel(rgb_key4, 8, LCT_RGBA, 8, false); + + // 1-bit gray with key + std::vector gray1_key = gray1; + gray1_key[7] = 0; + testAutoColorModel(gray1_key, 8, LCT_GREY, 1, true); + + // 2-bit gray with key + std::vector gray2_key = gray2; + gray2_key[7] = 0; + testAutoColorModel(gray2_key, 8, LCT_GREY, 2, true); + + // 4-bit gray with key + std::vector gray4_key = gray4; + gray4_key[7] = 0; + testAutoColorModel(gray4_key, 8, LCT_GREY, 4, true); + + // 8-bit gray with key + std::vector gray8_key = gray8; + gray8_key[7] = 0; + testAutoColorModel(gray8_key, 8, LCT_GREY, 8, true); + + // 16-bit gray with key + std::vector gray16_key = gray16; + gray16_key[14] = gray16_key[15] = 0; + testAutoColorModel(gray16_key, 16, LCT_GREY, 16, true); + + // a single 16-bit color, can't become palette due to being 16-bit + std::vector small16; + addColor16(small16, 1, 0, 0, 65535); + testAutoColorModel(small16, 16, LCT_RGB, 16, false); + + std::vector small16a; + addColor16(small16a, 1, 0, 0, 1); + testAutoColorModel(small16a, 16, LCT_RGBA, 16, false); + + // what we provide as 16-bit is actually representable as 8-bit, so 8-bit palette expected for single color + std::vector not16; + addColor16(not16, 257, 257, 257, 0); + testAutoColorModel(not16, 16, LCT_PALETTE, 1, false); + + // the rgb color is representable as 8-bit, but the alpha channel only as 16-bit, so ensure it uses 16-bit and not palette for this single color + std::vector alpha16; + addColor16(alpha16, 257, 0, 0, 10000); + testAutoColorModel(alpha16, 16, LCT_RGBA, 16, false); + + // 1-bit gray, with attempt to get color key but can't do it due to opaque color with same value + std::vector gray1k; + addColor(gray1k, 0, 0, 0, 255); + addColor(gray1k, 255, 255, 255, 255); + addColor(gray1k, 255, 255, 255, 0); + testAutoColorModel(gray1k, 8, LCT_PALETTE, 2, false); +} + +void testPaletteToPaletteDecode() { + std::cout << "testPaletteToPaletteDecode" << std::endl; + // It's a bit big for a 2x2 image... but this tests needs one with 256 palette entries in it. + std::string base64 = "iVBORw0KGgoAAAANSUhEUgAAAAIAAAACCAMAAABFaP0WAAAAA3NCSVQICAjb4U/gAAADAFBMVEUA" + "AAAAADMAAGYAAJkAAMwAAP8AMwAAMzMAM2YAM5kAM8wAM/8AZgAAZjMAZmYAZpkAZswAZv8AmQAA" + "mTMAmWYAmZkAmcwAmf8AzAAAzDMAzGYAzJkAzMwAzP8A/wAA/zMA/2YA/5kA/8wA//8zAAAzADMz" + "AGYzAJkzAMwzAP8zMwAzMzMzM2YzM5kzM8wzM/8zZgAzZjMzZmYzZpkzZswzZv8zmQAzmTMzmWYz" + "mZkzmcwzmf8zzAAzzDMzzGYzzJkzzMwzzP8z/wAz/zMz/2Yz/5kz/8wz//9mAABmADNmAGZmAJlm" + "AMxmAP9mMwBmMzNmM2ZmM5lmM8xmM/9mZgBmZjNmZmZmZplmZsxmZv9mmQBmmTNmmWZmmZlmmcxm" + "mf9mzABmzDNmzGZmzJlmzMxmzP9m/wBm/zNm/2Zm/5lm/8xm//+ZAACZADOZAGaZAJmZAMyZAP+Z" + "MwCZMzOZM2aZM5mZM8yZM/+ZZgCZZjOZZmaZZpmZZsyZZv+ZmQCZmTOZmWaZmZmZmcyZmf+ZzACZ" + "zDOZzGaZzJmZzMyZzP+Z/wCZ/zOZ/2aZ/5mZ/8yZ///MAADMADPMAGbMAJnMAMzMAP/MMwDMMzPM" + "M2bMM5nMM8zMM//MZgDMZjPMZmbMZpnMZszMZv/MmQDMmTPMmWbMmZnMmczMmf/MzADMzDPMzGbM" + "zJnMzMzMzP/M/wDM/zPM/2bM/5nM/8zM////AAD/ADP/AGb/AJn/AMz/AP//MwD/MzP/M2b/M5n/" + "M8z/M///ZgD/ZjP/Zmb/Zpn/Zsz/Zv//mQD/mTP/mWb/mZn/mcz/mf//zAD/zDP/zGb/zJn/zMz/" + "zP///wD//zP//2b//5n//8z///8AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAABlenwdAAABAHRSTlP/////////////////////////" + "////////////////////////////////////////////////////////////////////////////" + "////////////////////////////////////////////////////////////////////////////" + "////////////////////////////////////////////////////////////////////////////" + "//////////////////////////////////8AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAAAAG8mZagAAAAlwSFlzAAAOTQAADpwB3vacVwAAAA5JREFUCJlj2CLHwHodAATjAa+k" + "lTE5AAAAAElFTkSuQmCC"; + std::vector png; + fromBase64(png, base64); + + std::vector image; + unsigned width, height; + unsigned error = lodepng::decode(image, width, height, png, LCT_PALETTE, 8); + ASSERT_EQUALS(0, error); + ASSERT_EQUALS(2, width); + ASSERT_EQUALS(2, height); + ASSERT_EQUALS(180, image[0]); + ASSERT_EQUALS(30, image[1]); + ASSERT_EQUALS(5, image[2]); + ASSERT_EQUALS(215, image[3]); +} + +//2-bit palette +void testPaletteToPaletteDecode2() { + std::cout << "testPaletteToPaletteDecode2" << std::endl; + std::string base64 = "iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAgMAAAAOFJJnAAAADFBMVEX/AAAA/wAAAP/////7AGD2AAAAE0lEQVR4AWMQhAKG3VCALDIqAgDl2WYBCQHY9gAAAABJRU5ErkJggg=="; + std::vector png; + fromBase64(png, base64); + + std::vector image; + unsigned width, height; + unsigned error = lodepng::decode(image, width, height, png, LCT_PALETTE, 8); + ASSERT_EQUALS(0, error); + ASSERT_EQUALS(32, width); + ASSERT_EQUALS(32, height); + ASSERT_EQUALS(0, image[0]); + ASSERT_EQUALS(1, image[1]); + + //Now add a user-specified output palette, that differs from the input palette. That should give error 82. + LodePNGState state; + lodepng_state_init(&state); + state.info_raw.colortype = LCT_PALETTE; + state.info_raw.bitdepth = 8; + lodepng_palette_add(&state.info_raw, 0, 0, 0, 255); + lodepng_palette_add(&state.info_raw, 1, 1, 1, 255); + lodepng_palette_add(&state.info_raw, 2, 2, 2, 255); + lodepng_palette_add(&state.info_raw, 3, 3, 3, 255); + unsigned char* image2 = 0; + unsigned error2 = lodepng_decode(&image2, &width, &height, &state, &png[0], png.size()); + lodepng_state_cleanup(&state); + ASSERT_EQUALS(82, error2); + free(image2); +} + +void assertColorProfileDataEqual(const lodepng::State& a, const lodepng::State& b) { + ASSERT_EQUALS(a.info_png.gama_defined, b.info_png.gama_defined); + if(a.info_png.gama_defined) { + ASSERT_EQUALS(a.info_png.gama_gamma, b.info_png.gama_gamma); + } + + ASSERT_EQUALS(a.info_png.chrm_defined, b.info_png.chrm_defined); + if(a.info_png.chrm_defined) { + ASSERT_EQUALS(a.info_png.chrm_white_x, b.info_png.chrm_white_x); + ASSERT_EQUALS(a.info_png.chrm_white_y, b.info_png.chrm_white_y); + ASSERT_EQUALS(a.info_png.chrm_red_x, b.info_png.chrm_red_x); + ASSERT_EQUALS(a.info_png.chrm_red_y, b.info_png.chrm_red_y); + ASSERT_EQUALS(a.info_png.chrm_green_x, b.info_png.chrm_green_x); + ASSERT_EQUALS(a.info_png.chrm_green_y, b.info_png.chrm_green_y); + ASSERT_EQUALS(a.info_png.chrm_blue_x, b.info_png.chrm_blue_x); + ASSERT_EQUALS(a.info_png.chrm_blue_y, b.info_png.chrm_blue_y); + } + + ASSERT_EQUALS(a.info_png.srgb_defined, b.info_png.srgb_defined); + if(a.info_png.srgb_defined) { + ASSERT_EQUALS(a.info_png.srgb_intent, b.info_png.srgb_intent); + } + + ASSERT_EQUALS(a.info_png.iccp_defined, b.info_png.iccp_defined); + if(a.info_png.iccp_defined) { + //ASSERT_EQUALS(std::string(a.info_png.iccp_name), std::string(b.info_png.iccp_name)); + ASSERT_EQUALS(a.info_png.iccp_profile_size, b.info_png.iccp_profile_size); + for(size_t i = 0; i < a.info_png.iccp_profile_size; ++i) { + ASSERT_EQUALS(a.info_png.iccp_profile[i], b.info_png.iccp_profile[i]); + } + } +} + +// Tests the gAMA, cHRM, sRGB, iCCP chunks +void testColorProfile() { + std::cout << "testColorProfile" << std::endl; + { + unsigned error; + unsigned w = 32, h = 32; + std::vector image(w * h * 4); + for(size_t i = 0; i < image.size(); i++) image[i] = i & 255; + std::vector png; + lodepng::State state; + state.info_png.gama_defined = 1; + state.info_png.gama_gamma = 12345; + state.info_png.chrm_defined = 1; + state.info_png.chrm_white_x = 10; + state.info_png.chrm_white_y = 20; + state.info_png.chrm_red_x = 30; + state.info_png.chrm_red_y = 40; + state.info_png.chrm_green_x = 100000; + state.info_png.chrm_green_y = 200000; + state.info_png.chrm_blue_x = 300000; + state.info_png.chrm_blue_y = 400000; + error = lodepng::encode(png, &image[0], w, h, state); + ASSERT_NO_PNG_ERROR(error); + + lodepng::State state2; + std::vector image2; + error = lodepng::decode(image2, w, h, state2, png); + ASSERT_NO_PNG_ERROR(error); + assertColorProfileDataEqual(state, state2); + ASSERT_EQUALS(32, w); + ASSERT_EQUALS(32, h); + ASSERT_EQUALS(image.size(), image2.size()); + for(size_t i = 0; i < image.size(); i++) ASSERT_EQUALS(image[i], image2[i]); + } + { + unsigned error; + unsigned w = 32, h = 32; + std::vector image(w * h * 4); + for(size_t i = 0; i < image.size(); i++) image[i] = i & 255; + std::vector png; + lodepng::State state; + state.info_png.srgb_defined = 1; + state.info_png.srgb_intent = 2; + error = lodepng::encode(png, &image[0], w, h, state); + ASSERT_NO_PNG_ERROR(error); + + lodepng::State state2; + std::vector image2; + error = lodepng::decode(image2, w, h, state2, png); + ASSERT_NO_PNG_ERROR(error); + assertColorProfileDataEqual(state, state2); + ASSERT_EQUALS(32, w); + ASSERT_EQUALS(32, h); + ASSERT_EQUALS(image.size(), image2.size()); + for(size_t i = 0; i < image.size(); i++) ASSERT_EQUALS(image[i], image2[i]); + } + { + unsigned error; + unsigned w = 32, h = 32; + std::vector image(w * h * 4); + for(size_t i = 0; i < image.size(); i++) image[i] = i & 255; + std::vector png; + lodepng::State state; + state.info_png.iccp_defined = 1; + std::string testprofile = "0123456789abcdefRGB fake iccp profile for testing"; + testprofile[0] = testprofile[1] = 0; + lodepng_set_icc(&state.info_png, "test", (const unsigned char*)testprofile.c_str(), testprofile.size()); + error = lodepng::encode(png, &image[0], w, h, state); + ASSERT_NO_PNG_ERROR(error); + + lodepng::State state2; + std::vector image2; + error = lodepng::decode(image2, w, h, state2, png); + ASSERT_NO_PNG_ERROR(error); + assertColorProfileDataEqual(state, state2); + ASSERT_EQUALS(32, w); + ASSERT_EQUALS(32, h); + ASSERT_EQUALS(image.size(), image2.size()); + for(size_t i = 0; i < image.size(); i++) ASSERT_EQUALS(image[i], image2[i]); + } + + // grayscale ICC profile + { + unsigned error; + unsigned w = 32, h = 32; + std::vector image(w * h * 4); + for(size_t i = 0; i + 4 <= image.size(); i += 4) { + image[i] = image[i + 1] = image[i + 2] = image[i + 3] = i; + } + std::vector png; + lodepng::State state; + state.info_png.iccp_defined = 1; + std::string testprofile = "0123456789abcdefGRAYfake iccp profile for testing"; + testprofile[0] = testprofile[1] = 0; + lodepng_set_icc(&state.info_png, "test", (const unsigned char*)testprofile.c_str(), testprofile.size()); + error = lodepng::encode(png, &image[0], w, h, state); + ASSERT_NO_PNG_ERROR(error); + + lodepng::State state2; + std::vector image2; + error = lodepng::decode(image2, w, h, state2, png); + ASSERT_NO_PNG_ERROR(error); + assertColorProfileDataEqual(state, state2); + ASSERT_EQUALS(32, w); + ASSERT_EQUALS(32, h); + ASSERT_EQUALS(image.size(), image2.size()); + for(size_t i = 0; i < image.size(); i++) ASSERT_EQUALS(image[i], image2[i]); + } + + // grayscale ICC profile, using an input image with grayscale colors but that + // would normally benefit from a palette (which auto_convert would normally + // choose). But the PNG spec does not allow combining palette with GRAY ICC + // profile, so the encoder should not choose to use palette after all. + { + unsigned error; + unsigned w = 32, h = 32; + std::vector image(w * h * 4); + int colors[3] = {0, 3, 133}; + for(size_t i = 0; i + 4 <= image.size(); i += 4) { + image[i] = image[i + 1] = image[i + 2] = image[i + 3] = colors[(i / 4) % 3]; + } + std::vector png; + lodepng::State state; + state.info_png.iccp_defined = 1; + std::string testprofile = "0123456789abcdefGRAYfake iccp profile for testing"; + testprofile[0] = testprofile[1] = 0; + lodepng_set_icc(&state.info_png, "test", (const unsigned char*)testprofile.c_str(), testprofile.size()); + error = lodepng::encode(png, &image[0], w, h, state); + ASSERT_NO_PNG_ERROR(error); + + lodepng::State state2; + std::vector image2; + error = lodepng::decode(image2, w, h, state2, png); + ASSERT_NO_PNG_ERROR(error); + assertColorProfileDataEqual(state, state2); + ASSERT_NOT_EQUALS(LCT_PALETTE, state2.info_png.color.colortype); + } + + // RGB ICC profile, using an input image with grayscale colors: the encoder + // is forced to choose an RGB color type anyway with auto_convert + { + unsigned error; + unsigned w = 32, h = 32; + std::vector image(w * h * 4); + for(size_t i = 0; i + 4 <= image.size(); i += 4) { + image[i] = image[i + 1] = image[i + 2] = (i / 4) & 255; + image[i + 3] = 255; + } + std::vector png; + lodepng::State state; + state.info_png.iccp_defined = 1; + std::string testprofile = "0123456789abcdefRGB fake iccp profile for testing"; + testprofile[0] = testprofile[1] = 0; + lodepng_set_icc(&state.info_png, "test", (const unsigned char*)testprofile.c_str(), testprofile.size()); + error = lodepng::encode(png, &image[0], w, h, state); + ASSERT_NO_PNG_ERROR(error); + + lodepng::State state2; + std::vector image2; + error = lodepng::decode(image2, w, h, state2, png); + ASSERT_NO_PNG_ERROR(error); + assertColorProfileDataEqual(state, state2); + // LCT_RGB or LCT_PALETTE are both ok, gray is not (it likely chooses palette in practice) + ASSERT_NOT_EQUALS(LCT_GREY, state2.info_png.color.colortype); + ASSERT_NOT_EQUALS(LCT_GREY_ALPHA, state2.info_png.color.colortype); + } + + // Encoder must give error when forcing invalid combination of color/gray + // PNG with gray/color ICC Profile + { + unsigned error; + unsigned w = 32, h = 32; + std::vector image(w * h * 4); + int colors[3] = {0, 5, 33}; + for(size_t i = 0; i + 4 <= image.size(); i += 4) { + image[i] = 255; + image[i + 1] = image[i + 2] = image[i + 3] = colors[(i / 4) % 3]; + } + std::vector png; + lodepng::State state; + state.info_png.iccp_defined = 1; + std::string testprofile = "0123456789abcdefGRAYfake iccp profile for testing"; + testprofile[0] = testprofile[1] = 0; + lodepng_set_icc(&state.info_png, "test", (const unsigned char*)testprofile.c_str(), testprofile.size()); + error = lodepng::encode(png, &image[0], w, h, state); + ASSERT_NOT_EQUALS(0, error); // must give error due to color image input with gray profile + } +} + +// r, g, b is input background color to encoder, given in png color model +// r2, g2, b2 is expected decoded background color, in color model it auto chose if auto_convert is on +// pixels must be given in mode_raw color format +void testBkgdChunk(unsigned r, unsigned g, unsigned b, + unsigned r2, unsigned g2, unsigned b2, + const std::vector& pixels, + unsigned w, unsigned h, + const LodePNGColorMode& mode_raw, + const LodePNGColorMode& mode_png, + bool auto_convert, bool expect_encoder_error = false) { + unsigned error; + + lodepng::State state; + LodePNGInfo& info = state.info_png; + lodepng_color_mode_copy(&info.color, &mode_png); + lodepng_color_mode_copy(&state.info_raw, &mode_raw); + state.encoder.auto_convert = auto_convert; + + info.background_defined = 1; + info.background_r = r; + info.background_g = g; + info.background_b = b; + + std::vector png; + error = lodepng::encode(png, pixels, w, h, state); + if(expect_encoder_error) { + ASSERT_NOT_EQUALS(0, error); + return; + } + ASSERT_NO_PNG_ERROR(error); + + lodepng::State state2; + LodePNGInfo& info2 = state2.info_png; + state2.info_raw.colortype = LCT_RGBA; + state2.info_raw.bitdepth = 16; + unsigned w2, h2; + std::vector image2; + error = lodepng::decode(image2, w2, h2, state2, &png[0], png.size()); + ASSERT_NO_PNG_ERROR(error); + + ASSERT_EQUALS(w, w2); + ASSERT_EQUALS(h, h2); + ASSERT_EQUALS(1, info2.background_defined); + ASSERT_EQUALS(r2, info2.background_r); + ASSERT_EQUALS(g2, info2.background_g); + ASSERT_EQUALS(b2, info2.background_b); + + // compare pixels in the "raw" color model + LodePNGColorMode mode_decoded; lodepng_color_mode_init(&mode_decoded); mode_decoded.bitdepth = 16; mode_decoded.colortype = LCT_RGBA; + std::vector image3((w * h * lodepng_get_bpp(&mode_raw) + 7) / 8); + error = lodepng_convert(image3.data(), image2.data(), &mode_raw, &mode_decoded, w, h); + ASSERT_NO_PNG_ERROR(error); + ASSERT_EQUALS(pixels.size(), image3.size()); + for(size_t i = 0; i < image3.size(); i++) { + ASSERT_EQUALS((int)image3[i], (int)pixels[i]); + } +} + +// r, g, b is input background color to encoder, given in png color model +// r2, g2, b2 is expected decoded background color, in color model it auto chose if auto_convert is on +void testBkgdChunk(unsigned r, unsigned g, unsigned b, + unsigned r2, unsigned g2, unsigned b2, + LodePNGColorType type_pixels, unsigned bitdepth_pixels, + LodePNGColorType type_raw, unsigned bitdepth_raw, + LodePNGColorType type_png, unsigned bitdepth_png, + bool auto_convert, bool expect_encoder_error = false) { + unsigned error; + Image image; + generateTestImageRequiringColorType16(image, type_pixels, bitdepth_pixels, false); + + LodePNGColorMode mode_raw; lodepng_color_mode_init(&mode_raw); mode_raw.bitdepth = bitdepth_raw; mode_raw.colortype = type_raw; + LodePNGColorMode mode_test; lodepng_color_mode_init(&mode_test); mode_test.bitdepth = 16; mode_test.colortype = LCT_RGBA; + LodePNGColorMode mode_png; lodepng_color_mode_init(&mode_png); mode_png.bitdepth = bitdepth_png; mode_png.colortype = type_png; + std::vector temp((image.width * image.height * lodepng_get_bpp(&mode_raw) + 7) / 8); + error = lodepng_convert(temp.data(), image.data.data(), &mode_raw, &mode_test, image.width, image.height); + ASSERT_NO_PNG_ERROR(error); + image.data = temp; + + testBkgdChunk(r, g, b, r2, g2, b2, + image.data, image.width, image.height, + mode_raw, mode_png, auto_convert, expect_encoder_error); +} + +void testBkgdChunk() { + std::cout << "testBkgdChunk" << std::endl; + // color param order is: generated, raw, png ( == bKGD) + // here generated means: what color values the pixels will get, so what auto_convert will make it choose + testBkgdChunk(255, 0, 0, 255, 0, 0, LCT_RGBA, 8, LCT_RGBA, 8, LCT_RGBA, 8, true); + testBkgdChunk(255, 0, 0, 255, 0, 0, LCT_RGBA, 8, LCT_RGB, 8, LCT_RGB, 8, true); + testBkgdChunk(255, 0, 0, 255, 0, 0, LCT_RGB, 8, LCT_RGB, 8, LCT_RGB, 8, true); + testBkgdChunk(255, 255, 255, 1, 1, 1, LCT_GREY, 1, LCT_RGB, 8, LCT_RGB, 8, true); + testBkgdChunk(255, 255, 255, 3, 3, 3, LCT_GREY, 2, LCT_RGB, 8, LCT_RGB, 8, true); + testBkgdChunk(255, 255, 255, 15, 15, 15, LCT_GREY, 4, LCT_RGB, 8, LCT_RGB, 8, true); + testBkgdChunk(255, 255, 255, 255, 255, 255, LCT_GREY, 8, LCT_RGB, 8, LCT_RGB, 8, true); + testBkgdChunk(255, 255, 255, 65535, 65535, 65535, LCT_GREY, 16, LCT_RGB, 16, LCT_RGB, 8, true); + testBkgdChunk(123, 0, 0, 123, 0, 0, LCT_GREY, 1, LCT_RGB, 8, LCT_RGB, 8, true); + testBkgdChunk(170, 170, 170, 2, 2, 2, LCT_GREY, 1, LCT_RGB, 8, LCT_RGB, 8, true); // 170 = value 2 in 2-bit + + // without auto_convert. Note that it will still convert if different colortype is given for raw and png, it's just + // not automatic in that case. + testBkgdChunk(255, 0, 0, 255, 0, 0, LCT_RGBA, 8, LCT_RGBA, 8, LCT_RGBA, 8, false); + testBkgdChunk(60000, 0, 0, 60000, 0, 0, LCT_RGBA, 8, LCT_RGBA, 8, LCT_RGBA, 16, false); + testBkgdChunk(128, 128, 128, 128, 128, 128, LCT_GREY, 8, LCT_RGBA, 8, LCT_GREY, 8, false); + { + LodePNGColorMode pal; + lodepng_color_mode_init(&pal); + for(int i = 0; i < 200; i++) lodepng_palette_add(&pal, i, i / 2, 0, 255); + pal.colortype = LCT_PALETTE; + pal.bitdepth = 8; + unsigned w = 200; + unsigned h = 200; + std::vector img(w * h); + for(unsigned y = 0; y < h; y++) + for(unsigned x = 0; x < w; x++) { + img[y * w + x] = x; + } + + testBkgdChunk(100, 0, 0, 100, 100, 100, img, w, h, pal, pal, true, false); + testBkgdChunk(100, 0, 0, 100, 100, 100, img, w, h, pal, pal, false, false); + testBkgdChunk(250, 0, 0, 250, 250, 250, img, w, h, pal, pal, true, true); + + std::vector fourcolor(w * h); + for(unsigned y = 0; y < h; y++) + for(unsigned x = 0; x < w; x++) { + fourcolor[y * w + x] = x & 3; + } + // palette index 4 expected for output bKGD: auto_convert should turn the 200-sized + // palette in one of size 5, 4 values for the fourcolor image above, and then a 5th for + // the bkgd index. The other two 4's actually shouldn't matter, it's not defined what + // they should be though currently lodepng sets them also to the palette index... + testBkgdChunk(100, 0, 0, 4, 4, 4, fourcolor, w, h, pal, pal, true, false); + + + std::vector mini(4); + mini[0] = 1; mini[1] = 2; mini[2] = 3; mini[3] = 4; + // here we expect RGB color from the output image, since the image is tiny so it chooses to not add PLTE + testBkgdChunk(100, 0, 0, 100, 50, 0, mini, 2, 2, pal, pal, true, false); + + lodepng_color_mode_cleanup(&pal); + } +} + +void testBkgdChunk2() { + std::cout << "testBkgdChunk2" << std::endl; + Image image; + generateTestImageRequiringColorType8(image, LCT_GREY, 2, false); + + // without background, it should choose 2-bit gray for this PNG + std::vector png0; + ASSERT_NO_PNG_ERROR(lodepng::encode(png0, image.data, image.width, image.height)); + lodepng::State state0; + unsigned w0, h0; + lodepng_inspect(&w0, &h0, &state0, png0.data(), png0.size()); + ASSERT_EQUALS(2, state0.info_png.color.bitdepth); + ASSERT_EQUALS(LCT_GREY, state0.info_png.color.colortype); + + // red background, with auto_convert, it is forced to choose RGB + lodepng::State state; + LodePNGInfo& info = state.info_png; + info.background_defined = 1; + info.background_r = 255; + info.background_g = 0; + info.background_b = 0; + std::vector png1; + ASSERT_NO_PNG_ERROR(lodepng::encode(png1, image.data, image.width, image.height, state)); + lodepng::State state1; + unsigned w1, h1; + lodepng_inspect(&w1, &h1, &state1, png1.data(), png1.size()); + ASSERT_EQUALS(8, state1.info_png.color.bitdepth); + ASSERT_EQUALS(LCT_RGB, state1.info_png.color.colortype); + + // gray output required, background color also interpreted as gray + state.info_raw.colortype = LCT_RGB; + state.info_png.color.colortype = LCT_GREY; + state.info_png.color.bitdepth = 1; + state.encoder.auto_convert = 0; + info.background_defined = 1; + info.background_r = 1; + info.background_g = 1; + info.background_b = 1; + std::vector png2; + ASSERT_NO_PNG_ERROR(lodepng::encode(png2, image.data, image.width, image.height, state)); + lodepng::State state2; + unsigned w2, h2; + lodepng_inspect(&w2, &h2, &state2, png2.data(), png2.size()); + ASSERT_EQUALS(1, state2.info_png.color.bitdepth); + ASSERT_EQUALS(LCT_GREY, state2.info_png.color.colortype); +} + +// r, g, b, a are the bit depths to store +void testSbitChunk(unsigned r, unsigned g, unsigned b, unsigned a, + const std::vector& pixels, + unsigned w, unsigned h, + const LodePNGColorMode& mode_raw, + const LodePNGColorMode& mode_png, + bool auto_convert, + bool expect_encoder_error = false) { + unsigned error; + + lodepng::State state; + LodePNGInfo& info = state.info_png; + lodepng_color_mode_copy(&info.color, &mode_png); + lodepng_color_mode_copy(&state.info_raw, &mode_raw); + state.encoder.auto_convert = auto_convert; + if(mode_raw.colortype == LCT_PALETTE) { + for(size_t i = 0; i < 256; i++) { + // TODO: consider allowing to set only 1 of these palettes in lodepng in the case + // where both info_raw and info_png have the palette color type + lodepng_palette_add(&state.info_raw, i, i, i, 255); + lodepng_palette_add(&info.color, i, i, i, 255); + } + } + + info.sbit_defined = 1; + info.sbit_r = r; + info.sbit_g = g; + info.sbit_b = b; + info.sbit_a = a; + + std::vector png; + error = lodepng::encode(png, pixels, w, h, state); + if(expect_encoder_error) { + ASSERT_NOT_EQUALS(0, error); + return; + } + ASSERT_NO_PNG_ERROR(error); + + lodepng::State state2; + LodePNGInfo& info2 = state2.info_png; + unsigned w2, h2; + std::vector image2; + error = lodepng::decode(image2, w2, h2, state2, &png[0], png.size()); + ASSERT_NO_PNG_ERROR(error); + + LodePNGColorType type = mode_png.colortype; + + ASSERT_EQUALS(w, w2); + ASSERT_EQUALS(h, h2); + ASSERT_EQUALS(1, info2.sbit_defined); + ASSERT_EQUALS(r, info2.sbit_r); + if(type == LCT_RGB || type == LCT_RGBA || type == LCT_PALETTE) { + ASSERT_EQUALS(g, info2.sbit_g); + ASSERT_EQUALS(b, info2.sbit_b); + } + if(type == LCT_GREY_ALPHA || type == LCT_RGBA) { + ASSERT_EQUALS(a, info2.sbit_a); + } + + // compare pixels in a 16-bit color model + LodePNGColorMode mode_compare; lodepng_color_mode_init(&mode_compare); mode_compare.bitdepth = 16; mode_compare.colortype = LCT_RGBA; + LodePNGColorMode mode_decoded; lodepng_color_mode_init(&mode_decoded); mode_decoded.bitdepth = 8; mode_decoded.colortype = LCT_RGBA; + std::vector image3(w * h * 8); + error = lodepng_convert(image3.data(), image2.data(), &mode_compare, &mode_decoded, w, h); + std::vector image4(w * h * 8); + error = lodepng_convert(image4.data(), pixels.data(), &mode_compare, &state.info_raw, w, h); + ASSERT_NO_PNG_ERROR(error); + ASSERT_EQUALS(image4.size(), image3.size()); + for(size_t i = 0; i < image3.size(); i++) { + ASSERT_EQUALS((int)image4[i], (int)image3[i]); + } +} + + +void testSbitChunk(unsigned r, unsigned g, unsigned b, unsigned a, + LodePNGColorType type, unsigned bitdepth, + bool expect_encoder_error = false) { + LodePNGColorMode mode_raw; + lodepng_color_mode_init(&mode_raw); + mode_raw.bitdepth = bitdepth; + mode_raw.colortype = type; + LodePNGColorMode mode_png; + lodepng_color_mode_init(&mode_png); + mode_png.bitdepth = bitdepth; + mode_png.colortype = type; + + std::vector pixels(8, 255); // force all pixels to be white, so encoder tries to use auto_convert as much as possible + + testSbitChunk(r, g, b, a, pixels, 1, 1, mode_raw, mode_png, false, expect_encoder_error); + testSbitChunk(r, g, b, a, pixels, 1, 1, mode_raw, mode_png, true, expect_encoder_error); +} + +// type_pixels = what the pixels should require at least for auto_convert +// type_raw = actual raw pixel type to give to the encoder +// type_png = PNG type to request from the encoder (if not auto_convert) +// auto_convert: 0 = no, 1 = yes, 2 = try both +void testSbitChunk2(unsigned r, unsigned g, unsigned b, unsigned a, + LodePNGColorType type_pixels, unsigned bitdepth_pixels, + LodePNGColorType type_raw, unsigned bitdepth_raw, + LodePNGColorType type_png, unsigned bitdepth_png, + int auto_convert, + bool expect_encoder_error = false) { + + unsigned error; + Image image; + generateTestImageRequiringColorType16(image, type_pixels, bitdepth_pixels, false); + + LodePNGColorMode mode_raw; lodepng_color_mode_init(&mode_raw); mode_raw.bitdepth = bitdepth_raw; mode_raw.colortype = type_raw; + LodePNGColorMode mode_test; lodepng_color_mode_init(&mode_test); mode_test.bitdepth = 16; mode_test.colortype = LCT_RGBA; + LodePNGColorMode mode_png; lodepng_color_mode_init(&mode_png); mode_png.bitdepth = bitdepth_png; mode_png.colortype = type_png; + std::vector temp((image.width * image.height * lodepng_get_bpp(&mode_raw) + 7) / 8); + error = lodepng_convert(temp.data(), image.data.data(), &mode_raw, &mode_test, image.width, image.height); + ASSERT_NO_PNG_ERROR(error); + image.data = temp; + + if(auto_convert == 0 || auto_convert == 2) testSbitChunk(r, g, b, a, image.data, image.width, image.height, mode_raw, mode_png, false, expect_encoder_error); + if(auto_convert == 1 || auto_convert == 2) testSbitChunk(r, g, b, a, image.data, image.width, image.height, mode_raw, mode_png, true, expect_encoder_error); +} + +// Test the sBIT chunk for all color types, and for possible combinations of pixel colors where auto_convert conversions occur (only conversions that +// still allow storing all the sBIT information within the PNG specification limitations may occur) +void testSbitChunk() { + std::cout << "testSbitChunk" << std::endl; + testSbitChunk(8, 8, 8, 0, LCT_RGB, 8, false); + testSbitChunk(1, 2, 3, 0, LCT_RGB, 8, false); + testSbitChunk(0, 2, 3, 0, LCT_RGB, 8, true); + testSbitChunk(9, 2, 3, 0, LCT_RGB, 8, true); + + testSbitChunk(8, 8, 8, 8, LCT_RGBA, 8, false); + testSbitChunk(1, 2, 3, 4, LCT_RGBA, 8, false); + testSbitChunk(0, 2, 3, 4, LCT_RGBA, 8, true); + testSbitChunk(9, 2, 3, 4, LCT_RGBA, 8, true); + + testSbitChunk(1, 2, 3, 0, LCT_RGB, 16, false); + testSbitChunk(0, 2, 3, 0, LCT_RGB, 16, true); + testSbitChunk(9, 2, 3, 0, LCT_RGB, 16, false); + testSbitChunk(17, 2, 3, 0, LCT_RGB, 16, true); + + testSbitChunk(1, 2, 3, 4, LCT_RGBA, 16, false); + testSbitChunk(0, 2, 3, 4, LCT_RGBA, 16, true); + testSbitChunk(9, 2, 3, 4, LCT_RGBA, 16, false); + testSbitChunk(17, 2, 3, 4, LCT_RGBA, 16, true); + + testSbitChunk(8, 2, 3, 0, LCT_PALETTE, 8, false); + testSbitChunk(8, 2, 3, 0, LCT_PALETTE, 4, false); // 4-bit palette still treats the RGB as 8-bit + testSbitChunk(9, 2, 3, 0, LCT_PALETTE, 8, true); + + testSbitChunk(8, 0, 0, 0, LCT_GREY, 8, false); + testSbitChunk(8, 0, 0, 0, LCT_GREY, 4, true); + testSbitChunk(5, 0, 0, 0, LCT_GREY, 8, false); + testSbitChunk(1, 0, 0, 0, LCT_GREY, 1, false); + testSbitChunk(3, 0, 0, 0, LCT_GREY, 1, true); + testSbitChunk(0, 0, 0, 0, LCT_GREY, 1, true); + + testSbitChunk(16, 0, 0, 0, LCT_GREY, 16, false); + testSbitChunk(17, 0, 0, 0, LCT_GREY, 16, true); + testSbitChunk(8, 0, 0, 0, LCT_GREY, 16, false); + testSbitChunk(5, 0, 0, 0, LCT_GREY, 16, false); + + testSbitChunk(8, 0, 0, 8, LCT_GREY_ALPHA, 8, false); + testSbitChunk(8, 0, 0, 0, LCT_GREY_ALPHA, 8, true); + testSbitChunk(8, 0, 0, 9, LCT_GREY_ALPHA, 8, true); + testSbitChunk(5, 0, 0, 5, LCT_GREY_ALPHA, 8, false); + testSbitChunk(5, 0, 0, 8, LCT_GREY_ALPHA, 8, false); + + testSbitChunk(16, 0, 0, 16, LCT_GREY_ALPHA, 16, false); + testSbitChunk(16, 0, 0, 8, LCT_GREY_ALPHA, 16, false); + testSbitChunk(8, 0, 0, 8, LCT_GREY_ALPHA, 16, false); + testSbitChunk(16, 0, 0, 0, LCT_GREY_ALPHA, 16, true); + testSbitChunk(16, 0, 0, 17, LCT_GREY_ALPHA, 16, true); + testSbitChunk(5, 0, 0, 5, LCT_GREY_ALPHA, 16, false); + testSbitChunk(5, 0, 0, 8, LCT_GREY_ALPHA, 16, false); + + testSbitChunk2(8, 8, 8, 0, LCT_RGB, 8, LCT_RGB, 8, LCT_RGB, 8, 2, false); + testSbitChunk2(8, 8, 8, 0, LCT_GREY, 8, LCT_RGB, 8, LCT_RGB, 8, 2, false); + testSbitChunk2(12, 12, 12, 0, LCT_GREY, 8, LCT_RGB, 16, LCT_RGB, 16, 2, false); + testSbitChunk2(12, 12, 12, 8, LCT_GREY, 8, LCT_RGBA, 16, LCT_RGBA, 16, 2, false); + testSbitChunk2(8, 8, 8, 0, LCT_GREY, 8, LCT_RGB, 16, LCT_RGB, 16, 2, false); + testSbitChunk2(8, 7, 8, 0, LCT_GREY, 8, LCT_RGB, 16, LCT_RGB, 16, 2, false); + testSbitChunk2(8, 8, 7, 0, LCT_GREY, 8, LCT_RGB, 16, LCT_RGB, 16, 2, false); + testSbitChunk2(8, 7, 8, 0, LCT_GREY, 8, LCT_RGB, 8, LCT_RGB, 8, 2, false); + testSbitChunk2(8, 8, 7, 0, LCT_GREY, 8, LCT_RGB, 8, LCT_RGB, 8, 2, false); + testSbitChunk2(8, 8, 8, 0, LCT_GREY, 8, LCT_RGB, 8, LCT_GREY_ALPHA, 8, 1, false); + testSbitChunk2(8, 8, 8, 8, LCT_GREY, 8, LCT_RGB, 8, LCT_GREY_ALPHA, 8, 0, false); + + + // test png-suite image cs3n3p08.png, which has an sBIT chunk with RGB values set to 3 bits + { + std::vector png, decoded; + fromBase64(png, std::string("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAMAAABEpIrGAAAABGdBTUEAAYagMeiWXwAAAANzQklUAwMDo5KgQgAAAFRQTFRFkv8AAP+SAP//AP8AANv/AP9t/7YAAG3/tv8A/5IA2/8AAEn//yQA/wAAJP8ASf8AAP/bAP9JAP+2//8AAP8kALb//9sAAJL//20AACT//0kAbf8A33ArFwAAAEtJREFUeJyFyscBggAAALGzYldUsO2/pyMk73SGGE7QF3pDe2gLzdADHA7QDqIfdIUu0AocntAIbaAFdIdu0BIc1tAEvaABOkIf+AMiQDPhd/SuJgAAAABJRU5ErkJggg==")); + lodepng::State state; + unsigned w, h; + + unsigned error = lodepng::decode(decoded, w, h, state, png); + assertNoError(error); + ASSERT_EQUALS(1, state.info_png.sbit_defined); + ASSERT_EQUALS(3, state.info_png.sbit_r); + ASSERT_EQUALS(3, state.info_png.sbit_g); + ASSERT_EQUALS(3, state.info_png.sbit_b); + } + + // test png-suite image basn0g02.png, which is known to not have an sBIT chunk + { + std::vector png, decoded; + fromBase64(png, std::string("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAgAAAAAcoT2JAAAABGdBTUEAAYagMeiWXwAAAB9JREFUeJxjYAhd9R+M8TCIUMIAU4aPATMJH2OQuQcAvUl/gYsJiakAAAAASUVORK5CYII=")); + lodepng::State state; + unsigned w, h; + + unsigned error = lodepng::decode(decoded, w, h, state, png); + assertNoError(error); + ASSERT_EQUALS(0, state.info_png.sbit_defined); + } +} + +// Test particular cHRM+gAMA conversion to srgb +// gamma = gamma given 100000x multiplied form of PNG, or 0 to set none at all +// wx..by = whitepoint and chromaticities, given in the 100000x multiplied form of PNG +// r, g, b: r, g, b values to encode in the PNG's data +// er, eg, eb: expected r, g, b values after decoding and converting to sRGB +void testChrmToSrgb(unsigned gamma, unsigned wx, unsigned wy, unsigned rx, unsigned ry, unsigned gx, unsigned gy, unsigned bx, unsigned by, + unsigned char r, unsigned char g, unsigned char b, unsigned char er, unsigned char eg, unsigned char eb, + int max_dist = 0) { + std::vector image(4); + image[0] = r; + image[1] = g; + image[2] = b; + image[3] = 255; + lodepng::State state; + if(gamma) { + state.info_png.gama_defined = 1; + state.info_png.gama_gamma = gamma; + } + state.info_png.chrm_defined = 1; + state.info_png.chrm_white_x = wx; + state.info_png.chrm_white_y = wy; + state.info_png.chrm_red_x = rx; + state.info_png.chrm_red_y = ry; + state.info_png.chrm_green_x = gx; + state.info_png.chrm_green_y = gy; + state.info_png.chrm_blue_x = bx; + state.info_png.chrm_blue_y = by; + + std::vector image2(4); + convertToSrgb(image2.data(), image.data(), 1, 1, &state); + + if(max_dist == 0) { + ASSERT_EQUALS(er, image2[0]); + ASSERT_EQUALS(eg, image2[1]); + ASSERT_EQUALS(eb, image2[2]); + } else { + ASSERT_NEAR(er, image2[0], max_dist); + ASSERT_NEAR(eg, image2[1], max_dist); + ASSERT_NEAR(eb, image2[2], max_dist); + } + + // Also test the opposite direction + + std::vector image3(4); + convertFromSrgb(image3.data(), image2.data(), 1, 1, &state); + + if(max_dist == 0) { + ASSERT_EQUALS(r, image3[0]); + ASSERT_EQUALS(g, image3[1]); + ASSERT_EQUALS(b, image3[2]); + } else { + ASSERT_NEAR(r, image3[0], max_dist); + ASSERT_NEAR(g, image3[1], max_dist); + ASSERT_NEAR(b, image3[2], max_dist); + } +} + +void testChrmToSrgb() { + std::cout << "testChrmToSrgb" << std::endl; + // srgb gamma approximation and chromaticities defined as standard by png (multiplied by 100000) + unsigned sg = 45455; // srgb gamma approximation + unsigned swx = 31270; + unsigned swy = 32900; + unsigned srx = 64000; + unsigned sry = 33000; + unsigned sgx = 30000; + unsigned sgy = 60000; + unsigned sbx = 15000; + unsigned sby = 6000; + + testChrmToSrgb(sg, swx, swy, srx, sry, sgx, sgy, sbx, sby, 0, 0, 0, 0, 0, 0); + testChrmToSrgb(sg, swx, swy, srx, sry, sgx, sgy, sbx, sby, 255, 255, 255, 255, 255, 255); + + testChrmToSrgb(0, swx, swy, srx, sry, sgx, sgy, sbx, sby, 50, 50, 50, 50, 50, 50); + testChrmToSrgb(0, swx, swy, srx, sry, sgx, sgy, sbx, sby, 128, 128, 128, 128, 128, 128); + testChrmToSrgb(0, swx, swy, srx, sry, sgx, sgy, sbx, sby, 200, 200, 200, 200, 200, 200); + + testChrmToSrgb(0, swx, swy, srx, sry, sgx, sgy, sbx, sby, 255, 0, 0, 255, 0, 0); + testChrmToSrgb(0, swx, swy, srx, sry, sgx, sgy, sbx, sby, 0, 255, 0, 0, 255, 0); + testChrmToSrgb(0, swx, swy, srx, sry, sgx, sgy, sbx, sby, 0, 0, 255, 0, 0, 255); + + // swap red and green chromaticities + testChrmToSrgb(0, swx, swy, sgx, sgy, srx, sry, sbx, sby, 255, 0, 0, 0, 255, 0); + testChrmToSrgb(0, swx, swy, sgx, sgy, srx, sry, sbx, sby, 0, 255, 0, 255, 0, 0); + testChrmToSrgb(0, swx, swy, sgx, sgy, srx, sry, sbx, sby, 0, 0, 255, 0, 0, 255); + + // swap red/green/blue chromaticities + testChrmToSrgb(0, swx, swy, sgx, sgy, sbx, sby, srx, sry, 255, 0, 0, 0, 255, 0); + testChrmToSrgb(0, swx, swy, sgx, sgy, sbx, sby, srx, sry, 0, 255, 0, 0, 0, 255); + testChrmToSrgb(0, swx, swy, sgx, sgy, sbx, sby, srx, sry, 0, 0, 255, 255, 0, 0); + + // different whitepoint does not affect white or gray, due to the relative rendering intent (adaptation) + testChrmToSrgb(0, 35000, 25000, srx, sry, sgx, sgy, sbx, sby, 0, 0, 0, 0, 0, 0); + testChrmToSrgb(0, 35000, 25000, srx, sry, sgx, sgy, sbx, sby, 50, 50, 50, 50, 50, 50); + testChrmToSrgb(0, 35000, 25000, srx, sry, sgx, sgy, sbx, sby, 128, 128, 128, 128, 128, 128); + testChrmToSrgb(0, 35000, 25000, srx, sry, sgx, sgy, sbx, sby, 200, 200, 200, 200, 200, 200); + testChrmToSrgb(0, 35000, 25000, srx, sry, sgx, sgy, sbx, sby, 255, 255, 255, 255, 255, 255); +} + + + +void testXYZ() { + std::cout << "testXYZ" << std::endl; + unsigned w = 512, h = 512; + std::vector v(w * h * 4 * 2); + for(size_t i = 0; i < v.size(); i++) { + v[i] = getRandom() & 255; + } + + // Test sRGB -> XYZ -> sRGB roundtrip + + unsigned rendering_intent = 3; // test with absolute for now + + // 8-bit + { + // Default state, the conversions use 8-bit sRGB + lodepng::State state; + std::vector f(w * h * 4); + float whitepoint[3]; + assertNoError(lodepng::convertToXYZ(f.data(), whitepoint, v.data(), w, h, &state)); + + std::vector v2(w * h * 4); + assertNoError(lodepng::convertFromXYZ(v2.data(), f.data(), w, h, &state, whitepoint, rendering_intent)); + + for(size_t i = 0; i < v2.size(); i++) { + ASSERT_EQUALS(v[i], v2[i]); + } + } + + // 16-bit + { + // Default state but with 16-bit, the conversions use 16-bit sRGB + lodepng::State state; + state.info_raw.bitdepth = 16; + std::vector f(w * h * 4); + float whitepoint[3]; + assertNoError(lodepng::convertToXYZ(f.data(), whitepoint, v.data(), w, h, &state)); + + std::vector v2(w * h * 8); + assertNoError(lodepng::convertFromXYZ(v2.data(), f.data(), w, h, &state, whitepoint, rendering_intent)); + + for(size_t i = 0; i < v2.size(); i++) { + ASSERT_EQUALS(v[i], v2[i]); + } + } + + // Test custom RGB+gamma -> XYZ -> custom RGB+gamma roundtrip + + LodePNGInfo info_custom; + lodepng_info_init(&info_custom); + info_custom.gama_defined = 1; + info_custom.gama_gamma = 30000; // default 45455 + info_custom.chrm_defined = 1; + info_custom.chrm_white_x = 10000; // default 31270 + info_custom.chrm_white_y = 20000; // default 32900 + info_custom.chrm_red_x = 30000; // default 64000 + info_custom.chrm_red_y = 50000; // default 33000 + info_custom.chrm_green_x = 70000; // default 30000 + info_custom.chrm_green_y = 11000; // default 60000 + info_custom.chrm_blue_x = 13000; // default 15000 + info_custom.chrm_blue_y = 17000; // default 6000 + + // 8-bit + { + lodepng::State state; + lodepng_info_copy(&state.info_png, &info_custom); + std::vector f(w * h * 4); + float whitepoint[3]; + assertNoError(lodepng::convertToXYZ(f.data(), whitepoint, v.data(), w, h, &state)); + + std::vector v2(w * h * 4); + assertNoError(lodepng::convertFromXYZ(v2.data(), f.data(), w, h, &state, whitepoint, rendering_intent)); + + for(size_t i = 0; i < v2.size(); i++) { + // Allow near instead of exact due to numerical issues with low values, + // see description at the 16-bit test below. + unsigned maxdist = 0; + if(v[i] <= 2) maxdist = 3; + else if(v[i] <= 4) maxdist = 2; + else maxdist = 0; + ASSERT_NEAR(v[i], v2[i], maxdist); + } + } + + // 16-bit + { + lodepng::State state; + lodepng_info_copy(&state.info_png, &info_custom); + state.info_raw.bitdepth = 16; + std::vector f(w * h * 4); + float whitepoint[3]; + assertNoError(lodepng::convertToXYZ(f.data(), whitepoint, v.data(), w, h, &state)); + + std::vector v2(w * h * 8); + assertNoError(lodepng::convertFromXYZ(v2.data(), f.data(), w, h, &state, whitepoint, rendering_intent)); + + for(size_t i = 0; i < v2.size(); i += 2) { + unsigned a = v[i + 0] * 256u + v[i + 1]; + unsigned a2 = v2[i + 0] * 256u + v2[i + 1]; + // There are numerical issues with low values due to the precision of float, + // so allow some distance for low values (low compared to 65535). + // The issue seems to be: the combination of how the gamma correction affects + // low values and the color conversion matrix operating on single precision + // floating point. With the sRGB's gamma the problem seems not to happen, maybe + // because that linear part near 0 behaves better than power. + // TODO: check if it can be fixed without using double for the image and without slow double precision pow. + unsigned maxdist = 0; + if(a < 2048) maxdist = 768; + else if(a < 4096) maxdist = 24; + else if(a < 16384) maxdist = 4; + else maxdist = 2; + ASSERT_NEAR(a, a2, maxdist); + } + } + + lodepng_info_cleanup(&info_custom); +} + + +void testICC() { + std::cout << "testICC" << std::endl; + // approximate srgb (gamma function not exact) + std::string icc_near_srgb_base64 = + "AAABwHRlc3QCQAAAbW50clJHQiBYWVogB+MAAQABAAAAAAAAYWNzcFNHSSAAAAABAAAAAAAAAAAA" + "AAAAAAAAAAAAAAEAAPbWAAEAAAAA0y10ZXN0AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAAAAAAAAAAAAAAAJY3BydAAAAPAAAAANZGVzYwAAAQAAAABfd3RwdAAAAWAAAAAUclhZ" + "WgAAAXQAAAAUZ1hZWgAAAYgAAAAUYlhZWgAAAZwAAAAUclRSQwAAAbAAAAAOZ1RSQwAAAbAAAAAO" + "YlRSQwAAAbAAAAAOdGV4dAAAAABDQzAgAAAAAGRlc2MAAAAAAAAABXRlc3QAZW5VUwAAAAAAAAAA" + "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAAAAAFhZWiAAAAAAAADzUQABAAAAARbMWFlaIAAAAAAAAG+gAAA49AAAA5BYWVogAAAA" + "AAAAYpYAALeHAAAY2VhZWiAAAAAAAAAkngAAD4QAALbCY3VydgAAAAAAAAABAjMAAA=="; + std::vector icc_near_srgb; + fromBase64(icc_near_srgb, icc_near_srgb_base64); + lodepng::State state_near_srgb; + lodepng_set_icc(&state_near_srgb.info_png, "near_srgb", icc_near_srgb.data(), icc_near_srgb.size()); + + // a made up RGB model. + // it causes (when converting from this to srgb) green to become softer green, blue to become softer blue, red to become orange. + // this model intersects sRGB, but some parts are outside of sRGB, some parts of sRGB are outside of this one. + // so when converting between this and sRGB and clipping the values to 8-bit, and then converting back, the values will not be the same due to this clipping + std::string icc_orange_base64 = + "AAABwHRlc3QCQAAAbW50clJHQiBYWVogB+MAAQABAAAAAAAAYWNzcFNHSSAAAAABAAAAAAAAAAAA" + "AAAAAAAAAAAAAAMAAPbWAAEAAAAA0y10ZXN0AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAAAAAAAAAAAAAAAJY3BydAAAAPAAAAANZGVzYwAAAQAAAABfd3RwdAAAAWAAAAAUclhZ" + "WgAAAXQAAAAUZ1hZWgAAAYgAAAAUYlhZWgAAAZwAAAAUclRSQwAAAbAAAAAOZ1RSQwAAAbAAAAAO" + "YlRSQwAAAbAAAAAOdGV4dAAAAABDQzAgAAAAAGRlc2MAAAAAAAAABXRlc3QAZW5VUwAAAAAAAAAA" + "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAAAAAFhZWiAAAAAAAAE7uwABAAAAARmZWFlaIAAAAAAAANAHAACTTAAACrRYWVogAAAA" + "AAAABOMAAFd4AAAFzVhZWiAAAAAAAAAh6gAAFTsAAMKqY3VydgAAAAAAAAABAoAAAA=="; + std::vector icc_orange; + fromBase64(icc_orange, icc_orange_base64); + lodepng::State state_orange; + lodepng_set_icc(&state_orange.info_png, "orange", icc_orange.data(), icc_orange.size()); + + // A made up RGB model which is a superset of sRGB, and has R/G/B shifted around (so it greatly alters colors) + // Since this is a superset of sRGB, converting from sRGB to this model, and then back, should be lossless, but the opposite not necessarily. + std::string icc_super_base64 = + "AAABwHRlc3QCQAAAbW50clJHQiBYWVogB+MAAQABAAAAAAAAYWNzcFNHSSAAAAABAAAAAAAAAAAA" + "AAAAAAAAAAAAAAEAAPbWAAEAAAAA0y10ZXN0AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAAAAAAAAAAAAAAAJY3BydAAAAPAAAAANZGVzYwAAAQAAAABfd3RwdAAAAWAAAAAUclhZ" + "WgAAAXQAAAAUZ1hZWgAAAYgAAAAUYlhZWgAAAZwAAAAUclRSQwAAAbAAAAAOZ1RSQwAAAbAAAAAO" + "YlRSQwAAAbAAAAAOdGV4dAAAAABDQzAgAAAAAGRlc2MAAAAAAAAABXRlc3QAZW5VUwAAAAAAAAAA" + "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAAAAAFhZWiAAAAAAAADzUQABAAAAARbMWFlaIAAAAAAAAFW+AADL3f//70ZYWVogAAAA" + "AAAAJqD////UAADsUFhZWiAAAAAAAAB6dgAANE////eXY3VydgAAAAAAAAABAjMAAA=="; + std::vector icc_super; + fromBase64(icc_super, icc_super_base64); + lodepng::State state_super; + lodepng_set_icc(&state_super.info_png, "super", icc_super.data(), icc_super.size()); + + // A made up RGB model which is a subset of sRGB, and has R/G/B shifted around (so it greatly alters colors) + // Since this is a subset of sRGB, converting to sRGB from this model, and then back, should be lossless, but the opposite not necessarily. + std::string icc_sub_base64 = + "AAABwHRlc3QCQAAAbW50clJHQiBYWVogB+MAAQABAAAAAAAAYWNzcFNHSSAAAAABAAAAAAAAAAAA" + "AAAAAAAAAAAAAAEAAPbWAAEAAAAA0y10ZXN0AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAAAAAAAAAAAAAAAJY3BydAAAAPAAAAANZGVzYwAAAQAAAABfd3RwdAAAAWAAAAAUclhZ" + "WgAAAXQAAAAUZ1hZWgAAAYgAAAAUYlhZWgAAAZwAAAAUclRSQwAAAbAAAAAOZ1RSQwAAAbAAAAAO" + "YlRSQwAAAbAAAAAOdGV4dAAAAABDQzAgAAAAAGRlc2MAAAAAAAAABXRlc3QAZW5VUwAAAAAAAAAA" + "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAAAAAFhZWiAAAAAAAADzUQABAAAAARbMWFlaIAAAAAAAAHEEAABy1AAAr8ZYWVogAAAA" + "AAAAV5kAAEPkAAAMs1hZWiAAAAAAAAAuNwAASUcAABazY3VydgAAAAAAAAABAjMAAA=="; + + std::vector icc_sub; + fromBase64(icc_sub, icc_sub_base64); + lodepng::State state_sub; + lodepng_set_icc(&state_sub.info_png, "sub", icc_sub.data(), icc_sub.size()); + + // make 8-pixel image with following colors: white, gray, red, darkred, green, darkgreen, blue, darkblue + unsigned w = 4, h = 2; + std::vector im(w * h * 4, 255); + im[0 * 4 + 0] = 255; im[0 * 4 + 1] = 255; im[0 * 4 + 2] = 255; + im[1 * 4 + 0] = 128; im[1 * 4 + 1] = 128; im[1 * 4 + 2] = 128; + im[2 * 4 + 0] = 255; im[2 * 4 + 1] = 0; im[2 * 4 + 2] = 0; + im[3 * 4 + 0] = 128; im[3 * 4 + 1] = 0; im[3 * 4 + 2] = 0; + im[4 * 4 + 0] = 0; im[4 * 4 + 1] = 255; im[4 * 4 + 2] = 0; + im[5 * 4 + 0] = 0; im[5 * 4 + 1] = 128; im[5 * 4 + 2] = 0; + im[6 * 4 + 0] = 0; im[6 * 4 + 1] = 0; im[6 * 4 + 2] = 255; + im[7 * 4 + 0] = 0; im[7 * 4 + 1] = 0; im[7 * 4 + 2] = 128; + + + { + std::vector im2(w * h * 4, 255); + assertNoError(convertToSrgb(im2.data(), im.data(), w, h, &state_orange)); + + ASSERT_NEAR(255, im2[0 * 4 + 0], 1); ASSERT_NEAR(255, im2[0 * 4 + 1], 1); ASSERT_NEAR(255, im2[0 * 4 + 2], 1); + ASSERT_NEAR(117, im2[1 * 4 + 0], 1); ASSERT_NEAR(117, im2[1 * 4 + 1], 1); ASSERT_NEAR(117, im2[1 * 4 + 2], 1); + ASSERT_NEAR(255, im2[2 * 4 + 0], 1); ASSERT_NEAR(151, im2[2 * 4 + 1], 1); ASSERT_NEAR( 0, im2[2 * 4 + 2], 1); + ASSERT_NEAR(145, im2[3 * 4 + 0], 1); ASSERT_NEAR( 66, im2[3 * 4 + 1], 1); ASSERT_NEAR( 0, im2[3 * 4 + 2], 1); + ASSERT_NEAR( 0, im2[4 * 4 + 0], 1); ASSERT_NEAR(209, im2[4 * 4 + 1], 1); ASSERT_NEAR( 0, im2[4 * 4 + 2], 1); + ASSERT_NEAR( 0, im2[5 * 4 + 0], 1); ASSERT_NEAR( 95, im2[5 * 4 + 1], 1); ASSERT_NEAR( 0, im2[5 * 4 + 2], 1); + ASSERT_NEAR( 0, im2[6 * 4 + 0], 1); ASSERT_NEAR( 66, im2[6 * 4 + 1], 1); ASSERT_NEAR(255, im2[6 * 4 + 2], 1); + ASSERT_NEAR( 0, im2[7 * 4 + 0], 1); ASSERT_NEAR( 25, im2[7 * 4 + 1], 1); ASSERT_NEAR(120, im2[7 * 4 + 2], 1); + + // Cannot test the inverse direction to see if same as original, because the color model here has values + // outside of sRGB so several values were clipped. + } + + { + std::vector im2(w * h * 4, 255); + // convert between the two in one and then the other direction + assertNoError(convertRGBModel(im2.data(), im.data(), w, h, &state_near_srgb, &state_sub, 3)); + std::vector im3(w * h * 4, 255); + assertNoError(convertRGBModel(im3.data(), im2.data(), w, h, &state_sub, &state_near_srgb, 3)); + // im3 should be same as im (allow some numerical errors), because we converted from a subset of sRGB to sRGB + // and then back. + // If state_super was used here instead (with a superset RGB color model), the test below would faill due to + // the clipping of the values in the 8-bit chars (due to the superset being out of range for sRGB) + for(size_t i = 0; i < im.size(); i++) { + // due to the gamma (trc), small values are very imprecise (due to the 8-bit char step in between), so allow more distance there + int tolerance = im[i] < 32 ? 16 : 1; + ASSERT_NEAR(im[i], im3[i], tolerance); + } + } + + { + std::vector im2(w * h * 4, 255); + assertNoError(convertFromSrgb(im2.data(), im.data(), w, h, &state_super)); + std::vector im3(w * h * 4, 255); + assertNoError(convertToSrgb(im3.data(), im2.data(), w, h, &state_super)); + for(size_t i = 0; i < im.size(); i++) { + int tolerance = im[i] < 32 ? 16 : 1; + ASSERT_NEAR(im[i], im3[i], tolerance); + } + } +} + + +void testICCGray() { + std::cout << "testICCGray" << std::endl; + // Grayscale, Gamma 2.2, sRGB whitepoint + std::string icc22_base64 = + "AAABSHRlc3QCQAAAbW50ckdSQVlYWVogB+MAAQABAAAAAAAAYWNzcFNHSSAAAAABAAAAAAAAAAAA" + "AAAAAAAAAAAAAAMAAPbWAAEAAAAA0y10ZXN0AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAAAAAAAAAAAAAAAEY3BydAAAALQAAAANZGVzYwAAAMQAAABfd3RwdAAAASQAAAAUa1RS" + "QwAAATgAAAAOdGV4dAAAAABDQzAgAAAAAGRlc2MAAAAAAAAABXRlc3QAZW5VUwAAAAAAAAAAAAAA" + "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAFhZWiAAAAAAAADzUQABAAAAARbMY3VydgAAAAAAAAABAjMAAA=="; + std::vector icc22; + fromBase64(icc22, icc22_base64); + lodepng::State state22; + state22.info_raw.colortype = LCT_GREY; + lodepng_set_icc(&state22.info_png, "gray22", icc22.data(), icc22.size()); + + // Grayscale, Gamma 2.9, custom whitepoint + std::string icc29_base64 = + "AAABSHRlc3QCQAAAbW50ckdSQVlYWVogB+MAAQABAAAAAAAAYWNzcFNHSSAAAAABAAAAAAAAAAAA" + "AAAAAAAAAAAAAAMAAPbWAAEAAAAA0y10ZXN0AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAAAAAAAAAAAAAAAEY3BydAAAALQAAAANZGVzYwAAAMQAAABfd3RwdAAAASQAAAAUa1RS" + "QwAAATgAAAAOdGV4dAAAAABDQzAgAAAAAGRlc2MAAAAAAAAABXRlc3QAZW5VUwAAAAAAAAAAAAAA" + "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAFhZWiAAAAAAAAE7uwABAAAAARmZY3VydgAAAAAAAAABAuYAAA=="; + std::vector icc29; + fromBase64(icc29, icc29_base64); + lodepng::State state29; + state29.info_raw.colortype = LCT_GREY; + lodepng_set_icc(&state29.info_png, "gray29", icc29.data(), icc29.size()); + + // Grayscale, Gamma 1.5, custom whitepoint + std::string icc15_base64 = + "AAABSHRlc3QCQAAAbW50ckdSQVlYWVogB+MAAQABAAAAAAAAYWNzcFNHSSAAAAABAAAAAAAAAAAA" + "AAAAAAAAAAAAAAMAAPbWAAEAAAAA0y10ZXN0AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAAAAAAAAAAAAAAAEY3BydAAAALQAAAANZGVzYwAAAMQAAABfd3RwdAAAASQAAAAUa1RS" + "QwAAATgAAAAOdGV4dAAAAABDQzAgAAAAAGRlc2MAAAAAAAAABXRlc3QAZW5VUwAAAAAAAAAAAAAA" + "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" + "AAAAAAAAAFhZWiAAAAAAAAE7uwABAAAAARmZY3VydgAAAAAAAAABAYAAAA=="; + std::vector icc15; + fromBase64(icc15, icc15_base64); + lodepng::State state15; + state15.info_raw.colortype = LCT_GREY; + lodepng_set_icc(&state15.info_png, "gray15", icc15.data(), icc15.size()); + + + // make 8-pixel grayscale image with different shades of gray + unsigned w = 4, h = 2; + std::vector im(w * h, 255); + im[0] = 0; + im[1] = 40; + im[2] = 80; + im[3] = 120; + im[4] = 160; + im[5] = 200; + im[6] = 240; + im[7] = 255; + + { + std::vector im2(w * h, 255); + assertNoError(convertToSrgb(im2.data(), im.data(), w, h, &state29)); + + ASSERT_NEAR(0, im2[0], 1); + ASSERT_NEAR(15, im2[1], 1); + ASSERT_NEAR(52, im2[2], 1); + ASSERT_NEAR(94, im2[3], 1); + ASSERT_NEAR(139, im2[4], 1); + ASSERT_NEAR(187, im2[5], 1); + ASSERT_NEAR(236, im2[6], 1); + ASSERT_NEAR(255, im2[7], 1); + + std::vector im3(w * h, 255); + assertNoError(convertFromSrgb(im3.data(), im2.data(), w, h, &state29)); + + for(size_t i = 0; i < 8; i++) { + ASSERT_NEAR(im[i], im3[i], 1); + } + } + + { + std::vector im2(w * h , 255); + assertNoError(convertRGBModel(im2.data(), im.data(), w, h, &state22, &state15, 3)); + std::vector im3(w * h, 255); + assertNoError(convertRGBModel(im3.data(), im2.data(), w, h, &state15, &state22, 3)); + for(size_t i = 0; i < im.size(); i++) { + int tolerance = im[i] < 16 ? 8 : 1; + ASSERT_NEAR(im[i], im3[i], tolerance); + } + } +} + +// input is base64-encoded png image and base64-encoded RGBA pixels (8 bit per channel) +void testBase64Image(const std::string& png64, bool expect_error, unsigned expect_w, unsigned expect_h, const std::string& expect_md5) { + std::vector png, pixels; + fromBase64(png, png64); + + std::vector decoded; + unsigned w, h; + unsigned error = lodepng::decode(decoded, w, h, png); + if(expect_error) { + ASSERT_EQUALS(true, error != 0); + return; + } + assertNoError(error); + ASSERT_EQUALS(expect_w, w); + ASSERT_EQUALS(expect_h, h); + ASSERT_EQUALS(expect_md5, md5sum(decoded)); + + // test decoding without alpha channel + { + size_t numpixels = w * h; + std::vector expected_rgb(numpixels * 3); + for(size_t i = 0; i < numpixels; i++) { + expected_rgb[i * 3 + 0] = decoded[i * 4 + 0]; + expected_rgb[i * 3 + 1] = decoded[i * 4 + 1]; + expected_rgb[i * 3 + 2] = decoded[i * 4 + 2]; + } + std::vector rgb; + ASSERT_NO_PNG_ERROR(lodepng::decode(rgb, w, h, png, LCT_RGB)); + ASSERT_EQUALS(expect_w, w); + ASSERT_EQUALS(expect_h, h); + ASSERT_EQUALS(expected_rgb, rgb); + } + + // test decoding 16-bit RGBA + // TODO: get an additional md5sum for 16-bit pixels instead to compare with + { + size_t numpixels = w * h; + std::vector rgba16; + ASSERT_NO_PNG_ERROR(lodepng::decode(rgba16, w, h, png, LCT_RGBA, 16)); + ASSERT_EQUALS(expect_w, w); + ASSERT_EQUALS(expect_h, h); + std::vector rgba8(numpixels * 4); + for(size_t i = 0; i < numpixels; i++) { + rgba8[i * 4 + 0] = rgba16[i * 8 + 0]; + rgba8[i * 4 + 1] = rgba16[i * 8 + 2]; + rgba8[i * 4 + 2] = rgba16[i * 8 + 4]; + rgba8[i * 4 + 3] = rgba16[i * 8 + 6]; + } + ASSERT_EQUALS(decoded, rgba8); + } + + // test decoding 16-bit RGB + { + size_t numpixels = w * h; + std::vector expected_rgb(numpixels * 3); + for(size_t i = 0; i < numpixels; i++) { + expected_rgb[i * 3 + 0] = decoded[i * 4 + 0]; + expected_rgb[i * 3 + 1] = decoded[i * 4 + 1]; + expected_rgb[i * 3 + 2] = decoded[i * 4 + 2]; + } + std::vector rgb16; + ASSERT_NO_PNG_ERROR(lodepng::decode(rgb16, w, h, png, LCT_RGB, 16)); + ASSERT_EQUALS(expect_w, w); + ASSERT_EQUALS(expect_h, h); + std::vector rgb8(numpixels * 3); + for(size_t i = 0; i < numpixels; i++) { + rgb8[i * 3 + 0] = rgb16[i * 6 + 0]; + rgb8[i * 3 + 1] = rgb16[i * 6 + 2]; + rgb8[i * 3 + 2] = rgb16[i * 6 + 4]; + } + ASSERT_EQUALS(expected_rgb, rgb8); + } + + // test encode/decode + // TODO: also test state, for text chunks, ... + { + std::vector rgba16; + ASSERT_NO_PNG_ERROR(lodepng::decode(rgba16, w, h, png, LCT_RGBA, 16)); + + std::vector png_b; + ASSERT_NO_PNG_ERROR(lodepng::encode(png_b, rgba16, w, h, LCT_RGBA, 16)); + + std::vector rgba16_b; + ASSERT_NO_PNG_ERROR(lodepng::decode(rgba16_b, w, h, png_b, LCT_RGBA, 16)); + ASSERT_EQUALS(rgba16, rgba16_b); + } +} +// input is base64-encoded png image and base64-encoded RGBA pixels (8 bit per channel) +void testPngSuiteImage(const std::string& png64, const std::string& name, bool expect_error, unsigned expect_w, unsigned expect_h, const std::string& expect_md5) { + std::cout << "testPngSuiteImage: " << name << std::endl; + + testBase64Image(png64, expect_error, expect_w, expect_h, expect_md5); +} + + +// Tests base64-encoded PngSuite images' pixels against expected md5 sum of their pixels +void testPngSuite() { + std::cout << "testPngSuite" << std::endl; + /* + LICENSE of the PngSuite images: + + PngSuite + -------- + + Permission to use, copy, modify and distribute these images for any + purpose and without fee is hereby granted. + + + (c) Willem van Schaik, 1996, 2011 + */ + + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAQAAAAEsBnfPAAAABGdBTUEAAYagMeiWXwAAAJBJREFUeJwtjTEOwjAMRd/GgsQVGHoApC4Zergeg7En4AxWOQATY6WA2FgsZckQNXxLeLC/v99PcBaMGeesuXCj8tHe2Wlc5b9ZY9/ZKq9Mn9kn6kSeZIffW5w255m5G98IK01L1AFP5AFLAat6F67mlNKNMootY4N6cEUeFkhwLZqf9KEdL3pRqiHloYx//QCU41EdZhgi8gAAAABJRU5ErkJggg==", + "basi0g01.png", false, 32, 32, "4336909be7bff35103266c9b215ab516"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAgAAAAFrpg0fAAAABGdBTUEAAYagMeiWXwAAAFFJREFUeJxjUGLoYADhcoa7YJyTw3DsGJSUlgYxNm5EZ7OuZ13PEPUh6gMDkMHKAGRE4RZDSCBkEUpIUscQuuo/GMMZGAIMMEEEA6YKwaCSOQCcUoBNhbbZfQAAAABJRU5ErkJggg==", + "basi0g02.png", false, 32, 32, "b16bee35e71dce6c08c2447a62ccedea"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAAAAAHk5vi/AAAABGdBTUEAAYagMeiWXwAAAK5JREFUeJxljlERwjAQRBccFBwUHAQchDoodRDqINRBwEHBQcFBwEGRECRUA5lJmM7Nftzs7bub28OywrZFdUX7xLrBvkNzR/fGanc8I9YNsV6I9cViczilQWwuaRqbR1qJzSftoSiVro39q0PWHlkHZPXIOiJrQNZpvsMH+TJHcBaHcjq/Mf+DoihLpbSua2OsZSCtcwyk7XsG0g4DA2m9ZyDtODKQNgQG0k4TgR8ngeup000HFgAAAABJRU5ErkJggg==", + "basi0g04.png", false, 32, 32, "0b40ec7e4231183b51e1c23f818a955f"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAAAAAEhFhW+AAAABGdBTUEAAYagMeiWXwAAALVJREFUeJy1kF0KwjAQhJ26yBxCxHv4Q88lPoh4sKoXEQ8hS9ymviQPXSGllM7T5JvNMiwWJBFVFRVJmKpCSCKoKlYkoaqKiyTFj5mZmQgTCYmgSgDXbCwJ52zyGtyyCTk6ZVNXfaFxQKLFnnDsv6OI3/HwO4L7gr0H8F98sT+AuwetL9YMARw8WI7v8fTgO77HzoMtypJ66gBeQxtiV5Y0UwewGchF5r/Du5h2nYT577AupsAPm7n/RegfnygAAAAASUVORK5CYII=", + "basi0g08.png", false, 32, 32, "f6470f9f6296c5109e2bd730fe203773"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAFxhsn9AAAABGdBTUEAAYagMeiWXwAAAOJJREFUeJy1kTsOwjAQRMdJCqj4XYHD5DAcj1Okyg2okCyBRLOSC0BDERKCI7xJVmgaa/X8PFo7oESJEtkaTeLDjdjjgCMe7eTE96FGd3AL7HvZsdNEaJMVo0GNGm775bgwW6Afj/SAjAY+JsYNXIHtz2xYxTXiUoOek4AbFcCnDYEK4NMGsgXcMrGHJytkBX5HIP8FAhVANIMVIBVANMPfgUAFEM3wAVyG5cxcecY5/dup3LVFa1HXmA61LY59f6Ygp1Eg1gZGQaBRILYGdxoFYmtAGgXx9YmCfPD+RMHwuuAFVpjuiRT///4AAAAASUVORK5CYII=", + "basi0g16.png", false, 32, 32, "a14e204bbf905586d3763f3cc5dcb2f3"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAGLH901AAAABGdBTUEAAYagMeiWXwAAAPJJREFUeJzVk0GqBCEMRKvAe3gTPVnTczO9iddoaLVm0Qz0Z1r4WWQxoRZifFaIkZKA4xIlfdagpM8aAQCO4xKl88acN+b8w/R+Z3agf4va9bQP7tLTPgJeL/T+LUpj4aFtkRgLc22LxFhUxW2VGGP0p+C2bc8JqQDz/6KUjUCR5TyobASKZDkPZitQSpmWYM7ZBhgrmgGovgClZASm7eGCsSI7QCXjLE3jQwRjRXaAyTqtpsmbc4Zaqy/AlJINkBogP13f4ZcNKEVngybP+6/v/NMGVPRtEZvkeT+Cc4f8DRidW8TWmjwj1Fp/24AxRleDN99NCjEh/D0zAAAAAElFTkSuQmCC", + "basi2c08.png", false, 32, 32, "512c3874e30061e623739e2f9adc4eba"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAIAAAHbjwF2AAAABGdBTUEAAYagMeiWXwAAAgpJREFUeJzVliFz4zAQhT/PGDjMYaGBgYWlPlZ4f6E/oTCFLjtYeLSwsDCBuX9wMAcLU+awV6CokSu7kWO58Qns7LxZvX3PK0VJJAnWbwDrHdg8tUl9ZUVq644QQJE7OywEUEyTbdWpx+LG67G48XpY6NBD2lbwbw+fYuUhe2ujobdvbJ6Z6GlqKnLixPseTUUukuyWUrgHSG0Stmab4A2zjZEUsMGWHjdUYaVfdmgqhcNnrW9oL/U6nCo1MZF2S3i7B9jdw8l8GVDzkWdFx7mFLHPC8hJgWkZqUCcFyDOAaci56E76uUHrOTqX1Mn9YxSDFCCfHB00NOhH6tY4DeKR1vJqJcHrtQR/XyTYXEnw8izB00KCxycJyrkEd78luJ1J8PNRgiKX4OqXBPNMgryUACRI7eUYZuVlau9dfGo4XLTYDmpTjOugTm3ySA6aqE3e20E7tcl7ODhFbfLU/sLHpwaYPnR00IX66CCoQXdqgwc4OJc6wEE/6i8dxKBucRCP2nMQm9rkiVStYL+Geqw85Ex8FYmnEc+Kgd+bIZZ52W0c7D2Lu+qiASYm34x4Au2iAbLS4CObQJhoFx/BBLqLdvELTaCfaBf/xgnEE+3iZ/0furRogMkPgOzPABMYXrSLR7oD3yvare8xgcuJdvGOExiHaBcPmMD4RLt4ywTGLdrFnQn8P6Jd/B2kFN6z3xNE9wAAAABJRU5ErkJggg==", + "basi2c16.png", false, 32, 32, "a3774d09367dd147a3539d2d2f6ca133"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAQMAAAE+s9ghAAAABGdBTUEAAYagMeiWXwAAAAZQTFRF7v8iImb/bBrSJgAAAClJREFUeJxjYICCD1C4CgpD0bCxMcOZM9hJCININj8QQIgPQAAhKBADAAm6Qi12qcOeAAAAAElFTkSuQmCC", + "basi3p01.png", false, 32, 32, "1ba59f527ff2cfdc68bb0c3487862e91"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAgMAAAF5E6LxAAAABGdBTUEAAYagMeiWXwAAAANzQklUAQEBfC53ggAAAAxQTFRFAP8A/wAA//8AAAD/ZT8rugAAAFFJREFUeJxjeMewmwGEXRgEwdjMjCE5GUreuAFi9Pais78u+LqAgT+KP4oByPjKAGTw4xZDSCBkEUpIUvc/dBUYIxiYQqugLAQDKvEfwaCSOQC0Wn3pH3XhAwAAAABJRU5ErkJggg==", + "basi3p02.png", false, 32, 32, "0528e9ac365252a8c0e2d9ced8a2cc6b"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAAH2U1dRAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAC1QTFRFIgD/AP//iAD/Iv8AAJn//2YA3QD/d/8A/wAAAP+Z3f8A/wC7/7sAAET/AP9E0rBJvQAAALZJREFUeJxj6KljOP6QoU6W4eElhihLhsVTGCwdGKawMcQst5vIAMS+DEDMxADE2Qytp4pfQiSADBGILJBxAaIEyFCDqOsIPbOq3PjdTAYoLcgApV0YoPRdBhjNAKWVGKB0GgOU3o0wB9NATJMxrcC0C9NSTNsxnYFwT0do6Jkzq1aVlxsbv3s3cyamACpXUBBTAJXr4oIpgMq9exdTAI3LgCmAylVSwhRA5aalYQqgcnfvxhAAALN26mgMdNBfAAAAAElFTkSuQmCC", + "basi3p04.png", false, 32, 32, "a339593b0d82103e30ed7b00afd68816"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAMAAAEzo7pQAAAABGdBTUEAAYagMeiWXwAAAwBQTFRFIkQA9f/td/93y///EQoAOncAIiL//xH/EQAAIiIA/6xVZv9m/2Zm/wH/IhIA3P//zP+ZRET/AFVVIgAAy8v/REQAVf9Vy8sAMxoA/+zc7f//5P/L/9zcRP9EZmb/MwAARCIA7e3/ZmYA/6RE//+q7e0AAMvL/v///f/+//8BM/8zVSoAAQH/iIj/AKqqAQEARAAAiIgA/+TLulsAIv8iZjIA//+Zqqr/VQAAqqoAy2MAEf8R1P+qdzoA/0RE3GsAZgAAAf8BiEIA7P/ca9wA/9y6ADMzAO0A7XMA//+ImUoAEf//dwAA/4MB/7q6/nsA//7/AMsA/5mZIv//iAAA//93AIiI/9z/GjMAAACqM///AJkAmQAAAAABMmYA/7r/RP///6r/AHcAAP7+qgAASpkA//9m/yIiAACZi/8RVf///wEB/4j/AFUAABER///+//3+pP9EZv///2b/ADMA//9V/3d3AACI/0T/ABEAd///AGZm///tAAEA//XtERH///9E/yL//+3tEREAiP//AAB3k/8iANzcMzP//gD+urr/mf//MzMAY8sAuroArP9V///c//8ze/4A7QDtVVX/qv//3Nz/VVUAAABm3NwA3ADcg/8Bd3f//v7////L/1VVd3cA/v4AywDLAAD+AQIAAQAAEiIA//8iAEREm/8z/9SqAABVmZn/mZkAugC6KlUA/8vLtP9m/5sz//+6qgCqQogAU6oA/6qqAADtALq6//8RAP4AAABEAJmZmQCZ/8yZugAAiACIANwA/5MiAADc/v/+qlMAdwB3AgEAywAAAAAz/+3/ALoA/zMz7f/t/8SIvP93AKoAZgBmACIi3AAA/8v/3P/c/4sRAADLAAEBVQBVAIgAAAAiAf//y//L7QAA/4iIRABEW7oA/7x3/5n/AGYAuv+6AHd3c+0A/gAAMwAzAAC6/3f/AEQAqv+q//7+AAARIgAixP+IAO3tmf+Z/1X/ACIA/7RmEQARChEA/xER3P+6uv//iP+IAQAB/zP/uY7TYgAAAqJJREFUeJxl0GlcCwAYBvA3EamQSpTSTaxjKSlJ5agQ0kRYihTKUWHRoTI5cyUiQtYhV9Eq5JjIEk0lyjoROYoW5Vo83/qw/+f3fX/P81KGRTSbWEwxh4JNnRnU7C41I56wrpdc+N4C8khtUCGRhBtClnoa1J5d3EJl9pqJnia16eRoGBuq46caQblWadqN8uo1lMGzEEbXsXv7hlkuTL7YmyPo2wr2ME11bmCo9K03i9wlUq5ZSN8dNbUhQxQVMzO7u6ur6+s7O8nJycbGwMDXt7U1MjIlpaqKAgJKS+3sCgoqK83NfXzy86mpyc3N2LitzdW1q6uoKCmJgoJKSrKyEhKsrb28FBTi4khZuacnMDAvT0kpLExXNzycCgtzcoyMHBw6OpKTbW39/Sk+PiYmKkpOrqJCS0tfv7ycMjJ4PAsLoTA6uq6Oze7tlQ1maamnp6FB1N6enV1c3NIim5TFcnFhMvl8sdjbm8MRCGSjl5XZ22tqJiZ6epqY1Namp8t2CQ728DA1TU11dm5oYDBUVGTLOToaGsbGhobq6Pj5qapGRMi2bW4WidzdJRKplMs1MwsJka2fm2tllZamrd3YKC+vrl5TI/uPQdAfdsIv2AYb4Bv8BBoDI+EALIHNMAuewCegyTABTsA1WA/D4RK8BpoLU+EcDICV8AF2wWOg5TAbrsBqWAZ3YA3cBboPE+EgvIGncBM+w1WgFzANTsIMeAC74SGcAvoI8+E8HIXbsAouwF6g3/AKbsFamAJzYAcMBHoG1+EIXITxsBT2wD+gszAYtsAhGAHr4Bj8ANoKb2ERPId+sB1OwxeghXAPJsEw+A774TK8A5oHM+EG/IH38Bf2wQqg0TAKDsN0eAlD4TgsBvoKm2AjjINHMBbOwAL4D3P+/hByr8HlAAAAAElFTkSuQmCC", + "basi3p08.png", false, 32, 32, "d36bdbefc126ef50bd57d51eb38f2ac4"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAQAAAGudILpAAAABGdBTUEAAYagMeiWXwAAAI1JREFUeJztj80KgzAMx3+BHvTWvUH7KPbB9yhzT7Dt5LUeHBWiEkFWhpgQGtL/RyIZOhLJ3Zli2UgOJAvzgECcs/ygoZsDyb7wA5Hoek2pMpAXeDw3VaVbMHTUADx/biG5Wbt+Lve2LD4W4FKoZnFYQQZovtmqd8+kNR2sMG8wBU6wwQlOuDb4hw2OCozsTz0JHVlVXQAAAABJRU5ErkJggg==", + "basi4a08.png", false, 32, 32, "e2212ec5fa026a41826136e983bf92b2"); + testPngSuiteImage("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", + "basi4a16.png", false, 32, 32, "f1423ebc08979252299ca238656ab0ba"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAYAAAEEfUpiAAAABGdBTUEAAYagMeiWXwAAASBJREFUeJzFlUFOwzAQRZ+lQbi7smZBuAabhh6LTRLBwRLBRSpxCipl2EDVlJBB/EgeyYrifH8/jSfj5GSAR2AP7A0fOQ+74mM6MeKTieTk6nv9vz2aa4AKuJ8b1rVTz8uwZ56WBWPXLgqSk7cze5+YjMZ/Xw4YbSDoCAQvHJcFThMJ2kDQLX4n+S4DbL/GTfD8MRemIQobatGgDfIcGrzyoBlExxAbDLVooAGQnJz545nPPY2dRmCodUBdmmDQALBeLeVeJXgLelJo4GIhGOI5mqsGOoFYCEYvGrhokPwuA+SLsQne19Js5L9ZDbkbrABQdH/sUBXOgNoOVwAoG+Uz8M5tWQC1m8sA6m0gAxTPgB+qsgDqdSgDqNepDFA6A5+CSlP0aU5zQgAAAABJRU5ErkJggg==", + "basi6a08.png", false, 32, 32, "e80a60aecf13ebd863b61167ba95960b"); + testPngSuiteImage("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", + "basi6a16.png", false, 32, 32, "4d9d6473bb7403d7f85e3e7537c34e9d"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAQAAAABbAUdZAAAABGdBTUEAAYagMeiWXwAAAFtJREFUeJwtzLEJAzAMBdHr0gSySiALejRvkBU8gsGNCmFFB1Hx4IovqurSpIRszqklUwbnUzRXEuIRsiG/SyY9G0JzJSVei9qynm9qyjBpLp0pYW7pbzBl8L8fEIdJL9AvFMkAAAAASUVORK5CYII=", + "basn0g01.png", false, 32, 32, "4336909be7bff35103266c9b215ab516"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAgAAAAAcoT2JAAAABGdBTUEAAYagMeiWXwAAAB9JREFUeJxjYAhd9R+M8TCIUMIAU4aPATMJH2OQuQcAvUl/gYsJiakAAAAASUVORK5CYII=", + "basn0g02.png", false, 32, 32, "b16bee35e71dce6c08c2447a62ccedea"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAAAAACT4cgpAAAABGdBTUEAAYagMeiWXwAAAEhJREFUeJxjYGAQFFRSMjZ2cQkNTUsrL2cgQwCV29FBjgAqd+ZMcgRQuatWkSOAyt29mxwBVO6ZM+QIoHLv3iVHAJX77h0ZAgAfFO4B6v9B+gAAAABJRU5ErkJggg==", + "basn0g04.png", false, 32, 32, "0b40ec7e4231183b51e1c23f818a955f"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAAAAABWESUoAAAABGdBTUEAAYagMeiWXwAAAEFJREFUeJxjZGAkABQIyLMMBQWMDwgp+PcfP2B5MBwUMMoRkGdkonlcDAYFjI/wyv7/z/iH5nExGBQwyuCVZWQEAFDl/nE14thZAAAAAElFTkSuQmCC", + "basn0g08.png", false, 32, 32, "f6470f9f6296c5109e2bd730fe203773"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAYagMeiWXwAAAF5JREFUeJzV0jEKwDAMQ1E5W+9/xtygk8AoezLVKgSj2Y8/OICnuFcTE2OgOoJgHQiZAN2C9kDKBOgW3AZCJkC3oD2QMgG6BbeBkAnQLWgPpExgP28H7E/0GTjPfwAW2EvYX64rn9cAAAAASUVORK5CYII=", + "basn0g16.png", false, 32, 32, "a14e204bbf905586d3763f3cc5dcb2f3"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAAYagMeiWXwAAAEhJREFUeJzt1cEJADAMAkCF7JH9t3ITO0Qr9KH4zuErtA0EO4AKFPgcoO3kfUx4QIECD0qHH8KEBxQo8KB0OCOpQIG7cHejwAGCsfleD0DPSwAAAABJRU5ErkJggg==", + "basn2c08.png", false, 32, 32, "512c3874e30061e623739e2f9adc4eba"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAIAAACsiDHgAAAABGdBTUEAAYagMeiWXwAAAOVJREFUeJzVlsEKgzAQRKfgQX/Lfrf9rfaWHgYDkoYmZpPMehiGReQ91qCPEEIAPi/gmu9kcnN+GD0nM1/O4vNad7cC6850KHCiM5fz7fJwXdEBYPOygV/o7PICeXSmsMA/dKbkGShD51xsAzXo7DIC9ehMAYG76MypZ6ANnfNJG7BAZx8uYIfOHChgjR4F+MfuDx0AtmfnDfREZ+8m0B+9m8Ao9Chg9x0Yi877jTYwA529WWAeerPAbPQoUH8GNNA5r9yAEjp7sYAeerGAKnoUyJ8BbXTOMxvwgM6eCPhBTwS8oTO/5kL+Xge7xOwAAAAASUVORK5CYII=", + "basn2c16.png", false, 32, 32, "a3774d09367dd147a3539d2d2f6ca133"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAQMAAABJtOi3AAAABGdBTUEAAYagMeiWXwAAAAZQTFRF7v8iImb/bBrSJgAAABVJREFUeJxj4AcCBjTiAxCgEwOkDgC7Hz/Bk4JmWQAAAABJRU5ErkJggg==", + "basn3p01.png", false, 32, 32, "1ba59f527ff2cfdc68bb0c3487862e91"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAgMAAAAOFJJnAAAABGdBTUEAAYagMeiWXwAAAANzQklUAQEBfC53ggAAAAxQTFRFAP8A/wAA//8AAAD/ZT8rugAAACJJREFUeJxj+B+6igGEGfAw8MnBGKugLHwMqNL/+BiDzD0AvUl/geqJjhsAAAAASUVORK5CYII=", + "basn3p02.png", false, 32, 32, "0528e9ac365252a8c0e2d9ced8a2cc6b"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAC1QTFRFIgD/AP//iAD/Iv8AAJn//2YA3QD/d/8A/wAAAP+Z3f8A/wC7/7sAAET/AP9E0rBJvQAAAEdJREFUeJxj6OgIDT1zZtWq8nJj43fvZs5kIEMAlSsoSI4AKtfFhRwBVO7du+QIoHEZyBFA5SopkSOAyk1LI0cAlbt7NxkCAODE6tEPggV9AAAAAElFTkSuQmCC", + "basn3p04.png", false, 32, 32, "a339593b0d82103e30ed7b00afd68816"); + testPngSuiteImage("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", + "basn3p08.png", false, 32, 32, "d36bdbefc126ef50bd57d51eb38f2ac4"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAQAAADZc7J/AAAABGdBTUEAAYagMeiWXwAAADVJREFUeJxj/M/AwAGFnGg0MSKcLN8ZKAMsP4a+AaNhMBoGVDFgNBBHw4AqBowG4mgYUMMAAN8qIH3E64XIAAAAAElFTkSuQmCC", + "basn4a08.png", false, 32, 32, "e2212ec5fa026a41826136e983bf92b2"); + testPngSuiteImage("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", + "basn4a16.png", false, 32, 32, "f1423ebc08979252299ca238656ab0ba"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAYAAABzenr0AAAABGdBTUEAAYagMeiWXwAAAG9JREFUeJzt1jEKgDAMRuEnZGhPofc/VQSPIcTdxUV4HVLoUCj8H00o2YoBMF57fpz/ujODHXUFRwPKBqj5DVigB041HiJ9gFyCVOMbsEIPXNwuAHkgiJL/4qABNqB7QAeUPBAE2QAZUDZAfwEb8ABSIBqcFg+4TAAAAABJRU5ErkJggg==", + "basn6a08.png", false, 32, 32, "e80a60aecf13ebd863b61167ba95960b"); + testPngSuiteImage("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", + "basn6a16.png", false, 32, 32, "4d9d6473bb7403d7f85e3e7537c34e9d"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAQAAAGudILpAAAABGdBTUEAAYagMeiWXwAAAI1JREFUeJztj80KgzAMx3+BHvTWvUH7KPbB9yhzT7Dt5LUeHBWiEkFWhpgQGtL/RyIZOhLJ3Zli2UgOJAvzgECcs/ygoZsDyb7wA5Hoek2pMpAXeDw3VaVbMHTUADx/biG5Wbt+Lve2LD4W4FKoZnFYQQZovtmqd8+kNR2sMG8wBU6wwQlOuDb4hw2OCozsTz0JHVlVXQAAAABJRU5ErkJggg==", + "bgai4a08.png", false, 32, 32, "e2212ec5fa026a41826136e983bf92b2"); + testPngSuiteImage("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", + "bgai4a16.png", false, 32, 32, "f1423ebc08979252299ca238656ab0ba"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAYAAABzenr0AAAABGdBTUEAAYagMeiWXwAAAG9JREFUeJzt1jEKgDAMRuEnZGhPofc/VQSPIcTdxUV4HVLoUCj8H00o2YoBMF57fpz/ujODHXUFRwPKBqj5DVigB041HiJ9gFyCVOMbsEIPXNwuAHkgiJL/4qABNqB7QAeUPBAE2QAZUDZAfwEb8ABSIBqcFg+4TAAAAABJRU5ErkJggg==", + "bgan6a08.png", false, 32, 32, "e80a60aecf13ebd863b61167ba95960b"); + testPngSuiteImage("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", + "bgan6a16.png", false, 32, 32, "4d9d6473bb7403d7f85e3e7537c34e9d"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAQAAADZc7J/AAAABGdBTUEAAYagMeiWXwAAAAJiS0dEAACqjSMyAAAANUlEQVR4nGP8z8DAAYWcaDQxIpws3xkoAyw/hr4Bo2EwGgZUMWA0EEfDgCoGjAbiaBhQwwAA3yogfcTrhcgAAAAASUVORK5CYII=", + "bgbn4a08.png", false, 32, 32, "e2212ec5fa026a41826136e983bf92b2"); + testPngSuiteImage("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", + "bggn4a16.png", false, 32, 32, "f1423ebc08979252299ca238656ab0ba"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAYAAABzenr0AAAABGdBTUEAAYagMeiWXwAAAAZiS0dEAP8A/wD/oL2nkwAAAG9JREFUeJzt1jEKgDAMRuEnZGhPofc/VQSPIcTdxUV4HVLoUCj8H00o2YoBMF57fpz/ujODHXUFRwPKBqj5DVigB041HiJ9gFyCVOMbsEIPXNwuAHkgiJL/4qABNqB7QAeUPBAE2QAZUDZAfwEb8ABSIBqcFg+4TAAAAABJRU5ErkJggg==", + "bgwn6a08.png", false, 32, 32, "e80a60aecf13ebd863b61167ba95960b"); + testPngSuiteImage("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", + "bgyn6a16.png", false, 32, 32, "4d9d6473bb7403d7f85e3e7537c34e9d"); + testPngSuiteImage("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", + "ccwn2c08.png", false, 32, 32, "5189ed8d023b977fa90833e90e4a830a"); + testPngSuiteImage("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", + "ccwn3p08.png", false, 32, 32, "1a63f18f17006d850d1c041e49a7721f"); + testPngSuiteImage("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", + "cdfn2c08.png", false, 8, 32, "dbfdad37268883ddeeecc745da77130c"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAICAIAAAAX52r4AAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAlwSFlzAAAABAAAAAEAH+hVZQAAAOtJREFUeJx9kmuxwyAUhL/M1MBawEIsxEIsxEIs3FiohVjAAhaOhSMh9wePQtt0hwEG5rx2d7r4QADVxbg3eN3zxbr7iEc5BTOssJaHFtIHeleo9RDao8EBCawvIFgglN5dRIjwLLNsuHBh3RRy5AQgwSn8D2aYA+TlEEuZB+sr0EpeHJE/zl1PtshGrMPICAdz3GFNzIJoJANr8+foE6xRdAeBMJGQqhSGnE6kOzjAdPUULfjyRtECAQfXIEJmCYMY8D1T5HDU1JWi6WqdhkFkH63xZhCNIr8oPsAGkacvNu2d8YOH3ql+a9N/CM1cqmi++6QAAAAASUVORK5CYII=", + "cdhn2c08.png", false, 32, 8, "650268c7196860898cbe701005cf2407"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAgAAAAICAIAAABLbSncAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAlwSFlzAAAAAQAAAAEATyXE1gAAAHtJREFUeJxFzlENwkAURNFTgoFnYS3UQisBC1gACSCBSsDCVgIroSuhlbB8NIX5mUwyubldQzCQ2KjMcBZ8zKFiP0zcaRd53Stb3n2LNWvJSVIwX/PoNvbbNlQkJ0dqRI0Qxz5Qg+VlffxQXQuyEsphFxNP3V93hxQKfAEqsC/QF17WrgAAAABJRU5ErkJggg==", + "cdsn2c08.png", false, 8, 8, "9e580d6237f77bfa8e49cfef19236bcb"); + testPngSuiteImage("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", + "cdun2c08.png", false, 32, 32, "fbe519db5608cf411e933ccbd1f92f87"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAC1QTFRFIgD/AP//iAD/Iv8AAJn//2YA3QD/d/8A/wAAAP+Z3f8A/wC7/7sAAET/AP9E0rBJvQAAAB5oSVNUAEAAcAAwAGAAYAAgACAAUAAQAIAAQAAQADAAUABwSJlZQQAAAEdJREFUeJxj6OgIDT1zZtWq8nJj43fvZs5kIEMAlSsoSI4AKtfFhRwBVO7du+QIoHEZyBFA5SopkSOAyk1LI0cAlbt7NxkCAODE6tEPggV9AAAAAElFTkSuQmCC", + "ch1n3p04.png", false, 32, 32, "a339593b0d82103e30ed7b00afd68816"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAMAAABEpIrGAAAABGdBTUEAAYagMeiWXwAAAwBQTFRFIkQA9f/td/93y///EQoAOncAIiL//xH/EQAAIiIA/6xVZv9m/2Zm/wH/IhIA3P//zP+ZRET/AFVVIgAAy8v/REQAVf9Vy8sAMxoA/+zc7f//5P/L/9zcRP9EZmb/MwAARCIA7e3/ZmYA/6RE//+q7e0AAMvL/v///f/+//8BM/8zVSoAAQH/iIj/AKqqAQEARAAAiIgA/+TLulsAIv8iZjIA//+Zqqr/VQAAqqoAy2MAEf8R1P+qdzoA/0RE3GsAZgAAAf8BiEIA7P/ca9wA/9y6ADMzAO0A7XMA//+ImUoAEf//dwAA/4MB/7q6/nsA//7/AMsA/5mZIv//iAAA//93AIiI/9z/GjMAAACqM///AJkAmQAAAAABMmYA/7r/RP///6r/AHcAAP7+qgAASpkA//9m/yIiAACZi/8RVf///wEB/4j/AFUAABER///+//3+pP9EZv///2b/ADMA//9V/3d3AACI/0T/ABEAd///AGZm///tAAEA//XtERH///9E/yL//+3tEREAiP//AAB3k/8iANzcMzP//gD+urr/mf//MzMAY8sAuroArP9V///c//8ze/4A7QDtVVX/qv//3Nz/VVUAAABm3NwA3ADcg/8Bd3f//v7////L/1VVd3cA/v4AywDLAAD+AQIAAQAAEiIA//8iAEREm/8z/9SqAABVmZn/mZkAugC6KlUA/8vLtP9m/5sz//+6qgCqQogAU6oA/6qqAADtALq6//8RAP4AAABEAJmZmQCZ/8yZugAAiACIANwA/5MiAADc/v/+qlMAdwB3AgEAywAAAAAz/+3/ALoA/zMz7f/t/8SIvP93AKoAZgBmACIi3AAA/8v/3P/c/4sRAADLAAEBVQBVAIgAAAAiAf//y//L7QAA/4iIRABEW7oA/7x3/5n/AGYAuv+6AHd3c+0A/gAAMwAzAAC6/3f/AEQAqv+q//7+AAARIgAixP+IAO3tmf+Z/1X/ACIA/7RmEQARChEA/xER3P+6uv//iP+IAQAB/zP/uY7TYgAAAgBoSVNUAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAAQABAAEAARNzPXjAAABsUlEQVR4nA3BBwAIBBAAwEeojEhkKzszCWVrWGVn7xWK0LD3Kio0aJgNq2zK3qOMhp2VWTKy9767mML3FOZX+rKXptwlHuQBBnODnrzFea4TaUjJQ0zlKjs4wAUiG+n5iAa8S0U2c4p4midIS/A/01nOEeI58vMFc+jEo/zIPqI8xchOM/6hN1+ynXiVMkwmMa04wVB+IV7jBYrwE/upR3fWEE2oyiza0pgVtGcl0YaNPM/PbKMQDVlIrKYoIznKVpZwmtnEJkryOB9Ti9z8xbfETsrxFS+xlvdZz9fEISqTi/+oxCUW8xlxkhp8w6csozXfMZx4k2o8xTgqcJACpCBusoeldKAUr9CfpEQ71jGNYTxLHZIwkPiN+XzCDPLRiA+4R5QlBwPoShZakJoexCQe5j1GkY43+JwrRHKu8TrzSMbbZOUdohvHqMufJKQX4zlDHOYPqnCROwyhIB2J2qyiOKm4zIfM5DixiB/ISWnOMoYStCSq8zILuMW/3GYEzYm5PMNEMvE3iXiMXURmMjCaF9nNI4ylPjGIfvQhAb+TkSfZQpyjC53JywbyMIGa3AeBG/4Qh5bI4AAAAABJRU5ErkJggg==", + "ch2n3p08.png", false, 32, 32, "d36bdbefc126ef50bd57d51eb38f2ac4"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAAAAACT4cgpAAAABGdBTUEAAYagMeiWXwAAAAd0SU1FB9ABAQwiON2c/4AAAADISURBVHicXdHBDcIwDAVQHypACPAIHaEjsAojVOLIBTEBGzACbFBGYAPYoEY9lQKfxElR4hwq58V17ZRgFiVxa4ENSJ7xmoip8bSAbQL3f80I/LXg358J0Y09LBS4ZuxPSwrnB6DQdI7AKMjvBeSS1x6m7UYLO+hQuoCvvnt4cOddAzmHLwdwjyokKOwq6Xns1YOg1/4e2unn6ED3Q7wgEglj1HEWnotO21UjhCkxMbcujYEVchDk8GYDF+QwsIHkZ2gopYF0/QAe2cJF+P+JawAAAABJRU5ErkJggg==", + "cm0n0g04.png", false, 32, 32, "cf2f1ab4f34d0c70f15f636ef584d53a"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAAAAACT4cgpAAAABGdBTUEAAYagMeiWXwAAAAd0SU1FB7IBAQAAAB4KVgsAAADISURBVHicXdHBDcIwDAVQHypACPAIHaEjsAojVOLIBTEBGzACbFBGYAPYoEY9lQKfxElR4hwq58V17ZRgFiVxa4ENSJ7xmoip8bSAbQL3f80I/LXg358J0Y09LBS4ZuxPSwrnB6DQdI7AKMjvBeSS1x6m7UYLO+hQuoCvvnt4cOddAzmHLwdwjyokKOwq6Xns1YOg1/4e2unn6ED3Q7wgEglj1HEWnotO21UjhCkxMbcujYEVchDk8GYDF+QwsIHkZ2gopYF0/QAe2cJF+P+JawAAAABJRU5ErkJggg==", + "cm7n0g04.png", false, 32, 32, "cf2f1ab4f34d0c70f15f636ef584d53a"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAAAAACT4cgpAAAABGdBTUEAAYagMeiWXwAAAAd0SU1FB88MHxc7O3UwH+AAAADISURBVHicXdHBDcIwDAVQHypACPAIHaEjsAojVOLIBTEBGzACbFBGYAPYoEY9lQKfxElR4hwq58V17ZRgFiVxa4ENSJ7xmoip8bSAbQL3f80I/LXg358J0Y09LBS4ZuxPSwrnB6DQdI7AKMjvBeSS1x6m7UYLO+hQuoCvvnt4cOddAzmHLwdwjyokKOwq6Xns1YOg1/4e2unn6ED3Q7wgEglj1HEWnotO21UjhCkxMbcujYEVchDk8GYDF+QwsIHkZ2gopYF0/QAe2cJF+P+JawAAAABJRU5ErkJggg==", + "cm9n0g04.png", false, 32, 32, "cf2f1ab4f34d0c70f15f636ef584d53a"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAIAAACsiDHgAAAABGdBTUEAAYagMeiWXwAAAANzQklUDQ0N0DeNwQAAAH5JREFUeJztl8ENxEAIAwcJ6cpI+q8qKeNepAgelq2dCjz4AdQM1jRcf3WIDQ13qUNsiBBQZ1gR0cARUFIz3pug3586wo5+rOcfIaBOsCSggSOgpcB8D4D3R9DgfUyECIhDbAhp4AjoKPD+CBq8P4IG72MiQkCdYUVEA0dAyQcwUyZpXH92ZwAAAABJRU5ErkJggg==", + "cs3n2c16.png", false, 32, 32, "023541189afc3aa4ae617158b59fe635"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAMAAABEpIrGAAAABGdBTUEAAYagMeiWXwAAAANzQklUAwMDo5KgQgAAAFRQTFRFkv8AAP+SAP//AP8AANv/AP9t/7YAAG3/tv8A/5IA2/8AAEn//yQA/wAAJP8ASf8AAP/bAP9JAP+2//8AAP8kALb//9sAAJL//20AACT//0kAbf8A33ArFwAAAEtJREFUeJyFyscBggAAALGzYldUsO2/pyMk73SGGE7QF3pDe2gLzdADHA7QDqIfdIUu0AocntAIbaAFdIdu0BIc1tAEvaABOkIf+AMiQDPhd/SuJgAAAABJRU5ErkJggg==", + "cs3n3p08.png", false, 32, 32, "6b15613bf70a37c37de24edfb8f6d1df"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAAYagMeiWXwAAAANzQklUBQUFGCbeQwAAAGJJREFUeJztlbERgEAMw5Q7L0EH+w/Fd4zxbEAqUUUDROfCcW1cwmELLltw2gI9wQgaastFyOPeJ7ctWLZATzCCjsLuAfIgBPlXBHkQ/kgwgm8KeRCCPAhB/hVh2QI9wQgaXuXOFG8QELloAAAAAElFTkSuQmCC", + "cs5n2c08.png", false, 32, 32, "3211fb3ede03caf163fe33b4cf6d78f6"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAMAAABEpIrGAAAABGdBTUEAAYagMeiWXwAAAANzQklUBQUFGCbeQwAAAGBQTFRF/xkAQv8Axf8AAP97AP+9AP//AP8AAMX/AKX//94Apf8AAGP//5wAACH//1oAAP86/zoAY/8A5v8A/wAAAP9aIf8AAP+cAP/eAOb///8AAIT//70AAEL//3sAhP8AAP8ZRy+F9QAAAEtJREFUeJyFwQUBwAAAgDDu7u79Wz4CG5NA9YJW8AhqwSUoBIdgFISCUvAKBkEgWASp4BN0glkQCVZBLNgEiWAXZIJccAoqwS1oxA/GcT4B7dbxuwAAAABJRU5ErkJggg==", + "cs5n3p08.png", false, 32, 32, "3211fb3ede03caf163fe33b4cf6d78f6"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAAYagMeiWXwAAAExJREFUeJzt1UENADAMQlGa4GPzr2pT0olo/mkgoO9EqRYba9HADhBgmGq4CL7sffkECDBNie6B4EGw4F8R4AOgBA+CBQ+CdQIEGOYB69wUb0ah5KoAAAAASUVORK5CYII=", + "cs8n2c08.png", false, 32, 32, "023541189afc3aa4ae617158b59fe635"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAMAAABEpIrGAAAABGdBTUEAAYagMeiWXwAAAGBQTFRFIP8A/x8AAP8fAP/foP8AAP8/AP//AP8AgP8AAP9fAP9/YP8A/wAA4P8AAP+fAOD/QP8A//8AAMD//98AAKD//78AAID/wP8AAP+//58AAGD//38AAED//18AACD//z8As4GzYwAAAEtJREFUeJyFwQUBwAAAgDDu7u79Wz4CG7UgEHyCR3AJDsEimASDoBFsgliQCypBL1CZIBQkgkJQClrBLogEqaATjIJZsApOwS14xQ8p4j4B+PNT2QAAAABJRU5ErkJggg==", + "cs8n3p08.png", false, 32, 32, "023541189afc3aa4ae617158b59fe635"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAAAAACT4cgpAAAABGdBTUEAAYagMeiWXwAAAMhJREFUeJxd0cENwjAMBVAfKkAI8AgdoSOwCiNU4sgFMQEbMAJsUEZgA9igRj2VAp/ESVHiHCrnxXXtlGAWJXFrgQ1InvGaiKnxtIBtAvd/zQj8teDfnwnRjT0sFLhm7E9LCucHoNB0jsAoyO8F5JLXHqbtRgs76FC6gK++e3hw510DOYcvB3CPKiQo7CrpeezVg6DX/h7a6efoQPdDvCASCWPUcRaei07bVSOEKTExty6NgRVyEOTwZgMX5DCwgeRnaCilgXT9AB7ZwkX4/4lrAAAAAElFTkSuQmCC", + "ct0n0g04.png", false, 32, 32, "cf2f1ab4f34d0c70f15f636ef584d53a"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAAAAACT4cgpAAAABGdBTUEAAYagMeiWXwAAAA50RVh0VGl0bGUAUG5nU3VpdGVPVc9MAAAAMXRFWHRBdXRob3IAV2lsbGVtIEEuSi4gdmFuIFNjaGFpawood2lsbGVtQHNjaGFpay5jb20pjsxHHwAAADh0RVh0Q29weXJpZ2h0AENvcHlyaWdodCBXaWxsZW0gdmFuIFNjaGFpaywgU2luZ2Fwb3JlIDE5OTUtOTaEUAQ4AAAA+3RFWHREZXNjcmlwdGlvbgBBIGNvbXBpbGF0aW9uIG9mIGEgc2V0IG9mIGltYWdlcyBjcmVhdGVkIHRvIHRlc3QgdGhlCnZhcmlvdXMgY29sb3ItdHlwZXMgb2YgdGhlIFBORyBmb3JtYXQuIEluY2x1ZGVkIGFyZQpibGFjayZ3aGl0ZSwgY29sb3IsIHBhbGV0dGVkLCB3aXRoIGFscGhhIGNoYW5uZWwsIHdpdGgKdHJhbnNwYXJlbmN5IGZvcm1hdHMuIEFsbCBiaXQtZGVwdGhzIGFsbG93ZWQgYWNjb3JkaW5nCnRvIHRoZSBzcGVjIGFyZSBwcmVzZW50Lk0JDWsAAAA5dEVYdFNvZnR3YXJlAENyZWF0ZWQgb24gYSBOZVhUc3RhdGlvbiBjb2xvciB1c2luZyAicG5tdG9wbmciLmoSZHkAAAAUdEVYdERpc2NsYWltZXIARnJlZXdhcmUuX4AsSgAAAMhJREFUeJxd0cENwjAMBVAfKkAI8AgdoSOwCiNU4sgFMQEbMAJsUEZgA9igRj2VAp/ESVHiHCrnxXXtlGAWJXFrgQ1InvGaiKnxtIBtAvd/zQj8teDfnwnRjT0sFLhm7E9LCucHoNB0jsAoyO8F5JLXHqbtRgs76FC6gK++e3hw510DOYcvB3CPKiQo7CrpeezVg6DX/h7a6efoQPdDvCASCWPUcRaei07bVSOEKTExty6NgRVyEOTwZgMX5DCwgeRnaCilgXT9AB7ZwkX4/4lrAAAAAElFTkSuQmCC", + "ct1n0g04.png", false, 32, 32, "cf2f1ab4f34d0c70f15f636ef584d53a"); + testPngSuiteImage("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", + "cten0g04.png", false, 32, 32, "ac076245d12023e111ec36acb36dcff1"); + testPngSuiteImage("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", + "ctfn0g04.png", 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testPngSuiteImage("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", + "ctgn0g04.png", false, 32, 32, "32546f7ef2cce19fcbaa6b8849592c38"); + testPngSuiteImage("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", + "cthn0g04.png", false, 32, 32, "c570e7393458556ecef30b71824e0d6e"); + testPngSuiteImage("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", + "ctjn0g04.png", false, 32, 32, "81fd25285e6b46f3996cfd02b1f16071"); + testPngSuiteImage("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", + "ctzn0g04.png", false, 32, 32, "cf2f1ab4f34d0c70f15f636ef584d53a"); + testPngSuiteImage("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", + "exif2c08.png", false, 32, 32, "7acea6df2b0e2a7613981decc569b2fb"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAAAAABWESUoAAABBklEQVR4nIXSL0xCURTH8a/gGHNjBjc3AoFioFhIr7z0molmsxFpVCONSLPRbCYSiWKxWAwWN4ObG5ubcwzk6f3jds71hXPr/eye3/3dy/VkOruZ394tlqv7h8en55fXt/f1x+fXZrv73pflD2NDMDIEQ0NwZQguDcHAEFwYgkILwkoEuRJQFWQi3Jafkgr6IiDmAJWDcxEQkroTVFJ6IsAn9SHUXTgTgX+5kFLdlq4I8DlwZ6g+6IgANwV/W9UYbRHh9DBFdcqpCL8f+1CtcyLC7Sd9BMGxCEj6iIKWCKIg9vEnOEpFWPr1aVZF8j9oJCLLi38/iENDUDcENUNwYAgsgSWwxC/EfcpYUKbOtgAAAABJRU5ErkJggg==", + "f00n0g08.png", false, 32, 32, "f34b8a71205dc26cd37d58fb19179172"); + testPngSuiteImage("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", + "f00n2c08.png", false, 32, 32, "d70ea8925988413a9fe9de1633a31033"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAAAAABWESUoAAABCElEQVR4nIXSIUvEQRAF8Pd2dnb2BDEIgsFgMVgsJovJZhIMNsFgFC4IpuOSYDi4IlwQDIJBMIjB5Cew+I0MHvff2bC7+ce+meFxki2bmaWUVFWjShQRCSGQJMjbUUfcWFvwOnfEpXXEhXXEmXXEaWoLnpgT5/j2gsepFFfAl/+DR1qIMYAPn8LDNIgpALz5OXigKzEHZmO8+Em5ryuxwCTf4cnvwr04iGyjKR79ttxVJx4w8/fgTnRijnt/MW5HJxaoGsQtceIZVYO4KU68omoQN6IT76gaxPXgxCeqBnFNBvGD/1emMIdB/C5BmcIUClHedCkYQ1tQ2BYMbAuSbUF0BNERREf8AZVRLIMTf6sKAAAAAElFTkSuQmCC", + "f01n0g08.png", false, 32, 32, "38446c18ff7e0ca3951b7ad5fa5e81c0"); + testPngSuiteImage("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", + "f01n2c08.png", false, 32, 32, "a9081889af0c30f206d793919792a0b6"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAAAAABWESUoAAABKklEQVR4nIXRL0uDURgF8MP5OBaLIIggCIJBDAODTdgHGCxYh0kwDFYEwwsLA8Ng4U2CYBLBYrEYLIJBEARB9H3uX8Om97nvwr35x+Wc83BwOjyvJtP66ub2/uHx6fnl9e394/PruzHW+RAifxppRESMMdZa66x33nsfQogxRkRKQbApCEpBUAqCUhA0BUHR4mB/d3tzPRM0SnQBAMgEbRJ9oJpM61zQJAEMRURqQOWgTQKYJwVUUtokesfzLoDqQqfEogug2tIuiS6g9qBriz5QqcXoWuJk0eVP0OdiBAyy1ekzMQZ6+V3otJgBR63LMShxDXTat6VP4g7A7HJ8MTpTgiEJ/D/1B0MSK6trG1s7e51DnYNBieXVRRgLgrEgGAuCsSCIgiAK4hfp5Je/v8zr/QAAAABJRU5ErkJggg==", + "f02n0g08.png", false, 32, 32, "9af1c44cbb489e5385f422d047612dfc"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAGiElEQVR4nG3VSYgkeRXH8W9ELVlLV2Vl7dXrDIjiwe2ieNDGkyCIoA6ic+jBy0AjeNDGg4cZ8KAwAyIIjiCIg+0CguAoKiLSiLjggj30lN21de1V2VUV9Y+Mf74XEZnxPERGV9Z0x/F/+H9478X//UJjxEbqNrVgi9fsmXfZu99nH/iQffi6fezj9olP2ac/Z1+4YV980W5+2b7yNfv6S/aNb9or37bvfs9+8EP78U/tF7+0X//W/vgn+8tf7V//sXvLtr5he/t2EllbzCyMrhgLKfPKnDKrTCvTSkOZUiaVSWVCuaCMK6PKqDKi1JQhZUgZVAaUUEFBMaVQOkpHyZVMUQ3dRaLLxlLKorKgzCuzyowyo0wrU0q9TxpXxiqppgxXzKASKkEf0+0xoZs3t0i0ZFxMWdKnM42KmagKGuurpna+mvNM6GbMzRZuwaKFgkvKRe1jpI+Rs75NSK9p48qY9JhhYUgqRgikZMK4bq6BmzY3RzRnXNY+JmVBqmrSntFQplLqwmQ5m5QxYVQZSakpNWFYGUwrRsN4gnjSXB03ZW6GaMa4on1MyqL0mjaXMivVL1AZE8pEygVhXBlLGamMoZRBZUDC1ijxOPEFc5O4SXMNooZxVfuYlCWpmpYyV/VtOqUhVdP6jFFlRKgpwylDGiY1a9UsHrV4zNwFcxOFq1tUL7gmXBWuCJeFSxpc+ntw8U6w9Ptg8VfBws+D+R8xK9VshCmhrkzK2XjGhFFhRMOdhO2EzRbrsa3G3HcsO3vLcTeyTXQL3UaD4AFPfEHw+hF6jB6jEXqKOtShLTRBE9SjgoYH3nYTthO2WmzEth6z4vifs2XHm5FtoFeDZnnj3+yd/7D3/tM++G/7aHkyF7zeRI/QUjpBTyvpMRM2PYfe9hPbTWy7ZZuxbcS25uyBs/vO7kVFeddPbG4T2UK2kR3kN/aR8vwAOUSayCPkCDlGHlcToy00PPF25Gl6DhL2E3Zath2zGbPhbNWx4noNWUc30Ifo476V53voPnqINtFHvWqkrKaUwtM2kbdjz5GnmXCQsNeynZitmIfO1h2f3Rj8/MngKrqG9jMlsIvuoSVzcCadGWFLcG2ctxPPsecooZlw0LK9mN2YLWcPHRuOlchW0H6mBMpqdtDdiimNJlIWFHohEeI2sbdTbyfejhMeJTRbth/bXmw7zracbTpbi4oHyAqyivwsWCmBh0j/bM5XI4+QUNVUTMR82xJvLW/OFy4poqQ4aRVHcdGMu4euu++6e667HXXWSO4GR+Xt77BnNvFb+G38Dn6X9i5+H3+AP8Q3aTdph6TDpjVkBBmlPYYfx18wP0lSJ2nQmiaetXgOt4Bbwl3qBL2xz9p7nhogcj5AQnSIdMh02KRmMtJnTFgyacmUtRoWz1g8Z26+++xuefuAXRcWhQVhXpgVZoQZqQJEmJTesx4PyQbQQdIhdBipmdRoj+JHS4ZkgqROa8riRnH9v+Xt4cZnLFp622YvV648ESAhWUA2gA6QDqCDyJDJMO0afqTHJOMkE/b8n3u333kBN4tbsGhBnwgQ7W2ox8xUCQRkARpWxqDJEO1hfI+xr/6ht39uv0hcxzVw07g5i+b0fICcz6lppRGSQ2aVEZAGaIgMmAxae8j8kL3yu8cLzp7/fvHJ7xTXv1W8/6Xi2VvF9JeKaObxyhUuCkt9s5kTZkPygtzIjAwy+owQGaA9+OQePfe5hkUNPR8g2hcgIV0jL8gLsoLMyAw1UlAQkIDnnuPGDW7e5Nat4OWXg1dfDV57Lbh9O3jjjeDOHdwErm5RXbn2NkZYUhZD8g55lzRHcySjneEzWkqc4pRIOBGO2jQ9B972vO0ktp3YZsvWY1uN7b6zZWdvueJudO5N7yK7yD4hnS6dDnmXLCfNkQzJ8BmJ0kpxymllPPIceg48fQFCFSAsO3szOrdyd5AdQoqCbpdOh06XLCfL0QwtS1GSlFhxwqlw3ObY0/QcevYTdhO2W2zGbMSsOR447ju7F+n5zR5iBUVBURl5TpaTZqQZktFWfEpLiQUnRG1Oys1+FiBUAcKqY8XZctS/2UPMKCqj26HTpZOTV4ZmtJV2SqK0BCectonKzX4WIFQBwrpjzdn9SFaRNWSdEAwMK7CCokvRodulk9PJyTKyklEkxSteqAKE8wFCFSBUAaIr6Cph+YCeYnRzOjl5Rl4ZmtJW+gKE05LpBQj7MXsxO44tx6ZjLdIH/B9DPhSnV2U9PQAAAABJRU5ErkJggg==", + "f02n2c08.png", false, 32, 32, "14658e750fd12c4777c46a949bb3399c"); + testPngSuiteImage("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", + "f03n0g08.png", false, 32, 32, "bab714eea8df8ab97f4095442247c9e1"); + testPngSuiteImage("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", + "f03n2c08.png", false, 32, 32, "eef71a6ef947497fe0c45ea2ba65c5dd"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAAAAABWESUoAAAA1ElEQVR4nIXRwW3CMBSA4d/2s81MnaFiBqQOwA0pp26A1EsnqJQtWAtCIebAAdsP2zlEetGn/9mKfG/iJsYYQwjeey/eiXPOWWuNMQYjZ1qPBUySpQmeQi5tgAV6BbAjgB0BrFz7QBW2nCqgCtUH+S/GLw3qwl+1syxMUN+qWsFRgVs2/OhAXTioX5MXZlhg4re5gt0FoKjIPZ+W7P0WzABMHFsrytITrC/x4UMMcWYfs1PIHdUoD7mixFKDUnwGDfSWDKSBkERfSKIvJNEXwkAIA/EAFiZMByGZYIEAAAAASUVORK5CYII=", + "f04n0g08.png", false, 32, 32, "2bb4337fabd31e8786cbb3aec25315b1"); + testPngSuiteImage("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", + "f04n2c08.png", false, 32, 32, "82a6745345706f5c5a662a94fdd0ea29"); + testPngSuiteImage("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", + "f99n0g04.png", false, 32, 32, "207c771481d8e0786644d1d3ccdc1253"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAIi4vcVJsAAAARBJREFUeJy11U0KwjAQBeBXrFpFUCjFXcFTNJfwtF4itxBcCCKCpeJfbXUhQTMTE0N0FoEZ6Os3pbTR/Q6tokjvpdT7otD7uGn0wXwOa9EbsIAsswdQMQsYjwMFo1GgYDgMFAwGnoLbTR/0+4GCJAkU9HqBAtcKTkG36ynwXeH/AlcAE9T1jwVxrPdt6ymgr/Ll4hDQACqgAU4BDaDFBNerX8DXgtkMWC7VVAj1eWUCumOnAwB5vlqpExBCSnUygXmF9fq9k9IiOJ9NAgCYTjcbtYBFQFdQzyBNdzsYiglOJ5NgMgHSFNjvhZDyfQUmOB5NAVWl+udlrx8cExwOpoDPxQRl6RfABNttoGCxCBM8AHUVjIYrRN23AAAAAElFTkSuQmCC", + "g03n0g16.png", false, 32, 32, "33bca103ab06d5288fc5a40d52b46648"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAAIi4vcVJsAAAASlJREFUeJzllk2KwkAQRqsx/kQEERR3LrzEeAiP6yH6FC4EFzKCGGRGZ0bjwojJJI/kw7iyVpVKpV+/LgLtYisOZ/DGu+L6R3E5OANgPi+uL6DfgIuA0YhWggBhBPT7IoAM/qC/1xMBqkG3KwLUGYShCFANOh0RoM6g3RYBqoEMUA1aLRFABrUBVINmUwS8n0EQiAAy+IV+NLhAXTUIyeAH6qoBHhEByID6Xz4DGfCMwXTqzGy5zK4xMzMzf38kg1LAZOJWqzidJKv7bEIGJwA0GkmyXsf5ovnKBgT4N4Px2G02qU1WNzgC4LFZs+HQbbd0Q7sHGXyXAQYDd2OY2W4XJ1vOHxEZfJUBoij7qc8ltyCDAwBq+w/20J+eQaUgg8+6AGRAt+W6DK5anlkjB1vfagAAAABJRU5ErkJggg==", + "g03n2c08.png", false, 32, 32, "5ab30d7747a459c1051650a1351a4519"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAAIi4vcVJsAAAAB5QTFRFAAAAAP///wD/AMjIra0A3d0A//////8A/93//63/MbogiAAAAGNJREFUeJxjKAcCJSAwBgJBIGBAFmAAAfqoCAWCmUAAV4EsQEcVLkDQAQRwFcgClKlg6DA2YEZS0dDBYcxsgGIGB1wFCKSlJaTBVUAE2MACCBUJDGzMQC1IKtLS4O5AFiBTBQBS03C95h21qwAAAABJRU5ErkJggg==", + "g03n3p04.png", false, 32, 32, "cab490ee86d478d165f2a516345d0ff0"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAK/INwWK6QAAASJJREFUeJytlDkOwjAQRSciLAEkmjQpUtJwAE6AT+0bcAAaCgoKmhQgZWEJCUVkhZkxGVnGhaX5Up6fvxQHbQtoBQGetcbzbofnsK5xsN3C4KIHMEAcDwOocfh+42C18jRYLh0NKGCxcDR4vXAwn3saRJGjAQXMZp4G06mjAe1AAjADV4DYwWTiaSABxA6cDZ7PPxuMx3huGkcD+i/c74IBBVADChANKIAu0SAMhwHM4PGwG2w2AIeDSZUyzyszsAPW6+PR7ABKaW120aC7wun0PX0/7cyAttx3kKbnc59351sMqsoOSJLLhX9uMShLHHQdxDFAkgBkmVJaK9XXyAyKwmZwvZpZa6GDPLdf4ddiBrcbDkajYQAzyDJPg/3eDUANPik0iSilDmOAAAAAAElFTkSuQmCC", + "g04n0g16.png", false, 32, 32, "e38a1551172886575b1d91af694ecfde"); + testPngSuiteImage("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", + "g04n2c08.png", false, 32, 32, "daa8561d65a6598e69d6ddb060d802b7"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAAK/INwWK6QAAAB5QTFRFAAAAAP///9T/1NQA/wD/ALq6//////8A/5v/m5sAIugsggAAAGhJREFUeJy9zsEJgDAQRNEhsLnbgaQFW7CAXOae07ZgC7Zgt04IhPWq4D8Oj2VxqF1RLQpxQO8fsalTTRGHH8WlipoiDt8ECqsFsZZEq48biaxD9NybkzbEGLILBNGQDYjCff4Rh5fiBou1fg11pxGVAAAAAElFTkSuQmCC", + "g04n3p04.png", false, 32, 32, "0f81d4307736954402890d7203244bd0"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAANbY1E9YMgAAAQpJREFUeJyt1b0KgzAQB/AI0X4gSMcOzu3SxTdpHvQexdk+QRdBCqK2VewgQXOnCUeaQS8B//nlQA3GURgjCMw5gDm/3825/H7NhctFWAfeQPa9uXA62QOwmAiShCnAAXHsKTgemQLcA1eAU3A4MAWfDy/AKdjvmQJuABHgI+x2ngJXwP8F3ACnIIo8BThgGJgC/DK1rUPwftsFOIAIXAF4OAVhaA9gCLIsz3WtlP68EkHXrQtut7lWCkBfiWAroCiuV10DWAS4y8sm6toqwAHLJq41lAiaBi3I6X4+C5Gmz6dSAMsjEAEO0LuW5XSfHpt/cERQ19tHWBtE8HrxAoigqtCCZAoeDz/BD+1fhGYCQbPgAAAAAElFTkSuQmCC", + "g05n0g16.png", false, 32, 32, "5f67c34aadb2f3a602fea6d4ad14fa6d"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAANbY1E9YMgAAARVJREFUeJzlljkOwjAQRcdS2EJEQUdDiWiochI4aG5Cj7gADaJA7ItCwSJC8iR/cMdUzvjHL8+xorjcqssZzGSuuj+ubkdnAAwG1f055A24COh2aSUoEI4ukO90RIBqkCQigAwI0G6LANUgjkWAatBqiQDVQAaoBs2mCCCDE+QbDRHwfwYyQDWo10UAGQTbomAGV+iTwRHyCQH20A9mQADVoFaDCSoyIECwU3SA/IdBmrrptLjGxMzMsuflLwajkfvo2OS59Gvwi8Fslg+HruCUeRvQoSi/5ELH3+BLQLnIYOcB6PWcmfX7brHIH49c3iIy2HoAlsu3u7PS4F5ksPEAeBUZrCEfRSKADFaQD2ZAf8uhvkU3ajlNmZwVLFcAAAAASUVORK5CYII=", + "g05n2c08.png", false, 32, 32, "30cda048c618598b39f96c40141851fa"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAANbY1E9YMgAAAB5QTFRFAAAAAP//zMwA/8z/AK6u/wD/i4sA//////8A/4v/c+IkkgAAAFtJREFUeJxj6ACCUCBwAQJBIGBAFmAAAfqoUAKCmUAAV4EsQEcVaUBgDARwFcgClKkwMHZxYEFWwWDswuKAQwUIlJcXlMNVIAsgqWBgZwFqQVJRXg53B7IAmSoA1Ah4O0rtoFUAAAAASUVORK5CYII=", + "g05n3p04.png", false, 32, 32, "2be19a2ad1bdba9734899e453a27625b"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAARFwiTtYVgAAAPhJREFUeJzNlbsNhDAMhg1C4SVomYABqFiASchcmYkxEC2Ip4S4AuVEbCAXpbm/SUzx+cMC2TkOUOI4ai2EWte1Wnvbpj7IMngNbkAAafoOwMYEkCSWBnFsaRBFlgY6gNYgDC0NdACtQRAYGqyrGeAPDUwBWgPftzTQAYwN9t3QAP/O02RpgAHEYFneATjEwBSADdwFhX1TVYwxBgDA+dVAzaNBWd7baGdw9gRomqKQ92vIDOb5HoDvnJ8bghj8BuBcIrCBO6HIEeY5QJ4zxjmAEELIHXWgePhDkV3b9jzlapMnmcE4Pr/CXcgMhsEMQAz63tKg6+wMPgLFodTQLHMsAAAAAElFTkSuQmCC", + "g07n0g16.png", false, 32, 32, "cdd82be241cbfadbceffc98d967dfe30"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAARFwiTtYVgAAAQtJREFUeJzVlkEKgzAQRSciiaK49QS5gCsv4EnqsXImryHdlhZtKdhFK1U6HzM0YDvMIowhz+dXUE3ElyJwxSl+fuDH8Q0AypKfH8F+AlwIKAohAAhDQJ6jk0BJDbJMCJAaiAFSgzQVAqQGYgAyuIYC7GaAAEkiBCAD9IjEgJ8zMEYIkL5F/28AAXcwlxoUUgAyGMF+aHAB890yQAZaCwHAIBqJ2DZm1U2jnotXtZwB114Gda22nVAGgweg66aqUhsAlAECfIbMxN4SuXn9jQE/adcMYBANRGxr/W5rFRFZq7Sez3XzuUsDrmP03Szvt+8X/o74NcrAB+BVKINzKAAyOIUCIAP0MxvK4AEWgFoVP+GhCgAAAABJRU5ErkJggg==", + "g07n2c08.png", false, 32, 32, "0dcc8b7a828dd05df802b636673ed0ab"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAARFwiTtYVgAAAB5QTFRFAAAAAP//AJycv78A/3b/dnYA/wD///////8A/7//TpdUbAAAAFxJREFUeJxj6ACCNCBQAgJBIGBAFmAAAfqoMAYCFyCAq0AWoKOKUCCYCQRwFcgClKmYMFOJCUUFA1gAuwoQKC8vKFdiYoKogAswMCCrYGBnUkJRUV4OdweyAJkqACOga73pcj3PAAAAAElFTkSuQmCC", + "g07n3p04.png", false, 32, 32, "8f1a3f91ca328ca507273e80324087e9"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAYagMeiWXwAAAL1JREFUeJztlTEOhCAQRT8bCyw9hlzD0tIDIQfyCF7D0ktYSGLBFoTFmUQC2WRjsv4CZqaYefwQEM6BSAiaa03zcaR5ZS0tSImk+IDiBpy42ndaqOtfEzwe3MGDrwlKTfxHD46jkKBp0g2KPdi2QoI73YNhmKYQGxOe12wP+j7Gxmgd1myCee66sx/G+J0TvCyT/Ajwa2QAAMeUNDHG8XvhBKJtaSEYpxQALItS/vyhSfbPtK7n2dcEz6sMvAHqCJi/5fyWiAAAAABJRU5ErkJggg==", + "g10n0g16.png", false, 32, 32, "75b64641f0a3c0899ae3b466fcb97c06"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAAYagMeiWXwAAANRJREFUeJztljEKhDAURP8HC+32HpYewdbS+/zNfbyCx7D1FAu7xUK2cA0aM0j4ARWcKhlNJsNTkS2FxQSuCIf9Z9jO3iAgz8P+B9xPIDdDC6IDQOHoAKhUDaBQA8SgKCIDDmtwM3C6GezqsAbJIF+HwRf4sQ0eKOAF/GQMUMB1GCApG7Qtd916D0NERDJPNQ2ahv1IM2/tBpqvad/buuYAdrMY6xn4znR2l6F/inxH1lNNg7JkIqoqHgb7P7hsIGsYjONitWwGk87+HuzrdA1S/VX8ANStTVTe34+eAAAAAElFTkSuQmCC", + "g10n2c08.png", false, 32, 32, "69926b0e52c1371c81ca49d7cd0cf2b1"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAAYagMeiWXwAAAB5QTFRFAAAAqakAAP///6r/VFQA/wD/AH9///////8A/1X/7g7bWgAAAGNJREFUeJxj6ACCUCBIAwIlIGBAFmAAAfqoEASCmUAAV4EsQEcVLkBgDARwFcgClKkwME5LYENWwWCcxpaApoKNAaICBMrLC8rTGKAq4AJALUgqGNjZgIYiqSgvh7sDWYBMFQBG4oXJmToRDgAAAABJRU5ErkJggg==", + "g10n3p04.png", false, 32, 32, "832e5401524ab7238a6eccd5d852b8ef"); + testPngSuiteImage("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", + "g25n0g16.png", false, 32, 32, "698f892bb4453fdd325ae414dc82b34f"); + testPngSuiteImage("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", + "g25n2c08.png", false, 32, 32, "a64f63bacd6a0edec500179d538ede01"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAA9CQ+FSITwAAAB5QTFRFAAAAAC0tAP//EBAA/1z//xD//wD/XFwA//////8AUlHX5QAAAGRJREFUeJy9zrENgDAMRFFbSpHWK7ACC7jICqzACrSUXoFtc1EkczVI+eX5FZYHncjQhoQHGa0RFzpQCh4Wih01lIKHf0KaKQtvZQyvcC8pRnHXaqpTzCEqziRCQo0Fyj94+Cg6NXRmxzu0UNgAAAAASUVORK5CYII=", + "g25n3p04.png", false, 32, 32, "c2b4d9eb0587bc254212b05beb972578"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAYagMeiWXwAAAF5JREFUeJzV0jEKwDAMQ1E5W+9/xtygk8AoezLVKgSj2Y8/OICnuFcTE2OgOoJgHQiZAN2C9kDKBOgW3AZCJkC3oD2QMgG6BbeBkAnQLWgPpExgP28H7E/0GTjPfwAW2EvYX64rn9cAAAAASUVORK5CYII=", + "oi1n0g16.png", false, 32, 32, "a14e204bbf905586d3763f3cc5dcb2f3"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAIAAACsiDHgAAAABGdBTUEAAYagMeiWXwAAAOVJREFUeJzVlsEKgzAQRKfgQX/Lfrf9rfaWHgYDkoYmZpPMehiGReQ91qCPEEIAPi/gmu9kcnN+GD0nM1/O4vNad7cC6850KHCiM5fz7fJwXdEBYPOygV/o7PICeXSmsMA/dKbkGShD51xsAzXo7DIC9ehMAYG76MypZ6ANnfNJG7BAZx8uYIfOHChgjR4F+MfuDx0AtmfnDfREZ+8m0B+9m8Ao9Chg9x0Yi877jTYwA529WWAeerPAbPQoUH8GNNA5r9yAEjp7sYAeerGAKnoUyJ8BbXTOMxvwgM6eCPhBTwS8oTO/5kL+Xge7xOwAAAAASUVORK5CYII=", + "oi1n2c16.png", false, 32, 32, "a3774d09367dd147a3539d2d2f6ca133"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAYagMeiWXwAAAEBJREFUeJzV0jEKwDAMQ1E5W+9/xtygk8AoezLVKgSj2Y8/OICnuFcTE2OgOoJgHQiZAN2C9kDKBOgW3AZCJkC3oD2QMjqwwDMAAAAeSURBVAG6BbeBkAnQLWgPpExgP28H7E/0GTjPfwAW2EvYX7J6X30AAAAASUVORK5CYII=", + "oi2n0g16.png", false, 32, 32, "a14e204bbf905586d3763f3cc5dcb2f3"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAIAAACsiDHgAAAABGdBTUEAAYagMeiWXwAAAIBJREFUeJzVlsEKgzAQRKfgQX/Lfrf9rfaWHgYDkoYmZpPMehiGReQ91qCPEEIAPi/gmu9kcnN+GD0nM1/O4vNad7cC6850KHCiM5fz7fJwXdEBYPOygV/o7PICeXSmsMA/dKbkGShD51xsAzXo7DIC9ehMAYG76MypZ6ANnfNJG7BAZx+ZiKBzAAAAZUlEQVQuYIfOHChgjR4F+MfuDx0AtmfnDfREZ+8m0B+9m8Ao9Chg9x0Yi877jTYwA529WWAeerPAbPQoUH8GNNA5r9yAEjp7sYAeerGAKnoUyJ8BbXTOMxvwgM6eCPhBTwS8oTO/5kL+Xk13nmIAAAAASUVORK5CYII=", + "oi2n2c16.png", false, 32, 32, "a3774d09367dd147a3539d2d2f6ca133"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAYagMeiWXwAAAB9JREFUeJzV0jEKwDAMQ1E5W+9/xtygk8AoezLVKgSj2Y8/OIdtk98AAAAfSURBVICnuFcTE2OgOoJgHQiZAN2C9kDKBOgW3AZCJkC3oD3Oo8vsAAAAAklEQVSQMsVtZiAAAAAeSURBVAG6BbeBkAnQLWgPpExgP28H7E/0GTjPfwAW2EvYX7J6X30AAAAASUVORK5CYII=", + "oi4n0g16.png", false, 32, 32, "a14e204bbf905586d3763f3cc5dcb2f3"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAIAAACsiDHgAAAABGdBTUEAAYagMeiWXwAAAGNJREFUeJzVlsEKgzAQRKfgQX/Lfrf9rfaWHgYDkoYmZpPMehiGReQ91qCPEEIAPi/gmu9kcnN+GD0nM1/O4vNad7cC6850KHCiM5fz7fJwXdEBYPOygV/o7PICeXSmsMA/dKbkGShDblRaWAAAAB1JREFU51xsAzXo7DIC9ehMAYG76MypZ6ANnfNJG7BAZx9l6MXmAAAAY0lEQVQuYIfOHChgjR4F+MfuDx0AtmfnDfREZ+8m0B+9m8Ao9Chg9x0Yi877jTYwA529WWAeerPAbPQoUH8GNNA5r9yAEjp7sYAeerGAKnoUyJ8BbXTOMxvwgM6eCPhBTwS8oTO/5kIg4uIpAAAAAklEQVT+XnoXDXoAAAAASUVORK5CYII=", + "oi4n2c16.png", false, 32, 32, "a3774d09367dd147a3539d2d2f6ca133"); + testPngSuiteImage("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", + "oi9n0g16.png", false, 32, 32, "a14e204bbf905586d3763f3cc5dcb2f3"); + testPngSuiteImage("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", + "oi9n2c16.png", false, 32, 32, "a3774d09367dd147a3539d2d2f6ca133"); + testPngSuiteImage("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", + "PngSuite.png", false, 256, 256, "183c2504778cb2b6384dbbad46fa2a2a"); + testPngSuiteImage("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", + "pp0n2c16.png", false, 32, 32, "a3774d09367dd147a3539d2d2f6ca133"); + testPngSuiteImage("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", + "pp0n6a08.png", false, 32, 32, "de9a6b2025046b20b3a408990a2b7e71"); + testPngSuiteImage("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", 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testPngSuiteImage("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", 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testPngSuiteImage("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", 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false, 2, 2, "e1b1f768e50f5269db92782b4ad62247"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAMAAAADAQMAAAEb4RdqAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAZQTFRFAP8A/3cAseWlnwAAAAxJREFUeJxjYIADBwAATABB2snmHAAAAABJRU5ErkJggg==", + "s03i3p01.png", false, 3, 3, "b05c579eb095ddac5d3b30e0329c33f4"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAMAAAADAQMAAABs5if8AAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAZQTFRFAP8A/3cAseWlnwAAAA5JREFUeJxjYGBwYGAAAADGAEE5MQxLAAAAAElFTkSuQmCC", + "s03n3p01.png", false, 3, 3, "b05c579eb095ddac5d3b30e0329c33f4"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAQAAAAEAQMAAAHkODyrAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAZQTFRF/wB3//8AmvdDuQAAABRJREFUeJxjaGAAwQMMDgwTGD4AABmuBAG53zf2AAAAAElFTkSuQmCC", + "s04i3p01.png", false, 4, 4, "c268bd54d984c22857d450e233766115"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAQAAAAEAQMAAACTPww9AAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAZQTFRF/wB3//8AmvdDuQAAAA9JREFUeJxj+MAwAQg/AAAMCAMBgre2CgAAAABJRU5ErkJggg==", + "s04n3p01.png", false, 4, 4, "c268bd54d984c22857d450e233766115"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAUAAAAFAgMAAAGHBv7gAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAlQTFRFAP//dwD//wAAQaSqcwAAABlJREFUeJxjaGBoYFjAACI7gHQAEE9tACIATYMG43AkRkUAAAAASUVORK5CYII=", + "s05i3p02.png", false, 5, 5, "fceb20e261cb29ebb6349bc6c2265beb"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAUAAAAFAgMAAADwAc52AAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAlQTFRFAP//dwD//wAAQaSqcwAAABRJREFUeJxjWNXAMLWBYSKYXNUAACoHBZCujPRKAAAAAElFTkSuQmCC", + "s05n3p02.png", false, 5, 5, "fceb20e261cb29ebb6349bc6c2265beb"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAYAAAAGAgMAAAHqpTdNAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAlQTFRFAP8AAHf//wD/o0UOaAAAACJJREFUeJxjaGBoYJgAxA4MLQwrGDwYIhimJjBMSGBYtQAAWccHTMhl7SQAAAAASUVORK5CYII=", + "s06i3p02.png", false, 6, 6, "b5c9900082b8119515e3b00634a379c5"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAYAAAAGAgMAAACdogfbAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAlQTFRFAP8AAHf//wD/o0UOaAAAABZJREFUeJxjWLWAYWoCwwQwAjJWLQAAOc8GXylw/coAAAAASUVORK5CYII=", + "s06n3p02.png", false, 6, 6, "b5c9900082b8119515e3b00634a379c5"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAcAAAAHAgMAAAHOO4/WAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAxQTFRF/wB3AP93//8AAAD/G0OznAAAACVJREFUeJxjOMBwgOEBwweGDQyvGf4z/GFIAcI/DFdjGG7MAZIAweMMgVWC+YkAAAAASUVORK5CYII=", + "s07i3p02.png", false, 7, 7, "cefe38d2a35e41b73b6270a398c283e8"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAcAAAAHAgMAAAC5PL9AAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAxQTFRF/wB3AP93//8AAAD/G0OznAAAABpJREFUeJxj+P+H4WoMw605DDfmgEgg+/8fAHF5CrkeXW0HAAAAAElFTkSuQmCC", + "s07n3p02.png", false, 7, 7, "cefe38d2a35e41b73b6270a398c283e8"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAgAAAAIAgMAAAHOZmaOAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAxQTFRFAP//dwD/d/8A/wAAqrpZHAAAACVJREFUeJxjYAACASB+wGDHoAWk9zDMYVjBoLWCQbeCQf8HUAAAUNcF93DTSq8AAAAASUVORK5CYII=", + "s08i3p02.png", false, 8, 8, "3f0fc2c825d2fad899359508e7f645e1"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAgAAAAIAgMAAAC5YVYYAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAxQTFRFAP//dwD/d/8A/wAAqrpZHAAAABtJREFUeJxjYGBg0FrBoP+DQbcChIAMIJeBAQA9VgU9+UwQEwAAAABJRU5ErkJggg==", + "s08n3p02.png", false, 8, 8, "3f0fc2c825d2fad899359508e7f645e1"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAkAAAAJAgMAAAHq+N4VAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAxQTFRFAP8AAHf//wD//3cA/1YAZAAAACNJREFUeJxjYEACC4BYC4wYGF4zXAdiBgb7/wwMltEQDGQDAHX/B0YWjJcDAAAAAElFTkSuQmCC", + "s09i3p02.png", false, 9, 9, "5c55b2480d623eae3a3aaac444eb9542"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAkAAAAJAgMAAACd/+6DAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAxQTFRFAP8AAHf//wD//3cA/1YAZAAAAB9JREFUeJxjYAAC+/8MDFarGRgso4FYGkKD+CBxIAAAaWUFw2pDfyMAAAAASUVORK5CYII=", + "s09n3p02.png", false, 9, 9, "5c55b2480d623eae3a3aaac444eb9542"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAAH2U1dRAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAANhJREFUeJx9kL0OgjAURj9FfuJTuBjXhqkkDvBGujo1casOLOyEgZmpM4kk8Fi29FYpMTbNl8O59+Y2AByC48nw5Ehe4Pr25orpfEeQ6LhPNgLgdmpQm2iWsdVxqA3V9lOyWKajTCEwWpDpx8TO6Oz3zMIoHYgtlWDORlWFqqDKgiAk6OBM6XoqgsgBPj0mC4QWcgUHJZW+QD1F56Yighx0ro82Ow5z4tEyDJ6ocfQFMuz8ER1/BaLs4HforcN6hMRF18KlMIyluP4QbCX0qz0hsN6yWjv/iTeEUtKElO3EIwAAAABJRU5ErkJggg==", + "s32i3p04.png", false, 32, 32, "bbe63d9433641df3fcd2c745fed89a93"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAHxJREFUeJyV0b0NgCAQBeBXAIlxCRt6WrbyNqB3CSsnYTAPTYzvSIhSXMhHcn8A7ch25FiviA40wDEkVAZ4hh2RQXMa6JLmxZaNPwEdBJO0aB9u3NhzraJvBKuCfwNmXQVBW9YQ5AskC1xW2n4ZMDEU2FlCNrOYae+Pt3ACA2HDSOt6Ji4AAAAASUVORK5CYII=", + "s32n3p04.png", false, 32, 32, "bbe63d9433641df3fcd2c745fed89a93"); + testPngSuiteImage("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", + "s33i3p04.png", false, 33, 33, "20708bc9a6ffa8d8ca6e004e1e9aa3ae"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACEAAAAhBAMAAAClyt9cAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAL5JREFUeJxdzy0SwyAQhuGv0+n0V6Q36HCCzHCBih4gBh8VXVeLjIyNi0bV13CAHKrLDi27vAwrEMADpMaS5wN8Sm+EEHAKpQXD0NMu9bAWWytqMU+YZRMMXWxENzhaO1fqsK5rTONXxIPikbvjRfHIPXGleOQaNlWuM1GUa6H/VC46qV26ForEKRLnVB06SaJwiZKUUNn1D/vsEqZNI0mjP3h4SUrR60G3aBOzalcL5TqyTbmMqVzJqV0R5PoCM2LWk+YxJesAAAAASUVORK5CYII=", + "s33n3p04.png", false, 33, 33, "20708bc9a6ffa8d8ca6e004e1e9aa3ae"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACIAAAAiBAMAAAG/biZnAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAANJJREFUeJx9jr0KgzAURr9q/elbdJGu4mTAQR+pa6eAW+yQxV06ODs5CxX0sWrURHstDcnH4eTe3ABxBz6d5+74b8S7zcck72D7KvMx4XPaHfC4vVCpeP0OS0W1hAg9EQ0imqZhWElEm/OMm28tTdwQQkPzOrVl1pYpWplpcjQ1ME6aulKTawhbXUnI0dRsZG5hyJVHUr9bX5Hp8tl7UbOgXxJFHaL/NhUCYsBwJl0soO9QA5ddSc00vD90/TOgprpQA9rFXWpQMxAzLzIdh/+g/wDxGv/uWt+IKQAAAABJRU5ErkJggg==", + "s34i3p04.png", false, 34, 34, "0912e0f97224057b298f163739d1365f"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACIAAAAiBAMAAADIaRbxAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAG1JREFUeJyVz7ENgCAQBdBfIIlb2NDbMpYb0LMEFZMwGKcWJv9HwSsu5CX8uwPOOnKNod0dKtbhSHY0EiwkBYHEglk0OW4yPfwXqHhOTraPG234vCcFYykqKwtUeFZS8Sx2NUjqhFz1LVl+vUgHrMXtiDoroU4AAAAASUVORK5CYII=", + "s34n3p04.png", false, 34, 34, "0912e0f97224057b298f163739d1365f"); + testPngSuiteImage("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", + "s35i3p04.png", false, 35, 35, "b46d9ba87963f526624a6d485ff6465e"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACMAAAAjBAMAAADs965qAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAMdJREFUeJxl0SEOg0AQheHXtJSmmPYGhBOQcIEKDoDBo9C42spKLA6Nqq/hAHuoPqZhM7P7E0asmOyXBbbeqpec4Kv6YFkWXBfVjL7v+Ks6VBWOla7ENGIyjSi4vdDlaPklraqBc27dhm9FzWTsPfBkMvYG3JmMvZv4QmNGlTXOvFdo5FFkDCoD4N8YRqPhsSbgsdXyTt7oeak3et5BjIZ3EaPhZVwv76h4kuWdN3JMjIwjImMOa0zEaY3Ocb021tsVrJE+pMMPA+LuR86i5UgAAAAASUVORK5CYII=", + "s35n3p04.png", false, 35, 35, "b46d9ba87963f526624a6d485ff6465e"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACQAAAAkBAMAAAFkKbU9AAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAANlJREFUeJyNkb0KgzAURj/b+tO36CJdxUnBob5Ru3YKuGkHF3dxcHZyDlTQx2piTaJJC4bk43juvUEUiCgIO6/V8d6IVptMSUZx9HhmU0IwJwWe1+aOes7mV9ZzHr6JJfPAzcORbRCMC+Whcq5044bIgQoKXEGhcDn4svoqZRt9mQqyBXWQrpR9lSBHElRf9ZdgLdRVkCSqnaraqnozifXN61G0sT8siaINMGiqhq8rxDjpg7Fv3GUoOPFF72LvoF+/etipav4DtgosYSptELsHdXX2qaZa/jk/GoQXLvsYf8IAAAAASUVORK5CYII=", + "s36i3p04.png", false, 36, 36, "65e57e33b4763a3b0c3f0fa92295406d"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACQAAAAkBAMAAAATLoWrAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAHdJREFUeJxjYACBwu5llqpHoCQDFiEgxcCCLmTAcARdiIEVXWgBgyq6ENB0DCEsxlsqYDpClSwhBixCbBjGNwDdhe4ILE5F4lBXCBToqEILgEKMqEIMnKoHGNCEgCQWoULCQgYYNjJgsZGBWBvJE8L0EBZvgwMHAABJBMjTkay+AAAAAElFTkSuQmCC", + "s36n3p04.png", false, 36, 36, "65e57e33b4763a3b0c3f0fa92295406d"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACUAAAAlBAMAAAFAtw2mAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAP5JREFUeJxlkDsSgjAQhv8RHfFR6A0cTsBMLmDhAWjsrajpaFNS0tqlprK3yQFyKDcb8jD5GJLMssu3G2CS0EZDiBYTnY0Bat59DHxuBYG6nihgLBAcmSywm+Sclr9qjkvOKSOIESmxqOPCKNzQOG4Yx/3IDFAICU2TJDAglhUVEzYhYaA/2JFco4tacyEq4YhWGH02brigp0pfG0QQntiQu5S11vUNdzk8dmgx1FaxV1+rTWza19bWS3xTPuj7F70pL7xnvP+Z8aRn90zp8CB4CdxxJXgJXIATiXIvtVJ4C8hb0OVK5ppzyUa1FE5rLb04FN4OuZdG367zplJ6fx0nFJojsT+zAAAAAElFTkSuQmCC", + "s37i3p04.png", false, 37, 37, "f21eff5c07a755577fea69c01459c65f"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACUAAAAlBAMAAAA3sD0wAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAMVJREFUeJxl0S0Og0AQhuEvoU36J+AGDSfYhAsgegAMHoWuq62sxOJWr6rHcAAO1dkppbMzD9kRmxB4M0D0kp58hUl6I4SAU5A8+r6jI3WoKmRVwmEcMKYGlPSJMnFFS8++lRosyzLH8TfjRnhsajwIj80dBeGxybnV9J4pUPV6+j/TS3e2V3M69ttrUK/RpKmiV6QylcoKLVerXXMnjd4NGrxqjbW212W2F0fbC9vbwPbOF91Lq96t+xXw26+MjUfFHuh8APqFElFWDb0cAAAAAElFTkSuQmCC", + "s37n3p04.png", false, 37, 37, "f21eff5c07a755577fea69c01459c65f"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACYAAAAmBAMAAAEtFMQLAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAANpJREFUeJylkT8LgkAchp/+WEFfokVapamDhvxGtTYduGmDi7s0NDc1Cwn6sTpF7w7PQEju9/L48N6pCMcCqeZuzeYjOfZT0I6sT1HNYtNkVHcpi5aB2/5xIW/z8TtzKzsDcbCOD5VaEknVY3yw7NrYaoABGucVxmJbmL2zUK0X7zTU6Gl8YWxqupnGlUGsbjYNUzR6ZzSGjFisbjjWbQrtdU2ewi/7JHkGlEOX4zsOwdLZK3z3PNexEjunp17FeYZ995dr/uR24JpvYoIb3euVlyl7x3pCnZd8AfUFRB95/EUWAAAAAElFTkSuQmCC", + "s38i3p04.png", false, 38, 38, "f6237240a70b5844def0406dc8f63bbd"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACYAAAAmBAMAAABaE/SdAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAGpJREFUeJxjYACBwu5llqpHYCQDNjEgzcCCIWbAcARDjIEVQ2wBgyqGGNAKTDFsdlgqYHGLKrliDNjE2DDtaAC6D8Mt2NyMzBs4MaDL0MUMgGLcaGLAuClgQBcDkmSLYTEPm72DyS3gsAIA8mkrg86sROEAAAAASUVORK5CYII=", + "s38n3p04.png", false, 38, 38, "f6237240a70b5844def0406dc8f63bbd"); + testPngSuiteImage("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", + "s39i3p04.png", false, 39, 39, "ceb3b33633c181e13ecee80b153fb602"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACcAAAAnBAMAAAB+jUwGAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAANVJREFUeJxt0iEOg0AQheFHSJuUGnqDhhOQcIEKDoDBo9A4LBKJxaFX4TEcgEN1ZklDZ2Z/YMQa+DIA3Cga/Bk20QrnHBInWtC2DT2iBkWBuJDlmCfMqgkZvSeTvVHTdatFFY7j2Hn8taOk/Lj6oKf8uOrwovy4Sr3b2p9k1faFvtPa6TBgN+UGftptZLdViv1nL0P2PmSX7ihV7JEXPhj2ttGxYidMV+7mznRlz2OmK/v0YDo0m25o+/kXGjfoDtED9g565dFv7WLlni/tDMeq7AxPli8bpjUVK/+f5gAAAABJRU5ErkJggg==", + "s39n3p04.png", false, 39, 39, "ceb3b33633c181e13ecee80b153fb602"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACgAAAAoBAMAAAEJ15XIAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAANpJREFUeJytjrEKgzAURa/FWmv7EV2kq2RS6FD/qK5OATd1cHEXB2cn50IL+lnVUBMxr4VCQ97N4ZC8POT+HcexclEQp/3g8GVBnHy4JANgT5kM66zjcx1jIxKLrFfpTFndROLN6aZPmdjgTKLjSUwXyL6gt+MSexCWAei2YVeKjXaBpUQotAoKAWPGTtmu/B1hzViEoPCqEK1EQ2GocGyWNXCfUdYEi0RW7QmJQJfcIiSaALqcltaTuvlJEiP9VZ7GAa21nCYBIUFIHHQJg3huUj3NiGvSHb9pXgoWak5w83t4AAAAAElFTkSuQmCC", + "s40i3p04.png", false, 40, 40, "140f0d2eb778dad4a1871c17767e2d48"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACgAAAAoBAMAAAB+0KVeAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAHVJREFUeJzN0LENgDAMRNFDiiwhlqBhiGxFNkifJagyBwWDEagQ/kXoSOHiyVZOp1K1HKnU+Jhi3BBHQCFGjxnRAGVRHms3Xq8LC51/Qurz99iacDg3tDcqpCyHbRLipgBXQk0ed8FHGggpUuCcuOnDYyF3dSfnZ1dwSF0UKQAAAABJRU5ErkJggg==", + "s40n3p04.png", false, 40, 40, "140f0d2eb778dad4a1871c17767e2d48"); + testPngSuiteImage("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", + "tbbn0g04.png", false, 32, 32, "d9b53613bd731e66dcfd5be93186c100"); + testPngSuiteImage("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", + "tbbn2c16.png", false, 32, 32, "75954a76132c3971509841e973f029cd"); + testPngSuiteImage("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", + "tbbn3p08.png", false, 32, 32, "d1f6636d81c74f163bfff1405bf406cf"); + testPngSuiteImage("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", + "tbgn2c16.png", false, 32, 32, "75954a76132c3971509841e973f029cd"); + testPngSuiteImage("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", + "tbgn3p08.png", false, 32, 32, "d1f6636d81c74f163bfff1405bf406cf"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAAYagMeiWXwAAAAZ0Uk5TAP8A/wD/N1gbfQAAAAZiS0dEAP8AAAAAMyd88wAABfRJREFUSInNlgtM03cQx7//UmwwRQ1olQYMhpEgFZiRRLApqBgQxFAppZRBIiLg6GDI04mFoZRXKZT3+yFBnQynzgFzG8NlIoMwwWUhZgFMNHNOEQaDaXyxa8mWEQtiNpNdGkIov/vc3e/uez/MvmHD/whw586d3t7eycnJ/xhw7969tra2tLS0iIiIWH//NEfH0x4ePVrtg5GRfwUYHx/v6urKzc2NiopShIYedXXNMzPTACogBcgEqhmmycGhS6kcGRx89uzZUgFTU1NXr14tKyuLj49/X6FI2bUre/36MoZpAIqAD4F4LjfMwUGyYoUYkOt5xcuWHY2MbGxsHBgYePz4sWHAo0eP+vr6qqurk5OTExISjoWGZjs6lnA49cBZ4ALQCwwAl4Emhsm3sFDZ26ebm2cA5UAhoJBIYmNj6SAdr6mpoRCpAPMA/f396enp9HWS3sqdnD4HPgPagXNcbum2bcVi8WUbmyEW6zYwAfwC/KRHfgEoGYZyTfqHRUdHU6zzAMPDwyqVKicnJzMzMzU1VRUQ0GFuftbKSuPndyQpKeUvy1AoWnbsGLK2Hlu16lcud9DM7JSdXWpQ0N//EBcXFxIS4u/v39nZOQ9w//59cp2RkaHKURUUFNDdUkIfvI5R9uHh4QEBAWKx2NfX9+7du/MAdDnpmem2FbbsU2zXZld1qbqkpKSwsPDEiROpC9tRvZF3qolMJptz7e3tLZfLDXRRXl4ec4nBNWAK8nZ5cXEx9VJFRUVpaWl2dvaxBezw4cPBwfvt7FRsdgmXe8TOLsjT0+f48eMGAOSR+zEXncA0rEesi4qKyDUBqqqqqDHop1qtprql6U2pVFLFDxw4IJHsNzP7GuindgXeBaLs7aWtra0GAOSOd5Kna53bOkZyUzJVSVOh8az39DzjWVBfUF9fX1tbSzdEAKpJcHCwTBa8bt33wG9AI4u1n2FEQJiVlXxoaMgAoLm5eUPlBrQA3+kAwj4h5eTT6oOvdLPgVO1UV1fX0NBAA0V1J+9U6M2bTwKzwDUjo3csLN7ictdwuVKhUPL06VMDgPb2dkGhAE3U+cADcB5ycstyPc546GasCi5lLhQ+JUGMxMRE8i4WRxkbz1D4RkZxLi6eu3fv5vFcBQIpSYCBSSbr6elxznLGRYAU5wfgd/jW+ArrhegBKiEqFdFNUBLEoKElgEBwTh/+aVtbuYeHH4+XBjQwTEFt7UnDgJs3b7op3XSAVIDmeBJr1WuFtUJdX1VAVCKi4ZxjkPzJZHITk3EKn81WbNkSzOFoAZKVY6amoRSoYQDNmleil64+KphUmmAYOAObSht8q1Mc92L3yspKYlChwsLCdu5M14d/mc8P5fG89UEp6GNpGTg9PW0YQJIrfk+s07YyOKQ44BugG0wJo/tFiz1Fe+Zalhh0wwJBM/AHkOXkJLGweJvFCgcSgJq9e+Nm59s8uT6UcAh0sBluEW6rT63Gj4Aa6AIK4KP1mZu78vJyGlo+vw0YBQ65u+8RCARcbgxwiTLIyipeDJCfn29cb0zq7BzpvF21HX266uvaNB/eBd40FsQg/QgMDFy5soPqY2QU6eXl5eR0ELrmqzMxCeru7l4M8OTJE+0FrbPKOexgWHh0+LLzy/CJfgmoIdFIaLaJQToolUqXL/+IPHI44c7OIWx2DXCRz9/b1vbl7EtmYGUODg7GxMTQBnYodMCn+p2QC6laSrETgxSXAGvWUFNmMkwEw9D2LLK0jL1+ffBlV4YBZGNjY1lZWUFxQTivr20OJLkSjUZDDBpj0uRNm7xZLGobKk74xo2Jt279bNDPgoBZfVO1tLToxIMWZhZk2TISO2LQGEskEpFIxOfbmJp6eHnFP3w4sZCTxQBzdmPohkuNC3WtMkNJ+44YVD1aWH5+flu3biVBpWtb3MOr30UTExMkcLR5qGjEoDHet28f7Rb64/Pnz195fEkvuxcvXly5coWWNjFojCmDjo6OpRxcKmDORkdHtVotdRc9QZZ+6vUevzMzM/RCfa0jb/x1/Sd+IPxqXp1JowAAAABJRU5ErkJggg==", + "tbrn2c08.png", false, 32, 32, "75954a76132c3971509841e973f029cd"); + testPngSuiteImage("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", + "tbwn0g16.png", false, 32, 32, "56ea136a6e299452015ac02a7837e365"); + testPngSuiteImage("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", + "tbwn3p08.png", false, 32, 32, "d1f6636d81c74f163bfff1405bf406cf"); + testPngSuiteImage("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", + "tbyn3p08.png", false, 32, 32, "d1f6636d81c74f163bfff1405bf406cf"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAgMAAAAOFJJnAAAADFBMVEUAAP8AAP8AAP8AAP+1n0POAAAAA3RSTlMAVaoLuSc5AAAAFElEQVR4XmNkAIJQIB4sjFWDiwEAKxcVYRYzLkEAAAAASUVORK5CYII=", + "tm3n3p02.png", false, 32, 32, "82e044043a1f2c91533b2fea5e271daa"); + testPngSuiteImage("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", + "tp0n0g08.png", false, 32, 32, "38deadbdfb7b0ff5a2b4cad35e866b39"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAAYagMeiWXwAABfFJREFUSInNlgtMk1cUx/8fFBrMhxpQlAYMhpEgtTAjiWADqBgQxFAppZRBIiLg6GDI04mFoZRXKZT3+yFBnQynzgFzG8NlIoMwwWUhZgFMNHNOEQaDaXxtpyVbRiyImSY7ab40X3vP79xzz/mfi4w3bPgfAW7fvt3X1zc1NfWaAXfv3m1vb09PT4+MjIwLCEh3dDzl6dmr0dwfHf1PgImJie7u7ry8vOjoaHlY2BFX13wzMzWgBFKBLKCGYZoFgm6FYnRo6OnTp0sFTE9PX7lypby8PCEh4X25PHXnzpx168oZphEoBj4EElg2XCAQL18uAmQ6Xomx8ZGoqKampsHBwUePHukHPHz4sL+/v6amJiUlJTEx8WhYWI6jYymX2wCcAc4DfcAgcAloZpgCS0ulg0OGuXkmUAEUAXKxOC4ujhbS8traWgqREjAPMDAwQE/6OVlnFU5OnwOfAR3AWZYt27q1RCS6ZGs7bGBwC5gEfgF+0iG/ABQMQ3tN/pfFxMRQrPMAIyMjSqUyNzc3KysrLS1NGRjYaW5+xtpa7e9/ODk59W/LlMtbt28ftrEZX7nyV5YdMjM7aW+fFhz8zx/i4+NDQ0MDAgK6urrmAe7du0euMzMzlbnKwsJCOlt6+cGrGO0+IiIiMDBQJBL5+fnduXNnHkB7OFkZdpV2nJMc1xZXVZmqtLS0qKjo+PHjaQvbEZ2Rd8qJVCqdc+3j4yOTyfRUUX5+PnORwVVgGrIOWUlJCdVSZWVlWVlZTk7O0QXs0KFDISH77O2VHE4pyx62tw/28vI9duyYHgB5ZD9m0QXMwGbUpri4mFwToLq6mgqDniqViv6WrjOFQkEZ379/v1i8z8zsa2CAyhV4F4h2cJC0tbXpAZA7ixMW2tK5pWWkNKdQltSVaq8GL6/TXoUNhQ0NDXV1dXRCBKCchISESKUha9d+D/wGNBkY7GMYNyDc2lo2PDysB9DS0rK+aj1age+0AGG/kPbk2+aLr7S94FTjVF9f39jYSA1FeSfvlOhNm04AfwJXDQ3fsbR8i2VXs6xEKBQ/efJED6Cjo4NfxEczVT5wH9wH3LzyPM/Tntoeq4ZLuQuFT5sgRlJSEnkXiaKNjGYpfEPDeBcXr127dllYuPL5EpIAPZ1M1tvb65ztjAsAKc4PwO/wq/UTNgjRC1TBrcyNToI2QQxqWgLw+Wd14Z+ys5N5evpbWKQDjQxTWFd3Qj/gxo0b7gp3LSANoD6ewhrVGmGdUFtXlXArdaPmnGOQ/EmlMhOTCQqfw5Fv3hzC5WoAkpWjpqZhFKh+APWad5K3Nj9KmFSZYAQ4DdsqW3yrVRyPEo+qqipiUKLCw8N37MjQhX+JxwuzsPDRBSWnj5VV0MzMjH4ASa7oPZFW28ohSBXgG6AHTCmj/aLB7uLdcyVLDDphPr8F+APIdnISW1q+bWAQASQCtXv2xGfMt3lyfTDxIGhhC9wj3VedXIUfARXQDRTCV+M713cVFRXUtDxeOzAGHPTw2M3n81k2FrhIO8jOLlkMUFBQYNRgROrsHOW8TbkN/drsa8u0AD6FPtQWxCD9CAoKWrGik/JjaBjl7e3t5HQA2uKrNzEJ7unpWQzw+PFjzXmNs9I5/EB4REyE8TljfKIbAiqI1WLqbWKQDkokkmXLPiKPXG6Es3Moh1MLXODx9rS3f5nxgukZmUNDQ7GxsTSBBUUCfKqbCXmQqCQUOzFIcQmwejUVZRbDRDIMTc9iK6u4a9eGXnSlH0A2Pj6enZ0dHB+Mc7rc5kKcJ1ar1cSgNiZN3rjRx8CAyoaSE7FhQ9LNmz/r9bMgIENXVK2trVrxoIGZDWmOlMSOGNTGYrHYzc2Nx7M1NfX09k548GByISeLAebs+vB1l1oXqlpFpoLmHTEoezSw/P39t2zZQoJKx7a4h5ffiyYnJ0ngaPJQ0ohBbbx3716aLfTy2bNnL12+pJvd8+fPL1++TEObGNTGtIPOzs6lLFwqYM7GxsY0Gg1V19wV5PUDyGZnZ+mG+kpL3vjt+i9V6lTMZgDHHwAAAABJRU5ErkJggg==", + "tp0n2c08.png", false, 32, 32, "c37c05b6929096c1736f91dccbe93d15"); + testPngSuiteImage("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", + "tp0n3p08.png", false, 32, 32, "985ccf415de9754ff21296de6cf69a38"); + testPngSuiteImage("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", + "tp1n3p08.png", false, 32, 32, "d1f6636d81c74f163bfff1405bf406cf"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAEAAADurUJNAAAABGdBTUEAAYagMeiWXwAAAEFJREFUeJxjZGAkABQIyLMMBQWMDwgp+PcfP2B5MBwUMMoRkGdkonlcDAYFjI/wyv7/z/iH5nExGBQwyuCVZWQEAFDl/nE14thZAAAAAElFTkSuQmCC", + "xc1n0g08.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAkAAAArGWqiAAAABGdBTUEAAYagMeiWXwAAAEhJREFUeJzt1cEJADAMAkCF7JH9t3ITO0Qr9KH4zuErtA0EO4AKFPgcoO3kfUx4QIECD0qHH8KEBxQo8KB0OCOpQIG7cHejwAGCsfleD0DPSwAAAABJRU5ErkJggg==", + "xc9n2c08.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); + testPngSuiteImage("iVBORw0NGg0AAAANSUhEUgAAACAAAAAgBAAAAACT4cgpAAAABGdBTUEAAYagMeiWXwAAAEhJREFUeJxjYGAQFFRSMjZ2cQkNTUsrL2cgQwCV29FBjgAqd+ZMcgRQuatWkSOAyt29mxwBVO6ZM+QIoHLv3iVHAJX77h0ZAgAfFO4B6v9B+gAAAABJRU5ErkJggg==", + "xcrn0g04.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAQAAAABbAUdZAAAABGdBTUEAAYagMeiWXwAAAFtJREFUeJwtzLEJAzAMBdHr0gSySiALejRvkBU8gsGNCmFFB1Hx4IovqurSpIRszqklUwbnUzRXEuIRsiG/SyY9G0JzJSVei9qynm9qyjBpLp0pYW7pbzBl8L8fEIdJL0NTVU0AAAAASUVORK5CYII=", + "xcsn0g01.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAAIAAADMaKZiAAAABGdBTUEAAYagMeiWXwAAAEhJREFUeJzt1cEJADAMAkCF7JH9t3ITO0Qr9KH4zuErtA0EO4AKFPgcoO3kfUx4QIECD0qHH8KEBxQo8KB0OCOpQIG7cHejwAGCsfleD0DPSwAAAABJRU5ErkJggg==", + "xd0n2c08.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAwIAAACLyNyyAAAABGdBTUEAAYagMeiWXwAAAEhJREFUeJzt1cEJADAMAkCF7JH9t3ITO0Qr9KH4zuErtA0EO4AKFPgcoO3kfUx4QIECD0qHH8KEBxQo8KB0OCOpQIG7cHejwAGCsfleD0DPSwAAAABJRU5ErkJggg==", + "xd3n2c08.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgYwIAAAAS+qv/AAAABGdBTUEAAYagMeiWXwAAAEhJREFUeJzt1cEJADAMAkCF7JH9t3ITO0Qr9KH4zuErtA0EO4AKFPgcoO3kfUx4QIECD0qHH8KEBxQo8KB0OCOpQIG7cHejwAGCsfleD0DPSwAAAABJRU5ErkJggg==", + "xd9n2c08.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAQAAAABbAUdZAAAABGdBTUEAAYagMeiWXwAAAABJRU5ErkJggg==", + "xdtn0g01.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAAAAABDU1VNAAAABGdBTUEAAYagMeiWXwAAAEFJREFUeJxjZGAkABQIyLMMBQWMDwgp+PcfP2B5MBwUMMoRkGdkonlcDAYFjI/wyv7/z/iH5nExGBQwyuCVZWQEAFDl/nE14thZAAAAAElFTkSuQmCC", + "xhdn0g08.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); + testPngSuiteImage("iVBORwoKGgoAAAAKSUhEUgAAACAAAAAgBAAAAACT4cgpAAAABGdBTUEAAYagMeiWXwAAAEhJREFUeJxjYGAQFFRSMjZ2cQkKTUsrL2cgQwCV29FBjgAqd+ZMcgRQuatWkSOAyt29mxwBVO6ZM+QIoHLv3iVHAJX77h0ZAgAfFO4B6v9B+gAAAABJRU5ErkJggg==", + "xlfn0g04.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); + testPngSuiteImage("CVBORw0KGgoAAAANSUhEUgAAACAAAAAgAQAAAABbAUdZAAAABGdBTUEAAYagMeiWXwAAAFtJREFUeJwtzLEJAzAMBdHr0gSySiALejRvkBU8gsGNCmFFB1Hx4IovqurSpIRszqklUwbnUzRXEuIRsiG/SyY9G0JzJSVei9qynm9qyjBpLp0pYW7pbzBl8L8fEIdJL9AvFMkAAAAASUVORK5CYII=", + "xs1n0g01.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); + testPngSuiteImage("iVFORw0KGgoAAAANSUhEUgAAACAAAAAgAQAAAABbAUdZAAAABGdBTUEAAYagMeiWXwAAAFtJREFUeJwtzLEJAzAMBdHr0gSySiALejRvkBU8gsGNCmFFB1Hx4IovqurSpIRszqklUwbnUzRXEuIRsiG/SyY9G0JzJSVei9qynm9qyjBpLp0pYW7pbzBl8L8fEIdJL9AvFMkAAAAASUVORK5CYII=", + "xs2n0g01.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); + testPngSuiteImage("iVBOZw0KGgoAAAANSUhEUgAAACAAAAAgAQAAAABbAUdZAAAABGdBTUEAAYagMeiWXwAAAFtJREFUeJwtzLEJAzAMBdHr0gSySiALejRvkBU8gsGNCmFFB1Hx4IovqurSpIRszqklUwbnUzRXEuIRsiG/SyY9G0JzJSVei9qynm9qyjBpLp0pYW7pbzBl8L8fEIdJL9AvFMkAAAAASUVORK5CYII=", + "xs4n0g01.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); + testPngSuiteImage("iVBORw0KIAoAAAANSUhEUgAAACAAAAAgAQAAAABbAUdZAAAABGdBTUEAAYagMeiWXwAAAFtJREFUeJwtzLEJAzAMBdHr0gSySiALejRvkBU8gsGNCmFFB1Hx4IovqurSpIRszqklUwbnUzRXEuIRsiG/SyY9G0JzJSVei9qynm9qyjBpLp0pYW7pbzBl8L8fEIdJL9AvFMkAAAAASUVORK5CYII=", + "xs7n0g01.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); + testPngSuiteImage("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", + "z00n2c08.png", false, 32, 32, "6284c288d49534c897da4e50a9d05002"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAAr0lEQVR4XrXR3Q5AMAwF4Epc8P4Py91sIgxb15/TRUSC76Q9U0q0U7m28/5/Zl7Vv/Q+mwsZeJbQgIUoB+Q5Q07RidagCS79nADfwaNHBLx0eAdfHdtBQweuqK2jAro6JIDT/SUPdGfJY92zIpFuDpDqtg4UuqEDna5dkVpXBVh0eQdGXdiBXZesyKUPA7w6HwDQmZIxeq9kmN5cEVL/B4D1Twd4ve4gRL9XFKXngANVk05u39tDGQAAAABJRU5ErkJggg==", + "z03n2c08.png", false, 32, 32, "6284c288d49534c897da4e50a9d05002"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAAp0lEQVR4nLXRSw6AIBAD0JqwwPsfFna4MX4QYT4dVySS19BuraECFSg4D9158ktyLaEi8suhARnICSVQB/agF5x6UEW3HhHw0ukb9Dp3g4FOrGisswJ+dUrATPePvNCdI691T0Ui3Rwg1W0bKHTDBjpdW5FaVwVYdPkGRl24gV2XVOTSlwFefR5A0Ccjc/S/kWn6sCKm/g0g690GfP25QYh+VRSlA/kAVZNObjFSwSwAAAAASUVORK5CYII=", + "z06n2c08.png", false, 32, 32, "6284c288d49534c897da4e50a9d05002"); + testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAAp0lEQVR42rXRSw6AIBAD0JqwwPsfFna4MX4QYT4dVySS19BuraECFSg4D9158ktyLaEi8suhARnICSVQB/agF5x6UEW3HhHw0ukb9Dp3g4FOrGisswJ+dUrATPePvNCdI691T0Ui3Rwg1W0bKHTDBjpdW5FaVwVYdPkGRl24gV2XVOTSlwFefR5A0Ccjc/S/kWn6sCKm/g0g690GfP25QYh+VRSlA/kAVZNObtYRvvUAAAAASUVORK5CYII=", + "z09n2c08.png", false, 32, 32, "6284c288d49534c897da4e50a9d05002"); +} + + +void testErrorImages() { + std::cout << "testErrorImages" << std::endl; + // Image with color type palette but missing PLTE chunk + testBase64Image("iVBORw0KGgoAAAANSUhEUgAAAQAAAAEAAgMAAAAhHED1AAAAU0lEQVR4Ae3MwQAAAAxFoXnM3/NDvGsBdB8JBAKBQCAQCAQCgUAgEAgEAoFAIBAIBAKBQCAQCAQCgUAgEAgEAoFAIBAIBAKBQCAQCAQCgUAgEEQDHGPAW1eyhK0AAAAASUVORK5CYII=", true, 256, 256, ""); +} + +void doMain() { + //PNG + testPngSuite(); + testErrorImages(); + testPNGCodec(); + testPaletteFilterTypesZero(); + testComplexPNG(); + testInspectChunk(); + testPredefinedFilters(); + testFuzzing(); + testEncoderErrors(); + testPaletteToPaletteDecode(); + testPaletteToPaletteDecode2(); + testColorProfile(); + testBkgdChunk(); + testBkgdChunk2(); + testSbitChunk(); + + //Colors +#ifndef DISABLE_SLOW + testFewColors(); +#endif // DISABLE_SLOW + testColorKeyConvert(); + testColorConvert(); + testColorConvert2(); + testPaletteToPaletteConvert(); + testRGBToPaletteConvert(); + test16bitColorEndianness(); + testAutoColorModels(); + testNoAutoConvert(); + testChrmToSrgb(); + testXYZ(); + testICC(); + testICCGray(); + + //Zlib + testCompressZlib(); + testHuffmanCodeLengths(); + testCustomZlibCompress(); + testCustomZlibCompress2(); + testCustomDeflate(); + testCustomZlibDecompress(); + testCustomInflate(); + // TODO: add test for huffman code with exactly 0 and 1 symbols present + + //lodepng_util + testChunkUtil(); + testGetFilterTypes(); + + std::cout << "\ntest successful" << std::endl; +} + +int main() { + try { + doMain(); + } + catch(...) { + std::cout << std::endl; + std::cout << "caught error!" << std::endl; + std::cout << "*** TEST FAILED ***" << std::endl; + } + + return 0; +} +#endif diff --git a/Marlin/lib/LodePNG/lodepng_util.cpp b/Marlin/lib/LodePNG/lodepng_util.cpp new file mode 100644 index 0000000000..2b283df9ed --- /dev/null +++ b/Marlin/lib/LodePNG/lodepng_util.cpp @@ -0,0 +1,1763 @@ +/* +LodePNG Utils + +Copyright (c) 2005-2022 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ +#if 0 +#include "lodepng_util.h" +#include /* allocations */ + +namespace lodepng { + +LodePNGInfo getPNGHeaderInfo(const std::vector& png) { + unsigned w, h; + lodepng::State state; + lodepng_inspect(&w, &h, &state, png.empty() ? NULL : &png[0], png.size()); + return state.info_png; +} + +unsigned getChunkInfo(std::vector& names, std::vector& sizes, + const std::vector& png) { + // Listing chunks is based on the original file, not the decoded png info. + const unsigned char *chunk, *end; + end = &png.back() + 1; + chunk = &png.front() + 8; + + while(chunk < end && end - chunk >= 8) { + char type[5]; + lodepng_chunk_type(type, chunk); + if(std::string(type).size() != 4) return 1; + + unsigned length = lodepng_chunk_length(chunk); + names.push_back(type); + sizes.push_back(length); + chunk = lodepng_chunk_next_const(chunk, end); + } + return 0; +} + +unsigned getChunks(std::vector names[3], + std::vector > chunks[3], + const std::vector& png) { + const unsigned char *chunk, *next, *end; + end = &png.back() + 1; + chunk = &png.front() + 8; + + int location = 0; + + while(chunk < end && end - chunk >= 8) { + char type[5]; + lodepng_chunk_type(type, chunk); + std::string name(type); + if(name.size() != 4) return 1; + + next = lodepng_chunk_next_const(chunk, end); + + if(name == "IHDR") { + location = 0; + } else if(name == "PLTE") { + location = 1; + } else if(name == "IDAT") { + location = 2; + } else if(name == "IEND") { + break; // anything after IEND is not part of the PNG or the 3 groups here. + } else { + if(next >= end) return 1; // invalid chunk, content too far + names[location].push_back(name); + chunks[location].push_back(std::vector(chunk, next)); + } + + chunk = next; + } + return 0; +} + + +unsigned insertChunks(std::vector& png, + const std::vector > chunks[3]) { + const unsigned char *chunk, *begin, *end; + end = &png.back() + 1; + begin = chunk = &png.front() + 8; + + long l0 = 0; //location 0: IHDR-l0-PLTE (or IHDR-l0-l1-IDAT) + long l1 = 0; //location 1: PLTE-l1-IDAT (or IHDR-l0-l1-IDAT) + long l2 = 0; //location 2: IDAT-l2-IEND + + while(chunk < end && end - chunk >= 8) { + char type[5]; + lodepng_chunk_type(type, chunk); + std::string name(type); + if(name.size() != 4) return 1; + + if(name == "PLTE") { + if(l0 == 0) l0 = chunk - begin + 8; + } else if(name == "IDAT") { + if(l0 == 0) l0 = chunk - begin + 8; + if(l1 == 0) l1 = chunk - begin + 8; + } else if(name == "IEND") { + if(l2 == 0) l2 = chunk - begin + 8; + } + + chunk = lodepng_chunk_next_const(chunk, end); + } + + std::vector result; + result.insert(result.end(), png.begin(), png.begin() + l0); + for(size_t i = 0; i < chunks[0].size(); i++) result.insert(result.end(), chunks[0][i].begin(), chunks[0][i].end()); + result.insert(result.end(), png.begin() + l0, png.begin() + l1); + for(size_t i = 0; i < chunks[1].size(); i++) result.insert(result.end(), chunks[1][i].begin(), chunks[1][i].end()); + result.insert(result.end(), png.begin() + l1, png.begin() + l2); + for(size_t i = 0; i < chunks[2].size(); i++) result.insert(result.end(), chunks[2][i].begin(), chunks[2][i].end()); + result.insert(result.end(), png.begin() + l2, png.end()); + + png = result; + return 0; +} + +unsigned getFilterTypesInterlaced(std::vector >& filterTypes, + const std::vector& png) { + //Get color type and interlace type + lodepng::State state; + unsigned w, h; + unsigned error; + error = lodepng_inspect(&w, &h, &state, png.empty() ? NULL : &png[0], png.size()); + + if(error) return 1; + + //Read literal data from all IDAT chunks + const unsigned char *chunk, *begin, *end; + end = &png.back() + 1; + begin = chunk = &png.front() + 8; + + std::vector zdata; + + while(chunk < end && end - chunk >= 8) { + char type[5]; + lodepng_chunk_type(type, chunk); + if(std::string(type).size() != 4) break; //Probably not a PNG file + + if(std::string(type) == "IDAT") { + const unsigned char* cdata = lodepng_chunk_data_const(chunk); + unsigned clength = lodepng_chunk_length(chunk); + if(chunk + clength + 12 > end || clength > png.size() || chunk + clength + 12 < begin) { + // corrupt chunk length + return 1; + } + + for(unsigned i = 0; i < clength; i++) { + zdata.push_back(cdata[i]); + } + } + + chunk = lodepng_chunk_next_const(chunk, end); + } + + //Decompress all IDAT data (if the while loop ended early, this might fail) + std::vector data; + error = lodepng::decompress(data, zdata.empty() ? NULL : &zdata[0], zdata.size()); + + if(error) return 1; + + if(state.info_png.interlace_method == 0) { + filterTypes.resize(1); + + //A line is 1 filter byte + all pixels + size_t linebytes = 1 + lodepng_get_raw_size(w, 1, &state.info_png.color); + + for(size_t i = 0; i < data.size(); i += linebytes) { + filterTypes[0].push_back(data[i]); + } + } else { + //Interlaced + filterTypes.resize(7); + static const unsigned ADAM7_IX[7] = { 0, 4, 0, 2, 0, 1, 0 }; /*x start values*/ + static const unsigned ADAM7_IY[7] = { 0, 0, 4, 0, 2, 0, 1 }; /*y start values*/ + static const unsigned ADAM7_DX[7] = { 8, 8, 4, 4, 2, 2, 1 }; /*x delta values*/ + static const unsigned ADAM7_DY[7] = { 8, 8, 8, 4, 4, 2, 2 }; /*y delta values*/ + size_t pos = 0; + for(size_t j = 0; j < 7; j++) { + unsigned w2 = (w - ADAM7_IX[j] + ADAM7_DX[j] - 1) / ADAM7_DX[j]; + unsigned h2 = (h - ADAM7_IY[j] + ADAM7_DY[j] - 1) / ADAM7_DY[j]; + if(ADAM7_IX[j] >= w || ADAM7_IY[j] >= h) continue; + size_t linebytes = 1 + lodepng_get_raw_size(w2, 1, &state.info_png.color); + for(size_t i = 0; i < h2; i++) { + filterTypes[j].push_back(data[pos]); + pos += linebytes; + } + } + } + return 0; /* OK */ +} + + +unsigned getFilterTypes(std::vector& filterTypes, const std::vector& png) { + std::vector > passes; + unsigned error = getFilterTypesInterlaced(passes, png); + if(error) return error; + + if(passes.size() == 1) { + filterTypes.swap(passes[0]); + } else { + // Simplify interlaced filter types to get a single filter value per scanline: + // put pass 6 and 7 alternating in the one vector, these filters + // correspond to the closest to what it would be for non-interlaced + // image. If the image is only 1 pixel wide, pass 6 doesn't exist so the + // alternative values column0 are used. The shift values are to match + // the y position in the interlaced sub-images. + // NOTE: the values 0-6 match Adam7's passes 1-7. + const unsigned column0[8] = {0, 6, 4, 6, 2, 6, 4, 6}; + const unsigned column1[8] = {5, 6, 5, 6, 5, 6, 5, 6}; + const unsigned shift0[8] = {3, 1, 2, 1, 3, 1, 2, 1}; + const unsigned shift1[8] = {1, 1, 1, 1, 1, 1, 1, 1}; + lodepng::State state; + unsigned w, h; + lodepng_inspect(&w, &h, &state, png.empty() ? NULL : &png[0], png.size()); + const unsigned* column = w > 1 ? column1 : column0; + const unsigned* shift = w > 1 ? shift1 : shift0; + for(size_t i = 0; i < h; i++) { + filterTypes.push_back(passes[column[i & 7u]][i >> shift[i & 7u]]); + } + } + return 0; /* OK */ +} + +int getPaletteValue(const unsigned char* data, size_t i, int bits) { + if(bits == 8) return data[i]; + else if(bits == 4) return (data[i / 2] >> ((i % 2) * 4)) & 15; + else if(bits == 2) return (data[i / 4] >> ((i % 4) * 2)) & 3; + else if(bits == 1) return (data[i / 8] >> (i % 8)) & 1; + else return 0; +} + + +//////////////////////////////////////////////////////////////////////////////// + +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + + + +// Only temporarily here until this is integrated into lodepng.c(pp) +#define LODEPNG_MAX(a, b) (((a) > (b)) ? (a) : (b)) +#define LODEPNG_MIN(a, b) (((a) < (b)) ? (a) : (b)) + +// Only temporarily here until this is integrated into lodepng.c(pp) +#ifdef LODEPNG_COMPILE_ALLOCATORS +static void* lodepng_malloc(size_t size) { + return malloc(size); +} +static void lodepng_free(void* ptr) { + free(ptr); +} +#else /*LODEPNG_COMPILE_ALLOCATORS*/ +void* lodepng_malloc(size_t size); +void lodepng_free(void* ptr); +#endif /*LODEPNG_COMPILE_ALLOCATORS*/ + +/* define infinity and NaN in a way compatible with ANSI C90 (no INFINITY or NAN macros) yet also with visual studio */ +/* visual studio doesn't allow division through a zero literal, but allows it through public non-const variable set to zero */ +float lodepng_flt_zero_ = 0.0f; +static const float lodepng_flt_inf = 1.0f / lodepng_flt_zero_; /* infinity */ +static const float lodepng_flt_nan = 0.0f / lodepng_flt_zero_; /* not a number */ +static const float lodepng_flt_max = 3.40282346638528859811704183484516925e38f; /* avoid needing for FLT_MAX. This assumes IEEE 32-bit float. */ + +/* powf polyfill, 5-6 digits accurate, 33-80% slower than powf, assumes IEEE +32-bit float, but other than that multiplatform and no math lib needed +(note: powf also isn't in ISO C90, and pow is slower). */ +static float lodepng_powf(float x, float y) { + float j, t0, t1, l; + int i = 0; + /* handle all the special floating point rules */ + if(x == 1 || y == 0) return 1; /*these cases return 1 even if the other value is NaN, as specified*/ + if(y == 1) return x; /* preserves negative-0 */ + if(!(x > 0 && x <= lodepng_flt_max && y >= -lodepng_flt_max && y <= lodepng_flt_max)) { /*all special cases*/ + if(x != x || y != y) return x + y; /* nan */ + if(x > 0) { + if(x > lodepng_flt_max) return y <= 0 ? (y == 0 ? 1 : 0) : x; /* x = +infinity */ + } else { + if(!(y < -1073741824.0f || y > 1073741824.0f)) { /* large y always even integer, but cast would overflow */ + i = (int)y; /* not using floor: not using math lib */ + if(i != y) { + return (x < -lodepng_flt_max) ? (y < 0 ? 0 : lodepng_flt_inf) : + (x == 0 ? (y < 0 ? lodepng_flt_inf : 0) : lodepng_flt_nan); + } + if(i & 1) return x == 0 ? (y < 0 ? (1 / x) : x) : -lodepng_powf(-x, y); + } + if(x == 0) return y <= 0 ? lodepng_flt_inf : 0; + if(x < -lodepng_flt_max) { /* x == -infinity */ + return y <= 0 ? (y == 0 ? 1 : 0) : ((i & 1) ? + -lodepng_flt_inf : lodepng_flt_inf); + } + x = -x; + if(x == 1) return 1; /* under the C++ rules, pow(-1, +/- infinity) also returns 1 */ + } + if(y < -lodepng_flt_max || y > lodepng_flt_max) return ((x < 1) != (y > 0)) ? (y < 0 ? -y : y) : 0; + } + + l = x; + j = 0; + while(l < (1.0f / 65536)) { j -= 16; l *= 65536.0f; } + while(l > 65536) { j += 16; l *= (1.0f / 65536); } + while(l < 1) { j--; l *= 2.0f; } + while(l > 2) { j++; l *= 0.5f; } + /* polynomial to approximate log2(x) with x in range 1..2 */ + t0 = -0.393118410458557f + l * (-0.0883639468229365f + l * (0.466142650227994f + l * 0.0153397331014276f)); + t1 = 0.0907447971403586f + l * (0.388892024755479f + l * 0.137228280305862f); + l = t0 / t1 + j; + + l *= y; /* using the formula exp2(y * log2(x)) */ + + /* prevent int shift overflow, 0 or inf result are ok to return since exp will be taken, 127 is max float exponent */ + if(l <= -128.0f || l >= 128.0f) return ((x > 1) == (y > 0)) ? lodepng_flt_inf : 0; + i = (int)l; + l -= i; + /* polynomial to approximate exp2(x) with x in range -1..1 */ + t0 = 1.0f + l * (0.41777833582744256f + l * (0.0728482595347711f + l * 0.005635023478609625f)); + t1 = 1.0f + l * (-0.27537016151408167f + l * 0.023501446055084033f); + while(i <= -31) { t0 *= (1.0f / 2147483648.0f); i += 31; } + while(i >= 31) { t0 *= 2147483648.0f; i -= 31; } + return (i < 0) ? (t0 / (t1 * (1 << -i))) : ((t0 * (1 << i)) / t1); +} + +/* Parameters of a tone reproduction curve, either with a power law formula or with a lookup table. */ +typedef struct { + unsigned type; /* 0=linear, 1=lut, 2 = simple gamma, 3-6 = parametric (matches ICC parametric types 1-4) */ + float* lut; /* for type 1 */ + size_t lut_size; + float gamma; /* for type 2 and more */ + float a, b, c, d, e, f; /* parameters for type 3-7 */ +} LodePNGICCCurve; + +void lodepng_icc_curve_init(LodePNGICCCurve* curve) { + curve->lut = 0; + curve->lut_size = 0; +} + +void lodepng_icc_curve_cleanup(LodePNGICCCurve* curve) { + lodepng_free(curve->lut); +} + +/* Values parsed from ICC profile, see parseICC for more information about this subset.*/ +typedef struct { + /* 0 = color model not supported by PNG (CMYK, Lab, ...), 1 = gray, 2 = RGB */ + int inputspace; + int version_major; + int version_minor; + int version_bugfix; + + /* The whitepoint of the profile connection space (PCS). Should always be D50, but parsed and used anyway. + (to be clear, whitepoint and illuminant are synonyms in practice, but here field "illuminant" is ICC's + "global" whitepoint that is always D50, and the field "white" below allows deriving the whitepoint of + the particular RGB space represented here) */ + float illuminant[3]; + + /* if true, has chromatic adaptation matrix that must be used. If false, you must compute a chromatic adaptation + matrix yourself from "illuminant" and "white". */ + unsigned has_chad; + float chad[9]; /* chromatic adaptation matrix, if given */ + + /* The whitepoint of the RGB color space as stored in the ICC file. If has_chad, must be adapted with the + chad matrix to become the one we need to go to absolute XYZ (in fact ICC implies it should then be + exactly D50 in the file, redundantly, before this transformation with chad), else use as-is (then its + values can actually be something else than D50, and are the ones we need). */ + unsigned has_whitepoint; + float white[3]; + /* Chromaticities of the RGB space in XYZ color space, but given such that you must still + whitepoint adapt them from D50 to the RGB space whitepoint to go to absolute XYZ (if has_chad, + with chad, else with bradford adaptation matrix from illuminant to white). */ + unsigned has_chromaticity; + float red[3]; + float green[3]; + float blue[3]; + + unsigned has_trc; /* TRC = tone reproduction curve (aka "gamma correction") */ + + /* TRC's for the three channels (only first one used if grayscale) */ + LodePNGICCCurve trc[3]; +} LodePNGICC; + +void lodepng_icc_init(LodePNGICC* icc) { + lodepng_icc_curve_init(&icc->trc[0]); + lodepng_icc_curve_init(&icc->trc[1]); + lodepng_icc_curve_init(&icc->trc[2]); +} + +void lodepng_icc_cleanup(LodePNGICC* icc) { + lodepng_icc_curve_cleanup(&icc->trc[0]); + lodepng_icc_curve_cleanup(&icc->trc[1]); + lodepng_icc_curve_cleanup(&icc->trc[2]); +} + +/* ICC tone response curve, nonlinear (encoded) to linear. +Input and output in range 0-1. If color was integer 0-255, multiply with (1.0f/255) +to get the correct floating point behavior. +Outside of range 0-1, will not clip but either return x itself, or in cases +where it makes sense, a value defined by the same function. +NOTE: ICC requires clipping, but we do that only later when converting float to integer.*/ +static float iccForwardTRC(const LodePNGICCCurve* curve, float x) { + if(curve->type == 0) { + return x; + } + if(curve->type == 1) { /* Lookup table */ + float v0, v1, fraction; + size_t index; + if(!curve->lut) return 0; /* error */ + if(x < 0) return x; + index = (size_t)(x * (curve->lut_size - 1)); + if(index >= curve->lut_size) return x; + + /* LERP */ + v0 = curve->lut[index]; + v1 = (index + 1 < curve->lut_size) ? curve->lut[index + 1] : 1.0f; + fraction = (x * (curve->lut_size - 1)) - index; + return v0 * (1 - fraction) + v1 * fraction; + } + if(curve->type == 2) { + /* Gamma expansion */ + return (x > 0) ? lodepng_powf(x, curve->gamma) : x; + } + /* TODO: all the ones below are untested */ + if(curve->type == 3) { + if(x < 0) return x; + return x >= (-curve->b / curve->a) ? (lodepng_powf(curve->a * x + curve->b, curve->gamma) + curve->c) : 0; + } + if(curve->type == 4) { + if(x < 0) return x; + return x >= (-curve->b / curve->a) ? (lodepng_powf(curve->a * x + curve->b, curve->gamma) + curve->c) : curve->c; + } + if(curve->type == 5) { + return x >= curve->d ? (lodepng_powf(curve->a * x + curve->b, curve->gamma)) : (curve->c * x); + } + if(curve->type == 6) { + return x >= curve->d ? (lodepng_powf(curve->a * x + curve->b, curve->gamma) + curve->c) : (curve->c * x + curve->f); + } + return 0; +} + +/* ICC tone response curve, linear to nonlinear (encoded). +Input and output in range 0-1. Outside of that range, will not clip but either +return x itself, or in cases where it makes sense, a value defined by the same function. +NOTE: ICC requires clipping, but we do that only later when converting float to integer.*/ +static float iccBackwardTRC(const LodePNGICCCurve* curve, float x) { + if(curve->type == 0) { + return x; + } + if(curve->type == 1) { + size_t a, b, m; + float v; + if(x <= 0) return x; + if(x >= 1) return x; + /* binary search in the table */ + /* TODO: use faster way of inverting the lookup table */ + a = 0; + b = curve->lut_size; + for(;;) { + if(a == b) return curve->lut[a]; + if(a + 1 == b) { + /* LERP */ + float v0 = curve->lut[a]; + float v1 = curve->lut[b]; + float fraction; + if(v0 == v1) return v0; + fraction = (x - v0) / (v1 - v0); + return v0 * (1 - fraction) + v1 * fraction; + } + m = (a + b) / 2u; + v = curve->lut[m]; + if(v > x) { + b = m; + } else { + a = m; + } + } + } + if(curve->type == 2) { + /* Gamma compression */ + return (x > 0) ? lodepng_powf(x, 1.0f / curve->gamma) : x; + } + /* TODO: all the ones below are untested */ + if(curve->type == 3) { + if(x < 0) return x; + return x > 0 ? ((lodepng_powf(x, 1.0f / curve->gamma) - curve->b) / curve->a) : (-curve->b / curve->a); + } + if(curve->type == 4) { + if(x < 0) return x; + return x > curve->c ? + ((lodepng_powf(x - curve->c, 1.0f / curve->gamma) - curve->b) / curve->a) : + (-curve->b / curve->a); + } + if(curve->type == 5) { + return x > (curve->c * curve->d) ? + ((lodepng_powf(x, 1.0f / curve->gamma) - curve->b) / curve->a) : + (x / curve->c); + } + if(curve->type == 6) { + return x > (curve->c * curve->d + curve->f) ? + ((lodepng_powf(x - curve->c, 1.0f / curve->gamma) - curve->b) / curve->a) : + ((x - curve->f) / curve->c); + } + return 0; +} + +static unsigned decodeICCUint16(const unsigned char* data, size_t size, size_t* pos) { + *pos += 2; + if (*pos > size) return 0; + return (unsigned)((data[*pos - 2] << 8) | (data[*pos - 1])); +} + +static unsigned decodeICCUint32(const unsigned char* data, size_t size, size_t* pos) { + *pos += 4; + if (*pos > size) return 0; + return (unsigned)((data[*pos - 4] << 24) | (data[*pos - 3] << 16) | (data[*pos - 2] << 8) | (data[*pos - 1] << 0)); +} + +static int decodeICCInt32(const unsigned char* data, size_t size, size_t* pos) { + *pos += 4; + if (*pos > size) return 0; + /*TODO: this is incorrect if sizeof(int) != 4*/ + return (data[*pos - 4] << 24) | (data[*pos - 3] << 16) | (data[*pos - 2] << 8) | (data[*pos - 1] << 0); +} + +static float decodeICC15Fixed16(const unsigned char* data, size_t size, size_t* pos) { + return decodeICCInt32(data, size, pos) / 65536.0f; +} + +static unsigned isICCword(const unsigned char* data, size_t size, size_t pos, const char* word) { + if(pos + 4 > size) return 0; + return data[pos + 0] == (unsigned char)word[0] && + data[pos + 1] == (unsigned char)word[1] && + data[pos + 2] == (unsigned char)word[2] && + data[pos + 3] == (unsigned char)word[3]; +} + +/* Parses a subset of the ICC profile, supporting the necessary mix of ICC v2 +and ICC v4 required to correctly convert the RGB color space to XYZ. +Does not parse values not related to this specific PNG-related purpose, and +does not support non-RGB profiles or lookup-table based chroma (but it +supports lookup tables for TRC aka "gamma"). */ +static unsigned parseICC(LodePNGICC* icc, const unsigned char* data, size_t size) { + size_t i, j; + size_t pos = 0; + unsigned version; + unsigned inputspace; + size_t numtags; + + if(size < 132) return 1; /* Too small to be a valid icc profile. */ + + icc->has_chromaticity = 0; + icc->has_whitepoint = 0; + icc->has_trc = 0; + icc->has_chad = 0; + + icc->trc[0].type = icc->trc[1].type = icc->trc[2].type = 0; + icc->white[0] = icc->white[1] = icc->white[2] = 0; + icc->red[0] = icc->red[1] = icc->red[2] = 0; + icc->green[0] = icc->green[1] = icc->green[2] = 0; + icc->blue[0] = icc->blue[1] = icc->blue[2] = 0; + + pos = 8; + version = decodeICCUint32(data, size, &pos); + if(pos >= size) return 1; + icc->version_major = (int)((version >> 24) & 255); + icc->version_minor = (int)((version >> 20) & 15); + icc->version_bugfix = (int)((version >> 16) & 15); + + pos = 16; + inputspace = decodeICCUint32(data, size, &pos); + if(pos >= size) return 1; + if(inputspace == 0x47524159) { + /* The string "GRAY" as unsigned 32-bit int. */ + icc->inputspace = 1; + } else if(inputspace == 0x52474220) { + /* The string "RGB " as unsigned 32-bit int. */ + icc->inputspace = 2; + } else { + /* unsupported by PNG (CMYK, YCbCr, Lab, HSV, ...) */ + icc->inputspace = 0; + } + + /* Should always be 0.9642, 1.0, 0.8249 */ + pos = 68; + icc->illuminant[0] = decodeICC15Fixed16(data, size, &pos); + icc->illuminant[1] = decodeICC15Fixed16(data, size, &pos); + icc->illuminant[2] = decodeICC15Fixed16(data, size, &pos); + + pos = 128; + numtags = decodeICCUint32(data, size, &pos); + if(pos >= size) return 1; + /* scan for tags we want to handle */ + for(i = 0; i < numtags; i++) { + size_t offset; + unsigned tagsize; + size_t namepos = pos; + pos += 4; + offset = decodeICCUint32(data, size, &pos); + tagsize = decodeICCUint32(data, size, &pos); + if(pos >= size || offset >= size) return 1; + if(offset + tagsize > size) return 1; + if(tagsize < 8) return 1; + + if(isICCword(data, size, namepos, "wtpt")) { + offset += 8; /* skip tag and reserved */ + icc->white[0] = decodeICC15Fixed16(data, size, &offset); + icc->white[1] = decodeICC15Fixed16(data, size, &offset); + icc->white[2] = decodeICC15Fixed16(data, size, &offset); + icc->has_whitepoint = 1; + } else if(isICCword(data, size, namepos, "rXYZ")) { + offset += 8; /* skip tag and reserved */ + icc->red[0] = decodeICC15Fixed16(data, size, &offset); + icc->red[1] = decodeICC15Fixed16(data, size, &offset); + icc->red[2] = decodeICC15Fixed16(data, size, &offset); + icc->has_chromaticity = 1; + } else if(isICCword(data, size, namepos, "gXYZ")) { + offset += 8; /* skip tag and reserved */ + icc->green[0] = decodeICC15Fixed16(data, size, &offset); + icc->green[1] = decodeICC15Fixed16(data, size, &offset); + icc->green[2] = decodeICC15Fixed16(data, size, &offset); + icc->has_chromaticity = 1; + } else if(isICCword(data, size, namepos, "bXYZ")) { + offset += 8; /* skip tag and reserved */ + icc->blue[0] = decodeICC15Fixed16(data, size, &offset); + icc->blue[1] = decodeICC15Fixed16(data, size, &offset); + icc->blue[2] = decodeICC15Fixed16(data, size, &offset); + icc->has_chromaticity = 1; + } else if(isICCword(data, size, namepos, "chad")) { + offset += 8; /* skip datatype keyword "sf32" and reserved */ + for(j = 0; j < 9; j++) { + icc->chad[j] = decodeICC15Fixed16(data, size, &offset); + } + icc->has_chad = 1; + } else if(isICCword(data, size, namepos, "rTRC") || + isICCword(data, size, namepos, "gTRC") || + isICCword(data, size, namepos, "bTRC") || + isICCword(data, size, namepos, "kTRC")) { + char c = (char)data[namepos]; + /* both 'k' and 'r' are stored in channel 0 */ + int channel = (c == 'b') ? 2 : (c == 'g' ? 1 : 0); + /* "curv": linear, gamma power or LUT */ + if(isICCword(data, size, offset, "curv")) { + size_t count; + LodePNGICCCurve* trc = &icc->trc[channel]; + icc->has_trc = 1; + offset += 8; /* skip tag "curv" and reserved */ + count = decodeICCUint32(data, size, &offset); + if(count == 0) { + trc->type = 0; /* linear */ + } else if(count == 1) { + trc->type = 2; /* gamma */ + trc->gamma = decodeICCUint16(data, size, &offset) / 256.0f; + } else { + trc->type = 1; /* LUT */ + if(offset + count * 2 > size || count > 16777216) return 1; /* also avoid crazy count */ + trc->lut_size = count; + trc->lut = (float*)lodepng_malloc(count * sizeof(float)); + for(j = 0; j < count; j++) { + trc->lut[j] = decodeICCUint16(data, size, &offset) * (1.0f / 65535.0f); + } + } + } + /* "para": parametric formula with gamma power, multipliers, biases and comparison point */ + /* TODO: test this on a realistic sample */ + if(isICCword(data, size, offset, "para")) { + unsigned type; + LodePNGICCCurve* trc = &icc->trc[channel]; + icc->has_trc = 1; + offset += 8; /* skip tag "para" and reserved */ + type = decodeICCUint16(data, size, &offset); + offset += 2; + if(type > 4) return 1; /* unknown parametric curve type */ + trc->type = type + 2; + trc->gamma = decodeICC15Fixed16(data, size, &offset); + if(type >= 1) { + trc->a = decodeICC15Fixed16(data, size, &offset); + trc->b = decodeICC15Fixed16(data, size, &offset); + } + if(type >= 2) { + trc->c = decodeICC15Fixed16(data, size, &offset); + } + if(type >= 3) { + trc->d = decodeICC15Fixed16(data, size, &offset); + } + if(type == 4) { + trc->e = decodeICC15Fixed16(data, size, &offset); + trc->f = decodeICC15Fixed16(data, size, &offset); + } + } + /* TODO: verify: does the "chrm" tag participate in computation so should be parsed? */ + } + /* Return error if any parse went beyond the filesize. Note that the + parsing itself was always safe since it bound-checks inside. */ + if(offset > size) return 1; + } + + return 0; +} + +/* Multiplies 3 vector values with 3x3 matrix */ +static void mulMatrix(float* x2, float* y2, float* z2, const float* m, double x, double y, double z) { + /* double used as inputs even though in general the images are float, so the sums happen in + double precision, because float can give numerical problems for nearby values */ + *x2 = (float)(x * m[0] + y * m[1] + z * m[2]); + *y2 = (float)(x * m[3] + y * m[4] + z * m[5]); + *z2 = (float)(x * m[6] + y * m[7] + z * m[8]); +} + +static void mulMatrixMatrix(float* result, const float* a, const float* b) { + int i; + float temp[9]; /* temp is to allow result and a or b to be the same */ + mulMatrix(&temp[0], &temp[3], &temp[6], a, b[0], b[3], b[6]); + mulMatrix(&temp[1], &temp[4], &temp[7], a, b[1], b[4], b[7]); + mulMatrix(&temp[2], &temp[5], &temp[8], a, b[2], b[5], b[8]); + for(i = 0; i < 9; i++) result[i] = temp[i]; +} + +/* Inverts 3x3 matrix in place */ +static unsigned invMatrix(float* m) { + int i; + /* double used instead of float for intermediate computations to avoid + intermediate numerical precision issues */ + double e0 = (double)m[4] * m[8] - (double)m[5] * m[7]; + double e3 = (double)m[5] * m[6] - (double)m[3] * m[8]; + double e6 = (double)m[3] * m[7] - (double)m[4] * m[6]; + /* inverse determinant */ + double d = 1.0 / (m[0] * e0 + m[1] * e3 + m[2] * e6); + double result[9]; + if((d > 0 ? d : -d) > 1e15) return 1; /* error, likely not invertible */ + result[0] = e0 * d; + result[1] = ((double)m[2] * m[7] - (double)m[1] * m[8]) * d; + result[2] = ((double)m[1] * m[5] - (double)m[2] * m[4]) * d; + result[3] = e3 * d; + result[4] = ((double)m[0] * m[8] - (double)m[2] * m[6]) * d; + result[5] = ((double)m[3] * m[2] - (double)m[0] * m[5]) * d; + result[6] = e6 * d; + result[7] = ((double)m[6] * m[1] - (double)m[0] * m[7]) * d; + result[8] = ((double)m[0] * m[4] - (double)m[3] * m[1]) * d; + for(i = 0; i < 9; i++) m[i] = (float)result[i]; + return 0; /* ok */ +} + +/* Get the matrix to go from linear RGB to XYZ given the RGB whitepoint and chromaticities in XYZ colorspace */ +static unsigned getChrmMatrixXYZ(float* m, + float wX, float wY, float wZ, + float rX, float rY, float rZ, + float gX, float gY, float gZ, + float bX, float bY, float bZ) { + float t[9]; + float rs, gs, bs; + t[0] = rX; t[1] = gX; t[2] = bX; + t[3] = rY; t[4] = gY; t[5] = bY; + t[6] = rZ; t[7] = gZ; t[8] = bZ; + if(invMatrix(t)) return 1; /* error, not invertible */ + mulMatrix(&rs, &gs, &bs, t, wX, wY, wZ); + m[0] = rs * rX; m[1] = gs * gX; m[2] = bs * bX; + m[3] = rs * rY; m[4] = gs * gY; m[5] = bs * bY; + m[6] = rs * rZ; m[7] = gs * gZ; m[8] = bs * bZ; + return 0; +} + +/* Get the matrix to go from linear RGB to XYZ given the RGB whitepoint and chromaticities in xy colorspace */ +static unsigned getChrmMatrixXY(float* m, + float wx, float wy, + float rx, float ry, + float gx, float gy, + float bx, float by) { + if(wy == 0 || ry == 0 || gy == 0 || by == 0) { + return 1; /* error, division through zero */ + } else { + float wX = wx / wy, wY = 1, wZ = (1 - wx - wy) / wy; + float rX = rx / ry, rY = 1, rZ = (1 - rx - ry) / ry; + float gX = gx / gy, gY = 1, gZ = (1 - gx - gy) / gy; + float bX = bx / by, bY = 1, bZ = (1 - bx - by) / by; + return getChrmMatrixXYZ(m, wX, wY, wZ, rX, rY, rZ, gX, gY, gZ, bX, bY, bZ); + } +} + +/* Returns matrix that adapts from source whitepoint 0 to destination whitepoint 1. +Types: 0=XYZ scaling, 1=Bradford, 2=Vonkries */ +static unsigned getAdaptationMatrix(float* m, int type, + float wx0, float wy0, float wz0, + float wx1, float wy1, float wz1) { + int i; + static const float bradford[9] = { + 0.8951f, 0.2664f, -0.1614f, + -0.7502f, 1.7135f, 0.0367f, + 0.0389f, -0.0685f, 1.0296f + }; + static const float bradfordinv[9] = { + 0.9869929f, -0.1470543f, 0.1599627f, + 0.4323053f, 0.5183603f, 0.0492912f, + -0.0085287f, 0.0400428f, 0.9684867f + }; + static const float vonkries[9] = { + 0.40024f, 0.70760f, -0.08081f, + -0.22630f, 1.16532f, 0.04570f, + 0.00000f, 0.00000f, 0.91822f, + }; + static const float vonkriesinv[9] = { + 1.8599364f, -1.1293816f, 0.2198974f, + 0.3611914f, 0.6388125f, -0.0000064f, + 0.0000000f, 0.0000000f, 1.0890636f + }; + if(type == 0) { + for(i = 0; i < 9; i++) m[i] = 0; + m[0] = wx1 / wx0; + m[4] = wy1 / wy0; + m[8] = wz1 / wz0; + } else { + const float* cat = (type == 1) ? bradford : vonkries; + const float* inv = (type == 1) ? bradfordinv : vonkriesinv; + float rho0, gam0, bet0, rho1, gam1, bet1, rho2, gam2, bet2; + mulMatrix(&rho0, &gam0, &bet0, cat, wx0, wy0, wz0); + mulMatrix(&rho1, &gam1, &bet1, cat, wx1, wy1, wz1); + rho2 = rho1 / rho0; + gam2 = gam1 / gam0; + bet2 = bet1 / bet0; + /* Multiply diagonal matrix with cat */ + for(i = 0; i < 3; i++) { + m[i + 0] = rho2 * cat[i + 0]; + m[i + 3] = gam2 * cat[i + 3]; + m[i + 6] = bet2 * cat[i + 6]; + } + mulMatrixMatrix(m, inv, m); + } + return 0; /* ok */ +} + +/* validate whether the ICC profile is supported here for PNG */ +static unsigned validateICC(const LodePNGICC* icc) { + /* disable for unsupported things in the icc profile */ + if(icc->inputspace == 0) return 0; + /* if we didn't recognize both chrm and trc, then maybe the ICC uses data + types not supported here yet, so fall back to not using it. */ + if(icc->inputspace == 2) { + /* RGB profile should have chromaticities */ + if(!icc->has_chromaticity) return 0; + } + /* An ICC profile without whitepoint is invalid for the kind of profiles used here. */ + if(!icc->has_whitepoint) return 0; + if(!icc->has_trc) return 0; + return 1; /* ok */ +} + +/* Returns chromaticity matrix for given ICC profile, adapted from ICC's +global illuminant as necessary. +Also returns the profile's whitepoint. +In case of a gray profile (icc->inputspace == 1), the identity matrix will be returned +so in that case you could skip the transform. */ +static unsigned getICCChrm(float m[9], float whitepoint[3], const LodePNGICC* icc) { + size_t i; + if(icc->inputspace == 2) { /* RGB profile */ + float red[3], green[3], blue[3]; + float white[3]; /* the whitepoint of the RGB color space (absolute) */ + /* Adaptation matrix a. + This is an adaptation needed for ICC's file format (due to it using + an internal global illuminant unrelated to the actual images) */ + float a[9] = {1,0,0, 0,1,0, 0,0,1}; + /* If the profile has chromatic adaptation matrix "chad", use that one, + else compute it from the illuminant and whitepoint. */ + if(icc->has_chad) { + for(i = 0; i < 9; i++) a[i] = icc->chad[i]; + invMatrix(a); + } else { + if(getAdaptationMatrix(a, 1, icc->illuminant[0], icc->illuminant[1], icc->illuminant[2], + icc->white[0], icc->white[1], icc->white[2])) { + return 1; /* error computing matrix */ + } + } + /* If the profile has a chad, then also the RGB's whitepoint must also be adapted from it (and the one + given is normally D50). If it did not have a chad, then the whitepoint given is already the adapted one. */ + if(icc->has_chad) { + mulMatrix(&white[0], &white[1], &white[2], a, icc->white[0], icc->white[1], icc->white[2]); + } else { + for(i = 0; i < 3; i++) white[i] = icc->white[i]; + } + + mulMatrix(&red[0], &red[1], &red[2], a, icc->red[0], icc->red[1], icc->red[2]); + mulMatrix(&green[0], &green[1], &green[2], a, icc->green[0], icc->green[1], icc->green[2]); + mulMatrix(&blue[0], &blue[1], &blue[2], a, icc->blue[0], icc->blue[1], icc->blue[2]); + + if(getChrmMatrixXYZ(m, white[0], white[1], white[2], red[0], red[1], red[2], + green[0], green[1], green[2], blue[0], blue[1], blue[2])) { + return 1; /* error computing matrix */ + } + /* output absolute whitepoint of the original RGB model */ + whitepoint[0] = white[0]; + whitepoint[1] = white[1]; + whitepoint[2] = white[2]; + } else { + /* output the unity matrix, for doing no transform */ + m[0] = m[4] = m[8] = 1; + m[1] = m[2] = m[3] = m[5] = m[6] = m[7] = 0; + /* grayscale, don't do anything. That means we are implicitely using equal energy whitepoint "E", indicate + this to the output. */ + whitepoint[0] = whitepoint[1] = whitepoint[2] = 1; + } + return 0; /* success */ +} + +/* Outputs whitepoint and matrix to go from the icc or info profile (depending on what was in the PNG) to XYZ, +without applying any (rendering intent related) whitepoint adaptation */ +static unsigned getChrm(float m[9], float whitepoint[3], unsigned use_icc, + const LodePNGICC* icc, const LodePNGInfo* info) { + size_t i; + if(use_icc) { + if(getICCChrm(m, whitepoint, icc)) return 1; /* error in the matrix computations */ + } else if(info->chrm_defined && !info->srgb_defined) { + float wx = info->chrm_white_x / 100000.0f, wy = info->chrm_white_y / 100000.0f; + float rx = info->chrm_red_x / 100000.0f, ry = info->chrm_red_y / 100000.0f; + float gx = info->chrm_green_x / 100000.0f, gy = info->chrm_green_y / 100000.0f; + float bx = info->chrm_blue_x / 100000.0f, by = info->chrm_blue_y / 100000.0f; + if(getChrmMatrixXY(m, wx, wy, rx, ry, gx, gy, bx, by)) return 1; /* returns if error */ + /* Output whitepoint, xyY to XYZ: */ + whitepoint[0] = wx / wy; + whitepoint[1] = 1; + whitepoint[2] = (1 - wx - wy) / wy; + } else { + /* the standard linear sRGB to XYZ matrix */ + static const float srgb[9] = { + 0.4124564f, 0.3575761f, 0.1804375f, + 0.2126729f, 0.7151522f, 0.0721750f, + 0.0193339f, 0.1191920f, 0.9503041f + }; + for(i = 0; i < 9; i++) m[i] = srgb[i]; + /* sRGB's whitepoint xyY "0.3127,0.3290,1" in XYZ: */ + whitepoint[0] = 0.9504559270516716f; + whitepoint[1] = 1; + whitepoint[2] = 1.0890577507598784f; + } + return 0; +} + +/* Returns whether the color chunks in info represent the default PNG sRGB, +which is when either no colorometry fields are present at all, or an srgb +field or chrm/gama field with default values are present. +ICC chunks representing sRGB are currently considered not the same. */ +static unsigned isSRGB(const LodePNGInfo* info) { + if(!info) return 1; /* the default is considered sRGB. */ + + /* TODO: support some ICC profiles that represent sRGB too. Tricky due to + possible slight deviations and many ways of representing its gamma function. */ + if(info->iccp_defined) return 0; + + if(info->srgb_defined) return 1; + + /* The gamma chunk is unable to represent sRGB's two-part gamma, so cannot + be sRGB, even if it's the default 45455. */ + if(info->gama_defined) return 0; + + if(info->chrm_defined) { + if(info->chrm_white_x != 31270 || info->chrm_white_y != 32900) return 0; + if(info->chrm_red_x != 64000 || info->chrm_red_y != 33000) return 0; + if(info->chrm_green_x != 30000 || info->chrm_green_y != 60000) return 0; + if(info->chrm_blue_x != 15000 || info->chrm_blue_y != 6000) return 0; + } + + return 1; +} + +/* Checks whether the RGB models are equal (chromaticities, ...). The raw byte +format is allowed to be different. Input pointers are allowed to be null, +they then represent the default PNG sRGB (same as having no color model +chunks at all or an srgb chunk in the PNG) */ +static unsigned modelsEqual(const LodePNGState* state_a, + const LodePNGState* state_b) { + size_t i; + const LodePNGInfo* a = state_a ? &state_a->info_png : 0; + const LodePNGInfo* b = state_b ? &state_b->info_png : 0; + if(isSRGB(a) != isSRGB(b)) return 0; + /* now a and b are guaranteed to be non-NULL */ + if(a->iccp_defined != b->iccp_defined) return 0; + if(a->iccp_defined) { + if(a->iccp_profile_size != b->iccp_profile_size) return 0; + /* TODO: return equal in more cases, such as when two ICC profiles that are + not byte-for-byte equal, but represent the same color model. */ + for(i = 0; i < a->iccp_profile_size; i++) { + if(a->iccp_profile[i] != b->iccp_profile[i]) return 0; + } + /* since the ICC model overrides gamma and chrm, those can be ignored. */ + /* TODO: this doesn't cover the case where the ICC profile is invalid */ + return 1; + } + + if(a->srgb_defined != b->srgb_defined) return 0; + if(a->srgb_defined) { + /* since the sRGB model overrides gamma and chrm, those can be ignored. + srgb_intent not checked since the conversion ignores it */ + return 1; + } + + if(a->gama_defined != b->gama_defined) return 0; + if(a->gama_defined) { + if(a->gama_gamma != b->gama_gamma) return 0; + } + + if(a->chrm_defined != b->chrm_defined) return 0; + if(a->chrm_defined) { + if(a->chrm_white_x != b->chrm_white_x) return 0; + if(a->chrm_white_y != b->chrm_white_y) return 0; + if(a->chrm_red_x != b->chrm_red_x) return 0; + if(a->chrm_red_y != b->chrm_red_y) return 0; + if(a->chrm_green_x != b->chrm_green_x) return 0; + if(a->chrm_green_y != b->chrm_green_y) return 0; + if(a->chrm_blue_x != b->chrm_blue_x) return 0; + if(a->chrm_blue_y != b->chrm_blue_y) return 0; + } + + return 1; +} + +/* Converts in-place. Does not clamp. Do not use for integer input, make table instead there. */ +static void convertToXYZ_gamma(float* out, const float* in, unsigned w, unsigned h, + const LodePNGInfo* info, unsigned use_icc, const LodePNGICC* icc) { + size_t i, c; + size_t n = w * h; + for(i = 0; i < n * 4; i++) { + out[i] = in[i]; + } + if(use_icc) { + for(i = 0; i < n; i++) { + for(c = 0; c < 3; c++) { + /* TODO: this is likely very slow */ + out[i * 4 + c] = iccForwardTRC(&icc->trc[c], in[i * 4 + c]); + } + } + } else if(info->gama_defined && !info->srgb_defined) { + /* nothing to do if gamma is 1 */ + if(info->gama_gamma != 100000) { + float gamma = 100000.0f / info->gama_gamma; + for(i = 0; i < n; i++) { + for(c = 0; c < 3; c++) { + float v = in[i * 4 + c]; + out[i * 4 + c] = (v <= 0) ? v : lodepng_powf(v, gamma); + } + } + } + } else { + for(i = 0; i < n; i++) { + for(c = 0; c < 3; c++) { + /* sRGB gamma expand */ + float v = in[i * 4 + c]; + out[i * 4 + c] = (v < 0.04045f) ? (v / 12.92f) : lodepng_powf((v + 0.055f) / 1.055f, 2.4f); + } + } + } +} + +/* Same as convertToXYZ_gamma, but creates a lookup table rather than operating on an image */ +static void convertToXYZ_gamma_table(float* out, size_t n, size_t c, + const LodePNGInfo* info, unsigned use_icc, const LodePNGICC* icc) { + size_t i; + float mul = 1.0f / (n - 1); + if(use_icc) { + for(i = 0; i < n; i++) { + float v = i * mul; + out[i] = iccForwardTRC(&icc->trc[c], v); + } + } else if(info->gama_defined && !info->srgb_defined) { + /* no power needed if gamma is 1 */ + if(info->gama_gamma == 100000) { + for(i = 0; i < n; i++) { + out[i] = i * mul; + } + } else { + float gamma = 100000.0f / info->gama_gamma; + for(i = 0; i < n; i++) { + float v = i * mul; + out[i] = lodepng_powf(v, gamma); + } + } + } else { + for(i = 0; i < n; i++) { + /* sRGB gamma expand */ + float v = i * mul; + out[i] = (v < 0.04045f) ? (v / 12.92f) : lodepng_powf((v + 0.055f) / 1.055f, 2.4f); + } + } +} + +/* In-place */ +static unsigned convertToXYZ_chrm(float* im, unsigned w, unsigned h, + const LodePNGInfo* info, unsigned use_icc, const LodePNGICC* icc, + float whitepoint[3]) { + unsigned error = 0; + size_t i; + size_t n = w * h; + float m[9]; /* XYZ to linear RGB matrix */ + + /* Must be called even for grayscale, to get the correct whitepoint to output */ + error = getChrm(m, whitepoint, use_icc, icc, info); + if(error) return error; + + /* Note: no whitepoint adaptation done to m here, because we only do the + adaptation in convertFromXYZ (we only whitepoint adapt when going to the + target RGB space, but here we're going from the source RGB space to XYZ) */ + + /* Apply the above computed linear-RGB-to-XYZ matrix to the pixels. + Skip the transform if it's the unit matrix (which is the case if grayscale profile) */ + if(!use_icc || icc->inputspace == 2) { + for(i = 0; i < n; i++) { + size_t j = i * 4; + mulMatrix(&im[j + 0], &im[j + 1], &im[j + 2], m, im[j + 0], im[j + 1], im[j + 2]); + } + } + + return 0; +} + +unsigned convertToXYZ(float* out, float whitepoint[3], const unsigned char* in, + unsigned w, unsigned h, const LodePNGState* state) { + unsigned error = 0; + size_t i; + size_t n = w * h; + const LodePNGColorMode* mode_in = &state->info_raw; + const LodePNGInfo* info = &state->info_png; + unsigned char* data = 0; + float* gammatable = 0; + int bit16 = mode_in->bitdepth > 8; + size_t num = bit16 ? 65536 : 256; + LodePNGColorMode tempmode = lodepng_color_mode_make(LCT_RGBA, bit16 ? 16 : 8); + + + unsigned use_icc = 0; + LodePNGICC icc; + lodepng_icc_init(&icc); + if(info->iccp_defined) { + error = parseICC(&icc, info->iccp_profile, info->iccp_profile_size); + if(error) goto cleanup; /* corrupted ICC profile */ + use_icc = validateICC(&icc); + } + + data = (unsigned char*)lodepng_malloc(w * h * (bit16 ? 8 : 4)); + error = lodepng_convert(data, in, &tempmode, mode_in, w, h); + if(error) goto cleanup; + + /* Handle transfer function */ + { + float* gammatable_r; + float* gammatable_g; + float* gammatable_b; + + /* RGB ICC, can have three different transfer functions */ + if(use_icc && icc.inputspace == 2) { + gammatable = (float*)lodepng_malloc(num * 3 * sizeof(float)); + gammatable_r = &gammatable[num * 0]; + gammatable_g = &gammatable[num * 1]; + gammatable_b = &gammatable[num * 2]; + convertToXYZ_gamma_table(gammatable_r, num, 0, info, use_icc, &icc); + convertToXYZ_gamma_table(gammatable_g, num, 1, info, use_icc, &icc); + convertToXYZ_gamma_table(gammatable_b, num, 2, info, use_icc, &icc); + } else { + gammatable = (float*)lodepng_malloc(num * sizeof(float)); + gammatable_r = gammatable_g = gammatable_b = gammatable; + convertToXYZ_gamma_table(gammatable, num, 0, info, use_icc, &icc); + } + + if(bit16) { + for(i = 0; i < n; i++) { + out[i * 4 + 0] = gammatable_r[data[i * 8 + 0] * 256u + data[i * 8 + 1]]; + out[i * 4 + 1] = gammatable_g[data[i * 8 + 2] * 256u + data[i * 8 + 3]]; + out[i * 4 + 2] = gammatable_b[data[i * 8 + 4] * 256u + data[i * 8 + 5]]; + out[i * 4 + 3] = (data[i * 8 + 6] * 256 + data[i * 8 + 7]) * (1 / 65535.0f); + } + } else { + for(i = 0; i < n; i++) { + out[i * 4 + 0] = gammatable_r[data[i * 4 + 0]]; + out[i * 4 + 1] = gammatable_g[data[i * 4 + 1]]; + out[i * 4 + 2] = gammatable_b[data[i * 4 + 2]]; + out[i * 4 + 3] = data[i * 4 + 3] * (1 / 255.0f); + } + } + } + + convertToXYZ_chrm(out, w, h, info, use_icc, &icc, whitepoint); + +cleanup: + lodepng_icc_cleanup(&icc); + lodepng_free(data); + lodepng_free(gammatable); + return error; +} + +unsigned convertToXYZFloat(float* out, float whitepoint[3], const float* in, + unsigned w, unsigned h, const LodePNGState* state) { + unsigned error = 0; + const LodePNGInfo* info = &state->info_png; + + unsigned use_icc = 0; + LodePNGICC icc; + lodepng_icc_init(&icc); + if(info->iccp_defined) { + error = parseICC(&icc, info->iccp_profile, info->iccp_profile_size); + if(error) goto cleanup; /* corrupted ICC profile */ + use_icc = validateICC(&icc); + } + /* Input is floating point, so lookup table cannot be used, but it's ensured to + use float pow, not the slower double pow. */ + convertToXYZ_gamma(out, in, w, h, info, use_icc, &icc); + convertToXYZ_chrm(out, w, h, info, use_icc, &icc, whitepoint); + +cleanup: + lodepng_icc_cleanup(&icc); + return error; +} + +static unsigned convertFromXYZ_chrm(float* out, const float* in, unsigned w, unsigned h, + const LodePNGInfo* info, unsigned use_icc, const LodePNGICC* icc, + const float whitepoint[3], unsigned rendering_intent) { + size_t i; + size_t n = w * h; + + float m[9]; /* XYZ to linear RGB matrix */ + float white[3]; /* The whitepoint (absolute) of the target RGB space */ + + if(getChrm(m, white, use_icc, icc, info)) return 1; + if(invMatrix(m)) return 1; /* error, not invertible */ + + /* for relative rendering intent (any except absolute "3"), must whitepoint adapt to the original whitepoint. + this also ensures grayscale stays grayscale (with absolute, grayscale could become e.g. blue or sepia) */ + if(rendering_intent != 3) { + float a[9] = {1,0,0, 0,1,0, 0,0,1}; + /* "white" = absolute whitepoint of the new target RGB space, read from the target color profile. + "whitepoint" is original absolute whitepoint (input as parameter of this function) of an + RGB space the XYZ data once had before it was converted to XYZ, in other words the whitepoint that + we want to adapt our current data to to make sure values that had equal R==G==B in the old space have + the same property now (white stays white and gray stays gray). + Note: "absolute" whitepoint above means, can be used as-is, not needing further adaptation itself like icc.white does.*/ + if(getAdaptationMatrix(a, 1, whitepoint[0], whitepoint[1], whitepoint[2], white[0], white[1], white[2])) { + return 1; + } + /* multiply the from xyz matrix with the adaptation matrix: in total, + the resulting matrix first adapts in XYZ space, then converts to RGB*/ + mulMatrixMatrix(m, m, a); + } + + /* Apply the above computed XYZ-to-linear-RGB matrix to the pixels. + This transformation also includes the whitepoint adaptation. The transform + can be skipped only if it's the unit matrix (only if grayscale profile and no + whitepoint adaptation, such as with rendering intent 3)*/ + if(!use_icc || icc->inputspace == 2 || rendering_intent != 3) { + for(i = 0; i < n; i++) { + size_t j = i * 4; + mulMatrix(&out[j + 0], &out[j + 1], &out[j + 2], m, in[j + 0], in[j + 1], in[j + 2]); + out[j + 3] = in[j + 3]; + } + } else { + for(i = 0; i < n * 4; i++) { + out[i] = in[i]; + } + } + + return 0; +} + +/* Converts in-place. Does not clamp. */ +static void convertFromXYZ_gamma(float* im, unsigned w, unsigned h, + const LodePNGInfo* info, unsigned use_icc, const LodePNGICC* icc) { + size_t i, c; + size_t n = w * h; + if(use_icc) { + for(i = 0; i < n; i++) { + for(c = 0; c < 3; c++) { + /* TODO: this is likely very slow */ + im[i * 4 + c] = iccBackwardTRC(&icc->trc[c], im[i * 4 + c]); + } + } + } else if(info->gama_defined && !info->srgb_defined) { + /* nothing to do if gamma is 1 */ + if(info->gama_gamma != 100000) { + float gamma = info->gama_gamma / 100000.0f; + for(i = 0; i < n; i++) { + for(c = 0; c < 3; c++) { + if(im[i * 4 + c] > 0) im[i * 4 + c] = lodepng_powf(im[i * 4 + c], gamma); + } + } + } + } else { + for(i = 0; i < n; i++) { + for(c = 0; c < 3; c++) { + /* sRGB gamma compress */ + float* v = &im[i * 4 + c]; + *v = (*v < 0.0031308f) ? (*v * 12.92f) : (1.055f * lodepng_powf(*v, 1 / 2.4f) - 0.055f); + } + } + } +} + +unsigned convertFromXYZ(unsigned char* out, const float* in, unsigned w, unsigned h, + const LodePNGState* state, + const float whitepoint[3], unsigned rendering_intent) { + unsigned error = 0; + size_t i, c; + size_t n = w * h; + const LodePNGColorMode* mode_out = &state->info_raw; + const LodePNGInfo* info = &state->info_png; + int bit16 = mode_out->bitdepth > 8; + float* im = 0; + unsigned char* data = 0; + + /* parse ICC if present */ + unsigned use_icc = 0; + LodePNGICC icc; + lodepng_icc_init(&icc); + if(info->iccp_defined) { + error = parseICC(&icc, info->iccp_profile, info->iccp_profile_size); + if(error) goto cleanup; /* corrupted ICC profile */ + use_icc = validateICC(&icc); + } + + /* Handle gamut */ + im = (float*)lodepng_malloc(w * h * 4 * sizeof(float)); + error = convertFromXYZ_chrm(im, in, w, h, info, use_icc, &icc, whitepoint, rendering_intent); + if(error) goto cleanup; + + /* Handle transfer function */ + /* Input is floating point, so lookup table cannot be used, but it's ensured to use float pow, not the slower double pow. */ + convertFromXYZ_gamma(im, w, h, info, use_icc, &icc); + + /* Convert to integer output */ + data = (unsigned char*)lodepng_malloc(w * h * 8); + /* TODO: check if also 1/2/4 bit case needed: rounding is at different fine-grainedness for 8 and 16 bits below. */ + if(bit16) { + LodePNGColorMode mode16 = lodepng_color_mode_make(LCT_RGBA, 16); + for(i = 0; i < n; i++) { + for(c = 0; c < 4; c++) { + size_t j = i * 8 + c * 2; + int i16 = (int)(0.5f + 65535.0f * LODEPNG_MIN(LODEPNG_MAX(0.0f, im[i * 4 + c]), 1.0f)); + data[j + 0] = (unsigned char)(i16 >> 8); + data[j + 1] = (unsigned char)(i16 & 255); + } + } + error = lodepng_convert(out, data, mode_out, &mode16, w, h); + if(error) goto cleanup; + } else { + LodePNGColorMode mode8 = lodepng_color_mode_make(LCT_RGBA, 8); + for(i = 0; i < n; i++) { + for(c = 0; c < 4; c++) { + data[i * 4 + c] = (unsigned char)(0.5f + 255.0f * LODEPNG_MIN(LODEPNG_MAX(0.0f, im[i * 4 + c]), 1.0f)); + } + } + error = lodepng_convert(out, data, mode_out, &mode8, w, h); + if(error) goto cleanup; + } + +cleanup: + lodepng_icc_cleanup(&icc); + lodepng_free(im); + lodepng_free(data); + return error; +} + +unsigned convertFromXYZFloat(float* out, const float* in, unsigned w, unsigned h, + const LodePNGState* state, + const float whitepoint[3], unsigned rendering_intent) { + unsigned error = 0; + const LodePNGInfo* info = &state->info_png; + + /* parse ICC if present */ + unsigned use_icc = 0; + LodePNGICC icc; + lodepng_icc_init(&icc); + if(info->iccp_defined) { + error = parseICC(&icc, info->iccp_profile, info->iccp_profile_size); + if(error) goto cleanup; /* corrupted ICC profile */ + use_icc = validateICC(&icc); + } + + /* Handle gamut */ + error = convertFromXYZ_chrm(out, in, w, h, info, use_icc, &icc, whitepoint, rendering_intent); + if(error) goto cleanup; + + /* Handle transfer function */ + convertFromXYZ_gamma(out, w, h, info, use_icc, &icc); + +cleanup: + lodepng_icc_cleanup(&icc); + return error; +} + +unsigned convertRGBModel(unsigned char* out, const unsigned char* in, + unsigned w, unsigned h, + const LodePNGState* state_out, + const LodePNGState* state_in, + unsigned rendering_intent) { + if(modelsEqual(state_in, state_out)) { + return lodepng_convert(out, in, &state_out->info_raw, &state_in->info_raw, w, h); + } else { + unsigned error = 0; + float* xyz = (float*)lodepng_malloc(w * h * 4 * sizeof(float)); + float whitepoint[3]; + error = convertToXYZ(xyz, whitepoint, in, w, h, state_in); + if (!error) error = convertFromXYZ(out, xyz, w, h, state_out, whitepoint, rendering_intent); + lodepng_free(xyz); + return error; + } +} + +unsigned convertToSrgb(unsigned char* out, const unsigned char* in, + unsigned w, unsigned h, + const LodePNGState* state_in) { + LodePNGState srgb; + lodepng_state_init(&srgb); + lodepng_color_mode_copy(&srgb.info_raw, &state_in->info_raw); + return convertRGBModel(out, in, w, h, &srgb, state_in, 1); +} + +unsigned convertFromSrgb(unsigned char* out, const unsigned char* in, + unsigned w, unsigned h, + const LodePNGState* state_out) { + LodePNGState srgb; + lodepng_state_init(&srgb); + lodepng_color_mode_copy(&srgb.info_raw, &state_out->info_raw); + return convertRGBModel(out, in, w, h, state_out, &srgb, 1); +} + +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + +//////////////////////////////////////////////////////////////////////////////// + + + +//This uses a stripped down version of picoPNG to extract detailed zlib information while decompressing. +static const unsigned long LENBASE[29] = {3,4,5,6,7,8,9,10,11,13,15,17,19,23,27,31,35,43,51,59,67,83,99,115,131,163,195,227,258}; +static const unsigned long LENEXTRA[29] = {0,0,0,0,0,0,0, 0, 1, 1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3, 4, 4, 4, 4, 5, 5, 5, 5, 0}; +static const unsigned long DISTBASE[30] = {1,2,3,4,5,7,9,13,17,25,33,49,65,97,129,193,257,385,513,769,1025,1537,2049,3073,4097,6145,8193,12289,16385,24577}; +static const unsigned long DISTEXTRA[30] = {0,0,0,0,1,1,2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8, 8, 9, 9, 10, 10, 11, 11, 12, 12, 13, 13}; +static const unsigned long CLCL[19] = {16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15}; //code length code lengths + +struct ExtractZlib { // Zlib decompression and information extraction + std::vector* zlibinfo; + ExtractZlib(std::vector* info) : zlibinfo(info) {}; + int error; + + unsigned long readBitFromStream(size_t& bitp, const unsigned char* bits) { + unsigned long result = (bits[bitp >> 3] >> (bitp & 0x7)) & 1; + bitp++; + return result; + } + + unsigned long readBitsFromStream(size_t& bitp, const unsigned char* bits, size_t nbits) { + unsigned long result = 0; + for(size_t i = 0; i < nbits; i++) result += (readBitFromStream(bitp, bits)) << i; + return result; + } + + struct HuffmanTree { + int makeFromLengths(const std::vector& bitlen, unsigned long maxbitlen) { //make tree given the lengths + unsigned long numcodes = (unsigned long)(bitlen.size()), treepos = 0, nodefilled = 0; + std::vector tree1d(numcodes), blcount(maxbitlen + 1, 0), nextcode(maxbitlen + 1, 0); + //count number of instances of each code length + for(unsigned long bits = 0; bits < numcodes; bits++) blcount[bitlen[bits]]++; + for(unsigned long bits = 1; bits <= maxbitlen; bits++) { + nextcode[bits] = (nextcode[bits - 1] + blcount[bits - 1]) << 1; + } + //generate all the codes + for(unsigned long n = 0; n < numcodes; n++) if(bitlen[n] != 0) tree1d[n] = nextcode[bitlen[n]]++; + tree2d.clear(); tree2d.resize(numcodes * 2, 32767); //32767 here means the tree2d isn't filled there yet + for(unsigned long n = 0; n < numcodes; n++) //the codes + for(unsigned long i = 0; i < bitlen[n]; i++) { //the bits for this code + unsigned long bit = (tree1d[n] >> (bitlen[n] - i - 1)) & 1; + if(treepos > numcodes - 2) return 55; + if(tree2d[2 * treepos + bit] == 32767) { //not yet filled in + if(i + 1 == bitlen[n]) { + //last bit + tree2d[2 * treepos + bit] = n; + treepos = 0; + } else { + //addresses are encoded as values > numcodes + tree2d[2 * treepos + bit] = ++nodefilled + numcodes; + treepos = nodefilled; + } + } + else treepos = tree2d[2 * treepos + bit] - numcodes; //subtract numcodes from address to get address value + } + return 0; + } + int decode(bool& decoded, unsigned long& result, size_t& treepos, unsigned long bit) const { //Decodes a symbol from the tree + unsigned long numcodes = (unsigned long)tree2d.size() / 2; + if(treepos >= numcodes) return 11; //error: you appeared outside the codetree + result = tree2d[2 * treepos + bit]; + decoded = (result < numcodes); + treepos = decoded ? 0 : result - numcodes; + return 0; + } + //2D representation of a huffman tree: one dimension is "0" or "1", the other contains all nodes and leaves. + std::vector tree2d; + }; + + void inflate(std::vector& out, const std::vector& in, size_t inpos = 0) { + size_t bp = 0, pos = 0; //bit pointer and byte pointer + error = 0; + unsigned long BFINAL = 0; + while(!BFINAL && !error) { + size_t uncomprblockstart = pos; + size_t bpstart = bp; + if(bp >> 3 >= in.size()) { error = 52; return; } //error, bit pointer will jump past memory + BFINAL = readBitFromStream(bp, &in[inpos]); + unsigned long BTYPE = readBitFromStream(bp, &in[inpos]); BTYPE += 2 * readBitFromStream(bp, &in[inpos]); + zlibinfo->resize(zlibinfo->size() + 1); + zlibinfo->back().btype = BTYPE; + if(BTYPE == 3) { error = 20; return; } //error: invalid BTYPE + else if(BTYPE == 0) inflateNoCompression(out, &in[inpos], bp, pos, in.size()); + else inflateHuffmanBlock(out, &in[inpos], bp, pos, in.size(), BTYPE); + size_t uncomprblocksize = pos - uncomprblockstart; + zlibinfo->back().compressedbits = bp - bpstart; + zlibinfo->back().uncompressedbytes = uncomprblocksize; + } + } + + void generateFixedTrees(HuffmanTree& tree, HuffmanTree& treeD) { //get the tree of a deflated block with fixed tree + std::vector bitlen(288, 8), bitlenD(32, 5);; + for(size_t i = 144; i <= 255; i++) bitlen[i] = 9; + for(size_t i = 256; i <= 279; i++) bitlen[i] = 7; + tree.makeFromLengths(bitlen, 15); + treeD.makeFromLengths(bitlenD, 15); + } + + //the code tree for Huffman codes, dist codes, and code length codes + HuffmanTree codetree, codetreeD, codelengthcodetree; + unsigned long huffmanDecodeSymbol(const unsigned char* in, size_t& bp, const HuffmanTree& tree, size_t inlength) { + //decode a single symbol from given list of bits with given code tree. return value is the symbol + bool decoded; unsigned long ct; + for(size_t treepos = 0;;) { + if((bp & 0x07) == 0 && (bp >> 3) > inlength) { error = 10; return 0; } //error: end reached without endcode + error = tree.decode(decoded, ct, treepos, readBitFromStream(bp, in)); + if(error) return 0; //stop, an error happened + if(decoded) return ct; + } + } + + void getTreeInflateDynamic(HuffmanTree& tree, HuffmanTree& treeD, + const unsigned char* in, size_t& bp, size_t inlength) { + size_t bpstart = bp; + //get the tree of a deflated block with dynamic tree, the tree itself is also Huffman compressed with a known tree + std::vector bitlen(288, 0), bitlenD(32, 0); + if(bp >> 3 >= inlength - 2) { error = 49; return; } //the bit pointer is or will go past the memory + size_t HLIT = readBitsFromStream(bp, in, 5) + 257; //number of literal/length codes + 257 + size_t HDIST = readBitsFromStream(bp, in, 5) + 1; //number of dist codes + 1 + size_t HCLEN = readBitsFromStream(bp, in, 4) + 4; //number of code length codes + 4 + zlibinfo->back().hlit = HLIT - 257; + zlibinfo->back().hdist = HDIST - 1; + zlibinfo->back().hclen = HCLEN - 4; + std::vector codelengthcode(19); //lengths of tree to decode the lengths of the dynamic tree + for(size_t i = 0; i < 19; i++) codelengthcode[CLCL[i]] = (i < HCLEN) ? readBitsFromStream(bp, in, 3) : 0; + //code length code lengths + for(size_t i = 0; i < codelengthcode.size(); i++) zlibinfo->back().clcl.push_back(codelengthcode[i]); + error = codelengthcodetree.makeFromLengths(codelengthcode, 7); if(error) return; + size_t i = 0, replength; + while(i < HLIT + HDIST) { + unsigned long code = huffmanDecodeSymbol(in, bp, codelengthcodetree, inlength); if(error) return; + zlibinfo->back().treecodes.push_back(code); //tree symbol code + if(code <= 15) { if(i < HLIT) bitlen[i++] = code; else bitlenD[i++ - HLIT] = code; } //a length code + else if(code == 16) { //repeat previous + if(bp >> 3 >= inlength) { error = 50; return; } //error, bit pointer jumps past memory + replength = 3 + readBitsFromStream(bp, in, 2); + unsigned long value; //set value to the previous code + if((i - 1) < HLIT) value = bitlen[i - 1]; + else value = bitlenD[i - HLIT - 1]; + for(size_t n = 0; n < replength; n++) { //repeat this value in the next lengths + if(i >= HLIT + HDIST) { error = 13; return; } //error: i is larger than the amount of codes + if(i < HLIT) bitlen[i++] = value; else bitlenD[i++ - HLIT] = value; + } + } else if(code == 17) { //repeat "0" 3-10 times + if(bp >> 3 >= inlength) { error = 50; return; } //error, bit pointer jumps past memory + replength = 3 + readBitsFromStream(bp, in, 3); + zlibinfo->back().treecodes.push_back(replength); //tree symbol code repetitions + for(size_t n = 0; n < replength; n++) { //repeat this value in the next lengths + if(i >= HLIT + HDIST) { error = 14; return; } //error: i is larger than the amount of codes + if(i < HLIT) bitlen[i++] = 0; else bitlenD[i++ - HLIT] = 0; + } + } else if(code == 18) { //repeat "0" 11-138 times + if(bp >> 3 >= inlength) { error = 50; return; } //error, bit pointer jumps past memory + replength = 11 + readBitsFromStream(bp, in, 7); + zlibinfo->back().treecodes.push_back(replength); //tree symbol code repetitions + for(size_t n = 0; n < replength; n++) { //repeat this value in the next lengths + if(i >= HLIT + HDIST) { error = 15; return; } //error: i is larger than the amount of codes + if(i < HLIT) bitlen[i++] = 0; else bitlenD[i++ - HLIT] = 0; + } + } + else { error = 16; return; } //error: somehow an unexisting code appeared. This can never happen. + } + if(bitlen[256] == 0) { error = 64; return; } //the length of the end code 256 must be larger than 0 + error = tree.makeFromLengths(bitlen, 15); + if(error) return; //now we've finally got HLIT and HDIST, so generate the code trees, and the function is done + error = treeD.makeFromLengths(bitlenD, 15); + if(error) return; + zlibinfo->back().treebits = bp - bpstart; + //lit/len/end symbol lengths + for(size_t j = 0; j < bitlen.size(); j++) zlibinfo->back().litlenlengths.push_back(bitlen[j]); + //dist lengths + for(size_t j = 0; j < bitlenD.size(); j++) zlibinfo->back().distlengths.push_back(bitlenD[j]); + } + + void inflateHuffmanBlock(std::vector& out, + const unsigned char* in, size_t& bp, size_t& pos, size_t inlength, unsigned long btype) { + size_t numcodes = 0, numlit = 0, numlen = 0; //for logging + if(btype == 1) { generateFixedTrees(codetree, codetreeD); } + else if(btype == 2) { getTreeInflateDynamic(codetree, codetreeD, in, bp, inlength); if(error) return; } + for(;;) { + unsigned long code = huffmanDecodeSymbol(in, bp, codetree, inlength); if(error) return; + numcodes++; + zlibinfo->back().lz77_lcode.push_back(code); //output code + zlibinfo->back().lz77_dcode.push_back(0); + zlibinfo->back().lz77_lbits.push_back(0); + zlibinfo->back().lz77_dbits.push_back(0); + zlibinfo->back().lz77_lvalue.push_back(0); + zlibinfo->back().lz77_dvalue.push_back(0); + + if(code == 256) { + break; //end code + } else if(code <= 255) { //literal symbol + out.push_back((unsigned char)(code)); + pos++; + numlit++; + } else if(code >= 257 && code <= 285) { //length code + size_t length = LENBASE[code - 257], numextrabits = LENEXTRA[code - 257]; + if((bp >> 3) >= inlength) { error = 51; return; } //error, bit pointer will jump past memory + length += readBitsFromStream(bp, in, numextrabits); + unsigned long codeD = huffmanDecodeSymbol(in, bp, codetreeD, inlength); if(error) return; + if(codeD > 29) { error = 18; return; } //error: invalid dist code (30-31 are never used) + unsigned long dist = DISTBASE[codeD], numextrabitsD = DISTEXTRA[codeD]; + if((bp >> 3) >= inlength) { error = 51; return; } //error, bit pointer will jump past memory + dist += readBitsFromStream(bp, in, numextrabitsD); + size_t start = pos, back = start - dist; //backwards + for(size_t i = 0; i < length; i++) { + out.push_back(out[back++]); + pos++; + if(back >= start) back = start - dist; + } + numlen++; + zlibinfo->back().lz77_dcode.back() = codeD; //output distance code + zlibinfo->back().lz77_lbits.back() = numextrabits; //output length extra bits + zlibinfo->back().lz77_dbits.back() = numextrabitsD; //output dist extra bits + zlibinfo->back().lz77_lvalue.back() = length; //output length + zlibinfo->back().lz77_dvalue.back() = dist; //output dist + } + } + zlibinfo->back().numlit = numlit; //output number of literal symbols + zlibinfo->back().numlen = numlen; //output number of length symbols + } + + void inflateNoCompression(std::vector& out, + const unsigned char* in, size_t& bp, size_t& pos, size_t inlength) { + while((bp & 0x7) != 0) bp++; //go to first boundary of byte + size_t p = bp / 8; + if(p >= inlength - 4) { error = 52; return; } //error, bit pointer will jump past memory + unsigned long LEN = in[p] + 256u * in[p + 1], NLEN = in[p + 2] + 256u * in[p + 3]; p += 4; + if(LEN + NLEN != 65535) { error = 21; return; } //error: NLEN is not one's complement of LEN + if(p + LEN > inlength) { error = 23; return; } //error: reading outside of in buffer + for(unsigned long n = 0; n < LEN; n++) { + out.push_back(in[p++]); //read LEN bytes of literal data + pos++; + } + bp = p * 8; + } + + int decompress(std::vector& out, const std::vector& in) { //returns error value + if(in.size() < 2) { return 53; } //error, size of zlib data too small + //error: 256 * in[0] + in[1] must be a multiple of 31, the FCHECK value is supposed to be made that way + if((in[0] * 256 + in[1]) % 31 != 0) { return 24; } + unsigned long CM = in[0] & 15, CINFO = (in[0] >> 4) & 15, FDICT = (in[1] >> 5) & 1; + //error: only compression method 8: inflate with sliding window of 32k is supported by the PNG spec + if(CM != 8 || CINFO > 7) { return 25; } + //error: the PNG spec says about the zlib stream: "The additional flags shall not specify a preset dictionary." + if(FDICT != 0) { return 26; } + inflate(out, in, 2); + return error; //note: adler32 checksum was skipped and ignored + } +}; + +struct ExtractPNG { //PNG decoding and information extraction + std::vector* zlibinfo; + ExtractPNG(std::vector* info) : zlibinfo(info) {}; + int error; + void decode(const unsigned char* in, size_t size) { + error = 0; + if(size == 0 || in == 0) { error = 48; return; } //the given data is empty + readPngHeader(in, size); if(error) return; + size_t pos = 33; //first byte of the first chunk after the header + std::vector idat; //the data from idat chunks + bool IEND = false; + //loop through the chunks, ignoring unknown chunks and stopping at IEND chunk. + //IDAT data is put at the start of the in buffer + while(!IEND) { + //error: size of the in buffer too small to contain next chunk + if(pos + 8 >= size) { error = 30; return; } + size_t chunkLength = read32bitInt(&in[pos]); pos += 4; + if(chunkLength > 2147483647) { error = 63; return; } + //error: size of the in buffer too small to contain next chunk + if(pos + chunkLength >= size) { error = 35; return; } + //IDAT chunk, containing compressed image data + if(in[pos + 0] == 'I' && in[pos + 1] == 'D' && in[pos + 2] == 'A' && in[pos + 3] == 'T') { + idat.insert(idat.end(), &in[pos + 4], &in[pos + 4 + chunkLength]); + pos += (4 + chunkLength); + } else if(in[pos + 0] == 'I' && in[pos + 1] == 'E' && in[pos + 2] == 'N' && in[pos + 3] == 'D') { + pos += 4; + IEND = true; + } else { //it's not an implemented chunk type, so ignore it: skip over the data + pos += (chunkLength + 4); //skip 4 letters and uninterpreted data of unimplemented chunk + } + pos += 4; //step over CRC (which is ignored) + } + std::vector out; //now the out buffer will be filled + ExtractZlib zlib(zlibinfo); //decompress with the Zlib decompressor + error = zlib.decompress(out, idat); + if(error) return; //stop if the zlib decompressor returned an error + } + + //read the information from the header and store it in the Info + void readPngHeader(const unsigned char* in, size_t inlength) { + if(inlength < 29) { error = 27; return; } //error: the data length is smaller than the length of the header + if(in[0] != 137 || in[1] != 80 || in[2] != 78 || in[3] != 71 + || in[4] != 13 || in[5] != 10 || in[6] != 26 || in[7] != 10) { error = 28; return; } //no PNG signature + //error: it doesn't start with a IHDR chunk! + if(in[12] != 'I' || in[13] != 'H' || in[14] != 'D' || in[15] != 'R') { error = 29; return; } + } + + unsigned long readBitFromReversedStream(size_t& bitp, const unsigned char* bits) { + unsigned long result = (bits[bitp >> 3] >> (7 - (bitp & 0x7))) & 1; + bitp++; + return result; + } + + unsigned long readBitsFromReversedStream(size_t& bitp, const unsigned char* bits, unsigned long nbits) { + unsigned long result = 0; + for(size_t i = nbits - 1; i < nbits; i--) result += ((readBitFromReversedStream(bitp, bits)) << i); + return result; + } + + void setBitOfReversedStream(size_t& bitp, unsigned char* bits, unsigned long bit) { + bits[bitp >> 3] |= (bit << (7 - (bitp & 0x7))); bitp++; + } + + unsigned long read32bitInt(const unsigned char* buffer) { + return (unsigned int)((buffer[0] << 24u) | (buffer[1] << 16u) | (buffer[2] << 8u) | buffer[3]); + } +}; + +unsigned extractZlibInfo(std::vector& zlibinfo, const std::vector& in) { + ExtractPNG decoder(&zlibinfo); + decoder.decode(in.empty() ? NULL : &in[0], in.size()); + + return decoder.error ? 1 : 0; +} + +} // namespace lodepng +#endif diff --git a/Marlin/lib/LodePNG/lodepng_util.h b/Marlin/lib/LodePNG/lodepng_util.h new file mode 100644 index 0000000000..13b9e9df4b --- /dev/null +++ b/Marlin/lib/LodePNG/lodepng_util.h @@ -0,0 +1,291 @@ +/* +LodePNG Utils + +Copyright (c) 2005-2022 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +/* +Extra C++ utilities for LodePNG, for convenience. +Not part of the stable API of lodepng, more loose separate utils. +*/ + +#ifndef LODEPNG_UTIL_H +#define LODEPNG_UTIL_H + +#include +#include +#include "lodepng.h" + +namespace lodepng { + +/* +Returns info from the header of the PNG by value, purely for convenience. +Does NOT check for errors. Returns bogus info if the PNG has an error. +Does not require cleanup of allocated memory because no palette or text chunk +info is in the LodePNGInfo object after checking only the header of the PNG. +*/ +LodePNGInfo getPNGHeaderInfo(const std::vector& png); + +/* +Get the names and sizes of all chunks in the PNG file. +Returns 0 if ok, non-0 if error happened. +*/ +unsigned getChunkInfo(std::vector& names, std::vector& sizes, + const std::vector& png); + +/* +Returns the names and full chunks (including the name and everything else that +makes up the chunk) for all chunks except IHDR, PLTE, IDAT and IEND. +It separates the chunks into 3 separate lists, representing the chunks between +certain critical chunks: 0: IHDR-PLTE, 1: PLTE-IDAT, 2: IDAT-IEND +Returns 0 if ok, non-0 if error happened. +*/ +unsigned getChunks(std::vector names[3], + std::vector > chunks[3], + const std::vector& png); + +/* +Inserts chunks into the given png file. The chunks must be fully encoded, +including length, type, content and CRC. +The array index determines where it goes: +0: between IHDR and PLTE, 1: between PLTE and IDAT, 2: between IDAT and IEND. +They're appended at the end of those locations within the PNG. +Returns 0 if ok, non-0 if error happened. +*/ +unsigned insertChunks(std::vector& png, + const std::vector > chunks[3]); + +/* +Get the filtertypes of each scanline in this PNG file. +Returns 0 if ok, 1 if PNG decoding error happened. + +For a non-interlaced PNG, it returns one filtertype per scanline, in order. + +For interlaced PNGs, it returns a result as if it's not interlaced. It returns +one filtertype per scanline, in order. The values match pass 6 and 7 of the +Adam7 interlacing, alternating between the two, so that the values correspond +the most to their scanlines. +*/ +unsigned getFilterTypes(std::vector& filterTypes, const std::vector& png); + +/* +Get the filtertypes of each scanline in every interlace pass this PNG file. +Returns 0 if ok, 1 if PNG decoding error happened. + +For a non-interlaced PNG, it returns one filtertype per scanline, in order, in +a single std::vector in filterTypes. + +For an interlaced PNG, it returns 7 std::vectors in filterTypes, one for each +Adam7 pass. The amount of values per pass can be calculated as follows, where +w and h are the size of the image and all divisions are integer divisions: +pass 1: (h + 7) / 8 +pass 2: w <= 4 ? 0 : (h + 7) / 8 +pass 3: h <= 4 ? 0 : (h + 7) / 8 +pass 4: w <= 2 ? 0 : (h + 3) / 4 +pass 5: h <= 2 ? 0 : (h + 3) / 4 +pass 6: w <= 1 ? 0 : (h + 1) / 2 +pass 7: h <= 1 ? 0 : (h + 1) / 2 +*/ +unsigned getFilterTypesInterlaced(std::vector >& filterTypes, + const std::vector& png); + +/* +Returns the value of the i-th pixel in an image with 1, 2, 4 or 8-bit color. +E.g. if bits is 4 and i is 5, it returns the 5th nibble (4-bit group), which +is the second half of the 3th byte, in big endian (PNG's endian order). +*/ +int getPaletteValue(const unsigned char* data, size_t i, int bits); + +#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS + +/* Similar to convertRGBModel, but the 'to' model is sRGB. The pixel format +of in and out must be the same and is given by state_in->info_raw. An +error may occur if the pixel format cannot contain the new colors (e.g. palette) */ +unsigned convertToSrgb(unsigned char* out, const unsigned char* in, + unsigned w, unsigned h, + const LodePNGState* state_in); + +/* Similar to convertRGBModel, but the 'from' model is sRGB. The pixel format +of in and out must be the same and is given by state_out->info_raw. An +error may occur if the pixel format cannot contain the new colors (e.g. palette) */ +unsigned convertFromSrgb(unsigned char* out, const unsigned char* in, + unsigned w, unsigned h, + const LodePNGState* state_out); + +/* +Converts from one RGB model to another RGB model. +Similar to calling convertToXYZ followed by convertFromXYZ, but may be +more efficient and more precise (e.g. no computation needed when both models +are the same). See their documentation for more info. + +Parameters: + +*) out: output pixel data +*) in: input pixel data +*) w, h: image size +*) state_out: output RGB color model in state_out->info_png and byte format in state_out->info_raw. +*) state_in: output RGB color model in state_in->info_png and byte format in state_in->info_raw +*) return value: 0 if ok, positive value if error +*) rendering_intent: 1 for relative, 3 for absolute, should be relative for standard behavior. + See description at convertFromXYZ. +*/ +unsigned convertRGBModel(unsigned char* out, const unsigned char* in, + unsigned w, unsigned h, + const LodePNGState* state_out, + const LodePNGState* state_in, + unsigned rendering_intent); + +/* +Converts the RGB color to the absolute XYZ color space given the RGB color profile +chunks in the PNG info. + +Color space here refers to the different possible RGB spaces with different +possible chromaticities or whitepoint and XYZ color from colorimetry, not the +LodePNGColorType that describes the byte based encoding. + +You need this function only if the PNG could contain data in an arbitrary RGB +color space and you wish to output to a display or format that does not provide +color management for you (so you need to convert rather than pass on the profile +to it) but expects a certain RGB format (e.g. sRGB). See the background info below. + +Supports the gAMA, cHRM, sRGB and iCCP colorimetry chunks. If no colometry chunks are present +(that is, in state->info_png, the fields gama_defined, chrm_defined, srgb_defined and +iccp_defined are all 0), it assumes the format is sRGB. +For more information, see the chunk specifications in the PNG specification. + +Some background: + +A PNG image contains RGB data inside, but this data may use a specific RGB model (by default sRGB but +different if colorimetry chunks are given). +The computer display and/or operating system can have another RGB model (typically sRGB, or wider gamut +or HDR formats). + +The PNG chunks describe what format the data inside has, not the format of the display. To correctly +display a PNG image on a display, a conversion is needed from the PNG model to the display model if their +models differ. Some options to achieve that are: +*) If your use case already supports color management on its own, you can give it the RGB values straight from + the PNG image and give it the information from the cHRM, gAMA, sRGB and iCCP chunks (which you can find + in the LodePNGInfo), and the color management should then handle it correctly for you. You don't need + this function here in that case. +*) If your use case does not support color management, you may instead want to give it the RGB values in a + consistent color model, such as sRGB, but the PNG does not necessarily have it in this desired model. + In that case, use the function below (or a similar one from a CMS library if you prefer) to convert it to + the absolute color space XYZ, and then you can convert it to the target RGB with the counterpart convertFromXYZ + further below. + +Parameters: + +*) out: 4 floats per pixel, X,Y,Z,alpha color format, in range 0-1 (normally, not clipped if beyond), must + be allocated to have 4 * w * h floats available. +*) whitepoint: output argument, the whitepoint the original RGB data used, given in absolute XYZ. Needed for + relative rendering intents: give these values to counterpart function convertFromXYZ. +*) in: input RGB color, in byte format given by state->info_raw and RGB color profile given by info->info_png +*) w, h: image size +*) state (when using a LodePNG decode function that takes a LodePNGState parameter, can directly use that one): + state->info_png: PNG info with possibly an RGB color model in cHRM,gAMA and/or sRGB chunks + state->info_raw: byte format of in (amount of channels, bit depth) +*) return value: 0 if ok, positive value if error +*/ +unsigned convertToXYZ(float* out, float whitepoint[3], + const unsigned char* in, unsigned w, unsigned h, + const LodePNGState* state); + +/* +Same as convertToXYZ but takes floating point input. Slower. +The main black..white range in 0..1. Does not clip values that are outside that range. +*/ +unsigned convertToXYZFloat(float* out, float whitepoint[3], const float* in, + unsigned w, unsigned h, const LodePNGState* state); + +/* +Converts XYZ to RGB in the RGB color model given by info and byte format by mode_out. +If info has no coloremtry chunks, converts to sRGB. +Parameters: +*) out: output color in byte format given by state->info_raw and RGB color profile given + by info->info_png. Must have enough bytes allocated to contain pixels in the given byte format. +*) in: 4 floats per pixel, X,Y,Z,alpha color format, in range 0-1 (normally). +*) whitepoint: input argument, the original whitepoint in absolute XYZ that the pixel data + in "in" had back when it was in a previous RGB space. Needed to preserve the whitepoint + in the new target RGB space for relative rendering intent. +*) rendering_intent: the desired rendering intent, with numeric meaning matching the + values used by ICC: 0=perceptual, 1=relative, 2=saturation, 3=absolute. + Should be 1 for normal use cases, it adapts white to match that of different RGB + models which is the best practice. Using 3 may change the color of white and may + turn grayscale into colors of a certain tone. Using 0 and 2 will have the same + effect as 1 because using those requires more data than the matrix-based RGB profiles + supporetd here have. +*) w, h: image size +*) state: + state->info_png: PNG info with possibly an RGB color profile in cHRM,gAMA and/or sRGB chunks + state->info_raw: byte format of out (amount of channels, bit depth) +*) return value: 0 if ok, positive value if error +*/ +unsigned convertFromXYZ(unsigned char* out, const float* in, unsigned w, unsigned h, + const LodePNGState* state, + const float whitepoint[3], unsigned rendering_intent); + +/* +Same as convertFromXYZ but outputs the RGB colors in floating point. +The main black..white range in 0..1. Does not clip values that are outside that range. +*/ +unsigned convertFromXYZFloat(float* out, const float* in, unsigned w, unsigned h, + const LodePNGState* state, + const float whitepoint[3], unsigned rendering_intent); +#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ + +/* +The information for extractZlibInfo. +*/ +struct ZlibBlockInfo { + int btype; //block type (0-2) + size_t compressedbits; //size of compressed block in bits + size_t uncompressedbytes; //size of uncompressed block in bytes + + // only filled in for block type 2 + size_t treebits; //encoded tree size in bits + int hlit; //the HLIT value that was filled in for this tree + int hdist; //the HDIST value that was filled in for this tree + int hclen; //the HCLEN value that was filled in for this tree + std::vector clcl; //19 code length code lengths (compressed tree's tree) + std::vector treecodes; //N tree codes, with values 0-18. Values 17 or 18 are followed by the repetition value. + std::vector litlenlengths; //288 code lengths for lit/len symbols + std::vector distlengths; //32 code lengths for dist symbols + + // only filled in for block types 1 or 2 + std::vector lz77_lcode; //LZ77 codes. 0-255: literals. 256: end symbol. 257-285: length code of length/dist pairs + // the next vectors have the same size as lz77_lcode, but an element only has meaningful value if lz77_lcode contains a length code. + std::vector lz77_dcode; + std::vector lz77_lbits; + std::vector lz77_dbits; + std::vector lz77_lvalue; + std::vector lz77_dvalue; + size_t numlit; //number of lit codes in this block + size_t numlen; //number of len codes in this block +}; + +//Extracts all info needed from a PNG file to reconstruct the zlib compression exactly. +// Returns 0 if no error, non-zero value if error +unsigned extractZlibInfo(std::vector& zlibinfo, const std::vector& in); + +} // namespace lodepng + +#endif /*LODEPNG_UTIL_H inclusion guard*/ diff --git a/Marlin/lib/LodePNG/pngdetail.cpp b/Marlin/lib/LodePNG/pngdetail.cpp new file mode 100644 index 0000000000..d08d6c1f11 --- /dev/null +++ b/Marlin/lib/LodePNG/pngdetail.cpp @@ -0,0 +1,1449 @@ +/* +LodePNG pngdetail + +Copyright (c) 2005-2020 Lode Vandevenne + +This software is provided 'as-is', without any express or implied +warranty. In no event will the authors be held liable for any damages +arising from the use of this software. + +Permission is granted to anyone to use this software for any purpose, +including commercial applications, and to alter it and redistribute it +freely, subject to the following restrictions: + + 1. The origin of this software must not be misrepresented; you must not + claim that you wrote the original software. If you use this software + in a product, an acknowledgment in the product documentation would be + appreciated but is not required. + + 2. Altered source versions must be plainly marked as such, and must not be + misrepresented as being the original software. + + 3. This notice may not be removed or altered from any source + distribution. +*/ + +//g++ pngdetail.cpp lodepng_util.cpp lodepng.cpp -ansi -pedantic -Wall -Wextra -o pngdetail -O3 + + +/* +Utility program that shows a lot of information in the console about a PNG file, +including color type, text chunks, the names and sizes of all chunks in the +image, all the zlib compression blocks and symbols, etc... + +compression info: +./pngdetail -sfczB image.png + +everything, 8-bit: +./pngdetail -sPlLA#cfzB7 image.png + +everything, 16-bit: +./pngdetail -sPlLA@cfzB7 image.png + +everything except huge output: +./pngdetail -sPlAcfzB image.png +*/ +#if 0 + +#include "lodepng.h" +#include "lodepng_util.h" +#include +#include +#include +#include +#include +#include +#include +#include + +void showHelp() { + std::cout << "pngdetail by Lode Vandevenne" << std::endl; + std::cout << "version: " << LODEPNG_VERSION_STRING << std::endl; + std::cout << "Shows detailed information about a PNG image, its compression and possible corruptions.\n" + "Usage: pngdetail [filename] [options]...\n" + "Without options shows a default set of stats. With options, shows only selected options.\n" + "E.g. 'pngdetail image.png -plc' to show png info, palette info and chunks\n" + "Options:\n" + "-o: show header summary on one line\n" + "-H: show header info\n" + "-p: show PNG file info\n" + "-e: analyze errors or warnings\n" + "-i: show ICC profile details (if any)\n" + "-I: show ICC profile bytes\n" + "--format=: display mode for -I:\n" + " hex: print bytes in hex\n" + " mix: print printable bytes as ASCII characters, hex for others\n" + " bin: dump as binary in terminal\n" + "-l: show palette (if any)\n" + "-s: show color statistics\n" + "-r: render the PNG image in terminal (with --mode and --size)\n" + "--size=: render width for -r\n" + "--mode=: render mode for -r:\n" + " ascii: Letters ROYLGTCABVMF indicate hue (L=lime, T=turquoise, A=azure, F=fuchsia, ...).\n" + " hex: CSS hex notation for every pixel.\n" + " hex16: Like hex but shows 16 bits values per channel.\n" + " palette: Shows palette index of each pixel, only for palette images.\n" + "--size=: render width (not used by hex, hex16 or palette):\n" + "-c: show PNG chunks\n" + "-C: show PNG chunks (alternate format)\n" + "-f: show PNG filters\n" + "-z: show Zlib info\n" + "-b: show Zlib blocks\n" + "-B: show Zlib block symbol counts\n" + "-7: show all lz77 values (huge output)\n" + "-v: be more verbose\n" + "-t: expand long texts\n" + "-x: print most integer numbers in hexadecimal (includes e.g. year, num unique colors, ...)\n" + "-?, --help, -h: show this help" << std::endl; +} + +enum RenderMode { + RM_ASCII, + RM_HEX, // CSS + RM_HEX16, + RM_PAL // palette indices (only rendered if image is palette based) +}; + +// for displaying ICC profile +enum HexFormat { + HF_HEX, + HF_MIX, // hex and ascii + HF_BIN // bytes as binary data dump +}; + +struct Options { + bool verbose; + bool expand_long_texts; + bool show_one_line_summary; //show filesize, pixels and color type on single line + bool show_header; // show only info from the IHDR chunk + bool show_errors; + bool show_icc_details; // show ICC color profile details + bool show_icc_hex; // show ICC color profile in full + bool show_color_stats; + bool show_png_info; //show things like filesize, width, height, palette size, ... + bool show_palette; //show all palette values + bool show_palette_pixels; //show palette indices of pixels + + HexFormat hexformat; + + bool show_render; + RenderMode rendermode; + int rendersize; + + bool show_chunks; //show the PNG chunk names and their lengths + bool show_chunks2; //alternate form to print chunks + bool show_filters; //show the PNG filter of each scanline (not supported for interlaced PNGs currently) + bool zlib_info; //show basic zlib info + bool zlib_blocks; //show type, tree info, code length summaries and sizes for each zlib block + bool zlib_counts; //in addition to the zlib_blocks info, show counts of occurrences all symbols + bool zlib_full; //in addition to the zlib_blocks info, show all symbols, one per line (huge output) + bool use_hex; //show some sizes or positions in hexadecimal + + Options() : verbose(false), expand_long_texts(false), + show_one_line_summary(false), show_header(false), show_errors(false), + show_icc_details(false), show_icc_hex(false), + show_color_stats(false), show_png_info(false), + show_palette(false), show_palette_pixels(false), + hexformat(HF_MIX), show_render(false), rendermode(RM_ASCII), rendersize(80), + show_chunks(false), show_chunks2(false), show_filters(false), + zlib_info(false), zlib_blocks(false), zlib_counts(false), zlib_full(false), use_hex(false) { + } +}; + +unsigned inspect_chunk_by_name(const unsigned char* data, const unsigned char* end, + lodepng::State& state, const char type[5]) { + const unsigned char* p = lodepng_chunk_find_const(data, end, type); + return lodepng_inspect_chunk(&state, p - data, data, end - data); +} + +// Lazy loads the raw file, inspected header or entire image as needed +struct Data { + std::string filename; + std::vector buffer; + std::vector pixels; // 16-bit + unsigned w; + unsigned h; + lodepng::State state; + unsigned error; + bool inspected; + bool is_icc; // the file is a raw icc file, not a PNG, only -i and -I are useful + + Data(const std::string& filename) : filename(filename), error(0), inspected(false), is_icc(false) {} + + + // Load the file if not already loaded + void loadFile() { + if(buffer.empty()) { + error = lodepng::load_file(buffer, filename); //load the image file with given filename + } else { + error = 0; // for reloadpixels, reset error if file was already successfully loaded + } + } + + // is PNG according to the file signature + bool isPng() { + if(buffer.size() < 8) return false; + return buffer[0] == 137 && buffer[1] == 80 && buffer[2] == 78 && buffer[3] == 71 + && buffer[4] == 13 && buffer[5] == 10 && buffer[6] == 26 && buffer[7] == 10; + } + + // is probably an ICC profile + bool isIcc() { + if(isPng()) return false; + if(buffer.size() < 128) return false; + size_t size = (buffer[0] << 24) + (buffer[1] << 16) + (buffer[2] << 8) + buffer[3]; + if(size != buffer.size()) return false; + if(buffer[36] != 'a') return false; + if(buffer[37] != 'c') return false; + if(buffer[38] != 's') return false; + if(buffer[39] != 'p') return false; + return true; + } + + // Load header info (plus a few more nearby light chunks) if not already loaded, and the file if needed + void loadInspect() { + if(inspected) return; + inspected = true; + loadFile(); + if(error) return; + if(isIcc()) { + lodepng_set_icc(&state.info_png, "", &buffer[0], buffer.size()); + is_icc = true; + } else { + is_icc = false; + const unsigned char* data = &buffer[0]; + error = lodepng_inspect(&w, &h, &state, data, buffer.size()); + if(error) return; + // end before first IDAT chunk: do not parse more than first part of file for all this. + const unsigned char* end = lodepng_chunk_find_const(data, data + buffer.size(), "IDAT"); + if(!end) end = data + buffer.size(); // no IDAT, invalid PNG but extract info anyway + inspect_chunk_by_name(data, end, state, "PLTE"); + if(error) return; + inspect_chunk_by_name(data, end, state, "tRNS"); + if(error) return; + inspect_chunk_by_name(data, end, state, "cHRM"); + if(error) return; + inspect_chunk_by_name(data, end, state, "gAMA"); + if(error) return; + inspect_chunk_by_name(data, end, state, "sBIT"); + if(error) return; + inspect_chunk_by_name(data, end, state, "bKGD"); + if(error) return; + inspect_chunk_by_name(data, end, state, "hIST"); + if(error) return; + inspect_chunk_by_name(data, end, state, "pHYs"); + if(error) return; + inspect_chunk_by_name(data, end, state, "iCCP"); + if(error) return; + } + } + + // Load the pixels if not already loaded, and the file if needed + void loadPixels() { + if(pixels.empty()) reloadPixels(); + } + + void reloadPixels() { + loadFile(); + if(error) return; + inspected = true; + state.info_raw.colortype = LCT_RGBA; + state.info_raw.bitdepth = 16; + pixels.clear(); + error = lodepng::decode(pixels, w, h, state, buffer); + } +}; + +std::string colorTypeString(LodePNGColorType type) { + std::string name; + switch(type) { + case LCT_GREY: name = "grey"; break; + case LCT_RGB: name = "RGB"; break; + case LCT_PALETTE: name = "palette"; break; + case LCT_GREY_ALPHA: name = "grey+alpha"; break; + case LCT_RGBA: name = "RGBA"; break; + default: name = "invalid"; break; + } + std::stringstream ss; + ss << type << " (" << name << ")"; + return ss.str(); +} + +template +T strtoval(const std::string& s) { + std::istringstream sstream(s); + T val; + sstream >> val; + return val; +} + + +/* +Display the names and sizes of all chunks in the PNG file. +*/ +void displayChunkNames(Data& data, const Options& options) { + if(data.is_icc) return; + data.loadFile(); + if(data.error) return; + std::cout << (options.use_hex ? std::hex: std::dec); + const std::vector& buffer = data.buffer; + std::vector names; + std::vector sizes; + unsigned error = lodepng::getChunkInfo(names, sizes, buffer); + if(error) { + if(!names.empty() && names.back() == "IEND" && sizes.back() == 0) { + std::cout << "Corruption or superfluous data detected after the IEND chunk" << std::endl; + } else { + std::cout << "Error while identifying chunks. Listing identified chunks anyway." << std::endl; + } + } + + if(options.show_chunks2) { + std::cout << "Chunk types: "; + for(size_t i = 0; i < names.size(); i++) std::cout << names[i] << " "; + std::cout << std::endl; + std::cout << "Chunk sizes: "; + for(size_t i = 0; i < sizes.size(); i++) std::cout << sizes[i] << " "; + std::cout << std::endl; + } else { + std::cout << "Chunks (type: lengths):"; + std::string last_type; + for(size_t i = 0; i < names.size(); i++) { + if(last_type != names[i]) { + std::cout << std::endl; + std::cout << " " << names[i] << ": "; + } + last_type = names[i]; + + std::cout << sizes[i] << " "; + } + std::cout << std::endl; + } + + std::map typedict; + for(size_t i = 0; i < names.size(); i++) { + typedict[names[i]] = true; + } + + if(!error) { + if(!typedict["IHDR"]) std::cout << "Error: no IHDR chunk" << std::endl; + if(!typedict["IDAT"]) std::cout << "Error: no IDAT chunk" << std::endl; + if(!typedict["IEND"]) std::cout << "Error: no IEND chunk" << std::endl; + } +} + +void RGBtoHSL(unsigned char r, unsigned char g, unsigned char b, unsigned char* h, unsigned char* s, unsigned char* l) { + int cmax = std::max(r, std::max(g, b)); + int cmin = std::min(r, std::min(g, b)); + if(cmin == cmax) { + *h = *s = 0; + *l = r; + } else { + int sum = cmin + cmax; + int diff = cmax - cmin; + *l = sum / 2; + *s = 255 * diff / ((*l < 128) ? sum : (512 - sum)); + int hi = (r == cmax) ? (255 * (g - b) / diff) : ((g == cmax) ? (512 + 255 * (b - r) / diff) : (1024 + 255 * (r - g) / diff)); + *h = ((hi / 6) & 255); + } +} + +/* +HCT: Hue, Chroma, Tone: returns a linear combination between a pure hue and a greyscale value. +*) Chroma: The linear combination factor: 255 for pure hue, 0 for pure greyscale +*) Tone: greyscale to mix with: 0 = black (shade), 255 = white (tint), in between = grey (tone) +*/ +void RGBtoHCT(unsigned char r, unsigned char g, unsigned char b, unsigned char* h, unsigned char* c, unsigned char* t) { + int cmax = std::max(r, std::max(g, b)); + int cmin = std::min(r, std::min(g, b)); + RGBtoHSL(r, g, b, h, c, t); + *c = cmax - cmin; + *t = *c == 255 ? 0 : 255 * cmin / (255 + cmin - cmax); +} + +// add 32 to get small letter instead of capital +char HueToLetter(int h) { + char hl = 'R'; + // 12 unique hue letters for 30 degree increment hues. + if(h < 11 || h >= 244) hl = 'R'; // red + else if(h >= 11 && h < 32) hl = 'O'; // orange + else if(h >= 32 && h < 53) hl = 'Y'; // yellow + else if(h >= 53 && h < 74) hl = 'L'; // lime (officialy "chartreuse" but c is for cyan) + else if(h >= 74 && h < 96) hl = 'G'; // green + else if(h >= 96 && h < 117) hl = 'T'; // turquoise (officially "spring green" but that name overlaps green) + else if(h >= 117 && h < 138) hl = 'C'; // cyan + else if(h >= 138 && h < 159) hl = 'A'; // azure + else if(h >= 159 && h < 181) hl = 'B'; // blue + else if(h >= 181 && h < 202) hl = 'V'; // violet + else if(h >= 202 && h < 223) hl = 'M'; // magenta + else if(h >= 223 && h < 244) hl = 'F'; // fuchsia (officially "rose" but r is for red) + return hl; +} + +char lightnessToLetter(int l) { + int c = ' '; + if(l < 16) c = ' '; + else if(l < 48) c = '.'; + else if(l < 80) c = ':'; + else if(l < 112) c = '-'; + else if(l < 144) c = '!'; + else if(l < 176) c = '*'; + else if(l < 208) c = '+'; // The + looks denser than the * in a terminal... + else if(l < 240) c = '='; + else c = '#'; + return c; +} + +// Both v and result are assumed in range 0-255 +// range is the size of an individual bucket. A value in roughly range [-range/2, range/2) can get added to v. +// E.g. if there are 12 hue letters, give 255/12 = 21 as range +static inline int applyDither(int v, int range, int x, int y, bool wrap) { + // ordered dithering pattern; ranges from 0-15, so multiply with 17 to have 0-255 + static const int pattern[16] = {0,8,2,10, + 12,4,14,6, + 3,11,1,9, + 15,7,13,5}; + int d = pattern[(x & 3) + 4 * (y & 3)] * 17 - 128; // range: -128 to 127 + if(wrap) return (v + d * range / 256) & 255; + else return std::max(0, std::min(255, v + d * range / 256)); +} + +// x and y are to use for dithering +// inverted inverts black and white, for in case black text on white background is used (by default it assumes white text on black background) +char RGBtoLetter(unsigned char r, unsigned char g, unsigned char b, unsigned char a, unsigned x, unsigned y, bool dither = true, bool inverted = false) { + if(a < 255) { + r = a * r / 255; + g = a * g / 255; + b = a * b / 255; + } + + if(dither) { + unsigned char h, c, t; + RGBtoHCT(r, g, b, &h, &c, &t); + int l = (std::max(std::max(r, g), b) + std::min(std::min(r, g), b)) / 2; + if(inverted) { + l = 255 - l; + t = 255 - t; + } + if(applyDither(c, 254, x, y, false) >= 128) { + char letter = HueToLetter(applyDither(h, 21, x, y, true)); + bool smallcaps = applyDither(l, 64, x+2, y+2, false) < 80; + return letter + (smallcaps ? 32 : 0); + } + else return lightnessToLetter(applyDither(l, 31, x, y, false)); + } else { + unsigned char h, s, l; + RGBtoHSL(r, g, b, &h, &s, &l); + if(inverted) l = 255 - l; + + char hl = HueToLetter(h); + char c = ' '; + if(l < 24 || l > 232 || s < 64) { + c = lightnessToLetter(l); + } else { + if(l < 128) c = hl + 32; + else c = hl; + } + return c; + } +} + +std::vector rescale(const std::vector& in, + int w0, int h0, int w1, int h1, bool smooth) { + int numchannels = in.size() / (w0 * h0); + std::vector out(w1 * h1 * numchannels); + if(smooth) { + // box filter. + std::vector temp(w1 * h0 * numchannels); + for (int c = 0; c < numchannels; c++) { + for (int x = 0; x < w1; x++) { + float xaf = x * 1.0 * w0 / w1; + float xbf = (x + 1.0) * w0 / w1; + int xa = (int)xaf; + int xb = (int)xbf; + double norm = 1.0 / (xbf - xaf); + xaf -= std::floor(xaf); + xbf -= std::floor(xbf); + for (int y = 0; y < h0; y++) { + int index1 = x * numchannels + y * w1 * numchannels; + double val = 0; + for(int x0 = xa; x0 <= xb; x0++) { + int index0 = x0 * numchannels + y * w0 * numchannels; + double v = 1; + if(x0 == xa) v -= xaf; + if(x0 == xb) v -= (1 - xbf); + val += v * in[index0 + c]; + } + temp[index1 + c] = val * norm; + } + } + for (int y = 0; y < h1; y++) { + float yaf = y * 1.0 * h0 / h1; + float ybf = (y + 1.0) * h0 / h1; + int ya = (int)yaf; + int yb = (int)ybf; + double norm = 1.0 / (ybf - yaf); + yaf -= std::floor(yaf); + ybf -= std::floor(ybf); + for (int x = 0; x < w1; x++) { + int index1 = x * numchannels + y * w1 * numchannels; + double val = 0; + for(int y0 = ya; y0 <= yb; y0++) { + int index0 = x * numchannels + y0 * w1 * numchannels; + double v = 1; + if(y0 == ya) v -= yaf; + if(y0 == yb) v -= (1 - ybf); + val += v * temp[index0 + c]; + } + out[index1 + c] = val * norm; + } + } + } + } else { + for(int y = 0; y < h1; y++) { + int y0 = (int)((y + 0.5) * h0 / h1 - 0.5); + for (int x = 0; x < w1; x++) { + int x0 = (int)((x + 0.5) * w0 / w1 - 0.5); + int index0 = x0 * numchannels + y0 * w0 * numchannels; + int index1 = x * numchannels + y * w1 * numchannels; + for (int c = 0; c < numchannels; c++) { + out[index1 + c] = in[index0 + c]; + } + } + } + } + return out; +} + +/* +Show ASCII art preview of the image +image is given in 16-bit big endian +*/ +void displayAsciiArt(const std::vector& image, unsigned w, unsigned h, unsigned asciiw) { + const std::vector* imagep = ℑ + std::vector image2; + if(asciiw < w) { + unsigned w2 = asciiw; + unsigned h2 = h * w2 / w; + image2 = rescale(image, w, h, w2, h2, true); + imagep = &image2; + w = w2; + h = h2; + } + if(w > 0 && h > 0) { + std::cout << "ASCII Art Preview: " << std::endl; + unsigned h2 = 1 + ((h - 1) * 4) / 7; //compensate for non-square characters in terminal + std::cout << '+'; + for(unsigned x = 0; x < w; x++) std::cout << '-'; + std::cout << '+' << std::endl; + for(unsigned y = 0; y < h2; y++) { + std::cout << "|"; + unsigned y2 = y * h / h2; + for(unsigned x = 0; x < w; x++) { + int r = (*imagep)[y2 * w * 8 + x * 8 + 0]; + int g = (*imagep)[y2 * w * 8 + x * 8 + 2]; + int b = (*imagep)[y2 * w * 8 + x * 8 + 4]; + int a = (*imagep)[y2 * w * 8 + x * 8 + 6]; + char symbol = RGBtoLetter(r, g, b, a, x, y, true, false); + std::cout << (char)symbol; + } + std::cout << "|"; + std::cout << std::endl; + } + std::cout << '+'; + for(unsigned x = 0; x < w; x++) std::cout << '-'; + std::cout << '+' << std::endl; + } +} + +//sixteen: print 16 bits per pixel +//alpha: print alpha channel +//input image ALWAYS given in 16-bit per channel RGBA +void displayColorsHex(const std::vector& image, unsigned w, unsigned h, bool sixteen) { + std::ios_base::fmtflags flags = std::cout.flags(); + + if(w > 0 && h > 0) { + std::cout << "Colors (CSS RGBA hex format):" << std::endl; + + for(unsigned y = 0; y < h; y++) { + std::cout.flags(flags); //print line numbers in hex or dec whatever it originally was + std::cout << y << ":"; + for(unsigned x = 0; x < w; x++) { + size_t index = y * w * 8 + x * 8; + if (sixteen) { + int r = image[index + 0] * 256 + image[index + 1]; + int g = image[index + 2] * 256 + image[index + 3]; + int b = image[index + 4] * 256 + image[index + 5]; + int a = image[index + 6] * 256 + image[index + 7]; + std::cout << std::hex << std::setfill('0') << " #" << std::setw(4) << r << std::setw(4) << g << std::setw(4) << b << std::setw(4) << a; + } else { + int r = image[index + 0]; + int g = image[index + 2]; + int b = image[index + 4]; + int a = image[index + 6]; + std::cout << std::hex << std::setfill('0') << " #" << std::setw(2) << r << std::setw(2) << g << std::setw(2) << b << std::setw(2) << a; + } + } + std::cout << std::endl; + } + } + + std::cout.flags(flags); +} + + +/* +Show the filtertypes of each scanline in this PNG image. +*/ +void displayFilterTypes(Data& data, const Options& options) { + std::cout << (options.use_hex ? std::hex: std::dec); + data.loadFile(); + if(data.error) return; + const std::vector& buffer = data.buffer; + std::vector > types; + unsigned error = lodepng::getFilterTypesInterlaced(types, buffer); + if(error) { + std::cout << "Error getting filter types" << std::endl; + return; + } + + if(types.size() == 7) { + std::cout << "Filter types (Adam7 interlaced):" << std::endl; + for(int j = 0; j < 7; j++) { + std::cout << " Pass " << (j + 1) << ": "; + for(size_t i = 0; i < types[j].size(); i++) { + std::cout << (int)(types[j][i]); + } + std::cout << std::endl; + } + } else { + std::cout << "Filter types: "; + for(size_t i = 0; i < types[0].size(); i++) { + std::cout << (int)(types[0][i]); + } + std::cout << std::endl; + } +} + +//image type MUST be palette +void displayPalette(Data& data, const Options& options) { + data.loadInspect(); + if(data.error) return; + std::cout << (options.use_hex ? std::hex: std::dec); + + const LodePNGInfo& info = data.state.info_png; + const LodePNGColorMode& color = info.color; + + std::cout << "Palette size: " << color.palettesize << std::endl; + std::cout << "Palette colors: "; + std::ios_base::fmtflags flags = std::cout.flags(); + std::cout << std::hex << std::setfill('0'); + for(size_t i = 0; i < color.palettesize; i++) { + unsigned char* p = &color.palette[i * 4]; + std::cout << "#" << std::setw(2) << (int)p[0] << std::setw(2) << (int)p[1] << std::setw(2) << (int)p[2] << std::setw(2) << (int)p[3] << " "; + } + std::cout.flags(flags); + std::cout << std::endl; +} + +//image type MUST be palette +void displayPalettePixels(const std::vector& buffer, const Options& options) { + unsigned w, h; + lodepng::State state; + std::vector out; + std::cout << (options.use_hex ? std::hex: std::dec); + + state.decoder.color_convert = 0; + + lodepng::decode(out, w, h, state, buffer); + + if(state.info_png.color.colortype == LCT_PALETTE) { + if (options.show_color_stats) { + std::vector count(256, 0); + size_t outofbounds = 0; + + for(size_t i = 0; i < w * h; i++) { + int value = lodepng::getPaletteValue(&out[0], i, state.info_raw.bitdepth); + count[value]++; + if(value >= (int)state.info_raw.palettesize) outofbounds++; + } + + std::cout << "Palette count: "; + for(size_t i = 0; i < state.info_raw.palettesize; i++) { + std::cout << count[i] << " "; + } + std::cout << std::endl; + + if(outofbounds > 0) std::cout << "Out of bounds palette values: " << outofbounds << std::endl; + } + + std::cout << "Pixel palette indices:" << std::endl; + for(size_t i = 0; i < w * h; i++) { + int value = lodepng::getPaletteValue(&out[0], i, state.info_raw.bitdepth); + std::cout << value << ", "; + if(i % w == w - 1) std::cout << std::endl; + } + } else { + std::cout << "Pixel palette indices: not shown, not a palette image\n" << std::endl; + } +} + +void printZlibInfo(Data& data, const Options& options) { + data.loadFile(); + if(data.error) return; + const std::vector& in = data.buffer; + std::cout << (options.use_hex ? std::hex: std::dec); + + std::vector zlibinfo; + lodepng::extractZlibInfo(zlibinfo, in); + + if(options.zlib_info) { + //std::cout << "Zlib info: " << std::endl; + size_t compressed = 0; + size_t uncompressed = 0; + std::vector boundaries_compressed; + std::vector boundaries_uncompressed; + for(size_t i = 0; i < zlibinfo.size(); i++) { + compressed += zlibinfo[i].compressedbits / 8; + uncompressed += zlibinfo[i].uncompressedbytes; + boundaries_compressed.push_back(compressed); + boundaries_uncompressed.push_back(uncompressed); + } + + std::cout << "IDAT zlib info: " << compressed << std::endl; + std::cout << "Compressed size: " << compressed << std::endl; + std::cout << "Uncompressed size: " << uncompressed << std::endl; + std::cout << "Amount of zlib blocks: " << zlibinfo.size() << std::endl; + if(zlibinfo.size() > 1) { + std::cout << "Block sizes (uncompressed): "; + for(size_t i = 0; i < zlibinfo.size(); i++) + std::cout << zlibinfo[i].uncompressedbytes << " "; + std::cout << std::endl; + std::cout << "Block sizes (compressed): "; + for(size_t i = 0; i < zlibinfo.size(); i++) + std::cout << (zlibinfo[i].compressedbits / 8) << " "; + std::cout << std::endl; + std::cout << "Block boundaries (uncompressed): "; + for(size_t i = 0; i + 1 < boundaries_uncompressed.size(); i++) + std::cout << boundaries_uncompressed[i] << " "; + std::cout << std::endl; + std::cout << "Block boundaries (compressed): "; + for(size_t i = 0; i + 1 < boundaries_compressed.size(); i++) + std::cout << boundaries_compressed[i] << " "; + std::cout << std::endl; + } + } + + if(options.zlib_blocks) { + for(size_t i = 0; i < zlibinfo.size(); i++) { + const lodepng::ZlibBlockInfo& info = zlibinfo[i]; + + std::cout << "Zlib block " << i << ":" << std::endl; + std::cout << " block type: " << info.btype << std::endl; + + size_t compressedsize = info.compressedbits / 8; + size_t uncompressedsize = info.uncompressedbytes; + std::cout << " block compressed: " << compressedsize << " (" << compressedsize / 1024 << "K) (" << info.compressedbits << " bits)" << std::endl; + std::cout << " block uncompressed: " << uncompressedsize << " (" << uncompressedsize / 1024 << "K)" << std::endl; + + if(info.btype > 2) { + std::cout << "Error: Invalid Block Type" << std::endl; + return; + } + + if(info.btype == 2) { + std::cout << " encoded trees size: " << info.treebits / 8 << " (" << info.treebits << " bits)" << std::endl; + std::cout << " HLIT: " << info.hlit << std::endl; + std::cout << " HDIST: " << info.hdist << std::endl; + std::cout << " HCLEN: " << info.hclen << std::endl; + std::cout << std::hex; + std::cout << " code length code lengths: "; for(size_t j = 0; j < 19; j++) std::cout << info.clcl[j]; std::cout << std::endl; + if(!options.use_hex) std::cout << std::dec; + if(options.zlib_full) { + for(size_t j = 0; j < info.treecodes.size(); j++) { + int code = info.treecodes[j]; + if(code < 17) { + std::cout << " tree: " << code << std::endl; + } else { + j++; + std::cout << " tree: " << code << " rep: " << info.treecodes[j] << std::endl; + } + + } + } + + std::cout << std::hex; + std::cout << " lit code lengths 0-127 : "; for(size_t j = 0; j < 128; j++) std::cout << info.litlenlengths[j]; std::cout << std::endl; + std::cout << " lit code lengths 128-255: "; for(size_t j = 128; j < 256; j++) std::cout << info.litlenlengths[j]; std::cout << std::endl; + std::cout << " end code length : "; std::cout << info.litlenlengths[256]; std::cout << std::endl; + std::cout << " len code lengths : "; for(size_t j = 257; j < 288; j++) std::cout << info.litlenlengths[j]; std::cout << std::endl; + std::cout << " dist code lengths : "; for(size_t j = 0; j < 32; j++) std::cout << info.distlengths[j]; std::cout << std::endl; + if(!options.use_hex) std::cout << std::dec; + } + + + if(info.btype != 0) { + std::cout << " code counts: lit: " << info.numlit << ", len/dist: " << info.numlen << ", total: " << (info.numlit + info.numlen + 1) << ", with dists: " << (info.numlit + 2 * info.numlen + 1) << std::endl; + + if(options.zlib_full) { + for(size_t j = 0; j < info.lz77_lcode.size(); j++) { + int symbol = info.lz77_lcode[j]; + if(symbol == 256) { + std::cout << " end" << std::endl; + } else if(symbol < 256) { + std::cout << " lit: " << symbol << std::endl; + } else { + std::cout << " len: " << info.lz77_lvalue[j] << ", dist: " << info.lz77_dvalue[j] << std::endl; + } + } + } + + if(options.zlib_counts) { + std::vector ll_count(288, 0); + std::vector d_count(32, 0); + for(size_t j = 0; j < info.lz77_lcode.size(); j++) { + int symbol = info.lz77_lcode[j]; + if(symbol <= 256) { + ll_count[symbol]++; + } else { + ll_count[symbol]++; + d_count[info.lz77_dcode[j]]++; + } + } + std::cout << " lit code 0-63 counts : "; for(size_t j = 0; j < 64; j++) std::cout << ll_count[j] << " "; std::cout << std::endl; + std::cout << " lit code 64-127 counts : "; for(size_t j = 64; j < 128; j++) std::cout << ll_count[j] << " "; std::cout << std::endl; + std::cout << " lit code 128-191 counts: "; for(size_t j = 128; j < 192; j++) std::cout << ll_count[j] << " "; std::cout << std::endl; + std::cout << " lit code 192-255 counts: "; for(size_t j = 192; j < 256; j++) std::cout << ll_count[j] << " "; std::cout << std::endl; + std::cout << " end code count : "; std::cout << ll_count[256] << " "; std::cout << std::endl; + std::cout << " len code counts : "; for(size_t j = 257; j < 288; j++) std::cout << ll_count[j] << " "; std::cout << std::endl; + std::cout << " dist code counts : "; for(size_t j = 0; j < 32; j++) std::cout << d_count[j] << " "; std::cout << std::endl; + } + } + } + } +} + +// returns number of unique RGBA colors in the image +// also fills unique r, g, b, a counts in the output parameters +// the input image is in 16-bit per channel color, so 8 chars per pixel +size_t countColors(std::vector image, unsigned w, unsigned h, + size_t* ro, size_t* go, size_t* bo, size_t* ao) { + typedef std::pair, std::pair > RGBA; + std::map rgbam; + //std::map rgbam; + std::vector rm(65536, 0); + std::vector gm(65536, 0); + std::vector bm(65536, 0); + std::vector am(65536, 0); + for(unsigned y = 0; y < h; y++) { + for(unsigned x = 0; x < w; x++) { + unsigned short r = 256 * image[y * 8 * w + x * 8 + 0] + image[y * 8 * w + x * 8 + 1]; + unsigned short g = 256 * image[y * 8 * w + x * 8 + 2] + image[y * 8 * w + x * 8 + 3]; + unsigned short b = 256 * image[y * 8 * w + x * 8 + 4] + image[y * 8 * w + x * 8 + 5]; + unsigned short a = 256 * image[y * 8 * w + x * 8 + 6] + image[y * 8 * w + x * 8 + 7]; + RGBA rgba(std::make_pair(r, g), std::make_pair(b, a)); + //uint64_t rgba = (uint64_t)r + ((uint64_t)g << 16) + ((uint64_t)b << 32) + ((uint64_t)a << 48); + rgbam[rgba]++; + rm[r] = 1; + gm[g] = 1; + bm[b] = 1; + am[a] = 1; + } + } + *ro = *go = *bo = *ao = 0; + for(size_t i = 0; i < rm.size(); i++) { + *ro += rm[i]; + *go += gm[i]; + *bo += bm[i]; + *ao += am[i]; + } + + return rgbam.size(); +} + + +void showError(Data& data, const Options& options) { + std::cout << (options.use_hex ? std::hex: std::dec); + std::string prefix = (options.use_hex ? "0x": ""); + if(!data.error) { + std::cout << "No error" << std::endl; + } + std::cout << "Decoding error " << prefix << data.error << ": " << lodepng_error_text(data.error) << std::endl; +} + +void loadWithErrorRecovery(Data& data, const Options& options, bool show_errors_mode) { + (void)options; + unsigned& error = data.error; + lodepng::State& state = data.state; + + data.loadPixels(); + + if(show_errors_mode) { + if(!error) std::cout << "No errors or warnings" << std::endl; + return; + } + + // In case of checksum errors and some other ignorable errors, report it but ignore it and retry + while(error) { + // Not showing regular error here, is shown at end of program. + unsigned error2 = error; + if(error == 57) { + showError(data, options); + if(!show_errors_mode) std::cerr << "Ignoring the error: enabling ignore_crc" << std::endl; + state.decoder.ignore_crc = 1; + data.reloadPixels(); + } else if(error == 58) { + showError(data, options); + if(!show_errors_mode) std::cerr << "Ignoring the error: enabling ignore_adler32" << std::endl; + state.decoder.zlibsettings.ignore_adler32 = 1; + data.reloadPixels(); + } else if(error == 69) { + showError(data, options); + if(!show_errors_mode) std::cerr << "Ignoring the error: enabling ignore_critical" << std::endl; + state.decoder.ignore_critical = 1; + data.reloadPixels(); + } else if(error == 30 || error == 63) { + showError(data, options); + if(!show_errors_mode) std::cerr << "Ignoring the error: enabling ignore_end" << std::endl; + state.decoder.ignore_end = 1; + data.reloadPixels(); + } else { + showError(data, options); + if(!show_errors_mode) std::cerr << "This error is unrecoverable" << std::endl; + break; // other error that we cannot ignore + } + if(!show_errors_mode) if(error == 0) std::cerr << "Successfully ignored the error" << std::endl; + if(error == error2) { + if(!show_errors_mode) std::cerr << "Failed to ignore the error" << std::endl; + break; // avoid infinite loop if ignoring did not fix the error code + } + } + + if(show_errors_mode) { + if(!error) std::cout << "The error is recoverable" << std::endl; + else std::cout << "The error is not recoverable" << std::endl; + } +} + +void showSingleLineSummary(Data& data, const Options& options) { + data.loadInspect(); + if(data.error && data.error != 57) return; // CRC error (57) ignored here for parsing of header only + std::cout << (options.use_hex ? std::hex: std::dec); + std::cout << "Filesize: " << data.buffer.size() << " (" << data.buffer.size() / 1024 << "K)"; + if(data.is_icc) { + std::cout << ", not a PNG but an ICC profile, use -i to expand ICC profile info." << std::endl; + return; + } + + std::cout << ", " << data.w << "x" << data.h << ", "; + std::cout << "Color: " << colorTypeString(data.state.info_png.color.colortype) << ", " << data.state.info_png.color.bitdepth << " bit" << std::endl; +} + +static unsigned getICCUint16(const unsigned char* icc, size_t size, size_t pos) { + if (pos + 2 > size) return 0; + return (unsigned)((icc[pos] << 8) | (icc[pos + 1])); +} + +static unsigned getICCUint32(const unsigned char* icc, size_t size, size_t pos) { + if (pos + 4 > size) return 0; + return (unsigned)((icc[pos] << 24) | (icc[pos + 1] << 16) | (icc[pos + 2] << 8) | (icc[pos + 3] << 0)); +} + +static int getICCInt32(const unsigned char* icc, size_t size, size_t pos) { + if (pos + 4 > size) return 0; + return (int)((icc[pos] << 24) | (icc[pos + 1] << 16) | (icc[pos + 2] << 8) | (icc[pos + 3] << 0)); +} + +// Signed +static float getICC15Fixed16(const unsigned char* icc, size_t size, size_t pos) { + return getICCInt32(icc, size, pos) / 65536.0; +} + +// Unsigned +static float getICC16Fixed16(const unsigned char* icc, size_t size, size_t pos) { + return getICCUint32(icc, size, pos) / 65536.0; +} + +static std::string printableICCWord(const unsigned char* icc, size_t size, size_t pos) { + if (pos + 4 > size) { + return "out of range"; + } + std::string result; + for (int i = 0; i < 4; i++) { + char c = icc[pos + i]; + result += ((c >= 32 && c < 127) ? c : '?'); + } + return result; +} + +void printICCDetails(const unsigned char* icc, size_t size, const std::string& indent) { + // 128 for header, 4 for num tags + if(size < 132) { + std::cout << indent << "Invalid ICC: too small to contain header" << std::endl; + return; + } + if(printableICCWord(icc, size, 36) != "acsp") { + std::cout << indent << "Invalid ICC: does not contain signature \"acsp\"" << std::endl; + return; + } + + std::cout << indent << "profile size: " << getICCUint32(icc, size, 0) << std::endl; + std::cout << indent << "CMM type: " << printableICCWord(icc, size, 4) << std::endl; + + uint32_t version = getICCUint32(icc, size, 8); + uint16_t version_major = (version >> 24) & 255; + uint16_t version_minor = (version >> 20) & 15; + uint16_t version_bugfix = (version >> 16) & 15; + std::cout << indent << "version: " << version_major << "." << version_minor + << "." << version_bugfix << std::endl; + + std::cout << indent << "device class: " << printableICCWord(icc, size, 12) << std::endl; + std::cout << indent << "input space: \"" << printableICCWord(icc, size, 16) << "\", "; + std::cout << "output space: \"" << printableICCWord(icc, size, 20) << "\"" << std::endl; + std::cout << indent; + printf("date: %02d-%02d-%02dT%02d:%02d:%02d\n", + getICCUint16(icc, size, 24), getICCUint16(icc, size, 26), getICCUint16(icc, size, 28), + getICCUint16(icc, size, 30), getICCUint16(icc, size, 32), getICCUint16(icc, size, 34)); + std::cout << indent << "signature: " << printableICCWord(icc, size, 36) << std::endl; + std::cout << indent << "platform: " << printableICCWord(icc, size, 40) << std::endl; + std::cout << indent << "flags: " << getICCUint32(icc, size, 44) << std::endl; + std::cout << indent << "device manufacturer: " << printableICCWord(icc, size, 48) << ", "; + std::cout << "device model: " << printableICCWord(icc, size, 52) << ", "; + std::cout << "device attributes: " << getICCUint32(icc, size, 56) << " " + << getICCUint32(icc, size, 60) << std::endl; + std::cout << indent << "rendering intent: " << getICCUint32(icc, size, 64) << std::endl; + + float pcsx = getICC15Fixed16(icc, size, 68); + float pcsy = getICC15Fixed16(icc, size, 72); + float pcsz = getICC15Fixed16(icc, size, 76); + float pcsxyz = pcsx + pcsy + pcsz; + std::cout << indent << "xyz illuminant: X:" << pcsx << ", Y:" << pcsy << ", Z:" << pcsz + << ", xy:" << (pcsx / pcsxyz) << "," << (pcsy / pcsxyz) << std::endl; + + std::cout << indent << "creator: " << printableICCWord(icc, size, 80) << std::endl; + + // The md5 is present in v2.4 and above profiles, but it's always shown anyway. Those + // bytes are normally all zero for older versions. + std::cout << indent; + printf("md5: %08x%08x%08x%08x\n", getICCUint32(icc, size, 84), getICCUint32(icc, size, 88), + getICCUint32(icc, size, 92), getICCUint32(icc, size, 96)); + + size_t numtags = getICCUint32(icc, size, 128); + std::cout << indent << "num icc tags: " << numtags << std::endl; + if(size < 128 + 4 + numtags * 12) { + std::cout << indent << "Invalid ICC: too small to contain tag descriptions" << std::endl; + return; + } + for(size_t i = 0; i < numtags; i++) { + size_t pos = 132 + i * 12; + std::cout << indent << "icc tag: \"" << printableICCWord(icc, size, pos) << "\""; + size_t offset = getICCUint32(icc, size, pos + 4); + size_t tagsize = getICCUint32(icc, size, pos + 8); + std::cout << ", offset: " << offset << ", size: " << tagsize; + if(offset + tagsize > size || tagsize < 4) { + std::cout << std::endl << indent << "Invalid ICC: tag out of range" << std::endl; + return; + } + std::string datatype = printableICCWord(icc, size, offset); + std::cout << ", datatype: \"" << datatype << "\""; + if(datatype == "XYZ ") { + float x = getICC15Fixed16(icc, size, offset + 8); + float y = getICC15Fixed16(icc, size, offset + 12); + float z = getICC15Fixed16(icc, size, offset + 16); + float xyz = x + y + z; + std::cout << ", X:" << x << ", Y:" << y << ", Z:" << z; + if(xyz) std::cout << ", xy:" << (x / xyz) << "," << (y / xyz); + } + if(datatype == "curv") { + size_t lutsize = getICCUint32(icc, size, offset + 8); + std::cout << ", lookup table size: " << lutsize; + if(lutsize == 1 && offset + 14 <= size) { + std::cout << " (gamma: " << (getICCUint16(icc, size, offset + 12) / 256.0) << ")"; + } + if(lutsize == 0) std::cout << " (linear)"; + } + if(datatype == "para") { + unsigned type = getICCUint16(icc, size, offset + 8); + float gamma = getICC15Fixed16(icc, size, offset + 12); + int numparams = (type == 4) ? 7 : ((type >= 1 && type <= 3) ? (type + 1) : 0); + std::cout << " type: " << type << ", gamma: " << gamma; + if(numparams > 0) { + std::cout << ", params: "; + for(int j = 0; j < numparams; j++) { + if(j > 0) std::cout << ", "; + std::cout << getICC15Fixed16(icc, size, offset + 16 + j * 4); + } + } + } + if(datatype == "sf32") { + std::cout << ":"; + for(size_t j = 8; j < tagsize; j += 4) { + float v = getICC15Fixed16(icc, size, offset + j); + std::cout << " " << v; + } + } + if(datatype == "chrm") { + size_t numchannels = getICCUint16(icc, size, offset + 8); + std::cout << ": n:" << numchannels + << " phosphor:" << getICCUint16(icc, size, offset + 10); + for(size_t j = 0; j < numchannels; j++) { + std::cout << " xy:" << getICC16Fixed16(icc, size, offset + 12 + j * 8) + << "," << getICC16Fixed16(icc, size, offset + 12 + j * 8 + 4); + } + } + if(datatype == "text" || datatype == "mluc" || datatype == "desc") { + // TODO: this is a bit of a simplification of the parse for now, e.g. + // ignoring UTF-16, instead implicitely skipping non-ASCII bytes, and + // potentially printing things multiple times in a row if multiple + // variants are in desc or mluc. + std::cout << ": "; + for(size_t j = (datatype == "mluc" ? 28 : 8); j < tagsize; j++) { + char c = icc[offset + j]; + if(c >= 32 && c < 127) std::cout << c; + } + } + std::cout << std::endl; + } +} + +void showHeaderInfo(Data& data, const Options& options) { + data.loadInspect(); + if(data.error) return; + std::cout << (options.use_hex ? std::hex: std::dec); + + const LodePNGInfo& info = data.state.info_png; + const LodePNGColorMode& color = info.color; + if(options.show_header) { + std::cout << "Filesize: " << data.buffer.size() << " (" << data.buffer.size() / 1024 << "K)" << std::endl; + if(data.is_icc) { + std::cout << "Not a PNG but an ICC profile, use -i for more info." << std::endl; + } else { + std::cout << "Width: " << data.w << std::endl; + std::cout << "Height: " << data.h << std::endl; + if(options.verbose) { + double bpp = data.buffer.size() / (double)(data.w * data.h); + std::cout << "Compressed bpp: " << bpp << std::endl; + } + std::cout << "Interlace method: " << info.interlace_method << std::endl; + if(options.verbose) { + std::cout << "Compression method: " << info.compression_method << std::endl; + std::cout << "Filter method: " << info.filter_method << std::endl; + } + std::cout << "Color type: " << colorTypeString(color.colortype) << std::endl; + std::cout << "Bit depth: " << color.bitdepth << std::endl; + if(options.verbose) { + std::cout << "Bits per pixel: " << lodepng_get_bpp(&color) << std::endl; + std::cout << "Channels per pixel: " << lodepng_get_channels(&color) << std::endl; + std::cout << "Is greyscale type: " << lodepng_is_greyscale_type(&color) << std::endl; + std::cout << "Can have alpha: " << lodepng_can_have_alpha(&color) << std::endl; + std::cout << "Has color key: " << color.key_defined << std::endl; + } + } + } + if(options.show_png_info && !data.is_icc) { + if (color.colortype == LCT_PALETTE) { + std::cout << "Palette size: " << color.palettesize << std::endl; + } + if(color.key_defined) { + std::cout << "Color key rgb: " << color.key_r + << ", " << color.key_g + << ", " << color.key_b << std::endl; + } + if(info.background_defined) { + if(color.colortype == LCT_PALETTE) { + std::cout << "Background index: " << info.background_r << std::endl; + } else { + std::cout << "Background rgb: " << info.background_r + << ", " << info.background_g + << ", " << info.background_b << std::endl; + } + } + if(info.gama_defined) { + std::cout << "gAMA defined: " << info.gama_gamma << " (" << (info.gama_gamma / 100000.0) + << ", " << (100000.0 / info.gama_gamma) << ")" << std::endl; + } + if(info.chrm_defined) { + std::cout << "cHRM defined: w: " << (info.chrm_white_x / 100000.0) << " " << (info.chrm_white_y / 100000.0) + << ", r: " << (info.chrm_red_x / 100000.0) << " " << (info.chrm_red_y / 100000.0) + << ", g: " << (info.chrm_green_x / 100000.0) << " " << (info.chrm_green_y / 100000.0) + << ", b: " << (info.chrm_blue_x / 100000.0) << " " << (info.chrm_blue_y / 100000.0) + << std::endl; + } + if(info.srgb_defined) { + std::cout << "sRGB defined: rendering intent: " << info.srgb_intent << std::endl; + } + if(info.iccp_defined) { + std::cout << "iCCP defined (" << info.iccp_profile_size << " bytes): name: " << info.iccp_name << std::endl; + if(options.verbose && !options.show_icc_details && !options.show_icc_hex) { + std::cout << "Use -i or -I to show ICC profile details or hex" << std::endl; + } + } + } + if(info.iccp_defined && options.show_icc_details) { + if(!options.show_header) { + std::cout << "ICC profile details (" << info.iccp_profile_size << " bytes), PNG name: " << info.iccp_name << std::endl; + } + printICCDetails(info.iccp_profile, info.iccp_profile_size, " "); + std::cout << "end of ICC profile" << std::endl; + } + if(info.iccp_defined && options.show_icc_hex) { + for(size_t i = 0; i < info.iccp_profile_size; i++) { + unsigned char c = info.iccp_profile[i]; + if(options.hexformat == HF_BIN) { + printf("%c", c); + } else { + if(c > 32 && c < 127 && options.hexformat == HF_MIX) printf(" %c ", c); + else printf("%02x ", c); + if(i % 32 == 31 && i + 1 != info.iccp_profile_size) std::cout << std::endl; + } + } + if(options.hexformat != HF_BIN) std::cout << std::endl; + } + + if(options.show_png_info && !data.is_icc) { + if(options.verbose) std::cout << "Physics defined: " << info.phys_defined << std::endl; + if(info.phys_defined) { + std::cout << "Physics: X: " << info.phys_x << ", Y: " << info.phys_y << ", unit: " << info.phys_unit << std::endl; + } + } +} + +// shortens the text unless options.expand_long_texts is true +std::string shortenText(const std::string& text, const Options& options) { + if(options.expand_long_texts) return text; + size_t maxlen = 512; + size_t maxnl = options.verbose ? 5 : 1; + size_t numnl = 0; // amount of newlines + for(size_t i = 0; i < text.size(); i++) { + if(text[i] == 10) numnl++; + if(numnl >= maxnl) { + maxlen = i; + break; + } + } + + if(text.size() < maxlen) return text; + + return text.substr(0, maxlen) + (numnl > 1 ? "\n" : "") + "... [TEXT SNIPPED! use -t to expand long text]"; +} + +// A bit more PNG info, which is from chunks that can come after IDAT. showHeaderInfo shows most other stuff. +void showPNGInfo(Data& data, const Options& options) { + if(data.is_icc) return; + loadWithErrorRecovery(data, options, false); + if(data.error) return; + std::cout << (options.use_hex ? std::hex: std::dec); + + const LodePNGInfo& info = data.state.info_png; + + if(options.verbose) std::cout << "Texts: " << info.text_num << std::endl; + for(size_t i = 0; i < info.text_num; i++) { + std::cout << "Text (" << (strlen(info.text_strings[i])) << " bytes): " + << info.text_keys[i] << ": " << shortenText(info.text_strings[i], options) << std::endl; + } + if(options.verbose) std::cout << "International texts: " << info.itext_num << std::endl; + for(size_t i = 0; i < info.itext_num; i++) { + std::cout << "Text (" << (strlen(info.itext_strings[i])) << " bytes): " + << info.itext_keys[i] << ", " + << info.itext_langtags[i] << ", " + << info.itext_transkeys[i] << ": " + << shortenText(info.itext_strings[i], options) << std::endl; + } + if(options.verbose) std::cout << "Time defined: " << info.time_defined << std::endl; + if(info.time_defined) { + const LodePNGTime& time = info.time; + printf("time: %02d-%02d-%02dT%02d:%02d:%02d\n", + time.year, time.month, time.day, time.hour, time.minute, time.second); + + } +} + +void showColorStats(Data& data, const Options& options) { + if(data.is_icc) return; + std::cout << (options.use_hex ? std::hex: std::dec); + std::vector& image = data.pixels; + unsigned& w = data.w; + unsigned& h = data.h; + + data.loadPixels(); + if(data.error) return; + // TODO: move to show color stats function + if(options.verbose) std::cout << "Num pixels: " << w * h << std::endl; + size_t rc, gc, bc, ac; + std::cout << "Num unique colors: " << countColors(image, w, h, &rc, &gc, &bc, &ac); + std::cout << " (r: " << rc << ", g: " << gc << ", b: " << bc << ", a: " << ac << ")"; + std::cout << std::endl; + if(w > 0 && h > 0) { + double avg[4] = {0, 0, 0, 0}; + double min[4] = {999999, 999999, 999999, 999999}; + double max[4] = {0, 0, 0, 0}; + for(unsigned y = 0; y < h; y++) { + for(unsigned x = 0; x < w; x++) { + for(int c = 0; c < 4; c++) { + double v = 256 * image[y * 8 * w + x * 8 + c * 2] + image[y * 8 * w + x * 8 + c * 2 + 1]; + avg[c] += v; + min[c] = std::min(min[c], v); + max[c] = std::max(max[c], v); + } + } + } + for(int c = 0; c < 4; c++) { + avg[c] /= (w * h * 257.0); + min[c] /= 257.0; + max[c] /= 257.0; + } + if(options.verbose) std::cout << "Ranges shown as 0.0-255.0, even for 16-bit data:" << std::endl; + std::cout << "Average color: " << avg[0] << ", " << avg[1] << ", " << avg[2] << ", " << avg[3] << std::endl; + std::cout << "Color ranges: " << min[0] << "-" << max[0] << ", " << min[1] << "-" << max[1] << ", " << min[2] << "-" << max[2] << ", " << min[3] << "-" << max[3] << std::endl; + } +} + +void showErrors(Data& data, const Options& options) { + std::cout << "Error report: " << std::endl; + Data data2(data.filename); + loadWithErrorRecovery(data2, options, true); +} + +void showRender(Data& data, const Options& options) { + data.loadPixels(); + if(data.error) return; + if(options.rendermode == RM_ASCII) { + displayAsciiArt(data.pixels, data.w, data.h, options.rendersize); + } + + if(options.rendermode == RM_HEX) { + displayColorsHex(data.pixels, data.w, data.h, false); + } + + if(options.rendermode == RM_HEX16) { + displayColorsHex(data.pixels, data.w, data.h, true); + } + + if(options.rendermode == RM_PAL) { + displayPalettePixels(data.buffer, options); + } +} + + +void showInfos(Data& data, const Options& options) { + if(options.show_one_line_summary) showSingleLineSummary(data, options); + if(options.show_errors) showErrors(data, options); + if(options.show_header || options.show_icc_details || options.show_icc_hex) showHeaderInfo(data, options); + if(options.show_color_stats) showColorStats(data, options); + if(options.show_png_info) showPNGInfo(data, options); + if(options.show_palette) displayPalette(data, options); + if(options.show_chunks || options.show_chunks2) displayChunkNames(data, options); + if(options.show_filters) displayFilterTypes(data, options); + if(options.show_render) showRender(data, options); + if(options.zlib_info || options.zlib_blocks || options.zlib_counts || options.zlib_full) { + printZlibInfo(data, options); + } + + if(data.error) showError(data, options); +} + +int main(int argc, char *argv[]) { + Options options; + bool options_chosen = false; + + std::vector filenames; + for (int i = 1; i < argc; i++) { + std::string s = argv[i]; + if(s.size() > 1 && s[0] == '-' && s[1] != '-') { + // anything that chooses actual set disables the defaults + if(s != "-x" && s != "-v" && s != "-t") options_chosen = true; + for(size_t j = 1; j < s.size(); j++) { + char c = s[j]; + if(c == 'o') options.show_one_line_summary = true; + else if(c == 'H') options.show_header = true; + else if(c == 'i') options.show_icc_details = true; + else if(c == 'I') options.show_icc_hex = true; + else if(c == 'v') options.verbose = true; + else if(c == 't') options.expand_long_texts = true; + else if(c == 's') options.show_color_stats = true; + else if(c == 'e') options.show_errors = true; + else if(c == 'p') options.show_header = options.show_png_info = true; + else if(c == 'r') options.show_render = true; + else if(c == 'l') options.show_palette = true; + else if(c == 'L') options.show_palette_pixels = true; + else if(c == 'c') options.show_chunks = true; + else if(c == 'C') options.show_chunks2 = true; + else if(c == 'f') options.show_filters = true; + else if(c == 'z') options.zlib_info = true; + else if(c == 'b') options.zlib_blocks = true; + else if(c == 'B') { + options.zlib_blocks = true; + options.zlib_counts = true; + } + else if(c == '7') { + options.zlib_blocks = true; + options.zlib_full = true; + } + else if(c == 'x') { + options.use_hex = true; + std::cout << std::hex; + } else { + if(s != "--help" && c != 'h' && c != '?') std::cout << "Unknown flag: " << c << ". Use -h for help" << std::endl; + showHelp(); + return 0; + } + + } + } else if(s.size() > 1 && s[0] == '-' && s[1] == '-') { + size_t eqpos = 2; + while(eqpos < s.size() && s[eqpos] != '=') eqpos++; + std::string key = s.substr(2, eqpos - 2); + std::string value = (eqpos + 1) < s.size() ? s.substr(eqpos + 1) : ""; + if(key == "help") { + showHelp(); + return 0; + } + if(key == "mode") { + if(value == "ascii") options.rendermode = RM_ASCII; + else if(value == "hex") options.rendermode = RM_HEX; + else if(value == "hex16") options.rendermode = RM_HEX16; + else if(value == "palette") options.rendermode = RM_PAL; + } + if(key == "size") { + int size = strtoval(value); + if(options.rendersize >= 1 && options.rendersize <= 4096) options.rendersize = size; + } + if(key == "format") { + if(value == "mix") options.hexformat = HF_MIX; + else if(value == "hex") options.hexformat = HF_HEX; + else if(value == "bin") options.hexformat = HF_BIN; + } + } + else filenames.push_back(s); + } + + if(filenames.empty()) { + std::cout << "Please provide a filename to preview" << std::endl; + showHelp(); + return 0; + } + + if(!options_chosen) { + //fill in defaults + options.show_header = true; + options.show_png_info = true; + options.show_chunks2 = true; + // verbose lets individual sections show more, and in addition adds more default unlocked sections if no specific one chosen + if(options.verbose) { + options.show_chunks2 = false; + options.show_chunks = true; + } + } + + for(size_t i = 0; i < filenames.size(); i++) { + if(filenames.size() > 1) { + if(i > 0 && !options.show_one_line_summary) std::cout << std::endl; + std::cout << filenames[i] << ":"; + if(!options.show_one_line_summary) std::cout << std::endl; else std::cout << " "; + } + Data data(filenames[i]); + showInfos(data, options); + } +} + +#endif diff --git a/Marlin/lib/STM32_USB_Host_Library/library.json b/Marlin/lib/STM32_USB_Host_Library/library.json new file mode 100644 index 0000000000..34a73e9942 --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/library.json @@ -0,0 +1,16 @@ +{ + "name": "stm32_host_usb_library", + "version": "0.0.1", + "keywords": "stm32 usb lib. port by langgo", + "description": "stm32 usb library for marlin. port by langgo.", + "build": { + "srcFilter": [ + "+<*.c>", + "+<*.cpp>", + "+<*.h>" + ] + }, + "frameworks": "arduino", + "platforms": "*" +} + diff --git a/Marlin/lib/STM32_USB_Host_Library/src/stm32_usbh_conf.h b/Marlin/lib/STM32_USB_Host_Library/src/stm32_usbh_conf.h new file mode 100644 index 0000000000..f3a5f9eaee --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/src/stm32_usbh_conf.h @@ -0,0 +1,160 @@ +/** + ****************************************************************************** + * @file usbh_conf_template.h + * @author MCD Application Team + * @brief Header file for usbh_conf_template.c + ****************************************************************************** + * @attention + * + *

© Copyright (c) 2015 STMicroelectronics. + * All rights reserved.

+ * + * This software component is licensed by ST under Ultimate Liberty license + * SLA0044, the "License"; You may not use this file except in compliance with + * the License. You may obtain a copy of the License at: + * www.st.com/SLA0044 + * + ****************************************************************************** + */ + +/* Define to prevent recursive inclusion -------------------------------------*/ +#ifndef __STM32_USBH_CONF_H +#define __STM32_USBH_CONF_H + +#ifdef __cplusplus +extern "C" { +#endif + +/* Includes ------------------------------------------------------------------*/ +#include "stm32f4xx.h" /* replace 'stm32xxx' with your HAL driver header filename, ex: stm32f4xx.h */ +#include "stm32f4xx_hal.h" + +#include +#include +#include + +/** @addtogroup STM32_USB_HOST_LIBRARY + * @{ + */ + +/** @defgroup USBH_CONF + * @brief usb host low level driver configuration file + * @{ + */ + +/** @defgroup USBH_CONF_Exported_Defines + * @{ + */ + +#define USBH_MAX_NUM_ENDPOINTS 2U +#define USBH_MAX_NUM_INTERFACES 2U +#define USBH_MAX_NUM_CONFIGURATION 1U +#define USBH_KEEP_CFG_DESCRIPTOR 1U +#define USBH_MAX_NUM_SUPPORTED_CLASS 1U +#define USBH_MAX_SIZE_CONFIGURATION 0x200U +#define USBH_MAX_DATA_BUFFER 0x200U +#define USBH_DEBUG_LEVEL 0U +#define USBH_USE_OS 0U + + +/****************************************/ +/* #define for FS and HS identification */ +#define HOST_HS 0 +#define HOST_FS 1 + +/** @defgroup USBH_Exported_Macros + * @{ + */ + +/* Memory management macros */ +#define USBH_malloc malloc +#define USBH_free free +#define USBH_memset memset +#define USBH_memcpy memcpy + +/* DEBUG macros */ +#if (USBH_DEBUG_LEVEL > 0U) +#define USBH_UsrLog(...) do { \ + printf(__VA_ARGS__); \ + printf("\n"); \ +} while (0) +#else +#define USBH_UsrLog(...) do {} while (0) +#endif + +#if (USBH_DEBUG_LEVEL > 1U) + +#define USBH_ErrLog(...) do { \ + printf("ERROR: ") ; \ + printf(__VA_ARGS__); \ + printf("\n"); \ +} while (0) +#else +#define USBH_ErrLog(...) do {} while (0) +#endif + +#if (USBH_DEBUG_LEVEL > 2U) +#define USBH_DbgLog(...) do { \ + printf("DEBUG : ") ; \ + printf(__VA_ARGS__); \ + printf("\n"); \ +} while (0) +#else +#define USBH_DbgLog(...) do {} while (0) +#endif + +/** + * @} + */ + + + +/** + * @} + */ + + +/** @defgroup USBH_CONF_Exported_Types + * @{ + */ +/** + * @} + */ + + +/** @defgroup USBH_CONF_Exported_Macros + * @{ + */ +/** + * @} + */ + +/** @defgroup USBH_CONF_Exported_Variables + * @{ + */ +/** + * @} + */ + +/** @defgroup USBH_CONF_Exported_FunctionsPrototype + * @{ + */ +/** + * @} + */ + +#ifdef __cplusplus +} +#endif + +#endif /* __USBH_CONF_TEMPLATE_H */ + + +/** + * @} + */ + +/** + * @} + */ +/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_core.c b/Marlin/lib/STM32_USB_Host_Library/src/usbh_core.c new file mode 100644 index 0000000000..8046c14b36 --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/src/usbh_core.c @@ -0,0 +1,1416 @@ +/** + ****************************************************************************** + * @file usbh_core.c + * @author MCD Application Team + * @brief This file implements the functions for the core state machine process + * the enumeration and the control transfer process + ****************************************************************************** + * @attention + * + *

© Copyright (c) 2015 STMicroelectronics. + * All rights reserved.

+ * + * This software component is licensed by ST under Ultimate Liberty license + * SLA0044, the "License"; You may not use this file except in compliance with + * the License. You may obtain a copy of the License at: + * www.st.com/SLA0044 + * + ****************************************************************************** + */ + +/* Includes ------------------------------------------------------------------*/ +#include "usbh_core.h" + + +/** @addtogroup USBH_LIB + * @{ + */ + +/** @addtogroup USBH_LIB_CORE + * @{ + */ + +/** @defgroup USBH_CORE + * @brief This file handles the basic enumeration when a device is connected + * to the host. + * @{ + */ + + +/** @defgroup USBH_CORE_Private_Defines + * @{ + */ +#define USBH_ADDRESS_DEFAULT 0x00U +#define USBH_ADDRESS_ASSIGNED 0x01U +#define USBH_MPS_DEFAULT 0x40U +/** + * @} + */ + +/** @defgroup USBH_CORE_Private_Macros + * @{ + */ +/** + * @} + */ + + +/** @defgroup USBH_CORE_Private_Variables + * @{ + */ +#if (USBH_USE_OS == 1U) +#if (osCMSIS >= 0x20000U) +osThreadAttr_t USBH_Thread_Atrr; +#endif +#endif + + +/** + * @} + */ + + +/** @defgroup USBH_CORE_Private_Functions + * @{ + */ +static USBH_StatusTypeDef USBH_HandleEnum(USBH_HandleTypeDef *phost); +static void USBH_HandleSof(USBH_HandleTypeDef *phost); +static USBH_StatusTypeDef DeInitStateMachine(USBH_HandleTypeDef *phost); + +#if (USBH_USE_OS == 1U) +#if (osCMSIS < 0x20000U) +static void USBH_Process_OS(void const *argument); +#else +static void USBH_Process_OS(void *argument); +#endif +#endif + +typedef char bool; + +// uint8_t udiskMounted = 0; +// extern uint16_t plr_num; +extern bool plr_flag; + +/** + * @brief HCD_Init + * Initialize the HOST Core. + * @param phost: Host Handle + * @param pUsrFunc: User Callback + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_Init(USBH_HandleTypeDef *phost, + void (*pUsrFunc)(USBH_HandleTypeDef *phost, + uint8_t id), uint8_t id) +{ + /* Check whether the USB Host handle is valid */ + if (phost == NULL) + { + USBH_ErrLog("Invalid Host handle"); + return USBH_FAIL; + } + + /* Set DRiver ID */ + phost->id = id; + + /* Unlink class*/ + phost->pActiveClass = NULL; + phost->ClassNumber = 0U; + + /* Restore default states and prepare EP0 */ + DeInitStateMachine(phost); + + /* Restore default Device connection states */ + phost->device.PortEnabled = 0U; + phost->device.is_connected = 0U; + phost->device.is_disconnected = 0U; + phost->device.is_ReEnumerated = 0U; + + /* Assign User process */ + if (pUsrFunc != NULL) + { + phost->pUser = pUsrFunc; + } + +#if (USBH_USE_OS == 1U) +#if (osCMSIS < 0x20000U) + + /* Create USB Host Queue */ + osMessageQDef(USBH_Queue, MSGQUEUE_OBJECTS, uint16_t); + phost->os_event = osMessageCreate(osMessageQ(USBH_Queue), NULL); + + /* Create USB Host Task */ +#if defined (USBH_PROCESS_STACK_SIZE) + osThreadDef(USBH_Thread, USBH_Process_OS, USBH_PROCESS_PRIO, 0U, USBH_PROCESS_STACK_SIZE); +#else + osThreadDef(USBH_Thread, USBH_Process_OS, USBH_PROCESS_PRIO, 0U, 8U * configMINIMAL_STACK_SIZE); +#endif /* defined (USBH_PROCESS_STACK_SIZE) */ + + phost->thread = osThreadCreate(osThread(USBH_Thread), phost); + +#else + + /* Create USB Host Queue */ + phost->os_event = osMessageQueueNew(MSGQUEUE_OBJECTS, sizeof(uint32_t), NULL); + + /* Create USB Host Task */ + USBH_Thread_Atrr.name = "USBH_Queue"; + +#if defined (USBH_PROCESS_STACK_SIZE) + USBH_Thread_Atrr.stack_size = USBH_PROCESS_STACK_SIZE; +#else + USBH_Thread_Atrr.stack_size = (8U * configMINIMAL_STACK_SIZE); +#endif /* defined (USBH_PROCESS_STACK_SIZE) */ + + USBH_Thread_Atrr.priority = USBH_PROCESS_PRIO; + phost->thread = osThreadNew(USBH_Process_OS, phost, &USBH_Thread_Atrr); + +#endif /* (osCMSIS < 0x20000U) */ +#endif /* (USBH_USE_OS == 1U) */ + + /* Initialize low level driver */ + USBH_LL_Init(phost); + + return USBH_OK; +} + + +/** + * @brief HCD_Init + * De-Initialize the Host portion of the driver. + * @param phost: Host Handle + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_DeInit(USBH_HandleTypeDef *phost) +{ + DeInitStateMachine(phost); + + /* Restore default Device connection states */ + phost->device.PortEnabled = 0U; + phost->device.is_connected = 0U; + phost->device.is_disconnected = 0U; + phost->device.is_ReEnumerated = 0U; + phost->device.RstCnt = 0U; + phost->device.EnumCnt = 0U; + + if (phost->pData != NULL) + { + USBH_LL_Stop(phost); + } + + return USBH_OK; +} + + +/** + * @brief DeInitStateMachine + * De-Initialize the Host state machine. + * @param phost: Host Handle + * @retval USBH Status + */ +static USBH_StatusTypeDef DeInitStateMachine(USBH_HandleTypeDef *phost) +{ + uint32_t i = 0U; + + /* Clear Pipes flags*/ + for (i = 0U; i < USBH_MAX_PIPES_NBR; i++) + { + phost->Pipes[i] = 0U; + } + + for (i = 0U; i < USBH_MAX_DATA_BUFFER; i++) + { + phost->device.Data[i] = 0U; + } + + phost->gState = HOST_IDLE; + phost->EnumState = ENUM_IDLE; + phost->RequestState = CMD_SEND; + phost->Timer = 0U; + + phost->Control.state = CTRL_SETUP; + phost->Control.pipe_size = USBH_MPS_DEFAULT; + phost->Control.errorcount = 0U; + + phost->device.address = USBH_ADDRESS_DEFAULT; + phost->device.speed = USBH_SPEED_FULL; + phost->device.RstCnt = 0U; + phost->device.EnumCnt = 0U; + + return USBH_OK; +} + + +/** + * @brief USBH_RegisterClass + * Link class driver to Host Core. + * @param phost : Host Handle + * @param pclass: Class handle + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_RegisterClass(USBH_HandleTypeDef *phost, USBH_ClassTypeDef *pclass) +{ + USBH_StatusTypeDef status = USBH_OK; + + if (pclass != NULL) + { + if (phost->ClassNumber < USBH_MAX_NUM_SUPPORTED_CLASS) + { + /* link the class to the USB Host handle */ + phost->pClass[phost->ClassNumber++] = pclass; + status = USBH_OK; + } + else + { + USBH_ErrLog("Max Class Number reached"); + status = USBH_FAIL; + } + } + else + { + USBH_ErrLog("Invalid Class handle"); + status = USBH_FAIL; + } + + return status; +} + + +/** + * @brief USBH_SelectInterface + * Select current interface. + * @param phost: Host Handle + * @param interface: Interface number + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_SelectInterface(USBH_HandleTypeDef *phost, uint8_t interface) +{ + USBH_StatusTypeDef status = USBH_OK; + + if (interface < phost->device.CfgDesc.bNumInterfaces) + { + phost->device.current_interface = interface; + USBH_UsrLog("Switching to Interface (#%d)", interface); + USBH_UsrLog("Class : %xh", phost->device.CfgDesc.Itf_Desc[interface].bInterfaceClass); + USBH_UsrLog("SubClass : %xh", phost->device.CfgDesc.Itf_Desc[interface].bInterfaceSubClass); + USBH_UsrLog("Protocol : %xh", phost->device.CfgDesc.Itf_Desc[interface].bInterfaceProtocol); + } + else + { + USBH_ErrLog("Cannot Select This Interface."); + status = USBH_FAIL; + } + + return status; +} + + +/** + * @brief USBH_GetActiveClass + * Return Device Class. + * @param phost: Host Handle + * @param interface: Interface index + * @retval Class Code + */ +uint8_t USBH_GetActiveClass(USBH_HandleTypeDef *phost) +{ + return (phost->device.CfgDesc.Itf_Desc[0].bInterfaceClass); +} + + +/** + * @brief USBH_FindInterface + * Find the interface index for a specific class. + * @param phost: Host Handle + * @param Class: Class code + * @param SubClass: SubClass code + * @param Protocol: Protocol code + * @retval interface index in the configuration structure + * @note : (1)interface index 0xFF means interface index not found + */ +uint8_t USBH_FindInterface(USBH_HandleTypeDef *phost, uint8_t Class, uint8_t SubClass, uint8_t Protocol) +{ + USBH_InterfaceDescTypeDef *pif; + USBH_CfgDescTypeDef *pcfg; + uint8_t if_ix = 0U; + + pif = (USBH_InterfaceDescTypeDef *)0; + pcfg = &phost->device.CfgDesc; + + while (if_ix < USBH_MAX_NUM_INTERFACES) + { + pif = &pcfg->Itf_Desc[if_ix]; + if (((pif->bInterfaceClass == Class) || (Class == 0xFFU)) && + ((pif->bInterfaceSubClass == SubClass) || (SubClass == 0xFFU)) && + ((pif->bInterfaceProtocol == Protocol) || (Protocol == 0xFFU))) + { + return if_ix; + } + if_ix++; + } + return 0xFFU; +} + + +/** + * @brief USBH_FindInterfaceIndex + * Find the interface index for a specific class interface and alternate setting number. + * @param phost: Host Handle + * @param interface_number: interface number + * @param alt_settings : alternate setting number + * @retval interface index in the configuration structure + * @note : (1)interface index 0xFF means interface index not found + */ +uint8_t USBH_FindInterfaceIndex(USBH_HandleTypeDef *phost, uint8_t interface_number, uint8_t alt_settings) +{ + USBH_InterfaceDescTypeDef *pif; + USBH_CfgDescTypeDef *pcfg; + uint8_t if_ix = 0U; + + pif = (USBH_InterfaceDescTypeDef *)0; + pcfg = &phost->device.CfgDesc; + + while (if_ix < USBH_MAX_NUM_INTERFACES) + { + pif = &pcfg->Itf_Desc[if_ix]; + if ((pif->bInterfaceNumber == interface_number) && (pif->bAlternateSetting == alt_settings)) + { + return if_ix; + } + if_ix++; + } + return 0xFFU; +} + + +/** + * @brief USBH_Start + * Start the USB Host Core. + * @param phost: Host Handle + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_Start(USBH_HandleTypeDef *phost) +{ + /* Start the low level driver */ + USBH_LL_Start(phost); + + /* Activate VBUS on the port */ + USBH_LL_DriverVBUS(phost, TRUE); + + return USBH_OK; +} + + +/** + * @brief USBH_Stop + * Stop the USB Host Core. + * @param phost: Host Handle + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_Stop(USBH_HandleTypeDef *phost) +{ + /* DeActivate VBUS on the port */ + USBH_LL_DriverVBUS(phost, FALSE); + + /* Stop and cleanup the low level driver */ + USBH_LL_Stop(phost); + + /* Free Control Pipes */ + USBH_FreePipe(phost, phost->Control.pipe_in); + USBH_FreePipe(phost, phost->Control.pipe_out); + + return USBH_OK; +} + +#if 1//def USE_GD32 + #define RESET_ENUM_TIME 2 + static uint8_t need_reset_enum = RESET_ENUM_TIME; +#endif +/** + * @brief HCD_ReEnumerate + * Perform a new Enumeration phase. + * @param phost: Host Handle + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_ReEnumerate(USBH_HandleTypeDef *phost) +{ + if (USBH_IsPortEnabled(phost)) + { + phost->device.is_ReEnumerated = 1U; + + /* Stop Host */ + USBH_Stop(phost); + + phost->device.is_disconnected = 1U; + } + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_PORT_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + + return USBH_OK; +} + +// CONFIG_ECHO_HEADING("Linear Advance:"); +// SERIAL_ECHOLNPAIR(" M900 K", planner.extruder_advance_K[0]); +// static uint64_t pty = 0; +/** + * @brief USBH_Process + * Background process of the USB Core. + * @param phost: Host Handle + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_Process(USBH_HandleTypeDef *phost) +{ + __IO USBH_StatusTypeDef status = USBH_FAIL; + uint8_t idx = 0U; + + /* check for Host pending port disconnect event */ + if (phost->device.is_disconnected == 1U) + { + phost->gState = HOST_DEV_DISCONNECTED; + } + + switch (phost->gState) + { + case HOST_IDLE: + { + if (phost->device.is_connected) + { + USBH_UsrLog("USB Device Connected"); + + /* Wait for 200 ms after connection */ + phost->gState = HOST_DEV_WAIT_FOR_ATTACHMENT; + USBH_Delay(100U); + USBH_LL_ResetPort(phost); + + /* Make sure to start with Default address */ + phost->device.address = USBH_ADDRESS_DEFAULT; + phost->Timeout = 0U; + + #if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_PORT_EVENT; + #if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); + #else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); + #endif + #endif + } + }break; + + case HOST_DEV_WAIT_FOR_ATTACHMENT: /* Wait for Port Enabled */ + { + if (phost->device.PortEnabled == 1U) + { + USBH_UsrLog("USB Device Reset Completed"); + phost->device.RstCnt = 0U; + phost->gState = HOST_DEV_ATTACHED; + } + else + { + if (phost->Timeout > USBH_DEV_RESET_TIMEOUT) + { + phost->device.RstCnt++; + if (phost->device.RstCnt > 3U) + { + /* Buggy Device can't complete reset */ + USBH_UsrLog("USB Reset Failed, Please unplug the Device."); + phost->gState = HOST_ABORT_STATE; + } + else + { + phost->gState = HOST_IDLE; + } + } + else + { + phost->Timeout += 10U; + USBH_Delay(10U); + } + } + #if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_PORT_EVENT; + #if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); + #else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); + #endif + #endif + }break; + + case HOST_DEV_ATTACHED: + { + if (phost->pUser != NULL) + { + phost->pUser(phost, HOST_USER_CONNECTION); + } + + /* Wait for 100 ms after Reset */ + USBH_Delay(100U); + + phost->device.speed = USBH_LL_GetSpeed(phost); + + phost->gState = HOST_ENUMERATION; + + phost->Control.pipe_out = USBH_AllocPipe(phost, 0x00U); + phost->Control.pipe_in = USBH_AllocPipe(phost, 0x80U); + + /* Open Control pipes */ + USBH_OpenPipe(phost, phost->Control.pipe_in, 0x80U, + phost->device.address, phost->device.speed, + USBH_EP_CONTROL, (uint16_t)phost->Control.pipe_size); + + /* Open Control pipes */ + USBH_OpenPipe(phost, phost->Control.pipe_out, 0x00U, + phost->device.address, phost->device.speed, + USBH_EP_CONTROL, (uint16_t)phost->Control.pipe_size); + + #if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_PORT_EVENT; + #if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); + #else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); + #endif + #endif + }break; + + case HOST_ENUMERATION: + { + /* Check for enumeration status */ + status = USBH_HandleEnum(phost); + if (status == USBH_OK) + { + /* The function shall return USBH_OK when full enumeration is complete */ + USBH_UsrLog("Enumeration done."); + + phost->device.current_interface = 0U; + + if (phost->device.DevDesc.bNumConfigurations == 1U) + { + USBH_UsrLog("This device has only 1 configuration."); + phost->gState = HOST_SET_CONFIGURATION; + } + else + { + phost->gState = HOST_INPUT; + } + #if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; + #if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); + #else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); + #endif + #endif + } + }break; + + case HOST_INPUT: + { + /* user callback for end of device basic enumeration */ + if (phost->pUser != NULL) + { + phost->pUser(phost, HOST_USER_SELECT_CONFIGURATION); + phost->gState = HOST_SET_CONFIGURATION; + + #if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; + #if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); + #else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); + #endif + #endif + } + }break; + + case HOST_SET_CONFIGURATION: + { + /* set configuration */ + if (USBH_SetCfg(phost, (uint16_t)phost->device.CfgDesc.bConfigurationValue) == USBH_OK) + { + phost->gState = HOST_SET_WAKEUP_FEATURE; + USBH_UsrLog("Default configuration set."); + } + + #if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_PORT_EVENT; + #if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); + #else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); + #endif + #endif + }break; + + case HOST_SET_WAKEUP_FEATURE: + { + if ((phost->device.CfgDesc.bmAttributes) & (1U << 5)) + { + if (USBH_SetFeature(phost, FEATURE_SELECTOR_REMOTEWAKEUP) == USBH_OK) + { + USBH_UsrLog("Device remote wakeup enabled"); + phost->gState = HOST_CHECK_CLASS; + } + } + else + { + phost->gState = HOST_CHECK_CLASS; + } + + #if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_PORT_EVENT; + #if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); + #else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); + #endif + #endif + }break; + + case HOST_CHECK_CLASS: + { + if (phost->ClassNumber == 0U) + { + USBH_UsrLog("No Class has been registered."); + } + else + { + phost->pActiveClass = NULL; + + for (idx = 0U; idx < USBH_MAX_NUM_SUPPORTED_CLASS; idx++) + { + if (phost->pClass[idx]->ClassCode == phost->device.CfgDesc.Itf_Desc[0].bInterfaceClass) + { + phost->pActiveClass = phost->pClass[idx]; + break; + } + } + + if (phost->pActiveClass != NULL) + { + if (phost->pActiveClass->Init(phost) == USBH_OK) + { + phost->gState = HOST_CLASS_REQUEST; + USBH_UsrLog("%s class started.", phost->pActiveClass->Name); + + /* Inform user that a class has been activated */ + phost->pUser(phost, HOST_USER_CLASS_SELECTED); + } + else + { + phost->gState = HOST_ABORT_STATE; + USBH_UsrLog("Device not supporting %s class.", phost->pActiveClass->Name); + } + } + else + { + phost->gState = HOST_ABORT_STATE; + USBH_UsrLog("No registered class for this device."); + } + } + + #if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; + #if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); + #else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); + #endif + #endif + }break; + + case HOST_CLASS_REQUEST: + { + /* process class standard control requests state machine */ + if (phost->pActiveClass != NULL) + { + status = phost->pActiveClass->Requests(phost); + + if (status == USBH_OK) + { + phost->gState = HOST_CLASS; + // udiskMounted = 1; + // pty++; + // delay(1000); + // delay(1000); + } + else if (status == USBH_FAIL) + { + phost->gState = HOST_ABORT_STATE; + USBH_ErrLog("Device not responding Please Unplug."); + } + else + { + /* .. */ + } + } + else + { + phost->gState = HOST_ABORT_STATE; + USBH_ErrLog("Invalid Class Driver."); + } + #if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; + #if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); + #else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); + #endif + #endif + }break; + + case HOST_CLASS: + { + #if 1//def USE_GD32 + if(need_reset_enum) + { + USBH_ReEnumerate(phost); + return USBH_OK; + } + #endif + /* process class state machine */ + if (phost->pActiveClass != NULL) + { + phost->pActiveClass->BgndProcess(phost); + } + }break; + + case HOST_DEV_DISCONNECTED: + { + phost->device.is_disconnected = 0U; + + DeInitStateMachine(phost); + + /* Re-Initilaize Host for new Enumeration */ + if (phost->pActiveClass != NULL) + { + phost->pActiveClass->DeInit(phost); + phost->pActiveClass = NULL; + } + + if (phost->pUser != NULL) + { + #if 1//def USE_GD32 + if(need_reset_enum){ + need_reset_enum--; + phost->pUser(phost, HOST_USER_RESET_ENUM); + }else{ + need_reset_enum = RESET_ENUM_TIME; + phost->pUser(phost, HOST_USER_DISCONNECTION); + } + #else + phost->pUser(phost, HOST_USER_DISCONNECTION); + #endif + } + USBH_UsrLog("USB Device disconnected"); + + if (phost->device.is_ReEnumerated == 1U) + { + phost->device.is_ReEnumerated = 0U; + + /* Start the host and re-enable Vbus */ + USBH_Start(phost); + } + else + { + /* Device Disconnection Completed, start USB Driver */ + USBH_LL_Start(phost); + // udiskMounted = 2; + // plr_num = 0; + plr_flag = 0; + // pty=0; + } + + #if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_PORT_EVENT; + #if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); + #else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); + #endif + #endif + }break; + + case HOST_ABORT_STATE: + { + USBH_LL_Disconnect(phost); + if(phost->pActiveClass != NULL) + { + phost->pActiveClass->DeInit(phost); + } + DeInitStateMachine(phost); + }break; + default:break; + } + return USBH_OK; +} + + +/** + * @brief USBH_HandleEnum + * This function includes the complete enumeration process + * @param phost: Host Handle + * @retval USBH_Status + */ +static USBH_StatusTypeDef USBH_HandleEnum(USBH_HandleTypeDef *phost) +{ + USBH_StatusTypeDef Status = USBH_BUSY; + USBH_StatusTypeDef ReqStatus = USBH_BUSY; + + switch (phost->EnumState) + { + case ENUM_IDLE: + /* Get Device Desc for only 1st 8 bytes : To get EP0 MaxPacketSize */ + ReqStatus = USBH_Get_DevDesc(phost, 8U); + if (ReqStatus == USBH_OK) + { + phost->Control.pipe_size = phost->device.DevDesc.bMaxPacketSize; + + phost->EnumState = ENUM_GET_FULL_DEV_DESC; + + /* modify control channels configuration for MaxPacket size */ + USBH_OpenPipe(phost, phost->Control.pipe_in, 0x80U, phost->device.address, + phost->device.speed, USBH_EP_CONTROL, + (uint16_t)phost->Control.pipe_size); + + /* Open Control pipes */ + USBH_OpenPipe(phost, phost->Control.pipe_out, 0x00U, phost->device.address, + phost->device.speed, USBH_EP_CONTROL, + (uint16_t)phost->Control.pipe_size); + } + else if (ReqStatus == USBH_NOT_SUPPORTED) + { + USBH_ErrLog("Control error: Get Device Descriptor request failed"); + phost->device.EnumCnt++; + if (phost->device.EnumCnt > 3U) + { + /* Buggy Device can't complete get device desc request */ + USBH_UsrLog("Control error, Device not Responding Please unplug the Device."); + phost->gState = HOST_ABORT_STATE; + } + else + { + /* free control pipes */ + USBH_FreePipe(phost, phost->Control.pipe_out); + USBH_FreePipe(phost, phost->Control.pipe_in); + + /* Reset the USB Device */ + phost->gState = HOST_IDLE; + } + } + else + { + /* .. */ + } + break; + + case ENUM_GET_FULL_DEV_DESC: + /* Get FULL Device Desc */ + ReqStatus = USBH_Get_DevDesc(phost, USB_DEVICE_DESC_SIZE); + if (ReqStatus == USBH_OK) + { + USBH_UsrLog("PID: %xh", phost->device.DevDesc.idProduct); + USBH_UsrLog("VID: %xh", phost->device.DevDesc.idVendor); + + phost->EnumState = ENUM_SET_ADDR; + } + else if (ReqStatus == USBH_NOT_SUPPORTED) + { + USBH_ErrLog("Control error: Get Full Device Descriptor request failed"); + phost->device.EnumCnt++; + if (phost->device.EnumCnt > 3U) + { + /* Buggy Device can't complete get device desc request */ + USBH_UsrLog("Control error, Device not Responding Please unplug the Device."); + phost->gState = HOST_ABORT_STATE; + } + else + { + /* Free control pipes */ + USBH_FreePipe(phost, phost->Control.pipe_out); + USBH_FreePipe(phost, phost->Control.pipe_in); + + /* Reset the USB Device */ + phost->EnumState = ENUM_IDLE; + phost->gState = HOST_IDLE; + } + } + else + { + /* .. */ + } + break; + + case ENUM_SET_ADDR: + /* set address */ + ReqStatus = USBH_SetAddress(phost, USBH_DEVICE_ADDRESS); + if (ReqStatus == USBH_OK) + { + USBH_Delay(2U); + phost->device.address = USBH_DEVICE_ADDRESS; + + /* user callback for device address assigned */ + USBH_UsrLog("Address (#%d) assigned.", phost->device.address); + phost->EnumState = ENUM_GET_CFG_DESC; + + /* modify control channels to update device address */ + USBH_OpenPipe(phost, phost->Control.pipe_in, 0x80U, phost->device.address, + phost->device.speed, USBH_EP_CONTROL, + (uint16_t)phost->Control.pipe_size); + + /* Open Control pipes */ + USBH_OpenPipe(phost, phost->Control.pipe_out, 0x00U, phost->device.address, + phost->device.speed, USBH_EP_CONTROL, + (uint16_t)phost->Control.pipe_size); + } + else if (ReqStatus == USBH_NOT_SUPPORTED) + { + USBH_ErrLog("Control error: Device Set Address request failed"); + + /* Buggy Device can't complete get device desc request */ + USBH_UsrLog("Control error, Device not Responding Please unplug the Device."); + phost->gState = HOST_ABORT_STATE; + phost->EnumState = ENUM_IDLE; + } + else + { + /* .. */ + } + break; + + case ENUM_GET_CFG_DESC: + /* get standard configuration descriptor */ + ReqStatus = USBH_Get_CfgDesc(phost, USB_CONFIGURATION_DESC_SIZE); + if (ReqStatus == USBH_OK) + { + phost->EnumState = ENUM_GET_FULL_CFG_DESC; + } + else if (ReqStatus == USBH_NOT_SUPPORTED) + { + USBH_ErrLog("Control error: Get Device configuration descriptor request failed"); + phost->device.EnumCnt++; + if (phost->device.EnumCnt > 3U) + { + /* Buggy Device can't complete get device desc request */ + USBH_UsrLog("Control error, Device not Responding Please unplug the Device."); + phost->gState = HOST_ABORT_STATE; + } + else + { + /* Free control pipes */ + USBH_FreePipe(phost, phost->Control.pipe_out); + USBH_FreePipe(phost, phost->Control.pipe_in); + + /* Reset the USB Device */ + phost->EnumState = ENUM_IDLE; + phost->gState = HOST_IDLE; + } + } + else + { + /* .. */ + } + break; + + case ENUM_GET_FULL_CFG_DESC: + /* get FULL config descriptor (config, interface, endpoints) */ + ReqStatus = USBH_Get_CfgDesc(phost, phost->device.CfgDesc.wTotalLength); + if (ReqStatus == USBH_OK) + { + phost->EnumState = ENUM_GET_MFC_STRING_DESC; + } + else if (ReqStatus == USBH_NOT_SUPPORTED) + { + USBH_ErrLog("Control error: Get Device configuration descriptor request failed"); + phost->device.EnumCnt++; + if (phost->device.EnumCnt > 3U) + { + /* Buggy Device can't complete get device desc request */ + USBH_UsrLog("Control error, Device not Responding Please unplug the Device."); + phost->gState = HOST_ABORT_STATE; + } + else + { + /* Free control pipes */ + USBH_FreePipe(phost, phost->Control.pipe_out); + USBH_FreePipe(phost, phost->Control.pipe_in); + + /* Reset the USB Device */ + phost->EnumState = ENUM_IDLE; + phost->gState = HOST_IDLE; + } + } + else + { + /* .. */ + } + break; + + case ENUM_GET_MFC_STRING_DESC: + if (phost->device.DevDesc.iManufacturer != 0U) + { + /* Check that Manufacturer String is available */ + ReqStatus = USBH_Get_StringDesc(phost, phost->device.DevDesc.iManufacturer, + phost->device.Data, 0xFFU); + if (ReqStatus == USBH_OK) + { + /* User callback for Manufacturing string */ + USBH_UsrLog("Manufacturer : %s", (char *)(void *)phost->device.Data); + phost->EnumState = ENUM_GET_PRODUCT_STRING_DESC; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else if (ReqStatus == USBH_NOT_SUPPORTED) + { + USBH_UsrLog("Manufacturer : N/A"); + phost->EnumState = ENUM_GET_PRODUCT_STRING_DESC; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else + { + /* .. */ + } + } + else + { + USBH_UsrLog("Manufacturer : N/A"); + phost->EnumState = ENUM_GET_PRODUCT_STRING_DESC; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + break; + + case ENUM_GET_PRODUCT_STRING_DESC: + if (phost->device.DevDesc.iProduct != 0U) + { + /* Check that Product string is available */ + ReqStatus = USBH_Get_StringDesc(phost, phost->device.DevDesc.iProduct, + phost->device.Data, 0xFFU); + if (ReqStatus == USBH_OK) + { + /* User callback for Product string */ + USBH_UsrLog("Product : %s", (char *)(void *)phost->device.Data); + phost->EnumState = ENUM_GET_SERIALNUM_STRING_DESC; + } + else if (ReqStatus == USBH_NOT_SUPPORTED) + { + USBH_UsrLog("Product : N/A"); + phost->EnumState = ENUM_GET_SERIALNUM_STRING_DESC; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else + { + /* .. */ + } + } + else + { + USBH_UsrLog("Product : N/A"); + phost->EnumState = ENUM_GET_SERIALNUM_STRING_DESC; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + break; + + case ENUM_GET_SERIALNUM_STRING_DESC: + if (phost->device.DevDesc.iSerialNumber != 0U) + { + /* Check that Serial number string is available */ + ReqStatus = USBH_Get_StringDesc(phost, phost->device.DevDesc.iSerialNumber, + phost->device.Data, 0xFFU); + if (ReqStatus == USBH_OK) + { + /* User callback for Serial number string */ + USBH_UsrLog("Serial Number : %s", (char *)(void *)phost->device.Data); + Status = USBH_OK; + } + else if (ReqStatus == USBH_NOT_SUPPORTED) + { + USBH_UsrLog("Serial Number : N/A"); + Status = USBH_OK; + } + else + { + /* .. */ + } + } + else + { + USBH_UsrLog("Serial Number : N/A"); + Status = USBH_OK; + } + break; + + default: + break; + } + return Status; +} + + +/** + * @brief USBH_LL_SetTimer + * Set the initial Host Timer tick + * @param phost: Host Handle + * @retval None + */ +void USBH_LL_SetTimer(USBH_HandleTypeDef *phost, uint32_t time) +{ + phost->Timer = time; +} + + +/** + * @brief USBH_LL_IncTimer + * Increment Host Timer tick + * @param phost: Host Handle + * @retval None + */ +void USBH_LL_IncTimer(USBH_HandleTypeDef *phost) +{ + phost->Timer++; + USBH_HandleSof(phost); +} + + +/** + * @brief USBH_HandleSof + * Call SOF process + * @param phost: Host Handle + * @retval None + */ +static void USBH_HandleSof(USBH_HandleTypeDef *phost) +{ + if ((phost->gState == HOST_CLASS) && (phost->pActiveClass != NULL)) + { + phost->pActiveClass->SOFProcess(phost); + } +} + + +/** + * @brief USBH_PortEnabled + * Port Enabled + * @param phost: Host Handle + * @retval None + */ +void USBH_LL_PortEnabled(USBH_HandleTypeDef *phost) +{ + phost->device.PortEnabled = 1U; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_PORT_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + + return; +} + + +/** + * @brief USBH_LL_PortDisabled + * Port Disabled + * @param phost: Host Handle + * @retval None + */ +void USBH_LL_PortDisabled(USBH_HandleTypeDef *phost) +{ + phost->device.PortEnabled = 0U; + + return; +} + + +/** + * @brief HCD_IsPortEnabled + * Is Port Enabled + * @param phost: Host Handle + * @retval None + */ +uint8_t USBH_IsPortEnabled(USBH_HandleTypeDef *phost) +{ + return (phost->device.PortEnabled); +} + + +/** + * @brief USBH_LL_Connect + * Handle USB Host connexion event + * @param phost: Host Handle + * @retval USBH_Status + */ +USBH_StatusTypeDef USBH_LL_Connect(USBH_HandleTypeDef *phost) +{ + phost->device.is_connected = 1U; + phost->device.is_disconnected = 0U; + phost->device.is_ReEnumerated = 0U; + + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_PORT_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + + return USBH_OK; +} + + +/** + * @brief USBH_LL_Disconnect + * Handle USB Host disconnection event + * @param phost: Host Handle + * @retval USBH_Status + */ +USBH_StatusTypeDef USBH_LL_Disconnect(USBH_HandleTypeDef *phost) +{ + /* update device connection states */ + phost->device.is_disconnected = 1U; + phost->device.is_connected = 0U; + phost->device.PortEnabled = 0U; + + /* Stop Host */ + USBH_LL_Stop(phost); + + /* FRee Control Pipes */ + USBH_FreePipe(phost, phost->Control.pipe_in); + USBH_FreePipe(phost, phost->Control.pipe_out); +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_PORT_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + + return USBH_OK; +} + + +#if (USBH_USE_OS == 1U) +/** + * @brief USB Host Thread task + * @param pvParameters not used + * @retval None + */ + +#if (osCMSIS < 0x20000U) +static void USBH_Process_OS(void const *argument) +{ + osEvent event; + + for (;;) + { + event = osMessageGet(((USBH_HandleTypeDef *)argument)->os_event, osWaitForever); + if (event.status == osEventMessage) + { + USBH_Process((USBH_HandleTypeDef *)argument); + } + } +} +#else +static void USBH_Process_OS(void *argument) +{ + osStatus_t status; + + for (;;) + { + status = osMessageQueueGet(((USBH_HandleTypeDef *)argument)->os_event, + &((USBH_HandleTypeDef *)argument)->os_msg, NULL, osWaitForever); + if (status == osOK) + { + USBH_Process((USBH_HandleTypeDef *)argument); + } + } +} +#endif /* (osCMSIS < 0x20000U) */ + + +/** +* @brief USBH_LL_NotifyURBChange +* Notify URB state Change +* @param phost: Host handle +* @retval USBH Status +*/ +USBH_StatusTypeDef USBH_LL_NotifyURBChange(USBH_HandleTypeDef *phost) +{ + phost->os_msg = (uint32_t)USBH_PORT_EVENT; + +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif + + return USBH_OK; +} +#endif +/** + * @} + */ + +/** + * @} + */ + +/** + * @} + */ + +/** + * @} + */ + +/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_core.h b/Marlin/lib/STM32_USB_Host_Library/src/usbh_core.h new file mode 100644 index 0000000000..be5940270d --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/src/usbh_core.h @@ -0,0 +1,194 @@ +/** + ****************************************************************************** + * @file usbh_core.h + * @author MCD Application Team + * @brief Header file for usbh_core.c + ****************************************************************************** + * @attention + * + *

© Copyright (c) 2015 STMicroelectronics. + * All rights reserved.

+ * + * This software component is licensed by ST under Ultimate Liberty license + * SLA0044, the "License"; You may not use this file except in compliance with + * the License. You may obtain a copy of the License at: + * www.st.com/SLA0044 + * + ****************************************************************************** + */ +/* Define to prevent recursive ----------------------------------------------*/ +#ifndef __USBH_CORE_H +#define __USBH_CORE_H + +#ifdef __cplusplus +extern "C" { +#endif + +/* Includes ------------------------------------------------------------------*/ +#include "stm32_usbh_conf.h" +#include "usbh_def.h" +#include "usbh_ioreq.h" +#include "usbh_pipes.h" +#include "usbh_ctlreq.h" + +/** @addtogroup USBH_LIB + * @{ + */ + +/** @addtogroup USBH_LIB_CORE +* @{ +*/ + +/** @defgroup USBH_CORE + * @brief This file is the Header file for usbh_core.c + * @{ + */ + + +/** @defgroup USBH_CORE_Exported_Defines + * @{ + */ + +/** + * @} + */ +#define HOST_USER_SELECT_CONFIGURATION 0x01U +#define HOST_USER_CLASS_ACTIVE 0x02U +#define HOST_USER_CLASS_SELECTED 0x03U +#define HOST_USER_CONNECTION 0x04U +#define HOST_USER_DISCONNECTION 0x05U +#define HOST_USER_UNRECOVERED_ERROR 0x06U +#define HOST_USER_RESET_ENUM 0x07U + +// extern uint8_t udiskMounted; + +/** + * @} + */ + + + +/** @defgroup USBH_CORE_Exported_Macros + * @{ + */ + +/** + * @} + */ + +/** @defgroup USBH_CORE_Exported_Variables + * @{ + */ + +/** + * @} + */ + +/** @defgroup USBH_CORE_Exported_FunctionsPrototype + * @{ + */ + + +USBH_StatusTypeDef USBH_Init(USBH_HandleTypeDef *phost, void (*pUsrFunc)(USBH_HandleTypeDef *phost, uint8_t id), uint8_t id); +USBH_StatusTypeDef USBH_DeInit(USBH_HandleTypeDef *phost); +USBH_StatusTypeDef USBH_RegisterClass(USBH_HandleTypeDef *phost, USBH_ClassTypeDef *pclass); +USBH_StatusTypeDef USBH_SelectInterface(USBH_HandleTypeDef *phost, uint8_t interface); +uint8_t USBH_FindInterface(USBH_HandleTypeDef *phost, + uint8_t Class, + uint8_t SubClass, + uint8_t Protocol); +uint8_t USBH_GetActiveClass(USBH_HandleTypeDef *phost); + +uint8_t USBH_FindInterfaceIndex(USBH_HandleTypeDef *phost, + uint8_t interface_number, + uint8_t alt_settings); + +uint8_t USBH_IsPortEnabled(USBH_HandleTypeDef *phost); + +USBH_StatusTypeDef USBH_Start(USBH_HandleTypeDef *phost); +USBH_StatusTypeDef USBH_Stop(USBH_HandleTypeDef *phost); +USBH_StatusTypeDef USBH_Process(USBH_HandleTypeDef *phost); +USBH_StatusTypeDef USBH_ReEnumerate(USBH_HandleTypeDef *phost); + +/* USBH Low Level Driver */ +USBH_StatusTypeDef USBH_LL_Init(USBH_HandleTypeDef *phost); +USBH_StatusTypeDef USBH_LL_DeInit(USBH_HandleTypeDef *phost); +USBH_StatusTypeDef USBH_LL_Start(USBH_HandleTypeDef *phost); +USBH_StatusTypeDef USBH_LL_Stop(USBH_HandleTypeDef *phost); + +USBH_StatusTypeDef USBH_LL_Connect(USBH_HandleTypeDef *phost); +USBH_StatusTypeDef USBH_LL_Disconnect(USBH_HandleTypeDef *phost); +USBH_SpeedTypeDef USBH_LL_GetSpeed(USBH_HandleTypeDef *phost); +USBH_StatusTypeDef USBH_LL_ResetPort(USBH_HandleTypeDef *phost); +uint32_t USBH_LL_GetLastXferSize(USBH_HandleTypeDef *phost, + uint8_t pipe); + +USBH_StatusTypeDef USBH_LL_DriverVBUS(USBH_HandleTypeDef *phost, + uint8_t state); + +USBH_StatusTypeDef USBH_LL_OpenPipe(USBH_HandleTypeDef *phost, + uint8_t pipe, + uint8_t epnum, + uint8_t dev_address, + uint8_t speed, + uint8_t ep_type, + uint16_t mps); + +USBH_StatusTypeDef USBH_LL_ClosePipe(USBH_HandleTypeDef *phost, + uint8_t pipe); + +USBH_StatusTypeDef USBH_LL_SubmitURB(USBH_HandleTypeDef *phost, + uint8_t pipe, + uint8_t direction, + uint8_t ep_type, + uint8_t token, + uint8_t *pbuff, + uint16_t length, + uint8_t do_ping); + +USBH_URBStateTypeDef USBH_LL_GetURBState(USBH_HandleTypeDef *phost, + uint8_t pipe); + +#if (USBH_USE_OS == 1U) +USBH_StatusTypeDef USBH_LL_NotifyURBChange(USBH_HandleTypeDef *phost); +#endif + +USBH_StatusTypeDef USBH_LL_SetToggle(USBH_HandleTypeDef *phost, + uint8_t pipe, uint8_t toggle); + +uint8_t USBH_LL_GetToggle(USBH_HandleTypeDef *phost, uint8_t pipe); + +void USBH_LL_PortDisabled(USBH_HandleTypeDef *phost); +void USBH_LL_PortEnabled(USBH_HandleTypeDef *phost); + +/* USBH Time base */ +void USBH_LL_SetTimer(USBH_HandleTypeDef *phost, uint32_t time); +void USBH_LL_IncTimer(USBH_HandleTypeDef *phost); + +void USBH_Delay(uint32_t Delay); + +/** + * @} + */ + +#ifdef __cplusplus +} +#endif + +#endif /* __USBH_CORE_H */ +/** + * @} + */ + +/** + * @} + */ + +/** +* @} +*/ + +/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ + + + diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_ctlreq.c b/Marlin/lib/STM32_USB_Host_Library/src/usbh_ctlreq.c new file mode 100644 index 0000000000..13e777e301 --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/src/usbh_ctlreq.c @@ -0,0 +1,1003 @@ +/** + ****************************************************************************** + * @file usbh_ctlreq.c + * @author MCD Application Team + * @brief This file implements the control requests for device enumeration + ****************************************************************************** + * @attention + * + *

© Copyright (c) 2015 STMicroelectronics. + * All rights reserved.

+ * + * This software component is licensed by ST under Ultimate Liberty license + * SLA0044, the "License"; You may not use this file except in compliance with + * the License. You may obtain a copy of the License at: + * www.st.com/SLA0044 + * + ****************************************************************************** + */ + +/* Includes ------------------------------------------------------------------*/ +#include "usbh_ctlreq.h" + +/** @addtogroup USBH_LIB +* @{ +*/ + +/** @addtogroup USBH_LIB_CORE +* @{ +*/ + +/** @defgroup USBH_CTLREQ +* @brief This file implements the standard requests for device enumeration +* @{ +*/ + + +/** @defgroup USBH_CTLREQ_Private_Defines +* @{ +*/ +/** +* @} +*/ + + +/** @defgroup USBH_CTLREQ_Private_TypesDefinitions +* @{ +*/ +/** +* @} +*/ + + + +/** @defgroup USBH_CTLREQ_Private_Macros +* @{ +*/ +/** +* @} +*/ + + +/** @defgroup USBH_CTLREQ_Private_Variables +* @{ +*/ +/** +* @} +*/ + +/** @defgroup USBH_CTLREQ_Private_FunctionPrototypes +* @{ +*/ +static USBH_StatusTypeDef USBH_HandleControl(USBH_HandleTypeDef *phost); + +static void USBH_ParseDevDesc(USBH_DevDescTypeDef *dev_desc, + uint8_t *buf, uint16_t length); + +static void USBH_ParseCfgDesc(USBH_CfgDescTypeDef *cfg_desc, + uint8_t *buf, uint16_t length); + +static void USBH_ParseEPDesc(USBH_EpDescTypeDef *ep_descriptor, uint8_t *buf); +static void USBH_ParseStringDesc(uint8_t *psrc, uint8_t *pdest, uint16_t length); +static void USBH_ParseInterfaceDesc(USBH_InterfaceDescTypeDef *if_descriptor, uint8_t *buf); + + +/** +* @} +*/ + + +/** @defgroup USBH_CTLREQ_Private_Functions +* @{ +*/ + + +/** + * @brief USBH_Get_DevDesc + * Issue Get Device Descriptor command to the device. Once the response + * received, it parses the device descriptor and updates the status. + * @param phost: Host Handle + * @param length: Length of the descriptor + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_Get_DevDesc(USBH_HandleTypeDef *phost, uint8_t length) +{ + USBH_StatusTypeDef status; + + if ((status = USBH_GetDescriptor(phost, + USB_REQ_RECIPIENT_DEVICE | USB_REQ_TYPE_STANDARD, + USB_DESC_DEVICE, phost->device.Data, + (uint16_t)length)) == USBH_OK) + { + /* Commands successfully sent and Response Received */ + USBH_ParseDevDesc(&phost->device.DevDesc, phost->device.Data, + (uint16_t)length); + } + + return status; +} + + +/** + * @brief USBH_Get_CfgDesc + * Issues Configuration Descriptor to the device. Once the response + * received, it parses the configuration descriptor and updates the + * status. + * @param phost: Host Handle + * @param length: Length of the descriptor + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_Get_CfgDesc(USBH_HandleTypeDef *phost, + uint16_t length) + +{ + USBH_StatusTypeDef status; + uint8_t *pData = phost->device.CfgDesc_Raw;; + + if ((status = USBH_GetDescriptor(phost, (USB_REQ_RECIPIENT_DEVICE | USB_REQ_TYPE_STANDARD), + USB_DESC_CONFIGURATION, pData, length)) == USBH_OK) + { + /* Commands successfully sent and Response Received */ + USBH_ParseCfgDesc(&phost->device.CfgDesc, pData, length); + } + + return status; +} + + +/** + * @brief USBH_Get_StringDesc + * Issues string Descriptor command to the device. Once the response + * received, it parses the string descriptor and updates the status. + * @param phost: Host Handle + * @param string_index: String index for the descriptor + * @param buff: Buffer address for the descriptor + * @param length: Length of the descriptor + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_Get_StringDesc(USBH_HandleTypeDef *phost, + uint8_t string_index, uint8_t *buff, + uint16_t length) +{ + USBH_StatusTypeDef status; + + if ((status = USBH_GetDescriptor(phost, + USB_REQ_RECIPIENT_DEVICE | USB_REQ_TYPE_STANDARD, + USB_DESC_STRING | string_index, + phost->device.Data, length)) == USBH_OK) + { + /* Commands successfully sent and Response Received */ + USBH_ParseStringDesc(phost->device.Data, buff, length); + } + + return status; +} + + +/** + * @brief USBH_GetDescriptor + * Issues Descriptor command to the device. Once the response received, + * it parses the descriptor and updates the status. + * @param phost: Host Handle + * @param req_type: Descriptor type + * @param value_idx: Value for the GetDescriptr request + * @param buff: Buffer to store the descriptor + * @param length: Length of the descriptor + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_GetDescriptor(USBH_HandleTypeDef *phost, + uint8_t req_type, + uint16_t value_idx, + uint8_t *buff, + uint16_t length) +{ + if (phost->RequestState == CMD_SEND) + { + phost->Control.setup.b.bmRequestType = USB_D2H | req_type; + phost->Control.setup.b.bRequest = USB_REQ_GET_DESCRIPTOR; + phost->Control.setup.b.wValue.w = value_idx; + + if ((value_idx & 0xff00U) == USB_DESC_STRING) + { + phost->Control.setup.b.wIndex.w = 0x0409U; + } + else + { + phost->Control.setup.b.wIndex.w = 0U; + } + phost->Control.setup.b.wLength.w = length; + } + + return USBH_CtlReq(phost, buff, length); +} + + +/** + * @brief USBH_SetAddress + * This command sets the address to the connected device + * @param phost: Host Handle + * @param DeviceAddress: Device address to assign + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_SetAddress(USBH_HandleTypeDef *phost, + uint8_t DeviceAddress) +{ + if (phost->RequestState == CMD_SEND) + { + phost->Control.setup.b.bmRequestType = USB_H2D | USB_REQ_RECIPIENT_DEVICE | \ + USB_REQ_TYPE_STANDARD; + + phost->Control.setup.b.bRequest = USB_REQ_SET_ADDRESS; + + phost->Control.setup.b.wValue.w = (uint16_t)DeviceAddress; + phost->Control.setup.b.wIndex.w = 0U; + phost->Control.setup.b.wLength.w = 0U; + } + + return USBH_CtlReq(phost, 0U, 0U); +} + + +/** + * @brief USBH_SetCfg + * The command sets the configuration value to the connected device + * @param phost: Host Handle + * @param cfg_idx: Configuration value + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_SetCfg(USBH_HandleTypeDef *phost, uint16_t cfg_idx) +{ + if (phost->RequestState == CMD_SEND) + { + phost->Control.setup.b.bmRequestType = USB_H2D | USB_REQ_RECIPIENT_DEVICE + | USB_REQ_TYPE_STANDARD; + + phost->Control.setup.b.bRequest = USB_REQ_SET_CONFIGURATION; + phost->Control.setup.b.wValue.w = cfg_idx; + phost->Control.setup.b.wIndex.w = 0U; + phost->Control.setup.b.wLength.w = 0U; + } + + return USBH_CtlReq(phost, 0U, 0U); +} + + +/** + * @brief USBH_SetInterface + * The command sets the Interface value to the connected device + * @param phost: Host Handle + * @param altSetting: Interface value + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_SetInterface(USBH_HandleTypeDef *phost, uint8_t ep_num, + uint8_t altSetting) +{ + if (phost->RequestState == CMD_SEND) + { + phost->Control.setup.b.bmRequestType = USB_H2D | USB_REQ_RECIPIENT_INTERFACE + | USB_REQ_TYPE_STANDARD; + + phost->Control.setup.b.bRequest = USB_REQ_SET_INTERFACE; + phost->Control.setup.b.wValue.w = altSetting; + phost->Control.setup.b.wIndex.w = ep_num; + phost->Control.setup.b.wLength.w = 0U; + } + + return USBH_CtlReq(phost, 0U, 0U); +} + + +/** + * @brief USBH_SetFeature + * The command sets the device features (remote wakeup feature,..) + * @param pdev: Selected device + * @param itf_idx + * @retval Status +*/ +USBH_StatusTypeDef USBH_SetFeature(USBH_HandleTypeDef *phost, uint8_t wValue) +{ + if (phost->RequestState == CMD_SEND) + { + phost->Control.setup.b.bmRequestType = USB_H2D | USB_REQ_RECIPIENT_DEVICE + | USB_REQ_TYPE_STANDARD; + + phost->Control.setup.b.bRequest = USB_REQ_SET_FEATURE; + phost->Control.setup.b.wValue.w = wValue; + phost->Control.setup.b.wIndex.w = 0U; + phost->Control.setup.b.wLength.w = 0U; + } + + return USBH_CtlReq(phost, 0U, 0U); +} + + +/** + * @brief USBH_ClrFeature + * This request is used to clear or disable a specific feature. + * @param phost: Host Handle + * @param ep_num: endpoint number + * @param hc_num: Host channel number + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_ClrFeature(USBH_HandleTypeDef *phost, uint8_t ep_num) +{ + if (phost->RequestState == CMD_SEND) + { + phost->Control.setup.b.bmRequestType = USB_H2D | USB_REQ_RECIPIENT_ENDPOINT + | USB_REQ_TYPE_STANDARD; + + phost->Control.setup.b.bRequest = USB_REQ_CLEAR_FEATURE; + phost->Control.setup.b.wValue.w = FEATURE_SELECTOR_ENDPOINT; + phost->Control.setup.b.wIndex.w = ep_num; + phost->Control.setup.b.wLength.w = 0U; + } + return USBH_CtlReq(phost, 0U, 0U); +} + + +/** + * @brief USBH_ParseDevDesc + * This function Parses the device descriptor + * @param dev_desc: device_descriptor destination address + * @param buf: Buffer where the source descriptor is available + * @param length: Length of the descriptor + * @retval None + */ +static void USBH_ParseDevDesc(USBH_DevDescTypeDef *dev_desc, uint8_t *buf, + uint16_t length) +{ + dev_desc->bLength = *(uint8_t *)(buf + 0); + dev_desc->bDescriptorType = *(uint8_t *)(buf + 1); + dev_desc->bcdUSB = LE16(buf + 2); + dev_desc->bDeviceClass = *(uint8_t *)(buf + 4); + dev_desc->bDeviceSubClass = *(uint8_t *)(buf + 5); + dev_desc->bDeviceProtocol = *(uint8_t *)(buf + 6); + dev_desc->bMaxPacketSize = *(uint8_t *)(buf + 7); + + if (length > 8U) + { + /* For 1st time after device connection, Host may issue only 8 bytes for + Device Descriptor Length */ + dev_desc->idVendor = LE16(buf + 8); + dev_desc->idProduct = LE16(buf + 10); + dev_desc->bcdDevice = LE16(buf + 12); + dev_desc->iManufacturer = *(uint8_t *)(buf + 14); + dev_desc->iProduct = *(uint8_t *)(buf + 15); + dev_desc->iSerialNumber = *(uint8_t *)(buf + 16); + dev_desc->bNumConfigurations = *(uint8_t *)(buf + 17); + } +} + + +/** + * @brief USBH_ParseCfgDesc + * This function Parses the configuration descriptor + * @param cfg_desc: Configuration Descriptor address + * @param buf: Buffer where the source descriptor is available + * @param length: Length of the descriptor + * @retval None + */ +static void USBH_ParseCfgDesc(USBH_CfgDescTypeDef *cfg_desc, uint8_t *buf, + uint16_t length) +{ + USBH_InterfaceDescTypeDef *pif ; + USBH_EpDescTypeDef *pep; + USBH_DescHeader_t *pdesc = (USBH_DescHeader_t *)(void *)buf; + uint16_t ptr; + uint8_t if_ix = 0U; + uint8_t ep_ix = 0U; + + pdesc = (USBH_DescHeader_t *)(void *)buf; + + /* Parse configuration descriptor */ + cfg_desc->bLength = *(uint8_t *)(buf + 0); + cfg_desc->bDescriptorType = *(uint8_t *)(buf + 1); + cfg_desc->wTotalLength = LE16(buf + 2); + cfg_desc->bNumInterfaces = *(uint8_t *)(buf + 4); + cfg_desc->bConfigurationValue = *(uint8_t *)(buf + 5); + cfg_desc->iConfiguration = *(uint8_t *)(buf + 6); + cfg_desc->bmAttributes = *(uint8_t *)(buf + 7); + cfg_desc->bMaxPower = *(uint8_t *)(buf + 8); + + if (length > USB_CONFIGURATION_DESC_SIZE) + { + ptr = USB_LEN_CFG_DESC; + pif = (USBH_InterfaceDescTypeDef *)0; + + while ((if_ix < USBH_MAX_NUM_INTERFACES) && (ptr < cfg_desc->wTotalLength)) + { + pdesc = USBH_GetNextDesc((uint8_t *)(void *)pdesc, &ptr); + if (pdesc->bDescriptorType == USB_DESC_TYPE_INTERFACE) + { + pif = &cfg_desc->Itf_Desc[if_ix]; + USBH_ParseInterfaceDesc(pif, (uint8_t *)(void *)pdesc); + + ep_ix = 0U; + pep = (USBH_EpDescTypeDef *)0; + while ((ep_ix < pif->bNumEndpoints) && (ptr < cfg_desc->wTotalLength)) + { + pdesc = USBH_GetNextDesc((uint8_t *)(void *)pdesc, &ptr); + if (pdesc->bDescriptorType == USB_DESC_TYPE_ENDPOINT) + { + pep = &cfg_desc->Itf_Desc[if_ix].Ep_Desc[ep_ix]; + USBH_ParseEPDesc(pep, (uint8_t *)(void *)pdesc); + ep_ix++; + } + } + if_ix++; + } + } + } +} + + +/** + * @brief USBH_ParseInterfaceDesc + * This function Parses the interface descriptor + * @param if_descriptor : Interface descriptor destination + * @param buf: Buffer where the descriptor data is available + * @retval None + */ +static void USBH_ParseInterfaceDesc(USBH_InterfaceDescTypeDef *if_descriptor, + uint8_t *buf) +{ + if_descriptor->bLength = *(uint8_t *)(buf + 0); + if_descriptor->bDescriptorType = *(uint8_t *)(buf + 1); + if_descriptor->bInterfaceNumber = *(uint8_t *)(buf + 2); + if_descriptor->bAlternateSetting = *(uint8_t *)(buf + 3); + if_descriptor->bNumEndpoints = *(uint8_t *)(buf + 4); + if_descriptor->bInterfaceClass = *(uint8_t *)(buf + 5); + if_descriptor->bInterfaceSubClass = *(uint8_t *)(buf + 6); + if_descriptor->bInterfaceProtocol = *(uint8_t *)(buf + 7); + if_descriptor->iInterface = *(uint8_t *)(buf + 8); +} + + +/** + * @brief USBH_ParseEPDesc + * This function Parses the endpoint descriptor + * @param ep_descriptor: Endpoint descriptor destination address + * @param buf: Buffer where the parsed descriptor stored + * @retval None + */ +static void USBH_ParseEPDesc(USBH_EpDescTypeDef *ep_descriptor, + uint8_t *buf) +{ + ep_descriptor->bLength = *(uint8_t *)(buf + 0); + ep_descriptor->bDescriptorType = *(uint8_t *)(buf + 1); + ep_descriptor->bEndpointAddress = *(uint8_t *)(buf + 2); + ep_descriptor->bmAttributes = *(uint8_t *)(buf + 3); + ep_descriptor->wMaxPacketSize = LE16(buf + 4); + ep_descriptor->bInterval = *(uint8_t *)(buf + 6); +} + + +/** + * @brief USBH_ParseStringDesc + * This function Parses the string descriptor + * @param psrc: Source pointer containing the descriptor data + * @param pdest: Destination address pointer + * @param length: Length of the descriptor + * @retval None + */ +static void USBH_ParseStringDesc(uint8_t *psrc, uint8_t *pdest, uint16_t length) +{ + uint16_t strlength; + uint16_t idx; + + /* The UNICODE string descriptor is not NULL-terminated. The string length is + computed by substracting two from the value of the first byte of the descriptor. + */ + + /* Check which is lower size, the Size of string or the length of bytes read + from the device */ + + if (psrc[1] == USB_DESC_TYPE_STRING) + { + /* Make sure the Descriptor is String Type */ + + /* psrc[0] contains Size of Descriptor, subtract 2 to get the length of string */ + strlength = ((((uint16_t)psrc[0] - 2U) <= length) ? ((uint16_t)psrc[0] - 2U) : length); + + /* Adjust the offset ignoring the String Len and Descriptor type */ + psrc += 2U; + + for (idx = 0U; idx < strlength; idx += 2U) + { + /* Copy Only the string and ignore the UNICODE ID, hence add the src */ + *pdest = psrc[idx]; + pdest++; + } + *pdest = 0U; /* mark end of string */ + } +} + + +/** + * @brief USBH_GetNextDesc + * This function return the next descriptor header + * @param buf: Buffer where the cfg descriptor is available + * @param ptr: data pointer inside the cfg descriptor + * @retval next header + */ +USBH_DescHeader_t *USBH_GetNextDesc(uint8_t *pbuf, uint16_t *ptr) +{ + USBH_DescHeader_t *pnext; + + *ptr += ((USBH_DescHeader_t *)(void *)pbuf)->bLength; + pnext = (USBH_DescHeader_t *)(void *)((uint8_t *)(void *)pbuf + \ + ((USBH_DescHeader_t *)(void *)pbuf)->bLength); + + return (pnext); +} + + +/** + * @brief USBH_CtlReq + * USBH_CtlReq sends a control request and provide the status after + * completion of the request + * @param phost: Host Handle + * @param req: Setup Request Structure + * @param buff: data buffer address to store the response + * @param length: length of the response + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_CtlReq(USBH_HandleTypeDef *phost, uint8_t *buff, + uint16_t length) +{ + USBH_StatusTypeDef status; + status = USBH_BUSY; + + switch (phost->RequestState) + { + case CMD_SEND: + /* Start a SETUP transfer */ + phost->Control.buff = buff; + phost->Control.length = length; + phost->Control.state = CTRL_SETUP; + phost->RequestState = CMD_WAIT; + status = USBH_BUSY; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + break; + + case CMD_WAIT: + status = USBH_HandleControl(phost); + if ((status == USBH_OK) || (status == USBH_NOT_SUPPORTED)) + { + /* Transaction completed, move control state to idle */ + phost->RequestState = CMD_SEND; + phost->Control.state = CTRL_IDLE; + } + else if (status == USBH_FAIL) + { + /* Failure Mode */ + phost->RequestState = CMD_SEND; + } + else + { + /* .. */ + } +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + break; + + default: + break; + } + return status; +} + + +/** + * @brief USBH_HandleControl + * Handles the USB control transfer state machine + * @param phost: Host Handle + * @retval USBH Status + */ +static USBH_StatusTypeDef USBH_HandleControl(USBH_HandleTypeDef *phost) +{ + uint8_t direction; + USBH_StatusTypeDef status = USBH_BUSY; + USBH_URBStateTypeDef URB_Status = USBH_URB_IDLE; + + switch (phost->Control.state) + { + case CTRL_SETUP: + /* send a SETUP packet */ + USBH_CtlSendSetup(phost, (uint8_t *)(void *)phost->Control.setup.d8, + phost->Control.pipe_out); + + phost->Control.state = CTRL_SETUP_WAIT; + break; + + case CTRL_SETUP_WAIT: + + URB_Status = USBH_LL_GetURBState(phost, phost->Control.pipe_out); + /* case SETUP packet sent successfully */ + if (URB_Status == USBH_URB_DONE) + { + direction = (phost->Control.setup.b.bmRequestType & USB_REQ_DIR_MASK); + + /* check if there is a data stage */ + if (phost->Control.setup.b.wLength.w != 0U) + { + if (direction == USB_D2H) + { + /* Data Direction is IN */ + phost->Control.state = CTRL_DATA_IN; + } + else + { + /* Data Direction is OUT */ + phost->Control.state = CTRL_DATA_OUT; + } + } + /* No DATA stage */ + else + { + /* If there is No Data Transfer Stage */ + if (direction == USB_D2H) + { + /* Data Direction is IN */ + phost->Control.state = CTRL_STATUS_OUT; + } + else + { + /* Data Direction is OUT */ + phost->Control.state = CTRL_STATUS_IN; + } + } + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else + { + if ((URB_Status == USBH_URB_ERROR) || (URB_Status == USBH_URB_NOTREADY)) + { + phost->Control.state = CTRL_ERROR; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + } + break; + + case CTRL_DATA_IN: + /* Issue an IN token */ + phost->Control.timer = (uint16_t)phost->Timer; + USBH_CtlReceiveData(phost, phost->Control.buff, phost->Control.length, + phost->Control.pipe_in); + + phost->Control.state = CTRL_DATA_IN_WAIT; + break; + + case CTRL_DATA_IN_WAIT: + + URB_Status = USBH_LL_GetURBState(phost, phost->Control.pipe_in); + + /* check is DATA packet transferred successfully */ + if (URB_Status == USBH_URB_DONE) + { + phost->Control.state = CTRL_STATUS_OUT; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + + /* manage error cases*/ + if (URB_Status == USBH_URB_STALL) + { + /* In stall case, return to previous machine state*/ + status = USBH_NOT_SUPPORTED; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else + { + if (URB_Status == USBH_URB_ERROR) + { + /* Device error */ + phost->Control.state = CTRL_ERROR; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + } + break; + + case CTRL_DATA_OUT: + + USBH_CtlSendData(phost, phost->Control.buff, phost->Control.length, + phost->Control.pipe_out, 1U); + + phost->Control.timer = (uint16_t)phost->Timer; + phost->Control.state = CTRL_DATA_OUT_WAIT; + break; + + case CTRL_DATA_OUT_WAIT: + + URB_Status = USBH_LL_GetURBState(phost, phost->Control.pipe_out); + + if (URB_Status == USBH_URB_DONE) + { + /* If the Setup Pkt is sent successful, then change the state */ + phost->Control.state = CTRL_STATUS_IN; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + + /* handle error cases */ + else if (URB_Status == USBH_URB_STALL) + { + /* In stall case, return to previous machine state*/ + phost->Control.state = CTRL_STALLED; + status = USBH_NOT_SUPPORTED; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else if (URB_Status == USBH_URB_NOTREADY) + { + /* Nack received from device */ + phost->Control.state = CTRL_DATA_OUT; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else + { + if (URB_Status == USBH_URB_ERROR) + { + /* device error */ + phost->Control.state = CTRL_ERROR; + status = USBH_FAIL; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + } + break; + + case CTRL_STATUS_IN: + /* Send 0 bytes out packet */ + USBH_CtlReceiveData(phost, 0U, 0U, phost->Control.pipe_in); + + phost->Control.timer = (uint16_t)phost->Timer; + phost->Control.state = CTRL_STATUS_IN_WAIT; + + break; + + case CTRL_STATUS_IN_WAIT: + + URB_Status = USBH_LL_GetURBState(phost, phost->Control.pipe_in); + + if (URB_Status == USBH_URB_DONE) + { + /* Control transfers completed, Exit the State Machine */ + phost->Control.state = CTRL_COMPLETE; + status = USBH_OK; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else if (URB_Status == USBH_URB_ERROR) + { + phost->Control.state = CTRL_ERROR; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else + { + if (URB_Status == USBH_URB_STALL) + { + /* Control transfers completed, Exit the State Machine */ + status = USBH_NOT_SUPPORTED; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + } + break; + + case CTRL_STATUS_OUT: + USBH_CtlSendData(phost, 0U, 0U, phost->Control.pipe_out, 1U); + + phost->Control.timer = (uint16_t)phost->Timer; + phost->Control.state = CTRL_STATUS_OUT_WAIT; + break; + + case CTRL_STATUS_OUT_WAIT: + URB_Status = USBH_LL_GetURBState(phost, phost->Control.pipe_out); + if (URB_Status == USBH_URB_DONE) + { + status = USBH_OK; + phost->Control.state = CTRL_COMPLETE; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else if (URB_Status == USBH_URB_NOTREADY) + { + phost->Control.state = CTRL_STATUS_OUT; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else + { + if (URB_Status == USBH_URB_ERROR) + { + phost->Control.state = CTRL_ERROR; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + } + break; + + case CTRL_ERROR: + /* + After a halt condition is encountered or an error is detected by the + host, a control endpoint is allowed to recover by accepting the next Setup + PID; i.e., recovery actions via some other pipe are not required for control + endpoints. For the Default Control Pipe, a device reset will ultimately be + required to clear the halt or error condition if the next Setup PID is not + accepted. + */ + if (++phost->Control.errorcount <= USBH_MAX_ERROR_COUNT) + { + /* Do the transmission again, starting from SETUP Packet */ + phost->Control.state = CTRL_SETUP; + phost->RequestState = CMD_SEND; + } + else + { + phost->pUser(phost, HOST_USER_UNRECOVERED_ERROR); + phost->Control.errorcount = 0U; + USBH_ErrLog("Control error: Device not responding"); + + /* Free control pipes */ + USBH_FreePipe(phost, phost->Control.pipe_out); + USBH_FreePipe(phost, phost->Control.pipe_in); + + phost->gState = HOST_IDLE; + status = USBH_FAIL; + } + break; + + default: + break; + } + + return status; +} + +/** +* @} +*/ + +/** +* @} +*/ + +/** +* @} +*/ + +/** +* @} +*/ + +/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ + + + + diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_ctlreq.h b/Marlin/lib/STM32_USB_Host_Library/src/usbh_ctlreq.h new file mode 100644 index 0000000000..ca6ca6afb3 --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/src/usbh_ctlreq.h @@ -0,0 +1,141 @@ +/** + ****************************************************************************** + * @file usbh_ctlreq.h + * @author MCD Application Team + * @brief Header file for usbh_ctlreq.c + ****************************************************************************** + * @attention + * + *

© Copyright (c) 2015 STMicroelectronics. + * All rights reserved.

+ * + * This software component is licensed by ST under Ultimate Liberty license + * SLA0044, the "License"; You may not use this file except in compliance with + * the License. You may obtain a copy of the License at: + * www.st.com/SLA0044 + * + ****************************************************************************** + */ + +/* Define to prevent recursive ----------------------------------------------*/ +#ifndef __USBH_CTLREQ_H +#define __USBH_CTLREQ_H + +#ifdef __cplusplus +extern "C" { +#endif + +/* Includes ------------------------------------------------------------------*/ +#include "usbh_core.h" + +/** @addtogroup USBH_LIB + * @{ + */ + +/** @addtogroup USBH_LIB_CORE +* @{ +*/ + +/** @defgroup USBH_CTLREQ + * @brief This file is the + * @{ + */ + + +/** @defgroup USBH_CTLREQ_Exported_Defines + * @{ + */ +/*Standard Feature Selector for clear feature command*/ +#define FEATURE_SELECTOR_ENDPOINT 0x00U +#define FEATURE_SELECTOR_DEVICE 0x01U +#define FEATURE_SELECTOR_REMOTEWAKEUP 0X01U + + +#define INTERFACE_DESC_TYPE 0x04U +#define ENDPOINT_DESC_TYPE 0x05U +#define INTERFACE_DESC_SIZE 0x09U + +/** + * @} + */ + + +/** @defgroup USBH_CTLREQ_Exported_Types + * @{ + */ +/** + * @} + */ + + +/** @defgroup USBH_CTLREQ_Exported_Macros + * @{ + */ +/** + * @} + */ + +/** @defgroup USBH_CTLREQ_Exported_Variables + * @{ + */ +extern uint8_t USBH_CfgDesc[512]; +/** + * @} + */ + +/** @defgroup USBH_CTLREQ_Exported_FunctionsPrototype + * @{ + */ +USBH_StatusTypeDef USBH_CtlReq(USBH_HandleTypeDef *phost, uint8_t *buff, + uint16_t length); + +USBH_StatusTypeDef USBH_GetDescriptor(USBH_HandleTypeDef *phost, + uint8_t req_type, uint16_t value_idx, + uint8_t *buff, uint16_t length); + +USBH_StatusTypeDef USBH_Get_DevDesc(USBH_HandleTypeDef *phost, uint8_t length); + +USBH_StatusTypeDef USBH_Get_StringDesc(USBH_HandleTypeDef *phost, + uint8_t string_index, uint8_t *buff, + uint16_t length); + +USBH_StatusTypeDef USBH_SetCfg(USBH_HandleTypeDef *phost, uint16_t cfg_idx); + +USBH_StatusTypeDef USBH_Get_CfgDesc(USBH_HandleTypeDef *phost, uint16_t length); + +USBH_StatusTypeDef USBH_SetAddress(USBH_HandleTypeDef *phost, + uint8_t DeviceAddress); + +USBH_StatusTypeDef USBH_SetInterface(USBH_HandleTypeDef *phost, uint8_t ep_num, + uint8_t altSetting); + +USBH_StatusTypeDef USBH_SetFeature(USBH_HandleTypeDef *phost, uint8_t wValue); + +USBH_StatusTypeDef USBH_ClrFeature(USBH_HandleTypeDef *phost, uint8_t ep_num); + +USBH_DescHeader_t *USBH_GetNextDesc(uint8_t *pbuf, uint16_t *ptr); +/** + * @} + */ + +#ifdef __cplusplus +} +#endif + +#endif /* __USBH_CTLREQ_H */ + +/** + * @} + */ + +/** + * @} + */ + +/** +* @} +*/ + +/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ + + diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_def.h b/Marlin/lib/STM32_USB_Host_Library/src/usbh_def.h new file mode 100644 index 0000000000..303c0289ea --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/src/usbh_def.h @@ -0,0 +1,500 @@ +/** + ****************************************************************************** + * @file usbh_def.h + * @author MCD Application Team + * @brief Definitions used in the USB host library + ****************************************************************************** + * @attention + * + *

© Copyright (c) 2015 STMicroelectronics. + * All rights reserved.

+ * + * This software component is licensed by ST under Ultimate Liberty license + * SLA0044, the "License"; You may not use this file except in compliance with + * the License. You may obtain a copy of the License at: + * www.st.com/SLA0044 + * + ****************************************************************************** + */ + +/* Define to prevent recursive ----------------------------------------------*/ +#ifndef USBH_DEF_H +#define USBH_DEF_H + +#ifdef __cplusplus +extern "C" { +#endif + +/* Includes ------------------------------------------------------------------*/ +#include "stm32_usbh_conf.h" + +/** @addtogroup USBH_LIB + * @{ + */ + +/** @addtogroup USBH_LIB_CORE +* @{ +*/ + +/** @defgroup USBH_DEF + * @brief This file is includes USB descriptors + * @{ + */ + +#ifndef NULL +#define NULL 0U +#endif + +#ifndef FALSE +#define FALSE 0U +#endif + +#ifndef TRUE +#define TRUE 1U +#endif + +#ifndef USBH_DEV_RESET_TIMEOUT +#define USBH_DEV_RESET_TIMEOUT 1000U +#endif + +#define ValBit(VAR,POS) (VAR & (1 << POS)) +#define SetBit(VAR,POS) (VAR |= (1 << POS)) +#define ClrBit(VAR,POS) (VAR &= ((1 << POS)^255)) + +#define LE16(addr) (((uint16_t)(addr)[0]) | \ + ((uint16_t)(((uint32_t)(addr)[1]) << 8))) + +#define LE24(addr) (((uint32_t)(addr)[0]) | \ + (((uint32_t)(addr)[1]) << 8) | \ + (((uint32_t)(addr)[2]) << 16)) + +#define LE32(addr) (((uint32_t)(addr)[0]) | \ + (((uint32_t)(addr)[1]) << 8) | \ + (((uint32_t)(addr)[2]) << 16) | \ + (((uint32_t)(addr)[3]) << 24)) + +#define LE64(addr) (((uint64_t)(addr)[0]) | \ + (((uint64_t)(addr)[1]) << 8) | \ + (((uint64_t)(addr)[2]) << 16) | \ + (((uint64_t)(addr)[3]) << 24) | \ + (((uint64_t)(addr)[4]) << 32) | \ + (((uint64_t)(addr)[5]) << 40) | \ + (((uint64_t)(addr)[6]) << 48) | \ + (((uint64_t)(addr)[7]) << 56)) + +#define LE16S(addr) ((int16_t)(LE16((addr)))) +#define LE24S(addr) ((int32_t)(LE24((addr)))) +#define LE32S(addr) ((int32_t)(LE32((addr)))) +#define LE64S(addr) ((int64_t)(LE64((addr)))) + + + +#define USB_LEN_DESC_HDR 0x02U +#define USB_LEN_DEV_DESC 0x12U +#define USB_LEN_CFG_DESC 0x09U +#define USB_LEN_IF_DESC 0x09U +#define USB_LEN_EP_DESC 0x07U +#define USB_LEN_OTG_DESC 0x03U +#define USB_LEN_SETUP_PKT 0x08U + +/* bmRequestType :D7 Data Phase Transfer Direction */ +#define USB_REQ_DIR_MASK 0x80U +#define USB_H2D 0x00U +#define USB_D2H 0x80U + +/* bmRequestType D6..5 Type */ +#define USB_REQ_TYPE_STANDARD 0x00U +#define USB_REQ_TYPE_CLASS 0x20U +#define USB_REQ_TYPE_VENDOR 0x40U +#define USB_REQ_TYPE_RESERVED 0x60U + +/* bmRequestType D4..0 Recipient */ +#define USB_REQ_RECIPIENT_DEVICE 0x00U +#define USB_REQ_RECIPIENT_INTERFACE 0x01U +#define USB_REQ_RECIPIENT_ENDPOINT 0x02U +#define USB_REQ_RECIPIENT_OTHER 0x03U + +/* Table 9-4. Standard Request Codes */ +/* bRequest , Value */ +#define USB_REQ_GET_STATUS 0x00U +#define USB_REQ_CLEAR_FEATURE 0x01U +#define USB_REQ_SET_FEATURE 0x03U +#define USB_REQ_SET_ADDRESS 0x05U +#define USB_REQ_GET_DESCRIPTOR 0x06U +#define USB_REQ_SET_DESCRIPTOR 0x07U +#define USB_REQ_GET_CONFIGURATION 0x08U +#define USB_REQ_SET_CONFIGURATION 0x09U +#define USB_REQ_GET_INTERFACE 0x0AU +#define USB_REQ_SET_INTERFACE 0x0BU +#define USB_REQ_SYNCH_FRAME 0x0CU + +/* Table 9-5. Descriptor Types of USB Specifications */ +#define USB_DESC_TYPE_DEVICE 0x01U +#define USB_DESC_TYPE_CONFIGURATION 0x02U +#define USB_DESC_TYPE_STRING 0x03U +#define USB_DESC_TYPE_INTERFACE 0x04U +#define USB_DESC_TYPE_ENDPOINT 0x05U +#define USB_DESC_TYPE_DEVICE_QUALIFIER 0x06U +#define USB_DESC_TYPE_OTHER_SPEED_CONFIGURATION 0x07U +#define USB_DESC_TYPE_INTERFACE_POWER 0x08U +#define USB_DESC_TYPE_HID 0x21U +#define USB_DESC_TYPE_HID_REPORT 0x22U + + +#define USB_DEVICE_DESC_SIZE 0x12U +#define USB_CONFIGURATION_DESC_SIZE 0x09U +#define USB_HID_DESC_SIZE 0x09U +#define USB_INTERFACE_DESC_SIZE 0x09U +#define USB_ENDPOINT_DESC_SIZE 0x07U + +/* Descriptor Type and Descriptor Index */ +/* Use the following values when calling the function USBH_GetDescriptor */ +#define USB_DESC_DEVICE ((USB_DESC_TYPE_DEVICE << 8) & 0xFF00U) +#define USB_DESC_CONFIGURATION ((USB_DESC_TYPE_CONFIGURATION << 8) & 0xFF00U) +#define USB_DESC_STRING ((USB_DESC_TYPE_STRING << 8) & 0xFF00U) +#define USB_DESC_INTERFACE ((USB_DESC_TYPE_INTERFACE << 8) & 0xFF00U) +#define USB_DESC_ENDPOINT ((USB_DESC_TYPE_INTERFACE << 8) & 0xFF00U) +#define USB_DESC_DEVICE_QUALIFIER ((USB_DESC_TYPE_DEVICE_QUALIFIER << 8) & 0xFF00U) +#define USB_DESC_OTHER_SPEED_CONFIGURATION ((USB_DESC_TYPE_OTHER_SPEED_CONFIGURATION << 8) & 0xFF00U) +#define USB_DESC_INTERFACE_POWER ((USB_DESC_TYPE_INTERFACE_POWER << 8) & 0xFF00U) +#define USB_DESC_HID_REPORT ((USB_DESC_TYPE_HID_REPORT << 8) & 0xFF00U) +#define USB_DESC_HID ((USB_DESC_TYPE_HID << 8) & 0xFF00U) + + +#define USB_EP_TYPE_CTRL 0x00U +#define USB_EP_TYPE_ISOC 0x01U +#define USB_EP_TYPE_BULK 0x02U +#define USB_EP_TYPE_INTR 0x03U + +#define USB_EP_DIR_OUT 0x00U +#define USB_EP_DIR_IN 0x80U +#define USB_EP_DIR_MSK 0x80U + +#ifndef USBH_MAX_PIPES_NBR +#define USBH_MAX_PIPES_NBR 15U +#endif /* USBH_MAX_PIPES_NBR */ + +#define USBH_DEVICE_ADDRESS_DEFAULT 0x00U +#define USBH_DEVICE_ADDRESS 0x01U + +#define USBH_MAX_ERROR_COUNT 0x02U + +#if (USBH_USE_OS == 1U) +#define MSGQUEUE_OBJECTS 0x10U +#endif + + +/** + * @} + */ + + +#define USBH_CONFIGURATION_DESCRIPTOR_SIZE (USB_CONFIGURATION_DESC_SIZE \ + + USB_INTERFACE_DESC_SIZE\ + + (USBH_MAX_NUM_ENDPOINTS * USB_ENDPOINT_DESC_SIZE)) + + +#define CONFIG_DESC_wTOTAL_LENGTH (ConfigurationDescriptorData.ConfigDescfield.\ + ConfigurationDescriptor.wTotalLength) + + +typedef union +{ + uint16_t w; + struct BW + { + uint8_t msb; + uint8_t lsb; + } + bw; +} +uint16_t_uint8_t; + + +typedef union _USB_Setup +{ + uint32_t d8[2]; + + struct _SetupPkt_Struc + { + uint8_t bmRequestType; + uint8_t bRequest; + uint16_t_uint8_t wValue; + uint16_t_uint8_t wIndex; + uint16_t_uint8_t wLength; + } b; +} +USB_Setup_TypeDef; + +typedef struct _DescHeader +{ + uint8_t bLength; + uint8_t bDescriptorType; +} +USBH_DescHeader_t; + +typedef struct _DeviceDescriptor +{ + uint8_t bLength; + uint8_t bDescriptorType; + uint16_t bcdUSB; /* USB Specification Number which device complies too */ + uint8_t bDeviceClass; + uint8_t bDeviceSubClass; + uint8_t bDeviceProtocol; + /* If equal to Zero, each interface specifies its own class + code if equal to 0xFF, the class code is vendor specified. + Otherwise field is valid Class Code.*/ + uint8_t bMaxPacketSize; + uint16_t idVendor; /* Vendor ID (Assigned by USB Org) */ + uint16_t idProduct; /* Product ID (Assigned by Manufacturer) */ + uint16_t bcdDevice; /* Device Release Number */ + uint8_t iManufacturer; /* Index of Manufacturer String Descriptor */ + uint8_t iProduct; /* Index of Product String Descriptor */ + uint8_t iSerialNumber; /* Index of Serial Number String Descriptor */ + uint8_t bNumConfigurations; /* Number of Possible Configurations */ +} +USBH_DevDescTypeDef; + +typedef struct _EndpointDescriptor +{ + uint8_t bLength; + uint8_t bDescriptorType; + uint8_t bEndpointAddress; /* indicates what endpoint this descriptor is describing */ + uint8_t bmAttributes; /* specifies the transfer type. */ + uint16_t wMaxPacketSize; /* Maximum Packet Size this endpoint is capable of sending or receiving */ + uint8_t bInterval; /* is used to specify the polling interval of certain transfers. */ +} +USBH_EpDescTypeDef; + +typedef struct _InterfaceDescriptor +{ + uint8_t bLength; + uint8_t bDescriptorType; + uint8_t bInterfaceNumber; + uint8_t bAlternateSetting; /* Value used to select alternative setting */ + uint8_t bNumEndpoints; /* Number of Endpoints used for this interface */ + uint8_t bInterfaceClass; /* Class Code (Assigned by USB Org) */ + uint8_t bInterfaceSubClass; /* Subclass Code (Assigned by USB Org) */ + uint8_t bInterfaceProtocol; /* Protocol Code */ + uint8_t iInterface; /* Index of String Descriptor Describing this interface */ + USBH_EpDescTypeDef Ep_Desc[USBH_MAX_NUM_ENDPOINTS]; +} +USBH_InterfaceDescTypeDef; + + +typedef struct _ConfigurationDescriptor +{ + uint8_t bLength; + uint8_t bDescriptorType; + uint16_t wTotalLength; /* Total Length of Data Returned */ + uint8_t bNumInterfaces; /* Number of Interfaces */ + uint8_t bConfigurationValue; /* Value to use as an argument to select this configuration*/ + uint8_t iConfiguration; /*Index of String Descriptor Describing this configuration */ + uint8_t bmAttributes; /* D7 Bus Powered , D6 Self Powered, D5 Remote Wakeup , D4..0 Reserved (0)*/ + uint8_t bMaxPower; /*Maximum Power Consumption */ + USBH_InterfaceDescTypeDef Itf_Desc[USBH_MAX_NUM_INTERFACES]; +} +USBH_CfgDescTypeDef; + + +/* Following USB Host status */ +typedef enum +{ + USBH_OK = 0, + USBH_BUSY, + USBH_FAIL, + USBH_NOT_SUPPORTED, + USBH_UNRECOVERED_ERROR, + USBH_ERROR_SPEED_UNKNOWN, +} USBH_StatusTypeDef; + + +/** @defgroup USBH_CORE_Exported_Types + * @{ + */ + +typedef enum +{ + USBH_SPEED_HIGH = 0U, + USBH_SPEED_FULL = 1U, + USBH_SPEED_LOW = 2U, + +} USBH_SpeedTypeDef; + +/* Following states are used for gState */ +typedef enum +{ + HOST_IDLE = 0U, + HOST_DEV_WAIT_FOR_ATTACHMENT, + HOST_DEV_ATTACHED, + HOST_DEV_DISCONNECTED, + HOST_DETECT_DEVICE_SPEED, + HOST_ENUMERATION, + HOST_CLASS_REQUEST, + HOST_INPUT, + HOST_SET_CONFIGURATION, + HOST_SET_WAKEUP_FEATURE, + HOST_CHECK_CLASS, + HOST_CLASS, + HOST_SUSPENDED, + HOST_ABORT_STATE, +} HOST_StateTypeDef; + +/* Following states are used for EnumerationState */ +typedef enum +{ + ENUM_IDLE = 0U, + ENUM_GET_FULL_DEV_DESC, + ENUM_SET_ADDR, + ENUM_GET_CFG_DESC, + ENUM_GET_FULL_CFG_DESC, + ENUM_GET_MFC_STRING_DESC, + ENUM_GET_PRODUCT_STRING_DESC, + ENUM_GET_SERIALNUM_STRING_DESC, +} ENUM_StateTypeDef; + +/* Following states are used for CtrlXferStateMachine */ +typedef enum +{ + CTRL_IDLE = 0U, + CTRL_SETUP, + CTRL_SETUP_WAIT, + CTRL_DATA_IN, + CTRL_DATA_IN_WAIT, + CTRL_DATA_OUT, + CTRL_DATA_OUT_WAIT, + CTRL_STATUS_IN, + CTRL_STATUS_IN_WAIT, + CTRL_STATUS_OUT, + CTRL_STATUS_OUT_WAIT, + CTRL_ERROR, + CTRL_STALLED, + CTRL_COMPLETE +} CTRL_StateTypeDef; + + +/* Following states are used for RequestState */ +typedef enum +{ + CMD_IDLE = 0U, + CMD_SEND, + CMD_WAIT +} CMD_StateTypeDef; + +typedef enum +{ + USBH_URB_IDLE = 0U, + USBH_URB_DONE, + USBH_URB_NOTREADY, + USBH_URB_NYET, + USBH_URB_ERROR, + USBH_URB_STALL +} USBH_URBStateTypeDef; + +typedef enum +{ + USBH_PORT_EVENT = 1U, + USBH_URB_EVENT, + USBH_CONTROL_EVENT, + USBH_CLASS_EVENT, + USBH_STATE_CHANGED_EVENT, +} +USBH_OSEventTypeDef; + +/* Control request structure */ +typedef struct +{ + uint8_t pipe_in; + uint8_t pipe_out; + uint8_t pipe_size; + uint8_t *buff; + uint16_t length; + uint16_t timer; + USB_Setup_TypeDef setup; + CTRL_StateTypeDef state; + uint8_t errorcount; + +} USBH_CtrlTypeDef; + +/* Attached device structure */ +typedef struct +{ + uint8_t CfgDesc_Raw[USBH_MAX_SIZE_CONFIGURATION]; + uint8_t Data[USBH_MAX_DATA_BUFFER]; + uint8_t address; + uint8_t speed; + uint8_t EnumCnt; + uint8_t RstCnt; + __IO uint8_t is_connected; + __IO uint8_t is_disconnected; + __IO uint8_t is_ReEnumerated; + uint8_t PortEnabled; + uint8_t current_interface; + USBH_DevDescTypeDef DevDesc; + USBH_CfgDescTypeDef CfgDesc; +} USBH_DeviceTypeDef; + +struct _USBH_HandleTypeDef; + +/* USB Host Class structure */ +typedef struct +{ + const char *Name; + uint8_t ClassCode; + USBH_StatusTypeDef(*Init)(struct _USBH_HandleTypeDef *phost); + USBH_StatusTypeDef(*DeInit)(struct _USBH_HandleTypeDef *phost); + USBH_StatusTypeDef(*Requests)(struct _USBH_HandleTypeDef *phost); + USBH_StatusTypeDef(*BgndProcess)(struct _USBH_HandleTypeDef *phost); + USBH_StatusTypeDef(*SOFProcess)(struct _USBH_HandleTypeDef *phost); + void *pData; +} USBH_ClassTypeDef; + +/* USB Host handle structure */ +typedef struct _USBH_HandleTypeDef +{ + __IO HOST_StateTypeDef gState; /* Host State Machine Value */ + ENUM_StateTypeDef EnumState; /* Enumeration state Machine */ + CMD_StateTypeDef RequestState; + USBH_CtrlTypeDef Control; + USBH_DeviceTypeDef device; + USBH_ClassTypeDef *pClass[USBH_MAX_NUM_SUPPORTED_CLASS]; + USBH_ClassTypeDef *pActiveClass; + uint32_t ClassNumber; + uint32_t Pipes[16]; + __IO uint32_t Timer; + uint32_t Timeout; + uint8_t id; + void *pData; + void (* pUser)(struct _USBH_HandleTypeDef *pHandle, uint8_t id); + +#if (USBH_USE_OS == 1U) +#if osCMSIS < 0x20000 + osMessageQId os_event; + osThreadId thread; +#else + osMessageQueueId_t os_event; + osThreadId_t thread; +#endif + uint32_t os_msg; +#endif + +} USBH_HandleTypeDef; + + +#if defined ( __GNUC__ ) +#ifndef __weak +#define __weak __attribute__((weak)) +#endif /* __weak */ +#ifndef __packed +#define __packed __attribute__((__packed__)) +#endif /* __packed */ +#endif /* __GNUC__ */ + +#ifdef __cplusplus +} +#endif + +#endif /* USBH_DEF_H */ + +/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ + diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_ioreq.c b/Marlin/lib/STM32_USB_Host_Library/src/usbh_ioreq.c new file mode 100644 index 0000000000..46e973454c --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/src/usbh_ioreq.c @@ -0,0 +1,350 @@ +/** + ****************************************************************************** + * @file usbh_ioreq.c + * @author MCD Application Team + * @brief This file handles the issuing of the USB transactions + ****************************************************************************** + * @attention + * + *

© Copyright (c) 2015 STMicroelectronics. + * All rights reserved.

+ * + * This software component is licensed by ST under Ultimate Liberty license + * SLA0044, the "License"; You may not use this file except in compliance with + * the License. You may obtain a copy of the License at: + * www.st.com/SLA0044 + * + ****************************************************************************** + */ + +/* Includes ------------------------------------------------------------------*/ +#include "usbh_ioreq.h" + +/** @addtogroup USBH_LIB + * @{ + */ + +/** @addtogroup USBH_LIB_CORE +* @{ +*/ + +/** @defgroup USBH_IOREQ + * @brief This file handles the standard protocol processing (USB v2.0) + * @{ + */ + + +/** @defgroup USBH_IOREQ_Private_Defines + * @{ + */ + +/** + * @} + */ + + +/** @defgroup USBH_IOREQ_Private_TypesDefinitions + * @{ + */ +/** + * @} + */ + + + +/** @defgroup USBH_IOREQ_Private_Macros + * @{ + */ +/** + * @} + */ + + +/** @defgroup USBH_IOREQ_Private_Variables + * @{ + */ +/** + * @} + */ +/** @defgroup USBH_IOREQ_Private_FunctionPrototypes + * @{ + */ + +/** + * @} + */ + + +/** @defgroup USBH_IOREQ_Private_Functions + * @{ + */ + + + +/** + * @brief USBH_CtlSendSetup + * Sends the Setup Packet to the Device + * @param phost: Host Handle + * @param buff: Buffer pointer from which the Data will be send to Device + * @param pipe_num: Pipe Number + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_CtlSendSetup(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint8_t pipe_num) +{ + + USBH_LL_SubmitURB(phost, /* Driver handle */ + pipe_num, /* Pipe index */ + 0U, /* Direction : OUT */ + USBH_EP_CONTROL, /* EP type */ + USBH_PID_SETUP, /* Type setup */ + buff, /* data buffer */ + USBH_SETUP_PKT_SIZE, /* data length */ + 0U); + return USBH_OK; +} + + +/** + * @brief USBH_CtlSendData + * Sends a data Packet to the Device + * @param phost: Host Handle + * @param buff: Buffer pointer from which the Data will be sent to Device + * @param length: Length of the data to be sent + * @param pipe_num: Pipe Number + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_CtlSendData(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint16_t length, + uint8_t pipe_num, + uint8_t do_ping) +{ + if (phost->device.speed != USBH_SPEED_HIGH) + { + do_ping = 0U; + } + + USBH_LL_SubmitURB(phost, /* Driver handle */ + pipe_num, /* Pipe index */ + 0U, /* Direction : OUT */ + USBH_EP_CONTROL, /* EP type */ + USBH_PID_DATA, /* Type Data */ + buff, /* data buffer */ + length, /* data length */ + do_ping); /* do ping (HS Only)*/ + + return USBH_OK; +} + + +/** + * @brief USBH_CtlReceiveData + * Receives the Device Response to the Setup Packet + * @param phost: Host Handle + * @param buff: Buffer pointer in which the response needs to be copied + * @param length: Length of the data to be received + * @param pipe_num: Pipe Number + * @retval USBH Status. + */ +USBH_StatusTypeDef USBH_CtlReceiveData(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint16_t length, + uint8_t pipe_num) +{ + USBH_LL_SubmitURB(phost, /* Driver handle */ + pipe_num, /* Pipe index */ + 1U, /* Direction : IN */ + USBH_EP_CONTROL, /* EP type */ + USBH_PID_DATA, /* Type Data */ + buff, /* data buffer */ + length, /* data length */ + 0U); + return USBH_OK; + +} + + +/** + * @brief USBH_BulkSendData + * Sends the Bulk Packet to the device + * @param phost: Host Handle + * @param buff: Buffer pointer from which the Data will be sent to Device + * @param length: Length of the data to be sent + * @param pipe_num: Pipe Number + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_BulkSendData(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint16_t length, + uint8_t pipe_num, + uint8_t do_ping) +{ + if (phost->device.speed != USBH_SPEED_HIGH) + { + do_ping = 0U; + } + + USBH_LL_SubmitURB(phost, /* Driver handle */ + pipe_num, /* Pipe index */ + 0U, /* Direction : IN */ + USBH_EP_BULK, /* EP type */ + USBH_PID_DATA, /* Type Data */ + buff, /* data buffer */ + length, /* data length */ + do_ping); /* do ping (HS Only)*/ + return USBH_OK; +} + + +/** + * @brief USBH_BulkReceiveData + * Receives IN bulk packet from device + * @param phost: Host Handle + * @param buff: Buffer pointer in which the received data packet to be copied + * @param length: Length of the data to be received + * @param pipe_num: Pipe Number + * @retval USBH Status. + */ +USBH_StatusTypeDef USBH_BulkReceiveData(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint16_t length, + uint8_t pipe_num) +{ + USBH_LL_SubmitURB(phost, /* Driver handle */ + pipe_num, /* Pipe index */ + 1U, /* Direction : IN */ + USBH_EP_BULK, /* EP type */ + USBH_PID_DATA, /* Type Data */ + buff, /* data buffer */ + length, /* data length */ + 0U); + return USBH_OK; +} + + +/** + * @brief USBH_InterruptReceiveData + * Receives the Device Response to the Interrupt IN token + * @param phost: Host Handle + * @param buff: Buffer pointer in which the response needs to be copied + * @param length: Length of the data to be received + * @param pipe_num: Pipe Number + * @retval USBH Status. + */ +USBH_StatusTypeDef USBH_InterruptReceiveData(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint8_t length, + uint8_t pipe_num) +{ + USBH_LL_SubmitURB(phost, /* Driver handle */ + pipe_num, /* Pipe index */ + 1U, /* Direction : IN */ + USBH_EP_INTERRUPT, /* EP type */ + USBH_PID_DATA, /* Type Data */ + buff, /* data buffer */ + (uint16_t)length, /* data length */ + 0U); + + return USBH_OK; +} + +/** + * @brief USBH_InterruptSendData + * Sends the data on Interrupt OUT Endpoint + * @param phost: Host Handle + * @param buff: Buffer pointer from where the data needs to be copied + * @param length: Length of the data to be sent + * @param pipe_num: Pipe Number + * @retval USBH Status. + */ +USBH_StatusTypeDef USBH_InterruptSendData(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint8_t length, + uint8_t pipe_num) +{ + USBH_LL_SubmitURB(phost, /* Driver handle */ + pipe_num, /* Pipe index */ + 0U, /* Direction : OUT */ + USBH_EP_INTERRUPT, /* EP type */ + USBH_PID_DATA, /* Type Data */ + buff, /* data buffer */ + (uint16_t)length, /* data length */ + 0U); + + return USBH_OK; +} + +/** + * @brief USBH_IsocReceiveData + * Receives the Device Response to the Isochronous IN token + * @param phost: Host Handle + * @param buff: Buffer pointer in which the response needs to be copied + * @param length: Length of the data to be received + * @param pipe_num: Pipe Number + * @retval USBH Status. + */ +USBH_StatusTypeDef USBH_IsocReceiveData(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint32_t length, + uint8_t pipe_num) +{ + USBH_LL_SubmitURB(phost, /* Driver handle */ + pipe_num, /* Pipe index */ + 1U, /* Direction : IN */ + USBH_EP_ISO, /* EP type */ + USBH_PID_DATA, /* Type Data */ + buff, /* data buffer */ + (uint16_t)length, /* data length */ + 0U); + + + return USBH_OK; +} + +/** + * @brief USBH_IsocSendData + * Sends the data on Isochronous OUT Endpoint + * @param phost: Host Handle + * @param buff: Buffer pointer from where the data needs to be copied + * @param length: Length of the data to be sent + * @param pipe_num: Pipe Number + * @retval USBH Status. + */ +USBH_StatusTypeDef USBH_IsocSendData(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint32_t length, + uint8_t pipe_num) +{ + USBH_LL_SubmitURB(phost, /* Driver handle */ + pipe_num, /* Pipe index */ + 0U, /* Direction : OUT */ + USBH_EP_ISO, /* EP type */ + USBH_PID_DATA, /* Type Data */ + buff, /* data buffer */ + (uint16_t)length, /* data length */ + 0U); + + return USBH_OK; +} +/** +* @} +*/ + +/** +* @} +*/ + +/** +* @} +*/ + +/** +* @} +*/ + +/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ + + + diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_ioreq.h b/Marlin/lib/STM32_USB_Host_Library/src/usbh_ioreq.h new file mode 100644 index 0000000000..ccb321504c --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/src/usbh_ioreq.h @@ -0,0 +1,160 @@ +/** + ****************************************************************************** + * @file usbh_ioreq.h + * @author MCD Application Team + * @brief Header file for usbh_ioreq.c + ****************************************************************************** + * @attention + * + *

© Copyright (c) 2015 STMicroelectronics. + * All rights reserved.

+ * + * This software component is licensed by ST under Ultimate Liberty license + * SLA0044, the "License"; You may not use this file except in compliance with + * the License. You may obtain a copy of the License at: + * www.st.com/SLA0044 + * + ****************************************************************************** + */ + +/* Define to prevent recursive ----------------------------------------------*/ +#ifndef __USBH_IOREQ_H +#define __USBH_IOREQ_H + +#ifdef __cplusplus +extern "C" { +#endif + +/* Includes ------------------------------------------------------------------*/ +#include "stm32_usbh_conf.h" +#include "usbh_core.h" + +/** @addtogroup USBH_LIB + * @{ + */ + +/** @addtogroup USBH_LIB_CORE +* @{ +*/ + +/** @defgroup USBH_IOREQ + * @brief This file is the header file for usbh_ioreq.c + * @{ + */ + + +/** @defgroup USBH_IOREQ_Exported_Defines + * @{ + */ + +#define USBH_PID_SETUP 0U +#define USBH_PID_DATA 1U + +#define USBH_EP_CONTROL 0U +#define USBH_EP_ISO 1U +#define USBH_EP_BULK 2U +#define USBH_EP_INTERRUPT 3U + +#define USBH_SETUP_PKT_SIZE 8U +/** + * @} + */ + + +/** @defgroup USBH_IOREQ_Exported_Types + * @{ + */ +/** + * @} + */ + + +/** @defgroup USBH_IOREQ_Exported_Macros + * @{ + */ +/** + * @} + */ + +/** @defgroup USBH_IOREQ_Exported_Variables + * @{ + */ +/** + * @} + */ + +/** @defgroup USBH_IOREQ_Exported_FunctionsPrototype + * @{ + */ +USBH_StatusTypeDef USBH_CtlSendSetup(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint8_t pipe_num); + +USBH_StatusTypeDef USBH_CtlSendData(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint16_t length, + uint8_t pipe_num, + uint8_t do_ping); + +USBH_StatusTypeDef USBH_CtlReceiveData(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint16_t length, + uint8_t pipe_num); + +USBH_StatusTypeDef USBH_BulkReceiveData(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint16_t length, + uint8_t pipe_num); + +USBH_StatusTypeDef USBH_BulkSendData(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint16_t length, + uint8_t pipe_num, + uint8_t do_ping); + +USBH_StatusTypeDef USBH_InterruptReceiveData(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint8_t length, + uint8_t pipe_num); + +USBH_StatusTypeDef USBH_InterruptSendData(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint8_t length, + uint8_t pipe_num); + + +USBH_StatusTypeDef USBH_IsocReceiveData(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint32_t length, + uint8_t pipe_num); + + +USBH_StatusTypeDef USBH_IsocSendData(USBH_HandleTypeDef *phost, + uint8_t *buff, + uint32_t length, + uint8_t pipe_num); +/** + * @} + */ + +#ifdef __cplusplus +} +#endif + +#endif /* __USBH_IOREQ_H */ + +/** + * @} + */ + +/** + * @} + */ + +/** +* @} +*/ + +/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ + + diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc.c b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc.c new file mode 100644 index 0000000000..929132e7f2 --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc.c @@ -0,0 +1,858 @@ +/** + ****************************************************************************** + * @file usbh_msc.c + * @author MCD Application Team + * @brief This file implements the MSC class driver functions + * =================================================================== + * MSC Class Description + * =================================================================== + * This module manages the MSC class V1.0 following the "Universal + * Serial Bus Mass Storage Class (MSC) Bulk-Only Transport (BOT) Version 1.0 + * Sep. 31, 1999". + * This driver implements the following aspects of the specification: + * - Bulk-Only Transport protocol + * - Subclass : SCSI transparent command set (ref. SCSI Primary Commands - 3 (SPC-3)) + * + * @endverbatim + * + ****************************************************************************** + * @attention + * + *

© Copyright (c) 2015 STMicroelectronics. + * All rights reserved.

+ * + * This software component is licensed by ST under Ultimate Liberty license + * SLA0044, the "License"; You may not use this file except in compliance with + * the License. You may obtain a copy of the License at: + * www.st.com/SLA0044 + * + ****************************************************************************** + */ + +/* BSPDependencies +- "stm32xxxxx_{eval}{discovery}{nucleo_144}.c" +- "stm32xxxxx_{eval}{discovery}_io.c" +- "stm32xxxxx_{eval}{discovery}{adafruit}_lcd.c" +- "stm32xxxxx_{eval}{discovery}_sdram.c" +EndBSPDependencies */ + +/* Includes ------------------------------------------------------------------*/ +#include "usbh_msc.h" +#include "usbh_msc_bot.h" +#include "usbh_msc_scsi.h" + + +/** @addtogroup USBH_LIB + * @{ + */ + +/** @addtogroup USBH_CLASS + * @{ + */ + +/** @addtogroup USBH_MSC_CLASS + * @{ + */ + +/** @defgroup USBH_MSC_CORE + * @brief This file includes the mass storage related functions + * @{ + */ + + +/** @defgroup USBH_MSC_CORE_Private_TypesDefinitions + * @{ + */ +/** + * @} + */ + +/** @defgroup USBH_MSC_CORE_Private_Defines + * @{ + */ +/** + * @} + */ + +/** @defgroup USBH_MSC_CORE_Private_Macros + * @{ + */ +/** + * @} + */ + + +/** @defgroup USBH_MSC_CORE_Private_Variables + * @{ + */ +/** + * @} + */ + + +/** @defgroup USBH_MSC_CORE_Private_FunctionPrototypes + * @{ + */ + +static USBH_StatusTypeDef USBH_MSC_InterfaceInit(USBH_HandleTypeDef *phost); + +static USBH_StatusTypeDef USBH_MSC_InterfaceDeInit(USBH_HandleTypeDef *phost); + +static USBH_StatusTypeDef USBH_MSC_Process(USBH_HandleTypeDef *phost); + +static USBH_StatusTypeDef USBH_MSC_ClassRequest(USBH_HandleTypeDef *phost); + +static USBH_StatusTypeDef USBH_MSC_SOFProcess(USBH_HandleTypeDef *phost); + +static USBH_StatusTypeDef USBH_MSC_RdWrProcess(USBH_HandleTypeDef *phost, uint8_t lun); + +USBH_ClassTypeDef USBH_msc = +{ + "MSC", + USB_MSC_CLASS, + USBH_MSC_InterfaceInit, + USBH_MSC_InterfaceDeInit, + USBH_MSC_ClassRequest, + USBH_MSC_Process, + USBH_MSC_SOFProcess, + NULL, +}; + + +/** + * @} + */ + + +/** @defgroup USBH_MSC_CORE_Exported_Variables + * @{ + */ + +/** + * @} + */ + + +/** @defgroup USBH_MSC_CORE_Private_Functions + * @{ + */ + + +/** + * @brief USBH_MSC_InterfaceInit + * The function init the MSC class. + * @param phost: Host handle + * @retval USBH Status + */ +static USBH_StatusTypeDef USBH_MSC_InterfaceInit(USBH_HandleTypeDef *phost) +{ + USBH_StatusTypeDef status; + uint8_t interface; + MSC_HandleTypeDef *MSC_Handle; + + interface = USBH_FindInterface(phost, phost->pActiveClass->ClassCode, MSC_TRANSPARENT, MSC_BOT); + + if ((interface == 0xFFU) || (interface >= USBH_MAX_NUM_INTERFACES)) /* Not Valid Interface */ + { + USBH_DbgLog("Cannot Find the interface for %s class.", phost->pActiveClass->Name); + return USBH_FAIL; + } + + status = USBH_SelectInterface(phost, interface); + + if (status != USBH_OK) + { + return USBH_FAIL; + } + + phost->pActiveClass->pData = (MSC_HandleTypeDef *)USBH_malloc(sizeof(MSC_HandleTypeDef)); + MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + + if (MSC_Handle == NULL) + { + USBH_DbgLog("Cannot allocate memory for MSC Handle"); + return USBH_FAIL; + } + + /* Initialize msc handler */ + USBH_memset(MSC_Handle, 0, sizeof(MSC_HandleTypeDef)); + + if (phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[0].bEndpointAddress & 0x80U) + { + MSC_Handle->InEp = (phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[0].bEndpointAddress); + MSC_Handle->InEpSize = phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[0].wMaxPacketSize; + } + else + { + MSC_Handle->OutEp = (phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[0].bEndpointAddress); + MSC_Handle->OutEpSize = phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[0].wMaxPacketSize; + } + + if (phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[1].bEndpointAddress & 0x80U) + { + MSC_Handle->InEp = (phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[1].bEndpointAddress); + MSC_Handle->InEpSize = phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[1].wMaxPacketSize; + } + else + { + MSC_Handle->OutEp = (phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[1].bEndpointAddress); + MSC_Handle->OutEpSize = phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[1].wMaxPacketSize; + } + + MSC_Handle->state = MSC_INIT; + MSC_Handle->error = MSC_OK; + MSC_Handle->req_state = MSC_REQ_IDLE; + MSC_Handle->OutPipe = USBH_AllocPipe(phost, MSC_Handle->OutEp); + MSC_Handle->InPipe = USBH_AllocPipe(phost, MSC_Handle->InEp); + + USBH_MSC_BOT_Init(phost); + + /* Open the new channels */ + USBH_OpenPipe(phost, MSC_Handle->OutPipe, MSC_Handle->OutEp, + phost->device.address, phost->device.speed, + USB_EP_TYPE_BULK, MSC_Handle->OutEpSize); + + USBH_OpenPipe(phost, MSC_Handle->InPipe, MSC_Handle->InEp, + phost->device.address, phost->device.speed, USB_EP_TYPE_BULK, + MSC_Handle->InEpSize); + + USBH_LL_SetToggle(phost, MSC_Handle->InPipe, 0U); + USBH_LL_SetToggle(phost, MSC_Handle->OutPipe, 0U); + + return USBH_OK; +} + +/** + * @brief USBH_MSC_InterfaceDeInit + * The function DeInit the Pipes used for the MSC class. + * @param phost: Host handle + * @retval USBH Status + */ +static USBH_StatusTypeDef USBH_MSC_InterfaceDeInit(USBH_HandleTypeDef *phost) +{ + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + + if (MSC_Handle->OutPipe) + { + USBH_ClosePipe(phost, MSC_Handle->OutPipe); + USBH_FreePipe(phost, MSC_Handle->OutPipe); + MSC_Handle->OutPipe = 0U; /* Reset the Channel as Free */ + } + + if (MSC_Handle->InPipe) + { + USBH_ClosePipe(phost, MSC_Handle->InPipe); + USBH_FreePipe(phost, MSC_Handle->InPipe); + MSC_Handle->InPipe = 0U; /* Reset the Channel as Free */ + } + + if (phost->pActiveClass->pData) + { + USBH_free(phost->pActiveClass->pData); + phost->pActiveClass->pData = 0U; + } + + return USBH_OK; +} + +/** + * @brief USBH_MSC_ClassRequest + * The function is responsible for handling Standard requests + * for MSC class. + * @param phost: Host handle + * @retval USBH Status + */ +static USBH_StatusTypeDef USBH_MSC_ClassRequest(USBH_HandleTypeDef *phost) +{ + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + USBH_StatusTypeDef status = USBH_BUSY; + uint8_t i; + + /* Switch MSC REQ state machine */ + switch (MSC_Handle->req_state) + { + case MSC_REQ_IDLE: + case MSC_REQ_GET_MAX_LUN: + /* Issue GetMaxLUN request */ + status = USBH_MSC_BOT_REQ_GetMaxLUN(phost, &MSC_Handle->max_lun); + + /* When devices do not support the GetMaxLun request, this should + be considred as only one logical unit is supported */ + if (status == USBH_NOT_SUPPORTED) + { + MSC_Handle->max_lun = 0U; + status = USBH_OK; + } + + if (status == USBH_OK) + { + MSC_Handle->max_lun = (MSC_Handle->max_lun > MAX_SUPPORTED_LUN) ? MAX_SUPPORTED_LUN : (MSC_Handle->max_lun + 1U); + USBH_UsrLog("Number of supported LUN: %d", MSC_Handle->max_lun); + + for (i = 0U; i < MSC_Handle->max_lun; i++) + { + MSC_Handle->unit[i].prev_ready_state = USBH_FAIL; + MSC_Handle->unit[i].state_changed = 0U; + } + } + break; + + case MSC_REQ_ERROR: + /* a Clear Feature should be issued here */ + if (USBH_ClrFeature(phost, 0x00U) == USBH_OK) + { + MSC_Handle->req_state = MSC_Handle->prev_req_state; + } + break; + + default: + break; + } + + return status; +} + +/** + * @brief USBH_MSC_Process + * The function is for managing state machine for MSC data transfers + * @param phost: Host handle + * @retval USBH Status + */ +static USBH_StatusTypeDef USBH_MSC_Process(USBH_HandleTypeDef *phost) +{ + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + USBH_StatusTypeDef error = USBH_BUSY; + USBH_StatusTypeDef scsi_status = USBH_BUSY; + USBH_StatusTypeDef ready_status = USBH_BUSY; + + switch (MSC_Handle->state) + { + case MSC_INIT: + + if (MSC_Handle->current_lun < MSC_Handle->max_lun) + { + + MSC_Handle->unit[MSC_Handle->current_lun].error = MSC_NOT_READY; + /* Switch MSC REQ state machine */ + switch (MSC_Handle->unit[MSC_Handle->current_lun].state) + { + case MSC_INIT: + USBH_UsrLog("LUN #%d: ", MSC_Handle->current_lun); + MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_READ_INQUIRY; + MSC_Handle->timer = phost->Timer; + break; + + case MSC_READ_INQUIRY: + scsi_status = USBH_MSC_SCSI_Inquiry(phost, (uint8_t)MSC_Handle->current_lun, &MSC_Handle->unit[MSC_Handle->current_lun].inquiry); + + if (scsi_status == USBH_OK) + { + USBH_UsrLog("Inquiry Vendor : %s", MSC_Handle->unit[MSC_Handle->current_lun].inquiry.vendor_id); + USBH_UsrLog("Inquiry Product : %s", MSC_Handle->unit[MSC_Handle->current_lun].inquiry.product_id); + USBH_UsrLog("Inquiry Version : %s", MSC_Handle->unit[MSC_Handle->current_lun].inquiry.revision_id); + MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_TEST_UNIT_READY; + } + if (scsi_status == USBH_FAIL) + { + MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_REQUEST_SENSE; + } + else + { + if (scsi_status == USBH_UNRECOVERED_ERROR) + { + MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_IDLE; + MSC_Handle->unit[MSC_Handle->current_lun].error = MSC_ERROR; + } + } + break; + + case MSC_TEST_UNIT_READY: + ready_status = USBH_MSC_SCSI_TestUnitReady(phost, (uint8_t)MSC_Handle->current_lun); + + if (ready_status == USBH_OK) + { + if (MSC_Handle->unit[MSC_Handle->current_lun].prev_ready_state != USBH_OK) + { + MSC_Handle->unit[MSC_Handle->current_lun].state_changed = 1U; + USBH_UsrLog("MSC Device ready"); + } + else + { + MSC_Handle->unit[MSC_Handle->current_lun].state_changed = 0U; + } + MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_READ_CAPACITY10; + MSC_Handle->unit[MSC_Handle->current_lun].error = MSC_OK; + MSC_Handle->unit[MSC_Handle->current_lun].prev_ready_state = USBH_OK; + } + if (ready_status == USBH_FAIL) + { + /* Media not ready, so try to check again during 10s */ + if (MSC_Handle->unit[MSC_Handle->current_lun].prev_ready_state != USBH_FAIL) + { + MSC_Handle->unit[MSC_Handle->current_lun].state_changed = 1U; + USBH_UsrLog("MSC Device NOT ready"); + } + else + { + MSC_Handle->unit[MSC_Handle->current_lun].state_changed = 0U; + } + MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_REQUEST_SENSE; + MSC_Handle->unit[MSC_Handle->current_lun].error = MSC_NOT_READY; + MSC_Handle->unit[MSC_Handle->current_lun].prev_ready_state = USBH_FAIL; + } + else + { + if (ready_status == USBH_UNRECOVERED_ERROR) + { + MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_IDLE; + MSC_Handle->unit[MSC_Handle->current_lun].error = MSC_ERROR; + } + } + break; + + case MSC_READ_CAPACITY10: + scsi_status = USBH_MSC_SCSI_ReadCapacity(phost, (uint8_t)MSC_Handle->current_lun, &MSC_Handle->unit[MSC_Handle->current_lun].capacity) ; + + if (scsi_status == USBH_OK) + { + if (MSC_Handle->unit[MSC_Handle->current_lun].state_changed == 1U) + { + USBH_UsrLog("MSC Device capacity : %lu Bytes", \ + (int32_t)(MSC_Handle->unit[MSC_Handle->current_lun].capacity.block_nbr * MSC_Handle->unit[MSC_Handle->current_lun].capacity.block_size)); + USBH_UsrLog("Block number : %lu", (int32_t)(MSC_Handle->unit[MSC_Handle->current_lun].capacity.block_nbr)); + USBH_UsrLog("Block Size : %lu", (int32_t)(MSC_Handle->unit[MSC_Handle->current_lun].capacity.block_size)); + } + MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_IDLE; + MSC_Handle->unit[MSC_Handle->current_lun].error = MSC_OK; + MSC_Handle->current_lun++; + } + else if (scsi_status == USBH_FAIL) + { + MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_REQUEST_SENSE; + } + else + { + if (scsi_status == USBH_UNRECOVERED_ERROR) + { + MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_IDLE; + MSC_Handle->unit[MSC_Handle->current_lun].error = MSC_ERROR; + } + } + break; + + case MSC_REQUEST_SENSE: + scsi_status = USBH_MSC_SCSI_RequestSense(phost, (uint8_t)MSC_Handle->current_lun, &MSC_Handle->unit[MSC_Handle->current_lun].sense); + + if (scsi_status == USBH_OK) + { + if ((MSC_Handle->unit[MSC_Handle->current_lun].sense.key == SCSI_SENSE_KEY_UNIT_ATTENTION) || + (MSC_Handle->unit[MSC_Handle->current_lun].sense.key == SCSI_SENSE_KEY_NOT_READY)) + { + + if ((phost->Timer - MSC_Handle->timer) < 10000U) + { + MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_TEST_UNIT_READY; + break; + } + } + + USBH_UsrLog("Sense Key : %x", MSC_Handle->unit[MSC_Handle->current_lun].sense.key); + USBH_UsrLog("Additional Sense Code : %x", MSC_Handle->unit[MSC_Handle->current_lun].sense.asc); + USBH_UsrLog("Additional Sense Code Qualifier: %x", MSC_Handle->unit[MSC_Handle->current_lun].sense.ascq); + MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_IDLE; + MSC_Handle->current_lun++; + } + if (scsi_status == USBH_FAIL) + { + USBH_UsrLog("MSC Device NOT ready"); + MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_UNRECOVERED_ERROR; + } + else + { + if (scsi_status == USBH_UNRECOVERED_ERROR) + { + MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_IDLE; + MSC_Handle->unit[MSC_Handle->current_lun].error = MSC_ERROR; + } + } + break; + + case MSC_UNRECOVERED_ERROR: + MSC_Handle->current_lun++; + break; + + default: + break; + } + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CLASS_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else + { + MSC_Handle->current_lun = 0U; + MSC_Handle->state = MSC_IDLE; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CLASS_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + phost->pUser(phost, HOST_USER_CLASS_ACTIVE); + } + break; + + case MSC_IDLE: + error = USBH_OK; + break; + + default: + break; + } + return error; +} + + +/** + * @brief USBH_MSC_SOFProcess + * The function is for SOF state + * @param phost: Host handle + * @retval USBH Status + */ +static USBH_StatusTypeDef USBH_MSC_SOFProcess(USBH_HandleTypeDef *phost) +{ + /* Prevent unused argument(s) compilation warning */ + UNUSED(phost); + + return USBH_OK; +} +/** + * @brief USBH_MSC_RdWrProcess + * The function is for managing state machine for MSC I/O Process + * @param phost: Host handle + * @param lun: logical Unit Number + * @retval USBH Status + */ +static USBH_StatusTypeDef USBH_MSC_RdWrProcess(USBH_HandleTypeDef *phost, uint8_t lun) +{ + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + USBH_StatusTypeDef error = USBH_BUSY ; + USBH_StatusTypeDef scsi_status = USBH_BUSY ; + + /* Switch MSC REQ state machine */ + switch (MSC_Handle->unit[lun].state) + { + + case MSC_READ: + scsi_status = USBH_MSC_SCSI_Read(phost, lun, 0U, NULL, 0U); + + if (scsi_status == USBH_OK) + { + MSC_Handle->unit[lun].state = MSC_IDLE; + error = USBH_OK; + } + else if (scsi_status == USBH_FAIL) + { + MSC_Handle->unit[lun].state = MSC_REQUEST_SENSE; + } + else + { + if (scsi_status == USBH_UNRECOVERED_ERROR) + { + MSC_Handle->unit[lun].state = MSC_UNRECOVERED_ERROR; + error = USBH_FAIL; + } + } + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CLASS_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + break; + + case MSC_WRITE: + scsi_status = USBH_MSC_SCSI_Write(phost, lun, 0U, NULL, 0U); + + if (scsi_status == USBH_OK) + { + MSC_Handle->unit[lun].state = MSC_IDLE; + error = USBH_OK; + } + else if (scsi_status == USBH_FAIL) + { + MSC_Handle->unit[lun].state = MSC_REQUEST_SENSE; + } + else + { + if (scsi_status == USBH_UNRECOVERED_ERROR) + { + MSC_Handle->unit[lun].state = MSC_UNRECOVERED_ERROR; + error = USBH_FAIL; + } + } + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CLASS_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + break; + + case MSC_REQUEST_SENSE: + scsi_status = USBH_MSC_SCSI_RequestSense(phost, lun, &MSC_Handle->unit[lun].sense); + + if (scsi_status == USBH_OK) + { + USBH_UsrLog("Sense Key : %x", MSC_Handle->unit[lun].sense.key); + USBH_UsrLog("Additional Sense Code : %x", MSC_Handle->unit[lun].sense.asc); + USBH_UsrLog("Additional Sense Code Qualifier: %x", MSC_Handle->unit[lun].sense.ascq); + MSC_Handle->unit[lun].state = MSC_IDLE; + MSC_Handle->unit[lun].error = MSC_ERROR; + + error = USBH_FAIL; + } + if (scsi_status == USBH_FAIL) + { + USBH_UsrLog("MSC Device NOT ready"); + } + else + { + if (scsi_status == USBH_UNRECOVERED_ERROR) + { + MSC_Handle->unit[lun].state = MSC_UNRECOVERED_ERROR; + error = USBH_FAIL; + } + } + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_CLASS_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + break; + + default: + break; + + } + return error; +} + +/** + * @brief USBH_MSC_IsReady + * The function check if the MSC function is ready + * @param phost: Host handle + * @retval USBH Status + */ +uint8_t USBH_MSC_IsReady(USBH_HandleTypeDef *phost) +{ + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + uint8_t res; + + if ((phost->gState == HOST_CLASS) && (MSC_Handle->state == MSC_IDLE)) + { + res = 1U; + } + else + { + res = 0U; + } + + return res; +} + +/** + * @brief USBH_MSC_GetMaxLUN + * The function return the Max LUN supported + * @param phost: Host handle + * @retval logical Unit Number supported + */ +uint8_t USBH_MSC_GetMaxLUN(USBH_HandleTypeDef *phost) +{ + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + + if ((phost->gState == HOST_CLASS) && (MSC_Handle->state == MSC_IDLE)) + { + return (uint8_t)MSC_Handle->max_lun; + } + + return 0xFFU; +} + +/** + * @brief USBH_MSC_UnitIsReady + * The function check whether a LUN is ready + * @param phost: Host handle + * @param lun: logical Unit Number + * @retval Lun status (0: not ready / 1: ready) + */ +uint8_t USBH_MSC_UnitIsReady(USBH_HandleTypeDef *phost, uint8_t lun) +{ + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + uint8_t res; + + if ((phost->gState == HOST_CLASS) && (MSC_Handle->unit[lun].error == MSC_OK)) + { + res = 1U; + } + else + { + res = 0U; + } + + return res; +} + +/** + * @brief USBH_MSC_GetLUNInfo + * The function return a LUN information + * @param phost: Host handle + * @param lun: logical Unit Number + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_MSC_GetLUNInfo(USBH_HandleTypeDef *phost, uint8_t lun, MSC_LUNTypeDef *info) +{ + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + if (phost->gState == HOST_CLASS) + { + USBH_memcpy(info, &MSC_Handle->unit[lun], sizeof(MSC_LUNTypeDef)); + return USBH_OK; + } + else + { + return USBH_FAIL; + } +} + +/** + * @brief USBH_MSC_Read + * The function performs a Read operation + * @param phost: Host handle + * @param lun: logical Unit Number + * @param address: sector address + * @param pbuf: pointer to data + * @param length: number of sector to read + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_MSC_Read(USBH_HandleTypeDef *phost, + uint8_t lun, + uint32_t address, + uint8_t *pbuf, + uint32_t length) +{ + uint32_t timeout; + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + + if ((phost->device.is_connected == 0U) || + (phost->gState != HOST_CLASS) || + (MSC_Handle->unit[lun].state != MSC_IDLE)) + { + return USBH_FAIL; + } + + MSC_Handle->state = MSC_READ; + MSC_Handle->unit[lun].state = MSC_READ; + MSC_Handle->rw_lun = lun; + + USBH_MSC_SCSI_Read(phost, lun, address, pbuf, length); + + timeout = phost->Timer; + + while (USBH_MSC_RdWrProcess(phost, lun) == USBH_BUSY) + { + if (((phost->Timer - timeout) > (10000U * length)) || (phost->device.is_connected == 0U)) + { + MSC_Handle->state = MSC_IDLE; + return USBH_FAIL; + } + } + MSC_Handle->state = MSC_IDLE; + + return USBH_OK; +} + +/** + * @brief USBH_MSC_Write + * The function performs a Write operation + * @param phost: Host handle + * @param lun: logical Unit Number + * @param address: sector address + * @param pbuf: pointer to data + * @param length: number of sector to write + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_MSC_Write(USBH_HandleTypeDef *phost, + uint8_t lun, + uint32_t address, + uint8_t *pbuf, + uint32_t length) +{ + uint32_t timeout; + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + + if ((phost->device.is_connected == 0U) || + (phost->gState != HOST_CLASS) || + (MSC_Handle->unit[lun].state != MSC_IDLE)) + { + return USBH_FAIL; + } + + MSC_Handle->state = MSC_WRITE; + MSC_Handle->unit[lun].state = MSC_WRITE; + MSC_Handle->rw_lun = lun; + + USBH_MSC_SCSI_Write(phost, lun, address, pbuf, length); + + timeout = phost->Timer; + while (USBH_MSC_RdWrProcess(phost, lun) == USBH_BUSY) + { + if (((phost->Timer - timeout) > (10000U * length)) || (phost->device.is_connected == 0U)) + { + MSC_Handle->state = MSC_IDLE; + return USBH_FAIL; + } + } + MSC_Handle->state = MSC_IDLE; + return USBH_OK; +} + +/** + * @} + */ + +/** + * @} + */ + +/** + * @} + */ + +/** + * @} + */ + +/** + * @} + */ + +/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc.h b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc.h new file mode 100644 index 0000000000..d452582369 --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc.h @@ -0,0 +1,216 @@ +/** + ****************************************************************************** + * @file usbh_msc.h + * @author MCD Application Team + * @brief This file contains all the prototypes for the usbh_msc.c + ****************************************************************************** + * @attention + * + *

© Copyright (c) 2015 STMicroelectronics. + * All rights reserved.

+ * + * This software component is licensed by ST under Ultimate Liberty license + * SLA0044, the "License"; You may not use this file except in compliance with + * the License. You may obtain a copy of the License at: + * www.st.com/SLA0044 + * + ****************************************************************************** + */ + +/* Define to prevent recursive ----------------------------------------------*/ +#ifndef __USBH_MSC_H +#define __USBH_MSC_H + +#ifdef __cplusplus +extern "C" { +#endif + +/* Includes ------------------------------------------------------------------*/ +#include "usbh_core.h" +#include "usbh_msc_bot.h" +#include "usbh_msc_scsi.h" + +/** @addtogroup USBH_LIB + * @{ + */ + +/** @addtogroup USBH_CLASS + * @{ + */ + +/** @addtogroup USBH_MSC_CLASS + * @{ + */ + +/** @defgroup USBH_MSC_CORE + * @brief This file is the Header file for usbh_msc.c + * @{ + */ + + +/** @defgroup USBH_MSC_CORE_Exported_Types + * @{ + */ + +typedef enum +{ + MSC_INIT = 0, + MSC_IDLE, + MSC_TEST_UNIT_READY, + MSC_READ_CAPACITY10, + MSC_READ_INQUIRY, + MSC_REQUEST_SENSE, + MSC_READ, + MSC_WRITE, + MSC_UNRECOVERED_ERROR, + MSC_PERIODIC_CHECK, +} +MSC_StateTypeDef; + +typedef enum +{ + MSC_OK, + MSC_NOT_READY, + MSC_ERROR, + +} +MSC_ErrorTypeDef; + +typedef enum +{ + MSC_REQ_IDLE = 0, + MSC_REQ_RESET, + MSC_REQ_GET_MAX_LUN, + MSC_REQ_ERROR, +} +MSC_ReqStateTypeDef; + +#ifndef MAX_SUPPORTED_LUN +#define MAX_SUPPORTED_LUN 2U +#endif + + +/* Structure for LUN */ +typedef struct +{ + MSC_StateTypeDef state; + MSC_ErrorTypeDef error; + USBH_StatusTypeDef prev_ready_state; + SCSI_CapacityTypeDef capacity; + SCSI_SenseTypeDef sense; + SCSI_StdInquiryDataTypeDef inquiry; + uint8_t state_changed; + +} +MSC_LUNTypeDef; + +/* Structure for MSC process */ +typedef struct _MSC_Process +{ + uint8_t max_lun; + uint8_t Reserved[3]; + uint8_t InPipe; + uint8_t OutPipe; + uint8_t OutEp; + uint8_t InEp; + uint16_t OutEpSize; + uint16_t InEpSize; + MSC_StateTypeDef state; + MSC_ErrorTypeDef error; + MSC_ReqStateTypeDef req_state; + MSC_ReqStateTypeDef prev_req_state; + BOT_HandleTypeDef hbot; + MSC_LUNTypeDef unit[MAX_SUPPORTED_LUN]; + uint16_t current_lun; + uint16_t rw_lun; + uint32_t timer; +} +MSC_HandleTypeDef; + + +/** + * @} + */ + + + +/** @defgroup USBH_MSC_CORE_Exported_Defines + * @{ + */ + +#define USB_REQ_BOT_RESET 0xFFU +#define USB_REQ_GET_MAX_LUN 0xFEU + + +/* MSC Class Codes */ +#define USB_MSC_CLASS 0x08U + +/* Interface Descriptor field values for HID Boot Protocol */ +#define MSC_BOT 0x50U +#define MSC_TRANSPARENT 0x06U +/** + * @} + */ + +/** @defgroup USBH_MSC_CORE_Exported_Macros + * @{ + */ +/** + * @} + */ + +/** @defgroup USBH_MSC_CORE_Exported_Variables + * @{ + */ +extern USBH_ClassTypeDef USBH_msc; +#define USBH_MSC_CLASS &USBH_msc + +/** + * @} + */ + +/** @defgroup USBH_MSC_CORE_Exported_FunctionsPrototype + * @{ + */ +uint8_t USBH_MSC_IsReady(USBH_HandleTypeDef *phost); +uint8_t USBH_MSC_GetMaxLUN(USBH_HandleTypeDef *phost); +uint8_t USBH_MSC_UnitIsReady(USBH_HandleTypeDef *phost, uint8_t lun); + +USBH_StatusTypeDef USBH_MSC_GetLUNInfo(USBH_HandleTypeDef *phost, uint8_t lun, + MSC_LUNTypeDef *info); + +USBH_StatusTypeDef USBH_MSC_Read(USBH_HandleTypeDef *phost, uint8_t lun, + uint32_t address, uint8_t *pbuf, uint32_t length); + +USBH_StatusTypeDef USBH_MSC_Write(USBH_HandleTypeDef *phost, uint8_t lun, + uint32_t address, uint8_t *pbuf, uint32_t length); +/** + * @} + */ + +#ifdef __cplusplus +} +#endif + +#endif /* __USBH_MSC_H */ + + +/** + * @} + */ + +/** + * @} + */ + +/** + * @} + */ + +/** + * @} + */ +/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ + + + diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_bot.c b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_bot.c new file mode 100644 index 0000000000..7f2026d175 --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_bot.c @@ -0,0 +1,700 @@ +/** + ****************************************************************************** + * @file usbh_msc_bot.c + * @author MCD Application Team + * @brief This file includes the BOT protocol related functions + ****************************************************************************** + * @attention + * + *

© Copyright (c) 2015 STMicroelectronics. + * All rights reserved.

+ * + * This software component is licensed by ST under Ultimate Liberty license + * SLA0044, the "License"; You may not use this file except in compliance with + * the License. You may obtain a copy of the License at: + * www.st.com/SLA0044 + * + ****************************************************************************** + */ + +/* BSPDependencies +- "stm32xxxxx_{eval}{discovery}{nucleo_144}.c" +- "stm32xxxxx_{eval}{discovery}_io.c" +- "stm32xxxxx_{eval}{discovery}{adafruit}_lcd.c" +- "stm32xxxxx_{eval}{discovery}_sdram.c" +EndBSPDependencies */ + +/* Includes ------------------------------------------------------------------*/ +#include "usbh_msc_bot.h" +#include "usbh_msc.h" + +/** @addtogroup USBH_LIB +* @{ +*/ + +/** @addtogroup USBH_CLASS +* @{ +*/ + +/** @addtogroup USBH_MSC_CLASS +* @{ +*/ + +/** @defgroup USBH_MSC_BOT +* @brief This file includes the mass storage related functions +* @{ +*/ + + +/** @defgroup USBH_MSC_BOT_Private_TypesDefinitions +* @{ +*/ +/** +* @} +*/ + +/** @defgroup USBH_MSC_BOT_Private_Defines +* @{ +*/ +/** +* @} +*/ + +/** @defgroup USBH_MSC_BOT_Private_Macros +* @{ +*/ +/** +* @} +*/ + + +/** @defgroup USBH_MSC_BOT_Private_Variables +* @{ +*/ + +/** +* @} +*/ + + +/** @defgroup USBH_MSC_BOT_Private_FunctionPrototypes +* @{ +*/ +static USBH_StatusTypeDef USBH_MSC_BOT_Abort(USBH_HandleTypeDef *phost, uint8_t lun, uint8_t dir); +static BOT_CSWStatusTypeDef USBH_MSC_DecodeCSW(USBH_HandleTypeDef *phost); +/** +* @} +*/ + + +/** @defgroup USBH_MSC_BOT_Exported_Variables +* @{ +*/ +/** +* @} +*/ + + +/** @defgroup USBH_MSC_BOT_Private_Functions +* @{ +*/ + +/** + * @brief USBH_MSC_BOT_REQ_Reset + * The function the MSC BOT Reset request. + * @param phost: Host handle + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_MSC_BOT_REQ_Reset(USBH_HandleTypeDef *phost) +{ + + phost->Control.setup.b.bmRequestType = USB_H2D | USB_REQ_TYPE_CLASS + | USB_REQ_RECIPIENT_INTERFACE; + + phost->Control.setup.b.bRequest = USB_REQ_BOT_RESET; + phost->Control.setup.b.wValue.w = 0U; + phost->Control.setup.b.wIndex.w = 0U; + phost->Control.setup.b.wLength.w = 0U; + + return USBH_CtlReq(phost, 0U, 0U); +} + +/** + * @brief USBH_MSC_BOT_REQ_GetMaxLUN + * The function the MSC BOT GetMaxLUN request. + * @param phost: Host handle + * @param Maxlun: pointer to Maxlun variable + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_MSC_BOT_REQ_GetMaxLUN(USBH_HandleTypeDef *phost, uint8_t *Maxlun) +{ + phost->Control.setup.b.bmRequestType = USB_D2H | USB_REQ_TYPE_CLASS + | USB_REQ_RECIPIENT_INTERFACE; + + phost->Control.setup.b.bRequest = USB_REQ_GET_MAX_LUN; + phost->Control.setup.b.wValue.w = 0U; + phost->Control.setup.b.wIndex.w = 0U; + phost->Control.setup.b.wLength.w = 1U; + + return USBH_CtlReq(phost, Maxlun, 1U); +} + + + +/** + * @brief USBH_MSC_BOT_Init + * The function Initializes the BOT protocol. + * @param phost: Host handle + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_MSC_BOT_Init(USBH_HandleTypeDef *phost) +{ + + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + + MSC_Handle->hbot.cbw.field.Signature = BOT_CBW_SIGNATURE; + MSC_Handle->hbot.cbw.field.Tag = BOT_CBW_TAG; + MSC_Handle->hbot.state = BOT_SEND_CBW; + MSC_Handle->hbot.cmd_state = BOT_CMD_SEND; + + return USBH_OK; +} + + + +/** + * @brief USBH_MSC_BOT_Process + * The function handle the BOT protocol. + * @param phost: Host handle + * @param lun: Logical Unit Number + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_MSC_BOT_Process(USBH_HandleTypeDef *phost, uint8_t lun) +{ + USBH_StatusTypeDef status = USBH_BUSY; + USBH_StatusTypeDef error = USBH_BUSY; + BOT_CSWStatusTypeDef CSW_Status = BOT_CSW_CMD_FAILED; + USBH_URBStateTypeDef URB_Status = USBH_URB_IDLE; + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + uint8_t toggle = 0U; + + switch (MSC_Handle->hbot.state) + { + case BOT_SEND_CBW: + MSC_Handle->hbot.cbw.field.LUN = lun; + MSC_Handle->hbot.state = BOT_SEND_CBW_WAIT; + USBH_BulkSendData(phost, MSC_Handle->hbot.cbw.data, + BOT_CBW_LENGTH, MSC_Handle->OutPipe, 1U); + + break; + + case BOT_SEND_CBW_WAIT: + + URB_Status = USBH_LL_GetURBState(phost, MSC_Handle->OutPipe); + + if (URB_Status == USBH_URB_DONE) + { + if (MSC_Handle->hbot.cbw.field.DataTransferLength != 0U) + { + /* If there is Data Transfer Stage */ + if (((MSC_Handle->hbot.cbw.field.Flags) & USB_REQ_DIR_MASK) == USB_D2H) + { + /* Data Direction is IN */ + MSC_Handle->hbot.state = BOT_DATA_IN; + } + else + { + /* Data Direction is OUT */ + MSC_Handle->hbot.state = BOT_DATA_OUT; + } + } + + else + { + /* If there is NO Data Transfer Stage */ + MSC_Handle->hbot.state = BOT_RECEIVE_CSW; + } + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_URB_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else if (URB_Status == USBH_URB_NOTREADY) + { + /* Re-send CBW */ + MSC_Handle->hbot.state = BOT_SEND_CBW; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_URB_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else + { + if (URB_Status == USBH_URB_STALL) + { + MSC_Handle->hbot.state = BOT_ERROR_OUT; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_URB_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + } + break; + + case BOT_DATA_IN: + /* Send first packet */ + USBH_BulkReceiveData(phost, MSC_Handle->hbot.pbuf, + MSC_Handle->InEpSize, MSC_Handle->InPipe); + + MSC_Handle->hbot.state = BOT_DATA_IN_WAIT; + + break; + + case BOT_DATA_IN_WAIT: + + URB_Status = USBH_LL_GetURBState(phost, MSC_Handle->InPipe); + + if (URB_Status == USBH_URB_DONE) + { + /* Adjust Data pointer and data length */ + if (MSC_Handle->hbot.cbw.field.DataTransferLength > MSC_Handle->InEpSize) + { + MSC_Handle->hbot.pbuf += MSC_Handle->InEpSize; + MSC_Handle->hbot.cbw.field.DataTransferLength -= MSC_Handle->InEpSize; + } + else + { + MSC_Handle->hbot.cbw.field.DataTransferLength = 0U; + } + + /* More Data To be Received */ + if (MSC_Handle->hbot.cbw.field.DataTransferLength > 0U) + { + /* Send next packet */ + USBH_BulkReceiveData(phost, MSC_Handle->hbot.pbuf, + MSC_Handle->InEpSize, MSC_Handle->InPipe); + } + else + { + /* If value was 0, and successful transfer, then change the state */ + MSC_Handle->hbot.state = BOT_RECEIVE_CSW; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_URB_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + } + else if (URB_Status == USBH_URB_STALL) + { + /* This is Data IN Stage STALL Condition */ + MSC_Handle->hbot.state = BOT_ERROR_IN; + + /* Refer to USB Mass-Storage Class : BOT (www.usb.org) + 6.7.2 Host expects to receive data from the device + 3. On a STALL condition receiving data, then: + The host shall accept the data received. + The host shall clear the Bulk-In pipe. + 4. The host shall attempt to receive a CSW.*/ + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_URB_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else + { + } + break; + + case BOT_DATA_OUT: + + USBH_BulkSendData(phost, MSC_Handle->hbot.pbuf, + MSC_Handle->OutEpSize, MSC_Handle->OutPipe, 1U); + + MSC_Handle->hbot.state = BOT_DATA_OUT_WAIT; + break; + + case BOT_DATA_OUT_WAIT: + URB_Status = USBH_LL_GetURBState(phost, MSC_Handle->OutPipe); + + if (URB_Status == USBH_URB_DONE) + { + /* Adjust Data pointer and data length */ + if (MSC_Handle->hbot.cbw.field.DataTransferLength > MSC_Handle->OutEpSize) + { + MSC_Handle->hbot.pbuf += MSC_Handle->OutEpSize; + MSC_Handle->hbot.cbw.field.DataTransferLength -= MSC_Handle->OutEpSize; + } + else + { + MSC_Handle->hbot.cbw.field.DataTransferLength = 0U; + } + + /* More Data To be Sent */ + if (MSC_Handle->hbot.cbw.field.DataTransferLength > 0U) + { + USBH_BulkSendData(phost, MSC_Handle->hbot.pbuf, + MSC_Handle->OutEpSize, MSC_Handle->OutPipe, 1U); + } + else + { + /* If value was 0, and successful transfer, then change the state */ + MSC_Handle->hbot.state = BOT_RECEIVE_CSW; + } + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_URB_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + + else if (URB_Status == USBH_URB_NOTREADY) + { + /* Resend same data */ + MSC_Handle->hbot.state = BOT_DATA_OUT; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_URB_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + + else if (URB_Status == USBH_URB_STALL) + { + MSC_Handle->hbot.state = BOT_ERROR_OUT; + + /* Refer to USB Mass-Storage Class : BOT (www.usb.org) + 6.7.3 Ho - Host expects to send data to the device + 3. On a STALL condition sending data, then: + " The host shall clear the Bulk-Out pipe. + 4. The host shall attempt to receive a CSW. + */ + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_URB_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else + { + } + break; + + case BOT_RECEIVE_CSW: + + USBH_BulkReceiveData(phost, MSC_Handle->hbot.csw.data, + BOT_CSW_LENGTH, MSC_Handle->InPipe); + + MSC_Handle->hbot.state = BOT_RECEIVE_CSW_WAIT; + break; + + case BOT_RECEIVE_CSW_WAIT: + + URB_Status = USBH_LL_GetURBState(phost, MSC_Handle->InPipe); + + /* Decode CSW */ + if (URB_Status == USBH_URB_DONE) + { + MSC_Handle->hbot.state = BOT_SEND_CBW; + MSC_Handle->hbot.cmd_state = BOT_CMD_SEND; + CSW_Status = USBH_MSC_DecodeCSW(phost); + + if (CSW_Status == BOT_CSW_CMD_PASSED) + { + status = USBH_OK; + } + else + { + status = USBH_FAIL; + } + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_URB_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else if (URB_Status == USBH_URB_STALL) + { + MSC_Handle->hbot.state = BOT_ERROR_IN; + +#if (USBH_USE_OS == 1U) + phost->os_msg = (uint32_t)USBH_URB_EVENT; +#if (osCMSIS < 0x20000U) + (void)osMessagePut(phost->os_event, phost->os_msg, 0U); +#else + (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); +#endif +#endif + } + else + { + } + break; + + case BOT_ERROR_IN: + error = USBH_MSC_BOT_Abort(phost, lun, BOT_DIR_IN); + + if (error == USBH_OK) + { + MSC_Handle->hbot.state = BOT_RECEIVE_CSW; + } + else if (error == USBH_UNRECOVERED_ERROR) + { + /* This means that there is a STALL Error limit, Do Reset Recovery */ + MSC_Handle->hbot.state = BOT_UNRECOVERED_ERROR; + } + else + { + } + break; + + case BOT_ERROR_OUT: + error = USBH_MSC_BOT_Abort(phost, lun, BOT_DIR_OUT); + + if (error == USBH_OK) + { + + toggle = USBH_LL_GetToggle(phost, MSC_Handle->OutPipe); + USBH_LL_SetToggle(phost, MSC_Handle->OutPipe, 1U - toggle); + USBH_LL_SetToggle(phost, MSC_Handle->InPipe, 0U); + MSC_Handle->hbot.state = BOT_ERROR_IN; + } + else + { + if (error == USBH_UNRECOVERED_ERROR) + { + MSC_Handle->hbot.state = BOT_UNRECOVERED_ERROR; + } + } + break; + + + case BOT_UNRECOVERED_ERROR: + status = USBH_MSC_BOT_REQ_Reset(phost); + if (status == USBH_OK) + { + MSC_Handle->hbot.state = BOT_SEND_CBW; + } + break; + + default: + break; + } + return status; +} + +/** + * @brief USBH_MSC_BOT_Abort + * The function handle the BOT Abort process. + * @param phost: Host handle + * @param lun: Logical Unit Number + * @param dir: direction (0: out / 1 : in) + * @retval USBH Status + */ +static USBH_StatusTypeDef USBH_MSC_BOT_Abort(USBH_HandleTypeDef *phost, uint8_t lun, uint8_t dir) +{ + /* Prevent unused argument(s) compilation warning */ + UNUSED(lun); + + USBH_StatusTypeDef status = USBH_FAIL; + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + + switch (dir) + { + case BOT_DIR_IN : + /* send ClrFeture on Bulk IN endpoint */ + status = USBH_ClrFeature(phost, MSC_Handle->InEp); + + break; + + case BOT_DIR_OUT : + /*send ClrFeature on Bulk OUT endpoint */ + status = USBH_ClrFeature(phost, MSC_Handle->OutEp); + break; + + default: + break; + } + return status; +} + +/** + * @brief USBH_MSC_BOT_DecodeCSW + * This function decodes the CSW received by the device and updates the + * same to upper layer. + * @param phost: Host handle + * @retval USBH Status + * @notes + * Refer to USB Mass-Storage Class : BOT (www.usb.org) + * 6.3.1 Valid CSW Conditions : + * The host shall consider the CSW valid when: + * 1. dCSWSignature is equal to 53425355h + * 2. the CSW is 13 (Dh) bytes in length, + * 3. dCSWTag matches the dCBWTag from the corresponding CBW. + */ + +static BOT_CSWStatusTypeDef USBH_MSC_DecodeCSW(USBH_HandleTypeDef *phost) +{ + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + BOT_CSWStatusTypeDef status = BOT_CSW_CMD_FAILED; + + /*Checking if the transfer length is different than 13*/ + if (USBH_LL_GetLastXferSize(phost, MSC_Handle->InPipe) != BOT_CSW_LENGTH) + { + /*(4) Hi > Dn (Host expects to receive data from the device, + Device intends to transfer no data) + (5) Hi > Di (Host expects to receive data from the device, + Device intends to send data to the host) + (9) Ho > Dn (Host expects to send data to the device, + Device intends to transfer no data) + (11) Ho > Do (Host expects to send data to the device, + Device intends to receive data from the host)*/ + + + status = BOT_CSW_PHASE_ERROR; + } + else + { + /* CSW length is Correct */ + + /* Check validity of the CSW Signature and CSWStatus */ + if (MSC_Handle->hbot.csw.field.Signature == BOT_CSW_SIGNATURE) + { + /* Check Condition 1. dCSWSignature is equal to 53425355h */ + + if (MSC_Handle->hbot.csw.field.Tag == MSC_Handle->hbot.cbw.field.Tag) + { + /* Check Condition 3. dCSWTag matches the dCBWTag from the + corresponding CBW */ + + if (MSC_Handle->hbot.csw.field.Status == 0U) + { + /* Refer to USB Mass-Storage Class : BOT (www.usb.org) + + Hn Host expects no data transfers + Hi Host expects to receive data from the device + Ho Host expects to send data to the device + + Dn Device intends to transfer no data + Di Device intends to send data to the host + Do Device intends to receive data from the host + + Section 6.7 + (1) Hn = Dn (Host expects no data transfers, + Device intends to transfer no data) + (6) Hi = Di (Host expects to receive data from the device, + Device intends to send data to the host) + (12) Ho = Do (Host expects to send data to the device, + Device intends to receive data from the host) + + */ + + status = BOT_CSW_CMD_PASSED; + } + else if (MSC_Handle->hbot.csw.field.Status == 1U) + { + status = BOT_CSW_CMD_FAILED; + } + + else if (MSC_Handle->hbot.csw.field.Status == 2U) + { + /* Refer to USB Mass-Storage Class : BOT (www.usb.org) + Section 6.7 + (2) Hn < Di ( Host expects no data transfers, + Device intends to send data to the host) + (3) Hn < Do ( Host expects no data transfers, + Device intends to receive data from the host) + (7) Hi < Di ( Host expects to receive data from the device, + Device intends to send data to the host) + (8) Hi <> Do ( Host expects to receive data from the device, + Device intends to receive data from the host) + (10) Ho <> Di (Host expects to send data to the device, + Di Device intends to send data to the host) + (13) Ho < Do (Host expects to send data to the device, + Device intends to receive data from the host) + */ + + status = BOT_CSW_PHASE_ERROR; + } + else + { + } + } /* CSW Tag Matching is Checked */ + } /* CSW Signature Correct Checking */ + else + { + /* If the CSW Signature is not valid, We sall return the Phase Error to + Upper Layers for Reset Recovery */ + + status = BOT_CSW_PHASE_ERROR; + } + } /* CSW Length Check*/ + + return status; +} + + +/** +* @} +*/ + +/** +* @} +*/ + +/** +* @} +*/ + +/** +* @} +*/ + +/** +* @} +*/ + +/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ + + + diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_bot.h b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_bot.h new file mode 100644 index 0000000000..2de31f65dc --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_bot.h @@ -0,0 +1,232 @@ +/** + ****************************************************************************** + * @file usbh_msc_bot.h + * @author MCD Application Team + * @brief Header file for usbh_msc_bot.c + ****************************************************************************** + * @attention + * + *

© Copyright (c) 2015 STMicroelectronics. + * All rights reserved.

+ * + * This software component is licensed by ST under Ultimate Liberty license + * SLA0044, the "License"; You may not use this file except in compliance with + * the License. You may obtain a copy of the License at: + * www.st.com/SLA0044 + * + ****************************************************************************** + */ + +/* Define to prevent recursive ----------------------------------------------*/ +#ifndef __USBH_MSC_BOT_H +#define __USBH_MSC_BOT_H + +#ifdef __cplusplus +extern "C" { +#endif + +/* Includes ------------------------------------------------------------------*/ +#include "usbh_core.h" + +/** @addtogroup USBH_LIB + * @{ + */ + +/** @addtogroup USBH_CLASS + * @{ + */ + +/** @addtogroup USBH_MSC_CLASS + * @{ + */ + +/** @defgroup USBH_MSC_BOT + * @brief This file is the Header file for usbh_msc_bot.c + * @{ + */ + + +/** @defgroup USBH_MSC_BOT_Exported_Types + * @{ + */ + +typedef enum +{ + BOT_OK = 0, + BOT_FAIL = 1, + BOT_PHASE_ERROR = 2, + BOT_BUSY = 3 +} +BOT_StatusTypeDef; + +typedef enum +{ + BOT_CMD_IDLE = 0, + BOT_CMD_SEND, + BOT_CMD_WAIT, +} +BOT_CMDStateTypeDef; + +/* CSW Status Definitions */ +typedef enum +{ + + BOT_CSW_CMD_PASSED = 0x00, + BOT_CSW_CMD_FAILED = 0x01, + BOT_CSW_PHASE_ERROR = 0x02, +} +BOT_CSWStatusTypeDef; + +typedef enum +{ + BOT_SEND_CBW = 1, + BOT_SEND_CBW_WAIT, + BOT_DATA_IN, + BOT_DATA_IN_WAIT, + BOT_DATA_OUT, + BOT_DATA_OUT_WAIT, + BOT_RECEIVE_CSW, + BOT_RECEIVE_CSW_WAIT, + BOT_ERROR_IN, + BOT_ERROR_OUT, + BOT_UNRECOVERED_ERROR +} +BOT_StateTypeDef; + +typedef union +{ + struct __CBW + { + uint32_t Signature; + uint32_t Tag; + uint32_t DataTransferLength; + uint8_t Flags; + uint8_t LUN; + uint8_t CBLength; + uint8_t CB[16]; + } field; + uint8_t data[31]; +} +BOT_CBWTypeDef; + +typedef union +{ + struct __CSW + { + uint32_t Signature; + uint32_t Tag; + uint32_t DataResidue; + uint8_t Status; + } field; + uint8_t data[13]; +} +BOT_CSWTypeDef; + +typedef struct +{ + uint32_t data[16]; + BOT_StateTypeDef state; + BOT_StateTypeDef prev_state; + BOT_CMDStateTypeDef cmd_state; + BOT_CBWTypeDef cbw; + uint8_t Reserved1; + BOT_CSWTypeDef csw; + uint8_t Reserved2[3]; + uint8_t *pbuf; +} +BOT_HandleTypeDef; + +/** + * @} + */ + + + +/** @defgroup USBH_MSC_BOT_Exported_Defines + * @{ + */ +#define BOT_CBW_SIGNATURE 0x43425355U +#define BOT_CBW_TAG 0x20304050U +#define BOT_CSW_SIGNATURE 0x53425355U +#define BOT_CBW_LENGTH 31U +#define BOT_CSW_LENGTH 13U + + + +#define BOT_SEND_CSW_DISABLE 0U +#define BOT_SEND_CSW_ENABLE 1U + +#define BOT_DIR_IN 0U +#define BOT_DIR_OUT 1U +#define BOT_DIR_BOTH 2U + +#define BOT_PAGE_LENGTH 512U + + +#define BOT_CBW_CB_LENGTH 16U + + +#define MAX_BULK_STALL_COUNT_LIMIT 0x04U /* If STALL is seen on Bulk + Endpoint continuously, this means + that device and Host has phase error + Hence a Reset is needed */ + +/** + * @} + */ + +/** @defgroup USBH_MSC_BOT_Exported_Macros + * @{ + */ +/** + * @} + */ + +/** @defgroup USBH_MSC_BOT_Exported_Variables + * @{ + */ + +/** + * @} + */ + +/** @defgroup USBH_MSC_BOT_Exported_FunctionsPrototype + * @{ + */ +USBH_StatusTypeDef USBH_MSC_BOT_REQ_Reset(USBH_HandleTypeDef *phost); +USBH_StatusTypeDef USBH_MSC_BOT_REQ_GetMaxLUN(USBH_HandleTypeDef *phost, uint8_t *Maxlun); + +USBH_StatusTypeDef USBH_MSC_BOT_Init(USBH_HandleTypeDef *phost); +USBH_StatusTypeDef USBH_MSC_BOT_Process(USBH_HandleTypeDef *phost, uint8_t lun); +USBH_StatusTypeDef USBH_MSC_BOT_Error(USBH_HandleTypeDef *phost, uint8_t lun); + + + +/** + * @} + */ + +#ifdef __cplusplus +} +#endif + +#endif /* __USBH_MSC_BOT_H__ */ + + +/** + * @} + */ + +/** + * @} + */ + +/** + * @} + */ + +/** + * @} + */ +/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ + diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_scsi.c b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_scsi.c new file mode 100644 index 0000000000..20612f69f2 --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_scsi.c @@ -0,0 +1,466 @@ +/** + ****************************************************************************** + * @file usbh_msc_scsi.c + * @author MCD Application Team + * @brief This file implements the SCSI commands + ****************************************************************************** + * @attention + * + *

© Copyright (c) 2015 STMicroelectronics. + * All rights reserved.

+ * + * This software component is licensed by ST under Ultimate Liberty license + * SLA0044, the "License"; You may not use this file except in compliance with + * the License. You may obtain a copy of the License at: + * www.st.com/SLA0044 + * + ****************************************************************************** + */ + +/* BSPDependencies +- "stm32xxxxx_{eval}{discovery}{nucleo_144}.c" +- "stm32xxxxx_{eval}{discovery}_io.c" +- "stm32xxxxx_{eval}{discovery}{adafruit}_lcd.c" +- "stm32xxxxx_{eval}{discovery}_sdram.c" +EndBSPDependencies */ + +/* Includes ------------------------------------------------------------------*/ +#include "usbh_msc.h" +#include "usbh_msc_scsi.h" +#include "usbh_msc_bot.h" + + +/** @addtogroup USBH_LIB + * @{ + */ + +/** @addtogroup USBH_CLASS + * @{ + */ + +/** @addtogroup USBH_MSC_CLASS + * @{ + */ + +/** @defgroup USBH_MSC_SCSI + * @brief This file includes the mass storage related functions + * @{ + */ + + +/** @defgroup USBH_MSC_SCSI_Private_TypesDefinitions + * @{ + */ + +/** + * @} + */ + +/** @defgroup USBH_MSC_SCSI_Private_Defines + * @{ + */ +/** + * @} + */ + +/** @defgroup USBH_MSC_SCSI_Private_Macros + * @{ + */ +/** + * @} + */ + + +/** @defgroup USBH_MSC_SCSI_Private_FunctionPrototypes + * @{ + */ +/** + * @} + */ + + +/** @defgroup USBH_MSC_SCSI_Exported_Variables + * @{ + */ + +/** + * @} + */ + + +/** @defgroup USBH_MSC_SCSI_Private_Functions + * @{ + */ + + +/** + * @brief USBH_MSC_SCSI_TestUnitReady + * Issue TestUnitReady command. + * @param phost: Host handle + * @param lun: Logical Unit Number + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_MSC_SCSI_TestUnitReady(USBH_HandleTypeDef *phost, + uint8_t lun) +{ + USBH_StatusTypeDef error = USBH_FAIL ; + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + + switch (MSC_Handle->hbot.cmd_state) + { + case BOT_CMD_SEND: + + /*Prepare the CBW and relevent field*/ + MSC_Handle->hbot.cbw.field.DataTransferLength = DATA_LEN_MODE_TEST_UNIT_READY; + MSC_Handle->hbot.cbw.field.Flags = USB_EP_DIR_OUT; + MSC_Handle->hbot.cbw.field.CBLength = CBW_LENGTH; + + USBH_memset(MSC_Handle->hbot.cbw.field.CB, 0, CBW_CB_LENGTH); + MSC_Handle->hbot.cbw.field.CB[0] = OPCODE_TEST_UNIT_READY; + + MSC_Handle->hbot.state = BOT_SEND_CBW; + MSC_Handle->hbot.cmd_state = BOT_CMD_WAIT; + error = USBH_BUSY; + break; + + case BOT_CMD_WAIT: + error = USBH_MSC_BOT_Process(phost, lun); + break; + + default: + break; + } + + return error; +} + +/** + * @brief USBH_MSC_SCSI_ReadCapacity + * Issue Read Capacity command. + * @param phost: Host handle + * @param lun: Logical Unit Number + * @param capacity: pointer to the capacity structure + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_MSC_SCSI_ReadCapacity(USBH_HandleTypeDef *phost, + uint8_t lun, + SCSI_CapacityTypeDef *capacity) +{ + USBH_StatusTypeDef error = USBH_BUSY ; + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + + switch (MSC_Handle->hbot.cmd_state) + { + case BOT_CMD_SEND: + + /*Prepare the CBW and relevent field*/ + MSC_Handle->hbot.cbw.field.DataTransferLength = DATA_LEN_READ_CAPACITY10; + MSC_Handle->hbot.cbw.field.Flags = USB_EP_DIR_IN; + MSC_Handle->hbot.cbw.field.CBLength = CBW_LENGTH; + + USBH_memset(MSC_Handle->hbot.cbw.field.CB, 0, CBW_CB_LENGTH); + MSC_Handle->hbot.cbw.field.CB[0] = OPCODE_READ_CAPACITY10; + + MSC_Handle->hbot.state = BOT_SEND_CBW; + + MSC_Handle->hbot.cmd_state = BOT_CMD_WAIT; + MSC_Handle->hbot.pbuf = (uint8_t *)(void *)MSC_Handle->hbot.data; + error = USBH_BUSY; + break; + + case BOT_CMD_WAIT: + + error = USBH_MSC_BOT_Process(phost, lun); + + if (error == USBH_OK) + { + /*assign the capacity*/ + capacity->block_nbr = MSC_Handle->hbot.pbuf[3] | ((uint32_t)MSC_Handle->hbot.pbuf[2] << 8U) | \ + ((uint32_t)MSC_Handle->hbot.pbuf[1] << 16U) | ((uint32_t)MSC_Handle->hbot.pbuf[0] << 24U); + + /*assign the page length*/ + capacity->block_size = (uint16_t)(MSC_Handle->hbot.pbuf[7] | ((uint32_t)MSC_Handle->hbot.pbuf[6] << 8U)); + } + break; + + default: + break; + } + + return error; +} + +/** + * @brief USBH_MSC_SCSI_Inquiry + * Issue Inquiry command. + * @param phost: Host handle + * @param lun: Logical Unit Number + * @param capacity: pointer to the inquiry structure + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_MSC_SCSI_Inquiry(USBH_HandleTypeDef *phost, uint8_t lun, + SCSI_StdInquiryDataTypeDef *inquiry) +{ + USBH_StatusTypeDef error = USBH_FAIL; + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + + switch (MSC_Handle->hbot.cmd_state) + { + case BOT_CMD_SEND: + + /*Prepare the CBW and relevent field*/ + MSC_Handle->hbot.cbw.field.DataTransferLength = DATA_LEN_INQUIRY; + MSC_Handle->hbot.cbw.field.Flags = USB_EP_DIR_IN; + MSC_Handle->hbot.cbw.field.CBLength = CBW_LENGTH; + + USBH_memset(MSC_Handle->hbot.cbw.field.CB, 0, CBW_LENGTH); + MSC_Handle->hbot.cbw.field.CB[0] = OPCODE_INQUIRY; + MSC_Handle->hbot.cbw.field.CB[1] = (lun << 5); + MSC_Handle->hbot.cbw.field.CB[2] = 0U; + MSC_Handle->hbot.cbw.field.CB[3] = 0U; + MSC_Handle->hbot.cbw.field.CB[4] = 0x24U; + MSC_Handle->hbot.cbw.field.CB[5] = 0U; + + MSC_Handle->hbot.state = BOT_SEND_CBW; + + MSC_Handle->hbot.cmd_state = BOT_CMD_WAIT; + MSC_Handle->hbot.pbuf = (uint8_t *)(void *)MSC_Handle->hbot.data; + error = USBH_BUSY; + break; + + case BOT_CMD_WAIT: + + error = USBH_MSC_BOT_Process(phost, lun); + + if (error == USBH_OK) + { + USBH_memset(inquiry, 0, sizeof(SCSI_StdInquiryDataTypeDef)); + /*assign Inquiry Data */ + inquiry->DeviceType = MSC_Handle->hbot.pbuf[0] & 0x1FU; + inquiry->PeripheralQualifier = MSC_Handle->hbot.pbuf[0] >> 5U; + + if (((uint32_t)MSC_Handle->hbot.pbuf[1] & 0x80U) == 0x80U) + { + inquiry->RemovableMedia = 1U; + } + else + { + inquiry->RemovableMedia = 0U; + } + + USBH_memcpy(inquiry->vendor_id, &MSC_Handle->hbot.pbuf[8], 8U); + USBH_memcpy(inquiry->product_id, &MSC_Handle->hbot.pbuf[16], 16U); + USBH_memcpy(inquiry->revision_id, &MSC_Handle->hbot.pbuf[32], 4U); + } + break; + + default: + break; + } + + return error; +} + +/** + * @brief USBH_MSC_SCSI_RequestSense + * Issue RequestSense command. + * @param phost: Host handle + * @param lun: Logical Unit Number + * @param capacity: pointer to the sense data structure + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_MSC_SCSI_RequestSense(USBH_HandleTypeDef *phost, + uint8_t lun, + SCSI_SenseTypeDef *sense_data) +{ + USBH_StatusTypeDef error = USBH_FAIL ; + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + + switch (MSC_Handle->hbot.cmd_state) + { + case BOT_CMD_SEND: + + /*Prepare the CBW and relevent field*/ + MSC_Handle->hbot.cbw.field.DataTransferLength = DATA_LEN_REQUEST_SENSE; + MSC_Handle->hbot.cbw.field.Flags = USB_EP_DIR_IN; + MSC_Handle->hbot.cbw.field.CBLength = CBW_LENGTH; + + USBH_memset(MSC_Handle->hbot.cbw.field.CB, 0, CBW_CB_LENGTH); + MSC_Handle->hbot.cbw.field.CB[0] = OPCODE_REQUEST_SENSE; + MSC_Handle->hbot.cbw.field.CB[1] = (lun << 5); + MSC_Handle->hbot.cbw.field.CB[2] = 0U; + MSC_Handle->hbot.cbw.field.CB[3] = 0U; + MSC_Handle->hbot.cbw.field.CB[4] = DATA_LEN_REQUEST_SENSE; + MSC_Handle->hbot.cbw.field.CB[5] = 0U; + + MSC_Handle->hbot.state = BOT_SEND_CBW; + MSC_Handle->hbot.cmd_state = BOT_CMD_WAIT; + MSC_Handle->hbot.pbuf = (uint8_t *)(void *)MSC_Handle->hbot.data; + error = USBH_BUSY; + break; + + case BOT_CMD_WAIT: + + error = USBH_MSC_BOT_Process(phost, lun); + + if (error == USBH_OK) + { + sense_data->key = MSC_Handle->hbot.pbuf[2] & 0x0FU; + sense_data->asc = MSC_Handle->hbot.pbuf[12]; + sense_data->ascq = MSC_Handle->hbot.pbuf[13]; + } + break; + + default: + break; + } + + return error; +} + +/** + * @brief USBH_MSC_SCSI_Write + * Issue write10 command. + * @param phost: Host handle + * @param lun: Logical Unit Number + * @param address: sector address + * @param pbuf: pointer to data + * @param length: number of sector to write + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_MSC_SCSI_Write(USBH_HandleTypeDef *phost, + uint8_t lun, + uint32_t address, + uint8_t *pbuf, + uint32_t length) +{ + USBH_StatusTypeDef error = USBH_FAIL ; + + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + + switch (MSC_Handle->hbot.cmd_state) + { + case BOT_CMD_SEND: + + /*Prepare the CBW and relevent field*/ + MSC_Handle->hbot.cbw.field.DataTransferLength = length * MSC_Handle->unit[0].capacity.block_size; + MSC_Handle->hbot.cbw.field.Flags = USB_EP_DIR_OUT; + MSC_Handle->hbot.cbw.field.CBLength = CBW_LENGTH; + + USBH_memset(MSC_Handle->hbot.cbw.field.CB, 0, CBW_CB_LENGTH); + MSC_Handle->hbot.cbw.field.CB[0] = OPCODE_WRITE10; + + /*logical block address*/ + MSC_Handle->hbot.cbw.field.CB[2] = (((uint8_t *)(void *)&address)[3]); + MSC_Handle->hbot.cbw.field.CB[3] = (((uint8_t *)(void *)&address)[2]); + MSC_Handle->hbot.cbw.field.CB[4] = (((uint8_t *)(void *)&address)[1]); + MSC_Handle->hbot.cbw.field.CB[5] = (((uint8_t *)(void *)&address)[0]); + + + /*Transfer length */ + MSC_Handle->hbot.cbw.field.CB[7] = (((uint8_t *)(void *)&length)[1]) ; + MSC_Handle->hbot.cbw.field.CB[8] = (((uint8_t *)(void *)&length)[0]) ; + + + MSC_Handle->hbot.state = BOT_SEND_CBW; + MSC_Handle->hbot.cmd_state = BOT_CMD_WAIT; + MSC_Handle->hbot.pbuf = pbuf; + error = USBH_BUSY; + break; + + case BOT_CMD_WAIT: + error = USBH_MSC_BOT_Process(phost, lun); + break; + + default: + break; + } + + return error; +} + +/** + * @brief USBH_MSC_SCSI_Read + * Issue Read10 command. + * @param phost: Host handle + * @param lun: Logical Unit Number + * @param address: sector address + * @param pbuf: pointer to data + * @param length: number of sector to read + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_MSC_SCSI_Read(USBH_HandleTypeDef *phost, + uint8_t lun, + uint32_t address, + uint8_t *pbuf, + uint32_t length) +{ + USBH_StatusTypeDef error = USBH_FAIL ; + MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; + + switch (MSC_Handle->hbot.cmd_state) + { + case BOT_CMD_SEND: + + /*Prepare the CBW and relevent field*/ + MSC_Handle->hbot.cbw.field.DataTransferLength = length * MSC_Handle->unit[0].capacity.block_size; + MSC_Handle->hbot.cbw.field.Flags = USB_EP_DIR_IN; + MSC_Handle->hbot.cbw.field.CBLength = CBW_LENGTH; + + USBH_memset(MSC_Handle->hbot.cbw.field.CB, 0, CBW_CB_LENGTH); + MSC_Handle->hbot.cbw.field.CB[0] = OPCODE_READ10; + + /*logical block address*/ + MSC_Handle->hbot.cbw.field.CB[2] = (((uint8_t *)(void *)&address)[3]); + MSC_Handle->hbot.cbw.field.CB[3] = (((uint8_t *)(void *)&address)[2]); + MSC_Handle->hbot.cbw.field.CB[4] = (((uint8_t *)(void *)&address)[1]); + MSC_Handle->hbot.cbw.field.CB[5] = (((uint8_t *)(void *)&address)[0]); + + + /*Transfer length */ + MSC_Handle->hbot.cbw.field.CB[7] = (((uint8_t *)(void *)&length)[1]) ; + MSC_Handle->hbot.cbw.field.CB[8] = (((uint8_t *)(void *)&length)[0]) ; + + + MSC_Handle->hbot.state = BOT_SEND_CBW; + MSC_Handle->hbot.cmd_state = BOT_CMD_WAIT; + MSC_Handle->hbot.pbuf = pbuf; + error = USBH_BUSY; + break; + + case BOT_CMD_WAIT: + error = USBH_MSC_BOT_Process(phost, lun); + break; + + default: + break; + } + + return error; +} + + +/** + * @} + */ + +/** + * @} + */ + +/** + * @} + */ + +/** + * @} + */ + +/** + * @} + */ + +/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ + + + diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_scsi.h b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_scsi.h new file mode 100644 index 0000000000..7f839444d2 --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_scsi.h @@ -0,0 +1,218 @@ +/** + ****************************************************************************** + * @file usbh_msc_scsi.h + * @author MCD Application Team + * @brief Header file for usbh_msc_scsi.c + ****************************************************************************** + * @attention + * + *

© Copyright (c) 2015 STMicroelectronics. + * All rights reserved.

+ * + * This software component is licensed by ST under Ultimate Liberty license + * SLA0044, the "License"; You may not use this file except in compliance with + * the License. You may obtain a copy of the License at: + * www.st.com/SLA0044 + * + ****************************************************************************** + */ + +/* Define to prevent recursive ----------------------------------------------*/ +#ifndef __USBH_MSC_SCSI_H +#define __USBH_MSC_SCSI_H + +#ifdef __cplusplus +extern "C" { +#endif + +/* Includes ------------------------------------------------------------------*/ +#include "usbh_core.h" + + +/** @addtogroup USBH_LIB + * @{ + */ + +/** @addtogroup USBH_CLASS + * @{ + */ + +/** @addtogroup USBH_MSC_CLASS + * @{ + */ + +/** @defgroup USBH_MSC_SCSI + * @brief This file is the Header file for usbh_msc_scsi.c + * @{ + */ + + +/* Capacity data */ +typedef struct +{ + uint32_t block_nbr; + uint16_t block_size; +} SCSI_CapacityTypeDef; + + +/* Sense data */ +typedef struct +{ + uint8_t key; + uint8_t asc; + uint8_t ascq; +} SCSI_SenseTypeDef; + +/* INQUIRY data */ +typedef struct +{ + uint8_t PeripheralQualifier; + uint8_t DeviceType; + uint8_t RemovableMedia; + uint8_t vendor_id[9]; + uint8_t product_id[17]; + uint8_t revision_id[5]; +} SCSI_StdInquiryDataTypeDef; + +/** @defgroup USBH_MSC_SCSI_Exported_Defines + * @{ + */ +#define OPCODE_TEST_UNIT_READY 0x00U +#define OPCODE_READ_CAPACITY10 0x25U +#define OPCODE_READ10 0x28U +#define OPCODE_WRITE10 0x2AU +#define OPCODE_REQUEST_SENSE 0x03U +#define OPCODE_INQUIRY 0x12U + +#define DATA_LEN_MODE_TEST_UNIT_READY 0U +#define DATA_LEN_READ_CAPACITY10 8U +#define DATA_LEN_INQUIRY 36U +#define DATA_LEN_REQUEST_SENSE 14U + +#define CBW_CB_LENGTH 16U +#define CBW_LENGTH 10U + +/** @defgroup USBH_MSC_SCSI_Exported_Defines + * @{ + */ +#define SCSI_SENSE_KEY_NO_SENSE 0x00U +#define SCSI_SENSE_KEY_RECOVERED_ERROR 0x01U +#define SCSI_SENSE_KEY_NOT_READY 0x02U +#define SCSI_SENSE_KEY_MEDIUM_ERROR 0x03U +#define SCSI_SENSE_KEY_HARDWARE_ERROR 0x04U +#define SCSI_SENSE_KEY_ILLEGAL_REQUEST 0x05U +#define SCSI_SENSE_KEY_UNIT_ATTENTION 0x06U +#define SCSI_SENSE_KEY_DATA_PROTECT 0x07U +#define SCSI_SENSE_KEY_BLANK_CHECK 0x08U +#define SCSI_SENSE_KEY_VENDOR_SPECIFIC 0x09U +#define SCSI_SENSE_KEY_COPY_ABORTED 0x0AU +#define SCSI_SENSE_KEY_ABORTED_COMMAND 0x0BU +#define SCSI_SENSE_KEY_VOLUME_OVERFLOW 0x0DU +#define SCSI_SENSE_KEY_MISCOMPARE 0x0EU +/** + * @} + */ + + +/** @defgroup USBH_MSC_SCSI_Exported_Defines + * @{ + */ +#define SCSI_ASC_NO_ADDITIONAL_SENSE_INFORMATION 0x00 +#define SCSI_ASC_LOGICAL_UNIT_NOT_READY 0x04 +#define SCSI_ASC_INVALID_FIELD_IN_CDB 0x24 +#define SCSI_ASC_WRITE_PROTECTED 0x27 +#define SCSI_ASC_FORMAT_ERROR 0x31 +#define SCSI_ASC_INVALID_COMMAND_OPERATION_CODE 0x20 +#define SCSI_ASC_NOT_READY_TO_READY_CHANGE 0x28 +#define SCSI_ASC_MEDIUM_NOT_PRESENT 0x3A +/** + * @} + */ + + +/** @defgroup USBH_MSC_SCSI_Exported_Defines + * @{ + */ +#define SCSI_ASCQ_FORMAT_COMMAND_FAILED 0x01 +#define SCSI_ASCQ_INITIALIZING_COMMAND_REQUIRED 0x02 +#define SCSI_ASCQ_OPERATION_IN_PROGRESS 0x07 + +/** + * @} + */ + +/** @defgroup USBH_MSC_SCSI_Exported_Macros + * @{ + */ +/** + * @} + */ + +/** @defgroup _Exported_Variables + * @{ + */ + +/** + * @} + */ + +/** @defgroup USBH_MSC_SCSI_Exported_FunctionsPrototype + * @{ + */ +USBH_StatusTypeDef USBH_MSC_SCSI_TestUnitReady(USBH_HandleTypeDef *phost, + uint8_t lun); + +USBH_StatusTypeDef USBH_MSC_SCSI_ReadCapacity(USBH_HandleTypeDef *phost, + uint8_t lun, + SCSI_CapacityTypeDef *capacity); + +USBH_StatusTypeDef USBH_MSC_SCSI_Inquiry(USBH_HandleTypeDef *phost, + uint8_t lun, + SCSI_StdInquiryDataTypeDef *inquiry); + +USBH_StatusTypeDef USBH_MSC_SCSI_RequestSense(USBH_HandleTypeDef *phost, + uint8_t lun, + SCSI_SenseTypeDef *sense_data); + +USBH_StatusTypeDef USBH_MSC_SCSI_Write(USBH_HandleTypeDef *phost, + uint8_t lun, + uint32_t address, + uint8_t *pbuf, + uint32_t length); + +USBH_StatusTypeDef USBH_MSC_SCSI_Read(USBH_HandleTypeDef *phost, + uint8_t lun, + uint32_t address, + uint8_t *pbuf, + uint32_t length); + + +/** + * @} + */ + +#ifdef __cplusplus +} +#endif + +#endif /* __USBH_MSC_SCSI_H */ + + +/** + * @} + */ + +/** + * @} + */ + +/** + * @} + */ + +/** + * @} + */ + +/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ + diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_pipes.c b/Marlin/lib/STM32_USB_Host_Library/src/usbh_pipes.c new file mode 100644 index 0000000000..60fe08b907 --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/src/usbh_pipes.c @@ -0,0 +1,188 @@ +/** + ****************************************************************************** + * @file usbh_pipes.c + * @author MCD Application Team + * @brief This file implements functions for opening and closing Pipes + ****************************************************************************** + * @attention + * + *

© Copyright (c) 2015 STMicroelectronics. + * All rights reserved.

+ * + * This software component is licensed by ST under Ultimate Liberty license + * SLA0044, the "License"; You may not use this file except in compliance with + * the License. You may obtain a copy of the License at: + * www.st.com/SLA0044 + * + ****************************************************************************** + */ + +/* Includes ------------------------------------------------------------------*/ +#include "usbh_pipes.h" + +/** @addtogroup USBH_LIB + * @{ + */ + +/** @addtogroup USBH_LIB_CORE +* @{ +*/ + +/** @defgroup USBH_PIPES + * @brief This file includes opening and closing Pipes + * @{ + */ + +/** @defgroup USBH_PIPES_Private_Defines + * @{ + */ +/** + * @} + */ + +/** @defgroup USBH_PIPES_Private_TypesDefinitions + * @{ + */ +/** + * @} + */ + + +/** @defgroup USBH_PIPES_Private_Macros + * @{ + */ +/** + * @} + */ + + +/** @defgroup USBH_PIPES_Private_Variables + * @{ + */ + +/** + * @} + */ + + +/** @defgroup USBH_PIPES_Private_Functions + * @{ + */ +static uint16_t USBH_GetFreePipe(USBH_HandleTypeDef *phost); + + +/** + * @brief USBH_Open_Pipe + * Open a pipe + * @param phost: Host Handle + * @param pipe_num: Pipe Number + * @param dev_address: USB Device address allocated to attached device + * @param speed : USB device speed (Full/Low) + * @param ep_type: end point type (Bulk/int/ctl) + * @param mps: max pkt size + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_OpenPipe(USBH_HandleTypeDef *phost, uint8_t pipe_num, + uint8_t epnum, uint8_t dev_address, + uint8_t speed, uint8_t ep_type, uint16_t mps) +{ + USBH_LL_OpenPipe(phost, pipe_num, epnum, dev_address, speed, ep_type, mps); + + return USBH_OK; +} + + +/** + * @brief USBH_ClosePipe + * Close a pipe + * @param phost: Host Handle + * @param pipe_num: Pipe Number + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_ClosePipe(USBH_HandleTypeDef *phost, uint8_t pipe_num) +{ + USBH_LL_ClosePipe(phost, pipe_num); + + return USBH_OK; +} + + +/** + * @brief USBH_Alloc_Pipe + * Allocate a new Pipe + * @param phost: Host Handle + * @param ep_addr: End point for which the Pipe to be allocated + * @retval Pipe number + */ +uint8_t USBH_AllocPipe(USBH_HandleTypeDef *phost, uint8_t ep_addr) +{ + uint16_t pipe; + + pipe = USBH_GetFreePipe(phost); + + if (pipe != 0xFFFFU) + { + phost->Pipes[pipe & 0xFU] = 0x8000U | ep_addr; + } + + return (uint8_t)pipe; +} + + +/** + * @brief USBH_Free_Pipe + * Free the USB Pipe + * @param phost: Host Handle + * @param idx: Pipe number to be freed + * @retval USBH Status + */ +USBH_StatusTypeDef USBH_FreePipe(USBH_HandleTypeDef *phost, uint8_t idx) +{ + if (idx < 11U) + { + phost->Pipes[idx] &= 0x7FFFU; + } + + return USBH_OK; +} + + +/** + * @brief USBH_GetFreePipe + * @param phost: Host Handle + * Get a free Pipe number for allocation to a device endpoint + * @retval idx: Free Pipe number + */ +static uint16_t USBH_GetFreePipe(USBH_HandleTypeDef *phost) +{ + uint8_t idx = 0U; + + for (idx = 0U ; idx < 11U ; idx++) + { + if ((phost->Pipes[idx] & 0x8000U) == 0U) + { + return (uint16_t)idx; + } + } + + return 0xFFFFU; +} +/** +* @} +*/ + +/** +* @} +*/ + +/** +* @} +*/ + +/** +* @} +*/ + +/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ + + diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_pipes.h b/Marlin/lib/STM32_USB_Host_Library/src/usbh_pipes.h new file mode 100644 index 0000000000..ed2247ea73 --- /dev/null +++ b/Marlin/lib/STM32_USB_Host_Library/src/usbh_pipes.h @@ -0,0 +1,123 @@ +/** + ****************************************************************************** + * @file usbh_pipes.h + * @author MCD Application Team + * @brief Header file for usbh_pipes.c + ****************************************************************************** + * @attention + * + *

© Copyright (c) 2015 STMicroelectronics. + * All rights reserved.

+ * + * This software component is licensed by ST under Ultimate Liberty license + * SLA0044, the "License"; You may not use this file except in compliance with + * the License. You may obtain a copy of the License at: + * www.st.com/SLA0044 + * + ****************************************************************************** + */ + +/* Define to prevent recursive ----------------------------------------------*/ +#ifndef __USBH_PIPES_H +#define __USBH_PIPES_H + +#ifdef __cplusplus +extern "C" { +#endif + +/* Includes ------------------------------------------------------------------*/ +#include "usbh_core.h" + +/** @addtogroup USBH_LIB + * @{ + */ + +/** @addtogroup USBH_LIB_CORE +* @{ +*/ + +/** @defgroup USBH_PIPES + * @brief This file is the header file for usbh_pipes.c + * @{ + */ + +/** @defgroup USBH_PIPES_Exported_Defines + * @{ + */ +/** + * @} + */ + +/** @defgroup USBH_PIPES_Exported_Types + * @{ + */ +/** + * @} + */ + + +/** @defgroup USBH_PIPES_Exported_Macros + * @{ + */ +/** + * @} + */ + +/** @defgroup USBH_PIPES_Exported_Variables + * @{ + */ +/** + * @} + */ + +/** @defgroup USBH_PIPES_Exported_FunctionsPrototype + * @{ + */ + +USBH_StatusTypeDef USBH_OpenPipe(USBH_HandleTypeDef *phost, + uint8_t pipe_num, + uint8_t epnum, + uint8_t dev_address, + uint8_t speed, + uint8_t ep_type, + uint16_t mps); + +USBH_StatusTypeDef USBH_ClosePipe(USBH_HandleTypeDef *phost, + uint8_t pipe_num); + +uint8_t USBH_AllocPipe(USBH_HandleTypeDef *phost, + uint8_t ep_addr); + +USBH_StatusTypeDef USBH_FreePipe(USBH_HandleTypeDef *phost, + uint8_t idx); + + + + +/** + * @} + */ + + +#ifdef __cplusplus +} +#endif + +#endif /* __USBH_PIPES_H */ + + +/** + * @} + */ + +/** + * @} + */ + +/** +* @} +*/ + +/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ + + diff --git a/Marlin/lib/fat_fs/00history.txt b/Marlin/lib/fat_fs/00history.txt new file mode 100644 index 0000000000..db12a9e1b1 --- /dev/null +++ b/Marlin/lib/fat_fs/00history.txt @@ -0,0 +1,330 @@ +---------------------------------------------------------------------------- + Revision history of FatFs module +---------------------------------------------------------------------------- + +R0.00 (February 26, 2006) + + Prototype. + + + +R0.01 (April 29, 2006) + + The first release. + + + +R0.02 (June 01, 2006) + + Added FAT12 support. + Removed unbuffered mode. + Fixed a problem on small (<32M) partition. + + + +R0.02a (June 10, 2006) + + Added a configuration option (_FS_MINIMUM). + + + +R0.03 (September 22, 2006) + + Added f_rename(). + Changed option _FS_MINIMUM to _FS_MINIMIZE. + + + +R0.03a (December 11, 2006) + + Improved cluster scan algorithm to write files fast. + Fixed f_mkdir() creates incorrect directory on FAT32. + + + +R0.04 (February 04, 2007) + + Added f_mkfs(). + Supported multiple drive system. + Changed some interfaces for multiple drive system. + Changed f_mountdrv() to f_mount(). + + + +R0.04a (April 01, 2007) + + Supported multiple partitions on a physical drive. + Added a capability of extending file size to f_lseek(). + Added minimization level 3. + Fixed an endian sensitive code in f_mkfs(). + + + +R0.04b (May 05, 2007) + + Added a configuration option _USE_NTFLAG. + Added FSINFO support. + Fixed DBCS name can result FR_INVALID_NAME. + Fixed short seek (<= csize) collapses the file object. + + + +R0.05 (August 25, 2007) + + Changed arguments of f_read(), f_write() and f_mkfs(). + Fixed f_mkfs() on FAT32 creates incorrect FSINFO. + Fixed f_mkdir() on FAT32 creates incorrect directory. + + + +R0.05a (February 03, 2008) + + Added f_truncate() and f_utime(). + Fixed off by one error at FAT sub-type determination. + Fixed btr in f_read() can be mistruncated. + Fixed cached sector is not flushed when create and close without write. + + + +R0.06 (April 01, 2008) + + Added fputc(), fputs(), fprintf() and fgets(). + Improved performance of f_lseek() on moving to the same or following cluster. + + + +R0.07 (April 01, 2009) + + Merged Tiny-FatFs as a configuration option. (_FS_TINY) + Added long file name feature. (_USE_LFN) + Added multiple code page feature. (_CODE_PAGE) + Added re-entrancy for multitask operation. (_FS_REENTRANT) + Added auto cluster size selection to f_mkfs(). + Added rewind option to f_readdir(). + Changed result code of critical errors. + Renamed string functions to avoid name collision. + + + +R0.07a (April 14, 2009) + + Septemberarated out OS dependent code on reentrant cfg. + Added multiple sector size feature. + + + +R0.07c (June 21, 2009) + + Fixed f_unlink() can return FR_OK on error. + Fixed wrong cache control in f_lseek(). + Added relative path feature. + Added f_chdir() and f_chdrive(). + Added proper case conversion to extended character. + + + +R0.07e (November 03, 2009) + + Septemberarated out configuration options from ff.h to ffconf.h. + Fixed f_unlink() fails to remove a sub-directory on _FS_RPATH. + Fixed name matching error on the 13 character boundary. + Added a configuration option, _LFN_UNICODE. + Changed f_readdir() to return the SFN with always upper case on non-LFN cfg. + + + +R0.08 (May 15, 2010) + + Added a memory configuration option. (_USE_LFN = 3) + Added file lock feature. (_FS_SHARE) + Added fast seek feature. (_USE_FASTSEEK) + Changed some types on the API, XCHAR->TCHAR. + Changed .fname in the FILINFO structure on Unicode cfg. + String functions support UTF-8 encoding files on Unicode cfg. + + + +R0.08a (August 16, 2010) + + Added f_getcwd(). (_FS_RPATH = 2) + Added sector erase feature. (_USE_ERASE) + Moved file lock semaphore table from fs object to the bss. + Fixed f_mkfs() creates wrong FAT32 volume. + + + +R0.08b (January 15, 2011) + + Fast seek feature is also applied to f_read() and f_write(). + f_lseek() reports required table size on creating CLMP. + Extended format syntax of f_printf(). + Ignores duplicated directory separators in given path name. + + + +R0.09 (September 06, 2011) + + f_mkfs() supports multiple partition to complete the multiple partition feature. + Added f_fdisk(). + + + +R0.09a (August 27, 2012) + + Changed f_open() and f_opendir() reject null object pointer to avoid crash. + Changed option name _FS_SHARE to _FS_LOCK. + Fixed assertion failure due to OS/2 EA on FAT12/16 volume. + + + +R0.09b (January 24, 2013) + + Added f_setlabel() and f_getlabel(). + + + +R0.10 (October 02, 2013) + + Added selection of character encoding on the file. (_STRF_ENCODE) + Added f_closedir(). + Added forced full FAT scan for f_getfree(). (_FS_NOFSINFO) + Added forced mount feature with changes of f_mount(). + Improved behavior of volume auto detection. + Improved write throughput of f_puts() and f_printf(). + Changed argument of f_chdrive(), f_mkfs(), disk_read() and disk_write(). + Fixed f_write() can be truncated when the file size is close to 4GB. + Fixed f_open(), f_mkdir() and f_setlabel() can return incorrect value on error. + + + +R0.10a (January 15, 2014) + + Added arbitrary strings as drive number in the path name. (_STR_VOLUME_ID) + Added a configuration option of minimum sector size. (_MIN_SS) + 2nd argument of f_rename() can have a drive number and it will be ignored. + Fixed f_mount() with forced mount fails when drive number is >= 1. (appeared at R0.10) + Fixed f_close() invalidates the file object without volume lock. + Fixed f_closedir() returns but the volume lock is left acquired. (appeared at R0.10) + Fixed creation of an entry with LFN fails on too many SFN collisions. (appeared at R0.07) + + + +R0.10b (May 19, 2014) + + Fixed a hard error in the disk I/O layer can collapse the directory entry. + Fixed LFN entry is not deleted when delete/rename an object with lossy converted SFN. (appeared at R0.07) + + + +R0.10c (November 09, 2014) + + Added a configuration option for the platforms without RTC. (_FS_NORTC) + Changed option name _USE_ERASE to _USE_TRIM. + Fixed volume label created by Mac OS X cannot be retrieved with f_getlabel(). (appeared at R0.09b) + Fixed a potential problem of FAT access that can appear on disk error. + Fixed null pointer dereference on attempting to delete the root direcotry. (appeared at R0.08) + + + +R0.11 (February 09, 2015) + + Added f_findfirst(), f_findnext() and f_findclose(). (_USE_FIND) + Fixed f_unlink() does not remove cluster chain of the file. (appeared at R0.10c) + Fixed _FS_NORTC option does not work properly. (appeared at R0.10c) + + + +R0.11a (September 05, 2015) + + Fixed wrong media change can lead a deadlock at thread-safe configuration. + Added code page 771, 860, 861, 863, 864, 865 and 869. (_CODE_PAGE) + Removed some code pages actually not exist on the standard systems. (_CODE_PAGE) + Fixed errors in the case conversion teble of code page 437 and 850 (ff.c). + Fixed errors in the case conversion teble of Unicode (cc*.c). + + + +R0.12 (April 12, 2016) + + Added support for exFAT file system. (_FS_EXFAT) + Added f_expand(). (_USE_EXPAND) + Changed some members in FINFO structure and behavior of f_readdir(). + Added an option _USE_CHMOD. + Removed an option _WORD_ACCESS. + Fixed errors in the case conversion table of Unicode (cc*.c). + + + +R0.12a (July 10, 2016) + + Added support for creating exFAT volume with some changes of f_mkfs(). + Added a file open method FA_OPEN_APPEND. An f_lseek() following f_open() is no longer needed. + f_forward() is available regardless of _FS_TINY. + Fixed f_mkfs() creates wrong volume. (appeared at R0.12) + Fixed wrong memory read in create_name(). (appeared at R0.12) + Fixed compilation fails at some configurations, _USE_FASTSEEK and _USE_FORWARD. + + + +R0.12b (September 04, 2016) + + Made f_rename() be able to rename objects with the same name but case. + Fixed an error in the case conversion teble of code page 866. (ff.c) + Fixed writing data is truncated at the file offset 4GiB on the exFAT volume. (appeared at R0.12) + Fixed creating a file in the root directory of exFAT volume can fail. (appeared at R0.12) + Fixed f_mkfs() creating exFAT volume with too small cluster size can collapse unallocated memory. (appeared at R0.12) + Fixed wrong object name can be returned when read directory at Unicode cfg. (appeared at R0.12) + Fixed large file allocation/removing on the exFAT volume collapses allocation bitmap. (appeared at R0.12) + Fixed some internal errors in f_expand() and f_lseek(). (appeared at R0.12) + + + +R0.12c (March 04, 2017) + + Improved write throughput at the fragmented file on the exFAT volume. + Made memory usage for exFAT be able to be reduced as decreasing _MAX_LFN. + Fixed successive f_getfree() can return wrong count on the FAT12/16 volume. (appeared at R0.12) + Fixed configuration option _VOLUMES cannot be set 10. (appeared at R0.10c) + + + +R0.13 (May 21, 2017) + + Changed heading character of configuration keywords "_" to "FF_". + Removed ASCII-only configuration, FF_CODE_PAGE = 1. Use FF_CODE_PAGE = 437 instead. + Added f_setcp(), run-time code page configuration. (FF_CODE_PAGE = 0) + Improved cluster allocation time on stretch a deep buried cluster chain. + Improved processing time of f_mkdir() with large cluster size by using FF_USE_LFN = 3. + Improved NoFatChain flag of the fragmented file to be set after it is truncated and got contiguous. + Fixed archive attribute is left not set when a file on the exFAT volume is renamed. (appeared at R0.12) + Fixed exFAT FAT entry can be collapsed when write or lseek operation to the existing file is done. (appeared at R0.12c) + Fixed creating a file can fail when a new cluster allocation to the exFAT directory occures. (appeared at R0.12c) + + + +R0.13a (October 14, 2017) + + Added support for UTF-8 encoding on the API. (FF_LFN_UNICODE = 2) + Added options for file name output buffer. (FF_LFN_BUF, FF_SFN_BUF). + Added dynamic memory allocation option for working buffer of f_mkfs() and f_fdisk(). + Fixed f_fdisk() and f_mkfs() create the partition table with wrong CHS parameters. (appeared at R0.09) + Fixed f_unlink() can cause lost clusters at fragmented file on the exFAT volume. (appeared at R0.12c) + Fixed f_setlabel() rejects some valid characters for exFAT volume. (appeared at R0.12) + + + +R0.13b (April 07, 2018) + + Added support for UTF-32 encoding on the API. (FF_LFN_UNICODE = 3) + Added support for Unix style volume ID. (FF_STR_VOLUME_ID = 2) + Fixed accesing any object on the exFAT root directory beyond the cluster boundary can fail. (appeared at R0.12c) + Fixed f_setlabel() does not reject some invalid characters. (appeared at R0.09b) + + + +R0.13c (October 14, 2018) + Supported stdint.h for C99 and later. (integer.h was included in ff.h) + Fixed reading a directory gets infinite loop when the last directory entry is not empty. (appeared at R0.12) + Fixed creating a sub-directory in the fragmented sub-directory on the exFAT volume collapses FAT chain of the parent directory. (appeared at R0.12) + Fixed f_getcwd() cause output buffer overrun when the buffer has a valid drive number. (appeared at R0.13b) + diff --git a/Marlin/lib/fat_fs/00readme.txt b/Marlin/lib/fat_fs/00readme.txt new file mode 100644 index 0000000000..dcccbdbebc --- /dev/null +++ b/Marlin/lib/fat_fs/00readme.txt @@ -0,0 +1,21 @@ +FatFs Module Source Files R0.13c + + +FILES + + 00readme.txt This file. + 00history.txt Revision history. + ff.c FatFs module. + ffconf.h Configuration file of FatFs module. + ff.h Common include file for FatFs and application module. + diskio.h Common include file for FatFs and disk I/O module. + diskio.c An example of glue function to attach existing disk I/O module to FatFs. + ffunicode.c Optional Unicode utility functions. + ffsystem.c An example of optional O/S related functions. + + + Low level disk I/O module is not included in this archive because the FatFs + module is only a generic file system layer and it does not depend on any specific + storage device. You need to provide a low level disk I/O module written to + control the storage device that attached to the target system. + diff --git a/Marlin/lib/fat_fs/library.json b/Marlin/lib/fat_fs/library.json new file mode 100644 index 0000000000..7f4f96779a --- /dev/null +++ b/Marlin/lib/fat_fs/library.json @@ -0,0 +1,16 @@ +{ + "name": "fatfs", + "version": "0.0.1", + "keywords": "fatfs module. port by langgo", + "description": "for usb msc use. fatfs module.", + "build": { + "srcFilter": [ + "+<*.c>", + "+<*.cpp>", + "+<*.h>" + ] + }, + "frameworks": "arduino", + "platforms": "*" +} + diff --git a/Marlin/lib/fat_fs/src/diskio.c b/Marlin/lib/fat_fs/src/diskio.c new file mode 100644 index 0000000000..78b0874f54 --- /dev/null +++ b/Marlin/lib/fat_fs/src/diskio.c @@ -0,0 +1,171 @@ +/*-----------------------------------------------------------------------*/ +/* Low level disk I/O module skeleton for FatFs (C)ChaN, 2017 */ +/* */ +/* Portions COPYRIGHT 2017 STMicroelectronics */ +/* Portions Copyright (C) 2017, ChaN, all right reserved */ +/*-----------------------------------------------------------------------*/ +/* If a working storage control module is available, it should be */ +/* attached to the FatFs via a glue function rather than modifying it. */ +/* This is an example of glue functions to attach various existing */ +/* storage control modules to the FatFs module with a defined API. */ +/*-----------------------------------------------------------------------*/ + +/* + Copyright (c) 2018, GigaDevice Semiconductor Inc. + + All rights reserved. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +/* Includes ------------------------------------------------------------------*/ +#include "diskio.h" +#include "ff_gen_drv.h" + +#if defined ( __GNUC__ ) +#ifndef __weak +#define __weak __attribute__((weak)) +#endif +#endif + +extern Disk_drvTypeDef disk; + +/*! + \brief Gets Disk Status + \param[in] pdrv: Physical drive number (0..) + \param[out] none + \retval DSTATUS: Operation status +*/ +DSTATUS disk_status ( + BYTE pdrv /* Physical drive number to identify the drive */ +) +{ + DSTATUS stat; + + stat = disk.drv[pdrv]->disk_status(disk.lun[pdrv]); + + return stat; +} + +/*! + \brief Initializes a Drive + \param[in] pdrv: Physical drive number (0..) + \param[out] none + \retval DSTATUS: Operation status +*/ +DSTATUS disk_initialize ( + BYTE pdrv /* Physical drive nmuber to identify the drive */ +) +{ + DSTATUS stat = RES_OK; + + if (disk.is_initialized[pdrv] == 0) { + disk.is_initialized[pdrv] = 1; + stat = disk.drv[pdrv]->disk_initialize(disk.lun[pdrv]); + } + + return stat; +} + +/*! + \brief Reads Sector(s) + \param[in] pdrv: Physical drive number (0..) + \param[in] buff: Data buffer to store read data + \param[in] sector: Sector address (LBA) + \param[in] count: Number of sectors to write (1..128) + \param[out] none + \retval DRESULT: Operation result +*/ +DRESULT disk_read ( + BYTE pdrv, /* Physical drive nmuber to identify the drive */ + BYTE *buff, /* Data buffer to store read data */ + DWORD sector, /* Sector address in LBA */ + UINT count /* Number of sectors to read */ +) +{ + DRESULT res; + + res = disk.drv[pdrv]->disk_read(disk.lun[pdrv], buff, sector, count); + + return res; +} + +/*! + \brief Writes Sector(s) + \param[in] pdrv: Physical drive number (0..) + \param[in] buff: Data to be written + \param[in] sector: Sector address (LBA) + \param[in] count: Number of sectors to write (1..128) + \param[out] none + \retval DRESULT: Operation result +*/ +#if _USE_WRITE == 1 +DRESULT disk_write ( + BYTE pdrv, /* Physical drive nmuber to identify the drive */ + const BYTE *buff, /* Data to be written */ + DWORD sector, /* Sector address in LBA */ + UINT count /* Number of sectors to write */ +) +{ + DRESULT res; + + res = disk.drv[pdrv]->disk_write(disk.lun[pdrv], buff, sector, count); + + return res; +} +#endif /* _USE_WRITE == 1 */ + +/*! + \brief I/O control operation + \param[in] pdrv: Physical drive number (0..) + \param[in] cmd: Control code + \param[in] buff: Buffer to send/receive control data + \param[out] none + \retval DRESULT: Operation result +*/ +#if _USE_IOCTL == 1 +DRESULT disk_ioctl ( + BYTE pdrv, /* Physical drive nmuber (0..) */ + BYTE cmd, /* Control code */ + void *buff /* Buffer to send/receive control data */ +) +{ + DRESULT res; + + res = disk.drv[pdrv]->disk_ioctl(disk.lun[pdrv], cmd, buff); + + return res; +} +#endif /* _USE_IOCTL == 1 */ + +/*! + \brief Gets Time from RTC + \param[in] none + \param[out] none + \retval Time in DWORD +*/ +__weak DWORD get_fattime (void) +{ + return 0; +} diff --git a/Marlin/lib/fat_fs/src/diskio.h b/Marlin/lib/fat_fs/src/diskio.h new file mode 100644 index 0000000000..4c145f5045 --- /dev/null +++ b/Marlin/lib/fat_fs/src/diskio.h @@ -0,0 +1,79 @@ +/*-----------------------------------------------------------------------/ +/ Low level disk interface modlue include file (C)ChaN, 2014 / +/-----------------------------------------------------------------------*/ + +#ifndef _DISKIO_DEFINED +#define _DISKIO_DEFINED + +#ifdef __cplusplus +extern "C" { +#endif + +#define _USE_WRITE 1 /* 1: Enable disk_write function */ +#define _USE_IOCTL 1 /* 1: Enable disk_ioctl function */ + +#include "ff.h" + +/* Status of Disk Functions */ +typedef BYTE DSTATUS; + +/* Results of Disk Functions */ +typedef enum { + RES_OK = 0, /* 0: Successful */ + RES_ERROR, /* 1: R/W Error */ + RES_WRPRT, /* 2: Write Protected */ + RES_NOTRDY, /* 3: Not Ready */ + RES_PARERR /* 4: Invalid Parameter */ +} DRESULT; + + +/*---------------------------------------*/ +/* Prototypes for disk control functions */ + + +DSTATUS disk_initialize (BYTE pdrv); +DSTATUS disk_status (BYTE pdrv); +DRESULT disk_read (BYTE pdrv, BYTE* buff, DWORD sector, UINT count); +DRESULT disk_write (BYTE pdrv, const BYTE* buff, DWORD sector, UINT count); +DRESULT disk_ioctl (BYTE pdrv, BYTE cmd, void* buff); +DWORD get_fattime (void); + +/* Disk Status Bits (DSTATUS) */ + +#define STA_NOINIT 0x01 /* Drive not initialized */ +#define STA_NODISK 0x02 /* No medium in the drive */ +#define STA_PROTECT 0x04 /* Write protected */ + + +/* Command code for disk_ioctrl fucntion */ + +/* Generic command (Used by FatFs) */ +#define CTRL_SYNC 0 /* Complete pending write process (needed at _FS_READONLY == 0) */ +#define GET_SECTOR_COUNT 1 /* Get media size (needed at _USE_MKFS == 1) */ +#define GET_SECTOR_SIZE 2 /* Get sector size (needed at _MAX_SS != _MIN_SS) */ +#define GET_BLOCK_SIZE 3 /* Get erase block size (needed at _USE_MKFS == 1) */ +#define CTRL_TRIM 4 /* Inform device that the data on the block of sectors is no longer used (needed at _USE_TRIM == 1) */ + +/* Generic command (Not used by FatFs) */ +#define CTRL_POWER 5 /* Get/Set power status */ +#define CTRL_LOCK 6 /* Lock/Unlock media removal */ +#define CTRL_EJECT 7 /* Eject media */ +#define CTRL_FORMAT 8 /* Create physical format on the media */ + +/* MMC/SDC specific ioctl command */ +#define MMC_GET_TYPE 10 /* Get card type */ +#define MMC_GET_CSD 11 /* Get CSD */ +#define MMC_GET_CID 12 /* Get CID */ +#define MMC_GET_OCR 13 /* Get OCR */ +#define MMC_GET_SDSTAT 14 /* Get SD status */ + +/* ATA/CF specific ioctl command */ +#define ATA_GET_REV 20 /* Get F/W revision */ +#define ATA_GET_MODEL 21 /* Get model name */ +#define ATA_GET_SN 22 /* Get serial number */ + +#ifdef __cplusplus +} +#endif + +#endif diff --git a/Marlin/lib/fat_fs/src/fattime.h b/Marlin/lib/fat_fs/src/fattime.h new file mode 100644 index 0000000000..94b70682f4 --- /dev/null +++ b/Marlin/lib/fat_fs/src/fattime.h @@ -0,0 +1,7 @@ +#ifndef FATTIME_H_ + +#include "integer.h" + +DWORD get_fattime (void); + +#endif diff --git a/Marlin/lib/fat_fs/src/ff.c b/Marlin/lib/fat_fs/src/ff.c new file mode 100644 index 0000000000..0a4fac1a01 --- /dev/null +++ b/Marlin/lib/fat_fs/src/ff.c @@ -0,0 +1,6672 @@ +/*----------------------------------------------------------------------------/ +/ FatFs - Generic FAT Filesystem Module R0.13c / +/-----------------------------------------------------------------------------/ +/ +/ Copyright (C) 2018, ChaN, all right reserved. +/ +/ FatFs module is an open source software. Redistribution and use of FatFs in +/ source and binary forms, with or without modification, are permitted provided +/ that the following condition is met: +/ +/ 1. Redistributions of source code must retain the above copyright notice, +/ this condition and the following disclaimer. +/ +/ This software is provided by the copyright holder and contributors "AS IS" +/ and any warranties related to this software are DISCLAIMED. +/ The copyright owner or contributors be NOT LIABLE for any damages caused +/ by use of this software. +/ +/----------------------------------------------------------------------------*/ + + +#include "ff.h" /* Declarations of FatFs API */ +#include "diskio.h" /* Declarations of device I/O functions */ + + +/*-------------------------------------------------------------------------- + + Module Private Definitions + +---------------------------------------------------------------------------*/ + +#if FF_DEFINED != 86604 /* Revision ID */ +#error Wrong include file (ff.h). +#endif + + +/* Limits and boundaries */ +#define MAX_DIR 0x200000 /* Max size of FAT directory */ +#define MAX_DIR_EX 0x10000000 /* Max size of exFAT directory */ +#define MAX_FAT12 0xFF5 /* Max FAT12 clusters (differs from specs, but right for real DOS/Windows behavior) */ +#define MAX_FAT16 0xFFF5 /* Max FAT16 clusters (differs from specs, but right for real DOS/Windows behavior) */ +#define MAX_FAT32 0x0FFFFFF5 /* Max FAT32 clusters (not specified, practical limit) */ +#define MAX_EXFAT 0x7FFFFFFD /* Max exFAT clusters (differs from specs, implementation limit) */ + + +/* Character code support macros */ +#define IsUpper(c) ((c) >= 'A' && (c) <= 'Z') +#define IsLower(c) ((c) >= 'a' && (c) <= 'z') +#define IsDigit(c) ((c) >= '0' && (c) <= '9') +#define IsSurrogate(c) ((c) >= 0xD800 && (c) <= 0xDFFF) +#define IsSurrogateH(c) ((c) >= 0xD800 && (c) <= 0xDBFF) +#define IsSurrogateL(c) ((c) >= 0xDC00 && (c) <= 0xDFFF) + + +/* Additional file access control and file status flags for internal use */ +#define FA_SEEKEND 0x20 /* Seek to end of the file on file open */ +#define FA_MODIFIED 0x40 /* File has been modified */ +#define FA_DIRTY 0x80 /* FIL.buf[] needs to be written-back */ + + +/* Additional file attribute bits for internal use */ +#define AM_VOL 0x08 /* Volume label */ +#define AM_LFN 0x0F /* LFN entry */ +#define AM_MASK 0x3F /* Mask of defined bits */ + + +/* Name status flags in fn[11] */ +#define NSFLAG 11 /* Index of the name status byte */ +#define NS_LOSS 0x01 /* Out of 8.3 format */ +#define NS_LFN 0x02 /* Force to create LFN entry */ +#define NS_LAST 0x04 /* Last segment */ +#define NS_BODY 0x08 /* Lower case flag (body) */ +#define NS_EXT 0x10 /* Lower case flag (ext) */ +#define NS_DOT 0x20 /* Dot entry */ +#define NS_NOLFN 0x40 /* Do not find LFN */ +#define NS_NONAME 0x80 /* Not followed */ + + +/* exFAT directory entry types */ +#define ET_BITMAP 0x81 /* Allocation bitmap */ +#define ET_UPCASE 0x82 /* Up-case table */ +#define ET_VLABEL 0x83 /* Volume label */ +#define ET_FILEDIR 0x85 /* File and directory */ +#define ET_STREAM 0xC0 /* Stream extension */ +#define ET_FILENAME 0xC1 /* Name extension */ + + +/* FatFs refers the FAT structure as simple byte array instead of structure member +/ because the C structure is not binary compatible between different platforms */ + +#define BS_JmpBoot 0 /* x86 jump instruction (3-byte) */ +#define BS_OEMName 3 /* OEM name (8-byte) */ +#define BPB_BytsPerSec 11 /* Sector size [byte] (WORD) */ +#define BPB_SecPerClus 13 /* Cluster size [sector] (BYTE) */ +#define BPB_RsvdSecCnt 14 /* Size of reserved area [sector] (WORD) */ +#define BPB_NumFATs 16 /* Number of FATs (BYTE) */ +#define BPB_RootEntCnt 17 /* Size of root directory area for FAT [entry] (WORD) */ +#define BPB_TotSec16 19 /* Volume size (16-bit) [sector] (WORD) */ +#define BPB_Media 21 /* Media descriptor byte (BYTE) */ +#define BPB_FATSz16 22 /* FAT size (16-bit) [sector] (WORD) */ +#define BPB_SecPerTrk 24 /* Number of sectors per track for int13h [sector] (WORD) */ +#define BPB_NumHeads 26 /* Number of heads for int13h (WORD) */ +#define BPB_HiddSec 28 /* Volume offset from top of the drive (DWORD) */ +#define BPB_TotSec32 32 /* Volume size (32-bit) [sector] (DWORD) */ +#define BS_DrvNum 36 /* Physical drive number for int13h (BYTE) */ +#define BS_NTres 37 /* WindowsNT error flag (BYTE) */ +#define BS_BootSig 38 /* Extended boot signature (BYTE) */ +#define BS_VolID 39 /* Volume serial number (DWORD) */ +#define BS_VolLab 43 /* Volume label string (8-byte) */ +#define BS_FilSysType 54 /* Filesystem type string (8-byte) */ +#define BS_BootCode 62 /* Boot code (448-byte) */ +#define BS_55AA 510 /* Signature word (WORD) */ + +#define BPB_FATSz32 36 /* FAT32: FAT size [sector] (DWORD) */ +#define BPB_ExtFlags32 40 /* FAT32: Extended flags (WORD) */ +#define BPB_FSVer32 42 /* FAT32: Filesystem version (WORD) */ +#define BPB_RootClus32 44 /* FAT32: Root directory cluster (DWORD) */ +#define BPB_FSInfo32 48 /* FAT32: Offset of FSINFO sector (WORD) */ +#define BPB_BkBootSec32 50 /* FAT32: Offset of backup boot sector (WORD) */ +#define BS_DrvNum32 64 /* FAT32: Physical drive number for int13h (BYTE) */ +#define BS_NTres32 65 /* FAT32: Error flag (BYTE) */ +#define BS_BootSig32 66 /* FAT32: Extended boot signature (BYTE) */ +#define BS_VolID32 67 /* FAT32: Volume serial number (DWORD) */ +#define BS_VolLab32 71 /* FAT32: Volume label string (8-byte) */ +#define BS_FilSysType32 82 /* FAT32: Filesystem type string (8-byte) */ +#define BS_BootCode32 90 /* FAT32: Boot code (420-byte) */ + +#define BPB_ZeroedEx 11 /* exFAT: MBZ field (53-byte) */ +#define BPB_VolOfsEx 64 /* exFAT: Volume offset from top of the drive [sector] (QWORD) */ +#define BPB_TotSecEx 72 /* exFAT: Volume size [sector] (QWORD) */ +#define BPB_FatOfsEx 80 /* exFAT: FAT offset from top of the volume [sector] (DWORD) */ +#define BPB_FatSzEx 84 /* exFAT: FAT size [sector] (DWORD) */ +#define BPB_DataOfsEx 88 /* exFAT: Data offset from top of the volume [sector] (DWORD) */ +#define BPB_NumClusEx 92 /* exFAT: Number of clusters (DWORD) */ +#define BPB_RootClusEx 96 /* exFAT: Root directory start cluster (DWORD) */ +#define BPB_VolIDEx 100 /* exFAT: Volume serial number (DWORD) */ +#define BPB_FSVerEx 104 /* exFAT: Filesystem version (WORD) */ +#define BPB_VolFlagEx 106 /* exFAT: Volume flags (WORD) */ +#define BPB_BytsPerSecEx 108 /* exFAT: Log2 of sector size in unit of byte (BYTE) */ +#define BPB_SecPerClusEx 109 /* exFAT: Log2 of cluster size in unit of sector (BYTE) */ +#define BPB_NumFATsEx 110 /* exFAT: Number of FATs (BYTE) */ +#define BPB_DrvNumEx 111 /* exFAT: Physical drive number for int13h (BYTE) */ +#define BPB_PercInUseEx 112 /* exFAT: Percent in use (BYTE) */ +#define BPB_RsvdEx 113 /* exFAT: Reserved (7-byte) */ +#define BS_BootCodeEx 120 /* exFAT: Boot code (390-byte) */ + +#define DIR_Name 0 /* Short file name (11-byte) */ +#define DIR_Attr 11 /* Attribute (BYTE) */ +#define DIR_NTres 12 /* Lower case flag (BYTE) */ +#define DIR_CrtTime10 13 /* Created time sub-second (BYTE) */ +#define DIR_CrtTime 14 /* Created time (DWORD) */ +#define DIR_LstAccDate 18 /* Last accessed date (WORD) */ +#define DIR_FstClusHI 20 /* Higher 16-bit of first cluster (WORD) */ +#define DIR_ModTime 22 /* Modified time (DWORD) */ +#define DIR_FstClusLO 26 /* Lower 16-bit of first cluster (WORD) */ +#define DIR_FileSize 28 /* File size (DWORD) */ +#define LDIR_Ord 0 /* LFN: LFN order and LLE flag (BYTE) */ +#define LDIR_Attr 11 /* LFN: LFN attribute (BYTE) */ +#define LDIR_Type 12 /* LFN: Entry type (BYTE) */ +#define LDIR_Chksum 13 /* LFN: Checksum of the SFN (BYTE) */ +#define LDIR_FstClusLO 26 /* LFN: MBZ field (WORD) */ +#define XDIR_Type 0 /* exFAT: Type of exFAT directory entry (BYTE) */ +#define XDIR_NumLabel 1 /* exFAT: Number of volume label characters (BYTE) */ +#define XDIR_Label 2 /* exFAT: Volume label (11-WORD) */ +#define XDIR_CaseSum 4 /* exFAT: Sum of case conversion table (DWORD) */ +#define XDIR_NumSec 1 /* exFAT: Number of secondary entries (BYTE) */ +#define XDIR_SetSum 2 /* exFAT: Sum of the set of directory entries (WORD) */ +#define XDIR_Attr 4 /* exFAT: File attribute (WORD) */ +#define XDIR_CrtTime 8 /* exFAT: Created time (DWORD) */ +#define XDIR_ModTime 12 /* exFAT: Modified time (DWORD) */ +#define XDIR_AccTime 16 /* exFAT: Last accessed time (DWORD) */ +#define XDIR_CrtTime10 20 /* exFAT: Created time subsecond (BYTE) */ +#define XDIR_ModTime10 21 /* exFAT: Modified time subsecond (BYTE) */ +#define XDIR_CrtTZ 22 /* exFAT: Created timezone (BYTE) */ +#define XDIR_ModTZ 23 /* exFAT: Modified timezone (BYTE) */ +#define XDIR_AccTZ 24 /* exFAT: Last accessed timezone (BYTE) */ +#define XDIR_GenFlags 33 /* exFAT: General secondary flags (BYTE) */ +#define XDIR_NumName 35 /* exFAT: Number of file name characters (BYTE) */ +#define XDIR_NameHash 36 /* exFAT: Hash of file name (WORD) */ +#define XDIR_ValidFileSize 40 /* exFAT: Valid file size (QWORD) */ +#define XDIR_FstClus 52 /* exFAT: First cluster of the file data (DWORD) */ +#define XDIR_FileSize 56 /* exFAT: File/Directory size (QWORD) */ + +#define SZDIRE 32 /* Size of a directory entry */ +#define DDEM 0xE5 /* Deleted directory entry mark set to DIR_Name[0] */ +#define RDDEM 0x05 /* Replacement of the character collides with DDEM */ +#define LLEF 0x40 /* Last long entry flag in LDIR_Ord */ + +#define FSI_LeadSig 0 /* FAT32 FSI: Leading signature (DWORD) */ +#define FSI_StrucSig 484 /* FAT32 FSI: Structure signature (DWORD) */ +#define FSI_Free_Count 488 /* FAT32 FSI: Number of free clusters (DWORD) */ +#define FSI_Nxt_Free 492 /* FAT32 FSI: Last allocated cluster (DWORD) */ + +#define MBR_Table 446 /* MBR: Offset of partition table in the MBR */ +#define SZ_PTE 16 /* MBR: Size of a partition table entry */ +#define PTE_Boot 0 /* MBR PTE: Boot indicator */ +#define PTE_StHead 1 /* MBR PTE: Start head */ +#define PTE_StSec 2 /* MBR PTE: Start sector */ +#define PTE_StCyl 3 /* MBR PTE: Start cylinder */ +#define PTE_System 4 /* MBR PTE: System ID */ +#define PTE_EdHead 5 /* MBR PTE: End head */ +#define PTE_EdSec 6 /* MBR PTE: End sector */ +#define PTE_EdCyl 7 /* MBR PTE: End cylinder */ +#define PTE_StLba 8 /* MBR PTE: Start in LBA */ +#define PTE_SizLba 12 /* MBR PTE: Size in LBA */ + + +/* Post process on fatal error in the file operations */ +#define ABORT(fs, res) { fp->err = (BYTE)(res); LEAVE_FF(fs, res); } + + +/* Re-entrancy related */ +#if FF_FS_REENTRANT +#if FF_USE_LFN == 1 +#error Static LFN work area cannot be used at thread-safe configuration +#endif +#define LEAVE_FF(fs, res) { unlock_fs(fs, res); return res; } +#else +#define LEAVE_FF(fs, res) return res +#endif + + +/* Definitions of volume - physical location conversion */ +#if FF_MULTI_PARTITION +#define LD2PD(vol) VolToPart[vol].pd /* Get physical drive number */ +#define LD2PT(vol) VolToPart[vol].pt /* Get partition index */ +#else +#define LD2PD(vol) (BYTE)(vol) /* Each logical drive is bound to the same physical drive number */ +#define LD2PT(vol) 0 /* Find first valid partition or in SFD */ +#endif + + +/* Definitions of sector size */ +#if (FF_MAX_SS < FF_MIN_SS) || (FF_MAX_SS != 512 && FF_MAX_SS != 1024 && FF_MAX_SS != 2048 && FF_MAX_SS != 4096) || (FF_MIN_SS != 512 && FF_MIN_SS != 1024 && FF_MIN_SS != 2048 && FF_MIN_SS != 4096) +#error Wrong sector size configuration +#endif +#if FF_MAX_SS == FF_MIN_SS +#define SS(fs) ((UINT)FF_MAX_SS) /* Fixed sector size */ +#else +#define SS(fs) ((fs)->ssize) /* Variable sector size */ +#endif + + +/* Timestamp */ +#if FF_FS_NORTC == 1 +#if FF_NORTC_YEAR < 1980 || FF_NORTC_YEAR > 2107 || FF_NORTC_MON < 1 || FF_NORTC_MON > 12 || FF_NORTC_MDAY < 1 || FF_NORTC_MDAY > 31 +#error Invalid FF_FS_NORTC settings +#endif +#define GET_FATTIME() ((DWORD)(FF_NORTC_YEAR - 1980) << 25 | (DWORD)FF_NORTC_MON << 21 | (DWORD)FF_NORTC_MDAY << 16) +#else +#define GET_FATTIME() get_fattime() +#endif + + +/* File lock controls */ +#if FF_FS_LOCK != 0 +#if FF_FS_READONLY +#error FF_FS_LOCK must be 0 at read-only configuration +#endif +typedef struct { + FATFS *fs; /* Object ID 1, volume (NULL:blank entry) */ + DWORD clu; /* Object ID 2, containing directory (0:root) */ + DWORD ofs; /* Object ID 3, offset in the directory */ + WORD ctr; /* Object open counter, 0:none, 0x01..0xFF:read mode open count, 0x100:write mode */ +} FILESEM; +#endif + + +/* SBCS up-case tables (\x80-\xFF) */ +#define TBL_CT437 {0x80,0x9A,0x45,0x41,0x8E,0x41,0x8F,0x80,0x45,0x45,0x45,0x49,0x49,0x49,0x8E,0x8F, \ + 0x90,0x92,0x92,0x4F,0x99,0x4F,0x55,0x55,0x59,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ + 0x41,0x49,0x4F,0x55,0xA5,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ + 0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ + 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} +#define TBL_CT720 {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F, \ + 0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ + 0xA0,0xA1,0xA2,0xA3,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ + 0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ + 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} +#define TBL_CT737 {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F, \ + 0x90,0x92,0x92,0x93,0x94,0x95,0x96,0x97,0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87, \ + 0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0x90,0x91,0xAA,0x92,0x93,0x94,0x95,0x96, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ + 0x97,0xEA,0xEB,0xEC,0xE4,0xED,0xEE,0xEF,0xF5,0xF0,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ + 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} +#define TBL_CT771 {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F, \ + 0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ + 0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDC,0xDE,0xDE, \ + 0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ + 0xF0,0xF0,0xF2,0xF2,0xF4,0xF4,0xF6,0xF6,0xF8,0xF8,0xFA,0xFA,0xFC,0xFC,0xFE,0xFF} +#define TBL_CT775 {0x80,0x9A,0x91,0xA0,0x8E,0x95,0x8F,0x80,0xAD,0xED,0x8A,0x8A,0xA1,0x8D,0x8E,0x8F, \ + 0x90,0x92,0x92,0xE2,0x99,0x95,0x96,0x97,0x97,0x99,0x9A,0x9D,0x9C,0x9D,0x9E,0x9F, \ + 0xA0,0xA1,0xE0,0xA3,0xA3,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xB5,0xB6,0xB7,0xB8,0xBD,0xBE,0xC6,0xC7,0xA5,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ + 0xE0,0xE1,0xE2,0xE3,0xE5,0xE5,0xE6,0xE3,0xE8,0xE8,0xEA,0xEA,0xEE,0xED,0xEE,0xEF, \ + 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} +#define TBL_CT850 {0x43,0x55,0x45,0x41,0x41,0x41,0x41,0x43,0x45,0x45,0x45,0x49,0x49,0x49,0x41,0x41, \ + 0x45,0x92,0x92,0x4F,0x4F,0x4F,0x55,0x55,0x59,0x4F,0x55,0x4F,0x9C,0x4F,0x9E,0x9F, \ + 0x41,0x49,0x4F,0x55,0xA5,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0x41,0x41,0x41,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0x41,0x41,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xD1,0xD1,0x45,0x45,0x45,0x49,0x49,0x49,0x49,0xD9,0xDA,0xDB,0xDC,0xDD,0x49,0xDF, \ + 0x4F,0xE1,0x4F,0x4F,0x4F,0x4F,0xE6,0xE8,0xE8,0x55,0x55,0x55,0x59,0x59,0xEE,0xEF, \ + 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} +#define TBL_CT852 {0x80,0x9A,0x90,0xB6,0x8E,0xDE,0x8F,0x80,0x9D,0xD3,0x8A,0x8A,0xD7,0x8D,0x8E,0x8F, \ + 0x90,0x91,0x91,0xE2,0x99,0x95,0x95,0x97,0x97,0x99,0x9A,0x9B,0x9B,0x9D,0x9E,0xAC, \ + 0xB5,0xD6,0xE0,0xE9,0xA4,0xA4,0xA6,0xA6,0xA8,0xA8,0xAA,0x8D,0xAC,0xB8,0xAE,0xAF, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBD,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC6,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xD1,0xD1,0xD2,0xD3,0xD2,0xD5,0xD6,0xD7,0xB7,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ + 0xE0,0xE1,0xE2,0xE3,0xE3,0xD5,0xE6,0xE6,0xE8,0xE9,0xE8,0xEB,0xED,0xED,0xDD,0xEF, \ + 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xEB,0xFC,0xFC,0xFE,0xFF} +#define TBL_CT855 {0x81,0x81,0x83,0x83,0x85,0x85,0x87,0x87,0x89,0x89,0x8B,0x8B,0x8D,0x8D,0x8F,0x8F, \ + 0x91,0x91,0x93,0x93,0x95,0x95,0x97,0x97,0x99,0x99,0x9B,0x9B,0x9D,0x9D,0x9F,0x9F, \ + 0xA1,0xA1,0xA3,0xA3,0xA5,0xA5,0xA7,0xA7,0xA9,0xA9,0xAB,0xAB,0xAD,0xAD,0xAE,0xAF, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0xB6,0xB6,0xB8,0xB8,0xB9,0xBA,0xBB,0xBC,0xBE,0xBE,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC7,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xD1,0xD1,0xD3,0xD3,0xD5,0xD5,0xD7,0xD7,0xDD,0xD9,0xDA,0xDB,0xDC,0xDD,0xE0,0xDF, \ + 0xE0,0xE2,0xE2,0xE4,0xE4,0xE6,0xE6,0xE8,0xE8,0xEA,0xEA,0xEC,0xEC,0xEE,0xEE,0xEF, \ + 0xF0,0xF2,0xF2,0xF4,0xF4,0xF6,0xF6,0xF8,0xF8,0xFA,0xFA,0xFC,0xFC,0xFD,0xFE,0xFF} +#define TBL_CT857 {0x80,0x9A,0x90,0xB6,0x8E,0xB7,0x8F,0x80,0xD2,0xD3,0xD4,0xD8,0xD7,0x49,0x8E,0x8F, \ + 0x90,0x92,0x92,0xE2,0x99,0xE3,0xEA,0xEB,0x98,0x99,0x9A,0x9D,0x9C,0x9D,0x9E,0x9E, \ + 0xB5,0xD6,0xE0,0xE9,0xA5,0xA5,0xA6,0xA6,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC7,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xD0,0xD1,0xD2,0xD3,0xD4,0x49,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ + 0xE0,0xE1,0xE2,0xE3,0xE5,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xDE,0xED,0xEE,0xEF, \ + 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} +#define TBL_CT860 {0x80,0x9A,0x90,0x8F,0x8E,0x91,0x86,0x80,0x89,0x89,0x92,0x8B,0x8C,0x98,0x8E,0x8F, \ + 0x90,0x91,0x92,0x8C,0x99,0xA9,0x96,0x9D,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ + 0x86,0x8B,0x9F,0x96,0xA5,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ + 0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ + 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} +#define TBL_CT861 {0x80,0x9A,0x90,0x41,0x8E,0x41,0x8F,0x80,0x45,0x45,0x45,0x8B,0x8B,0x8D,0x8E,0x8F, \ + 0x90,0x92,0x92,0x4F,0x99,0x8D,0x55,0x97,0x97,0x99,0x9A,0x9D,0x9C,0x9D,0x9E,0x9F, \ + 0xA4,0xA5,0xA6,0xA7,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ + 0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ + 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} +#define TBL_CT862 {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F, \ + 0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ + 0x41,0x49,0x4F,0x55,0xA5,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ + 0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ + 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} +#define TBL_CT863 {0x43,0x55,0x45,0x41,0x41,0x41,0x86,0x43,0x45,0x45,0x45,0x49,0x49,0x8D,0x41,0x8F, \ + 0x45,0x45,0x45,0x4F,0x45,0x49,0x55,0x55,0x98,0x4F,0x55,0x9B,0x9C,0x55,0x55,0x9F, \ + 0xA0,0xA1,0x4F,0x55,0xA4,0xA5,0xA6,0xA7,0x49,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ + 0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ + 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} +#define TBL_CT864 {0x80,0x9A,0x45,0x41,0x8E,0x41,0x8F,0x80,0x45,0x45,0x45,0x49,0x49,0x49,0x8E,0x8F, \ + 0x90,0x92,0x92,0x4F,0x99,0x4F,0x55,0x55,0x59,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ + 0x41,0x49,0x4F,0x55,0xA5,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ + 0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ + 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} +#define TBL_CT865 {0x80,0x9A,0x90,0x41,0x8E,0x41,0x8F,0x80,0x45,0x45,0x45,0x49,0x49,0x49,0x8E,0x8F, \ + 0x90,0x92,0x92,0x4F,0x99,0x4F,0x55,0x55,0x59,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ + 0x41,0x49,0x4F,0x55,0xA5,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ + 0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ + 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} +#define TBL_CT866 {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F, \ + 0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ + 0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ + 0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ + 0xF0,0xF0,0xF2,0xF2,0xF4,0xF4,0xF6,0xF6,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} +#define TBL_CT869 {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F, \ + 0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x86,0x9C,0x8D,0x8F,0x90, \ + 0x91,0x90,0x92,0x95,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ + 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ + 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ + 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xA4,0xA5,0xA6,0xD9,0xDA,0xDB,0xDC,0xA7,0xA8,0xDF, \ + 0xA9,0xAA,0xAC,0xAD,0xB5,0xB6,0xB7,0xB8,0xBD,0xBE,0xC6,0xC7,0xCF,0xCF,0xD0,0xEF, \ + 0xF0,0xF1,0xD1,0xD2,0xD3,0xF5,0xD4,0xF7,0xF8,0xF9,0xD5,0x96,0x95,0x98,0xFE,0xFF} + + +/* DBCS code range |----- 1st byte -----| |----------- 2nd byte -----------| */ +#define TBL_DC932 {0x81, 0x9F, 0xE0, 0xFC, 0x40, 0x7E, 0x80, 0xFC, 0x00, 0x00} +#define TBL_DC936 {0x81, 0xFE, 0x00, 0x00, 0x40, 0x7E, 0x80, 0xFE, 0x00, 0x00} +#define TBL_DC949 {0x81, 0xFE, 0x00, 0x00, 0x41, 0x5A, 0x61, 0x7A, 0x81, 0xFE} +#define TBL_DC950 {0x81, 0xFE, 0x00, 0x00, 0x40, 0x7E, 0xA1, 0xFE, 0x00, 0x00} + + +/* Macros for table definitions */ +#define MERGE_2STR(a, b) a ## b +#define MKCVTBL(hd, cp) MERGE_2STR(hd, cp) + + + + +/*-------------------------------------------------------------------------- + + Module Private Work Area + +---------------------------------------------------------------------------*/ +/* Remark: Variables defined here without initial value shall be guaranteed +/ zero/null at start-up. If not, the linker option or start-up routine is +/ not compliance with C standard. */ + +/*--------------------------------*/ +/* File/Volume controls */ +/*--------------------------------*/ + +#if FF_VOLUMES < 1 || FF_VOLUMES > 10 +#error Wrong FF_VOLUMES setting +#endif +static FATFS* FatFs[FF_VOLUMES]; /* Pointer to the filesystem objects (logical drives) */ +static WORD Fsid; /* Filesystem mount ID */ + +#if FF_FS_RPATH != 0 +static BYTE CurrVol; /* Current drive */ +#endif + +#if FF_FS_LOCK != 0 +static FILESEM Files[FF_FS_LOCK]; /* Open object lock semaphores */ +#endif + +#if FF_STR_VOLUME_ID +#ifdef FF_VOLUME_STRS +static const char* const VolumeStr[FF_VOLUMES] = {FF_VOLUME_STRS}; /* Pre-defined volume ID */ +#endif +#endif + + +/*--------------------------------*/ +/* LFN/Directory working buffer */ +/*--------------------------------*/ + +#if FF_USE_LFN == 0 /* Non-LFN configuration */ +#if FF_FS_EXFAT +#error LFN must be enabled when enable exFAT +#endif +#define DEF_NAMBUF +#define INIT_NAMBUF(fs) +#define FREE_NAMBUF() +#define LEAVE_MKFS(res) return res + +#else /* LFN configurations */ +#if FF_MAX_LFN < 12 || FF_MAX_LFN > 255 +#error Wrong setting of FF_MAX_LFN +#endif +#if FF_LFN_BUF < FF_SFN_BUF || FF_SFN_BUF < 12 +#error Wrong setting of FF_LFN_BUF or FF_SFN_BUF +#endif +#if FF_LFN_UNICODE < 0 || FF_LFN_UNICODE > 3 +#error Wrong setting of FF_LFN_UNICODE +#endif +static const BYTE LfnOfs[] = {1,3,5,7,9,14,16,18,20,22,24,28,30}; /* FAT: Offset of LFN characters in the directory entry */ +#define MAXDIRB(nc) ((nc + 44U) / 15 * SZDIRE) /* exFAT: Size of directory entry block scratchpad buffer needed for the name length */ + +#if FF_USE_LFN == 1 /* LFN enabled with static working buffer */ +#if FF_FS_EXFAT +static BYTE DirBuf[MAXDIRB(FF_MAX_LFN)]; /* Directory entry block scratchpad buffer */ +#endif +static WCHAR LfnBuf[FF_MAX_LFN + 1]; /* LFN working buffer */ +#define DEF_NAMBUF +#define INIT_NAMBUF(fs) +#define FREE_NAMBUF() +#define LEAVE_MKFS(res) return res + +#elif FF_USE_LFN == 2 /* LFN enabled with dynamic working buffer on the stack */ +#if FF_FS_EXFAT +#define DEF_NAMBUF WCHAR lbuf[FF_MAX_LFN+1]; BYTE dbuf[MAXDIRB(FF_MAX_LFN)]; /* LFN working buffer and directory entry block scratchpad buffer */ +#define INIT_NAMBUF(fs) { (fs)->lfnbuf = lbuf; (fs)->dirbuf = dbuf; } +#define FREE_NAMBUF() +#else +#define DEF_NAMBUF WCHAR lbuf[FF_MAX_LFN+1]; /* LFN working buffer */ +#define INIT_NAMBUF(fs) { (fs)->lfnbuf = lbuf; } +#define FREE_NAMBUF() +#endif +#define LEAVE_MKFS(res) return res + +#elif FF_USE_LFN == 3 /* LFN enabled with dynamic working buffer on the heap */ +#if FF_FS_EXFAT +#define DEF_NAMBUF WCHAR *lfn; /* Pointer to LFN working buffer and directory entry block scratchpad buffer */ +#define INIT_NAMBUF(fs) { lfn = ff_memalloc((FF_MAX_LFN+1)*2 + MAXDIRB(FF_MAX_LFN)); if (!lfn) LEAVE_FF(fs, FR_NOT_ENOUGH_CORE); (fs)->lfnbuf = lfn; (fs)->dirbuf = (BYTE*)(lfn+FF_MAX_LFN+1); } +#define FREE_NAMBUF() ff_memfree(lfn) +#else +#define DEF_NAMBUF WCHAR *lfn; /* Pointer to LFN working buffer */ +#define INIT_NAMBUF(fs) { lfn = ff_memalloc((FF_MAX_LFN+1)*2); if (!lfn) LEAVE_FF(fs, FR_NOT_ENOUGH_CORE); (fs)->lfnbuf = lfn; } +#define FREE_NAMBUF() ff_memfree(lfn) +#endif +#define LEAVE_MKFS(res) { if (!work) ff_memfree(buf); return res; } +#define MAX_MALLOC 0x8000 /* Must be >=FF_MAX_SS */ + +#else +#error Wrong setting of FF_USE_LFN + +#endif /* FF_USE_LFN == 1 */ +#endif /* FF_USE_LFN == 0 */ + + + +/*--------------------------------*/ +/* Code conversion tables */ +/*--------------------------------*/ + +#if FF_CODE_PAGE == 0 /* Run-time code page configuration */ +#define CODEPAGE CodePage +static WORD CodePage; /* Current code page */ +static const BYTE *ExCvt, *DbcTbl; /* Pointer to current SBCS up-case table and DBCS code range table below */ + +static const BYTE Ct437[] = TBL_CT437; +static const BYTE Ct720[] = TBL_CT720; +static const BYTE Ct737[] = TBL_CT737; +static const BYTE Ct771[] = TBL_CT771; +static const BYTE Ct775[] = TBL_CT775; +static const BYTE Ct850[] = TBL_CT850; +static const BYTE Ct852[] = TBL_CT852; +static const BYTE Ct855[] = TBL_CT855; +static const BYTE Ct857[] = TBL_CT857; +static const BYTE Ct860[] = TBL_CT860; +static const BYTE Ct861[] = TBL_CT861; +static const BYTE Ct862[] = TBL_CT862; +static const BYTE Ct863[] = TBL_CT863; +static const BYTE Ct864[] = TBL_CT864; +static const BYTE Ct865[] = TBL_CT865; +static const BYTE Ct866[] = TBL_CT866; +static const BYTE Ct869[] = TBL_CT869; +static const BYTE Dc932[] = TBL_DC932; +static const BYTE Dc936[] = TBL_DC936; +static const BYTE Dc949[] = TBL_DC949; +static const BYTE Dc950[] = TBL_DC950; + +#elif FF_CODE_PAGE < 900 /* Static code page configuration (SBCS) */ +#define CODEPAGE FF_CODE_PAGE +static const BYTE ExCvt[] = MKCVTBL(TBL_CT, FF_CODE_PAGE); + +#else /* Static code page configuration (DBCS) */ +#define CODEPAGE FF_CODE_PAGE +static const BYTE DbcTbl[] = MKCVTBL(TBL_DC, FF_CODE_PAGE); + +#endif + + + + +/*-------------------------------------------------------------------------- + + Module Private Functions + +---------------------------------------------------------------------------*/ + + +/*-----------------------------------------------------------------------*/ +/* Load/Store multi-byte word in the FAT structure */ +/*-----------------------------------------------------------------------*/ + +static WORD ld_word (const BYTE* ptr) /* Load a 2-byte little-endian word */ +{ + WORD rv; + + rv = ptr[1]; + rv = rv << 8 | ptr[0]; + return rv; +} + +static DWORD ld_dword (const BYTE* ptr) /* Load a 4-byte little-endian word */ +{ + DWORD rv; + + rv = ptr[3]; + rv = rv << 8 | ptr[2]; + rv = rv << 8 | ptr[1]; + rv = rv << 8 | ptr[0]; + return rv; +} + +#if FF_FS_EXFAT +static QWORD ld_qword (const BYTE* ptr) /* Load an 8-byte little-endian word */ +{ + QWORD rv; + + rv = ptr[7]; + rv = rv << 8 | ptr[6]; + rv = rv << 8 | ptr[5]; + rv = rv << 8 | ptr[4]; + rv = rv << 8 | ptr[3]; + rv = rv << 8 | ptr[2]; + rv = rv << 8 | ptr[1]; + rv = rv << 8 | ptr[0]; + return rv; +} +#endif + +#if !FF_FS_READONLY +static void st_word (BYTE* ptr, WORD val) /* Store a 2-byte word in little-endian */ +{ + *ptr++ = (BYTE)val; val >>= 8; + *ptr++ = (BYTE)val; +} + +static void st_dword (BYTE* ptr, DWORD val) /* Store a 4-byte word in little-endian */ +{ + *ptr++ = (BYTE)val; val >>= 8; + *ptr++ = (BYTE)val; val >>= 8; + *ptr++ = (BYTE)val; val >>= 8; + *ptr++ = (BYTE)val; +} + +#if FF_FS_EXFAT +static void st_qword (BYTE* ptr, QWORD val) /* Store an 8-byte word in little-endian */ +{ + *ptr++ = (BYTE)val; val >>= 8; + *ptr++ = (BYTE)val; val >>= 8; + *ptr++ = (BYTE)val; val >>= 8; + *ptr++ = (BYTE)val; val >>= 8; + *ptr++ = (BYTE)val; val >>= 8; + *ptr++ = (BYTE)val; val >>= 8; + *ptr++ = (BYTE)val; val >>= 8; + *ptr++ = (BYTE)val; +} +#endif +#endif /* !FF_FS_READONLY */ + + + +/*-----------------------------------------------------------------------*/ +/* String functions */ +/*-----------------------------------------------------------------------*/ + +/* Copy memory to memory */ +static void mem_cpy (void* dst, const void* src, UINT cnt) +{ + BYTE *d = (BYTE*)dst; + const BYTE *s = (const BYTE*)src; + + if (cnt != 0) { + do { + *d++ = *s++; + } while (--cnt); + } +} + + +/* Fill memory block */ +static void mem_set (void* dst, int val, UINT cnt) +{ + BYTE *d = (BYTE*)dst; + + do { + *d++ = (BYTE)val; + } while (--cnt); +} + + +/* Compare memory block */ +static int mem_cmp (const void* dst, const void* src, UINT cnt) /* ZR:same, NZ:different */ +{ + const BYTE *d = (const BYTE *)dst, *s = (const BYTE *)src; + int r = 0; + + do { + r = *d++ - *s++; + } while (--cnt && r == 0); + + return r; +} + + +/* Check if chr is contained in the string */ +static int chk_chr (const char* str, int chr) /* NZ:contained, ZR:not contained */ +{ + while (*str && *str != chr) str++; + return *str; +} + + +/* Test if the character is DBC 1st byte */ +static int dbc_1st (BYTE c) +{ +#if FF_CODE_PAGE == 0 /* Variable code page */ + if (DbcTbl && c >= DbcTbl[0]) { + if (c <= DbcTbl[1]) return 1; /* 1st byte range 1 */ + if (c >= DbcTbl[2] && c <= DbcTbl[3]) return 1; /* 1st byte range 2 */ + } +#elif FF_CODE_PAGE >= 900 /* DBCS fixed code page */ + if (c >= DbcTbl[0]) { + if (c <= DbcTbl[1]) return 1; + if (c >= DbcTbl[2] && c <= DbcTbl[3]) return 1; + } +#else /* SBCS fixed code page */ + if (c != 0) return 0; /* Always false */ +#endif + return 0; +} + + +/* Test if the character is DBC 2nd byte */ +static int dbc_2nd (BYTE c) +{ +#if FF_CODE_PAGE == 0 /* Variable code page */ + if (DbcTbl && c >= DbcTbl[4]) { + if (c <= DbcTbl[5]) return 1; /* 2nd byte range 1 */ + if (c >= DbcTbl[6] && c <= DbcTbl[7]) return 1; /* 2nd byte range 2 */ + if (c >= DbcTbl[8] && c <= DbcTbl[9]) return 1; /* 2nd byte range 3 */ + } +#elif FF_CODE_PAGE >= 900 /* DBCS fixed code page */ + if (c >= DbcTbl[4]) { + if (c <= DbcTbl[5]) return 1; + if (c >= DbcTbl[6] && c <= DbcTbl[7]) return 1; + if (c >= DbcTbl[8] && c <= DbcTbl[9]) return 1; + } +#else /* SBCS fixed code page */ + if (c != 0) return 0; /* Always false */ +#endif + return 0; +} + + +#if FF_USE_LFN + +/* Get a character from TCHAR string in defined API encodeing */ +static DWORD tchar2uni ( /* Returns character in UTF-16 encoding (>=0x10000 on double encoding unit, 0xFFFFFFFF on decode error) */ + const TCHAR** str /* Pointer to pointer to TCHAR string in configured encoding */ +) +{ + DWORD uc; + const TCHAR *p = *str; + +#if FF_LFN_UNICODE == 1 /* UTF-16 input */ + WCHAR wc; + + uc = *p++; /* Get a unit */ + if (IsSurrogate(uc)) { /* Surrogate? */ + wc = *p++; /* Get low surrogate */ + if (!IsSurrogateH(uc) || !IsSurrogateL(wc)) return 0xFFFFFFFF; /* Wrong surrogate? */ + uc = uc << 16 | wc; + } + +#elif FF_LFN_UNICODE == 2 /* UTF-8 input */ + BYTE b; + int nf; + + uc = (BYTE)*p++; /* Get a unit */ + if (uc & 0x80) { /* Multiple byte code? */ + if ((uc & 0xE0) == 0xC0) { /* 2-byte sequence? */ + uc &= 0x1F; nf = 1; + } else { + if ((uc & 0xF0) == 0xE0) { /* 3-byte sequence? */ + uc &= 0x0F; nf = 2; + } else { + if ((uc & 0xF8) == 0xF0) { /* 4-byte sequence? */ + uc &= 0x07; nf = 3; + } else { /* Wrong sequence */ + return 0xFFFFFFFF; + } + } + } + do { /* Get trailing bytes */ + b = (BYTE)*p++; + if ((b & 0xC0) != 0x80) return 0xFFFFFFFF; /* Wrong sequence? */ + uc = uc << 6 | (b & 0x3F); + } while (--nf != 0); + if (uc < 0x80 || IsSurrogate(uc) || uc >= 0x110000) return 0xFFFFFFFF; /* Wrong code? */ + if (uc >= 0x010000) uc = 0xD800DC00 | ((uc - 0x10000) << 6 & 0x3FF0000) | (uc & 0x3FF); /* Make a surrogate pair if needed */ + } + +#elif FF_LFN_UNICODE == 3 /* UTF-32 input */ + uc = (TCHAR)*p++; /* Get a unit */ + if (uc >= 0x110000) return 0xFFFFFFFF; /* Wrong code? */ + if (uc >= 0x010000) uc = 0xD800DC00 | ((uc - 0x10000) << 6 & 0x3FF0000) | (uc & 0x3FF); /* Make a surrogate pair if needed */ + +#else /* ANSI/OEM input */ + BYTE b; + WCHAR wc; + + wc = (BYTE)*p++; /* Get a byte */ + if (dbc_1st((BYTE)wc)) { /* Is it a DBC 1st byte? */ + b = (BYTE)*p++; /* Get 2nd byte */ + if (!dbc_2nd(b)) return 0xFFFFFFFF; /* Invalid code? */ + wc = (wc << 8) + b; /* Make a DBC */ + } + if (wc != 0) { + wc = ff_oem2uni(wc, CODEPAGE); /* ANSI/OEM ==> Unicode */ + if (wc == 0) return 0xFFFFFFFF; /* Invalid code? */ + } + uc = wc; + +#endif + *str = p; /* Next read pointer */ + return uc; +} + + +/* Output a TCHAR string in defined API encoding */ +static BYTE put_utf ( /* Returns number of encoding units written (0:buffer overflow or wrong encoding) */ + DWORD chr, /* UTF-16 encoded character (Double encoding unit char if >=0x10000) */ + TCHAR* buf, /* Output buffer */ + UINT szb /* Size of the buffer */ +) +{ +#if FF_LFN_UNICODE == 1 /* UTF-16 output */ + WCHAR hs, wc; + + hs = (WCHAR)(chr >> 16); + wc = (WCHAR)chr; + if (hs == 0) { /* Single encoding unit? */ + if (szb < 1 || IsSurrogate(wc)) return 0; /* Buffer overflow or wrong code? */ + *buf = wc; + return 1; + } + if (szb < 2 || !IsSurrogateH(hs) || !IsSurrogateL(wc)) return 0; /* Buffer overflow or wrong surrogate? */ + *buf++ = hs; + *buf++ = wc; + return 2; + +#elif FF_LFN_UNICODE == 2 /* UTF-8 output */ + DWORD hc; + + if (chr < 0x80) { /* Single byte code? */ + if (szb < 1) return 0; /* Buffer overflow? */ + *buf = (TCHAR)chr; + return 1; + } + if (chr < 0x800) { /* 2-byte sequence? */ + if (szb < 2) return 0; /* Buffer overflow? */ + *buf++ = (TCHAR)(0xC0 | (chr >> 6 & 0x1F)); + *buf++ = (TCHAR)(0x80 | (chr >> 0 & 0x3F)); + return 2; + } + if (chr < 0x10000) { /* 3-byte sequence? */ + if (szb < 3 || IsSurrogate(chr)) return 0; /* Buffer overflow or wrong code? */ + *buf++ = (TCHAR)(0xE0 | (chr >> 12 & 0x0F)); + *buf++ = (TCHAR)(0x80 | (chr >> 6 & 0x3F)); + *buf++ = (TCHAR)(0x80 | (chr >> 0 & 0x3F)); + return 3; + } + /* 4-byte sequence */ + if (szb < 4) return 0; /* Buffer overflow? */ + hc = ((chr & 0xFFFF0000) - 0xD8000000) >> 6; /* Get high 10 bits */ + chr = (chr & 0xFFFF) - 0xDC00; /* Get low 10 bits */ + if (hc >= 0x100000 || chr >= 0x400) return 0; /* Wrong surrogate? */ + chr = (hc | chr) + 0x10000; + *buf++ = (TCHAR)(0xF0 | (chr >> 18 & 0x07)); + *buf++ = (TCHAR)(0x80 | (chr >> 12 & 0x3F)); + *buf++ = (TCHAR)(0x80 | (chr >> 6 & 0x3F)); + *buf++ = (TCHAR)(0x80 | (chr >> 0 & 0x3F)); + return 4; + +#elif FF_LFN_UNICODE == 3 /* UTF-32 output */ + DWORD hc; + + if (szb < 1) return 0; /* Buffer overflow? */ + if (chr >= 0x10000) { /* Out of BMP? */ + hc = ((chr & 0xFFFF0000) - 0xD8000000) >> 6; /* Get high 10 bits */ + chr = (chr & 0xFFFF) - 0xDC00; /* Get low 10 bits */ + if (hc >= 0x100000 || chr >= 0x400) return 0; /* Wrong surrogate? */ + chr = (hc | chr) + 0x10000; + } + *buf++ = (TCHAR)chr; + return 1; + +#else /* ANSI/OEM output */ + WCHAR wc; + + wc = ff_uni2oem(chr, CODEPAGE); + if (wc >= 0x100) { /* Is this a DBC? */ + if (szb < 2) return 0; + *buf++ = (char)(wc >> 8); /* Store DBC 1st byte */ + *buf++ = (TCHAR)wc; /* Store DBC 2nd byte */ + return 2; + } + if (wc == 0 || szb < 1) return 0; /* Invalid char or buffer overflow? */ + *buf++ = (TCHAR)wc; /* Store the character */ + return 1; +#endif +} +#endif /* FF_USE_LFN */ + + +#if FF_FS_REENTRANT +/*-----------------------------------------------------------------------*/ +/* Request/Release grant to access the volume */ +/*-----------------------------------------------------------------------*/ +static int lock_fs ( /* 1:Ok, 0:timeout */ + FATFS* fs /* Filesystem object */ +) +{ + return ff_req_grant(fs->sobj); +} + + +static void unlock_fs ( + FATFS* fs, /* Filesystem object */ + FRESULT res /* Result code to be returned */ +) +{ + if (fs && res != FR_NOT_ENABLED && res != FR_INVALID_DRIVE && res != FR_TIMEOUT) { + ff_rel_grant(fs->sobj); + } +} + +#endif + + + +#if FF_FS_LOCK != 0 +/*-----------------------------------------------------------------------*/ +/* File lock control functions */ +/*-----------------------------------------------------------------------*/ + +static FRESULT chk_lock ( /* Check if the file can be accessed */ + DIR* dp, /* Directory object pointing the file to be checked */ + int acc /* Desired access type (0:Read mode open, 1:Write mode open, 2:Delete or rename) */ +) +{ + UINT i, be; + + /* Search open object table for the object */ + be = 0; + for (i = 0; i < FF_FS_LOCK; i++) { + if (Files[i].fs) { /* Existing entry */ + if (Files[i].fs == dp->obj.fs && /* Check if the object matches with an open object */ + Files[i].clu == dp->obj.sclust && + Files[i].ofs == dp->dptr) break; + } else { /* Blank entry */ + be = 1; + } + } + if (i == FF_FS_LOCK) { /* The object has not been opened */ + return (!be && acc != 2) ? FR_TOO_MANY_OPEN_FILES : FR_OK; /* Is there a blank entry for new object? */ + } + + /* The object was opened. Reject any open against writing file and all write mode open */ + return (acc != 0 || Files[i].ctr == 0x100) ? FR_LOCKED : FR_OK; +} + + +static int enq_lock (void) /* Check if an entry is available for a new object */ +{ + UINT i; + + for (i = 0; i < FF_FS_LOCK && Files[i].fs; i++) ; + return (i == FF_FS_LOCK) ? 0 : 1; +} + + +static UINT inc_lock ( /* Increment object open counter and returns its index (0:Internal error) */ + DIR* dp, /* Directory object pointing the file to register or increment */ + int acc /* Desired access (0:Read, 1:Write, 2:Delete/Rename) */ +) +{ + UINT i; + + + for (i = 0; i < FF_FS_LOCK; i++) { /* Find the object */ + if (Files[i].fs == dp->obj.fs && + Files[i].clu == dp->obj.sclust && + Files[i].ofs == dp->dptr) break; + } + + if (i == FF_FS_LOCK) { /* Not opened. Register it as new. */ + for (i = 0; i < FF_FS_LOCK && Files[i].fs; i++) ; + if (i == FF_FS_LOCK) return 0; /* No free entry to register (int err) */ + Files[i].fs = dp->obj.fs; + Files[i].clu = dp->obj.sclust; + Files[i].ofs = dp->dptr; + Files[i].ctr = 0; + } + + if (acc >= 1 && Files[i].ctr) return 0; /* Access violation (int err) */ + + Files[i].ctr = acc ? 0x100 : Files[i].ctr + 1; /* Set semaphore value */ + + return i + 1; /* Index number origin from 1 */ +} + + +static FRESULT dec_lock ( /* Decrement object open counter */ + UINT i /* Semaphore index (1..) */ +) +{ + WORD n; + FRESULT res; + + + if (--i < FF_FS_LOCK) { /* Index number origin from 0 */ + n = Files[i].ctr; + if (n == 0x100) n = 0; /* If write mode open, delete the entry */ + if (n > 0) n--; /* Decrement read mode open count */ + Files[i].ctr = n; + if (n == 0) Files[i].fs = 0; /* Delete the entry if open count gets zero */ + res = FR_OK; + } else { + res = FR_INT_ERR; /* Invalid index nunber */ + } + return res; +} + + +static void clear_lock ( /* Clear lock entries of the volume */ + FATFS *fs +) +{ + UINT i; + + for (i = 0; i < FF_FS_LOCK; i++) { + if (Files[i].fs == fs) Files[i].fs = 0; + } +} + +#endif /* FF_FS_LOCK != 0 */ + + + +/*-----------------------------------------------------------------------*/ +/* Move/Flush disk access window in the filesystem object */ +/*-----------------------------------------------------------------------*/ +#if !FF_FS_READONLY +static FRESULT sync_window ( /* Returns FR_OK or FR_DISK_ERR */ + FATFS* fs /* Filesystem object */ +) +{ + FRESULT res = FR_OK; + + + if (fs->wflag) { /* Is the disk access window dirty */ + if (disk_write(fs->pdrv, fs->win, fs->winsect, 1) == RES_OK) { /* Write back the window */ + fs->wflag = 0; /* Clear window dirty flag */ + if (fs->winsect - fs->fatbase < fs->fsize) { /* Is it in the 1st FAT? */ + if (fs->n_fats == 2) disk_write(fs->pdrv, fs->win, fs->winsect + fs->fsize, 1); /* Reflect it to 2nd FAT if needed */ + } + } else { + res = FR_DISK_ERR; + } + } + return res; +} +#endif + + +static FRESULT move_window ( /* Returns FR_OK or FR_DISK_ERR */ + FATFS* fs, /* Filesystem object */ + DWORD sector /* Sector number to make appearance in the fs->win[] */ +) +{ + FRESULT res = FR_OK; + + + if (sector != fs->winsect) { /* Window offset changed? */ +#if !FF_FS_READONLY + res = sync_window(fs); /* Write-back changes */ +#endif + if (res == FR_OK) { /* Fill sector window with new data */ + if (disk_read(fs->pdrv, fs->win, sector, 1) != RES_OK) { + sector = 0xFFFFFFFF; /* Invalidate window if read data is not valid */ + res = FR_DISK_ERR; + } + fs->winsect = sector; + } + } + return res; +} + + + + +#if !FF_FS_READONLY +/*-----------------------------------------------------------------------*/ +/* Synchronize filesystem and data on the storage */ +/*-----------------------------------------------------------------------*/ + +static FRESULT sync_fs ( /* Returns FR_OK or FR_DISK_ERR */ + FATFS* fs /* Filesystem object */ +) +{ + FRESULT res; + + + res = sync_window(fs); + if (res == FR_OK) { + if (fs->fs_type == FS_FAT32 && fs->fsi_flag == 1) { /* FAT32: Update FSInfo sector if needed */ + /* Create FSInfo structure */ + mem_set(fs->win, 0, sizeof fs->win); + st_word(fs->win + BS_55AA, 0xAA55); + st_dword(fs->win + FSI_LeadSig, 0x41615252); + st_dword(fs->win + FSI_StrucSig, 0x61417272); + st_dword(fs->win + FSI_Free_Count, fs->free_clst); + st_dword(fs->win + FSI_Nxt_Free, fs->last_clst); + /* Write it into the FSInfo sector */ + fs->winsect = fs->volbase + 1; + disk_write(fs->pdrv, fs->win, fs->winsect, 1); + fs->fsi_flag = 0; + } + /* Make sure that no pending write process in the lower layer */ + if (disk_ioctl(fs->pdrv, CTRL_SYNC, 0) != RES_OK) res = FR_DISK_ERR; + } + + return res; +} + +#endif + + + +/*-----------------------------------------------------------------------*/ +/* Get physical sector number from cluster number */ +/*-----------------------------------------------------------------------*/ + +static DWORD clst2sect ( /* !=0:Sector number, 0:Failed (invalid cluster#) */ + FATFS* fs, /* Filesystem object */ + DWORD clst /* Cluster# to be converted */ +) +{ + clst -= 2; /* Cluster number is origin from 2 */ + if (clst >= fs->n_fatent - 2) return 0; /* Is it invalid cluster number? */ + return fs->database + fs->csize * clst; /* Start sector number of the cluster */ +} + + + + +/*-----------------------------------------------------------------------*/ +/* FAT access - Read value of a FAT entry */ +/*-----------------------------------------------------------------------*/ + +static DWORD get_fat ( /* 0xFFFFFFFF:Disk error, 1:Internal error, 2..0x7FFFFFFF:Cluster status */ + FFOBJID* obj, /* Corresponding object */ + DWORD clst /* Cluster number to get the value */ +) +{ + UINT wc, bc; + DWORD val; + FATFS *fs = obj->fs; + + + if (clst < 2 || clst >= fs->n_fatent) { /* Check if in valid range */ + val = 1; /* Internal error */ + + } else { + val = 0xFFFFFFFF; /* Default value falls on disk error */ + + switch (fs->fs_type) { + case FS_FAT12 : + bc = (UINT)clst; bc += bc / 2; + if (move_window(fs, fs->fatbase + (bc / SS(fs))) != FR_OK) break; + wc = fs->win[bc++ % SS(fs)]; /* Get 1st byte of the entry */ + if (move_window(fs, fs->fatbase + (bc / SS(fs))) != FR_OK) break; + wc |= fs->win[bc % SS(fs)] << 8; /* Merge 2nd byte of the entry */ + val = (clst & 1) ? (wc >> 4) : (wc & 0xFFF); /* Adjust bit position */ + break; + + case FS_FAT16 : + if (move_window(fs, fs->fatbase + (clst / (SS(fs) / 2))) != FR_OK) break; + val = ld_word(fs->win + clst * 2 % SS(fs)); /* Simple WORD array */ + break; + + case FS_FAT32 : + if (move_window(fs, fs->fatbase + (clst / (SS(fs) / 4))) != FR_OK) break; + val = ld_dword(fs->win + clst * 4 % SS(fs)) & 0x0FFFFFFF; /* Simple DWORD array but mask out upper 4 bits */ + break; +#if FF_FS_EXFAT + case FS_EXFAT : + if ((obj->objsize != 0 && obj->sclust != 0) || obj->stat == 0) { /* Object except root dir must have valid data length */ + DWORD cofs = clst - obj->sclust; /* Offset from start cluster */ + DWORD clen = (DWORD)((obj->objsize - 1) / SS(fs)) / fs->csize; /* Number of clusters - 1 */ + + if (obj->stat == 2 && cofs <= clen) { /* Is it a contiguous chain? */ + val = (cofs == clen) ? 0x7FFFFFFF : clst + 1; /* No data on the FAT, generate the value */ + break; + } + if (obj->stat == 3 && cofs < obj->n_cont) { /* Is it in the 1st fragment? */ + val = clst + 1; /* Generate the value */ + break; + } + if (obj->stat != 2) { /* Get value from FAT if FAT chain is valid */ + if (obj->n_frag != 0) { /* Is it on the growing edge? */ + val = 0x7FFFFFFF; /* Generate EOC */ + } else { + if (move_window(fs, fs->fatbase + (clst / (SS(fs) / 4))) != FR_OK) break; + val = ld_dword(fs->win + clst * 4 % SS(fs)) & 0x7FFFFFFF; + } + break; + } + } + /* go to default */ +#endif + default: + val = 1; /* Internal error */ + } + } + + return val; +} + + + + +#if !FF_FS_READONLY +/*-----------------------------------------------------------------------*/ +/* FAT access - Change value of a FAT entry */ +/*-----------------------------------------------------------------------*/ + +static FRESULT put_fat ( /* FR_OK(0):succeeded, !=0:error */ + FATFS* fs, /* Corresponding filesystem object */ + DWORD clst, /* FAT index number (cluster number) to be changed */ + DWORD val /* New value to be set to the entry */ +) +{ + UINT bc; + BYTE *p; + FRESULT res = FR_INT_ERR; + + + if (clst >= 2 && clst < fs->n_fatent) { /* Check if in valid range */ + switch (fs->fs_type) { + case FS_FAT12 : + bc = (UINT)clst; bc += bc / 2; /* bc: byte offset of the entry */ + res = move_window(fs, fs->fatbase + (bc / SS(fs))); + if (res != FR_OK) break; + p = fs->win + bc++ % SS(fs); + *p = (clst & 1) ? ((*p & 0x0F) | ((BYTE)val << 4)) : (BYTE)val; /* Put 1st byte */ + fs->wflag = 1; + res = move_window(fs, fs->fatbase + (bc / SS(fs))); + if (res != FR_OK) break; + p = fs->win + bc % SS(fs); + *p = (clst & 1) ? (BYTE)(val >> 4) : ((*p & 0xF0) | ((BYTE)(val >> 8) & 0x0F)); /* Put 2nd byte */ + fs->wflag = 1; + break; + + case FS_FAT16 : + res = move_window(fs, fs->fatbase + (clst / (SS(fs) / 2))); + if (res != FR_OK) break; + st_word(fs->win + clst * 2 % SS(fs), (WORD)val); /* Simple WORD array */ + fs->wflag = 1; + break; + + case FS_FAT32 : +#if FF_FS_EXFAT + case FS_EXFAT : +#endif + res = move_window(fs, fs->fatbase + (clst / (SS(fs) / 4))); + if (res != FR_OK) break; + if (!FF_FS_EXFAT || fs->fs_type != FS_EXFAT) { + val = (val & 0x0FFFFFFF) | (ld_dword(fs->win + clst * 4 % SS(fs)) & 0xF0000000); + } + st_dword(fs->win + clst * 4 % SS(fs), val); + fs->wflag = 1; + break; + } + } + return res; +} + +#endif /* !FF_FS_READONLY */ + + + + +#if FF_FS_EXFAT && !FF_FS_READONLY +/*-----------------------------------------------------------------------*/ +/* exFAT: Accessing FAT and Allocation Bitmap */ +/*-----------------------------------------------------------------------*/ + +/*--------------------------------------*/ +/* Find a contiguous free cluster block */ +/*--------------------------------------*/ + +static DWORD find_bitmap ( /* 0:Not found, 2..:Cluster block found, 0xFFFFFFFF:Disk error */ + FATFS* fs, /* Filesystem object */ + DWORD clst, /* Cluster number to scan from */ + DWORD ncl /* Number of contiguous clusters to find (1..) */ +) +{ + BYTE bm, bv; + UINT i; + DWORD val, scl, ctr; + + + clst -= 2; /* The first bit in the bitmap corresponds to cluster #2 */ + if (clst >= fs->n_fatent - 2) clst = 0; + scl = val = clst; ctr = 0; + for (;;) { + if (move_window(fs, fs->bitbase + val / 8 / SS(fs)) != FR_OK) return 0xFFFFFFFF; + i = val / 8 % SS(fs); bm = 1 << (val % 8); + do { + do { + bv = fs->win[i] & bm; bm <<= 1; /* Get bit value */ + if (++val >= fs->n_fatent - 2) { /* Next cluster (with wrap-around) */ + val = 0; bm = 0; i = SS(fs); + } + if (bv == 0) { /* Is it a free cluster? */ + if (++ctr == ncl) return scl + 2; /* Check if run length is sufficient for required */ + } else { + scl = val; ctr = 0; /* Encountered a cluster in-use, restart to scan */ + } + if (val == clst) return 0; /* All cluster scanned? */ + } while (bm != 0); + bm = 1; + } while (++i < SS(fs)); + } +} + + +/*----------------------------------------*/ +/* Set/Clear a block of allocation bitmap */ +/*----------------------------------------*/ + +static FRESULT change_bitmap ( + FATFS* fs, /* Filesystem object */ + DWORD clst, /* Cluster number to change from */ + DWORD ncl, /* Number of clusters to be changed */ + int bv /* bit value to be set (0 or 1) */ +) +{ + BYTE bm; + UINT i; + DWORD sect; + + + clst -= 2; /* The first bit corresponds to cluster #2 */ + sect = fs->bitbase + clst / 8 / SS(fs); /* Sector address */ + i = clst / 8 % SS(fs); /* Byte offset in the sector */ + bm = 1 << (clst % 8); /* Bit mask in the byte */ + for (;;) { + if (move_window(fs, sect++) != FR_OK) return FR_DISK_ERR; + do { + do { + if (bv == (int)((fs->win[i] & bm) != 0)) return FR_INT_ERR; /* Is the bit expected value? */ + fs->win[i] ^= bm; /* Flip the bit */ + fs->wflag = 1; + if (--ncl == 0) return FR_OK; /* All bits processed? */ + } while (bm <<= 1); /* Next bit */ + bm = 1; + } while (++i < SS(fs)); /* Next byte */ + i = 0; + } +} + + +/*---------------------------------------------*/ +/* Fill the first fragment of the FAT chain */ +/*---------------------------------------------*/ + +static FRESULT fill_first_frag ( + FFOBJID* obj /* Pointer to the corresponding object */ +) +{ + FRESULT res; + DWORD cl, n; + + + if (obj->stat == 3) { /* Has the object been changed 'fragmented' in this session? */ + for (cl = obj->sclust, n = obj->n_cont; n; cl++, n--) { /* Create cluster chain on the FAT */ + res = put_fat(obj->fs, cl, cl + 1); + if (res != FR_OK) return res; + } + obj->stat = 0; /* Change status 'FAT chain is valid' */ + } + return FR_OK; +} + + +/*---------------------------------------------*/ +/* Fill the last fragment of the FAT chain */ +/*---------------------------------------------*/ + +static FRESULT fill_last_frag ( + FFOBJID* obj, /* Pointer to the corresponding object */ + DWORD lcl, /* Last cluster of the fragment */ + DWORD term /* Value to set the last FAT entry */ +) +{ + FRESULT res; + + + while (obj->n_frag > 0) { /* Create the chain of last fragment */ + res = put_fat(obj->fs, lcl - obj->n_frag + 1, (obj->n_frag > 1) ? lcl - obj->n_frag + 2 : term); + if (res != FR_OK) return res; + obj->n_frag--; + } + return FR_OK; +} + +#endif /* FF_FS_EXFAT && !FF_FS_READONLY */ + + + +#if !FF_FS_READONLY +/*-----------------------------------------------------------------------*/ +/* FAT handling - Remove a cluster chain */ +/*-----------------------------------------------------------------------*/ + +static FRESULT remove_chain ( /* FR_OK(0):succeeded, !=0:error */ + FFOBJID* obj, /* Corresponding object */ + DWORD clst, /* Cluster to remove a chain from */ + DWORD pclst /* Previous cluster of clst (0 if entire chain) */ +) +{ + FRESULT res = FR_OK; + DWORD nxt; + FATFS *fs = obj->fs; +#if FF_FS_EXFAT || FF_USE_TRIM + DWORD scl = clst, ecl = clst; +#endif +#if FF_USE_TRIM + DWORD rt[2]; +#endif + + if (clst < 2 || clst >= fs->n_fatent) return FR_INT_ERR; /* Check if in valid range */ + + /* Mark the previous cluster 'EOC' on the FAT if it exists */ + if (pclst != 0 && (!FF_FS_EXFAT || fs->fs_type != FS_EXFAT || obj->stat != 2)) { + res = put_fat(fs, pclst, 0xFFFFFFFF); + if (res != FR_OK) return res; + } + + /* Remove the chain */ + do { + nxt = get_fat(obj, clst); /* Get cluster status */ + if (nxt == 0) break; /* Empty cluster? */ + if (nxt == 1) return FR_INT_ERR; /* Internal error? */ + if (nxt == 0xFFFFFFFF) return FR_DISK_ERR; /* Disk error? */ + if (!FF_FS_EXFAT || fs->fs_type != FS_EXFAT) { + res = put_fat(fs, clst, 0); /* Mark the cluster 'free' on the FAT */ + if (res != FR_OK) return res; + } + if (fs->free_clst < fs->n_fatent - 2) { /* Update FSINFO */ + fs->free_clst++; + fs->fsi_flag |= 1; + } +#if FF_FS_EXFAT || FF_USE_TRIM + if (ecl + 1 == nxt) { /* Is next cluster contiguous? */ + ecl = nxt; + } else { /* End of contiguous cluster block */ +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { + res = change_bitmap(fs, scl, ecl - scl + 1, 0); /* Mark the cluster block 'free' on the bitmap */ + if (res != FR_OK) return res; + } +#endif +#if FF_USE_TRIM + rt[0] = clst2sect(fs, scl); /* Start of data area freed */ + rt[1] = clst2sect(fs, ecl) + fs->csize - 1; /* End of data area freed */ + disk_ioctl(fs->pdrv, CTRL_TRIM, rt); /* Inform device the data in the block is no longer needed */ +#endif + scl = ecl = nxt; + } +#endif + clst = nxt; /* Next cluster */ + } while (clst < fs->n_fatent); /* Repeat while not the last link */ + +#if FF_FS_EXFAT + /* Some post processes for chain status */ + if (fs->fs_type == FS_EXFAT) { + if (pclst == 0) { /* Has the entire chain been removed? */ + obj->stat = 0; /* Change the chain status 'initial' */ + } else { + if (obj->stat == 0) { /* Is it a fragmented chain from the beginning of this session? */ + clst = obj->sclust; /* Follow the chain to check if it gets contiguous */ + while (clst != pclst) { + nxt = get_fat(obj, clst); + if (nxt < 2) return FR_INT_ERR; + if (nxt == 0xFFFFFFFF) return FR_DISK_ERR; + if (nxt != clst + 1) break; /* Not contiguous? */ + clst++; + } + if (clst == pclst) { /* Has the chain got contiguous again? */ + obj->stat = 2; /* Change the chain status 'contiguous' */ + } + } else { + if (obj->stat == 3 && pclst >= obj->sclust && pclst <= obj->sclust + obj->n_cont) { /* Was the chain fragmented in this session and got contiguous again? */ + obj->stat = 2; /* Change the chain status 'contiguous' */ + } + } + } + } +#endif + return FR_OK; +} + + + + +/*-----------------------------------------------------------------------*/ +/* FAT handling - Stretch a chain or Create a new chain */ +/*-----------------------------------------------------------------------*/ + +static DWORD create_chain ( /* 0:No free cluster, 1:Internal error, 0xFFFFFFFF:Disk error, >=2:New cluster# */ + FFOBJID* obj, /* Corresponding object */ + DWORD clst /* Cluster# to stretch, 0:Create a new chain */ +) +{ + DWORD cs, ncl, scl; + FRESULT res; + FATFS *fs = obj->fs; + + + if (clst == 0) { /* Create a new chain */ + scl = fs->last_clst; /* Suggested cluster to start to find */ + if (scl == 0 || scl >= fs->n_fatent) scl = 1; + } + else { /* Stretch a chain */ + cs = get_fat(obj, clst); /* Check the cluster status */ + if (cs < 2) return 1; /* Test for insanity */ + if (cs == 0xFFFFFFFF) return cs; /* Test for disk error */ + if (cs < fs->n_fatent) return cs; /* It is already followed by next cluster */ + scl = clst; /* Cluster to start to find */ + } + if (fs->free_clst == 0) return 0; /* No free cluster */ + +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { /* On the exFAT volume */ + ncl = find_bitmap(fs, scl, 1); /* Find a free cluster */ + if (ncl == 0 || ncl == 0xFFFFFFFF) return ncl; /* No free cluster or hard error? */ + res = change_bitmap(fs, ncl, 1, 1); /* Mark the cluster 'in use' */ + if (res == FR_INT_ERR) return 1; + if (res == FR_DISK_ERR) return 0xFFFFFFFF; + if (clst == 0) { /* Is it a new chain? */ + obj->stat = 2; /* Set status 'contiguous' */ + } else { /* It is a stretched chain */ + if (obj->stat == 2 && ncl != scl + 1) { /* Is the chain got fragmented? */ + obj->n_cont = scl - obj->sclust; /* Set size of the contiguous part */ + obj->stat = 3; /* Change status 'just fragmented' */ + } + } + if (obj->stat != 2) { /* Is the file non-contiguous? */ + if (ncl == clst + 1) { /* Is the cluster next to previous one? */ + obj->n_frag = obj->n_frag ? obj->n_frag + 1 : 2; /* Increment size of last framgent */ + } else { /* New fragment */ + if (obj->n_frag == 0) obj->n_frag = 1; + res = fill_last_frag(obj, clst, ncl); /* Fill last fragment on the FAT and link it to new one */ + if (res == FR_OK) obj->n_frag = 1; + } + } + } else +#endif + { /* On the FAT/FAT32 volume */ + ncl = 0; + if (scl == clst) { /* Stretching an existing chain? */ + ncl = scl + 1; /* Test if next cluster is free */ + if (ncl >= fs->n_fatent) ncl = 2; + cs = get_fat(obj, ncl); /* Get next cluster status */ + if (cs == 1 || cs == 0xFFFFFFFF) return cs; /* Test for error */ + if (cs != 0) { /* Not free? */ + cs = fs->last_clst; /* Start at suggested cluster if it is valid */ + if (cs >= 2 && cs < fs->n_fatent) scl = cs; + ncl = 0; + } + } + if (ncl == 0) { /* The new cluster cannot be contiguous and find another fragment */ + ncl = scl; /* Start cluster */ + for (;;) { + ncl++; /* Next cluster */ + if (ncl >= fs->n_fatent) { /* Check wrap-around */ + ncl = 2; + if (ncl > scl) return 0; /* No free cluster found? */ + } + cs = get_fat(obj, ncl); /* Get the cluster status */ + if (cs == 0) break; /* Found a free cluster? */ + if (cs == 1 || cs == 0xFFFFFFFF) return cs; /* Test for error */ + if (ncl == scl) return 0; /* No free cluster found? */ + } + } + res = put_fat(fs, ncl, 0xFFFFFFFF); /* Mark the new cluster 'EOC' */ + if (res == FR_OK && clst != 0) { + res = put_fat(fs, clst, ncl); /* Link it from the previous one if needed */ + } + } + + if (res == FR_OK) { /* Update FSINFO if function succeeded. */ + fs->last_clst = ncl; + if (fs->free_clst <= fs->n_fatent - 2) fs->free_clst--; + fs->fsi_flag |= 1; + } else { + ncl = (res == FR_DISK_ERR) ? 0xFFFFFFFF : 1; /* Failed. Generate error status */ + } + + return ncl; /* Return new cluster number or error status */ +} + +#endif /* !FF_FS_READONLY */ + + + + +#if FF_USE_FASTSEEK +/*-----------------------------------------------------------------------*/ +/* FAT handling - Convert offset into cluster with link map table */ +/*-----------------------------------------------------------------------*/ + +static DWORD clmt_clust ( /* <2:Error, >=2:Cluster number */ + FIL* fp, /* Pointer to the file object */ + FSIZE_t ofs /* File offset to be converted to cluster# */ +) +{ + DWORD cl, ncl, *tbl; + FATFS *fs = fp->obj.fs; + + + tbl = fp->cltbl + 1; /* Top of CLMT */ + cl = (DWORD)(ofs / SS(fs) / fs->csize); /* Cluster order from top of the file */ + for (;;) { + ncl = *tbl++; /* Number of cluters in the fragment */ + if (ncl == 0) return 0; /* End of table? (error) */ + if (cl < ncl) break; /* In this fragment? */ + cl -= ncl; tbl++; /* Next fragment */ + } + return cl + *tbl; /* Return the cluster number */ +} + +#endif /* FF_USE_FASTSEEK */ + + + + +/*-----------------------------------------------------------------------*/ +/* Directory handling - Fill a cluster with zeros */ +/*-----------------------------------------------------------------------*/ + +#if !FF_FS_READONLY +static FRESULT dir_clear ( /* Returns FR_OK or FR_DISK_ERR */ + FATFS *fs, /* Filesystem object */ + DWORD clst /* Directory table to clear */ +) +{ + DWORD sect; + UINT n, szb; + BYTE *ibuf; + + + if (sync_window(fs) != FR_OK) return FR_DISK_ERR; /* Flush disk access window */ + sect = clst2sect(fs, clst); /* Top of the cluster */ + fs->winsect = sect; /* Set window to top of the cluster */ + mem_set(fs->win, 0, sizeof fs->win); /* Clear window buffer */ +#if FF_USE_LFN == 3 /* Quick table clear by using multi-secter write */ + /* Allocate a temporary buffer */ + for (szb = ((DWORD)fs->csize * SS(fs) >= MAX_MALLOC) ? MAX_MALLOC : fs->csize * SS(fs), ibuf = 0; szb > SS(fs) && (ibuf = ff_memalloc(szb)) == 0; szb /= 2) ; + if (szb > SS(fs)) { /* Buffer allocated? */ + mem_set(ibuf, 0, szb); + szb /= SS(fs); /* Bytes -> Sectors */ + for (n = 0; n < fs->csize && disk_write(fs->pdrv, ibuf, sect + n, szb) == RES_OK; n += szb) ; /* Fill the cluster with 0 */ + ff_memfree(ibuf); + } else +#endif + { + ibuf = fs->win; szb = 1; /* Use window buffer (many single-sector writes may take a time) */ + for (n = 0; n < fs->csize && disk_write(fs->pdrv, ibuf, sect + n, szb) == RES_OK; n += szb) ; /* Fill the cluster with 0 */ + } + return (n == fs->csize) ? FR_OK : FR_DISK_ERR; +} +#endif /* !FF_FS_READONLY */ + + + + +/*-----------------------------------------------------------------------*/ +/* Directory handling - Set directory index */ +/*-----------------------------------------------------------------------*/ + +static FRESULT dir_sdi ( /* FR_OK(0):succeeded, !=0:error */ + DIR* dp, /* Pointer to directory object */ + DWORD ofs /* Offset of directory table */ +) +{ + DWORD csz, clst; + FATFS *fs = dp->obj.fs; + + + if (ofs >= (DWORD)((FF_FS_EXFAT && fs->fs_type == FS_EXFAT) ? MAX_DIR_EX : MAX_DIR) || ofs % SZDIRE) { /* Check range of offset and alignment */ + return FR_INT_ERR; + } + dp->dptr = ofs; /* Set current offset */ + clst = dp->obj.sclust; /* Table start cluster (0:root) */ + if (clst == 0 && fs->fs_type >= FS_FAT32) { /* Replace cluster# 0 with root cluster# */ + clst = fs->dirbase; + if (FF_FS_EXFAT) dp->obj.stat = 0; /* exFAT: Root dir has an FAT chain */ + } + + if (clst == 0) { /* Static table (root-directory on the FAT volume) */ + if (ofs / SZDIRE >= fs->n_rootdir) return FR_INT_ERR; /* Is index out of range? */ + dp->sect = fs->dirbase; + + } else { /* Dynamic table (sub-directory or root-directory on the FAT32/exFAT volume) */ + csz = (DWORD)fs->csize * SS(fs); /* Bytes per cluster */ + while (ofs >= csz) { /* Follow cluster chain */ + clst = get_fat(&dp->obj, clst); /* Get next cluster */ + if (clst == 0xFFFFFFFF) return FR_DISK_ERR; /* Disk error */ + if (clst < 2 || clst >= fs->n_fatent) return FR_INT_ERR; /* Reached to end of table or internal error */ + ofs -= csz; + } + dp->sect = clst2sect(fs, clst); + } + dp->clust = clst; /* Current cluster# */ + if (dp->sect == 0) return FR_INT_ERR; + dp->sect += ofs / SS(fs); /* Sector# of the directory entry */ + dp->dir = fs->win + (ofs % SS(fs)); /* Pointer to the entry in the win[] */ + + return FR_OK; +} + + + + +/*-----------------------------------------------------------------------*/ +/* Directory handling - Move directory table index next */ +/*-----------------------------------------------------------------------*/ + +static FRESULT dir_next ( /* FR_OK(0):succeeded, FR_NO_FILE:End of table, FR_DENIED:Could not stretch */ + DIR* dp, /* Pointer to the directory object */ + int stretch /* 0: Do not stretch table, 1: Stretch table if needed */ +) +{ + DWORD ofs, clst; + FATFS *fs = dp->obj.fs; + + + ofs = dp->dptr + SZDIRE; /* Next entry */ + if (ofs >= (DWORD)((FF_FS_EXFAT && fs->fs_type == FS_EXFAT) ? MAX_DIR_EX : MAX_DIR)) dp->sect = 0; /* Disable it if the offset reached the max value */ + if (dp->sect == 0) return FR_NO_FILE; /* Report EOT if it has been disabled */ + + if (ofs % SS(fs) == 0) { /* Sector changed? */ + dp->sect++; /* Next sector */ + + if (dp->clust == 0) { /* Static table */ + if (ofs / SZDIRE >= fs->n_rootdir) { /* Report EOT if it reached end of static table */ + dp->sect = 0; return FR_NO_FILE; + } + } + else { /* Dynamic table */ + if ((ofs / SS(fs) & (fs->csize - 1)) == 0) { /* Cluster changed? */ + clst = get_fat(&dp->obj, dp->clust); /* Get next cluster */ + if (clst <= 1) return FR_INT_ERR; /* Internal error */ + if (clst == 0xFFFFFFFF) return FR_DISK_ERR; /* Disk error */ + if (clst >= fs->n_fatent) { /* It reached end of dynamic table */ +#if !FF_FS_READONLY + if (!stretch) { /* If no stretch, report EOT */ + dp->sect = 0; return FR_NO_FILE; + } + clst = create_chain(&dp->obj, dp->clust); /* Allocate a cluster */ + if (clst == 0) return FR_DENIED; /* No free cluster */ + if (clst == 1) return FR_INT_ERR; /* Internal error */ + if (clst == 0xFFFFFFFF) return FR_DISK_ERR; /* Disk error */ + if (dir_clear(fs, clst) != FR_OK) return FR_DISK_ERR; /* Clean up the stretched table */ + if (FF_FS_EXFAT) dp->obj.stat |= 4; /* exFAT: The directory has been stretched */ +#else + if (!stretch) dp->sect = 0; /* (this line is to suppress compiler warning) */ + dp->sect = 0; return FR_NO_FILE; /* Report EOT */ +#endif + } + dp->clust = clst; /* Initialize data for new cluster */ + dp->sect = clst2sect(fs, clst); + } + } + } + dp->dptr = ofs; /* Current entry */ + dp->dir = fs->win + ofs % SS(fs); /* Pointer to the entry in the win[] */ + + return FR_OK; +} + + + + +#if !FF_FS_READONLY +/*-----------------------------------------------------------------------*/ +/* Directory handling - Reserve a block of directory entries */ +/*-----------------------------------------------------------------------*/ + +static FRESULT dir_alloc ( /* FR_OK(0):succeeded, !=0:error */ + DIR* dp, /* Pointer to the directory object */ + UINT nent /* Number of contiguous entries to allocate */ +) +{ + FRESULT res; + UINT n; + FATFS *fs = dp->obj.fs; + + + res = dir_sdi(dp, 0); + if (res == FR_OK) { + n = 0; + do { + res = move_window(fs, dp->sect); + if (res != FR_OK) break; +#if FF_FS_EXFAT + if ((fs->fs_type == FS_EXFAT) ? (int)((dp->dir[XDIR_Type] & 0x80) == 0) : (int)(dp->dir[DIR_Name] == DDEM || dp->dir[DIR_Name] == 0)) { +#else + if (dp->dir[DIR_Name] == DDEM || dp->dir[DIR_Name] == 0) { +#endif + if (++n == nent) break; /* A block of contiguous free entries is found */ + } else { + n = 0; /* Not a blank entry. Restart to search */ + } + res = dir_next(dp, 1); + } while (res == FR_OK); /* Next entry with table stretch enabled */ + } + + if (res == FR_NO_FILE) res = FR_DENIED; /* No directory entry to allocate */ + return res; +} + +#endif /* !FF_FS_READONLY */ + + + + +/*-----------------------------------------------------------------------*/ +/* FAT: Directory handling - Load/Store start cluster number */ +/*-----------------------------------------------------------------------*/ + +static DWORD ld_clust ( /* Returns the top cluster value of the SFN entry */ + FATFS* fs, /* Pointer to the fs object */ + const BYTE* dir /* Pointer to the key entry */ +) +{ + DWORD cl; + + cl = ld_word(dir + DIR_FstClusLO); + if (fs->fs_type == FS_FAT32) { + cl |= (DWORD)ld_word(dir + DIR_FstClusHI) << 16; + } + + return cl; +} + + +#if !FF_FS_READONLY +static void st_clust ( + FATFS* fs, /* Pointer to the fs object */ + BYTE* dir, /* Pointer to the key entry */ + DWORD cl /* Value to be set */ +) +{ + st_word(dir + DIR_FstClusLO, (WORD)cl); + if (fs->fs_type == FS_FAT32) { + st_word(dir + DIR_FstClusHI, (WORD)(cl >> 16)); + } +} +#endif + + + +#if FF_USE_LFN +/*--------------------------------------------------------*/ +/* FAT-LFN: Compare a part of file name with an LFN entry */ +/*--------------------------------------------------------*/ + +static int cmp_lfn ( /* 1:matched, 0:not matched */ + const WCHAR* lfnbuf, /* Pointer to the LFN working buffer to be compared */ + BYTE* dir /* Pointer to the directory entry containing the part of LFN */ +) +{ + UINT i, s; + WCHAR wc, uc; + + + if (ld_word(dir + LDIR_FstClusLO) != 0) return 0; /* Check LDIR_FstClusLO */ + + i = ((dir[LDIR_Ord] & 0x3F) - 1) * 13; /* Offset in the LFN buffer */ + + for (wc = 1, s = 0; s < 13; s++) { /* Process all characters in the entry */ + uc = ld_word(dir + LfnOfs[s]); /* Pick an LFN character */ + if (wc != 0) { + if (i >= FF_MAX_LFN || ff_wtoupper(uc) != ff_wtoupper(lfnbuf[i++])) { /* Compare it */ + return 0; /* Not matched */ + } + wc = uc; + } else { + if (uc != 0xFFFF) return 0; /* Check filler */ + } + } + + if ((dir[LDIR_Ord] & LLEF) && wc && lfnbuf[i]) return 0; /* Last segment matched but different length */ + + return 1; /* The part of LFN matched */ +} + + +#if FF_FS_MINIMIZE <= 1 || FF_FS_RPATH >= 2 || FF_USE_LABEL || FF_FS_EXFAT +/*-----------------------------------------------------*/ +/* FAT-LFN: Pick a part of file name from an LFN entry */ +/*-----------------------------------------------------*/ + +static int pick_lfn ( /* 1:succeeded, 0:buffer overflow or invalid LFN entry */ + WCHAR* lfnbuf, /* Pointer to the LFN working buffer */ + BYTE* dir /* Pointer to the LFN entry */ +) +{ + UINT i, s; + WCHAR wc, uc; + + + if (ld_word(dir + LDIR_FstClusLO) != 0) return 0; /* Check LDIR_FstClusLO is 0 */ + + i = ((dir[LDIR_Ord] & ~LLEF) - 1) * 13; /* Offset in the LFN buffer */ + + for (wc = 1, s = 0; s < 13; s++) { /* Process all characters in the entry */ + uc = ld_word(dir + LfnOfs[s]); /* Pick an LFN character */ + if (wc != 0) { + if (i >= FF_MAX_LFN) return 0; /* Buffer overflow? */ + lfnbuf[i++] = wc = uc; /* Store it */ + } else { + if (uc != 0xFFFF) return 0; /* Check filler */ + } + } + + if (dir[LDIR_Ord] & LLEF) { /* Put terminator if it is the last LFN part */ + if (i >= FF_MAX_LFN) return 0; /* Buffer overflow? */ + lfnbuf[i] = 0; + } + + return 1; /* The part of LFN is valid */ +} +#endif + + +#if !FF_FS_READONLY +/*-----------------------------------------*/ +/* FAT-LFN: Create an entry of LFN entries */ +/*-----------------------------------------*/ + +static void put_lfn ( + const WCHAR* lfn, /* Pointer to the LFN */ + BYTE* dir, /* Pointer to the LFN entry to be created */ + BYTE ord, /* LFN order (1-20) */ + BYTE sum /* Checksum of the corresponding SFN */ +) +{ + UINT i, s; + WCHAR wc; + + + dir[LDIR_Chksum] = sum; /* Set checksum */ + dir[LDIR_Attr] = AM_LFN; /* Set attribute. LFN entry */ + dir[LDIR_Type] = 0; + st_word(dir + LDIR_FstClusLO, 0); + + i = (ord - 1) * 13; /* Get offset in the LFN working buffer */ + s = wc = 0; + do { + if (wc != 0xFFFF) wc = lfn[i++]; /* Get an effective character */ + st_word(dir + LfnOfs[s], wc); /* Put it */ + if (wc == 0) wc = 0xFFFF; /* Padding characters for left locations */ + } while (++s < 13); + if (wc == 0xFFFF || !lfn[i]) ord |= LLEF; /* Last LFN part is the start of LFN sequence */ + dir[LDIR_Ord] = ord; /* Set the LFN order */ +} + +#endif /* !FF_FS_READONLY */ +#endif /* FF_USE_LFN */ + + + +#if FF_USE_LFN && !FF_FS_READONLY +/*-----------------------------------------------------------------------*/ +/* FAT-LFN: Create a Numbered SFN */ +/*-----------------------------------------------------------------------*/ + +static void gen_numname ( + BYTE* dst, /* Pointer to the buffer to store numbered SFN */ + const BYTE* src, /* Pointer to SFN */ + const WCHAR* lfn, /* Pointer to LFN */ + UINT seq /* Sequence number */ +) +{ + BYTE ns[8], c; + UINT i, j; + WCHAR wc; + DWORD sr; + + + mem_cpy(dst, src, 11); + + if (seq > 5) { /* In case of many collisions, generate a hash number instead of sequential number */ + sr = seq; + while (*lfn) { /* Create a CRC as hash value */ + wc = *lfn++; + for (i = 0; i < 16; i++) { + sr = (sr << 1) + (wc & 1); + wc >>= 1; + if (sr & 0x10000) sr ^= 0x11021; + } + } + seq = (UINT)sr; + } + + /* itoa (hexdecimal) */ + i = 7; + do { + c = (BYTE)((seq % 16) + '0'); + if (c > '9') c += 7; + ns[i--] = c; + seq /= 16; + } while (seq); + ns[i] = '~'; + + /* Append the number to the SFN body */ + for (j = 0; j < i && dst[j] != ' '; j++) { + if (dbc_1st(dst[j])) { + if (j == i - 1) break; + j++; + } + } + do { + dst[j++] = (i < 8) ? ns[i++] : ' '; + } while (j < 8); +} +#endif /* FF_USE_LFN && !FF_FS_READONLY */ + + + +#if FF_USE_LFN +/*-----------------------------------------------------------------------*/ +/* FAT-LFN: Calculate checksum of an SFN entry */ +/*-----------------------------------------------------------------------*/ + +static BYTE sum_sfn ( + const BYTE* dir /* Pointer to the SFN entry */ +) +{ + BYTE sum = 0; + UINT n = 11; + + do { + sum = (sum >> 1) + (sum << 7) + *dir++; + } while (--n); + return sum; +} + +#endif /* FF_USE_LFN */ + + + +#if FF_FS_EXFAT +/*-----------------------------------------------------------------------*/ +/* exFAT: Checksum */ +/*-----------------------------------------------------------------------*/ + +static WORD xdir_sum ( /* Get checksum of the directoly entry block */ + const BYTE* dir /* Directory entry block to be calculated */ +) +{ + UINT i, szblk; + WORD sum; + + + szblk = (dir[XDIR_NumSec] + 1) * SZDIRE; /* Number of bytes of the entry block */ + for (i = sum = 0; i < szblk; i++) { + if (i == XDIR_SetSum) { /* Skip 2-byte sum field */ + i++; + } else { + sum = ((sum & 1) ? 0x8000 : 0) + (sum >> 1) + dir[i]; + } + } + return sum; +} + + + +static WORD xname_sum ( /* Get check sum (to be used as hash) of the file name */ + const WCHAR* name /* File name to be calculated */ +) +{ + WCHAR chr; + WORD sum = 0; + + + while ((chr = *name++) != 0) { + chr = (WCHAR)ff_wtoupper(chr); /* File name needs to be up-case converted */ + sum = ((sum & 1) ? 0x8000 : 0) + (sum >> 1) + (chr & 0xFF); + sum = ((sum & 1) ? 0x8000 : 0) + (sum >> 1) + (chr >> 8); + } + return sum; +} + + +#if !FF_FS_READONLY && FF_USE_MKFS +static DWORD xsum32 ( /* Returns 32-bit checksum */ + BYTE dat, /* Byte to be calculated (byte-by-byte processing) */ + DWORD sum /* Previous sum value */ +) +{ + sum = ((sum & 1) ? 0x80000000 : 0) + (sum >> 1) + dat; + return sum; +} +#endif + + +#if FF_FS_MINIMIZE <= 1 || FF_FS_RPATH >= 2 +/*------------------------------------------------------*/ +/* exFAT: Get object information from a directory block */ +/*------------------------------------------------------*/ + +static void get_xfileinfo ( + BYTE* dirb, /* Pointer to the direcotry entry block 85+C0+C1s */ + FILINFO* fno /* Buffer to store the extracted file information */ +) +{ + WCHAR wc, hs; + UINT di, si, nc; + + /* Get file name from the entry block */ + si = SZDIRE * 2; /* 1st C1 entry */ + nc = 0; hs = 0; di = 0; + while (nc < dirb[XDIR_NumName]) { + if (si >= MAXDIRB(FF_MAX_LFN)) { di = 0; break; } /* Truncated directory block? */ + if ((si % SZDIRE) == 0) si += 2; /* Skip entry type field */ + wc = ld_word(dirb + si); si += 2; nc++; /* Get a character */ + if (hs == 0 && IsSurrogate(wc)) { /* Is it a surrogate? */ + hs = wc; continue; /* Get low surrogate */ + } + wc = put_utf((DWORD)hs << 16 | wc, &fno->fname[di], FF_LFN_BUF - di); /* Store it in API encoding */ + if (wc == 0) { di = 0; break; } /* Buffer overflow or wrong encoding? */ + di += wc; + hs = 0; + } + if (hs != 0) di = 0; /* Broken surrogate pair? */ + if (di == 0) fno->fname[di++] = '?'; /* Inaccessible object name? */ + fno->fname[di] = 0; /* Terminate the name */ + fno->altname[0] = 0; /* exFAT does not support SFN */ + + fno->fattrib = dirb[XDIR_Attr]; /* Attribute */ + fno->fsize = (fno->fattrib & AM_DIR) ? 0 : ld_qword(dirb + XDIR_FileSize); /* Size */ + fno->ftime = ld_word(dirb + XDIR_ModTime + 0); /* Time */ + fno->fdate = ld_word(dirb + XDIR_ModTime + 2); /* Date */ +} + +#endif /* FF_FS_MINIMIZE <= 1 || FF_FS_RPATH >= 2 */ + + +/*-----------------------------------*/ +/* exFAT: Get a directry entry block */ +/*-----------------------------------*/ + +static FRESULT load_xdir ( /* FR_INT_ERR: invalid entry block */ + DIR* dp /* Reading direcotry object pointing top of the entry block to load */ +) +{ + FRESULT res; + UINT i, sz_ent; + BYTE* dirb = dp->obj.fs->dirbuf; /* Pointer to the on-memory direcotry entry block 85+C0+C1s */ + + + /* Load file-directory entry */ + res = move_window(dp->obj.fs, dp->sect); + if (res != FR_OK) return res; + if (dp->dir[XDIR_Type] != ET_FILEDIR) return FR_INT_ERR; /* Invalid order */ + mem_cpy(dirb + 0 * SZDIRE, dp->dir, SZDIRE); + sz_ent = (dirb[XDIR_NumSec] + 1) * SZDIRE; + if (sz_ent < 3 * SZDIRE || sz_ent > 19 * SZDIRE) return FR_INT_ERR; + + /* Load stream-extension entry */ + res = dir_next(dp, 0); + if (res == FR_NO_FILE) res = FR_INT_ERR; /* It cannot be */ + if (res != FR_OK) return res; + res = move_window(dp->obj.fs, dp->sect); + if (res != FR_OK) return res; + if (dp->dir[XDIR_Type] != ET_STREAM) return FR_INT_ERR; /* Invalid order */ + mem_cpy(dirb + 1 * SZDIRE, dp->dir, SZDIRE); + if (MAXDIRB(dirb[XDIR_NumName]) > sz_ent) return FR_INT_ERR; + + /* Load file-name entries */ + i = 2 * SZDIRE; /* Name offset to load */ + do { + res = dir_next(dp, 0); + if (res == FR_NO_FILE) res = FR_INT_ERR; /* It cannot be */ + if (res != FR_OK) return res; + res = move_window(dp->obj.fs, dp->sect); + if (res != FR_OK) return res; + if (dp->dir[XDIR_Type] != ET_FILENAME) return FR_INT_ERR; /* Invalid order */ + if (i < MAXDIRB(FF_MAX_LFN)) mem_cpy(dirb + i, dp->dir, SZDIRE); + } while ((i += SZDIRE) < sz_ent); + + /* Sanity check (do it for only accessible object) */ + if (i <= MAXDIRB(FF_MAX_LFN)) { + if (xdir_sum(dirb) != ld_word(dirb + XDIR_SetSum)) return FR_INT_ERR; + } + return FR_OK; +} + + +/*------------------------------------------------------------------*/ +/* exFAT: Initialize object allocation info with loaded entry block */ +/*------------------------------------------------------------------*/ + +static void init_alloc_info ( + FATFS* fs, /* Filesystem object */ + FFOBJID* obj /* Object allocation information to be initialized */ +) +{ + obj->sclust = ld_dword(fs->dirbuf + XDIR_FstClus); /* Start cluster */ + obj->objsize = ld_qword(fs->dirbuf + XDIR_FileSize); /* Size */ + obj->stat = fs->dirbuf[XDIR_GenFlags] & 2; /* Allocation status */ + obj->n_frag = 0; /* No last fragment info */ +} + + + +#if !FF_FS_READONLY || FF_FS_RPATH != 0 +/*------------------------------------------------*/ +/* exFAT: Load the object's directory entry block */ +/*------------------------------------------------*/ + +static FRESULT load_obj_xdir ( + DIR* dp, /* Blank directory object to be used to access containing direcotry */ + const FFOBJID* obj /* Object with its containing directory information */ +) +{ + FRESULT res; + + /* Open object containing directory */ + dp->obj.fs = obj->fs; + dp->obj.sclust = obj->c_scl; + dp->obj.stat = (BYTE)obj->c_size; + dp->obj.objsize = obj->c_size & 0xFFFFFF00; + dp->obj.n_frag = 0; + dp->blk_ofs = obj->c_ofs; + + res = dir_sdi(dp, dp->blk_ofs); /* Goto object's entry block */ + if (res == FR_OK) { + res = load_xdir(dp); /* Load the object's entry block */ + } + return res; +} +#endif + + +#if !FF_FS_READONLY +/*----------------------------------------*/ +/* exFAT: Store the directory entry block */ +/*----------------------------------------*/ + +static FRESULT store_xdir ( + DIR* dp /* Pointer to the direcotry object */ +) +{ + FRESULT res; + UINT nent; + BYTE* dirb = dp->obj.fs->dirbuf; /* Pointer to the direcotry entry block 85+C0+C1s */ + + /* Create set sum */ + st_word(dirb + XDIR_SetSum, xdir_sum(dirb)); + nent = dirb[XDIR_NumSec] + 1; + + /* Store the direcotry entry block to the directory */ + res = dir_sdi(dp, dp->blk_ofs); + while (res == FR_OK) { + res = move_window(dp->obj.fs, dp->sect); + if (res != FR_OK) break; + mem_cpy(dp->dir, dirb, SZDIRE); + dp->obj.fs->wflag = 1; + if (--nent == 0) break; + dirb += SZDIRE; + res = dir_next(dp, 0); + } + return (res == FR_OK || res == FR_DISK_ERR) ? res : FR_INT_ERR; +} + + + +/*-------------------------------------------*/ +/* exFAT: Create a new directory enrty block */ +/*-------------------------------------------*/ + +static void create_xdir ( + BYTE* dirb, /* Pointer to the direcotry entry block buffer */ + const WCHAR* lfn /* Pointer to the object name */ +) +{ + UINT i; + BYTE nc1, nlen; + WCHAR wc; + + + /* Create file-directory and stream-extension entry */ + mem_set(dirb, 0, 2 * SZDIRE); + dirb[0 * SZDIRE + XDIR_Type] = ET_FILEDIR; + dirb[1 * SZDIRE + XDIR_Type] = ET_STREAM; + + /* Create file-name entries */ + i = SZDIRE * 2; /* Top of file_name entries */ + nlen = nc1 = 0; wc = 1; + do { + dirb[i++] = ET_FILENAME; dirb[i++] = 0; + do { /* Fill name field */ + if (wc != 0 && (wc = lfn[nlen]) != 0) nlen++; /* Get a character if exist */ + st_word(dirb + i, wc); /* Store it */ + i += 2; + } while (i % SZDIRE != 0); + nc1++; + } while (lfn[nlen]); /* Fill next entry if any char follows */ + + dirb[XDIR_NumName] = nlen; /* Set name length */ + dirb[XDIR_NumSec] = 1 + nc1; /* Set secondary count (C0 + C1s) */ + st_word(dirb + XDIR_NameHash, xname_sum(lfn)); /* Set name hash */ +} + +#endif /* !FF_FS_READONLY */ +#endif /* FF_FS_EXFAT */ + + + +#if FF_FS_MINIMIZE <= 1 || FF_FS_RPATH >= 2 || FF_USE_LABEL || FF_FS_EXFAT +/*-----------------------------------------------------------------------*/ +/* Read an object from the directory */ +/*-----------------------------------------------------------------------*/ + +#define DIR_READ_FILE(dp) dir_read(dp, 0) +#define DIR_READ_LABEL(dp) dir_read(dp, 1) + +static FRESULT dir_read ( + DIR* dp, /* Pointer to the directory object */ + int vol /* Filtered by 0:file/directory or 1:volume label */ +) +{ + FRESULT res = FR_NO_FILE; + FATFS *fs = dp->obj.fs; + BYTE attr, b; +#if FF_USE_LFN + BYTE ord = 0xFF, sum = 0xFF; +#endif + + while (dp->sect) { + res = move_window(fs, dp->sect); + if (res != FR_OK) break; + b = dp->dir[DIR_Name]; /* Test for the entry type */ + if (b == 0) { + res = FR_NO_FILE; break; /* Reached to end of the directory */ + } +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { /* On the exFAT volume */ + if (FF_USE_LABEL && vol) { + if (b == ET_VLABEL) break; /* Volume label entry? */ + } else { + if (b == ET_FILEDIR) { /* Start of the file entry block? */ + dp->blk_ofs = dp->dptr; /* Get location of the block */ + res = load_xdir(dp); /* Load the entry block */ + if (res == FR_OK) { + dp->obj.attr = fs->dirbuf[XDIR_Attr] & AM_MASK; /* Get attribute */ + } + break; + } + } + } else +#endif + { /* On the FAT/FAT32 volume */ + dp->obj.attr = attr = dp->dir[DIR_Attr] & AM_MASK; /* Get attribute */ +#if FF_USE_LFN /* LFN configuration */ + if (b == DDEM || b == '.' || (int)((attr & ~AM_ARC) == AM_VOL) != vol) { /* An entry without valid data */ + ord = 0xFF; + } else { + if (attr == AM_LFN) { /* An LFN entry is found */ + if (b & LLEF) { /* Is it start of an LFN sequence? */ + sum = dp->dir[LDIR_Chksum]; + b &= (BYTE)~LLEF; ord = b; + dp->blk_ofs = dp->dptr; + } + /* Check LFN validity and capture it */ + ord = (b == ord && sum == dp->dir[LDIR_Chksum] && pick_lfn(fs->lfnbuf, dp->dir)) ? ord - 1 : 0xFF; + } else { /* An SFN entry is found */ + if (ord != 0 || sum != sum_sfn(dp->dir)) { /* Is there a valid LFN? */ + dp->blk_ofs = 0xFFFFFFFF; /* It has no LFN. */ + } + break; + } + } +#else /* Non LFN configuration */ + if (b != DDEM && b != '.' && attr != AM_LFN && (int)((attr & ~AM_ARC) == AM_VOL) == vol) { /* Is it a valid entry? */ + break; + } +#endif + } + res = dir_next(dp, 0); /* Next entry */ + if (res != FR_OK) break; + } + + if (res != FR_OK) dp->sect = 0; /* Terminate the read operation on error or EOT */ + return res; +} + +#endif /* FF_FS_MINIMIZE <= 1 || FF_USE_LABEL || FF_FS_RPATH >= 2 */ + + + +/*-----------------------------------------------------------------------*/ +/* Directory handling - Find an object in the directory */ +/*-----------------------------------------------------------------------*/ + +static FRESULT dir_find ( /* FR_OK(0):succeeded, !=0:error */ + DIR* dp /* Pointer to the directory object with the file name */ +) +{ + FRESULT res; + FATFS *fs = dp->obj.fs; + BYTE c; +#if FF_USE_LFN + BYTE a, ord, sum; +#endif + + res = dir_sdi(dp, 0); /* Rewind directory object */ + if (res != FR_OK) return res; +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { /* On the exFAT volume */ + BYTE nc; + UINT di, ni; + WORD hash = xname_sum(fs->lfnbuf); /* Hash value of the name to find */ + + while ((res = DIR_READ_FILE(dp)) == FR_OK) { /* Read an item */ +#if FF_MAX_LFN < 255 + if (fs->dirbuf[XDIR_NumName] > FF_MAX_LFN) continue; /* Skip comparison if inaccessible object name */ +#endif + if (ld_word(fs->dirbuf + XDIR_NameHash) != hash) continue; /* Skip comparison if hash mismatched */ + for (nc = fs->dirbuf[XDIR_NumName], di = SZDIRE * 2, ni = 0; nc; nc--, di += 2, ni++) { /* Compare the name */ + if ((di % SZDIRE) == 0) di += 2; + if (ff_wtoupper(ld_word(fs->dirbuf + di)) != ff_wtoupper(fs->lfnbuf[ni])) break; + } + if (nc == 0 && !fs->lfnbuf[ni]) break; /* Name matched? */ + } + return res; + } +#endif + /* On the FAT/FAT32 volume */ +#if FF_USE_LFN + ord = sum = 0xFF; dp->blk_ofs = 0xFFFFFFFF; /* Reset LFN sequence */ +#endif + do { + res = move_window(fs, dp->sect); + if (res != FR_OK) break; + c = dp->dir[DIR_Name]; + if (c == 0) { res = FR_NO_FILE; break; } /* Reached to end of table */ +#if FF_USE_LFN /* LFN configuration */ + dp->obj.attr = a = dp->dir[DIR_Attr] & AM_MASK; + if (c == DDEM || ((a & AM_VOL) && a != AM_LFN)) { /* An entry without valid data */ + ord = 0xFF; dp->blk_ofs = 0xFFFFFFFF; /* Reset LFN sequence */ + } else { + if (a == AM_LFN) { /* An LFN entry is found */ + if (!(dp->fn[NSFLAG] & NS_NOLFN)) { + if (c & LLEF) { /* Is it start of LFN sequence? */ + sum = dp->dir[LDIR_Chksum]; + c &= (BYTE)~LLEF; ord = c; /* LFN start order */ + dp->blk_ofs = dp->dptr; /* Start offset of LFN */ + } + /* Check validity of the LFN entry and compare it with given name */ + ord = (c == ord && sum == dp->dir[LDIR_Chksum] && cmp_lfn(fs->lfnbuf, dp->dir)) ? ord - 1 : 0xFF; + } + } else { /* An SFN entry is found */ + if (ord == 0 && sum == sum_sfn(dp->dir)) break; /* LFN matched? */ + if (!(dp->fn[NSFLAG] & NS_LOSS) && !mem_cmp(dp->dir, dp->fn, 11)) break; /* SFN matched? */ + ord = 0xFF; dp->blk_ofs = 0xFFFFFFFF; /* Reset LFN sequence */ + } + } +#else /* Non LFN configuration */ + dp->obj.attr = dp->dir[DIR_Attr] & AM_MASK; + if (!(dp->dir[DIR_Attr] & AM_VOL) && !mem_cmp(dp->dir, dp->fn, 11)) break; /* Is it a valid entry? */ +#endif + res = dir_next(dp, 0); /* Next entry */ + } while (res == FR_OK); + + return res; +} + + + + +#if !FF_FS_READONLY +/*-----------------------------------------------------------------------*/ +/* Register an object to the directory */ +/*-----------------------------------------------------------------------*/ + +static FRESULT dir_register ( /* FR_OK:succeeded, FR_DENIED:no free entry or too many SFN collision, FR_DISK_ERR:disk error */ + DIR* dp /* Target directory with object name to be created */ +) +{ + FRESULT res; + FATFS *fs = dp->obj.fs; +#if FF_USE_LFN /* LFN configuration */ + UINT n, nlen, nent; + BYTE sn[12], sum; + + + if (dp->fn[NSFLAG] & (NS_DOT | NS_NONAME)) return FR_INVALID_NAME; /* Check name validity */ + for (nlen = 0; fs->lfnbuf[nlen]; nlen++) ; /* Get lfn length */ + +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { /* On the exFAT volume */ + nent = (nlen + 14) / 15 + 2; /* Number of entries to allocate (85+C0+C1s) */ + res = dir_alloc(dp, nent); /* Allocate directory entries */ + if (res != FR_OK) return res; + dp->blk_ofs = dp->dptr - SZDIRE * (nent - 1); /* Set the allocated entry block offset */ + + if (dp->obj.stat & 4) { /* Has the directory been stretched by new allocation? */ + dp->obj.stat &= ~4; + res = fill_first_frag(&dp->obj); /* Fill the first fragment on the FAT if needed */ + if (res != FR_OK) return res; + res = fill_last_frag(&dp->obj, dp->clust, 0xFFFFFFFF); /* Fill the last fragment on the FAT if needed */ + if (res != FR_OK) return res; + if (dp->obj.sclust != 0) { /* Is it a sub-directory? */ + DIR dj; + + res = load_obj_xdir(&dj, &dp->obj); /* Load the object status */ + if (res != FR_OK) return res; + dp->obj.objsize += (DWORD)fs->csize * SS(fs); /* Increase the directory size by cluster size */ + st_qword(fs->dirbuf + XDIR_FileSize, dp->obj.objsize); /* Update the allocation status */ + st_qword(fs->dirbuf + XDIR_ValidFileSize, dp->obj.objsize); + fs->dirbuf[XDIR_GenFlags] = dp->obj.stat | 1; + res = store_xdir(&dj); /* Store the object status */ + if (res != FR_OK) return res; + } + } + + create_xdir(fs->dirbuf, fs->lfnbuf); /* Create on-memory directory block to be written later */ + return FR_OK; + } +#endif + /* On the FAT/FAT32 volume */ + mem_cpy(sn, dp->fn, 12); + if (sn[NSFLAG] & NS_LOSS) { /* When LFN is out of 8.3 format, generate a numbered name */ + dp->fn[NSFLAG] = NS_NOLFN; /* Find only SFN */ + for (n = 1; n < 100; n++) { + gen_numname(dp->fn, sn, fs->lfnbuf, n); /* Generate a numbered name */ + res = dir_find(dp); /* Check if the name collides with existing SFN */ + if (res != FR_OK) break; + } + if (n == 100) return FR_DENIED; /* Abort if too many collisions */ + if (res != FR_NO_FILE) return res; /* Abort if the result is other than 'not collided' */ + dp->fn[NSFLAG] = sn[NSFLAG]; + } + + /* Create an SFN with/without LFNs. */ + nent = (sn[NSFLAG] & NS_LFN) ? (nlen + 12) / 13 + 1 : 1; /* Number of entries to allocate */ + res = dir_alloc(dp, nent); /* Allocate entries */ + if (res == FR_OK && --nent) { /* Set LFN entry if needed */ + res = dir_sdi(dp, dp->dptr - nent * SZDIRE); + if (res == FR_OK) { + sum = sum_sfn(dp->fn); /* Checksum value of the SFN tied to the LFN */ + do { /* Store LFN entries in bottom first */ + res = move_window(fs, dp->sect); + if (res != FR_OK) break; + put_lfn(fs->lfnbuf, dp->dir, (BYTE)nent, sum); + fs->wflag = 1; + res = dir_next(dp, 0); /* Next entry */ + } while (res == FR_OK && --nent); + } + } + +#else /* Non LFN configuration */ + res = dir_alloc(dp, 1); /* Allocate an entry for SFN */ + +#endif + + /* Set SFN entry */ + if (res == FR_OK) { + res = move_window(fs, dp->sect); + if (res == FR_OK) { + mem_set(dp->dir, 0, SZDIRE); /* Clean the entry */ + mem_cpy(dp->dir + DIR_Name, dp->fn, 11); /* Put SFN */ +#if FF_USE_LFN + dp->dir[DIR_NTres] = dp->fn[NSFLAG] & (NS_BODY | NS_EXT); /* Put NT flag */ +#endif + fs->wflag = 1; + } + } + + return res; +} + +#endif /* !FF_FS_READONLY */ + + + +#if !FF_FS_READONLY && FF_FS_MINIMIZE == 0 +/*-----------------------------------------------------------------------*/ +/* Remove an object from the directory */ +/*-----------------------------------------------------------------------*/ + +static FRESULT dir_remove ( /* FR_OK:Succeeded, FR_DISK_ERR:A disk error */ + DIR* dp /* Directory object pointing the entry to be removed */ +) +{ + FRESULT res; + FATFS *fs = dp->obj.fs; +#if FF_USE_LFN /* LFN configuration */ + DWORD last = dp->dptr; + + res = (dp->blk_ofs == 0xFFFFFFFF) ? FR_OK : dir_sdi(dp, dp->blk_ofs); /* Goto top of the entry block if LFN is exist */ + if (res == FR_OK) { + do { + res = move_window(fs, dp->sect); + if (res != FR_OK) break; + if (FF_FS_EXFAT && fs->fs_type == FS_EXFAT) { /* On the exFAT volume */ + dp->dir[XDIR_Type] &= 0x7F; /* Clear the entry InUse flag. */ + } else { /* On the FAT/FAT32 volume */ + dp->dir[DIR_Name] = DDEM; /* Mark the entry 'deleted'. */ + } + fs->wflag = 1; + if (dp->dptr >= last) break; /* If reached last entry then all entries of the object has been deleted. */ + res = dir_next(dp, 0); /* Next entry */ + } while (res == FR_OK); + if (res == FR_NO_FILE) res = FR_INT_ERR; + } +#else /* Non LFN configuration */ + + res = move_window(fs, dp->sect); + if (res == FR_OK) { + dp->dir[DIR_Name] = DDEM; /* Mark the entry 'deleted'.*/ + fs->wflag = 1; + } +#endif + + return res; +} + +#endif /* !FF_FS_READONLY && FF_FS_MINIMIZE == 0 */ + + + +#if FF_FS_MINIMIZE <= 1 || FF_FS_RPATH >= 2 +/*-----------------------------------------------------------------------*/ +/* Get file information from directory entry */ +/*-----------------------------------------------------------------------*/ + +static void get_fileinfo ( + DIR* dp, /* Pointer to the directory object */ + FILINFO* fno /* Pointer to the file information to be filled */ +) +{ + UINT si, di; +#if FF_USE_LFN + WCHAR wc, hs; + FATFS *fs = dp->obj.fs; +#else + TCHAR c; +#endif + + + fno->fname[0] = 0; /* Invaidate file info */ + if (dp->sect == 0) return; /* Exit if read pointer has reached end of directory */ + +#if FF_USE_LFN /* LFN configuration */ +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { /* On the exFAT volume */ + get_xfileinfo(fs->dirbuf, fno); + return; + } else +#endif + { /* On the FAT/FAT32 volume */ + if (dp->blk_ofs != 0xFFFFFFFF) { /* Get LFN if available */ + si = di = hs = 0; + while (fs->lfnbuf[si] != 0) { + wc = fs->lfnbuf[si++]; /* Get an LFN character (UTF-16) */ + if (hs == 0 && IsSurrogate(wc)) { /* Is it a surrogate? */ + hs = wc; continue; /* Get low surrogate */ + } + wc = put_utf((DWORD)hs << 16 | wc, &fno->fname[di], FF_LFN_BUF - di); /* Store it in UTF-16 or UTF-8 encoding */ + if (wc == 0) { di = 0; break; } /* Invalid char or buffer overflow? */ + di += wc; + hs = 0; + } + if (hs != 0) di = 0; /* Broken surrogate pair? */ + fno->fname[di] = 0; /* Terminate the LFN (null string means LFN is invalid) */ + } + } + + si = di = 0; + while (si < 11) { /* Get SFN from SFN entry */ + wc = dp->dir[si++]; /* Get a char */ + if (wc == ' ') continue; /* Skip padding spaces */ + if (wc == RDDEM) wc = DDEM; /* Restore replaced DDEM character */ + if (si == 9 && di < FF_SFN_BUF) fno->altname[di++] = '.'; /* Insert a . if extension is exist */ +#if FF_LFN_UNICODE >= 1 /* Unicode output */ + if (dbc_1st((BYTE)wc) && si != 8 && si != 11 && dbc_2nd(dp->dir[si])) { /* Make a DBC if needed */ + wc = wc << 8 | dp->dir[si++]; + } + wc = ff_oem2uni(wc, CODEPAGE); /* ANSI/OEM -> Unicode */ + if (wc == 0) { di = 0; break; } /* Wrong char in the current code page? */ + wc = put_utf(wc, &fno->altname[di], FF_SFN_BUF - di); /* Store it in Unicode */ + if (wc == 0) { di = 0; break; } /* Buffer overflow? */ + di += wc; +#else /* ANSI/OEM output */ + fno->altname[di++] = (TCHAR)wc; /* Store it without any conversion */ +#endif + } + fno->altname[di] = 0; /* Terminate the SFN (null string means SFN is invalid) */ + + if (fno->fname[0] == 0) { /* If LFN is invalid, altname[] needs to be copied to fname[] */ + if (di == 0) { /* If LFN and SFN both are invalid, this object is inaccesible */ + fno->fname[di++] = '?'; + } else { + for (si = di = 0; fno->altname[si]; si++, di++) { /* Copy altname[] to fname[] with case information */ + wc = (WCHAR)fno->altname[si]; + if (IsUpper(wc) && (dp->dir[DIR_NTres] & ((si >= 9) ? NS_EXT : NS_BODY))) wc += 0x20; + fno->fname[di] = (TCHAR)wc; + } + } + fno->fname[di] = 0; /* Terminate the LFN */ + if (!dp->dir[DIR_NTres]) fno->altname[0] = 0; /* Altname is not needed if neither LFN nor case info is exist. */ + } + +#else /* Non-LFN configuration */ + si = di = 0; + while (si < 11) { /* Copy name body and extension */ + c = (TCHAR)dp->dir[si++]; + if (c == ' ') continue; /* Skip padding spaces */ + if (c == RDDEM) c = DDEM; /* Restore replaced DDEM character */ + if (si == 9) fno->fname[di++] = '.';/* Insert a . if extension is exist */ + fno->fname[di++] = c; + } + fno->fname[di] = 0; +#endif + + fno->fattrib = dp->dir[DIR_Attr]; /* Attribute */ + fno->fsize = ld_dword(dp->dir + DIR_FileSize); /* Size */ + fno->ftime = ld_word(dp->dir + DIR_ModTime + 0); /* Time */ + fno->fdate = ld_word(dp->dir + DIR_ModTime + 2); /* Date */ +} + +#endif /* FF_FS_MINIMIZE <= 1 || FF_FS_RPATH >= 2 */ + + + +#if FF_USE_FIND && FF_FS_MINIMIZE <= 1 +/*-----------------------------------------------------------------------*/ +/* Pattern matching */ +/*-----------------------------------------------------------------------*/ + +static DWORD get_achar ( /* Get a character and advances ptr */ + const TCHAR** ptr /* Pointer to pointer to the ANSI/OEM or Unicode string */ +) +{ + DWORD chr; + + +#if FF_USE_LFN && FF_LFN_UNICODE >= 1 /* Unicode input */ + chr = tchar2uni(ptr); + if (chr == 0xFFFFFFFF) chr = 0; /* Wrong UTF encoding is recognized as end of the string */ + chr = ff_wtoupper(chr); + +#else /* ANSI/OEM input */ + chr = (BYTE)*(*ptr)++; /* Get a byte */ + if (IsLower(chr)) chr -= 0x20; /* To upper ASCII char */ +#if FF_CODE_PAGE == 0 + if (ExCvt && chr >= 0x80) chr = ExCvt[chr - 0x80]; /* To upper SBCS extended char */ +#elif FF_CODE_PAGE < 900 + if (chr >= 0x80) chr = ExCvt[chr - 0x80]; /* To upper SBCS extended char */ +#endif +#if FF_CODE_PAGE == 0 || FF_CODE_PAGE >= 900 + if (dbc_1st((BYTE)chr)) { /* Get DBC 2nd byte if needed */ + chr = dbc_2nd((BYTE)**ptr) ? chr << 8 | (BYTE)*(*ptr)++ : 0; + } +#endif + +#endif + return chr; +} + + +static int pattern_matching ( /* 0:not matched, 1:matched */ + const TCHAR* pat, /* Matching pattern */ + const TCHAR* nam, /* String to be tested */ + int skip, /* Number of pre-skip chars (number of ?s) */ + int inf /* Infinite search (* specified) */ +) +{ + const TCHAR *pp, *np; + DWORD pc, nc; + int nm, nx; + + + while (skip--) { /* Pre-skip name chars */ + if (!get_achar(&nam)) return 0; /* Branch mismatched if less name chars */ + } + if (*pat == 0 && inf) return 1; /* (short circuit) */ + + do { + pp = pat; np = nam; /* Top of pattern and name to match */ + for (;;) { + if (*pp == '?' || *pp == '*') { /* Wildcard? */ + nm = nx = 0; + do { /* Analyze the wildcard block */ + if (*pp++ == '?') nm++; else nx = 1; + } while (*pp == '?' || *pp == '*'); + if (pattern_matching(pp, np, nm, nx)) return 1; /* Test new branch (recurs upto number of wildcard blocks in the pattern) */ + nc = *np; break; /* Branch mismatched */ + } + pc = get_achar(&pp); /* Get a pattern char */ + nc = get_achar(&np); /* Get a name char */ + if (pc != nc) break; /* Branch mismatched? */ + if (pc == 0) return 1; /* Branch matched? (matched at end of both strings) */ + } + get_achar(&nam); /* nam++ */ + } while (inf && nc); /* Retry until end of name if infinite search is specified */ + + return 0; +} + +#endif /* FF_USE_FIND && FF_FS_MINIMIZE <= 1 */ + + + +/*-----------------------------------------------------------------------*/ +/* Pick a top segment and create the object name in directory form */ +/*-----------------------------------------------------------------------*/ + +static FRESULT create_name ( /* FR_OK: successful, FR_INVALID_NAME: could not create */ + DIR* dp, /* Pointer to the directory object */ + const TCHAR** path /* Pointer to pointer to the segment in the path string */ +) +{ +#if FF_USE_LFN /* LFN configuration */ + BYTE b, cf; + WCHAR wc, *lfn; + DWORD uc; + UINT i, ni, si, di; + const TCHAR *p; + + + /* Create LFN into LFN working buffer */ + p = *path; lfn = dp->obj.fs->lfnbuf; di = 0; + for (;;) { + uc = tchar2uni(&p); /* Get a character */ + if (uc == 0xFFFFFFFF) return FR_INVALID_NAME; /* Invalid code or UTF decode error */ + if (uc >= 0x10000) lfn[di++] = (WCHAR)(uc >> 16); /* Store high surrogate if needed */ + wc = (WCHAR)uc; + if (wc < ' ' || wc == '/' || wc == '\\') break; /* Break if end of the path or a separator is found */ + if (wc < 0x80 && chk_chr("\"*:<>\?|\x7F", wc)) return FR_INVALID_NAME; /* Reject illegal characters for LFN */ + if (di >= FF_MAX_LFN) return FR_INVALID_NAME; /* Reject too long name */ + lfn[di++] = wc; /* Store the Unicode character */ + } + while (*p == '/' || *p == '\\') p++; /* Skip duplicated separators if exist */ + *path = p; /* Return pointer to the next segment */ + cf = (wc < ' ') ? NS_LAST : 0; /* Set last segment flag if end of the path */ + +#if FF_FS_RPATH != 0 + if ((di == 1 && lfn[di - 1] == '.') || + (di == 2 && lfn[di - 1] == '.' && lfn[di - 2] == '.')) { /* Is this segment a dot name? */ + lfn[di] = 0; + for (i = 0; i < 11; i++) { /* Create dot name for SFN entry */ + dp->fn[i] = (i < di) ? '.' : ' '; + } + dp->fn[i] = cf | NS_DOT; /* This is a dot entry */ + return FR_OK; + } +#endif + while (di) { /* Snip off trailing spaces and dots if exist */ + wc = lfn[di - 1]; + if (wc != ' ' && wc != '.') break; + di--; + } + lfn[di] = 0; /* LFN is created into the working buffer */ + if (di == 0) return FR_INVALID_NAME; /* Reject null name */ + + /* Create SFN in directory form */ + for (si = 0; lfn[si] == ' '; si++) ; /* Remove leading spaces */ + if (si > 0 || lfn[si] == '.') cf |= NS_LOSS | NS_LFN; /* Is there any leading space or dot? */ + while (di > 0 && lfn[di - 1] != '.') di--; /* Find last dot (di<=si: no extension) */ + + mem_set(dp->fn, ' ', 11); + i = b = 0; ni = 8; + for (;;) { + wc = lfn[si++]; /* Get an LFN character */ + if (wc == 0) break; /* Break on end of the LFN */ + if (wc == ' ' || (wc == '.' && si != di)) { /* Remove embedded spaces and dots */ + cf |= NS_LOSS | NS_LFN; + continue; + } + + if (i >= ni || si == di) { /* End of field? */ + if (ni == 11) { /* Name extension overflow? */ + cf |= NS_LOSS | NS_LFN; + break; + } + if (si != di) cf |= NS_LOSS | NS_LFN; /* Name body overflow? */ + if (si > di) break; /* No name extension? */ + si = di; i = 8; ni = 11; b <<= 2; /* Enter name extension */ + continue; + } + + if (wc >= 0x80) { /* Is this a non-ASCII character? */ + cf |= NS_LFN; /* LFN entry needs to be created */ +#if FF_CODE_PAGE == 0 + if (ExCvt) { /* At SBCS */ + wc = ff_uni2oem(wc, CODEPAGE); /* Unicode ==> ANSI/OEM code */ + if (wc & 0x80) wc = ExCvt[wc & 0x7F]; /* Convert extended character to upper (SBCS) */ + } else { /* At DBCS */ + wc = ff_uni2oem(ff_wtoupper(wc), CODEPAGE); /* Unicode ==> Upper convert ==> ANSI/OEM code */ + } +#elif FF_CODE_PAGE < 900 /* SBCS cfg */ + wc = ff_uni2oem(wc, CODEPAGE); /* Unicode ==> ANSI/OEM code */ + if (wc & 0x80) wc = ExCvt[wc & 0x7F]; /* Convert extended character to upper (SBCS) */ +#else /* DBCS cfg */ + wc = ff_uni2oem(ff_wtoupper(wc), CODEPAGE); /* Unicode ==> Upper convert ==> ANSI/OEM code */ +#endif + } + + if (wc >= 0x100) { /* Is this a DBC? */ + if (i >= ni - 1) { /* Field overflow? */ + cf |= NS_LOSS | NS_LFN; + i = ni; continue; /* Next field */ + } + dp->fn[i++] = (BYTE)(wc >> 8); /* Put 1st byte */ + } else { /* SBC */ + if (wc == 0 || chk_chr("+,;=[]", wc)) { /* Replace illegal characters for SFN if needed */ + wc = '_'; cf |= NS_LOSS | NS_LFN;/* Lossy conversion */ + } else { + if (IsUpper(wc)) { /* ASCII upper case? */ + b |= 2; + } + if (IsLower(wc)) { /* ASCII lower case? */ + b |= 1; wc -= 0x20; + } + } + } + dp->fn[i++] = (BYTE)wc; + } + + if (dp->fn[0] == DDEM) dp->fn[0] = RDDEM; /* If the first character collides with DDEM, replace it with RDDEM */ + + if (ni == 8) b <<= 2; /* Shift capital flags if no extension */ + if ((b & 0x0C) == 0x0C || (b & 0x03) == 0x03) cf |= NS_LFN; /* LFN entry needs to be created if composite capitals */ + if (!(cf & NS_LFN)) { /* When LFN is in 8.3 format without extended character, NT flags are created */ + if (b & 0x01) cf |= NS_EXT; /* NT flag (Extension has small capital letters only) */ + if (b & 0x04) cf |= NS_BODY; /* NT flag (Body has small capital letters only) */ + } + + dp->fn[NSFLAG] = cf; /* SFN is created into dp->fn[] */ + + return FR_OK; + + +#else /* FF_USE_LFN : Non-LFN configuration */ + BYTE c, d, *sfn; + UINT ni, si, i; + const char *p; + + /* Create file name in directory form */ + p = *path; sfn = dp->fn; + mem_set(sfn, ' ', 11); + si = i = 0; ni = 8; +#if FF_FS_RPATH != 0 + if (p[si] == '.') { /* Is this a dot entry? */ + for (;;) { + c = (BYTE)p[si++]; + if (c != '.' || si >= 3) break; + sfn[i++] = c; + } + if (c != '/' && c != '\\' && c > ' ') return FR_INVALID_NAME; + *path = p + si; /* Return pointer to the next segment */ + sfn[NSFLAG] = (c <= ' ') ? NS_LAST | NS_DOT : NS_DOT; /* Set last segment flag if end of the path */ + return FR_OK; + } +#endif + for (;;) { + c = (BYTE)p[si++]; /* Get a byte */ + if (c <= ' ') break; /* Break if end of the path name */ + if (c == '/' || c == '\\') { /* Break if a separator is found */ + while (p[si] == '/' || p[si] == '\\') si++; /* Skip duplicated separator if exist */ + break; + } + if (c == '.' || i >= ni) { /* End of body or field overflow? */ + if (ni == 11 || c != '.') return FR_INVALID_NAME; /* Field overflow or invalid dot? */ + i = 8; ni = 11; /* Enter file extension field */ + continue; + } +#if FF_CODE_PAGE == 0 + if (ExCvt && c >= 0x80) { /* Is SBC extended character? */ + c = ExCvt[c & 0x7F]; /* To upper SBC extended character */ + } +#elif FF_CODE_PAGE < 900 + if (c >= 0x80) { /* Is SBC extended character? */ + c = ExCvt[c & 0x7F]; /* To upper SBC extended character */ + } +#endif + if (dbc_1st(c)) { /* Check if it is a DBC 1st byte */ + d = (BYTE)p[si++]; /* Get 2nd byte */ + if (!dbc_2nd(d) || i >= ni - 1) return FR_INVALID_NAME; /* Reject invalid DBC */ + sfn[i++] = c; + sfn[i++] = d; + } else { /* SBC */ + if (chk_chr("\"*+,:;<=>\?[]|\x7F", c)) return FR_INVALID_NAME; /* Reject illegal chrs for SFN */ + if (IsLower(c)) c -= 0x20; /* To upper */ + sfn[i++] = c; + } + } + *path = p + si; /* Return pointer to the next segment */ + if (i == 0) return FR_INVALID_NAME; /* Reject nul string */ + + if (sfn[0] == DDEM) sfn[0] = RDDEM; /* If the first character collides with DDEM, replace it with RDDEM */ + sfn[NSFLAG] = (c <= ' ') ? NS_LAST : 0; /* Set last segment flag if end of the path */ + + return FR_OK; +#endif /* FF_USE_LFN */ +} + + + + +/*-----------------------------------------------------------------------*/ +/* Follow a file path */ +/*-----------------------------------------------------------------------*/ + +static FRESULT follow_path ( /* FR_OK(0): successful, !=0: error code */ + DIR* dp, /* Directory object to return last directory and found object */ + const TCHAR* path /* Full-path string to find a file or directory */ +) +{ + FRESULT res; + BYTE ns; + FATFS *fs = dp->obj.fs; + + +#if FF_FS_RPATH != 0 + if (*path != '/' && *path != '\\') { /* Without heading separator */ + dp->obj.sclust = fs->cdir; /* Start from current directory */ + } else +#endif + { /* With heading separator */ + while (*path == '/' || *path == '\\') path++; /* Strip heading separator */ + dp->obj.sclust = 0; /* Start from root directory */ + } +#if FF_FS_EXFAT + dp->obj.n_frag = 0; /* Invalidate last fragment counter of the object */ +#if FF_FS_RPATH != 0 + if (fs->fs_type == FS_EXFAT && dp->obj.sclust) { /* exFAT: Retrieve the sub-directory's status */ + DIR dj; + + dp->obj.c_scl = fs->cdc_scl; + dp->obj.c_size = fs->cdc_size; + dp->obj.c_ofs = fs->cdc_ofs; + res = load_obj_xdir(&dj, &dp->obj); + if (res != FR_OK) return res; + dp->obj.objsize = ld_dword(fs->dirbuf + XDIR_FileSize); + dp->obj.stat = fs->dirbuf[XDIR_GenFlags] & 2; + } +#endif +#endif + + if ((UINT)*path < ' ') { /* Null path name is the origin directory itself */ + dp->fn[NSFLAG] = NS_NONAME; + res = dir_sdi(dp, 0); + + } else { /* Follow path */ + for (;;) { + res = create_name(dp, &path); /* Get a segment name of the path */ + if (res != FR_OK) break; + res = dir_find(dp); /* Find an object with the segment name */ + ns = dp->fn[NSFLAG]; + if (res != FR_OK) { /* Failed to find the object */ + if (res == FR_NO_FILE) { /* Object is not found */ + if (FF_FS_RPATH && (ns & NS_DOT)) { /* If dot entry is not exist, stay there */ + if (!(ns & NS_LAST)) continue; /* Continue to follow if not last segment */ + dp->fn[NSFLAG] = NS_NONAME; + res = FR_OK; + } else { /* Could not find the object */ + if (!(ns & NS_LAST)) res = FR_NO_PATH; /* Adjust error code if not last segment */ + } + } + break; + } + if (ns & NS_LAST) break; /* Last segment matched. Function completed. */ + /* Get into the sub-directory */ + if (!(dp->obj.attr & AM_DIR)) { /* It is not a sub-directory and cannot follow */ + res = FR_NO_PATH; break; + } +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { /* Save containing directory information for next dir */ + dp->obj.c_scl = dp->obj.sclust; + dp->obj.c_size = ((DWORD)dp->obj.objsize & 0xFFFFFF00) | dp->obj.stat; + dp->obj.c_ofs = dp->blk_ofs; + init_alloc_info(fs, &dp->obj); /* Open next directory */ + } else +#endif + { + dp->obj.sclust = ld_clust(fs, fs->win + dp->dptr % SS(fs)); /* Open next directory */ + } + } + } + + return res; +} + + + + +/*-----------------------------------------------------------------------*/ +/* Get logical drive number from path name */ +/*-----------------------------------------------------------------------*/ + +static int get_ldnumber ( /* Returns logical drive number (-1:invalid drive number or null pointer) */ + const TCHAR** path /* Pointer to pointer to the path name */ +) +{ + const TCHAR *tp, *tt; + TCHAR tc; + int i, vol = -1; +#if FF_STR_VOLUME_ID /* Find string volume ID */ + const char *sp; + char c; +#endif + + tt = tp = *path; + if (!tp) return vol; /* Invalid path name? */ + do tc = *tt++; while ((UINT)tc >= (FF_USE_LFN ? ' ' : '!') && tc != ':'); /* Find a colon in the path */ + + if (tc == ':') { /* DOS/Windows style volume ID? */ + i = FF_VOLUMES; + if (IsDigit(*tp) && tp + 2 == tt) { /* Is there a numeric volume ID + colon? */ + i = (int)*tp - '0'; /* Get the LD number */ + } +#if FF_STR_VOLUME_ID == 1 /* Arbitrary string is enabled */ + else { + i = 0; + do { + sp = VolumeStr[i]; tp = *path; /* This string volume ID and path name */ + do { /* Compare the volume ID with path name */ + c = *sp++; tc = *tp++; + if (IsLower(c)) c -= 0x20; + if (IsLower(tc)) tc -= 0x20; + } while (c && (TCHAR)c == tc); + } while ((c || tp != tt) && ++i < FF_VOLUMES); /* Repeat for each id until pattern match */ + } +#endif + if (i < FF_VOLUMES) { /* If a volume ID is found, get the drive number and strip it */ + vol = i; /* Drive number */ + *path = tt; /* Snip the drive prefix off */ + } + return vol; + } +#if FF_STR_VOLUME_ID == 2 /* Unix style volume ID is enabled */ + if (*tp == '/') { + i = 0; + do { + sp = VolumeStr[i]; tp = *path; /* This string volume ID and path name */ + do { /* Compare the volume ID with path name */ + c = *sp++; tc = *(++tp); + if (IsLower(c)) c -= 0x20; + if (IsLower(tc)) tc -= 0x20; + } while (c && (TCHAR)c == tc); + } while ((c || (tc != '/' && (UINT)tc >= (FF_USE_LFN ? ' ' : '!'))) && ++i < FF_VOLUMES); /* Repeat for each ID until pattern match */ + if (i < FF_VOLUMES) { /* If a volume ID is found, get the drive number and strip it */ + vol = i; /* Drive number */ + *path = tp; /* Snip the drive prefix off */ + return vol; + } + } +#endif + /* No drive prefix is found */ +#if FF_FS_RPATH != 0 + vol = CurrVol; /* Default drive is current drive */ +#else + vol = 0; /* Default drive is 0 */ +#endif + return vol; /* Return the default drive */ +} + + + + +/*-----------------------------------------------------------------------*/ +/* Load a sector and check if it is an FAT VBR */ +/*-----------------------------------------------------------------------*/ + +static BYTE check_fs ( /* 0:FAT, 1:exFAT, 2:Valid BS but not FAT, 3:Not a BS, 4:Disk error */ + FATFS* fs, /* Filesystem object */ + DWORD sect /* Sector# (lba) to load and check if it is an FAT-VBR or not */ +) +{ + fs->wflag = 0; fs->winsect = 0xFFFFFFFF; /* Invaidate window */ + if (move_window(fs, sect) != FR_OK) return 4; /* Load boot record */ + + if (ld_word(fs->win + BS_55AA) != 0xAA55) return 3; /* Check boot record signature (always here regardless of the sector size) */ + +#if FF_FS_EXFAT + if (!mem_cmp(fs->win + BS_JmpBoot, "\xEB\x76\x90" "EXFAT ", 11)) return 1; /* Check if exFAT VBR */ +#endif + if (fs->win[BS_JmpBoot] == 0xE9 || fs->win[BS_JmpBoot] == 0xEB || fs->win[BS_JmpBoot] == 0xE8) { /* Valid JumpBoot code? */ + if (!mem_cmp(fs->win + BS_FilSysType, "FAT", 3)) return 0; /* Is it an FAT VBR? */ + if (!mem_cmp(fs->win + BS_FilSysType32, "FAT32", 5)) return 0; /* Is it an FAT32 VBR? */ + } + return 2; /* Valid BS but not FAT */ +} + + + + +/*-----------------------------------------------------------------------*/ +/* Determine logical drive number and mount the volume if needed */ +/*-----------------------------------------------------------------------*/ + +static FRESULT find_volume ( /* FR_OK(0): successful, !=0: an error occurred */ + const TCHAR** path, /* Pointer to pointer to the path name (drive number) */ + FATFS** rfs, /* Pointer to pointer to the found filesystem object */ + BYTE mode /* !=0: Check write protection for write access */ +) +{ + BYTE fmt, *pt; + int vol; + DSTATUS stat; + DWORD bsect, fasize, tsect, sysect, nclst, szbfat, br[4]; + WORD nrsv; + FATFS *fs; + UINT i; + + + /* Get logical drive number */ + *rfs = 0; + vol = get_ldnumber(path); + if (vol < 0) return FR_INVALID_DRIVE; + + /* Check if the filesystem object is valid or not */ + fs = FatFs[vol]; /* Get pointer to the filesystem object */ + if (!fs) return FR_NOT_ENABLED; /* Is the filesystem object available? */ +#if FF_FS_REENTRANT + if (!lock_fs(fs)) return FR_TIMEOUT; /* Lock the volume */ +#endif + *rfs = fs; /* Return pointer to the filesystem object */ + + mode &= (BYTE)~FA_READ; /* Desired access mode, write access or not */ + if (fs->fs_type != 0) { /* If the volume has been mounted */ + stat = disk_status(fs->pdrv); + if (!(stat & STA_NOINIT)) { /* and the physical drive is kept initialized */ + if (!FF_FS_READONLY && mode && (stat & STA_PROTECT)) { /* Check write protection if needed */ + return FR_WRITE_PROTECTED; + } + return FR_OK; /* The filesystem object is valid */ + } + } + + /* The filesystem object is not valid. */ + /* Following code attempts to mount the volume. (analyze BPB and initialize the filesystem object) */ + + fs->fs_type = 0; /* Clear the filesystem object */ + fs->pdrv = LD2PD(vol); /* Bind the logical drive and a physical drive */ + stat = disk_initialize(fs->pdrv); /* Initialize the physical drive */ + if (stat & STA_NOINIT) { /* Check if the initialization succeeded */ + return FR_NOT_READY; /* Failed to initialize due to no medium or hard error */ + } + if (!FF_FS_READONLY && mode && (stat & STA_PROTECT)) { /* Check disk write protection if needed */ + return FR_WRITE_PROTECTED; + } +#if FF_MAX_SS != FF_MIN_SS /* Get sector size (multiple sector size cfg only) */ + if (disk_ioctl(fs->pdrv, GET_SECTOR_SIZE, &SS(fs)) != RES_OK) return FR_DISK_ERR; + if (SS(fs) > FF_MAX_SS || SS(fs) < FF_MIN_SS || (SS(fs) & (SS(fs) - 1))) return FR_DISK_ERR; +#endif + + /* Find an FAT partition on the drive. Supports only generic partitioning rules, FDISK (MBR) and SFD (w/o partition). */ + bsect = 0; + fmt = check_fs(fs, bsect); /* Load sector 0 and check if it is an FAT-VBR as SFD */ + if (fmt == 2 || (fmt < 2 && LD2PT(vol) != 0)) { /* Not an FAT-VBR or forced partition number */ + for (i = 0; i < 4; i++) { /* Get partition offset */ + pt = fs->win + (MBR_Table + i * SZ_PTE); + br[i] = pt[PTE_System] ? ld_dword(pt + PTE_StLba) : 0; + } + i = LD2PT(vol); /* Partition number: 0:auto, 1-4:forced */ + if (i != 0) i--; + do { /* Find an FAT volume */ + bsect = br[i]; + fmt = bsect ? check_fs(fs, bsect) : 3; /* Check the partition */ + } while (LD2PT(vol) == 0 && fmt >= 2 && ++i < 4); + } + if (fmt == 4) return FR_DISK_ERR; /* An error occured in the disk I/O layer */ + if (fmt >= 2) return FR_NO_FILESYSTEM; /* No FAT volume is found */ + + /* An FAT volume is found (bsect). Following code initializes the filesystem object */ + +#if FF_FS_EXFAT + if (fmt == 1) { + QWORD maxlba; + DWORD so, cv, bcl; + + for (i = BPB_ZeroedEx; i < BPB_ZeroedEx + 53 && fs->win[i] == 0; i++) ; /* Check zero filler */ + if (i < BPB_ZeroedEx + 53) return FR_NO_FILESYSTEM; + + if (ld_word(fs->win + BPB_FSVerEx) != 0x100) return FR_NO_FILESYSTEM; /* Check exFAT version (must be version 1.0) */ + + if (1 << fs->win[BPB_BytsPerSecEx] != SS(fs)) { /* (BPB_BytsPerSecEx must be equal to the physical sector size) */ + return FR_NO_FILESYSTEM; + } + + maxlba = ld_qword(fs->win + BPB_TotSecEx) + bsect; /* Last LBA + 1 of the volume */ + if (maxlba >= 0x100000000) return FR_NO_FILESYSTEM; /* (It cannot be handled in 32-bit LBA) */ + + fs->fsize = ld_dword(fs->win + BPB_FatSzEx); /* Number of sectors per FAT */ + + fs->n_fats = fs->win[BPB_NumFATsEx]; /* Number of FATs */ + if (fs->n_fats != 1) return FR_NO_FILESYSTEM; /* (Supports only 1 FAT) */ + + fs->csize = 1 << fs->win[BPB_SecPerClusEx]; /* Cluster size */ + if (fs->csize == 0) return FR_NO_FILESYSTEM; /* (Must be 1..32768) */ + + nclst = ld_dword(fs->win + BPB_NumClusEx); /* Number of clusters */ + if (nclst > MAX_EXFAT) return FR_NO_FILESYSTEM; /* (Too many clusters) */ + fs->n_fatent = nclst + 2; + + /* Boundaries and Limits */ + fs->volbase = bsect; + fs->database = bsect + ld_dword(fs->win + BPB_DataOfsEx); + fs->fatbase = bsect + ld_dword(fs->win + BPB_FatOfsEx); + if (maxlba < (QWORD)fs->database + nclst * fs->csize) return FR_NO_FILESYSTEM; /* (Volume size must not be smaller than the size requiered) */ + fs->dirbase = ld_dword(fs->win + BPB_RootClusEx); + + /* Get bitmap location and check if it is contiguous (implementation assumption) */ + so = i = 0; + for (;;) { /* Find the bitmap entry in the root directory (in only first cluster) */ + if (i == 0) { + if (so >= fs->csize) return FR_NO_FILESYSTEM; /* Not found? */ + if (move_window(fs, clst2sect(fs, fs->dirbase) + so) != FR_OK) return FR_DISK_ERR; + so++; + } + if (fs->win[i] == ET_BITMAP) break; /* Is it a bitmap entry? */ + i = (i + SZDIRE) % SS(fs); /* Next entry */ + } + bcl = ld_dword(fs->win + i + 20); /* Bitmap cluster */ + if (bcl < 2 || bcl >= fs->n_fatent) return FR_NO_FILESYSTEM; + fs->bitbase = fs->database + fs->csize * (bcl - 2); /* Bitmap sector */ + for (;;) { /* Check if bitmap is contiguous */ + if (move_window(fs, fs->fatbase + bcl / (SS(fs) / 4)) != FR_OK) return FR_DISK_ERR; + cv = ld_dword(fs->win + bcl % (SS(fs) / 4) * 4); + if (cv == 0xFFFFFFFF) break; /* Last link? */ + if (cv != ++bcl) return FR_NO_FILESYSTEM; /* Fragmented? */ + } + +#if !FF_FS_READONLY + fs->last_clst = fs->free_clst = 0xFFFFFFFF; /* Initialize cluster allocation information */ +#endif + fmt = FS_EXFAT; /* FAT sub-type */ + } else +#endif /* FF_FS_EXFAT */ + { + if (ld_word(fs->win + BPB_BytsPerSec) != SS(fs)) return FR_NO_FILESYSTEM; /* (BPB_BytsPerSec must be equal to the physical sector size) */ + + fasize = ld_word(fs->win + BPB_FATSz16); /* Number of sectors per FAT */ + if (fasize == 0) fasize = ld_dword(fs->win + BPB_FATSz32); + fs->fsize = fasize; + + fs->n_fats = fs->win[BPB_NumFATs]; /* Number of FATs */ + if (fs->n_fats != 1 && fs->n_fats != 2) return FR_NO_FILESYSTEM; /* (Must be 1 or 2) */ + fasize *= fs->n_fats; /* Number of sectors for FAT area */ + + fs->csize = fs->win[BPB_SecPerClus]; /* Cluster size */ + if (fs->csize == 0 || (fs->csize & (fs->csize - 1))) return FR_NO_FILESYSTEM; /* (Must be power of 2) */ + + fs->n_rootdir = ld_word(fs->win + BPB_RootEntCnt); /* Number of root directory entries */ + if (fs->n_rootdir % (SS(fs) / SZDIRE)) return FR_NO_FILESYSTEM; /* (Must be sector aligned) */ + + tsect = ld_word(fs->win + BPB_TotSec16); /* Number of sectors on the volume */ + if (tsect == 0) tsect = ld_dword(fs->win + BPB_TotSec32); + + nrsv = ld_word(fs->win + BPB_RsvdSecCnt); /* Number of reserved sectors */ + if (nrsv == 0) return FR_NO_FILESYSTEM; /* (Must not be 0) */ + + /* Determine the FAT sub type */ + sysect = nrsv + fasize + fs->n_rootdir / (SS(fs) / SZDIRE); /* RSV + FAT + DIR */ + if (tsect < sysect) return FR_NO_FILESYSTEM; /* (Invalid volume size) */ + nclst = (tsect - sysect) / fs->csize; /* Number of clusters */ + if (nclst == 0) return FR_NO_FILESYSTEM; /* (Invalid volume size) */ + fmt = 0; + if (nclst <= MAX_FAT32) fmt = FS_FAT32; + if (nclst <= MAX_FAT16) fmt = FS_FAT16; + if (nclst <= MAX_FAT12) fmt = FS_FAT12; + if (fmt == 0) return FR_NO_FILESYSTEM; + + /* Boundaries and Limits */ + fs->n_fatent = nclst + 2; /* Number of FAT entries */ + fs->volbase = bsect; /* Volume start sector */ + fs->fatbase = bsect + nrsv; /* FAT start sector */ + fs->database = bsect + sysect; /* Data start sector */ + if (fmt == FS_FAT32) { + if (ld_word(fs->win + BPB_FSVer32) != 0) return FR_NO_FILESYSTEM; /* (Must be FAT32 revision 0.0) */ + if (fs->n_rootdir != 0) return FR_NO_FILESYSTEM; /* (BPB_RootEntCnt must be 0) */ + fs->dirbase = ld_dword(fs->win + BPB_RootClus32); /* Root directory start cluster */ + szbfat = fs->n_fatent * 4; /* (Needed FAT size) */ + } else { + if (fs->n_rootdir == 0) return FR_NO_FILESYSTEM; /* (BPB_RootEntCnt must not be 0) */ + fs->dirbase = fs->fatbase + fasize; /* Root directory start sector */ + szbfat = (fmt == FS_FAT16) ? /* (Needed FAT size) */ + fs->n_fatent * 2 : fs->n_fatent * 3 / 2 + (fs->n_fatent & 1); + } + if (fs->fsize < (szbfat + (SS(fs) - 1)) / SS(fs)) return FR_NO_FILESYSTEM; /* (BPB_FATSz must not be less than the size needed) */ + +#if !FF_FS_READONLY + /* Get FSInfo if available */ + fs->last_clst = fs->free_clst = 0xFFFFFFFF; /* Initialize cluster allocation information */ + fs->fsi_flag = 0x80; +#if (FF_FS_NOFSINFO & 3) != 3 + if (fmt == FS_FAT32 /* Allow to update FSInfo only if BPB_FSInfo32 == 1 */ + && ld_word(fs->win + BPB_FSInfo32) == 1 + && move_window(fs, bsect + 1) == FR_OK) + { + fs->fsi_flag = 0; + if (ld_word(fs->win + BS_55AA) == 0xAA55 /* Load FSInfo data if available */ + && ld_dword(fs->win + FSI_LeadSig) == 0x41615252 + && ld_dword(fs->win + FSI_StrucSig) == 0x61417272) + { +#if (FF_FS_NOFSINFO & 1) == 0 + fs->free_clst = ld_dword(fs->win + FSI_Free_Count); +#endif +#if (FF_FS_NOFSINFO & 2) == 0 + fs->last_clst = ld_dword(fs->win + FSI_Nxt_Free); +#endif + } + } +#endif /* (FF_FS_NOFSINFO & 3) != 3 */ +#endif /* !FF_FS_READONLY */ + } + + fs->fs_type = fmt; /* FAT sub-type */ + fs->id = ++Fsid; /* Volume mount ID */ +#if FF_USE_LFN == 1 + fs->lfnbuf = LfnBuf; /* Static LFN working buffer */ +#if FF_FS_EXFAT + fs->dirbuf = DirBuf; /* Static directory block scratchpad buuffer */ +#endif +#endif +#if FF_FS_RPATH != 0 + fs->cdir = 0; /* Initialize current directory */ +#endif +#if FF_FS_LOCK != 0 /* Clear file lock semaphores */ + clear_lock(fs); +#endif + return FR_OK; +} + + + + +/*-----------------------------------------------------------------------*/ +/* Check if the file/directory object is valid or not */ +/*-----------------------------------------------------------------------*/ + +static FRESULT validate ( /* Returns FR_OK or FR_INVALID_OBJECT */ + FFOBJID* obj, /* Pointer to the FFOBJID, the 1st member in the FIL/DIR object, to check validity */ + FATFS** rfs /* Pointer to pointer to the owner filesystem object to return */ +) +{ + FRESULT res = FR_INVALID_OBJECT; + + + if (obj && obj->fs && obj->fs->fs_type && obj->id == obj->fs->id) { /* Test if the object is valid */ +#if FF_FS_REENTRANT + if (lock_fs(obj->fs)) { /* Obtain the filesystem object */ + if (!(disk_status(obj->fs->pdrv) & STA_NOINIT)) { /* Test if the phsical drive is kept initialized */ + res = FR_OK; + } else { + unlock_fs(obj->fs, FR_OK); + } + } else { + res = FR_TIMEOUT; + } +#else + if (!(disk_status(obj->fs->pdrv) & STA_NOINIT)) { /* Test if the phsical drive is kept initialized */ + res = FR_OK; + } +#endif + } + *rfs = (res == FR_OK) ? obj->fs : 0; /* Corresponding filesystem object */ + return res; +} + + + + +/*--------------------------------------------------------------------------- + + Public Functions (FatFs API) + +----------------------------------------------------------------------------*/ + + + +/*-----------------------------------------------------------------------*/ +/* Mount/Unmount a Logical Drive */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_mount ( + FATFS* fs, /* Pointer to the filesystem object (NULL:unmount)*/ + const TCHAR* path, /* Logical drive number to be mounted/unmounted */ + BYTE opt /* Mode option 0:Do not mount (delayed mount), 1:Mount immediately */ +) +{ + FATFS *cfs; + int vol; + FRESULT res; + const TCHAR *rp = path; + + + /* Get logical drive number */ + vol = get_ldnumber(&rp); + if (vol < 0) return FR_INVALID_DRIVE; + cfs = FatFs[vol]; /* Pointer to fs object */ + + if (cfs) { +#if FF_FS_LOCK != 0 + clear_lock(cfs); +#endif +#if FF_FS_REENTRANT /* Discard sync object of the current volume */ + if (!ff_del_syncobj(cfs->sobj)) return FR_INT_ERR; +#endif + cfs->fs_type = 0; /* Clear old fs object */ + } + + if (fs) { + fs->fs_type = 0; /* Clear new fs object */ +#if FF_FS_REENTRANT /* Create sync object for the new volume */ + if (!ff_cre_syncobj((BYTE)vol, &fs->sobj)) return FR_INT_ERR; +#endif + } + FatFs[vol] = fs; /* Register new fs object */ + + if (opt == 0) return FR_OK; /* Do not mount now, it will be mounted later */ + + res = find_volume(&path, &fs, 0); /* Force mounted the volume */ + LEAVE_FF(fs, res); +} + + + + +/*-----------------------------------------------------------------------*/ +/* Open or Create a File */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_open ( + FIL* fp, /* Pointer to the blank file object */ + const TCHAR* path, /* Pointer to the file name */ + BYTE mode /* Access mode and file open mode flags */ +) +{ + FRESULT res; + DIR dj; + FATFS *fs; +#if !FF_FS_READONLY + DWORD dw, cl, bcs, clst, sc; + FSIZE_t ofs; +#endif + DEF_NAMBUF + + + if (!fp) return FR_INVALID_OBJECT; + + /* Get logical drive number */ + mode &= FF_FS_READONLY ? FA_READ : FA_READ | FA_WRITE | FA_CREATE_ALWAYS | FA_CREATE_NEW | FA_OPEN_ALWAYS | FA_OPEN_APPEND; + res = find_volume(&path, &fs, mode); + if (res == FR_OK) { + dj.obj.fs = fs; + INIT_NAMBUF(fs); + res = follow_path(&dj, path); /* Follow the file path */ +#if !FF_FS_READONLY /* Read/Write configuration */ + if (res == FR_OK) { + if (dj.fn[NSFLAG] & NS_NONAME) { /* Origin directory itself? */ + res = FR_INVALID_NAME; + } +#if FF_FS_LOCK != 0 + else { + res = chk_lock(&dj, (mode & ~FA_READ) ? 1 : 0); /* Check if the file can be used */ + } +#endif + } + /* Create or Open a file */ + if (mode & (FA_CREATE_ALWAYS | FA_OPEN_ALWAYS | FA_CREATE_NEW)) { + if (res != FR_OK) { /* No file, create new */ + if (res == FR_NO_FILE) { /* There is no file to open, create a new entry */ +#if FF_FS_LOCK != 0 + res = enq_lock() ? dir_register(&dj) : FR_TOO_MANY_OPEN_FILES; +#else + res = dir_register(&dj); +#endif + } + mode |= FA_CREATE_ALWAYS; /* File is created */ + } + else { /* Any object with the same name is already existing */ + if (dj.obj.attr & (AM_RDO | AM_DIR)) { /* Cannot overwrite it (R/O or DIR) */ + res = FR_DENIED; + } else { + if (mode & FA_CREATE_NEW) res = FR_EXIST; /* Cannot create as new file */ + } + } + if (res == FR_OK && (mode & FA_CREATE_ALWAYS)) { /* Truncate the file if overwrite mode */ +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { + /* Get current allocation info */ + fp->obj.fs = fs; + init_alloc_info(fs, &fp->obj); + /* Set directory entry block initial state */ + mem_set(fs->dirbuf + 2, 0, 30); /* Clear 85 entry except for NumSec */ + mem_set(fs->dirbuf + 38, 0, 26); /* Clear C0 entry except for NumName and NameHash */ + fs->dirbuf[XDIR_Attr] = AM_ARC; + st_dword(fs->dirbuf + XDIR_CrtTime, GET_FATTIME()); + fs->dirbuf[XDIR_GenFlags] = 1; + res = store_xdir(&dj); + if (res == FR_OK && fp->obj.sclust != 0) { /* Remove the cluster chain if exist */ + res = remove_chain(&fp->obj, fp->obj.sclust, 0); + fs->last_clst = fp->obj.sclust - 1; /* Reuse the cluster hole */ + } + } else +#endif + { + /* Set directory entry initial state */ + cl = ld_clust(fs, dj.dir); /* Get current cluster chain */ + st_dword(dj.dir + DIR_CrtTime, GET_FATTIME()); /* Set created time */ + dj.dir[DIR_Attr] = AM_ARC; /* Reset attribute */ + st_clust(fs, dj.dir, 0); /* Reset file allocation info */ + st_dword(dj.dir + DIR_FileSize, 0); + fs->wflag = 1; + if (cl != 0) { /* Remove the cluster chain if exist */ + dw = fs->winsect; + res = remove_chain(&dj.obj, cl, 0); + if (res == FR_OK) { + res = move_window(fs, dw); + fs->last_clst = cl - 1; /* Reuse the cluster hole */ + } + } + } + } + } + else { /* Open an existing file */ + if (res == FR_OK) { /* Is the object exsiting? */ + if (dj.obj.attr & AM_DIR) { /* File open against a directory */ + res = FR_NO_FILE; + } else { + if ((mode & FA_WRITE) && (dj.obj.attr & AM_RDO)) { /* Write mode open against R/O file */ + res = FR_DENIED; + } + } + } + } + if (res == FR_OK) { + if (mode & FA_CREATE_ALWAYS) mode |= FA_MODIFIED; /* Set file change flag if created or overwritten */ + fp->dir_sect = fs->winsect; /* Pointer to the directory entry */ + fp->dir_ptr = dj.dir; +#if FF_FS_LOCK != 0 + fp->obj.lockid = inc_lock(&dj, (mode & ~FA_READ) ? 1 : 0); /* Lock the file for this session */ + if (fp->obj.lockid == 0) res = FR_INT_ERR; +#endif + } +#else /* R/O configuration */ + if (res == FR_OK) { + if (dj.fn[NSFLAG] & NS_NONAME) { /* Is it origin directory itself? */ + res = FR_INVALID_NAME; + } else { + if (dj.obj.attr & AM_DIR) { /* Is it a directory? */ + res = FR_NO_FILE; + } + } + } +#endif + + if (res == FR_OK) { +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { + fp->obj.c_scl = dj.obj.sclust; /* Get containing directory info */ + fp->obj.c_size = ((DWORD)dj.obj.objsize & 0xFFFFFF00) | dj.obj.stat; + fp->obj.c_ofs = dj.blk_ofs; + init_alloc_info(fs, &fp->obj); + } else +#endif + { + fp->obj.sclust = ld_clust(fs, dj.dir); /* Get object allocation info */ + fp->obj.objsize = ld_dword(dj.dir + DIR_FileSize); + } +#if FF_USE_FASTSEEK + fp->cltbl = 0; /* Disable fast seek mode */ +#endif + fp->obj.fs = fs; /* Validate the file object */ + fp->obj.id = fs->id; + fp->flag = mode; /* Set file access mode */ + fp->err = 0; /* Clear error flag */ + fp->sect = 0; /* Invalidate current data sector */ + fp->fptr = 0; /* Set file pointer top of the file */ +#if !FF_FS_READONLY +#if !FF_FS_TINY + mem_set(fp->buf, 0, sizeof fp->buf); /* Clear sector buffer */ +#endif + if ((mode & FA_SEEKEND) && fp->obj.objsize > 0) { /* Seek to end of file if FA_OPEN_APPEND is specified */ + fp->fptr = fp->obj.objsize; /* Offset to seek */ + bcs = (DWORD)fs->csize * SS(fs); /* Cluster size in byte */ + clst = fp->obj.sclust; /* Follow the cluster chain */ + for (ofs = fp->obj.objsize; res == FR_OK && ofs > bcs; ofs -= bcs) { + clst = get_fat(&fp->obj, clst); + if (clst <= 1) res = FR_INT_ERR; + if (clst == 0xFFFFFFFF) res = FR_DISK_ERR; + } + fp->clust = clst; + if (res == FR_OK && ofs % SS(fs)) { /* Fill sector buffer if not on the sector boundary */ + if ((sc = clst2sect(fs, clst)) == 0) { + res = FR_INT_ERR; + } else { + fp->sect = sc + (DWORD)(ofs / SS(fs)); +#if !FF_FS_TINY + if (disk_read(fs->pdrv, fp->buf, fp->sect, 1) != RES_OK) res = FR_DISK_ERR; +#endif + } + } + } +#endif + } + + FREE_NAMBUF(); + } + + if (res != FR_OK) fp->obj.fs = 0; /* Invalidate file object on error */ + + LEAVE_FF(fs, res); +} + + + + +/*-----------------------------------------------------------------------*/ +/* Read File */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_read ( + FIL* fp, /* Pointer to the file object */ + void* buff, /* Pointer to data buffer */ + UINT btr, /* Number of bytes to read */ + UINT* br /* Pointer to number of bytes read */ +) +{ + FRESULT res; + FATFS *fs; + DWORD clst, sect; + FSIZE_t remain; + UINT rcnt, cc, csect; + BYTE *rbuff = (BYTE*)buff; + + + *br = 0; /* Clear read byte counter */ + res = validate(&fp->obj, &fs); /* Check validity of the file object */ + if (res != FR_OK || (res = (FRESULT)fp->err) != FR_OK) LEAVE_FF(fs, res); /* Check validity */ + if (!(fp->flag & FA_READ)) LEAVE_FF(fs, FR_DENIED); /* Check access mode */ + remain = fp->obj.objsize - fp->fptr; + if (btr > remain) btr = (UINT)remain; /* Truncate btr by remaining bytes */ + + for ( ; btr; /* Repeat until btr bytes read */ + btr -= rcnt, *br += rcnt, rbuff += rcnt, fp->fptr += rcnt) { + if (fp->fptr % SS(fs) == 0) { /* On the sector boundary? */ + csect = (UINT)(fp->fptr / SS(fs) & (fs->csize - 1)); /* Sector offset in the cluster */ + if (csect == 0) { /* On the cluster boundary? */ + if (fp->fptr == 0) { /* On the top of the file? */ + clst = fp->obj.sclust; /* Follow cluster chain from the origin */ + } else { /* Middle or end of the file */ +#if FF_USE_FASTSEEK + if (fp->cltbl) { + clst = clmt_clust(fp, fp->fptr); /* Get cluster# from the CLMT */ + } else +#endif + { + clst = get_fat(&fp->obj, fp->clust); /* Follow cluster chain on the FAT */ + } + } + if (clst < 2) ABORT(fs, FR_INT_ERR); + if (clst == 0xFFFFFFFF) ABORT(fs, FR_DISK_ERR); + fp->clust = clst; /* Update current cluster */ + } + sect = clst2sect(fs, fp->clust); /* Get current sector */ + if (sect == 0) ABORT(fs, FR_INT_ERR); + sect += csect; + cc = btr / SS(fs); /* When remaining bytes >= sector size, */ + if (cc > 0) { /* Read maximum contiguous sectors directly */ + if (csect + cc > fs->csize) { /* Clip at cluster boundary */ + cc = fs->csize - csect; + } + if (disk_read(fs->pdrv, rbuff, sect, cc) != RES_OK) ABORT(fs, FR_DISK_ERR); +#if !FF_FS_READONLY && FF_FS_MINIMIZE <= 2 /* Replace one of the read sectors with cached data if it contains a dirty sector */ +#if FF_FS_TINY + if (fs->wflag && fs->winsect - sect < cc) { + mem_cpy(rbuff + ((fs->winsect - sect) * SS(fs)), fs->win, SS(fs)); + } +#else + if ((fp->flag & FA_DIRTY) && fp->sect - sect < cc) { + mem_cpy(rbuff + ((fp->sect - sect) * SS(fs)), fp->buf, SS(fs)); + } +#endif +#endif + rcnt = SS(fs) * cc; /* Number of bytes transferred */ + continue; + } +#if !FF_FS_TINY + if (fp->sect != sect) { /* Load data sector if not in cache */ +#if !FF_FS_READONLY + if (fp->flag & FA_DIRTY) { /* Write-back dirty sector cache */ + if (disk_write(fs->pdrv, fp->buf, fp->sect, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); + fp->flag &= (BYTE)~FA_DIRTY; + } +#endif + if (disk_read(fs->pdrv, fp->buf, sect, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); /* Fill sector cache */ + } +#endif + fp->sect = sect; + } + rcnt = SS(fs) - (UINT)fp->fptr % SS(fs); /* Number of bytes left in the sector */ + if (rcnt > btr) rcnt = btr; /* Clip it by btr if needed */ +#if FF_FS_TINY + if (move_window(fs, fp->sect) != FR_OK) ABORT(fs, FR_DISK_ERR); /* Move sector window */ + mem_cpy(rbuff, fs->win + fp->fptr % SS(fs), rcnt); /* Extract partial sector */ +#else + mem_cpy(rbuff, fp->buf + fp->fptr % SS(fs), rcnt); /* Extract partial sector */ +#endif + } + + LEAVE_FF(fs, FR_OK); +} + + + + +#if !FF_FS_READONLY +/*-----------------------------------------------------------------------*/ +/* Write File */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_write ( + FIL* fp, /* Pointer to the file object */ + const void* buff, /* Pointer to the data to be written */ + UINT btw, /* Number of bytes to write */ + UINT* bw /* Pointer to number of bytes written */ +) +{ + FRESULT res; + FATFS *fs; + DWORD clst, sect; + UINT wcnt, cc, csect; + const BYTE *wbuff = (const BYTE*)buff; + + + *bw = 0; /* Clear write byte counter */ + res = validate(&fp->obj, &fs); /* Check validity of the file object */ + if (res != FR_OK || (res = (FRESULT)fp->err) != FR_OK) LEAVE_FF(fs, res); /* Check validity */ + if (!(fp->flag & FA_WRITE)) LEAVE_FF(fs, FR_DENIED); /* Check access mode */ + + /* Check fptr wrap-around (file size cannot reach 4 GiB at FAT volume) */ + if ((!FF_FS_EXFAT || fs->fs_type != FS_EXFAT) && (DWORD)(fp->fptr + btw) < (DWORD)fp->fptr) { + btw = (UINT)(0xFFFFFFFF - (DWORD)fp->fptr); + } + + for ( ; btw; /* Repeat until all data written */ + btw -= wcnt, *bw += wcnt, wbuff += wcnt, fp->fptr += wcnt, fp->obj.objsize = (fp->fptr > fp->obj.objsize) ? fp->fptr : fp->obj.objsize) { + if (fp->fptr % SS(fs) == 0) { /* On the sector boundary? */ + csect = (UINT)(fp->fptr / SS(fs)) & (fs->csize - 1); /* Sector offset in the cluster */ + if (csect == 0) { /* On the cluster boundary? */ + if (fp->fptr == 0) { /* On the top of the file? */ + clst = fp->obj.sclust; /* Follow from the origin */ + if (clst == 0) { /* If no cluster is allocated, */ + clst = create_chain(&fp->obj, 0); /* create a new cluster chain */ + } + } else { /* On the middle or end of the file */ +#if FF_USE_FASTSEEK + if (fp->cltbl) { + clst = clmt_clust(fp, fp->fptr); /* Get cluster# from the CLMT */ + } else +#endif + { + clst = create_chain(&fp->obj, fp->clust); /* Follow or stretch cluster chain on the FAT */ + } + } + if (clst == 0) break; /* Could not allocate a new cluster (disk full) */ + if (clst == 1) ABORT(fs, FR_INT_ERR); + if (clst == 0xFFFFFFFF) ABORT(fs, FR_DISK_ERR); + fp->clust = clst; /* Update current cluster */ + if (fp->obj.sclust == 0) fp->obj.sclust = clst; /* Set start cluster if the first write */ + } +#if FF_FS_TINY + if (fs->winsect == fp->sect && sync_window(fs) != FR_OK) ABORT(fs, FR_DISK_ERR); /* Write-back sector cache */ +#else + if (fp->flag & FA_DIRTY) { /* Write-back sector cache */ + if (disk_write(fs->pdrv, fp->buf, fp->sect, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); + fp->flag &= (BYTE)~FA_DIRTY; + } +#endif + sect = clst2sect(fs, fp->clust); /* Get current sector */ + if (sect == 0) ABORT(fs, FR_INT_ERR); + sect += csect; + cc = btw / SS(fs); /* When remaining bytes >= sector size, */ + if (cc > 0) { /* Write maximum contiguous sectors directly */ + if (csect + cc > fs->csize) { /* Clip at cluster boundary */ + cc = fs->csize - csect; + } + if (disk_write(fs->pdrv, wbuff, sect, cc) != RES_OK) ABORT(fs, FR_DISK_ERR); +#if FF_FS_MINIMIZE <= 2 +#if FF_FS_TINY + if (fs->winsect - sect < cc) { /* Refill sector cache if it gets invalidated by the direct write */ + mem_cpy(fs->win, wbuff + ((fs->winsect - sect) * SS(fs)), SS(fs)); + fs->wflag = 0; + } +#else + if (fp->sect - sect < cc) { /* Refill sector cache if it gets invalidated by the direct write */ + mem_cpy(fp->buf, wbuff + ((fp->sect - sect) * SS(fs)), SS(fs)); + fp->flag &= (BYTE)~FA_DIRTY; + } +#endif +#endif + wcnt = SS(fs) * cc; /* Number of bytes transferred */ + continue; + } +#if FF_FS_TINY + if (fp->fptr >= fp->obj.objsize) { /* Avoid silly cache filling on the growing edge */ + if (sync_window(fs) != FR_OK) ABORT(fs, FR_DISK_ERR); + fs->winsect = sect; + } +#else + if (fp->sect != sect && /* Fill sector cache with file data */ + fp->fptr < fp->obj.objsize && + disk_read(fs->pdrv, fp->buf, sect, 1) != RES_OK) { + ABORT(fs, FR_DISK_ERR); + } +#endif + fp->sect = sect; + } + wcnt = SS(fs) - (UINT)fp->fptr % SS(fs); /* Number of bytes left in the sector */ + if (wcnt > btw) wcnt = btw; /* Clip it by btw if needed */ +#if FF_FS_TINY + if (move_window(fs, fp->sect) != FR_OK) ABORT(fs, FR_DISK_ERR); /* Move sector window */ + mem_cpy(fs->win + fp->fptr % SS(fs), wbuff, wcnt); /* Fit data to the sector */ + fs->wflag = 1; +#else + mem_cpy(fp->buf + fp->fptr % SS(fs), wbuff, wcnt); /* Fit data to the sector */ + fp->flag |= FA_DIRTY; +#endif + } + + fp->flag |= FA_MODIFIED; /* Set file change flag */ + + LEAVE_FF(fs, FR_OK); +} + + + + +/*-----------------------------------------------------------------------*/ +/* Synchronize the File */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_sync ( + FIL* fp /* Pointer to the file object */ +) +{ + FRESULT res; + FATFS *fs; + DWORD tm; + BYTE *dir; + + + res = validate(&fp->obj, &fs); /* Check validity of the file object */ + if (res == FR_OK) { + if (fp->flag & FA_MODIFIED) { /* Is there any change to the file? */ +#if !FF_FS_TINY + if (fp->flag & FA_DIRTY) { /* Write-back cached data if needed */ + if (disk_write(fs->pdrv, fp->buf, fp->sect, 1) != RES_OK) LEAVE_FF(fs, FR_DISK_ERR); + fp->flag &= (BYTE)~FA_DIRTY; + } +#endif + /* Update the directory entry */ + tm = GET_FATTIME(); /* Modified time */ +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { + res = fill_first_frag(&fp->obj); /* Fill first fragment on the FAT if needed */ + if (res == FR_OK) { + res = fill_last_frag(&fp->obj, fp->clust, 0xFFFFFFFF); /* Fill last fragment on the FAT if needed */ + } + if (res == FR_OK) { + DIR dj; + DEF_NAMBUF + + INIT_NAMBUF(fs); + res = load_obj_xdir(&dj, &fp->obj); /* Load directory entry block */ + if (res == FR_OK) { + fs->dirbuf[XDIR_Attr] |= AM_ARC; /* Set archive attribute to indicate that the file has been changed */ + fs->dirbuf[XDIR_GenFlags] = fp->obj.stat | 1; /* Update file allocation information */ + st_dword(fs->dirbuf + XDIR_FstClus, fp->obj.sclust); + st_qword(fs->dirbuf + XDIR_FileSize, fp->obj.objsize); + st_qword(fs->dirbuf + XDIR_ValidFileSize, fp->obj.objsize); + st_dword(fs->dirbuf + XDIR_ModTime, tm); /* Update modified time */ + fs->dirbuf[XDIR_ModTime10] = 0; + st_dword(fs->dirbuf + XDIR_AccTime, 0); + res = store_xdir(&dj); /* Restore it to the directory */ + if (res == FR_OK) { + res = sync_fs(fs); + fp->flag &= (BYTE)~FA_MODIFIED; + } + } + FREE_NAMBUF(); + } + } else +#endif + { + res = move_window(fs, fp->dir_sect); + if (res == FR_OK) { + dir = fp->dir_ptr; + dir[DIR_Attr] |= AM_ARC; /* Set archive attribute to indicate that the file has been changed */ + st_clust(fp->obj.fs, dir, fp->obj.sclust); /* Update file allocation information */ + st_dword(dir + DIR_FileSize, (DWORD)fp->obj.objsize); /* Update file size */ + st_dword(dir + DIR_ModTime, tm); /* Update modified time */ + st_word(dir + DIR_LstAccDate, 0); + fs->wflag = 1; + res = sync_fs(fs); /* Restore it to the directory */ + fp->flag &= (BYTE)~FA_MODIFIED; + } + } + } + } + + LEAVE_FF(fs, res); +} + +#endif /* !FF_FS_READONLY */ + + + + +/*-----------------------------------------------------------------------*/ +/* Close File */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_close ( + FIL* fp /* Pointer to the file object to be closed */ +) +{ + FRESULT res; + FATFS *fs; + +#if !FF_FS_READONLY + res = f_sync(fp); /* Flush cached data */ + if (res == FR_OK) +#endif + { + res = validate(&fp->obj, &fs); /* Lock volume */ + if (res == FR_OK) { +#if FF_FS_LOCK != 0 + res = dec_lock(fp->obj.lockid); /* Decrement file open counter */ + if (res == FR_OK) fp->obj.fs = 0; /* Invalidate file object */ +#else + fp->obj.fs = 0; /* Invalidate file object */ +#endif +#if FF_FS_REENTRANT + unlock_fs(fs, FR_OK); /* Unlock volume */ +#endif + } + } + return res; +} + + + + +#if FF_FS_RPATH >= 1 +/*-----------------------------------------------------------------------*/ +/* Change Current Directory or Current Drive, Get Current Directory */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_chdrive ( + const TCHAR* path /* Drive number to set */ +) +{ + int vol; + + + /* Get logical drive number */ + vol = get_ldnumber(&path); + if (vol < 0) return FR_INVALID_DRIVE; + CurrVol = (BYTE)vol; /* Set it as current volume */ + + return FR_OK; +} + + + +FRESULT f_chdir ( + const TCHAR* path /* Pointer to the directory path */ +) +{ +#if FF_STR_VOLUME_ID == 2 + UINT i; +#endif + FRESULT res; + DIR dj; + FATFS *fs; + DEF_NAMBUF + + + /* Get logical drive */ + res = find_volume(&path, &fs, 0); + if (res == FR_OK) { + dj.obj.fs = fs; + INIT_NAMBUF(fs); + res = follow_path(&dj, path); /* Follow the path */ + if (res == FR_OK) { /* Follow completed */ + if (dj.fn[NSFLAG] & NS_NONAME) { /* Is it the start directory itself? */ + fs->cdir = dj.obj.sclust; +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { + fs->cdc_scl = dj.obj.c_scl; + fs->cdc_size = dj.obj.c_size; + fs->cdc_ofs = dj.obj.c_ofs; + } +#endif + } else { + if (dj.obj.attr & AM_DIR) { /* It is a sub-directory */ +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { + fs->cdir = ld_dword(fs->dirbuf + XDIR_FstClus); /* Sub-directory cluster */ + fs->cdc_scl = dj.obj.sclust; /* Save containing directory information */ + fs->cdc_size = ((DWORD)dj.obj.objsize & 0xFFFFFF00) | dj.obj.stat; + fs->cdc_ofs = dj.blk_ofs; + } else +#endif + { + fs->cdir = ld_clust(fs, dj.dir); /* Sub-directory cluster */ + } + } else { + res = FR_NO_PATH; /* Reached but a file */ + } + } + } + FREE_NAMBUF(); + if (res == FR_NO_FILE) res = FR_NO_PATH; +#if FF_STR_VOLUME_ID == 2 /* Also current drive is changed at Unix style volume ID */ + if (res == FR_OK) { + for (i = FF_VOLUMES - 1; i && fs != FatFs[i]; i--) ; /* Set current drive */ + CurrVol = (BYTE)i; + } +#endif + } + + LEAVE_FF(fs, res); +} + + +#if FF_FS_RPATH >= 2 +FRESULT f_getcwd ( + TCHAR* buff, /* Pointer to the directory path */ + UINT len /* Size of buff in unit of TCHAR */ +) +{ + FRESULT res; + DIR dj; + FATFS *fs; + UINT i, n; + DWORD ccl; + TCHAR *tp = buff; +#if FF_VOLUMES >= 2 + UINT vl; +#endif +#if FF_STR_VOLUME_ID + const char *vp; +#endif + FILINFO fno; + DEF_NAMBUF + + + /* Get logical drive */ + buff[0] = 0; /* Set null string to get current volume */ + res = find_volume((const TCHAR**)&buff, &fs, 0); /* Get current volume */ + if (res == FR_OK) { + dj.obj.fs = fs; + INIT_NAMBUF(fs); + + /* Follow parent directories and create the path */ + i = len; /* Bottom of buffer (directory stack base) */ + if (!FF_FS_EXFAT || fs->fs_type != FS_EXFAT) { /* (Cannot do getcwd on exFAT and returns root path) */ + dj.obj.sclust = fs->cdir; /* Start to follow upper directory from current directory */ + while ((ccl = dj.obj.sclust) != 0) { /* Repeat while current directory is a sub-directory */ + res = dir_sdi(&dj, 1 * SZDIRE); /* Get parent directory */ + if (res != FR_OK) break; + res = move_window(fs, dj.sect); + if (res != FR_OK) break; + dj.obj.sclust = ld_clust(fs, dj.dir); /* Goto parent directory */ + res = dir_sdi(&dj, 0); + if (res != FR_OK) break; + do { /* Find the entry links to the child directory */ + res = DIR_READ_FILE(&dj); + if (res != FR_OK) break; + if (ccl == ld_clust(fs, dj.dir)) break; /* Found the entry */ + res = dir_next(&dj, 0); + } while (res == FR_OK); + if (res == FR_NO_FILE) res = FR_INT_ERR;/* It cannot be 'not found'. */ + if (res != FR_OK) break; + get_fileinfo(&dj, &fno); /* Get the directory name and push it to the buffer */ + for (n = 0; fno.fname[n]; n++) ; /* Name length */ + if (i < n + 1) { /* Insufficient space to store the path name? */ + res = FR_NOT_ENOUGH_CORE; break; + } + while (n) buff[--i] = fno.fname[--n]; /* Stack the name */ + buff[--i] = '/'; + } + } + if (res == FR_OK) { + if (i == len) buff[--i] = '/'; /* Is it the root-directory? */ +#if FF_VOLUMES >= 2 /* Put drive prefix */ + vl = 0; +#if FF_STR_VOLUME_ID >= 1 /* String volume ID */ + for (n = 0, vp = (const char*)VolumeStr[CurrVol]; vp[n]; n++) ; + if (i >= n + 2) { + if (FF_STR_VOLUME_ID == 2) *tp++ = (TCHAR)'/'; + for (vl = 0; vl < n; *tp++ = (TCHAR)vp[vl], vl++) ; + if (FF_STR_VOLUME_ID == 1) *tp++ = (TCHAR)':'; + vl++; + } +#else /* Numeric volume ID */ + if (i >= 3) { + *tp++ = (TCHAR)'0' + CurrVol; + *tp++ = (TCHAR)':'; + vl = 2; + } +#endif + if (vl == 0) res = FR_NOT_ENOUGH_CORE; +#endif + /* Add current directory path */ + if (res == FR_OK) { + do *tp++ = buff[i++]; while (i < len); /* Copy stacked path string */ + } + } + FREE_NAMBUF(); + } + + *tp = 0; + LEAVE_FF(fs, res); +} + +#endif /* FF_FS_RPATH >= 2 */ +#endif /* FF_FS_RPATH >= 1 */ + + + +#if FF_FS_MINIMIZE <= 2 +/*-----------------------------------------------------------------------*/ +/* Seek File Read/Write Pointer */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_lseek ( + FIL* fp, /* Pointer to the file object */ + FSIZE_t ofs /* File pointer from top of file */ +) +{ + FRESULT res; + FATFS *fs; + DWORD clst, bcs, nsect; + FSIZE_t ifptr; +#if FF_USE_FASTSEEK + DWORD cl, pcl, ncl, tcl, dsc, tlen, ulen, *tbl; +#endif + + res = validate(&fp->obj, &fs); /* Check validity of the file object */ + if (res == FR_OK) res = (FRESULT)fp->err; +#if FF_FS_EXFAT && !FF_FS_READONLY + if (res == FR_OK && fs->fs_type == FS_EXFAT) { + res = fill_last_frag(&fp->obj, fp->clust, 0xFFFFFFFF); /* Fill last fragment on the FAT if needed */ + } +#endif + if (res != FR_OK) LEAVE_FF(fs, res); + +#if FF_USE_FASTSEEK + if (fp->cltbl) { /* Fast seek */ + if (ofs == CREATE_LINKMAP) { /* Create CLMT */ + tbl = fp->cltbl; + tlen = *tbl++; ulen = 2; /* Given table size and required table size */ + cl = fp->obj.sclust; /* Origin of the chain */ + if (cl != 0) { + do { + /* Get a fragment */ + tcl = cl; ncl = 0; ulen += 2; /* Top, length and used items */ + do { + pcl = cl; ncl++; + cl = get_fat(&fp->obj, cl); + if (cl <= 1) ABORT(fs, FR_INT_ERR); + if (cl == 0xFFFFFFFF) ABORT(fs, FR_DISK_ERR); + } while (cl == pcl + 1); + if (ulen <= tlen) { /* Store the length and top of the fragment */ + *tbl++ = ncl; *tbl++ = tcl; + } + } while (cl < fs->n_fatent); /* Repeat until end of chain */ + } + *fp->cltbl = ulen; /* Number of items used */ + if (ulen <= tlen) { + *tbl = 0; /* Terminate table */ + } else { + res = FR_NOT_ENOUGH_CORE; /* Given table size is smaller than required */ + } + } else { /* Fast seek */ + if (ofs > fp->obj.objsize) ofs = fp->obj.objsize; /* Clip offset at the file size */ + fp->fptr = ofs; /* Set file pointer */ + if (ofs > 0) { + fp->clust = clmt_clust(fp, ofs - 1); + dsc = clst2sect(fs, fp->clust); + if (dsc == 0) ABORT(fs, FR_INT_ERR); + dsc += (DWORD)((ofs - 1) / SS(fs)) & (fs->csize - 1); + if (fp->fptr % SS(fs) && dsc != fp->sect) { /* Refill sector cache if needed */ +#if !FF_FS_TINY +#if !FF_FS_READONLY + if (fp->flag & FA_DIRTY) { /* Write-back dirty sector cache */ + if (disk_write(fs->pdrv, fp->buf, fp->sect, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); + fp->flag &= (BYTE)~FA_DIRTY; + } +#endif + if (disk_read(fs->pdrv, fp->buf, dsc, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); /* Load current sector */ +#endif + fp->sect = dsc; + } + } + } + } else +#endif + + /* Normal Seek */ + { +#if FF_FS_EXFAT + if (fs->fs_type != FS_EXFAT && ofs >= 0x100000000) ofs = 0xFFFFFFFF; /* Clip at 4 GiB - 1 if at FATxx */ +#endif + if (ofs > fp->obj.objsize && (FF_FS_READONLY || !(fp->flag & FA_WRITE))) { /* In read-only mode, clip offset with the file size */ + ofs = fp->obj.objsize; + } + ifptr = fp->fptr; + fp->fptr = nsect = 0; + if (ofs > 0) { + bcs = (DWORD)fs->csize * SS(fs); /* Cluster size (byte) */ + if (ifptr > 0 && + (ofs - 1) / bcs >= (ifptr - 1) / bcs) { /* When seek to same or following cluster, */ + fp->fptr = (ifptr - 1) & ~(FSIZE_t)(bcs - 1); /* start from the current cluster */ + ofs -= fp->fptr; + clst = fp->clust; + } else { /* When seek to back cluster, */ + clst = fp->obj.sclust; /* start from the first cluster */ +#if !FF_FS_READONLY + if (clst == 0) { /* If no cluster chain, create a new chain */ + clst = create_chain(&fp->obj, 0); + if (clst == 1) ABORT(fs, FR_INT_ERR); + if (clst == 0xFFFFFFFF) ABORT(fs, FR_DISK_ERR); + fp->obj.sclust = clst; + } +#endif + fp->clust = clst; + } + if (clst != 0) { + while (ofs > bcs) { /* Cluster following loop */ + ofs -= bcs; fp->fptr += bcs; +#if !FF_FS_READONLY + if (fp->flag & FA_WRITE) { /* Check if in write mode or not */ + if (FF_FS_EXFAT && fp->fptr > fp->obj.objsize) { /* No FAT chain object needs correct objsize to generate FAT value */ + fp->obj.objsize = fp->fptr; + fp->flag |= FA_MODIFIED; + } + clst = create_chain(&fp->obj, clst); /* Follow chain with forceed stretch */ + if (clst == 0) { /* Clip file size in case of disk full */ + ofs = 0; break; + } + } else +#endif + { + clst = get_fat(&fp->obj, clst); /* Follow cluster chain if not in write mode */ + } + if (clst == 0xFFFFFFFF) ABORT(fs, FR_DISK_ERR); + if (clst <= 1 || clst >= fs->n_fatent) ABORT(fs, FR_INT_ERR); + fp->clust = clst; + } + fp->fptr += ofs; + if (ofs % SS(fs)) { + nsect = clst2sect(fs, clst); /* Current sector */ + if (nsect == 0) ABORT(fs, FR_INT_ERR); + nsect += (DWORD)(ofs / SS(fs)); + } + } + } + if (!FF_FS_READONLY && fp->fptr > fp->obj.objsize) { /* Set file change flag if the file size is extended */ + fp->obj.objsize = fp->fptr; + fp->flag |= FA_MODIFIED; + } + if (fp->fptr % SS(fs) && nsect != fp->sect) { /* Fill sector cache if needed */ +#if !FF_FS_TINY +#if !FF_FS_READONLY + if (fp->flag & FA_DIRTY) { /* Write-back dirty sector cache */ + if (disk_write(fs->pdrv, fp->buf, fp->sect, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); + fp->flag &= (BYTE)~FA_DIRTY; + } +#endif + if (disk_read(fs->pdrv, fp->buf, nsect, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); /* Fill sector cache */ +#endif + fp->sect = nsect; + } + } + + LEAVE_FF(fs, res); +} + + + +#if FF_FS_MINIMIZE <= 1 +/*-----------------------------------------------------------------------*/ +/* Create a Directory Object */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_opendir ( + DIR* dp, /* Pointer to directory object to create */ + const TCHAR* path /* Pointer to the directory path */ +) +{ + FRESULT res; + FATFS *fs; + DEF_NAMBUF + + + if (!dp) return FR_INVALID_OBJECT; + + /* Get logical drive */ + res = find_volume(&path, &fs, 0); + if (res == FR_OK) { + dp->obj.fs = fs; + INIT_NAMBUF(fs); + res = follow_path(dp, path); /* Follow the path to the directory */ + if (res == FR_OK) { /* Follow completed */ + if (!(dp->fn[NSFLAG] & NS_NONAME)) { /* It is not the origin directory itself */ + if (dp->obj.attr & AM_DIR) { /* This object is a sub-directory */ +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { + dp->obj.c_scl = dp->obj.sclust; /* Get containing directory inforamation */ + dp->obj.c_size = ((DWORD)dp->obj.objsize & 0xFFFFFF00) | dp->obj.stat; + dp->obj.c_ofs = dp->blk_ofs; + init_alloc_info(fs, &dp->obj); /* Get object allocation info */ + } else +#endif + { + dp->obj.sclust = ld_clust(fs, dp->dir); /* Get object allocation info */ + } + } else { /* This object is a file */ + res = FR_NO_PATH; + } + } + if (res == FR_OK) { + dp->obj.id = fs->id; + res = dir_sdi(dp, 0); /* Rewind directory */ +#if FF_FS_LOCK != 0 + if (res == FR_OK) { + if (dp->obj.sclust != 0) { + dp->obj.lockid = inc_lock(dp, 0); /* Lock the sub directory */ + if (!dp->obj.lockid) res = FR_TOO_MANY_OPEN_FILES; + } else { + dp->obj.lockid = 0; /* Root directory need not to be locked */ + } + } +#endif + } + } + FREE_NAMBUF(); + if (res == FR_NO_FILE) res = FR_NO_PATH; + } + if (res != FR_OK) dp->obj.fs = 0; /* Invalidate the directory object if function faild */ + + LEAVE_FF(fs, res); +} + + + + +/*-----------------------------------------------------------------------*/ +/* Close Directory */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_closedir ( + DIR *dp /* Pointer to the directory object to be closed */ +) +{ + FRESULT res; + FATFS *fs; + + + res = validate(&dp->obj, &fs); /* Check validity of the file object */ + if (res == FR_OK) { +#if FF_FS_LOCK != 0 + if (dp->obj.lockid) res = dec_lock(dp->obj.lockid); /* Decrement sub-directory open counter */ + if (res == FR_OK) dp->obj.fs = 0; /* Invalidate directory object */ +#else + dp->obj.fs = 0; /* Invalidate directory object */ +#endif +#if FF_FS_REENTRANT + unlock_fs(fs, FR_OK); /* Unlock volume */ +#endif + } + return res; +} + + + + +/*-----------------------------------------------------------------------*/ +/* Read Directory Entries in Sequence */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_readdir ( + DIR* dp, /* Pointer to the open directory object */ + FILINFO* fno /* Pointer to file information to return */ +) +{ + FRESULT res; + FATFS *fs; + DEF_NAMBUF + + + res = validate(&dp->obj, &fs); /* Check validity of the directory object */ + if (res == FR_OK) { + if (!fno) { + res = dir_sdi(dp, 0); /* Rewind the directory object */ + } else { + INIT_NAMBUF(fs); + res = DIR_READ_FILE(dp); /* Read an item */ + if (res == FR_NO_FILE) res = FR_OK; /* Ignore end of directory */ + if (res == FR_OK) { /* A valid entry is found */ + get_fileinfo(dp, fno); /* Get the object information */ + res = dir_next(dp, 0); /* Increment index for next */ + if (res == FR_NO_FILE) res = FR_OK; /* Ignore end of directory now */ + } + FREE_NAMBUF(); + } + } + LEAVE_FF(fs, res); +} + + + +#if FF_USE_FIND +/*-----------------------------------------------------------------------*/ +/* Find Next File */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_findnext ( + DIR* dp, /* Pointer to the open directory object */ + FILINFO* fno /* Pointer to the file information structure */ +) +{ + FRESULT res; + + + for (;;) { + res = f_readdir(dp, fno); /* Get a directory item */ + if (res != FR_OK || !fno || !fno->fname[0]) break; /* Terminate if any error or end of directory */ + if (pattern_matching(dp->pat, fno->fname, 0, 0)) break; /* Test for the file name */ +#if FF_USE_LFN && FF_USE_FIND == 2 + if (pattern_matching(dp->pat, fno->altname, 0, 0)) break; /* Test for alternative name if exist */ +#endif + } + return res; +} + + + +/*-----------------------------------------------------------------------*/ +/* Find First File */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_findfirst ( + DIR* dp, /* Pointer to the blank directory object */ + FILINFO* fno, /* Pointer to the file information structure */ + const TCHAR* path, /* Pointer to the directory to open */ + const TCHAR* pattern /* Pointer to the matching pattern */ +) +{ + FRESULT res; + + + dp->pat = pattern; /* Save pointer to pattern string */ + res = f_opendir(dp, path); /* Open the target directory */ + if (res == FR_OK) { + res = f_findnext(dp, fno); /* Find the first item */ + } + return res; +} + +#endif /* FF_USE_FIND */ + + + +#if FF_FS_MINIMIZE == 0 +/*-----------------------------------------------------------------------*/ +/* Get File Status */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_stat ( + const TCHAR* path, /* Pointer to the file path */ + FILINFO* fno /* Pointer to file information to return */ +) +{ + FRESULT res; + DIR dj; + DEF_NAMBUF + + + /* Get logical drive */ + res = find_volume(&path, &dj.obj.fs, 0); + if (res == FR_OK) { + INIT_NAMBUF(dj.obj.fs); + res = follow_path(&dj, path); /* Follow the file path */ + if (res == FR_OK) { /* Follow completed */ + if (dj.fn[NSFLAG] & NS_NONAME) { /* It is origin directory */ + res = FR_INVALID_NAME; + } else { /* Found an object */ + if (fno) get_fileinfo(&dj, fno); + } + } + FREE_NAMBUF(); + } + + LEAVE_FF(dj.obj.fs, res); +} + + + +#if !FF_FS_READONLY +/*-----------------------------------------------------------------------*/ +/* Get Number of Free Clusters */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_getfree ( + const TCHAR* path, /* Logical drive number */ + DWORD* nclst, /* Pointer to a variable to return number of free clusters */ + FATFS** fatfs /* Pointer to return pointer to corresponding filesystem object */ +) +{ + FRESULT res; + FATFS *fs; + DWORD nfree, clst, sect, stat; + UINT i; + FFOBJID obj; + + + /* Get logical drive */ + res = find_volume(&path, &fs, 0); + if (res == FR_OK) { + *fatfs = fs; /* Return ptr to the fs object */ + /* If free_clst is valid, return it without full FAT scan */ + if (fs->free_clst <= fs->n_fatent - 2) { + *nclst = fs->free_clst; + } else { + /* Scan FAT to obtain number of free clusters */ + nfree = 0; + if (fs->fs_type == FS_FAT12) { /* FAT12: Scan bit field FAT entries */ + clst = 2; obj.fs = fs; + do { + stat = get_fat(&obj, clst); + if (stat == 0xFFFFFFFF) { res = FR_DISK_ERR; break; } + if (stat == 1) { res = FR_INT_ERR; break; } + if (stat == 0) nfree++; + } while (++clst < fs->n_fatent); + } else { +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { /* exFAT: Scan allocation bitmap */ + BYTE bm; + UINT b; + + clst = fs->n_fatent - 2; /* Number of clusters */ + sect = fs->bitbase; /* Bitmap sector */ + i = 0; /* Offset in the sector */ + do { /* Counts numbuer of bits with zero in the bitmap */ + if (i == 0) { + res = move_window(fs, sect++); + if (res != FR_OK) break; + } + for (b = 8, bm = fs->win[i]; b && clst; b--, clst--) { + if (!(bm & 1)) nfree++; + bm >>= 1; + } + i = (i + 1) % SS(fs); + } while (clst); + } else +#endif + { /* FAT16/32: Scan WORD/DWORD FAT entries */ + clst = fs->n_fatent; /* Number of entries */ + sect = fs->fatbase; /* Top of the FAT */ + i = 0; /* Offset in the sector */ + do { /* Counts numbuer of entries with zero in the FAT */ + if (i == 0) { + res = move_window(fs, sect++); + if (res != FR_OK) break; + } + if (fs->fs_type == FS_FAT16) { + if (ld_word(fs->win + i) == 0) nfree++; + i += 2; + } else { + if ((ld_dword(fs->win + i) & 0x0FFFFFFF) == 0) nfree++; + i += 4; + } + i %= SS(fs); + } while (--clst); + } + } + *nclst = nfree; /* Return the free clusters */ + fs->free_clst = nfree; /* Now free_clst is valid */ + fs->fsi_flag |= 1; /* FAT32: FSInfo is to be updated */ + } + } + + LEAVE_FF(fs, res); +} + + + + +/*-----------------------------------------------------------------------*/ +/* Truncate File */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_truncate ( + FIL* fp /* Pointer to the file object */ +) +{ + FRESULT res; + FATFS *fs; + DWORD ncl; + + + res = validate(&fp->obj, &fs); /* Check validity of the file object */ + if (res != FR_OK || (res = (FRESULT)fp->err) != FR_OK) LEAVE_FF(fs, res); + if (!(fp->flag & FA_WRITE)) LEAVE_FF(fs, FR_DENIED); /* Check access mode */ + + if (fp->fptr < fp->obj.objsize) { /* Process when fptr is not on the eof */ + if (fp->fptr == 0) { /* When set file size to zero, remove entire cluster chain */ + res = remove_chain(&fp->obj, fp->obj.sclust, 0); + fp->obj.sclust = 0; + } else { /* When truncate a part of the file, remove remaining clusters */ + ncl = get_fat(&fp->obj, fp->clust); + res = FR_OK; + if (ncl == 0xFFFFFFFF) res = FR_DISK_ERR; + if (ncl == 1) res = FR_INT_ERR; + if (res == FR_OK && ncl < fs->n_fatent) { + res = remove_chain(&fp->obj, ncl, fp->clust); + } + } + fp->obj.objsize = fp->fptr; /* Set file size to current read/write point */ + fp->flag |= FA_MODIFIED; +#if !FF_FS_TINY + if (res == FR_OK && (fp->flag & FA_DIRTY)) { + if (disk_write(fs->pdrv, fp->buf, fp->sect, 1) != RES_OK) { + res = FR_DISK_ERR; + } else { + fp->flag &= (BYTE)~FA_DIRTY; + } + } +#endif + if (res != FR_OK) ABORT(fs, res); + } + + LEAVE_FF(fs, res); +} + + + + +/*-----------------------------------------------------------------------*/ +/* Delete a File/Directory */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_unlink ( + const TCHAR* path /* Pointer to the file or directory path */ +) +{ + FRESULT res; + DIR dj, sdj; + DWORD dclst = 0; + FATFS *fs; +#if FF_FS_EXFAT + FFOBJID obj; +#endif + DEF_NAMBUF + + + /* Get logical drive */ + res = find_volume(&path, &fs, FA_WRITE); + if (res == FR_OK) { + dj.obj.fs = fs; + INIT_NAMBUF(fs); + res = follow_path(&dj, path); /* Follow the file path */ + if (FF_FS_RPATH && res == FR_OK && (dj.fn[NSFLAG] & NS_DOT)) { + res = FR_INVALID_NAME; /* Cannot remove dot entry */ + } +#if FF_FS_LOCK != 0 + if (res == FR_OK) res = chk_lock(&dj, 2); /* Check if it is an open object */ +#endif + if (res == FR_OK) { /* The object is accessible */ + if (dj.fn[NSFLAG] & NS_NONAME) { + res = FR_INVALID_NAME; /* Cannot remove the origin directory */ + } else { + if (dj.obj.attr & AM_RDO) { + res = FR_DENIED; /* Cannot remove R/O object */ + } + } + if (res == FR_OK) { +#if FF_FS_EXFAT + obj.fs = fs; + if (fs->fs_type == FS_EXFAT) { + init_alloc_info(fs, &obj); + dclst = obj.sclust; + } else +#endif + { + dclst = ld_clust(fs, dj.dir); + } + if (dj.obj.attr & AM_DIR) { /* Is it a sub-directory? */ +#if FF_FS_RPATH != 0 + if (dclst == fs->cdir) { /* Is it the current directory? */ + res = FR_DENIED; + } else +#endif + { + sdj.obj.fs = fs; /* Open the sub-directory */ + sdj.obj.sclust = dclst; +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { + sdj.obj.objsize = obj.objsize; + sdj.obj.stat = obj.stat; + } +#endif + res = dir_sdi(&sdj, 0); + if (res == FR_OK) { + res = DIR_READ_FILE(&sdj); /* Test if the directory is empty */ + if (res == FR_OK) res = FR_DENIED; /* Not empty? */ + if (res == FR_NO_FILE) res = FR_OK; /* Empty? */ + } + } + } + } + if (res == FR_OK) { + res = dir_remove(&dj); /* Remove the directory entry */ + if (res == FR_OK && dclst != 0) { /* Remove the cluster chain if exist */ +#if FF_FS_EXFAT + res = remove_chain(&obj, dclst, 0); +#else + res = remove_chain(&dj.obj, dclst, 0); +#endif + } + if (res == FR_OK) res = sync_fs(fs); + } + } + FREE_NAMBUF(); + } + + LEAVE_FF(fs, res); +} + + + + +/*-----------------------------------------------------------------------*/ +/* Create a Directory */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_mkdir ( + const TCHAR* path /* Pointer to the directory path */ +) +{ + FRESULT res; + DIR dj; + FFOBJID sobj; + FATFS *fs; + DWORD dcl, pcl, tm; + DEF_NAMBUF + + + res = find_volume(&path, &fs, FA_WRITE); /* Get logical drive */ + if (res == FR_OK) { + dj.obj.fs = fs; + INIT_NAMBUF(fs); + res = follow_path(&dj, path); /* Follow the file path */ + if (res == FR_OK) res = FR_EXIST; /* Name collision? */ + if (FF_FS_RPATH && res == FR_NO_FILE && (dj.fn[NSFLAG] & NS_DOT)) { /* Invalid name? */ + res = FR_INVALID_NAME; + } + if (res == FR_NO_FILE) { /* It is clear to create a new directory */ + sobj.fs = fs; /* New object id to create a new chain */ + dcl = create_chain(&sobj, 0); /* Allocate a cluster for the new directory */ + res = FR_OK; + if (dcl == 0) res = FR_DENIED; /* No space to allocate a new cluster? */ + if (dcl == 1) res = FR_INT_ERR; /* Any insanity? */ + if (dcl == 0xFFFFFFFF) res = FR_DISK_ERR; /* Disk error? */ + tm = GET_FATTIME(); + if (res == FR_OK) { + res = dir_clear(fs, dcl); /* Clean up the new table */ + if (res == FR_OK) { + if (!FF_FS_EXFAT || fs->fs_type != FS_EXFAT) { /* Create dot entries (FAT only) */ + mem_set(fs->win + DIR_Name, ' ', 11); /* Create "." entry */ + fs->win[DIR_Name] = '.'; + fs->win[DIR_Attr] = AM_DIR; + st_dword(fs->win + DIR_ModTime, tm); + st_clust(fs, fs->win, dcl); + mem_cpy(fs->win + SZDIRE, fs->win, SZDIRE); /* Create ".." entry */ + fs->win[SZDIRE + 1] = '.'; pcl = dj.obj.sclust; + st_clust(fs, fs->win + SZDIRE, pcl); + fs->wflag = 1; + } + res = dir_register(&dj); /* Register the object to the parent directoy */ + } + } + if (res == FR_OK) { +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { /* Initialize directory entry block */ + st_dword(fs->dirbuf + XDIR_ModTime, tm); /* Created time */ + st_dword(fs->dirbuf + XDIR_FstClus, dcl); /* Table start cluster */ + st_dword(fs->dirbuf + XDIR_FileSize, (DWORD)fs->csize * SS(fs)); /* File size needs to be valid */ + st_dword(fs->dirbuf + XDIR_ValidFileSize, (DWORD)fs->csize * SS(fs)); + fs->dirbuf[XDIR_GenFlags] = 3; /* Initialize the object flag */ + fs->dirbuf[XDIR_Attr] = AM_DIR; /* Attribute */ + res = store_xdir(&dj); + } else +#endif + { + st_dword(dj.dir + DIR_ModTime, tm); /* Created time */ + st_clust(fs, dj.dir, dcl); /* Table start cluster */ + dj.dir[DIR_Attr] = AM_DIR; /* Attribute */ + fs->wflag = 1; + } + if (res == FR_OK) { + res = sync_fs(fs); + } + } else { + remove_chain(&sobj, dcl, 0); /* Could not register, remove the allocated cluster */ + } + } + FREE_NAMBUF(); + } + + LEAVE_FF(fs, res); +} + + + + +/*-----------------------------------------------------------------------*/ +/* Rename a File/Directory */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_rename ( + const TCHAR* path_old, /* Pointer to the object name to be renamed */ + const TCHAR* path_new /* Pointer to the new name */ +) +{ + FRESULT res; + DIR djo, djn; + FATFS *fs; + BYTE buf[FF_FS_EXFAT ? SZDIRE * 2 : SZDIRE], *dir; + DWORD dw; + DEF_NAMBUF + + + get_ldnumber(&path_new); /* Snip the drive number of new name off */ + res = find_volume(&path_old, &fs, FA_WRITE); /* Get logical drive of the old object */ + if (res == FR_OK) { + djo.obj.fs = fs; + INIT_NAMBUF(fs); + res = follow_path(&djo, path_old); /* Check old object */ + if (res == FR_OK && (djo.fn[NSFLAG] & (NS_DOT | NS_NONAME))) res = FR_INVALID_NAME; /* Check validity of name */ +#if FF_FS_LOCK != 0 + if (res == FR_OK) { + res = chk_lock(&djo, 2); + } +#endif + if (res == FR_OK) { /* Object to be renamed is found */ +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { /* At exFAT volume */ + BYTE nf, nn; + WORD nh; + + mem_cpy(buf, fs->dirbuf, SZDIRE * 2); /* Save 85+C0 entry of old object */ + mem_cpy(&djn, &djo, sizeof djo); + res = follow_path(&djn, path_new); /* Make sure if new object name is not in use */ + if (res == FR_OK) { /* Is new name already in use by any other object? */ + res = (djn.obj.sclust == djo.obj.sclust && djn.dptr == djo.dptr) ? FR_NO_FILE : FR_EXIST; + } + if (res == FR_NO_FILE) { /* It is a valid path and no name collision */ + res = dir_register(&djn); /* Register the new entry */ + if (res == FR_OK) { + nf = fs->dirbuf[XDIR_NumSec]; nn = fs->dirbuf[XDIR_NumName]; + nh = ld_word(fs->dirbuf + XDIR_NameHash); + mem_cpy(fs->dirbuf, buf, SZDIRE * 2); /* Restore 85+C0 entry */ + fs->dirbuf[XDIR_NumSec] = nf; fs->dirbuf[XDIR_NumName] = nn; + st_word(fs->dirbuf + XDIR_NameHash, nh); + if (!(fs->dirbuf[XDIR_Attr] & AM_DIR)) fs->dirbuf[XDIR_Attr] |= AM_ARC; /* Set archive attribute if it is a file */ +/* Start of critical section where an interruption can cause a cross-link */ + res = store_xdir(&djn); + } + } + } else +#endif + { /* At FAT/FAT32 volume */ + mem_cpy(buf, djo.dir, SZDIRE); /* Save directory entry of the object */ + mem_cpy(&djn, &djo, sizeof (DIR)); /* Duplicate the directory object */ + res = follow_path(&djn, path_new); /* Make sure if new object name is not in use */ + if (res == FR_OK) { /* Is new name already in use by any other object? */ + res = (djn.obj.sclust == djo.obj.sclust && djn.dptr == djo.dptr) ? FR_NO_FILE : FR_EXIST; + } + if (res == FR_NO_FILE) { /* It is a valid path and no name collision */ + res = dir_register(&djn); /* Register the new entry */ + if (res == FR_OK) { + dir = djn.dir; /* Copy directory entry of the object except name */ + mem_cpy(dir + 13, buf + 13, SZDIRE - 13); + dir[DIR_Attr] = buf[DIR_Attr]; + if (!(dir[DIR_Attr] & AM_DIR)) dir[DIR_Attr] |= AM_ARC; /* Set archive attribute if it is a file */ + fs->wflag = 1; + if ((dir[DIR_Attr] & AM_DIR) && djo.obj.sclust != djn.obj.sclust) { /* Update .. entry in the sub-directory if needed */ + dw = clst2sect(fs, ld_clust(fs, dir)); + if (dw == 0) { + res = FR_INT_ERR; + } else { +/* Start of critical section where an interruption can cause a cross-link */ + res = move_window(fs, dw); + dir = fs->win + SZDIRE * 1; /* Ptr to .. entry */ + if (res == FR_OK && dir[1] == '.') { + st_clust(fs, dir, djn.obj.sclust); + fs->wflag = 1; + } + } + } + } + } + } + if (res == FR_OK) { + res = dir_remove(&djo); /* Remove old entry */ + if (res == FR_OK) { + res = sync_fs(fs); + } + } +/* End of the critical section */ + } + FREE_NAMBUF(); + } + + LEAVE_FF(fs, res); +} + +#endif /* !FF_FS_READONLY */ +#endif /* FF_FS_MINIMIZE == 0 */ +#endif /* FF_FS_MINIMIZE <= 1 */ +#endif /* FF_FS_MINIMIZE <= 2 */ + + + +#if FF_USE_CHMOD && !FF_FS_READONLY +/*-----------------------------------------------------------------------*/ +/* Change Attribute */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_chmod ( + const TCHAR* path, /* Pointer to the file path */ + BYTE attr, /* Attribute bits */ + BYTE mask /* Attribute mask to change */ +) +{ + FRESULT res; + DIR dj; + FATFS *fs; + DEF_NAMBUF + + + res = find_volume(&path, &fs, FA_WRITE); /* Get logical drive */ + if (res == FR_OK) { + dj.obj.fs = fs; + INIT_NAMBUF(fs); + res = follow_path(&dj, path); /* Follow the file path */ + if (res == FR_OK && (dj.fn[NSFLAG] & (NS_DOT | NS_NONAME))) res = FR_INVALID_NAME; /* Check object validity */ + if (res == FR_OK) { + mask &= AM_RDO|AM_HID|AM_SYS|AM_ARC; /* Valid attribute mask */ +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { + fs->dirbuf[XDIR_Attr] = (attr & mask) | (fs->dirbuf[XDIR_Attr] & (BYTE)~mask); /* Apply attribute change */ + res = store_xdir(&dj); + } else +#endif + { + dj.dir[DIR_Attr] = (attr & mask) | (dj.dir[DIR_Attr] & (BYTE)~mask); /* Apply attribute change */ + fs->wflag = 1; + } + if (res == FR_OK) { + res = sync_fs(fs); + } + } + FREE_NAMBUF(); + } + + LEAVE_FF(fs, res); +} + + + + +/*-----------------------------------------------------------------------*/ +/* Change Timestamp */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_utime ( + const TCHAR* path, /* Pointer to the file/directory name */ + const FILINFO* fno /* Pointer to the timestamp to be set */ +) +{ + FRESULT res; + DIR dj; + FATFS *fs; + DEF_NAMBUF + + + res = find_volume(&path, &fs, FA_WRITE); /* Get logical drive */ + if (res == FR_OK) { + dj.obj.fs = fs; + INIT_NAMBUF(fs); + res = follow_path(&dj, path); /* Follow the file path */ + if (res == FR_OK && (dj.fn[NSFLAG] & (NS_DOT | NS_NONAME))) res = FR_INVALID_NAME; /* Check object validity */ + if (res == FR_OK) { +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { + st_dword(fs->dirbuf + XDIR_ModTime, (DWORD)fno->fdate << 16 | fno->ftime); + res = store_xdir(&dj); + } else +#endif + { + st_dword(dj.dir + DIR_ModTime, (DWORD)fno->fdate << 16 | fno->ftime); + fs->wflag = 1; + } + if (res == FR_OK) { + res = sync_fs(fs); + } + } + FREE_NAMBUF(); + } + + LEAVE_FF(fs, res); +} + +#endif /* FF_USE_CHMOD && !FF_FS_READONLY */ + + + +#if FF_USE_LABEL +/*-----------------------------------------------------------------------*/ +/* Get Volume Label */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_getlabel ( + const TCHAR* path, /* Logical drive number */ + TCHAR* label, /* Buffer to store the volume label */ + DWORD* vsn /* Variable to store the volume serial number */ +) +{ + FRESULT res; + DIR dj; + FATFS *fs; + UINT si, di; + WCHAR wc; + + /* Get logical drive */ + res = find_volume(&path, &fs, 0); + + /* Get volume label */ + if (res == FR_OK && label) { + dj.obj.fs = fs; dj.obj.sclust = 0; /* Open root directory */ + res = dir_sdi(&dj, 0); + if (res == FR_OK) { + res = DIR_READ_LABEL(&dj); /* Find a volume label entry */ + if (res == FR_OK) { +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { + WCHAR hs; + + for (si = di = hs = 0; si < dj.dir[XDIR_NumLabel]; si++) { /* Extract volume label from 83 entry */ + wc = ld_word(dj.dir + XDIR_Label + si * 2); + if (hs == 0 && IsSurrogate(wc)) { /* Is the code a surrogate? */ + hs = wc; continue; + } + wc = put_utf((DWORD)hs << 16 | wc, &label[di], 4); + if (wc == 0) { di = 0; break; } + di += wc; + hs = 0; + } + if (hs != 0) di = 0; /* Broken surrogate pair? */ + label[di] = 0; + } else +#endif + { + si = di = 0; /* Extract volume label from AM_VOL entry */ + while (si < 11) { + wc = dj.dir[si++]; +#if FF_USE_LFN && FF_LFN_UNICODE >= 1 /* Unicode output */ + if (dbc_1st((BYTE)wc) && si < 11) wc = wc << 8 | dj.dir[si++]; /* Is it a DBC? */ + wc = ff_oem2uni(wc, CODEPAGE); /* Convert it into Unicode */ + if (wc != 0) wc = put_utf(wc, &label[di], 4); /* Put it in Unicode */ + if (wc == 0) { di = 0; break; } + di += wc; +#else /* ANSI/OEM output */ + label[di++] = (TCHAR)wc; +#endif + } + do { /* Truncate trailing spaces */ + label[di] = 0; + if (di == 0) break; + } while (label[--di] == ' '); + } + } + } + if (res == FR_NO_FILE) { /* No label entry and return nul string */ + label[0] = 0; + res = FR_OK; + } + } + + /* Get volume serial number */ + if (res == FR_OK && vsn) { + res = move_window(fs, fs->volbase); + if (res == FR_OK) { + switch (fs->fs_type) { + case FS_EXFAT: + di = BPB_VolIDEx; break; + + case FS_FAT32: + di = BS_VolID32; break; + + default: + di = BS_VolID; + } + *vsn = ld_dword(fs->win + di); + } + } + + LEAVE_FF(fs, res); +} + + + +#if !FF_FS_READONLY +/*-----------------------------------------------------------------------*/ +/* Set Volume Label */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_setlabel ( + const TCHAR* label /* Volume label to set with heading logical drive number */ +) +{ + FRESULT res; + DIR dj; + FATFS *fs; + BYTE dirvn[22]; + UINT di; + WCHAR wc; + static const char badchr[] = "+.,;=[]/\\\"*:<>\?|\x7F"; /* [0..] for FAT, [7..] for exFAT */ +#if FF_USE_LFN + DWORD dc; +#endif + + /* Get logical drive */ + res = find_volume(&label, &fs, FA_WRITE); + if (res != FR_OK) LEAVE_FF(fs, res); + +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { /* On the exFAT volume */ + mem_set(dirvn, 0, 22); + di = 0; + while ((UINT)*label >= ' ') { /* Create volume label */ + dc = tchar2uni(&label); /* Get a Unicode character */ + if (dc >= 0x10000) { + if (dc == 0xFFFFFFFF || di >= 10) { /* Wrong surrogate or buffer overflow */ + dc = 0; + } else { + st_word(dirvn + di * 2, (WCHAR)(dc >> 16)); di++; + } + } + if (dc == 0 || chk_chr(badchr + 7, (int)dc) || di >= 11) { /* Check validity of the volume label */ + LEAVE_FF(fs, FR_INVALID_NAME); + } + st_word(dirvn + di * 2, (WCHAR)dc); di++; + } + } else +#endif + { /* On the FAT/FAT32 volume */ + mem_set(dirvn, ' ', 11); + di = 0; + while ((UINT)*label >= ' ') { /* Create volume label */ +#if FF_USE_LFN + dc = tchar2uni(&label); + wc = (dc < 0x10000) ? ff_uni2oem(ff_wtoupper(dc), CODEPAGE) : 0; +#else /* ANSI/OEM input */ + wc = (BYTE)*label++; + if (dbc_1st((BYTE)wc)) wc = dbc_2nd((BYTE)*label) ? wc << 8 | (BYTE)*label++ : 0; + if (IsLower(wc)) wc -= 0x20; /* To upper ASCII characters */ +#if FF_CODE_PAGE == 0 + if (ExCvt && wc >= 0x80) wc = ExCvt[wc - 0x80]; /* To upper extended characters (SBCS cfg) */ +#elif FF_CODE_PAGE < 900 + if (wc >= 0x80) wc = ExCvt[wc - 0x80]; /* To upper extended characters (SBCS cfg) */ +#endif +#endif + if (wc == 0 || chk_chr(badchr + 0, (int)wc) || di >= (UINT)((wc >= 0x100) ? 10 : 11)) { /* Reject invalid characters for volume label */ + LEAVE_FF(fs, FR_INVALID_NAME); + } + if (wc >= 0x100) dirvn[di++] = (BYTE)(wc >> 8); + dirvn[di++] = (BYTE)wc; + } + if (dirvn[0] == DDEM) LEAVE_FF(fs, FR_INVALID_NAME); /* Reject illegal name (heading DDEM) */ + while (di && dirvn[di - 1] == ' ') di--; /* Snip trailing spaces */ + } + + /* Set volume label */ + dj.obj.fs = fs; dj.obj.sclust = 0; /* Open root directory */ + res = dir_sdi(&dj, 0); + if (res == FR_OK) { + res = DIR_READ_LABEL(&dj); /* Get volume label entry */ + if (res == FR_OK) { + if (FF_FS_EXFAT && fs->fs_type == FS_EXFAT) { + dj.dir[XDIR_NumLabel] = (BYTE)di; /* Change the volume label */ + mem_cpy(dj.dir + XDIR_Label, dirvn, 22); + } else { + if (di != 0) { + mem_cpy(dj.dir, dirvn, 11); /* Change the volume label */ + } else { + dj.dir[DIR_Name] = DDEM; /* Remove the volume label */ + } + } + fs->wflag = 1; + res = sync_fs(fs); + } else { /* No volume label entry or an error */ + if (res == FR_NO_FILE) { + res = FR_OK; + if (di != 0) { /* Create a volume label entry */ + res = dir_alloc(&dj, 1); /* Allocate an entry */ + if (res == FR_OK) { + mem_set(dj.dir, 0, SZDIRE); /* Clean the entry */ + if (FF_FS_EXFAT && fs->fs_type == FS_EXFAT) { + dj.dir[XDIR_Type] = ET_VLABEL; /* Create volume label entry */ + dj.dir[XDIR_NumLabel] = (BYTE)di; + mem_cpy(dj.dir + XDIR_Label, dirvn, 22); + } else { + dj.dir[DIR_Attr] = AM_VOL; /* Create volume label entry */ + mem_cpy(dj.dir, dirvn, 11); + } + fs->wflag = 1; + res = sync_fs(fs); + } + } + } + } + } + + LEAVE_FF(fs, res); +} + +#endif /* !FF_FS_READONLY */ +#endif /* FF_USE_LABEL */ + + + +#if FF_USE_EXPAND && !FF_FS_READONLY +/*-----------------------------------------------------------------------*/ +/* Allocate a Contiguous Blocks to the File */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_expand ( + FIL* fp, /* Pointer to the file object */ + FSIZE_t fsz, /* File size to be expanded to */ + BYTE opt /* Operation mode 0:Find and prepare or 1:Find and allocate */ +) +{ + FRESULT res; + FATFS *fs; + DWORD n, clst, stcl, scl, ncl, tcl, lclst; + + + res = validate(&fp->obj, &fs); /* Check validity of the file object */ + if (res != FR_OK || (res = (FRESULT)fp->err) != FR_OK) LEAVE_FF(fs, res); + if (fsz == 0 || fp->obj.objsize != 0 || !(fp->flag & FA_WRITE)) LEAVE_FF(fs, FR_DENIED); +#if FF_FS_EXFAT + if (fs->fs_type != FS_EXFAT && fsz >= 0x100000000) LEAVE_FF(fs, FR_DENIED); /* Check if in size limit */ +#endif + n = (DWORD)fs->csize * SS(fs); /* Cluster size */ + tcl = (DWORD)(fsz / n) + ((fsz & (n - 1)) ? 1 : 0); /* Number of clusters required */ + stcl = fs->last_clst; lclst = 0; + if (stcl < 2 || stcl >= fs->n_fatent) stcl = 2; + +#if FF_FS_EXFAT + if (fs->fs_type == FS_EXFAT) { + scl = find_bitmap(fs, stcl, tcl); /* Find a contiguous cluster block */ + if (scl == 0) res = FR_DENIED; /* No contiguous cluster block was found */ + if (scl == 0xFFFFFFFF) res = FR_DISK_ERR; + if (res == FR_OK) { /* A contiguous free area is found */ + if (opt) { /* Allocate it now */ + res = change_bitmap(fs, scl, tcl, 1); /* Mark the cluster block 'in use' */ + lclst = scl + tcl - 1; + } else { /* Set it as suggested point for next allocation */ + lclst = scl - 1; + } + } + } else +#endif + { + scl = clst = stcl; ncl = 0; + for (;;) { /* Find a contiguous cluster block */ + n = get_fat(&fp->obj, clst); + if (++clst >= fs->n_fatent) clst = 2; + if (n == 1) { res = FR_INT_ERR; break; } + if (n == 0xFFFFFFFF) { res = FR_DISK_ERR; break; } + if (n == 0) { /* Is it a free cluster? */ + if (++ncl == tcl) break; /* Break if a contiguous cluster block is found */ + } else { + scl = clst; ncl = 0; /* Not a free cluster */ + } + if (clst == stcl) { res = FR_DENIED; break; } /* No contiguous cluster? */ + } + if (res == FR_OK) { /* A contiguous free area is found */ + if (opt) { /* Allocate it now */ + for (clst = scl, n = tcl; n; clst++, n--) { /* Create a cluster chain on the FAT */ + res = put_fat(fs, clst, (n == 1) ? 0xFFFFFFFF : clst + 1); + if (res != FR_OK) break; + lclst = clst; + } + } else { /* Set it as suggested point for next allocation */ + lclst = scl - 1; + } + } + } + + if (res == FR_OK) { + fs->last_clst = lclst; /* Set suggested start cluster to start next */ + if (opt) { /* Is it allocated now? */ + fp->obj.sclust = scl; /* Update object allocation information */ + fp->obj.objsize = fsz; + if (FF_FS_EXFAT) fp->obj.stat = 2; /* Set status 'contiguous chain' */ + fp->flag |= FA_MODIFIED; + if (fs->free_clst <= fs->n_fatent - 2) { /* Update FSINFO */ + fs->free_clst -= tcl; + fs->fsi_flag |= 1; + } + } + } + + LEAVE_FF(fs, res); +} + +#endif /* FF_USE_EXPAND && !FF_FS_READONLY */ + + + +#if FF_USE_FORWARD +/*-----------------------------------------------------------------------*/ +/* Forward Data to the Stream Directly */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_forward ( + FIL* fp, /* Pointer to the file object */ + UINT (*func)(const BYTE*,UINT), /* Pointer to the streaming function */ + UINT btf, /* Number of bytes to forward */ + UINT* bf /* Pointer to number of bytes forwarded */ +) +{ + FRESULT res; + FATFS *fs; + DWORD clst, sect; + FSIZE_t remain; + UINT rcnt, csect; + BYTE *dbuf; + + + *bf = 0; /* Clear transfer byte counter */ + res = validate(&fp->obj, &fs); /* Check validity of the file object */ + if (res != FR_OK || (res = (FRESULT)fp->err) != FR_OK) LEAVE_FF(fs, res); + if (!(fp->flag & FA_READ)) LEAVE_FF(fs, FR_DENIED); /* Check access mode */ + + remain = fp->obj.objsize - fp->fptr; + if (btf > remain) btf = (UINT)remain; /* Truncate btf by remaining bytes */ + + for ( ; btf && (*func)(0, 0); /* Repeat until all data transferred or stream goes busy */ + fp->fptr += rcnt, *bf += rcnt, btf -= rcnt) { + csect = (UINT)(fp->fptr / SS(fs) & (fs->csize - 1)); /* Sector offset in the cluster */ + if (fp->fptr % SS(fs) == 0) { /* On the sector boundary? */ + if (csect == 0) { /* On the cluster boundary? */ + clst = (fp->fptr == 0) ? /* On the top of the file? */ + fp->obj.sclust : get_fat(&fp->obj, fp->clust); + if (clst <= 1) ABORT(fs, FR_INT_ERR); + if (clst == 0xFFFFFFFF) ABORT(fs, FR_DISK_ERR); + fp->clust = clst; /* Update current cluster */ + } + } + sect = clst2sect(fs, fp->clust); /* Get current data sector */ + if (sect == 0) ABORT(fs, FR_INT_ERR); + sect += csect; +#if FF_FS_TINY + if (move_window(fs, sect) != FR_OK) ABORT(fs, FR_DISK_ERR); /* Move sector window to the file data */ + dbuf = fs->win; +#else + if (fp->sect != sect) { /* Fill sector cache with file data */ +#if !FF_FS_READONLY + if (fp->flag & FA_DIRTY) { /* Write-back dirty sector cache */ + if (disk_write(fs->pdrv, fp->buf, fp->sect, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); + fp->flag &= (BYTE)~FA_DIRTY; + } +#endif + if (disk_read(fs->pdrv, fp->buf, sect, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); + } + dbuf = fp->buf; +#endif + fp->sect = sect; + rcnt = SS(fs) - (UINT)fp->fptr % SS(fs); /* Number of bytes left in the sector */ + if (rcnt > btf) rcnt = btf; /* Clip it by btr if needed */ + rcnt = (*func)(dbuf + ((UINT)fp->fptr % SS(fs)), rcnt); /* Forward the file data */ + if (rcnt == 0) ABORT(fs, FR_INT_ERR); + } + + LEAVE_FF(fs, FR_OK); +} +#endif /* FF_USE_FORWARD */ + + + +#if FF_USE_MKFS && !FF_FS_READONLY +/*-----------------------------------------------------------------------*/ +/* Create an FAT/exFAT volume */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_mkfs ( + const TCHAR* path, /* Logical drive number */ + BYTE opt, /* Format option */ + DWORD au, /* Size of allocation unit (cluster) [byte] */ + void* work, /* Pointer to working buffer (null: use heap memory) */ + UINT len /* Size of working buffer [byte] */ +) +{ + const UINT n_fats = 1; /* Number of FATs for FAT/FAT32 volume (1 or 2) */ + const UINT n_rootdir = 512; /* Number of root directory entries for FAT volume */ + static const WORD cst[] = {1, 4, 16, 64, 256, 512, 0}; /* Cluster size boundary for FAT volume (4Ks unit) */ + static const WORD cst32[] = {1, 2, 4, 8, 16, 32, 0}; /* Cluster size boundary for FAT32 volume (128Ks unit) */ + BYTE fmt, sys, *buf, *pte, pdrv, part; + WORD ss; /* Sector size */ + DWORD szb_buf, sz_buf, sz_blk, n_clst, pau, sect, nsect, n; + DWORD b_vol, b_fat, b_data; /* Base LBA for volume, fat, data */ + DWORD sz_vol, sz_rsv, sz_fat, sz_dir; /* Size for volume, fat, dir, data */ + UINT i; + int vol; + DSTATUS stat; +#if FF_USE_TRIM || FF_FS_EXFAT + DWORD tbl[3]; +#endif + + + /* Check mounted drive and clear work area */ + vol = get_ldnumber(&path); /* Get target logical drive */ + if (vol < 0) return FR_INVALID_DRIVE; + if (FatFs[vol]) FatFs[vol]->fs_type = 0; /* Clear the volume if mounted */ + pdrv = LD2PD(vol); /* Physical drive */ + part = LD2PT(vol); /* Partition (0:create as new, 1-4:get from partition table) */ + + /* Check physical drive status */ + stat = disk_initialize(pdrv); + if (stat & STA_NOINIT) return FR_NOT_READY; + if (stat & STA_PROTECT) return FR_WRITE_PROTECTED; + if (disk_ioctl(pdrv, GET_BLOCK_SIZE, &sz_blk) != RES_OK || !sz_blk || sz_blk > 32768 || (sz_blk & (sz_blk - 1))) sz_blk = 1; /* Erase block to align data area */ +#if FF_MAX_SS != FF_MIN_SS /* Get sector size of the medium if variable sector size cfg. */ + if (disk_ioctl(pdrv, GET_SECTOR_SIZE, &ss) != RES_OK) return FR_DISK_ERR; + if (ss > FF_MAX_SS || ss < FF_MIN_SS || (ss & (ss - 1))) return FR_DISK_ERR; +#else + ss = FF_MAX_SS; +#endif + if ((au != 0 && au < ss) || au > 0x1000000 || (au & (au - 1))) return FR_INVALID_PARAMETER; /* Check if au is valid */ + au /= ss; /* Cluster size in unit of sector */ + + /* Get working buffer */ +#if FF_USE_LFN == 3 + if (!work) { /* Use heap memory for working buffer */ + for (szb_buf = MAX_MALLOC, buf = 0; szb_buf >= ss && (buf = ff_memalloc(szb_buf)) == 0; szb_buf /= 2) ; + sz_buf = szb_buf / ss; /* Size of working buffer (sector) */ + } else +#endif + { + buf = (BYTE*)work; /* Working buffer */ + sz_buf = len / ss; /* Size of working buffer (sector) */ + szb_buf = sz_buf * ss; /* Size of working buffer (byte) */ + } + if (!buf || sz_buf == 0) return FR_NOT_ENOUGH_CORE; + + /* Determine where the volume to be located (b_vol, sz_vol) */ + if (FF_MULTI_PARTITION && part != 0) { + /* Get partition information from partition table in the MBR */ + if (disk_read(pdrv, buf, 0, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); /* Load MBR */ + if (ld_word(buf + BS_55AA) != 0xAA55) LEAVE_MKFS(FR_MKFS_ABORTED); /* Check if MBR is valid */ + pte = buf + (MBR_Table + (part - 1) * SZ_PTE); + if (pte[PTE_System] == 0) LEAVE_MKFS(FR_MKFS_ABORTED); /* No partition? */ + b_vol = ld_dword(pte + PTE_StLba); /* Get volume start sector */ + sz_vol = ld_dword(pte + PTE_SizLba); /* Get volume size */ + } else { + /* Create a single-partition in this function */ + if (disk_ioctl(pdrv, GET_SECTOR_COUNT, &sz_vol) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); + b_vol = (opt & FM_SFD) ? 0 : 63; /* Volume start sector */ + if (sz_vol < b_vol) LEAVE_MKFS(FR_MKFS_ABORTED); + sz_vol -= b_vol; /* Volume size */ + } + if (sz_vol < 128) LEAVE_MKFS(FR_MKFS_ABORTED); /* Check if volume size is >=128s */ + + /* Pre-determine the FAT type */ + do { + if (FF_FS_EXFAT && (opt & FM_EXFAT)) { /* exFAT possible? */ + if ((opt & FM_ANY) == FM_EXFAT || sz_vol >= 0x4000000 || au > 128) { /* exFAT only, vol >= 64Ms or au > 128s ? */ + fmt = FS_EXFAT; break; + } + } + if (au > 128) LEAVE_MKFS(FR_INVALID_PARAMETER); /* Too large au for FAT/FAT32 */ + if (opt & FM_FAT32) { /* FAT32 possible? */ + if ((opt & FM_ANY) == FM_FAT32 || !(opt & FM_FAT)) { /* FAT32 only or no-FAT? */ + fmt = FS_FAT32; break; + } + } + if (!(opt & FM_FAT)) LEAVE_MKFS(FR_INVALID_PARAMETER); /* no-FAT? */ + fmt = FS_FAT16; + } while (0); + +#if FF_FS_EXFAT + if (fmt == FS_EXFAT) { /* Create an exFAT volume */ + DWORD szb_bit, szb_case, sum, nb, cl; + WCHAR ch, si; + UINT j, st; + BYTE b; + + if (sz_vol < 0x1000) LEAVE_MKFS(FR_MKFS_ABORTED); /* Too small volume? */ +#if FF_USE_TRIM + tbl[0] = b_vol; tbl[1] = b_vol + sz_vol - 1; /* Inform the device the volume area may be erased */ + disk_ioctl(pdrv, CTRL_TRIM, tbl); +#endif + /* Determine FAT location, data location and number of clusters */ + if (au == 0) { /* au auto-selection */ + au = 8; + if (sz_vol >= 0x80000) au = 64; /* >= 512Ks */ + if (sz_vol >= 0x4000000) au = 256; /* >= 64Ms */ + } + b_fat = b_vol + 32; /* FAT start at offset 32 */ + sz_fat = ((sz_vol / au + 2) * 4 + ss - 1) / ss; /* Number of FAT sectors */ + b_data = (b_fat + sz_fat + sz_blk - 1) & ~(sz_blk - 1); /* Align data area to the erase block boundary */ + if (b_data >= sz_vol / 2) LEAVE_MKFS(FR_MKFS_ABORTED); /* Too small volume? */ + n_clst = (sz_vol - (b_data - b_vol)) / au; /* Number of clusters */ + if (n_clst <16) LEAVE_MKFS(FR_MKFS_ABORTED); /* Too few clusters? */ + if (n_clst > MAX_EXFAT) LEAVE_MKFS(FR_MKFS_ABORTED); /* Too many clusters? */ + + szb_bit = (n_clst + 7) / 8; /* Size of allocation bitmap */ + tbl[0] = (szb_bit + au * ss - 1) / (au * ss); /* Number of allocation bitmap clusters */ + + /* Create a compressed up-case table */ + sect = b_data + au * tbl[0]; /* Table start sector */ + sum = 0; /* Table checksum to be stored in the 82 entry */ + st = 0; si = 0; i = 0; j = 0; szb_case = 0; + do { + switch (st) { + case 0: + ch = (WCHAR)ff_wtoupper(si); /* Get an up-case char */ + if (ch != si) { + si++; break; /* Store the up-case char if exist */ + } + for (j = 1; (WCHAR)(si + j) && (WCHAR)(si + j) == ff_wtoupper((WCHAR)(si + j)); j++) ; /* Get run length of no-case block */ + if (j >= 128) { + ch = 0xFFFF; st = 2; break; /* Compress the no-case block if run is >= 128 */ + } + st = 1; /* Do not compress short run */ + /* go to next case */ + case 1: + ch = si++; /* Fill the short run */ + if (--j == 0) st = 0; + break; + + default: + ch = (WCHAR)j; si += (WCHAR)j; /* Number of chars to skip */ + st = 0; + } + sum = xsum32(buf[i + 0] = (BYTE)ch, sum); /* Put it into the write buffer */ + sum = xsum32(buf[i + 1] = (BYTE)(ch >> 8), sum); + i += 2; szb_case += 2; + if (si == 0 || i == szb_buf) { /* Write buffered data when buffer full or end of process */ + n = (i + ss - 1) / ss; + if (disk_write(pdrv, buf, sect, n) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); + sect += n; i = 0; + } + } while (si); + tbl[1] = (szb_case + au * ss - 1) / (au * ss); /* Number of up-case table clusters */ + tbl[2] = 1; /* Number of root dir clusters */ + + /* Initialize the allocation bitmap */ + sect = b_data; nsect = (szb_bit + ss - 1) / ss; /* Start of bitmap and number of sectors */ + nb = tbl[0] + tbl[1] + tbl[2]; /* Number of clusters in-use by system */ + do { + mem_set(buf, 0, szb_buf); + for (i = 0; nb >= 8 && i < szb_buf; buf[i++] = 0xFF, nb -= 8) ; + for (b = 1; nb != 0 && i < szb_buf; buf[i] |= b, b <<= 1, nb--) ; + n = (nsect > sz_buf) ? sz_buf : nsect; /* Write the buffered data */ + if (disk_write(pdrv, buf, sect, n) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); + sect += n; nsect -= n; + } while (nsect); + + /* Initialize the FAT */ + sect = b_fat; nsect = sz_fat; /* Start of FAT and number of FAT sectors */ + j = nb = cl = 0; + do { + mem_set(buf, 0, szb_buf); i = 0; /* Clear work area and reset write index */ + if (cl == 0) { /* Set entry 0 and 1 */ + st_dword(buf + i, 0xFFFFFFF8); i += 4; cl++; + st_dword(buf + i, 0xFFFFFFFF); i += 4; cl++; + } + do { /* Create chains of bitmap, up-case and root dir */ + while (nb != 0 && i < szb_buf) { /* Create a chain */ + st_dword(buf + i, (nb > 1) ? cl + 1 : 0xFFFFFFFF); + i += 4; cl++; nb--; + } + if (nb == 0 && j < 3) nb = tbl[j++]; /* Next chain */ + } while (nb != 0 && i < szb_buf); + n = (nsect > sz_buf) ? sz_buf : nsect; /* Write the buffered data */ + if (disk_write(pdrv, buf, sect, n) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); + sect += n; nsect -= n; + } while (nsect); + + /* Initialize the root directory */ + mem_set(buf, 0, szb_buf); + buf[SZDIRE * 0 + 0] = ET_VLABEL; /* Volume label entry */ + buf[SZDIRE * 1 + 0] = ET_BITMAP; /* Bitmap entry */ + st_dword(buf + SZDIRE * 1 + 20, 2); /* cluster */ + st_dword(buf + SZDIRE * 1 + 24, szb_bit); /* size */ + buf[SZDIRE * 2 + 0] = ET_UPCASE; /* Up-case table entry */ + st_dword(buf + SZDIRE * 2 + 4, sum); /* sum */ + st_dword(buf + SZDIRE * 2 + 20, 2 + tbl[0]); /* cluster */ + st_dword(buf + SZDIRE * 2 + 24, szb_case); /* size */ + sect = b_data + au * (tbl[0] + tbl[1]); nsect = au; /* Start of the root directory and number of sectors */ + do { /* Fill root directory sectors */ + n = (nsect > sz_buf) ? sz_buf : nsect; + if (disk_write(pdrv, buf, sect, n) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); + mem_set(buf, 0, ss); + sect += n; nsect -= n; + } while (nsect); + + /* Create two set of the exFAT VBR blocks */ + sect = b_vol; + for (n = 0; n < 2; n++) { + /* Main record (+0) */ + mem_set(buf, 0, ss); + mem_cpy(buf + BS_JmpBoot, "\xEB\x76\x90" "EXFAT ", 11); /* Boot jump code (x86), OEM name */ + st_dword(buf + BPB_VolOfsEx, b_vol); /* Volume offset in the physical drive [sector] */ + st_dword(buf + BPB_TotSecEx, sz_vol); /* Volume size [sector] */ + st_dword(buf + BPB_FatOfsEx, b_fat - b_vol); /* FAT offset [sector] */ + st_dword(buf + BPB_FatSzEx, sz_fat); /* FAT size [sector] */ + st_dword(buf + BPB_DataOfsEx, b_data - b_vol); /* Data offset [sector] */ + st_dword(buf + BPB_NumClusEx, n_clst); /* Number of clusters */ + st_dword(buf + BPB_RootClusEx, 2 + tbl[0] + tbl[1]); /* Root dir cluster # */ + st_dword(buf + BPB_VolIDEx, GET_FATTIME()); /* VSN */ + st_word(buf + BPB_FSVerEx, 0x100); /* Filesystem version (1.00) */ + for (buf[BPB_BytsPerSecEx] = 0, i = ss; i >>= 1; buf[BPB_BytsPerSecEx]++) ; /* Log2 of sector size [byte] */ + for (buf[BPB_SecPerClusEx] = 0, i = au; i >>= 1; buf[BPB_SecPerClusEx]++) ; /* Log2 of cluster size [sector] */ + buf[BPB_NumFATsEx] = 1; /* Number of FATs */ + buf[BPB_DrvNumEx] = 0x80; /* Drive number (for int13) */ + st_word(buf + BS_BootCodeEx, 0xFEEB); /* Boot code (x86) */ + st_word(buf + BS_55AA, 0xAA55); /* Signature (placed here regardless of sector size) */ + for (i = sum = 0; i < ss; i++) { /* VBR checksum */ + if (i != BPB_VolFlagEx && i != BPB_VolFlagEx + 1 && i != BPB_PercInUseEx) sum = xsum32(buf[i], sum); + } + if (disk_write(pdrv, buf, sect++, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); + /* Extended bootstrap record (+1..+8) */ + mem_set(buf, 0, ss); + st_word(buf + ss - 2, 0xAA55); /* Signature (placed at end of sector) */ + for (j = 1; j < 9; j++) { + for (i = 0; i < ss; sum = xsum32(buf[i++], sum)) ; /* VBR checksum */ + if (disk_write(pdrv, buf, sect++, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); + } + /* OEM/Reserved record (+9..+10) */ + mem_set(buf, 0, ss); + for ( ; j < 11; j++) { + for (i = 0; i < ss; sum = xsum32(buf[i++], sum)) ; /* VBR checksum */ + if (disk_write(pdrv, buf, sect++, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); + } + /* Sum record (+11) */ + for (i = 0; i < ss; i += 4) st_dword(buf + i, sum); /* Fill with checksum value */ + if (disk_write(pdrv, buf, sect++, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); + } + + } else +#endif /* FF_FS_EXFAT */ + { /* Create an FAT/FAT32 volume */ + do { + pau = au; + /* Pre-determine number of clusters and FAT sub-type */ + if (fmt == FS_FAT32) { /* FAT32 volume */ + if (pau == 0) { /* au auto-selection */ + n = sz_vol / 0x20000; /* Volume size in unit of 128KS */ + for (i = 0, pau = 1; cst32[i] && cst32[i] <= n; i++, pau <<= 1) ; /* Get from table */ + } + n_clst = sz_vol / pau; /* Number of clusters */ + sz_fat = (n_clst * 4 + 8 + ss - 1) / ss; /* FAT size [sector] */ + sz_rsv = 32; /* Number of reserved sectors */ + sz_dir = 0; /* No static directory */ + if (n_clst <= MAX_FAT16 || n_clst > MAX_FAT32) LEAVE_MKFS(FR_MKFS_ABORTED); + } else { /* FAT volume */ + if (pau == 0) { /* au auto-selection */ + n = sz_vol / 0x1000; /* Volume size in unit of 4KS */ + for (i = 0, pau = 1; cst[i] && cst[i] <= n; i++, pau <<= 1) ; /* Get from table */ + } + n_clst = sz_vol / pau; + if (n_clst > MAX_FAT12) { + n = n_clst * 2 + 4; /* FAT size [byte] */ + } else { + fmt = FS_FAT12; + n = (n_clst * 3 + 1) / 2 + 3; /* FAT size [byte] */ + } + sz_fat = (n + ss - 1) / ss; /* FAT size [sector] */ + sz_rsv = 1; /* Number of reserved sectors */ + sz_dir = (DWORD)n_rootdir * SZDIRE / ss; /* Rootdir size [sector] */ + } + b_fat = b_vol + sz_rsv; /* FAT base */ + b_data = b_fat + sz_fat * n_fats + sz_dir; /* Data base */ + + /* Align data base to erase block boundary (for flash memory media) */ + n = ((b_data + sz_blk - 1) & ~(sz_blk - 1)) - b_data; /* Next nearest erase block from current data base */ + if (fmt == FS_FAT32) { /* FAT32: Move FAT base */ + sz_rsv += n; b_fat += n; + } else { /* FAT: Expand FAT size */ + sz_fat += n / n_fats; + } + + /* Determine number of clusters and final check of validity of the FAT sub-type */ + if (sz_vol < b_data + pau * 16 - b_vol) LEAVE_MKFS(FR_MKFS_ABORTED); /* Too small volume */ + n_clst = (sz_vol - sz_rsv - sz_fat * n_fats - sz_dir) / pau; + if (fmt == FS_FAT32) { + if (n_clst <= MAX_FAT16) { /* Too few clusters for FAT32 */ + if (au == 0 && (au = pau / 2) != 0) continue; /* Adjust cluster size and retry */ + LEAVE_MKFS(FR_MKFS_ABORTED); + } + } + if (fmt == FS_FAT16) { + if (n_clst > MAX_FAT16) { /* Too many clusters for FAT16 */ + if (au == 0 && (pau * 2) <= 64) { + au = pau * 2; continue; /* Adjust cluster size and retry */ + } + if ((opt & FM_FAT32)) { + fmt = FS_FAT32; continue; /* Switch type to FAT32 and retry */ + } + if (au == 0 && (au = pau * 2) <= 128) continue; /* Adjust cluster size and retry */ + LEAVE_MKFS(FR_MKFS_ABORTED); + } + if (n_clst <= MAX_FAT12) { /* Too few clusters for FAT16 */ + if (au == 0 && (au = pau * 2) <= 128) continue; /* Adjust cluster size and retry */ + LEAVE_MKFS(FR_MKFS_ABORTED); + } + } + if (fmt == FS_FAT12 && n_clst > MAX_FAT12) LEAVE_MKFS(FR_MKFS_ABORTED); /* Too many clusters for FAT12 */ + + /* Ok, it is the valid cluster configuration */ + break; + } while (1); + +#if FF_USE_TRIM + tbl[0] = b_vol; tbl[1] = b_vol + sz_vol - 1; /* Inform the device the volume area can be erased */ + disk_ioctl(pdrv, CTRL_TRIM, tbl); +#endif + /* Create FAT VBR */ + mem_set(buf, 0, ss); + mem_cpy(buf + BS_JmpBoot, "\xEB\xFE\x90" "MSDOS5.0", 11);/* Boot jump code (x86), OEM name */ + st_word(buf + BPB_BytsPerSec, ss); /* Sector size [byte] */ + buf[BPB_SecPerClus] = (BYTE)pau; /* Cluster size [sector] */ + st_word(buf + BPB_RsvdSecCnt, (WORD)sz_rsv); /* Size of reserved area */ + buf[BPB_NumFATs] = (BYTE)n_fats; /* Number of FATs */ + st_word(buf + BPB_RootEntCnt, (WORD)((fmt == FS_FAT32) ? 0 : n_rootdir)); /* Number of root directory entries */ + if (sz_vol < 0x10000) { + st_word(buf + BPB_TotSec16, (WORD)sz_vol); /* Volume size in 16-bit LBA */ + } else { + st_dword(buf + BPB_TotSec32, sz_vol); /* Volume size in 32-bit LBA */ + } + buf[BPB_Media] = 0xF8; /* Media descriptor byte */ + st_word(buf + BPB_SecPerTrk, 63); /* Number of sectors per track (for int13) */ + st_word(buf + BPB_NumHeads, 255); /* Number of heads (for int13) */ + st_dword(buf + BPB_HiddSec, b_vol); /* Volume offset in the physical drive [sector] */ + if (fmt == FS_FAT32) { + st_dword(buf + BS_VolID32, GET_FATTIME()); /* VSN */ + st_dword(buf + BPB_FATSz32, sz_fat); /* FAT size [sector] */ + st_dword(buf + BPB_RootClus32, 2); /* Root directory cluster # (2) */ + st_word(buf + BPB_FSInfo32, 1); /* Offset of FSINFO sector (VBR + 1) */ + st_word(buf + BPB_BkBootSec32, 6); /* Offset of backup VBR (VBR + 6) */ + buf[BS_DrvNum32] = 0x80; /* Drive number (for int13) */ + buf[BS_BootSig32] = 0x29; /* Extended boot signature */ + mem_cpy(buf + BS_VolLab32, "NO NAME " "FAT32 ", 19); /* Volume label, FAT signature */ + } else { + st_dword(buf + BS_VolID, GET_FATTIME()); /* VSN */ + st_word(buf + BPB_FATSz16, (WORD)sz_fat); /* FAT size [sector] */ + buf[BS_DrvNum] = 0x80; /* Drive number (for int13) */ + buf[BS_BootSig] = 0x29; /* Extended boot signature */ + mem_cpy(buf + BS_VolLab, "NO NAME " "FAT ", 19); /* Volume label, FAT signature */ + } + st_word(buf + BS_55AA, 0xAA55); /* Signature (offset is fixed here regardless of sector size) */ + if (disk_write(pdrv, buf, b_vol, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); /* Write it to the VBR sector */ + + /* Create FSINFO record if needed */ + if (fmt == FS_FAT32) { + disk_write(pdrv, buf, b_vol + 6, 1); /* Write backup VBR (VBR + 6) */ + mem_set(buf, 0, ss); + st_dword(buf + FSI_LeadSig, 0x41615252); + st_dword(buf + FSI_StrucSig, 0x61417272); + st_dword(buf + FSI_Free_Count, n_clst - 1); /* Number of free clusters */ + st_dword(buf + FSI_Nxt_Free, 2); /* Last allocated cluster# */ + st_word(buf + BS_55AA, 0xAA55); + disk_write(pdrv, buf, b_vol + 7, 1); /* Write backup FSINFO (VBR + 7) */ + disk_write(pdrv, buf, b_vol + 1, 1); /* Write original FSINFO (VBR + 1) */ + } + + /* Initialize FAT area */ + mem_set(buf, 0, (UINT)szb_buf); + sect = b_fat; /* FAT start sector */ + for (i = 0; i < n_fats; i++) { /* Initialize FATs each */ + if (fmt == FS_FAT32) { + st_dword(buf + 0, 0xFFFFFFF8); /* Entry 0 */ + st_dword(buf + 4, 0xFFFFFFFF); /* Entry 1 */ + st_dword(buf + 8, 0x0FFFFFFF); /* Entry 2 (root directory) */ + } else { + st_dword(buf + 0, (fmt == FS_FAT12) ? 0xFFFFF8 : 0xFFFFFFF8); /* Entry 0 and 1 */ + } + nsect = sz_fat; /* Number of FAT sectors */ + do { /* Fill FAT sectors */ + n = (nsect > sz_buf) ? sz_buf : nsect; + if (disk_write(pdrv, buf, sect, (UINT)n) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); + mem_set(buf, 0, ss); + sect += n; nsect -= n; + } while (nsect); + } + + /* Initialize root directory (fill with zero) */ + nsect = (fmt == FS_FAT32) ? pau : sz_dir; /* Number of root directory sectors */ + do { + n = (nsect > sz_buf) ? sz_buf : nsect; + if (disk_write(pdrv, buf, sect, (UINT)n) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); + sect += n; nsect -= n; + } while (nsect); + } + + /* Determine system ID in the partition table */ + if (FF_FS_EXFAT && fmt == FS_EXFAT) { + sys = 0x07; /* HPFS/NTFS/exFAT */ + } else { + if (fmt == FS_FAT32) { + sys = 0x0C; /* FAT32X */ + } else { + if (sz_vol >= 0x10000) { + sys = 0x06; /* FAT12/16 (large) */ + } else { + sys = (fmt == FS_FAT16) ? 0x04 : 0x01; /* FAT16 : FAT12 */ + } + } + } + + /* Update partition information */ + if (FF_MULTI_PARTITION && part != 0) { /* Created in the existing partition */ + /* Update system ID in the partition table */ + if (disk_read(pdrv, buf, 0, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); /* Read the MBR */ + buf[MBR_Table + (part - 1) * SZ_PTE + PTE_System] = sys; /* Set system ID */ + if (disk_write(pdrv, buf, 0, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); /* Write it back to the MBR */ + } else { /* Created as a new single partition */ + if (!(opt & FM_SFD)) { /* Create partition table if in FDISK format */ + mem_set(buf, 0, ss); + st_word(buf + BS_55AA, 0xAA55); /* MBR signature */ + pte = buf + MBR_Table; /* Create partition table for single partition in the drive */ + pte[PTE_Boot] = 0; /* Boot indicator */ + pte[PTE_StHead] = 1; /* Start head */ + pte[PTE_StSec] = 1; /* Start sector */ + pte[PTE_StCyl] = 0; /* Start cylinder */ + pte[PTE_System] = sys; /* System type */ + n = (b_vol + sz_vol) / (63 * 255); /* (End CHS may be invalid) */ + pte[PTE_EdHead] = 254; /* End head */ + pte[PTE_EdSec] = (BYTE)(((n >> 2) & 0xC0) | 63); /* End sector */ + pte[PTE_EdCyl] = (BYTE)n; /* End cylinder */ + st_dword(pte + PTE_StLba, b_vol); /* Start offset in LBA */ + st_dword(pte + PTE_SizLba, sz_vol); /* Size in sectors */ + if (disk_write(pdrv, buf, 0, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); /* Write it to the MBR */ + } + } + + if (disk_ioctl(pdrv, CTRL_SYNC, 0) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); + + LEAVE_MKFS(FR_OK); +} + + + +#if FF_MULTI_PARTITION +/*-----------------------------------------------------------------------*/ +/* Create Partition Table on the Physical Drive */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_fdisk ( + BYTE pdrv, /* Physical drive number */ + const DWORD* szt, /* Pointer to the size table for each partitions */ + void* work /* Pointer to the working buffer (null: use heap memory) */ +) +{ + UINT i, n, sz_cyl, tot_cyl, b_cyl, e_cyl, p_cyl; + BYTE s_hd, e_hd, *p, *buf = (BYTE*)work; + DSTATUS stat; + DWORD sz_disk, sz_part, s_part; + FRESULT res; + + + stat = disk_initialize(pdrv); + if (stat & STA_NOINIT) return FR_NOT_READY; + if (stat & STA_PROTECT) return FR_WRITE_PROTECTED; + if (disk_ioctl(pdrv, GET_SECTOR_COUNT, &sz_disk)) return FR_DISK_ERR; + + buf = (BYTE*)work; +#if FF_USE_LFN == 3 + if (!buf) buf = ff_memalloc(FF_MAX_SS); /* Use heap memory for working buffer */ +#endif + if (!buf) return FR_NOT_ENOUGH_CORE; + + /* Determine the CHS without any consideration of the drive geometry */ + for (n = 16; n < 256 && sz_disk / n / 63 > 1024; n *= 2) ; + if (n == 256) n--; + e_hd = (BYTE)(n - 1); + sz_cyl = 63 * n; + tot_cyl = sz_disk / sz_cyl; + + /* Create partition table */ + mem_set(buf, 0, FF_MAX_SS); + p = buf + MBR_Table; b_cyl = 0; + for (i = 0; i < 4; i++, p += SZ_PTE) { + p_cyl = (szt[i] <= 100U) ? (DWORD)tot_cyl * szt[i] / 100 : szt[i] / sz_cyl; /* Number of cylinders */ + if (p_cyl == 0) continue; + s_part = (DWORD)sz_cyl * b_cyl; + sz_part = (DWORD)sz_cyl * p_cyl; + if (i == 0) { /* Exclude first track of cylinder 0 */ + s_hd = 1; + s_part += 63; sz_part -= 63; + } else { + s_hd = 0; + } + e_cyl = b_cyl + p_cyl - 1; /* End cylinder */ + if (e_cyl >= tot_cyl) LEAVE_MKFS(FR_INVALID_PARAMETER); + + /* Set partition table */ + p[1] = s_hd; /* Start head */ + p[2] = (BYTE)(((b_cyl >> 2) & 0xC0) | 1); /* Start sector */ + p[3] = (BYTE)b_cyl; /* Start cylinder */ + p[4] = 0x07; /* System type (temporary setting) */ + p[5] = e_hd; /* End head */ + p[6] = (BYTE)(((e_cyl >> 2) & 0xC0) | 63); /* End sector */ + p[7] = (BYTE)e_cyl; /* End cylinder */ + st_dword(p + 8, s_part); /* Start sector in LBA */ + st_dword(p + 12, sz_part); /* Number of sectors */ + + /* Next partition */ + b_cyl += p_cyl; + } + st_word(p, 0xAA55); /* MBR signature (always at offset 510) */ + + /* Write it to the MBR */ + res = (disk_write(pdrv, buf, 0, 1) == RES_OK && disk_ioctl(pdrv, CTRL_SYNC, 0) == RES_OK) ? FR_OK : FR_DISK_ERR; + LEAVE_MKFS(res); +} + +#endif /* FF_MULTI_PARTITION */ +#endif /* FF_USE_MKFS && !FF_FS_READONLY */ + + + + +#if FF_USE_STRFUNC +#if FF_USE_LFN && FF_LFN_UNICODE && (FF_STRF_ENCODE < 0 || FF_STRF_ENCODE > 3) +#error Wrong FF_STRF_ENCODE setting +#endif +/*-----------------------------------------------------------------------*/ +/* Get a String from the File */ +/*-----------------------------------------------------------------------*/ + +TCHAR* f_gets ( + TCHAR* buff, /* Pointer to the string buffer to read */ + int len, /* Size of string buffer (items) */ + FIL* fp /* Pointer to the file object */ +) +{ + int nc = 0; + TCHAR *p = buff; + BYTE s[4]; + UINT rc; + DWORD dc; +#if FF_USE_LFN && FF_LFN_UNICODE && FF_STRF_ENCODE <= 2 + WCHAR wc; +#endif +#if FF_USE_LFN && FF_LFN_UNICODE && FF_STRF_ENCODE == 3 + UINT ct; +#endif + +#if FF_USE_LFN && FF_LFN_UNICODE /* With code conversion (Unicode API) */ + /* Make a room for the character and terminator */ + if (FF_LFN_UNICODE == 1) len -= (FF_STRF_ENCODE == 0) ? 1 : 2; + if (FF_LFN_UNICODE == 2) len -= (FF_STRF_ENCODE == 0) ? 3 : 4; + if (FF_LFN_UNICODE == 3) len -= 1; + while (nc < len) { +#if FF_STRF_ENCODE == 0 /* Read a character in ANSI/OEM */ + f_read(fp, s, 1, &rc); + if (rc != 1) break; + wc = s[0]; + if (dbc_1st((BYTE)wc)) { + f_read(fp, s, 1, &rc); + if (rc != 1 || !dbc_2nd(s[0])) continue; + wc = wc << 8 | s[0]; + } + dc = ff_oem2uni(wc, CODEPAGE); + if (dc == 0) continue; +#elif FF_STRF_ENCODE == 1 || FF_STRF_ENCODE == 2 /* Read a character in UTF-16LE/BE */ + f_read(fp, s, 2, &rc); + if (rc != 2) break; + dc = (FF_STRF_ENCODE == 1) ? ld_word(s) : s[0] << 8 | s[1]; + if (IsSurrogateL(dc)) continue; + if (IsSurrogateH(dc)) { + f_read(fp, s, 2, &rc); + if (rc != 2) break; + wc = (FF_STRF_ENCODE == 1) ? ld_word(s) : s[0] << 8 | s[1]; + if (!IsSurrogateL(wc)) continue; + dc = ((dc & 0x3FF) + 0x40) << 10 | (wc & 0x3FF); + } +#else /* Read a character in UTF-8 */ + f_read(fp, s, 1, &rc); + if (rc != 1) break; + dc = s[0]; + if (dc >= 0x80) { /* Multi-byte character? */ + ct = 0; + if ((dc & 0xE0) == 0xC0) { dc &= 0x1F; ct = 1; } /* 2-byte? */ + if ((dc & 0xF0) == 0xE0) { dc &= 0x0F; ct = 2; } /* 3-byte? */ + if ((dc & 0xF8) == 0xF0) { dc &= 0x07; ct = 3; } /* 4-byte? */ + if (ct == 0) continue; + f_read(fp, s, ct, &rc); /* Get trailing bytes */ + if (rc != ct) break; + rc = 0; + do { /* Merge trailing bytes */ + if ((s[rc] & 0xC0) != 0x80) break; + dc = dc << 6 | (s[rc] & 0x3F); + } while (++rc < ct); + if (rc != ct || dc < 0x80 || IsSurrogate(dc) || dc >= 0x110000) continue; /* Wrong encoding? */ + } +#endif + if (FF_USE_STRFUNC == 2 && dc == '\r') continue; /* Strip \r off if needed */ +#if FF_LFN_UNICODE == 1 || FF_LFN_UNICODE == 3 /* Output it in UTF-16/32 encoding */ + if (FF_LFN_UNICODE == 1 && dc >= 0x10000) { /* Out of BMP at UTF-16? */ + *p++ = (TCHAR)(0xD800 | ((dc >> 10) - 0x40)); nc++; /* Make and output high surrogate */ + dc = 0xDC00 | (dc & 0x3FF); /* Make low surrogate */ + } + *p++ = (TCHAR)dc; nc++; + if (dc == '\n') break; /* End of line? */ +#elif FF_LFN_UNICODE == 2 /* Output it in UTF-8 encoding */ + if (dc < 0x80) { /* 1-byte */ + *p++ = (TCHAR)dc; + nc++; + if (dc == '\n') break; /* End of line? */ + } else { + if (dc < 0x800) { /* 2-byte */ + *p++ = (TCHAR)(0xC0 | (dc >> 6 & 0x1F)); + *p++ = (TCHAR)(0x80 | (dc >> 0 & 0x3F)); + nc += 2; + } else { + if (dc < 0x10000) { /* 3-byte */ + *p++ = (TCHAR)(0xE0 | (dc >> 12 & 0x0F)); + *p++ = (TCHAR)(0x80 | (dc >> 6 & 0x3F)); + *p++ = (TCHAR)(0x80 | (dc >> 0 & 0x3F)); + nc += 3; + } else { /* 4-byte */ + *p++ = (TCHAR)(0xF0 | (dc >> 18 & 0x07)); + *p++ = (TCHAR)(0x80 | (dc >> 12 & 0x3F)); + *p++ = (TCHAR)(0x80 | (dc >> 6 & 0x3F)); + *p++ = (TCHAR)(0x80 | (dc >> 0 & 0x3F)); + nc += 4; + } + } + } +#endif + } + +#else /* Byte-by-byte without any conversion (ANSI/OEM API) */ + len -= 1; /* Make a room for the terminator */ + while (nc < len) { + f_read(fp, s, 1, &rc); + if (rc != 1) break; + dc = s[0]; + if (FF_USE_STRFUNC == 2 && dc == '\r') continue; + *p++ = (TCHAR)dc; nc++; + if (dc == '\n') break; + } +#endif + + *p = 0; /* Terminate the string */ + return nc ? buff : 0; /* When no data read due to EOF or error, return with error. */ +} +int f_gets_p ( + TCHAR* buff, /* Pointer to the string buffer to read */ + int len, /* Size of string buffer (items) */ + FIL* fp /* Pointer to the file object */ +) +{ + int nc = 0; + TCHAR *p = buff; + BYTE s[4]; + UINT rc; + DWORD dc; +#if FF_USE_LFN && FF_LFN_UNICODE && FF_STRF_ENCODE <= 2 + WCHAR wc; +#endif +#if FF_USE_LFN && FF_LFN_UNICODE && FF_STRF_ENCODE == 3 + UINT ct; +#endif + +#if FF_USE_LFN && FF_LFN_UNICODE /* With code conversion (Unicode API) */ + /* Make a room for the character and terminator */ + if (FF_LFN_UNICODE == 1) len -= (FF_STRF_ENCODE == 0) ? 1 : 2; + if (FF_LFN_UNICODE == 2) len -= (FF_STRF_ENCODE == 0) ? 3 : 4; + if (FF_LFN_UNICODE == 3) len -= 1; + while (nc < len) { +#if FF_STRF_ENCODE == 0 /* Read a character in ANSI/OEM */ + f_read(fp, s, 1, &rc); + if (rc != 1) break; + wc = s[0]; + if (dbc_1st((BYTE)wc)) { + f_read(fp, s, 1, &rc); + if (rc != 1 || !dbc_2nd(s[0])) continue; + wc = wc << 8 | s[0]; + } + dc = ff_oem2uni(wc, CODEPAGE); + if (dc == 0) continue; +#elif FF_STRF_ENCODE == 1 || FF_STRF_ENCODE == 2 /* Read a character in UTF-16LE/BE */ + f_read(fp, s, 2, &rc); + if (rc != 2) break; + dc = (FF_STRF_ENCODE == 1) ? ld_word(s) : s[0] << 8 | s[1]; + if (IsSurrogateL(dc)) continue; + if (IsSurrogateH(dc)) { + f_read(fp, s, 2, &rc); + if (rc != 2) break; + wc = (FF_STRF_ENCODE == 1) ? ld_word(s) : s[0] << 8 | s[1]; + if (!IsSurrogateL(wc)) continue; + dc = ((dc & 0x3FF) + 0x40) << 10 | (wc & 0x3FF); + } +#else /* Read a character in UTF-8 */ + f_read(fp, s, 1, &rc); + if (rc != 1) break; + dc = s[0]; + if (dc >= 0x80) { /* Multi-byte character? */ + ct = 0; + if ((dc & 0xE0) == 0xC0) { dc &= 0x1F; ct = 1; } /* 2-byte? */ + if ((dc & 0xF0) == 0xE0) { dc &= 0x0F; ct = 2; } /* 3-byte? */ + if ((dc & 0xF8) == 0xF0) { dc &= 0x07; ct = 3; } /* 4-byte? */ + if (ct == 0) continue; + f_read(fp, s, ct, &rc); /* Get trailing bytes */ + if (rc != ct) break; + rc = 0; + do { /* Merge trailing bytes */ + if ((s[rc] & 0xC0) != 0x80) break; + dc = dc << 6 | (s[rc] & 0x3F); + } while (++rc < ct); + if (rc != ct || dc < 0x80 || IsSurrogate(dc) || dc >= 0x110000) continue; /* Wrong encoding? */ + } +#endif + if (FF_USE_STRFUNC == 2 && dc == '\r') continue; /* Strip \r off if needed */ +#if FF_LFN_UNICODE == 1 || FF_LFN_UNICODE == 3 /* Output it in UTF-16/32 encoding */ + if (FF_LFN_UNICODE == 1 && dc >= 0x10000) { /* Out of BMP at UTF-16? */ + *p++ = (TCHAR)(0xD800 | ((dc >> 10) - 0x40)); nc++; /* Make and output high surrogate */ + dc = 0xDC00 | (dc & 0x3FF); /* Make low surrogate */ + } + *p++ = (TCHAR)dc; nc++; + if (dc == '\n') break; /* End of line? */ +#elif FF_LFN_UNICODE == 2 /* Output it in UTF-8 encoding */ + if (dc < 0x80) { /* 1-byte */ + *p++ = (TCHAR)dc; + nc++; + if (dc == '\n') break; /* End of line? */ + } else { + if (dc < 0x800) { /* 2-byte */ + *p++ = (TCHAR)(0xC0 | (dc >> 6 & 0x1F)); + *p++ = (TCHAR)(0x80 | (dc >> 0 & 0x3F)); + nc += 2; + } else { + if (dc < 0x10000) { /* 3-byte */ + *p++ = (TCHAR)(0xE0 | (dc >> 12 & 0x0F)); + *p++ = (TCHAR)(0x80 | (dc >> 6 & 0x3F)); + *p++ = (TCHAR)(0x80 | (dc >> 0 & 0x3F)); + nc += 3; + } else { /* 4-byte */ + *p++ = (TCHAR)(0xF0 | (dc >> 18 & 0x07)); + *p++ = (TCHAR)(0x80 | (dc >> 12 & 0x3F)); + *p++ = (TCHAR)(0x80 | (dc >> 6 & 0x3F)); + *p++ = (TCHAR)(0x80 | (dc >> 0 & 0x3F)); + nc += 4; + } + } + } +#endif + } + +#else /* Byte-by-byte without any conversion (ANSI/OEM API) */ + len -= 1; /* Make a room for the terminator */ + while (nc < len) { + f_read(fp, s, 1, &rc); + if (rc != 1) break; + dc = s[0]; + // if (FF_USE_STRFUNC == 2 && dc == '\r') continue; + *p++ = (TCHAR)dc; nc++; + if (dc == '\n') break; + } +#endif + + *p = 0; /* Terminate the string */ + return nc; /* When no data read due to EOF or error, return with error. */ +} + + + + +#if !FF_FS_READONLY +#include +/*-----------------------------------------------------------------------*/ +/* Put a Character to the File */ +/*-----------------------------------------------------------------------*/ + +typedef struct { /* Putchar output buffer and work area */ + FIL *fp; /* Ptr to the writing file */ + int idx, nchr; /* Write index of buf[] (-1:error), number of encoding units written */ +#if FF_USE_LFN && FF_LFN_UNICODE == 1 + WCHAR hs; +#elif FF_USE_LFN && FF_LFN_UNICODE == 2 + BYTE bs[4]; + UINT wi, ct; +#endif + BYTE buf[64]; /* Write buffer */ +} putbuff; + + +static void putc_bfd ( /* Buffered write with code conversion */ + putbuff* pb, + TCHAR c +) +{ + UINT n; + int i, nc; +#if FF_USE_LFN && FF_LFN_UNICODE + WCHAR hs, wc; +#if FF_LFN_UNICODE == 2 + DWORD dc; + TCHAR *tp; +#endif +#endif + + if (FF_USE_STRFUNC == 2 && c == '\n') { /* LF -> CRLF conversion */ + putc_bfd(pb, '\r'); + } + + i = pb->idx; /* Write index of pb->buf[] */ + if (i < 0) return; + nc = pb->nchr; /* Write unit counter */ + +#if FF_USE_LFN && FF_LFN_UNICODE +#if FF_LFN_UNICODE == 1 /* UTF-16 input */ + if (IsSurrogateH(c)) { + pb->hs = c; return; + } + hs = pb->hs; pb->hs = 0; + if (hs != 0) { + if (!IsSurrogateL(c)) hs = 0; + } else { + if (IsSurrogateL(c)) return; + } + wc = c; +#elif FF_LFN_UNICODE == 2 /* UTF-8 input */ + for (;;) { + if (pb->ct == 0) { /* Out of multi-byte sequence? */ + pb->bs[pb->wi = 0] = (BYTE)c; /* Save 1st byte */ + if ((BYTE)c < 0x80) break; /* 1-byte? */ + if (((BYTE)c & 0xE0) == 0xC0) pb->ct = 1; /* 2-byte? */ + if (((BYTE)c & 0xF0) == 0xE0) pb->ct = 2; /* 3-byte? */ + if (((BYTE)c & 0xF1) == 0xF0) pb->ct = 3; /* 4-byte? */ + return; + } else { /* In the multi-byte sequence */ + if (((BYTE)c & 0xC0) != 0x80) { /* Broken sequence? */ + pb->ct = 0; continue; + } + pb->bs[++pb->wi] = (BYTE)c; /* Save the trailing byte */ + if (--pb->ct == 0) break; /* End of multi-byte sequence? */ + return; + } + } + tp = (TCHAR*)pb->bs; + dc = tchar2uni(&tp); /* UTF-8 ==> UTF-16 */ + if (dc == 0xFFFFFFFF) return; + wc = (WCHAR)dc; + hs = (WCHAR)(dc >> 16); +#elif FF_LFN_UNICODE == 3 /* UTF-32 input */ + if (IsSurrogate(c) || c >= 0x110000) return; + if (c >= 0x10000) { + hs = (WCHAR)(0xD800 | ((c >> 10) - 0x40)); /* Make high surrogate */ + wc = 0xDC00 | (c & 0x3FF); /* Make low surrogate */ + } else { + hs = 0; + wc = (WCHAR)c; + } +#endif + +#if FF_STRF_ENCODE == 1 /* Write a character in UTF-16LE */ + if (hs != 0) { + st_word(&pb->buf[i], hs); + i += 2; + nc++; + } + st_word(&pb->buf[i], wc); + i += 2; +#elif FF_STRF_ENCODE == 2 /* Write a character in UTF-16BE */ + if (hs != 0) { + pb->buf[i++] = (BYTE)(hs >> 8); + pb->buf[i++] = (BYTE)hs; + nc++; + } + pb->buf[i++] = (BYTE)(wc >> 8); + pb->buf[i++] = (BYTE)wc; +#elif FF_STRF_ENCODE == 3 /* Write it in UTF-8 */ + if (hs != 0) { /* 4-byte */ + nc += 3; + hs = (hs & 0x3FF) + 0x40; + pb->buf[i++] = (BYTE)(0xF0 | hs >> 8); + pb->buf[i++] = (BYTE)(0x80 | (hs >> 2 & 0x3F)); + pb->buf[i++] = (BYTE)(0x80 | (hs & 3) << 4 | (wc >> 6 & 0x0F)); + pb->buf[i++] = (BYTE)(0x80 | (wc & 0x3F)); + } else { + if (wc < 0x80) { /* 1-byte */ + pb->buf[i++] = (BYTE)wc; + } else { + if (wc < 0x800) { /* 2-byte */ + nc += 1; + pb->buf[i++] = (BYTE)(0xC0 | wc >> 6); + } else { /* 3-byte */ + nc += 2; + pb->buf[i++] = (BYTE)(0xE0 | wc >> 12); + pb->buf[i++] = (BYTE)(0x80 | (wc >> 6 & 0x3F)); + } + pb->buf[i++] = (BYTE)(0x80 | (wc & 0x3F)); + } + } +#else /* Write it in ANSI/OEM */ + if (hs != 0) return; + wc = ff_uni2oem(wc, CODEPAGE); /* UTF-16 ==> ANSI/OEM */ + if (wc == 0) return; + if (wc >= 0x100) { + pb->buf[i++] = (BYTE)(wc >> 8); nc++; + } + pb->buf[i++] = (BYTE)wc; +#endif + +#else /* ANSI/OEM input (without re-encode) */ + pb->buf[i++] = (BYTE)c; +#endif + + if (i >= (int)(sizeof pb->buf) - 4) { /* Write buffered characters to the file */ + f_write(pb->fp, pb->buf, (UINT)i, &n); + i = (n == (UINT)i) ? 0 : -1; + } + pb->idx = i; + pb->nchr = nc + 1; +} + + +static int putc_flush ( /* Flush left characters in the buffer */ + putbuff* pb +) +{ + UINT nw; + + if ( pb->idx >= 0 /* Flush buffered characters to the file */ + && f_write(pb->fp, pb->buf, (UINT)pb->idx, &nw) == FR_OK + && (UINT)pb->idx == nw) return pb->nchr; + return EOF; +} + + +static void putc_init ( /* Initialize write buffer */ + putbuff* pb, + FIL* fp +) +{ + mem_set(pb, 0, sizeof (putbuff)); + pb->fp = fp; +} + + + +int f_putc ( + TCHAR c, /* A character to be output */ + FIL* fp /* Pointer to the file object */ +) +{ + putbuff pb; + + + putc_init(&pb, fp); + putc_bfd(&pb, c); /* Put the character */ + return putc_flush(&pb); +} + + + + +/*-----------------------------------------------------------------------*/ +/* Put a String to the File */ +/*-----------------------------------------------------------------------*/ + +int f_puts ( + const TCHAR* str, /* Pointer to the string to be output */ + FIL* fp /* Pointer to the file object */ +) +{ + putbuff pb; + + + putc_init(&pb, fp); + while (*str) putc_bfd(&pb, *str++); /* Put the string */ + return putc_flush(&pb); +} + + + + +/*-----------------------------------------------------------------------*/ +/* Put a Formatted String to the File */ +/*-----------------------------------------------------------------------*/ + +int f_printf ( + FIL* fp, /* Pointer to the file object */ + const TCHAR* fmt, /* Pointer to the format string */ + ... /* Optional arguments... */ +) +{ + va_list arp; + putbuff pb; + BYTE f, r; + UINT i, j, w; + DWORD v; + TCHAR c, d, str[32], *p; + + + putc_init(&pb, fp); + + va_start(arp, fmt); + + for (;;) { + c = *fmt++; + if (c == 0) break; /* End of string */ + if (c != '%') { /* Non escape character */ + putc_bfd(&pb, c); + continue; + } + w = f = 0; + c = *fmt++; + if (c == '0') { /* Flag: '0' padding */ + f = 1; c = *fmt++; + } else { + if (c == '-') { /* Flag: left justified */ + f = 2; c = *fmt++; + } + } + if (c == '*') { /* Minimum width by argument */ + w = va_arg(arp, int); + c = *fmt++; + } else { + while (IsDigit(c)) { /* Minimum width */ + w = w * 10 + c - '0'; + c = *fmt++; + } + } + if (c == 'l' || c == 'L') { /* Type prefix: Size is long int */ + f |= 4; c = *fmt++; + } + if (c == 0) break; + d = c; + if (IsLower(d)) d -= 0x20; + switch (d) { /* Atgument type is... */ + case 'S' : /* String */ + p = va_arg(arp, TCHAR*); + for (j = 0; p[j]; j++) ; + if (!(f & 2)) { /* Right padded */ + while (j++ < w) putc_bfd(&pb, ' ') ; + } + while (*p) putc_bfd(&pb, *p++) ; /* String body */ + while (j++ < w) putc_bfd(&pb, ' ') ; /* Left padded */ + continue; + + case 'C' : /* Character */ + putc_bfd(&pb, (TCHAR)va_arg(arp, int)); continue; + + case 'B' : /* Unsigned binary */ + r = 2; break; + + case 'O' : /* Unsigned octal */ + r = 8; break; + + case 'D' : /* Signed decimal */ + case 'U' : /* Unsigned decimal */ + r = 10; break; + + case 'X' : /* Unsigned hexdecimal */ + r = 16; break; + + default: /* Unknown type (pass-through) */ + putc_bfd(&pb, c); continue; + } + + /* Get an argument and put it in numeral */ + v = (f & 4) ? (DWORD)va_arg(arp, long) : ((d == 'D') ? (DWORD)(long)va_arg(arp, int) : (DWORD)va_arg(arp, unsigned int)); + if (d == 'D' && (v & 0x80000000)) { + v = 0 - v; + f |= 8; + } + i = 0; + do { + d = (TCHAR)(v % r); v /= r; + if (d > 9) d += (c == 'x') ? 0x27 : 0x07; + str[i++] = d + '0'; + } while (v && i < sizeof str / sizeof *str); + if (f & 8) str[i++] = '-'; + j = i; d = (f & 1) ? '0' : ' '; + if (!(f & 2)) { + while (j++ < w) putc_bfd(&pb, d); /* Right pad */ + } + do { + putc_bfd(&pb, str[--i]); /* Number body */ + } while (i); + while (j++ < w) putc_bfd(&pb, d); /* Left pad */ + } + + va_end(arp); + + return putc_flush(&pb); +} + +#endif /* !FF_FS_READONLY */ +#endif /* FF_USE_STRFUNC */ + + + +#if FF_CODE_PAGE == 0 +/*-----------------------------------------------------------------------*/ +/* Set Active Codepage for the Path Name */ +/*-----------------------------------------------------------------------*/ + +FRESULT f_setcp ( + WORD cp /* Value to be set as active code page */ +) +{ + static const WORD validcp[] = { 437, 720, 737, 771, 775, 850, 852, 857, 860, 861, 862, 863, 864, 865, 866, 869, 932, 936, 949, 950, 0}; + static const BYTE* const tables[] = {Ct437, Ct720, Ct737, Ct771, Ct775, Ct850, Ct852, Ct857, Ct860, Ct861, Ct862, Ct863, Ct864, Ct865, Ct866, Ct869, Dc932, Dc936, Dc949, Dc950, 0}; + UINT i; + + + for (i = 0; validcp[i] != 0 && validcp[i] != cp; i++) ; /* Find the code page */ + if (validcp[i] != cp) return FR_INVALID_PARAMETER; /* Not found? */ + + CodePage = cp; + if (cp >= 900) { /* DBCS */ + ExCvt = 0; + DbcTbl = tables[i]; + } else { /* SBCS */ + ExCvt = tables[i]; + DbcTbl = 0; + } + return FR_OK; +} +#endif /* FF_CODE_PAGE == 0 */ + diff --git a/Marlin/lib/fat_fs/src/ff.h b/Marlin/lib/fat_fs/src/ff.h new file mode 100644 index 0000000000..6c541811b5 --- /dev/null +++ b/Marlin/lib/fat_fs/src/ff.h @@ -0,0 +1,406 @@ +/*----------------------------------------------------------------------------/ +/ FatFs - Generic FAT Filesystem module R0.13c / +/-----------------------------------------------------------------------------/ +/ +/ Copyright (C) 2018, ChaN, all right reserved. +/ +/ FatFs module is an open source software. Redistribution and use of FatFs in +/ source and binary forms, with or without modification, are permitted provided +/ that the following condition is met: + +/ 1. Redistributions of source code must retain the above copyright notice, +/ this condition and the following disclaimer. +/ +/ This software is provided by the copyright holder and contributors "AS IS" +/ and any warranties related to this software are DISCLAIMED. +/ The copyright owner or contributors be NOT LIABLE for any damages caused +/ by use of this software. +/ +/----------------------------------------------------------------------------*/ + + +#ifndef FF_DEFINED +#define FF_DEFINED 86604 /* Revision ID */ + +#ifdef __cplusplus +extern "C" { +#endif + +#include "ffconf.h" /* FatFs configuration options */ + +#if FF_DEFINED != FFCONF_DEF +#error Wrong configuration file (ffconf.h). +#endif + + +/* Integer types used for FatFs API */ + +#if defined(_WIN32) /* Main development platform */ +#define FF_INTDEF 2 +#include +typedef unsigned __int64 QWORD; +#elif (defined(__STDC_VERSION__) && __STDC_VERSION__ >= 199901L) || defined(__cplusplus) /* C99 or later */ +#define FF_INTDEF 2 +#include +typedef unsigned int UINT; /* int must be 16-bit or 32-bit */ +typedef unsigned char BYTE; /* char must be 8-bit */ +typedef uint16_t WORD; /* 16-bit unsigned integer */ +typedef uint16_t WCHAR; /* 16-bit unsigned integer */ +typedef uint32_t DWORD; /* 32-bit unsigned integer */ +typedef uint64_t QWORD; /* 64-bit unsigned integer */ +#else /* Earlier than C99 */ +#define FF_INTDEF 1 +typedef unsigned int UINT; /* int must be 16-bit or 32-bit */ +typedef unsigned char BYTE; /* char must be 8-bit */ +typedef unsigned short WORD; /* 16-bit unsigned integer */ +typedef unsigned short WCHAR; /* 16-bit unsigned integer */ +typedef unsigned long DWORD; /* 32-bit unsigned integer */ +#endif + + +/* Definitions of volume management */ + +#if FF_MULTI_PARTITION /* Multiple partition configuration */ +typedef struct { + BYTE pd; /* Physical drive number */ + BYTE pt; /* Partition: 0:Auto detect, 1-4:Forced partition) */ +} PARTITION; +extern PARTITION VolToPart[]; /* Volume - Partition resolution table */ +#endif + +#if FF_STR_VOLUME_ID +#ifndef FF_VOLUME_STRS +extern const char* VolumeStr[FF_VOLUMES]; /* User defied volume ID */ +#endif +#endif + + + +/* Type of path name strings on FatFs API */ + +#ifndef _INC_TCHAR +#define _INC_TCHAR + +#if FF_USE_LFN && FF_LFN_UNICODE == 1 /* Unicode in UTF-16 encoding */ +typedef WCHAR TCHAR; +#define _T(x) L ## x +#define _TEXT(x) L ## x +#elif FF_USE_LFN && FF_LFN_UNICODE == 2 /* Unicode in UTF-8 encoding */ +typedef char TCHAR; +#define _T(x) u8 ## x +#define _TEXT(x) u8 ## x +#elif FF_USE_LFN && FF_LFN_UNICODE == 3 /* Unicode in UTF-32 encoding */ +typedef DWORD TCHAR; +#define _T(x) U ## x +#define _TEXT(x) U ## x +#elif FF_USE_LFN && (FF_LFN_UNICODE < 0 || FF_LFN_UNICODE > 3) +#error Wrong FF_LFN_UNICODE setting +#else /* ANSI/OEM code in SBCS/DBCS */ +typedef char TCHAR; +#define _T(x) x +#define _TEXT(x) x +#endif + +#endif + + + +/* Type of file size variables */ + +#if FF_FS_EXFAT +#if FF_INTDEF != 2 +#error exFAT feature wants C99 or later +#endif +typedef QWORD FSIZE_t; +#else +typedef DWORD FSIZE_t; +#endif + + + +/* Filesystem object structure (FATFS) */ + +typedef struct { + BYTE fs_type; /* Filesystem type (0:not mounted) */ + BYTE pdrv; /* Associated physical drive */ + BYTE n_fats; /* Number of FATs (1 or 2) */ + BYTE wflag; /* win[] flag (b0:dirty) */ + BYTE fsi_flag; /* FSINFO flags (b7:disabled, b0:dirty) */ + WORD id; /* Volume mount ID */ + WORD n_rootdir; /* Number of root directory entries (FAT12/16) */ + WORD csize; /* Cluster size [sectors] */ +#if FF_MAX_SS != FF_MIN_SS + WORD ssize; /* Sector size (512, 1024, 2048 or 4096) */ +#endif +#if FF_USE_LFN + WCHAR* lfnbuf; /* LFN working buffer */ +#endif +#if FF_FS_EXFAT + BYTE* dirbuf; /* Directory entry block scratchpad buffer for exFAT */ +#endif +#if FF_FS_REENTRANT + FF_SYNC_t sobj; /* Identifier of sync object */ +#endif +#if !FF_FS_READONLY + DWORD last_clst; /* Last allocated cluster */ + DWORD free_clst; /* Number of free clusters */ +#endif +#if FF_FS_RPATH + DWORD cdir; /* Current directory start cluster (0:root) */ +#if FF_FS_EXFAT + DWORD cdc_scl; /* Containing directory start cluster (invalid when cdir is 0) */ + DWORD cdc_size; /* b31-b8:Size of containing directory, b7-b0: Chain status */ + DWORD cdc_ofs; /* Offset in the containing directory (invalid when cdir is 0) */ +#endif +#endif + DWORD n_fatent; /* Number of FAT entries (number of clusters + 2) */ + DWORD fsize; /* Size of an FAT [sectors] */ + DWORD volbase; /* Volume base sector */ + DWORD fatbase; /* FAT base sector */ + DWORD dirbase; /* Root directory base sector/cluster */ + DWORD database; /* Data base sector */ +#if FF_FS_EXFAT + DWORD bitbase; /* Allocation bitmap base sector */ +#endif + DWORD winsect; /* Current sector appearing in the win[] */ + BYTE win[FF_MAX_SS]; /* Disk access window for Directory, FAT (and file data at tiny cfg) */ +} FATFS; + + + +/* Object ID and allocation information (FFOBJID) */ + +typedef struct { + FATFS* fs; /* Pointer to the hosting volume of this object */ + WORD id; /* Hosting volume mount ID */ + BYTE attr; /* Object attribute */ + BYTE stat; /* Object chain status (b1-0: =0:not contiguous, =2:contiguous, =3:fragmented in this session, b2:sub-directory stretched) */ + DWORD sclust; /* Object data start cluster (0:no cluster or root directory) */ + FSIZE_t objsize; /* Object size (valid when sclust != 0) */ +#if FF_FS_EXFAT + DWORD n_cont; /* Size of first fragment - 1 (valid when stat == 3) */ + DWORD n_frag; /* Size of last fragment needs to be written to FAT (valid when not zero) */ + DWORD c_scl; /* Containing directory start cluster (valid when sclust != 0) */ + DWORD c_size; /* b31-b8:Size of containing directory, b7-b0: Chain status (valid when c_scl != 0) */ + DWORD c_ofs; /* Offset in the containing directory (valid when file object and sclust != 0) */ +#endif +#if FF_FS_LOCK + UINT lockid; /* File lock ID origin from 1 (index of file semaphore table Files[]) */ +#endif +} FFOBJID; + + + +/* File object structure (FIL) */ + +typedef struct { + FFOBJID obj; /* Object identifier (must be the 1st member to detect invalid object pointer) */ + BYTE flag; /* File status flags */ + BYTE err; /* Abort flag (error code) */ + FSIZE_t fptr; /* File read/write pointer (Zeroed on file open) */ + DWORD clust; /* Current cluster of fpter (invalid when fptr is 0) */ + DWORD sect; /* Sector number appearing in buf[] (0:invalid) */ +#if !FF_FS_READONLY + DWORD dir_sect; /* Sector number containing the directory entry (not used at exFAT) */ + BYTE* dir_ptr; /* Pointer to the directory entry in the win[] (not used at exFAT) */ +#endif +#if FF_USE_FASTSEEK + DWORD* cltbl; /* Pointer to the cluster link map table (nulled on open, set by application) */ +#endif +#if !FF_FS_TINY + BYTE buf[FF_MAX_SS]; /* File private data read/write window */ +#endif +} FIL; + + + +/* Directory object structure (DIR) */ + +typedef struct { + FFOBJID obj; /* Object identifier */ + DWORD dptr; /* Current read/write offset */ + DWORD clust; /* Current cluster */ + DWORD sect; /* Current sector (0:Read operation has terminated) */ + BYTE* dir; /* Pointer to the directory item in the win[] */ + BYTE fn[12]; /* SFN (in/out) {body[8],ext[3],status[1]} */ +#if FF_USE_LFN + DWORD blk_ofs; /* Offset of current entry block being processed (0xFFFFFFFF:Invalid) */ +#endif +#if FF_USE_FIND + const TCHAR* pat; /* Pointer to the name matching pattern */ +#endif +} DIR; + + + +/* File information structure (FILINFO) */ + +typedef struct { + FSIZE_t fsize; /* File size */ + WORD fdate; /* Modified date */ + WORD ftime; /* Modified time */ + BYTE fattrib; /* File attribute */ +#if FF_USE_LFN + TCHAR altname[FF_SFN_BUF + 1];/* Altenative file name */ + TCHAR fname[FF_LFN_BUF + 1]; /* Primary file name */ +#else + TCHAR fname[12 + 1]; /* File name */ +#endif +} FILINFO; + + + +/* File function return code (FRESULT) */ + +typedef enum { + FR_OK = 0, /* (0) Succeeded */ + FR_DISK_ERR, /* (1) A hard error occurred in the low level disk I/O layer */ + FR_INT_ERR, /* (2) Assertion failed */ + FR_NOT_READY, /* (3) The physical drive cannot work */ + FR_NO_FILE, /* (4) Could not find the file */ + FR_NO_PATH, /* (5) Could not find the path */ + FR_INVALID_NAME, /* (6) The path name format is invalid */ + FR_DENIED, /* (7) Access denied due to prohibited access or directory full */ + FR_EXIST, /* (8) Access denied due to prohibited access */ + FR_INVALID_OBJECT, /* (9) The file/directory object is invalid */ + FR_WRITE_PROTECTED, /* (10) The physical drive is write protected */ + FR_INVALID_DRIVE, /* (11) The logical drive number is invalid */ + FR_NOT_ENABLED, /* (12) The volume has no work area */ + FR_NO_FILESYSTEM, /* (13) There is no valid FAT volume */ + FR_MKFS_ABORTED, /* (14) The f_mkfs() aborted due to any problem */ + FR_TIMEOUT, /* (15) Could not get a grant to access the volume within defined period */ + FR_LOCKED, /* (16) The operation is rejected according to the file sharing policy */ + FR_NOT_ENOUGH_CORE, /* (17) LFN working buffer could not be allocated */ + FR_TOO_MANY_OPEN_FILES, /* (18) Number of open files > FF_FS_LOCK */ + FR_INVALID_PARAMETER /* (19) Given parameter is invalid */ +} FRESULT; + + + +/*--------------------------------------------------------------*/ +/* FatFs module application interface */ + +FRESULT f_open (FIL* fp, const TCHAR* path, BYTE mode); /* Open or create a file */ +FRESULT f_close (FIL* fp); /* Close an open file object */ +FRESULT f_read (FIL* fp, void* buff, UINT btr, UINT* br); /* Read data from the file */ +FRESULT f_write (FIL* fp, const void* buff, UINT btw, UINT* bw); /* Write data to the file */ +FRESULT f_lseek (FIL* fp, FSIZE_t ofs); /* Move file pointer of the file object */ +FRESULT f_truncate (FIL* fp); /* Truncate the file */ +FRESULT f_sync (FIL* fp); /* Flush cached data of the writing file */ +FRESULT f_opendir (DIR* dp, const TCHAR* path); /* Open a directory */ +FRESULT f_closedir (DIR* dp); /* Close an open directory */ +FRESULT f_readdir (DIR* dp, FILINFO* fno); /* Read a directory item */ +FRESULT f_findfirst (DIR* dp, FILINFO* fno, const TCHAR* path, const TCHAR* pattern); /* Find first file */ +FRESULT f_findnext (DIR* dp, FILINFO* fno); /* Find next file */ +FRESULT f_mkdir (const TCHAR* path); /* Create a sub directory */ +FRESULT f_unlink (const TCHAR* path); /* Delete an existing file or directory */ +FRESULT f_rename (const TCHAR* path_old, const TCHAR* path_new); /* Rename/Move a file or directory */ +FRESULT f_stat (const TCHAR* path, FILINFO* fno); /* Get file status */ +FRESULT f_chmod (const TCHAR* path, BYTE attr, BYTE mask); /* Change attribute of a file/dir */ +FRESULT f_utime (const TCHAR* path, const FILINFO* fno); /* Change timestamp of a file/dir */ +FRESULT f_chdir (const TCHAR* path); /* Change current directory */ +FRESULT f_chdrive (const TCHAR* path); /* Change current drive */ +FRESULT f_getcwd (TCHAR* buff, UINT len); /* Get current directory */ +FRESULT f_getfree (const TCHAR* path, DWORD* nclst, FATFS** fatfs); /* Get number of free clusters on the drive */ +FRESULT f_getlabel (const TCHAR* path, TCHAR* label, DWORD* vsn); /* Get volume label */ +FRESULT f_setlabel (const TCHAR* label); /* Set volume label */ +FRESULT f_forward (FIL* fp, UINT(*func)(const BYTE*,UINT), UINT btf, UINT* bf); /* Forward data to the stream */ +FRESULT f_expand (FIL* fp, FSIZE_t szf, BYTE opt); /* Allocate a contiguous block to the file */ +FRESULT f_mount (FATFS* fs, const TCHAR* path, BYTE opt); /* Mount/Unmount a logical drive */ +FRESULT f_mkfs (const TCHAR* path, BYTE opt, DWORD au, void* work, UINT len); /* Create a FAT volume */ +FRESULT f_fdisk (BYTE pdrv, const DWORD* szt, void* work); /* Divide a physical drive into some partitions */ +FRESULT f_setcp (WORD cp); /* Set current code page */ +int f_putc (TCHAR c, FIL* fp); /* Put a character to the file */ +int f_puts (const TCHAR* str, FIL* cp); /* Put a string to the file */ +int f_printf (FIL* fp, const TCHAR* str, ...); /* Put a formatted string to the file */ +TCHAR* f_gets (TCHAR* buff, int len, FIL* fp); /* Get a string from the file */ +int f_gets_p (TCHAR* buff, int len, FIL* fp); /* Get a string from the file, return read size */ + +#define f_eof(fp) ((int)((fp)->fptr == (fp)->obj.objsize)) +#define f_error(fp) ((fp)->err) +#define f_tell(fp) ((fp)->fptr) +#define f_size(fp) ((fp)->obj.objsize) +#define f_rewind(fp) f_lseek((fp), 0) +#define f_rewinddir(dp) f_readdir((dp), 0) +#define f_rmdir(path) f_unlink(path) +#define f_unmount(path) f_mount(0, path, 0) + +#ifndef EOF +#define EOF (-1) +#endif + + + + +/*--------------------------------------------------------------*/ +/* Additional user defined functions */ + +/* RTC function */ +#if !FF_FS_READONLY && !FF_FS_NORTC +DWORD get_fattime (void); +#endif + +/* LFN support functions */ +#if FF_USE_LFN >= 1 /* Code conversion (defined in unicode.c) */ +WCHAR ff_oem2uni (WCHAR oem, WORD cp); /* OEM code to Unicode conversion */ +WCHAR ff_uni2oem (DWORD uni, WORD cp); /* Unicode to OEM code conversion */ +DWORD ff_wtoupper (DWORD uni); /* Unicode upper-case conversion */ +#endif +#if FF_USE_LFN == 3 /* Dynamic memory allocation */ +void* ff_memalloc (UINT msize); /* Allocate memory block */ +void ff_memfree (void* mblock); /* Free memory block */ +#endif + +/* Sync functions */ +#if FF_FS_REENTRANT +int ff_cre_syncobj (BYTE vol, FF_SYNC_t* sobj); /* Create a sync object */ +int ff_req_grant (FF_SYNC_t sobj); /* Lock sync object */ +void ff_rel_grant (FF_SYNC_t sobj); /* Unlock sync object */ +int ff_del_syncobj (FF_SYNC_t sobj); /* Delete a sync object */ +#endif + + + + +/*--------------------------------------------------------------*/ +/* Flags and offset address */ + + +/* File access mode and open method flags (3rd argument of f_open) */ +#define FA_READ 0x01 +#define FA_WRITE 0x02 +#define FA_OPEN_EXISTING 0x00 +#define FA_CREATE_NEW 0x04 +#define FA_CREATE_ALWAYS 0x08 +#define FA_OPEN_ALWAYS 0x10 +#define FA_OPEN_APPEND 0x30 + +/* Fast seek controls (2nd argument of f_lseek) */ +#define CREATE_LINKMAP ((FSIZE_t)0 - 1) + +/* Format options (2nd argument of f_mkfs) */ +#define FM_FAT 0x01 +#define FM_FAT32 0x02 +#define FM_EXFAT 0x04 +#define FM_ANY 0x07 +#define FM_SFD 0x08 + +/* Filesystem type (FATFS.fs_type) */ +#define FS_FAT12 1 +#define FS_FAT16 2 +#define FS_FAT32 3 +#define FS_EXFAT 4 + +/* File attribute bits for directory entry (FILINFO.fattrib) */ +#define AM_RDO 0x01 /* Read only */ +#define AM_HID 0x02 /* Hidden */ +#define AM_SYS 0x04 /* System */ +#define AM_DIR 0x10 /* Directory */ +#define AM_ARC 0x20 /* Archive */ + + +#ifdef __cplusplus +} +#endif + +#endif /* FF_DEFINED */ diff --git a/Marlin/lib/fat_fs/src/ff_gen_drv.c b/Marlin/lib/fat_fs/src/ff_gen_drv.c new file mode 100644 index 0000000000..920f2ca99c --- /dev/null +++ b/Marlin/lib/fat_fs/src/ff_gen_drv.c @@ -0,0 +1,130 @@ +/*! + \file ff_gen_drv.c + \brief FatFs generic low level driver + + \version 2018-10-08, V1.0.0, firmware for GD32 USBFS&USBHS +*/ + +/* + Copyright (c) 2018, GigaDevice Semiconductor Inc. + + All rights reserved. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + +#include "ff_gen_drv.h" + + +Disk_drvTypeDef disk = {{0},{0},{0},0}; + +/*! + \brief Links a compatible diskio driver/lun id and increments the number of active linked drivers + \note The number of linked drivers (volumes) is up to 10 due to FatFs limits + \param[in] drv: pointer to the disk IO Driver structure + \param[in] path: pointer to the logical drive path + \param[in] lun: only used for USB Key Disk to add multi-lun management else the parameter must be equal to 0 + \param[out] none + \retval Returns 0 in case of success, otherwise 1 +*/ +uint8_t FATFS_LinkDriverEx(const Diskio_drvTypeDef *drv, char *path, uint8_t lun) +{ + uint8_t ret = 1; + uint8_t DiskNum = 0; + + if(disk.nbr < _VOLUMES) { + disk.is_initialized[disk.nbr] = 0; + disk.drv[disk.nbr] = drv; + disk.lun[disk.nbr] = lun; + DiskNum = disk.nbr++; + path[0] = DiskNum + '0'; + path[1] = ':'; + path[2] = '/'; + path[3] = 0; + ret = 0; + } + + return ret; +} + +/*! + \brief Links a compatible diskio driver/lun id and increments the number of active linked drivers + \note The number of linked drivers (volumes) is up to 10 due to FatFs limits + \param[in] drv: pointer to the disk IO Driver structure + \param[in] path: pointer to the logical drive path + \param[out] none + \retval Returns 0 in case of success, otherwise 1 +*/ +uint8_t FATFS_LinkDriver(const Diskio_drvTypeDef *drv, char *path) +{ + return FATFS_LinkDriverEx(drv, path, 0); +} + +/*! + \brief Unlinks a diskio driver and decrements the number of active linked drivers + \param[in] path: pointer to the logical drive path + \param[in] lun: only used for USB Key Disk to add multi-lun management else the parameter must be equal to 0 + \param[out] none + \retval Returns 0 in case of success, otherwise 1 +*/ +uint8_t FATFS_UnLinkDriverEx(char *path, uint8_t lun) +{ + uint8_t DiskNum = 0; + uint8_t ret = 1; + + if (disk.nbr >= 1) { + DiskNum = path[0] - '0'; + + if (disk.drv[DiskNum] != 0) { + disk.drv[DiskNum] = 0; + disk.lun[DiskNum] = 0; + disk.nbr--; + ret = 0; + } + } + + return ret; +} + +/*! + \brief Unlinks a diskio driver and decrements the number of active linked drivers + \param[in] path: pointer to the logical drive path + \param[out] none + \retval Returns 0 in case of success, otherwise 1 +*/ +uint8_t FATFS_UnLinkDriver(char *path) +{ + return FATFS_UnLinkDriverEx(path, 0); +} + +/*! + \brief Gets number of linked drivers to the FatFs module + \param[in] none + \param[out] none + \retval Number of attached drivers +*/ +uint8_t FATFS_GetAttachedDriversNbr(void) +{ + return disk.nbr; +} diff --git a/Marlin/lib/fat_fs/src/ff_gen_drv.h b/Marlin/lib/fat_fs/src/ff_gen_drv.h new file mode 100644 index 0000000000..527406d1d9 --- /dev/null +++ b/Marlin/lib/fat_fs/src/ff_gen_drv.h @@ -0,0 +1,86 @@ +/*! + \file ff_gen_drv.h + \brief header for ff_gen_drv.c module + + \version 2018-10-08, V1.0.0, firmware for GD32 USBFS&USBHS +*/ + +/* + Copyright (c) 2018, GigaDevice Semiconductor Inc. + + All rights reserved. + + Redistribution and use in source and binary forms, with or without modification, +are permitted provided that the following conditions are met: + + 1. Redistributions of source code must retain the above copyright notice, this + list of conditions and the following disclaimer. + 2. Redistributions in binary form must reproduce the above copyright notice, + this list of conditions and the following disclaimer in the documentation + and/or other materials provided with the distribution. + 3. Neither the name of the copyright holder nor the names of its contributors + may be used to endorse or promote products derived from this software without + specific prior written permission. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED +WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. +IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, +INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT +NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR +PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, +WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY +OF SUCH DAMAGE. +*/ + + +#ifndef __FF_GEN_DRV_H +#define __FF_GEN_DRV_H + +#ifdef __cplusplus + extern "C" { +#endif + +#include "diskio.h" +#include "ff.h" +#include "stdint.h" + +/* Disk IO Driver structure definition */ +typedef struct +{ + DSTATUS (*disk_initialize) (BYTE); /*!< Initialize Disk Drive */ + DSTATUS (*disk_status) (BYTE); /*!< Get Disk Status */ + DRESULT (*disk_read) (BYTE, BYTE*, DWORD, UINT); /*!< Read Sector(s) */ +#if _USE_WRITE == 1 + DRESULT (*disk_write) (BYTE, const BYTE*, DWORD, UINT); /*!< Write Sector(s) when _USE_WRITE = 0 */ +#endif /* _USE_WRITE == 1 */ +#if _USE_IOCTL == 1 + DRESULT (*disk_ioctl) (BYTE, BYTE, void*); /*!< I/O control operation when _USE_IOCTL = 1 */ +#endif /* _USE_IOCTL == 1 */ + +}Diskio_drvTypeDef; + +/* Global Disk IO Drivers structure definition */ +typedef struct +{ + uint8_t is_initialized[_VOLUMES]; + const Diskio_drvTypeDef *drv[_VOLUMES]; + uint8_t lun[_VOLUMES]; + volatile uint8_t nbr; + +}Disk_drvTypeDef; + + +uint8_t FATFS_LinkDriver(const Diskio_drvTypeDef *drv, char *path); +uint8_t FATFS_UnLinkDriver(char *path); +uint8_t FATFS_LinkDriverEx(const Diskio_drvTypeDef *drv, char *path, BYTE lun); +uint8_t FATFS_UnLinkDriverEx(char *path, BYTE lun); +uint8_t FATFS_GetAttachedDriversNbr(void); + +#ifdef __cplusplus +} +#endif + +#endif /* __FF_GEN_DRV_H */ + diff --git a/Marlin/lib/fat_fs/src/ffconf.h b/Marlin/lib/fat_fs/src/ffconf.h new file mode 100644 index 0000000000..5f8040f8d6 --- /dev/null +++ b/Marlin/lib/fat_fs/src/ffconf.h @@ -0,0 +1,292 @@ +/*---------------------------------------------------------------------------/ +/ FatFs Functional Configurations +/---------------------------------------------------------------------------*/ + +#define FFCONF_DEF 86604 /* Revision ID */ + +/*---------------------------------------------------------------------------/ +/ Function Configurations +/---------------------------------------------------------------------------*/ + +#define FF_FS_READONLY 0 +/* This option switches read-only configuration. (0:Read/Write or 1:Read-only) +/ Read-only configuration removes writing API functions, f_write(), f_sync(), +/ f_unlink(), f_mkdir(), f_chmod(), f_rename(), f_truncate(), f_getfree() +/ and optional writing functions as well. */ + + +#define FF_FS_MINIMIZE 0 +/* This option defines minimization level to remove some basic API functions. +/ +/ 0: Basic functions are fully enabled. +/ 1: f_stat(), f_getfree(), f_unlink(), f_mkdir(), f_truncate() and f_rename() +/ are removed. +/ 2: f_opendir(), f_readdir() and f_closedir() are removed in addition to 1. +/ 3: f_lseek() function is removed in addition to 2. */ + + +#define FF_USE_STRFUNC 1 +/* This option switches string functions, f_gets(), f_putc(), f_puts() and f_printf(). +/ +/ 0: Disable string functions. +/ 1: Enable without LF-CRLF conversion. +/ 2: Enable with LF-CRLF conversion. */ + + +#define FF_USE_FIND 0 +/* This option switches filtered directory read functions, f_findfirst() and +/ f_findnext(). (0:Disable, 1:Enable 2:Enable with matching altname[] too) */ + + +#define FF_USE_MKFS 1 +/* This option switches f_mkfs() function. (0:Disable or 1:Enable) */ + + +#define _USE_FASTSEEK 1 +/* This option switches fast seek function. (0:Disable or 1:Enable) */ + + +#define FF_USE_EXPAND 0 +/* This option switches f_expand function. (0:Disable or 1:Enable) */ + + +#define FF_USE_CHMOD 0 +/* This option switches attribute manipulation functions, f_chmod() and f_utime(). +/ (0:Disable or 1:Enable) Also FF_FS_READONLY needs to be 0 to enable this option. */ + + +#define FF_USE_LABEL 0 +/* This option switches volume label functions, f_getlabel() and f_setlabel(). +/ (0:Disable or 1:Enable) */ + + +#define FF_USE_FORWARD 0 +/* This option switches f_forward() function. (0:Disable or 1:Enable) */ + + +/*---------------------------------------------------------------------------/ +/ Locale and Namespace Configurations +/---------------------------------------------------------------------------*/ + +#define FF_CODE_PAGE 936 +/* This option specifies the OEM code page to be used on the target system. +/ Incorrect code page setting can cause a file open failure. +/ +/ 437 - U.S. +/ 720 - Arabic +/ 737 - Greek +/ 771 - KBL +/ 775 - Baltic +/ 850 - Latin 1 +/ 852 - Latin 2 +/ 855 - Cyrillic +/ 857 - Turkish +/ 860 - Portuguese +/ 861 - Icelandic +/ 862 - Hebrew +/ 863 - Canadian French +/ 864 - Arabic +/ 865 - Nordic +/ 866 - Russian +/ 869 - Greek 2 +/ 932 - Japanese (DBCS) +/ 936 - Simplified Chinese (DBCS) +/ 949 - Korean (DBCS) +/ 950 - Traditional Chinese (DBCS) +/ 0 - Include all code pages above and configured by f_setcp() +*/ + + +#define FF_USE_LFN 1 + +#define FF_MAX_LFN 255 +/* The FF_USE_LFN switches the support for LFN (long file name). +/ +/ 0: Disable LFN. FF_MAX_LFN has no effect. +/ 1: Enable LFN with static working buffer on the BSS. Always NOT thread-safe. +/ 2: Enable LFN with dynamic working buffer on the STACK. +/ 3: Enable LFN with dynamic working buffer on the HEAP. +/ +/ To enable the LFN, ffunicode.c needs to be added to the project. The LFN function +/ requiers certain internal working buffer occupies (FF_MAX_LFN + 1) * 2 bytes and +/ additional (FF_MAX_LFN + 44) / 15 * 32 bytes when exFAT is enabled. +/ The FF_MAX_LFN defines size of the working buffer in UTF-16 code unit and it can +/ be in range of 12 to 255. It is recommended to be set 255 to fully support LFN +/ specification. +/ When use stack for the working buffer, take care on stack overflow. When use heap +/ memory for the working buffer, memory management functions, ff_memalloc() and +/ ff_memfree() in ffsystem.c, need to be added to the project. */ + + +#define FF_LFN_UNICODE 0 +/* This option switches the character encoding on the API when LFN is enabled. +/ +/ 0: ANSI/OEM in current CP (TCHAR = char) +/ 1: Unicode in UTF-16 (TCHAR = WCHAR) +/ 2: Unicode in UTF-8 (TCHAR = char) +/ 3: Unicode in UTF-32 (TCHAR = DWORD) +/ +/ Also behavior of string I/O functions will be affected by this option. +/ When LFN is not enabled, this option has no effect. */ + + +#define FF_LFN_BUF 255 +#define FF_SFN_BUF 12 +/* This set of options defines size of file name members in the FILINFO structure +/ which is used to read out directory items. These values should be suffcient for +/ the file names to read. The maximum possible length of the read file name depends +/ on character encoding. When LFN is not enabled, these options have no effect. */ + + +#define FF_STRF_ENCODE 3 +/* When FF_LFN_UNICODE >= 1 with LFN enabled, string I/O functions, f_gets(), +/ f_putc(), f_puts and f_printf() convert the character encoding in it. +/ This option selects assumption of character encoding ON THE FILE to be +/ read/written via those functions. +/ +/ 0: ANSI/OEM in current CP +/ 1: Unicode in UTF-16LE +/ 2: Unicode in UTF-16BE +/ 3: Unicode in UTF-8 +*/ + + +#define FF_FS_RPATH 2 +/* This option configures support for relative path. +/ +/ 0: Disable relative path and remove related functions. +/ 1: Enable relative path. f_chdir() and f_chdrive() are available. +/ 2: f_getcwd() function is available in addition to 1. +*/ + + +/*---------------------------------------------------------------------------/ +/ Drive/Volume Configurations +/---------------------------------------------------------------------------*/ + +#define _VOLUMES 2 + +#define FF_VOLUMES 5 +/* Number of volumes (logical drives) to be used. (1-10) */ + + +#define FF_STR_VOLUME_ID 0 +#define FF_VOLUME_STRS "RAM","NAND","CF","SD","SD2","USB","USB2","USB3" +/* FF_STR_VOLUME_ID switches support for volume ID in arbitrary strings. +/ When FF_STR_VOLUME_ID is set to 1 or 2, arbitrary strings can be used as drive +/ number in the path name. FF_VOLUME_STRS defines the volume ID strings for each +/ logical drives. Number of items must not be less than FF_VOLUMES. Valid +/ characters for the volume ID strings are A-Z, a-z and 0-9, however, they are +/ compared in case-insensitive. If FF_STR_VOLUME_ID >= 1 and FF_VOLUME_STRS is +/ not defined, a user defined volume string table needs to be defined as: +/ +/ const char* VolumeStr[FF_VOLUMES] = {"ram","flash","sd","usb",... +*/ + + +#define FF_MULTI_PARTITION 0 +/* This option switches support for multiple volumes on the physical drive. +/ By default (0), each logical drive number is bound to the same physical drive +/ number and only an FAT volume found on the physical drive will be mounted. +/ When this function is enabled (1), each logical drive number can be bound to +/ arbitrary physical drive and partition listed in the VolToPart[]. Also f_fdisk() +/ funciton will be available. */ + + +#define FF_MIN_SS 512 +#define FF_MAX_SS 512 + +/* This set of options configures the range of sector size to be supported. (512, +/ 1024, 2048 or 4096) Always set both 512 for most systems, generic memory card and +/ harddisk. But a larger value may be required for on-board flash memory and some +/ type of optical media. When FF_MAX_SS is larger than FF_MIN_SS, FatFs is configured +/ for variable sector size mode and disk_ioctl() function needs to implement +/ GET_SECTOR_SIZE command. */ + + +#define FF_USE_TRIM 0 +/* This option switches support for ATA-TRIM. (0:Disable or 1:Enable) +/ To enable Trim function, also CTRL_TRIM command should be implemented to the +/ disk_ioctl() function. */ + + +#define FF_FS_NOFSINFO 0 +/* If you need to know correct free space on the FAT32 volume, set bit 0 of this +/ option, and f_getfree() function at first time after volume mount will force +/ a full FAT scan. Bit 1 controls the use of last allocated cluster number. +/ +/ bit0=0: Use free cluster count in the FSINFO if available. +/ bit0=1: Do not trust free cluster count in the FSINFO. +/ bit1=0: Use last allocated cluster number in the FSINFO if available. +/ bit1=1: Do not trust last allocated cluster number in the FSINFO. +*/ + + + +/*---------------------------------------------------------------------------/ +/ System Configurations +/---------------------------------------------------------------------------*/ + +#define FF_FS_TINY 0 +/* This option switches tiny buffer configuration. (0:Normal or 1:Tiny) +/ At the tiny configuration, size of file object (FIL) is shrinked FF_MAX_SS bytes. +/ Instead of private sector buffer eliminated from the file object, common sector +/ buffer in the filesystem object (FATFS) is used for the file data transfer. */ + + +#define FF_FS_EXFAT 1 +/* This option switches support for exFAT filesystem. (0:Disable or 1:Enable) +/ To enable exFAT, also LFN needs to be enabled. (FF_USE_LFN >= 1) +/ Note that enabling exFAT discards ANSI C (C89) compatibility. */ + + +#define FF_FS_NORTC 0 +#define FF_NORTC_MON 1 +#define FF_NORTC_MDAY 1 +#define FF_NORTC_YEAR 2018 +/* The option FF_FS_NORTC switches timestamp functiton. If the system does not have +/ any RTC function or valid timestamp is not needed, set FF_FS_NORTC = 1 to disable +/ the timestamp function. Every object modified by FatFs will have a fixed timestamp +/ defined by FF_NORTC_MON, FF_NORTC_MDAY and FF_NORTC_YEAR in local time. +/ To enable timestamp function (FF_FS_NORTC = 0), get_fattime() function need to be +/ added to the project to read current time form real-time clock. FF_NORTC_MON, +/ FF_NORTC_MDAY and FF_NORTC_YEAR have no effect. +/ These options have no effect at read-only configuration (FF_FS_READONLY = 1). */ + + +#define FF_FS_LOCK 0 +/* The option FF_FS_LOCK switches file lock function to control duplicated file open +/ and illegal operation to open objects. This option must be 0 when FF_FS_READONLY +/ is 1. +/ +/ 0: Disable file lock function. To avoid volume corruption, application program +/ should avoid illegal open, remove and rename to the open objects. +/ >0: Enable file lock function. The value defines how many files/sub-directories +/ can be opened simultaneously under file lock control. Note that the file +/ lock control is independent of re-entrancy. */ + + +/* #include // O/S definitions */ +#define FF_FS_REENTRANT 0 +#define FF_FS_TIMEOUT 1000 +#define FF_SYNC_t HANDLE +/* The option FF_FS_REENTRANT switches the re-entrancy (thread safe) of the FatFs +/ module itself. Note that regardless of this option, file access to different +/ volume is always re-entrant and volume control functions, f_mount(), f_mkfs() +/ and f_fdisk() function, are always not re-entrant. Only file/directory access +/ to the same volume is under control of this function. +/ +/ 0: Disable re-entrancy. FF_FS_TIMEOUT and FF_SYNC_t have no effect. +/ 1: Enable re-entrancy. Also user provided synchronization handlers, +/ ff_req_grant(), ff_rel_grant(), ff_del_syncobj() and ff_cre_syncobj() +/ function, must be added to the project. Samples are available in +/ option/syscall.c. +/ +/ The FF_FS_TIMEOUT defines timeout period in unit of time tick. +/ The FF_SYNC_t defines O/S dependent sync object type. e.g. HANDLE, ID, OS_EVENT*, +/ SemaphoreHandle_t and etc. A header file for O/S definitions needs to be +/ included somewhere in the scope of ff.h. */ + + + +/*--- End of configuration options ---*/ diff --git a/Marlin/lib/fat_fs/src/ffsystem.c b/Marlin/lib/fat_fs/src/ffsystem.c new file mode 100644 index 0000000000..b88ce15555 --- /dev/null +++ b/Marlin/lib/fat_fs/src/ffsystem.c @@ -0,0 +1,170 @@ +/*------------------------------------------------------------------------*/ +/* Sample Code of OS Dependent Functions for FatFs */ +/* (C)ChaN, 2018 */ +/*------------------------------------------------------------------------*/ + + +#include "ff.h" + + +#if FF_USE_LFN == 3 /* Dynamic memory allocation */ + +/*------------------------------------------------------------------------*/ +/* Allocate a memory block */ +/*------------------------------------------------------------------------*/ + +void* ff_memalloc ( /* Returns pointer to the allocated memory block (null if not enough core) */ + UINT msize /* Number of bytes to allocate */ +) +{ + return malloc(msize); /* Allocate a new memory block with POSIX API */ +} + + +/*------------------------------------------------------------------------*/ +/* Free a memory block */ +/*------------------------------------------------------------------------*/ + +void ff_memfree ( + void* mblock /* Pointer to the memory block to free (nothing to do if null) */ +) +{ + free(mblock); /* Free the memory block with POSIX API */ +} + +#endif + + + +#if FF_FS_REENTRANT /* Mutal exclusion */ + +/*------------------------------------------------------------------------*/ +/* Create a Synchronization Object */ +/*------------------------------------------------------------------------*/ +/* This function is called in f_mount() function to create a new +/ synchronization object for the volume, such as semaphore and mutex. +/ When a 0 is returned, the f_mount() function fails with FR_INT_ERR. +*/ + +//const osMutexDef_t Mutex[FF_VOLUMES]; /* Table of CMSIS-RTOS mutex */ + + +int ff_cre_syncobj ( /* 1:Function succeeded, 0:Could not create the sync object */ + BYTE vol, /* Corresponding volume (logical drive number) */ + FF_SYNC_t* sobj /* Pointer to return the created sync object */ +) +{ + /* Win32 */ + *sobj = CreateMutex(NULL, FALSE, NULL); + return (int)(*sobj != INVALID_HANDLE_VALUE); + + /* uITRON */ +// T_CSEM csem = {TA_TPRI,1,1}; +// *sobj = acre_sem(&csem); +// return (int)(*sobj > 0); + + /* uC/OS-II */ +// OS_ERR err; +// *sobj = OSMutexCreate(0, &err); +// return (int)(err == OS_NO_ERR); + + /* FreeRTOS */ +// *sobj = xSemaphoreCreateMutex(); +// return (int)(*sobj != NULL); + + /* CMSIS-RTOS */ +// *sobj = osMutexCreate(&Mutex[vol]); +// return (int)(*sobj != NULL); +} + + +/*------------------------------------------------------------------------*/ +/* Delete a Synchronization Object */ +/*------------------------------------------------------------------------*/ +/* This function is called in f_mount() function to delete a synchronization +/ object that created with ff_cre_syncobj() function. When a 0 is returned, +/ the f_mount() function fails with FR_INT_ERR. +*/ + +int ff_del_syncobj ( /* 1:Function succeeded, 0:Could not delete due to an error */ + FF_SYNC_t sobj /* Sync object tied to the logical drive to be deleted */ +) +{ + /* Win32 */ + return (int)CloseHandle(sobj); + + /* uITRON */ +// return (int)(del_sem(sobj) == E_OK); + + /* uC/OS-II */ +// OS_ERR err; +// OSMutexDel(sobj, OS_DEL_ALWAYS, &err); +// return (int)(err == OS_NO_ERR); + + /* FreeRTOS */ +// vSemaphoreDelete(sobj); +// return 1; + + /* CMSIS-RTOS */ +// return (int)(osMutexDelete(sobj) == osOK); +} + + +/*------------------------------------------------------------------------*/ +/* Request Grant to Access the Volume */ +/*------------------------------------------------------------------------*/ +/* This function is called on entering file functions to lock the volume. +/ When a 0 is returned, the file function fails with FR_TIMEOUT. +*/ + +int ff_req_grant ( /* 1:Got a grant to access the volume, 0:Could not get a grant */ + FF_SYNC_t sobj /* Sync object to wait */ +) +{ + /* Win32 */ + return (int)(WaitForSingleObject(sobj, FF_FS_TIMEOUT) == WAIT_OBJECT_0); + + /* uITRON */ +// return (int)(wai_sem(sobj) == E_OK); + + /* uC/OS-II */ +// OS_ERR err; +// OSMutexPend(sobj, FF_FS_TIMEOUT, &err)); +// return (int)(err == OS_NO_ERR); + + /* FreeRTOS */ +// return (int)(xSemaphoreTake(sobj, FF_FS_TIMEOUT) == pdTRUE); + + /* CMSIS-RTOS */ +// return (int)(osMutexWait(sobj, FF_FS_TIMEOUT) == osOK); +} + + +/*------------------------------------------------------------------------*/ +/* Release Grant to Access the Volume */ +/*------------------------------------------------------------------------*/ +/* This function is called on leaving file functions to unlock the volume. +*/ + +void ff_rel_grant ( + FF_SYNC_t sobj /* Sync object to be signaled */ +) +{ + /* Win32 */ + ReleaseMutex(sobj); + + /* uITRON */ +// sig_sem(sobj); + + /* uC/OS-II */ +// OSMutexPost(sobj); + + /* FreeRTOS */ +// xSemaphoreGive(sobj); + + /* CMSIS-RTOS */ +// osMutexRelease(sobj); +} + +#endif + diff --git a/Marlin/lib/fat_fs/src/ffunicode.c b/Marlin/lib/fat_fs/src/ffunicode.c new file mode 100644 index 0000000000..349901b1f3 --- /dev/null +++ b/Marlin/lib/fat_fs/src/ffunicode.c @@ -0,0 +1,15597 @@ +/*------------------------------------------------------------------------*/ +/* Unicode handling functions for FatFs R0.13c */ +/*------------------------------------------------------------------------*/ +/* This module will occupy a huge memory in the .const section when the / +/ FatFs is configured for LFN with DBCS. If the system has any Unicode / +/ utilitiy for the code conversion, this module should be modified to use / +/ that function to avoid silly memory consumption. / +/-------------------------------------------------------------------------*/ +/* +/ Copyright (C) 2018, ChaN, all right reserved. +/ +/ FatFs module is an open source software. Redistribution and use of FatFs in +/ source and binary forms, with or without modification, are permitted provided +/ that the following condition is met: +/ +/ 1. Redistributions of source code must retain the above copyright notice, +/ this condition and the following disclaimer. +/ +/ This software is provided by the copyright holder and contributors "AS IS" +/ and any warranties related to this software are DISCLAIMED. +/ The copyright owner or contributors be NOT LIABLE for any damages caused +/ by use of this software. +*/ + + +#include "ff.h" + +#if FF_USE_LFN /* This module will be blanked at non-LFN configuration */ + +#if FF_DEFINED != 86604 /* Revision ID */ +#error Wrong include file (ff.h). +#endif + +#define MERGE2(a, b) a ## b +#define CVTBL(tbl, cp) MERGE2(tbl, cp) + + +/*------------------------------------------------------------------------*/ +/* Code Conversion Tables */ +/*------------------------------------------------------------------------*/ + +#if FF_CODE_PAGE == 932 || FF_CODE_PAGE == 0 /* Japanese */ +static const WCHAR uni2oem932[] = { /* Unicode --> Shift_JIS pairs */ + 0x00A7, 0x8198, 0x00A8, 0x814E, 0x00B0, 0x818B, 0x00B1, 0x817D, 0x00B4, 0x814C, 0x00B6, 0x81F7, 0x00D7, 0x817E, 0x00F7, 0x8180, + 0x0391, 0x839F, 0x0392, 0x83A0, 0x0393, 0x83A1, 0x0394, 0x83A2, 0x0395, 0x83A3, 0x0396, 0x83A4, 0x0397, 0x83A5, 0x0398, 0x83A6, + 0x0399, 0x83A7, 0x039A, 0x83A8, 0x039B, 0x83A9, 0x039C, 0x83AA, 0x039D, 0x83AB, 0x039E, 0x83AC, 0x039F, 0x83AD, 0x03A0, 0x83AE, + 0x03A1, 0x83AF, 0x03A3, 0x83B0, 0x03A4, 0x83B1, 0x03A5, 0x83B2, 0x03A6, 0x83B3, 0x03A7, 0x83B4, 0x03A8, 0x83B5, 0x03A9, 0x83B6, + 0x03B1, 0x83BF, 0x03B2, 0x83C0, 0x03B3, 0x83C1, 0x03B4, 0x83C2, 0x03B5, 0x83C3, 0x03B6, 0x83C4, 0x03B7, 0x83C5, 0x03B8, 0x83C6, + 0x03B9, 0x83C7, 0x03BA, 0x83C8, 0x03BB, 0x83C9, 0x03BC, 0x83CA, 0x03BD, 0x83CB, 0x03BE, 0x83CC, 0x03BF, 0x83CD, 0x03C0, 0x83CE, + 0x03C1, 0x83CF, 0x03C3, 0x83D0, 0x03C4, 0x83D1, 0x03C5, 0x83D2, 0x03C6, 0x83D3, 0x03C7, 0x83D4, 0x03C8, 0x83D5, 0x03C9, 0x83D6, + 0x0401, 0x8446, 0x0410, 0x8440, 0x0411, 0x8441, 0x0412, 0x8442, 0x0413, 0x8443, 0x0414, 0x8444, 0x0415, 0x8445, 0x0416, 0x8447, + 0x0417, 0x8448, 0x0418, 0x8449, 0x0419, 0x844A, 0x041A, 0x844B, 0x041B, 0x844C, 0x041C, 0x844D, 0x041D, 0x844E, 0x041E, 0x844F, + 0x041F, 0x8450, 0x0420, 0x8451, 0x0421, 0x8452, 0x0422, 0x8453, 0x0423, 0x8454, 0x0424, 0x8455, 0x0425, 0x8456, 0x0426, 0x8457, + 0x0427, 0x8458, 0x0428, 0x8459, 0x0429, 0x845A, 0x042A, 0x845B, 0x042B, 0x845C, 0x042C, 0x845D, 0x042D, 0x845E, 0x042E, 0x845F, + 0x042F, 0x8460, 0x0430, 0x8470, 0x0431, 0x8471, 0x0432, 0x8472, 0x0433, 0x8473, 0x0434, 0x8474, 0x0435, 0x8475, 0x0436, 0x8477, + 0x0437, 0x8478, 0x0438, 0x8479, 0x0439, 0x847A, 0x043A, 0x847B, 0x043B, 0x847C, 0x043C, 0x847D, 0x043D, 0x847E, 0x043E, 0x8480, + 0x043F, 0x8481, 0x0440, 0x8482, 0x0441, 0x8483, 0x0442, 0x8484, 0x0443, 0x8485, 0x0444, 0x8486, 0x0445, 0x8487, 0x0446, 0x8488, + 0x0447, 0x8489, 0x0448, 0x848A, 0x0449, 0x848B, 0x044A, 0x848C, 0x044B, 0x848D, 0x044C, 0x848E, 0x044D, 0x848F, 0x044E, 0x8490, + 0x044F, 0x8491, 0x0451, 0x8476, 0x2010, 0x815D, 0x2015, 0x815C, 0x2018, 0x8165, 0x2019, 0x8166, 0x201C, 0x8167, 0x201D, 0x8168, + 0x2020, 0x81F5, 0x2021, 0x81F6, 0x2025, 0x8164, 0x2026, 0x8163, 0x2030, 0x81F1, 0x2032, 0x818C, 0x2033, 0x818D, 0x203B, 0x81A6, + 0x2103, 0x818E, 0x2116, 0x8782, 0x2121, 0x8784, 0x212B, 0x81F0, 0x2160, 0x8754, 0x2161, 0x8755, 0x2162, 0x8756, 0x2163, 0x8757, + 0x2164, 0x8758, 0x2165, 0x8759, 0x2166, 0x875A, 0x2167, 0x875B, 0x2168, 0x875C, 0x2169, 0x875D, 0x2170, 0xFA40, 0x2171, 0xFA41, + 0x2172, 0xFA42, 0x2173, 0xFA43, 0x2174, 0xFA44, 0x2175, 0xFA45, 0x2176, 0xFA46, 0x2177, 0xFA47, 0x2178, 0xFA48, 0x2179, 0xFA49, + 0x2190, 0x81A9, 0x2191, 0x81AA, 0x2192, 0x81A8, 0x2193, 0x81AB, 0x21D2, 0x81CB, 0x21D4, 0x81CC, 0x2200, 0x81CD, 0x2202, 0x81DD, + 0x2203, 0x81CE, 0x2207, 0x81DE, 0x2208, 0x81B8, 0x220B, 0x81B9, 0x2211, 0x8794, 0x221A, 0x81E3, 0x221D, 0x81E5, 0x221E, 0x8187, + 0x221F, 0x8798, 0x2220, 0x81DA, 0x2225, 0x8161, 0x2227, 0x81C8, 0x2228, 0x81C9, 0x2229, 0x81BF, 0x222A, 0x81BE, 0x222B, 0x81E7, + 0x222C, 0x81E8, 0x222E, 0x8793, 0x2234, 0x8188, 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0x9D8F, 0x8C7B, 0x9D9A, 0xEA4C, 0x9DA4, 0xEA4D, 0x9DA9, 0xEA4E, 0x9DAB, 0xEA49, + 0x9DAF, 0xE9F2, 0x9DB2, 0xEA4F, 0x9DB4, 0x92DF, 0x9DB8, 0xEA53, 0x9DBA, 0xEA54, 0x9DBB, 0xEA52, 0x9DC1, 0xEA51, 0x9DC2, 0xEA57, + 0x9DC4, 0xEA50, 0x9DC6, 0xEA55, 0x9DCF, 0xEA56, 0x9DD3, 0xEA59, 0x9DD9, 0xEA58, 0x9DE6, 0xEA5B, 0x9DED, 0xEA5C, 0x9DEF, 0xEA5D, + 0x9DF2, 0x9868, 0x9DF8, 0xEA5A, 0x9DF9, 0x91E9, 0x9DFA, 0x8DEB, 0x9DFD, 0xEA5E, 0x9E19, 0xFC4A, 0x9E1A, 0xEA5F, 0x9E1B, 0xEA60, + 0x9E1E, 0xEA61, 0x9E75, 0xEA62, 0x9E78, 0x8CB2, 0x9E79, 0xEA63, 0x9E7D, 0xEA64, 0x9E7F, 0x8EAD, 0x9E81, 0xEA65, 0x9E88, 0xEA66, + 0x9E8B, 0xEA67, 0x9E8C, 0xEA68, 0x9E91, 0xEA6B, 0x9E92, 0xEA69, 0x9E93, 0x985B, 0x9E95, 0xEA6A, 0x9E97, 0x97ED, 0x9E9D, 0xEA6C, + 0x9E9F, 0x97D9, 0x9EA5, 0xEA6D, 0x9EA6, 0x949E, 0x9EA9, 0xEA6E, 0x9EAA, 0xEA70, 0x9EAD, 0xEA71, 0x9EB8, 0xEA6F, 0x9EB9, 0x8D8D, + 0x9EBA, 0x96CB, 0x9EBB, 0x9683, 0x9EBC, 0x9BF5, 0x9EBE, 0x9F80, 0x9EBF, 0x969B, 0x9EC4, 0x89A9, 0x9ECC, 0xEA73, 0x9ECD, 0x8B6F, + 0x9ECE, 0xEA74, 0x9ECF, 0xEA75, 0x9ED0, 0xEA76, 0x9ED1, 0xFC4B, 0x9ED2, 0x8D95, 0x9ED4, 0xEA77, 0x9ED8, 0xE0D2, 0x9ED9, 0x96D9, + 0x9EDB, 0x91E1, 0x9EDC, 0xEA78, 0x9EDD, 0xEA7A, 0x9EDE, 0xEA79, 0x9EE0, 0xEA7B, 0x9EE5, 0xEA7C, 0x9EE8, 0xEA7D, 0x9EEF, 0xEA7E, + 0x9EF4, 0xEA80, 0x9EF6, 0xEA81, 0x9EF7, 0xEA82, 0x9EF9, 0xEA83, 0x9EFB, 0xEA84, 0x9EFC, 0xEA85, 0x9EFD, 0xEA86, 0x9F07, 0xEA87, + 0x9F08, 0xEA88, 0x9F0E, 0x9343, 0x9F13, 0x8CDB, 0x9F15, 0xEA8A, 0x9F20, 0x916C, 0x9F21, 0xEA8B, 0x9F2C, 0xEA8C, 0x9F3B, 0x9540, + 0x9F3E, 0xEA8D, 0x9F4A, 0xEA8E, 0x9F4B, 0xE256, 0x9F4E, 0xE6D8, 0x9F4F, 0xE8EB, 0x9F52, 0xEA8F, 0x9F54, 0xEA90, 0x9F5F, 0xEA92, + 0x9F60, 0xEA93, 0x9F61, 0xEA94, 0x9F62, 0x97EE, 0x9F63, 0xEA91, 0x9F66, 0xEA95, 0x9F67, 0xEA96, 0x9F6A, 0xEA98, 0x9F6C, 0xEA97, + 0x9F72, 0xEA9A, 0x9F76, 0xEA9B, 0x9F77, 0xEA99, 0x9F8D, 0x97B4, 0x9F95, 0xEA9C, 0x9F9C, 0xEA9D, 0x9F9D, 0xE273, 0x9FA0, 0xEA9E, + 0xF929, 0xFAE0, 0xF9DC, 0xFBE9, 0xFA0E, 0xFA90, 0xFA0F, 0xFA9B, 0xFA10, 0xFA9C, 0xFA11, 0xFAB1, 0xFA12, 0xFAD8, 0xFA13, 0xFAE8, + 0xFA14, 0xFAEA, 0xFA15, 0xFB58, 0xFA16, 0xFB5E, 0xFA17, 0xFB75, 0xFA18, 0xFB7D, 0xFA19, 0xFB7E, 0xFA1A, 0xFB80, 0xFA1B, 0xFB82, + 0xFA1C, 0xFB86, 0xFA1D, 0xFB89, 0xFA1E, 0xFB92, 0xFA1F, 0xFB9D, 0xFA20, 0xFB9F, 0xFA21, 0xFBA0, 0xFA22, 0xFBA9, 0xFA23, 0xFBB1, + 0xFA24, 0xFBB3, 0xFA25, 0xFBB4, 0xFA26, 0xFBB7, 0xFA27, 0xFBD3, 0xFA28, 0xFBDA, 0xFA29, 0xFBEA, 0xFA2A, 0xFBF6, 0xFA2B, 0xFBF7, + 0xFA2C, 0xFBF9, 0xFA2D, 0xFC49, 0xFF01, 0x8149, 0xFF02, 0xFA57, 0xFF03, 0x8194, 0xFF04, 0x8190, 0xFF05, 0x8193, 0xFF06, 0x8195, + 0xFF07, 0xFA56, 0xFF08, 0x8169, 0xFF09, 0x816A, 0xFF0A, 0x8196, 0xFF0B, 0x817B, 0xFF0C, 0x8143, 0xFF0D, 0x817C, 0xFF0E, 0x8144, + 0xFF0F, 0x815E, 0xFF10, 0x824F, 0xFF11, 0x8250, 0xFF12, 0x8251, 0xFF13, 0x8252, 0xFF14, 0x8253, 0xFF15, 0x8254, 0xFF16, 0x8255, + 0xFF17, 0x8256, 0xFF18, 0x8257, 0xFF19, 0x8258, 0xFF1A, 0x8146, 0xFF1B, 0x8147, 0xFF1C, 0x8183, 0xFF1D, 0x8181, 0xFF1E, 0x8184, + 0xFF1F, 0x8148, 0xFF20, 0x8197, 0xFF21, 0x8260, 0xFF22, 0x8261, 0xFF23, 0x8262, 0xFF24, 0x8263, 0xFF25, 0x8264, 0xFF26, 0x8265, + 0xFF27, 0x8266, 0xFF28, 0x8267, 0xFF29, 0x8268, 0xFF2A, 0x8269, 0xFF2B, 0x826A, 0xFF2C, 0x826B, 0xFF2D, 0x826C, 0xFF2E, 0x826D, + 0xFF2F, 0x826E, 0xFF30, 0x826F, 0xFF31, 0x8270, 0xFF32, 0x8271, 0xFF33, 0x8272, 0xFF34, 0x8273, 0xFF35, 0x8274, 0xFF36, 0x8275, + 0xFF37, 0x8276, 0xFF38, 0x8277, 0xFF39, 0x8278, 0xFF3A, 0x8279, 0xFF3B, 0x816D, 0xFF3C, 0x815F, 0xFF3D, 0x816E, 0xFF3E, 0x814F, + 0xFF3F, 0x8151, 0xFF40, 0x814D, 0xFF41, 0x8281, 0xFF42, 0x8282, 0xFF43, 0x8283, 0xFF44, 0x8284, 0xFF45, 0x8285, 0xFF46, 0x8286, + 0xFF47, 0x8287, 0xFF48, 0x8288, 0xFF49, 0x8289, 0xFF4A, 0x828A, 0xFF4B, 0x828B, 0xFF4C, 0x828C, 0xFF4D, 0x828D, 0xFF4E, 0x828E, + 0xFF4F, 0x828F, 0xFF50, 0x8290, 0xFF51, 0x8291, 0xFF52, 0x8292, 0xFF53, 0x8293, 0xFF54, 0x8294, 0xFF55, 0x8295, 0xFF56, 0x8296, + 0xFF57, 0x8297, 0xFF58, 0x8298, 0xFF59, 0x8299, 0xFF5A, 0x829A, 0xFF5B, 0x816F, 0xFF5C, 0x8162, 0xFF5D, 0x8170, 0xFF5E, 0x8160, + 0xFF61, 0x00A1, 0xFF62, 0x00A2, 0xFF63, 0x00A3, 0xFF64, 0x00A4, 0xFF65, 0x00A5, 0xFF66, 0x00A6, 0xFF67, 0x00A7, 0xFF68, 0x00A8, + 0xFF69, 0x00A9, 0xFF6A, 0x00AA, 0xFF6B, 0x00AB, 0xFF6C, 0x00AC, 0xFF6D, 0x00AD, 0xFF6E, 0x00AE, 0xFF6F, 0x00AF, 0xFF70, 0x00B0, + 0xFF71, 0x00B1, 0xFF72, 0x00B2, 0xFF73, 0x00B3, 0xFF74, 0x00B4, 0xFF75, 0x00B5, 0xFF76, 0x00B6, 0xFF77, 0x00B7, 0xFF78, 0x00B8, + 0xFF79, 0x00B9, 0xFF7A, 0x00BA, 0xFF7B, 0x00BB, 0xFF7C, 0x00BC, 0xFF7D, 0x00BD, 0xFF7E, 0x00BE, 0xFF7F, 0x00BF, 0xFF80, 0x00C0, + 0xFF81, 0x00C1, 0xFF82, 0x00C2, 0xFF83, 0x00C3, 0xFF84, 0x00C4, 0xFF85, 0x00C5, 0xFF86, 0x00C6, 0xFF87, 0x00C7, 0xFF88, 0x00C8, + 0xFF89, 0x00C9, 0xFF8A, 0x00CA, 0xFF8B, 0x00CB, 0xFF8C, 0x00CC, 0xFF8D, 0x00CD, 0xFF8E, 0x00CE, 0xFF8F, 0x00CF, 0xFF90, 0x00D0, + 0xFF91, 0x00D1, 0xFF92, 0x00D2, 0xFF93, 0x00D3, 0xFF94, 0x00D4, 0xFF95, 0x00D5, 0xFF96, 0x00D6, 0xFF97, 0x00D7, 0xFF98, 0x00D8, + 0xFF99, 0x00D9, 0xFF9A, 0x00DA, 0xFF9B, 0x00DB, 0xFF9C, 0x00DC, 0xFF9D, 0x00DD, 0xFF9E, 0x00DE, 0xFF9F, 0x00DF, 0xFFE0, 0x8191, + 0xFFE1, 0x8192, 0xFFE2, 0x81CA, 0xFFE3, 0x8150, 0xFFE4, 0xFA55, 0xFFE5, 0x818F, 0, 0 +}; + +static const WCHAR oem2uni932[] = { /* Shift_JIS --> Unicode pairs */ + 0x00A1, 0xFF61, 0x00A2, 0xFF62, 0x00A3, 0xFF63, 0x00A4, 0xFF64, 0x00A5, 0xFF65, 0x00A6, 0xFF66, 0x00A7, 0xFF67, 0x00A8, 0xFF68, + 0x00A9, 0xFF69, 0x00AA, 0xFF6A, 0x00AB, 0xFF6B, 0x00AC, 0xFF6C, 0x00AD, 0xFF6D, 0x00AE, 0xFF6E, 0x00AF, 0xFF6F, 0x00B0, 0xFF70, + 0x00B1, 0xFF71, 0x00B2, 0xFF72, 0x00B3, 0xFF73, 0x00B4, 0xFF74, 0x00B5, 0xFF75, 0x00B6, 0xFF76, 0x00B7, 0xFF77, 0x00B8, 0xFF78, + 0x00B9, 0xFF79, 0x00BA, 0xFF7A, 0x00BB, 0xFF7B, 0x00BC, 0xFF7C, 0x00BD, 0xFF7D, 0x00BE, 0xFF7E, 0x00BF, 0xFF7F, 0x00C0, 0xFF80, + 0x00C1, 0xFF81, 0x00C2, 0xFF82, 0x00C3, 0xFF83, 0x00C4, 0xFF84, 0x00C5, 0xFF85, 0x00C6, 0xFF86, 0x00C7, 0xFF87, 0x00C8, 0xFF88, + 0x00C9, 0xFF89, 0x00CA, 0xFF8A, 0x00CB, 0xFF8B, 0x00CC, 0xFF8C, 0x00CD, 0xFF8D, 0x00CE, 0xFF8E, 0x00CF, 0xFF8F, 0x00D0, 0xFF90, + 0x00D1, 0xFF91, 0x00D2, 0xFF92, 0x00D3, 0xFF93, 0x00D4, 0xFF94, 0x00D5, 0xFF95, 0x00D6, 0xFF96, 0x00D7, 0xFF97, 0x00D8, 0xFF98, + 0x00D9, 0xFF99, 0x00DA, 0xFF9A, 0x00DB, 0xFF9B, 0x00DC, 0xFF9C, 0x00DD, 0xFF9D, 0x00DE, 0xFF9E, 0x00DF, 0xFF9F, 0x8140, 0x3000, + 0x8141, 0x3001, 0x8142, 0x3002, 0x8143, 0xFF0C, 0x8144, 0xFF0E, 0x8145, 0x30FB, 0x8146, 0xFF1A, 0x8147, 0xFF1B, 0x8148, 0xFF1F, + 0x8149, 0xFF01, 0x814A, 0x309B, 0x814B, 0x309C, 0x814C, 0x00B4, 0x814D, 0xFF40, 0x814E, 0x00A8, 0x814F, 0xFF3E, 0x8150, 0xFFE3, + 0x8151, 0xFF3F, 0x8152, 0x30FD, 0x8153, 0x30FE, 0x8154, 0x309D, 0x8155, 0x309E, 0x8156, 0x3003, 0x8157, 0x4EDD, 0x8158, 0x3005, + 0x8159, 0x3006, 0x815A, 0x3007, 0x815B, 0x30FC, 0x815C, 0x2015, 0x815D, 0x2010, 0x815E, 0xFF0F, 0x815F, 0xFF3C, 0x8160, 0xFF5E, + 0x8161, 0x2225, 0x8162, 0xFF5C, 0x8163, 0x2026, 0x8164, 0x2025, 0x8165, 0x2018, 0x8166, 0x2019, 0x8167, 0x201C, 0x8168, 0x201D, + 0x8169, 0xFF08, 0x816A, 0xFF09, 0x816B, 0x3014, 0x816C, 0x3015, 0x816D, 0xFF3B, 0x816E, 0xFF3D, 0x816F, 0xFF5B, 0x8170, 0xFF5D, + 0x8171, 0x3008, 0x8172, 0x3009, 0x8173, 0x300A, 0x8174, 0x300B, 0x8175, 0x300C, 0x8176, 0x300D, 0x8177, 0x300E, 0x8178, 0x300F, + 0x8179, 0x3010, 0x817A, 0x3011, 0x817B, 0xFF0B, 0x817C, 0xFF0D, 0x817D, 0x00B1, 0x817E, 0x00D7, 0x8180, 0x00F7, 0x8181, 0xFF1D, + 0x8182, 0x2260, 0x8183, 0xFF1C, 0x8184, 0xFF1E, 0x8185, 0x2266, 0x8186, 0x2267, 0x8187, 0x221E, 0x8188, 0x2234, 0x8189, 0x2642, + 0x818A, 0x2640, 0x818B, 0x00B0, 0x818C, 0x2032, 0x818D, 0x2033, 0x818E, 0x2103, 0x818F, 0xFFE5, 0x8190, 0xFF04, 0x8191, 0xFFE0, + 0x8192, 0xFFE1, 0x8193, 0xFF05, 0x8194, 0xFF03, 0x8195, 0xFF06, 0x8196, 0xFF0A, 0x8197, 0xFF20, 0x8198, 0x00A7, 0x8199, 0x2606, + 0x819A, 0x2605, 0x819B, 0x25CB, 0x819C, 0x25CF, 0x819D, 0x25CE, 0x819E, 0x25C7, 0x819F, 0x25C6, 0x81A0, 0x25A1, 0x81A1, 0x25A0, + 0x81A2, 0x25B3, 0x81A3, 0x25B2, 0x81A4, 0x25BD, 0x81A5, 0x25BC, 0x81A6, 0x203B, 0x81A7, 0x3012, 0x81A8, 0x2192, 0x81A9, 0x2190, + 0x81AA, 0x2191, 0x81AB, 0x2193, 0x81AC, 0x3013, 0x81B8, 0x2208, 0x81B9, 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0x6C86, + 0xFAF8, 0x6C6F, 0xFAF9, 0x6CDA, 0xFAFA, 0x6D04, 0xFAFB, 0x6D87, 0xFAFC, 0x6D6F, 0xFB40, 0x6D96, 0xFB41, 0x6DAC, 0xFB42, 0x6DCF, + 0xFB43, 0x6DF8, 0xFB44, 0x6DF2, 0xFB45, 0x6DFC, 0xFB46, 0x6E39, 0xFB47, 0x6E5C, 0xFB48, 0x6E27, 0xFB49, 0x6E3C, 0xFB4A, 0x6EBF, + 0xFB4B, 0x6F88, 0xFB4C, 0x6FB5, 0xFB4D, 0x6FF5, 0xFB4E, 0x7005, 0xFB4F, 0x7007, 0xFB50, 0x7028, 0xFB51, 0x7085, 0xFB52, 0x70AB, + 0xFB53, 0x710F, 0xFB54, 0x7104, 0xFB55, 0x715C, 0xFB56, 0x7146, 0xFB57, 0x7147, 0xFB58, 0xFA15, 0xFB59, 0x71C1, 0xFB5A, 0x71FE, + 0xFB5B, 0x72B1, 0xFB5C, 0x72BE, 0xFB5D, 0x7324, 0xFB5E, 0xFA16, 0xFB5F, 0x7377, 0xFB60, 0x73BD, 0xFB61, 0x73C9, 0xFB62, 0x73D6, + 0xFB63, 0x73E3, 0xFB64, 0x73D2, 0xFB65, 0x7407, 0xFB66, 0x73F5, 0xFB67, 0x7426, 0xFB68, 0x742A, 0xFB69, 0x7429, 0xFB6A, 0x742E, + 0xFB6B, 0x7462, 0xFB6C, 0x7489, 0xFB6D, 0x749F, 0xFB6E, 0x7501, 0xFB6F, 0x756F, 0xFB70, 0x7682, 0xFB71, 0x769C, 0xFB72, 0x769E, + 0xFB73, 0x769B, 0xFB74, 0x76A6, 0xFB75, 0xFA17, 0xFB76, 0x7746, 0xFB77, 0x52AF, 0xFB78, 0x7821, 0xFB79, 0x784E, 0xFB7A, 0x7864, + 0xFB7B, 0x787A, 0xFB7C, 0x7930, 0xFB7D, 0xFA18, 0xFB7E, 0xFA19, 0xFB80, 0xFA1A, 0xFB81, 0x7994, 0xFB82, 0xFA1B, 0xFB83, 0x799B, + 0xFB84, 0x7AD1, 0xFB85, 0x7AE7, 0xFB86, 0xFA1C, 0xFB87, 0x7AEB, 0xFB88, 0x7B9E, 0xFB89, 0xFA1D, 0xFB8A, 0x7D48, 0xFB8B, 0x7D5C, + 0xFB8C, 0x7DB7, 0xFB8D, 0x7DA0, 0xFB8E, 0x7DD6, 0xFB8F, 0x7E52, 0xFB90, 0x7F47, 0xFB91, 0x7FA1, 0xFB92, 0xFA1E, 0xFB93, 0x8301, + 0xFB94, 0x8362, 0xFB95, 0x837F, 0xFB96, 0x83C7, 0xFB97, 0x83F6, 0xFB98, 0x8448, 0xFB99, 0x84B4, 0xFB9A, 0x8553, 0xFB9B, 0x8559, + 0xFB9C, 0x856B, 0xFB9D, 0xFA1F, 0xFB9E, 0x85B0, 0xFB9F, 0xFA20, 0xFBA0, 0xFA21, 0xFBA1, 0x8807, 0xFBA2, 0x88F5, 0xFBA3, 0x8A12, + 0xFBA4, 0x8A37, 0xFBA5, 0x8A79, 0xFBA6, 0x8AA7, 0xFBA7, 0x8ABE, 0xFBA8, 0x8ADF, 0xFBA9, 0xFA22, 0xFBAA, 0x8AF6, 0xFBAB, 0x8B53, + 0xFBAC, 0x8B7F, 0xFBAD, 0x8CF0, 0xFBAE, 0x8CF4, 0xFBAF, 0x8D12, 0xFBB0, 0x8D76, 0xFBB1, 0xFA23, 0xFBB2, 0x8ECF, 0xFBB3, 0xFA24, + 0xFBB4, 0xFA25, 0xFBB5, 0x9067, 0xFBB6, 0x90DE, 0xFBB7, 0xFA26, 0xFBB8, 0x9115, 0xFBB9, 0x9127, 0xFBBA, 0x91DA, 0xFBBB, 0x91D7, + 0xFBBC, 0x91DE, 0xFBBD, 0x91ED, 0xFBBE, 0x91EE, 0xFBBF, 0x91E4, 0xFBC0, 0x91E5, 0xFBC1, 0x9206, 0xFBC2, 0x9210, 0xFBC3, 0x920A, + 0xFBC4, 0x923A, 0xFBC5, 0x9240, 0xFBC6, 0x923C, 0xFBC7, 0x924E, 0xFBC8, 0x9259, 0xFBC9, 0x9251, 0xFBCA, 0x9239, 0xFBCB, 0x9267, + 0xFBCC, 0x92A7, 0xFBCD, 0x9277, 0xFBCE, 0x9278, 0xFBCF, 0x92E7, 0xFBD0, 0x92D7, 0xFBD1, 0x92D9, 0xFBD2, 0x92D0, 0xFBD3, 0xFA27, + 0xFBD4, 0x92D5, 0xFBD5, 0x92E0, 0xFBD6, 0x92D3, 0xFBD7, 0x9325, 0xFBD8, 0x9321, 0xFBD9, 0x92FB, 0xFBDA, 0xFA28, 0xFBDB, 0x931E, + 0xFBDC, 0x92FF, 0xFBDD, 0x931D, 0xFBDE, 0x9302, 0xFBDF, 0x9370, 0xFBE0, 0x9357, 0xFBE1, 0x93A4, 0xFBE2, 0x93C6, 0xFBE3, 0x93DE, + 0xFBE4, 0x93F8, 0xFBE5, 0x9431, 0xFBE6, 0x9445, 0xFBE7, 0x9448, 0xFBE8, 0x9592, 0xFBE9, 0xF9DC, 0xFBEA, 0xFA29, 0xFBEB, 0x969D, + 0xFBEC, 0x96AF, 0xFBED, 0x9733, 0xFBEE, 0x973B, 0xFBEF, 0x9743, 0xFBF0, 0x974D, 0xFBF1, 0x974F, 0xFBF2, 0x9751, 0xFBF3, 0x9755, + 0xFBF4, 0x9857, 0xFBF5, 0x9865, 0xFBF6, 0xFA2A, 0xFBF7, 0xFA2B, 0xFBF8, 0x9927, 0xFBF9, 0xFA2C, 0xFBFA, 0x999E, 0xFBFB, 0x9A4E, + 0xFBFC, 0x9AD9, 0xFC40, 0x9ADC, 0xFC41, 0x9B75, 0xFC42, 0x9B72, 0xFC43, 0x9B8F, 0xFC44, 0x9BB1, 0xFC45, 0x9BBB, 0xFC46, 0x9C00, + 0xFC47, 0x9D70, 0xFC48, 0x9D6B, 0xFC49, 0xFA2D, 0xFC4A, 0x9E19, 0xFC4B, 0x9ED1, 0, 0 +}; +#endif + +#if FF_CODE_PAGE == 936 || FF_CODE_PAGE == 0 /* Simplified Chinese */ +static const WCHAR uni2oem936[] = { /* Unicode --> GBK pairs */ + 0x00A4, 0xA1E8, 0x00A7, 0xA1EC, 0x00A8, 0xA1A7, 0x00B0, 0xA1E3, 0x00B1, 0xA1C0, 0x00B7, 0xA1A4, 0x00D7, 0xA1C1, 0x00E0, 0xA8A4, + 0x00E1, 0xA8A2, 0x00E8, 0xA8A8, 0x00E9, 0xA8A6, 0x00EA, 0xA8BA, 0x00EC, 0xA8AC, 0x00ED, 0xA8AA, 0x00F2, 0xA8B0, 0x00F3, 0xA8AE, + 0x00F7, 0xA1C2, 0x00F9, 0xA8B4, 0x00FA, 0xA8B2, 0x00FC, 0xA8B9, 0x0101, 0xA8A1, 0x0113, 0xA8A5, 0x011B, 0xA8A7, 0x012B, 0xA8A9, + 0x0144, 0xA8BD, 0x0148, 0xA8BE, 0x014D, 0xA8AD, 0x016B, 0xA8B1, 0x01CE, 0xA8A3, 0x01D0, 0xA8AB, 0x01D2, 0xA8AF, 0x01D4, 0xA8B3, + 0x01D6, 0xA8B5, 0x01D8, 0xA8B6, 0x01DA, 0xA8B7, 0x01DC, 0xA8B8, 0x0251, 0xA8BB, 0x0261, 0xA8C0, 0x02C7, 0xA1A6, 0x02C9, 0xA1A5, + 0x02CA, 0xA840, 0x02CB, 0xA841, 0x02D9, 0xA842, 0x0391, 0xA6A1, 0x0392, 0xA6A2, 0x0393, 0xA6A3, 0x0394, 0xA6A4, 0x0395, 0xA6A5, + 0x0396, 0xA6A6, 0x0397, 0xA6A7, 0x0398, 0xA6A8, 0x0399, 0xA6A9, 0x039A, 0xA6AA, 0x039B, 0xA6AB, 0x039C, 0xA6AC, 0x039D, 0xA6AD, + 0x039E, 0xA6AE, 0x039F, 0xA6AF, 0x03A0, 0xA6B0, 0x03A1, 0xA6B1, 0x03A3, 0xA6B2, 0x03A4, 0xA6B3, 0x03A5, 0xA6B4, 0x03A6, 0xA6B5, + 0x03A7, 0xA6B6, 0x03A8, 0xA6B7, 0x03A9, 0xA6B8, 0x03B1, 0xA6C1, 0x03B2, 0xA6C2, 0x03B3, 0xA6C3, 0x03B4, 0xA6C4, 0x03B5, 0xA6C5, + 0x03B6, 0xA6C6, 0x03B7, 0xA6C7, 0x03B8, 0xA6C8, 0x03B9, 0xA6C9, 0x03BA, 0xA6CA, 0x03BB, 0xA6CB, 0x03BC, 0xA6CC, 0x03BD, 0xA6CD, + 0x03BE, 0xA6CE, 0x03BF, 0xA6CF, 0x03C0, 0xA6D0, 0x03C1, 0xA6D1, 0x03C3, 0xA6D2, 0x03C4, 0xA6D3, 0x03C5, 0xA6D4, 0x03C6, 0xA6D5, + 0x03C7, 0xA6D6, 0x03C8, 0xA6D7, 0x03C9, 0xA6D8, 0x0401, 0xA7A7, 0x0410, 0xA7A1, 0x0411, 0xA7A2, 0x0412, 0xA7A3, 0x0413, 0xA7A4, + 0x0414, 0xA7A5, 0x0415, 0xA7A6, 0x0416, 0xA7A8, 0x0417, 0xA7A9, 0x0418, 0xA7AA, 0x0419, 0xA7AB, 0x041A, 0xA7AC, 0x041B, 0xA7AD, + 0x041C, 0xA7AE, 0x041D, 0xA7AF, 0x041E, 0xA7B0, 0x041F, 0xA7B1, 0x0420, 0xA7B2, 0x0421, 0xA7B3, 0x0422, 0xA7B4, 0x0423, 0xA7B5, + 0x0424, 0xA7B6, 0x0425, 0xA7B7, 0x0426, 0xA7B8, 0x0427, 0xA7B9, 0x0428, 0xA7BA, 0x0429, 0xA7BB, 0x042A, 0xA7BC, 0x042B, 0xA7BD, + 0x042C, 0xA7BE, 0x042D, 0xA7BF, 0x042E, 0xA7C0, 0x042F, 0xA7C1, 0x0430, 0xA7D1, 0x0431, 0xA7D2, 0x0432, 0xA7D3, 0x0433, 0xA7D4, + 0x0434, 0xA7D5, 0x0435, 0xA7D6, 0x0436, 0xA7D8, 0x0437, 0xA7D9, 0x0438, 0xA7DA, 0x0439, 0xA7DB, 0x043A, 0xA7DC, 0x043B, 0xA7DD, + 0x043C, 0xA7DE, 0x043D, 0xA7DF, 0x043E, 0xA7E0, 0x043F, 0xA7E1, 0x0440, 0xA7E2, 0x0441, 0xA7E3, 0x0442, 0xA7E4, 0x0443, 0xA7E5, + 0x0444, 0xA7E6, 0x0445, 0xA7E7, 0x0446, 0xA7E8, 0x0447, 0xA7E9, 0x0448, 0xA7EA, 0x0449, 0xA7EB, 0x044A, 0xA7EC, 0x044B, 0xA7ED, + 0x044C, 0xA7EE, 0x044D, 0xA7EF, 0x044E, 0xA7F0, 0x044F, 0xA7F1, 0x0451, 0xA7D7, 0x2010, 0xA95C, 0x2013, 0xA843, 0x2014, 0xA1AA, + 0x2015, 0xA844, 0x2016, 0xA1AC, 0x2018, 0xA1AE, 0x2019, 0xA1AF, 0x201C, 0xA1B0, 0x201D, 0xA1B1, 0x2025, 0xA845, 0x2026, 0xA1AD, + 0x2030, 0xA1EB, 0x2032, 0xA1E4, 0x2033, 0xA1E5, 0x2035, 0xA846, 0x203B, 0xA1F9, 0x20AC, 0x0080, 0x2103, 0xA1E6, 0x2105, 0xA847, + 0x2109, 0xA848, 0x2116, 0xA1ED, 0x2121, 0xA959, 0x2160, 0xA2F1, 0x2161, 0xA2F2, 0x2162, 0xA2F3, 0x2163, 0xA2F4, 0x2164, 0xA2F5, + 0x2165, 0xA2F6, 0x2166, 0xA2F7, 0x2167, 0xA2F8, 0x2168, 0xA2F9, 0x2169, 0xA2FA, 0x216A, 0xA2FB, 0x216B, 0xA2FC, 0x2170, 0xA2A1, + 0x2171, 0xA2A2, 0x2172, 0xA2A3, 0x2173, 0xA2A4, 0x2174, 0xA2A5, 0x2175, 0xA2A6, 0x2176, 0xA2A7, 0x2177, 0xA2A8, 0x2178, 0xA2A9, + 0x2179, 0xA2AA, 0x2190, 0xA1FB, 0x2191, 0xA1FC, 0x2192, 0xA1FA, 0x2193, 0xA1FD, 0x2196, 0xA849, 0x2197, 0xA84A, 0x2198, 0xA84B, + 0x2199, 0xA84C, 0x2208, 0xA1CA, 0x220F, 0xA1C7, 0x2211, 0xA1C6, 0x2215, 0xA84D, 0x221A, 0xA1CC, 0x221D, 0xA1D8, 0x221E, 0xA1DE, + 0x221F, 0xA84E, 0x2220, 0xA1CF, 0x2223, 0xA84F, 0x2225, 0xA1CE, 0x2227, 0xA1C4, 0x2228, 0xA1C5, 0x2229, 0xA1C9, 0x222A, 0xA1C8, + 0x222B, 0xA1D2, 0x222E, 0xA1D3, 0x2234, 0xA1E0, 0x2235, 0xA1DF, 0x2236, 0xA1C3, 0x2237, 0xA1CB, 0x223D, 0xA1D7, 0x2248, 0xA1D6, + 0x224C, 0xA1D5, 0x2252, 0xA850, 0x2260, 0xA1D9, 0x2261, 0xA1D4, 0x2264, 0xA1DC, 0x2265, 0xA1DD, 0x2266, 0xA851, 0x2267, 0xA852, + 0x226E, 0xA1DA, 0x226F, 0xA1DB, 0x2295, 0xA892, 0x2299, 0xA1D1, 0x22A5, 0xA1CD, 0x22BF, 0xA853, 0x2312, 0xA1D0, 0x2460, 0xA2D9, + 0x2461, 0xA2DA, 0x2462, 0xA2DB, 0x2463, 0xA2DC, 0x2464, 0xA2DD, 0x2465, 0xA2DE, 0x2466, 0xA2DF, 0x2467, 0xA2E0, 0x2468, 0xA2E1, + 0x2469, 0xA2E2, 0x2474, 0xA2C5, 0x2475, 0xA2C6, 0x2476, 0xA2C7, 0x2477, 0xA2C8, 0x2478, 0xA2C9, 0x2479, 0xA2CA, 0x247A, 0xA2CB, + 0x247B, 0xA2CC, 0x247C, 0xA2CD, 0x247D, 0xA2CE, 0x247E, 0xA2CF, 0x247F, 0xA2D0, 0x2480, 0xA2D1, 0x2481, 0xA2D2, 0x2482, 0xA2D3, + 0x2483, 0xA2D4, 0x2484, 0xA2D5, 0x2485, 0xA2D6, 0x2486, 0xA2D7, 0x2487, 0xA2D8, 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0xFC9A, 0x9F2A, 0xFC9B, + 0x9F2B, 0xFC9C, 0x9F2C, 0xF7F8, 0x9F2D, 0xFC9D, 0x9F2E, 0xFC9E, 0x9F2F, 0xF7F9, 0x9F30, 0xFC9F, 0x9F31, 0xFCA0, 0x9F32, 0xFD40, + 0x9F33, 0xFD41, 0x9F34, 0xFD42, 0x9F35, 0xFD43, 0x9F36, 0xFD44, 0x9F37, 0xF7FB, 0x9F38, 0xFD45, 0x9F39, 0xF7FA, 0x9F3A, 0xFD46, + 0x9F3B, 0xB1C7, 0x9F3C, 0xFD47, 0x9F3D, 0xF7FC, 0x9F3E, 0xF7FD, 0x9F3F, 0xFD48, 0x9F40, 0xFD49, 0x9F41, 0xFD4A, 0x9F42, 0xFD4B, + 0x9F43, 0xFD4C, 0x9F44, 0xF7FE, 0x9F45, 0xFD4D, 0x9F46, 0xFD4E, 0x9F47, 0xFD4F, 0x9F48, 0xFD50, 0x9F49, 0xFD51, 0x9F4A, 0xFD52, + 0x9F4B, 0xFD53, 0x9F4C, 0xFD54, 0x9F4D, 0xFD55, 0x9F4E, 0xFD56, 0x9F4F, 0xFD57, 0x9F50, 0xC6EB, 0x9F51, 0xECB4, 0x9F52, 0xFD58, + 0x9F53, 0xFD59, 0x9F54, 0xFD5A, 0x9F55, 0xFD5B, 0x9F56, 0xFD5C, 0x9F57, 0xFD5D, 0x9F58, 0xFD5E, 0x9F59, 0xFD5F, 0x9F5A, 0xFD60, + 0x9F5B, 0xFD61, 0x9F5C, 0xFD62, 0x9F5D, 0xFD63, 0x9F5E, 0xFD64, 0x9F5F, 0xFD65, 0x9F60, 0xFD66, 0x9F61, 0xFD67, 0x9F62, 0xFD68, + 0x9F63, 0xFD69, 0x9F64, 0xFD6A, 0x9F65, 0xFD6B, 0x9F66, 0xFD6C, 0x9F67, 0xFD6D, 0x9F68, 0xFD6E, 0x9F69, 0xFD6F, 0x9F6A, 0xFD70, + 0x9F6B, 0xFD71, 0x9F6C, 0xFD72, 0x9F6D, 0xFD73, 0x9F6E, 0xFD74, 0x9F6F, 0xFD75, 0x9F70, 0xFD76, 0x9F71, 0xFD77, 0x9F72, 0xFD78, + 0x9F73, 0xFD79, 0x9F74, 0xFD7A, 0x9F75, 0xFD7B, 0x9F76, 0xFD7C, 0x9F77, 0xFD7D, 0x9F78, 0xFD7E, 0x9F79, 0xFD80, 0x9F7A, 0xFD81, + 0x9F7B, 0xFD82, 0x9F7C, 0xFD83, 0x9F7D, 0xFD84, 0x9F7E, 0xFD85, 0x9F7F, 0xB3DD, 0x9F80, 0xF6B3, 0x9F81, 0xFD86, 0x9F82, 0xFD87, + 0x9F83, 0xF6B4, 0x9F84, 0xC1E4, 0x9F85, 0xF6B5, 0x9F86, 0xF6B6, 0x9F87, 0xF6B7, 0x9F88, 0xF6B8, 0x9F89, 0xF6B9, 0x9F8A, 0xF6BA, + 0x9F8B, 0xC8A3, 0x9F8C, 0xF6BB, 0x9F8D, 0xFD88, 0x9F8E, 0xFD89, 0x9F8F, 0xFD8A, 0x9F90, 0xFD8B, 0x9F91, 0xFD8C, 0x9F92, 0xFD8D, + 0x9F93, 0xFD8E, 0x9F94, 0xFD8F, 0x9F95, 0xFD90, 0x9F96, 0xFD91, 0x9F97, 0xFD92, 0x9F98, 0xFD93, 0x9F99, 0xC1FA, 0x9F9A, 0xB9A8, + 0x9F9B, 0xEDE8, 0x9F9C, 0xFD94, 0x9F9D, 0xFD95, 0x9F9E, 0xFD96, 0x9F9F, 0xB9EA, 0x9FA0, 0xD9DF, 0x9FA1, 0xFD97, 0x9FA2, 0xFD98, + 0x9FA3, 0xFD99, 0x9FA4, 0xFD9A, 0x9FA5, 0xFD9B, 0xF92C, 0xFD9C, 0xF979, 0xFD9D, 0xF995, 0xFD9E, 0xF9E7, 0xFD9F, 0xF9F1, 0xFDA0, + 0xFA0C, 0xFE40, 0xFA0D, 0xFE41, 0xFA0E, 0xFE42, 0xFA0F, 0xFE43, 0xFA11, 0xFE44, 0xFA13, 0xFE45, 0xFA14, 0xFE46, 0xFA18, 0xFE47, + 0xFA1F, 0xFE48, 0xFA20, 0xFE49, 0xFA21, 0xFE4A, 0xFA23, 0xFE4B, 0xFA24, 0xFE4C, 0xFA27, 0xFE4D, 0xFA28, 0xFE4E, 0xFA29, 0xFE4F, + 0xFE30, 0xA955, 0xFE31, 0xA6F2, 0xFE33, 0xA6F4, 0xFE34, 0xA6F5, 0xFE35, 0xA6E0, 0xFE36, 0xA6E1, 0xFE37, 0xA6F0, 0xFE38, 0xA6F1, + 0xFE39, 0xA6E2, 0xFE3A, 0xA6E3, 0xFE3B, 0xA6EE, 0xFE3C, 0xA6EF, 0xFE3D, 0xA6E6, 0xFE3E, 0xA6E7, 0xFE3F, 0xA6E4, 0xFE40, 0xA6E5, + 0xFE41, 0xA6E8, 0xFE42, 0xA6E9, 0xFE43, 0xA6EA, 0xFE44, 0xA6EB, 0xFE49, 0xA968, 0xFE4A, 0xA969, 0xFE4B, 0xA96A, 0xFE4C, 0xA96B, + 0xFE4D, 0xA96C, 0xFE4E, 0xA96D, 0xFE4F, 0xA96E, 0xFE50, 0xA96F, 0xFE51, 0xA970, 0xFE52, 0xA971, 0xFE54, 0xA972, 0xFE55, 0xA973, + 0xFE56, 0xA974, 0xFE57, 0xA975, 0xFE59, 0xA976, 0xFE5A, 0xA977, 0xFE5B, 0xA978, 0xFE5C, 0xA979, 0xFE5D, 0xA97A, 0xFE5E, 0xA97B, + 0xFE5F, 0xA97C, 0xFE60, 0xA97D, 0xFE61, 0xA97E, 0xFE62, 0xA980, 0xFE63, 0xA981, 0xFE64, 0xA982, 0xFE65, 0xA983, 0xFE66, 0xA984, + 0xFE68, 0xA985, 0xFE69, 0xA986, 0xFE6A, 0xA987, 0xFE6B, 0xA988, 0xFF01, 0xA3A1, 0xFF02, 0xA3A2, 0xFF03, 0xA3A3, 0xFF04, 0xA1E7, + 0xFF05, 0xA3A5, 0xFF06, 0xA3A6, 0xFF07, 0xA3A7, 0xFF08, 0xA3A8, 0xFF09, 0xA3A9, 0xFF0A, 0xA3AA, 0xFF0B, 0xA3AB, 0xFF0C, 0xA3AC, + 0xFF0D, 0xA3AD, 0xFF0E, 0xA3AE, 0xFF0F, 0xA3AF, 0xFF10, 0xA3B0, 0xFF11, 0xA3B1, 0xFF12, 0xA3B2, 0xFF13, 0xA3B3, 0xFF14, 0xA3B4, + 0xFF15, 0xA3B5, 0xFF16, 0xA3B6, 0xFF17, 0xA3B7, 0xFF18, 0xA3B8, 0xFF19, 0xA3B9, 0xFF1A, 0xA3BA, 0xFF1B, 0xA3BB, 0xFF1C, 0xA3BC, + 0xFF1D, 0xA3BD, 0xFF1E, 0xA3BE, 0xFF1F, 0xA3BF, 0xFF20, 0xA3C0, 0xFF21, 0xA3C1, 0xFF22, 0xA3C2, 0xFF23, 0xA3C3, 0xFF24, 0xA3C4, + 0xFF25, 0xA3C5, 0xFF26, 0xA3C6, 0xFF27, 0xA3C7, 0xFF28, 0xA3C8, 0xFF29, 0xA3C9, 0xFF2A, 0xA3CA, 0xFF2B, 0xA3CB, 0xFF2C, 0xA3CC, + 0xFF2D, 0xA3CD, 0xFF2E, 0xA3CE, 0xFF2F, 0xA3CF, 0xFF30, 0xA3D0, 0xFF31, 0xA3D1, 0xFF32, 0xA3D2, 0xFF33, 0xA3D3, 0xFF34, 0xA3D4, + 0xFF35, 0xA3D5, 0xFF36, 0xA3D6, 0xFF37, 0xA3D7, 0xFF38, 0xA3D8, 0xFF39, 0xA3D9, 0xFF3A, 0xA3DA, 0xFF3B, 0xA3DB, 0xFF3C, 0xA3DC, + 0xFF3D, 0xA3DD, 0xFF3E, 0xA3DE, 0xFF3F, 0xA3DF, 0xFF40, 0xA3E0, 0xFF41, 0xA3E1, 0xFF42, 0xA3E2, 0xFF43, 0xA3E3, 0xFF44, 0xA3E4, + 0xFF45, 0xA3E5, 0xFF46, 0xA3E6, 0xFF47, 0xA3E7, 0xFF48, 0xA3E8, 0xFF49, 0xA3E9, 0xFF4A, 0xA3EA, 0xFF4B, 0xA3EB, 0xFF4C, 0xA3EC, + 0xFF4D, 0xA3ED, 0xFF4E, 0xA3EE, 0xFF4F, 0xA3EF, 0xFF50, 0xA3F0, 0xFF51, 0xA3F1, 0xFF52, 0xA3F2, 0xFF53, 0xA3F3, 0xFF54, 0xA3F4, + 0xFF55, 0xA3F5, 0xFF56, 0xA3F6, 0xFF57, 0xA3F7, 0xFF58, 0xA3F8, 0xFF59, 0xA3F9, 0xFF5A, 0xA3FA, 0xFF5B, 0xA3FB, 0xFF5C, 0xA3FC, + 0xFF5D, 0xA3FD, 0xFF5E, 0xA1AB, 0xFFE0, 0xA1E9, 0xFFE1, 0xA1EA, 0xFFE2, 0xA956, 0xFFE3, 0xA3FE, 0xFFE4, 0xA957, 0xFFE5, 0xA3A4, + 0, 0 +}; + +static const WCHAR oem2uni936[] = { /* GBK --> Unicode pairs */ + 0x0080, 0x20AC, 0x8140, 0x4E02, 0x8141, 0x4E04, 0x8142, 0x4E05, 0x8143, 0x4E06, 0x8144, 0x4E0F, 0x8145, 0x4E12, 0x8146, 0x4E17, + 0x8147, 0x4E1F, 0x8148, 0x4E20, 0x8149, 0x4E21, 0x814A, 0x4E23, 0x814B, 0x4E26, 0x814C, 0x4E29, 0x814D, 0x4E2E, 0x814E, 0x4E2F, + 0x814F, 0x4E31, 0x8150, 0x4E33, 0x8151, 0x4E35, 0x8152, 0x4E37, 0x8153, 0x4E3C, 0x8154, 0x4E40, 0x8155, 0x4E41, 0x8156, 0x4E42, + 0x8157, 0x4E44, 0x8158, 0x4E46, 0x8159, 0x4E4A, 0x815A, 0x4E51, 0x815B, 0x4E55, 0x815C, 0x4E57, 0x815D, 0x4E5A, 0x815E, 0x4E5B, + 0x815F, 0x4E62, 0x8160, 0x4E63, 0x8161, 0x4E64, 0x8162, 0x4E65, 0x8163, 0x4E67, 0x8164, 0x4E68, 0x8165, 0x4E6A, 0x8166, 0x4E6B, + 0x8167, 0x4E6C, 0x8168, 0x4E6D, 0x8169, 0x4E6E, 0x816A, 0x4E6F, 0x816B, 0x4E72, 0x816C, 0x4E74, 0x816D, 0x4E75, 0x816E, 0x4E76, + 0x816F, 0x4E77, 0x8170, 0x4E78, 0x8171, 0x4E79, 0x8172, 0x4E7A, 0x8173, 0x4E7B, 0x8174, 0x4E7C, 0x8175, 0x4E7D, 0x8176, 0x4E7F, + 0x8177, 0x4E80, 0x8178, 0x4E81, 0x8179, 0x4E82, 0x817A, 0x4E83, 0x817B, 0x4E84, 0x817C, 0x4E85, 0x817D, 0x4E87, 0x817E, 0x4E8A, + 0x8180, 0x4E90, 0x8181, 0x4E96, 0x8182, 0x4E97, 0x8183, 0x4E99, 0x8184, 0x4E9C, 0x8185, 0x4E9D, 0x8186, 0x4E9E, 0x8187, 0x4EA3, + 0x8188, 0x4EAA, 0x8189, 0x4EAF, 0x818A, 0x4EB0, 0x818B, 0x4EB1, 0x818C, 0x4EB4, 0x818D, 0x4EB6, 0x818E, 0x4EB7, 0x818F, 0x4EB8, + 0x8190, 0x4EB9, 0x8191, 0x4EBC, 0x8192, 0x4EBD, 0x8193, 0x4EBE, 0x8194, 0x4EC8, 0x8195, 0x4ECC, 0x8196, 0x4ECF, 0x8197, 0x4ED0, + 0x8198, 0x4ED2, 0x8199, 0x4EDA, 0x819A, 0x4EDB, 0x819B, 0x4EDC, 0x819C, 0x4EE0, 0x819D, 0x4EE2, 0x819E, 0x4EE6, 0x819F, 0x4EE7, + 0x81A0, 0x4EE9, 0x81A1, 0x4EED, 0x81A2, 0x4EEE, 0x81A3, 0x4EEF, 0x81A4, 0x4EF1, 0x81A5, 0x4EF4, 0x81A6, 0x4EF8, 0x81A7, 0x4EF9, + 0x81A8, 0x4EFA, 0x81A9, 0x4EFC, 0x81AA, 0x4EFE, 0x81AB, 0x4F00, 0x81AC, 0x4F02, 0x81AD, 0x4F03, 0x81AE, 0x4F04, 0x81AF, 0x4F05, + 0x81B0, 0x4F06, 0x81B1, 0x4F07, 0x81B2, 0x4F08, 0x81B3, 0x4F0B, 0x81B4, 0x4F0C, 0x81B5, 0x4F12, 0x81B6, 0x4F13, 0x81B7, 0x4F14, + 0x81B8, 0x4F15, 0x81B9, 0x4F16, 0x81BA, 0x4F1C, 0x81BB, 0x4F1D, 0x81BC, 0x4F21, 0x81BD, 0x4F23, 0x81BE, 0x4F28, 0x81BF, 0x4F29, + 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0xFA4F, 0x9DB2, + 0xFA50, 0x9DB3, 0xFA51, 0x9DB4, 0xFA52, 0x9DB5, 0xFA53, 0x9DB6, 0xFA54, 0x9DB7, 0xFA55, 0x9DB8, 0xFA56, 0x9DB9, 0xFA57, 0x9DBA, + 0xFA58, 0x9DBB, 0xFA59, 0x9DBC, 0xFA5A, 0x9DBD, 0xFA5B, 0x9DBE, 0xFA5C, 0x9DBF, 0xFA5D, 0x9DC0, 0xFA5E, 0x9DC1, 0xFA5F, 0x9DC2, + 0xFA60, 0x9DC3, 0xFA61, 0x9DC4, 0xFA62, 0x9DC5, 0xFA63, 0x9DC6, 0xFA64, 0x9DC7, 0xFA65, 0x9DC8, 0xFA66, 0x9DC9, 0xFA67, 0x9DCA, + 0xFA68, 0x9DCB, 0xFA69, 0x9DCC, 0xFA6A, 0x9DCD, 0xFA6B, 0x9DCE, 0xFA6C, 0x9DCF, 0xFA6D, 0x9DD0, 0xFA6E, 0x9DD1, 0xFA6F, 0x9DD2, + 0xFA70, 0x9DD3, 0xFA71, 0x9DD4, 0xFA72, 0x9DD5, 0xFA73, 0x9DD6, 0xFA74, 0x9DD7, 0xFA75, 0x9DD8, 0xFA76, 0x9DD9, 0xFA77, 0x9DDA, + 0xFA78, 0x9DDB, 0xFA79, 0x9DDC, 0xFA7A, 0x9DDD, 0xFA7B, 0x9DDE, 0xFA7C, 0x9DDF, 0xFA7D, 0x9DE0, 0xFA7E, 0x9DE1, 0xFA80, 0x9DE2, + 0xFA81, 0x9DE3, 0xFA82, 0x9DE4, 0xFA83, 0x9DE5, 0xFA84, 0x9DE6, 0xFA85, 0x9DE7, 0xFA86, 0x9DE8, 0xFA87, 0x9DE9, 0xFA88, 0x9DEA, + 0xFA89, 0x9DEB, 0xFA8A, 0x9DEC, 0xFA8B, 0x9DED, 0xFA8C, 0x9DEE, 0xFA8D, 0x9DEF, 0xFA8E, 0x9DF0, 0xFA8F, 0x9DF1, 0xFA90, 0x9DF2, + 0xFA91, 0x9DF3, 0xFA92, 0x9DF4, 0xFA93, 0x9DF5, 0xFA94, 0x9DF6, 0xFA95, 0x9DF7, 0xFA96, 0x9DF8, 0xFA97, 0x9DF9, 0xFA98, 0x9DFA, + 0xFA99, 0x9DFB, 0xFA9A, 0x9DFC, 0xFA9B, 0x9DFD, 0xFA9C, 0x9DFE, 0xFA9D, 0x9DFF, 0xFA9E, 0x9E00, 0xFA9F, 0x9E01, 0xFAA0, 0x9E02, + 0xFB40, 0x9E03, 0xFB41, 0x9E04, 0xFB42, 0x9E05, 0xFB43, 0x9E06, 0xFB44, 0x9E07, 0xFB45, 0x9E08, 0xFB46, 0x9E09, 0xFB47, 0x9E0A, + 0xFB48, 0x9E0B, 0xFB49, 0x9E0C, 0xFB4A, 0x9E0D, 0xFB4B, 0x9E0E, 0xFB4C, 0x9E0F, 0xFB4D, 0x9E10, 0xFB4E, 0x9E11, 0xFB4F, 0x9E12, + 0xFB50, 0x9E13, 0xFB51, 0x9E14, 0xFB52, 0x9E15, 0xFB53, 0x9E16, 0xFB54, 0x9E17, 0xFB55, 0x9E18, 0xFB56, 0x9E19, 0xFB57, 0x9E1A, + 0xFB58, 0x9E1B, 0xFB59, 0x9E1C, 0xFB5A, 0x9E1D, 0xFB5B, 0x9E1E, 0xFB5C, 0x9E24, 0xFB5D, 0x9E27, 0xFB5E, 0x9E2E, 0xFB5F, 0x9E30, + 0xFB60, 0x9E34, 0xFB61, 0x9E3B, 0xFB62, 0x9E3C, 0xFB63, 0x9E40, 0xFB64, 0x9E4D, 0xFB65, 0x9E50, 0xFB66, 0x9E52, 0xFB67, 0x9E53, + 0xFB68, 0x9E54, 0xFB69, 0x9E56, 0xFB6A, 0x9E59, 0xFB6B, 0x9E5D, 0xFB6C, 0x9E5F, 0xFB6D, 0x9E60, 0xFB6E, 0x9E61, 0xFB6F, 0x9E62, + 0xFB70, 0x9E65, 0xFB71, 0x9E6E, 0xFB72, 0x9E6F, 0xFB73, 0x9E72, 0xFB74, 0x9E74, 0xFB75, 0x9E75, 0xFB76, 0x9E76, 0xFB77, 0x9E77, + 0xFB78, 0x9E78, 0xFB79, 0x9E79, 0xFB7A, 0x9E7A, 0xFB7B, 0x9E7B, 0xFB7C, 0x9E7C, 0xFB7D, 0x9E7D, 0xFB7E, 0x9E80, 0xFB80, 0x9E81, + 0xFB81, 0x9E83, 0xFB82, 0x9E84, 0xFB83, 0x9E85, 0xFB84, 0x9E86, 0xFB85, 0x9E89, 0xFB86, 0x9E8A, 0xFB87, 0x9E8C, 0xFB88, 0x9E8D, + 0xFB89, 0x9E8E, 0xFB8A, 0x9E8F, 0xFB8B, 0x9E90, 0xFB8C, 0x9E91, 0xFB8D, 0x9E94, 0xFB8E, 0x9E95, 0xFB8F, 0x9E96, 0xFB90, 0x9E97, + 0xFB91, 0x9E98, 0xFB92, 0x9E99, 0xFB93, 0x9E9A, 0xFB94, 0x9E9B, 0xFB95, 0x9E9C, 0xFB96, 0x9E9E, 0xFB97, 0x9EA0, 0xFB98, 0x9EA1, + 0xFB99, 0x9EA2, 0xFB9A, 0x9EA3, 0xFB9B, 0x9EA4, 0xFB9C, 0x9EA5, 0xFB9D, 0x9EA7, 0xFB9E, 0x9EA8, 0xFB9F, 0x9EA9, 0xFBA0, 0x9EAA, + 0xFC40, 0x9EAB, 0xFC41, 0x9EAC, 0xFC42, 0x9EAD, 0xFC43, 0x9EAE, 0xFC44, 0x9EAF, 0xFC45, 0x9EB0, 0xFC46, 0x9EB1, 0xFC47, 0x9EB2, + 0xFC48, 0x9EB3, 0xFC49, 0x9EB5, 0xFC4A, 0x9EB6, 0xFC4B, 0x9EB7, 0xFC4C, 0x9EB9, 0xFC4D, 0x9EBA, 0xFC4E, 0x9EBC, 0xFC4F, 0x9EBF, + 0xFC50, 0x9EC0, 0xFC51, 0x9EC1, 0xFC52, 0x9EC2, 0xFC53, 0x9EC3, 0xFC54, 0x9EC5, 0xFC55, 0x9EC6, 0xFC56, 0x9EC7, 0xFC57, 0x9EC8, + 0xFC58, 0x9ECA, 0xFC59, 0x9ECB, 0xFC5A, 0x9ECC, 0xFC5B, 0x9ED0, 0xFC5C, 0x9ED2, 0xFC5D, 0x9ED3, 0xFC5E, 0x9ED5, 0xFC5F, 0x9ED6, + 0xFC60, 0x9ED7, 0xFC61, 0x9ED9, 0xFC62, 0x9EDA, 0xFC63, 0x9EDE, 0xFC64, 0x9EE1, 0xFC65, 0x9EE3, 0xFC66, 0x9EE4, 0xFC67, 0x9EE6, + 0xFC68, 0x9EE8, 0xFC69, 0x9EEB, 0xFC6A, 0x9EEC, 0xFC6B, 0x9EED, 0xFC6C, 0x9EEE, 0xFC6D, 0x9EF0, 0xFC6E, 0x9EF1, 0xFC6F, 0x9EF2, + 0xFC70, 0x9EF3, 0xFC71, 0x9EF4, 0xFC72, 0x9EF5, 0xFC73, 0x9EF6, 0xFC74, 0x9EF7, 0xFC75, 0x9EF8, 0xFC76, 0x9EFA, 0xFC77, 0x9EFD, + 0xFC78, 0x9EFF, 0xFC79, 0x9F00, 0xFC7A, 0x9F01, 0xFC7B, 0x9F02, 0xFC7C, 0x9F03, 0xFC7D, 0x9F04, 0xFC7E, 0x9F05, 0xFC80, 0x9F06, + 0xFC81, 0x9F07, 0xFC82, 0x9F08, 0xFC83, 0x9F09, 0xFC84, 0x9F0A, 0xFC85, 0x9F0C, 0xFC86, 0x9F0F, 0xFC87, 0x9F11, 0xFC88, 0x9F12, + 0xFC89, 0x9F14, 0xFC8A, 0x9F15, 0xFC8B, 0x9F16, 0xFC8C, 0x9F18, 0xFC8D, 0x9F1A, 0xFC8E, 0x9F1B, 0xFC8F, 0x9F1C, 0xFC90, 0x9F1D, + 0xFC91, 0x9F1E, 0xFC92, 0x9F1F, 0xFC93, 0x9F21, 0xFC94, 0x9F23, 0xFC95, 0x9F24, 0xFC96, 0x9F25, 0xFC97, 0x9F26, 0xFC98, 0x9F27, + 0xFC99, 0x9F28, 0xFC9A, 0x9F29, 0xFC9B, 0x9F2A, 0xFC9C, 0x9F2B, 0xFC9D, 0x9F2D, 0xFC9E, 0x9F2E, 0xFC9F, 0x9F30, 0xFCA0, 0x9F31, + 0xFD40, 0x9F32, 0xFD41, 0x9F33, 0xFD42, 0x9F34, 0xFD43, 0x9F35, 0xFD44, 0x9F36, 0xFD45, 0x9F38, 0xFD46, 0x9F3A, 0xFD47, 0x9F3C, + 0xFD48, 0x9F3F, 0xFD49, 0x9F40, 0xFD4A, 0x9F41, 0xFD4B, 0x9F42, 0xFD4C, 0x9F43, 0xFD4D, 0x9F45, 0xFD4E, 0x9F46, 0xFD4F, 0x9F47, + 0xFD50, 0x9F48, 0xFD51, 0x9F49, 0xFD52, 0x9F4A, 0xFD53, 0x9F4B, 0xFD54, 0x9F4C, 0xFD55, 0x9F4D, 0xFD56, 0x9F4E, 0xFD57, 0x9F4F, + 0xFD58, 0x9F52, 0xFD59, 0x9F53, 0xFD5A, 0x9F54, 0xFD5B, 0x9F55, 0xFD5C, 0x9F56, 0xFD5D, 0x9F57, 0xFD5E, 0x9F58, 0xFD5F, 0x9F59, + 0xFD60, 0x9F5A, 0xFD61, 0x9F5B, 0xFD62, 0x9F5C, 0xFD63, 0x9F5D, 0xFD64, 0x9F5E, 0xFD65, 0x9F5F, 0xFD66, 0x9F60, 0xFD67, 0x9F61, + 0xFD68, 0x9F62, 0xFD69, 0x9F63, 0xFD6A, 0x9F64, 0xFD6B, 0x9F65, 0xFD6C, 0x9F66, 0xFD6D, 0x9F67, 0xFD6E, 0x9F68, 0xFD6F, 0x9F69, + 0xFD70, 0x9F6A, 0xFD71, 0x9F6B, 0xFD72, 0x9F6C, 0xFD73, 0x9F6D, 0xFD74, 0x9F6E, 0xFD75, 0x9F6F, 0xFD76, 0x9F70, 0xFD77, 0x9F71, + 0xFD78, 0x9F72, 0xFD79, 0x9F73, 0xFD7A, 0x9F74, 0xFD7B, 0x9F75, 0xFD7C, 0x9F76, 0xFD7D, 0x9F77, 0xFD7E, 0x9F78, 0xFD80, 0x9F79, + 0xFD81, 0x9F7A, 0xFD82, 0x9F7B, 0xFD83, 0x9F7C, 0xFD84, 0x9F7D, 0xFD85, 0x9F7E, 0xFD86, 0x9F81, 0xFD87, 0x9F82, 0xFD88, 0x9F8D, + 0xFD89, 0x9F8E, 0xFD8A, 0x9F8F, 0xFD8B, 0x9F90, 0xFD8C, 0x9F91, 0xFD8D, 0x9F92, 0xFD8E, 0x9F93, 0xFD8F, 0x9F94, 0xFD90, 0x9F95, + 0xFD91, 0x9F96, 0xFD92, 0x9F97, 0xFD93, 0x9F98, 0xFD94, 0x9F9C, 0xFD95, 0x9F9D, 0xFD96, 0x9F9E, 0xFD97, 0x9FA1, 0xFD98, 0x9FA2, + 0xFD99, 0x9FA3, 0xFD9A, 0x9FA4, 0xFD9B, 0x9FA5, 0xFD9C, 0xF92C, 0xFD9D, 0xF979, 0xFD9E, 0xF995, 0xFD9F, 0xF9E7, 0xFDA0, 0xF9F1, + 0xFE40, 0xFA0C, 0xFE41, 0xFA0D, 0xFE42, 0xFA0E, 0xFE43, 0xFA0F, 0xFE44, 0xFA11, 0xFE45, 0xFA13, 0xFE46, 0xFA14, 0xFE47, 0xFA18, + 0xFE48, 0xFA1F, 0xFE49, 0xFA20, 0xFE4A, 0xFA21, 0xFE4B, 0xFA23, 0xFE4C, 0xFA24, 0xFE4D, 0xFA27, 0xFE4E, 0xFA28, 0xFE4F, 0xFA29, + 0, 0 +}; +#endif + +#if FF_CODE_PAGE == 949 || FF_CODE_PAGE == 0 /* Korean */ +static const WCHAR uni2oem949[] = { /* Unicode --> Korean pairs */ + 0x00A1, 0xA2AE, 0x00A4, 0xA2B4, 0x00A7, 0xA1D7, 0x00A8, 0xA1A7, 0x00AA, 0xA8A3, 0x00AD, 0xA1A9, 0x00AE, 0xA2E7, 0x00B0, 0xA1C6, + 0x00B1, 0xA1BE, 0x00B2, 0xA9F7, 0x00B3, 0xA9F8, 0x00B4, 0xA2A5, 0x00B6, 0xA2D2, 0x00B7, 0xA1A4, 0x00B8, 0xA2AC, 0x00B9, 0xA9F6, + 0x00BA, 0xA8AC, 0x00BC, 0xA8F9, 0x00BD, 0xA8F6, 0x00BE, 0xA8FA, 0x00BF, 0xA2AF, 0x00C6, 0xA8A1, 0x00D0, 0xA8A2, 0x00D7, 0xA1BF, + 0x00D8, 0xA8AA, 0x00DE, 0xA8AD, 0x00DF, 0xA9AC, 0x00E6, 0xA9A1, 0x00F0, 0xA9A3, 0x00F7, 0xA1C0, 0x00F8, 0xA9AA, 0x00FE, 0xA9AD, + 0x0111, 0xA9A2, 0x0126, 0xA8A4, 0x0127, 0xA9A4, 0x0131, 0xA9A5, 0x0132, 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0xD6C5, 0xC8C5, 0xD6C6, 0xC456, 0xD6C7, 0xC457, 0xD6C8, 0xC8C6, 0xD6C9, 0xC458, 0xD6CA, 0xC459, 0xD6CB, 0xC45A, + 0xD6CC, 0xC8C7, 0xD6CD, 0xC461, 0xD6CE, 0xC462, 0xD6CF, 0xC463, 0xD6D0, 0xC464, 0xD6D1, 0xC8C8, 0xD6D2, 0xC465, 0xD6D3, 0xC466, + 0xD6D4, 0xC8C9, 0xD6D5, 0xC467, 0xD6D6, 0xC468, 0xD6D7, 0xC8CA, 0xD6D8, 0xC469, 0xD6D9, 0xC8CB, 0xD6DA, 0xC46A, 0xD6DB, 0xC46B, + 0xD6DC, 0xC46C, 0xD6DD, 0xC46D, 0xD6DE, 0xC46E, 0xD6DF, 0xC46F, 0xD6E0, 0xC8CC, 0xD6E1, 0xC470, 0xD6E2, 0xC471, 0xD6E3, 0xC472, + 0xD6E4, 0xC8CD, 0xD6E5, 0xC473, 0xD6E6, 0xC474, 0xD6E7, 0xC475, 0xD6E8, 0xC8CE, 0xD6E9, 0xC476, 0xD6EA, 0xC477, 0xD6EB, 0xC478, + 0xD6EC, 0xC479, 0xD6ED, 0xC47A, 0xD6EE, 0xC481, 0xD6EF, 0xC482, 0xD6F0, 0xC8CF, 0xD6F1, 0xC483, 0xD6F2, 0xC484, 0xD6F3, 0xC485, + 0xD6F4, 0xC486, 0xD6F5, 0xC8D0, 0xD6F6, 0xC487, 0xD6F7, 0xC488, 0xD6F8, 0xC489, 0xD6F9, 0xC48A, 0xD6FA, 0xC48B, 0xD6FB, 0xC48C, + 0xD6FC, 0xC8D1, 0xD6FD, 0xC8D2, 0xD6FE, 0xC48D, 0xD6FF, 0xC48E, 0xD700, 0xC8D3, 0xD701, 0xC48F, 0xD702, 0xC490, 0xD703, 0xC491, + 0xD704, 0xC8D4, 0xD705, 0xC492, 0xD706, 0xC493, 0xD707, 0xC494, 0xD708, 0xC495, 0xD709, 0xC496, 0xD70A, 0xC497, 0xD70B, 0xC498, + 0xD70C, 0xC499, 0xD70D, 0xC49A, 0xD70E, 0xC49B, 0xD70F, 0xC49C, 0xD710, 0xC49D, 0xD711, 0xC8D5, 0xD712, 0xC49E, 0xD713, 0xC49F, + 0xD714, 0xC4A0, 0xD715, 0xC541, 0xD716, 0xC542, 0xD717, 0xC543, 0xD718, 0xC8D6, 0xD719, 0xC8D7, 0xD71A, 0xC544, 0xD71B, 0xC545, + 0xD71C, 0xC8D8, 0xD71D, 0xC546, 0xD71E, 0xC547, 0xD71F, 0xC548, 0xD720, 0xC8D9, 0xD721, 0xC549, 0xD722, 0xC54A, 0xD723, 0xC54B, + 0xD724, 0xC54C, 0xD725, 0xC54D, 0xD726, 0xC54E, 0xD727, 0xC54F, 0xD728, 0xC8DA, 0xD729, 0xC8DB, 0xD72A, 0xC550, 0xD72B, 0xC8DC, + 0xD72C, 0xC551, 0xD72D, 0xC8DD, 0xD72E, 0xC552, 0xD72F, 0xC553, 0xD730, 0xC554, 0xD731, 0xC555, 0xD732, 0xC556, 0xD733, 0xC557, + 0xD734, 0xC8DE, 0xD735, 0xC8DF, 0xD736, 0xC558, 0xD737, 0xC559, 0xD738, 0xC8E0, 0xD739, 0xC55A, 0xD73A, 0xC561, 0xD73B, 0xC562, + 0xD73C, 0xC8E1, 0xD73D, 0xC563, 0xD73E, 0xC564, 0xD73F, 0xC565, 0xD740, 0xC566, 0xD741, 0xC567, 0xD742, 0xC568, 0xD743, 0xC569, + 0xD744, 0xC8E2, 0xD745, 0xC56A, 0xD746, 0xC56B, 0xD747, 0xC8E3, 0xD748, 0xC56C, 0xD749, 0xC8E4, 0xD74A, 0xC56D, 0xD74B, 0xC56E, + 0xD74C, 0xC56F, 0xD74D, 0xC570, 0xD74E, 0xC571, 0xD74F, 0xC572, 0xD750, 0xC8E5, 0xD751, 0xC8E6, 0xD752, 0xC573, 0xD753, 0xC574, + 0xD754, 0xC8E7, 0xD755, 0xC575, 0xD756, 0xC8E8, 0xD757, 0xC8E9, 0xD758, 0xC8EA, 0xD759, 0xC8EB, 0xD75A, 0xC576, 0xD75B, 0xC577, + 0xD75C, 0xC578, 0xD75D, 0xC579, 0xD75E, 0xC57A, 0xD75F, 0xC581, 0xD760, 0xC8EC, 0xD761, 0xC8ED, 0xD762, 0xC582, 0xD763, 0xC8EE, + 0xD764, 0xC583, 0xD765, 0xC8EF, 0xD766, 0xC584, 0xD767, 0xC585, 0xD768, 0xC586, 0xD769, 0xC8F0, 0xD76A, 0xC587, 0xD76B, 0xC588, + 0xD76C, 0xC8F1, 0xD76D, 0xC589, 0xD76E, 0xC58A, 0xD76F, 0xC58B, 0xD770, 0xC8F2, 0xD771, 0xC58C, 0xD772, 0xC58D, 0xD773, 0xC58E, + 0xD774, 0xC8F3, 0xD775, 0xC58F, 0xD776, 0xC590, 0xD777, 0xC591, 0xD778, 0xC592, 0xD779, 0xC593, 0xD77A, 0xC594, 0xD77B, 0xC595, + 0xD77C, 0xC8F4, 0xD77D, 0xC8F5, 0xD77E, 0xC596, 0xD77F, 0xC597, 0xD780, 0xC598, 0xD781, 0xC8F6, 0xD782, 0xC599, 0xD783, 0xC59A, + 0xD784, 0xC59B, 0xD785, 0xC59C, 0xD786, 0xC59D, 0xD787, 0xC59E, 0xD788, 0xC8F7, 0xD789, 0xC8F8, 0xD78A, 0xC59F, 0xD78B, 0xC5A0, + 0xD78C, 0xC8F9, 0xD78D, 0xC641, 0xD78E, 0xC642, 0xD78F, 0xC643, 0xD790, 0xC8FA, 0xD791, 0xC644, 0xD792, 0xC645, 0xD793, 0xC646, + 0xD794, 0xC647, 0xD795, 0xC648, 0xD796, 0xC649, 0xD797, 0xC64A, 0xD798, 0xC8FB, 0xD799, 0xC8FC, 0xD79A, 0xC64B, 0xD79B, 0xC8FD, + 0xD79C, 0xC64C, 0xD79D, 0xC8FE, 0xD79E, 0xC64D, 0xD79F, 0xC64E, 0xD7A0, 0xC64F, 0xD7A1, 0xC650, 0xD7A2, 0xC651, 0xD7A3, 0xC652, + 0xF900, 0xCBD0, 0xF901, 0xCBD6, 0xF902, 0xCBE7, 0xF903, 0xCDCF, 0xF904, 0xCDE8, 0xF905, 0xCEAD, 0xF906, 0xCFFB, 0xF907, 0xD0A2, + 0xF908, 0xD0B8, 0xF909, 0xD0D0, 0xF90A, 0xD0DD, 0xF90B, 0xD1D4, 0xF90C, 0xD1D5, 0xF90D, 0xD1D8, 0xF90E, 0xD1DB, 0xF90F, 0xD1DC, + 0xF910, 0xD1DD, 0xF911, 0xD1DE, 0xF912, 0xD1DF, 0xF913, 0xD1E0, 0xF914, 0xD1E2, 0xF915, 0xD1E3, 0xF916, 0xD1E4, 0xF917, 0xD1E5, + 0xF918, 0xD1E6, 0xF919, 0xD1E8, 0xF91A, 0xD1E9, 0xF91B, 0xD1EA, 0xF91C, 0xD1EB, 0xF91D, 0xD1ED, 0xF91E, 0xD1EF, 0xF91F, 0xD1F0, + 0xF920, 0xD1F2, 0xF921, 0xD1F6, 0xF922, 0xD1FA, 0xF923, 0xD1FC, 0xF924, 0xD1FD, 0xF925, 0xD1FE, 0xF926, 0xD2A2, 0xF927, 0xD2A3, + 0xF928, 0xD2A7, 0xF929, 0xD2A8, 0xF92A, 0xD2A9, 0xF92B, 0xD2AA, 0xF92C, 0xD2AB, 0xF92D, 0xD2AD, 0xF92E, 0xD2B2, 0xF92F, 0xD2BE, + 0xF930, 0xD2C2, 0xF931, 0xD2C3, 0xF932, 0xD2C4, 0xF933, 0xD2C6, 0xF934, 0xD2C7, 0xF935, 0xD2C8, 0xF936, 0xD2C9, 0xF937, 0xD2CA, + 0xF938, 0xD2CB, 0xF939, 0xD2CD, 0xF93A, 0xD2CE, 0xF93B, 0xD2CF, 0xF93C, 0xD2D0, 0xF93D, 0xD2D1, 0xF93E, 0xD2D2, 0xF93F, 0xD2D3, + 0xF940, 0xD2D4, 0xF941, 0xD2D5, 0xF942, 0xD2D6, 0xF943, 0xD2D7, 0xF944, 0xD2D9, 0xF945, 0xD2DA, 0xF946, 0xD2DE, 0xF947, 0xD2DF, + 0xF948, 0xD2E1, 0xF949, 0xD2E2, 0xF94A, 0xD2E4, 0xF94B, 0xD2E5, 0xF94C, 0xD2E6, 0xF94D, 0xD2E7, 0xF94E, 0xD2E8, 0xF94F, 0xD2E9, + 0xF950, 0xD2EA, 0xF951, 0xD2EB, 0xF952, 0xD2F0, 0xF953, 0xD2F1, 0xF954, 0xD2F2, 0xF955, 0xD2F3, 0xF956, 0xD2F4, 0xF957, 0xD2F5, + 0xF958, 0xD2F7, 0xF959, 0xD2F8, 0xF95A, 0xD4E6, 0xF95B, 0xD4FC, 0xF95C, 0xD5A5, 0xF95D, 0xD5AB, 0xF95E, 0xD5AE, 0xF95F, 0xD6B8, + 0xF960, 0xD6CD, 0xF961, 0xD7CB, 0xF962, 0xD7E4, 0xF963, 0xDBC5, 0xF964, 0xDBE4, 0xF965, 0xDCA5, 0xF966, 0xDDA5, 0xF967, 0xDDD5, + 0xF968, 0xDDF4, 0xF969, 0xDEFC, 0xF96A, 0xDEFE, 0xF96B, 0xDFB3, 0xF96C, 0xDFE1, 0xF96D, 0xDFE8, 0xF96E, 0xE0F1, 0xF96F, 0xE1AD, + 0xF970, 0xE1ED, 0xF971, 0xE3F5, 0xF972, 0xE4A1, 0xF973, 0xE4A9, 0xF974, 0xE5AE, 0xF975, 0xE5B1, 0xF976, 0xE5B2, 0xF977, 0xE5B9, + 0xF978, 0xE5BB, 0xF979, 0xE5BC, 0xF97A, 0xE5C4, 0xF97B, 0xE5CE, 0xF97C, 0xE5D0, 0xF97D, 0xE5D2, 0xF97E, 0xE5D6, 0xF97F, 0xE5FA, + 0xF980, 0xE5FB, 0xF981, 0xE5FC, 0xF982, 0xE5FE, 0xF983, 0xE6A1, 0xF984, 0xE6A4, 0xF985, 0xE6A7, 0xF986, 0xE6AD, 0xF987, 0xE6AF, + 0xF988, 0xE6B0, 0xF989, 0xE6B1, 0xF98A, 0xE6B3, 0xF98B, 0xE6B7, 0xF98C, 0xE6B8, 0xF98D, 0xE6BC, 0xF98E, 0xE6C4, 0xF98F, 0xE6C6, + 0xF990, 0xE6C7, 0xF991, 0xE6CA, 0xF992, 0xE6D2, 0xF993, 0xE6D6, 0xF994, 0xE6D9, 0xF995, 0xE6DC, 0xF996, 0xE6DF, 0xF997, 0xE6E1, + 0xF998, 0xE6E4, 0xF999, 0xE6E5, 0xF99A, 0xE6E6, 0xF99B, 0xE6E8, 0xF99C, 0xE6EA, 0xF99D, 0xE6EB, 0xF99E, 0xE6EC, 0xF99F, 0xE6EF, + 0xF9A0, 0xE6F1, 0xF9A1, 0xE6F2, 0xF9A2, 0xE6F5, 0xF9A3, 0xE6F6, 0xF9A4, 0xE6F7, 0xF9A5, 0xE6F9, 0xF9A6, 0xE7A1, 0xF9A7, 0xE7A6, + 0xF9A8, 0xE7A9, 0xF9A9, 0xE7AA, 0xF9AA, 0xE7AC, 0xF9AB, 0xE7AD, 0xF9AC, 0xE7B0, 0xF9AD, 0xE7BF, 0xF9AE, 0xE7C1, 0xF9AF, 0xE7C6, + 0xF9B0, 0xE7C7, 0xF9B1, 0xE7CB, 0xF9B2, 0xE7CD, 0xF9B3, 0xE7CF, 0xF9B4, 0xE7D0, 0xF9B5, 0xE7D3, 0xF9B6, 0xE7DF, 0xF9B7, 0xE7E4, + 0xF9B8, 0xE7E6, 0xF9B9, 0xE7F7, 0xF9BA, 0xE8E7, 0xF9BB, 0xE8E8, 0xF9BC, 0xE8F0, 0xF9BD, 0xE8F1, 0xF9BE, 0xE8F7, 0xF9BF, 0xE8F9, + 0xF9C0, 0xE8FB, 0xF9C1, 0xE8FE, 0xF9C2, 0xE9A7, 0xF9C3, 0xE9AC, 0xF9C4, 0xE9CC, 0xF9C5, 0xE9F7, 0xF9C6, 0xEAC1, 0xF9C7, 0xEAE5, + 0xF9C8, 0xEAF4, 0xF9C9, 0xEAF7, 0xF9CA, 0xEAFC, 0xF9CB, 0xEAFE, 0xF9CC, 0xEBA4, 0xF9CD, 0xEBA7, 0xF9CE, 0xEBA9, 0xF9CF, 0xEBAA, + 0xF9D0, 0xEBBA, 0xF9D1, 0xEBBB, 0xF9D2, 0xEBBD, 0xF9D3, 0xEBC1, 0xF9D4, 0xEBC2, 0xF9D5, 0xEBC6, 0xF9D6, 0xEBC7, 0xF9D7, 0xEBCC, + 0xF9D8, 0xEBCF, 0xF9D9, 0xEBD0, 0xF9DA, 0xEBD1, 0xF9DB, 0xEBD2, 0xF9DC, 0xEBD8, 0xF9DD, 0xECA6, 0xF9DE, 0xECA7, 0xF9DF, 0xECAA, + 0xF9E0, 0xECAF, 0xF9E1, 0xECB0, 0xF9E2, 0xECB1, 0xF9E3, 0xECB2, 0xF9E4, 0xECB5, 0xF9E5, 0xECB8, 0xF9E6, 0xECBA, 0xF9E7, 0xECC0, + 0xF9E8, 0xECC1, 0xF9E9, 0xECC5, 0xF9EA, 0xECC6, 0xF9EB, 0xECC9, 0xF9EC, 0xECCA, 0xF9ED, 0xECD5, 0xF9EE, 0xECDD, 0xF9EF, 0xECDE, + 0xF9F0, 0xECE1, 0xF9F1, 0xECE4, 0xF9F2, 0xECE7, 0xF9F3, 0xECE8, 0xF9F4, 0xECF7, 0xF9F5, 0xECF8, 0xF9F6, 0xECFA, 0xF9F7, 0xEDA1, + 0xF9F8, 0xEDA2, 0xF9F9, 0xEDA3, 0xF9FA, 0xEDEE, 0xF9FB, 0xEEDB, 0xF9FC, 0xF2BD, 0xF9FD, 0xF2FA, 0xF9FE, 0xF3B1, 0xF9FF, 0xF4A7, + 0xFA00, 0xF4EE, 0xFA01, 0xF6F4, 0xFA02, 0xF6F6, 0xFA03, 0xF7B8, 0xFA04, 0xF7C8, 0xFA05, 0xF7D3, 0xFA06, 0xF8DB, 0xFA07, 0xF8F0, + 0xFA08, 0xFAA1, 0xFA09, 0xFAA2, 0xFA0A, 0xFAE6, 0xFA0B, 0xFCA9, 0xFF01, 0xA3A1, 0xFF02, 0xA3A2, 0xFF03, 0xA3A3, 0xFF04, 0xA3A4, + 0xFF05, 0xA3A5, 0xFF06, 0xA3A6, 0xFF07, 0xA3A7, 0xFF08, 0xA3A8, 0xFF09, 0xA3A9, 0xFF0A, 0xA3AA, 0xFF0B, 0xA3AB, 0xFF0C, 0xA3AC, + 0xFF0D, 0xA3AD, 0xFF0E, 0xA3AE, 0xFF0F, 0xA3AF, 0xFF10, 0xA3B0, 0xFF11, 0xA3B1, 0xFF12, 0xA3B2, 0xFF13, 0xA3B3, 0xFF14, 0xA3B4, + 0xFF15, 0xA3B5, 0xFF16, 0xA3B6, 0xFF17, 0xA3B7, 0xFF18, 0xA3B8, 0xFF19, 0xA3B9, 0xFF1A, 0xA3BA, 0xFF1B, 0xA3BB, 0xFF1C, 0xA3BC, + 0xFF1D, 0xA3BD, 0xFF1E, 0xA3BE, 0xFF1F, 0xA3BF, 0xFF20, 0xA3C0, 0xFF21, 0xA3C1, 0xFF22, 0xA3C2, 0xFF23, 0xA3C3, 0xFF24, 0xA3C4, + 0xFF25, 0xA3C5, 0xFF26, 0xA3C6, 0xFF27, 0xA3C7, 0xFF28, 0xA3C8, 0xFF29, 0xA3C9, 0xFF2A, 0xA3CA, 0xFF2B, 0xA3CB, 0xFF2C, 0xA3CC, + 0xFF2D, 0xA3CD, 0xFF2E, 0xA3CE, 0xFF2F, 0xA3CF, 0xFF30, 0xA3D0, 0xFF31, 0xA3D1, 0xFF32, 0xA3D2, 0xFF33, 0xA3D3, 0xFF34, 0xA3D4, + 0xFF35, 0xA3D5, 0xFF36, 0xA3D6, 0xFF37, 0xA3D7, 0xFF38, 0xA3D8, 0xFF39, 0xA3D9, 0xFF3A, 0xA3DA, 0xFF3B, 0xA3DB, 0xFF3C, 0xA1AC, + 0xFF3D, 0xA3DD, 0xFF3E, 0xA3DE, 0xFF3F, 0xA3DF, 0xFF40, 0xA3E0, 0xFF41, 0xA3E1, 0xFF42, 0xA3E2, 0xFF43, 0xA3E3, 0xFF44, 0xA3E4, + 0xFF45, 0xA3E5, 0xFF46, 0xA3E6, 0xFF47, 0xA3E7, 0xFF48, 0xA3E8, 0xFF49, 0xA3E9, 0xFF4A, 0xA3EA, 0xFF4B, 0xA3EB, 0xFF4C, 0xA3EC, + 0xFF4D, 0xA3ED, 0xFF4E, 0xA3EE, 0xFF4F, 0xA3EF, 0xFF50, 0xA3F0, 0xFF51, 0xA3F1, 0xFF52, 0xA3F2, 0xFF53, 0xA3F3, 0xFF54, 0xA3F4, + 0xFF55, 0xA3F5, 0xFF56, 0xA3F6, 0xFF57, 0xA3F7, 0xFF58, 0xA3F8, 0xFF59, 0xA3F9, 0xFF5A, 0xA3FA, 0xFF5B, 0xA3FB, 0xFF5C, 0xA3FC, + 0xFF5D, 0xA3FD, 0xFF5E, 0xA2A6, 0xFFE0, 0xA1CB, 0xFFE1, 0xA1CC, 0xFFE2, 0xA1FE, 0xFFE3, 0xA3FE, 0xFFE5, 0xA1CD, 0xFFE6, 0xA3DC, + 0, 0 +}; + +static const WCHAR oem2uni949[] = { /* Korean --> Unicode pairs */ + 0x8141, 0xAC02, 0x8142, 0xAC03, 0x8143, 0xAC05, 0x8144, 0xAC06, 0x8145, 0xAC0B, 0x8146, 0xAC0C, 0x8147, 0xAC0D, 0x8148, 0xAC0E, + 0x8149, 0xAC0F, 0x814A, 0xAC18, 0x814B, 0xAC1E, 0x814C, 0xAC1F, 0x814D, 0xAC21, 0x814E, 0xAC22, 0x814F, 0xAC23, 0x8150, 0xAC25, + 0x8151, 0xAC26, 0x8152, 0xAC27, 0x8153, 0xAC28, 0x8154, 0xAC29, 0x8155, 0xAC2A, 0x8156, 0xAC2B, 0x8157, 0xAC2E, 0x8158, 0xAC32, + 0x8159, 0xAC33, 0x815A, 0xAC34, 0x8161, 0xAC35, 0x8162, 0xAC36, 0x8163, 0xAC37, 0x8164, 0xAC3A, 0x8165, 0xAC3B, 0x8166, 0xAC3D, + 0x8167, 0xAC3E, 0x8168, 0xAC3F, 0x8169, 0xAC41, 0x816A, 0xAC42, 0x816B, 0xAC43, 0x816C, 0xAC44, 0x816D, 0xAC45, 0x816E, 0xAC46, + 0x816F, 0xAC47, 0x8170, 0xAC48, 0x8171, 0xAC49, 0x8172, 0xAC4A, 0x8173, 0xAC4C, 0x8174, 0xAC4E, 0x8175, 0xAC4F, 0x8176, 0xAC50, + 0x8177, 0xAC51, 0x8178, 0xAC52, 0x8179, 0xAC53, 0x817A, 0xAC55, 0x8181, 0xAC56, 0x8182, 0xAC57, 0x8183, 0xAC59, 0x8184, 0xAC5A, + 0x8185, 0xAC5B, 0x8186, 0xAC5D, 0x8187, 0xAC5E, 0x8188, 0xAC5F, 0x8189, 0xAC60, 0x818A, 0xAC61, 0x818B, 0xAC62, 0x818C, 0xAC63, + 0x818D, 0xAC64, 0x818E, 0xAC65, 0x818F, 0xAC66, 0x8190, 0xAC67, 0x8191, 0xAC68, 0x8192, 0xAC69, 0x8193, 0xAC6A, 0x8194, 0xAC6B, + 0x8195, 0xAC6C, 0x8196, 0xAC6D, 0x8197, 0xAC6E, 0x8198, 0xAC6F, 0x8199, 0xAC72, 0x819A, 0xAC73, 0x819B, 0xAC75, 0x819C, 0xAC76, + 0x819D, 0xAC79, 0x819E, 0xAC7B, 0x819F, 0xAC7C, 0x81A0, 0xAC7D, 0x81A1, 0xAC7E, 0x81A2, 0xAC7F, 0x81A3, 0xAC82, 0x81A4, 0xAC87, + 0x81A5, 0xAC88, 0x81A6, 0xAC8D, 0x81A7, 0xAC8E, 0x81A8, 0xAC8F, 0x81A9, 0xAC91, 0x81AA, 0xAC92, 0x81AB, 0xAC93, 0x81AC, 0xAC95, + 0x81AD, 0xAC96, 0x81AE, 0xAC97, 0x81AF, 0xAC98, 0x81B0, 0xAC99, 0x81B1, 0xAC9A, 0x81B2, 0xAC9B, 0x81B3, 0xAC9E, 0x81B4, 0xACA2, + 0x81B5, 0xACA3, 0x81B6, 0xACA4, 0x81B7, 0xACA5, 0x81B8, 0xACA6, 0x81B9, 0xACA7, 0x81BA, 0xACAB, 0x81BB, 0xACAD, 0x81BC, 0xACAE, + 0x81BD, 0xACB1, 0x81BE, 0xACB2, 0x81BF, 0xACB3, 0x81C0, 0xACB4, 0x81C1, 0xACB5, 0x81C2, 0xACB6, 0x81C3, 0xACB7, 0x81C4, 0xACBA, + 0x81C5, 0xACBE, 0x81C6, 0xACBF, 0x81C7, 0xACC0, 0x81C8, 0xACC2, 0x81C9, 0xACC3, 0x81CA, 0xACC5, 0x81CB, 0xACC6, 0x81CC, 0xACC7, + 0x81CD, 0xACC9, 0x81CE, 0xACCA, 0x81CF, 0xACCB, 0x81D0, 0xACCD, 0x81D1, 0xACCE, 0x81D2, 0xACCF, 0x81D3, 0xACD0, 0x81D4, 0xACD1, + 0x81D5, 0xACD2, 0x81D6, 0xACD3, 0x81D7, 0xACD4, 0x81D8, 0xACD6, 0x81D9, 0xACD8, 0x81DA, 0xACD9, 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0xAD33, 0x8261, 0xAD36, 0x8262, 0xAD37, 0x8263, 0xAD39, 0x8264, 0xAD3A, + 0x8265, 0xAD3B, 0x8266, 0xAD3D, 0x8267, 0xAD3E, 0x8268, 0xAD3F, 0x8269, 0xAD40, 0x826A, 0xAD41, 0x826B, 0xAD42, 0x826C, 0xAD43, + 0x826D, 0xAD46, 0x826E, 0xAD48, 0x826F, 0xAD4A, 0x8270, 0xAD4B, 0x8271, 0xAD4C, 0x8272, 0xAD4D, 0x8273, 0xAD4E, 0x8274, 0xAD4F, + 0x8275, 0xAD51, 0x8276, 0xAD52, 0x8277, 0xAD53, 0x8278, 0xAD55, 0x8279, 0xAD56, 0x827A, 0xAD57, 0x8281, 0xAD59, 0x8282, 0xAD5A, + 0x8283, 0xAD5B, 0x8284, 0xAD5C, 0x8285, 0xAD5D, 0x8286, 0xAD5E, 0x8287, 0xAD5F, 0x8288, 0xAD60, 0x8289, 0xAD62, 0x828A, 0xAD64, + 0x828B, 0xAD65, 0x828C, 0xAD66, 0x828D, 0xAD67, 0x828E, 0xAD68, 0x828F, 0xAD69, 0x8290, 0xAD6A, 0x8291, 0xAD6B, 0x8292, 0xAD6E, + 0x8293, 0xAD6F, 0x8294, 0xAD71, 0x8295, 0xAD72, 0x8296, 0xAD77, 0x8297, 0xAD78, 0x8298, 0xAD79, 0x8299, 0xAD7A, 0x829A, 0xAD7E, + 0x829B, 0xAD80, 0x829C, 0xAD83, 0x829D, 0xAD84, 0x829E, 0xAD85, 0x829F, 0xAD86, 0x82A0, 0xAD87, 0x82A1, 0xAD8A, 0x82A2, 0xAD8B, + 0x82A3, 0xAD8D, 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0xAE81, 0x83AB, 0xAE82, 0x83AC, 0xAE83, 0x83AD, 0xAE86, 0x83AE, 0xAE87, 0x83AF, 0xAE88, 0x83B0, 0xAE89, + 0x83B1, 0xAE8A, 0x83B2, 0xAE8B, 0x83B3, 0xAE8D, 0x83B4, 0xAE8E, 0x83B5, 0xAE8F, 0x83B6, 0xAE90, 0x83B7, 0xAE91, 0x83B8, 0xAE92, + 0x83B9, 0xAE93, 0x83BA, 0xAE94, 0x83BB, 0xAE95, 0x83BC, 0xAE96, 0x83BD, 0xAE97, 0x83BE, 0xAE98, 0x83BF, 0xAE99, 0x83C0, 0xAE9A, + 0x83C1, 0xAE9B, 0x83C2, 0xAE9C, 0x83C3, 0xAE9D, 0x83C4, 0xAE9E, 0x83C5, 0xAE9F, 0x83C6, 0xAEA0, 0x83C7, 0xAEA1, 0x83C8, 0xAEA2, + 0x83C9, 0xAEA3, 0x83CA, 0xAEA4, 0x83CB, 0xAEA5, 0x83CC, 0xAEA6, 0x83CD, 0xAEA7, 0x83CE, 0xAEA8, 0x83CF, 0xAEA9, 0x83D0, 0xAEAA, + 0x83D1, 0xAEAB, 0x83D2, 0xAEAC, 0x83D3, 0xAEAD, 0x83D4, 0xAEAE, 0x83D5, 0xAEAF, 0x83D6, 0xAEB0, 0x83D7, 0xAEB1, 0x83D8, 0xAEB2, + 0x83D9, 0xAEB3, 0x83DA, 0xAEB4, 0x83DB, 0xAEB5, 0x83DC, 0xAEB6, 0x83DD, 0xAEB7, 0x83DE, 0xAEB8, 0x83DF, 0xAEB9, 0x83E0, 0xAEBA, + 0x83E1, 0xAEBB, 0x83E2, 0xAEBF, 0x83E3, 0xAEC1, 0x83E4, 0xAEC2, 0x83E5, 0xAEC3, 0x83E6, 0xAEC5, 0x83E7, 0xAEC6, 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0xFCAB, 0x652B, 0xFCAC, 0x78BA, + 0xFCAD, 0x78BB, 0xFCAE, 0x7A6B, 0xFCAF, 0x4E38, 0xFCB0, 0x559A, 0xFCB1, 0x5950, 0xFCB2, 0x5BA6, 0xFCB3, 0x5E7B, 0xFCB4, 0x60A3, + 0xFCB5, 0x63DB, 0xFCB6, 0x6B61, 0xFCB7, 0x6665, 0xFCB8, 0x6853, 0xFCB9, 0x6E19, 0xFCBA, 0x7165, 0xFCBB, 0x74B0, 0xFCBC, 0x7D08, + 0xFCBD, 0x9084, 0xFCBE, 0x9A69, 0xFCBF, 0x9C25, 0xFCC0, 0x6D3B, 0xFCC1, 0x6ED1, 0xFCC2, 0x733E, 0xFCC3, 0x8C41, 0xFCC4, 0x95CA, + 0xFCC5, 0x51F0, 0xFCC6, 0x5E4C, 0xFCC7, 0x5FA8, 0xFCC8, 0x604D, 0xFCC9, 0x60F6, 0xFCCA, 0x6130, 0xFCCB, 0x614C, 0xFCCC, 0x6643, + 0xFCCD, 0x6644, 0xFCCE, 0x69A5, 0xFCCF, 0x6CC1, 0xFCD0, 0x6E5F, 0xFCD1, 0x6EC9, 0xFCD2, 0x6F62, 0xFCD3, 0x714C, 0xFCD4, 0x749C, + 0xFCD5, 0x7687, 0xFCD6, 0x7BC1, 0xFCD7, 0x7C27, 0xFCD8, 0x8352, 0xFCD9, 0x8757, 0xFCDA, 0x9051, 0xFCDB, 0x968D, 0xFCDC, 0x9EC3, + 0xFCDD, 0x532F, 0xFCDE, 0x56DE, 0xFCDF, 0x5EFB, 0xFCE0, 0x5F8A, 0xFCE1, 0x6062, 0xFCE2, 0x6094, 0xFCE3, 0x61F7, 0xFCE4, 0x6666, + 0xFCE5, 0x6703, 0xFCE6, 0x6A9C, 0xFCE7, 0x6DEE, 0xFCE8, 0x6FAE, 0xFCE9, 0x7070, 0xFCEA, 0x736A, 0xFCEB, 0x7E6A, 0xFCEC, 0x81BE, + 0xFCED, 0x8334, 0xFCEE, 0x86D4, 0xFCEF, 0x8AA8, 0xFCF0, 0x8CC4, 0xFCF1, 0x5283, 0xFCF2, 0x7372, 0xFCF3, 0x5B96, 0xFCF4, 0x6A6B, + 0xFCF5, 0x9404, 0xFCF6, 0x54EE, 0xFCF7, 0x5686, 0xFCF8, 0x5B5D, 0xFCF9, 0x6548, 0xFCFA, 0x6585, 0xFCFB, 0x66C9, 0xFCFC, 0x689F, + 0xFCFD, 0x6D8D, 0xFCFE, 0x6DC6, 0xFDA1, 0x723B, 0xFDA2, 0x80B4, 0xFDA3, 0x9175, 0xFDA4, 0x9A4D, 0xFDA5, 0x4FAF, 0xFDA6, 0x5019, + 0xFDA7, 0x539A, 0xFDA8, 0x540E, 0xFDA9, 0x543C, 0xFDAA, 0x5589, 0xFDAB, 0x55C5, 0xFDAC, 0x5E3F, 0xFDAD, 0x5F8C, 0xFDAE, 0x673D, + 0xFDAF, 0x7166, 0xFDB0, 0x73DD, 0xFDB1, 0x9005, 0xFDB2, 0x52DB, 0xFDB3, 0x52F3, 0xFDB4, 0x5864, 0xFDB5, 0x58CE, 0xFDB6, 0x7104, + 0xFDB7, 0x718F, 0xFDB8, 0x71FB, 0xFDB9, 0x85B0, 0xFDBA, 0x8A13, 0xFDBB, 0x6688, 0xFDBC, 0x85A8, 0xFDBD, 0x55A7, 0xFDBE, 0x6684, + 0xFDBF, 0x714A, 0xFDC0, 0x8431, 0xFDC1, 0x5349, 0xFDC2, 0x5599, 0xFDC3, 0x6BC1, 0xFDC4, 0x5F59, 0xFDC5, 0x5FBD, 0xFDC6, 0x63EE, + 0xFDC7, 0x6689, 0xFDC8, 0x7147, 0xFDC9, 0x8AF1, 0xFDCA, 0x8F1D, 0xFDCB, 0x9EBE, 0xFDCC, 0x4F11, 0xFDCD, 0x643A, 0xFDCE, 0x70CB, + 0xFDCF, 0x7566, 0xFDD0, 0x8667, 0xFDD1, 0x6064, 0xFDD2, 0x8B4E, 0xFDD3, 0x9DF8, 0xFDD4, 0x5147, 0xFDD5, 0x51F6, 0xFDD6, 0x5308, + 0xFDD7, 0x6D36, 0xFDD8, 0x80F8, 0xFDD9, 0x9ED1, 0xFDDA, 0x6615, 0xFDDB, 0x6B23, 0xFDDC, 0x7098, 0xFDDD, 0x75D5, 0xFDDE, 0x5403, + 0xFDDF, 0x5C79, 0xFDE0, 0x7D07, 0xFDE1, 0x8A16, 0xFDE2, 0x6B20, 0xFDE3, 0x6B3D, 0xFDE4, 0x6B46, 0xFDE5, 0x5438, 0xFDE6, 0x6070, + 0xFDE7, 0x6D3D, 0xFDE8, 0x7FD5, 0xFDE9, 0x8208, 0xFDEA, 0x50D6, 0xFDEB, 0x51DE, 0xFDEC, 0x559C, 0xFDED, 0x566B, 0xFDEE, 0x56CD, + 0xFDEF, 0x59EC, 0xFDF0, 0x5B09, 0xFDF1, 0x5E0C, 0xFDF2, 0x6199, 0xFDF3, 0x6198, 0xFDF4, 0x6231, 0xFDF5, 0x665E, 0xFDF6, 0x66E6, + 0xFDF7, 0x7199, 0xFDF8, 0x71B9, 0xFDF9, 0x71BA, 0xFDFA, 0x72A7, 0xFDFB, 0x79A7, 0xFDFC, 0x7A00, 0xFDFD, 0x7FB2, 0xFDFE, 0x8A70, + 0, 0 +}; +#endif + +#if FF_CODE_PAGE == 950 || FF_CODE_PAGE == 0 /* Traditional Chinese */ +static const WCHAR uni2oem950[] = { /* Unicode --> Big5 pairs */ + 0x00A7, 0xA1B1, 0x00AF, 0xA1C2, 0x00B0, 0xA258, 0x00B1, 0xA1D3, 0x00B7, 0xA150, 0x00D7, 0xA1D1, 0x00F7, 0xA1D2, 0x02C7, 0xA3BE, + 0x02C9, 0xA3BC, 0x02CA, 0xA3BD, 0x02CB, 0xA3BF, 0x02CD, 0xA1C5, 0x02D9, 0xA3BB, 0x0391, 0xA344, 0x0392, 0xA345, 0x0393, 0xA346, + 0x0394, 0xA347, 0x0395, 0xA348, 0x0396, 0xA349, 0x0397, 0xA34A, 0x0398, 0xA34B, 0x0399, 0xA34C, 0x039A, 0xA34D, 0x039B, 0xA34E, + 0x039C, 0xA34F, 0x039D, 0xA350, 0x039E, 0xA351, 0x039F, 0xA352, 0x03A0, 0xA353, 0x03A1, 0xA354, 0x03A3, 0xA355, 0x03A4, 0xA356, + 0x03A5, 0xA357, 0x03A6, 0xA358, 0x03A7, 0xA359, 0x03A8, 0xA35A, 0x03A9, 0xA35B, 0x03B1, 0xA35C, 0x03B2, 0xA35D, 0x03B3, 0xA35E, + 0x03B4, 0xA35F, 0x03B5, 0xA360, 0x03B6, 0xA361, 0x03B7, 0xA362, 0x03B8, 0xA363, 0x03B9, 0xA364, 0x03BA, 0xA365, 0x03BB, 0xA366, + 0x03BC, 0xA367, 0x03BD, 0xA368, 0x03BE, 0xA369, 0x03BF, 0xA36A, 0x03C0, 0xA36B, 0x03C1, 0xA36C, 0x03C3, 0xA36D, 0x03C4, 0xA36E, + 0x03C5, 0xA36F, 0x03C6, 0xA370, 0x03C7, 0xA371, 0x03C8, 0xA372, 0x03C9, 0xA373, 0x2013, 0xA156, 0x2014, 0xA158, 0x2018, 0xA1A5, + 0x2019, 0xA1A6, 0x201C, 0xA1A7, 0x201D, 0xA1A8, 0x2025, 0xA14C, 0x2026, 0xA14B, 0x2027, 0xA145, 0x2032, 0xA1AC, 0x2035, 0xA1AB, + 0x203B, 0xA1B0, 0x20AC, 0xA3E1, 0x2103, 0xA24A, 0x2105, 0xA1C1, 0x2109, 0xA24B, 0x2160, 0xA2B9, 0x2161, 0xA2BA, 0x2162, 0xA2BB, + 0x2163, 0xA2BC, 0x2164, 0xA2BD, 0x2165, 0xA2BE, 0x2166, 0xA2BF, 0x2167, 0xA2C0, 0x2168, 0xA2C1, 0x2169, 0xA2C2, 0x2190, 0xA1F6, + 0x2191, 0xA1F4, 0x2192, 0xA1F7, 0x2193, 0xA1F5, 0x2196, 0xA1F8, 0x2197, 0xA1F9, 0x2198, 0xA1FB, 0x2199, 0xA1FA, 0x2215, 0xA241, + 0x221A, 0xA1D4, 0x221E, 0xA1DB, 0x221F, 0xA1E8, 0x2220, 0xA1E7, 0x2223, 0xA1FD, 0x2225, 0xA1FC, 0x2229, 0xA1E4, 0x222A, 0xA1E5, + 0x222B, 0xA1EC, 0x222E, 0xA1ED, 0x2234, 0xA1EF, 0x2235, 0xA1EE, 0x2252, 0xA1DC, 0x2260, 0xA1DA, 0x2261, 0xA1DD, 0x2266, 0xA1D8, + 0x2267, 0xA1D9, 0x2295, 0xA1F2, 0x2299, 0xA1F3, 0x22A5, 0xA1E6, 0x22BF, 0xA1E9, 0x2500, 0xA277, 0x2502, 0xA278, 0x250C, 0xA27A, + 0x2510, 0xA27B, 0x2514, 0xA27C, 0x2518, 0xA27D, 0x251C, 0xA275, 0x2524, 0xA274, 0x252C, 0xA273, 0x2534, 0xA272, 0x253C, 0xA271, + 0x2550, 0xA2A4, 0x2550, 0xF9F9, 0x2551, 0xF9F8, 0x2552, 0xF9E6, 0x2553, 0xF9EF, 0x2554, 0xF9DD, 0x2555, 0xF9E8, 0x2556, 0xF9F1, + 0x2557, 0xF9DF, 0x2558, 0xF9EC, 0x2559, 0xF9F5, 0x255A, 0xF9E3, 0x255B, 0xF9EE, 0x255C, 0xF9F7, 0x255D, 0xF9E5, 0x255E, 0xA2A5, + 0x255E, 0xF9E9, 0x255F, 0xF9F2, 0x2560, 0xF9E0, 0x2561, 0xA2A7, 0x2561, 0xF9EB, 0x2562, 0xF9F4, 0x2563, 0xF9E2, 0x2564, 0xF9E7, + 0x2565, 0xF9F0, 0x2566, 0xF9DE, 0x2567, 0xF9ED, 0x2568, 0xF9F6, 0x2569, 0xF9E4, 0x256A, 0xA2A6, 0x256A, 0xF9EA, 0x256B, 0xF9F3, + 0x256C, 0xF9E1, 0x256D, 0xA27E, 0x256D, 0xF9FA, 0x256E, 0xA2A1, 0x256E, 0xF9FB, 0x256F, 0xA2A3, 0x256F, 0xF9FD, 0x2570, 0xA2A2, + 0x2570, 0xF9FC, 0x2571, 0xA2AC, 0x2572, 0xA2AD, 0x2573, 0xA2AE, 0x2574, 0xA15A, 0x2581, 0xA262, 0x2582, 0xA263, 0x2583, 0xA264, + 0x2584, 0xA265, 0x2585, 0xA266, 0x2586, 0xA267, 0x2587, 0xA268, 0x2588, 0xA269, 0x2589, 0xA270, 0x258A, 0xA26F, 0x258B, 0xA26E, + 0x258C, 0xA26D, 0x258D, 0xA26C, 0x258E, 0xA26B, 0x258F, 0xA26A, 0x2593, 0xF9FE, 0x2594, 0xA276, 0x2595, 0xA279, 0x25A0, 0xA1BD, + 0x25A1, 0xA1BC, 0x25B2, 0xA1B6, 0x25B3, 0xA1B5, 0x25BC, 0xA1BF, 0x25BD, 0xA1BE, 0x25C6, 0xA1BB, 0x25C7, 0xA1BA, 0x25CB, 0xA1B3, + 0x25CE, 0xA1B7, 0x25CF, 0xA1B4, 0x25E2, 0xA2A8, 0x25E3, 0xA2A9, 0x25E4, 0xA2AB, 0x25E5, 0xA2AA, 0x2605, 0xA1B9, 0x2606, 0xA1B8, + 0x2640, 0xA1F0, 0x2642, 0xA1F1, 0x3000, 0xA140, 0x3001, 0xA142, 0x3002, 0xA143, 0x3003, 0xA1B2, 0x3008, 0xA171, 0x3009, 0xA172, + 0x300A, 0xA16D, 0x300B, 0xA16E, 0x300C, 0xA175, 0x300D, 0xA176, 0x300E, 0xA179, 0x300F, 0xA17A, 0x3010, 0xA169, 0x3011, 0xA16A, + 0x3012, 0xA245, 0x3014, 0xA165, 0x3015, 0xA166, 0x301D, 0xA1A9, 0x301E, 0xA1AA, 0x3021, 0xA2C3, 0x3022, 0xA2C4, 0x3023, 0xA2C5, + 0x3024, 0xA2C6, 0x3025, 0xA2C7, 0x3026, 0xA2C8, 0x3027, 0xA2C9, 0x3028, 0xA2CA, 0x3029, 0xA2CB, 0x3105, 0xA374, 0x3106, 0xA375, + 0x3107, 0xA376, 0x3108, 0xA377, 0x3109, 0xA378, 0x310A, 0xA379, 0x310B, 0xA37A, 0x310C, 0xA37B, 0x310D, 0xA37C, 0x310E, 0xA37D, + 0x310F, 0xA37E, 0x3110, 0xA3A1, 0x3111, 0xA3A2, 0x3112, 0xA3A3, 0x3113, 0xA3A4, 0x3114, 0xA3A5, 0x3115, 0xA3A6, 0x3116, 0xA3A7, + 0x3117, 0xA3A8, 0x3118, 0xA3A9, 0x3119, 0xA3AA, 0x311A, 0xA3AB, 0x311B, 0xA3AC, 0x311C, 0xA3AD, 0x311D, 0xA3AE, 0x311E, 0xA3AF, + 0x311F, 0xA3B0, 0x3120, 0xA3B1, 0x3121, 0xA3B2, 0x3122, 0xA3B3, 0x3123, 0xA3B4, 0x3124, 0xA3B5, 0x3125, 0xA3B6, 0x3126, 0xA3B7, + 0x3127, 0xA3B8, 0x3128, 0xA3B9, 0x3129, 0xA3BA, 0x32A3, 0xA1C0, 0x338E, 0xA255, 0x338F, 0xA256, 0x339C, 0xA250, 0x339D, 0xA251, + 0x339E, 0xA252, 0x33A1, 0xA254, 0x33C4, 0xA257, 0x33CE, 0xA253, 0x33D1, 0xA1EB, 0x33D2, 0xA1EA, 0x33D5, 0xA24F, 0x4E00, 0xA440, + 0x4E01, 0xA442, 0x4E03, 0xA443, 0x4E07, 0xC945, 0x4E08, 0xA456, 0x4E09, 0xA454, 0x4E0A, 0xA457, 0x4E0B, 0xA455, 0x4E0C, 0xC946, + 0x4E0D, 0xA4A3, 0x4E0E, 0xC94F, 0x4E0F, 0xC94D, 0x4E10, 0xA4A2, 0x4E11, 0xA4A1, 0x4E14, 0xA542, 0x4E15, 0xA541, 0x4E16, 0xA540, + 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0xC35E, 0x9F2D, 0xF3F6, 0x9F2E, 0xF5B9, 0x9F2F, 0xC4D3, 0x9F30, 0xF5B8, 0x9F31, 0xF6D1, 0x9F32, 0xF7CB, 0x9F33, 0xF7CA, + 0x9F34, 0xC5C4, 0x9F35, 0xF7C9, 0x9F36, 0xF87C, 0x9F37, 0xF87B, 0x9F38, 0xF87A, 0x9F3B, 0xBBF3, 0x9F3D, 0xECB8, 0x9F3E, 0xC24D, + 0x9F40, 0xF3F7, 0x9F41, 0xF3F8, 0x9F42, 0xF7CC, 0x9F43, 0xF87D, 0x9F46, 0xF8EA, 0x9F47, 0xF966, 0x9F48, 0xF9B9, 0x9F49, 0xF9D4, + 0x9F4A, 0xBBF4, 0x9F4B, 0xC24E, 0x9F4C, 0xF1E9, 0x9F4D, 0xF3F9, 0x9F4E, 0xF6D2, 0x9F4F, 0xF87E, 0x9F52, 0xBEA6, 0x9F54, 0xEFB5, + 0x9F55, 0xF1EA, 0x9F56, 0xF3FA, 0x9F57, 0xF3FB, 0x9F58, 0xF3FC, 0x9F59, 0xF5BE, 0x9F5B, 0xF5BA, 0x9F5C, 0xC568, 0x9F5D, 0xF5BD, + 0x9F5E, 0xF5BC, 0x9F5F, 0xC4D4, 0x9F60, 0xF5BB, 0x9F61, 0xC4D6, 0x9F63, 0xC4D5, 0x9F64, 0xF6D4, 0x9F65, 0xF6D3, 0x9F66, 0xC569, + 0x9F67, 0xC56A, 0x9F6A, 0xC5C6, 0x9F6B, 0xF7CD, 0x9F6C, 0xC5C5, 0x9F6E, 0xF8A3, 0x9F6F, 0xF8A4, 0x9F70, 0xF8A2, 0x9F71, 0xF8A1, + 0x9F72, 0xC654, 0x9F74, 0xF8EB, 0x9F75, 0xF8EC, 0x9F76, 0xF8ED, 0x9F77, 0xC653, 0x9F78, 0xF967, 0x9F79, 0xF96A, 0x9F7A, 0xF969, + 0x9F7B, 0xF968, 0x9F7E, 0xF9D3, 0x9F8D, 0xC073, 0x9F90, 0xC365, 0x9F91, 0xF5BF, 0x9F92, 0xF6D5, 0x9F94, 0xC5C7, 0x9F95, 0xF7CE, + 0x9F98, 0xF9D5, 0x9F9C, 0xC074, 0x9FA0, 0xEFB6, 0x9FA2, 0xF7CF, 0x9FA4, 0xF9A1, 0xFA0C, 0xC94A, 0xFA0D, 0xDDFC, 0xFE30, 0xA14A, + 0xFE31, 0xA157, 0xFE33, 0xA159, 0xFE34, 0xA15B, 0xFE35, 0xA15F, 0xFE36, 0xA160, 0xFE37, 0xA163, 0xFE38, 0xA164, 0xFE39, 0xA167, + 0xFE3A, 0xA168, 0xFE3B, 0xA16B, 0xFE3C, 0xA16C, 0xFE3D, 0xA16F, 0xFE3E, 0xA170, 0xFE3F, 0xA173, 0xFE40, 0xA174, 0xFE41, 0xA177, + 0xFE42, 0xA178, 0xFE43, 0xA17B, 0xFE44, 0xA17C, 0xFE49, 0xA1C6, 0xFE4A, 0xA1C7, 0xFE4B, 0xA1CA, 0xFE4C, 0xA1CB, 0xFE4D, 0xA1C8, + 0xFE4E, 0xA1C9, 0xFE4F, 0xA15C, 0xFE50, 0xA14D, 0xFE51, 0xA14E, 0xFE52, 0xA14F, 0xFE54, 0xA151, 0xFE55, 0xA152, 0xFE56, 0xA153, + 0xFE57, 0xA154, 0xFE59, 0xA17D, 0xFE5A, 0xA17E, 0xFE5B, 0xA1A1, 0xFE5C, 0xA1A2, 0xFE5D, 0xA1A3, 0xFE5E, 0xA1A4, 0xFE5F, 0xA1CC, + 0xFE60, 0xA1CD, 0xFE61, 0xA1CE, 0xFE62, 0xA1DE, 0xFE63, 0xA1DF, 0xFE64, 0xA1E0, 0xFE65, 0xA1E1, 0xFE66, 0xA1E2, 0xFE68, 0xA242, + 0xFE69, 0xA24C, 0xFE6A, 0xA24D, 0xFE6B, 0xA24E, 0xFF01, 0xA149, 0xFF03, 0xA1AD, 0xFF04, 0xA243, 0xFF05, 0xA248, 0xFF06, 0xA1AE, + 0xFF08, 0xA15D, 0xFF09, 0xA15E, 0xFF0A, 0xA1AF, 0xFF0B, 0xA1CF, 0xFF0C, 0xA141, 0xFF0D, 0xA1D0, 0xFF0E, 0xA144, 0xFF0F, 0xA1FE, + 0xFF10, 0xA2AF, 0xFF11, 0xA2B0, 0xFF12, 0xA2B1, 0xFF13, 0xA2B2, 0xFF14, 0xA2B3, 0xFF15, 0xA2B4, 0xFF16, 0xA2B5, 0xFF17, 0xA2B6, + 0xFF18, 0xA2B7, 0xFF19, 0xA2B8, 0xFF1A, 0xA147, 0xFF1B, 0xA146, 0xFF1C, 0xA1D5, 0xFF1D, 0xA1D7, 0xFF1E, 0xA1D6, 0xFF1F, 0xA148, + 0xFF20, 0xA249, 0xFF21, 0xA2CF, 0xFF22, 0xA2D0, 0xFF23, 0xA2D1, 0xFF24, 0xA2D2, 0xFF25, 0xA2D3, 0xFF26, 0xA2D4, 0xFF27, 0xA2D5, + 0xFF28, 0xA2D6, 0xFF29, 0xA2D7, 0xFF2A, 0xA2D8, 0xFF2B, 0xA2D9, 0xFF2C, 0xA2DA, 0xFF2D, 0xA2DB, 0xFF2E, 0xA2DC, 0xFF2F, 0xA2DD, + 0xFF30, 0xA2DE, 0xFF31, 0xA2DF, 0xFF32, 0xA2E0, 0xFF33, 0xA2E1, 0xFF34, 0xA2E2, 0xFF35, 0xA2E3, 0xFF36, 0xA2E4, 0xFF37, 0xA2E5, + 0xFF38, 0xA2E6, 0xFF39, 0xA2E7, 0xFF3A, 0xA2E8, 0xFF3C, 0xA240, 0xFF3F, 0xA1C4, 0xFF41, 0xA2E9, 0xFF42, 0xA2EA, 0xFF43, 0xA2EB, + 0xFF44, 0xA2EC, 0xFF45, 0xA2ED, 0xFF46, 0xA2EE, 0xFF47, 0xA2EF, 0xFF48, 0xA2F0, 0xFF49, 0xA2F1, 0xFF4A, 0xA2F2, 0xFF4B, 0xA2F3, + 0xFF4C, 0xA2F4, 0xFF4D, 0xA2F5, 0xFF4E, 0xA2F6, 0xFF4F, 0xA2F7, 0xFF50, 0xA2F8, 0xFF51, 0xA2F9, 0xFF52, 0xA2FA, 0xFF53, 0xA2FB, + 0xFF54, 0xA2FC, 0xFF55, 0xA2FD, 0xFF56, 0xA2FE, 0xFF57, 0xA340, 0xFF58, 0xA341, 0xFF59, 0xA342, 0xFF5A, 0xA343, 0xFF5B, 0xA161, + 0xFF5C, 0xA155, 0xFF5D, 0xA162, 0xFF5E, 0xA1E3, 0xFFE0, 0xA246, 0xFFE1, 0xA247, 0xFFE3, 0xA1C3, 0xFFE5, 0xA244, 0, 0 +}; + +static const WCHAR oem2uni950[] = { /* Big5 --> Unicode pairs */ + 0xA140, 0x3000, 0xA141, 0xFF0C, 0xA142, 0x3001, 0xA143, 0x3002, 0xA144, 0xFF0E, 0xA145, 0x2027, 0xA146, 0xFF1B, 0xA147, 0xFF1A, + 0xA148, 0xFF1F, 0xA149, 0xFF01, 0xA14A, 0xFE30, 0xA14B, 0x2026, 0xA14C, 0x2025, 0xA14D, 0xFE50, 0xA14E, 0xFE51, 0xA14F, 0xFE52, + 0xA150, 0x00B7, 0xA151, 0xFE54, 0xA152, 0xFE55, 0xA153, 0xFE56, 0xA154, 0xFE57, 0xA155, 0xFF5C, 0xA156, 0x2013, 0xA157, 0xFE31, + 0xA158, 0x2014, 0xA159, 0xFE33, 0xA15A, 0x2574, 0xA15B, 0xFE34, 0xA15C, 0xFE4F, 0xA15D, 0xFF08, 0xA15E, 0xFF09, 0xA15F, 0xFE35, + 0xA160, 0xFE36, 0xA161, 0xFF5B, 0xA162, 0xFF5D, 0xA163, 0xFE37, 0xA164, 0xFE38, 0xA165, 0x3014, 0xA166, 0x3015, 0xA167, 0xFE39, + 0xA168, 0xFE3A, 0xA169, 0x3010, 0xA16A, 0x3011, 0xA16B, 0xFE3B, 0xA16C, 0xFE3C, 0xA16D, 0x300A, 0xA16E, 0x300B, 0xA16F, 0xFE3D, + 0xA170, 0xFE3E, 0xA171, 0x3008, 0xA172, 0x3009, 0xA173, 0xFE3F, 0xA174, 0xFE40, 0xA175, 0x300C, 0xA176, 0x300D, 0xA177, 0xFE41, + 0xA178, 0xFE42, 0xA179, 0x300E, 0xA17A, 0x300F, 0xA17B, 0xFE43, 0xA17C, 0xFE44, 0xA17D, 0xFE59, 0xA17E, 0xFE5A, 0xA1A1, 0xFE5B, + 0xA1A2, 0xFE5C, 0xA1A3, 0xFE5D, 0xA1A4, 0xFE5E, 0xA1A5, 0x2018, 0xA1A6, 0x2019, 0xA1A7, 0x201C, 0xA1A8, 0x201D, 0xA1A9, 0x301D, + 0xA1AA, 0x301E, 0xA1AB, 0x2035, 0xA1AC, 0x2032, 0xA1AD, 0xFF03, 0xA1AE, 0xFF06, 0xA1AF, 0xFF0A, 0xA1B0, 0x203B, 0xA1B1, 0x00A7, + 0xA1B2, 0x3003, 0xA1B3, 0x25CB, 0xA1B4, 0x25CF, 0xA1B5, 0x25B3, 0xA1B6, 0x25B2, 0xA1B7, 0x25CE, 0xA1B8, 0x2606, 0xA1B9, 0x2605, + 0xA1BA, 0x25C7, 0xA1BB, 0x25C6, 0xA1BC, 0x25A1, 0xA1BD, 0x25A0, 0xA1BE, 0x25BD, 0xA1BF, 0x25BC, 0xA1C0, 0x32A3, 0xA1C1, 0x2105, + 0xA1C2, 0x00AF, 0xA1C3, 0xFFE3, 0xA1C4, 0xFF3F, 0xA1C5, 0x02CD, 0xA1C6, 0xFE49, 0xA1C7, 0xFE4A, 0xA1C8, 0xFE4D, 0xA1C9, 0xFE4E, + 0xA1CA, 0xFE4B, 0xA1CB, 0xFE4C, 0xA1CC, 0xFE5F, 0xA1CD, 0xFE60, 0xA1CE, 0xFE61, 0xA1CF, 0xFF0B, 0xA1D0, 0xFF0D, 0xA1D1, 0x00D7, + 0xA1D2, 0x00F7, 0xA1D3, 0x00B1, 0xA1D4, 0x221A, 0xA1D5, 0xFF1C, 0xA1D6, 0xFF1E, 0xA1D7, 0xFF1D, 0xA1D8, 0x2266, 0xA1D9, 0x2267, + 0xA1DA, 0x2260, 0xA1DB, 0x221E, 0xA1DC, 0x2252, 0xA1DD, 0x2261, 0xA1DE, 0xFE62, 0xA1DF, 0xFE63, 0xA1E0, 0xFE64, 0xA1E1, 0xFE65, + 0xA1E2, 0xFE66, 0xA1E3, 0xFF5E, 0xA1E4, 0x2229, 0xA1E5, 0x222A, 0xA1E6, 0x22A5, 0xA1E7, 0x2220, 0xA1E8, 0x221F, 0xA1E9, 0x22BF, + 0xA1EA, 0x33D2, 0xA1EB, 0x33D1, 0xA1EC, 0x222B, 0xA1ED, 0x222E, 0xA1EE, 0x2235, 0xA1EF, 0x2234, 0xA1F0, 0x2640, 0xA1F1, 0x2642, + 0xA1F2, 0x2295, 0xA1F3, 0x2299, 0xA1F4, 0x2191, 0xA1F5, 0x2193, 0xA1F6, 0x2190, 0xA1F7, 0x2192, 0xA1F8, 0x2196, 0xA1F9, 0x2197, + 0xA1FA, 0x2199, 0xA1FB, 0x2198, 0xA1FC, 0x2225, 0xA1FD, 0x2223, 0xA1FE, 0xFF0F, 0xA240, 0xFF3C, 0xA241, 0x2215, 0xA242, 0xFE68, + 0xA243, 0xFF04, 0xA244, 0xFFE5, 0xA245, 0x3012, 0xA246, 0xFFE0, 0xA247, 0xFFE1, 0xA248, 0xFF05, 0xA249, 0xFF20, 0xA24A, 0x2103, + 0xA24B, 0x2109, 0xA24C, 0xFE69, 0xA24D, 0xFE6A, 0xA24E, 0xFE6B, 0xA24F, 0x33D5, 0xA250, 0x339C, 0xA251, 0x339D, 0xA252, 0x339E, + 0xA253, 0x33CE, 0xA254, 0x33A1, 0xA255, 0x338E, 0xA256, 0x338F, 0xA257, 0x33C4, 0xA258, 0x00B0, 0xA259, 0x5159, 0xA25A, 0x515B, + 0xA25B, 0x515E, 0xA25C, 0x515D, 0xA25D, 0x5161, 0xA25E, 0x5163, 0xA25F, 0x55E7, 0xA260, 0x74E9, 0xA261, 0x7CCE, 0xA262, 0x2581, + 0xA263, 0x2582, 0xA264, 0x2583, 0xA265, 0x2584, 0xA266, 0x2585, 0xA267, 0x2586, 0xA268, 0x2587, 0xA269, 0x2588, 0xA26A, 0x258F, + 0xA26B, 0x258E, 0xA26C, 0x258D, 0xA26D, 0x258C, 0xA26E, 0x258B, 0xA26F, 0x258A, 0xA270, 0x2589, 0xA271, 0x253C, 0xA272, 0x2534, + 0xA273, 0x252C, 0xA274, 0x2524, 0xA275, 0x251C, 0xA276, 0x2594, 0xA277, 0x2500, 0xA278, 0x2502, 0xA279, 0x2595, 0xA27A, 0x250C, + 0xA27B, 0x2510, 0xA27C, 0x2514, 0xA27D, 0x2518, 0xA27E, 0x256D, 0xA2A1, 0x256E, 0xA2A2, 0x2570, 0xA2A3, 0x256F, 0xA2A4, 0x2550, + 0xA2A5, 0x255E, 0xA2A6, 0x256A, 0xA2A7, 0x2561, 0xA2A8, 0x25E2, 0xA2A9, 0x25E3, 0xA2AA, 0x25E5, 0xA2AB, 0x25E4, 0xA2AC, 0x2571, + 0xA2AD, 0x2572, 0xA2AE, 0x2573, 0xA2AF, 0xFF10, 0xA2B0, 0xFF11, 0xA2B1, 0xFF12, 0xA2B2, 0xFF13, 0xA2B3, 0xFF14, 0xA2B4, 0xFF15, + 0xA2B5, 0xFF16, 0xA2B6, 0xFF17, 0xA2B7, 0xFF18, 0xA2B8, 0xFF19, 0xA2B9, 0x2160, 0xA2BA, 0x2161, 0xA2BB, 0x2162, 0xA2BC, 0x2163, + 0xA2BD, 0x2164, 0xA2BE, 0x2165, 0xA2BF, 0x2166, 0xA2C0, 0x2167, 0xA2C1, 0x2168, 0xA2C2, 0x2169, 0xA2C3, 0x3021, 0xA2C4, 0x3022, + 0xA2C5, 0x3023, 0xA2C6, 0x3024, 0xA2C7, 0x3025, 0xA2C8, 0x3026, 0xA2C9, 0x3027, 0xA2CA, 0x3028, 0xA2CB, 0x3029, 0xA2CC, 0x5341, + 0xA2CD, 0x5344, 0xA2CE, 0x5345, 0xA2CF, 0xFF21, 0xA2D0, 0xFF22, 0xA2D1, 0xFF23, 0xA2D2, 0xFF24, 0xA2D3, 0xFF25, 0xA2D4, 0xFF26, + 0xA2D5, 0xFF27, 0xA2D6, 0xFF28, 0xA2D7, 0xFF29, 0xA2D8, 0xFF2A, 0xA2D9, 0xFF2B, 0xA2DA, 0xFF2C, 0xA2DB, 0xFF2D, 0xA2DC, 0xFF2E, + 0xA2DD, 0xFF2F, 0xA2DE, 0xFF30, 0xA2DF, 0xFF31, 0xA2E0, 0xFF32, 0xA2E1, 0xFF33, 0xA2E2, 0xFF34, 0xA2E3, 0xFF35, 0xA2E4, 0xFF36, + 0xA2E5, 0xFF37, 0xA2E6, 0xFF38, 0xA2E7, 0xFF39, 0xA2E8, 0xFF3A, 0xA2E9, 0xFF41, 0xA2EA, 0xFF42, 0xA2EB, 0xFF43, 0xA2EC, 0xFF44, + 0xA2ED, 0xFF45, 0xA2EE, 0xFF46, 0xA2EF, 0xFF47, 0xA2F0, 0xFF48, 0xA2F1, 0xFF49, 0xA2F2, 0xFF4A, 0xA2F3, 0xFF4B, 0xA2F4, 0xFF4C, + 0xA2F5, 0xFF4D, 0xA2F6, 0xFF4E, 0xA2F7, 0xFF4F, 0xA2F8, 0xFF50, 0xA2F9, 0xFF51, 0xA2FA, 0xFF52, 0xA2FB, 0xFF53, 0xA2FC, 0xFF54, + 0xA2FD, 0xFF55, 0xA2FE, 0xFF56, 0xA340, 0xFF57, 0xA341, 0xFF58, 0xA342, 0xFF59, 0xA343, 0xFF5A, 0xA344, 0x0391, 0xA345, 0x0392, + 0xA346, 0x0393, 0xA347, 0x0394, 0xA348, 0x0395, 0xA349, 0x0396, 0xA34A, 0x0397, 0xA34B, 0x0398, 0xA34C, 0x0399, 0xA34D, 0x039A, + 0xA34E, 0x039B, 0xA34F, 0x039C, 0xA350, 0x039D, 0xA351, 0x039E, 0xA352, 0x039F, 0xA353, 0x03A0, 0xA354, 0x03A1, 0xA355, 0x03A3, + 0xA356, 0x03A4, 0xA357, 0x03A5, 0xA358, 0x03A6, 0xA359, 0x03A7, 0xA35A, 0x03A8, 0xA35B, 0x03A9, 0xA35C, 0x03B1, 0xA35D, 0x03B2, + 0xA35E, 0x03B3, 0xA35F, 0x03B4, 0xA360, 0x03B5, 0xA361, 0x03B6, 0xA362, 0x03B7, 0xA363, 0x03B8, 0xA364, 0x03B9, 0xA365, 0x03BA, + 0xA366, 0x03BB, 0xA367, 0x03BC, 0xA368, 0x03BD, 0xA369, 0x03BE, 0xA36A, 0x03BF, 0xA36B, 0x03C0, 0xA36C, 0x03C1, 0xA36D, 0x03C3, + 0xA36E, 0x03C4, 0xA36F, 0x03C5, 0xA370, 0x03C6, 0xA371, 0x03C7, 0xA372, 0x03C8, 0xA373, 0x03C9, 0xA374, 0x3105, 0xA375, 0x3106, + 0xA376, 0x3107, 0xA377, 0x3108, 0xA378, 0x3109, 0xA379, 0x310A, 0xA37A, 0x310B, 0xA37B, 0x310C, 0xA37C, 0x310D, 0xA37D, 0x310E, + 0xA37E, 0x310F, 0xA3A1, 0x3110, 0xA3A2, 0x3111, 0xA3A3, 0x3112, 0xA3A4, 0x3113, 0xA3A5, 0x3114, 0xA3A6, 0x3115, 0xA3A7, 0x3116, + 0xA3A8, 0x3117, 0xA3A9, 0x3118, 0xA3AA, 0x3119, 0xA3AB, 0x311A, 0xA3AC, 0x311B, 0xA3AD, 0x311C, 0xA3AE, 0x311D, 0xA3AF, 0x311E, + 0xA3B0, 0x311F, 0xA3B1, 0x3120, 0xA3B2, 0x3121, 0xA3B3, 0x3122, 0xA3B4, 0x3123, 0xA3B5, 0x3124, 0xA3B6, 0x3125, 0xA3B7, 0x3126, + 0xA3B8, 0x3127, 0xA3B9, 0x3128, 0xA3BA, 0x3129, 0xA3BB, 0x02D9, 0xA3BC, 0x02C9, 0xA3BD, 0x02CA, 0xA3BE, 0x02C7, 0xA3BF, 0x02CB, + 0xA3E1, 0x20AC, 0xA440, 0x4E00, 0xA441, 0x4E59, 0xA442, 0x4E01, 0xA443, 0x4E03, 0xA444, 0x4E43, 0xA445, 0x4E5D, 0xA446, 0x4E86, + 0xA447, 0x4E8C, 0xA448, 0x4EBA, 0xA449, 0x513F, 0xA44A, 0x5165, 0xA44B, 0x516B, 0xA44C, 0x51E0, 0xA44D, 0x5200, 0xA44E, 0x5201, + 0xA44F, 0x529B, 0xA450, 0x5315, 0xA451, 0x5341, 0xA452, 0x535C, 0xA453, 0x53C8, 0xA454, 0x4E09, 0xA455, 0x4E0B, 0xA456, 0x4E08, + 0xA457, 0x4E0A, 0xA458, 0x4E2B, 0xA459, 0x4E38, 0xA45A, 0x51E1, 0xA45B, 0x4E45, 0xA45C, 0x4E48, 0xA45D, 0x4E5F, 0xA45E, 0x4E5E, + 0xA45F, 0x4E8E, 0xA460, 0x4EA1, 0xA461, 0x5140, 0xA462, 0x5203, 0xA463, 0x52FA, 0xA464, 0x5343, 0xA465, 0x53C9, 0xA466, 0x53E3, + 0xA467, 0x571F, 0xA468, 0x58EB, 0xA469, 0x5915, 0xA46A, 0x5927, 0xA46B, 0x5973, 0xA46C, 0x5B50, 0xA46D, 0x5B51, 0xA46E, 0x5B53, + 0xA46F, 0x5BF8, 0xA470, 0x5C0F, 0xA471, 0x5C22, 0xA472, 0x5C38, 0xA473, 0x5C71, 0xA474, 0x5DDD, 0xA475, 0x5DE5, 0xA476, 0x5DF1, + 0xA477, 0x5DF2, 0xA478, 0x5DF3, 0xA479, 0x5DFE, 0xA47A, 0x5E72, 0xA47B, 0x5EFE, 0xA47C, 0x5F0B, 0xA47D, 0x5F13, 0xA47E, 0x624D, + 0xA4A1, 0x4E11, 0xA4A2, 0x4E10, 0xA4A3, 0x4E0D, 0xA4A4, 0x4E2D, 0xA4A5, 0x4E30, 0xA4A6, 0x4E39, 0xA4A7, 0x4E4B, 0xA4A8, 0x5C39, + 0xA4A9, 0x4E88, 0xA4AA, 0x4E91, 0xA4AB, 0x4E95, 0xA4AC, 0x4E92, 0xA4AD, 0x4E94, 0xA4AE, 0x4EA2, 0xA4AF, 0x4EC1, 0xA4B0, 0x4EC0, + 0xA4B1, 0x4EC3, 0xA4B2, 0x4EC6, 0xA4B3, 0x4EC7, 0xA4B4, 0x4ECD, 0xA4B5, 0x4ECA, 0xA4B6, 0x4ECB, 0xA4B7, 0x4EC4, 0xA4B8, 0x5143, + 0xA4B9, 0x5141, 0xA4BA, 0x5167, 0xA4BB, 0x516D, 0xA4BC, 0x516E, 0xA4BD, 0x516C, 0xA4BE, 0x5197, 0xA4BF, 0x51F6, 0xA4C0, 0x5206, + 0xA4C1, 0x5207, 0xA4C2, 0x5208, 0xA4C3, 0x52FB, 0xA4C4, 0x52FE, 0xA4C5, 0x52FF, 0xA4C6, 0x5316, 0xA4C7, 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0xF7B8, 0x9DD2, 0xF7B9, 0x9DDE, + 0xF7BA, 0x9DDA, 0xF7BB, 0x9DCB, 0xF7BC, 0x9DD0, 0xF7BD, 0x9DDC, 0xF7BE, 0x9DD1, 0xF7BF, 0x9DDF, 0xF7C0, 0x9DE9, 0xF7C1, 0x9DD9, + 0xF7C2, 0x9DD8, 0xF7C3, 0x9DD6, 0xF7C4, 0x9DF5, 0xF7C5, 0x9DD5, 0xF7C6, 0x9DDD, 0xF7C7, 0x9EB6, 0xF7C8, 0x9EF0, 0xF7C9, 0x9F35, + 0xF7CA, 0x9F33, 0xF7CB, 0x9F32, 0xF7CC, 0x9F42, 0xF7CD, 0x9F6B, 0xF7CE, 0x9F95, 0xF7CF, 0x9FA2, 0xF7D0, 0x513D, 0xF7D1, 0x5299, + 0xF7D2, 0x58E8, 0xF7D3, 0x58E7, 0xF7D4, 0x5972, 0xF7D5, 0x5B4D, 0xF7D6, 0x5DD8, 0xF7D7, 0x882F, 0xF7D8, 0x5F4F, 0xF7D9, 0x6201, + 0xF7DA, 0x6203, 0xF7DB, 0x6204, 0xF7DC, 0x6529, 0xF7DD, 0x6525, 0xF7DE, 0x6596, 0xF7DF, 0x66EB, 0xF7E0, 0x6B11, 0xF7E1, 0x6B12, + 0xF7E2, 0x6B0F, 0xF7E3, 0x6BCA, 0xF7E4, 0x705B, 0xF7E5, 0x705A, 0xF7E6, 0x7222, 0xF7E7, 0x7382, 0xF7E8, 0x7381, 0xF7E9, 0x7383, + 0xF7EA, 0x7670, 0xF7EB, 0x77D4, 0xF7EC, 0x7C67, 0xF7ED, 0x7C66, 0xF7EE, 0x7E95, 0xF7EF, 0x826C, 0xF7F0, 0x863A, 0xF7F1, 0x8640, + 0xF7F2, 0x8639, 0xF7F3, 0x863C, 0xF7F4, 0x8631, 0xF7F5, 0x863B, 0xF7F6, 0x863E, 0xF7F7, 0x8830, 0xF7F8, 0x8832, 0xF7F9, 0x882E, + 0xF7FA, 0x8833, 0xF7FB, 0x8976, 0xF7FC, 0x8974, 0xF7FD, 0x8973, 0xF7FE, 0x89FE, 0xF840, 0x8B8C, 0xF841, 0x8B8E, 0xF842, 0x8B8B, + 0xF843, 0x8B88, 0xF844, 0x8C45, 0xF845, 0x8D19, 0xF846, 0x8E98, 0xF847, 0x8F64, 0xF848, 0x8F63, 0xF849, 0x91BC, 0xF84A, 0x9462, + 0xF84B, 0x9455, 0xF84C, 0x945D, 0xF84D, 0x9457, 0xF84E, 0x945E, 0xF84F, 0x97C4, 0xF850, 0x97C5, 0xF851, 0x9800, 0xF852, 0x9A56, + 0xF853, 0x9A59, 0xF854, 0x9B1E, 0xF855, 0x9B1F, 0xF856, 0x9B20, 0xF857, 0x9C52, 0xF858, 0x9C58, 0xF859, 0x9C50, 0xF85A, 0x9C4A, + 0xF85B, 0x9C4D, 0xF85C, 0x9C4B, 0xF85D, 0x9C55, 0xF85E, 0x9C59, 0xF85F, 0x9C4C, 0xF860, 0x9C4E, 0xF861, 0x9DFB, 0xF862, 0x9DF7, + 0xF863, 0x9DEF, 0xF864, 0x9DE3, 0xF865, 0x9DEB, 0xF866, 0x9DF8, 0xF867, 0x9DE4, 0xF868, 0x9DF6, 0xF869, 0x9DE1, 0xF86A, 0x9DEE, + 0xF86B, 0x9DE6, 0xF86C, 0x9DF2, 0xF86D, 0x9DF0, 0xF86E, 0x9DE2, 0xF86F, 0x9DEC, 0xF870, 0x9DF4, 0xF871, 0x9DF3, 0xF872, 0x9DE8, + 0xF873, 0x9DED, 0xF874, 0x9EC2, 0xF875, 0x9ED0, 0xF876, 0x9EF2, 0xF877, 0x9EF3, 0xF878, 0x9F06, 0xF879, 0x9F1C, 0xF87A, 0x9F38, + 0xF87B, 0x9F37, 0xF87C, 0x9F36, 0xF87D, 0x9F43, 0xF87E, 0x9F4F, 0xF8A1, 0x9F71, 0xF8A2, 0x9F70, 0xF8A3, 0x9F6E, 0xF8A4, 0x9F6F, + 0xF8A5, 0x56D3, 0xF8A6, 0x56CD, 0xF8A7, 0x5B4E, 0xF8A8, 0x5C6D, 0xF8A9, 0x652D, 0xF8AA, 0x66ED, 0xF8AB, 0x66EE, 0xF8AC, 0x6B13, + 0xF8AD, 0x705F, 0xF8AE, 0x7061, 0xF8AF, 0x705D, 0xF8B0, 0x7060, 0xF8B1, 0x7223, 0xF8B2, 0x74DB, 0xF8B3, 0x74E5, 0xF8B4, 0x77D5, + 0xF8B5, 0x7938, 0xF8B6, 0x79B7, 0xF8B7, 0x79B6, 0xF8B8, 0x7C6A, 0xF8B9, 0x7E97, 0xF8BA, 0x7F89, 0xF8BB, 0x826D, 0xF8BC, 0x8643, + 0xF8BD, 0x8838, 0xF8BE, 0x8837, 0xF8BF, 0x8835, 0xF8C0, 0x884B, 0xF8C1, 0x8B94, 0xF8C2, 0x8B95, 0xF8C3, 0x8E9E, 0xF8C4, 0x8E9F, + 0xF8C5, 0x8EA0, 0xF8C6, 0x8E9D, 0xF8C7, 0x91BE, 0xF8C8, 0x91BD, 0xF8C9, 0x91C2, 0xF8CA, 0x946B, 0xF8CB, 0x9468, 0xF8CC, 0x9469, + 0xF8CD, 0x96E5, 0xF8CE, 0x9746, 0xF8CF, 0x9743, 0xF8D0, 0x9747, 0xF8D1, 0x97C7, 0xF8D2, 0x97E5, 0xF8D3, 0x9A5E, 0xF8D4, 0x9AD5, + 0xF8D5, 0x9B59, 0xF8D6, 0x9C63, 0xF8D7, 0x9C67, 0xF8D8, 0x9C66, 0xF8D9, 0x9C62, 0xF8DA, 0x9C5E, 0xF8DB, 0x9C60, 0xF8DC, 0x9E02, + 0xF8DD, 0x9DFE, 0xF8DE, 0x9E07, 0xF8DF, 0x9E03, 0xF8E0, 0x9E06, 0xF8E1, 0x9E05, 0xF8E2, 0x9E00, 0xF8E3, 0x9E01, 0xF8E4, 0x9E09, + 0xF8E5, 0x9DFF, 0xF8E6, 0x9DFD, 0xF8E7, 0x9E04, 0xF8E8, 0x9EA0, 0xF8E9, 0x9F1E, 0xF8EA, 0x9F46, 0xF8EB, 0x9F74, 0xF8EC, 0x9F75, + 0xF8ED, 0x9F76, 0xF8EE, 0x56D4, 0xF8EF, 0x652E, 0xF8F0, 0x65B8, 0xF8F1, 0x6B18, 0xF8F2, 0x6B19, 0xF8F3, 0x6B17, 0xF8F4, 0x6B1A, + 0xF8F5, 0x7062, 0xF8F6, 0x7226, 0xF8F7, 0x72AA, 0xF8F8, 0x77D8, 0xF8F9, 0x77D9, 0xF8FA, 0x7939, 0xF8FB, 0x7C69, 0xF8FC, 0x7C6B, + 0xF8FD, 0x7CF6, 0xF8FE, 0x7E9A, 0xF940, 0x7E98, 0xF941, 0x7E9B, 0xF942, 0x7E99, 0xF943, 0x81E0, 0xF944, 0x81E1, 0xF945, 0x8646, + 0xF946, 0x8647, 0xF947, 0x8648, 0xF948, 0x8979, 0xF949, 0x897A, 0xF94A, 0x897C, 0xF94B, 0x897B, 0xF94C, 0x89FF, 0xF94D, 0x8B98, + 0xF94E, 0x8B99, 0xF94F, 0x8EA5, 0xF950, 0x8EA4, 0xF951, 0x8EA3, 0xF952, 0x946E, 0xF953, 0x946D, 0xF954, 0x946F, 0xF955, 0x9471, + 0xF956, 0x9473, 0xF957, 0x9749, 0xF958, 0x9872, 0xF959, 0x995F, 0xF95A, 0x9C68, 0xF95B, 0x9C6E, 0xF95C, 0x9C6D, 0xF95D, 0x9E0B, + 0xF95E, 0x9E0D, 0xF95F, 0x9E10, 0xF960, 0x9E0F, 0xF961, 0x9E12, 0xF962, 0x9E11, 0xF963, 0x9EA1, 0xF964, 0x9EF5, 0xF965, 0x9F09, + 0xF966, 0x9F47, 0xF967, 0x9F78, 0xF968, 0x9F7B, 0xF969, 0x9F7A, 0xF96A, 0x9F79, 0xF96B, 0x571E, 0xF96C, 0x7066, 0xF96D, 0x7C6F, + 0xF96E, 0x883C, 0xF96F, 0x8DB2, 0xF970, 0x8EA6, 0xF971, 0x91C3, 0xF972, 0x9474, 0xF973, 0x9478, 0xF974, 0x9476, 0xF975, 0x9475, + 0xF976, 0x9A60, 0xF977, 0x9C74, 0xF978, 0x9C73, 0xF979, 0x9C71, 0xF97A, 0x9C75, 0xF97B, 0x9E14, 0xF97C, 0x9E13, 0xF97D, 0x9EF6, + 0xF97E, 0x9F0A, 0xF9A1, 0x9FA4, 0xF9A2, 0x7068, 0xF9A3, 0x7065, 0xF9A4, 0x7CF7, 0xF9A5, 0x866A, 0xF9A6, 0x883E, 0xF9A7, 0x883D, + 0xF9A8, 0x883F, 0xF9A9, 0x8B9E, 0xF9AA, 0x8C9C, 0xF9AB, 0x8EA9, 0xF9AC, 0x8EC9, 0xF9AD, 0x974B, 0xF9AE, 0x9873, 0xF9AF, 0x9874, + 0xF9B0, 0x98CC, 0xF9B1, 0x9961, 0xF9B2, 0x99AB, 0xF9B3, 0x9A64, 0xF9B4, 0x9A66, 0xF9B5, 0x9A67, 0xF9B6, 0x9B24, 0xF9B7, 0x9E15, + 0xF9B8, 0x9E17, 0xF9B9, 0x9F48, 0xF9BA, 0x6207, 0xF9BB, 0x6B1E, 0xF9BC, 0x7227, 0xF9BD, 0x864C, 0xF9BE, 0x8EA8, 0xF9BF, 0x9482, + 0xF9C0, 0x9480, 0xF9C1, 0x9481, 0xF9C2, 0x9A69, 0xF9C3, 0x9A68, 0xF9C4, 0x9B2E, 0xF9C5, 0x9E19, 0xF9C6, 0x7229, 0xF9C7, 0x864B, + 0xF9C8, 0x8B9F, 0xF9C9, 0x9483, 0xF9CA, 0x9C79, 0xF9CB, 0x9EB7, 0xF9CC, 0x7675, 0xF9CD, 0x9A6B, 0xF9CE, 0x9C7A, 0xF9CF, 0x9E1D, + 0xF9D0, 0x7069, 0xF9D1, 0x706A, 0xF9D2, 0x9EA4, 0xF9D3, 0x9F7E, 0xF9D4, 0x9F49, 0xF9D5, 0x9F98, 0xF9D6, 0x7881, 0xF9D7, 0x92B9, + 0xF9D8, 0x88CF, 0xF9D9, 0x58BB, 0xF9DA, 0x6052, 0xF9DB, 0x7CA7, 0xF9DC, 0x5AFA, 0xF9DD, 0x2554, 0xF9DE, 0x2566, 0xF9DF, 0x2557, + 0xF9E0, 0x2560, 0xF9E1, 0x256C, 0xF9E2, 0x2563, 0xF9E3, 0x255A, 0xF9E4, 0x2569, 0xF9E5, 0x255D, 0xF9E6, 0x2552, 0xF9E7, 0x2564, + 0xF9E8, 0x2555, 0xF9E9, 0x255E, 0xF9EA, 0x256A, 0xF9EB, 0x2561, 0xF9EC, 0x2558, 0xF9ED, 0x2567, 0xF9EE, 0x255B, 0xF9EF, 0x2553, + 0xF9F0, 0x2565, 0xF9F1, 0x2556, 0xF9F2, 0x255F, 0xF9F3, 0x256B, 0xF9F4, 0x2562, 0xF9F5, 0x2559, 0xF9F6, 0x2568, 0xF9F7, 0x255C, + 0xF9F8, 0x2551, 0xF9F9, 0x2550, 0xF9FA, 0x256D, 0xF9FB, 0x256E, 0xF9FC, 0x2570, 0xF9FD, 0x256F, 0xF9FE, 0x2593, 0, 0 +}; +#endif + +#if FF_CODE_PAGE == 437 || FF_CODE_PAGE == 0 +static const WCHAR uc437[] = { /* CP437(U.S.) to Unicode conversion table */ + 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E5, 0x00E7, 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x00EC, 0x00C4, 0x00C5, + 0x00C9, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00F2, 0x00FB, 0x00F9, 0x00FF, 0x00D6, 0x00DC, 0x00A2, 0x00A3, 0x00A5, 0x20A7, 0x0192, + 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, 0x00BF, 0x2310, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, + 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, + 0x03B1, 0x00DF, 0x0393, 0x03C0, 0x03A3, 0x03C3, 0x00B5, 0x03C4, 0x03A6, 0x0398, 0x03A9, 0x03B4, 0x221E, 0x03C6, 0x03B5, 0x2229, + 0x2261, 0x00B1, 0x2265, 0x2264, 0x2320, 0x2321, 0x00F7, 0x2248, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 +}; +#endif +#if FF_CODE_PAGE == 720 || FF_CODE_PAGE == 0 +static const WCHAR uc720[] = { /* CP720(Arabic) to Unicode conversion table */ + 0x0000, 0x0000, 0x00E9, 0x00E2, 0x0000, 0x00E0, 0x0000, 0x00E7, 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x0000, 0x0000, 0x0000, + 0x0000, 0x0651, 0x0652, 0x00F4, 0x00A4, 0x0640, 0x00FB, 0x00F9, 0x0621, 0x0622, 0x0623, 0x0624, 0x00A3, 0x0625, 0x0626, 0x0627, + 0x0628, 0x0629, 0x062A, 0x062B, 0x062C, 0x062D, 0x062E, 0x062F, 0x0630, 0x0631, 0x0632, 0x0633, 0x0634, 0x0635, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, + 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, + 0x0636, 0x0637, 0x0638, 0x0639, 0x063A, 0x0641, 0x00B5, 0x0642, 0x0643, 0x0644, 0x0645, 0x0646, 0x0647, 0x0648, 0x0649, 0x064A, + 0x2261, 0x064B, 0x064C, 0x064D, 0x064E, 0x064F, 0x0650, 0x2248, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 +}; +#endif +#if FF_CODE_PAGE == 737 || FF_CODE_PAGE == 0 +static const WCHAR uc737[] = { /* CP737(Greek) to Unicode conversion table */ + 0x0391, 0x0392, 0x0393, 0x0394, 0x0395, 0x0396, 0x0397, 0x0398, 0x0399, 0x039A, 0x039B, 0x039C, 0x039D, 0x039E, 0x039F, 0x03A0, + 0x03A1, 0x03A3, 0x03A4, 0x03A5, 0x03A6, 0x03A7, 0x03A8, 0x03A9, 0x03B1, 0x03B2, 0x03B3, 0x03B4, 0x03B5, 0x03B6, 0x03B7, 0x03B8, + 0x03B9, 0x03BA, 0x03BB, 0x03BC, 0x03BD, 0x03BE, 0x03BF, 0x03C0, 0x03C1, 0x03C3, 0x03C2, 0x03C4, 0x03C5, 0x03C6, 0x03C7, 0x03C8, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, + 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, + 0x03C9, 0x03AC, 0x03AD, 0x03AE, 0x03CA, 0x03AF, 0x03CC, 0x03CD, 0x03CB, 0x03CE, 0x0386, 0x0388, 0x0389, 0x038A, 0x038C, 0x038E, + 0x038F, 0x00B1, 0x2265, 0x2264, 0x03AA, 0x03AB, 0x00F7, 0x2248, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 +}; +#endif +#if FF_CODE_PAGE == 771 || FF_CODE_PAGE == 0 +static const WCHAR uc771[] = { /* CP771(KBL) to Unicode conversion table */ + 0x0410, 0x0411, 0x0412, 0x0413, 0x0414, 0x0415, 0x0416, 0x0417, 0x0418, 0x0419, 0x041A, 0x041B, 0x041C, 0x041D, 0x041E, 0x041F, + 0x0420, 0x0421, 0x0422, 0x0423, 0x0424, 0x0425, 0x0426, 0x0427, 0x0428, 0x0429, 0x042A, 0x042B, 0x042C, 0x042D, 0x042E, 0x042F, + 0x0430, 0x0431, 0x0432, 0x0433, 0x0434, 0x0435, 0x0436, 0x0437, 0x0438, 0x0439, 0x043A, 0x043B, 0x043C, 0x043D, 0x043E, 0x043F, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x2558, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, + 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x0104, 0x0105, 0x010C, 0x010D, + 0x0440, 0x0441, 0x0442, 0x0443, 0x0444, 0x0445, 0x0446, 0x0447, 0x0448, 0x0449, 0x044A, 0x044B, 0x044C, 0x044D, 0x044E, 0x044F, + 0x0118, 0x0119, 0x0116, 0x0117, 0x012E, 0x012F, 0x0160, 0x0161, 0x0172, 0x0173, 0x016A, 0x016B, 0x017D, 0x017E, 0x25A0, 0x00A0 +}; +#endif +#if FF_CODE_PAGE == 775 || FF_CODE_PAGE == 0 +static const WCHAR uc775[] = { /* CP775(Baltic) to Unicode conversion table */ + 0x0106, 0x00FC, 0x00E9, 0x0101, 0x00E4, 0x0123, 0x00E5, 0x0107, 0x0142, 0x0113, 0x0156, 0x0157, 0x012B, 0x0179, 0x00C4, 0x00C5, + 0x00C9, 0x00E6, 0x00C6, 0x014D, 0x00F6, 0x0122, 0x00A2, 0x015A, 0x015B, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x00D7, 0x00A4, + 0x0100, 0x012A, 0x00F3, 0x017B, 0x017C, 0x017A, 0x201D, 0x00A6, 0x00A9, 0x00AE, 0x00AC, 0x00BD, 0x00BC, 0x0141, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x0104, 0x010C, 0x0118, 0x0116, 0x2563, 0x2551, 0x2557, 0x255D, 0x012E, 0x0160, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x0172, 0x016A, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x017D, + 0x0105, 0x010D, 0x0119, 0x0117, 0x012F, 0x0161, 0x0173, 0x016B, 0x017E, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, + 0x00D3, 0x00DF, 0x014C, 0x0143, 0x00F5, 0x00D5, 0x00B5, 0x0144, 0x0136, 0x0137, 0x013B, 0x013C, 0x0146, 0x0112, 0x0145, 0x2019, + 0x00AD, 0x00B1, 0x201C, 0x00BE, 0x00B6, 0x00A7, 0x00F7, 0x201E, 0x00B0, 0x2219, 0x00B7, 0x00B9, 0x00B3, 0x00B2, 0x25A0, 0x00A0 +}; +#endif +#if FF_CODE_PAGE == 850 || FF_CODE_PAGE == 0 +static const WCHAR uc850[] = { /* CP850(Latin 1) to Unicode conversion table */ + 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E5, 0x00E7, 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x00EC, 0x00C4, 0x00C5, + 0x00C9, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00F2, 0x00FB, 0x00F9, 0x00FF, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x00D7, 0x0192, + 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, 0x00BF, 0x00AE, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x00C1, 0x00C2, 0x00C0, 0x00A9, 0x2563, 0x2551, 0x2557, 0x255D, 0x00A2, 0x00A5, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x00E3, 0x00C3, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, + 0x00F0, 0x00D0, 0x00CA, 0x00CB, 0x00C8, 0x0131, 0x00CD, 0x00CE, 0x00CF, 0x2518, 0x250C, 0x2588, 0x2584, 0x00A6, 0x00CC, 0x2580, + 0x00D3, 0x00DF, 0x00D4, 0x00D2, 0x00F5, 0x00D5, 0x00B5, 0x00FE, 0x00DE, 0x00DA, 0x00DB, 0x00D9, 0x00FD, 0x00DD, 0x00AF, 0x00B4, + 0x00AD, 0x00B1, 0x2017, 0x00BE, 0x00B6, 0x00A7, 0x00F7, 0x00B8, 0x00B0, 0x00A8, 0x00B7, 0x00B9, 0x00B3, 0x00B2, 0x25A0, 0x00A0 +}; +#endif +#if FF_CODE_PAGE == 852 || FF_CODE_PAGE == 0 +static const WCHAR uc852[] = { /* CP852(Latin 2) to Unicode conversion table */ + 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x016F, 0x0107, 0x00E7, 0x0142, 0x00EB, 0x0150, 0x0151, 0x00EE, 0x0179, 0x00C4, 0x0106, + 0x00C9, 0x0139, 0x013A, 0x00F4, 0x00F6, 0x013D, 0x013E, 0x015A, 0x015B, 0x00D6, 0x00DC, 0x0164, 0x0165, 0x0141, 0x00D7, 0x010D, + 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x0104, 0x0105, 0x017D, 0x017E, 0x0118, 0x0119, 0x00AC, 0x017A, 0x010C, 0x015F, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x00C1, 0x00C2, 0x011A, 0x015E, 0x2563, 0x2551, 0x2557, 0x255D, 0x017B, 0x017C, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x0102, 0x0103, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, + 0x0111, 0x0110, 0x010E, 0x00CB, 0x010F, 0x0147, 0x00CD, 0x00CE, 0x011B, 0x2518, 0x250C, 0x2588, 0x2584, 0x0162, 0x016E, 0x2580, + 0x00D3, 0x00DF, 0x00D4, 0x0143, 0x0144, 0x0148, 0x0160, 0x0161, 0x0154, 0x00DA, 0x0155, 0x0170, 0x00FD, 0x00DD, 0x0163, 0x00B4, + 0x00AD, 0x02DD, 0x02DB, 0x02C7, 0x02D8, 0x00A7, 0x00F7, 0x00B8, 0x00B0, 0x00A8, 0x02D9, 0x0171, 0x0158, 0x0159, 0x25A0, 0x00A0 +}; +#endif +#if FF_CODE_PAGE == 855 || FF_CODE_PAGE == 0 +static const WCHAR uc855[] = { /* CP855(Cyrillic) to Unicode conversion table */ + 0x0452, 0x0402, 0x0453, 0x0403, 0x0451, 0x0401, 0x0454, 0x0404, 0x0455, 0x0405, 0x0456, 0x0406, 0x0457, 0x0407, 0x0458, 0x0408, + 0x0459, 0x0409, 0x045A, 0x040A, 0x045B, 0x040B, 0x045C, 0x040C, 0x045E, 0x040E, 0x045F, 0x040F, 0x044E, 0x042E, 0x044A, 0x042A, + 0x0430, 0x0410, 0x0431, 0x0411, 0x0446, 0x0426, 0x0434, 0x0414, 0x0435, 0x0415, 0x0444, 0x0424, 0x0433, 0x0413, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x0445, 0x0425, 0x0438, 0x0418, 0x2563, 0x2551, 0x2557, 0x255D, 0x0439, 0x0419, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x043A, 0x041A, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, + 0x043B, 0x041B, 0x043C, 0x041C, 0x043D, 0x041D, 0x043E, 0x041E, 0x043F, 0x2518, 0x250C, 0x2588, 0x2584, 0x041F, 0x044F, 0x2580, + 0x042F, 0x0440, 0x0420, 0x0441, 0x0421, 0x0442, 0x0422, 0x0443, 0x0423, 0x0436, 0x0416, 0x0432, 0x0412, 0x044C, 0x042C, 0x2116, + 0x00AD, 0x044B, 0x042B, 0x0437, 0x0417, 0x0448, 0x0428, 0x044D, 0x042D, 0x0449, 0x0429, 0x0447, 0x0427, 0x00A7, 0x25A0, 0x00A0 +}; +#endif +#if FF_CODE_PAGE == 857 || FF_CODE_PAGE == 0 +static const WCHAR uc857[] = { /* CP857(Turkish) to Unicode conversion table */ + 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E5, 0x00E7, 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x0131, 0x00C4, 0x00C5, + 0x00C9, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00F2, 0x00FB, 0x00F9, 0x0130, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x015E, 0x015F, + 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x011E, 0x011F, 0x00BF, 0x00AE, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x00C1, 0x00C2, 0x00C0, 0x00A9, 0x2563, 0x2551, 0x2557, 0x255D, 0x00A2, 0x00A5, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x00E3, 0x00C3, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, + 0x00BA, 0x00AA, 0x00CA, 0x00CB, 0x00C8, 0x0000, 0x00CD, 0x00CE, 0x00CF, 0x2518, 0x250C, 0x2588, 0x2584, 0x00A6, 0x00CC, 0x2580, + 0x00D3, 0x00DF, 0x00D4, 0x00D2, 0x00F5, 0x00D5, 0x00B5, 0x0000, 0x00D7, 0x00DA, 0x00DB, 0x00D9, 0x00EC, 0x00FF, 0x00AF, 0x00B4, + 0x00AD, 0x00B1, 0x0000, 0x00BE, 0x00B6, 0x00A7, 0x00F7, 0x00B8, 0x00B0, 0x00A8, 0x00B7, 0x00B9, 0x00B3, 0x00B2, 0x25A0, 0x00A0 +}; +#endif +#if FF_CODE_PAGE == 860 || FF_CODE_PAGE == 0 +static const WCHAR uc860[] = { /* CP860(Portuguese) to Unicode conversion table */ + 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E3, 0x00E0, 0x00C1, 0x00E7, 0x00EA, 0x00CA, 0x00E8, 0x00CD, 0x00D4, 0x00EC, 0x00C3, 0x00C2, + 0x00C9, 0x00C0, 0x00C8, 0x00F4, 0x00F5, 0x00F2, 0x00DA, 0x00F9, 0x00CC, 0x00D5, 0x00DC, 0x00A2, 0x00A3, 0x00D9, 0x20A7, 0x00D3, + 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, 0x00BF, 0x00D2, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x2558, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, + 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, + 0x03B1, 0x00DF, 0x0393, 0x03C0, 0x03A3, 0x03C3, 0x00B5, 0x03C4, 0x03A6, 0x0398, 0x03A9, 0x03B4, 0x221E, 0x03C6, 0x03B5, 0x2229, + 0x2261, 0x00B1, 0x2265, 0x2264, 0x2320, 0x2321, 0x00F7, 0x2248, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 +}; +#endif +#if FF_CODE_PAGE == 861 || FF_CODE_PAGE == 0 +static const WCHAR uc861[] = { /* CP861(Icelandic) to Unicode conversion table */ + 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E6, 0x00E7, 0x00EA, 0x00EB, 0x00E8, 0x00D0, 0x00F0, 0x00DE, 0x00C4, 0x00C5, + 0x00C9, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00FE, 0x00FB, 0x00DD, 0x00FD, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x20A7, 0x0192, + 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00C1, 0x00CD, 0x00D3, 0x00DA, 0x00BF, 0x2310, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, + 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, + 0x03B1, 0x00DF, 0x0393, 0x03C0, 0x03A3, 0x03C3, 0x00B5, 0x03C4, 0x03A6, 0x0398, 0x03A9, 0x03B4, 0x221E, 0x03C6, 0x03B5, 0x2229, + 0x2261, 0x00B1, 0x2265, 0x2264, 0x2320, 0x2321, 0x00F7, 0x2248, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 +}; +#endif +#if FF_CODE_PAGE == 862 || FF_CODE_PAGE == 0 +static const WCHAR uc862[] = { /* CP862(Hebrew) to Unicode conversion table */ + 0x05D0, 0x05D1, 0x05D2, 0x05D3, 0x05D4, 0x05D5, 0x05D6, 0x05D7, 0x05D8, 0x05D9, 0x05DA, 0x05DB, 0x05DC, 0x05DD, 0x05DE, 0x05DF, + 0x05E0, 0x05E1, 0x05E2, 0x05E3, 0x05E4, 0x05E5, 0x05E6, 0x05E7, 0x05E8, 0x05E9, 0x05EA, 0x00A2, 0x00A3, 0x00A5, 0x20A7, 0x0192, + 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, 0x00BF, 0x2310, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, + 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, + 0x03B1, 0x00DF, 0x0393, 0x03C0, 0x03A3, 0x03C3, 0x00B5, 0x03C4, 0x03A6, 0x0398, 0x03A9, 0x03B4, 0x221E, 0x03C6, 0x03B5, 0x2229, + 0x2261, 0x00B1, 0x2265, 0x2264, 0x2320, 0x2321, 0x00F7, 0x2248, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 +}; +#endif +#if FF_CODE_PAGE == 863 || FF_CODE_PAGE == 0 +static const WCHAR uc863[] = { /* CP863(Canadian French) to Unicode conversion table */ + 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00C2, 0x00E0, 0x00B6, 0x00E7, 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x00EC, 0x2017, 0x00C0, + 0x00C9, 0x00C8, 0x00CA, 0x00F4, 0x00CB, 0x00CF, 0x00FB, 0x00F9, 0x00A4, 0x00D4, 0x00DC, 0x00A2, 0x00A3, 0x00D9, 0x00DB, 0x0192, + 0x00A6, 0x00B4, 0x00F3, 0x00FA, 0x00A8, 0x00BB, 0x00B3, 0x00AF, 0x00CE, 0x3210, 0x00AC, 0x00BD, 0x00BC, 0x00BE, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, + 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, + 0x03B1, 0x00DF, 0x0393, 0x03C0, 0x03A3, 0x03C3, 0x00B5, 0x03C4, 0x03A6, 0x0398, 0x03A9, 0x03B4, 0x221E, 0x03C6, 0x03B5, 0x2219, + 0x2261, 0x00B1, 0x2265, 0x2264, 0x2320, 0x2321, 0x00F7, 0x2248, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 +}; +#endif +#if FF_CODE_PAGE == 864 || FF_CODE_PAGE == 0 +static const WCHAR uc864[] = { /* CP864(Arabic) to Unicode conversion table */ + 0x00B0, 0x00B7, 0x2219, 0x221A, 0x2592, 0x2500, 0x2502, 0x253C, 0x2524, 0x252C, 0x251C, 0x2534, 0x2510, 0x250C, 0x2514, 0x2518, + 0x03B2, 0x221E, 0x03C6, 0x00B1, 0x00BD, 0x00BC, 0x2248, 0x00AB, 0x00BB, 0xFEF7, 0xFEF8, 0x0000, 0x0000, 0xFEFB, 0xFEFC, 0x0000, + 0x00A0, 0x00AD, 0xFE82, 0x00A3, 0x00A4, 0xFE84, 0x0000, 0x20AC, 0xFE8E, 0xFE8F, 0xFE95, 0xFE99, 0x060C, 0xFE9D, 0xFEA1, 0xFEA5, + 0x0660, 0x0661, 0x0662, 0x0663, 0x0664, 0x0665, 0x0666, 0x0667, 0x0668, 0x0669, 0xFED1, 0x061B, 0xFEB1, 0xFEB5, 0xFEB9, 0x061F, + 0x00A2, 0xFE80, 0xFE81, 0xFE83, 0xFE85, 0xFECA, 0xFE8B, 0xFE8D, 0xFE91, 0xFE93, 0xFE97, 0xFE9B, 0xFE9F, 0xFEA3, 0xFEA7, 0xFEA9, + 0xFEAB, 0xFEAD, 0xFEAF, 0xFEB3, 0xFEB7, 0xFEBB, 0xFEBF, 0xFEC1, 0xFEC5, 0xFECB, 0xFECF, 0x00A6, 0x00AC, 0x00F7, 0x00D7, 0xFEC9, + 0x0640, 0xFED3, 0xFED7, 0xFEDB, 0xFEDF, 0xFEE3, 0xFEE7, 0xFEEB, 0xFEED, 0xFEEF, 0xFEF3, 0xFEBD, 0xFECC, 0xFECE, 0xFECD, 0xFEE1, + 0xFE7D, 0x0651, 0xFEE5, 0xFEE9, 0xFEEC, 0xFEF0, 0xFEF2, 0xFED0, 0xFED5, 0xFEF5, 0xFEF6, 0xFEDD, 0xFED9, 0xFEF1, 0x25A0, 0x0000 +}; +#endif +#if FF_CODE_PAGE == 865 || FF_CODE_PAGE == 0 +static const WCHAR uc865[] = { /* CP865(Nordic) to Unicode conversion table */ + 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E5, 0x00E7, 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x00EC, 0x00C4, 0x00C5, + 0x00C5, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00F2, 0x00FB, 0x00F9, 0x00FF, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x20A7, 0x0192, + 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, 0x00BF, 0x2310, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00A4, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x2558, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, + 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, + 0x03B1, 0x00DF, 0x0393, 0x03C0, 0x03A3, 0x03C3, 0x00B5, 0x03C4, 0x03A6, 0x0398, 0x03A9, 0x03B4, 0x221E, 0x03C6, 0x03B5, 0x2229, + 0x2261, 0x00B1, 0x2265, 0x2264, 0x2320, 0x2321, 0x00F7, 0x2248, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 +}; +#endif +#if FF_CODE_PAGE == 866 || FF_CODE_PAGE == 0 +static const WCHAR uc866[] = { /* CP866(Russian) to Unicode conversion table */ + 0x0410, 0x0411, 0x0412, 0x0413, 0x0414, 0x0415, 0x0416, 0x0417, 0x0418, 0x0419, 0x041A, 0x041B, 0x041C, 0x041D, 0x041E, 0x041F, + 0x0420, 0x0421, 0x0422, 0x0423, 0x0424, 0x0425, 0x0426, 0x0427, 0x0428, 0x0429, 0x042A, 0x042B, 0x042C, 0x042D, 0x042E, 0x042F, + 0x0430, 0x0431, 0x0432, 0x0433, 0x0434, 0x0435, 0x0436, 0x0437, 0x0438, 0x0439, 0x043A, 0x043B, 0x043C, 0x043D, 0x043E, 0x043F, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, + 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, + 0x0440, 0x0441, 0x0442, 0x0443, 0x0444, 0x0445, 0x0446, 0x0447, 0x0448, 0x0449, 0x044A, 0x044B, 0x044C, 0x044D, 0x044E, 0x044F, + 0x0401, 0x0451, 0x0404, 0x0454, 0x0407, 0x0457, 0x040E, 0x045E, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x2116, 0x00A4, 0x25A0, 0x00A0 +}; +#endif +#if FF_CODE_PAGE == 869 || FF_CODE_PAGE == 0 +static const WCHAR uc869[] = { /* CP869(Greek 2) to Unicode conversion table */ + 0x00B7, 0x00B7, 0x00B7, 0x00B7, 0x00B7, 0x00B7, 0x0386, 0x00B7, 0x00B7, 0x00AC, 0x00A6, 0x2018, 0x2019, 0x0388, 0x2015, 0x0389, + 0x038A, 0x03AA, 0x038C, 0x00B7, 0x00B7, 0x038E, 0x03AB, 0x00A9, 0x038F, 0x00B2, 0x00B3, 0x03AC, 0x00A3, 0x03AD, 0x03AE, 0x03AF, + 0x03CA, 0x0390, 0x03CC, 0x03CD, 0x0391, 0x0392, 0x0393, 0x0394, 0x0395, 0x0396, 0x0397, 0x00BD, 0x0398, 0x0399, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x039A, 0x039B, 0x039C, 0x039D, 0x2563, 0x2551, 0x2557, 0x255D, 0x039E, 0x039F, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x0A30, 0x03A1, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x03A3, + 0x03A4, 0x03A5, 0x03A6, 0x03A7, 0x03A8, 0x03A9, 0x03B1, 0x03B2, 0x03B3, 0x2518, 0x250C, 0x2588, 0x2584, 0x03B4, 0x03B5, 0x2580, + 0x03B6, 0x03B7, 0x03B8, 0x03B9, 0x03BA, 0x03BB, 0x03BC, 0x03BD, 0x03BE, 0x03BF, 0x03C0, 0x03C1, 0x03C3, 0x03C2, 0x03C4, 0x0384, + 0x00AD, 0x00B1, 0x03C5, 0x03C6, 0x03C7, 0x00A7, 0x03C8, 0x0385, 0x00B0, 0x00A8, 0x03C9, 0x03CB, 0x03B0, 0x03CE, 0x25A0, 0x00A0 +}; +#endif + + + + +/*------------------------------------------------------------------------*/ +/* OEM <==> Unicode conversions for static code page configuration */ +/* SBCS fixed code page */ +/*------------------------------------------------------------------------*/ + +#if FF_CODE_PAGE != 0 && FF_CODE_PAGE < 900 +WCHAR ff_uni2oem ( /* Returns OEM code character, zero on error */ + DWORD uni, /* UTF-16 encoded character to be converted */ + WORD cp /* Code page for the conversion */ +) +{ + WCHAR c = 0; + const WCHAR *p = CVTBL(uc, FF_CODE_PAGE); + + + if (uni < 0x80) { /* ASCII? */ + c = (WCHAR)uni; + + } else { /* Non-ASCII */ + if (uni < 0x10000 && cp == FF_CODE_PAGE) { /* Is it in BMP and valid code page? */ + for (c = 0; c < 0x80 && uni != p[c]; c++) ; + c = (c + 0x80) & 0xFF; + } + } + + return c; +} + +WCHAR ff_oem2uni ( /* Returns Unicode character, zero on error */ + WCHAR oem, /* OEM code to be converted */ + WORD cp /* Code page for the conversion */ +) +{ + WCHAR c = 0; + const WCHAR *p = CVTBL(uc, FF_CODE_PAGE); + + + if (oem < 0x80) { /* ASCII? */ + c = oem; + + } else { /* Extended char */ + if (cp == FF_CODE_PAGE) { /* Is it a valid code page? */ + if (oem < 0x100) c = p[oem - 0x80]; + } + } + + return c; +} + +#endif + + + +/*------------------------------------------------------------------------*/ +/* OEM <==> Unicode conversions for static code page configuration */ +/* DBCS fixed code page */ +/*------------------------------------------------------------------------*/ + +#if FF_CODE_PAGE >= 900 +WCHAR ff_uni2oem ( /* Returns OEM code character, zero on error */ + DWORD uni, /* UTF-16 encoded character to be converted */ + WORD cp /* Code page for the conversion */ +) +{ + const WCHAR *p; + WCHAR c = 0, uc; + UINT i = 0, n, li, hi; + + + if (uni < 0x80) { /* ASCII? */ + c = (WCHAR)uni; + + } else { /* Non-ASCII */ + if (uni < 0x10000 && cp == FF_CODE_PAGE) { /* Is it in BMP and valid code page? */ + uc = (WCHAR)uni; + p = CVTBL(uni2oem, FF_CODE_PAGE); + hi = sizeof CVTBL(uni2oem, FF_CODE_PAGE) / 4 - 1; + li = 0; + for (n = 16; n; n--) { + i = li + (hi - li) / 2; + if (uc == p[i * 2]) break; + if (uc > p[i * 2]) { + li = i; + } else { + hi = i; + } + } + if (n != 0) c = p[i * 2 + 1]; + } + } + + return c; +} + + +WCHAR ff_oem2uni ( /* Returns Unicode character, zero on error */ + WCHAR oem, /* OEM code to be converted */ + WORD cp /* Code page for the conversion */ +) +{ + const WCHAR *p; + WCHAR c = 0; + UINT i = 0, n, li, hi; + + + if (oem < 0x80) { /* ASCII? */ + c = oem; + + } else { /* Extended char */ + if (cp == FF_CODE_PAGE) { /* Is it valid code page? */ + p = CVTBL(oem2uni, FF_CODE_PAGE); + hi = sizeof CVTBL(oem2uni, FF_CODE_PAGE) / 4 - 1; + li = 0; + for (n = 16; n; n--) { + i = li + (hi - li) / 2; + if (oem == p[i * 2]) break; + if (oem > p[i * 2]) { + li = i; + } else { + hi = i; + } + } + if (n != 0) c = p[i * 2 + 1]; + } + } + + return c; +} +#endif + + + +/*------------------------------------------------------------------------*/ +/* OEM <==> Unicode conversions for dynamic code page configuration */ +/*------------------------------------------------------------------------*/ + +#if FF_CODE_PAGE == 0 + +static const WORD cp_code[] = { 437, 720, 737, 771, 775, 850, 852, 855, 857, 860, 861, 862, 863, 864, 865, 866, 869, 0}; +static const WCHAR* const cp_table[] = {uc437, uc720, uc737, uc771, uc775, uc850, uc852, uc855, uc857, uc860, uc861, uc862, uc863, uc864, uc865, uc866, uc869, 0}; + + +WCHAR ff_uni2oem ( /* Returns OEM code character, zero on error */ + DWORD uni, /* UTF-16 encoded character to be converted */ + WORD cp /* Code page for the conversion */ +) +{ + const WCHAR *p; + WCHAR c = 0, uc; + UINT i, n, li, hi; + + + if (uni < 0x80) { /* ASCII? */ + c = (WCHAR)uni; + + } else { /* Non-ASCII */ + if (uni < 0x10000) { /* Is it in BMP? */ + uc = (WCHAR)uni; + p = 0; + if (cp < 900) { /* SBCS */ + for (i = 0; cp_code[i] != 0 && cp_code[i] != cp; i++) ; /* Get conversion table */ + p = cp_table[i]; + if (p) { /* Is it valid code page ? */ + for (c = 0; c < 0x80 && uc != p[c]; c++) ; /* Find OEM code in the table */ + c = (c + 0x80) & 0xFF; + } + } else { /* DBCS */ + switch (cp) { /* Get conversion table */ + case 932 : p = uni2oem932; hi = sizeof uni2oem932 / 4 - 1; break; + case 936 : p = uni2oem936; hi = sizeof uni2oem936 / 4 - 1; break; + case 949 : p = uni2oem949; hi = sizeof uni2oem949 / 4 - 1; break; + case 950 : p = uni2oem950; hi = sizeof uni2oem950 / 4 - 1; break; + } + if (p) { /* Is it valid code page? */ + li = 0; + for (n = 16; n; n--) { /* Find OEM code */ + i = li + (hi - li) / 2; + if (uc == p[i * 2]) break; + if (uc > p[i * 2]) { + li = i; + } else { + hi = i; + } + } + if (n != 0) c = p[i * 2 + 1]; + } + } + } + } + + return c; +} + + +WCHAR ff_oem2uni ( /* Returns Unicode character, zero on error */ + WCHAR oem, /* OEM code to be converted (DBC if >=0x100) */ + WORD cp /* Code page for the conversion */ +) +{ + const WCHAR *p; + WCHAR c = 0; + UINT i, n, li, hi; + + + if (oem < 0x80) { /* ASCII? */ + c = oem; + + } else { /* Extended char */ + p = 0; + if (cp < 900) { /* SBCS */ + for (i = 0; cp_code[i] != 0 && cp_code[i] != cp; i++) ; /* Get table */ + p = cp_table[i]; + if (p) { /* Is it a valid CP ? */ + if (oem < 0x100) c = p[oem - 0x80]; + } + } else { /* DBCS */ + switch (cp) { + case 932 : p = oem2uni932; hi = sizeof oem2uni932 / 4 - 1; break; + case 936 : p = oem2uni936; hi = sizeof oem2uni936 / 4 - 1; break; + case 949 : p = oem2uni949; hi = sizeof oem2uni949 / 4 - 1; break; + case 950 : p = oem2uni950; hi = sizeof oem2uni950 / 4 - 1; break; + } + if (p) { + li = 0; + for (n = 16; n; n--) { + i = li + (hi - li) / 2; + if (oem == p[i * 2]) break; + if (oem > p[i * 2]) { + li = i; + } else { + hi = i; + } + } + if (n != 0) c = p[i * 2 + 1]; + } + } + } + + return c; +} +#endif + + + +/*------------------------------------------------------------------------*/ +/* Unicode up-case conversion */ +/*------------------------------------------------------------------------*/ + +DWORD ff_wtoupper ( /* Returns up-converted code point */ + DWORD uni /* Unicode code point to be up-converted */ +) +{ + const WORD *p; + WORD uc, bc, nc, cmd; + static const WORD cvt1[] = { /* Compressed up conversion table for U+0000 - U+0FFF */ + /* Basic Latin */ + 0x0061,0x031A, + /* Latin-1 Supplement */ + 0x00E0,0x0317, + 0x00F8,0x0307, + 0x00FF,0x0001,0x0178, + /* Latin Extended-A */ + 0x0100,0x0130, + 0x0132,0x0106, + 0x0139,0x0110, + 0x014A,0x012E, + 0x0179,0x0106, + /* Latin Extended-B */ + 0x0180,0x004D,0x0243,0x0181,0x0182,0x0182,0x0184,0x0184,0x0186,0x0187,0x0187,0x0189,0x018A,0x018B,0x018B,0x018D,0x018E,0x018F,0x0190,0x0191,0x0191,0x0193,0x0194,0x01F6,0x0196,0x0197,0x0198,0x0198,0x023D,0x019B,0x019C,0x019D,0x0220,0x019F,0x01A0,0x01A0,0x01A2,0x01A2,0x01A4,0x01A4,0x01A6,0x01A7,0x01A7,0x01A9,0x01AA,0x01AB,0x01AC,0x01AC,0x01AE,0x01AF,0x01AF,0x01B1,0x01B2,0x01B3,0x01B3,0x01B5,0x01B5,0x01B7,0x01B8,0x01B8,0x01BA,0x01BB,0x01BC,0x01BC,0x01BE,0x01F7,0x01C0,0x01C1,0x01C2,0x01C3,0x01C4,0x01C5,0x01C4,0x01C7,0x01C8,0x01C7,0x01CA,0x01CB,0x01CA, + 0x01CD,0x0110, + 0x01DD,0x0001,0x018E, + 0x01DE,0x0112, + 0x01F3,0x0003,0x01F1,0x01F4,0x01F4, + 0x01F8,0x0128, + 0x0222,0x0112, + 0x023A,0x0009,0x2C65,0x023B,0x023B,0x023D,0x2C66,0x023F,0x0240,0x0241,0x0241, + 0x0246,0x010A, + /* IPA Extensions */ + 0x0253,0x0040,0x0181,0x0186,0x0255,0x0189,0x018A,0x0258,0x018F,0x025A,0x0190,0x025C,0x025D,0x025E,0x025F,0x0193,0x0261,0x0262,0x0194,0x0264,0x0265,0x0266,0x0267,0x0197,0x0196,0x026A,0x2C62,0x026C,0x026D,0x026E,0x019C,0x0270,0x0271,0x019D,0x0273,0x0274,0x019F,0x0276,0x0277,0x0278,0x0279,0x027A,0x027B,0x027C,0x2C64,0x027E,0x027F,0x01A6,0x0281,0x0282,0x01A9,0x0284,0x0285,0x0286,0x0287,0x01AE,0x0244,0x01B1,0x01B2,0x0245,0x028D,0x028E,0x028F,0x0290,0x0291,0x01B7, + /* Greek, Coptic */ + 0x037B,0x0003,0x03FD,0x03FE,0x03FF, + 0x03AC,0x0004,0x0386,0x0388,0x0389,0x038A, + 0x03B1,0x0311, + 0x03C2,0x0002,0x03A3,0x03A3, + 0x03C4,0x0308, + 0x03CC,0x0003,0x038C,0x038E,0x038F, + 0x03D8,0x0118, + 0x03F2,0x000A,0x03F9,0x03F3,0x03F4,0x03F5,0x03F6,0x03F7,0x03F7,0x03F9,0x03FA,0x03FA, + /* Cyrillic */ + 0x0430,0x0320, + 0x0450,0x0710, + 0x0460,0x0122, + 0x048A,0x0136, + 0x04C1,0x010E, + 0x04CF,0x0001,0x04C0, + 0x04D0,0x0144, + /* Armenian */ + 0x0561,0x0426, + + 0x0000 /* EOT */ + }; + static const WORD cvt2[] = { /* Compressed up conversion table for U+1000 - U+FFFF */ + /* Phonetic Extensions */ + 0x1D7D,0x0001,0x2C63, + /* Latin Extended Additional */ + 0x1E00,0x0196, + 0x1EA0,0x015A, + /* Greek Extended */ + 0x1F00,0x0608, + 0x1F10,0x0606, + 0x1F20,0x0608, + 0x1F30,0x0608, + 0x1F40,0x0606, + 0x1F51,0x0007,0x1F59,0x1F52,0x1F5B,0x1F54,0x1F5D,0x1F56,0x1F5F, + 0x1F60,0x0608, + 0x1F70,0x000E,0x1FBA,0x1FBB,0x1FC8,0x1FC9,0x1FCA,0x1FCB,0x1FDA,0x1FDB,0x1FF8,0x1FF9,0x1FEA,0x1FEB,0x1FFA,0x1FFB, + 0x1F80,0x0608, + 0x1F90,0x0608, + 0x1FA0,0x0608, + 0x1FB0,0x0004,0x1FB8,0x1FB9,0x1FB2,0x1FBC, + 0x1FCC,0x0001,0x1FC3, + 0x1FD0,0x0602, + 0x1FE0,0x0602, + 0x1FE5,0x0001,0x1FEC, + 0x1FF3,0x0001,0x1FFC, + /* Letterlike Symbols */ + 0x214E,0x0001,0x2132, + /* Number forms */ + 0x2170,0x0210, + 0x2184,0x0001,0x2183, + /* Enclosed Alphanumerics */ + 0x24D0,0x051A, + 0x2C30,0x042F, + /* Latin Extended-C */ + 0x2C60,0x0102, + 0x2C67,0x0106, 0x2C75,0x0102, + /* Coptic */ + 0x2C80,0x0164, + /* Georgian Supplement */ + 0x2D00,0x0826, + /* Full-width */ + 0xFF41,0x031A, + + 0x0000 /* EOT */ + }; + + + if (uni < 0x10000) { /* Is it in BMP? */ + uc = (WORD)uni; + p = uc < 0x1000 ? cvt1 : cvt2; + for (;;) { + bc = *p++; /* Get the block base */ + if (bc == 0 || uc < bc) break; /* Not matched? */ + nc = *p++; cmd = nc >> 8; nc &= 0xFF; /* Get processing command and block size */ + if (uc < bc + nc) { /* In the block? */ + switch (cmd) { + case 0: uc = p[uc - bc]; break; /* Table conversion */ + case 1: uc -= (uc - bc) & 1; break; /* Case pairs */ + case 2: uc -= 16; break; /* Shift -16 */ + case 3: uc -= 32; break; /* Shift -32 */ + case 4: uc -= 48; break; /* Shift -48 */ + case 5: uc -= 26; break; /* Shift -26 */ + case 6: uc += 8; break; /* Shift +8 */ + case 7: uc -= 80; break; /* Shift -80 */ + case 8: uc -= 0x1C60; break; /* Shift -0x1C60 */ + } + break; + } + if (cmd == 0) p += nc; /* Skip table if needed */ + } + uni = uc; + } + + return uni; +} + + +#endif /* #if FF_USE_LFN */ diff --git a/Marlin/lib/fat_fs/src/integer.h b/Marlin/lib/fat_fs/src/integer.h new file mode 100644 index 0000000000..2741b70095 --- /dev/null +++ b/Marlin/lib/fat_fs/src/integer.h @@ -0,0 +1,46 @@ +/*-------------------------------------------*/ +/* Integer type definitions for FatFs module */ +/*-------------------------------------------*/ + +#ifndef _INTEGER + +#if 0 +#include +#else + +#include "usb_conf.h" + +/* These types must be 16-bit, 32-bit or larger integer */ +typedef int INT; +typedef unsigned int UINT; + +/* These types must be 8-bit integer */ +typedef signed char CHAR; +typedef unsigned char UCHAR; +typedef unsigned char BYTE; + +/* These types must be 16-bit integer */ +typedef short SHORT; +typedef unsigned short USHORT; +typedef unsigned short WORD; +typedef unsigned short WCHAR; + +/* These types must be 32-bit integer */ +typedef long LONG; +typedef unsigned long ULONG; +typedef unsigned long DWORD; + +/* Boolean type */ +// typedef enum { FALSE = 0, TRUE } BOOL; +#include +//typedef bool BOOL; +#ifndef FALSE +#define FALSE false +#define TRUE true +#endif + + +#endif + +#define _INTEGER +#endif diff --git a/Marlin/lib/fat_fs/src/option/ccsbcs.c b/Marlin/lib/fat_fs/src/option/ccsbcs.c new file mode 100644 index 0000000000..a2da326142 --- /dev/null +++ b/Marlin/lib/fat_fs/src/option/ccsbcs.c @@ -0,0 +1,541 @@ +/*------------------------------------------------------------------------*/ +/* Unicode - Local code bidirectional converter (C)ChaN, 2009 */ +/* (SBCS code pages) */ +/*------------------------------------------------------------------------*/ +/* 437 U.S. (OEM) +/ 720 Arabic (OEM) +/ 1256 Arabic (Windows) +/ 737 Greek (OEM) +/ 1253 Greek (Windows) +/ 1250 Central Europe (Windows) +/ 775 Baltic (OEM) +/ 1257 Baltic (Windows) +/ 850 Multilingual Latin 1 (OEM) +/ 852 Latin 2 (OEM) +/ 1252 Latin 1 (Windows) +/ 855 Cyrillic (OEM) +/ 1251 Cyrillic (Windows) +/ 866 Russian (OEM) +/ 857 Turkish (OEM) +/ 1254 Turkish (Windows) +/ 858 Multilingual Latin 1 + Euro (OEM) +/ 862 Hebrew (OEM) +/ 1255 Hebrew (Windows) +/ 874 Thai (OEM, Windows) +/ 1258 Vietnam (OEM, Windows) +*/ + +//#include "../ff.h" //RPi +#include "ff.h" //RPi + + +#if _CODE_PAGE == 437 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP437(0x80-0xFF) to Unicode conversion table */ + 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E5, 0x00E7, + 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x00EC, 0x00C4, 0x00C5, + 0x00C9, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00F2, 0x00FB, 0x00F9, + 0x00FF, 0x00D6, 0x00DC, 0x00A2, 0x00A3, 0x00A5, 0x20A7, 0x0192, + 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, + 0x00BF, 0x2310, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, + 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, + 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, + 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, + 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, + 0x03B1, 0x00DF, 0x0393, 0x03C0, 0x03A3, 0x03C3, 0x00B5, 0x03C4, + 0x03A6, 0x0398, 0x03A9, 0x03B4, 0x221E, 0x03C6, 0x03B5, 0x2229, + 0x2261, 0x00B1, 0x2265, 0x2264, 0x2320, 0x2321, 0x00F7, 0x2248, + 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 +}; + +#elif _CODE_PAGE == 720 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP720(0x80-0xFF) to Unicode conversion table */ + 0x0000, 0x0000, 0x00E9, 0x00E2, 0x0000, 0x00E0, 0x0000, 0x00E7, + 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x0000, 0x0000, 0x0000, + 0x0000, 0x0651, 0x0652, 0x00F4, 0x00A4, 0x0640, 0x00FB, 0x00F9, + 0x0621, 0x0622, 0x0623, 0x0624, 0x00A3, 0x0625, 0x0626, 0x0627, + 0x0628, 0x0629, 0x062A, 0x062B, 0x062C, 0x062D, 0x062E, 0x062F, + 0x0630, 0x0631, 0x0632, 0x0633, 0x0634, 0x0635, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, + 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, + 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, + 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, + 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, + 0x0636, 0x0637, 0x0638, 0x0639, 0x063A, 0x0641, 0x00B5, 0x0642, + 0x0643, 0x0644, 0x0645, 0x0646, 0x0647, 0x0648, 0x0649, 0x064A, + 0x2261, 0x064B, 0x064C, 0x064D, 0x064E, 0x064F, 0xO650, 0x2248, + 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 +}; + +#elif _CODE_PAGE == 737 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP737(0x80-0xFF) to Unicode conversion table */ + 0x0391, 0x0392, 0x0393, 0x0394, 0x0395, 0x0396, 0x0397, 0x0398, + 0x0399, 0x039A, 0x039B, 0x039C, 0x039D, 0x039E, 0x039F, 0x03A0, + 0x03A1, 0x03A3, 0x03A4, 0x03A5, 0x03A6, 0x03A7, 0x03A8, 0x03A9, + 0x03B1, 0x03B2, 0x03B3, 0x03B4, 0x03B5, 0x03B6, 0x03B7, 0x03B8, + 0x03B9, 0x03BA, 0x03BB, 0x03BC, 0x03BD, 0x03BE, 0x03BF, 0x03C0, + 0x03C1, 0x03C3, 0x03C2, 0x03C4, 0x03C5, 0x03C6, 0x03C7, 0x03C8, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, + 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, + 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, + 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, + 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, + 0x03C9, 0x03AC, 0x03AD, 0x03AE, 0x03CA, 0x03AF, 0x03CC, 0x03CD, + 0x03CB, 0x03CE, 0x0386, 0x0388, 0x0389, 0x038A, 0x038C, 0x038E, + 0x038F, 0x00B1, 0x2265, 0x2264, 0x03AA, 0x03AB, 0x00F7, 0x2248, + 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 +}; + +#elif _CODE_PAGE == 775 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP775(0x80-0xFF) to Unicode conversion table */ + 0x0106, 0x00FC, 0x00E9, 0x0101, 0x00E4, 0x0123, 0x00E5, 0x0107, + 0x0142, 0x0113, 0x0156, 0x0157, 0x012B, 0x0179, 0x00C4, 0x00C5, + 0x00C9, 0x00E6, 0x00C6, 0x014D, 0x00F6, 0x0122, 0x00A2, 0x015A, + 0x015B, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x00D7, 0x00A4, + 0x0100, 0x012A, 0x00F3, 0x017B, 0x017C, 0x017A, 0x201D, 0x00A6, + 0x00A9, 0x00AE, 0x00AC, 0x00BD, 0x00BC, 0x0141, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x0104, 0x010C, 0x0118, + 0x0116, 0x2563, 0x2551, 0x2557, 0x255D, 0x012E, 0x0160, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x0172, 0x016A, + 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x017D, + 0x0105, 0x010D, 0x0119, 0x0117, 0x012F, 0x0161, 0x0173, 0x016B, + 0x017E, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, + 0x00D3, 0x00DF, 0x014C, 0x0143, 0x00F5, 0x00D5, 0x00B5, 0x0144, + 0x0136, 0x0137, 0x013B, 0x013C, 0x0146, 0x0112, 0x0145, 0x2019, + 0x00AD, 0x00B1, 0x201C, 0x00BE, 0x00B6, 0x00A7, 0x00F7, 0x201E, + 0x00B0, 0x2219, 0x00B7, 0x00B9, 0x00B3, 0x00B2, 0x25A0, 0x00A0 +}; + +#elif _CODE_PAGE == 850 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP850(0x80-0xFF) to Unicode conversion table */ + 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E5, 0x00E7, + 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x00EC, 0x00C4, 0x00C5, + 0x00C9, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00F2, 0x00FB, 0x00F9, + 0x00FF, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x00D7, 0x0192, + 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, + 0x00BF, 0x00AE, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x00C1, 0x00C2, 0x00C0, + 0x00A9, 0x2563, 0x2551, 0x2557, 0x255D, 0x00A2, 0x00A5, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x00E3, 0x00C3, + 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, + 0x00F0, 0x00D0, 0x00CA, 0x00CB, 0x00C8, 0x0131, 0x00CD, 0x00CE, + 0x00CF, 0x2518, 0x250C, 0x2588, 0x2584, 0x00A6, 0x00CC, 0x2580, + 0x00D3, 0x00DF, 0x00D4, 0x00D2, 0x00F5, 0x00D5, 0x00B5, 0x00FE, + 0x00DE, 0x00DA, 0x00DB, 0x00D9, 0x00FD, 0x00DD, 0x00AF, 0x00B4, + 0x00AD, 0x00B1, 0x2017, 0x00BE, 0x00B6, 0x00A7, 0x00F7, 0x00B8, + 0x00B0, 0x00A8, 0x00B7, 0x00B9, 0x00B3, 0x00B2, 0x25A0, 0x00A0 +}; + +#elif _CODE_PAGE == 852 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP852(0x80-0xFF) to Unicode conversion table */ + 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x016F, 0x0107, 0x00E7, + 0x0142, 0x00EB, 0x0150, 0x0151, 0x00EE, 0x0179, 0x00C4, 0x0106, + 0x00C9, 0x0139, 0x013A, 0x00F4, 0x00F6, 0x013D, 0x013E, 0x015A, + 0x015B, 0x00D6, 0x00DC, 0x0164, 0x0165, 0x0141, 0x00D7, 0x010D, + 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x0104, 0x0105, 0x017D, 0x017E, + 0x0118, 0x0119, 0x00AC, 0x017A, 0x010C, 0x015F, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x00C1, 0x00C2, 0x011A, + 0x015E, 0x2563, 0x2551, 0x2557, 0x255D, 0x017B, 0x017C, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x0102, 0x0103, + 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, + 0x0111, 0x0110, 0x010E, 0x00CB, 0x010F, 0x0147, 0x00CD, 0x00CE, + 0x011B, 0x2518, 0x250C, 0x2588, 0x2584, 0x0162, 0x016E, 0x2580, + 0x00D3, 0x00DF, 0x00D4, 0x0143, 0x0144, 0x0148, 0x0160, 0x0161, + 0x0154, 0x00DA, 0x0155, 0x0170, 0x00FD, 0x00DD, 0x0163, 0x00B4, + 0x00AD, 0x02DD, 0x02DB, 0x02C7, 0x02D8, 0x00A7, 0x00F7, 0x00B8, + 0x00B0, 0x00A8, 0x02D9, 0x0171, 0x0158, 0x0159, 0x25A0, 0x00A0 +}; + +#elif _CODE_PAGE == 855 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP855(0x80-0xFF) to Unicode conversion table */ + 0x0452, 0x0402, 0x0453, 0x0403, 0x0451, 0x0401, 0x0454, 0x0404, + 0x0455, 0x0405, 0x0456, 0x0406, 0x0457, 0x0407, 0x0458, 0x0408, + 0x0459, 0x0409, 0x045A, 0x040A, 0x045B, 0x040B, 0x045C, 0x040C, + 0x045E, 0x040E, 0x045F, 0x040F, 0x044E, 0x042E, 0x044A, 0x042A, + 0x0430, 0x0410, 0x0431, 0x0411, 0x0446, 0x0426, 0x0434, 0x0414, + 0x0435, 0x0415, 0x0444, 0x0424, 0x0433, 0x0413, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x0445, 0x0425, 0x0438, + 0x0418, 0x2563, 0x2551, 0x2557, 0x255D, 0x0439, 0x0419, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x043A, 0x041A, + 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, + 0x043B, 0x041B, 0x043C, 0x041C, 0x043D, 0x041D, 0x043E, 0x041E, + 0x043F, 0x2518, 0x250C, 0x2588, 0x2584, 0x041F, 0x044F, 0x2580, + 0x042F, 0x0440, 0x0420, 0x0441, 0x0421, 0x0442, 0x0422, 0x0443, + 0x0423, 0x0436, 0x0416, 0x0432, 0x0412, 0x044C, 0x042C, 0x2116, + 0x00AD, 0x044B, 0x042B, 0x0437, 0x0417, 0x0448, 0x0428, 0x044D, + 0x042D, 0x0449, 0x0429, 0x0447, 0x0427, 0x00A7, 0x25A0, 0x00A0 +}; + +#elif _CODE_PAGE == 857 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP857(0x80-0xFF) to Unicode conversion table */ + 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E5, 0x00E7, + 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x0131, 0x00C4, 0x00C5, + 0x00C9, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00F2, 0x00FB, 0x00F9, + 0x0130, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x015E, 0x015F, + 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x011E, 0x011F, + 0x00BF, 0x00AE, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x00C1, 0x00C2, 0x00C0, + 0x00A9, 0x2563, 0x2551, 0x2557, 0x255D, 0x00A2, 0x00A5, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x00E3, 0x00C3, + 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, + 0x00BA, 0x00AA, 0x00CA, 0x00CB, 0x00C8, 0x0000, 0x00CD, 0x00CE, + 0x00CF, 0x2518, 0x250C, 0x2588, 0x2584, 0x00A6, 0x00CC, 0x2580, + 0x00D3, 0x00DF, 0x00D4, 0x00D2, 0x00F5, 0x00D5, 0x00B5, 0x0000, + 0x00D7, 0x00DA, 0x00DB, 0x00D9, 0x00EC, 0x00FF, 0x00AF, 0x00B4, + 0x00AD, 0x00B1, 0x0000, 0x00BE, 0x00B6, 0x00A7, 0x00F7, 0x00B8, + 0x00B0, 0x00A8, 0x00B7, 0x00B9, 0x00B3, 0x00B2, 0x25A0, 0x00A0 +}; + +#elif _CODE_PAGE == 858 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP858(0x80-0xFF) to Unicode conversion table */ + 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E5, 0x00E7, + 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x00EC, 0x00C4, 0x00C5, + 0x00C9, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00F2, 0x00FB, 0x00F9, + 0x00FF, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x00D7, 0x0192, + 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, + 0x00BF, 0x00AE, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x00C1, 0x00C2, 0x00C0, + 0x00A9, 0x2563, 0x2551, 0x2557, 0x2550, 0x00A2, 0x00A5, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x00E3, 0x00C3, + 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, + 0x00F0, 0x00D0, 0x00CA, 0x00CB, 0x00C8, 0x20AC, 0x00CD, 0x00CE, + 0x00CF, 0x2518, 0x250C, 0x2588, 0x2584, 0x00C6, 0x00CC, 0x2580, + 0x00D3, 0x00DF, 0x00D4, 0x00D2, 0x00F5, 0x00D5, 0x00B5, 0x00FE, + 0x00DE, 0x00DA, 0x00DB, 0x00D9, 0x00FD, 0x00DD, 0x00AF, 0x00B4, + 0x00AD, 0x00B1, 0x2017, 0x00BE, 0x00B6, 0x00A7, 0x00F7, 0x00B8, + 0x00B0, 0x00A8, 0x00B7, 0x00B9, 0x00B3, 0x00B2, 0x25A0, 0x00A0 +}; + +#elif _CODE_PAGE == 862 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP862(0x80-0xFF) to Unicode conversion table */ + 0x05D0, 0x05D1, 0x05D2, 0x05D3, 0x05D4, 0x05D5, 0x05D6, 0x05D7, + 0x05D8, 0x05D9, 0x05DA, 0x05DB, 0x05DC, 0x05DD, 0x05DE, 0x05DF, + 0x05E0, 0x05E1, 0x05E2, 0x05E3, 0x05E4, 0x05E5, 0x05E6, 0x05E7, + 0x05E8, 0x05E9, 0x05EA, 0x00A2, 0x00A3, 0x00A5, 0x20A7, 0x0192, + 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, + 0x00BF, 0x2310, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, + 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, + 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, + 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, + 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, + 0x03B1, 0x00DF, 0x0393, 0x03C0, 0x03A3, 0x03C3, 0x00B5, 0x03C4, + 0x03A6, 0x0398, 0x03A9, 0x03B4, 0x221E, 0x03C6, 0x03B5, 0x2229, + 0x2261, 0x00B1, 0x2265, 0x2264, 0x2320, 0x2321, 0x00F7, 0x2248, + 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 +}; + +#elif _CODE_PAGE == 866 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP866(0x80-0xFF) to Unicode conversion table */ + 0x0410, 0x0411, 0x0412, 0x0413, 0x0414, 0x0415, 0x0416, 0x0417, + 0x0418, 0x0419, 0x041A, 0x041B, 0x041C, 0x041D, 0x041E, 0x041F, + 0x0420, 0x0421, 0x0422, 0x0423, 0x0424, 0x0425, 0x0426, 0x0427, + 0x0428, 0x0429, 0x042A, 0x042B, 0x042C, 0x042D, 0x042E, 0x042F, + 0x0430, 0x0431, 0x0432, 0x0433, 0x0434, 0x0435, 0x0436, 0x0437, + 0x0438, 0x0439, 0x043A, 0x043B, 0x043C, 0x043D, 0x043E, 0x043F, + 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, + 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, + 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, + 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, + 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, + 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, + 0x0440, 0x0441, 0x0442, 0x0443, 0x0444, 0x0445, 0x0446, 0x0447, + 0x0448, 0x0449, 0x044A, 0x044B, 0x044C, 0x044D, 0x044E, 0x044F, + 0x0401, 0x0451, 0x0404, 0x0454, 0x0407, 0x0457, 0x040E, 0x045E, + 0x00B0, 0x2219, 0x00B7, 0x221A, 0x2116, 0x00A4, 0x25A0, 0x00A0 +}; + +#elif _CODE_PAGE == 874 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP874(0x80-0xFF) to Unicode conversion table */ + 0x20AC, 0x0000, 0x0000, 0x0000, 0x0000, 0x2026, 0x0000, 0x0000, + 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, + 0x0000, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, + 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, + 0x00A0, 0x0E01, 0x0E02, 0x0E03, 0x0E04, 0x0E05, 0x0E06, 0x0E07, + 0x0E08, 0x0E09, 0x0E0A, 0x0E0B, 0x0E0C, 0x0E0D, 0x0E0E, 0x0E0F, + 0x0E10, 0x0E11, 0x0E12, 0x0E13, 0x0E14, 0x0E15, 0x0E16, 0x0E17, + 0x0E18, 0x0E19, 0x0E1A, 0x0E1B, 0x0E1C, 0x0E1D, 0x0E1E, 0x0E1F, + 0x0E20, 0x0E21, 0x0E22, 0x0E23, 0x0E24, 0x0E25, 0x0E26, 0x0E27, + 0x0E28, 0x0E29, 0x0E2A, 0x0E2B, 0x0E2C, 0x0E2D, 0x0E2E, 0x0E2F, + 0x0E30, 0x0E31, 0x0E32, 0x0E33, 0x0E34, 0x0E35, 0x0E36, 0x0E37, + 0x0E38, 0x0E39, 0x0E3A, 0x0000, 0x0000, 0x0000, 0x0000, 0x0E3F, + 0x0E40, 0x0E41, 0x0E42, 0x0E43, 0x0E44, 0x0E45, 0x0E46, 0x0E47, + 0x0E48, 0x0E49, 0x0E4A, 0x0E4B, 0x0E4C, 0x0E4D, 0x0E4E, 0x0E4F, + 0x0E50, 0x0E51, 0x0E52, 0x0E53, 0x0E54, 0x0E55, 0x0E56, 0x0E57, + 0x0E58, 0x0E59, 0x0E5A, 0x0E5B, 0x0000, 0x0000, 0x0000, 0x0000 +}; + +#elif _CODE_PAGE == 1250 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP1250(0x80-0xFF) to Unicode conversion table */ + 0x20AC, 0x0000, 0x201A, 0x0000, 0x201E, 0x2026, 0x2020, 0x2021, + 0x0000, 0x2030, 0x0160, 0x2039, 0x015A, 0x0164, 0x017D, 0x0179, + 0x0000, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, + 0x0000, 0x2122, 0x0161, 0x203A, 0x015B, 0x0165, 0x017E, 0x017A, + 0x00A0, 0x02C7, 0x02D8, 0x0141, 0x00A4, 0x0104, 0x00A6, 0x00A7, + 0x00A8, 0x00A9, 0x015E, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x017B, + 0x00B0, 0x00B1, 0x02DB, 0x0142, 0x00B4, 0x00B5, 0x00B6, 0x00B7, + 0x00B8, 0x0105, 0x015F, 0x00BB, 0x013D, 0x02DD, 0x013E, 0x017C, + 0x0154, 0x00C1, 0x00C2, 0x0102, 0x00C4, 0x0139, 0x0106, 0x00C7, + 0x010C, 0x00C9, 0x0118, 0x00CB, 0x011A, 0x00CD, 0x00CE, 0x010E, + 0x0110, 0x0143, 0x0147, 0x00D3, 0x00D4, 0x0150, 0x00D6, 0x00D7, + 0x0158, 0x016E, 0x00DA, 0x0170, 0x00DC, 0x00DD, 0x0162, 0x00DF, + 0x0155, 0x00E1, 0x00E2, 0x0103, 0x00E4, 0x013A, 0x0107, 0x00E7, + 0x010D, 0x00E9, 0x0119, 0x00EB, 0x011B, 0x00ED, 0x00EE, 0x010F, + 0x0111, 0x0144, 0x0148, 0x00F3, 0x00F4, 0x0151, 0x00F6, 0x00F7, + 0x0159, 0x016F, 0x00FA, 0x0171, 0x00FC, 0x00FD, 0x0163, 0x02D9 +}; + +#elif _CODE_PAGE == 1251 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP1251(0x80-0xFF) to Unicode conversion table */ + 0x0402, 0x0403, 0x201A, 0x0453, 0x201E, 0x2026, 0x2020, 0x2021, + 0x20AC, 0x2030, 0x0409, 0x2039, 0x040A, 0x040C, 0x040B, 0x040F, + 0x0452, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, + 0x0000, 0x2111, 0x0459, 0x203A, 0x045A, 0x045C, 0x045B, 0x045F, + 0x00A0, 0x040E, 0x045E, 0x0408, 0x00A4, 0x0490, 0x00A6, 0x00A7, + 0x0401, 0x00A9, 0x0404, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x0407, + 0x00B0, 0x00B1, 0x0406, 0x0456, 0x0491, 0x00B5, 0x00B6, 0x00B7, + 0x0451, 0x2116, 0x0454, 0x00BB, 0x0458, 0x0405, 0x0455, 0x0457, + 0x0410, 0x0411, 0x0412, 0x0413, 0x0414, 0x0415, 0x0416, 0x0417, + 0x0418, 0x0419, 0x041A, 0x041B, 0x041C, 0x041D, 0x041E, 0x041F, + 0x0420, 0x0421, 0x0422, 0x0423, 0x0424, 0x0425, 0x0426, 0x0427, + 0x0428, 0x0429, 0x042A, 0x042D, 0x042C, 0x042D, 0x042E, 0x042F, + 0x0430, 0x0431, 0x0432, 0x0433, 0x0434, 0x0435, 0x0436, 0x0437, + 0x0438, 0x0439, 0x043A, 0x043B, 0x043C, 0x043D, 0x043E, 0x043F, + 0x0440, 0x0441, 0x0442, 0x0443, 0x0444, 0x0445, 0x0446, 0x0447, + 0x0448, 0x0449, 0x044A, 0x044B, 0x044C, 0x044D, 0x044E, 0x044F +}; + +#elif _CODE_PAGE == 1252 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP1252(0x80-0xFF) to Unicode conversion table */ + 0x20AC, 0x0000, 0x201A, 0x0192, 0x201E, 0x2026, 0x2020, 0x2021, + 0x02C6, 0x2030, 0x0160, 0x2039, 0x0152, 0x0000, 0x017D, 0x0000, + 0x0000, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, + 0x02DC, 0x2122, 0x0161, 0x203A, 0x0153, 0x0000, 0x017E, 0x0178, + 0x00A0, 0x00A1, 0x00A2, 0x00A3, 0x00A4, 0x00A5, 0x00A6, 0x00A7, + 0x00A8, 0x00A9, 0x00AA, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x00AF, + 0x00B0, 0x00B1, 0x00B2, 0x00B3, 0x00B4, 0x00B5, 0x00B6, 0x00B7, + 0x00B8, 0x00B9, 0x00BA, 0x00BB, 0x00BC, 0x00BD, 0x00BE, 0x00BF, + 0x00C0, 0x00C1, 0x00C2, 0x00C3, 0x00C4, 0x00C5, 0x00C6, 0x00C7, + 0x00C8, 0x00C9, 0x00CA, 0x00CB, 0x00CC, 0x00CD, 0x00CE, 0x00CF, + 0x00D0, 0x00D1, 0x00D2, 0x00D3, 0x00D4, 0x00D5, 0x00D6, 0x00D7, + 0x00D8, 0x00D9, 0x00DA, 0x00BD, 0x00DC, 0x00DD, 0x00DE, 0x00DF, + 0x00E0, 0x00E1, 0x00E2, 0x00E3, 0x00E4, 0x00E5, 0x00E6, 0x00E7, + 0x00E8, 0x00E9, 0x00EA, 0x00EB, 0x00EC, 0x00ED, 0x00EE, 0x00EF, + 0x00F0, 0x00F1, 0x00F2, 0x00F3, 0x00F4, 0x00F5, 0x00F6, 0x00F7, + 0x00F8, 0x00F9, 0x00FA, 0x00FB, 0x00FC, 0x00FD, 0x00FE, 0x00FF +}; + +#elif _CODE_PAGE == 1253 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP1253(0x80-0xFF) to Unicode conversion table */ + 0x20AC, 0x0000, 0x201A, 0x0192, 0x201E, 0x2026, 0x2020, 0x2021, + 0x0000, 0x2030, 0x0000, 0x2039, 0x000C, 0x0000, 0x0000, 0x0000, + 0x0000, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, + 0x0000, 0x2122, 0x0000, 0x203A, 0x0000, 0x0000, 0x0000, 0x0000, + 0x00A0, 0x0385, 0x0386, 0x00A3, 0x00A4, 0x00A5, 0x00A6, 0x00A7, + 0x00A8, 0x00A9, 0x0000, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x2015, + 0x00B0, 0x00B1, 0x00B2, 0x00B3, 0x0384, 0x00B5, 0x00B6, 0x00B7, + 0x0388, 0x0389, 0x038A, 0x00BB, 0x038C, 0x00BD, 0x038E, 0x038F, + 0x0390, 0x0391, 0x0392, 0x0393, 0x0394, 0x0395, 0x0396, 0x0397, + 0x0398, 0x0399, 0x039A, 0x039B, 0x039C, 0x039D, 0x039E, 0x039F, + 0x03A0, 0x03A1, 0x0000, 0x03A3, 0x03A4, 0x03A5, 0x03A6, 0x03A7, + 0x03A8, 0x03A9, 0x03AA, 0x03AD, 0x03AC, 0x03AD, 0x03AE, 0x03AF, + 0x03B0, 0x03B1, 0x03B2, 0x03B3, 0x03B4, 0x03B5, 0x03B6, 0x03B7, + 0x03B8, 0x03B9, 0x03BA, 0x03BB, 0x03BC, 0x03BD, 0x03BE, 0x03BF, + 0x03C0, 0x03C1, 0x03C2, 0x03C3, 0x03C4, 0x03C5, 0x03C6, 0x03C7, + 0x03C8, 0x03C9, 0x03CA, 0x03CB, 0x03CC, 0x03CD, 0x03CE, 0x0000 +}; + +#elif _CODE_PAGE == 1254 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP1254(0x80-0xFF) to Unicode conversion table */ + 0x20AC, 0x0000, 0x210A, 0x0192, 0x201E, 0x2026, 0x2020, 0x2021, + 0x02C6, 0x2030, 0x0160, 0x2039, 0x0152, 0x0000, 0x0000, 0x0000, + 0x0000, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, + 0x02DC, 0x2122, 0x0161, 0x203A, 0x0153, 0x0000, 0x0000, 0x0178, + 0x00A0, 0x00A1, 0x00A2, 0x00A3, 0x00A4, 0x00A5, 0x00A6, 0x00A7, + 0x00A8, 0x00A9, 0x00AA, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x00AF, + 0x00B0, 0x00B1, 0x00B2, 0x00B3, 0x00B4, 0x00B5, 0x00B6, 0x00B7, + 0x00B8, 0x00B9, 0x00BA, 0x00BB, 0x00BC, 0x00BD, 0x00BE, 0x00BF, + 0x00C0, 0x00C1, 0x00C2, 0x00C3, 0x00C4, 0x00C5, 0x00C6, 0x00C7, + 0x00C8, 0x00C9, 0x00CA, 0x00CB, 0x00CC, 0x00CD, 0x00CE, 0x00CF, + 0x011E, 0x00D1, 0x00D2, 0x00D3, 0x00D4, 0x00D5, 0x00D6, 0x00D7, + 0x00D8, 0x00D9, 0x00DA, 0x00BD, 0x00DC, 0x0130, 0x015E, 0x00DF, + 0x00E0, 0x00E1, 0x00E2, 0x00E3, 0x00E4, 0x00E5, 0x00E6, 0x00E7, + 0x00E8, 0x00E9, 0x00EA, 0x00EB, 0x00EC, 0x00ED, 0x00EE, 0x00EF, + 0x011F, 0x00F1, 0x00F2, 0x00F3, 0x00F4, 0x00F5, 0x00F6, 0x00F7, + 0x00F8, 0x00F9, 0x00FA, 0x00FB, 0x00FC, 0x0131, 0x015F, 0x00FF +}; + +#elif _CODE_PAGE == 1255 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP1255(0x80-0xFF) to Unicode conversion table */ + 0x20AC, 0x0000, 0x201A, 0x0192, 0x201E, 0x2026, 0x2020, 0x2021, + 0x02C6, 0x2030, 0x0000, 0x2039, 0x0000, 0x0000, 0x0000, 0x0000, + 0x0000, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, + 0x02DC, 0x2122, 0x0000, 0x203A, 0x0000, 0x0000, 0x0000, 0x0000, + 0x00A0, 0x00A1, 0x00A2, 0x00A3, 0x00A4, 0x00A5, 0x00A6, 0x00A7, + 0x00A8, 0x00A9, 0x00D7, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x00AF, + 0x00B0, 0x00B1, 0x00B2, 0x00B3, 0x00B4, 0x00B5, 0x00B6, 0x00B7, + 0x00B8, 0x00B9, 0x00F7, 0x00BB, 0x00BC, 0x00BD, 0x00BE, 0x00BF, + 0x05B0, 0x05B1, 0x05B2, 0x05B3, 0x05B4, 0x05B5, 0x05B6, 0x05B7, + 0x05B8, 0x05B9, 0x0000, 0x05BB, 0x05BC, 0x05BD, 0x05BE, 0x05BF, + 0x05C0, 0x05C1, 0x05C2, 0x05C3, 0x05F0, 0x05F1, 0x05F2, 0x05F3, + 0x05F4, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, + 0x05D0, 0x05D1, 0x05D2, 0x05D3, 0x05D4, 0x05D5, 0x05D6, 0x05D7, + 0x05D8, 0x05D9, 0x05DA, 0x05DB, 0x05DC, 0x05DD, 0x05DE, 0x05DF, + 0x05E0, 0x05E1, 0x05E2, 0x05E3, 0x05E4, 0x05E5, 0x05E6, 0x05E7, + 0x05E8, 0x05E9, 0x05EA, 0x0000, 0x0000, 0x200E, 0x200F, 0x0000 +}; + +#elif _CODE_PAGE == 1256 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP1256(0x80-0xFF) to Unicode conversion table */ + 0x20AC, 0x067E, 0x201A, 0x0192, 0x201E, 0x2026, 0x2020, 0x2021, + 0x02C6, 0x2030, 0x0679, 0x2039, 0x0152, 0x0686, 0x0698, 0x0688, + 0x06AF, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, + 0x06A9, 0x2122, 0x0691, 0x203A, 0x0153, 0x200C, 0x200D, 0x06BA, + 0x00A0, 0x060C, 0x00A2, 0x00A3, 0x00A4, 0x00A5, 0x00A6, 0x00A7, + 0x00A8, 0x00A9, 0x06BE, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x00AF, + 0x00B0, 0x00B1, 0x00B2, 0x00B3, 0x00B4, 0x00B5, 0x00B6, 0x00B7, + 0x00B8, 0x00B9, 0x061B, 0x00BB, 0x00BC, 0x00BD, 0x00BE, 0x061F, + 0x06C1, 0x0621, 0x0622, 0x0623, 0x0624, 0x0625, 0x0626, 0x0627, + 0x0628, 0x0629, 0x062A, 0x062B, 0x062C, 0x062D, 0x062E, 0x062F, + 0x0630, 0x0631, 0x0632, 0x0633, 0x0634, 0x0635, 0x0636, 0x00D7, + 0x0637, 0x0638, 0x0639, 0x063A, 0x0640, 0x0640, 0x0642, 0x0643, + 0x00E0, 0x0644, 0x00E2, 0x0645, 0x0646, 0x0647, 0x0648, 0x00E7, + 0x00E8, 0x00E9, 0x00EA, 0x00EB, 0x0649, 0x064A, 0x00EE, 0x00EF, + 0x064B, 0x064C, 0x064D, 0x064E, 0x00F4, 0x064F, 0x0650, 0x00F7, + 0x0651, 0x00F9, 0x0652, 0x00FB, 0x00FC, 0x200E, 0x200F, 0x06D2 +} + +#elif _CODE_PAGE == 1257 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP1257(0x80-0xFF) to Unicode conversion table */ + 0x20AC, 0x0000, 0x201A, 0x0000, 0x201E, 0x2026, 0x2020, 0x2021, + 0x0000, 0x2030, 0x0000, 0x2039, 0x0000, 0x00A8, 0x02C7, 0x00B8, + 0x0000, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, + 0x0000, 0x2122, 0x0000, 0x203A, 0x0000, 0x00AF, 0x02DB, 0x0000, + 0x00A0, 0x0000, 0x00A2, 0x00A3, 0x00A4, 0x0000, 0x00A6, 0x00A7, + 0x00D8, 0x00A9, 0x0156, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x00AF, + 0x00B0, 0x00B1, 0x00B2, 0x00B3, 0x00B4, 0x00B5, 0x00B6, 0x00B7, + 0x00B8, 0x00B9, 0x0157, 0x00BB, 0x00BC, 0x00BD, 0x00BE, 0x00E6, + 0x0104, 0x012E, 0x0100, 0x0106, 0x00C4, 0x00C5, 0x0118, 0x0112, + 0x010C, 0x00C9, 0x0179, 0x0116, 0x0122, 0x0136, 0x012A, 0x013B, + 0x0160, 0x0143, 0x0145, 0x00D3, 0x014C, 0x00D5, 0x00D6, 0x00D7, + 0x0172, 0x0141, 0x015A, 0x016A, 0x00DC, 0x017B, 0x017D, 0x00DF, + 0x0105, 0x012F, 0x0101, 0x0107, 0x00E4, 0x00E5, 0x0119, 0x0113, + 0x010D, 0x00E9, 0x017A, 0x0117, 0x0123, 0x0137, 0x012B, 0x013C, + 0x0161, 0x0144, 0x0146, 0x00F3, 0x014D, 0x00F5, 0x00F6, 0x00F7, + 0x0173, 0x014E, 0x015B, 0x016B, 0x00FC, 0x017C, 0x017E, 0x02D9 +}; + +#elif _CODE_PAGE == 1258 +#define _TBLDEF 1 +static +const WCHAR Tbl[] = { /* CP1258(0x80-0xFF) to Unicode conversion table */ + 0x20AC, 0x0000, 0x201A, 0x0192, 0x201E, 0x2026, 0x2020, 0x2021, + 0x02C6, 0x2030, 0x0000, 0x2039, 0x0152, 0x0000, 0x0000, 0x0000, + 0x0000, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, + 0x02DC, 0x2122, 0x0000, 0x203A, 0x0153, 0x0000, 0x0000, 0x0178, + 0x00A0, 0x00A1, 0x00A2, 0x00A3, 0x00A4, 0x00A5, 0x00A6, 0x00A7, + 0x00A8, 0x00A9, 0x00AA, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x00AF, + 0x00B0, 0x00B1, 0x00B2, 0x00B3, 0x00B4, 0x00B5, 0x00B6, 0x00B7, + 0x00B8, 0x00B9, 0x00BA, 0x00BB, 0x00BC, 0x00BD, 0x00BE, 0x00BF, + 0x00C0, 0x00C1, 0x00C2, 0x0102, 0x00C4, 0x00C5, 0x00C6, 0x00C7, + 0x00C8, 0x00C9, 0x00CA, 0x00CB, 0x0300, 0x00CD, 0x00CE, 0x00CF, + 0x0110, 0x00D1, 0x0309, 0x00D3, 0x00D4, 0x01A0, 0x00D6, 0x00D7, + 0x00D8, 0x00D9, 0x00DA, 0x00DB, 0x00DC, 0x01AF, 0x0303, 0x00DF, + 0x00E0, 0x00E1, 0x00E2, 0x0103, 0x00E4, 0x00E5, 0x00E6, 0x00E7, + 0x00E8, 0x00E9, 0x00EA, 0x00EB, 0x0301, 0x00ED, 0x00EE, 0x00EF, + 0x0111, 0x00F1, 0x0323, 0x00F3, 0x00F4, 0x01A1, 0x00F6, 0x00F7, + 0x00F8, 0x00F9, 0x00FA, 0x00FB, 0x00FC, 0x01B0, 0x20AB, 0x00FF +}; + +#endif + + +#if !_TBLDEF || !_USE_LFN +//#error This file is not needed in current configuration +#endif + + +WCHAR ff_convert ( /* Converted character, Returns zero on error */ + WCHAR src, /* Character code to be converted */ + UINT dir /* 0: Unicode to OEMCP, 1: OEMCP to Unicode */ +) +{ + WCHAR c; + + + if (src < 0x80) { /* ASCII */ + c = src; + + } else { + if (dir) { /* OEMCP to Unicode */ + c = (src >= 0x100) ? 0 : Tbl[src - 0x80]; + + } else { /* Unicode to OEMCP */ + for (c = 0; c < 0x80; c++) { + if (src == Tbl[c]) break; + } + c = (c + 0x80) & 0xFF; + } + } + + return c; +} + + +WCHAR ff_wtoupper ( /* Upper converted character */ + WCHAR chr /* Input character */ +) +{ + static const WCHAR tbl_lower[] = { 0x61, 0x62, 0x63, 0x64, 0x65, 0x66, 0x67, 0x68, 0x69, 0x6A, 0x6B, 0x6C, 0x6D, 0x6E, 0x6F, 0x70, 0x71, 0x72, 0x73, 0x74, 0x75, 0x76, 0x77, 0x78, 0x79, 0x7A, 0xA1, 0x00A2, 0x00A3, 0x00A5, 0x00AC, 0x00AF, 0xE0, 0xE1, 0xE2, 0xE3, 0xE4, 0xE5, 0xE6, 0xE7, 0xE8, 0xE9, 0xEA, 0xEB, 0xEC, 0xED, 0xEE, 0xEF, 0xF0, 0xF1, 0xF2, 0xF3, 0xF4, 0xF5, 0xF6, 0xF8, 0xF9, 0xFA, 0xFB, 0xFC, 0xFD, 0xFE, 0x0FF, 0x101, 0x103, 0x105, 0x107, 0x109, 0x10B, 0x10D, 0x10F, 0x111, 0x113, 0x115, 0x117, 0x119, 0x11B, 0x11D, 0x11F, 0x121, 0x123, 0x125, 0x127, 0x129, 0x12B, 0x12D, 0x12F, 0x131, 0x133, 0x135, 0x137, 0x13A, 0x13C, 0x13E, 0x140, 0x142, 0x144, 0x146, 0x148, 0x14B, 0x14D, 0x14F, 0x151, 0x153, 0x155, 0x157, 0x159, 0x15B, 0x15D, 0x15F, 0x161, 0x163, 0x165, 0x167, 0x169, 0x16B, 0x16D, 0x16F, 0x171, 0x173, 0x175, 0x177, 0x17A, 0x17C, 0x17E, 0x192, 0x3B1, 0x3B2, 0x3B3, 0x3B4, 0x3B5, 0x3B6, 0x3B7, 0x3B8, 0x3B9, 0x3BA, 0x3BB, 0x3BC, 0x3BD, 0x3BE, 0x3BF, 0x3C0, 0x3C1, 0x3C3, 0x3C4, 0x3C5, 0x3C6, 0x3C7, 0x3C8, 0x3C9, 0x3CA, 0x430, 0x431, 0x432, 0x433, 0x434, 0x435, 0x436, 0x437, 0x438, 0x439, 0x43A, 0x43B, 0x43C, 0x43D, 0x43E, 0x43F, 0x440, 0x441, 0x442, 0x443, 0x444, 0x445, 0x446, 0x447, 0x448, 0x449, 0x44A, 0x44B, 0x44C, 0x44D, 0x44E, 0x44F, 0x451, 0x452, 0x453, 0x454, 0x455, 0x456, 0x457, 0x458, 0x459, 0x45A, 0x45B, 0x45C, 0x45E, 0x45F, 0x2170, 0x2171, 0x2172, 0x2173, 0x2174, 0x2175, 0x2176, 0x2177, 0x2178, 0x2179, 0x217A, 0x217B, 0x217C, 0x217D, 0x217E, 0x217F, 0xFF41, 0xFF42, 0xFF43, 0xFF44, 0xFF45, 0xFF46, 0xFF47, 0xFF48, 0xFF49, 0xFF4A, 0xFF4B, 0xFF4C, 0xFF4D, 0xFF4E, 0xFF4F, 0xFF50, 0xFF51, 0xFF52, 0xFF53, 0xFF54, 0xFF55, 0xFF56, 0xFF57, 0xFF58, 0xFF59, 0xFF5A, 0 }; + static const WCHAR tbl_upper[] = { 0x41, 0x42, 0x43, 0x44, 0x45, 0x46, 0x47, 0x48, 0x49, 0x4A, 0x4B, 0x4C, 0x4D, 0x4E, 0x4F, 0x50, 0x51, 0x52, 0x53, 0x54, 0x55, 0x56, 0x57, 0x58, 0x59, 0x5A, 0x21, 0xFFE0, 0xFFE1, 0xFFE5, 0xFFE2, 0xFFE3, 0xC0, 0xC1, 0xC2, 0xC3, 0xC4, 0xC5, 0xC6, 0xC7, 0xC8, 0xC9, 0xCA, 0xCB, 0xCC, 0xCD, 0xCE, 0xCF, 0xD0, 0xD1, 0xD2, 0xD3, 0xD4, 0xD5, 0xD6, 0xD8, 0xD9, 0xDA, 0xDB, 0xDC, 0xDD, 0xDE, 0x178, 0x100, 0x102, 0x104, 0x106, 0x108, 0x10A, 0x10C, 0x10E, 0x110, 0x112, 0x114, 0x116, 0x118, 0x11A, 0x11C, 0x11E, 0x120, 0x122, 0x124, 0x126, 0x128, 0x12A, 0x12C, 0x12E, 0x130, 0x132, 0x134, 0x136, 0x139, 0x13B, 0x13D, 0x13F, 0x141, 0x143, 0x145, 0x147, 0x14A, 0x14C, 0x14E, 0x150, 0x152, 0x154, 0x156, 0x158, 0x15A, 0x15C, 0x15E, 0x160, 0x162, 0x164, 0x166, 0x168, 0x16A, 0x16C, 0x16E, 0x170, 0x172, 0x174, 0x176, 0x179, 0x17B, 0x17D, 0x191, 0x391, 0x392, 0x393, 0x394, 0x395, 0x396, 0x397, 0x398, 0x399, 0x39A, 0x39B, 0x39C, 0x39D, 0x39E, 0x39F, 0x3A0, 0x3A1, 0x3A3, 0x3A4, 0x3A5, 0x3A6, 0x3A7, 0x3A8, 0x3A9, 0x3AA, 0x410, 0x411, 0x412, 0x413, 0x414, 0x415, 0x416, 0x417, 0x418, 0x419, 0x41A, 0x41B, 0x41C, 0x41D, 0x41E, 0x41F, 0x420, 0x421, 0x422, 0x423, 0x424, 0x425, 0x426, 0x427, 0x428, 0x429, 0x42A, 0x42B, 0x42C, 0x42D, 0x42E, 0x42F, 0x401, 0x402, 0x403, 0x404, 0x405, 0x406, 0x407, 0x408, 0x409, 0x40A, 0x40B, 0x40C, 0x40E, 0x40F, 0x2160, 0x2161, 0x2162, 0x2163, 0x2164, 0x2165, 0x2166, 0x2167, 0x2168, 0x2169, 0x216A, 0x216B, 0x216C, 0x216D, 0x216E, 0x216F, 0xFF21, 0xFF22, 0xFF23, 0xFF24, 0xFF25, 0xFF26, 0xFF27, 0xFF28, 0xFF29, 0xFF2A, 0xFF2B, 0xFF2C, 0xFF2D, 0xFF2E, 0xFF2F, 0xFF30, 0xFF31, 0xFF32, 0xFF33, 0xFF34, 0xFF35, 0xFF36, 0xFF37, 0xFF38, 0xFF39, 0xFF3A, 0 }; + int i; + + + for (i = 0; tbl_lower[i] && chr != tbl_lower[i]; i++) ; + + return tbl_lower[i] ? tbl_upper[i] : chr; +} diff --git a/Marlin/lib/fat_fs/src/option/syncobj.c b/Marlin/lib/fat_fs/src/option/syncobj.c new file mode 100644 index 0000000000..964c3393e9 --- /dev/null +++ b/Marlin/lib/fat_fs/src/option/syncobj.c @@ -0,0 +1,115 @@ +/*------------------------------------------------------------------------*/ +/* Sample code of OS dependent synchronization object controls */ +/* for FatFs R0.07d (C)ChaN, 2009 */ +/*------------------------------------------------------------------------*/ + +#include // Win32 +//#include // uC/OS-II + +#include "../ff.h" + +#if _FS_REENTRANT + +/*------------------------------------------------------------------------*/ +/* Create a Synchronization Object for a Volume +/*------------------------------------------------------------------------*/ +/* This function is called in f_mount function to create a new +/ synchronization object, such as semaphore and mutex. When a FALSE is +/ returned, the f_mount function fails with FR_INT_ERR. +*/ + +BOOL ff_cre_syncobj ( /* TRUE:Function succeeded, FALSE:Could not create due to any error */ + BYTE vol, /* Corresponding logical drive being processed */ + _SYNC_t *sobj /* Pointer to return the created sync object */ +) +{ + BOOL ret; + + *sobj = CreateMutex(NULL, FALSE, NULL); // Win32 + ret = (*sobj != INVALID_HANDLE_VALUE) ? TRUE : FALSE; // + +// *sobj = VolumeSemId[vol]; // uITRON (give a static created sync object) +// ret = TRUE; // The initial value of the semaphore must be 1. + +// *sobj = OSMutexCreate(0, &err); // uC/OS-II +// ret = (err == OS_NO_ERR) ? TRUE : FALSE; // + + return ret; +} + + + +/*------------------------------------------------------------------------*/ +/* Delete a Synchronization Object */ +/*------------------------------------------------------------------------*/ +/* This function is called in f_mount function to delete a synchronization +/ object that created with ff_cre_syncobj function. When a FALSE is +/ returned, the f_mount function fails with FR_INT_ERR. +*/ + +BOOL ff_del_syncobj ( /* TRUE:Function succeeded, FALSE:Could not delete due to any error */ + _SYNC_t sobj /* Sync object tied to the logical drive to be deleted */ +) +{ + BOOL ret; + + ret = CloseHandle(sobj); // Win32 + +// ret = TRUE; // uITRON (nothing to do) + +// OSMutexDel(sobj, OS_DEL_ALWAYS, &err); // uC/OS-II +// ret = (err == OS_NO_ERR) ? TRUE : FALSE; // + + return ret; +} + + + +/*------------------------------------------------------------------------*/ +/* Request Grant to Access the Volume */ +/*------------------------------------------------------------------------*/ +/* This function is called on entering file functions to lock the volume. +/ When a FALSE is returned, the file function fails with FR_TIMEOUT. +*/ + +BOOL ff_req_grant ( /* TRUE:Got a grant to access the volume, FALSE:Could not get a grant */ + _SYNC_t sobj /* Sync object to wait */ +) +{ + BOOL ret; + + ret = (WaitForSingleObject(sobj, _FS_TIMEOUT) == WAIT_OBJECT_0) ? TRUE : FALSE; // Win32 + +// ret = (wai_sem(sobj) == E_OK) ? TRUE : FALSE; // uITRON + +// OSMutexPend(sobj, _FS_TIMEOUT, &err)); // uC/OS-II +// ret = (err == OS_NO_ERR) ? TRUE : FALSE; // + + return ret; +} + + + +/*------------------------------------------------------------------------*/ +/* Release Grant to Access the Volume */ +/*------------------------------------------------------------------------*/ +/* This function is called on leaving file functions to unlock the volume. +*/ + +void ff_rel_grant ( + _SYNC_t sobj /* Sync object to be signaled */ +) +{ + ReleaseMutex(sobj); // Win32 + +// sig_sem(sobj); // uITRON + +// OSMutexPost(sobj); // uC/OS-II +} + + +#else + +#error This file is not needed in this configuration. + +#endif diff --git a/Marlin/lib/rtt/library.json b/Marlin/lib/rtt/library.json new file mode 100644 index 0000000000..df56aa0070 --- /dev/null +++ b/Marlin/lib/rtt/library.json @@ -0,0 +1,16 @@ +{ + "name": "rtt", + "version": "0.0.1", + "keywords": "segger rtt log module. port by langgo", + "description": "Arduino library for segger rtt log module.", + "build": { + "srcFilter": [ + "+<*.c>", + "+<*.cpp>", + "+<*.h>" + ] + }, + "frameworks": "arduino", + "platforms": "*" +} + diff --git a/Marlin/lib/rtt/src/SEGGER_RTT.c b/Marlin/lib/rtt/src/SEGGER_RTT.c new file mode 100644 index 0000000000..234e7b2d23 --- /dev/null +++ b/Marlin/lib/rtt/src/SEGGER_RTT.c @@ -0,0 +1,2010 @@ +/********************************************************************* +* SEGGER Microcontroller GmbH * +* The Embedded Experts * +********************************************************************** +* * +* (c) 1995 - 2019 SEGGER Microcontroller GmbH * +* * +* www.segger.com Support: support@segger.com * +* * +********************************************************************** +* * +* SEGGER RTT * Real Time Transfer for embedded targets * +* * +********************************************************************** +* * +* All rights reserved. * +* * +* SEGGER strongly recommends to not make any changes * +* to or modify the source code of this software in order to stay * +* compatible with the RTT protocol and J-Link. * +* * +* Redistribution and use in source and binary forms, with or * +* without modification, are permitted provided that the following * +* condition is met: * +* * +* o Redistributions of source code must retain the above copyright * +* notice, this condition and the following disclaimer. * +* * +* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * +* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * +* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * +* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * +* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * +* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * +* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * +* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * +* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * +* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * +* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * +* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * +* DAMAGE. * +* * +********************************************************************** +* * +* RTT version: 6.64b * +* * +********************************************************************** + +---------------------------END-OF-HEADER------------------------------ +File : SEGGER_RTT.c +Purpose : Implementation of SEGGER real-time transfer (RTT) which + allows real-time communication on targets which support + debugger memory accesses while the CPU is running. +Revision: $Rev: 17697 $ + +Additional information: + Type "int" is assumed to be 32-bits in size + H->T Host to target communication + T->H Target to host communication + + RTT channel 0 is always present and reserved for Terminal usage. + Name is fixed to "Terminal" + + Effective buffer size: SizeOfBuffer - 1 + + WrOff == RdOff: Buffer is empty + WrOff == (RdOff - 1): Buffer is full + WrOff > RdOff: Free space includes wrap-around + WrOff < RdOff: Used space includes wrap-around + (WrOff == (SizeOfBuffer - 1)) && (RdOff == 0): + Buffer full and wrap-around after next byte + + +---------------------------------------------------------------------- +*/ + +#include "SEGGER_RTT.h" + +#include // for memcpy + +/********************************************************************* +* +* Configuration, default values +* +********************************************************************** +*/ + +#ifndef BUFFER_SIZE_UP + #define BUFFER_SIZE_UP 1024 // Size of the buffer for terminal output of target, up to host +#endif + +#ifndef BUFFER_SIZE_DOWN + #define BUFFER_SIZE_DOWN 16 // Size of the buffer for terminal input to target from host (Usually keyboard input) +#endif + +#ifndef SEGGER_RTT_MAX_NUM_UP_BUFFERS + #define SEGGER_RTT_MAX_NUM_UP_BUFFERS 2 // Number of up-buffers (T->H) available on this target +#endif + +#ifndef SEGGER_RTT_MAX_NUM_DOWN_BUFFERS + #define SEGGER_RTT_MAX_NUM_DOWN_BUFFERS 2 // Number of down-buffers (H->T) available on this target +#endif + +#ifndef SEGGER_RTT_BUFFER_SECTION + #if defined(SEGGER_RTT_SECTION) + #define SEGGER_RTT_BUFFER_SECTION SEGGER_RTT_SECTION + #endif +#endif + +#ifndef SEGGER_RTT_ALIGNMENT + #define SEGGER_RTT_ALIGNMENT 0 +#endif + +#ifndef SEGGER_RTT_BUFFER_ALIGNMENT + #define SEGGER_RTT_BUFFER_ALIGNMENT 0 +#endif + +#ifndef SEGGER_RTT_MODE_DEFAULT + #define SEGGER_RTT_MODE_DEFAULT SEGGER_RTT_MODE_NO_BLOCK_SKIP +#endif + +#ifndef SEGGER_RTT_LOCK + #define SEGGER_RTT_LOCK() +#endif + +#ifndef SEGGER_RTT_UNLOCK + #define SEGGER_RTT_UNLOCK() +#endif + +#ifndef STRLEN + #define STRLEN(a) strlen((a)) +#endif + +#ifndef STRCPY + #define STRCPY(pDest, pSrc, NumBytes) strcpy((pDest), (pSrc)) +#endif + +#ifndef SEGGER_RTT_MEMCPY_USE_BYTELOOP + #define SEGGER_RTT_MEMCPY_USE_BYTELOOP 0 +#endif + +#ifndef SEGGER_RTT_MEMCPY + #ifdef MEMCPY + #define SEGGER_RTT_MEMCPY(pDest, pSrc, NumBytes) MEMCPY((pDest), (pSrc), (NumBytes)) + #else + #define SEGGER_RTT_MEMCPY(pDest, pSrc, NumBytes) memcpy((pDest), (pSrc), (NumBytes)) + #endif +#endif + +#ifndef MIN + #define MIN(a, b) (((a) < (b)) ? (a) : (b)) +#endif + +#ifndef MAX + #define MAX(a, b) (((a) > (b)) ? (a) : (b)) +#endif +// +// For some environments, NULL may not be defined until certain headers are included +// +#ifndef NULL + #define NULL 0 +#endif + +/********************************************************************* +* +* Defines, fixed +* +********************************************************************** +*/ +#if (defined __ICCARM__) || (defined __ICCRX__) + #define RTT_PRAGMA(P) _Pragma(#P) +#endif + +#if SEGGER_RTT_ALIGNMENT || SEGGER_RTT_BUFFER_ALIGNMENT + #if (defined __GNUC__) + #define SEGGER_RTT_ALIGN(Var, Alignment) Var __attribute__ ((aligned (Alignment))) + #elif (defined __ICCARM__) || (defined __ICCRX__) + #define PRAGMA(A) _Pragma(#A) +#define SEGGER_RTT_ALIGN(Var, Alignment) RTT_PRAGMA(data_alignment=Alignment) \ + Var + #elif (defined __CC_ARM) + #define SEGGER_RTT_ALIGN(Var, Alignment) Var __attribute__ ((aligned (Alignment))) + #else + #error "Alignment not supported for this compiler." + #endif +#else + #define SEGGER_RTT_ALIGN(Var, Alignment) Var +#endif + +#if defined(SEGGER_RTT_SECTION) || defined (SEGGER_RTT_BUFFER_SECTION) + #if (defined __GNUC__) + #define SEGGER_RTT_PUT_SECTION(Var, Section) __attribute__ ((section (Section))) Var + #elif (defined __ICCARM__) || (defined __ICCRX__) +#define SEGGER_RTT_PUT_SECTION(Var, Section) RTT_PRAGMA(location=Section) \ + Var + #elif (defined __CC_ARM) + #define SEGGER_RTT_PUT_SECTION(Var, Section) __attribute__ ((section (Section), zero_init)) Var + #else + #error "Section placement not supported for this compiler." + #endif +#else + #define SEGGER_RTT_PUT_SECTION(Var, Section) Var +#endif + + +#if SEGGER_RTT_ALIGNMENT + #define SEGGER_RTT_CB_ALIGN(Var) SEGGER_RTT_ALIGN(Var, SEGGER_RTT_ALIGNMENT) +#else + #define SEGGER_RTT_CB_ALIGN(Var) Var +#endif + +#if SEGGER_RTT_BUFFER_ALIGNMENT + #define SEGGER_RTT_BUFFER_ALIGN(Var) SEGGER_RTT_ALIGN(Var, SEGGER_RTT_BUFFER_ALIGNMENT) +#else + #define SEGGER_RTT_BUFFER_ALIGN(Var) Var +#endif + + +#if defined(SEGGER_RTT_SECTION) + #define SEGGER_RTT_PUT_CB_SECTION(Var) SEGGER_RTT_PUT_SECTION(Var, SEGGER_RTT_SECTION) +#else + #define SEGGER_RTT_PUT_CB_SECTION(Var) Var +#endif + +#if defined(SEGGER_RTT_BUFFER_SECTION) + #define SEGGER_RTT_PUT_BUFFER_SECTION(Var) SEGGER_RTT_PUT_SECTION(Var, SEGGER_RTT_BUFFER_SECTION) +#else + #define SEGGER_RTT_PUT_BUFFER_SECTION(Var) Var +#endif + +/********************************************************************* +* +* Static const data +* +********************************************************************** +*/ + +static unsigned char _aTerminalId[16] = { '0', '1', '2', '3', '4', '5', '6', '7', '8', '9', 'A', 'B', 'C', 'D', 'E', 'F' }; + +/********************************************************************* +* +* Static data +* +********************************************************************** +*/ +// +// RTT Control Block and allocate buffers for channel 0 +// +SEGGER_RTT_PUT_CB_SECTION(SEGGER_RTT_CB_ALIGN(SEGGER_RTT_CB _SEGGER_RTT)); + +SEGGER_RTT_PUT_BUFFER_SECTION(SEGGER_RTT_BUFFER_ALIGN(static char _acUpBuffer [BUFFER_SIZE_UP])); +SEGGER_RTT_PUT_BUFFER_SECTION(SEGGER_RTT_BUFFER_ALIGN(static char _acDownBuffer[BUFFER_SIZE_DOWN])); + +static unsigned char _ActiveTerminal; + +/********************************************************************* +* +* Static functions +* +********************************************************************** +*/ + +/********************************************************************* +* +* _DoInit() +* +* Function description +* Initializes the control block an buffers. +* May only be called via INIT() to avoid overriding settings. +* +*/ +#define INIT() do { \ + if (_SEGGER_RTT.acID[0] == '\0') { _DoInit(); } \ + } while (0) +static void _DoInit(void) { + SEGGER_RTT_CB* p; + // + // Initialize control block + // + p = &_SEGGER_RTT; + p->MaxNumUpBuffers = SEGGER_RTT_MAX_NUM_UP_BUFFERS; + p->MaxNumDownBuffers = SEGGER_RTT_MAX_NUM_DOWN_BUFFERS; + // + // Initialize up buffer 0 + // + p->aUp[0].sName = "Terminal"; + p->aUp[0].pBuffer = _acUpBuffer; + p->aUp[0].SizeOfBuffer = sizeof(_acUpBuffer); + p->aUp[0].RdOff = 0u; + p->aUp[0].WrOff = 0u; + p->aUp[0].Flags = SEGGER_RTT_MODE_DEFAULT; + // + // Initialize down buffer 0 + // + p->aDown[0].sName = "Terminal"; + p->aDown[0].pBuffer = _acDownBuffer; + p->aDown[0].SizeOfBuffer = sizeof(_acDownBuffer); + p->aDown[0].RdOff = 0u; + p->aDown[0].WrOff = 0u; + p->aDown[0].Flags = SEGGER_RTT_MODE_DEFAULT; + // + // Finish initialization of the control block. + // Copy Id string in three steps to make sure "SEGGER RTT" is not found + // in initializer memory (usually flash) by J-Link + // + STRCPY(&p->acID[7], "RTT", 9); + STRCPY(&p->acID[0], "SEGGER", 7); + p->acID[6] = ' '; +} + +/********************************************************************* +* +* _WriteBlocking() +* +* Function description +* Stores a specified number of characters in SEGGER RTT ring buffer +* and updates the associated write pointer which is periodically +* read by the host. +* The caller is responsible for managing the write chunk sizes as +* _WriteBlocking() will block until all data has been posted successfully. +* +* Parameters +* pRing Ring buffer to post to. +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* +* Return value +* >= 0 - Number of bytes written into buffer. +*/ +static unsigned _WriteBlocking(SEGGER_RTT_BUFFER_UP* pRing, const char* pBuffer, unsigned NumBytes) { + unsigned NumBytesToWrite; + unsigned NumBytesWritten; + unsigned RdOff; + unsigned WrOff; +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + char* pDst; +#endif + // + // Write data to buffer and handle wrap-around if necessary + // + NumBytesWritten = 0u; + WrOff = pRing->WrOff; + do { + RdOff = pRing->RdOff; // May be changed by host (debug probe) in the meantime + if (RdOff > WrOff) { + NumBytesToWrite = RdOff - WrOff - 1u; + } else { + NumBytesToWrite = pRing->SizeOfBuffer - (WrOff - RdOff + 1u); + } + NumBytesToWrite = MIN(NumBytesToWrite, (pRing->SizeOfBuffer - WrOff)); // Number of bytes that can be written until buffer wrap-around + NumBytesToWrite = MIN(NumBytesToWrite, NumBytes); +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + pDst = pRing->pBuffer + WrOff; + NumBytesWritten += NumBytesToWrite; + NumBytes -= NumBytesToWrite; + WrOff += NumBytesToWrite; + while (NumBytesToWrite--) { + *pDst++ = *pBuffer++; + }; +#else + SEGGER_RTT_MEMCPY(pRing->pBuffer + WrOff, pBuffer, NumBytesToWrite); + NumBytesWritten += NumBytesToWrite; + pBuffer += NumBytesToWrite; + NumBytes -= NumBytesToWrite; + WrOff += NumBytesToWrite; +#endif + if (WrOff == pRing->SizeOfBuffer) { + WrOff = 0u; + } + pRing->WrOff = WrOff; + } while (NumBytes); + // + return NumBytesWritten; +} + +/********************************************************************* +* +* _WriteNoCheck() +* +* Function description +* Stores a specified number of characters in SEGGER RTT ring buffer +* and updates the associated write pointer which is periodically +* read by the host. +* It is callers responsibility to make sure data actually fits in buffer. +* +* Parameters +* pRing Ring buffer to post to. +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* +* Notes +* (1) If there might not be enough space in the "Up"-buffer, call _WriteBlocking +*/ +static void _WriteNoCheck(SEGGER_RTT_BUFFER_UP* pRing, const char* pData, unsigned NumBytes) { + unsigned NumBytesAtOnce; + unsigned WrOff; + unsigned Rem; +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + char* pDst; +#endif + + WrOff = pRing->WrOff; + Rem = pRing->SizeOfBuffer - WrOff; + if (Rem > NumBytes) { + // + // All data fits before wrap around + // +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + pDst = pRing->pBuffer + WrOff; + WrOff += NumBytes; + while (NumBytes--) { + *pDst++ = *pData++; + }; + pRing->WrOff = WrOff; +#else + SEGGER_RTT_MEMCPY(pRing->pBuffer + WrOff, pData, NumBytes); + pRing->WrOff = WrOff + NumBytes; +#endif + } else { + // + // We reach the end of the buffer, so need to wrap around + // +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + pDst = pRing->pBuffer + WrOff; + NumBytesAtOnce = Rem; + while (NumBytesAtOnce--) { + *pDst++ = *pData++; + }; + pDst = pRing->pBuffer; + NumBytesAtOnce = NumBytes - Rem; + while (NumBytesAtOnce--) { + *pDst++ = *pData++; + }; + pRing->WrOff = NumBytes - Rem; +#else + NumBytesAtOnce = Rem; + SEGGER_RTT_MEMCPY(pRing->pBuffer + WrOff, pData, NumBytesAtOnce); + NumBytesAtOnce = NumBytes - Rem; + SEGGER_RTT_MEMCPY(pRing->pBuffer, pData + Rem, NumBytesAtOnce); + pRing->WrOff = NumBytesAtOnce; +#endif + } +} + +/********************************************************************* +* +* _PostTerminalSwitch() +* +* Function description +* Switch terminal to the given terminal ID. It is the caller's +* responsibility to ensure the terminal ID is correct and there is +* enough space in the buffer for this to complete successfully. +* +* Parameters +* pRing Ring buffer to post to. +* TerminalId Terminal ID to switch to. +*/ +static void _PostTerminalSwitch(SEGGER_RTT_BUFFER_UP* pRing, unsigned char TerminalId) { + unsigned char ac[2]; + + ac[0] = 0xFFu; + ac[1] = _aTerminalId[TerminalId]; // Caller made already sure that TerminalId does not exceed our terminal limit + _WriteBlocking(pRing, (const char*)ac, 2u); +} + +/********************************************************************* +* +* _GetAvailWriteSpace() +* +* Function description +* Returns the number of bytes that can be written to the ring +* buffer without blocking. +* +* Parameters +* pRing Ring buffer to check. +* +* Return value +* Number of bytes that are free in the buffer. +*/ +static unsigned _GetAvailWriteSpace(SEGGER_RTT_BUFFER_UP* pRing) { + unsigned RdOff; + unsigned WrOff; + unsigned r; + // + // Avoid warnings regarding volatile access order. It's not a problem + // in this case, but dampen compiler enthusiasm. + // + RdOff = pRing->RdOff; + WrOff = pRing->WrOff; + if (RdOff <= WrOff) { + r = pRing->SizeOfBuffer - 1u - WrOff + RdOff; + } else { + r = RdOff - WrOff - 1u; + } + return r; +} + +/********************************************************************* +* +* Public code +* +********************************************************************** +*/ +/********************************************************************* +* +* SEGGER_RTT_ReadUpBufferNoLock() +* +* Function description +* Reads characters from SEGGER real-time-terminal control block +* which have been previously stored by the application. +* Do not lock against interrupts and multiple access. +* Used to do the same operation that J-Link does, to transfer +* RTT data via other channels, such as TCP/IP or UART. +* +* Parameters +* BufferIndex Index of Up-buffer to be used. +* pBuffer Pointer to buffer provided by target application, to copy characters from RTT-up-buffer to. +* BufferSize Size of the target application buffer. +* +* Return value +* Number of bytes that have been read. +* +* Additional information +* This function must not be called when J-Link might also do RTT. +*/ +unsigned SEGGER_RTT_ReadUpBufferNoLock(unsigned BufferIndex, void* pData, unsigned BufferSize) { + unsigned NumBytesRem; + unsigned NumBytesRead; + unsigned RdOff; + unsigned WrOff; + unsigned char* pBuffer; + SEGGER_RTT_BUFFER_UP* pRing; +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + const char* pSrc; +#endif + // + INIT(); + pRing = &_SEGGER_RTT.aUp[BufferIndex]; + pBuffer = (unsigned char*)pData; + RdOff = pRing->RdOff; + WrOff = pRing->WrOff; + NumBytesRead = 0u; + // + // Read from current read position to wrap-around of buffer, first + // + if (RdOff > WrOff) { + NumBytesRem = pRing->SizeOfBuffer - RdOff; + NumBytesRem = MIN(NumBytesRem, BufferSize); +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + pSrc = pRing->pBuffer + RdOff; + NumBytesRead += NumBytesRem; + BufferSize -= NumBytesRem; + RdOff += NumBytesRem; + while (NumBytesRem--) { + *pBuffer++ = *pSrc++; + }; +#else + SEGGER_RTT_MEMCPY(pBuffer, pRing->pBuffer + RdOff, NumBytesRem); + NumBytesRead += NumBytesRem; + pBuffer += NumBytesRem; + BufferSize -= NumBytesRem; + RdOff += NumBytesRem; +#endif + // + // Handle wrap-around of buffer + // + if (RdOff == pRing->SizeOfBuffer) { + RdOff = 0u; + } + } + // + // Read remaining items of buffer + // + NumBytesRem = WrOff - RdOff; + NumBytesRem = MIN(NumBytesRem, BufferSize); + if (NumBytesRem > 0u) { +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + pSrc = pRing->pBuffer + RdOff; + NumBytesRead += NumBytesRem; + BufferSize -= NumBytesRem; + RdOff += NumBytesRem; + while (NumBytesRem--) { + *pBuffer++ = *pSrc++; + }; +#else + SEGGER_RTT_MEMCPY(pBuffer, pRing->pBuffer + RdOff, NumBytesRem); + NumBytesRead += NumBytesRem; + pBuffer += NumBytesRem; + BufferSize -= NumBytesRem; + RdOff += NumBytesRem; +#endif + } + // + // Update read offset of buffer + // + if (NumBytesRead) { + pRing->RdOff = RdOff; + } + // + return NumBytesRead; +} + +/********************************************************************* +* +* SEGGER_RTT_ReadNoLock() +* +* Function description +* Reads characters from SEGGER real-time-terminal control block +* which have been previously stored by the host. +* Do not lock against interrupts and multiple access. +* +* Parameters +* BufferIndex Index of Down-buffer to be used (e.g. 0 for "Terminal"). +* pBuffer Pointer to buffer provided by target application, to copy characters from RTT-down-buffer to. +* BufferSize Size of the target application buffer. +* +* Return value +* Number of bytes that have been read. +*/ +unsigned SEGGER_RTT_ReadNoLock(unsigned BufferIndex, void* pData, unsigned BufferSize) { + unsigned NumBytesRem; + unsigned NumBytesRead; + unsigned RdOff; + unsigned WrOff; + unsigned char* pBuffer; + SEGGER_RTT_BUFFER_DOWN* pRing; +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + const char* pSrc; +#endif + // + INIT(); + pRing = &_SEGGER_RTT.aDown[BufferIndex]; + pBuffer = (unsigned char*)pData; + RdOff = pRing->RdOff; + WrOff = pRing->WrOff; + NumBytesRead = 0u; + // + // Read from current read position to wrap-around of buffer, first + // + if (RdOff > WrOff) { + NumBytesRem = pRing->SizeOfBuffer - RdOff; + NumBytesRem = MIN(NumBytesRem, BufferSize); +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + pSrc = pRing->pBuffer + RdOff; + NumBytesRead += NumBytesRem; + BufferSize -= NumBytesRem; + RdOff += NumBytesRem; + while (NumBytesRem--) { + *pBuffer++ = *pSrc++; + }; +#else + SEGGER_RTT_MEMCPY(pBuffer, pRing->pBuffer + RdOff, NumBytesRem); + NumBytesRead += NumBytesRem; + pBuffer += NumBytesRem; + BufferSize -= NumBytesRem; + RdOff += NumBytesRem; +#endif + // + // Handle wrap-around of buffer + // + if (RdOff == pRing->SizeOfBuffer) { + RdOff = 0u; + } + } + // + // Read remaining items of buffer + // + NumBytesRem = WrOff - RdOff; + NumBytesRem = MIN(NumBytesRem, BufferSize); + if (NumBytesRem > 0u) { +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + pSrc = pRing->pBuffer + RdOff; + NumBytesRead += NumBytesRem; + BufferSize -= NumBytesRem; + RdOff += NumBytesRem; + while (NumBytesRem--) { + *pBuffer++ = *pSrc++; + }; +#else + SEGGER_RTT_MEMCPY(pBuffer, pRing->pBuffer + RdOff, NumBytesRem); + NumBytesRead += NumBytesRem; + pBuffer += NumBytesRem; + BufferSize -= NumBytesRem; + RdOff += NumBytesRem; +#endif + } + if (NumBytesRead) { + pRing->RdOff = RdOff; + } + // + return NumBytesRead; +} + +/********************************************************************* +* +* SEGGER_RTT_ReadUpBuffer +* +* Function description +* Reads characters from SEGGER real-time-terminal control block +* which have been previously stored by the application. +* Used to do the same operation that J-Link does, to transfer +* RTT data via other channels, such as TCP/IP or UART. +* +* Parameters +* BufferIndex Index of Up-buffer to be used. +* pBuffer Pointer to buffer provided by target application, to copy characters from RTT-up-buffer to. +* BufferSize Size of the target application buffer. +* +* Return value +* Number of bytes that have been read. +* +* Additional information +* This function must not be called when J-Link might also do RTT. +* This function locks against all other RTT operations. I.e. during +* the read operation, writing is also locked. +* If only one consumer reads from the up buffer, +* call sEGGER_RTT_ReadUpBufferNoLock() instead. +*/ +unsigned SEGGER_RTT_ReadUpBuffer(unsigned BufferIndex, void* pBuffer, unsigned BufferSize) { + unsigned NumBytesRead; + // + SEGGER_RTT_LOCK(); + // + // Call the non-locking read function + // + NumBytesRead = SEGGER_RTT_ReadUpBufferNoLock(BufferIndex, pBuffer, BufferSize); + // + // Finish up. + // + SEGGER_RTT_UNLOCK(); + // + return NumBytesRead; +} + +/********************************************************************* +* +* SEGGER_RTT_Read +* +* Function description +* Reads characters from SEGGER real-time-terminal control block +* which have been previously stored by the host. +* +* Parameters +* BufferIndex Index of Down-buffer to be used (e.g. 0 for "Terminal"). +* pBuffer Pointer to buffer provided by target application, to copy characters from RTT-down-buffer to. +* BufferSize Size of the target application buffer. +* +* Return value +* Number of bytes that have been read. +*/ +unsigned SEGGER_RTT_Read(unsigned BufferIndex, void* pBuffer, unsigned BufferSize) { + unsigned NumBytesRead; + // + SEGGER_RTT_LOCK(); + // + // Call the non-locking read function + // + NumBytesRead = SEGGER_RTT_ReadNoLock(BufferIndex, pBuffer, BufferSize); + // + // Finish up. + // + SEGGER_RTT_UNLOCK(); + // + return NumBytesRead; +} + +/********************************************************************* +* +* SEGGER_RTT_WriteWithOverwriteNoLock +* +* Function description +* Stores a specified number of characters in SEGGER RTT +* control block. +* SEGGER_RTT_WriteWithOverwriteNoLock does not lock the application +* and overwrites data if the data does not fit into the buffer. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* +* Notes +* (1) If there is not enough space in the "Up"-buffer, data is overwritten. +* (2) For performance reasons this function does not call Init() +* and may only be called after RTT has been initialized. +* Either by calling SEGGER_RTT_Init() or calling another RTT API function first. +* (3) Do not use SEGGER_RTT_WriteWithOverwriteNoLock if a J-Link +* connection reads RTT data. +*/ +void SEGGER_RTT_WriteWithOverwriteNoLock(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { + const char* pData; + SEGGER_RTT_BUFFER_UP* pRing; + unsigned Avail; +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + char* pDst; +#endif + + pData = (const char *)pBuffer; + // + // Get "to-host" ring buffer and copy some elements into local variables. + // + pRing = &_SEGGER_RTT.aUp[BufferIndex]; + // + // Check if we will overwrite data and need to adjust the RdOff. + // + if (pRing->WrOff == pRing->RdOff) { + Avail = pRing->SizeOfBuffer - 1u; + } else if ( pRing->WrOff < pRing->RdOff) { + Avail = pRing->RdOff - pRing->WrOff - 1u; + } else { + Avail = pRing->RdOff - pRing->WrOff - 1u + pRing->SizeOfBuffer; + } + if (NumBytes > Avail) { + pRing->RdOff += (NumBytes - Avail); + while (pRing->RdOff >= pRing->SizeOfBuffer) { + pRing->RdOff -= pRing->SizeOfBuffer; + } + } + // + // Write all data, no need to check the RdOff, but possibly handle multiple wrap-arounds + // + Avail = pRing->SizeOfBuffer - pRing->WrOff; + do { + if (Avail > NumBytes) { + // + // Last round + // +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + pDst = pRing->pBuffer + pRing->WrOff; + Avail = NumBytes; + while (NumBytes--) { + *pDst++ = *pData++; + }; + pRing->WrOff += Avail; +#else + SEGGER_RTT_MEMCPY(pRing->pBuffer + pRing->WrOff, pData, NumBytes); + pRing->WrOff += NumBytes; +#endif + break; + } else { + // + // Wrap-around necessary, write until wrap-around and reset WrOff + // +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + pDst = pRing->pBuffer + pRing->WrOff; + NumBytes -= Avail; + while (Avail--) { + *pDst++ = *pData++; + }; + pRing->WrOff = 0; +#else + SEGGER_RTT_MEMCPY(pRing->pBuffer + pRing->WrOff, pData, Avail); + pData += Avail; + pRing->WrOff = 0; + NumBytes -= Avail; +#endif + Avail = (pRing->SizeOfBuffer - 1); + } + } while (NumBytes); +} + +/********************************************************************* +* +* SEGGER_RTT_WriteSkipNoLock +* +* Function description +* Stores a specified number of characters in SEGGER RTT +* control block which is then read by the host. +* SEGGER_RTT_WriteSkipNoLock does not lock the application and +* skips all data, if the data does not fit into the buffer. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* MUST be > 0!!! +* This is done for performance reasons, so no initial check has do be done. +* +* Return value +* 1: Data has been copied +* 0: No space, data has not been copied +* +* Notes +* (1) If there is not enough space in the "Up"-buffer, all data is dropped. +* (2) For performance reasons this function does not call Init() +* and may only be called after RTT has been initialized. +* Either by calling SEGGER_RTT_Init() or calling another RTT API function first. +*/ +#if (RTT_USE_ASM == 0) +unsigned SEGGER_RTT_WriteSkipNoLock(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { + const char* pData; + SEGGER_RTT_BUFFER_UP* pRing; + unsigned Avail; + unsigned RdOff; + unsigned WrOff; + unsigned Rem; + // + // Cases: + // 1) RdOff <= WrOff => Space until wrap-around is sufficient + // 2) RdOff <= WrOff => Space after wrap-around needed (copy in 2 chunks) + // 3) RdOff < WrOff => No space in buf + // 4) RdOff > WrOff => Space is sufficient + // 5) RdOff > WrOff => No space in buf + // + // 1) is the most common case for large buffers and assuming that J-Link reads the data fast enough + // + pData = (const char *)pBuffer; + pRing = &_SEGGER_RTT.aUp[BufferIndex]; + RdOff = pRing->RdOff; + WrOff = pRing->WrOff; + if (RdOff <= WrOff) { // Case 1), 2) or 3) + Avail = pRing->SizeOfBuffer - WrOff - 1u; // Space until wrap-around (assume 1 byte not usable for case that RdOff == 0) + if (Avail >= NumBytes) { // Case 1)? +CopyStraight: + memcpy(pRing->pBuffer + WrOff, pData, NumBytes); + pRing->WrOff = WrOff + NumBytes; + return 1; + } + Avail += RdOff; // Space incl. wrap-around + if (Avail >= NumBytes) { // Case 2? => If not, we have case 3) (does not fit) + Rem = pRing->SizeOfBuffer - WrOff; // Space until end of buffer + memcpy(pRing->pBuffer + WrOff, pData, Rem); // Copy 1st chunk + NumBytes -= Rem; + // + // Special case: First check that assumed RdOff == 0 calculated that last element before wrap-around could not be used + // But 2nd check (considering space until wrap-around and until RdOff) revealed that RdOff is not 0, so we can use the last element + // In this case, we may use a copy straight until buffer end anyway without needing to copy 2 chunks + // Therefore, check if 2nd memcpy is necessary at all + // + if (NumBytes) { + memcpy(pRing->pBuffer, pData + Rem, NumBytes); + } + pRing->WrOff = NumBytes; + return 1; + } + } else { // Potential case 4) + Avail = RdOff - WrOff - 1u; + if (Avail >= NumBytes) { // Case 4)? => If not, we have case 5) (does not fit) + goto CopyStraight; + } + } + return 0; // No space in buffer +} +#endif + +/********************************************************************* +* +* SEGGER_RTT_WriteDownBufferNoLock +* +* Function description +* Stores a specified number of characters in SEGGER RTT +* control block inside a buffer. +* SEGGER_RTT_WriteDownBufferNoLock does not lock the application. +* Used to do the same operation that J-Link does, to transfer +* RTT data from other channels, such as TCP/IP or UART. +* +* Parameters +* BufferIndex Index of "Down"-buffer to be used. +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* +* Return value +* Number of bytes which have been stored in the "Down"-buffer. +* +* Notes +* (1) Data is stored according to buffer flags. +* (2) For performance reasons this function does not call Init() +* and may only be called after RTT has been initialized. +* Either by calling SEGGER_RTT_Init() or calling another RTT API function first. +* +* Additional information +* This function must not be called when J-Link might also do RTT. +*/ +unsigned SEGGER_RTT_WriteDownBufferNoLock(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { + unsigned Status; + unsigned Avail; + const char* pData; + SEGGER_RTT_BUFFER_UP* pRing; + + pData = (const char *)pBuffer; + // + // Get "to-target" ring buffer. + // It is save to cast that to a "to-host" buffer. Up and Down buffer differ in volatility of offsets that might be modified by J-Link. + // + pRing = (SEGGER_RTT_BUFFER_UP*)&_SEGGER_RTT.aDown[BufferIndex]; + // + // How we output depends upon the mode... + // + switch (pRing->Flags) { + case SEGGER_RTT_MODE_NO_BLOCK_SKIP: + // + // If we are in skip mode and there is no space for the whole + // of this output, don't bother. + // + Avail = _GetAvailWriteSpace(pRing); + if (Avail < NumBytes) { + Status = 0u; + } else { + Status = NumBytes; + _WriteNoCheck(pRing, pData, NumBytes); + } + break; + case SEGGER_RTT_MODE_NO_BLOCK_TRIM: + // + // If we are in trim mode, trim to what we can output without blocking. + // + Avail = _GetAvailWriteSpace(pRing); + Status = Avail < NumBytes ? Avail : NumBytes; + _WriteNoCheck(pRing, pData, Status); + break; + case SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL: + // + // If we are in blocking mode, output everything. + // + Status = _WriteBlocking(pRing, pData, NumBytes); + break; + default: + Status = 0u; + break; + } + // + // Finish up. + // + return Status; +} + +/********************************************************************* +* +* SEGGER_RTT_WriteNoLock +* +* Function description +* Stores a specified number of characters in SEGGER RTT +* control block which is then read by the host. +* SEGGER_RTT_WriteNoLock does not lock the application. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* +* Return value +* Number of bytes which have been stored in the "Up"-buffer. +* +* Notes +* (1) Data is stored according to buffer flags. +* (2) For performance reasons this function does not call Init() +* and may only be called after RTT has been initialized. +* Either by calling SEGGER_RTT_Init() or calling another RTT API function first. +*/ +unsigned SEGGER_RTT_WriteNoLock(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { + unsigned Status; + unsigned Avail; + const char* pData; + SEGGER_RTT_BUFFER_UP* pRing; + + pData = (const char *)pBuffer; + // + // Get "to-host" ring buffer. + // + pRing = &_SEGGER_RTT.aUp[BufferIndex]; + // + // How we output depends upon the mode... + // + switch (pRing->Flags) { + case SEGGER_RTT_MODE_NO_BLOCK_SKIP: + // + // If we are in skip mode and there is no space for the whole + // of this output, don't bother. + // + Avail = _GetAvailWriteSpace(pRing); + if (Avail < NumBytes) { + Status = 0u; + } else { + Status = NumBytes; + _WriteNoCheck(pRing, pData, NumBytes); + } + break; + case SEGGER_RTT_MODE_NO_BLOCK_TRIM: + // + // If we are in trim mode, trim to what we can output without blocking. + // + Avail = _GetAvailWriteSpace(pRing); + Status = Avail < NumBytes ? Avail : NumBytes; + _WriteNoCheck(pRing, pData, Status); + break; + case SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL: + // + // If we are in blocking mode, output everything. + // + Status = _WriteBlocking(pRing, pData, NumBytes); + break; + default: + Status = 0u; + break; + } + // + // Finish up. + // + return Status; +} + +/********************************************************************* +* +* SEGGER_RTT_WriteDownBuffer +* +* Function description +* Stores a specified number of characters in SEGGER RTT control block in a buffer. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* +* Return value +* Number of bytes which have been stored in the "Down"-buffer. +* +* Notes +* (1) Data is stored according to buffer flags. +* +* Additional information +* This function must not be called when J-Link might also do RTT. +* This function locks against all other RTT operations. I.e. during +* the write operation, writing from the application is also locked. +* If only one consumer writes to the down buffer, +* call SEGGER_RTT_WriteDownBufferNoLock() instead. +*/ +unsigned SEGGER_RTT_WriteDownBuffer(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { + unsigned Status; + // + INIT(); + SEGGER_RTT_LOCK(); + // + // Call the non-locking write function + // + Status = SEGGER_RTT_WriteDownBufferNoLock(BufferIndex, pBuffer, NumBytes); + // + // Finish up. + // + SEGGER_RTT_UNLOCK(); + // + return Status; +} + +/********************************************************************* +* +* SEGGER_RTT_Write +* +* Function description +* Stores a specified number of characters in SEGGER RTT +* control block which is then read by the host. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* +* Return value +* Number of bytes which have been stored in the "Up"-buffer. +* +* Notes +* (1) Data is stored according to buffer flags. +*/ +unsigned SEGGER_RTT_Write(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { + unsigned Status; + // + INIT(); + SEGGER_RTT_LOCK(); + // + // Call the non-locking write function + // + Status = SEGGER_RTT_WriteNoLock(BufferIndex, pBuffer, NumBytes); + // + // Finish up. + // + SEGGER_RTT_UNLOCK(); + // + return Status; +} + +/********************************************************************* +* +* SEGGER_RTT_WriteString +* +* Function description +* Stores string in SEGGER RTT control block. +* This data is read by the host. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* s Pointer to string. +* +* Return value +* Number of bytes which have been stored in the "Up"-buffer. +* +* Notes +* (1) Data is stored according to buffer flags. +* (2) String passed to this function has to be \0 terminated +* (3) \0 termination character is *not* stored in RTT buffer +*/ +unsigned SEGGER_RTT_WriteString(unsigned BufferIndex, const char* s) { + unsigned Len; + + Len = STRLEN(s); + return SEGGER_RTT_Write(BufferIndex, s, Len); +} + +/********************************************************************* +* +* SEGGER_RTT_PutCharSkipNoLock +* +* Function description +* Stores a single character/byte in SEGGER RTT buffer. +* SEGGER_RTT_PutCharSkipNoLock does not lock the application and +* skips the byte, if it does not fit into the buffer. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* c Byte to be stored. +* +* Return value +* Number of bytes which have been stored in the "Up"-buffer. +* +* Notes +* (1) If there is not enough space in the "Up"-buffer, the character is dropped. +* (2) For performance reasons this function does not call Init() +* and may only be called after RTT has been initialized. +* Either by calling SEGGER_RTT_Init() or calling another RTT API function first. +*/ + +unsigned SEGGER_RTT_PutCharSkipNoLock(unsigned BufferIndex, char c) { + SEGGER_RTT_BUFFER_UP* pRing; + unsigned WrOff; + unsigned Status; + // + // Get "to-host" ring buffer. + // + pRing = &_SEGGER_RTT.aUp[BufferIndex]; + // + // Get write position and handle wrap-around if necessary + // + WrOff = pRing->WrOff + 1; + if (WrOff == pRing->SizeOfBuffer) { + WrOff = 0; + } + // + // Output byte if free space is available + // + if (WrOff != pRing->RdOff) { + pRing->pBuffer[pRing->WrOff] = c; + pRing->WrOff = WrOff; + Status = 1; + } else { + Status = 0; + } + // + return Status; +} + +/********************************************************************* +* +* SEGGER_RTT_PutCharSkip +* +* Function description +* Stores a single character/byte in SEGGER RTT buffer. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* c Byte to be stored. +* +* Return value +* Number of bytes which have been stored in the "Up"-buffer. +* +* Notes +* (1) If there is not enough space in the "Up"-buffer, the character is dropped. +*/ + +unsigned SEGGER_RTT_PutCharSkip(unsigned BufferIndex, char c) { + SEGGER_RTT_BUFFER_UP* pRing; + unsigned WrOff; + unsigned Status; + // + // Prepare + // + INIT(); + SEGGER_RTT_LOCK(); + // + // Get "to-host" ring buffer. + // + pRing = &_SEGGER_RTT.aUp[BufferIndex]; + // + // Get write position and handle wrap-around if necessary + // + WrOff = pRing->WrOff + 1; + if (WrOff == pRing->SizeOfBuffer) { + WrOff = 0; + } + // + // Output byte if free space is available + // + if (WrOff != pRing->RdOff) { + pRing->pBuffer[pRing->WrOff] = c; + pRing->WrOff = WrOff; + Status = 1; + } else { + Status = 0; + } + // + // Finish up. + // + SEGGER_RTT_UNLOCK(); + // + return Status; +} + + /********************************************************************* +* +* SEGGER_RTT_PutChar +* +* Function description +* Stores a single character/byte in SEGGER RTT buffer. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* c Byte to be stored. +* +* Return value +* Number of bytes which have been stored in the "Up"-buffer. +* +* Notes +* (1) Data is stored according to buffer flags. +*/ + +unsigned SEGGER_RTT_PutChar(unsigned BufferIndex, char c) { + SEGGER_RTT_BUFFER_UP* pRing; + unsigned WrOff; + unsigned Status; + // + // Prepare + // + INIT(); + SEGGER_RTT_LOCK(); + // + // Get "to-host" ring buffer. + // + pRing = &_SEGGER_RTT.aUp[BufferIndex]; + // + // Get write position and handle wrap-around if necessary + // + WrOff = pRing->WrOff + 1; + if (WrOff == pRing->SizeOfBuffer) { + WrOff = 0; + } + // + // Wait for free space if mode is set to blocking + // + if (pRing->Flags == SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL) { + while (WrOff == pRing->RdOff) { + ; + } + } + // + // Output byte if free space is available + // + if (WrOff != pRing->RdOff) { + pRing->pBuffer[pRing->WrOff] = c; + pRing->WrOff = WrOff; + Status = 1; + } else { + Status = 0; + } + // + // Finish up. + // + SEGGER_RTT_UNLOCK(); + // + return Status; +} + +/********************************************************************* +* +* SEGGER_RTT_GetKey +* +* Function description +* Reads one character from the SEGGER RTT buffer. +* Host has previously stored data there. +* +* Return value +* < 0 - No character available (buffer empty). +* >= 0 - Character which has been read. (Possible values: 0 - 255) +* +* Notes +* (1) This function is only specified for accesses to RTT buffer 0. +*/ +int SEGGER_RTT_GetKey(void) { + char c; + int r; + + r = (int)SEGGER_RTT_Read(0u, &c, 1u); + if (r == 1) { + r = (int)(unsigned char)c; + } else { + r = -1; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_WaitKey +* +* Function description +* Waits until at least one character is avaible in the SEGGER RTT buffer. +* Once a character is available, it is read and this function returns. +* +* Return value +* >=0 - Character which has been read. +* +* Notes +* (1) This function is only specified for accesses to RTT buffer 0 +* (2) This function is blocking if no character is present in RTT buffer +*/ +int SEGGER_RTT_WaitKey(void) { + int r; + + do { + r = SEGGER_RTT_GetKey(); + } while (r < 0); + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_HasKey +* +* Function description +* Checks if at least one character for reading is available in the SEGGER RTT buffer. +* +* Return value +* == 0 - No characters are available to read. +* == 1 - At least one character is available. +* +* Notes +* (1) This function is only specified for accesses to RTT buffer 0 +*/ +int SEGGER_RTT_HasKey(void) { + unsigned RdOff; + int r; + + INIT(); + RdOff = _SEGGER_RTT.aDown[0].RdOff; + if (RdOff != _SEGGER_RTT.aDown[0].WrOff) { + r = 1; + } else { + r = 0; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_HasData +* +* Function description +* Check if there is data from the host in the given buffer. +* +* Return value: +* ==0: No data +* !=0: Data in buffer +* +*/ +unsigned SEGGER_RTT_HasData(unsigned BufferIndex) { + SEGGER_RTT_BUFFER_DOWN* pRing; + unsigned v; + + pRing = &_SEGGER_RTT.aDown[BufferIndex]; + v = pRing->WrOff; + return v - pRing->RdOff; +} + +/********************************************************************* +* +* SEGGER_RTT_HasDataUp +* +* Function description +* Check if there is data remaining to be sent in the given buffer. +* +* Return value: +* ==0: No data +* !=0: Data in buffer +* +*/ +unsigned SEGGER_RTT_HasDataUp(unsigned BufferIndex) { + SEGGER_RTT_BUFFER_UP* pRing; + unsigned v; + + pRing = &_SEGGER_RTT.aUp[BufferIndex]; + v = pRing->RdOff; + return pRing->WrOff - v; +} + +/********************************************************************* +* +* SEGGER_RTT_AllocDownBuffer +* +* Function description +* Run-time configuration of the next down-buffer (H->T). +* The next buffer, which is not used yet is configured. +* This includes: Buffer address, size, name, flags, ... +* +* Parameters +* sName Pointer to a constant name string. +* pBuffer Pointer to a buffer to be used. +* BufferSize Size of the buffer. +* Flags Operating modes. Define behavior if buffer is full (not enough space for entire message). +* +* Return value +* >= 0 - O.K. Buffer Index +* < 0 - Error +*/ +int SEGGER_RTT_AllocDownBuffer(const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags) { + int BufferIndex; + + INIT(); + SEGGER_RTT_LOCK(); + BufferIndex = 0; + do { + if (_SEGGER_RTT.aDown[BufferIndex].pBuffer == NULL) { + break; + } + BufferIndex++; + } while (BufferIndex < _SEGGER_RTT.MaxNumDownBuffers); + if (BufferIndex < _SEGGER_RTT.MaxNumDownBuffers) { + _SEGGER_RTT.aDown[BufferIndex].sName = sName; + _SEGGER_RTT.aDown[BufferIndex].pBuffer = (char*)pBuffer; + _SEGGER_RTT.aDown[BufferIndex].SizeOfBuffer = BufferSize; + _SEGGER_RTT.aDown[BufferIndex].RdOff = 0u; + _SEGGER_RTT.aDown[BufferIndex].WrOff = 0u; + _SEGGER_RTT.aDown[BufferIndex].Flags = Flags; + } else { + BufferIndex = -1; + } + SEGGER_RTT_UNLOCK(); + return BufferIndex; +} + +/********************************************************************* +* +* SEGGER_RTT_AllocUpBuffer +* +* Function description +* Run-time configuration of the next up-buffer (T->H). +* The next buffer, which is not used yet is configured. +* This includes: Buffer address, size, name, flags, ... +* +* Parameters +* sName Pointer to a constant name string. +* pBuffer Pointer to a buffer to be used. +* BufferSize Size of the buffer. +* Flags Operating modes. Define behavior if buffer is full (not enough space for entire message). +* +* Return value +* >= 0 - O.K. Buffer Index +* < 0 - Error +*/ +int SEGGER_RTT_AllocUpBuffer(const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags) { + int BufferIndex; + + INIT(); + SEGGER_RTT_LOCK(); + BufferIndex = 0; + do { + if (_SEGGER_RTT.aUp[BufferIndex].pBuffer == NULL) { + break; + } + BufferIndex++; + } while (BufferIndex < _SEGGER_RTT.MaxNumUpBuffers); + if (BufferIndex < _SEGGER_RTT.MaxNumUpBuffers) { + _SEGGER_RTT.aUp[BufferIndex].sName = sName; + _SEGGER_RTT.aUp[BufferIndex].pBuffer = (char*)pBuffer; + _SEGGER_RTT.aUp[BufferIndex].SizeOfBuffer = BufferSize; + _SEGGER_RTT.aUp[BufferIndex].RdOff = 0u; + _SEGGER_RTT.aUp[BufferIndex].WrOff = 0u; + _SEGGER_RTT.aUp[BufferIndex].Flags = Flags; + } else { + BufferIndex = -1; + } + SEGGER_RTT_UNLOCK(); + return BufferIndex; +} + +/********************************************************************* +* +* SEGGER_RTT_ConfigUpBuffer +* +* Function description +* Run-time configuration of a specific up-buffer (T->H). +* Buffer to be configured is specified by index. +* This includes: Buffer address, size, name, flags, ... +* +* Parameters +* BufferIndex Index of the buffer to configure. +* sName Pointer to a constant name string. +* pBuffer Pointer to a buffer to be used. +* BufferSize Size of the buffer. +* Flags Operating modes. Define behavior if buffer is full (not enough space for entire message). +* +* Return value +* >= 0 - O.K. +* < 0 - Error +* +* Additional information +* Buffer 0 is configured on compile-time. +* May only be called once per buffer. +* Buffer name and flags can be reconfigured using the appropriate functions. +*/ +int SEGGER_RTT_ConfigUpBuffer(unsigned BufferIndex, const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags) { + int r; + + INIT(); + if (BufferIndex < (unsigned)_SEGGER_RTT.MaxNumUpBuffers) { + SEGGER_RTT_LOCK(); + if (BufferIndex > 0u) { + _SEGGER_RTT.aUp[BufferIndex].sName = sName; + _SEGGER_RTT.aUp[BufferIndex].pBuffer = (char*)pBuffer; + _SEGGER_RTT.aUp[BufferIndex].SizeOfBuffer = BufferSize; + _SEGGER_RTT.aUp[BufferIndex].RdOff = 0u; + _SEGGER_RTT.aUp[BufferIndex].WrOff = 0u; + } + _SEGGER_RTT.aUp[BufferIndex].Flags = Flags; + SEGGER_RTT_UNLOCK(); + r = 0; + } else { + r = -1; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_ConfigDownBuffer +* +* Function description +* Run-time configuration of a specific down-buffer (H->T). +* Buffer to be configured is specified by index. +* This includes: Buffer address, size, name, flags, ... +* +* Parameters +* BufferIndex Index of the buffer to configure. +* sName Pointer to a constant name string. +* pBuffer Pointer to a buffer to be used. +* BufferSize Size of the buffer. +* Flags Operating modes. Define behavior if buffer is full (not enough space for entire message). +* +* Return value +* >= 0 O.K. +* < 0 Error +* +* Additional information +* Buffer 0 is configured on compile-time. +* May only be called once per buffer. +* Buffer name and flags can be reconfigured using the appropriate functions. +*/ +int SEGGER_RTT_ConfigDownBuffer(unsigned BufferIndex, const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags) { + int r; + + INIT(); + if (BufferIndex < (unsigned)_SEGGER_RTT.MaxNumDownBuffers) { + SEGGER_RTT_LOCK(); + if (BufferIndex > 0u) { + _SEGGER_RTT.aDown[BufferIndex].sName = sName; + _SEGGER_RTT.aDown[BufferIndex].pBuffer = (char*)pBuffer; + _SEGGER_RTT.aDown[BufferIndex].SizeOfBuffer = BufferSize; + _SEGGER_RTT.aDown[BufferIndex].RdOff = 0u; + _SEGGER_RTT.aDown[BufferIndex].WrOff = 0u; + } + _SEGGER_RTT.aDown[BufferIndex].Flags = Flags; + SEGGER_RTT_UNLOCK(); + r = 0; + } else { + r = -1; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_SetNameUpBuffer +* +* Function description +* Run-time configuration of a specific up-buffer name (T->H). +* Buffer to be configured is specified by index. +* +* Parameters +* BufferIndex Index of the buffer to renamed. +* sName Pointer to a constant name string. +* +* Return value +* >= 0 O.K. +* < 0 Error +*/ +int SEGGER_RTT_SetNameUpBuffer(unsigned BufferIndex, const char* sName) { + int r; + + INIT(); + if (BufferIndex < (unsigned)_SEGGER_RTT.MaxNumUpBuffers) { + SEGGER_RTT_LOCK(); + _SEGGER_RTT.aUp[BufferIndex].sName = sName; + SEGGER_RTT_UNLOCK(); + r = 0; + } else { + r = -1; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_SetNameDownBuffer +* +* Function description +* Run-time configuration of a specific Down-buffer name (T->H). +* Buffer to be configured is specified by index. +* +* Parameters +* BufferIndex Index of the buffer to renamed. +* sName Pointer to a constant name string. +* +* Return value +* >= 0 O.K. +* < 0 Error +*/ +int SEGGER_RTT_SetNameDownBuffer(unsigned BufferIndex, const char* sName) { + int r; + + INIT(); + if (BufferIndex < (unsigned)_SEGGER_RTT.MaxNumDownBuffers) { + SEGGER_RTT_LOCK(); + _SEGGER_RTT.aDown[BufferIndex].sName = sName; + SEGGER_RTT_UNLOCK(); + r = 0; + } else { + r = -1; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_SetFlagsUpBuffer +* +* Function description +* Run-time configuration of specific up-buffer flags (T->H). +* Buffer to be configured is specified by index. +* +* Parameters +* BufferIndex Index of the buffer. +* Flags Flags to set for the buffer. +* +* Return value +* >= 0 O.K. +* < 0 Error +*/ +int SEGGER_RTT_SetFlagsUpBuffer(unsigned BufferIndex, unsigned Flags) { + int r; + + INIT(); + if (BufferIndex < (unsigned)_SEGGER_RTT.MaxNumUpBuffers) { + SEGGER_RTT_LOCK(); + _SEGGER_RTT.aUp[BufferIndex].Flags = Flags; + SEGGER_RTT_UNLOCK(); + r = 0; + } else { + r = -1; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_SetFlagsDownBuffer +* +* Function description +* Run-time configuration of specific Down-buffer flags (T->H). +* Buffer to be configured is specified by index. +* +* Parameters +* BufferIndex Index of the buffer to renamed. +* Flags Flags to set for the buffer. +* +* Return value +* >= 0 O.K. +* < 0 Error +*/ +int SEGGER_RTT_SetFlagsDownBuffer(unsigned BufferIndex, unsigned Flags) { + int r; + + INIT(); + if (BufferIndex < (unsigned)_SEGGER_RTT.MaxNumDownBuffers) { + SEGGER_RTT_LOCK(); + _SEGGER_RTT.aDown[BufferIndex].Flags = Flags; + SEGGER_RTT_UNLOCK(); + r = 0; + } else { + r = -1; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_Init +* +* Function description +* Initializes the RTT Control Block. +* Should be used in RAM targets, at start of the application. +* +*/ +void SEGGER_RTT_Init (void) { + _DoInit(); +} + +/********************************************************************* +* +* SEGGER_RTT_SetTerminal +* +* Function description +* Sets the terminal to be used for output on channel 0. +* +* Parameters +* TerminalId Index of the terminal. +* +* Return value +* >= 0 O.K. +* < 0 Error (e.g. if RTT is configured for non-blocking mode and there was no space in the buffer to set the new terminal Id) +*/ +int SEGGER_RTT_SetTerminal (unsigned char TerminalId) { + unsigned char ac[2]; + SEGGER_RTT_BUFFER_UP* pRing; + unsigned Avail; + int r; + // + INIT(); + // + r = 0; + ac[0] = 0xFFu; + if (TerminalId < sizeof(_aTerminalId)) { // We only support a certain number of channels + ac[1] = _aTerminalId[TerminalId]; + pRing = &_SEGGER_RTT.aUp[0]; // Buffer 0 is always reserved for terminal I/O, so we can use index 0 here, fixed + SEGGER_RTT_LOCK(); // Lock to make sure that no other task is writing into buffer, while we are and number of free bytes in buffer does not change downwards after checking and before writing + if ((pRing->Flags & SEGGER_RTT_MODE_MASK) == SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL) { + _ActiveTerminal = TerminalId; + _WriteBlocking(pRing, (const char*)ac, 2u); + } else { // Skipping mode or trim mode? => We cannot trim this command so handling is the same for both modes + Avail = _GetAvailWriteSpace(pRing); + if (Avail >= 2) { + _ActiveTerminal = TerminalId; // Only change active terminal in case of success + _WriteNoCheck(pRing, (const char*)ac, 2u); + } else { + r = -1; + } + } + SEGGER_RTT_UNLOCK(); + } else { + r = -1; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_TerminalOut +* +* Function description +* Writes a string to the given terminal +* without changing the terminal for channel 0. +* +* Parameters +* TerminalId Index of the terminal. +* s String to be printed on the terminal. +* +* Return value +* >= 0 - Number of bytes written. +* < 0 - Error. +* +*/ +int SEGGER_RTT_TerminalOut (unsigned char TerminalId, const char* s) { + int Status; + unsigned FragLen; + unsigned Avail; + SEGGER_RTT_BUFFER_UP* pRing; + // + INIT(); + // + // Validate terminal ID. + // + if (TerminalId < (char)sizeof(_aTerminalId)) { // We only support a certain number of channels + // + // Get "to-host" ring buffer. + // + pRing = &_SEGGER_RTT.aUp[0]; + // + // Need to be able to change terminal, write data, change back. + // Compute the fixed and variable sizes. + // + FragLen = STRLEN(s); + // + // How we output depends upon the mode... + // + SEGGER_RTT_LOCK(); + Avail = _GetAvailWriteSpace(pRing); + switch (pRing->Flags & SEGGER_RTT_MODE_MASK) { + case SEGGER_RTT_MODE_NO_BLOCK_SKIP: + // + // If we are in skip mode and there is no space for the whole + // of this output, don't bother switching terminals at all. + // + if (Avail < (FragLen + 4u)) { + Status = 0; + } else { + _PostTerminalSwitch(pRing, TerminalId); + Status = (int)_WriteBlocking(pRing, s, FragLen); + _PostTerminalSwitch(pRing, _ActiveTerminal); + } + break; + case SEGGER_RTT_MODE_NO_BLOCK_TRIM: + // + // If we are in trim mode and there is not enough space for everything, + // trim the output but always include the terminal switch. If no room + // for terminal switch, skip that totally. + // + if (Avail < 4u) { + Status = -1; + } else { + _PostTerminalSwitch(pRing, TerminalId); + Status = (int)_WriteBlocking(pRing, s, (FragLen < (Avail - 4u)) ? FragLen : (Avail - 4u)); + _PostTerminalSwitch(pRing, _ActiveTerminal); + } + break; + case SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL: + // + // If we are in blocking mode, output everything. + // + _PostTerminalSwitch(pRing, TerminalId); + Status = (int)_WriteBlocking(pRing, s, FragLen); + _PostTerminalSwitch(pRing, _ActiveTerminal); + break; + default: + Status = -1; + break; + } + // + // Finish up. + // + SEGGER_RTT_UNLOCK(); + } else { + Status = -1; + } + return Status; +} + +/********************************************************************* +* +* SEGGER_RTT_GetAvailWriteSpace +* +* Function description +* Returns the number of bytes available in the ring buffer. +* +* Parameters +* BufferIndex Index of the up buffer. +* +* Return value +* Number of bytes that are free in the selected up buffer. +*/ +unsigned SEGGER_RTT_GetAvailWriteSpace (unsigned BufferIndex){ + return _GetAvailWriteSpace(&_SEGGER_RTT.aUp[BufferIndex]); +} + + +/********************************************************************* +* +* SEGGER_RTT_GetBytesInBuffer() +* +* Function description +* Returns the number of bytes currently used in the up buffer. +* +* Parameters +* BufferIndex Index of the up buffer. +* +* Return value +* Number of bytes that are used in the buffer. +*/ +unsigned SEGGER_RTT_GetBytesInBuffer(unsigned BufferIndex) { + unsigned RdOff; + unsigned WrOff; + unsigned r; + // + // Avoid warnings regarding volatile access order. It's not a problem + // in this case, but dampen compiler enthusiasm. + // + RdOff = _SEGGER_RTT.aUp[BufferIndex].RdOff; + WrOff = _SEGGER_RTT.aUp[BufferIndex].WrOff; + if (RdOff <= WrOff) { + r = WrOff - RdOff; + } else { + r = _SEGGER_RTT.aUp[BufferIndex].SizeOfBuffer - (WrOff - RdOff); + } + return r; +} + +/*************************** End of file ****************************/ diff --git a/Marlin/lib/rtt/src/SEGGER_RTT.h b/Marlin/lib/rtt/src/SEGGER_RTT.h new file mode 100644 index 0000000000..b1e4b53dc9 --- /dev/null +++ b/Marlin/lib/rtt/src/SEGGER_RTT.h @@ -0,0 +1,326 @@ +/********************************************************************* +* SEGGER Microcontroller GmbH * +* The Embedded Experts * +********************************************************************** +* * +* (c) 1995 - 2019 SEGGER Microcontroller GmbH * +* * +* www.segger.com Support: support@segger.com * +* * +********************************************************************** +* * +* SEGGER RTT * Real Time Transfer for embedded targets * +* * +********************************************************************** +* * +* All rights reserved. * +* * +* SEGGER strongly recommends to not make any changes * +* to or modify the source code of this software in order to stay * +* compatible with the RTT protocol and J-Link. * +* * +* Redistribution and use in source and binary forms, with or * +* without modification, are permitted provided that the following * +* condition is met: * +* * +* o Redistributions of source code must retain the above copyright * +* notice, this condition and the following disclaimer. * +* * +* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * +* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * +* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * +* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * +* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * +* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * +* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * +* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * +* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * +* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * +* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * +* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * +* DAMAGE. * +* * +********************************************************************** +* * +* RTT version: 6.64b * +* * +********************************************************************** + +---------------------------END-OF-HEADER------------------------------ +File : SEGGER_RTT.h +Purpose : Implementation of SEGGER real-time transfer which allows + real-time communication on targets which support debugger + memory accesses while the CPU is running. +Revision: $Rev: 17697 $ +---------------------------------------------------------------------- +*/ + +#ifndef SEGGER_RTT_H +#define SEGGER_RTT_H + +#include "SEGGER_RTT_Conf.h" + + + +/********************************************************************* +* +* Defines, defaults +* +********************************************************************** +*/ +#ifndef RTT_USE_ASM + #if (defined __SES_ARM) // SEGGER Embedded Studio + #define _CC_HAS_RTT_ASM_SUPPORT 1 + #elif (defined __CROSSWORKS_ARM) // Rowley Crossworks + #define _CC_HAS_RTT_ASM_SUPPORT 1 + #elif (defined __GNUC__) // GCC + #define _CC_HAS_RTT_ASM_SUPPORT 1 + #elif (defined __clang__) // Clang compiler + #define _CC_HAS_RTT_ASM_SUPPORT 1 + #elif (defined __IASMARM__) // IAR assembler + #define _CC_HAS_RTT_ASM_SUPPORT 1 + #elif (defined __ICCARM__) // IAR compiler + #define _CC_HAS_RTT_ASM_SUPPORT 1 + #else + #define _CC_HAS_RTT_ASM_SUPPORT 0 + #endif + #if (defined __ARM_ARCH_7M__) // Cortex-M3/4 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #elif (defined __ARM_ARCH_7EM__) // Cortex-M7 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #elif (defined __ARM_ARCH_8M_MAIN__) // Cortex-M33 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #elif (defined __ARM7M__) // IAR Cortex-M3/4 + #if (__CORE__ == __ARM7M__) + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #else + #define _CORE_HAS_RTT_ASM_SUPPORT 0 + #endif + #elif (defined __ARM7EM__) // IAR Cortex-M7 + #if (__CORE__ == __ARM7EM__) + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #else + #define _CORE_HAS_RTT_ASM_SUPPORT 0 + #endif + #else + #define _CORE_HAS_RTT_ASM_SUPPORT 0 + #endif + // + // If IDE and core support the ASM version, enable ASM version by default + // + #if (_CC_HAS_RTT_ASM_SUPPORT && _CORE_HAS_RTT_ASM_SUPPORT) + #define RTT_USE_ASM (1) + #else + #define RTT_USE_ASM (0) + #endif +#endif + +#ifndef SEGGER_RTT_ASM // defined when SEGGER_RTT.h is included from assembly file +#include +#include + +/********************************************************************* +* +* Defines, fixed +* +********************************************************************** +*/ + +/********************************************************************* +* +* Types +* +********************************************************************** +*/ + +// +// Description for a circular buffer (also called "ring buffer") +// which is used as up-buffer (T->H) +// +typedef struct { + const char* sName; // Optional name. Standard names so far are: "Terminal", "SysView", "J-Scope_t4i4" + char* pBuffer; // Pointer to start of buffer + unsigned SizeOfBuffer; // Buffer size in bytes. Note that one byte is lost, as this implementation does not fill up the buffer in order to avoid the problem of being unable to distinguish between full and empty. + unsigned WrOff; // Position of next item to be written by either target. + volatile unsigned RdOff; // Position of next item to be read by host. Must be volatile since it may be modified by host. + unsigned Flags; // Contains configuration flags +} SEGGER_RTT_BUFFER_UP; + +// +// Description for a circular buffer (also called "ring buffer") +// which is used as down-buffer (H->T) +// +typedef struct { + const char* sName; // Optional name. Standard names so far are: "Terminal", "SysView", "J-Scope_t4i4" + char* pBuffer; // Pointer to start of buffer + unsigned SizeOfBuffer; // Buffer size in bytes. Note that one byte is lost, as this implementation does not fill up the buffer in order to avoid the problem of being unable to distinguish between full and empty. + volatile unsigned WrOff; // Position of next item to be written by host. Must be volatile since it may be modified by host. + unsigned RdOff; // Position of next item to be read by target (down-buffer). + unsigned Flags; // Contains configuration flags +} SEGGER_RTT_BUFFER_DOWN; + +// +// RTT control block which describes the number of buffers available +// as well as the configuration for each buffer +// +// +typedef struct { + char acID[16]; // Initialized to "SEGGER RTT" + int MaxNumUpBuffers; // Initialized to SEGGER_RTT_MAX_NUM_UP_BUFFERS (type. 2) + int MaxNumDownBuffers; // Initialized to SEGGER_RTT_MAX_NUM_DOWN_BUFFERS (type. 2) + SEGGER_RTT_BUFFER_UP aUp[SEGGER_RTT_MAX_NUM_UP_BUFFERS]; // Up buffers, transferring information up from target via debug probe to host + SEGGER_RTT_BUFFER_DOWN aDown[SEGGER_RTT_MAX_NUM_DOWN_BUFFERS]; // Down buffers, transferring information down from host via debug probe to target +} SEGGER_RTT_CB; + +/********************************************************************* +* +* Global data +* +********************************************************************** +*/ +extern SEGGER_RTT_CB _SEGGER_RTT; + +/********************************************************************* +* +* RTT API functions +* +********************************************************************** +*/ +#ifdef __cplusplus + extern "C" { +#endif +int SEGGER_RTT_AllocDownBuffer (const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags); +int SEGGER_RTT_AllocUpBuffer (const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags); +int SEGGER_RTT_ConfigUpBuffer (unsigned BufferIndex, const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags); +int SEGGER_RTT_ConfigDownBuffer (unsigned BufferIndex, const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags); +int SEGGER_RTT_GetKey (void); +unsigned SEGGER_RTT_HasData (unsigned BufferIndex); +int SEGGER_RTT_HasKey (void); +unsigned SEGGER_RTT_HasDataUp (unsigned BufferIndex); +void SEGGER_RTT_Init (void); +unsigned SEGGER_RTT_Read (unsigned BufferIndex, void* pBuffer, unsigned BufferSize); +unsigned SEGGER_RTT_ReadNoLock (unsigned BufferIndex, void* pData, unsigned BufferSize); +int SEGGER_RTT_SetNameDownBuffer (unsigned BufferIndex, const char* sName); +int SEGGER_RTT_SetNameUpBuffer (unsigned BufferIndex, const char* sName); +int SEGGER_RTT_SetFlagsDownBuffer (unsigned BufferIndex, unsigned Flags); +int SEGGER_RTT_SetFlagsUpBuffer (unsigned BufferIndex, unsigned Flags); +int SEGGER_RTT_WaitKey (void); +unsigned SEGGER_RTT_Write (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); +unsigned SEGGER_RTT_WriteNoLock (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); +unsigned SEGGER_RTT_WriteSkipNoLock (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); +unsigned SEGGER_RTT_ASM_WriteSkipNoLock (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); +unsigned SEGGER_RTT_WriteString (unsigned BufferIndex, const char* s); +void SEGGER_RTT_WriteWithOverwriteNoLock(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); +unsigned SEGGER_RTT_PutChar (unsigned BufferIndex, char c); +unsigned SEGGER_RTT_PutCharSkip (unsigned BufferIndex, char c); +unsigned SEGGER_RTT_PutCharSkipNoLock (unsigned BufferIndex, char c); +unsigned SEGGER_RTT_GetAvailWriteSpace (unsigned BufferIndex); +unsigned SEGGER_RTT_GetBytesInBuffer (unsigned BufferIndex); +// +// Function macro for performance optimization +// +#define SEGGER_RTT_HASDATA(n) (_SEGGER_RTT.aDown[n].WrOff - _SEGGER_RTT.aDown[n].RdOff) + +#if RTT_USE_ASM + #define SEGGER_RTT_WriteSkipNoLock SEGGER_RTT_ASM_WriteSkipNoLock +#endif + +/********************************************************************* +* +* RTT transfer functions to send RTT data via other channels. +* +********************************************************************** +*/ +unsigned SEGGER_RTT_ReadUpBuffer (unsigned BufferIndex, void* pBuffer, unsigned BufferSize); +unsigned SEGGER_RTT_ReadUpBufferNoLock (unsigned BufferIndex, void* pData, unsigned BufferSize); +unsigned SEGGER_RTT_WriteDownBuffer (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); +unsigned SEGGER_RTT_WriteDownBufferNoLock (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); + +#define SEGGER_RTT_HASDATA_UP(n) (_SEGGER_RTT.aUp[n].WrOff - _SEGGER_RTT.aUp[n].RdOff) + +/********************************************************************* +* +* RTT "Terminal" API functions +* +********************************************************************** +*/ +int SEGGER_RTT_SetTerminal (unsigned char TerminalId); +int SEGGER_RTT_TerminalOut (unsigned char TerminalId, const char* s); + +/********************************************************************* +* +* RTT printf functions (require SEGGER_RTT_printf.c) +* +********************************************************************** +*/ +int SEGGER_RTT_printf(unsigned BufferIndex, const char * sFormat, ...); +int SEGGER_RTT_vprintf(unsigned BufferIndex, const char * sFormat, va_list * pParamList); + +#ifdef __cplusplus + } +#endif + +#endif // ifndef(SEGGER_RTT_ASM) + +/********************************************************************* +* +* Defines +* +********************************************************************** +*/ + +// +// Operating modes. Define behavior if buffer is full (not enough space for entire message) +// +#define SEGGER_RTT_MODE_NO_BLOCK_SKIP (0) // Skip. Do not block, output nothing. (Default) +#define SEGGER_RTT_MODE_NO_BLOCK_TRIM (1) // Trim: Do not block, output as much as fits. +#define SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL (2) // Block: Wait until there is space in the buffer. +#define SEGGER_RTT_MODE_MASK (3) + +// +// Control sequences, based on ANSI. +// Can be used to control color, and clear the screen +// +#define RTT_CTRL_RESET "\x1B[0m" // Reset to default colors +#define RTT_CTRL_CLEAR "\x1B[2J" // Clear screen, reposition cursor to top left + +#define RTT_CTRL_TEXT_BLACK "\x1B[2;30m" +#define RTT_CTRL_TEXT_RED "\x1B[2;31m" +#define RTT_CTRL_TEXT_GREEN "\x1B[2;32m" +#define RTT_CTRL_TEXT_YELLOW "\x1B[2;33m" +#define RTT_CTRL_TEXT_BLUE "\x1B[2;34m" +#define RTT_CTRL_TEXT_MAGENTA "\x1B[2;35m" +#define RTT_CTRL_TEXT_CYAN "\x1B[2;36m" +#define RTT_CTRL_TEXT_WHITE "\x1B[2;37m" + +#define RTT_CTRL_TEXT_BRIGHT_BLACK "\x1B[1;30m" +#define RTT_CTRL_TEXT_BRIGHT_RED "\x1B[1;31m" +#define RTT_CTRL_TEXT_BRIGHT_GREEN "\x1B[1;32m" +#define RTT_CTRL_TEXT_BRIGHT_YELLOW "\x1B[1;33m" +#define RTT_CTRL_TEXT_BRIGHT_BLUE "\x1B[1;34m" +#define RTT_CTRL_TEXT_BRIGHT_MAGENTA "\x1B[1;35m" +#define RTT_CTRL_TEXT_BRIGHT_CYAN "\x1B[1;36m" +#define RTT_CTRL_TEXT_BRIGHT_WHITE "\x1B[1;37m" + +#define RTT_CTRL_BG_BLACK "\x1B[24;40m" +#define RTT_CTRL_BG_RED "\x1B[24;41m" +#define RTT_CTRL_BG_GREEN "\x1B[24;42m" +#define RTT_CTRL_BG_YELLOW "\x1B[24;43m" +#define RTT_CTRL_BG_BLUE "\x1B[24;44m" +#define RTT_CTRL_BG_MAGENTA "\x1B[24;45m" +#define RTT_CTRL_BG_CYAN "\x1B[24;46m" +#define RTT_CTRL_BG_WHITE "\x1B[24;47m" + +#define RTT_CTRL_BG_BRIGHT_BLACK "\x1B[4;40m" +#define RTT_CTRL_BG_BRIGHT_RED "\x1B[4;41m" +#define RTT_CTRL_BG_BRIGHT_GREEN "\x1B[4;42m" +#define RTT_CTRL_BG_BRIGHT_YELLOW "\x1B[4;43m" +#define RTT_CTRL_BG_BRIGHT_BLUE "\x1B[4;44m" +#define RTT_CTRL_BG_BRIGHT_MAGENTA "\x1B[4;45m" +#define RTT_CTRL_BG_BRIGHT_CYAN "\x1B[4;46m" +#define RTT_CTRL_BG_BRIGHT_WHITE "\x1B[4;47m" + + +#endif + +/*************************** End of file ****************************/ diff --git a/Marlin/lib/rtt/src/SEGGER_RTT_Conf.h b/Marlin/lib/rtt/src/SEGGER_RTT_Conf.h new file mode 100644 index 0000000000..3019906290 --- /dev/null +++ b/Marlin/lib/rtt/src/SEGGER_RTT_Conf.h @@ -0,0 +1,389 @@ +/********************************************************************* +* SEGGER Microcontroller GmbH * +* The Embedded Experts * +********************************************************************** +* * +* (c) 1995 - 2019 SEGGER Microcontroller GmbH * +* * +* www.segger.com Support: support@segger.com * +* * +********************************************************************** +* * +* SEGGER RTT * Real Time Transfer for embedded targets * +* * +********************************************************************** +* * +* All rights reserved. * +* * +* SEGGER strongly recommends to not make any changes * +* to or modify the source code of this software in order to stay * +* compatible with the RTT protocol and J-Link. * +* * +* Redistribution and use in source and binary forms, with or * +* without modification, are permitted provided that the following * +* condition is met: * +* * +* o Redistributions of source code must retain the above copyright * +* notice, this condition and the following disclaimer. * +* * +* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * +* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * +* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * +* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * +* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * +* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * +* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * +* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * +* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * +* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * +* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * +* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * +* DAMAGE. * +* * +********************************************************************** +* * +* RTT version: 6.64b * +* * +********************************************************************** + +---------------------------END-OF-HEADER------------------------------ +File : SEGGER_RTT_Conf.h +Purpose : Implementation of SEGGER real-time transfer (RTT) which + allows real-time communication on targets which support + debugger memory accesses while the CPU is running. +Revision: $Rev: 17698 $ + +*/ + +#ifndef SEGGER_RTT_CONF_H +#define SEGGER_RTT_CONF_H + +#ifdef __IAR_SYSTEMS_ICC__ + #include +#endif + +/********************************************************************* +* +* Defines, configurable +* +********************************************************************** +*/ +#ifndef SEGGER_RTT_MAX_NUM_UP_BUFFERS + #define SEGGER_RTT_MAX_NUM_UP_BUFFERS (3) // Max. number of up-buffers (T->H) available on this target (Default: 3) +#endif + +#ifndef SEGGER_RTT_MAX_NUM_DOWN_BUFFERS + #define SEGGER_RTT_MAX_NUM_DOWN_BUFFERS (3) // Max. number of down-buffers (H->T) available on this target (Default: 3) +#endif + +#ifndef BUFFER_SIZE_UP + #define BUFFER_SIZE_UP (1024) // Size of the buffer for terminal output of target, up to host (Default: 1k) +#endif + +#ifndef BUFFER_SIZE_DOWN + #define BUFFER_SIZE_DOWN (16) // Size of the buffer for terminal input to target from host (Usually keyboard input) (Default: 16) +#endif + +#ifndef SEGGER_RTT_PRINTF_BUFFER_SIZE + #define SEGGER_RTT_PRINTF_BUFFER_SIZE (64u) // Size of buffer for RTT printf to bulk-send chars via RTT (Default: 64) +#endif + +#ifndef SEGGER_RTT_MODE_DEFAULT + #define SEGGER_RTT_MODE_DEFAULT SEGGER_RTT_MODE_NO_BLOCK_SKIP // Mode for pre-initialized terminal channel (buffer 0) +#endif + +/********************************************************************* +* +* RTT memcpy configuration +* +* memcpy() is good for large amounts of data, +* but the overhead is big for small amounts, which are usually stored via RTT. +* With SEGGER_RTT_MEMCPY_USE_BYTELOOP a simple byte loop can be used instead. +* +* SEGGER_RTT_MEMCPY() can be used to replace standard memcpy() in RTT functions. +* This is may be required with memory access restrictions, +* such as on Cortex-A devices with MMU. +*/ +#ifndef SEGGER_RTT_MEMCPY_USE_BYTELOOP + #define SEGGER_RTT_MEMCPY_USE_BYTELOOP 0 // 0: Use memcpy/SEGGER_RTT_MEMCPY, 1: Use a simple byte-loop +#endif +// +// Example definition of SEGGER_RTT_MEMCPY to external memcpy with GCC toolchains and Cortex-A targets +// +//#if ((defined __SES_ARM) || (defined __CROSSWORKS_ARM) || (defined __GNUC__)) && (defined (__ARM_ARCH_7A__)) +// #define SEGGER_RTT_MEMCPY(pDest, pSrc, NumBytes) SEGGER_memcpy((pDest), (pSrc), (NumBytes)) +//#endif + +// +// Target is not allowed to perform other RTT operations while string still has not been stored completely. +// Otherwise we would probably end up with a mixed string in the buffer. +// If using RTT from within interrupts, multiple tasks or multi processors, define the SEGGER_RTT_LOCK() and SEGGER_RTT_UNLOCK() function here. +// +// SEGGER_RTT_MAX_INTERRUPT_PRIORITY can be used in the sample lock routines on Cortex-M3/4. +// Make sure to mask all interrupts which can send RTT data, i.e. generate SystemView events, or cause task switches. +// When high-priority interrupts must not be masked while sending RTT data, SEGGER_RTT_MAX_INTERRUPT_PRIORITY needs to be adjusted accordingly. +// (Higher priority = lower priority number) +// Default value for embOS: 128u +// Default configuration in FreeRTOS: configMAX_SYSCALL_INTERRUPT_PRIORITY: ( configLIBRARY_MAX_SYSCALL_INTERRUPT_PRIORITY << (8 - configPRIO_BITS) ) +// In case of doubt mask all interrupts: 1 << (8 - BASEPRI_PRIO_BITS) i.e. 1 << 5 when 3 bits are implemented in NVIC +// or define SEGGER_RTT_LOCK() to completely disable interrupts. +// +#ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY + #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20) // Interrupt priority to lock on SEGGER_RTT_LOCK on Cortex-M3/4 (Default: 0x20) +#endif + +/********************************************************************* +* +* RTT lock configuration for SEGGER Embedded Studio, +* Rowley CrossStudio and GCC +*/ +#if ((defined(__SES_ARM) || defined(__SES_RISCV) || defined(__CROSSWORKS_ARM) || defined(__GNUC__) || defined(__clang__)) && !defined (__CC_ARM)) + #if (defined(__ARM_ARCH_6M__) || defined(__ARM_ARCH_8M_BASE__)) + #define SEGGER_RTT_LOCK() { \ + unsigned int LockState; \ + __asm volatile ("mrs %0, primask \n\t" \ + "movs r1, $1 \n\t" \ + "msr primask, r1 \n\t" \ + : "=r" (LockState) \ + : \ + : "r1" \ + ); + + #define SEGGER_RTT_UNLOCK() __asm volatile ("msr primask, %0 \n\t" \ + : \ + : "r" (LockState) \ + : \ + ); \ + } + #elif (defined(__ARM_ARCH_7M__) || defined(__ARM_ARCH_7EM__) || defined(__ARM_ARCH_8M_MAIN__)) + #ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY + #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20) + #endif + #define SEGGER_RTT_LOCK() { \ + unsigned int LockState; \ + __asm volatile ("mrs %0, basepri \n\t" \ + "mov r1, %1 \n\t" \ + "msr basepri, r1 \n\t" \ + : "=r" (LockState) \ + : "i"(SEGGER_RTT_MAX_INTERRUPT_PRIORITY) \ + : "r1" \ + ); + + #define SEGGER_RTT_UNLOCK() __asm volatile ("msr basepri, %0 \n\t" \ + : \ + : "r" (LockState) \ + : \ + ); \ + } + + #elif defined(__ARM_ARCH_7A__) + #define SEGGER_RTT_LOCK() { \ + unsigned int LockState; \ + __asm volatile ("mrs r1, CPSR \n\t" \ + "mov %0, r1 \n\t" \ + "orr r1, r1, #0xC0 \n\t" \ + "msr CPSR_c, r1 \n\t" \ + : "=r" (LockState) \ + : \ + : "r1" \ + ); + + #define SEGGER_RTT_UNLOCK() __asm volatile ("mov r0, %0 \n\t" \ + "mrs r1, CPSR \n\t" \ + "bic r1, r1, #0xC0 \n\t" \ + "and r0, r0, #0xC0 \n\t" \ + "orr r1, r1, r0 \n\t" \ + "msr CPSR_c, r1 \n\t" \ + : \ + : "r" (LockState) \ + : "r0", "r1" \ + ); \ + } + #elif defined(__riscv) || defined(__riscv_xlen) + #define SEGGER_RTT_LOCK() { \ + unsigned int LockState; \ + __asm volatile ("csrr %0, mstatus \n\t" \ + "csrci mstatus, 8 \n\t" \ + "andi %0, %0, 8 \n\t" \ + : "=r" (LockState) \ + : \ + : \ + ); + + #define SEGGER_RTT_UNLOCK() __asm volatile ("csrr a1, mstatus \n\t" \ + "or %0, %0, a1 \n\t" \ + "csrs mstatus, %0 \n\t" \ + : \ + : "r" (LockState) \ + : "a1" \ + ); \ + } + #else + #define SEGGER_RTT_LOCK() + #define SEGGER_RTT_UNLOCK() + #endif +#endif + +/********************************************************************* +* +* RTT lock configuration for IAR EWARM +*/ +#ifdef __ICCARM__ + #if (defined (__ARM6M__) && (__CORE__ == __ARM6M__)) || \ + (defined (__ARM8M_BASELINE__) && (__CORE__ == __ARM8M_BASELINE__)) + #define SEGGER_RTT_LOCK() { \ + unsigned int LockState; \ + LockState = __get_PRIMASK(); \ + __set_PRIMASK(1); + + #define SEGGER_RTT_UNLOCK() __set_PRIMASK(LockState); \ + } + #elif (defined (__ARM7EM__) && (__CORE__ == __ARM7EM__)) || \ + (defined (__ARM7M__) && (__CORE__ == __ARM7M__)) || \ + (defined (__ARM8M_MAINLINE__) && (__CORE__ == __ARM8M_MAINLINE__)) || \ + (defined (__ARM8M_MAINLINE__) && (__CORE__ == __ARM8M_MAINLINE__)) + #ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY + #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20) + #endif + #define SEGGER_RTT_LOCK() { \ + unsigned int LockState; \ + LockState = __get_BASEPRI(); \ + __set_BASEPRI(SEGGER_RTT_MAX_INTERRUPT_PRIORITY); + + #define SEGGER_RTT_UNLOCK() __set_BASEPRI(LockState); \ + } + #endif +#endif + +/********************************************************************* +* +* RTT lock configuration for IAR RX +*/ +#ifdef __ICCRX__ + #define SEGGER_RTT_LOCK() { \ + unsigned long LockState; \ + LockState = __get_interrupt_state(); \ + __disable_interrupt(); + + #define SEGGER_RTT_UNLOCK() __set_interrupt_state(LockState); \ + } +#endif + +/********************************************************************* +* +* RTT lock configuration for IAR RL78 +*/ +#ifdef __ICCRL78__ + #define SEGGER_RTT_LOCK() { \ + __istate_t LockState; \ + LockState = __get_interrupt_state(); \ + __disable_interrupt(); + + #define SEGGER_RTT_UNLOCK() __set_interrupt_state(LockState); \ + } +#endif + +/********************************************************************* +* +* RTT lock configuration for KEIL ARM +*/ +#ifdef __CC_ARM + #if (defined __TARGET_ARCH_6S_M) + #define SEGGER_RTT_LOCK() { \ + unsigned int LockState; \ + register unsigned char PRIMASK __asm( "primask"); \ + LockState = PRIMASK; \ + PRIMASK = 1u; \ + __schedule_barrier(); + + #define SEGGER_RTT_UNLOCK() PRIMASK = LockState; \ + __schedule_barrier(); \ + } + #elif (defined(__TARGET_ARCH_7_M) || defined(__TARGET_ARCH_7E_M)) + #ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY + #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20) + #endif + #define SEGGER_RTT_LOCK() { \ + unsigned int LockState; \ + register unsigned char BASEPRI __asm( "basepri"); \ + LockState = BASEPRI; \ + BASEPRI = SEGGER_RTT_MAX_INTERRUPT_PRIORITY; \ + __schedule_barrier(); + + #define SEGGER_RTT_UNLOCK() BASEPRI = LockState; \ + __schedule_barrier(); \ + } + #endif +#endif + +/********************************************************************* +* +* RTT lock configuration for TI ARM +*/ +#ifdef __TI_ARM__ + #if defined (__TI_ARM_V6M0__) + #define SEGGER_RTT_LOCK() { \ + unsigned int LockState; \ + LockState = __get_PRIMASK(); \ + __set_PRIMASK(1); + + #define SEGGER_RTT_UNLOCK() __set_PRIMASK(LockState); \ + } + #elif (defined (__TI_ARM_V7M3__) || defined (__TI_ARM_V7M4__)) + #ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY + #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20) + #endif + #define SEGGER_RTT_LOCK() { \ + unsigned int LockState; \ + LockState = _set_interrupt_priority(SEGGER_RTT_MAX_INTERRUPT_PRIORITY); + + #define SEGGER_RTT_UNLOCK() _set_interrupt_priority(LockState); \ + } + #endif +#endif + +/********************************************************************* +* +* RTT lock configuration for CCRX +*/ +#ifdef __RX + #define SEGGER_RTT_LOCK() { \ + unsigned long LockState; \ + LockState = get_psw() & 0x010000; \ + clrpsw_i(); + + #define SEGGER_RTT_UNLOCK() set_psw(get_psw() | LockState); \ + } +#endif + +/********************************************************************* +* +* RTT lock configuration for embOS Simulation on Windows +* (Can also be used for generic RTT locking with embOS) +*/ +#if defined(WIN32) || defined(SEGGER_RTT_LOCK_EMBOS) + +void OS_SIM_EnterCriticalSection(void); +void OS_SIM_LeaveCriticalSection(void); + +#define SEGGER_RTT_LOCK() { \ + OS_SIM_EnterCriticalSection(); + +#define SEGGER_RTT_UNLOCK() OS_SIM_LeaveCriticalSection(); \ + } +#endif + +/********************************************************************* +* +* RTT lock configuration fallback +*/ +#ifndef SEGGER_RTT_LOCK + #define SEGGER_RTT_LOCK() // Lock RTT (nestable) (i.e. disable interrupts) +#endif + +#ifndef SEGGER_RTT_UNLOCK + #define SEGGER_RTT_UNLOCK() // Unlock RTT (nestable) (i.e. enable previous interrupt lock state) +#endif + +#endif +/*************************** End of file ****************************/ diff --git a/Marlin/lib/rtt/src/SEGGER_RTT_printf.c b/Marlin/lib/rtt/src/SEGGER_RTT_printf.c new file mode 100644 index 0000000000..b041a52062 --- /dev/null +++ b/Marlin/lib/rtt/src/SEGGER_RTT_printf.c @@ -0,0 +1,505 @@ +/********************************************************************* +* SEGGER Microcontroller GmbH * +* The Embedded Experts * +********************************************************************** +* * +* (c) 1995 - 2019 SEGGER Microcontroller GmbH * +* * +* www.segger.com Support: support@segger.com * +* * +********************************************************************** +* * +* SEGGER RTT * Real Time Transfer for embedded targets * +* * +********************************************************************** +* * +* All rights reserved. * +* * +* SEGGER strongly recommends to not make any changes * +* to or modify the source code of this software in order to stay * +* compatible with the RTT protocol and J-Link. * +* * +* Redistribution and use in source and binary forms, with or * +* without modification, are permitted provided that the following * +* condition is met: * +* * +* o Redistributions of source code must retain the above copyright * +* notice, this condition and the following disclaimer. * +* * +* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * +* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * +* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * +* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * +* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * +* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * +* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * +* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * +* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * +* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * +* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * +* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * +* DAMAGE. * +* * +********************************************************************** +* * +* RTT version: 6.64b * +* * +********************************************************************** + +---------------------------END-OF-HEADER------------------------------ +File : SEGGER_RTT_printf.c +Purpose : Replacement for printf to write formatted data via RTT +Revision: $Rev: 17697 $ +---------------------------------------------------------------------- +*/ +#include "SEGGER_RTT.h" +#include "SEGGER_RTT_Conf.h" + +/********************************************************************* +* +* Defines, configurable +* +********************************************************************** +*/ + +#ifndef SEGGER_RTT_PRINTF_BUFFER_SIZE + #define SEGGER_RTT_PRINTF_BUFFER_SIZE (64) +#endif + +#include +#include + + +#define FORMAT_FLAG_LEFT_JUSTIFY (1u << 0) +#define FORMAT_FLAG_PAD_ZERO (1u << 1) +#define FORMAT_FLAG_PRINT_SIGN (1u << 2) +#define FORMAT_FLAG_ALTERNATE (1u << 3) + +/********************************************************************* +* +* Types +* +********************************************************************** +*/ + +typedef struct { + char* pBuffer; + unsigned BufferSize; + unsigned Cnt; + + int ReturnValue; + + unsigned RTTBufferIndex; +} SEGGER_RTT_PRINTF_DESC; + +/********************************************************************* +* +* Function prototypes +* +********************************************************************** +*/ + +/********************************************************************* +* +* Static code +* +********************************************************************** +*/ +/********************************************************************* +* +* _StoreChar +*/ +static void _StoreChar(SEGGER_RTT_PRINTF_DESC * p, char c) { + unsigned Cnt; + + Cnt = p->Cnt; + if ((Cnt + 1u) <= p->BufferSize) { + *(p->pBuffer + Cnt) = c; + p->Cnt = Cnt + 1u; + p->ReturnValue++; + } + // + // Write part of string, when the buffer is full + // + if (p->Cnt == p->BufferSize) { + if (SEGGER_RTT_Write(p->RTTBufferIndex, p->pBuffer, p->Cnt) != p->Cnt) { + p->ReturnValue = -1; + } else { + p->Cnt = 0u; + } + } +} + +/********************************************************************* +* +* _PrintUnsigned +*/ +static void _PrintUnsigned(SEGGER_RTT_PRINTF_DESC * pBufferDesc, unsigned v, unsigned Base, unsigned NumDigits, unsigned FieldWidth, unsigned FormatFlags) { + static const char _aV2C[16] = {'0', '1', '2', '3', '4', '5', '6', '7', '8', '9', 'A', 'B', 'C', 'D', 'E', 'F' }; + unsigned Div; + unsigned Digit; + unsigned Number; + unsigned Width; + char c; + + Number = v; + Digit = 1u; + // + // Get actual field width + // + Width = 1u; + while (Number >= Base) { + Number = (Number / Base); + Width++; + } + if (NumDigits > Width) { + Width = NumDigits; + } + // + // Print leading chars if necessary + // + if ((FormatFlags & FORMAT_FLAG_LEFT_JUSTIFY) == 0u) { + if (FieldWidth != 0u) { + if (((FormatFlags & FORMAT_FLAG_PAD_ZERO) == FORMAT_FLAG_PAD_ZERO) && (NumDigits == 0u)) { + c = '0'; + } else { + c = ' '; + } + while ((FieldWidth != 0u) && (Width < FieldWidth)) { + FieldWidth--; + _StoreChar(pBufferDesc, c); + if (pBufferDesc->ReturnValue < 0) { + break; + } + } + } + } + if (pBufferDesc->ReturnValue >= 0) { + // + // Compute Digit. + // Loop until Digit has the value of the highest digit required. + // Example: If the output is 345 (Base 10), loop 2 times until Digit is 100. + // + while (1) { + if (NumDigits > 1u) { // User specified a min number of digits to print? => Make sure we loop at least that often, before checking anything else (> 1 check avoids problems with NumDigits being signed / unsigned) + NumDigits--; + } else { + Div = v / Digit; + if (Div < Base) { // Is our divider big enough to extract the highest digit from value? => Done + break; + } + } + Digit *= Base; + } + // + // Output digits + // + do { + Div = v / Digit; + v -= Div * Digit; + _StoreChar(pBufferDesc, _aV2C[Div]); + if (pBufferDesc->ReturnValue < 0) { + break; + } + Digit /= Base; + } while (Digit); + // + // Print trailing spaces if necessary + // + if ((FormatFlags & FORMAT_FLAG_LEFT_JUSTIFY) == FORMAT_FLAG_LEFT_JUSTIFY) { + if (FieldWidth != 0u) { + while ((FieldWidth != 0u) && (Width < FieldWidth)) { + FieldWidth--; + _StoreChar(pBufferDesc, ' '); + if (pBufferDesc->ReturnValue < 0) { + break; + } + } + } + } + } +} + +/********************************************************************* +* +* _PrintInt +*/ +static void _PrintInt(SEGGER_RTT_PRINTF_DESC * pBufferDesc, int v, unsigned Base, unsigned NumDigits, unsigned FieldWidth, unsigned FormatFlags) { + unsigned Width; + int Number; + + Number = (v < 0) ? -v : v; + + // + // Get actual field width + // + Width = 1u; + while (Number >= (int)Base) { + Number = (Number / (int)Base); + Width++; + } + if (NumDigits > Width) { + Width = NumDigits; + } + if ((FieldWidth > 0u) && ((v < 0) || ((FormatFlags & FORMAT_FLAG_PRINT_SIGN) == FORMAT_FLAG_PRINT_SIGN))) { + FieldWidth--; + } + + // + // Print leading spaces if necessary + // + if ((((FormatFlags & FORMAT_FLAG_PAD_ZERO) == 0u) || (NumDigits != 0u)) && ((FormatFlags & FORMAT_FLAG_LEFT_JUSTIFY) == 0u)) { + if (FieldWidth != 0u) { + while ((FieldWidth != 0u) && (Width < FieldWidth)) { + FieldWidth--; + _StoreChar(pBufferDesc, ' '); + if (pBufferDesc->ReturnValue < 0) { + break; + } + } + } + } + // + // Print sign if necessary + // + if (pBufferDesc->ReturnValue >= 0) { + if (v < 0) { + v = -v; + _StoreChar(pBufferDesc, '-'); + } else if ((FormatFlags & FORMAT_FLAG_PRINT_SIGN) == FORMAT_FLAG_PRINT_SIGN) { + _StoreChar(pBufferDesc, '+'); + } else { + + } + if (pBufferDesc->ReturnValue >= 0) { + // + // Print leading zeros if necessary + // + if (((FormatFlags & FORMAT_FLAG_PAD_ZERO) == FORMAT_FLAG_PAD_ZERO) && ((FormatFlags & FORMAT_FLAG_LEFT_JUSTIFY) == 0u) && (NumDigits == 0u)) { + if (FieldWidth != 0u) { + while ((FieldWidth != 0u) && (Width < FieldWidth)) { + FieldWidth--; + _StoreChar(pBufferDesc, '0'); + if (pBufferDesc->ReturnValue < 0) { + break; + } + } + } + } + if (pBufferDesc->ReturnValue >= 0) { + // + // Print number without sign + // + _PrintUnsigned(pBufferDesc, (unsigned)v, Base, NumDigits, FieldWidth, FormatFlags); + } + } + } +} + +/********************************************************************* +* +* Public code +* +********************************************************************** +*/ +/********************************************************************* +* +* SEGGER_RTT_vprintf +* +* Function description +* Stores a formatted string in SEGGER RTT control block. +* This data is read by the host. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used. (e.g. 0 for "Terminal") +* sFormat Pointer to format string +* pParamList Pointer to the list of arguments for the format string +* +* Return values +* >= 0: Number of bytes which have been stored in the "Up"-buffer. +* < 0: Error +*/ +int SEGGER_RTT_vprintf(unsigned BufferIndex, const char * sFormat, va_list * pParamList) { + char c; + SEGGER_RTT_PRINTF_DESC BufferDesc; + int v; + unsigned NumDigits; + unsigned FormatFlags; + unsigned FieldWidth; + char acBuffer[SEGGER_RTT_PRINTF_BUFFER_SIZE]; + + BufferDesc.pBuffer = acBuffer; + BufferDesc.BufferSize = SEGGER_RTT_PRINTF_BUFFER_SIZE; + BufferDesc.Cnt = 0u; + BufferDesc.RTTBufferIndex = BufferIndex; + BufferDesc.ReturnValue = 0; + + do { + c = *sFormat; + sFormat++; + if (c == 0u) { + break; + } + if (c == '%') { + // + // Filter out flags + // + FormatFlags = 0u; + v = 1; + do { + c = *sFormat; + switch (c) { + case '-': FormatFlags |= FORMAT_FLAG_LEFT_JUSTIFY; sFormat++; break; + case '0': FormatFlags |= FORMAT_FLAG_PAD_ZERO; sFormat++; break; + case '+': FormatFlags |= FORMAT_FLAG_PRINT_SIGN; sFormat++; break; + case '#': FormatFlags |= FORMAT_FLAG_ALTERNATE; sFormat++; break; + default: v = 0; break; + } + } while (v); + // + // filter out field with + // + FieldWidth = 0u; + do { + c = *sFormat; + if ((c < '0') || (c > '9')) { + break; + } + sFormat++; + FieldWidth = (FieldWidth * 10u) + ((unsigned)c - '0'); + } while (1); + + // + // Filter out precision (number of digits to display) + // + NumDigits = 0u; + c = *sFormat; + if (c == '.') { + sFormat++; + do { + c = *sFormat; + if ((c < '0') || (c > '9')) { + break; + } + sFormat++; + NumDigits = NumDigits * 10u + ((unsigned)c - '0'); + } while (1); + } + // + // Filter out length modifier + // + c = *sFormat; + do { + if ((c == 'l') || (c == 'h')) { + sFormat++; + c = *sFormat; + } else { + break; + } + } while (1); + // + // Handle specifiers + // + switch (c) { + case 'c': { + char c0; + v = va_arg(*pParamList, int); + c0 = (char)v; + _StoreChar(&BufferDesc, c0); + break; + } + case 'd': + v = va_arg(*pParamList, int); + _PrintInt(&BufferDesc, v, 10u, NumDigits, FieldWidth, FormatFlags); + break; + case 'u': + v = va_arg(*pParamList, int); + _PrintUnsigned(&BufferDesc, (unsigned)v, 10u, NumDigits, FieldWidth, FormatFlags); + break; + case 'x': + case 'X': + v = va_arg(*pParamList, int); + _PrintUnsigned(&BufferDesc, (unsigned)v, 16u, NumDigits, FieldWidth, FormatFlags); + break; + case 's': + { + const char * s = va_arg(*pParamList, const char *); + do { + c = *s; + s++; + if (c == '\0') { + break; + } + _StoreChar(&BufferDesc, c); + } while (BufferDesc.ReturnValue >= 0); + } + break; + case 'p': + v = va_arg(*pParamList, int); + _PrintUnsigned(&BufferDesc, (unsigned)v, 16u, 8u, 8u, 0u); + break; + case '%': + _StoreChar(&BufferDesc, '%'); + break; + default: + break; + } + sFormat++; + } else { + _StoreChar(&BufferDesc, c); + } + } while (BufferDesc.ReturnValue >= 0); + + if (BufferDesc.ReturnValue > 0) { + // + // Write remaining data, if any + // + if (BufferDesc.Cnt != 0u) { + SEGGER_RTT_Write(BufferIndex, acBuffer, BufferDesc.Cnt); + } + BufferDesc.ReturnValue += (int)BufferDesc.Cnt; + } + return BufferDesc.ReturnValue; +} + +/********************************************************************* +* +* SEGGER_RTT_printf +* +* Function description +* Stores a formatted string in SEGGER RTT control block. +* This data is read by the host. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used. (e.g. 0 for "Terminal") +* sFormat Pointer to format string, followed by the arguments for conversion +* +* Return values +* >= 0: Number of bytes which have been stored in the "Up"-buffer. +* < 0: Error +* +* Notes +* (1) Conversion specifications have following syntax: +* %[flags][FieldWidth][.Precision]ConversionSpecifier +* (2) Supported flags: +* -: Left justify within the field width +* +: Always print sign extension for signed conversions +* 0: Pad with 0 instead of spaces. Ignored when using '-'-flag or precision +* Supported conversion specifiers: +* c: Print the argument as one char +* d: Print the argument as a signed integer +* u: Print the argument as an unsigned integer +* x: Print the argument as an hexadecimal integer +* s: Print the string pointed to by the argument +* p: Print the argument as an 8-digit hexadecimal integer. (Argument shall be a pointer to void.) +*/ +int SEGGER_RTT_printf(unsigned BufferIndex, const char * sFormat, ...) { + int r; + va_list ParamList; + + va_start(ParamList, sFormat); + r = SEGGER_RTT_vprintf(BufferIndex, sFormat, &ParamList); + va_end(ParamList); + return r; +} +/*************************** End of file ****************************/ diff --git a/Marlin/lib/rtt/src/log.h b/Marlin/lib/rtt/src/log.h new file mode 100644 index 0000000000..4227d86f02 --- /dev/null +++ b/Marlin/lib/rtt/src/log.h @@ -0,0 +1,61 @@ +/* + * Author: Jayant Tang + * Email: jayant97@foxmail.com + */ + +#ifndef _LOG_H_ +#define _LOH_H_ + +#ifdef __cplusplus +extern "C" { +#endif + +#include +#include "SEGGER_RTT.h" + +#define LOG_DEBUG 1 + +#if LOG_DEBUG + + +#define LOG_PROTO(type,color,format,...) \ + SEGGER_RTT_printf(0,"%s%s"format"%s", \ + color, \ + type, \ + ##__VA_ARGS__, \ + RTT_CTRL_RESET) + +#define LOG_STR( x ) \ + SEGGER_RTT_printf(0, "%s%s", \ + RTT_CTRL_TEXT_BRIGHT_GREEN, \ + x , \ + RTT_CTRL_RESET) + +/* 清屏*/ +#define LOG_CLEAR() SEGGER_RTT_WriteString(0, " "RTT_CTRL_CLEAR) + +/* 无颜色日志输出 */ +#define LOG(format,...) LOG_PROTO("","",format,##__VA_ARGS__) +// #define LOG_STR(format) LOG_PROTO("","",format) +/* 有颜色格式日志输出 */ +#define LOGI(format,...) LOG_PROTO("", RTT_CTRL_TEXT_BRIGHT_GREEN , format, ##__VA_ARGS__) +#define LOGW(format,...) LOG_PROTO("", RTT_CTRL_TEXT_BRIGHT_YELLOW, format, ##__VA_ARGS__) +#define LOGE(format,...) LOG_PROTO("", RTT_CTRL_TEXT_BRIGHT_RED , format, ##__VA_ARGS__) + +void* log_hex_dump(uint8_t data[], uint8_t len, uint8_t buffer[]); +void* log_hex_dump_line(uint8_t data[], uint8_t len, uint8_t buffer[]); +void log_hex(char const* head, uint8_t data[], uint8_t len); +#else +#define LOG_CLEAR() +#define LOG +#define LOGI +#define LOGW +#define LOGE + +#endif + +#ifdef __cplusplus +} +#endif + +#endif // !_LOG_H_ \ No newline at end of file diff --git a/Marlin/lib/rtt/src/log_hex.c b/Marlin/lib/rtt/src/log_hex.c new file mode 100644 index 0000000000..71c2658f6f --- /dev/null +++ b/Marlin/lib/rtt/src/log_hex.c @@ -0,0 +1,65 @@ +#include +#include +#include +#include "log.h" + + +uint8_t log_hex_buffer[1024]; +//dump hex str to buffer. + +void* log_hex_dump_line(uint8_t data[], uint8_t len, uint8_t buffer[]) +{ + for (int i=0; i < len; ++i) { + sprintf(buffer + i*3, "%02x ", data[i]); + } + buffer[len * 3] = '\n'; + // LOGI("%s", buffer); + return buffer; +} + +void* log_hex_dump2(uint8_t data[], uint8_t len, uint8_t line_cell, uint8_t buffer[]) +{ + uint16_t line_whole = len / line_cell; + uint8_t line_final = len % line_cell; + uint8_t line_full_len = line_cell * 3 + 1;//include \n + // uint8_t line_buffer[128]; + for (int i=0; i + +#include "Stream.h" +// #include "uart.h" +#include "SEGGER_RTT.h" + +class RttLog : public Stream { + protected: + // Has any byte been written to the rtt since begin() + bool _written; + + // Don't put any members after these buffers, since only the first + // 32 bytes of this struct can be accessed quickly using the ldd + // instruction. + // unsigned char _rx_buffer[256]; + // unsigned char _tx_buffer[256]; + + public: + RttLog(); + + void begin(unsigned long baud) + { + begin(baud); + } + void begin(unsigned long, uint8_t); + void end(); + virtual int available(void); + virtual int peek(void); + virtual int read(void); + int availableForWrite(void); + virtual void flush(void); + virtual size_t write(uint8_t); + inline size_t write(unsigned long n) + { + return write((uint8_t)n); + } + inline size_t write(long n) + { + return write((uint8_t)n); + } + inline size_t write(unsigned int n) + { + return write((uint8_t)n); + } + inline size_t write(int n) + { + return write((uint8_t)n); + } + using Print::write; // pull in write(str) and write(buf, size) from Print + operator bool() + { + return true; + } +}; + +extern RttLog rtt; \ No newline at end of file diff --git a/Marlin/src/core/boards.h b/Marlin/src/core/boards.h index c6713d0c98..435674aaa5 100644 --- a/Marlin/src/core/boards.h +++ b/Marlin/src/core/boards.h @@ -488,6 +488,7 @@ #define BOARD_ZNP_ROBIN_NANO_V1_3 5258 // Elegoo Neptune 2 v1.3 board #define BOARD_MKS_NEPTUNE_X 5259 // Elegoo Neptune X #define BOARD_MKS_NEPTUNE_3 5260 // Elegoo Neptune 3 +#define BOARD_LANGGO407 5261 // Langgo407 (STM32F407VE) // // Other ARM Cortex-M4 diff --git a/Marlin/src/pins/pins.h b/Marlin/src/pins/pins.h index 4e36558ef8..6d40512042 100644 --- a/Marlin/src/pins/pins.h +++ b/Marlin/src/pins/pins.h @@ -865,7 +865,8 @@ #include "stm32f4/pins_MKS_NEPTUNE_X.h" // STM32F4 env:mks_neptune_x #elif MB(MKS_NEPTUNE_3) #include "stm32f4/pins_MKS_NEPTUNE_3.h" // STM32F4 env:mks_neptune_3 - +#elif MB(LANGGO407) + #include "stm32f4/pins_LANGGO407.h" // STM32F4 env:LANGGO407VE // // Other ARM Cortex-M4 // diff --git a/Marlin/src/pins/stm32f4/pins_LANGGO407.h b/Marlin/src/pins/stm32f4/pins_LANGGO407.h new file mode 100644 index 0000000000..15fed2542b --- /dev/null +++ b/Marlin/src/pins/stm32f4/pins_LANGGO407.h @@ -0,0 +1,747 @@ +/** + * Marlin 3D Printer Firmware + * Copyright (c) 2020 MarlinFirmware [https://github.com/MarlinFirmware/Marlin] + * + * Based on Sprinter and grbl. + * Copyright (c) 2011 Camiel Gubbels / Erik van der Zalm + * + * This program is free software: you can redistribute it and/or modify + * it under the terms of the GNU General Public License as published by + * the Free Software Foundation, either version 3 of the License, or + * (at your option) any later version. + * + * This program is distributed in the hope that it will be useful, + * but WITHOUT ANY WARRANTY; without even the implied warranty of + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the + * GNU General Public License for more details. + * + * You should have received a copy of the GNU General Public License + * along with this program. If not, see . + * + */ +#pragma once + +/** + * STM32F407VET6 with RAMPS-like shield + * 'Black' STM32F407VET6 board - https://www.stm32duino.com/viewtopic.php?t=485 + * Shield - https://github.com/jmz52/Hardware + */ +#include "env_validate.h" +#if ENABLED(NEW_BOARD) + +#if NOT_TARGET(STM32F4, STM32F4xx) + #error "Oops! Select an STM32F4 board in 'Tools > Board.'" +#elif HOTENDS > 2 || E_STEPPERS > 2 + #error "Black STM32F4VET6 supports up to 2 hotends / E-steppers." +#endif + +#ifndef BOARD_INFO_NAME + #ifdef NEW_BOARD + #ifdef COREXZ + #define BOARD_INFO_NAME "F4Z_MC Core-XZ" + #else + #define BOARD_INFO_NAME "F4Z_MC" + #endif + #else + #ifdef COREXZ + #define BOARD_INFO_NAME "BC.DZ.PC000007.03 Core-XZ" + #else + #define BOARD_INFO_NAME "BC.DZ.PC000007.03" + #endif + #endif + + #if 0//ENABLED(ST32_SHIP) + #define CHIP_NAME "(S)" + #elif 0//ENABLED(USE_GD32) + #define CHIP_NAME "(G)" + #else + #define CHIP_NAME "" + #endif + + #if ENABLED(R3_PRO) + #define ROBOT_NAME "-MAX" + #elif ENABLED(R4_PRO) + #define ROBOT_NAME "-PRO" + #else + #define ROBOT_NAME "" + #endif + + #if ENABLED(USE_TI_CHOKE) + #define MATERIALS_NAME "-Ti" + #define MATERIALS_NAME_TI "-Ti" + #else + #define MATERIALS_NAME "" + #define MATERIALS_NAME_TI "-Ti" + #endif +#endif + +#define DEFAULT_MACHINE_NAME "HP STM32F407VE" + +//#define I2C_EEPROM +#if 0 + #define SRAM_EEPROM_EMULATION + #define MARLIN_EEPROM_SIZE 0x2000 // 8KB +#else + #define W25QXX_SPI_EEPROM +#endif +// +// Servos +// +#ifdef BLTOUCH +#define SERVO0_PIN PA4 // after ver3.0 +// #define SERVO0_PIN PC6 +// #define SERVO1_PIN PC7 +#else +// #define CALIB_PIN PD6 // before ver3.0 +#define CALIB_PIN PA4 // after ver3.0 +#endif + +// +// Z Probe must be this pins +// +// #define Z_MIN_PROBE_PIN PD3 // before ver3.0 +#define Z_MIN_PROBE_PIN PD6 // after ver3.0 + +// +// Limit Switches +// +#if ENABLED(QUICK_PRINT) + #define X_MAX_PIN PF14 +#else + #define X_MIN_PIN PF14 + // #define X_MAX_PIN PA15 +#endif + +#define Y_MIN_PIN PF13 +// #define Y_MAX_PIN PD12 + +#ifdef Z_MIN_PROBE_USES_Z_MIN_ENDSTOP_PIN + #define Z_MIN_PIN PD3 +#else + #define Z_MIN_PIN PF11 + #if ENABLED(Z_MULTI_ENDSTOPS) + #define Z2_MIN_PIN PD3 // after ver3.0 + #endif +#endif +// #define Z_MIN_PIN PG0 +// #define Z_MAX_PIN PD15 + +// #define LED_RED_PIN PG9 +#if ENABLED(R_B_LED) + #define RB_LED_PIN PD7 +#endif + +#if ENABLED(WS2812_LED) + #define WS2812_LED_PIN PD7 +#endif + +#define CAP_TOUCH_PIN PA0 + +/** + * TMC2208/TMC2209 stepper drivers + */ + // + // Software serial ASYNC half duplex? + // +#if 0 + + /*** X ***/ + #define X_ENABLE_PIN PE6 + #define X_STEP_PIN PE5 + #define X_DIR_PIN PE4 + /*** Y ***/ + #define Y_ENABLE_PIN PF3 + #define Y_STEP_PIN PF2 + #define Y_DIR_PIN PF1 + /*** Z ***/ + #define Z_ENABLE_PIN PC2 + #define Z_STEP_PIN PC1 + #define Z_DIR_PIN PC0 + /*** Z2 ***/ + #define Z2_ENABLE_PIN PB0 + #define Z2_STEP_PIN PC5 + #define Z2_DIR_PIN PC4 + /*** E0 ***/ + #define E0_ENABLE_PIN PE1 + #define E0_STEP_PIN PE0 + #define E0_DIR_PIN PB7 + /*** TX、RX or Reset ***/ + #if AXIS_DRIVER_TYPE_X(TMC2208) + #define X_SERIAL_TX_PIN PC13 + #define X_SERIAL_RX_PIN PC13 + #elif AXIS_DRIVER_TYPE_X(A4988) + #define X_RESET_PIN PC13 + #endif + + #if AXIS_DRIVER_TYPE_Y(TMC2208) + #define Y_SERIAL_TX_PIN PF4 + #define Y_SERIAL_RX_PIN PF4 + #elif AXIS_DRIVER_TYPE_Y(A4988) + #define Y_RESET_PIN PF4 + #endif + + #if AXIS_DRIVER_TYPE_Z(TMC2208) + #define Z_SERIAL_TX_PIN PC3 + #define Z_SERIAL_RX_PIN PC3 + #elif AXIS_DRIVER_TYPE_Z(A4988) + #define Z_RESET_PIN PC3 + #endif + + #if AXIS_DRIVER_TYPE_Z2(TMC2208) + #define Z2_SERIAL_TX_PIN PB1 + #define Z2_SERIAL_RX_PIN PB1 + #elif AXIS_DRIVER_TYPE_Z2(A4988) + #define Z2_RESET_PIN PB1 + #endif + + #if AXIS_DRIVER_TYPE_E0(TMC2208) + #define E0_SERIAL_TX_PIN PE2 + #define E0_SERIAL_RX_PIN PE2 + #elif AXIS_DRIVER_TYPE_E0(A4988) + #define E0_RESET_PIN PE2 + #endif + +#else + + /*** X ***/ + #define X_ENABLE_PIN PE4 + #define X_STEP_PIN PE3 + #define X_DIR_PIN PE2 + /*** Y ***/ + #define Y_ENABLE_PIN PF0 + #define Y_STEP_PIN PC13 + #define Y_DIR_PIN PE6 + /*** Z ***/ + #define Z_ENABLE_PIN PF4 + #define Z_STEP_PIN PF3 + #define Z_DIR_PIN PF2 + /*** Z2 ***/ + #define Z2_ENABLE_PIN PC2 + #define Z2_STEP_PIN PC1 + #define Z2_DIR_PIN PC0 + /*** E0 ***/ + #define E0_ENABLE_PIN PE0 + #define E0_STEP_PIN PB7 + #define E0_DIR_PIN PB6 + /*** E1 ***/ + #define E1_ENABLE_PIN PC5 + #define E1_STEP_PIN PC4 + #define E1_DIR_PIN PA1 + /*** TX、RX or Reset ***/ + #if AXIS_DRIVER_TYPE_X(TMC2208) + #define X_SERIAL_TX_PIN PE5 + #define X_SERIAL_RX_PIN PE5 + #elif AXIS_DRIVER_TYPE_X(A4988) + #define X_RESET_PIN PE5 + #endif + + #if AXIS_DRIVER_TYPE_Y(TMC2208) + #define Y_SERIAL_TX_PIN PF1 + #define Y_SERIAL_RX_PIN PF1 + #elif AXIS_DRIVER_TYPE_Y(A4988) + #define Y_RESET_PIN PF1 + #endif + + #if AXIS_DRIVER_TYPE_Z(TMC2208) + #define Z_SERIAL_TX_PIN PF9 // 此处应是PF10,但表与PF9反了 + #define Z_SERIAL_RX_PIN PF9 + #elif AXIS_DRIVER_TYPE_Z(A4988) + #define Z_RESET_PIN PF9 + #endif + + #if AXIS_DRIVER_TYPE_Z2(TMC2208) + #define Z2_SERIAL_TX_PIN PC3 + #define Z2_SERIAL_RX_PIN PC3 + #elif AXIS_DRIVER_TYPE_Z2(A4988) + #define Z2_RESET_PIN PC3 + #endif + + #if AXIS_DRIVER_TYPE_E0(TMC2208) + #define E0_SERIAL_TX_PIN PE1 + #define E0_SERIAL_RX_PIN PE1 + #elif AXIS_DRIVER_TYPE_E0(A4988) + #define E0_RESET_PIN PE1 + #endif + + #if AXIS_DRIVER_TYPE_E1(TMC2208) + #define E1_SERIAL_TX_PIN PB0 + #define E1_SERIAL_RX_PIN PB0 + #elif AXIS_DRIVER_TYPE_E1(A4988) + #define E1_RESET_PIN PB0 + #endif + +#endif + +#if HAS_TMC220x + // Reduce baud rate to improve software serial reliability + #define TMC_BAUD_RATE 19200 +#endif + +// +// Filament Sensor +// +#ifndef FIL_RUNOUT_PIN + #define FIL_RUNOUT_PIN PG10 +#endif + +// +// Power Supply Control +// +#ifndef PS_ON_PIN + #define PS_ON_PIN PG8 +#endif + +// +// Temperature Sensors +// +#define TEMP_0_PIN PF5 // T0 +#define TEMP_1_PIN PB1 // T0 +#define TEMP_BED_PIN PF6 // TB + +#ifndef TEMP_CHAMBER_PIN + // #define TEMP_CHAMBER_PIN PC3 // TC +#endif + +// +// Heaters / Fans +// +#define HEATER_0_PIN PD11 +#define HEATER_1_PIN PC7 +#define HEATER_BED_PIN PD13 + +#define FAN0_PIN PB9 +// #define FAN1_PIN PB8 + +#define STEP_TIMER_NUM 5 // Timer Index for Stepper +#define TEMP_TIMER_NUM 14 // Timer Index for Temperature + +// +// USB connect control +// +#define USB_CONNECT_PIN PG11 +#define USB_CONNECT_INVERTING false + +#define SD_DETECT_PIN PA8 +#define BEEPER_PIN PB12 +#define LED_PIN PB2 + +// #define NEOPIXEL_PIN PD7 + + +/** + * Note: Alfawise screens use various TFT controllers. Supported screens + * are based on the ILI9341, ILI9328 and ST7798V. Define init sequences for + * other screens in u8g_dev_tft_320x240_upscale_from_128x64.cpp + * + * If the screen stays white, disable 'LCD_RESET_PIN' to let the bootloader + * init the screen. + * + * Setting an 'LCD_RESET_PIN' may cause a flicker when entering the LCD menu + * because Marlin uses the reset as a failsafe to revive a glitchy LCD. + */ + +#define LCD_BACKLIGHT_PIN PG1 +#define FSMC_CS_PIN PG12 // FSMC_NE1 +#define FSMC_RS_PIN PF12 // A23 Register. Only one address needed +#define TFT_CS_PIN FSMC_CS_PIN +#define TFT_RS_PIN FSMC_RS_PIN +#define TFT_BACKLIGHT_PIN LCD_BACKLIGHT_PIN + +#define LCD_USE_DMA_FSMC // Use DMA transfers to send data to the TFT +#define FSMC_DMA_DEV DMA1 +#define FSMC_DMA_CHANNEL DMA_CH4 //fixme in F4 + +#if ENABLED(TOUCH_SCREEN) + #define TOUCH_CS_PIN PG0 + #define TOUCH_SCK_PIN PA5 + #define TOUCH_MOSI_PIN PA7 + #define TOUCH_MISO_PIN PA6 + #define TOUCH_INT_PIN PF15 // PenIRQ coming from XPT2046 触发 +#endif + +#define DOGLCD_MOSI -1 // Prevent auto-define by Conditionals_post.h +#define DOGLCD_SCK -1 + + +// +// OCP +// +#define MOTORS_OCP_PIN PF7 +#define BED_OCP_PIN PF8 +#define HOTEND_OCP_PIN PF10 // 应该为PF9,但表PF9、PF10的值反了,只能用这个 +#define SHUTDOWN_HOTEND_PIN PD12 +#define SHUTDOWN_BED_PIN PG7 + +// +// Onboard SD support +// +#define HAS_ONBOARD_SD + +#define SDIO_D0_PIN PC8 +#define SDIO_D1_PIN PC9 +#define SDIO_D2_PIN PC10 +#define SDIO_D3_PIN PC11 +#define SDIO_CK_PIN PC12 +#define SDIO_CMD_PIN PD2 + +#ifndef SDCARD_CONNECTION + #define SDCARD_CONNECTION ONBOARD +#endif + +#if SD_CONNECTION_IS(ONBOARD) + // #define SDIO_SUPPORT // Use SDIO for onboard SD + + #ifndef SDIO_SUPPORT + #define SOFTWARE_SPI // Use soft SPI for onboard SD + #define SD_SS_PIN SDIO_D3_PIN //A4 + #define SCK_PIN SDIO_CK_PIN //A5 + #define MISO_PIN SDIO_D0_PIN //A6 + #define MOSI_PIN SDIO_CMD_PIN //A7 + #endif +#endif + +// +// WIFI +// + +/** + * ----- + * TX | 1 2 | GND Enable PG1 // Must be high for module to run + * Enable | 3 4 | GPIO2 Reset PG0 // active low, probably OK to leave floating + * Reset | 5 6 | GPIO0 GPIO2 PF15 // must be high (ESP3D software configures this with a pullup so OK to leave as floating) + * 3.3V | 7 8 | RX GPIO0 PF14 // Leave as unused (ESP3D software configures this with a pullup so OK to leave as floating) + * ----- + * W1 + */ +#define ESP_WIFI_MODULE_COM 6 // Must also set either SERIAL_PORT or SERIAL_PORT_2 to this +#define ESP_WIFI_MODULE_BAUDRATE BAUDRATE // Must use same BAUDRATE as SERIAL_PORT & SERIAL_PORT_2 +#define ESP_WIFI_MODULE_RESET_PIN PG2 +#define ESP_WIFI_MODULE_ENABLE_PIN PG3 +#define ESP_WIFI_MODULE_GPIO0_PIN PG5 +#define ESP_WIFI_MODULE_GPIO2_PIN PG4 + +// #define SHUTTER_CTRL_PIN PB13 + +#else + +#if NOT_TARGET(STM32F4, STM32F4xx) + #error "Oops! Select an STM32F4 board in 'Tools > Board.'" +#elif HOTENDS > 2 || E_STEPPERS > 2 + #error "Black STM32F4VET6 supports up to 2 hotends / E-steppers." +#endif + +#ifndef BOARD_INFO_NAME + #define BOARD_INFO_NAME "BC.DZ.PC000007" + + #if ENABLED(ST32_SHIP) + #define CHIP_NAME "(S)" + #elif ENABLED(USE_GD32) + #define CHIP_NAME "(G)" + #endif + + #if ENABLED(R3_PRO) + #define ROBOT_NAME "-MAX" + #elif ENABLED(R4_PRO) + #define ROBOT_NAME "-PRO" + #else + #define ROBOT_NAME "" + #endif + + #if ENABLED(USE_TI_CHOKE) + #define MATERIALS_NAME "-Ti" + #else + #define MATERIALS_NAME "" + #endif +#endif + +#define DEFAULT_MACHINE_NAME "HP STM32F407VE" + +//#define I2C_EEPROM +#if 0 + #define SRAM_EEPROM_EMULATION + #define MARLIN_EEPROM_SIZE 0x2000 // 8KB +#else + #define W25QXX_SPI_EEPROM +#endif +// +// Servos +// +// #define SERVO0_PIN PC6 +// #define SERVO1_PIN PC7 +#ifdef HALL_PLATE +#define CALIB_PIN PB1 +#else +#define SERVO0_PIN PB1 +#endif + +// +// Z Probe must be this pins +// +#define Z_MIN_PROBE_PIN PB0 + +// +// Limit Switches +// +#if ENABLED(QUICK_PRINT) + #define X_MAX_PIN PF12 +#else +#define X_MIN_PIN PF12 +// #define X_MAX_PIN PA15 +#endif + +#define Y_MIN_PIN PF14 +// #define Y_MAX_PIN PD12 + +#ifdef Z_MIN_PROBE_USES_Z_MIN_ENDSTOP_PIN + #define Z_MIN_PIN PB1 +#else + #define Z_MIN_PIN PG0 + //#define Z_MAZ_PIN +#endif +// #define Z_MIN_PIN PG0 +// #define Z_MAX_PIN PD15 +#if ENABLED(R_B_LED) +#define RB_LED_PIN PB9 +#endif + +// +// Steppers +// +#define X_ENABLE_PIN PD3 +#define X_STEP_PIN PD2 +#define X_DIR_PIN PC10 + +#define Y_ENABLE_PIN PC12 +#define Y_STEP_PIN PA10 +#define Y_DIR_PIN PA9 + +#define Z_ENABLE_PIN PC9 +#define Z_STEP_PIN PG8 +#define Z_DIR_PIN PG7 + +#define E0_ENABLE_PIN PD13 +#define E0_STEP_PIN PD12 +#define E0_DIR_PIN PD11 + +#define Z2_ENABLE_PIN PG5 +#define Z2_STEP_PIN PG4 +#define Z2_DIR_PIN PG3 + +/** + * TMC2208/TMC2209 stepper drivers + */ +#if HAS_TMC220x + // + // Software serial ASYNC half duplex? + // + #define X_SERIAL_TX_PIN PD6 + #define X_SERIAL_RX_PIN PD6 + + #define Y_SERIAL_TX_PIN PC11 + #define Y_SERIAL_RX_PIN PC11 + + #define Z_SERIAL_TX_PIN PA8 + #define Z_SERIAL_RX_PIN PA8 + + #define E0_SERIAL_TX_PIN PG2 + #define E0_SERIAL_RX_PIN PG2 + + #define Z2_SERIAL_TX_PIN PG6 + #define Z2_SERIAL_RX_PIN PG6 + + // Reduce baud rate to improve software serial reliability + #define TMC_BAUD_RATE 19200 +#endif + +// +// Filament Sensor +// +#ifndef FIL_RUNOUT_PIN + #define FIL_RUNOUT_PIN PG1 +#endif + +// +// Power Supply Control +// +#ifndef PS_ON_PIN + #define PS_ON_PIN PA1 +#endif + +// +// Temperature Sensors +// +#define TEMP_0_PIN PC4 // T0 +#define TEMP_BED_PIN PC5 // TB + +#ifndef TEMP_CHAMBER_PIN + #define TEMP_CHAMBER_PIN PC3 // TC +#endif + +// +// Heaters / Fans +// +#define HEATER_0_PIN PC6 +#define HEATER_BED_PIN PC8 + +#define FAN_PIN PC7 + +#define STEP_TIMER_NUM 5 // Timer Index for Stepper +#define TEMP_TIMER_NUM 14 // Timer Index for Temperature + +// +// USB connect control +// +#define USB_CONNECT_PIN PA15 +#define USB_CONNECT_INVERTING false + +#define SD_DETECT_PIN PE3 +#define BEEPER_PIN PG11 +#define LED_PIN PG9 + +#define NEOPIXEL_PIN PB9 + + +// +// Misc. Functions +// +// #define KILL_PIN PB1 + +// +// LCD / Controller +// +// #define FSMC_GRAPHICAL_TFT //use offical tft lcd controller.? + +// #if HAS_FSMC_TFT +// /** +// * Note: MKS Robin TFT screens use various TFT controllers +// * Supported screens are based on the ILI9341, ST7789V and ILI9328 (320x240) +// * ILI9488 is not supported +// * Define init sequences for other screens in u8g_dev_tft_320x240_upscale_from_128x64.cpp +// * +// * If the screen stays white, disable 'LCD_RESET_PIN' +// * to let the bootloader init the screen. +// * +// * Setting an 'LCD_RESET_PIN' may cause a flicker when entering the LCD menu +// * because Marlin uses the reset as a failsafe to revive a glitchy LCD. +// */ +// //#define LCD_RESET_PIN PF6 +// #define LCD_BACKLIGHT_PIN PG10 +// #define FSMC_CS_PIN PD7 // NE1 +// #define FSMC_RS_PIN PE2 // A23 +// #define TFT_CS_PIN FSMC_CS_PIN +// #define TFT_RS_PIN FSMC_RS_PIN + +// #define LCD_USE_DMA_FSMC // Use DMA transfers to send data to the TFT +// #define FSMC_DMA_DEV DMA2 +// #define FSMC_DMA_CHANNEL DMA_CH5 +// #endif + +// #if NEED_TOUCH_PINS +// #define TOUCH_CS_PIN PB1 // SPI2_NSS +// #define TOUCH_SCK_PIN PB13 // SPI2_SCK +// #define TOUCH_MISO_PIN PB14 // SPI2_MISO +// #define TOUCH_MOSI_PIN PB15 // SPI2_MOSI +// #define TOUCH_INT_PIN -1 +// #endif + +//#define SD_DETECT_PIN PC5 +//#define SD_DETECT_PIN PA8 // SDIO SD_DETECT_PIN, external SDIO card reader only + + +/** + * Note: Alfawise screens use various TFT controllers. Supported screens + * are based on the ILI9341, ILI9328 and ST7798V. Define init sequences for + * other screens in u8g_dev_tft_320x240_upscale_from_128x64.cpp + * + * If the screen stays white, disable 'LCD_RESET_PIN' to let the bootloader + * init the screen. + * + * Setting an 'LCD_RESET_PIN' may cause a flicker when entering the LCD menu + * because Marlin uses the reset as a failsafe to revive a glitchy LCD. + */ + +#define LCD_BACKLIGHT_PIN PG10 +#define FSMC_CS_PIN PD7 // FSMC_NE1 +#define FSMC_RS_PIN PE2 // A23 Register. Only one address needed +#define TFT_CS_PIN FSMC_CS_PIN +#define TFT_RS_PIN FSMC_RS_PIN +#define TFT_BACKLIGHT_PIN LCD_BACKLIGHT_PIN + +#define LCD_USE_DMA_FSMC // Use DMA transfers to send data to the TFT +#define FSMC_DMA_DEV DMA1 +#define FSMC_DMA_CHANNEL DMA_CH4 //fixme in F4 + +#if ENABLED(TOUCH_SCREEN) + #define TOUCH_CS_PIN PB6 + #define TOUCH_SCK_PIN PB3 + #define TOUCH_MOSI_PIN PB5 + #define TOUCH_MISO_PIN PB4 + #define TOUCH_INT_PIN PB7 // PenIRQ coming from XPT2046 +#endif + +#define DOGLCD_MOSI -1 // Prevent auto-define by Conditionals_post.h +#define DOGLCD_SCK -1 + +// #define LCD_PINS_RS PE15 +// #define LCD_PINS_ENABLE PD8 +// #define LCD_PINS_D4 PE10 +// #define LCD_PINS_D5 PE12 +// #define LCD_PINS_D6 PD1 +// #define LCD_PINS_D7 PE8 +// #define BTN_ENC PD9 +// #define BTN_EN1 PD4 +// #define BTN_EN2 PD13 + + + +// +// Onboard SD support +// + +#define HAS_ONBOARD_SD + +#define SDIO_D0_PIN PA6 +#define SDIO_D1_PIN PC9 +#define SDIO_D2_PIN PC10 +#define SDIO_D3_PIN PA4 +#define SDIO_CK_PIN PA5 +#define SDIO_CMD_PIN PA7 + +#ifndef SDCARD_CONNECTION + #define SDCARD_CONNECTION ONBOARD +#endif + +#if SD_CONNECTION_IS(ONBOARD) + // #define SDIO_SUPPORT // Use SDIO for onboard SD + + #ifndef SDIO_SUPPORT + #define SOFTWARE_SPI // Use soft SPI for onboard SD + #define SDSS SDIO_D3_PIN //A4 + #define SCK_PIN SDIO_CK_PIN //A5 + #define MISO_PIN SDIO_D0_PIN //A6 + #define MOSI_PIN SDIO_CMD_PIN //A7 + #endif +#endif + + +// +// WIFI +// + +/** + * ----- + * TX | 1 2 | GND Enable PG1 // Must be high for module to run + * Enable | 3 4 | GPIO2 Reset PG0 // active low, probably OK to leave floating + * Reset | 5 6 | GPIO0 GPIO2 PF15 // must be high (ESP3D software configures this with a pullup so OK to leave as floating) + * 3.3V | 7 8 | RX GPIO0 PF14 // Leave as unused (ESP3D software configures this with a pullup so OK to leave as floating) + * ----- + * W1 + */ +#define ESP_WIFI_MODULE_COM 6 // Must also set either SERIAL_PORT or SERIAL_PORT_2 to this +#define ESP_WIFI_MODULE_BAUDRATE BAUDRATE // Must use same BAUDRATE as SERIAL_PORT & SERIAL_PORT_2 +#define ESP_WIFI_MODULE_RESET_PIN PE5 +#define ESP_WIFI_MODULE_ENABLE_PIN PE4 +#define ESP_WIFI_MODULE_GPIO0_PIN ESP_WIFI_MODULE_ENABLE_PIN +// #define ESP_WIFI_MODULE_GPIO2_PIN PF15 + +#endif diff --git a/buildroot/share/PlatformIO/boards/langgo407ve.json b/buildroot/share/PlatformIO/boards/langgo407ve.json new file mode 100644 index 0000000000..d697198d31 --- /dev/null +++ b/buildroot/share/PlatformIO/boards/langgo407ve.json @@ -0,0 +1,65 @@ +{ + "build": { + "core": "stm32", + "cpu": "cortex-m4", + "extra_flags": "-DSTM32F407xx", + "f_cpu": "168000000L", + "hwids": [ + [ + "0x1EAF", + "0x0003" + ], + [ + "0x0483", + "0x3748" + ] + ], + "mcu": "stm32f407vet6", + "variant": "MARLIN_F407VE", + "offset": "0x8000" + }, + "debug": { + "jlink_device": "STM32F407VE", + "openocd_target": "stm32f4x", + "svd_path": "STM32F40x.svd", + "tools": { + "stlink": { + "server": { + "arguments": [ + "-f", + "scripts/interface/stlink.cfg", + "-c", + "transport select hla_swd", + "-f", + "scripts/target/stm32f4x.cfg", + "-c", + "reset_config none" + ], + "executable": "bin/openocd", + "package": "tool-openocd" + } + } + } + }, + "frameworks": [ + "arduino", + "stm32cube" + ], + "name": "STM32F407VE (192k RAM. 512k Flash)", + "upload": { + "disable_flushing": false, + "maximum_ram_size": 131072, + "maximum_size": 514288, + "protocol": "jlink", + "protocols": [ + "stlink", + "dfu", + "jlink" + ], + "require_upload_port": true, + "use_1200bps_touch": false, + "wait_for_upload_port": false + }, + "url": "https://www.st.com/en/microcontrollers-microprocessors/stm32f407ve.html", + "vendor": "Generic" +} diff --git a/ini/stm32f4.ini b/ini/stm32f4.ini index 76d9b1a12f..f38ad2505b 100644 --- a/ini/stm32f4.ini +++ b/ini/stm32f4.ini @@ -145,6 +145,30 @@ board = marlin_blackSTM32F407VET6 build_flags = ${stm32_variant.build_flags} -DUSBD_USE_CDC_COMPOSITE -DUSE_USB_FS + +[env:LANGGO407VE] +extends = stm32_variant +platform = ${common_stm32.platform} +board = langgo407ve +build_flags = ${common_stm32.build_flags} + -DARDUINO_BLACK_F407ZE + -DST32_SHIP + -DUSBCON + -DUSBD_USE_CDC + -DUSE_USB_HS + -DUSE_USB_HS_IN_FS + -DVECT_TAB_OFFSET=0x8000 +extra_scripts = ${common.extra_scripts} + pre:buildroot/share/PlatformIO/scripts/generic_create_variant.py + buildroot/share/PlatformIO/scripts/stm32_bootloader.py +lib_extra_dirs = Marlin/lib +lib_deps = Marlin/lib/rtt + Marlin/lib/fat_fs + Marlin/lib/STM32_USB_Host_Library + + + + # # STM32F407VET6 Opulo Lumen REV3 # From 03ad47c54bcc04ef1b6aa94b238d95e07d7ba80d Mon Sep 17 00:00:00 2001 From: LuckyPuccio89 Date: Tue, 11 Mar 2025 13:53:58 +0100 Subject: [PATCH 2/7] Clean config --- Marlin/Config-export.h | 310 + Marlin/config.ini | 2 +- .../Include/gd32f4xx_adc.h | 515 - .../Include/gd32f4xx_can.h | 754 - .../Include/gd32f4xx_crc.h | 80 - .../Include/gd32f4xx_ctc.h | 192 - .../Include/gd32f4xx_dac.h | 270 - .../Include/gd32f4xx_dbg.h | 161 - .../Include/gd32f4xx_dci.h | 238 - .../Include/gd32f4xx_dma.h | 428 - .../Include/gd32f4xx_enet.h | 1680 -- .../Include/gd32f4xx_exmc.h | 809 - .../Include/gd32f4xx_exti.h | 277 - .../Include/gd32f4xx_fmc.h | 383 - .../Include/gd32f4xx_fwdgt.h | 106 - .../Include/gd32f4xx_gpio.h | 408 - .../Include/gd32f4xx_i2c.h | 422 - .../Include/gd32f4xx_ipa.h | 384 - .../Include/gd32f4xx_iref.h | 186 - .../Include/gd32f4xx_misc.h | 93 - .../Include/gd32f4xx_pmu.h | 199 - .../Include/gd32f4xx_rcu.h | 1179 -- .../Include/gd32f4xx_rtc.h | 640 - .../Include/gd32f4xx_sdio.h | 433 - .../Include/gd32f4xx_spi.h | 379 - .../Include/gd32f4xx_syscfg.h | 181 - .../Include/gd32f4xx_timer.h | 781 - .../Include/gd32f4xx_tli.h | 376 - .../Include/gd32f4xx_trng.h | 104 - .../Include/gd32f4xx_usart.h | 495 - .../Include/gd32f4xx_wwdgt.h | 88 - .../Source/gd32f4xx_adc.c | 1202 -- .../Source/gd32f4xx_can.c | 1018 - .../Source/gd32f4xx_crc.c | 128 - .../Source/gd32f4xx_ctc.c | 405 - .../Source/gd32f4xx_dac.c | 677 - .../Source/gd32f4xx_dbg.c | 198 - .../Source/gd32f4xx_dci.c | 345 - .../Source/gd32f4xx_dma.c | 905 - .../Source/gd32f4xx_enet.c | 3505 ---- .../Source/gd32f4xx_exmc.c | 1237 -- .../Source/gd32f4xx_exti.c | 257 - .../Source/gd32f4xx_fmc.c | 932 - .../Source/gd32f4xx_fwdgt.c | 157 - .../Source/gd32f4xx_gpio.c | 433 - .../Source/gd32f4xx_i2c.c | 819 - .../Source/gd32f4xx_ipa.c | 637 - .../Source/gd32f4xx_iref.c | 126 - .../Source/gd32f4xx_misc.c | 174 - .../Source/gd32f4xx_pmu.c | 391 - .../Source/gd32f4xx_rcu.c | 1329 -- .../Source/gd32f4xx_rtc.c | 1295 -- .../Source/gd32f4xx_sdio.c | 803 - .../Source/gd32f4xx_spi.c | 882 - .../Source/gd32f4xx_syscfg.c | 204 - .../Source/gd32f4xx_timer.c | 2063 -- .../Source/gd32f4xx_tli.c | 598 - .../Source/gd32f4xx_trng.c | 155 - .../Source/gd32f4xx_usart.c | 1009 - .../Source/gd32f4xx_wwdgt.c | 148 - .../GD32F4xx_standard_peripheral/library.json | 16 - Marlin/lib/GD32F4xx_usb_library/library.json | 16 - .../GD32F4xx_usb_library/src/cdc_acm_core.c | 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0000000000..4650083644 --- /dev/null +++ b/Marlin/Config-export.h @@ -0,0 +1,310 @@ +/** + * Config.h - Marlin Firmware distilled configuration + * Usage: Place this file in the 'Marlin' folder with the name 'Config.h'. + * + * Exported by Marlin build on 2025-03-10 at 19:12:22. + */ + +// +// Info +// +#define STRING_CONFIG_H_AUTHOR "(none, default config)" + +// +// Machine +// +#define MOTHERBOARD BOARD_LANGGO407 + +// +// EEPROM +// +#define EEPROM_BOOT_SILENT +#define EEPROM_CHITCHAT +#define EEPROM_SETTINGS +#define EEPROM_AUTO_INIT +#define EEPROM_INIT_NOW + +// +// Stepper Drivers +// +#define X_DRIVER_TYPE A4988 +#define Y_DRIVER_TYPE A4988 +#define Z_DRIVER_TYPE A4988 +#define E0_DRIVER_TYPE A4988 +#define X_ENABLE_ON LOW +#define Y_ENABLE_ON LOW +#define Z_ENABLE_ON LOW +#define E_ENABLE_ON LOW + +// +// Extruder +// +#define EXTRUDERS 1 +#define INVERT_E0_DIR false +#define DEFAULT_NOMINAL_FILAMENT_DIA 1.75 + +// +// Geometry +// +#define X_BED_SIZE 230 +#define X_MIN_POS 0 +#define X_MAX_POS X_BED_SIZE +#define Y_BED_SIZE 230 +#define Y_MIN_POS 0 +#define Y_MAX_POS Y_BED_SIZE +#define Z_MIN_POS 0 +#define Z_MAX_POS 260 +#define MIN_SOFTWARE_ENDSTOPS +#define MAX_SOFTWARE_ENDSTOPS +#define MIN_SOFTWARE_ENDSTOP_X +#define MIN_SOFTWARE_ENDSTOP_Y +#define MIN_SOFTWARE_ENDSTOP_Z +#define MAX_SOFTWARE_ENDSTOP_X +#define MAX_SOFTWARE_ENDSTOP_Y +#define MAX_SOFTWARE_ENDSTOP_Z + +// +// Homing +// +#define X_HOME_DIR -1 +#define Y_HOME_DIR -1 +#define Z_HOME_DIR -1 +#define HOMING_FEEDRATE_MM_M { (50*60), (50*60), (4*60) } +#define HOMING_BUMP_DIVISOR { 2, 2, 4 } +#define VALIDATE_HOMING_ENDSTOPS +#define HOMING_BUMP_MM { 5, 5, 2 } +#define Z_SAFE_HOMING_X_POINT X_CENTER +#define Z_SAFE_HOMING_Y_POINT Y_CENTER +#define Z_SAFE_HOMING + +// +// Motion +// +#define DEFAULT_AXIS_STEPS_PER_UNIT { 80, 80, 400, 500 } +#define AXIS_RELATIVE_MODES { false, false, false, false } +#define DEFAULT_MAX_FEEDRATE { 300, 300, 5, 25 } +#define DEFAULT_MAX_ACCELERATION { 3000, 3000, 100, 10000 } +#define INVERT_X_DIR false +#define INVERT_Y_DIR true +#define INVERT_Z_DIR true +#define STEP_STATE_E HIGH +#define STEP_STATE_X HIGH +#define STEP_STATE_Y HIGH +#define STEP_STATE_Z HIGH +#define JUNCTION_DEVIATION_MM 0.013 +#define DEFAULT_ACCELERATION 3000 +#define DEFAULT_TRAVEL_ACCELERATION 3000 +#define DEFAULT_RETRACT_ACCELERATION 3000 +#define DEFAULT_MINIMUMFEEDRATE 0.0 +#define DEFAULT_MINTRAVELFEEDRATE 0.0 +#define MIN_STEPS_PER_SEGMENT 6 +#define DEFAULT_MINSEGMENTTIME 20000 +#define JD_HANDLE_SMALL_SEGMENTS +#define DEFAULT_STEPPER_TIMEOUT_SEC 120 +#define DISABLE_IDLE_X +#define DISABLE_IDLE_Y +#define DISABLE_IDLE_Z +#define DISABLE_IDLE_E +#define SLOWDOWN +#define SLOWDOWN_DIVISOR 2 +#define EDITABLE_STEPS_PER_UNIT +#define MULTISTEPPING_LIMIT 16 + +// +// Endstops +// +#define X_MIN_ENDSTOP_HIT_STATE HIGH +#define Y_MIN_ENDSTOP_HIT_STATE HIGH +#define Z_MIN_ENDSTOP_HIT_STATE HIGH +#define ENDSTOPPULLUPS +#define Z_MIN_PROBE_ENDSTOP_HIT_STATE HIGH + +// +// Probes +// +#define PROBING_MARGIN 10 +#define XY_PROBE_FEEDRATE (133*60) +#define Z_CLEARANCE_BETWEEN_PROBES 5 +#define Z_CLEARANCE_DEPLOY_PROBE 10 +#define Z_PROBE_FEEDRATE_SLOW (Z_PROBE_FEEDRATE_FAST / 2) +#define Z_MIN_PROBE_USES_Z_MIN_ENDSTOP_PIN +#define NOZZLE_TO_PROBE_OFFSET { 0, 0, 0 } +#define Z_PROBE_FEEDRATE_FAST (4*60) +#define Z_PROBE_ERROR_TOLERANCE 3 +#define Z_PROBE_LOW_POINT -2 +#define NOZZLE_AS_PROBE + +// +// Temperature +// +#define THERMAL_PROTECTION_HYSTERESIS 4 +#define THERMAL_PROTECTION_PERIOD 40 +#define TEMP_SENSOR_0 1 +#define TEMP_HYSTERESIS 3 +#define HEATER_0_MINTEMP 5 +#define HEATER_0_MAXTEMP 275 +#define PREHEAT_1_TEMP_HOTEND 180 +#define BED_OVERSHOOT 10 +#define HOTEND_OVERSHOOT 15 +#define PREHEAT_1_FAN_SPEED 0 +#define PREHEAT_1_LABEL "PLA" +#define PREHEAT_1_TEMP_BED 70 +#define TEMP_BED_HYSTERESIS 3 +#define TEMP_BED_RESIDENCY_TIME 10 +#define TEMP_BED_WINDOW 1 +#define TEMP_RESIDENCY_TIME 10 +#define TEMP_WINDOW 1 +#define AUTOTEMP +#define AUTOTEMP_OLDWEIGHT 0.98 +#define BED_CHECK_INTERVAL 5000 +#define TEMP_SENSOR_BED 1 +#define THERMAL_PROTECTION_BED_HYSTERESIS 2 +#define WATCH_BED_TEMP_INCREASE 2 +#define WATCH_BED_TEMP_PERIOD 60 +#define WATCH_TEMP_INCREASE 2 +#define WATCH_TEMP_PERIOD 40 +#define PREHEAT_2_LABEL "ABS" +#define PREHEAT_2_TEMP_BED 110 +#define PREHEAT_2_FAN_SPEED 0 +#define BED_MINTEMP 5 +#define PREHEAT_2_TEMP_HOTEND 240 +#define BED_MAXTEMP 150 +#define AUTOTEMP_FACTOR 0.1f +#define AUTOTEMP_MIN 210 +#define THERMAL_PROTECTION_BED_PERIOD 20 +#define AUTOTEMP_MAX 250 + +// +// Hotend Temp +// +#define PIDTEMP +#define PID_K1 0.95 +#define PID_MAX 255 +#define DEFAULT_Kd 114.00 +#define DEFAULT_Ki 1.08 +#define DEFAULT_Kp 22.20 + +// +// PID Temp +// +#define PID_FUNCTIONAL_RANGE 10 + +// +// Bed Temp +// +#define MAX_BED_POWER 255 + +// +// Fans +// +#define E0_AUTO_FAN_PIN -1 + +// +// Media +// +#define SDSUPPORT + +// +// LCD +// +#define SHOW_BOOTSCREEN +#define ENCODER_100X_STEPS_PER_SEC 80 +#define ENCODER_10X_STEPS_PER_SEC 30 +#define ENCODER_RATE_MULTIPLIER +#define TFT_GENERIC +#define TFT_INTERFACE_FSMC +#define TFT_DRIVER AUTO +#define TFT_THEME BLACK_MARLIN +#define COMPACT_MARLIN_BOOT_LOGO +#define TFT_RES_480x320 +#define TFT_COLOR_UI +#define TFT_FONT NOTOSANS +#define SPEED_EDIT_MAX 999 +#define SPEED_EDIT_MIN 10 +#define SOUND_ON_DEFAULT +#define FINE_MANUAL_MOVE 0.025 +#define SD_PROCEDURE_DEPTH 1 +#define ULTIPANEL_FEEDMULTIPLY +#define FLOW_EDIT_MAX 999 +#define FLOW_EDIT_MIN 10 +#define BOOT_MARLIN_LOGO_SMALL +#define SHOW_ELAPSED_TIME +#define MANUAL_FEEDRATE { 50*60, 50*60, 4*60, 2*60 } +#define MANUAL_MOVE_DISTANCE_MM 10, 1.0, 0.1 +#define MANUAL_E_MOVES_RELATIVE +#define SD_FINISHED_STEPPERRELEASE true +#define SD_FINISHED_RELEASECOMMAND "M84" +#define LCD_INFO_MENU +#define BOOTSCREEN_TIMEOUT 3000 +#define SD_MENU_CONFIRM_START +#define SHOW_PROGRESS_PERCENT +#define EVENT_GCODE_SD_ABORT "G28XY" +#define SDCARD_RATHERRECENTFIRST + +// +// Interface +// +#define LCD_LANGUAGE en +#define INDIVIDUAL_AXIS_HOMING_MENU + +// +// G-code +// +#define BLOCK_BUFFER_SIZE 16 +#define FASTER_GCODE_PARSER +#define DEBUG_FLAGS_GCODE + +// +// Serial +// +#define SERIAL_PORT -1 +#define BAUDRATE 115200 +#define BUFSIZE 4 +#define MAX_CMD_SIZE 96 +#define PROPORTIONAL_FONT_RATIO 1.0 +#define SERIAL_OVERRUN_PROTECTION +#define TX_BUFFER_SIZE 0 +#define SERIAL_PORT_2 1 +#define SERIAL_PORT_3 3 +#define CUSTOM_MACHINE_NAME "3D Printer" +#define LCD_SERIAL_PORT SERIAL_PORT_3 + +// +// Host +// +#define BUSY_WHILE_HEATING +#define DEFAULT_KEEPALIVE_INTERVAL 2 +#define HOST_KEEPALIVE_FEATURE +#define PRINTJOB_TIMER_AUTOSTART + +// +// Reporting +// +#define AUTO_REPORT_TEMPERATURES +#define EXTENDED_CAPABILITIES_REPORT +#define CAPABILITIES_REPORT + +// +// Safety +// +#define USE_WATCHDOG +#define THERMAL_PROTECTION_HOTENDS +#define EXTRUDE_MAXLENGTH 200 +#define EXTRUDE_MINTEMP 170 +#define PREVENT_COLD_EXTRUSION +#define PREVENT_LENGTHY_EXTRUDE +#define THERMAL_PROTECTION_BED + +// +// Extras +// +#define ARC_SUPPORT +#define MAX_ARC_SEGMENT_MM 1.0 +#define MIN_ARC_SEGMENT_MM 0.1 +#define MIN_CIRCLE_SEGMENTS 72 +#define N_ARC_CORRECTION 25 + +// +// User +// +#define NEW_BOARD diff --git a/Marlin/config.ini b/Marlin/config.ini index d6d2395e39..1fb02f2184 100644 --- a/Marlin/config.ini +++ b/Marlin/config.ini @@ -41,7 +41,7 @@ # Produce a flattened set of Configuration.h and Configuration_adv.h files with only the enabled # #defines and no comments. A clean look, but context-free. # -ini_use_config = none +ini_use_config = all # Load all config: sections in this file ;ini_use_config = all diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_adc.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_adc.h deleted file mode 100644 index 3d61139452..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_adc.h +++ /dev/null @@ -1,515 +0,0 @@ -/*! - \file gd32f4xx_adc.h - \brief definitions for the ADC - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_ADC_H -#define GD32F4XX_ADC_H - -#include "gd32f4xx.h" - -/* ADC definitions */ -#define ADC0 ADC_BASE -#define ADC1 (ADC_BASE + 0x100U) -#define ADC2 (ADC_BASE + 0x200U) - -/* registers definitions */ -#define ADC_STAT(adcx) REG32((adcx) + 0x00U) /*!< ADC status register */ -#define ADC_CTL0(adcx) REG32((adcx) + 0x04U) /*!< ADC control register 0 */ -#define ADC_CTL1(adcx) REG32((adcx) + 0x08U) /*!< ADC control register 1 */ -#define ADC_SAMPT0(adcx) REG32((adcx) + 0x0CU) /*!< ADC sampling time register 0 */ -#define ADC_SAMPT1(adcx) REG32((adcx) + 0x10U) /*!< ADC sampling time register 1 */ -#define ADC_IOFF0(adcx) REG32((adcx) + 0x14U) /*!< ADC inserted channel data offset register 0 */ -#define ADC_IOFF1(adcx) REG32((adcx) + 0x18U) /*!< ADC inserted channel data offset register 1 */ -#define ADC_IOFF2(adcx) REG32((adcx) + 0x1CU) /*!< ADC inserted channel data offset register 2 */ -#define ADC_IOFF3(adcx) REG32((adcx) + 0x20U) /*!< ADC inserted channel data offset register 3 */ -#define ADC_WDHT(adcx) REG32((adcx) + 0x24U) /*!< ADC watchdog high threshold register */ -#define ADC_WDLT(adcx) REG32((adcx) + 0x28U) /*!< ADC watchdog low threshold register */ -#define ADC_RSQ0(adcx) REG32((adcx) + 0x2CU) /*!< ADC regular sequence register 0 */ -#define ADC_RSQ1(adcx) REG32((adcx) + 0x30U) /*!< ADC regular sequence register 1 */ -#define ADC_RSQ2(adcx) REG32((adcx) + 0x34U) /*!< ADC regular sequence register 2 */ -#define ADC_ISQ(adcx) REG32((adcx) + 0x38U) /*!< ADC inserted sequence register */ -#define ADC_IDATA0(adcx) REG32((adcx) + 0x3CU) /*!< ADC inserted data register 0 */ -#define ADC_IDATA1(adcx) REG32((adcx) + 0x40U) /*!< ADC inserted data register 1 */ -#define ADC_IDATA2(adcx) REG32((adcx) + 0x44U) /*!< ADC inserted data register 2 */ -#define ADC_IDATA3(adcx) REG32((adcx) + 0x48U) /*!< ADC inserted data register 3 */ -#define ADC_RDATA(adcx) REG32((adcx) + 0x4CU) /*!< ADC regular data register */ -#define ADC_OVSAMPCTL(adcx) REG32((adcx) + 0x80U) /*!< ADC oversampling control register */ -#define ADC_SSTAT REG32((ADC_BASE) + 0x300U) /*!< ADC summary status register */ -#define ADC_SYNCCTL REG32((ADC_BASE) + 0x304U) /*!< ADC synchronization control register */ -#define ADC_SYNCDATA REG32((ADC_BASE) + 0x308U) /*!< ADC synchronization regular data register */ - -/* bits definitions */ -/* ADC_STAT */ -#define ADC_STAT_WDE BIT(0) /*!< analog watchdog event flag */ -#define ADC_STAT_EOC BIT(1) /*!< end of conversion */ -#define ADC_STAT_EOIC BIT(2) /*!< inserted channel end of conversion */ -#define ADC_STAT_STIC BIT(3) /*!< inserted channel start flag */ -#define ADC_STAT_STRC BIT(4) /*!< regular channel start flag */ -#define ADC_STAT_ROVF BIT(5) /*!< regular data register overflow */ - -/* ADC_CTL0 */ -#define ADC_CTL0_WDCHSEL BITS(0,4) /*!< analog watchdog channel select bits */ -#define ADC_CTL0_EOCIE BIT(5) /*!< interrupt enable for EOC */ -#define ADC_CTL0_WDEIE BIT(6) /*!< analog watchdog interrupt enable */ -#define ADC_CTL0_EOICIE BIT(7) /*!< interrupt enable for inserted channels */ -#define ADC_CTL0_SM BIT(8) /*!< scan mode */ -#define ADC_CTL0_WDSC BIT(9) /*!< when in scan mode, analog watchdog is effective on a single channel */ -#define ADC_CTL0_ICA BIT(10) /*!< automatic inserted group conversion */ -#define ADC_CTL0_DISRC BIT(11) /*!< discontinuous mode on regular channels */ -#define ADC_CTL0_DISIC BIT(12) /*!< discontinuous mode on inserted channels */ -#define ADC_CTL0_DISNUM BITS(13,15) /*!< discontinuous mode channel count */ -#define ADC_CTL0_IWDEN BIT(22) /*!< analog watchdog enable on inserted channels */ -#define ADC_CTL0_RWDEN BIT(23) /*!< analog watchdog enable on regular channels */ -#define ADC_CTL0_DRES BITS(24,25) /*!< ADC data resolution */ -#define ADC_CTL0_ROVFIE BIT(26) /*!< interrupt enable for ROVF */ - -/* ADC_CTL1 */ -#define ADC_CTL1_ADCON BIT(0) /*!< ADC converter on */ -#define ADC_CTL1_CTN BIT(1) /*!< continuous conversion */ -#define ADC_CTL1_CLB BIT(2) /*!< ADC calibration */ -#define ADC_CTL1_RSTCLB BIT(3) /*!< reset calibration */ -#define ADC_CTL1_DMA BIT(8) /*!< direct memory access mode */ -#define ADC_CTL1_DDM BIT(9) /*!< DMA disable mode */ -#define ADC_CTL1_EOCM BIT(10) /*!< end of conversion mode */ -#define ADC_CTL1_DAL BIT(11) /*!< data alignment */ -#define ADC_CTL1_ETSIC BITS(16,19) /*!< external event select for inserted group */ -#define ADC_CTL1_ETMIC BITS(20,21) /*!< external trigger conversion mode for inserted channels */ -#define ADC_CTL1_SWICST BIT(22) /*!< start conversion of inserted channels */ -#define ADC_CTL1_ETSRC BITS(24,27) /*!< external event select for regular group */ -#define ADC_CTL1_ETMRC BITS(28,29) /*!< external trigger conversion mode for regular channels */ -#define ADC_CTL1_SWRCST BIT(30) /*!< start conversion of regular channels */ - -/* ADC_SAMPTx x=0..1 */ -#define ADC_SAMPTX_SPTN BITS(0,2) /*!< channel x sample time selection */ - -/* ADC_IOFFx x=0..3 */ -#define ADC_IOFFX_IOFF BITS(0,11) /*!< data offset for inserted channel x */ - -/* ADC_WDHT */ -#define ADC_WDHT_WDHT BITS(0,11) /*!< analog watchdog high threshold */ - -/* ADC_WDLT */ -#define ADC_WDLT_WDLT BITS(0,11) /*!< analog watchdog low threshold */ - -/* ADC_RSQx */ -#define ADC_RSQX_RSQN BITS(0,4) /*!< x conversion in regular sequence */ -#define ADC_RSQ0_RL BITS(20,23) /*!< regular channel sequence length */ - -/* ADC_ISQ */ -#define ADC_ISQ_ISQN BITS(0,4) /*!< x conversion in regular sequence */ -#define ADC_ISQ_IL BITS(20,21) /*!< inserted sequence length */ - -/* ADC_IDATAx x=0..3*/ -#define ADC_IDATAX_IDATAN BITS(0,15) /*!< inserted data x */ - -/* ADC_RDATA */ -#define ADC_RDATA_RDATA BITS(0,15) /*!< regular data */ - -/* ADC_OVSAMPCTL */ -#define ADC_OVSAMPCTL_OVSEN BIT(0) /*!< oversampling enable */ -#define ADC_OVSAMPCTL_OVSR BITS(2,4) /*!< oversampling ratio */ -#define ADC_OVSAMPCTL_OVSS BITS(5,8) /*!< oversampling shift */ -#define ADC_OVSAMPCTL_TOVS BIT(9) /*!< triggered oversampling */ - -/* ADC_SSTAT */ -#define ADC_SSTAT_WDE0 BIT(0) /*!< the mirror image of the WDE bit of ADC0 */ -#define ADC_SSTAT_EOC0 BIT(1) /*!< the mirror image of the EOC bit of ADC0 */ -#define ADC_SSTAT_EOIC0 BIT(2) /*!< the mirror image of the EOIC bit of ADC0 */ -#define ADC_SSTAT_STIC0 BIT(3) /*!< the mirror image of the STIC bit of ADC0 */ -#define ADC_SSTAT_STRC0 BIT(4) /*!< the mirror image of the STRC bit of ADC0 */ -#define ADC_SSTAT_ROVF0 BIT(5) /*!< the mirror image of the ROVF bit of ADC0 */ -#define ADC_SSTAT_WDE1 BIT(8) /*!< the mirror image of the WDE bit of ADC1 */ -#define ADC_SSTAT_EOC1 BIT(9) /*!< the mirror image of the EOC bit of ADC1 */ -#define ADC_SSTAT_EOIC1 BIT(10) /*!< the mirror image of the EOIC bit of ADC1 */ -#define ADC_SSTAT_STIC1 BIT(11) /*!< the mirror image of the STIC bit of ADC1 */ -#define ADC_SSTAT_STRC1 BIT(12) /*!< the mirror image of the STRC bit of ADC1 */ -#define ADC_SSTAT_ROVF1 BIT(13) /*!< the mirror image of the ROVF bit of ADC1 */ -#define ADC_SSTAT_WDE2 BIT(16) /*!< the mirror image of the WDE bit of ADC2 */ -#define ADC_SSTAT_EOC2 BIT(17) /*!< the mirror image of the EOC bit of ADC2 */ -#define ADC_SSTAT_EOIC2 BIT(18) /*!< the mirror image of the EOIC bit of ADC2 */ -#define ADC_SSTAT_STIC2 BIT(19) /*!< the mirror image of the STIC bit of ADC2 */ -#define ADC_SSTAT_STRC2 BIT(20) /*!< the mirror image of the STRC bit of ADC2 */ -#define ADC_SSTAT_ROVF2 BIT(21) /*!< the mirror image of the ROVF bit of ADC2 */ - -/* ADC_SYNCCTL */ -#define ADC_SYNCCTL_SYNCM BITS(0,4) /*!< ADC synchronization mode */ -#define ADC_SYNCCTL_SYNCDLY BITS(8,11) /*!< ADC synchronization delay */ -#define ADC_SYNCCTL_SYNCDDM BIT(13) /*!< ADC synchronization DMA disable mode */ -#define ADC_SYNCCTL_SYNCDMA BITS(14,15) /*!< ADC synchronization DMA mode selection */ -#define ADC_SYNCCTL_ADCCK BITS(16,18) /*!< ADC clock */ -#define ADC_SYNCCTL_VBATEN BIT(22) /*!< channel 18 (1/4 voltate of external battery) enable of ADC0 */ -#define ADC_SYNCCTL_TSVREN BIT(23) /*!< channel 16 (temperature sensor) and 17 (internal reference voltage) enable of ADC0 */ - -/* ADC_SYNCDATA */ -#define ADC_SYNCDATA_SYNCDATA0 BITS(0,15) /*!< regular data1 in ADC synchronization mode */ -#define ADC_SYNCDATA_SYNCDATA1 BITS(16,31) /*!< regular data2 in ADC synchronization mode */ - -/* constants definitions */ -/* ADC status flag */ -#define ADC_FLAG_WDE ADC_STAT_WDE /*!< analog watchdog event flag */ -#define ADC_FLAG_EOC ADC_STAT_EOC /*!< end of conversion */ -#define ADC_FLAG_EOIC ADC_STAT_EOIC /*!< inserted channel end of conversion */ -#define ADC_FLAG_STIC ADC_STAT_STIC /*!< inserted channel start flag */ -#define ADC_FLAG_STRC ADC_STAT_STRC /*!< regular channel start flag */ -#define ADC_FLAG_ROVF ADC_STAT_ROVF /*!< regular data register overflow */ - -/* adc_ctl0 register value */ -#define CTL0_DISNUM(regval) (BITS(13,15) & ((uint32_t)(regval) << 13)) /*!< write value to ADC_CTL0_DISNUM bit field */ - -/* ADC special function definitions */ -#define ADC_SCAN_MODE ADC_CTL0_SM /*!< scan mode */ -#define ADC_INSERTED_CHANNEL_AUTO ADC_CTL0_ICA /*!< inserted channel group convert automatically */ -#define ADC_CONTINUOUS_MODE ADC_CTL1_CTN /*!< continuous mode */ - -/* temperature sensor channel, internal reference voltage channel, VBAT channel */ -#define ADC_VBAT_CHANNEL_SWITCH ADC_SYNCCTL_VBATEN /*!< VBAT channel */ -#define ADC_TEMP_VREF_CHANNEL_SWITCH ADC_SYNCCTL_TSVREN /*!< Vref and Vtemp channel */ - -/* ADC synchronization mode */ -#define SYNCCTL_SYNCM(regval) (BITS(0,4) & ((uint32_t)(regval))) /*!< write value to ADC_CTL0_SYNCM bit field */ -#define ADC_SYNC_MODE_INDEPENDENT SYNCCTL_SYNCM(0) /*!< ADC synchronization mode disabled.All the ADCs work independently */ -#define ADC_DAUL_REGULAL_PARALLEL_INSERTED_PARALLEL SYNCCTL_SYNCM(1) /*!< ADC0 and ADC1 work in combined regular parallel & inserted parallel mode. ADC2 works independently */ -#define ADC_DAUL_REGULAL_PARALLEL_INSERTED_ROTATION SYNCCTL_SYNCM(2) /*!< ADC0 and ADC1 work in combined regular parallel & trigger rotation mode. ADC2 works independently */ -#define ADC_DAUL_INSERTED_PARALLEL SYNCCTL_SYNCM(5) /*!< ADC0 and ADC1 work in inserted parallel mode. ADC2 works independently */ -#define ADC_DAUL_REGULAL_PARALLEL SYNCCTL_SYNCM(6) /*!< ADC0 and ADC1 work in regular parallel mode. ADC2 works independently */ -#define ADC_DAUL_REGULAL_FOLLOW_UP SYNCCTL_SYNCM(7) /*!< ADC0 and ADC1 work in follow-up mode. ADC2 works independently */ -#define ADC_DAUL_INSERTED_TRRIGGER_ROTATION SYNCCTL_SYNCM(9) /*!< ADC0 and ADC1 work in trigger rotation mode. ADC2 works independently */ -#define ADC_ALL_REGULAL_PARALLEL_INSERTED_PARALLEL SYNCCTL_SYNCM(17) /*!< all ADCs work in combined regular parallel & inserted parallel mode */ -#define ADC_ALL_REGULAL_PARALLEL_INSERTED_ROTATION SYNCCTL_SYNCM(18) /*!< all ADCs work in combined regular parallel & trigger rotation mode */ -#define ADC_ALL_INSERTED_PARALLEL SYNCCTL_SYNCM(21) /*!< all ADCs work in inserted parallel mode */ -#define ADC_ALL_REGULAL_PARALLEL SYNCCTL_SYNCM(22) /*!< all ADCs work in regular parallel mode */ -#define ADC_ALL_REGULAL_FOLLOW_UP SYNCCTL_SYNCM(23) /*!< all ADCs work in follow-up mode */ -#define ADC_ALL_INSERTED_TRRIGGER_ROTATION SYNCCTL_SYNCM(25) /*!< all ADCs work in trigger rotation mode */ - -/* ADC data alignment */ -#define ADC_DATAALIGN_RIGHT ((uint32_t)0x00000000U) /*!< LSB alignment */ -#define ADC_DATAALIGN_LEFT ADC_CTL1_DAL /*!< MSB alignment */ - -/* external trigger mode for regular and inserted channel */ -#define EXTERNAL_TRIGGER_DISABLE ((uint32_t)0x00000000U) /*!< external trigger disable */ -#define EXTERNAL_TRIGGER_RISING ((uint32_t)0x00000001U) /*!< rising edge of external trigger */ -#define EXTERNAL_TRIGGER_FALLING ((uint32_t)0x00000002U) /*!< falling edge of external trigger */ -#define EXTERNAL_TRIGGER_RISING_FALLING ((uint32_t)0x00000003U) /*!< rising and falling edge of external trigger */ - -/* ADC external trigger select for regular channel */ -#define CTL1_ETSRC(regval) (BITS(24,27) & ((uint32_t)(regval) << 24)) -#define ADC_EXTTRIG_REGULAR_T0_CH0 CTL1_ETSRC(0) /*!< timer 0 CC0 event select */ -#define ADC_EXTTRIG_REGULAR_T0_CH1 CTL1_ETSRC(1) /*!< timer 0 CC1 event select */ -#define ADC_EXTTRIG_REGULAR_T0_CH2 CTL1_ETSRC(2) /*!< timer 0 CC2 event select */ -#define ADC_EXTTRIG_REGULAR_T1_CH1 CTL1_ETSRC(3) /*!< timer 1 CC1 event select */ -#define ADC_EXTTRIG_REGULAR_T1_CH2 CTL1_ETSRC(4) /*!< timer 1 CC2 event select */ -#define ADC_EXTTRIG_REGULAR_T1_CH3 CTL1_ETSRC(5) /*!< timer 1 CC3 event select */ -#define ADC_EXTTRIG_REGULAR_T1_TRGO CTL1_ETSRC(6) /*!< timer 1 TRGO event select */ -#define ADC_EXTTRIG_REGULAR_T2_CH0 CTL1_ETSRC(7) /*!< timer 2 CC0 event select */ -#define ADC_EXTTRIG_REGULAR_T2_TRGO CTL1_ETSRC(8) /*!< timer 2 TRGO event select */ -#define ADC_EXTTRIG_REGULAR_T3_CH3 CTL1_ETSRC(9) /*!< timer 3 CC3 event select */ -#define ADC_EXTTRIG_REGULAR_T4_CH0 CTL1_ETSRC(10) /*!< timer 4 CC0 event select */ -#define ADC_EXTTRIG_REGULAR_T4_CH1 CTL1_ETSRC(11) /*!< timer 4 CC1 event select */ -#define ADC_EXTTRIG_REGULAR_T4_CH2 CTL1_ETSRC(12) /*!< timer 4 CC2 event select */ -#define ADC_EXTTRIG_REGULAR_T7_CH0 CTL1_ETSRC(13) /*!< timer 7 CC0 event select */ -#define ADC_EXTTRIG_REGULAR_T7_TRGO CTL1_ETSRC(14) /*!< timer 7 TRGO event select */ -#define ADC_EXTTRIG_REGULAR_EXTI_11 CTL1_ETSRC(15) /*!< extiline 11 select */ - -/* ADC external trigger select for inserted channel */ -#define CTL1_ETSIC(regval) (BITS(16,19) & ((uint32_t)(regval) << 16)) -#define ADC_EXTTRIG_INSERTED_T0_CH3 CTL1_ETSIC(0) /*!< timer0 capture compare 3 */ -#define ADC_EXTTRIG_INSERTED_T0_TRGO CTL1_ETSIC(1) /*!< timer0 TRGO event */ -#define ADC_EXTTRIG_INSERTED_T1_CH0 CTL1_ETSIC(2) /*!< timer1 capture compare 0 */ -#define ADC_EXTTRIG_INSERTED_T1_TRGO CTL1_ETSIC(3) /*!< timer1 TRGO event */ -#define ADC_EXTTRIG_INSERTED_T2_CH1 CTL1_ETSIC(4) /*!< timer2 capture compare 1 */ -#define ADC_EXTTRIG_INSERTED_T2_CH3 CTL1_ETSIC(5) /*!< timer2 capture compare 3 */ -#define ADC_EXTTRIG_INSERTED_T3_CH0 CTL1_ETSIC(6) /*!< timer3 capture compare 0 */ -#define ADC_EXTTRIG_INSERTED_T3_CH1 CTL1_ETSIC(7) /*!< timer3 capture compare 1 */ -#define ADC_EXTTRIG_INSERTED_T3_CH2 CTL1_ETSIC(8) /*!< timer3 capture compare 2 */ -#define ADC_EXTTRIG_INSERTED_T3_TRGO CTL1_ETSIC(9) /*!< timer3 capture compare TRGO */ -#define ADC_EXTTRIG_INSERTED_T4_CH3 CTL1_ETSIC(10) /*!< timer4 capture compare 3 */ -#define ADC_EXTTRIG_INSERTED_T4_TRGO CTL1_ETSIC(11) /*!< timer4 capture compare TRGO */ -#define ADC_EXTTRIG_INSERTED_T7_CH1 CTL1_ETSIC(12) /*!< timer7 capture compare 1 */ -#define ADC_EXTTRIG_INSERTED_T7_CH2 CTL1_ETSIC(13) /*!< timer7 capture compare 2 */ -#define ADC_EXTTRIG_INSERTED_T7_CH3 CTL1_ETSIC(14) /*!< timer7 capture compare 3 */ -#define ADC_EXTTRIG_INSERTED_EXTI_15 CTL1_ETSIC(15) /*!< external interrupt line 15 */ - -/* ADC channel sample time */ -#define SAMPTX_SPT(regval) (BITS(0,2) & ((uint32_t)(regval) << 0)) /*!< write value to ADC_SAMPTX_SPT bit field */ -#define ADC_SAMPLETIME_3 SAMPTX_SPT(0) /*!< 3 sampling cycles */ -#define ADC_SAMPLETIME_15 SAMPTX_SPT(1) /*!< 15 sampling cycles */ -#define ADC_SAMPLETIME_28 SAMPTX_SPT(2) /*!< 28 sampling cycles */ -#define ADC_SAMPLETIME_56 SAMPTX_SPT(3) /*!< 56 sampling cycles */ -#define ADC_SAMPLETIME_84 SAMPTX_SPT(4) /*!< 84 sampling cycles */ -#define ADC_SAMPLETIME_112 SAMPTX_SPT(5) /*!< 112 sampling cycles */ -#define ADC_SAMPLETIME_144 SAMPTX_SPT(6) /*!< 144 sampling cycles */ -#define ADC_SAMPLETIME_480 SAMPTX_SPT(7) /*!< 480 sampling cycles */ - -/* adc_ioffx register value */ -#define IOFFX_IOFF(regval) (BITS(0,11) & ((uint32_t)(regval) << 0)) /*!< write value to ADC_IOFFX_IOFF bit field */ - -/* adc_wdht register value */ -#define WDHT_WDHT(regval) (BITS(0,11) & ((uint32_t)(regval) << 0)) /*!< write value to ADC_WDHT_WDHT bit field */ - -/* adc_wdlt register value */ -#define WDLT_WDLT(regval) (BITS(0,11) & ((uint32_t)(regval) << 0)) /*!< write value to ADC_WDLT_WDLT bit field */ - -/* adc_rsqx register value */ -#define RSQ0_RL(regval) (BITS(20,23) & ((uint32_t)(regval) << 20)) /*!< write value to ADC_RSQ0_RL bit field */ - -/* adc_isq register value */ -#define ISQ_IL(regval) (BITS(20,21) & ((uint32_t)(regval) << 20)) /*!< write value to ADC_ISQ_IL bit field */ - -/* adc_ovsampctl register value */ -/* ADC resolution */ -#define CTL0_DRES(regval) (BITS(24,25) & ((uint32_t)(regval) << 24)) /*!< write value to ADC_CTL0_DRES bit field */ -#define ADC_RESOLUTION_12B CTL0_DRES(0) /*!< 12-bit ADC resolution */ -#define ADC_RESOLUTION_10B CTL0_DRES(1) /*!< 10-bit ADC resolution */ -#define ADC_RESOLUTION_8B CTL0_DRES(2) /*!< 8-bit ADC resolution */ -#define ADC_RESOLUTION_6B CTL0_DRES(3) /*!< 6-bit ADC resolution */ - -/* oversampling shift */ -#define OVSAMPCTL_OVSS(regval) (BITS(5,8) & ((uint32_t)(regval) << 5)) /*!< write value to ADC_OVSAMPCTL_OVSS bit field */ -#define ADC_OVERSAMPLING_SHIFT_NONE OVSAMPCTL_OVSS(0) /*!< no oversampling shift */ -#define ADC_OVERSAMPLING_SHIFT_1B OVSAMPCTL_OVSS(1) /*!< 1-bit oversampling shift */ -#define ADC_OVERSAMPLING_SHIFT_2B OVSAMPCTL_OVSS(2) /*!< 2-bit oversampling shift */ -#define ADC_OVERSAMPLING_SHIFT_3B OVSAMPCTL_OVSS(3) /*!< 3-bit oversampling shift */ -#define ADC_OVERSAMPLING_SHIFT_4B OVSAMPCTL_OVSS(4) /*!< 4-bit oversampling shift */ -#define ADC_OVERSAMPLING_SHIFT_5B OVSAMPCTL_OVSS(5) /*!< 5-bit oversampling shift */ -#define ADC_OVERSAMPLING_SHIFT_6B OVSAMPCTL_OVSS(6) /*!< 6-bit oversampling shift */ -#define ADC_OVERSAMPLING_SHIFT_7B OVSAMPCTL_OVSS(7) /*!< 7-bit oversampling shift */ -#define ADC_OVERSAMPLING_SHIFT_8B OVSAMPCTL_OVSS(8) /*!< 8-bit oversampling shift */ - -/* oversampling ratio */ -#define OVSAMPCTL_OVSR(regval) (BITS(2,4) & ((uint32_t)(regval) << 2)) /*!< write value to ADC_OVSAMPCTL_OVSR bit field */ -#define ADC_OVERSAMPLING_RATIO_MUL2 OVSAMPCTL_OVSR(0) /*!< oversampling ratio multiple 2 */ -#define ADC_OVERSAMPLING_RATIO_MUL4 OVSAMPCTL_OVSR(1) /*!< oversampling ratio multiple 4 */ -#define ADC_OVERSAMPLING_RATIO_MUL8 OVSAMPCTL_OVSR(2) /*!< oversampling ratio multiple 8 */ -#define ADC_OVERSAMPLING_RATIO_MUL16 OVSAMPCTL_OVSR(3) /*!< oversampling ratio multiple 16 */ -#define ADC_OVERSAMPLING_RATIO_MUL32 OVSAMPCTL_OVSR(4) /*!< oversampling ratio multiple 32 */ -#define ADC_OVERSAMPLING_RATIO_MUL64 OVSAMPCTL_OVSR(5) /*!< oversampling ratio multiple 64 */ -#define ADC_OVERSAMPLING_RATIO_MUL128 OVSAMPCTL_OVSR(6) /*!< oversampling ratio multiple 128 */ -#define ADC_OVERSAMPLING_RATIO_MUL256 OVSAMPCTL_OVSR(7) /*!< oversampling ratio multiple 256 */ - -/* triggered Oversampling */ -#define ADC_OVERSAMPLING_ALL_CONVERT ((uint32_t)0x00000000U) /*!< all oversampled conversions for a channel are done consecutively after a trigger */ -#define ADC_OVERSAMPLING_ONE_CONVERT ADC_OVSAMPCTL_TOVS /*!< each oversampled conversion for a channel needs a trigger */ - -/* ADC channel group definitions */ -#define ADC_REGULAR_CHANNEL ((uint8_t)0x01U) /*!< adc regular channel group */ -#define ADC_INSERTED_CHANNEL ((uint8_t)0x02U) /*!< adc inserted channel group */ -#define ADC_REGULAR_INSERTED_CHANNEL ((uint8_t)0x03U) /*!< both regular and inserted channel group */ -#define ADC_CHANNEL_DISCON_DISABLE ((uint8_t)0x04U) /*!< disable discontinuous mode of regular & inserted channel */ - -/* ADC inserted channel definitions */ -#define ADC_INSERTED_CHANNEL_0 ((uint8_t)0x00U) /*!< adc inserted channel 0 */ -#define ADC_INSERTED_CHANNEL_1 ((uint8_t)0x01U) /*!< adc inserted channel 1 */ -#define ADC_INSERTED_CHANNEL_2 ((uint8_t)0x02U) /*!< adc inserted channel 2 */ -#define ADC_INSERTED_CHANNEL_3 ((uint8_t)0x03U) /*!< adc inserted channel 3 */ - -/* ADC channel definitions */ -#define ADC_CHANNEL_0 ((uint8_t)0x00U) /*!< ADC channel 0 */ -#define ADC_CHANNEL_1 ((uint8_t)0x01U) /*!< ADC channel 1 */ -#define ADC_CHANNEL_2 ((uint8_t)0x02U) /*!< ADC channel 2 */ -#define ADC_CHANNEL_3 ((uint8_t)0x03U) /*!< ADC channel 3 */ -#define ADC_CHANNEL_4 ((uint8_t)0x04U) /*!< ADC channel 4 */ -#define ADC_CHANNEL_5 ((uint8_t)0x05U) /*!< ADC channel 5 */ -#define ADC_CHANNEL_6 ((uint8_t)0x06U) /*!< ADC channel 6 */ -#define ADC_CHANNEL_7 ((uint8_t)0x07U) /*!< ADC channel 7 */ -#define ADC_CHANNEL_8 ((uint8_t)0x08U) /*!< ADC channel 8 */ -#define ADC_CHANNEL_9 ((uint8_t)0x09U) /*!< ADC channel 9 */ -#define ADC_CHANNEL_10 ((uint8_t)0x0AU) /*!< ADC channel 10 */ -#define ADC_CHANNEL_11 ((uint8_t)0x0BU) /*!< ADC channel 11 */ -#define ADC_CHANNEL_12 ((uint8_t)0x0CU) /*!< ADC channel 12 */ -#define ADC_CHANNEL_13 ((uint8_t)0x0DU) /*!< ADC channel 13 */ -#define ADC_CHANNEL_14 ((uint8_t)0x0EU) /*!< ADC channel 14 */ -#define ADC_CHANNEL_15 ((uint8_t)0x0FU) /*!< ADC channel 15 */ -#define ADC_CHANNEL_16 ((uint8_t)0x10U) /*!< ADC channel 16 */ -#define ADC_CHANNEL_17 ((uint8_t)0x11U) /*!< ADC channel 17 */ -#define ADC_CHANNEL_18 ((uint8_t)0x12U) /*!< ADC channel 18 */ - -/* ADC interrupt flag */ -#define ADC_INT_WDE ADC_CTL0_WDEIE /*!< analog watchdog event interrupt */ -#define ADC_INT_EOC ADC_CTL0_EOCIE /*!< end of group conversion interrupt */ -#define ADC_INT_EOIC ADC_CTL0_EOICIE /*!< end of inserted group conversion interrupt */ -#define ADC_INT_ROVF ADC_CTL0_ROVFIE /*!< regular data register overflow */ - -/* ADC interrupt flag */ -#define ADC_INT_FLAG_WDE ADC_STAT_WDE /*!< analog watchdog event interrupt */ -#define ADC_INT_FLAG_EOC ADC_STAT_EOC /*!< end of group conversion interrupt */ -#define ADC_INT_FLAG_EOIC ADC_STAT_EOIC /*!< end of inserted group conversion interrupt */ -#define ADC_INT_FLAG_ROVF ADC_STAT_ROVF /*!< regular data register overflow */ - -/* configure the ADC clock for all the ADCs */ -#define SYNCCTL_ADCCK(regval) (BITS(16,18) & ((uint32_t)(regval) << 16)) -#define ADC_ADCCK_PCLK2_DIV2 SYNCCTL_ADCCK(0) /*!< PCLK2 div2 */ -#define ADC_ADCCK_PCLK2_DIV4 SYNCCTL_ADCCK(1) /*!< PCLK2 div4 */ -#define ADC_ADCCK_PCLK2_DIV6 SYNCCTL_ADCCK(2) /*!< PCLK2 div6 */ -#define ADC_ADCCK_PCLK2_DIV8 SYNCCTL_ADCCK(3) /*!< PCLK2 div8 */ -#define ADC_ADCCK_HCLK_DIV5 SYNCCTL_ADCCK(4) /*!< HCLK div5 */ -#define ADC_ADCCK_HCLK_DIV6 SYNCCTL_ADCCK(5) /*!< HCLK div6 */ -#define ADC_ADCCK_HCLK_DIV10 SYNCCTL_ADCCK(6) /*!< HCLK div10 */ -#define ADC_ADCCK_HCLK_DIV20 SYNCCTL_ADCCK(7) /*!< HCLK div20 */ - -/* ADC synchronization delay */ -#define ADC_SYNC_DELAY_5CYCLE ((uint32_t)0x00000000U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 5 ADC clock cycles. */ -#define ADC_SYNC_DELAY_6CYCLE ((uint32_t)0x00000100U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 6 ADC clock cycles. */ -#define ADC_SYNC_DELAY_7CYCLE ((uint32_t)0x00000200U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 7 ADC clock cycles. */ -#define ADC_SYNC_DELAY_8CYCLE ((uint32_t)0x00000300U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 8 ADC clock cycles. */ -#define ADC_SYNC_DELAY_9CYCLE ((uint32_t)0x00000400U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 9 ADC clock cycles. */ -#define ADC_SYNC_DELAY_10CYCLE ((uint32_t)0x00000500U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 10 ADC clock cycles. */ -#define ADC_SYNC_DELAY_11CYCLE ((uint32_t)0x00000600U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 11 ADC clock cycles. */ -#define ADC_SYNC_DELAY_12CYCLE ((uint32_t)0x00000700U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 12 ADC clock cycles. */ -#define ADC_SYNC_DELAY_13CYCLE ((uint32_t)0x00000800U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 13 ADC clock cycles. */ -#define ADC_SYNC_DELAY_14CYCLE ((uint32_t)0x00000900U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 14 ADC clock cycles. */ -#define ADC_SYNC_DELAY_15CYCLE ((uint32_t)0x00000A00U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 15 ADC clock cycles. */ -#define ADC_SYNC_DELAY_16CYCLE ((uint32_t)0x00000B00U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 16 ADC clock cycles. */ -#define ADC_SYNC_DELAY_17CYCLE ((uint32_t)0x00000C00U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 17 ADC clock cycles. */ -#define ADC_SYNC_DELAY_18CYCLE ((uint32_t)0x00000D00U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 18 ADC clock cycles. */ -#define ADC_SYNC_DELAY_19CYCLE ((uint32_t)0x00000E00U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 19 ADC clock cycles. */ -#define ADC_SYNC_DELAY_20CYCLE ((uint32_t)0x00000F00U) /*!< the delay between 2 sampling phases in ADC synchronization modes to 20 ADC clock cycles. */ - -/* ADC synchronization DMA mode selection */ -#define ADC_SYNC_DMA_DISABLE ((uint32_t)0x00000000U) /*!< ADC synchronization DMA disabled */ -#define ADC_SYNC_DMA_MODE0 ((uint32_t)0x00004000U) /*!< ADC synchronization DMA mode 0 */ -#define ADC_SYNC_DMA_MODE1 ((uint32_t)0x00008000U) /*!< ADC synchronization DMA mode 1 */ - -/* end of conversion mode */ -#define ADC_EOC_SET_SEQUENCE ((uint8_t)0x00U) /*!< only at the end of a sequence of regular conversions, the EOC bit is set */ -#define ADC_EOC_SET_CONVERSION ((uint8_t)0x01U) /*!< at the end of each regular conversion, the EOC bit is set */ - -/* function declarations */ -/* initialization config */ -/* reset ADC */ -void adc_deinit(void); -/* configure the ADC clock for all the ADCs */ -void adc_clock_config(uint32_t prescaler); -/* enable or disable ADC special function */ -void adc_special_function_config(uint32_t adc_periph , uint32_t function , ControlStatus newvalue); -/* configure ADC data alignment */ -void adc_data_alignment_config(uint32_t adc_periph , uint32_t data_alignment); -/* enable ADC interface */ -void adc_enable(uint32_t adc_periph); -/* disable ADC interface */ -void adc_disable(uint32_t adc_periph); -/* ADC calibration and reset calibration */ -void adc_calibration_enable(uint32_t adc_periph); -/* configure temperature sensor and internal reference voltage channel or VBAT channel function */ -void adc_channel_16_to_18(uint32_t function, ControlStatus newvalue); -/* configure ADC resolution */ -void adc_resolution_config(uint32_t adc_periph, uint32_t resolution); -/* configure ADC oversample mode */ -void adc_oversample_mode_config(uint32_t adc_periph, uint32_t mode, uint16_t shift, uint8_t ratio); -/* enable ADC oversample mode */ -void adc_oversample_mode_enable(uint32_t adc_periph); -/* disable ADC oversample mode */ -void adc_oversample_mode_disable(uint32_t adc_periph); - -/* DMA config */ -/* enable DMA request */ -void adc_dma_mode_enable(uint32_t adc_periph); -/* disable DMA request */ -void adc_dma_mode_disable(uint32_t adc_periph); -/* when DMA=1, the DMA engine issues a request at end of each regular conversion */ -void adc_dma_request_after_last_enable(uint32_t adc_periph); -/* the DMA engine is disabled after the end of transfer signal from DMA controller is detected */ -void adc_dma_request_after_last_disable(uint32_t adc_periph); - -/* regular group and inserted group config */ -/* configure ADC discontinuous mode */ -void adc_discontinuous_mode_config(uint32_t adc_periph , uint8_t adc_channel_group , uint8_t length); -/* configure the length of regular channel group or inserted channel group */ -void adc_channel_length_config(uint32_t adc_periph , uint8_t adc_channel_group , uint32_t length); -/* configure ADC regular channel */ -void adc_regular_channel_config(uint32_t adc_periph , uint8_t rank , uint8_t adc_channel , uint32_t sample_time); -/* configure ADC inserted channel */ -void adc_inserted_channel_config(uint32_t adc_periph , uint8_t rank , uint8_t adc_channel , uint32_t sample_time); -/* configure ADC inserted channel offset */ -void adc_inserted_channel_offset_config(uint32_t adc_periph , uint8_t inserted_channel , uint16_t offset); -/* configure ADC external trigger source */ -void adc_external_trigger_source_config(uint32_t adc_periph , uint8_t adc_channel_group , uint32_t external_trigger_source); -/* enable ADC external trigger */ -void adc_external_trigger_config(uint32_t adc_periph , uint8_t adc_channel_group , uint32_t trigger_mode); -/* enable ADC software trigger */ -void adc_software_trigger_enable(uint32_t adc_periph , uint8_t adc_channel_group); -/* configure end of conversion mode */ -void adc_end_of_conversion_config(uint32_t adc_periph , uint8_t end_selection); - -/* get channel data */ -/* read ADC regular group data register */ -uint16_t adc_regular_data_read(uint32_t adc_periph); -/* read ADC inserted group data register */ -uint16_t adc_inserted_data_read(uint32_t adc_periph , uint8_t inserted_channel); - -/* watchdog config */ -/* disable ADC analog watchdog single channel */ -void adc_watchdog_single_channel_disable(uint32_t adc_periph ); -/* enable ADC analog watchdog single channel */ -void adc_watchdog_single_channel_enable(uint32_t adc_periph , uint8_t adc_channel); -/* configure ADC analog watchdog group channel */ -void adc_watchdog_group_channel_enable(uint32_t adc_periph , uint8_t adc_channel_group); -/* disable ADC analog watchdog */ -void adc_watchdog_disable(uint32_t adc_periph , uint8_t adc_channel_group); -/* configure ADC analog watchdog threshold */ -void adc_watchdog_threshold_config(uint32_t adc_periph , uint16_t low_threshold , uint16_t high_threshold); - -/* interrupt & flag functions */ -/* get the ADC flag bits */ -FlagStatus adc_flag_get(uint32_t adc_periph , uint32_t adc_flag); -/* clear the ADC flag bits */ -void adc_flag_clear(uint32_t adc_periph , uint32_t adc_flag); -/* get the bit state of ADCx software start conversion */ -FlagStatus adc_regular_software_startconv_flag_get(uint32_t adc_periph); -/* get the bit state of ADCx software inserted channel start conversion */ -FlagStatus adc_inserted_software_startconv_flag_get(uint32_t adc_periph); -/* get the ADC interrupt bits */ -FlagStatus adc_interrupt_flag_get(uint32_t adc_periph , uint32_t adc_interrupt); -/* clear the ADC flag */ -void adc_interrupt_flag_clear(uint32_t adc_periph , uint32_t adc_interrupt); -/* enable ADC interrupt */ -void adc_interrupt_enable(uint32_t adc_periph , uint32_t adc_interrupt); -/* disable ADC interrupt */ -void adc_interrupt_disable(uint32_t adc_periph , uint32_t adc_interrupt); - -/* ADC synchronization */ -/* configure the ADC sync mode */ -void adc_sync_mode_config(uint32_t sync_mode); -/* configure the delay between 2 sampling phases in ADC sync modes */ -void adc_sync_delay_config(uint32_t sample_delay); -/* configure ADC sync DMA mode selection */ -void adc_sync_dma_config(uint32_t dma_mode ); -/* configure ADC sync DMA engine is disabled after the end of transfer signal from DMA controller is detected */ -void adc_sync_dma_request_after_last_enable(void); -/* configure ADC sync DMA engine issues requests according to the SYNCDMA bits */ -void adc_sync_dma_request_after_last_disable(void); -/* read ADC sync regular data register */ -uint32_t adc_sync_regular_data_read(void); - -#endif /* GD32F4XX_ADC_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_can.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_can.h deleted file mode 100644 index c42a1cbb27..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_can.h +++ /dev/null @@ -1,754 +0,0 @@ -/*! - \file gd32f4xx_can.h - \brief definitions for the CAN - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2019-11-27, V2.0.1, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - - -#ifndef GD32F4XX_CAN_H -#define GD32F4XX_CAN_H - -#include "gd32f4xx.h" - -/* CAN definitions */ -#define CAN0 CAN_BASE /*!< CAN0 base address */ -#define CAN1 (CAN0 + 0x00000400U) /*!< CAN1 base address */ - -/* registers definitions */ -#define CAN_CTL(canx) REG32((canx) + 0x00U) /*!< CAN control register */ -#define CAN_STAT(canx) REG32((canx) + 0x04U) /*!< CAN status register */ -#define CAN_TSTAT(canx) REG32((canx) + 0x08U) /*!< CAN transmit status register*/ -#define CAN_RFIFO0(canx) REG32((canx) + 0x0CU) /*!< CAN receive FIFO0 register */ -#define CAN_RFIFO1(canx) REG32((canx) + 0x10U) /*!< CAN receive FIFO1 register */ -#define CAN_INTEN(canx) REG32((canx) + 0x14U) /*!< CAN interrupt enable register */ -#define CAN_ERR(canx) REG32((canx) + 0x18U) /*!< CAN error register */ -#define CAN_BT(canx) REG32((canx) + 0x1CU) /*!< CAN bit timing register */ -#define CAN_TMI0(canx) REG32((canx) + 0x180U) /*!< CAN transmit mailbox0 identifier register */ -#define CAN_TMP0(canx) REG32((canx) + 0x184U) /*!< CAN transmit mailbox0 property register */ -#define CAN_TMDATA00(canx) REG32((canx) + 0x188U) /*!< CAN transmit mailbox0 data0 register */ -#define CAN_TMDATA10(canx) REG32((canx) + 0x18CU) /*!< CAN transmit mailbox0 data1 register */ -#define CAN_TMI1(canx) REG32((canx) + 0x190U) /*!< CAN transmit mailbox1 identifier register */ -#define CAN_TMP1(canx) REG32((canx) + 0x194U) /*!< CAN transmit mailbox1 property register */ -#define CAN_TMDATA01(canx) REG32((canx) + 0x198U) /*!< CAN transmit mailbox1 data0 register */ -#define CAN_TMDATA11(canx) REG32((canx) + 0x19CU) /*!< CAN transmit mailbox1 data1 register */ -#define CAN_TMI2(canx) REG32((canx) + 0x1A0U) /*!< CAN transmit mailbox2 identifier register */ -#define CAN_TMP2(canx) REG32((canx) + 0x1A4U) /*!< CAN transmit mailbox2 property register */ -#define CAN_TMDATA02(canx) REG32((canx) + 0x1A8U) /*!< CAN transmit mailbox2 data0 register */ -#define CAN_TMDATA12(canx) REG32((canx) + 0x1ACU) /*!< CAN transmit mailbox2 data1 register */ -#define CAN_RFIFOMI0(canx) REG32((canx) + 0x1B0U) /*!< CAN receive FIFO0 mailbox identifier register */ -#define CAN_RFIFOMP0(canx) REG32((canx) + 0x1B4U) /*!< CAN receive FIFO0 mailbox property register */ -#define CAN_RFIFOMDATA00(canx) REG32((canx) + 0x1B8U) /*!< CAN receive FIFO0 mailbox data0 register */ -#define CAN_RFIFOMDATA10(canx) REG32((canx) + 0x1BCU) /*!< CAN receive FIFO0 mailbox data1 register */ -#define CAN_RFIFOMI1(canx) REG32((canx) + 0x1C0U) /*!< CAN receive FIFO1 mailbox identifier register */ -#define CAN_RFIFOMP1(canx) REG32((canx) + 0x1C4U) /*!< CAN receive FIFO1 mailbox property register */ -#define CAN_RFIFOMDATA01(canx) REG32((canx) + 0x1C8U) /*!< CAN receive FIFO1 mailbox data0 register */ -#define CAN_RFIFOMDATA11(canx) REG32((canx) + 0x1CCU) /*!< CAN receive FIFO1 mailbox data1 register */ -#define CAN_FCTL(canx) REG32((canx) + 0x200U) /*!< CAN filter control register */ -#define CAN_FMCFG(canx) REG32((canx) + 0x204U) /*!< CAN filter mode register */ -#define CAN_FSCFG(canx) REG32((canx) + 0x20CU) /*!< CAN filter scale register */ -#define CAN_FAFIFO(canx) REG32((canx) + 0x214U) /*!< CAN filter associated FIFO register */ -#define CAN_FW(canx) REG32((canx) + 0x21CU) /*!< CAN filter working register */ -#define CAN_F0DATA0(canx) REG32((canx) + 0x240U) /*!< CAN filter 0 data 0 register */ -#define CAN_F1DATA0(canx) REG32((canx) + 0x248U) /*!< CAN filter 1 data 0 register */ -#define CAN_F2DATA0(canx) REG32((canx) + 0x250U) /*!< CAN filter 2 data 0 register */ -#define CAN_F3DATA0(canx) REG32((canx) + 0x258U) /*!< CAN filter 3 data 0 register */ -#define CAN_F4DATA0(canx) REG32((canx) + 0x260U) /*!< CAN filter 4 data 0 register */ -#define CAN_F5DATA0(canx) REG32((canx) + 0x268U) /*!< CAN filter 5 data 0 register */ -#define CAN_F6DATA0(canx) REG32((canx) + 0x270U) /*!< CAN filter 6 data 0 register */ -#define CAN_F7DATA0(canx) REG32((canx) + 0x278U) /*!< CAN filter 7 data 0 register */ -#define CAN_F8DATA0(canx) REG32((canx) + 0x280U) /*!< CAN filter 8 data 0 register */ -#define CAN_F9DATA0(canx) REG32((canx) + 0x288U) /*!< CAN filter 9 data 0 register */ -#define CAN_F10DATA0(canx) REG32((canx) + 0x290U) /*!< CAN filter 10 data 0 register */ -#define CAN_F11DATA0(canx) REG32((canx) + 0x298U) /*!< CAN filter 11 data 0 register */ -#define CAN_F12DATA0(canx) REG32((canx) + 0x2A0U) /*!< CAN filter 12 data 0 register */ -#define CAN_F13DATA0(canx) REG32((canx) + 0x2A8U) /*!< CAN filter 13 data 0 register */ -#define CAN_F14DATA0(canx) REG32((canx) + 0x2B0U) /*!< CAN filter 14 data 0 register */ -#define CAN_F15DATA0(canx) REG32((canx) + 0x2B8U) /*!< CAN filter 15 data 0 register */ -#define CAN_F16DATA0(canx) REG32((canx) + 0x2C0U) /*!< CAN filter 16 data 0 register */ -#define CAN_F17DATA0(canx) REG32((canx) + 0x2C8U) /*!< CAN filter 17 data 0 register */ -#define CAN_F18DATA0(canx) REG32((canx) + 0x2D0U) /*!< CAN filter 18 data 0 register */ -#define CAN_F19DATA0(canx) REG32((canx) + 0x2D8U) /*!< CAN filter 19 data 0 register */ -#define CAN_F20DATA0(canx) REG32((canx) + 0x2E0U) /*!< CAN filter 20 data 0 register */ -#define CAN_F21DATA0(canx) REG32((canx) + 0x2E8U) /*!< CAN filter 21 data 0 register */ -#define CAN_F22DATA0(canx) REG32((canx) + 0x2F0U) /*!< CAN filter 22 data 0 register */ -#define CAN_F23DATA0(canx) REG32((canx) + 0x3F8U) /*!< CAN filter 23 data 0 register */ -#define CAN_F24DATA0(canx) REG32((canx) + 0x300U) /*!< CAN filter 24 data 0 register */ -#define CAN_F25DATA0(canx) REG32((canx) + 0x308U) /*!< CAN filter 25 data 0 register */ -#define CAN_F26DATA0(canx) REG32((canx) + 0x310U) /*!< CAN filter 26 data 0 register */ -#define CAN_F27DATA0(canx) REG32((canx) + 0x318U) /*!< CAN filter 27 data 0 register */ -#define CAN_F0DATA1(canx) REG32((canx) + 0x244U) /*!< CAN filter 0 data 1 register */ -#define CAN_F1DATA1(canx) REG32((canx) + 0x24CU) /*!< CAN filter 1 data 1 register */ -#define CAN_F2DATA1(canx) REG32((canx) + 0x254U) /*!< CAN filter 2 data 1 register */ -#define CAN_F3DATA1(canx) REG32((canx) + 0x25CU) /*!< CAN filter 3 data 1 register */ -#define CAN_F4DATA1(canx) REG32((canx) + 0x264U) /*!< CAN filter 4 data 1 register */ -#define CAN_F5DATA1(canx) REG32((canx) + 0x26CU) /*!< CAN filter 5 data 1 register */ -#define CAN_F6DATA1(canx) REG32((canx) + 0x274U) /*!< CAN filter 6 data 1 register */ -#define CAN_F7DATA1(canx) REG32((canx) + 0x27CU) /*!< CAN filter 7 data 1 register */ -#define CAN_F8DATA1(canx) REG32((canx) + 0x284U) /*!< CAN filter 8 data 1 register */ -#define CAN_F9DATA1(canx) REG32((canx) + 0x28CU) /*!< CAN filter 9 data 1 register */ -#define CAN_F10DATA1(canx) REG32((canx) + 0x294U) /*!< CAN filter 10 data 1 register */ -#define CAN_F11DATA1(canx) REG32((canx) + 0x29CU) /*!< CAN filter 11 data 1 register */ -#define CAN_F12DATA1(canx) REG32((canx) + 0x2A4U) /*!< CAN filter 12 data 1 register */ -#define CAN_F13DATA1(canx) REG32((canx) + 0x2ACU) /*!< CAN filter 13 data 1 register */ -#define CAN_F14DATA1(canx) REG32((canx) + 0x2B4U) /*!< CAN filter 14 data 1 register */ -#define CAN_F15DATA1(canx) REG32((canx) + 0x2BCU) /*!< CAN filter 15 data 1 register */ -#define CAN_F16DATA1(canx) REG32((canx) + 0x2C4U) /*!< CAN filter 16 data 1 register */ -#define CAN_F17DATA1(canx) REG32((canx) + 0x24CU) /*!< CAN filter 17 data 1 register */ -#define CAN_F18DATA1(canx) REG32((canx) + 0x2D4U) /*!< CAN filter 18 data 1 register */ -#define CAN_F19DATA1(canx) REG32((canx) + 0x2DCU) /*!< CAN filter 19 data 1 register */ -#define CAN_F20DATA1(canx) REG32((canx) + 0x2E4U) /*!< CAN filter 20 data 1 register */ -#define CAN_F21DATA1(canx) REG32((canx) + 0x2ECU) /*!< CAN filter 21 data 1 register */ -#define CAN_F22DATA1(canx) REG32((canx) + 0x2F4U) /*!< CAN filter 22 data 1 register */ -#define CAN_F23DATA1(canx) REG32((canx) + 0x2FCU) /*!< CAN filter 23 data 1 register */ -#define CAN_F24DATA1(canx) REG32((canx) + 0x304U) /*!< CAN filter 24 data 1 register */ -#define CAN_F25DATA1(canx) REG32((canx) + 0x30CU) /*!< CAN filter 25 data 1 register */ -#define CAN_F26DATA1(canx) REG32((canx) + 0x314U) /*!< CAN filter 26 data 1 register */ -#define CAN_F27DATA1(canx) REG32((canx) + 0x31CU) /*!< CAN filter 27 data 1 register */ - -/* CAN transmit mailbox bank */ -#define CAN_TMI(canx, bank) REG32((canx) + 0x180U + ((bank) * 0x10U)) /*!< CAN transmit mailbox identifier register */ -#define CAN_TMP(canx, bank) REG32((canx) + 0x184U + ((bank) * 0x10U)) /*!< CAN transmit mailbox property register */ -#define CAN_TMDATA0(canx, bank) REG32((canx) + 0x188U + ((bank) * 0x10U)) /*!< CAN transmit mailbox data0 register */ -#define CAN_TMDATA1(canx, bank) REG32((canx) + 0x18CU + ((bank) * 0x10U)) /*!< CAN transmit mailbox data1 register */ - -/* CAN filter bank */ -#define CAN_FDATA0(canx, bank) REG32((canx) + 0x240U + ((bank) * 0x8U) + 0x0U) /*!< CAN filter data 0 register */ -#define CAN_FDATA1(canx, bank) REG32((canx) + 0x240U + ((bank) * 0x8U) + 0x4U) /*!< CAN filter data 1 register */ - -/* CAN receive fifo mailbox bank */ -#define CAN_RFIFOMI(canx, bank) REG32((canx) + 0x1B0U + ((bank) * 0x10U)) /*!< CAN receive FIFO mailbox identifier register */ -#define CAN_RFIFOMP(canx, bank) REG32((canx) + 0x1B4U + ((bank) * 0x10U)) /*!< CAN receive FIFO mailbox property register */ -#define CAN_RFIFOMDATA0(canx, bank) REG32((canx) + 0x1B8U + ((bank) * 0x10U)) /*!< CAN receive FIFO mailbox data0 register */ -#define CAN_RFIFOMDATA1(canx, bank) REG32((canx) + 0x1BCU + ((bank) * 0x10U)) /*!< CAN receive FIFO mailbox data1 register */ - -/* bits definitions */ -/* CAN_CTL */ -#define CAN_CTL_IWMOD BIT(0) /*!< initial working mode */ -#define CAN_CTL_SLPWMOD BIT(1) /*!< sleep working mode */ -#define CAN_CTL_TFO BIT(2) /*!< transmit FIFO order */ -#define CAN_CTL_RFOD BIT(3) /*!< receive FIFO overwrite disable */ -#define CAN_CTL_ARD BIT(4) /*!< automatic retransmission disable */ -#define CAN_CTL_AWU BIT(5) /*!< automatic wakeup */ -#define CAN_CTL_ABOR BIT(6) /*!< automatic bus-off recovery */ -#define CAN_CTL_TTC BIT(7) /*!< time triggered communication */ -#define CAN_CTL_SWRST BIT(15) /*!< CAN software reset */ -#define CAN_CTL_DFZ BIT(16) /*!< CAN debug freeze */ - -/* CAN_STAT */ -#define CAN_STAT_IWS BIT(0) /*!< initial working state */ -#define CAN_STAT_SLPWS BIT(1) /*!< sleep working state */ -#define CAN_STAT_ERRIF BIT(2) /*!< error interrupt flag*/ -#define CAN_STAT_WUIF BIT(3) /*!< status change interrupt flag of wakeup from sleep working mode */ -#define CAN_STAT_SLPIF BIT(4) /*!< status change interrupt flag of sleep working mode entering */ -#define CAN_STAT_TS BIT(8) /*!< transmitting state */ -#define CAN_STAT_RS BIT(9) /*!< receiving state */ -#define CAN_STAT_LASTRX BIT(10) /*!< last sample value of rx pin */ -#define CAN_STAT_RXL BIT(11) /*!< CAN rx signal */ - -/* CAN_TSTAT */ -#define CAN_TSTAT_MTF0 BIT(0) /*!< mailbox0 transmit finished */ -#define CAN_TSTAT_MTFNERR0 BIT(1) /*!< mailbox0 transmit finished and no error */ -#define CAN_TSTAT_MAL0 BIT(2) /*!< mailbox0 arbitration lost */ -#define CAN_TSTAT_MTE0 BIT(3) /*!< mailbox0 transmit error */ -#define CAN_TSTAT_MST0 BIT(7) /*!< mailbox0 stop transmitting */ -#define CAN_TSTAT_MTF1 BIT(8) /*!< mailbox1 transmit finished */ -#define CAN_TSTAT_MTFNERR1 BIT(9) /*!< mailbox1 transmit finished and no error */ -#define CAN_TSTAT_MAL1 BIT(10) /*!< mailbox1 arbitration lost */ -#define CAN_TSTAT_MTE1 BIT(11) /*!< mailbox1 transmit error */ -#define CAN_TSTAT_MST1 BIT(15) /*!< mailbox1 stop transmitting */ -#define CAN_TSTAT_MTF2 BIT(16) /*!< mailbox2 transmit finished */ -#define CAN_TSTAT_MTFNERR2 BIT(17) /*!< mailbox2 transmit finished and no error */ -#define CAN_TSTAT_MAL2 BIT(18) /*!< mailbox2 arbitration lost */ -#define CAN_TSTAT_MTE2 BIT(19) /*!< mailbox2 transmit error */ -#define CAN_TSTAT_MST2 BIT(23) /*!< mailbox2 stop transmitting */ -#define CAN_TSTAT_NUM BITS(24,25) /*!< mailbox number */ -#define CAN_TSTAT_TME0 BIT(26) /*!< transmit mailbox0 empty */ -#define CAN_TSTAT_TME1 BIT(27) /*!< transmit mailbox1 empty */ -#define CAN_TSTAT_TME2 BIT(28) /*!< transmit mailbox2 empty */ -#define CAN_TSTAT_TMLS0 BIT(29) /*!< last sending priority flag for mailbox0 */ -#define CAN_TSTAT_TMLS1 BIT(30) /*!< last sending priority flag for mailbox1 */ -#define CAN_TSTAT_TMLS2 BIT(31) /*!< last sending priority flag for mailbox2 */ - -/* CAN_RFIFO0 */ -#define CAN_RFIFO0_RFL0 BITS(0,1) /*!< receive FIFO0 length */ -#define CAN_RFIFO0_RFF0 BIT(3) /*!< receive FIFO0 full */ -#define CAN_RFIFO0_RFO0 BIT(4) /*!< receive FIFO0 overfull */ -#define CAN_RFIFO0_RFD0 BIT(5) /*!< receive FIFO0 dequeue */ - -/* CAN_RFIFO1 */ -#define CAN_RFIFO1_RFL1 BITS(0,1) /*!< receive FIFO1 length */ -#define CAN_RFIFO1_RFF1 BIT(3) /*!< receive FIFO1 full */ -#define CAN_RFIFO1_RFO1 BIT(4) /*!< receive FIFO1 overfull */ -#define CAN_RFIFO1_RFD1 BIT(5) /*!< receive FIFO1 dequeue */ - -/* CAN_INTEN */ -#define CAN_INTEN_TMEIE BIT(0) /*!< transmit mailbox empty interrupt enable */ -#define CAN_INTEN_RFNEIE0 BIT(1) /*!< receive FIFO0 not empty interrupt enable */ -#define CAN_INTEN_RFFIE0 BIT(2) /*!< receive FIFO0 full interrupt enable */ -#define CAN_INTEN_RFOIE0 BIT(3) /*!< receive FIFO0 overfull interrupt enable */ -#define CAN_INTEN_RFNEIE1 BIT(4) /*!< receive FIFO1 not empty interrupt enable */ -#define CAN_INTEN_RFFIE1 BIT(5) /*!< receive FIFO1 full interrupt enable */ -#define CAN_INTEN_RFOIE1 BIT(6) /*!< receive FIFO1 overfull interrupt enable */ -#define CAN_INTEN_WERRIE BIT(8) /*!< warning error interrupt enable */ -#define CAN_INTEN_PERRIE BIT(9) /*!< passive error interrupt enable */ -#define CAN_INTEN_BOIE BIT(10) /*!< bus-off interrupt enable */ -#define CAN_INTEN_ERRNIE BIT(11) /*!< error number interrupt enable */ -#define CAN_INTEN_ERRIE BIT(15) /*!< error interrupt enable */ -#define CAN_INTEN_WIE BIT(16) /*!< wakeup interrupt enable */ -#define CAN_INTEN_SLPWIE BIT(17) /*!< sleep working interrupt enable */ - -/* CAN_ERR */ -#define CAN_ERR_WERR BIT(0) /*!< warning error */ -#define CAN_ERR_PERR BIT(1) /*!< passive error */ -#define CAN_ERR_BOERR BIT(2) /*!< bus-off error */ -#define CAN_ERR_ERRN BITS(4,6) /*!< error number */ -#define CAN_ERR_TECNT BITS(16,23) /*!< transmit error count */ -#define CAN_ERR_RECNT BITS(24,31) /*!< receive error count */ - -/* CAN_BT */ -#define CAN_BT_BAUDPSC BITS(0,9) /*!< baudrate prescaler */ -#define CAN_BT_BS1 BITS(16,19) /*!< bit segment 1 */ -#define CAN_BT_BS2 BITS(20,22) /*!< bit segment 2 */ -#define CAN_BT_SJW BITS(24,25) /*!< resynchronization jump width */ -#define CAN_BT_LCMOD BIT(30) /*!< loopback communication mode */ -#define CAN_BT_SCMOD BIT(31) /*!< silent communication mode */ - -/* CAN_TMIx */ -#define CAN_TMI_TEN BIT(0) /*!< transmit enable */ -#define CAN_TMI_FT BIT(1) /*!< frame type */ -#define CAN_TMI_FF BIT(2) /*!< frame format */ -#define CAN_TMI_EFID BITS(3,31) /*!< the frame identifier */ -#define CAN_TMI_SFID BITS(21,31) /*!< the frame identifier */ - -/* CAN_TMPx */ -#define CAN_TMP_DLENC BITS(0,3) /*!< data length code */ -#define CAN_TMP_TSEN BIT(8) /*!< time stamp enable */ -#define CAN_TMP_TS BITS(16,31) /*!< time stamp */ - -/* CAN_TMDATA0x */ -#define CAN_TMDATA0_DB0 BITS(0,7) /*!< transmit data byte 0 */ -#define CAN_TMDATA0_DB1 BITS(8,15) /*!< transmit data byte 1 */ -#define CAN_TMDATA0_DB2 BITS(16,23) /*!< transmit data byte 2 */ -#define CAN_TMDATA0_DB3 BITS(24,31) /*!< transmit data byte 3 */ - -/* CAN_TMDATA1x */ -#define CAN_TMDATA1_DB4 BITS(0,7) /*!< transmit data byte 4 */ -#define CAN_TMDATA1_DB5 BITS(8,15) /*!< transmit data byte 5 */ -#define CAN_TMDATA1_DB6 BITS(16,23) /*!< transmit data byte 6 */ -#define CAN_TMDATA1_DB7 BITS(24,31) /*!< transmit data byte 7 */ - -/* CAN_RFIFOMIx */ -#define CAN_RFIFOMI_FT BIT(1) /*!< frame type */ -#define CAN_RFIFOMI_FF BIT(2) /*!< frame format */ -#define CAN_RFIFOMI_EFID BITS(3,31) /*!< the frame identifier */ -#define CAN_RFIFOMI_SFID BITS(21,31) /*!< the frame identifier */ - -/* CAN_RFIFOMPx */ -#define CAN_RFIFOMP_DLENC BITS(0,3) /*!< receive data length code */ -#define CAN_RFIFOMP_FI BITS(8,15) /*!< filter index */ -#define CAN_RFIFOMP_TS BITS(16,31) /*!< time stamp */ - -/* CAN_RFIFOMDATA0x */ -#define CAN_RFIFOMDATA0_DB0 BITS(0,7) /*!< receive data byte 0 */ -#define CAN_RFIFOMDATA0_DB1 BITS(8,15) /*!< receive data byte 1 */ -#define CAN_RFIFOMDATA0_DB2 BITS(16,23) /*!< receive data byte 2 */ -#define CAN_RFIFOMDATA0_DB3 BITS(24,31) /*!< receive data byte 3 */ - -/* CAN_RFIFOMDATA1x */ -#define CAN_RFIFOMDATA1_DB4 BITS(0,7) /*!< receive data byte 4 */ -#define CAN_RFIFOMDATA1_DB5 BITS(8,15) /*!< receive data byte 5 */ -#define CAN_RFIFOMDATA1_DB6 BITS(16,23) /*!< receive data byte 6 */ -#define CAN_RFIFOMDATA1_DB7 BITS(24,31) /*!< receive data byte 7 */ - -/* CAN_FCTL */ -#define CAN_FCTL_FLD BIT(0) /*!< filter lock disable */ -#define CAN_FCTL_HBC1F BITS(8,13) /*!< header bank of CAN1 filter */ - -/* CAN_FMCFG */ -#define CAN_FMCFG_FMOD(regval) BIT(regval) /*!< filter mode, list or mask*/ - -/* CAN_FSCFG */ -#define CAN_FSCFG_FS(regval) BIT(regval) /*!< filter scale, 32 bits or 16 bits*/ - -/* CAN_FAFIFO */ -#define CAN_FAFIFOR_FAF(regval) BIT(regval) /*!< filter associated with FIFO */ - -/* CAN_FW */ -#define CAN_FW_FW(regval) BIT(regval) /*!< filter working */ - -/* CAN_FxDATAy */ -#define CAN_FDATA_FD(regval) BIT(regval) /*!< filter data */ - -/* consts definitions */ -/* define the CAN bit position and its register index offset */ -#define CAN_REGIDX_BIT(regidx, bitpos) (((uint32_t)(regidx) << 6) | (uint32_t)(bitpos)) -#define CAN_REG_VAL(canx, offset) (REG32((canx) + ((uint32_t)(offset) >> 6))) -#define CAN_BIT_POS(val) ((uint32_t)(val) & 0x1FU) - -#define CAN_REGIDX_BITS(regidx, bitpos0, bitpos1) (((uint32_t)(regidx) << 12) | ((uint32_t)(bitpos0) << 6) | (uint32_t)(bitpos1)) -#define CAN_REG_VALS(canx, offset) (REG32((canx) + ((uint32_t)(offset) >> 12))) -#define CAN_BIT_POS0(val) (((uint32_t)(val) >> 6) & 0x1FU) -#define CAN_BIT_POS1(val) ((uint32_t)(val) & 0x1FU) - -/* register offset */ -#define STAT_REG_OFFSET ((uint8_t)0x04U) /*!< STAT register offset */ -#define TSTAT_REG_OFFSET ((uint8_t)0x08U) /*!< TSTAT register offset */ -#define RFIFO0_REG_OFFSET ((uint8_t)0x0CU) /*!< RFIFO0 register offset */ -#define RFIFO1_REG_OFFSET ((uint8_t)0x10U) /*!< RFIFO1 register offset */ -#define ERR_REG_OFFSET ((uint8_t)0x18U) /*!< ERR register offset */ - -/* CAN flags */ -typedef enum -{ - /* flags in STAT register */ - CAN_FLAG_RXL = CAN_REGIDX_BIT(STAT_REG_OFFSET, 11U), /*!< RX level */ - CAN_FLAG_LASTRX = CAN_REGIDX_BIT(STAT_REG_OFFSET, 10U), /*!< last sample value of RX pin */ - CAN_FLAG_RS = CAN_REGIDX_BIT(STAT_REG_OFFSET, 9U), /*!< receiving state */ - CAN_FLAG_TS = CAN_REGIDX_BIT(STAT_REG_OFFSET, 8U), /*!< transmitting state */ - CAN_FLAG_SLPIF = CAN_REGIDX_BIT(STAT_REG_OFFSET, 4U), /*!< status change flag of entering sleep working mode */ - CAN_FLAG_WUIF = CAN_REGIDX_BIT(STAT_REG_OFFSET, 3U), /*!< status change flag of wakeup from sleep working mode */ - CAN_FLAG_ERRIF = CAN_REGIDX_BIT(STAT_REG_OFFSET, 2U), /*!< error flag */ - CAN_FLAG_SLPWS = CAN_REGIDX_BIT(STAT_REG_OFFSET, 1U), /*!< sleep working state */ - CAN_FLAG_IWS = CAN_REGIDX_BIT(STAT_REG_OFFSET, 0U), /*!< initial working state */ - /* flags in TSTAT register */ - CAN_FLAG_TMLS2 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 31U), /*!< transmit mailbox 2 last sending in Tx FIFO */ - CAN_FLAG_TMLS1 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 30U), /*!< transmit mailbox 1 last sending in Tx FIFO */ - CAN_FLAG_TMLS0 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 29U), /*!< transmit mailbox 0 last sending in Tx FIFO */ - CAN_FLAG_TME2 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 28U), /*!< transmit mailbox 2 empty */ - CAN_FLAG_TME1 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 27U), /*!< transmit mailbox 1 empty */ - CAN_FLAG_TME0 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 26U), /*!< transmit mailbox 0 empty */ - CAN_FLAG_MTE2 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 19U), /*!< mailbox 2 transmit error */ - CAN_FLAG_MTE1 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 11U), /*!< mailbox 1 transmit error */ - CAN_FLAG_MTE0 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 3U), /*!< mailbox 0 transmit error */ - CAN_FLAG_MAL2 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 18U), /*!< mailbox 2 arbitration lost */ - CAN_FLAG_MAL1 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 10U), /*!< mailbox 1 arbitration lost */ - CAN_FLAG_MAL0 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 2U), /*!< mailbox 0 arbitration lost */ - CAN_FLAG_MTFNERR2 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 17U), /*!< mailbox 2 transmit finished with no error */ - CAN_FLAG_MTFNERR1 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 9U), /*!< mailbox 1 transmit finished with no error */ - CAN_FLAG_MTFNERR0 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 1U), /*!< mailbox 0 transmit finished with no error */ - CAN_FLAG_MTF2 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 16U), /*!< mailbox 2 transmit finished */ - CAN_FLAG_MTF1 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 8U), /*!< mailbox 1 transmit finished */ - CAN_FLAG_MTF0 = CAN_REGIDX_BIT(TSTAT_REG_OFFSET, 0U), /*!< mailbox 0 transmit finished */ - /* flags in RFIFO0 register */ - CAN_FLAG_RFO0 = CAN_REGIDX_BIT(RFIFO0_REG_OFFSET, 4U), /*!< receive FIFO0 overfull */ - CAN_FLAG_RFF0 = CAN_REGIDX_BIT(RFIFO0_REG_OFFSET, 3U), /*!< receive FIFO0 full */ - /* flags in RFIFO1 register */ - CAN_FLAG_RFO1 = CAN_REGIDX_BIT(RFIFO1_REG_OFFSET, 4U), /*!< receive FIFO1 overfull */ - CAN_FLAG_RFF1 = CAN_REGIDX_BIT(RFIFO1_REG_OFFSET, 3U), /*!< receive FIFO1 full */ - /* flags in ERR register */ - CAN_FLAG_BOERR = CAN_REGIDX_BIT(ERR_REG_OFFSET, 2U), /*!< bus-off error */ - CAN_FLAG_PERR = CAN_REGIDX_BIT(ERR_REG_OFFSET, 1U), /*!< passive error */ - CAN_FLAG_WERR = CAN_REGIDX_BIT(ERR_REG_OFFSET, 0U), /*!< warning error */ -}can_flag_enum; - -/* CAN interrupt flags */ -typedef enum -{ - /* interrupt flags in STAT register */ - CAN_INT_FLAG_SLPIF = CAN_REGIDX_BITS(STAT_REG_OFFSET, 4U, 17U), /*!< status change interrupt flag of sleep working mode entering */ - CAN_INT_FLAG_WUIF = CAN_REGIDX_BITS(STAT_REG_OFFSET, 3U, 16), /*!< status change interrupt flag of wakeup from sleep working mode */ - CAN_INT_FLAG_ERRIF = CAN_REGIDX_BITS(STAT_REG_OFFSET, 2U, 15), /*!< error interrupt flag */ - /* interrupt flags in TSTAT register */ - CAN_INT_FLAG_MTF2 = CAN_REGIDX_BITS(TSTAT_REG_OFFSET, 16U, 0U), /*!< mailbox 2 transmit finished interrupt flag */ - CAN_INT_FLAG_MTF1 = CAN_REGIDX_BITS(TSTAT_REG_OFFSET, 8U, 0U), /*!< mailbox 1 transmit finished interrupt flag */ - CAN_INT_FLAG_MTF0 = CAN_REGIDX_BITS(TSTAT_REG_OFFSET, 0U, 0U), /*!< mailbox 0 transmit finished interrupt flag */ - /* interrupt flags in RFIFO0 register */ - CAN_INT_FLAG_RFO0 = CAN_REGIDX_BITS(RFIFO0_REG_OFFSET, 4U, 3U), /*!< receive FIFO0 overfull interrupt flag */ - CAN_INT_FLAG_RFF0 = CAN_REGIDX_BITS(RFIFO0_REG_OFFSET, 3U, 2U), /*!< receive FIFO0 full interrupt flag */ - CAN_INT_FLAG_RFL0 = CAN_REGIDX_BITS(RFIFO0_REG_OFFSET, 2U, 1U), /*!< receive FIFO0 not empty interrupt flag */ - /* interrupt flags in RFIFO0 register */ - CAN_INT_FLAG_RFO1 = CAN_REGIDX_BITS(RFIFO1_REG_OFFSET, 4U, 6U), /*!< receive FIFO1 overfull interrupt flag */ - CAN_INT_FLAG_RFF1 = CAN_REGIDX_BITS(RFIFO1_REG_OFFSET, 3U, 5U), /*!< receive FIFO1 full interrupt flag */ - CAN_INT_FLAG_RFL1 = CAN_REGIDX_BITS(RFIFO1_REG_OFFSET, 2U, 4U), /*!< receive FIFO0 not empty interrupt flag */ - /* interrupt flags in ERR register */ - CAN_INT_FLAG_ERRN = CAN_REGIDX_BITS(ERR_REG_OFFSET, 3U, 11U), /*!< error number interrupt flag */ - CAN_INT_FLAG_BOERR = CAN_REGIDX_BITS(ERR_REG_OFFSET, 2U, 10U), /*!< bus-off error interrupt flag */ - CAN_INT_FLAG_PERR = CAN_REGIDX_BITS(ERR_REG_OFFSET, 1U, 9U), /*!< passive error interrupt flag */ - CAN_INT_FLAG_WERR = CAN_REGIDX_BITS(ERR_REG_OFFSET, 0U, 8U), /*!< warning error interrupt flag */ -}can_interrupt_flag_enum; - -/* CAN initiliaze parameters struct */ -typedef struct -{ - uint8_t working_mode; /*!< CAN working mode */ - uint8_t resync_jump_width; /*!< CAN resynchronization jump width */ - uint8_t time_segment_1; /*!< time segment 1 */ - uint8_t time_segment_2; /*!< time segment 2 */ - ControlStatus time_triggered; /*!< time triggered communication mode */ - ControlStatus auto_bus_off_recovery; /*!< automatic bus-off recovery */ - ControlStatus auto_wake_up; /*!< automatic wake-up mode */ - ControlStatus no_auto_retrans; /*!< automatic retransmission mode disable */ - ControlStatus rec_fifo_overwrite; /*!< receive FIFO overwrite mode */ - ControlStatus trans_fifo_order; /*!< transmit FIFO order */ - uint16_t prescaler; /*!< baudrate prescaler */ -}can_parameter_struct; - -/* CAN transmit message struct */ -typedef struct -{ - uint32_t tx_sfid; /*!< standard format frame identifier */ - uint32_t tx_efid; /*!< extended format frame identifier */ - uint8_t tx_ff; /*!< format of frame, standard or extended format */ - uint8_t tx_ft; /*!< type of frame, data or remote */ - uint8_t tx_dlen; /*!< data length */ - uint8_t tx_data[8]; /*!< transmit data */ -}can_trasnmit_message_struct; - -/* CAN receive message struct */ -typedef struct -{ - uint32_t rx_sfid; /*!< standard format frame identifier */ - uint32_t rx_efid; /*!< extended format frame identifier */ - uint8_t rx_ff; /*!< format of frame, standard or extended format */ - uint8_t rx_ft; /*!< type of frame, data or remote */ - uint8_t rx_dlen; /*!< data length */ - uint8_t rx_data[8]; /*!< receive data */ - uint8_t rx_fi; /*!< filtering index */ -} can_receive_message_struct; - -/* CAN filter parameters struct */ -typedef struct -{ - uint16_t filter_list_high; /*!< filter list number high bits*/ - uint16_t filter_list_low; /*!< filter list number low bits */ - uint16_t filter_mask_high; /*!< filter mask number high bits */ - uint16_t filter_mask_low; /*!< filter mask number low bits */ - uint16_t filter_fifo_number; /*!< receive FIFO associated with the filter */ - uint16_t filter_number; /*!< filter number */ - uint16_t filter_mode; /*!< filter mode, list or mask */ - uint16_t filter_bits; /*!< filter scale */ - ControlStatus filter_enable; /*!< filter work or not */ -}can_filter_parameter_struct; - -/* CAN errors */ -typedef enum -{ - CAN_ERROR_NONE = 0, /*!< no error */ - CAN_ERROR_FILL, /*!< fill error */ - CAN_ERROR_FORMATE, /*!< format error */ - CAN_ERROR_ACK, /*!< ACK error */ - CAN_ERROR_BITRECESSIVE, /*!< bit recessive error */ - CAN_ERROR_BITDOMINANTER, /*!< bit dominant error */ - CAN_ERROR_CRC, /*!< CRC error */ - CAN_ERROR_SOFTWARECFG, /*!< software configure */ -}can_error_enum; - -/* transmit states */ -typedef enum -{ - CAN_TRANSMIT_FAILED = 0U, /*!< CAN transmitted failure */ - CAN_TRANSMIT_OK = 1U, /*!< CAN transmitted success */ - CAN_TRANSMIT_PENDING = 2U, /*!< CAN transmitted pending */ - CAN_TRANSMIT_NOMAILBOX = 4U, /*!< no empty mailbox to be used for CAN */ -}can_transmit_state_enum; - -typedef enum -{ - CAN_INIT_STRUCT = 0, /* CAN initiliaze parameters struct */ - CAN_FILTER_STRUCT, /* CAN filter parameters struct */ - CAN_TX_MESSAGE_STRUCT, /* CAN transmit message struct */ - CAN_RX_MESSAGE_STRUCT, /* CAN receive message struct */ -}can_struct_type_enum; - -/* CAN baudrate prescaler*/ -#define BT_BAUDPSC(regval) (BITS(0,9) & ((uint32_t)(regval) << 0)) - -/* CAN bit segment 1*/ -#define BT_BS1(regval) (BITS(16,19) & ((uint32_t)(regval) << 16)) - -/* CAN bit segment 2*/ -#define BT_BS2(regval) (BITS(20,22) & ((uint32_t)(regval) << 20)) - -/* CAN resynchronization jump width*/ -#define BT_SJW(regval) (BITS(24,25) & ((uint32_t)(regval) << 24)) - -/* CAN communication mode*/ -#define BT_MODE(regval) (BITS(30,31) & ((uint32_t)(regval) << 30)) - -/* CAN FDATA high 16 bits */ -#define FDATA_MASK_HIGH(regval) (BITS(16,31) & ((uint32_t)(regval) << 16)) - -/* CAN FDATA low 16 bits */ -#define FDATA_MASK_LOW(regval) (BITS(0,15) & ((uint32_t)(regval) << 0)) - -/* CAN1 filter start bank_number*/ -#define FCTL_HBC1F(regval) (BITS(8,13) & ((uint32_t)(regval) << 8)) - -/* CAN transmit mailbox extended identifier*/ -#define TMI_EFID(regval) (BITS(3,31) & ((uint32_t)(regval) << 3)) - -/* CAN transmit mailbox standard identifier*/ -#define TMI_SFID(regval) (BITS(21,31) & ((uint32_t)(regval) << 21)) - -/* transmit data byte 0 */ -#define TMDATA0_DB0(regval) (BITS(0,7) & ((uint32_t)(regval) << 0)) - -/* transmit data byte 1 */ -#define TMDATA0_DB1(regval) (BITS(8,15) & ((uint32_t)(regval) << 8)) - -/* transmit data byte 2 */ -#define TMDATA0_DB2(regval) (BITS(16,23) & ((uint32_t)(regval) << 16)) - -/* transmit data byte 3 */ -#define TMDATA0_DB3(regval) (BITS(24,31) & ((uint32_t)(regval) << 24)) - -/* transmit data byte 4 */ -#define TMDATA1_DB4(regval) (BITS(0,7) & ((uint32_t)(regval) << 0)) - -/* transmit data byte 5 */ -#define TMDATA1_DB5(regval) (BITS(8,15) & ((uint32_t)(regval) << 8)) - -/* transmit data byte 6 */ -#define TMDATA1_DB6(regval) (BITS(16,23) & ((uint32_t)(regval) << 16)) - -/* transmit data byte 7 */ -#define TMDATA1_DB7(regval) (BITS(24,31) & ((uint32_t)(regval) << 24)) - -/* receive mailbox extended identifier*/ -#define GET_RFIFOMI_EFID(regval) GET_BITS((uint32_t)(regval), 3U, 31U) - -/* receive mailbox standrad identifier*/ -#define GET_RFIFOMI_SFID(regval) GET_BITS((uint32_t)(regval), 21U, 31U) - -/* receive data length */ -#define GET_RFIFOMP_DLENC(regval) GET_BITS((uint32_t)(regval), 0U, 3U) - -/* the index of the filter by which the frame is passed */ -#define GET_RFIFOMP_FI(regval) GET_BITS((uint32_t)(regval), 8U, 15U) - -/* receive data byte 0 */ -#define GET_RFIFOMDATA0_DB0(regval) GET_BITS((uint32_t)(regval), 0U, 7U) - -/* receive data byte 1 */ -#define GET_RFIFOMDATA0_DB1(regval) GET_BITS((uint32_t)(regval), 8U, 15U) - -/* receive data byte 2 */ -#define GET_RFIFOMDATA0_DB2(regval) GET_BITS((uint32_t)(regval), 16U, 23U) - -/* receive data byte 3 */ -#define GET_RFIFOMDATA0_DB3(regval) GET_BITS((uint32_t)(regval), 24U, 31U) - -/* receive data byte 4 */ -#define GET_RFIFOMDATA1_DB4(regval) GET_BITS((uint32_t)(regval), 0U, 7U) - -/* receive data byte 5 */ -#define GET_RFIFOMDATA1_DB5(regval) GET_BITS((uint32_t)(regval), 8U, 15U) - -/* receive data byte 6 */ -#define GET_RFIFOMDATA1_DB6(regval) GET_BITS((uint32_t)(regval), 16U, 23U) - -/* receive data byte 7 */ -#define GET_RFIFOMDATA1_DB7(regval) GET_BITS((uint32_t)(regval), 24U, 31U) - -/* error number */ -#define GET_ERR_ERRN(regval) GET_BITS((uint32_t)(regval), 4U, 6U) - -/* transmit error count */ -#define GET_ERR_TECNT(regval) GET_BITS((uint32_t)(regval), 16U, 23U) - -/* receive error count */ -#define GET_ERR_RECNT(regval) GET_BITS((uint32_t)(regval), 24U, 31U) - -/* CAN errors */ -#define ERR_ERRN(regval) (BITS(4,6) & ((uint32_t)(regval) << 4)) -#define CAN_ERRN_0 ERR_ERRN(0U) /* no error */ -#define CAN_ERRN_1 ERR_ERRN(1U) /*!< fill error */ -#define CAN_ERRN_2 ERR_ERRN(2U) /*!< format error */ -#define CAN_ERRN_3 ERR_ERRN(3U) /*!< ACK error */ -#define CAN_ERRN_4 ERR_ERRN(4U) /*!< bit recessive error */ -#define CAN_ERRN_5 ERR_ERRN(5U) /*!< bit dominant error */ -#define CAN_ERRN_6 ERR_ERRN(6U) /*!< CRC error */ -#define CAN_ERRN_7 ERR_ERRN(7U) /*!< software error */ - -#define CAN_STATE_PENDING ((uint32_t)0x00000000U) /*!< CAN pending */ - -/* CAN communication mode */ -#define CAN_NORMAL_MODE ((uint8_t)0x00U) /*!< normal communication mode */ -#define CAN_LOOPBACK_MODE ((uint8_t)0x01U) /*!< loopback communication mode */ -#define CAN_SILENT_MODE ((uint8_t)0x02U) /*!< silent communication mode */ -#define CAN_SILENT_LOOPBACK_MODE ((uint8_t)0x03U) /*!< loopback and silent communication mode */ - -/* CAN resynchronisation jump width */ -#define CAN_BT_SJW_1TQ ((uint8_t)0x00U) /*!< 1 time quanta */ -#define CAN_BT_SJW_2TQ ((uint8_t)0x01U) /*!< 2 time quanta */ -#define CAN_BT_SJW_3TQ ((uint8_t)0x02U) /*!< 3 time quanta */ -#define CAN_BT_SJW_4TQ ((uint8_t)0x03U) /*!< 4 time quanta */ - -/* CAN time segment 1 */ -#define CAN_BT_BS1_1TQ ((uint8_t)0x00U) /*!< 1 time quanta */ -#define CAN_BT_BS1_2TQ ((uint8_t)0x01U) /*!< 2 time quanta */ -#define CAN_BT_BS1_3TQ ((uint8_t)0x02U) /*!< 3 time quanta */ -#define CAN_BT_BS1_4TQ ((uint8_t)0x03U) /*!< 4 time quanta */ -#define CAN_BT_BS1_5TQ ((uint8_t)0x04U) /*!< 5 time quanta */ -#define CAN_BT_BS1_6TQ ((uint8_t)0x05U) /*!< 6 time quanta */ -#define CAN_BT_BS1_7TQ ((uint8_t)0x06U) /*!< 7 time quanta */ -#define CAN_BT_BS1_8TQ ((uint8_t)0x07U) /*!< 8 time quanta */ -#define CAN_BT_BS1_9TQ ((uint8_t)0x08U) /*!< 9 time quanta */ -#define CAN_BT_BS1_10TQ ((uint8_t)0x09U) /*!< 10 time quanta */ -#define CAN_BT_BS1_11TQ ((uint8_t)0x0AU) /*!< 11 time quanta */ -#define CAN_BT_BS1_12TQ ((uint8_t)0x0BU) /*!< 12 time quanta */ -#define CAN_BT_BS1_13TQ ((uint8_t)0x0CU) /*!< 13 time quanta */ -#define CAN_BT_BS1_14TQ ((uint8_t)0x0DU) /*!< 14 time quanta */ -#define CAN_BT_BS1_15TQ ((uint8_t)0x0EU) /*!< 15 time quanta */ -#define CAN_BT_BS1_16TQ ((uint8_t)0x0FU) /*!< 16 time quanta */ - -/* CAN time segment 2 */ -#define CAN_BT_BS2_1TQ ((uint8_t)0x00U) /*!< 1 time quanta */ -#define CAN_BT_BS2_2TQ ((uint8_t)0x01U) /*!< 2 time quanta */ -#define CAN_BT_BS2_3TQ ((uint8_t)0x02U) /*!< 3 time quanta */ -#define CAN_BT_BS2_4TQ ((uint8_t)0x03U) /*!< 4 time quanta */ -#define CAN_BT_BS2_5TQ ((uint8_t)0x04U) /*!< 5 time quanta */ -#define CAN_BT_BS2_6TQ ((uint8_t)0x05U) /*!< 6 time quanta */ -#define CAN_BT_BS2_7TQ ((uint8_t)0x06U) /*!< 7 time quanta */ -#define CAN_BT_BS2_8TQ ((uint8_t)0x07U) /*!< 8 time quanta */ - -/* CAN mailbox number */ -#define CAN_MAILBOX0 ((uint8_t)0x00U) /*!< mailbox0 */ -#define CAN_MAILBOX1 ((uint8_t)0x01U) /*!< mailbox1 */ -#define CAN_MAILBOX2 ((uint8_t)0x02U) /*!< mailbox2 */ -#define CAN_NOMAILBOX ((uint8_t)0x03U) /*!< no mailbox empty */ - -/* CAN frame format */ -#define CAN_FF_STANDARD ((uint32_t)0x00000000U) /*!< standard frame */ -#define CAN_FF_EXTENDED ((uint32_t)0x00000004U) /*!< extended frame */ - -/* CAN receive fifo */ -#define CAN_FIFO0 ((uint8_t)0x00U) /*!< receive FIFO0 */ -#define CAN_FIFO1 ((uint8_t)0x01U) /*!< receive FIFO1 */ - -/* frame number of receive fifo */ -#define CAN_RFIF_RFL_MASK ((uint32_t)0x00000003U) /*!< mask for frame number in receive FIFOx */ - -#define CAN_SFID_MASK ((uint32_t)0x000007FFU) /*!< mask of standard identifier */ -#define CAN_EFID_MASK ((uint32_t)0x1FFFFFFFU) /*!< mask of extended identifier */ - -/* CAN working mode */ -#define CAN_MODE_INITIALIZE ((uint8_t)0x01U) /*!< CAN initialize mode */ -#define CAN_MODE_NORMAL ((uint8_t)0x02U) /*!< CAN normal mode */ -#define CAN_MODE_SLEEP ((uint8_t)0x04U) /*!< CAN sleep mode */ - -/* filter bits */ -#define CAN_FILTERBITS_16BIT ((uint8_t)0x00U) /*!< CAN filter 16 bits */ -#define CAN_FILTERBITS_32BIT ((uint8_t)0x01U) /*!< CAN filter 32 bits */ - -/* filter mode */ -#define CAN_FILTERMODE_MASK ((uint8_t)0x00U) /*!< mask mode */ -#define CAN_FILTERMODE_LIST ((uint8_t)0x01U) /*!< list mode */ - -/* filter 16 bits mask */ -#define CAN_FILTER_MASK_16BITS ((uint32_t)0x0000FFFFU) /*!< can filter 16 bits mask */ - -/* frame type */ -#define CAN_FT_DATA ((uint32_t)0x00000000U) /*!< data frame */ -#define CAN_FT_REMOTE ((uint32_t)0x00000002U) /*!< remote frame */ - -/* CAN timeout */ -#define CAN_TIMEOUT ((uint32_t)0x0000FFFFU) /*!< timeout value */ - -/* interrupt enable bits */ -#define CAN_INT_TME CAN_INTEN_TMEIE /*!< transmit mailbox empty interrupt enable */ -#define CAN_INT_RFNE0 CAN_INTEN_RFNEIE0 /*!< receive FIFO0 not empty interrupt enable */ -#define CAN_INT_RFF0 CAN_INTEN_RFFIE0 /*!< receive FIFO0 full interrupt enable */ -#define CAN_INT_RFO0 CAN_INTEN_RFOIE0 /*!< receive FIFO0 overfull interrupt enable */ -#define CAN_INT_RFNE1 CAN_INTEN_RFNEIE1 /*!< receive FIFO1 not empty interrupt enable */ -#define CAN_INT_RFF1 CAN_INTEN_RFFIE1 /*!< receive FIFO1 full interrupt enable */ -#define CAN_INT_RFO1 CAN_INTEN_RFOIE1 /*!< receive FIFO1 overfull interrupt enable */ -#define CAN_INT_WERR CAN_INTEN_WERRIE /*!< warning error interrupt enable */ -#define CAN_INT_PERR CAN_INTEN_PERRIE /*!< passive error interrupt enable */ -#define CAN_INT_BO CAN_INTEN_BOIE /*!< bus-off interrupt enable */ -#define CAN_INT_ERRN CAN_INTEN_ERRNIE /*!< error number interrupt enable */ -#define CAN_INT_ERR CAN_INTEN_ERRIE /*!< error interrupt enable */ -#define CAN_INT_WAKEUP CAN_INTEN_WIE /*!< wakeup interrupt enable */ -#define CAN_INT_SLPW CAN_INTEN_SLPWIE /*!< sleep working interrupt enable */ - -/* function declarations */ -/* deinitialize CAN */ -void can_deinit(uint32_t can_periph); -/* initialize CAN struct */ -void can_struct_para_init(can_struct_type_enum type, void* p_struct); -/* initialize CAN */ -ErrStatus can_init(uint32_t can_periph, can_parameter_struct* can_parameter_init); -/* CAN filter init */ -void can_filter_init(can_filter_parameter_struct* can_filter_parameter_init); -/* set can1 fliter start bank number */ -void can1_filter_start_bank(uint8_t start_bank); -/* enable functions */ -/* CAN debug freeze enable */ -void can_debug_freeze_enable(uint32_t can_periph); -/* CAN debug freeze disable */ -void can_debug_freeze_disable(uint32_t can_periph); -/* CAN time trigger mode enable */ -void can_time_trigger_mode_enable(uint32_t can_periph); -/* CAN time trigger mode disable */ -void can_time_trigger_mode_disable(uint32_t can_periph); - -/* transmit functions */ -/* transmit CAN message */ -uint8_t can_message_transmit(uint32_t can_periph, can_trasnmit_message_struct* transmit_message); -/* get CAN transmit state */ -can_transmit_state_enum can_transmit_states(uint32_t can_periph, uint8_t mailbox_number); -/* stop CAN transmission */ -void can_transmission_stop(uint32_t can_periph, uint8_t mailbox_number); -/* CAN receive message */ -void can_message_receive(uint32_t can_periph, uint8_t fifo_number, can_receive_message_struct* receive_message); -/* CAN release fifo */ -void can_fifo_release(uint32_t can_periph, uint8_t fifo_number); -/* CAN receive message length */ -uint8_t can_receive_message_length_get(uint32_t can_periph, uint8_t fifo_number); -/* CAN working mode */ -ErrStatus can_working_mode_set(uint32_t can_periph, uint8_t working_mode); -/* CAN wakeup from sleep mode */ -ErrStatus can_wakeup(uint32_t can_periph); - -/* CAN get error */ -can_error_enum can_error_get(uint32_t can_periph); -/* get CAN receive error number */ -uint8_t can_receive_error_number_get(uint32_t can_periph); -/* get CAN transmit error number */ -uint8_t can_transmit_error_number_get(uint32_t can_periph); - -/* CAN interrupt enable */ -void can_interrupt_enable(uint32_t can_periph, uint32_t interrupt); -/* CAN interrupt disable */ -void can_interrupt_disable(uint32_t can_periph, uint32_t interrupt); -/* CAN get flag state */ -FlagStatus can_flag_get(uint32_t can_periph, can_flag_enum flag); -/* CAN clear flag state */ -void can_flag_clear(uint32_t can_periph, can_flag_enum flag); -/* CAN get interrupt flag state */ -FlagStatus can_interrupt_flag_get(uint32_t can_periph, can_interrupt_flag_enum flag); -/* CAN clear interrupt flag state */ -void can_interrupt_flag_clear(uint32_t can_periph, can_interrupt_flag_enum flag); - -#endif /* GD32F4XX_CAN_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_crc.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_crc.h deleted file mode 100644 index f1948a2c91..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_crc.h +++ /dev/null @@ -1,80 +0,0 @@ -/*! - \file gd32f4xx_crc.h - \brief definitions for the CRC - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_CRC_H -#define GD32F4XX_CRC_H - -#include "gd32f4xx.h" - -/* CRC definitions */ -#define CRC CRC_BASE - -/* registers definitions */ -#define CRC_DATA REG32(CRC + 0x00U) /*!< CRC data register */ -#define CRC_FDATA REG32(CRC + 0x04U) /*!< CRC free data register */ -#define CRC_CTL REG32(CRC + 0x08U) /*!< CRC control register */ - -/* bits definitions */ -/* CRC_DATA */ -#define CRC_DATA_DATA BITS(0,31) /*!< CRC calculation result bits */ - -/* CRC_FDATA */ -#define CRC_FDATA_FDATA BITS(0,7) /*!< CRC free data bits */ - -/* CRC_CTL */ -#define CRC_CTL_RST BIT(0) /*!< CRC reset CRC_DATA register bit */ - - -/* function declarations */ -/* deinit CRC calculation unit */ -void crc_deinit(void); - -/* reset data register(CRC_DATA) to the value of 0xFFFFFFFF */ -void crc_data_register_reset(void); -/* read the value of the data register */ -uint32_t crc_data_register_read(void); - -/* read the value of the free data register */ -uint8_t crc_free_data_register_read(void); -/* write data to the free data register */ -void crc_free_data_register_write(uint8_t free_data); - -/* calculate the CRC value of a 32-bit data */ -uint32_t crc_single_data_calculate(uint32_t sdata); -/* calculate the CRC value of an array of 32-bit values */ -uint32_t crc_block_data_calculate(uint32_t array[], uint32_t size); - -#endif /* GD32F4XX_CRC_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_ctc.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_ctc.h deleted file mode 100644 index 3698eb1930..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_ctc.h +++ /dev/null @@ -1,192 +0,0 @@ -/*! - \file gd32f4xx_ctc.h - \brief definitions for the CTC - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_CTC_H -#define GD32F4XX_CTC_H - -#include "gd32f4xx.h" - -/* CTC definitions */ -#define CTC CTC_BASE - -/* registers definitions */ -#define CTC_CTL0 REG32((CTC) + 0x00U) /*!< CTC control register 0 */ -#define CTC_CTL1 REG32((CTC) + 0x04U) /*!< CTC control register 1 */ -#define CTC_STAT REG32((CTC) + 0x08U) /*!< CTC status register */ -#define CTC_INTC REG32((CTC) + 0x0CU) /*!< CTC interrupt clear register */ - -/* bits definitions */ -/* CTC_CTL0 */ -#define CTC_CTL0_CKOKIE BIT(0) /*!< clock trim OK(CKOKIF) interrupt enable */ -#define CTC_CTL0_CKWARNIE BIT(1) /*!< clock trim warning(CKWARNIF) interrupt enable */ -#define CTC_CTL0_ERRIE BIT(2) /*!< error(ERRIF) interrupt enable */ -#define CTC_CTL0_EREFIE BIT(3) /*!< EREFIF interrupt enable */ -#define CTC_CTL0_CNTEN BIT(5) /*!< CTC counter enable */ -#define CTC_CTL0_AUTOTRIM BIT(6) /*!< hardware automatically trim mode */ -#define CTC_CTL0_SWREFPUL BIT(7) /*!< software reference source sync pulse */ -#define CTC_CTL0_TRIMVALUE BITS(8,13) /*!< IRC48M trim value */ - -/* CTC_CTL1 */ -#define CTC_CTL1_RLVALUE BITS(0,15) /*!< CTC counter reload value */ -#define CTC_CTL1_CKLIM BITS(16,23) /*!< clock trim base limit value */ -#define CTC_CTL1_REFPSC BITS(24,26) /*!< reference signal source prescaler */ -#define CTC_CTL1_REFSEL BITS(28,29) /*!< reference signal source selection */ -#define CTC_CTL1_USBSOFSEL BIT(30) /*!< USBFS or USBHS SOF signal selection */ -#define CTC_CTL1_REFPOL BIT(31) /*!< reference signal source polarity */ - -/* CTC_STAT */ -#define CTC_STAT_CKOKIF BIT(0) /*!< clock trim OK interrupt flag */ -#define CTC_STAT_CKWARNIF BIT(1) /*!< clock trim warning interrupt flag */ -#define CTC_STAT_ERRIF BIT(2) /*!< error interrupt flag */ -#define CTC_STAT_EREFIF BIT(3) /*!< expect reference interrupt flag */ -#define CTC_STAT_CKERR BIT(8) /*!< clock trim error bit */ -#define CTC_STAT_REFMISS BIT(9) /*!< reference sync pulse miss */ -#define CTC_STAT_TRIMERR BIT(10) /*!< trim value error bit */ -#define CTC_STAT_REFDIR BIT(15) /*!< CTC trim counter direction when reference sync pulse occurred */ -#define CTC_STAT_REFCAP BITS(16,31) /*!< CTC counter capture when reference sync pulse occurred */ - -/* CTC_INTC */ -#define CTC_INTC_CKOKIC BIT(0) /*!< CKOKIF interrupt clear bit */ -#define CTC_INTC_CKWARNIC BIT(1) /*!< CKWARNIF interrupt clear bit */ -#define CTC_INTC_ERRIC BIT(2) /*!< ERRIF interrupt clear bit */ -#define CTC_INTC_EREFIC BIT(3) /*!< EREFIF interrupt clear bit */ - -/* constants definitions */ -/* hardware automatically trim mode definitions */ -#define CTC_HARDWARE_TRIM_MODE_ENABLE CTC_CTL0_AUTOTRIM /*!< hardware automatically trim mode enable*/ -#define CTC_HARDWARE_TRIM_MODE_DISABLE ((uint32_t)0x00000000U) /*!< hardware automatically trim mode disable*/ - -/* reference signal source polarity definitions */ -#define CTC_REFSOURCE_POLARITY_FALLING CTC_CTL1_REFPOL /*!< reference signal source polarity is falling edge*/ -#define CTC_REFSOURCE_POLARITY_RISING ((uint32_t)0x00000000U) /*!< reference signal source polarity is rising edge*/ - -/* USBFS or USBHS SOF signal selection definitions */ -#define CTC_USBSOFSEL_USBHS CTC_CTL1_USBSOFSEL /*!< USBHS SOF signal is selected*/ -#define CTC_USBSOFSEL_USBFS ((uint32_t)0x00000000U) /*!< USBFS SOF signal is selected*/ - -/* reference signal source selection definitions */ -#define CTL1_REFSEL(regval) (BITS(28,29) & ((uint32_t)(regval) << 28)) -#define CTC_REFSOURCE_GPIO CTL1_REFSEL(0) /*!< GPIO is selected */ -#define CTC_REFSOURCE_LXTAL CTL1_REFSEL(1) /*!< LXTAL is clock selected */ -#define CTC_REFSOURCE_USBSOF CTL1_REFSEL(2) /*!< USBSOF is selected */ - -/* reference signal source prescaler definitions */ -#define CTL1_REFPSC(regval) (BITS(24,26) & ((uint32_t)(regval) << 24)) -#define CTC_REFSOURCE_PSC_OFF CTL1_REFPSC(0) /*!< reference signal not divided */ -#define CTC_REFSOURCE_PSC_DIV2 CTL1_REFPSC(1) /*!< reference signal divided by 2 */ -#define CTC_REFSOURCE_PSC_DIV4 CTL1_REFPSC(2) /*!< reference signal divided by 4 */ -#define CTC_REFSOURCE_PSC_DIV8 CTL1_REFPSC(3) /*!< reference signal divided by 8 */ -#define CTC_REFSOURCE_PSC_DIV16 CTL1_REFPSC(4) /*!< reference signal divided by 16 */ -#define CTC_REFSOURCE_PSC_DIV32 CTL1_REFPSC(5) /*!< reference signal divided by 32 */ -#define CTC_REFSOURCE_PSC_DIV64 CTL1_REFPSC(6) /*!< reference signal divided by 64 */ -#define CTC_REFSOURCE_PSC_DIV128 CTL1_REFPSC(7) /*!< reference signal divided by 128 */ - -/* CTC interrupt enable definitions */ -#define CTC_INT_CKOK CTC_CTL0_CKOKIE /*!< clock trim OK interrupt enable */ -#define CTC_INT_CKWARN CTC_CTL0_CKWARNIE /*!< clock trim warning interrupt enable */ -#define CTC_INT_ERR CTC_CTL0_ERRIE /*!< error interrupt enable */ -#define CTC_INT_EREF CTC_CTL0_EREFIE /*!< expect reference interrupt enable */ - -/* CTC interrupt source definitions */ -#define CTC_INT_FLAG_CKOK CTC_STAT_CKOKIF /*!< clock trim OK interrupt flag */ -#define CTC_INT_FLAG_CKWARN CTC_STAT_CKWARNIF /*!< clock trim warning interrupt flag */ -#define CTC_INT_FLAG_ERR CTC_STAT_ERRIF /*!< error interrupt flag */ -#define CTC_INT_FLAG_EREF CTC_STAT_EREFIF /*!< expect reference interrupt flag */ -#define CTC_INT_FLAG_CKERR CTC_STAT_CKERR /*!< clock trim error bit */ -#define CTC_INT_FLAG_REFMISS CTC_STAT_REFMISS /*!< reference sync pulse miss */ -#define CTC_INT_FLAG_TRIMERR CTC_STAT_TRIMERR /*!< trim value error */ - -/* CTC flag definitions */ -#define CTC_FLAG_CKOK CTC_STAT_CKOKIF /*!< clock trim OK flag */ -#define CTC_FLAG_CKWARN CTC_STAT_CKWARNIF /*!< clock trim warning flag */ -#define CTC_FLAG_ERR CTC_STAT_ERRIF /*!< error flag */ -#define CTC_FLAG_EREF CTC_STAT_EREFIF /*!< expect reference flag */ -#define CTC_FLAG_CKERR CTC_STAT_CKERR /*!< clock trim error bit */ -#define CTC_FLAG_REFMISS CTC_STAT_REFMISS /*!< reference sync pulse miss */ -#define CTC_FLAG_TRIMERR CTC_STAT_TRIMERR /*!< trim value error bit */ - -/* function declarations */ -/* reset ctc clock trim controller */ -void ctc_deinit(void); -/* enable CTC trim counter */ -void ctc_counter_enable(void); -/* disable CTC trim counter */ -void ctc_counter_disable(void); - -/* configure the IRC48M trim value */ -void ctc_irc48m_trim_value_config(uint8_t trim_value); -/* generate software reference source sync pulse */ -void ctc_software_refsource_pulse_generate(void); -/* configure hardware automatically trim mode */ -void ctc_hardware_trim_mode_config(uint32_t hardmode); - -/* configure reference signal source polarity */ -void ctc_refsource_polarity_config(uint32_t polarity); -/* select USBFS or USBHS SOF signal */ -void ctc_usbsof_signal_select(uint32_t usbsof); -/* select reference signal source */ -void ctc_refsource_signal_select(uint32_t refs); -/* configure reference signal source prescaler */ -void ctc_refsource_prescaler_config(uint32_t prescaler); -/* configure clock trim base limit value */ -void ctc_clock_limit_value_config(uint8_t limit_value); -/* configure CTC counter reload value */ -void ctc_counter_reload_value_config(uint16_t reload_value); - -/* read CTC counter capture value when reference sync pulse occurred */ -uint16_t ctc_counter_capture_value_read(void); -/* read CTC trim counter direction when reference sync pulse occurred */ -FlagStatus ctc_counter_direction_read(void); -/* read CTC counter reload value */ -uint16_t ctc_counter_reload_value_read(void); -/* read the IRC48M trim value */ -uint8_t ctc_irc48m_trim_value_read(void); - -/* interrupt & flag functions */ -/* enable the CTC interrupt */ -void ctc_interrupt_enable(uint32_t interrupt); -/* disable the CTC interrupt */ -void ctc_interrupt_disable(uint32_t interrupt); -/* get CTC interrupt flag */ -FlagStatus ctc_interrupt_flag_get(uint32_t int_flag); -/* clear CTC interrupt flag */ -void ctc_interrupt_flag_clear(uint32_t int_flag); -/* get CTC flag */ -FlagStatus ctc_flag_get(uint32_t flag); -/* clear CTC flag */ -void ctc_flag_clear(uint32_t flag); - -#endif /* GD32F4XX_CTC_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dac.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dac.h deleted file mode 100644 index 43918a5612..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dac.h +++ /dev/null @@ -1,270 +0,0 @@ -/*! - \file gd32f4xx_dac.h - \brief definitions for the DAC - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_DAC_H -#define GD32F4XX_DAC_H - -#include "gd32f4xx.h" - -/* DACx(x=0,1) definitions */ -#define DAC DAC_BASE -#define DAC0 0U -#define DAC1 1U - -/* registers definitions */ -#define DAC_CTL REG32(DAC + 0x00U) /*!< DAC control register */ -#define DAC_SWT REG32(DAC + 0x04U) /*!< DAC software trigger register */ -#define DAC0_R12DH REG32(DAC + 0x08U) /*!< DAC0 12-bit right-aligned data holding register */ -#define DAC0_L12DH REG32(DAC + 0x0CU) /*!< DAC0 12-bit left-aligned data holding register */ -#define DAC0_R8DH REG32(DAC + 0x10U) /*!< DAC0 8-bit right-aligned data holding register */ -#define DAC1_R12DH REG32(DAC + 0x14U) /*!< DAC1 12-bit right-aligned data holding register */ -#define DAC1_L12DH REG32(DAC + 0x18U) /*!< DAC1 12-bit left-aligned data holding register */ -#define DAC1_R8DH REG32(DAC + 0x1CU) /*!< DAC1 8-bit right-aligned data holding register */ -#define DACC_R12DH REG32(DAC + 0x20U) /*!< DAC concurrent mode 12-bit right-aligned data holding register */ -#define DACC_L12DH REG32(DAC + 0x24U) /*!< DAC concurrent mode 12-bit left-aligned data holding register */ -#define DACC_R8DH REG32(DAC + 0x28U) /*!< DAC concurrent mode 8-bit right-aligned data holding register */ -#define DAC0_DO REG32(DAC + 0x2CU) /*!< DAC0 data output register */ -#define DAC1_DO REG32(DAC + 0x30U) /*!< DAC1 data output register */ -#define DAC_STAT REG32(DAC + 0x34U) /*!< DAC status register */ - -/* bits definitions */ -/* DAC_CTL */ -#define DAC_CTL_DEN0 BIT(0) /*!< DAC0 enable/disable bit */ -#define DAC_CTL_DBOFF0 BIT(1) /*!< DAC0 output buffer turn on/turn off bit */ -#define DAC_CTL_DTEN0 BIT(2) /*!< DAC0 trigger enable/disable bit */ -#define DAC_CTL_DTSEL0 BITS(3,5) /*!< DAC0 trigger source selection enable/disable bits */ -#define DAC_CTL_DWM0 BITS(6,7) /*!< DAC0 noise wave mode */ -#define DAC_CTL_DWBW0 BITS(8,11) /*!< DAC0 noise wave bit width */ -#define DAC_CTL_DDMAEN0 BIT(12) /*!< DAC0 DMA enable/disable bit */ -#define DAC_CTL_DDUDRIE0 BIT(13) /*!< DAC0 DMA underrun interrupt enable/disable bit */ -#define DAC_CTL_DEN1 BIT(16) /*!< DAC1 enable/disable bit */ -#define DAC_CTL_DBOFF1 BIT(17) /*!< DAC1 output buffer turn on/turn off bit */ -#define DAC_CTL_DTEN1 BIT(18) /*!< DAC1 trigger enable/disable bit */ -#define DAC_CTL_DTSEL1 BITS(19,21) /*!< DAC1 trigger source selection enable/disable bits */ -#define DAC_CTL_DWM1 BITS(22,23) /*!< DAC1 noise wave mode */ -#define DAC_CTL_DWBW1 BITS(24,27) /*!< DAC1 noise wave bit width */ -#define DAC_CTL_DDMAEN1 BIT(28) /*!< DAC1 DMA enable/disable bit */ -#define DAC_CTL_DDUDRIE1 BIT(29) /*!< DAC1 DMA underrun interrupt enable/disable bit */ - -/* DAC_SWT */ -#define DAC_SWT_SWTR0 BIT(0) /*!< DAC0 software trigger bit, cleared by hardware */ -#define DAC_SWT_SWTR1 BIT(1) /*!< DAC1 software trigger bit, cleared by hardware */ - -/* DAC0_R12DH */ -#define DAC0_R12DH_DAC0_DH BITS(0,11) /*!< DAC0 12-bit right-aligned data bits */ - -/* DAC0_L12DH */ -#define DAC0_L12DH_DAC0_DH BITS(4,15) /*!< DAC0 12-bit left-aligned data bits */ - -/* DAC0_R8DH */ -#define DAC0_R8DH_DAC0_DH BITS(0,7) /*!< DAC0 8-bit right-aligned data bits */ - -/* DAC1_R12DH */ -#define DAC1_R12DH_DAC1_DH BITS(0,11) /*!< DAC1 12-bit right-aligned data bits */ - -/* DAC1_L12DH */ -#define DAC1_L12DH_DAC1_DH BITS(4,15) /*!< DAC1 12-bit left-aligned data bits */ - -/* DAC1_R8DH */ -#define DAC1_R8DH_DAC1_DH BITS(0,7) /*!< DAC1 8-bit right-aligned data bits */ - -/* DACC_R12DH */ -#define DACC_R12DH_DAC0_DH BITS(0,11) /*!< DAC concurrent mode DAC0 12-bit right-aligned data bits */ -#define DACC_R12DH_DAC1_DH BITS(16,27) /*!< DAC concurrent mode DAC1 12-bit right-aligned data bits */ - -/* DACC_L12DH */ -#define DACC_L12DH_DAC0_DH BITS(4,15) /*!< DAC concurrent mode DAC0 12-bit left-aligned data bits */ -#define DACC_L12DH_DAC1_DH BITS(20,31) /*!< DAC concurrent mode DAC1 12-bit left-aligned data bits */ - -/* DACC_R8DH */ -#define DACC_R8DH_DAC0_DH BITS(0,7) /*!< DAC concurrent mode DAC0 8-bit right-aligned data bits */ -#define DACC_R8DH_DAC1_DH BITS(8,15) /*!< DAC concurrent mode DAC1 8-bit right-aligned data bits */ - -/* DAC0_DO */ -#define DAC0_DO_DAC0_DO BITS(0,11) /*!< DAC0 12-bit output data bits */ - -/* DAC1_DO */ -#define DAC1_DO_DAC1_DO BITS(0,11) /*!< DAC1 12-bit output data bits */ - -/* DAC_STAT */ -#define DAC_STAT_DDUDR0 BIT(13) /*!< DAC0 DMA underrun flag */ -#define DAC_STAT_DDUDR1 BIT(29) /*!< DAC1 DMA underrun flag */ - -/* constants definitions */ -/* DAC trigger source */ -#define CTL_DTSEL(regval) (BITS(3,5) & ((uint32_t)(regval) << 3)) -#define DAC_TRIGGER_T5_TRGO CTL_DTSEL(0) /*!< TIMER5 TRGO */ -#define DAC_TRIGGER_T7_TRGO CTL_DTSEL(1) /*!< TIMER7 TRGO */ -#define DAC_TRIGGER_T6_TRGO CTL_DTSEL(2) /*!< TIMER6 TRGO */ -#define DAC_TRIGGER_T4_TRGO CTL_DTSEL(3) /*!< TIMER4 TRGO */ -#define DAC_TRIGGER_T1_TRGO CTL_DTSEL(4) /*!< TIMER1 TRGO */ -#define DAC_TRIGGER_T3_TRGO CTL_DTSEL(5) /*!< TIMER3 TRGO */ -#define DAC_TRIGGER_EXTI_9 CTL_DTSEL(6) /*!< EXTI interrupt line9 event */ -#define DAC_TRIGGER_SOFTWARE CTL_DTSEL(7) /*!< software trigger */ - -/* DAC noise wave mode */ -#define CTL_DWM(regval) (BITS(6,7) & ((uint32_t)(regval) << 6)) -#define DAC_WAVE_DISABLE CTL_DWM(0) /*!< wave disable */ -#define DAC_WAVE_MODE_LFSR CTL_DWM(1) /*!< LFSR noise mode */ -#define DAC_WAVE_MODE_TRIANGLE CTL_DWM(2) /*!< triangle noise mode */ - -/* DAC noise wave bit width */ -#define DWBW(regval) (BITS(8,11) & ((uint32_t)(regval) << 8)) -#define DAC_WAVE_BIT_WIDTH_1 DWBW(0) /*!< bit width of the wave signal is 1 */ -#define DAC_WAVE_BIT_WIDTH_2 DWBW(1) /*!< bit width of the wave signal is 2 */ -#define DAC_WAVE_BIT_WIDTH_3 DWBW(2) /*!< bit width of the wave signal is 3 */ -#define DAC_WAVE_BIT_WIDTH_4 DWBW(3) /*!< bit width of the wave signal is 4 */ -#define DAC_WAVE_BIT_WIDTH_5 DWBW(4) /*!< bit width of the wave signal is 5 */ -#define DAC_WAVE_BIT_WIDTH_6 DWBW(5) /*!< bit width of the wave signal is 6 */ -#define DAC_WAVE_BIT_WIDTH_7 DWBW(6) /*!< bit width of the wave signal is 7 */ -#define DAC_WAVE_BIT_WIDTH_8 DWBW(7) /*!< bit width of the wave signal is 8 */ -#define DAC_WAVE_BIT_WIDTH_9 DWBW(8) /*!< bit width of the wave signal is 9 */ -#define DAC_WAVE_BIT_WIDTH_10 DWBW(9) /*!< bit width of the wave signal is 10 */ -#define DAC_WAVE_BIT_WIDTH_11 DWBW(10) /*!< bit width of the wave signal is 11 */ -#define DAC_WAVE_BIT_WIDTH_12 DWBW(11) /*!< bit width of the wave signal is 12 */ - -/* unmask LFSR bits in DAC LFSR noise mode */ -#define DAC_LFSR_BIT0 DAC_WAVE_BIT_WIDTH_1 /*!< unmask the LFSR bit0 */ -#define DAC_LFSR_BITS1_0 DAC_WAVE_BIT_WIDTH_2 /*!< unmask the LFSR bits[1:0] */ -#define DAC_LFSR_BITS2_0 DAC_WAVE_BIT_WIDTH_3 /*!< unmask the LFSR bits[2:0] */ -#define DAC_LFSR_BITS3_0 DAC_WAVE_BIT_WIDTH_4 /*!< unmask the LFSR bits[3:0] */ -#define DAC_LFSR_BITS4_0 DAC_WAVE_BIT_WIDTH_5 /*!< unmask the LFSR bits[4:0] */ -#define DAC_LFSR_BITS5_0 DAC_WAVE_BIT_WIDTH_6 /*!< unmask the LFSR bits[5:0] */ -#define DAC_LFSR_BITS6_0 DAC_WAVE_BIT_WIDTH_7 /*!< unmask the LFSR bits[6:0] */ -#define DAC_LFSR_BITS7_0 DAC_WAVE_BIT_WIDTH_8 /*!< unmask the LFSR bits[7:0] */ -#define DAC_LFSR_BITS8_0 DAC_WAVE_BIT_WIDTH_9 /*!< unmask the LFSR bits[8:0] */ -#define DAC_LFSR_BITS9_0 DAC_WAVE_BIT_WIDTH_10 /*!< unmask the LFSR bits[9:0] */ -#define DAC_LFSR_BITS10_0 DAC_WAVE_BIT_WIDTH_11 /*!< unmask the LFSR bits[10:0] */ -#define DAC_LFSR_BITS11_0 DAC_WAVE_BIT_WIDTH_12 /*!< unmask the LFSR bits[11:0] */ - -/* DAC data alignment */ -#define DATA_ALIGN(regval) (BITS(0,1) & ((uint32_t)(regval) << 0)) -#define DAC_ALIGN_12B_R DATA_ALIGN(0) /*!< data right 12 bit alignment */ -#define DAC_ALIGN_12B_L DATA_ALIGN(1) /*!< data left 12 bit alignment */ -#define DAC_ALIGN_8B_R DATA_ALIGN(2) /*!< data right 8 bit alignment */ - -/* triangle amplitude in DAC triangle noise mode */ -#define DAC_TRIANGLE_AMPLITUDE_1 DAC_WAVE_BIT_WIDTH_1 /*!< triangle amplitude is 1 */ -#define DAC_TRIANGLE_AMPLITUDE_3 DAC_WAVE_BIT_WIDTH_2 /*!< triangle amplitude is 3 */ -#define DAC_TRIANGLE_AMPLITUDE_7 DAC_WAVE_BIT_WIDTH_3 /*!< triangle amplitude is 7 */ -#define DAC_TRIANGLE_AMPLITUDE_15 DAC_WAVE_BIT_WIDTH_4 /*!< triangle amplitude is 15 */ -#define DAC_TRIANGLE_AMPLITUDE_31 DAC_WAVE_BIT_WIDTH_5 /*!< triangle amplitude is 31 */ -#define DAC_TRIANGLE_AMPLITUDE_63 DAC_WAVE_BIT_WIDTH_6 /*!< triangle amplitude is 63 */ -#define DAC_TRIANGLE_AMPLITUDE_127 DAC_WAVE_BIT_WIDTH_7 /*!< triangle amplitude is 127 */ -#define DAC_TRIANGLE_AMPLITUDE_255 DAC_WAVE_BIT_WIDTH_8 /*!< triangle amplitude is 255 */ -#define DAC_TRIANGLE_AMPLITUDE_511 DAC_WAVE_BIT_WIDTH_9 /*!< triangle amplitude is 511 */ -#define DAC_TRIANGLE_AMPLITUDE_1023 DAC_WAVE_BIT_WIDTH_10 /*!< triangle amplitude is 1023 */ -#define DAC_TRIANGLE_AMPLITUDE_2047 DAC_WAVE_BIT_WIDTH_11 /*!< triangle amplitude is 2047 */ -#define DAC_TRIANGLE_AMPLITUDE_4095 DAC_WAVE_BIT_WIDTH_12 /*!< triangle amplitude is 4095 */ - -/* function declarations */ -/* initialization functions */ -/* deinitialize DAC */ -void dac_deinit(void); -/* enable DAC */ -void dac_enable(uint32_t dac_periph); -/* disable DAC */ -void dac_disable(uint32_t dac_periph); -/* enable DAC DMA */ -void dac_dma_enable(uint32_t dac_periph); -/* disable DAC DMA */ -void dac_dma_disable(uint32_t dac_periph); -/* enable DAC output buffer */ -void dac_output_buffer_enable(uint32_t dac_periph); -/* disable DAC output buffer */ -void dac_output_buffer_disable(uint32_t dac_periph); -/* get the last data output value */ -uint16_t dac_output_value_get(uint32_t dac_periph); -/* set DAC data holding register value */ -void dac_data_set(uint32_t dac_periph, uint32_t dac_align, uint16_t data); - -/* DAC trigger configuration */ -/* enable DAC trigger */ -void dac_trigger_enable(uint32_t dac_periph); -/* disable DAC trigger */ -void dac_trigger_disable(uint32_t dac_periph); -/* configure DAC trigger source */ -void dac_trigger_source_config(uint32_t dac_periph, uint32_t triggersource); -/* enable DAC software trigger */ -void dac_software_trigger_enable(uint32_t dac_periph); -/* disable DAC software trigger */ -void dac_software_trigger_disable(uint32_t dac_periph); - -/* DAC wave mode configuration */ -/* configure DAC wave mode */ -void dac_wave_mode_config(uint32_t dac_periph, uint32_t wave_mode); -/* configure DAC wave bit width */ -void dac_wave_bit_width_config(uint32_t dac_periph, uint32_t bit_width); -/* configure DAC LFSR noise mode */ -void dac_lfsr_noise_config(uint32_t dac_periph, uint32_t unmask_bits); -/* configure DAC triangle noise mode */ -void dac_triangle_noise_config(uint32_t dac_periph, uint32_t amplitude); - -/* DAC concurrent mode configuration */ -/* enable DAC concurrent mode */ -void dac_concurrent_enable(void); -/* disable DAC concurrent mode */ -void dac_concurrent_disable(void); -/* enable DAC concurrent software trigger */ -void dac_concurrent_software_trigger_enable(void); -/* disable DAC concurrent software trigger */ -void dac_concurrent_software_trigger_disable(void); -/* enable DAC concurrent buffer function */ -void dac_concurrent_output_buffer_enable(void); -/* disable DAC concurrent buffer function */ -void dac_concurrent_output_buffer_disable(void); -/* set DAC concurrent mode data holding register value */ -void dac_concurrent_data_set(uint32_t dac_align, uint16_t data0, uint16_t data1); -/* enable DAC concurrent interrupt */ -void dac_concurrent_interrupt_enable(void); -/* disable DAC concurrent interrupt */ -void dac_concurrent_interrupt_disable(void); - -/* DAC interrupt configuration */ -/* enable DAC interrupt(DAC DMA underrun interrupt) */ -void dac_interrupt_enable(uint32_t dac_periph); -/* disable DAC interrupt(DAC DMA underrun interrupt) */ -void dac_interrupt_disable(uint32_t dac_periph); -/* get the specified DAC flag(DAC DMA underrun flag) */ -FlagStatus dac_flag_get(uint32_t dac_periph); -/* clear the specified DAC flag(DAC DMA underrun flag) */ -void dac_flag_clear(uint32_t dac_periph); -/* get the specified DAC interrupt flag(DAC DMA underrun interrupt flag) */ -FlagStatus dac_interrupt_flag_get(uint32_t dac_periph); -/* clear the specified DAC interrupt flag(DAC DMA underrun interrupt flag) */ -void dac_interrupt_flag_clear(uint32_t dac_periph); - -#endif /* GD32F4XX_DAC_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dbg.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dbg.h deleted file mode 100644 index ea6bab96a8..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dbg.h +++ /dev/null @@ -1,161 +0,0 @@ -/*! - \file gd32f4xx_dbg.h - \brief definitions for the DBG - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_DBG_H -#define GD32F4XX_DBG_H - -#include "gd32f4xx.h" - -/* DBG definitions */ -#define DBG DBG_BASE - -/* registers definitions */ -#define DBG_ID REG32(DBG + 0x00U) /*!< DBG_ID code register */ -#define DBG_CTL0 REG32(DBG + 0x04U) /*!< DBG control register 0 */ -#define DBG_CTL1 REG32(DBG + 0x08U) /*!< DBG control register 1 */ -#define DBG_CTL2 REG32(DBG + 0x0CU) /*!< DBG control register 2 */ - -/* bits definitions */ -/* DBG_ID */ -#define DBG_ID_ID_CODE BITS(0,31) /*!< DBG ID code values */ - -/* DBG_CTL0 */ -#define DBG_CTL0_SLP_HOLD BIT(0) /*!< keep debugger connection during sleep mode */ -#define DBG_CTL0_DSLP_HOLD BIT(1) /*!< keep debugger connection during deepsleep mode */ -#define DBG_CTL0_STB_HOLD BIT(2) /*!< keep debugger connection during standby mode */ -#define DBG_CTL0_TRACE_IOEN BIT(5) /*!< enable trace pin assignment */ -#define DBG_CTL0_TRACE_MODE BITS(6,7) /*!< trace pin mode selection */ - -/* DBG_CTL1 */ -#define DBG_CTL1_TIMER1_HOLD BIT(0) /*!< hold TIMER1 counter when core is halted */ -#define DBG_CTL1_TIMER2_HOLD BIT(1) /*!< hold TIMER2 counter when core is halted */ -#define DBG_CTL1_TIMER3_HOLD BIT(2) /*!< hold TIMER3 counter when core is halted */ -#define DBG_CTL1_TIMER4_HOLD BIT(3) /*!< hold TIMER4 counter when core is halted */ -#define DBG_CTL1_TIMER5_HOLD BIT(4) /*!< hold TIMER5 counter when core is halted */ -#define DBG_CTL1_TIMER6_HOLD BIT(5) /*!< hold TIMER6 counter when core is halted */ -#define DBG_CTL1_TIMER11_HOLD BIT(6) /*!< hold TIMER11 counter when core is halted */ -#define DBG_CTL1_TIMER12_HOLD BIT(7) /*!< hold TIMER12 counter when core is halted */ -#define DBG_CTL1_TIMER13_HOLD BIT(8) /*!< hold TIMER13 counter when core is halted */ -#define DBG_CTL1_RTC_HOLD BIT(10) /*!< hold RTC calendar and wakeup counter when core is halted */ -#define DBG_CTL1_WWDGT_HOLD BIT(11) /*!< debug WWDGT kept when core is halted */ -#define DBG_CTL1_FWDGT_HOLD BIT(12) /*!< debug FWDGT kept when core is halted */ -#define DBG_CTL1_I2C0_HOLD BIT(21) /*!< hold I2C0 smbus when core is halted */ -#define DBG_CTL1_I2C1_HOLD BIT(22) /*!< hold I2C1 smbus when core is halted */ -#define DBG_CTL1_I2C2_HOLD BIT(23) /*!< hold I2C2 smbus when core is halted */ -#define DBG_CTL1_CAN0_HOLD BIT(25) /*!< debug CAN0 kept when core is halted */ -#define DBG_CTL1_CAN1_HOLD BIT(26) /*!< debug CAN1 kept when core is halted */ - -/* DBG_CTL2 */ -#define DBG_CTL2_TIMER0_HOLD BIT(0) /*!< hold TIMER0 counter when core is halted */ -#define DBG_CTL2_TIMER7_HOLD BIT(1) /*!< hold TIMER7 counter when core is halted */ -#define DBG_CTL2_TIMER8_HOLD BIT(16) /*!< hold TIMER8 counter when core is halted */ -#define DBG_CTL2_TIMER9_HOLD BIT(17) /*!< hold TIMER9 counter when core is halted */ -#define DBG_CTL2_TIMER10_HOLD BIT(18) /*!< hold TIMER10 counter when core is halted */ - -/* constants definitions */ -#define DBG_LOW_POWER_SLEEP DBG_CTL0_SLP_HOLD /*!< keep debugger connection during sleep mode */ -#define DBG_LOW_POWER_DEEPSLEEP DBG_CTL0_DSLP_HOLD /*!< keep debugger connection during deepsleep mode */ -#define DBG_LOW_POWER_STANDBY DBG_CTL0_STB_HOLD /*!< keep debugger connection during standby mode */ - -/* define the peripheral debug hold bit position and its register index offset */ -#define DBG_REGIDX_BIT(regidx, bitpos) (((regidx) << 6) | (bitpos)) -#define DBG_REG_VAL(periph) (REG32(DBG + ((uint32_t)(periph) >> 6))) -#define DBG_BIT_POS(val) ((uint32_t)(val) & 0x1FU) - -/* register index */ -enum dbg_reg_idx -{ - DBG_IDX_CTL0 = 0x04U, - DBG_IDX_CTL1 = 0x08U, - DBG_IDX_CTL2 = 0x0CU -}; - -typedef enum -{ - DBG_TIMER1_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 0U), /*!< hold TIMER1 counter when core is halted */ - DBG_TIMER2_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 1U), /*!< hold TIMER2 counter when core is halted */ - DBG_TIMER3_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 2U), /*!< hold TIMER3 counter when core is halted */ - DBG_TIMER4_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 3U), /*!< hold TIMER4 counter when core is halted */ - DBG_TIMER5_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 4U), /*!< hold TIMER5 counter when core is halted */ - DBG_TIMER6_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 5U), /*!< hold TIMER6 counter when core is halted */ - DBG_TIMER11_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 6U), /*!< hold TIMER11 counter when core is halted */ - DBG_TIMER12_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 7U), /*!< hold TIMER12 counter when core is halted */ - DBG_TIMER13_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 8U), /*!< hold TIMER13 counter when core is halted */ - DBG_RTC_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 10U), /*!< hold RTC calendar and wakeup counter when core is halted */ - DBG_WWDGT_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 11U), /*!< debug WWDGT kept when core is halted */ - DBG_FWDGT_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 12U), /*!< debug FWDGT kept when core is halted */ - DBG_I2C0_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 21U), /*!< hold I2C0 smbus when core is halted */ - DBG_I2C1_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 22U), /*!< hold I2C1 smbus when core is halted */ - DBG_I2C2_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 23U), /*!< hold I2C2 smbus when core is halted */ - DBG_CAN0_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 25U), /*!< debug CAN0 kept when core is halted */ - DBG_CAN1_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL1, 26U), /*!< debug CAN1 kept when core is halted */ - DBG_TIMER0_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL2, 0U), /*!< hold TIMER0 counter when core is halted */ - DBG_TIMER7_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL2, 1U), /*!< hold TIMER7 counter when core is halted */ - DBG_TIMER8_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL2, 16U), /*!< hold TIMER8 counter when core is halted */ - DBG_TIMER9_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL2, 17U), /*!< hold TIMER9 counter when core is halted */ - DBG_TIMER10_HOLD = DBG_REGIDX_BIT(DBG_IDX_CTL2, 18U) /*!< hold TIMER10 counter when core is halted */ -}dbg_periph_enum; - -#define CTL0_TRACE_MODE(regval) (BITS(6,7)&((uint32_t)(regval)<<6)) -#define TRACE_MODE_ASYNC CTL0_TRACE_MODE(0) /*!< trace pin used for async mode */ -#define TRACE_MODE_SYNC_DATASIZE_1 CTL0_TRACE_MODE(1) /*!< trace pin used for sync mode and data size is 1 */ -#define TRACE_MODE_SYNC_DATASIZE_2 CTL0_TRACE_MODE(2) /*!< trace pin used for sync mode and data size is 2 */ -#define TRACE_MODE_SYNC_DATASIZE_4 CTL0_TRACE_MODE(3) /*!< trace pin used for sync mode and data size is 4 */ - -/* function declarations */ -/* deinitialize the DBG */ -void dbg_deinit(void); -/* read DBG_ID code register */ -uint32_t dbg_id_get(void); - -/* enable low power behavior when the MCU is in debug mode */ -void dbg_low_power_enable(uint32_t dbg_low_power); -/* disable low power behavior when the MCU is in debug mode */ -void dbg_low_power_disable(uint32_t dbg_low_power); - -/* enable peripheral behavior when the MCU is in debug mode */ -void dbg_periph_enable(dbg_periph_enum dbg_periph); -/* disable peripheral behavior when the MCU is in debug mode */ -void dbg_periph_disable(dbg_periph_enum dbg_periph); - -/* enable trace pin assignment */ -void dbg_trace_pin_enable(void); -/* disable trace pin assignment */ -void dbg_trace_pin_disable(void); -/* set trace pin mode */ -void dbg_trace_pin_mode_set(uint32_t trace_mode); - -#endif /* GD32F4XX_DBG_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dci.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dci.h deleted file mode 100644 index 6e2a0b3f8f..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dci.h +++ /dev/null @@ -1,238 +0,0 @@ -/*! - \file gd32f4xx_dci.h - \brief definitions for the DCI - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_DCI_H -#define GD32F4XX_DCI_H - -#include "gd32f4xx.h" - -/* DCI definitions */ -#define DCI DCI_BASE - -/* registers definitions */ -#define DCI_CTL REG32(DCI + 0x00U) /*!< DCI control register */ -#define DCI_STAT0 REG32(DCI + 0x04U) /*!< DCI status register 0 */ -#define DCI_STAT1 REG32(DCI + 0x08U) /*!< DCI status register 1 */ -#define DCI_INTEN REG32(DCI + 0x0CU) /*!< DCI interrupt enable register */ -#define DCI_INTF REG32(DCI + 0x10U) /*!< DCI interrupt flag register */ -#define DCI_INTC REG32(DCI + 0x14U) /*!< DCI interrupt clear register */ -#define DCI_SC REG32(DCI + 0x18U) /*!< DCI synchronization codes register */ -#define DCI_SCUMSK REG32(DCI + 0x1CU) /*!< DCI synchronization codes unmask register */ -#define DCI_CWSPOS REG32(DCI + 0x20U) /*!< DCI cropping window start position register */ -#define DCI_CWSZ REG32(DCI + 0x24U) /*!< DCI cropping window size register */ -#define DCI_DATA REG32(DCI + 0x28U) /*!< DCI data register */ - -/* bits definitions */ -/* DCI_CTL */ -#define DCI_CTL_CAP BIT(0) /*!< capture enable */ -#define DCI_CTL_SNAP BIT(1) /*!< snapshot mode */ -#define DCI_CTL_WDEN BIT(2) /*!< window enable */ -#define DCI_CTL_JM BIT(3) /*!< JPEG mode */ -#define DCI_CTL_ESM BIT(4) /*!< embedded synchronous mode */ -#define DCI_CTL_CKS BIT(5) /*!< clock polarity selection */ -#define DCI_CTL_HPS BIT(6) /*!< horizontal polarity selection */ -#define DCI_CTL_VPS BIT(7) /*!< vertical polarity selection */ -#define DCI_CTL_FR BITS(8,9) /*!< frame rate */ -#define DCI_CTL_DCIF BITS(10,11) /*!< digital camera interface format */ -#define DCI_CTL_DCIEN BIT(14) /*!< DCI enable */ - -/* DCI_STAT0 */ -#define DCI_STAT0_HS BIT(0) /*!< HS line status */ -#define DCI_STAT0_VS BIT(1) /*!< VS line status */ -#define DCI_STAT0_FV BIT(2) /*!< FIFO valid */ - -/* DCI_STAT1 */ -#define DCI_STAT1_EFF BIT(0) /*!< end of frame flag */ -#define DCI_STAT1_OVRF BIT(1) /*!< FIFO overrun flag */ -#define DCI_STAT1_ESEF BIT(2) /*!< embedded synchronous error flag */ -#define DCI_STAT1_VSF BIT(3) /*!< vsync flag */ -#define DCI_STAT1_ELF BIT(4) /*!< end of line flag */ - -/* DCI_INTEN */ -#define DCI_INTEN_EFIE BIT(0) /*!< end of frame interrupt enable */ -#define DCI_INTEN_OVRIE BIT(1) /*!< FIFO overrun interrupt enable */ -#define DCI_INTEN_ESEIE BIT(2) /*!< embedded synchronous error interrupt enable */ -#define DCI_INTEN_VSIE BIT(3) /*!< vsync interrupt enable */ -#define DCI_INTEN_ELIE BIT(4) /*!< end of line interrupt enable */ - -/* DCI_INTF */ -#define DCI_INTF_EFIF BIT(0) /*!< end of frame interrupt flag */ -#define DCI_INTF_OVRIF BIT(1) /*!< FIFO overrun interrupt flag */ -#define DCI_INTF_ESEIF BIT(2) /*!< embedded synchronous error interrupt flag */ -#define DCI_INTF_VSIF BIT(3) /*!< vsync interrupt flag */ -#define DCI_INTF_ELIF BIT(4) /*!< end of line interrupt flag */ - -/* DCI_INTC */ -#define DCI_INTC_EFFC BIT(0) /*!< clear end of frame flag */ -#define DCI_INTC_OVRFC BIT(1) /*!< clear FIFO overrun flag */ -#define DCI_INTC_ESEFC BIT(2) /*!< clear embedded synchronous error flag */ -#define DCI_INTC_VSFC BIT(3) /*!< vsync flag clear */ -#define DCI_INTC_ELFC BIT(4) /*!< end of line flag clear */ - -/* DCI_SC */ -#define DCI_SC_FS BITS(0,7) /*!< frame start code in embedded synchronous mode */ -#define DCI_SC_LS BITS(8,15) /*!< line start code in embedded synchronous mode */ -#define DCI_SC_LE BITS(16,23) /*!< line end code in embedded synchronous mode */ -#define DCI_SC_FE BITS(24,31) /*!< frame end code in embedded synchronous mode */ - -/* DCI_SCUNMSK */ -#define DCI_SCUMSK_FSM BITS(0,7) /*!< frame start code unmask bits in embedded synchronous mode */ -#define DCI_SCUMSK_LSM BITS(8,15) /*!< line start code unmask bits in embedded synchronous mode */ -#define DCI_SCUMSK_LEM BITS(16,23) /*!< line end code unmask bits in embedded synchronous mode */ -#define DCI_SCUMSK_FEM BITS(24,31) /*!< frame end code unmask bits in embedded synchronous mode */ - -/* DCI_CWSPOS */ -#define DCI_CWSPOS_WHSP BITS(0,13) /*!< window horizontal start position */ -#define DCI_CWSPOS_WVSP BITS(16,28) /*!< window vertical start position */ - -/* DCI_CWSZ */ -#define DCI_CWSZ_WHSZ BITS(0,13) /*!< window horizontal size */ -#define DCI_CWSZ_WVSZ BITS(16,29) /*!< window vertical size */ - -/* constants definitions */ -/* DCI parameter structure definitions */ -typedef struct -{ - uint32_t capture_mode; /*!< DCI capture mode: continuous or snapshot */ - uint32_t clock_polarity; /*!< clock polarity selection */ - uint32_t hsync_polarity; /*!< horizontal polarity selection */ - uint32_t vsync_polarity; /*!< vertical polarity selection */ - uint32_t frame_rate; /*!< frame capture rate */ - uint32_t interface_format; /*!< digital camera interface format */ -}dci_parameter_struct; - -#define DCI_CAPTURE_MODE_CONTINUOUS ((uint32_t)0x00000000U) /*!< continuous capture mode */ -#define DCI_CAPTURE_MODE_SNAPSHOT DCI_CTL_SNAP /*!< snapshot capture mode */ - -#define DCI_CK_POLARITY_FALLING ((uint32_t)0x00000000U) /*!< capture at falling edge */ -#define DCI_CK_POLARITY_RISING DCI_CTL_CKS /*!< capture at rising edge */ - -#define DCI_HSYNC_POLARITY_LOW ((uint32_t)0x00000000U) /*!< low level during blanking period */ -#define DCI_HSYNC_POLARITY_HIGH DCI_CTL_HPS /*!< high level during blanking period */ - -#define DCI_VSYNC_POLARITY_LOW ((uint32_t)0x00000000U) /*!< low level during blanking period */ -#define DCI_VSYNC_POLARITY_HIGH DCI_CTL_VPS /*!< high level during blanking period*/ - -#define CTL_FR(regval) (BITS(8,9)&((uint32_t)(regval) << 8U)) -#define DCI_FRAME_RATE_ALL CTL_FR(0) /*!< capture all frames */ -#define DCI_FRAME_RATE_1_2 CTL_FR(1) /*!< capture one in 2 frames */ -#define DCI_FRAME_RATE_1_4 CTL_FR(2) /*!< capture one in 4 frames */ - -#define CTL_DCIF(regval) (BITS(10,11)&((uint32_t)(regval) << 10U)) -#define DCI_INTERFACE_FORMAT_8BITS CTL_DCIF(0) /*!< 8-bit data on every pixel clock */ -#define DCI_INTERFACE_FORMAT_10BITS CTL_DCIF(1) /*!< 10-bit data on every pixel clock */ -#define DCI_INTERFACE_FORMAT_12BITS CTL_DCIF(2) /*!< 12-bit data on every pixel clock */ -#define DCI_INTERFACE_FORMAT_14BITS CTL_DCIF(3) /*!< 14-bit data on every pixel clock */ - -/* DCI interrupt constants definitions */ -#define DCI_INT_EF BIT(0) /*!< end of frame interrupt */ -#define DCI_INT_OVR BIT(1) /*!< FIFO overrun interrupt */ -#define DCI_INT_ESE BIT(2) /*!< embedded synchronous error interrupt */ -#define DCI_INT_VSYNC BIT(3) /*!< vsync interrupt */ -#define DCI_INT_EL BIT(4) /*!< end of line interrupt */ - -/* DCI interrupt flag definitions */ -#define DCI_INT_FLAG_EF BIT(0) /*!< end of frame interrupt flag */ -#define DCI_INT_FLAG_OVR BIT(1) /*!< FIFO overrun interrupt flag */ -#define DCI_INT_FLAG_ESE BIT(2) /*!< embedded synchronous error interrupt flag */ -#define DCI_INT_FLAG_VSYNC BIT(3) /*!< vsync interrupt flag */ -#define DCI_INT_FLAG_EL BIT(4) /*!< end of line interrupt flag */ - -/* DCI flag definitions */ -#define DCI_FLAG_HS DCI_STAT0_HS /*!< HS line status */ -#define DCI_FLAG_VS DCI_STAT0_VS /*!< VS line status */ -#define DCI_FLAG_FV DCI_STAT0_FV /*!< FIFO valid */ -#define DCI_FLAG_EF (DCI_STAT1_EFF | BIT(31)) /*!< end of frame flag */ -#define DCI_FLAG_OVR (DCI_STAT1_OVRF | BIT(31)) /*!< FIFO overrun flag */ -#define DCI_FLAG_ESE (DCI_STAT1_ESEF | BIT(31)) /*!< embedded synchronous error flag */ -#define DCI_FLAG_VSYNC (DCI_STAT1_VSF | BIT(31)) /*!< vsync flag */ -#define DCI_FLAG_EL (DCI_STAT1_ELF | BIT(31)) /*!< end of line flag */ - -/* function declarations */ -/* initialization functions */ -/* DCI deinit */ -void dci_deinit(void); -/* initialize DCI registers */ -void dci_init(dci_parameter_struct* dci_struct); - -/* enable DCI function */ -void dci_enable(void); -/* disable DCI function */ -void dci_disable(void); -/* enable DCI capture */ -void dci_capture_enable(void); -/* disable DCI capture */ -void dci_capture_disable(void); -/* enable DCI jpeg mode */ -void dci_jpeg_enable(void); -/* disable DCI jpeg mode */ -void dci_jpeg_disable(void); - -/* function configuration */ -/* enable cropping window function */ -void dci_crop_window_enable(void); -/* disable cropping window function */ -void dci_crop_window_disable(void); -/* configure DCI cropping window */ -void dci_crop_window_config(uint16_t start_x, uint16_t start_y, uint16_t size_width, uint16_t size_height); - -/* enable embedded synchronous mode */ -void dci_embedded_sync_enable(void); -/* disable embedded synchronous mode */ -void dci_embedded_sync_disable(void); -/* configure synchronous codes in embedded synchronous mode */ -void dci_sync_codes_config(uint8_t frame_start, uint8_t line_start, uint8_t line_end, uint8_t frame_end); -/* configure synchronous codes unmask in embedded synchronous mode */ -void dci_sync_codes_unmask_config(uint8_t frame_start, uint8_t line_start, uint8_t line_end, uint8_t frame_end); - -/* read DCI data register */ -uint32_t dci_data_read(void); - -/* interrupt & flag functions */ -/* get specified flag */ -FlagStatus dci_flag_get(uint32_t flag); -/* enable specified DCI interrupt */ -void dci_interrupt_enable(uint32_t interrupt); -/* disable specified DCI interrupt */ -void dci_interrupt_disable(uint32_t interrupt); - - -/* get specified interrupt flag */ -FlagStatus dci_interrupt_flag_get(uint32_t int_flag); -/* clear specified interrupt flag */ -void dci_interrupt_flag_clear(uint32_t int_flag); - -#endif /* GD32F4XX_DCI_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dma.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dma.h deleted file mode 100644 index 55e9a5adb4..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_dma.h +++ /dev/null @@ -1,428 +0,0 @@ -/*! - \file gd32f4xx_dma.c - \brief definitions for the DMA - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_DMA_H -#define GD32F4XX_DMA_H - -#include "gd32f4xx.h" - -/* DMA definitions */ -#define DMA0 (DMA_BASE) /*!< DMA0 base address */ -#define DMA1 (DMA_BASE + 0x0400U) /*!< DMA1 base address */ - -/* registers definitions */ -#define DMA_INTF0(dmax) REG32((dmax) + 0x00U) /*!< DMA interrupt flag register 0 */ -#define DMA_INTF1(dmax) REG32((dmax) + 0x04U) /*!< DMA interrupt flag register 1 */ -#define DMA_INTC0(dmax) REG32((dmax) + 0x08U) /*!< DMA interrupt flag clear register 0 */ -#define DMA_INTC1(dmax) REG32((dmax) + 0x0CU) /*!< DMA interrupt flag clear register 1 */ - -#define DMA_CH0CTL(dmax) REG32((dmax) + 0x10U) /*!< DMA channel 0 control register */ -#define DMA_CH0CNT(dmax) REG32((dmax) + 0x14U) /*!< DMA channel 0 counter register */ -#define DMA_CH0PADDR(dmax) REG32((dmax) + 0x18U) /*!< DMA channel 0 peripheral base address register */ -#define DMA_CH0M0ADDR(dmax) REG32((dmax) + 0x1CU) /*!< DMA channel 0 memory 0 base address register */ -#define DMA_CH0M1ADDR(dmax) REG32((dmax) + 0x20U) /*!< DMA channel 0 memory 1 base address register */ -#define DMA_CH0FCTL(dmax) REG32((dmax) + 0x24U) /*!< DMA channel 0 FIFO control register */ - -#define DMA_CH1CTL(dmax) REG32((dmax) + 0x28U) /*!< DMA channel 1 control register */ -#define DMA_CH1CNT(dmax) REG32((dmax) + 0x2CU) /*!< DMA channel 1 counter register */ -#define DMA_CH1PADDR(dmax) REG32((dmax) + 0x30U) /*!< DMA channel 1 peripheral base address register */ -#define DMA_CH1M0ADDR(dmax) REG32((dmax) + 0x34U) /*!< DMA channel 1 memory 0 base address register */ -#define DMA_CH1M1ADDR(dmax) REG32((dmax) + 0x38U) /*!< DMA channel 1 memory 1 base address register */ -#define DMA_CH1FCTL(dmax) REG32((dmax) + 0x3CU) /*!< DMA channel 1 FIFO control register */ - -#define DMA_CH2CTL(dmax) REG32((dmax) + 0x40U) /*!< DMA channel 2 control register */ -#define DMA_CH2CNT(dmax) REG32((dmax) + 0x44U) /*!< DMA channel 2 counter register */ -#define DMA_CH2PADDR(dmax) REG32((dmax) + 0x48U) /*!< DMA channel 2 peripheral base address register */ -#define DMA_CH2M0ADDR(dmax) REG32((dmax) + 0x4CU) /*!< DMA channel 2 memory 0 base address register */ -#define DMA_CH2M1ADDR(dmax) REG32((dmax) + 0x50U) /*!< DMA channel 2 memory 1 base address register */ -#define DMA_CH2FCTL(dmax) REG32((dmax) + 0x54U) /*!< DMA channel 2 FIFO control register */ - -#define DMA_CH3CTL(dmax) REG32((dmax) + 0x58U) /*!< DMA channel 3 control register */ -#define DMA_CH3CNT(dmax) REG32((dmax) + 0x5CU) /*!< DMA channel 3 counter register */ -#define DMA_CH3PADDR(dmax) REG32((dmax) + 0x60U) /*!< DMA channel 3 peripheral base address register */ -#define DMA_CH3M0ADDR(dmax) REG32((dmax) + 0x64U) /*!< DMA channel 3 memory 0 base address register */ -#define DMA_CH3M1ADDR(dmax) REG32((dmax) + 0x68U) /*!< DMA channel 3 memory 1 base address register */ -#define DMA_CH3FCTL(dmax) REG32((dmax) + 0x6CU) /*!< DMA channel 3 FIFO control register */ - -#define DMA_CH4CTL(dmax) REG32((dmax) + 0x70U) /*!< DMA channel 4 control register */ -#define DMA_CH4CNT(dmax) REG32((dmax) + 0x74U) /*!< DMA channel 4 counter register */ -#define DMA_CH4PADDR(dmax) REG32((dmax) + 0x78U) /*!< DMA channel 4 peripheral base address register */ -#define DMA_CH4M0ADDR(dmax) REG32((dmax) + 0x7CU) /*!< DMA channel 4 memory 0 base address register */ -#define DMA_CH4M1ADDR(dmax) REG32((dmax) + 0x80U) /*!< DMA channel 4 memory 1 base address register */ -#define DMA_CH4FCTL(dmax) REG32((dmax) + 0x84U) /*!< DMA channel 4 FIFO control register */ - -#define DMA_CH5CTL(dmax) REG32((dmax) + 0x88U) /*!< DMA channel 5 control register */ -#define DMA_CH5CNT(dmax) REG32((dmax) + 0x8CU) /*!< DMA channel 5 counter register */ -#define DMA_CH5PADDR(dmax) REG32((dmax) + 0x90U) /*!< DMA channel 5 peripheral base address register */ -#define DMA_CH5M0ADDR(dmax) REG32((dmax) + 0x94U) /*!< DMA channel 5 memory 0 base address register */ -#define DMA_CH5M1ADDR(dmax) REG32((dmax) + 0x98U) /*!< DMA channel 5 memory 1 base address register */ -#define DMA_CH5FCTL(dmax) REG32((dmax) + 0x9CU) /*!< DMA channel 5 FIFO control register */ - -#define DMA_CH6CTL(dmax) REG32((dmax) + 0xA0U) /*!< DMA channel 6 control register */ -#define DMA_CH6CNT(dmax) REG32((dmax) + 0xA4U) /*!< DMA channel 6 counter register */ -#define DMA_CH6PADDR(dmax) REG32((dmax) + 0xA8U) /*!< DMA channel 6 peripheral base address register */ -#define DMA_CH6M0ADDR(dmax) REG32((dmax) + 0xACU) /*!< DMA channel 6 memory 0 base address register */ -#define DMA_CH6M1ADDR(dmax) REG32((dmax) + 0xB0U) /*!< DMA channel 6 memory 1 base address register */ -#define DMA_CH6FCTL(dmax) REG32((dmax) + 0xB4U) /*!< DMA channel 6 FIFO control register */ - -#define DMA_CH7CTL(dmax) REG32((dmax) + 0xB8U) /*!< DMA channel 7 control register */ -#define DMA_CH7CNT(dmax) REG32((dmax) + 0xBCU) /*!< DMA channel 7 counter register */ -#define DMA_CH7PADDR(dmax) REG32((dmax) + 0xC0U) /*!< DMA channel 7 peripheral base address register */ -#define DMA_CH7M0ADDR(dmax) REG32((dmax) + 0xC4U) /*!< DMA channel 7 memory 0 base address register */ -#define DMA_CH7M1ADDR(dmax) REG32((dmax) + 0xC8U) /*!< DMA channel 7 memory 1 base address register */ -#define DMA_CH7FCTL(dmax) REG32((dmax) + 0xCCU) /*!< DMA channel 7 FIFO control register */ - -/* bits definitions */ -/* DMA_INTF */ -#define DMA_INTF_FEEIF BIT(0) /*!< FIFO error and exception flag */ -#define DMA_INTF_SDEIF BIT(2) /*!< single data mode exception flag */ -#define DMA_INTF_TAEIF BIT(3) /*!< transfer access error flag */ -#define DMA_INTF_HTFIF BIT(4) /*!< half transfer finish flag */ -#define DMA_INTF_FTFIF BIT(5) /*!< full transger finish flag */ - -/* DMA_INTC */ -#define DMA_INTC_FEEIFC BIT(0) /*!< clear FIFO error and exception flag */ -#define DMA_INTC_SDEIFC BIT(2) /*!< clear single data mode exception flag */ -#define DMA_INTC_TAEIFC BIT(3) /*!< clear single data mode exception flag */ -#define DMA_INTC_HTFIFC BIT(4) /*!< clear half transfer finish flag */ -#define DMA_INTC_FTFIFC BIT(5) /*!< clear full transger finish flag */ - -/* DMA_CHxCTL,x=0..7 */ -#define DMA_CHXCTL_CHEN BIT(0) /*!< channel x enable */ -#define DMA_CHXCTL_SDEIE BIT(1) /*!< enable bit for channel x single data mode exception interrupt */ -#define DMA_CHXCTL_TAEIE BIT(2) /*!< enable bit for channel x tranfer access error interrupt */ -#define DMA_CHXCTL_HTFIE BIT(3) /*!< enable bit for channel x half transfer finish interrupt */ -#define DMA_CHXCTL_FTFIE BIT(4) /*!< enable bit for channel x full transfer finish interrupt */ -#define DMA_CHXCTL_TFCS BIT(5) /*!< transfer flow controller select */ -#define DMA_CHXCTL_TM BITS(6,7) /*!< transfer mode */ -#define DMA_CHXCTL_CMEN BIT(8) /*!< circulation mode */ -#define DMA_CHXCTL_PNAGA BIT(9) /*!< next address generation algorithm of peripheral */ -#define DMA_CHXCTL_MNAGA BIT(10) /*!< next address generation algorithm of memory */ -#define DMA_CHXCTL_PWIDTH BITS(11,12) /*!< transfer width of peipheral */ -#define DMA_CHXCTL_MWIDTH BITS(13,14) /*!< transfer width of memory */ -#define DMA_CHXCTL_PAIF BIT(15) /*!< peripheral address increment fixed */ -#define DMA_CHXCTL_PRIO BITS(16,17) /*!< priority level */ -#define DMA_CHXCTL_SBMEN BIT(18) /*!< switch-buffer mode enable */ -#define DMA_CHXCTL_MBS BIT(19) /*!< memory buffer select */ -#define DMA_CHXCTL_PBURST BITS(21,22) /*!< transfer burst type of peripheral */ -#define DMA_CHXCTL_MBURST BITS(23,24) /*!< transfer burst type of memory */ -#define DMA_CHXCTL_PERIEN BITS(25,27) /*!< peripheral enable */ - -/* DMA_CHxCNT,x=0..7 */ -#define DMA_CHXCNT_CNT BITS(0,15) /*!< transfer counter */ - -/* DMA_CHxPADDR,x=0..7 */ -#define DMA_CHXPADDR_PADDR BITS(0,31) /*!< peripheral base address */ - -/* DMA_CHxM0ADDR,x=0..7 */ -#define DMA_CHXM0ADDR_M0ADDR BITS(0,31) /*!< memory 0 base address */ - -/* DMA_CHxM1ADDR,x=0..7 */ -#define DMA_CHXM1ADDR_M0ADDR BITS(0,31) /*!< memory 1 base address */ - -/* DMA_CHxFCTL,x=0..7 */ -#define DMA_CHXFCTL_FCCV BITS(0,1) /*!< FIFO counter critical value */ -#define DMA_CHXFCTL_MDMEN BIT(2) /*!< multi-data mode enable */ -#define DMA_CHXFCTL_FCNT BITS(3,5) /*!< FIFO counter */ -#define DMA_CHXFCTL_FEEIE BIT(7) /*!< FIFO exception interrupt enable */ - -/* constants definitions */ -/* DMA channel select */ -typedef enum -{ - DMA_CH0 = 0, /*!< DMA Channel 0 */ - DMA_CH1, /*!< DMA Channel 1 */ - DMA_CH2, /*!< DMA Channel 2 */ - DMA_CH3, /*!< DMA Channel 3 */ - DMA_CH4, /*!< DMA Channel 4 */ - DMA_CH5, /*!< DMA Channel 5 */ - DMA_CH6, /*!< DMA Channel 6 */ - DMA_CH7 /*!< DMA Channel 7 */ -} dma_channel_enum; - -/* DMA peripheral select */ -typedef enum -{ - DMA_SUBPERI0 = 0, /*!< DMA Peripheral 0 */ - DMA_SUBPERI1, /*!< DMA Peripheral 1 */ - DMA_SUBPERI2, /*!< DMA Peripheral 2 */ - DMA_SUBPERI3, /*!< DMA Peripheral 3 */ - DMA_SUBPERI4, /*!< DMA Peripheral 4 */ - DMA_SUBPERI5, /*!< DMA Peripheral 5 */ - DMA_SUBPERI6, /*!< DMA Peripheral 6 */ - DMA_SUBPERI7 /*!< DMA Peripheral 7 */ -} dma_subperipheral_enum; - -/* DMA multidata mode initialize struct */ -typedef struct -{ - uint32_t periph_addr; /*!< peripheral base address */ - uint32_t periph_width; /*!< transfer data size of peripheral */ - uint32_t periph_inc; /*!< peripheral increasing mode */ - - uint32_t memory0_addr; /*!< memory 0 base address */ - uint32_t memory_width; /*!< transfer data size of memory */ - uint32_t memory_inc; /*!< memory increasing mode */ - - uint32_t memory_burst_width; /*!< multi data mode enable */ - uint32_t periph_burst_width; /*!< multi data mode enable */ - uint32_t critical_value; /*!< FIFO critical */ - - uint32_t circular_mode; /*!< DMA circular mode */ - uint32_t direction; /*!< channel data transfer direction */ - uint32_t number; /*!< channel transfer number */ - uint32_t priority; /*!< channel priority level */ -}dma_multi_data_parameter_struct; - -/* DMA singledata mode initialize struct */ -typedef struct -{ - uint32_t periph_addr; /*!< peripheral base address */ - uint32_t periph_inc; /*!< peripheral increasing mode */ - - uint32_t memory0_addr; /*!< memory 0 base address */ - uint32_t memory_inc; /*!< memory increasing mode */ - - uint32_t periph_memory_width; /*!< transfer data size of peripheral */ - - uint32_t circular_mode; /*!< DMA circular mode */ - uint32_t direction; /*!< channel data transfer direction */ - uint32_t number; /*!< channel transfer number */ - uint32_t priority; /*!< channel priority level */ -} dma_single_data_parameter_struct; - -#define DMA_FLAG_ADD(flag,channel) ((uint32_t)((flag)<<((((uint32_t)(channel)*6U))+((uint32_t)(((uint32_t)(channel)) >> 1U)&0x01U)*4U))) /*!< DMA channel flag shift */ - -/* DMA_register address */ -#define DMA_CHCTL(dma,channel) REG32(((dma) + 0x10U) + 0x18U*(channel)) /*!< the address of DMA channel CHXCTL register */ -#define DMA_CHCNT(dma,channel) REG32(((dma) + 0x14U) + 0x18U*(channel)) /*!< the address of DMA channel CHXCNT register */ -#define DMA_CHPADDR(dma,channel) REG32(((dma) + 0x18U) + 0x18U*(channel)) /*!< the address of DMA channel CHXPADDR register */ -#define DMA_CHM0ADDR(dma,channel) REG32(((dma) + 0x1CU) + 0x18U*(channel)) /*!< the address of DMA channel CHXM0ADDR register */ -#define DMA_CHM1ADDR(dma,channel) REG32(((dma) + 0x20U) + 0x18U*(channel)) /*!< the address of DMA channel CHXM1ADDR register */ -#define DMA_CHFCTL(dma,channel) REG32(((dma) + 0x24U) + 0x18U*(channel)) /*!< the address of DMA channel CHXMADDR register */ - -/* peripheral select */ -#define CHCTL_PERIEN(regval) (BITS(25,27) & ((uint32_t)(regval) << 25)) -#define DMA_PERIPH_0_SELECT CHCTL_PERIEN(0) /*!< peripheral 0 select */ -#define DMA_PERIPH_1_SELECT CHCTL_PERIEN(1) /*!< peripheral 1 select */ -#define DMA_PERIPH_2_SELECT CHCTL_PERIEN(2) /*!< peripheral 2 select */ -#define DMA_PERIPH_3_SELECT CHCTL_PERIEN(3) /*!< peripheral 3 select */ -#define DMA_PERIPH_4_SELECT CHCTL_PERIEN(4) /*!< peripheral 4 select */ -#define DMA_PERIPH_5_SELECT CHCTL_PERIEN(5) /*!< peripheral 5 select */ -#define DMA_PERIPH_6_SELECT CHCTL_PERIEN(6) /*!< peripheral 6 select */ -#define DMA_PERIPH_7_SELECT CHCTL_PERIEN(7) /*!< peripheral 7 select */ - -/* burst type of memory */ -#define CHCTL_MBURST(regval) (BITS(23,24) & ((uint32_t)(regval) << 23)) -#define DMA_MEMORY_BURST_SINGLE CHCTL_MBURST(0) /*!< single burst */ -#define DMA_MEMORY_BURST_4_BEAT CHCTL_MBURST(1) /*!< 4-beat burst */ -#define DMA_MEMORY_BURST_8_BEAT CHCTL_MBURST(2) /*!< 8-beat burst */ -#define DMA_MEMORY_BURST_16_BEAT CHCTL_MBURST(3) /*!< 16-beat burst */ - -/* burst type of peripheral */ -#define CHCTL_PBURST(regval) (BITS(21,22) & ((uint32_t)(regval) << 21)) -#define DMA_PERIPH_BURST_SINGLE CHCTL_PBURST(0) /*!< single burst */ -#define DMA_PERIPH_BURST_4_BEAT CHCTL_PBURST(1) /*!< 4-beat burst */ -#define DMA_PERIPH_BURST_8_BEAT CHCTL_PBURST(2) /*!< 8-beat burst */ -#define DMA_PERIPH_BURST_16_BEAT CHCTL_PBURST(3) /*!< 16-beat burst */ - -/* channel priority level */ -#define CHCTL_PRIO(regval) (BITS(16,17) & ((uint32_t)(regval) << 16)) -#define DMA_PRIORITY_LOW CHCTL_PRIO(0) /*!< low priority */ -#define DMA_PRIORITY_MEDIUM CHCTL_PRIO(1) /*!< medium priority */ -#define DMA_PRIORITY_HIGH CHCTL_PRIO(2) /*!< high priority */ -#define DMA_PRIORITY_ULTRA_HIGH CHCTL_PRIO(3) /*!< ultra high priority */ - -/* transfer data width of memory */ -#define CHCTL_MWIDTH(regval) (BITS(13,14) & ((uint32_t)(regval) << 13)) -#define DMA_MEMORY_WIDTH_8BIT CHCTL_MWIDTH(0) /*!< transfer data width of memory is 8-bit */ -#define DMA_MEMORY_WIDTH_16BIT CHCTL_MWIDTH(1) /*!< transfer data width of memory is 16-bit */ -#define DMA_MEMORY_WIDTH_32BIT CHCTL_MWIDTH(2) /*!< transfer data width of memory is 32-bit */ - -/* transfer data width of peripheral */ -#define CHCTL_PWIDTH(regval) (BITS(11,12) & ((uint32_t)(regval) << 11)) -#define DMA_PERIPH_WIDTH_8BIT CHCTL_PWIDTH(0) /*!< transfer data width of peripheral is 8-bit */ -#define DMA_PERIPH_WIDTH_16BIT CHCTL_PWIDTH(1) /*!< transfer data width of peripheral is 16-bit */ -#define DMA_PERIPH_WIDTH_32BIT CHCTL_PWIDTH(2) /*!< transfer data width of peripheral is 32-bit */ - -/* channel transfer mode */ -#define CHCTL_TM(regval) (BITS(6,7) & ((uint32_t)(regval) << 6)) -#define DMA_PERIPH_TO_MEMORY CHCTL_TM(0) /*!< read from peripheral and write to memory */ -#define DMA_MEMORY_TO_PERIPH CHCTL_TM(1) /*!< read from memory and write to peripheral */ -#define DMA_MEMORY_TO_MEMORY CHCTL_TM(2) /*!< read from memory and write to memory */ - -/* FIFO counter critical value */ -#define CHFCTL_FCCV(regval) (BITS(0,1) & ((uint32_t)(regval) << 0)) -#define DMA_FIFO_1_WORD CHFCTL_FCCV(0) /*!< critical value 1 word */ -#define DMA_FIFO_2_WORD CHFCTL_FCCV(1) /*!< critical value 2 word */ -#define DMA_FIFO_3_WORD CHFCTL_FCCV(2) /*!< critical value 3 word */ -#define DMA_FIFO_4_WORD CHFCTL_FCCV(3) /*!< critical value 4 word */ - -/* memory select */ -#define DMA_MEMORY_0 ((uint32_t)0x00000000U) /*!< select memory 0 */ -#define DMA_MEMORY_1 ((uint32_t)0x00000001U) /*!< select memory 1 */ - -/* DMA circular mode */ -#define DMA_CIRCULAR_MODE_ENABLE ((uint32_t)0x00000000U) /*!< circular mode enable */ -#define DMA_CIRCULAR_MODE_DISABLE ((uint32_t)0x00000001U) /*!< circular mode disable */ - -/* DMA flow controller select */ -#define DMA_FLOW_CONTROLLER_DMA ((uint32_t)0x00000000U) /*!< DMA is the flow controler */ -#define DMA_FLOW_CONTROLLER_PERI ((uint32_t)0x00000001U) /*!< peripheral is the flow controler */ - -/* peripheral increasing mode */ -#define DMA_PERIPH_INCREASE_ENABLE ((uint32_t)0x00000000U) /*!< next address of peripheral is increasing address mode */ -#define DMA_PERIPH_INCREASE_DISABLE ((uint32_t)0x00000001U) /*!< next address of peripheral is fixed address mode */ -#define DMA_PERIPH_INCREASE_FIX ((uint32_t)0x00000002U) /*!< next address of peripheral is increasing fixed */ - -/* memory increasing mode */ -#define DMA_MEMORY_INCREASE_ENABLE ((uint32_t)0x00000000U) /*!< next address of memory is increasing address mode */ -#define DMA_MEMORY_INCREASE_DISABLE ((uint32_t)0x00000001U) /*!< next address of memory is fixed address mode */ - -/* FIFO status */ -#define DMA_FIFO_STATUS_NODATA ((uint32_t)0x00000000U) /*!< the data in the FIFO less than 1 word */ -#define DMA_FIFO_STATUS_1_WORD ((uint32_t)0x00000001U) /*!< the data in the FIFO more than 1 word, less than 2 words */ -#define DMA_FIFO_STATUS_2_WORD ((uint32_t)0x00000002U) /*!< the data in the FIFO more than 2 word, less than 3 words */ -#define DMA_FIFO_STATUS_3_WORD ((uint32_t)0x00000003U) /*!< the data in the FIFO more than 3 word, less than 4 words */ -#define DMA_FIFO_STATUS_EMPTY ((uint32_t)0x00000004U) /*!< the data in the FIFO is empty */ -#define DMA_FIFO_STATUS_FULL ((uint32_t)0x00000005U) /*!< the data in the FIFO is full */ - -/* DMA reset value */ -#define DMA_CHCTL_RESET_VALUE ((uint32_t)0x00000000U) /*!< the reset value of DMA channel CHXCTL register */ -#define DMA_CHCNT_RESET_VALUE ((uint32_t)0x00000000U) /*!< the reset value of DMA channel CHXCNT register */ -#define DMA_CHPADDR_RESET_VALUE ((uint32_t)0x00000000U) /*!< the reset value of DMA channel CHXPADDR register */ -#define DMA_CHMADDR_RESET_VALUE ((uint32_t)0x00000000U) /*!< the reset value of DMA channel CHXMADDR register */ -#define DMA_CHINTF_RESET_VALUE ((uint32_t)0x0000003DU) /*!< clear DMA channel CHXINTFS register */ -#define DMA_CHFCTL_RESET_VALUE ((uint32_t)0x00000000U) /*!< the reset value of DMA channel CHXFCTL register */ - -/* DMA_INTF register */ -/* interrupt flag bits */ -#define DMA_INT_FLAG_FEE DMA_INTF_FEEIF /*!< FIFO error and exception flag */ -#define DMA_INT_FLAG_SDE DMA_INTF_SDEIF /*!< single data mode exception flag */ -#define DMA_INT_FLAG_TAE DMA_INTF_TAEIF /*!< transfer access error flag */ -#define DMA_INT_FLAG_HTF DMA_INTF_HTFIF /*!< half transfer finish flag */ -#define DMA_INT_FLAG_FTF DMA_INTF_FTFIF /*!< full transfer finish flag */ - -/* flag bits */ -#define DMA_FLAG_FEE DMA_INTF_FEEIF /*!< FIFO error and exception flag */ -#define DMA_FLAG_SDE DMA_INTF_SDEIF /*!< single data mode exception flag */ -#define DMA_FLAG_TAE DMA_INTF_TAEIF /*!< transfer access error flag */ -#define DMA_FLAG_HTF DMA_INTF_HTFIF /*!< half transfer finish flag */ -#define DMA_FLAG_FTF DMA_INTF_FTFIF /*!< full transfer finish flag */ - - -/* function declarations */ -/* DMA deinitialization and initialization functions */ -/* deinitialize DMA a channel registers */ -void dma_deinit(uint32_t dma_periph, dma_channel_enum channelx); -/* initialize the DMA single data mode parameters struct with the default values */ -void dma_single_data_para_struct_init(dma_single_data_parameter_struct* init_struct); -/* initialize the DMA multi data mode parameters struct with the default values */ -void dma_multi_data_para_struct_init(dma_multi_data_parameter_struct* init_struct); -/* DMA single data mode initialize */ -void dma_single_data_mode_init(uint32_t dma_periph, dma_channel_enum channelx, dma_single_data_parameter_struct* init_struct); -/* DMA multi data mode initialize */ -void dma_multi_data_mode_init(uint32_t dma_periph, dma_channel_enum channelx, dma_multi_data_parameter_struct* init_struct); - -/* DMA configuration functions */ -/* set DMA peripheral base address */ -void dma_periph_address_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t address); -/* set DMA Memory base address */ -void dma_memory_address_config(uint32_t dma_periph, dma_channel_enum channelx, uint8_t memory_flag, uint32_t address); - -/* set the number of remaining data to be transferred by the DMA */ -void dma_transfer_number_config(uint32_t dma_periph,dma_channel_enum channelx, uint32_t number); -/* get the number of remaining data to be transferred by the DMA */ -uint32_t dma_transfer_number_get(uint32_t dma_periph, dma_channel_enum channelx); - -/* configure priority level of DMA channel */ -void dma_priority_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t priority); - -/* configure transfer burst beats of memory */ -void dma_memory_burst_beats_config (uint32_t dma_periph, dma_channel_enum channelx, uint32_t mbeat); -/* configure transfer burst beats of peripheral */ -void dma_periph_burst_beats_config (uint32_t dma_periph, dma_channel_enum channelx, uint32_t pbeat); -/* configure transfer data size of memory */ -void dma_memory_width_config (uint32_t dma_periph, dma_channel_enum channelx, uint32_t msize); -/* configure transfer data size of peripheral */ -void dma_periph_width_config (uint32_t dma_periph, dma_channel_enum channelx, uint32_t psize); - -/* configure next address increasement algorithm of memory */ -void dma_memory_address_generation_config(uint32_t dma_periph, dma_channel_enum channelx, uint8_t generation_algorithm); -/* configure next address increasement algorithm of peripheral */ -void dma_peripheral_address_generation_config(uint32_t dma_periph, dma_channel_enum channelx, uint8_t generation_algorithm); - -/* enable DMA circulation mode */ -void dma_circulation_enable(uint32_t dma_periph, dma_channel_enum channelx); -/* disable DMA circulation mode */ -void dma_circulation_disable(uint32_t dma_periph, dma_channel_enum channelx); -/* enable DMA channel */ -void dma_channel_enable(uint32_t dma_periph, dma_channel_enum channelx); -/* disable DMA channel */ -void dma_channel_disable(uint32_t dma_periph, dma_channel_enum channelx); - -/* configure the direction of data transfer on the channel */ -void dma_transfer_direction_config(uint32_t dma_periph, dma_channel_enum channelx, uint8_t direction); - -/* DMA switch buffer mode config */ -void dma_switch_buffer_mode_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t memory1_addr, uint32_t memory_select); -/* DMA using memory get */ -uint32_t dma_using_memory_get(uint32_t dma_periph, dma_channel_enum channelx); - -/* DMA channel peripheral select */ -void dma_channel_subperipheral_select(uint32_t dma_periph, dma_channel_enum channelx, dma_subperipheral_enum sub_periph); -/* DMA flow controller configure */ -void dma_flow_controller_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t controller); -/* DMA flow controller enable */ -void dma_switch_buffer_mode_enable(uint32_t dma_periph, dma_channel_enum channelx, ControlStatus newvalue); -/* DMA FIFO status get */ -uint32_t dma_fifo_status_get(uint32_t dma_periph, dma_channel_enum channelx); - -/* flag and interrupt functions */ -/* check DMA flag is set or not */ -FlagStatus dma_flag_get(uint32_t dma_periph, dma_channel_enum channelx, uint32_t flag); -/* clear DMA a channel flag */ -void dma_flag_clear(uint32_t dma_periph, dma_channel_enum channelx, uint32_t flag); -/* check DMA flag is set or not */ -FlagStatus dma_interrupt_flag_get(uint32_t dma_periph, dma_channel_enum channelx, uint32_t interrupt); -/* clear DMA a channel flag */ -void dma_interrupt_flag_clear(uint32_t dma_periph, dma_channel_enum channelx, uint32_t interrupt); -/* enable DMA interrupt */ -void dma_interrupt_enable(uint32_t dma_periph, dma_channel_enum channelx, uint32_t source); -/* disable DMA interrupt */ -void dma_interrupt_disable(uint32_t dma_periph, dma_channel_enum channelx, uint32_t source); - -#endif /* GD32F4XX_DMA_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_enet.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_enet.h deleted file mode 100644 index 31079c090c..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_enet.h +++ /dev/null @@ -1,1680 +0,0 @@ -/*! - \file gd32f4xx_enet.h - \brief definitions for the ENET - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_ENET_H -#define GD32F4XX_ENET_H - -#include "gd32f4xx.h" -#include - -#define IF_USE_EXTERNPHY_LIB 0 -#if (1 == IF_USE_EXTERNPHY_LIB) -#include "phy.h" -#endif - -#ifndef ENET_RXBUF_NUM -#define ENET_RXBUF_NUM 5U /*!< ethernet Rx DMA descriptor number */ -#endif - -#ifndef ENET_TXBUF_NUM -#define ENET_TXBUF_NUM 5U /*!< ethernet Tx DMA descriptor number */ -#endif - -#ifndef ENET_RXBUF_SIZE -#define ENET_RXBUF_SIZE ENET_MAX_FRAME_SIZE /*!< ethernet receive buffer size */ -#endif - -#ifndef ENET_TXBUF_SIZE -#define ENET_TXBUF_SIZE ENET_MAX_FRAME_SIZE /*!< ethernet transmit buffer size */ -#endif - -//#define SELECT_DESCRIPTORS_ENHANCED_MODE - -//#define USE_DELAY - -#ifndef _PHY_H_ -#define DP83848 0 -#define LAN8700 1 -#define PHY_TYPE DP83848 - -#define PHY_ADDRESS ((uint16_t)1U) /*!< phy address determined by the hardware */ - -/* PHY read write timeouts */ -#define PHY_READ_TO ((uint32_t)0x0004FFFFU) /*!< PHY read timeout */ -#define PHY_WRITE_TO ((uint32_t)0x0004FFFFU) /*!< PHY write timeout */ - -/* PHY delay */ -#define PHY_RESETDELAY ((uint32_t)0x008FFFFFU) /*!< PHY reset delay */ -#define PHY_CONFIGDELAY ((uint32_t)0x00FFFFFFU) /*!< PHY configure delay */ - -/* PHY register address */ -#define PHY_REG_BCR 0U /*!< tranceiver basic control register */ -#define PHY_REG_BSR 1U /*!< tranceiver basic status register */ - -/* PHY basic control register */ -#define PHY_RESET ((uint16_t)0x8000) /*!< PHY reset */ -#define PHY_LOOPBACK ((uint16_t)0x4000) /*!< enable phy loop-back mode */ -#define PHY_FULLDUPLEX_100M ((uint16_t)0x2100) /*!< configure speed to 100 Mbit/s and the full-duplex mode */ -#define PHY_HALFDUPLEX_100M ((uint16_t)0x2000) /*!< configure speed to 100 Mbit/s and the half-duplex mode */ -#define PHY_FULLDUPLEX_10M ((uint16_t)0x0100) /*!< configure speed to 10 Mbit/s and the full-duplex mode */ -#define PHY_HALFDUPLEX_10M ((uint16_t)0x0000) /*!< configure speed to 10 Mbit/s and the half-duplex mode */ -#define PHY_AUTONEGOTIATION ((uint16_t)0x1000) /*!< enable auto-negotiation function */ -#define PHY_RESTART_AUTONEGOTIATION ((uint16_t)0x0200) /*!< restart auto-negotiation function */ -#define PHY_POWERDOWN ((uint16_t)0x0800) /*!< enable the power down mode */ -#define PHY_ISOLATE ((uint16_t)0x0400) /*!< isolate PHY from MII */ - -/* PHY basic status register */ -#define PHY_AUTONEGO_COMPLETE ((uint16_t)0x0020) /*!< auto-negotioation process completed */ -#define PHY_LINKED_STATUS ((uint16_t)0x0004) /*!< valid link established */ -#define PHY_JABBER_DETECTION ((uint16_t)0x0002) /*!< jabber condition detected */ - -#if(PHY_TYPE == LAN8700) -#define PHY_SR 31U /*!< tranceiver status register */ -#define PHY_SPEED_STATUS ((uint16_t)0x0004) /*!< configured information of speed: 10Mbit/s */ -#define PHY_DUPLEX_STATUS ((uint16_t)0x0010) /*!< configured information of duplex: full-duplex */ -#elif(PHY_TYPE == DP83848) -#define PHY_SR 16U /*!< tranceiver status register */ -#define PHY_SPEED_STATUS ((uint16_t)0x0002) /*!< configured information of speed: 10Mbit/s */ -#define PHY_DUPLEX_STATUS ((uint16_t)0x0004) /*!< configured information of duplex: full-duplex */ -#endif /* PHY_TYPE */ - -#endif /* _PHY_H_ */ - - -/* ENET definitions */ -#define ENET ENET_BASE - -/* registers definitions */ -#define ENET_MAC_CFG REG32((ENET) + 0x0000U) /*!< ethernet MAC configuration register */ -#define ENET_MAC_FRMF REG32((ENET) + 0x0004U) /*!< ethernet MAC frame filter register */ -#define ENET_MAC_HLH REG32((ENET) + 0x0008U) /*!< ethernet MAC hash list high register */ -#define ENET_MAC_HLL REG32((ENET) + 0x000CU) /*!< ethernet MAC hash list low register */ -#define ENET_MAC_PHY_CTL REG32((ENET) + 0x0010U) /*!< ethernet MAC PHY control register */ -#define ENET_MAC_PHY_DATA REG32((ENET) + 0x0014U) /*!< ethernet MAC MII data register */ -#define ENET_MAC_FCTL REG32((ENET) + 0x0018U) /*!< ethernet MAC flow control register */ -#define ENET_MAC_VLT REG32((ENET) + 0x001CU) /*!< ethernet MAC VLAN tag register */ -#define ENET_MAC_RWFF REG32((ENET) + 0x0028U) /*!< ethernet MAC remote wakeup frame filter register */ -#define ENET_MAC_WUM REG32((ENET) + 0x002CU) /*!< ethernet MAC wakeup management register */ -#define ENET_MAC_DBG REG32((ENET) + 0x0034U) /*!< ethernet MAC debug register */ -#define ENET_MAC_INTF REG32((ENET) + 0x0038U) /*!< ethernet MAC interrupt flag register */ -#define ENET_MAC_INTMSK REG32((ENET) + 0x003CU) /*!< ethernet MAC interrupt mask register */ -#define ENET_MAC_ADDR0H REG32((ENET) + 0x0040U) /*!< ethernet MAC address 0 high register */ -#define ENET_MAC_ADDR0L REG32((ENET) + 0x0044U) /*!< ethernet MAC address 0 low register */ -#define ENET_MAC_ADDR1H REG32((ENET) + 0x0048U) /*!< ethernet MAC address 1 high register */ -#define ENET_MAC_ADDR1L REG32((ENET) + 0x004CU) /*!< ethernet MAC address 1 low register */ -#define ENET_MAC_ADDT2H REG32((ENET) + 0x0050U) /*!< ethernet MAC address 2 high register */ -#define ENET_MAC_ADDR2L REG32((ENET) + 0x0054U) /*!< ethernet MAC address 2 low register */ -#define ENET_MAC_ADDR3H REG32((ENET) + 0x0058U) /*!< ethernet MAC address 3 high register */ -#define ENET_MAC_ADDR3L REG32((ENET) + 0x005CU) /*!< ethernet MAC address 3 low register */ -#define ENET_MAC_FCTH REG32((ENET) + 0x1080U) /*!< ethernet MAC flow control threshold register */ - -#define ENET_MSC_CTL REG32((ENET) + 0x0100U) /*!< ethernet MSC control register */ -#define ENET_MSC_RINTF REG32((ENET) + 0x0104U) /*!< ethernet MSC receive interrupt flag register */ -#define ENET_MSC_TINTF REG32((ENET) + 0x0108U) /*!< ethernet MSC transmit interrupt flag register */ -#define ENET_MSC_RINTMSK REG32((ENET) + 0x010CU) /*!< ethernet MSC receive interrupt mask register */ -#define ENET_MSC_TINTMSK REG32((ENET) + 0x0110U) /*!< ethernet MSC transmit interrupt mask register */ -#define ENET_MSC_SCCNT REG32((ENET) + 0x014CU) /*!< ethernet MSC transmitted good frames after a single collision counter register */ -#define ENET_MSC_MSCCNT REG32((ENET) + 0x0150U) /*!< ethernet MSC transmitted good frames after more than a single collision counter register */ -#define ENET_MSC_TGFCNT REG32((ENET) + 0x0168U) /*!< ethernet MSC transmitted good frames counter register */ -#define ENET_MSC_RFCECNT REG32((ENET) + 0x0194U) /*!< ethernet MSC received frames with CRC error counter register */ -#define ENET_MSC_RFAECNT REG32((ENET) + 0x0198U) /*!< ethernet MSC received frames with alignment error counter register */ -#define ENET_MSC_RGUFCNT REG32((ENET) + 0x01C4U) /*!< ethernet MSC received good unicast frames counter register */ - -#define ENET_PTP_TSCTL REG32((ENET) + 0x0700U) /*!< ethernet PTP time stamp control register */ -#define ENET_PTP_SSINC REG32((ENET) + 0x0704U) /*!< ethernet PTP subsecond increment register */ -#define ENET_PTP_TSH REG32((ENET) + 0x0708U) /*!< ethernet PTP time stamp high register */ -#define ENET_PTP_TSL REG32((ENET) + 0x070CU) /*!< ethernet PTP time stamp low register */ -#define ENET_PTP_TSUH REG32((ENET) + 0x0710U) /*!< ethernet PTP time stamp update high register */ -#define ENET_PTP_TSUL REG32((ENET) + 0x0714U) /*!< ethernet PTP time stamp update low register */ -#define ENET_PTP_TSADDEND REG32((ENET) + 0x0718U) /*!< ethernet PTP time stamp addend register */ -#define ENET_PTP_ETH REG32((ENET) + 0x071CU) /*!< ethernet PTP expected time high register */ -#define ENET_PTP_ETL REG32((ENET) + 0x0720U) /*!< ethernet PTP expected time low register */ -#define ENET_PTP_TSF REG32((ENET) + 0x0728U) /*!< ethernet PTP time stamp flag register */ -#define ENET_PTP_PPSCTL REG32((ENET) + 0x072CU) /*!< ethernet PTP PPS control register */ - -#define ENET_DMA_BCTL REG32((ENET) + 0x1000U) /*!< ethernet DMA bus control register */ -#define ENET_DMA_TPEN REG32((ENET) + 0x1004U) /*!< ethernet DMA transmit poll enable register */ -#define ENET_DMA_RPEN REG32((ENET) + 0x1008U) /*!< ethernet DMA receive poll enable register */ -#define ENET_DMA_RDTADDR REG32((ENET) + 0x100CU) /*!< ethernet DMA receive descriptor table address register */ -#define ENET_DMA_TDTADDR REG32((ENET) + 0x1010U) /*!< ethernet DMA transmit descriptor table address register */ -#define ENET_DMA_STAT REG32((ENET) + 0x1014U) /*!< ethernet DMA status register */ -#define ENET_DMA_CTL REG32((ENET) + 0x1018U) /*!< ethernet DMA control register */ -#define ENET_DMA_INTEN REG32((ENET) + 0x101CU) /*!< ethernet DMA interrupt enable register */ -#define ENET_DMA_MFBOCNT REG32((ENET) + 0x1020U) /*!< ethernet DMA missed frame and buffer overflow counter register */ -#define ENET_DMA_RSWDC REG32((ENET) + 0x1024U) /*!< ethernet DMA receive state watchdog counter register */ -#define ENET_DMA_CTDADDR REG32((ENET) + 0x1048U) /*!< ethernet DMA current transmit descriptor address register */ -#define ENET_DMA_CRDADDR REG32((ENET) + 0x104CU) /*!< ethernet DMA current receive descriptor address register */ -#define ENET_DMA_CTBADDR REG32((ENET) + 0x1050U) /*!< ethernet DMA current transmit buffer address register */ -#define ENET_DMA_CRBADDR REG32((ENET) + 0x1054U) /*!< ethernet DMA current receive buffer address register */ - -/* bits definitions */ -/* ENET_MAC_CFG */ -#define ENET_MAC_CFG_REN BIT(2) /*!< receiver enable */ -#define ENET_MAC_CFG_TEN BIT(3) /*!< transmitter enable */ -#define ENET_MAC_CFG_DFC BIT(4) /*!< defferal check */ -#define ENET_MAC_CFG_BOL BITS(5,6) /*!< back-off limit */ -#define ENET_MAC_CFG_APCD BIT(7) /*!< automatic pad/CRC drop */ -#define ENET_MAC_CFG_RTD BIT(9) /*!< retry disable */ -#define ENET_MAC_CFG_IPFCO BIT(10) /*!< IP frame checksum offload */ -#define ENET_MAC_CFG_DPM BIT(11) /*!< duplex mode */ -#define ENET_MAC_CFG_LBM BIT(12) /*!< loopback mode */ -#define ENET_MAC_CFG_ROD BIT(13) /*!< receive own disable */ -#define ENET_MAC_CFG_SPD BIT(14) /*!< fast eneternet speed */ -#define ENET_MAC_CFG_CSD BIT(16) /*!< carrier sense disable */ -#define ENET_MAC_CFG_IGBS BITS(17,19) /*!< inter-frame gap bit selection */ -#define ENET_MAC_CFG_JBD BIT(22) /*!< jabber disable */ -#define ENET_MAC_CFG_WDD BIT(23) /*!< watchdog disable */ -#define ENET_MAC_CFG_TFCD BIT(25) /*!< type frame CRC dropping */ - -/* ENET_MAC_FRMF */ -#define ENET_MAC_FRMF_PM BIT(0) /*!< promiscuous mode */ -#define ENET_MAC_FRMF_HUF BIT(1) /*!< hash unicast filter */ -#define ENET_MAC_FRMF_HMF BIT(2) /*!< hash multicast filter */ -#define ENET_MAC_FRMF_DAIFLT BIT(3) /*!< destination address inverse filtering enable */ -#define ENET_MAC_FRMF_MFD BIT(4) /*!< multicast filter disable */ -#define ENET_MAC_FRMF_BFRMD BIT(5) /*!< broadcast frame disable */ -#define ENET_MAC_FRMF_PCFRM BITS(6,7) /*!< pass control frames */ -#define ENET_MAC_FRMF_SAIFLT BIT(8) /*!< source address inverse filtering */ -#define ENET_MAC_FRMF_SAFLT BIT(9) /*!< source address filter */ -#define ENET_MAC_FRMF_HPFLT BIT(10) /*!< hash or perfect filter */ -#define ENET_MAC_FRMF_FAR BIT(31) /*!< frames all receive */ - -/* ENET_MAC_HLH */ -#define ENET_MAC_HLH_HLH BITS(0,31) /*!< hash list high */ - -/* ENET_MAC_HLL */ -#define ENET_MAC_HLL_HLL BITS(0,31) /*!< hash list low */ - -/* ENET_MAC_PHY_CTL */ -#define ENET_MAC_PHY_CTL_PB BIT(0) /*!< PHY busy */ -#define ENET_MAC_PHY_CTL_PW BIT(1) /*!< PHY write */ -#define ENET_MAC_PHY_CTL_CLR BITS(2,4) /*!< clock range */ -#define ENET_MAC_PHY_CTL_PR BITS(6,10) /*!< PHY register */ -#define ENET_MAC_PHY_CTL_PA BITS(11,15) /*!< PHY address */ - -/* ENET_MAC_PHY_DATA */ -#define ENET_MAC_PHY_DATA_PD BITS(0,15) /*!< PHY data */ - -/* ENET_MAC_FCTL */ -#define ENET_MAC_FCTL_FLCBBKPA BIT(0) /*!< flow control busy(in full duplex mode)/backpressure activate(in half duplex mode) */ -#define ENET_MAC_FCTL_TFCEN BIT(1) /*!< transmit flow control enable */ -#define ENET_MAC_FCTL_RFCEN BIT(2) /*!< receive flow control enable */ -#define ENET_MAC_FCTL_UPFDT BIT(3) /*!< unicast pause frame detect */ -#define ENET_MAC_FCTL_PLTS BITS(4,5) /*!< pause low threshold */ -#define ENET_MAC_FCTL_DZQP BIT(7) /*!< disable zero-quanta pause */ -#define ENET_MAC_FCTL_PTM BITS(16,31) /*!< pause time */ - -/* ENET_MAC_VLT */ -#define ENET_MAC_VLT_VLTI BITS(0,15) /*!< VLAN tag identifier(for receive frames) */ -#define ENET_MAC_VLT_VLTC BIT(16) /*!< 12-bit VLAN tag comparison */ - -/* ENET_MAC_RWFF */ -#define ENET_MAC_RWFF_DATA BITS(0,31) /*!< wakeup frame filter register data */ - -/* ENET_MAC_WUM */ -#define ENET_MAC_WUM_PWD BIT(0) /*!< power down */ -#define ENET_MAC_WUM_MPEN BIT(1) /*!< magic packet enable */ -#define ENET_MAC_WUM_WFEN BIT(2) /*!< wakeup frame enable */ -#define ENET_MAC_WUM_MPKR BIT(5) /*!< magic packet received */ -#define ENET_MAC_WUM_WUFR BIT(6) /*!< wakeup frame received */ -#define ENET_MAC_WUM_GU BIT(9) /*!< global unicast */ -#define ENET_MAC_WUM_WUFFRPR BIT(31) /*!< wakeup frame filter register pointer reset */ - -/* ENET_MAC_DBG */ -#define ENET_MAC_DBG_MRNI BIT(0) /*!< MAC receive state not idle */ -#define ENET_MAC_DBG_RXAFS BITS(1,2) /*!< Rx asynchronous FIFO status */ -#define ENET_MAC_DBG_RXFW BIT(4) /*!< RxFIFO is writing */ -#define ENET_MAC_DBG_RXFRS BITS(5,6) /*!< RxFIFO read operation status */ -#define ENET_MAC_DBG_RXFS BITS(8,9) /*!< RxFIFO state */ -#define ENET_MAC_DBG_MTNI BIT(16) /*!< MAC transmit state not idle */ -#define ENET_MAC_DBG_SOMT BITS(17,18) /*!< status of mac transmitter */ -#define ENET_MAC_DBG_PCS BIT(19) /*!< pause condition status */ -#define ENET_MAC_DBG_TXFRS BITS(20,21) /*!< TxFIFO read operation status */ -#define ENET_MAC_DBG_TXFW BIT(22) /*!< TxFIFO is writing */ -#define ENET_MAC_DBG_TXFNE BIT(24) /*!< TxFIFO not empty flag */ -#define ENET_MAC_DBG_TXFF BIT(25) /*!< TxFIFO full flag */ - -/* ENET_MAC_INTF */ -#define ENET_MAC_INTF_WUM BIT(3) /*!< WUM status */ -#define ENET_MAC_INTF_MSC BIT(4) /*!< MSC status */ -#define ENET_MAC_INTF_MSCR BIT(5) /*!< MSC receive status */ -#define ENET_MAC_INTF_MSCT BIT(6) /*!< MSC transmit status */ -#define ENET_MAC_INTF_TMST BIT(9) /*!< timestamp trigger status */ - -/* ENET_MAC_INTMSK */ -#define ENET_MAC_INTMSK_WUMIM BIT(3) /*!< WUM interrupt mask */ -#define ENET_MAC_INTMSK_TMSTIM BIT(9) /*!< timestamp trigger interrupt mask */ - -/* ENET_MAC_ADDR0H */ -#define ENET_MAC_ADDR0H_ADDR0H BITS(0,15) /*!< MAC address0 high */ -#define ENET_MAC_ADDR0H_MO BIT(31) /*!< always read 1 and must be kept */ - -/* ENET_MAC_ADDR0L */ -#define ENET_MAC_ADDR0L_ADDR0L BITS(0,31) /*!< MAC address0 low */ - -/* ENET_MAC_ADDR1H */ -#define ENET_MAC_ADDR1H_ADDR1H BITS(0,15) /*!< MAC address1 high */ -#define ENET_MAC_ADDR1H_MB BITS(24,29) /*!< mask byte */ -#define ENET_MAC_ADDR1H_SAF BIT(30) /*!< source address filter */ -#define ENET_MAC_ADDR1H_AFE BIT(31) /*!< address filter enable */ - -/* ENET_MAC_ADDR1L */ -#define ENET_MAC_ADDR1L_ADDR1L BITS(0,31) /*!< MAC address1 low */ - -/* ENET_MAC_ADDR2H */ -#define ENET_MAC_ADDR2H_ADDR2H BITS(0,15) /*!< MAC address2 high */ -#define ENET_MAC_ADDR2H_MB BITS(24,29) /*!< mask byte */ -#define ENET_MAC_ADDR2H_SAF BIT(30) /*!< source address filter */ -#define ENET_MAC_ADDR2H_AFE BIT(31) /*!< address filter enable */ - -/* ENET_MAC_ADDR2L */ -#define ENET_MAC_ADDR2L_ADDR2L BITS(0,31) /*!< MAC address2 low */ - -/* ENET_MAC_ADDR3H */ -#define ENET_MAC_ADDR3H_ADDR3H BITS(0,15) /*!< MAC address3 high */ -#define ENET_MAC_ADDR3H_MB BITS(24,29) /*!< mask byte */ -#define ENET_MAC_ADDR3H_SAF BIT(30) /*!< source address filter */ -#define ENET_MAC_ADDR3H_AFE BIT(31) /*!< address filter enable */ - -/* ENET_MAC_ADDR3L */ -#define ENET_MAC_ADDR3L_ADDR3L BITS(0,31) /*!< MAC address3 low */ - -/* ENET_MAC_FCTH */ -#define ENET_MAC_FCTH_RFA BITS(0,2) /*!< threshold of active flow control */ -#define ENET_MAC_FCTH_RFD BITS(4,6) /*!< threshold of deactive flow control */ - -/* ENET_MSC_CTL */ -#define ENET_MSC_CTL_CTR BIT(0) /*!< counter reset */ -#define ENET_MSC_CTL_CTSR BIT(1) /*!< counter stop rollover */ -#define ENET_MSC_CTL_RTOR BIT(2) /*!< reset on read */ -#define ENET_MSC_CTL_MCFZ BIT(3) /*!< MSC counter freeze */ -#define ENET_MSC_CTL_PMC BIT(4) /*!< preset MSC counter */ -#define ENET_MSC_CTL_AFHPM BIT(5) /*!< almost full or half preset mode */ - -/* ENET_MSC_RINTF */ -#define ENET_MSC_RINTF_RFCE BIT(5) /*!< received frames CRC error */ -#define ENET_MSC_RINTF_RFAE BIT(6) /*!< received frames alignment error */ -#define ENET_MSC_RINTF_RGUF BIT(17) /*!< receive good unicast frames */ - -/* ENET_MSC_TINTF */ -#define ENET_MSC_TINTF_TGFSC BIT(14) /*!< transmitted good frames single collision */ -#define ENET_MSC_TINTF_TGFMSC BIT(15) /*!< transmitted good frames more single collision */ -#define ENET_MSC_TINTF_TGF BIT(21) /*!< transmitted good frames */ - -/* ENET_MSC_RINTMSK */ -#define ENET_MSC_RINTMSK_RFCEIM BIT(5) /*!< received frame CRC error interrupt mask */ -#define ENET_MSC_RINTMSK_RFAEIM BIT(6) /*!< received frames alignment error interrupt mask */ -#define ENET_MSC_RINTMSK_RGUFIM BIT(17) /*!< received good unicast frames interrupt mask */ - -/* ENET_MSC_TINTMSK */ -#define ENET_MSC_TINTMSK_TGFSCIM BIT(14) /*!< transmitted good frames single collision interrupt mask */ -#define ENET_MSC_TINTMSK_TGFMSCIM BIT(15) /*!< transmitted good frames more single collision interrupt mask */ -#define ENET_MSC_TINTMSK_TGFIM BIT(21) /*!< transmitted good frames interrupt mask */ - -/* ENET_MSC_SCCNT */ -#define ENET_MSC_SCCNT_SCC BITS(0,31) /*!< transmitted good frames single collision counter */ - -/* ENET_MSC_MSCCNT */ -#define ENET_MSC_MSCCNT_MSCC BITS(0,31) /*!< transmitted good frames more one single collision counter */ - -/* ENET_MSC_TGFCNT */ -#define ENET_MSC_TGFCNT_TGF BITS(0,31) /*!< transmitted good frames counter */ - -/* ENET_MSC_RFCECNT */ -#define ENET_MSC_RFCECNT_RFCER BITS(0,31) /*!< received frames with CRC error counter */ - -/* ENET_MSC_RFAECNT */ -#define ENET_MSC_RFAECNT_RFAER BITS(0,31) /*!< received frames alignment error counter */ - -/* ENET_MSC_RGUFCNT */ -#define ENET_MSC_RGUFCNT_RGUF BITS(0,31) /*!< received good unicast frames counter */ - -/* ENET_PTP_TSCTL */ -#define PTP_TSCTL_CKNT(regval) (BITS(16,17) & ((uint32_t)(regval) << 16)) /*!< write value to ENET_PTP_TSCTL_CKNT bit field */ - -#define ENET_PTP_TSCTL_TMSEN BIT(0) /*!< timestamp enable */ -#define ENET_PTP_TSCTL_TMSFCU BIT(1) /*!< timestamp fine or coarse update */ -#define ENET_PTP_TSCTL_TMSSTI BIT(2) /*!< timestamp system time initialize */ -#define ENET_PTP_TSCTL_TMSSTU BIT(3) /*!< timestamp system time update */ -#define ENET_PTP_TSCTL_TMSITEN BIT(4) /*!< timestamp interrupt trigger enable */ -#define ENET_PTP_TSCTL_TMSARU BIT(5) /*!< timestamp addend register update */ -#define ENET_PTP_TSCTL_ARFSEN BIT(8) /*!< all received frames snapshot enable */ -#define ENET_PTP_TSCTL_SCROM BIT(9) /*!< subsecond counter rollover mode */ -#define ENET_PTP_TSCTL_PFSV BIT(10) /*!< PTP frame snooping version */ -#define ENET_PTP_TSCTL_ESEN BIT(11) /*!< received Ethernet snapshot enable */ -#define ENET_PTP_TSCTL_IP6SEN BIT(12) /*!< received IPv6 snapshot enable */ -#define ENET_PTP_TSCTL_IP4SEN BIT(13) /*!< received IPv4 snapshot enable */ -#define ENET_PTP_TSCTL_ETMSEN BIT(14) /*!< received event type message snapshot enable */ -#define ENET_PTP_TSCTL_MNMSEN BIT(15) /*!< received master node message snapshot enable */ -#define ENET_PTP_TSCTL_CKNT BITS(16,17) /*!< clock node type for time stamp */ -#define ENET_PTP_TSCTL_MAFEN BIT(18) /*!< MAC address filter enable for PTP frame */ - -/* ENET_PTP_SSINC */ -#define ENET_PTP_SSINC_STMSSI BITS(0,7) /*!< system time subsecond increment */ - -/* ENET_PTP_TSH */ -#define ENET_PTP_TSH_STMS BITS(0,31) /*!< system time second */ - -/* ENET_PTP_TSL */ -#define ENET_PTP_TSL_STMSS BITS(0,30) /*!< system time subseconds */ -#define ENET_PTP_TSL_STS BIT(31) /*!< system time sign */ - -/* ENET_PTP_TSUH */ -#define ENET_PTP_TSUH_TMSUS BITS(0,31) /*!< timestamp update seconds */ - -/* ENET_PTP_TSUL */ -#define ENET_PTP_TSUL_TMSUSS BITS(0,30) /*!< timestamp update subseconds */ -#define ENET_PTP_TSUL_TMSUPNS BIT(31) /*!< timestamp update positive or negative sign */ - -/* ENET_PTP_TSADDAND */ -#define ENET_PTP_TSADDAND_TMSA BITS(0,31) /*!< timestamp addend */ - -/* ENET_PTP_ETH */ -#define ENET_PTP_ETH_ETSH BITS(0,31) /*!< expected time high */ - -/* ENET_PTP_ETL */ -#define ENET_PTP_ETL_ETSL BITS(0,31) /*!< expected time low */ - -/* ENET_PTP_TSF */ -#define ENET_PTP_TSF_TSSCO BIT(0) /*!< timestamp second counter overflow */ -#define ENET_PTP_TSF_TTM BIT(1) /*!< target time match */ - -/* ENET_PTP_PPSCTL */ -#define ENET_PTP_PPSCTL_PPSOFC BITS(0,3) /*!< PPS output frequency configure */ - -/* ENET_DMA_BCTL */ -#define ENET_DMA_BCTL_SWR BIT(0) /*!< software reset */ -#define ENET_DMA_BCTL_DAB BIT(1) /*!< DMA arbitration */ -#define ENET_DMA_BCTL_DPSL BITS(2,6) /*!< descriptor skip length */ -#define ENET_DMA_BCTL_DFM BIT(7) /*!< descriptor format mode */ -#define ENET_DMA_BCTL_PGBL BITS(8,13) /*!< programmable burst length */ -#define ENET_DMA_BCTL_RTPR BITS(14,15) /*!< RxDMA and TxDMA transfer priority ratio */ -#define ENET_DMA_BCTL_FB BIT(16) /*!< fixed Burst */ -#define ENET_DMA_BCTL_RXDP BITS(17,22) /*!< RxDMA PGBL */ -#define ENET_DMA_BCTL_UIP BIT(23) /*!< use independent PGBL */ -#define ENET_DMA_BCTL_FPBL BIT(24) /*!< four times PGBL mode */ -#define ENET_DMA_BCTL_AA BIT(25) /*!< address-aligned */ -#define ENET_DMA_BCTL_MB BIT(26) /*!< mixed burst */ - -/* ENET_DMA_TPEN */ -#define ENET_DMA_TPEN_TPE BITS(0,31) /*!< transmit poll enable */ - -/* ENET_DMA_RPEN */ -#define ENET_DMA_RPEN_RPE BITS(0,31) /*!< receive poll enable */ - -/* ENET_DMA_RDTADDR */ -#define ENET_DMA_RDTADDR_SRT BITS(0,31) /*!< start address of receive table */ - -/* ENET_DMA_TDTADDR */ -#define ENET_DMA_TDTADDR_STT BITS(0,31) /*!< start address of transmit table */ - -/* ENET_DMA_STAT */ -#define ENET_DMA_STAT_TS BIT(0) /*!< transmit status */ -#define ENET_DMA_STAT_TPS BIT(1) /*!< transmit process stopped status */ -#define ENET_DMA_STAT_TBU BIT(2) /*!< transmit buffer unavailable status */ -#define ENET_DMA_STAT_TJT BIT(3) /*!< transmit jabber timeout status */ -#define ENET_DMA_STAT_RO BIT(4) /*!< receive overflow status */ -#define ENET_DMA_STAT_TU BIT(5) /*!< transmit underflow status */ -#define ENET_DMA_STAT_RS BIT(6) /*!< receive status */ -#define ENET_DMA_STAT_RBU BIT(7) /*!< receive buffer unavailable status */ -#define ENET_DMA_STAT_RPS BIT(8) /*!< receive process stopped status */ -#define ENET_DMA_STAT_RWT BIT(9) /*!< receive watchdog timeout status */ -#define ENET_DMA_STAT_ET BIT(10) /*!< early transmit status */ -#define ENET_DMA_STAT_FBE BIT(13) /*!< fatal bus error status */ -#define ENET_DMA_STAT_ER BIT(14) /*!< early receive status */ -#define ENET_DMA_STAT_AI BIT(15) /*!< abnormal interrupt summary */ -#define ENET_DMA_STAT_NI BIT(16) /*!< normal interrupt summary */ -#define ENET_DMA_STAT_RP BITS(17,19) /*!< receive process state */ -#define ENET_DMA_STAT_TP BITS(20,22) /*!< transmit process state */ -#define ENET_DMA_STAT_EB BITS(23,25) /*!< error bits status */ -#define ENET_DMA_STAT_MSC BIT(27) /*!< MSC status */ -#define ENET_DMA_STAT_WUM BIT(28) /*!< WUM status */ -#define ENET_DMA_STAT_TST BIT(29) /*!< timestamp trigger status */ - -/* ENET_DMA_CTL */ -#define ENET_DMA_CTL_SRE BIT(1) /*!< start/stop receive enable */ -#define ENET_DMA_CTL_OSF BIT(2) /*!< operate on second frame */ -#define ENET_DMA_CTL_RTHC BITS(3,4) /*!< receive threshold control */ -#define ENET_DMA_CTL_FUF BIT(6) /*!< forward undersized good frames */ -#define ENET_DMA_CTL_FERF BIT(7) /*!< forward error frames */ -#define ENET_DMA_CTL_STE BIT(13) /*!< start/stop transmission enable */ -#define ENET_DMA_CTL_TTHC BITS(14,16) /*!< transmit threshold control */ -#define ENET_DMA_CTL_FTF BIT(20) /*!< flush transmit FIFO */ -#define ENET_DMA_CTL_TSFD BIT(21) /*!< transmit store-and-forward */ -#define ENET_DMA_CTL_DAFRF BIT(24) /*!< disable flushing of received frames */ -#define ENET_DMA_CTL_RSFD BIT(25) /*!< receive store-and-forward */ -#define ENET_DMA_CTL_DTCERFD BIT(26) /*!< dropping of TCP/IP checksum error frames disable */ - -/* ENET_DMA_INTEN */ -#define ENET_DMA_INTEN_TIE BIT(0) /*!< transmit interrupt enable */ -#define ENET_DMA_INTEN_TPSIE BIT(1) /*!< transmit process stopped interrupt enable */ -#define ENET_DMA_INTEN_TBUIE BIT(2) /*!< transmit buffer unavailable interrupt enable */ -#define ENET_DMA_INTEN_TJTIE BIT(3) /*!< transmit jabber timeout interrupt enable */ -#define ENET_DMA_INTEN_ROIE BIT(4) /*!< receive overflow interrupt enable */ -#define ENET_DMA_INTEN_TUIE BIT(5) /*!< transmit underflow interrupt enable */ -#define ENET_DMA_INTEN_RIE BIT(6) /*!< receive interrupt enable */ -#define ENET_DMA_INTEN_RBUIE BIT(7) /*!< receive buffer unavailable interrupt enable */ -#define ENET_DMA_INTEN_RPSIE BIT(8) /*!< receive process stopped interrupt enable */ -#define ENET_DMA_INTEN_RWTIE BIT(9) /*!< receive watchdog timeout interrupt enable */ -#define ENET_DMA_INTEN_ETIE BIT(10) /*!< early transmit interrupt enable */ -#define ENET_DMA_INTEN_FBEIE BIT(13) /*!< fatal bus error interrupt enable */ -#define ENET_DMA_INTEN_ERIE BIT(14) /*!< early receive interrupt enable */ -#define ENET_DMA_INTEN_AIE BIT(15) /*!< abnormal interrupt summary enable */ -#define ENET_DMA_INTEN_NIE BIT(16) /*!< normal interrupt summary enable */ - -/* ENET_DMA_MFBOCNT */ -#define ENET_DMA_MFBOCNT_MSFC BITS(0,15) /*!< missed frames by the controller */ -#define ENET_DMA_MFBOCNT_MSFA BITS(17,27) /*!< missed frames by the application */ - -/* ENET_DMA_RSWDC */ -#define ENET_DMA_RSWDC_WDCFRS BITS(0,7) /*!< watchdog counter for receive status (RS) */ - -/* ENET_DMA_CTDADDR */ -#define ENET_DMA_CTDADDR_TDAP BITS(0,31) /*!< transmit descriptor address pointer */ - -/* ENET_DMA_CRDADDR */ -#define ENET_DMA_CRDADDR_RDAP BITS(0,31) /*!< receive descriptor address pointer */ - -/* ENET_DMA_CTBADDR */ -#define ENET_DMA_CTBADDR_TBAP BITS(0,31) /*!< transmit buffer address pointer */ - -/* ENET_DMA_CRBADDR */ -#define ENET_DMA_CRBADDR_RBAP BITS(0,31) /*!< receive buffer address pointer */ - -/* ENET DMA Tx descriptor TDES0 */ -#define ENET_TDES0_DB BIT(0) /*!< deferred */ -#define ENET_TDES0_UFE BIT(1) /*!< underflow error */ -#define ENET_TDES0_EXD BIT(2) /*!< excessive deferral */ -#define ENET_TDES0_COCNT BITS(3,6) /*!< collision count */ -#define ENET_TDES0_VFRM BIT(7) /*!< VLAN frame */ -#define ENET_TDES0_ECO BIT(8) /*!< excessive collision */ -#define ENET_TDES0_LCO BIT(9) /*!< late collision */ -#define ENET_TDES0_NCA BIT(10) /*!< no carrier */ -#define ENET_TDES0_LCA BIT(11) /*!< loss of carrier */ -#define ENET_TDES0_IPPE BIT(12) /*!< IP payload error */ -#define ENET_TDES0_FRMF BIT(13) /*!< frame flushed */ -#define ENET_TDES0_JT BIT(14) /*!< jabber timeout */ -#define ENET_TDES0_ES BIT(15) /*!< error summary */ -#define ENET_TDES0_IPHE BIT(16) /*!< IP header error */ -#define ENET_TDES0_TTMSS BIT(17) /*!< transmit timestamp status */ -#define ENET_TDES0_TCHM BIT(20) /*!< the second address chained mode */ -#define ENET_TDES0_TERM BIT(21) /*!< transmit end of ring mode*/ -#define ENET_TDES0_CM BITS(22,23) /*!< checksum mode */ -#define ENET_TDES0_TTSEN BIT(25) /*!< transmit timestamp function enable */ -#define ENET_TDES0_DPAD BIT(26) /*!< disable adding pad */ -#define ENET_TDES0_DCRC BIT(27) /*!< disable CRC */ -#define ENET_TDES0_FSG BIT(28) /*!< first segment */ -#define ENET_TDES0_LSG BIT(29) /*!< last segment */ -#define ENET_TDES0_INTC BIT(30) /*!< interrupt on completion */ -#define ENET_TDES0_DAV BIT(31) /*!< DAV bit */ - -/* ENET DMA Tx descriptor TDES1 */ -#define ENET_TDES1_TB1S BITS(0,12) /*!< transmit buffer 1 size */ -#define ENET_TDES1_TB2S BITS(16,28) /*!< transmit buffer 2 size */ - -/* ENET DMA Tx descriptor TDES2 */ -#define ENET_TDES2_TB1AP BITS(0,31) /*!< transmit buffer 1 address pointer/transmit frame timestamp low 32-bit value */ - -/* ENET DMA Tx descriptor TDES3 */ -#define ENET_TDES3_TB2AP BITS(0,31) /*!< transmit buffer 2 address pointer (or next descriptor address) / transmit frame timestamp high 32-bit value */ - -#ifdef SELECT_DESCRIPTORS_ENHANCED_MODE -/* ENET DMA Tx descriptor TDES6 */ -#define ENET_TDES6_TTSL BITS(0,31) /*!< transmit frame timestamp low 32-bit value */ - -/* ENET DMA Tx descriptor TDES7 */ -#define ENET_TDES7_TTSH BITS(0,31) /*!< transmit frame timestamp high 32-bit value */ -#endif /* SELECT_DESCRIPTORS_ENHANCED_MODE */ - -/* ENET DMA Rx descriptor RDES0 */ -#define ENET_RDES0_PCERR BIT(0) /*!< payload checksum error */ -#define ENET_RDES0_EXSV BIT(0) /*!< extended status valid */ -#define ENET_RDES0_CERR BIT(1) /*!< CRC error */ -#define ENET_RDES0_DBERR BIT(2) /*!< dribble bit error */ -#define ENET_RDES0_RERR BIT(3) /*!< receive error */ -#define ENET_RDES0_RWDT BIT(4) /*!< receive watchdog timeout */ -#define ENET_RDES0_FRMT BIT(5) /*!< frame type */ -#define ENET_RDES0_LCO BIT(6) /*!< late collision */ -#define ENET_RDES0_IPHERR BIT(7) /*!< IP frame header error */ -#define ENET_RDES0_TSV BIT(7) /*!< timestamp valid */ -#define ENET_RDES0_LDES BIT(8) /*!< last descriptor */ -#define ENET_RDES0_FDES BIT(9) /*!< first descriptor */ -#define ENET_RDES0_VTAG BIT(10) /*!< VLAN tag */ -#define ENET_RDES0_OERR BIT(11) /*!< overflow Error */ -#define ENET_RDES0_LERR BIT(12) /*!< length error */ -#define ENET_RDES0_SAFF BIT(13) /*!< SA filter fail */ -#define ENET_RDES0_DERR BIT(14) /*!< descriptor error */ -#define ENET_RDES0_ERRS BIT(15) /*!< error summary */ -#define ENET_RDES0_FRML BITS(16,29) /*!< frame length */ -#define ENET_RDES0_DAFF BIT(30) /*!< destination address filter fail */ -#define ENET_RDES0_DAV BIT(31) /*!< descriptor available */ - -/* ENET DMA Rx descriptor RDES1 */ -#define ENET_RDES1_RB1S BITS(0,12) /*!< receive buffer 1 size */ -#define ENET_RDES1_RCHM BIT(14) /*!< receive chained mode for second address */ -#define ENET_RDES1_RERM BIT(15) /*!< receive end of ring mode*/ -#define ENET_RDES1_RB2S BITS(16,28) /*!< receive buffer 2 size */ -#define ENET_RDES1_DINTC BIT(31) /*!< disable interrupt on completion */ - -/* ENET DMA Rx descriptor RDES2 */ -#define ENET_RDES2_RB1AP BITS(0,31) /*!< receive buffer 1 address pointer / receive frame timestamp low 32-bit */ - -/* ENET DMA Rx descriptor RDES3 */ -#define ENET_RDES3_RB2AP BITS(0,31) /*!< receive buffer 2 address pointer (next descriptor address)/receive frame timestamp high 32-bit value */ - -#ifdef SELECT_DESCRIPTORS_ENHANCED_MODE -/* ENET DMA Rx descriptor RDES4 */ -#define ENET_RDES4_IPPLDT BITS(0,2) /*!< IP frame payload type */ -#define ENET_RDES4_IPHERR BIT(3) /*!< IP frame header error */ -#define ENET_RDES4_IPPLDERR BIT(4) /*!< IP frame payload error */ -#define ENET_RDES4_IPCKSB BIT(5) /*!< IP frame checksum bypassed */ -#define ENET_RDES4_IPF4 BIT(6) /*!< IP frame in version 4 */ -#define ENET_RDES4_IPF6 BIT(7) /*!< IP frame in version 6 */ -#define ENET_RDES4_PTPMT BITS(8,11) /*!< PTP message type */ -#define ENET_RDES4_PTPOEF BIT(12) /*!< PTP on ethernet frame */ -#define ENET_RDES4_PTPVF BIT(13) /*!< PTP version format */ - -/* ENET DMA Rx descriptor RDES6 */ -#define ENET_RDES6_RTSL BITS(0,31) /*!< receive frame timestamp low 32-bit value */ - -/* ENET DMA Rx descriptor RDES7 */ -#define ENET_RDES7_RTSH BITS(0,31) /*!< receive frame timestamp high 32-bit value */ -#endif /* SELECT_DESCRIPTORS_ENHANCED_MODE */ - -/* constants definitions */ -/* define bit position and its register index offset */ -#define ENET_REGIDX_BIT(regidx, bitpos) (((uint32_t)(regidx) << 6) | (uint32_t)(bitpos)) -#define ENET_REG_VAL(periph) (REG32(ENET + ((uint32_t)(periph) >> 6))) -#define ENET_BIT_POS(val) ((uint32_t)(val) & 0x1FU) - -/* ENET clock range judgement */ -#define ENET_RANGE(hclk, n, m) (((hclk) >= (n))&&((hclk) < (m))) - -/* define MAC address configuration and reference address */ -#define ENET_SET_MACADDRH(p) (((uint32_t)(p)[5] << 8) | (uint32_t)(p)[4]) -#define ENET_SET_MACADDRL(p) (((uint32_t)(p)[3] << 24) | ((uint32_t)(p)[2] << 16) | ((uint32_t)(p)[1] << 8) | (uint32_t)(p)[0]) -#define ENET_ADDRH_BASE ((ENET) + 0x40U) -#define ENET_ADDRL_BASE ((ENET) + 0x44U) -#define ENET_GET_MACADDR(offset, n) ((uint8_t)((REG32((ENET_ADDRL_BASE + (offset)) - (((n) / 4U) * 4U)) >> (8U * ((n) % 4U))) & 0xFFU)) - -/* register offset */ -#define MAC_FCTL_REG_OFFSET ((uint16_t)0x0018U) /*!< MAC flow control register offset */ -#define MAC_WUM_REG_OFFSET ((uint16_t)0x002CU) /*!< MAC wakeup management register offset */ -#define MAC_INTF_REG_OFFSET ((uint16_t)0x0038U) /*!< MAC interrupt flag register offset */ -#define MAC_INTMSK_REG_OFFSET ((uint16_t)0x003CU) /*!< MAC interrupt mask register offset */ - -#define MSC_RINTF_REG_OFFSET ((uint16_t)0x0104U) /*!< MSC receive interrupt flag register offset */ -#define MSC_TINTF_REG_OFFSET ((uint16_t)0x0108U) /*!< MSC transmit interrupt flag register offset */ -#define MSC_RINTMSK_REG_OFFSET ((uint16_t)0x010CU) /*!< MSC receive interrupt mask register offset */ -#define MSC_TINTMSK_REG_OFFSET ((uint16_t)0x0110U) /*!< MSC transmit interrupt mask register offset */ -#define MSC_SCCNT_REG_OFFSET ((uint16_t)0x014CU) /*!< MSC transmitted good frames after a single collision counter register offset */ -#define MSC_MSCCNT_REG_OFFSET ((uint16_t)0x0150U) /*!< MSC transmitted good frames after more than a single collision counter register offset */ -#define MSC_TGFCNT_REG_OFFSET ((uint16_t)0x0168U) /*!< MSC transmitted good frames counter register offset */ -#define MSC_RFCECNT_REG_OFFSET ((uint16_t)0x0194U) /*!< MSC received frames with CRC error counter register offset */ -#define MSC_RFAECNT_REG_OFFSET ((uint16_t)0x0198U) /*!< MSC received frames with alignment error counter register offset */ -#define MSC_RGUFCNT_REG_OFFSET ((uint16_t)0x01C4U) /*!< MSC received good unicast frames counter register offset */ - -#define PTP_TSF_REG_OFFSET ((uint16_t)0x0728U) /*!< PTP time stamp flag register offset */ - -#define DMA_STAT_REG_OFFSET ((uint16_t)0x1014U) /*!< DMA status register offset */ -#define DMA_INTEN_REG_OFFSET ((uint16_t)0x101CU) /*!< DMA interrupt enable register offset */ -#define DMA_TDTADDR_REG_OFFSET ((uint16_t)0x1010U) /*!< DMA transmit descriptor table address register offset */ -#define DMA_CTDADDR_REG_OFFSET ((uint16_t)0x1048U) /*!< DMA current transmit descriptor address register */ -#define DMA_CTBADDR_REG_OFFSET ((uint16_t)0x1050U) /*!< DMA current transmit buffer address register */ -#define DMA_RDTADDR_REG_OFFSET ((uint16_t)0x100CU) /*!< DMA receive descriptor table address register */ -#define DMA_CRDADDR_REG_OFFSET ((uint16_t)0x104CU) /*!< DMA current receive descriptor address register */ -#define DMA_CRBADDR_REG_OFFSET ((uint16_t)0x1054U) /*!< DMA current receive buffer address register */ - -/* ENET status flag get */ -typedef enum -{ - /* ENET_MAC_WUM register */ - ENET_MAC_FLAG_MPKR = ENET_REGIDX_BIT(MAC_WUM_REG_OFFSET, 5U), /*!< magic packet received flag */ - ENET_MAC_FLAG_WUFR = ENET_REGIDX_BIT(MAC_WUM_REG_OFFSET, 6U), /*!< wakeup frame received flag */ - /* ENET_MAC_FCTL register */ - ENET_MAC_FLAG_FLOWCONTROL = ENET_REGIDX_BIT(MAC_FCTL_REG_OFFSET, 0U), /*!< flow control status flag */ - /* ENET_MAC_INTF register */ - ENET_MAC_FLAG_WUM = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 3U), /*!< WUM status flag */ - ENET_MAC_FLAG_MSC = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 4U), /*!< MSC status flag */ - ENET_MAC_FLAG_MSCR = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 5U), /*!< MSC receive status flag */ - ENET_MAC_FLAG_MSCT = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 6U), /*!< MSC transmit status flag */ - ENET_MAC_FLAG_TMST = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 9U), /*!< timestamp trigger status flag */ - /* ENET_PTP_TSF register */ - ENET_PTP_FLAG_TSSCO = ENET_REGIDX_BIT(PTP_TSF_REG_OFFSET, 0U), /*!< timestamp second counter overflow flag */ - ENET_PTP_FLAG_TTM = ENET_REGIDX_BIT(PTP_TSF_REG_OFFSET, 1U), /*!< target time match flag */ - /* ENET_MSC_RINTF register */ - ENET_MSC_FLAG_RFCE = ENET_REGIDX_BIT(MSC_RINTF_REG_OFFSET, 5U), /*!< received frames CRC error flag */ - ENET_MSC_FLAG_RFAE = ENET_REGIDX_BIT(MSC_RINTF_REG_OFFSET, 6U), /*!< received frames alignment error flag */ - ENET_MSC_FLAG_RGUF = ENET_REGIDX_BIT(MSC_RINTF_REG_OFFSET, 17U), /*!< received good unicast frames flag */ - /* ENET_MSC_TINTF register */ - ENET_MSC_FLAG_TGFSC = ENET_REGIDX_BIT(MSC_TINTF_REG_OFFSET, 14U), /*!< transmitted good frames single collision flag */ - ENET_MSC_FLAG_TGFMSC = ENET_REGIDX_BIT(MSC_TINTF_REG_OFFSET, 15U), /*!< transmitted good frames more single collision flag */ - ENET_MSC_FLAG_TGF = ENET_REGIDX_BIT(MSC_TINTF_REG_OFFSET, 21U), /*!< transmitted good frames flag */ - /* ENET_DMA_STAT register */ - ENET_DMA_FLAG_TS = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 0U), /*!< transmit status flag */ - ENET_DMA_FLAG_TPS = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 1U), /*!< transmit process stopped status flag */ - ENET_DMA_FLAG_TBU = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 2U), /*!< transmit buffer unavailable status flag */ - ENET_DMA_FLAG_TJT = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 3U), /*!< transmit jabber timeout status flag */ - ENET_DMA_FLAG_RO = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 4U), /*!< receive overflow status flag */ - ENET_DMA_FLAG_TU = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 5U), /*!< transmit underflow status flag */ - ENET_DMA_FLAG_RS = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 6U), /*!< receive status flag */ - ENET_DMA_FLAG_RBU = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 7U), /*!< receive buffer unavailable status flag */ - ENET_DMA_FLAG_RPS = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 8U), /*!< receive process stopped status flag */ - ENET_DMA_FLAG_RWT = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 9U), /*!< receive watchdog timeout status flag */ - ENET_DMA_FLAG_ET = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 10U), /*!< early transmit status flag */ - ENET_DMA_FLAG_FBE = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 13U), /*!< fatal bus error status flag */ - ENET_DMA_FLAG_ER = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 14U), /*!< early receive status flag */ - ENET_DMA_FLAG_AI = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 15U), /*!< abnormal interrupt summary flag */ - ENET_DMA_FLAG_NI = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 16U), /*!< normal interrupt summary flag */ - ENET_DMA_FLAG_EB_DMA_ERROR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 23U), /*!< error during data transfer by RxDMA/TxDMA flag */ - ENET_DMA_FLAG_EB_TRANSFER_ERROR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 24U), /*!< error during write/read transfer flag */ - ENET_DMA_FLAG_EB_ACCESS_ERROR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 25U), /*!< error during data buffer/descriptor access flag */ - ENET_DMA_FLAG_MSC = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 27U), /*!< MSC status flag */ - ENET_DMA_FLAG_WUM = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 28U), /*!< WUM status flag */ - ENET_DMA_FLAG_TST = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 29U), /*!< timestamp trigger status flag */ -}enet_flag_enum; - -/* ENET stutus flag clear */ -typedef enum -{ - /* ENET_DMA_STAT register */ - ENET_DMA_FLAG_TS_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 0U), /*!< transmit status flag */ - ENET_DMA_FLAG_TPS_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 1U), /*!< transmit process stopped status flag */ - ENET_DMA_FLAG_TBU_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 2U), /*!< transmit buffer unavailable status flag */ - ENET_DMA_FLAG_TJT_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 3U), /*!< transmit jabber timeout status flag */ - ENET_DMA_FLAG_RO_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 4U), /*!< receive overflow status flag */ - ENET_DMA_FLAG_TU_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 5U), /*!< transmit underflow status flag */ - ENET_DMA_FLAG_RS_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 6U), /*!< receive status flag */ - ENET_DMA_FLAG_RBU_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 7U), /*!< receive buffer unavailable status flag */ - ENET_DMA_FLAG_RPS_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 8U), /*!< receive process stopped status flag */ - ENET_DMA_FLAG_RWT_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 9U), /*!< receive watchdog timeout status flag */ - ENET_DMA_FLAG_ET_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 10U), /*!< early transmit status flag */ - ENET_DMA_FLAG_FBE_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 13U), /*!< fatal bus error status flag */ - ENET_DMA_FLAG_ER_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 14U), /*!< early receive status flag */ - ENET_DMA_FLAG_AI_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 15U), /*!< abnormal interrupt summary flag */ - ENET_DMA_FLAG_NI_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 16U), /*!< normal interrupt summary flag */ -}enet_flag_clear_enum; - -/* ENET interrupt enable/disable */ -typedef enum -{ - /* ENET_MAC_INTMSK register */ - ENET_MAC_INT_WUMIM = ENET_REGIDX_BIT(MAC_INTMSK_REG_OFFSET, 3U), /*!< WUM interrupt mask */ - ENET_MAC_INT_TMSTIM = ENET_REGIDX_BIT(MAC_INTMSK_REG_OFFSET, 9U), /*!< timestamp trigger interrupt mask */ - /* ENET_MSC_RINTMSK register */ - ENET_MSC_INT_RFCEIM = ENET_REGIDX_BIT(MSC_RINTMSK_REG_OFFSET, 5U), /*!< received frame CRC error interrupt mask */ - ENET_MSC_INT_RFAEIM = ENET_REGIDX_BIT(MSC_RINTMSK_REG_OFFSET, 6U), /*!< received frames alignment error interrupt mask */ - ENET_MSC_INT_RGUFIM = ENET_REGIDX_BIT(MSC_RINTMSK_REG_OFFSET, 17U), /*!< received good unicast frames interrupt mask */ - /* ENET_MSC_TINTMSK register */ - ENET_MSC_INT_TGFSCIM = ENET_REGIDX_BIT(MSC_TINTMSK_REG_OFFSET, 14U), /*!< transmitted good frames single collision interrupt mask */ - ENET_MSC_INT_TGFMSCIM = ENET_REGIDX_BIT(MSC_TINTMSK_REG_OFFSET, 15U), /*!< transmitted good frames more single collision interrupt mask */ - ENET_MSC_INT_TGFIM = ENET_REGIDX_BIT(MSC_TINTMSK_REG_OFFSET, 21U), /*!< transmitted good frames interrupt mask */ - /* ENET_DMA_INTEN register */ - ENET_DMA_INT_TIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 0U), /*!< transmit interrupt enable */ - ENET_DMA_INT_TPSIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 1U), /*!< transmit process stopped interrupt enable */ - ENET_DMA_INT_TBUIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 2U), /*!< transmit buffer unavailable interrupt enable */ - ENET_DMA_INT_TJTIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 3U), /*!< transmit jabber timeout interrupt enable */ - ENET_DMA_INT_ROIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 4U), /*!< receive overflow interrupt enable */ - ENET_DMA_INT_TUIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 5U), /*!< transmit underflow interrupt enable */ - ENET_DMA_INT_RIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 6U), /*!< receive interrupt enable */ - ENET_DMA_INT_RBUIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 7U), /*!< receive buffer unavailable interrupt enable */ - ENET_DMA_INT_RPSIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 8U), /*!< receive process stopped interrupt enable */ - ENET_DMA_INT_RWTIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 9U), /*!< receive watchdog timeout interrupt enable */ - ENET_DMA_INT_ETIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 10U), /*!< early transmit interrupt enable */ - ENET_DMA_INT_FBEIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 13U), /*!< fatal bus error interrupt enable */ - ENET_DMA_INT_ERIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 14U), /*!< early receive interrupt enable */ - ENET_DMA_INT_AIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 15U), /*!< abnormal interrupt summary enable */ - ENET_DMA_INT_NIE = ENET_REGIDX_BIT(DMA_INTEN_REG_OFFSET, 16U), /*!< normal interrupt summary enable */ -}enet_int_enum; - -/* ENET interrupt flag get */ -typedef enum -{ - /* ENET_MAC_INTF register */ - ENET_MAC_INT_FLAG_WUM = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 3U), /*!< WUM status flag */ - ENET_MAC_INT_FLAG_MSC = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 4U), /*!< MSC status flag */ - ENET_MAC_INT_FLAG_MSCR = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 5U), /*!< MSC receive status flag */ - ENET_MAC_INT_FLAG_MSCT = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 6U), /*!< MSC transmit status flag */ - ENET_MAC_INT_FLAG_TMST = ENET_REGIDX_BIT(MAC_INTF_REG_OFFSET, 9U), /*!< timestamp trigger status flag */ - /* ENET_MSC_RINTF register */ - ENET_MSC_INT_FLAG_RFCE = ENET_REGIDX_BIT(MSC_RINTF_REG_OFFSET, 5U), /*!< received frames CRC error flag */ - ENET_MSC_INT_FLAG_RFAE = ENET_REGIDX_BIT(MSC_RINTF_REG_OFFSET, 6U), /*!< received frames alignment error flag */ - ENET_MSC_INT_FLAG_RGUF = ENET_REGIDX_BIT(MSC_RINTF_REG_OFFSET, 17U), /*!< received good unicast frames flag */ - /* ENET_MSC_TINTF register */ - ENET_MSC_INT_FLAG_TGFSC = ENET_REGIDX_BIT(MSC_TINTF_REG_OFFSET, 14U), /*!< transmitted good frames single collision flag */ - ENET_MSC_INT_FLAG_TGFMSC = ENET_REGIDX_BIT(MSC_TINTF_REG_OFFSET, 15U), /*!< transmitted good frames more single collision flag */ - ENET_MSC_INT_FLAG_TGF = ENET_REGIDX_BIT(MSC_TINTF_REG_OFFSET, 21U), /*!< transmitted good frames flag */ - /* ENET_DMA_STAT register */ - ENET_DMA_INT_FLAG_TS = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 0U), /*!< transmit status flag */ - ENET_DMA_INT_FLAG_TPS = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 1U), /*!< transmit process stopped status flag */ - ENET_DMA_INT_FLAG_TBU = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 2U), /*!< transmit buffer unavailable status flag */ - ENET_DMA_INT_FLAG_TJT = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 3U), /*!< transmit jabber timeout status flag */ - ENET_DMA_INT_FLAG_RO = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 4U), /*!< receive overflow status flag */ - ENET_DMA_INT_FLAG_TU = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 5U), /*!< transmit underflow status flag */ - ENET_DMA_INT_FLAG_RS = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 6U), /*!< receive status flag */ - ENET_DMA_INT_FLAG_RBU = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 7U), /*!< receive buffer unavailable status flag */ - ENET_DMA_INT_FLAG_RPS = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 8U), /*!< receive process stopped status flag */ - ENET_DMA_INT_FLAG_RWT = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 9U), /*!< receive watchdog timeout status flag */ - ENET_DMA_INT_FLAG_ET = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 10U), /*!< early transmit status flag */ - ENET_DMA_INT_FLAG_FBE = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 13U), /*!< fatal bus error status flag */ - ENET_DMA_INT_FLAG_ER = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 14U), /*!< early receive status flag */ - ENET_DMA_INT_FLAG_AI = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 15U), /*!< abnormal interrupt summary flag */ - ENET_DMA_INT_FLAG_NI = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 16U), /*!< normal interrupt summary flag */ - ENET_DMA_INT_FLAG_MSC = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 27U), /*!< MSC status flag */ - ENET_DMA_INT_FLAG_WUM = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 28U), /*!< WUM status flag */ - ENET_DMA_INT_FLAG_TST = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 29U), /*!< timestamp trigger status flag */ -}enet_int_flag_enum; - -/* ENET interrupt flag clear */ -typedef enum -{ - /* ENET_DMA_STAT register */ - ENET_DMA_INT_FLAG_TS_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 0U), /*!< transmit status flag */ - ENET_DMA_INT_FLAG_TPS_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 1U), /*!< transmit process stopped status flag */ - ENET_DMA_INT_FLAG_TBU_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 2U), /*!< transmit buffer unavailable status flag */ - ENET_DMA_INT_FLAG_TJT_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 3U), /*!< transmit jabber timeout status flag */ - ENET_DMA_INT_FLAG_RO_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 4U), /*!< receive overflow status flag */ - ENET_DMA_INT_FLAG_TU_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 5U), /*!< transmit underflow status flag */ - ENET_DMA_INT_FLAG_RS_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 6U), /*!< receive status flag */ - ENET_DMA_INT_FLAG_RBU_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 7U), /*!< receive buffer unavailable status flag */ - ENET_DMA_INT_FLAG_RPS_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 8U), /*!< receive process stopped status flag */ - ENET_DMA_INT_FLAG_RWT_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 9U), /*!< receive watchdog timeout status flag */ - ENET_DMA_INT_FLAG_ET_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 10U), /*!< early transmit status flag */ - ENET_DMA_INT_FLAG_FBE_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 13U), /*!< fatal bus error status flag */ - ENET_DMA_INT_FLAG_ER_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 14U), /*!< early receive status flag */ - ENET_DMA_INT_FLAG_AI_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 15U), /*!< abnormal interrupt summary flag */ - ENET_DMA_INT_FLAG_NI_CLR = ENET_REGIDX_BIT(DMA_STAT_REG_OFFSET, 16U), /*!< normal interrupt summary flag */ -}enet_int_flag_clear_enum; - -/* current RX/TX descriptor/buffer/descriptor table address get */ -typedef enum -{ - ENET_RX_DESC_TABLE = DMA_RDTADDR_REG_OFFSET, /*!< RX descriptor table */ - ENET_RX_CURRENT_DESC = DMA_CRDADDR_REG_OFFSET, /*!< current RX descriptor */ - ENET_RX_CURRENT_BUFFER = DMA_CRBADDR_REG_OFFSET, /*!< current RX buffer */ - ENET_TX_DESC_TABLE = DMA_TDTADDR_REG_OFFSET, /*!< TX descriptor table */ - ENET_TX_CURRENT_DESC = DMA_CTDADDR_REG_OFFSET, /*!< current TX descriptor */ - ENET_TX_CURRENT_BUFFER = DMA_CTBADDR_REG_OFFSET /*!< current TX buffer */ -}enet_desc_reg_enum; - -/* MAC statistics counter get */ -typedef enum -{ - ENET_MSC_TX_SCCNT = MSC_SCCNT_REG_OFFSET, /*!< MSC transmitted good frames after a single collision counter */ - ENET_MSC_TX_MSCCNT = MSC_MSCCNT_REG_OFFSET, /*!< MSC transmitted good frames after more than a single collision counter */ - ENET_MSC_TX_TGFCNT = MSC_TGFCNT_REG_OFFSET, /*!< MSC transmitted good frames counter */ - ENET_MSC_RX_RFCECNT = MSC_RFCECNT_REG_OFFSET, /*!< MSC received frames with CRC error counter */ - ENET_MSC_RX_RFAECNT = MSC_RFAECNT_REG_OFFSET, /*!< MSC received frames with alignment error counter */ - ENET_MSC_RX_RGUFCNT = MSC_RGUFCNT_REG_OFFSET /*!< MSC received good unicast frames counter */ -}enet_msc_counter_enum; - -/* function option, used for ENET initialization */ -typedef enum -{ - FORWARD_OPTION = BIT(0), /*!< configure the frame forward related parameters */ - DMABUS_OPTION = BIT(1), /*!< configure the DMA bus mode related parameters */ - DMA_MAXBURST_OPTION = BIT(2), /*!< configure the DMA max burst related parameters */ - DMA_ARBITRATION_OPTION = BIT(3), /*!< configure the DMA arbitration related parameters */ - STORE_OPTION = BIT(4), /*!< configure the store forward mode related parameters */ - DMA_OPTION = BIT(5), /*!< configure the DMA control related parameters */ - VLAN_OPTION = BIT(6), /*!< configure the VLAN tag related parameters */ - FLOWCTL_OPTION = BIT(7), /*!< configure the flow control related parameters */ - HASHH_OPTION = BIT(8), /*!< configure the hash list high 32-bit related parameters */ - HASHL_OPTION = BIT(9), /*!< configure the hash list low 32-bit related parameters */ - FILTER_OPTION = BIT(10), /*!< configure the frame filter control related parameters */ - HALFDUPLEX_OPTION = BIT(11), /*!< configure the halfduplex related parameters */ - TIMER_OPTION = BIT(12), /*!< configure the frame timer related parameters */ - INTERFRAMEGAP_OPTION = BIT(13), /*!< configure the inter frame gap related parameters */ -}enet_option_enum; - -/* phy mode and mac loopback configurations */ -typedef enum -{ - ENET_AUTO_NEGOTIATION = 0x01U, /*!< PHY auto negotiation */ - ENET_100M_FULLDUPLEX = (ENET_MAC_CFG_SPD | ENET_MAC_CFG_DPM), /*!< 100Mbit/s, full-duplex */ - ENET_100M_HALFDUPLEX = ENET_MAC_CFG_SPD , /*!< 100Mbit/s, half-duplex */ - ENET_10M_FULLDUPLEX = ENET_MAC_CFG_DPM, /*!< 10Mbit/s, full-duplex */ - ENET_10M_HALFDUPLEX = (uint32_t)0x00000000U, /*!< 10Mbit/s, half-duplex */ - ENET_LOOPBACKMODE = (ENET_MAC_CFG_LBM | ENET_MAC_CFG_DPM) /*!< MAC in loopback mode at the MII */ -}enet_mediamode_enum; - -/* IP frame checksum function */ -typedef enum -{ - ENET_NO_AUTOCHECKSUM = (uint32_t)0x00000000U, /*!< disable IP frame checksum function */ - ENET_AUTOCHECKSUM_DROP_FAILFRAMES = ENET_MAC_CFG_IPFCO, /*!< enable IP frame checksum function */ - ENET_AUTOCHECKSUM_ACCEPT_FAILFRAMES = (ENET_MAC_CFG_IPFCO|ENET_DMA_CTL_DTCERFD) /*!< enable IP frame checksum function, and the received frame - with only payload error but no other errors will not be dropped */ -}enet_chksumconf_enum; - -/* received frame filter function */ -typedef enum -{ - ENET_PROMISCUOUS_MODE = ENET_MAC_FRMF_PM, /*!< promiscuous mode enabled */ - ENET_RECEIVEALL = (int32_t)ENET_MAC_FRMF_FAR, /*!< all received frame are forwarded to application */ - ENET_BROADCAST_FRAMES_PASS = (uint32_t)0x00000000U, /*!< the address filters pass all received broadcast frames */ - ENET_BROADCAST_FRAMES_DROP = ENET_MAC_FRMF_BFRMD /*!< the address filters filter all incoming broadcast frames */ -}enet_frmrecept_enum; - -/* register group value get */ -typedef enum -{ - ALL_MAC_REG = 0U, /*!< MAC register group */ - ALL_MSC_REG = 22U, /*!< MSC register group */ - ALL_PTP_REG = 33U, /*!< PTP register group */ - ALL_DMA_REG = 44U, /*!< DMA register group */ -}enet_registers_type_enum; - -/* dma direction select */ -typedef enum -{ - ENET_DMA_TX = ENET_DMA_STAT_TP, /*!< DMA transmit direction */ - ENET_DMA_RX = ENET_DMA_STAT_RP /*!< DMA receive direction */ -}enet_dmadirection_enum; - -/* PHY operation direction select */ -typedef enum -{ - ENET_PHY_READ = (uint32_t)0x00000000, /*!< read PHY */ - ENET_PHY_WRITE = ENET_MAC_PHY_CTL_PW /*!< write PHY */ -}enet_phydirection_enum; - -/* register operation direction select */ -typedef enum -{ - ENET_REG_READ, /*!< read register */ - ENET_REG_WRITE /*!< write register */ -}enet_regdirection_enum; - -/* ENET MAC addresses */ -typedef enum -{ - ENET_MAC_ADDRESS0 = ((uint32_t)0x00000000), /*!< MAC address0 */ - ENET_MAC_ADDRESS1 = ((uint32_t)0x00000008), /*!< MAC address1 */ - ENET_MAC_ADDRESS2 = ((uint32_t)0x00000010), /*!< MAC address2 */ - ENET_MAC_ADDRESS3 = ((uint32_t)0x00000018) /*!< MAC address3 */ -}enet_macaddress_enum; - -/* descriptor information */ -typedef enum -{ - TXDESC_COLLISION_COUNT, /*!< the number of collisions occurred before the frame was transmitted */ - TXDESC_BUFFER_1_ADDR, /*!< transmit frame buffer 1 address */ - RXDESC_FRAME_LENGTH, /*!< the byte length of the received frame that was transferred to the buffer */ - RXDESC_BUFFER_1_SIZE, /*!< receive buffer 1 size */ - RXDESC_BUFFER_2_SIZE, /*!< receive buffer 2 size */ - RXDESC_BUFFER_1_ADDR /*!< receive frame buffer 1 address */ -}enet_descstate_enum; - -/* MSC counters preset mode */ -typedef enum -{ - ENET_MSC_PRESET_NONE = 0U, /*!< do not preset MSC counter */ - ENET_MSC_PRESET_HALF = ENET_MSC_CTL_PMC, /*!< preset all MSC counters to almost-half(0x7FFF FFF0) value */ - ENET_MSC_PRESET_FULL = ENET_MSC_CTL_PMC | ENET_MSC_CTL_AFHPM /*!< preset all MSC counters to almost-full(0xFFFF FFF0) value */ -}enet_msc_preset_enum; - -typedef enum{ - ENET_CKNT_ORDINARY = PTP_TSCTL_CKNT(0), /*!< type of ordinary clock node type for timestamp */ - ENET_CKNT_BOUNDARY = PTP_TSCTL_CKNT(1), /*!< type of boundary clock node type for timestamp */ - ENET_CKNT_END_TO_END = PTP_TSCTL_CKNT(2), /*!< type of end-to-end transparent clock node type for timestamp */ - ENET_CKNT_PEER_TO_PEER = PTP_TSCTL_CKNT(3), /*!< type of peer-to-peer transparent clock node type for timestamp */ - ENET_PTP_SYSTIME_INIT = ENET_PTP_TSCTL_TMSSTI, /*!< timestamp initialize */ - ENET_PTP_SYSTIME_UPDATE = ENET_PTP_TSCTL_TMSSTU, /*!< timestamp update */ - ENET_PTP_ADDEND_UPDATE = ENET_PTP_TSCTL_TMSARU, /*!< addend register update */ - ENET_PTP_FINEMODE = (int32_t)(ENET_PTP_TSCTL_TMSFCU| BIT(31)), /*!< the system timestamp uses the fine method for updating */ - ENET_PTP_COARSEMODE = ENET_PTP_TSCTL_TMSFCU, /*!< the system timestamp uses the coarse method for updating */ - ENET_SUBSECOND_DIGITAL_ROLLOVER = (int32_t)(ENET_PTP_TSCTL_SCROM | BIT(31)), /*!< digital rollover mode */ - ENET_SUBSECOND_BINARY_ROLLOVER = ENET_PTP_TSCTL_SCROM, /*!< binary rollover mode */ - ENET_SNOOPING_PTP_VERSION_2 = (int32_t)(ENET_PTP_TSCTL_PFSV| BIT(31)), /*!< version 2 */ - ENET_SNOOPING_PTP_VERSION_1 = ENET_PTP_TSCTL_PFSV, /*!< version 1 */ - ENET_EVENT_TYPE_MESSAGES_SNAPSHOT = (int32_t)(ENET_PTP_TSCTL_ETMSEN| BIT(31)), /*!< only event type messages are taken snapshot */ - ENET_ALL_TYPE_MESSAGES_SNAPSHOT = ENET_PTP_TSCTL_ETMSEN, /*!< all type messages are taken snapshot except announce, management and signaling message */ - ENET_MASTER_NODE_MESSAGE_SNAPSHOT = (int32_t)(ENET_PTP_TSCTL_MNMSEN| BIT(31)), /*!< snapshot is only take for master node message */ - ENET_SLAVE_NODE_MESSAGE_SNAPSHOT = ENET_PTP_TSCTL_MNMSEN, /*!< snapshot is only taken for slave node message */ -}enet_ptp_function_enum; - -/* structure for initialization of the ENET */ -typedef struct -{ - uint32_t option_enable; /*!< select which function to configure */ - uint32_t forward_frame; /*!< frame forward related parameters */ - uint32_t dmabus_mode; /*!< DMA bus mode related parameters */ - uint32_t dma_maxburst; /*!< DMA max burst related parameters */ - uint32_t dma_arbitration; /*!< DMA Tx and Rx arbitration related parameters */ - uint32_t store_forward_mode; /*!< store forward mode related parameters */ - uint32_t dma_function; /*!< DMA control related parameters */ - uint32_t vlan_config; /*!< VLAN tag related parameters */ - uint32_t flow_control; /*!< flow control related parameters */ - uint32_t hashtable_high; /*!< hash list high 32-bit related parameters */ - uint32_t hashtable_low; /*!< hash list low 32-bit related parameters */ - uint32_t framesfilter_mode; /*!< frame filter control related parameters */ - uint32_t halfduplex_param; /*!< halfduplex related parameters */ - uint32_t timer_config; /*!< frame timer related parameters */ - uint32_t interframegap; /*!< inter frame gap related parameters */ -}enet_initpara_struct; - -/* structure for ENET DMA desciptors */ -typedef struct -{ - uint32_t status; /*!< status */ - uint32_t control_buffer_size; /*!< control and buffer1, buffer2 lengths */ - uint32_t buffer1_addr; /*!< buffer1 address pointer/timestamp low */ - uint32_t buffer2_next_desc_addr; /*!< buffer2 or next descriptor address pointer/timestamp high */ - -#ifdef SELECT_DESCRIPTORS_ENHANCED_MODE - uint32_t extended_status; /*!< extended status */ - uint32_t reserved; /*!< reserved */ - uint32_t timestamp_low; /*!< timestamp low */ - uint32_t timestamp_high; /*!< timestamp high */ -#endif /* SELECT_DESCRIPTORS_ENHANCED_MODE */ - -} enet_descriptors_struct; - -/* structure of PTP system time */ -typedef struct -{ - uint32_t second; /*!< second of system time */ - uint32_t subsecond; /*!< subsecond of system time */ - uint32_t sign; /*!< sign of system time */ -}enet_ptp_systime_struct; - -/* mac_cfg register value */ -#define MAC_CFG_BOL(regval) (BITS(5,6) & ((uint32_t)(regval) << 5)) /*!< write value to ENET_MAC_CFG_BOL bit field */ -#define ENET_BACKOFFLIMIT_10 MAC_CFG_BOL(0) /*!< min (n, 10) */ -#define ENET_BACKOFFLIMIT_8 MAC_CFG_BOL(1) /*!< min (n, 8) */ -#define ENET_BACKOFFLIMIT_4 MAC_CFG_BOL(2) /*!< min (n, 4) */ -#define ENET_BACKOFFLIMIT_1 MAC_CFG_BOL(3) /*!< min (n, 1) */ - -#define MAC_CFG_IGBS(regval) (BITS(17,19) & ((uint32_t)(regval) << 17)) /*!< write value to ENET_MAC_CFG_IGBS bit field */ -#define ENET_INTERFRAMEGAP_96BIT MAC_CFG_IGBS(0) /*!< minimum 96 bit times */ -#define ENET_INTERFRAMEGAP_88BIT MAC_CFG_IGBS(1) /*!< minimum 88 bit times */ -#define ENET_INTERFRAMEGAP_80BIT MAC_CFG_IGBS(2) /*!< minimum 80 bit times */ -#define ENET_INTERFRAMEGAP_72BIT MAC_CFG_IGBS(3) /*!< minimum 72 bit times */ -#define ENET_INTERFRAMEGAP_64BIT MAC_CFG_IGBS(4) /*!< minimum 64 bit times */ -#define ENET_INTERFRAMEGAP_56BIT MAC_CFG_IGBS(5) /*!< minimum 56 bit times */ -#define ENET_INTERFRAMEGAP_48BIT MAC_CFG_IGBS(6) /*!< minimum 48 bit times */ -#define ENET_INTERFRAMEGAP_40BIT MAC_CFG_IGBS(7) /*!< minimum 40 bit times */ - -#define ENET_TYPEFRAME_CRC_DROP_ENABLE ENET_MAC_CFG_TFCD /*!< FCS field(last 4 bytes) of frame will be dropped before forwarding */ -#define ENET_TYPEFRAME_CRC_DROP_DISABLE ((uint32_t)0x00000000U) /*!< FCS field(last 4 bytes) of frame will not be dropped before forwarding */ -#define ENET_TYPEFRAME_CRC_DROP ENET_MAC_CFG_TFCD /*!< the function that FCS field(last 4 bytes) of frame will be dropped before forwarding */ - -#define ENET_WATCHDOG_ENABLE ((uint32_t)0x00000000U) /*!< the MAC allows no more than 2048 bytes of the frame being received */ -#define ENET_WATCHDOG_DISABLE ENET_MAC_CFG_WDD /*!< the MAC disables the watchdog timer on the receiver, and can receive frames of up to 16384 bytes */ - -#define ENET_JABBER_ENABLE ((uint32_t)0x00000000U) /*!< the maximum transmission byte is 2048 */ -#define ENET_JABBER_DISABLE ENET_MAC_CFG_JBD /*!< the maximum transmission byte can be 16384 */ - -#define ENET_CARRIERSENSE_ENABLE ((uint32_t)0x00000000U) /*!< the MAC transmitter generates carrier sense error and aborts the transmission */ -#define ENET_CARRIERSENSE_DISABLE ENET_MAC_CFG_CSD /*!< the MAC transmitter ignores the MII CRS signal during frame transmission in half-duplex mode */ - -#define ENET_SPEEDMODE_10M ((uint32_t)0x00000000U) /*!< 10 Mbit/s */ -#define ENET_SPEEDMODE_100M ENET_MAC_CFG_SPD /*!< 100 Mbit/s */ - -#define ENET_RECEIVEOWN_ENABLE ((uint32_t)0x00000000U) /*!< the MAC receives all packets that are given by the PHY while transmitting */ -#define ENET_RECEIVEOWN_DISABLE ENET_MAC_CFG_ROD /*!< the MAC disables the reception of frames in half-duplex mode */ - -#define ENET_LOOPBACKMODE_ENABLE ENET_MAC_CFG_LBM /*!< the MAC operates in loopback mode at the MII */ -#define ENET_LOOPBACKMODE_DISABLE ((uint32_t)0x00000000U) /*!< the MAC operates in normal mode */ - -#define ENET_MODE_FULLDUPLEX ENET_MAC_CFG_DPM /*!< full-duplex mode enable */ -#define ENET_MODE_HALFDUPLEX ((uint32_t)0x00000000U) /*!< half-duplex mode enable */ - -#define ENET_CHECKSUMOFFLOAD_ENABLE ENET_MAC_CFG_IPFCO /*!< IP frame checksum offload function enabled for received IP frame */ -#define ENET_CHECKSUMOFFLOAD_DISABLE ((uint32_t)0x00000000U) /*!< the checksum offload function in the receiver is disabled */ - -#define ENET_RETRYTRANSMISSION_ENABLE ((uint32_t)0x00000000U) /*!< the MAC attempts retries up to 16 times based on the settings of BOL*/ -#define ENET_RETRYTRANSMISSION_DISABLE ENET_MAC_CFG_RTD /*!< the MAC attempts only 1 transmission */ - -#define ENET_AUTO_PADCRC_DROP_ENABLE ENET_MAC_CFG_APCD /*!< the MAC strips the Pad/FCS field on received frames */ -#define ENET_AUTO_PADCRC_DROP_DISABLE ((uint32_t)0x00000000U) /*!< the MAC forwards all received frames without modify it */ -#define ENET_AUTO_PADCRC_DROP ENET_MAC_CFG_APCD /*!< the function of the MAC strips the Pad/FCS field on received frames */ - -#define ENET_DEFERRALCHECK_ENABLE ENET_MAC_CFG_DFC /*!< the deferral check function is enabled in the MAC */ -#define ENET_DEFERRALCHECK_DISABLE ((uint32_t)0x00000000U) /*!< the deferral check function is disabled */ - -/* mac_frmf register value */ -#define MAC_FRMF_PCFRM(regval) (BITS(6,7) & ((uint32_t)(regval) << 6)) /*!< write value to ENET_MAC_FRMF_PCFRM bit field */ -#define ENET_PCFRM_PREVENT_ALL MAC_FRMF_PCFRM(0) /*!< MAC prevents all control frames from reaching the application */ -#define ENET_PCFRM_PREVENT_PAUSEFRAME MAC_FRMF_PCFRM(1) /*!< MAC only forwards all other control frames except pause control frame */ -#define ENET_PCFRM_FORWARD_ALL MAC_FRMF_PCFRM(2) /*!< MAC forwards all control frames to application even if they fail the address filter */ -#define ENET_PCFRM_FORWARD_FILTERED MAC_FRMF_PCFRM(3) /*!< MAC forwards control frames that only pass the address filter */ - -#define ENET_RX_FILTER_DISABLE ENET_MAC_FRMF_FAR /*!< all received frame are forwarded to application */ -#define ENET_RX_FILTER_ENABLE ((uint32_t)0x00000000U) /*!< only the frame passed the filter can be forwarded to application */ - -#define ENET_SRC_FILTER_NORMAL_ENABLE ENET_MAC_FRMF_SAFLT /*!< filter source address */ -#define ENET_SRC_FILTER_INVERSE_ENABLE (ENET_MAC_FRMF_SAFLT | ENET_MAC_FRMF_SAIFLT) /*!< inverse source address filtering result */ -#define ENET_SRC_FILTER_DISABLE ((uint32_t)0x00000000U) /*!< source address function in filter disable */ -#define ENET_SRC_FILTER ENET_MAC_FRMF_SAFLT /*!< filter source address function */ -#define ENET_SRC_FILTER_INVERSE ENET_MAC_FRMF_SAIFLT /*!< inverse source address filtering result function */ - -#define ENET_BROADCASTFRAMES_ENABLE ((uint32_t)0x00000000U) /*!< the address filters pass all received broadcast frames */ -#define ENET_BROADCASTFRAMES_DISABLE ENET_MAC_FRMF_BFRMD /*!< the address filters filter all incoming broadcast frames */ - -#define ENET_DEST_FILTER_INVERSE_ENABLE ENET_MAC_FRMF_DAIFLT /*!< inverse DA filtering result */ -#define ENET_DEST_FILTER_INVERSE_DISABLE ((uint32_t)0x00000000U) /*!< not inverse DA filtering result */ -#define ENET_DEST_FILTER_INVERSE ENET_MAC_FRMF_DAIFLT /*!< inverse DA filtering result function */ - -#define ENET_PROMISCUOUS_ENABLE ENET_MAC_FRMF_PM /*!< promiscuous mode enabled */ -#define ENET_PROMISCUOUS_DISABLE ((uint32_t)0x00000000U) /*!< promiscuous mode disabled */ - -#define ENET_MULTICAST_FILTER_HASH_OR_PERFECT (ENET_MAC_FRMF_HMF | ENET_MAC_FRMF_HPFLT) /*!< pass multicast frames that match either the perfect or the hash filtering */ -#define ENET_MULTICAST_FILTER_HASH ENET_MAC_FRMF_HMF /*!< pass multicast frames that match the hash filtering */ -#define ENET_MULTICAST_FILTER_PERFECT ((uint32_t)0x00000000U) /*!< pass multicast frames that match the perfect filtering */ -#define ENET_MULTICAST_FILTER_NONE ENET_MAC_FRMF_MFD /*!< all multicast frames are passed */ -#define ENET_MULTICAST_FILTER_PASS ENET_MAC_FRMF_MFD /*!< pass all multicast frames function */ -#define ENET_MULTICAST_FILTER_HASH_MODE ENET_MAC_FRMF_HMF /*!< HASH multicast filter function */ -#define ENET_FILTER_MODE_EITHER ENET_MAC_FRMF_HPFLT /*!< HASH or perfect filter function */ - -#define ENET_UNICAST_FILTER_EITHER (ENET_MAC_FRMF_HUF | ENET_MAC_FRMF_HPFLT) /*!< pass unicast frames that match either the perfect or the hash filtering */ -#define ENET_UNICAST_FILTER_HASH ENET_MAC_FRMF_HUF /*!< pass unicast frames that match the hash filtering */ -#define ENET_UNICAST_FILTER_PERFECT ((uint32_t)0x00000000U) /*!< pass unicast frames that match the perfect filtering */ -#define ENET_UNICAST_FILTER_HASH_MODE ENET_MAC_FRMF_HUF /*!< HASH unicast filter function */ - -/* mac_phy_ctl register value */ -#define MAC_PHY_CTL_CLR(regval) (BITS(2,4) & ((uint32_t)(regval) << 2)) /*!< write value to ENET_MAC_PHY_CTL_CLR bit field */ -#define ENET_MDC_HCLK_DIV42 MAC_PHY_CTL_CLR(0) /*!< HCLK:60-100 MHz; MDC clock= HCLK/42 */ -#define ENET_MDC_HCLK_DIV62 MAC_PHY_CTL_CLR(1) /*!< HCLK:100-150 MHz; MDC clock= HCLK/62 */ -#define ENET_MDC_HCLK_DIV16 MAC_PHY_CTL_CLR(2) /*!< HCLK:20-35 MHz; MDC clock= HCLK/16 */ -#define ENET_MDC_HCLK_DIV26 MAC_PHY_CTL_CLR(3) /*!< HCLK:35-60 MHz; MDC clock= HCLK/26 */ -#define ENET_MDC_HCLK_DIV102 MAC_PHY_CTL_CLR(4) /*!< HCLK:150-200 MHz; MDC clock= HCLK/102 */ - -#define MAC_PHY_CTL_PR(regval) (BITS(6,10) & ((uint32_t)(regval) << 6)) /*!< write value to ENET_MAC_PHY_CTL_PR bit field */ - -#define MAC_PHY_CTL_PA(regval) (BITS(11,15) & ((uint32_t)(regval) << 11)) /*!< write value to ENET_MAC_PHY_CTL_PA bit field */ - -/* mac_phy_data register value */ -#define MAC_PHY_DATA_PD(regval) (BITS(0,15) & ((uint32_t)(regval) << 0)) /*!< write value to ENET_MAC_PHY_DATA_PD bit field */ - -/* mac_fctl register value */ -#define MAC_FCTL_PLTS(regval) (BITS(4,5) & ((uint32_t)(regval) << 4)) /*!< write value to ENET_MAC_FCTL_PLTS bit field */ -#define ENET_PAUSETIME_MINUS4 MAC_FCTL_PLTS(0) /*!< pause time minus 4 slot times */ -#define ENET_PAUSETIME_MINUS28 MAC_FCTL_PLTS(1) /*!< pause time minus 28 slot times */ -#define ENET_PAUSETIME_MINUS144 MAC_FCTL_PLTS(2) /*!< pause time minus 144 slot times */ -#define ENET_PAUSETIME_MINUS256 MAC_FCTL_PLTS(3) /*!< pause time minus 256 slot times */ - -#define ENET_ZERO_QUANTA_PAUSE_ENABLE ((uint32_t)0x00000000U) /*!< enable the automatic zero-quanta generation function */ -#define ENET_ZERO_QUANTA_PAUSE_DISABLE ENET_MAC_FCTL_DZQP /*!< disable the automatic zero-quanta generation function */ -#define ENET_ZERO_QUANTA_PAUSE ENET_MAC_FCTL_DZQP /*!< the automatic zero-quanta generation function */ - -#define ENET_MAC0_AND_UNIQUE_ADDRESS_PAUSEDETECT ENET_MAC_FCTL_UPFDT /*!< besides the unique multicast address, MAC also use the MAC0 address to detect pause frame */ -#define ENET_UNIQUE_PAUSEDETECT ((uint32_t)0x00000000U) /*!< only the unique multicast address for pause frame which is specified in IEEE802.3 can be detected */ - -#define ENET_RX_FLOWCONTROL_ENABLE ENET_MAC_FCTL_RFCEN /*!< enable decoding function for the received pause frame and process it */ -#define ENET_RX_FLOWCONTROL_DISABLE ((uint32_t)0x00000000U) /*!< decode function for pause frame is disabled */ -#define ENET_RX_FLOWCONTROL ENET_MAC_FCTL_RFCEN /*!< decoding function for the received pause frame and process it */ - -#define ENET_TX_FLOWCONTROL_ENABLE ENET_MAC_FCTL_TFCEN /*!< enable the flow control operation in the MAC */ -#define ENET_TX_FLOWCONTROL_DISABLE ((uint32_t)0x00000000U) /*!< disable the flow control operation in the MAC */ -#define ENET_TX_FLOWCONTROL ENET_MAC_FCTL_TFCEN /*!< the flow control operation in the MAC */ - -#define ENET_BACK_PRESSURE_ENABLE ENET_MAC_FCTL_FLCBBKPA /*!< enable the back pressure operation in the MAC */ -#define ENET_BACK_PRESSURE_DISABLE ((uint32_t)0x00000000U) /*!< disable the back pressure operation in the MAC */ -#define ENET_BACK_PRESSURE ENET_MAC_FCTL_FLCBBKPA /*!< the back pressure operation in the MAC */ - -#define MAC_FCTL_PTM(regval) (BITS(16,31) & ((uint32_t)(regval) << 16)) /*!< write value to ENET_MAC_FCTL_PTM bit field */ -/* mac_vlt register value */ -#define MAC_VLT_VLTI(regval) (BITS(0,15) & ((uint32_t)(regval) << 0)) /*!< write value to ENET_MAC_VLT_VLTI bit field */ - -#define ENET_VLANTAGCOMPARISON_12BIT ENET_MAC_VLT_VLTC /*!< only low 12 bits of the VLAN tag are used for comparison */ -#define ENET_VLANTAGCOMPARISON_16BIT ((uint32_t)0x00000000U) /*!< all 16 bits of the VLAN tag are used for comparison */ - -/* mac_wum register value */ -#define ENET_WUM_FLAG_WUFFRPR ENET_MAC_WUM_WUFFRPR /*!< wakeup frame filter register poniter reset */ -#define ENET_WUM_FLAG_WUFR ENET_MAC_WUM_WUFR /*!< wakeup frame received */ -#define ENET_WUM_FLAG_MPKR ENET_MAC_WUM_MPKR /*!< magic packet received */ -#define ENET_WUM_POWER_DOWN ENET_MAC_WUM_PWD /*!< power down mode */ -#define ENET_WUM_MAGIC_PACKET_FRAME ENET_MAC_WUM_MPEN /*!< enable a wakeup event due to magic packet reception */ -#define ENET_WUM_WAKE_UP_FRAME ENET_MAC_WUM_WFEN /*!< enable a wakeup event due to wakeup frame reception */ -#define ENET_WUM_GLOBAL_UNICAST ENET_MAC_WUM_GU /*!< any received unicast frame passed filter is considered to be a wakeup frame */ - -/* mac_dbg register value */ -#define ENET_MAC_RECEIVER_NOT_IDLE ENET_MAC_DBG_MRNI /*!< MAC receiver is not in idle state */ -#define ENET_RX_ASYNCHRONOUS_FIFO_STATE ENET_MAC_DBG_RXAFS /*!< Rx asynchronous FIFO status */ -#define ENET_RXFIFO_WRITING ENET_MAC_DBG_RXFW /*!< RxFIFO is doing write operation */ -#define ENET_RXFIFO_READ_STATUS ENET_MAC_DBG_RXFRS /*!< RxFIFO read operation status */ -#define ENET_RXFIFO_STATE ENET_MAC_DBG_RXFS /*!< RxFIFO state */ -#define ENET_MAC_TRANSMITTER_NOT_IDLE ENET_MAC_DBG_MTNI /*!< MAC transmitter is not in idle state */ -#define ENET_MAC_TRANSMITTER_STATUS ENET_MAC_DBG_SOMT /*!< status of MAC transmitter */ -#define ENET_PAUSE_CONDITION_STATUS ENET_MAC_DBG_PCS /*!< pause condition status */ -#define ENET_TXFIFO_READ_STATUS ENET_MAC_DBG_TXFRS /*!< TxFIFO read operation status */ -#define ENET_TXFIFO_WRITING ENET_MAC_DBG_TXFW /*!< TxFIFO is doing write operation */ -#define ENET_TXFIFO_NOT_EMPTY ENET_MAC_DBG_TXFNE /*!< TxFIFO is not empty */ -#define ENET_TXFIFO_FULL ENET_MAC_DBG_TXFF /*!< TxFIFO is full */ - -#define GET_MAC_DBG_RXAFS(regval) GET_BITS((regval),1,2) /*!< get value of ENET_MAC_DBG_RXAFS bit field */ - -#define GET_MAC_DBG_RXFRS(regval) GET_BITS((regval),5,6) /*!< get value of ENET_MAC_DBG_RXFRS bit field */ - -#define GET_MAC_DBG_RXFS(regval) GET_BITS((regval),8,9) /*!< get value of ENET_MAC_DBG_RXFS bit field */ - -#define GET_MAC_DBG_SOMT(regval) GET_BITS((regval),17,18) /*!< get value of ENET_MAC_DBG_SOMT bit field */ - -#define GET_MAC_DBG_TXFRS(regval) GET_BITS((regval),20,21) /*!< get value of ENET_MAC_DBG_TXFRS bit field */ - -/* mac_addr0h register value */ -#define MAC_ADDR0H_ADDR0H(regval) (BITS(0,15) & ((uint32_t)(regval) << 0)) /*!< write value to ENET_MAC_ADDR0H_ADDR0H bit field */ - -/* mac_addrxh register value, x = 1,2,3 */ -#define MAC_ADDR123H_ADDR123H(regval) (BITS(0,15) & ((uint32_t)(regval) << 0)) /*!< write value to ENET_MAC_ADDRxH_ADDRxH(x=1,2,3) bit field */ - -#define ENET_ADDRESS_MASK_BYTE0 BIT(24) /*!< low register bits [7:0] */ -#define ENET_ADDRESS_MASK_BYTE1 BIT(25) /*!< low register bits [15:8] */ -#define ENET_ADDRESS_MASK_BYTE2 BIT(26) /*!< low register bits [23:16] */ -#define ENET_ADDRESS_MASK_BYTE3 BIT(27) /*!< low register bits [31:24] */ -#define ENET_ADDRESS_MASK_BYTE4 BIT(28) /*!< high register bits [7:0] */ -#define ENET_ADDRESS_MASK_BYTE5 BIT(29) /*!< high register bits [15:8] */ - -#define ENET_ADDRESS_FILTER_SA BIT(30) /*!< use MAC address[47:0] is to compare with the SA fields of the received frame */ -#define ENET_ADDRESS_FILTER_DA ((uint32_t)0x00000000) /*!< use MAC address[47:0] is to compare with the DA fields of the received frame */ - -/* mac_fcth register value */ -#define MAC_FCTH_RFA(regval) ((BITS(0,2) & ((uint32_t)(regval) << 0))<<8) /*!< write value to ENET_MAC_FCTH_RFA bit field */ -#define ENET_ACTIVE_THRESHOLD_256BYTES MAC_FCTH_RFA(0) /*!< threshold level is 256 bytes */ -#define ENET_ACTIVE_THRESHOLD_512BYTES MAC_FCTH_RFA(1) /*!< threshold level is 512 bytes */ -#define ENET_ACTIVE_THRESHOLD_768BYTES MAC_FCTH_RFA(2) /*!< threshold level is 768 bytes */ -#define ENET_ACTIVE_THRESHOLD_1024BYTES MAC_FCTH_RFA(3) /*!< threshold level is 1024 bytes */ -#define ENET_ACTIVE_THRESHOLD_1280BYTES MAC_FCTH_RFA(4) /*!< threshold level is 1280 bytes */ -#define ENET_ACTIVE_THRESHOLD_1536BYTES MAC_FCTH_RFA(5) /*!< threshold level is 1536 bytes */ -#define ENET_ACTIVE_THRESHOLD_1792BYTES MAC_FCTH_RFA(6) /*!< threshold level is 1792 bytes */ - -#define MAC_FCTH_RFD(regval) ((BITS(4,6) & ((uint32_t)(regval) << 4))<<8) /*!< write value to ENET_MAC_FCTH_RFD bit field */ -#define ENET_DEACTIVE_THRESHOLD_256BYTES MAC_FCTH_RFD(0) /*!< threshold level is 256 bytes */ -#define ENET_DEACTIVE_THRESHOLD_512BYTES MAC_FCTH_RFD(1) /*!< threshold level is 512 bytes */ -#define ENET_DEACTIVE_THRESHOLD_768BYTES MAC_FCTH_RFD(2) /*!< threshold level is 768 bytes */ -#define ENET_DEACTIVE_THRESHOLD_1024BYTES MAC_FCTH_RFD(3) /*!< threshold level is 1024 bytes */ -#define ENET_DEACTIVE_THRESHOLD_1280BYTES MAC_FCTH_RFD(4) /*!< threshold level is 1280 bytes */ -#define ENET_DEACTIVE_THRESHOLD_1536BYTES MAC_FCTH_RFD(5) /*!< threshold level is 1536 bytes */ -#define ENET_DEACTIVE_THRESHOLD_1792BYTES MAC_FCTH_RFD(6) /*!< threshold level is 1792 bytes */ - -/* msc_ctl register value */ -#define ENET_MSC_COUNTER_STOP_ROLLOVER ENET_MSC_CTL_CTSR /*!< counter stop rollover */ -#define ENET_MSC_RESET_ON_READ ENET_MSC_CTL_RTOR /*!< reset on read */ -#define ENET_MSC_COUNTERS_FREEZE ENET_MSC_CTL_MCFZ /*!< MSC counter freeze */ - -/* ptp_tsctl register value */ -#define ENET_RXTX_TIMESTAMP ENET_PTP_TSCTL_TMSEN /*!< enable timestamp function for transmit and receive frames */ -#define ENET_PTP_TIMESTAMP_INT ENET_PTP_TSCTL_TMSITEN /*!< timestamp interrupt trigger enable */ -#define ENET_ALL_RX_TIMESTAMP ENET_PTP_TSCTL_ARFSEN /*!< all received frames are taken snapshot */ -#define ENET_NONTYPE_FRAME_SNAPSHOT ENET_PTP_TSCTL_ESEN /*!< take snapshot when received non type frame */ -#define ENET_IPV6_FRAME_SNAPSHOT ENET_PTP_TSCTL_IP6SEN /*!< take snapshot for IPv6 frame */ -#define ENET_IPV4_FRAME_SNAPSHOT ENET_PTP_TSCTL_IP4SEN /*!< take snapshot for IPv4 frame */ -#define ENET_PTP_FRAME_USE_MACADDRESS_FILTER ENET_PTP_TSCTL_MAFEN /*!< enable MAC address1-3 to filter the PTP frame */ - -/* ptp_ssinc register value */ -#define PTP_SSINC_STMSSI(regval) (BITS(0,7) & ((uint32_t)(regval) << 0)) /*!< write value to ENET_PTP_SSINC_STMSSI bit field */ - -/* ptp_tsl register value */ -#define GET_PTP_TSL_STMSS(regval) GET_BITS((uint32_t)(regval),0,30) /*!< get value of ENET_PTP_TSL_STMSS bit field */ - -#define ENET_PTP_TIME_POSITIVE ((uint32_t)0x00000000) /*!< time value is positive */ -#define ENET_PTP_TIME_NEGATIVE ENET_PTP_TSL_STS /*!< time value is negative */ - -#define GET_PTP_TSL_STS(regval) (((regval) & BIT(31)) >> (31U)) /*!< get value of ENET_PTP_TSL_STS bit field */ - -/* ptp_tsul register value */ -#define PTP_TSUL_TMSUSS(regval) (BITS(0,30) & ((uint32_t)(regval) << 0)) /*!< write value to ENET_PTP_TSUL_TMSUSS bit field */ - -#define ENET_PTP_ADD_TO_TIME ((uint32_t)0x00000000) /*!< timestamp update value is added to system time */ -#define ENET_PTP_SUBSTRACT_FROM_TIME ENET_PTP_TSUL_TMSUPNS /*!< timestamp update value is subtracted from system time */ - -/* ptp_ppsctl register value */ -#define PTP_PPSCTL_PPSOFC(regval) (BITS(0,3) & ((uint32_t)(regval) << 0)) /*!< write value to ENET_PTP_PPSCTL_PPSOFC bit field */ -#define ENET_PPSOFC_1HZ PTP_PPSCTL_PPSOFC(0) /*!< PPS output 1Hz frequency */ -#define ENET_PPSOFC_2HZ PTP_PPSCTL_PPSOFC(1) /*!< PPS output 2Hz frequency */ -#define ENET_PPSOFC_4HZ PTP_PPSCTL_PPSOFC(2) /*!< PPS output 4Hz frequency */ -#define ENET_PPSOFC_8HZ PTP_PPSCTL_PPSOFC(3) /*!< PPS output 8Hz frequency */ -#define ENET_PPSOFC_16HZ PTP_PPSCTL_PPSOFC(4) /*!< PPS output 16Hz frequency */ -#define ENET_PPSOFC_32HZ PTP_PPSCTL_PPSOFC(5) /*!< PPS output 32Hz frequency */ -#define ENET_PPSOFC_64HZ PTP_PPSCTL_PPSOFC(6) /*!< PPS output 64Hz frequency */ -#define ENET_PPSOFC_128HZ PTP_PPSCTL_PPSOFC(7) /*!< PPS output 128Hz frequency */ -#define ENET_PPSOFC_256HZ PTP_PPSCTL_PPSOFC(8) /*!< PPS output 256Hz frequency */ -#define ENET_PPSOFC_512HZ PTP_PPSCTL_PPSOFC(9) /*!< PPS output 512Hz frequency */ -#define ENET_PPSOFC_1024HZ PTP_PPSCTL_PPSOFC(10) /*!< PPS output 1024Hz frequency */ -#define ENET_PPSOFC_2048HZ PTP_PPSCTL_PPSOFC(11) /*!< PPS output 2048Hz frequency */ -#define ENET_PPSOFC_4096HZ PTP_PPSCTL_PPSOFC(12) /*!< PPS output 4096Hz frequency */ -#define ENET_PPSOFC_8192HZ PTP_PPSCTL_PPSOFC(13) /*!< PPS output 8192Hz frequency */ -#define ENET_PPSOFC_16384HZ PTP_PPSCTL_PPSOFC(14) /*!< PPS output 16384Hz frequency */ -#define ENET_PPSOFC_32768HZ PTP_PPSCTL_PPSOFC(15) /*!< PPS output 32768Hz frequency */ - -/* dma_bctl register value */ -#define DMA_BCTL_DPSL(regval) (BITS(2,6) & ((uint32_t)(regval) << 2)) /*!< write value to ENET_DMA_BCTL_DPSL bit field */ -#define GET_DMA_BCTL_DPSL(regval) GET_BITS((regval),2,6) /*!< get value of ENET_DMA_BCTL_DPSL bit field */ - -#define ENET_ENHANCED_DESCRIPTOR ENET_DMA_BCTL_DFM /*!< enhanced mode descriptor */ -#define ENET_NORMAL_DESCRIPTOR ((uint32_t)0x00000000) /*!< normal mode descriptor */ - -#define DMA_BCTL_PGBL(regval) (BITS(8,13) & ((uint32_t)(regval) << 8)) /*!< write value to ENET_DMA_BCTL_PGBL bit field */ -#define ENET_PGBL_1BEAT DMA_BCTL_PGBL(1) /*!< maximum number of beats is 1 */ -#define ENET_PGBL_2BEAT DMA_BCTL_PGBL(2) /*!< maximum number of beats is 2 */ -#define ENET_PGBL_4BEAT DMA_BCTL_PGBL(4) /*!< maximum number of beats is 4 */ -#define ENET_PGBL_8BEAT DMA_BCTL_PGBL(8) /*!< maximum number of beats is 8 */ -#define ENET_PGBL_16BEAT DMA_BCTL_PGBL(16) /*!< maximum number of beats is 16 */ -#define ENET_PGBL_32BEAT DMA_BCTL_PGBL(32) /*!< maximum number of beats is 32 */ -#define ENET_PGBL_4xPGBL_4BEAT (DMA_BCTL_PGBL(1)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats is 4 */ -#define ENET_PGBL_4xPGBL_8BEAT (DMA_BCTL_PGBL(2)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats is 8 */ -#define ENET_PGBL_4xPGBL_16BEAT (DMA_BCTL_PGBL(4)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats is 16 */ -#define ENET_PGBL_4xPGBL_32BEAT (DMA_BCTL_PGBL(8)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats is 32 */ -#define ENET_PGBL_4xPGBL_64BEAT (DMA_BCTL_PGBL(16)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats is 64 */ -#define ENET_PGBL_4xPGBL_128BEAT (DMA_BCTL_PGBL(32)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats is 128 */ - -#define DMA_BCTL_RTPR(regval) (BITS(14,15) & ((uint32_t)(regval) << 14)) /*!< write value to ENET_DMA_BCTL_RTPR bit field */ -#define ENET_ARBITRATION_RXTX_1_1 DMA_BCTL_RTPR(0) /*!< receive and transmit priority ratio is 1:1*/ -#define ENET_ARBITRATION_RXTX_2_1 DMA_BCTL_RTPR(1) /*!< receive and transmit priority ratio is 2:1*/ -#define ENET_ARBITRATION_RXTX_3_1 DMA_BCTL_RTPR(2) /*!< receive and transmit priority ratio is 3:1 */ -#define ENET_ARBITRATION_RXTX_4_1 DMA_BCTL_RTPR(3) /*!< receive and transmit priority ratio is 4:1 */ -#define ENET_ARBITRATION_RXPRIORTX ENET_DMA_BCTL_DAB /*!< RxDMA has higher priority than TxDMA */ - -#define ENET_FIXED_BURST_ENABLE ENET_DMA_BCTL_FB /*!< AHB can only use SINGLE/INCR4/INCR8/INCR16 during start of normal burst transfers */ -#define ENET_FIXED_BURST_DISABLE ((uint32_t)0x00000000) /*!< AHB can use SINGLE/INCR burst transfer operations */ - -#define DMA_BCTL_RXDP(regval) (BITS(17,22) & ((uint32_t)(regval) << 17)) /*!< write value to ENET_DMA_BCTL_RXDP bit field */ -#define ENET_RXDP_1BEAT DMA_BCTL_RXDP(1) /*!< maximum number of beats 1 */ -#define ENET_RXDP_2BEAT DMA_BCTL_RXDP(2) /*!< maximum number of beats 2 */ -#define ENET_RXDP_4BEAT DMA_BCTL_RXDP(4) /*!< maximum number of beats 4 */ -#define ENET_RXDP_8BEAT DMA_BCTL_RXDP(8) /*!< maximum number of beats 8 */ -#define ENET_RXDP_16BEAT DMA_BCTL_RXDP(16) /*!< maximum number of beats 16 */ -#define ENET_RXDP_32BEAT DMA_BCTL_RXDP(32) /*!< maximum number of beats 32 */ -#define ENET_RXDP_4xPGBL_4BEAT (DMA_BCTL_RXDP(1)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats 4 */ -#define ENET_RXDP_4xPGBL_8BEAT (DMA_BCTL_RXDP(2)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats 8 */ -#define ENET_RXDP_4xPGBL_16BEAT (DMA_BCTL_RXDP(4)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats 16 */ -#define ENET_RXDP_4xPGBL_32BEAT (DMA_BCTL_RXDP(8)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats 32 */ -#define ENET_RXDP_4xPGBL_64BEAT (DMA_BCTL_RXDP(16)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats 64 */ -#define ENET_RXDP_4xPGBL_128BEAT (DMA_BCTL_RXDP(32)|ENET_DMA_BCTL_FPBL) /*!< maximum number of beats 128 */ - -#define ENET_RXTX_DIFFERENT_PGBL ENET_DMA_BCTL_UIP /*!< RxDMA uses the RXDP[5:0], while TxDMA uses the PGBL[5:0] */ -#define ENET_RXTX_SAME_PGBL ((uint32_t)0x00000000) /*!< RxDMA/TxDMA uses PGBL[5:0] */ - -#define ENET_ADDRESS_ALIGN_ENABLE ENET_DMA_BCTL_AA /*!< enabled address-aligned */ -#define ENET_ADDRESS_ALIGN_DISABLE ((uint32_t)0x00000000) /*!< disable address-aligned */ - -#define ENET_MIXED_BURST_ENABLE ENET_DMA_BCTL_MB /*!< AHB master interface transfer burst length greater than 16 with INCR */ -#define ENET_MIXED_BURST_DISABLE ((uint32_t)0x00000000) /*!< AHB master interface only transfer fixed burst length with 16 and below */ - -/* dma_stat register value */ -#define GET_DMA_STAT_RP(regval) GET_BITS((uint32_t)(regval),17,19) /*!< get value of ENET_DMA_STAT_RP bit field */ -#define ENET_RX_STATE_STOPPED ((uint32_t)0x00000000) /*!< reset or stop rx command issued */ -#define ENET_RX_STATE_FETCHING BIT(17) /*!< fetching the Rx descriptor */ -#define ENET_RX_STATE_WAITING (BIT(17)|BIT(18)) /*!< waiting for receive packet */ -#define ENET_RX_STATE_SUSPENDED BIT(19) /*!< Rx descriptor unavailable */ -#define ENET_RX_STATE_CLOSING (BIT(17)|BIT(19)) /*!< closing receive descriptor */ -#define ENET_RX_STATE_QUEUING ENET_DMA_STAT_RP /*!< transferring the receive packet data from recevie buffer to host memory */ - -#define GET_DMA_STAT_TP(regval) GET_BITS((uint32_t)(regval),20,22) /*!< get value of ENET_DMA_STAT_TP bit field */ -#define ENET_TX_STATE_STOPPED ((uint32_t)0x00000000) /*!< reset or stop Tx Command issued */ -#define ENET_TX_STATE_FETCHING BIT(20) /*!< fetching the Tx descriptor */ -#define ENET_TX_STATE_WAITING BIT(21) /*!< waiting for status */ -#define ENET_TX_STATE_READING (BIT(20)|BIT(21)) /*!< reading the data from host memory buffer and queuing it to transmit buffer */ -#define ENET_TX_STATE_SUSPENDED (BIT(21)|BIT(22)) /*!< Tx descriptor unavailabe or transmit buffer underflow */ -#define ENET_TX_STATE_CLOSING ENET_DMA_STAT_TP /*!< closing Tx descriptor */ - -#define GET_DMA_STAT_EB(regval) GET_BITS((uint32_t)(regval),23,25) /*!< get value of ENET_DMA_STAT_EB bit field */ -#define ENET_ERROR_TXDATA_TRANSFER BIT(23) /*!< error during data transfer by TxDMA or RxDMA */ -#define ENET_ERROR_READ_TRANSFER BIT(24) /*!< error during write transfer or read transfer */ -#define ENET_ERROR_DESC_ACCESS BIT(25) /*!< error during descriptor or buffer access */ - -/* dma_ctl register value */ -#define DMA_CTL_RTHC(regval) (BITS(3,4) & ((uint32_t)(regval) << 3)) /*!< write value to ENET_DMA_CTL_RTHC bit field */ -#define ENET_RX_THRESHOLD_64BYTES DMA_CTL_RTHC(0) /*!< threshold level is 64 Bytes */ -#define ENET_RX_THRESHOLD_32BYTES DMA_CTL_RTHC(1) /*!< threshold level is 32 Bytes */ -#define ENET_RX_THRESHOLD_96BYTES DMA_CTL_RTHC(2) /*!< threshold level is 96 Bytes */ -#define ENET_RX_THRESHOLD_128BYTES DMA_CTL_RTHC(3) /*!< threshold level is 128 Bytes */ - -#define DMA_CTL_TTHC(regval) (BITS(14,16) & ((uint32_t)(regval) << 14)) /*!< write value to ENET_DMA_CTL_TTHC bit field */ -#define ENET_TX_THRESHOLD_64BYTES DMA_CTL_TTHC(0) /*!< threshold level is 64 Bytes */ -#define ENET_TX_THRESHOLD_128BYTES DMA_CTL_TTHC(1) /*!< threshold level is 128 Bytes */ -#define ENET_TX_THRESHOLD_192BYTES DMA_CTL_TTHC(2) /*!< threshold level is 192 Bytes */ -#define ENET_TX_THRESHOLD_256BYTES DMA_CTL_TTHC(3) /*!< threshold level is 256 Bytes */ -#define ENET_TX_THRESHOLD_40BYTES DMA_CTL_TTHC(4) /*!< threshold level is 40 Bytes */ -#define ENET_TX_THRESHOLD_32BYTES DMA_CTL_TTHC(5) /*!< threshold level is 32 Bytes */ -#define ENET_TX_THRESHOLD_24BYTES DMA_CTL_TTHC(6) /*!< threshold level is 24 Bytes */ -#define ENET_TX_THRESHOLD_16BYTES DMA_CTL_TTHC(7) /*!< threshold level is 16 Bytes */ - -#define ENET_TCPIP_CKSUMERROR_ACCEPT ENET_DMA_CTL_DTCERFD /*!< Rx frame with only payload error but no other errors will not be dropped */ -#define ENET_TCPIP_CKSUMERROR_DROP ((uint32_t)0x00000000) /*!< all error frames will be dropped when FERF = 0 */ - -#define ENET_RX_MODE_STOREFORWARD ENET_DMA_CTL_RSFD /*!< RxFIFO operates in store-and-forward mode */ -#define ENET_RX_MODE_CUTTHROUGH ((uint32_t)0x00000000) /*!< RxFIFO operates in cut-through mode */ - -#define ENET_FLUSH_RXFRAME_ENABLE ((uint32_t)0x00000000) /*!< RxDMA flushes all frames */ -#define ENET_FLUSH_RXFRAME_DISABLE ENET_DMA_CTL_DAFRF /*!< RxDMA does not flush any frames */ -#define ENET_NO_FLUSH_RXFRAME ENET_DMA_CTL_DAFRF /*!< RxDMA flushes frames function */ - -#define ENET_TX_MODE_STOREFORWARD ENET_DMA_CTL_TSFD /*!< TxFIFO operates in store-and-forward mode */ -#define ENET_TX_MODE_CUTTHROUGH ((uint32_t)0x00000000) /*!< TxFIFO operates in cut-through mode */ - -#define ENET_FORWARD_ERRFRAMES_ENABLE (ENET_DMA_CTL_FERF<<2) /*!< all frame received with error except runt error are forwarded to memory */ -#define ENET_FORWARD_ERRFRAMES_DISABLE ((uint32_t)0x00000000) /*!< RxFIFO drop error frame */ -#define ENET_FORWARD_ERRFRAMES (ENET_DMA_CTL_FERF<<2) /*!< the function that all frame received with error except runt error are forwarded to memory */ - -#define ENET_FORWARD_UNDERSZ_GOODFRAMES_ENABLE (ENET_DMA_CTL_FUF<<2) /*!< forward undersized good frames */ -#define ENET_FORWARD_UNDERSZ_GOODFRAMES_DISABLE ((uint32_t)0x00000000) /*!< RxFIFO drops all frames whose length is less than 64 bytes */ -#define ENET_FORWARD_UNDERSZ_GOODFRAMES (ENET_DMA_CTL_FUF<<2) /*!< the function that forwarding undersized good frames */ - -#define ENET_SECONDFRAME_OPT_ENABLE ENET_DMA_CTL_OSF /*!< TxDMA controller operate on second frame mode enable*/ -#define ENET_SECONDFRAME_OPT_DISABLE ((uint32_t)0x00000000) /*!< TxDMA controller operate on second frame mode disable */ -#define ENET_SECONDFRAME_OPT ENET_DMA_CTL_OSF /*!< TxDMA controller operate on second frame function */ -/* dma_mfbocnt register value */ -#define GET_DMA_MFBOCNT_MSFC(regval) GET_BITS((regval),0,15) /*!< get value of ENET_DMA_MFBOCNT_MSFC bit field */ - -#define GET_DMA_MFBOCNT_MSFA(regval) GET_BITS((regval),17,27) /*!< get value of ENET_DMA_MFBOCNT_MSFA bit field */ - -/* dma_rswdc register value */ -#define DMA_RSWDC_WDCFRS(regval) (BITS(0,7) & ((uint32_t)(regval) << 0)) /*!< write value to ENET_DMA_RSWDC_WDCFRS bit field */ - -/* dma tx descriptor tdes0 register value */ -#define TDES0_CONT(regval) (BITS(3,6) & ((uint32_t)(regval) << 3)) /*!< write value to ENET DMA TDES0 CONT bit field */ -#define GET_TDES0_COCNT(regval) GET_BITS((regval),3,6) /*!< get value of ENET DMA TDES0 CONT bit field */ - -#define TDES0_CM(regval) (BITS(22,23) & ((uint32_t)(regval) << 22)) /*!< write value to ENET DMA TDES0 CM bit field */ -#define ENET_CHECKSUM_DISABLE TDES0_CM(0) /*!< checksum insertion disabled */ -#define ENET_CHECKSUM_IPV4HEADER TDES0_CM(1) /*!< only IP header checksum calculation and insertion are enabled */ -#define ENET_CHECKSUM_TCPUDPICMP_SEGMENT TDES0_CM(2) /*!< TCP/UDP/ICMP checksum insertion calculated but pseudo-header */ -#define ENET_CHECKSUM_TCPUDPICMP_FULL TDES0_CM(3) /*!< TCP/UDP/ICMP checksum insertion fully calculated */ - -/* dma tx descriptor tdes1 register value */ -#define TDES1_TB1S(regval) (BITS(0,12) & ((uint32_t)(regval) << 0)) /*!< write value to ENET DMA TDES1 TB1S bit field */ - -#define TDES1_TB2S(regval) (BITS(16,28) & ((uint32_t)(regval) << 16)) /*!< write value to ENET DMA TDES1 TB2S bit field */ - -/* dma rx descriptor rdes0 register value */ -#define RDES0_FRML(regval) (BITS(16,29) & ((uint32_t)(regval) << 16)) /*!< write value to ENET DMA RDES0 FRML bit field */ -#define GET_RDES0_FRML(regval) GET_BITS((regval),16,29) /*!< get value of ENET DMA RDES0 FRML bit field */ - -/* dma rx descriptor rdes1 register value */ -#define ENET_RECEIVE_COMPLETE_INT_ENABLE ((uint32_t)0x00000000U) /*!< RS bit immediately set after Rx completed */ -#define ENET_RECEIVE_COMPLETE_INT_DISABLE ENET_RDES1_DINTC /*!< RS bit not immediately set after Rx completed */ - -#define GET_RDES1_RB1S(regval) GET_BITS((regval),0,12) /*!< get value of ENET DMA RDES1 RB1S bit field */ - -#define GET_RDES1_RB2S(regval) GET_BITS((regval),16,28) /*!< get value of ENET DMA RDES1 RB2S bit field */ - -/* dma rx descriptor rdes4 register value */ -#define RDES4_IPPLDT(regval) (BITS(0,2) & ((uint32_t)(regval) << 0)) /*!< write value to ENET DMA RDES4 IPPLDT bit field */ -#define GET_RDES4_IPPLDT(regval) GET_BITS((regval),0,2) /*!< get value of ENET DMA RDES4 IPPLDT bit field */ - -#define RDES4_PTPMT(regval) (BITS(8,11) & ((uint32_t)(regval) << 8)) /*!< write value to ENET DMA RDES4 PTPMT bit field */ -#define GET_RDES4_PTPMT(regval) GET_BITS((regval),8,11) /*!< get value of ENET DMA RDES4 PTPMT bit field */ - -/* ENET register mask value */ -#define MAC_CFG_MASK ((uint32_t)0xFD30810FU) /*!< ENET_MAC_CFG register mask */ -#define MAC_FCTL_MASK ((uint32_t)0x0000FF41U) /*!< ENET_MAC_FCTL register mask */ -#define DMA_CTL_MASK ((uint32_t)0xF8DE3F23U) /*!< ENET_DMA_CTL register mask */ -#define DMA_BCTL_MASK ((uint32_t)0xF800007DU) /*!< ENET_DMA_BCTL register mask */ -#define ENET_MSC_PRESET_MASK (~(ENET_MSC_CTL_PMC | ENET_MSC_CTL_AFHPM)) /*!< ENET_MSC_CTL preset mask */ - -#ifdef SELECT_DESCRIPTORS_ENHANCED_MODE -#define ETH_DMATXDESC_SIZE ((uint32_t)0x00000020U) /*!< TxDMA enhanced descriptor size */ -#define ETH_DMARXDESC_SIZE ((uint32_t)0x00000020U) /*!< RxDMA enhanced descriptor size */ -#else -#define ETH_DMATXDESC_SIZE ((uint32_t)0x00000010U) /*!< TxDMA descriptor size */ -#define ETH_DMARXDESC_SIZE ((uint32_t)0x00000010U) /*!< RxDMA descriptor size */ -#endif /* SELECT_DESCRIPTORS_ENHANCED_MODE */ - -/* ENET remote wake-up frame register length */ -#define ETH_WAKEUP_REGISTER_LENGTH 8U /*!< remote wake-up frame register length */ - -/* ENET frame size */ -#define ENET_MAX_FRAME_SIZE 1524U /*!< header + frame_extra + payload + CRC */ - -/* ENET delay timeout */ -#define ENET_DELAY_TO ((uint32_t)0x0004FFFFU) /*!< ENET delay timeout */ -#define ENET_RESET_TO ((uint32_t)0x000004FFU) /*!< ENET reset timeout */ - - - -/* function declarations */ -/* main function */ -/* deinitialize the ENET, and reset structure parameters for ENET initialization */ -void enet_deinit(void); -/* configure the parameters which are usually less cared for initialization */ -void enet_initpara_config(enet_option_enum option, uint32_t para); -/* initialize ENET peripheral with generally concerned parameters and the less cared parameters */ -ErrStatus enet_init(enet_mediamode_enum mediamode, enet_chksumconf_enum checksum, enet_frmrecept_enum recept); -/* reset all core internal registers located in CLK_TX and CLK_RX */ -ErrStatus enet_software_reset(void); -/* check receive frame valid and return frame size */ -uint32_t enet_rxframe_size_get(void); -/* initialize the dma tx/rx descriptors's parameters in chain mode */ -void enet_descriptors_chain_init(enet_dmadirection_enum direction); -/* initialize the dma tx/rx descriptors's parameters in ring mode */ -void enet_descriptors_ring_init(enet_dmadirection_enum direction); -/* handle current received frame data to application buffer */ -ErrStatus enet_frame_receive(uint8_t *buffer, uint32_t bufsize); -/* handle current received frame but without data copy to application buffer */ -#define ENET_NOCOPY_FRAME_RECEIVE() enet_frame_receive(NULL, 0U) -/* handle application buffer data to transmit it */ -ErrStatus enet_frame_transmit(uint8_t *buffer, uint32_t length); -/* handle current transmit frame but without data copy from application buffer */ -#define ENET_NOCOPY_FRAME_TRANSMIT(len) enet_frame_transmit(NULL, (len)) -/* configure the transmit IP frame checksum offload calculation and insertion */ -void enet_transmit_checksum_config(enet_descriptors_struct *desc, uint32_t checksum); -/* ENET Tx and Rx function enable (include MAC and DMA module) */ -void enet_enable(void); -/* ENET Tx and Rx function disable (include MAC and DMA module) */ -void enet_disable(void); -/* configure MAC address */ -void enet_mac_address_set(enet_macaddress_enum mac_addr, uint8_t paddr[]); -/* get MAC address */ -void enet_mac_address_get(enet_macaddress_enum mac_addr, uint8_t paddr[]); - -/* get the ENET MAC/MSC/PTP/DMA status flag */ -FlagStatus enet_flag_get(enet_flag_enum enet_flag); -/* clear the ENET DMA status flag */ -void enet_flag_clear(enet_flag_clear_enum enet_flag); -/* enable ENET MAC/MSC/DMA interrupt */ -void enet_interrupt_enable(enet_int_enum enet_int); -/* disable ENET MAC/MSC/DMA interrupt */ -void enet_interrupt_disable(enet_int_enum enet_int); -/* get ENET MAC/MSC/DMA interrupt flag */ -FlagStatus enet_interrupt_flag_get(enet_int_flag_enum int_flag); -/* clear ENET DMA interrupt flag */ -void enet_interrupt_flag_clear(enet_int_flag_clear_enum int_flag_clear); - -/* MAC function */ -/* ENET Tx function enable (include MAC and DMA module) */ -void enet_tx_enable(void); -/* ENET Tx function disable (include MAC and DMA module) */ -void enet_tx_disable(void); -/* ENET Rx function enable (include MAC and DMA module) */ -void enet_rx_enable(void); -/* ENET Rx function disable (include MAC and DMA module) */ -void enet_rx_disable(void); -/* put registers value into the application buffer */ -void enet_registers_get(enet_registers_type_enum type, uint32_t *preg, uint32_t num); -/* get the enet debug status from the debug register */ -uint32_t enet_debug_status_get(uint32_t mac_debug); -/* enable the MAC address filter */ -void enet_address_filter_enable(enet_macaddress_enum mac_addr); -/* disable the MAC address filter */ -void enet_address_filter_disable(enet_macaddress_enum mac_addr); -/* configure the MAC address filter */ -void enet_address_filter_config(enet_macaddress_enum mac_addr, uint32_t addr_mask, uint32_t filter_type); -/* PHY interface configuration (configure SMI clock and reset PHY chip) */ -ErrStatus enet_phy_config(void); -/* write to/read from a PHY register */ -ErrStatus enet_phy_write_read(enet_phydirection_enum direction, uint16_t phy_address, uint16_t phy_reg, uint16_t *pvalue); -/* enable the loopback function of phy chip */ -ErrStatus enet_phyloopback_enable(void); -/* disable the loopback function of phy chip */ -ErrStatus enet_phyloopback_disable(void); -/* enable ENET forward feature */ -void enet_forward_feature_enable(uint32_t feature); -/* disable ENET forward feature */ -void enet_forward_feature_disable(uint32_t feature); -/* enable ENET fliter feature */ -void enet_fliter_feature_enable(uint32_t feature); -/* disable ENET fliter feature */ -void enet_fliter_feature_disable(uint32_t feature); - -/* flow control function */ -/* generate the pause frame, ENET will send pause frame after enable transmit flow control */ -ErrStatus enet_pauseframe_generate(void); -/* configure the pause frame detect type */ -void enet_pauseframe_detect_config(uint32_t detect); -/* configure the pause frame parameters */ -void enet_pauseframe_config(uint32_t pausetime, uint32_t pause_threshold); -/* configure the threshold of the flow control(deactive and active threshold) */ -void enet_flowcontrol_threshold_config(uint32_t deactive, uint32_t active); -/* enable ENET flow control feature */ -void enet_flowcontrol_feature_enable(uint32_t feature); -/* disable ENET flow control feature */ -void enet_flowcontrol_feature_disable(uint32_t feature); - -/* DMA function */ -/* get the dma transmit/receive process state */ -uint32_t enet_dmaprocess_state_get(enet_dmadirection_enum direction); -/* poll the dma transmission/reception enable */ -void enet_dmaprocess_resume(enet_dmadirection_enum direction); -/* check and recover the Rx process */ -void enet_rxprocess_check_recovery(void); -/* flush the ENET transmit fifo, and wait until the flush operation completes */ -ErrStatus enet_txfifo_flush(void); -/* get the transmit/receive address of current descriptor, or current buffer, or descriptor table */ -uint32_t enet_current_desc_address_get(enet_desc_reg_enum addr_get); -/* get the Tx or Rx descriptor information */ -uint32_t enet_desc_information_get(enet_descriptors_struct *desc, enet_descstate_enum info_get); -/* get the number of missed frames during receiving */ -void enet_missed_frame_counter_get(uint32_t *rxfifo_drop, uint32_t *rxdma_drop); - -/* descriptor function */ -/* get the bit flag of ENET dma descriptor */ -FlagStatus enet_desc_flag_get(enet_descriptors_struct *desc, uint32_t desc_flag); -/* set the bit flag of ENET dma tx descriptor */ -void enet_desc_flag_set(enet_descriptors_struct *desc, uint32_t desc_flag); -/* clear the bit flag of ENET dma tx descriptor */ -void enet_desc_flag_clear(enet_descriptors_struct *desc, uint32_t desc_flag); -/* when receiving the completed, set RS bit in ENET_DMA_STAT register will immediately set */ -void enet_rx_desc_immediate_receive_complete_interrupt(enet_descriptors_struct *desc); -/* when receiving the completed, set RS bit in ENET_DMA_STAT register will is set after a configurable delay time */ -void enet_rx_desc_delay_receive_complete_interrupt(enet_descriptors_struct *desc, uint32_t delay_time); -/* drop current receive frame */ -void enet_rxframe_drop(void); -/* enable DMA feature */ -void enet_dma_feature_enable(uint32_t feature); -/* disable DMA feature */ -void enet_dma_feature_disable(uint32_t feature); - - -/* special enhanced mode function */ -#ifdef SELECT_DESCRIPTORS_ENHANCED_MODE -/* get the bit of extended status flag in ENET DMA descriptor */ -uint32_t enet_rx_desc_enhanced_status_get(enet_descriptors_struct *desc, uint32_t desc_status); -/* configure descriptor to work in enhanced mode */ -void enet_desc_select_enhanced_mode(void); -/* initialize the dma Tx/Rx descriptors's parameters in enhanced chain mode with ptp function */ -void enet_ptp_enhanced_descriptors_chain_init(enet_dmadirection_enum direction); -/* initialize the dma Tx/Rx descriptors's parameters in enhanced ring mode with ptp function */ -void enet_ptp_enhanced_descriptors_ring_init(enet_dmadirection_enum direction); -/* receive a packet data with timestamp values to application buffer, when the DMA is in enhanced mode */ -ErrStatus enet_ptpframe_receive_enhanced_mode(uint8_t *buffer, uint32_t bufsize, uint32_t timestamp[]); -/* handle current received frame but without data copy to application buffer in PTP enhanced mode */ -#define ENET_NOCOPY_PTPFRAME_RECEIVE_ENHANCED_MODE(ptr) enet_ptpframe_receive_enhanced_mode(NULL, 0U, (ptr)) -/* send data with timestamp values in application buffer as a transmit packet, when the DMA is in enhanced mode */ -ErrStatus enet_ptpframe_transmit_enhanced_mode(uint8_t *buffer, uint32_t length, uint32_t timestamp[]); -/* handle current transmit frame but without data copy from application buffer in PTP enhanced mode */ -#define ENET_NOCOPY_PTPFRAME_TRANSMIT_ENHANCED_MODE(len, ptr) enet_ptpframe_transmit_enhanced_mode(NULL, (len), (ptr)) - -#else - -/* configure descriptor to work in normal mode */ -void enet_desc_select_normal_mode(void); -/* initialize the dma Tx/Rx descriptors's parameters in normal chain mode with ptp function */ -void enet_ptp_normal_descriptors_chain_init(enet_dmadirection_enum direction, enet_descriptors_struct *desc_ptptab); -/* initialize the dma Tx/Rx descriptors's parameters in normal ring mode with ptp function */ -void enet_ptp_normal_descriptors_ring_init(enet_dmadirection_enum direction, enet_descriptors_struct *desc_ptptab); -/* receive a packet data with timestamp values to application buffer, when the DMA is in normal mode */ -ErrStatus enet_ptpframe_receive_normal_mode(uint8_t *buffer, uint32_t bufsize, uint32_t timestamp[]); -/* handle current received frame but without data copy to application buffer in PTP normal mode */ -#define ENET_NOCOPY_PTPFRAME_RECEIVE_NORMAL_MODE(ptr) enet_ptpframe_receive_normal_mode(NULL, 0U, (ptr)) -/* send data with timestamp values in application buffer as a transmit packet, when the DMA is in normal mode */ -ErrStatus enet_ptpframe_transmit_normal_mode(uint8_t *buffer, uint32_t length, uint32_t timestamp[]); -/* handle current transmit frame but without data copy from application buffer in PTP normal mode */ -#define ENET_NOCOPY_PTPFRAME_TRANSMIT_NORMAL_MODE(len, ptr) enet_ptpframe_transmit_normal_mode(NULL, (len), (ptr)) - -#endif /* SELECT_DESCRIPTORS_ENHANCED_MODE */ - -/* WUM function */ -/* wakeup frame filter register pointer reset */ -void enet_wum_filter_register_pointer_reset(void); -/* set the remote wakeup frame registers */ -void enet_wum_filter_config(uint32_t pdata[]); -/* enable wakeup management features */ -void enet_wum_feature_enable(uint32_t feature); -/* disable wakeup management features */ -void enet_wum_feature_disable(uint32_t feature); - -/* MSC function */ -/* reset the MAC statistics counters */ -void enet_msc_counters_reset(void); -/* enable the MAC statistics counter features */ -void enet_msc_feature_enable(uint32_t feature); -/* disable the MAC statistics counter features */ -void enet_msc_feature_disable(uint32_t feature); -/* configure MAC statistics counters preset mode */ -void enet_msc_counters_preset_config(enet_msc_preset_enum mode); -/* get MAC statistics counter */ -uint32_t enet_msc_counters_get(enet_msc_counter_enum counter); - -/* PTP function */ -/* enable the PTP features */ -void enet_ptp_feature_enable(uint32_t feature); -/* disable the PTP features */ -void enet_ptp_feature_disable(uint32_t feature); -/* configure the PTP timestamp function */ -ErrStatus enet_ptp_timestamp_function_config(enet_ptp_function_enum func); -/* configure the PTP system time subsecond increment value */ -void enet_ptp_subsecond_increment_config(uint32_t subsecond); -/* adjusting the PTP clock frequency only in fine update mode */ -void enet_ptp_timestamp_addend_config(uint32_t add); -/* initializing or adding/subtracting to second of the PTP system time */ -void enet_ptp_timestamp_update_config(uint32_t sign, uint32_t second, uint32_t subsecond); -/* configure the PTP expected target time */ -void enet_ptp_expected_time_config(uint32_t second, uint32_t nanosecond); -/* get the PTP current system time */ -void enet_ptp_system_time_get(enet_ptp_systime_struct *systime_struct); -/* configure the PPS output frequency */ -void enet_ptp_pps_output_frequency_config(uint32_t freq); - - -/* internal function */ -/* reset the ENET initpara struct, call it before using enet_initpara_config() */ -void enet_initpara_reset(void); - - -#endif /* GD32F4XX_ENET_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_exmc.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_exmc.h deleted file mode 100644 index 0efe5e5c27..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_exmc.h +++ /dev/null @@ -1,809 +0,0 @@ -/*! - \file gd32f4xx_exmc.h - \brief definitions for the EXMC - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_EXMC_H -#define GD32F4XX_EXMC_H - -#include "gd32f4xx.h" - -/* EXMC definitions */ -#define EXMC (EXMC_BASE) /*!< EXMC register base address */ -#define EXMC_NOR_PSRAM (EXMC_BASE - 0x40000000) /*!< EXMC NOR/PSRAM base address */ -#define EXMC_NAND (EXMC_BASE - 0x30000000) /*!< EXMC NAND base address */ -#define EXMC_PCCARD (EXMC_BASE - 0x10000000) /*!< EXMC PC card base address */ -#define EXMC_SDRAM (EXMC_BASE + 0x20000000) /*!< EXMC SDRAM base address */ - -/* registers definitions */ -/* NOR/PSRAM */ -#define EXMC_SNCTL0 REG32(EXMC + 0x00U) /*!< EXMC SRAM/NOR flash control register for region0 */ -#define EXMC_SNTCFG0 REG32(EXMC + 0x04U) /*!< EXMC SRAM/NOR flash timing configuration register for region0 */ -#define EXMC_SNWTCFG0 REG32(EXMC + 0x104U) /*!< EXMC SRAM/NOR flash write timing configuration register for region0 */ - -#define EXMC_SNCTL1 REG32(EXMC + 0x08U) /*!< EXMC SRAM/NOR flash control register for region1 */ -#define EXMC_SNTCFG1 REG32(EXMC + 0x0CU) /*!< EXMC SRAM/NOR flash timing configuration register for region1 */ -#define EXMC_SNWTCFG1 REG32(EXMC + 0x10CU) /*!< EXMC SRAM/NOR flash write timing configuration register for region1 */ - -#define EXMC_SNCTL2 REG32(EXMC + 0x10U) /*!< EXMC SRAM/NOR flash control register for region2 */ -#define EXMC_SNTCFG2 REG32(EXMC + 0x14U) /*!< EXMC SRAM/NOR flash timing configuration register for region2 */ -#define EXMC_SNWTCFG2 REG32(EXMC + 0x114U) /*!< EXMC SRAM/NOR flash write timing configuration register for region2 */ - -#define EXMC_SNCTL3 REG32(EXMC + 0x18U) /*!< EXMC SRAM/NOR flash control register for region3 */ -#define EXMC_SNTCFG3 REG32(EXMC + 0x1CU) /*!< EXMC SRAM/NOR flash timing configuration register for region3 */ -#define EXMC_SNWTCFG3 REG32(EXMC + 0x11CU) /*!< EXMC SRAM/NOR flash write timing configuration register for region3 */ - -/* NAND/PC card */ -#define EXMC_NPCTL1 REG32(EXMC + 0x60U) /*!< EXMC NAND/PC card control register for bank1 */ -#define EXMC_NPINTEN1 REG32(EXMC + 0x64U) /*!< EXMC NAND/PC card interrupt enable register for bank1 */ -#define EXMC_NPCTCFG1 REG32(EXMC + 0x68U) /*!< EXMC NAND/PC card common space timing configuration register for bank1 */ -#define EXMC_NPATCFG1 REG32(EXMC + 0x6CU) /*!< EXMC NAND/PC card attribute space timing configuration register for bank1 */ -#define EXMC_NECC1 REG32(EXMC + 0x74U) /*!< EXMC NAND ECC register */ - -#define EXMC_NPCTL2 REG32(EXMC + 0x80U) /*!< EXMC NAND/PC card control register for bank2 */ -#define EXMC_NPINTEN2 REG32(EXMC + 0x84U) /*!< EXMC NAND/PC card interrupt enable register for bank2 */ -#define EXMC_NPCTCFG2 REG32(EXMC + 0x88U) /*!< EXMC NAND/PC card common space timing configuration register for bank2 */ -#define EXMC_NPATCFG2 REG32(EXMC + 0x8CU) /*!< EXMC NAND/PC card attribute space timing configuration register for bank2 */ -#define EXMC_NECC2 REG32(EXMC + 0x94U) /*!< EXMC NAND ECC register */ - -#define EXMC_NPCTL3 REG32(EXMC + 0xA0U) /*!< EXMC NAND/PC card control register for bank3 */ -#define EXMC_NPINTEN3 REG32(EXMC + 0xA4U) /*!< EXMC NAND/PC card interrupt enable register for bank3 */ -#define EXMC_NPCTCFG3 REG32(EXMC + 0xA8U) /*!< EXMC NAND/PC card common space timing configuration register for bank3 */ -#define EXMC_NPATCFG3 REG32(EXMC + 0xACU) /*!< EXMC NAND/PC card attribute space timing configuration register for bank3 */ -#define EXMC_PIOTCFG3 REG32(EXMC + 0xB0U) /*!< EXMC PC card I/O space timing configuration register for bank3 */ - -/* SDRAM */ -#define EXMC_SDCTL0 REG32(EXMC + 0x140U) /*!< EXMC SDRAM control register for device0 */ -#define EXMC_SDTCFG0 REG32(EXMC + 0x148U) /*!< EXMC SDRAM timing configuration register register for device0 */ - -#define EXMC_SDCTL1 REG32(EXMC + 0x144U) /*!< EXMC SDRAM control register for device1 */ -#define EXMC_SDTCFG1 REG32(EXMC + 0x14CU) /*!< EXMC SDRAM timing configuration register register for device1 */ - -#define EXMC_SDCMD REG32(EXMC + 0x150U) /*!< EXMC SDRAM command register */ -#define EXMC_SDARI REG32(EXMC + 0x154U) /*!< EXMC SDRAM auto-refresh interval register */ -#define EXMC_SDSTAT REG32(EXMC + 0x158U) /*!< EXMC SDRAM status register */ -#define EXMC_SDRSCTL REG32(EXMC + 0x180U) /*!< EXMC SDRAM read sample control register */ - -/* SQPI PSRAM */ -#define EXMC_SINIT REG32(EXMC + 0x310U) /*!< EXMC SPI initialization register */ -#define EXMC_SRCMD REG32(EXMC + 0x320U) /*!< EXMC SPI read command register */ -#define EXMC_SWCMD REG32(EXMC + 0x330U) /*!< EXMC SPI write command register */ -#define EXMC_SIDL REG32(EXMC + 0x340U) /*!< EXMC SPI ID low register */ -#define EXMC_SIDH REG32(EXMC + 0x350U) /*!< EXMC SPI ID high register */ - -/* bits definitions */ -/* EXMC_SNCTLx,x=0..3 */ -#define EXMC_SNCTL_NRBKEN BIT(0) /*!< NOR bank enable */ -#define EXMC_SNCTL_NRMUX BIT(1) /*!< NOR bank memory address/data multiplexing enable */ -#define EXMC_SNCTL_NRTP BITS(2,3) /*!< NOR bank memory type */ -#define EXMC_SNCTL_NRW BITS(4,5) /*!< NOR bank memory data bus width */ -#define EXMC_SNCTL_NREN BIT(6) /*!< NOR flash access enable */ -#define EXMC_SNCTL_SBRSTEN BIT(8) /*!< synchronous burst enable */ -#define EXMC_SNCTL_NRWTPOL BIT(9) /*!< NWAIT signal polarity */ -#define EXMC_SNCTL_WRAPEN BIT(10) /*!< wrapped burst mode enable */ -#define EXMC_SNCTL_NRWTCFG BIT(11) /*!< NWAIT signal configuration, only work in synchronous mode */ -#define EXMC_SNCTL_WREN BIT(12) /*!< write enable */ -#define EXMC_SNCTL_NRWTEN BIT(13) /*!< NWAIT signal enable */ -#define EXMC_SNCTL_EXMODEN BIT(14) /*!< extended mode enable */ -#define EXMC_SNCTL_ASYNCWAIT BIT(15) /*!< asynchronous wait enable */ -#define EXMC_SNCTL_CPS BITS(16,18) /*!< CRAM page size */ -#define EXMC_SNCTL_SYNCWR BIT(19) /*!< synchronous write config */ -#define EXMC_SNCTL_CCK BIT(20) /*!< consecutive clock config */ - -/* EXMC_SNTCFGx,x=0..3 */ -#define EXMC_SNTCFG_ASET BITS(0,3) /*!< asynchronous address setup time */ -#define EXMC_SNTCFG_AHLD BITS(4,7) /*!< asynchronous address hold time */ -#define EXMC_SNTCFG_DSET BITS(8,15) /*!< asynchronous data setup time */ -#define EXMC_SNTCFG_BUSLAT BITS(16,19) /*!< bus latency */ -#define EXMC_SNTCFG_CKDIV BITS(20,23) /*!< synchronous clock divide ratio */ -#define EXMC_SNTCFG_DLAT BITS(24,27) /*!< synchronous data latency for NOR flash */ -#define EXMC_SNTCFG_ASYNCMOD BITS(28,29) /*!< asynchronous access mode */ - -/* EXMC_SNWTCFGx,x=0..3 */ -#define EXMC_SNWTCFG_WASET BITS(0,3) /*!< asynchronous address setup time */ -#define EXMC_SNWTCFG_WAHLD BITS(4,7) /*!< asynchronous address hold time */ -#define EXMC_SNWTCFG_WDSET BITS(8,15) /*!< asynchronous data setup time */ -#define EXMC_SNWTCFG_WBUSLAT BITS(16,19) /*!< bus latency */ -#define EXMC_SNWTCFG_WASYNCMOD BITS(28,29) /*!< asynchronous access mode */ - -/* EXMC_NPCTLx,x=1..3 */ -#define EXMC_NPCTL_NDWTEN BIT(1) /*!< wait feature enable */ -#define EXMC_NPCTL_NDBKEN BIT(2) /*!< NAND bank enable */ -#define EXMC_NPCTL_NDTP BIT(3) /*!< NAND bank memory type */ -#define EXMC_NPCTL_NDW BITS(4,5) /*!< NAND bank memory data bus width */ -#define EXMC_NPCTL_ECCEN BIT(6) /*!< ECC enable */ -#define EXMC_NPCTL_CTR BITS(9,12) /*!< CLE to RE delay */ -#define EXMC_NPCTL_ATR BITS(13,16) /*!< ALE to RE delay */ -#define EXMC_NPCTL_ECCSZ BITS(17,19) /*!< ECC size */ - -/* EXMC_NPINTENx,x=1..3 */ -#define EXMC_NPINTEN_INTRS BIT(0) /*!< interrupt rising edge status */ -#define EXMC_NPINTEN_INTHS BIT(1) /*!< interrupt high-level status */ -#define EXMC_NPINTEN_INTFS BIT(2) /*!< interrupt falling edge status */ -#define EXMC_NPINTEN_INTREN BIT(3) /*!< interrupt rising edge detection enable */ -#define EXMC_NPINTEN_INTHEN BIT(4) /*!< interrupt high-level detection enable */ -#define EXMC_NPINTEN_INTFEN BIT(5) /*!< interrupt falling edge detection enable */ -#define EXMC_NPINTEN_FFEPT BIT(6) /*!< FIFO empty flag */ - -/* EXMC_NPCTCFGx,x=1..3 */ -#define EXMC_NPCTCFG_COMSET BITS(0,7) /*!< common memory setup time */ -#define EXMC_NPCTCFG_COMWAIT BITS(8,15) /*!< common memory wait time */ -#define EXMC_NPCTCFG_COMHLD BITS(16,23) /*!< common memory hold time */ -#define EXMC_NPCTCFG_COMHIZ BITS(24,31) /*!< common memory data bus HiZ time */ - -/* EXMC_NPATCFGx,x=1..3 */ -#define EXMC_NPATCFG_ATTSET BITS(0,7) /*!< attribute memory setup time */ -#define EXMC_NPATCFG_ATTWAIT BITS(8,15) /*!< attribute memory wait time */ -#define EXMC_NPATCFG_ATTHLD BITS(16,23) /*!< attribute memory hold time */ -#define EXMC_NPATCFG_ATTHIZ BITS(24,31) /*!< attribute memory data bus HiZ time */ - -/* EXMC_PIOTCFG3 */ -#define EXMC_PIOTCFG3_IOSET BITS(0,7) /*!< IO space setup time */ -#define EXMC_PIOTCFG3_IOWAIT BITS(8,15) /*!< IO space wait time */ -#define EXMC_PIOTCFG3_IOHLD BITS(16,23) /*!< IO space hold time */ -#define EXMC_PIOTCFG3_IOHIZ BITS(24,31) /*!< IO space data bus HiZ time */ - -/* EXMC_NECCx,x=1..2 */ -#define EXMC_NECC_ECC BITS(0,31) /*!< ECC result */ - -/* EXMC_SDCTLx,x=0..1 */ -#define EXMC_SDCTL_CAW BITS(0,1) /*!< column address bit width */ -#define EXMC_SDCTL_RAW BITS(2,3) /*!< row address bit width */ -#define EXMC_SDCTL_SDW BITS(4,5) /*!< SDRAM data bus width */ -#define EXMC_SDCTL_NBK BIT(6) /*!< number of banks */ -#define EXMC_SDCTL_CL BIT(7,8) /*!< CAS Latency */ -#define EXMC_SDCTL_WPEN BIT(9) /*!< write protection enable */ -#define EXMC_SDCTL_SDCLK BITS(10,11) /*!< SDRAM clock configuration */ -#define EXMC_SDCTL_BRSTRD BIT(12) /*!< burst read enable */ -#define EXMC_SDCTL_PIPED BITS(13,14) /*!< pipeline delay */ - -/* EXMC_SDTCFGx,x=0..1 */ -#define EXMC_SDTCFG_LMRD BITS(0,3) /*!< load mode register delay */ -#define EXMC_SDTCFG_XSRD BITS(4,7) /*!< exit self-refresh delay */ -#define EXMC_SDTCFG_RASD BITS(8,11) /*!< row address select delay */ -#define EXMC_SDTCFG_ARFD BITS(12,15) /*!< auto refresh delay */ -#define EXMC_SDTCFG_WRD BITS(16,19) /*!< write recovery delay */ -#define EXMC_SDTCFG_RPD BITS(20,23) /*!< row precharge delay */ -#define EXMC_SDTCFG_RCD BITS(24,27) /*!< row to column delay */ - -/* EXMC_SDCMD */ -#define EXMC_SDCMD_CMD BITS(0,2) /*!< command */ -#define EXMC_SDCMD_DS1 BIT(3) /*!< select device1 */ -#define EXMC_SDCMD_DS0 BIT(4) /*!< select device0 */ -#define EXMC_SDCMD_NARF BITS(5,8) /*!< number of successive auto-refresh */ -#define EXMC_SDCMD_MRC BITS(9,21) /*!< mode register content */ - -/* EXMC_SDARI */ -#define EXMC_SDARI_REC BIT(0) /*!< refresh error flag clear */ -#define EXMC_SDARI_ARINTV BITS(1,13) /*!< auto-refresh interval */ -#define EXMC_SDARI_REIE BIT(14) /*!< interrupt refresh error enable */ - -/* EXMC_SDSTAT */ -#define EXMC_SDSDAT_REIF BIT(0) /*!< refresh error interrupt flag */ -#define EXMC_SDSDAT_STA0 BITS(1,2) /*!< device0 status */ -#define EXMC_SDSDAT_STA1 BITS(3,4) /*!< device1 status */ -#define EXMC_SDSDAT_NRDY BIT(5) /*!< not ready status */ - -/* EXMC_SDRSCTL */ -#define EXMC_SDRSCTL_RSEN BIT(0) /*!< read sample enable */ -#define EXMC_SDRSCTL_SSCR BIT(1) /*!< select sample cycle of read data */ -#define EXMC_SDRSCTL_SDSC BITS(4,7) /*!< select the delayed sample clock of read data */ - -/* EXMC_SINIT */ -#define EXMC_SINIT_CMDBIT BITS(16,17) /*!< bit number of SPI PSRAM command phase */ -#define EXMC_SINIT_ARDBIT BITS(24,28) /*!< bit number of SPI PSRAM address phase */ -#define EXMC_SINIT_IDL BITS(29,30) /*!< SPI PSRAM ID length */ -#define EXMC_SINIT_POL BIT(31) /*!< read data sample polarity */ - -/* EXMC_SRCMD */ -#define EXMC_SRCMD_RCMD BITS(0,15) /*!< SPI read command for AHB read transfer */ -#define EXMC_SRCMD_RWAITCYCLE BITS(16,19) /*!< SPI read wait cycle number after address phase */ -#define EXMC_SRCMD_RMODE BITS(20,21) /*!< SPI PSRAM read command mode */ -#define EXMC_SRCMD_RDID BIT(31) /*!< send SPI read ID command */ - -/* EXMC_SWCMD */ -#define EXMC_SWCMD_WCMD BITS(0,15) /*!< SPI write command for AHB write transfer */ -#define EXMC_SWCMD_WWAITCYCLE BITS(16,19) /*!< SPI write wait cycle number after address phase */ -#define EXMC_SWCMD_WMODE BITS(20,21) /*!< SPI PSRAM write command mode */ -#define EXMC_SWCMD_SC BIT(31) /*!< send SPI special command */ - -/* EXMC_SIDL */ -#define EXMC_SIDL_SIDL BITS(0,31) /*!< ID low data saved for SPI read ID command */ - -/* EXMC_SIDH */ -#define EXMC_SIDL_SIDH BITS(0,31) /*!< ID high Data saved for SPI read ID command */ - -/* constants definitions */ -/* EXMC NOR/SRAM timing initialize structure */ -typedef struct -{ - uint32_t asyn_access_mode; /*!< asynchronous access mode */ - uint32_t syn_data_latency; /*!< configure the data latency */ - uint32_t syn_clk_division; /*!< configure the clock divide ratio */ - uint32_t bus_latency; /*!< configure the bus latency */ - uint32_t asyn_data_setuptime; /*!< configure the data setup time, asynchronous access mode valid */ - uint32_t asyn_address_holdtime; /*!< configure the address hold time, asynchronous access mode valid */ - uint32_t asyn_address_setuptime; /*!< configure the address setup time, asynchronous access mode valid */ -}exmc_norsram_timing_parameter_struct; - -/* EXMC NOR/SRAM initialize structure */ -typedef struct -{ - uint32_t norsram_region; /*!< select the region of EXMC NOR/SRAM bank */ - uint32_t write_mode; /*!< the write mode, synchronous mode or asynchronous mode */ - uint32_t extended_mode; /*!< enable or disable the extended mode */ - uint32_t asyn_wait; /*!< enable or disable the asynchronous wait function */ - uint32_t nwait_signal; /*!< enable or disable the NWAIT signal while in synchronous bust mode */ - uint32_t memory_write; /*!< enable or disable the write operation */ - uint32_t nwait_config; /*!< NWAIT signal configuration */ - uint32_t wrap_burst_mode; /*!< enable or disable the wrap burst mode */ - uint32_t nwait_polarity; /*!< specifies the polarity of NWAIT signal from memory */ - uint32_t burst_mode; /*!< enable or disable the burst mode */ - uint32_t databus_width; /*!< specifies the databus width of external memory */ - uint32_t memory_type; /*!< specifies the type of external memory */ - uint32_t address_data_mux; /*!< specifies whether the data bus and address bus are multiplexed */ - exmc_norsram_timing_parameter_struct* read_write_timing; /*!< timing parameters for read and write if the extendedmode is not used or the timing - parameters for read if the extendedmode is used. */ - exmc_norsram_timing_parameter_struct* write_timing; /*!< timing parameters for write when the extendedmode is used. */ -}exmc_norsram_parameter_struct; - -/* EXMC NAND/PC card timing initialize struct */ -typedef struct -{ - uint32_t databus_hiztime; /*!< configure the dadtabus HiZ time for write operation */ - uint32_t holdtime; /*!< configure the address hold time(or the data hold time for write operation) */ - uint32_t waittime; /*!< configure the minimum wait time */ - uint32_t setuptime; /*!< configure the address setup time */ -}exmc_nand_pccard_timing_parameter_struct; - -/* EXMC NAND initialize struct */ -typedef struct -{ - uint32_t nand_bank; /*!< select the bank of NAND */ - uint32_t ecc_size; /*!< the page size for the ECC calculation */ - uint32_t atr_latency; /*!< configure the latency of ALE low to RB low */ - uint32_t ctr_latency; /*!< configure the latency of CLE low to RB low */ - uint32_t ecc_logic; /*!< enable or disable the ECC calculation logic */ - uint32_t databus_width; /*!< the NAND flash databus width */ - uint32_t wait_feature; /*!< enable or disable the wait feature */ - exmc_nand_pccard_timing_parameter_struct* common_space_timing; /*!< the timing parameters for NAND flash common space */ - exmc_nand_pccard_timing_parameter_struct* attribute_space_timing; /*!< the timing parameters for NAND flash attribute space */ -}exmc_nand_parameter_struct; - -/* EXMC PC card initialize struct */ -typedef struct -{ - uint32_t atr_latency; /*!< configure the latency of ALE low to RB low */ - uint32_t ctr_latency; /*!< configure the latency of CLE low to RB low */ - uint32_t wait_feature; /*!< enable or disable the wait feature */ - exmc_nand_pccard_timing_parameter_struct* common_space_timing; /*!< the timing parameters for PC card common space */ - exmc_nand_pccard_timing_parameter_struct* attribute_space_timing; /*!< the timing parameters for PC card attribute space */ - exmc_nand_pccard_timing_parameter_struct* io_space_timing; /*!< the timing parameters for PC card IO space */ -}exmc_pccard_parameter_struct; - -/* EXMC SDRAM timing initialize struct */ -typedef struct -{ - uint32_t row_to_column_delay; /*!< configure the row to column delay */ - uint32_t row_precharge_delay; /*!< configure the row precharge delay */ - uint32_t write_recovery_delay; /*!< configure the write recovery delay */ - uint32_t auto_refresh_delay; /*!< configure the auto refresh delay */ - uint32_t row_address_select_delay; /*!< configure the row address select delay */ - uint32_t exit_selfrefresh_delay; /*!< configure the exit self-refresh delay */ - uint32_t load_mode_register_delay; /*!< configure the load mode register delay */ -}exmc_sdram_timing_parameter_struct; - -/* EXMC SDRAM initialize struct */ -typedef struct -{ - uint32_t sdram_device; /*!< device of SDRAM */ - uint32_t pipeline_read_delay; /*!< the delay for reading data after CAS latency in HCLK clock cycles */ - uint32_t brust_read_switch; /*!< enable or disable the burst read */ - uint32_t sdclock_config; /*!< the SDCLK memory clock for both SDRAM banks */ - uint32_t write_protection; /*!< enable or disable SDRAM bank write protection function */ - uint32_t cas_latency; /*!< configure the SDRAM CAS latency */ - uint32_t internal_bank_number; /*!< the number of internal bank */ - uint32_t data_width; /*!< the databus width of SDRAM memory */ - uint32_t row_address_width; /*!< the bit width of a row address */ - uint32_t column_address_width; /*!< the bit width of a column address */ - exmc_sdram_timing_parameter_struct* timing; /*!< the timing parameters for write and read SDRAM */ -}exmc_sdram_parameter_struct; - -/* EXMC SDRAM command initialize struct */ -typedef struct -{ - uint32_t mode_register_content; /*!< the SDRAM mode register content */ - uint32_t auto_refresh_number; /*!< the number of successive auto-refresh cycles will be send when CMD = 011 */ - uint32_t bank_select; /*!< the bank which command will be sent to */ - uint32_t command; /*!< the commands that will be sent to SDRAM */ -}exmc_sdram_command_parameter_struct; - -/* EXMC SQPISRAM initialize struct */ -typedef struct{ - uint32_t sample_polarity; /*!< read data sample polarity */ - uint32_t id_length; /*!< SPI PSRAM ID length */ - uint32_t address_bits; /*!< bit number of SPI PSRAM address phase */ - uint32_t command_bits; /*!< bit number of SPI PSRAM command phase */ -}exmc_sqpipsram_parameter_struct; - -/* EXMC_register address */ -#define EXMC_SNCTL(region) REG32(EXMC + 0x08U*((uint32_t)(region))) /*!< EXMC SRAM/NOR flash control registers, region = 0,1,2,3 */ -#define EXMC_SNTCFG(region) REG32(EXMC + 0x04U + 0x08U*((uint32_t)(region))) /*!< EXMC SRAM/NOR flash timing configuration registers, region = 0,1,2,3 */ -#define EXMC_SNWTCFG(region) REG32(EXMC + 0x104U + 0x08U*((uint32_t)(region))) /*!< EXMC SRAM/NOR flash write timing configuration registers, region = 0,1,2,3 */ - -#define EXMC_NPCTL(bank) REG32(EXMC + 0x40U + 0x20U*((uint32_t)(bank))) /*!< EXMC NAND/PC card control registers, bank = 1,2,3 */ -#define EXMC_NPINTEN(bank) REG32(EXMC + 0x44U + 0x20U*((uint32_t)(bank))) /*!< EXMC NAND/PC card interrupt enable registers, bank = 1,2,3 */ -#define EXMC_NPCTCFG(bank) REG32(EXMC + 0x48U + 0x20U*((uint32_t)(bank))) /*!< EXMC NAND/PC card common space timing configuration registers, bank = 1,2,3 */ -#define EXMC_NPATCFG(bank) REG32(EXMC + 0x4CU + 0x20U*((uint32_t)(bank))) /*!< EXMC NAND/PC card attribute space timing configuration registers, bank = 1,2,3 */ -#define EXMC_NECC(bank) REG32(EXMC + 0x54U + 0x20U*((uint32_t)(bank))) /*!< EXMC NAND ECC registers, bank = 1,2 */ - -#define EXMC_SDCTL(device) REG32(EXMC + 0x140U + 0x4U*(((uint32_t)(device)) - 0x4U)) /*!< EXMC SDRAM control registers,device = 0,1 */ -#define EXMC_SDTCFG(device) REG32(EXMC + 0x148U + 0x4U*(((uint32_t)(device)) - 0x4U)) /*!< EXMC SDRAM timing configuration registers,device = 0,1 */ - -/* CRAM page size */ -#define SNCTL_CPS(regval) (BITS(16,18) & ((uint32_t)(regval) << 16)) -#define EXMC_CRAM_AUTO_SPLIT SNCTL_CPS(0) /*!< automatic burst split on page boundary crossing */ -#define EXMC_CRAM_PAGE_SIZE_128_BYTES SNCTL_CPS(1) /*!< page size is 128 bytes */ -#define EXMC_CRAM_PAGE_SIZE_256_BYTES SNCTL_CPS(2) /*!< page size is 256 bytes */ -#define EXMC_CRAM_PAGE_SIZE_512_BYTES SNCTL_CPS(3) /*!< page size is 512 bytes */ -#define EXMC_CRAM_PAGE_SIZE_1024_BYTES SNCTL_CPS(4) /*!< page size is 1024 bytes */ - -/* NOR bank memory data bus width */ -#define SNCTL_NRW(regval) (BITS(4,5) & ((uint32_t)(regval) << 4)) -#define EXMC_NOR_DATABUS_WIDTH_8B SNCTL_NRW(0) /*!< NOR data width is 8 bits */ -#define EXMC_NOR_DATABUS_WIDTH_16B SNCTL_NRW(1) /*!< NOR data width is 16 bits */ - -/* NOR bank memory type */ -#define SNCTL_NRTP(regval) (BITS(2,3) & ((uint32_t)(regval) << 2)) -#define EXMC_MEMORY_TYPE_SRAM SNCTL_NRTP(0) /*!< SRAM,ROM */ -#define EXMC_MEMORY_TYPE_PSRAM SNCTL_NRTP(1) /*!< PSRAM,CRAM */ -#define EXMC_MEMORY_TYPE_NOR SNCTL_NRTP(2) /*!< NOR flash */ - -/* asynchronous access mode */ -#define SNTCFG_ASYNCMOD(regval) (BITS(28,29) & ((uint32_t)(regval) << 28)) -#define EXMC_ACCESS_MODE_A SNTCFG_ASYNCMOD(0) /*!< mode A access */ -#define EXMC_ACCESS_MODE_B SNTCFG_ASYNCMOD(1) /*!< mode B access */ -#define EXMC_ACCESS_MODE_C SNTCFG_ASYNCMOD(2) /*!< mode C access */ -#define EXMC_ACCESS_MODE_D SNTCFG_ASYNCMOD(3) /*!< mode D access */ - -/* data latency for NOR flash */ -#define SNTCFG_DLAT(regval) (BITS(24,27) & ((uint32_t)(regval) << 24)) -#define EXMC_DATALAT_2_CLK SNTCFG_DLAT(0) /*!< data latency of first burst access is 2 EXMC_CLK */ -#define EXMC_DATALAT_3_CLK SNTCFG_DLAT(1) /*!< data latency of first burst access is 3 EXMC_CLK */ -#define EXMC_DATALAT_4_CLK SNTCFG_DLAT(2) /*!< data latency of first burst access is 4 EXMC_CLK */ -#define EXMC_DATALAT_5_CLK SNTCFG_DLAT(3) /*!< data latency of first burst access is 5 EXMC_CLK */ -#define EXMC_DATALAT_6_CLK SNTCFG_DLAT(4) /*!< data latency of first burst access is 6 EXMC_CLK */ -#define EXMC_DATALAT_7_CLK SNTCFG_DLAT(5) /*!< data latency of first burst access is 7 EXMC_CLK */ -#define EXMC_DATALAT_8_CLK SNTCFG_DLAT(6) /*!< data latency of first burst access is 8 EXMC_CLK */ -#define EXMC_DATALAT_9_CLK SNTCFG_DLAT(7) /*!< data latency of first burst access is 9 EXMC_CLK */ -#define EXMC_DATALAT_10_CLK SNTCFG_DLAT(8) /*!< data latency of first burst access is 10 EXMC_CLK */ -#define EXMC_DATALAT_11_CLK SNTCFG_DLAT(9) /*!< data latency of first burst access is 11 EXMC_CLK */ -#define EXMC_DATALAT_12_CLK SNTCFG_DLAT(10) /*!< data latency of first burst access is 12 EXMC_CLK */ -#define EXMC_DATALAT_13_CLK SNTCFG_DLAT(11) /*!< data latency of first burst access is 13 EXMC_CLK */ -#define EXMC_DATALAT_14_CLK SNTCFG_DLAT(12) /*!< data latency of first burst access is 14 EXMC_CLK */ -#define EXMC_DATALAT_15_CLK SNTCFG_DLAT(13) /*!< data latency of first burst access is 15 EXMC_CLK */ -#define EXMC_DATALAT_16_CLK SNTCFG_DLAT(14) /*!< data latency of first burst access is 16 EXMC_CLK */ -#define EXMC_DATALAT_17_CLK SNTCFG_DLAT(15) /*!< data latency of first burst access is 17 EXMC_CLK */ - -/* synchronous clock divide ratio */ -#define SNTCFG_CKDIV(regval) (BITS(20,23) & ((uint32_t)(regval) << 20)) -#define EXMC_SYN_CLOCK_RATIO_2_CLK SNTCFG_CKDIV(1) /*!< EXMC_CLK = 2*HCLK */ -#define EXMC_SYN_CLOCK_RATIO_3_CLK SNTCFG_CKDIV(2) /*!< EXMC_CLK = 3*HCLK */ -#define EXMC_SYN_CLOCK_RATIO_4_CLK SNTCFG_CKDIV(3) /*!< EXMC_CLK = 4*HCLK */ -#define EXMC_SYN_CLOCK_RATIO_5_CLK SNTCFG_CKDIV(4) /*!< EXMC_CLK = 5*HCLK */ -#define EXMC_SYN_CLOCK_RATIO_6_CLK SNTCFG_CKDIV(5) /*!< EXMC_CLK = 6*HCLK */ -#define EXMC_SYN_CLOCK_RATIO_7_CLK SNTCFG_CKDIV(6) /*!< EXMC_CLK = 7*HCLK */ -#define EXMC_SYN_CLOCK_RATIO_8_CLK SNTCFG_CKDIV(7) /*!< EXMC_CLK = 8*HCLK */ -#define EXMC_SYN_CLOCK_RATIO_9_CLK SNTCFG_CKDIV(8) /*!< EXMC_CLK = 9*HCLK */ -#define EXMC_SYN_CLOCK_RATIO_10_CLK SNTCFG_CKDIV(9) /*!< EXMC_CLK = 10*HCLK */ -#define EXMC_SYN_CLOCK_RATIO_11_CLK SNTCFG_CKDIV(10) /*!< EXMC_CLK = 11*HCLK */ -#define EXMC_SYN_CLOCK_RATIO_12_CLK SNTCFG_CKDIV(11) /*!< EXMC_CLK = 12*HCLK */ -#define EXMC_SYN_CLOCK_RATIO_13_CLK SNTCFG_CKDIV(12) /*!< EXMC_CLK = 13*HCLK */ -#define EXMC_SYN_CLOCK_RATIO_14_CLK SNTCFG_CKDIV(13) /*!< EXMC_CLK = 14*HCLK */ -#define EXMC_SYN_CLOCK_RATIO_15_CLK SNTCFG_CKDIV(14) /*!< EXMC_CLK = 15*HCLK */ -#define EXMC_SYN_CLOCK_RATIO_16_CLK SNTCFG_CKDIV(15) /*!< EXMC_CLK = 16*HCLK */ - -/* ECC size */ -#define NPCTL_ECCSZ(regval) (BITS(17,19) & ((uint32_t)(regval) << 17)) -#define EXMC_ECC_SIZE_256BYTES NPCTL_ECCSZ(0) /* ECC size is 256 bytes */ -#define EXMC_ECC_SIZE_512BYTES NPCTL_ECCSZ(1) /* ECC size is 512 bytes */ -#define EXMC_ECC_SIZE_1024BYTES NPCTL_ECCSZ(2) /* ECC size is 1024 bytes */ -#define EXMC_ECC_SIZE_2048BYTES NPCTL_ECCSZ(3) /* ECC size is 2048 bytes */ -#define EXMC_ECC_SIZE_4096BYTES NPCTL_ECCSZ(4) /* ECC size is 4096 bytes */ -#define EXMC_ECC_SIZE_8192BYTES NPCTL_ECCSZ(5) /* ECC size is 8192 bytes */ - -/* ALE to RE delay */ -#define NPCTL_ATR(regval) (BITS(13,16) & ((uint32_t)(regval) << 13)) -#define EXMC_ALE_RE_DELAY_1_HCLK NPCTL_ATR(0) /* ALE to RE delay = 1*HCLK */ -#define EXMC_ALE_RE_DELAY_2_HCLK NPCTL_ATR(1) /* ALE to RE delay = 2*HCLK */ -#define EXMC_ALE_RE_DELAY_3_HCLK NPCTL_ATR(2) /* ALE to RE delay = 3*HCLK */ -#define EXMC_ALE_RE_DELAY_4_HCLK NPCTL_ATR(3) /* ALE to RE delay = 4*HCLK */ -#define EXMC_ALE_RE_DELAY_5_HCLK NPCTL_ATR(4) /* ALE to RE delay = 5*HCLK */ -#define EXMC_ALE_RE_DELAY_6_HCLK NPCTL_ATR(5) /* ALE to RE delay = 6*HCLK */ -#define EXMC_ALE_RE_DELAY_7_HCLK NPCTL_ATR(6) /* ALE to RE delay = 7*HCLK */ -#define EXMC_ALE_RE_DELAY_8_HCLK NPCTL_ATR(7) /* ALE to RE delay = 8*HCLK */ -#define EXMC_ALE_RE_DELAY_9_HCLK NPCTL_ATR(8) /* ALE to RE delay = 9*HCLK */ -#define EXMC_ALE_RE_DELAY_10_HCLK NPCTL_ATR(9) /* ALE to RE delay = 10*HCLK */ -#define EXMC_ALE_RE_DELAY_11_HCLK NPCTL_ATR(10) /* ALE to RE delay = 11*HCLK */ -#define EXMC_ALE_RE_DELAY_12_HCLK NPCTL_ATR(11) /* ALE to RE delay = 12*HCLK */ -#define EXMC_ALE_RE_DELAY_13_HCLK NPCTL_ATR(12) /* ALE to RE delay = 13*HCLK */ -#define EXMC_ALE_RE_DELAY_14_HCLK NPCTL_ATR(13) /* ALE to RE delay = 14*HCLK */ -#define EXMC_ALE_RE_DELAY_15_HCLK NPCTL_ATR(14) /* ALE to RE delay = 15*HCLK */ -#define EXMC_ALE_RE_DELAY_16_HCLK NPCTL_ATR(15) /* ALE to RE delay = 16*HCLK */ - -/* CLE to RE delay */ -#define NPCTL_CTR(regval) (BITS(9,12) & ((uint32_t)(regval) << 9)) -#define EXMC_CLE_RE_DELAY_1_HCLK NPCTL_CTR(0) /* CLE to RE delay = 1*HCLK */ -#define EXMC_CLE_RE_DELAY_2_HCLK NPCTL_CTR(1) /* CLE to RE delay = 2*HCLK */ -#define EXMC_CLE_RE_DELAY_3_HCLK NPCTL_CTR(2) /* CLE to RE delay = 3*HCLK */ -#define EXMC_CLE_RE_DELAY_4_HCLK NPCTL_CTR(3) /* CLE to RE delay = 4*HCLK */ -#define EXMC_CLE_RE_DELAY_5_HCLK NPCTL_CTR(4) /* CLE to RE delay = 5*HCLK */ -#define EXMC_CLE_RE_DELAY_6_HCLK NPCTL_CTR(5) /* CLE to RE delay = 6*HCLK */ -#define EXMC_CLE_RE_DELAY_7_HCLK NPCTL_CTR(6) /* CLE to RE delay = 7*HCLK */ -#define EXMC_CLE_RE_DELAY_8_HCLK NPCTL_CTR(7) /* CLE to RE delay = 8*HCLK */ -#define EXMC_CLE_RE_DELAY_9_HCLK NPCTL_CTR(8) /* CLE to RE delay = 9*HCLK */ -#define EXMC_CLE_RE_DELAY_10_HCLK NPCTL_CTR(9) /* CLE to RE delay = 10*HCLK */ -#define EXMC_CLE_RE_DELAY_11_HCLK NPCTL_CTR(10) /* CLE to RE delay = 11*HCLK */ -#define EXMC_CLE_RE_DELAY_12_HCLK NPCTL_CTR(11) /* CLE to RE delay = 12*HCLK */ -#define EXMC_CLE_RE_DELAY_13_HCLK NPCTL_CTR(12) /* CLE to RE delay = 13*HCLK */ -#define EXMC_CLE_RE_DELAY_14_HCLK NPCTL_CTR(13) /* CLE to RE delay = 14*HCLK */ -#define EXMC_CLE_RE_DELAY_15_HCLK NPCTL_CTR(14) /* CLE to RE delay = 15*HCLK */ -#define EXMC_CLE_RE_DELAY_16_HCLK NPCTL_CTR(15) /* CLE to RE delay = 16*HCLK */ - -/* NAND bank memory data bus width */ -#define NPCTL_NDW(regval) (BITS(4,5) & ((uint32_t)(regval) << 4)) -#define EXMC_NAND_DATABUS_WIDTH_8B NPCTL_NDW(0) /*!< NAND data width is 8 bits */ -#define EXMC_NAND_DATABUS_WIDTH_16B NPCTL_NDW(1) /*!< NAND data width is 16 bits */ - -/* SDRAM pipeline delay */ -#define SDCTL_PIPED(regval) (BITS(13,14) & ((uint32_t)(regval) << 13)) -#define EXMC_PIPELINE_DELAY_0_HCLK SDCTL_PIPED(0) /*!< 0 HCLK clock cycle delay */ -#define EXMC_PIPELINE_DELAY_1_HCLK SDCTL_PIPED(1) /*!< 1 HCLK clock cycle delay */ -#define EXMC_PIPELINE_DELAY_2_HCLK SDCTL_PIPED(2) /*!< 2 HCLK clock cycle delay */ - -/* SDRAM clock configuration */ -#define SDCTL_SDCLK(regval) (BITS(10,11) & ((uint32_t)(regval) << 10)) -#define EXMC_SDCLK_DISABLE SDCTL_SDCLK(0) /*!< SDCLK memory clock disabled */ -#define EXMC_SDCLK_PERIODS_2_HCLK SDCTL_SDCLK(2) /*!< SDCLK memory period = 2*HCLK */ -#define EXMC_SDCLK_PERIODS_3_HCLK SDCTL_SDCLK(3) /*!< SDCLK memory period = 3*HCLK */ - -/* CAS latency */ -#define SDCTL_CL(regval) (BITS(7,8) & ((uint32_t)(regval) << 7)) -#define EXMC_CAS_LATENCY_1_SDCLK SDCTL_CL(1) /*!< CAS latency is 1 memory clock cycle */ -#define EXMC_CAS_LATENCY_2_SDCLK SDCTL_CL(2) /*!< CAS latency is 2 memory clock cycle */ -#define EXMC_CAS_LATENCY_3_SDCLK SDCTL_CL(3) /*!< CAS latency is 3 memory clock cycle */ - -/* SDRAM data bus width */ -#define SDCTL_SDW(regval) (BITS(4,5) & ((uint32_t)(regval) << 4)) -#define EXMC_SDRAM_DATABUS_WIDTH_8B SDCTL_SDW(0) /*!< SDRAM data width 8 bits */ -#define EXMC_SDRAM_DATABUS_WIDTH_16B SDCTL_SDW(1) /*!< SDRAM data width 16 bits */ -#define EXMC_SDRAM_DATABUS_WIDTH_32B SDCTL_SDW(2) /*!< SDRAM data width 32 bits */ - -/* SDRAM row address bit width */ -#define SDCTL_RAW(regval) (BITS(2,3) & ((uint32_t)(regval) << 2)) -#define EXMC_SDRAM_ROW_ADDRESS_11 SDCTL_RAW(0) /*!< row address bit width is 11 bits */ -#define EXMC_SDRAM_ROW_ADDRESS_12 SDCTL_RAW(1) /*!< row address bit width is 12 bits */ -#define EXMC_SDRAM_ROW_ADDRESS_13 SDCTL_RAW(2) /*!< row address bit width is 13 bits */ - -/* SDRAM column address bit width */ -#define SDCTL_CAW(regval) (BITS(0,1) & ((uint32_t)(regval) << 0)) -#define EXMC_SDRAM_COW_ADDRESS_8 SDCTL_CAW(0) /*!< column address bit width is 8 bits */ -#define EXMC_SDRAM_COW_ADDRESS_9 SDCTL_CAW(1) /*!< column address bit width is 9 bits */ -#define EXMC_SDRAM_COW_ADDRESS_10 SDCTL_CAW(2) /*!< column address bit width is 10 bits */ -#define EXMC_SDRAM_COW_ADDRESS_11 SDCTL_CAW(3) /*!< column address bit width is 11 bits */ - -/* SDRAM number of successive auto-refresh */ -#define SDCMD_NARF(regval) (BITS(5,8) & ((uint32_t)(regval) << 5)) -#define EXMC_SDRAM_AUTO_REFLESH_1_SDCLK SDCMD_NARF(0) /*!< 1 auto-refresh cycle */ -#define EXMC_SDRAM_AUTO_REFLESH_2_SDCLK SDCMD_NARF(1) /*!< 2 auto-refresh cycles */ -#define EXMC_SDRAM_AUTO_REFLESH_3_SDCLK SDCMD_NARF(2) /*!< 3 auto-refresh cycles */ -#define EXMC_SDRAM_AUTO_REFLESH_4_SDCLK SDCMD_NARF(3) /*!< 4 auto-refresh cycles */ -#define EXMC_SDRAM_AUTO_REFLESH_5_SDCLK SDCMD_NARF(4) /*!< 5 auto-refresh cycles */ -#define EXMC_SDRAM_AUTO_REFLESH_6_SDCLK SDCMD_NARF(5) /*!< 6 auto-refresh cycles */ -#define EXMC_SDRAM_AUTO_REFLESH_7_SDCLK SDCMD_NARF(6) /*!< 7 auto-refresh cycles */ -#define EXMC_SDRAM_AUTO_REFLESH_8_SDCLK SDCMD_NARF(7) /*!< 8 auto-refresh cycles */ -#define EXMC_SDRAM_AUTO_REFLESH_9_SDCLK SDCMD_NARF(8) /*!< 9 auto-refresh cycles */ -#define EXMC_SDRAM_AUTO_REFLESH_10_SDCLK SDCMD_NARF(9) /*!< 10 auto-refresh cycles */ -#define EXMC_SDRAM_AUTO_REFLESH_11_SDCLK SDCMD_NARF(10) /*!< 11 auto-refresh cycles */ -#define EXMC_SDRAM_AUTO_REFLESH_12_SDCLK SDCMD_NARF(11) /*!< 12 auto-refresh cycles */ -#define EXMC_SDRAM_AUTO_REFLESH_13_SDCLK SDCMD_NARF(12) /*!< 13 auto-refresh cycles */ -#define EXMC_SDRAM_AUTO_REFLESH_14_SDCLK SDCMD_NARF(13) /*!< 14 auto-refresh cycles */ -#define EXMC_SDRAM_AUTO_REFLESH_15_SDCLK SDCMD_NARF(14) /*!< 15 auto-refresh cycles */ - -/* SDRAM command select */ -#define SDCMD_CMD(regval) (BITS(0,2) & ((uint32_t)(regval) << 0)) -#define EXMC_SDRAM_NORMAL_OPERATION SDCMD_CMD(0) /*!< normal operation command */ -#define EXMC_SDRAM_CLOCK_ENABLE SDCMD_CMD(1) /*!< clock enable command */ -#define EXMC_SDRAM_PRECHARGE_ALL SDCMD_CMD(2) /*!< precharge all command */ -#define EXMC_SDRAM_AUTO_REFRESH SDCMD_CMD(3) /*!< auto-refresh command */ -#define EXMC_SDRAM_LOAD_MODE_REGISTER SDCMD_CMD(4) /*!< load mode register command */ -#define EXMC_SDRAM_SELF_REFRESH SDCMD_CMD(5) /*!< self-refresh command */ -#define EXMC_SDRAM_POWERDOWN_ENTRY SDCMD_CMD(6) /*!< power-down entry command */ - -/* SDRAM the delayed sample clock of read data */ -#define SDRSCTL_SDSC(regval) (BITS(4,7) & ((uint32_t)(regval) << 4)) -#define EXMC_SDRAM_0_DELAY_CELL SDRSCTL_SDSC(0) /*!< select the clock after 0 delay cell */ -#define EXMC_SDRAM_1_DELAY_CELL SDRSCTL_SDSC(1) /*!< select the clock after 1 delay cell */ -#define EXMC_SDRAM_2_DELAY_CELL SDRSCTL_SDSC(2) /*!< select the clock after 2 delay cell */ -#define EXMC_SDRAM_3_DELAY_CELL SDRSCTL_SDSC(3) /*!< select the clock after 3 delay cell */ -#define EXMC_SDRAM_4_DELAY_CELL SDRSCTL_SDSC(4) /*!< select the clock after 4 delay cell */ -#define EXMC_SDRAM_5_DELAY_CELL SDRSCTL_SDSC(5) /*!< select the clock after 5 delay cell */ -#define EXMC_SDRAM_6_DELAY_CELL SDRSCTL_SDSC(6) /*!< select the clock after 6 delay cell */ -#define EXMC_SDRAM_7_DELAY_CELL SDRSCTL_SDSC(7) /*!< select the clock after 7 delay cell */ -#define EXMC_SDRAM_8_DELAY_CELL SDRSCTL_SDSC(8) /*!< select the clock after 8 delay cell */ -#define EXMC_SDRAM_9_DELAY_CELL SDRSCTL_SDSC(9) /*!< select the clock after 9 delay cell */ -#define EXMC_SDRAM_10_DELAY_CELL SDRSCTL_SDSC(10) /*!< select the clock after 10 delay cell */ -#define EXMC_SDRAM_11_DELAY_CELL SDRSCTL_SDSC(11) /*!< select the clock after 11 delay cell */ -#define EXMC_SDRAM_12_DELAY_CELL SDRSCTL_SDSC(12) /*!< select the clock after 12 delay cell */ -#define EXMC_SDRAM_13_DELAY_CELL SDRSCTL_SDSC(13) /*!< select the clock after 13 delay cell */ -#define EXMC_SDRAM_14_DELAY_CELL SDRSCTL_SDSC(14) /*!< select the clock after 14 delay cell */ -#define EXMC_SDRAM_15_DELAY_CELL SDRSCTL_SDSC(15) /*!< select the clock after 15 delay cell */ - -/* SPI PSRAM ID length */ -#define SINIT_IDL(regval) (BITS(29,30) & ((uint32_t)(regval) << 29)) -#define EXMC_SQPIPSRAM_ID_LENGTH_64B SINIT_IDL(0) /*!< SPI PSRAM ID length is 64 bits */ -#define EXMC_SQPIPSRAM_ID_LENGTH_32B SINIT_IDL(1) /*!< SPI PSRAM ID length is 32 bits */ -#define EXMC_SQPIPSRAM_ID_LENGTH_16B SINIT_IDL(2) /*!< SPI PSRAM ID length is 16 bits */ -#define EXMC_SQPIPSRAM_ID_LENGTH_8B SINIT_IDL(3) /*!< SPI PSRAM ID length is 8 bits */ - -/* SPI PSRAM bit number of address phase */ -#define SINIT_ADRBIT(regval) (BITS(24,28) & ((uint32_t)(regval) << 24)) -#define EXMC_SQPIPSRAM_ADDR_LENGTH_1B SINIT_ADRBIT(1) /*!< SPI PSRAM address is 1 bit */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_2B SINIT_ADRBIT(2) /*!< SPI PSRAM address is 2 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_3B SINIT_ADRBIT(3) /*!< SPI PSRAM address is 3 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_4B SINIT_ADRBIT(4) /*!< SPI PSRAM address is 4 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_5B SINIT_ADRBIT(5) /*!< SPI PSRAM address is 5 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_6B SINIT_ADRBIT(6) /*!< SPI PSRAM address is 6 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_7B SINIT_ADRBIT(7) /*!< SPI PSRAM address is 7 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_8B SINIT_ADRBIT(8) /*!< SPI PSRAM address is 8 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_9B SINIT_ADRBIT(9) /*!< SPI PSRAM address is 9 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_10B SINIT_ADRBIT(10) /*!< SPI PSRAM address is 10 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_11B SINIT_ADRBIT(11) /*!< SPI PSRAM address is 11 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_12B SINIT_ADRBIT(12) /*!< SPI PSRAM address is 12 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_13B SINIT_ADRBIT(13) /*!< SPI PSRAM address is 13 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_14B SINIT_ADRBIT(14) /*!< SPI PSRAM address is 14 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_15B SINIT_ADRBIT(15) /*!< SPI PSRAM address is 15 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_16B SINIT_ADRBIT(16) /*!< SPI PSRAM address is 16 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_17B SINIT_ADRBIT(17) /*!< SPI PSRAM address is 17 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_18B SINIT_ADRBIT(18) /*!< SPI PSRAM address is 18 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_19B SINIT_ADRBIT(19) /*!< SPI PSRAM address is 19 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_20B SINIT_ADRBIT(20) /*!< SPI PSRAM address is 20 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_21B SINIT_ADRBIT(21) /*!< SPI PSRAM address is 21 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_22B SINIT_ADRBIT(22) /*!< SPI PSRAM address is 22 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_23B SINIT_ADRBIT(23) /*!< SPI PSRAM address is 23 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_24B SINIT_ADRBIT(24) /*!< SPI PSRAM address is 24 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_25B SINIT_ADRBIT(25) /*!< SPI PSRAM address is 25 bits */ -#define EXMC_SQPIPSRAM_ADDR_LENGTH_26B SINIT_ADRBIT(26) /*!< SPI PSRAM address is 26 bits */ - -/* SPI PSRAM bit number of command phase */ -#define SINIT_CMDBIT(regval) (BITS(16,17) & ((uint32_t)(regval) << 16)) -#define EXMC_SQPIPSRAM_COMMAND_LENGTH_4B SINIT_CMDBIT(0) /*!< SPI PSRAM command is 4 bits */ -#define EXMC_SQPIPSRAM_COMMAND_LENGTH_8B SINIT_CMDBIT(1) /*!< SPI PSRAM command is 8 bits */ -#define EXMC_SQPIPSRAM_COMMAND_LENGTH_16B SINIT_CMDBIT(2) /*!< SPI PSRAM command is 16 bits */ - -/* SPI PSRAM read command mode */ -#define SRCMD_RMODE(regval) (BITS(20,21) & ((uint32_t)(regval) << 20)) -#define EXMC_SQPIPSRAM_READ_MODE_DISABLE SRCMD_RMODE(0) /*!< not SPI mode */ -#define EXMC_SQPIPSRAM_READ_MODE_SPI SRCMD_RMODE(1) /*!< SPI mode */ -#define EXMC_SQPIPSRAM_READ_MODE_SQPI SRCMD_RMODE(2) /*!< SQPI mode */ -#define EXMC_SQPIPSRAM_READ_MODE_QPI SRCMD_RMODE(3) /*!< QPI mode */ - -/* SPI PSRAM write command mode */ -#define SRCMD_WMODE(regval) (BITS(20,21) & ((uint32_t)(regval) << 20)) -#define EXMC_SQPIPSRAM_WRITE_MODE_DISABLE SRCMD_WMODE(0) /*!< not SPI mode */ -#define EXMC_SQPIPSRAM_WRITE_MODE_SPI SRCMD_WMODE(1) /*!< SPI mode */ -#define EXMC_SQPIPSRAM_WRITE_MODE_SQPI SRCMD_WMODE(2) /*!< SQPI mode */ -#define EXMC_SQPIPSRAM_WRITE_MODE_QPI SRCMD_WMODE(3) /*!< QPI mode */ - -/* EXMC NOR/SRAM bank region definition */ -#define EXMC_BANK0_NORSRAM_REGION0 ((uint32_t)0x00000000U) /*!< bank0 NOR/SRAM region0 */ -#define EXMC_BANK0_NORSRAM_REGION1 ((uint32_t)0x00000001U) /*!< bank0 NOR/SRAM region1 */ -#define EXMC_BANK0_NORSRAM_REGION2 ((uint32_t)0x00000002U) /*!< bank0 NOR/SRAM region2 */ -#define EXMC_BANK0_NORSRAM_REGION3 ((uint32_t)0x00000003U) /*!< bank0 NOR/SRAM region3 */ - -/* EXMC consecutive clock */ -#define EXMC_CLOCK_SYN_MODE ((uint32_t)0x00000000U) /*!< EXMC_CLK is generated only during synchronous access */ -#define EXMC_CLOCK_UNCONDITIONALLY EXMC_SNCTL_CCK /*!< EXMC_CLK is generated unconditionally */ - -/* EXMC NOR/SRAM write mode */ -#define EXMC_ASYN_WRITE ((uint32_t)0x00000000U) /*!< asynchronous write mode */ -#define EXMC_SYN_WRITE EXMC_SNCTL_SYNCWR /*!< synchronous write mode */ - -/* EXMC NWAIT signal configuration */ -#define EXMC_NWAIT_CONFIG_BEFORE ((uint32_t)0x00000000U) /*!< NWAIT signal is active one data cycle before wait state */ -#define EXMC_NWAIT_CONFIG_DURING EXMC_SNCTL_NRWTCFG /*!< NWAIT signal is active during wait state */ - -/* EXMC NWAIT signal polarity configuration */ -#define EXMC_NWAIT_POLARITY_LOW ((uint32_t)0x00000000U) /*!< low level is active of NWAIT */ -#define EXMC_NWAIT_POLARITY_HIGH EXMC_SNCTL_NRWTPOL /*!< high level is active of NWAIT */ - -/* EXMC NAND/PC card bank definition */ -#define EXMC_BANK1_NAND ((uint32_t)0x00000001U) /*!< NAND flash bank1 */ -#define EXMC_BANK2_NAND ((uint32_t)0x00000002U) /*!< NAND flash bank2 */ -#define EXMC_BANK3_PCCARD ((uint32_t)0x00000003U) /*!< PC card bank3 */ - -/* EXMC SDRAM bank definition */ -#define EXMC_SDRAM_DEVICE0 ((uint32_t)0x00000004U) /*!< SDRAM device0 */ -#define EXMC_SDRAM_DEVICE1 ((uint32_t)0x00000005U) /*!< SDRAM device1 */ - -/* EXMC SDRAM internal banks */ -#define EXMC_SDRAM_2_INTER_BANK ((uint32_t)0x00000000U) /*!< 2 internal banks */ -#define EXMC_SDRAM_4_INTER_BANK EXMC_SDCTL_NBK /*!< 4 internal banks */ - -/* SDRAM device0 select */ -#define EXMC_SDRAM_DEVICE0_UNSELECT ((uint32_t)0x00000000U) /*!< SDRAM device0 unselect */ -#define EXMC_SDRAM_DEVICE0_SELECT EXMC_SDCMD_DS0 /*!< SDRAM device0 select */ - -/* SDRAM device1 select */ -#define EXMC_SDRAM_DEVICE1_UNSELECT ((uint32_t)0x00000000U) /*!< SDRAM device1 unselect */ -#define EXMC_SDRAM_DEVICE1_SELECT EXMC_SDCMD_DS1 /*!< SDRAM device1 select */ - -/* SDRAM device status */ -#define EXMC_SDRAM_DEVICE_NORMAL ((uint32_t)0x00000000U) /*!< normal status */ -#define EXMC_SDRAM_DEVICE_SELF_REFRESH ((uint32_t)0x00000001U) /*!< self refresh status */ -#define EXMC_SDRAM_DEVICE_POWER_DOWN ((uint32_t)0x00000002U) /*!< power down status */ - -/* sample cycle of read data */ -#define EXMC_SDRAM_READSAMPLE_0_EXTRAHCLK ((uint32_t)0x00000000U) /*!< add 0 extra HCLK cycle to the read data sample clock besides the delay chain */ -#define EXMC_SDRAM_READSAMPLE_1_EXTRAHCLK EXMC_SDRSCTL_SSCR /*!< add 1 extra HCLK cycle to the read data sample clock besides the delay chain */ - -/* read data sample polarity */ -#define EXMC_SQPIPSRAM_SAMPLE_RISING_EDGE ((uint32_t)0x00000000U) /*!< sample data at rising edge */ -#define EXMC_SQPIPSRAM_SAMPLE_FALLING_EDGE EXMC_SINIT_POL /*!< sample data at falling edge */ - -/* SQPI SRAM command flag */ -#define EXMC_SEND_COMMAND_FLAG_RDID EXMC_SRCMD_RDID /*!< EXMC_SRCMD_RDID flag bit */ -#define EXMC_SEND_COMMAND_FLAG_SC EXMC_SWCMD_SC /*!< EXMC_SWCMD_SC flag bit */ - -/* EXMC flag bits */ -#define EXMC_NAND_PCCARD_FLAG_RISE EXMC_NPINTEN_INTRS /*!< interrupt rising edge status */ -#define EXMC_NAND_PCCARD_FLAG_LEVEL EXMC_NPINTEN_INTHS /*!< interrupt high-level status */ -#define EXMC_NAND_PCCARD_FLAG_FALL EXMC_NPINTEN_INTFS /*!< interrupt falling edge status */ -#define EXMC_NAND_PCCARD_FLAG_FIFOE EXMC_NPINTEN_FFEPT /*!< FIFO empty flag */ -#define EXMC_SDRAM_FLAG_REFRESH EXMC_SDSDAT_REIF /*!< refresh error interrupt flag */ -#define EXMC_SDRAM_FLAG_NREADY EXMC_SDSDAT_NRDY /*!< not ready status */ - -/* EXMC interrupt flag bits */ -#define EXMC_NAND_PCCARD_INT_FLAG_RISE EXMC_NPINTEN_INTREN /*!< rising edge interrupt and flag */ -#define EXMC_NAND_PCCARD_INT_FLAG_LEVEL EXMC_NPINTEN_INTHEN /*!< high-level interrupt and flag */ -#define EXMC_NAND_PCCARD_INT_FLAG_FALL EXMC_NPINTEN_INTFEN /*!< falling edge interrupt and flag */ -#define EXMC_SDRAM_INT_FLAG_REFRESH EXMC_SDARI_REIE /*!< refresh error interrupt and flag */ - -/* function declarations */ -/* initialization functions */ -/* NOR/SRAM */ -/* deinitialize EXMC NOR/SRAM region */ -void exmc_norsram_deinit(uint32_t exmc_norsram_region); -/* initialize exmc_norsram_parameter_struct with the default values */ -void exmc_norsram_struct_para_init(exmc_norsram_parameter_struct* exmc_norsram_init_struct); -/* initialize EXMC NOR/SRAM region */ -void exmc_norsram_init(exmc_norsram_parameter_struct* exmc_norsram_init_struct); -/* enable EXMC NOR/SRAM region */ -void exmc_norsram_enable(uint32_t exmc_norsram_region); -/* disable EXMC NOR/SRAM region */ -void exmc_norsram_disable(uint32_t exmc_norsram_region); -/* NAND */ -/* deinitialize EXMC NAND bank */ -void exmc_nand_deinit(uint32_t exmc_nand_bank); -/* initialize exmc_norsram_parameter_struct with the default values */ -void exmc_nand_struct_para_init(exmc_nand_parameter_struct* exmc_nand_init_struct); -/* initialize EXMC NAND bank */ -void exmc_nand_init(exmc_nand_parameter_struct* exmc_nand_init_struct); -/* enable EXMC NAND bank */ -void exmc_nand_enable(uint32_t exmc_nand_bank); -/* disable EXMC NAND bank */ -void exmc_nand_disable(uint32_t exmc_nand_bank); -/* PC card */ -/* deinitialize EXMC PC card bank */ -void exmc_pccard_deinit(void); -/* initialize exmc_pccard_parameter_struct with the default values */ -void exmc_pccard_struct_para_init(exmc_pccard_parameter_struct* exmc_pccard_init_struct); -/* initialize EXMC PC card bank */ -void exmc_pccard_init(exmc_pccard_parameter_struct* exmc_pccard_init_struct); -/* enable EXMC PC card bank */ -void exmc_pccard_enable(void); -/* disable EXMC PC card bank */ -void exmc_pccard_disable(void); -/* SDRAM */ -/* deinitialize EXMC SDRAM device */ -void exmc_sdram_deinit(uint32_t exmc_sdram_device); -/* initialize exmc_sdram_parameter_struct with the default values */ -void exmc_sdram_struct_para_init(exmc_sdram_parameter_struct* exmc_sdram_init_struct); -/* initialize EXMC SDRAM device */ -void exmc_sdram_init(exmc_sdram_parameter_struct* exmc_sdram_init_struct); -/* SQPIPSRAM */ -/* deinitialize EXMC SQPIPSRAM */ -void exmc_sqpipsram_deinit(void); -/* initialize exmc_sqpipsram_parameter_struct with the default values */ -void exmc_sqpipsram_struct_para_init(exmc_sqpipsram_parameter_struct* exmc_sqpipsram_init_struct); -/* initialize EXMC SQPIPSRAM */ -void exmc_sqpipsram_init(exmc_sqpipsram_parameter_struct* exmc_sqpipsram_init_struct); - -/* function configuration */ -/* NOR/SRAM */ -/* configure consecutive clock */ -void exmc_norsram_consecutive_clock_config(uint32_t clock_mode); -/* configure CRAM page size */ -void exmc_norsram_page_size_config(uint32_t exmc_norsram_region, uint32_t page_size); -/* NAND */ -/* enable or disable the EXMC NAND ECC function */ -void exmc_nand_ecc_config(uint32_t exmc_nand_bank, ControlStatus newvalue); -/* get the EXMC ECC value */ -uint32_t exmc_ecc_get(uint32_t exmc_nand_bank); -/* SDRAM */ -/* enable or disable read sample */ -void exmc_sdram_readsample_enable(ControlStatus newvalue); -/* configure the delayed sample clock of read data */ -void exmc_sdram_readsample_config(uint32_t delay_cell, uint32_t extra_hclk); -/* configure the SDRAM memory command */ -void exmc_sdram_command_config(exmc_sdram_command_parameter_struct* exmc_sdram_command_init_struct); -/* set auto-refresh interval */ -void exmc_sdram_refresh_count_set(uint32_t exmc_count); -/* set the number of successive auto-refresh command */ -void exmc_sdram_autorefresh_number_set(uint32_t exmc_number); -/* config the write protection function */ -void exmc_sdram_write_protection_config(uint32_t exmc_sdram_device, ControlStatus newvalue); -/* get the status of SDRAM device0 or device1 */ -uint32_t exmc_sdram_bankstatus_get(uint32_t exmc_sdram_device); -/* SQPIPSRAM */ -/* set the read command */ -void exmc_sqpipsram_read_command_set(uint32_t read_command_mode,uint32_t read_wait_cycle,uint32_t read_command_code); -/* set the write command */ -void exmc_sqpipsram_write_command_set(uint32_t write_command_mode,uint32_t write_wait_cycle,uint32_t write_command_code); -/* send SPI read ID command */ -void exmc_sqpipsram_read_id_command_send(void); -/* send SPI special command which does not have address and data phase */ -void exmc_sqpipsram_write_cmd_send(void); -/* get the EXMC SPI ID low data */ -uint32_t exmc_sqpipsram_low_id_get(void); -/* get the EXMC SPI ID high data */ -uint32_t exmc_sqpipsram_high_id_get(void); -/* get the bit value of EXMC send write command bit or read ID command */ -FlagStatus exmc_sqpipsram_send_command_state_get(uint32_t send_command_flag); - -/* interrupt & flag functions */ -/* enable EXMC interrupt */ -void exmc_interrupt_enable(uint32_t exmc_bank,uint32_t interrupt); -/* disable EXMC interrupt */ -void exmc_interrupt_disable(uint32_t exmc_bank,uint32_t interrupt); -/* get EXMC flag status */ -FlagStatus exmc_flag_get(uint32_t exmc_bank,uint32_t flag); -/* clear EXMC flag status */ -void exmc_flag_clear(uint32_t exmc_bank,uint32_t flag); -/* get EXMC interrupt flag */ -FlagStatus exmc_interrupt_flag_get(uint32_t exmc_bank,uint32_t interrupt); -/* clear EXMC interrupt flag */ -void exmc_interrupt_flag_clear(uint32_t exmc_bank,uint32_t interrupt); - -#endif /* GD32F4XX_EXMC_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_exti.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_exti.h deleted file mode 100644 index d0f73f4099..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_exti.h +++ /dev/null @@ -1,277 +0,0 @@ -/*! - \file gd32f4xx_exti.h - \brief definitions for the EXTI - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.1, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_EXTI_H -#define GD32F4XX_EXTI_H - -#include "gd32f4xx.h" - -/* EXTI definitions */ -#define EXTI EXTI_BASE - -/* registers definitions */ -#define EXTI_INTEN REG32(EXTI + 0x00U) /*!< interrupt enable register */ -#define EXTI_EVEN REG32(EXTI + 0x04U) /*!< event enable register */ -#define EXTI_RTEN REG32(EXTI + 0x08U) /*!< rising edge trigger enable register */ -#define EXTI_FTEN REG32(EXTI + 0x0CU) /*!< falling trigger enable register */ -#define EXTI_SWIEV REG32(EXTI + 0x10U) /*!< software interrupt event register */ -#define EXTI_PD REG32(EXTI + 0x14U) /*!< pending register */ - -/* bits definitions */ -/* EXTI_INTEN */ -#define EXTI_INTEN_INTEN0 BIT(0) /*!< interrupt from line 0 */ -#define EXTI_INTEN_INTEN1 BIT(1) /*!< interrupt from line 1 */ -#define EXTI_INTEN_INTEN2 BIT(2) /*!< interrupt from line 2 */ -#define EXTI_INTEN_INTEN3 BIT(3) /*!< interrupt from line 3 */ -#define EXTI_INTEN_INTEN4 BIT(4) /*!< interrupt from line 4 */ -#define EXTI_INTEN_INTEN5 BIT(5) /*!< interrupt from line 5 */ -#define EXTI_INTEN_INTEN6 BIT(6) /*!< interrupt from line 6 */ -#define EXTI_INTEN_INTEN7 BIT(7) /*!< interrupt from line 7 */ -#define EXTI_INTEN_INTEN8 BIT(8) /*!< interrupt from line 8 */ -#define EXTI_INTEN_INTEN9 BIT(9) /*!< interrupt from line 9 */ -#define EXTI_INTEN_INTEN10 BIT(10) /*!< interrupt from line 10 */ -#define EXTI_INTEN_INTEN11 BIT(11) /*!< interrupt from line 11 */ -#define EXTI_INTEN_INTEN12 BIT(12) /*!< interrupt from line 12 */ -#define EXTI_INTEN_INTEN13 BIT(13) /*!< interrupt from line 13 */ -#define EXTI_INTEN_INTEN14 BIT(14) /*!< interrupt from line 14 */ -#define EXTI_INTEN_INTEN15 BIT(15) /*!< interrupt from line 15 */ -#define EXTI_INTEN_INTEN16 BIT(16) /*!< interrupt from line 16 */ -#define EXTI_INTEN_INTEN17 BIT(17) /*!< interrupt from line 17 */ -#define EXTI_INTEN_INTEN18 BIT(18) /*!< interrupt from line 18 */ -#define EXTI_INTEN_INTEN19 BIT(19) /*!< interrupt from line 19 */ -#define EXTI_INTEN_INTEN20 BIT(20) /*!< interrupt from line 20 */ -#define EXTI_INTEN_INTEN21 BIT(21) /*!< interrupt from line 21 */ -#define EXTI_INTEN_INTEN22 BIT(22) /*!< interrupt from line 22 */ - -/* EXTI_EVEN */ -#define EXTI_EVEN_EVEN0 BIT(0) /*!< event from line 0 */ -#define EXTI_EVEN_EVEN1 BIT(1) /*!< event from line 1 */ -#define EXTI_EVEN_EVEN2 BIT(2) /*!< event from line 2 */ -#define EXTI_EVEN_EVEN3 BIT(3) /*!< event from line 3 */ -#define EXTI_EVEN_EVEN4 BIT(4) /*!< event from line 4 */ -#define EXTI_EVEN_EVEN5 BIT(5) /*!< event from line 5 */ -#define EXTI_EVEN_EVEN6 BIT(6) /*!< event from line 6 */ -#define EXTI_EVEN_EVEN7 BIT(7) /*!< event from line 7 */ -#define EXTI_EVEN_EVEN8 BIT(8) /*!< event from line 8 */ -#define EXTI_EVEN_EVEN9 BIT(9) /*!< event from line 9 */ -#define EXTI_EVEN_EVEN10 BIT(10) /*!< event from line 10 */ -#define EXTI_EVEN_EVEN11 BIT(11) /*!< event from line 11 */ -#define EXTI_EVEN_EVEN12 BIT(12) /*!< event from line 12 */ -#define EXTI_EVEN_EVEN13 BIT(13) /*!< event from line 13 */ -#define EXTI_EVEN_EVEN14 BIT(14) /*!< event from line 14 */ -#define EXTI_EVEN_EVEN15 BIT(15) /*!< event from line 15 */ -#define EXTI_EVEN_EVEN16 BIT(16) /*!< event from line 16 */ -#define EXTI_EVEN_EVEN17 BIT(17) /*!< event from line 17 */ -#define EXTI_EVEN_EVEN18 BIT(18) /*!< event from line 18 */ -#define EXTI_EVEN_EVEN19 BIT(19) /*!< event from line 19 */ -#define EXTI_EVEN_EVEN20 BIT(20) /*!< event from line 20 */ -#define EXTI_EVEN_EVEN21 BIT(21) /*!< event from line 21 */ -#define EXTI_EVEN_EVEN22 BIT(22) /*!< event from line 22 */ - -/* EXTI_RTEN */ -#define EXTI_RTEN_RTEN0 BIT(0) /*!< rising edge from line 0 */ -#define EXTI_RTEN_RTEN1 BIT(1) /*!< rising edge from line 1 */ -#define EXTI_RTEN_RTEN2 BIT(2) /*!< rising edge from line 2 */ -#define EXTI_RTEN_RTEN3 BIT(3) /*!< rising edge from line 3 */ -#define EXTI_RTEN_RTEN4 BIT(4) /*!< rising edge from line 4 */ -#define EXTI_RTEN_RTEN5 BIT(5) /*!< rising edge from line 5 */ -#define EXTI_RTEN_RTEN6 BIT(6) /*!< rising edge from line 6 */ -#define EXTI_RTEN_RTEN7 BIT(7) /*!< rising edge from line 7 */ -#define EXTI_RTEN_RTEN8 BIT(8) /*!< rising edge from line 8 */ -#define EXTI_RTEN_RTEN9 BIT(9) /*!< rising edge from line 9 */ -#define EXTI_RTEN_RTEN10 BIT(10) /*!< rising edge from line 10 */ -#define EXTI_RTEN_RTEN11 BIT(11) /*!< rising edge from line 11 */ -#define EXTI_RTEN_RTEN12 BIT(12) /*!< rising edge from line 12 */ -#define EXTI_RTEN_RTEN13 BIT(13) /*!< rising edge from line 13 */ -#define EXTI_RTEN_RTEN14 BIT(14) /*!< rising edge from line 14 */ -#define EXTI_RTEN_RTEN15 BIT(15) /*!< rising edge from line 15 */ -#define EXTI_RTEN_RTEN16 BIT(16) /*!< rising edge from line 16 */ -#define EXTI_RTEN_RTEN17 BIT(17) /*!< rising edge from line 17 */ -#define EXTI_RTEN_RTEN18 BIT(18) /*!< rising edge from line 18 */ -#define EXTI_RTEN_RTEN19 BIT(19) /*!< rising edge from line 19 */ -#define EXTI_RTEN_RTEN20 BIT(20) /*!< rising edge from line 20 */ -#define EXTI_RTEN_RTEN21 BIT(21) /*!< rising edge from line 21 */ -#define EXTI_RTEN_RTEN22 BIT(22) /*!< rising edge from line 22 */ - -/* EXTI_FTEN */ -#define EXTI_FTEN_FTEN0 BIT(0) /*!< falling edge from line 0 */ -#define EXTI_FTEN_FTEN1 BIT(1) /*!< falling edge from line 1 */ -#define EXTI_FTEN_FTEN2 BIT(2) /*!< falling edge from line 2 */ -#define EXTI_FTEN_FTEN3 BIT(3) /*!< falling edge from line 3 */ -#define EXTI_FTEN_FTEN4 BIT(4) /*!< falling edge from line 4 */ -#define EXTI_FTEN_FTEN5 BIT(5) /*!< falling edge from line 5 */ -#define EXTI_FTEN_FTEN6 BIT(6) /*!< falling edge from line 6 */ -#define EXTI_FTEN_FTEN7 BIT(7) /*!< falling edge from line 7 */ -#define EXTI_FTEN_FTEN8 BIT(8) /*!< falling edge from line 8 */ -#define EXTI_FTEN_FTEN9 BIT(9) /*!< falling edge from line 9 */ -#define EXTI_FTEN_FTEN10 BIT(10) /*!< falling edge from line 10 */ -#define EXTI_FTEN_FTEN11 BIT(11) /*!< falling edge from line 11 */ -#define EXTI_FTEN_FTEN12 BIT(12) /*!< falling edge from line 12 */ -#define EXTI_FTEN_FTEN13 BIT(13) /*!< falling edge from line 13 */ -#define EXTI_FTEN_FTEN14 BIT(14) /*!< falling edge from line 14 */ -#define EXTI_FTEN_FTEN15 BIT(15) /*!< falling edge from line 15 */ -#define EXTI_FTEN_FTEN16 BIT(16) /*!< falling edge from line 16 */ -#define EXTI_FTEN_FTEN17 BIT(17) /*!< falling edge from line 17 */ -#define EXTI_FTEN_FTEN18 BIT(18) /*!< falling edge from line 18 */ -#define EXTI_FTEN_FTEN19 BIT(19) /*!< falling edge from line 19 */ -#define EXTI_FTEN_FTEN20 BIT(20) /*!< falling edge from line 20 */ -#define EXTI_FTEN_FTEN21 BIT(21) /*!< falling edge from line 21 */ -#define EXTI_FTEN_FTEN22 BIT(22) /*!< falling edge from line 22 */ - -/* EXTI_SWIEV */ -#define EXTI_SWIEV_SWIEV0 BIT(0) /*!< software interrupt/event request from line 0 */ -#define EXTI_SWIEV_SWIEV1 BIT(1) /*!< software interrupt/event request from line 1 */ -#define EXTI_SWIEV_SWIEV2 BIT(2) /*!< software interrupt/event request from line 2 */ -#define EXTI_SWIEV_SWIEV3 BIT(3) /*!< software interrupt/event request from line 3 */ -#define EXTI_SWIEV_SWIEV4 BIT(4) /*!< software interrupt/event request from line 4 */ -#define EXTI_SWIEV_SWIEV5 BIT(5) /*!< software interrupt/event request from line 5 */ -#define EXTI_SWIEV_SWIEV6 BIT(6) /*!< software interrupt/event request from line 6 */ -#define EXTI_SWIEV_SWIEV7 BIT(7) /*!< software interrupt/event request from line 7 */ -#define EXTI_SWIEV_SWIEV8 BIT(8) /*!< software interrupt/event request from line 8 */ -#define EXTI_SWIEV_SWIEV9 BIT(9) /*!< software interrupt/event request from line 9 */ -#define EXTI_SWIEV_SWIEV10 BIT(10) /*!< software interrupt/event request from line 10 */ -#define EXTI_SWIEV_SWIEV11 BIT(11) /*!< software interrupt/event request from line 11 */ -#define EXTI_SWIEV_SWIEV12 BIT(12) /*!< software interrupt/event request from line 12 */ -#define EXTI_SWIEV_SWIEV13 BIT(13) /*!< software interrupt/event request from line 13 */ -#define EXTI_SWIEV_SWIEV14 BIT(14) /*!< software interrupt/event request from line 14 */ -#define EXTI_SWIEV_SWIEV15 BIT(15) /*!< software interrupt/event request from line 15 */ -#define EXTI_SWIEV_SWIEV16 BIT(16) /*!< software interrupt/event request from line 16 */ -#define EXTI_SWIEV_SWIEV17 BIT(17) /*!< software interrupt/event request from line 17 */ -#define EXTI_SWIEV_SWIEV18 BIT(18) /*!< software interrupt/event request from line 18 */ -#define EXTI_SWIEV_SWIEV19 BIT(19) /*!< software interrupt/event request from line 19 */ -#define EXTI_SWIEV_SWIEV20 BIT(20) /*!< software interrupt/event request from line 20 */ -#define EXTI_SWIEV_SWIEV21 BIT(21) /*!< software interrupt/event request from line 21 */ -#define EXTI_SWIEV_SWIEV22 BIT(22) /*!< software interrupt/event request from line 22 */ - -/* EXTI_PD */ -#define EXTI_PD_PD0 BIT(0) /*!< interrupt/event pending status from line 0 */ -#define EXTI_PD_PD1 BIT(1) /*!< interrupt/event pending status from line 1 */ -#define EXTI_PD_PD2 BIT(2) /*!< interrupt/event pending status from line 2 */ -#define EXTI_PD_PD3 BIT(3) /*!< interrupt/event pending status from line 3 */ -#define EXTI_PD_PD4 BIT(4) /*!< interrupt/event pending status from line 4 */ -#define EXTI_PD_PD5 BIT(5) /*!< interrupt/event pending status from line 5 */ -#define EXTI_PD_PD6 BIT(6) /*!< interrupt/event pending status from line 6 */ -#define EXTI_PD_PD7 BIT(7) /*!< interrupt/event pending status from line 7 */ -#define EXTI_PD_PD8 BIT(8) /*!< interrupt/event pending status from line 8 */ -#define EXTI_PD_PD9 BIT(9) /*!< interrupt/event pending status from line 9 */ -#define EXTI_PD_PD10 BIT(10) /*!< interrupt/event pending status from line 10 */ -#define EXTI_PD_PD11 BIT(11) /*!< interrupt/event pending status from line 11 */ -#define EXTI_PD_PD12 BIT(12) /*!< interrupt/event pending status from line 12 */ -#define EXTI_PD_PD13 BIT(13) /*!< interrupt/event pending status from line 13 */ -#define EXTI_PD_PD14 BIT(14) /*!< interrupt/event pending status from line 14 */ -#define EXTI_PD_PD15 BIT(15) /*!< interrupt/event pending status from line 15 */ -#define EXTI_PD_PD16 BIT(16) /*!< interrupt/event pending status from line 16 */ -#define EXTI_PD_PD17 BIT(17) /*!< interrupt/event pending status from line 17 */ -#define EXTI_PD_PD18 BIT(18) /*!< interrupt/event pending status from line 18 */ -#define EXTI_PD_PD19 BIT(19) /*!< interrupt/event pending status from line 19 */ -#define EXTI_PD_PD20 BIT(20) /*!< interrupt/event pending status from line 20 */ -#define EXTI_PD_PD21 BIT(21) /*!< interrupt/event pending status from line 21 */ -#define EXTI_PD_PD22 BIT(22) /*!< interrupt/event pending status from line 22 */ - -/* constants definitions */ -/* EXTI line number */ -typedef enum -{ - EXTI_0 = BIT(0), /*!< EXTI line 0 */ - EXTI_1 = BIT(1), /*!< EXTI line 1 */ - EXTI_2 = BIT(2), /*!< EXTI line 2 */ - EXTI_3 = BIT(3), /*!< EXTI line 3 */ - EXTI_4 = BIT(4), /*!< EXTI line 4 */ - EXTI_5 = BIT(5), /*!< EXTI line 5 */ - EXTI_6 = BIT(6), /*!< EXTI line 6 */ - EXTI_7 = BIT(7), /*!< EXTI line 7 */ - EXTI_8 = BIT(8), /*!< EXTI line 8 */ - EXTI_9 = BIT(9), /*!< EXTI line 9 */ - EXTI_10 = BIT(10), /*!< EXTI line 10 */ - EXTI_11 = BIT(11), /*!< EXTI line 11 */ - EXTI_12 = BIT(12), /*!< EXTI line 12 */ - EXTI_13 = BIT(13), /*!< EXTI line 13 */ - EXTI_14 = BIT(14), /*!< EXTI line 14 */ - EXTI_15 = BIT(15), /*!< EXTI line 15 */ - EXTI_16 = BIT(16), /*!< EXTI line 16 */ - EXTI_17 = BIT(17), /*!< EXTI line 17 */ - EXTI_18 = BIT(18), /*!< EXTI line 18 */ - EXTI_19 = BIT(19), /*!< EXTI line 19 */ - EXTI_20 = BIT(20), /*!< EXTI line 20 */ - EXTI_21 = BIT(21), /*!< EXTI line 21 */ - EXTI_22 = BIT(22), /*!< EXTI line 22 */ -}exti_line_enum; - -/* external interrupt and event */ -typedef enum -{ - EXTI_INTERRUPT = 0, /*!< EXTI interrupt mode */ - EXTI_EVENT /*!< EXTI event mode */ -}exti_mode_enum; - -/* interrupt trigger mode */ -typedef enum -{ - EXTI_TRIG_RISING = 0, /*!< EXTI rising edge trigger */ - EXTI_TRIG_FALLING, /*!< EXTI falling edge trigger */ - EXTI_TRIG_BOTH, /*!< EXTI rising and falling edge trigger */ - EXTI_TRIG_NONE /*!< none EXTI edge trigger */ -}exti_trig_type_enum; - -/* function declarations */ -/* deinitialize the EXTI */ -void exti_deinit(void); -/* enable the configuration of EXTI initialize */ -void exti_init(exti_line_enum linex, exti_mode_enum mode, exti_trig_type_enum trig_type); -/* enable the interrupts from EXTI line x */ -void exti_interrupt_enable(exti_line_enum linex); -/* disable the interrupts from EXTI line x */ -void exti_interrupt_disable(exti_line_enum linex); -/* enable the events from EXTI line x */ -void exti_event_enable(exti_line_enum linex); -/* disable the events from EXTI line x */ -void exti_event_disable(exti_line_enum linex); -/* EXTI software interrupt event enable */ -void exti_software_interrupt_enable(exti_line_enum linex); -/* EXTI software interrupt event disable */ -void exti_software_interrupt_disable(exti_line_enum linex); - -/* interrupt & flag functions */ -/* get EXTI lines pending flag */ -FlagStatus exti_flag_get(exti_line_enum linex); -/* clear EXTI lines pending flag */ -void exti_flag_clear(exti_line_enum linex); -/* get EXTI lines flag when the interrupt flag is set */ -FlagStatus exti_interrupt_flag_get(exti_line_enum linex); -/* clear EXTI lines pending flag */ -void exti_interrupt_flag_clear(exti_line_enum linex); - -#endif /* GD32F4XX_EXTI_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_fmc.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_fmc.h deleted file mode 100644 index a364c53448..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_fmc.h +++ /dev/null @@ -1,383 +0,0 @@ -/*! - \file gd32f4xx_fmc.h - \brief definitions for the FMC - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - - -#ifndef GD32F4XX_FMC_H -#define GD32F4XX_FMC_H - -#include "gd32f4xx.h" - -/* FMC and option byte definition */ -#define FMC FMC_BASE /*!< FMC register base address */ -#define OB OB_BASE /*!< option byte base address */ - -/* registers definitions */ -#define FMC_WS REG32((FMC) + 0x0000U) /*!< FMC wait state register */ -#define FMC_KEY REG32((FMC) + 0x0004U) /*!< FMC unlock key register */ -#define FMC_OBKEY REG32((FMC) + 0x0008U) /*!< FMC option byte unlock key register */ -#define FMC_STAT REG32((FMC) + 0x000CU) /*!< FMC status register */ -#define FMC_CTL REG32((FMC) + 0x0010U) /*!< FMC control register */ -#define FMC_OBCTL0 REG32((FMC) + 0x0014U) /*!< FMC option byte control register 0 */ -#define FMC_OBCTL1 REG32((FMC) + 0x0018U) /*!< FMC option byte control register 1 */ -#define FMC_WSEN REG32((FMC) + 0x00FCU) /*!< FMC wait state enable register */ -#define FMC_PID REG32((FMC) + 0x0100U) /*!< FMC product ID register */ - -#define OB_WP1 REG32((OB) + 0x00000008U) /*!< option byte write protection 1 */ -#define OB_USER REG32((OB) + 0x00010000U) /*!< option byte user value*/ -#define OB_SPC REG32((OB) + 0x00010001U) /*!< option byte security protection value */ -#define OB_WP0 REG32((OB) + 0x00010008U) /*!< option byte write protection 0 */ - -/* bits definitions */ -/* FMC_WS */ -#define FMC_WC_WSCNT BITS(0,3) /*!< wait state counter */ - -/* FMC_KEY */ -#define FMC_KEY_KEY BITS(0,31) /*!< FMC main flash key bits */ - -/* FMC_OBKEY */ -#define FMC_OBKEY_OBKEY BITS(0,31) /*!< option byte key bits */ - -/* FMC_STAT */ -#define FMC_STAT_END BIT(0) /*!< end of operation flag bit */ -#define FMC_STAT_OPERR BIT(1) /*!< flash operation error flag bit */ -#define FMC_STAT_WPERR BIT(4) /*!< erase/Program protection error flag bit */ -#define FMC_STAT_PGMERR BIT(6) /*!< program size not match error flag bit */ -#define FMC_STAT_PGSERR BIT(7) /*!< program sequence error flag bit */ -#define FMC_STAT_RDDERR BIT(8) /*!< read D-bus protection error flag bit */ -#define FMC_STAT_BUSY BIT(16) /*!< flash busy flag bit */ - -/* FMC_CTL */ -#define FMC_CTL_PG BIT(0) /*!< main flash program command bit */ -#define FMC_CTL_SER BIT(1) /*!< main flash sector erase command bit */ -#define FMC_CTL_MER0 BIT(2) /*!< main flash mass erase for bank0 command bit */ -#define FMC_CTL_SN BITS(3,7) /*!< select which sector number to be erased */ -#define FMC_CTL_PSZ BITS(8,9) /*!< program size bit */ -#define FMC_CTL_MER1 BIT(15) /*!< main flash mass erase for bank1 command bit */ -#define FMC_CTL_START BIT(16) /*!< send erase command to FMC bit */ -#define FMC_CTL_ENDIE BIT(24) /*!< end of operation interrupt enable bit */ -#define FMC_CTL_ERRIE BIT(25) /*!< error interrupt enable bit */ -#define FMC_CTL_LK BIT(31) /*!< FMC_CTL lock bit */ - -/* FMC_OBCTL0 */ -#define FMC_OBCTL0_OB_LK BIT(0) /*!< FMC_OBCTL0 lock bit */ -#define FMC_OBCTL0_OB_START BIT(1) /*!< send option byte change command to FMC bit */ -#define FMC_OBCTL0_BOR_TH BITS(2,3) /*!< option byte BOR threshold value */ -#define FMC_OBCTL0_BB BIT(4) /*!< option byte boot bank value */ -#define FMC_OBCTL0_NWDG_HW BIT(5) /*!< option byte watchdog value */ -#define FMC_OBCTL0_NRST_DPSLP BIT(6) /*!< option byte deepsleep reset value */ -#define FMC_OBCTL0_NRST_STDBY BIT(7) /*!< option byte standby reset value */ -#define FMC_OBCTL0_SPC BITS(8,15) /*!< option byte Security Protection code */ -#define FMC_OBCTL0_WP0 BITS(16,27) /*!< erase/program protection of each sector when DRP is 0 */ -#define FMC_OBCTL0_DBS BIT(30) /*!< double banks or single bank selection when flash size is 1M bytes */ -#define FMC_OBCTL0_DRP BIT(31) /*!< D-bus read protection bit */ - -/* FMC_OBCTL1 */ -#define FMC_OBCTL1_WP1 BITS(16,27) /*!< erase/program protection of each sector when DRP is 0 */ - -/* FMC_WSEN */ -#define FMC_WSEN_WSEN BIT(0) /*!< FMC wait state enable bit */ - -/* FMC_PID */ -#define FMC_PID_PID BITS(0,31) /*!< product ID bits */ - -/* constants definitions */ -/* fmc state */ -typedef enum -{ - FMC_READY, /*!< the operation has been completed */ - FMC_BUSY, /*!< the operation is in progress */ - FMC_RDDERR, /*!< read D-bus protection error */ - FMC_PGSERR, /*!< program sequence error */ - FMC_PGMERR, /*!< program size not match error */ - FMC_WPERR, /*!< erase/program protection error */ - FMC_OPERR, /*!< operation error */ - FMC_PGERR, /*!< program error */ -}fmc_state_enum; - -/* unlock key */ -#define UNLOCK_KEY0 ((uint32_t)0x45670123U) /*!< unlock key 0 */ -#define UNLOCK_KEY1 ((uint32_t)0xCDEF89ABU) /*!< unlock key 1 */ - -#define OB_UNLOCK_KEY0 ((uint32_t)0x08192A3BU) /*!< ob unlock key 0 */ -#define OB_UNLOCK_KEY1 ((uint32_t)0x4C5D6E7FU) /*!< ob unlock key 1 */ - -/* option byte write protection */ -#define OB_LWP ((uint32_t)0x000000FFU) /*!< write protection low bits */ -#define OB_HWP ((uint32_t)0x0000FF00U) /*!< write protection high bits */ - -/* FMC wait state counter */ -#define WC_WSCNT(regval) (BITS(0,3) & ((uint32_t)(regval))) -#define WS_WSCNT_0 WC_WSCNT(0) /*!< FMC 0 wait */ -#define WS_WSCNT_1 WC_WSCNT(1) /*!< FMC 1 wait */ -#define WS_WSCNT_2 WC_WSCNT(2) /*!< FMC 2 wait */ -#define WS_WSCNT_3 WC_WSCNT(3) /*!< FMC 3 wait */ -#define WS_WSCNT_4 WC_WSCNT(4) /*!< FMC 4 wait */ -#define WS_WSCNT_5 WC_WSCNT(5) /*!< FMC 5 wait */ -#define WS_WSCNT_6 WC_WSCNT(6) /*!< FMC 6 wait */ -#define WS_WSCNT_7 WC_WSCNT(7) /*!< FMC 7 wait */ -#define WS_WSCNT_8 WC_WSCNT(8) /*!< FMC 8 wait */ -#define WS_WSCNT_9 WC_WSCNT(9) /*!< FMC 9 wait */ -#define WS_WSCNT_10 WC_WSCNT(10) /*!< FMC 10 wait */ -#define WS_WSCNT_11 WC_WSCNT(11) /*!< FMC 11 wait */ -#define WS_WSCNT_12 WC_WSCNT(12) /*!< FMC 12 wait */ -#define WS_WSCNT_13 WC_WSCNT(13) /*!< FMC 13 wait */ -#define WS_WSCNT_14 WC_WSCNT(14) /*!< FMC 14 wait */ -#define WS_WSCNT_15 WC_WSCNT(15) /*!< FMC 15 wait */ - -/* option byte BOR threshold value */ -#define OBCTL0_BOR_TH(regval) (BITS(2,3) & ((uint32_t)(regval))<< 2) -#define OB_BOR_TH_VALUE3 OBCTL0_BOR_TH(0) /*!< BOR threshold value 3 */ -#define OB_BOR_TH_VALUE2 OBCTL0_BOR_TH(1) /*!< BOR threshold value 2 */ -#define OB_BOR_TH_VALUE1 OBCTL0_BOR_TH(2) /*!< BOR threshold value 1 */ -#define OB_BOR_TH_OFF OBCTL0_BOR_TH(3) /*!< no BOR function */ - -/* option byte boot bank value */ -#define OBCTL0_BB(regval) (BIT(4) & ((uint32_t)(regval)<<4)) -#define OB_BB_DISABLE OBCTL0_BB(0) /*!< boot from bank0 */ -#define OB_BB_ENABLE OBCTL0_BB(1) /*!< boot from bank1 or bank0 if bank1 is void */ - -/* option byte software/hardware free watch dog timer */ -#define OBCTL0_NWDG_HW(regval) (BIT(5) & ((uint32_t)(regval))<< 5) -#define OB_FWDGT_SW OBCTL0_NWDG_HW(1) /*!< software free watchdog */ -#define OB_FWDGT_HW OBCTL0_NWDG_HW(0) /*!< hardware free watchdog */ - -/* option byte reset or not entering deep sleep mode */ -#define OBCTL0_NRST_DPSLP(regval) (BIT(6) & ((uint32_t)(regval))<< 6) -#define OB_DEEPSLEEP_NRST OBCTL0_NRST_DPSLP(1) /*!< no reset when entering deepsleep mode */ -#define OB_DEEPSLEEP_RST OBCTL0_NRST_DPSLP(0) /*!< generate a reset instead of entering deepsleep mode */ - -/* option byte reset or not entering standby mode */ -#define OBCTL0_NRST_STDBY(regval) (BIT(7) & ((uint32_t)(regval))<< 7) -#define OB_STDBY_NRST OBCTL0_NRST_STDBY(1) /*!< no reset when entering deepsleep mode */ -#define OB_STDBY_RST OBCTL0_NRST_STDBY(0) /*!< generate a reset instead of entering standby mode */ - -/* read protect configure */ -#define FMC_NSPC ((uint8_t)0xAAU) /*!< no security protection */ -#define FMC_LSPC ((uint8_t)0xABU) /*!< low security protection */ -#define FMC_HSPC ((uint8_t)0xCCU) /*!< high security protection */ - -/* option bytes write protection */ -#define OB_WP_0 ((uint32_t)0x00000001U) /*!< erase/program protection of sector 0 */ -#define OB_WP_1 ((uint32_t)0x00000002U) /*!< erase/program protection of sector 1 */ -#define OB_WP_2 ((uint32_t)0x00000004U) /*!< erase/program protection of sector 2 */ -#define OB_WP_3 ((uint32_t)0x00000008U) /*!< erase/program protection of sector 3 */ -#define OB_WP_4 ((uint32_t)0x00000010U) /*!< erase/program protection of sector 4 */ -#define OB_WP_5 ((uint32_t)0x00000020U) /*!< erase/program protection of sector 5 */ -#define OB_WP_6 ((uint32_t)0x00000040U) /*!< erase/program protection of sector 6 */ -#define OB_WP_7 ((uint32_t)0x00000080U) /*!< erase/program protection of sector 7 */ -#define OB_WP_8 ((uint32_t)0x00000100U) /*!< erase/program protection of sector 8 */ -#define OB_WP_9 ((uint32_t)0x00000200U) /*!< erase/program protection of sector 9 */ -#define OB_WP_10 ((uint32_t)0x00000400U) /*!< erase/program protection of sector 10 */ -#define OB_WP_11 ((uint32_t)0x00000800U) /*!< erase/program protection of sector 11 */ -#define OB_WP_12 ((uint32_t)0x00010000U) /*!< erase/program protection of sector 12 */ -#define OB_WP_13 ((uint32_t)0x00020000U) /*!< erase/program protection of sector 13 */ -#define OB_WP_14 ((uint32_t)0x00040000U) /*!< erase/program protection of sector 14 */ -#define OB_WP_15 ((uint32_t)0x00080000U) /*!< erase/program protection of sector 15 */ -#define OB_WP_16 ((uint32_t)0x00100000U) /*!< erase/program protection of sector 16 */ -#define OB_WP_17 ((uint32_t)0x00200000U) /*!< erase/program protection of sector 17 */ -#define OB_WP_18 ((uint32_t)0x00400000U) /*!< erase/program protection of sector 18 */ -#define OB_WP_19 ((uint32_t)0x00800000U) /*!< erase/program protection of sector 19 */ -#define OB_WP_20 ((uint32_t)0x01000000U) /*!< erase/program protection of sector 20 */ -#define OB_WP_21 ((uint32_t)0x02000000U) /*!< erase/program protection of sector 21 */ -#define OB_WP_22 ((uint32_t)0x04000000U) /*!< erase/program protection of sector 22 */ -#define OB_WP_23_27 ((uint32_t)0x08000000U) /*!< erase/program protection of sector 23~27 */ -#define OB_WP_ALL ((uint32_t)0x0FFF0FFFU) /*!< erase/program protection of all sectors */ - -/* option bytes D-bus read protection */ -#define OB_DRP_0 ((uint32_t)0x00000001U) /*!< D-bus read protection protection of sector 0 */ -#define OB_DRP_1 ((uint32_t)0x00000002U) /*!< D-bus read protection protection of sector 1 */ -#define OB_DRP_2 ((uint32_t)0x00000004U) /*!< D-bus read protection protection of sector 2 */ -#define OB_DRP_3 ((uint32_t)0x00000008U) /*!< D-bus read protection protection of sector 3 */ -#define OB_DRP_4 ((uint32_t)0x00000010U) /*!< D-bus read protection protection of sector 4 */ -#define OB_DRP_5 ((uint32_t)0x00000020U) /*!< D-bus read protection protection of sector 5 */ -#define OB_DRP_6 ((uint32_t)0x00000040U) /*!< D-bus read protection protection of sector 6 */ -#define OB_DRP_7 ((uint32_t)0x00000080U) /*!< D-bus read protection protection of sector 7 */ -#define OB_DRP_8 ((uint32_t)0x00000100U) /*!< D-bus read protection protection of sector 8 */ -#define OB_DRP_9 ((uint32_t)0x00000200U) /*!< D-bus read protection protection of sector 9 */ -#define OB_DRP_10 ((uint32_t)0x00000400U) /*!< D-bus read protection protection of sector 10 */ -#define OB_DRP_11 ((uint32_t)0x00000800U) /*!< D-bus read protection protection of sector 11 */ -#define OB_DRP_12 ((uint32_t)0x00010000U) /*!< D-bus read protection protection of sector 12 */ -#define OB_DRP_13 ((uint32_t)0x00020000U) /*!< D-bus read protection protection of sector 13 */ -#define OB_DRP_14 ((uint32_t)0x00040000U) /*!< D-bus read protection protection of sector 14 */ -#define OB_DRP_15 ((uint32_t)0x00080000U) /*!< D-bus read protection protection of sector 15 */ -#define OB_DRP_16 ((uint32_t)0x00100000U) /*!< D-bus read protection protection of sector 16 */ -#define OB_DRP_17 ((uint32_t)0x00200000U) /*!< D-bus read protection protection of sector 17 */ -#define OB_DRP_18 ((uint32_t)0x00400000U) /*!< D-bus read protection protection of sector 18 */ -#define OB_DRP_19 ((uint32_t)0x00800000U) /*!< D-bus read protection protection of sector 19 */ -#define OB_DRP_20 ((uint32_t)0x01000000U) /*!< D-bus read protection protection of sector 20 */ -#define OB_DRP_21 ((uint32_t)0x02000000U) /*!< D-bus read protection protection of sector 21 */ -#define OB_DRP_22 ((uint32_t)0x04000000U) /*!< D-bus read protection protection of sector 22 */ -#define OB_DRP_23_27 ((uint32_t)0x08000000U) /*!< D-bus read protection protection of sector 23~27 */ - -/* double banks or single bank selection when flash size is 1M bytes */ -#define OBCTL0_DBS(regval) (BIT(30) & ((uint32_t)(regval)<<30)) -#define OB_DBS_DISABLE OBCTL0_DBS(0) /*!< single bank when flash size is 1M bytes */ -#define OB_DBS_ENABLE OBCTL0_DBS(1) /*!< double bank when flash size is 1M bytes */ - -/* option bytes D-bus read protection mode */ -#define OBCTL0_DRP(regval) (BIT(31) & ((uint32_t)(regval)<<31)) -#define OB_DRP_DISABLE OBCTL0_DRP(0) /*!< the WPx bits used as erase/program protection of each sector */ -#define OB_DRP_ENABLE OBCTL0_DRP(1) /*!< the WPx bits used as erase/program protection and D-bus read protection of each sector */ - -/* FMC sectors */ -#define CTL_SN(regval) (BITS(3,7) & ((uint32_t)(regval))<< 3) -#define CTL_SECTOR_NUMBER_0 CTL_SN(0) /*!< sector 0 */ -#define CTL_SECTOR_NUMBER_1 CTL_SN(1) /*!< sector 1 */ -#define CTL_SECTOR_NUMBER_2 CTL_SN(2) /*!< sector 2 */ -#define CTL_SECTOR_NUMBER_3 CTL_SN(3) /*!< sector 3 */ -#define CTL_SECTOR_NUMBER_4 CTL_SN(4) /*!< sector 4 */ -#define CTL_SECTOR_NUMBER_5 CTL_SN(5) /*!< sector 5 */ -#define CTL_SECTOR_NUMBER_6 CTL_SN(6) /*!< sector 6 */ -#define CTL_SECTOR_NUMBER_7 CTL_SN(7) /*!< sector 7 */ -#define CTL_SECTOR_NUMBER_8 CTL_SN(8) /*!< sector 8 */ -#define CTL_SECTOR_NUMBER_9 CTL_SN(9) /*!< sector 9 */ -#define CTL_SECTOR_NUMBER_10 CTL_SN(10) /*!< sector 10 */ -#define CTL_SECTOR_NUMBER_11 CTL_SN(11) /*!< sector 11 */ -#define CTL_SECTOR_NUMBER_24 CTL_SN(12) /*!< sector 24 */ -#define CTL_SECTOR_NUMBER_25 CTL_SN(13) /*!< sector 25 */ -#define CTL_SECTOR_NUMBER_26 CTL_SN(14) /*!< sector 26 */ -#define CTL_SECTOR_NUMBER_27 CTL_SN(15) /*!< sector 27 */ -#define CTL_SECTOR_NUMBER_12 CTL_SN(16) /*!< sector 12 */ -#define CTL_SECTOR_NUMBER_13 CTL_SN(17) /*!< sector 13 */ -#define CTL_SECTOR_NUMBER_14 CTL_SN(18) /*!< sector 14 */ -#define CTL_SECTOR_NUMBER_15 CTL_SN(19) /*!< sector 15 */ -#define CTL_SECTOR_NUMBER_16 CTL_SN(20) /*!< sector 16 */ -#define CTL_SECTOR_NUMBER_17 CTL_SN(21) /*!< sector 17 */ -#define CTL_SECTOR_NUMBER_18 CTL_SN(22) /*!< sector 18 */ -#define CTL_SECTOR_NUMBER_19 CTL_SN(23) /*!< sector 19 */ -#define CTL_SECTOR_NUMBER_20 CTL_SN(24) /*!< sector 20 */ -#define CTL_SECTOR_NUMBER_21 CTL_SN(25) /*!< sector 21 */ -#define CTL_SECTOR_NUMBER_22 CTL_SN(26) /*!< sector 22 */ -#define CTL_SECTOR_NUMBER_23 CTL_SN(27) /*!< sector 23 */ - - -/* FMC program size */ -#define CTL_PSZ(regval) (BITS(8,9) & ((uint32_t)(regval))<< 8) -#define CTL_PSZ_BYTE CTL_PSZ(0) /*!< FMC program by byte access */ -#define CTL_PSZ_HALF_WORD CTL_PSZ(1) /*!< FMC program by half-word access */ -#define CTL_PSZ_WORD CTL_PSZ(2) /*!< FMC program by word access */ - -/* FMC interrupt enable */ -#define FMC_INT_END ((uint32_t)0x01000000U) /*!< enable FMC end of program interrupt */ -#define FMC_INT_ERR ((uint32_t)0x02000000U) /*!< enable FMC error interrupt */ - -/* FMC flags */ -#define FMC_FLAG_END ((uint32_t)0x00000001U) /*!< FMC end of operation flag bit */ -#define FMC_FLAG_OPERR ((uint32_t)0x00000002U) /*!< FMC operation error flag bit */ -#define FMC_FLAG_WPERR ((uint32_t)0x00000010U) /*!< FMC erase/program protection error flag bit */ -#define FMC_FLAG_PGMERR ((uint32_t)0x00000040U) /*!< FMC program size not match error flag bit */ -#define FMC_FLAG_PGSERR ((uint32_t)0x00000080U) /*!< FMC program sequence error flag bit */ -#define FMC_FLAG_RDDERR ((uint32_t)0x00000100U) /*!< FMC read D-bus protection error flag bit */ -#define FMC_FLAG_BUSY ((uint32_t)0x00010000U) /*!< FMC busy flag */ - -/* function declarations */ -/* FMC main memory programming functions */ -/* set the FMC wait state counter */ -void fmc_wscnt_set(uint32_t wscnt); -/* unlock the main FMC operation */ -void fmc_unlock(void); -/* lock the main FMC operation */ -void fmc_lock(void); -/* FMC erase sector */ -fmc_state_enum fmc_sector_erase(uint32_t fmc_sector); -/* FMC erase whole chip */ -fmc_state_enum fmc_mass_erase(void); -/* FMC erase whole bank0 */ -fmc_state_enum fmc_bank0_erase(void); -/* FMC erase whole bank1 */ -fmc_state_enum fmc_bank1_erase(void); -/* FMC program a word at the corresponding address */ -fmc_state_enum fmc_word_program(uint32_t address, uint32_t data); -/* FMC program a half word at the corresponding address */ -fmc_state_enum fmc_halfword_program(uint32_t address, uint16_t data); -/* FMC program a byte at the corresponding address */ -fmc_state_enum fmc_byte_program(uint32_t address, uint8_t data); - -/* FMC option bytes programming functions */ -/* unlock the option byte operation */ -void ob_unlock(void); -/* lock the option byte operation */ -void ob_lock(void); -/* send option byte change command */ -void ob_start(void); -/* erase option byte */ -void ob_erase(void); -/* enable write protect */ -void ob_write_protection_enable(uint32_t ob_wp); -/* disable write protect */ -void ob_write_protection_disable(uint32_t ob_wp); -/* enable erase/program protection and D-bus read protection */ -void ob_drp_enable(uint32_t ob_drp); -/* disable erase/program protection and D-bus read protection */ -void ob_drp_disable(uint32_t ob_drp); -/* set the option byte security protection level */ -void ob_security_protection_config(uint8_t ob_spc); -/* write the FMC option byte user */ -void ob_user_write(uint32_t ob_fwdgt, uint32_t ob_deepsleep, uint32_t ob_stdby); -/* option byte BOR threshold value */ -void ob_user_bor_threshold(uint32_t ob_bor_th); -/* configure the boot mode */ -void ob_boot_mode_config(uint32_t boot_mode); -/* get the FMC option byte user */ -uint8_t ob_user_get(void); -/* get the FMC option byte write protection */ -uint16_t ob_write_protection0_get(void); -/* get the FMC option byte write protection */ -uint16_t ob_write_protection1_get(void); -/* get the FMC erase/program protection and D-bus read protection option bytes value */ -uint16_t ob_drp0_get(void); -/* get the FMC erase/program protection and D-bus read protection option bytes value */ -uint16_t ob_drp1_get(void); -/* get option byte security protection code value */ -FlagStatus ob_spc_get(void); -/* get the FMC threshold value */ -uint8_t ob_user_bor_threshold_get(void); - -/* FMC interrupts and flags management functions */ -/* enable FMC interrupt */ -void fmc_interrupt_enable(uint32_t fmc_int); -/* disable FMC interrupt */ -void fmc_interrupt_disable(uint32_t fmc_int); -/* get flag set or reset */ -FlagStatus fmc_flag_get(uint32_t fmc_flag); -/* clear the FMC pending flag */ -void fmc_flag_clear(uint32_t fmc_flag); -/* return the FMC state */ -fmc_state_enum fmc_state_get(void); -/* check FMC ready or not */ -fmc_state_enum fmc_ready_wait(void); - -#endif /* GD32F4XX_FMC_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_fwdgt.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_fwdgt.h deleted file mode 100644 index a3efd96234..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_fwdgt.h +++ /dev/null @@ -1,106 +0,0 @@ -/*! - \file gd32f4xx_fwdgt.h - \brief definitions for the FWDGT - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_FWDGT_H -#define GD32F4XX_FWDGT_H - -#include "gd32f4xx.h" - -/* FWDGT definitions */ -#define FWDGT FWDGT_BASE - -/* registers definitions */ -#define FWDGT_CTL REG32((FWDGT) + 0x00U) /*!< FWDGT control register */ -#define FWDGT_PSC REG32((FWDGT) + 0x04U) /*!< FWDGT prescaler register */ -#define FWDGT_RLD REG32((FWDGT) + 0x08U) /*!< FWDGT reload register */ -#define FWDGT_STAT REG32((FWDGT) + 0x0CU) /*!< FWDGT status register */ - -/* bits definitions */ -/* FWDGT_CTL */ -#define FWDGT_CTL_CMD BITS(0,15) /*!< FWDGT command value */ - -/* FWDGT_PSC */ -#define FWDGT_PSC_PSC BITS(0,2) /*!< FWDGT prescaler divider value */ - -/* FWDGT_RLD */ -#define FWDGT_RLD_RLD BITS(0,11) /*!< FWDGT counter reload value */ - -/* FWDGT_STAT */ -#define FWDGT_STAT_PUD BIT(0) /*!< FWDGT prescaler divider value update */ -#define FWDGT_STAT_RUD BIT(1) /*!< FWDGT counter reload value update */ - -/* constants definitions */ -/* psc register value */ -#define PSC_PSC(regval) (BITS(0,2) & ((uint32_t)(regval) << 0)) -#define FWDGT_PSC_DIV4 ((uint8_t)PSC_PSC(0)) /*!< FWDGT prescaler set to 4 */ -#define FWDGT_PSC_DIV8 ((uint8_t)PSC_PSC(1)) /*!< FWDGT prescaler set to 8 */ -#define FWDGT_PSC_DIV16 ((uint8_t)PSC_PSC(2)) /*!< FWDGT prescaler set to 16 */ -#define FWDGT_PSC_DIV32 ((uint8_t)PSC_PSC(3)) /*!< FWDGT prescaler set to 32 */ -#define FWDGT_PSC_DIV64 ((uint8_t)PSC_PSC(4)) /*!< FWDGT prescaler set to 64 */ -#define FWDGT_PSC_DIV128 ((uint8_t)PSC_PSC(5)) /*!< FWDGT prescaler set to 128 */ -#define FWDGT_PSC_DIV256 ((uint8_t)PSC_PSC(6)) /*!< FWDGT prescaler set to 256 */ - -/* control value */ -#define FWDGT_WRITEACCESS_ENABLE ((uint16_t)0x5555U) /*!< FWDGT_CTL bits write access enable value */ -#define FWDGT_WRITEACCESS_DISABLE ((uint16_t)0x0000U) /*!< FWDGT_CTL bits write access disable value */ -#define FWDGT_KEY_RELOAD ((uint16_t)0xAAAAU) /*!< FWDGT_CTL bits fwdgt counter reload value */ -#define FWDGT_KEY_ENABLE ((uint16_t)0xCCCCU) /*!< FWDGT_CTL bits fwdgt counter enable value */ - -/* FWDGT timeout value */ -#define FWDGT_PSC_TIMEOUT ((uint32_t)0x000FFFFFU) /*!< FWDGT_PSC register write operation state flag timeout */ -#define FWDGT_RLD_TIMEOUT ((uint32_t)0x000FFFFFU) /*!< FWDGT_RLD register write operation state flag timeout */ - -/* FWDGT flag definitions */ -#define FWDGT_FLAG_PUD FWDGT_STAT_PUD /*!< FWDGT prescaler divider value update flag */ -#define FWDGT_FLAG_RUD FWDGT_STAT_RUD /*!< FWDGT counter reload value update flag */ - -/* function declarations */ -/* enable write access to FWDGT_PSC and FWDGT_RLD */ -void fwdgt_write_enable(void); -/* disable write access to FWDGT_PSC and FWDGT_RLD */ -void fwdgt_write_disable(void); -/* start the free watchdog timer counter */ -void fwdgt_enable(void); - -/* reload the counter of FWDGT */ -void fwdgt_counter_reload(void); -/* configure counter reload value, and prescaler divider value */ -ErrStatus fwdgt_config(uint16_t reload_value, uint8_t prescaler_div); - -/* get flag state of FWDGT */ -FlagStatus fwdgt_flag_get(uint16_t flag); - -#endif /* GD32F4XX_FWDGT_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_gpio.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_gpio.h deleted file mode 100644 index 6a0d4ed628..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_gpio.h +++ /dev/null @@ -1,408 +0,0 @@ -/*! - \file gd32f4xx_gpio.h - \brief definitions for the GPIO - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_GPIO_H -#define GD32F4XX_GPIO_H - -#include "gd32f4xx.h" - -/* GPIOx(x=A,B,C,D,E,F,G,H,I) definitions */ -#define GPIOA (GPIO_BASE + 0x00000000U) -#define GPIOB (GPIO_BASE + 0x00000400U) -#define GPIOC (GPIO_BASE + 0x00000800U) -#define GPIOD (GPIO_BASE + 0x00000C00U) -#define GPIOE (GPIO_BASE + 0x00001000U) -#define GPIOF (GPIO_BASE + 0x00001400U) -#define GPIOG (GPIO_BASE + 0x00001800U) -#define GPIOH (GPIO_BASE + 0x00001C00U) -#define GPIOI (GPIO_BASE + 0x00002000U) - -/* registers definitions */ -#define GPIO_CTL(gpiox) REG32((gpiox) + 0x00U) /*!< GPIO port control register */ -#define GPIO_OMODE(gpiox) REG32((gpiox) + 0x04U) /*!< GPIO port output mode register */ -#define GPIO_OSPD(gpiox) REG32((gpiox) + 0x08U) /*!< GPIO port output speed register */ -#define GPIO_PUD(gpiox) REG32((gpiox) + 0x0CU) /*!< GPIO port pull-up/pull-down register */ -#define GPIO_ISTAT(gpiox) REG32((gpiox) + 0x10U) /*!< GPIO port input status register */ -#define GPIO_OCTL(gpiox) REG32((gpiox) + 0x14U) /*!< GPIO port output control register */ -#define GPIO_BOP(gpiox) REG32((gpiox) + 0x18U) /*!< GPIO port bit operation register */ -#define GPIO_LOCK(gpiox) REG32((gpiox) + 0x1CU) /*!< GPIO port configuration lock register */ -#define GPIO_AFSEL0(gpiox) REG32((gpiox) + 0x20U) /*!< GPIO alternate function selected register 0 */ -#define GPIO_AFSEL1(gpiox) REG32((gpiox) + 0x24U) /*!< GPIO alternate function selected register 1 */ -#define GPIO_BC(gpiox) REG32((gpiox) + 0x28U) /*!< GPIO bit clear register */ -#define GPIO_TG(gpiox) REG32((gpiox) + 0x2CU) /*!< GPIO port bit toggle register */ - -/* bits definitions */ -/* GPIO_CTL */ -#define GPIO_CTL_CTL0 BITS(0,1) /*!< pin 0 configuration bits */ -#define GPIO_CTL_CTL1 BITS(2,3) /*!< pin 1 configuration bits */ -#define GPIO_CTL_CTL2 BITS(4,5) /*!< pin 2 configuration bits */ -#define GPIO_CTL_CTL3 BITS(6,7) /*!< pin 3 configuration bits */ -#define GPIO_CTL_CTL4 BITS(8,9) /*!< pin 4 configuration bits */ -#define GPIO_CTL_CTL5 BITS(10,11) /*!< pin 5 configuration bits */ -#define GPIO_CTL_CTL6 BITS(12,13) /*!< pin 6 configuration bits */ -#define GPIO_CTL_CTL7 BITS(14,15) /*!< pin 7 configuration bits */ -#define GPIO_CTL_CTL8 BITS(16,17) /*!< pin 8 configuration bits */ -#define GPIO_CTL_CTL9 BITS(18,19) /*!< pin 9 configuration bits */ -#define GPIO_CTL_CTL10 BITS(20,21) /*!< pin 10 configuration bits */ -#define GPIO_CTL_CTL11 BITS(22,23) /*!< pin 11 configuration bits */ -#define GPIO_CTL_CTL12 BITS(24,25) /*!< pin 12 configuration bits */ -#define GPIO_CTL_CTL13 BITS(26,27) /*!< pin 13 configuration bits */ -#define GPIO_CTL_CTL14 BITS(28,29) /*!< pin 14 configuration bits */ -#define GPIO_CTL_CTL15 BITS(30,31) /*!< pin 15 configuration bits */ - -/* GPIO_OMODE */ -#define GPIO_OMODE_OM0 BIT(0) /*!< pin 0 output mode bit */ -#define GPIO_OMODE_OM1 BIT(1) /*!< pin 1 output mode bit */ -#define GPIO_OMODE_OM2 BIT(2) /*!< pin 2 output mode bit */ -#define GPIO_OMODE_OM3 BIT(3) /*!< pin 3 output mode bit */ -#define GPIO_OMODE_OM4 BIT(4) /*!< pin 4 output mode bit */ -#define GPIO_OMODE_OM5 BIT(5) /*!< pin 5 output mode bit */ -#define GPIO_OMODE_OM6 BIT(6) /*!< pin 6 output mode bit */ -#define GPIO_OMODE_OM7 BIT(7) /*!< pin 7 output mode bit */ -#define GPIO_OMODE_OM8 BIT(8) /*!< pin 8 output mode bit */ -#define GPIO_OMODE_OM9 BIT(9) /*!< pin 9 output mode bit */ -#define GPIO_OMODE_OM10 BIT(10) /*!< pin 10 output mode bit */ -#define GPIO_OMODE_OM11 BIT(11) /*!< pin 11 output mode bit */ -#define GPIO_OMODE_OM12 BIT(12) /*!< pin 12 output mode bit */ -#define GPIO_OMODE_OM13 BIT(13) /*!< pin 13 output mode bit */ -#define GPIO_OMODE_OM14 BIT(14) /*!< pin 14 output mode bit */ -#define GPIO_OMODE_OM15 BIT(15) /*!< pin 15 output mode bit */ - -/* GPIO_OSPD */ -#define GPIO_OSPD_OSPD0 BITS(0,1) /*!< pin 0 output max speed bits */ -#define GPIO_OSPD_OSPD1 BITS(2,3) /*!< pin 1 output max speed bits */ -#define GPIO_OSPD_OSPD2 BITS(4,5) /*!< pin 2 output max speed bits */ -#define GPIO_OSPD_OSPD3 BITS(6,7) /*!< pin 3 output max speed bits */ -#define GPIO_OSPD_OSPD4 BITS(8,9) /*!< pin 4 output max speed bits */ -#define GPIO_OSPD_OSPD5 BITS(10,11) /*!< pin 5 output max speed bits */ -#define GPIO_OSPD_OSPD6 BITS(12,13) /*!< pin 6 output max speed bits */ -#define GPIO_OSPD_OSPD7 BITS(14,15) /*!< pin 7 output max speed bits */ -#define GPIO_OSPD_OSPD8 BITS(16,17) /*!< pin 8 output max speed bits */ -#define GPIO_OSPD_OSPD9 BITS(18,19) /*!< pin 9 output max speed bits */ -#define GPIO_OSPD_OSPD10 BITS(20,21) /*!< pin 10 output max speed bits */ -#define GPIO_OSPD_OSPD11 BITS(22,23) /*!< pin 11 output max speed bits */ -#define GPIO_OSPD_OSPD12 BITS(24,25) /*!< pin 12 output max speed bits */ -#define GPIO_OSPD_OSPD13 BITS(26,27) /*!< pin 13 output max speed bits */ -#define GPIO_OSPD_OSPD14 BITS(28,29) /*!< pin 14 output max speed bits */ -#define GPIO_OSPD_OSPD15 BITS(30,31) /*!< pin 15 output max speed bits */ - -/* GPIO_PUD */ -#define GPIO_PUD_PUD0 BITS(0,1) /*!< pin 0 pull-up or pull-down bits */ -#define GPIO_PUD_PUD1 BITS(2,3) /*!< pin 1 pull-up or pull-down bits */ -#define GPIO_PUD_PUD2 BITS(4,5) /*!< pin 2 pull-up or pull-down bits */ -#define GPIO_PUD_PUD3 BITS(6,7) /*!< pin 3 pull-up or pull-down bits */ -#define GPIO_PUD_PUD4 BITS(8,9) /*!< pin 4 pull-up or pull-down bits */ -#define GPIO_PUD_PUD5 BITS(10,11) /*!< pin 5 pull-up or pull-down bits */ -#define GPIO_PUD_PUD6 BITS(12,13) /*!< pin 6 pull-up or pull-down bits */ -#define GPIO_PUD_PUD7 BITS(14,15) /*!< pin 7 pull-up or pull-down bits */ -#define GPIO_PUD_PUD8 BITS(16,17) /*!< pin 8 pull-up or pull-down bits */ -#define GPIO_PUD_PUD9 BITS(18,19) /*!< pin 9 pull-up or pull-down bits */ -#define GPIO_PUD_PUD10 BITS(20,21) /*!< pin 10 pull-up or pull-down bits */ -#define GPIO_PUD_PUD11 BITS(22,23) /*!< pin 11 pull-up or pull-down bits */ -#define GPIO_PUD_PUD12 BITS(24,25) /*!< pin 12 pull-up or pull-down bits */ -#define GPIO_PUD_PUD13 BITS(26,27) /*!< pin 13 pull-up or pull-down bits */ -#define GPIO_PUD_PUD14 BITS(28,29) /*!< pin 14 pull-up or pull-down bits */ -#define GPIO_PUD_PUD15 BITS(30,31) /*!< pin 15 pull-up or pull-down bits */ - -/* GPIO_ISTAT */ -#define GPIO_ISTAT_ISTAT0 BIT(0) /*!< pin 0 input status */ -#define GPIO_ISTAT_ISTAT1 BIT(1) /*!< pin 1 input status */ -#define GPIO_ISTAT_ISTAT2 BIT(2) /*!< pin 2 input status */ -#define GPIO_ISTAT_ISTAT3 BIT(3) /*!< pin 3 input status */ -#define GPIO_ISTAT_ISTAT4 BIT(4) /*!< pin 4 input status */ -#define GPIO_ISTAT_ISTAT5 BIT(5) /*!< pin 5 input status */ -#define GPIO_ISTAT_ISTAT6 BIT(6) /*!< pin 6 input status */ -#define GPIO_ISTAT_ISTAT7 BIT(7) /*!< pin 7 input status */ -#define GPIO_ISTAT_ISTAT8 BIT(8) /*!< pin 8 input status */ -#define GPIO_ISTAT_ISTAT9 BIT(9) /*!< pin 9 input status */ -#define GPIO_ISTAT_ISTAT10 BIT(10) /*!< pin 10 input status */ -#define GPIO_ISTAT_ISTAT11 BIT(11) /*!< pin 11 input status */ -#define GPIO_ISTAT_ISTAT12 BIT(12) /*!< pin 12 input status */ -#define GPIO_ISTAT_ISTAT13 BIT(13) /*!< pin 13 input status */ -#define GPIO_ISTAT_ISTAT14 BIT(14) /*!< pin 14 input status */ -#define GPIO_ISTAT_ISTAT15 BIT(15) /*!< pin 15 input status */ - -/* GPIO_OCTL */ -#define GPIO_OCTL_OCTL0 BIT(0) /*!< pin 0 output bit */ -#define GPIO_OCTL_OCTL1 BIT(1) /*!< pin 1 output bit */ -#define GPIO_OCTL_OCTL2 BIT(2) /*!< pin 2 output bit */ -#define GPIO_OCTL_OCTL3 BIT(3) /*!< pin 3 output bit */ -#define GPIO_OCTL_OCTL4 BIT(4) /*!< pin 4 output bit */ -#define GPIO_OCTL_OCTL5 BIT(5) /*!< pin 5 output bit */ -#define GPIO_OCTL_OCTL6 BIT(6) /*!< pin 6 output bit */ -#define GPIO_OCTL_OCTL7 BIT(7) /*!< pin 7 output bit */ -#define GPIO_OCTL_OCTL8 BIT(8) /*!< pin 8 output bit */ -#define GPIO_OCTL_OCTL9 BIT(9) /*!< pin 9 output bit */ -#define GPIO_OCTL_OCTL10 BIT(10) /*!< pin 10 output bit */ -#define GPIO_OCTL_OCTL11 BIT(11) /*!< pin 11 output bit */ -#define GPIO_OCTL_OCTL12 BIT(12) /*!< pin 12 output bit */ -#define GPIO_OCTL_OCTL13 BIT(13) /*!< pin 13 output bit */ -#define GPIO_OCTL_OCTL14 BIT(14) /*!< pin 14 output bit */ -#define GPIO_OCTL_OCTL15 BIT(15) /*!< pin 15 output bit */ - -/* GPIO_BOP */ -#define GPIO_BOP_BOP0 BIT(0) /*!< pin 0 set bit */ -#define GPIO_BOP_BOP1 BIT(1) /*!< pin 1 set bit */ -#define GPIO_BOP_BOP2 BIT(2) /*!< pin 2 set bit */ -#define GPIO_BOP_BOP3 BIT(3) /*!< pin 3 set bit */ -#define GPIO_BOP_BOP4 BIT(4) /*!< pin 4 set bit */ -#define GPIO_BOP_BOP5 BIT(5) /*!< pin 5 set bit */ -#define GPIO_BOP_BOP6 BIT(6) /*!< pin 6 set bit */ -#define GPIO_BOP_BOP7 BIT(7) /*!< pin 7 set bit */ -#define GPIO_BOP_BOP8 BIT(8) /*!< pin 8 set bit */ -#define GPIO_BOP_BOP9 BIT(9) /*!< pin 9 set bit */ -#define GPIO_BOP_BOP10 BIT(10) /*!< pin 10 set bit */ -#define GPIO_BOP_BOP11 BIT(11) /*!< pin 11 set bit */ -#define GPIO_BOP_BOP12 BIT(12) /*!< pin 12 set bit */ -#define GPIO_BOP_BOP13 BIT(13) /*!< pin 13 set bit */ -#define GPIO_BOP_BOP14 BIT(14) /*!< pin 14 set bit */ -#define GPIO_BOP_BOP15 BIT(15) /*!< pin 15 set bit */ -#define GPIO_BOP_CR0 BIT(16) /*!< pin 0 clear bit */ -#define GPIO_BOP_CR1 BIT(17) /*!< pin 1 clear bit */ -#define GPIO_BOP_CR2 BIT(18) /*!< pin 2 clear bit */ -#define GPIO_BOP_CR3 BIT(19) /*!< pin 3 clear bit */ -#define GPIO_BOP_CR4 BIT(20) /*!< pin 4 clear bit */ -#define GPIO_BOP_CR5 BIT(21) /*!< pin 5 clear bit */ -#define GPIO_BOP_CR6 BIT(22) /*!< pin 6 clear bit */ -#define GPIO_BOP_CR7 BIT(23) /*!< pin 7 clear bit */ -#define GPIO_BOP_CR8 BIT(24) /*!< pin 8 clear bit */ -#define GPIO_BOP_CR9 BIT(25) /*!< pin 9 clear bit */ -#define GPIO_BOP_CR10 BIT(26) /*!< pin 10 clear bit */ -#define GPIO_BOP_CR11 BIT(27) /*!< pin 11 clear bit */ -#define GPIO_BOP_CR12 BIT(28) /*!< pin 12 clear bit */ -#define GPIO_BOP_CR13 BIT(29) /*!< pin 13 clear bit */ -#define GPIO_BOP_CR14 BIT(30) /*!< pin 14 clear bit */ -#define GPIO_BOP_CR15 BIT(31) /*!< pin 15 clear bit */ - -/* GPIO_LOCK */ -#define GPIO_LOCK_LK0 BIT(0) /*!< pin 0 lock bit */ -#define GPIO_LOCK_LK1 BIT(1) /*!< pin 1 lock bit */ -#define GPIO_LOCK_LK2 BIT(2) /*!< pin 2 lock bit */ -#define GPIO_LOCK_LK3 BIT(3) /*!< pin 3 lock bit */ -#define GPIO_LOCK_LK4 BIT(4) /*!< pin 4 lock bit */ -#define GPIO_LOCK_LK5 BIT(5) /*!< pin 5 lock bit */ -#define GPIO_LOCK_LK6 BIT(6) /*!< pin 6 lock bit */ -#define GPIO_LOCK_LK7 BIT(7) /*!< pin 7 lock bit */ -#define GPIO_LOCK_LK8 BIT(8) /*!< pin 8 lock bit */ -#define GPIO_LOCK_LK9 BIT(9) /*!< pin 9 lock bit */ -#define GPIO_LOCK_LK10 BIT(10) /*!< pin 10 lock bit */ -#define GPIO_LOCK_LK11 BIT(11) /*!< pin 11 lock bit */ -#define GPIO_LOCK_LK12 BIT(12) /*!< pin 12 lock bit */ -#define GPIO_LOCK_LK13 BIT(13) /*!< pin 13 lock bit */ -#define GPIO_LOCK_LK14 BIT(14) /*!< pin 14 lock bit */ -#define GPIO_LOCK_LK15 BIT(15) /*!< pin 15 lock bit */ -#define GPIO_LOCK_LKK BIT(16) /*!< pin sequence lock key */ - -/* GPIO_AFSEL0 */ -#define GPIO_AFSEL0_SEL0 BITS(0,3) /*!< pin 0 alternate function selected */ -#define GPIO_AFSEL0_SEL1 BITS(4,7) /*!< pin 1 alternate function selected */ -#define GPIO_AFSEL0_SEL2 BITS(8,11) /*!< pin 2 alternate function selected */ -#define GPIO_AFSEL0_SEL3 BITS(12,15) /*!< pin 3 alternate function selected */ -#define GPIO_AFSEL0_SEL4 BITS(16,19) /*!< pin 4 alternate function selected */ -#define GPIO_AFSEL0_SEL5 BITS(20,23) /*!< pin 5 alternate function selected */ -#define GPIO_AFSEL0_SEL6 BITS(24,27) /*!< pin 6 alternate function selected */ -#define GPIO_AFSEL0_SEL7 BITS(28,31) /*!< pin 7 alternate function selected */ - -/* GPIO_AFSEL1 */ -#define GPIO_AFSEL1_SEL8 BITS(0,3) /*!< pin 8 alternate function selected */ -#define GPIO_AFSEL1_SEL9 BITS(4,7) /*!< pin 9 alternate function selected */ -#define GPIO_AFSEL1_SEL10 BITS(8,11) /*!< pin 10 alternate function selected */ -#define GPIO_AFSEL1_SEL11 BITS(12,15) /*!< pin 11 alternate function selected */ -#define GPIO_AFSEL1_SEL12 BITS(16,19) /*!< pin 12 alternate function selected */ -#define GPIO_AFSEL1_SEL13 BITS(20,23) /*!< pin 13 alternate function selected */ -#define GPIO_AFSEL1_SEL14 BITS(24,27) /*!< pin 14 alternate function selected */ -#define GPIO_AFSEL1_SEL15 BITS(28,31) /*!< pin 15 alternate function selected */ - -/* GPIO_BC */ -#define GPIO_BC_CR0 BIT(0) /*!< pin 0 clear bit */ -#define GPIO_BC_CR1 BIT(1) /*!< pin 1 clear bit */ -#define GPIO_BC_CR2 BIT(2) /*!< pin 2 clear bit */ -#define GPIO_BC_CR3 BIT(3) /*!< pin 3 clear bit */ -#define GPIO_BC_CR4 BIT(4) /*!< pin 4 clear bit */ -#define GPIO_BC_CR5 BIT(5) /*!< pin 5 clear bit */ -#define GPIO_BC_CR6 BIT(6) /*!< pin 6 clear bit */ -#define GPIO_BC_CR7 BIT(7) /*!< pin 7 clear bit */ -#define GPIO_BC_CR8 BIT(8) /*!< pin 8 clear bit */ -#define GPIO_BC_CR9 BIT(9) /*!< pin 9 clear bit */ -#define GPIO_BC_CR10 BIT(10) /*!< pin 10 clear bit */ -#define GPIO_BC_CR11 BIT(11) /*!< pin 11 clear bit */ -#define GPIO_BC_CR12 BIT(12) /*!< pin 12 clear bit */ -#define GPIO_BC_CR13 BIT(13) /*!< pin 13 clear bit */ -#define GPIO_BC_CR14 BIT(14) /*!< pin 14 clear bit */ -#define GPIO_BC_CR15 BIT(15) /*!< pin 15 clear bit */ - -/* GPIO_TG */ -#define GPIO_TG_TG0 BIT(0) /*!< pin 0 toggle bit */ -#define GPIO_TG_TG1 BIT(1) /*!< pin 1 toggle bit */ -#define GPIO_TG_TG2 BIT(2) /*!< pin 2 toggle bit */ -#define GPIO_TG_TG3 BIT(3) /*!< pin 3 toggle bit */ -#define GPIO_TG_TG4 BIT(4) /*!< pin 4 toggle bit */ -#define GPIO_TG_TG5 BIT(5) /*!< pin 5 toggle bit */ -#define GPIO_TG_TG6 BIT(6) /*!< pin 6 toggle bit */ -#define GPIO_TG_TG7 BIT(7) /*!< pin 7 toggle bit */ -#define GPIO_TG_TG8 BIT(8) /*!< pin 8 toggle bit */ -#define GPIO_TG_TG9 BIT(9) /*!< pin 9 toggle bit */ -#define GPIO_TG_TG10 BIT(10) /*!< pin 10 toggle bit */ -#define GPIO_TG_TG11 BIT(11) /*!< pin 11 toggle bit */ -#define GPIO_TG_TG12 BIT(12) /*!< pin 12 toggle bit */ -#define GPIO_TG_TG13 BIT(13) /*!< pin 13 toggle bit */ -#define GPIO_TG_TG14 BIT(14) /*!< pin 14 toggle bit */ -#define GPIO_TG_TG15 BIT(15) /*!< pin 15 toggle bit */ - -/* constants definitions */ -typedef FlagStatus bit_status; - -/* output mode definitions */ -#define CTL_CLTR(regval) (BITS(0,1) & ((uint32_t)(regval) << 0)) -#define GPIO_MODE_INPUT CTL_CLTR(0) /*!< input mode */ -#define GPIO_MODE_OUTPUT CTL_CLTR(1) /*!< output mode */ -#define GPIO_MODE_AF CTL_CLTR(2) /*!< alternate function mode */ -#define GPIO_MODE_ANALOG CTL_CLTR(3) /*!< analog mode */ - -/* pull-up/ pull-down definitions */ -#define PUD_PUPD(regval) (BITS(0,1) & ((uint32_t)(regval) << 0)) -#define GPIO_PUPD_NONE PUD_PUPD(0) /*!< floating mode, no pull-up and pull-down resistors */ -#define GPIO_PUPD_PULLUP PUD_PUPD(1) /*!< with pull-up resistor */ -#define GPIO_PUPD_PULLDOWN PUD_PUPD(2) /*!< with pull-down resistor */ - -/* GPIO pin definitions */ -#define GPIO_PIN_0 BIT(0) /*!< GPIO pin 0 */ -#define GPIO_PIN_1 BIT(1) /*!< GPIO pin 1 */ -#define GPIO_PIN_2 BIT(2) /*!< GPIO pin 2 */ -#define GPIO_PIN_3 BIT(3) /*!< GPIO pin 3 */ -#define GPIO_PIN_4 BIT(4) /*!< GPIO pin 4 */ -#define GPIO_PIN_5 BIT(5) /*!< GPIO pin 5 */ -#define GPIO_PIN_6 BIT(6) /*!< GPIO pin 6 */ -#define GPIO_PIN_7 BIT(7) /*!< GPIO pin 7 */ -#define GPIO_PIN_8 BIT(8) /*!< GPIO pin 8 */ -#define GPIO_PIN_9 BIT(9) /*!< GPIO pin 9 */ -#define GPIO_PIN_10 BIT(10) /*!< GPIO pin 10 */ -#define GPIO_PIN_11 BIT(11) /*!< GPIO pin 11 */ -#define GPIO_PIN_12 BIT(12) /*!< GPIO pin 12 */ -#define GPIO_PIN_13 BIT(13) /*!< GPIO pin 13 */ -#define GPIO_PIN_14 BIT(14) /*!< GPIO pin 14 */ -#define GPIO_PIN_15 BIT(15) /*!< GPIO pin 15 */ -#define GPIO_PIN_ALL BITS(0,15) /*!< GPIO pin all */ - -/* GPIO mode configuration values */ -#define GPIO_MODE_SET(n, mode) ((uint32_t)((uint32_t)(mode) << (2U * (n)))) -#define GPIO_MODE_MASK(n) (0x3U << (2U * (n))) - -/* GPIO pull-up/ pull-down values */ -#define GPIO_PUPD_SET(n, pupd) ((uint32_t)((uint32_t)(pupd) << (2U * (n)))) -#define GPIO_PUPD_MASK(n) (0x3U << (2U * (n))) - -/* GPIO output speed values */ -#define GPIO_OSPEED_SET(n, speed) ((uint32_t)((uint32_t)(speed) << (2U * (n)))) -#define GPIO_OSPEED_MASK(n) (0x3U << (2U * (n))) - -/* GPIO output type */ -#define GPIO_OTYPE_PP ((uint8_t)(0x00U)) /*!< push pull mode */ -#define GPIO_OTYPE_OD ((uint8_t)(0x01U)) /*!< open drain mode */ - -/* GPIO output max speed level */ -#define OSPD_OSPD(regval) (BITS(0,1) & ((uint32_t)(regval) << 0)) -#define GPIO_OSPEED_LEVEL0 OSPD_OSPD(0) /*!< output max speed level 0 */ -#define GPIO_OSPEED_LEVEL1 OSPD_OSPD(1) /*!< output max speed level 1 */ -#define GPIO_OSPEED_LEVEL2 OSPD_OSPD(2) /*!< output max speed level 2 */ -#define GPIO_OSPEED_LEVEL3 OSPD_OSPD(3) /*!< output max speed level 3 */ - -/* GPIO output max speed value */ -#define GPIO_OSPEED_2MHZ GPIO_OSPEED_LEVEL0 /*!< output max speed 2MHz */ -#define GPIO_OSPEED_25MHZ GPIO_OSPEED_LEVEL1 /*!< output max speed 25MHz */ -#define GPIO_OSPEED_50MHZ GPIO_OSPEED_LEVEL2 /*!< output max speed 50MHz */ -#define GPIO_OSPEED_200MHZ GPIO_OSPEED_LEVEL3 /*!< output max speed 200MHz */ - -/* GPIO alternate function values */ -#define GPIO_AFR_SET(n, af) ((uint32_t)((uint32_t)(af) << (4U * (n)))) -#define GPIO_AFR_MASK(n) (0xFU << (4U * (n))) - -/* GPIO alternate function */ -#define AF(regval) (BITS(0,3) & ((uint32_t)(regval) << 0)) -#define GPIO_AF_0 AF(0) /*!< alternate function 0 selected */ -#define GPIO_AF_1 AF(1) /*!< alternate function 1 selected */ -#define GPIO_AF_2 AF(2) /*!< alternate function 2 selected */ -#define GPIO_AF_3 AF(3) /*!< alternate function 3 selected */ -#define GPIO_AF_4 AF(4) /*!< alternate function 4 selected */ -#define GPIO_AF_5 AF(5) /*!< alternate function 5 selected */ -#define GPIO_AF_6 AF(6) /*!< alternate function 6 selected */ -#define GPIO_AF_7 AF(7) /*!< alternate function 7 selected */ -#define GPIO_AF_8 AF(8) /*!< alternate function 8 selected */ -#define GPIO_AF_9 AF(9) /*!< alternate function 9 selected */ -#define GPIO_AF_10 AF(10) /*!< alternate function 10 selected */ -#define GPIO_AF_11 AF(11) /*!< alternate function 11 selected */ -#define GPIO_AF_12 AF(12) /*!< alternate function 12 selected */ -#define GPIO_AF_13 AF(13) /*!< alternate function 13 selected */ -#define GPIO_AF_14 AF(14) /*!< alternate function 14 selected */ -#define GPIO_AF_15 AF(15) /*!< alternate function 15 selected */ - -/* function declarations */ -/* reset GPIO port */ -void gpio_deinit(uint32_t gpio_periph); -/* set GPIO mode */ -void gpio_mode_set(uint32_t gpio_periph, uint32_t mode, uint32_t pull_up_down, uint32_t pin); -/* set GPIO output type and speed */ -void gpio_output_options_set(uint32_t gpio_periph, uint8_t otype, uint32_t speed, uint32_t pin); - -/* set GPIO pin bit */ -void gpio_bit_set(uint32_t gpio_periph, uint32_t pin); -/* reset GPIO pin bit */ -void gpio_bit_reset(uint32_t gpio_periph, uint32_t pin); -/* write data to the specified GPIO pin */ -void gpio_bit_write(uint32_t gpio_periph, uint32_t pin, bit_status bit_value); -/* write data to the specified GPIO port */ -void gpio_port_write(uint32_t gpio_periph, uint16_t data); - -/* get GPIO pin input status */ -FlagStatus gpio_input_bit_get(uint32_t gpio_periph, uint32_t pin); -/* get GPIO port input status */ -uint16_t gpio_input_port_get(uint32_t gpio_periph); -/* get GPIO pin output status */ -FlagStatus gpio_output_bit_get(uint32_t gpio_periph, uint32_t pin); -/* get GPIO port output status */ -uint16_t gpio_output_port_get(uint32_t gpio_periph); - -/* set GPIO alternate function */ -void gpio_af_set(uint32_t gpio_periph, uint32_t alt_func_num, uint32_t pin); -/* lock GPIO pin bit */ -void gpio_pin_lock(uint32_t gpio_periph, uint32_t pin); - -/* toggle GPIO pin status */ -void gpio_bit_toggle(uint32_t gpio_periph, uint32_t pin); -/* toggle GPIO port status */ -void gpio_port_toggle(uint32_t gpio_periph); - -#endif /* GD32F4XX_GPIO_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_i2c.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_i2c.h deleted file mode 100644 index dac49e2d8e..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_i2c.h +++ /dev/null @@ -1,422 +0,0 @@ -/*! - \file gd32f4xx_i2c.h - \brief definitions for the I2C - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2019-04-16, V2.0.1, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - - -#ifndef GD32F4XX_I2C_H -#define GD32F4XX_I2C_H - -#include "gd32f4xx.h" - -/* I2Cx(x=0,1,2) definitions */ -#define I2C0 I2C_BASE /*!< I2C0 base address */ -#define I2C1 (I2C_BASE+0x400U) /*!< I2C1 base address */ -#define I2C2 (I2C_BASE+0x800U) /*!< I2C2 base address */ - -/* registers definitions */ -#define I2C_CTL0(i2cx) REG32((i2cx) + 0x00U) /*!< I2C control register 0 */ -#define I2C_CTL1(i2cx) REG32((i2cx) + 0x04U) /*!< I2C control register 1 */ -#define I2C_SADDR0(i2cx) REG32((i2cx) + 0x08U) /*!< I2C slave address register 0 */ -#define I2C_SADDR1(i2cx) REG32((i2cx) + 0x0CU) /*!< I2C slave address register 1 */ -#define I2C_DATA(i2cx) REG32((i2cx) + 0x10U) /*!< I2C transfer buffer register */ -#define I2C_STAT0(i2cx) REG32((i2cx) + 0x14U) /*!< I2C transfer status register 0 */ -#define I2C_STAT1(i2cx) REG32((i2cx) + 0x18U) /*!< I2C transfer status register */ -#define I2C_CKCFG(i2cx) REG32((i2cx) + 0x1CU) /*!< I2C clock configure register */ -#define I2C_RT(i2cx) REG32((i2cx) + 0x20U) /*!< I2C rise time register */ -#define I2C_FCTL(i2cx) REG32((i2cx) + 0x24U) /*!< I2C filter control register */ -#define I2C_SAMCS(i2cx) REG32((i2cx) + 0x80U) /*!< I2C SAM control and status register */ - -/* bits definitions */ -/* I2Cx_CTL0 */ -#define I2C_CTL0_I2CEN BIT(0) /*!< peripheral enable */ -#define I2C_CTL0_SMBEN BIT(1) /*!< SMBus mode */ -#define I2C_CTL0_SMBSEL BIT(3) /*!< SMBus type */ -#define I2C_CTL0_ARPEN BIT(4) /*!< ARP enable */ -#define I2C_CTL0_PECEN BIT(5) /*!< PEC enable */ -#define I2C_CTL0_GCEN BIT(6) /*!< general call enable */ -#define I2C_CTL0_SS BIT(7) /*!< clock stretching disable (slave mode) */ -#define I2C_CTL0_START BIT(8) /*!< start generation */ -#define I2C_CTL0_STOP BIT(9) /*!< stop generation */ -#define I2C_CTL0_ACKEN BIT(10) /*!< acknowledge enable */ -#define I2C_CTL0_POAP BIT(11) /*!< acknowledge/PEC position (for data reception) */ -#define I2C_CTL0_PECTRANS BIT(12) /*!< packet error checking */ -#define I2C_CTL0_SALT BIT(13) /*!< SMBus alert */ -#define I2C_CTL0_SRESET BIT(15) /*!< software reset */ - -/* I2Cx_CTL1 */ -#define I2C_CTL1_I2CCLK BITS(0,5) /*!< I2CCLK[5:0] bits (peripheral clock frequency) */ -#define I2C_CTL1_ERRIE BIT(8) /*!< error interrupt enable */ -#define I2C_CTL1_EVIE BIT(9) /*!< event interrupt enable */ -#define I2C_CTL1_BUFIE BIT(10) /*!< buffer interrupt enable */ -#define I2C_CTL1_DMAON BIT(11) /*!< DMA requests enable */ -#define I2C_CTL1_DMALST BIT(12) /*!< DMA last transfer */ - -/* I2Cx_SADDR0 */ -#define I2C_SADDR0_ADDRESS0 BIT(0) /*!< bit 0 of a 10-bit address */ -#define I2C_SADDR0_ADDRESS BITS(1,7) /*!< 7-bit address or bits 7:1 of a 10-bit address */ -#define I2C_SADDR0_ADDRESS_H BITS(8,9) /*!< highest two bits of a 10-bit address */ -#define I2C_SADDR0_ADDFORMAT BIT(15) /*!< address mode for the I2C slave */ - -/* I2Cx_SADDR1 */ -#define I2C_SADDR1_DUADEN BIT(0) /*!< aual-address mode switch */ -#define I2C_SADDR1_ADDRESS2 BITS(1,7) /*!< second I2C address for the slave in dual-address mode */ - -/* I2Cx_DATA */ -#define I2C_DATA_TRB BITS(0,7) /*!< 8-bit data register */ - -/* I2Cx_STAT0 */ -#define I2C_STAT0_SBSEND BIT(0) /*!< start bit (master mode) */ -#define I2C_STAT0_ADDSEND BIT(1) /*!< address sent (master mode)/matched (slave mode) */ -#define I2C_STAT0_BTC BIT(2) /*!< byte transfer finished */ -#define I2C_STAT0_ADD10SEND BIT(3) /*!< 10-bit header sent (master mode) */ -#define I2C_STAT0_STPDET BIT(4) /*!< stop detection (slave mode) */ -#define I2C_STAT0_RBNE BIT(6) /*!< data register not empty (receivers) */ -#define I2C_STAT0_TBE BIT(7) /*!< data register empty (transmitters) */ -#define I2C_STAT0_BERR BIT(8) /*!< bus error */ -#define I2C_STAT0_LOSTARB BIT(9) /*!< arbitration lost (master mode) */ -#define I2C_STAT0_AERR BIT(10) /*!< acknowledge failure */ -#define I2C_STAT0_OUERR BIT(11) /*!< overrun/underrun */ -#define I2C_STAT0_PECERR BIT(12) /*!< PEC error in reception */ -#define I2C_STAT0_SMBTO BIT(14) /*!< timeout signal in SMBus mode */ -#define I2C_STAT0_SMBALT BIT(15) /*!< SMBus alert status */ - -/* I2Cx_STAT1 */ -#define I2C_STAT1_MASTER BIT(0) /*!< master/slave */ -#define I2C_STAT1_I2CBSY BIT(1) /*!< bus busy */ -#define I2C_STAT1_TR BIT(2) /*!< transmitter/receiver */ -#define I2C_STAT1_RXGC BIT(4) /*!< general call address (slave mode) */ -#define I2C_STAT1_DEFSMB BIT(5) /*!< SMBus device default address (slave mode) */ -#define I2C_STAT1_HSTSMB BIT(6) /*!< SMBus host header (slave mode) */ -#define I2C_STAT1_DUMODF BIT(7) /*!< dual flag (slave mode) */ -#define I2C_STAT1_PECV BITS(8,15) /*!< packet error checking value */ - -/* I2Cx_CKCFG */ -#define I2C_CKCFG_CLKC BITS(0,11) /*!< clock control register in fast/standard mode (master mode) */ -#define I2C_CKCFG_DTCY BIT(14) /*!< fast mode duty cycle */ -#define I2C_CKCFG_FAST BIT(15) /*!< I2C speed selection in master mode */ - -/* I2Cx_RT */ -#define I2C_RT_RISETIME BITS(0,5) /*!< maximum rise time in fast/standard mode (Master mode) */ - -/* I2Cx_FCTL */ -#define I2C_FCTL_DF BITS(0,3) /*!< digital noise filter */ -#define I2C_FCTL_AFD BIT(4) /*!< analog noise filter disable */ - -/* I2Cx_SAMCS */ -#define I2C_SAMCS_SAMEN BIT(0) /*!< SAM_V interface enable */ -#define I2C_SAMCS_STOEN BIT(1) /*!< SAM_V interface timeout detect enable */ -#define I2C_SAMCS_TFFIE BIT(4) /*!< txframe fall interrupt enable */ -#define I2C_SAMCS_TFRIE BIT(5) /*!< txframe rise interrupt enable */ -#define I2C_SAMCS_RFFIE BIT(6) /*!< rxframe fall interrupt enable */ -#define I2C_SAMCS_RFRIE BIT(7) /*!< rxframe rise interrupt enable */ -#define I2C_SAMCS_TXF BIT(8) /*!< level of txframe signal */ -#define I2C_SAMCS_RXF BIT(9) /*!< level of rxframe signal */ -#define I2C_SAMCS_TFF BIT(12) /*!< txframe fall flag, cleared by software write 0 */ -#define I2C_SAMCS_TFR BIT(13) /*!< txframe rise flag, cleared by software write 0 */ -#define I2C_SAMCS_RFF BIT(14) /*!< rxframe fall flag, cleared by software write 0 */ -#define I2C_SAMCS_RFR BIT(15) /*!< rxframe rise flag, cleared by software write 0 */ - -/* constants definitions */ - -/* the digital noise filter can filter spikes's length */ -typedef enum { - I2C_DF_DISABLE, /*!< disable digital noise filter */ - I2C_DF_1PCLK, /*!< enable digital noise filter and the maximum filtered spiker's length 1 PCLK1 */ - I2C_DF_2PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 2 PCLK1 */ - I2C_DF_3PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 3 PCLK1 */ - I2C_DF_4PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 4 PCLK1 */ - I2C_DF_5PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 5 PCLK1 */ - I2C_DF_6PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 6 PCLK1 */ - I2C_DF_7PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 7 PCLK1 */ - I2C_DF_8PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 8 PCLK1 */ - I2C_DF_9PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 9 PCLK1 */ - I2C_DF_10PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 10 PCLK1 */ - I2C_DF_11PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 11 PCLK1 */ - I2C_DF_12PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 12 PCLK1 */ - I2C_DF_13PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 13 PCLK1 */ - I2C_DF_14PCLKS, /*!< enable digital noise filter and the maximum filtered spiker's length 14 PCLK1 */ - I2C_DF_15PCLKS /*!< enable digital noise filter and the maximum filtered spiker's length 15 PCLK1 */ -}i2c_digital_filter_enum; - -/* constants definitions */ -/* define the I2C bit position and its register index offset */ -#define I2C_REGIDX_BIT(regidx, bitpos) (((uint32_t)(regidx) << 6) | (uint32_t)(bitpos)) -#define I2C_REG_VAL(i2cx, offset) (REG32((i2cx) + (((uint32_t)(offset) & 0xFFFFU) >> 6))) -#define I2C_BIT_POS(val) ((uint32_t)(val) & 0x1FU) -#define I2C_REGIDX_BIT2(regidx, bitpos, regidx2, bitpos2) (((uint32_t)(regidx2) << 22) | (uint32_t)((bitpos2) << 16)\ - | (((uint32_t)(regidx) << 6) | (uint32_t)(bitpos))) -#define I2C_REG_VAL2(i2cx, offset) (REG32((i2cx) + ((uint32_t)(offset) >> 22))) -#define I2C_BIT_POS2(val) (((uint32_t)(val) & 0x1F0000U) >> 16) - -/* register offset */ -#define I2C_CTL1_REG_OFFSET 0x04U /*!< CTL1 register offset */ -#define I2C_STAT0_REG_OFFSET 0x14U /*!< STAT0 register offset */ -#define I2C_STAT1_REG_OFFSET 0x18U /*!< STAT1 register offset */ -#define I2C_SAMCS_REG_OFFSET 0x80U /*!< SAMCS register offset */ - -/* I2C flags */ -typedef enum -{ - /* flags in STAT0 register */ - I2C_FLAG_SBSEND = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 0U), /*!< start condition sent out in master mode */ - I2C_FLAG_ADDSEND = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 1U), /*!< address is sent in master mode or received and matches in slave mode */ - I2C_FLAG_BTC = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 2U), /*!< byte transmission finishes */ - I2C_FLAG_ADD10SEND = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 3U), /*!< header of 10-bit address is sent in master mode */ - I2C_FLAG_STPDET = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 4U), /*!< stop condition detected in slave mode */ - I2C_FLAG_RBNE = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 6U), /*!< I2C_DATA is not Empty during receiving */ - I2C_FLAG_TBE = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 7U), /*!< I2C_DATA is empty during transmitting */ - I2C_FLAG_BERR = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 8U), /*!< a bus error occurs indication a unexpected start or stop condition on I2C bus */ - I2C_FLAG_LOSTARB = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 9U), /*!< arbitration lost in master mode */ - I2C_FLAG_AERR = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 10U), /*!< acknowledge error */ - I2C_FLAG_OUERR = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 11U), /*!< over-run or under-run situation occurs in slave mode */ - I2C_FLAG_PECERR = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 12U), /*!< PEC error when receiving data */ - I2C_FLAG_SMBTO = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 14U), /*!< timeout signal in SMBus mode */ - I2C_FLAG_SMBALT = I2C_REGIDX_BIT(I2C_STAT0_REG_OFFSET, 15U), /*!< SMBus alert status */ - /* flags in STAT1 register */ - I2C_FLAG_MASTER = I2C_REGIDX_BIT(I2C_STAT1_REG_OFFSET, 0U), /*!< a flag indicating whether I2C block is in master or slave mode */ - I2C_FLAG_I2CBSY = I2C_REGIDX_BIT(I2C_STAT1_REG_OFFSET, 1U), /*!< busy flag */ - I2C_FLAG_TRS = I2C_REGIDX_BIT(I2C_STAT1_REG_OFFSET, 2U), /*!< whether the I2C is a transmitter or a receiver */ - I2C_FLAG_RXGC = I2C_REGIDX_BIT(I2C_STAT1_REG_OFFSET, 4U), /*!< general call address (00h) received */ - I2C_FLAG_DEFSMB = I2C_REGIDX_BIT(I2C_STAT1_REG_OFFSET, 5U), /*!< default address of SMBus device */ - I2C_FLAG_HSTSMB = I2C_REGIDX_BIT(I2C_STAT1_REG_OFFSET, 6U), /*!< SMBus host header detected in slave mode */ - I2C_FLAG_DUMOD = I2C_REGIDX_BIT(I2C_STAT1_REG_OFFSET, 7U), /*!< dual flag in slave mode indicating which address is matched in dual-address mode */ - /* flags in SAMCS register */ - I2C_FLAG_TFF = I2C_REGIDX_BIT(I2C_SAMCS_REG_OFFSET, 12U), /*!< txframe fall flag */ - I2C_FLAG_TFR = I2C_REGIDX_BIT(I2C_SAMCS_REG_OFFSET, 13U), /*!< txframe rise flag */ - I2C_FLAG_RFF = I2C_REGIDX_BIT(I2C_SAMCS_REG_OFFSET, 14U), /*!< rxframe fall flag */ - I2C_FLAG_RFR = I2C_REGIDX_BIT(I2C_SAMCS_REG_OFFSET, 15U) /*!< rxframe rise flag */ -}i2c_flag_enum; - -/* I2C interrupt flags */ -typedef enum -{ - /* interrupt flags in CTL1 register */ - I2C_INT_FLAG_SBSEND = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 9U, I2C_STAT0_REG_OFFSET, 0U), /*!< start condition sent out in master mode interrupt flag */ - I2C_INT_FLAG_ADDSEND = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 9U, I2C_STAT0_REG_OFFSET, 1U), /*!< address is sent in master mode or received and matches in slave mode interrupt flag */ - I2C_INT_FLAG_BTC = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 9U, I2C_STAT0_REG_OFFSET, 2U), /*!< byte transmission finishes */ - I2C_INT_FLAG_ADD10SEND = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 9U, I2C_STAT0_REG_OFFSET, 3U), /*!< header of 10-bit address is sent in master mode interrupt flag */ - I2C_INT_FLAG_STPDET = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 9U, I2C_STAT0_REG_OFFSET, 4U), /*!< stop condition detected in slave mode interrupt flag */ - I2C_INT_FLAG_RBNE = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 9U, I2C_STAT0_REG_OFFSET, 6U), /*!< I2C_DATA is not Empty during receiving interrupt flag */ - I2C_INT_FLAG_TBE = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 9U, I2C_STAT0_REG_OFFSET, 7U), /*!< I2C_DATA is empty during transmitting interrupt flag */ - I2C_INT_FLAG_BERR = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 8U, I2C_STAT0_REG_OFFSET, 8U), /*!< a bus error occurs indication a unexpected start or stop condition on I2C bus interrupt flag */ - I2C_INT_FLAG_LOSTARB = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 8U, I2C_STAT0_REG_OFFSET, 9U), /*!< arbitration lost in master mode interrupt flag */ - I2C_INT_FLAG_AERR = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 8U, I2C_STAT0_REG_OFFSET, 10U), /*!< acknowledge error interrupt flag */ - I2C_INT_FLAG_OUERR = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 8U, I2C_STAT0_REG_OFFSET, 11U), /*!< over-run or under-run situation occurs in slave mode interrupt flag */ - I2C_INT_FLAG_PECERR = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 8U, I2C_STAT0_REG_OFFSET, 12U), /*!< PEC error when receiving data interrupt flag */ - I2C_INT_FLAG_SMBTO = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 8U, I2C_STAT0_REG_OFFSET, 14U), /*!< timeout signal in SMBus mode interrupt flag */ - I2C_INT_FLAG_SMBALT = I2C_REGIDX_BIT2(I2C_CTL1_REG_OFFSET, 8U, I2C_STAT0_REG_OFFSET, 15U), /*!< SMBus Alert status interrupt flag */ - /* interrupt flags in SAMCS register */ - I2C_INT_FLAG_TFF = I2C_REGIDX_BIT2(I2C_SAMCS_REG_OFFSET, 4U, I2C_SAMCS_REG_OFFSET, 12U), /*!< txframe fall interrupt flag */ - I2C_INT_FLAG_TFR = I2C_REGIDX_BIT2(I2C_SAMCS_REG_OFFSET, 5U, I2C_SAMCS_REG_OFFSET, 13U), /*!< txframe rise interrupt flag */ - I2C_INT_FLAG_RFF = I2C_REGIDX_BIT2(I2C_SAMCS_REG_OFFSET, 6U, I2C_SAMCS_REG_OFFSET, 14U), /*!< rxframe fall interrupt flag */ - I2C_INT_FLAG_RFR = I2C_REGIDX_BIT2(I2C_SAMCS_REG_OFFSET, 7U, I2C_SAMCS_REG_OFFSET, 15U) /*!< rxframe rise interrupt flag */ -}i2c_interrupt_flag_enum; - -/* I2C interrupt enable or disable */ -typedef enum -{ - /* interrupt in CTL1 register */ - I2C_INT_ERR = I2C_REGIDX_BIT(I2C_CTL1_REG_OFFSET, 8U), /*!< error interrupt enable */ - I2C_INT_EV = I2C_REGIDX_BIT(I2C_CTL1_REG_OFFSET, 9U), /*!< event interrupt enable */ - I2C_INT_BUF = I2C_REGIDX_BIT(I2C_CTL1_REG_OFFSET, 10U), /*!< buffer interrupt enable */ - /* interrupt in SAMCS register */ - I2C_INT_TFF = I2C_REGIDX_BIT(I2C_SAMCS_REG_OFFSET, 4U), /*!< txframe fall interrupt enable */ - I2C_INT_TFR = I2C_REGIDX_BIT(I2C_SAMCS_REG_OFFSET, 5U), /*!< txframe rise interrupt enable */ - I2C_INT_RFF = I2C_REGIDX_BIT(I2C_SAMCS_REG_OFFSET, 6U), /*!< rxframe fall interrupt enable */ - I2C_INT_RFR = I2C_REGIDX_BIT(I2C_SAMCS_REG_OFFSET, 7U) /*!< rxframe rise interrupt enable */ -}i2c_interrupt_enum; - -/* SMBus/I2C mode switch and SMBus type selection */ -#define I2C_I2CMODE_ENABLE ((uint32_t)0x00000000U) /*!< I2C mode */ -#define I2C_SMBUSMODE_ENABLE I2C_CTL0_SMBEN /*!< SMBus mode */ - -/* SMBus/I2C mode switch and SMBus type selection */ -#define I2C_SMBUS_DEVICE ((uint32_t)0x00000000U) /*!< SMBus mode device type */ -#define I2C_SMBUS_HOST I2C_CTL0_SMBSEL /*!< SMBus mode host type */ - -/* I2C transfer direction */ -#define I2C_RECEIVER ((uint32_t)0x00000001U) /*!< receiver */ -#define I2C_TRANSMITTER ((uint32_t)0xFFFFFFFEU) /*!< transmitter */ - -/* whether or not to send an ACK */ -#define I2C_ACK_DISABLE ((uint32_t)0x00000000U) /*!< ACK will be not sent */ -#define I2C_ACK_ENABLE ((uint32_t)0x00000001U) /*!< ACK will be sent */ - -/* I2C POAP position*/ -#define I2C_ACKPOS_NEXT ((uint32_t)0x00000000U) /*!< ACKEN bit decides whether or not to send ACK for the next byte */ -#define I2C_ACKPOS_CURRENT ((uint32_t)0x00000001U) /*!< ACKEN bit decides whether or not to send ACK or not for the current byte */ - -/* I2C dual-address mode switch */ -#define I2C_DUADEN_DISABLE ((uint32_t)0x00000000U) /*!< dual-address mode disabled */ -#define I2C_DUADEN_ENABLE ((uint32_t)0x00000001U) /*!< dual-address mode enabled */ - -/* whether or not to stretch SCL low */ -#define I2C_SCLSTRETCH_ENABLE ((uint32_t)0x00000000U) /*!< SCL stretching is enabled */ -#define I2C_SCLSTRETCH_DISABLE I2C_CTL0_SS /*!< SCL stretching is disabled */ - -/* whether or not to response to a general call */ -#define I2C_GCEN_ENABLE I2C_CTL0_GCEN /*!< slave will response to a general call */ -#define I2C_GCEN_DISABLE ((uint32_t)0x00000000U) /*!< slave will not response to a general call */ - -/* software reset I2C */ -#define I2C_SRESET_SET I2C_CTL0_SRESET /*!< I2C is under reset */ -#define I2C_SRESET_RESET ((uint32_t)0x00000000U) /*!< I2C is not under reset */ - -/* I2C DMA mode configure */ -/* DMA mode switch */ -#define I2C_DMA_ON I2C_CTL1_DMAON /*!< DMA mode enabled */ -#define I2C_DMA_OFF ((uint32_t)0x00000000U) /*!< DMA mode disabled */ - -/* flag indicating DMA last transfer */ -#define I2C_DMALST_ON I2C_CTL1_DMALST /*!< next DMA EOT is the last transfer */ -#define I2C_DMALST_OFF ((uint32_t)0x00000000U) /*!< next DMA EOT is not the last transfer */ - -/* I2C PEC configure */ -/* PEC enable */ -#define I2C_PEC_ENABLE I2C_CTL0_PECEN /*!< PEC calculation on */ -#define I2C_PEC_DISABLE ((uint32_t)0x00000000U) /*!< PEC calculation off */ - -/* PEC transfer */ -#define I2C_PECTRANS_ENABLE I2C_CTL0_PECTRANS /*!< transfer PEC */ -#define I2C_PECTRANS_DISABLE ((uint32_t)0x00000000U) /*!< not transfer PEC value */ - -/* I2C SMBus configure */ -/* issue or not alert through SMBA pin */ -#define I2C_SALTSEND_ENABLE I2C_CTL0_SALT /*!< issue alert through SMBA pin */ -#define I2C_SALTSEND_DISABLE ((uint32_t)0x00000000U) /*!< not issue alert through SMBA */ - -/* ARP protocol in SMBus switch */ -#define I2C_ARP_ENABLE I2C_CTL0_ARPEN /*!< ARP is enabled */ -#define I2C_ARP_DISABLE ((uint32_t)0x00000000U) /*!< ARP is disabled */ - -/* transmit I2C data */ -#define DATA_TRANS(regval) (BITS(0,7) & ((uint32_t)(regval) << 0)) - -/* receive I2C data */ -#define DATA_RECV(regval) GET_BITS((uint32_t)(regval), 0, 7) - -/* I2C duty cycle in fast mode */ -#define I2C_DTCY_2 ((uint32_t)0x00000000U) /*!< I2C fast mode Tlow/Thigh = 2 */ -#define I2C_DTCY_16_9 I2C_CKCFG_DTCY /*!< I2C fast mode Tlow/Thigh = 16/9 */ - -/* address mode for the I2C slave */ -#define I2C_ADDFORMAT_7BITS ((uint32_t)0x00000000U) /*!< address:7 bits */ -#define I2C_ADDFORMAT_10BITS I2C_SADDR0_ADDFORMAT /*!< address:10 bits */ - -/* function declarations */ -/* reset I2C */ -void i2c_deinit(uint32_t i2c_periph); -/* configure I2C clock */ -void i2c_clock_config(uint32_t i2c_periph, uint32_t clkspeed, uint32_t dutycyc); -/* configure I2C address */ -void i2c_mode_addr_config(uint32_t i2c_periph, uint32_t mode, uint32_t addformat, uint32_t addr); -/* SMBus type selection */ -void i2c_smbus_type_config(uint32_t i2c_periph, uint32_t type); -/* whether or not to send an ACK */ -void i2c_ack_config(uint32_t i2c_periph, uint32_t ack); -/* configure I2C POAP position */ -void i2c_ackpos_config(uint32_t i2c_periph, uint32_t pos); -/* master sends slave address */ -void i2c_master_addressing(uint32_t i2c_periph, uint32_t addr, uint32_t trandirection); -/* enable dual-address mode */ -void i2c_dualaddr_enable(uint32_t i2c_periph, uint32_t addr); -/* disable dual-address mode */ -void i2c_dualaddr_disable(uint32_t i2c_periph); -/* enable I2C */ -void i2c_enable(uint32_t i2c_periph); -/* disable I2C */ -void i2c_disable(uint32_t i2c_periph); - -/* generate a START condition on I2C bus */ -void i2c_start_on_bus(uint32_t i2c_periph); -/* generate a STOP condition on I2C bus */ -void i2c_stop_on_bus(uint32_t i2c_periph); -/* I2C transmit data function */ -void i2c_data_transmit(uint32_t i2c_periph, uint8_t data); -/* I2C receive data function */ -uint8_t i2c_data_receive(uint32_t i2c_periph); -/* enable I2C DMA mode */ -void i2c_dma_enable(uint32_t i2c_periph, uint32_t dmastate); -/* configure whether next DMA EOT is DMA last transfer or not */ -void i2c_dma_last_transfer_config(uint32_t i2c_periph, uint32_t dmalast); -/* whether to stretch SCL low when data is not ready in slave mode */ -void i2c_stretch_scl_low_config(uint32_t i2c_periph, uint32_t stretchpara); -/* whether or not to response to a general call */ -void i2c_slave_response_to_gcall_config(uint32_t i2c_periph, uint32_t gcallpara); -/* software reset I2C */ -void i2c_software_reset_config(uint32_t i2c_periph, uint32_t sreset); - -/* I2C PEC calculation on or off */ -void i2c_pec_enable(uint32_t i2c_periph, uint32_t pecstate); -/* I2C whether to transfer PEC value */ -void i2c_pec_transfer_enable(uint32_t i2c_periph, uint32_t pecpara); -/* packet error checking value */ -uint8_t i2c_pec_value_get(uint32_t i2c_periph); -/* I2C issue alert through SMBA pin */ -void i2c_smbus_issue_alert(uint32_t i2c_periph, uint32_t smbuspara); -/* I2C ARP protocol in SMBus switch */ -void i2c_smbus_arp_enable(uint32_t i2c_periph, uint32_t arpstate); - -/* I2C analog noise filter disable */ -void i2c_analog_noise_filter_disable(uint32_t i2c_periph); -/* I2C analog noise filter enable */ -void i2c_analog_noise_filter_enable(uint32_t i2c_periph); -/* digital noise filter */ -void i2c_digital_noise_filter_config(uint32_t i2c_periph,i2c_digital_filter_enum dfilterpara); - -/* enable SAM_V interface */ -void i2c_sam_enable(uint32_t i2c_periph); -/* disable SAM_V interface */ -void i2c_sam_disable(uint32_t i2c_periph); -/* enable SAM_V interface timeout detect */ -void i2c_sam_timeout_enable(uint32_t i2c_periph); -/* disable SAM_V interface timeout detect */ -void i2c_sam_timeout_disable(uint32_t i2c_periph); - -/* check I2C flag is set or not */ -FlagStatus i2c_flag_get(uint32_t i2c_periph, i2c_flag_enum flag); -/* clear I2C flag */ -void i2c_flag_clear(uint32_t i2c_periph, i2c_flag_enum flag); -/* enable I2C interrupt */ -void i2c_interrupt_enable(uint32_t i2c_periph, i2c_interrupt_enum interrupt); -/* disable I2C interrupt */ -void i2c_interrupt_disable(uint32_t i2c_periph, i2c_interrupt_enum interrupt); -/* check I2C interrupt flag */ -FlagStatus i2c_interrupt_flag_get(uint32_t i2c_periph, i2c_interrupt_flag_enum int_flag); -/* clear I2C interrupt flag */ -void i2c_interrupt_flag_clear(uint32_t i2c_periph, i2c_interrupt_flag_enum int_flag); - -#endif /* GD32F4XX_I2C_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_ipa.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_ipa.h deleted file mode 100644 index ee2f0438d5..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_ipa.h +++ /dev/null @@ -1,384 +0,0 @@ -/*! - \file gd32f4xx_ipa.h - \brief definitions for the IPA - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_IPA_H -#define GD32F4XX_IPA_H - -#include "gd32f4xx.h" - -/* TLI definitions */ -#define IPA IPA_BASE /*!< IPA base address */ - -/* bits definitions */ -/* registers definitions */ -#define IPA_CTL REG32(IPA + 0x00U) /*!< IPA control register */ -#define IPA_INTF REG32(IPA + 0x04U) /*!< IPA interrupt flag register */ -#define IPA_INTC REG32(IPA + 0x08U) /*!< IPA interrupt flag clear register */ -#define IPA_FMADDR REG32(IPA + 0x0CU) /*!< IPA foreground memory base address register */ -#define IPA_FLOFF REG32(IPA + 0x10U) /*!< IPA foreground line offset register */ -#define IPA_BMADDR REG32(IPA + 0x14U) /*!< IPA background memory base address register */ -#define IPA_BLOFF REG32(IPA + 0x18U) /*!< IPA background line offset register */ -#define IPA_FPCTL REG32(IPA + 0x1CU) /*!< IPA foreground pixel control register */ -#define IPA_FPV REG32(IPA + 0x20U) /*!< IPA foreground pixel value register */ -#define IPA_BPCTL REG32(IPA + 0x24U) /*!< IPA background pixel control register */ -#define IPA_BPV REG32(IPA + 0x28U) /*!< IPA background pixel value register */ -#define IPA_FLMADDR REG32(IPA + 0x2CU) /*!< IPA foreground LUT memory base address register */ -#define IPA_BLMADDR REG32(IPA + 0x30U) /*!< IPA background LUT memory base address register */ -#define IPA_DPCTL REG32(IPA + 0x34U) /*!< IPA destination pixel control register */ -#define IPA_DPV REG32(IPA + 0x38U) /*!< IPA destination pixel value register */ -#define IPA_DMADDR REG32(IPA + 0x3CU) /*!< IPA destination memory base address register */ -#define IPA_DLOFF REG32(IPA + 0x40U) /*!< IPA destination line offset register */ -#define IPA_IMS REG32(IPA + 0x44U) /*!< IPA image size register */ -#define IPA_LM REG32(IPA + 0x48U) /*!< IPA line mark register */ -#define IPA_ITCTL REG32(IPA + 0x4CU) /*!< IPA inter-timer control register */ - -/* IPA_CTL */ -#define IPA_CTL_TEN BIT(0) /*!< transfer enable */ -#define IPA_CTL_THU BIT(1) /*!< transfer hang up */ -#define IPA_CTL_TST BIT(2) /*!< transfer stop */ -#define IPA_CTL_TAEIE BIT(8) /*!< enable bit for transfer access error interrupt */ -#define IPA_CTL_FTFIE BIT(9) /*!< enable bit for full transfer finish interrup */ -#define IPA_CTL_TLMIE BIT(10) /*!< enable bit for transfer line mark interrupt */ -#define IPA_CTL_LACIE BIT(11) /*!< enable bit for LUT access conflict interrupt */ -#define IPA_CTL_LLFIE BIT(12) /*!< enable bit for LUT loading finish interrupt */ -#define IPA_CTL_WCFIE BIT(13) /*!< enable bit for wrong configuration interrupt */ -#define IPA_CTL_PFCM BITS(16,17) /*!< pixel format convert mode */ - -/* IPA_INTF */ -#define IPA_INTF_TAEIF BIT(0) /*!< transfer access error interrupt flag */ -#define IPA_INTF_FTFIF BIT(1) /*!< full transfer finish interrupt flag */ -#define IPA_INTF_TLMIF BIT(2) /*!< transfer line mark interrupt flag */ -#define IPA_INTF_LACIF BIT(3) /*!< LUT access conflict interrupt flag */ -#define IPA_INTF_LLFIF BIT(4) /*!< LUT loading finish interrupt flag */ -#define IPA_INTF_WCFIF BIT(5) /*!< wrong configuration interrupt flag */ - -/* IPA_INTC */ -#define IPA_INTC_TAEIFC BIT(0) /*!< clear bit for transfer access error interrupt flag */ -#define IPA_INTC_FTFIFC BIT(1) /*!< clear bit for full transfer finish interrupt flag */ -#define IPA_INTC_TLMIFC BIT(2) /*!< clear bit for transfer line mark interrupt flag */ -#define IPA_INTC_LACIFC BIT(3) /*!< clear bit for LUT access conflict interrupt flag */ -#define IPA_INTC_LLFIFC BIT(4) /*!< clear bit for LUT loading finish interrupt flag */ -#define IPA_INTC_WCFIFC BIT(5) /*!< clear bit for wrong configuration interrupt flag */ - -/* IPA_FMADDR */ -#define IPA_FMADDR_FMADDR BITS(0,31) /*!< foreground memory base address */ - -/* IPA_FLOFF */ -#define IPA_FLOFF_FLOFF BITS(0,13) /*!< foreground line offset */ - -/* IPA_BMADDR */ -#define IPA_BMADDR_BMADDR BITS(0,31) /*!< background memory base address */ - -/* IPA_BLOFF */ -#define IPA_BLOFF_BLOFF BITS(0,13) /*!< background line offset */ - -/* IPA_FPCTL */ -#define IPA_FPCTL_FPF BITS(0,3) /*!< foreground pixel format */ -#define IPA_FPCTL_FLPF BIT(4) /*!< foreground LUT pixel format */ -#define IPA_FPCTL_FLLEN BIT(5) /*!< foreground LUT loading enable */ -#define IPA_FPCTL_FCNP BITS(8,15) /*!< foreground LUT number of pixel */ -#define IPA_FPCTL_FAVCA BITS(16,17) /*!< foreground alpha value calculation algorithm */ -#define IPA_FPCTL_FPDAV BITS(24,31) /*!< foreground pre- defined alpha value */ - -/* IPA_FPV */ -#define IPA_FPV_FPDBV BITS(0,7) /*!< foreground pre-defined red value */ -#define IPA_FPV_FPDGV BITS(8,15) /*!< foreground pre-defined green value */ -#define IPA_FPV_FPDRV BITS(16,23) /*!< foreground pre-defined red value */ - -/* IPA_BPCTL */ -#define IPA_BPCTL_BPF BITS(0,3) /*!< background pixel format */ -#define IPA_BPCTL_BLPF BIT(4) /*!< background LUT pixel format */ -#define IPA_BPCTL_BLLEN BIT(5) /*!< background LUT loading enable */ -#define IPA_BPCTL_BCNP BITS(8,15) /*!< background LUT number of pixel */ -#define IPA_BPCTL_BAVCA BITS(16,17) /*!< background alpha value calculation algorithm */ -#define IPA_BPCTL_BPDAV BITS(24,31) /*!< background pre- defined alpha value */ - -/* IPA_BPV */ -#define IPA_BPV_BPDBV BITS(0,7) /*!< background pre-defined blue value */ -#define IPA_BPV_BPDGV BITS(8,15) /*!< background pre-defined green value */ -#define IPA_BPV_BPDRV BITS(16,23) /*!< background pre-defined red value */ - -/* IPA_FLMADDR */ -#define IPA_FLMADDR_FLMADDR BITS(0,31) /*!< foreground LUT memory base address */ - -/* IPA_BLMADDR */ -#define IPA_BLMADDR_BLMADDR BITS(0,31) /*!< background LUT memory base address */ - -/* IPA_DPCTL */ -#define IPA_DPCTL_DPF BITS(0,2) /*!< destination pixel control register */ - -/* IPA_DPV */ -/* destination pixel format ARGB8888 */ -#define IPA_DPV_DPDBV_0 BITS(0,7) /*!< destination pre-defined blue value */ -#define IPA_DPV_DPDGV_0 BITS(8,15) /*!< destination pre-defined green value */ -#define IPA_DPV_DPDRV_0 BITS(16,23) /*!< destination pre-defined red value */ -#define IPA_DPV_DPDAV_0 BITS(24,31) /*!< destination pre-defined alpha value */ - -/* destination pixel format RGB8888 */ -#define IPA_DPV_DPDBV_1 BITS(0,7) /*!< destination pre-defined blue value */ -#define IPA_DPV_DPDGV_1 BITS(8,15) /*!< destination pre-defined green value */ -#define IPA_DPV_DPDRV_1 BITS(16,23) /*!< destination pre-defined red value */ - -/* destination pixel format RGB565 */ -#define IPA_DPV_DPDBV_2 BITS(0,4) /*!< destination pre-defined blue value */ -#define IPA_DPV_DPDGV_2 BITS(5,10) /*!< destination pre-defined green value */ -#define IPA_DPV_DPDRV_2 BITS(11,15) /*!< destination pre-defined red value */ - -/* destination pixel format ARGB1555 */ -#define IPA_DPV_DPDBV_3 BITS(0,4) /*!< destination pre-defined blue value */ -#define IPA_DPV_DPDGV_3 BITS(5,9) /*!< destination pre-defined green value */ -#define IPA_DPV_DPDRV_3 BITS(10,14) /*!< destination pre-defined red value */ -#define IPA_DPV_DPDAV_3 BIT(15) /*!< destination pre-defined alpha value */ - -/* destination pixel format ARGB4444 */ -#define IPA_DPV_DPDBV_4 BITS(0,3) /*!< destination pre-defined blue value */ -#define IPA_DPV_DPDGV_4 BITS(4,7) /*!< destination pre-defined green value */ -#define IPA_DPV_DPDRV_4 BITS(8,11) /*!< destination pre-defined red value */ -#define IPA_DPV_DPDAV_4 BITS(12,15) /*!< destination pre-defined alpha value */ - -/* IPA_DMADDR */ -#define IPA_DMADDR_DMADDR BITS(0,31) /*!< destination memory base address */ - -/* IPA_DLOFF */ -#define IPA_DLOFF_DLOFF BITS(0,13) /*!< destination line offset */ - -/* IPA_IMS */ -#define IPA_IMS_HEIGHT BITS(0,15) /*!< height of the image to be processed */ -#define IPA_IMS_WIDTH BITS(16,29) /*!< width of the image to be processed */ - -/* IPA_LM */ -#define IPA_LM_LM BITS(0,15) /*!< line mark */ - -/* IPA_ITCTL */ -#define IPA_ITCTL_ITEN BIT(0) /*!< inter-timer enable */ -#define IPA_ITCTL_NCCI BITS(8,15) /*!< number of clock cycles interval */ - - -/* constants definitions */ -/* IPA foreground parameter struct definitions */ -typedef struct -{ - uint32_t foreground_memaddr; /*!< foreground memory base address */ - uint32_t foreground_lineoff; /*!< foreground line offset */ - uint32_t foreground_prealpha; /*!< foreground pre-defined alpha value */ - uint32_t foreground_alpha_algorithm; /*!< foreground alpha value calculation algorithm */ - uint32_t foreground_pf; /*!< foreground pixel format */ - uint32_t foreground_prered; /*!< foreground pre-defined red value */ - uint32_t foreground_pregreen; /*!< foreground pre-defined green value */ - uint32_t foreground_preblue; /*!< foreground pre-defined blue value */ -}ipa_foreground_parameter_struct; - -/* IPA background parameter struct definitions */ -typedef struct -{ - uint32_t background_memaddr; /*!< background memory base address */ - uint32_t background_lineoff; /*!< background line offset */ - uint32_t background_prealpha; /*!< background pre-defined alpha value */ - uint32_t background_alpha_algorithm; /*!< background alpha value calculation algorithm */ - uint32_t background_pf; /*!< background pixel format */ - uint32_t background_prered; /*!< background pre-defined red value */ - uint32_t background_pregreen; /*!< background pre-defined green value */ - uint32_t background_preblue; /*!< background pre-defined blue value */ -}ipa_background_parameter_struct; - -/* IPA destination parameter struct definitions */ -typedef struct -{ - uint32_t destination_memaddr; /*!< destination memory base address */ - uint32_t destination_lineoff; /*!< destination line offset */ - uint32_t destination_prealpha; /*!< destination pre-defined alpha value */ - uint32_t destination_pf; /*!< destination pixel format */ - uint32_t destination_prered; /*!< destination pre-defined red value */ - uint32_t destination_pregreen; /*!< destination pre-defined green value */ - uint32_t destination_preblue; /*!< destination pre-defined blue value */ - uint32_t image_width; /*!< width of the image to be processed */ - uint32_t image_height; /*!< height of the image to be processed */ -}ipa_destination_parameter_struct; - -/* destination pixel format */ -typedef enum -{ - IPA_DPF_ARGB8888, /*!< destination pixel format ARGB8888 */ - IPA_DPF_RGB888, /*!< destination pixel format RGB888 */ - IPA_DPF_RGB565, /*!< destination pixel format RGB565 */ - IPA_DPF_ARGB1555, /*!< destination pixel format ARGB1555 */ - IPA_DPF_ARGB4444 /*!< destination pixel format ARGB4444 */ -} ipa_dpf_enum; - -/* LUT pixel format */ -#define IPA_LUT_PF_ARGB8888 ((uint8_t)0x00U) /*!< LUT pixel format ARGB8888 */ -#define IPA_LUT_PF_RGB888 ((uint8_t)0x01U) /*!< LUT pixel format RGB888 */ - -/* Inter-timer */ -#define IPA_INTER_TIMER_DISABLE ((uint8_t)0x00U) /*!< inter-timer disable */ -#define IPA_INTER_TIMER_ENABLE ((uint8_t)0x01U) /*!< inter-timer enable */ - -/* IPA pixel format convert mode */ -#define CTL_PFCM(regval) (BITS(16,17) & ((uint32_t)(regval) << 16)) -#define IPA_FGTODE CTL_PFCM(0) /*!< foreground memory to destination memory without pixel format convert */ -#define IPA_FGTODE_PF_CONVERT CTL_PFCM(1) /*!< foreground memory to destination memory with pixel format convert */ -#define IPA_FGBGTODE CTL_PFCM(2) /*!< blending foreground and background memory to destination memory */ -#define IPA_FILL_UP_DE CTL_PFCM(3) /*!< fill up destination memory with specific color */ - -/* foreground alpha value calculation algorithm */ -#define FPCTL_FAVCA(regval) (BITS(16,17) & ((uint32_t)(regval) << 16)) -#define IPA_FG_ALPHA_MODE_0 FPCTL_FAVCA(0) /*!< no effect */ -#define IPA_FG_ALPHA_MODE_1 FPCTL_FAVCA(1) /*!< FPDAV[7:0] is selected as the foreground alpha value */ -#define IPA_FG_ALPHA_MODE_2 FPCTL_FAVCA(2) /*!< FPDAV[7:0] multiplied by read alpha value */ - -/* background alpha value calculation algorithm */ -#define BPCTL_BAVCA(regval) (BITS(16,17) & ((uint32_t)(regval) << 16)) -#define IPA_BG_ALPHA_MODE_0 BPCTL_BAVCA(0) /*!< no effect */ -#define IPA_BG_ALPHA_MODE_1 BPCTL_BAVCA(1) /*!< BPDAV[7:0] is selected as the background alpha value */ -#define IPA_BG_ALPHA_MODE_2 BPCTL_BAVCA(2) /*!< BPDAV[7:0] multiplied by read alpha value */ - -/* foreground pixel format */ -#define FPCTL_PPF(regval) (BITS(0,3) & ((uint32_t)(regval))) -#define FOREGROUND_PPF_ARGB8888 FPCTL_PPF(0) /*!< foreground pixel format ARGB8888 */ -#define FOREGROUND_PPF_RGB888 FPCTL_PPF(1) /*!< foreground pixel format RGB888 */ -#define FOREGROUND_PPF_RGB565 FPCTL_PPF(2) /*!< foreground pixel format RGB565 */ -#define FOREGROUND_PPF_ARG1555 FPCTL_PPF(3) /*!< foreground pixel format ARGB1555 */ -#define FOREGROUND_PPF_ARGB4444 FPCTL_PPF(4) /*!< foreground pixel format ARGB4444 */ -#define FOREGROUND_PPF_L8 FPCTL_PPF(5) /*!< foreground pixel format L8 */ -#define FOREGROUND_PPF_AL44 FPCTL_PPF(6) /*!< foreground pixel format AL44 */ -#define FOREGROUND_PPF_AL88 FPCTL_PPF(7) /*!< foreground pixel format AL88 */ -#define FOREGROUND_PPF_L4 FPCTL_PPF(8) /*!< foreground pixel format L4 */ -#define FOREGROUND_PPF_A8 FPCTL_PPF(9) /*!< foreground pixel format A8 */ -#define FOREGROUND_PPF_A4 FPCTL_PPF(10) /*!< foreground pixel format A4 */ - -/* background pixel format */ -#define BPCTL_PPF(regval) (BITS(0,3) & ((uint32_t)(regval))) -#define BACKGROUND_PPF_ARGB8888 BPCTL_PPF(0) /*!< background pixel format ARGB8888 */ -#define BACKGROUND_PPF_RGB888 BPCTL_PPF(1) /*!< background pixel format RGB888 */ -#define BACKGROUND_PPF_RGB565 BPCTL_PPF(2) /*!< background pixel format RGB565 */ -#define BACKGROUND_PPF_ARG1555 BPCTL_PPF(3) /*!< background pixel format ARGB1555 */ -#define BACKGROUND_PPF_ARGB4444 BPCTL_PPF(4) /*!< background pixel format ARGB4444 */ -#define BACKGROUND_PPF_L8 BPCTL_PPF(5) /*!< background pixel format L8 */ -#define BACKGROUND_PPF_AL44 BPCTL_PPF(6) /*!< background pixel format AL44 */ -#define BACKGROUND_PPF_AL88 BPCTL_PPF(7) /*!< background pixel format AL88 */ -#define BACKGROUND_PPF_L4 BPCTL_PPF(8) /*!< background pixel format L4 */ -#define BACKGROUND_PPF_A8 BPCTL_PPF(9) /*!< background pixel format A8 */ -#define BACKGROUND_PPF_A4 BPCTL_PPF(10) /*!< background pixel format A4 */ - -/* IPA flags */ -#define IPA_FLAG_TAE IPA_INTF_TAEIF /*!< transfer access error interrupt flag */ -#define IPA_FLAG_FTF IPA_INTF_FTFIF /*!< full transfer finish interrupt flag */ -#define IPA_FLAG_TLM IPA_INTF_TLMIF /*!< transfer line mark interrupt flag */ -#define IPA_FLAG_LAC IPA_INTF_LACIF /*!< LUT access conflict interrupt flag */ -#define IPA_FLAG_LLF IPA_INTF_LLFIF /*!< LUT loading finish interrupt flag */ -#define IPA_FLAG_WCF IPA_INTF_WCFIF /*!< wrong configuration interrupt flag */ - -/* IPA interrupt enable or disable */ -#define IPA_INT_TAE IPA_CTL_TAEIE /*!< transfer access error interrupt */ -#define IPA_INT_FTF IPA_CTL_FTFIE /*!< full transfer finish interrupt */ -#define IPA_INT_TLM IPA_CTL_TLMIE /*!< transfer line mark interrupt */ -#define IPA_INT_LAC IPA_CTL_LACIE /*!< LUT access conflict interrupt */ -#define IPA_INT_LLF IPA_CTL_LLFIE /*!< LUT loading finish interrupt */ -#define IPA_INT_WCF IPA_CTL_WCFIE /*!< wrong configuration interrupt */ - -/* IPA interrupt flags */ -#define IPA_INT_FLAG_TAE IPA_INTF_TAEIF /*!< transfer access error interrupt flag */ -#define IPA_INT_FLAG_FTF IPA_INTF_FTFIF /*!< full transfer finish interrupt flag */ -#define IPA_INT_FLAG_TLM IPA_INTF_TLMIF /*!< transfer line mark interrupt flag */ -#define IPA_INT_FLAG_LAC IPA_INTF_LACIF /*!< LUT access conflict interrupt flag */ -#define IPA_INT_FLAG_LLF IPA_INTF_LLFIF /*!< LUT loading finish interrupt flag */ -#define IPA_INT_FLAG_WCF IPA_INTF_WCFIF /*!< wrong configuration interrupt flag */ - -/* function declarations */ -/* functions enable or disable, pixel format convert mode set */ -/* deinitialize IPA */ -void ipa_deinit(void); -/* enable IPA transfer */ -void ipa_transfer_enable(void); -/* enable IPA transfer hang up */ -void ipa_transfer_hangup_enable(void); -/* disable IPA transfer hang up */ -void ipa_transfer_hangup_disable(void); -/* enable IPA transfer stop */ -void ipa_transfer_stop_enable(void); -/* disable IPA transfer stop */ -void ipa_transfer_stop_disable(void); -/* enable IPA foreground LUT loading */ -void ipa_foreground_lut_loading_enable(void); -/* enable IPA background LUT loading */ -void ipa_background_lut_loading_enable(void); -/* set pixel format convert mode, the function is invalid when the IPA transfer is enabled */ -void ipa_pixel_format_convert_mode_set(uint32_t pfcm); - -/* structure initialization, foreground, background, destination and LUT initialization */ -/* initialize the structure of IPA foreground parameter struct with the default values, it is - suggested that call this function after an ipa_foreground_parameter_struct structure is defined */ -void ipa_foreground_struct_para_init(ipa_foreground_parameter_struct* foreground_struct); -/* initialize foreground parameters */ -void ipa_foreground_init(ipa_foreground_parameter_struct* foreground_struct); -/* initialize the structure of IPA background parameter struct with the default values, it is - suggested that call this function after an ipa_background_parameter_struct structure is defined */ -void ipa_background_struct_para_init(ipa_background_parameter_struct* background_struct); -/* initialize background parameters */ -void ipa_background_init(ipa_background_parameter_struct* background_struct); -/* initialize the structure of IPA destination parameter struct with the default values, it is - suggested that call this function after an ipa_destination_parameter_struct structure is defined */ -void ipa_destination_struct_para_init(ipa_destination_parameter_struct* destination_struct); -/* initialize destination parameters */ -void ipa_destination_init(ipa_destination_parameter_struct* destination_struct); -/* initialize IPA foreground LUT parameters */ -void ipa_foreground_lut_init(uint8_t fg_lut_num, uint8_t fg_lut_pf, uint32_t fg_lut_addr); -/* initialize IPA background LUT parameters */ -void ipa_background_lut_init(uint8_t bg_lut_num, uint8_t bg_lut_pf, uint32_t bg_lut_addr); - -/* configuration functions */ -/* configure IPA line mark */ -void ipa_line_mark_config(uint16_t line_num); -/* inter-timer enable or disable */ -void ipa_inter_timer_config(uint8_t timer_cfg); -/* configure the number of clock cycles interval */ -void ipa_interval_clock_num_config(uint8_t clk_num); - -/* flag and interrupt functions */ -/* get IPA flag status in IPA_INTF register */ -FlagStatus ipa_flag_get(uint32_t flag); -/* clear IPA flag in IPA_INTF register */ -void ipa_flag_clear(uint32_t flag); -/* enable IPA interrupt */ -void ipa_interrupt_enable(uint32_t int_flag); -/* disable IPA interrupt */ -void ipa_interrupt_disable(uint32_t int_flag); -/* get IPA interrupt flag */ -FlagStatus ipa_interrupt_flag_get(uint32_t int_flag); -/* clear IPA interrupt flag */ -void ipa_interrupt_flag_clear(uint32_t int_flag); - -#endif /* GD32F4XX_IPA_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_iref.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_iref.h deleted file mode 100644 index b66eb4734d..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_iref.h +++ /dev/null @@ -1,186 +0,0 @@ -/*! - \file gd32f4xx_iref.h - \brief definitions for the IREF - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_IREF_H -#define GD32F4XX_IREF_H - -#include "gd32f4xx.h" - -/* IREF definitions */ -#define IREF IREF_BASE /*!< IREF base address */ - -/* registers definitions */ -#define IREF_CTL REG32(IREF + 0x300U) /*!< IREF control register */ - -/* bits definitions */ -/* IREF_CTL */ -#define IREF_CTL_CSDT BITS(0,5) /*!< current step data */ -#define IREF_CTL_SCMOD BIT(7) /*!< sink current mode */ -#define IREF_CTL_CPT BITS(8,12) /*!< current precision trim */ -#define IREF_CTL_SSEL BIT(14) /*!< step selection */ -#define IREF_CTL_CREN BIT(15) /*!< current reference enable */ - -/* constants definitions */ -/* IREF current precision trim */ -#define CTL_CPT(regval) (BITS(8,12) & ((uint32_t)(regval) << 8)) -#define IREF_CUR_PRECISION_TRIM_0 CTL_CPT(0) /*!< IREF current precision trim 0 */ -#define IREF_CUR_PRECISION_TRIM_1 CTL_CPT(1) /*!< IREF current precision trim 1 */ -#define IREF_CUR_PRECISION_TRIM_2 CTL_CPT(2) /*!< IREF current precision trim 2 */ -#define IREF_CUR_PRECISION_TRIM_3 CTL_CPT(3) /*!< IREF current precision trim 3 */ -#define IREF_CUR_PRECISION_TRIM_4 CTL_CPT(4) /*!< IREF current precision trim 4 */ -#define IREF_CUR_PRECISION_TRIM_5 CTL_CPT(5) /*!< IREF current precision trim 5 */ -#define IREF_CUR_PRECISION_TRIM_6 CTL_CPT(6) /*!< IREF current precision trim 6 */ -#define IREF_CUR_PRECISION_TRIM_7 CTL_CPT(7) /*!< IREF current precision trim 7 */ -#define IREF_CUR_PRECISION_TRIM_8 CTL_CPT(8) /*!< IREF current precision trim 8 */ -#define IREF_CUR_PRECISION_TRIM_9 CTL_CPT(9) /*!< IREF current precision trim 9 */ -#define IREF_CUR_PRECISION_TRIM_10 CTL_CPT(10) /*!< IREF current precision trim 10 */ -#define IREF_CUR_PRECISION_TRIM_11 CTL_CPT(11) /*!< IREF current precision trim 11 */ -#define IREF_CUR_PRECISION_TRIM_12 CTL_CPT(12) /*!< IREF current precision trim 12 */ -#define IREF_CUR_PRECISION_TRIM_13 CTL_CPT(13) /*!< IREF current precision trim 13 */ -#define IREF_CUR_PRECISION_TRIM_14 CTL_CPT(14) /*!< IREF current precision trim 14 */ -#define IREF_CUR_PRECISION_TRIM_15 CTL_CPT(15) /*!< IREF current precision trim 15 */ -#define IREF_CUR_PRECISION_TRIM_16 CTL_CPT(16) /*!< IREF current precision trim 16 */ -#define IREF_CUR_PRECISION_TRIM_17 CTL_CPT(17) /*!< IREF current precision trim 17 */ -#define IREF_CUR_PRECISION_TRIM_18 CTL_CPT(18) /*!< IREF current precision trim 18 */ -#define IREF_CUR_PRECISION_TRIM_19 CTL_CPT(19) /*!< IREF current precision trim 19 */ -#define IREF_CUR_PRECISION_TRIM_20 CTL_CPT(20) /*!< IREF current precision trim 20 */ -#define IREF_CUR_PRECISION_TRIM_21 CTL_CPT(21) /*!< IREF current precision trim 21 */ -#define IREF_CUR_PRECISION_TRIM_22 CTL_CPT(22) /*!< IREF current precision trim 22 */ -#define IREF_CUR_PRECISION_TRIM_23 CTL_CPT(23) /*!< IREF current precision trim 23 */ -#define IREF_CUR_PRECISION_TRIM_24 CTL_CPT(24) /*!< IREF current precision trim 24 */ -#define IREF_CUR_PRECISION_TRIM_25 CTL_CPT(25) /*!< IREF current precision trim 25 */ -#define IREF_CUR_PRECISION_TRIM_26 CTL_CPT(26) /*!< IREF current precision trim 26 */ -#define IREF_CUR_PRECISION_TRIM_27 CTL_CPT(27) /*!< IREF current precision trim 27 */ -#define IREF_CUR_PRECISION_TRIM_28 CTL_CPT(28) /*!< IREF current precision trim 28 */ -#define IREF_CUR_PRECISION_TRIM_29 CTL_CPT(29) /*!< IREF current precision trim 29 */ -#define IREF_CUR_PRECISION_TRIM_30 CTL_CPT(30) /*!< IREF current precision trim 30 */ -#define IREF_CUR_PRECISION_TRIM_31 CTL_CPT(31) /*!< IREF current precision trim 31 */ - -/* IREF current step */ -#define CTL_CSDT(regval) (BITS(0,5) & ((uint32_t)(regval) << 0)) -#define IREF_CUR_STEP_DATA_0 CTL_CSDT(0) /*!< IREF current step data 0 */ -#define IREF_CUR_STEP_DATA_1 CTL_CSDT(1) /*!< IREF current step data 1 */ -#define IREF_CUR_STEP_DATA_2 CTL_CSDT(2) /*!< IREF current step data 2 */ -#define IREF_CUR_STEP_DATA_3 CTL_CSDT(3) /*!< IREF current step data 3 */ -#define IREF_CUR_STEP_DATA_4 CTL_CSDT(4) /*!< IREF current step data 4 */ -#define IREF_CUR_STEP_DATA_5 CTL_CSDT(5) /*!< IREF current step data 5 */ -#define IREF_CUR_STEP_DATA_6 CTL_CSDT(6) /*!< IREF current step data 6 */ -#define IREF_CUR_STEP_DATA_7 CTL_CSDT(7) /*!< IREF current step data 7 */ -#define IREF_CUR_STEP_DATA_8 CTL_CSDT(8) /*!< IREF current step data 8 */ -#define IREF_CUR_STEP_DATA_9 CTL_CSDT(9) /*!< IREF current step data 9 */ -#define IREF_CUR_STEP_DATA_10 CTL_CSDT(10) /*!< IREF current step data 10 */ -#define IREF_CUR_STEP_DATA_11 CTL_CSDT(11) /*!< IREF current step data 11 */ -#define IREF_CUR_STEP_DATA_12 CTL_CSDT(12) /*!< IREF current step data 12 */ -#define IREF_CUR_STEP_DATA_13 CTL_CSDT(13) /*!< IREF current step data 13 */ -#define IREF_CUR_STEP_DATA_14 CTL_CSDT(14) /*!< IREF current step data 14 */ -#define IREF_CUR_STEP_DATA_15 CTL_CSDT(15) /*!< IREF current step data 15 */ -#define IREF_CUR_STEP_DATA_16 CTL_CSDT(16) /*!< IREF current step data 16 */ -#define IREF_CUR_STEP_DATA_17 CTL_CSDT(17) /*!< IREF current step data 17 */ -#define IREF_CUR_STEP_DATA_18 CTL_CSDT(18) /*!< IREF current step data 18 */ -#define IREF_CUR_STEP_DATA_19 CTL_CSDT(19) /*!< IREF current step data 19 */ -#define IREF_CUR_STEP_DATA_20 CTL_CSDT(20) /*!< IREF current step data 20 */ -#define IREF_CUR_STEP_DATA_21 CTL_CSDT(21) /*!< IREF current step data 21 */ -#define IREF_CUR_STEP_DATA_22 CTL_CSDT(22) /*!< IREF current step data 22 */ -#define IREF_CUR_STEP_DATA_23 CTL_CSDT(23) /*!< IREF current step data 23 */ -#define IREF_CUR_STEP_DATA_24 CTL_CSDT(24) /*!< IREF current step data 24 */ -#define IREF_CUR_STEP_DATA_25 CTL_CSDT(25) /*!< IREF current step data 25 */ -#define IREF_CUR_STEP_DATA_26 CTL_CSDT(26) /*!< IREF current step data 26 */ -#define IREF_CUR_STEP_DATA_27 CTL_CSDT(27) /*!< IREF current step data 27 */ -#define IREF_CUR_STEP_DATA_28 CTL_CSDT(28) /*!< IREF current step data 28 */ -#define IREF_CUR_STEP_DATA_29 CTL_CSDT(29) /*!< IREF current step data 29 */ -#define IREF_CUR_STEP_DATA_30 CTL_CSDT(30) /*!< IREF current step data 30 */ -#define IREF_CUR_STEP_DATA_31 CTL_CSDT(31) /*!< IREF current step data 31 */ -#define IREF_CUR_STEP_DATA_32 CTL_CSDT(32) /*!< IREF current step data 32 */ -#define IREF_CUR_STEP_DATA_33 CTL_CSDT(33) /*!< IREF current step data 33 */ -#define IREF_CUR_STEP_DATA_34 CTL_CSDT(34) /*!< IREF current step data 34 */ -#define IREF_CUR_STEP_DATA_35 CTL_CSDT(35) /*!< IREF current step data 35 */ -#define IREF_CUR_STEP_DATA_36 CTL_CSDT(36) /*!< IREF current step data 36 */ -#define IREF_CUR_STEP_DATA_37 CTL_CSDT(37) /*!< IREF current step data 37 */ -#define IREF_CUR_STEP_DATA_38 CTL_CSDT(38) /*!< IREF current step data 38 */ -#define IREF_CUR_STEP_DATA_39 CTL_CSDT(39) /*!< IREF current step data 39 */ -#define IREF_CUR_STEP_DATA_40 CTL_CSDT(40) /*!< IREF current step data 40 */ -#define IREF_CUR_STEP_DATA_41 CTL_CSDT(41) /*!< IREF current step data 41 */ -#define IREF_CUR_STEP_DATA_42 CTL_CSDT(42) /*!< IREF current step data 42 */ -#define IREF_CUR_STEP_DATA_43 CTL_CSDT(43) /*!< IREF current step data 43 */ -#define IREF_CUR_STEP_DATA_44 CTL_CSDT(44) /*!< IREF current step data 44 */ -#define IREF_CUR_STEP_DATA_45 CTL_CSDT(45) /*!< IREF current step data 45 */ -#define IREF_CUR_STEP_DATA_46 CTL_CSDT(46) /*!< IREF current step data 46 */ -#define IREF_CUR_STEP_DATA_47 CTL_CSDT(47) /*!< IREF current step data 47 */ -#define IREF_CUR_STEP_DATA_48 CTL_CSDT(48) /*!< IREF current step data 48 */ -#define IREF_CUR_STEP_DATA_49 CTL_CSDT(49) /*!< IREF current step data 49 */ -#define IREF_CUR_STEP_DATA_50 CTL_CSDT(50) /*!< IREF current step data 50 */ -#define IREF_CUR_STEP_DATA_51 CTL_CSDT(51) /*!< IREF current step data 51 */ -#define IREF_CUR_STEP_DATA_52 CTL_CSDT(52) /*!< IREF current step data 52 */ -#define IREF_CUR_STEP_DATA_53 CTL_CSDT(53) /*!< IREF current step data 53 */ -#define IREF_CUR_STEP_DATA_54 CTL_CSDT(54) /*!< IREF current step data 54 */ -#define IREF_CUR_STEP_DATA_55 CTL_CSDT(55) /*!< IREF current step data 54 */ -#define IREF_CUR_STEP_DATA_56 CTL_CSDT(56) /*!< IREF current step data 54 */ -#define IREF_CUR_STEP_DATA_57 CTL_CSDT(57) /*!< IREF current step data 57 */ -#define IREF_CUR_STEP_DATA_58 CTL_CSDT(58) /*!< IREF current step data 58 */ -#define IREF_CUR_STEP_DATA_59 CTL_CSDT(59) /*!< IREF current step data 59 */ -#define IREF_CUR_STEP_DATA_60 CTL_CSDT(60) /*!< IREF current step data 60 */ -#define IREF_CUR_STEP_DATA_61 CTL_CSDT(61) /*!< IREF current step data 61 */ -#define IREF_CUR_STEP_DATA_62 CTL_CSDT(62) /*!< IREF current step data 62 */ -#define IREF_CUR_STEP_DATA_63 CTL_CSDT(63) /*!< IREF current step data 63 */ - -/* IREF mode selection */ -#define IREF_STEP(regval) (BIT(14) & ((uint32_t)(regval) << 14)) -#define IREF_MODE_LOW_POWER IREF_STEP(0) /*!< low power, 1uA step */ -#define IREF_MODE_HIGH_CURRENT IREF_STEP(1) /*!< high current, 8uA step */ - -/* IREF sink current mode*/ -#define IREF_CURRENT(regval) (BIT(7) & ((uint32_t)(regval) << 7)) -#define IREF_SOURCE_CURRENT IREF_CURRENT(0) /*!< IREF source current */ -#define IREF_SINK_CURRENT IREF_CURRENT(1) /*!< IREF sink current */ - -/* function declarations */ -/* deinit IREF */ -void iref_deinit(void); -/* enable IREF */ -void iref_enable(void); -/* disable IREF */ -void iref_disable(void); - -/* set IREF mode*/ -void iref_mode_set(uint32_t step); -/* set IREF sink current mode*/ -void iref_sink_set(uint32_t sinkmode); -/* set IREF current precision trim value */ -void iref_precision_trim_value_set(uint32_t precisiontrim); -/* set IREF step data*/ -void iref_step_data_config(uint32_t stepdata); - -#endif /* GD32F4XX_IREF_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_misc.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_misc.h deleted file mode 100644 index 68a2b93909..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_misc.h +++ /dev/null @@ -1,93 +0,0 @@ -/*! - \file gd32f4xx_misc.h - \brief definitions for the MISC - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_MISC_H -#define GD32F4XX_MISC_H - -#include "gd32f4xx.h" - -/* constants definitions */ -/* set the RAM and FLASH base address */ -#define NVIC_VECTTAB_RAM ((uint32_t)0x20000000) /*!< RAM base address */ -#define NVIC_VECTTAB_FLASH ((uint32_t)0x08000000) /*!< Flash base address */ - -/* set the NVIC vector table offset mask */ -#define NVIC_VECTTAB_OFFSET_MASK ((uint32_t)0x1FFFFF80) - -/* the register key mask, if you want to do the write operation, you should write 0x5FA to VECTKEY bits */ -#define NVIC_AIRCR_VECTKEY_MASK ((uint32_t)0x05FA0000) - -/* priority group - define the pre-emption priority and the subpriority */ -#define NVIC_PRIGROUP_PRE0_SUB4 ((uint32_t)0x700) /*!< 0 bits for pre-emption priority 4 bits for subpriority */ -#define NVIC_PRIGROUP_PRE1_SUB3 ((uint32_t)0x600) /*!< 1 bits for pre-emption priority 3 bits for subpriority */ -#define NVIC_PRIGROUP_PRE2_SUB2 ((uint32_t)0x500) /*!< 2 bits for pre-emption priority 2 bits for subpriority */ -#define NVIC_PRIGROUP_PRE3_SUB1 ((uint32_t)0x400) /*!< 3 bits for pre-emption priority 1 bits for subpriority */ -#define NVIC_PRIGROUP_PRE4_SUB0 ((uint32_t)0x300) /*!< 4 bits for pre-emption priority 0 bits for subpriority */ - -/* choose the method to enter or exit the lowpower mode */ -#define SCB_SCR_SLEEPONEXIT ((uint8_t)0x02) /*!< choose the the system whether enter low power mode by exiting from ISR */ -#define SCB_SCR_SLEEPDEEP ((uint8_t)0x04) /*!< choose the the system enter the DEEPSLEEP mode or SLEEP mode */ -#define SCB_SCR_SEVONPEND ((uint8_t)0x10) /*!< choose the interrupt source that can wake up the lowpower mode */ - -#define SCB_LPM_SLEEP_EXIT_ISR SCB_SCR_SLEEPONEXIT -#define SCB_LPM_DEEPSLEEP SCB_SCR_SLEEPDEEP -#define SCB_LPM_WAKE_BY_ALL_INT SCB_SCR_SEVONPEND - -/* choose the systick clock source */ -#define SYSTICK_CLKSOURCE_HCLK_DIV8 ((uint32_t)0xFFFFFFFBU) /*!< systick clock source is from HCLK/8 */ -#define SYSTICK_CLKSOURCE_HCLK ((uint32_t)0x00000004U) /*!< systick clock source is from HCLK */ - -/* function declarations */ -/* set the priority group */ -void nvic_priority_group_set(uint32_t nvic_prigroup); - -/* enable NVIC request */ -void nvic_irq_enable(uint8_t nvic_irq, uint8_t nvic_irq_pre_priority, uint8_t nvic_irq_sub_priority); -/* disable NVIC request */ -void nvic_irq_disable(uint8_t nvic_irq); - -/* set the NVIC vector table base address */ -void nvic_vector_table_set(uint32_t nvic_vict_tab, uint32_t offset); - -/* set the state of the low power mode */ -void system_lowpower_set(uint8_t lowpower_mode); -/* reset the state of the low power mode */ -void system_lowpower_reset(uint8_t lowpower_mode); - -/* set the systick clock source */ -void systick_clksource_set(uint32_t systick_clksource); - -#endif /* GD32F4XX_MISC_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_pmu.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_pmu.h deleted file mode 100644 index 72a63ec8b6..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_pmu.h +++ /dev/null @@ -1,199 +0,0 @@ -/*! - \file gd32f4xx_pmu.h - \brief definitions for the PMU - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - - -#ifndef GD32F4XX_PMU_H -#define GD32F4XX_PMU_H - -#include "gd32f4xx.h" - -/* PMU definitions */ -#define PMU PMU_BASE /*!< PMU base address */ - -/* registers definitions */ -#define PMU_CTL REG32((PMU) + 0x00U) /*!< PMU control register */ -#define PMU_CS REG32((PMU) + 0x04U) /*!< PMU control and status register */ - -/* bits definitions */ -/* PMU_CTL */ -#define PMU_CTL_LDOLP BIT(0) /*!< LDO low power mode */ -#define PMU_CTL_STBMOD BIT(1) /*!< standby mode */ -#define PMU_CTL_WURST BIT(2) /*!< wakeup flag reset */ -#define PMU_CTL_STBRST BIT(3) /*!< standby flag reset */ -#define PMU_CTL_LVDEN BIT(4) /*!< low voltage detector enable */ -#define PMU_CTL_LVDT BITS(5,7) /*!< low voltage detector threshold */ -#define PMU_CTL_BKPWEN BIT(8) /*!< backup domain write enable */ -#define PMU_CTL_LDLP BIT(10) /*!< low-driver mode when use low power LDO */ -#define PMU_CTL_LDNP BIT(11) /*!< low-driver mode when use normal power LDO */ -#define PMU_CTL_LDOVS BITS(14,15) /*!< LDO output voltage select */ -#define PMU_CTL_HDEN BIT(16) /*!< high-driver mode enable */ -#define PMU_CTL_HDS BIT(17) /*!< high-driver mode switch */ -#define PMU_CTL_LDEN BITS(18,19) /*!< low-driver mode enable in deep-sleep mode */ - -/* PMU_CS */ -#define PMU_CS_WUF BIT(0) /*!< wakeup flag */ -#define PMU_CS_STBF BIT(1) /*!< standby flag */ -#define PMU_CS_LVDF BIT(2) /*!< low voltage detector status flag */ -#define PMU_CS_BLDORF BIT(3) /*!< backup SRAM LDO ready flag */ -#define PMU_CS_WUPEN BIT(8) /*!< wakeup pin enable */ -#define PMU_CS_BLDOON BIT(9) /*!< backup SRAM LDO on */ -#define PMU_CS_LDOVSRF BIT(14) /*!< LDO voltage select ready flag */ -#define PMU_CS_HDRF BIT(16) /*!< high-driver ready flag */ -#define PMU_CS_HDSRF BIT(17) /*!< high-driver switch ready flag */ -#define PMU_CS_LDRF BITS(18,19) /*!< Low-driver mode ready flag */ - -/* constants definitions */ -/* PMU low voltage detector threshold definitions */ -#define CTL_LVDT(regval) (BITS(5,7)&((uint32_t)(regval)<<5)) -#define PMU_LVDT_0 CTL_LVDT(0) /*!< voltage threshold is 2.1V */ -#define PMU_LVDT_1 CTL_LVDT(1) /*!< voltage threshold is 2.3V */ -#define PMU_LVDT_2 CTL_LVDT(2) /*!< voltage threshold is 2.4V */ -#define PMU_LVDT_3 CTL_LVDT(3) /*!< voltage threshold is 2.6V */ -#define PMU_LVDT_4 CTL_LVDT(4) /*!< voltage threshold is 2.7V */ -#define PMU_LVDT_5 CTL_LVDT(5) /*!< voltage threshold is 2.9V */ -#define PMU_LVDT_6 CTL_LVDT(6) /*!< voltage threshold is 3.0V */ -#define PMU_LVDT_7 CTL_LVDT(7) /*!< voltage threshold is 3.1V */ - -/* PMU LDO output voltage select definitions */ -#define CTL_LDOVS(regval) (BITS(14,15)&((uint32_t)(regval)<<14)) -#define PMU_LDOVS_LOW CTL_LDOVS(1) /*!< LDO output voltage low mode */ -#define PMU_LDOVS_MID CTL_LDOVS(2) /*!< LDO output voltage mid mode */ -#define PMU_LDOVS_HIGH CTL_LDOVS(3) /*!< LDO output voltage high mode */ - -/* PMU low-driver mode enable in deep-sleep mode */ -#define CTL_LDEN(regval) (BITS(18,19)&((uint32_t)(regval)<<18)) -#define PMU_LOWDRIVER_DISABLE CTL_LDEN(0) /*!< low-driver mode disable in deep-sleep mode */ -#define PMU_LOWDRIVER_ENABLE CTL_LDEN(3) /*!< low-driver mode enable in deep-sleep mode */ - -/* PMU high-driver mode switch */ -#define CTL_HDS(regval) (BIT(17)&((uint32_t)(regval)<<17)) -#define PMU_HIGHDR_SWITCH_NONE CTL_HDS(0) /*!< no high-driver mode switch */ -#define PMU_HIGHDR_SWITCH_EN CTL_HDS(1) /*!< high-driver mode switch */ - -/* PMU low-driver mode when use low power LDO */ -#define CTL_LDLP(regval) (BIT(10)&((uint32_t)(regval)<<10)) -#define PMU_NORMALDR_LOWPWR CTL_LDLP(0) /*!< normal driver when use low power LDO */ -#define PMU_LOWDR_LOWPWR CTL_LDLP(1) /*!< low-driver mode enabled when LDEN is 11 and use low power LDO */ - -/* PMU low-driver mode when use normal power LDO */ -#define CTL_LDNP(regval) (BIT(11)&((uint32_t)(regval)<<11)) -#define PMU_NORMALDR_NORMALPWR CTL_LDNP(0) /*!< normal driver when use normal power LDO */ -#define PMU_LOWDR_NORMALPWR CTL_LDNP(1) /*!< low-driver mode enabled when LDEN is 11 and use normal power LDO */ - -/* PMU low power mode ready flag definitions */ -#define CS_LDRF(regval) (BITS(18,19)&((uint32_t)(regval)<<18)) -#define PMU_LDRF_NORMAL CS_LDRF(0) /*!< normal driver in deep-sleep mode */ -#define PMU_LDRF_LOWDRIVER CS_LDRF(3) /*!< low-driver mode in deep-sleep mode */ - -/* PMU backup SRAM LDO on or off */ -#define CS_BLDOON(regval) (BIT(9)&((uint32_t)(regval)<<9)) -#define PMU_BLDOON_OFF CS_BLDOON(0) /*!< backup SRAM LDO off */ -#define PMU_BLDOON_ON CS_BLDOON(1) /*!< the backup SRAM LDO on */ - -/* PMU flag definitions */ -#define PMU_FLAG_WAKEUP PMU_CS_WUF /*!< wakeup flag status */ -#define PMU_FLAG_STANDBY PMU_CS_STBF /*!< standby flag status */ -#define PMU_FLAG_LVD PMU_CS_LVDF /*!< lvd flag status */ -#define PMU_FLAG_BLDORF PMU_CS_BLDORF /*!< backup SRAM LDO ready flag */ -#define PMU_FLAG_LDOVSRF PMU_CS_LDOVSRF /*!< LDO voltage select ready flag */ -#define PMU_FLAG_HDRF PMU_CS_HDRF /*!< high-driver ready flag */ -#define PMU_FLAG_HDSRF PMU_CS_HDSRF /*!< high-driver switch ready flag */ -#define PMU_FLAG_LDRF PMU_CS_LDRF /*!< low-driver mode ready flag */ - -/* PMU ldo definitions */ -#define PMU_LDO_NORMAL ((uint32_t)0x00000000U) /*!< LDO normal work when PMU enter deepsleep mode */ -#define PMU_LDO_LOWPOWER PMU_CTL_LDOLP /*!< LDO work at low power status when PMU enter deepsleep mode */ - -/* PMU flag reset definitions */ -#define PMU_FLAG_RESET_WAKEUP ((uint8_t)0x00U) /*!< wakeup flag reset */ -#define PMU_FLAG_RESET_STANDBY ((uint8_t)0x01U) /*!< standby flag reset */ - -/* PMU command constants definitions */ -#define WFI_CMD ((uint8_t)0x00U) /*!< use WFI command */ -#define WFE_CMD ((uint8_t)0x01U) /*!< use WFE command */ - -/* function declarations */ -/* reset PMU register */ -void pmu_deinit(void); - -/* select low voltage detector threshold */ -void pmu_lvd_select(uint32_t lvdt_n); -/* LDO output voltage select */ -void pmu_ldo_output_select(uint32_t ldo_output); -/* PMU lvd disable */ -void pmu_lvd_disable(void); - -/* functions of low-driver mode and high-driver mode in deep-sleep mode */ -/* high-driver mode switch */ -void pmu_highdriver_switch_select(uint32_t highdr_switch); -/* high-driver mode enable */ -void pmu_highdriver_mode_enable(void); -/* high-driver mode disable */ -void pmu_highdriver_mode_disable(void); -/* low-driver mode enable in deep-sleep mode */ -void pmu_low_driver_mode_enable(uint32_t lowdr_mode); -/* in deep-sleep mode, low-driver mode when use low power LDO */ -void pmu_lowdriver_lowpower_config(uint32_t mode); -/* in deep-sleep mode, low-driver mode when use normal power LDO */ -void pmu_lowdriver_normalpower_config(uint32_t mode); - -/* set PMU mode */ -/* PMU work at sleep mode */ -void pmu_to_sleepmode(uint8_t sleepmodecmd); -/* PMU work at deepsleep mode */ -void pmu_to_deepsleepmode(uint32_t ldo, uint8_t deepsleepmodecmd); -/* PMU work at standby mode */ -void pmu_to_standbymode(uint8_t standbymodecmd); -/* PMU wakeup pin enable */ -void pmu_wakeup_pin_enable(void); -/* PMU wakeup pin disable */ -void pmu_wakeup_pin_disable(void); - -/* backup related functions */ -/* backup SRAM LDO on */ -void pmu_backup_ldo_config(uint32_t bkp_ldo); -/* backup domain write enable */ -void pmu_backup_write_enable(void); -/* backup domain write disable */ -void pmu_backup_write_disable(void); - -/* flag functions */ -/* reset flag bit */ -void pmu_flag_reset(uint32_t flag_reset); -/* get flag status */ -FlagStatus pmu_flag_get(uint32_t pmu_flag); - -#endif /* GD32F4XX_PMU_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_rcu.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_rcu.h deleted file mode 100644 index da53d66f82..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_rcu.h +++ /dev/null @@ -1,1179 +0,0 @@ -/*! - \file gd32f4xx_rcu.h - \brief definitions for the RCU - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_RCU_H -#define GD32F4XX_RCU_H - -#include "gd32f4xx.h" - -/* RCU definitions */ -#define RCU RCU_BASE - -/* registers definitions */ -#define RCU_CTL REG32(RCU + 0x00U) /*!< control register */ -#define RCU_PLL REG32(RCU + 0x04U) /*!< PLL register */ -#define RCU_CFG0 REG32(RCU + 0x08U) /*!< clock configuration register 0 */ -#define RCU_INT REG32(RCU + 0x0CU) /*!< clock interrupt register */ -#define RCU_AHB1RST REG32(RCU + 0x10U) /*!< AHB1 reset register */ -#define RCU_AHB2RST REG32(RCU + 0x14U) /*!< AHB2 reset register */ -#define RCU_AHB3RST REG32(RCU + 0x18U) /*!< AHB3 reset register */ -#define RCU_APB1RST REG32(RCU + 0x20U) /*!< APB1 reset register */ -#define RCU_APB2RST REG32(RCU + 0x24U) /*!< APB2 reset register */ -#define RCU_AHB1EN REG32(RCU + 0x30U) /*!< AHB1 enable register */ -#define RCU_AHB2EN REG32(RCU + 0x34U) /*!< AHB2 enable register */ -#define RCU_AHB3EN REG32(RCU + 0x38U) /*!< AHB3 enable register */ -#define RCU_APB1EN REG32(RCU + 0x40U) /*!< APB1 enable register */ -#define RCU_APB2EN REG32(RCU + 0x44U) /*!< APB2 enable register */ -#define RCU_AHB1SPEN REG32(RCU + 0x50U) /*!< AHB1 sleep mode enable register */ -#define RCU_AHB2SPEN REG32(RCU + 0x54U) /*!< AHB2 sleep mode enable register */ -#define RCU_AHB3SPEN REG32(RCU + 0x58U) /*!< AHB3 sleep mode enable register */ -#define RCU_APB1SPEN REG32(RCU + 0x60U) /*!< APB1 sleep mode enable register */ -#define RCU_APB2SPEN REG32(RCU + 0x64U) /*!< APB2 sleep mode enable register */ -#define RCU_BDCTL REG32(RCU + 0x70U) /*!< backup domain control register */ -#define RCU_RSTSCK REG32(RCU + 0x74U) /*!< reset source / clock register */ -#define RCU_PLLSSCTL REG32(RCU + 0x80U) /*!< PLL clock spread spectrum control register */ -#define RCU_PLLI2S REG32(RCU + 0x84U) /*!< PLLI2S register */ -#define RCU_PLLSAI REG32(RCU + 0x88U) /*!< PLLSAI register */ -#define RCU_CFG1 REG32(RCU + 0x8CU) /*!< clock configuration register 1 */ -#define RCU_ADDCTL REG32(RCU + 0xC0U) /*!< Additional clock control register */ -#define RCU_ADDINT REG32(RCU + 0xCCU) /*!< Additional clock interrupt register */ -#define RCU_ADDAPB1RST REG32(RCU + 0xE0U) /*!< APB1 additional reset register */ -#define RCU_ADDAPB1EN REG32(RCU + 0xE4U) /*!< APB1 additional enable register */ -#define RCU_ADDAPB1SPEN REG32(RCU + 0xE8U) /*!< APB1 additional sleep mode enable register */ -#define RCU_VKEY REG32(RCU + 0x100U) /*!< voltage key register */ -#define RCU_DSV REG32(RCU + 0x134U) /*!< deep-sleep mode voltage register */ - -/* bits definitions */ -/* RCU_CTL */ -#define RCU_CTL_IRC16MEN BIT(0) /*!< internal high speed oscillator enable */ -#define RCU_CTL_IRC16MSTB BIT(1) /*!< IRC16M high speed internal oscillator stabilization flag */ -#define RCU_CTL_IRC16MADJ BITS(3,7) /*!< high speed internal oscillator clock trim adjust value */ -#define RCU_CTL_IRC16MCALIB BITS(8,15) /*!< high speed internal oscillator calibration value register */ -#define RCU_CTL_HXTALEN BIT(16) /*!< external high speed oscillator enable */ -#define RCU_CTL_HXTALSTB BIT(17) /*!< external crystal oscillator clock stabilization flag */ -#define RCU_CTL_HXTALBPS BIT(18) /*!< external crystal oscillator clock bypass mode enable */ -#define RCU_CTL_CKMEN BIT(19) /*!< HXTAL clock monitor enable */ -#define RCU_CTL_PLLEN BIT(24) /*!< PLL enable */ -#define RCU_CTL_PLLSTB BIT(25) /*!< PLL Clock Stabilization Flag */ -#define RCU_CTL_PLLI2SEN BIT(26) /*!< PLLI2S enable */ -#define RCU_CTL_PLLI2SSTB BIT(27) /*!< PLLI2S Clock Stabilization Flag */ -#define RCU_CTL_PLLSAIEN BIT(28) /*!< PLLSAI enable */ -#define RCU_CTL_PLLSAISTB BIT(29) /*!< PLLSAI Clock Stabilization Flag */ - -/* RCU_PLL */ -#define RCU_PLL_PLLPSC BITS(0,5) /*!< The PLL VCO source clock prescaler */ -#define RCU_PLL_PLLN BITS(6,14) /*!< The PLL VCO clock multi factor */ -#define RCU_PLL_PLLP BITS(16,17) /*!< The PLLP output frequency division factor from PLL VCO clock */ -#define RCU_PLL_PLLSEL BIT(22) /*!< PLL Clock Source Selection */ -#define RCU_PLL_PLLQ BITS(24,27) /*!< The PLL Q output frequency division factor from PLL VCO clock */ - -/* RCU_CFG0 */ -#define RCU_CFG0_SCS BITS(0,1) /*!< system clock switch */ -#define RCU_CFG0_SCSS BITS(2,3) /*!< system clock switch status */ -#define RCU_CFG0_AHBPSC BITS(4,7) /*!< AHB prescaler selection */ -#define RCU_CFG0_APB1PSC BITS(10,12) /*!< APB1 prescaler selection */ -#define RCU_CFG0_APB2PSC BITS(13,15) /*!< APB2 prescaler selection */ -#define RCU_CFG0_RTCDIV BITS(16,20) /*!< RTC clock divider factor */ -#define RCU_CFG0_CKOUT0SEL BITS(21,22) /*!< CKOUT0 Clock Source Selection */ -#define RCU_CFG0_I2SSEL BIT(23) /*!< I2S Clock Source Selection */ -#define RCU_CFG0_CKOUT0DIV BITS(24,26) /*!< The CK_OUT0 divider which the CK_OUT0 frequency can be reduced */ -#define RCU_CFG0_CKOUT1DIV BITS(27,29) /*!< The CK_OUT1 divider which the CK_OUT1 frequency can be reduced */ -#define RCU_CFG0_CKOUT1SEL BITS(30,31) /*!< CKOUT1 Clock Source Selection */ - -/* RCU_INT */ -#define RCU_INT_IRC32KSTBIF BIT(0) /*!< IRC32K stabilization interrupt flag */ -#define RCU_INT_LXTALSTBIF BIT(1) /*!< LXTAL stabilization interrupt flag */ -#define RCU_INT_IRC16MSTBIF BIT(2) /*!< IRC16M stabilization interrupt flag */ -#define RCU_INT_HXTALSTBIF BIT(3) /*!< HXTAL stabilization interrupt flag */ -#define RCU_INT_PLLSTBIF BIT(4) /*!< PLL stabilization interrupt flag */ -#define RCU_INT_PLLI2SSTBIF BIT(5) /*!< PLLI2S stabilization interrupt flag */ -#define RCU_INT_PLLSAISTBIF BIT(6) /*!< PLLSAI stabilization interrupt flag */ -#define RCU_INT_CKMIF BIT(7) /*!< HXTAL clock stuck interrupt flag */ -#define RCU_INT_IRC32KSTBIE BIT(8) /*!< IRC32K stabilization interrupt enable */ -#define RCU_INT_LXTALSTBIE BIT(9) /*!< LXTAL stabilization interrupt enable */ -#define RCU_INT_IRC16MSTBIE BIT(10) /*!< IRC16M stabilization interrupt enable */ -#define RCU_INT_HXTALSTBIE BIT(11) /*!< HXTAL stabilization interrupt enable */ -#define RCU_INT_PLLSTBIE BIT(12) /*!< PLL stabilization interrupt enable */ -#define RCU_INT_PLLI2SSTBIE BIT(13) /*!< PLLI2S Stabilization Interrupt Enable */ -#define RCU_INT_PLLSAISTBIE BIT(14) /*!< PLLSAI Stabilization Interrupt Enable */ -#define RCU_INT_IRC32KSTBIC BIT(16) /*!< IRC32K Stabilization Interrupt Clear */ -#define RCU_INT_LXTALSTBIC BIT(17) /*!< LXTAL Stabilization Interrupt Clear */ -#define RCU_INT_IRC16MSTBIC BIT(18) /*!< IRC16M Stabilization Interrupt Clear */ -#define RCU_INT_HXTALSTBIC BIT(19) /*!< HXTAL Stabilization Interrupt Clear */ -#define RCU_INT_PLLSTBIC BIT(20) /*!< PLL stabilization Interrupt Clear */ -#define RCU_INT_PLLI2SSTBIC BIT(21) /*!< PLLI2S stabilization Interrupt Clear */ -#define RCU_INT_PLLSAISTBIC BIT(22) /*!< PLLSAI stabilization Interrupt Clear */ -#define RCU_INT_CKMIC BIT(23) /*!< HXTAL Clock Stuck Interrupt Clear */ - -/* RCU_AHB1RST */ -#define RCU_AHB1RST_PARST BIT(0) /*!< GPIO port A reset */ -#define RCU_AHB1RST_PBRST BIT(1) /*!< GPIO port B reset */ -#define RCU_AHB1RST_PCRST BIT(2) /*!< GPIO port C reset */ -#define RCU_AHB1RST_PDRST BIT(3) /*!< GPIO port D reset */ -#define RCU_AHB1RST_PERST BIT(4) /*!< GPIO port E reset */ -#define RCU_AHB1RST_PFRST BIT(5) /*!< GPIO port F reset */ -#define RCU_AHB1RST_PGRST BIT(6) /*!< GPIO port G reset */ -#define RCU_AHB1RST_PHRST BIT(7) /*!< GPIO port H reset */ -#define RCU_AHB1RST_PIRST BIT(8) /*!< GPIO port I reset */ -#define RCU_AHB1RST_CRCRST BIT(12) /*!< CRC reset */ -#define RCU_AHB1RST_DMA0RST BIT(21) /*!< DMA0 reset */ -#define RCU_AHB1RST_DMA1RST BIT(22) /*!< DMA1 reset */ -#define RCU_AHB1RST_IPARST BIT(23) /*!< IPA reset */ -#define RCU_AHB1RST_ENETRST BIT(25) /*!< ENET reset */ -#define RCU_AHB1RST_USBHSRST BIT(29) /*!< USBHS reset */ - -/* RCU_AHB2RST */ -#define RCU_AHB2RST_DCIRST BIT(0) /*!< DCI reset */ -#define RCU_AHB2RST_TRNGRST BIT(6) /*!< TRNG reset */ -#define RCU_AHB2RST_USBFSRST BIT(7) /*!< USBFS reset */ - -/* RCU_AHB3RST */ -#define RCU_AHB3RST_EXMCRST BIT(0) /*!< EXMC reset */ - -/* RCU_APB1RST */ -#define RCU_APB1RST_TIMER1RST BIT(0) /*!< TIMER1 reset */ -#define RCU_APB1RST_TIMER2RST BIT(1) /*!< TIMER2 reset */ -#define RCU_APB1RST_TIMER3RST BIT(2) /*!< TIMER3 reset */ -#define RCU_APB1RST_TIMER4RST BIT(3) /*!< TIMER4 reset */ -#define RCU_APB1RST_TIMER5RST BIT(4) /*!< TIMER5 reset */ -#define RCU_APB1RST_TIMER6RST BIT(5) /*!< TIMER6 reset */ -#define RCU_APB1RST_TIMER11RST BIT(6) /*!< TIMER11 reset */ -#define RCU_APB1RST_TIMER12RST BIT(7) /*!< TIMER12 reset */ -#define RCU_APB1RST_TIMER13RST BIT(8) /*!< TIMER13 reset */ -#define RCU_APB1RST_WWDGTRST BIT(11) /*!< WWDGT reset */ -#define RCU_APB1RST_SPI1RST BIT(14) /*!< SPI1 reset */ -#define RCU_APB1RST_SPI2RST BIT(15) /*!< SPI2 reset */ -#define RCU_APB1RST_USART1RST BIT(17) /*!< USART1 reset */ -#define RCU_APB1RST_USART2RST BIT(18) /*!< USART2 reset */ -#define RCU_APB1RST_UART3RST BIT(19) /*!< UART3 reset */ -#define RCU_APB1RST_UART4RST BIT(20) /*!< UART4 reset */ -#define RCU_APB1RST_I2C0RST BIT(21) /*!< I2C0 reset */ -#define RCU_APB1RST_I2C1RST BIT(22) /*!< I2C1 reset */ -#define RCU_APB1RST_I2C2RST BIT(23) /*!< I2C2 reset */ -#define RCU_APB1RST_CAN0RST BIT(25) /*!< CAN0 reset */ -#define RCU_APB1RST_CAN1RST BIT(26) /*!< CAN1 reset */ -#define RCU_APB1RST_PMURST BIT(28) /*!< PMU reset */ -#define RCU_APB1RST_DACRST BIT(29) /*!< DAC reset */ -#define RCU_APB1RST_UART6RST BIT(30) /*!< UART6 reset */ -#define RCU_APB1RST_UART7RST BIT(31) /*!< UART7 reset */ - -/* RCU_APB2RST */ -#define RCU_APB2RST_TIMER0RST BIT(0) /*!< TIMER0 reset */ -#define RCU_APB2RST_TIMER7RST BIT(1) /*!< TIMER7 reset */ -#define RCU_APB2RST_USART0RST BIT(4) /*!< USART0 reset */ -#define RCU_APB2RST_USART5RST BIT(5) /*!< USART5 reset */ -#define RCU_APB2RST_ADCRST BIT(8) /*!< ADC reset */ -#define RCU_APB2RST_SDIORST BIT(11) /*!< SDIO reset */ -#define RCU_APB2RST_SPI0RST BIT(12) /*!< SPI0 reset */ -#define RCU_APB2RST_SPI3RST BIT(13) /*!< SPI3 reset */ -#define RCU_APB2RST_SYSCFGRST BIT(14) /*!< SYSCFG reset */ -#define RCU_APB2RST_TIMER8RST BIT(16) /*!< TIMER8 reset */ -#define RCU_APB2RST_TIMER9RST BIT(17) /*!< TIMER9 reset */ -#define RCU_APB2RST_TIMER10RST BIT(18) /*!< TIMER10 reset */ -#define RCU_APB2RST_SPI4RST BIT(20) /*!< SPI4 reset */ -#define RCU_APB2RST_SPI5RST BIT(21) /*!< SPI5 reset */ -#define RCU_APB2RST_TLIRST BIT(26) /*!< TLI reset */ - -/* RCU_AHB1EN */ -#define RCU_AHB1EN_PAEN BIT(0) /*!< GPIO port A clock enable */ -#define RCU_AHB1EN_PBEN BIT(1) /*!< GPIO port B clock enable */ -#define RCU_AHB1EN_PCEN BIT(2) /*!< GPIO port C clock enable */ -#define RCU_AHB1EN_PDEN BIT(3) /*!< GPIO port D clock enable */ -#define RCU_AHB1EN_PEEN BIT(4) /*!< GPIO port E clock enable */ -#define RCU_AHB1EN_PFEN BIT(5) /*!< GPIO port F clock enable */ -#define RCU_AHB1EN_PGEN BIT(6) /*!< GPIO port G clock enable */ -#define RCU_AHB1EN_PHEN BIT(7) /*!< GPIO port H clock enable */ -#define RCU_AHB1EN_PIEN BIT(8) /*!< GPIO port I clock enable */ -#define RCU_AHB1EN_CRCEN BIT(12) /*!< CRC clock enable */ -#define RCU_AHB1EN_BKPSRAMEN BIT(18) /*!< BKPSRAM clock enable */ -#define RCU_AHB1EN_TCMSRAMEN BIT(20) /*!< TCMSRAM clock enable */ -#define RCU_AHB1EN_DMA0EN BIT(21) /*!< DMA0 clock enable */ -#define RCU_AHB1EN_DMA1EN BIT(22) /*!< DMA1 clock enable */ -#define RCU_AHB1EN_IPAEN BIT(23) /*!< IPA clock enable */ -#define RCU_AHB1EN_ENETEN BIT(25) /*!< ENET clock enable */ -#define RCU_AHB1EN_ENETTXEN BIT(26) /*!< Ethernet TX clock enable */ -#define RCU_AHB1EN_ENETRXEN BIT(27) /*!< Ethernet RX clock enable */ -#define RCU_AHB1EN_ENETPTPEN BIT(28) /*!< Ethernet PTP clock enable */ -#define RCU_AHB1EN_USBHSEN BIT(29) /*!< USBHS clock enable */ -#define RCU_AHB1EN_USBHSULPIEN BIT(30) /*!< USBHS ULPI clock enable */ - -/* RCU_AHB2EN */ -#define RCU_AHB2EN_DCIEN BIT(0) /*!< DCI clock enable */ -#define RCU_AHB2EN_TRNGEN BIT(6) /*!< TRNG clock enable */ -#define RCU_AHB2EN_USBFSEN BIT(7) /*!< USBFS clock enable */ - -/* RCU_AHB3EN */ -#define RCU_AHB3EN_EXMCEN BIT(0) /*!< EXMC clock enable */ - -/* RCU_APB1EN */ -#define RCU_APB1EN_TIMER1EN BIT(0) /*!< TIMER1 clock enable */ -#define RCU_APB1EN_TIMER2EN BIT(1) /*!< TIMER2 clock enable */ -#define RCU_APB1EN_TIMER3EN BIT(2) /*!< TIMER3 clock enable */ -#define RCU_APB1EN_TIMER4EN BIT(3) /*!< TIMER4 clock enable */ -#define RCU_APB1EN_TIMER5EN BIT(4) /*!< TIMER5 clock enable */ -#define RCU_APB1EN_TIMER6EN BIT(5) /*!< TIMER6 clock enable */ -#define RCU_APB1EN_TIMER11EN BIT(6) /*!< TIMER11 clock enable */ -#define RCU_APB1EN_TIMER12EN BIT(7) /*!< TIMER12 clock enable */ -#define RCU_APB1EN_TIMER13EN BIT(8) /*!< TIMER13 clock enable */ -#define RCU_APB1EN_WWDGTEN BIT(11) /*!< WWDGT clock enable */ -#define RCU_APB1EN_SPI1EN BIT(14) /*!< SPI1 clock enable */ -#define RCU_APB1EN_SPI2EN BIT(15) /*!< SPI2 clock enable */ -#define RCU_APB1EN_USART1EN BIT(17) /*!< USART1 clock enable */ -#define RCU_APB1EN_USART2EN BIT(18) /*!< USART2 clock enable */ -#define RCU_APB1EN_UART3EN BIT(19) /*!< UART3 clock enable */ -#define RCU_APB1EN_UART4EN BIT(20) /*!< UART4 clock enable */ -#define RCU_APB1EN_I2C0EN BIT(21) /*!< I2C0 clock enable */ -#define RCU_APB1EN_I2C1EN BIT(22) /*!< I2C1 clock enable */ -#define RCU_APB1EN_I2C2EN BIT(23) /*!< I2C2 clock enable */ -#define RCU_APB1EN_CAN0EN BIT(25) /*!< CAN0 clock enable */ -#define RCU_APB1EN_CAN1EN BIT(26) /*!< CAN1 clock enable */ -#define RCU_APB1EN_PMUEN BIT(28) /*!< PMU clock enable */ -#define RCU_APB1EN_DACEN BIT(29) /*!< DAC clock enable */ -#define RCU_APB1EN_UART6EN BIT(30) /*!< UART6 clock enable */ -#define RCU_APB1EN_UART7EN BIT(31) /*!< UART7 clock enable */ - -/* RCU_APB2EN */ -#define RCU_APB2EN_TIMER0EN BIT(0) /*!< TIMER0 clock enable */ -#define RCU_APB2EN_TIMER7EN BIT(1) /*!< TIMER7 clock enable */ -#define RCU_APB2EN_USART0EN BIT(4) /*!< USART0 clock enable */ -#define RCU_APB2EN_USART5EN BIT(5) /*!< USART5 clock enable */ -#define RCU_APB2EN_ADC0EN BIT(8) /*!< ADC0 clock enable */ -#define RCU_APB2EN_ADC1EN BIT(9) /*!< ADC1 clock enable */ -#define RCU_APB2EN_ADC2EN BIT(10) /*!< ADC2 clock enable */ -#define RCU_APB2EN_SDIOEN BIT(11) /*!< SDIO clock enable */ -#define RCU_APB2EN_SPI0EN BIT(12) /*!< SPI0 clock enable */ -#define RCU_APB2EN_SPI3EN BIT(13) /*!< SPI3 clock enable */ -#define RCU_APB2EN_SYSCFGEN BIT(14) /*!< SYSCFG clock enable */ -#define RCU_APB2EN_TIMER8EN BIT(16) /*!< TIMER8 clock enable */ -#define RCU_APB2EN_TIMER9EN BIT(17) /*!< TIMER9 clock enable */ -#define RCU_APB2EN_TIMER10EN BIT(18) /*!< TIMER10 clock enable */ -#define RCU_APB2EN_SPI4EN BIT(20) /*!< SPI4 clock enable */ -#define RCU_APB2EN_SPI5EN BIT(21) /*!< SPI5 clock enable */ -#define RCU_APB2EN_TLIEN BIT(26) /*!< TLI clock enable */ - -/* RCU_AHB1SPEN */ -#define RCU_AHB1SPEN_PASPEN BIT(0) /*!< GPIO port A clock enable when sleep mode */ -#define RCU_AHB1SPEN_PBSPEN BIT(1) /*!< GPIO port B clock enable when sleep mode */ -#define RCU_AHB1SPEN_PCSPEN BIT(2) /*!< GPIO port C clock enable when sleep mode */ -#define RCU_AHB1SPEN_PDSPEN BIT(3) /*!< GPIO port D clock enable when sleep mode */ -#define RCU_AHB1SPEN_PESPEN BIT(4) /*!< GPIO port E clock enable when sleep mode */ -#define RCU_AHB1SPEN_PFSPEN BIT(5) /*!< GPIO port F clock enable when sleep mode */ -#define RCU_AHB1SPEN_PGSPEN BIT(6) /*!< GPIO port G clock enable when sleep mode */ -#define RCU_AHB1SPEN_PHSPEN BIT(7) /*!< GPIO port H clock enable when sleep mode */ -#define RCU_AHB1SPEN_PISPEN BIT(8) /*!< GPIO port I clock enable when sleep mode */ -#define RCU_AHB1SPEN_CRCSPEN BIT(12) /*!< CRC clock enable when sleep mode */ -#define RCU_AHB1SPEN_FMCSPEN BIT(15) /*!< FMC clock enable when sleep mode */ -#define RCU_AHB1SPEN_SRAM0SPEN BIT(16) /*!< SRAM0 clock enable when sleep mode */ -#define RCU_AHB1SPEN_SRAM1SPEN BIT(17) /*!< SRAM1 clock enable when sleep mode */ -#define RCU_AHB1SPEN_BKPSRAMSPEN BIT(18) /*!< BKPSRAM clock enable when sleep mode */ -#define RCU_AHB1SPEN_SRAM2SPEN BIT(19) /*!< SRAM2 clock enable when sleep mode */ -#define RCU_AHB1SPEN_DMA0SPEN BIT(21) /*!< DMA0 clock when sleep mode enable */ -#define RCU_AHB1SPEN_DMA1SPEN BIT(22) /*!< DMA1 clock when sleep mode enable */ -#define RCU_AHB1SPEN_IPASPEN BIT(23) /*!< IPA clock enable when sleep mode */ -#define RCU_AHB1SPEN_ENETSPEN BIT(25) /*!< ENET clock enable when sleep mode */ -#define RCU_AHB1SPEN_ENETTXSPEN BIT(26) /*!< Ethernet TX clock enable when sleep mode */ -#define RCU_AHB1SPEN_ENETRXSPEN BIT(27) /*!< Ethernet RX clock enable when sleep mode */ -#define RCU_AHB1SPEN_ENETPTPSPEN BIT(28) /*!< Ethernet PTP clock enable when sleep mode */ -#define RCU_AHB1SPEN_USBHSSPEN BIT(29) /*!< USBHS clock enable when sleep mode */ -#define RCU_AHB1SPEN_USBHSULPISPEN BIT(30) /*!< USBHS ULPI clock enable when sleep mode */ - -/* RCU_AHB2SPEN */ -#define RCU_AHB2SPEN_DCISPEN BIT(0) /*!< DCI clock enable when sleep mode */ -#define RCU_AHB2SPEN_TRNGSPEN BIT(6) /*!< TRNG clock enable when sleep mode */ -#define RCU_AHB2SPEN_USBFSSPEN BIT(7) /*!< USBFS clock enable when sleep mode */ - -/* RCU_AHB3SPEN */ -#define RCU_AHB3SPEN_EXMCSPEN BIT(0) /*!< EXMC clock enable when sleep mode */ - -/* RCU_APB1SPEN */ -#define RCU_APB1SPEN_TIMER1SPEN BIT(0) /*!< TIMER1 clock enable when sleep mode */ -#define RCU_APB1SPEN_TIMER2SPEN BIT(1) /*!< TIMER2 clock enable when sleep mode */ -#define RCU_APB1SPEN_TIMER3SPEN BIT(2) /*!< TIMER3 clock enable when sleep mode */ -#define RCU_APB1SPEN_TIMER4SPEN BIT(3) /*!< TIMER4 clock enable when sleep mode */ -#define RCU_APB1SPEN_TIMER5SPEN BIT(4) /*!< TIMER5 clock enable when sleep mode */ -#define RCU_APB1SPEN_TIMER6SPEN BIT(5) /*!< TIMER6 clock enable when sleep mode */ -#define RCU_APB1SPEN_TIMER11SPEN BIT(6) /*!< TIMER11 clock enable when sleep mode */ -#define RCU_APB1SPEN_TIMER12SPEN BIT(7) /*!< TIMER12 clock enable when sleep mode */ -#define RCU_APB1SPEN_TIMER13SPEN BIT(8) /*!< TIMER13 clock enable when sleep mode */ -#define RCU_APB1SPEN_WWDGTSPEN BIT(11) /*!< WWDGT clock enable when sleep mode */ -#define RCU_APB1SPEN_SPI1SPEN BIT(14) /*!< SPI1 clock enable when sleep mode */ -#define RCU_APB1SPEN_SPI2SPEN BIT(15) /*!< SPI2 clock enable when sleep mode */ -#define RCU_APB1SPEN_USART1SPEN BIT(17) /*!< USART1 clock enable when sleep mode*/ -#define RCU_APB1SPEN_USART2SPEN BIT(18) /*!< USART2 clock enable when sleep mode*/ -#define RCU_APB1SPEN_UART3SPEN BIT(19) /*!< UART3 clock enable when sleep mode*/ -#define RCU_APB1SPEN_UART4SPEN BIT(20) /*!< UART4 clock enable when sleep mode */ -#define RCU_APB1SPEN_I2C0SPEN BIT(21) /*!< I2C0 clock enable when sleep mode */ -#define RCU_APB1SPEN_I2C1SPEN BIT(22) /*!< I2C1 clock enable when sleep mode*/ -#define RCU_APB1SPEN_I2C2SPEN BIT(23) /*!< I2C2 clock enable when sleep mode */ -#define RCU_APB1SPEN_CAN0SPEN BIT(25) /*!< CAN0 clock enable when sleep mode*/ -#define RCU_APB1SPEN_CAN1SPEN BIT(26) /*!< CAN1 clock enable when sleep mode */ -#define RCU_APB1SPEN_PMUSPEN BIT(28) /*!< PMU clock enable when sleep mode */ -#define RCU_APB1SPEN_DACSPEN BIT(29) /*!< DAC clock enable when sleep mode */ -#define RCU_APB1SPEN_UART6SPEN BIT(30) /*!< UART6 clock enable when sleep mode */ -#define RCU_APB1SPEN_UART7SPEN BIT(31) /*!< UART7 clock enable when sleep mode */ - -/* RCU_APB2SPEN */ -#define RCU_APB2SPEN_TIMER0SPEN BIT(0) /*!< TIMER0 clock enable when sleep mode */ -#define RCU_APB2SPEN_TIMER7SPEN BIT(1) /*!< TIMER7 clock enable when sleep mode */ -#define RCU_APB2SPEN_USART0SPEN BIT(4) /*!< USART0 clock enable when sleep mode */ -#define RCU_APB2SPEN_USART5SPEN BIT(5) /*!< USART5 clock enable when sleep mode */ -#define RCU_APB2SPEN_ADC0SPEN BIT(8) /*!< ADC0 clock enable when sleep mode */ -#define RCU_APB2SPEN_ADC1SPEN BIT(9) /*!< ADC1 clock enable when sleep mode */ -#define RCU_APB2SPEN_ADC2SPEN BIT(10) /*!< ADC2 clock enable when sleep mode */ -#define RCU_APB2SPEN_SDIOSPEN BIT(11) /*!< SDIO clock enable when sleep mode */ -#define RCU_APB2SPEN_SPI0SPEN BIT(12) /*!< SPI0 clock enable when sleep mode */ -#define RCU_APB2SPEN_SPI3SPEN BIT(13) /*!< SPI3 clock enable when sleep mode */ -#define RCU_APB2SPEN_SYSCFGSPEN BIT(14) /*!< SYSCFG clock enable when sleep mode */ -#define RCU_APB2SPEN_TIMER8SPEN BIT(16) /*!< TIMER8 clock enable when sleep mode */ -#define RCU_APB2SPEN_TIMER9SPEN BIT(17) /*!< TIMER9 clock enable when sleep mode */ -#define RCU_APB2SPEN_TIMER10SPEN BIT(18) /*!< TIMER10 clock enable when sleep mode */ -#define RCU_APB2SPEN_SPI4SPEN BIT(20) /*!< SPI4 clock enable when sleep mode */ -#define RCU_APB2SPEN_SPI5SPEN BIT(21) /*!< SPI5 clock enable when sleep mode */ -#define RCU_APB2SPEN_TLISPEN BIT(26) /*!< TLI clock enable when sleep mode*/ - -/* RCU_BDCTL */ -#define RCU_BDCTL_LXTALEN BIT(0) /*!< LXTAL enable */ -#define RCU_BDCTL_LXTALSTB BIT(1) /*!< low speed crystal oscillator stabilization flag */ -#define RCU_BDCTL_LXTALBPS BIT(2) /*!< LXTAL bypass mode enable */ -#define RCU_BDCTL_LXTALDRI BIT(3) /*!< LXTAL drive capability */ -#define RCU_BDCTL_RTCSRC BITS(8,9) /*!< RTC clock entry selection */ -#define RCU_BDCTL_RTCEN BIT(15) /*!< RTC clock enable */ -#define RCU_BDCTL_BKPRST BIT(16) /*!< backup domain reset */ - -/* RCU_RSTSCK */ -#define RCU_RSTSCK_IRC32KEN BIT(0) /*!< IRC32K enable */ -#define RCU_RSTSCK_IRC32KSTB BIT(1) /*!< IRC32K stabilization flag */ -#define RCU_RSTSCK_RSTFC BIT(24) /*!< reset flag clear */ -#define RCU_RSTSCK_BORRSTF BIT(25) /*!< BOR reset flag */ -#define RCU_RSTSCK_EPRSTF BIT(26) /*!< external pin reset flag */ -#define RCU_RSTSCK_PORRSTF BIT(27) /*!< power reset flag */ -#define RCU_RSTSCK_SWRSTF BIT(28) /*!< software reset flag */ -#define RCU_RSTSCK_FWDGTRSTF BIT(29) /*!< free watchdog timer reset flag */ -#define RCU_RSTSCK_WWDGTRSTF BIT(30) /*!< window watchdog timer reset flag */ -#define RCU_RSTSCK_LPRSTF BIT(31) /*!< low-power reset flag */ - -/* RCU_PLLSSCTL */ -#define RCU_PLLSSCTL_MODCNT BITS(0,12) /*!< these bits configure PLL spread spectrum modulation - profile amplitude and frequency. the following criteria - must be met: MODSTEP*MODCNT=215-1 */ -#define RCU_PLLSSCTL_MODSTEP BITS(13,27) /*!< these bits configure PLL spread spectrum modulation - profile amplitude and frequency. the following criteria - must be met: MODSTEP*MODCNT=215-1 */ -#define RCU_PLLSSCTL_SS_TYPE BIT(30) /*!< PLL spread spectrum modulation type select */ -#define RCU_PLLSSCTL_SSCGON BIT(31) /*!< PLL spread spectrum modulation enable */ - -/* RCU_PLLI2S */ -#define RCU_PLLI2S_PLLI2SN BITS(6,14) /*!< the PLLI2S VCO clock multi factor */ -#define RCU_PLLI2S_PLLI2SQ BITS(24,27) /*!< the PLLI2S Q output frequency division factor from PLLI2S VCO clock */ -#define RCU_PLLI2S_PLLI2SR BITS(28,30) /*!< the PLLI2S R output frequency division factor from PLLI2S VCO clock */ - -/* RCU_PLLSAI */ -#define RCU_PLLSAI_PLLSAIN BITS(6,14) /*!< the PLLSAI VCO clock multi factor */ -#define RCU_PLLSAI_PLLSAIP BITS(16,17) /*!< the PLLSAI P output frequency division factor from PLLSAI VCO clock */ -#define RCU_PLLSAI_PLLSAIQ BITS(24,27) /*!< the PLLSAI Q output frequency division factor from PLLSAI VCO clock */ -#define RCU_PLLSAI_PLLSAIR BITS(28,30) /*!< the PLLSAI R output frequency division factor from PLLSAI VCO clock */ - -/* RCU_CFG1 */ -#define RCU_CFG1_PLLSAIRDIV BITS(16,17) /*!< the divider factor from PLLSAIR clock */ -#define RCU_CFG1_TIMERSEL BIT(24) /*!< TIMER clock selection */ - -/* RCU_ADDCTL */ -#define RCU_ADDCTL_CK48MSEL BIT(0) /*!< 48MHz clock selection */ -#define RCU_ADDCTL_PLL48MSEL BIT(1) /*!< PLL48M clock selection */ -#define RCU_ADDCTL_IRC48MEN BIT(16) /*!< internal 48MHz RC oscillator enable */ -#define RCU_ADDCTL_IRC48MSTB BIT(17) /*!< internal 48MHz RC oscillator clock stabilization flag */ -#define RCU_ADDCTL_IRC48MCAL BITS(24,31) /*!< internal 48MHz RC oscillator calibration value register */ - -/* RCU_ADDINT */ -#define RCU_ADDINT_IRC48MSTBIF BIT(6) /*!< IRC48M stabilization interrupt flag */ -#define RCU_ADDINT_IRC48MSTBIE BIT(14) /*!< internal 48 MHz RC oscillator stabilization interrupt enable */ -#define RCU_ADDINT_IRC48MSTBIC BIT(22) /*!< internal 48 MHz RC oscillator stabilization interrupt clear */ - -/* RCU_ADDAPB1RST */ -#define RCU_ADDAPB1RST_CTCRST BIT(27) /*!< CTC reset */ -#define RCU_ADDAPB1RST_IREFRST BIT(31) /*!< IREF reset */ - -/* RCU_ADDAPB1EN */ -#define RCU_ADDAPB1EN_CTCEN BIT(27) /*!< CTC clock enable */ -#define RCU_ADDAPB1EN_IREFEN BIT(31) /*!< IREF interface clock enable */ - -/* RCU_ADDAPB1SPEN */ -#define RCU_ADDAPB1SPEN_CTCSPEN BIT(27) /*!< CTC clock enable during sleep mode */ -#define RCU_ADDAPB1SPEN_IREFSPEN BIT(31) /*!< IREF interface clock enable during sleep mode */ - -/* RCU_VKEY */ -#define RCU_VKEY_KEY BITS(0,31) /*!< RCU_DSV key register */ - -/* RCU_DSV */ -#define RCU_DSV_DSLPVS BITS(0,2) /*!< deep-sleep mode voltage select */ - -/* constants definitions */ -/* define the peripheral clock enable bit position and its register index offset */ -#define RCU_REGIDX_BIT(regidx, bitpos) (((uint32_t)(regidx) << 6) | (uint32_t)(bitpos)) -#define RCU_REG_VAL(periph) (REG32(RCU + ((uint32_t)(periph) >> 6))) -#define RCU_BIT_POS(val) ((uint32_t)(val) & 0x1FU) -/* define the voltage key unlock value */ -#define RCU_VKEY_UNLOCK ((uint32_t)0x1A2B3C4DU) - -/* register offset */ -/* peripherals enable */ -#define AHB1EN_REG_OFFSET 0x30U /*!< AHB1 enable register offset */ -#define AHB2EN_REG_OFFSET 0x34U /*!< AHB2 enable register offset */ -#define AHB3EN_REG_OFFSET 0x38U /*!< AHB3 enable register offset */ -#define APB1EN_REG_OFFSET 0x40U /*!< APB1 enable register offset */ -#define APB2EN_REG_OFFSET 0x44U /*!< APB2 enable register offset */ -#define AHB1SPEN_REG_OFFSET 0x50U /*!< AHB1 sleep mode enable register offset */ -#define AHB2SPEN_REG_OFFSET 0x54U /*!< AHB2 sleep mode enable register offset */ -#define AHB3SPEN_REG_OFFSET 0x58U /*!< AHB3 sleep mode enable register offset */ -#define APB1SPEN_REG_OFFSET 0x60U /*!< APB1 sleep mode enable register offset */ -#define APB2SPEN_REG_OFFSET 0x64U /*!< APB2 sleep mode enable register offset */ -#define ADD_APB1EN_REG_OFFSET 0xE4U /*!< APB1 additional enable register offset */ -#define ADD_APB1SPEN_REG_OFFSET 0xE8U /*!< APB1 additional sleep mode enable register offset */ - -/* peripherals reset */ -#define AHB1RST_REG_OFFSET 0x10U /*!< AHB1 reset register offset */ -#define AHB2RST_REG_OFFSET 0x14U /*!< AHB2 reset register offset */ -#define AHB3RST_REG_OFFSET 0x18U /*!< AHB3 reset register offset */ -#define APB1RST_REG_OFFSET 0x20U /*!< APB1 reset register offset */ -#define APB2RST_REG_OFFSET 0x24U /*!< APB2 reset register offset */ -#define ADD_APB1RST_REG_OFFSET 0xE0U /*!< APB1 additional reset register offset */ -#define RSTSCK_REG_OFFSET 0x74U /*!< reset source/clock register offset */ - -/* clock control */ -#define CTL_REG_OFFSET 0x00U /*!< control register offset */ -#define BDCTL_REG_OFFSET 0x70U /*!< backup domain control register offset */ -#define ADDCTL_REG_OFFSET 0xC0U /*!< additional clock control register offset */ - -/* clock stabilization and stuck interrupt */ -#define INT_REG_OFFSET 0x0CU /*!< clock interrupt register offset */ -#define ADDINT_REG_OFFSET 0xCCU /*!< additional clock interrupt register offset */ - -/* configuration register */ -#define PLL_REG_OFFSET 0x04U /*!< PLL register offset */ -#define CFG0_REG_OFFSET 0x08U /*!< clock configuration register 0 offset */ -#define PLLSSCTL_REG_OFFSET 0x80U /*!< PLL clock spread spectrum control register offset */ -#define PLLI2S_REG_OFFSET 0x84U /*!< PLLI2S register offset */ -#define PLLSAI_REG_OFFSET 0x88U /*!< PLLSAI register offset */ -#define CFG1_REG_OFFSET 0x8CU /*!< clock configuration register 1 offset */ - -/* peripheral clock enable */ -typedef enum -{ - /* AHB1 peripherals */ - RCU_GPIOA = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 0U), /*!< GPIOA clock */ - RCU_GPIOB = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 1U), /*!< GPIOB clock */ - RCU_GPIOC = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 2U), /*!< GPIOC clock */ - RCU_GPIOD = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 3U), /*!< GPIOD clock */ - RCU_GPIOE = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 4U), /*!< GPIOE clock */ - RCU_GPIOF = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 5U), /*!< GPIOF clock */ - RCU_GPIOG = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 6U), /*!< GPIOG clock */ - RCU_GPIOH = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 7U), /*!< GPIOH clock */ - RCU_GPIOI = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 8U), /*!< GPIOI clock */ - RCU_CRC = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 12U), /*!< CRC clock */ - RCU_BKPSRAM = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 18U), /*!< BKPSRAM clock */ - RCU_TCMSRAM = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 20U), /*!< TCMSRAM clock */ - RCU_DMA0 = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 21U), /*!< DMA0 clock */ - RCU_DMA1 = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 22U), /*!< DMA1 clock */ - RCU_IPA = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 23U), /*!< IPA clock */ - RCU_ENET = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 25U), /*!< ENET clock */ - RCU_ENETTX = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 26U), /*!< ENETTX clock */ - RCU_ENETRX = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 27U), /*!< ENETRX clock */ - RCU_ENETPTP = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 28U), /*!< ENETPTP clock */ - RCU_USBHS = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 29U), /*!< USBHS clock */ - RCU_USBHSULPI = RCU_REGIDX_BIT(AHB1EN_REG_OFFSET, 30U), /*!< USBHSULPI clock */ - /* AHB2 peripherals */ - RCU_DCI = RCU_REGIDX_BIT(AHB2EN_REG_OFFSET, 0U), /*!< DCI clock */ - RCU_TRNG = RCU_REGIDX_BIT(AHB2EN_REG_OFFSET, 6U), /*!< TRNG clock */ - RCU_USBFS = RCU_REGIDX_BIT(AHB2EN_REG_OFFSET, 7U), /*!< USBFS clock */ - /* AHB3 peripherals */ - RCU_EXMC = RCU_REGIDX_BIT(AHB3EN_REG_OFFSET, 0U), /*!< EXMC clock */ - /* APB1 peripherals */ - RCU_TIMER1 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 0U), /*!< TIMER1 clock */ - RCU_TIMER2 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 1U), /*!< TIMER2 clock */ - RCU_TIMER3 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 2U), /*!< TIMER3 clock */ - RCU_TIMER4 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 3U), /*!< TIMER4 clock */ - RCU_TIMER5 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 4U), /*!< TIMER5 clock */ - RCU_TIMER6 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 5U), /*!< TIMER6 clock */ - RCU_TIMER11 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 6U), /*!< TIMER11 clock */ - RCU_TIMER12 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 7U), /*!< TIMER12 clock */ - RCU_TIMER13 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 8U), /*!< TIMER13 clock */ - RCU_WWDGT = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 11U), /*!< WWDGT clock */ - RCU_SPI1 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 14U), /*!< SPI1 clock */ - RCU_SPI2 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 15U), /*!< SPI2 clock */ - RCU_USART1 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 17U), /*!< USART1 clock */ - RCU_USART2 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 18U), /*!< USART2 clock */ - RCU_UART3 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 19U), /*!< UART3 clock */ - RCU_UART4 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 20U), /*!< UART4 clock */ - RCU_I2C0 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 21U), /*!< I2C0 clock */ - RCU_I2C1 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 22U), /*!< I2C1 clock */ - RCU_I2C2 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 23U), /*!< I2C2 clock */ - RCU_CAN0 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 25U), /*!< CAN0 clock */ - RCU_CAN1 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 26U), /*!< CAN1 clock */ - RCU_PMU = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 28U), /*!< PMU clock */ - RCU_DAC = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 29U), /*!< DAC clock */ - RCU_UART6 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 30U), /*!< UART6 clock */ - RCU_UART7 = RCU_REGIDX_BIT(APB1EN_REG_OFFSET, 31U), /*!< UART7 clock */ - RCU_RTC = RCU_REGIDX_BIT(BDCTL_REG_OFFSET, 15U), /*!< RTC clock */ - /* APB2 peripherals */ - RCU_TIMER0 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 0U), /*!< TIMER0 clock */ - RCU_TIMER7 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 1U), /*!< TIMER7 clock */ - RCU_USART0 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 4U), /*!< USART0 clock */ - RCU_USART5 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 5U), /*!< USART5 clock */ - RCU_ADC0 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 8U), /*!< ADC0 clock */ - RCU_ADC1 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 9U), /*!< ADC1 clock */ - RCU_ADC2 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 10U), /*!< ADC2 clock */ - RCU_SDIO = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 11U), /*!< SDIO clock */ - RCU_SPI0 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 12U), /*!< SPI0 clock */ - RCU_SPI3 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 13U), /*!< SPI3 clock */ - RCU_SYSCFG = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 14U), /*!< SYSCFG clock */ - RCU_TIMER8 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 16U), /*!< TIMER8 clock */ - RCU_TIMER9 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 17U), /*!< TIMER9 clock */ - RCU_TIMER10 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 18U), /*!< TIMER10 clock */ - RCU_SPI4 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 20U), /*!< SPI4 clock */ - RCU_SPI5 = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 21U), /*!< SPI5 clock */ - RCU_TLI = RCU_REGIDX_BIT(APB2EN_REG_OFFSET, 26U), /*!< TLI clock */ - /* APB1 additional peripherals */ - RCU_CTC = RCU_REGIDX_BIT(ADD_APB1EN_REG_OFFSET, 27U), /*!< CTC clock */ - RCU_IREF = RCU_REGIDX_BIT(ADD_APB1EN_REG_OFFSET, 31U), /*!< IREF clock */ -}rcu_periph_enum; - -/* peripheral clock enable when sleep mode*/ -typedef enum -{ - /* AHB1 peripherals */ - RCU_GPIOA_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 0U), /*!< GPIOA clock */ - RCU_GPIOB_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 1U), /*!< GPIOB clock */ - RCU_GPIOC_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 2U), /*!< GPIOC clock */ - RCU_GPIOD_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 3U), /*!< GPIOD clock */ - RCU_GPIOE_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 4U), /*!< GPIOE clock */ - RCU_GPIOF_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 5U), /*!< GPIOF clock */ - RCU_GPIOG_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 6U), /*!< GPIOG clock */ - RCU_GPIOH_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 7U), /*!< GPIOH clock */ - RCU_GPIOI_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 8U), /*!< GPIOI clock */ - RCU_CRC_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 12U), /*!< CRC clock */ - RCU_FMC_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 15U), /*!< FMC clock */ - RCU_SRAM0_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 16U), /*!< SRAM0 clock */ - RCU_SRAM1_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 17U), /*!< SRAM1 clock */ - RCU_BKPSRAM_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 18U), /*!< BKPSRAM clock */ - RCU_SRAM2_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 19U), /*!< SRAM2 clock */ - RCU_DMA0_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 21U), /*!< DMA0 clock */ - RCU_DMA1_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 22U), /*!< DMA1 clock */ - RCU_IPA_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 23U), /*!< IPA clock */ - RCU_ENET_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 25U), /*!< ENET clock */ - RCU_ENETTX_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 26U), /*!< ENETTX clock */ - RCU_ENETRX_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 27U), /*!< ENETRX clock */ - RCU_ENETPTP_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 28U), /*!< ENETPTP clock */ - RCU_USBHS_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 29U), /*!< USBHS clock */ - RCU_USBHSULPI_SLP = RCU_REGIDX_BIT(AHB1SPEN_REG_OFFSET, 30U), /*!< USBHSULPI clock */ - /* AHB2 peripherals */ - RCU_DCI_SLP = RCU_REGIDX_BIT(AHB2SPEN_REG_OFFSET, 0U), /*!< DCI clock */ - RCU_TRNG_SLP = RCU_REGIDX_BIT(AHB2SPEN_REG_OFFSET, 6U), /*!< TRNG clock */ - RCU_USBFS_SLP = RCU_REGIDX_BIT(AHB2SPEN_REG_OFFSET, 7U), /*!< USBFS clock */ - /* AHB3 peripherals */ - RCU_EXMC_SLP = RCU_REGIDX_BIT(AHB3SPEN_REG_OFFSET, 0U), /*!< EXMC clock */ - /* APB1 peripherals */ - RCU_TIMER1_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 0U), /*!< TIMER1 clock */ - RCU_TIMER2_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 1U), /*!< TIMER2 clock */ - RCU_TIMER3_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 2U), /*!< TIMER3 clock */ - RCU_TIMER4_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 3U), /*!< TIMER4 clock */ - RCU_TIMER5_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 4U), /*!< TIMER5 clock */ - RCU_TIMER6_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 5U), /*!< TIMER6 clock */ - RCU_TIMER11_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 6U), /*!< TIMER11 clock */ - RCU_TIMER12_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 7U), /*!< TIMER12 clock */ - RCU_TIMER13_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 8U), /*!< TIMER13 clock */ - RCU_WWDGT_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 11U), /*!< WWDGT clock */ - RCU_SPI1_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 14U), /*!< SPI1 clock */ - RCU_SPI2_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 15U), /*!< SPI2 clock */ - RCU_USART1_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 17U), /*!< USART1 clock */ - RCU_USART2_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 18U), /*!< USART2 clock */ - RCU_UART3_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 19U), /*!< UART3 clock */ - RCU_UART4_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 20U), /*!< UART4 clock */ - RCU_I2C0_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 21U), /*!< I2C0 clock */ - RCU_I2C1_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 22U), /*!< I2C1 clock */ - RCU_I2C2_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 23U), /*!< I2C2 clock */ - RCU_CAN0_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 25U), /*!< CAN0 clock */ - RCU_CAN1_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 26U), /*!< CAN1 clock */ - RCU_PMU_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 28U), /*!< PMU clock */ - RCU_DAC_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 29U), /*!< DAC clock */ - RCU_UART6_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 30U), /*!< UART6 clock */ - RCU_UART7_SLP = RCU_REGIDX_BIT(APB1SPEN_REG_OFFSET, 31U), /*!< UART7 clock */ - /* APB2 peripherals */ - RCU_TIMER0_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 0U), /*!< TIMER0 clock */ - RCU_TIMER7_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 1U), /*!< TIMER7 clock */ - RCU_USART0_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 4U), /*!< USART0 clock */ - RCU_USART5_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 5U), /*!< USART5 clock */ - RCU_ADC0_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 8U), /*!< ADC0 clock */ - RCU_ADC1_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 9U), /*!< ADC1 clock */ - RCU_ADC2_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 10U), /*!< ADC2 clock */ - RCU_SDIO_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 11U), /*!< SDIO clock */ - RCU_SPI0_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 12U), /*!< SPI0 clock */ - RCU_SPI3_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 13U), /*!< SPI3 clock */ - RCU_SYSCFG_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 14U), /*!< SYSCFG clock */ - RCU_TIMER8_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 16U), /*!< TIMER8 clock */ - RCU_TIMER9_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 17U), /*!< TIMER9 clock */ - RCU_TIMER10_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 18U), /*!< TIMER10 clock */ - RCU_SPI4_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 20U), /*!< SPI4 clock */ - RCU_SPI5_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 21U), /*!< SPI5 clock */ - RCU_TLI_SLP = RCU_REGIDX_BIT(APB2SPEN_REG_OFFSET, 26U), /*!< TLI clock */ - /* APB1 additional peripherals */ - RCU_CTC_SLP = RCU_REGIDX_BIT(ADD_APB1SPEN_REG_OFFSET, 27U), /*!< CTC clock */ - RCU_IREF_SLP = RCU_REGIDX_BIT(ADD_APB1SPEN_REG_OFFSET, 31U), /*!< IREF clock */ -}rcu_periph_sleep_enum; - -/* peripherals reset */ -typedef enum -{ - /* AHB1 peripherals */ - RCU_GPIOARST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 0U), /*!< GPIOA clock reset */ - RCU_GPIOBRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 1U), /*!< GPIOB clock reset */ - RCU_GPIOCRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 2U), /*!< GPIOC clock reset */ - RCU_GPIODRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 3U), /*!< GPIOD clock reset */ - RCU_GPIOERST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 4U), /*!< GPIOE clock reset */ - RCU_GPIOFRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 5U), /*!< GPIOF clock reset */ - RCU_GPIOGRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 6U), /*!< GPIOG clock reset */ - RCU_GPIOHRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 7U), /*!< GPIOH clock reset */ - RCU_GPIOIRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 8U), /*!< GPIOI clock reset */ - RCU_CRCRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 12U), /*!< CRC clock reset */ - RCU_DMA0RST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 21U), /*!< DMA0 clock reset */ - RCU_DMA1RST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 22U), /*!< DMA1 clock reset */ - RCU_IPARST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 23U), /*!< IPA clock reset */ - RCU_ENETRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 25U), /*!< ENET clock reset */ - RCU_USBHSRST = RCU_REGIDX_BIT(AHB1RST_REG_OFFSET, 29U), /*!< USBHS clock reset */ - /* AHB2 peripherals */ - RCU_DCIRST = RCU_REGIDX_BIT(AHB2RST_REG_OFFSET, 0U), /*!< DCI clock reset */ - RCU_TRNGRST = RCU_REGIDX_BIT(AHB2RST_REG_OFFSET, 6U), /*!< TRNG clock reset */ - RCU_USBFSRST = RCU_REGIDX_BIT(AHB2RST_REG_OFFSET, 7U), /*!< USBFS clock reset */ - /* AHB3 peripherals */ - RCU_EXMCRST = RCU_REGIDX_BIT(AHB3RST_REG_OFFSET, 0U), /*!< EXMC clock reset */ - /* APB1 peripherals */ - RCU_TIMER1RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 0U), /*!< TIMER1 clock reset */ - RCU_TIMER2RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 1U), /*!< TIMER2 clock reset */ - RCU_TIMER3RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 2U), /*!< TIMER3 clock reset */ - RCU_TIMER4RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 3U), /*!< TIMER4 clock reset */ - RCU_TIMER5RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 4U), /*!< TIMER5 clock reset */ - RCU_TIMER6RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 5U), /*!< TIMER6 clock reset */ - RCU_TIMER11RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 6U), /*!< TIMER11 clock reset */ - RCU_TIMER12RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 7U), /*!< TIMER12 clock reset */ - RCU_TIMER13RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 8U), /*!< TIMER13 clock reset */ - RCU_WWDGTRST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 11U), /*!< WWDGT clock reset */ - RCU_SPI1RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 14U), /*!< SPI1 clock reset */ - RCU_SPI2RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 15U), /*!< SPI2 clock reset */ - RCU_USART1RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 17U), /*!< USART1 clock reset */ - RCU_USART2RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 18U), /*!< USART2 clock reset */ - RCU_UART3RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 19U), /*!< UART3 clock reset */ - RCU_UART4RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 20U), /*!< UART4 clock reset */ - RCU_I2C0RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 21U), /*!< I2C0 clock reset */ - RCU_I2C1RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 22U), /*!< I2C1 clock reset */ - RCU_I2C2RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 23U), /*!< I2C2 clock reset */ - RCU_CAN0RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 25U), /*!< CAN0 clock reset */ - RCU_CAN1RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 26U), /*!< CAN1 clock reset */ - RCU_PMURST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 28U), /*!< PMU clock reset */ - RCU_DACRST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 29U), /*!< DAC clock reset */ - RCU_UART6RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 30U), /*!< UART6 clock reset */ - RCU_UART7RST = RCU_REGIDX_BIT(APB1RST_REG_OFFSET, 31U), /*!< UART7 clock reset */ - /* APB2 peripherals */ - RCU_TIMER0RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 0U), /*!< TIMER0 clock reset */ - RCU_TIMER7RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 1U), /*!< TIMER7 clock reset */ - RCU_USART0RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 4U), /*!< USART0 clock reset */ - RCU_USART5RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 5U), /*!< USART5 clock reset */ - RCU_ADCRST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 8U), /*!< ADCs all clock reset */ - RCU_SDIORST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 11U), /*!< SDIO clock reset */ - RCU_SPI0RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 12U), /*!< SPI0 clock reset */ - RCU_SPI3RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 13U), /*!< SPI3 clock reset */ - RCU_SYSCFGRST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 14U), /*!< SYSCFG clock reset */ - RCU_TIMER8RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 16U), /*!< TIMER8 clock reset */ - RCU_TIMER9RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 17U), /*!< TIMER9 clock reset */ - RCU_TIMER10RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 18U), /*!< TIMER10 clock reset */ - RCU_SPI4RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 20U), /*!< SPI4 clock reset */ - RCU_SPI5RST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 21U), /*!< SPI5 clock reset */ - RCU_TLIRST = RCU_REGIDX_BIT(APB2RST_REG_OFFSET, 26U), /*!< TLI clock reset */ - /* APB1 additional peripherals */ - RCU_CTCRST = RCU_REGIDX_BIT(ADD_APB1RST_REG_OFFSET, 27U), /*!< CTC clock reset */ - RCU_IREFRST = RCU_REGIDX_BIT(ADD_APB1RST_REG_OFFSET, 31U) /*!< IREF clock reset */ -}rcu_periph_reset_enum; - -/* clock stabilization and peripheral reset flags */ -typedef enum -{ - /* clock stabilization flags */ - RCU_FLAG_IRC16MSTB = RCU_REGIDX_BIT(CTL_REG_OFFSET, 1U), /*!< IRC16M stabilization flags */ - RCU_FLAG_HXTALSTB = RCU_REGIDX_BIT(CTL_REG_OFFSET, 17U), /*!< HXTAL stabilization flags */ - RCU_FLAG_PLLSTB = RCU_REGIDX_BIT(CTL_REG_OFFSET, 25U), /*!< PLL stabilization flags */ - RCU_FLAG_PLLI2SSTB = RCU_REGIDX_BIT(CTL_REG_OFFSET, 27U), /*!< PLLI2S stabilization flags */ - RCU_FLAG_PLLSAISTB = RCU_REGIDX_BIT(CTL_REG_OFFSET, 29U), /*!< PLLSAI stabilization flags */ - RCU_FLAG_LXTALSTB = RCU_REGIDX_BIT(BDCTL_REG_OFFSET, 1U), /*!< LXTAL stabilization flags */ - RCU_FLAG_IRC32KSTB = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 1U), /*!< IRC32K stabilization flags */ - RCU_FLAG_IRC48MSTB = RCU_REGIDX_BIT(ADDCTL_REG_OFFSET, 17U), /*!< IRC48M stabilization flags */ - /* reset source flags */ - RCU_FLAG_BORRST = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 25U), /*!< BOR reset flags */ - RCU_FLAG_EPRST = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 26U), /*!< External PIN reset flags */ - RCU_FLAG_PORRST = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 27U), /*!< power reset flags */ - RCU_FLAG_SWRST = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 28U), /*!< Software reset flags */ - RCU_FLAG_FWDGTRST = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 29U), /*!< FWDGT reset flags */ - RCU_FLAG_WWDGTRST = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 30U), /*!< WWDGT reset flags */ - RCU_FLAG_LPRST = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 31U), /*!< Low-power reset flags */ -}rcu_flag_enum; - -/* clock stabilization and ckm interrupt flags */ -typedef enum -{ - RCU_INT_FLAG_IRC32KSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 0U), /*!< IRC32K stabilization interrupt flag */ - RCU_INT_FLAG_LXTALSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 1U), /*!< LXTAL stabilization interrupt flag */ - RCU_INT_FLAG_IRC16MSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 2U), /*!< IRC16M stabilization interrupt flag */ - RCU_INT_FLAG_HXTALSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 3U), /*!< HXTAL stabilization interrupt flag */ - RCU_INT_FLAG_PLLSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 4U), /*!< PLL stabilization interrupt flag */ - RCU_INT_FLAG_PLLI2SSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 5U), /*!< PLLI2S stabilization interrupt flag */ - RCU_INT_FLAG_PLLSAISTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 6U), /*!< PLLSAI stabilization interrupt flag */ - RCU_INT_FLAG_CKM = RCU_REGIDX_BIT(INT_REG_OFFSET, 7U), /*!< HXTAL clock stuck interrupt flag */ - RCU_INT_FLAG_IRC48MSTB = RCU_REGIDX_BIT(ADDINT_REG_OFFSET, 6U), /*!< IRC48M stabilization interrupt flag */ -}rcu_int_flag_enum; - -/* clock stabilization and stuck interrupt flags clear */ -typedef enum -{ - RCU_INT_FLAG_IRC32KSTB_CLR = RCU_REGIDX_BIT(INT_REG_OFFSET, 16U), /*!< IRC32K stabilization interrupt flags clear */ - RCU_INT_FLAG_LXTALSTB_CLR = RCU_REGIDX_BIT(INT_REG_OFFSET, 17U), /*!< LXTAL stabilization interrupt flags clear */ - RCU_INT_FLAG_IRC16MSTB_CLR = RCU_REGIDX_BIT(INT_REG_OFFSET, 18U), /*!< IRC16M stabilization interrupt flags clear */ - RCU_INT_FLAG_HXTALSTB_CLR = RCU_REGIDX_BIT(INT_REG_OFFSET, 19U), /*!< HXTAL stabilization interrupt flags clear */ - RCU_INT_FLAG_PLLSTB_CLR = RCU_REGIDX_BIT(INT_REG_OFFSET, 20U), /*!< PLL stabilization interrupt flags clear */ - RCU_INT_FLAG_PLLI2SSTB_CLR = RCU_REGIDX_BIT(INT_REG_OFFSET, 21U), /*!< PLLI2S stabilization interrupt flags clear */ - RCU_INT_FLAG_PLLSAISTB_CLR = RCU_REGIDX_BIT(INT_REG_OFFSET, 22U), /*!< PLLSAI stabilization interrupt flags clear */ - RCU_INT_FLAG_CKM_CLR = RCU_REGIDX_BIT(INT_REG_OFFSET, 23U), /*!< CKM interrupt flags clear */ - RCU_INT_FLAG_IRC48MSTB_CLR = RCU_REGIDX_BIT(ADDINT_REG_OFFSET, 22U), /*!< internal 48 MHz RC oscillator stabilization interrupt clear */ -}rcu_int_flag_clear_enum; - -/* clock stabilization interrupt enable or disable */ -typedef enum -{ - RCU_INT_IRC32KSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 8U), /*!< IRC32K stabilization interrupt */ - RCU_INT_LXTALSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 9U), /*!< LXTAL stabilization interrupt */ - RCU_INT_IRC16MSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 10U), /*!< IRC16M stabilization interrupt */ - RCU_INT_HXTALSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 11U), /*!< HXTAL stabilization interrupt */ - RCU_INT_PLLSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 12U), /*!< PLL stabilization interrupt */ - RCU_INT_PLLI2SSTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 13U), /*!< PLLI2S stabilization interrupt */ - RCU_INT_PLLSAISTB = RCU_REGIDX_BIT(INT_REG_OFFSET, 14U), /*!< PLLSAI stabilization interrupt */ - RCU_INT_IRC48MSTB = RCU_REGIDX_BIT(ADDINT_REG_OFFSET, 14U), /*!< internal 48 MHz RC oscillator stabilization interrupt */ -}rcu_int_enum; - -/* oscillator types */ -typedef enum -{ - RCU_HXTAL = RCU_REGIDX_BIT(CTL_REG_OFFSET, 16U), /*!< HXTAL */ - RCU_LXTAL = RCU_REGIDX_BIT(BDCTL_REG_OFFSET, 0U), /*!< LXTAL */ - RCU_IRC16M = RCU_REGIDX_BIT(CTL_REG_OFFSET, 0U), /*!< IRC16M */ - RCU_IRC48M = RCU_REGIDX_BIT(ADDCTL_REG_OFFSET, 16U), /*!< IRC48M */ - RCU_IRC32K = RCU_REGIDX_BIT(RSTSCK_REG_OFFSET, 0U), /*!< IRC32K */ - RCU_PLL_CK = RCU_REGIDX_BIT(CTL_REG_OFFSET, 24U), /*!< PLL */ - RCU_PLLI2S_CK = RCU_REGIDX_BIT(CTL_REG_OFFSET, 26U), /*!< PLLI2S */ - RCU_PLLSAI_CK = RCU_REGIDX_BIT(CTL_REG_OFFSET, 28U), /*!< PLLSAI */ -}rcu_osci_type_enum; - -/* rcu clock frequency */ -typedef enum -{ - CK_SYS = 0, /*!< system clock */ - CK_AHB, /*!< AHB clock */ - CK_APB1, /*!< APB1 clock */ - CK_APB2, /*!< APB2 clock */ -}rcu_clock_freq_enum; - -/* RCU_CFG0 register bit define */ -/* system clock source select */ -#define CFG0_SCS(regval) (BITS(0,1) & ((uint32_t)(regval) << 0)) -#define RCU_CKSYSSRC_IRC16M CFG0_SCS(0) /*!< system clock source select IRC16M */ -#define RCU_CKSYSSRC_HXTAL CFG0_SCS(1) /*!< system clock source select HXTAL */ -#define RCU_CKSYSSRC_PLLP CFG0_SCS(2) /*!< system clock source select PLLP */ - -/* system clock source select status */ -#define CFG0_SCSS(regval) (BITS(2,3) & ((uint32_t)(regval) << 2)) -#define RCU_SCSS_IRC16M CFG0_SCSS(0) /*!< system clock source select IRC16M */ -#define RCU_SCSS_HXTAL CFG0_SCSS(1) /*!< system clock source select HXTAL */ -#define RCU_SCSS_PLLP CFG0_SCSS(2) /*!< system clock source select PLLP */ - -/* AHB prescaler selection */ -#define CFG0_AHBPSC(regval) (BITS(4,7) & ((uint32_t)(regval) << 4)) -#define RCU_AHB_CKSYS_DIV1 CFG0_AHBPSC(0) /*!< AHB prescaler select CK_SYS */ -#define RCU_AHB_CKSYS_DIV2 CFG0_AHBPSC(8) /*!< AHB prescaler select CK_SYS/2 */ -#define RCU_AHB_CKSYS_DIV4 CFG0_AHBPSC(9) /*!< AHB prescaler select CK_SYS/4 */ -#define RCU_AHB_CKSYS_DIV8 CFG0_AHBPSC(10) /*!< AHB prescaler select CK_SYS/8 */ -#define RCU_AHB_CKSYS_DIV16 CFG0_AHBPSC(11) /*!< AHB prescaler select CK_SYS/16 */ -#define RCU_AHB_CKSYS_DIV64 CFG0_AHBPSC(12) /*!< AHB prescaler select CK_SYS/64 */ -#define RCU_AHB_CKSYS_DIV128 CFG0_AHBPSC(13) /*!< AHB prescaler select CK_SYS/128 */ -#define RCU_AHB_CKSYS_DIV256 CFG0_AHBPSC(14) /*!< AHB prescaler select CK_SYS/256 */ -#define RCU_AHB_CKSYS_DIV512 CFG0_AHBPSC(15) /*!< AHB prescaler select CK_SYS/512 */ - -/* APB1 prescaler selection */ -#define CFG0_APB1PSC(regval) (BITS(10,12) & ((uint32_t)(regval) << 10)) -#define RCU_APB1_CKAHB_DIV1 CFG0_APB1PSC(0) /*!< APB1 prescaler select CK_AHB */ -#define RCU_APB1_CKAHB_DIV2 CFG0_APB1PSC(4) /*!< APB1 prescaler select CK_AHB/2 */ -#define RCU_APB1_CKAHB_DIV4 CFG0_APB1PSC(5) /*!< APB1 prescaler select CK_AHB/4 */ -#define RCU_APB1_CKAHB_DIV8 CFG0_APB1PSC(6) /*!< APB1 prescaler select CK_AHB/8 */ -#define RCU_APB1_CKAHB_DIV16 CFG0_APB1PSC(7) /*!< APB1 prescaler select CK_AHB/16 */ - -/* APB2 prescaler selection */ -#define CFG0_APB2PSC(regval) (BITS(13,15) & ((uint32_t)(regval) << 13)) -#define RCU_APB2_CKAHB_DIV1 CFG0_APB2PSC(0) /*!< APB2 prescaler select CK_AHB */ -#define RCU_APB2_CKAHB_DIV2 CFG0_APB2PSC(4) /*!< APB2 prescaler select CK_AHB/2 */ -#define RCU_APB2_CKAHB_DIV4 CFG0_APB2PSC(5) /*!< APB2 prescaler select CK_AHB/4 */ -#define RCU_APB2_CKAHB_DIV8 CFG0_APB2PSC(6) /*!< APB2 prescaler select CK_AHB/8 */ -#define RCU_APB2_CKAHB_DIV16 CFG0_APB2PSC(7) /*!< APB2 prescaler select CK_AHB/16 */ - -/* RTC clock divider factor from HXTAL clock */ -#define CFG0_RTCDIV(regval) (BITS(16,20) & ((uint32_t)(regval) << 16)) -#define RCU_RTC_HXTAL_NONE CFG0_RTCDIV(0) /*!< no clock for RTC */ -#define RCU_RTC_HXTAL_DIV2 CFG0_RTCDIV(2) /*!< RTCDIV clock select CK_HXTAL/2 */ -#define RCU_RTC_HXTAL_DIV3 CFG0_RTCDIV(3) /*!< RTCDIV clock select CK_HXTAL/3 */ -#define RCU_RTC_HXTAL_DIV4 CFG0_RTCDIV(4) /*!< RTCDIV clock select CK_HXTAL/4 */ -#define RCU_RTC_HXTAL_DIV5 CFG0_RTCDIV(5) /*!< RTCDIV clock select CK_HXTAL/5 */ -#define RCU_RTC_HXTAL_DIV6 CFG0_RTCDIV(6) /*!< RTCDIV clock select CK_HXTAL/6 */ -#define RCU_RTC_HXTAL_DIV7 CFG0_RTCDIV(7) /*!< RTCDIV clock select CK_HXTAL/7 */ -#define RCU_RTC_HXTAL_DIV8 CFG0_RTCDIV(8) /*!< RTCDIV clock select CK_HXTAL/8 */ -#define RCU_RTC_HXTAL_DIV9 CFG0_RTCDIV(9) /*!< RTCDIV clock select CK_HXTAL/9 */ -#define RCU_RTC_HXTAL_DIV10 CFG0_RTCDIV(10) /*!< RTCDIV clock select CK_HXTAL/10 */ -#define RCU_RTC_HXTAL_DIV11 CFG0_RTCDIV(11) /*!< RTCDIV clock select CK_HXTAL/11 */ -#define RCU_RTC_HXTAL_DIV12 CFG0_RTCDIV(12) /*!< RTCDIV clock select CK_HXTAL/12 */ -#define RCU_RTC_HXTAL_DIV13 CFG0_RTCDIV(13) /*!< RTCDIV clock select CK_HXTAL/13 */ -#define RCU_RTC_HXTAL_DIV14 CFG0_RTCDIV(14) /*!< RTCDIV clock select CK_HXTAL/14 */ -#define RCU_RTC_HXTAL_DIV15 CFG0_RTCDIV(15) /*!< RTCDIV clock select CK_HXTAL/15 */ -#define RCU_RTC_HXTAL_DIV16 CFG0_RTCDIV(16) /*!< RTCDIV clock select CK_HXTAL/16 */ -#define RCU_RTC_HXTAL_DIV17 CFG0_RTCDIV(17) /*!< RTCDIV clock select CK_HXTAL/17 */ -#define RCU_RTC_HXTAL_DIV18 CFG0_RTCDIV(18) /*!< RTCDIV clock select CK_HXTAL/18 */ -#define RCU_RTC_HXTAL_DIV19 CFG0_RTCDIV(19) /*!< RTCDIV clock select CK_HXTAL/19 */ -#define RCU_RTC_HXTAL_DIV20 CFG0_RTCDIV(20) /*!< RTCDIV clock select CK_HXTAL/20 */ -#define RCU_RTC_HXTAL_DIV21 CFG0_RTCDIV(21) /*!< RTCDIV clock select CK_HXTAL/21 */ -#define RCU_RTC_HXTAL_DIV22 CFG0_RTCDIV(22) /*!< RTCDIV clock select CK_HXTAL/22 */ -#define RCU_RTC_HXTAL_DIV23 CFG0_RTCDIV(23) /*!< RTCDIV clock select CK_HXTAL/23 */ -#define RCU_RTC_HXTAL_DIV24 CFG0_RTCDIV(24) /*!< RTCDIV clock select CK_HXTAL/24 */ -#define RCU_RTC_HXTAL_DIV25 CFG0_RTCDIV(25) /*!< RTCDIV clock select CK_HXTAL/25 */ -#define RCU_RTC_HXTAL_DIV26 CFG0_RTCDIV(26) /*!< RTCDIV clock select CK_HXTAL/26 */ -#define RCU_RTC_HXTAL_DIV27 CFG0_RTCDIV(27) /*!< RTCDIV clock select CK_HXTAL/27 */ -#define RCU_RTC_HXTAL_DIV28 CFG0_RTCDIV(28) /*!< RTCDIV clock select CK_HXTAL/28 */ -#define RCU_RTC_HXTAL_DIV29 CFG0_RTCDIV(29) /*!< RTCDIV clock select CK_HXTAL/29 */ -#define RCU_RTC_HXTAL_DIV30 CFG0_RTCDIV(30) /*!< RTCDIV clock select CK_HXTAL/30 */ -#define RCU_RTC_HXTAL_DIV31 CFG0_RTCDIV(31) /*!< RTCDIV clock select CK_HXTAL/31 */ - -/* CKOUT0 Clock source selection */ -#define CFG0_CKOUT0SEL(regval) (BITS(21,22) & ((uint32_t)(regval) << 21)) -#define RCU_CKOUT0SRC_IRC16M CFG0_CKOUT0SEL(0) /*!< internal 16M RC oscillator clock selected */ -#define RCU_CKOUT0SRC_LXTAL CFG0_CKOUT0SEL(1) /*!< low speed crystal oscillator clock (LXTAL) selected */ -#define RCU_CKOUT0SRC_HXTAL CFG0_CKOUT0SEL(2) /*!< high speed crystal oscillator clock (HXTAL) selected */ -#define RCU_CKOUT0SRC_PLLP CFG0_CKOUT0SEL(3) /*!< CK_PLLP clock selected */ - -/* I2S Clock source selection */ -#define RCU_I2SSRC_PLLI2S ((uint32_t)0x00000000U) /*!< PLLI2S output clock selected as I2S source clock */ -#define RCU_I2SSRC_I2S_CKIN RCU_CFG0_I2SSEL /*!< external I2S_CKIN pin selected as I2S source clock */ - -/* The CK_OUT0 divider */ -#define CFG0_CKOUT0DIV(regval) (BITS(24,26) & ((uint32_t)(regval) << 24)) -#define RCU_CKOUT0_DIV1 CFG0_CKOUT0DIV(0) /*!< CK_OUT0 is divided by 1 */ -#define RCU_CKOUT0_DIV2 CFG0_CKOUT0DIV(4) /*!< CK_OUT0 is divided by 2 */ -#define RCU_CKOUT0_DIV3 CFG0_CKOUT0DIV(5) /*!< CK_OUT0 is divided by 3 */ -#define RCU_CKOUT0_DIV4 CFG0_CKOUT0DIV(6) /*!< CK_OUT0 is divided by 4 */ -#define RCU_CKOUT0_DIV5 CFG0_CKOUT0DIV(7) /*!< CK_OUT0 is divided by 5 */ - -/* The CK_OUT1 divider */ -#define CFG0_CKOUT1DIV(regval) (BITS(27,29) & ((uint32_t)(regval) << 27)) -#define RCU_CKOUT1_DIV1 CFG0_CKOUT1DIV(0) /*!< CK_OUT1 is divided by 1 */ -#define RCU_CKOUT1_DIV2 CFG0_CKOUT1DIV(4) /*!< CK_OUT1 is divided by 2 */ -#define RCU_CKOUT1_DIV3 CFG0_CKOUT1DIV(5) /*!< CK_OUT1 is divided by 3 */ -#define RCU_CKOUT1_DIV4 CFG0_CKOUT1DIV(6) /*!< CK_OUT1 is divided by 4 */ -#define RCU_CKOUT1_DIV5 CFG0_CKOUT1DIV(7) /*!< CK_OUT1 is divided by 5 */ - -/* CKOUT1 Clock source selection */ -#define CFG0_CKOUT1SEL(regval) (BITS(30,31) & ((uint32_t)(regval) << 30)) -#define RCU_CKOUT1SRC_SYSTEMCLOCK CFG0_CKOUT1SEL(0) /*!< system clock selected */ -#define RCU_CKOUT1SRC_PLLI2SR CFG0_CKOUT1SEL(1) /*!< CK_PLLI2SR clock selected */ -#define RCU_CKOUT1SRC_HXTAL CFG0_CKOUT1SEL(2) /*!< high speed crystal oscillator clock (HXTAL) selected */ -#define RCU_CKOUT1SRC_PLLP CFG0_CKOUT1SEL(3) /*!< CK_PLLP clock selected */ - -/* RCU_CFG1 register bit define */ -/* the divider factor from PLLI2SQ clock */ -#define CFG1_PLLI2SQDIV(regval) (BITS(0,4) & ((uint32_t)(regval) << 0)) -#define RCU_PLLI2SQ_DIV1 CFG1_PLLI2SQDIV(0) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/1 */ -#define RCU_PLLI2SQ_DIV2 CFG1_PLLI2SQDIV(1) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/2 */ -#define RCU_PLLI2SQ_DIV3 CFG1_PLLI2SQDIV(2) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/3 */ -#define RCU_PLLI2SQ_DIV4 CFG1_PLLI2SQDIV(3) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/4 */ -#define RCU_PLLI2SQ_DIV5 CFG1_PLLI2SQDIV(4) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/5 */ -#define RCU_PLLI2SQ_DIV6 CFG1_PLLI2SQDIV(5) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/6 */ -#define RCU_PLLI2SQ_DIV7 CFG1_PLLI2SQDIV(6) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/7 */ -#define RCU_PLLI2SQ_DIV8 CFG1_PLLI2SQDIV(7) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/8 */ -#define RCU_PLLI2SQ_DIV9 CFG1_PLLI2SQDIV(8) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/9 */ -#define RCU_PLLI2SQ_DIV10 CFG1_PLLI2SQDIV(9) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/10 */ -#define RCU_PLLI2SQ_DIV11 CFG1_PLLI2SQDIV(10) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/11 */ -#define RCU_PLLI2SQ_DIV12 CFG1_PLLI2SQDIV(11) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/12 */ -#define RCU_PLLI2SQ_DIV13 CFG1_PLLI2SQDIV(12) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/13 */ -#define RCU_PLLI2SQ_DIV14 CFG1_PLLI2SQDIV(13) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/14 */ -#define RCU_PLLI2SQ_DIV15 CFG1_PLLI2SQDIV(14) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/15 */ -#define RCU_PLLI2SQ_DIV16 CFG1_PLLI2SQDIV(15) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/16 */ -#define RCU_PLLI2SQ_DIV17 CFG1_PLLI2SQDIV(16) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/17 */ -#define RCU_PLLI2SQ_DIV18 CFG1_PLLI2SQDIV(17) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/18 */ -#define RCU_PLLI2SQ_DIV19 CFG1_PLLI2SQDIV(18) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/19 */ -#define RCU_PLLI2SQ_DIV20 CFG1_PLLI2SQDIV(19) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/20 */ -#define RCU_PLLI2SQ_DIV21 CFG1_PLLI2SQDIV(20) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/21 */ -#define RCU_PLLI2SQ_DIV22 CFG1_PLLI2SQDIV(21) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/22 */ -#define RCU_PLLI2SQ_DIV23 CFG1_PLLI2SQDIV(22) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/23 */ -#define RCU_PLLI2SQ_DIV24 CFG1_PLLI2SQDIV(23) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/24 */ -#define RCU_PLLI2SQ_DIV25 CFG1_PLLI2SQDIV(24) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/25 */ -#define RCU_PLLI2SQ_DIV26 CFG1_PLLI2SQDIV(25) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/26 */ -#define RCU_PLLI2SQ_DIV27 CFG1_PLLI2SQDIV(26) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/27 */ -#define RCU_PLLI2SQ_DIV28 CFG1_PLLI2SQDIV(27) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/28 */ -#define RCU_PLLI2SQ_DIV29 CFG1_PLLI2SQDIV(28) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/29 */ -#define RCU_PLLI2SQ_DIV30 CFG1_PLLI2SQDIV(29) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/30 */ -#define RCU_PLLI2SQ_DIV31 CFG1_PLLI2SQDIV(30) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/31 */ -#define RCU_PLLI2SQ_DIV32 CFG1_PLLI2SQDIV(31) /*!< CK_PLLI2SQDIV clock select CK_PLLI2SQ/32 */ - -/* the divider factor from PLLSAIR clock */ -#define CFG1_PLLSAIRDIV(regval) (BITS(16,17) & ((uint32_t)(regval) << 16)) -#define RCU_PLLSAIR_DIV2 CFG1_PLLSAIRDIV(0) /*!< CK_PLLSAIRDIV clock select CK_PLLSAIR/2 */ -#define RCU_PLLSAIR_DIV4 CFG1_PLLSAIRDIV(1) /*!< CK_PLLSAIRDIV clock select CK_PLLSAIR/4 */ -#define RCU_PLLSAIR_DIV8 CFG1_PLLSAIRDIV(2) /*!< CK_PLLSAIRDIV clock select CK_PLLSAIR/8 */ -#define RCU_PLLSAIR_DIV16 CFG1_PLLSAIRDIV(3) /*!< CK_PLLSAIRDIV clock select CK_PLLSAIR/16 */ - -/* TIMER clock selection */ -#define RCU_TIMER_PSC_MUL2 ~RCU_CFG1_TIMERSEL /*!< if APB1PSC/APB2PSC in RCU_CFG0 register is 0b0xx(CK_APBx = CK_AHB) - or 0b100(CK_APBx = CK_AHB/2), the TIMER clock is equal to CK_AHB(CK_TIMERx = CK_AHB). - or else, the TIMER clock is twice the corresponding APB clock (TIMER in APB1 domain: CK_TIMERx = 2 x CK_APB1; - TIMER in APB2 domain: CK_TIMERx = 2 x CK_APB2) */ -#define RCU_TIMER_PSC_MUL4 RCU_CFG1_TIMERSEL /*!< if APB1PSC/APB2PSC in RCU_CFG0 register is 0b0xx(CK_APBx = CK_AHB), - 0b100(CK_APBx = CK_AHB/2), or 0b101(CK_APBx = CK_AHB/4), the TIMER clock is equal to CK_AHB(CK_TIMERx = CK_AHB). - or else, the TIMER clock is four timers the corresponding APB clock (TIMER in APB1 domain: CK_TIMERx = 4 x CK_APB1; - TIMER in APB2 domain: CK_TIMERx = 4 x CK_APB2) */ - -/* RCU_PLLSSCTL register bit define */ -/* PLL spread spectrum modulation type select */ -#define RCU_SS_TYPE_CENTER ((uint32_t)0x00000000U) /*!< center type is selected */ -#define RCU_SS_TYPE_DOWN RCU_PLLSSCTL_SS_TYPE /*!< down type is selected */ - -/* RCU_PLL register bit define */ -/* The PLL VCO source clock prescaler */ -#define RCU_PLLPSC_DIV_MIN ((uint32_t)2U) /*!< PLLPSC_DIV min value */ -#define RCU_PLLPSC_DIV_MAX ((uint32_t)63U) /*!< PLLPSC_DIV max value */ - -/* The PLL VCO clock multi factor */ -#define RCU_PLLN_MUL_MIN ((uint32_t)64U) /*!< PLLN_MUL min value */ -#define RCU_PLLN_MUL_MAX ((uint32_t)500U) /*!< PLLN_MUL max value */ -#define RCU_SS_MODULATION_CENTER_INC ((uint32_t)5U) /*!< minimum factor of PLLN in center mode */ -#define RCU_SS_MODULATION_DOWN_INC ((uint32_t)7U) /*!< minimum factor of PLLN in down mode */ - -/* The PLLP output frequency division factor from PLL VCO clock */ -#define RCU_PLLP_DIV_MIN ((uint32_t)2U) /*!< PLLP_DIV min value */ -#define RCU_PLLP_DIV_MAX ((uint32_t)8U) /*!< PLLP_DIV max value */ - -/* PLL Clock Source Selection */ -#define RCU_PLLSRC_IRC16M ((uint32_t)0x00000000U) /*!< IRC16M clock selected as source clock of PLL, PLLSAI, PLLI2S */ -#define RCU_PLLSRC_HXTAL RCU_PLL_PLLSEL /*!< HXTAL clock selected as source clock of PLL, PLLSAI, PLLI2S */ - -/* The PLL Q output frequency division factor from PLL VCO clock */ -#define RCU_PLLQ_DIV_MIN ((uint32_t)2U) /*!< PLLQ_DIV min value */ -#define RCU_PLLQ_DIV_MAX ((uint32_t)15U) /*!< PLLQ_DIV max value */ - -#define CHECK_PLL_PSC_VALID(val) (((val) >= RCU_PLLPSC_DIV_MIN)&&((val) <= RCU_PLLPSC_DIV_MAX)) -#define CHECK_PLL_N_VALID(val, inc) (((val) >= (RCU_PLLN_MUL_MIN + (inc)))&&((val) <= RCU_PLLN_MUL_MAX)) -#define CHECK_PLL_P_VALID(val) (((val) == 2U) || ((val) == 4U) || ((val) == 6U) || ((val) == 8U)) -#define CHECK_PLL_Q_VALID(val) (((val) >= RCU_PLLQ_DIV_MIN)&&((val) <= RCU_PLLQ_DIV_MAX)) - -/* RCU_BDCTL register bit define */ -/* LXTAL drive capability */ -#define RCU_LXTALDRI_LOWER_DRIVE ((uint32_t)0x00000000) /*!< LXTAL drive capability is selected lower */ -#define RCU_LXTALDRI_HIGHER_DRIVE RCU_BDCTL_LXTALDRI /*!< LXTAL drive capability is selected higher */ - -/* RTC clock entry selection */ -#define BDCTL_RTCSRC(regval) (BITS(8,9) & ((uint32_t)(regval) << 8)) -#define RCU_RTCSRC_NONE BDCTL_RTCSRC(0) /*!< no clock selected */ -#define RCU_RTCSRC_LXTAL BDCTL_RTCSRC(1) /*!< RTC source clock select LXTAL */ -#define RCU_RTCSRC_IRC32K BDCTL_RTCSRC(2) /*!< RTC source clock select IRC32K */ -#define RCU_RTCSRC_HXTAL_DIV_RTCDIV BDCTL_RTCSRC(3) /*!< RTC source clock select HXTAL/RTCDIV */ - -/* RCU_PLLI2S register bit define */ -/* The PLLI2S VCO clock multi factor */ -#define RCU_PLLI2SN_MUL_MIN 50U -#define RCU_PLLI2SN_MUL_MAX 500U - -/* The PLLI2S Q output frequency division factor from PLLI2S VCO clock */ -#define RCU_PLLI2SQ_DIV_MIN 2U -#define RCU_PLLI2SQ_DIV_MAX 15U - -/* The PLLI2S R output frequency division factor from PLLI2S VCO clock */ -#define RCU_PLLI2SR_DIV_MIN 2U -#define RCU_PLLI2SR_DIV_MAX 7U - -/* RCU_PLLSAI register bit define */ -/* The PLLSAI VCO clock multi factor */ -#define RCU_PLLSAIN_MUL_MIN 50U -#define RCU_PLLSAIN_MUL_MAX 500U - -/* The PLLSAI P output frequency division factor from PLLSAI VCO clock */ -#define RCU_PLLSAIP_DIV_MIN 2U -#define RCU_PLLSAIP_DIV_MAX 8U - -/* The PLLSAI Q output frequency division factor from PLLSAI VCO clock */ -#define RCU_PLLSAIQ_DIV_MIN 2U -#define RCU_PLLSAIQ_DIV_MAX 15U - -/* The PLLSAI R output frequency division factor from PLLSAI VCO clock */ -#define RCU_PLLSAIR_DIV_MIN 2U -#define RCU_PLLSAIR_DIV_MAX 7U - -#define CHECK_PLLI2S_PSC_VALID(val) (((val) >= RCU_PLLI2SPSC_DIV_MIN)&&((val) <= RCU_PLLI2SPSC_DIV_MAX)) -#define CHECK_PLLI2S_N_VALID(val) (((val) >= RCU_PLLI2SN_MUL_MIN)&&((val) <= RCU_PLLI2SN_MUL_MAX)) -#define CHECK_PLLI2S_Q_VALID(val) (((val) >= RCU_PLLI2SQ_DIV_MIN)&&((val) <= RCU_PLLI2SQ_DIV_MAX)) -#define CHECK_PLLI2S_R_VALID(val) (((val) >= RCU_PLLI2SR_DIV_MIN)&&((val) <= RCU_PLLI2SR_DIV_MAX)) - -#define CHECK_PLLSAI_N_VALID(val) (((val) >= (RCU_PLLSAIN_MUL_MIN))&&((val) <= RCU_PLLSAIN_MUL_MAX)) -#define CHECK_PLLSAI_P_VALID(val) (((val) == 2U) || ((val) == 4U) || ((val) == 6U) || ((val) == 8U)) -#define CHECK_PLLSAI_Q_VALID(val) (((val) >= RCU_PLLSAIQ_DIV_MIN)&&((val) <= RCU_PLLSAIQ_DIV_MAX)) -#define CHECK_PLLSAI_R_VALID(val) (((val) >= RCU_PLLSAIR_DIV_MIN)&&((val) <= RCU_PLLSAIR_DIV_MAX)) - -/* RCU_ADDCTL register bit define */ -/* 48MHz clock selection */ -#define RCU_CK48MSRC_PLL48M ((uint32_t)0x00000000U) /*!< CK48M source clock select PLL48M */ -#define RCU_CK48MSRC_IRC48M RCU_ADDCTL_CK48MSEL /*!< CK48M source clock select IRC48M */ - -/* PLL48M clock selection */ -#define RCU_PLL48MSRC_PLLQ ((uint32_t)0x00000000U) /*!< PLL48M source clock select PLLQ */ -#define RCU_PLL48MSRC_PLLSAIP RCU_ADDCTL_PLL48MSEL /*!< PLL48M source clock select PLLSAIP */ - -/* Deep-sleep mode voltage */ -#define DSV_DSLPVS(regval) (BITS(0,2) & ((uint32_t)(regval) << 0)) -#define RCU_DEEPSLEEP_V_1_2 DSV_DSLPVS(0) /*!< core voltage is 1.2V in deep-sleep mode */ -#define RCU_DEEPSLEEP_V_1_1 DSV_DSLPVS(1) /*!< core voltage is 1.1V in deep-sleep mode */ -#define RCU_DEEPSLEEP_V_1_0 DSV_DSLPVS(2) /*!< core voltage is 1.0V in deep-sleep mode */ -#define RCU_DEEPSLEEP_V_0_9 DSV_DSLPVS(3) /*!< core voltage is 0.9V in deep-sleep mode */ - - -/* function declarations */ -/* deinitialize the RCU */ -void rcu_deinit(void); -/* enable the peripherals clock */ -void rcu_periph_clock_enable(rcu_periph_enum periph); -/* disable the peripherals clock */ -void rcu_periph_clock_disable(rcu_periph_enum periph); -/* enable the peripherals clock when sleep mode */ -void rcu_periph_clock_sleep_enable(rcu_periph_sleep_enum periph); -/* disable the peripherals clock when sleep mode */ -void rcu_periph_clock_sleep_disable(rcu_periph_sleep_enum periph); -/* reset the peripherals */ -void rcu_periph_reset_enable(rcu_periph_reset_enum periph_reset); -/* disable reset the peripheral */ -void rcu_periph_reset_disable(rcu_periph_reset_enum periph_reset); -/* reset the BKP */ -void rcu_bkp_reset_enable(void); -/* disable the BKP reset */ -void rcu_bkp_reset_disable(void); - -/* configure the system clock source */ -void rcu_system_clock_source_config(uint32_t ck_sys); -/* get the system clock source */ -uint32_t rcu_system_clock_source_get(void); -/* configure the AHB prescaler selection */ -void rcu_ahb_clock_config(uint32_t ck_ahb); -/* configure the APB1 prescaler selection */ -void rcu_apb1_clock_config(uint32_t ck_apb1); -/* configure the APB2 prescaler selection */ -void rcu_apb2_clock_config(uint32_t ck_apb2); -/* configure the CK_OUT0 clock source and divider */ -void rcu_ckout0_config(uint32_t ckout0_src, uint32_t ckout0_div); -/* configure the CK_OUT1 clock source and divider */ -void rcu_ckout1_config(uint32_t ckout1_src, uint32_t ckout1_div); -/* configure the PLL clock source selection and PLL multiply factor */ -ErrStatus rcu_pll_config(uint32_t pll_src, uint32_t pll_psc, uint32_t pll_n, uint32_t pll_p, uint32_t pll_q); -/* configure the PLLI2S clock */ -ErrStatus rcu_plli2s_config(uint32_t plli2s_n, uint32_t plli2s_r); -/* configure the PLLSAI clock */ -ErrStatus rcu_pllsai_config(uint32_t pllsai_n, uint32_t pllsai_p, uint32_t pllsai_r); -/* configure the RTC clock source selection */ -void rcu_rtc_clock_config(uint32_t rtc_clock_source); -/* cconfigure the frequency division of RTC clock when HXTAL was selected as its clock source */ -void rcu_rtc_div_config(uint32_t rtc_div); -/* configure the I2S clock source selection */ -void rcu_i2s_clock_config(uint32_t i2s_clock_source); -/* configure the CK48M clock selection */ -void rcu_ck48m_clock_config(uint32_t ck48m_clock_source); -/* configure the PLL48M clock selection */ -void rcu_pll48m_clock_config(uint32_t pll48m_clock_source); -/* configure the TIMER clock prescaler selection */ -void rcu_timer_clock_prescaler_config(uint32_t timer_clock_prescaler); -/* configure the TLI clock division selection */ -void rcu_tli_clock_div_config(uint32_t pllsai_r_div); - - -/* get the clock stabilization and periphral reset flags */ -FlagStatus rcu_flag_get(rcu_flag_enum flag); -/* clear the reset flag */ -void rcu_all_reset_flag_clear(void); -/* get the clock stabilization interrupt and ckm flags */ -FlagStatus rcu_interrupt_flag_get(rcu_int_flag_enum int_flag); -/* clear the interrupt flags */ -void rcu_interrupt_flag_clear(rcu_int_flag_clear_enum int_flag); -/* enable the stabilization interrupt */ -void rcu_interrupt_enable(rcu_int_enum interrupt); -/* disable the stabilization interrupt */ -void rcu_interrupt_disable(rcu_int_enum interrupt); - -/* configure the LXTAL drive capability */ -void rcu_lxtal_drive_capability_config(uint32_t lxtal_dricap); -/* wait for oscillator stabilization flags is SET or oscillator startup is timeout */ -ErrStatus rcu_osci_stab_wait(rcu_osci_type_enum osci); -/* turn on the oscillator */ -void rcu_osci_on(rcu_osci_type_enum osci); -/* turn off the oscillator */ -void rcu_osci_off(rcu_osci_type_enum osci); -/* enable the oscillator bypass mode, HXTALEN or LXTALEN must be reset before it */ -void rcu_osci_bypass_mode_enable(rcu_osci_type_enum osci); -/* disable the oscillator bypass mode, HXTALEN or LXTALEN must be reset before it */ -void rcu_osci_bypass_mode_disable(rcu_osci_type_enum osci); -/* enable the HXTAL clock monitor */ -void rcu_hxtal_clock_monitor_enable(void); -/* disable the HXTAL clock monitor */ -void rcu_hxtal_clock_monitor_disable(void); - -/* set the IRC16M adjust value */ -void rcu_irc16m_adjust_value_set(uint32_t irc16m_adjval); -/* configure the spread spectrum modulation for the main PLL clock */ -void rcu_spread_spectrum_config(uint32_t spread_spectrum_type, uint32_t modstep, uint32_t modcnt); -/* enable the spread spectrum modulation for the main PLL clock */ -void rcu_spread_spectrum_enable(void); -/* disable the spread spectrum modulation for the main PLL clock */ -void rcu_spread_spectrum_disable(void); -/* unlock the voltage key */ -void rcu_voltage_key_unlock(void); -/* set the deep sleep mode voltage */ -void rcu_deepsleep_voltage_set(uint32_t dsvol); - -/* get the system clock, bus and peripheral clock frequency */ -uint32_t rcu_clock_freq_get(rcu_clock_freq_enum clock); - -#endif /* GD32F4XX_RCU_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_rtc.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_rtc.h deleted file mode 100644 index 7da693faf4..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_rtc.h +++ /dev/null @@ -1,640 +0,0 @@ -/*! - \file gd32f4xx_rtc.c - \brief definitions for the RTC - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - - -#ifndef GD32F4XX_RTC_H -#define GD32F4XX_RTC_H - -#include "gd32f4xx.h" - -/* RTC definitions */ -#define RTC RTC_BASE - -/* registers definitions */ -#define RTC_TIME REG32((RTC) + 0x00U) /*!< RTC time of day register */ -#define RTC_DATE REG32((RTC) + 0x04U) /*!< RTC date register */ -#define RTC_CTL REG32((RTC) + 0x08U) /*!< RTC control register */ -#define RTC_STAT REG32((RTC) + 0x0CU) /*!< RTC status register */ -#define RTC_PSC REG32((RTC) + 0x10U) /*!< RTC time prescaler register */ -#define RTC_WUT REG32((RTC) + 0x14U) /*!< RTC wakeup timer regiser */ -#define RTC_COSC REG32((RTC) + 0x18U) /*!< RTC coarse calibration register */ -#define RTC_ALRM0TD REG32((RTC) + 0x1CU) /*!< RTC alarm 0 time and date register */ -#define RTC_ALRM1TD REG32((RTC) + 0x20U) /*!< RTC alarm 1 time and date register */ -#define RTC_WPK REG32((RTC) + 0x24U) /*!< RTC write protection key register */ -#define RTC_SS REG32((RTC) + 0x28U) /*!< RTC sub second register */ -#define RTC_SHIFTCTL REG32((RTC) + 0x2CU) /*!< RTC shift function control register */ -#define RTC_TTS REG32((RTC) + 0x30U) /*!< RTC time of timestamp register */ -#define RTC_DTS REG32((RTC) + 0x34U) /*!< RTC date of timestamp register */ -#define RTC_SSTS REG32((RTC) + 0x38U) /*!< RTC sub second of timestamp register */ -#define RTC_HRFC REG32((RTC) + 0x3CU) /*!< RTC high resolution frequency compensation registor */ -#define RTC_TAMP REG32((RTC) + 0x40U) /*!< RTC tamper register */ -#define RTC_ALRM0SS REG32((RTC) + 0x44U) /*!< RTC alarm 0 sub second register */ -#define RTC_ALRM1SS REG32((RTC) + 0x48U) /*!< RTC alarm 1 sub second register */ -#define RTC_BKP0 REG32((RTC) + 0x50U) /*!< RTC backup register */ -#define RTC_BKP1 REG32((RTC) + 0x54U) /*!< RTC backup register */ -#define RTC_BKP2 REG32((RTC) + 0x58U) /*!< RTC backup register */ -#define RTC_BKP3 REG32((RTC) + 0x5CU) /*!< RTC backup register */ -#define RTC_BKP4 REG32((RTC) + 0x60U) /*!< RTC backup register */ -#define RTC_BKP5 REG32((RTC) + 0x64U) /*!< RTC backup register */ -#define RTC_BKP6 REG32((RTC) + 0x68U) /*!< RTC backup register */ -#define RTC_BKP7 REG32((RTC) + 0x6CU) /*!< RTC backup register */ -#define RTC_BKP8 REG32((RTC) + 0x70U) /*!< RTC backup register */ -#define RTC_BKP9 REG32((RTC) + 0x74U) /*!< RTC backup register */ -#define RTC_BKP10 REG32((RTC) + 0x78U) /*!< RTC backup register */ -#define RTC_BKP11 REG32((RTC) + 0x7CU) /*!< RTC backup register */ -#define RTC_BKP12 REG32((RTC) + 0x80U) /*!< RTC backup register */ -#define RTC_BKP13 REG32((RTC) + 0x84U) /*!< RTC backup register */ -#define RTC_BKP14 REG32((RTC) + 0x88U) /*!< RTC backup register */ -#define RTC_BKP15 REG32((RTC) + 0x8CU) /*!< RTC backup register */ -#define RTC_BKP16 REG32((RTC) + 0x90U) /*!< RTC backup register */ -#define RTC_BKP17 REG32((RTC) + 0x94U) /*!< RTC backup register */ -#define RTC_BKP18 REG32((RTC) + 0x98U) /*!< RTC backup register */ -#define RTC_BKP19 REG32((RTC) + 0x9CU) /*!< RTC backup register */ - -/* bits definitions */ -/* RTC_TIME */ -#define RTC_TIME_SCU BITS(0,3) /*!< second units in BCD code */ -#define RTC_TIME_SCT BITS(4,6) /*!< second tens in BCD code */ -#define RTC_TIME_MNU BITS(8,11) /*!< minute units in BCD code */ -#define RTC_TIME_MNT BITS(12,14) /*!< minute tens in BCD code */ -#define RTC_TIME_HRU BITS(16,19) /*!< hour units in BCD code */ -#define RTC_TIME_HRT BITS(20,21) /*!< hour tens in BCD code */ -#define RTC_TIME_PM BIT(22) /*!< AM/PM notation */ - -/* RTC_DATE */ -#define RTC_DATE_DAYU BITS(0,3) /*!< date units in BCD code */ -#define RTC_DATE_DAYT BITS(4,5) /*!< date tens in BCD code */ -#define RTC_DATE_MONU BITS(8,11) /*!< month units in BCD code */ -#define RTC_DATE_MONT BIT(12) /*!< month tens in BCD code */ -#define RTC_DATE_DOW BITS(13,15) /*!< day of week units */ -#define RTC_DATE_YRU BITS(16,19) /*!< year units in BCD code */ -#define RTC_DATE_YRT BITS(20,23) /*!< year tens in BCD code */ - -/* RTC_CTL */ -#define RTC_CTL_WTCS BITS(0,2) /*!< auto wakeup timer clock selection */ -#define RTC_CTL_TSEG BIT(3) /*!< valid event edge of time-stamp */ -#define RTC_CTL_REFEN BIT(4) /*!< reference clock detection function enable */ -#define RTC_CTL_BPSHAD BIT(5) /*!< shadow registers bypass control */ -#define RTC_CTL_CS BIT(6) /*!< display format of clock system */ -#define RTC_CTL_CCEN BIT(7) /*!< coarse calibration function enable */ -#define RTC_CTL_ALRM0EN BIT(8) /*!< alarm0 function enable */ -#define RTC_CTL_ALRM1EN BIT(9) /*!< alarm1 function enable */ -#define RTC_CTL_WTEN BIT(10) /*!< auto wakeup timer function enable */ -#define RTC_CTL_TSEN BIT(11) /*!< time-stamp function enable */ -#define RTC_CTL_ALRM0IE BIT(12) /*!< RTC alarm0 interrupt enable */ -#define RTC_CTL_ALRM1IE BIT(13) /*!< RTC alarm1 interrupt enable */ -#define RTC_CTL_WTIE BIT(14) /*!< auto wakeup timer interrupt enable */ -#define RTC_CTL_TSIE BIT(15) /*!< time-stamp interrupt enable */ -#define RTC_CTL_A1H BIT(16) /*!< add 1 hour(summer time change) */ -#define RTC_CTL_S1H BIT(17) /*!< subtract 1 hour(winter time change) */ -#define RTC_CTL_DSM BIT(18) /*!< daylight saving mark */ -#define RTC_CTL_COS BIT(19) /*!< calibration output selection */ -#define RTC_CTL_OPOL BIT(20) /*!< output polarity */ -#define RTC_CTL_OS BITS(21,22) /*!< output selection */ -#define RTC_CTL_COEN BIT(23) /*!< calibration output enable */ - -/* RTC_STAT */ -#define RTC_STAT_ALRM0WF BIT(0) /*!< alarm0 configuration can be write flag */ -#define RTC_STAT_ALRM1WF BIT(1) /*!< alarm1 configuration can be write flag */ -#define RTC_STAT_WTWF BIT(2) /*!< wakeup timer can be write flag */ -#define RTC_STAT_SOPF BIT(3) /*!< shift function operation pending flag */ -#define RTC_STAT_YCM BIT(4) /*!< year configuration mark status flag */ -#define RTC_STAT_RSYNF BIT(5) /*!< register synchronization flag */ -#define RTC_STAT_INITF BIT(6) /*!< initialization state flag */ -#define RTC_STAT_INITM BIT(7) /*!< enter initialization mode */ -#define RTC_STAT_ALRM0F BIT(8) /*!< alarm0 occurs flag */ -#define RTC_STAT_ALRM1F BIT(9) /*!< alarm1 occurs flag */ -#define RTC_STAT_WTF BIT(10) /*!< wakeup timer occurs flag */ -#define RTC_STAT_TSF BIT(11) /*!< time-stamp flag */ -#define RTC_STAT_TSOVRF BIT(12) /*!< time-stamp overflow flag */ -#define RTC_STAT_TP0F BIT(13) /*!< RTC tamper 0 detected flag */ -#define RTC_STAT_TP1F BIT(14) /*!< RTC tamper 1 detected flag */ -#define RTC_STAT_SCPF BIT(16) /*!< smooth calibration pending flag */ - -/* RTC_PSC */ -#define RTC_PSC_FACTOR_S BITS(0,14) /*!< synchronous prescaler factor */ -#define RTC_PSC_FACTOR_A BITS(16,22) /*!< asynchronous prescaler factor */ - -/* RTC_WUT */ -#define RTC_WUT_WTRV BITS(0,15) /*!< auto wakeup timer reloads value */ - -/* RTC_COSC */ -#define RTC_COSC_COSS BITS(0,4) /*!< coarse calibration step */ -#define RTC_COSC_COSD BIT(7) /*!< coarse calibration direction */ - -/* RTC_ALRMxTD */ -#define RTC_ALRMXTD_SCU BITS(0,3) /*!< second units in BCD code */ -#define RTC_ALRMXTD_SCT BITS(4,6) /*!< second tens in BCD code */ -#define RTC_ALRMXTD_MSKS BIT(7) /*!< alarm second mask bit */ -#define RTC_ALRMXTD_MNU BITS(8,11) /*!< minutes units in BCD code */ -#define RTC_ALRMXTD_MNT BITS(12,14) /*!< minutes tens in BCD code */ -#define RTC_ALRMXTD_MSKM BIT(15) /*!< alarm minutes mask bit */ -#define RTC_ALRMXTD_HRU BITS(16,19) /*!< hour units in BCD code */ -#define RTC_ALRMXTD_HRT BITS(20,21) /*!< hour units in BCD code */ -#define RTC_ALRMXTD_PM BIT(22) /*!< AM/PM flag */ -#define RTC_ALRMXTD_MSKH BIT(23) /*!< alarm hour mask bit */ -#define RTC_ALRMXTD_DAYU BITS(24,27) /*!< date units or week day in BCD code */ -#define RTC_ALRMXTD_DAYT BITS(28,29) /*!< date tens in BCD code */ -#define RTC_ALRMXTD_DOWS BIT(30) /*!< day of week selection */ -#define RTC_ALRMXTD_MSKD BIT(31) /*!< alarm date mask bit */ - -/* RTC_WPK */ -#define RTC_WPK_WPK BITS(0,7) /*!< key for write protection */ - -/* RTC_SS */ -#define RTC_SS_SSC BITS(0,15) /*!< sub second value */ - -/* RTC_SHIFTCTL */ -#define RTC_SHIFTCTL_SFS BITS(0,14) /*!< subtract a fraction of a second */ -#define RTC_SHIFTCTL_A1S BIT(31) /*!< one second add */ - -/* RTC_TTS */ -#define RTC_TTS_SCU BITS(0,3) /*!< second units in BCD code */ -#define RTC_TTS_SCT BITS(4,6) /*!< second units in BCD code */ -#define RTC_TTS_MNU BITS(8,11) /*!< minute units in BCD code */ -#define RTC_TTS_MNT BITS(12,14) /*!< minute tens in BCD code */ -#define RTC_TTS_HRU BITS(16,19) /*!< hour units in BCD code */ -#define RTC_TTS_HRT BITS(20,21) /*!< hour tens in BCD code */ -#define RTC_TTS_PM BIT(22) /*!< AM/PM notation */ - -/* RTC_DTS */ -#define RTC_DTS_DAYU BITS(0,3) /*!< date units in BCD code */ -#define RTC_DTS_DAYT BITS(4,5) /*!< date tens in BCD code */ -#define RTC_DTS_MONU BITS(8,11) /*!< month units in BCD code */ -#define RTC_DTS_MONT BIT(12) /*!< month tens in BCD code */ -#define RTC_DTS_DOW BITS(13,15) /*!< day of week units */ - -/* RTC_SSTS */ -#define RTC_SSTS_SSC BITS(0,15) /*!< timestamp sub second units */ - -/* RTC_HRFC */ -#define RTC_HRFC_CMSK BITS(0,8) /*!< calibration mask number */ -#define RTC_HRFC_CWND16 BIT(13) /*!< calibration window select 16 seconds */ -#define RTC_HRFC_CWND8 BIT(14) /*!< calibration window select 16 seconds */ -#define RTC_HRFC_FREQI BIT(15) /*!< increase RTC frequency by 488.5ppm */ - -/* RTC_TAMP */ -#define RTC_TAMP_TP0EN BIT(0) /*!< tamper 0 detection enable */ -#define RTC_TAMP_TP0EG BIT(1) /*!< tamper 0 event trigger edge for RTC tamp 0 input */ -#define RTC_TAMP_TPIE BIT(2) /*!< tamper detection interrupt enable */ -#define RTC_TAMP_TP1EN BIT(3) /*!< tamper 1 detection enable */ -#define RTC_TAMP_TP1EG BIT(4) /*!< Tamper 1 event trigger edge for RTC tamp 1 input */ -#define RTC_TAMP_TPTS BIT(7) /*!< make tamper function used for timestamp function */ -#define RTC_TAMP_FREQ BITS(8,10) /*!< sample frequency of tamper event detection */ -#define RTC_TAMP_FLT BITS(11,12) /*!< RTC tamp x filter count setting */ -#define RTC_TAMP_PRCH BITS(13,14) /*!< precharge duration time of RTC tamp x */ -#define RTC_TAMP_DISPU BIT(15) /*!< RTC tamp x pull up disable bit */ -#define RTC_TAMP_TP0SEL BIT(16) /*!< Tamper 0 function input mapping selection */ -#define RTC_TAMP_TSSEL BIT(17) /*!< Timestamp input mapping selection */ -#define RTC_TAMP_AOT BIT(18) /*!< RTC_ALARM output Type */ - -/* RTC_ALRM0SS */ -#define RTC_ALRM0SS_SSC BITS(0,14) /*!< alarm0 sub second value */ -#define RTC_ALRM0SS_MASKSSC BITS(24,27) /*!< mask control bit of SS */ - -/* RTC_ALRM1SS */ -#define RTC_ALRM1SS_SSC BITS(0,14) /*!< alarm1 sub second value */ -#define RTC_ALRM1SS_MASKSSC BITS(24,27) /*!< mask control bit of SS */ - -/* constants definitions */ -/* structure for initialization of the RTC */ -typedef struct -{ - uint8_t year; /*!< RTC year value: 0x0 - 0x99(BCD format) */ - uint8_t month; /*!< RTC month value */ - uint8_t date; /*!< RTC date value: 0x1 - 0x31(BCD format) */ - uint8_t day_of_week; /*!< RTC weekday value */ - uint8_t hour; /*!< RTC hour value */ - uint8_t minute; /*!< RTC minute value: 0x0 - 0x59(BCD format) */ - uint8_t second; /*!< RTC second value: 0x0 - 0x59(BCD format) */ - uint16_t factor_asyn; /*!< RTC asynchronous prescaler value: 0x0 - 0x7F */ - uint16_t factor_syn; /*!< RTC synchronous prescaler value: 0x0 - 0x7FFF */ - uint32_t am_pm; /*!< RTC AM/PM value */ - uint32_t display_format; /*!< RTC time notation */ -}rtc_parameter_struct; - -/* structure for RTC alarm configuration */ -typedef struct -{ - uint32_t alarm_mask; /*!< RTC alarm mask */ - uint32_t weekday_or_date; /*!< specify RTC alarm is on date or weekday */ - uint8_t alarm_day; /*!< RTC alarm date or weekday value*/ - uint8_t alarm_hour; /*!< RTC alarm hour value */ - uint8_t alarm_minute; /*!< RTC alarm minute value: 0x0 - 0x59(BCD format) */ - uint8_t alarm_second; /*!< RTC alarm second value: 0x0 - 0x59(BCD format) */ - uint32_t am_pm; /*!< RTC alarm AM/PM value */ -}rtc_alarm_struct; - -/* structure for RTC time-stamp configuration */ -typedef struct -{ - uint8_t timestamp_month; /*!< RTC time-stamp month value */ - uint8_t timestamp_date; /*!< RTC time-stamp date value: 0x1 - 0x31(BCD format) */ - uint8_t timestamp_day; /*!< RTC time-stamp weekday value */ - uint8_t timestamp_hour; /*!< RTC time-stamp hour value */ - uint8_t timestamp_minute; /*!< RTC time-stamp minute value: 0x0 - 0x59(BCD format) */ - uint8_t timestamp_second; /*!< RTC time-stamp second value: 0x0 - 0x59(BCD format) */ - uint32_t am_pm; /*!< RTC time-stamp AM/PM value */ -}rtc_timestamp_struct; - -/* structure for RTC tamper configuration */ -typedef struct -{ - uint32_t tamper_source; /*!< RTC tamper source */ - uint32_t tamper_trigger; /*!< RTC tamper trigger */ - uint32_t tamper_filter; /*!< RTC tamper consecutive samples needed during a voltage level detection */ - uint32_t tamper_sample_frequency; /*!< RTC tamper sampling frequency during a voltage level detection */ - ControlStatus tamper_precharge_enable; /*!< RTC tamper precharge feature during a voltage level detection */ - uint32_t tamper_precharge_time; /*!< RTC tamper precharge duration if precharge feature is enabled */ - ControlStatus tamper_with_timestamp; /*!< RTC tamper time-stamp feature */ -}rtc_tamper_struct; - -/* time register value */ -#define TIME_SC(regval) (BITS(0,6) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_TIME_SC bit field */ -#define GET_TIME_SC(regval) GET_BITS((regval),0,6) /*!< get value of RTC_TIME_SC bit field */ - -#define TIME_MN(regval) (BITS(8,14) & ((uint32_t)(regval) << 8)) /*!< write value to RTC_TIME_MN bit field */ -#define GET_TIME_MN(regval) GET_BITS((regval),8,14) /*!< get value of RTC_TIME_MN bit field */ - -#define TIME_HR(regval) (BITS(16,21) & ((uint32_t)(regval) << 16)) /*!< write value to RTC_TIME_HR bit field */ -#define GET_TIME_HR(regval) GET_BITS((regval),16,21) /*!< get value of RTC_TIME_HR bit field */ - -#define RTC_AM ((uint32_t)0x00000000U) /*!< AM format */ -#define RTC_PM RTC_TIME_PM /*!< PM format */ - -/* date register value */ -#define DATE_DAY(regval) (BITS(0,5) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_DATE_DAY bit field */ -#define GET_DATE_DAY(regval) GET_BITS((regval),0,5) /*!< get value of RTC_DATE_DAY bit field */ - -#define DATE_MON(regval) (BITS(8,12) & ((uint32_t)(regval) << 8)) /*!< write value to RTC_DATE_MON bit field */ -#define GET_DATE_MON(regval) GET_BITS((regval),8,12) /*!< get value of RTC_DATE_MON bit field */ -#define RTC_JAN ((uint8_t)0x01U) /*!< janurary */ -#define RTC_FEB ((uint8_t)0x02U) /*!< february */ -#define RTC_MAR ((uint8_t)0x03U) /*!< march */ -#define RTC_APR ((uint8_t)0x04U) /*!< april */ -#define RTC_MAY ((uint8_t)0x05U) /*!< may */ -#define RTC_JUN ((uint8_t)0x06U) /*!< june */ -#define RTC_JUL ((uint8_t)0x07U) /*!< july */ -#define RTC_AUG ((uint8_t)0x08U) /*!< august */ -#define RTC_SEP ((uint8_t)0x09U) /*!< september */ -#define RTC_OCT ((uint8_t)0x10U) /*!< october */ -#define RTC_NOV ((uint8_t)0x11U) /*!< november */ -#define RTC_DEC ((uint8_t)0x12U) /*!< december */ - -#define DATE_DOW(regval) (BITS(13,15) & ((uint32_t)(regval) << 13)) /*!< write value to RTC_DATE_DOW bit field */ -#define GET_DATE_DOW(regval) GET_BITS((uint32_t)(regval),13,15) /*!< get value of RTC_DATE_DOW bit field */ -#define RTC_MONDAY ((uint8_t)0x01) /*!< monday */ -#define RTC_TUESDAY ((uint8_t)0x02) /*!< tuesday */ -#define RTC_WEDSDAY ((uint8_t)0x03) /*!< wednesday */ -#define RTC_THURSDAY ((uint8_t)0x04) /*!< thursday */ -#define RTC_FRIDAY ((uint8_t)0x05) /*!< friday */ -#define RTC_SATURDAY ((uint8_t)0x06) /*!< saturday */ -#define RTC_SUNDAY ((uint8_t)0x07) /*!< sunday */ - -#define DATE_YR(regval) (BITS(16,23) & ((uint32_t)(regval) << 16)) /*!< write value to RTC_DATE_YR bit field */ -#define GET_DATE_YR(regval) GET_BITS((regval),16,23) /*!< get value of RTC_DATE_YR bit field */ - -/* ctl register value */ -#define CTL_OS(regval) (BITS(21,22) & ((uint32_t)(regval) << 21)) /*!< write value to RTC_CTL_OS bit field */ -#define RTC_OS_DISABLE CTL_OS(0) /*!< disable output RTC_ALARM */ -#define RTC_OS_ALARM0 CTL_OS(1) /*!< enable alarm0 flag output */ -#define RTC_OS_ALARM1 CTL_OS(2) /*!< enable alarm1 flag output */ -#define RTC_OS_WAKEUP CTL_OS(3) /*!< enable wakeup flag output */ - -#define RTC_CALIBRATION_512HZ RTC_CTL_COEN /*!< calibration output of 512Hz is enable */ -#define RTC_CALIBRATION_1HZ (RTC_CTL_COEN | RTC_CTL_COS) /*!< calibration output of 1Hz is enable */ -#define RTC_ALARM0_HIGH RTC_OS_ALARM0 /*!< enable alarm0 flag output with high level */ -#define RTC_ALARM0_LOW (RTC_OS_ALARM0 | RTC_CTL_OPOL) /*!< enable alarm0 flag output with low level*/ -#define RTC_ALARM1_HIGH RTC_OS_ALARM1 /*!< enable alarm1 flag output with high level */ -#define RTC_ALARM1_LOW (RTC_OS_ALARM1 | RTC_CTL_OPOL) /*!< enable alarm1 flag output with low level*/ -#define RTC_WAKEUP_HIGH RTC_OS_WAKEUP /*!< enable wakeup flag output with high level */ -#define RTC_WAKEUP_LOW (RTC_OS_WAKEUP | RTC_CTL_OPOL) /*!< enable wakeup flag output with low level*/ - -#define RTC_24HOUR ((uint32_t)0x00000000U) /*!< 24-hour format */ -#define RTC_12HOUR RTC_CTL_CS /*!< 12-hour format */ - -#define RTC_TIMESTAMP_RISING_EDGE ((uint32_t)0x00000000U) /*!< rising edge is valid event edge for time-stamp event */ -#define RTC_TIMESTAMP_FALLING_EDGE RTC_CTL_TSEG /*!< falling edge is valid event edge for time-stamp event */ - -/* psc register value */ -#define PSC_FACTOR_S(regval) (BITS(0,14) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_PSC_FACTOR_S bit field */ -#define GET_PSC_FACTOR_S(regval) GET_BITS((regval),0,14) /*!< get value of RTC_PSC_FACTOR_S bit field */ - -#define PSC_FACTOR_A(regval) (BITS(16,22) & ((uint32_t)(regval) << 16)) /*!< write value to RTC_PSC_FACTOR_A bit field */ -#define GET_PSC_FACTOR_A(regval) GET_BITS((regval),16,22) /*!< get value of RTC_PSC_FACTOR_A bit field */ - -/* alrmtd register value */ -#define ALRMTD_SC(regval) (BITS(0,6) & ((uint32_t)(regval)<< 0)) /*!< write value to RTC_ALRMTD_SC bit field */ -#define GET_ALRMTD_SC(regval) GET_BITS((regval),0,6) /*!< get value of RTC_ALRMTD_SC bit field */ - -#define ALRMTD_MN(regval) (BITS(8,14) & ((uint32_t)(regval) << 8)) /*!< write value to RTC_ALRMTD_MN bit field */ -#define GET_ALRMTD_MN(regval) GET_BITS((regval),8,14) /*!< get value of RTC_ALRMTD_MN bit field */ - -#define ALRMTD_HR(regval) (BITS(16,21) & ((uint32_t)(regval) << 16)) /*!< write value to RTC_ALRMTD_HR bit field */ -#define GET_ALRMTD_HR(regval) GET_BITS((regval),16,21) /*!< get value of RTC_ALRMTD_HR bit field */ - -#define ALRMTD_DAY(regval) (BITS(24,29) & ((uint32_t)(regval) << 24)) /*!< write value to RTC_ALRMTD_DAY bit field */ -#define GET_ALRMTD_DAY(regval) GET_BITS((regval),24,29) /*!< get value of RTC_ALRMTD_DAY bit field */ - -#define RTC_ALARM_NONE_MASK ((uint32_t)0x00000000U) /*!< alarm none mask */ -#define RTC_ALARM_DATE_MASK RTC_ALRMXTD_MSKD /*!< alarm date mask */ -#define RTC_ALARM_HOUR_MASK RTC_ALRMXTD_MSKH /*!< alarm hour mask */ -#define RTC_ALARM_MINUTE_MASK RTC_ALRMXTD_MSKM /*!< alarm minute mask */ -#define RTC_ALARM_SECOND_MASK RTC_ALRMXTD_MSKS /*!< alarm second mask */ -#define RTC_ALARM_ALL_MASK (RTC_ALRMXTD_MSKD|RTC_ALRMXTD_MSKH|RTC_ALRMXTD_MSKM|RTC_ALRMXTD_MSKS) /*!< alarm all mask */ - -#define RTC_ALARM_DATE_SELECTED ((uint32_t)0x00000000U) /*!< alarm date format selected */ -#define RTC_ALARM_WEEKDAY_SELECTED RTC_ALRMXTD_DOWS /*!< alarm weekday format selected */ - -/* wpk register value */ -#define WPK_WPK(regval) (BITS(0,7) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_WPK_WPK bit field */ - -/* ss register value */ -#define SS_SSC(regval) (BITS(0,15) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_SS_SSC bit field */ - -/* shiftctl register value */ -#define SHIFTCTL_SFS(regval) (BITS(0,14) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_SHIFTCTL_SFS bit field */ - -#define RTC_SHIFT_ADD1S_RESET ((uint32_t)0x00000000U) /*!< not add 1 second */ -#define RTC_SHIFT_ADD1S_SET RTC_SHIFTCTL_A1S /*!< add one second to the clock */ - -/* tts register value */ -#define TTS_SC(regval) (BITS(0,6) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_TTS_SC bit field */ -#define GET_TTS_SC(regval) GET_BITS((regval),0,6) /*!< get value of RTC_TTS_SC bit field */ - -#define TTS_MN(regval) (BITS(8,14) & ((uint32_t)(regval) << 8)) /*!< write value to RTC_TTS_MN bit field */ -#define GET_TTS_MN(regval) GET_BITS((regval),8,14) /*!< get value of RTC_TTS_MN bit field */ - -#define TTS_HR(regval) (BITS(16,21) & ((uint32_t)(regval) << 16)) /*!< write value to RTC_TTS_HR bit field */ -#define GET_TTS_HR(regval) GET_BITS((regval),16,21) /*!< get value of RTC_TTS_HR bit field */ - -/* dts register value */ -#define DTS_DAY(regval) (BITS(0,5) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_DTS_DAY bit field */ -#define GET_DTS_DAY(regval) GET_BITS((regval),0,5) /*!< get value of RTC_DTS_DAY bit field */ - -#define DTS_MON(regval) (BITS(8,12) & ((uint32_t)(regval) << 8)) /*!< write value to RTC_DTS_MON bit field */ -#define GET_DTS_MON(regval) GET_BITS((regval),8,12) /*!< get value of RTC_DTS_MON bit field */ - -#define DTS_DOW(regval) (BITS(13,15) & ((uint32_t)(regval) << 13)) /*!< write value to RTC_DTS_DOW bit field */ -#define GET_DTS_DOW(regval) GET_BITS((regval),13,15) /*!< get value of RTC_DTS_DOW bit field */ - -/* ssts register value */ -#define SSTS_SSC(regval) (BITS(0,15) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_SSTS_SSC bit field */ - -/* hrfc register value */ -#define HRFC_CMSK(regval) (BITS(0,8) & ((uint32_t)(regval) << 0)) /*!< write value to RTC_HRFC_CMSK bit field */ - -#define RTC_CALIBRATION_WINDOW_32S ((uint32_t)0x00000000U) /*!< 2exp20 RTCCLK cycles, 32s if RTCCLK = 32768 Hz */ -#define RTC_CALIBRATION_WINDOW_16S RTC_HRFC_CWND16 /*!< 2exp19 RTCCLK cycles, 16s if RTCCLK = 32768 Hz */ -#define RTC_CALIBRATION_WINDOW_8S RTC_HRFC_CWND8 /*!< 2exp18 RTCCLK cycles, 8s if RTCCLK = 32768 Hz */ - -#define RTC_CALIBRATION_PLUS_SET RTC_HRFC_FREQI /*!< increase RTC frequency by 488.5ppm */ -#define RTC_CALIBRATION_PLUS_RESET ((uint32_t)0x00000000U) /*!< no effect */ - -/* tamp register value */ -#define TAMP_FREQ(regval) (BITS(8,10) & ((uint32_t)(regval) << 8)) /*!< write value to RTC_TAMP_FREQ bit field */ -#define RTC_FREQ_DIV32768 TAMP_FREQ(0) /*!< sample once every 32768 RTCCLK(1Hz if RTCCLK=32.768KHz) */ -#define RTC_FREQ_DIV16384 TAMP_FREQ(1) /*!< sample once every 16384 RTCCLK(2Hz if RTCCLK=32.768KHz) */ -#define RTC_FREQ_DIV8192 TAMP_FREQ(2) /*!< sample once every 8192 RTCCLK(4Hz if RTCCLK=32.768KHz) */ -#define RTC_FREQ_DIV4096 TAMP_FREQ(3) /*!< sample once every 4096 RTCCLK(8Hz if RTCCLK=32.768KHz) */ -#define RTC_FREQ_DIV2048 TAMP_FREQ(4) /*!< sample once every 2048 RTCCLK(16Hz if RTCCLK=32.768KHz) */ -#define RTC_FREQ_DIV1024 TAMP_FREQ(5) /*!< sample once every 1024 RTCCLK(32Hz if RTCCLK=32.768KHz) */ -#define RTC_FREQ_DIV512 TAMP_FREQ(6) /*!< sample once every 512 RTCCLK(64Hz if RTCCLK=32.768KHz) */ -#define RTC_FREQ_DIV256 TAMP_FREQ(7) /*!< sample once every 256 RTCCLK(128Hz if RTCCLK=32.768KHz) */ - -#define TAMP_FLT(regval) (BITS(11,12) & ((uint32_t)(regval) << 11)) /*!< write value to RTC_TAMP_FLT bit field */ -#define RTC_FLT_EDGE TAMP_FLT(0) /*!< detecting tamper event using edge mode. precharge duration is disabled automatically */ -#define RTC_FLT_2S TAMP_FLT(1) /*!< detecting tamper event using level mode.2 consecutive valid level samples will make a effective tamper event */ -#define RTC_FLT_4S TAMP_FLT(2) /*!< detecting tamper event using level mode.4 consecutive valid level samples will make an effective tamper event */ -#define RTC_FLT_8S TAMP_FLT(3) /*!< detecting tamper event using level mode.8 consecutive valid level samples will make a effective tamper event */ - -#define TAMP_PRCH(regval) (BITS(13,14) & ((uint32_t)(regval) << 13)) /*!< write value to RTC_TAMP_PRCH bit field */ -#define RTC_PRCH_1C TAMP_PRCH(0) /*!< 1 RTC clock prechagre time before each sampling */ -#define RTC_PRCH_2C TAMP_PRCH(1) /*!< 2 RTC clock prechagre time before each sampling */ -#define RTC_PRCH_4C TAMP_PRCH(2) /*!< 4 RTC clock prechagre time before each sampling */ -#define RTC_PRCH_8C TAMP_PRCH(3) /*!< 8 RTC clock prechagre time before each sampling */ - -#define RTC_TAMPER0 RTC_TAMP_TP0EN /*!< tamper 0 detection enable */ -#define RTC_TAMPER1 RTC_TAMP_TP1EN /*!< tamper 1 detection enable */ - -#define RTC_TAMPER_TRIGGER_EDGE_RISING ((uint32_t)0x00000000U) /*!< tamper detection is in rising edge mode */ -#define RTC_TAMPER_TRIGGER_EDGE_FALLING RTC_TAMP_TP0EG /*!< tamper detection is in falling edge mode */ -#define RTC_TAMPER_TRIGGER_LEVEL_LOW ((uint32_t)0x00000000U) /*!< tamper detection is in low level mode */ -#define RTC_TAMPER_TRIGGER_LEVEL_HIGH RTC_TAMP_TP0EG /*!< tamper detection is in high level mode */ - -#define RTC_TAMPER_TRIGGER_POS ((uint32_t)0x00000001U) /* shift position of trigger relative to source */ - -#define RTC_ALARM_OUTPUT_OD ((uint32_t)0x00000000U) /*!< RTC alarm output open-drain mode */ -#define RTC_ALARM_OUTPUT_PP RTC_TAMP_AOT /*!< RTC alarm output push-pull mode */ - -/* ALRMXSS register value */ -#define ALRMXSS_SSC(regval) (BITS(0,14) & ((uint32_t)(regval)<< 0)) /*!< write value to RTC_ALRMXSS_SSC bit field */ - -#define ALRMXSS_MASKSSC(regval) (BITS(24,27) & ((uint32_t)(regval) << 24)) /*!< write value to RTC_ALRMXSS_MASKSSC bit field */ -#define RTC_MASKSSC_0_14 ALRMXSS_MASKSSC(0) /*!< mask alarm subsecond configuration */ -#define RTC_MASKSSC_1_14 ALRMXSS_MASKSSC(1) /*!< mask RTC_ALRMXSS_SSC[14:1], and RTC_ALRMXSS_SSC[0] is to be compared */ -#define RTC_MASKSSC_2_14 ALRMXSS_MASKSSC(2) /*!< mask RTC_ALRMXSS_SSC[14:2], and RTC_ALRMXSS_SSC[1:0] is to be compared */ -#define RTC_MASKSSC_3_14 ALRMXSS_MASKSSC(3) /*!< mask RTC_ALRMXSS_SSC[14:3], and RTC_ALRMXSS_SSC[2:0] is to be compared */ -#define RTC_MASKSSC_4_14 ALRMXSS_MASKSSC(4) /*!< mask RTC_ALRMXSS_SSC[14:4]], and RTC_ALRMXSS_SSC[3:0] is to be compared */ -#define RTC_MASKSSC_5_14 ALRMXSS_MASKSSC(5) /*!< mask RTC_ALRMXSS_SSC[14:5], and RTC_ALRMXSS_SSC[4:0] is to be compared */ -#define RTC_MASKSSC_6_14 ALRMXSS_MASKSSC(6) /*!< mask RTC_ALRMXSS_SSC[14:6], and RTC_ALRMXSS_SSC[5:0] is to be compared */ -#define RTC_MASKSSC_7_14 ALRMXSS_MASKSSC(7) /*!< mask RTC_ALRMXSS_SSC[14:7], and RTC_ALRMXSS_SSC[6:0] is to be compared */ -#define RTC_MASKSSC_8_14 ALRMXSS_MASKSSC(8) /*!< mask RTC_ALRMXSS_SSC[14:7], and RTC_ALRMXSS_SSC[6:0] is to be compared */ -#define RTC_MASKSSC_9_14 ALRMXSS_MASKSSC(9) /*!< mask RTC_ALRMXSS_SSC[14:9], and RTC_ALRMXSS_SSC[8:0] is to be compared */ -#define RTC_MASKSSC_10_14 ALRMXSS_MASKSSC(10) /*!< mask RTC_ALRMXSS_SSC[14:10], and RTC_ALRMXSS_SSC[9:0] is to be compared */ -#define RTC_MASKSSC_11_14 ALRMXSS_MASKSSC(11) /*!< mask RTC_ALRMXSS_SSC[14:11], and RTC_ALRMXSS_SSC[10:0] is to be compared */ -#define RTC_MASKSSC_12_14 ALRMXSS_MASKSSC(12) /*!< mask RTC_ALRMXSS_SSC[14:12], and RTC_ALRMXSS_SSC[11:0] is to be compared */ -#define RTC_MASKSSC_13_14 ALRMXSS_MASKSSC(13) /*!< mask RTC_ALRMXSS_SSC[14:13], and RTC_ALRMXSS_SSC[12:0] is to be compared */ -#define RTC_MASKSSC_14 ALRMXSS_MASKSSC(14) /*!< mask RTC_ALRMXSS_SSC[14], and RTC_ALRMXSS_SSC[13:0] is to be compared */ -#define RTC_MASKSSC_NONE ALRMXSS_MASKSSC(15) /*!< mask none, and RTC_ALRMXSS_SSC[14:0] is to be compared */ - -/* RTC interrupt source */ -#define RTC_INT_TIMESTAMP RTC_CTL_TSIE /*!< time-stamp interrupt enable */ -#define RTC_INT_ALARM0 RTC_CTL_ALRM0IE /*!< RTC alarm0 interrupt enable */ -#define RTC_INT_ALARM1 RTC_CTL_ALRM1IE /*!< RTC alarm1 interrupt enable */ -#define RTC_INT_TAMP RTC_TAMP_TPIE /*!< tamper detection interrupt enable */ -#define RTC_INT_WAKEUP RTC_CTL_WTIE /*!< RTC wakeup timer interrupt enable */ - -/* write protect key */ -#define RTC_UNLOCK_KEY1 ((uint8_t)0xCAU) /*!< RTC unlock key1 */ -#define RTC_UNLOCK_KEY2 ((uint8_t)0x53U) /*!< RTC unlock key2 */ -#define RTC_LOCK_KEY ((uint8_t)0xFFU) /*!< RTC lock key */ - -/* registers reset value */ -#define RTC_REGISTER_RESET ((uint32_t)0x00000000U) /*!< RTC common register reset value */ -#define RTC_DATE_RESET ((uint32_t)0x00002101U) /*!< RTC_DATE register reset value */ -#define RTC_STAT_RESET ((uint32_t)0x00000000U) /*!< RTC_STAT register reset value */ -#define RTC_PSC_RESET ((uint32_t)0x007F00FFU) /*!< RTC_PSC register reset value */ -#define RTC_WUT_RESET ((uint32_t)0x0000FFFFU) /*!< RTC_WUT register reset value */ - -/* RTC alarm */ -#define RTC_ALARM0 ((uint8_t)0x01U) /*!< RTC alarm 0 */ -#define RTC_ALARM1 ((uint8_t)0x02U) /*!< RTC alarm 1 */ - -/* RTC coarse calibration direction */ -#define CALIB_INCREASE ((uint8_t)0x01U) /*!< RTC coarse calibration increase */ -#define CALIB_DECREASE ((uint8_t)0x02U) /*!< RTC coarse calibration decrease */ - -/* RTC wakeup timer clock */ -#define CTL_WTCS(regval) (BITS(0,2) & ((regval)<< 0)) -#define WAKEUP_RTCCK_DIV16 CTL_WTCS(0) /*!< wakeup timer clock is RTC clock divided by 16 */ -#define WAKEUP_RTCCK_DIV8 CTL_WTCS(1) /*!< wakeup timer clock is RTC clock divided by 8 */ -#define WAKEUP_RTCCK_DIV4 CTL_WTCS(2) /*!< wakeup timer clock is RTC clock divided by 4 */ -#define WAKEUP_RTCCK_DIV2 CTL_WTCS(3) /*!< wakeup timer clock is RTC clock divided by 2 */ -#define WAKEUP_CKSPRE CTL_WTCS(4) /*!< wakeup timer clock is ckapre */ -#define WAKEUP_CKSPRE_2EXP16 CTL_WTCS(6) /*!< wakeup timer clock is ckapre and wakeup timer add 2exp16 */ - -/* RTC_AF pin */ -#define RTC_AF0_TIMESTAMP ((uint32_t)0x00000000) /*!< RTC_AF0 use for timestamp */ -#define RTC_AF1_TIMESTAMP RTC_TAMP_TSSEL /*!< RTC_AF1 use for timestamp */ -#define RTC_AF0_TAMPER0 ((uint32_t)0x00000000) /*!< RTC_AF0 use for tamper0 */ -#define RTC_AF1_TAMPER0 RTC_TAMP_TP0SEL /*!< RTC_AF1 use for tamper0 */ - -/* RTC flags */ -#define RTC_FLAG_ALRM0W RTC_STAT_ALRM0WF /*!< alarm0 configuration can be write flag */ -#define RTC_FLAG_ALRM1W RTC_STAT_ALRM1WF /*!< alarm1 configuration can be write flag */ -#define RTC_FLAG_WTW RTC_STAT_WTWF /*!< wakeup timer can be write flag */ -#define RTC_FLAG_SOP RTC_STAT_SOPF /*!< shift function operation pending flag */ -#define RTC_FLAG_YCM RTC_STAT_YCM /*!< year configuration mark status flag */ -#define RTC_FLAG_RSYN RTC_STAT_RSYNF /*!< register synchronization flag */ -#define RTC_FLAG_INIT RTC_STAT_INITF /*!< initialization state flag */ -#define RTC_FLAG_ALRM0 RTC_STAT_ALRM0F /*!< alarm0 occurs flag */ -#define RTC_FLAG_ALRM1 RTC_STAT_ALRM1F /*!< alarm1 occurs flag */ -#define RTC_FLAG_WT RTC_STAT_WTF /*!< wakeup timer occurs flag */ -#define RTC_FLAG_TS RTC_STAT_TSF /*!< time-stamp flag */ -#define RTC_FLAG_TSOVR RTC_STAT_TSOVRF /*!< time-stamp overflow flag */ -#define RTC_FLAG_TP0 RTC_STAT_TP0F /*!< RTC tamper 0 detected flag */ -#define RTC_FLAG_TP1 RTC_STAT_TP1F /*!< RTC tamper 1 detected flag */ -#define RTC_STAT_SCP RTC_STAT_SCPF /*!< smooth calibration pending flag */ - -/* function declarations */ -/* reset most of the RTC registers */ -ErrStatus rtc_deinit(void); -/* initialize RTC registers */ -ErrStatus rtc_init(rtc_parameter_struct* rtc_initpara_struct); -/* enter RTC init mode */ -ErrStatus rtc_init_mode_enter(void); -/* exit RTC init mode */ -void rtc_init_mode_exit(void); -/* wait until RTC_TIME and RTC_DATE registers are synchronized with APB clock, and the shadow registers are updated */ -ErrStatus rtc_register_sync_wait(void); - -/* get current time and date */ -void rtc_current_time_get(rtc_parameter_struct* rtc_initpara_struct); -/* get current subsecond value */ -uint32_t rtc_subsecond_get(void); - -/* configure RTC alarm */ -void rtc_alarm_config(uint8_t rtc_alarm, rtc_alarm_struct* rtc_alarm_time); -/* configure subsecond of RTC alarm */ -void rtc_alarm_subsecond_config(uint8_t rtc_alarm, uint32_t mask_subsecond, uint32_t subsecond); -/* get RTC alarm */ -void rtc_alarm_get(uint8_t rtc_alarm,rtc_alarm_struct* rtc_alarm_time); -/* get RTC alarm subsecond */ -uint32_t rtc_alarm_subsecond_get(uint8_t rtc_alarm); -/* enable RTC alarm */ -void rtc_alarm_enable(uint8_t rtc_alarm); -/* disable RTC alarm */ -ErrStatus rtc_alarm_disable(uint8_t rtc_alarm); - -/* enable RTC time-stamp */ -void rtc_timestamp_enable(uint32_t edge); -/* disable RTC time-stamp */ -void rtc_timestamp_disable(void); -/* get RTC timestamp time and date */ -void rtc_timestamp_get(rtc_timestamp_struct* rtc_timestamp); -/* get RTC time-stamp subsecond */ -uint32_t rtc_timestamp_subsecond_get(void); -/* RTC time-stamp pin map */ -void rtc_timestamp_pin_map(uint32_t rtc_af); - -/* enable RTC tamper */ -void rtc_tamper_enable(rtc_tamper_struct* rtc_tamper); -/* disable RTC tamper */ -void rtc_tamper_disable(uint32_t source); -/* RTC tamper0 pin map */ -void rtc_tamper0_pin_map(uint32_t rtc_af); - -/* enable specified RTC interrupt */ -void rtc_interrupt_enable(uint32_t interrupt); -/* disble specified RTC interrupt */ -void rtc_interrupt_disable(uint32_t interrupt); -/* check specified flag */ -FlagStatus rtc_flag_get(uint32_t flag); -/* clear specified flag */ -void rtc_flag_clear(uint32_t flag); - -/* configure RTC alarm output source */ -void rtc_alarm_output_config(uint32_t source, uint32_t mode); -/* configure RTC calibration output source */ -void rtc_calibration_output_config(uint32_t source); - -/* adjust the daylight saving time by adding or substracting one hour from the current time */ -void rtc_hour_adjust(uint32_t operation); -/* adjust RTC second or subsecond value of current time */ -ErrStatus rtc_second_adjust(uint32_t add, uint32_t minus); - -/* enable RTC bypass shadow registers function */ -void rtc_bypass_shadow_enable(void); -/* disable RTC bypass shadow registers function */ -void rtc_bypass_shadow_disable(void); - -/* enable RTC reference clock detection function */ -ErrStatus rtc_refclock_detection_enable(void); -/* disable RTC reference clock detection function */ -ErrStatus rtc_refclock_detection_disable(void); - -/* enable RTC wakeup timer */ -void rtc_wakeup_enable(void); -/* disable RTC wakeup timer */ -ErrStatus rtc_wakeup_disable(void); -/* set auto wakeup timer clock */ -ErrStatus rtc_wakeup_clock_set(uint8_t wakeup_clock); -/* set auto wakeup timer value */ -ErrStatus rtc_wakeup_timer_set(uint16_t wakeup_timer); -/* get auto wakeup timer value */ -uint16_t rtc_wakeup_timer_get(void); - -/* configure RTC smooth calibration */ -ErrStatus rtc_smooth_calibration_config(uint32_t window, uint32_t plus, uint32_t minus); -/* enable RTC coarse calibration */ -ErrStatus rtc_coarse_calibration_enable(void); -/* disable RTC coarse calibration */ -ErrStatus rtc_coarse_calibration_disable(void); -/* configure RTC coarse calibration direction and step */ -ErrStatus rtc_coarse_calibration_config(uint8_t direction, uint8_t step); - -#endif /* GD32F4XX_RTC_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_sdio.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_sdio.h deleted file mode 100644 index 7008156035..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_sdio.h +++ /dev/null @@ -1,433 +0,0 @@ -/*! - \file gd32f4xx_sdio.h - \brief definitions for the SDIO - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_SDIO_H -#define GD32F4XX_SDIO_H - -#include "gd32f4xx.h" - -/* SDIO definitions */ -#define SDIO SDIO_BASE - -/* registers definitions */ -#define SDIO_PWRCTL REG32(SDIO + 0x00U) /*!< SDIO power control register */ -#define SDIO_CLKCTL REG32(SDIO + 0x04U) /*!< SDIO clock control register */ -#define SDIO_CMDAGMT REG32(SDIO + 0x08U) /*!< SDIO command argument register */ -#define SDIO_CMDCTL REG32(SDIO + 0x0CU) /*!< SDIO command control register */ -#define SDIO_RSPCMDIDX REG32(SDIO + 0x10U) /*!< SDIO command index response register */ -#define SDIO_RESP0 REG32(SDIO + 0x14U) /*!< SDIO response register 0 */ -#define SDIO_RESP1 REG32(SDIO + 0x18U) /*!< SDIO response register 1 */ -#define SDIO_RESP2 REG32(SDIO + 0x1CU) /*!< SDIO response register 2 */ -#define SDIO_RESP3 REG32(SDIO + 0x20U) /*!< SDIO response register 3 */ -#define SDIO_DATATO REG32(SDIO + 0x24U) /*!< SDIO data timeout register */ -#define SDIO_DATALEN REG32(SDIO + 0x28U) /*!< SDIO data length register */ -#define SDIO_DATACTL REG32(SDIO + 0x2CU) /*!< SDIO data control register */ -#define SDIO_DATACNT REG32(SDIO + 0x30U) /*!< SDIO data counter register */ -#define SDIO_STAT REG32(SDIO + 0x34U) /*!< SDIO status register */ -#define SDIO_INTC REG32(SDIO + 0x38U) /*!< SDIO interrupt clear register */ -#define SDIO_INTEN REG32(SDIO + 0x3CU) /*!< SDIO interrupt enable register */ -#define SDIO_FIFOCNT REG32(SDIO + 0x48U) /*!< SDIO FIFO counter register */ -#define SDIO_FIFO REG32(SDIO + 0x80U) /*!< SDIO FIFO data register */ - -/* bits definitions */ -/* SDIO_PWRCTL */ -#define SDIO_PWRCTL_PWRCTL BITS(0,1) /*!< SDIO power control bits */ - -/* SDIO_CLKCTL */ -#define SDIO_CLKCTL_DIV BITS(0,7) /*!< clock division */ -#define SDIO_CLKCTL_CLKEN BIT(8) /*!< SDIO_CLK clock output enable bit */ -#define SDIO_CLKCTL_CLKPWRSAV BIT(9) /*!< SDIO_CLK clock dynamic switch on/off for power saving */ -#define SDIO_CLKCTL_CLKBYP BIT(10) /*!< clock bypass enable bit */ -#define SDIO_CLKCTL_BUSMODE BITS(11,12) /*!< SDIO card bus mode control bit */ -#define SDIO_CLKCTL_CLKEDGE BIT(13) /*!< SDIO_CLK clock edge selection bit */ -#define SDIO_CLKCTL_HWCLKEN BIT(14) /*!< hardware clock control enable bit */ -#define SDIO_CLKCTL_DIV8 BIT(31) /*!< MSB of clock division */ - -/* SDIO_CMDAGMT */ -#define SDIO_CMDAGMT_CMDAGMT BITS(0,31) /*!< SDIO card command argument */ - -/* SDIO_CMDCTL */ -#define SDIO_CMDCTL_CMDIDX BITS(0,5) /*!< command index */ -#define SDIO_CMDCTL_CMDRESP BITS(6,7) /*!< command response type bits */ -#define SDIO_CMDCTL_INTWAIT BIT(8) /*!< interrupt wait instead of timeout */ -#define SDIO_CMDCTL_WAITDEND BIT(9) /*!< wait for ends of data transfer */ -#define SDIO_CMDCTL_CSMEN BIT(10) /*!< command state machine(CSM) enable bit */ -#define SDIO_CMDCTL_SUSPEND BIT(11) /*!< SD I/O suspend command(SD I/O only) */ -#define SDIO_CMDCTL_ENCMDC BIT(12) /*!< CMD completion signal enabled (CE-ATA only) */ -#define SDIO_CMDCTL_NINTEN BIT(13) /*!< no CE-ATA interrupt (CE-ATA only) */ -#define SDIO_CMDCTL_ATAEN BIT(14) /*!< CE-ATA command enable(CE-ATA only) */ - -/* SDIO_DATATO */ -#define SDIO_DATATO_DATATO BITS(0,31) /*!< data timeout period */ - -/* SDIO_DATALEN */ -#define SDIO_DATALEN_DATALEN BITS(0,24) /*!< data transfer length */ - -/* SDIO_DATACTL */ -#define SDIO_DATACTL_DATAEN BIT(0) /*!< data transfer enabled bit */ -#define SDIO_DATACTL_DATADIR BIT(1) /*!< data transfer direction */ -#define SDIO_DATACTL_TRANSMOD BIT(2) /*!< data transfer mode */ -#define SDIO_DATACTL_DMAEN BIT(3) /*!< DMA enable bit */ -#define SDIO_DATACTL_BLKSZ BITS(4,7) /*!< data block size */ -#define SDIO_DATACTL_RWEN BIT(8) /*!< read wait mode enabled(SD I/O only) */ -#define SDIO_DATACTL_RWSTOP BIT(9) /*!< read wait stop(SD I/O only) */ -#define SDIO_DATACTL_RWTYPE BIT(10) /*!< read wait type(SD I/O only) */ -#define SDIO_DATACTL_IOEN BIT(11) /*!< SD I/O specific function enable(SD I/O only) */ - -/* SDIO_STAT */ -#define SDIO_STAT_CCRCERR BIT(0) /*!< command response received (CRC check failed) */ -#define SDIO_STAT_DTCRCERR BIT(1) /*!< data block sent/received (CRC check failed) */ -#define SDIO_STAT_CMDTMOUT BIT(2) /*!< command response timeout */ -#define SDIO_STAT_DTTMOUT BIT(3) /*!< data timeout */ -#define SDIO_STAT_TXURE BIT(4) /*!< transmit FIFO underrun error occurs */ -#define SDIO_STAT_RXORE BIT(5) /*!< received FIFO overrun error occurs */ -#define SDIO_STAT_CMDRECV BIT(6) /*!< command response received (CRC check passed) */ -#define SDIO_STAT_CMDSEND BIT(7) /*!< command sent (no response required) */ -#define SDIO_STAT_DTEND BIT(8) /*!< data end (data counter, SDIO_DATACNT, is zero) */ -#define SDIO_STAT_STBITE BIT(9) /*!< start bit error in the bus */ -#define SDIO_STAT_DTBLKEND BIT(10) /*!< data block sent/received (CRC check passed) */ -#define SDIO_STAT_CMDRUN BIT(11) /*!< command transmission in progress */ -#define SDIO_STAT_TXRUN BIT(12) /*!< data transmission in progress */ -#define SDIO_STAT_RXRUN BIT(13) /*!< data reception in progress */ -#define SDIO_STAT_TFH BIT(14) /*!< transmit FIFO is half empty: at least 8 words can be written into the FIFO */ -#define SDIO_STAT_RFH BIT(15) /*!< receive FIFO is half full: at least 8 words can be read in the FIFO */ -#define SDIO_STAT_TFF BIT(16) /*!< transmit FIFO is full */ -#define SDIO_STAT_RFF BIT(17) /*!< receive FIFO is full */ -#define SDIO_STAT_TFE BIT(18) /*!< transmit FIFO is empty */ -#define SDIO_STAT_RFE BIT(19) /*!< receive FIFO is empty */ -#define SDIO_STAT_TXDTVAL BIT(20) /*!< data is valid in transmit FIFO */ -#define SDIO_STAT_RXDTVAL BIT(21) /*!< data is valid in receive FIFO */ -#define SDIO_STAT_SDIOINT BIT(22) /*!< SD I/O interrupt received */ -#define SDIO_STAT_ATAEND BIT(23) /*!< CE-ATA command completion signal received (only for CMD61) */ - -/* SDIO_INTC */ -#define SDIO_INTC_CCRCERRC BIT(0) /*!< CCRCERR flag clear bit */ -#define SDIO_INTC_DTCRCERRC BIT(1) /*!< DTCRCERR flag clear bit */ -#define SDIO_INTC_CMDTMOUTC BIT(2) /*!< CMDTMOUT flag clear bit */ -#define SDIO_INTC_DTTMOUTC BIT(3) /*!< DTTMOUT flag clear bit */ -#define SDIO_INTC_TXUREC BIT(4) /*!< TXURE flag clear bit */ -#define SDIO_INTC_RXOREC BIT(5) /*!< RXORE flag clear bit */ -#define SDIO_INTC_CMDRECVC BIT(6) /*!< CMDRECV flag clear bit */ -#define SDIO_INTC_CMDSENDC BIT(7) /*!< CMDSEND flag clear bit */ -#define SDIO_INTC_DTENDC BIT(8) /*!< DTEND flag clear bit */ -#define SDIO_INTC_STBITEC BIT(9) /*!< STBITE flag clear bit */ -#define SDIO_INTC_DTBLKENDC BIT(10) /*!< DTBLKEND flag clear bit */ -#define SDIO_INTC_SDIOINTC BIT(22) /*!< SDIOINT flag clear bit */ -#define SDIO_INTC_ATAENDC BIT(23) /*!< ATAEND flag clear bit */ - -/* SDIO_INTEN */ -#define SDIO_INTEN_CCRCERRIE BIT(0) /*!< command response CRC fail interrupt enable */ -#define SDIO_INTEN_DTCRCERRIE BIT(1) /*!< data CRC fail interrupt enable */ -#define SDIO_INTEN_CMDTMOUTIE BIT(2) /*!< command response timeout interrupt enable */ -#define SDIO_INTEN_DTTMOUTIE BIT(3) /*!< data timeout interrupt enable */ -#define SDIO_INTEN_TXUREIE BIT(4) /*!< transmit FIFO underrun error interrupt enable */ -#define SDIO_INTEN_RXOREIE BIT(5) /*!< received FIFO overrun error interrupt enable */ -#define SDIO_INTEN_CMDRECVIE BIT(6) /*!< command response received interrupt enable */ -#define SDIO_INTEN_CMDSENDIE BIT(7) /*!< command sent interrupt enable */ -#define SDIO_INTEN_DTENDIE BIT(8) /*!< data end interrupt enable */ -#define SDIO_INTEN_STBITEIE BIT(9) /*!< start bit error interrupt enable */ -#define SDIO_INTEN_DTBLKENDIE BIT(10) /*!< data block end interrupt enable */ -#define SDIO_INTEN_CMDRUNIE BIT(11) /*!< command transmission interrupt enable */ -#define SDIO_INTEN_TXRUNIE BIT(12) /*!< data transmission interrupt enable */ -#define SDIO_INTEN_RXRUNIE BIT(13) /*!< data reception interrupt enable */ -#define SDIO_INTEN_TFHIE BIT(14) /*!< transmit FIFO half empty interrupt enable */ -#define SDIO_INTEN_RFHIE BIT(15) /*!< receive FIFO half full interrupt enable */ -#define SDIO_INTEN_TFFIE BIT(16) /*!< transmit FIFO full interrupt enable */ -#define SDIO_INTEN_RFFIE BIT(17) /*!< receive FIFO full interrupt enable */ -#define SDIO_INTEN_TFEIE BIT(18) /*!< transmit FIFO empty interrupt enable */ -#define SDIO_INTEN_RFEIE BIT(19) /*!< receive FIFO empty interrupt enable */ -#define SDIO_INTEN_TXDTVALIE BIT(20) /*!< data valid in transmit FIFO interrupt enable */ -#define SDIO_INTEN_RXDTVALIE BIT(21) /*!< data valid in receive FIFO interrupt enable */ -#define SDIO_INTEN_SDIOINTIE BIT(22) /*!< SD I/O interrupt received interrupt enable */ -#define SDIO_INTEN_ATAENDIE BIT(23) /*!< CE-ATA command completion signal received interrupt enable */ - -/* SDIO_FIFO */ -#define SDIO_FIFO_FIFODT BITS(0,31) /*!< receive FIFO data or transmit FIFO data */ - -/* constants definitions */ -/* SDIO flags */ -#define SDIO_FLAG_CCRCERR BIT(0) /*!< command response received (CRC check failed) flag */ -#define SDIO_FLAG_DTCRCERR BIT(1) /*!< data block sent/received (CRC check failed) flag */ -#define SDIO_FLAG_CMDTMOUT BIT(2) /*!< command response timeout flag */ -#define SDIO_FLAG_DTTMOUT BIT(3) /*!< data timeout flag */ -#define SDIO_FLAG_TXURE BIT(4) /*!< transmit FIFO underrun error occurs flag */ -#define SDIO_FLAG_RXORE BIT(5) /*!< received FIFO overrun error occurs flag */ -#define SDIO_FLAG_CMDRECV BIT(6) /*!< command response received (CRC check passed) flag */ -#define SDIO_FLAG_CMDSEND BIT(7) /*!< command sent (no response required) flag */ -#define SDIO_FLAG_DTEND BIT(8) /*!< data end (data counter, SDIO_DATACNT, is zero) flag */ -#define SDIO_FLAG_STBITE BIT(9) /*!< start bit error in the bus flag */ -#define SDIO_FLAG_DTBLKEND BIT(10) /*!< data block sent/received (CRC check passed) flag */ -#define SDIO_FLAG_CMDRUN BIT(11) /*!< command transmission in progress flag */ -#define SDIO_FLAG_TXRUN BIT(12) /*!< data transmission in progress flag */ -#define SDIO_FLAG_RXRUN BIT(13) /*!< data reception in progress flag */ -#define SDIO_FLAG_TFH BIT(14) /*!< transmit FIFO is half empty flag: at least 8 words can be written into the FIFO */ -#define SDIO_FLAG_RFH BIT(15) /*!< receive FIFO is half full flag: at least 8 words can be read in the FIFO */ -#define SDIO_FLAG_TFF BIT(16) /*!< transmit FIFO is full flag */ -#define SDIO_FLAG_RFF BIT(17) /*!< receive FIFO is full flag */ -#define SDIO_FLAG_TFE BIT(18) /*!< transmit FIFO is empty flag */ -#define SDIO_FLAG_RFE BIT(19) /*!< receive FIFO is empty flag */ -#define SDIO_FLAG_TXDTVAL BIT(20) /*!< data is valid in transmit FIFO flag */ -#define SDIO_FLAG_RXDTVAL BIT(21) /*!< data is valid in receive FIFO flag */ -#define SDIO_FLAG_SDIOINT BIT(22) /*!< SD I/O interrupt received flag */ -#define SDIO_FLAG_ATAEND BIT(23) /*!< CE-ATA command completion signal received (only for CMD61) flag */ - -/* SDIO interrupt enable or disable */ -#define SDIO_INT_CCRCERR BIT(0) /*!< SDIO CCRCERR interrupt */ -#define SDIO_INT_DTCRCERR BIT(1) /*!< SDIO DTCRCERR interrupt */ -#define SDIO_INT_CMDTMOUT BIT(2) /*!< SDIO CMDTMOUT interrupt */ -#define SDIO_INT_DTTMOUT BIT(3) /*!< SDIO DTTMOUT interrupt */ -#define SDIO_INT_TXURE BIT(4) /*!< SDIO TXURE interrupt */ -#define SDIO_INT_RXORE BIT(5) /*!< SDIO RXORE interrupt */ -#define SDIO_INT_CMDRECV BIT(6) /*!< SDIO CMDRECV interrupt */ -#define SDIO_INT_CMDSEND BIT(7) /*!< SDIO CMDSEND interrupt */ -#define SDIO_INT_DTEND BIT(8) /*!< SDIO DTEND interrupt */ -#define SDIO_INT_STBITE BIT(9) /*!< SDIO STBITE interrupt */ -#define SDIO_INT_DTBLKEND BIT(10) /*!< SDIO DTBLKEND interrupt */ -#define SDIO_INT_CMDRUN BIT(11) /*!< SDIO CMDRUN interrupt */ -#define SDIO_INT_TXRUN BIT(12) /*!< SDIO TXRUN interrupt */ -#define SDIO_INT_RXRUN BIT(13) /*!< SDIO RXRUN interrupt */ -#define SDIO_INT_TFH BIT(14) /*!< SDIO TFH interrupt */ -#define SDIO_INT_RFH BIT(15) /*!< SDIO RFH interrupt */ -#define SDIO_INT_TFF BIT(16) /*!< SDIO TFF interrupt */ -#define SDIO_INT_RFF BIT(17) /*!< SDIO RFF interrupt */ -#define SDIO_INT_TFE BIT(18) /*!< SDIO TFE interrupt */ -#define SDIO_INT_RFE BIT(19) /*!< SDIO RFE interrupt */ -#define SDIO_INT_TXDTVAL BIT(20) /*!< SDIO TXDTVAL interrupt */ -#define SDIO_INT_RXDTVAL BIT(21) /*!< SDIO RXDTVAL interrupt */ -#define SDIO_INT_SDIOINT BIT(22) /*!< SDIO SDIOINT interrupt */ -#define SDIO_INT_ATAEND BIT(23) /*!< SDIO ATAEND interrupt */ - -/* SDIO interrupt flags */ -#define SDIO_INT_FLAG_CCRCERR BIT(0) /*!< SDIO CCRCERR interrupt flag */ -#define SDIO_INT_FLAG_DTCRCERR BIT(1) /*!< SDIO DTCRCERR interrupt flag */ -#define SDIO_INT_FLAG_CMDTMOUT BIT(2) /*!< SDIO CMDTMOUT interrupt flag */ -#define SDIO_INT_FLAG_DTTMOUT BIT(3) /*!< SDIO DTTMOUT interrupt flag */ -#define SDIO_INT_FLAG_TXURE BIT(4) /*!< SDIO TXURE interrupt flag */ -#define SDIO_INT_FLAG_RXORE BIT(5) /*!< SDIO RXORE interrupt flag */ -#define SDIO_INT_FLAG_CMDRECV BIT(6) /*!< SDIO CMDRECV interrupt flag */ -#define SDIO_INT_FLAG_CMDSEND BIT(7) /*!< SDIO CMDSEND interrupt flag */ -#define SDIO_INT_FLAG_DTEND BIT(8) /*!< SDIO DTEND interrupt flag */ -#define SDIO_INT_FLAG_STBITE BIT(9) /*!< SDIO STBITE interrupt flag */ -#define SDIO_INT_FLAG_DTBLKEND BIT(10) /*!< SDIO DTBLKEND interrupt flag */ -#define SDIO_INT_FLAG_CMDRUN BIT(11) /*!< SDIO CMDRUN interrupt flag */ -#define SDIO_INT_FLAG_TXRUN BIT(12) /*!< SDIO TXRUN interrupt flag */ -#define SDIO_INT_FLAG_RXRUN BIT(13) /*!< SDIO RXRUN interrupt flag */ -#define SDIO_INT_FLAG_TFH BIT(14) /*!< SDIO TFH interrupt flag */ -#define SDIO_INT_FLAG_RFH BIT(15) /*!< SDIO RFH interrupt flag */ -#define SDIO_INT_FLAG_TFF BIT(16) /*!< SDIO TFF interrupt flag */ -#define SDIO_INT_FLAG_RFF BIT(17) /*!< SDIO RFF interrupt flag */ -#define SDIO_INT_FLAG_TFE BIT(18) /*!< SDIO TFE interrupt flag */ -#define SDIO_INT_FLAG_RFE BIT(19) /*!< SDIO RFE interrupt flag */ -#define SDIO_INT_FLAG_TXDTVAL BIT(20) /*!< SDIO TXDTVAL interrupt flag */ -#define SDIO_INT_FLAG_RXDTVAL BIT(21) /*!< SDIO RXDTVAL interrupt flag */ -#define SDIO_INT_FLAG_SDIOINT BIT(22) /*!< SDIO SDIOINT interrupt flag */ -#define SDIO_INT_FLAG_ATAEND BIT(23) /*!< SDIO ATAEND interrupt flag */ - -/* SDIO power control */ -#define PWRCTL_PWRCTL(regval) (BITS(0,1) & ((uint32_t)(regval) << 0)) -#define SDIO_POWER_OFF PWRCTL_PWRCTL(0) /*!< SDIO power off */ -#define SDIO_POWER_ON PWRCTL_PWRCTL(3) /*!< SDIO power on */ - -/* SDIO card bus mode control */ -#define CLKCTL_BUSMODE(regval) (BITS(11,12) & ((uint32_t)(regval) << 11)) -#define SDIO_BUSMODE_1BIT CLKCTL_BUSMODE(0) /*!< 1-bit SDIO card bus mode */ -#define SDIO_BUSMODE_4BIT CLKCTL_BUSMODE(1) /*!< 4-bit SDIO card bus mode */ -#define SDIO_BUSMODE_8BIT CLKCTL_BUSMODE(2) /*!< 8-bit SDIO card bus mode */ - -/* SDIO_CLK clock edge selection */ -#define SDIO_SDIOCLKEDGE_RISING (uint32_t)0x00000000U /*!< select the rising edge of the SDIOCLK to generate SDIO_CLK */ -#define SDIO_SDIOCLKEDGE_FALLING SDIO_CLKCTL_CLKEDGE /*!< select the falling edge of the SDIOCLK to generate SDIO_CLK */ - -/* clock bypass enable or disable */ -#define SDIO_CLOCKBYPASS_DISABLE (uint32_t)0x00000000U /*!< no bypass */ -#define SDIO_CLOCKBYPASS_ENABLE SDIO_CLKCTL_CLKBYP /*!< clock bypass */ - -/* SDIO_CLK clock dynamic switch on/off for power saving */ -#define SDIO_CLOCKPWRSAVE_DISABLE (uint32_t)0x00000000U /*!< SDIO_CLK clock is always on */ -#define SDIO_CLOCKPWRSAVE_ENABLE SDIO_CLKCTL_CLKPWRSAV /*!< SDIO_CLK closed when bus is idle */ - -/* SDIO command response type */ -#define CMDCTL_CMDRESP(regval) (BITS(6,7) & ((uint32_t)(regval) << 6)) -#define SDIO_RESPONSETYPE_NO CMDCTL_CMDRESP(0) /*!< no response */ -#define SDIO_RESPONSETYPE_SHORT CMDCTL_CMDRESP(1) /*!< short response */ -#define SDIO_RESPONSETYPE_LONG CMDCTL_CMDRESP(3) /*!< long response */ - -/* command state machine wait type */ -#define SDIO_WAITTYPE_NO (uint32_t)0x00000000U /*!< not wait interrupt */ -#define SDIO_WAITTYPE_INTERRUPT SDIO_CMDCTL_INTWAIT /*!< wait interrupt */ -#define SDIO_WAITTYPE_DATAEND SDIO_CMDCTL_WAITDEND /*!< wait the end of data transfer */ - -#define SDIO_RESPONSE0 (uint32_t)0x00000000U /*!< card response[31:0]/card response[127:96] */ -#define SDIO_RESPONSE1 (uint32_t)0x00000001U /*!< card response[95:64] */ -#define SDIO_RESPONSE2 (uint32_t)0x00000002U /*!< card response[63:32] */ -#define SDIO_RESPONSE3 (uint32_t)0x00000003U /*!< card response[31:1], plus bit 0 */ - -/* SDIO data block size */ -#define DATACTL_BLKSZ(regval) (BITS(4,7) & ((uint32_t)(regval) << 4)) -#define SDIO_DATABLOCKSIZE_1BYTE DATACTL_BLKSZ(0) /*!< block size = 1 byte */ -#define SDIO_DATABLOCKSIZE_2BYTES DATACTL_BLKSZ(1) /*!< block size = 2 bytes */ -#define SDIO_DATABLOCKSIZE_4BYTES DATACTL_BLKSZ(2) /*!< block size = 4 bytes */ -#define SDIO_DATABLOCKSIZE_8BYTES DATACTL_BLKSZ(3) /*!< block size = 8 bytes */ -#define SDIO_DATABLOCKSIZE_16BYTES DATACTL_BLKSZ(4) /*!< block size = 16 bytes */ -#define SDIO_DATABLOCKSIZE_32BYTES DATACTL_BLKSZ(5) /*!< block size = 32 bytes */ -#define SDIO_DATABLOCKSIZE_64BYTES DATACTL_BLKSZ(6) /*!< block size = 64 bytes */ -#define SDIO_DATABLOCKSIZE_128BYTES DATACTL_BLKSZ(7) /*!< block size = 128 bytes */ -#define SDIO_DATABLOCKSIZE_256BYTES DATACTL_BLKSZ(8) /*!< block size = 256 bytes */ -#define SDIO_DATABLOCKSIZE_512BYTES DATACTL_BLKSZ(9) /*!< block size = 512 bytes */ -#define SDIO_DATABLOCKSIZE_1024BYTES DATACTL_BLKSZ(10) /*!< block size = 1024 bytes */ -#define SDIO_DATABLOCKSIZE_2048BYTES DATACTL_BLKSZ(11) /*!< block size = 2048 bytes */ -#define SDIO_DATABLOCKSIZE_4096BYTES DATACTL_BLKSZ(12) /*!< block size = 4096 bytes */ -#define SDIO_DATABLOCKSIZE_8192BYTES DATACTL_BLKSZ(13) /*!< block size = 8192 bytes */ -#define SDIO_DATABLOCKSIZE_16384BYTES DATACTL_BLKSZ(14) /*!< block size = 16384 bytes */ - -/* SDIO data transfer mode */ -#define SDIO_TRANSMODE_BLOCK (uint32_t)0x00000000U /*!< block transfer */ -#define SDIO_TRANSMODE_STREAM SDIO_DATACTL_TRANSMOD /*!< stream transfer or SDIO multibyte transfer */ - -/* SDIO data transfer direction */ -#define SDIO_TRANSDIRECTION_TOCARD (uint32_t)0x00000000U /*!< write data to card */ -#define SDIO_TRANSDIRECTION_TOSDIO SDIO_DATACTL_DATADIR /*!< read data from card */ - -/* SDIO read wait type */ -#define SDIO_READWAITTYPE_DAT2 (uint32_t)0x00000000U /*!< read wait control using SDIO_DAT[2] */ -#define SDIO_READWAITTYPE_CLK SDIO_DATACTL_RWTYPE /*!< read wait control by stopping SDIO_CLK */ - -/* function declarations */ -/* de/initialization functions, hardware clock, bus mode, power_state and SDIO clock configuration */ -/* deinitialize the SDIO */ -void sdio_deinit(void); -/* configure the SDIO clock */ -void sdio_clock_config(uint32_t clock_edge, uint32_t clock_bypass, uint32_t clock_powersave, uint16_t clock_division); -/* enable hardware clock control */ -void sdio_hardware_clock_enable(void); -/* disable hardware clock control */ -void sdio_hardware_clock_disable(void); -/* set different SDIO card bus mode */ -void sdio_bus_mode_set(uint32_t bus_mode); -/* set the SDIO power state */ -void sdio_power_state_set(uint32_t power_state); -/* get the SDIO power state */ -uint32_t sdio_power_state_get(void); -/* enable SDIO_CLK clock output */ -void sdio_clock_enable(void); -/* disable SDIO_CLK clock output */ -void sdio_clock_disable(void); - -/* configure the command index, argument, response type, wait type and CSM to send command functions */ -/* configure the command and response */ -void sdio_command_response_config(uint32_t cmd_index, uint32_t cmd_argument, uint32_t response_type); -/* set the command state machine wait type */ -void sdio_wait_type_set(uint32_t wait_type); -/* enable the CSM(command state machine) */ -void sdio_csm_enable(void); -/* disable the CSM(command state machine) */ -void sdio_csm_disable(void); -/* get the last response command index */ -uint8_t sdio_command_index_get(void); -/* get the response for the last received command */ -uint32_t sdio_response_get(uint32_t sdio_responsex); - -/* configure the data timeout, length, block size, transfer mode, direction and DSM for data transfer functions */ -/* configure the data timeout, data length and data block size */ -void sdio_data_config(uint32_t data_timeout, uint32_t data_length, uint32_t data_blocksize); -/* configure the data transfer mode and direction */ -void sdio_data_transfer_config(uint32_t transfer_mode, uint32_t transfer_direction); -/* enable the DSM(data state machine) for data transfer */ -void sdio_dsm_enable(void); -/* disable the DSM(data state machine) */ -void sdio_dsm_disable(void); -/* write data(one word) to the transmit FIFO */ -void sdio_data_write(uint32_t data); -/* read data(one word) from the receive FIFO */ -uint32_t sdio_data_read(void); -/* get the number of remaining data bytes to be transferred to card */ -uint32_t sdio_data_counter_get(void); -/* get the number of words remaining to be written or read from FIFO */ -uint32_t sdio_fifo_counter_get(void); -/* enable the DMA request for SDIO */ -void sdio_dma_enable(void); -/* disable the DMA request for SDIO */ -void sdio_dma_disable(void); - -/* flag and interrupt functions */ -/* get the flags state of SDIO */ -FlagStatus sdio_flag_get(uint32_t flag); -/* clear the pending flags of SDIO */ -void sdio_flag_clear(uint32_t flag); -/* enable the SDIO interrupt */ -void sdio_interrupt_enable(uint32_t int_flag); -/* disable the SDIO interrupt */ -void sdio_interrupt_disable(uint32_t int_flag); -/* get the interrupt flags state of SDIO */ -FlagStatus sdio_interrupt_flag_get(uint32_t int_flag); -/* clear the interrupt pending flags of SDIO */ -void sdio_interrupt_flag_clear(uint32_t int_flag); - -/* SD I/O card functions */ -/* enable the read wait mode(SD I/O only) */ -void sdio_readwait_enable(void); -/* disable the read wait mode(SD I/O only) */ -void sdio_readwait_disable(void); -/* enable the function that stop the read wait process(SD I/O only) */ -void sdio_stop_readwait_enable(void); -/* disable the function that stop the read wait process(SD I/O only) */ -void sdio_stop_readwait_disable(void); -/* set the read wait type(SD I/O only) */ -void sdio_readwait_type_set(uint32_t readwait_type); -/* enable the SD I/O mode specific operation(SD I/O only) */ -void sdio_operation_enable(void); -/* disable the SD I/O mode specific operation(SD I/O only) */ -void sdio_operation_disable(void); -/* enable the SD I/O suspend operation(SD I/O only) */ -void sdio_suspend_enable(void); -/* disable the SD I/O suspend operation(SD I/O only) */ -void sdio_suspend_disable(void); - -/* CE-ATA functions */ -/* enable the CE-ATA command(CE-ATA only) */ -void sdio_ceata_command_enable(void); -/* disable the CE-ATA command(CE-ATA only) */ -void sdio_ceata_command_disable(void); -/* enable the CE-ATA interrupt(CE-ATA only) */ -void sdio_ceata_interrupt_enable(void); -/* disable the CE-ATA interrupt(CE-ATA only) */ -void sdio_ceata_interrupt_disable(void); -/* enable the CE-ATA command completion signal(CE-ATA only) */ -void sdio_ceata_command_completion_enable(void); -/* disable the CE-ATA command completion signal(CE-ATA only) */ -void sdio_ceata_command_completion_disable(void); - -#endif /* GD32F4XX_SDIO_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_spi.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_spi.h deleted file mode 100644 index fdad2183ff..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_spi.h +++ /dev/null @@ -1,379 +0,0 @@ -/*! - \file gd32f4xx_spi.h - \brief definitions for the SPI - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - - -#ifndef GD32F4XX_SPI_H -#define GD32F4XX_SPI_H - -#include "gd32f4xx.h" - -/* SPIx(x=0,1,2,3,4,5) definitions */ -#define SPI0 (SPI_BASE + 0x0000F800U) -#define SPI1 SPI_BASE -#define SPI2 (SPI_BASE + 0x00000400U) -#define SPI3 (SPI_BASE + 0x0000FC00U) -#define SPI4 (SPI_BASE + 0x00011800U) -#define SPI5 (SPI_BASE + 0x00011C00U) - -/* I2Sx_ADD(x=1,2) definitions */ -#define I2S1_ADD I2S_ADD_BASE -#define I2S2_ADD (I2S_ADD_BASE + 0x00000C00U) - -/* SPI registers definitions */ -#define SPI_CTL0(spix) REG32((spix) + 0x00U) /*!< SPI control register 0 */ -#define SPI_CTL1(spix) REG32((spix) + 0x04U) /*!< SPI control register 1*/ -#define SPI_STAT(spix) REG32((spix) + 0x08U) /*!< SPI status register */ -#define SPI_DATA(spix) REG32((spix) + 0x0CU) /*!< SPI data register */ -#define SPI_CRCPOLY(spix) REG32((spix) + 0x10U) /*!< SPI CRC polynomial register */ -#define SPI_RCRC(spix) REG32((spix) + 0x14U) /*!< SPI receive CRC register */ -#define SPI_TCRC(spix) REG32((spix) + 0x18U) /*!< SPI transmit CRC register */ -#define SPI_I2SCTL(spix) REG32((spix) + 0x1CU) /*!< SPI I2S control register */ -#define SPI_I2SPSC(spix) REG32((spix) + 0x20U) /*!< SPI I2S clock prescaler register */ -#define SPI_QCTL(spix) REG32((spix) + 0x80U) /*!< SPI quad mode control register */ - -/* I2S_ADD registers definitions */ -#define I2S_ADD_CTL0(i2sx_add) REG32((i2sx_add) + 0x00U) /*!< I2S_ADD control register 0 */ -#define I2S_ADD_CTL1(i2sx_add) REG32((i2sx_add) + 0x04U) /*!< I2S_ADD control register 1*/ -#define I2S_ADD_STAT(i2sx_add) REG32((i2sx_add) + 0x08U) /*!< I2S_ADD status register */ -#define I2S_ADD_DATA(i2sx_add) REG32((i2sx_add) + 0x0CU) /*!< I2S_ADD data register */ -#define I2S_ADD_CRCPOLY(i2sx_add) REG32((i2sx_add) + 0x10U) /*!< I2S_ADD CRC polynomial register */ -#define I2S_ADD_RCRC(i2sx_add) REG32((i2sx_add) + 0x14U) /*!< I2S_ADD receive CRC register */ -#define I2S_ADD_TCRC(i2sx_add) REG32((i2sx_add) + 0x18U) /*!< I2S_ADD transmit CRC register */ -#define I2S_ADD_I2SCTL(i2sx_add) REG32((i2sx_add) + 0x1CU) /*!< I2S_ADD I2S control register */ -#define I2S_ADD_I2SPSC(i2sx_add) REG32((i2sx_add) + 0x20U) /*!< I2S_ADD I2S clock prescaler register */ - -/* bits definitions */ -/* SPI_CTL0 */ -#define SPI_CTL0_CKPH BIT(0) /*!< clock phase selection*/ -#define SPI_CTL0_CKPL BIT(1) /*!< clock polarity selection */ -#define SPI_CTL0_MSTMOD BIT(2) /*!< master mode enable */ -#define SPI_CTL0_PSC BITS(3,5) /*!< master clock prescaler selection */ -#define SPI_CTL0_SPIEN BIT(6) /*!< SPI enable*/ -#define SPI_CTL0_LF BIT(7) /*!< lsb first mode */ -#define SPI_CTL0_SWNSS BIT(8) /*!< nss pin selection in nss software mode */ -#define SPI_CTL0_SWNSSEN BIT(9) /*!< nss software mode selection */ -#define SPI_CTL0_RO BIT(10) /*!< receive only */ -#define SPI_CTL0_FF16 BIT(11) /*!< data frame size */ -#define SPI_CTL0_CRCNT BIT(12) /*!< CRC next transfer */ -#define SPI_CTL0_CRCEN BIT(13) /*!< CRC calculation enable */ -#define SPI_CTL0_BDOEN BIT(14) /*!< bidirectional transmit output enable*/ -#define SPI_CTL0_BDEN BIT(15) /*!< bidirectional enable */ - -/* SPI_CTL1 */ -#define SPI_CTL1_DMAREN BIT(0) /*!< receive buffer dma enable */ -#define SPI_CTL1_DMATEN BIT(1) /*!< transmit buffer dma enable */ -#define SPI_CTL1_NSSDRV BIT(2) /*!< drive nss output */ -#define SPI_CTL1_TMOD BIT(4) /*!< SPI TI mode enable */ -#define SPI_CTL1_ERRIE BIT(5) /*!< errors interrupt enable */ -#define SPI_CTL1_RBNEIE BIT(6) /*!< receive buffer not empty interrupt enable */ -#define SPI_CTL1_TBEIE BIT(7) /*!< transmit buffer empty interrupt enable */ - -/* SPI_STAT */ -#define SPI_STAT_RBNE BIT(0) /*!< receive buffer not empty */ -#define SPI_STAT_TBE BIT(1) /*!< transmit buffer empty */ -#define SPI_STAT_I2SCH BIT(2) /*!< I2S channel side */ -#define SPI_STAT_TXURERR BIT(3) /*!< I2S transmission underrun error bit */ -#define SPI_STAT_CRCERR BIT(4) /*!< SPI CRC error bit */ -#define SPI_STAT_CONFERR BIT(5) /*!< SPI configuration error bit */ -#define SPI_STAT_RXORERR BIT(6) /*!< SPI reception overrun error bit */ -#define SPI_STAT_TRANS BIT(7) /*!< transmitting on-going bit */ -#define SPI_STAT_FERR BIT(8) /*!< format error bit */ - -/* SPI_DATA */ -#define SPI_DATA_DATA BITS(0,15) /*!< data transfer register */ - -/* SPI_CRCPOLY */ -#define SPI_CRCPOLY_CPR BITS(0,15) /*!< CRC polynomial register */ - -/* SPI_RCRC */ -#define SPI_RCRC_RCR BITS(0,15) /*!< RX CRC register */ - -/* SPI_TCRC */ -#define SPI_TCRC_TCR BITS(0,15) /*!< TX CRC register */ - -/* SPI_I2SCTL */ -#define SPI_I2SCTL_CHLEN BIT(0) /*!< channel length */ -#define SPI_I2SCTL_DTLEN BITS(1,2) /*!< data length */ -#define SPI_I2SCTL_CKPL BIT(3) /*!< idle state clock polarity */ -#define SPI_I2SCTL_I2SSTD BITS(4,5) /*!< I2S standard selection */ -#define SPI_I2SCTL_PCMSMOD BIT(7) /*!< PCM frame synchronization mode */ -#define SPI_I2SCTL_I2SOPMOD BITS(8,9) /*!< I2S operation mode */ -#define SPI_I2SCTL_I2SEN BIT(10) /*!< I2S enable */ -#define SPI_I2SCTL_I2SSEL BIT(11) /*!< I2S mode selection */ - -/* SPI_I2S_PSC */ -#define SPI_I2SPSC_DIV BITS(0,7) /*!< dividing factor for the prescaler */ -#define SPI_I2SPSC_OF BIT(8) /*!< odd factor for the prescaler */ -#define SPI_I2SPSC_MCKOEN BIT(9) /*!< I2S MCK output enable */ - -/* SPI_SPI_QCTL(only SPI5) */ -#define SPI_QCTL_QMOD BIT(0) /*!< quad-SPI mode enable */ -#define SPI_QCTL_QRD BIT(1) /*!< quad-SPI mode read select */ -#define SPI_QCTL_IO23_DRV BIT(2) /*!< drive SPI_IO2 and SPI_IO3 enable */ - -/* constants definitions */ -/* SPI and I2S parameter struct definitions */ -typedef struct -{ - uint32_t device_mode; /*!< SPI master or slave */ - uint32_t trans_mode; /*!< SPI transtype */ - uint32_t frame_size; /*!< SPI frame size */ - uint32_t nss; /*!< SPI nss control by handware or software */ - uint32_t endian; /*!< SPI big endian or little endian */ - uint32_t clock_polarity_phase; /*!< SPI clock phase and polarity */ - uint32_t prescale; /*!< SPI prescale factor */ -}spi_parameter_struct; - -/* SPI mode definitions */ -#define SPI_MASTER (SPI_CTL0_MSTMOD | SPI_CTL0_SWNSS) /*!< SPI as master */ -#define SPI_SLAVE ((uint32_t)0x00000000U) /*!< SPI as slave */ - -/* SPI bidirectional transfer direction */ -#define SPI_BIDIRECTIONAL_TRANSMIT SPI_CTL0_BDOEN /*!< SPI work in transmit-only mode */ -#define SPI_BIDIRECTIONAL_RECEIVE (~SPI_CTL0_BDOEN) /*!< SPI work in receive-only mode */ - -/* SPI transmit type */ -#define SPI_TRANSMODE_FULLDUPLEX ((uint32_t)0x00000000U) /*!< SPI receive and send data at fullduplex communication */ -#define SPI_TRANSMODE_RECEIVEONLY SPI_CTL0_RO /*!< SPI only receive data */ -#define SPI_TRANSMODE_BDRECEIVE SPI_CTL0_BDEN /*!< bidirectional receive data */ -#define SPI_TRANSMODE_BDTRANSMIT (SPI_CTL0_BDEN | SPI_CTL0_BDOEN) /*!< bidirectional transmit data*/ - -/* SPI frame size */ -#define SPI_FRAMESIZE_16BIT SPI_CTL0_FF16 /*!< SPI frame size is 16 bits */ -#define SPI_FRAMESIZE_8BIT ((uint32_t)0x00000000U) /*!< SPI frame size is 8 bits */ - -/* SPI NSS control mode */ -#define SPI_NSS_SOFT SPI_CTL0_SWNSSEN /*!< SPI nss control by sofrware */ -#define SPI_NSS_HARD ((uint32_t)0x00000000U) /*!< SPI nss control by hardware */ - -/* SPI transmit way */ -#define SPI_ENDIAN_MSB ((uint32_t)0x00000000U) /*!< SPI transmit way is big endian: transmit MSB first */ -#define SPI_ENDIAN_LSB SPI_CTL0_LF /*!< SPI transmit way is little endian: transmit LSB first */ - -/* SPI clock polarity and phase */ -#define SPI_CK_PL_LOW_PH_1EDGE ((uint32_t)0x00000000U) /*!< SPI clock polarity is low level and phase is first edge */ -#define SPI_CK_PL_HIGH_PH_1EDGE SPI_CTL0_CKPL /*!< SPI clock polarity is high level and phase is first edge */ -#define SPI_CK_PL_LOW_PH_2EDGE SPI_CTL0_CKPH /*!< SPI clock polarity is low level and phase is second edge */ -#define SPI_CK_PL_HIGH_PH_2EDGE (SPI_CTL0_CKPL|SPI_CTL0_CKPH) /*!< SPI clock polarity is high level and phase is second edge */ - -/* SPI clock prescale factor */ -#define CTL0_PSC(regval) (BITS(3,5)&((uint32_t)(regval)<<3)) -#define SPI_PSC_2 CTL0_PSC(0) /*!< SPI clock prescale factor is 2 */ -#define SPI_PSC_4 CTL0_PSC(1) /*!< SPI clock prescale factor is 4 */ -#define SPI_PSC_8 CTL0_PSC(2) /*!< SPI clock prescale factor is 8 */ -#define SPI_PSC_16 CTL0_PSC(3) /*!< SPI clock prescale factor is 16 */ -#define SPI_PSC_32 CTL0_PSC(4) /*!< SPI clock prescale factor is 32 */ -#define SPI_PSC_64 CTL0_PSC(5) /*!< SPI clock prescale factor is 64 */ -#define SPI_PSC_128 CTL0_PSC(6) /*!< SPI clock prescale factor is 128 */ -#define SPI_PSC_256 CTL0_PSC(7) /*!< SPI clock prescale factor is 256 */ - -/* I2S audio sample rate */ -#define I2S_AUDIOSAMPLE_8K ((uint32_t)8000U) /*!< I2S audio sample rate is 8KHz */ -#define I2S_AUDIOSAMPLE_11K ((uint32_t)11025U) /*!< I2S audio sample rate is 11KHz */ -#define I2S_AUDIOSAMPLE_16K ((uint32_t)16000U) /*!< I2S audio sample rate is 16KHz */ -#define I2S_AUDIOSAMPLE_22K ((uint32_t)22050U) /*!< I2S audio sample rate is 22KHz */ -#define I2S_AUDIOSAMPLE_32K ((uint32_t)32000U) /*!< I2S audio sample rate is 32KHz */ -#define I2S_AUDIOSAMPLE_44K ((uint32_t)44100U) /*!< I2S audio sample rate is 44KHz */ -#define I2S_AUDIOSAMPLE_48K ((uint32_t)48000U) /*!< I2S audio sample rate is 48KHz */ -#define I2S_AUDIOSAMPLE_96K ((uint32_t)96000U) /*!< I2S audio sample rate is 96KHz */ -#define I2S_AUDIOSAMPLE_192K ((uint32_t)192000U) /*!< I2S audio sample rate is 192KHz */ - -/* I2S frame format */ -#define I2SCTL_DTLEN(regval) (BITS(1,2)&((uint32_t)(regval)<<1)) -#define I2S_FRAMEFORMAT_DT16B_CH16B I2SCTL_DTLEN(0) /*!< I2S data length is 16 bit and channel length is 16 bit */ -#define I2S_FRAMEFORMAT_DT16B_CH32B (I2SCTL_DTLEN(0)|SPI_I2SCTL_CHLEN) /*!< I2S data length is 16 bit and channel length is 32 bit */ -#define I2S_FRAMEFORMAT_DT24B_CH32B (I2SCTL_DTLEN(1)|SPI_I2SCTL_CHLEN) /*!< I2S data length is 24 bit and channel length is 32 bit */ -#define I2S_FRAMEFORMAT_DT32B_CH32B (I2SCTL_DTLEN(2)|SPI_I2SCTL_CHLEN) /*!< I2S data length is 32 bit and channel length is 32 bit */ - -/* I2S master clock output */ -#define I2S_MCKOUT_DISABLE ((uint32_t)0x00000000U) /*!< I2S master clock output disable */ -#define I2S_MCKOUT_ENABLE SPI_I2SPSC_MCKOEN /*!< I2S master clock output enable */ - -/* I2S operation mode */ -#define I2SCTL_I2SOPMOD(regval) (BITS(8,9)&((uint32_t)(regval)<<8)) -#define I2S_MODE_SLAVETX I2SCTL_I2SOPMOD(0) /*!< I2S slave transmit mode */ -#define I2S_MODE_SLAVERX I2SCTL_I2SOPMOD(1) /*!< I2S slave receive mode */ -#define I2S_MODE_MASTERTX I2SCTL_I2SOPMOD(2) /*!< I2S master transmit mode */ -#define I2S_MODE_MASTERRX I2SCTL_I2SOPMOD(3) /*!< I2S master receive mode */ - -/* I2S standard */ -#define I2SCTL_I2SSTD(regval) (BITS(4,5)&((uint32_t)(regval)<<4)) -#define I2S_STD_PHILLIPS I2SCTL_I2SSTD(0) /*!< I2S phillips standard */ -#define I2S_STD_MSB I2SCTL_I2SSTD(1) /*!< I2S MSB standard */ -#define I2S_STD_LSB I2SCTL_I2SSTD(2) /*!< I2S LSB standard */ -#define I2S_STD_PCMSHORT I2SCTL_I2SSTD(3) /*!< I2S PCM short standard */ -#define I2S_STD_PCMLONG (I2SCTL_I2SSTD(3) | SPI_I2SCTL_PCMSMOD) /*!< I2S PCM long standard */ - -/* I2S clock polarity */ -#define I2S_CKPL_LOW ((uint32_t)0x00000000U) /*!< I2S clock polarity low level */ -#define I2S_CKPL_HIGH SPI_I2SCTL_CKPL /*!< I2S clock polarity high level */ - -/* SPI DMA constants definitions */ -#define SPI_DMA_TRANSMIT ((uint8_t)0x00U) /*!< SPI transmit data use DMA */ -#define SPI_DMA_RECEIVE ((uint8_t)0x01U) /*!< SPI receive data use DMA */ - -/* SPI CRC constants definitions */ -#define SPI_CRC_TX ((uint8_t)0x00U) /*!< SPI transmit CRC value */ -#define SPI_CRC_RX ((uint8_t)0x01U) /*!< SPI receive CRC value */ - -/* SPI/I2S interrupt enable/disable constants definitions */ -#define SPI_I2S_INT_TBE ((uint8_t)0x00U) /*!< transmit buffer empty interrupt */ -#define SPI_I2S_INT_RBNE ((uint8_t)0x01U) /*!< receive buffer not empty interrupt */ -#define SPI_I2S_INT_ERR ((uint8_t)0x02U) /*!< error interrupt */ - -/* SPI/I2S interrupt flag constants definitions */ -#define SPI_I2S_INT_FLAG_TBE ((uint8_t)0x00U) /*!< transmit buffer empty interrupt flag */ -#define SPI_I2S_INT_FLAG_RBNE ((uint8_t)0x01U) /*!< receive buffer not empty interrupt flag */ -#define SPI_I2S_INT_FLAG_RXORERR ((uint8_t)0x02U) /*!< overrun interrupt flag */ -#define SPI_INT_FLAG_CONFERR ((uint8_t)0x03U) /*!< config error interrupt flag */ -#define SPI_INT_FLAG_CRCERR ((uint8_t)0x04U) /*!< CRC error interrupt flag */ -#define I2S_INT_FLAG_TXURERR ((uint8_t)0x05U) /*!< underrun error interrupt flag */ -#define SPI_I2S_INT_FLAG_FERR ((uint8_t)0x06U) /*!< format error interrupt flag */ - -/* SPI/I2S flag definitions */ -#define SPI_FLAG_RBNE SPI_STAT_RBNE /*!< receive buffer not empty flag */ -#define SPI_FLAG_TBE SPI_STAT_TBE /*!< transmit buffer empty flag */ -#define SPI_FLAG_CRCERR SPI_STAT_CRCERR /*!< CRC error flag */ -#define SPI_FLAG_CONFERR SPI_STAT_CONFERR /*!< mode config error flag */ -#define SPI_FLAG_RXORERR SPI_STAT_RXORERR /*!< receive overrun error flag */ -#define SPI_FLAG_TRANS SPI_STAT_TRANS /*!< transmit on-going flag */ -#define SPI_FLAG_FERR SPI_STAT_FERR /*!< format error flag */ -#define I2S_FLAG_RBNE SPI_STAT_RBNE /*!< receive buffer not empty flag */ -#define I2S_FLAG_TBE SPI_STAT_TBE /*!< transmit buffer empty flag */ -#define I2S_FLAG_CH SPI_STAT_I2SCH /*!< channel side flag */ -#define I2S_FLAG_TXURERR SPI_STAT_TXURERR /*!< underrun error flag */ -#define I2S_FLAG_RXORERR SPI_STAT_RXORERR /*!< overrun error flag */ -#define I2S_FLAG_TRANS SPI_STAT_TRANS /*!< transmit on-going flag */ -#define I2S_FLAG_FERR SPI_STAT_FERR /*!< format error flag */ - -/* function declarations */ -/* initialization functions */ -/* deinitialize SPI and I2S */ -void spi_i2s_deinit(uint32_t spi_periph); -/* initialize the parameters of SPI struct with the default values */ -void spi_struct_para_init(spi_parameter_struct* spi_struct); -/* initialize SPI parameter */ -void spi_init(uint32_t spi_periph,spi_parameter_struct* spi_struct); -/* enable SPI */ -void spi_enable(uint32_t spi_periph); -/* disable SPI */ -void spi_disable(uint32_t spi_periph); - -/* initialize I2S parameter */ -void i2s_init(uint32_t spi_periph,uint32_t i2s_mode,uint32_t i2s_standard,uint32_t i2s_ckpl); -/* configure I2S prescale */ -void i2s_psc_config(uint32_t spi_periph,uint32_t i2s_audiosample,uint32_t i2s_frameformat,uint32_t i2s_mckout); -/* enable I2S */ -void i2s_enable(uint32_t spi_periph); -/* disable I2S */ -void i2s_disable(uint32_t spi_periph); - -/* NSS functions */ -/* enable SPI nss output */ -void spi_nss_output_enable(uint32_t spi_periph); -/* disable SPI nss output */ -void spi_nss_output_disable(uint32_t spi_periph); -/* SPI nss pin high level in software mode */ -void spi_nss_internal_high(uint32_t spi_periph); -/* SPI nss pin low level in software mode */ -void spi_nss_internal_low(uint32_t spi_periph); - -/* SPI DMA functions */ -/* enable SPI DMA */ -void spi_dma_enable(uint32_t spi_periph,uint8_t spi_dma); -/* disable SPI DMA */ -void spi_dma_disable(uint32_t spi_periph,uint8_t spi_dma); - -/* SPI/I2S transfer configure functions */ -/* configure SPI/I2S data frame format */ -void spi_i2s_data_frame_format_config(uint32_t spi_periph,uint16_t frame_format); -/* SPI transmit data */ -void spi_i2s_data_transmit(uint32_t spi_periph,uint16_t data); -/* SPI receive data */ -uint16_t spi_i2s_data_receive(uint32_t spi_periph); -/* configure SPI bidirectional transfer direction */ -void spi_bidirectional_transfer_config(uint32_t spi_periph,uint32_t transfer_direction); - -/* SPI CRC functions */ -/* set SPI CRC polynomial */ -void spi_crc_polynomial_set(uint32_t spi_periph,uint16_t crc_poly); -/* get SPI CRC polynomial */ -uint16_t spi_crc_polynomial_get(uint32_t spi_periph); -/* turn on SPI CRC function */ -void spi_crc_on(uint32_t spi_periph); -/* turn off SPI CRC function */ -void spi_crc_off(uint32_t spi_periph); -/* SPI next data is CRC value */ -void spi_crc_next(uint32_t spi_periph); -/* get SPI CRC send value or receive value */ -uint16_t spi_crc_get(uint32_t spi_periph,uint8_t spi_crc); - -/* SPI TI mode functions */ -/* enable SPI TI mode */ -void spi_ti_mode_enable(uint32_t spi_periph); -/* disable SPI TI mode */ -void spi_ti_mode_disable(uint32_t spi_periph); - -/* configure i2s full duplex mode */ -void i2s_full_duplex_mode_config(uint32_t i2s_add_periph,uint32_t i2s_mode,uint32_t i2s_standard,uint32_t i2s_ckpl,uint32_t i2s_frameformat); - -/* quad wire SPI functions */ -/* enable quad wire SPI */ -void qspi_enable(uint32_t spi_periph); -/* disable quad wire SPI */ -void qspi_disable(uint32_t spi_periph); -/* enable quad wire SPI write */ -void qspi_write_enable(uint32_t spi_periph); -/* enable quad wire SPI read */ -void qspi_read_enable(uint32_t spi_periph); -/* enable quad wire SPI_IO2 and SPI_IO3 pin output */ -void qspi_io23_output_enable(uint32_t spi_periph); -/* disable quad wire SPI_IO2 and SPI_IO3 pin output */ -void qspi_io23_output_disable(uint32_t spi_periph); - -/* flag & interrupt functions */ -/* enable SPI interrupt */ -void spi_i2s_interrupt_enable(uint32_t spi_periph,uint8_t spi_i2s_int); -/* disable SPI interrupt */ -void spi_i2s_interrupt_disable(uint32_t spi_periph,uint8_t spi_i2s_int); -/* get SPI and I2S interrupt status*/ -FlagStatus spi_i2s_interrupt_flag_get(uint32_t spi_periph,uint8_t spi_i2s_int); -/* get SPI and I2S flag status */ -FlagStatus spi_i2s_flag_get(uint32_t spi_periph,uint32_t spi_i2s_flag); -/* clear SPI CRC error flag status */ -void spi_crc_error_clear(uint32_t spi_periph); - -#endif /* GD32F4XX_SPI_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_syscfg.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_syscfg.h deleted file mode 100644 index edee55e21c..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_syscfg.h +++ /dev/null @@ -1,181 +0,0 @@ -/*! - \file gd32f4xx_syscfg.h - \brief definitions for the SYSCFG - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_SYSCFG_H -#define GD32F4XX_SYSCFG_H - -#include "gd32f4xx.h" - -/* SYSCFG definitions */ -#define SYSCFG SYSCFG_BASE - -/* registers definitions */ -#define SYSCFG_CFG0 REG32(SYSCFG + 0x00U) /*!< system configuration register 0 */ -#define SYSCFG_CFG1 REG32(SYSCFG + 0x04U) /*!< system configuration register 1 */ -#define SYSCFG_EXTISS0 REG32(SYSCFG + 0x08U) /*!< EXTI sources selection register 0 */ -#define SYSCFG_EXTISS1 REG32(SYSCFG + 0x0CU) /*!< EXTI sources selection register 1 */ -#define SYSCFG_EXTISS2 REG32(SYSCFG + 0x10U) /*!< EXTI sources selection register 2 */ -#define SYSCFG_EXTISS3 REG32(SYSCFG + 0x14U) /*!< EXTI sources selection register 3 */ -#define SYSCFG_CPSCTL REG32(SYSCFG + 0x20U) /*!< system I/O compensation control register */ - -/* SYSCFG_CFG0 bits definitions */ -#define SYSCFG_CFG0_BOOT_MODE BITS(0,2) /*!< SYSCFG memory remap config */ -#define SYSCFG_CFG0_FMC_SWP BIT(8) /*!< FMC memory swap config */ -#define SYSCFG_CFG0_EXMC_SWP BITS(10,11) /*!< EXMC memory swap config */ - -/* SYSCFG_CFG1 bits definitions */ -#define SYSCFG_CFG1_ENET_PHY_SEL BIT(23) /*!< Ethernet PHY selection config */ - -/* SYSCFG_EXTISS0 bits definitions */ -#define SYSCFG_EXTISS0_EXTI0_SS BITS(0,3) /*!< EXTI 0 configuration */ -#define SYSCFG_EXTISS0_EXTI1_SS BITS(4,7) /*!< EXTI 1 configuration */ -#define SYSCFG_EXTISS0_EXTI2_SS BITS(8,11) /*!< EXTI 2 configuration */ -#define SYSCFG_EXTISS0_EXTI3_SS BITS(12,15) /*!< EXTI 3 configuration */ - -/* SYSCFG_EXTISS1 bits definitions */ -#define SYSCFG_EXTISS1_EXTI4_SS BITS(0,3) /*!< EXTI 4 configuration */ -#define SYSCFG_EXTISS1_EXTI5_SS BITS(4,7) /*!< EXTI 5 configuration */ -#define SYSCFG_EXTISS1_EXTI6_SS BITS(8,11) /*!< EXTI 6 configuration */ -#define SYSCFG_EXTISS1_EXTI7_SS BITS(12,15) /*!< EXTI 7 configuration */ - -/* SYSCFG_EXTISS2 bits definitions */ -#define SYSCFG_EXTISS2_EXTI8_SS BITS(0,3) /*!< EXTI 8 configuration */ -#define SYSCFG_EXTISS2_EXTI9_SS BITS(4,7) /*!< EXTI 9 configuration */ -#define SYSCFG_EXTISS2_EXTI10_SS BITS(8,11) /*!< EXTI 10 configuration */ -#define SYSCFG_EXTISS2_EXTI11_SS BITS(12,15) /*!< EXTI 11 configuration */ - -/* SYSCFG_EXTISS3 bits definitions */ -#define SYSCFG_EXTISS3_EXTI12_SS BITS(0,3) /*!< EXTI 12 configuration */ -#define SYSCFG_EXTISS3_EXTI13_SS BITS(4,7) /*!< EXTI 13 configuration */ -#define SYSCFG_EXTISS3_EXTI14_SS BITS(8,11) /*!< EXTI 14 configuration */ -#define SYSCFG_EXTISS3_EXTI15_SS BITS(12,15) /*!< EXTI 15 configuration */ - -/* SYSCFG_CPSCTL bits definitions */ -#define SYSCFG_CPSCTL_CPS_EN BIT(0) /*!< I/O compensation cell enable */ -#define SYSCFG_CPSCTL_CPS_RDY BIT(8) /*!< I/O compensation cell is ready or not */ - -/* constants definitions */ -/* boot mode definitions */ -#define SYSCFG_BOOTMODE_FLASH ((uint8_t)0x00U) /*!< main flash memory remap */ -#define SYSCFG_BOOTMODE_BOOTLOADER ((uint8_t)0x01U) /*!< boot loader remap */ -#define SYSCFG_BOOTMODE_EXMC_SRAM ((uint8_t)0x02U) /*!< SRAM/NOR 0 and 1 of EXMC remap */ -#define SYSCFG_BOOTMODE_SRAM ((uint8_t)0x03U) /*!< SRAM0 of on-chip SRAM remap */ -#define SYSCFG_BOOTMODE_EXMC_SDRAM ((uint8_t)0x04U) /*!< SDRAM bank0 of EXMC remap */ - -/* FMC swap definitions */ -#define SYSCFG_FMC_SWP_BANK0 ((uint32_t)0x00000000U) /*!< main flash Bank 0 is mapped at address 0x08000000 */ -#define SYSCFG_FMC_SWP_BANK1 ((uint32_t)0x00000100U) /*!< main flash Bank 1 is mapped at address 0x08000000 */ - -/* EXMC swap enable/disable */ -#define SYSCFG_EXMC_SWP_ENABLE ((uint32_t)0x00000400U) /*!< SDRAM bank 0 and bank 1 are swapped with NAND bank 1 and PC card */ -#define SYSCFG_EXMC_SWP_DISABLE ((uint32_t)0x00000000U) /*!< no memory mapping swap */ - -/* EXTI source select definition */ -#define EXTISS0 ((uint8_t)0x00U) /*!< EXTI source select GPIOx pin 0~3 */ -#define EXTISS1 ((uint8_t)0x01U) /*!< EXTI source select GPIOx pin 4~7 */ -#define EXTISS2 ((uint8_t)0x02U) /*!< EXTI source select GPIOx pin 8~11 */ -#define EXTISS3 ((uint8_t)0x03U) /*!< EXTI source select GPIOx pin 12~15 */ - -/* EXTI source select mask bits definition */ -#define EXTI_SS_MASK BITS(0,3) /*!< EXTI source select mask */ - -/* EXTI source select jumping step definition */ -#define EXTI_SS_JSTEP ((uint8_t)(0x04U)) /*!< EXTI source select jumping step */ - -/* EXTI source select moving step definition */ -#define EXTI_SS_MSTEP(pin) (EXTI_SS_JSTEP*((pin)%EXTI_SS_JSTEP)) /*!< EXTI source select moving step */ - -/* EXTI source port definitions */ -#define EXTI_SOURCE_GPIOA ((uint8_t)0x00U) /*!< EXTI GPIOA configuration */ -#define EXTI_SOURCE_GPIOB ((uint8_t)0x01U) /*!< EXTI GPIOB configuration */ -#define EXTI_SOURCE_GPIOC ((uint8_t)0x02U) /*!< EXTI GPIOC configuration */ -#define EXTI_SOURCE_GPIOD ((uint8_t)0x03U) /*!< EXTI GPIOD configuration */ -#define EXTI_SOURCE_GPIOE ((uint8_t)0x04U) /*!< EXTI GPIOE configuration */ -#define EXTI_SOURCE_GPIOF ((uint8_t)0x05U) /*!< EXTI GPIOF configuration */ -#define EXTI_SOURCE_GPIOG ((uint8_t)0x06U) /*!< EXTI GPIOG configuration */ -#define EXTI_SOURCE_GPIOH ((uint8_t)0x07U) /*!< EXTI GPIOH configuration */ -#define EXTI_SOURCE_GPIOI ((uint8_t)0x08U) /*!< EXTI GPIOI configuration */ - -/* EXTI source pin definitions */ -#define EXTI_SOURCE_PIN0 ((uint8_t)0x00U) /*!< EXTI GPIO pin0 configuration */ -#define EXTI_SOURCE_PIN1 ((uint8_t)0x01U) /*!< EXTI GPIO pin1 configuration */ -#define EXTI_SOURCE_PIN2 ((uint8_t)0x02U) /*!< EXTI GPIO pin2 configuration */ -#define EXTI_SOURCE_PIN3 ((uint8_t)0x03U) /*!< EXTI GPIO pin3 configuration */ -#define EXTI_SOURCE_PIN4 ((uint8_t)0x04U) /*!< EXTI GPIO pin4 configuration */ -#define EXTI_SOURCE_PIN5 ((uint8_t)0x05U) /*!< EXTI GPIO pin5 configuration */ -#define EXTI_SOURCE_PIN6 ((uint8_t)0x06U) /*!< EXTI GPIO pin6 configuration */ -#define EXTI_SOURCE_PIN7 ((uint8_t)0x07U) /*!< EXTI GPIO pin7 configuration */ -#define EXTI_SOURCE_PIN8 ((uint8_t)0x08U) /*!< EXTI GPIO pin8 configuration */ -#define EXTI_SOURCE_PIN9 ((uint8_t)0x09U) /*!< EXTI GPIO pin9 configuration */ -#define EXTI_SOURCE_PIN10 ((uint8_t)0x0AU) /*!< EXTI GPIO pin10 configuration */ -#define EXTI_SOURCE_PIN11 ((uint8_t)0x0BU) /*!< EXTI GPIO pin11 configuration */ -#define EXTI_SOURCE_PIN12 ((uint8_t)0x0CU) /*!< EXTI GPIO pin12 configuration */ -#define EXTI_SOURCE_PIN13 ((uint8_t)0x0DU) /*!< EXTI GPIO pin13 configuration */ -#define EXTI_SOURCE_PIN14 ((uint8_t)0x0EU) /*!< EXTI GPIO pin14 configuration */ -#define EXTI_SOURCE_PIN15 ((uint8_t)0x0FU) /*!< EXTI GPIO pin15 configuration */ - -/* ethernet PHY selection */ -#define SYSCFG_ENET_PHY_MII ((uint32_t)0x00000000U) /*!< MII is selected for the Ethernet MAC */ -#define SYSCFG_ENET_PHY_RMII ((uint32_t)0x00800000U) /*!< RMII is selected for the Ethernet MAC */ - -/* I/O compensation cell enable/disable */ -#define SYSCFG_COMPENSATION_ENABLE ((uint32_t)0x00000001U) /*!< I/O compensation cell enable */ -#define SYSCFG_COMPENSATION_DISABLE ((uint32_t)0x00000000U) /*!< I/O compensation cell disable */ - -/* function declarations */ -/* initialization functions */ -/* deinit syscfg module */ -void syscfg_deinit(void); - -/* function configuration */ -/* configure the boot mode */ -void syscfg_bootmode_config(uint8_t syscfg_bootmode); -/* configure FMC memory mapping swap */ -void syscfg_fmc_swap_config(uint32_t syscfg_fmc_swap); -/* configure the EXMC swap */ -void syscfg_exmc_swap_config(uint32_t syscfg_exmc_swap); -/* configure the GPIO pin as EXTI Line */ -void syscfg_exti_line_config(uint8_t exti_port, uint8_t exti_pin); -/* configure the PHY interface for the ethernet MAC */ -void syscfg_enet_phy_interface_config(uint32_t syscfg_enet_phy_interface); -/* configure the I/O compensation cell */ -void syscfg_compensation_config(uint32_t syscfg_compensation); - -/* interrupt & flag functions */ -/* check the I/O compensation cell is ready or not */ -FlagStatus syscfg_flag_get(void); - -#endif /* GD32F4XX_SYSCFG_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_timer.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_timer.h deleted file mode 100644 index cac902a222..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_timer.h +++ /dev/null @@ -1,781 +0,0 @@ -/*! - \file gd32f4xx_timer.h - \brief definitions for the TIMER - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - All rights reserved. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_TIMER_H -#define GD32F4XX_TIMER_H - -#include "gd32f4xx.h" - -/* TIMERx(x=0..13) definitions */ -#define TIMER0 (TIMER_BASE + 0x00010000U) -#define TIMER1 (TIMER_BASE + 0x00000000U) -#define TIMER2 (TIMER_BASE + 0x00000400U) -#define TIMER3 (TIMER_BASE + 0x00000800U) -#define TIMER4 (TIMER_BASE + 0x00000C00U) -#define TIMER5 (TIMER_BASE + 0x00001000U) -#define TIMER6 (TIMER_BASE + 0x00001400U) -#define TIMER7 (TIMER_BASE + 0x00010400U) -#define TIMER8 (TIMER_BASE + 0x00014000U) -#define TIMER9 (TIMER_BASE + 0x00014400U) -#define TIMER10 (TIMER_BASE + 0x00014800U) -#define TIMER11 (TIMER_BASE + 0x00001800U) -#define TIMER12 (TIMER_BASE + 0x00001C00U) -#define TIMER13 (TIMER_BASE + 0x00002000U) - -/* registers definitions */ -#define TIMER_CTL0(timerx) REG32((timerx) + 0x00U) /*!< TIMER control register 0 */ -#define TIMER_CTL1(timerx) REG32((timerx) + 0x04U) /*!< TIMER control register 1 */ -#define TIMER_SMCFG(timerx) REG32((timerx) + 0x08U) /*!< TIMER slave mode configuration register */ -#define TIMER_DMAINTEN(timerx) REG32((timerx) + 0x0CU) /*!< TIMER DMA and interrupt enable register */ -#define TIMER_INTF(timerx) REG32((timerx) + 0x10U) /*!< TIMER interrupt flag register */ -#define TIMER_SWEVG(timerx) REG32((timerx) + 0x14U) /*!< TIMER software event generation register */ -#define TIMER_CHCTL0(timerx) REG32((timerx) + 0x18U) /*!< TIMER channel control register 0 */ -#define TIMER_CHCTL1(timerx) REG32((timerx) + 0x1CU) /*!< TIMER channel control register 1 */ -#define TIMER_CHCTL2(timerx) REG32((timerx) + 0x20U) /*!< TIMER channel control register 2 */ -#define TIMER_CNT(timerx) REG32((timerx) + 0x24U) /*!< TIMER counter register */ -#define TIMER_PSC(timerx) REG32((timerx) + 0x28U) /*!< TIMER prescaler register */ -#define TIMER_CAR(timerx) REG32((timerx) + 0x2CU) /*!< TIMER counter auto reload register */ -#define TIMER_CREP(timerx) REG32((timerx) + 0x30U) /*!< TIMER counter repetition register */ -#define TIMER_CH0CV(timerx) REG32((timerx) + 0x34U) /*!< TIMER channel 0 capture/compare value register */ -#define TIMER_CH1CV(timerx) REG32((timerx) + 0x38U) /*!< TIMER channel 1 capture/compare value register */ -#define TIMER_CH2CV(timerx) REG32((timerx) + 0x3CU) /*!< TIMER channel 2 capture/compare value register */ -#define TIMER_CH3CV(timerx) REG32((timerx) + 0x40U) /*!< TIMER channel 3 capture/compare value register */ -#define TIMER_CCHP(timerx) REG32((timerx) + 0x44U) /*!< TIMER complementary channel protection register */ -#define TIMER_DMACFG(timerx) REG32((timerx) + 0x48U) /*!< TIMER DMA configuration register */ -#define TIMER_DMATB(timerx) REG32((timerx) + 0x4CU) /*!< TIMER DMA transfer buffer register */ -#define TIMER_IRMP(timerx) REG32((timerx) + 0x50U) /*!< TIMER channel input remap register */ -#define TIMER_CFG(timerx) REG32((timerx) + 0xFCU) /*!< TIMER configuration register */ - -/* bits definitions */ -/* TIMER_CTL0 */ -#define TIMER_CTL0_CEN BIT(0) /*!< TIMER counter enable */ -#define TIMER_CTL0_UPDIS BIT(1) /*!< update disable */ -#define TIMER_CTL0_UPS BIT(2) /*!< update source */ -#define TIMER_CTL0_SPM BIT(3) /*!< single pulse mode */ -#define TIMER_CTL0_DIR BIT(4) /*!< timer counter direction */ -#define TIMER_CTL0_CAM BITS(5,6) /*!< center-aligned mode selection */ -#define TIMER_CTL0_ARSE BIT(7) /*!< auto-reload shadow enable */ -#define TIMER_CTL0_CKDIV BITS(8,9) /*!< clock division */ - -/* TIMER_CTL1 */ -#define TIMER_CTL1_CCSE BIT(0) /*!< commutation control shadow enable */ -#define TIMER_CTL1_CCUC BIT(2) /*!< commutation control shadow register update control */ -#define TIMER_CTL1_DMAS BIT(3) /*!< DMA request source selection */ -#define TIMER_CTL1_MMC BITS(4,6) /*!< master mode control */ -#define TIMER_CTL1_TI0S BIT(7) /*!< channel 0 trigger input selection(hall mode selection) */ -#define TIMER_CTL1_ISO0 BIT(8) /*!< idle state of channel 0 output */ -#define TIMER_CTL1_ISO0N BIT(9) /*!< idle state of channel 0 complementary output */ -#define TIMER_CTL1_ISO1 BIT(10) /*!< idle state of channel 1 output */ -#define TIMER_CTL1_ISO1N BIT(11) /*!< idle state of channel 1 complementary output */ -#define TIMER_CTL1_ISO2 BIT(12) /*!< idle state of channel 2 output */ -#define TIMER_CTL1_ISO2N BIT(13) /*!< idle state of channel 2 complementary output */ -#define TIMER_CTL1_ISO3 BIT(14) /*!< idle state of channel 3 output */ - -/* TIMER_SMCFG */ -#define TIMER_SMCFG_SMC BITS(0,2) /*!< slave mode control */ -#define TIMER_SMCFG_TRGS BITS(4,6) /*!< trigger selection */ -#define TIMER_SMCFG_MSM BIT(7) /*!< master-slave mode */ -#define TIMER_SMCFG_ETFC BITS(8,11) /*!< external trigger filter control */ -#define TIMER_SMCFG_ETPSC BITS(12,13) /*!< external trigger prescaler */ -#define TIMER_SMCFG_SMC1 BIT(14) /*!< part of SMC for enable external clock mode 1 */ -#define TIMER_SMCFG_ETP BIT(15) /*!< external trigger polarity */ - -/* TIMER_DMAINTEN */ -#define TIMER_DMAINTEN_UPIE BIT(0) /*!< update interrupt enable */ -#define TIMER_DMAINTEN_CH0IE BIT(1) /*!< channel 0 capture/compare interrupt enable */ -#define TIMER_DMAINTEN_CH1IE BIT(2) /*!< channel 1 capture/compare interrupt enable */ -#define TIMER_DMAINTEN_CH2IE BIT(3) /*!< channel 2 capture/compare interrupt enable */ -#define TIMER_DMAINTEN_CH3IE BIT(4) /*!< channel 3 capture/compare interrupt enable */ -#define TIMER_DMAINTEN_CMTIE BIT(5) /*!< commutation interrupt request enable */ -#define TIMER_DMAINTEN_TRGIE BIT(6) /*!< trigger interrupt enable */ -#define TIMER_DMAINTEN_BRKIE BIT(7) /*!< break interrupt enable */ -#define TIMER_DMAINTEN_UPDEN BIT(8) /*!< update DMA request enable */ -#define TIMER_DMAINTEN_CH0DEN BIT(9) /*!< channel 0 DMA request enable */ -#define TIMER_DMAINTEN_CH1DEN BIT(10) /*!< channel 1 DMA request enable */ -#define TIMER_DMAINTEN_CH2DEN BIT(11) /*!< channel 2 DMA request enable */ -#define TIMER_DMAINTEN_CH3DEN BIT(12) /*!< channel 3 DMA request enable */ -#define TIMER_DMAINTEN_CMTDEN BIT(13) /*!< commutation DMA request enable */ -#define TIMER_DMAINTEN_TRGDEN BIT(14) /*!< trigger DMA request enable */ - -/* TIMER_INTF */ -#define TIMER_INTF_UPIF BIT(0) /*!< update interrupt flag */ -#define TIMER_INTF_CH0IF BIT(1) /*!< channel 0 capture/compare interrupt flag */ -#define TIMER_INTF_CH1IF BIT(2) /*!< channel 1 capture/compare interrupt flag */ -#define TIMER_INTF_CH2IF BIT(3) /*!< channel 2 capture/compare interrupt flag */ -#define TIMER_INTF_CH3IF BIT(4) /*!< channel 3 capture/compare interrupt flag */ -#define TIMER_INTF_CMTIF BIT(5) /*!< channel commutation interrupt flag */ -#define TIMER_INTF_TRGIF BIT(6) /*!< trigger interrupt flag */ -#define TIMER_INTF_BRKIF BIT(7) /*!< break interrupt flag */ -#define TIMER_INTF_CH0OF BIT(9) /*!< channel 0 overcapture flag */ -#define TIMER_INTF_CH1OF BIT(10) /*!< channel 1 overcapture flag */ -#define TIMER_INTF_CH2OF BIT(11) /*!< channel 2 overcapture flag */ -#define TIMER_INTF_CH3OF BIT(12) /*!< channel 3 overcapture flag */ - -/* TIMER_SWEVG */ -#define TIMER_SWEVG_UPG BIT(0) /*!< update event generate */ -#define TIMER_SWEVG_CH0G BIT(1) /*!< channel 0 capture or compare event generation */ -#define TIMER_SWEVG_CH1G BIT(2) /*!< channel 1 capture or compare event generation */ -#define TIMER_SWEVG_CH2G BIT(3) /*!< channel 2 capture or compare event generation */ -#define TIMER_SWEVG_CH3G BIT(4) /*!< channel 3 capture or compare event generation */ -#define TIMER_SWEVG_CMTG BIT(5) /*!< channel commutation event generation */ -#define TIMER_SWEVG_TRGG BIT(6) /*!< trigger event generation */ -#define TIMER_SWEVG_BRKG BIT(7) /*!< break event generation */ - -/* TIMER_CHCTL0 */ -/* output compare mode */ -#define TIMER_CHCTL0_CH0MS BITS(0,1) /*!< channel 0 mode selection */ -#define TIMER_CHCTL0_CH0COMFEN BIT(2) /*!< channel 0 output compare fast enable */ -#define TIMER_CHCTL0_CH0COMSEN BIT(3) /*!< channel 0 output compare shadow enable */ -#define TIMER_CHCTL0_CH0COMCTL BITS(4,6) /*!< channel 0 output compare mode */ -#define TIMER_CHCTL0_CH0COMCEN BIT(7) /*!< channel 0 output compare clear enable */ -#define TIMER_CHCTL0_CH1MS BITS(8,9) /*!< channel 1 mode selection */ -#define TIMER_CHCTL0_CH1COMFEN BIT(10) /*!< channel 1 output compare fast enable */ -#define TIMER_CHCTL0_CH1COMSEN BIT(11) /*!< channel 1 output compare shadow enable */ -#define TIMER_CHCTL0_CH1COMCTL BITS(12,14) /*!< channel 1 output compare mode */ -#define TIMER_CHCTL0_CH1COMCEN BIT(15) /*!< channel 1 output compare clear enable */ -/* input capture mode */ -#define TIMER_CHCTL0_CH0CAPPSC BITS(2,3) /*!< channel 0 input capture prescaler */ -#define TIMER_CHCTL0_CH0CAPFLT BITS(4,7) /*!< channel 0 input capture filter control */ -#define TIMER_CHCTL0_CH1CAPPSC BITS(10,11) /*!< channel 1 input capture prescaler */ -#define TIMER_CHCTL0_CH1CAPFLT BITS(12,15) /*!< channel 1 input capture filter control */ - -/* TIMER_CHCTL1 */ -/* output compare mode */ -#define TIMER_CHCTL1_CH2MS BITS(0,1) /*!< channel 2 mode selection */ -#define TIMER_CHCTL1_CH2COMFEN BIT(2) /*!< channel 2 output compare fast enable */ -#define TIMER_CHCTL1_CH2COMSEN BIT(3) /*!< channel 2 output compare shadow enable */ -#define TIMER_CHCTL1_CH2COMCTL BITS(4,6) /*!< channel 2 output compare mode */ -#define TIMER_CHCTL1_CH2COMCEN BIT(7) /*!< channel 2 output compare clear enable */ -#define TIMER_CHCTL1_CH3MS BITS(8,9) /*!< channel 3 mode selection */ -#define TIMER_CHCTL1_CH3COMFEN BIT(10) /*!< channel 3 output compare fast enable */ -#define TIMER_CHCTL1_CH3COMSEN BIT(11) /*!< channel 3 output compare shadow enable */ -#define TIMER_CHCTL1_CH3COMCTL BITS(12,14) /*!< channel 3 output compare mode */ -#define TIMER_CHCTL1_CH3COMCEN BIT(15) /*!< channel 3 output compare clear enable */ -/* input capture mode */ -#define TIMER_CHCTL1_CH2CAPPSC BITS(2,3) /*!< channel 2 input capture prescaler */ -#define TIMER_CHCTL1_CH2CAPFLT BITS(4,7) /*!< channel 2 input capture filter control */ -#define TIMER_CHCTL1_CH3CAPPSC BITS(10,11) /*!< channel 3 input capture prescaler */ -#define TIMER_CHCTL1_CH3CAPFLT BITS(12,15) /*!< channel 3 input capture filter control */ - -/* TIMER_CHCTL2 */ -#define TIMER_CHCTL2_CH0EN BIT(0) /*!< channel 0 capture/compare function enable */ -#define TIMER_CHCTL2_CH0P BIT(1) /*!< channel 0 capture/compare function polarity */ -#define TIMER_CHCTL2_CH0NEN BIT(2) /*!< channel 0 complementary output enable */ -#define TIMER_CHCTL2_CH0NP BIT(3) /*!< channel 0 complementary output polarity */ -#define TIMER_CHCTL2_CH1EN BIT(4) /*!< channel 1 capture/compare function enable */ -#define TIMER_CHCTL2_CH1P BIT(5) /*!< channel 1 capture/compare function polarity */ -#define TIMER_CHCTL2_CH1NEN BIT(6) /*!< channel 1 complementary output enable */ -#define TIMER_CHCTL2_CH1NP BIT(7) /*!< channel 1 complementary output polarity */ -#define TIMER_CHCTL2_CH2EN BIT(8) /*!< channel 2 capture/compare function enable */ -#define TIMER_CHCTL2_CH2P BIT(9) /*!< channel 2 capture/compare function polarity */ -#define TIMER_CHCTL2_CH2NEN BIT(10) /*!< channel 2 complementary output enable */ -#define TIMER_CHCTL2_CH2NP BIT(11) /*!< channel 2 complementary output polarity */ -#define TIMER_CHCTL2_CH3EN BIT(12) /*!< channel 3 capture/compare function enable */ -#define TIMER_CHCTL2_CH3P BIT(13) /*!< channel 3 capture/compare function polarity */ - -/* TIMER_CNT */ -#define TIMER_CNT_CNT16 BITS(0,15) /*!< 16 bit timer counter */ -#define TIMER_CNT_CNT32 BITS(0,31) /*!< 32 bit(TIMER1,TIMER4) timer counter */ - -/* TIMER_PSC */ -#define TIMER_PSC_PSC BITS(0,15) /*!< prescaler value of the counter clock */ - -/* TIMER_CAR */ -#define TIMER_CAR_CARL16 BITS(0,15) /*!< 16 bit counter auto reload value */ -#define TIMER_CAR_CARL32 BITS(0,31) /*!< 32 bit(TIMER1,TIMER4) counter auto reload value */ - -/* TIMER_CREP */ -#define TIMER_CREP_CREP BITS(0,7) /*!< counter repetition value */ - -/* TIMER_CH0CV */ -#define TIMER_CH0CV_CH0VAL16 BITS(0,15) /*!< 16 bit capture/compare value of channel 0 */ -#define TIMER_CH0CV_CH0VAL32 BITS(0,31) /*!< 32 bit(TIMER1,TIMER4) capture/compare value of channel 0 */ - -/* TIMER_CH1CV */ -#define TIMER_CH1CV_CH1VAL16 BITS(0,15) /*!< 16 bit capture/compare value of channel 1 */ -#define TIMER_CH1CV_CH1VAL32 BITS(0,31) /*!< 32 bit(TIMER1,TIMER4) capture/compare value of channel 1 */ - -/* TIMER_CH2CV */ -#define TIMER_CH2CV_CH2VAL16 BITS(0,15) /*!< 16 bit capture/compare value of channel 2 */ -#define TIMER_CH2CV_CH2VAL32 BITS(0,31) /*!< 32 bit(TIMER1,TIMER4) capture/compare value of channel 2 */ - -/* TIMER_CH3CV */ -#define TIMER_CH3CV_CH3VAL16 BITS(0,15) /*!< 16 bit capture/compare value of channel 3 */ -#define TIMER_CH3CV_CH3VAL32 BITS(0,31) /*!< 32 bit(TIMER1,TIMER4) capture/compare value of channel 3 */ - -/* TIMER_CCHP */ -#define TIMER_CCHP_DTCFG BITS(0,7) /*!< dead time configure */ -#define TIMER_CCHP_PROT BITS(8,9) /*!< complementary register protect control */ -#define TIMER_CCHP_IOS BIT(10) /*!< idle mode off-state configure */ -#define TIMER_CCHP_ROS BIT(11) /*!< run mode off-state configure */ -#define TIMER_CCHP_BRKEN BIT(12) /*!< break enable */ -#define TIMER_CCHP_BRKP BIT(13) /*!< break polarity */ -#define TIMER_CCHP_OAEN BIT(14) /*!< output automatic enable */ -#define TIMER_CCHP_POEN BIT(15) /*!< primary output enable */ - -/* TIMER_DMACFG */ -#define TIMER_DMACFG_DMATA BITS(0,4) /*!< DMA transfer access start address */ -#define TIMER_DMACFG_DMATC BITS(8,12) /*!< DMA transfer count */ - -/* TIMER_DMATB */ -#define TIMER_DMATB_DMATB BITS(0,15) /*!< DMA transfer buffer address */ - -/* TIMER_IRMP */ -#define TIMER1_IRMP_ITI1_RMP BITS(10,11) /*!< TIMER1 internal trigger input 1 remap */ -#define TIMER4_IRMP_CI3_RMP BITS(6,7) /*!< TIMER4 channel 3 input remap */ -#define TIMER10_IRMP_ITI1_RMP BITS(0,1) /*!< TIMER10 internal trigger input 1 remap */ - -/* TIMER_CFG */ -#define TIMER_CFG_OUTSEL BIT(0) /*!< the output value selection */ -#define TIMER_CFG_CHVSEL BIT(1) /*!< write CHxVAL register selection */ - -/* constants definitions */ -/* TIMER init parameter struct definitions*/ -typedef struct -{ - uint16_t prescaler; /*!< prescaler value */ - uint16_t alignedmode; /*!< aligned mode */ - uint16_t counterdirection; /*!< counter direction */ - uint16_t clockdivision; /*!< clock division value */ - uint32_t period; /*!< period value */ - uint8_t repetitioncounter; /*!< the counter repetition value */ -}timer_parameter_struct; - -/* break parameter struct definitions*/ -typedef struct -{ - uint16_t runoffstate; /*!< run mode off-state */ - uint16_t ideloffstate; /*!< idle mode off-state */ - uint16_t deadtime; /*!< dead time */ - uint16_t breakpolarity; /*!< break polarity */ - uint16_t outputautostate; /*!< output automatic enable */ - uint16_t protectmode; /*!< complementary register protect control */ - uint16_t breakstate; /*!< break enable */ -}timer_break_parameter_struct; - -/* channel output parameter struct definitions */ -typedef struct -{ - uint16_t outputstate; /*!< channel output state */ - uint16_t outputnstate; /*!< channel complementary output state */ - uint16_t ocpolarity; /*!< channel output polarity */ - uint16_t ocnpolarity; /*!< channel complementary output polarity */ - uint16_t ocidlestate; /*!< idle state of channel output */ - uint16_t ocnidlestate; /*!< idle state of channel complementary output */ -}timer_oc_parameter_struct; - -/* channel input parameter struct definitions */ -typedef struct -{ - uint16_t icpolarity; /*!< channel input polarity */ - uint16_t icselection; /*!< channel input mode selection */ - uint16_t icprescaler; /*!< channel input capture prescaler */ - uint16_t icfilter; /*!< channel input capture filter control */ -}timer_ic_parameter_struct; - -/* TIMER interrupt enable or disable */ -#define TIMER_INT_UP TIMER_DMAINTEN_UPIE /*!< update interrupt */ -#define TIMER_INT_CH0 TIMER_DMAINTEN_CH0IE /*!< channel 0 interrupt */ -#define TIMER_INT_CH1 TIMER_DMAINTEN_CH1IE /*!< channel 1 interrupt */ -#define TIMER_INT_CH2 TIMER_DMAINTEN_CH2IE /*!< channel 2 interrupt */ -#define TIMER_INT_CH3 TIMER_DMAINTEN_CH3IE /*!< channel 3 interrupt */ -#define TIMER_INT_CMT TIMER_DMAINTEN_CMTIE /*!< channel commutation interrupt flag */ -#define TIMER_INT_TRG TIMER_DMAINTEN_TRGIE /*!< trigger interrupt */ -#define TIMER_INT_BRK TIMER_DMAINTEN_BRKIE /*!< break interrupt */ - -/* TIMER flag */ -#define TIMER_FLAG_UP TIMER_INTF_UPIF /*!< update flag */ -#define TIMER_FLAG_CH0 TIMER_INTF_CH0IF /*!< channel 0 flag */ -#define TIMER_FLAG_CH1 TIMER_INTF_CH1IF /*!< channel 1 flag */ -#define TIMER_FLAG_CH2 TIMER_INTF_CH2IF /*!< channel 2 flag */ -#define TIMER_FLAG_CH3 TIMER_INTF_CH3IF /*!< channel 3 flag */ -#define TIMER_FLAG_CMT TIMER_INTF_CMTIF /*!< channel commutation flag */ -#define TIMER_FLAG_TRG TIMER_INTF_TRGIF /*!< trigger flag */ -#define TIMER_FLAG_BRK TIMER_INTF_BRKIF /*!< break flag */ -#define TIMER_FLAG_CH0O TIMER_INTF_CH0OF /*!< channel 0 overcapture flag */ -#define TIMER_FLAG_CH1O TIMER_INTF_CH1OF /*!< channel 1 overcapture flag */ -#define TIMER_FLAG_CH2O TIMER_INTF_CH2OF /*!< channel 2 overcapture flag */ -#define TIMER_FLAG_CH3O TIMER_INTF_CH3OF /*!< channel 3 overcapture flag */ - -/* TIMER interrupt flag */ -#define TIMER_INT_FLAG_UP TIMER_INTF_UPIF /*!< update interrupt flag */ -#define TIMER_INT_FLAG_CH0 TIMER_INTF_CH0IF /*!< channel 0 interrupt flag */ -#define TIMER_INT_FLAG_CH1 TIMER_INTF_CH1IF /*!< channel 1 interrupt flag */ -#define TIMER_INT_FLAG_CH2 TIMER_INTF_CH2IF /*!< channel 2 interrupt flag */ -#define TIMER_INT_FLAG_CH3 TIMER_INTF_CH3IF /*!< channel 3 interrupt flag */ -#define TIMER_INT_FLAG_CMT TIMER_INTF_CMTIF /*!< channel commutation interrupt flag */ -#define TIMER_INT_FLAG_TRG TIMER_INTF_TRGIF /*!< trigger interrupt flag */ -#define TIMER_INT_FLAG_BRK TIMER_INTF_BRKIF - - - -/* TIMER DMA source enable */ -#define TIMER_DMA_UPD ((uint16_t)TIMER_DMAINTEN_UPDEN) /*!< update DMA enable */ -#define TIMER_DMA_CH0D ((uint16_t)TIMER_DMAINTEN_CH0DEN) /*!< channel 0 DMA enable */ -#define TIMER_DMA_CH1D ((uint16_t)TIMER_DMAINTEN_CH1DEN) /*!< channel 1 DMA enable */ -#define TIMER_DMA_CH2D ((uint16_t)TIMER_DMAINTEN_CH2DEN) /*!< channel 2 DMA enable */ -#define TIMER_DMA_CH3D ((uint16_t)TIMER_DMAINTEN_CH3DEN) /*!< channel 3 DMA enable */ -#define TIMER_DMA_CMTD ((uint16_t)TIMER_DMAINTEN_CMTDEN) /*!< commutation DMA request enable */ -#define TIMER_DMA_TRGD ((uint16_t)TIMER_DMAINTEN_TRGDEN) /*!< trigger DMA enable */ - -/* channel DMA request source selection */ -#define TIMER_DMAREQUEST_UPDATEEVENT ((uint8_t)0x00U) /*!< DMA request of channel y is sent when update event occurs */ -#define TIMER_DMAREQUEST_CHANNELEVENT ((uint8_t)0x01U) /*!< DMA request of channel y is sent when channel y event occurs */ - -/* DMA access base address */ -#define DMACFG_DMATA(regval) (BITS(0, 4) & ((uint32_t)(regval) << 0U)) -#define TIMER_DMACFG_DMATA_CTL0 DMACFG_DMATA(0) /*!< DMA transfer address is TIMER_CTL0 */ -#define TIMER_DMACFG_DMATA_CTL1 DMACFG_DMATA(1) /*!< DMA transfer address is TIMER_CTL1 */ -#define TIMER_DMACFG_DMATA_SMCFG DMACFG_DMATA(2) /*!< DMA transfer address is TIMER_SMCFG */ -#define TIMER_DMACFG_DMATA_DMAINTEN DMACFG_DMATA(3) /*!< DMA transfer address is TIMER_DMAINTEN */ -#define TIMER_DMACFG_DMATA_INTF DMACFG_DMATA(4) /*!< DMA transfer address is TIMER_INTF */ -#define TIMER_DMACFG_DMATA_SWEVG DMACFG_DMATA(5) /*!< DMA transfer address is TIMER_SWEVG */ -#define TIMER_DMACFG_DMATA_CHCTL0 DMACFG_DMATA(6) /*!< DMA transfer address is TIMER_CHCTL0 */ -#define TIMER_DMACFG_DMATA_CHCTL1 DMACFG_DMATA(7) /*!< DMA transfer address is TIMER_CHCTL1 */ -#define TIMER_DMACFG_DMATA_CHCTL2 DMACFG_DMATA(8) /*!< DMA transfer address is TIMER_CHCTL2 */ -#define TIMER_DMACFG_DMATA_CNT DMACFG_DMATA(9) /*!< DMA transfer address is TIMER_CNT */ -#define TIMER_DMACFG_DMATA_PSC DMACFG_DMATA(10) /*!< DMA transfer address is TIMER_PSC */ -#define TIMER_DMACFG_DMATA_CAR DMACFG_DMATA(11) /*!< DMA transfer address is TIMER_CAR */ -#define TIMER_DMACFG_DMATA_CREP DMACFG_DMATA(12) /*!< DMA transfer address is TIMER_CREP */ -#define TIMER_DMACFG_DMATA_CH0CV DMACFG_DMATA(13) /*!< DMA transfer address is TIMER_CH0CV */ -#define TIMER_DMACFG_DMATA_CH1CV DMACFG_DMATA(14) /*!< DMA transfer address is TIMER_CH1CV */ -#define TIMER_DMACFG_DMATA_CH2CV DMACFG_DMATA(15) /*!< DMA transfer address is TIMER_CH2CV */ -#define TIMER_DMACFG_DMATA_CH3CV DMACFG_DMATA(16) /*!< DMA transfer address is TIMER_CH3CV */ -#define TIMER_DMACFG_DMATA_CCHP DMACFG_DMATA(17) /*!< DMA transfer address is TIMER_CCHP */ -#define TIMER_DMACFG_DMATA_DMACFG DMACFG_DMATA(18) /*!< DMA transfer address is TIMER_DMACFG */ -#define TIMER_DMACFG_DMATA_DMATB DMACFG_DMATA(19) /*!< DMA transfer address is TIMER_DMATB */ - -/* DMA access burst length */ -#define DMACFG_DMATC(regval) (BITS(8, 12) & ((uint32_t)(regval) << 8U)) -#define TIMER_DMACFG_DMATC_1TRANSFER DMACFG_DMATC(0) /*!< DMA transfer 1 time */ -#define TIMER_DMACFG_DMATC_2TRANSFER DMACFG_DMATC(1) /*!< DMA transfer 2 times */ -#define TIMER_DMACFG_DMATC_3TRANSFER DMACFG_DMATC(2) /*!< DMA transfer 3 times */ -#define TIMER_DMACFG_DMATC_4TRANSFER DMACFG_DMATC(3) /*!< DMA transfer 4 times */ -#define TIMER_DMACFG_DMATC_5TRANSFER DMACFG_DMATC(4) /*!< DMA transfer 5 times */ -#define TIMER_DMACFG_DMATC_6TRANSFER DMACFG_DMATC(5) /*!< DMA transfer 6 times */ -#define TIMER_DMACFG_DMATC_7TRANSFER DMACFG_DMATC(6) /*!< DMA transfer 7 times */ -#define TIMER_DMACFG_DMATC_8TRANSFER DMACFG_DMATC(7) /*!< DMA transfer 8 times */ -#define TIMER_DMACFG_DMATC_9TRANSFER DMACFG_DMATC(8) /*!< DMA transfer 9 times */ -#define TIMER_DMACFG_DMATC_10TRANSFER DMACFG_DMATC(9) /*!< DMA transfer 10 times */ -#define TIMER_DMACFG_DMATC_11TRANSFER DMACFG_DMATC(10) /*!< DMA transfer 11 times */ -#define TIMER_DMACFG_DMATC_12TRANSFER DMACFG_DMATC(11) /*!< DMA transfer 12 times */ -#define TIMER_DMACFG_DMATC_13TRANSFER DMACFG_DMATC(12) /*!< DMA transfer 13 times */ -#define TIMER_DMACFG_DMATC_14TRANSFER DMACFG_DMATC(13) /*!< DMA transfer 14 times */ -#define TIMER_DMACFG_DMATC_15TRANSFER DMACFG_DMATC(14) /*!< DMA transfer 15 times */ -#define TIMER_DMACFG_DMATC_16TRANSFER DMACFG_DMATC(15) /*!< DMA transfer 16 times */ -#define TIMER_DMACFG_DMATC_17TRANSFER DMACFG_DMATC(16) /*!< DMA transfer 17 times */ -#define TIMER_DMACFG_DMATC_18TRANSFER DMACFG_DMATC(17) /*!< DMA transfer 18 times */ - -/* TIMER software event generation source */ -#define TIMER_EVENT_SRC_UPG ((uint16_t)0x0001U) /*!< update event generation */ -#define TIMER_EVENT_SRC_CH0G ((uint16_t)0x0002U) /*!< channel 0 capture or compare event generation */ -#define TIMER_EVENT_SRC_CH1G ((uint16_t)0x0004U) /*!< channel 1 capture or compare event generation */ -#define TIMER_EVENT_SRC_CH2G ((uint16_t)0x0008U) /*!< channel 2 capture or compare event generation */ -#define TIMER_EVENT_SRC_CH3G ((uint16_t)0x0010U) /*!< channel 3 capture or compare event generation */ -#define TIMER_EVENT_SRC_CMTG ((uint16_t)0x0020U) /*!< channel commutation event generation */ -#define TIMER_EVENT_SRC_TRGG ((uint16_t)0x0040U) /*!< trigger event generation */ -#define TIMER_EVENT_SRC_BRKG ((uint16_t)0x0080U) /*!< break event generation */ - -/* center-aligned mode selection */ -#define CTL0_CAM(regval) ((uint16_t)(BITS(5, 6) & ((uint32_t)(regval) << 5U))) -#define TIMER_COUNTER_EDGE CTL0_CAM(0) /*!< edge-aligned mode */ -#define TIMER_COUNTER_CENTER_DOWN CTL0_CAM(1) /*!< center-aligned and counting down assert mode */ -#define TIMER_COUNTER_CENTER_UP CTL0_CAM(2) /*!< center-aligned and counting up assert mode */ -#define TIMER_COUNTER_CENTER_BOTH CTL0_CAM(3) /*!< center-aligned and counting up/down assert mode */ - -/* TIMER prescaler reload mode */ -#define TIMER_PSC_RELOAD_NOW ((uint32_t)0x00000000U) /*!< the prescaler is loaded right now */ -#define TIMER_PSC_RELOAD_UPDATE ((uint32_t)0x00000001U) /*!< the prescaler is loaded at the next update event */ - -/* count direction */ -#define TIMER_COUNTER_UP ((uint16_t)0x0000U) /*!< counter up direction */ -#define TIMER_COUNTER_DOWN ((uint16_t)TIMER_CTL0_DIR) /*!< counter down direction */ - -/* specify division ratio between TIMER clock and dead-time and sampling clock */ -#define CTL0_CKDIV(regval) ((uint16_t)(BITS(8, 9) & ((uint32_t)(regval) << 8U))) -#define TIMER_CKDIV_DIV1 CTL0_CKDIV(0) /*!< clock division value is 1,fDTS=fTIMER_CK */ -#define TIMER_CKDIV_DIV2 CTL0_CKDIV(1) /*!< clock division value is 2,fDTS= fTIMER_CK/2 */ -#define TIMER_CKDIV_DIV4 CTL0_CKDIV(2) /*!< clock division value is 4, fDTS= fTIMER_CK/4 */ - -/* single pulse mode */ -#define TIMER_SP_MODE_SINGLE ((uint32_t)0x00000000U) /*!< single pulse mode */ -#define TIMER_SP_MODE_REPETITIVE ((uint32_t)0x00000001U) /*!< repetitive pulse mode */ - -/* update source */ -#define TIMER_UPDATE_SRC_REGULAR ((uint32_t)0x00000000U) /*!< update generate only by counter overflow/underflow */ -#define TIMER_UPDATE_SRC_GLOBAL ((uint32_t)0x00000001U) /*!< update generate by setting of UPG bit or the counter overflow/underflow,or the slave mode controller trigger */ - -/* run mode off-state configure */ -#define TIMER_ROS_STATE_ENABLE ((uint16_t)TIMER_CCHP_ROS) /*!< when POEN bit is set, the channel output signals (CHx_O/CHx_ON) are enabled, with relationship to CHxEN/CHxNEN bits */ -#define TIMER_ROS_STATE_DISABLE ((uint16_t)0x0000U) /*!< when POEN bit is set, the channel output signals (CHx_O/CHx_ON) are disabled */ - -/* idle mode off-state configure */ -#define TIMER_IOS_STATE_ENABLE ((uint16_t)TIMER_CCHP_IOS) /*!< when POEN bit is reset, the channel output signals (CHx_O/CHx_ON) are enabled, with relationship to CHxEN/CHxNEN bits */ -#define TIMER_IOS_STATE_DISABLE ((uint16_t)0x0000U) /*!< when POEN bit is reset, the channel output signals (CHx_O/CHx_ON) are disabled */ - -/* break input polarity */ -#define TIMER_BREAK_POLARITY_LOW ((uint16_t)0x0000U) /*!< break input polarity is low */ -#define TIMER_BREAK_POLARITY_HIGH ((uint16_t)TIMER_CCHP_BRKP) /*!< break input polarity is high */ - -/* output automatic enable */ -#define TIMER_OUTAUTO_ENABLE ((uint16_t)TIMER_CCHP_OAEN) /*!< output automatic enable */ -#define TIMER_OUTAUTO_DISABLE ((uint16_t)0x0000U) /*!< output automatic disable */ - -/* complementary register protect control */ -#define CCHP_PROT(regval) ((uint16_t)(BITS(8, 9) & ((uint32_t)(regval) << 8U))) -#define TIMER_CCHP_PROT_OFF CCHP_PROT(0) /*!< protect disable */ -#define TIMER_CCHP_PROT_0 CCHP_PROT(1) /*!< PROT mode 0 */ -#define TIMER_CCHP_PROT_1 CCHP_PROT(2) /*!< PROT mode 1 */ -#define TIMER_CCHP_PROT_2 CCHP_PROT(3) /*!< PROT mode 2 */ - -/* break input enable */ -#define TIMER_BREAK_ENABLE ((uint16_t)TIMER_CCHP_BRKEN) /*!< break input enable */ -#define TIMER_BREAK_DISABLE ((uint16_t)0x0000U) /*!< break input disable */ - -/* TIMER channel n(n=0,1,2,3) */ -#define TIMER_CH_0 ((uint16_t)0x0000U) /*!< TIMER channel 0(TIMERx(x=0..4,7..13)) */ -#define TIMER_CH_1 ((uint16_t)0x0001U) /*!< TIMER channel 1(TIMERx(x=0..4,7,8,11)) */ -#define TIMER_CH_2 ((uint16_t)0x0002U) /*!< TIMER channel 2(TIMERx(x=0..4,7)) */ -#define TIMER_CH_3 ((uint16_t)0x0003U) /*!< TIMER channel 3(TIMERx(x=0..4,7)) */ - -/* channel enable state*/ -#define TIMER_CCX_ENABLE ((uint32_t)0x00000001U) /*!< channel enable */ -#define TIMER_CCX_DISABLE ((uint32_t)0x00000000U) /*!< channel disable */ - -/* channel complementary output enable state*/ -#define TIMER_CCXN_ENABLE ((uint16_t)0x0004U) /*!< channel complementary enable */ -#define TIMER_CCXN_DISABLE ((uint16_t)0x0000U) /*!< channel complementary disable */ - -/* channel output polarity */ -#define TIMER_OC_POLARITY_HIGH ((uint16_t)0x0000U) /*!< channel output polarity is high */ -#define TIMER_OC_POLARITY_LOW ((uint16_t)0x0002U) /*!< channel output polarity is low */ - -/* channel complementary output polarity */ -#define TIMER_OCN_POLARITY_HIGH ((uint16_t)0x0000U) /*!< channel complementary output polarity is high */ -#define TIMER_OCN_POLARITY_LOW ((uint16_t)0x0008U) /*!< channel complementary output polarity is low */ - -/* idle state of channel output */ -#define TIMER_OC_IDLE_STATE_HIGH ((uint16_t)0x0100) /*!< idle state of channel output is high */ -#define TIMER_OC_IDLE_STATE_LOW ((uint16_t)0x0000) /*!< idle state of channel output is low */ - -/* idle state of channel complementary output */ -#define TIMER_OCN_IDLE_STATE_HIGH ((uint16_t)0x0200U) /*!< idle state of channel complementary output is high */ -#define TIMER_OCN_IDLE_STATE_LOW ((uint16_t)0x0000U) /*!< idle state of channel complementary output is low */ - -/* channel output compare mode */ -#define TIMER_OC_MODE_TIMING ((uint16_t)0x0000U) /*!< timing mode */ -#define TIMER_OC_MODE_ACTIVE ((uint16_t)0x0010U) /*!< active mode */ -#define TIMER_OC_MODE_INACTIVE ((uint16_t)0x0020U) /*!< inactive mode */ -#define TIMER_OC_MODE_TOGGLE ((uint16_t)0x0030U) /*!< toggle mode */ -#define TIMER_OC_MODE_LOW ((uint16_t)0x0040U) /*!< force low mode */ -#define TIMER_OC_MODE_HIGH ((uint16_t)0x0050U) /*!< force high mode */ -#define TIMER_OC_MODE_PWM0 ((uint16_t)0x0060U) /*!< PWM0 mode */ -#define TIMER_OC_MODE_PWM1 ((uint16_t)0x0070U) /*!< PWM1 mode*/ - -/* channel output compare shadow enable */ -#define TIMER_OC_SHADOW_ENABLE ((uint16_t)0x0008U) /*!< channel output shadow state enable */ -#define TIMER_OC_SHADOW_DISABLE ((uint16_t)0x0000U) /*!< channel output shadow state disable */ - -/* channel output compare fast enable */ -#define TIMER_OC_FAST_ENABLE ((uint16_t)0x0004) /*!< channel output fast function enable */ -#define TIMER_OC_FAST_DISABLE ((uint16_t)0x0000) /*!< channel output fast function disable */ - -/* channel output compare clear enable */ -#define TIMER_OC_CLEAR_ENABLE ((uint16_t)0x0080U) /*!< channel output clear function enable */ -#define TIMER_OC_CLEAR_DISABLE ((uint16_t)0x0000U) /*!< channel output clear function disable */ - -/* channel control shadow register update control */ -#define TIMER_UPDATECTL_CCU ((uint32_t)0x00000000U) /*!< the shadow registers are updated when CMTG bit is set */ -#define TIMER_UPDATECTL_CCUTRI ((uint32_t)0x00000001U) /*!< the shadow registers update by when CMTG bit is set or an rising edge of TRGI occurs */ - -/* channel input capture polarity */ -#define TIMER_IC_POLARITY_RISING ((uint16_t)0x0000U) /*!< input capture rising edge */ -#define TIMER_IC_POLARITY_FALLING ((uint16_t)0x0002U) /*!< input capture falling edge */ -#define TIMER_IC_POLARITY_BOTH_EDGE ((uint16_t)0x000AU) /*!< input capture both edge */ - -/* TIMER input capture selection */ -#define TIMER_IC_SELECTION_DIRECTTI ((uint16_t)0x0001U) /*!< channel y is configured as input and icy is mapped on CIy */ -#define TIMER_IC_SELECTION_INDIRECTTI ((uint16_t)0x0002U) /*!< channel y is configured as input and icy is mapped on opposite input */ -#define TIMER_IC_SELECTION_ITS ((uint16_t)0x0003U) /*!< channel y is configured as input and icy is mapped on ITS */ - -/* channel input capture prescaler */ -#define TIMER_IC_PSC_DIV1 ((uint16_t)0x0000U) /*!< no prescaler */ -#define TIMER_IC_PSC_DIV2 ((uint16_t)0x0004U) /*!< divided by 2 */ -#define TIMER_IC_PSC_DIV4 ((uint16_t)0x0008U) /*!< divided by 4*/ -#define TIMER_IC_PSC_DIV8 ((uint16_t)0x000CU) /*!< divided by 8 */ - -/* trigger selection */ -#define SMCFG_TRGSEL(regval) (BITS(4, 6) & ((uint32_t)(regval) << 4U)) -#define TIMER_SMCFG_TRGSEL_ITI0 SMCFG_TRGSEL(0) /*!< internal trigger 0 */ -#define TIMER_SMCFG_TRGSEL_ITI1 SMCFG_TRGSEL(1) /*!< internal trigger 1 */ -#define TIMER_SMCFG_TRGSEL_ITI2 SMCFG_TRGSEL(2) /*!< internal trigger 2 */ -#define TIMER_SMCFG_TRGSEL_ITI3 SMCFG_TRGSEL(3) /*!< internal trigger 3 */ -#define TIMER_SMCFG_TRGSEL_CI0F_ED SMCFG_TRGSEL(4) /*!< TI0 Edge Detector */ -#define TIMER_SMCFG_TRGSEL_CI0FE0 SMCFG_TRGSEL(5) /*!< filtered TIMER input 0 */ -#define TIMER_SMCFG_TRGSEL_CI1FE1 SMCFG_TRGSEL(6) /*!< filtered TIMER input 1 */ -#define TIMER_SMCFG_TRGSEL_ETIFP SMCFG_TRGSEL(7) /*!< external trigger */ - -/* master mode control */ -#define CTL1_MMC(regval) (BITS(4, 6) & ((uint32_t)(regval) << 4U)) -#define TIMER_TRI_OUT_SRC_RESET CTL1_MMC(0) /*!< the UPG bit as trigger output */ -#define TIMER_TRI_OUT_SRC_ENABLE CTL1_MMC(1) /*!< the counter enable signal TIMER_CTL0_CEN as trigger output */ -#define TIMER_TRI_OUT_SRC_UPDATE CTL1_MMC(2) /*!< update event as trigger output */ -#define TIMER_TRI_OUT_SRC_CH0 CTL1_MMC(3) /*!< a capture or a compare match occurred in channal0 as trigger output TRGO */ -#define TIMER_TRI_OUT_SRC_O0CPRE CTL1_MMC(4) /*!< O0CPRE as trigger output */ -#define TIMER_TRI_OUT_SRC_O1CPRE CTL1_MMC(5) /*!< O1CPRE as trigger output */ -#define TIMER_TRI_OUT_SRC_O2CPRE CTL1_MMC(6) /*!< O2CPRE as trigger output */ -#define TIMER_TRI_OUT_SRC_O3CPRE CTL1_MMC(7) /*!< O3CPRE as trigger output */ - -/* slave mode control */ -#define SMCFG_SMC(regval) (BITS(0, 2) & ((uint32_t)(regval) << 0U)) -#define TIMER_SLAVE_MODE_DISABLE SMCFG_SMC(0) /*!< slave mode disable */ -#define TIMER_ENCODER_MODE0 SMCFG_SMC(1) /*!< encoder mode 0 */ -#define TIMER_ENCODER_MODE1 SMCFG_SMC(2) /*!< encoder mode 1 */ -#define TIMER_ENCODER_MODE2 SMCFG_SMC(3) /*!< encoder mode 2 */ -#define TIMER_SLAVE_MODE_RESTART SMCFG_SMC(4) /*!< restart mode */ -#define TIMER_SLAVE_MODE_PAUSE SMCFG_SMC(5) /*!< pause mode */ -#define TIMER_SLAVE_MODE_EVENT SMCFG_SMC(6) /*!< event mode */ -#define TIMER_SLAVE_MODE_EXTERNAL0 SMCFG_SMC(7) /*!< external clock mode 0 */ - -/* master slave mode selection */ -#define TIMER_MASTER_SLAVE_MODE_ENABLE ((uint32_t)0x00000000U) /*!< master slave mode enable */ -#define TIMER_MASTER_SLAVE_MODE_DISABLE ((uint32_t)0x00000001U) /*!< master slave mode disable */ - -/* external trigger prescaler */ -#define SMCFG_ETPSC(regval) (BITS(12, 13) & ((uint32_t)(regval) << 12U)) -#define TIMER_EXT_TRI_PSC_OFF SMCFG_ETPSC(0) /*!< no divided */ -#define TIMER_EXT_TRI_PSC_DIV2 SMCFG_ETPSC(1) /*!< divided by 2 */ -#define TIMER_EXT_TRI_PSC_DIV4 SMCFG_ETPSC(2) /*!< divided by 4 */ -#define TIMER_EXT_TRI_PSC_DIV8 SMCFG_ETPSC(3) /*!< divided by 8 */ - -/* external trigger polarity */ -#define TIMER_ETP_FALLING TIMER_SMCFG_ETP /*!< active low or falling edge active */ -#define TIMER_ETP_RISING ((uint32_t)0x00000000U) /*!< active high or rising edge active */ - -/* channel 0 trigger input selection */ -#define TIMER_HALLINTERFACE_ENABLE ((uint32_t)0x00000000U) /*!< TIMER hall sensor mode enable */ -#define TIMER_HALLINTERFACE_DISABLE ((uint32_t)0x00000001U) /*!< TIMER hall sensor mode disable */ - -/* timer1 internal trigger input1 remap */ -#define TIMER1_IRMP(regval) (BITS(10, 11) & ((uint32_t)(regval) << 10U)) -#define TIMER1_ITI1_RMP_TIMER7_TRGO TIMER1_IRMP(0) /*!< timer1 internal trigger input 1 remap to TIMER7_TRGO */ -#define TIMER1_ITI1_RMP_ETHERNET_PTP TIMER1_IRMP(1) /*!< timer1 internal trigger input 1 remap to ethernet PTP */ -#define TIMER1_ITI1_RMP_USB_FS_SOF TIMER1_IRMP(2) /*!< timer1 internal trigger input 1 remap to USB FS SOF */ -#define TIMER1_ITI1_RMP_USB_HS_SOF TIMER1_IRMP(3) /*!< timer1 internal trigger input 1 remap to USB HS SOF */ - -/* timer4 channel 3 input remap */ -#define TIMER4_IRMP(regval) (BITS(6, 7) & ((uint32_t)(regval) << 6U)) -#define TIMER4_CI3_RMP_GPIO TIMER4_IRMP(0) /*!< timer4 channel 3 input remap to GPIO pin */ -#define TIMER4_CI3_RMP_IRC32K TIMER4_IRMP(1) /*!< timer4 channel 3 input remap to IRC32K */ -#define TIMER4_CI3_RMP_LXTAL TIMER4_IRMP(2) /*!< timer4 channel 3 input remap to LXTAL */ -#define TIMER4_CI3_RMP_RTC_WAKEUP_INT TIMER4_IRMP(3) /*!< timer4 channel 3 input remap to RTC wakeup interrupt */ - -/* timer10 internal trigger input1 remap */ -#define TIMER10_IRMP(regval) (BITS(0, 1) & ((uint32_t)(regval) << 0U)) -#define TIMER10_ITI1_RMP_GPIO TIMER10_IRMP(0) /*!< timer10 internal trigger input1 remap based on GPIO setting */ -#define TIMER10_ITI1_RMP_RTC_HXTAL_DIV TIMER10_IRMP(2) /*!< timer10 internal trigger input1 remap HXTAL _DIV(clock used for RTC which is HXTAL clock divided by RTCDIV bits in RCU_CFG0 register) */ - -/* timerx(x=0,1,2,13,14,15,16) write cc register selection */ -#define TIMER_CHVSEL_ENABLE ((uint16_t)0x0002U) /*!< write CHxVAL register selection enable */ -#define TIMER_CHVSEL_DISABLE ((uint16_t)0x0000U) /*!< write CHxVAL register selection disable */ - -/* the output value selection */ -#define TIMER_OUTSEL_ENABLE ((uint16_t)0x0001U) /*!< output value selection enable */ -#define TIMER_OUTSEL_DISABLE ((uint16_t)0x0000U) /*!< output value selection disable */ - -/* function declarations */ -/* TIMER timebase*/ -/* deinit a TIMER */ -void timer_deinit(uint32_t timer_periph); -/* initialize TIMER init parameter struct */ -void timer_struct_para_init(timer_parameter_struct* initpara); -/* initialize TIMER counter */ -void timer_init(uint32_t timer_periph, timer_parameter_struct* initpara); -/* enable a TIMER */ -void timer_enable(uint32_t timer_periph); -/* disable a TIMER */ -void timer_disable(uint32_t timer_periph); -/* enable the auto reload shadow function */ -void timer_auto_reload_shadow_enable(uint32_t timer_periph); -/* disable the auto reload shadow function */ -void timer_auto_reload_shadow_disable(uint32_t timer_periph); -/* enable the update event */ -void timer_update_event_enable(uint32_t timer_periph); -/* disable the update event */ -void timer_update_event_disable(uint32_t timer_periph); -/* set TIMER counter alignment mode */ -void timer_counter_alignment(uint32_t timer_periph, uint16_t aligned); -/* set TIMER counter up direction */ -void timer_counter_up_direction(uint32_t timer_periph); -/* set TIMER counter down direction */ -void timer_counter_down_direction(uint32_t timer_periph); -/* configure TIMER prescaler */ -void timer_prescaler_config(uint32_t timer_periph, uint16_t prescaler, uint8_t pscreload); -/* configure TIMER repetition register value */ -void timer_repetition_value_config(uint32_t timer_periph, uint16_t repetition); -/* configure TIMER autoreload register value */ -void timer_autoreload_value_config(uint32_t timer_periph,uint32_t autoreload); -/* configure TIMER counter register value */ -void timer_counter_value_config(uint32_t timer_periph , uint32_t counter); -/* read TIMER counter value */ -uint32_t timer_counter_read(uint32_t timer_periph); -/* read TIMER prescaler value */ -uint16_t timer_prescaler_read(uint32_t timer_periph); -/* configure TIMER single pulse mode */ -void timer_single_pulse_mode_config(uint32_t timer_periph, uint32_t spmode); -/* configure TIMER update source */ -void timer_update_source_config(uint32_t timer_periph, uint32_t update); - -/* TIMER interrupt and flag*/ -/* enable the TIMER interrupt */ -void timer_interrupt_enable(uint32_t timer_periph, uint32_t interrupt); -/* disable the TIMER interrupt */ -void timer_interrupt_disable(uint32_t timer_periph, uint32_t interrupt); -/* get timer interrupt flag */ -FlagStatus timer_interrupt_flag_get(uint32_t timer_periph, uint32_t interrupt); -/* clear TIMER interrupt flag */ -void timer_interrupt_flag_clear(uint32_t timer_periph, uint32_t interrupt); -/* get TIMER flags */ -FlagStatus timer_flag_get(uint32_t timer_periph, uint32_t flag); -/* clear TIMER flags */ -void timer_flag_clear(uint32_t timer_periph, uint32_t flag); - -/* timer DMA and event*/ -/* enable the TIMER DMA */ -void timer_dma_enable(uint32_t timer_periph, uint16_t dma); -/* disable the TIMER DMA */ -void timer_dma_disable(uint32_t timer_periph, uint16_t dma); -/* channel DMA request source selection */ -void timer_channel_dma_request_source_select(uint32_t timer_periph, uint8_t dma_request); -/* configure the TIMER DMA transfer */ -void timer_dma_transfer_config(uint32_t timer_periph,uint32_t dma_baseaddr, uint32_t dma_lenth); -/* software generate events */ -void timer_event_software_generate(uint32_t timer_periph, uint16_t event); - -/* TIMER channel complementary protection */ -/* initialize TIMER break parameter struct */ -void timer_break_struct_para_init(timer_break_parameter_struct* breakpara); -/* configure TIMER break function */ -void timer_break_config(uint32_t timer_periph, timer_break_parameter_struct* breakpara); -/* enable TIMER break function */ -void timer_break_enable(uint32_t timer_periph); -/* disable TIMER break function */ -void timer_break_disable(uint32_t timer_periph); -/* enable TIMER output automatic function */ -void timer_automatic_output_enable(uint32_t timer_periph); -/* disable TIMER output automatic function */ -void timer_automatic_output_disable(uint32_t timer_periph); -/* enable or disable TIMER primary output function */ -void timer_primary_output_config(uint32_t timer_periph, ControlStatus newvalue); -/* enable or disable channel capture/compare control shadow register */ -void timer_channel_control_shadow_config(uint32_t timer_periph, ControlStatus newvalue); -/* configure TIMER channel control shadow register update control */ -void timer_channel_control_shadow_update_config(uint32_t timer_periph, uint8_t ccuctl); - -/* TIMER channel output */ -/* initialize TIMER channel output parameter struct */ -void timer_channel_output_struct_para_init(timer_oc_parameter_struct* ocpara); -/* configure TIMER channel output function */ -void timer_channel_output_config(uint32_t timer_periph,uint16_t channel, timer_oc_parameter_struct* ocpara); -/* configure TIMER channel output compare mode */ -void timer_channel_output_mode_config(uint32_t timer_periph, uint16_t channel,uint16_t ocmode); -/* configure TIMER channel output pulse value */ -void timer_channel_output_pulse_value_config(uint32_t timer_periph, uint16_t channel, uint32_t pulse); -/* configure TIMER channel output shadow function */ -void timer_channel_output_shadow_config(uint32_t timer_periph, uint16_t channel, uint16_t ocshadow); -/* configure TIMER channel output fast function */ -void timer_channel_output_fast_config(uint32_t timer_periph, uint16_t channel, uint16_t ocfast); -/* configure TIMER channel output clear function */ -void timer_channel_output_clear_config(uint32_t timer_periph,uint16_t channel,uint16_t occlear); -/* configure TIMER channel output polarity */ -void timer_channel_output_polarity_config(uint32_t timer_periph, uint16_t channel, uint16_t ocpolarity); -/* configure TIMER channel complementary output polarity */ -void timer_channel_complementary_output_polarity_config(uint32_t timer_periph, uint16_t channel, uint16_t ocnpolarity); -/* configure TIMER channel enable state */ -void timer_channel_output_state_config(uint32_t timer_periph, uint16_t channel, uint32_t state); -/* configure TIMER channel complementary output enable state */ -void timer_channel_complementary_output_state_config(uint32_t timer_periph, uint16_t channel, uint16_t ocnstate); - -/* TIMER channel input */ -/* initialize TIMER channel input parameter struct */ -void timer_channel_input_struct_para_init(timer_ic_parameter_struct* icpara); -/* configure TIMER input capture parameter */ -void timer_input_capture_config(uint32_t timer_periph, uint16_t channel, timer_ic_parameter_struct* icpara); -/* configure TIMER channel input capture prescaler value */ -void timer_channel_input_capture_prescaler_config(uint32_t timer_periph, uint16_t channel, uint16_t prescaler); -/* read TIMER channel capture compare register value */ -uint32_t timer_channel_capture_value_register_read(uint32_t timer_periph, uint16_t channel); -/* configure TIMER input pwm capture function */ -void timer_input_pwm_capture_config(uint32_t timer_periph, uint16_t channel, timer_ic_parameter_struct* icpwm); -/* configure TIMER hall sensor mode */ -void timer_hall_mode_config(uint32_t timer_periph, uint32_t hallmode); - -/* TIMER master and slave */ -/* select TIMER input trigger source */ -void timer_input_trigger_source_select(uint32_t timer_periph, uint32_t intrigger); -/* select TIMER master mode output trigger source */ -void timer_master_output_trigger_source_select(uint32_t timer_periph, uint32_t outrigger); -/* select TIMER slave mode */ -void timer_slave_mode_select(uint32_t timer_periph,uint32_t slavemode); -/* configure TIMER master slave mode */ -void timer_master_slave_mode_config(uint32_t timer_periph, uint32_t masterslave); -/* configure TIMER external trigger input */ -void timer_external_trigger_config(uint32_t timer_periph, uint32_t extprescaler, uint32_t extpolarity, uint32_t extfilter); -/* configure TIMER quadrature decoder mode */ -void timer_quadrature_decoder_mode_config(uint32_t timer_periph, uint32_t decomode, uint16_t ic0polarity, uint16_t ic1polarity); -/* configure TIMER internal clock mode */ -void timer_internal_clock_config(uint32_t timer_periph); -/* configure TIMER the internal trigger as external clock input */ -void timer_internal_trigger_as_external_clock_config(uint32_t timer_periph, uint32_t intrigger); -/* configure TIMER the external trigger as external clock input */ -void timer_external_trigger_as_external_clock_config(uint32_t timer_periph, uint32_t extrigger, uint16_t extpolarity,uint32_t extfilter); -/* configure TIMER the external clock mode 0 */ -void timer_external_clock_mode0_config(uint32_t timer_periph, uint32_t extprescaler, uint32_t extpolarity, uint32_t extfilter); -/* configure TIMER the external clock mode 1 */ -void timer_external_clock_mode1_config(uint32_t timer_periph, uint32_t extprescaler, uint32_t extpolarity, uint32_t extfilter); -/* disable TIMER the external clock mode 1 */ -void timer_external_clock_mode1_disable(uint32_t timer_periph); -/* configure TIMER channel remap function */ -void timer_channel_remap_config(uint32_t timer_periph,uint32_t remap); - -/* TIMER configure */ -/* configure TIMER write CHxVAL register selection */ -void timer_write_chxval_register_config(uint32_t timer_periph, uint16_t ccsel); -/* configure TIMER output value selection */ -void timer_output_value_selection_config(uint32_t timer_periph, uint16_t outsel); - -#endif /* GD32F4XX_TIMER_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_tli.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_tli.h deleted file mode 100644 index bb56747f99..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_tli.h +++ /dev/null @@ -1,376 +0,0 @@ -/*! - \file gd32f4xx_tli.h - \brief definitions for the TLI - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_TLI_H -#define GD32F4XX_TLI_H - -#include "gd32f4xx.h" - -/* TLI definitions */ -#define TLI TLI_BASE /*!< TLI base address */ -/* TLI layer definitions */ -#define LAYER0 TLI_BASE /*!< TLI layer0 base address */ -#define LAYER1 (TLI_BASE+0x80) /*!< TLI layer1 base address */ - -/* registers definitions */ -#define TLI_SPSZ REG32(TLI + 0x08U) /*!< TLI synchronous pulse size register */ -#define TLI_BPSZ REG32(TLI + 0x0CU) /*!< TLI back-porch size register */ -#define TLI_ASZ REG32(TLI + 0x10U) /*!< TLI active size register */ -#define TLI_TSZ REG32(TLI + 0x14U) /*!< TLI total size register */ -#define TLI_CTL REG32(TLI + 0x18U) /*!< TLI control register */ -#define TLI_RL REG32(TLI + 0x24U) /*!< TLI reload Layer register */ -#define TLI_BGC REG32(TLI + 0x2CU) /*!< TLI background color register */ -#define TLI_INTEN REG32(TLI + 0x34U) /*!< TLI interrupt enable register */ -#define TLI_INTF REG32(TLI + 0x38U) /*!< TLI interrupt flag register */ -#define TLI_INTC REG32(TLI + 0x3CU) /*!< TLI interrupt flag clear register */ -#define TLI_LM REG32(TLI + 0x40U) /*!< TLI line mark register */ -#define TLI_CPPOS REG32(TLI + 0x44U) /*!< TLI current pixel position register */ -#define TLI_STAT REG32(TLI + 0x48U) /*!< TLI status register */ -#define TLI_LxCTL(layerx) REG32((layerx) + 0x84U) /*!< TLI layer x control register */ -#define TLI_LxHPOS(layerx) REG32((layerx) + 0x88U) /*!< TLI layer x horizontal position parameters register */ -#define TLI_LxVPOS(layerx) REG32((layerx) + 0x8CU) /*!< TLI layer x vertical position parameters register */ -#define TLI_LxCKEY(layerx) REG32((layerx) + 0x90U) /*!< TLI layer x color key register */ -#define TLI_LxPPF(layerx) REG32((layerx) + 0x94U) /*!< TLI layer x packeted pixel format register */ -#define TLI_LxSA(layerx) REG32((layerx) + 0x98U) /*!< TLI layer x specified alpha register */ -#define TLI_LxDC(layerx) REG32((layerx) + 0x9CU) /*!< TLI layer x default color register */ -#define TLI_LxBLEND(layerx) REG32((layerx) + 0xA0U) /*!< TLI layer x blending register */ -#define TLI_LxFBADDR(layerx) REG32((layerx) + 0xACU) /*!< TLI layer x frame base address register */ -#define TLI_LxFLLEN(layerx) REG32((layerx) + 0xB0U) /*!< TLI layer x frame line length register */ -#define TLI_LxFTLN(layerx) REG32((layerx) + 0xB4U) /*!< TLI layer x frame total line number register */ -#define TLI_LxLUT(layerx) REG32((layerx) + 0xC4U) /*!< TLI layer x look up table register */ - -/* bits definitions */ -/* TLI_SPSZ */ -#define TLI_SPSZ_VPSZ BITS(0,11) /*!< size of the vertical synchronous pulse */ -#define TLI_SPSZ_HPSZ BITS(16,27) /*!< size of the horizontal synchronous pulse */ - -/* TLI_BPSZ */ -#define TLI_BPSZ_VBPSZ BITS(0,11) /*!< size of the vertical back porch plus synchronous pulse */ -#define TLI_BPSZ_HBPSZ BITS(16,27) /*!< size of the horizontal back porch plus synchronous pulse */ - -/* TLI_ASZ */ -#define TLI_ASZ_VASZ BITS(0,11) /*!< size of the vertical active area width plus back porch and synchronous pulse */ -#define TLI_ASZ_HASZ BITS(16,27) /*!< size of the horizontal active area width plus back porch and synchronous pulse */ - -/* TLI_SPSZ */ -#define TLI_TSZ_VTSZ BITS(0,11) /*!< vertical total size of the display, including active area, back porch, synchronous pulse and front porch */ -#define TLI_TSZ_HTSZ BITS(16,27) /*!< horizontal total size of the display, including active area, back porch, synchronous pulse and front porch */ - -/* TLI_CTL */ -#define TLI_CTL_TLIEN BIT(0) /*!< TLI enable bit */ -#define TLI_CTL_BDB BITS(4,6) /*!< blue channel dither bits number */ -#define TLI_CTL_GDB BITS(8,10) /*!< green channel dither bits number */ -#define TLI_CTL_RDB BITS(12,14) /*!< red channel dither bits number */ -#define TLI_CTL_DFEN BIT(16) /*!< dither function enable */ -#define TLI_CTL_CLKPS BIT(28) /*!< pixel clock polarity selection */ -#define TLI_CTL_DEPS BIT(29) /*!< data enable polarity selection */ -#define TLI_CTL_VPPS BIT(30) /*!< vertical pulse polarity selection */ -#define TLI_CTL_HPPS BIT(31) /*!< horizontal pulse polarity selection */ - -/* TLI_RL */ -#define TLI_RL_RQR BIT(0) /*!< request reload */ -#define TLI_RL_FBR BIT(1) /*!< frame blank reload */ - -/* TLI_BGC */ -#define TLI_BGC_BVB BITS(0,7) /*!< background value blue */ -#define TLI_BGC_BVG BITS(8,15) /*!< background value green */ -#define TLI_BGC_BVR BITS(16,23) /*!< background value red */ - -/* TLI_INTEN */ -#define TLI_INTEN_LMIE BIT(0) /*!< line mark interrupt enable */ -#define TLI_INTEN_FEIE BIT(1) /*!< FIFO error interrupt enable */ -#define TLI_INTEN_TEIE BIT(2) /*!< transaction error interrupt enable */ -#define TLI_INTEN_LCRIE BIT(3) /*!< layer configuration reloaded interrupt enable */ - -/* TLI_INTF */ -#define TLI_INTF_LMF BIT(0) /*!< line mark flag */ -#define TLI_INTF_FEF BIT(1) /*!< FIFO error flag */ -#define TLI_INTF_TEF BIT(2) /*!< transaction error flag */ -#define TLI_INTF_LCRF BIT(3) /*!< layer configuration reloaded flag */ - -/* TLI_INTC */ -#define TLI_INTC_LMC BIT(0) /*!< line mark flag clear */ -#define TLI_INTC_FEC BIT(1) /*!< FIFO error flag clear */ -#define TLI_INTC_TEC BIT(2) /*!< transaction error flag clear */ -#define TLI_INTC_LCRC BIT(3) /*!< layer configuration reloaded flag clear */ - -/* TLI_LM */ -#define TLI_LM_LM BITS(0,10) /*!< line mark value */ - -/* TLI_CPPOS */ -#define TLI_CPPOS_VPOS BITS(0,15) /*!< vertical position */ -#define TLI_CPPOS_HPOS BITS(16,31) /*!< horizontal position */ - -/* TLI_STAT */ -#define TLI_STAT_VDE BIT(0) /*!< current VDE status */ -#define TLI_STAT_HDE BIT(1) /*!< current HDE status */ -#define TLI_STAT_VS BIT(2) /*!< current VS status of the TLI */ -#define TLI_STAT_HS BIT(3) /*!< current HS status of the TLI */ - -/* TLI_LxCTL */ -#define TLI_LxCTL_LEN BIT(0) /*!< layer enable */ -#define TLI_LxCTL_CKEYEN BIT(1) /*!< color keying enable */ -#define TLI_LxCTL_LUTEN BIT(4) /*!< LUT enable */ - -/* TLI_LxHPOS */ -#define TLI_LxHPOS_WLP BITS(0,11) /*!< window left position */ -#define TLI_LxHPOS_WRP BITS(16,27) /*!< window right position */ - -/* TLI_LxVPOS */ -#define TLI_LxVPOS_WTP BITS(0,11) /*!< window top position */ -#define TLI_LxVPOS_WBP BITS(16,27) /*!< window bottom position */ - -/* TLI_LxCKEY */ -#define TLI_LxCKEY_CKEYB BITS(0,7) /*!< color key blue */ -#define TLI_LxCKEY_CKEYG BITS(8,15) /*!< color key green */ -#define TLI_LxCKEY_CKEYR BITS(16,23) /*!< color key red */ - -/* TLI_LxPPF */ -#define TLI_LxPPF_PPF BITS(0,2) /*!< packeted pixel format */ - -/* TLI_LxSA */ -#define TLI_LxSA_SA BITS(0,7) /*!< specified alpha */ - -/* TLI_LxDC */ -#define TLI_LxDC_DCB BITS(0,7) /*!< the default color blue */ -#define TLI_LxDC_DCG BITS(8,15) /*!< the default color green */ -#define TLI_LxDC_DCR BITS(16,23) /*!< the default color red */ -#define TLI_LxDC_DCA BITS(24,31) /*!< the default color alpha */ - -/* TLI_LxBLEND */ -#define TLI_LxBLEND_ACF2 BITS(0,2) /*!< alpha calculation factor 2 of blending method */ -#define TLI_LxBLEND_ACF1 BITS(8,10) /*!< alpha calculation factor 1 of blending method */ - -/* TLI_LxFBADDR */ -#define TLI_LxFBADDR_FBADD BITS(0,31) /*!< frame buffer base address */ - -/* TLI_LxFLLEN */ -#define TLI_LxFLLEN_FLL BITS(0,13) /*!< frame line length */ -#define TLI_LxFLLEN_STDOFF BITS(16,29) /*!< frame buffer stride offset */ - -/* TLI_LxFTLN */ -#define TLI_LxFTLN_FTLN BITS(0,10) /*!< frame total line number */ - -/* TLI_LxLUT */ -#define TLI_LxLUT_TB BITS(0,7) /*!< blue channel of a LUT entry */ -#define TLI_LxLUT_TG BITS(8,15) /*!< green channel of a LUT entry */ -#define TLI_LxLUT_TR BITS(16,23) /*!< red channel of a LUT entry */ -#define TLI_LxLUT_TADD BITS(24,31) /*!< look up table write address */ - -/* constants definitions */ -/* TLI parameter struct definitions */ -typedef struct -{ - uint16_t synpsz_vpsz; /*!< size of the vertical synchronous pulse */ - uint16_t synpsz_hpsz; /*!< size of the horizontal synchronous pulse */ - uint16_t backpsz_vbpsz; /*!< size of the vertical back porch plus synchronous pulse */ - uint16_t backpsz_hbpsz; /*!< size of the horizontal back porch plus synchronous pulse */ - uint32_t activesz_vasz; /*!< size of the vertical active area width plus back porch and synchronous pulse */ - uint32_t activesz_hasz; /*!< size of the horizontal active area width plus back porch and synchronous pulse */ - uint32_t totalsz_vtsz; /*!< vertical total size of the display */ - uint32_t totalsz_htsz; /*!< horizontal total size of the display */ - uint32_t backcolor_red; /*!< background value red */ - uint32_t backcolor_green; /*!< background value green */ - uint32_t backcolor_blue; /*!< background value blue */ - uint32_t signalpolarity_hs; /*!< horizontal pulse polarity selection */ - uint32_t signalpolarity_vs; /*!< vertical pulse polarity selection */ - uint32_t signalpolarity_de; /*!< data enable polarity selection */ - uint32_t signalpolarity_pixelck; /*!< pixel clock polarity selection */ -}tli_parameter_struct; - -/* TLI layer parameter struct definitions */ -typedef struct -{ - uint16_t layer_window_rightpos; /*!< window right position */ - uint16_t layer_window_leftpos; /*!< window left position */ - uint16_t layer_window_bottompos; /*!< window bottom position */ - uint16_t layer_window_toppos; /*!< window top position */ - uint32_t layer_ppf; /*!< packeted pixel format */ - uint8_t layer_sa; /*!< specified alpha */ - uint8_t layer_default_alpha; /*!< the default color alpha */ - uint8_t layer_default_red; /*!< the default color red */ - uint8_t layer_default_green; /*!< the default color green */ - uint8_t layer_default_blue; /*!< the default color blue */ - uint32_t layer_acf1; /*!< alpha calculation factor 1 of blending method */ - uint32_t layer_acf2; /*!< alpha calculation factor 2 of blending method */ - uint32_t layer_frame_bufaddr; /*!< frame buffer base address */ - uint16_t layer_frame_buf_stride_offset; /*!< frame buffer stride offset */ - uint16_t layer_frame_line_length; /*!< frame line length */ - uint16_t layer_frame_total_line_number; /*!< frame total line number */ -}tli_layer_parameter_struct; - -/* TLI layer LUT parameter struct definitions */ -typedef struct -{ - uint32_t layer_table_addr; /*!< look up table write address */ - uint8_t layer_lut_channel_red; /*!< red channel of a LUT entry */ - uint8_t layer_lut_channel_green; /*!< green channel of a LUT entry */ - uint8_t layer_lut_channel_blue; /*!< blue channel of a LUT entry */ -}tli_layer_lut_parameter_struct; - -/* packeted pixel format */ -typedef enum -{ - LAYER_PPF_ARGB8888, /*!< layerx pixel format ARGB8888 */ - LAYER_PPF_RGB888, /*!< layerx pixel format RGB888 */ - LAYER_PPF_RGB565, /*!< layerx pixel format RGB565 */ - LAYER_PPF_ARGB1555, /*!< layerx pixel format ARGB1555 */ - LAYER_PPF_ARGB4444, /*!< layerx pixel format ARGB4444 */ - LAYER_PPF_L8, /*!< layerx pixel format L8 */ - LAYER_PPF_AL44, /*!< layerx pixel format AL44 */ - LAYER_PPF_AL88 /*!< layerx pixel format AL88 */ -}tli_layer_ppf_enum; - -/* TLI flags */ -#define TLI_FLAG_VDE TLI_STAT_VDE /*!< current VDE status */ -#define TLI_FLAG_HDE TLI_STAT_HDE /*!< current HDE status */ -#define TLI_FLAG_VS TLI_STAT_VS /*!< current VS status of the TLI */ -#define TLI_FLAG_HS TLI_STAT_HS /*!< current HS status of the TLI */ -#define TLI_FLAG_LM BIT(0) | BIT(31) /*!< line mark interrupt flag */ -#define TLI_FLAG_FE BIT(1) | BIT(31) /*!< FIFO error interrupt flag */ -#define TLI_FLAG_TE BIT(2) | BIT(31) /*!< transaction error interrupt flag */ -#define TLI_FLAG_LCR BIT(3) | BIT(31) /*!< layer configuration reloaded interrupt flag */ - -/* TLI interrupt enable or disable */ -#define TLI_INT_LM BIT(0) /*!< line mark interrupt */ -#define TLI_INT_FE BIT(1) /*!< FIFO error interrupt */ -#define TLI_INT_TE BIT(2) /*!< transaction error interrupt */ -#define TLI_INT_LCR BIT(3) /*!< layer configuration reloaded interrupt */ - -/* TLI interrupt flag */ -#define TLI_INT_FLAG_LM BIT(0) /*!< line mark interrupt flag */ -#define TLI_INT_FLAG_FE BIT(1) /*!< FIFO error interrupt flag */ -#define TLI_INT_FLAG_TE BIT(2) /*!< transaction error interrupt flag */ -#define TLI_INT_FLAG_LCR BIT(3) /*!< layer configuration reloaded interrupt flag */ - -/* layer reload configure */ -#define TLI_FRAME_BLANK_RELOAD_EN ((uint8_t)0x00U) /*!< the layer configuration will be reloaded at frame blank */ -#define TLI_REQUEST_RELOAD_EN ((uint8_t)0x01U) /*!< the layer configuration will be reloaded after this bit sets */ - -/* dither function */ -#define TLI_DITHER_DISABLE ((uint8_t)0x00U) /*!< dither function disable */ -#define TLI_DITHER_ENABLE ((uint8_t)0x01U) /*!< dither function enable */ - -/* horizontal pulse polarity selection */ -#define TLI_HSYN_ACTLIVE_LOW ((uint32_t)0x00000000U) /*!< horizontal synchronous pulse active low */ -#define TLI_HSYN_ACTLIVE_HIGHT TLI_CTL_HPPS /*!< horizontal synchronous pulse active high */ - -/* vertical pulse polarity selection */ -#define TLI_VSYN_ACTLIVE_LOW ((uint32_t)0x00000000U) /*!< vertical synchronous pulse active low */ -#define TLI_VSYN_ACTLIVE_HIGHT TLI_CTL_VPPS /*!< vertical synchronous pulse active high */ - -/* pixel clock polarity selection */ -#define TLI_PIXEL_CLOCK_TLI ((uint32_t)0x00000000U) /*!< pixel clock is TLI clock */ -#define TLI_PIXEL_CLOCK_INVERTEDTLI TLI_CTL_CLKPS /*!< pixel clock is inverted TLI clock */ - -/* data enable polarity selection */ -#define TLI_DE_ACTLIVE_LOW ((uint32_t)0x00000000U) /*!< data enable active low */ -#define TLI_DE_ACTLIVE_HIGHT TLI_CTL_DEPS /*!< data enable active high */ - -/* alpha calculation factor 1 of blending method */ -#define LxBLEND_ACF1(regval) (BITS(8,10) & ((uint32_t)(regval)<<8)) -#define LAYER_ACF1_SA LxBLEND_ACF1(4) /*!< normalization specified alpha */ -#define LAYER_ACF1_PASA LxBLEND_ACF1(6) /*!< normalization pixel alpha * normalization specified alpha */ - -/* alpha calculation factor 2 of blending method */ -#define LxBLEND_ACF2(regval) (BITS(0,2) & ((uint32_t)(regval))) -#define LAYER_ACF2_SA LxBLEND_ACF2(5) /*!< normalization specified alpha */ -#define LAYER_ACF2_PASA LxBLEND_ACF2(7) /*!< normalization pixel alpha * normalization specified alpha */ - -/* function declarations */ -/* initialization functions, TLI enable or disable, TLI reload mode configuration */ -/* deinitialize TLI registers */ -void tli_deinit(void); -/* initialize the parameters of TLI parameter structure with the default values, it is suggested - that call this function after a tli_parameter_struct structure is defined */ -void tli_struct_para_init(tli_parameter_struct *tli_struct); -/* initialize TLI */ -void tli_init(tli_parameter_struct *tli_struct); -/* configure TLI dither function */ -void tli_dither_config(uint8_t dither_stat); -/* enable TLI */ -void tli_enable(void); -/* disable TLI */ -void tli_disable(void); -/* configurate TLI reload mode */ -void tli_reload_config(uint8_t reload_mod); - -/* TLI layer configuration functions */ -/* initialize the parameters of TLI layer structure with the default values, it is suggested - that call this function after a tli_layer_parameter_struct structure is defined */ -void tli_layer_struct_para_init(tli_layer_parameter_struct *layer_struct); -/* initialize TLI layer */ -void tli_layer_init(uint32_t layerx,tli_layer_parameter_struct *layer_struct); -/* reconfigure window position */ -void tli_layer_window_offset_modify(uint32_t layerx,uint16_t offset_x,uint16_t offset_y); -/* initialize the parameters of TLI layer LUT structure with the default values, it is suggested - that call this function after a tli_layer_lut_parameter_struct structure is defined */ -void tli_lut_struct_para_init(tli_layer_lut_parameter_struct *lut_struct); -/* initialize TLI layer LUT */ -void tli_lut_init(uint32_t layerx,tli_layer_lut_parameter_struct *lut_struct); -/* initialize TLI layer color key */ -void tli_color_key_init(uint32_t layerx,uint8_t redkey,uint8_t greenkey,uint8_t bluekey); -/* enable TLI layer */ -void tli_layer_enable(uint32_t layerx); -/* disable TLI layer */ -void tli_layer_disable(uint32_t layerx); -/* enable TLI layer color keying */ -void tli_color_key_enable(uint32_t layerx); -/* disable TLI layer color keying */ -void tli_color_key_disable(uint32_t layerx); -/* enable TLI layer LUT */ -void tli_lut_enable(uint32_t layerx); -/* disable TLI layer LUT */ -void tli_lut_disable(uint32_t layerx); - -/* set line mark value */ -void tli_line_mark_set(uint16_t line_num); -/* get current displayed position */ -uint32_t tli_current_pos_get(void); - -/* flag and interrupt functions */ -/* enable TLI interrupt */ -void tli_interrupt_enable(uint32_t int_flag); -/* disable TLI interrupt */ -void tli_interrupt_disable(uint32_t int_flag); -/* get TLI interrupt flag */ -FlagStatus tli_interrupt_flag_get(uint32_t int_flag); -/* clear TLI interrupt flag */ -void tli_interrupt_flag_clear(uint32_t int_flag); -/* get TLI flag or state in TLI_INTF register or TLI_STAT register */ -FlagStatus tli_flag_get(uint32_t flag); - -#endif /* GD32F4XX_TLI_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_trng.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_trng.h deleted file mode 100644 index 651e5bc063..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_trng.h +++ /dev/null @@ -1,104 +0,0 @@ -/*! - \file gd32f4xx_trng.h - \brief definitions for the TRNG - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_TRNG_H -#define GD32F4XX_TRNG_H - -#include "gd32f4xx.h" - -/* TRNG definitions */ -#define TRNG TRNG_BASE - -/* registers definitions */ -#define TRNG_CTL REG32(TRNG + 0x00U) /*!< control register */ -#define TRNG_STAT REG32(TRNG + 0x04U) /*!< status register */ -#define TRNG_DATA REG32(TRNG + 0x08U) /*!< data register */ - -/* bits definitions */ -/* TRNG_CTL */ -#define TRNG_CTL_TRNGEN BIT(2) /*!< TRNG enable bit */ -#define TRNG_CTL_IE BIT(3) /*!< interrupt enable bit */ - -/* TRNG_STAT */ -#define TRNG_STAT_DRDY BIT(0) /*!< random data ready status bit */ -#define TRNG_STAT_CECS BIT(1) /*!< clock error current status */ -#define TRNG_STAT_SECS BIT(2) /*!< seed error current status */ -#define TRNG_STAT_CEIF BIT(5) /*!< clock error interrupt flag */ -#define TRNG_STAT_SEIF BIT(6) /*!< seed error interrupt flag */ - -/* TRNG_DATA */ -#define TRNG_DATA_TRNDATA BITS(0,31) /*!< 32-Bit Random data */ - -/* constants definitions */ -/* trng status flag */ -typedef enum -{ - TRNG_FLAG_DRDY = TRNG_STAT_DRDY, /*!< random Data ready status */ - TRNG_FLAG_CECS = TRNG_STAT_CECS, /*!< clock error current status */ - TRNG_FLAG_SECS = TRNG_STAT_SECS /*!< seed error current status */ -}trng_flag_enum; - -/* trng inerrupt flag */ -typedef enum -{ - TRNG_INT_FLAG_CEIF = TRNG_STAT_CEIF, /*!< clock error interrupt flag */ - TRNG_INT_FLAG_SEIF = TRNG_STAT_SEIF /*!< seed error interrupt flag */ -}trng_int_flag_enum; - -/* function declarations */ -/* initialization functions */ -/* deinitialize the TRNG */ -void trng_deinit(void); -/* enable the TRNG interface */ -void trng_enable(void); -/* disable the TRNG interface */ -void trng_disable(void); -/* get the true random data */ -uint32_t trng_get_true_random_data(void); - -/* flag & interrupt functions */ -/* trng interrupt enable */ -void trng_interrupt_enable(void); -/* trng interrupt disable */ -void trng_interrupt_disable(void); -/* get the trng status flags */ -FlagStatus trng_flag_get(trng_flag_enum flag); -/* get the trng interrupt flags */ -FlagStatus trng_interrupt_flag_get(trng_int_flag_enum int_flag); -/* clear the trng interrupt flags */ -void trng_interrupt_flag_clear(trng_int_flag_enum int_flag); - -#endif /* GD32F4XX_TRNG_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_usart.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_usart.h deleted file mode 100644 index 30927f42fe..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_usart.h +++ /dev/null @@ -1,495 +0,0 @@ -/*! - \file gd32f4xx_usart.h - \brief definitions for the USART - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_USART_H -#define GD32F4XX_USART_H - -#include "gd32f4xx.h" - -/* USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) definitions */ -#define USART1 USART_BASE /*!< USART1 base address */ -#define USART2 (USART_BASE+0x00000400U) /*!< USART2 base address */ -#define UART3 (USART_BASE+0x00000800U) /*!< UART3 base address */ -#define UART4 (USART_BASE+0x00000C00U) /*!< UART4 base address */ -#define UART6 (USART_BASE+0x00003400U) /*!< UART6 base address */ -#define UART7 (USART_BASE+0x00003800U) /*!< UART7 base address */ -#define USART0 (USART_BASE+0x0000CC00U) /*!< USART0 base address */ -#define USART5 (USART_BASE+0x0000D000U) /*!< USART5 base address */ - -/* registers definitions */ -#define USART_STAT0(usartx) REG32((usartx) + 0x00U) /*!< USART status register 0 */ -#define USART_DATA(usartx) REG32((usartx) + 0x04U) /*!< USART data register */ -#define USART_BAUD(usartx) REG32((usartx) + 0x08U) /*!< USART baud rate register */ -#define USART_CTL0(usartx) REG32((usartx) + 0x0CU) /*!< USART control register 0 */ -#define USART_CTL1(usartx) REG32((usartx) + 0x10U) /*!< USART control register 1 */ -#define USART_CTL2(usartx) REG32((usartx) + 0x14U) /*!< USART control register 2 */ -#define USART_GP(usartx) REG32((usartx) + 0x18U) /*!< USART guard time and prescaler register */ -#define USART_CTL3(usartx) REG32((usartx) + 0x80U) /*!< USART control register 3 */ -#define USART_RT(usartx) REG32((usartx) + 0x84U) /*!< USART receiver timeout register */ -#define USART_STAT1(usartx) REG32((usartx) + 0x88U) /*!< USART status register 1 */ -#define USART_CHC(usartx) REG32((usartx) + 0xC0U) /*!< USART coherence control register */ - -/* bits definitions */ -/* USARTx_STAT0 */ -#define USART_STAT0_PERR BIT(0) /*!< parity error flag */ -#define USART_STAT0_FERR BIT(1) /*!< frame error flag */ -#define USART_STAT0_NERR BIT(2) /*!< noise error flag */ -#define USART_STAT0_ORERR BIT(3) /*!< overrun error */ -#define USART_STAT0_IDLEF BIT(4) /*!< IDLE frame detected flag */ -#define USART_STAT0_RBNE BIT(5) /*!< read data buffer not empty */ -#define USART_STAT0_TC BIT(6) /*!< transmission complete */ -#define USART_STAT0_TBE BIT(7) /*!< transmit data buffer empty */ -#define USART_STAT0_LBDF BIT(8) /*!< LIN break detected flag */ -#define USART_STAT0_CTSF BIT(9) /*!< CTS change flag */ - -/* USARTx_DATA */ -#define USART_DATA_DATA BITS(0,8) /*!< transmit or read data value */ - -/* USARTx_BAUD */ -#define USART_BAUD_FRADIV BITS(0,3) /*!< fraction part of baud-rate divider */ -#define USART_BAUD_INTDIV BITS(4,15) /*!< integer part of baud-rate divider */ - -/* USARTx_CTL0 */ -#define USART_CTL0_SBKCMD BIT(0) /*!< send break command */ -#define USART_CTL0_RWU BIT(1) /*!< receiver wakeup from mute mode */ -#define USART_CTL0_REN BIT(2) /*!< receiver enable */ -#define USART_CTL0_TEN BIT(3) /*!< transmitter enable */ -#define USART_CTL0_IDLEIE BIT(4) /*!< idle line detected interrupt enable */ -#define USART_CTL0_RBNEIE BIT(5) /*!< read data buffer not empty interrupt and overrun error interrupt enable */ -#define USART_CTL0_TCIE BIT(6) /*!< transmission complete interrupt enable */ -#define USART_CTL0_TBEIE BIT(7) /*!< transmitter buffer empty interrupt enable */ -#define USART_CTL0_PERRIE BIT(8) /*!< parity error interrupt enable */ -#define USART_CTL0_PM BIT(9) /*!< parity mode */ -#define USART_CTL0_PCEN BIT(10) /*!< parity check function enable */ -#define USART_CTL0_WM BIT(11) /*!< wakeup method in mute mode */ -#define USART_CTL0_WL BIT(12) /*!< word length */ -#define USART_CTL0_UEN BIT(13) /*!< USART enable */ -#define USART_CTL0_OVSMOD BIT(15) /*!< oversample mode */ - -/* USARTx_CTL1 */ -#define USART_CTL1_ADDR BITS(0,3) /*!< address of USART */ -#define USART_CTL1_LBLEN BIT(5) /*!< LIN break frame length */ -#define USART_CTL1_LBDIE BIT(6) /*!< LIN break detected interrupt eanble */ -#define USART_CTL1_CLEN BIT(8) /*!< CK length */ -#define USART_CTL1_CPH BIT(9) /*!< CK phase */ -#define USART_CTL1_CPL BIT(10) /*!< CK polarity */ -#define USART_CTL1_CKEN BIT(11) /*!< CK pin enable */ -#define USART_CTL1_STB BITS(12,13) /*!< STOP bits length */ -#define USART_CTL1_LMEN BIT(14) /*!< LIN mode enable */ - -/* USARTx_CTL2 */ -#define USART_CTL2_ERRIE BIT(0) /*!< error interrupt enable */ -#define USART_CTL2_IREN BIT(1) /*!< IrDA mode enable */ -#define USART_CTL2_IRLP BIT(2) /*!< IrDA low-power */ -#define USART_CTL2_HDEN BIT(3) /*!< half-duplex enable */ -#define USART_CTL2_NKEN BIT(4) /*!< NACK enable in smartcard mode */ -#define USART_CTL2_SCEN BIT(5) /*!< smartcard mode enable */ -#define USART_CTL2_DENR BIT(6) /*!< DMA request enable for reception */ -#define USART_CTL2_DENT BIT(7) /*!< DMA request enable for transmission */ -#define USART_CTL2_RTSEN BIT(8) /*!< RTS enable */ -#define USART_CTL2_CTSEN BIT(9) /*!< CTS enable */ -#define USART_CTL2_CTSIE BIT(10) /*!< CTS interrupt enable */ -#define USART_CTL2_OSB BIT(11) /*!< one sample bit method */ - -/* USARTx_GP */ -#define USART_GP_PSC BITS(0,7) /*!< prescaler value for dividing the system clock */ -#define USART_GP_GUAT BITS(8,15) /*!< guard time value in smartcard mode */ - -/* USARTx_CTL3 */ -#define USART_CTL3_RTEN BIT(0) /*!< receiver timeout enable */ -#define USART_CTL3_SCRTNUM BITS(1,3) /*!< smartcard auto-retry number */ -#define USART_CTL3_RTIE BIT(4) /*!< interrupt enable bit of receive timeout event */ -#define USART_CTL3_EBIE BIT(5) /*!< interrupt enable bit of end of block event */ -#define USART_CTL3_RINV BIT(8) /*!< RX pin level inversion */ -#define USART_CTL3_TINV BIT(9) /*!< TX pin level inversion */ -#define USART_CTL3_DINV BIT(10) /*!< data bit level inversion */ -#define USART_CTL3_MSBF BIT(11) /*!< most significant bit first */ - -/* USARTx_RT */ -#define USART_RT_RT BITS(0,23) /*!< receiver timeout threshold */ -#define USART_RT_BL BITS(24,31) /*!< block length */ - -/* USARTx_STAT1 */ -#define USART_STAT1_RTF BIT(11) /*!< receiver timeout flag */ -#define USART_STAT1_EBF BIT(12) /*!< end of block flag */ -#define USART_STAT1_BSY BIT(16) /*!< busy flag */ - -/* USARTx_CHC */ -#define USART_CHC_HCM BIT(0) /*!< hardware flow control coherence mode */ -#define USART_CHC_PCM BIT(1) /*!< parity check coherence mode */ -#define USART_CHC_BCM BIT(2) /*!< break frame coherence mode */ -#define USART_CHC_EPERR BIT(8) /*!< early parity error flag */ - -/* constants definitions */ -/* define the USART bit position and its register index offset */ -#define USART_REGIDX_BIT(regidx, bitpos) (((uint32_t)(regidx) << 6) | (uint32_t)(bitpos)) -#define USART_REG_VAL(usartx, offset) (REG32((usartx) + (((uint32_t)(offset) & 0xFFFFU) >> 6))) -#define USART_BIT_POS(val) ((uint32_t)(val) & 0x1FU) -#define USART_REGIDX_BIT2(regidx, bitpos, regidx2, bitpos2) (((uint32_t)(regidx2) << 22) | (uint32_t)((bitpos2) << 16)\ - | (((uint32_t)(regidx) << 6) | (uint32_t)(bitpos))) -#define USART_REG_VAL2(usartx, offset) (REG32((usartx) + ((uint32_t)(offset) >> 22))) -#define USART_BIT_POS2(val) (((uint32_t)(val) & 0x1F0000U) >> 16) - -/* register offset */ -#define USART_STAT0_REG_OFFSET 0x00U /*!< STAT0 register offset */ -#define USART_STAT1_REG_OFFSET 0x88U /*!< STAT1 register offset */ -#define USART_CTL0_REG_OFFSET 0x0CU /*!< CTL0 register offset */ -#define USART_CTL1_REG_OFFSET 0x10U /*!< CTL1 register offset */ -#define USART_CTL2_REG_OFFSET 0x14U /*!< CTL2 register offset */ -#define USART_CTL3_REG_OFFSET 0x80U /*!< CTL3 register offset */ -#define USART_CHC_REG_OFFSET 0xC0U /*!< CHC register offset */ - -/* USART flags */ -typedef enum -{ - /* flags in STAT0 register */ - USART_FLAG_CTS = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 9U), /*!< CTS change flag */ - USART_FLAG_LBD = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 8U), /*!< LIN break detected flag */ - USART_FLAG_TBE = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 7U), /*!< transmit data buffer empty */ - USART_FLAG_TC = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 6U), /*!< transmission complete */ - USART_FLAG_RBNE = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 5U), /*!< read data buffer not empty */ - USART_FLAG_IDLE = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 4U), /*!< IDLE frame detected flag */ - USART_FLAG_ORERR = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 3U), /*!< overrun error */ - USART_FLAG_NERR = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 2U), /*!< noise error flag */ - USART_FLAG_FERR = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 1U), /*!< frame error flag */ - USART_FLAG_PERR = USART_REGIDX_BIT(USART_STAT0_REG_OFFSET, 0U), /*!< parity error flag */ - /* flags in STAT1 register */ - USART_FLAG_BSY = USART_REGIDX_BIT(USART_STAT1_REG_OFFSET, 16U), /*!< busy flag */ - USART_FLAG_EB = USART_REGIDX_BIT(USART_STAT1_REG_OFFSET, 12U), /*!< end of block flag */ - USART_FLAG_RT = USART_REGIDX_BIT(USART_STAT1_REG_OFFSET, 11U), /*!< receiver timeout flag */ - /* flags in CHC register */ - USART_FLAG_EPERR = USART_REGIDX_BIT(USART_CHC_REG_OFFSET, 8U), /*!< early parity error flag */ -}usart_flag_enum; - -/* USART interrupt flags */ -typedef enum -{ - /* interrupt flags in CTL0 register */ - USART_INT_FLAG_PERR = USART_REGIDX_BIT2(USART_CTL0_REG_OFFSET, 8U, USART_STAT0_REG_OFFSET, 0U), /*!< parity error interrupt and flag */ - USART_INT_FLAG_TBE = USART_REGIDX_BIT2(USART_CTL0_REG_OFFSET, 7U, USART_STAT0_REG_OFFSET, 7U), /*!< transmitter buffer empty interrupt and flag */ - USART_INT_FLAG_TC = USART_REGIDX_BIT2(USART_CTL0_REG_OFFSET, 6U, USART_STAT0_REG_OFFSET, 6U), /*!< transmission complete interrupt and flag */ - USART_INT_FLAG_RBNE = USART_REGIDX_BIT2(USART_CTL0_REG_OFFSET, 5U, USART_STAT0_REG_OFFSET, 5U), /*!< read data buffer not empty interrupt and flag */ - USART_INT_FLAG_RBNE_ORERR = USART_REGIDX_BIT2(USART_CTL0_REG_OFFSET, 5U, USART_STAT0_REG_OFFSET, 3U), /*!< read data buffer not empty interrupt and overrun error flag */ - USART_INT_FLAG_IDLE = USART_REGIDX_BIT2(USART_CTL0_REG_OFFSET, 4U, USART_STAT0_REG_OFFSET, 4U), /*!< IDLE line detected interrupt and flag */ - /* interrupt flags in CTL1 register */ - USART_INT_FLAG_LBD = USART_REGIDX_BIT2(USART_CTL1_REG_OFFSET, 6U, USART_STAT0_REG_OFFSET, 8U), /*!< LIN break detected interrupt and flag */ - /* interrupt flags in CTL2 register */ - USART_INT_FLAG_CTS = USART_REGIDX_BIT2(USART_CTL2_REG_OFFSET, 10U, USART_STAT0_REG_OFFSET, 9U), /*!< CTS interrupt and flag */ - USART_INT_FLAG_ERR_ORERR = USART_REGIDX_BIT2(USART_CTL2_REG_OFFSET, 0U, USART_STAT0_REG_OFFSET, 3U), /*!< error interrupt and overrun error */ - USART_INT_FLAG_ERR_NERR = USART_REGIDX_BIT2(USART_CTL2_REG_OFFSET, 0U, USART_STAT0_REG_OFFSET, 2U), /*!< error interrupt and noise error flag */ - USART_INT_FLAG_ERR_FERR = USART_REGIDX_BIT2(USART_CTL2_REG_OFFSET, 0U, USART_STAT0_REG_OFFSET, 1U), /*!< error interrupt and frame error flag */ - /* interrupt flags in CTL3 register */ - USART_INT_FLAG_EB = USART_REGIDX_BIT2(USART_CTL3_REG_OFFSET, 5U, USART_STAT1_REG_OFFSET, 12U), /*!< interrupt enable bit of end of block event and flag */ - USART_INT_FLAG_RT = USART_REGIDX_BIT2(USART_CTL3_REG_OFFSET, 4U, USART_STAT1_REG_OFFSET, 11U), /*!< interrupt enable bit of receive timeout event and flag */ -}usart_interrupt_flag_enum; - -/* USART interrupt flags */ -typedef enum -{ - /* interrupt in CTL0 register */ - USART_INT_PERR = USART_REGIDX_BIT(USART_CTL0_REG_OFFSET, 8U), /*!< parity error interrupt */ - USART_INT_TBE = USART_REGIDX_BIT(USART_CTL0_REG_OFFSET, 7U), /*!< transmitter buffer empty interrupt */ - USART_INT_TC = USART_REGIDX_BIT(USART_CTL0_REG_OFFSET, 6U), /*!< transmission complete interrupt */ - USART_INT_RBNE = USART_REGIDX_BIT(USART_CTL0_REG_OFFSET, 5U), /*!< read data buffer not empty interrupt and overrun error interrupt */ - USART_INT_IDLE = USART_REGIDX_BIT(USART_CTL0_REG_OFFSET, 4U), /*!< IDLE line detected interrupt */ - /* interrupt in CTL1 register */ - USART_INT_LBD = USART_REGIDX_BIT(USART_CTL1_REG_OFFSET, 6U), /*!< LIN break detected interrupt */ - /* interrupt in CTL2 register */ - USART_INT_CTS = USART_REGIDX_BIT(USART_CTL2_REG_OFFSET, 10U), /*!< CTS interrupt */ - USART_INT_ERR = USART_REGIDX_BIT(USART_CTL2_REG_OFFSET, 0U), /*!< error interrupt */ - /* interrupt in CTL3 register */ - USART_INT_EB = USART_REGIDX_BIT(USART_CTL3_REG_OFFSET, 5U), /*!< interrupt enable bit of end of block event */ - USART_INT_RT = USART_REGIDX_BIT(USART_CTL3_REG_OFFSET, 4U), /*!< interrupt enable bit of receive timeout event */ -}usart_interrupt_enum; - -/* USART invert configure */ -typedef enum -{ - /* data bit level inversion */ - USART_DINV_ENABLE, /*!< data bit level inversion */ - USART_DINV_DISABLE, /*!< data bit level not inversion */ - /* TX pin level inversion */ - USART_TXPIN_ENABLE, /*!< TX pin level inversion */ - USART_TXPIN_DISABLE, /*!< TX pin level not inversion */ - /* RX pin level inversion */ - USART_RXPIN_ENABLE, /*!< RX pin level inversion */ - USART_RXPIN_DISABLE, /*!< RX pin level not inversion */ -}usart_invert_enum; - -/* USART receiver configure */ -#define CTL0_REN(regval) (BIT(2) & ((uint32_t)(regval) << 2)) -#define USART_RECEIVE_ENABLE CTL0_REN(1) /*!< enable receiver */ -#define USART_RECEIVE_DISABLE CTL0_REN(0) /*!< disable receiver */ - -/* USART transmitter configure */ -#define CTL0_TEN(regval) (BIT(3) & ((uint32_t)(regval) << 3)) -#define USART_TRANSMIT_ENABLE CTL0_TEN(1) /*!< enable transmitter */ -#define USART_TRANSMIT_DISABLE CTL0_TEN(0) /*!< disable transmitter */ - -/* USART parity bits definitions */ -#define CTL0_PM(regval) (BITS(9,10) & ((uint32_t)(regval) << 9)) -#define USART_PM_NONE CTL0_PM(0) /*!< no parity */ -#define USART_PM_EVEN CTL0_PM(2) /*!< even parity */ -#define USART_PM_ODD CTL0_PM(3) /*!< odd parity */ - -/* USART wakeup method in mute mode */ -#define CTL0_WM(regval) (BIT(11) & ((uint32_t)(regval) << 11)) -#define USART_WM_IDLE CTL0_WM(0) /*!< idle Line */ -#define USART_WM_ADDR CTL0_WM(1) /*!< address mask */ - -/* USART word length definitions */ -#define CTL0_WL(regval) (BIT(12) & ((uint32_t)(regval) << 12)) -#define USART_WL_8BIT CTL0_WL(0) /*!< 8 bits */ -#define USART_WL_9BIT CTL0_WL(1) /*!< 9 bits */ - -/* USART oversampling mode definitions */ -#define CTL0_OVSMOD(regval) (BIT(15) & ((uint32_t)(regval) << 15)) -#define USART_OVSMOD_16 CTL0_OVSMOD(0) /*!< 16 bits */ -#define USART_OVSMOD_8 CTL0_OVSMOD(1) /*!< 8 bits */ - -/* USART stop bits definitions */ -#define CTL1_STB(regval) (BITS(12,13) & ((uint32_t)(regval) << 12)) -#define USART_STB_1BIT CTL1_STB(0) /*!< 1 bit */ -#define USART_STB_0_5BIT CTL1_STB(1) /*!< 0.5 bit */ -#define USART_STB_2BIT CTL1_STB(2) /*!< 2 bits */ -#define USART_STB_1_5BIT CTL1_STB(3) /*!< 1.5 bits */ - -/* USART LIN break frame length */ -#define CTL1_LBLEN(regval) (BIT(5) & ((uint32_t)(regval) << 5)) -#define USART_LBLEN_10B CTL1_LBLEN(0) /*!< 10 bits */ -#define USART_LBLEN_11B CTL1_LBLEN(1) /*!< 11 bits */ - -/* USART CK length */ -#define CTL1_CLEN(regval) (BIT(8) & ((uint32_t)(regval) << 8)) -#define USART_CLEN_NONE CTL1_CLEN(0) /*!< there are 7 CK pulses for an 8 bit frame and 8 CK pulses for a 9 bit frame */ -#define USART_CLEN_EN CTL1_CLEN(1) /*!< there are 8 CK pulses for an 8 bit frame and 9 CK pulses for a 9 bit frame */ - -/* USART clock phase */ -#define CTL1_CPH(regval) (BIT(9) & ((uint32_t)(regval) << 9)) -#define USART_CPH_1CK CTL1_CPH(0) /*!< first clock transition is the first data capture edge */ -#define USART_CPH_2CK CTL1_CPH(1) /*!< second clock transition is the first data capture edge */ - -/* USART clock polarity */ -#define CTL1_CPL(regval) (BIT(10) & ((uint32_t)(regval) << 10)) -#define USART_CPL_LOW CTL1_CPL(0) /*!< steady low value on CK pin */ -#define USART_CPL_HIGH CTL1_CPL(1) /*!< steady high value on CK pin */ - -/* USART DMA request for receive configure */ -#define CLT2_DENR(regval) (BIT(6) & ((uint32_t)(regval) << 6)) -#define USART_DENR_ENABLE CLT2_DENR(1) /*!< DMA request enable for reception */ -#define USART_DENR_DISABLE CLT2_DENR(0) /*!< DMA request disable for reception */ - -/* USART DMA request for transmission configure */ -#define CLT2_DENT(regval) (BIT(7) & ((uint32_t)(regval) << 7)) -#define USART_DENT_ENABLE CLT2_DENT(1) /*!< DMA request enable for transmission */ -#define USART_DENT_DISABLE CLT2_DENT(0) /*!< DMA request disable for transmission */ - -/* USART RTS configure */ -#define CLT2_RTSEN(regval) (BIT(8) & ((uint32_t)(regval) << 8)) -#define USART_RTS_ENABLE CLT2_RTSEN(1) /*!< RTS enable */ -#define USART_RTS_DISABLE CLT2_RTSEN(0) /*!< RTS disable */ - -/* USART CTS configure */ -#define CLT2_CTSEN(regval) (BIT(9) & ((uint32_t)(regval) << 9)) -#define USART_CTS_ENABLE CLT2_CTSEN(1) /*!< CTS enable */ -#define USART_CTS_DISABLE CLT2_CTSEN(0) /*!< CTS disable */ - -/* USART one sample bit method configure */ -#define CTL2_OSB(regval) (BIT(11) & ((uint32_t)(regval) << 11)) -#define USART_OSB_1bit CTL2_OSB(1) /*!< 1 bit */ -#define USART_OSB_3bit CTL2_OSB(0) /*!< 3 bits */ - -/* USART IrDA low-power enable */ -#define CTL2_IRLP(regval) (BIT(2) & ((uint32_t)(regval) << 2)) -#define USART_IRLP_LOW CTL2_IRLP(1) /*!< low-power */ -#define USART_IRLP_NORMAL CTL2_IRLP(0) /*!< normal */ - -/* USART data is transmitted/received with the LSB/MSB first */ -#define CTL3_MSBF(regval) (BIT(11) & ((uint32_t)(regval) << 11)) -#define USART_MSBF_LSB CTL3_MSBF(0) /*!< LSB first */ -#define USART_MSBF_MSB CTL3_MSBF(1) /*!< MSB first */ - -/* break frame coherence mode */ -#define CHC_BCM(regval) (BIT(2) & ((uint32_t)(regval) << 2)) -#define USART_BCM_NONE CHC_BCM(0) /*!< no parity error is detected */ -#define USART_BCM_EN CHC_BCM(1) /*!< parity error is detected */ - -/* USART parity check coherence mode */ -#define CHC_PCM(regval) (BIT(1) & ((uint32_t)(regval) << 1)) -#define USART_PCM_NONE CHC_PCM(0) /*!< not check parity */ -#define USART_PCM_EN CHC_PCM(1) /*!< check the parity */ - -/* USART hardware flow control coherence mode */ -#define CHC_HCM(regval) (BIT(0) & ((uint32_t)(regval) << 0)) -#define USART_HCM_NONE CHC_HCM(0) /*!< nRTS signal equals to the rxne status register */ -#define USART_HCM_EN CHC_HCM(1) /*!< nRTS signal is set when the last data bit has been sampled */ - -/* function declarations */ -/* initialization functions */ -/* reset USART */ -void usart_deinit(uint32_t usart_periph); -/* configure usart baud rate value */ -void usart_baudrate_set(uint32_t usart_periph, uint32_t baudval); -/* configure usart parity function */ -void usart_parity_config(uint32_t usart_periph, uint32_t paritycfg); -/* configure usart word length */ -void usart_word_length_set(uint32_t usart_periph, uint32_t wlen); -/* configure usart stop bit length */ -void usart_stop_bit_set(uint32_t usart_periph, uint32_t stblen); -/* enable usart */ -void usart_enable(uint32_t usart_periph); -/* disable usart */ -void usart_disable(uint32_t usart_periph); -/* configure USART transmitter */ -void usart_transmit_config(uint32_t usart_periph, uint32_t txconfig); -/* configure USART receiver */ -void usart_receive_config(uint32_t usart_periph, uint32_t rxconfig); - -/* USART normal mode communication */ -/* data is transmitted/received with the LSB/MSB first */ -void usart_data_first_config(uint32_t usart_periph, uint32_t msbf); -/* configure USART inverted */ -void usart_invert_config(uint32_t usart_periph, usart_invert_enum invertpara); -/* configure the USART oversample mode */ -void usart_oversample_config(uint32_t usart_periph, uint32_t oversamp); -/* configure sample bit method */ -void usart_sample_bit_config(uint32_t usart_periph, uint32_t obsm); -/* enable receiver timeout */ -void usart_receiver_timeout_enable(uint32_t usart_periph); -/* disable receiver timeout */ -void usart_receiver_timeout_disable(uint32_t usart_periph); -/* configure receiver timeout threshold */ -void usart_receiver_timeout_threshold_config(uint32_t usart_periph, uint32_t rtimeout); -/* USART transmit data function */ -void usart_data_transmit(uint32_t usart_periph, uint32_t data); -/* USART receive data function */ -uint16_t usart_data_receive(uint32_t usart_periph); - -/* multi-processor communication */ -/* configure address of the USART */ -void usart_address_config(uint32_t usart_periph, uint8_t addr); -/* enable mute mode */ -void usart_mute_mode_enable(uint32_t usart_periph); -/* disable mute mode */ -void usart_mute_mode_disable(uint32_t usart_periph); -/* configure wakeup method in mute mode */ -void usart_mute_mode_wakeup_config(uint32_t usart_periph, uint32_t wmehtod); - -/* LIN mode communication */ -/* enable LIN mode */ -void usart_lin_mode_enable(uint32_t usart_periph); -/* disable LIN mode */ -void usart_lin_mode_disable(uint32_t usart_periph); -/* LIN break detection length */ -void usart_lin_break_detection_length_config(uint32_t usart_periph, uint32_t lblen); -/* send break frame */ -void usart_send_break(uint32_t usart_periph); - -/* half-duplex communication */ -/* enable half-duplex mode */ -void usart_halfduplex_enable(uint32_t usart_periph); -/* disable half-duplex mode */ -void usart_halfduplex_disable(uint32_t usart_periph); - -/* synchronous communication */ -/* enable CK pin in synchronous mode */ -void usart_synchronous_clock_enable(uint32_t usart_periph); -/* disable CK pin in synchronous mode */ -void usart_synchronous_clock_disable(uint32_t usart_periph); -/* configure usart synchronous mode parameters */ -void usart_synchronous_clock_config(uint32_t usart_periph, uint32_t clen, uint32_t cph, uint32_t cpl); - -/* smartcard communication */ -/* configure guard time value in smartcard mode */ -void usart_guard_time_config(uint32_t usart_periph, uint32_t guat); -/* enable smartcard mode */ -void usart_smartcard_mode_enable(uint32_t usart_periph); -/* disable smartcard mode */ -void usart_smartcard_mode_disable(uint32_t usart_periph); -/* enable NACK in smartcard mode */ -void usart_smartcard_mode_nack_enable(uint32_t usart_periph); -/* disable NACK in smartcard mode */ -void usart_smartcard_mode_nack_disable(uint32_t usart_periph); -/* configure smartcard auto-retry number */ -void usart_smartcard_autoretry_config(uint32_t usart_periph, uint32_t scrtnum); -/* configure block length */ -void usart_block_length_config(uint32_t usart_periph, uint32_t bl); - -/* IrDA communication */ -/* enable IrDA mode */ -void usart_irda_mode_enable(uint32_t usart_periph); -/* disable IrDA mode */ -void usart_irda_mode_disable(uint32_t usart_periph); -/* configure the peripheral clock prescaler */ -void usart_prescaler_config(uint32_t usart_periph, uint8_t psc); -/* configure IrDA low-power */ -void usart_irda_lowpower_config(uint32_t usart_periph, uint32_t irlp); - -/* hardware flow communication */ -/* configure hardware flow control RTS */ -void usart_hardware_flow_rts_config(uint32_t usart_periph, uint32_t rtsconfig); -/* configure hardware flow control CTS */ -void usart_hardware_flow_cts_config(uint32_t usart_periph, uint32_t ctsconfig); - -/* coherence control */ -/* configure break frame coherence mode */ -void usart_break_frame_coherence_config(uint32_t usart_periph, uint32_t bcm); -/* configure parity check coherence mode */ -void usart_parity_check_coherence_config(uint32_t usart_periph, uint32_t pcm); -/* configure hardware flow control coherence mode */ -void usart_hardware_flow_coherence_config(uint32_t usart_periph, uint32_t hcm); - -/* DMA communication */ -/* configure USART DMA for reception */ -void usart_dma_receive_config(uint32_t usart_periph, uint32_t dmacmd); -/* configure USART DMA for transmission */ -void usart_dma_transmit_config(uint32_t usart_periph, uint32_t dmacmd); - -/* flag & interrupt functions */ -/* get flag in STAT0/STAT1 register */ -FlagStatus usart_flag_get(uint32_t usart_periph, usart_flag_enum flag); -/* clear flag in STAT0/STAT1 register */ -void usart_flag_clear(uint32_t usart_periph, usart_flag_enum flag); -/* enable USART interrupt */ -void usart_interrupt_enable(uint32_t usart_periph, usart_interrupt_enum interrupt); -/* disable USART interrupt */ -void usart_interrupt_disable(uint32_t usart_periph, usart_interrupt_enum interrupt); -/* get USART interrupt and flag status */ -FlagStatus usart_interrupt_flag_get(uint32_t usart_periph, usart_interrupt_flag_enum int_flag); -/* clear interrupt flag in STAT0/STAT1 register */ -void usart_interrupt_flag_clear(uint32_t usart_periph, usart_interrupt_flag_enum int_flag); - -#endif /* GD32F4XX_USART_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_wwdgt.h b/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_wwdgt.h deleted file mode 100644 index 5fe1433719..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Include/gd32f4xx_wwdgt.h +++ /dev/null @@ -1,88 +0,0 @@ -/*! - \file gd32f4xx_wwdgt.h - \brief definitions for the WWDGT - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_WWDGT_H -#define GD32F4XX_WWDGT_H - -#include "gd32f4xx.h" - -/* WWDGT definitions */ -#define WWDGT WWDGT_BASE - -/* registers definitions */ -#define WWDGT_CTL REG32((WWDGT) + 0x00U) /*!< WWDGT control register */ -#define WWDGT_CFG REG32((WWDGT) + 0x04U) /*!< WWDGT configuration register */ -#define WWDGT_STAT REG32((WWDGT) + 0x08U) /*!< WWDGT status register */ - -/* bits definitions */ -/* WWDGT_CTL */ -#define WWDGT_CTL_CNT BITS(0,6) /*!< WWDGT counter value */ -#define WWDGT_CTL_WDGTEN BIT(7) /*!< WWDGT counter enable */ - -/* WWDGT_CFG */ -#define WWDGT_CFG_WIN BITS(0,6) /*!< WWDGT counter window value */ -#define WWDGT_CFG_PSC BITS(7,8) /*!< WWDGT prescaler divider value */ -#define WWDGT_CFG_EWIE BIT(9) /*!< early wakeup interrupt enable */ - -/* WWDGT_STAT */ -#define WWDGT_STAT_EWIF BIT(0) /*!< early wakeup interrupt flag */ - -/* constants definitions */ -#define CFG_PSC(regval) (BITS(7,8) & ((uint32_t)(regval) << 7)) /*!< write value to WWDGT_CFG_PSC bit field */ -#define WWDGT_CFG_PSC_DIV1 CFG_PSC(0) /*!< the time base of WWDGT = (PCLK1/4096)/1 */ -#define WWDGT_CFG_PSC_DIV2 CFG_PSC(1) /*!< the time base of WWDGT = (PCLK1/4096)/2 */ -#define WWDGT_CFG_PSC_DIV4 CFG_PSC(2) /*!< the time base of WWDGT = (PCLK1/4096)/4 */ -#define WWDGT_CFG_PSC_DIV8 CFG_PSC(3) /*!< the time base of WWDGT = (PCLK1/4096)/8 */ - -/* function declarations */ -/* reset the window watchdog timer configuration */ -void wwdgt_deinit(void); -/* start the window watchdog timer counter */ -void wwdgt_enable(void); - -/* configure the window watchdog timer counter value */ -void wwdgt_counter_update(uint16_t counter_value); -/* configure counter value, window value, and prescaler divider value */ -void wwdgt_config(uint16_t counter, uint16_t window, uint32_t prescaler); - -/* enable early wakeup interrupt of WWDGT */ -void wwdgt_interrupt_enable(void); -/* check early wakeup interrupt state of WWDGT */ -FlagStatus wwdgt_flag_get(void); -/* clear early wakeup interrupt state of WWDGT */ -void wwdgt_flag_clear(void); - -#endif /* GD32F4XX_WWDGT_H */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_adc.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_adc.c deleted file mode 100644 index a626053b31..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_adc.c +++ /dev/null @@ -1,1202 +0,0 @@ -/*! - \file gd32f4xx_adc.c - \brief ADC driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_adc.h" - -#define REGULAR_TRIGGER_MODE ((uint32_t)28U) -#define INSERTED_TRIGGER_MODE ((uint32_t)20U) -/* discontinuous mode macro*/ -#define ADC_CHANNEL_LENGTH_SUBTRACT_ONE ((uint8_t)1U) - -/* ADC regular channel macro */ -#define ADC_REGULAR_CHANNEL_RANK_SIX ((uint8_t)6U) -#define ADC_REGULAR_CHANNEL_RANK_TWELVE ((uint8_t)12U) -#define ADC_REGULAR_CHANNEL_RANK_SIXTEEN ((uint8_t)16U) -#define ADC_REGULAR_CHANNEL_RANK_LENGTH ((uint8_t)5U) - -/* ADC sampling time macro */ -#define ADC_CHANNEL_SAMPLE_TEN ((uint8_t)10U) -#define ADC_CHANNEL_SAMPLE_EIGHTEEN ((uint8_t)18U) -#define ADC_CHANNEL_SAMPLE_LENGTH ((uint8_t)3U) - -/* ADC inserted channel macro */ -#define ADC_INSERTED_CHANNEL_RANK_LENGTH ((uint8_t)5U) -#define ADC_INSERTED_CHANNEL_SHIFT_LENGTH ((uint8_t)15U) - -/* ADC inserted channel offset macro */ -#define ADC_OFFSET_LENGTH ((uint8_t)3U) -#define ADC_OFFSET_SHIFT_LENGTH ((uint8_t)4U) - -/*! - \brief reset ADC - \param[in] none - \param[out] none - \retval none -*/ -void adc_deinit(void) -{ - rcu_periph_reset_enable(RCU_ADCRST); - rcu_periph_reset_disable(RCU_ADCRST); -} - -/*! - \brief configure the ADC clock for all the ADCs - \param[in] prescaler: configure ADCs prescaler ratio - only one parameter can be selected which is shown as below: - \arg ADC_ADCCK_PCLK2_DIV2: PCLK2 div2 - \arg ADC_ADCCK_PCLK2_DIV4: PCLK2 div4 - \arg ADC_ADCCK_PCLK2_DIV6: PCLK2 div6 - \arg ADC_ADCCK_PCLK2_DIV8: PCLK2 div8 - \arg ADC_ADCCK_HCLK_DIV5: HCLK div5 - \arg ADC_ADCCK_HCLK_DIV6: HCLK div6 - \arg ADC_ADCCK_HCLK_DIV10: HCLK div10 - \arg ADC_ADCCK_HCLK_DIV20: HCLK div20 - \param[out] none - \retval none -*/ -void adc_clock_config(uint32_t prescaler) -{ - ADC_SYNCCTL &= ~((uint32_t)ADC_SYNCCTL_ADCCK); - ADC_SYNCCTL |= (uint32_t) prescaler; -} - -/*! - \brief enable or disable ADC special function - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] function: the function to config - only one parameter can be selected which is shown as below: - \arg ADC_SCAN_MODE: scan mode select - \arg ADC_INSERTED_CHANNEL_AUTO: inserted channel group convert automatically - \arg ADC_CONTINUOUS_MODE: continuous mode select - \param[in] newvalue: ENABLE or DISABLE - \param[out] none - \retval none -*/ -void adc_special_function_config(uint32_t adc_periph , uint32_t function , ControlStatus newvalue) -{ - if(newvalue){ - if(0U != (function & ADC_SCAN_MODE)){ - /* enable scan mode */ - ADC_CTL0(adc_periph) |= ADC_SCAN_MODE; - } - if(0U != (function & ADC_INSERTED_CHANNEL_AUTO)){ - /* enable inserted channel group convert automatically */ - ADC_CTL0(adc_periph) |= ADC_INSERTED_CHANNEL_AUTO; - } - if(0U != (function & ADC_CONTINUOUS_MODE)){ - /* enable continuous mode */ - ADC_CTL1(adc_periph) |= ADC_CONTINUOUS_MODE; - } - }else{ - if(0U != (function & ADC_SCAN_MODE)){ - /* disable scan mode */ - ADC_CTL0(adc_periph) &= ~ADC_SCAN_MODE; - } - if(0U != (function & ADC_INSERTED_CHANNEL_AUTO)){ - /* disable inserted channel group convert automatically */ - ADC_CTL0(adc_periph) &= ~ADC_INSERTED_CHANNEL_AUTO; - } - if(0U != (function & ADC_CONTINUOUS_MODE)){ - /* disable continuous mode */ - ADC_CTL1(adc_periph) &= ~ADC_CONTINUOUS_MODE; - } - } -} - -/*! - \brief configure ADC data alignment - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] data_alignment: data alignment select - only one parameter can be selected which is shown as below: - \arg ADC_DATAALIGN_RIGHT: LSB alignment - \arg ADC_DATAALIGN_LEFT: MSB alignment - \param[out] none - \retval none -*/ -void adc_data_alignment_config(uint32_t adc_periph , uint32_t data_alignment) -{ - if(ADC_DATAALIGN_RIGHT != data_alignment){ - /* MSB alignment */ - ADC_CTL1(adc_periph) |= ADC_CTL1_DAL; - }else{ - /* LSB alignment */ - ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_DAL); - } -} - -/*! - \brief enable ADC interface - \param[in] adc_periph: ADCx,x=0,1,2 - \param[out] none - \retval none -*/ -void adc_enable(uint32_t adc_periph) -{ - if(RESET == (ADC_CTL1(adc_periph) & ADC_CTL1_ADCON)){ - /* enable ADC */ - ADC_CTL1(adc_periph) |= (uint32_t)ADC_CTL1_ADCON; - } -} - -/*! - \brief disable ADC interface - \param[in] adc_periph: ADCx,x=0,1,2 - \param[out] none - \retval none -*/ -void adc_disable(uint32_t adc_periph) -{ - /* disable ADC */ - ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_ADCON); -} - -/*! - \brief ADC calibration and reset calibration - \param[in] adc_periph: ADCx,x=0,1,2 - \param[out] none - \retval none -*/ -void adc_calibration_enable(uint32_t adc_periph) -{ - /* reset the selected ADC calibration registers */ - ADC_CTL1(adc_periph) |= (uint32_t) ADC_CTL1_RSTCLB; - /* check the RSTCLB bit state */ - while(RESET != (ADC_CTL1(adc_periph) & ADC_CTL1_RSTCLB)){ - } - /* enable ADC calibration process */ - ADC_CTL1(adc_periph) |= ADC_CTL1_CLB; - /* check the CLB bit state */ - while(RESET != (ADC_CTL1(adc_periph) & ADC_CTL1_CLB)){ - } -} - -/*! - \brief configure temperature sensor and internal reference voltage channel or VBAT channel function - \param[in] function: temperature sensor and internal reference voltage channel or VBAT channel - only one parameter can be selected which is shown as below: - \arg ADC_VBAT_CHANNEL_SWITCH: channel 18 (1/4 voltate of external battery) switch of ADC0 - \arg ADC_TEMP_VREF_CHANNEL_SWITCH: channel 16 (temperature sensor) and 17 (internal reference voltage) switch of ADC0 - \param[in] newvalue: ENABLE or DISABLE -\param[out] none - \retval none -*/ -void adc_channel_16_to_18(uint32_t function, ControlStatus newvalue) -{ - if(newvalue){ - if(RESET != (function & ADC_VBAT_CHANNEL_SWITCH)){ - /* enable ADC0 Vbat channel */ - ADC_SYNCCTL |= ADC_VBAT_CHANNEL_SWITCH; - } - if(RESET != (function & ADC_TEMP_VREF_CHANNEL_SWITCH)){ - /* enable ADC0 Vref and Temperature channel */ - ADC_SYNCCTL |= ADC_TEMP_VREF_CHANNEL_SWITCH; - } - }else{ - if(RESET != (function & ADC_VBAT_CHANNEL_SWITCH)){ - /* disable ADC0 Vbat channel */ - ADC_SYNCCTL &= ~ADC_VBAT_CHANNEL_SWITCH; - } - if(RESET != (function & ADC_TEMP_VREF_CHANNEL_SWITCH)){ - /* disable ADC0 Vref and Temperature channel */ - ADC_SYNCCTL &= ~ADC_TEMP_VREF_CHANNEL_SWITCH; - } - } -} - -/*! - \brief configure ADC resolution - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] resolution: ADC resolution - only one parameter can be selected which is shown as below: - \arg ADC_RESOLUTION_12B: 12-bit ADC resolution - \arg ADC_RESOLUTION_10B: 10-bit ADC resolution - \arg ADC_RESOLUTION_8B: 8-bit ADC resolution - \arg ADC_RESOLUTION_6B: 6-bit ADC resolution - \param[out] none - \retval none -*/ -void adc_resolution_config(uint32_t adc_periph , uint32_t resolution) -{ - ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_DRES); - ADC_CTL0(adc_periph) |= (uint32_t)resolution; -} - -/*! - \brief configure ADC oversample mode - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] mode: ADC oversampling mode - only one parameter can be selected which is shown as below: - \arg ADC_OVERSAMPLING_ALL_CONVERT: all oversampled conversions for a channel are done consecutively after a trigger - \arg ADC_OVERSAMPLING_ONE_CONVERT: each oversampled conversion for a channel needs a trigger - \param[in] shift: ADC oversampling shift - only one parameter can be selected which is shown as below: - \arg ADC_OVERSAMPLING_SHIFT_NONE: no oversampling shift - \arg ADC_OVERSAMPLING_SHIFT_1B: 1-bit oversampling shift - \arg ADC_OVERSAMPLING_SHIFT_2B: 2-bit oversampling shift - \arg ADC_OVERSAMPLING_SHIFT_3B: 3-bit oversampling shift - \arg ADC_OVERSAMPLING_SHIFT_4B: 3-bit oversampling shift - \arg ADC_OVERSAMPLING_SHIFT_5B: 5-bit oversampling shift - \arg ADC_OVERSAMPLING_SHIFT_6B: 6-bit oversampling shift - \arg ADC_OVERSAMPLING_SHIFT_7B: 7-bit oversampling shift - \arg ADC_OVERSAMPLING_SHIFT_8B: 8-bit oversampling shift - \param[in] ratio: ADC oversampling ratio - only one parameter can be selected which is shown as below: - \arg ADC_OVERSAMPLING_RATIO_MUL2: oversampling ratio multiple 2 - \arg ADC_OVERSAMPLING_RATIO_MUL4: oversampling ratio multiple 4 - \arg ADC_OVERSAMPLING_RATIO_MUL8: oversampling ratio multiple 8 - \arg ADC_OVERSAMPLING_RATIO_MUL16: oversampling ratio multiple 16 - \arg ADC_OVERSAMPLING_RATIO_MUL32: oversampling ratio multiple 32 - \arg ADC_OVERSAMPLING_RATIO_MUL64: oversampling ratio multiple 64 - \arg ADC_OVERSAMPLING_RATIO_MUL128: oversampling ratio multiple 128 - \arg ADC_OVERSAMPLING_RATIO_MUL256: oversampling ratio multiple 256 - \param[out] none - \retval none -*/ -void adc_oversample_mode_config(uint32_t adc_periph , uint32_t mode , uint16_t shift , uint8_t ratio) -{ - if(ADC_OVERSAMPLING_ONE_CONVERT == mode){ - ADC_OVSAMPCTL(adc_periph) |= (uint32_t)ADC_OVSAMPCTL_TOVS; - }else{ - ADC_OVSAMPCTL(adc_periph) &= ~((uint32_t)ADC_OVSAMPCTL_TOVS); - } - /* config the shift and ratio */ - ADC_OVSAMPCTL(adc_periph) &= ~((uint32_t)(ADC_OVSAMPCTL_OVSR | ADC_OVSAMPCTL_OVSS)); - ADC_OVSAMPCTL(adc_periph) |= ((uint32_t)shift | (uint32_t)ratio); -} - -/*! - \brief enable ADC oversample mode - \param[in] adc_periph: ADCx,x=0,1,2 - \param[out] none - \retval none -*/ -void adc_oversample_mode_enable(uint32_t adc_periph) -{ - ADC_OVSAMPCTL(adc_periph) |= ADC_OVSAMPCTL_OVSEN; -} - -/*! - \brief disable ADC oversample mode - \param[in] adc_periph: ADCx,x=0,1,2 - \param[out] none - \retval none -*/ -void adc_oversample_mode_disable(uint32_t adc_periph) -{ - ADC_OVSAMPCTL(adc_periph) &= ~((uint32_t)ADC_OVSAMPCTL_OVSEN); -} - -/*! - \brief enable DMA request - \param[in] adc_periph: ADCx,x=0,1,2 - \param[out] none - \retval none -*/ -void adc_dma_mode_enable(uint32_t adc_periph) -{ - /* enable DMA request */ - ADC_CTL1(adc_periph) |= (uint32_t)(ADC_CTL1_DMA); -} - -/*! - \brief disable DMA request - \param[in] adc_periph: ADCx,x=0,1,2 - \param[out] none - \retval none -*/ -void adc_dma_mode_disable(uint32_t adc_periph) -{ - /* disable DMA request */ - ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_DMA); -} - -/*! - \brief when DMA=1, the DMA engine issues a request at end of each regular conversion - \param[in] adc_periph: ADCx,x=0,1,2 - \param[out] none - \retval none -*/ -void adc_dma_request_after_last_enable(uint32_t adc_periph) -{ - ADC_CTL1(adc_periph) |= (uint32_t)(ADC_CTL1_DDM); -} - -/*! - \brief the DMA engine is disabled after the end of transfer signal from DMA controller is detected - \param[in] adc_periph: ADCx,x=0,1,2 - \param[out] none - \retval none -*/ -void adc_dma_request_after_last_disable(uint32_t adc_periph) -{ - ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_DDM); -} - -/*! - \brief configure ADC discontinuous mode - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] adc_channel_group: select the channel group - only one parameter can be selected which is shown as below: - \arg ADC_REGULAR_CHANNEL: regular channel group - \arg ADC_INSERTED_CHANNEL: inserted channel group - \arg ADC_CHANNEL_DISCON_DISABLE: disable discontinuous mode of regular & inserted channel - \param[in] length: number of conversions in discontinuous mode,the number can be 1..8 - for regular channel ,the number has no effect for inserted channel - \param[out] none - \retval none -*/ -void adc_discontinuous_mode_config(uint32_t adc_periph , uint8_t adc_channel_group , uint8_t length) -{ - /* disable discontinuous mode of regular & inserted channel */ - ADC_CTL0(adc_periph) &= ~((uint32_t)( ADC_CTL0_DISRC | ADC_CTL0_DISIC )); - switch(adc_channel_group){ - case ADC_REGULAR_CHANNEL: - /* config the number of conversions in discontinuous mode */ - ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_DISNUM); - if((length <= 8U) && (length >= 1U)){ - ADC_CTL0(adc_periph) |= CTL0_DISNUM(((uint32_t)length - ADC_CHANNEL_LENGTH_SUBTRACT_ONE)); - } - /* enable regular channel group discontinuous mode */ - ADC_CTL0(adc_periph) |= (uint32_t)ADC_CTL0_DISRC; - break; - case ADC_INSERTED_CHANNEL: - /* enable inserted channel group discontinuous mode */ - ADC_CTL0(adc_periph) |= (uint32_t)ADC_CTL0_DISIC; - break; - case ADC_CHANNEL_DISCON_DISABLE: - /* disable discontinuous mode of regular & inserted channel */ - default: - break; - } -} - -/*! - \brief configure the length of regular channel group or inserted channel group - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] adc_channel_group: select the channel group - only one parameter can be selected which is shown as below: - \arg ADC_REGULAR_CHANNEL: regular channel group - \arg ADC_INSERTED_CHANNEL: inserted channel group - \param[in] length: the length of the channel - regular channel 1-16 - inserted channel 1-4 - \param[out] none - \retval none -*/ -void adc_channel_length_config(uint32_t adc_periph , uint8_t adc_channel_group , uint32_t length) -{ - switch(adc_channel_group){ - case ADC_REGULAR_CHANNEL: - if((length >= 1U) && (length <= 16U)){ - ADC_RSQ0(adc_periph) &= ~((uint32_t)ADC_RSQ0_RL); - ADC_RSQ0(adc_periph) |= RSQ0_RL((uint32_t)(length-ADC_CHANNEL_LENGTH_SUBTRACT_ONE)); - } - break; - case ADC_INSERTED_CHANNEL: - if((length >= 1U) && (length <= 4U)){ - ADC_ISQ(adc_periph) &= ~((uint32_t)ADC_ISQ_IL); - ADC_ISQ(adc_periph) |= ISQ_IL((uint32_t)(length-ADC_CHANNEL_LENGTH_SUBTRACT_ONE)); - } - break; - default: - break; - } -} - -/*! - \brief configure ADC regular channel - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] rank: the regular group sequencer rank,this parameter must be between 0 to 15 - \param[in] adc_channel: the selected ADC channel - only one parameter can be selected which is shown as below: - \arg ADC_CHANNEL_x(x=0..18): ADC Channelx - \param[in] sample_time: the sample time value - only one parameter can be selected which is shown as below: - \arg ADC_SAMPLETIME_3: 3 cycles - \arg ADC_SAMPLETIME_15: 15 cycles - \arg ADC_SAMPLETIME_28: 28 cycles - \arg ADC_SAMPLETIME_56: 56 cycles - \arg ADC_SAMPLETIME_84: 84 cycles - \arg ADC_SAMPLETIME_112: 112 cycles - \arg ADC_SAMPLETIME_144: 144 cycles - \arg ADC_SAMPLETIME_480: 480 cycles - \param[out] none - \retval none -*/ -void adc_regular_channel_config(uint32_t adc_periph , uint8_t rank , uint8_t adc_channel , uint32_t sample_time) -{ - uint32_t rsq,sampt; - - /* ADC regular sequence config */ - if(rank < ADC_REGULAR_CHANNEL_RANK_SIX){ - /* the regular group sequence rank is smaller than six */ - rsq = ADC_RSQ2(adc_periph); - rsq &= ~((uint32_t)(ADC_RSQX_RSQN << (ADC_REGULAR_CHANNEL_RANK_LENGTH*rank))); - /* the channel number is written to these bits to select a channel as the nth conversion in the regular channel group */ - rsq |= ((uint32_t)adc_channel << (ADC_REGULAR_CHANNEL_RANK_LENGTH*rank)); - ADC_RSQ2(adc_periph) = rsq; - }else if(rank < ADC_REGULAR_CHANNEL_RANK_TWELVE){ - /* the regular group sequence rank is smaller than twelve */ - rsq = ADC_RSQ1(adc_periph); - rsq &= ~((uint32_t)(ADC_RSQX_RSQN << (ADC_REGULAR_CHANNEL_RANK_LENGTH*(rank-ADC_REGULAR_CHANNEL_RANK_SIX)))); - /* the channel number is written to these bits to select a channel as the nth conversion in the regular channel group */ - rsq |= ((uint32_t)adc_channel << (ADC_REGULAR_CHANNEL_RANK_LENGTH*(rank-ADC_REGULAR_CHANNEL_RANK_SIX))); - ADC_RSQ1(adc_periph) = rsq; - }else if(rank < ADC_REGULAR_CHANNEL_RANK_SIXTEEN){ - /* the regular group sequence rank is smaller than sixteen */ - rsq = ADC_RSQ0(adc_periph); - rsq &= ~((uint32_t)(ADC_RSQX_RSQN << (ADC_REGULAR_CHANNEL_RANK_LENGTH*(rank-ADC_REGULAR_CHANNEL_RANK_TWELVE)))); - /* the channel number is written to these bits to select a channel as the nth conversion in the regular channel group */ - rsq |= ((uint32_t)adc_channel << (ADC_REGULAR_CHANNEL_RANK_LENGTH*(rank-ADC_REGULAR_CHANNEL_RANK_TWELVE))); - ADC_RSQ0(adc_periph) = rsq; - }else{ - } - - /* ADC sampling time config */ - if(adc_channel < ADC_CHANNEL_SAMPLE_TEN){ - /* the regular group sequence rank is smaller than ten */ - sampt = ADC_SAMPT1(adc_periph); - sampt &= ~((uint32_t)(ADC_SAMPTX_SPTN << (ADC_CHANNEL_SAMPLE_LENGTH*adc_channel))); - /* channel sample time set*/ - sampt |= (uint32_t)(sample_time << (ADC_CHANNEL_SAMPLE_LENGTH*adc_channel)); - ADC_SAMPT1(adc_periph) = sampt; - }else if(adc_channel <= ADC_CHANNEL_SAMPLE_EIGHTEEN){ - /* the regular group sequence rank is smaller than eighteen */ - sampt = ADC_SAMPT0(adc_periph); - sampt &= ~((uint32_t)(ADC_SAMPTX_SPTN << (ADC_CHANNEL_SAMPLE_LENGTH*(adc_channel-ADC_CHANNEL_SAMPLE_TEN)))); - /* channel sample time set*/ - sampt |= (uint32_t)(sample_time << (ADC_CHANNEL_SAMPLE_LENGTH*(adc_channel-ADC_CHANNEL_SAMPLE_TEN))); - ADC_SAMPT0(adc_periph) = sampt; - }else{ - } -} - -/*! - \brief configure ADC inserted channel - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] rank: the inserted group sequencer rank,this parameter must be between 0 to 3 - \param[in] adc_channel: the selected ADC channel - only one parameter can be selected which is shown as below: - \arg ADC_CHANNEL_x(x=0..18): ADC Channelx - \param[in] sample_time: The sample time value - only one parameter can be selected which is shown as below: - \arg ADC_SAMPLETIME_3: 3 cycles - \arg ADC_SAMPLETIME_15: 15 cycles - \arg ADC_SAMPLETIME_28: 28 cycles - \arg ADC_SAMPLETIME_56: 56 cycles - \arg ADC_SAMPLETIME_84: 84 cycles - \arg ADC_SAMPLETIME_112: 112 cycles - \arg ADC_SAMPLETIME_144: 144 cycles - \arg ADC_SAMPLETIME_480: 480 cycles - \param[out] none - \retval none -*/ -void adc_inserted_channel_config(uint32_t adc_periph , uint8_t rank , uint8_t adc_channel , uint32_t sample_time) -{ - uint8_t inserted_length; - uint32_t isq,sampt; - - /* get inserted channel group length */ - inserted_length = (uint8_t)GET_BITS(ADC_ISQ(adc_periph) , 20U , 21U); - /* the channel number is written to these bits to select a channel as the nth conversion in the inserted channel group */ - if(rank < 4U){ - isq = ADC_ISQ(adc_periph); - isq &= ~((uint32_t)(ADC_ISQ_ISQN << (ADC_INSERTED_CHANNEL_SHIFT_LENGTH-(inserted_length-rank)*ADC_INSERTED_CHANNEL_RANK_LENGTH))); - isq |= ((uint32_t)adc_channel << (ADC_INSERTED_CHANNEL_SHIFT_LENGTH-(inserted_length-rank)*ADC_INSERTED_CHANNEL_RANK_LENGTH)); - ADC_ISQ(adc_periph) = isq; - } - - /* ADC sampling time config */ - if(adc_channel < ADC_CHANNEL_SAMPLE_TEN){ - /* the inserted group sequence rank is smaller than ten */ - sampt = ADC_SAMPT1(adc_periph); - sampt &= ~((uint32_t)(ADC_SAMPTX_SPTN << (ADC_CHANNEL_SAMPLE_LENGTH*adc_channel))); - /* channel sample time set*/ - sampt |= (uint32_t) sample_time << (ADC_CHANNEL_SAMPLE_LENGTH*adc_channel); - ADC_SAMPT1(adc_periph) = sampt; - }else if(adc_channel <= ADC_CHANNEL_SAMPLE_EIGHTEEN){ - /* the inserted group sequence rank is smaller than eighteen */ - sampt = ADC_SAMPT0(adc_periph); - sampt &= ~((uint32_t)(ADC_SAMPTX_SPTN << (ADC_CHANNEL_SAMPLE_LENGTH*(adc_channel - ADC_CHANNEL_SAMPLE_TEN)))); - /* channel sample time set*/ - sampt |= ((uint32_t)sample_time << (ADC_CHANNEL_SAMPLE_LENGTH*(adc_channel - ADC_CHANNEL_SAMPLE_TEN))); - ADC_SAMPT0(adc_periph) = sampt; - }else{ - } -} - -/*! - \brief configure ADC inserted channel offset - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] inserted_channel : insert channel select - only one parameter can be selected which is shown as below: - \arg ADC_INSERTED_CHANNEL_0: inserted channel0 - \arg ADC_INSERTED_CHANNEL_1: inserted channel1 - \arg ADC_INSERTED_CHANNEL_2: inserted channel2 - \arg ADC_INSERTED_CHANNEL_3: inserted channel3 - \param[in] offset : the offset data - \param[out] none - \retval none -*/ -void adc_inserted_channel_offset_config(uint32_t adc_periph , uint8_t inserted_channel , uint16_t offset) -{ - uint8_t inserted_length; - uint32_t num = 0U; - - inserted_length = (uint8_t)GET_BITS(ADC_ISQ(adc_periph) , 20U , 21U); - num = ((uint32_t)ADC_OFFSET_LENGTH - ((uint32_t)inserted_length - (uint32_t)inserted_channel)); - - if(num <= ADC_OFFSET_LENGTH){ - /* calculate the offset of the register */ - num = num * ADC_OFFSET_SHIFT_LENGTH; - /* config the offset of the selected channels */ - REG32((adc_periph) + 0x14U + num) = IOFFX_IOFF((uint32_t)offset); - } -} - -/*! - \brief configure ADC external trigger source - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] adc_channel_group: select the channel group - only one parameter can be selected which is shown as below: - \arg ADC_REGULAR_CHANNEL: regular channel group - \arg ADC_INSERTED_CHANNEL: inserted channel group - \param[in] external_trigger_source: regular or inserted group trigger source - for regular channel: - only one parameter can be selected which is shown as below: - \arg ADC_EXTTRIG_REGULAR_T0_CH0: external trigger timer 0 CC0 event select for regular channel - \arg ADC_EXTTRIG_REGULAR_T0_CH1: external trigger timer 0 CC1 event select for regular channel - \arg ADC_EXTTRIG_REGULAR_T0_CH2: external trigger timer 0 CC2 event select for regular channel - \arg ADC_EXTTRIG_REGULAR_T1_CH1: external trigger timer 1 CC1 event select for regular channel - \arg ADC_EXTTRIG_REGULAR_T1_CH2: external trigger timer 1 CC2 event select for regular channel - \arg ADC_EXTTRIG_REGULAR_T1_CH3: external trigger timer 1 CC3 event select for regular channel - \arg ADC_EXTTRIG_REGULAR_T1_TRGO: external trigger timer 1 TRGO event select for regular channel - \arg ADC_EXTTRIG_REGULAR_T2_CH0 : external trigger timer 2 CC0 event select for regular channel - \arg ADC_EXTTRIG_REGULAR_T2_TRGO : external trigger timer 2 TRGO event select for regular channel - \arg ADC_EXTTRIG_REGULAR_T3_CH3: external trigger timer 3 CC3 event select for regular channel - \arg ADC_EXTTRIG_REGULAR_T4_CH0: external trigger timer 4 CC0 event select for regular channel - \arg ADC_EXTTRIG_REGULAR_T4_CH1: external trigger timer 4 CC1 event select for regular channel - \arg ADC_EXTTRIG_REGULAR_T4_CH2: external trigger timer 4 CC2 event select for regular channel - \arg ADC_EXTTRIG_REGULAR_T7_CH0: external trigger timer 7 CC0 event select for regular channel - \arg ADC_EXTTRIG_REGULAR_T7_TRGO: external trigger timer 7 TRGO event select for regular channel - \arg ADC_EXTTRIG_REGULAR_EXTI_11: external trigger extiline 11 select for regular channel - for inserted channel: - only one parameter can be selected which is shown as below: - \arg ADC_EXTTRIG_INSERTED_T0_CH3: timer0 capture compare 3 - \arg ADC_EXTTRIG_INSERTED_T0_TRGO: timer0 TRGO event - \arg ADC_EXTTRIG_INSERTED_T1_CH0: timer1 capture compare 0 - \arg ADC_EXTTRIG_INSERTED_T1_TRGO: timer1 TRGO event - \arg ADC_EXTTRIG_INSERTED_T2_CH1: timer2 capture compare 1 - \arg ADC_EXTTRIG_INSERTED_T2_CH3: timer2 capture compare 3 - \arg ADC_EXTTRIG_INSERTED_T3_CH0: timer3 capture compare 0 - \arg ADC_EXTTRIG_INSERTED_T3_CH1: timer3 capture compare 1 - \arg ADC_EXTTRIG_INSERTED_T3_CH2: timer3 capture compare 2 - \arg ADC_EXTTRIG_INSERTED_T3_TRGO: timer3 capture compare TRGO - \arg ADC_EXTTRIG_INSERTED_T4_CH3: timer4 capture compare 3 - \arg ADC_EXTTRIG_INSERTED_T4_TRGO: timer4 capture compare TRGO - \arg ADC_EXTTRIG_INSERTED_T7_CH1: timer7 capture compare 1 - \arg ADC_EXTTRIG_INSERTED_T7_CH2: timer7 capture compare 2 - \arg ADC_EXTTRIG_INSERTED_T7_CH3: timer7 capture compare 3 - \arg ADC_EXTTRIG_INSERTED_EXTI_15: external interrupt line 15 - \param[out] none - \retval none -*/ -void adc_external_trigger_source_config(uint32_t adc_periph , uint8_t adc_channel_group , uint32_t external_trigger_source) -{ - switch(adc_channel_group){ - case ADC_REGULAR_CHANNEL: - /* configure ADC regular group external trigger source */ - ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_ETSRC); - ADC_CTL1(adc_periph) |= (uint32_t)external_trigger_source; - break; - case ADC_INSERTED_CHANNEL: - /* configure ADC inserted group external trigger source */ - ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_ETSIC); - ADC_CTL1(adc_periph) |= (uint32_t)external_trigger_source; - break; - default: - break; - } -} - -/*! - \brief enable ADC external trigger - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] adc_channel_group: select the channel group - only one parameter can be selected which is shown as below: - \arg ADC_REGULAR_CHANNEL: regular channel group - \arg ADC_INSERTED_CHANNEL: inserted channel group - \param[in] trigger_mode: external trigger mode - only one parameter can be selected which is shown as below: - \arg EXTERNAL_TRIGGER_DISABLE: external trigger disable - \arg EXTERNAL_TRIGGER_RISING: rising edge of external trigger - \arg EXTERNAL_TRIGGER_FALLING: falling edge of external trigger - \arg EXTERNAL_TRIGGER_RISING_FALLING: rising and falling edge of external trigger - \param[out] none - \retval none -*/ -void adc_external_trigger_config(uint32_t adc_periph , uint8_t adc_channel_group , uint32_t trigger_mode) -{ - switch(adc_channel_group){ - case ADC_REGULAR_CHANNEL: - /* configure ADC regular channel group external trigger mode */ - ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_ETMRC); - ADC_CTL1(adc_periph) |= (uint32_t) (trigger_mode << REGULAR_TRIGGER_MODE); - break; - case ADC_INSERTED_CHANNEL: - /* configure ADC inserted channel group external trigger mode */ - ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_ETMIC); - ADC_CTL1(adc_periph) |= (uint32_t) (trigger_mode << INSERTED_TRIGGER_MODE); - break; - default: - break; - } -} - -/*! - \brief enable ADC software trigger - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] adc_channel_group: select the channel group - only one parameter can be selected which is shown as below: - \arg ADC_REGULAR_CHANNEL: regular channel group - \arg ADC_INSERTED_CHANNEL: inserted channel group - \param[out] none - \retval none -*/ -void adc_software_trigger_enable(uint32_t adc_periph , uint8_t adc_channel_group) -{ - switch(adc_channel_group){ - case ADC_REGULAR_CHANNEL: - /* enable ADC regular channel group software trigger */ - ADC_CTL1(adc_periph) |= (uint32_t)ADC_CTL1_SWRCST; - break; - case ADC_INSERTED_CHANNEL: - /* enable ADC inserted channel group software trigger */ - ADC_CTL1(adc_periph) |= (uint32_t)ADC_CTL1_SWICST; - break; - default: - break; - } -} - -/*! - \brief configure end of conversion mode - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] end_selection: end of conversion mode - only one parameter can be selected which is shown as below: - \arg ADC_EOC_SET_SEQUENCE: only at the end of a sequence of regular conversions, the EOC bit is set.Overflow detection is disabled unless DMA=1. - \arg ADC_EOC_SET_CONVERSION: at the end of each regular conversion, the EOC bit is set.Overflow is detected automatically. - \param[out] none - \retval none -*/ -void adc_end_of_conversion_config(uint32_t adc_periph , uint8_t end_selection) -{ - switch(end_selection){ - case ADC_EOC_SET_SEQUENCE: - /* only at the end of a sequence of regular conversions, the EOC bit is set */ - ADC_CTL1(adc_periph) &= ~((uint32_t)ADC_CTL1_EOCM); - break; - case ADC_EOC_SET_CONVERSION: - /* at the end of each regular conversion, the EOC bit is set.Overflow is detected automatically */ - ADC_CTL1(adc_periph) |= (uint32_t)(ADC_CTL1_EOCM); - break; - default: - break; - } -} - -/*! - \brief read ADC regular group data register - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] none - \param[out] none - \retval the conversion value -*/ -uint16_t adc_regular_data_read(uint32_t adc_periph) -{ - return (uint16_t)(ADC_RDATA(adc_periph)); -} - -/*! - \brief read ADC inserted group data register - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] inserted_channel : insert channel select - only one parameter can be selected which is shown as below: - \arg ADC_INSERTED_CHANNEL_0: inserted Channel0 - \arg ADC_INSERTED_CHANNEL_1: inserted channel1 - \arg ADC_INSERTED_CHANNEL_2: inserted Channel2 - \arg ADC_INSERTED_CHANNEL_3: inserted Channel3 - \param[out] none - \retval the conversion value -*/ -uint16_t adc_inserted_data_read(uint32_t adc_periph , uint8_t inserted_channel) -{ - uint32_t idata; - /* read the data of the selected channel */ - switch(inserted_channel){ - case ADC_INSERTED_CHANNEL_0: - /* read the data of channel 0 */ - idata = ADC_IDATA0(adc_periph); - break; - case ADC_INSERTED_CHANNEL_1: - /* read the data of channel 1 */ - idata = ADC_IDATA1(adc_periph); - break; - case ADC_INSERTED_CHANNEL_2: - /* read the data of channel 2 */ - idata = ADC_IDATA2(adc_periph); - break; - case ADC_INSERTED_CHANNEL_3: - /* read the data of channel 3 */ - idata = ADC_IDATA3(adc_periph); - break; - default: - idata = 0U; - break; - } - return (uint16_t)idata; -} - -/*! - \brief disable ADC analog watchdog single channel - \param[in] adc_periph: ADCx,x=0,1,2 - \param[out] none - \retval none -*/ -void adc_watchdog_single_channel_disable(uint32_t adc_periph ) -{ - ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_WDSC); -} - -/*! - \brief enable ADC analog watchdog single channel - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] adc_channel: the selected ADC channel - only one parameter can be selected which is shown as below: - \arg ADC_CHANNEL_x: ADC Channelx(x=0..18) - \param[out] none - \retval none -*/ -void adc_watchdog_single_channel_enable(uint32_t adc_periph , uint8_t adc_channel) -{ - ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_WDCHSEL); - - /* analog watchdog channel select */ - ADC_CTL0(adc_periph) |= (uint32_t)adc_channel; - ADC_CTL0(adc_periph) |= (uint32_t) ADC_CTL0_WDSC; -} - -/*! - \brief configure ADC analog watchdog group channel - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] adc_channel_group: the channel group use analog watchdog - only one parameter can be selected which is shown as below: - \arg ADC_REGULAR_CHANNEL: regular channel group - \arg ADC_INSERTED_CHANNEL: inserted channel group - \arg ADC_REGULAR_INSERTED_CHANNEL: both regular and inserted group - \param[out] none - \retval none -*/ -void adc_watchdog_group_channel_enable(uint32_t adc_periph , uint8_t adc_channel_group) -{ - ADC_CTL0(adc_periph) &= ~((uint32_t)(ADC_CTL0_RWDEN | ADC_CTL0_IWDEN | ADC_CTL0_WDSC)); - /* select the group */ - switch(adc_channel_group){ - case ADC_REGULAR_CHANNEL: - /* regular channel analog watchdog enable */ - ADC_CTL0(adc_periph) |= (uint32_t) ADC_CTL0_RWDEN; - break; - case ADC_INSERTED_CHANNEL: - /* inserted channel analog watchdog enable */ - ADC_CTL0(adc_periph) |= (uint32_t) ADC_CTL0_IWDEN; - break; - case ADC_REGULAR_INSERTED_CHANNEL: - /* regular and inserted channel analog watchdog enable */ - ADC_CTL0(adc_periph) |= (uint32_t)(ADC_CTL0_RWDEN | ADC_CTL0_IWDEN); - break; - default: - break; - } -} - -/*! - \brief disable ADC analog watchdog - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] adc_channel_group: the channel group use analog watchdog - only one parameter can be selected which is shown as below: - \arg ADC_REGULAR_CHANNEL: regular channel group - \arg ADC_INSERTED_CHANNEL: inserted channel group - \arg ADC_REGULAR_INSERTED_CHANNEL: both regular and inserted group - \param[out] none - \retval none -*/ -void adc_watchdog_disable(uint32_t adc_periph , uint8_t adc_channel_group) -{ - /* select the group */ - switch(adc_channel_group){ - case ADC_REGULAR_CHANNEL: - /* disable ADC analog watchdog regular channel group */ - ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_RWDEN); - break; - case ADC_INSERTED_CHANNEL: - /* disable ADC analog watchdog inserted channel group */ - ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_IWDEN); - break; - case ADC_REGULAR_INSERTED_CHANNEL: - /* disable ADC analog watchdog regular and inserted channel group */ - ADC_CTL0(adc_periph) &= ~((uint32_t)(ADC_CTL0_RWDEN | ADC_CTL0_IWDEN)); - break; - default: - break; - } -} - -/*! - \brief configure ADC analog watchdog threshold - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] low_threshold: analog watchdog low threshold,0..4095 - \param[in] high_threshold: analog watchdog high threshold,0..4095 - \param[out] none - \retval none -*/ -void adc_watchdog_threshold_config(uint32_t adc_periph , uint16_t low_threshold , uint16_t high_threshold) -{ - /* configure ADC analog watchdog low threshold */ - ADC_WDLT(adc_periph) = (uint32_t)WDLT_WDLT(low_threshold); - /* configure ADC analog watchdog high threshold */ - ADC_WDHT(adc_periph) = (uint32_t)WDHT_WDHT(high_threshold); -} - -/*! - \brief get the ADC flag bits - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] adc_flag: the adc flag bits - only one parameter can be selected which is shown as below: - \arg ADC_FLAG_WDE: analog watchdog event flag - \arg ADC_FLAG_EOC: end of group conversion flag - \arg ADC_FLAG_EOIC: end of inserted group conversion flag - \arg ADC_FLAG_STIC: start flag of inserted channel group - \arg ADC_FLAG_STRC: start flag of regular channel group - \arg ADC_FLAG_ROVF: regular data register overflow flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus adc_flag_get(uint32_t adc_periph , uint32_t adc_flag) -{ - FlagStatus reval = RESET; - if(ADC_STAT(adc_periph) & adc_flag){ - reval = SET; - } - return reval; - -} - -/*! - \brief clear the ADC flag bits - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] adc_flag: the adc flag bits - only one parameter can be selected which is shown as below: - \arg ADC_FLAG_WDE: analog watchdog event flag - \arg ADC_FLAG_EOC: end of group conversion flag - \arg ADC_FLAG_EOIC: end of inserted group conversion flag - \arg ADC_FLAG_STIC: start flag of inserted channel group - \arg ADC_FLAG_STRC: start flag of regular channel group - \arg ADC_FLAG_ROVF: regular data register overflow flag - \param[out] none - \retval none -*/ -void adc_flag_clear(uint32_t adc_periph , uint32_t adc_flag) -{ - ADC_STAT(adc_periph) &= ~((uint32_t)adc_flag); -} - -/*! - \brief get the bit state of ADCx software start conversion - \param[in] adc_periph: ADCx, x=0,1,2 only one among these parameters can be selected - \param[in] none - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus adc_regular_software_startconv_flag_get(uint32_t adc_periph) -{ - FlagStatus reval = RESET; - if((uint32_t)RESET != (ADC_STAT(adc_periph) & ADC_STAT_STRC)){ - reval = SET; - } - return reval; -} - -/*! - \brief get the bit state of ADCx software inserted channel start conversion - \param[in] adc_periph: ADCx, x=0,1,2 only one among these parameters can be selected - \param[in] none - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus adc_inserted_software_startconv_flag_get(uint32_t adc_periph) -{ - FlagStatus reval = RESET; - if((uint32_t)RESET != (ADC_STAT(adc_periph) & ADC_STAT_STIC)){ - reval = SET; - } - return reval; -} - -/*! - \brief get the ADC interrupt bits - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] adc_interrupt: the adc interrupt bits - only one parameter can be selected which is shown as below: - \arg ADC_INT_FLAG_WDE: analog watchdog interrupt - \arg ADC_INT_FLAG_EOC: end of group conversion interrupt - \arg ADC_INT_FLAG_EOIC: end of inserted group conversion interrupt - \arg ADC_INT_FLAG_ROVF: regular data register overflow interrupt - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus adc_interrupt_flag_get(uint32_t adc_periph , uint32_t adc_interrupt) -{ - FlagStatus interrupt_flag = RESET; - uint32_t state; - /* check the interrupt bits */ - switch(adc_interrupt){ - case ADC_INT_FLAG_WDE: - /* get the ADC analog watchdog interrupt bits */ - state = ADC_STAT(adc_periph) & ADC_STAT_WDE; - if((ADC_CTL0(adc_periph) & ADC_CTL0_WDEIE) && state){ - interrupt_flag = SET; - } - break; - case ADC_INT_FLAG_EOC: - /* get the ADC end of group conversion interrupt bits */ - state = ADC_STAT(adc_periph) & ADC_STAT_EOC; - if((ADC_CTL0(adc_periph) & ADC_CTL0_EOCIE) && state){ - interrupt_flag = SET; - } - break; - case ADC_INT_FLAG_EOIC: - /* get the ADC end of inserted group conversion interrupt bits */ - state = ADC_STAT(adc_periph) & ADC_STAT_EOIC; - if((ADC_CTL0(adc_periph) & ADC_CTL0_EOICIE) && state){ - interrupt_flag = SET; - } - break; - case ADC_INT_FLAG_ROVF: - /* get the ADC regular data register overflow interrupt bits */ - state = ADC_STAT(adc_periph) & ADC_STAT_ROVF; - if((ADC_CTL0(adc_periph) & ADC_CTL0_ROVFIE) && state){ - interrupt_flag = SET; - } - break; - default: - break; - } - return interrupt_flag; -} - -/*! - \brief clear the ADC flag - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] adc_interrupt: the adc status flag - only one parameter can be selected which is shown as below: - \arg ADC_INT_FLAG_WDE: analog watchdog interrupt - \arg ADC_INT_FLAG_EOC: end of group conversion interrupt - \arg ADC_INT_FLAG_EOIC: end of inserted group conversion interrupt - \arg ADC_INT_FLAG_ROVF: regular data register overflow interrupt - \param[out] none - \retval none -*/ -void adc_interrupt_flag_clear(uint32_t adc_periph , uint32_t adc_interrupt) -{ - ADC_STAT(adc_periph) &= ~((uint32_t)adc_interrupt); -} - -/*! - \brief enable ADC interrupt - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] adc_interrupt: the adc interrupt flag - only one parameter can be selected which is shown as below: - \arg ADC_INT_WDE: analog watchdog interrupt flag - \arg ADC_INT_EOC: end of group conversion interrupt flag - \arg ADC_INT_EOIC: end of inserted group conversion interrupt flag - \arg ADC_INT_ROVF: regular data register overflow interrupt flag - \param[out] none - \retval none -*/ -void adc_interrupt_enable(uint32_t adc_periph , uint32_t adc_interrupt) -{ - switch(adc_interrupt){ - case ADC_INT_WDE: - /* enable analog watchdog interrupt */ - ADC_CTL0(adc_periph) |= (uint32_t) ADC_CTL0_WDEIE; - break; - case ADC_INT_EOC: - /* enable end of group conversion interrupt */ - ADC_CTL0(adc_periph) |= (uint32_t) ADC_CTL0_EOCIE; - break; - case ADC_INT_EOIC: - /* enable end of inserted group conversion interrupt */ - ADC_CTL0(adc_periph) |= (uint32_t) ADC_CTL0_EOICIE; - break; - case ADC_INT_ROVF: - ADC_CTL0(adc_periph) |= (uint32_t) ADC_CTL0_ROVFIE; - break; - default: - break; - } -} - -/*! - \brief disable ADC interrupt - \param[in] adc_periph: ADCx,x=0,1,2 - \param[in] adc_flag: the adc interrupt flag - only one parameter can be selected which is shown as below: - \arg ADC_INT_WDE: analog watchdog interrupt flag - \arg ADC_INT_EOC: end of group conversion interrupt flag - \arg ADC_INT_EOIC: end of inserted group conversion interrupt flag - \arg ADC_INT_ROVF: regular data register overflow interrupt flag - \param[out] none - \retval none -*/ -void adc_interrupt_disable(uint32_t adc_periph , uint32_t adc_interrupt) -{ - switch(adc_interrupt){ - /* select the interrupt source */ - case ADC_INT_WDE: - ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_WDEIE); - break; - case ADC_INT_EOC: - ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_EOCIE); - break; - case ADC_INT_EOIC: - ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_EOICIE); - break; - case ADC_INT_ROVF: - ADC_CTL0(adc_periph) &= ~((uint32_t)ADC_CTL0_ROVFIE); - break; - default: - break; - } -} - -/*! - \brief configure the ADC sync mode - \param[in] sync_mode: ADC sync mode - only one parameter can be selected which is shown as below: - \arg ADC_SYNC_MODE_INDEPENDENT: all the ADCs work independently - \arg ADC_DAUL_REGULAL_PARALLEL_INSERTED_PARALLEL: ADC0 and ADC1 work in combined regular parallel & inserted parallel mode - \arg ADC_DAUL_REGULAL_PARALLEL_INSERTED_ROTATION: ADC0 and ADC1 work in combined regular parallel & trigger rotation mode - \arg ADC_DAUL_INSERTED_PARALLEL: ADC0 and ADC1 work in inserted parallel mode - \arg ADC_DAUL_REGULAL_PARALLEL: ADC0 and ADC1 work in regular parallel mode - \arg ADC_DAUL_REGULAL_FOLLOW_UP: ADC0 and ADC1 work in follow-up mode - \arg ADC_DAUL_INSERTED_TRRIGGER_ROTATION: ADC0 and ADC1 work in trigger rotation mode - \arg ADC_ALL_REGULAL_PARALLEL_INSERTED_PARALLEL: all ADCs work in combined regular parallel & inserted parallel mode - \arg ADC_ALL_REGULAL_PARALLEL_INSERTED_ROTATION: all ADCs work in combined regular parallel & trigger rotation mode - \arg ADC_ALL_INSERTED_PARALLEL: all ADCs work in inserted parallel mode - \arg ADC_ALL_REGULAL_PARALLEL: all ADCs work in regular parallel mode - \arg ADC_ALL_REGULAL_FOLLOW_UP: all ADCs work in follow-up mode - \arg ADC_ALL_INSERTED_TRRIGGER_ROTATION: all ADCs work in trigger rotation mode - \param[out] none - \retval none -*/ -void adc_sync_mode_config(uint32_t sync_mode) -{ - ADC_SYNCCTL &= ~(ADC_SYNCCTL_SYNCM); - ADC_SYNCCTL |= sync_mode; -} - -/*! - \brief configure the delay between 2 sampling phases in ADC sync modes - \param[in] sample_delay: the delay between 2 sampling phases in ADC sync modes - only one parameter can be selected which is shown as below: - \arg ADC_SYNC_DELAY_xCYCLE: x=5..20,the delay between 2 sampling phases in ADC sync modes is x ADC clock cycles - \param[out] none - \retval none -*/ -void adc_sync_delay_config(uint32_t sample_delay) -{ - ADC_SYNCCTL &= ~(ADC_SYNCCTL_SYNCDLY); - ADC_SYNCCTL |= sample_delay; -} - -/*! - \brief configure ADC sync DMA mode selection - \param[in] dma_mode: ADC sync DMA mode - only one parameter can be selected which is shown as below: - \arg ADC_SYNC_DMA_DISABLE: ADC sync DMA disabled - \arg ADC_SYNC_DMA_MODE0: ADC sync DMA mode 0 - \arg ADC_SYNC_DMA_MODE1: ADC sync DMA mode 1 - \param[out] none - \retval none -*/ -void adc_sync_dma_config(uint32_t dma_mode ) -{ - ADC_SYNCCTL &= ~(ADC_SYNCCTL_SYNCDMA); - ADC_SYNCCTL |= dma_mode; -} - -/*! - \brief configure ADC sync DMA engine is disabled after the end of transfer signal from DMA controller is detected - \param[in] none - \param[out] none - \retval none -*/ -void adc_sync_dma_request_after_last_enable(void) -{ - ADC_SYNCCTL |= ADC_SYNCCTL_SYNCDDM; -} - -/*! - \brief configure ADC sync DMA engine issues requests according to the SYNCDMA bits - \param[in] none - \param[out] none - \retval none -*/ -void adc_sync_dma_request_after_last_disable(void) -{ - ADC_SYNCCTL &= ~(ADC_SYNCCTL_SYNCDDM); -} - -/*! - \brief read ADC sync regular data register - \param[in] none - \param[out] none - \retval sync regular data -*/ -uint32_t adc_sync_regular_data_read(void) -{ - return (uint32_t)ADC_SYNCDATA; -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_can.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_can.c deleted file mode 100644 index 11f1ccfc87..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_can.c +++ /dev/null @@ -1,1018 +0,0 @@ -/*! - \file gd32f4xx_can.c - \brief CAN driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2019-11-27, V2.0.1, firmware for GD32F4xx - \version 2020-07-14, V2.0.2, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_can.h" - -#define CAN_ERROR_HANDLE(s) do{}while(1) - -/*! - \brief deinitialize CAN - \param[in] can_periph - \arg CANx(x=0,1) - \param[out] none - \retval none -*/ -void can_deinit(uint32_t can_periph) -{ - if(CAN0 == can_periph){ - rcu_periph_reset_enable(RCU_CAN0RST); - rcu_periph_reset_disable(RCU_CAN0RST); - }else{ - rcu_periph_reset_enable(RCU_CAN1RST); - rcu_periph_reset_disable(RCU_CAN1RST); - } -} - -/*! - \brief initialize CAN parameter struct with a default value - \param[in] type: the type of CAN parameter struct - only one parameter can be selected which is shown as below: - \arg CAN_INIT_STRUCT: the CAN initial struct - \arg CAN_FILTER_STRUCT: the CAN filter struct - \arg CAN_TX_MESSAGE_STRUCT: the CAN TX message struct - \arg CAN_RX_MESSAGE_STRUCT: the CAN RX message struct - \param[in] p_struct: the pointer of the specific struct - \param[out] none - \retval none -*/ -void can_struct_para_init(can_struct_type_enum type, void* p_struct) -{ - uint8_t i; - - /* get type of the struct */ - switch(type){ - /* used for can_init() */ - case CAN_INIT_STRUCT: - ((can_parameter_struct*)p_struct)->auto_bus_off_recovery = DISABLE; - ((can_parameter_struct*)p_struct)->no_auto_retrans = DISABLE; - ((can_parameter_struct*)p_struct)->auto_wake_up = DISABLE; - ((can_parameter_struct*)p_struct)->prescaler = 0x03FFU; - ((can_parameter_struct*)p_struct)->rec_fifo_overwrite = DISABLE; - ((can_parameter_struct*)p_struct)->resync_jump_width = CAN_BT_SJW_1TQ; - ((can_parameter_struct*)p_struct)->time_segment_1 = CAN_BT_BS1_3TQ; - ((can_parameter_struct*)p_struct)->time_segment_2 = CAN_BT_BS2_1TQ; - ((can_parameter_struct*)p_struct)->time_triggered = DISABLE; - ((can_parameter_struct*)p_struct)->trans_fifo_order = DISABLE; - ((can_parameter_struct*)p_struct)->working_mode = CAN_NORMAL_MODE; - - break; - /* used for can_filter_init() */ - case CAN_FILTER_STRUCT: - ((can_filter_parameter_struct*)p_struct)->filter_bits = CAN_FILTERBITS_32BIT; - ((can_filter_parameter_struct*)p_struct)->filter_enable = DISABLE; - ((can_filter_parameter_struct*)p_struct)->filter_fifo_number = CAN_FIFO0; - ((can_filter_parameter_struct*)p_struct)->filter_list_high = 0x0000U; - ((can_filter_parameter_struct*)p_struct)->filter_list_low = 0x0000U; - ((can_filter_parameter_struct*)p_struct)->filter_mask_high = 0x0000U; - ((can_filter_parameter_struct*)p_struct)->filter_mask_low = 0x0000U; - ((can_filter_parameter_struct*)p_struct)->filter_mode = CAN_FILTERMODE_MASK; - ((can_filter_parameter_struct*)p_struct)->filter_number = 0U; - - break; - /* used for can_message_transmit() */ - case CAN_TX_MESSAGE_STRUCT: - for(i = 0U; i < 8U; i++){ - ((can_trasnmit_message_struct*)p_struct)->tx_data[i] = 0U; - } - - ((can_trasnmit_message_struct*)p_struct)->tx_dlen = 0u; - ((can_trasnmit_message_struct*)p_struct)->tx_efid = 0U; - ((can_trasnmit_message_struct*)p_struct)->tx_ff = (uint8_t)CAN_FF_STANDARD; - ((can_trasnmit_message_struct*)p_struct)->tx_ft = (uint8_t)CAN_FT_DATA; - ((can_trasnmit_message_struct*)p_struct)->tx_sfid = 0U; - - break; - /* used for can_message_receive() */ - case CAN_RX_MESSAGE_STRUCT: - for(i = 0U; i < 8U; i++){ - ((can_receive_message_struct*)p_struct)->rx_data[i] = 0U; - } - - ((can_receive_message_struct*)p_struct)->rx_dlen = 0U; - ((can_receive_message_struct*)p_struct)->rx_efid = 0U; - ((can_receive_message_struct*)p_struct)->rx_ff = (uint8_t)CAN_FF_STANDARD; - ((can_receive_message_struct*)p_struct)->rx_fi = 0U; - ((can_receive_message_struct*)p_struct)->rx_ft = (uint8_t)CAN_FT_DATA; - ((can_receive_message_struct*)p_struct)->rx_sfid = 0U; - - break; - - default: - CAN_ERROR_HANDLE("parameter is invalid \r\n"); - } -} - -/*! - \brief initialize CAN - \param[in] can_periph - \arg CANx(x=0,1) - \param[in] can_parameter_init: parameters for CAN initializtion - \arg working_mode: CAN_NORMAL_MODE, CAN_LOOPBACK_MODE, CAN_SILENT_MODE, CAN_SILENT_LOOPBACK_MODE - \arg resync_jump_width: CAN_BT_SJW_xTQ(x=1, 2, 3, 4) - \arg time_segment_1: CAN_BT_BS1_xTQ(1..16) - \arg time_segment_2: CAN_BT_BS2_xTQ(1..8) - \arg time_triggered: ENABLE or DISABLE - \arg auto_bus_off_recovery: ENABLE or DISABLE - \arg auto_wake_up: ENABLE or DISABLE - \arg no_auto_retrans: ENABLE or DISABLE - \arg rec_fifo_overwrite: ENABLE or DISABLE - \arg trans_fifo_order: ENABLE or DISABLE - \arg prescaler: 0x0001 - 0x0400 - \param[out] none - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus can_init(uint32_t can_periph, can_parameter_struct* can_parameter_init) -{ - uint32_t timeout = CAN_TIMEOUT; - ErrStatus flag = ERROR; - - /* disable sleep mode */ - CAN_CTL(can_periph) &= ~CAN_CTL_SLPWMOD; - /* enable initialize mode */ - CAN_CTL(can_periph) |= CAN_CTL_IWMOD; - /* wait ACK */ - while((CAN_STAT_IWS != (CAN_STAT(can_periph) & CAN_STAT_IWS)) && (0U != timeout)){ - timeout--; - } - /* check initialize working success */ - if(CAN_STAT_IWS != (CAN_STAT(can_periph) & CAN_STAT_IWS)){ - flag = ERROR; - }else{ - /* set the bit timing register */ - CAN_BT(can_periph) = (BT_MODE((uint32_t)can_parameter_init->working_mode) | \ - BT_SJW((uint32_t)can_parameter_init->resync_jump_width) | \ - BT_BS1((uint32_t)can_parameter_init->time_segment_1) | \ - BT_BS2((uint32_t)can_parameter_init->time_segment_2) | \ - BT_BAUDPSC(((uint32_t)(can_parameter_init->prescaler) - 1U))); - - /* time trigger communication mode */ - if(ENABLE == can_parameter_init->time_triggered){ - CAN_CTL(can_periph) |= CAN_CTL_TTC; - }else{ - CAN_CTL(can_periph) &= ~CAN_CTL_TTC; - } - /* automatic bus-off managment */ - if(ENABLE == can_parameter_init->auto_bus_off_recovery){ - CAN_CTL(can_periph) |= CAN_CTL_ABOR; - }else{ - CAN_CTL(can_periph) &= ~CAN_CTL_ABOR; - } - /* automatic wakeup mode */ - if(ENABLE == can_parameter_init->auto_wake_up){ - CAN_CTL(can_periph) |= CAN_CTL_AWU; - }else{ - CAN_CTL(can_periph) &= ~CAN_CTL_AWU; - } - /* automatic retransmission mode disable*/ - if(ENABLE == can_parameter_init->no_auto_retrans){ - CAN_CTL(can_periph) |= CAN_CTL_ARD; - }else{ - CAN_CTL(can_periph) &= ~CAN_CTL_ARD; - } - /* receive fifo overwrite mode */ - if(ENABLE == can_parameter_init->rec_fifo_overwrite){ - CAN_CTL(can_periph) |= CAN_CTL_RFOD; - }else{ - CAN_CTL(can_periph) &= ~CAN_CTL_RFOD; - } - /* transmit fifo order */ - if(ENABLE == can_parameter_init->trans_fifo_order){ - CAN_CTL(can_periph) |= CAN_CTL_TFO; - }else{ - CAN_CTL(can_periph) &= ~CAN_CTL_TFO; - } - /* disable initialize mode */ - CAN_CTL(can_periph) &= ~CAN_CTL_IWMOD; - timeout = CAN_TIMEOUT; - /* wait the ACK */ - while((CAN_STAT_IWS == (CAN_STAT(can_periph) & CAN_STAT_IWS)) && (0U != timeout)){ - timeout--; - } - /* check exit initialize mode */ - if(0U != timeout){ - flag = SUCCESS; - } - } - return flag; -} - -/*! - \brief initialize CAN filter - \param[in] can_filter_parameter_init: struct for CAN filter initialization - \arg filter_list_high: 0x0000 - 0xFFFF - \arg filter_list_low: 0x0000 - 0xFFFF - \arg filter_mask_high: 0x0000 - 0xFFFF - \arg filter_mask_low: 0x0000 - 0xFFFF - \arg filter_fifo_number: CAN_FIFO0, CAN_FIFO1 - \arg filter_number: 0 - 27 - \arg filter_mode: CAN_FILTERMODE_MASK, CAN_FILTERMODE_LIST - \arg filter_bits: CAN_FILTERBITS_32BIT, CAN_FILTERBITS_16BIT - \arg filter_enable: ENABLE or DISABLE - \param[out] none - \retval none -*/ -void can_filter_init(can_filter_parameter_struct* can_filter_parameter_init) -{ - uint32_t val = 0U; - - val = ((uint32_t)1) << (can_filter_parameter_init->filter_number); - /* filter lock disable */ - CAN_FCTL(CAN0) |= CAN_FCTL_FLD; - /* disable filter */ - CAN_FW(CAN0) &= ~(uint32_t)val; - - /* filter 16 bits */ - if(CAN_FILTERBITS_16BIT == can_filter_parameter_init->filter_bits){ - /* set filter 16 bits */ - CAN_FSCFG(CAN0) &= ~(uint32_t)val; - /* first 16 bits list and first 16 bits mask or first 16 bits list and second 16 bits list */ - CAN_FDATA0(CAN0, can_filter_parameter_init->filter_number) = \ - FDATA_MASK_HIGH((can_filter_parameter_init->filter_mask_low) & CAN_FILTER_MASK_16BITS) | \ - FDATA_MASK_LOW((can_filter_parameter_init->filter_list_low) & CAN_FILTER_MASK_16BITS); - /* second 16 bits list and second 16 bits mask or third 16 bits list and fourth 16 bits list */ - CAN_FDATA1(CAN0, can_filter_parameter_init->filter_number) = \ - FDATA_MASK_HIGH((can_filter_parameter_init->filter_mask_high) & CAN_FILTER_MASK_16BITS) | \ - FDATA_MASK_LOW((can_filter_parameter_init->filter_list_high) & CAN_FILTER_MASK_16BITS); - } - /* filter 32 bits */ - if(CAN_FILTERBITS_32BIT == can_filter_parameter_init->filter_bits){ - /* set filter 32 bits */ - CAN_FSCFG(CAN0) |= (uint32_t)val; - /* 32 bits list or first 32 bits list */ - CAN_FDATA0(CAN0, can_filter_parameter_init->filter_number) = \ - FDATA_MASK_HIGH((can_filter_parameter_init->filter_list_high) & CAN_FILTER_MASK_16BITS) | - FDATA_MASK_LOW((can_filter_parameter_init->filter_list_low) & CAN_FILTER_MASK_16BITS); - /* 32 bits mask or second 32 bits list */ - CAN_FDATA1(CAN0, can_filter_parameter_init->filter_number) = \ - FDATA_MASK_HIGH((can_filter_parameter_init->filter_mask_high) & CAN_FILTER_MASK_16BITS) | - FDATA_MASK_LOW((can_filter_parameter_init->filter_mask_low) & CAN_FILTER_MASK_16BITS); - } - - /* filter mode */ - if(CAN_FILTERMODE_MASK == can_filter_parameter_init->filter_mode){ - /* mask mode */ - CAN_FMCFG(CAN0) &= ~(uint32_t)val; - }else{ - /* list mode */ - CAN_FMCFG(CAN0) |= (uint32_t)val; - } - - /* filter FIFO */ - if(CAN_FIFO0 == (can_filter_parameter_init->filter_fifo_number)){ - /* FIFO0 */ - CAN_FAFIFO(CAN0) &= ~(uint32_t)val; - }else{ - /* FIFO1 */ - CAN_FAFIFO(CAN0) |= (uint32_t)val; - } - - /* filter working */ - if(ENABLE == can_filter_parameter_init->filter_enable){ - - CAN_FW(CAN0) |= (uint32_t)val; - } - - /* filter lock enable */ - CAN_FCTL(CAN0) &= ~CAN_FCTL_FLD; -} - -/*! - \brief set CAN1 fliter start bank number - \param[in] start_bank: CAN1 start bank number - only one parameter can be selected which is shown as below: - \arg (1..27) - \param[out] none - \retval none -*/ -void can1_filter_start_bank(uint8_t start_bank) -{ - /* filter lock disable */ - CAN_FCTL(CAN0) |= CAN_FCTL_FLD; - /* set CAN1 filter start number */ - CAN_FCTL(CAN0) &= ~(uint32_t)CAN_FCTL_HBC1F; - CAN_FCTL(CAN0) |= FCTL_HBC1F(start_bank); - /* filter lock enaable */ - CAN_FCTL(CAN0) &= ~CAN_FCTL_FLD; -} - -/*! - \brief enable CAN debug freeze - \param[in] can_periph - \arg CANx(x=0,1) - \param[out] none - \retval none -*/ -void can_debug_freeze_enable(uint32_t can_periph) -{ - /* set DFZ bit */ - CAN_CTL(can_periph) |= CAN_CTL_DFZ; - if(CAN0 == can_periph){ - dbg_periph_enable(DBG_CAN0_HOLD); - }else{ - dbg_periph_enable(DBG_CAN1_HOLD); - } -} - -/*! - \brief disable CAN debug freeze - \param[in] can_periph - \arg CANx(x=0,1) - \param[out] none - \retval none -*/ -void can_debug_freeze_disable(uint32_t can_periph) -{ - /* set DFZ bit */ - CAN_CTL(can_periph) &= ~CAN_CTL_DFZ; - if(CAN0 == can_periph){ - dbg_periph_disable(DBG_CAN0_HOLD); - }else{ - dbg_periph_disable(DBG_CAN1_HOLD); - } -} - -/*! - \brief enable CAN time trigger mode - \param[in] can_periph - \arg CANx(x=0,1) - \param[out] none - \retval none -*/ -void can_time_trigger_mode_enable(uint32_t can_periph) -{ - uint8_t mailbox_number; - - /* enable the tcc mode */ - CAN_CTL(can_periph) |= CAN_CTL_TTC; - /* enable time stamp */ - for(mailbox_number = 0U; mailbox_number < 3U; mailbox_number++){ - CAN_TMP(can_periph, mailbox_number) |= CAN_TMP_TSEN; - } -} - -/*! - \brief disable CAN time trigger mode - \param[in] can_periph - \arg CANx(x=0,1) - \param[out] none - \retval none -*/ -void can_time_trigger_mode_disable(uint32_t can_periph) -{ - uint8_t mailbox_number; - - /* disable the TCC mode */ - CAN_CTL(can_periph) &= ~CAN_CTL_TTC; - /* reset TSEN bits */ - for(mailbox_number = 0U; mailbox_number < 3U; mailbox_number++){ - CAN_TMP(can_periph, mailbox_number) &= ~CAN_TMP_TSEN; - } -} - -/*! - \brief transmit CAN message - \param[in] can_periph - \arg CANx(x=0,1) - \param[in] transmit_message: struct for CAN transmit message - \arg tx_sfid: 0x00000000 - 0x000007FF - \arg tx_efid: 0x00000000 - 0x1FFFFFFF - \arg tx_ff: CAN_FF_STANDARD, CAN_FF_EXTENDED - \arg tx_ft: CAN_FT_DATA, CAN_FT_REMOTE - \arg tx_dlen: 0 - 8 - \arg tx_data[]: 0x00 - 0xFF - \param[out] none - \retval mailbox_number -*/ -uint8_t can_message_transmit(uint32_t can_periph, can_trasnmit_message_struct* transmit_message) -{ - uint8_t mailbox_number = CAN_MAILBOX0; - - /* select one empty mailbox */ - if(CAN_TSTAT_TME0 == (CAN_TSTAT(can_periph)&CAN_TSTAT_TME0)){ - mailbox_number = CAN_MAILBOX0; - }else if(CAN_TSTAT_TME1 == (CAN_TSTAT(can_periph)&CAN_TSTAT_TME1)){ - mailbox_number = CAN_MAILBOX1; - }else if(CAN_TSTAT_TME2 == (CAN_TSTAT(can_periph)&CAN_TSTAT_TME2)){ - mailbox_number = CAN_MAILBOX2; - }else{ - mailbox_number = CAN_NOMAILBOX; - } - /* return no mailbox empty */ - if(CAN_NOMAILBOX == mailbox_number){ - return CAN_NOMAILBOX; - } - - CAN_TMI(can_periph, mailbox_number) &= CAN_TMI_TEN; - if(CAN_FF_STANDARD == transmit_message->tx_ff){ - /* set transmit mailbox standard identifier */ - CAN_TMI(can_periph, mailbox_number) |= (uint32_t)(TMI_SFID(transmit_message->tx_sfid) | \ - transmit_message->tx_ft); - }else{ - /* set transmit mailbox extended identifier */ - CAN_TMI(can_periph, mailbox_number) |= (uint32_t)(TMI_EFID(transmit_message->tx_efid) | \ - transmit_message->tx_ff | \ - transmit_message->tx_ft); - } - /* set the data length */ - CAN_TMP(can_periph, mailbox_number) &= ~CAN_TMP_DLENC; - CAN_TMP(can_periph, mailbox_number) |= transmit_message->tx_dlen; - /* set the data */ - CAN_TMDATA0(can_periph, mailbox_number) = TMDATA0_DB3(transmit_message->tx_data[3]) | \ - TMDATA0_DB2(transmit_message->tx_data[2]) | \ - TMDATA0_DB1(transmit_message->tx_data[1]) | \ - TMDATA0_DB0(transmit_message->tx_data[0]); - CAN_TMDATA1(can_periph, mailbox_number) = TMDATA1_DB7(transmit_message->tx_data[7]) | \ - TMDATA1_DB6(transmit_message->tx_data[6]) | \ - TMDATA1_DB5(transmit_message->tx_data[5]) | \ - TMDATA1_DB4(transmit_message->tx_data[4]); - /* enable transmission */ - CAN_TMI(can_periph, mailbox_number) |= CAN_TMI_TEN; - - return mailbox_number; -} - -/*! - \brief get CAN transmit state - \param[in] can_periph - \arg CANx(x=0,1) - \param[in] mailbox_number - only one parameter can be selected which is shown as below: - \arg CAN_MAILBOX(x=0,1,2) - \param[out] none - \retval can_transmit_state_enum -*/ -can_transmit_state_enum can_transmit_states(uint32_t can_periph, uint8_t mailbox_number) -{ - can_transmit_state_enum state = CAN_TRANSMIT_FAILED; - uint32_t val = 0U; - - /* check selected mailbox state */ - switch(mailbox_number){ - /* mailbox0 */ - case CAN_MAILBOX0: - val = CAN_TSTAT(can_periph) & (CAN_TSTAT_MTF0 | CAN_TSTAT_MTFNERR0 | CAN_TSTAT_TME0); - break; - /* mailbox1 */ - case CAN_MAILBOX1: - val = CAN_TSTAT(can_periph) & (CAN_TSTAT_MTF1 | CAN_TSTAT_MTFNERR1 | CAN_TSTAT_TME1); - break; - /* mailbox2 */ - case CAN_MAILBOX2: - val = CAN_TSTAT(can_periph) & (CAN_TSTAT_MTF2 | CAN_TSTAT_MTFNERR2 | CAN_TSTAT_TME2); - break; - default: - val = CAN_TRANSMIT_FAILED; - break; - } - - switch(val){ - /* transmit pending */ - case (CAN_STATE_PENDING): - state = CAN_TRANSMIT_PENDING; - break; - /* mailbox0 transmit succeeded */ - case (CAN_TSTAT_MTF0 | CAN_TSTAT_MTFNERR0 | CAN_TSTAT_TME0): - state = CAN_TRANSMIT_OK; - break; - /* mailbox1 transmit succeeded */ - case (CAN_TSTAT_MTF1 | CAN_TSTAT_MTFNERR1 | CAN_TSTAT_TME1): - state = CAN_TRANSMIT_OK; - break; - /* mailbox2 transmit succeeded */ - case (CAN_TSTAT_MTF2 | CAN_TSTAT_MTFNERR2 | CAN_TSTAT_TME2): - state = CAN_TRANSMIT_OK; - break; - /* transmit failed */ - default: - state = CAN_TRANSMIT_FAILED; - break; - } - return state; -} - -/*! - \brief stop CAN transmission - \param[in] can_periph - \arg CANx(x=0,1) - \param[in] mailbox_number - only one parameter can be selected which is shown as below: - \arg CAN_MAILBOXx(x=0,1,2) - \param[out] none - \retval none -*/ -void can_transmission_stop(uint32_t can_periph, uint8_t mailbox_number) -{ - if(CAN_MAILBOX0 == mailbox_number){ - CAN_TSTAT(can_periph) |= CAN_TSTAT_MST0; - while(CAN_TSTAT_MST0 == (CAN_TSTAT(can_periph) & CAN_TSTAT_MST0)){ - } - }else if(CAN_MAILBOX1 == mailbox_number){ - CAN_TSTAT(can_periph) |= CAN_TSTAT_MST1; - while(CAN_TSTAT_MST1 == (CAN_TSTAT(can_periph) & CAN_TSTAT_MST1)){ - } - }else if(CAN_MAILBOX2 == mailbox_number){ - CAN_TSTAT(can_periph) |= CAN_TSTAT_MST2; - while(CAN_TSTAT_MST2 == (CAN_TSTAT(can_periph) & CAN_TSTAT_MST2)){ - } - }else{ - /* illegal parameters */ - } -} - -/*! - \brief CAN receive message - \param[in] can_periph - \arg CANx(x=0,1) - \param[in] fifo_number - \arg CAN_FIFOx(x=0,1) - \param[out] receive_message: struct for CAN receive message - \arg rx_sfid: 0x00000000 - 0x000007FF - \arg rx_efid: 0x00000000 - 0x1FFFFFFF - \arg rx_ff: CAN_FF_STANDARD, CAN_FF_EXTENDED - \arg rx_ft: CAN_FT_DATA, CAN_FT_REMOTE - \arg rx_dlen: 0 - 8 - \arg rx_data[]: 0x00 - 0xFF - \arg rx_fi: 0 - 27 - \retval none -*/ -void can_message_receive(uint32_t can_periph, uint8_t fifo_number, can_receive_message_struct* receive_message) -{ - /* get the frame format */ - receive_message->rx_ff = (uint8_t)(CAN_RFIFOMI_FF & CAN_RFIFOMI(can_periph, fifo_number)); - if(CAN_FF_STANDARD == receive_message->rx_ff){ - /* get standard identifier */ - receive_message->rx_sfid = (uint32_t)(GET_RFIFOMI_SFID(CAN_RFIFOMI(can_periph, fifo_number))); - }else{ - /* get extended identifier */ - receive_message->rx_efid = (uint32_t)(GET_RFIFOMI_EFID(CAN_RFIFOMI(can_periph, fifo_number))); - } - - /* get frame type */ - receive_message->rx_ft = (uint8_t)(CAN_RFIFOMI_FT & CAN_RFIFOMI(can_periph, fifo_number)); - /* filtering index */ - receive_message->rx_fi = (uint8_t)(GET_RFIFOMP_FI(CAN_RFIFOMP(can_periph, fifo_number))); - /* get recevie data length */ - receive_message->rx_dlen = (uint8_t)(GET_RFIFOMP_DLENC(CAN_RFIFOMP(can_periph, fifo_number))); - - /* receive data */ - receive_message -> rx_data[0] = (uint8_t)(GET_RFIFOMDATA0_DB0(CAN_RFIFOMDATA0(can_periph, fifo_number))); - receive_message -> rx_data[1] = (uint8_t)(GET_RFIFOMDATA0_DB1(CAN_RFIFOMDATA0(can_periph, fifo_number))); - receive_message -> rx_data[2] = (uint8_t)(GET_RFIFOMDATA0_DB2(CAN_RFIFOMDATA0(can_periph, fifo_number))); - receive_message -> rx_data[3] = (uint8_t)(GET_RFIFOMDATA0_DB3(CAN_RFIFOMDATA0(can_periph, fifo_number))); - receive_message -> rx_data[4] = (uint8_t)(GET_RFIFOMDATA1_DB4(CAN_RFIFOMDATA1(can_periph, fifo_number))); - receive_message -> rx_data[5] = (uint8_t)(GET_RFIFOMDATA1_DB5(CAN_RFIFOMDATA1(can_periph, fifo_number))); - receive_message -> rx_data[6] = (uint8_t)(GET_RFIFOMDATA1_DB6(CAN_RFIFOMDATA1(can_periph, fifo_number))); - receive_message -> rx_data[7] = (uint8_t)(GET_RFIFOMDATA1_DB7(CAN_RFIFOMDATA1(can_periph, fifo_number))); - - /* release FIFO */ - if(CAN_FIFO0 == fifo_number){ - CAN_RFIFO0(can_periph) |= CAN_RFIFO0_RFD0; - }else{ - CAN_RFIFO1(can_periph) |= CAN_RFIFO1_RFD1; - } -} - -/*! - \brief release FIFO0 - \param[in] can_periph - \arg CANx(x=0,1) - \param[in] fifo_number - only one parameter can be selected which is shown as below: - \arg CAN_FIFOx(x=0,1) - \param[out] none - \retval none -*/ -void can_fifo_release(uint32_t can_periph, uint8_t fifo_number) -{ - if(CAN_FIFO0 == fifo_number){ - CAN_RFIFO0(can_periph) |= CAN_RFIFO0_RFD0; - }else if(CAN_FIFO1 == fifo_number){ - CAN_RFIFO1(can_periph) |= CAN_RFIFO1_RFD1; - }else{ - /* illegal parameters */ - CAN_ERROR_HANDLE("CAN FIFO NUM is invalid \r\n"); - } -} - -/*! - \brief CAN receive message length - \param[in] can_periph - \arg CANx(x=0,1) - \param[in] fifo_number - only one parameter can be selected which is shown as below: - \arg CAN_FIFOx(x=0,1) - \param[out] none - \retval message length -*/ -uint8_t can_receive_message_length_get(uint32_t can_periph, uint8_t fifo_number) -{ - uint8_t val = 0U; - - if(CAN_FIFO0 == fifo_number){ - /* FIFO0 */ - val = (uint8_t)(CAN_RFIFO0(can_periph) & CAN_RFIF_RFL_MASK); - }else if(CAN_FIFO1 == fifo_number){ - /* FIFO1 */ - val = (uint8_t)(CAN_RFIFO1(can_periph) & CAN_RFIF_RFL_MASK); - }else{ - /* illegal parameters */ - } - return val; -} - -/*! - \brief set CAN working mode - \param[in] can_periph - \arg CANx(x=0,1) - \param[in] can_working_mode - only one parameter can be selected which is shown as below: - \arg CAN_MODE_INITIALIZE - \arg CAN_MODE_NORMAL - \arg CAN_MODE_SLEEP - \param[out] none - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus can_working_mode_set(uint32_t can_periph, uint8_t working_mode) -{ - ErrStatus flag = ERROR; - /* timeout for IWS or also for SLPWS bits */ - uint32_t timeout = CAN_TIMEOUT; - - if(CAN_MODE_INITIALIZE == working_mode){ - /* disable sleep mode */ - CAN_CTL(can_periph) &= (~(uint32_t)CAN_CTL_SLPWMOD); - /* set initialize mode */ - CAN_CTL(can_periph) |= (uint8_t)CAN_CTL_IWMOD; - /* wait the acknowledge */ - while((CAN_STAT_IWS != (CAN_STAT(can_periph) & CAN_STAT_IWS)) && (0U != timeout)){ - timeout--; - } - if(CAN_STAT_IWS != (CAN_STAT(can_periph) & CAN_STAT_IWS)){ - flag = ERROR; - }else{ - flag = SUCCESS; - } - }else if(CAN_MODE_NORMAL == working_mode){ - /* enter normal mode */ - CAN_CTL(can_periph) &= ~(uint32_t)(CAN_CTL_SLPWMOD | CAN_CTL_IWMOD); - /* wait the acknowledge */ - while((0U != (CAN_STAT(can_periph) & (CAN_STAT_IWS | CAN_STAT_SLPWS))) && (0U != timeout)){ - timeout--; - } - if(0U != (CAN_STAT(can_periph) & (CAN_STAT_IWS | CAN_STAT_SLPWS))){ - flag = ERROR; - }else{ - flag = SUCCESS; - } - }else if(CAN_MODE_SLEEP == working_mode){ - /* disable initialize mode */ - CAN_CTL(can_periph) &= (~(uint32_t)CAN_CTL_IWMOD); - /* set sleep mode */ - CAN_CTL(can_periph) |= (uint8_t)CAN_CTL_SLPWMOD; - /* wait the acknowledge */ - while((CAN_STAT_SLPWS != (CAN_STAT(can_periph) & CAN_STAT_SLPWS)) && (0U != timeout)){ - timeout--; - } - if(CAN_STAT_SLPWS != (CAN_STAT(can_periph) & CAN_STAT_SLPWS)){ - flag = ERROR; - }else{ - flag = SUCCESS; - } - }else{ - flag = ERROR; - } - return flag; -} - -/*! - \brief wake up CAN - \param[in] can_periph - \arg CANx(x=0,1) - \param[out] none - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus can_wakeup(uint32_t can_periph) -{ - ErrStatus flag = ERROR; - uint32_t timeout = CAN_TIMEOUT; - - /* wakeup */ - CAN_CTL(can_periph) &= ~CAN_CTL_SLPWMOD; - - while((0U != (CAN_STAT(can_periph) & CAN_STAT_SLPWS)) && (0x00U != timeout)){ - timeout--; - } - /* check state */ - if(0U != (CAN_STAT(can_periph) & CAN_STAT_SLPWS)){ - flag = ERROR; - }else{ - flag = SUCCESS; - } - return flag; -} - -/*! - \brief get CAN error type - \param[in] can_periph - \arg CANx(x=0,1) - \param[out] none - \retval can_error_enum - \arg CAN_ERROR_NONE: no error - \arg CAN_ERROR_FILL: fill error - \arg CAN_ERROR_FORMATE: format error - \arg CAN_ERROR_ACK: ACK error - \arg CAN_ERROR_BITRECESSIVE: bit recessive - \arg CAN_ERROR_BITDOMINANTER: bit dominant error - \arg CAN_ERROR_CRC: CRC error - \arg CAN_ERROR_SOFTWARECFG: software configure -*/ -can_error_enum can_error_get(uint32_t can_periph) -{ - can_error_enum error; - error = CAN_ERROR_NONE; - - /* get error type */ - error = (can_error_enum)(GET_ERR_ERRN(CAN_ERR(can_periph))); - return error; -} - -/*! - \brief get CAN receive error number - \param[in] can_periph - \arg CANx(x=0,1) - \param[out] none - \retval error number -*/ -uint8_t can_receive_error_number_get(uint32_t can_periph) -{ - uint8_t val; - - /* get error count */ - val = (uint8_t)(GET_ERR_RECNT(CAN_ERR(can_periph))); - return val; -} - -/*! - \brief get CAN transmit error number - \param[in] can_periph - \arg CANx(x=0,1) - \param[out] none - \retval error number -*/ -uint8_t can_transmit_error_number_get(uint32_t can_periph) -{ - uint8_t val; - - val = (uint8_t)(GET_ERR_TECNT(CAN_ERR(can_periph))); - return val; -} - -/*! - \brief enable CAN interrupt - \param[in] can_periph - \arg CANx(x=0,1) - \param[in] interrupt - one or more parameters can be selected which are shown as below: - \arg CAN_INT_TME: transmit mailbox empty interrupt enable - \arg CAN_INT_RFNE0: receive FIFO0 not empty interrupt enable - \arg CAN_INT_RFF0: receive FIFO0 full interrupt enable - \arg CAN_INT_RFO0: receive FIFO0 overfull interrupt enable - \arg CAN_INT_RFNE1: receive FIFO1 not empty interrupt enable - \arg CAN_INT_RFF1: receive FIFO1 full interrupt enable - \arg CAN_INT_RFO1: receive FIFO1 overfull interrupt enable - \arg CAN_INT_WERR: warning error interrupt enable - \arg CAN_INT_PERR: passive error interrupt enable - \arg CAN_INT_BO: bus-off interrupt enable - \arg CAN_INT_ERRN: error number interrupt enable - \arg CAN_INT_ERR: error interrupt enable - \arg CAN_INT_WU: wakeup interrupt enable - \arg CAN_INT_SLPW: sleep working interrupt enable - \param[out] none - \retval none -*/ -void can_interrupt_enable(uint32_t can_periph, uint32_t interrupt) -{ - CAN_INTEN(can_periph) |= interrupt; -} - -/*! - \brief disable CAN interrupt - \param[in] can_periph - \arg CANx(x=0,1) - \param[in] interrupt - one or more parameters can be selected which are shown as below: - \arg CAN_INT_TME: transmit mailbox empty interrupt enable - \arg CAN_INT_RFNE0: receive FIFO0 not empty interrupt enable - \arg CAN_INT_RFF0: receive FIFO0 full interrupt enable - \arg CAN_INT_RFO0: receive FIFO0 overfull interrupt enable - \arg CAN_INT_RFNE1: receive FIFO1 not empty interrupt enable - \arg CAN_INT_RFF1: receive FIFO1 full interrupt enable - \arg CAN_INT_RFO1: receive FIFO1 overfull interrupt enable - \arg CAN_INT_WERR: warning error interrupt enable - \arg CAN_INT_PERR: passive error interrupt enable - \arg CAN_INT_BO: bus-off interrupt enable - \arg CAN_INT_ERRN: error number interrupt enable - \arg CAN_INT_ERR: error interrupt enable - \arg CAN_INT_WU: wakeup interrupt enable - \arg CAN_INT_SLPW: sleep working interrupt enable - \param[out] none - \retval none -*/ -void can_interrupt_disable(uint32_t can_periph, uint32_t interrupt) -{ - CAN_INTEN(can_periph) &= ~interrupt; -} - -/*! - \brief get CAN flag state - \param[in] can_periph - \arg CANx(x=0,1) - \param[in] flag: CAN flags, refer to can_flag_enum - only one parameter can be selected which is shown as below: - \arg CAN_FLAG_RXL: RX level - \arg CAN_FLAG_LASTRX: last sample value of RX pin - \arg CAN_FLAG_RS: receiving state - \arg CAN_FLAG_TS: transmitting state - \arg CAN_FLAG_SLPIF: status change flag of entering sleep working mode - \arg CAN_FLAG_WUIF: status change flag of wakeup from sleep working mode - \arg CAN_FLAG_ERRIF: error flag - \arg CAN_FLAG_SLPWS: sleep working state - \arg CAN_FLAG_IWS: initial working state - \arg CAN_FLAG_TMLS2: transmit mailbox 2 last sending in Tx FIFO - \arg CAN_FLAG_TMLS1: transmit mailbox 1 last sending in Tx FIFO - \arg CAN_FLAG_TMLS0: transmit mailbox 0 last sending in Tx FIFO - \arg CAN_FLAG_TME2: transmit mailbox 2 empty - \arg CAN_FLAG_TME1: transmit mailbox 1 empty - \arg CAN_FLAG_TME0: transmit mailbox 0 empty - \arg CAN_FLAG_MTE2: mailbox 2 transmit error - \arg CAN_FLAG_MTE1: mailbox 1 transmit error - \arg CAN_FLAG_MTE0: mailbox 0 transmit error - \arg CAN_FLAG_MAL2: mailbox 2 arbitration lost - \arg CAN_FLAG_MAL1: mailbox 1 arbitration lost - \arg CAN_FLAG_MAL0: mailbox 0 arbitration lost - \arg CAN_FLAG_MTFNERR2: mailbox 2 transmit finished with no error - \arg CAN_FLAG_MTFNERR1: mailbox 1 transmit finished with no error - \arg CAN_FLAG_MTFNERR0: mailbox 0 transmit finished with no error - \arg CAN_FLAG_MTF2: mailbox 2 transmit finished - \arg CAN_FLAG_MTF1: mailbox 1 transmit finished - \arg CAN_FLAG_MTF0: mailbox 0 transmit finished - \arg CAN_FLAG_RFO0: receive FIFO0 overfull - \arg CAN_FLAG_RFF0: receive FIFO0 full - \arg CAN_FLAG_RFO1: receive FIFO1 overfull - \arg CAN_FLAG_RFF1: receive FIFO1 full - \arg CAN_FLAG_BOERR: bus-off error - \arg CAN_FLAG_PERR: passive error - \arg CAN_FLAG_WERR: warning error - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus can_flag_get(uint32_t can_periph, can_flag_enum flag) -{ - /* get flag and interrupt enable state */ - if(RESET != (CAN_REG_VAL(can_periph, flag) & BIT(CAN_BIT_POS(flag)))){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear CAN flag state - \param[in] can_periph - \arg CANx(x=0,1) - \param[in] flag: CAN flags, refer to can_flag_enum - only one parameter can be selected which is shown as below: - \arg CAN_FLAG_SLPIF: status change flag of entering sleep working mode - \arg CAN_FLAG_WUIF: status change flag of wakeup from sleep working mode - \arg CAN_FLAG_ERRIF: error flag - \arg CAN_FLAG_MTE2: mailbox 2 transmit error - \arg CAN_FLAG_MTE1: mailbox 1 transmit error - \arg CAN_FLAG_MTE0: mailbox 0 transmit error - \arg CAN_FLAG_MAL2: mailbox 2 arbitration lost - \arg CAN_FLAG_MAL1: mailbox 1 arbitration lost - \arg CAN_FLAG_MAL0: mailbox 0 arbitration lost - \arg CAN_FLAG_MTFNERR2: mailbox 2 transmit finished with no error - \arg CAN_FLAG_MTFNERR1: mailbox 1 transmit finished with no error - \arg CAN_FLAG_MTFNERR0: mailbox 0 transmit finished with no error - \arg CAN_FLAG_MTF2: mailbox 2 transmit finished - \arg CAN_FLAG_MTF1: mailbox 1 transmit finished - \arg CAN_FLAG_MTF0: mailbox 0 transmit finished - \arg CAN_FLAG_RFO0: receive FIFO0 overfull - \arg CAN_FLAG_RFF0: receive FIFO0 full - \arg CAN_FLAG_RFO1: receive FIFO1 overfull - \arg CAN_FLAG_RFF1: receive FIFO1 full - \param[out] none - \retval none -*/ -void can_flag_clear(uint32_t can_periph, can_flag_enum flag) -{ - CAN_REG_VAL(can_periph, flag) = BIT(CAN_BIT_POS(flag)); -} - -/*! - \brief get CAN interrupt flag state - \param[in] can_periph - \arg CANx(x=0,1) - \param[in] flag: CAN interrupt flags, refer to can_interrupt_flag_enum - only one parameter can be selected which is shown as below: - \arg CAN_INT_FLAG_SLPIF: status change interrupt flag of sleep working mode entering - \arg CAN_INT_FLAG_WUIF: status change interrupt flag of wakeup from sleep working mode - \arg CAN_INT_FLAG_ERRIF: error interrupt flag - \arg CAN_INT_FLAG_MTF2: mailbox 2 transmit finished interrupt flag - \arg CAN_INT_FLAG_MTF1: mailbox 1 transmit finished interrupt flag - \arg CAN_INT_FLAG_MTF0: mailbox 0 transmit finished interrupt flag - \arg CAN_INT_FLAG_RFO0: receive FIFO0 overfull interrupt flag - \arg CAN_INT_FLAG_RFF0: receive FIFO0 full interrupt flag - \arg CAN_INT_FLAG_RFL0: receive FIFO0 not empty interrupt flag - \arg CAN_INT_FLAG_RFO1: receive FIFO1 overfull interrupt flag - \arg CAN_INT_FLAG_RFF1: receive FIFO1 full interrupt flag - \arg CAN_INT_FLAG_RFL1: receive FIFO1 not empty interrupt flag - \arg CAN_INT_FLAG_ERRN: error number interrupt flag - \arg CAN_INT_FLAG_BOERR: bus-off error interrupt flag - \arg CAN_INT_FLAG_PERR: passive error interrupt flag - \arg CAN_INT_FLAG_WERR: warning error interrupt flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus can_interrupt_flag_get(uint32_t can_periph, can_interrupt_flag_enum flag) -{ - uint32_t ret1 = RESET; - uint32_t ret2 = RESET; - - /* get the staus of interrupt flag */ - if (flag == CAN_INT_FLAG_RFF0) { - ret1 = can_receive_message_length_get(can_periph, CAN_FIFO0); - } else if (flag == CAN_INT_FLAG_RFF1) { - ret1 = can_receive_message_length_get(can_periph, CAN_FIFO1); - } else if (flag == CAN_INT_FLAG_ERRN) { - ret1 = can_error_get(can_periph); - } else { - ret1 = CAN_REG_VALS(can_periph, flag) & BIT(CAN_BIT_POS0(flag)); - } - /* get the staus of interrupt enale bit */ - ret2 = CAN_INTEN(can_periph) & BIT(CAN_BIT_POS1(flag)); - if(ret1 && ret2){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear CAN interrupt flag state - \param[in] can_periph - \arg CANx(x=0,1) - \param[in] flag: CAN interrupt flags, refer to can_interrupt_flag_enum - only one parameter can be selected which is shown as below: - \arg CAN_INT_FLAG_SLPIF: status change interrupt flag of sleep working mode entering - \arg CAN_INT_FLAG_WUIF: status change interrupt flag of wakeup from sleep working mode - \arg CAN_INT_FLAG_ERRIF: error interrupt flag - \arg CAN_INT_FLAG_MTF2: mailbox 2 transmit finished interrupt flag - \arg CAN_INT_FLAG_MTF1: mailbox 1 transmit finished interrupt flag - \arg CAN_INT_FLAG_MTF0: mailbox 0 transmit finished interrupt flag - \arg CAN_INT_FLAG_RFO0: receive FIFO0 overfull interrupt flag - \arg CAN_INT_FLAG_RFF0: receive FIFO0 full interrupt flag - \arg CAN_INT_FLAG_RFO1: receive FIFO1 overfull interrupt flag - \arg CAN_INT_FLAG_RFF1: receive FIFO1 full interrupt flag - \param[out] none - \retval none -*/ -void can_interrupt_flag_clear(uint32_t can_periph, can_interrupt_flag_enum flag) -{ - CAN_REG_VALS(can_periph, flag) = BIT(CAN_BIT_POS0(flag)); -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_crc.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_crc.c deleted file mode 100644 index 673b60798e..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_crc.c +++ /dev/null @@ -1,128 +0,0 @@ -/*! - \file gd32f4xx_crc.c - \brief CRC driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_crc.h" - -#define CRC_DATA_RESET_VALUE ((uint32_t)0xFFFFFFFFU) -#define CRC_FDATA_RESET_VALUE ((uint32_t)0x00000000U) -/*! - \brief deinit CRC calculation unit - \param[in] none - \param[out] none - \retval none -*/ -void crc_deinit(void) -{ - CRC_DATA = CRC_DATA_RESET_VALUE; - CRC_FDATA = CRC_FDATA_RESET_VALUE; - CRC_CTL = (uint32_t)CRC_CTL_RST; -} - -/*! - \brief reset data register(CRC_DATA) to the value of 0xFFFFFFFF - \param[in] none - \param[out] none - \retval none -*/ -void crc_data_register_reset(void) -{ - CRC_CTL |= (uint32_t)CRC_CTL_RST; -} - -/*! - \brief read the value of the data register - \param[in] none - \param[out] none - \retval 32-bit value of the data register -*/ -uint32_t crc_data_register_read(void) -{ - uint32_t data; - data = CRC_DATA; - return (data); -} - -/*! - \brief read the value of the free data register - \param[in] none - \param[out] none - \retval 8-bit value of the free data register -*/ -uint8_t crc_free_data_register_read(void) -{ - uint8_t fdata; - fdata = (uint8_t)CRC_FDATA; - return (fdata); -} - -/*! - \brief write data to the free data register - \param[in] free_data: specified 8-bit data - \param[out] none - \retval none -*/ -void crc_free_data_register_write(uint8_t free_data) -{ - CRC_FDATA = (uint32_t)free_data; -} - -/*! - \brief calculate the CRC value of a 32-bit data - \param[in] sdata: specified 32-bit data - \param[out] none - \retval 32-bit value calculated by CRC -*/ -uint32_t crc_single_data_calculate(uint32_t sdata) -{ - CRC_DATA = sdata; - return (CRC_DATA); -} - -/*! - \brief calculate the CRC value of an array of 32-bit values - \param[in] array: pointer to an array of 32-bit values - \param[in] size: size of the array - \param[out] none - \retval 32-bit value calculated by CRC -*/ -uint32_t crc_block_data_calculate(uint32_t array[], uint32_t size) -{ - uint32_t index; - for(index = 0U; index < size; index++){ - CRC_DATA = array[index]; - } - return (CRC_DATA); -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_ctc.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_ctc.c deleted file mode 100644 index 62025628c3..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_ctc.c +++ /dev/null @@ -1,405 +0,0 @@ -/*! - \file gd32f4xx_ctc.c - \brief CTC driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_ctc.h" - -#define CTC_FLAG_MASK ((uint32_t)0x00000700U) - -/* CTC register bit offset */ -#define CTC_TRIMVALUE_OFFSET ((uint32_t)8U) -#define CTC_TRIM_VALUE_OFFSET ((uint32_t)8U) -#define CTC_REFCAP_OFFSET ((uint32_t)16U) -#define CTC_LIMIT_VALUE_OFFSET ((uint32_t)16U) - -/*! - \brief reset CTC clock trim controller - \param[in] none - \param[out] none - \retval none -*/ -void ctc_deinit(void) -{ - /* reset CTC */ - rcu_periph_reset_enable(RCU_CTCRST); - rcu_periph_reset_disable(RCU_CTCRST); -} - -/*! - \brief enable CTC trim counter - \param[in] none - \param[out] none - \retval none -*/ -void ctc_counter_enable(void) -{ - CTC_CTL0 |= (uint32_t)CTC_CTL0_CNTEN; -} - -/*! - \brief disable CTC trim counter - \param[in] none - \param[out] none - \retval none -*/ -void ctc_counter_disable(void) -{ - CTC_CTL0 &= (uint32_t)(~CTC_CTL0_CNTEN); -} - -/*! - \brief configure the IRC48M trim value - \param[in] ctc_trim_value: 8-bit IRC48M trim value - \arg 0x00 - 0x3F - \param[out] none - \retval none -*/ -void ctc_irc48m_trim_value_config(uint8_t trim_value) -{ - /* clear TRIMVALUE bits */ - CTC_CTL0 &= (~(uint32_t)CTC_CTL0_TRIMVALUE); - /* set TRIMVALUE bits */ - CTC_CTL0 |= ((uint32_t)trim_value << CTC_TRIM_VALUE_OFFSET); -} - -/*! - \brief generate software reference source sync pulse - \param[in] none - \param[out] none - \retval none -*/ -void ctc_software_refsource_pulse_generate(void) -{ - CTC_CTL0 |= (uint32_t)CTC_CTL0_SWREFPUL; -} - -/*! - \brief configure hardware automatically trim mode - \param[in] hardmode: - only one parameter can be selected which is shown as below: - \arg CTC_HARDWARE_TRIM_MODE_ENABLE: hardware automatically trim mode enable - \arg CTC_HARDWARE_TRIM_MODE_DISABLE: hardware automatically trim mode disable - \param[out] none - \retval none -*/ -void ctc_hardware_trim_mode_config(uint32_t hardmode) -{ - CTC_CTL0 &= (uint32_t)(~CTC_CTL0_AUTOTRIM); - CTC_CTL0 |= (uint32_t)hardmode; -} - -/*! - \brief configure reference signal source polarity - \param[in] polarity: - only one parameter can be selected which is shown as below: - \arg CTC_REFSOURCE_POLARITY_FALLING: reference signal source polarity is falling edge - \arg CTC_REFSOURCE_POLARITY_RISING: reference signal source polarity is rising edge - \param[out] none - \retval none -*/ -void ctc_refsource_polarity_config(uint32_t polarity) -{ - CTC_CTL1 &= (uint32_t)(~CTC_CTL1_REFPOL); - CTC_CTL1 |= (uint32_t)polarity; -} - -/*! - \brief select USBFS or USBHS SOF signal - \param[in] usbsof: - \arg CTC_USBSOFSEL_USBHS: USBHS SOF signal is selected - \arg CTC_USBSOFSEL_USBFS: USBFS SOF signal is selected - \param[out] none - \retval none -*/ -void ctc_usbsof_signal_select(uint32_t usbsof) -{ - CTC_CTL1 &= (uint32_t)(~CTC_CTL1_USBSOFSEL); - CTC_CTL1 |= (uint32_t)usbsof; -} - -/*! - \brief select reference signal source - \param[in] refs: - only one parameter can be selected which is shown as below: - \arg CTC_REFSOURCE_GPIO: GPIO is selected - \arg CTC_REFSOURCE_LXTAL: LXTAL is selected - \arg CTC_REFSOURCE_USBSOF: USBSOF is selected - \param[out] none - \retval none -*/ -void ctc_refsource_signal_select(uint32_t refs) -{ - CTC_CTL1 &= (uint32_t)(~CTC_CTL1_REFSEL); - CTC_CTL1 |= (uint32_t)refs; -} - -/*! - \brief configure reference signal source prescaler - \param[in] prescaler: - only one parameter can be selected which is shown as below: - \arg CTC_REFSOURCE_PSC_OFF: reference signal not divided - \arg CTC_REFSOURCE_PSC_DIV2: reference signal divided by 2 - \arg CTC_REFSOURCE_PSC_DIV4: reference signal divided by 4 - \arg CTC_REFSOURCE_PSC_DIV8: reference signal divided by 8 - \arg CTC_REFSOURCE_PSC_DIV16: reference signal divided by 16 - \arg CTC_REFSOURCE_PSC_DIV32: reference signal divided by 32 - \arg CTC_REFSOURCE_PSC_DIV64: reference signal divided by 64 - \arg CTC_REFSOURCE_PSC_DIV128: reference signal divided by 128 - \param[out] none - \retval none -*/ -void ctc_refsource_prescaler_config(uint32_t prescaler) -{ - CTC_CTL1 &= (uint32_t)(~CTC_CTL1_REFPSC); - CTC_CTL1 |= (uint32_t)prescaler; -} - -/*! - \brief configure clock trim base limit value - \param[in] limit_value: 8-bit clock trim base limit value - \arg 0x00 - 0xFF - \param[out] none - \retval none -*/ -void ctc_clock_limit_value_config(uint8_t limit_value) -{ - CTC_CTL1 &= (uint32_t)(~CTC_CTL1_CKLIM); - CTC_CTL1 |= (uint32_t)((uint32_t)limit_value << CTC_LIMIT_VALUE_OFFSET); -} - -/*! - \brief configure CTC counter reload value - \param[in] reload_value: 16-bit CTC counter reload value - \arg 0x0000 - 0xFFFF - \param[out] none - \retval none -*/ -void ctc_counter_reload_value_config(uint16_t reload_value) -{ - CTC_CTL1 &= (uint32_t)(~CTC_CTL1_RLVALUE); - CTC_CTL1 |= (uint32_t)reload_value; -} - -/*! - \brief read CTC counter capture value when reference sync pulse occurred - \param[in] none - \param[out] none - \retval the 16-bit CTC counter capture value -*/ -uint16_t ctc_counter_capture_value_read(void) -{ - uint16_t capture_value = 0U; - capture_value = (uint16_t)((CTC_STAT & CTC_STAT_REFCAP)>> CTC_REFCAP_OFFSET); - return (capture_value); -} - -/*! - \brief read CTC trim counter direction when reference sync pulse occurred - \param[in] none - \param[out] none - \retval FlagStatus: SET or RESET - \arg SET: CTC trim counter direction is down-counting - \arg RESET: CTC trim counter direction is up-counting -*/ -FlagStatus ctc_counter_direction_read(void) -{ - if(RESET != (CTC_STAT & CTC_STAT_REFDIR)){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief read CTC counter reload value - \param[in] none - \param[out] none - \retval the 16-bit CTC counter reload value -*/ -uint16_t ctc_counter_reload_value_read(void) -{ - uint16_t reload_value = 0U; - reload_value = (uint16_t)(CTC_CTL1 & CTC_CTL1_RLVALUE); - return (reload_value); -} - -/*! - \brief read the IRC48M trim value - \param[in] none - \param[out] none - \retval the 8-bit IRC48M trim value -*/ -uint8_t ctc_irc48m_trim_value_read(void) -{ - uint8_t trim_value = 0U; - trim_value = (uint8_t)((CTC_CTL0 & CTC_CTL0_TRIMVALUE) >> CTC_TRIMVALUE_OFFSET); - return (trim_value); -} - -/*! - \brief enable the CTC interrupt - \param[in] interrupt: CTC interrupt enable - one or more parameters can be selected which are shown as below: - \arg CTC_INT_CKOK: clock trim OK interrupt enable - \arg CTC_INT_CKWARN: clock trim warning interrupt enable - \arg CTC_INT_ERR: error interrupt enable - \arg CTC_INT_EREF: expect reference interrupt enable - \param[out] none - \retval none -*/ -void ctc_interrupt_enable(uint32_t interrupt) -{ - CTC_CTL0 |= (uint32_t)interrupt; -} - -/*! - \brief disable the CTC interrupt - \param[in] interrupt: CTC interrupt enable source - one or more parameters can be selected which are shown as below: - \arg CTC_INT_CKOK: clock trim OK interrupt enable - \arg CTC_INT_CKWARN: clock trim warning interrupt enable - \arg CTC_INT_ERR: error interrupt enable - \arg CTC_INT_EREF: expect reference interrupt enable - \param[out] none - \retval none -*/ -void ctc_interrupt_disable(uint32_t interrupt) -{ - CTC_CTL0 &= (uint32_t)(~interrupt); -} - -/*! - \brief get CTC interrupt flag - \param[in] int_flag: the CTC interrupt flag - only one parameter can be selected which is shown as below: - \arg CTC_INT_FLAG_CKOK: clock trim OK interrupt - \arg CTC_INT_FLAG_CKWARN: clock trim warning interrupt - \arg CTC_INT_FLAG_ERR: error interrupt - \arg CTC_INT_FLAG_EREF: expect reference interrupt - \arg CTC_INT_FLAG_CKERR: clock trim error bit interrupt - \arg CTC_INT_FLAG_REFMISS: reference sync pulse miss interrupt - \arg CTC_INT_FLAG_TRIMERR: trim value error interrupt - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus ctc_interrupt_flag_get(uint32_t int_flag) -{ - uint32_t interrupt_flag = 0U, intenable = 0U; - - /* check whether the interrupt is enabled */ - if(RESET != (int_flag & CTC_FLAG_MASK)){ - intenable = CTC_CTL0 & CTC_CTL0_ERRIE; - }else{ - intenable = CTC_CTL0 & int_flag; - } - - /* get interrupt flag status */ - interrupt_flag = CTC_STAT & int_flag; - - if(interrupt_flag && intenable){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear CTC interrupt flag - \param[in] int_flag: the CTC interrupt flag - only one parameter can be selected which is shown as below: - \arg CTC_INT_FLAG_CKOK: clock trim OK interrupt - \arg CTC_INT_FLAG_CKWARN: clock trim warning interrupt - \arg CTC_INT_FLAG_ERR: error interrupt - \arg CTC_INT_FLAG_EREF: expect reference interrupt - \arg CTC_INT_FLAG_CKERR: clock trim error bit interrupt - \arg CTC_INT_FLAG_REFMISS: reference sync pulse miss interrupt - \arg CTC_INT_FLAG_TRIMERR: trim value error interrupt - \param[out] none - \retval none -*/ -void ctc_interrupt_flag_clear(uint32_t int_flag) -{ - if(RESET != (int_flag & CTC_FLAG_MASK)){ - CTC_INTC |= CTC_INTC_ERRIC; - }else{ - CTC_INTC |= int_flag; - } -} - -/*! - \brief get CTC flag - \param[in] flag: the CTC flag - only one parameter can be selected which is shown as below: - \arg CTC_FLAG_CKOK: clock trim OK flag - \arg CTC_FLAG_CKWARN: clock trim warning flag - \arg CTC_FLAG_ERR: error flag - \arg CTC_FLAG_EREF: expect reference flag - \arg CTC_FLAG_CKERR: clock trim error bit - \arg CTC_FLAG_REFMISS: reference sync pulse miss - \arg CTC_FLAG_TRIMERR: trim value error bit - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus ctc_flag_get(uint32_t flag) -{ - if(RESET != (CTC_STAT & flag)){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear CTC flag - \param[in] flag: the CTC flag - only one parameter can be selected which is shown as below: - \arg CTC_FLAG_CKOK: clock trim OK flag - \arg CTC_FLAG_CKWARN: clock trim warning flag - \arg CTC_FLAG_ERR: error flag - \arg CTC_FLAG_EREF: expect reference flag - \arg CTC_FLAG_CKERR: clock trim error bit - \arg CTC_FLAG_REFMISS: reference sync pulse miss - \arg CTC_FLAG_TRIMERR: trim value error bit - \param[out] none - \retval none -*/ -void ctc_flag_clear(uint32_t flag) -{ - if(RESET != (flag & CTC_FLAG_MASK)){ - CTC_INTC |= CTC_INTC_ERRIC; - }else{ - CTC_INTC |= flag; - } -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dac.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dac.c deleted file mode 100644 index 5549cbf9c8..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dac.c +++ /dev/null @@ -1,677 +0,0 @@ -/*! - \file gd32f4xx_dac.c - \brief DAC driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_dac.h" - -/* DAC register bit offset */ -#define DAC1_REG_OFFSET ((uint32_t)16U) -#define DH_12BIT_OFFSET ((uint32_t)16U) -#define DH_8BIT_OFFSET ((uint32_t)8U) - -/*! - \brief deinitialize DAC - \param[in] none - \param[out] none - \retval none -*/ -void dac_deinit(void) -{ - rcu_periph_reset_enable(RCU_DACRST); - rcu_periph_reset_disable(RCU_DACRST); -} - -/*! - \brief enable DAC - \param[in] dac_periph: DACx(x = 0,1) - \param[out] none - \retval none -*/ -void dac_enable(uint32_t dac_periph) -{ - if(DAC0 == dac_periph){ - DAC_CTL |= DAC_CTL_DEN0; - }else{ - DAC_CTL |= DAC_CTL_DEN1; - } -} - -/*! - \brief disable DAC - \param[in] dac_periph: DACx(x = 0,1) - \param[out] none - \retval none -*/ -void dac_disable(uint32_t dac_periph) -{ - if(DAC0 == dac_periph){ - DAC_CTL &= ~DAC_CTL_DEN0; - }else{ - DAC_CTL &= ~DAC_CTL_DEN1; - } -} - -/*! - \brief enable DAC DMA function - \param[in] dac_periph: DACx(x = 0,1) - \param[out] none - \retval none -*/ -void dac_dma_enable(uint32_t dac_periph) -{ - if(DAC0 == dac_periph){ - DAC_CTL |= DAC_CTL_DDMAEN0; - }else{ - DAC_CTL |= DAC_CTL_DDMAEN1; - } -} - -/*! - \brief disable DAC DMA function - \param[in] dac_periph: DACx(x = 0,1) - \param[out] none - \retval none -*/ -void dac_dma_disable(uint32_t dac_periph) -{ - if(DAC0 == dac_periph){ - DAC_CTL &= ~DAC_CTL_DDMAEN0; - }else{ - DAC_CTL &= ~DAC_CTL_DDMAEN1; - } -} - -/*! - \brief enable DAC output buffer - \param[in] dac_periph: DACx(x = 0,1) - \param[out] none - \retval none -*/ -void dac_output_buffer_enable(uint32_t dac_periph) -{ - if(DAC0 == dac_periph){ - DAC_CTL &= ~DAC_CTL_DBOFF0; - }else{ - DAC_CTL &= ~DAC_CTL_DBOFF1; - } -} - -/*! - \brief disable DAC output buffer - \param[in] dac_periph: DACx(x = 0,1) - \param[out] none - \retval none -*/ -void dac_output_buffer_disable(uint32_t dac_periph) -{ - if(DAC0 == dac_periph){ - DAC_CTL |= DAC_CTL_DBOFF0; - }else{ - DAC_CTL |= DAC_CTL_DBOFF1; - } -} - -/*! - \brief get DAC output value - \param[in] dac_periph: DACx(x = 0,1) - \param[out] none - \retval DAC output data -*/ -uint16_t dac_output_value_get(uint32_t dac_periph) -{ - uint16_t data = 0U; - if(DAC0 == dac_periph){ - /* store the DAC0 output value */ - data = (uint16_t)DAC0_DO; - }else{ - /* store the DAC1 output value */ - data = (uint16_t)DAC1_DO; - } - return data; -} - -/*! - \brief set the DAC specified data holding register value - \param[in] dac_periph: DACx(x = 0,1) - \param[in] dac_align: data alignment - only one parameter can be selected which is shown as below: - \arg DAC_ALIGN_8B_R: data right 8 bit alignment - \arg DAC_ALIGN_12B_R: data right 12 bit alignment - \arg DAC_ALIGN_12B_L: data left 12 bit alignment - \param[in] data: data to be loaded - \param[out] none - \retval none -*/ -void dac_data_set(uint32_t dac_periph, uint32_t dac_align, uint16_t data) -{ - if(DAC0 == dac_periph){ - switch(dac_align){ - /* data right 12 bit alignment */ - case DAC_ALIGN_12B_R: - DAC0_R12DH = data; - break; - /* data left 12 bit alignment */ - case DAC_ALIGN_12B_L: - DAC0_L12DH = data; - break; - /* data right 8 bit alignment */ - case DAC_ALIGN_8B_R: - DAC0_R8DH = data; - break; - default: - break; - } - }else{ - switch(dac_align){ - /* data right 12 bit alignment */ - case DAC_ALIGN_12B_R: - DAC1_R12DH = data; - break; - /* data left 12 bit alignment */ - case DAC_ALIGN_12B_L: - DAC1_L12DH = data; - break; - /* data right 8 bit alignment */ - case DAC_ALIGN_8B_R: - DAC1_R8DH = data; - break; - default: - break; - } - } -} - -/*! - \brief enable DAC trigger - \param[in] dac_periph: DACx(x = 0,1) - \param[out] none - \retval none -*/ -void dac_trigger_enable(uint32_t dac_periph) -{ - if(DAC0 == dac_periph){ - DAC_CTL |= DAC_CTL_DTEN0; - }else{ - DAC_CTL |= DAC_CTL_DTEN1; - } -} - -/*! - \brief disable DAC trigger - \param[in] dac_periph: DACx(x = 0,1) - \param[out] none - \retval none -*/ -void dac_trigger_disable(uint32_t dac_periph) -{ - if(DAC0 == dac_periph){ - DAC_CTL &= ~DAC_CTL_DTEN0; - }else{ - DAC_CTL &= ~DAC_CTL_DTEN1; - } -} - -/*! - \brief set DAC trigger source - \param[in] dac_periph: DACx(x = 0,1) - \param[in] triggersource: external triggers of DAC - only one parameter can be selected which is shown as below: - \arg DAC_TRIGGER_T1_TRGO: TIMER1 TRGO - \arg DAC_TRIGGER_T3_TRGO: TIMER3 TRGO - \arg DAC_TRIGGER_T4_TRGO: TIMER4 TRGO - \arg DAC_TRIGGER_T5_TRGO: TIMER5 TRGO - \arg DAC_TRIGGER_T6_TRGO: TIMER6 TRGO - \arg DAC_TRIGGER_T7_TRGO: TIMER7 TRGO - \arg DAC_TRIGGER_EXTI_9: EXTI interrupt line9 event - \arg DAC_TRIGGER_SOFTWARE: software trigger - \param[out] none - \retval none -*/ -void dac_trigger_source_config(uint32_t dac_periph,uint32_t triggersource) -{ - if(DAC0 == dac_periph){ - /* configure DAC0 trigger source */ - DAC_CTL &= ~DAC_CTL_DTSEL0; - DAC_CTL |= triggersource; - }else{ - /* configure DAC1 trigger source */ - DAC_CTL &= ~DAC_CTL_DTSEL1; - DAC_CTL |= (triggersource << DAC1_REG_OFFSET); - } -} - -/*! - \brief enable DAC software trigger - \param[in] dac_periph: DACx(x = 0,1) - \retval none -*/ -void dac_software_trigger_enable(uint32_t dac_periph) -{ - if(DAC0 == dac_periph){ - DAC_SWT |= DAC_SWT_SWTR0; - }else{ - DAC_SWT |= DAC_SWT_SWTR1; - } -} - -/*! - \brief disable DAC software trigger - \param[in] dac_periph: DACx(x = 0,1) - \param[out] none - \retval none -*/ -void dac_software_trigger_disable(uint32_t dac_periph) -{ - if(DAC0 == dac_periph){ - DAC_SWT &= ~DAC_SWT_SWTR0; - }else{ - DAC_SWT &= ~DAC_SWT_SWTR1; - } -} - -/*! - \brief configure DAC wave mode - \param[in] dac_periph: DACx(x = 0,1) - \param[in] wave_mode: noise wave mode - only one parameter can be selected which is shown as below: - \arg DAC_WAVE_DISABLE: wave disable - \arg DAC_WAVE_MODE_LFSR: LFSR noise mode - \arg DAC_WAVE_MODE_TRIANGLE: triangle noise mode - \param[out] none - \retval none -*/ -void dac_wave_mode_config(uint32_t dac_periph, uint32_t wave_mode) -{ - if(DAC0 == dac_periph){ - /* configure DAC0 wave mode */ - DAC_CTL &= ~DAC_CTL_DWM0; - DAC_CTL |= wave_mode; - }else{ - /* configure DAC1 wave mode */ - DAC_CTL &= ~DAC_CTL_DWM1; - DAC_CTL |= (wave_mode << DAC1_REG_OFFSET); - } -} - -/*! - \brief configure DAC wave bit width - \param[in] dac_periph: DACx(x = 0,1) - \param[in] bit_width: noise wave bit width - only one parameter can be selected which is shown as below: - \arg DAC_WAVE_BIT_WIDTH_1: bit width of the wave signal is 1 - \arg DAC_WAVE_BIT_WIDTH_2: bit width of the wave signal is 2 - \arg DAC_WAVE_BIT_WIDTH_3: bit width of the wave signal is 3 - \arg DAC_WAVE_BIT_WIDTH_4: bit width of the wave signal is 4 - \arg DAC_WAVE_BIT_WIDTH_5: bit width of the wave signal is 5 - \arg DAC_WAVE_BIT_WIDTH_6: bit width of the wave signal is 6 - \arg DAC_WAVE_BIT_WIDTH_7: bit width of the wave signal is 7 - \arg DAC_WAVE_BIT_WIDTH_8: bit width of the wave signal is 8 - \arg DAC_WAVE_BIT_WIDTH_9: bit width of the wave signal is 9 - \arg DAC_WAVE_BIT_WIDTH_10: bit width of the wave signal is 10 - \arg DAC_WAVE_BIT_WIDTH_11: bit width of the wave signal is 11 - \arg DAC_WAVE_BIT_WIDTH_12: bit width of the wave signal is 12 - \param[out] none - \retval none -*/ -void dac_wave_bit_width_config(uint32_t dac_periph, uint32_t bit_width) -{ - if(DAC0 == dac_periph){ - /* configure DAC0 wave bit width */ - DAC_CTL &= ~DAC_CTL_DWBW0; - DAC_CTL |= bit_width; - }else{ - /* configure DAC1 wave bit width */ - DAC_CTL &= ~DAC_CTL_DWBW1; - DAC_CTL |= (bit_width << DAC1_REG_OFFSET); - } -} - -/*! - \brief configure DAC LFSR noise mode - \param[in] dac_periph: DACx(x = 0,1) - \param[in] unmask_bits: unmask LFSR bits in DAC LFSR noise mode - only one parameter can be selected which is shown as below: - \arg DAC_LFSR_BIT0: unmask the LFSR bit0 - \arg DAC_LFSR_BITS1_0: unmask the LFSR bits[1:0] - \arg DAC_LFSR_BITS2_0: unmask the LFSR bits[2:0] - \arg DAC_LFSR_BITS3_0: unmask the LFSR bits[3:0] - \arg DAC_LFSR_BITS4_0: unmask the LFSR bits[4:0] - \arg DAC_LFSR_BITS5_0: unmask the LFSR bits[5:0] - \arg DAC_LFSR_BITS6_0: unmask the LFSR bits[6:0] - \arg DAC_LFSR_BITS7_0: unmask the LFSR bits[7:0] - \arg DAC_LFSR_BITS8_0: unmask the LFSR bits[8:0] - \arg DAC_LFSR_BITS9_0: unmask the LFSR bits[9:0] - \arg DAC_LFSR_BITS10_0: unmask the LFSR bits[10:0] - \arg DAC_LFSR_BITS11_0: unmask the LFSR bits[11:0] - \param[out] none - \retval none -*/ -void dac_lfsr_noise_config(uint32_t dac_periph, uint32_t unmask_bits) -{ - if(DAC0 == dac_periph){ - /* configure DAC0 LFSR noise mode */ - DAC_CTL &= ~DAC_CTL_DWBW0; - DAC_CTL |= unmask_bits; - }else{ - /* configure DAC1 LFSR noise mode */ - DAC_CTL &= ~DAC_CTL_DWBW1; - DAC_CTL |= (unmask_bits << DAC1_REG_OFFSET); - } -} - -/*! - \brief configure DAC triangle noise mode - \param[in] dac_periph: DACx(x = 0,1) - \param[in] amplitude: triangle amplitude in DAC triangle noise mode - only one parameter can be selected which is shown as below: - \arg DAC_TRIANGLE_AMPLITUDE_1: triangle amplitude is 1 - \arg DAC_TRIANGLE_AMPLITUDE_3: triangle amplitude is 3 - \arg DAC_TRIANGLE_AMPLITUDE_7: triangle amplitude is 7 - \arg DAC_TRIANGLE_AMPLITUDE_15: triangle amplitude is 15 - \arg DAC_TRIANGLE_AMPLITUDE_31: triangle amplitude is 31 - \arg DAC_TRIANGLE_AMPLITUDE_63: triangle amplitude is 63 - \arg DAC_TRIANGLE_AMPLITUDE_127: triangle amplitude is 127 - \arg DAC_TRIANGLE_AMPLITUDE_255: triangle amplitude is 255 - \arg DAC_TRIANGLE_AMPLITUDE_511: triangle amplitude is 511 - \arg DAC_TRIANGLE_AMPLITUDE_1023: triangle amplitude is 1023 - \arg DAC_TRIANGLE_AMPLITUDE_2047: triangle amplitude is 2047 - \arg DAC_TRIANGLE_AMPLITUDE_4095: triangle amplitude is 4095 - \param[out] none - \retval none -*/ -void dac_triangle_noise_config(uint32_t dac_periph, uint32_t amplitude) -{ - if(DAC0 == dac_periph){ - /* configure DAC0 triangle noise mode */ - DAC_CTL &= ~DAC_CTL_DWBW0; - DAC_CTL |= amplitude; - }else{ - /* configure DAC1 triangle noise mode */ - DAC_CTL &= ~DAC_CTL_DWBW1; - DAC_CTL |= (amplitude << DAC1_REG_OFFSET); - } -} - -/*! - \brief enable DAC concurrent mode - \param[in] none - \param[out] none - \retval none -*/ -void dac_concurrent_enable(void) -{ - uint32_t ctl = 0U; - ctl = DAC_CTL_DEN0 | DAC_CTL_DEN1; - DAC_CTL |= (ctl); -} - -/*! - \brief disable DAC concurrent mode - \param[in] none - \param[out] none - \retval none -*/ -void dac_concurrent_disable(void) -{ - uint32_t ctl = 0U; - ctl = DAC_CTL_DEN0 | DAC_CTL_DEN1; - DAC_CTL &= (~ctl); -} - -/*! - \brief enable DAC concurrent software trigger function - \param[in] none - \param[out] none - \retval none -*/ -void dac_concurrent_software_trigger_enable(void) -{ - uint32_t swt = 0U; - swt = DAC_SWT_SWTR0 | DAC_SWT_SWTR1; - DAC_SWT |= (swt); -} - -/*! - \brief disable DAC concurrent software trigger function - \param[in] none - \param[out] none - \retval none -*/ -void dac_concurrent_software_trigger_disable(void) -{ - uint32_t swt = 0U; - swt = DAC_SWT_SWTR0 | DAC_SWT_SWTR1; - DAC_SWT &= (~swt); -} - -/*! - \brief enable DAC concurrent buffer function - \param[in] none - \param[out] none - \retval none -*/ -void dac_concurrent_output_buffer_enable(void) -{ - uint32_t ctl = 0U; - ctl = DAC_CTL_DBOFF0 | DAC_CTL_DBOFF1; - DAC_CTL &= (~ctl); -} - -/*! - \brief disable DAC concurrent buffer function - \param[in] none - \param[out] none - \retval none -*/ -void dac_concurrent_output_buffer_disable(void) -{ - uint32_t ctl = 0U; - ctl = DAC_CTL_DBOFF0 | DAC_CTL_DBOFF1; - DAC_CTL |= (ctl); -} - -/*! - \brief set DAC concurrent mode data holding register value - \param[in] dac_align: data alignment - only one parameter can be selected which is shown as below: - \arg DAC_ALIGN_8B_R: data right 8b alignment - \arg DAC_ALIGN_12B_R: data right 12b alignment - \arg DAC_ALIGN_12B_L: data left 12b alignment - \param[in] data0: data to be loaded - \param[in] data1: data to be loaded - \param[out] none - \retval none -*/ -void dac_concurrent_data_set(uint32_t dac_align, uint16_t data0, uint16_t data1) -{ - uint32_t data = 0U; - switch(dac_align){ - /* data right 12b alignment */ - case DAC_ALIGN_12B_R: - data = ((uint32_t)data1 << DH_12BIT_OFFSET) | data0; - DACC_R12DH = data; - break; - /* data left 12b alignment */ - case DAC_ALIGN_12B_L: - data = ((uint32_t)data1 << DH_12BIT_OFFSET) | data0; - DACC_L12DH = data; - break; - /* data right 8b alignment */ - case DAC_ALIGN_8B_R: - data = ((uint32_t)data1 << DH_8BIT_OFFSET) | data0; - DACC_R8DH = data; - break; - default: - break; - } -} - -/*! - \brief enable DAC concurrent interrupt funcution - \param[in] none - \param[out] none - \retval none -*/ -void dac_concurrent_interrupt_enable(void) -{ - uint32_t ctl = 0U; - ctl = DAC_CTL_DDUDRIE0 | DAC_CTL_DDUDRIE1; - DAC_CTL |= (ctl); -} - -/*! - \brief disable DAC concurrent interrupt funcution - \param[in] none - \param[out] none - \retval none -*/ -void dac_concurrent_interrupt_disable(void) -{ - uint32_t ctl = 0U; - ctl = DAC_CTL_DDUDRIE0 | DAC_CTL_DDUDRIE1; - DAC_CTL &= (~ctl); -} - -/*! - \brief enable DAC interrupt(DAC DMA underrun interrupt) - \param[in] dac_periph: DACx(x = 0,1) - \param[out] none - \retval none -*/ -void dac_interrupt_enable(uint32_t dac_periph) -{ - if(DAC0 == dac_periph){ - DAC_CTL |= DAC_CTL_DDUDRIE0; - }else{ - DAC_CTL |= DAC_CTL_DDUDRIE1; - } -} - -/*! - \brief disable DAC interrupt(DAC DMA underrun interrupt) - \param[in] dac_periph: DACx(x = 0,1) - \param[out] none - \retval none -*/ -void dac_interrupt_disable(uint32_t dac_periph) -{ - if(DAC0 == dac_periph){ - DAC_CTL &= ~DAC_CTL_DDUDRIE0; - }else{ - DAC_CTL &= ~DAC_CTL_DDUDRIE1; - } -} - -/*! - \brief get the specified DAC flag (DAC DMA underrun flag) - \param[in] dac_periph: DACx(x = 0,1) - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus dac_flag_get(uint32_t dac_periph) -{ - FlagStatus temp_flag = RESET; - if(DAC0 == dac_periph){ - /* check the DMA underrun flag */ - if(RESET != (DAC_STAT & DAC_STAT_DDUDR0)){ - temp_flag = SET; - } - }else{ - /* check the DMA underrun flag */ - if(RESET != (DAC_STAT & DAC_STAT_DDUDR1)){ - temp_flag = SET; - } - } - return temp_flag; -} - -/*! - \brief clear the specified DAC flag (DAC DMA underrun flag) - \param[in] dac_periph: DACx(x = 0,1) - \param[out] none - \retval none -*/ -void dac_flag_clear(uint32_t dac_periph) -{ - if(DAC0 == dac_periph){ - DAC_STAT |= DAC_STAT_DDUDR0; - }else{ - DAC_STAT |= DAC_STAT_DDUDR1; - } -} - -/*! - \brief get the specified DAC interrupt flag (DAC DMA underrun interrupt flag) - \param[in] dac_periph: DACx(x = 0,1) - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus dac_interrupt_flag_get(uint32_t dac_periph) -{ - FlagStatus temp_flag = RESET; - uint32_t ddudr_flag = 0U, ddudrie_flag = 0U; - - if(DAC0 == dac_periph){ - /* check the DMA underrun flag and DAC DMA underrun interrupt enable flag */ - ddudr_flag = DAC_STAT & DAC_STAT_DDUDR0; - ddudrie_flag = DAC_CTL & DAC_CTL_DDUDRIE0; - if((RESET != ddudr_flag) && (RESET != ddudrie_flag)){ - temp_flag = SET; - } - }else{ - /* check the DMA underrun flag and DAC DMA underrun interrupt enable flag */ - ddudr_flag = DAC_STAT & DAC_STAT_DDUDR1; - ddudrie_flag = DAC_CTL & DAC_CTL_DDUDRIE1; - if((RESET != ddudr_flag) && (RESET != ddudrie_flag)){ - temp_flag = SET; - } - } - return temp_flag; -} - -/*! - \brief clear the specified DAC interrupt flag (DAC DMA underrun interrupt flag) - \param[in] dac_periph: DACx(x = 0,1) - \param[out] none - \retval none -*/ -void dac_interrupt_flag_clear(uint32_t dac_periph) -{ - if(DAC0 == dac_periph){ - DAC_STAT |= DAC_STAT_DDUDR0; - }else{ - DAC_STAT |= DAC_STAT_DDUDR1; - } -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dbg.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dbg.c deleted file mode 100644 index e74c668501..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dbg.c +++ /dev/null @@ -1,198 +0,0 @@ -/*! - \file gd32f4xx_dbg.c - \brief DBG driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_dbg.h" - -#define DBG_RESET_VAL 0x00000000U - -/*! - \brief deinitialize the DBG - \param[in] none - \param[out] none - \retval none -*/ -void dbg_deinit(void) -{ - DBG_CTL0 = DBG_RESET_VAL; - DBG_CTL1 = DBG_RESET_VAL; -} - -/*! - \brief read DBG_ID code register - \param[in] none - \param[out] none - \retval DBG_ID code -*/ -uint32_t dbg_id_get(void) -{ - return DBG_ID; -} - -/*! - \brief enable low power behavior when the mcu is in debug mode - \param[in] dbg_low_power: - this parameter can be any combination of the following values: - \arg DBG_LOW_POWER_SLEEP: keep debugger connection during sleep mode - \arg DBG_LOW_POWER_DEEPSLEEP: keep debugger connection during deepsleep mode - \arg DBG_LOW_POWER_STANDBY: keep debugger connection during standby mode - \param[out] none - \retval none -*/ -void dbg_low_power_enable(uint32_t dbg_low_power) -{ - DBG_CTL0 |= dbg_low_power; -} - -/*! - \brief disable low power behavior when the mcu is in debug mode - \param[in] dbg_low_power: - this parameter can be any combination of the following values: - \arg DBG_LOW_POWER_SLEEP: donot keep debugger connection during sleep mode - \arg DBG_LOW_POWER_DEEPSLEEP: donot keep debugger connection during deepsleep mode - \arg DBG_LOW_POWER_STANDBY: donot keep debugger connection during standby mode - \param[out] none - \retval none -*/ -void dbg_low_power_disable(uint32_t dbg_low_power) -{ - DBG_CTL0 &= ~dbg_low_power; -} - -/*! - \brief enable peripheral behavior when the mcu is in debug mode - \param[in] dbg_periph: dbg_periph_enum - only one parameter can be selected which is shown as below: - \arg DBG_TIMER1_HOLD: hold TIMER1 counter when core is halted - \arg DBG_TIMER2_HOLD: hold TIMER2 counter when core is halted - \arg DBG_TIMER3_HOLD: hold TIMER3 counter when core is halted - \arg DBG_TIMER4_HOLD: hold TIMER4 counter when core is halted - \arg DBG_TIMER5_HOLD: hold TIMER5 counter when core is halted - \arg DBG_TIMER6_HOLD: hold TIMER6 counter when core is halted - \arg DBG_TIMER11_HOLD: hold TIMER11 counter when core is halted - \arg DBG_TIMER12_HOLD: hold TIMER12 counter when core is halted - \arg DBG_TIMER13_HOLD: hold TIMER13 counter when core is halted - \arg DBG_RTC_HOLD: hold RTC calendar and wakeup counter when core is halted - \arg DBG_WWDGT_HOLD: debug WWDGT kept when core is halted - \arg DBG_FWDGT_HOLD: debug FWDGT kept when core is halted - \arg DBG_I2C0_HOLD: hold I2C0 smbus when core is halted - \arg DBG_I2C1_HOLD: hold I2C1 smbus when core is halted - \arg DBG_I2C2_HOLD: hold I2C2 smbus when core is halted - \arg DBG_CAN0_HOLD: debug CAN0 kept when core is halted - \arg DBG_CAN1_HOLD: debug CAN1 kept when core is halted - \arg DBG_TIMER0_HOLD: hold TIMER0 counter when core is halted - \arg DBG_TIMER7_HOLD: hold TIMER7 counter when core is halted - \arg DBG_TIMER8_HOLD: hold TIMER8 counter when core is halted - \arg DBG_TIMER9_HOLD: hold TIMER9 counter when core is halted - \arg DBG_TIMER10_HOLD: hold TIMER10 counter when core is halted - \arg \param[out] none - \retval none -*/ -void dbg_periph_enable(dbg_periph_enum dbg_periph) -{ - DBG_REG_VAL(dbg_periph) |= BIT(DBG_BIT_POS(dbg_periph)); -} - -/*! - \brief disable peripheral behavior when the mcu is in debug mode - \param[in] dbg_periph: dbg_periph_enum - only one parameter can be selected which is shown as below: - \arg DBG_TIMER1_HOLD: hold TIMER1 counter when core is halted - \arg DBG_TIMER2_HOLD: hold TIMER2 counter when core is halted - \arg DBG_TIMER3_HOLD: hold TIMER3 counter when core is halted - \arg DBG_TIMER4_HOLD: hold TIMER4 counter when core is halted - \arg DBG_TIMER5_HOLD: hold TIMER5 counter when core is halted - \arg DBG_TIMER6_HOLD: hold TIMER6 counter when core is halted - \arg DBG_TIMER11_HOLD: hold TIMER11 counter when core is halted - \arg DBG_TIMER12_HOLD: hold TIMER12 counter when core is halted - \arg DBG_TIMER13_HOLD: hold TIMER13 counter when core is halted - \arg DBG_RTC_HOLD: hold RTC calendar and wakeup counter when core is halted - \arg DBG_WWDGT_HOLD: debug WWDGT kept when core is halted - \arg DBG_FWDGT_HOLD: debug FWDGT kept when core is halted - \arg DBG_I2C0_HOLD: hold I2C0 smbus when core is halted - \arg DBG_I2C1_HOLD: hold I2C1 smbus when core is halted - \arg DBG_I2C2_HOLD: hold I2C2 smbus when core is halted - \arg DBG_CAN0_HOLD: debug CAN0 kept when core is halted - \arg DBG_CAN1_HOLD: debug CAN1 kept when core is halted - \arg DBG_TIMER0_HOLD: hold TIMER0 counter when core is halted - \arg DBG_TIMER7_HOLD: hold TIMER7 counter when core is halted - \arg DBG_TIMER8_HOLD: hold TIMER8 counter when core is halted - \arg DBG_TIMER9_HOLD: hold TIMER9 counter when core is halted - \arg DBG_TIMER10_HOLD: hold TIMER10 counter when core is halted - \param[out] none - \retval none -*/ -void dbg_periph_disable(dbg_periph_enum dbg_periph) -{ - DBG_REG_VAL(dbg_periph) &= ~BIT(DBG_BIT_POS(dbg_periph)); -} - -/*! - \brief enable trace pin assignment - \param[in] none - \param[out] none - \retval none -*/ -void dbg_trace_pin_enable(void) -{ - DBG_CTL0 |= DBG_CTL0_TRACE_IOEN; -} - -/*! - \brief disable trace pin assignment - \param[in] none - \param[out] none - \retval none -*/ -void dbg_trace_pin_disable(void) -{ - DBG_CTL0 &= ~DBG_CTL0_TRACE_IOEN; -} - -/*! - \brief trace pin mode selection - \param[in] trace_mode: - \arg TRACE_MODE_ASYNC: trace pin used for async mode - \arg TRACE_MODE_SYNC_DATASIZE_1: trace pin used for sync mode and data size is 1 - \arg TRACE_MODE_SYNC_DATASIZE_2: trace pin used for sync mode and data size is 2 - \arg TRACE_MODE_SYNC_DATASIZE_4: trace pin used for sync mode and data size is 4 - \param[out] none - \retval none -*/ -void dbg_trace_pin_mode_set(uint32_t trace_mode) -{ - DBG_CTL0 &= ~DBG_CTL0_TRACE_MODE; - DBG_CTL0 |= trace_mode; -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dci.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dci.c deleted file mode 100644 index 586c825718..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dci.c +++ /dev/null @@ -1,345 +0,0 @@ -/*! - \file gd32f4xx_dci.c - \brief DCI driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_dci.h" - -/*! - \brief DCI deinit - \param[in] none - \param[out] none - \retval none -*/ -void dci_deinit(void) -{ - rcu_periph_reset_enable(RCU_DCIRST); - rcu_periph_reset_disable(RCU_DCIRST); -} - -/*! - \brief initialize DCI registers - \param[in] dci_struct: DCI parameter initialization structure - members of the structure and the member values are shown as below: - capture_mode : DCI_CAPTURE_MODE_CONTINUOUS, DCI_CAPTURE_MODE_SNAPSHOT - colck_polarity : DCI_CK_POLARITY_FALLING, DCI_CK_POLARITY_RISING - hsync_polarity : DCI_HSYNC_POLARITY_LOW, DCI_HSYNC_POLARITY_HIGH - vsync_polarity : DCI_VSYNC_POLARITY_LOW, DCI_VSYNC_POLARITY_HIGH - frame_rate : DCI_FRAME_RATE_ALL, DCI_FRAME_RATE_1_2, DCI_FRAME_RATE_1_4 - interface_format: DCI_INTERFACE_FORMAT_8BITS, DCI_INTERFACE_FORMAT_10BITS, - DCI_INTERFACE_FORMAT_12BITS, DCI_INTERFACE_FORMAT_14BITS - \param[out] none - \retval none -*/ -void dci_init(dci_parameter_struct* dci_struct) -{ - uint32_t reg = 0U; - /* disable capture function and DCI */ - DCI_CTL &= ~(DCI_CTL_CAP | DCI_CTL_DCIEN); - /* configure DCI parameter */ - reg |= dci_struct->capture_mode; - reg |= dci_struct->clock_polarity; - reg |= dci_struct->hsync_polarity; - reg |= dci_struct->vsync_polarity; - reg |= dci_struct->frame_rate; - reg |= dci_struct->interface_format; - - DCI_CTL = reg; -} - -/*! - \brief enable DCI function - \param[in] none - \param[out] none - \retval none -*/ -void dci_enable(void) -{ - DCI_CTL |= DCI_CTL_DCIEN; -} - -/*! - \brief disable DCI function - \param[in] none - \param[out] none - \retval none -*/ -void dci_disable(void) -{ - DCI_CTL &= ~DCI_CTL_DCIEN; -} - -/*! - \brief enable DCI capture - \param[in] none - \param[out] none - \retval none -*/ -void dci_capture_enable(void) -{ - DCI_CTL |= DCI_CTL_CAP; -} - -/*! - \brief disable DCI capture - \param[in] none - \param[out] none - \retval none -*/ -void dci_capture_disable(void) -{ - DCI_CTL &= ~DCI_CTL_CAP; -} - -/*! - \brief enable DCI jpeg mode - \param[in] none - \param[out] none - \retval none -*/ -void dci_jpeg_enable(void) -{ - DCI_CTL |= DCI_CTL_JM; -} - -/*! - \brief disable DCI jpeg mode - \param[in] none - \param[out] none - \retval none -*/ -void dci_jpeg_disable(void) -{ - DCI_CTL &= ~DCI_CTL_JM; -} - -/*! - \brief enable cropping window function - \param[in] none - \param[out] none - \retval none -*/ -void dci_crop_window_enable(void) -{ - DCI_CTL |= DCI_CTL_WDEN; -} - -/*! - \brief disable cropping window function - \param[in] none - \param[out] none - \retval none -*/ -void dci_crop_window_disable(void) -{ - DCI_CTL &= ~DCI_CTL_WDEN; -} - -/*! - \brief configure DCI cropping window - \param[in] start_x: window horizontal start position - \param[in] start_y: window vertical start position - \param[in] size_width: window horizontal size - \param[in] size_height: window vertical size - \param[out] none - \retval none -*/ -void dci_crop_window_config(uint16_t start_x, uint16_t start_y, uint16_t size_width, uint16_t size_height) -{ - DCI_CWSPOS = ((uint32_t)start_x | ((uint32_t)start_y<<16)); - DCI_CWSZ = ((uint32_t)size_width | ((uint32_t)size_height<<16)); -} - -/*! - \brief enable embedded synchronous mode - \param[in] none - \param[out] none - \retval none -*/ -void dci_embedded_sync_enable(void) -{ - DCI_CTL |= DCI_CTL_ESM; -} - -/*! - \brief disble embedded synchronous mode - \param[in] none - \param[out] none - \retval none -*/ -void dci_embedded_sync_disable(void) -{ - DCI_CTL &= ~DCI_CTL_ESM; -} -/*! - \brief config synchronous codes in embedded synchronous mode - \param[in] frame_start: frame start code in embedded synchronous mode - \param[in] line_start: line start code in embedded synchronous mode - \param[in] line_end: line end code in embedded synchronous mode - \param[in] frame_end: frame end code in embedded synchronous mode - \param[out] none - \retval none -*/ -void dci_sync_codes_config(uint8_t frame_start, uint8_t line_start, uint8_t line_end, uint8_t frame_end) -{ - DCI_SC = ((uint32_t)frame_start | ((uint32_t)line_start<<8) | ((uint32_t)line_end<<16) | ((uint32_t)frame_end<<24)); -} - -/*! - \brief config synchronous codes unmask in embedded synchronous mode - \param[in] frame_start: frame start code unmask bits in embedded synchronous mode - \param[in] line_start: line start code unmask bits in embedded synchronous mode - \param[in] line_end: line end code unmask bits in embedded synchronous mode - \param[in] frame_end: frame end code unmask bits in embedded synchronous mode - \param[out] none - \retval none -*/ -void dci_sync_codes_unmask_config(uint8_t frame_start, uint8_t line_start, uint8_t line_end, uint8_t frame_end) -{ - DCI_SCUMSK = ((uint32_t)frame_start | ((uint32_t)line_start<<8) | ((uint32_t)line_end<<16) | ((uint32_t)frame_end<<24)); -} - -/*! - \brief read DCI data register - \param[in] none - \param[out] none - \retval data -*/ -uint32_t dci_data_read(void) -{ - return DCI_DATA; -} - -/*! - \brief get specified flag - \param[in] flag: - \arg DCI_FLAG_HS: HS line status - \arg DCI_FLAG_VS: VS line status - \arg DCI_FLAG_FV:FIFO valid - \arg DCI_FLAG_EF: end of frame flag - \arg DCI_FLAG_OVR: FIFO overrun flag - \arg DCI_FLAG_ESE: embedded synchronous error flag - \arg DCI_FLAG_VSYNC: vsync flag - \arg DCI_FLAG_EL: end of line flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus dci_flag_get(uint32_t flag) -{ - uint32_t stat = 0U; - - if(flag >> 31){ - /* get flag status from DCI_STAT1 register */ - stat = DCI_STAT1; - }else{ - /* get flag status from DCI_STAT0 register */ - stat = DCI_STAT0; - } - - if(flag & stat){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief enable specified DCI interrupt - \param[in] interrupt: - \arg DCI_INT_EF: end of frame interrupt - \arg DCI_INT_OVR: FIFO overrun interrupt - \arg DCI_INT_ESE: embedded synchronous error interrupt - \arg DCI_INT_VSYNC: vsync interrupt - \arg DCI_INT_EL: end of line interrupt - \param[out] none - \retval none -*/ -void dci_interrupt_enable(uint32_t interrupt) -{ - DCI_INTEN |= interrupt; -} - -/*! - \brief disable specified DCI interrupt - \param[in] interrupt: - \arg DCI_INT_EF: end of frame interrupt - \arg DCI_INT_OVR: FIFO overrun interrupt - \arg DCI_INT_ESE: embedded synchronous error interrupt - \arg DCI_INT_VSYNC: vsync interrupt - \arg DCI_INT_EL: end of line interrupt - \param[out] none - \retval none -*/ -void dci_interrupt_disable(uint32_t interrupt) -{ - DCI_INTEN &= ~interrupt; -} - -/*! - \brief clear specified interrupt flag - \param[in] int_flag: - \arg DCI_INT_EF: end of frame interrupt - \arg DCI_INT_OVR: FIFO overrun interrupt - \arg DCI_INT_ESE: embedded synchronous error interrupt - \arg DCI_INT_VSYNC: vsync interrupt - \arg DCI_INT_EL: end of line interrupt - \param[out] none - \retval none -*/ -void dci_interrupt_flag_clear(uint32_t int_flag) -{ - DCI_INTC |= int_flag; -} - -/*! - \brief get specified interrupt flag - \param[in] int_flag: - \arg DCI_INT_FLAG_EF: end of frame interrupt flag - \arg DCI_INT_FLAG_OVR: FIFO overrun interrupt flag - \arg DCI_INT_FLAG_ESE: embedded synchronous error interrupt flag - \arg DCI_INT_FLAG_VSYNC: vsync interrupt flag - \arg DCI_INT_FLAG_EL: end of line interrupt flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus dci_interrupt_flag_get(uint32_t int_flag) -{ - if(RESET == (DCI_INTF & int_flag)){ - return RESET; - }else{ - return SET; - } -} - - diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dma.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dma.c deleted file mode 100644 index f72c1190c1..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_dma.c +++ /dev/null @@ -1,905 +0,0 @@ -/*! - \file gd32f4xx_dma.c - \brief DMA driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - - -#include "gd32f4xx_dma.h" - -/* DMA register bit offset */ -#define CHXCTL_PERIEN_OFFSET ((uint32_t)25U) - -/*! - \brief deinitialize DMA a channel registers - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel is deinitialized - \arg DMA_CHx(x=0..7) - \param[out] none - \retval none -*/ -void dma_deinit(uint32_t dma_periph, dma_channel_enum channelx) -{ - /* disable DMA a channel */ - DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_CHEN; - /* reset DMA channel registers */ - DMA_CHCTL(dma_periph,channelx) = DMA_CHCTL_RESET_VALUE; - DMA_CHCNT(dma_periph,channelx) = DMA_CHCNT_RESET_VALUE; - DMA_CHPADDR(dma_periph,channelx) = DMA_CHPADDR_RESET_VALUE; - DMA_CHM0ADDR(dma_periph,channelx) = DMA_CHMADDR_RESET_VALUE; - DMA_CHM1ADDR(dma_periph,channelx) = DMA_CHMADDR_RESET_VALUE; - DMA_CHFCTL(dma_periph,channelx) = DMA_CHFCTL_RESET_VALUE; - if(channelx < DMA_CH4){ - DMA_INTC0(dma_periph) |= DMA_FLAG_ADD(DMA_CHINTF_RESET_VALUE,channelx); - }else{ - channelx -= (dma_channel_enum)4; - DMA_INTC1(dma_periph) |= DMA_FLAG_ADD(DMA_CHINTF_RESET_VALUE,channelx); - } -} - -/*! - \brief initialize the DMA single data mode parameters struct with the default values - \param[in] init_struct: the initialization data needed to initialize DMA channel - \param[out] none - \retval none -*/ -void dma_single_data_para_struct_init(dma_single_data_parameter_struct* init_struct) -{ - /* set the DMA struct with the default values */ - init_struct->periph_addr = 0U; - init_struct->periph_inc = DMA_PERIPH_INCREASE_DISABLE; - init_struct->memory0_addr = 0U; - init_struct->memory_inc = DMA_MEMORY_INCREASE_DISABLE; - init_struct->periph_memory_width = 0U; - init_struct->circular_mode = DMA_CIRCULAR_MODE_DISABLE; - init_struct->direction = DMA_PERIPH_TO_MEMORY; - init_struct->number = 0U; - init_struct->priority = DMA_PRIORITY_LOW; -} - -/*! - \brief initialize the DMA multi data mode parameters struct with the default values - \param[in] init_struct: the initialization data needed to initialize DMA channel - \param[out] none - \retval none -*/ -void dma_multi_data_para_struct_init(dma_multi_data_parameter_struct* init_struct) -{ - /* set the DMA struct with the default values */ - init_struct->periph_addr = 0U; - init_struct->periph_width = 0U; - init_struct->periph_inc = DMA_PERIPH_INCREASE_DISABLE; - init_struct->memory0_addr = 0U; - init_struct->memory_width = 0U; - init_struct->memory_inc = DMA_MEMORY_INCREASE_DISABLE; - init_struct->memory_burst_width = 0U; - init_struct->periph_burst_width = 0U; - init_struct->circular_mode = DMA_CIRCULAR_MODE_DISABLE; - init_struct->direction = DMA_PERIPH_TO_MEMORY; - init_struct->number = 0U; - init_struct->priority = DMA_PRIORITY_LOW; -} - -/*! - \brief initialize DMA single data mode - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel is initialized - \arg DMA_CHx(x=0..7) - \param[in] init_struct: the data needed to initialize DMA single data mode - periph_addr: peripheral base address - periph_inc: DMA_PERIPH_INCREASE_ENABLE,DMA_PERIPH_INCREASE_DISABLE,DMA_PERIPH_INCREASE_FIX - memory0_addr: memory base address - memory_inc: DMA_MEMORY_INCREASE_ENABLE,DMA_MEMORY_INCREASE_DISABLE - periph_memory_width: DMA_PERIPH_WIDTH_8BIT,DMA_PERIPH_WIDTH_16BIT,DMA_PERIPH_WIDTH_32BIT - circular_mode: DMA_CIRCULAR_MODE_ENABLE,DMA_CIRCULAR_MODE_DISABLE - direction: DMA_PERIPH_TO_MEMORY,DMA_MEMORY_TO_PERIPH,DMA_MEMORY_TO_MEMORY - number: the number of remaining data to be transferred by the DMA - priority: DMA_PRIORITY_LOW,DMA_PRIORITY_MEDIUM,DMA_PRIORITY_HIGH,DMA_PRIORITY_ULTRA_HIGH - \param[out] none - \retval none -*/ -void dma_single_data_mode_init(uint32_t dma_periph, dma_channel_enum channelx, dma_single_data_parameter_struct* init_struct) -{ - uint32_t ctl; - - /* select single data mode */ - DMA_CHFCTL(dma_periph,channelx) &= ~DMA_CHXFCTL_MDMEN; - - /* configure peripheral base address */ - DMA_CHPADDR(dma_periph,channelx) = init_struct->periph_addr; - - /* configure memory base address */ - DMA_CHM0ADDR(dma_periph,channelx) = init_struct->memory0_addr; - - /* configure the number of remaining data to be transferred */ - DMA_CHCNT(dma_periph,channelx) = init_struct->number; - - /* configure peripheral and memory transfer width,channel priotity,transfer mode */ - ctl = DMA_CHCTL(dma_periph,channelx); - ctl &= ~(DMA_CHXCTL_PWIDTH | DMA_CHXCTL_MWIDTH | DMA_CHXCTL_PRIO | DMA_CHXCTL_TM); - ctl |= (init_struct->periph_memory_width | (init_struct->periph_memory_width << 2) | init_struct->priority | init_struct->direction); - DMA_CHCTL(dma_periph,channelx) = ctl; - - /* configure peripheral increasing mode */ - if(DMA_PERIPH_INCREASE_ENABLE == init_struct->periph_inc){ - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_PNAGA; - }else if(DMA_PERIPH_INCREASE_DISABLE == init_struct->periph_inc){ - DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_PNAGA; - }else{ - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_PAIF; - } - - /* configure memory increasing mode */ - if(DMA_MEMORY_INCREASE_ENABLE == init_struct->memory_inc){ - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_MNAGA; - }else{ - DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_MNAGA; - } - - /* configure DMA circular mode */ - if(DMA_CIRCULAR_MODE_ENABLE == init_struct->circular_mode){ - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_CMEN; - }else{ - DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_CMEN; - } -} - -/*! - \brief initialize DMA multi data mode - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel is initialized - \arg DMA_CHx(x=0..7) - \param[in] dma_multi_data_parameter_struct: the data needed to initialize DMA multi data mode - periph_addr: peripheral base address - periph_width: DMA_PERIPH_WIDTH_8BIT,DMA_PERIPH_WIDTH_16BIT,DMA_PERIPH_WIDTH_32BIT - periph_inc: DMA_PERIPH_INCREASE_ENABLE,DMA_PERIPH_INCREASE_DISABLE,DMA_PERIPH_INCREASE_FIX - memory0_addr: memory0 base address - memory_width: DMA_MEMORY_WIDTH_8BIT,DMA_MEMORY_WIDTH_16BIT,DMA_MEMORY_WIDTH_32BIT - memory_inc: DMA_MEMORY_INCREASE_ENABLE,DMA_MEMORY_INCREASE_DISABLE - memory_burst_width: DMA_MEMORY_BURST_SINGLE,DMA_MEMORY_BURST_4_BEAT,DMA_MEMORY_BURST_8_BEAT,DMA_MEMORY_BURST_16_BEAT - periph_burst_width: DMA_PERIPH_BURST_SINGLE,DMA_PERIPH_BURST_4_BEAT,DMA_PERIPH_BURST_8_BEAT,DMA_PERIPH_BURST_16_BEAT - critical_value: DMA_FIFO_1_WORD,DMA_FIFO_2_WORD,DMA_FIFO_3_WORD,DMA_FIFO_4_WORD - circular_mode: DMA_CIRCULAR_MODE_ENABLE,DMA_CIRCULAR_MODE_DISABLE - direction: DMA_PERIPH_TO_MEMORY,DMA_MEMORY_TO_PERIPH,DMA_MEMORY_TO_MEMORY - number: the number of remaining data to be transferred by the DMA - priority: DMA_PRIORITY_LOW,DMA_PRIORITY_MEDIUM,DMA_PRIORITY_HIGH,DMA_PRIORITY_ULTRA_HIGH - \param[out] none - \retval none -*/ -void dma_multi_data_mode_init(uint32_t dma_periph, dma_channel_enum channelx, dma_multi_data_parameter_struct* init_struct) -{ - uint32_t ctl; - - /* select multi data mode and configure FIFO critical value */ - DMA_CHFCTL(dma_periph,channelx) |= (DMA_CHXFCTL_MDMEN | init_struct->critical_value); - - /* configure peripheral base address */ - DMA_CHPADDR(dma_periph,channelx) = init_struct->periph_addr; - - /* configure memory base address */ - DMA_CHM0ADDR(dma_periph,channelx) = init_struct->memory0_addr; - - /* configure the number of remaining data to be transferred */ - DMA_CHCNT(dma_periph,channelx) = init_struct->number; - - /* configure peripheral and memory transfer width,channel priotity,transfer mode,peripheral and memory burst transfer width */ - ctl = DMA_CHCTL(dma_periph,channelx); - ctl &= ~(DMA_CHXCTL_PWIDTH | DMA_CHXCTL_MWIDTH | DMA_CHXCTL_PRIO | DMA_CHXCTL_TM | DMA_CHXCTL_PBURST | DMA_CHXCTL_MBURST); - ctl |= (init_struct->periph_width | (init_struct->memory_width ) | init_struct->priority | init_struct->direction | init_struct->memory_burst_width | init_struct->periph_burst_width); - DMA_CHCTL(dma_periph,channelx) = ctl; - - /* configure peripheral increasing mode */ - if(DMA_PERIPH_INCREASE_ENABLE == init_struct->periph_inc){ - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_PNAGA; - }else if(DMA_PERIPH_INCREASE_DISABLE == init_struct->periph_inc){ - DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_PNAGA; - }else{ - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_PAIF; - } - - /* configure memory increasing mode */ - if(DMA_MEMORY_INCREASE_ENABLE == init_struct->memory_inc){ - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_MNAGA; - }else{ - DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_MNAGA; - } - - /* configure DMA circular mode */ - if(DMA_CIRCULAR_MODE_ENABLE == init_struct->circular_mode){ - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_CMEN; - }else{ - DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_CMEN; - } -} - -/*! - \brief set DMA peripheral base address - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel to set peripheral base address - \arg DMA_CHx(x=0..7) - \param[in] address: peripheral base address - \param[out] none - \retval none -*/ -void dma_periph_address_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t address) -{ - DMA_CHPADDR(dma_periph,channelx) = address; -} - -/*! - \brief set DMA Memory0 base address - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel to set Memory base address - \arg DMA_CHx(x=0..7) - \param[in] memory_flag: DMA_MEMORY_x(x=0,1) - \param[in] address: Memory base address - \param[out] none - \retval none -*/ -void dma_memory_address_config(uint32_t dma_periph, dma_channel_enum channelx, uint8_t memory_flag, uint32_t address) -{ - if(memory_flag){ - DMA_CHM1ADDR(dma_periph,channelx) = address; - }else{ - DMA_CHM0ADDR(dma_periph,channelx) = address; - } -} - -/*! - \brief set the number of remaining data to be transferred by the DMA - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel to set number - \arg DMA_CHx(x=0..7) - \param[in] number: the number of remaining data to be transferred by the DMA - \param[out] none - \retval none -*/ -void dma_transfer_number_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t number) -{ - DMA_CHCNT(dma_periph,channelx) = number; -} - -/*! - \brief get the number of remaining data to be transferred by the DMA - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel to set number - \arg DMA_CHx(x=0..7) - \param[out] none - \retval uint32_t: the number of remaining data to be transferred by the DMA -*/ -uint32_t dma_transfer_number_get(uint32_t dma_periph, dma_channel_enum channelx) -{ - return (uint32_t)DMA_CHCNT(dma_periph,channelx); -} - -/*! - \brief configure priority level of DMA channel - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[in] priority: priority Level of this channel - only one parameter can be selected which is shown as below: - \arg DMA_PRIORITY_LOW: low priority - \arg DMA_PRIORITY_MEDIUM: medium priority - \arg DMA_PRIORITY_HIGH: high priority - \arg DMA_PRIORITY_ULTRA_HIGH: ultra high priority - \param[out] none - \retval none -*/ -void dma_priority_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t priority) -{ - uint32_t ctl; - /* acquire DMA_CHxCTL register */ - ctl = DMA_CHCTL(dma_periph,channelx); - /* assign regiser */ - ctl &= ~DMA_CHXCTL_PRIO; - ctl |= priority; - DMA_CHCTL(dma_periph,channelx) = ctl; -} - -/*! - \brief configure transfer burst beats of memory - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[in] mbeat: transfer burst beats - \arg DMA_MEMORY_BURST_SINGLE: memory transfer single burst - \arg DMA_MEMORY_BURST_4_BEAT: memory transfer 4-beat burst - \arg DMA_MEMORY_BURST_8_BEAT: memory transfer 8-beat burst - \arg DMA_MEMORY_BURST_16_BEAT: memory transfer 16-beat burst - \param[out] none - \retval none -*/ -void dma_memory_burst_beats_config (uint32_t dma_periph, dma_channel_enum channelx, uint32_t mbeat) -{ - uint32_t ctl; - /* acquire DMA_CHxCTL register */ - ctl = DMA_CHCTL(dma_periph,channelx); - /* assign regiser */ - ctl &= ~DMA_CHXCTL_MBURST; - ctl |= mbeat; - DMA_CHCTL(dma_periph,channelx) = ctl; -} - -/*! - \brief configure transfer burst beats of peripheral - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[in] pbeat: transfer burst beats - only one parameter can be selected which is shown as below: - \arg DMA_PERIPH_BURST_SINGLE: peripheral transfer single burst - \arg DMA_PERIPH_BURST_4_BEAT: peripheral transfer 4-beat burst - \arg DMA_PERIPH_BURST_8_BEAT: peripheral transfer 8-beat burst - \arg DMA_PERIPH_BURST_16_BEAT: peripheral transfer 16-beat burst - \param[out] none - \retval none -*/ -void dma_periph_burst_beats_config (uint32_t dma_periph, dma_channel_enum channelx, uint32_t pbeat) -{ - uint32_t ctl; - /* acquire DMA_CHxCTL register */ - ctl = DMA_CHCTL(dma_periph,channelx); - /* assign regiser */ - ctl &= ~DMA_CHXCTL_PBURST; - ctl |= pbeat; - DMA_CHCTL(dma_periph,channelx) = ctl; -} - -/*! - \brief configure transfer data size of memory - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[in] msize: transfer data size of memory - only one parameter can be selected which is shown as below: - \arg DMA_MEMORY_WIDTH_8BIT: transfer data size of memory is 8-bit - \arg DMA_MEMORY_WIDTH_16BIT: transfer data size of memory is 16-bit - \arg DMA_MEMORY_WIDTH_32BIT: transfer data size of memory is 32-bit - \param[out] none - \retval none -*/ -void dma_memory_width_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t msize) -{ - uint32_t ctl; - /* acquire DMA_CHxCTL register */ - ctl = DMA_CHCTL(dma_periph,channelx); - /* assign regiser */ - ctl &= ~DMA_CHXCTL_MWIDTH; - ctl |= msize; - DMA_CHCTL(dma_periph,channelx) = ctl; -} - -/*! - \brief configure transfer data size of peripheral - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[in] msize: transfer data size of peripheral - only one parameter can be selected which is shown as below: - \arg DMA_PERIPHERAL_WIDTH_8BIT: transfer data size of peripheral is 8-bit - \arg DMA_PERIPHERAL_WIDTH_16BIT: transfer data size of peripheral is 16-bit - \arg DMA_PERIPHERAL_WIDTH_32BIT: transfer data size of peripheral is 32-bit - \param[out] none - \retval none -*/ -void dma_periph_width_config (uint32_t dma_periph, dma_channel_enum channelx, uint32_t psize) -{ - uint32_t ctl; - /* acquire DMA_CHxCTL register */ - ctl = DMA_CHCTL(dma_periph,channelx); - /* assign regiser */ - ctl &= ~DMA_CHXCTL_PWIDTH; - ctl |= psize; - DMA_CHCTL(dma_periph,channelx) = ctl; -} - -/*! - \brief configure memory address generation generation_algorithm - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[in] generation_algorithm: the address generation algorithm - only one parameter can be selected which is shown as below: - \arg DMA_MEMORY_INCREASE_ENABLE: next address of memory is increasing address mode - \arg DMA_MEMORY_INCREASE_DISABLE: next address of memory is fixed address mode - \param[out] none - \retval none -*/ -void dma_memory_address_generation_config(uint32_t dma_periph, dma_channel_enum channelx, uint8_t generation_algorithm) -{ - if(DMA_MEMORY_INCREASE_ENABLE == generation_algorithm){ - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_MNAGA; - }else{ - DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_MNAGA; - } -} - -/*! - \brief configure peripheral address generation_algorithm - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[in] generation_algorithm: the address generation algorithm - only one parameter can be selected which is shown as below: - \arg DMA_PERIPH_INCREASE_ENABLE: next address of peripheral is increasing address mode - \arg DMA_PERIPH_INCREASE_DISABLE: next address of peripheral is fixed address mode - \arg DMA_PERIPH_INCREASE_FIX: increasing steps of peripheral address is fixed - \param[out] none - \retval none -*/ -void dma_peripheral_address_generation_config(uint32_t dma_periph, dma_channel_enum channelx, uint8_t generation_algorithm) -{ - if(DMA_PERIPH_INCREASE_ENABLE == generation_algorithm){ - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_PNAGA; - }else if(DMA_PERIPH_INCREASE_DISABLE == generation_algorithm){ - DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_PNAGA; - }else{ - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_PNAGA; - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_PAIF; - } -} - -/*! - \brief enable DMA circulation mode - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[out] none - \retval none -*/ -void dma_circulation_enable(uint32_t dma_periph, dma_channel_enum channelx) -{ - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_CMEN; -} - -/*! - \brief disable DMA circulation mode - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[out] none - \retval none -*/ -void dma_circulation_disable(uint32_t dma_periph, dma_channel_enum channelx) -{ - DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_CMEN; -} - -/*! - \brief enable DMA channel - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[out] none - \retval none -*/ -void dma_channel_enable(uint32_t dma_periph, dma_channel_enum channelx) -{ - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_CHEN; -} - -/*! - \brief disable DMA channel - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[out] none - \retval none -*/ -void dma_channel_disable(uint32_t dma_periph, dma_channel_enum channelx) -{ - DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_CHEN; -} - -/*! - \brief configure the direction of data transfer on the channel - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[in] direction: specify the direction of data transfer - only one parameter can be selected which is shown as below: - \arg DMA_PERIPH_TO_MEMORY: read from peripheral and write to memory - \arg DMA_MEMORY_TO_PERIPH: read from memory and write to peripheral - \arg DMA_MEMORY_TO_MEMORY: read from memory and write to memory - \param[out] none - \retval none -*/ -void dma_transfer_direction_config(uint32_t dma_periph, dma_channel_enum channelx, uint8_t direction) -{ - uint32_t ctl; - /* acquire DMA_CHxCTL register */ - ctl = DMA_CHCTL(dma_periph,channelx); - /* assign regiser */ - ctl &= ~DMA_CHXCTL_TM; - ctl |= direction; - - DMA_CHCTL(dma_periph,channelx) = ctl; -} - -/*! - \brief DMA switch buffer mode config - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[in] memory1_addr: memory1 base address - \param[in] memory_select: DMA_MEMORY_0 or DMA_MEMORY_1 - \param[out] none - \retval none -*/ -void dma_switch_buffer_mode_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t memory1_addr, uint32_t memory_select) -{ - /* configure memory1 base address */ - DMA_CHM1ADDR(dma_periph,channelx) = memory1_addr; - - if(DMA_MEMORY_0 == memory_select){ - DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_MBS; - }else{ - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_MBS; - } -} - -/*! - \brief DMA using memory get - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[out] none - \retval the using memory -*/ -uint32_t dma_using_memory_get(uint32_t dma_periph, dma_channel_enum channelx) -{ - if((DMA_CHCTL(dma_periph,channelx)) & DMA_CHXCTL_MBS){ - return DMA_MEMORY_1; - }else{ - return DMA_MEMORY_0; - } -} - -/*! - \brief DMA channel peripheral select - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[in] sub_periph: specify DMA channel peripheral - \arg DMA_SUBPERIx(x=0..7) - \param[out] none - \retval none -*/ -void dma_channel_subperipheral_select(uint32_t dma_periph, dma_channel_enum channelx, dma_subperipheral_enum sub_periph) -{ - uint32_t ctl; - /* acquire DMA_CHxCTL register */ - ctl = DMA_CHCTL(dma_periph,channelx); - /* assign regiser */ - ctl &= ~DMA_CHXCTL_PERIEN; - ctl |= ((uint32_t)sub_periph << CHXCTL_PERIEN_OFFSET); - - DMA_CHCTL(dma_periph,channelx) = ctl; -} - -/*! - \brief DMA flow controller configure - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[in] controller: specify DMA flow controler - only one parameter can be selected which is shown as below: - \arg DMA_FLOW_CONTROLLER_DMA: DMA is the flow controller - \arg DMA_FLOW_CONTROLLER_PERI: peripheral is the flow controller - \param[out] none - \retval none -*/ -void dma_flow_controller_config(uint32_t dma_periph, dma_channel_enum channelx, uint32_t controller) -{ - if(DMA_FLOW_CONTROLLER_DMA == controller){ - DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_TFCS; - }else{ - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_TFCS; - } -} - -/*! - \brief DMA switch buffer mode enable - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[in] newvalue: ENABLE or DISABLE - \param[out] none - \retval none -*/ -void dma_switch_buffer_mode_enable(uint32_t dma_periph, dma_channel_enum channelx, ControlStatus newvalue) -{ - if(ENABLE == newvalue){ - /* switch buffer mode enable */ - DMA_CHCTL(dma_periph,channelx) |= DMA_CHXCTL_SBMEN; - }else{ - /* switch buffer mode disable */ - DMA_CHCTL(dma_periph,channelx) &= ~DMA_CHXCTL_SBMEN; - } -} - -/*! - \brief DMA FIFO status get - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[out] none - \retval the using memory -*/ -uint32_t dma_fifo_status_get(uint32_t dma_periph, dma_channel_enum channelx) -{ - return (DMA_CHFCTL(dma_periph,channelx) & DMA_CHXFCTL_FCNT); -} - -/*! - \brief get DMA flag is set or not - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel to get flag - \arg DMA_CHx(x=0..7) - \param[in] flag: specify get which flag - only one parameter can be selected which is shown as below: - \arg DMA_FLAG_FEE: FIFO error and exception flag - \arg DMA_FLAG_SDE: single data mode exception flag - \arg DMA_FLAG_TAE: transfer access error flag - \arg DMA_FLAG_HTF: half transfer finish flag - \arg DMA_FLAG_FTF: full transger finish flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus dma_flag_get(uint32_t dma_periph, dma_channel_enum channelx, uint32_t flag) -{ - if(channelx < DMA_CH4){ - if(DMA_INTF0(dma_periph) & DMA_FLAG_ADD(flag,channelx)){ - return SET; - }else{ - return RESET; - } - }else{ - channelx -= (dma_channel_enum)4; - if(DMA_INTF1(dma_periph) & DMA_FLAG_ADD(flag,channelx)){ - return SET; - }else{ - return RESET; - } - } -} - -/*! - \brief clear DMA a channel flag - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel to get flag - \arg DMA_CHx(x=0..7) - \param[in] flag: specify get which flag - only one parameter can be selected which is shown as below: - \arg DMA_FLAG_FEE: FIFO error and exception flag - \arg DMA_FLAG_SDE: single data mode exception flag - \arg DMA_FLAG_TAE: transfer access error flag - \arg DMA_FLAG_HTF: half transfer finish flag - \arg DMA_FLAG_FTF: full transger finish flag - \param[out] none - \retval none -*/ -void dma_flag_clear(uint32_t dma_periph, dma_channel_enum channelx, uint32_t flag) -{ - if(channelx < DMA_CH4){ - DMA_INTC0(dma_periph) |= DMA_FLAG_ADD(flag,channelx); - }else{ - channelx -= (dma_channel_enum)4; - DMA_INTC1(dma_periph) |= DMA_FLAG_ADD(flag,channelx); - } -} - -/*! - \brief get DMA interrupt flag is set or not - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel to get interrupt flag - \arg DMA_CHx(x=0..7) - \param[in] interrupt: specify get which flag - only one parameter can be selected which is shown as below: - \arg DMA_INT_FLAG_FEE: FIFO error and exception flag - \arg DMA_INT_FLAG_SDE: single data mode exception flag - \arg DMA_INT_FLAG_TAE: transfer access error flag - \arg DMA_INT_FLAG_HTF: half transfer finish flag - \arg DMA_INT_FLAG_FTF: full transger finish flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus dma_interrupt_flag_get(uint32_t dma_periph, dma_channel_enum channelx, uint32_t interrupt) -{ - uint32_t interrupt_enable = 0U,interrupt_flag = 0U; - dma_channel_enum channel_flag_offset = channelx; - if(channelx < DMA_CH4){ - switch(interrupt){ - case DMA_INTF_FEEIF: - interrupt_flag = DMA_INTF0(dma_periph) & DMA_FLAG_ADD(interrupt,channelx); - interrupt_enable = DMA_CHFCTL(dma_periph,channelx) & DMA_CHXFCTL_FEEIE; - break; - case DMA_INTF_SDEIF: - interrupt_flag = DMA_INTF0(dma_periph) & DMA_FLAG_ADD(interrupt,channelx); - interrupt_enable = DMA_CHCTL(dma_periph,channelx) & DMA_CHXCTL_SDEIE; - break; - case DMA_INTF_TAEIF: - interrupt_flag = DMA_INTF0(dma_periph) & DMA_FLAG_ADD(interrupt,channelx); - interrupt_enable = DMA_CHCTL(dma_periph,channelx) & DMA_CHXCTL_TAEIE; - break; - case DMA_INTF_HTFIF: - interrupt_flag = DMA_INTF0(dma_periph) & DMA_FLAG_ADD(interrupt,channelx); - interrupt_enable = DMA_CHCTL(dma_periph,channelx) & DMA_CHXCTL_HTFIE; - break; - case DMA_INTF_FTFIF: - interrupt_flag = (DMA_INTF0(dma_periph) & DMA_FLAG_ADD(interrupt,channelx)); - interrupt_enable = (DMA_CHCTL(dma_periph,channelx) & DMA_CHXCTL_FTFIE); - break; - default: - break; - } - }else{ - channel_flag_offset -= (dma_channel_enum)4; - switch(interrupt){ - case DMA_INTF_FEEIF: - interrupt_flag = DMA_INTF1(dma_periph) & DMA_FLAG_ADD(interrupt,channel_flag_offset); - interrupt_enable = DMA_CHFCTL(dma_periph,channelx) & DMA_CHXFCTL_FEEIE; - break; - case DMA_INTF_SDEIF: - interrupt_flag = DMA_INTF1(dma_periph) & DMA_FLAG_ADD(interrupt,channel_flag_offset); - interrupt_enable = DMA_CHCTL(dma_periph,channelx) & DMA_CHXCTL_SDEIE; - break; - case DMA_INTF_TAEIF: - interrupt_flag = DMA_INTF1(dma_periph) & DMA_FLAG_ADD(interrupt,channel_flag_offset); - interrupt_enable = DMA_CHCTL(dma_periph,channelx) & DMA_CHXCTL_TAEIE; - break; - case DMA_INTF_HTFIF: - interrupt_flag = DMA_INTF1(dma_periph) & DMA_FLAG_ADD(interrupt,channel_flag_offset); - interrupt_enable = DMA_CHCTL(dma_periph,channelx) & DMA_CHXCTL_HTFIE; - break; - case DMA_INTF_FTFIF: - interrupt_flag = DMA_INTF1(dma_periph) & DMA_FLAG_ADD(interrupt,channel_flag_offset); - interrupt_enable = DMA_CHCTL(dma_periph,channelx) & DMA_CHXCTL_FTFIE; - break; - default: - break; - } - } - - if(interrupt_flag && interrupt_enable){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear DMA a channel interrupt flag - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel to clear interrupt flag - \arg DMA_CHx(x=0..7) - \param[in] interrupt: specify get which flag - only one parameter can be selected which is shown as below: - \arg DMA_INT_FLAG_FEE: FIFO error and exception flag - \arg DMA_INT_FLAG_SDE: single data mode exception flag - \arg DMA_INT_FLAG_TAE: transfer access error flag - \arg DMA_INT_FLAG_HTF: half transfer finish flag - \arg DMA_INT_FLAG_FTF: full transger finish flag - \param[out] none - \retval none -*/ -void dma_interrupt_flag_clear(uint32_t dma_periph, dma_channel_enum channelx, uint32_t interrupt) -{ - if(channelx < DMA_CH4){ - DMA_INTC0(dma_periph) |= DMA_FLAG_ADD(interrupt,channelx); - }else{ - channelx -= (dma_channel_enum)4; - DMA_INTC1(dma_periph) |= DMA_FLAG_ADD(interrupt,channelx); - } -} - -/*! - \brief enable DMA interrupt - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[in] source: specify which interrupt to enbale - one or more parameters can be selected which are shown as below: - \arg DMA_CHXCTL_SDEIE: single data mode exception interrupt enable - \arg DMA_CHXCTL_TAEIE: tranfer access error interrupt enable - \arg DMA_CHXCTL_HTFIE: half transfer finish interrupt enable - \arg DMA_CHXCTL_FTFIE: full transfer finish interrupt enable - \arg DMA_CHXFCTL_FEEIE: FIFO exception interrupt enable - \param[out] none - \retval none -*/ -void dma_interrupt_enable(uint32_t dma_periph, dma_channel_enum channelx, uint32_t source) -{ - if(DMA_CHXFCTL_FEEIE != source){ - DMA_CHCTL(dma_periph,channelx) |= source; - }else{ - DMA_CHFCTL(dma_periph,channelx) |= source; - } -} - -/*! - \brief disable DMA interrupt - \param[in] dma_periph: DMAx(x=0,1) - \arg DMAx(x=0,1) - \param[in] channelx: specify which DMA channel - \arg DMA_CHx(x=0..7) - \param[in] source: specify which interrupt to disbale - one or more parameters can be selected which are shown as below: - \arg DMA_CHXCTL_SDEIE: single data mode exception interrupt enable - \arg DMA_CHXCTL_TAEIE: tranfer access error interrupt enable - \arg DMA_CHXCTL_HTFIE: half transfer finish interrupt enable - \arg DMA_CHXCTL_FTFIE: full transfer finish interrupt enable - \arg DMA_CHXFCTL_FEEIE: FIFO exception interrupt enable - \param[out] none - \retval none -*/ -void dma_interrupt_disable(uint32_t dma_periph, dma_channel_enum channelx, uint32_t source) -{ - if(DMA_CHXFCTL_FEEIE != source){ - DMA_CHCTL(dma_periph,channelx) &= ~source; - }else{ - DMA_CHFCTL(dma_periph,channelx) &= ~source; - } -} - diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_enet.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_enet.c deleted file mode 100644 index 3aa814e609..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_enet.c +++ /dev/null @@ -1,3505 +0,0 @@ -/*! - \file gd32f4xx_enet.c - \brief ENET driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_enet.h" - -#if defined (__CC_ARM) /*!< ARM compiler */ -__align(4) -enet_descriptors_struct rxdesc_tab[ENET_RXBUF_NUM]; /*!< ENET RxDMA descriptor */ -__align(4) -enet_descriptors_struct txdesc_tab[ENET_TXBUF_NUM]; /*!< ENET TxDMA descriptor */ -__align(4) -uint8_t rx_buff[ENET_RXBUF_NUM][ENET_RXBUF_SIZE]; /*!< ENET receive buffer */ -__align(4) -uint8_t tx_buff[ENET_TXBUF_NUM][ENET_TXBUF_SIZE]; /*!< ENET transmit buffer */ - -#elif defined ( __ICCARM__ ) /*!< IAR compiler */ -#pragma data_alignment=4 -enet_descriptors_struct rxdesc_tab[ENET_RXBUF_NUM]; /*!< ENET RxDMA descriptor */ -#pragma data_alignment=4 -enet_descriptors_struct txdesc_tab[ENET_TXBUF_NUM]; /*!< ENET TxDMA descriptor */ -#pragma data_alignment=4 -uint8_t rx_buff[ENET_RXBUF_NUM][ENET_RXBUF_SIZE]; /*!< ENET receive buffer */ -#pragma data_alignment=4 -uint8_t tx_buff[ENET_TXBUF_NUM][ENET_TXBUF_SIZE]; /*!< ENET transmit buffer */ - -#elif defined (__GNUC__) /* GNU Compiler */ -enet_descriptors_struct rxdesc_tab[ENET_RXBUF_NUM] __attribute__ ((aligned (4))); /*!< ENET RxDMA descriptor */ -enet_descriptors_struct txdesc_tab[ENET_TXBUF_NUM] __attribute__ ((aligned (4))); /*!< ENET TxDMA descriptor */ -uint8_t rx_buff[ENET_RXBUF_NUM][ENET_RXBUF_SIZE] __attribute__ ((aligned (4))); /*!< ENET receive buffer */ -uint8_t tx_buff[ENET_TXBUF_NUM][ENET_TXBUF_SIZE] __attribute__ ((aligned (4))); /*!< ENET transmit buffer */ - -#endif /* __CC_ARM */ - -/* global transmit and receive descriptors pointers */ -enet_descriptors_struct *dma_current_txdesc; -enet_descriptors_struct *dma_current_rxdesc; - -/* structure pointer of ptp descriptor for normal mode */ -enet_descriptors_struct *dma_current_ptp_txdesc = NULL; -enet_descriptors_struct *dma_current_ptp_rxdesc = NULL; - -/* init structure parameters for ENET initialization */ -static enet_initpara_struct enet_initpara ={0,0,0,0,0,0,0,0,0,0,0,0,0,0,0}; -static uint32_t enet_unknow_err = 0U; -/* array of register offset for debug information get */ -static const uint16_t enet_reg_tab[] = { -0x0000, 0x0004, 0x0008, 0x000C, 0x0010, 0x0014, 0x0018, 0x001C, 0x0028, 0x002C, 0x0034, -0x0038, 0x003C, 0x0040, 0x0044, 0x0048, 0x004C, 0x0050, 0x0054, 0x0058, 0x005C, 0x1080, - -0x0100, 0x0104, 0x0108, 0x010C, 0x0110, 0x014C, 0x0150, 0x0168, 0x0194, 0x0198, 0x01C4, - -0x0700, 0x0704,0x0708, 0x070C, 0x0710, 0x0714, 0x0718, 0x071C, 0x0720, 0x0728, 0x072C, - -0x1000, 0x1004, 0x1008, 0x100C, 0x1010, 0x1014, 0x1018, 0x101C, 0x1020, 0x1024, 0x1048, -0x104C, 0x1050, 0x1054}; - -/* initialize ENET peripheral with generally concerned parameters, call it by enet_init() */ -static void enet_default_init(void); -#ifdef USE_DELAY -/* user can provide more timing precise _ENET_DELAY_ function */ -#define _ENET_DELAY_ delay_ms -#else -/* insert a delay time */ -static void enet_delay(uint32_t ncount); -/* default _ENET_DELAY_ function with less precise timing */ -#define _ENET_DELAY_ enet_delay -#endif - - -/*! - \brief deinitialize the ENET, and reset structure parameters for ENET initialization - \param[in] none - \param[out] none - \retval none -*/ -void enet_deinit(void) -{ - rcu_periph_reset_enable(RCU_ENETRST); - rcu_periph_reset_disable(RCU_ENETRST); - enet_initpara_reset(); -} - -/*! - \brief configure the parameters which are usually less cared for initialization - note -- this function must be called before enet_init(), otherwise - configuration will be no effect - \param[in] option: different function option, which is related to several parameters, refer to enet_option_enum - only one parameter can be selected which is shown as below - \arg FORWARD_OPTION: choose to configure the frame forward related parameters - \arg DMABUS_OPTION: choose to configure the DMA bus mode related parameters - \arg DMA_MAXBURST_OPTION: choose to configure the DMA max burst related parameters - \arg DMA_ARBITRATION_OPTION: choose to configure the DMA arbitration related parameters - \arg STORE_OPTION: choose to configure the store forward mode related parameters - \arg DMA_OPTION: choose to configure the DMA descriptor related parameters - \arg VLAN_OPTION: choose to configure vlan related parameters - \arg FLOWCTL_OPTION: choose to configure flow control related parameters - \arg HASHH_OPTION: choose to configure hash high - \arg HASHL_OPTION: choose to configure hash low - \arg FILTER_OPTION: choose to configure frame filter related parameters - \arg HALFDUPLEX_OPTION: choose to configure halfduplex mode related parameters - \arg TIMER_OPTION: choose to configure time counter related parameters - \arg INTERFRAMEGAP_OPTION: choose to configure the inter frame gap related parameters - \param[in] para: the related parameters according to the option - all the related parameters should be configured which are shown as below - FORWARD_OPTION related parameters: - - ENET_AUTO_PADCRC_DROP_ENABLE/ ENET_AUTO_PADCRC_DROP_DISABLE ; - - ENET_TYPEFRAME_CRC_DROP_ENABLE/ ENET_TYPEFRAME_CRC_DROP_DISABLE ; - - ENET_FORWARD_ERRFRAMES_ENABLE/ ENET_FORWARD_ERRFRAMES_DISABLE ; - - ENET_FORWARD_UNDERSZ_GOODFRAMES_ENABLE/ ENET_FORWARD_UNDERSZ_GOODFRAMES_DISABLE . - DMABUS_OPTION related parameters: - - ENET_ADDRESS_ALIGN_ENABLE/ ENET_ADDRESS_ALIGN_DISABLE ; - - ENET_FIXED_BURST_ENABLE/ ENET_FIXED_BURST_DISABLE ; - - ENET_MIXED_BURST_ENABLE/ ENET_MIXED_BURST_DISABLE ; - DMA_MAXBURST_OPTION related parameters: - - ENET_RXDP_1BEAT/ ENET_RXDP_2BEAT/ ENET_RXDP_4BEAT/ - ENET_RXDP_8BEAT/ ENET_RXDP_16BEAT/ ENET_RXDP_32BEAT/ - ENET_RXDP_4xPGBL_4BEAT/ ENET_RXDP_4xPGBL_8BEAT/ - ENET_RXDP_4xPGBL_16BEAT/ ENET_RXDP_4xPGBL_32BEAT/ - ENET_RXDP_4xPGBL_64BEAT/ ENET_RXDP_4xPGBL_128BEAT ; - - ENET_PGBL_1BEAT/ ENET_PGBL_2BEAT/ ENET_PGBL_4BEAT/ - ENET_PGBL_8BEAT/ ENET_PGBL_16BEAT/ ENET_PGBL_32BEAT/ - ENET_PGBL_4xPGBL_4BEAT/ ENET_PGBL_4xPGBL_8BEAT/ - ENET_PGBL_4xPGBL_16BEAT/ ENET_PGBL_4xPGBL_32BEAT/ - ENET_PGBL_4xPGBL_64BEAT/ ENET_PGBL_4xPGBL_128BEAT ; - - ENET_RXTX_DIFFERENT_PGBL/ ENET_RXTX_SAME_PGBL ; - DMA_ARBITRATION_OPTION related parameters: - - ENET_ARBITRATION_RXPRIORTX - - ENET_ARBITRATION_RXTX_1_1/ ENET_ARBITRATION_RXTX_2_1/ - ENET_ARBITRATION_RXTX_3_1/ ENET_ARBITRATION_RXTX_4_1/. - STORE_OPTION related parameters: - - ENET_RX_MODE_STOREFORWARD/ ENET_RX_MODE_CUTTHROUGH ; - - ENET_TX_MODE_STOREFORWARD/ ENET_TX_MODE_CUTTHROUGH ; - - ENET_RX_THRESHOLD_64BYTES/ ENET_RX_THRESHOLD_32BYTES/ - ENET_RX_THRESHOLD_96BYTES/ ENET_RX_THRESHOLD_128BYTES ; - - ENET_TX_THRESHOLD_64BYTES/ ENET_TX_THRESHOLD_128BYTES/ - ENET_TX_THRESHOLD_192BYTES/ ENET_TX_THRESHOLD_256BYTES/ - ENET_TX_THRESHOLD_40BYTES/ ENET_TX_THRESHOLD_32BYTES/ - ENET_TX_THRESHOLD_24BYTES/ ENET_TX_THRESHOLD_16BYTES . - DMA_OPTION related parameters: - - ENET_FLUSH_RXFRAME_ENABLE/ ENET_FLUSH_RXFRAME_DISABLE ; - - ENET_SECONDFRAME_OPT_ENABLE/ ENET_SECONDFRAME_OPT_DISABLE ; - - ENET_ENHANCED_DESCRIPTOR/ ENET_NORMAL_DESCRIPTOR . - VLAN_OPTION related parameters: - - ENET_VLANTAGCOMPARISON_12BIT/ ENET_VLANTAGCOMPARISON_16BIT ; - - MAC_VLT_VLTI(regval) . - FLOWCTL_OPTION related parameters: - - MAC_FCTL_PTM(regval) ; - - ENET_ZERO_QUANTA_PAUSE_ENABLE/ ENET_ZERO_QUANTA_PAUSE_DISABLE ; - - ENET_PAUSETIME_MINUS4/ ENET_PAUSETIME_MINUS28/ - ENET_PAUSETIME_MINUS144/ENET_PAUSETIME_MINUS256 ; - - ENET_MAC0_AND_UNIQUE_ADDRESS_PAUSEDETECT/ ENET_UNIQUE_PAUSEDETECT ; - - ENET_RX_FLOWCONTROL_ENABLE/ ENET_RX_FLOWCONTROL_DISABLE ; - - ENET_TX_FLOWCONTROL_ENABLE/ ENET_TX_FLOWCONTROL_DISABLE . - HASHH_OPTION related parameters: - - 0x0~0xFFFF FFFFU - HASHL_OPTION related parameters: - - 0x0~0xFFFF FFFFU - FILTER_OPTION related parameters: - - ENET_SRC_FILTER_NORMAL_ENABLE/ ENET_SRC_FILTER_INVERSE_ENABLE/ - ENET_SRC_FILTER_DISABLE ; - - ENET_DEST_FILTER_INVERSE_ENABLE/ ENET_DEST_FILTER_INVERSE_DISABLE ; - - ENET_MULTICAST_FILTER_HASH_OR_PERFECT/ ENET_MULTICAST_FILTER_HASH/ - ENET_MULTICAST_FILTER_PERFECT/ ENET_MULTICAST_FILTER_NONE ; - - ENET_UNICAST_FILTER_EITHER/ ENET_UNICAST_FILTER_HASH/ - ENET_UNICAST_FILTER_PERFECT ; - - ENET_PCFRM_PREVENT_ALL/ ENET_PCFRM_PREVENT_PAUSEFRAME/ - ENET_PCFRM_FORWARD_ALL/ ENET_PCFRM_FORWARD_FILTERED . - HALFDUPLEX_OPTION related parameters: - - ENET_CARRIERSENSE_ENABLE/ ENET_CARRIERSENSE_DISABLE ; - - ENET_RECEIVEOWN_ENABLE/ ENET_RECEIVEOWN_DISABLE ; - - ENET_RETRYTRANSMISSION_ENABLE/ ENET_RETRYTRANSMISSION_DISABLE ; - - ENET_BACKOFFLIMIT_10/ ENET_BACKOFFLIMIT_8/ - ENET_BACKOFFLIMIT_4/ ENET_BACKOFFLIMIT_1 ; - - ENET_DEFERRALCHECK_ENABLE/ ENET_DEFERRALCHECK_DISABLE . - TIMER_OPTION related parameters: - - ENET_WATCHDOG_ENABLE/ ENET_WATCHDOG_DISABLE ; - - ENET_JABBER_ENABLE/ ENET_JABBER_DISABLE ; - INTERFRAMEGAP_OPTION related parameters: - - ENET_INTERFRAMEGAP_96BIT/ ENET_INTERFRAMEGAP_88BIT/ - ENET_INTERFRAMEGAP_80BIT/ ENET_INTERFRAMEGAP_72BIT/ - ENET_INTERFRAMEGAP_64BIT/ ENET_INTERFRAMEGAP_56BIT/ - ENET_INTERFRAMEGAP_48BIT/ ENET_INTERFRAMEGAP_40BIT . - \param[out] none - \retval none -*/ -void enet_initpara_config(enet_option_enum option, uint32_t para) -{ - switch(option){ - case FORWARD_OPTION: - /* choose to configure forward_frame, and save the configuration parameters */ - enet_initpara.option_enable |= (uint32_t)FORWARD_OPTION; - enet_initpara.forward_frame = para; - break; - case DMABUS_OPTION: - /* choose to configure dmabus_mode, and save the configuration parameters */ - enet_initpara.option_enable |= (uint32_t)DMABUS_OPTION; - enet_initpara.dmabus_mode = para; - break; - case DMA_MAXBURST_OPTION: - /* choose to configure dma_maxburst, and save the configuration parameters */ - enet_initpara.option_enable |= (uint32_t)DMA_MAXBURST_OPTION; - enet_initpara.dma_maxburst = para; - break; - case DMA_ARBITRATION_OPTION: - /* choose to configure dma_arbitration, and save the configuration parameters */ - enet_initpara.option_enable |= (uint32_t)DMA_ARBITRATION_OPTION; - enet_initpara.dma_arbitration = para; - break; - case STORE_OPTION: - /* choose to configure store_forward_mode, and save the configuration parameters */ - enet_initpara.option_enable |= (uint32_t)STORE_OPTION; - enet_initpara.store_forward_mode = para; - break; - case DMA_OPTION: - /* choose to configure dma_function, and save the configuration parameters */ - enet_initpara.option_enable |= (uint32_t)DMA_OPTION; - -#ifndef SELECT_DESCRIPTORS_ENHANCED_MODE - para &= ~ENET_ENHANCED_DESCRIPTOR; -#endif /* SELECT_DESCRIPTORS_ENHANCED_MODE */ - - enet_initpara.dma_function = para; - break; - case VLAN_OPTION: - /* choose to configure vlan_config, and save the configuration parameters */ - enet_initpara.option_enable |= (uint32_t)VLAN_OPTION; - enet_initpara.vlan_config = para; - break; - case FLOWCTL_OPTION: - /* choose to configure flow_control, and save the configuration parameters */ - enet_initpara.option_enable |= (uint32_t)FLOWCTL_OPTION; - enet_initpara.flow_control = para; - break; - case HASHH_OPTION: - /* choose to configure hashtable_high, and save the configuration parameters */ - enet_initpara.option_enable |= (uint32_t)HASHH_OPTION; - enet_initpara.hashtable_high = para; - break; - case HASHL_OPTION: - /* choose to configure hashtable_low, and save the configuration parameters */ - enet_initpara.option_enable |= (uint32_t)HASHL_OPTION; - enet_initpara.hashtable_low = para; - break; - case FILTER_OPTION: - /* choose to configure framesfilter_mode, and save the configuration parameters */ - enet_initpara.option_enable |= (uint32_t)FILTER_OPTION; - enet_initpara.framesfilter_mode = para; - break; - case HALFDUPLEX_OPTION: - /* choose to configure halfduplex_param, and save the configuration parameters */ - enet_initpara.option_enable |= (uint32_t)HALFDUPLEX_OPTION; - enet_initpara.halfduplex_param = para; - break; - case TIMER_OPTION: - /* choose to configure timer_config, and save the configuration parameters */ - enet_initpara.option_enable |= (uint32_t)TIMER_OPTION; - enet_initpara.timer_config = para; - break; - case INTERFRAMEGAP_OPTION: - /* choose to configure interframegap, and save the configuration parameters */ - enet_initpara.option_enable |= (uint32_t)INTERFRAMEGAP_OPTION; - enet_initpara.interframegap = para; - break; - default: - break; - } -} - -/*! - \brief initialize ENET peripheral with generally concerned parameters and the less cared - parameters - \param[in] mediamode: PHY mode and mac loopback configurations, refer to enet_mediamode_enum - only one parameter can be selected which is shown as below - \arg ENET_AUTO_NEGOTIATION: PHY auto negotiation - \arg ENET_100M_FULLDUPLEX: 100Mbit/s, full-duplex - \arg ENET_100M_HALFDUPLEX: 100Mbit/s, half-duplex - \arg ENET_10M_FULLDUPLEX: 10Mbit/s, full-duplex - \arg ENET_10M_HALFDUPLEX: 10Mbit/s, half-duplex - \arg ENET_LOOPBACKMODE: MAC in loopback mode at the MII - \param[in] checksum: IP frame checksum offload function, refer to enet_mediamode_enum - only one parameter can be selected which is shown as below - \arg ENET_NO_AUTOCHECKSUM: disable IP frame checksum function - \arg ENET_AUTOCHECKSUM_DROP_FAILFRAMES: enable IP frame checksum function - \arg ENET_AUTOCHECKSUM_ACCEPT_FAILFRAMES: enable IP frame checksum function, and the received frame - with only payload error but no other errors will not be dropped - \param[in] recept: frame filter function, refer to enet_frmrecept_enum - only one parameter can be selected which is shown as below - \arg ENET_PROMISCUOUS_MODE: promiscuous mode enabled - \arg ENET_RECEIVEALL: all received frame are forwarded to application - \arg ENET_BROADCAST_FRAMES_PASS: the address filters pass all received broadcast frames - \arg ENET_BROADCAST_FRAMES_DROP: the address filters filter all incoming broadcast frames - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus enet_init(enet_mediamode_enum mediamode, enet_chksumconf_enum checksum, enet_frmrecept_enum recept) -{ - uint32_t reg_value=0U, reg_temp = 0U, temp = 0U; - uint32_t media_temp = 0U; - uint32_t timeout = 0U; - uint16_t phy_value = 0U; - ErrStatus phy_state= ERROR, enet_state = ERROR; - - /* PHY interface configuration, configure SMI clock and reset PHY chip */ - if(ERROR == enet_phy_config()){ - _ENET_DELAY_(PHY_RESETDELAY); - if(ERROR == enet_phy_config()){ - return enet_state; - } - } - /* initialize ENET peripheral with generally concerned parameters */ - enet_default_init(); - - /* 1st, configure mediamode */ - media_temp = (uint32_t)mediamode; - /* if is PHY auto negotiation */ - if((uint32_t)ENET_AUTO_NEGOTIATION == media_temp){ - /* wait for PHY_LINKED_STATUS bit be set */ - do{ - enet_phy_write_read(ENET_PHY_READ, PHY_ADDRESS, PHY_REG_BSR, &phy_value); - phy_value &= PHY_LINKED_STATUS; - timeout++; - }while((RESET == phy_value) && (timeout < PHY_READ_TO)); - /* return ERROR due to timeout */ - if(PHY_READ_TO == timeout){ - return enet_state; - } - /* reset timeout counter */ - timeout = 0U; - - /* enable auto-negotiation */ - phy_value = PHY_AUTONEGOTIATION; - phy_state = enet_phy_write_read(ENET_PHY_WRITE, PHY_ADDRESS, PHY_REG_BCR, &phy_value); - if(!phy_state){ - /* return ERROR due to write timeout */ - return enet_state; - } - - /* wait for the PHY_AUTONEGO_COMPLETE bit be set */ - do{ - enet_phy_write_read(ENET_PHY_READ, PHY_ADDRESS, PHY_REG_BSR, &phy_value); - phy_value &= PHY_AUTONEGO_COMPLETE; - timeout++; - }while((RESET == phy_value) && (timeout < (uint32_t)PHY_READ_TO)); - /* return ERROR due to timeout */ - if(PHY_READ_TO == timeout){ - return enet_state; - } - /* reset timeout counter */ - timeout = 0U; - - /* read the result of the auto-negotiation */ - enet_phy_write_read(ENET_PHY_READ, PHY_ADDRESS, PHY_SR, &phy_value); - /* configure the duplex mode of MAC following the auto-negotiation result */ - if((uint16_t)RESET != (phy_value & PHY_DUPLEX_STATUS)){ - media_temp = ENET_MODE_FULLDUPLEX; - }else{ - media_temp = ENET_MODE_HALFDUPLEX; - } - /* configure the communication speed of MAC following the auto-negotiation result */ - if((uint16_t)RESET !=(phy_value & PHY_SPEED_STATUS)){ - media_temp |= ENET_SPEEDMODE_10M; - }else{ - media_temp |= ENET_SPEEDMODE_100M; - } - }else{ - phy_value = (uint16_t)((media_temp & ENET_MAC_CFG_DPM) >> 3); - phy_value |= (uint16_t)((media_temp & ENET_MAC_CFG_SPD) >> 1); - phy_state = enet_phy_write_read(ENET_PHY_WRITE, PHY_ADDRESS, PHY_REG_BCR, &phy_value); - if(!phy_state){ - /* return ERROR due to write timeout */ - return enet_state; - } - /* PHY configuration need some time */ - _ENET_DELAY_(PHY_CONFIGDELAY); - } - /* after configuring the PHY, use mediamode to configure registers */ - reg_value = ENET_MAC_CFG; - /* configure ENET_MAC_CFG register */ - reg_value &= (~(ENET_MAC_CFG_SPD |ENET_MAC_CFG_DPM |ENET_MAC_CFG_LBM)); - reg_value |= media_temp; - ENET_MAC_CFG = reg_value; - - - /* 2st, configure checksum */ - if(RESET != ((uint32_t)checksum & ENET_CHECKSUMOFFLOAD_ENABLE)){ - ENET_MAC_CFG |= ENET_CHECKSUMOFFLOAD_ENABLE; - - reg_value = ENET_DMA_CTL; - /* configure ENET_DMA_CTL register */ - reg_value &= ~ENET_DMA_CTL_DTCERFD; - reg_value |= ((uint32_t)checksum & ENET_DMA_CTL_DTCERFD); - ENET_DMA_CTL = reg_value; - } - - /* 3rd, configure recept */ - ENET_MAC_FRMF |= (uint32_t)recept; - - /* 4th, configure different function options */ - /* configure forward_frame related registers */ - if(RESET != (enet_initpara.option_enable & (uint32_t)FORWARD_OPTION)){ - reg_temp = enet_initpara.forward_frame; - - reg_value = ENET_MAC_CFG; - temp = reg_temp; - /* configure ENET_MAC_CFG register */ - reg_value &= (~(ENET_MAC_CFG_TFCD |ENET_MAC_CFG_APCD)); - temp &= (ENET_MAC_CFG_TFCD | ENET_MAC_CFG_APCD); - reg_value |= temp; - ENET_MAC_CFG = reg_value; - - reg_value = ENET_DMA_CTL; - temp = reg_temp; - /* configure ENET_DMA_CTL register */ - reg_value &= (~(ENET_DMA_CTL_FERF |ENET_DMA_CTL_FUF)); - temp &= ((ENET_DMA_CTL_FERF | ENET_DMA_CTL_FUF)<<2); - reg_value |= (temp >> 2); - ENET_DMA_CTL = reg_value; - } - - /* configure dmabus_mode related registers */ - if(RESET != (enet_initpara.option_enable & (uint32_t)DMABUS_OPTION)){ - temp = enet_initpara.dmabus_mode; - - reg_value = ENET_DMA_BCTL; - /* configure ENET_DMA_BCTL register */ - reg_value &= ~(ENET_DMA_BCTL_AA | ENET_DMA_BCTL_FB \ - |ENET_DMA_BCTL_FPBL | ENET_DMA_BCTL_MB); - reg_value |= temp; - ENET_DMA_BCTL = reg_value; - } - - /* configure dma_maxburst related registers */ - if(RESET != (enet_initpara.option_enable & (uint32_t)DMA_MAXBURST_OPTION)){ - temp = enet_initpara.dma_maxburst; - - reg_value = ENET_DMA_BCTL; - /* configure ENET_DMA_BCTL register */ - reg_value &= ~(ENET_DMA_BCTL_RXDP| ENET_DMA_BCTL_PGBL | ENET_DMA_BCTL_UIP); - reg_value |= temp; - ENET_DMA_BCTL = reg_value; - } - - /* configure dma_arbitration related registers */ - if(RESET != (enet_initpara.option_enable & (uint32_t)DMA_ARBITRATION_OPTION)){ - temp = enet_initpara.dma_arbitration; - - reg_value = ENET_DMA_BCTL; - /* configure ENET_DMA_BCTL register */ - reg_value &= ~(ENET_DMA_BCTL_RTPR | ENET_DMA_BCTL_DAB); - reg_value |= temp; - ENET_DMA_BCTL = reg_value; - } - - /* configure store_forward_mode related registers */ - if(RESET != (enet_initpara.option_enable & (uint32_t)STORE_OPTION)){ - temp = enet_initpara.store_forward_mode; - - reg_value = ENET_DMA_CTL; - /* configure ENET_DMA_CTL register */ - reg_value &= ~(ENET_DMA_CTL_RSFD | ENET_DMA_CTL_TSFD| ENET_DMA_CTL_RTHC| ENET_DMA_CTL_TTHC); - reg_value |= temp; - ENET_DMA_CTL = reg_value; - } - - /* configure dma_function related registers */ - if(RESET != (enet_initpara.option_enable & (uint32_t)DMA_OPTION)){ - reg_temp = enet_initpara.dma_function; - - reg_value = ENET_DMA_CTL; - temp = reg_temp; - /* configure ENET_DMA_CTL register */ - reg_value &= (~(ENET_DMA_CTL_DAFRF |ENET_DMA_CTL_OSF)); - temp &= (ENET_DMA_CTL_DAFRF | ENET_DMA_CTL_OSF); - reg_value |= temp; - ENET_DMA_CTL = reg_value; - - reg_value = ENET_DMA_BCTL; - temp = reg_temp; - /* configure ENET_DMA_BCTL register */ - reg_value &= (~ENET_DMA_BCTL_DFM); - temp &= ENET_DMA_BCTL_DFM; - reg_value |= temp; - ENET_DMA_BCTL = reg_value; - } - - /* configure vlan_config related registers */ - if(RESET != (enet_initpara.option_enable & (uint32_t)VLAN_OPTION)){ - reg_temp = enet_initpara.vlan_config; - - reg_value = ENET_MAC_VLT; - /* configure ENET_MAC_VLT register */ - reg_value &= ~(ENET_MAC_VLT_VLTI | ENET_MAC_VLT_VLTC); - reg_value |= reg_temp; - ENET_MAC_VLT = reg_value; - } - - /* configure flow_control related registers */ - if(RESET != (enet_initpara.option_enable & (uint32_t)FLOWCTL_OPTION)){ - reg_temp = enet_initpara.flow_control; - - reg_value = ENET_MAC_FCTL; - temp = reg_temp; - /* configure ENET_MAC_FCTL register */ - reg_value &= ~(ENET_MAC_FCTL_PTM |ENET_MAC_FCTL_DZQP |ENET_MAC_FCTL_PLTS \ - | ENET_MAC_FCTL_UPFDT |ENET_MAC_FCTL_RFCEN |ENET_MAC_FCTL_TFCEN); - temp &= (ENET_MAC_FCTL_PTM |ENET_MAC_FCTL_DZQP |ENET_MAC_FCTL_PLTS \ - | ENET_MAC_FCTL_UPFDT |ENET_MAC_FCTL_RFCEN |ENET_MAC_FCTL_TFCEN); - reg_value |= temp; - ENET_MAC_FCTL = reg_value; - - reg_value = ENET_MAC_FCTH; - temp = reg_temp; - /* configure ENET_MAC_FCTH register */ - reg_value &= ~(ENET_MAC_FCTH_RFA |ENET_MAC_FCTH_RFD); - temp &= ((ENET_MAC_FCTH_RFA | ENET_MAC_FCTH_RFD )<<8); - reg_value |= (temp >> 8); - ENET_MAC_FCTH = reg_value; - } - - /* configure hashtable_high related registers */ - if(RESET != (enet_initpara.option_enable & (uint32_t)HASHH_OPTION)){ - ENET_MAC_HLH = enet_initpara.hashtable_high; - } - - /* configure hashtable_low related registers */ - if(RESET != (enet_initpara.option_enable & (uint32_t)HASHL_OPTION)){ - ENET_MAC_HLL = enet_initpara.hashtable_low; - } - - /* configure framesfilter_mode related registers */ - if(RESET != (enet_initpara.option_enable & (uint32_t)FILTER_OPTION)){ - reg_temp = enet_initpara.framesfilter_mode; - - reg_value = ENET_MAC_FRMF; - /* configure ENET_MAC_FRMF register */ - reg_value &= ~(ENET_MAC_FRMF_SAFLT | ENET_MAC_FRMF_SAIFLT | ENET_MAC_FRMF_DAIFLT \ - | ENET_MAC_FRMF_HMF | ENET_MAC_FRMF_HPFLT | ENET_MAC_FRMF_MFD \ - | ENET_MAC_FRMF_HUF | ENET_MAC_FRMF_PCFRM); - reg_value |= reg_temp; - ENET_MAC_FRMF = reg_value; - } - - /* configure halfduplex_param related registers */ - if(RESET != (enet_initpara.option_enable & (uint32_t)HALFDUPLEX_OPTION)){ - reg_temp = enet_initpara.halfduplex_param; - - reg_value = ENET_MAC_CFG; - /* configure ENET_MAC_CFG register */ - reg_value &= ~(ENET_MAC_CFG_CSD | ENET_MAC_CFG_ROD | ENET_MAC_CFG_RTD \ - | ENET_MAC_CFG_BOL | ENET_MAC_CFG_DFC); - reg_value |= reg_temp; - ENET_MAC_CFG = reg_value; - } - - /* configure timer_config related registers */ - if(RESET != (enet_initpara.option_enable & (uint32_t)TIMER_OPTION)){ - reg_temp = enet_initpara.timer_config; - - reg_value = ENET_MAC_CFG; - /* configure ENET_MAC_CFG register */ - reg_value &= ~(ENET_MAC_CFG_WDD | ENET_MAC_CFG_JBD); - reg_value |= reg_temp; - ENET_MAC_CFG = reg_value; - } - - /* configure interframegap related registers */ - if(RESET != (enet_initpara.option_enable & (uint32_t)INTERFRAMEGAP_OPTION)){ - reg_temp = enet_initpara.interframegap; - - reg_value = ENET_MAC_CFG; - /* configure ENET_MAC_CFG register */ - reg_value &= ~ENET_MAC_CFG_IGBS; - reg_value |= reg_temp; - ENET_MAC_CFG = reg_value; - } - - enet_state = SUCCESS; - return enet_state; -} - -/*! - \brief reset all core internal registers located in CLK_TX and CLK_RX - \param[in] none - \param[out] none - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus enet_software_reset(void) -{ - uint32_t timeout = 0U; - ErrStatus enet_state = ERROR; - uint32_t dma_flag; - - /* reset all core internal registers located in CLK_TX and CLK_RX */ - ENET_DMA_BCTL |= ENET_DMA_BCTL_SWR; - - /* wait for reset operation complete */ - do{ - dma_flag = (ENET_DMA_BCTL & ENET_DMA_BCTL_SWR); - timeout++; - }while((RESET != dma_flag) && (ENET_DELAY_TO != timeout)); - - /* reset operation complete */ - if(RESET == (ENET_DMA_BCTL & ENET_DMA_BCTL_SWR)){ - enet_state = SUCCESS; - } - - return enet_state; -} - -/*! - \brief check receive frame valid and return frame size - \param[in] none - \param[out] none - \retval size of received frame: 0x0 - 0x3FFF -*/ -uint32_t enet_rxframe_size_get(void) -{ - uint32_t size = 0U; - uint32_t status; - - /* get rdes0 information of current RxDMA descriptor */ - status = dma_current_rxdesc->status; - - /* if the desciptor is owned by DMA */ - if((uint32_t)RESET != (status & ENET_RDES0_DAV)){ - return 0U; - } - - /* if has any error, or the frame uses two or more descriptors */ - if((((uint32_t)RESET) != (status & ENET_RDES0_ERRS)) || - (((uint32_t)RESET) == (status & ENET_RDES0_LDES)) || - (((uint32_t)RESET) == (status & ENET_RDES0_FDES))){ - /* drop current receive frame */ - enet_rxframe_drop(); - - return 1U; - } -#ifdef SELECT_DESCRIPTORS_ENHANCED_MODE - /* if is an ethernet-type frame, and IP frame payload error occurred */ - if(((uint32_t)RESET) != (dma_current_rxdesc->status & ENET_RDES0_FRMT) && - ((uint32_t)RESET) != (dma_current_rxdesc->extended_status & ENET_RDES4_IPPLDERR)){ - /* drop current receive frame */ - enet_rxframe_drop(); - - return 1U; - } -#else - /* if is an ethernet-type frame, and IP frame payload error occurred */ - if((((uint32_t)RESET) != (status & ENET_RDES0_FRMT)) && - (((uint32_t)RESET) != (status & ENET_RDES0_PCERR))){ - /* drop current receive frame */ - enet_rxframe_drop(); - - return 1U; - } -#endif - /* if CPU owns current descriptor, no error occured, the frame uses only one descriptor */ - if((((uint32_t)RESET) == (status & ENET_RDES0_DAV)) && - (((uint32_t)RESET) == (status & ENET_RDES0_ERRS)) && - (((uint32_t)RESET) != (status & ENET_RDES0_LDES)) && - (((uint32_t)RESET) != (status & ENET_RDES0_FDES))){ - /* get the size of the received data including CRC */ - size = GET_RDES0_FRML(status); - /* substract the CRC size */ - size = size - 4U; - - /* if is a type frame, and CRC is not included in forwarding frame */ - if((RESET != (ENET_MAC_CFG & ENET_MAC_CFG_TFCD)) && (RESET != (status & ENET_RDES0_FRMT))){ - size = size + 4U; - } - }else{ - enet_unknow_err++; - enet_rxframe_drop(); - - return 1U; - } - - /* return packet size */ - return size; -} - -/*! - \brief initialize the DMA Tx/Rx descriptors's parameters in chain mode - \param[in] direction: the descriptors which users want to init, refer to enet_dmadirection_enum - only one parameter can be selected which is shown as below - \arg ENET_DMA_TX: DMA Tx descriptors - \arg ENET_DMA_RX: DMA Rx descriptors - \param[out] none - \retval none -*/ -void enet_descriptors_chain_init(enet_dmadirection_enum direction) -{ - uint32_t num = 0U, count = 0U, maxsize = 0U; - uint32_t desc_status = 0U, desc_bufsize = 0U; - enet_descriptors_struct *desc, *desc_tab; - uint8_t *buf; - - /* if want to initialize DMA Tx descriptors */ - if (ENET_DMA_TX == direction){ - /* save a copy of the DMA Tx descriptors */ - desc_tab = txdesc_tab; - buf = &tx_buff[0][0]; - count = ENET_TXBUF_NUM; - maxsize = ENET_TXBUF_SIZE; - - /* select chain mode */ - desc_status = ENET_TDES0_TCHM; - - /* configure DMA Tx descriptor table address register */ - ENET_DMA_TDTADDR = (uint32_t)desc_tab; - dma_current_txdesc = desc_tab; - }else{ - /* if want to initialize DMA Rx descriptors */ - /* save a copy of the DMA Rx descriptors */ - desc_tab = rxdesc_tab; - buf = &rx_buff[0][0]; - count = ENET_RXBUF_NUM; - maxsize = ENET_RXBUF_SIZE; - - /* enable receiving */ - desc_status = ENET_RDES0_DAV; - /* select receive chained mode and set buffer1 size */ - desc_bufsize = ENET_RDES1_RCHM | (uint32_t)ENET_RXBUF_SIZE; - - /* configure DMA Rx descriptor table address register */ - ENET_DMA_RDTADDR = (uint32_t)desc_tab; - dma_current_rxdesc = desc_tab; - } - dma_current_ptp_rxdesc = NULL; - dma_current_ptp_txdesc = NULL; - - /* configure each descriptor */ - for(num=0U; num < count; num++){ - /* get the pointer to the next descriptor of the descriptor table */ - desc = desc_tab + num; - - /* configure descriptors */ - desc->status = desc_status; - desc->control_buffer_size = desc_bufsize; - desc->buffer1_addr = (uint32_t)(&buf[num * maxsize]); - - /* if is not the last descriptor */ - if(num < (count - 1U)){ - /* configure the next descriptor address */ - desc->buffer2_next_desc_addr = (uint32_t)(desc_tab + num + 1U); - }else{ - /* when it is the last descriptor, the next descriptor address - equals to first descriptor address in descriptor table */ - desc->buffer2_next_desc_addr = (uint32_t) desc_tab; - } - } -} - -/*! - \brief initialize the DMA Tx/Rx descriptors's parameters in ring mode - \param[in] direction: the descriptors which users want to init, refer to enet_dmadirection_enum - only one parameter can be selected which is shown as below - \arg ENET_DMA_TX: DMA Tx descriptors - \arg ENET_DMA_RX: DMA Rx descriptors - \param[out] none - \retval none -*/ -void enet_descriptors_ring_init(enet_dmadirection_enum direction) -{ - uint32_t num = 0U, count = 0U, maxsize = 0U; - uint32_t desc_status = 0U, desc_bufsize = 0U; - enet_descriptors_struct *desc; - enet_descriptors_struct *desc_tab; - uint8_t *buf; - - /* configure descriptor skip length */ - ENET_DMA_BCTL &= ~ENET_DMA_BCTL_DPSL; - ENET_DMA_BCTL |= DMA_BCTL_DPSL(0); - - /* if want to initialize DMA Tx descriptors */ - if (ENET_DMA_TX == direction){ - /* save a copy of the DMA Tx descriptors */ - desc_tab = txdesc_tab; - buf = &tx_buff[0][0]; - count = ENET_TXBUF_NUM; - maxsize = ENET_TXBUF_SIZE; - - /* configure DMA Tx descriptor table address register */ - ENET_DMA_TDTADDR = (uint32_t)desc_tab; - dma_current_txdesc = desc_tab; - }else{ - /* if want to initialize DMA Rx descriptors */ - /* save a copy of the DMA Rx descriptors */ - desc_tab = rxdesc_tab; - buf = &rx_buff[0][0]; - count = ENET_RXBUF_NUM; - maxsize = ENET_RXBUF_SIZE; - - /* enable receiving */ - desc_status = ENET_RDES0_DAV; - /* set buffer1 size */ - desc_bufsize = ENET_RXBUF_SIZE; - - /* configure DMA Rx descriptor table address register */ - ENET_DMA_RDTADDR = (uint32_t)desc_tab; - dma_current_rxdesc = desc_tab; - } - dma_current_ptp_rxdesc = NULL; - dma_current_ptp_txdesc = NULL; - - /* configure each descriptor */ - for(num=0U; num < count; num++){ - /* get the pointer to the next descriptor of the descriptor table */ - desc = desc_tab + num; - - /* configure descriptors */ - desc->status = desc_status; - desc->control_buffer_size = desc_bufsize; - desc->buffer1_addr = (uint32_t)(&buf[num * maxsize]); - - /* when it is the last descriptor */ - if(num == (count - 1U)){ - if (ENET_DMA_TX == direction){ - /* configure transmit end of ring mode */ - desc->status |= ENET_TDES0_TERM; - }else{ - /* configure receive end of ring mode */ - desc->control_buffer_size |= ENET_RDES1_RERM; - } - } - } -} - -/*! - \brief handle current received frame data to application buffer - \param[in] bufsize: the size of buffer which is the parameter in function - \param[out] buffer: pointer to the received frame data - note -- if the input is NULL, user should copy data in application by himself - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus enet_frame_receive(uint8_t *buffer, uint32_t bufsize) -{ - uint32_t offset = 0U, size = 0U; - - /* the descriptor is busy due to own by the DMA */ - if((uint32_t)RESET != (dma_current_rxdesc->status & ENET_RDES0_DAV)){ - return ERROR; - } - - - /* if buffer pointer is null, indicates that users has copied data in application */ - if(NULL != buffer){ - /* if no error occurs, and the frame uses only one descriptor */ - if((((uint32_t)RESET) == (dma_current_rxdesc->status & ENET_RDES0_ERRS)) && - (((uint32_t)RESET) != (dma_current_rxdesc->status & ENET_RDES0_LDES)) && - (((uint32_t)RESET) != (dma_current_rxdesc->status & ENET_RDES0_FDES))){ - /* get the frame length except CRC */ - size = GET_RDES0_FRML(dma_current_rxdesc->status); - size = size - 4U; - - /* if is a type frame, and CRC is not included in forwarding frame */ - if((RESET != (ENET_MAC_CFG & ENET_MAC_CFG_TFCD)) && (RESET != (dma_current_rxdesc->status & ENET_RDES0_FRMT))){ - size = size + 4U; - } - - /* to avoid situation that the frame size exceeds the buffer length */ - if(size > bufsize){ - return ERROR; - } - - /* copy data from Rx buffer to application buffer */ - for(offset = 0U; offsetbuffer1_addr) + offset)); - } - - }else{ - /* return ERROR */ - return ERROR; - } - } - /* enable reception, descriptor is owned by DMA */ - dma_current_rxdesc->status = ENET_RDES0_DAV; - - /* check Rx buffer unavailable flag status */ - if ((uint32_t)RESET != (ENET_DMA_STAT & ENET_DMA_STAT_RBU)){ - /* clear RBU flag */ - ENET_DMA_STAT = ENET_DMA_STAT_RBU; - /* resume DMA reception by writing to the RPEN register*/ - ENET_DMA_RPEN = 0U; - } - - /* update the current RxDMA descriptor pointer to the next decriptor in RxDMA decriptor table */ - /* chained mode */ - if((uint32_t)RESET != (dma_current_rxdesc->control_buffer_size & ENET_RDES1_RCHM)){ - dma_current_rxdesc = (enet_descriptors_struct*) (dma_current_rxdesc->buffer2_next_desc_addr); - }else{ - /* ring mode */ - if((uint32_t)RESET != (dma_current_rxdesc->control_buffer_size & ENET_RDES1_RERM)){ - /* if is the last descriptor in table, the next descriptor is the table header */ - dma_current_rxdesc = (enet_descriptors_struct*) (ENET_DMA_RDTADDR); - }else{ - /* the next descriptor is the current address, add the descriptor size, and descriptor skip length */ - dma_current_rxdesc = (enet_descriptors_struct*) (uint32_t)((uint32_t)dma_current_rxdesc + ETH_DMARXDESC_SIZE + (GET_DMA_BCTL_DPSL(ENET_DMA_BCTL))); - } - } - - return SUCCESS; -} - -/*! - \brief handle application buffer data to transmit it - \param[in] buffer: pointer to the frame data to be transmitted, - note -- if the input is NULL, user should handle the data in application by himself - \param[in] length: the length of frame data to be transmitted - \param[out] none - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus enet_frame_transmit(uint8_t *buffer, uint32_t length) -{ - uint32_t offset = 0U; - uint32_t dma_tbu_flag, dma_tu_flag; - - /* the descriptor is busy due to own by the DMA */ - if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_DAV)){ - return ERROR; - } - - /* only frame length no more than ENET_MAX_FRAME_SIZE is allowed */ - if(length > ENET_MAX_FRAME_SIZE){ - return ERROR; - } - - /* if buffer pointer is null, indicates that users has handled data in application */ - if(NULL != buffer){ - /* copy frame data from application buffer to Tx buffer */ - for(offset = 0U; offset < length; offset++){ - (*(__IO uint8_t *) (uint32_t)((dma_current_txdesc->buffer1_addr) + offset)) = (*(buffer + offset)); - } - } - - /* set the frame length */ - dma_current_txdesc->control_buffer_size = length; - /* set the segment of frame, frame is transmitted in one descriptor */ - dma_current_txdesc->status |= ENET_TDES0_LSG | ENET_TDES0_FSG; - /* enable the DMA transmission */ - dma_current_txdesc->status |= ENET_TDES0_DAV; - - /* check Tx buffer unavailable flag status */ - dma_tbu_flag = (ENET_DMA_STAT & ENET_DMA_STAT_TBU); - dma_tu_flag = (ENET_DMA_STAT & ENET_DMA_STAT_TU); - - if ((RESET != dma_tbu_flag) || (RESET != dma_tu_flag)){ - /* clear TBU and TU flag */ - ENET_DMA_STAT = (dma_tbu_flag | dma_tu_flag); - /* resume DMA transmission by writing to the TPEN register*/ - ENET_DMA_TPEN = 0U; - } - - /* update the current TxDMA descriptor pointer to the next decriptor in TxDMA decriptor table*/ - /* chained mode */ - if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_TCHM)){ - dma_current_txdesc = (enet_descriptors_struct*) (dma_current_txdesc->buffer2_next_desc_addr); - }else{ - /* ring mode */ - if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_TERM)){ - /* if is the last descriptor in table, the next descriptor is the table header */ - dma_current_txdesc = (enet_descriptors_struct*) (ENET_DMA_TDTADDR); - }else{ - /* the next descriptor is the current address, add the descriptor size, and descriptor skip length */ - dma_current_txdesc = (enet_descriptors_struct*) (uint32_t)((uint32_t)dma_current_txdesc + ETH_DMATXDESC_SIZE + (GET_DMA_BCTL_DPSL(ENET_DMA_BCTL))); - } - } - - return SUCCESS; -} - -/*! - \brief configure the transmit IP frame checksum offload calculation and insertion - \param[in] desc: the descriptor pointer which users want to configure, refer to enet_descriptors_struct - \param[in] checksum: IP frame checksum configuration - only one parameter can be selected which is shown as below - \arg ENET_CHECKSUM_DISABLE: checksum insertion disabled - \arg ENET_CHECKSUM_IPV4HEADER: only IP header checksum calculation and insertion are enabled - \arg ENET_CHECKSUM_TCPUDPICMP_SEGMENT: TCP/UDP/ICMP checksum insertion calculated but pseudo-header - \arg ENET_CHECKSUM_TCPUDPICMP_FULL: TCP/UDP/ICMP checksum insertion fully calculated - \param[out] none - \retval none -*/ -void enet_transmit_checksum_config(enet_descriptors_struct *desc, uint32_t checksum) -{ - desc->status &= ~ENET_TDES0_CM; - desc->status |= checksum; -} - -/*! - \brief ENET Tx and Rx function enable (include MAC and DMA module) - \param[in] none - \param[out] none - \retval none -*/ -void enet_enable(void) -{ - enet_tx_enable(); - enet_rx_enable(); -} - -/*! - \brief ENET Tx and Rx function disable (include MAC and DMA module) - \param[in] none - \param[out] none - \retval none -*/ -void enet_disable(void) -{ - enet_tx_disable(); - enet_rx_disable(); -} - -/*! - \brief configure MAC address - \param[in] mac_addr: select which MAC address will be set, refer to enet_macaddress_enum - only one parameter can be selected which is shown as below - \arg ENET_MAC_ADDRESS0: set MAC address 0 filter - \arg ENET_MAC_ADDRESS1: set MAC address 1 filter - \arg ENET_MAC_ADDRESS2: set MAC address 2 filter - \arg ENET_MAC_ADDRESS3: set MAC address 3 filter - \param[in] paddr: the buffer pointer which stores the MAC address - (little-ending store, such as MAC address is aa:bb:cc:dd:ee:22, the buffer is {22, ee, dd, cc, bb, aa}) - \param[out] none - \retval none -*/ -void enet_mac_address_set(enet_macaddress_enum mac_addr, uint8_t paddr[]) -{ - REG32(ENET_ADDRH_BASE + (uint32_t)mac_addr) = ENET_SET_MACADDRH(paddr); - REG32(ENET_ADDRL_BASE + (uint32_t)mac_addr) = ENET_SET_MACADDRL(paddr); -} - -/*! - \brief get MAC address - \param[in] mac_addr: select which MAC address will be get, refer to enet_macaddress_enum - only one parameter can be selected which is shown as below - \arg ENET_MAC_ADDRESS0: get MAC address 0 filter - \arg ENET_MAC_ADDRESS1: get MAC address 1 filter - \arg ENET_MAC_ADDRESS2: get MAC address 2 filter - \arg ENET_MAC_ADDRESS3: get MAC address 3 filter - \param[out] paddr: the buffer pointer which is stored the MAC address - (little-ending store, such as mac address is aa:bb:cc:dd:ee:22, the buffer is {22, ee, dd, cc, bb, aa}) - \retval none -*/ -void enet_mac_address_get(enet_macaddress_enum mac_addr, uint8_t paddr[]) -{ - paddr[0] = ENET_GET_MACADDR(mac_addr, 0U); - paddr[1] = ENET_GET_MACADDR(mac_addr, 1U); - paddr[2] = ENET_GET_MACADDR(mac_addr, 2U); - paddr[3] = ENET_GET_MACADDR(mac_addr, 3U); - paddr[4] = ENET_GET_MACADDR(mac_addr, 4U); - paddr[5] = ENET_GET_MACADDR(mac_addr, 5U); -} - -/*! - \brief get the ENET MAC/MSC/PTP/DMA status flag - \param[in] enet_flag: ENET status flag, refer to enet_flag_enum, - only one parameter can be selected which is shown as below - \arg ENET_MAC_FLAG_MPKR: magic packet received flag - \arg ENET_MAC_FLAG_WUFR: wakeup frame received flag - \arg ENET_MAC_FLAG_FLOWCONTROL: flow control status flag - \arg ENET_MAC_FLAG_WUM: WUM status flag - \arg ENET_MAC_FLAG_MSC: MSC status flag - \arg ENET_MAC_FLAG_MSCR: MSC receive status flag - \arg ENET_MAC_FLAG_MSCT: MSC transmit status flag - \arg ENET_MAC_FLAG_TMST: time stamp trigger status flag - \arg ENET_PTP_FLAG_TSSCO: timestamp second counter overflow flag - \arg ENET_PTP_FLAG_TTM: target time match flag - \arg ENET_MSC_FLAG_RFCE: received frames CRC error flag - \arg ENET_MSC_FLAG_RFAE: received frames alignment error flag - \arg ENET_MSC_FLAG_RGUF: received good unicast frames flag - \arg ENET_MSC_FLAG_TGFSC: transmitted good frames single collision flag - \arg ENET_MSC_FLAG_TGFMSC: transmitted good frames more single collision flag - \arg ENET_MSC_FLAG_TGF: transmitted good frames flag - \arg ENET_DMA_FLAG_TS: transmit status flag - \arg ENET_DMA_FLAG_TPS: transmit process stopped status flag - \arg ENET_DMA_FLAG_TBU: transmit buffer unavailable status flag - \arg ENET_DMA_FLAG_TJT: transmit jabber timeout status flag - \arg ENET_DMA_FLAG_RO: receive overflow status flag - \arg ENET_DMA_FLAG_TU: transmit underflow status flag - \arg ENET_DMA_FLAG_RS: receive status flag - \arg ENET_DMA_FLAG_RBU: receive buffer unavailable status flag - \arg ENET_DMA_FLAG_RPS: receive process stopped status flag - \arg ENET_DMA_FLAG_RWT: receive watchdog timeout status flag - \arg ENET_DMA_FLAG_ET: early transmit status flag - \arg ENET_DMA_FLAG_FBE: fatal bus error status flag - \arg ENET_DMA_FLAG_ER: early receive status flag - \arg ENET_DMA_FLAG_AI: abnormal interrupt summary flag - \arg ENET_DMA_FLAG_NI: normal interrupt summary flag - \arg ENET_DMA_FLAG_EB_DMA_ERROR: DMA error flag - \arg ENET_DMA_FLAG_EB_TRANSFER_ERROR: transfer error flag - \arg ENET_DMA_FLAG_EB_ACCESS_ERROR: access error flag - \arg ENET_DMA_FLAG_MSC: MSC status flag - \arg ENET_DMA_FLAG_WUM: WUM status flag - \arg ENET_DMA_FLAG_TST: timestamp trigger status flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus enet_flag_get(enet_flag_enum enet_flag) -{ - if(RESET != (ENET_REG_VAL(enet_flag) & BIT(ENET_BIT_POS(enet_flag)))){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear the ENET DMA status flag - \param[in] enet_flag: ENET DMA flag clear, refer to enet_flag_clear_enum - only one parameter can be selected which is shown as below - \arg ENET_DMA_FLAG_TS_CLR: transmit status flag clear - \arg ENET_DMA_FLAG_TPS_CLR: transmit process stopped status flag clear - \arg ENET_DMA_FLAG_TBU_CLR: transmit buffer unavailable status flag clear - \arg ENET_DMA_FLAG_TJT_CLR: transmit jabber timeout status flag clear - \arg ENET_DMA_FLAG_RO_CLR: receive overflow status flag clear - \arg ENET_DMA_FLAG_TU_CLR: transmit underflow status flag clear - \arg ENET_DMA_FLAG_RS_CLR: receive status flag clear - \arg ENET_DMA_FLAG_RBU_CLR: receive buffer unavailable status flag clear - \arg ENET_DMA_FLAG_RPS_CLR: receive process stopped status flag clear - \arg ENET_DMA_FLAG_RWT_CLR: receive watchdog timeout status flag clear - \arg ENET_DMA_FLAG_ET_CLR: early transmit status flag clear - \arg ENET_DMA_FLAG_FBE_CLR: fatal bus error status flag clear - \arg ENET_DMA_FLAG_ER_CLR: early receive status flag clear - \arg ENET_DMA_FLAG_AI_CLR: abnormal interrupt summary flag clear - \arg ENET_DMA_FLAG_NI_CLR: normal interrupt summary flag clear - \param[out] none - \retval none -*/ -void enet_flag_clear(enet_flag_clear_enum enet_flag) -{ - /* write 1 to the corresponding bit in ENET_DMA_STAT, to clear it */ - ENET_REG_VAL(enet_flag) = BIT(ENET_BIT_POS(enet_flag)); -} - -/*! - \brief enable ENET MAC/MSC/DMA interrupt - \param[in] enet_int: ENET interrupt,, refer to enet_int_enum - only one parameter can be selected which is shown as below - \arg ENET_MAC_INT_WUMIM: WUM interrupt mask - \arg ENET_MAC_INT_TMSTIM: timestamp trigger interrupt mask - \arg ENET_MSC_INT_RFCEIM: received frame CRC error interrupt mask - \arg ENET_MSC_INT_RFAEIM: received frames alignment error interrupt mask - \arg ENET_MSC_INT_RGUFIM: received good unicast frames interrupt mask - \arg ENET_MSC_INT_TGFSCIM: transmitted good frames single collision interrupt mask - \arg ENET_MSC_INT_TGFMSCIM: transmitted good frames more single collision interrupt mask - \arg ENET_MSC_INT_TGFIM: transmitted good frames interrupt mask - \arg ENET_DMA_INT_TIE: transmit interrupt enable - \arg ENET_DMA_INT_TPSIE: transmit process stopped interrupt enable - \arg ENET_DMA_INT_TBUIE: transmit buffer unavailable interrupt enable - \arg ENET_DMA_INT_TJTIE: transmit jabber timeout interrupt enable - \arg ENET_DMA_INT_ROIE: receive overflow interrupt enable - \arg ENET_DMA_INT_TUIE: transmit underflow interrupt enable - \arg ENET_DMA_INT_RIE: receive interrupt enable - \arg ENET_DMA_INT_RBUIE: receive buffer unavailable interrupt enable - \arg ENET_DMA_INT_RPSIE: receive process stopped interrupt enable - \arg ENET_DMA_INT_RWTIE: receive watchdog timeout interrupt enable - \arg ENET_DMA_INT_ETIE: early transmit interrupt enable - \arg ENET_DMA_INT_FBEIE: fatal bus error interrupt enable - \arg ENET_DMA_INT_ERIE: early receive interrupt enable - \arg ENET_DMA_INT_AIE: abnormal interrupt summary enable - \arg ENET_DMA_INT_NIE: normal interrupt summary enable - \param[out] none - \retval none -*/ -void enet_interrupt_enable(enet_int_enum enet_int) -{ - if(DMA_INTEN_REG_OFFSET == ((uint32_t)enet_int >> 6)){ - /* ENET_DMA_INTEN register interrupt */ - ENET_REG_VAL(enet_int) |= BIT(ENET_BIT_POS(enet_int)); - }else{ - /* other INTMSK register interrupt */ - ENET_REG_VAL(enet_int) &= ~BIT(ENET_BIT_POS(enet_int)); - } -} - -/*! - \brief disable ENET MAC/MSC/DMA interrupt - \param[in] enet_int: ENET interrupt, refer to enet_int_enum - only one parameter can be selected which is shown as below - \arg ENET_MAC_INT_WUMIM: WUM interrupt mask - \arg ENET_MAC_INT_TMSTIM: timestamp trigger interrupt mask - \arg ENET_MSC_INT_RFCEIM: received frame CRC error interrupt mask - \arg ENET_MSC_INT_RFAEIM: received frames alignment error interrupt mask - \arg ENET_MSC_INT_RGUFIM: received good unicast frames interrupt mask - \arg ENET_MSC_INT_TGFSCIM: transmitted good frames single collision interrupt mask - \arg ENET_MSC_INT_TGFMSCIM: transmitted good frames more single collision interrupt mask - \arg ENET_MSC_INT_TGFIM: transmitted good frames interrupt mask - \arg ENET_DMA_INT_TIE: transmit interrupt enable - \arg ENET_DMA_INT_TPSIE: transmit process stopped interrupt enable - \arg ENET_DMA_INT_TBUIE: transmit buffer unavailable interrupt enable - \arg ENET_DMA_INT_TJTIE: transmit jabber timeout interrupt enable - \arg ENET_DMA_INT_ROIE: receive overflow interrupt enable - \arg ENET_DMA_INT_TUIE: transmit underflow interrupt enable - \arg ENET_DMA_INT_RIE: receive interrupt enable - \arg ENET_DMA_INT_RBUIE: receive buffer unavailable interrupt enable - \arg ENET_DMA_INT_RPSIE: receive process stopped interrupt enable - \arg ENET_DMA_INT_RWTIE: receive watchdog timeout interrupt enable - \arg ENET_DMA_INT_ETIE: early transmit interrupt enable - \arg ENET_DMA_INT_FBEIE: fatal bus error interrupt enable - \arg ENET_DMA_INT_ERIE: early receive interrupt enable - \arg ENET_DMA_INT_AIE: abnormal interrupt summary enable - \arg ENET_DMA_INT_NIE: normal interrupt summary enable - \param[out] none - \retval none -*/ -void enet_interrupt_disable(enet_int_enum enet_int) -{ - if(DMA_INTEN_REG_OFFSET == ((uint32_t)enet_int >> 6)){ - /* ENET_DMA_INTEN register interrupt */ - ENET_REG_VAL(enet_int) &= ~BIT(ENET_BIT_POS(enet_int)); - }else{ - /* other INTMSK register interrupt */ - ENET_REG_VAL(enet_int) |= BIT(ENET_BIT_POS(enet_int)); - } -} - -/*! - \brief get ENET MAC/MSC/DMA interrupt flag - \param[in] int_flag: ENET interrupt flag, refer to enet_int_flag_enum - only one parameter can be selected which is shown as below - \arg ENET_MAC_INT_FLAG_WUM: WUM status flag - \arg ENET_MAC_INT_FLAG_MSC: MSC status flag - \arg ENET_MAC_INT_FLAG_MSCR: MSC receive status flag - \arg ENET_MAC_INT_FLAG_MSCT: MSC transmit status flag - \arg ENET_MAC_INT_FLAG_TMST: time stamp trigger status flag - \arg ENET_MSC_INT_FLAG_RFCE: received frames CRC error flag - \arg ENET_MSC_INT_FLAG_RFAE: received frames alignment error flag - \arg ENET_MSC_INT_FLAG_RGUF: received good unicast frames flag - \arg ENET_MSC_INT_FLAG_TGFSC: transmitted good frames single collision flag - \arg ENET_MSC_INT_FLAG_TGFMSC: transmitted good frames more single collision flag - \arg ENET_MSC_INT_FLAG_TGF: transmitted good frames flag - \arg ENET_DMA_INT_FLAG_TS: transmit status flag - \arg ENET_DMA_INT_FLAG_TPS: transmit process stopped status flag - \arg ENET_DMA_INT_FLAG_TBU: transmit buffer unavailable status flag - \arg ENET_DMA_INT_FLAG_TJT: transmit jabber timeout status flag - \arg ENET_DMA_INT_FLAG_RO: receive overflow status flag - \arg ENET_DMA_INT_FLAG_TU: transmit underflow status flag - \arg ENET_DMA_INT_FLAG_RS: receive status flag - \arg ENET_DMA_INT_FLAG_RBU: receive buffer unavailable status flag - \arg ENET_DMA_INT_FLAG_RPS: receive process stopped status flag - \arg ENET_DMA_INT_FLAG_RWT: receive watchdog timeout status flag - \arg ENET_DMA_INT_FLAG_ET: early transmit status flag - \arg ENET_DMA_INT_FLAG_FBE: fatal bus error status flag - \arg ENET_DMA_INT_FLAG_ER: early receive status flag - \arg ENET_DMA_INT_FLAG_AI: abnormal interrupt summary flag - \arg ENET_DMA_INT_FLAG_NI: normal interrupt summary flag - \arg ENET_DMA_INT_FLAG_MSC: MSC status flag - \arg ENET_DMA_INT_FLAG_WUM: WUM status flag - \arg ENET_DMA_INT_FLAG_TST: timestamp trigger status flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus enet_interrupt_flag_get(enet_int_flag_enum int_flag) -{ - if(RESET != (ENET_REG_VAL(int_flag) & BIT(ENET_BIT_POS(int_flag)))){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear ENET DMA interrupt flag - \param[in] int_flag_clear: clear ENET interrupt flag, refer to enet_int_flag_clear_enum - only one parameter can be selected which is shown as below - \arg ENET_DMA_INT_FLAG_TS_CLR: transmit status flag - \arg ENET_DMA_INT_FLAG_TPS_CLR: transmit process stopped status flag - \arg ENET_DMA_INT_FLAG_TBU_CLR: transmit buffer unavailable status flag - \arg ENET_DMA_INT_FLAG_TJT_CLR: transmit jabber timeout status flag - \arg ENET_DMA_INT_FLAG_RO_CLR: receive overflow status flag - \arg ENET_DMA_INT_FLAG_TU_CLR: transmit underflow status flag - \arg ENET_DMA_INT_FLAG_RS_CLR: receive status flag - \arg ENET_DMA_INT_FLAG_RBU_CLR: receive buffer unavailable status flag - \arg ENET_DMA_INT_FLAG_RPS_CLR: receive process stopped status flag - \arg ENET_DMA_INT_FLAG_RWT_CLR: receive watchdog timeout status flag - \arg ENET_DMA_INT_FLAG_ET_CLR: early transmit status flag - \arg ENET_DMA_INT_FLAG_FBE_CLR: fatal bus error status flag - \arg ENET_DMA_INT_FLAG_ER_CLR: early receive status flag - \arg ENET_DMA_INT_FLAG_AI_CLR: abnormal interrupt summary flag - \arg ENET_DMA_INT_FLAG_NI_CLR: normal interrupt summary flag - \param[out] none - \retval none -*/ -void enet_interrupt_flag_clear(enet_int_flag_clear_enum int_flag_clear) -{ - /* write 1 to the corresponding bit in ENET_DMA_STAT, to clear it */ - ENET_REG_VAL(int_flag_clear) = BIT(ENET_BIT_POS(int_flag_clear)); -} - -/*! - \brief ENET Tx function enable (include MAC and DMA module) - \param[in] none - \param[out] none - \retval none -*/ -void enet_tx_enable(void) -{ - ENET_MAC_CFG |= ENET_MAC_CFG_TEN; - enet_txfifo_flush(); - ENET_DMA_CTL |= ENET_DMA_CTL_STE; -} - -/*! - \brief ENET Tx function disable (include MAC and DMA module) - \param[in] none - \param[out] none - \retval none -*/ -void enet_tx_disable(void) -{ - ENET_DMA_CTL &= ~ENET_DMA_CTL_STE; - enet_txfifo_flush(); - ENET_MAC_CFG &= ~ENET_MAC_CFG_TEN; -} - -/*! - \brief ENET Rx function enable (include MAC and DMA module) - \param[in] none - \param[out] none - \retval none -*/ -void enet_rx_enable(void) -{ - ENET_MAC_CFG |= ENET_MAC_CFG_REN; - ENET_DMA_CTL |= ENET_DMA_CTL_SRE; -} - -/*! - \brief ENET Rx function disable (include MAC and DMA module) - \param[in] none - \param[out] none - \retval none -*/ -void enet_rx_disable(void) -{ - ENET_DMA_CTL &= ~ENET_DMA_CTL_SRE; - ENET_MAC_CFG &= ~ENET_MAC_CFG_REN; -} - -/*! - \brief put registers value into the application buffer - \param[in] type: register type which will be get, refer to enet_registers_type_enum, - only one parameter can be selected which is shown as below - \arg ALL_MAC_REG: get the registers within the offset scope between ENET_MAC_CFG and ENET_MAC_FCTH - \arg ALL_MSC_REG: get the registers within the offset scope between ENET_MSC_CTL and ENET_MSC_RGUFCNT - \arg ALL_PTP_REG: get the registers within the offset scope between ENET_PTP_TSCTL and ENET_PTP_PPSCTL - \arg ALL_DMA_REG: get the registers within the offset scope between ENET_DMA_BCTL and ENET_DMA_CRBADDR - \param[in] num: the number of registers that the user want to get - \param[out] preg: the application buffer pointer for storing the register value - \retval none -*/ -void enet_registers_get(enet_registers_type_enum type, uint32_t *preg, uint32_t num) -{ - uint32_t offset = 0U, max = 0U, limit = 0U; - - offset = (uint32_t)type; - max = (uint32_t)type + num; - limit = sizeof(enet_reg_tab)/sizeof(uint16_t); - - /* prevent element in this array is out of range */ - if(max > limit){ - max = limit; - } - - for(; offset < max; offset++){ - /* get value of the corresponding register */ - *preg = REG32((ENET) + enet_reg_tab[offset]); - preg++; - } -} - -/*! - \brief get the enet debug status from the debug register - \param[in] mac_debug: enet debug status - only one parameter can be selected which is shown as below - \arg ENET_MAC_RECEIVER_NOT_IDLE: MAC receiver is not in idle state - \arg ENET_RX_ASYNCHRONOUS_FIFO_STATE: Rx asynchronous FIFO status - \arg ENET_RXFIFO_WRITING: RxFIFO is doing write operation - \arg ENET_RXFIFO_READ_STATUS: RxFIFO read operation status - \arg ENET_RXFIFO_STATE: RxFIFO state - \arg ENET_MAC_TRANSMITTER_NOT_IDLE: MAC transmitter is not in idle state - \arg ENET_MAC_TRANSMITTER_STATUS: status of MAC transmitter - \arg ENET_PAUSE_CONDITION_STATUS: pause condition status - \arg ENET_TXFIFO_READ_STATUS: TxFIFO read operation status - \arg ENET_TXFIFO_WRITING: TxFIFO is doing write operation - \arg ENET_TXFIFO_NOT_EMPTY: TxFIFO is not empty - \arg ENET_TXFIFO_FULL: TxFIFO is full - \param[out] none - \retval value of the status users want to get -*/ -uint32_t enet_debug_status_get(uint32_t mac_debug) -{ - uint32_t temp_state = 0U; - - switch(mac_debug){ - case ENET_RX_ASYNCHRONOUS_FIFO_STATE: - temp_state = GET_MAC_DBG_RXAFS(ENET_MAC_DBG); - break; - case ENET_RXFIFO_READ_STATUS: - temp_state = GET_MAC_DBG_RXFRS(ENET_MAC_DBG); - break; - case ENET_RXFIFO_STATE: - temp_state = GET_MAC_DBG_RXFS(ENET_MAC_DBG); - break; - case ENET_MAC_TRANSMITTER_STATUS: - temp_state = GET_MAC_DBG_SOMT(ENET_MAC_DBG); - break; - case ENET_TXFIFO_READ_STATUS: - temp_state = GET_MAC_DBG_TXFRS(ENET_MAC_DBG); - break; - default: - if(RESET != (ENET_MAC_DBG & mac_debug)){ - temp_state = 0x1U; - } - break; - } - return temp_state; -} - -/*! - \brief enable the MAC address filter - \param[in] mac_addr: select which MAC address will be enable, refer to enet_macaddress_enum - \arg ENET_MAC_ADDRESS1: enable MAC address 1 filter - \arg ENET_MAC_ADDRESS2: enable MAC address 2 filter - \arg ENET_MAC_ADDRESS3: enable MAC address 3 filter - \param[out] none - \retval none -*/ -void enet_address_filter_enable(enet_macaddress_enum mac_addr) -{ - REG32(ENET_ADDRH_BASE + mac_addr) |= ENET_MAC_ADDR1H_AFE; -} - -/*! - \brief disable the MAC address filter - \param[in] mac_addr: select which MAC address will be disable, refer to enet_macaddress_enum - only one parameter can be selected which is shown as below - \arg ENET_MAC_ADDRESS1: disable MAC address 1 filter - \arg ENET_MAC_ADDRESS2: disable MAC address 2 filter - \arg ENET_MAC_ADDRESS3: disable MAC address 3 filter - \param[out] none - \retval none -*/ -void enet_address_filter_disable(enet_macaddress_enum mac_addr) -{ - REG32(ENET_ADDRH_BASE + mac_addr) &= ~ENET_MAC_ADDR1H_AFE; -} - -/*! - \brief configure the MAC address filter - \param[in] mac_addr: select which MAC address will be configured, refer to enet_macaddress_enum - only one parameter can be selected which is shown as below - \arg ENET_MAC_ADDRESS1: configure MAC address 1 filter - \arg ENET_MAC_ADDRESS2: configure MAC address 2 filter - \arg ENET_MAC_ADDRESS3: configure MAC address 3 filter - \param[in] addr_mask: select which MAC address bytes will be mask - one or more parameters can be selected which are shown as below - \arg ENET_ADDRESS_MASK_BYTE0: mask ENET_MAC_ADDR1L[7:0] bits - \arg ENET_ADDRESS_MASK_BYTE1: mask ENET_MAC_ADDR1L[15:8] bits - \arg ENET_ADDRESS_MASK_BYTE2: mask ENET_MAC_ADDR1L[23:16] bits - \arg ENET_ADDRESS_MASK_BYTE3: mask ENET_MAC_ADDR1L [31:24] bits - \arg ENET_ADDRESS_MASK_BYTE4: mask ENET_MAC_ADDR1H [7:0] bits - \arg ENET_ADDRESS_MASK_BYTE5: mask ENET_MAC_ADDR1H [15:8] bits - \param[in] filter_type: select which MAC address filter type will be selected - only one parameter can be selected which is shown as below - \arg ENET_ADDRESS_FILTER_SA: The MAC address is used to compared with the SA field of the received frame - \arg ENET_ADDRESS_FILTER_DA: The MAC address is used to compared with the DA field of the received frame - \param[out] none - \retval none -*/ -void enet_address_filter_config(enet_macaddress_enum mac_addr, uint32_t addr_mask, uint32_t filter_type) -{ - uint32_t reg; - - /* get the address filter register value which is to be configured */ - reg = REG32(ENET_ADDRH_BASE + mac_addr); - - /* clear and configure the address filter register */ - reg &= ~(ENET_MAC_ADDR1H_MB | ENET_MAC_ADDR1H_SAF); - reg |= (addr_mask | filter_type); - REG32(ENET_ADDRH_BASE + mac_addr) = reg; -} - -/*! - \brief PHY interface configuration (configure SMI clock and reset PHY chip) - \param[in] none - \param[out] none - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus enet_phy_config(void) -{ - uint32_t ahbclk; - uint32_t reg; - uint16_t phy_value; - ErrStatus enet_state = ERROR; - - /* clear the previous MDC clock */ - reg = ENET_MAC_PHY_CTL; - reg &= ~ENET_MAC_PHY_CTL_CLR; - - /* get the HCLK frequency */ - ahbclk = rcu_clock_freq_get(CK_AHB); - - /* configure MDC clock according to HCLK frequency range */ - if(ENET_RANGE(ahbclk, 20000000U, 35000000U)){ - reg |= ENET_MDC_HCLK_DIV16; - }else if(ENET_RANGE(ahbclk, 35000000U, 60000000U)){ - reg |= ENET_MDC_HCLK_DIV26; - }else if(ENET_RANGE(ahbclk, 60000000U, 100000000U)){ - reg |= ENET_MDC_HCLK_DIV42; - }else if(ENET_RANGE(ahbclk, 100000000U, 150000000U)){ - reg |= ENET_MDC_HCLK_DIV62; - }else if((ENET_RANGE(ahbclk, 150000000U, 200000000U))||(200000000U == ahbclk)){ - reg |= ENET_MDC_HCLK_DIV102; - }else{ - return enet_state; - } - ENET_MAC_PHY_CTL = reg; - - /* reset PHY */ - phy_value = PHY_RESET; - if(ERROR == (enet_phy_write_read(ENET_PHY_WRITE, PHY_ADDRESS, PHY_REG_BCR, &phy_value))){ - return enet_state; - } - /* PHY reset need some time */ - _ENET_DELAY_(ENET_DELAY_TO); - - /* check whether PHY reset is complete */ - if(ERROR == (enet_phy_write_read(ENET_PHY_READ, PHY_ADDRESS, PHY_REG_BCR, &phy_value))){ - return enet_state; - } - - /* PHY reset complete */ - if(RESET == (phy_value & PHY_RESET)){ - enet_state = SUCCESS; - } - - return enet_state; -} - -/*! - \brief write to / read from a PHY register - \param[in] direction: only one parameter can be selected which is shown as below, refer to enet_phydirection_enum - \arg ENET_PHY_WRITE: write data to phy register - \arg ENET_PHY_READ: read data from phy register - \param[in] phy_address: 0x0000 - 0x001F - \param[in] phy_reg: 0x0000 - 0x001F - \param[in] pvalue: the value will be written to the PHY register in ENET_PHY_WRITE direction - \param[out] pvalue: the value will be read from the PHY register in ENET_PHY_READ direction - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus enet_phy_write_read(enet_phydirection_enum direction, uint16_t phy_address, uint16_t phy_reg, uint16_t *pvalue) -{ - uint32_t reg, phy_flag; - uint32_t timeout = 0U; - ErrStatus enet_state = ERROR; - - /* configure ENET_MAC_PHY_CTL with write/read operation */ - reg = ENET_MAC_PHY_CTL; - reg &= ~(ENET_MAC_PHY_CTL_PB | ENET_MAC_PHY_CTL_PW | ENET_MAC_PHY_CTL_PR | ENET_MAC_PHY_CTL_PA); - reg |= (direction | MAC_PHY_CTL_PR(phy_reg) | MAC_PHY_CTL_PA(phy_address) | ENET_MAC_PHY_CTL_PB); - - /* if do the write operation, write value to the register */ - if(ENET_PHY_WRITE == direction){ - ENET_MAC_PHY_DATA = *pvalue; - } - - /* do PHY write/read operation, and wait the operation complete */ - ENET_MAC_PHY_CTL = reg; - do{ - phy_flag = (ENET_MAC_PHY_CTL & ENET_MAC_PHY_CTL_PB); - timeout++; - } - while((RESET != phy_flag) && (ENET_DELAY_TO != timeout)); - - /* write/read operation complete */ - if(RESET == (ENET_MAC_PHY_CTL & ENET_MAC_PHY_CTL_PB)){ - enet_state = SUCCESS; - } - - /* if do the read operation, get value from the register */ - if(ENET_PHY_READ == direction){ - *pvalue = (uint16_t)ENET_MAC_PHY_DATA; - } - - return enet_state; -} - -/*! - \brief enable the loopback function of PHY chip - \param[in] none - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus enet_phyloopback_enable(void) -{ - uint16_t temp_phy = 0U; - ErrStatus phy_state = ERROR; - - /* get the PHY configuration to update it */ - enet_phy_write_read(ENET_PHY_READ, PHY_ADDRESS, PHY_REG_BCR, &temp_phy); - - /* enable the PHY loopback mode */ - temp_phy |= PHY_LOOPBACK; - - /* update the PHY control register with the new configuration */ - phy_state = enet_phy_write_read(ENET_PHY_WRITE, PHY_ADDRESS, PHY_REG_BCR, &temp_phy); - - return phy_state; -} - -/*! - \brief disable the loopback function of PHY chip - \param[in] none - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus enet_phyloopback_disable(void) -{ - uint16_t temp_phy = 0U; - ErrStatus phy_state = ERROR; - - /* get the PHY configuration to update it */ - enet_phy_write_read(ENET_PHY_READ, PHY_ADDRESS, PHY_REG_BCR, &temp_phy); - - /* disable the PHY loopback mode */ - temp_phy &= (uint16_t)~PHY_LOOPBACK; - - /* update the PHY control register with the new configuration */ - phy_state = enet_phy_write_read(ENET_PHY_WRITE, PHY_ADDRESS, PHY_REG_BCR, &temp_phy); - - return phy_state; -} - -/*! - \brief enable ENET forward feature - \param[in] feature: the feature of ENET forward mode - one or more parameters can be selected which are shown as below - \arg ENET_AUTO_PADCRC_DROP: the function of the MAC strips the Pad/FCS field on received frames - \arg ENET_TYPEFRAME_CRC_DROP: the function that FCS field(last 4 bytes) of frame will be dropped before forwarding - \arg ENET_FORWARD_ERRFRAMES: the function that all frame received with error except runt error are forwarded to memory - \arg ENET_FORWARD_UNDERSZ_GOODFRAMES: the function that forwarding undersized good frames - \param[out] none - \retval none -*/ -void enet_forward_feature_enable(uint32_t feature) -{ - uint32_t mask; - - mask = (feature & (~(ENET_FORWARD_ERRFRAMES | ENET_FORWARD_UNDERSZ_GOODFRAMES))); - ENET_MAC_CFG |= mask; - - mask = (feature & (~(ENET_AUTO_PADCRC_DROP | ENET_TYPEFRAME_CRC_DROP))); - ENET_DMA_CTL |= (mask >> 2); -} - -/*! - \brief disable ENET forward feature - \param[in] feature: the feature of ENET forward mode - one or more parameters can be selected which are shown as below - \arg ENET_AUTO_PADCRC_DROP: the automatic zero-quanta generation function - \arg ENET_TYPEFRAME_CRC_DROP: the flow control operation in the MAC - \arg ENET_FORWARD_ERRFRAMES: decoding function for the received pause frame and process it - \arg ENET_FORWARD_UNDERSZ_GOODFRAMES: back pressure operation in the MAC(only use in half-dulex mode) - \param[out] none - \retval none -*/ -void enet_forward_feature_disable(uint32_t feature) -{ - uint32_t mask; - - mask = (feature & (~(ENET_FORWARD_ERRFRAMES | ENET_FORWARD_UNDERSZ_GOODFRAMES))); - ENET_MAC_CFG &= ~mask; - - mask = (feature & (~(ENET_AUTO_PADCRC_DROP | ENET_TYPEFRAME_CRC_DROP))); - ENET_DMA_CTL &= ~(mask >> 2); -} - -/*! - \brief enable ENET fliter feature - \param[in] feature: the feature of ENET fliter mode - one or more parameters can be selected which are shown as below - \arg ENET_SRC_FILTER: filter source address function - \arg ENET_SRC_FILTER_INVERSE: inverse source address filtering result function - \arg ENET_DEST_FILTER_INVERSE: inverse DA filtering result function - \arg ENET_MULTICAST_FILTER_PASS: pass all multicast frames function - \arg ENET_MULTICAST_FILTER_HASH_MODE: HASH multicast filter function - \arg ENET_UNICAST_FILTER_HASH_MODE: HASH unicast filter function - \arg ENET_FILTER_MODE_EITHER: HASH or perfect filter function - \param[out] none - \retval none -*/ -void enet_fliter_feature_enable(uint32_t feature) -{ - ENET_MAC_FRMF |= feature; -} - -/*! - \brief disable ENET fliter feature - \param[in] feature: the feature of ENET fliter mode - one or more parameters can be selected which are shown as below - \arg ENET_SRC_FILTER: filter source address function - \arg ENET_SRC_FILTER_INVERSE: inverse source address filtering result function - \arg ENET_DEST_FILTER_INVERSE: inverse DA filtering result function - \arg ENET_MULTICAST_FILTER_PASS: pass all multicast frames function - \arg ENET_MULTICAST_FILTER_HASH_MODE: HASH multicast filter function - \arg ENET_UNICAST_FILTER_HASH_MODE: HASH unicast filter function - \arg ENET_FILTER_MODE_EITHER: HASH or perfect filter function - \param[out] none - \retval none -*/ -void enet_fliter_feature_disable(uint32_t feature) -{ - ENET_MAC_FRMF &= ~feature; -} - -/*! - \brief generate the pause frame, ENET will send pause frame after enable transmit flow control - this function only use in full-dulex mode - \param[in] none - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus enet_pauseframe_generate(void) -{ - ErrStatus enet_state =ERROR; - uint32_t temp = 0U; - - /* in full-duplex mode, must make sure this bit is 0 before writing register */ - temp = ENET_MAC_FCTL & ENET_MAC_FCTL_FLCBBKPA; - if(RESET == temp){ - ENET_MAC_FCTL |= ENET_MAC_FCTL_FLCBBKPA; - enet_state = SUCCESS; - } - return enet_state; -} - -/*! - \brief configure the pause frame detect type - \param[in] detect: pause frame detect type - only one parameter can be selected which is shown as below - \arg ENET_MAC0_AND_UNIQUE_ADDRESS_PAUSEDETECT: besides the unique multicast address, MAC can also - use the MAC0 address to detecting pause frame - \arg ENET_UNIQUE_PAUSEDETECT: only the unique multicast address for pause frame which is specified - in IEEE802.3 can be detected - \param[out] none - \retval none -*/ -void enet_pauseframe_detect_config(uint32_t detect) -{ - ENET_MAC_FCTL &= ~ENET_MAC_FCTL_UPFDT; - ENET_MAC_FCTL |= detect; -} - -/*! - \brief configure the pause frame parameters - \param[in] pausetime: pause time in transmit pause control frame - \param[in] pause_threshold: the threshold of the pause timer for retransmitting frames automatically - this value must make sure to be less than configured pause time - only one parameter can be selected which is shown as below - \arg ENET_PAUSETIME_MINUS4: pause time minus 4 slot times - \arg ENET_PAUSETIME_MINUS28: pause time minus 28 slot times - \arg ENET_PAUSETIME_MINUS144: pause time minus 144 slot times - \arg ENET_PAUSETIME_MINUS256: pause time minus 256 slot times - \param[out] none - \retval none -*/ -void enet_pauseframe_config(uint32_t pausetime, uint32_t pause_threshold) -{ - ENET_MAC_FCTL &= ~(ENET_MAC_FCTL_PTM | ENET_MAC_FCTL_PLTS); - ENET_MAC_FCTL |= (MAC_FCTL_PTM(pausetime) | pause_threshold); -} - -/*! - \brief configure the threshold of the flow control(deactive and active threshold) - \param[in] deactive: the threshold of the deactive flow control - this value should always be less than active flow control value - only one parameter can be selected which is shown as below - \arg ENET_DEACTIVE_THRESHOLD_256BYTES: threshold level is 256 bytes - \arg ENET_DEACTIVE_THRESHOLD_512BYTES: threshold level is 512 bytes - \arg ENET_DEACTIVE_THRESHOLD_768BYTES: threshold level is 768 bytes - \arg ENET_DEACTIVE_THRESHOLD_1024BYTES: threshold level is 1024 bytes - \arg ENET_DEACTIVE_THRESHOLD_1280BYTES: threshold level is 1280 bytes - \arg ENET_DEACTIVE_THRESHOLD_1536BYTES: threshold level is 1536 bytes - \arg ENET_DEACTIVE_THRESHOLD_1792BYTES: threshold level is 1792 bytes - \param[in] active: the threshold of the active flow control - only one parameter can be selected which is shown as below - \arg ENET_ACTIVE_THRESHOLD_256BYTES: threshold level is 256 bytes - \arg ENET_ACTIVE_THRESHOLD_512BYTES: threshold level is 512 bytes - \arg ENET_ACTIVE_THRESHOLD_768BYTES: threshold level is 768 bytes - \arg ENET_ACTIVE_THRESHOLD_1024BYTES: threshold level is 1024 bytes - \arg ENET_ACTIVE_THRESHOLD_1280BYTES: threshold level is 1280 bytes - \arg ENET_ACTIVE_THRESHOLD_1536BYTES: threshold level is 1536 bytes - \arg ENET_ACTIVE_THRESHOLD_1792BYTES: threshold level is 1792 bytes - \param[out] none - \retval none -*/ -void enet_flowcontrol_threshold_config(uint32_t deactive, uint32_t active) -{ - ENET_MAC_FCTH = ((deactive | active) >> 8); -} - -/*! - \brief enable ENET flow control feature - \param[in] feature: the feature of ENET flow control mode - one or more parameters can be selected which are shown as below - \arg ENET_ZERO_QUANTA_PAUSE: the automatic zero-quanta generation function - \arg ENET_TX_FLOWCONTROL: the flow control operation in the MAC - \arg ENET_RX_FLOWCONTROL: decoding function for the received pause frame and process it - \arg ENET_BACK_PRESSURE: back pressure operation in the MAC(only use in half-dulex mode) - \param[out] none - \retval none -*/ -void enet_flowcontrol_feature_enable(uint32_t feature) -{ - if(RESET != (feature & ENET_ZERO_QUANTA_PAUSE)){ - ENET_MAC_FCTL &= ~ENET_ZERO_QUANTA_PAUSE; - } - feature &= ~ENET_ZERO_QUANTA_PAUSE; - ENET_MAC_FCTL |= feature; -} - -/*! - \brief disable ENET flow control feature - \param[in] feature: the feature of ENET flow control mode - one or more parameters can be selected which are shown as below - \arg ENET_ZERO_QUANTA_PAUSE: the automatic zero-quanta generation function - \arg ENET_TX_FLOWCONTROL: the flow control operation in the MAC - \arg ENET_RX_FLOWCONTROL: decoding function for the received pause frame and process it - \arg ENET_BACK_PRESSURE: back pressure operation in the MAC(only use in half-dulex mode) - \param[out] none - \retval none -*/ -void enet_flowcontrol_feature_disable(uint32_t feature) -{ - if(RESET != (feature & ENET_ZERO_QUANTA_PAUSE)){ - ENET_MAC_FCTL |= ENET_ZERO_QUANTA_PAUSE; - } - feature &= ~ENET_ZERO_QUANTA_PAUSE; - ENET_MAC_FCTL &= ~feature; -} - -/*! - \brief get the dma transmit/receive process state - \param[in] direction: choose the direction of dma process which users want to check, refer to enet_dmadirection_enum - only one parameter can be selected which is shown as below - \arg ENET_DMA_TX: dma transmit process - \arg ENET_DMA_RX: dma receive process - \param[out] none - \retval state of dma process, the value range shows below: - ENET_RX_STATE_STOPPED, ENET_RX_STATE_FETCHING, ENET_RX_STATE_WAITING, - ENET_RX_STATE_SUSPENDED, ENET_RX_STATE_CLOSING, ENET_RX_STATE_QUEUING, - ENET_TX_STATE_STOPPED, ENET_TX_STATE_FETCHING, ENET_TX_STATE_WAITING, - ENET_TX_STATE_READING, ENET_TX_STATE_SUSPENDED, ENET_TX_STATE_CLOSING -*/ -uint32_t enet_dmaprocess_state_get(enet_dmadirection_enum direction) -{ - uint32_t reval; - reval = (uint32_t)(ENET_DMA_STAT & (uint32_t)direction); - return reval; -} - -/*! - \brief poll the DMA transmission/reception enable by writing any value to the - ENET_DMA_TPEN/ENET_DMA_RPEN register, this will make the DMA to resume transmission/reception - \param[in] direction: choose the direction of DMA process which users want to resume, refer to enet_dmadirection_enum - only one parameter can be selected which is shown as below - \arg ENET_DMA_TX: DMA transmit process - \arg ENET_DMA_RX: DMA receive process - \param[out] none - \retval none -*/ -void enet_dmaprocess_resume(enet_dmadirection_enum direction) -{ - if(ENET_DMA_TX == direction){ - ENET_DMA_TPEN = 0U; - }else{ - ENET_DMA_RPEN = 0U; - } -} - -/*! - \brief check and recover the Rx process - \param[in] none - \param[out] none - \retval none -*/ -void enet_rxprocess_check_recovery(void) -{ - uint32_t status; - - /* get DAV information of current RxDMA descriptor */ - status = dma_current_rxdesc->status; - status &= ENET_RDES0_DAV; - - /* if current descriptor is owned by DMA, but the descriptor address mismatches with - receive descriptor address pointer updated by RxDMA controller */ - if((ENET_DMA_CRDADDR != ((uint32_t)dma_current_rxdesc)) && - (ENET_RDES0_DAV == status)){ - dma_current_rxdesc = (enet_descriptors_struct*)ENET_DMA_CRDADDR; - } -} - -/*! - \brief flush the ENET transmit FIFO, and wait until the flush operation completes - \param[in] none - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus enet_txfifo_flush(void) -{ - uint32_t flush_state; - uint32_t timeout = 0U; - ErrStatus enet_state = ERROR; - - /* set the FTF bit for flushing transmit FIFO */ - ENET_DMA_CTL |= ENET_DMA_CTL_FTF; - /* wait until the flush operation completes */ - do{ - flush_state = ENET_DMA_CTL & ENET_DMA_CTL_FTF; - timeout++; - }while((RESET != flush_state) && (timeout < ENET_DELAY_TO)); - /* return ERROR due to timeout */ - if(RESET == flush_state){ - enet_state = SUCCESS; - } - - return enet_state; -} - -/*! - \brief get the transmit/receive address of current descriptor, or current buffer, or descriptor table - \param[in] addr_get: choose the address which users want to get, refer to enet_desc_reg_enum - only one parameter can be selected which is shown as below - \arg ENET_RX_DESC_TABLE: the start address of the receive descriptor table - \arg ENET_RX_CURRENT_DESC: the start descriptor address of the current receive descriptor read by - the RxDMA controller - \arg ENET_RX_CURRENT_BUFFER: the current receive buffer address being read by the RxDMA controller - \arg ENET_TX_DESC_TABLE: the start address of the transmit descriptor table - \arg ENET_TX_CURRENT_DESC: the start descriptor address of the current transmit descriptor read by - the TxDMA controller - \arg ENET_TX_CURRENT_BUFFER: the current transmit buffer address being read by the TxDMA controller - \param[out] none - \retval address value -*/ -uint32_t enet_current_desc_address_get(enet_desc_reg_enum addr_get) -{ - uint32_t reval = 0U; - - reval = REG32((ENET) +(uint32_t)addr_get); - return reval; -} - -/*! - \brief get the Tx or Rx descriptor information - \param[in] desc: the descriptor pointer which users want to get information - \param[in] info_get: the descriptor information type which is selected, refer to enet_descstate_enum - only one parameter can be selected which is shown as below - \arg RXDESC_BUFFER_1_SIZE: receive buffer 1 size - \arg RXDESC_BUFFER_2_SIZE: receive buffer 2 size - \arg RXDESC_FRAME_LENGTH: the byte length of the received frame that was transferred to the buffer - \arg TXDESC_COLLISION_COUNT: the number of collisions occurred before the frame was transmitted - \arg RXDESC_BUFFER_1_ADDR: the buffer1 address of the Rx frame - \arg TXDESC_BUFFER_1_ADDR: the buffer1 address of the Tx frame - \param[out] none - \retval descriptor information, if value is 0xFFFFFFFFU, means the false input parameter -*/ -uint32_t enet_desc_information_get(enet_descriptors_struct *desc, enet_descstate_enum info_get) -{ - uint32_t reval = 0xFFFFFFFFU; - - switch(info_get){ - case RXDESC_BUFFER_1_SIZE: - reval = GET_RDES1_RB1S(desc->control_buffer_size); - break; - case RXDESC_BUFFER_2_SIZE: - reval = GET_RDES1_RB2S(desc->control_buffer_size); - break; - case RXDESC_FRAME_LENGTH: - reval = GET_RDES0_FRML(desc->status); - if(reval > 4U){ - reval = reval - 4U; - - /* if is a type frame, and CRC is not included in forwarding frame */ - if((RESET != (ENET_MAC_CFG & ENET_MAC_CFG_TFCD)) && (RESET != (desc->status & ENET_RDES0_FRMT))){ - reval = reval + 4U; - } - }else{ - reval = 0U; - } - - break; - case RXDESC_BUFFER_1_ADDR: - reval = desc->buffer1_addr; - break; - case TXDESC_BUFFER_1_ADDR: - reval = desc->buffer1_addr; - break; - case TXDESC_COLLISION_COUNT: - reval = GET_TDES0_COCNT(desc->status); - break; - default: - break; - } - return reval; -} - -/*! - \brief get the number of missed frames during receiving - \param[in] none - \param[out] rxfifo_drop: pointer to the number of frames dropped by RxFIFO - \param[out] rxdma_drop: pointer to the number of frames missed by the RxDMA controller - \retval none -*/ -void enet_missed_frame_counter_get(uint32_t *rxfifo_drop, uint32_t *rxdma_drop) -{ - uint32_t temp_counter = 0U; - - temp_counter = ENET_DMA_MFBOCNT; - *rxfifo_drop = GET_DMA_MFBOCNT_MSFA(temp_counter); - *rxdma_drop = GET_DMA_MFBOCNT_MSFC(temp_counter); -} - -/*! - \brief get the bit flag of ENET DMA descriptor - \param[in] desc: the descriptor pointer which users want to get flag - \param[in] desc_flag: the bit flag of ENET DMA descriptor - only one parameter can be selected which is shown as below - \arg ENET_TDES0_DB: deferred - \arg ENET_TDES0_UFE: underflow error - \arg ENET_TDES0_EXD: excessive deferral - \arg ENET_TDES0_VFRM: VLAN frame - \arg ENET_TDES0_ECO: excessive collision - \arg ENET_TDES0_LCO: late collision - \arg ENET_TDES0_NCA: no carrier - \arg ENET_TDES0_LCA: loss of carrier - \arg ENET_TDES0_IPPE: IP payload error - \arg ENET_TDES0_FRMF: frame flushed - \arg ENET_TDES0_JT: jabber timeout - \arg ENET_TDES0_ES: error summary - \arg ENET_TDES0_IPHE: IP header error - \arg ENET_TDES0_TTMSS: transmit timestamp status - \arg ENET_TDES0_TCHM: the second address chained mode - \arg ENET_TDES0_TERM: transmit end of ring mode - \arg ENET_TDES0_TTSEN: transmit timestamp function enable - \arg ENET_TDES0_DPAD: disable adding pad - \arg ENET_TDES0_DCRC: disable CRC - \arg ENET_TDES0_FSG: first segment - \arg ENET_TDES0_LSG: last segment - \arg ENET_TDES0_INTC: interrupt on completion - \arg ENET_TDES0_DAV: DAV bit - - \arg ENET_RDES0_PCERR: payload checksum error - \arg ENET_RDES0_EXSV: extended status valid - \arg ENET_RDES0_CERR: CRC error - \arg ENET_RDES0_DBERR: dribble bit error - \arg ENET_RDES0_RERR: receive error - \arg ENET_RDES0_RWDT: receive watchdog timeout - \arg ENET_RDES0_FRMT: frame type - \arg ENET_RDES0_LCO: late collision - \arg ENET_RDES0_IPHERR: IP frame header error - \arg ENET_RDES0_TSV: timestamp valid - \arg ENET_RDES0_LDES: last descriptor - \arg ENET_RDES0_FDES: first descriptor - \arg ENET_RDES0_VTAG: VLAN tag - \arg ENET_RDES0_OERR: overflow error - \arg ENET_RDES0_LERR: length error - \arg ENET_RDES0_SAFF: SA filter fail - \arg ENET_RDES0_DERR: descriptor error - \arg ENET_RDES0_ERRS: error summary - \arg ENET_RDES0_DAFF: destination address filter fail - \arg ENET_RDES0_DAV: descriptor available - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus enet_desc_flag_get(enet_descriptors_struct *desc, uint32_t desc_flag) -{ - FlagStatus enet_flag = RESET; - - if ((uint32_t)RESET != (desc->status & desc_flag)){ - enet_flag = SET; - } - - return enet_flag; -} - -/*! - \brief set the bit flag of ENET DMA descriptor - \param[in] desc: the descriptor pointer which users want to set flag - \param[in] desc_flag: the bit flag of ENET DMA descriptor - only one parameter can be selected which is shown as below - \arg ENET_TDES0_VFRM: VLAN frame - \arg ENET_TDES0_FRMF: frame flushed - \arg ENET_TDES0_TCHM: the second address chained mode - \arg ENET_TDES0_TERM: transmit end of ring mode - \arg ENET_TDES0_TTSEN: transmit timestamp function enable - \arg ENET_TDES0_DPAD: disable adding pad - \arg ENET_TDES0_DCRC: disable CRC - \arg ENET_TDES0_FSG: first segment - \arg ENET_TDES0_LSG: last segment - \arg ENET_TDES0_INTC: interrupt on completion - \arg ENET_TDES0_DAV: DAV bit - \arg ENET_RDES0_DAV: descriptor available - \param[out] none - \retval none -*/ -void enet_desc_flag_set(enet_descriptors_struct *desc, uint32_t desc_flag) -{ - desc->status |= desc_flag; -} - -/*! - \brief clear the bit flag of ENET DMA descriptor - \param[in] desc: the descriptor pointer which users want to clear flag - \param[in] desc_flag: the bit flag of ENET DMA descriptor - only one parameter can be selected which is shown as below - \arg ENET_TDES0_VFRM: VLAN frame - \arg ENET_TDES0_FRMF: frame flushed - \arg ENET_TDES0_TCHM: the second address chained mode - \arg ENET_TDES0_TERM: transmit end of ring mode - \arg ENET_TDES0_TTSEN: transmit timestamp function enable - \arg ENET_TDES0_DPAD: disable adding pad - \arg ENET_TDES0_DCRC: disable CRC - \arg ENET_TDES0_FSG: first segment - \arg ENET_TDES0_LSG: last segment - \arg ENET_TDES0_INTC: interrupt on completion - \arg ENET_TDES0_DAV: DAV bit - \arg ENET_RDES0_DAV: descriptor available - \param[out] none - \retval none -*/ -void enet_desc_flag_clear(enet_descriptors_struct *desc, uint32_t desc_flag) -{ - desc->status &= ~desc_flag; -} - -/*! - \brief when receiving completed, set RS bit in ENET_DMA_STAT register will immediately set - \param[in] desc: the descriptor pointer which users want to configure - \param[out] none - \retval none -*/ -void enet_rx_desc_immediate_receive_complete_interrupt(enet_descriptors_struct *desc) -{ - desc->control_buffer_size &= ~ENET_RDES1_DINTC; -} - -/*! - \brief when receiving completed, set RS bit in ENET_DMA_STAT register will is set after a configurable delay time - \param[in] desc: the descriptor pointer which users want to configure - \param[in] delay_time: delay a time of 256*delay_time HCLK(0x00000000 - 0x000000FF) - \param[out] none - \retval none -*/ -void enet_rx_desc_delay_receive_complete_interrupt(enet_descriptors_struct *desc, uint32_t delay_time) -{ - desc->control_buffer_size |= ENET_RDES1_DINTC; - ENET_DMA_RSWDC = DMA_RSWDC_WDCFRS(delay_time); -} - -/*! - \brief drop current receive frame - \param[in] none - \param[out] none - \retval none -*/ -void enet_rxframe_drop(void) -{ - /* enable reception, descriptor is owned by DMA */ - dma_current_rxdesc->status = ENET_RDES0_DAV; - - /* chained mode */ - if((uint32_t)RESET != (dma_current_rxdesc->control_buffer_size & ENET_RDES1_RCHM)){ - if(NULL != dma_current_ptp_rxdesc){ - dma_current_rxdesc = (enet_descriptors_struct*) (dma_current_ptp_rxdesc->buffer2_next_desc_addr); - /* if it is the last ptp descriptor */ - if(0U != dma_current_ptp_rxdesc->status){ - /* pointer back to the first ptp descriptor address in the desc_ptptab list address */ - dma_current_ptp_rxdesc = (enet_descriptors_struct*) (dma_current_ptp_rxdesc->status); - }else{ - /* ponter to the next ptp descriptor */ - dma_current_ptp_rxdesc++; - } - }else{ - dma_current_rxdesc = (enet_descriptors_struct*) (dma_current_rxdesc->buffer2_next_desc_addr); - } - - }else{ - /* ring mode */ - if((uint32_t)RESET != (dma_current_rxdesc->control_buffer_size & ENET_RDES1_RERM)){ - /* if is the last descriptor in table, the next descriptor is the table header */ - dma_current_rxdesc = (enet_descriptors_struct*) (ENET_DMA_RDTADDR); - if(NULL != dma_current_ptp_rxdesc){ - dma_current_ptp_rxdesc = (enet_descriptors_struct*) (dma_current_ptp_rxdesc->status); - } - }else{ - /* the next descriptor is the current address, add the descriptor size, and descriptor skip length */ - dma_current_rxdesc = (enet_descriptors_struct*) (uint32_t)((uint32_t)dma_current_rxdesc + ETH_DMARXDESC_SIZE + GET_DMA_BCTL_DPSL(ENET_DMA_BCTL)); - if(NULL != dma_current_ptp_rxdesc){ - dma_current_ptp_rxdesc++; - } - } - } -} - -/*! - \brief enable DMA feature - \param[in] feature: the feature of DMA mode - one or more parameters can be selected which are shown as below - \arg ENET_NO_FLUSH_RXFRAME: RxDMA does not flushes frames function - \arg ENET_SECONDFRAME_OPT: TxDMA controller operate on second frame function - \param[out] none - \retval none -*/ -void enet_dma_feature_enable(uint32_t feature) -{ - ENET_DMA_CTL |= feature; -} - -/*! - \brief disable DMA feature - \param[in] feature: the feature of DMA mode - one or more parameters can be selected which are shown as below - \arg ENET_NO_FLUSH_RXFRAME: RxDMA does not flushes frames function - \arg ENET_SECONDFRAME_OPT: TxDMA controller operate on second frame function - \param[out] none - \retval none -*/ -void enet_dma_feature_disable(uint32_t feature) -{ - ENET_DMA_CTL &= ~feature; -} - -#ifdef SELECT_DESCRIPTORS_ENHANCED_MODE -/*! - \brief get the bit of extended status flag in ENET DMA descriptor - \param[in] desc: the descriptor pointer which users want to get the extended status flag - \param[in] desc_status: the extended status want to get - only one parameter can be selected which is shown as below - \arg ENET_RDES4_IPPLDT: IP frame payload type - \arg ENET_RDES4_IPHERR: IP frame header error - \arg ENET_RDES4_IPPLDERR: IP frame payload error - \arg ENET_RDES4_IPCKSB: IP frame checksum bypassed - \arg ENET_RDES4_IPF4: IP frame in version 4 - \arg ENET_RDES4_IPF6: IP frame in version 6 - \arg ENET_RDES4_PTPMT: PTP message type - \arg ENET_RDES4_PTPOEF: PTP on ethernet frame - \arg ENET_RDES4_PTPVF: PTP version format - \param[out] none - \retval value of extended status -*/ -uint32_t enet_rx_desc_enhanced_status_get(enet_descriptors_struct *desc, uint32_t desc_status) -{ - uint32_t reval = 0xFFFFFFFFU; - - switch (desc_status){ - case ENET_RDES4_IPPLDT: - reval = GET_RDES4_IPPLDT(desc->extended_status); - break; - case ENET_RDES4_PTPMT: - reval = GET_RDES4_PTPMT(desc->extended_status); - break; - default: - if ((uint32_t)RESET != (desc->extended_status & desc_status)){ - reval = 1U; - }else{ - reval = 0U; - } - } - - return reval; -} - -/*! - \brief configure descriptor to work in enhanced mode - \param[in] none - \param[out] none - \retval none -*/ -void enet_desc_select_enhanced_mode(void) -{ - ENET_DMA_BCTL |= ENET_DMA_BCTL_DFM; -} - -/*! - \brief initialize the DMA Tx/Rx descriptors's parameters in enhanced chain mode with ptp function - \param[in] direction: the descriptors which users want to init, refer to enet_dmadirection_enum - only one parameter can be selected which is shown as below - \arg ENET_DMA_TX: DMA Tx descriptors - \arg ENET_DMA_RX: DMA Rx descriptors - \param[out] none - \retval none -*/ -void enet_ptp_enhanced_descriptors_chain_init(enet_dmadirection_enum direction) -{ - uint32_t num = 0U, count = 0U, maxsize = 0U; - uint32_t desc_status = 0U, desc_bufsize = 0U; - enet_descriptors_struct *desc, *desc_tab; - uint8_t *buf; - - /* if want to initialize DMA Tx descriptors */ - if (ENET_DMA_TX == direction){ - /* save a copy of the DMA Tx descriptors */ - desc_tab = txdesc_tab; - buf = &tx_buff[0][0]; - count = ENET_TXBUF_NUM; - maxsize = ENET_TXBUF_SIZE; - - /* select chain mode, and enable transmit timestamp function */ - desc_status = ENET_TDES0_TCHM | ENET_TDES0_TTSEN; - - /* configure DMA Tx descriptor table address register */ - ENET_DMA_TDTADDR = (uint32_t)desc_tab; - dma_current_txdesc = desc_tab; - }else{ - /* if want to initialize DMA Rx descriptors */ - /* save a copy of the DMA Rx descriptors */ - desc_tab = rxdesc_tab; - buf = &rx_buff[0][0]; - count = ENET_RXBUF_NUM; - maxsize = ENET_RXBUF_SIZE; - - /* enable receiving */ - desc_status = ENET_RDES0_DAV; - /* select receive chained mode and set buffer1 size */ - desc_bufsize = ENET_RDES1_RCHM | (uint32_t)ENET_RXBUF_SIZE; - - /* configure DMA Rx descriptor table address register */ - ENET_DMA_RDTADDR = (uint32_t)desc_tab; - dma_current_rxdesc = desc_tab; - } - - /* configuration each descriptor */ - for(num = 0U; num < count; num++){ - /* get the pointer to the next descriptor of the descriptor table */ - desc = desc_tab + num; - - /* configure descriptors */ - desc->status = desc_status; - desc->control_buffer_size = desc_bufsize; - desc->buffer1_addr = (uint32_t)(&buf[num * maxsize]); - - /* if is not the last descriptor */ - if(num < (count - 1U)){ - /* configure the next descriptor address */ - desc->buffer2_next_desc_addr = (uint32_t)(desc_tab + num + 1U); - }else{ - /* when it is the last descriptor, the next descriptor address - equals to first descriptor address in descriptor table */ - desc->buffer2_next_desc_addr = (uint32_t)desc_tab; - } - } -} - -/*! - \brief initialize the DMA Tx/Rx descriptors's parameters in enhanced ring mode with ptp function - \param[in] direction: the descriptors which users want to init, refer to enet_dmadirection_enum - only one parameter can be selected which is shown as below - \arg ENET_DMA_TX: DMA Tx descriptors - \arg ENET_DMA_RX: DMA Rx descriptors - \param[out] none - \retval none -*/ -void enet_ptp_enhanced_descriptors_ring_init(enet_dmadirection_enum direction) -{ - uint32_t num = 0U, count = 0U, maxsize = 0U; - uint32_t desc_status = 0U, desc_bufsize = 0U; - enet_descriptors_struct *desc; - enet_descriptors_struct *desc_tab; - uint8_t *buf; - - /* configure descriptor skip length */ - ENET_DMA_BCTL &= ~ENET_DMA_BCTL_DPSL; - ENET_DMA_BCTL |= DMA_BCTL_DPSL(0); - - /* if want to initialize DMA Tx descriptors */ - if (ENET_DMA_TX == direction){ - /* save a copy of the DMA Tx descriptors */ - desc_tab = txdesc_tab; - buf = &tx_buff[0][0]; - count = ENET_TXBUF_NUM; - maxsize = ENET_TXBUF_SIZE; - - /* select ring mode, and enable transmit timestamp function */ - desc_status = ENET_TDES0_TTSEN; - - /* configure DMA Tx descriptor table address register */ - ENET_DMA_TDTADDR = (uint32_t)desc_tab; - dma_current_txdesc = desc_tab; - }else{ - /* if want to initialize DMA Rx descriptors */ - /* save a copy of the DMA Rx descriptors */ - desc_tab = rxdesc_tab; - buf = &rx_buff[0][0]; - count = ENET_RXBUF_NUM; - maxsize = ENET_RXBUF_SIZE; - - /* enable receiving */ - desc_status = ENET_RDES0_DAV; - /* set buffer1 size */ - desc_bufsize = ENET_RXBUF_SIZE; - - /* configure DMA Rx descriptor table address register */ - ENET_DMA_RDTADDR = (uint32_t)desc_tab; - dma_current_rxdesc = desc_tab; - } - - /* configure each descriptor */ - for(num=0U; num < count; num++){ - /* get the pointer to the next descriptor of the descriptor table */ - desc = desc_tab + num; - - /* configure descriptors */ - desc->status = desc_status; - desc->control_buffer_size = desc_bufsize; - desc->buffer1_addr = (uint32_t)(&buf[num * maxsize]); - - /* when it is the last descriptor */ - if(num == (count - 1U)){ - if (ENET_DMA_TX == direction){ - /* configure transmit end of ring mode */ - desc->status |= ENET_TDES0_TERM; - }else{ - /* configure receive end of ring mode */ - desc->control_buffer_size |= ENET_RDES1_RERM; - } - } - } -} - -/*! - \brief receive a packet data with timestamp values to application buffer, when the DMA is in enhanced mode - \param[in] bufsize: the size of buffer which is the parameter in function - \param[out] buffer: pointer to the application buffer - note -- if the input is NULL, user should copy data in application by himself - \param[out] timestamp: pointer to the table which stores the timestamp high and low - note -- if the input is NULL, timestamp is ignored - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus enet_ptpframe_receive_enhanced_mode(uint8_t *buffer, uint32_t bufsize, uint32_t timestamp[]) -{ - uint32_t offset = 0U, size = 0U; - uint32_t timeout = 0U; - uint32_t rdes0_tsv_flag; - - /* the descriptor is busy due to own by the DMA */ - if((uint32_t)RESET != (dma_current_rxdesc->status & ENET_RDES0_DAV)){ - return ERROR; - } - - /* if buffer pointer is null, indicates that users has copied data in application */ - if(NULL != buffer){ - /* if no error occurs, and the frame uses only one descriptor */ - if(((uint32_t)RESET == (dma_current_rxdesc->status & ENET_RDES0_ERRS)) && - ((uint32_t)RESET != (dma_current_rxdesc->status & ENET_RDES0_LDES)) && - ((uint32_t)RESET != (dma_current_rxdesc->status & ENET_RDES0_FDES))){ - /* get the frame length except CRC */ - size = GET_RDES0_FRML(dma_current_rxdesc->status) - 4U; - - /* if is a type frame, and CRC is not included in forwarding frame */ - if((RESET != (ENET_MAC_CFG & ENET_MAC_CFG_TFCD)) && (RESET != (dma_current_rxdesc->status & ENET_RDES0_FRMT))){ - size = size + 4U; - } - - /* to avoid situation that the frame size exceeds the buffer length */ - if(size > bufsize){ - return ERROR; - } - - /* copy data from Rx buffer to application buffer */ - for(offset = 0; offset < size; offset++){ - (*(buffer + offset)) = (*(__IO uint8_t *)((dma_current_rxdesc->buffer1_addr) + offset)); - } - }else{ - return ERROR; - } - } - - /* if timestamp pointer is null, indicates that users don't care timestamp in application */ - if(NULL != timestamp){ - /* wait for ENET_RDES0_TSV flag to be set, the timestamp value is taken and - write to the RDES6 and RDES7 */ - do{ - rdes0_tsv_flag = (dma_current_rxdesc->status & ENET_RDES0_TSV); - timeout++; - }while ((RESET == rdes0_tsv_flag) && (timeout < ENET_DELAY_TO)); - - /* return ERROR due to timeout */ - if(ENET_DELAY_TO == timeout){ - return ERROR; - } - - /* clear the ENET_RDES0_TSV flag */ - dma_current_rxdesc->status &= ~ENET_RDES0_TSV; - /* get the timestamp value of the received frame */ - timestamp[0] = dma_current_rxdesc->timestamp_low; - timestamp[1] = dma_current_rxdesc->timestamp_high; - } - - /* enable reception, descriptor is owned by DMA */ - dma_current_rxdesc->status = ENET_RDES0_DAV; - - /* check Rx buffer unavailable flag status */ - if ((uint32_t)RESET != (ENET_DMA_STAT & ENET_DMA_STAT_RBU)){ - /* Clear RBU flag */ - ENET_DMA_STAT = ENET_DMA_STAT_RBU; - /* resume DMA reception by writing to the RPEN register*/ - ENET_DMA_RPEN = 0; - } - - /* update the current RxDMA descriptor pointer to the next decriptor in RxDMA decriptor table */ - /* chained mode */ - if((uint32_t)RESET != (dma_current_rxdesc->control_buffer_size & ENET_RDES1_RCHM)){ - dma_current_rxdesc = (enet_descriptors_struct*) (dma_current_rxdesc->buffer2_next_desc_addr); - }else{ - /* ring mode */ - if((uint32_t)RESET != (dma_current_rxdesc->control_buffer_size & ENET_RDES1_RERM)){ - /* if is the last descriptor in table, the next descriptor is the table header */ - dma_current_rxdesc = (enet_descriptors_struct*) (ENET_DMA_RDTADDR); - }else{ - /* the next descriptor is the current address, add the descriptor size, and descriptor skip length */ - dma_current_rxdesc = (enet_descriptors_struct*) ((uint32_t)dma_current_rxdesc + ETH_DMARXDESC_SIZE + GET_DMA_BCTL_DPSL(ENET_DMA_BCTL)); - } - } - - return SUCCESS; -} - -/*! - \brief send data with timestamp values in application buffer as a transmit packet, when the DMA is in enhanced mode - \param[in] buffer: pointer on the application buffer - note -- if the input is NULL, user should copy data in application by himself - \param[in] length: the length of frame data to be transmitted - \param[out] timestamp: pointer to the table which stores the timestamp high and low - note -- if the input is NULL, timestamp is ignored - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus enet_ptpframe_transmit_enhanced_mode(uint8_t *buffer, uint32_t length, uint32_t timestamp[]) -{ - uint32_t offset = 0; - uint32_t dma_tbu_flag, dma_tu_flag; - uint32_t tdes0_ttmss_flag; - uint32_t timeout = 0; - - /* the descriptor is busy due to own by the DMA */ - if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_DAV)){ - return ERROR; - } - - /* only frame length no more than ENET_MAX_FRAME_SIZE is allowed */ - if(length > ENET_MAX_FRAME_SIZE){ - return ERROR; - } - - /* if buffer pointer is null, indicates that users has handled data in application */ - if(NULL != buffer){ - /* copy frame data from application buffer to Tx buffer */ - for(offset = 0; offset < length; offset++){ - (*(__IO uint8_t *)((dma_current_txdesc->buffer1_addr) + offset)) = (*(buffer + offset)); - } - } - /* set the frame length */ - dma_current_txdesc->control_buffer_size = length; - /* set the segment of frame, frame is transmitted in one descriptor */ - dma_current_txdesc->status |= ENET_TDES0_LSG | ENET_TDES0_FSG; - /* enable the DMA transmission */ - dma_current_txdesc->status |= ENET_TDES0_DAV; - - /* check Tx buffer unavailable flag status */ - dma_tbu_flag = (ENET_DMA_STAT & ENET_DMA_STAT_TBU); - dma_tu_flag = (ENET_DMA_STAT & ENET_DMA_STAT_TU); - - if ((RESET != dma_tbu_flag) || (RESET != dma_tu_flag)){ - /* Clear TBU and TU flag */ - ENET_DMA_STAT = (dma_tbu_flag | dma_tu_flag); - /* resume DMA transmission by writing to the TPEN register*/ - ENET_DMA_TPEN = 0; - } - - /* if timestamp pointer is null, indicates that users don't care timestamp in application */ - if(NULL != timestamp){ - /* wait for ENET_TDES0_TTMSS flag to be set, a timestamp was captured */ - do{ - tdes0_ttmss_flag = (dma_current_txdesc->status & ENET_TDES0_TTMSS); - timeout++; - }while((RESET == tdes0_ttmss_flag) && (timeout < ENET_DELAY_TO)); - - /* return ERROR due to timeout */ - if(ENET_DELAY_TO == timeout){ - return ERROR; - } - - /* clear the ENET_TDES0_TTMSS flag */ - dma_current_txdesc->status &= ~ENET_TDES0_TTMSS; - /* get the timestamp value of the transmit frame */ - timestamp[0] = dma_current_txdesc->timestamp_low; - timestamp[1] = dma_current_txdesc->timestamp_high; - } - - /* update the current TxDMA descriptor pointer to the next decriptor in TxDMA decriptor table*/ - /* chained mode */ - if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_TCHM)){ - dma_current_txdesc = (enet_descriptors_struct*) (dma_current_txdesc->buffer2_next_desc_addr); - }else{ - /* ring mode */ - if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_TERM)){ - /* if is the last descriptor in table, the next descriptor is the table header */ - dma_current_txdesc = (enet_descriptors_struct*) (ENET_DMA_TDTADDR); - }else{ - /* the next descriptor is the current address, add the descriptor size, and descriptor skip length */ - dma_current_txdesc = (enet_descriptors_struct*) ((uint32_t)dma_current_txdesc + ETH_DMATXDESC_SIZE + GET_DMA_BCTL_DPSL(ENET_DMA_BCTL)); - } - } - - return SUCCESS; -} - -#else - -/*! - \brief configure descriptor to work in normal mode - \param[in] none - \param[out] none - \retval none -*/ -void enet_desc_select_normal_mode(void) -{ - ENET_DMA_BCTL &= ~ENET_DMA_BCTL_DFM; -} - -/*! - \brief initialize the DMA Tx/Rx descriptors's parameters in normal chain mode with PTP function - \param[in] direction: the descriptors which users want to init, refer to enet_dmadirection_enum - only one parameter can be selected which is shown as below - \arg ENET_DMA_TX: DMA Tx descriptors - \arg ENET_DMA_RX: DMA Rx descriptors - \param[in] desc_ptptab: pointer to the first descriptor address of PTP Rx descriptor table - \param[out] none - \retval none -*/ -void enet_ptp_normal_descriptors_chain_init(enet_dmadirection_enum direction, enet_descriptors_struct *desc_ptptab) -{ - uint32_t num = 0U, count = 0U, maxsize = 0U; - uint32_t desc_status = 0U, desc_bufsize = 0U; - enet_descriptors_struct *desc, *desc_tab; - uint8_t *buf; - - /* if want to initialize DMA Tx descriptors */ - if (ENET_DMA_TX == direction){ - /* save a copy of the DMA Tx descriptors */ - desc_tab = txdesc_tab; - buf = &tx_buff[0][0]; - count = ENET_TXBUF_NUM; - maxsize = ENET_TXBUF_SIZE; - - /* select chain mode, and enable transmit timestamp function */ - desc_status = ENET_TDES0_TCHM | ENET_TDES0_TTSEN; - - /* configure DMA Tx descriptor table address register */ - ENET_DMA_TDTADDR = (uint32_t)desc_tab; - dma_current_txdesc = desc_tab; - dma_current_ptp_txdesc = desc_ptptab; - }else{ - /* if want to initialize DMA Rx descriptors */ - /* save a copy of the DMA Rx descriptors */ - desc_tab = rxdesc_tab; - buf = &rx_buff[0][0]; - count = ENET_RXBUF_NUM; - maxsize = ENET_RXBUF_SIZE; - - /* enable receiving */ - desc_status = ENET_RDES0_DAV; - /* select receive chained mode and set buffer1 size */ - desc_bufsize = ENET_RDES1_RCHM | (uint32_t)ENET_RXBUF_SIZE; - - /* configure DMA Rx descriptor table address register */ - ENET_DMA_RDTADDR = (uint32_t)desc_tab; - dma_current_rxdesc = desc_tab; - dma_current_ptp_rxdesc = desc_ptptab; - } - - /* configure each descriptor */ - for(num = 0U; num < count; num++){ - /* get the pointer to the next descriptor of the descriptor table */ - desc = desc_tab + num; - - /* configure descriptors */ - desc->status = desc_status; - desc->control_buffer_size = desc_bufsize; - desc->buffer1_addr = (uint32_t)(&buf[num * maxsize]); - - /* if is not the last descriptor */ - if(num < (count - 1U)){ - /* configure the next descriptor address */ - desc->buffer2_next_desc_addr = (uint32_t)(desc_tab + num + 1U); - }else{ - /* when it is the last descriptor, the next descriptor address - equals to first descriptor address in descriptor table */ - desc->buffer2_next_desc_addr = (uint32_t)desc_tab; - } - /* set desc_ptptab equal to desc_tab */ - (&desc_ptptab[num])->buffer1_addr = desc->buffer1_addr; - (&desc_ptptab[num])->buffer2_next_desc_addr = desc->buffer2_next_desc_addr; - } - /* when it is the last ptp descriptor, preserve the first descriptor - address of desc_ptptab in ptp descriptor status */ - (&desc_ptptab[num-1U])->status = (uint32_t)desc_ptptab; -} - -/*! - \brief initialize the DMA Tx/Rx descriptors's parameters in normal ring mode with PTP function - \param[in] direction: the descriptors which users want to init, refer to enet_dmadirection_enum - only one parameter can be selected which is shown as below - \arg ENET_DMA_TX: DMA Tx descriptors - \arg ENET_DMA_RX: DMA Rx descriptors - \param[in] desc_ptptab: pointer to the first descriptor address of PTP Rx descriptor table - \param[out] none - \retval none -*/ -void enet_ptp_normal_descriptors_ring_init(enet_dmadirection_enum direction, enet_descriptors_struct *desc_ptptab) -{ - uint32_t num = 0U, count = 0U, maxsize = 0U; - uint32_t desc_status = 0U, desc_bufsize = 0U; - enet_descriptors_struct *desc, *desc_tab; - uint8_t *buf; - - /* configure descriptor skip length */ - ENET_DMA_BCTL &= ~ENET_DMA_BCTL_DPSL; - ENET_DMA_BCTL |= DMA_BCTL_DPSL(0); - - /* if want to initialize DMA Tx descriptors */ - if (ENET_DMA_TX == direction){ - /* save a copy of the DMA Tx descriptors */ - desc_tab = txdesc_tab; - buf = &tx_buff[0][0]; - count = ENET_TXBUF_NUM; - maxsize = ENET_TXBUF_SIZE; - - /* select ring mode, and enable transmit timestamp function */ - desc_status = ENET_TDES0_TTSEN; - - /* configure DMA Tx descriptor table address register */ - ENET_DMA_TDTADDR = (uint32_t)desc_tab; - dma_current_txdesc = desc_tab; - dma_current_ptp_txdesc = desc_ptptab; - }else{ - /* if want to initialize DMA Rx descriptors */ - /* save a copy of the DMA Rx descriptors */ - desc_tab = rxdesc_tab; - buf = &rx_buff[0][0]; - count = ENET_RXBUF_NUM; - maxsize = ENET_RXBUF_SIZE; - - /* enable receiving */ - desc_status = ENET_RDES0_DAV; - /* select receive ring mode and set buffer1 size */ - desc_bufsize = (uint32_t)ENET_RXBUF_SIZE; - - /* configure DMA Rx descriptor table address register */ - ENET_DMA_RDTADDR = (uint32_t)desc_tab; - dma_current_rxdesc = desc_tab; - dma_current_ptp_rxdesc = desc_ptptab; - } - - /* configure each descriptor */ - for(num = 0U; num < count; num++){ - /* get the pointer to the next descriptor of the descriptor table */ - desc = desc_tab + num; - - /* configure descriptors */ - desc->status = desc_status; - desc->control_buffer_size = desc_bufsize; - desc->buffer1_addr = (uint32_t)(&buf[num * maxsize]); - - /* when it is the last descriptor */ - if(num == (count - 1U)){ - if (ENET_DMA_TX == direction){ - /* configure transmit end of ring mode */ - desc->status |= ENET_TDES0_TERM; - }else{ - /* configure receive end of ring mode */ - desc->control_buffer_size |= ENET_RDES1_RERM; - } - } - /* set desc_ptptab equal to desc_tab */ - (&desc_ptptab[num])->buffer1_addr = desc->buffer1_addr; - (&desc_ptptab[num])->buffer2_next_desc_addr = desc->buffer2_next_desc_addr; - } - /* when it is the last ptp descriptor, preserve the first descriptor - address of desc_ptptab in ptp descriptor status */ - (&desc_ptptab[num-1U])->status = (uint32_t)desc_ptptab; -} - -/*! - \brief receive a packet data with timestamp values to application buffer, when the DMA is in normal mode - \param[in] bufsize: the size of buffer which is the parameter in function - \param[out] buffer: pointer to the application buffer - note -- if the input is NULL, user should copy data in application by himself - \param[out] timestamp: pointer to the table which stores the timestamp high and low - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus enet_ptpframe_receive_normal_mode(uint8_t *buffer, uint32_t bufsize, uint32_t timestamp[]) -{ - uint32_t offset = 0U, size = 0U; - - /* the descriptor is busy due to own by the DMA */ - if((uint32_t)RESET != (dma_current_rxdesc->status & ENET_RDES0_DAV)){ - return ERROR; - } - - /* if buffer pointer is null, indicates that users has copied data in application */ - if(NULL != buffer){ - /* if no error occurs, and the frame uses only one descriptor */ - if(((uint32_t)RESET == (dma_current_rxdesc->status & ENET_RDES0_ERRS)) && - ((uint32_t)RESET != (dma_current_rxdesc->status & ENET_RDES0_LDES)) && - ((uint32_t)RESET != (dma_current_rxdesc->status & ENET_RDES0_FDES))){ - - /* get the frame length except CRC */ - size = GET_RDES0_FRML(dma_current_rxdesc->status) - 4U; - /* if is a type frame, and CRC is not included in forwarding frame */ - if((RESET != (ENET_MAC_CFG & ENET_MAC_CFG_TFCD)) && (RESET != (dma_current_rxdesc->status & ENET_RDES0_FRMT))){ - size = size + 4U; - } - - /* to avoid situation that the frame size exceeds the buffer length */ - if(size > bufsize){ - return ERROR; - } - - /* copy data from Rx buffer to application buffer */ - for(offset = 0U; offset < size; offset++){ - (*(buffer + offset)) = (*(__IO uint8_t *)(uint32_t)((dma_current_ptp_rxdesc->buffer1_addr) + offset)); - } - - }else{ - return ERROR; - } - } - /* copy timestamp value from Rx descriptor to application array */ - timestamp[0] = dma_current_rxdesc->buffer1_addr; - timestamp[1] = dma_current_rxdesc->buffer2_next_desc_addr; - - dma_current_rxdesc->buffer1_addr = dma_current_ptp_rxdesc ->buffer1_addr ; - dma_current_rxdesc->buffer2_next_desc_addr = dma_current_ptp_rxdesc ->buffer2_next_desc_addr; - - /* enable reception, descriptor is owned by DMA */ - dma_current_rxdesc->status = ENET_RDES0_DAV; - - /* check Rx buffer unavailable flag status */ - if ((uint32_t)RESET != (ENET_DMA_STAT & ENET_DMA_STAT_RBU)){ - /* clear RBU flag */ - ENET_DMA_STAT = ENET_DMA_STAT_RBU; - /* resume DMA reception by writing to the RPEN register*/ - ENET_DMA_RPEN = 0U; - } - - - /* update the current RxDMA descriptor pointer to the next decriptor in RxDMA decriptor table */ - /* chained mode */ - if((uint32_t)RESET != (dma_current_rxdesc->control_buffer_size & ENET_RDES1_RCHM)){ - dma_current_rxdesc = (enet_descriptors_struct*) (dma_current_ptp_rxdesc->buffer2_next_desc_addr); - /* if it is the last ptp descriptor */ - if(0U != dma_current_ptp_rxdesc->status){ - /* pointer back to the first ptp descriptor address in the desc_ptptab list address */ - dma_current_ptp_rxdesc = (enet_descriptors_struct*) (dma_current_ptp_rxdesc->status); - }else{ - /* ponter to the next ptp descriptor */ - dma_current_ptp_rxdesc++; - } - }else{ - /* ring mode */ - if((uint32_t)RESET != (dma_current_rxdesc->control_buffer_size & ENET_RDES1_RERM)){ - /* if is the last descriptor in table, the next descriptor is the table header */ - dma_current_rxdesc = (enet_descriptors_struct*) (ENET_DMA_RDTADDR); - /* RDES2 and RDES3 will not be covered by buffer address, so do not need to preserve a new table, - use the same table with RxDMA descriptor */ - dma_current_ptp_rxdesc = (enet_descriptors_struct*) (dma_current_ptp_rxdesc->status); - }else{ - /* the next descriptor is the current address, add the descriptor size, and descriptor skip length */ - dma_current_rxdesc = (enet_descriptors_struct*) (uint32_t)((uint32_t)dma_current_rxdesc + ETH_DMARXDESC_SIZE + GET_DMA_BCTL_DPSL(ENET_DMA_BCTL)); - dma_current_ptp_rxdesc ++; - } - } - - return SUCCESS; -} - -/*! - \brief send data with timestamp values in application buffer as a transmit packet, when the DMA is in normal mode - \param[in] buffer: pointer on the application buffer - note -- if the input is NULL, user should copy data in application by himself - \param[in] length: the length of frame data to be transmitted - \param[out] timestamp: pointer to the table which stores the timestamp high and low - note -- if the input is NULL, timestamp is ignored - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus enet_ptpframe_transmit_normal_mode(uint8_t *buffer, uint32_t length, uint32_t timestamp[]) -{ - uint32_t offset = 0U, timeout = 0U; - uint32_t dma_tbu_flag, dma_tu_flag, tdes0_ttmss_flag; - - /* the descriptor is busy due to own by the DMA */ - if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_DAV)){ - return ERROR; - } - - /* only frame length no more than ENET_MAX_FRAME_SIZE is allowed */ - if(length > ENET_MAX_FRAME_SIZE){ - return ERROR; - } - - /* if buffer pointer is null, indicates that users has handled data in application */ - if(NULL != buffer){ - /* copy frame data from application buffer to Tx buffer */ - for(offset = 0U; offset < length; offset++){ - (*(__IO uint8_t *) (uint32_t)((dma_current_ptp_txdesc->buffer1_addr) + offset)) = (*(buffer + offset)); - } - } - /* set the frame length */ - dma_current_txdesc->control_buffer_size = (length & (uint32_t)0x1FFF); - /* set the segment of frame, frame is transmitted in one descriptor */ - dma_current_txdesc->status |= ENET_TDES0_LSG | ENET_TDES0_FSG; - /* enable the DMA transmission */ - dma_current_txdesc->status |= ENET_TDES0_DAV; - - /* check Tx buffer unavailable flag status */ - dma_tbu_flag = (ENET_DMA_STAT & ENET_DMA_STAT_TBU); - dma_tu_flag = (ENET_DMA_STAT & ENET_DMA_STAT_TU); - - if((RESET != dma_tbu_flag) || (RESET != dma_tu_flag)){ - /* clear TBU and TU flag */ - ENET_DMA_STAT = (dma_tbu_flag | dma_tu_flag); - /* resume DMA transmission by writing to the TPEN register*/ - ENET_DMA_TPEN = 0U; - } - - /* if timestamp pointer is null, indicates that users don't care timestamp in application */ - if(NULL != timestamp){ - /* wait for ENET_TDES0_TTMSS flag to be set, a timestamp was captured */ - do{ - tdes0_ttmss_flag = (dma_current_txdesc->status & ENET_TDES0_TTMSS); - timeout++; - }while((RESET == tdes0_ttmss_flag) && (timeout < ENET_DELAY_TO)); - - /* return ERROR due to timeout */ - if(ENET_DELAY_TO == timeout){ - return ERROR; - } - - /* clear the ENET_TDES0_TTMSS flag */ - dma_current_txdesc->status &= ~ENET_TDES0_TTMSS; - /* get the timestamp value of the transmit frame */ - timestamp[0] = dma_current_txdesc->buffer1_addr; - timestamp[1] = dma_current_txdesc->buffer2_next_desc_addr; - } - dma_current_txdesc->buffer1_addr = dma_current_ptp_txdesc ->buffer1_addr ; - dma_current_txdesc->buffer2_next_desc_addr = dma_current_ptp_txdesc ->buffer2_next_desc_addr; - - /* update the current TxDMA descriptor pointer to the next decriptor in TxDMA decriptor table */ - /* chained mode */ - if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_TCHM)){ - dma_current_txdesc = (enet_descriptors_struct*) (dma_current_ptp_txdesc->buffer2_next_desc_addr); - /* if it is the last ptp descriptor */ - if(0U != dma_current_ptp_txdesc->status){ - /* pointer back to the first ptp descriptor address in the desc_ptptab list address */ - dma_current_ptp_txdesc = (enet_descriptors_struct*) (dma_current_ptp_txdesc->status); - }else{ - /* ponter to the next ptp descriptor */ - dma_current_ptp_txdesc++; - } - }else{ - /* ring mode */ - if((uint32_t)RESET != (dma_current_txdesc->status & ENET_TDES0_TERM)){ - /* if is the last descriptor in table, the next descriptor is the table header */ - dma_current_txdesc = (enet_descriptors_struct*) (ENET_DMA_TDTADDR); - /* TDES2 and TDES3 will not be covered by buffer address, so do not need to preserve a new table, - use the same table with TxDMA descriptor */ - dma_current_ptp_txdesc = (enet_descriptors_struct*) (dma_current_ptp_txdesc->status); - }else{ - /* the next descriptor is the current address, add the descriptor size, and descriptor skip length */ - dma_current_txdesc = (enet_descriptors_struct*) (uint32_t)((uint32_t)dma_current_txdesc + ETH_DMATXDESC_SIZE + GET_DMA_BCTL_DPSL(ENET_DMA_BCTL)); - dma_current_ptp_txdesc ++; - } - } - return SUCCESS; -} - -#endif /* SELECT_DESCRIPTORS_ENHANCED_MODE */ - -/*! - \brief wakeup frame filter register pointer reset - \param[in] none - \param[out] none - \retval none -*/ -void enet_wum_filter_register_pointer_reset(void) -{ - ENET_MAC_WUM |= ENET_MAC_WUM_WUFFRPR; -} - -/*! - \brief set the remote wakeup frame registers - \param[in] pdata: pointer to buffer data which is written to remote wakeup frame registers (8 words total) - \param[out] none - \retval none -*/ -void enet_wum_filter_config(uint32_t pdata[]) -{ - uint32_t num = 0U; - - /* configure ENET_MAC_RWFF register */ - for(num = 0U; num < ETH_WAKEUP_REGISTER_LENGTH; num++){ - ENET_MAC_RWFF = pdata[num]; - } -} - -/*! - \brief enable wakeup management features - \param[in] feature: the wake up type which is selected - one or more parameters can be selected which are shown as below - \arg ENET_WUM_POWER_DOWN: power down mode - \arg ENET_WUM_MAGIC_PACKET_FRAME: enable a wakeup event due to magic packet reception - \arg ENET_WUM_WAKE_UP_FRAME: enable a wakeup event due to wakeup frame reception - \arg ENET_WUM_GLOBAL_UNICAST: any received unicast frame passed filter is considered to be a wakeup frame - \param[out] none - \retval none -*/ -void enet_wum_feature_enable(uint32_t feature) -{ - ENET_MAC_WUM |= feature; -} - -/*! - \brief disable wakeup management features - \param[in] feature: the wake up type which is selected - one or more parameters can be selected which are shown as below - \arg ENET_WUM_MAGIC_PACKET_FRAME: enable a wakeup event due to magic packet reception - \arg ENET_WUM_WAKE_UP_FRAME: enable a wakeup event due to wakeup frame reception - \arg ENET_WUM_GLOBAL_UNICAST: any received unicast frame passed filter is considered to be a wakeup frame - \param[out] none - \retval none -*/ -void enet_wum_feature_disable(uint32_t feature) -{ - ENET_MAC_WUM &= (~feature); -} - -/*! - \brief reset the MAC statistics counters - \param[in] none - \param[out] none - \retval none -*/ -void enet_msc_counters_reset(void) -{ - /* reset all counters */ - ENET_MSC_CTL |= ENET_MSC_CTL_CTR; -} - -/*! - \brief enable the MAC statistics counter features - \param[in] feature: the feature of MAC statistics counter - one or more parameters can be selected which are shown as below - \arg ENET_MSC_COUNTER_STOP_ROLLOVER: counter stop rollover - \arg ENET_MSC_RESET_ON_READ: reset on read - \arg ENET_MSC_COUNTERS_FREEZE: MSC counter freeze - \param[out] none - \retval none -*/ -void enet_msc_feature_enable(uint32_t feature) -{ - ENET_MSC_CTL |= feature; -} - -/*! - \brief disable the MAC statistics counter features - \param[in] feature: the feature of MAC statistics counter - one or more parameters can be selected which are shown as below - \arg ENET_MSC_COUNTER_STOP_ROLLOVER: counter stop rollover - \arg ENET_MSC_RESET_ON_READ: reset on read - \arg ENET_MSC_COUNTERS_FREEZE: MSC counter freeze - \param[out] none - \retval none -*/ -void enet_msc_feature_disable(uint32_t feature) -{ - ENET_MSC_CTL &= (~feature); -} - -/*! - \brief configure MAC statistics counters preset mode - \param[in] mode: MSC counters preset mode, refer to enet_msc_preset_enum - only one parameter can be selected which is shown as below - \arg ENET_MSC_PRESET_NONE: do not preset MSC counter - \arg ENET_MSC_PRESET_HALF: preset all MSC counters to almost-half(0x7FFF FFF0) value - \arg ENET_MSC_PRESET_FULL: preset all MSC counters to almost-full(0xFFFF FFF0) value - \param[out] none - \retval none -*/ -void enet_msc_counters_preset_config(enet_msc_preset_enum mode) -{ - ENET_MSC_CTL &= ENET_MSC_PRESET_MASK; - ENET_MSC_CTL |= (uint32_t)mode; -} - -/*! - \brief get MAC statistics counter - \param[in] counter: MSC counters which is selected, refer to enet_msc_counter_enum - only one parameter can be selected which is shown as below - \arg ENET_MSC_TX_SCCNT: MSC transmitted good frames after a single collision counter - \arg ENET_MSC_TX_MSCCNT: MSC transmitted good frames after more than a single collision counter - \arg ENET_MSC_TX_TGFCNT: MSC transmitted good frames counter - \arg ENET_MSC_RX_RFCECNT: MSC received frames with CRC error counter - \arg ENET_MSC_RX_RFAECNT: MSC received frames with alignment error counter - \arg ENET_MSC_RX_RGUFCNT: MSC received good unicast frames counter - \param[out] none - \retval the MSC counter value -*/ -uint32_t enet_msc_counters_get(enet_msc_counter_enum counter) -{ - uint32_t reval; - - reval = REG32((ENET + (uint32_t)counter)); - - return reval; -} - -/*! - \brief enable the PTP features - \param[in] feature: the feature of ENET PTP mode - one or more parameters can be selected which are shown as below - \arg ENET_RXTX_TIMESTAMP: timestamp function for transmit and receive frames - \arg ENET_PTP_TIMESTAMP_INT: timestamp interrupt trigger - \arg ENET_ALL_RX_TIMESTAMP: all received frames are taken snapshot - \arg ENET_NONTYPE_FRAME_SNAPSHOT: take snapshot when received non type frame - \arg ENET_IPV6_FRAME_SNAPSHOT: take snapshot for IPv6 frame - \arg ENET_IPV4_FRAME_SNAPSHOT: take snapshot for IPv4 frame - \arg ENET_PTP_FRAME_USE_MACADDRESS_FILTER: use MAC address1-3 to filter the PTP frame - \param[out] none - \retval none -*/ -void enet_ptp_feature_enable(uint32_t feature) -{ - ENET_PTP_TSCTL |= feature; -} - -/*! - \brief disable the PTP features - \param[in] feature: the feature of ENET PTP mode - one or more parameters can be selected which are shown as below - \arg ENET_RXTX_TIMESTAMP: timestamp function for transmit and receive frames - \arg ENET_PTP_TIMESTAMP_INT: timestamp interrupt trigger - \arg ENET_ALL_RX_TIMESTAMP: all received frames are taken snapshot - \arg ENET_NONTYPE_FRAME_SNAPSHOT: take snapshot when received non type frame - \arg ENET_IPV6_FRAME_SNAPSHOT: take snapshot for IPv6 frame - \arg ENET_IPV4_FRAME_SNAPSHOT: take snapshot for IPv4 frame - \arg ENET_PTP_FRAME_USE_MACADDRESS_FILTER: use MAC address1-3 to filter the PTP frame - \param[out] none - \retval none -*/ -void enet_ptp_feature_disable(uint32_t feature) -{ - ENET_PTP_TSCTL &= ~feature; -} - -/*! - \brief configure the PTP timestamp function - \param[in] func: the function of PTP timestamp - only one parameter can be selected which is shown as below - \arg ENET_CKNT_ORDINARY: type of ordinary clock node type for timestamp - \arg ENET_CKNT_BOUNDARY: type of boundary clock node type for timestamp - \arg ENET_CKNT_END_TO_END: type of end-to-end transparent clock node type for timestamp - \arg ENET_CKNT_PEER_TO_PEER: type of peer-to-peer transparent clock node type for timestamp - \arg ENET_PTP_ADDEND_UPDATE: addend register update - \arg ENET_PTP_SYSTIME_UPDATE: timestamp update - \arg ENET_PTP_SYSTIME_INIT: timestamp initialize - \arg ENET_PTP_FINEMODE: the system timestamp uses the fine method for updating - \arg ENET_PTP_COARSEMODE: the system timestamp uses the coarse method for updating - \arg ENET_SUBSECOND_DIGITAL_ROLLOVER: digital rollover mode - \arg ENET_SUBSECOND_BINARY_ROLLOVER: binary rollover mode - \arg ENET_SNOOPING_PTP_VERSION_2: version 2 - \arg ENET_SNOOPING_PTP_VERSION_1: version 1 - \arg ENET_EVENT_TYPE_MESSAGES_SNAPSHOT: only event type messages are taken snapshot - \arg ENET_ALL_TYPE_MESSAGES_SNAPSHOT: all type messages are taken snapshot except announce, - management and signaling message - \arg ENET_MASTER_NODE_MESSAGE_SNAPSHOT: snapshot is only take for master node message - \arg ENET_SLAVE_NODE_MESSAGE_SNAPSHOT: snapshot is only taken for slave node message - \param[out] none - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus enet_ptp_timestamp_function_config(enet_ptp_function_enum func) -{ - uint32_t temp_config = 0U, temp_state = 0U; - uint32_t timeout = 0U; - ErrStatus enet_state = SUCCESS; - - switch(func){ - case ENET_CKNT_ORDINARY: - case ENET_CKNT_BOUNDARY: - case ENET_CKNT_END_TO_END: - case ENET_CKNT_PEER_TO_PEER: - ENET_PTP_TSCTL &= ~ENET_PTP_TSCTL_CKNT; - ENET_PTP_TSCTL |= (uint32_t)func; - break; - case ENET_PTP_ADDEND_UPDATE: - /* this bit must be read as zero before application set it */ - do{ - temp_state = ENET_PTP_TSCTL & ENET_PTP_TSCTL_TMSARU; - timeout++; - }while((RESET != temp_state) && (timeout < ENET_DELAY_TO)); - /* return ERROR due to timeout */ - if(ENET_DELAY_TO == timeout){ - enet_state = ERROR; - }else{ - ENET_PTP_TSCTL |= ENET_PTP_TSCTL_TMSARU; - } - break; - case ENET_PTP_SYSTIME_UPDATE: - /* both the TMSSTU and TMSSTI bits must be read as zero before application set this bit */ - do{ - temp_state = ENET_PTP_TSCTL & (ENET_PTP_TSCTL_TMSSTU | ENET_PTP_TSCTL_TMSSTI); - timeout++; - }while((RESET != temp_state) && (timeout < ENET_DELAY_TO)); - /* return ERROR due to timeout */ - if(ENET_DELAY_TO == timeout){ - enet_state = ERROR; - }else{ - ENET_PTP_TSCTL |= ENET_PTP_TSCTL_TMSSTU; - } - break; - case ENET_PTP_SYSTIME_INIT: - /* this bit must be read as zero before application set it */ - do{ - temp_state = ENET_PTP_TSCTL & ENET_PTP_TSCTL_TMSSTI; - timeout++; - }while((RESET != temp_state) && (timeout < ENET_DELAY_TO)); - /* return ERROR due to timeout */ - if(ENET_DELAY_TO == timeout){ - enet_state = ERROR; - }else{ - ENET_PTP_TSCTL |= ENET_PTP_TSCTL_TMSSTI; - } - break; - default: - temp_config = (uint32_t)func & (~BIT(31)); - if(RESET != ((uint32_t)func & BIT(31))){ - ENET_PTP_TSCTL |= temp_config; - }else{ - ENET_PTP_TSCTL &= ~temp_config; - } - break; - } - - return enet_state; -} - -/*! - \brief configure system time subsecond increment value - \param[in] subsecond: the value will be added to the subsecond value of system time(0x00000000 - 0x000000FF) - \param[out] none - \retval none -*/ -void enet_ptp_subsecond_increment_config(uint32_t subsecond) -{ - ENET_PTP_SSINC = PTP_SSINC_STMSSI(subsecond); -} - -/*! - \brief adjusting the clock frequency only in fine update mode - \param[in] add: the value will be added to the accumulator register to achieve time synchronization - \param[out] none - \retval none -*/ -void enet_ptp_timestamp_addend_config(uint32_t add) -{ - ENET_PTP_TSADDEND = add; -} - -/*! - \brief initialize or add/subtract to second of the system time - \param[in] sign: timestamp update positive or negative sign - only one parameter can be selected which is shown as below - \arg ENET_PTP_ADD_TO_TIME: timestamp update value is added to system time - \arg ENET_PTP_SUBSTRACT_FROM_TIME: timestamp update value is subtracted from system time - \param[in] second: initializing or adding/subtracting to second of the system time - \param[in] subsecond: the current subsecond of the system time - with 0.46 ns accuracy if required accuracy is 20 ns - \param[out] none - \retval none -*/ -void enet_ptp_timestamp_update_config(uint32_t sign, uint32_t second, uint32_t subsecond) -{ - ENET_PTP_TSUH = second; - ENET_PTP_TSUL = sign | PTP_TSUL_TMSUSS(subsecond); -} - -/*! - \brief configure the expected target time - \param[in] second: the expected target second time - \param[in] nanosecond: the expected target nanosecond time (signed) - \param[out] none - \retval none -*/ -void enet_ptp_expected_time_config(uint32_t second, uint32_t nanosecond) -{ - ENET_PTP_ETH = second; - ENET_PTP_ETL = nanosecond; -} - -/*! - \brief get the current system time - \param[in] none - \param[out] systime_struct: pointer to a enet_ptp_systime_struct structure which contains - parameters of PTP system time - members of the structure and the member values are shown as below: - second: 0x0 - 0xFFFF FFFF - subsecond: 0x0 - 0x7FFF FFFF - sign: ENET_PTP_TIME_POSITIVE, ENET_PTP_TIME_NEGATIVE - \retval none -*/ -void enet_ptp_system_time_get(enet_ptp_systime_struct *systime_struct) -{ - uint32_t temp_sec = 0U, temp_subs = 0U; - - /* get the value of sysytem time registers */ - temp_sec = (uint32_t)ENET_PTP_TSH; - temp_subs = (uint32_t)ENET_PTP_TSL; - - /* get sysytem time and construct the enet_ptp_systime_struct structure */ - systime_struct->second = temp_sec; - systime_struct->subsecond = GET_PTP_TSL_STMSS(temp_subs); - systime_struct->sign = GET_PTP_TSL_STS(temp_subs); -} - -/*! - \brief configure the PPS output frequency - \param[in] freq: PPS output frequency - only one parameter can be selected which is shown as below - \arg ENET_PPSOFC_1HZ: PPS output 1Hz frequency - \arg ENET_PPSOFC_2HZ: PPS output 2Hz frequency - \arg ENET_PPSOFC_4HZ: PPS output 4Hz frequency - \arg ENET_PPSOFC_8HZ: PPS output 8Hz frequency - \arg ENET_PPSOFC_16HZ: PPS output 16Hz frequency - \arg ENET_PPSOFC_32HZ: PPS output 32Hz frequency - \arg ENET_PPSOFC_64HZ: PPS output 64Hz frequency - \arg ENET_PPSOFC_128HZ: PPS output 128Hz frequency - \arg ENET_PPSOFC_256HZ: PPS output 256Hz frequency - \arg ENET_PPSOFC_512HZ: PPS output 512Hz frequency - \arg ENET_PPSOFC_1024HZ: PPS output 1024Hz frequency - \arg ENET_PPSOFC_2048HZ: PPS output 2048Hz frequency - \arg ENET_PPSOFC_4096HZ: PPS output 4096Hz frequency - \arg ENET_PPSOFC_8192HZ: PPS output 8192Hz frequency - \arg ENET_PPSOFC_16384HZ: PPS output 16384Hz frequency - \arg ENET_PPSOFC_32768HZ: PPS output 32768Hz frequency - \param[out] none - \retval none -*/ -void enet_ptp_pps_output_frequency_config(uint32_t freq) -{ - ENET_PTP_PPSCTL = freq; -} - -/*! - \brief reset the ENET initpara struct, call it before using enet_initpara_config() - \param[in] none - \param[out] none - \retval none -*/ -void enet_initpara_reset(void) -{ - enet_initpara.option_enable = 0U; - enet_initpara.forward_frame = 0U; - enet_initpara.dmabus_mode = 0U; - enet_initpara.dma_maxburst = 0U; - enet_initpara.dma_arbitration = 0U; - enet_initpara.store_forward_mode = 0U; - enet_initpara.dma_function = 0U; - enet_initpara.vlan_config = 0U; - enet_initpara.flow_control = 0U; - enet_initpara.hashtable_high = 0U; - enet_initpara.hashtable_low = 0U; - enet_initpara.framesfilter_mode = 0U; - enet_initpara.halfduplex_param = 0U; - enet_initpara.timer_config = 0U; - enet_initpara.interframegap = 0U; -} - -/*! - \brief initialize ENET peripheral with generally concerned parameters, call it by enet_init() - \param[in] none - \param[out] none - \retval none -*/ -static void enet_default_init(void) -{ - uint32_t reg_value = 0U; - - /* MAC */ - /* configure ENET_MAC_CFG register */ - reg_value = ENET_MAC_CFG; - reg_value &= MAC_CFG_MASK; - reg_value |= ENET_WATCHDOG_ENABLE | ENET_JABBER_ENABLE | ENET_INTERFRAMEGAP_96BIT \ - | ENET_SPEEDMODE_10M |ENET_MODE_HALFDUPLEX | ENET_LOOPBACKMODE_DISABLE \ - | ENET_CARRIERSENSE_ENABLE | ENET_RECEIVEOWN_ENABLE \ - | ENET_RETRYTRANSMISSION_ENABLE | ENET_BACKOFFLIMIT_10 \ - | ENET_DEFERRALCHECK_DISABLE \ - | ENET_TYPEFRAME_CRC_DROP_DISABLE \ - | ENET_AUTO_PADCRC_DROP_DISABLE \ - | ENET_CHECKSUMOFFLOAD_DISABLE; - ENET_MAC_CFG = reg_value; - - /* configure ENET_MAC_FRMF register */ - ENET_MAC_FRMF = ENET_SRC_FILTER_DISABLE |ENET_DEST_FILTER_INVERSE_DISABLE \ - |ENET_MULTICAST_FILTER_PERFECT |ENET_UNICAST_FILTER_PERFECT \ - |ENET_PCFRM_PREVENT_ALL |ENET_BROADCASTFRAMES_ENABLE \ - |ENET_PROMISCUOUS_DISABLE |ENET_RX_FILTER_ENABLE; - - /* configure ENET_MAC_HLH, ENET_MAC_HLL register */ - ENET_MAC_HLH = 0x0U; - - ENET_MAC_HLL = 0x0U; - - /* configure ENET_MAC_FCTL, ENET_MAC_FCTH register */ - reg_value = ENET_MAC_FCTL; - reg_value &= MAC_FCTL_MASK; - reg_value |= MAC_FCTL_PTM(0) |ENET_ZERO_QUANTA_PAUSE_DISABLE \ - |ENET_PAUSETIME_MINUS4 |ENET_UNIQUE_PAUSEDETECT \ - |ENET_RX_FLOWCONTROL_DISABLE |ENET_TX_FLOWCONTROL_DISABLE; - ENET_MAC_FCTL = reg_value; - - ENET_MAC_FCTH = ENET_DEACTIVE_THRESHOLD_512BYTES |ENET_ACTIVE_THRESHOLD_1536BYTES; - - /* configure ENET_MAC_VLT register */ - ENET_MAC_VLT = ENET_VLANTAGCOMPARISON_16BIT |MAC_VLT_VLTI(0); - - /* DMA */ - /* configure ENET_DMA_CTL register */ - reg_value = ENET_DMA_CTL; - reg_value &= DMA_CTL_MASK; - reg_value |= ENET_TCPIP_CKSUMERROR_DROP |ENET_RX_MODE_STOREFORWARD \ - |ENET_FLUSH_RXFRAME_ENABLE |ENET_TX_MODE_STOREFORWARD \ - |ENET_TX_THRESHOLD_64BYTES |ENET_RX_THRESHOLD_64BYTES \ - |ENET_FORWARD_ERRFRAMES_DISABLE |ENET_FORWARD_UNDERSZ_GOODFRAMES_DISABLE \ - |ENET_SECONDFRAME_OPT_DISABLE; - ENET_DMA_CTL = reg_value; - - /* configure ENET_DMA_BCTL register */ - reg_value = ENET_DMA_BCTL; - reg_value &= DMA_BCTL_MASK; - reg_value = ENET_ADDRESS_ALIGN_ENABLE |ENET_ARBITRATION_RXTX_2_1 \ - |ENET_RXDP_32BEAT |ENET_PGBL_32BEAT |ENET_RXTX_DIFFERENT_PGBL \ - |ENET_FIXED_BURST_ENABLE |ENET_MIXED_BURST_DISABLE \ - |ENET_NORMAL_DESCRIPTOR; - ENET_DMA_BCTL = reg_value; -} - -#ifndef USE_DELAY -/*! - \brief insert a delay time - \param[in] ncount: specifies the delay time length - \param[out] none - \param[out] none -*/ -static void enet_delay(uint32_t ncount) -{ - __IO uint32_t delay_time = 0U; - - for(delay_time = ncount; delay_time != 0U; delay_time--){ - } -} -#endif /* USE_DELAY */ diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_exmc.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_exmc.c deleted file mode 100644 index 8765181911..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_exmc.c +++ /dev/null @@ -1,1237 +0,0 @@ -/*! - \file gd32f4xx_exmc.c - \brief EXMC driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_exmc.h" - -/* EXMC bank0 register reset value */ -#define BANK0_SNCTL_RESET ((uint32_t)0x000030DAU) -#define BANK0_SNTCFG_RESET ((uint32_t)0x0FFFFFFFU) -#define BANK0_SNWTCFG_RESET ((uint32_t)0x0FFFFFFFU) - -/* EXMC bank1/2 register reset mask */ -#define BANK1_2_NPCTL_RESET ((uint32_t)0x00000008U) -#define BANK1_2_NPINTEN_RESET ((uint32_t)0x00000042U) -#define BANK1_2_NPCTCFG_RESET ((uint32_t)0xFFFFFFFFU) -#define BANK1_2_NPATCFG_RESET ((uint32_t)0xFFFFFFFFU) - -/* EXMC bank3 register reset mask */ -#define BANK3_NPCTL_RESET ((uint32_t)0x00000008U) -#define BANK3_NPINTEN_RESET ((uint32_t)0x00000040U) -#define BANK3_NPCTCFG_RESET ((uint32_t)0xFFFFFFFFU) -#define BANK3_NPATCFG_RESET ((uint32_t)0xFFFFFFFFU) -#define BANK3_PIOTCFG3_RESET ((uint32_t)0xFFFFFFFFU) - -/* EXMC SDRAM device register reset mask */ -#define SDRAM_DEVICE_SDCTL_RESET ((uint32_t)0x000002D0U) -#define SDRAM_DEVICE_SDTCFG_RESET ((uint32_t)0x0FFFFFFFU) -#define SDRAM_DEVICE_SDCMD_RESET ((uint32_t)0x00000000U) -#define SDRAM_DEVICE_SDARI_RESET ((uint32_t)0x00000000U) -#define SDRAM_DEVICE_SDSTAT_RESET ((uint32_t)0x00000000U) -#define SDRAM_DEVICE_SDRSCTL_RESET ((uint32_t)0x00000000U) - -/* EXMC bank0 SQPI-PSRAM register reset mask */ -#define BANK0_SQPI_SINIT_RESET ((uint32_t)0x18010000U) -#define BANK0_SQPI_SRCMD_RESET ((uint32_t)0x00000000U) -#define BANK0_SQPI_SWCMD_RESET ((uint32_t)0x00000000U) -#define BANK0_SQPI_SIDL_RESET ((uint32_t)0x00000000U) -#define BANK0_SQPI_SIDH_RESET ((uint32_t)0x00000000U) - -/* EXMC register bit offset */ -#define SNCTL_NRMUX_OFFSET ((uint32_t)1U) -#define SNCTL_SBRSTEN_OFFSET ((uint32_t)8U) -#define SNCTL_WRAPEN_OFFSET ((uint32_t)10U) -#define SNCTL_WREN_OFFSET ((uint32_t)12U) -#define SNCTL_NRWTEN_OFFSET ((uint32_t)13U) -#define SNCTL_EXMODEN_OFFSET ((uint32_t)14U) -#define SNCTL_ASYNCWAIT_OFFSET ((uint32_t)15U) - -#define SNTCFG_AHLD_OFFSET ((uint32_t)4U) -#define SNTCFG_DSET_OFFSET ((uint32_t)8U) -#define SNTCFG_BUSLAT_OFFSET ((uint32_t)16U) - -#define NPCTL_NDWTEN_OFFSET ((uint32_t)1U) -#define NPCTL_ECCEN_OFFSET ((uint32_t)6U) - -#define NPCTCFG_COMWAIT_OFFSET ((uint32_t)8U) -#define NPCTCFG_COMHLD_OFFSET ((uint32_t)16U) -#define NPCTCFG_COMHIZ_OFFSET ((uint32_t)24U) - -#define NPATCFG_ATTWAIT_OFFSET ((uint32_t)8U) -#define NPATCFG_ATTHLD_OFFSET ((uint32_t)16U) -#define NPATCFG_ATTHIZ_OFFSET ((uint32_t)24U) - -#define PIOTCFG_IOWAIT_OFFSET ((uint32_t)8U) -#define PIOTCFG_IOHLD_OFFSET ((uint32_t)16U) -#define PIOTCFG_IOHIZ_OFFSET ((uint32_t)24U) - -#define SDCTL_WPEN_OFFSET ((uint32_t)9U) -#define SDCTL_BRSTRD_OFFSET ((uint32_t)12U) - -#define SDTCFG_XSRD_OFFSET ((uint32_t)4U) -#define SDTCFG_RASD_OFFSET ((uint32_t)8U) -#define SDTCFG_ARFD_OFFSET ((uint32_t)12U) -#define SDTCFG_WRD_OFFSET ((uint32_t)16U) -#define SDTCFG_RPD_OFFSET ((uint32_t)20U) -#define SDTCFG_RCD_OFFSET ((uint32_t)24U) - -#define SDCMD_NARF_OFFSET ((uint32_t)5U) -#define SDCMD_MRC_OFFSET ((uint32_t)9U) - -#define SDARI_ARINTV_OFFSET ((uint32_t)1U) - -#define SDRSCTL_SSCR_OFFSET ((uint32_t)1U) -#define SDRSCTL_SDSC_OFFSET ((uint32_t)4U) - -#define SDSTAT_STA0_OFFSET ((uint32_t)1U) -#define SDSTAT_STA1_OFFSET ((uint32_t)3U) - -#define SRCMD_RWAITCYCLE_OFFSET ((uint32_t)16U) -#define SWCMD_WWAITCYCLE_OFFSET ((uint32_t)16U) - -#define INTEN_INTS_OFFSET ((uint32_t)3U) - -/*! - \brief deinitialize EXMC NOR/SRAM region - \param[in] exmc_norsram_region: select the region of bank0 - only one parameter can be selected which is shown as below: - \arg EXMC_BANK0_NORSRAM_REGIONx(x=0..3) - \param[out] none - \retval none -*/ -void exmc_norsram_deinit(uint32_t exmc_norsram_region) -{ - /* reset the registers */ - EXMC_SNCTL(exmc_norsram_region) = BANK0_SNCTL_RESET; - EXMC_SNTCFG(exmc_norsram_region) = BANK0_SNTCFG_RESET; - EXMC_SNWTCFG(exmc_norsram_region) = BANK0_SNWTCFG_RESET; -} - -/*! - \brief initialize exmc_norsram_parameter_struct with the default values - \param[in] none - \param[out] exmc_norsram_init_struct: the initialized struct exmc_norsram_parameter_struct pointer - \retval none -*/ -void exmc_norsram_struct_para_init(exmc_norsram_parameter_struct* exmc_norsram_init_struct) -{ - /* configure the structure with default values */ - exmc_norsram_init_struct->norsram_region = EXMC_BANK0_NORSRAM_REGION0; - exmc_norsram_init_struct->address_data_mux = ENABLE; - exmc_norsram_init_struct->memory_type = EXMC_MEMORY_TYPE_SRAM; - exmc_norsram_init_struct->databus_width = EXMC_NOR_DATABUS_WIDTH_8B; - exmc_norsram_init_struct->burst_mode = DISABLE; - exmc_norsram_init_struct->nwait_polarity = EXMC_NWAIT_POLARITY_LOW; - exmc_norsram_init_struct->wrap_burst_mode = DISABLE; - exmc_norsram_init_struct->nwait_config = EXMC_NWAIT_CONFIG_BEFORE; - exmc_norsram_init_struct->memory_write = ENABLE; - exmc_norsram_init_struct->nwait_signal = ENABLE; - exmc_norsram_init_struct->extended_mode = DISABLE; - exmc_norsram_init_struct->asyn_wait = DISABLE; - exmc_norsram_init_struct->write_mode = EXMC_ASYN_WRITE; - - /* configure read/write timing */ - exmc_norsram_init_struct->read_write_timing->asyn_address_setuptime = 0xFU; - exmc_norsram_init_struct->read_write_timing->asyn_address_holdtime = 0xFU; - exmc_norsram_init_struct->read_write_timing->asyn_data_setuptime = 0xFFU; - exmc_norsram_init_struct->read_write_timing->bus_latency = 0xFU; - exmc_norsram_init_struct->read_write_timing->syn_clk_division = EXMC_SYN_CLOCK_RATIO_16_CLK; - exmc_norsram_init_struct->read_write_timing->syn_data_latency = EXMC_DATALAT_17_CLK; - exmc_norsram_init_struct->read_write_timing->asyn_access_mode = EXMC_ACCESS_MODE_A; - - /* write timing configure, when extended mode is used */ - exmc_norsram_init_struct->write_timing->asyn_address_setuptime = 0xFU; - exmc_norsram_init_struct->write_timing->asyn_address_holdtime = 0xFU; - exmc_norsram_init_struct->write_timing->asyn_data_setuptime = 0xFFU; - exmc_norsram_init_struct->write_timing->bus_latency = 0xFU; - exmc_norsram_init_struct->write_timing->asyn_access_mode = EXMC_ACCESS_MODE_A; -} - -/*! - \brief initialize EXMC NOR/SRAM region - \param[in] exmc_norsram_parameter_struct: configure the EXMC NOR/SRAM parameter - norsram_region: EXMC_BANK0_NORSRAM_REGIONx, x=0..3 - write_mode: EXMC_ASYN_WRITE, EXMC_SYN_WRITE - extended_mode: ENABLE or DISABLE - asyn_wait: ENABLE or DISABLE - nwait_signal: ENABLE or DISABLE - memory_write: ENABLE or DISABLE - nwait_config: EXMC_NWAIT_CONFIG_BEFORE, EXMC_NWAIT_CONFIG_DURING - wrap_burst_mode: ENABLE or DISABLE - nwait_polarity: EXMC_NWAIT_POLARITY_LOW, EXMC_NWAIT_POLARITY_HIGH - burst_mode: ENABLE or DISABLE - databus_width: EXMC_NOR_DATABUS_WIDTH_8B, EXMC_NOR_DATABUS_WIDTH_16B - memory_type: EXMC_MEMORY_TYPE_SRAM, EXMC_MEMORY_TYPE_PSRAM, EXMC_MEMORY_TYPE_NOR - address_data_mux: ENABLE or DISABLE - read_write_timing: struct exmc_norsram_timing_parameter_struct set the time - asyn_access_mode: EXMC_ACCESS_MODE_A, EXMC_ACCESS_MODE_B, EXMC_ACCESS_MODE_C, EXMC_ACCESS_MODE_D - syn_data_latency: EXMC_DATALAT_x_CLK, x=2..17 - syn_clk_division: EXMC_SYN_CLOCK_RATIO_x_CLK, x=2..16 - bus_latency: 0x0U~0xFU - asyn_data_setuptime: 0x01U~0xFFU - asyn_address_holdtime: 0x1U~0xFU - asyn_address_setuptime: 0x0U~0xFU - write_timing: struct exmc_norsram_timing_parameter_struct set the time - asyn_access_mode: EXMC_ACCESS_MODE_A, EXMC_ACCESS_MODE_B, EXMC_ACCESS_MODE_C, EXMC_ACCESS_MODE_D - syn_data_latency: EXMC_DATALAT_x_CLK, x=2..17 - syn_clk_division: EXMC_SYN_CLOCK_RATIO_x_CLK, x=2..16 - bus_latency: 0x0U~0xFU - asyn_data_setuptime: 0x01U~0xFFU - asyn_address_holdtime: 0x1U~0xFU - asyn_address_setuptime: 0x0U~0xFU - \param[out] none - \retval none -*/ -void exmc_norsram_init(exmc_norsram_parameter_struct* exmc_norsram_init_struct) -{ - uint32_t snctl = 0x00000000U,sntcfg = 0x00000000U,snwtcfg = 0x00000000U; - - /* get the register value */ - snctl = EXMC_SNCTL(exmc_norsram_init_struct->norsram_region); - - /* clear relative bits */ - snctl &= ((uint32_t)~(EXMC_SNCTL_NREN | EXMC_SNCTL_NRTP | EXMC_SNCTL_NRW | EXMC_SNCTL_SBRSTEN | - EXMC_SNCTL_NRWTPOL | EXMC_SNCTL_WRAPEN | EXMC_SNCTL_NRWTCFG | EXMC_SNCTL_WREN | - EXMC_SNCTL_NRWTEN | EXMC_SNCTL_EXMODEN | EXMC_SNCTL_ASYNCWAIT | EXMC_SNCTL_SYNCWR | - EXMC_SNCTL_NRMUX )); - - snctl |= (uint32_t)(exmc_norsram_init_struct->address_data_mux << SNCTL_NRMUX_OFFSET) | - exmc_norsram_init_struct->memory_type | - exmc_norsram_init_struct->databus_width | - (exmc_norsram_init_struct->burst_mode << SNCTL_SBRSTEN_OFFSET) | - exmc_norsram_init_struct->nwait_polarity | - (exmc_norsram_init_struct->wrap_burst_mode << SNCTL_WRAPEN_OFFSET) | - exmc_norsram_init_struct->nwait_config | - (exmc_norsram_init_struct->memory_write << SNCTL_WREN_OFFSET) | - (exmc_norsram_init_struct->nwait_signal << SNCTL_NRWTEN_OFFSET) | - (exmc_norsram_init_struct->extended_mode << SNCTL_EXMODEN_OFFSET) | - (exmc_norsram_init_struct->asyn_wait << SNCTL_ASYNCWAIT_OFFSET) | - exmc_norsram_init_struct->write_mode; - - sntcfg = (uint32_t)exmc_norsram_init_struct->read_write_timing->asyn_address_setuptime | - (exmc_norsram_init_struct->read_write_timing->asyn_address_holdtime << SNTCFG_AHLD_OFFSET) | - (exmc_norsram_init_struct->read_write_timing->asyn_data_setuptime << SNTCFG_DSET_OFFSET) | - (exmc_norsram_init_struct->read_write_timing->bus_latency << SNTCFG_BUSLAT_OFFSET) | - exmc_norsram_init_struct->read_write_timing->syn_clk_division | - exmc_norsram_init_struct->read_write_timing->syn_data_latency | - exmc_norsram_init_struct->read_write_timing->asyn_access_mode; - - /* nor flash access enable */ - if(EXMC_MEMORY_TYPE_NOR == exmc_norsram_init_struct->memory_type){ - snctl |= (uint32_t)EXMC_SNCTL_NREN; - } - - /* extended mode configure */ - if(ENABLE == exmc_norsram_init_struct->extended_mode){ - snwtcfg = (uint32_t)exmc_norsram_init_struct->write_timing->asyn_address_setuptime | - (exmc_norsram_init_struct->write_timing->asyn_address_holdtime << SNTCFG_AHLD_OFFSET )| - (exmc_norsram_init_struct->write_timing->asyn_data_setuptime << SNTCFG_DSET_OFFSET) | - (exmc_norsram_init_struct->write_timing->bus_latency << SNTCFG_BUSLAT_OFFSET) | - exmc_norsram_init_struct->write_timing->asyn_access_mode; - }else{ - snwtcfg = BANK0_SNWTCFG_RESET; - } - - /* configure the registers */ - EXMC_SNCTL(exmc_norsram_init_struct->norsram_region) = snctl; - EXMC_SNTCFG(exmc_norsram_init_struct->norsram_region) = sntcfg; - EXMC_SNWTCFG(exmc_norsram_init_struct->norsram_region) = snwtcfg; -} - -/*! - \brief enable EXMC NOR/PSRAM bank region - \param[in] exmc_norsram_region: specifie the region of NOR/PSRAM bank - only one parameter can be selected which is shown as below: - \arg EXMC_BANK0_NORSRAM_REGIONx(x=0..3) - \param[out] none - \retval none -*/ -void exmc_norsram_enable(uint32_t exmc_norsram_region) -{ - EXMC_SNCTL(exmc_norsram_region) |= (uint32_t)EXMC_SNCTL_NRBKEN; -} - -/*! - \brief disable EXMC NOR/PSRAM bank region - \param[in] exmc_norsram_region: specifie the region of NOR/PSRAM Bank - only one parameter can be selected which is shown as below: - \arg EXMC_BANK0_NORSRAM_REGIONx(x=0..3) - \param[out] none - \retval none -*/ -void exmc_norsram_disable(uint32_t exmc_norsram_region) -{ - EXMC_SNCTL(exmc_norsram_region) &= ~(uint32_t)EXMC_SNCTL_NRBKEN; -} - -/*! - \brief deinitialize EXMC NAND bank - \param[in] exmc_nand_bank: select the bank of NAND - only one parameter can be selected which is shown as below: - \arg EXMC_BANKx_NAND(x=1..2) - \param[out] none - \retval none -*/ -void exmc_nand_deinit(uint32_t exmc_nand_bank) -{ - /* EXMC_BANK1_NAND or EXMC_BANK2_NAND */ - EXMC_NPCTL(exmc_nand_bank) = BANK1_2_NPCTL_RESET; - EXMC_NPINTEN(exmc_nand_bank) = BANK1_2_NPINTEN_RESET; - EXMC_NPCTCFG(exmc_nand_bank) = BANK1_2_NPCTCFG_RESET; - EXMC_NPATCFG(exmc_nand_bank) = BANK1_2_NPATCFG_RESET; -} - -/*! - \brief initialize exmc_norsram_parameter_struct with the default values - \param[in] none - \param[out] the initialized struct exmc_norsram_parameter_struct pointer - \retval none -*/ -void exmc_nand_struct_para_init(exmc_nand_parameter_struct* exmc_nand_init_struct) -{ - /* configure the structure with default values */ - exmc_nand_init_struct->nand_bank = EXMC_BANK1_NAND; - exmc_nand_init_struct->wait_feature = DISABLE; - exmc_nand_init_struct->databus_width = EXMC_NAND_DATABUS_WIDTH_8B; - exmc_nand_init_struct->ecc_logic = DISABLE; - exmc_nand_init_struct->ecc_size = EXMC_ECC_SIZE_256BYTES; - exmc_nand_init_struct->ctr_latency = 0x0U; - exmc_nand_init_struct->atr_latency = 0x0U; - exmc_nand_init_struct->common_space_timing->setuptime = 0xFCU; - exmc_nand_init_struct->common_space_timing->waittime = 0xFCU; - exmc_nand_init_struct->common_space_timing->holdtime = 0xFCU; - exmc_nand_init_struct->common_space_timing->databus_hiztime = 0xFCU; - exmc_nand_init_struct->attribute_space_timing->setuptime = 0xFCU; - exmc_nand_init_struct->attribute_space_timing->waittime = 0xFCU; - exmc_nand_init_struct->attribute_space_timing->holdtime = 0xFCU; - exmc_nand_init_struct->attribute_space_timing->databus_hiztime = 0xFCU; -} - -/*! - \brief initialize EXMC NAND bank - \param[in] exmc_nand_parameter_struct: configure the EXMC NAND parameter - nand_bank: EXMC_BANK1_NAND,EXMC_BANK2_NAND - ecc_size: EXMC_ECC_SIZE_xBYTES,x=256,512,1024,2048,4096 - atr_latency: EXMC_ALE_RE_DELAY_x_HCLK,x=1..16 - ctr_latency: EXMC_CLE_RE_DELAY_x_HCLK,x=1..16 - ecc_logic: ENABLE or DISABLE - databus_width: EXMC_NAND_DATABUS_WIDTH_8B,EXMC_NAND_DATABUS_WIDTH_16B - wait_feature: ENABLE or DISABLE - common_space_timing: struct exmc_nand_pccard_timing_parameter_struct set the time - databus_hiztime: 0x01U~0xFFU - holdtime: 0x01U~0xFEU - waittime: 0x02U~0xFFU - setuptime: 0x01U~0xFFU - attribute_space_timing: struct exmc_nand_pccard_timing_parameter_struct set the time - databus_hiztime: 0x00U~0xFEU - holdtime: 0x01U~0xFEU - waittime: 0x02U~0xFFU - setuptime: 0x01U~0xFFU - \param[out] none - \retval none -*/ -void exmc_nand_init(exmc_nand_parameter_struct* exmc_nand_init_struct) -{ - uint32_t npctl = 0x00000000U, npctcfg = 0x00000000U, npatcfg = 0x00000000U; - - npctl = (uint32_t)(exmc_nand_init_struct->wait_feature << NPCTL_NDWTEN_OFFSET)| - EXMC_NPCTL_NDTP | - exmc_nand_init_struct->databus_width | - (exmc_nand_init_struct->ecc_logic << NPCTL_ECCEN_OFFSET)| - exmc_nand_init_struct->ecc_size | - exmc_nand_init_struct->ctr_latency | - exmc_nand_init_struct->atr_latency; - - npctcfg = (uint32_t)((exmc_nand_init_struct->common_space_timing->setuptime - 1U) & EXMC_NPCTCFG_COMSET ) | - (((exmc_nand_init_struct->common_space_timing->waittime - 1U) << NPCTCFG_COMWAIT_OFFSET) & EXMC_NPCTCFG_COMWAIT ) | - ((exmc_nand_init_struct->common_space_timing->holdtime << NPCTCFG_COMHLD_OFFSET) & EXMC_NPCTCFG_COMHLD ) | - (((exmc_nand_init_struct->common_space_timing->databus_hiztime - 1U) << NPCTCFG_COMHIZ_OFFSET) & EXMC_NPCTCFG_COMHIZ ); - - npatcfg = (uint32_t)((exmc_nand_init_struct->attribute_space_timing->setuptime - 1U) & EXMC_NPATCFG_ATTSET ) | - (((exmc_nand_init_struct->attribute_space_timing->waittime - 1U) << NPATCFG_ATTWAIT_OFFSET) & EXMC_NPATCFG_ATTWAIT ) | - ((exmc_nand_init_struct->attribute_space_timing->holdtime << NPATCFG_ATTHLD_OFFSET) & EXMC_NPATCFG_ATTHLD ) | - ((exmc_nand_init_struct->attribute_space_timing->databus_hiztime << NPATCFG_ATTHIZ_OFFSET) & EXMC_NPATCFG_ATTHIZ ); - - /* EXMC_BANK1_NAND or EXMC_BANK2_NAND initialize */ - EXMC_NPCTL(exmc_nand_init_struct->nand_bank) = npctl; - EXMC_NPCTCFG(exmc_nand_init_struct->nand_bank) = npctcfg; - EXMC_NPATCFG(exmc_nand_init_struct->nand_bank) = npatcfg; -} - -/*! - \brief enable NAND bank - \param[in] exmc_nand_bank: specifie the NAND bank - only one parameter can be selected which is shown as below: - \arg EXMC_BANKx_NAND(x=1,2) - \param[out] none - \retval none -*/ -void exmc_nand_enable(uint32_t exmc_nand_bank) -{ - EXMC_NPCTL(exmc_nand_bank) |= EXMC_NPCTL_NDBKEN; -} - -/*! - \brief disable NAND bank - \param[in] exmc_nand_bank: specifie the NAND bank - only one parameter can be selected which is shown as below: - \arg EXMC_BANKx_NAND(x=1,2) - \param[out] none - \retval none -*/ -void exmc_nand_disable(uint32_t exmc_nand_bank) -{ - EXMC_NPCTL(exmc_nand_bank) &= ~EXMC_NPCTL_NDBKEN; -} - -/*! - \brief deinitialize EXMC PC card bank - \param[in] none - \param[out] none - \retval none -*/ -void exmc_pccard_deinit(void) -{ - /* EXMC_BANK3_PCCARD */ - EXMC_NPCTL3 = BANK3_NPCTL_RESET; - EXMC_NPINTEN3 = BANK3_NPINTEN_RESET; - EXMC_NPCTCFG3 = BANK3_NPCTCFG_RESET; - EXMC_NPATCFG3 = BANK3_NPATCFG_RESET; - EXMC_PIOTCFG3 = BANK3_PIOTCFG3_RESET; -} - -/*! - \brief initialize exmc_pccard_parameter_struct with the default values - \param[in] none - \param[out] the initialized struct exmc_pccard_parameter_struct pointer - \retval none -*/ -void exmc_pccard_struct_para_init(exmc_pccard_parameter_struct* exmc_pccard_init_struct) -{ - /* configure the structure with default values */ - exmc_pccard_init_struct->wait_feature = DISABLE; - exmc_pccard_init_struct->ctr_latency = 0x0U; - exmc_pccard_init_struct->atr_latency = 0x0U; - exmc_pccard_init_struct->common_space_timing->setuptime = 0xFCU; - exmc_pccard_init_struct->common_space_timing->waittime = 0xFCU; - exmc_pccard_init_struct->common_space_timing->holdtime = 0xFCU; - exmc_pccard_init_struct->common_space_timing->databus_hiztime = 0xFCU; - exmc_pccard_init_struct->attribute_space_timing->setuptime = 0xFCU; - exmc_pccard_init_struct->attribute_space_timing->waittime = 0xFCU; - exmc_pccard_init_struct->attribute_space_timing->holdtime = 0xFCU; - exmc_pccard_init_struct->attribute_space_timing->databus_hiztime = 0xFCU; - exmc_pccard_init_struct->io_space_timing->setuptime = 0xFCU; - exmc_pccard_init_struct->io_space_timing->waittime = 0xFCU; - exmc_pccard_init_struct->io_space_timing->holdtime = 0xFCU; - exmc_pccard_init_struct->io_space_timing->databus_hiztime = 0xFCU; -} - -/*! - \brief initialize EXMC PC card bank - \param[in] exmc_pccard_parameter_struct: configure the EXMC NAND parameter - atr_latency: EXMC_ALE_RE_DELAY_x_HCLK,x=1..16 - ctr_latency: EXMC_CLE_RE_DELAY_x_HCLK,x=1..16 - wait_feature: ENABLE or DISABLE - common_space_timing: struct exmc_nand_pccard_timing_parameter_struct set the time - databus_hiztime: 0x01U~0xFFU - holdtime: 0x01U~0xFEU - waittime: 0x02U~0xFFU - setuptime: 0x01U~0xFFU - attribute_space_timing: struct exmc_nand_pccard_timing_parameter_struct set the time - databus_hiztime: 0x00U~0xFEU - holdtime: 0x01U~0xFEU - waittime: 0x02U~0xFFU - setuptime: 0x01U~0xFFU - io_space_timing: exmc_nand_pccard_timing_parameter_struct set the time - databus_hiztime: 0x00U~0xFFU - holdtime: 0x01U~0xFFU - waittime: 0x02U~0x100U - setuptime: 0x01U~0x100U - \param[out] none - \retval none -*/ -void exmc_pccard_init(exmc_pccard_parameter_struct* exmc_pccard_init_struct) -{ - /* configure the EXMC bank3 PC card control register */ - EXMC_NPCTL3 = (uint32_t)(exmc_pccard_init_struct->wait_feature << NPCTL_NDWTEN_OFFSET) | - EXMC_NAND_DATABUS_WIDTH_16B | - exmc_pccard_init_struct->ctr_latency | - exmc_pccard_init_struct->atr_latency ; - - /* configure the EXMC bank3 PC card common space timing configuration register */ - EXMC_NPCTCFG3 = (uint32_t)((exmc_pccard_init_struct->common_space_timing->setuptime - 1U) & EXMC_NPCTCFG_COMSET ) | - (((exmc_pccard_init_struct->common_space_timing->waittime - 1U) << NPCTCFG_COMWAIT_OFFSET) & EXMC_NPCTCFG_COMWAIT ) | - ((exmc_pccard_init_struct->common_space_timing->holdtime << NPCTCFG_COMHLD_OFFSET) & EXMC_NPCTCFG_COMHLD ) | - (((exmc_pccard_init_struct->common_space_timing->databus_hiztime - 1U) << NPCTCFG_COMHIZ_OFFSET) & EXMC_NPCTCFG_COMHIZ ); - - /* configure the EXMC bank3 PC card attribute space timing configuration register */ - EXMC_NPATCFG3 = (uint32_t)((exmc_pccard_init_struct->attribute_space_timing->setuptime - 1U) & EXMC_NPATCFG_ATTSET ) | - (((exmc_pccard_init_struct->attribute_space_timing->waittime - 1U) << NPATCFG_ATTWAIT_OFFSET) & EXMC_NPATCFG_ATTWAIT ) | - ((exmc_pccard_init_struct->attribute_space_timing->holdtime << NPATCFG_ATTHLD_OFFSET) & EXMC_NPATCFG_ATTHLD ) | - ((exmc_pccard_init_struct->attribute_space_timing->databus_hiztime << NPATCFG_ATTHIZ_OFFSET) & EXMC_NPATCFG_ATTHIZ); - - /* configure the EXMC bank3 PC card io space timing configuration register */ - EXMC_PIOTCFG3 = (uint32_t)((exmc_pccard_init_struct->io_space_timing->setuptime - 1U) & EXMC_PIOTCFG3_IOSET ) | - (((exmc_pccard_init_struct->io_space_timing->waittime - 1U) << PIOTCFG_IOWAIT_OFFSET) & EXMC_PIOTCFG3_IOWAIT ) | - ((exmc_pccard_init_struct->io_space_timing->holdtime << PIOTCFG_IOHLD_OFFSET) & EXMC_PIOTCFG3_IOHLD ) | - ((exmc_pccard_init_struct->io_space_timing->databus_hiztime << PIOTCFG_IOHIZ_OFFSET) & EXMC_PIOTCFG3_IOHIZ ); -} - -/*! - \brief enable PC Card Bank - \param[in] none - \param[out] none - \retval none -*/ -void exmc_pccard_enable(void) -{ - EXMC_NPCTL3 |= EXMC_NPCTL_NDBKEN; -} - -/*! - \brief disable PC Card Bank - \param[in] none - \param[out] none - \retval none -*/ -void exmc_pccard_disable(void) -{ - EXMC_NPCTL3 &= ~EXMC_NPCTL_NDBKEN; -} - -/*! - \brief deinitialize EXMC SDRAM device - \param[in] exmc_sdram_device: select the SRAM device - only one parameter can be selected which is shown as below: - \arg EXMC_SDRAM_DEVICEx(x=0, 1) - \param[in] none - \param[out] none - \retval none -*/ -void exmc_sdram_deinit(uint32_t exmc_sdram_device) -{ - /* reset SDRAM registers */ - EXMC_SDCTL(exmc_sdram_device) = SDRAM_DEVICE_SDCTL_RESET; - EXMC_SDTCFG(exmc_sdram_device) = SDRAM_DEVICE_SDTCFG_RESET; - EXMC_SDCMD = SDRAM_DEVICE_SDCMD_RESET; - EXMC_SDARI = SDRAM_DEVICE_SDARI_RESET; - EXMC_SDRSCTL = SDRAM_DEVICE_SDRSCTL_RESET; -} - -/*! - \brief initialize exmc_sdram_parameter_struct with the default values - \param[in] none - \param[out] the initialized struct exmc_pccard_parameter_struct pointer - \retval none -*/ -void exmc_sdram_struct_para_init(exmc_sdram_parameter_struct* exmc_sdram_init_struct) -{ - /* configure the structure with default values */ - exmc_sdram_init_struct->sdram_device = EXMC_SDRAM_DEVICE0; - exmc_sdram_init_struct->column_address_width = EXMC_SDRAM_COW_ADDRESS_8; - exmc_sdram_init_struct->row_address_width = EXMC_SDRAM_ROW_ADDRESS_11; - exmc_sdram_init_struct->data_width = EXMC_SDRAM_DATABUS_WIDTH_16B; - exmc_sdram_init_struct->internal_bank_number = EXMC_SDRAM_4_INTER_BANK; - exmc_sdram_init_struct->cas_latency = EXMC_CAS_LATENCY_1_SDCLK; - exmc_sdram_init_struct->write_protection = ENABLE; - exmc_sdram_init_struct->sdclock_config = EXMC_SDCLK_DISABLE; - exmc_sdram_init_struct->brust_read_switch = DISABLE; - exmc_sdram_init_struct->pipeline_read_delay = EXMC_PIPELINE_DELAY_0_HCLK; - - exmc_sdram_init_struct->timing->load_mode_register_delay = 16U; - exmc_sdram_init_struct->timing->exit_selfrefresh_delay = 16U; - exmc_sdram_init_struct->timing->row_address_select_delay = 16U; - exmc_sdram_init_struct->timing->auto_refresh_delay = 16U; - exmc_sdram_init_struct->timing->write_recovery_delay = 16U; - exmc_sdram_init_struct->timing->row_precharge_delay = 16U; - exmc_sdram_init_struct->timing->row_to_column_delay = 16U; -} - -/*! - \brief initialize EXMC SDRAM device - \param[in] exmc_sdram_parameter_struct: configure the EXMC SDRAM parameter - sdram_device: EXMC_SDRAM_DEVICE0,EXMC_SDRAM_DEVICE1 - pipeline_read_delay: EXMC_PIPELINE_DELAY_x_HCLK,x=0..2 - brust_read_switch: ENABLE or DISABLE - sdclock_config: EXMC_SDCLK_DISABLE,EXMC_SDCLK_PERIODS_2_HCLK,EXMC_SDCLK_PERIODS_3_HCLK - write_protection: ENABLE or DISABLE - cas_latency: EXMC_CAS_LATENCY_x_SDCLK,x=1..3 - internal_bank_number: EXMC_SDRAM_2_INTER_BANK,EXMC_SDRAM_4_INTER_BANK - data_width: EXMC_SDRAM_DATABUS_WIDTH_8B,EXMC_SDRAM_DATABUS_WIDTH_16B,EXMC_SDRAM_DATABUS_WIDTH_32B - row_address_width: EXMC_SDRAM_ROW_ADDRESS_x,x=11..13 - column_address_width: EXMC_SDRAM_COW_ADDRESS_x,x=8..11 - timing: exmc_sdram_timing_parameter_struct set the time - row_to_column_delay: 1U~16U - row_precharge_delay: 1U~16U - write_recovery_delay: 1U~16U - auto_refresh_delay: 1U~16U - row_address_select_delay: 1U~16U - exit_selfrefresh_delay: 1U~16U - load_mode_register_delay: 1U~16U - \param[out] none - \retval none -*/ -void exmc_sdram_init(exmc_sdram_parameter_struct* exmc_sdram_init_struct) -{ - uint32_t sdctl0, sdctl1, sdtcfg0, sdtcfg1; - - /* configuration EXMC_SDCTL0 or EXMC_SDCTL1 */ - if(EXMC_SDRAM_DEVICE0 == exmc_sdram_init_struct->sdram_device){ - /* configuration EXMC_SDCTL0 */ - EXMC_SDCTL(EXMC_SDRAM_DEVICE0) = (uint32_t)exmc_sdram_init_struct->column_address_width | - exmc_sdram_init_struct->row_address_width | - exmc_sdram_init_struct->data_width | - exmc_sdram_init_struct->internal_bank_number | - exmc_sdram_init_struct->cas_latency | - (exmc_sdram_init_struct->write_protection << SDCTL_WPEN_OFFSET)| - exmc_sdram_init_struct->sdclock_config | - (exmc_sdram_init_struct->brust_read_switch << SDCTL_BRSTRD_OFFSET)| - exmc_sdram_init_struct->pipeline_read_delay; - - /* configuration EXMC_SDTCFG0 */ - EXMC_SDTCFG(EXMC_SDRAM_DEVICE0) = (uint32_t)((exmc_sdram_init_struct->timing->load_mode_register_delay)-1U) | - (((exmc_sdram_init_struct->timing->exit_selfrefresh_delay)-1U) << SDTCFG_XSRD_OFFSET) | - (((exmc_sdram_init_struct->timing->row_address_select_delay)-1U) << SDTCFG_RASD_OFFSET) | - (((exmc_sdram_init_struct->timing->auto_refresh_delay)-1U) << SDTCFG_ARFD_OFFSET) | - (((exmc_sdram_init_struct->timing->write_recovery_delay)-1U) << SDTCFG_WRD_OFFSET) | - (((exmc_sdram_init_struct->timing->row_precharge_delay)-1U) << SDTCFG_RPD_OFFSET) | - (((exmc_sdram_init_struct->timing->row_to_column_delay)-1U) << SDTCFG_RCD_OFFSET); - }else{ - /* configuration EXMC_SDCTL0 and EXMC_SDCTL1 */ - /* some bits in the EXMC_SDCTL1 register are reserved */ - sdctl0 = EXMC_SDCTL(EXMC_SDRAM_DEVICE0) & (~( EXMC_SDCTL_PIPED | EXMC_SDCTL_BRSTRD | EXMC_SDCTL_SDCLK )); - - sdctl0 |= (uint32_t)exmc_sdram_init_struct->sdclock_config | - exmc_sdram_init_struct->brust_read_switch | - exmc_sdram_init_struct->pipeline_read_delay; - - sdctl1 = (uint32_t)exmc_sdram_init_struct->column_address_width | - exmc_sdram_init_struct->row_address_width | - exmc_sdram_init_struct->data_width | - exmc_sdram_init_struct->internal_bank_number | - exmc_sdram_init_struct->cas_latency | - exmc_sdram_init_struct->write_protection ; - - EXMC_SDCTL(EXMC_SDRAM_DEVICE0) = sdctl0; - EXMC_SDCTL(EXMC_SDRAM_DEVICE1) = sdctl1; - - /* configuration EXMC_SDTCFG0 and EXMC_SDTCFG1 */ - /* some bits in the EXMC_SDTCFG1 register are reserved */ - sdtcfg0 = EXMC_SDTCFG(EXMC_SDRAM_DEVICE0) & (~(EXMC_SDTCFG_RPD | EXMC_SDTCFG_WRD | EXMC_SDTCFG_ARFD)); - - sdtcfg0 |= (uint32_t)(((exmc_sdram_init_struct->timing->auto_refresh_delay)-1U) << SDTCFG_ARFD_OFFSET) | - (((exmc_sdram_init_struct->timing->row_precharge_delay)-1U) << SDTCFG_RPD_OFFSET) | - (((exmc_sdram_init_struct->timing->write_recovery_delay)-1U) << SDTCFG_WRD_OFFSET); - - sdtcfg1 = (uint32_t)((exmc_sdram_init_struct->timing->load_mode_register_delay)-1U) | - (((exmc_sdram_init_struct->timing->exit_selfrefresh_delay)-1U) << SDTCFG_XSRD_OFFSET) | - (((exmc_sdram_init_struct->timing->row_address_select_delay)-1U) << SDTCFG_RASD_OFFSET) | - (((exmc_sdram_init_struct->timing->row_to_column_delay)-1U) << SDTCFG_RCD_OFFSET); - - EXMC_SDTCFG(EXMC_SDRAM_DEVICE0) = sdtcfg0; - EXMC_SDTCFG(EXMC_SDRAM_DEVICE1) = sdtcfg1; - } -} - -/*! - \brief deinitialize exmc SQPIPSRAM - \param[in] none - \param[out] none - \retval none -*/ -void exmc_sqpipsram_deinit(void) -{ - /* reset the registers */ - EXMC_SINIT = BANK0_SQPI_SINIT_RESET; - EXMC_SRCMD = BANK0_SQPI_SRCMD_RESET; - EXMC_SWCMD = BANK0_SQPI_SWCMD_RESET; - EXMC_SIDL = BANK0_SQPI_SIDL_RESET; - EXMC_SIDH = BANK0_SQPI_SIDH_RESET; -} - -/*! - \brief initialize exmc_sqpipsram_parameter_struct with the default values - \param[in] the struct exmc_sqpipsram_parameter_struct pointer - \param[out] none - \retval none -*/ -void exmc_sqpipsram_struct_para_init(exmc_sqpipsram_parameter_struct* exmc_sqpipsram_init_struct) -{ - /* configure the structure with default values */ - exmc_sqpipsram_init_struct->sample_polarity = EXMC_SQPIPSRAM_SAMPLE_RISING_EDGE; - exmc_sqpipsram_init_struct->id_length = EXMC_SQPIPSRAM_ID_LENGTH_64B; - exmc_sqpipsram_init_struct->address_bits = EXMC_SQPIPSRAM_ADDR_LENGTH_24B; - exmc_sqpipsram_init_struct->command_bits = EXMC_SQPIPSRAM_COMMAND_LENGTH_8B; -} - -/*! - \brief initialize EXMC SQPIPSRAM - \param[in] exmc_sqpipsram_parameter_struct: configure the EXMC SQPIPSRAM parameter - sample_polarity: EXMC_SQPIPSRAM_SAMPLE_RISING_EDGE,EXMC_SQPIPSRAM_SAMPLE_FALLING_EDGE - id_length: EXMC_SQPIPSRAM_ID_LENGTH_xB,x=8,16,32,64 - address_bits: EXMC_SQPIPSRAM_ADDR_LENGTH_xB,x=1..26 - command_bits: EXMC_SQPIPSRAM_COMMAND_LENGTH_xB,x=4,8,16 - \param[out] none - \retval none -*/ -void exmc_sqpipsram_init(exmc_sqpipsram_parameter_struct* exmc_sqpipsram_init_struct) -{ - /* initialize SQPI controller */ - EXMC_SINIT = (uint32_t)exmc_sqpipsram_init_struct->sample_polarity | - exmc_sqpipsram_init_struct->id_length | - exmc_sqpipsram_init_struct->address_bits | - exmc_sqpipsram_init_struct->command_bits; -} - -/*! - \brief configure consecutive clock - \param[in] clock_mode: specifie when the clock is generated - only one parameter can be selected which is shown as below: - \arg EXMC_CLOCK_SYN_MODE: the clock is generated only during synchronous access - \arg EXMC_CLOCK_UNCONDITIONALLY: the clock is generated unconditionally - \param[out] none - \retval none -*/ -void exmc_norsram_consecutive_clock_config(uint32_t clock_mode) -{ - if (EXMC_CLOCK_UNCONDITIONALLY == clock_mode){ - EXMC_SNCTL(EXMC_BANK0_NORSRAM_REGION0) |= EXMC_CLOCK_UNCONDITIONALLY; - }else{ - EXMC_SNCTL(EXMC_BANK0_NORSRAM_REGION0) &= ~EXMC_CLOCK_UNCONDITIONALLY; - } -} - -/*! - \brief configure CRAM page size - \param[in] exmc_norsram_region: select the region of bank0 - only one parameter can be selected which is shown as below: - \arg EXMC_BANK0_NORSRAM_REGIONx(x=0..3) - \param[in] page_size: CRAM page size - only one parameter can be selected which is shown as below: - \arg EXMC_CRAM_AUTO_SPLIT: the clock is generated only during synchronous access - \arg EXMC_CRAM_PAGE_SIZE_128_BYTES: page size is 128 bytes - \arg EXMC_CRAM_PAGE_SIZE_256_BYTES: page size is 256 bytes - \arg EXMC_CRAM_PAGE_SIZE_512_BYTES: page size is 512 bytes - \arg EXMC_CRAM_PAGE_SIZE_1024_BYTES: page size is 1024 bytes - \param[out] none - \retval none -*/ -void exmc_norsram_page_size_config(uint32_t exmc_norsram_region, uint32_t page_size) -{ - /* reset the bits */ - EXMC_SNCTL(exmc_norsram_region) &= ~EXMC_SNCTL_CPS; - - /* set the CPS bits */ - EXMC_SNCTL(exmc_norsram_region) |= page_size; -} - -/*! - \brief enable or disable the EXMC NAND ECC function - \param[in] exmc_nand_bank: specifie the NAND bank - only one parameter can be selected which is shown as below: - \arg EXMC_BANKx_NAND(x=1,2) - \param[in] newvalue: ENABLE or DISABLE - \param[out] none - \retval none -*/ -void exmc_nand_ecc_config(uint32_t exmc_nand_bank, ControlStatus newvalue) -{ - if (ENABLE == newvalue){ - /* enable the selected NAND bank ECC function */ - EXMC_NPCTL(exmc_nand_bank) |= EXMC_NPCTL_ECCEN; - }else{ - /* disable the selected NAND bank ECC function */ - EXMC_NPCTL(exmc_nand_bank) &= ~EXMC_NPCTL_ECCEN; - } -} - -/*! - \brief get the EXMC ECC value - \param[in] exmc_nand_bank: specifie the NAND bank - only one parameter can be selected which is shown as below: - \arg EXMC_BANKx_NAND(x=1,2) - \param[out] none - \retval the error correction code(ECC) value -*/ -uint32_t exmc_ecc_get(uint32_t exmc_nand_bank) -{ - return(EXMC_NECC(exmc_nand_bank)); -} - -/*! - \brief enable or disable read sample - \param[in] newvalue: ENABLE or DISABLE - \param[out] none - \retval none -*/ -void exmc_sdram_readsample_enable(ControlStatus newvalue) -{ - if (ENABLE == newvalue){ - EXMC_SDRSCTL |= EXMC_SDRSCTL_RSEN; - }else{ - EXMC_SDRSCTL &= (uint32_t)(~EXMC_SDRSCTL_RSEN); - } -} - -/*! - \brief configure the delayed sample clock of read data - \param[in] delay_cell: SDRAM the delayed sample clock of read data - only one parameter can be selected which is shown as below: - \arg EXMC_SDRAM_x_DELAY_CELL(x=0..15) - \param[in] extra_hclk: sample cycle of read data - only one parameter can be selected which is shown as below: - \arg EXMC_SDRAM_READSAMPLE_x_EXTRAHCLK(x=0,1) - \param[out] none - \retval none -*/ -void exmc_sdram_readsample_config(uint32_t delay_cell, uint32_t extra_hclk) -{ - uint32_t sdrsctl = 0U; - - /* reset the bits */ - sdrsctl = EXMC_SDRSCTL & (~(EXMC_SDRSCTL_SDSC | EXMC_SDRSCTL_SSCR)); - /* set the bits */ - sdrsctl |= (uint32_t)(delay_cell & EXMC_SDRSCTL_SDSC) | - ((extra_hclk << SDRSCTL_SSCR_OFFSET) & EXMC_SDRSCTL_SSCR); - EXMC_SDRSCTL = sdrsctl; -} - -/*! - \brief configure the SDRAM memory command - \param[in] exmc_sdram_command_init_struct: initialize EXMC SDRAM command - mode_register_content: - auto_refresh_number: EXMC_SDRAM_AUTO_REFLESH_x_SDCLK, x=1..15 - bank_select: EXMC_SDRAM_DEVICE0_SELECT, EXMC_SDRAM_DEVICE1_SELECT, EXMC_SDRAM_DEVICE0_1_SELECT - command: EXMC_SDRAM_NORMAL_OPERATION, EXMC_SDRAM_CLOCK_ENABLE, EXMC_SDRAM_PRECHARGE_ALL, - EXMC_SDRAM_AUTO_REFRESH, EXMC_SDRAM_LOAD_MODE_REGISTER, EXMC_SDRAM_SELF_REFRESH, - EXMC_SDRAM_POWERDOWN_ENTRY - \param[out] none - \retval none -*/ -void exmc_sdram_command_config(exmc_sdram_command_parameter_struct* exmc_sdram_command_init_struct) -{ - /* configure command register */ - EXMC_SDCMD = (uint32_t)((exmc_sdram_command_init_struct->command) | - (exmc_sdram_command_init_struct->bank_select) | - ((exmc_sdram_command_init_struct->auto_refresh_number)) | - ((exmc_sdram_command_init_struct->mode_register_content)<> SDSTAT_STA0_OFFSET); - }else{ - sdstat = ((uint32_t)(EXMC_SDSTAT & EXMC_SDSDAT_STA1) >> SDSTAT_STA1_OFFSET); - } - - return sdstat; -} - -/*! - \brief set the read command - \param[in] read_command_mode: configure SPI PSRAM read command mode - only one parameter can be selected which is shown as below: - \arg EXMC_SQPIPSRAM_READ_MODE_DISABLE: not SPI mode - \arg EXMC_SQPIPSRAM_READ_MODE_SPI: SPI mode - \arg EXMC_SQPIPSRAM_READ_MODE_SQPI: SQPI mode - \arg EXMC_SQPIPSRAM_READ_MODE_QPI: QPI mode - \param[in] read_wait_cycle: wait cycle number after address phase,0..15 - \param[in] read_command_code: read command for AHB read transfer - \param[out] none - \retval none -*/ -void exmc_sqpipsram_read_command_set(uint32_t read_command_mode,uint32_t read_wait_cycle, uint32_t read_command_code) -{ - uint32_t srcmd; - - srcmd = (uint32_t) read_command_mode | - ((read_wait_cycle << SRCMD_RWAITCYCLE_OFFSET) & EXMC_SRCMD_RWAITCYCLE) | - ((read_command_code & EXMC_SRCMD_RCMD)); - EXMC_SRCMD = srcmd; -} - -/*! - \brief set the write command - \param[in] write_command_mode: configure SPI PSRAM write command mode - only one parameter can be selected which is shown as below: - \arg EXMC_SQPIPSRAM_WRITE_MODE_DISABLE: not SPI mode - \arg EXMC_SQPIPSRAM_WRITE_MODE_SPI: SPI mode - \arg EXMC_SQPIPSRAM_WRITE_MODE_SQPI: SQPI mode - \arg EXMC_SQPIPSRAM_WRITE_MODE_QPI: QPI mode - \param[in] write_wait_cycle: wait cycle number after address phase,0..15 - \param[in] write_command_code: read command for AHB read transfer - \param[out] none - \retval none -*/ -void exmc_sqpipsram_write_command_set(uint32_t write_command_mode,uint32_t write_wait_cycle, uint32_t write_command_code) -{ - uint32_t swcmd; - - swcmd = (uint32_t) write_command_mode | - ((write_wait_cycle << SWCMD_WWAITCYCLE_OFFSET) & EXMC_SWCMD_WWAITCYCLE) | - ((write_command_code & EXMC_SWCMD_WCMD)); - EXMC_SWCMD = swcmd; -} - -/*! - \brief send SPI read ID command - \param[in] none - \param[out] none - \retval none -*/ -void exmc_sqpipsram_read_id_command_send(void) -{ - EXMC_SRCMD |= EXMC_SRCMD_RDID; -} - -/*! - \brief send SPI special command which does not have address and data phase - \param[in] none - \param[out] none - \retval none -*/ -void exmc_sqpipsram_write_cmd_send(void) -{ - EXMC_SWCMD |= EXMC_SWCMD_SC; -} - -/*! - \brief get the EXMC SPI ID low data - \param[in] none - \param[out] none - \retval the ID low data -*/ -uint32_t exmc_sqpipsram_low_id_get(void) -{ - return (EXMC_SIDL); -} - -/*! - \brief get the EXMC SPI ID high data - \param[in] none - \param[out] none - \retval the ID high data -*/ -uint32_t exmc_sqpipsram_high_id_get(void) -{ - return (EXMC_SIDH); -} - -/*! - \brief get the bit value of EXMC send write command bit or read ID command - \param[in] send_command_flag: the send command flag - only one parameter can be selected which is shown as below: - \arg EXMC_SEND_COMMAND_FLAG_RDID: EXMC_SRCMD_RDID flag bit - \arg EXMC_SEND_COMMAND_FLAG_SC: EXMC_SWCMD_SC flag bit - \param[out] none - \retval the new value of send command flag -*/ -FlagStatus exmc_sqpipsram_send_command_state_get(uint32_t send_command_flag) -{ - uint32_t flag = 0x00000000U; - - if(EXMC_SEND_COMMAND_FLAG_RDID == send_command_flag){ - flag = EXMC_SRCMD; - }else if(EXMC_SEND_COMMAND_FLAG_SC == send_command_flag){ - flag = EXMC_SWCMD; - }else{ - } - - if (flag & send_command_flag){ - /* flag is set */ - return SET; - }else{ - /* flag is reset */ - return RESET; - } -} - -/*! - \brief enable EXMC interrupt - \param[in] exmc_bank: specifies the NAND bank,PC card bank or SDRAM device - only one parameter can be selected which is shown as below: - \arg EXMC_BANK1_NAND: the NAND bank1 - \arg EXMC_BANK2_NAND: the NAND bank2 - \arg EXMC_BANK3_PCCARD: the PC card bank - \arg EXMC_SDRAM_DEVICE0: the SDRAM device0 - \arg EXMC_SDRAM_DEVICE1: the SDRAM device1 - \param[in] interrupt: specify get which interrupt flag - only one parameter can be selected which is shown as below: - \arg EXMC_NAND_PCCARD_INT_FLAG_RISE: rising edge interrupt and flag - \arg EXMC_NAND_PCCARD_INT_FLAG_LEVEL: high-level interrupt and flag - \arg EXMC_NAND_PCCARD_INT_FLAG_FALL: falling edge interrupt and flag - \arg EXMC_SDRAM_INT_FLAG_REFRESH: refresh error interrupt and flag - \param[out] none - \retval none -*/ -void exmc_interrupt_enable(uint32_t exmc_bank, uint32_t interrupt) -{ - if((EXMC_BANK1_NAND == exmc_bank) || (EXMC_BANK2_NAND == exmc_bank) || (EXMC_BANK3_PCCARD == exmc_bank)){ - /* NAND bank1,bank2 or PC card bank3 */ - EXMC_NPINTEN(exmc_bank) |= interrupt; - }else{ - /* SDRAM device0 or device1 */ - EXMC_SDARI |= EXMC_SDARI_REIE; - } -} - -/*! - \brief disable EXMC interrupt - \param[in] exmc_bank: specifies the NAND bank , PC card bank or SDRAM device - only one parameter can be selected which is shown as below: - \arg EXMC_BANK1_NAND: the NAND bank1 - \arg EXMC_BANK2_NAND: the NAND bank2 - \arg EXMC_BANK3_PCCARD: the PC card bank - \arg EXMC_SDRAM_DEVICE0: the SDRAM device0 - \arg EXMC_SDRAM_DEVICE1: the SDRAM device1 - \param[in] interrupt: specify get which interrupt flag - only one parameter can be selected which is shown as below: - \arg EXMC_NAND_PCCARD_INT_FLAG_RISE: rising edge interrupt and flag - \arg EXMC_NAND_PCCARD_INT_FLAG_LEVEL: high-level interrupt and flag - \arg EXMC_NAND_PCCARD_INT_FLAG_FALL: falling edge interrupt and flag - \arg EXMC_SDRAM_INT_FLAG_REFRESH: refresh error interrupt and flag - \param[out] none - \retval none -*/ -void exmc_interrupt_disable(uint32_t exmc_bank, uint32_t interrupt) -{ - if((EXMC_BANK1_NAND == exmc_bank) || (EXMC_BANK2_NAND == exmc_bank) || (EXMC_BANK3_PCCARD == exmc_bank)){ - /* NAND bank1,bank2 or PC card bank3 */ - EXMC_NPINTEN(exmc_bank) &= ~interrupt; - }else{ - /* SDRAM device0 or device1 */ - EXMC_SDARI &= ~EXMC_SDARI_REIE; - } -} - -/*! - \brief get EXMC flag status - \param[in] exmc_bank: specifies the NAND bank , PC card bank or SDRAM device - only one parameter can be selected which is shown as below: - \arg EXMC_BANK1_NAND: the NAND bank1 - \arg EXMC_BANK2_NAND: the NAND bank2 - \arg EXMC_BANK3_PCCARD: the PC Card bank - \arg EXMC_SDRAM_DEVICE0: the SDRAM device0 - \arg EXMC_SDRAM_DEVICE1: the SDRAM device1 - \param[in] flag: EXMC status and flag - only one parameter can be selected which is shown as below: - \arg EXMC_NAND_PCCARD_FLAG_RISE: interrupt rising edge status - \arg EXMC_NAND_PCCARD_FLAG_LEVEL: interrupt high-level status - \arg EXMC_NAND_PCCARD_FLAG_FALL: interrupt falling edge status - \arg EXMC_NAND_PCCARD_FLAG_FIFOE: FIFO empty flag - \arg EXMC_SDRAM_FLAG_REFRESH: refresh error interrupt flag - \arg EXMC_SDRAM_FLAG_NREADY: not ready status - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus exmc_flag_get(uint32_t exmc_bank,uint32_t flag) -{ - uint32_t status = 0x00000000U; - - if((EXMC_BANK1_NAND == exmc_bank) || (EXMC_BANK2_NAND == exmc_bank) || (EXMC_BANK3_PCCARD == exmc_bank)){ - /* NAND bank1,bank2 or PC card bank3 */ - status = EXMC_NPINTEN(exmc_bank); - }else{ - /* SDRAM device0 or device1 */ - status = EXMC_SDSTAT; - } - - if ((status & flag) != (uint32_t)flag ){ - /* flag is reset */ - return RESET; - }else{ - /* flag is set */ - return SET; - } -} - -/*! - \brief clear EXMC flag status - \param[in] exmc_bank: specifie the NAND bank , PCCARD bank or SDRAM device - only one parameter can be selected which is shown as below: - \arg EXMC_BANK1_NAND: the NAND bank1 - \arg EXMC_BANK2_NAND: the NAND bank2 - \arg EXMC_BANK3_PCCARD: the PC card bank - \arg EXMC_SDRAM_DEVICE0: the SDRAM device0 - \arg EXMC_SDRAM_DEVICE1: the SDRAM device1 - \param[in] flag: EXMC status and flag - only one parameter can be selected which is shown as below: - \arg EXMC_NAND_PCCARD_FLAG_RISE: interrupt rising edge status - \arg EXMC_NAND_PCCARD_FLAG_LEVEL: interrupt high-level status - \arg EXMC_NAND_PCCARD_FLAG_FALL: interrupt falling edge status - \arg EXMC_NAND_PCCARD_FLAG_FIFOE: FIFO empty flag - \arg EXMC_SDRAM_FLAG_REFRESH: refresh error interrupt flag - \arg EXMC_SDRAM_FLAG_NREADY: not ready status - \param[out] none - \retval none -*/ -void exmc_flag_clear(uint32_t exmc_bank, uint32_t flag) -{ - if((EXMC_BANK1_NAND == exmc_bank) || (EXMC_BANK2_NAND == exmc_bank) || (EXMC_BANK3_PCCARD == exmc_bank)){ - /* NAND bank1,bank2 or PC card bank3 */ - EXMC_NPINTEN(exmc_bank) &= ~flag; - }else{ - /* SDRAM device0 or device1 */ - EXMC_SDSTAT &= ~flag; - } -} - -/*! - \brief get EXMC interrupt flag - \param[in] exmc_bank: specifies the NAND bank , PC card bank or SDRAM device - only one parameter can be selected which is shown as below: - \arg EXMC_BANK1_NAND: the NAND bank1 - \arg EXMC_BANK2_NAND: the NAND bank2 - \arg EXMC_BANK3_PCCARD: the PC card bank - \arg EXMC_SDRAM_DEVICE0: the SDRAM device0 - \arg EXMC_SDRAM_DEVICE1: the SDRAM device1 - \param[in] interrupt: EXMC interrupt flag - only one parameter can be selected which is shown as below: - \arg EXMC_NAND_PCCARD_INT_FLAG_RISE: rising edge interrupt and flag - \arg EXMC_NAND_PCCARD_INT_FLAG_LEVEL: high-level interrupt and flag - \arg EXMC_NAND_PCCARD_INT_FLAG_FALL: falling edge interrupt and flag - \arg EXMC_SDRAM_INT_FLAG_REFRESH: refresh error interrupt and flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus exmc_interrupt_flag_get(uint32_t exmc_bank, uint32_t interrupt) -{ - uint32_t status = 0x00000000U,interrupt_enable = 0x00000000U,interrupt_state = 0x00000000U; - - if((EXMC_BANK1_NAND == exmc_bank) || (EXMC_BANK2_NAND == exmc_bank) || (EXMC_BANK3_PCCARD == exmc_bank)){ - /* NAND bank1,bank2 or PC card bank3 */ - status = EXMC_NPINTEN(exmc_bank); - interrupt_state = (status & (interrupt >> INTEN_INTS_OFFSET)); - }else{ - /* SDRAM device0 or device1 */ - status = EXMC_SDARI; - interrupt_state = (EXMC_SDSTAT & EXMC_SDSDAT_REIF); - } - - interrupt_enable = (status & interrupt); - - if ((interrupt_enable) && (interrupt_state)){ - /* interrupt flag is set */ - return SET; - }else{ - /* interrupt flag is reset */ - return RESET; - } -} - -/*! - \brief clear EXMC interrupt flag - \param[in] exmc_bank: specifies the NAND bank , PC card bank or SDRAM device - only one parameter can be selected which is shown as below: - \arg EXMC_BANK1_NAND: the NAND bank1 - \arg EXMC_BANK2_NAND: the NAND bank2 - \arg EXMC_BANK3_PCCARD: the PC card bank - \arg EXMC_SDRAM_DEVICE0: the SDRAM device0 - \arg EXMC_SDRAM_DEVICE1: the SDRAM device1 - \param[in] interrupt: EXMC interrupt flag - only one parameter can be selected which is shown as below: - \arg EXMC_NAND_PCCARD_INT_FLAG_RISE: rising edge interrupt and flag - \arg EXMC_NAND_PCCARD_INT_FLAG_LEVEL: high-level interrupt and flag - \arg EXMC_NAND_PCCARD_INT_FLAG_FALL: falling edge interrupt and flag - \arg EXMC_SDRAM_INT_FLAG_REFRESH: refresh error interrupt and flag - \param[out] none - \retval none -*/ -void exmc_interrupt_flag_clear(uint32_t exmc_bank, uint32_t interrupt) -{ - if((EXMC_BANK1_NAND == exmc_bank) || (EXMC_BANK2_NAND == exmc_bank) || (EXMC_BANK3_PCCARD == exmc_bank)){ - /* NAND bank1,bank2 or PC card bank3 */ - EXMC_NPINTEN(exmc_bank) &= ~(interrupt >> INTEN_INTS_OFFSET); - }else{ - /* SDRAM device0 or device1 */ - EXMC_SDARI |= EXMC_SDARI_REC; - } -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_exti.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_exti.c deleted file mode 100644 index 7a8785446d..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_exti.c +++ /dev/null @@ -1,257 +0,0 @@ -/*! - \file gd32f4xx_exti.c - \brief EXTI driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.1, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_exti.h" - -/*! - \brief deinitialize the EXTI - \param[in] none - \param[out] none - \retval none -*/ -void exti_deinit(void) -{ - /* reset the value of all the EXTI registers */ - EXTI_INTEN = (uint32_t)0x00000000U; - EXTI_EVEN = (uint32_t)0x00000000U; - EXTI_RTEN = (uint32_t)0x00000000U; - EXTI_FTEN = (uint32_t)0x00000000U; - EXTI_SWIEV = (uint32_t)0x00000000U; -} - -/*! - \brief initialize the EXTI - \param[in] linex: EXTI line number, refer to exti_line_enum - only one parameter can be selected which is shown as below: - \arg EXTI_x (x=0..22): EXTI line x - \param[in] mode: interrupt or event mode, refer to exti_mode_enum - only one parameter can be selected which is shown as below: - \arg EXTI_INTERRUPT: interrupt mode - \arg EXTI_EVENT: event mode - \param[in] trig_type: interrupt trigger type, refer to exti_trig_type_enum - only one parameter can be selected which is shown as below: - \arg EXTI_TRIG_RISING: rising edge trigger - \arg EXTI_TRIG_FALLING: falling trigger - \arg EXTI_TRIG_BOTH: rising and falling trigger - \arg EXTI_TRIG_NONE: without rising edge or falling edge trigger - \param[out] none - \retval none -*/ -void exti_init(exti_line_enum linex, \ - exti_mode_enum mode, \ - exti_trig_type_enum trig_type) -{ - /* reset the EXTI line x */ - EXTI_INTEN &= ~(uint32_t)linex; - EXTI_EVEN &= ~(uint32_t)linex; - EXTI_RTEN &= ~(uint32_t)linex; - EXTI_FTEN &= ~(uint32_t)linex; - - /* set the EXTI mode and enable the interrupts or events from EXTI line x */ - switch(mode){ - case EXTI_INTERRUPT: - EXTI_INTEN |= (uint32_t)linex; - break; - case EXTI_EVENT: - EXTI_EVEN |= (uint32_t)linex; - break; - default: - break; - } - - /* set the EXTI trigger type */ - switch(trig_type){ - case EXTI_TRIG_RISING: - EXTI_RTEN |= (uint32_t)linex; - EXTI_FTEN &= ~(uint32_t)linex; - break; - case EXTI_TRIG_FALLING: - EXTI_RTEN &= ~(uint32_t)linex; - EXTI_FTEN |= (uint32_t)linex; - break; - case EXTI_TRIG_BOTH: - EXTI_RTEN |= (uint32_t)linex; - EXTI_FTEN |= (uint32_t)linex; - break; - case EXTI_TRIG_NONE: - default: - break; - } -} - -/*! - \brief enable the interrupts from EXTI line x - \param[in] linex: EXTI line number, refer to exti_line_enum - only one parameter can be selected which is shown as below: - \arg EXTI_x (x=0..22): EXTI line x - \param[out] none - \retval none -*/ -void exti_interrupt_enable(exti_line_enum linex) -{ - EXTI_INTEN |= (uint32_t)linex; -} - -/*! - \brief disable the interrupt from EXTI line x - \param[in] linex: EXTI line number, refer to exti_line_enum - only one parameter can be selected which is shown as below: - \arg EXTI_x (x=0..22): EXTI line x - \param[out] none - \retval none -*/ -void exti_interrupt_disable(exti_line_enum linex) -{ - EXTI_INTEN &= ~(uint32_t)linex; -} - -/*! - \brief enable the events from EXTI line x - \param[in] linex: EXTI line number, refer to exti_line_enum - only one parameter can be selected which is shown as below: - \arg EXTI_x (x=0..22): EXTI line x - \param[out] none - \retval none -*/ -void exti_event_enable(exti_line_enum linex) -{ - EXTI_EVEN |= (uint32_t)linex; -} - -/*! - \brief disable the events from EXTI line x - \param[in] linex: EXTI line number, refer to exti_line_enum - only one parameter can be selected which is shown as below: - \arg EXTI_x (x=0..22): EXTI line x - \param[out] none - \retval none -*/ -void exti_event_disable(exti_line_enum linex) -{ - EXTI_EVEN &= ~(uint32_t)linex; -} - -/*! - \brief enable EXTI software interrupt event - \param[in] linex: EXTI line number, refer to exti_line_enum - only one parameter can be selected which is shown as below: - \arg EXTI_x (x=0..22): EXTI line x - \param[out] none - \retval none -*/ -void exti_software_interrupt_enable(exti_line_enum linex) -{ - EXTI_SWIEV |= (uint32_t)linex; -} - -/*! - \brief disable EXTI software interrupt event - \param[in] linex: EXTI line number, refer to exti_line_enum - only one parameter can be selected which is shown as below: - \arg EXTI_x (x=0..22): EXTI line x - \param[out] none - \retval none -*/ -void exti_software_interrupt_disable(exti_line_enum linex) -{ - EXTI_SWIEV &= ~(uint32_t)linex; -} - -/*! - \brief get EXTI lines flag - \param[in] linex: EXTI line number, refer to exti_line_enum - only one parameter can be selected which is shown as below: - \arg EXTI_x (x=0..22): EXTI line x - \param[out] none - \retval FlagStatus: status of flag (RESET or SET) -*/ -FlagStatus exti_flag_get(exti_line_enum linex) -{ - if(RESET != (EXTI_PD & (uint32_t)linex)){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear EXTI lines pending flag - \param[in] linex: EXTI line number, refer to exti_line_enum - only one parameter can be selected which is shown as below: - \arg EXTI_x (x=0..22): EXTI line x - \param[out] none - \retval none -*/ -void exti_flag_clear(exti_line_enum linex) -{ - EXTI_PD = (uint32_t)linex; -} - -/*! - \brief get EXTI lines flag when the interrupt flag is set - \param[in] linex: EXTI line number, refer to exti_line_enum - only one parameter can be selected which is shown as below: - \arg EXTI_x (x=0..22): EXTI line x - \param[out] none - \retval FlagStatus: status of flag (RESET or SET) -*/ -FlagStatus exti_interrupt_flag_get(exti_line_enum linex) -{ - uint32_t flag_left, flag_right; - - flag_left = EXTI_PD & (uint32_t)linex; - flag_right = EXTI_INTEN & (uint32_t)linex; - - if((RESET != flag_left) && (RESET != flag_right)){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear EXTI lines pending flag - \param[in] linex: EXTI line number, refer to exti_line_enum - only one parameter can be selected which is shown as below: - \arg EXTI_x (x=0..22): EXTI line x - \param[out] none - \retval none -*/ -void exti_interrupt_flag_clear(exti_line_enum linex) -{ - EXTI_PD = (uint32_t)linex; -} - diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_fmc.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_fmc.c deleted file mode 100644 index f0aa3d2ea8..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_fmc.c +++ /dev/null @@ -1,932 +0,0 @@ -/*! - \file gd32f4xx_fmc.c - \brief FMC driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - - -#include "gd32f4xx_fmc.h" - -/*! - \brief set the wait state counter value - \param[in] wscnt: wait state counter value - only one parameter can be selected which is shown as below: - \arg WS_WSCNT_0: FMC 0 wait - \arg WS_WSCNT_1: FMC 1 wait - \arg WS_WSCNT_2: FMC 2 wait - \arg WS_WSCNT_3: FMC 3 wait - \arg WS_WSCNT_4: FMC 4 wait - \arg WS_WSCNT_5: FMC 5 wait - \arg WS_WSCNT_6: FMC 6 wait - \arg WS_WSCNT_7: FMC 7 wait - \arg WS_WSCNT_8: FMC 8 wait - \arg WS_WSCNT_9: FMC 9 wait - \arg WS_WSCNT_10: FMC 10 wait - \arg WS_WSCNT_11: FMC 11 wait - \arg WS_WSCNT_12: FMC 12 wait - \arg WS_WSCNT_13: FMC 13 wait - \arg WS_WSCNT_14: FMC 14 wait - \arg WS_WSCNT_15: FMC 15 wait - \param[out] none - \retval none -*/ -void fmc_wscnt_set(uint32_t wscnt) -{ - uint32_t reg; - - reg = FMC_WS; - /* set the wait state counter value */ - reg &= ~FMC_WC_WSCNT; - FMC_WS = (reg | wscnt); -} - -/*! - \brief unlock the main FMC operation - \param[in] none - \param[out] none - \retval none -*/ -void fmc_unlock(void) -{ - if((RESET != (FMC_CTL & FMC_CTL_LK))){ - /* write the FMC key */ - FMC_KEY = UNLOCK_KEY0; - FMC_KEY = UNLOCK_KEY1; - } -} - -/*! - \brief lock the main FMC operation - \param[in] none - \param[out] none - \retval none -*/ -void fmc_lock(void) -{ - /* set the LK bit*/ - FMC_CTL |= FMC_CTL_LK; -} - -/*! - \brief erase sector - \param[in] fmc_sector: select the sector to erase - only one parameter can be selected which is shown as below: - \arg CTL_SECTOR_NUMBER_0: sector 0 - \arg CTL_SECTOR_NUMBER_1: sector 1 - \arg CTL_SECTOR_NUMBER_2: sector 2 - \arg CTL_SECTOR_NUMBER_3: sector 3 - \arg CTL_SECTOR_NUMBER_4: sector 4 - \arg CTL_SECTOR_NUMBER_5: sector 5 - \arg CTL_SECTOR_NUMBER_6: sector 6 - \arg CTL_SECTOR_NUMBER_7: sector 7 - \arg CTL_SECTOR_NUMBER_8: sector 8 - \arg CTL_SECTOR_NUMBER_9: sector 9 - \arg CTL_SECTOR_NUMBER_10: sector 10 - \arg CTL_SECTOR_NUMBER_11: sector 11 - \arg CTL_SECTOR_NUMBER_12: sector 12 - \arg CTL_SECTOR_NUMBER_13: sector 13 - \arg CTL_SECTOR_NUMBER_14: sector 14 - \arg CTL_SECTOR_NUMBER_15: sector 15 - \arg CTL_SECTOR_NUMBER_16: sector 16 - \arg CTL_SECTOR_NUMBER_17: sector 17 - \arg CTL_SECTOR_NUMBER_18: sector 18 - \arg CTL_SECTOR_NUMBER_19: sector 19 - \arg CTL_SECTOR_NUMBER_20: sector 20 - \arg CTL_SECTOR_NUMBER_21: sector 21 - \arg CTL_SECTOR_NUMBER_22: sector 22 - \arg CTL_SECTOR_NUMBER_23: sector 23 - \arg CTL_SECTOR_NUMBER_24: sector 24 - \arg CTL_SECTOR_NUMBER_25: sector 25 - \arg CTL_SECTOR_NUMBER_26: sector 26 - \arg CTL_SECTOR_NUMBER_27: sector 27 - \param[out] none - \retval state of FMC - \arg FMC_READY: the operation has been completed - \arg FMC_BUSY: the operation is in progress - \arg FMC_RDDERR: read D-bus protection error - \arg FMC_PGSERR: program sequence error - \arg FMC_PGMERR: program size not match error - \arg FMC_WPERR: erase/program protection error - \arg FMC_OPERR: operation error - \arg FMC_PGERR: program error -*/ -fmc_state_enum fmc_sector_erase(uint32_t fmc_sector) -{ - fmc_state_enum fmc_state = FMC_READY; - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - if(FMC_READY == fmc_state){ - /* start sector erase */ - FMC_CTL &= ~FMC_CTL_SN; - FMC_CTL |= (FMC_CTL_SER | fmc_sector); - FMC_CTL |= FMC_CTL_START; - - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - /* reset the SER bit */ - FMC_CTL &= (~FMC_CTL_SER); - FMC_CTL &= ~FMC_CTL_SN; - } - - /* return the FMC state */ - return fmc_state; -} - -/*! - \brief erase whole chip - \param[in] none - \param[out] none - \retval state of FMC - \arg FMC_READY: the operation has been completed - \arg FMC_BUSY: the operation is in progress - \arg FMC_RDDERR: read D-bus protection error - \arg FMC_PGSERR: program sequence error - \arg FMC_PGMERR: program size not match error - \arg FMC_WPERR: erase/program protection error - \arg FMC_OPERR: operation error - \arg FMC_PGERR: program error -*/ -fmc_state_enum fmc_mass_erase(void) -{ - fmc_state_enum fmc_state = FMC_READY; - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - if(FMC_READY == fmc_state){ - /* start whole chip erase */ - FMC_CTL |= (FMC_CTL_MER0 | FMC_CTL_MER1); - FMC_CTL |= FMC_CTL_START; - - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - /* reset the MER bits */ - FMC_CTL &= ~(FMC_CTL_MER0 | FMC_CTL_MER1); - } - - /* return the fmc state */ - return fmc_state; -} - -/*! - \brief erase all FMC sectors in bank0 - \param[in] none - \param[out] none - \retval state of FMC - \arg FMC_READY: the operation has been completed - \arg FMC_BUSY: the operation is in progress - \arg FMC_RDDERR: read D-bus protection error - \arg FMC_PGSERR: program sequence error - \arg FMC_PGMERR: program size not match error - \arg FMC_WPERR: erase/program protection error - \arg FMC_OPERR: operation error - \arg FMC_PGERR: program error -*/ -fmc_state_enum fmc_bank0_erase(void) -{ - fmc_state_enum fmc_state = FMC_READY; - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - if(FMC_READY == fmc_state){ - /* start FMC bank0 erase */ - FMC_CTL |= FMC_CTL_MER0; - FMC_CTL |= FMC_CTL_START; - - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - /* reset the MER0 bit */ - FMC_CTL &= (~FMC_CTL_MER0); - } - - /* return the fmc state */ - return fmc_state; -} - -/*! - \brief erase all FMC sectors in bank1 - \param[in] none - \param[out] none - \retval state of FMC - \arg FMC_READY: the operation has been completed - \arg FMC_BUSY: the operation is in progress - \arg FMC_RDDERR: read D-bus protection error - \arg FMC_PGSERR: program sequence error - \arg FMC_PGMERR: program size not match error - \arg FMC_WPERR: erase/program protection error - \arg FMC_OPERR: operation error - \arg FMC_PGERR: program error -*/ -fmc_state_enum fmc_bank1_erase(void) -{ - fmc_state_enum fmc_state = FMC_READY; - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - if(FMC_READY == fmc_state){ - /* start FMC bank1 erase */ - FMC_CTL |= FMC_CTL_MER1; - FMC_CTL |= FMC_CTL_START; - - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - /* reset the MER1 bit */ - FMC_CTL &= (~FMC_CTL_MER1); - } - - /* return the fmc state */ - return fmc_state; -} - -/*! - \brief program a word at the corresponding address - \param[in] address: address to program - \param[in] data: word to program(0x00000000 - 0xFFFFFFFF) - \param[out] none - \retval state of FMC - \arg FMC_READY: the operation has been completed - \arg FMC_BUSY: the operation is in progress - \arg FMC_RDDERR: read D-bus protection error - \arg FMC_PGSERR: program sequence error - \arg FMC_PGMERR: program size not match error - \arg FMC_WPERR: erase/program protection error - \arg FMC_OPERR: operation error - \arg FMC_PGERR: program error -*/ -fmc_state_enum fmc_word_program(uint32_t address, uint32_t data) -{ - fmc_state_enum fmc_state = FMC_READY; - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - if(FMC_READY == fmc_state){ - /* set the PG bit to start program */ - FMC_CTL &= ~FMC_CTL_PSZ; - FMC_CTL |= CTL_PSZ_WORD; - FMC_CTL |= FMC_CTL_PG; - - REG32(address) = data; - - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - /* reset the PG bit */ - FMC_CTL &= ~FMC_CTL_PG; - } - - /* return the FMC state */ - return fmc_state; -} - -/*! - \brief program a half word at the corresponding address - \param[in] address: address to program - \param[in] data: halfword to program(0x0000 - 0xFFFF) - \param[out] none - \retval state of FMC - \arg FMC_READY: the operation has been completed - \arg FMC_BUSY: the operation is in progress - \arg FMC_RDDERR: read D-bus protection error - \arg FMC_PGSERR: program sequence error - \arg FMC_PGMERR: program size not match error - \arg FMC_WPERR: erase/program protection error - \arg FMC_OPERR: operation error - \arg FMC_PGERR: program error -*/ -fmc_state_enum fmc_halfword_program(uint32_t address, uint16_t data) -{ - fmc_state_enum fmc_state = FMC_READY; - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - if(FMC_READY == fmc_state){ - /* set the PG bit to start program */ - FMC_CTL &= ~FMC_CTL_PSZ; - FMC_CTL |= CTL_PSZ_HALF_WORD; - FMC_CTL |= FMC_CTL_PG; - - REG16(address) = data; - - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - /* reset the PG bit */ - FMC_CTL &= ~FMC_CTL_PG; - } - - /* return the FMC state */ - return fmc_state; -} - -/*! - \brief program a byte at the corresponding address - \param[in] address: address to program - \param[in] data: byte to program(0x00 - 0xFF) - \param[out] none - \retval state of FMC - \arg FMC_READY: the operation has been completed - \arg FMC_BUSY: the operation is in progress - \arg FMC_RDDERR: read D-bus protection error - \arg FMC_PGSERR: program sequence error - \arg FMC_PGMERR: program size not match error - \arg FMC_WPERR: erase/program protection error - \arg FMC_OPERR: operation error - \arg FMC_PGERR: program error -*/ -fmc_state_enum fmc_byte_program(uint32_t address, uint8_t data) -{ - fmc_state_enum fmc_state = FMC_READY; - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - if(FMC_READY == fmc_state){ - /* set the PG bit to start program */ - FMC_CTL &= ~FMC_CTL_PSZ; - FMC_CTL |= CTL_PSZ_BYTE; - FMC_CTL |= FMC_CTL_PG; - - REG8(address) = data; - - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - /* reset the PG bit */ - FMC_CTL &= ~FMC_CTL_PG; - } - - /* return the FMC state */ - return fmc_state; -} - -/*! - \brief unlock the option byte operation - \param[in] none - \param[out] none - \retval none -*/ -void ob_unlock(void) -{ - if(RESET != (FMC_OBCTL0 & FMC_OBCTL0_OB_LK)){ - /* write the FMC key */ - FMC_OBKEY = OB_UNLOCK_KEY0; - FMC_OBKEY = OB_UNLOCK_KEY1; - } -} - -/*! - \brief lock the option byte operation - \param[in] none - \param[out] none - \retval none -*/ -void ob_lock(void) -{ - /* reset the OB_LK bit */ - FMC_OBCTL0 |= FMC_OBCTL0_OB_LK; -} - -/*! - \brief send option byte change command - \param[in] none - \param[out] none - \retval none -*/ -void ob_start(void) -{ - fmc_state_enum fmc_state = FMC_READY; - /* set the OB_START bit in OBCTL0 register */ - FMC_OBCTL0 |= FMC_OBCTL0_OB_START; - fmc_state = fmc_ready_wait(); - if(FMC_READY != fmc_state){ - while(1){ - } - } -} - -/*! - \brief erase option byte - \param[in] none - \param[out] none - \retval none -*/ -void ob_erase(void) -{ - uint32_t reg, reg1; - fmc_state_enum fmc_state = FMC_READY; - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - if(FMC_READY == fmc_state){ - reg = FMC_OBCTL0; - reg1 = FMC_OBCTL1; - - /* reset the OB_FWDGT, OB_DEEPSLEEP and OB_STDBY, set according to ob_fwdgt ,ob_deepsleep and ob_stdby */ - reg |= (FMC_OBCTL0_NWDG_HW | FMC_OBCTL0_NRST_DPSLP | FMC_OBCTL0_NRST_STDBY); - /* reset the BOR level */ - reg |= FMC_OBCTL0_BOR_TH; - /* reset option byte boot bank value */ - reg &= ~FMC_OBCTL0_BB; - /* reset option byte dbs value */ - reg &= ~FMC_OBCTL0_DBS; - - /* reset drp and wp value */ - reg |= FMC_OBCTL0_WP0; - reg &= (~FMC_OBCTL0_DRP); - FMC_OBCTL0 = reg; - - reg1 |= FMC_OBCTL1_WP1; - FMC_OBCTL1 = reg1; - - FMC_OBCTL0 = reg; - } -} - -/*! - \brief enable write protection - \param[in] ob_wp: specify sector to be write protected - one or more parameters can be selected which are shown as below: - \arg OB_WP_x(x=0..22):sector x(x = 0,1,2...22) - \arg OB_WP_23_27: sector23~27 - \arg OB_WP_ALL: all sector - \param[out] none - \retval none -*/ -void ob_write_protection_enable(uint32_t ob_wp) -{ - uint32_t reg0 = FMC_OBCTL0; - uint32_t reg1 = FMC_OBCTL1; - fmc_state_enum fmc_state = FMC_READY; - if(RESET != (FMC_OBCTL0 & FMC_OBCTL0_DRP)){ - while(1){ - } - } - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - if(FMC_READY == fmc_state){ - reg0 &= (~((uint32_t)ob_wp << 16)); - reg1 &= (~(ob_wp & 0xFFFF0000U)); - FMC_OBCTL0 = reg0; - FMC_OBCTL1 = reg1; - } -} - -/*! - \brief disable write protection - \param[in] ob_wp: specify sector to be write protected - one or more parameters can be selected which are shown as below: - \arg OB_WP_x(x=0..22):sector x(x = 0,1,2...22) - \arg OB_WP_23_27: sector23~27 - \arg OB_WP_ALL: all sector - \param[out] none - \retval none -*/ -void ob_write_protection_disable(uint32_t ob_wp) -{ - uint32_t reg0 = FMC_OBCTL0; - uint32_t reg1 = FMC_OBCTL1; - fmc_state_enum fmc_state = FMC_READY; - if(RESET != (FMC_OBCTL0 & FMC_OBCTL0_DRP)){ - while(1){ - } - } - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - if(FMC_READY == fmc_state){ - reg0 |= ((uint32_t)ob_wp << 16); - reg1 |= (ob_wp & 0xFFFF0000U); - FMC_OBCTL0 = reg0; - FMC_OBCTL1 = reg1; - } -} - -/*! - \brief enable erase/program protection and D-bus read protection - \param[in] ob_drp: enable the WPx bits used as erase/program protection and D-bus read protection of each sector - one or more parameters can be selected which are shown as below: - \arg OB_DRP_x(x=0..22): sector x(x = 0,1,2...22) - \arg OB_DRP_23_27: sector23~27 - \arg OB_DRP_ALL: all sector - \param[out] none - \retval none -*/ -void ob_drp_enable(uint32_t ob_drp) -{ - uint32_t reg0 = FMC_OBCTL0; - uint32_t reg1 = FMC_OBCTL1; - fmc_state_enum fmc_state = FMC_READY; - uint32_t drp_state = FMC_OBCTL0 & FMC_OBCTL0_DRP; - uint32_t wp0_state = FMC_OBCTL0 & FMC_OBCTL0_WP0; - uint32_t wp1_state = FMC_OBCTL1 & FMC_OBCTL1_WP1; - /*disable write protection before enable D-bus read protection*/ - if((RESET != drp_state) && ((FMC_OBCTL0_WP0 != wp0_state) && (FMC_OBCTL1_WP1 != wp1_state))){ - while(1){ - } - } - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - if(FMC_READY == fmc_state){ - reg0 &= ~FMC_OBCTL0_WP0; - reg1 &= ~FMC_OBCTL1_WP1; - reg0 |= ((uint32_t)ob_drp << 16); - reg1 |= ((uint32_t)ob_drp & 0xFFFF0000U); - FMC_OBCTL0 = reg0; - FMC_OBCTL1 = reg1; - FMC_OBCTL0 |= FMC_OBCTL0_DRP; - } -} - -/*! - \brief disable erase/program protection and D-bus read protection - \param[in] ob_drp: disable the WPx bits used as erase/program protection and D-bus read protection of each sector - one or more parameters can be selected which are shown as below: - \arg OB_DRP_x(x=0..22): sector x(x = 0,1,2...22) - \arg OB_DRP_23_27: sector23~27 - \arg OB_DRP_ALL: all sector - \param[out] none - \retval none -*/ -void ob_drp_disable(uint32_t ob_drp) -{ - uint32_t reg0 = FMC_OBCTL0; - uint32_t reg1 = FMC_OBCTL1; - fmc_state_enum fmc_state = FMC_READY; - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - if(FMC_READY == fmc_state){ - reg0 |= FMC_OBCTL0_WP0; - reg0 &= (~FMC_OBCTL0_DRP); - FMC_OBCTL0 = reg0; - - reg1 |= FMC_OBCTL1_WP1; - FMC_OBCTL1 = reg1; - } -} - -/*! - \brief configure security protection level - \param[in] ob_spc: specify security protection level - only one parameter can be selected which is shown as below: - \arg FMC_NSPC: no security protection - \arg FMC_LSPC: low security protection - \arg FMC_HSPC: high security protection - \param[out] none - \retval none -*/ -void ob_security_protection_config(uint8_t ob_spc) -{ - fmc_state_enum fmc_state = FMC_READY; - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - if(FMC_READY == fmc_state){ - uint32_t reg; - - reg = FMC_OBCTL0; - /* reset the OBCTL0_SPC, set according to ob_spc */ - reg &= ~FMC_OBCTL0_SPC; - reg |= ((uint32_t)ob_spc << 8); - FMC_OBCTL0 = reg; - } -} - -/*! - \brief program the FMC user option byte - \param[in] ob_fwdgt: option byte watchdog value - only one parameter can be selected which is shown as below: - \arg OB_FWDGT_SW: software free watchdog - \arg OB_FWDGT_HW: hardware free watchdog - \param[in] ob_deepsleep: option byte deepsleep reset value - only one parameter can be selected which is shown as below: - \arg OB_DEEPSLEEP_NRST: no reset when entering deepsleep mode - \arg OB_DEEPSLEEP_RST: generate a reset instead of entering deepsleep mode - \param[in] ob_stdby:option byte standby reset value - only one parameter can be selected which is shown as below: - \arg OB_STDBY_NRST: no reset when entering standby mode - \arg OB_STDBY_RST: generate a reset instead of entering standby mode - \param[out] none - \retval none -*/ -void ob_user_write(uint32_t ob_fwdgt, uint32_t ob_deepsleep, uint32_t ob_stdby) -{ - fmc_state_enum fmc_state = FMC_READY; - - /* wait for the FMC ready */ - fmc_state = fmc_ready_wait(); - - if(FMC_READY == fmc_state){ - uint32_t reg; - - reg = FMC_OBCTL0; - /* reset the OB_FWDGT, OB_DEEPSLEEP and OB_STDBY, set according to ob_fwdgt ,ob_deepsleep and ob_stdby */ - reg &= ~(FMC_OBCTL0_NWDG_HW | FMC_OBCTL0_NRST_DPSLP | FMC_OBCTL0_NRST_STDBY); - FMC_OBCTL0 = (reg | ob_fwdgt | ob_deepsleep | ob_stdby); - } -} - -/*! - \brief program the option byte BOR threshold value - \param[in] ob_bor_th: user option byte - only one parameter can be selected which is shown as below: - \arg OB_BOR_TH_VALUE3: BOR threshold value 3 - \arg OB_BOR_TH_VALUE2: BOR threshold value 2 - \arg OB_BOR_TH_VALUE1: BOR threshold value 1 - \arg OB_BOR_TH_OFF: no BOR function - \param[out] none - \retval none -*/ -void ob_user_bor_threshold(uint32_t ob_bor_th) -{ - uint32_t reg; - - reg = FMC_OBCTL0; - /* set the BOR level */ - reg &= ~FMC_OBCTL0_BOR_TH; - FMC_OBCTL0 = (reg | ob_bor_th); -} - -/*! - \brief configure the option byte boot bank value - \param[in] boot_mode: specifies the option byte boot bank value - only one parameter can be selected which is shown as below: - \arg OB_BB_DISABLE: boot from bank0 - \arg OB_BB_ENABLE: boot from bank1 or bank0 if bank1 is void - \param[out] none - \retval none -*/ -void ob_boot_mode_config(uint32_t boot_mode) -{ - uint32_t reg; - - reg = FMC_OBCTL0; - /* set option byte boot bank value */ - reg &= ~FMC_OBCTL0_BB; - FMC_OBCTL0 = (reg | boot_mode); -} - -/*! - \brief get the FMC user option byte - \param[in] none - \param[out] none - \retval the FMC user option byte values: ob_fwdgt(Bit0), ob_deepsleep(Bit1), ob_stdby(Bit2) -*/ -uint8_t ob_user_get(void) -{ - return (uint8_t)((uint8_t)(FMC_OBCTL0 >> 5) & (uint8_t)0x07); -} - -/*! - \brief get the FMC option byte write protection - \param[in] none - \param[out] none - \retval the FMC write protection option byte value -*/ -uint16_t ob_write_protection0_get(void) -{ - /* return the FMC write protection option byte value */ - return (uint16_t)(((uint16_t)(FMC_OBCTL0 >> 16)) & (uint16_t)0x0FFF); -} - -/*! - \brief get the FMC option byte write protection - \param[in] none - \param[out] none - \retval the FMC write protection option byte value -*/ -uint16_t ob_write_protection1_get(void) -{ - /* return the the FMC write protection option byte value */ - return (uint16_t)(((uint16_t)(FMC_OBCTL1 >> 16)) & (uint16_t)0x0FFF); -} - -/*! - \brief get the FMC D-bus read protection protection - \param[in] none - \param[out] none - \retval the FMC erase/program protection and D-bus read protection option bytes value -*/ -uint16_t ob_drp0_get(void) -{ - /* return the FMC erase/program protection and D-bus read protection option bytes value */ - return (uint16_t)(((uint16_t)(FMC_OBCTL0 >> 16)) & (uint16_t)0x0FFF); -} - -/*! - \brief get the FMC D-bus read protection protection - \param[in] none - \param[out] none - \retval the FMC erase/program protection and D-bus read protection option bytes value -*/ -uint16_t ob_drp1_get(void) -{ - /* return the FMC erase/program protection and D-bus read protection option bytes value */ - return (uint16_t)(((uint16_t)(FMC_OBCTL1 >> 16)) & (uint16_t)0x0FFF); -} - -/*! - \brief get the FMC option byte security protection - \param[in] none - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus ob_spc_get(void) -{ - FlagStatus spc_state = RESET; - - if (((uint8_t)(FMC_OBCTL0 >> 8)) != (uint8_t)FMC_NSPC){ - spc_state = SET; - }else{ - spc_state = RESET; - } - return spc_state; -} - -/*! - \brief get the FMC option byte BOR threshold value - \param[in] none - \param[out] none - \retval the FMC BOR threshold value:OB_BOR_TH_OFF,OB_BOR_TH_VALUE1,OB_BOR_TH_VALUE2,OB_BOR_TH_VALUE3 -*/ -uint8_t ob_user_bor_threshold_get(void) -{ - /* return the FMC BOR threshold value */ - return (uint8_t)((uint8_t)FMC_OBCTL0 & (uint8_t)0x0C); -} - -/*! - \brief enable FMC interrupt - \param[in] fmc_int: the FMC interrupt source - only one parameter can be selected which is shown as below: - \arg FMC_INT_END: enable FMC end of program interrupt - \arg FMC_INT_ERR: enable FMC error interrupt - \param[out] none - \retval none -*/ -void fmc_interrupt_enable(uint32_t fmc_int) -{ - FMC_CTL |= fmc_int; -} - -/*! - \brief disable FMC interrupt - \param[in] fmc_int: the FMC interrupt source - only one parameter can be selected which is shown as below: - \arg FMC_INT_END: disable FMC end of program interrupt - \arg FMC_INT_ERR: disable FMC error interrupt - \param[out] none - \retval none -*/ -void fmc_interrupt_disable(uint32_t fmc_int) -{ - FMC_CTL &= ~(uint32_t)fmc_int; -} - -/*! - \brief get flag set or reset - \param[in] fmc_flag: check FMC flag - only one parameter can be selected which is shown as below: - \arg FMC_FLAG_BUSY: FMC busy flag bit - \arg FMC_FLAG_RDDERR: FMC read D-bus protection error flag bit - \arg FMC_FLAG_PGSERR: FMC program sequence error flag bit - \arg FMC_FLAG_PGMERR: FMC program size not match error flag bit - \arg FMC_FLAG_WPERR: FMC Erase/Program protection error flag bit - \arg FMC_FLAG_OPERR: FMC operation error flag bit - \arg FMC_FLAG_END: FMC end of operation flag bit - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus fmc_flag_get(uint32_t fmc_flag) -{ - if(FMC_STAT & fmc_flag){ - return SET; - } - /* return the state of corresponding FMC flag */ - return RESET; -} - -/*! - \brief clear the FMC pending flag - \param[in] FMC_flag: clear FMC flag - only one parameter can be selected which is shown as below: - \arg FMC_FLAG_RDDERR: FMC read D-bus protection error flag bit - \arg FMC_FLAG_PGSERR: FMC program sequence error flag bit - \arg FMC_FLAG_PGMERR: FMC program size not match error flag bit - \arg FMC_FLAG_WPERR: FMC erase/program protection error flag bit - \arg FMC_FLAG_OPERR: FMC operation error flag bit - \arg FMC_FLAG_END: FMC end of operation flag bit - \param[out] none - \retval none -*/ -void fmc_flag_clear(uint32_t fmc_flag) -{ - /* clear the flags */ - FMC_STAT = fmc_flag; -} - -/*! - \brief get the FMC state - \param[in] none - \param[out] none - \retval state of FMC - \arg FMC_READY: the operation has been completed - \arg FMC_BUSY: the operation is in progress - \arg FMC_RDDERR: read D-bus protection error - \arg FMC_PGSERR: program sequence error - \arg FMC_PGMERR: program size not match error - \arg FMC_WPERR: erase/program protection error - \arg FMC_OPERR: operation error - \arg FMC_PGERR: program error -*/ -fmc_state_enum fmc_state_get(void) -{ - fmc_state_enum fmc_state = FMC_READY; - - if((FMC_STAT & FMC_FLAG_BUSY) == FMC_FLAG_BUSY){ - fmc_state = FMC_BUSY; - }else{ - if((FMC_STAT & FMC_FLAG_WPERR) != (uint32_t)0x00){ - fmc_state = FMC_WPERR; - }else{ - if((FMC_STAT & FMC_FLAG_RDDERR) != (uint32_t)0x00){ - fmc_state = FMC_RDDERR; - }else{ - if((FMC_STAT & (uint32_t)0xEF) != (uint32_t)0x00){ - fmc_state = FMC_PGERR; - }else{ - if((FMC_STAT & FMC_FLAG_OPERR) != (uint32_t)0x00){ - fmc_state = FMC_OPERR; - }else{ - fmc_state = FMC_READY; - } - } - } - } - } - /* return the FMC state */ - return fmc_state; -} - -/*! - \brief check whether FMC is ready or not - \param[in] none - \param[out] none - \retval state of FMC - \arg FMC_READY: the operation has been completed - \arg FMC_BUSY: the operation is in progress - \arg FMC_RDDERR: read D-bus protection error - \arg FMC_PGSERR: program sequence error - \arg FMC_PGMERR: program size not match error - \arg FMC_WPERR: erase/program protection error - \arg FMC_OPERR: operation error - \arg FMC_PGERR: program error -*/ -fmc_state_enum fmc_ready_wait(void) -{ - fmc_state_enum fmc_state = FMC_BUSY; - - /* wait for FMC ready */ - do{ - /* get FMC state */ - fmc_state = fmc_state_get(); - }while(FMC_BUSY == fmc_state); - - /* return the FMC state */ - return fmc_state; -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_fwdgt.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_fwdgt.c deleted file mode 100644 index 7ddaf1dc03..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_fwdgt.c +++ /dev/null @@ -1,157 +0,0 @@ -/*! - \file gd32f4xx_fwdgt.c - \brief FWDGT driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_fwdgt.h" - -/* write value to FWDGT_CTL_CMD bit field */ -#define CTL_CMD(regval) (BITS(0,15) & ((uint32_t)(regval) << 0)) -/* write value to FWDGT_RLD_RLD bit field */ -#define RLD_RLD(regval) (BITS(0,11) & ((uint32_t)(regval) << 0)) - -/*! - \brief enable write access to FWDGT_PSC and FWDGT_RLD - \param[in] none - \param[out] none - \retval none -*/ -void fwdgt_write_enable(void) -{ - FWDGT_CTL = FWDGT_WRITEACCESS_ENABLE; -} - -/*! - \brief disable write access to FWDGT_PSC and FWDGT_RLD - \param[in] none - \param[out] none - \retval none -*/ -void fwdgt_write_disable(void) -{ - FWDGT_CTL = FWDGT_WRITEACCESS_DISABLE; -} - -/*! - \brief start the free watchdog timer counter - \param[in] none - \param[out] none - \retval none -*/ -void fwdgt_enable(void) -{ - FWDGT_CTL = FWDGT_KEY_ENABLE; -} - -/*! - \brief reload the counter of FWDGT - \param[in] none - \param[out] none - \retval none -*/ -void fwdgt_counter_reload(void) -{ - FWDGT_CTL = FWDGT_KEY_RELOAD; -} - -/*! - \brief configure counter reload value, and prescaler divider value - \param[in] reload_value: specify reload value(0x0000 - 0x0FFF) - \param[in] prescaler_div: FWDGT prescaler value - only one parameter can be selected which is shown as below: - \arg FWDGT_PSC_DIV4: FWDGT prescaler set to 4 - \arg FWDGT_PSC_DIV8: FWDGT prescaler set to 8 - \arg FWDGT_PSC_DIV16: FWDGT prescaler set to 16 - \arg FWDGT_PSC_DIV32: FWDGT prescaler set to 32 - \arg FWDGT_PSC_DIV64: FWDGT prescaler set to 64 - \arg FWDGT_PSC_DIV128: FWDGT prescaler set to 128 - \arg FWDGT_PSC_DIV256: FWDGT prescaler set to 256 - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus fwdgt_config(uint16_t reload_value, uint8_t prescaler_div) -{ - uint32_t timeout = FWDGT_PSC_TIMEOUT; - uint32_t flag_status = RESET; - - /* enable write access to FWDGT_PSC,and FWDGT_RLD */ - FWDGT_CTL = FWDGT_WRITEACCESS_ENABLE; - - /* wait until the PUD flag to be reset */ - do{ - flag_status = FWDGT_STAT & FWDGT_STAT_PUD; - }while((--timeout > 0U) && ((uint32_t)RESET != flag_status)); - - if ((uint32_t)RESET != flag_status){ - return ERROR; - } - - /* configure FWDGT */ - FWDGT_PSC = (uint32_t)prescaler_div; - - timeout = FWDGT_RLD_TIMEOUT; - /* wait until the RUD flag to be reset */ - do{ - flag_status = FWDGT_STAT & FWDGT_STAT_RUD; - }while((--timeout > 0U) && ((uint32_t)RESET != flag_status)); - - if ((uint32_t)RESET != flag_status){ - return ERROR; - } - - FWDGT_RLD = RLD_RLD(reload_value); - - /* reload the counter */ - FWDGT_CTL = FWDGT_KEY_RELOAD; - - return SUCCESS; -} - -/*! - \brief get flag state of FWDGT - \param[in] flag: flag to get - only one parameter can be selected which is shown as below: - \arg FWDGT_STAT_PUD: a write operation to FWDGT_PSC register is on going - \arg FWDGT_STAT_RUD: a write operation to FWDGT_RLD register is on going - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus fwdgt_flag_get(uint16_t flag) -{ - if(RESET != (FWDGT_STAT & flag)){ - return SET; - } - - return RESET; -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_gpio.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_gpio.c deleted file mode 100644 index e0ded56f74..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_gpio.c +++ /dev/null @@ -1,433 +0,0 @@ -/*! - \file gd32f4xx_gpio.c - \brief GPIO driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_gpio.h" - -/*! - \brief reset GPIO port - \param[in] gpio_periph: GPIO port - only one parameter can be selected which is shown as below: - \arg GPIOx(x = A,B,C,D,E,F,G,H,I) - \param[out] none - \retval none -*/ -void gpio_deinit(uint32_t gpio_periph) -{ - switch(gpio_periph){ - case GPIOA: - /* reset GPIOA */ - rcu_periph_reset_enable(RCU_GPIOARST); - rcu_periph_reset_disable(RCU_GPIOARST); - break; - case GPIOB: - /* reset GPIOB */ - rcu_periph_reset_enable(RCU_GPIOBRST); - rcu_periph_reset_disable(RCU_GPIOBRST); - break; - case GPIOC: - /* reset GPIOC */ - rcu_periph_reset_enable(RCU_GPIOCRST); - rcu_periph_reset_disable(RCU_GPIOCRST); - break; - case GPIOD: - /* reset GPIOD */ - rcu_periph_reset_enable(RCU_GPIODRST); - rcu_periph_reset_disable(RCU_GPIODRST); - break; - case GPIOE: - /* reset GPIOE */ - rcu_periph_reset_enable(RCU_GPIOERST); - rcu_periph_reset_disable(RCU_GPIOERST); - break; - case GPIOF: - /* reset GPIOF */ - rcu_periph_reset_enable(RCU_GPIOFRST); - rcu_periph_reset_disable(RCU_GPIOFRST); - break; - case GPIOG: - /* reset GPIOG */ - rcu_periph_reset_enable(RCU_GPIOGRST); - rcu_periph_reset_disable(RCU_GPIOGRST); - break; - case GPIOH: - /* reset GPIOH */ - rcu_periph_reset_enable(RCU_GPIOHRST); - rcu_periph_reset_disable(RCU_GPIOHRST); - break; - case GPIOI: - /* reset GPIOI */ - rcu_periph_reset_enable(RCU_GPIOIRST); - rcu_periph_reset_disable(RCU_GPIOIRST); - break; - default: - break; - } -} - -/*! - \brief set GPIO mode - \param[in] gpio_periph: GPIO port - only one parameter can be selected which is shown as below: - \arg GPIOx(x = A,B,C,D,E,F,G,H,I) - \param[in] mode: GPIO pin mode - \arg GPIO_MODE_INPUT: input mode - \arg GPIO_MODE_OUTPUT: output mode - \arg GPIO_MODE_AF: alternate function mode - \arg GPIO_MODE_ANALOG: analog mode - \param[in] pull_up_down: GPIO pin with pull-up or pull-down resistor - \arg GPIO_PUPD_NONE: floating mode, no pull-up and pull-down resistors - \arg GPIO_PUPD_PULLUP: with pull-up resistor - \arg GPIO_PUPD_PULLDOWN:with pull-down resistor - \param[in] pin: GPIO pin - one or more parameters can be selected which are shown as below: - \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL - \param[out] none - \retval none -*/ -void gpio_mode_set(uint32_t gpio_periph, uint32_t mode, uint32_t pull_up_down, uint32_t pin) -{ - uint16_t i; - uint32_t ctl, pupd; - - ctl = GPIO_CTL(gpio_periph); - pupd = GPIO_PUD(gpio_periph); - - for(i = 0U;i < 16U;i++){ - if((1U << i) & pin){ - /* clear the specified pin mode bits */ - ctl &= ~GPIO_MODE_MASK(i); - /* set the specified pin mode bits */ - ctl |= GPIO_MODE_SET(i, mode); - - /* clear the specified pin pupd bits */ - pupd &= ~GPIO_PUPD_MASK(i); - /* set the specified pin pupd bits */ - pupd |= GPIO_PUPD_SET(i, pull_up_down); - } - } - - GPIO_CTL(gpio_periph) = ctl; - GPIO_PUD(gpio_periph) = pupd; -} - -/*! - \brief set GPIO output type and speed - \param[in] gpio_periph: GPIO port - only one parameter can be selected which is shown as below: - \arg GPIOx(x = A,B,C,D,E,F,G,H,I) - \param[in] otype: GPIO pin output mode - \arg GPIO_OTYPE_PP: push pull mode - \arg GPIO_OTYPE_OD: open drain mode - \param[in] speed: GPIO pin output max speed - \arg GPIO_OSPEED_2MHZ: output max speed 2MHz - \arg GPIO_OSPEED_25MHZ: output max speed 25MHz - \arg GPIO_OSPEED_50MHZ: output max speed 50MHz - \arg GPIO_OSPEED_200MHZ: output max speed 200MHz - \param[in] pin: GPIO pin - one or more parameters can be selected which are shown as below: - \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL - \param[out] none - \retval none -*/ -void gpio_output_options_set(uint32_t gpio_periph, uint8_t otype, uint32_t speed, uint32_t pin) -{ - uint16_t i; - uint32_t ospeedr; - - if(GPIO_OTYPE_OD == otype){ - GPIO_OMODE(gpio_periph) |= (uint32_t)pin; - }else{ - GPIO_OMODE(gpio_periph) &= (uint32_t)(~pin); - } - - /* get the specified pin output speed bits value */ - ospeedr = GPIO_OSPD(gpio_periph); - - for(i = 0U;i < 16U;i++){ - if((1U << i) & pin){ - /* clear the specified pin output speed bits */ - ospeedr &= ~GPIO_OSPEED_MASK(i); - /* set the specified pin output speed bits */ - ospeedr |= GPIO_OSPEED_SET(i,speed); - } - } - GPIO_OSPD(gpio_periph) = ospeedr; -} - -/*! - \brief set GPIO pin bit - \param[in] gpio_periph: GPIO port - only one parameter can be selected which is shown as below: - \arg GPIOx(x = A,B,C,D,E,F,G,H,I) - \param[in] pin: GPIO pin - one or more parameters can be selected which are shown as below: - \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL - \param[out] none - \retval none -*/ -void gpio_bit_set(uint32_t gpio_periph, uint32_t pin) -{ - GPIO_BOP(gpio_periph) = (uint32_t)pin; -} - -/*! - \brief reset GPIO pin bit - \param[in] gpio_periph: GPIO port - only one parameter can be selected which is shown as below: - \arg GPIOx(x = A,B,C,D,E,F,G,H,I) - \param[in] pin: GPIO pin - one or more parameters can be selected which are shown as below: - \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL - \param[out] none - \retval none -*/ -void gpio_bit_reset(uint32_t gpio_periph, uint32_t pin) -{ - GPIO_BC(gpio_periph) = (uint32_t)pin; -} - -/*! - \brief write data to the specified GPIO pin - \param[in] gpio_periph: GPIO port - only one parameter can be selected which is shown as below: - \arg GPIOx(x = A,B,C,D,E,F,G,H,I) - \param[in] pin: GPIO pin - one or more parameters can be selected which are shown as below: - \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL - \param[in] bit_value: SET or RESET - \arg RESET: clear the port pin - \arg SET: set the port pin - \param[out] none - \retval none -*/ -void gpio_bit_write(uint32_t gpio_periph, uint32_t pin, bit_status bit_value) -{ - if(RESET != bit_value){ - GPIO_BOP(gpio_periph) = (uint32_t)pin; - }else{ - GPIO_BC(gpio_periph) = (uint32_t)pin; - } -} - -/*! - \brief write data to the specified GPIO port - \param[in] gpio_periph: GPIO port - only one parameter can be selected which is shown as below: - \arg GPIOx(x = A,B,C,D,E,F,G,H,I) - \param[in] data: specify the value to be written to the port output control register - \param[out] none - \retval none -*/ -void gpio_port_write(uint32_t gpio_periph, uint16_t data) -{ - GPIO_OCTL(gpio_periph) = (uint32_t)data; -} - -/*! - \brief get GPIO pin input status - \param[in] gpio_periph: GPIO port - only one parameter can be selected which is shown as below: - \arg GPIOx(x = A,B,C,D,E,F,G,H,I) - \param[in] pin: GPIO pin - one or more parameters can be selected which are shown as below: - \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL - \param[out] none - \retval input status of GPIO pin: SET or RESET -*/ -FlagStatus gpio_input_bit_get(uint32_t gpio_periph, uint32_t pin) -{ - if((uint32_t)RESET != (GPIO_ISTAT(gpio_periph)&(pin))){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief get GPIO all pins input status - \param[in] gpio_periph: GPIO port - only one parameter can be selected which is shown as below: - \arg GPIOx(x = A,B,C,D,E,F,G,H,I) - \param[out] none - \retval input status of GPIO all pins -*/ -uint16_t gpio_input_port_get(uint32_t gpio_periph) -{ - return ((uint16_t)GPIO_ISTAT(gpio_periph)); -} - -/*! - \brief get GPIO pin output status - \param[in] gpio_periph: GPIO port - only one parameter can be selected which is shown as below: - \arg GPIOx(x = A,B,C,D,E,F,G,H,I) - \param[in] pin: GPIO pin - one or more parameters can be selected which are shown as below: - \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL - \param[out] none - \retval output status of GPIO pin: SET or RESET -*/ -FlagStatus gpio_output_bit_get(uint32_t gpio_periph, uint32_t pin) -{ - if((uint32_t)RESET !=(GPIO_OCTL(gpio_periph)&(pin))){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief get GPIO all pins output status - \param[in] gpio_periph: GPIO port - only one parameter can be selected which is shown as below: - \arg GPIOx(x = A,B,C,D,E,F,G,H,I) - \param[out] none - \retval output status of GPIO all pins -*/ -uint16_t gpio_output_port_get(uint32_t gpio_periph) -{ - return ((uint16_t)GPIO_OCTL(gpio_periph)); -} - -/*! - \brief set GPIO alternate function - \param[in] gpio_periph: GPIO port - only one parameter can be selected which is shown as below: - \arg GPIOx(x = A,B,C,D,E,F,G,H,I) - \param[in] alt_func_num: GPIO pin af function - \arg GPIO_AF_0: SYSTEM - \arg GPIO_AF_1: TIMER0, TIMER1 - \arg GPIO_AF_2: TIMER2, TIMER3, TIMER4 - \arg GPIO_AF_3: TIMER7, TIMER8, TIMER9, TIMER10 - \arg GPIO_AF_4: I2C0, I2C1, I2C2 - \arg GPIO_AF_5: SPI0, SPI1, SPI2, SPI3, SPI4, SPI5 - \arg GPIO_AF_6: SPI1, SPI2, SAI0 - \arg GPIO_AF_7: USART0, USART1, USART2 - \arg GPIO_AF_8: UART3, UART4, USART5, UART6, UART7 - \arg GPIO_AF_9: CAN0, CAN1, TLI, TIMER11, TIMER12, TIMER13 - \arg GPIO_AF_10: USB_FS, USB_HS - \arg GPIO_AF_11: ENET - \arg GPIO_AF_12: EXMC, SDIO, USB_HS - \arg GPIO_AF_13: DCI - \arg GPIO_AF_14: TLI - \arg GPIO_AF_15: EVENTOUT - \param[in] pin: GPIO pin - one or more parameters can be selected which are shown as below: - \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL - \param[out] none - \retval none -*/ -void gpio_af_set(uint32_t gpio_periph, uint32_t alt_func_num, uint32_t pin) -{ - uint16_t i; - uint32_t afrl, afrh; - - afrl = GPIO_AFSEL0(gpio_periph); - afrh = GPIO_AFSEL1(gpio_periph); - - for(i = 0U;i < 8U;i++){ - if((1U << i) & pin){ - /* clear the specified pin alternate function bits */ - afrl &= ~GPIO_AFR_MASK(i); - afrl |= GPIO_AFR_SET(i,alt_func_num); - } - } - - for(i = 8U;i < 16U;i++){ - if((1U << i) & pin){ - /* clear the specified pin alternate function bits */ - afrh &= ~GPIO_AFR_MASK(i - 8U); - afrh |= GPIO_AFR_SET(i - 8U,alt_func_num); - } - } - - GPIO_AFSEL0(gpio_periph) = afrl; - GPIO_AFSEL1(gpio_periph) = afrh; -} - -/*! - \brief lock GPIO pin bit - \param[in] gpio_periph: GPIO port - only one parameter can be selected which is shown as below: - \arg GPIOx(x = A,B,C,D,E,F,G,H,I) - \param[in] pin: GPIO pin - one or more parameters can be selected which are shown as below: - \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL - \param[out] none - \retval none -*/ -void gpio_pin_lock(uint32_t gpio_periph, uint32_t pin) -{ - uint32_t lock = 0x00010000U; - lock |= pin; - - /* lock key writing sequence: write 1->write 0->write 1->read 0->read 1 */ - GPIO_LOCK(gpio_periph) = (uint32_t)lock; - GPIO_LOCK(gpio_periph) = (uint32_t)pin; - GPIO_LOCK(gpio_periph) = (uint32_t)lock; - lock = GPIO_LOCK(gpio_periph); - lock = GPIO_LOCK(gpio_periph); -} - -/*! - \brief toggle GPIO pin status - \param[in] gpio_periph: GPIO port - only one parameter can be selected which is shown as below: - \arg GPIOx(x = A,B,C,D,E,F,G,H,I) - \param[in] pin: GPIO pin - one or more parameters can be selected which are shown as below: - \arg GPIO_PIN_x(x=0..15), GPIO_PIN_ALL - \param[out] none - \retval none -*/ -void gpio_bit_toggle(uint32_t gpio_periph, uint32_t pin) -{ - GPIO_TG(gpio_periph) = (uint32_t)pin; -} - -/*! - \brief toggle GPIO port status - \param[in] gpio_periph: GPIO port - only one parameter can be selected which is shown as below: - \arg GPIOx(x = A,B,C,D,E,F,G,H,I) - - \param[out] none - \retval none -*/ -void gpio_port_toggle(uint32_t gpio_periph) -{ - GPIO_TG(gpio_periph) = 0x0000FFFFU; -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_i2c.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_i2c.c deleted file mode 100644 index c2670b6eb7..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_i2c.c +++ /dev/null @@ -1,819 +0,0 @@ -/*! - \file gd32f4xx_i2c.c - \brief I2C driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2019-04-16, V2.0.2, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_i2c.h" - -/* I2C register bit mask */ -#define I2CCLK_MAX ((uint32_t)0x00000032U) /*!< i2cclk maximum value */ -#define I2CCLK_MIN ((uint32_t)0x00000002U) /*!< i2cclk minimum value */ -#define I2C_FLAG_MASK ((uint32_t)0x0000FFFFU) /*!< i2c flag mask */ -#define I2C_ADDRESS_MASK ((uint32_t)0x000003FFU) /*!< i2c address mask */ -#define I2C_ADDRESS2_MASK ((uint32_t)0x000000FEU) /*!< the second i2c address mask */ - -/* I2C register bit offset */ -#define STAT1_PECV_OFFSET ((uint32_t)8U) /* bit offset of PECV in I2C_STAT1 */ - -/*! - \brief reset I2C - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[out] none - \retval none -*/ -void i2c_deinit(uint32_t i2c_periph) -{ - switch(i2c_periph){ - case I2C0: - /* reset I2C0 */ - rcu_periph_reset_enable(RCU_I2C0RST); - rcu_periph_reset_disable(RCU_I2C0RST); - break; - case I2C1: - /* reset I2C1 */ - rcu_periph_reset_enable(RCU_I2C1RST); - rcu_periph_reset_disable(RCU_I2C1RST); - break; - case I2C2: - /* reset I2C2 */ - rcu_periph_reset_enable(RCU_I2C2RST); - rcu_periph_reset_disable(RCU_I2C2RST); - break; - default: - break; - } -} - -/*! - \brief configure I2C clock - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] clkspeed: I2C clock speed, supports standard mode (up to 100 kHz), fast mode (up to 400 kHz) - \param[in] dutycyc: duty cycle in fast mode - only one parameter can be selected which is shown as below: - \arg I2C_DTCY_2: T_low/T_high=2 - \arg I2C_DTCY_16_9: T_low/T_high=16/9 - \param[out] none - \retval none -*/ -void i2c_clock_config(uint32_t i2c_periph, uint32_t clkspeed, uint32_t dutycyc) -{ - uint32_t pclk1, clkc, freq, risetime; - uint32_t temp; - - pclk1 = rcu_clock_freq_get(CK_APB1); - /* I2C peripheral clock frequency */ - freq = (uint32_t)(pclk1/1000000U); - if(freq >= I2CCLK_MAX){ - freq = I2CCLK_MAX; - } - temp = I2C_CTL1(i2c_periph); - temp &= ~I2C_CTL1_I2CCLK; - temp |= freq; - - I2C_CTL1(i2c_periph) = temp; - - if(100000U >= clkspeed){ - /* the maximum SCL rise time is 1000ns in standard mode */ - risetime = (uint32_t)((pclk1/1000000U)+1U); - if(risetime >= I2CCLK_MAX){ - I2C_RT(i2c_periph) = I2CCLK_MAX; - }else{ - I2C_RT(i2c_periph) = risetime; - } - clkc = (uint32_t)(pclk1/(clkspeed*2U)); - if(clkc < 0x04U){ - /* the CLKC in standard mode minmum value is 4 */ - clkc = 0x04U; - } - - I2C_CKCFG(i2c_periph) |= (I2C_CKCFG_CLKC & clkc); - - }else if(400000U >= clkspeed){ - /* the maximum SCL rise time is 300ns in fast mode */ - I2C_RT(i2c_periph) = (uint32_t)(((freq*(uint32_t)300U)/(uint32_t)1000U)+(uint32_t)1U); - if(I2C_DTCY_2 == dutycyc){ - /* I2C duty cycle is 2 */ - clkc = (uint32_t)(pclk1/(clkspeed*3U)); - I2C_CKCFG(i2c_periph) &= ~I2C_CKCFG_DTCY; - }else{ - /* I2C duty cycle is 16/9 */ - clkc = (uint32_t)(pclk1/(clkspeed*25U)); - I2C_CKCFG(i2c_periph) |= I2C_CKCFG_DTCY; - } - if(0U == (clkc & I2C_CKCFG_CLKC)){ - /* the CLKC in fast mode minmum value is 1 */ - clkc |= 0x0001U; - } - I2C_CKCFG(i2c_periph) |= I2C_CKCFG_FAST; - I2C_CKCFG(i2c_periph) |= clkc; - }else{ - } -} - -/*! - \brief configure I2C address - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] mode: - only one parameter can be selected which is shown as below: - \arg I2C_I2CMODE_ENABLE: I2C mode - \arg I2C_SMBUSMODE_ENABLE: SMBus mode - \param[in] addformat: 7bits or 10bits - only one parameter can be selected which is shown as below: - \arg I2C_ADDFORMAT_7BITS: 7bits - \arg I2C_ADDFORMAT_10BITS: 10bits - \param[in] addr: I2C address - \param[out] none - \retval none -*/ -void i2c_mode_addr_config(uint32_t i2c_periph, uint32_t mode, uint32_t addformat, uint32_t addr) -{ - /* SMBus/I2C mode selected */ - uint32_t ctl = 0U; - - ctl = I2C_CTL0(i2c_periph); - ctl &= ~(I2C_CTL0_SMBEN); - ctl |= mode; - I2C_CTL0(i2c_periph) = ctl; - /* configure address */ - addr = addr & I2C_ADDRESS_MASK; - I2C_SADDR0(i2c_periph) = (addformat | addr); -} - -/*! - \brief SMBus type selection - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] type: - only one parameter can be selected which is shown as below: - \arg I2C_SMBUS_DEVICE: device - \arg I2C_SMBUS_HOST: host - \param[out] none - \retval none -*/ -void i2c_smbus_type_config(uint32_t i2c_periph, uint32_t type) -{ - if(I2C_SMBUS_HOST == type){ - I2C_CTL0(i2c_periph) |= I2C_CTL0_SMBSEL; - }else{ - I2C_CTL0(i2c_periph) &= ~(I2C_CTL0_SMBSEL); - } -} - -/*! - \brief whether or not to send an ACK - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] ack: - only one parameter can be selected which is shown as below: - \arg I2C_ACK_ENABLE: ACK will be sent - \arg I2C_ACK_DISABLE: ACK will not be sent - \param[out] none - \retval none -*/ -void i2c_ack_config(uint32_t i2c_periph, uint32_t ack) -{ - if(I2C_ACK_ENABLE == ack){ - I2C_CTL0(i2c_periph) |= I2C_CTL0_ACKEN; - }else{ - I2C_CTL0(i2c_periph) &= ~(I2C_CTL0_ACKEN); - } -} - -/*! - \brief configure I2C POAP position - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] pos: - only one parameter can be selected which is shown as below: - \arg I2C_ACKPOS_CURRENT: whether to send ACK or not for the current - \arg I2C_ACKPOS_NEXT: whether to send ACK or not for the next byte - \param[out] none - \retval none -*/ -void i2c_ackpos_config(uint32_t i2c_periph, uint32_t pos) -{ - /* configure I2C POAP position */ - if(I2C_ACKPOS_NEXT == pos){ - I2C_CTL0(i2c_periph) |= I2C_CTL0_POAP; - }else{ - I2C_CTL0(i2c_periph) &= ~(I2C_CTL0_POAP); - } -} - -/*! - \brief master sends slave address - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] addr: slave address - \param[in] trandirection: transmitter or receiver - only one parameter can be selected which is shown as below: - \arg I2C_TRANSMITTER: transmitter - \arg I2C_RECEIVER: receiver - \param[out] none - \retval none -*/ -void i2c_master_addressing(uint32_t i2c_periph, uint32_t addr, uint32_t trandirection) -{ - /* master is a transmitter or a receiver */ - if(I2C_TRANSMITTER == trandirection){ - addr = addr & I2C_TRANSMITTER; - }else{ - addr = addr | I2C_RECEIVER; - } - /* send slave address */ - I2C_DATA(i2c_periph) = addr; -} - -/*! - \brief enable dual-address mode - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] addr: the second address in dual-address mode - \param[out] none - \retval none -*/ -void i2c_dualaddr_enable(uint32_t i2c_periph, uint32_t addr) -{ - /* configure address */ - addr = addr & I2C_ADDRESS2_MASK; - I2C_SADDR1(i2c_periph) = (I2C_SADDR1_DUADEN | addr); -} - -/*! - \brief disable dual-address mode - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[out] none - \retval none -*/ -void i2c_dualaddr_disable(uint32_t i2c_periph) -{ - I2C_SADDR1(i2c_periph) &= ~(I2C_SADDR1_DUADEN); -} - -/*! - \brief enable I2C - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[out] none - \retval none -*/ -void i2c_enable(uint32_t i2c_periph) -{ - I2C_CTL0(i2c_periph) |= I2C_CTL0_I2CEN; -} - -/*! - \brief disable I2C - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[out] none - \retval none -*/ -void i2c_disable(uint32_t i2c_periph) -{ - I2C_CTL0(i2c_periph) &= ~(I2C_CTL0_I2CEN); -} - -/*! - \brief generate a START condition on I2C bus - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[out] none - \retval none -*/ -void i2c_start_on_bus(uint32_t i2c_periph) -{ - I2C_CTL0(i2c_periph) |= I2C_CTL0_START; -} - -/*! - \brief generate a STOP condition on I2C bus - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[out] none - \retval none -*/ -void i2c_stop_on_bus(uint32_t i2c_periph) -{ - I2C_CTL0(i2c_periph) |= I2C_CTL0_STOP; -} - -/*! - \brief I2C transmit data function - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] data: data of transmission - \param[out] none - \retval none -*/ -void i2c_data_transmit(uint32_t i2c_periph, uint8_t data) -{ - I2C_DATA(i2c_periph) = DATA_TRANS(data); -} - -/*! - \brief I2C receive data function - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[out] none - \retval data of received -*/ -uint8_t i2c_data_receive(uint32_t i2c_periph) -{ - return (uint8_t)DATA_RECV(I2C_DATA(i2c_periph)); -} - -/*! - \brief enable I2C DMA mode - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] dmastate: - only one parameter can be selected which is shown as below: - \arg I2C_DMA_ON: DMA mode enable - \arg I2C_DMA_OFF: DMA mode disable - \param[out] none - \retval none -*/ -void i2c_dma_enable(uint32_t i2c_periph, uint32_t dmastate) -{ - /* configure I2C DMA function */ - uint32_t ctl = 0U; - - ctl = I2C_CTL1(i2c_periph); - ctl &= ~(I2C_CTL1_DMAON); - ctl |= dmastate; - I2C_CTL1(i2c_periph) = ctl; -} - -/*! - \brief configure whether next DMA EOT is DMA last transfer or not - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] dmalast: - only one parameter can be selected which is shown as below: - \arg I2C_DMALST_ON: next DMA EOT is the last transfer - \arg I2C_DMALST_OFF: next DMA EOT is not the last transfer - \param[out] none - \retval none -*/ -void i2c_dma_last_transfer_config(uint32_t i2c_periph, uint32_t dmalast) -{ - /* configure DMA last transfer */ - uint32_t ctl = 0U; - - ctl = I2C_CTL1(i2c_periph); - ctl &= ~(I2C_CTL1_DMALST); - ctl |= dmalast; - I2C_CTL1(i2c_periph) = ctl; -} - -/*! - \brief whether to stretch SCL low when data is not ready in slave mode - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] stretchpara: - only one parameter can be selected which is shown as below: - \arg I2C_SCLSTRETCH_ENABLE: SCL stretching is enabled - \arg I2C_SCLSTRETCH_DISABLE: SCL stretching is disabled - \param[out] none - \retval none -*/ -void i2c_stretch_scl_low_config(uint32_t i2c_periph, uint32_t stretchpara) -{ - /* configure I2C SCL strerching enable or disable */ - uint32_t ctl = 0U; - - ctl = I2C_CTL0(i2c_periph); - ctl &= ~(I2C_CTL0_SS); - ctl |= stretchpara; - I2C_CTL0(i2c_periph) = ctl; -} - -/*! - \brief whether or not to response to a general call - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] gcallpara: - only one parameter can be selected which is shown as below: - \arg I2C_GCEN_ENABLE: slave will response to a general call - \arg I2C_GCEN_DISABLE: slave will not response to a general call - \param[out] none - \retval none -*/ -void i2c_slave_response_to_gcall_config(uint32_t i2c_periph, uint32_t gcallpara) -{ - /* configure slave response to a general call enable or disable */ - uint32_t ctl = 0U; - - ctl = I2C_CTL0(i2c_periph); - ctl &= ~(I2C_CTL0_GCEN); - ctl |= gcallpara; - I2C_CTL0(i2c_periph) = ctl; -} - -/*! - \brief software reset I2C - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] sreset: - only one parameter can be selected which is shown as below: - \arg I2C_SRESET_SET: I2C is under reset - \arg I2C_SRESET_RESET: I2C is not under reset - \param[out] none - \retval none -*/ -void i2c_software_reset_config(uint32_t i2c_periph, uint32_t sreset) -{ - /* modify CTL0 and configure software reset I2C state */ - uint32_t ctl = 0U; - - ctl = I2C_CTL0(i2c_periph); - ctl &= ~(I2C_CTL0_SRESET); - ctl |= sreset; - I2C_CTL0(i2c_periph) = ctl; -} - -/*! - \brief I2C PEC calculation on or off - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] pecstate: - only one parameter can be selected which is shown as below: - \arg I2C_PEC_ENABLE: PEC calculation on - \arg I2C_PEC_DISABLE: PEC calculation off - \param[out] none - \retval none -*/ -void i2c_pec_enable(uint32_t i2c_periph, uint32_t pecstate) -{ - /* on/off PEC calculation */ - uint32_t ctl = 0U; - - ctl = I2C_CTL0(i2c_periph); - ctl &= ~(I2C_CTL0_PECEN); - ctl |= pecstate; - I2C_CTL0(i2c_periph) = ctl; -} - -/*! - \brief I2C whether to transfer PEC value - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] pecpara: - only one parameter can be selected which is shown as below: - \arg I2C_PECTRANS_ENABLE: transfer PEC - \arg I2C_PECTRANS_DISABLE: not transfer PEC - \param[out] none - \retval none -*/ -void i2c_pec_transfer_enable(uint32_t i2c_periph, uint32_t pecpara) -{ - /* whether to transfer PEC */ - uint32_t ctl = 0U; - - ctl = I2C_CTL0(i2c_periph); - ctl &= ~(I2C_CTL0_PECTRANS); - ctl |= pecpara; - I2C_CTL0(i2c_periph) = ctl; -} - -/*! - \brief get packet error checking value - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[out] none - \retval PEC value -*/ -uint8_t i2c_pec_value_get(uint32_t i2c_periph) -{ - return (uint8_t)((I2C_STAT1(i2c_periph) & I2C_STAT1_PECV)>>STAT1_PECV_OFFSET); -} - -/*! - \brief I2C issue alert through SMBA pin - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] smbuspara: - only one parameter can be selected which is shown as below: - \arg I2C_SALTSEND_ENABLE: issue alert through SMBA pin - \arg I2C_SALTSEND_DISABLE: not issue alert through SMBA pin - \param[out] none - \retval none -*/ -void i2c_smbus_issue_alert(uint32_t i2c_periph, uint32_t smbuspara) -{ - /* issue alert through SMBA pin configure*/ - uint32_t ctl = 0U; - - ctl = I2C_CTL0(i2c_periph); - ctl &= ~(I2C_CTL0_SALT); - ctl |= smbuspara; - I2C_CTL0(i2c_periph) = ctl; -} - -/*! - \brief enable or disable I2C ARP protocol in SMBus switch - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] arpstate: - only one parameter can be selected which is shown as below: - \arg I2C_ARP_ENABLE: enable ARP - \arg I2C_ARP_DISABLE: disable ARP - \param[out] none - \retval none -*/ -void i2c_smbus_arp_enable(uint32_t i2c_periph, uint32_t arpstate) -{ - /* enable or disable I2C ARP protocol*/ - uint32_t ctl = 0U; - - ctl = I2C_CTL0(i2c_periph); - ctl &= ~(I2C_CTL0_ARPEN); - ctl |= arpstate; - I2C_CTL0(i2c_periph) = ctl; -} - -/*! - \brief analog noise filter disable - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[out] none - \retval none -*/ -void i2c_analog_noise_filter_disable(uint32_t i2c_periph) -{ - I2C_FCTL(i2c_periph) |= I2C_FCTL_AFD; -} - -/*! - \brief analog noise filter enable - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[out] none - \retval none -*/ -void i2c_analog_noise_filter_enable(uint32_t i2c_periph) -{ - I2C_FCTL(i2c_periph) &= ~(I2C_FCTL_AFD); -} - -/*! - \brief digital noise filter configuration - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] dfilterpara: refer to enum i2c_digital_filter_enum - \param[out] none - \retval none -*/ -void i2c_digital_noise_filter_config(uint32_t i2c_periph,i2c_digital_filter_enum dfilterpara) -{ - I2C_FCTL(i2c_periph) |= dfilterpara; -} - -/*! - \brief enable SAM_V interface - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[out] none - \retval none -*/ -void i2c_sam_enable(uint32_t i2c_periph) -{ - I2C_SAMCS(i2c_periph) |= I2C_SAMCS_SAMEN; -} - -/*! - \brief disable SAM_V interface - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[out] none - \retval none -*/ -void i2c_sam_disable(uint32_t i2c_periph) -{ - I2C_SAMCS(i2c_periph) &= ~(I2C_SAMCS_SAMEN); -} - -/*! - \brief enable SAM_V interface timeout detect - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[out] none - \retval none -*/ -void i2c_sam_timeout_enable(uint32_t i2c_periph) -{ - I2C_SAMCS(i2c_periph) |= I2C_SAMCS_STOEN; -} - -/*! - \brief disable SAM_V interface timeout detect - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[out] none - \retval none -*/ -void i2c_sam_timeout_disable(uint32_t i2c_periph) -{ - I2C_SAMCS(i2c_periph) &= ~(I2C_SAMCS_STOEN); -} - -/*! - \brief check I2C flag is set or not - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] flag: I2C flags, refer to i2c_flag_enum - only one parameter can be selected which is shown as below: - \arg I2C_FLAG_SBSEND: start condition send out - \arg I2C_FLAG_ADDSEND: address is sent in master mode or received and matches in slave mode - \arg I2C_FLAG_BTC: byte transmission finishes - \arg I2C_FLAG_ADD10SEND: header of 10-bit address is sent in master mode - \arg I2C_FLAG_STPDET: stop condition detected in slave mode - \arg I2C_FLAG_RBNE: I2C_DATA is not Empty during receiving - \arg I2C_FLAG_TBE: I2C_DATA is empty during transmitting - \arg I2C_FLAG_BERR: a bus error occurs indication a unexpected start or stop condition on I2C bus - \arg I2C_FLAG_LOSTARB: arbitration lost in master mode - \arg I2C_FLAG_AERR: acknowledge error - \arg I2C_FLAG_OUERR: overrun or underrun situation occurs in slave mode - \arg I2C_FLAG_PECERR: PEC error when receiving data - \arg I2C_FLAG_SMBTO: timeout signal in SMBus mode - \arg I2C_FLAG_SMBALT: SMBus alert status - \arg I2C_FLAG_MASTER: a flag indicating whether I2C block is in master or slave mode - \arg I2C_FLAG_I2CBSY: busy flag - \arg I2C_FLAG_TRS: whether the I2C is a transmitter or a receiver - \arg I2C_FLAG_RXGC: general call address (00h) received - \arg I2C_FLAG_DEFSMB: default address of SMBus device - \arg I2C_FLAG_HSTSMB: SMBus host header detected in slave mode - \arg I2C_FLAG_DUMOD: dual flag in slave mode indicating which address is matched in dual-address mode - \arg I2C_FLAG_TFF: txframe fall flag - \arg I2C_FLAG_TFR: txframe rise flag - \arg I2C_FLAG_RFF: rxframe fall flag - \arg I2C_FLAG_RFR: rxframe rise flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus i2c_flag_get(uint32_t i2c_periph, i2c_flag_enum flag) -{ - if(RESET != (I2C_REG_VAL(i2c_periph, flag) & BIT(I2C_BIT_POS(flag)))){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear I2C flag - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] flag: I2C flags, refer to i2c_flag_enum - only one parameter can be selected which is shown as below: - \arg I2C_FLAG_SMBALT: SMBus Alert status - \arg I2C_FLAG_SMBTO: timeout signal in SMBus mode - \arg I2C_FLAG_PECERR: PEC error when receiving data - \arg I2C_FLAG_OUERR: over-run or under-run situation occurs in slave mode - \arg I2C_FLAG_AERR: acknowledge error - \arg I2C_FLAG_LOSTARB: arbitration lost in master mode - \arg I2C_FLAG_BERR: a bus error - \arg I2C_FLAG_ADDSEND: cleared by reading I2C_STAT0 and reading I2C_STAT1 - \arg I2C_FLAG_TFF: txframe fall flag - \arg I2C_FLAG_TFR: txframe rise flag - \arg I2C_FLAG_RFF: rxframe fall flag - \arg I2C_FLAG_RFR: rxframe rise flag - \param[out] none - \retval none -*/ -void i2c_flag_clear(uint32_t i2c_periph, i2c_flag_enum flag) -{ - if(I2C_FLAG_ADDSEND == flag){ - /* read I2C_STAT0 and then read I2C_STAT1 to clear ADDSEND */ - I2C_STAT0(i2c_periph); - I2C_STAT1(i2c_periph); - }else{ - I2C_REG_VAL(i2c_periph, flag) &= ~BIT(I2C_BIT_POS(flag)); - } -} - -/*! - \brief enable I2C interrupt - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] interrupt: I2C interrupts, refer to i2c_interrupt_enum - only one parameter can be selected which is shown as below: - \arg I2C_INT_ERR: error interrupt enable - \arg I2C_INT_EV: event interrupt enable - \arg I2C_INT_BUF: buffer interrupt enable - \arg I2C_INT_TFF: txframe fall interrupt enable - \arg I2C_INT_TFR: txframe rise interrupt enable - \arg I2C_INT_RFF: rxframe fall interrupt enable - \arg I2C_INT_RFR: rxframe rise interrupt enable - \param[out] none - \retval none -*/ -void i2c_interrupt_enable(uint32_t i2c_periph, i2c_interrupt_enum interrupt) -{ - I2C_REG_VAL(i2c_periph, interrupt) |= BIT(I2C_BIT_POS(interrupt)); -} - -/*! - \brief disable I2C interrupt - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] interrupt: I2C interrupts, refer to i2c_flag_enum - only one parameter can be selected which is shown as below: - \arg I2C_INT_ERR: error interrupt enable - \arg I2C_INT_EV: event interrupt enable - \arg I2C_INT_BUF: buffer interrupt enable - \arg I2C_INT_TFF: txframe fall interrupt enable - \arg I2C_INT_TFR: txframe rise interrupt enable - \arg I2C_INT_RFF: rxframe fall interrupt enable - \arg I2C_INT_RFR: rxframe rise interrupt enable - \param[out] none - \retval none -*/ -void i2c_interrupt_disable(uint32_t i2c_periph, i2c_interrupt_enum interrupt) -{ - I2C_REG_VAL(i2c_periph, interrupt) &= ~BIT(I2C_BIT_POS(interrupt)); -} - -/*! - \brief check I2C interrupt flag - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] int_flag: I2C interrupt flags, refer to i2c_interrupt_flag_enum - only one parameter can be selected which is shown as below: - \arg I2C_INT_FLAG_SBSEND: start condition sent out in master mode interrupt flag - \arg I2C_INT_FLAG_ADDSEND: address is sent in master mode or received and matches in slave mode interrupt flag - \arg I2C_INT_FLAG_BTC: byte transmission finishes - \arg I2C_INT_FLAG_ADD10SEND: header of 10-bit address is sent in master mode interrupt flag - \arg I2C_INT_FLAG_STPDET: etop condition detected in slave mode interrupt flag - \arg I2C_INT_FLAG_RBNE: I2C_DATA is not Empty during receiving interrupt flag - \arg I2C_INT_FLAG_TBE: I2C_DATA is empty during transmitting interrupt flag - \arg I2C_INT_FLAG_BERR: a bus error occurs indication a unexpected start or stop condition on I2C bus interrupt flag - \arg I2C_INT_FLAG_LOSTARB: arbitration lost in master mode interrupt flag - \arg I2C_INT_FLAG_AERR: acknowledge error interrupt flag - \arg I2C_INT_FLAG_OUERR: over-run or under-run situation occurs in slave mode interrupt flag - \arg I2C_INT_FLAG_PECERR: PEC error when receiving data interrupt flag - \arg I2C_INT_FLAG_SMBTO: timeout signal in SMBus mode interrupt flag - \arg I2C_INT_FLAG_SMBALT: SMBus Alert status interrupt flag - \arg I2C_INT_FLAG_TFF: txframe fall interrupt flag - \arg I2C_INT_FLAG_TFR: txframe rise interrupt flag - \arg I2C_INT_FLAG_RFF: rxframe fall interrupt flag - \arg I2C_INT_FLAG_RFR: rxframe rise interrupt flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus i2c_interrupt_flag_get(uint32_t i2c_periph, i2c_interrupt_flag_enum int_flag) -{ - uint32_t intenable = 0U, flagstatus = 0U, bufie; - - /* check BUFIE */ - bufie = I2C_CTL1(i2c_periph)&I2C_CTL1_BUFIE; - - /* get the interrupt enable bit status */ - intenable = (I2C_REG_VAL(i2c_periph, int_flag) & BIT(I2C_BIT_POS(int_flag))); - /* get the corresponding flag bit status */ - flagstatus = (I2C_REG_VAL2(i2c_periph, int_flag) & BIT(I2C_BIT_POS2(int_flag))); - - if((I2C_INT_FLAG_RBNE == int_flag) || (I2C_INT_FLAG_TBE == int_flag)){ - if(intenable && bufie){ - intenable = 1U; - }else{ - intenable = 0U; - } - } - if((0U != flagstatus) && (0U != intenable)){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear I2C interrupt flag - \param[in] i2c_periph: I2Cx(x=0,1,2) - \param[in] int_flag: I2C interrupt flags, refer to i2c_interrupt_flag_enum - only one parameter can be selected which is shown as below: - \arg I2C_INT_FLAG_ADDSEND: address is sent in master mode or received and matches in slave mode interrupt flag - \arg I2C_INT_FLAG_BERR: a bus error occurs indication a unexpected start or stop condition on I2C bus interrupt flag - \arg I2C_INT_FLAG_LOSTARB: arbitration lost in master mode interrupt flag - \arg I2C_INT_FLAG_AERR: acknowledge error interrupt flag - \arg I2C_INT_FLAG_OUERR: over-run or under-run situation occurs in slave mode interrupt flag - \arg I2C_INT_FLAG_PECERR: PEC error when receiving data interrupt flag - \arg I2C_INT_FLAG_SMBTO: timeout signal in SMBus mode interrupt flag - \arg I2C_INT_FLAG_SMBALT: SMBus Alert status interrupt flag - \arg I2C_INT_FLAG_TFF: txframe fall interrupt flag - \arg I2C_INT_FLAG_TFR: txframe rise interrupt flag - \arg I2C_INT_FLAG_RFF: rxframe fall interrupt flag - \arg I2C_INT_FLAG_RFR: rxframe rise interrupt flag - \param[out] none - \retval none -*/ -void i2c_interrupt_flag_clear(uint32_t i2c_periph, i2c_interrupt_flag_enum int_flag) -{ - if(I2C_INT_FLAG_ADDSEND == int_flag){ - /* read I2C_STAT0 and then read I2C_STAT1 to clear ADDSEND */ - I2C_STAT0(i2c_periph); - I2C_STAT1(i2c_periph); - }else{ - I2C_REG_VAL2(i2c_periph, int_flag) &= ~BIT(I2C_BIT_POS2(int_flag)); - } -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_ipa.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_ipa.c deleted file mode 100644 index 963cd04623..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_ipa.c +++ /dev/null @@ -1,637 +0,0 @@ -/*! - \file gd32f4xx_ipa.c - \brief IPA driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_ipa.h" - -#define IPA_DEFAULT_VALUE 0x00000000U - -/*! - \brief deinitialize IPA registers - \param[in] none - \param[out] none - \retval none -*/ -void ipa_deinit(void) -{ - rcu_periph_reset_enable(RCU_IPARST); - rcu_periph_reset_disable(RCU_IPARST); -} - -/*! - \brief enable IPA transfer - \param[in] none - \param[out] none - \retval none -*/ -void ipa_transfer_enable(void) -{ - IPA_CTL |= IPA_CTL_TEN; -} - -/*! - \brief enable IPA transfer hang up - \param[in] none - \param[out] none - \retval none -*/ -void ipa_transfer_hangup_enable(void) -{ - IPA_CTL |= IPA_CTL_THU; -} - -/*! - \brief disable IPA transfer hang up - \param[in] none - \param[out] none - \retval none -*/ -void ipa_transfer_hangup_disable(void) -{ - IPA_CTL &= ~(IPA_CTL_THU); -} - -/*! - \brief enable IPA transfer stop - \param[in] none - \param[out] none - \retval none -*/ -void ipa_transfer_stop_enable(void) -{ - IPA_CTL |= IPA_CTL_TST; -} - -/*! - \brief disable IPA transfer stop - \param[in] none - \param[out] none - \retval none -*/ -void ipa_transfer_stop_disable(void) -{ - IPA_CTL &= ~(IPA_CTL_TST); -} -/*! - \brief enable IPA foreground LUT loading - \param[in] none - \param[out] none - \retval none -*/ -void ipa_foreground_lut_loading_enable(void) -{ - IPA_FPCTL |= IPA_FPCTL_FLLEN; -} - -/*! - \brief enable IPA background LUT loading - \param[in] none - \param[out] none - \retval none -*/ -void ipa_background_lut_loading_enable(void) -{ - IPA_BPCTL |= IPA_BPCTL_BLLEN; -} - -/*! - \brief set pixel format convert mode, the function is invalid when the IPA transfer is enabled - \param[in] pfcm: pixel format convert mode - only one parameter can be selected which is shown as below: - \arg IPA_FGTODE: foreground memory to destination memory without pixel format convert - \arg IPA_FGTODE_PF_CONVERT: foreground memory to destination memory with pixel format convert - \arg IPA_FGBGTODE: blending foreground and background memory to destination memory - \arg IPA_FILL_UP_DE: fill up destination memory with specific color - \param[out] none - \retval none -*/ -void ipa_pixel_format_convert_mode_set(uint32_t pfcm) -{ - IPA_CTL |= pfcm; -} - -/*! - \brief initialize the structure of IPA foreground parameter struct with the default values, it is - suggested that call this function after an ipa_foreground_parameter_struct structure is defined - \param[in] none - \param[out] foreground_struct: the data needed to initialize foreground - foreground_memaddr: foreground memory base address - foreground_lineoff: foreground line offset - foreground_prealpha: foreground pre-defined alpha value - foreground_alpha_algorithm: IPA_FG_ALPHA_MODE_0,IPA_FG_ALPHA_MODE_1,IPA_FG_ALPHA_MODE_2 - foreground_pf: foreground pixel format(FOREGROUND_PPF_ARGB8888,FOREGROUND_PPF_RGB888,FOREGROUND_PPF_RGB565, - FOREGROUND_PPF_ARG1555,FOREGROUND_PPF_ARGB4444,FOREGROUND_PPF_L8,FOREGROUND_PPF_AL44, - FOREGROUND_PPF_AL88,FOREGROUND_PPF_L4,FOREGROUND_PPF_A8,FOREGROUND_PPF_A4) - foreground_prered: foreground pre-defined red value - foreground_pregreen: foreground pre-defined green value - foreground_preblue: foreground pre-defined blue value - \retval none -*/ -void ipa_foreground_struct_para_init(ipa_foreground_parameter_struct* foreground_struct) -{ - /* initialize the struct parameters with default values */ - foreground_struct->foreground_memaddr = IPA_DEFAULT_VALUE; - foreground_struct->foreground_lineoff = IPA_DEFAULT_VALUE; - foreground_struct->foreground_prealpha = IPA_DEFAULT_VALUE; - foreground_struct->foreground_alpha_algorithm = IPA_FG_ALPHA_MODE_0; - foreground_struct->foreground_pf = FOREGROUND_PPF_ARGB8888; - foreground_struct->foreground_prered = IPA_DEFAULT_VALUE; - foreground_struct->foreground_pregreen = IPA_DEFAULT_VALUE; - foreground_struct->foreground_preblue = IPA_DEFAULT_VALUE; -} - -/*! - \brief initialize foreground parameters - \param[in] foreground_struct: the data needed to initialize foreground - foreground_memaddr: foreground memory base address - foreground_lineoff: foreground line offset - foreground_prealpha: foreground pre-defined alpha value - foreground_alpha_algorithm: IPA_FG_ALPHA_MODE_0,IPA_FG_ALPHA_MODE_1,IPA_FG_ALPHA_MODE_2 - foreground_pf: foreground pixel format(FOREGROUND_PPF_ARGB8888,FOREGROUND_PPF_RGB888,FOREGROUND_PPF_RGB565, - FOREGROUND_PPF_ARG1555,FOREGROUND_PPF_ARGB4444,FOREGROUND_PPF_L8,FOREGROUND_PPF_AL44, - FOREGROUND_PPF_AL88,FOREGROUND_PPF_L4,FOREGROUND_PPF_A8,FOREGROUND_PPF_A4) - foreground_prered: foreground pre-defined red value - foreground_pregreen: foreground pre-defined green value - foreground_preblue: foreground pre-defined blue value - \param[out] none - \retval none -*/ -void ipa_foreground_init(ipa_foreground_parameter_struct* foreground_struct) -{ - FlagStatus tempflag = RESET; - if(RESET != (IPA_CTL & IPA_CTL_TEN)){ - tempflag = SET; - /* reset the TEN in order to configure the following bits */ - IPA_CTL &= ~IPA_CTL_TEN; - } - - /* foreground memory base address configuration */ - IPA_FMADDR &= ~(IPA_FMADDR_FMADDR); - IPA_FMADDR = foreground_struct->foreground_memaddr; - /* foreground line offset configuration */ - IPA_FLOFF &= ~(IPA_FLOFF_FLOFF); - IPA_FLOFF = foreground_struct->foreground_lineoff; - /* foreground pixel format pre-defined alpha, alpha calculation algorithm configuration */ - IPA_FPCTL &= ~(IPA_FPCTL_FPDAV|IPA_FPCTL_FAVCA|IPA_FPCTL_FPF); - IPA_FPCTL |= (foreground_struct->foreground_prealpha<<24U); - IPA_FPCTL |= foreground_struct->foreground_alpha_algorithm; - IPA_FPCTL |= foreground_struct->foreground_pf; - /* foreground pre-defined red green blue configuration */ - IPA_FPV &= ~(IPA_FPV_FPDRV|IPA_FPV_FPDGV|IPA_FPV_FPDBV); - IPA_FPV |= ((foreground_struct->foreground_prered<<16U)|(foreground_struct->foreground_pregreen<<8U) - |(foreground_struct->foreground_preblue)); - - if(SET == tempflag){ - /* restore the state of TEN */ - IPA_CTL |= IPA_CTL_TEN; - } -} - -/*! - \brief initialize the structure of IPA background parameter struct with the default values, it is - suggested that call this function after an ipa_background_parameter_struct structure is defined - \param[in] none - \param[out] background_struct: the data needed to initialize background - background_memaddr: background memory base address - background_lineoff: background line offset - background_prealpha: background pre-defined alpha value - background_alpha_algorithm: IPA_BG_ALPHA_MODE_0,IPA_BG_ALPHA_MODE_1,IPA_BG_ALPHA_MODE_2 - background_pf: background pixel format(BACKGROUND_PPF_ARGB8888,BACKGROUND_PPF_RGB888,BACKGROUND_PPF_RGB565, - BACKGROUND_PPF_ARG1555,BACKGROUND_PPF_ARGB4444,BACKGROUND_PPF_L8,BACKGROUND_PPF_AL44, - BACKGROUND_PPF_AL88,BACKGROUND_PPF_L4,BACKGROUND_PPF_A8,BACKGROUND_PPF_A4) - background_prered: background pre-defined red value - background_pregreen: background pre-defined green value - background_preblue: background pre-defined blue value - \retval none -*/ -void ipa_background_struct_para_init(ipa_background_parameter_struct* background_struct) -{ - /* initialize the struct parameters with default values */ - background_struct->background_memaddr = IPA_DEFAULT_VALUE; - background_struct->background_lineoff = IPA_DEFAULT_VALUE; - background_struct->background_prealpha = IPA_DEFAULT_VALUE; - background_struct->background_alpha_algorithm = IPA_BG_ALPHA_MODE_0; - background_struct->background_pf = BACKGROUND_PPF_ARGB8888; - background_struct->background_prered = IPA_DEFAULT_VALUE; - background_struct->background_pregreen = IPA_DEFAULT_VALUE; - background_struct->background_preblue = IPA_DEFAULT_VALUE; -} - -/*! - \brief initialize background parameters - \param[in] background_struct: the data needed to initialize background - background_memaddr: background memory base address - background_lineoff: background line offset - background_prealpha: background pre-defined alpha value - background_alpha_algorithm: IPA_BG_ALPHA_MODE_0,IPA_FG_ALPHA_MODE_1,IPA_FG_ALPHA_MODE_2 - background_pf: background pixel format(BACKGROUND_PPF_ARGB8888,BACKGROUND_PPF_RGB888,BACKGROUND_PPF_RGB565, - BACKGROUND_PPF_ARG1555,BACKGROUND_PPF_ARGB4444,BACKGROUND_PPF_L8,BACKGROUND_PPF_AL44, - BACKGROUND_PPF_AL88,BACKGROUND_PPF_L4,BACKGROUND_PPF_A8,BACKGROUND_PPF_A4) - background_prered: background pre-defined red value - background_pregreen: background pre-defined green value - background_preblue: background pre-defined blue value - \param[out] none - \retval none -*/ -void ipa_background_init(ipa_background_parameter_struct* background_struct) -{ - FlagStatus tempflag = RESET; - if(RESET != (IPA_CTL & IPA_CTL_TEN)){ - tempflag = SET; - /* reset the TEN in order to configure the following bits */ - IPA_CTL &= ~IPA_CTL_TEN; - } - - /* background memory base address configuration */ - IPA_BMADDR &= ~(IPA_BMADDR_BMADDR); - IPA_BMADDR = background_struct->background_memaddr; - /* background line offset configuration */ - IPA_BLOFF &= ~(IPA_BLOFF_BLOFF); - IPA_BLOFF = background_struct->background_lineoff; - /* background pixel format pre-defined alpha, alpha calculation algorithm configuration */ - IPA_BPCTL &= ~(IPA_BPCTL_BPDAV|IPA_BPCTL_BAVCA|IPA_BPCTL_BPF); - IPA_BPCTL |= (background_struct->background_prealpha<<24U); - IPA_BPCTL |= background_struct->background_alpha_algorithm; - IPA_BPCTL |= background_struct->background_pf; - /* background pre-defined red green blue configuration */ - IPA_BPV &= ~(IPA_BPV_BPDRV|IPA_BPV_BPDGV|IPA_BPV_BPDBV); - IPA_BPV |= ((background_struct->background_prered<<16U)|(background_struct->background_pregreen<<8U) - |(background_struct->background_preblue)); - - if(SET == tempflag){ - /* restore the state of TEN */ - IPA_CTL |= IPA_CTL_TEN; - } -} - -/*! - \brief initialize the structure of IPA destination parameter struct with the default values, it is - suggested that call this function after an ipa_destination_parameter_struct structure is defined - \param[in] none - \param[out] destination_struct: the data needed to initialize destination parameter - destination_pf: IPA_DPF_ARGB8888,IPA_DPF_RGB888,IPA_DPF_RGB565,IPA_DPF_ARGB1555, - IPA_DPF_ARGB4444,refer to ipa_dpf_enum - destination_lineoff: destination line offset - destination_prealpha: destination pre-defined alpha value - destination_prered: destination pre-defined red value - destination_pregreen: destination pre-defined green value - destination_preblue: destination pre-defined blue value - destination_memaddr: destination memory base address - image_width: width of the image to be processed - image_height: height of the image to be processed - \retval none -*/ -void ipa_destination_struct_para_init(ipa_destination_parameter_struct* destination_struct) -{ - /* initialize the struct parameters with default values */ - destination_struct->destination_pf = IPA_DPF_ARGB8888; - destination_struct->destination_lineoff = IPA_DEFAULT_VALUE; - destination_struct->destination_prealpha = IPA_DEFAULT_VALUE; - destination_struct->destination_prered = IPA_DEFAULT_VALUE; - destination_struct->destination_pregreen = IPA_DEFAULT_VALUE; - destination_struct->destination_preblue = IPA_DEFAULT_VALUE; - destination_struct->destination_memaddr = IPA_DEFAULT_VALUE; - destination_struct->image_width = IPA_DEFAULT_VALUE; - destination_struct->image_height = IPA_DEFAULT_VALUE; -} - -/*! - \brief initialize destination parameters - \param[in] destination_struct: the data needed to initialize destination parameters - destination_pf: IPA_DPF_ARGB8888,IPA_DPF_RGB888,IPA_DPF_RGB565,IPA_DPF_ARGB1555, - IPA_DPF_ARGB4444,refer to ipa_dpf_enum - destination_lineoff: destination line offset - destination_prealpha: destination pre-defined alpha value - destination_prered: destination pre-defined red value - destination_pregreen: destination pre-defined green value - destination_preblue: destination pre-defined blue value - destination_memaddr: destination memory base address - image_width: width of the image to be processed - image_height: height of the image to be processed - \param[out] none - \retval none -*/ -void ipa_destination_init(ipa_destination_parameter_struct* destination_struct) -{ - uint32_t destination_pixelformat; - FlagStatus tempflag = RESET; - if(RESET != (IPA_CTL & IPA_CTL_TEN)){ - tempflag = SET; - /* reset the TEN in order to configure the following bits */ - IPA_CTL &= ~IPA_CTL_TEN; - } - - /* destination pixel format configuration */ - IPA_DPCTL &= ~(IPA_DPCTL_DPF); - IPA_DPCTL = destination_struct->destination_pf; - destination_pixelformat = destination_struct->destination_pf; - /* destination pixel format ARGB8888 */ - switch(destination_pixelformat){ - case IPA_DPF_ARGB8888: - IPA_DPV &= ~(IPA_DPV_DPDBV_0|(IPA_DPV_DPDGV_0)|(IPA_DPV_DPDRV_0)|(IPA_DPV_DPDAV_0)); - IPA_DPV = (destination_struct->destination_preblue|(destination_struct->destination_pregreen<<8U) - |(destination_struct->destination_prered<<16U) - |(destination_struct->destination_prealpha<<24U)); - break; - /* destination pixel format RGB888 */ - case IPA_DPF_RGB888: - IPA_DPV &= ~(IPA_DPV_DPDBV_1|(IPA_DPV_DPDGV_1)|(IPA_DPV_DPDRV_1)); - IPA_DPV = (destination_struct->destination_preblue|(destination_struct->destination_pregreen<<8U) - |(destination_struct->destination_prered<<16U)); - break; - /* destination pixel format RGB565 */ - case IPA_DPF_RGB565: - IPA_DPV &= ~(IPA_DPV_DPDBV_2|(IPA_DPV_DPDGV_2)|(IPA_DPV_DPDRV_2)); - IPA_DPV = (destination_struct->destination_preblue|(destination_struct->destination_pregreen<<5U) - |(destination_struct->destination_prered<<11U)); - break; - /* destination pixel format ARGB1555 */ - case IPA_DPF_ARGB1555: - IPA_DPV &= ~(IPA_DPV_DPDBV_3|(IPA_DPV_DPDGV_3)|(IPA_DPV_DPDRV_3)|(IPA_DPV_DPDAV_3)); - IPA_DPV = (destination_struct->destination_preblue|(destination_struct->destination_pregreen<<5U) - |(destination_struct->destination_prered<<10U) - |(destination_struct->destination_prealpha<<15U)); - break; - /* destination pixel format ARGB4444 */ - case IPA_DPF_ARGB4444: - IPA_DPV &= ~(IPA_DPV_DPDBV_4|(IPA_DPV_DPDGV_4)|(IPA_DPV_DPDRV_4)|(IPA_DPV_DPDAV_4)); - IPA_DPV = (destination_struct->destination_preblue|(destination_struct->destination_pregreen<<4U) - |(destination_struct->destination_prered<<8U) - |(destination_struct->destination_prealpha<<12U)); - break; - default: - break; - } - /* destination memory base address configuration */ - IPA_DMADDR &= ~(IPA_DMADDR_DMADDR); - IPA_DMADDR = destination_struct->destination_memaddr; - /* destination line offset configuration */ - IPA_DLOFF &= ~(IPA_DLOFF_DLOFF); - IPA_DLOFF =destination_struct->destination_lineoff; - /* image size configuration */ - IPA_IMS &= ~(IPA_IMS_HEIGHT|IPA_IMS_WIDTH); - IPA_IMS |= ((destination_struct->image_width<<16U)|(destination_struct->image_height)); - - if(SET == tempflag){ - /* restore the state of TEN */ - IPA_CTL |= IPA_CTL_TEN; - } -} - -/*! - \brief initialize IPA foreground LUT parameters - \param[in] fg_lut_num: foreground LUT number of pixel - \param[in] fg_lut_pf: foreground LUT pixel format(IPA_LUT_PF_ARGB8888, IPA_LUT_PF_RGB888) - \param[in] fg_lut_addr: foreground LUT memory base address - \param[out] none - \retval none -*/ -void ipa_foreground_lut_init(uint8_t fg_lut_num, uint8_t fg_lut_pf, uint32_t fg_lut_addr) -{ - FlagStatus tempflag = RESET; - if(RESET != (IPA_FPCTL & IPA_FPCTL_FLLEN)){ - tempflag = SET; - /* reset the FLLEN in order to configure the following bits */ - IPA_FPCTL &= ~IPA_FPCTL_FLLEN; - } - - /* foreground LUT number of pixel configuration */ - IPA_FPCTL |= ((uint32_t)fg_lut_num<<8U); - /* foreground LUT pixel format configuration */ - if(IPA_LUT_PF_RGB888 == fg_lut_pf){ - IPA_FPCTL |= IPA_FPCTL_FLPF; - }else{ - IPA_FPCTL &= ~(IPA_FPCTL_FLPF); - } - /* foreground LUT memory base address configuration */ - IPA_FLMADDR &= ~(IPA_FLMADDR_FLMADDR); - IPA_FLMADDR = fg_lut_addr; - - if(SET == tempflag){ - /* restore the state of FLLEN */ - IPA_FPCTL |= IPA_FPCTL_FLLEN; - } -} - -/*! - \brief initialize IPA background LUT parameters - \param[in] bg_lut_num: background LUT number of pixel - \param[in] bg_lut_pf: background LUT pixel format(IPA_LUT_PF_ARGB8888, IPA_LUT_PF_RGB888) - \param[in] bg_lut_addr: background LUT memory base address - \param[out] none - \retval none -*/ -void ipa_background_lut_init(uint8_t bg_lut_num, uint8_t bg_lut_pf, uint32_t bg_lut_addr) -{ - FlagStatus tempflag = RESET; - if(RESET != (IPA_BPCTL & IPA_BPCTL_BLLEN)){ - tempflag = SET; - /* reset the BLLEN in order to configure the following bits */ - IPA_BPCTL &= ~IPA_BPCTL_BLLEN; - } - - /* background LUT number of pixel configuration */ - IPA_BPCTL |= ((uint32_t)bg_lut_num<<8U); - /* background LUT pixel format configuration */ - if(IPA_LUT_PF_RGB888 == bg_lut_pf){ - IPA_BPCTL |= IPA_BPCTL_BLPF; - }else{ - IPA_BPCTL &= ~(IPA_BPCTL_BLPF); - } - /* background LUT memory base address configuration */ - IPA_BLMADDR &= ~(IPA_BLMADDR_BLMADDR); - IPA_BLMADDR = bg_lut_addr; - - if(SET == tempflag){ - /* restore the state of BLLEN */ - IPA_BPCTL |= IPA_BPCTL_BLLEN; - } -} - -/*! - \brief configure IPA line mark - \param[in] line_num: line number - \param[out] none - \retval none -*/ -void ipa_line_mark_config(uint16_t line_num) -{ - IPA_LM &= ~(IPA_LM_LM); - IPA_LM = line_num; -} - -/*! - \brief inter-timer enable or disable - \param[in] timer_cfg: IPA_INTER_TIMER_ENABLE,IPA_INTER_TIMER_DISABLE - \param[out] none - \retval none -*/ -void ipa_inter_timer_config(uint8_t timer_cfg) -{ - if(IPA_INTER_TIMER_ENABLE == timer_cfg){ - IPA_ITCTL |= IPA_ITCTL_ITEN; - }else{ - IPA_ITCTL &= ~(IPA_ITCTL_ITEN); - } -} - -/*! - \brief configure the number of clock cycles interval - \param[in] clk_num: the number of clock cycles - \param[out] none - \retval none -*/ -void ipa_interval_clock_num_config(uint8_t clk_num) -{ - /* NCCI[7:0] bits have no meaning if ITEN is '0' */ - IPA_ITCTL &= ~(IPA_ITCTL_NCCI); - IPA_ITCTL |= ((uint32_t)clk_num<<8U); -} - -/*! - \brief get IPA flag status in IPA_INTF register - \param[in] flag: IPA flags - one or more parameters can be selected which are shown as below: - \arg IPA_FLAG_TAE: transfer access error interrupt flag - \arg IPA_FLAG_FTF: full transfer finish interrupt flag - \arg IPA_FLAG_TLM: transfer line mark interrupt flag - \arg IPA_FLAG_LAC: LUT access conflict interrupt flag - \arg IPA_FLAG_LLF: LUT loading finish interrupt flag - \arg IPA_FLAG_WCF: wrong configuration interrupt flag - \param[out] none - \retval none -*/ -FlagStatus ipa_flag_get(uint32_t flag) -{ - if(RESET != (IPA_INTF & flag)){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear IPA flag in IPA_INTF register - \param[in] flag: IPA flags - one or more parameters can be selected which are shown as below: - \arg IPA_FLAG_TAE: transfer access error interrupt flag - \arg IPA_FLAG_FTF: full transfer finish interrupt flag - \arg IPA_FLAG_TLM: transfer line mark interrupt flag - \arg IPA_FLAG_LAC: LUT access conflict interrupt flag - \arg IPA_FLAG_LLF: LUT loading finish interrupt flag - \arg IPA_FLAG_WCF: wrong configuration interrupt flag - \param[out] none - \retval none -*/ -void ipa_flag_clear(uint32_t flag) -{ - IPA_INTC |= (flag); -} - -/*! - \brief enable IPA interrupt - \param[in] int_flag: IPA interrupt flags - one or more parameters can be selected which are shown as below: - \arg IPA_INT_TAE: transfer access error interrupt - \arg IPA_INT_FTF: full transfer finish interrupt - \arg IPA_INT_TLM: transfer line mark interrupt - \arg IPA_INT_LAC: LUT access conflict interrupt - \arg IPA_INT_LLF: LUT loading finish interrupt - \arg IPA_INT_WCF: wrong configuration interrupt - \param[out] none - \retval none -*/ -void ipa_interrupt_enable(uint32_t int_flag) -{ - IPA_CTL |= (int_flag); -} - -/*! - \brief disable IPA interrupt - \param[in] int_flag: IPA interrupt flags - one or more parameters can be selected which are shown as below: - \arg IPA_INT_TAE: transfer access error interrupt - \arg IPA_INT_FTF: full transfer finish interrupt - \arg IPA_INT_TLM: transfer line mark interrupt - \arg IPA_INT_LAC: LUT access conflict interrupt - \arg IPA_INT_LLF: LUT loading finish interrupt - \arg IPA_INT_WCF: wrong configuration interrupt - \param[out] none - \retval none -*/ -void ipa_interrupt_disable(uint32_t int_flag) -{ - IPA_CTL &= ~(int_flag); -} - -/*! - \brief get IPA interrupt flag - \param[in] int_flag: IPA interrupt flag flags - one or more parameters can be selected which are shown as below: - \arg IPA_INT_FLAG_TAE: transfer access error interrupt flag - \arg IPA_INT_FLAG_FTF: full transfer finish interrupt flag - \arg IPA_INT_FLAG_TLM: transfer line mark interrupt flag - \arg IPA_INT_FLAG_LAC: LUT access conflict interrupt flag - \arg IPA_INT_FLAG_LLF: LUT loading finish interrupt flag - \arg IPA_INT_FLAG_WCF: wrong configuration interrupt flag - \param[out] none - \retval none -*/ -FlagStatus ipa_interrupt_flag_get(uint32_t int_flag) -{ - if(0U != (IPA_INTF & int_flag)){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear IPA interrupt flag - \param[in] int_flag: IPA interrupt flag flags - one or more parameters can be selected which are shown as below: - \arg IPA_INT_FLAG_TAE: transfer access error interrupt flag - \arg IPA_INT_FLAG_FTF: full transfer finish interrupt flag - \arg IPA_INT_FLAG_TLM: transfer line mark interrupt flag - \arg IPA_INT_FLAG_LAC: LUT access conflict interrupt flag - \arg IPA_INT_FLAG_LLF: LUT loading finish interrupt flag - \arg IPA_INT_FLAG_WCF: wrong configuration interrupt flag - \param[out] none - \retval none -*/ -void ipa_interrupt_flag_clear(uint32_t int_flag) -{ - IPA_INTC |= (int_flag); -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_iref.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_iref.c deleted file mode 100644 index a9f6b667ee..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_iref.c +++ /dev/null @@ -1,126 +0,0 @@ -/*! - \file gd32f4xx_iref.c - \brief IREF driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_iref.h" - -/*! - \brief deinit IREF - \param[in] none - \param[out] none - \retval none -*/ -void iref_deinit(void) -{ - rcu_periph_reset_enable(RCU_IREFRST); - rcu_periph_reset_disable(RCU_IREFRST); -} - -/*! - \brief enable IREF - \param[in] none - \param[out] none - \retval none -*/ -void iref_enable(void) -{ - IREF_CTL |= IREF_CTL_CREN; -} - -/*! - \brief disable IREF - \param[in] none - \param[out] none - \retval none -*/ -void iref_disable(void) -{ - IREF_CTL &= ~IREF_CTL_CREN; -} - -/*! - \brief set IREF mode - \param[in] step - \arg IREF_MODE_LOW_POWER: 1uA step - \arg IREF_MODE_HIGH_CURRENT: 8uA step - \param[out] none - \retval none -*/ -void iref_mode_set(uint32_t step) -{ - IREF_CTL &= ~IREF_CTL_SSEL; - IREF_CTL |= step; -} - -/*! - \brief set IREF precision_trim_value - \param[in] precisiontrim - \arg IREF_CUR_PRECISION_TRIM_X(x=0..31): (-15+ x)% - \param[out] none - \retval none -*/ -void iref_precision_trim_value_set(uint32_t precisiontrim) -{ - IREF_CTL &= ~IREF_CTL_CPT; - IREF_CTL |= precisiontrim; -} - -/*! - \brief set IREF sink mode - \param[in] sinkmode - \arg IREF_SOURCE_CURRENT : source current. - \arg IREF_SINK_CURRENT: sink current - \param[out] none - \retval none -*/ -void iref_sink_set(uint32_t sinkmode) -{ - IREF_CTL &= ~IREF_CTL_SCMOD; - IREF_CTL |= sinkmode; -} - -/*! - \brief set IREF step data - \param[in] stepdata - \arg IREF_CUR_STEP_DATA_X:(x=0..63): step*x - \param[out] none - \retval none -*/ - -void iref_step_data_config(uint32_t stepdata) -{ - IREF_CTL &= ~IREF_CTL_CSDT; - IREF_CTL |= stepdata; -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_misc.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_misc.c deleted file mode 100644 index 5a316fa6c3..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_misc.c +++ /dev/null @@ -1,174 +0,0 @@ -/*! - \file gd32f4xx_misc.c - \brief MISC driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_misc.h" - -/*! - \brief set the priority group - \param[in] nvic_prigroup: the NVIC priority group - \arg NVIC_PRIGROUP_PRE0_SUB4:0 bits for pre-emption priority 4 bits for subpriority - \arg NVIC_PRIGROUP_PRE1_SUB3:1 bits for pre-emption priority 3 bits for subpriority - \arg NVIC_PRIGROUP_PRE2_SUB2:2 bits for pre-emption priority 2 bits for subpriority - \arg NVIC_PRIGROUP_PRE3_SUB1:3 bits for pre-emption priority 1 bits for subpriority - \arg NVIC_PRIGROUP_PRE4_SUB0:4 bits for pre-emption priority 0 bits for subpriority - \param[out] none - \retval none -*/ -void nvic_priority_group_set(uint32_t nvic_prigroup) -{ - /* set the priority group value */ - SCB->AIRCR = NVIC_AIRCR_VECTKEY_MASK | nvic_prigroup; -} - -/*! - \brief enable NVIC request - \param[in] nvic_irq: the NVIC interrupt request, detailed in IRQn_Type - \param[in] nvic_irq_pre_priority: the pre-emption priority needed to set - \param[in] nvic_irq_sub_priority: the subpriority needed to set - \param[out] none - \retval none -*/ -void nvic_irq_enable(uint8_t nvic_irq, uint8_t nvic_irq_pre_priority, - uint8_t nvic_irq_sub_priority) -{ - uint32_t temp_priority = 0x00U, temp_pre = 0x00U, temp_sub = 0x00U; - /* use the priority group value to get the temp_pre and the temp_sub */ - if(((SCB->AIRCR) & (uint32_t)0x700U)==NVIC_PRIGROUP_PRE0_SUB4){ - temp_pre=0U; - temp_sub=0x4U; - }else if(((SCB->AIRCR) & (uint32_t)0x700U)==NVIC_PRIGROUP_PRE1_SUB3){ - temp_pre=1U; - temp_sub=0x3U; - }else if(((SCB->AIRCR) & (uint32_t)0x700U)==NVIC_PRIGROUP_PRE2_SUB2){ - temp_pre=2U; - temp_sub=0x2U; - }else if(((SCB->AIRCR) & (uint32_t)0x700U)==NVIC_PRIGROUP_PRE3_SUB1){ - temp_pre=3U; - temp_sub=0x1U; - }else if(((SCB->AIRCR) & (uint32_t)0x700U)==NVIC_PRIGROUP_PRE4_SUB0){ - temp_pre=4U; - temp_sub=0x0U; - }else{ - nvic_priority_group_set(NVIC_PRIGROUP_PRE2_SUB2); - temp_pre=2U; - temp_sub=0x2U; - } - /* get the temp_priority to fill the NVIC->IP register */ - temp_priority = (uint32_t)nvic_irq_pre_priority << (0x4U - temp_pre); - temp_priority |= nvic_irq_sub_priority &(0x0FU >> (0x4U - temp_sub)); - temp_priority = temp_priority << 0x04U; - NVIC->IP[nvic_irq] = (uint8_t)temp_priority; - /* enable the selected IRQ */ - NVIC->ISER[nvic_irq >> 0x05U] = (uint32_t)0x01U << (nvic_irq & (uint8_t)0x1FU); -} - -/*! - \brief disable NVIC request - \param[in] nvic_irq: the NVIC interrupt request, detailed in IRQn_Type - \param[out] none - \retval none -*/ -void nvic_irq_disable(uint8_t nvic_irq) -{ - /* disable the selected IRQ.*/ - NVIC->ICER[nvic_irq >> 0x05] = (uint32_t)0x01 << (nvic_irq & (uint8_t)0x1F); -} - -/*! - \brief set the NVIC vector table base address - \param[in] nvic_vict_tab: the RAM or FLASH base address - \arg NVIC_VECTTAB_RAM: RAM base address - \are NVIC_VECTTAB_FLASH: Flash base address - \param[in] offset: Vector Table offset - \param[out] none - \retval none -*/ -void nvic_vector_table_set(uint32_t nvic_vict_tab, uint32_t offset) -{ - SCB->VTOR = nvic_vict_tab | (offset & NVIC_VECTTAB_OFFSET_MASK); -} - -/*! - \brief set the state of the low power mode - \param[in] lowpower_mode: the low power mode state - \arg SCB_LPM_SLEEP_EXIT_ISR: if chose this para, the system always enter low power - mode by exiting from ISR - \arg SCB_LPM_DEEPSLEEP: if chose this para, the system will enter the DEEPSLEEP mode - \arg SCB_LPM_WAKE_BY_ALL_INT: if chose this para, the lowpower mode can be woke up - by all the enable and disable interrupts - \param[out] none - \retval none -*/ -void system_lowpower_set(uint8_t lowpower_mode) -{ - SCB->SCR |= (uint32_t)lowpower_mode; -} - -/*! - \brief reset the state of the low power mode - \param[in] lowpower_mode: the low power mode state - \arg SCB_LPM_SLEEP_EXIT_ISR: if chose this para, the system will exit low power - mode by exiting from ISR - \arg SCB_LPM_DEEPSLEEP: if chose this para, the system will enter the SLEEP mode - \arg SCB_LPM_WAKE_BY_ALL_INT: if chose this para, the lowpower mode only can be - woke up by the enable interrupts - \param[out] none - \retval none -*/ -void system_lowpower_reset(uint8_t lowpower_mode) -{ - SCB->SCR &= (~(uint32_t)lowpower_mode); -} - -/*! - \brief set the systick clock source - \param[in] systick_clksource: the systick clock source needed to choose - \arg SYSTICK_CLKSOURCE_HCLK: systick clock source is from HCLK - \arg SYSTICK_CLKSOURCE_HCLK_DIV8: systick clock source is from HCLK/8 - \param[out] none - \retval none -*/ - -void systick_clksource_set(uint32_t systick_clksource) -{ - if(SYSTICK_CLKSOURCE_HCLK == systick_clksource ){ - /* set the systick clock source from HCLK */ - SysTick->CTRL |= SYSTICK_CLKSOURCE_HCLK; - }else{ - /* set the systick clock source from HCLK/8 */ - SysTick->CTRL &= SYSTICK_CLKSOURCE_HCLK_DIV8; - } -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_pmu.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_pmu.c deleted file mode 100644 index 98a77fecf4..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_pmu.c +++ /dev/null @@ -1,391 +0,0 @@ -/*! - \file gd32f4xx_pmu.c - \brief PMU driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_pmu.h" -#include "core_cm4.h" -/*! - \brief reset PMU register - \param[in] none - \param[out] none - \retval none -*/ -void pmu_deinit(void) -{ - /* reset PMU */ - rcu_periph_reset_enable(RCU_PMURST); - rcu_periph_reset_disable(RCU_PMURST); -} - -/*! - \brief select low voltage detector threshold - \param[in] lvdt_n: - \arg PMU_LVDT_0: voltage threshold is 2.1V - \arg PMU_LVDT_1: voltage threshold is 2.3V - \arg PMU_LVDT_2: voltage threshold is 2.4V - \arg PMU_LVDT_3: voltage threshold is 2.6V - \arg PMU_LVDT_4: voltage threshold is 2.7V - \arg PMU_LVDT_5: voltage threshold is 2.9V - \arg PMU_LVDT_6: voltage threshold is 3.0V - \arg PMU_LVDT_7: voltage threshold is 3.1V - \param[out] none - \retval none -*/ -void pmu_lvd_select(uint32_t lvdt_n) -{ - /* disable LVD */ - PMU_CTL &= ~PMU_CTL_LVDEN; - /* clear LVDT bits */ - PMU_CTL &= ~PMU_CTL_LVDT; - /* set LVDT bits according to pmu_lvdt_n */ - PMU_CTL |= lvdt_n; - /* enable LVD */ - PMU_CTL |= PMU_CTL_LVDEN; -} - -/*! - \brief select LDO output voltage - this bit set by software when the main PLL closed, before closing PLL, change the system clock to IRC16M or HXTAL - \param[in] ldo_output: - \arg PMU_LDOVS_LOW: low-driver mode enable in deep-sleep mode - \arg PMU_LDOVS_MID: mid-driver mode disable in deep-sleep mode - \arg PMU_LDOVS_HIGH: high-driver mode disable in deep-sleep mode - \param[out] none - \retval none -*/ -void pmu_ldo_output_select(uint32_t ldo_output) -{ - PMU_CTL &= ~PMU_CTL_LDOVS; - PMU_CTL |= ldo_output; -} - -/*! - \brief enable low-driver mode in deep-sleep mode - \param[in] lowdr_mode: - \arg PMU_LOWDRIVER_ENABLE: enable low-driver mode in deep-sleep mode - \arg PMU_LOWDRIVER_DISABLE: disable low-driver mode in deep-sleep mode - \param[out] none - \retval none -*/ -void pmu_low_driver_mode_enable(uint32_t lowdr_mode) -{ - PMU_CTL &= ~PMU_CTL_LDEN; - PMU_CTL |= lowdr_mode; -} - -/*! - \brief switch high-driver mode - this bit set by software only when IRC16M or HXTAL used as system clock - \param[in] highdr_switch: - \arg PMU_HIGHDR_SWITCH_NONE: disable high-driver mode switch - \arg PMU_HIGHDR_SWITCH_EN: enable high-driver mode switch - \param[out] none - \retval none -*/ -void pmu_highdriver_switch_select(uint32_t highdr_switch) -{ - /* wait for HDRF flag set */ - while(SET != pmu_flag_get(PMU_FLAG_HDRF)){ - } - PMU_CTL &= ~PMU_CTL_HDS; - PMU_CTL |= highdr_switch; -} - -/*! - \brief enable high-driver mode - this bit set by software only when IRC16M or HXTAL used as system clock - \param[in] none - \param[out] none - \retval none -*/ -void pmu_highdriver_mode_enable(void) -{ - PMU_CTL |= PMU_CTL_HDEN; -} - -/*! - \brief disable high-driver mode - \param[in] none - \param[out] none - \retval none -*/ -void pmu_highdriver_mode_disable(void) -{ - PMU_CTL &= ~PMU_CTL_HDEN; -} - -/*! - \brief disable PMU lvd - \param[in] none - \param[out] none - \retval none -*/ -void pmu_lvd_disable(void) -{ - /* disable LVD */ - PMU_CTL &= ~PMU_CTL_LVDEN; -} - -/*! - \brief low-driver mode when use low power LDO - \param[in] mode: - \arg PMU_NORMALDR_LOWPWR: normal driver when use low power LDO - \arg PMU_LOWDR_LOWPWR: low-driver mode enabled when LDEN is 11 and use low power LDO - \param[out] none - \retval none -*/ -void pmu_lowdriver_lowpower_config(uint32_t mode) -{ - PMU_CTL &= ~PMU_CTL_LDLP; - PMU_CTL |= mode; -} - -/*! - \brief low-driver mode when use normal power LDO - \param[in] mode: - \arg PMU_NORMALDR_NORMALPWR: normal driver when use normal power LDO - \arg PMU_LOWDR_NORMALPWR: low-driver mode enabled when LDEN is 11 and use normal power LDO - \param[out] none - \retval none -*/ -void pmu_lowdriver_normalpower_config(uint32_t mode) -{ - PMU_CTL &= ~PMU_CTL_LDNP; - PMU_CTL |= mode; -} - -/*! - \brief PMU work at sleep mode - \param[in] sleepmodecmd: - \arg WFI_CMD: use WFI command - \arg WFE_CMD: use WFE command - \param[out] none - \retval none -*/ -void pmu_to_sleepmode(uint8_t sleepmodecmd) -{ - /* clear sleepdeep bit of Cortex-M4 system control register */ - SCB->SCR &= ~((uint32_t)SCB_SCR_SLEEPDEEP_Msk); - - /* select WFI or WFE command to enter sleep mode */ - if(WFI_CMD == sleepmodecmd){ - __WFI(); - }else{ - __WFE(); - } -} - -/*! - \brief PMU work at deepsleep mode - \param[in] ldo - \arg PMU_LDO_NORMAL: LDO normal work when pmu enter deepsleep mode - \arg PMU_LDO_LOWPOWER: LDO work at low power mode when pmu enter deepsleep mode - \param[in] deepsleepmodecmd: - \arg WFI_CMD: use WFI command - \arg WFE_CMD: use WFE command - \param[out] none - \retval none -*/ -void pmu_to_deepsleepmode(uint32_t ldo,uint8_t deepsleepmodecmd) -{ - static uint32_t reg_snap[ 4 ]; - /* clear stbmod and ldolp bits */ - PMU_CTL &= ~((uint32_t)(PMU_CTL_STBMOD | PMU_CTL_LDOLP)); - - /* set ldolp bit according to pmu_ldo */ - PMU_CTL |= ldo; - - /* set sleepdeep bit of Cortex-M4 system control register */ - SCB->SCR |= SCB_SCR_SLEEPDEEP_Msk; - - reg_snap[ 0 ] = REG32( 0xE000E010U ); - reg_snap[ 1 ] = REG32( 0xE000E100U ); - reg_snap[ 2 ] = REG32( 0xE000E104U ); - reg_snap[ 3 ] = REG32( 0xE000E108U ); - - REG32( 0xE000E010U ) &= 0x00010004U; - REG32( 0xE000E180U ) = 0XFF7FF831U; - REG32( 0xE000E184U ) = 0XBFFFF8FFU; - REG32( 0xE000E188U ) = 0xFFFFEFFFU; - - /* select WFI or WFE command to enter deepsleep mode */ - if(WFI_CMD == deepsleepmodecmd){ - __WFI(); - }else{ - __SEV(); - __WFE(); - __WFE(); - } - - REG32( 0xE000E010U ) = reg_snap[ 0 ] ; - REG32( 0xE000E100U ) = reg_snap[ 1 ] ; - REG32( 0xE000E104U ) = reg_snap[ 2 ] ; - REG32( 0xE000E108U ) = reg_snap[ 3 ] ; - - /* reset sleepdeep bit of Cortex-M4 system control register */ - SCB->SCR &= ~((uint32_t)SCB_SCR_SLEEPDEEP_Msk); -} - -/*! - \brief pmu work at standby mode - \param[in] standbymodecmd: - \arg WFI_CMD: use WFI command - \arg WFE_CMD: use WFE command - \param[out] none - \retval none -*/ -void pmu_to_standbymode(uint8_t standbymodecmd) -{ - /* set sleepdeep bit of Cortex-M4 system control register */ - SCB->SCR |= SCB_SCR_SLEEPDEEP_Msk; - - /* set stbmod bit */ - PMU_CTL |= PMU_CTL_STBMOD; - - /* reset wakeup flag */ - PMU_CTL |= PMU_CTL_WURST; - - /* select WFI or WFE command to enter standby mode */ - if(WFI_CMD == standbymodecmd){ - __WFI(); - }else{ - __WFE(); - } -} - -/*! - \brief backup SRAM LDO on - \param[in] bkp_ldo: - \arg PMU_BLDOON_OFF: backup SRAM LDO closed - \arg PMU_BLDOON_ON: open the backup SRAM LDO - \param[out] none - \retval none -*/ -void pmu_backup_ldo_config(uint32_t bkp_ldo) -{ - PMU_CS &= ~PMU_CS_BLDOON; - PMU_CS |= bkp_ldo; -} - -/*! - \brief reset flag bit - \param[in] flag_reset: - \arg PMU_FLAG_RESET_WAKEUP: reset wakeup flag - \arg PMU_FLAG_RESET_STANDBY: reset standby flag - \param[out] none - \retval none -*/ -void pmu_flag_reset(uint32_t flag_reset) -{ - switch(flag_reset){ - case PMU_FLAG_RESET_WAKEUP: - /* reset wakeup flag */ - PMU_CTL |= PMU_CTL_WURST; - break; - case PMU_FLAG_RESET_STANDBY: - /* reset standby flag */ - PMU_CTL |= PMU_CTL_STBRST; - break; - default : - break; - } -} - -/*! - \brief get flag state - \param[in] pmu_flag: - \arg PMU_FLAG_WAKEUP: wakeup flag - \arg PMU_FLAG_STANDBY: standby flag - \arg PMU_FLAG_LVD: lvd flag - \arg PMU_FLAG_BLDORF: backup SRAM LDO ready flag - \arg PMU_FLAG_LDOVSRF: LDO voltage select ready flag - \arg PMU_FLAG_HDRF: high-driver ready flag - \arg PMU_FLAG_HDSRF: high-driver switch ready flag - \arg PMU_FLAG_LDRF: low-driver mode ready flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus pmu_flag_get(uint32_t pmu_flag) -{ - if(PMU_CS & pmu_flag){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief enable backup domain write - \param[in] none - \param[out] none - \retval none -*/ -void pmu_backup_write_enable(void) -{ - PMU_CTL |= PMU_CTL_BKPWEN; -} - -/*! - \brief disable backup domain write - \param[in] none - \param[out] none - \retval none -*/ -void pmu_backup_write_disable(void) -{ - PMU_CTL &= ~PMU_CTL_BKPWEN; -} - -/*! - \brief enable wakeup pin - \param[in] none - \param[out] none - \retval none -*/ -void pmu_wakeup_pin_enable(void) -{ - PMU_CS |= PMU_CS_WUPEN; -} - -/*! - \brief disable wakeup pin - \param[in] none - \param[out] none - \retval none -*/ -void pmu_wakeup_pin_disable(void) -{ - PMU_CS &= ~PMU_CS_WUPEN; -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_rcu.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_rcu.c deleted file mode 100644 index 883f067969..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_rcu.c +++ /dev/null @@ -1,1329 +0,0 @@ -/*! - \file gd32f4xx_rcu.c - \brief RCU driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_rcu.h" - -/* define clock source */ -#define SEL_IRC16M ((uint16_t)0U) /* IRC16M is selected as CK_SYS */ -#define SEL_HXTAL ((uint16_t)1U) /* HXTAL is selected as CK_SYS */ -#define SEL_PLLP ((uint16_t)2U) /* PLLP is selected as CK_SYS */ -/* define startup timeout count */ -#define OSC_STARTUP_TIMEOUT ((uint32_t)0x000fffffU) -#define LXTAL_STARTUP_TIMEOUT ((uint32_t)0x0fffffffU) - -/* RCU IRC16M adjust value mask and offset*/ -#define RCU_IRC16M_ADJUST_MASK ((uint8_t)0x1FU) -#define RCU_IRC16M_ADJUST_OFFSET ((uint32_t)3U) - -/*! - \brief deinitialize the RCU - \param[in] none - \param[out] none - \retval none -*/ -void rcu_deinit(void) -{ - /* enable IRC16M */ - RCU_CTL |= RCU_CTL_IRC16MEN; - rcu_osci_stab_wait(RCU_IRC16M); - /* reset CFG0 register */ - RCU_CFG0 &= ~(RCU_CFG0_SCS | RCU_CFG0_AHBPSC | RCU_CFG0_APB1PSC | RCU_CFG0_APB2PSC | - RCU_CFG0_RTCDIV | RCU_CFG0_CKOUT0SEL | RCU_CFG0_I2SSEL | RCU_CFG0_CKOUT0DIV | - RCU_CFG0_CKOUT1DIV | RCU_CFG0_CKOUT1SEL); - /* reset CTL register */ - RCU_CTL &= ~(RCU_CTL_HXTALEN | RCU_CTL_CKMEN | RCU_CTL_PLLEN | RCU_CTL_PLLI2SEN - | RCU_CTL_PLLSAIEN); - RCU_CTL &= ~(RCU_CTL_HXTALBPS); - /* reset PLL register */ - RCU_PLL = 0x24003010U; - /* reset PLLI2S register */ - RCU_PLLI2S = 0x24003000U; - /* reset PLLSAI register */ - RCU_PLLSAI = 0x24003010U; - /* reset INT register */ - RCU_INT = 0x00000000U; - /* reset CFG1 register */ - RCU_CFG1 &= ~(RCU_CFG1_PLLSAIRDIV | RCU_CFG1_TIMERSEL); -} - -/*! - \brief enable the peripherals clock - \param[in] periph: RCU peripherals, refer to rcu_periph_enum - only one parameter can be selected which is shown as below: - \arg RCU_GPIOx (x=A,B,C,D,E,F,G,H,I): GPIO ports clock - \arg RCU_CRC: CRC clock - \arg RCU_BKPSRAM: BKPSRAM clock - \arg RCU_TCMSRAM: TCMSRAM clock - \arg RCU_DMAx (x=0,1): DMA clock - \arg RCU_IPA: IPA clock - \arg RCU_ENET: ENET clock - \arg RCU_ENETTX: ENETTX clock - \arg RCU_ENETRX: ENETRX clock - \arg RCU_ENETPTP: ENETPTP clock - \arg RCU_USBHS: USBHS clock - \arg RCU_USBHSULPI: USBHSULPI clock - \arg RCU_DCI: DCI clock - \arg RCU_TRNG: TRNG clock - \arg RCU_USBFS: USBFS clock - \arg RCU_EXMC: EXMC clock - \arg RCU_TIMERx (x=0,1,2,3,4,5,6,7,8,9,10,11,12,13): TIMER clock - \arg RCU_WWDGT: WWDGT clock - \arg RCU_SPIx (x=0,1,2,3,4,5): SPI clock - \arg RCU_USARTx (x=0,1,2,5): USART clock - \arg RCU_UARTx (x=3,4,6,7): UART clock - \arg RCU_I2Cx (x=0,1,2): I2C clock - \arg RCU_CANx (x=0,1): CAN clock - \arg RCU_PMU: PMU clock - \arg RCU_DAC: DAC clock - \arg RCU_RTC: RTC clock - \arg RCU_ADCx (x=0,1,2): ADC clock - \arg RCU_SDIO: SDIO clock - \arg RCU_SYSCFG: SYSCFG clock - \arg RCU_TLI: TLI clock - \arg RCU_CTC: CTC clock - \arg RCU_IREF: IREF clock - \param[out] none - \retval none -*/ -void rcu_periph_clock_enable(rcu_periph_enum periph) -{ - RCU_REG_VAL(periph) |= BIT(RCU_BIT_POS(periph)); -} - -/*! - \brief disable the peripherals clock - \param[in] periph: RCU peripherals, refer to rcu_periph_enum - only one parameter can be selected which is shown as below: - \arg RCU_GPIOx (x=A,B,C,D,E,F,G,H,I): GPIO ports clock - \arg RCU_CRC: CRC clock - \arg RCU_BKPSRAM: BKPSRAM clock - \arg RCU_TCMSRAM: TCMSRAM clock - \arg RCU_DMAx (x=0,1): DMA clock - \arg RCU_IPA: IPA clock - \arg RCU_ENET: ENET clock - \arg RCU_ENETTX: ENETTX clock - \arg RCU_ENETRX: ENETRX clock - \arg RCU_ENETPTP: ENETPTP clock - \arg RCU_USBHS: USBHS clock - \arg RCU_USBHSULPI: USBHSULPI clock - \arg RCU_DCI: DCI clock - \arg RCU_TRNG: TRNG clock - \arg RCU_USBFS: USBFS clock - \arg RCU_EXMC: EXMC clock - \arg RCU_TIMERx (x=0,1,2,3,4,5,6,7,8,9,10,11,12,13): TIMER clock - \arg RCU_WWDGT: WWDGT clock - \arg RCU_SPIx (x=0,1,2,3,4,5): SPI clock - \arg RCU_USARTx (x=0,1,2,5): USART clock - \arg RCU_UARTx (x=3,4,6,7): UART clock - \arg RCU_I2Cx (x=0,1,2): I2C clock - \arg RCU_CANx (x=0,1): CAN clock - \arg RCU_PMU: PMU clock - \arg RCU_DAC: DAC clock - \arg RCU_RTC: RTC clock - \arg RCU_ADCx (x=0,1,2): ADC clock - \arg RCU_SDIO: SDIO clock - \arg RCU_SYSCFG: SYSCFG clock - \arg RCU_TLI: TLI clock - \arg RCU_CTC: CTC clock - \arg RCU_IREF: IREF clock - \param[out] none - \retval none -*/ -void rcu_periph_clock_disable(rcu_periph_enum periph) -{ - RCU_REG_VAL(periph) &= ~BIT(RCU_BIT_POS(periph)); -} - -/*! - \brief enable the peripherals clock when sleep mode - \param[in] periph: RCU peripherals, refer to rcu_periph_sleep_enum - only one parameter can be selected which is shown as below: - \arg RCU_GPIOx_SLP (x=A,B,C,D,E,F,G,H,I): GPIO ports clock - \arg RCU_CRC_SLP: CRC clock - \arg RCU_FMC_SLP: FMC clock - \arg RCU_SRAM0_SLP: SRAM0 clock - \arg RCU_SRAM1_SLP: SRAM1 clock - \arg RCU_BKPSRAM: BKPSRAM clock - \arg RCU_SRAM2_SLP: SRAM2 clock - \arg RCU_DMAx_SLP (x=0,1): DMA clock - \arg RCU_IPA_SLP: IPA clock - \arg RCU_ENET_SLP: ENET clock - \arg RCU_ENETTX_SLP: ENETTX clock - \arg RCU_ENETRX_SLP: ENETRX clock - \arg RCU_ENETPTP_SLP: ENETPTP clock - \arg RCU_USBHS_SLP: USBHS clock - \arg RCU_USBHSULPI_SLP: USBHSULPI clock - \arg RCU_DCI_SLP: DCI clock - \arg RCU_TRNG_SLP: TRNG clock - \arg RCU_USBFS_SLP: USBFS clock - \arg RCU_EXMC_SLP: EXMC clock - \arg RCU_TIMERx_SLP (x=0,1,2,3,4,5,6,7,8,9,10,11,12,13): TIMER clock - \arg RCU_WWDGT_SLP: WWDGT clock - \arg RCU_SPIx_SLP (x=0,1,2,3,4,5): SPI clock - \arg RCU_USARTx_SLP (x=0,1,2,5): USART clock - \arg RCU_UARTx_SLP (x=3,4,6,7): UART clock - \arg RCU_I2Cx_SLP (x=0,1,2): I2C clock - \arg RCU_CANx_SLP (x=0,1): CAN clock - \arg RCU_PMU_SLP: PMU clock - \arg RCU_DAC_SLP: DAC clock - \arg RCU_RTC_SLP: RTC clock - \arg RCU_ADCx_SLP (x=0,1,2): ADC clock - \arg RCU_SDIO_SLP: SDIO clock - \arg RCU_SYSCFG_SLP: SYSCFG clock - \arg RCU_TLI_SLP: TLI clock - \arg RCU_CTC_SLP: CTC clock - \arg RCU_IREF_SLP: IREF clock - \param[out] none - \retval none -*/ -void rcu_periph_clock_sleep_enable(rcu_periph_sleep_enum periph) -{ - RCU_REG_VAL(periph) |= BIT(RCU_BIT_POS(periph)); -} - -/*! - \brief disable the peripherals clock when sleep mode - \param[in] periph: RCU peripherals, refer to rcu_periph_sleep_enum - only one parameter can be selected which is shown as below: - \arg RCU_GPIOx_SLP (x=A,B,C,D,E,F,G,H,I): GPIO ports clock - \arg RCU_CRC_SLP: CRC clock - \arg RCU_FMC_SLP: FMC clock - \arg RCU_SRAM0_SLP: SRAM0 clock - \arg RCU_SRAM1_SLP: SRAM1 clock - \arg RCU_BKPSRAM: BKPSRAM clock - \arg RCU_SRAM2_SLP: SRAM2 clock - \arg RCU_DMAx_SLP (x=0,1): DMA clock - \arg RCU_IPA_SLP: IPA clock - \arg RCU_ENET_SLP: ENET clock - \arg RCU_ENETTX_SLP: ENETTX clock - \arg RCU_ENETRX_SLP: ENETRX clock - \arg RCU_ENETPTP_SLP: ENETPTP clock - \arg RCU_USBHS_SLP: USBHS clock - \arg RCU_USBHSULPI_SLP: USBHSULPI clock - \arg RCU_DCI_SLP: DCI clock - \arg RCU_TRNG_SLP: TRNG clock - \arg RCU_USBFS_SLP: USBFS clock - \arg RCU_EXMC_SLP: EXMC clock - \arg RCU_TIMERx_SLP (x=0,1,2,3,4,5,6,7,8,9,10,11,12,13): TIMER clock - \arg RCU_WWDGT_SLP: WWDGT clock - \arg RCU_SPIx_SLP (x=0,1,2,3,4,5): SPI clock - \arg RCU_USARTx_SLP (x=0,1,2,5): USART clock - \arg RCU_UARTx_SLP (x=3,4,6,7): UART clock - \arg RCU_I2Cx_SLP (x=0,1,2): I2C clock - \arg RCU_CANx_SLP (x=0,1): CAN clock - \arg RCU_PMU_SLP: PMU clock - \arg RCU_DAC_SLP: DAC clock - \arg RCU_RTC_SLP: RTC clock - \arg RCU_ADCx_SLP (x=0,1,2): ADC clock - \arg RCU_SDIO_SLP: SDIO clock - \arg RCU_SYSCFG_SLP: SYSCFG clock - \arg RCU_TLI_SLP: TLI clock - \arg RCU_CTC_SLP: CTC clock - \arg RCU_IREF_SLP: IREF clock - \param[out] none - \retval none -*/ -void rcu_periph_clock_sleep_disable(rcu_periph_sleep_enum periph) -{ - RCU_REG_VAL(periph) &= ~BIT(RCU_BIT_POS(periph)); -} - -/*! - \brief reset the peripherals - \param[in] periph_reset: RCU peripherals reset, refer to rcu_periph_reset_enum - only one parameter can be selected which is shown as below: - \arg RCU_GPIOxRST (x=A,B,C,D,E,F,G,H,I): reset GPIO ports - \arg RCU_CRCRST: reset CRC - \arg RCU_DMAxRST (x=0,1): reset DMA - \arg RCU_IPARST: reset IPA - \arg RCU_ENETRST: reset ENET - \arg RCU_USBHSRST: reset USBHS - \arg RCU_DCIRST: reset DCI - \arg RCU_TRNGRST: reset TRNG - \arg RCU_USBFSRST: reset USBFS - \arg RCU_EXMCRST: reset EXMC - \arg RCU_TIMERxRST (x=0,1,2,3,4,5,6,7,8,9,10,11,12,13): reset TIMER - \arg RCU_WWDGTRST: reset WWDGT - \arg RCU_SPIxRST (x=0,1,2,3,4,5): reset SPI - \arg RCU_USARTxRST (x=0,1,2,5): reset USART - \arg RCU_UARTxRST (x=3,4,6,7): reset UART - \arg RCU_I2CxRST (x=0,1,2): reset I2C - \arg RCU_CANxRST (x=0,1): reset CAN - \arg RCU_PMURST: reset PMU - \arg RCU_DACRST: reset DAC - \arg RCU_ADCRST (x=0,1,2): reset ADC - \arg RCU_SDIORST: reset SDIO - \arg RCU_SYSCFGRST: reset SYSCFG - \arg RCU_TLIRST: reset TLI - \arg RCU_CTCRST: reset CTC - \arg RCU_IREFRST: reset IREF - \param[out] none - \retval none -*/ -void rcu_periph_reset_enable(rcu_periph_reset_enum periph_reset) -{ - RCU_REG_VAL(periph_reset) |= BIT(RCU_BIT_POS(periph_reset)); -} - -/*! - \brief disable reset the peripheral - \param[in] periph_reset: RCU peripherals reset, refer to rcu_periph_reset_enum - only one parameter can be selected which is shown as below: - \arg RCU_GPIOxRST (x=A,B,C,D,E,F,G,H,I): reset GPIO ports - \arg RCU_CRCRST: reset CRC - \arg RCU_DMAxRST (x=0,1): reset DMA - \arg RCU_IPARST: reset IPA - \arg RCU_ENETRST: reset ENET - \arg RCU_USBHSRST: reset USBHS - \arg RCU_DCIRST: reset DCI - \arg RCU_TRNGRST: reset TRNG - \arg RCU_USBFSRST: reset USBFS - \arg RCU_EXMCRST: reset EXMC - \arg RCU_TIMERxRST (x=0,1,2,3,4,5,6,7,8,9,10,11,12,13): reset TIMER - \arg RCU_WWDGTRST: reset WWDGT - \arg RCU_SPIxRST (x=0,1,2,3,4,5): reset SPI - \arg RCU_USARTxRST (x=0,1,2,5): reset USART - \arg RCU_UARTxRST (x=3,4,6,7): reset UART - \arg RCU_I2CxRST (x=0,1,2): reset I2C - \arg RCU_CANxRST (x=0,1): reset CAN - \arg RCU_PMURST: reset PMU - \arg RCU_DACRST: reset DAC - \arg RCU_ADCRST (x=0,1,2): reset ADC - \arg RCU_SDIORST: reset SDIO - \arg RCU_SYSCFGRST: reset SYSCFG - \arg RCU_TLIRST: reset TLI - \arg RCU_CTCRST: reset CTC - \arg RCU_IREFRST: reset IREF - \param[out] none - \retval none -*/ -void rcu_periph_reset_disable(rcu_periph_reset_enum periph_reset) -{ - RCU_REG_VAL(periph_reset) &= ~BIT(RCU_BIT_POS(periph_reset)); -} - -/*! - \brief reset the BKP - \param[in] none - \param[out] none - \retval none -*/ -void rcu_bkp_reset_enable(void) -{ - RCU_BDCTL |= RCU_BDCTL_BKPRST; -} - -/*! - \brief disable the BKP reset - \param[in] none - \param[out] none - \retval none -*/ -void rcu_bkp_reset_disable(void) -{ - RCU_BDCTL &= ~RCU_BDCTL_BKPRST; -} - -/*! - \brief configure the system clock source - \param[in] ck_sys: system clock source select - only one parameter can be selected which is shown as below: - \arg RCU_CKSYSSRC_IRC16M: select CK_IRC16M as the CK_SYS source - \arg RCU_CKSYSSRC_HXTAL: select CK_HXTAL as the CK_SYS source - \arg RCU_CKSYSSRC_PLLP: select CK_PLLP as the CK_SYS source - \param[out] none - \retval none -*/ -void rcu_system_clock_source_config(uint32_t ck_sys) -{ - uint32_t reg; - - reg = RCU_CFG0; - /* reset the SCS bits and set according to ck_sys */ - reg &= ~RCU_CFG0_SCS; - RCU_CFG0 = (reg | ck_sys); -} - -/*! - \brief get the system clock source - \param[in] none - \param[out] none - \retval which clock is selected as CK_SYS source - \arg RCU_SCSS_IRC16M: CK_IRC16M is selected as the CK_SYS source - \arg RCU_SCSS_HXTAL: CK_HXTAL is selected as the CK_SYS source - \arg RCU_SCSS_PLLP: CK_PLLP is selected as the CK_SYS source -*/ -uint32_t rcu_system_clock_source_get(void) -{ - return (RCU_CFG0 & RCU_CFG0_SCSS); -} - -/*! - \brief configure the AHB clock prescaler selection - \param[in] ck_ahb: AHB clock prescaler selection - only one parameter can be selected which is shown as below: - \arg RCU_AHB_CKSYS_DIVx, x=1, 2, 4, 8, 16, 64, 128, 256, 512 - \param[out] none - \retval none -*/ -void rcu_ahb_clock_config(uint32_t ck_ahb) -{ - uint32_t reg; - - reg = RCU_CFG0; - /* reset the AHBPSC bits and set according to ck_ahb */ - reg &= ~RCU_CFG0_AHBPSC; - RCU_CFG0 = (reg | ck_ahb); -} - -/*! - \brief configure the APB1 clock prescaler selection - \param[in] ck_apb1: APB1 clock prescaler selection - only one parameter can be selected which is shown as below: - \arg RCU_APB1_CKAHB_DIV1: select CK_AHB as CK_APB1 - \arg RCU_APB1_CKAHB_DIV2: select CK_AHB/2 as CK_APB1 - \arg RCU_APB1_CKAHB_DIV4: select CK_AHB/4 as CK_APB1 - \arg RCU_APB1_CKAHB_DIV8: select CK_AHB/8 as CK_APB1 - \arg RCU_APB1_CKAHB_DIV16: select CK_AHB/16 as CK_APB1 - \param[out] none - \retval none -*/ -void rcu_apb1_clock_config(uint32_t ck_apb1) -{ - uint32_t reg; - - reg = RCU_CFG0; - /* reset the APB1PSC and set according to ck_apb1 */ - reg &= ~RCU_CFG0_APB1PSC; - RCU_CFG0 = (reg | ck_apb1); -} - -/*! - \brief configure the APB2 clock prescaler selection - \param[in] ck_apb2: APB2 clock prescaler selection - only one parameter can be selected which is shown as below: - \arg RCU_APB2_CKAHB_DIV1: select CK_AHB as CK_APB2 - \arg RCU_APB2_CKAHB_DIV2: select CK_AHB/2 as CK_APB2 - \arg RCU_APB2_CKAHB_DIV4: select CK_AHB/4 as CK_APB2 - \arg RCU_APB2_CKAHB_DIV8: select CK_AHB/8 as CK_APB2 - \arg RCU_APB2_CKAHB_DIV16: select CK_AHB/16 as CK_APB2 - \param[out] none - \retval none -*/ -void rcu_apb2_clock_config(uint32_t ck_apb2) -{ - uint32_t reg; - - reg = RCU_CFG0; - /* reset the APB2PSC and set according to ck_apb2 */ - reg &= ~RCU_CFG0_APB2PSC; - RCU_CFG0 = (reg | ck_apb2); -} - -/*! - \brief configure the CK_OUT0 clock source and divider - \param[in] ckout0_src: CK_OUT0 clock source selection - only one parameter can be selected which is shown as below: - \arg RCU_CKOUT0SRC_IRC16M: IRC16M selected - \arg RCU_CKOUT0SRC_LXTAL: LXTAL selected - \arg RCU_CKOUT0SRC_HXTAL: HXTAL selected - \arg RCU_CKOUT0SRC_PLLP: PLLP selected - \param[in] ckout0_div: CK_OUT0 divider - \arg RCU_CKOUT0_DIVx(x=1,2,3,4,5): CK_OUT0 is divided by x - \param[out] none - \retval none -*/ -void rcu_ckout0_config(uint32_t ckout0_src, uint32_t ckout0_div) -{ - uint32_t reg; - - reg = RCU_CFG0; - /* reset the CKOUT0SRC, CKOUT0DIV and set according to ckout0_src and ckout0_div */ - reg &= ~(RCU_CFG0_CKOUT0SEL | RCU_CFG0_CKOUT0DIV ); - RCU_CFG0 = (reg | ckout0_src | ckout0_div); -} - -/*! - \brief configure the CK_OUT1 clock source and divider - \param[in] ckout1_src: CK_OUT1 clock source selection - only one parameter can be selected which is shown as below: - \arg RCU_CKOUT1SRC_SYSTEMCLOCK: system clock selected - \arg RCU_CKOUT1SRC_PLLI2SR: PLLI2SR selected - \arg RCU_CKOUT1SRC_HXTAL: HXTAL selected - \arg RCU_CKOUT1SRC_PLLP: PLLP selected - \param[in] ckout1_div: CK_OUT1 divider - \arg RCU_CKOUT1_DIVx(x=1,2,3,4,5): CK_OUT1 is divided by x - \param[out] none - \retval none -*/ -void rcu_ckout1_config(uint32_t ckout1_src, uint32_t ckout1_div) -{ - uint32_t reg; - - reg = RCU_CFG0; - /* reset the CKOUT1SRC, CKOUT1DIV and set according to ckout1_src and ckout1_div */ - reg &= ~(RCU_CFG0_CKOUT1SEL | RCU_CFG0_CKOUT1DIV); - RCU_CFG0 = (reg | ckout1_src | ckout1_div); -} - -/*! - \brief configure the main PLL clock - \param[in] pll_src: PLL clock source selection - \arg RCU_PLLSRC_IRC16M: select IRC16M as PLL source clock - \arg RCU_PLLSRC_HXTAL: select HXTAL as PLL source clock - \param[in] pll_psc: the PLL VCO source clock prescaler - \arg this parameter should be selected between 2 and 63 - \param[in] pll_n: the PLL VCO clock multi factor - \arg this parameter should be selected between 64 and 500 - \param[in] pll_p: the PLLP output frequency division factor from PLL VCO clock - \arg this parameter should be selected 2,4,6,8 - \param[in] pll_q: the PLL Q output frequency division factor from PLL VCO clock - \arg this parameter should be selected between 2 and 15 - \param[out] none - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus rcu_pll_config(uint32_t pll_src, uint32_t pll_psc, uint32_t pll_n, uint32_t pll_p, uint32_t pll_q) -{ - uint32_t ss_modulation_inc; - uint32_t ss_modulation_reg; - - ss_modulation_inc = 0U; - ss_modulation_reg = RCU_PLLSSCTL; - - /* calculate the minimum factor of PLLN */ - if((ss_modulation_reg & RCU_PLLSSCTL_SSCGON) == RCU_PLLSSCTL_SSCGON){ - if((ss_modulation_reg & RCU_SS_TYPE_DOWN) == RCU_SS_TYPE_DOWN){ - ss_modulation_inc += RCU_SS_MODULATION_DOWN_INC; - }else{ - ss_modulation_inc += RCU_SS_MODULATION_CENTER_INC; - } - } - - /* check the function parameter */ - if(CHECK_PLL_PSC_VALID(pll_psc) && CHECK_PLL_N_VALID(pll_n,ss_modulation_inc) && - CHECK_PLL_P_VALID(pll_p) && CHECK_PLL_Q_VALID(pll_q)){ - RCU_PLL = pll_psc | (pll_n << 6) | (((pll_p >> 1) - 1U) << 16) | - (pll_src) | (pll_q << 24); - }else{ - /* return status */ - return ERROR; - } - - /* return status */ - return SUCCESS; -} - -/*! - \brief configure the PLLI2S clock - \param[in] plli2s_n: the PLLI2S VCO clock multi factor - \arg this parameter should be selected between 50 and 500 - \param[in] plli2s_r: the PLLI2S R output frequency division factor from PLLI2S VCO clock - \arg this parameter should be selected between 2 and 7 - \param[out] none - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus rcu_plli2s_config(uint32_t plli2s_n, uint32_t plli2s_r) -{ - /* check the function parameter */ - if(CHECK_PLLI2S_N_VALID(plli2s_n) && CHECK_PLLI2S_R_VALID(plli2s_r)){ - RCU_PLLI2S = (plli2s_n << 6) | (plli2s_r << 28); - }else{ - /* return status */ - return ERROR; - } - - /* return status */ - return SUCCESS; -} - -/*! - \brief configure the PLLSAI clock - \param[in] pllsai_n: the PLLSAI VCO clock multi factor - \arg this parameter should be selected between 50 and 500 - \param[in] pllsai_p: the PLLSAI P output frequency division factor from PLL VCO clock - \arg this parameter should be selected 2,4,6,8 - \param[in] pllsai_r: the PLLSAI R output frequency division factor from PLL VCO clock - \arg this parameter should be selected between 2 and 7 - \param[out] none - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus rcu_pllsai_config(uint32_t pllsai_n, uint32_t pllsai_p, uint32_t pllsai_r) -{ - /* check the function parameter */ - if(CHECK_PLLSAI_N_VALID(pllsai_n) && CHECK_PLLSAI_P_VALID(pllsai_p) && CHECK_PLLSAI_R_VALID(pllsai_r)){ - RCU_PLLSAI = (pllsai_n << 6U) | (((pllsai_p >> 1U) - 1U) << 16U) | (pllsai_r << 28U); - }else{ - /* return status */ - return ERROR; - } - - /* return status */ - return SUCCESS; -} - -/*! - \brief configure the RTC clock source selection - \param[in] rtc_clock_source: RTC clock source selection - only one parameter can be selected which is shown as below: - \arg RCU_RTCSRC_NONE: no clock selected - \arg RCU_RTCSRC_LXTAL: CK_LXTAL selected as RTC source clock - \arg RCU_RTCSRC_IRC32K: CK_IRC32K selected as RTC source clock - \arg RCU_RTCSRC_HXTAL_DIV_RTCDIV: CK_HXTAL/RTCDIV selected as RTC source clock - \param[out] none - \retval none -*/ -void rcu_rtc_clock_config(uint32_t rtc_clock_source) -{ - uint32_t reg; - - reg = RCU_BDCTL; - /* reset the RTCSRC bits and set according to rtc_clock_source */ - reg &= ~RCU_BDCTL_RTCSRC; - RCU_BDCTL = (reg | rtc_clock_source); -} - -/*! - \brief configure the frequency division of RTC clock when HXTAL was selected as its clock source - \param[in] rtc_div: RTC clock frequency division - only one parameter can be selected which is shown as below: - \arg RCU_RTC_HXTAL_NONE: no clock for RTC - \arg RCU_RTC_HXTAL_DIVx: RTCDIV clock select CK_HXTAL/x, x = 2....31 - \param[out] none - \retval none -*/ -void rcu_rtc_div_config(uint32_t rtc_div) -{ - uint32_t reg; - - reg = RCU_CFG0; - /* reset the RTCDIV bits and set according to rtc_div value */ - reg &= ~RCU_CFG0_RTCDIV; - RCU_CFG0 = (reg | rtc_div); -} - - -/*! - \brief configure the I2S clock source selection - \param[in] i2s_clock_source: I2S clock source selection - only one parameter can be selected which is shown as below: - \arg RCU_I2SSRC_PLLI2S: CK_PLLI2S selected as I2S source clock - \arg RCU_I2SSRC_I2S_CKIN: external i2s_ckin pin selected as I2S source clock - \param[out] none - \retval none -*/ -void rcu_i2s_clock_config(uint32_t i2s_clock_source) -{ - uint32_t reg; - - reg = RCU_CFG0; - /* reset the I2SSEL bit and set according to i2s_clock_source */ - reg &= ~RCU_CFG0_I2SSEL; - RCU_CFG0 = (reg | i2s_clock_source); -} - -/*! - \brief configure the CK48M clock source selection - \param[in] ck48m_clock_source: CK48M clock source selection - only one parameter can be selected which is shown as below: - \arg RCU_CK48MSRC_PLL48M: CK_PLL48M selected as CK48M source clock - \arg RCU_CK48MSRC_IRC48M: CK_IRC48M selected as CK48M source clock - \param[out] none - \retval none -*/ -void rcu_ck48m_clock_config(uint32_t ck48m_clock_source) -{ - uint32_t reg; - - reg = RCU_ADDCTL; - /* reset the CK48MSEL bit and set according to i2s_clock_source */ - reg &= ~RCU_ADDCTL_CK48MSEL; - RCU_ADDCTL = (reg | ck48m_clock_source); -} - -/*! - \brief configure the PLL48M clock source selection - \param[in] pll48m_clock_source: PLL48M clock source selection - only one parameter can be selected which is shown as below: - \arg RCU_PLL48MSRC_PLLQ: CK_PLLQ selected as PLL48M source clock - \arg RCU_PLL48MSRC_PLLSAIP: CK_PLLSAIP selected as PLL48M source clock - \param[out] none - \retval none -*/ -void rcu_pll48m_clock_config(uint32_t pll48m_clock_source) -{ - uint32_t reg; - - reg = RCU_ADDCTL; - /* reset the PLL48MSEL bit and set according to pll48m_clock_source */ - reg &= ~RCU_ADDCTL_PLL48MSEL; - RCU_ADDCTL = (reg | pll48m_clock_source); -} - -/*! - \brief configure the TIMER clock prescaler selection - \param[in] timer_clock_prescaler: TIMER clock selection - only one parameter can be selected which is shown as below: - \arg RCU_TIMER_PSC_MUL2: if APB1PSC/APB2PSC in RCU_CFG0 register is 0b0xx(CK_APBx = CK_AHB) - or 0b100(CK_APBx = CK_AHB/2), the TIMER clock is equal to CK_AHB(CK_TIMERx = CK_AHB). - or else, the TIMER clock is twice the corresponding APB clock (TIMER in APB1 domain: CK_TIMERx = 2 x CK_APB1; - TIMER in APB2 domain: CK_TIMERx = 2 x CK_APB2) - \arg RCU_TIMER_PSC_MUL4: if APB1PSC/APB2PSC in RCU_CFG0 register is 0b0xx(CK_APBx = CK_AHB), - 0b100(CK_APBx = CK_AHB/2), or 0b101(CK_APBx = CK_AHB/4), the TIMER clock is equal to CK_AHB(CK_TIMERx = CK_AHB). - or else, the TIMER clock is four timers the corresponding APB clock (TIMER in APB1 domain: CK_TIMERx = 4 x CK_APB1; - TIMER in APB2 domain: CK_TIMERx = 4 x CK_APB2) - \param[out] none - \retval none -*/ -void rcu_timer_clock_prescaler_config(uint32_t timer_clock_prescaler) -{ - /* configure the TIMERSEL bit and select the TIMER clock prescaler */ - if(timer_clock_prescaler == RCU_TIMER_PSC_MUL2){ - RCU_CFG1 &= timer_clock_prescaler; - }else{ - RCU_CFG1 |= timer_clock_prescaler; - } -} - -/*! - \brief configure the PLLSAIR divider used as input of TLI - \param[in] pllsai_r_div: PLLSAIR divider used as input of TLI - only one parameter can be selected which is shown as below: - \arg RCU_PLLSAIR_DIVx(x=2,4,8,16): PLLSAIR divided x used as input of TLI - \param[out] none - \retval none -*/ -void rcu_tli_clock_div_config(uint32_t pllsai_r_div) -{ - uint32_t reg; - - reg = RCU_CFG1; - /* reset the PLLSAIRDIV bit and set according to pllsai_r_div */ - reg &= ~RCU_CFG1_PLLSAIRDIV; - RCU_CFG1 = (reg | pllsai_r_div); -} - -/*! - \brief get the clock stabilization and periphral reset flags - \param[in] flag: the clock stabilization and periphral reset flags, refer to rcu_flag_enum - only one parameter can be selected which is shown as below: - \arg RCU_FLAG_IRC16MSTB: IRC16M stabilization flag - \arg RCU_FLAG_HXTALSTB: HXTAL stabilization flag - \arg RCU_FLAG_PLLSTB: PLL stabilization flag - \arg RCU_FLAG_PLLI2SSTB: PLLI2S stabilization flag - \arg RCU_FLAG_PLLSAISTB: PLLSAI stabilization flag - \arg RCU_FLAG_LXTALSTB: LXTAL stabilization flag - \arg RCU_FLAG_IRC32KSTB: IRC32K stabilization flag - \arg RCU_FLAG_IRC48MSTB: IRC48M stabilization flag - \arg RCU_FLAG_BORRST: BOR reset flags - \arg RCU_FLAG_EPRST: external PIN reset flag - \arg RCU_FLAG_PORRST: Power reset flag - \arg RCU_FLAG_SWRST: software reset flag - \arg RCU_FLAG_FWDGTRST: free watchdog timer reset flag - \arg RCU_FLAG_WWDGTRST: window watchdog timer reset flag - \arg RCU_FLAG_LPRST: low-power reset flag - \param[out] none - \retval none -*/ -FlagStatus rcu_flag_get(rcu_flag_enum flag) -{ - /* get the rcu flag */ - if(RESET != (RCU_REG_VAL(flag) & BIT(RCU_BIT_POS(flag)))){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear all the reset flag - \param[in] none - \param[out] none - \retval none -*/ -void rcu_all_reset_flag_clear(void) -{ - RCU_RSTSCK |= RCU_RSTSCK_RSTFC; -} - -/*! - \brief get the clock stabilization interrupt and ckm flags - \param[in] int_flag: interrupt and ckm flags, refer to rcu_int_flag_enum - only one parameter can be selected which is shown as below: - \arg RCU_INT_FLAG_IRC32KSTB: IRC32K stabilization interrupt flag - \arg RCU_INT_FLAG_LXTALSTB: LXTAL stabilization interrupt flag - \arg RCU_INT_FLAG_IRC16MSTB: IRC16M stabilization interrupt flag - \arg RCU_INT_FLAG_HXTALSTB: HXTAL stabilization interrupt flag - \arg RCU_INT_FLAG_PLLSTB: PLL stabilization interrupt flag - \arg RCU_INT_FLAG_PLLI2SSTB: PLLI2S stabilization interrupt flag - \arg RCU_INT_FLAG_PLLSAISTB: PLLSAI stabilization interrupt flag - \arg RCU_INT_FLAG_CKM: HXTAL clock stuck interrupt flag - \arg RCU_INT_FLAG_IRC48MSTB: IRC48M stabilization interrupt flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus rcu_interrupt_flag_get(rcu_int_flag_enum int_flag) -{ - /* get the rcu interrupt flag */ - if(RESET != (RCU_REG_VAL(int_flag) & BIT(RCU_BIT_POS(int_flag)))){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear the interrupt flags - \param[in] int_flag: clock stabilization and stuck interrupt flags clear, refer to rcu_int_flag_clear_enum - only one parameter can be selected which is shown as below: - \arg RCU_INT_FLAG_IRC32KSTB_CLR: IRC32K stabilization interrupt flag clear - \arg RCU_INT_FLAG_LXTALSTB_CLR: LXTAL stabilization interrupt flag clear - \arg RCU_INT_FLAG_IRC16MSTB_CLR: IRC16M stabilization interrupt flag clear - \arg RCU_INT_FLAG_HXTALSTB_CLR: HXTAL stabilization interrupt flag clear - \arg RCU_INT_FLAG_PLLSTB_CLR: PLL stabilization interrupt flag clear - \arg RCU_INT_FLAG_PLLI2SSTB_CLR: PLLI2S stabilization interrupt flag clear - \arg RCU_INT_FLAG_PLLSAISTB_CLR: PLLSAI stabilization interrupt flag clear - \arg RCU_INT_FLAG_CKM_CLR: clock stuck interrupt flag clear - \arg RCU_INT_FLAG_IRC48MSTB_CLR: IRC48M stabilization interrupt flag clear - \param[out] none - \retval none -*/ -void rcu_interrupt_flag_clear(rcu_int_flag_clear_enum int_flag) -{ - RCU_REG_VAL(int_flag) |= BIT(RCU_BIT_POS(int_flag)); -} - -/*! - \brief enable the stabilization interrupt - \param[in] interrupt: clock stabilization interrupt, refer to rcu_int_enum - Only one parameter can be selected which is shown as below: - \arg RCU_INT_IRC32KSTB: IRC32K stabilization interrupt enable - \arg RCU_INT_LXTALSTB: LXTAL stabilization interrupt enable - \arg RCU_INT_IRC16MSTB: IRC16M stabilization interrupt enable - \arg RCU_INT_HXTALSTB: HXTAL stabilization interrupt enable - \arg RCU_INT_PLLSTB: PLL stabilization interrupt enable - \arg RCU_INT_PLLI2SSTB: PLLI2S stabilization interrupt enable - \arg RCU_INT_PLLSAISTB: PLLSAI stabilization interrupt enable - \arg RCU_INT_IRC48MSTB: IRC48M stabilization interrupt enable - \param[out] none - \retval none -*/ -void rcu_interrupt_enable(rcu_int_enum interrupt) -{ - RCU_REG_VAL(interrupt) |= BIT(RCU_BIT_POS(interrupt)); -} - - -/*! - \brief disable the stabilization interrupt - \param[in] interrupt: clock stabilization interrupt, refer to rcu_int_enum - only one parameter can be selected which is shown as below: - \arg RCU_INT_IRC32KSTB: IRC32K stabilization interrupt disable - \arg RCU_INT_LXTALSTB: LXTAL stabilization interrupt disable - \arg RCU_INT_IRC16MSTB: IRC16M stabilization interrupt disable - \arg RCU_INT_HXTALSTB: HXTAL stabilization interrupt disable - \arg RCU_INT_PLLSTB: PLL stabilization interrupt disable - \arg RCU_INT_PLLI2SSTB: PLLI2S stabilization interrupt disable - \arg RCU_INT_PLLSAISTB: PLLSAI stabilization interrupt disable - \arg RCU_INT_IRC48MSTB: IRC48M stabilization interrupt disable - \param[out] none - \retval none -*/ -void rcu_interrupt_disable(rcu_int_enum interrupt) -{ - RCU_REG_VAL(interrupt) &= ~BIT(RCU_BIT_POS(interrupt)); -} - -/*! - \brief configure the LXTAL drive capability - \param[in] lxtal_dricap: drive capability of LXTAL - only one parameter can be selected which is shown as below: - \arg RCU_LXTALDRI_LOWER_DRIVE: lower driving capability - \arg RCU_LXTALDRI_HIGHER_DRIVE: higher driving capability - \param[out] none - \retval none -*/ -void rcu_lxtal_drive_capability_config(uint32_t lxtal_dricap) -{ - uint32_t reg; - - reg = RCU_BDCTL; - - /* reset the LXTALDRI bits and set according to lxtal_dricap */ - reg &= ~RCU_BDCTL_LXTALDRI; - RCU_BDCTL = (reg | lxtal_dricap); -} - -/*! - \brief wait for oscillator stabilization flags is SET or oscillator startup is timeout - \param[in] osci: oscillator types, refer to rcu_osci_type_enum - only one parameter can be selected which is shown as below: - \arg RCU_HXTAL: HXTAL - \arg RCU_LXTAL: LXTAL - \arg RCU_IRC16M: IRC16M - \arg RCU_IRC48M: IRC48M - \arg RCU_IRC32K: IRC32K - \arg RCU_PLL_CK: PLL - \arg RCU_PLLI2S_CK: PLLI2S - \arg RCU_PLLSAI_CK: PLLSAI - \param[out] none - \retval ErrStatus: SUCCESS or ERROR -*/ -ErrStatus rcu_osci_stab_wait(rcu_osci_type_enum osci) -{ - uint32_t stb_cnt = 0U; - ErrStatus reval = ERROR; - FlagStatus osci_stat = RESET; - - switch(osci){ - /* wait HXTAL stable */ - case RCU_HXTAL: - while((RESET == osci_stat) && (HXTAL_STARTUP_TIMEOUT != stb_cnt)){ - osci_stat = rcu_flag_get(RCU_FLAG_HXTALSTB); - stb_cnt++; - } - - /* check whether flag is set */ - if(RESET != rcu_flag_get(RCU_FLAG_HXTALSTB)){ - reval = SUCCESS; - } - break; - /* wait LXTAL stable */ - case RCU_LXTAL: - while((RESET == osci_stat) && (LXTAL_STARTUP_TIMEOUT != stb_cnt)){ - osci_stat = rcu_flag_get(RCU_FLAG_LXTALSTB); - stb_cnt++; - } - - /* check whether flag is set */ - if(RESET != rcu_flag_get(RCU_FLAG_LXTALSTB)){ - reval = SUCCESS; - } - break; - /* wait IRC16M stable */ - case RCU_IRC16M: - while((RESET == osci_stat) && (IRC16M_STARTUP_TIMEOUT != stb_cnt)){ - osci_stat = rcu_flag_get(RCU_FLAG_IRC16MSTB); - stb_cnt++; - } - - /* check whether flag is set */ - if(RESET != rcu_flag_get(RCU_FLAG_IRC16MSTB)){ - reval = SUCCESS; - } - break; - /* wait IRC48M stable */ - case RCU_IRC48M: - while((RESET == osci_stat) && (OSC_STARTUP_TIMEOUT != stb_cnt)){ - osci_stat = rcu_flag_get(RCU_FLAG_IRC48MSTB); - stb_cnt++; - } - - /* check whether flag is set */ - if (RESET != rcu_flag_get(RCU_FLAG_IRC48MSTB)){ - reval = SUCCESS; - } - break; - /* wait IRC32K stable */ - case RCU_IRC32K: - while((RESET == osci_stat) && (OSC_STARTUP_TIMEOUT != stb_cnt)){ - osci_stat = rcu_flag_get(RCU_FLAG_IRC32KSTB); - stb_cnt++; - } - - /* check whether flag is set */ - if(RESET != rcu_flag_get(RCU_FLAG_IRC32KSTB)){ - reval = SUCCESS; - } - break; - /* wait PLL stable */ - case RCU_PLL_CK: - while((RESET == osci_stat) && (OSC_STARTUP_TIMEOUT != stb_cnt)){ - osci_stat = rcu_flag_get(RCU_FLAG_PLLSTB); - stb_cnt++; - } - - /* check whether flag is set */ - if(RESET != rcu_flag_get(RCU_FLAG_PLLSTB)){ - reval = SUCCESS; - } - break; - /* wait PLLI2S stable */ - case RCU_PLLI2S_CK: - while((RESET == osci_stat) && (OSC_STARTUP_TIMEOUT != stb_cnt)){ - osci_stat = rcu_flag_get(RCU_FLAG_PLLI2SSTB); - stb_cnt++; - } - - /* check whether flag is set */ - if(RESET != rcu_flag_get(RCU_FLAG_PLLI2SSTB)){ - reval = SUCCESS; - } - break; - /* wait PLLSAI stable */ - case RCU_PLLSAI_CK: - while((RESET == osci_stat) && (OSC_STARTUP_TIMEOUT != stb_cnt)){ - osci_stat = rcu_flag_get(RCU_FLAG_PLLSAISTB); - stb_cnt++; - } - - /* check whether flag is set */ - if(RESET != rcu_flag_get(RCU_FLAG_PLLSAISTB)){ - reval = SUCCESS; - } - break; - - default: - break; - } - - /* return value */ - return reval; -} - -/*! - \brief turn on the oscillator - \param[in] osci: oscillator types, refer to rcu_osci_type_enum - only one parameter can be selected which is shown as below: - \arg RCU_HXTAL: HXTAL - \arg RCU_LXTAL: LXTAL - \arg RCU_IRC16M: IRC16M - \arg RCU_IRC48M: IRC48M - \arg RCU_IRC32K: IRC32K - \arg RCU_PLL_CK: PLL - \arg RCU_PLLI2S_CK: PLLI2S - \arg RCU_PLLSAI_CK: PLLSAI - \param[out] none - \retval none -*/ -void rcu_osci_on(rcu_osci_type_enum osci) -{ - RCU_REG_VAL(osci) |= BIT(RCU_BIT_POS(osci)); -} - -/*! - \brief turn off the oscillator - \param[in] osci: oscillator types, refer to rcu_osci_type_enum - only one parameter can be selected which is shown as below: - \arg RCU_HXTAL: HXTAL - \arg RCU_LXTAL: LXTAL - \arg RCU_IRC16M: IRC16M - \arg RCU_IRC48M: IRC48M - \arg RCU_IRC32K: IRC32K - \arg RCU_PLL_CK: PLL - \arg RCU_PLLI2S_CK: PLLI2S - \arg RCU_PLLSAI_CK: PLLSAI - \param[out] none - \retval none -*/ -void rcu_osci_off(rcu_osci_type_enum osci) -{ - RCU_REG_VAL(osci) &= ~BIT(RCU_BIT_POS(osci)); -} - -/*! - \brief enable the oscillator bypass mode, HXTALEN or LXTALEN must be reset before it - \param[in] osci: oscillator types, refer to rcu_osci_type_enum - only one parameter can be selected which is shown as below: - \arg RCU_HXTAL: high speed crystal oscillator(HXTAL) - \arg RCU_LXTAL: low speed crystal oscillator(LXTAL) - \param[out] none - \retval none -*/ -void rcu_osci_bypass_mode_enable(rcu_osci_type_enum osci) -{ - uint32_t reg; - - switch(osci){ - /* enable HXTAL to bypass mode */ - case RCU_HXTAL: - reg = RCU_CTL; - RCU_CTL &= ~RCU_CTL_HXTALEN; - RCU_CTL = (reg | RCU_CTL_HXTALBPS); - break; - /* enable LXTAL to bypass mode */ - case RCU_LXTAL: - reg = RCU_BDCTL; - RCU_BDCTL &= ~RCU_BDCTL_LXTALEN; - RCU_BDCTL = (reg | RCU_BDCTL_LXTALBPS); - break; - case RCU_IRC16M: - case RCU_IRC48M: - case RCU_IRC32K: - case RCU_PLL_CK: - case RCU_PLLI2S_CK: - case RCU_PLLSAI_CK: - break; - default: - break; - } -} - -/*! - \brief disable the oscillator bypass mode, HXTALEN or LXTALEN must be reset before it - \param[in] osci: oscillator types, refer to rcu_osci_type_enum - only one parameter can be selected which is shown as below: - \arg RCU_HXTAL: high speed crystal oscillator(HXTAL) - \arg RCU_LXTAL: low speed crystal oscillator(LXTAL) - \param[out] none - \retval none -*/ -void rcu_osci_bypass_mode_disable(rcu_osci_type_enum osci) -{ - uint32_t reg; - - switch(osci){ - /* disable HXTAL to bypass mode */ - case RCU_HXTAL: - reg = RCU_CTL; - RCU_CTL &= ~RCU_CTL_HXTALEN; - RCU_CTL = (reg & ~RCU_CTL_HXTALBPS); - break; - /* disable LXTAL to bypass mode */ - case RCU_LXTAL: - reg = RCU_BDCTL; - RCU_BDCTL &= ~RCU_BDCTL_LXTALEN; - RCU_BDCTL = (reg & ~RCU_BDCTL_LXTALBPS); - break; - case RCU_IRC16M: - case RCU_IRC48M: - case RCU_IRC32K: - case RCU_PLL_CK: - case RCU_PLLI2S_CK: - case RCU_PLLSAI_CK: - break; - default: - break; - } -} - -/*! - \brief enable the HXTAL clock monitor - \param[in] none - \param[out] none - \retval none -*/ - -void rcu_hxtal_clock_monitor_enable(void) -{ - RCU_CTL |= RCU_CTL_CKMEN; -} - -/*! - \brief disable the HXTAL clock monitor - \param[in] none - \param[out] none - \retval none -*/ -void rcu_hxtal_clock_monitor_disable(void) -{ - RCU_CTL &= ~RCU_CTL_CKMEN; -} - -/*! - \brief set the IRC16M adjust value - \param[in] irc16m_adjval: IRC16M adjust value, must be between 0 and 0x1F - \arg 0x00 - 0x1F - \param[out] none - \retval none -*/ -void rcu_irc16m_adjust_value_set(uint32_t irc16m_adjval) -{ - uint32_t reg; - - reg = RCU_CTL; - /* reset the IRC16MADJ bits and set according to irc16m_adjval */ - reg &= ~RCU_CTL_IRC16MADJ; - RCU_CTL = (reg | ((irc16m_adjval & RCU_IRC16M_ADJUST_MASK) << RCU_IRC16M_ADJUST_OFFSET)); -} - -/*! - \brief unlock the voltage key - \param[in] none - \param[out] none - \retval none -*/ -void rcu_voltage_key_unlock(void) -{ - RCU_VKEY = RCU_VKEY_UNLOCK; -} - -/*! - \brief deep-sleep mode voltage select - \param[in] dsvol: deep sleep mode voltage - only one parameter can be selected which is shown as below: - \arg RCU_DEEPSLEEP_V_1_2: the core voltage is 1.2V - \arg RCU_DEEPSLEEP_V_1_1: the core voltage is 1.1V - \arg RCU_DEEPSLEEP_V_1_0: the core voltage is 1.0V - \arg RCU_DEEPSLEEP_V_0_9: the core voltage is 0.9V - \param[out] none - \retval none -*/ -void rcu_deepsleep_voltage_set(uint32_t dsvol) -{ - dsvol &= RCU_DSV_DSLPVS; - RCU_DSV = dsvol; -} - -/*! - \brief configure the spread spectrum modulation for the main PLL clock - \param[in] spread_spectrum_type: PLL spread spectrum modulation type select - \arg RCU_SS_TYPE_CENTER: center spread type is selected - \arg RCU_SS_TYPE_DOWN: down spread type is selected - \param[in] modstep: configure PLL spread spectrum modulation profile amplitude and frequency - \arg This parameter should be selected between 0 and 7FFF.The following criteria must be met: MODSTEP*MODCNT <=2^15-1 - \param[in] modcnt: configure PLL spread spectrum modulation profile amplitude and frequency - \arg This parameter should be selected between 0 and 1FFF.The following criteria must be met: MODSTEP*MODCNT <=2^15-1 - \param[out] none - \retval none -*/ -void rcu_spread_spectrum_config(uint32_t spread_spectrum_type, uint32_t modstep, uint32_t modcnt) -{ - uint32_t reg; - - reg = RCU_PLLSSCTL; - /* reset the RCU_PLLSSCTL register bits */ - reg &= ~(RCU_PLLSSCTL_MODCNT | RCU_PLLSSCTL_MODSTEP | RCU_PLLSSCTL_SS_TYPE); - RCU_PLLSSCTL = (reg | spread_spectrum_type | modstep << 13 | modcnt); -} - -/*! - \brief enable the PLL spread spectrum modulation - \param[in] none - \param[out] none - \retval none -*/ -void rcu_spread_spectrum_enable(void) -{ - RCU_PLLSSCTL |= RCU_PLLSSCTL_SSCGON; -} - -/*! - \brief disable the PLL spread spectrum modulation - \param[in] none - \param[out] none - \retval none -*/ -void rcu_spread_spectrum_disable(void) -{ - RCU_PLLSSCTL &= ~RCU_PLLSSCTL_SSCGON; -} - -/*! - \brief get the system clock, bus and peripheral clock frequency - \param[in] clock: the clock frequency which to get - only one parameter can be selected which is shown as below: - \arg CK_SYS: system clock frequency - \arg CK_AHB: AHB clock frequency - \arg CK_APB1: APB1 clock frequency - \arg CK_APB2: APB2 clock frequency - \param[out] none - \retval clock frequency of system, AHB, APB1, APB2 -*/ -uint32_t rcu_clock_freq_get(rcu_clock_freq_enum clock) -{ - uint32_t sws, ck_freq = 0U; - uint32_t cksys_freq, ahb_freq, apb1_freq, apb2_freq; - uint32_t pllpsc, plln, pllsel, pllp, ck_src, idx, clk_exp; - - /* exponent of AHB, APB1 and APB2 clock divider */ - const uint8_t ahb_exp[16] = {0, 0, 0, 0, 0, 0, 0, 0, 1, 2, 3, 4, 6, 7, 8, 9}; - const uint8_t apb1_exp[8] = {0, 0, 0, 0, 1, 2, 3, 4}; - const uint8_t apb2_exp[8] = {0, 0, 0, 0, 1, 2, 3, 4}; - - sws = GET_BITS(RCU_CFG0, 2, 3); - switch(sws){ - /* IRC16M is selected as CK_SYS */ - case SEL_IRC16M: - cksys_freq = IRC16M_VALUE; - break; - /* HXTAL is selected as CK_SYS */ - case SEL_HXTAL: - cksys_freq = HXTAL_VALUE; - break; - /* PLLP is selected as CK_SYS */ - case SEL_PLLP: - /* get the value of PLLPSC[5:0] */ - pllpsc = GET_BITS(RCU_PLL, 0U, 5U); - plln = GET_BITS(RCU_PLL, 6U, 14U); - pllp = (GET_BITS(RCU_PLL, 16U, 17U) + 1U) * 2U; - /* PLL clock source selection, HXTAL or IRC16M/2 */ - pllsel = (RCU_PLL & RCU_PLL_PLLSEL); - if (RCU_PLLSRC_HXTAL == pllsel) { - ck_src = HXTAL_VALUE; - } else { - ck_src = IRC16M_VALUE; - } - cksys_freq = ((ck_src / pllpsc) * plln)/pllp; - break; - /* IRC16M is selected as CK_SYS */ - default: - cksys_freq = IRC16M_VALUE; - break; - } - /* calculate AHB clock frequency */ - idx = GET_BITS(RCU_CFG0, 4, 7); - clk_exp = ahb_exp[idx]; - ahb_freq = cksys_freq >> clk_exp; - - /* calculate APB1 clock frequency */ - idx = GET_BITS(RCU_CFG0, 10, 12); - clk_exp = apb1_exp[idx]; - apb1_freq = ahb_freq >> clk_exp; - - /* calculate APB2 clock frequency */ - idx = GET_BITS(RCU_CFG0, 13, 15); - clk_exp = apb2_exp[idx]; - apb2_freq = ahb_freq >> clk_exp; - - /* return the clocks frequency */ - switch(clock){ - case CK_SYS: - ck_freq = cksys_freq; - break; - case CK_AHB: - ck_freq = ahb_freq; - break; - case CK_APB1: - ck_freq = apb1_freq; - break; - case CK_APB2: - ck_freq = apb2_freq; - break; - default: - break; - } - return ck_freq; -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_rtc.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_rtc.c deleted file mode 100644 index 0115eb589c..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_rtc.c +++ /dev/null @@ -1,1295 +0,0 @@ -/*! - \file gd32f4xx_rtc.c - \brief RTC driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - - -#include "gd32f4xx_rtc.h" - -/* RTC timeout value */ -#define RTC_WTWF_TIMEOUT ((uint32_t)0x00004000U) /*!< wakeup timer can be write flag timeout */ -#define RTC_INITM_TIMEOUT ((uint32_t)0x00004000U) /*!< initialization state flag timeout */ -#define RTC_RSYNF_TIMEOUT ((uint32_t)0x00008000U) /*!< register synchronization flag timeout */ -#define RTC_HRFC_TIMEOUT ((uint32_t)0x20000000U) /*!< recalibration pending flag timeout */ -#define RTC_SHIFTCTL_TIMEOUT ((uint32_t)0x00001000U) /*!< shift function operation pending flag timeout */ -#define RTC_ALRMXWF_TIMEOUT ((uint32_t)0x00008000U) /*!< alarm configuration can be write flag timeout */ - - -/*! - \brief reset most of the RTC registers - \param[in] none - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus rtc_deinit(void) -{ - ErrStatus error_status = ERROR; - volatile uint32_t time_index = RTC_WTWF_TIMEOUT; - uint32_t flag_status = RESET; - /* RTC_TAMP register is not under write protection */ - RTC_TAMP = RTC_REGISTER_RESET; - - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - /* enter init mode */ - error_status = rtc_init_mode_enter(); - - if(ERROR != error_status){ - /* reset RTC_CTL register, but RTC_CTL[2��0] */ - RTC_CTL &= (RTC_REGISTER_RESET | RTC_CTL_WTCS); - /* before reset RTC_TIME and RTC_DATE, BPSHAD bit in RTC_CTL should be reset as the condition. - in order to read calendar from shadow register, not the real registers being reset */ - RTC_TIME = RTC_REGISTER_RESET; - RTC_DATE = RTC_DATE_RESET; - - RTC_PSC = RTC_PSC_RESET; - /* only when RTC_CTL_WTEN=0 and RTC_STAT_WTWF=1 can write RTC_CTL[2��0] */ - /* wait until the WTWF flag to be set */ - do{ - flag_status = RTC_STAT & RTC_STAT_WTWF; - }while((--time_index > 0U) && ((uint32_t)RESET == flag_status)); - - if ((uint32_t)RESET == flag_status){ - error_status = ERROR; - }else{ - RTC_CTL &= RTC_REGISTER_RESET; - RTC_WUT = RTC_WUT_RESET; - RTC_COSC = RTC_REGISTER_RESET; - /* to write RTC_ALRMxSS register, ALRMxEN bit in RTC_CTL register should be reset as the condition */ - RTC_ALRM0TD = RTC_REGISTER_RESET; - RTC_ALRM1TD = RTC_REGISTER_RESET; - RTC_ALRM0SS = RTC_REGISTER_RESET; - RTC_ALRM1SS = RTC_REGISTER_RESET; - /* reset RTC_STAT register, also exit init mode. - at the same time, RTC_STAT_SOPF bit is reset, as the condition to reset RTC_SHIFTCTL register later */ - RTC_STAT = RTC_STAT_RESET; - /* reset RTC_SHIFTCTL and RTC_HRFC register, this can be done without the init mode */ - RTC_SHIFTCTL = RTC_REGISTER_RESET; - RTC_HRFC = RTC_REGISTER_RESET; - error_status = rtc_register_sync_wait(); - } - } - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; - - return error_status; -} - -/*! - \brief initialize RTC registers - \param[in] rtc_initpara_struct: pointer to a rtc_parameter_struct structure which contains - parameters for initialization of the rtc peripheral - members of the structure and the member values are shown as below: - year: 0x0 - 0x99(BCD format) - month: RTC_JAN, RTC_FEB, RTC_MAR, RTC_APR, RTC_MAY, RTC_JUN, - RTC_JUL, RTC_AUG, RTC_SEP, RTC_OCT, RTC_NOV, RTC_DEC - date: 0x1 - 0x31(BCD format) - day_of_week: RTC_MONDAY, RTC_TUESDAY, RTC_WEDSDAY, RTC_THURSDAY - RTC_FRIDAY, RTC_SATURDAY, RTC_SUNDAY - hour: 0x0 - 0x12(BCD format) or 0x0 - 0x23(BCD format) depending on the rtc_display_format chose - minute: 0x0 - 0x59(BCD format) - second: 0x0 - 0x59(BCD format) - factor_asyn: 0x0 - 0x7F - factor_syn: 0x0 - 0x7FFF - am_pm: RTC_AM, RTC_PM - display_format: RTC_24HOUR, RTC_12HOUR - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus rtc_init(rtc_parameter_struct* rtc_initpara_struct) -{ - ErrStatus error_status = ERROR; - uint32_t reg_time = 0U, reg_date = 0U; - - reg_date = (DATE_YR(rtc_initpara_struct->year) | \ - DATE_DOW(rtc_initpara_struct->day_of_week) | \ - DATE_MON(rtc_initpara_struct->month) | \ - DATE_DAY(rtc_initpara_struct->date)); - - reg_time = (rtc_initpara_struct->am_pm| \ - TIME_HR(rtc_initpara_struct->hour) | \ - TIME_MN(rtc_initpara_struct->minute) | \ - TIME_SC(rtc_initpara_struct->second)); - - /* 1st: disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - /* 2nd: enter init mode */ - error_status = rtc_init_mode_enter(); - - if(ERROR != error_status){ - RTC_PSC = (uint32_t)(PSC_FACTOR_A(rtc_initpara_struct->factor_asyn)| \ - PSC_FACTOR_S(rtc_initpara_struct->factor_syn)); - - RTC_TIME = (uint32_t)reg_time; - RTC_DATE = (uint32_t)reg_date; - - RTC_CTL &= (uint32_t)(~RTC_CTL_CS); - RTC_CTL |= rtc_initpara_struct->display_format; - - /* 3rd: exit init mode */ - rtc_init_mode_exit(); - - /* 4th: wait the RSYNF flag to set */ - error_status = rtc_register_sync_wait(); - } - - /* 5th: enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; - - return error_status; -} - -/*! - \brief enter RTC init mode - \param[in] none - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus rtc_init_mode_enter(void) -{ - volatile uint32_t time_index = RTC_INITM_TIMEOUT; - uint32_t flag_status = RESET; - ErrStatus error_status = ERROR; - - /* check whether it has been in init mode */ - if ((uint32_t)RESET == (RTC_STAT & RTC_STAT_INITF)){ - RTC_STAT |= RTC_STAT_INITM; - - /* wait until the INITF flag to be set */ - do{ - flag_status = RTC_STAT & RTC_STAT_INITF; - }while((--time_index > 0U) && ((uint32_t)RESET == flag_status)); - - if ((uint32_t)RESET != flag_status){ - error_status = SUCCESS; - } - }else{ - error_status = SUCCESS; - } - return error_status; -} - -/*! - \brief exit RTC init mode - \param[in] none - \param[out] none - \retval none -*/ -void rtc_init_mode_exit(void) -{ - RTC_STAT &= (uint32_t)(~RTC_STAT_INITM); -} - -/*! - \brief wait until RTC_TIME and RTC_DATE registers are synchronized with APB clock, and the shadow - registers are updated - \param[in] none - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus rtc_register_sync_wait(void) -{ - volatile uint32_t time_index = RTC_RSYNF_TIMEOUT; - uint32_t flag_status = RESET; - ErrStatus error_status = ERROR; - - if ((uint32_t)RESET == (RTC_CTL & RTC_CTL_BPSHAD)){ - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - /* firstly clear RSYNF flag */ - RTC_STAT &= (uint32_t)(~RTC_STAT_RSYNF); - - /* wait until RSYNF flag to be set */ - do{ - flag_status = RTC_STAT & RTC_STAT_RSYNF; - }while((--time_index > 0U) && ((uint32_t)RESET == flag_status)); - - if ((uint32_t)RESET != flag_status){ - error_status = SUCCESS; - } - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; - }else{ - error_status = SUCCESS; - } - - return error_status; -} - -/*! - \brief get current time and date - \param[in] none - \param[out] rtc_initpara_struct: pointer to a rtc_parameter_struct structure which contains - parameters for initialization of the rtc peripheral - members of the structure and the member values are shown as below: - year: 0x0 - 0x99(BCD format) - month: RTC_JAN, RTC_FEB, RTC_MAR, RTC_APR, RTC_MAY, RTC_JUN, - RTC_JUL, RTC_AUG, RTC_SEP, RTC_OCT, RTC_NOV, RTC_DEC - date: 0x1 - 0x31(BCD format) - day_of_week: RTC_MONDAY, RTC_TUESDAY, RTC_WEDSDAY, RTC_THURSDAY - RTC_FRIDAY, RTC_SATURDAY, RTC_SUNDAY - hour: 0x0 - 0x12(BCD format) or 0x0 - 0x23(BCD format) depending on the rtc_display_format chose - minute: 0x0 - 0x59(BCD format) - second: 0x0 - 0x59(BCD format) - factor_asyn: 0x0 - 0x7F - factor_syn: 0x0 - 0x7FFF - am_pm: RTC_AM, RTC_PM - display_format: RTC_24HOUR, RTC_12HOUR - \retval none -*/ -void rtc_current_time_get(rtc_parameter_struct* rtc_initpara_struct) -{ - uint32_t temp_tr = 0U, temp_dr = 0U, temp_pscr = 0U, temp_ctlr = 0U; - - temp_tr = (uint32_t)RTC_TIME; - temp_dr = (uint32_t)RTC_DATE; - temp_pscr = (uint32_t)RTC_PSC; - temp_ctlr = (uint32_t)RTC_CTL; - - /* get current time and construct rtc_parameter_struct structure */ - rtc_initpara_struct->year = (uint8_t)GET_DATE_YR(temp_dr); - rtc_initpara_struct->month = (uint8_t)GET_DATE_MON(temp_dr); - rtc_initpara_struct->date = (uint8_t)GET_DATE_DAY(temp_dr); - rtc_initpara_struct->day_of_week = (uint8_t)GET_DATE_DOW(temp_dr); - rtc_initpara_struct->hour = (uint8_t)GET_TIME_HR(temp_tr); - rtc_initpara_struct->minute = (uint8_t)GET_TIME_MN(temp_tr); - rtc_initpara_struct->second = (uint8_t)GET_TIME_SC(temp_tr); - rtc_initpara_struct->factor_asyn = (uint16_t)GET_PSC_FACTOR_A(temp_pscr); - rtc_initpara_struct->factor_syn = (uint16_t)GET_PSC_FACTOR_S(temp_pscr); - rtc_initpara_struct->am_pm = (uint32_t)(temp_pscr & RTC_TIME_PM); - rtc_initpara_struct->display_format = (uint32_t)(temp_ctlr & RTC_CTL_CS); -} - -/*! - \brief get current subsecond value - \param[in] none - \param[out] none - \retval current subsecond value -*/ -uint32_t rtc_subsecond_get(void) -{ - uint32_t reg = 0U; - /* if BPSHAD bit is reset, reading RTC_SS will lock RTC_TIME and RTC_DATE automatically */ - reg = (uint32_t)RTC_SS; - /* read RTC_DATE to unlock the 3 shadow registers */ - (void) (RTC_DATE); - - return reg; -} - -/*! - \brief configure RTC alarm - \param[in] rtc_alarm: RTC_ALARM0 or RTC_ALARM1 - \param[in] rtc_alarm_time: pointer to a rtc_alarm_struct structure which contains - parameters for RTC alarm configuration - members of the structure and the member values are shown as below: - alarm_mask: RTC_ALARM_NONE_MASK, RTC_ALARM_DATE_MASK, RTC_ALARM_HOUR_MASK - RTC_ALARM_MINUTE_MASK, RTC_ALARM_SECOND_MASK, RTC_ALARM_ALL_MASK - weekday_or_date: RTC_ALARM_DATE_SELECTED, RTC_ALARM_WEEKDAY_SELECTED - alarm_day: 1) 0x1 - 0x31(BCD format) if RTC_ALARM_DATE_SELECTED is set - 2) RTC_MONDAY, RTC_TUESDAY, RTC_WEDSDAY, RTC_THURSDAY, RTC_FRIDAY, - RTC_SATURDAY, RTC_SUNDAY if RTC_ALARM_WEEKDAY_SELECTED is set - alarm_hour: 0x0 - 0x12(BCD format) or 0x0 - 0x23(BCD format) depending on the rtc_display_format - alarm_minute: 0x0 - 0x59(BCD format) - alarm_second: 0x0 - 0x59(BCD format) - am_pm: RTC_AM, RTC_PM - \param[out] none - \retval none -*/ -void rtc_alarm_config(uint8_t rtc_alarm, rtc_alarm_struct* rtc_alarm_time) -{ - uint32_t reg_alrmtd = 0U; - - reg_alrmtd =(rtc_alarm_time->alarm_mask | \ - rtc_alarm_time->weekday_or_date | \ - rtc_alarm_time->am_pm | \ - ALRMTD_DAY(rtc_alarm_time->alarm_day) | \ - ALRMTD_HR(rtc_alarm_time->alarm_hour) | \ - ALRMTD_MN(rtc_alarm_time->alarm_minute) | \ - ALRMTD_SC(rtc_alarm_time->alarm_second)); - - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - if(RTC_ALARM0 == rtc_alarm){ - RTC_ALRM0TD = (uint32_t)reg_alrmtd; - - }else{ - RTC_ALRM1TD = (uint32_t)reg_alrmtd; - } - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; -} - -/*! - \brief configure subsecond of RTC alarm - \param[in] rtc_alarm: RTC_ALARM0 or RTC_ALARM1 - \param[in] mask_subsecond: alarm subsecond mask - \arg RTC_MASKSSC_0_14: mask alarm subsecond configuration - \arg RTC_MASKSSC_1_14: mask RTC_ALRMXSS_SSC[14:1], and RTC_ALRMXSS_SSC[0] is to be compared - \arg RTC_MASKSSC_2_14: mask RTC_ALRMXSS_SSC[14:2], and RTC_ALRMXSS_SSC[1:0] is to be compared - \arg RTC_MASKSSC_3_14: mask RTC_ALRMXSS_SSC[14:3], and RTC_ALRMXSS_SSC[2:0] is to be compared - \arg RTC_MASKSSC_4_14: mask RTC_ALRMXSS_SSC[14:4]], and RTC_ALRMXSS_SSC[3:0] is to be compared - \arg RTC_MASKSSC_5_14: mask RTC_ALRMXSS_SSC[14:5], and RTC_ALRMXSS_SSC[4:0] is to be compared - \arg RTC_MASKSSC_6_14: mask RTC_ALRMXSS_SSC[14:6], and RTC_ALRMXSS_SSC[5:0] is to be compared - \arg RTC_MASKSSC_7_14: mask RTC_ALRMXSS_SSC[14:7], and RTC_ALRMXSS_SSC[6:0] is to be compared - \arg RTC_MASKSSC_8_14: mask RTC_ALRMXSS_SSC[14:8], and RTC_ALRMXSS_SSC[7:0] is to be compared - \arg RTC_MASKSSC_9_14: mask RTC_ALRMXSS_SSC[14:9], and RTC_ALRMXSS_SSC[8:0] is to be compared - \arg RTC_MASKSSC_10_14: mask RTC_ALRMXSS_SSC[14:10], and RTC_ALRMXSS_SSC[9:0] is to be compared - \arg RTC_MASKSSC_11_14: mask RTC_ALRMXSS_SSC[14:11], and RTC_ALRMXSS_SSC[10:0] is to be compared - \arg RTC_MASKSSC_12_14: mask RTC_ALRMXSS_SSC[14:12], and RTC_ALRMXSS_SSC[11:0] is to be compared - \arg RTC_MASKSSC_13_14: mask RTC_ALRMXSS_SSC[14:13], and RTC_ALRMXSS_SSC[12:0] is to be compared - \arg RTC_MASKSSC_14: mask RTC_ALRMXSS_SSC[14], and RTC_ALRMXSS_SSC[13:0] is to be compared - \arg RTC_MASKSSC_NONE: mask none, and RTC_ALRMXSS_SSC[14:0] is to be compared - \param[in] subsecond: alarm subsecond value(0x000 - 0x7FFF) - \param[out] none - \retval none -*/ -void rtc_alarm_subsecond_config(uint8_t rtc_alarm, uint32_t mask_subsecond, uint32_t subsecond) -{ - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - if(RTC_ALARM0 == rtc_alarm){ - RTC_ALRM0SS = mask_subsecond | subsecond; - }else{ - RTC_ALRM1SS = mask_subsecond | subsecond; - } - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; -} - -/*! - \brief get RTC alarm - \param[in] rtc_alarm: RTC_ALARM0 or RTC_ALARM1 - \param[out] rtc_alarm_time: pointer to a rtc_alarm_struct structure which contains - parameters for RTC alarm configuration - members of the structure and the member values are shown as below: - alarm_mask: RTC_ALARM_NONE_MASK, RTC_ALARM_DATE_MASK, RTC_ALARM_HOUR_MASK - RTC_ALARM_MINUTE_MASK, RTC_ALARM_SECOND_MASK, RTC_ALARM_ALL_MASK - weekday_or_date: RTC_ALARM_DATE_SELECTED, RTC_ALARM_WEEKDAY_SELECTED - alarm_day: 1) 0x1 - 0x31(BCD format) if RTC_ALARM_DATE_SELECTED is set - 2) RTC_MONDAY, RTC_TUESDAY, RTC_WEDSDAY, RTC_THURSDAY, RTC_FRIDAY, - RTC_SATURDAY, RTC_SUNDAY if RTC_ALARM_WEEKDAY_SELECTED is set - alarm_hour: 0x0 - 0x12(BCD format) or 0x0 - 0x23(BCD format) depending on the rtc_display_format - alarm_minute: 0x0 - 0x59(BCD format) - alarm_second: 0x0 - 0x59(BCD format) - am_pm: RTC_AM, RTC_PM - \retval none -*/ -void rtc_alarm_get(uint8_t rtc_alarm, rtc_alarm_struct* rtc_alarm_time) -{ - uint32_t reg_alrmtd = 0U; - - /* get the value of RTC_ALRM0TD register */ - if(RTC_ALARM0 == rtc_alarm){ - reg_alrmtd = RTC_ALRM0TD; - }else{ - reg_alrmtd = RTC_ALRM1TD; - } - /* get alarm parameters and construct the rtc_alarm_struct structure */ - rtc_alarm_time->alarm_mask = reg_alrmtd & RTC_ALARM_ALL_MASK; - rtc_alarm_time->am_pm = (uint32_t)(reg_alrmtd & RTC_ALRMXTD_PM); - rtc_alarm_time->weekday_or_date = (uint32_t)(reg_alrmtd & RTC_ALRMXTD_DOWS); - rtc_alarm_time->alarm_day = (uint8_t)GET_ALRMTD_DAY(reg_alrmtd); - rtc_alarm_time->alarm_hour = (uint8_t)GET_ALRMTD_HR(reg_alrmtd); - rtc_alarm_time->alarm_minute = (uint8_t)GET_ALRMTD_MN(reg_alrmtd); - rtc_alarm_time->alarm_second = (uint8_t)GET_ALRMTD_SC(reg_alrmtd); -} - -/*! - \brief get RTC alarm subsecond - \param[in] rtc_alarm: RTC_ALARM0 or RTC_ALARM1 - \param[out] none - \retval RTC alarm subsecond value -*/ -uint32_t rtc_alarm_subsecond_get(uint8_t rtc_alarm) -{ - if(RTC_ALARM0 == rtc_alarm){ - return ((uint32_t)(RTC_ALRM0SS & RTC_ALRM0SS_SSC)); - }else{ - return ((uint32_t)(RTC_ALRM1SS & RTC_ALRM1SS_SSC)); - } -} - -/*! - \brief enable RTC alarm - \param[in] rtc_alarm: RTC_ALARM0 or RTC_ALARM1 - \param[out] none - \retval none -*/ -void rtc_alarm_enable(uint8_t rtc_alarm) -{ - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - if(RTC_ALARM0 == rtc_alarm){ - RTC_CTL |= RTC_CTL_ALRM0EN; - }else{ - RTC_CTL |= RTC_CTL_ALRM1EN; - } - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; -} - -/*! - \brief disable RTC alarm - \param[in] rtc_alarm: RTC_ALARM0 or RTC_ALARM1 - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus rtc_alarm_disable(uint8_t rtc_alarm) -{ - volatile uint32_t time_index = RTC_ALRMXWF_TIMEOUT; - ErrStatus error_status = ERROR; - uint32_t flag_status = RESET; - - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - /* clear the state of alarm */ - if(RTC_ALARM0 == rtc_alarm){ - RTC_CTL &= (uint32_t)(~RTC_CTL_ALRM0EN); - /* wait until ALRM0WF flag to be set after the alarm is disabled */ - do{ - flag_status = RTC_STAT & RTC_STAT_ALRM0WF; - }while((--time_index > 0U) && ((uint32_t)RESET == flag_status)); - }else{ - RTC_CTL &= (uint32_t)(~RTC_CTL_ALRM1EN); - /* wait until ALRM1WF flag to be set after the alarm is disabled */ - do{ - flag_status = RTC_STAT & RTC_STAT_ALRM1WF; - }while((--time_index > 0U) && ((uint32_t)RESET == flag_status)); - } - - if ((uint32_t)RESET != flag_status){ - error_status = SUCCESS; - } - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; - - return error_status; -} - -/*! - \brief enable RTC time-stamp - \param[in] edge: specify which edge to detect of time-stamp - \arg RTC_TIMESTAMP_RISING_EDGE: rising edge is valid event edge for timestamp event - \arg RTC_TIMESTAMP_FALLING_EDGE: falling edge is valid event edge for timestamp event - \param[out] none - \retval none -*/ -void rtc_timestamp_enable(uint32_t edge) -{ - uint32_t reg_ctl = 0U; - - /* clear the bits to be configured in RTC_CTL */ - reg_ctl = (uint32_t)(RTC_CTL & (uint32_t)(~(RTC_CTL_TSEG | RTC_CTL_TSEN))); - - /* new configuration */ - reg_ctl |= (uint32_t)(edge | RTC_CTL_TSEN); - - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - RTC_CTL = (uint32_t)reg_ctl; - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; -} - -/*! - \brief disable RTC time-stamp - \param[in] none - \param[out] none - \retval none -*/ -void rtc_timestamp_disable(void) -{ - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - /* clear the TSEN bit */ - RTC_CTL &= (uint32_t)(~ RTC_CTL_TSEN); - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; -} - -/*! - \brief get RTC timestamp time and date - \param[in] none - \param[out] rtc_timestamp: pointer to a rtc_timestamp_struct structure which contains - parameters for RTC time-stamp configuration - members of the structure and the member values are shown as below: - timestamp_month: RTC_JAN, RTC_FEB, RTC_MAR, RTC_APR, RTC_MAY, RTC_JUN, - RTC_JUL, RTC_AUG, RTC_SEP, RTC_OCT, RTC_NOV, RTC_DEC - timestamp_date: 0x1 - 0x31(BCD format) - timestamp_day: RTC_MONDAY, RTC_TUESDAY, RTC_WEDSDAY, RTC_THURSDAY, RTC_FRIDAY, - RTC_SATURDAY, RTC_SUNDAY if RTC_ALARM_WEEKDAY_SELECTED is set - timestamp_hour: 0x0 - 0x12(BCD format) or 0x0 - 0x23(BCD format) depending on the rtc_display_format - timestamp_minute: 0x0 - 0x59(BCD format) - timestamp_second: 0x0 - 0x59(BCD format) - am_pm: RTC_AM, RTC_PM - \retval none -*/ -void rtc_timestamp_get(rtc_timestamp_struct* rtc_timestamp) -{ - uint32_t temp_tts = 0U, temp_dts = 0U; - - /* get the value of time_stamp registers */ - temp_tts = (uint32_t)RTC_TTS; - temp_dts = (uint32_t)RTC_DTS; - - /* get timestamp time and construct the rtc_timestamp_struct structure */ - rtc_timestamp->am_pm = (uint32_t)(temp_tts & RTC_TTS_PM); - rtc_timestamp->timestamp_month = (uint8_t)GET_DTS_MON(temp_dts); - rtc_timestamp->timestamp_date = (uint8_t)GET_DTS_DAY(temp_dts); - rtc_timestamp->timestamp_day = (uint8_t)GET_DTS_DOW(temp_dts); - rtc_timestamp->timestamp_hour = (uint8_t)GET_TTS_HR(temp_tts); - rtc_timestamp->timestamp_minute = (uint8_t)GET_TTS_MN(temp_tts); - rtc_timestamp->timestamp_second = (uint8_t)GET_TTS_SC(temp_tts); -} - -/*! - \brief get RTC time-stamp subsecond - \param[in] none - \param[out] none - \retval RTC time-stamp subsecond value -*/ -uint32_t rtc_timestamp_subsecond_get(void) -{ - return ((uint32_t)RTC_SSTS); -} - -/*! - \brief RTC time-stamp mapping - \param[in] rtc_af: - \arg RTC_AF0_TIMESTAMP: RTC_AF0 use for timestamp - \arg RTC_AF1_TIMESTAMP: RTC_AF1 use for timestamp - \param[out] none - \retval none -*/ -void rtc_timestamp_pin_map(uint32_t rtc_af) -{ - RTC_TAMP &= ~RTC_TAMP_TSSEL; - RTC_TAMP |= rtc_af; -} - -/*! - \brief enable RTC tamper - \param[in] rtc_tamper: pointer to a rtc_tamper_struct structure which contains - parameters for RTC tamper configuration - members of the structure and the member values are shown as below: - detecting tamper event can using edge mode or level mode - (1) using edge mode configuration: - tamper_source: RTC_TAMPER0, RTC_TAMPER1 - tamper_trigger: RTC_TAMPER_TRIGGER_EDGE_RISING, RTC_TAMPER_TRIGGER_EDGE_FALLING - tamper_filter: RTC_FLT_EDGE - tamper_with_timestamp: DISABLE, ENABLE - (2) using level mode configuration: - tamper_source: RTC_TAMPER0, RTC_TAMPER1 - tamper_trigger:RTC_TAMPER_TRIGGER_LEVEL_LOW, RTC_TAMPER_TRIGGER_LEVEL_HIGH - tamper_filter: RTC_FLT_2S, RTC_FLT_4S, RTC_FLT_8S - tamper_sample_frequency: RTC_FREQ_DIV32768, RTC_FREQ_DIV16384, RTC_FREQ_DIV8192, - RTC_FREQ_DIV4096, RTC_FREQ_DIV2048, RTC_FREQ_DIV1024, - RTC_FREQ_DIV512, RTC_FREQ_DIV256 - tamper_precharge_enable: DISABLE, ENABLE - tamper_precharge_time: RTC_PRCH_1C, RTC_PRCH_2C, RTC_PRCH_4C, RTC_PRCH_8C - tamper_with_timestamp: DISABLE, ENABLE - \param[out] none - \retval none -*/ -void rtc_tamper_enable(rtc_tamper_struct* rtc_tamper) -{ - /* disable tamper */ - RTC_TAMP &= (uint32_t)~(rtc_tamper->tamper_source); - - /* tamper filter must be used when the tamper source is voltage level detection */ - RTC_TAMP &= (uint32_t)~RTC_TAMP_FLT; - - /* the tamper source is voltage level detection */ - if((uint32_t)(rtc_tamper->tamper_filter) != RTC_FLT_EDGE ){ - RTC_TAMP &= (uint32_t)~(RTC_TAMP_DISPU | RTC_TAMP_PRCH | RTC_TAMP_FREQ | RTC_TAMP_FLT); - - /* check if the tamper pin need precharge, if need, then configure the precharge time */ - if(DISABLE == rtc_tamper->tamper_precharge_enable){ - RTC_TAMP |= (uint32_t)RTC_TAMP_DISPU; - }else{ - RTC_TAMP |= (uint32_t)(rtc_tamper->tamper_precharge_time); - } - - RTC_TAMP |= (uint32_t)(rtc_tamper->tamper_sample_frequency); - RTC_TAMP |= (uint32_t)(rtc_tamper->tamper_filter); - - /* configure the tamper trigger */ - RTC_TAMP &= ((uint32_t)~((rtc_tamper->tamper_source) << RTC_TAMPER_TRIGGER_POS)); - if(RTC_TAMPER_TRIGGER_LEVEL_LOW != rtc_tamper->tamper_trigger){ - RTC_TAMP |= (uint32_t)((rtc_tamper->tamper_source)<< RTC_TAMPER_TRIGGER_POS); - } - }else{ - - /* configure the tamper trigger */ - RTC_TAMP &= ((uint32_t)~((rtc_tamper->tamper_source) << RTC_TAMPER_TRIGGER_POS)); - if(RTC_TAMPER_TRIGGER_EDGE_RISING != rtc_tamper->tamper_trigger){ - RTC_TAMP |= (uint32_t)((rtc_tamper->tamper_source)<< RTC_TAMPER_TRIGGER_POS); - } - } - - RTC_TAMP &= (uint32_t)~RTC_TAMP_TPTS; - if(DISABLE != rtc_tamper->tamper_with_timestamp){ - /* the tamper event also cause a time-stamp event */ - RTC_TAMP |= (uint32_t)RTC_TAMP_TPTS; - } - /* enable tamper */ - RTC_TAMP |= (uint32_t)(rtc_tamper->tamper_source); -} - -/*! - \brief disable RTC tamper - \param[in] source: specify which tamper source to be disabled - \arg RTC_TAMPER0 - \arg RTC_TAMPER1 - \param[out] none - \retval none -*/ -void rtc_tamper_disable(uint32_t source) -{ - /* disable tamper */ - RTC_TAMP &= (uint32_t)~source; - -} - -/*! - \brief RTC tamper0 mapping - \param[in] rtc_af: - \arg RTC_AF0_TAMPER0: RTC_AF0 use for tamper0 - \arg RTC_AF1_TAMPER0: RTC_AF1 use for tamper0 - \param[out] none - \retval none -*/ -void rtc_tamper0_pin_map(uint32_t rtc_af) -{ - RTC_TAMP &= ~(RTC_TAMP_TP0EN | RTC_TAMP_TP0SEL); - RTC_TAMP |= rtc_af; -} - -/*! - \brief enable specified RTC interrupt - \param[in] interrupt: specify which interrupt source to be enabled - \arg RTC_INT_TIMESTAMP: timestamp interrupt - \arg RTC_INT_ALARM0: alarm0 interrupt - \arg RTC_INT_ALARM1: alarm1 interrupt - \arg RTC_INT_TAMP: tamper detection interrupt - \arg RTC_INT_WAKEUP: wakeup timer interrupt - \param[out] none - \retval none -*/ -void rtc_interrupt_enable(uint32_t interrupt) -{ - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - /* enable the interrupts in RTC_CTL register */ - RTC_CTL |= (uint32_t)(interrupt & (uint32_t)~RTC_TAMP_TPIE); - /* enable the interrupts in RTC_TAMP register */ - RTC_TAMP |= (uint32_t)(interrupt & RTC_TAMP_TPIE); - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; -} - -/*! - \brief disble specified RTC interrupt - \param[in] interrupt: specify which interrupt source to be disabled - \arg RTC_INT_TIMESTAMP: timestamp interrupt - \arg RTC_INT_ALARM0: alarm interrupt - \arg RTC_INT_ALARM1: alarm interrupt - \arg RTC_INT_TAMP: tamper detection interrupt - \arg RTC_INT_WAKEUP: wakeup timer interrupt - \param[out] none - \retval none -*/ -void rtc_interrupt_disable(uint32_t interrupt) -{ - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - /* disable the interrupts in RTC_CTL register */ - RTC_CTL &= (uint32_t)~(interrupt & (uint32_t)~RTC_TAMP_TPIE); - /* disable the interrupts in RTC_TAMP register */ - RTC_TAMP &= (uint32_t)~(interrupt & RTC_TAMP_TPIE); - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; -} - -/*! - \brief check specified flag - \param[in] flag: specify which flag to check - \arg RTC_STAT_SCP: smooth calibration pending flag - \arg RTC_FLAG_TP1: RTC tamper 1 detected flag - \arg RTC_FLAG_TP0: RTC tamper 0 detected flag - \arg RTC_FLAG_TSOVR: time-stamp overflow flag - \arg RTC_FLAG_TS: time-stamp flag - \arg RTC_FLAG_ALARM0: alarm0 occurs flag - \arg RTC_FLAG_ALARM1: alarm1 occurs flag - \arg RTC_FLAG_WT: wakeup timer occurs flag - \arg RTC_FLAG_INIT: initialization state flag - \arg RTC_FLAG_RSYN: register synchronization flag - \arg RTC_FLAG_YCM: year configuration mark status flag - \arg RTC_FLAG_SOP: shift function operation pending flag - \arg RTC_FLAG_ALRM0W: alarm0 configuration can be write flag - \arg RTC_FLAG_ALRM1W: alarm1 configuration can be write flag - \arg RTC_FLAG_WTW: wakeup timer can be write flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus rtc_flag_get(uint32_t flag) -{ - FlagStatus flag_state = RESET; - - if ((uint32_t)RESET != (RTC_STAT & flag)){ - flag_state = SET; - } - return flag_state; -} - -/*! - \brief clear specified flag - \arg RTC_FLAG_TP1: RTC tamper 1 detected flag - \arg RTC_FLAG_TP0: RTC tamper 0 detected flag - \arg RTC_FLAG_TSOVR: time-stamp overflow flag - \arg RTC_FLAG_TS: time-stamp flag - \arg RTC_FLAG_WT: wakeup timer occurs flag - \arg RTC_FLAG_ALARM0: alarm0 occurs flag - \arg RTC_FLAG_ALARM1: alarm1 occurs flag - \arg RTC_FLAG_RSYN: register synchronization flag - \param[out] none - \retval none -*/ -void rtc_flag_clear(uint32_t flag) -{ - RTC_STAT &= (uint32_t)(~flag); -} - -/*! - \brief configure rtc alarm output source - \param[in] source: specify signal to output - \arg RTC_ALARM0_HIGH: when the alarm0 flag is set, the output pin is high - \arg RTC_ALARM0_LOW: when the alarm0 flag is set, the output pin is low - \arg RTC_ALARM1_HIGH: when the alarm1 flag is set, the output pin is high - \arg RTC_ALARM1_LOW: when the alarm1 flag is set, the output pin is low - \arg RTC_WAKEUP_HIGH: when the wakeup flag is set, the output pin is high - \arg RTC_WAKEUP_LOW: when the wakeup flag is set, the output pin is low - \param[in] mode: specify the output pin mode when output alarm signal - \arg RTC_ALARM_OUTPUT_OD: open drain mode - \arg RTC_ALARM_OUTPUT_PP: push pull mode - \param[out] none - \retval none -*/ -void rtc_alarm_output_config(uint32_t source, uint32_t mode) -{ - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - RTC_CTL &= ~(RTC_CTL_OS | RTC_CTL_OPOL); - RTC_TAMP &= ~RTC_TAMP_AOT; - - RTC_CTL |= (uint32_t)(source); - /* alarm output */ - RTC_TAMP |= (uint32_t)(mode); - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; -} - -/*! - \brief configure rtc calibration output source - \param[in] source: specify signal to output - \arg RTC_CALIBRATION_512HZ: when the LSE freqency is 32768Hz and the RTC_PSC - is the default value, output 512Hz signal - \arg RTC_CALIBRATION_1HZ: when the LSE freqency is 32768Hz and the RTC_PSC - is the default value, output 1Hz signal - \param[out] none - \retval none -*/ -void rtc_calibration_output_config(uint32_t source) -{ - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - RTC_CTL &= (uint32_t)~(RTC_CTL_COEN | RTC_CTL_COS); - - RTC_CTL |= (uint32_t)(source); - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; -} - - -/*! - \brief adjust the daylight saving time by adding or substracting one hour from the current time - \param[in] operation: hour adjustment operation - \arg RTC_CTL_A1H: add one hour - \arg RTC_CTL_S1H: substract one hour - \param[out] none - \retval none -*/ -void rtc_hour_adjust(uint32_t operation) -{ - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - RTC_CTL |= (uint32_t)(operation); - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; -} - -/*! - \brief adjust RTC second or subsecond value of current time - \param[in] add: add 1s to current time or not - \arg RTC_SHIFT_ADD1S_RESET: no effect - \arg RTC_SHIFT_ADD1S_SET: add 1s to current time - \param[in] minus: number of subsecond to minus from current time(0x0 - 0x7FFF) - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus rtc_second_adjust(uint32_t add, uint32_t minus) -{ - volatile uint32_t time_index = RTC_SHIFTCTL_TIMEOUT; - ErrStatus error_status = ERROR; - uint32_t flag_status = RESET; - uint32_t temp=0U; - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - /* check if a shift operation is ongoing */ - do{ - flag_status = RTC_STAT & RTC_STAT_SOPF; - }while((--time_index > 0U) && ((uint32_t)RESET != flag_status)); - - /* check if the function of reference clock detection is disabled */ - temp = RTC_CTL & RTC_CTL_REFEN; - if((RESET == flag_status) && (RESET == temp)){ - RTC_SHIFTCTL = (uint32_t)(add | SHIFTCTL_SFS(minus)); - error_status = rtc_register_sync_wait(); - } - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; - - return error_status; -} - -/*! - \brief enable RTC bypass shadow registers function - \param[in] none - \param[out] none - \retval none -*/ -void rtc_bypass_shadow_enable(void) -{ - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - RTC_CTL |= RTC_CTL_BPSHAD; - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; -} - -/*! - \brief disable RTC bypass shadow registers function - \param[in] none - \param[out] none - \retval none -*/ -void rtc_bypass_shadow_disable(void) -{ - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - RTC_CTL &= ~RTC_CTL_BPSHAD; - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; -} - -/*! - \brief enable RTC reference clock detection function - \param[in] none - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus rtc_refclock_detection_enable(void) -{ - ErrStatus error_status = ERROR; - - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - /* enter init mode */ - error_status = rtc_init_mode_enter(); - - if(ERROR != error_status){ - RTC_CTL |= (uint32_t)RTC_CTL_REFEN; - /* exit init mode */ - rtc_init_mode_exit(); - } - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; - - return error_status; -} - -/*! - \brief disable RTC reference clock detection function - \param[in] none - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus rtc_refclock_detection_disable(void) -{ - ErrStatus error_status = ERROR; - - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - /* enter init mode */ - error_status = rtc_init_mode_enter(); - - if(ERROR != error_status){ - RTC_CTL &= (uint32_t)~RTC_CTL_REFEN; - /* exit init mode */ - rtc_init_mode_exit(); - } - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; - - return error_status; -} - -/*! - \brief enable RTC auto wakeup function - \param[in] none - \param[out] none - \retval none -*/ -void rtc_wakeup_enable(void) -{ - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - RTC_CTL |= RTC_CTL_WTEN; - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; -} - -/*! - \brief disable RTC auto wakeup function - \param[in] none - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus rtc_wakeup_disable(void) -{ - ErrStatus error_status = ERROR; - volatile uint32_t time_index = RTC_WTWF_TIMEOUT; - uint32_t flag_status = RESET; - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - RTC_CTL &= ~RTC_CTL_WTEN; - /* wait until the WTWF flag to be set */ - do{ - flag_status = RTC_STAT & RTC_STAT_WTWF; - }while((--time_index > 0U) && ((uint32_t)RESET == flag_status)); - - if ((uint32_t)RESET == flag_status){ - error_status = ERROR; - }else{ - error_status = SUCCESS; - } - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; - return error_status; -} - -/*! - \brief set RTC auto wakeup timer clock - \param[in] wakeup_clock: - \arg WAKEUP_RTCCK_DIV16: RTC auto wakeup timer clock is RTC clock divided by 16 - \arg WAKEUP_RTCCK_DIV8: RTC auto wakeup timer clock is RTC clock divided by 8 - \arg WAKEUP_RTCCK_DIV4: RTC auto wakeup timer clock is RTC clock divided by 4 - \arg WAKEUP_RTCCK_DIV2: RTC auto wakeup timer clock is RTC clock divided by 2 - \arg WAKEUP_CKSPRE: RTC auto wakeup timer clock is ckspre - \arg WAKEUP_CKSPRE_2EXP16: RTC auto wakeup timer clock is ckspre and wakeup timer add 2exp16 - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus rtc_wakeup_clock_set(uint8_t wakeup_clock) -{ - ErrStatus error_status = ERROR; - volatile uint32_t time_index = RTC_WTWF_TIMEOUT; - uint32_t flag_status = RESET; - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - /* only when RTC_CTL_WTEN=0 and RTC_STAT_WTWF=1 can write RTC_CTL[2��0] */ - /* wait until the WTWF flag to be set */ - do{ - flag_status = RTC_STAT & RTC_STAT_WTWF; - }while((--time_index > 0U) && ((uint32_t)RESET == flag_status)); - - if ((uint32_t)RESET == flag_status){ - error_status = ERROR; - }else{ - RTC_CTL &= (uint32_t)~ RTC_CTL_WTCS; - RTC_CTL |= (uint32_t)wakeup_clock; - error_status = SUCCESS; - } - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; - - return error_status; -} - -/*! - \brief set wakeup timer value - \param[in] wakeup_timer: 0x0000-0xffff - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus rtc_wakeup_timer_set(uint16_t wakeup_timer) -{ - ErrStatus error_status = ERROR; - volatile uint32_t time_index = RTC_WTWF_TIMEOUT; - uint32_t flag_status = RESET; - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - /* wait until the WTWF flag to be set */ - do{ - flag_status = RTC_STAT & RTC_STAT_WTWF; - }while((--time_index > 0U) && ((uint32_t)RESET == flag_status)); - - if ((uint32_t)RESET == flag_status){ - error_status = ERROR; - }else{ - RTC_WUT = (uint32_t)wakeup_timer; - error_status = SUCCESS; - } - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; - return error_status; -} - -/*! - \brief get wakeup timer value - \param[in] none - \param[out] none - \retval wakeup timer value -*/ - uint16_t rtc_wakeup_timer_get(void) -{ - return (uint16_t)RTC_WUT; -} - -/*! - \brief configure RTC smooth calibration - \param[in] window: select calibration window - \arg RTC_CALIBRATION_WINDOW_32S: 2exp20 RTCCLK cycles, 32s if RTCCLK = 32768 Hz - \arg RTC_CALIBRATION_WINDOW_16S: 2exp19 RTCCLK cycles, 16s if RTCCLK = 32768 Hz - \arg RTC_CALIBRATION_WINDOW_8S: 2exp18 RTCCLK cycles, 8s if RTCCLK = 32768 Hz - \param[in] plus: add RTC clock or not - \arg RTC_CALIBRATION_PLUS_SET: add one RTC clock every 2048 rtc clock - \arg RTC_CALIBRATION_PLUS_RESET: no effect - \param[in] minus: the RTC clock to minus during the calibration window(0x0 - 0x1FF) - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus rtc_smooth_calibration_config(uint32_t window, uint32_t plus, uint32_t minus) -{ - volatile uint32_t time_index = RTC_HRFC_TIMEOUT; - ErrStatus error_status = ERROR; - uint32_t flag_status = RESET; - - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - /* check if a smooth calibration operation is ongoing */ - do{ - flag_status = RTC_STAT & RTC_STAT_SCPF; - }while((--time_index > 0U) && ((uint32_t)RESET != flag_status)); - - if((uint32_t)RESET == flag_status){ - RTC_HRFC = (uint32_t)(window | plus | HRFC_CMSK(minus)); - error_status = SUCCESS; - } - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; - - return error_status; -} - -/*! - \brief enable RTC coarse calibration - \param[in] none - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus rtc_coarse_calibration_enable(void) -{ - ErrStatus error_status = ERROR; - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - /* enter init mode */ - error_status = rtc_init_mode_enter(); - - if(ERROR != error_status){ - RTC_CTL |= (uint32_t)RTC_CTL_CCEN; - /* exit init mode */ - rtc_init_mode_exit(); - } - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; - return error_status; -} - -/*! - \brief disable RTC coarse calibration - \param[in] none - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus rtc_coarse_calibration_disable(void) -{ - ErrStatus error_status = ERROR; - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - /* enter init mode */ - error_status = rtc_init_mode_enter(); - - if(ERROR != error_status){ - RTC_CTL &= (uint32_t)~RTC_CTL_CCEN; - /* exit init mode */ - rtc_init_mode_exit(); - } - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; - return error_status; -} - -/*! - \brief config coarse calibration direction and step - \param[in] direction: CALIB_INCREASE or CALIB_DECREASE - \param[in] step: 0x00-0x1F - COSD=0: - 0x00:+0 PPM - 0x01:+4 PPM - 0x02:+8 PPM - .... - 0x1F:+126 PPM - COSD=1: - 0x00:-0 PPM - 0x01:-2 PPM - 0x02:-4 PPM - .... - 0x1F:-63 PPM - \param[out] none - \retval ErrStatus: ERROR or SUCCESS -*/ -ErrStatus rtc_coarse_calibration_config(uint8_t direction, uint8_t step) -{ - ErrStatus error_status = ERROR; - /* disable the write protection */ - RTC_WPK = RTC_UNLOCK_KEY1; - RTC_WPK = RTC_UNLOCK_KEY2; - - /* enter init mode */ - error_status = rtc_init_mode_enter(); - - if(ERROR != error_status){ - if(CALIB_DECREASE == direction){ - RTC_COSC |= (uint32_t)RTC_COSC_COSD; - }else{ - RTC_COSC &= (uint32_t)~RTC_COSC_COSD; - } - RTC_COSC &= ~RTC_COSC_COSS; - RTC_COSC |= (uint32_t)((uint32_t)step & 0x1FU); - /* exit init mode */ - rtc_init_mode_exit(); - } - - /* enable the write protection */ - RTC_WPK = RTC_LOCK_KEY; - - return error_status; -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_sdio.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_sdio.c deleted file mode 100644 index 44f65e4748..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_sdio.c +++ /dev/null @@ -1,803 +0,0 @@ -/*! - \file gd32f4xx_sdio.c - \brief SDIO driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.1, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_sdio.h" - -/*! - \brief deinitialize the SDIO - \param[in] none - \param[out] none - \retval none -*/ -void sdio_deinit(void) -{ - rcu_periph_reset_enable(RCU_SDIORST); - rcu_periph_reset_disable(RCU_SDIORST); -} - -/*! - \brief configure the SDIO clock - \param[in] clock_edge: SDIO_CLK clock edge - only one parameter can be selected which is shown as below: - \arg SDIO_SDIOCLKEDGE_RISING: select the rising edge of the SDIOCLK to generate SDIO_CLK - \arg SDIO_SDIOCLKEDGE_FALLING: select the falling edge of the SDIOCLK to generate SDIO_CLK - \param[in] clock_bypass: clock bypass - only one parameter can be selected which is shown as below: - \arg SDIO_CLOCKBYPASS_ENABLE: clock bypass - \arg SDIO_CLOCKBYPASS_DISABLE: no bypass - \param[in] clock_powersave: SDIO_CLK clock dynamic switch on/off for power saving - only one parameter can be selected which is shown as below: - \arg SDIO_CLOCKPWRSAVE_ENABLE: SDIO_CLK closed when bus is idle - \arg SDIO_CLOCKPWRSAVE_DISABLE: SDIO_CLK clock is always on - \param[in] clock_division: clock division, less than 512 - \param[out] none - \retval none -*/ -void sdio_clock_config(uint32_t clock_edge, uint32_t clock_bypass, uint32_t clock_powersave, uint16_t clock_division) -{ - uint32_t clock_config = 0U; - clock_config = SDIO_CLKCTL; - /* reset the CLKEDGE, CLKBYP, CLKPWRSAV, DIV */ - clock_config &= ~(SDIO_CLKCTL_CLKEDGE | SDIO_CLKCTL_CLKBYP | SDIO_CLKCTL_CLKPWRSAV | SDIO_CLKCTL_DIV8 | SDIO_CLKCTL_DIV); - /* if the clock division is greater or equal to 256, set the DIV[8] */ - if(clock_division >= 256U){ - clock_config |= SDIO_CLKCTL_DIV8; - clock_division -= 256U; - } - /* configure the SDIO_CLKCTL according to the parameters */ - clock_config |= (clock_edge | clock_bypass | clock_powersave | clock_division); - SDIO_CLKCTL = clock_config; -} - -/*! - \brief enable hardware clock control - \param[in] none - \param[out] none - \retval none -*/ -void sdio_hardware_clock_enable(void) -{ - SDIO_CLKCTL |= SDIO_CLKCTL_HWCLKEN; -} - -/*! - \brief disable hardware clock control - \param[in] none - \param[out] none - \retval none -*/ -void sdio_hardware_clock_disable(void) -{ - SDIO_CLKCTL &= ~SDIO_CLKCTL_HWCLKEN; -} - -/*! - \brief set different SDIO card bus mode - \param[in] bus_mode: SDIO card bus mode - only one parameter can be selected which is shown as below: - \arg SDIO_BUSMODE_1BIT: 1-bit SDIO card bus mode - \arg SDIO_BUSMODE_4BIT: 4-bit SDIO card bus mode - \arg SDIO_BUSMODE_8BIT: 8-bit SDIO card bus mode - \param[out] none - \retval none -*/ -void sdio_bus_mode_set(uint32_t bus_mode) -{ - /* reset the SDIO card bus mode bits and set according to bus_mode */ - SDIO_CLKCTL &= ~SDIO_CLKCTL_BUSMODE; - SDIO_CLKCTL |= bus_mode; -} - -/*! - \brief set the SDIO power state - \param[in] power_state: SDIO power state - only one parameter can be selected which is shown as below: - \arg SDIO_POWER_ON: SDIO power on - \arg SDIO_POWER_OFF: SDIO power off - \param[out] none - \retval none -*/ -void sdio_power_state_set(uint32_t power_state) -{ - SDIO_PWRCTL = power_state; -} - -/*! - \brief get the SDIO power state - \param[in] none - \param[out] none - \retval SDIO power state - \arg SDIO_POWER_ON: SDIO power on - \arg SDIO_POWER_OFF: SDIO power off -*/ -uint32_t sdio_power_state_get(void) -{ - return SDIO_PWRCTL; -} - -/*! - \brief enable SDIO_CLK clock output - \param[in] none - \param[out] none - \retval none -*/ -void sdio_clock_enable(void) -{ - SDIO_CLKCTL |= SDIO_CLKCTL_CLKEN; -} - -/*! - \brief disable SDIO_CLK clock output - \param[in] none - \param[out] none - \retval none -*/ -void sdio_clock_disable(void) -{ - SDIO_CLKCTL &= ~SDIO_CLKCTL_CLKEN; -} - -/*! - \brief configure the command and response - \param[in] cmd_index: command index, refer to the related specifications - \param[in] cmd_argument: command argument, refer to the related specifications - \param[in] response_type: response type - only one parameter can be selected which is shown as below: - \arg SDIO_RESPONSETYPE_NO: no response - \arg SDIO_RESPONSETYPE_SHORT: short response - \arg SDIO_RESPONSETYPE_LONG: long response - \param[out] none - \retval none -*/ -void sdio_command_response_config(uint32_t cmd_index, uint32_t cmd_argument, uint32_t response_type) -{ - uint32_t cmd_config = 0U; - /* disable the CSM */ - SDIO_CMDCTL &= ~SDIO_CMDCTL_CSMEN; - /* reset the command index, command argument and response type */ - SDIO_CMDAGMT &= ~SDIO_CMDAGMT_CMDAGMT; - SDIO_CMDAGMT = cmd_argument; - cmd_config = SDIO_CMDCTL; - cmd_config &= ~(SDIO_CMDCTL_CMDIDX | SDIO_CMDCTL_CMDRESP); - /* configure SDIO_CMDCTL and SDIO_CMDAGMT according to the parameters */ - cmd_config |= (cmd_index | response_type); - SDIO_CMDCTL = cmd_config; -} - -/*! - \brief set the command state machine wait type - \param[in] wait_type: wait type - only one parameter can be selected which is shown as below: - \arg SDIO_WAITTYPE_NO: not wait interrupt - \arg SDIO_WAITTYPE_INTERRUPT: wait interrupt - \arg SDIO_WAITTYPE_DATAEND: wait the end of data transfer - \param[out] none - \retval none -*/ -void sdio_wait_type_set(uint32_t wait_type) -{ - /* reset INTWAIT and WAITDEND */ - SDIO_CMDCTL &= ~(SDIO_CMDCTL_INTWAIT | SDIO_CMDCTL_WAITDEND); - /* set the wait type according to wait_type */ - SDIO_CMDCTL |= wait_type; -} - -/*! - \brief enable the CSM(command state machine) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_csm_enable(void) -{ - SDIO_CMDCTL |= SDIO_CMDCTL_CSMEN; -} - -/*! - \brief disable the CSM(command state machine) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_csm_disable(void) -{ - SDIO_CMDCTL &= ~SDIO_CMDCTL_CSMEN; -} - -/*! - \brief get the last response command index - \param[in] none - \param[out] none - \retval last response command index -*/ -uint8_t sdio_command_index_get(void) -{ - return (uint8_t)SDIO_RSPCMDIDX; -} - -/*! - \brief get the response for the last received command - \param[in] sdio_responsex: SDIO response - only one parameter can be selected which is shown as below: - \arg SDIO_RESPONSE0: card response[31:0]/card response[127:96] - \arg SDIO_RESPONSE1: card response[95:64] - \arg SDIO_RESPONSE2: card response[63:32] - \arg SDIO_RESPONSE3: card response[31:1], plus bit 0 - \param[out] none - \retval response for the last received command -*/ -uint32_t sdio_response_get(uint32_t sdio_responsex) -{ - uint32_t resp_content = 0U; - switch(sdio_responsex){ - case SDIO_RESPONSE0: - resp_content = SDIO_RESP0; - break; - case SDIO_RESPONSE1: - resp_content = SDIO_RESP1; - break; - case SDIO_RESPONSE2: - resp_content = SDIO_RESP2; - break; - case SDIO_RESPONSE3: - resp_content = SDIO_RESP3; - break; - default: - break; - } - return resp_content; -} - -/*! - \brief configure the data timeout, data length and data block size - \param[in] data_timeout: data timeout period in card bus clock periods - \param[in] data_length: number of data bytes to be transferred - \param[in] data_blocksize: size of data block for block transfer - only one parameter can be selected which is shown as below: - \arg SDIO_DATABLOCKSIZE_1BYTE: block size = 1 byte - \arg SDIO_DATABLOCKSIZE_2BYTES: block size = 2 bytes - \arg SDIO_DATABLOCKSIZE_4BYTES: block size = 4 bytes - \arg SDIO_DATABLOCKSIZE_8BYTES: block size = 8 bytes - \arg SDIO_DATABLOCKSIZE_16BYTES: block size = 16 bytes - \arg SDIO_DATABLOCKSIZE_32BYTES: block size = 32 bytes - \arg SDIO_DATABLOCKSIZE_64BYTES: block size = 64 bytes - \arg SDIO_DATABLOCKSIZE_128BYTES: block size = 128 bytes - \arg SDIO_DATABLOCKSIZE_256BYTES: block size = 256 bytes - \arg SDIO_DATABLOCKSIZE_512BYTES: block size = 512 bytes - \arg SDIO_DATABLOCKSIZE_1024BYTES: block size = 1024 bytes - \arg SDIO_DATABLOCKSIZE_2048BYTES: block size = 2048 bytes - \arg SDIO_DATABLOCKSIZE_4096BYTES: block size = 4096 bytes - \arg SDIO_DATABLOCKSIZE_8192BYTES: block size = 8192 bytes - \arg SDIO_DATABLOCKSIZE_16384BYTES: block size = 16384 bytes - \param[out] none - \retval none -*/ -void sdio_data_config(uint32_t data_timeout, uint32_t data_length, uint32_t data_blocksize) -{ - /* reset data timeout, data length and data block size */ - SDIO_DATATO &= ~SDIO_DATATO_DATATO; - SDIO_DATALEN &= ~SDIO_DATALEN_DATALEN; - SDIO_DATACTL &= ~SDIO_DATACTL_BLKSZ; - /* configure the related parameters of data */ - SDIO_DATATO = data_timeout; - SDIO_DATALEN = data_length; - SDIO_DATACTL |= data_blocksize; -} - -/*! - \brief configure the data transfer mode and direction - \param[in] transfer_mode: mode of data transfer - only one parameter can be selected which is shown as below: - \arg SDIO_TRANSMODE_BLOCK: block transfer - \arg SDIO_TRANSMODE_STREAM: stream transfer or SDIO multibyte transfer - \param[in] transfer_direction: data transfer direction, read or write - only one parameter can be selected which is shown as below: - \arg SDIO_TRANSDIRECTION_TOCARD: write data to card - \arg SDIO_TRANSDIRECTION_TOSDIO: read data from card - \param[out] none - \retval none -*/ -void sdio_data_transfer_config(uint32_t transfer_mode, uint32_t transfer_direction) -{ - uint32_t data_trans = 0U; - /* reset the data transfer mode, transfer direction and set according to the parameters */ - data_trans = SDIO_DATACTL; - data_trans &= ~(SDIO_DATACTL_TRANSMOD | SDIO_DATACTL_DATADIR); - data_trans |= (transfer_mode | transfer_direction); - SDIO_DATACTL = data_trans; -} - -/*! - \brief enable the DSM(data state machine) for data transfer - \param[in] none - \param[out] none - \retval none -*/ -void sdio_dsm_enable(void) -{ - SDIO_DATACTL |= SDIO_DATACTL_DATAEN; -} - -/*! - \brief disable the DSM(data state machine) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_dsm_disable(void) -{ - SDIO_DATACTL &= ~SDIO_DATACTL_DATAEN; -} - -/*! - \brief write data(one word) to the transmit FIFO - \param[in] data: 32-bit data write to card - \param[out] none - \retval none -*/ -void sdio_data_write(uint32_t data) -{ - SDIO_FIFO = data; -} - -/*! - \brief read data(one word) from the receive FIFO - \param[in] none - \param[out] none - \retval received data -*/ -uint32_t sdio_data_read(void) -{ - return SDIO_FIFO; -} - -/*! - \brief get the number of remaining data bytes to be transferred to card - \param[in] none - \param[out] none - \retval number of remaining data bytes to be transferred -*/ -uint32_t sdio_data_counter_get(void) -{ - return SDIO_DATACNT; -} - -/*! - \brief get the number of words remaining to be written or read from FIFO - \param[in] none - \param[out] none - \retval remaining number of words -*/ -uint32_t sdio_fifo_counter_get(void) -{ - return SDIO_FIFOCNT; -} - -/*! - \brief enable the DMA request for SDIO - \param[in] none - \param[out] none - \retval none -*/ -void sdio_dma_enable(void) -{ - SDIO_DATACTL |= SDIO_DATACTL_DMAEN; -} - -/*! - \brief disable the DMA request for SDIO - \param[in] none - \param[out] none - \retval none -*/ -void sdio_dma_disable(void) -{ - SDIO_DATACTL &= ~SDIO_DATACTL_DMAEN; -} - -/*! - \brief get the flags state of SDIO - \param[in] flag: flags state of SDIO - one or more parameters can be selected which are shown as below: - \arg SDIO_FLAG_CCRCERR: command response received (CRC check failed) flag - \arg SDIO_FLAG_DTCRCERR: data block sent/received (CRC check failed) flag - \arg SDIO_FLAG_CMDTMOUT: command response timeout flag - \arg SDIO_FLAG_DTTMOUT: data timeout flag - \arg SDIO_FLAG_TXURE: transmit FIFO underrun error occurs flag - \arg SDIO_FLAG_RXORE: received FIFO overrun error occurs flag - \arg SDIO_FLAG_CMDRECV: command response received (CRC check passed) flag - \arg SDIO_FLAG_CMDSEND: command sent (no response required) flag - \arg SDIO_FLAG_DTEND: data end (data counter, SDIO_DATACNT, is zero) flag - \arg SDIO_FLAG_STBITE: start bit error in the bus flag - \arg SDIO_FLAG_DTBLKEND: data block sent/received (CRC check passed) flag - \arg SDIO_FLAG_CMDRUN: command transmission in progress flag - \arg SDIO_FLAG_TXRUN: data transmission in progress flag - \arg SDIO_FLAG_RXRUN: data reception in progress flag - \arg SDIO_FLAG_TFH: transmit FIFO is half empty flag: at least 8 words can be written into the FIFO - \arg SDIO_FLAG_RFH: receive FIFO is half full flag: at least 8 words can be read in the FIFO - \arg SDIO_FLAG_TFF: transmit FIFO is full flag - \arg SDIO_FLAG_RFF: receive FIFO is full flag - \arg SDIO_FLAG_TFE: transmit FIFO is empty flag - \arg SDIO_FLAG_RFE: receive FIFO is empty flag - \arg SDIO_FLAG_TXDTVAL: data is valid in transmit FIFO flag - \arg SDIO_FLAG_RXDTVAL: data is valid in receive FIFO flag - \arg SDIO_FLAG_SDIOINT: SD I/O interrupt received flag - \arg SDIO_FLAG_ATAEND: CE-ATA command completion signal received (only for CMD61) flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus sdio_flag_get(uint32_t flag) -{ - FlagStatus temp_flag = RESET; - if(RESET != (SDIO_STAT & flag)){ - temp_flag = SET; - } - return temp_flag; -} - -/*! - \brief clear the pending flags of SDIO - \param[in] flag: flags state of SDIO - one or more parameters can be selected which are shown as below: - \arg SDIO_FLAG_CCRCERR: command response received (CRC check failed) flag - \arg SDIO_FLAG_DTCRCERR: data block sent/received (CRC check failed) flag - \arg SDIO_FLAG_CMDTMOUT: command response timeout flag - \arg SDIO_FLAG_DTTMOUT: data timeout flag - \arg SDIO_FLAG_TXURE: transmit FIFO underrun error occurs flag - \arg SDIO_FLAG_RXORE: received FIFO overrun error occurs flag - \arg SDIO_FLAG_CMDRECV: command response received (CRC check passed) flag - \arg SDIO_FLAG_CMDSEND: command sent (no response required) flag - \arg SDIO_FLAG_DTEND: data end (data counter, SDIO_DATACNT, is zero) flag - \arg SDIO_FLAG_STBITE: start bit error in the bus flag - \arg SDIO_FLAG_DTBLKEND: data block sent/received (CRC check passed) flag - \arg SDIO_FLAG_SDIOINT: SD I/O interrupt received flag - \arg SDIO_FLAG_ATAEND: CE-ATA command completion signal received (only for CMD61) flag - \param[out] none - \retval none -*/ -void sdio_flag_clear(uint32_t flag) -{ - SDIO_INTC = flag; -} - -/*! - \brief enable the SDIO interrupt - \param[in] int_flag: interrupt flags state of SDIO - one or more parameters can be selected which are shown as below: - \arg SDIO_INT_CCRCERR: SDIO CCRCERR interrupt - \arg SDIO_INT_DTCRCERR: SDIO DTCRCERR interrupt - \arg SDIO_INT_CMDTMOUT: SDIO CMDTMOUT interrupt - \arg SDIO_INT_DTTMOUT: SDIO DTTMOUT interrupt - \arg SDIO_INT_TXURE: SDIO TXURE interrupt - \arg SDIO_INT_RXORE: SDIO RXORE interrupt - \arg SDIO_INT_CMDRECV: SDIO CMDRECV interrupt - \arg SDIO_INT_CMDSEND: SDIO CMDSEND interrupt - \arg SDIO_INT_DTEND: SDIO DTEND interrupt - \arg SDIO_INT_STBITE: SDIO STBITE interrupt - \arg SDIO_INT_DTBLKEND: SDIO DTBLKEND interrupt - \arg SDIO_INT_CMDRUN: SDIO CMDRUN interrupt - \arg SDIO_INT_TXRUN: SDIO TXRUN interrupt - \arg SDIO_INT_RXRUN: SDIO RXRUN interrupt - \arg SDIO_INT_TFH: SDIO TFH interrupt - \arg SDIO_INT_RFH: SDIO RFH interrupt - \arg SDIO_INT_TFF: SDIO TFF interrupt - \arg SDIO_INT_RFF: SDIO RFF interrupt - \arg SDIO_INT_TFE: SDIO TFE interrupt - \arg SDIO_INT_RFE: SDIO RFE interrupt - \arg SDIO_INT_TXDTVAL: SDIO TXDTVAL interrupt - \arg SDIO_INT_RXDTVAL: SDIO RXDTVAL interrupt - \arg SDIO_INT_SDIOINT: SDIO SDIOINT interrupt - \arg SDIO_INT_ATAEND: SDIO ATAEND interrupt - \param[out] none - \retval none -*/ -void sdio_interrupt_enable(uint32_t int_flag) -{ - SDIO_INTEN |= int_flag; -} - -/*! - \brief disable the SDIO interrupt - \param[in] int_flag: interrupt flags state of SDIO - one or more parameters can be selected which are shown as below: - \arg SDIO_INT_CCRCERR: SDIO CCRCERR interrupt - \arg SDIO_INT_DTCRCERR: SDIO DTCRCERR interrupt - \arg SDIO_INT_CMDTMOUT: SDIO CMDTMOUT interrupt - \arg SDIO_INT_DTTMOUT: SDIO DTTMOUT interrupt - \arg SDIO_INT_TXURE: SDIO TXURE interrupt - \arg SDIO_INT_RXORE: SDIO RXORE interrupt - \arg SDIO_INT_CMDRECV: SDIO CMDRECV interrupt - \arg SDIO_INT_CMDSEND: SDIO CMDSEND interrupt - \arg SDIO_INT_DTEND: SDIO DTEND interrupt - \arg SDIO_INT_STBITE: SDIO STBITE interrupt - \arg SDIO_INT_DTBLKEND: SDIO DTBLKEND interrupt - \arg SDIO_INT_CMDRUN: SDIO CMDRUN interrupt - \arg SDIO_INT_TXRUN: SDIO TXRUN interrupt - \arg SDIO_INT_RXRUN: SDIO RXRUN interrupt - \arg SDIO_INT_TFH: SDIO TFH interrupt - \arg SDIO_INT_RFH: SDIO RFH interrupt - \arg SDIO_INT_TFF: SDIO TFF interrupt - \arg SDIO_INT_RFF: SDIO RFF interrupt - \arg SDIO_INT_TFE: SDIO TFE interrupt - \arg SDIO_INT_RFE: SDIO RFE interrupt - \arg SDIO_INT_TXDTVAL: SDIO TXDTVAL interrupt - \arg SDIO_INT_RXDTVAL: SDIO RXDTVAL interrupt - \arg SDIO_INT_SDIOINT: SDIO SDIOINT interrupt - \arg SDIO_INT_ATAEND: SDIO ATAEND interrupt - \param[out] none - \retval none -*/ -void sdio_interrupt_disable(uint32_t int_flag) -{ - SDIO_INTEN &= ~int_flag; -} - -/*! - \brief get the interrupt flags state of SDIO - \param[in] int_flag: interrupt flags state of SDIO - one or more parameters can be selected which are shown as below: - \arg SDIO_INT_FLAG_CCRCERR: SDIO CCRCERR interrupt flag - \arg SDIO_INT_FLAG_DTCRCERR: SDIO DTCRCERR interrupt flag - \arg SDIO_INT_FLAG_CMDTMOUT: SDIO CMDTMOUT interrupt flag - \arg SDIO_INT_FLAG_DTTMOUT: SDIO DTTMOUT interrupt flag - \arg SDIO_INT_FLAG_TXURE: SDIO TXURE interrupt flag - \arg SDIO_INT_FLAG_RXORE: SDIO RXORE interrupt flag - \arg SDIO_INT_FLAG_CMDRECV: SDIO CMDRECV interrupt flag - \arg SDIO_INT_FLAG_CMDSEND: SDIO CMDSEND interrupt flag - \arg SDIO_INT_FLAG_DTEND: SDIO DTEND interrupt flag - \arg SDIO_INT_FLAG_STBITE: SDIO STBITE interrupt flag - \arg SDIO_INT_FLAG_DTBLKEND: SDIO DTBLKEND interrupt flag - \arg SDIO_INT_FLAG_CMDRUN: SDIO CMDRUN interrupt flag - \arg SDIO_INT_FLAG_TXRUN: SDIO TXRUN interrupt flag - \arg SDIO_INT_FLAG_RXRUN: SDIO RXRUN interrupt flag - \arg SDIO_INT_FLAG_TFH: SDIO TFH interrupt flag - \arg SDIO_INT_FLAG_RFH: SDIO RFH interrupt flag - \arg SDIO_INT_FLAG_TFF: SDIO TFF interrupt flag - \arg SDIO_INT_FLAG_RFF: SDIO RFF interrupt flag - \arg SDIO_INT_FLAG_TFE: SDIO TFE interrupt flag - \arg SDIO_INT_FLAG_RFE: SDIO RFE interrupt flag - \arg SDIO_INT_FLAG_TXDTVAL: SDIO TXDTVAL interrupt flag - \arg SDIO_INT_FLAG_RXDTVAL: SDIO RXDTVAL interrupt flag - \arg SDIO_INT_FLAG_SDIOINT: SDIO SDIOINT interrupt flag - \arg SDIO_INT_FLAG_ATAEND: SDIO ATAEND interrupt flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus sdio_interrupt_flag_get(uint32_t int_flag) -{ - FlagStatus temp_flag = RESET; - if(RESET != (SDIO_STAT & int_flag)){ - temp_flag = SET; - } - return temp_flag; -} - -/*! - \brief clear the interrupt pending flags of SDIO - \param[in] int_flag: interrupt flags state of SDIO - one or more parameters can be selected which are shown as below: - \arg SDIO_INT_FLAG_CCRCERR: command response received (CRC check failed) flag - \arg SDIO_INT_FLAG_DTCRCERR: data block sent/received (CRC check failed) flag - \arg SDIO_INT_FLAG_CMDTMOUT: command response timeout flag - \arg SDIO_INT_FLAG_DTTMOUT: data timeout flag - \arg SDIO_INT_FLAG_TXURE: transmit FIFO underrun error occurs flag - \arg SDIO_INT_FLAG_RXORE: received FIFO overrun error occurs flag - \arg SDIO_INT_FLAG_CMDRECV: command response received (CRC check passed) flag - \arg SDIO_INT_FLAG_CMDSEND: command sent (no response required) flag - \arg SDIO_INT_FLAG_DTEND: data end (data counter, SDIO_DATACNT, is zero) flag - \arg SDIO_INT_FLAG_STBITE: start bit error in the bus flag - \arg SDIO_INT_FLAG_DTBLKEND: data block sent/received (CRC check passed) flag - \arg SDIO_INT_FLAG_SDIOINT: SD I/O interrupt received flag - \arg SDIO_INT_FLAG_ATAEND: CE-ATA command completion signal received (only for CMD61) flag - \param[out] none - \retval none -*/ -void sdio_interrupt_flag_clear(uint32_t int_flag) -{ - SDIO_INTC = int_flag; -} - -/*! - \brief enable the read wait mode(SD I/O only) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_readwait_enable(void) -{ - SDIO_DATACTL |= SDIO_DATACTL_RWEN; -} - -/*! - \brief disable the read wait mode(SD I/O only) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_readwait_disable(void) -{ - SDIO_DATACTL &= ~SDIO_DATACTL_RWEN; -} - -/*! - \brief enable the function that stop the read wait process(SD I/O only) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_stop_readwait_enable(void) -{ - SDIO_DATACTL |= SDIO_DATACTL_RWSTOP; -} - -/*! - \brief disable the function that stop the read wait process(SD I/O only) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_stop_readwait_disable(void) -{ - SDIO_DATACTL &= ~SDIO_DATACTL_RWSTOP; -} - -/*! - \brief set the read wait type(SD I/O only) - \param[in] readwait_type: SD I/O read wait type - only one parameter can be selected which is shown as below: - \arg SDIO_READWAITTYPE_CLK: read wait control by stopping SDIO_CLK - \arg SDIO_READWAITTYPE_DAT2: read wait control using SDIO_DAT[2] - \param[out] none - \retval none -*/ -void sdio_readwait_type_set(uint32_t readwait_type) -{ - if(SDIO_READWAITTYPE_CLK == readwait_type){ - SDIO_DATACTL |= SDIO_DATACTL_RWTYPE; - }else{ - SDIO_DATACTL &= ~SDIO_DATACTL_RWTYPE; - } -} - -/*! - \brief enable the SD I/O mode specific operation(SD I/O only) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_operation_enable(void) -{ - SDIO_DATACTL |= SDIO_DATACTL_IOEN; -} - -/*! - \brief disable the SD I/O mode specific operation(SD I/O only) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_operation_disable(void) -{ - SDIO_DATACTL &= ~SDIO_DATACTL_IOEN; -} - -/*! - \brief enable the SD I/O suspend operation(SD I/O only) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_suspend_enable(void) -{ - SDIO_CMDCTL |= SDIO_CMDCTL_SUSPEND; -} - -/*! - \brief disable the SD I/O suspend operation(SD I/O only) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_suspend_disable(void) -{ - SDIO_CMDCTL &= ~SDIO_CMDCTL_SUSPEND; -} - -/*! - \brief enable the CE-ATA command(CE-ATA only) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_ceata_command_enable(void) -{ - SDIO_CMDCTL |= SDIO_CMDCTL_ATAEN; -} - -/*! - \brief disable the CE-ATA command(CE-ATA only) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_ceata_command_disable(void) -{ - SDIO_CMDCTL &= ~SDIO_CMDCTL_ATAEN; -} - -/*! - \brief enable the CE-ATA interrupt(CE-ATA only) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_ceata_interrupt_enable(void) -{ - SDIO_CMDCTL &= ~SDIO_CMDCTL_NINTEN; -} - -/*! - \brief disable the CE-ATA interrupt(CE-ATA only) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_ceata_interrupt_disable(void) -{ - SDIO_CMDCTL |= SDIO_CMDCTL_NINTEN; -} - -/*! - \brief enable the CE-ATA command completion signal(CE-ATA only) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_ceata_command_completion_enable(void) -{ - SDIO_CMDCTL |= SDIO_CMDCTL_ENCMDC; -} - -/*! - \brief disable the CE-ATA command completion signal(CE-ATA only) - \param[in] none - \param[out] none - \retval none -*/ -void sdio_ceata_command_completion_disable(void) -{ - SDIO_CMDCTL &= ~SDIO_CMDCTL_ENCMDC; -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_spi.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_spi.c deleted file mode 100644 index 25917254ec..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_spi.c +++ /dev/null @@ -1,882 +0,0 @@ -/*! - \file gd32f4xx_spi.c - \brief SPI driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - - -#include "gd32f4xx_spi.h" -#include "gd32f4xx_rcu.h" - -/* SPI/I2S parameter initialization mask */ -#define SPI_INIT_MASK ((uint32_t)0x00003040U) /*!< SPI parameter initialization mask */ -#define I2S_INIT_MASK ((uint32_t)0x0000F047U) /*!< I2S parameter initialization mask */ -#define I2S_FULL_DUPLEX_MASK ((uint32_t)0x00000480U) /*!< I2S full duples mode configure parameter initialization mask */ - -/* default value */ -#define SPI_I2SPSC_DEFAULT_VALUE ((uint32_t)0x00000002U) /*!< default value of SPI_I2SPSC register */ - -/*! - \brief deinitialize SPI and I2S - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5),include I2S1_ADD and I2S2_ADD - \param[out] none - \retval none -*/ -void spi_i2s_deinit(uint32_t spi_periph) -{ - switch(spi_periph){ - case SPI0: - /* reset SPI0 */ - rcu_periph_reset_enable(RCU_SPI0RST); - rcu_periph_reset_disable(RCU_SPI0RST); - break; - case SPI1: - /* reset SPI1,I2S1 and I2S1_ADD */ - rcu_periph_reset_enable(RCU_SPI1RST); - rcu_periph_reset_disable(RCU_SPI1RST); - break; - case SPI2: - /* reset SPI2,I2S2 and I2S2_ADD */ - rcu_periph_reset_enable(RCU_SPI2RST); - rcu_periph_reset_disable(RCU_SPI2RST); - break; - case SPI3: - /* reset SPI3 */ - rcu_periph_reset_enable(RCU_SPI3RST); - rcu_periph_reset_disable(RCU_SPI3RST); - break; - case SPI4: - /* reset SPI4 */ - rcu_periph_reset_enable(RCU_SPI4RST); - rcu_periph_reset_disable(RCU_SPI4RST); - break; - case SPI5: - /* reset SPI5 */ - rcu_periph_reset_enable(RCU_SPI5RST); - rcu_periph_reset_disable(RCU_SPI5RST); - break; - default : - break; - } -} - -/*! - \brief initialize the parameters of SPI struct with default values - \param[in] none - \param[out] spi_parameter_struct: the initialized struct spi_parameter_struct pointer - \retval none -*/ -void spi_struct_para_init(spi_parameter_struct *spi_struct) -{ - /* configure the structure with default value */ - spi_struct->device_mode = SPI_SLAVE; - spi_struct->trans_mode = SPI_TRANSMODE_FULLDUPLEX; - spi_struct->frame_size = SPI_FRAMESIZE_8BIT; - spi_struct->nss = SPI_NSS_HARD; - spi_struct->clock_polarity_phase = SPI_CK_PL_LOW_PH_1EDGE; - spi_struct->prescale = SPI_PSC_2; - spi_struct->endian = SPI_ENDIAN_MSB; -} -/*! - \brief initialize SPI parameter - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[in] spi_struct: SPI parameter initialization stuct members of the structure - and the member values are shown as below: - device_mode: SPI_MASTER, SPI_SLAVE. - trans_mode: SPI_TRANSMODE_FULLDUPLEX, SPI_TRANSMODE_RECEIVEONLY, - SPI_TRANSMODE_BDRECEIVE, SPI_TRANSMODE_BDTRANSMIT - frame_size: SPI_FRAMESIZE_16BIT, SPI_FRAMESIZE_8BIT - nss: SPI_NSS_SOFT, SPI_NSS_HARD - endian: SPI_ENDIAN_MSB, SPI_ENDIAN_LSB - clock_polarity_phase: SPI_CK_PL_LOW_PH_1EDGE, SPI_CK_PL_HIGH_PH_1EDGE - SPI_CK_PL_LOW_PH_2EDGE, SPI_CK_PL_HIGH_PH_2EDGE - prescale: SPI_PSC_n (n=2,4,8,16,32,64,128,256) - \param[out] none - \retval none -*/ -void spi_init(uint32_t spi_periph, spi_parameter_struct* spi_struct) -{ - uint32_t reg = 0U; - reg = SPI_CTL0(spi_periph); - reg &= SPI_INIT_MASK; - - /* select SPI as master or slave */ - reg |= spi_struct->device_mode; - /* select SPI transfer mode */ - reg |= spi_struct->trans_mode; - /* select SPI frame size */ - reg |= spi_struct->frame_size; - /* select SPI nss use hardware or software */ - reg |= spi_struct->nss; - /* select SPI LSB or MSB */ - reg |= spi_struct->endian; - /* select SPI polarity and phase */ - reg |= spi_struct->clock_polarity_phase; - /* select SPI prescale to adjust transmit speed */ - reg |= spi_struct->prescale; - - /* write to SPI_CTL0 register */ - SPI_CTL0(spi_periph) = (uint32_t)reg; - - SPI_I2SCTL(spi_periph) &= (uint32_t)(~SPI_I2SCTL_I2SSEL); -} - -/*! - \brief enable SPI - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[out] none - \retval none -*/ -void spi_enable(uint32_t spi_periph) -{ - SPI_CTL0(spi_periph) |= (uint32_t)SPI_CTL0_SPIEN; -} - -/*! - \brief disable SPI - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[out] none - \retval none -*/ -void spi_disable(uint32_t spi_periph) -{ - SPI_CTL0(spi_periph) &= (uint32_t)(~SPI_CTL0_SPIEN); -} - -/*! - \brief initialize I2S parameter - \param[in] spi_periph: SPIx(x=1,2) - \param[in] i2s_mode: I2S operation mode - only one parameter can be selected which is shown as below: - \arg I2S_MODE_SLAVETX : I2S slave transmit mode - \arg I2S_MODE_SLAVERX : I2S slave receive mode - \arg I2S_MODE_MASTERTX : I2S master transmit mode - \arg I2S_MODE_MASTERRX : I2S master receive mode - \param[in] i2s_standard: I2S standard - only one parameter can be selected which is shown as below: - \arg I2S_STD_PHILLIPS : I2S phillips standard - \arg I2S_STD_MSB : I2S MSB standard - \arg I2S_STD_LSB : I2S LSB standard - \arg I2S_STD_PCMSHORT : I2S PCM short standard - \arg I2S_STD_PCMLONG : I2S PCM long standard - \param[in] i2s_ckpl: I2S idle state clock polarity - only one parameter can be selected which is shown as below: - \arg I2S_CKPL_LOW : I2S clock polarity low level - \arg I2S_CKPL_HIGH : I2S clock polarity high level - \param[out] none - \retval none -*/ -void i2s_init(uint32_t spi_periph, uint32_t i2s_mode, uint32_t i2s_standard, uint32_t i2s_ckpl) -{ - uint32_t reg= 0U; - reg = SPI_I2SCTL(spi_periph); - reg &= I2S_INIT_MASK; - - /* enable I2S mode */ - reg |= (uint32_t)SPI_I2SCTL_I2SSEL; - /* select I2S mode */ - reg |= (uint32_t)i2s_mode; - /* select I2S standard */ - reg |= (uint32_t)i2s_standard; - /* select I2S polarity */ - reg |= (uint32_t)i2s_ckpl; - - /* write to SPI_I2SCTL register */ - SPI_I2SCTL(spi_periph) = (uint32_t)reg; -} - -/*! - \brief configure I2S prescale - \param[in] spi_periph: SPIx(x=1,2) - \param[in] i2s_audiosample: I2S audio sample rate - only one parameter can be selected which is shown as below: - \arg I2S_AUDIOSAMPLE_8K: audio sample rate is 8KHz - \arg I2S_AUDIOSAMPLE_11K: audio sample rate is 11KHz - \arg I2S_AUDIOSAMPLE_16K: audio sample rate is 16KHz - \arg I2S_AUDIOSAMPLE_22K: audio sample rate is 22KHz - \arg I2S_AUDIOSAMPLE_32K: audio sample rate is 32KHz - \arg I2S_AUDIOSAMPLE_44K: audio sample rate is 44KHz - \arg I2S_AUDIOSAMPLE_48K: audio sample rate is 48KHz - \arg I2S_AUDIOSAMPLE_96K: audio sample rate is 96KHz - \arg I2S_AUDIOSAMPLE_192K: audio sample rate is 192KHz - \param[in] i2s_frameformat: I2S data length and channel length - only one parameter can be selected which is shown as below: - \arg I2S_FRAMEFORMAT_DT16B_CH16B: I2S data length is 16 bit and channel length is 16 bit - \arg I2S_FRAMEFORMAT_DT16B_CH32B: I2S data length is 16 bit and channel length is 32 bit - \arg I2S_FRAMEFORMAT_DT24B_CH32B: I2S data length is 24 bit and channel length is 32 bit - \arg I2S_FRAMEFORMAT_DT32B_CH32B: I2S data length is 32 bit and channel length is 32 bit - \param[in] i2s_mckout: I2S master clock output - only one parameter can be selected which is shown as below: - \arg I2S_MCKOUT_ENABLE: I2S master clock output enable - \arg I2S_MCKOUT_DISABLE: I2S master clock output disable - \param[out] none - \retval none -*/ -void i2s_psc_config(uint32_t spi_periph, uint32_t i2s_audiosample, uint32_t i2s_frameformat, uint32_t i2s_mckout) -{ - uint32_t i2sdiv = 2U, i2sof = 0U; - uint32_t clks = 0U; - uint32_t i2sclock = 0U; - -#ifndef I2S_EXTERNAL_CLOCK_IN - uint32_t plli2sm = 0U, plli2sn = 0U, plli2sr = 0U; -#endif /* I2S_EXTERNAL_CLOCK_IN */ - - /* deinit SPI_I2SPSC register */ - SPI_I2SPSC(spi_periph) = SPI_I2SPSC_DEFAULT_VALUE; - -#ifdef I2S_EXTERNAL_CLOCK_IN - rcu_i2s_clock_config(RCU_I2SSRC_I2S_CKIN); - - /* set the I2S clock to the external clock input value */ - i2sclock = I2S_EXTERNAL_CLOCK_IN; -#else - - /* turn on the oscillator HXTAL */ - rcu_osci_on(RCU_HXTAL); - /* wait for oscillator stabilization flags is SET */ - rcu_osci_stab_wait(RCU_HXTAL); - /* turn on the PLLI2S */ - rcu_osci_on(RCU_PLLI2S_CK); - /* wait for PLLI2S flags is SET */ - rcu_osci_stab_wait(RCU_PLLI2S_CK); - /* configure the I2S clock source selection */ - rcu_i2s_clock_config(RCU_I2SSRC_PLLI2S); - - /* get the RCU_PLL_PLLPSC value */ - plli2sm = (uint32_t)(RCU_PLL & RCU_PLL_PLLPSC); - /* get the RCU_PLLI2S_PLLI2SN value */ - plli2sn = (uint32_t)((RCU_PLLI2S & RCU_PLLI2S_PLLI2SN) >> 6); - /* get the RCU_PLLI2S_PLLI2SR value */ - plli2sr = (uint32_t)((RCU_PLLI2S & RCU_PLLI2S_PLLI2SR) >> 28); - - if((RCU_PLL & RCU_PLL_PLLSEL) == RCU_PLLSRC_HXTAL) - { - /* get the I2S source clock value */ - i2sclock = (uint32_t)(((HXTAL_VALUE / plli2sm) * plli2sn) / plli2sr); - } - else - { /* get the I2S source clock value */ - i2sclock = (uint32_t)(((IRC16M_VALUE / plli2sm) * plli2sn) / plli2sr); - } -#endif /* I2S_EXTERNAL_CLOCK_IN */ - - /* config the prescaler depending on the mclk output state, the frame format and audio sample rate */ - if(I2S_MCKOUT_ENABLE == i2s_mckout){ - clks = (uint32_t)(((i2sclock / 256U) * 10U) / i2s_audiosample); - }else{ - if(I2S_FRAMEFORMAT_DT16B_CH16B == i2s_frameformat){ - clks = (uint32_t)(((i2sclock / 32U) *10U ) / i2s_audiosample); - }else{ - clks = (uint32_t)(((i2sclock / 64U) *10U ) / i2s_audiosample); - } - } - /* remove the floating point */ - clks = (clks + 5U) / 10U; - i2sof = (clks & 0x00000001U); - i2sdiv = ((clks - i2sof) / 2U); - i2sof = (i2sof << 8U); - - /* set the default values */ - if((i2sdiv< 2U) || (i2sdiv > 255U)){ - i2sdiv = 2U; - i2sof = 0U; - } - - /* configure SPI_I2SPSC */ - SPI_I2SPSC(spi_periph) = (uint32_t)(i2sdiv | i2sof | i2s_mckout); - - /* clear SPI_I2SCTL_DTLEN and SPI_I2SCTL_CHLEN bits */ - SPI_I2SCTL(spi_periph) &= (uint32_t)(~(SPI_I2SCTL_DTLEN|SPI_I2SCTL_CHLEN)); - /* configure data frame format */ - SPI_I2SCTL(spi_periph) |= (uint32_t)i2s_frameformat; -} - -/*! - \brief enable I2S - \param[in] spi_periph: SPIx(x=1,2) - \param[out] none - \retval none -*/ -void i2s_enable(uint32_t spi_periph) -{ - SPI_I2SCTL(spi_periph) |= (uint32_t)SPI_I2SCTL_I2SEN; -} - -/*! - \brief disable I2S - \param[in] spi_periph: SPIx(x=1,2) - \param[out] none - \retval none -*/ -void i2s_disable(uint32_t spi_periph) -{ - SPI_I2SCTL(spi_periph) &= (uint32_t)(~SPI_I2SCTL_I2SEN); -} - -/*! - \brief enable SPI nss output - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[out] none - \retval none -*/ -void spi_nss_output_enable(uint32_t spi_periph) -{ - SPI_CTL1(spi_periph) |= (uint32_t)SPI_CTL1_NSSDRV; -} - -/*! - \brief disable SPI nss output - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[out] none - \retval none -*/ -void spi_nss_output_disable(uint32_t spi_periph) -{ - SPI_CTL1(spi_periph) &= (uint32_t)(~SPI_CTL1_NSSDRV); -} - -/*! - \brief SPI nss pin high level in software mode - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[out] none - \retval none -*/ -void spi_nss_internal_high(uint32_t spi_periph) -{ - SPI_CTL0(spi_periph) |= (uint32_t)SPI_CTL0_SWNSS; -} - -/*! - \brief SPI nss pin low level in software mode - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[out] none - \retval none -*/ -void spi_nss_internal_low(uint32_t spi_periph) -{ - SPI_CTL0(spi_periph) &= (uint32_t)(~SPI_CTL0_SWNSS); -} - -/*! - \brief enable SPI DMA send or receive - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[in] spi_dma: SPI DMA mode - only one parameter can be selected which is shown as below: - \arg SPI_DMA_TRANSMIT: SPI transmit data use DMA - \arg SPI_DMA_RECEIVE: SPI receive data use DMA - \param[out] none - \retval none -*/ -void spi_dma_enable(uint32_t spi_periph, uint8_t spi_dma) -{ - if(SPI_DMA_TRANSMIT == spi_dma){ - SPI_CTL1(spi_periph) |= (uint32_t)SPI_CTL1_DMATEN; - }else{ - SPI_CTL1(spi_periph) |= (uint32_t)SPI_CTL1_DMAREN; - } -} - -/*! - \brief diable SPI DMA send or receive - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[in] spi_dma: SPI DMA mode - only one parameter can be selected which is shown as below: - \arg SPI_DMA_TRANSMIT: SPI transmit data use DMA - \arg SPI_DMA_RECEIVE: SPI receive data use DMA - \param[out] none - \retval none -*/ -void spi_dma_disable(uint32_t spi_periph, uint8_t spi_dma) -{ - if(SPI_DMA_TRANSMIT == spi_dma){ - SPI_CTL1(spi_periph) &= (uint32_t)(~SPI_CTL1_DMATEN); - }else{ - SPI_CTL1(spi_periph) &= (uint32_t)(~SPI_CTL1_DMAREN); - } -} - -/*! - \brief configure SPI/I2S data frame format - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[in] frame_format: SPI frame size - only one parameter can be selected which is shown as below: - \arg SPI_FRAMESIZE_16BIT: SPI frame size is 16 bits - \arg SPI_FRAMESIZE_8BIT: SPI frame size is 8 bits - \param[out] none - \retval none -*/ -void spi_i2s_data_frame_format_config(uint32_t spi_periph, uint16_t frame_format) -{ - /* clear SPI_CTL0_FF16 bit */ - SPI_CTL0(spi_periph) &= (uint32_t)(~SPI_CTL0_FF16); - /* configure SPI_CTL0_FF16 bit */ - SPI_CTL0(spi_periph) |= (uint32_t)frame_format; -} - -/*! - \brief SPI transmit data - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[in] data: 16-bit data - \param[out] none - \retval none -*/ -void spi_i2s_data_transmit(uint32_t spi_periph, uint16_t data) -{ - SPI_DATA(spi_periph) = (uint32_t)data; -} - -/*! - \brief SPI receive data - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[out] none - \retval 16-bit data -*/ -uint16_t spi_i2s_data_receive(uint32_t spi_periph) -{ - return ((uint16_t)SPI_DATA(spi_periph)); -} - -/*! - \brief configure SPI bidirectional transfer direction - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[in] transfer_direction: SPI transfer direction - only one parameter can be selected which is shown as below: - \arg SPI_BIDIRECTIONAL_TRANSMIT: SPI work in transmit-only mode - \arg SPI_BIDIRECTIONAL_RECEIVE: SPI work in receive-only mode - \retval none -*/ -void spi_bidirectional_transfer_config(uint32_t spi_periph, uint32_t transfer_direction) -{ - if(SPI_BIDIRECTIONAL_TRANSMIT == transfer_direction){ - /* set the transmit only mode */ - SPI_CTL0(spi_periph) |= (uint32_t)SPI_BIDIRECTIONAL_TRANSMIT; - }else{ - /* set the receive only mode */ - SPI_CTL0(spi_periph) &= SPI_BIDIRECTIONAL_RECEIVE; - } -} - -/*! - \brief set SPI CRC polynomial - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[in] crc_poly: CRC polynomial value - \param[out] none - \retval none -*/ -void spi_crc_polynomial_set(uint32_t spi_periph,uint16_t crc_poly) -{ - /* enable SPI CRC */ - SPI_CTL0(spi_periph) |= (uint32_t)SPI_CTL0_CRCEN; - - /* set SPI CRC polynomial */ - SPI_CRCPOLY(spi_periph) = (uint32_t)crc_poly; -} - -/*! - \brief get SPI CRC polynomial - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[out] none - \retval 16-bit CRC polynomial -*/ -uint16_t spi_crc_polynomial_get(uint32_t spi_periph) -{ - return ((uint16_t)SPI_CRCPOLY(spi_periph)); -} - -/*! - \brief turn on CRC function - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[out] none - \retval none -*/ -void spi_crc_on(uint32_t spi_periph) -{ - SPI_CTL0(spi_periph) |= (uint32_t)SPI_CTL0_CRCEN; -} - -/*! - \brief turn off CRC function - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[out] none - \retval none -*/ -void spi_crc_off(uint32_t spi_periph) -{ - SPI_CTL0(spi_periph) &= (uint32_t)(~SPI_CTL0_CRCEN); -} - -/*! - \brief SPI next data is CRC value - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[out] none - \retval none -*/ -void spi_crc_next(uint32_t spi_periph) -{ - SPI_CTL0(spi_periph) |= (uint32_t)SPI_CTL0_CRCNT; -} - -/*! - \brief get SPI CRC send value or receive value - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[in] spi_crc: SPI crc value - only one parameter can be selected which is shown as below: - \arg SPI_CRC_TX: get transmit crc value - \arg SPI_CRC_RX: get receive crc value - \param[out] none - \retval 16-bit CRC value -*/ -uint16_t spi_crc_get(uint32_t spi_periph,uint8_t spi_crc) -{ - if(SPI_CRC_TX == spi_crc){ - return ((uint16_t)(SPI_TCRC(spi_periph))); - }else{ - return ((uint16_t)(SPI_RCRC(spi_periph))); - } -} - -/*! - \brief enable SPI TI mode - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[out] none - \retval none -*/ -void spi_ti_mode_enable(uint32_t spi_periph) -{ - SPI_CTL1(spi_periph) |= (uint32_t)SPI_CTL1_TMOD; -} - -/*! - \brief disable SPI TI mode - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[out] none - \retval none -*/ -void spi_ti_mode_disable(uint32_t spi_periph) -{ - SPI_CTL1(spi_periph) &= (uint32_t)(~SPI_CTL1_TMOD); -} - -/*! - \brief configure i2s full duplex mode - \param[in] i2s_add_periph: I2Sx_ADD(x=1,2) - \param[in] i2s_mode: - \arg I2S_MODE_SLAVETX : I2S slave transmit mode - \arg I2S_MODE_SLAVERX : I2S slave receive mode - \arg I2S_MODE_MASTERTX : I2S master transmit mode - \arg I2S_MODE_MASTERRX : I2S master receive mode - \param[in] i2s_standard: - \arg I2S_STD_PHILLIPS : I2S phillips standard - \arg I2S_STD_MSB : I2S MSB standard - \arg I2S_STD_LSB : I2S LSB standard - \arg I2S_STD_PCMSHORT : I2S PCM short standard - \arg I2S_STD_PCMLONG : I2S PCM long standard - \param[in] i2s_ckpl: - \arg I2S_CKPL_LOW : I2S clock polarity low level - \arg I2S_CKPL_HIGH : I2S clock polarity high level - \param[in] i2s_frameformat: - \arg I2S_FRAMEFORMAT_DT16B_CH16B: I2S data length is 16 bit and channel length is 16 bit - \arg I2S_FRAMEFORMAT_DT16B_CH32B: I2S data length is 16 bit and channel length is 32 bit - \arg I2S_FRAMEFORMAT_DT24B_CH32B: I2S data length is 24 bit and channel length is 32 bit - \arg I2S_FRAMEFORMAT_DT32B_CH32B: I2S data length is 32 bit and channel length is 32 bit - \param[out] none - \retval none -*/ -void i2s_full_duplex_mode_config(uint32_t i2s_add_periph, uint32_t i2s_mode, uint32_t i2s_standard, - uint32_t i2s_ckpl, uint32_t i2s_frameformat) -{ - uint32_t reg = 0U, tmp = 0U; - - reg = I2S_ADD_I2SCTL(i2s_add_periph); - reg &= I2S_FULL_DUPLEX_MASK; - - /* get the mode of the extra I2S module I2Sx_ADD */ - if((I2S_MODE_MASTERTX == i2s_mode) || (I2S_MODE_SLAVETX == i2s_mode)){ - tmp = I2S_MODE_SLAVERX; - }else{ - tmp = I2S_MODE_SLAVETX; - } - - /* enable I2S mode */ - reg |= (uint32_t)SPI_I2SCTL_I2SSEL; - /* select I2S mode */ - reg |= (uint32_t)tmp; - /* select I2S standard */ - reg |= (uint32_t)i2s_standard; - /* select I2S polarity */ - reg |= (uint32_t)i2s_ckpl; - /* configure data frame format */ - reg |= (uint32_t)i2s_frameformat; - - /* write to SPI_I2SCTL register */ - I2S_ADD_I2SCTL(i2s_add_periph) = (uint32_t)reg; -} - -/*! - \brief enable quad wire SPI - \param[in] spi_periph: SPIx(only x=5) - \param[out] none - \retval none -*/ -void qspi_enable(uint32_t spi_periph) -{ - SPI_QCTL(spi_periph) |= (uint32_t)SPI_QCTL_QMOD; -} - -/*! - \brief disable quad wire SPI - \param[in] spi_periph: SPIx(only x=5) - \param[out] none - \retval none -*/ -void qspi_disable(uint32_t spi_periph) -{ - SPI_QCTL(spi_periph) &= (uint32_t)(~SPI_QCTL_QMOD); -} - -/*! - \brief enable quad wire SPI write - \param[in] spi_periph: SPIx(only x=5) - \param[out] none - \retval none -*/ -void qspi_write_enable(uint32_t spi_periph) -{ - SPI_QCTL(spi_periph) &= (uint32_t)(~SPI_QCTL_QRD); -} - -/*! - \brief enable quad wire SPI read - \param[in] spi_periph: SPIx(only x=5) - \param[out] none - \retval none -*/ -void qspi_read_enable(uint32_t spi_periph) -{ - SPI_QCTL(spi_periph) |= (uint32_t)SPI_QCTL_QRD; -} - -/*! - \brief enable SPI_IO2 and SPI_IO3 pin output - \param[in] spi_periph: SPIx(only x=5) - \param[out] none - \retval none -*/ -void qspi_io23_output_enable(uint32_t spi_periph) -{ - SPI_QCTL(spi_periph) |= (uint32_t)SPI_QCTL_IO23_DRV; -} - - /*! - \brief disable SPI_IO2 and SPI_IO3 pin output - \param[in] spi_periph: SPIx(only x=5) - \param[out] none - \retval none -*/ - void qspi_io23_output_disable(uint32_t spi_periph) -{ - SPI_QCTL(spi_periph) &= (uint32_t)(~SPI_QCTL_IO23_DRV); -} - -/*! - \brief enable SPI and I2S interrupt - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[in] spi_i2s_int: SPI/I2S interrupt - only one parameter can be selected which is shown as below: - \arg SPI_I2S_INT_TBE: transmit buffer empty interrupt - \arg SPI_I2S_INT_RBNE: receive buffer not empty interrupt - \arg SPI_I2S_INT_ERR: CRC error,configuration error,reception overrun error, - transmission underrun error and format error interrupt - \param[out] none - \retval none -*/ -void spi_i2s_interrupt_enable(uint32_t spi_periph, uint8_t spi_i2s_int) -{ - switch(spi_i2s_int){ - /* SPI/I2S transmit buffer empty interrupt */ - case SPI_I2S_INT_TBE: - SPI_CTL1(spi_periph) |= (uint32_t)SPI_CTL1_TBEIE; - break; - /* SPI/I2S receive buffer not empty interrupt */ - case SPI_I2S_INT_RBNE: - SPI_CTL1(spi_periph) |= (uint32_t)SPI_CTL1_RBNEIE; - break; - /* SPI/I2S error */ - case SPI_I2S_INT_ERR: - SPI_CTL1(spi_periph) |= (uint32_t)SPI_CTL1_ERRIE; - break; - default: - break; - } -} - -/*! - \brief disable SPI and I2S interrupt - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[in] spi_i2s_int: SPI/I2S interrupt - only one parameter can be selected which is shown as below: - \arg SPI_I2S_INT_TBE: transmit buffer empty interrupt - \arg SPI_I2S_INT_RBNE: receive buffer not empty interrupt - \arg SPI_I2S_INT_ERR: CRC error,configuration error,reception overrun error, - transmission underrun error and format error interrupt - \param[out] none - \retval none -*/ -void spi_i2s_interrupt_disable(uint32_t spi_periph, uint8_t spi_i2s_int) -{ - switch(spi_i2s_int){ - /* SPI/I2S transmit buffer empty interrupt */ - case SPI_I2S_INT_TBE : - SPI_CTL1(spi_periph) &= (uint32_t)(~SPI_CTL1_TBEIE); - break; - /* SPI/I2S receive buffer not empty interrupt */ - case SPI_I2S_INT_RBNE : - SPI_CTL1(spi_periph) &= (uint32_t)(~SPI_CTL1_RBNEIE); - break; - /* SPI/I2S error */ - case SPI_I2S_INT_ERR : - SPI_CTL1(spi_periph) &= (uint32_t)(~SPI_CTL1_ERRIE); - break; - default : - break; - } -} - -/*! - \brief get SPI and I2S interrupt flag status - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[in] spi_i2s_int: SPI/I2S interrupt flag status - \arg SPI_I2S_INT_FLAG_TBE: transmit buffer empty interrupt flag - \arg SPI_I2S_INT_FLAG_RBNE: receive buffer not empty interrupt flag - \arg SPI_I2S_INT_FLAG_RXORERR: overrun interrupt flag - \arg SPI_INT_FLAG_CONFERR: config error interrupt flag - \arg SPI_INT_FLAG_CRCERR: CRC error interrupt flag - \arg I2S_INT_FLAG_TXURERR: underrun error interrupt flag - \arg SPI_I2S_INT_FLAG_FERR: format error interrupt flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus spi_i2s_interrupt_flag_get(uint32_t spi_periph, uint8_t spi_i2s_int) -{ - uint32_t reg1 = SPI_STAT(spi_periph); - uint32_t reg2 = SPI_CTL1(spi_periph); - - switch(spi_i2s_int){ - /* SPI/I2S transmit buffer empty interrupt */ - case SPI_I2S_INT_FLAG_TBE : - reg1 = reg1 & SPI_STAT_TBE; - reg2 = reg2 & SPI_CTL1_TBEIE; - break; - /* SPI/I2S receive buffer not empty interrupt */ - case SPI_I2S_INT_FLAG_RBNE : - reg1 = reg1 & SPI_STAT_RBNE; - reg2 = reg2 & SPI_CTL1_RBNEIE; - break; - /* SPI/I2S overrun interrupt */ - case SPI_I2S_INT_FLAG_RXORERR : - reg1 = reg1 & SPI_STAT_RXORERR; - reg2 = reg2 & SPI_CTL1_ERRIE; - break; - /* SPI config error interrupt */ - case SPI_INT_FLAG_CONFERR : - reg1 = reg1 & SPI_STAT_CONFERR; - reg2 = reg2 & SPI_CTL1_ERRIE; - break; - /* SPI CRC error interrupt */ - case SPI_INT_FLAG_CRCERR : - reg1 = reg1 & SPI_STAT_CRCERR; - reg2 = reg2 & SPI_CTL1_ERRIE; - break; - /* I2S underrun error interrupt */ - case I2S_INT_FLAG_TXURERR : - reg1 = reg1 & SPI_STAT_TXURERR; - reg2 = reg2 & SPI_CTL1_ERRIE; - break; - /* SPI/I2S format error interrupt */ - case SPI_I2S_INT_FLAG_FERR : - reg1 = reg1 & SPI_STAT_FERR; - reg2 = reg2 & SPI_CTL1_ERRIE; - break; - default : - break; - } - /*get SPI/I2S interrupt flag status */ - if(reg1 && reg2){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief get SPI and I2S flag status - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[in] spi_i2s_flag: SPI/I2S flag status - \arg SPI_FLAG_TBE: transmit buffer empty flag - \arg SPI_FLAG_RBNE: receive buffer not empty flag - \arg SPI_FLAG_TRANS: transmit on-going flag - \arg SPI_FLAG_RXORERR: receive overrun error flag - \arg SPI_FLAG_CONFERR: mode config error flag - \arg SPI_FLAG_CRCERR: CRC error flag - \arg SPI_FLAG_FERR: format error flag - \arg I2S_FLAG_TBE: transmit buffer empty flag - \arg I2S_FLAG_RBNE: receive buffer not empty flag - \arg I2S_FLAG_TRANS: transmit on-going flag - \arg I2S_FLAG_RXORERR: overrun error flag - \arg I2S_FLAG_TXURERR: underrun error flag - \arg I2S_FLAG_CH: channel side flag - \arg I2S_FLAG_FERR: format error flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus spi_i2s_flag_get(uint32_t spi_periph, uint32_t spi_i2s_flag) -{ - if(SPI_STAT(spi_periph) & spi_i2s_flag){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear SPI CRC error flag status - \param[in] spi_periph: SPIx(x=0,1,2,3,4,5) - \param[out] none - \retval none -*/ -void spi_crc_error_clear(uint32_t spi_periph) -{ - SPI_STAT(spi_periph) &= (uint32_t)(~SPI_FLAG_CRCERR); -} - diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_syscfg.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_syscfg.c deleted file mode 100644 index 0f6133a2c7..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_syscfg.c +++ /dev/null @@ -1,204 +0,0 @@ -/*! - \file gd32f4xx_syscfg.c - \brief SYSCFG driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_syscfg.h" - -/*! - \brief reset the SYSCFG registers - \param[in] none - \param[out] none - \retval none -*/ -void syscfg_deinit(void) -{ - rcu_periph_reset_enable(RCU_SYSCFGRST); - rcu_periph_reset_disable(RCU_SYSCFGRST); -} - -/*! - \brief configure the boot mode - \param[in] syscfg_bootmode: selects the memory remapping - only one parameter can be selected which is shown as below: - \arg SYSCFG_BOOTMODE_FLASH: main flash memory (0x08000000~0x083BFFFF) is mapped at address 0x00000000 - \arg SYSCFG_BOOTMODE_BOOTLOADER: boot loader (0x1FFF0000 - 0x1FFF77FF) is mapped at address 0x00000000 - \arg SYSCFG_BOOTMODE_EXMC_SRAM: SRAM/NOR 0 and 1 of EXMC (0x60000000~0x67FFFFFF) is mapped at address 0x00000000 - \arg SYSCFG_BOOTMODE_SRAM: SRAM0 of on-chip SRAM (0x20000000~0x2001BFFF) is mapped at address 0x00000000 - \arg SYSCFG_BOOTMODE_EXMC_SDRAM: SDRAM bank0 of EXMC (0xC0000000~0xC7FFFFFF) is mapped at address 0x00000000 - \param[out] none - \retval none -*/ -void syscfg_bootmode_config(uint8_t syscfg_bootmode) -{ - /* reset the SYSCFG_CFG0_BOOT_MODE bit and set according to syscfg_bootmode */ - SYSCFG_CFG0 &= ~SYSCFG_CFG0_BOOT_MODE; - SYSCFG_CFG0 |= (uint32_t)syscfg_bootmode; -} - -/*! - \brief FMC memory mapping swap - \param[in] syscfg_fmc_swap: selects the interal flash bank swapping - only one parameter can be selected which is shown as below: - \arg SYSCFG_FMC_SWP_BANK0: bank 0 is mapped at address 0x08000000 and bank 1 is mapped at address 0x08100000 - \arg SYSCFG_FMC_SWP_BANK1: bank 1 is mapped at address 0x08000000 and bank 0 is mapped at address 0x08100000 - \param[out] none - \retval none -*/ -void syscfg_fmc_swap_config(uint32_t syscfg_fmc_swap) -{ - uint32_t reg; - reg = SYSCFG_CFG0; - /* reset the FMC_SWP bit and set according to syscfg_fmc_swap */ - reg &= ~SYSCFG_CFG0_FMC_SWP; - SYSCFG_CFG0 = (reg | syscfg_fmc_swap); -} - -/*! - \brief EXMC memory mapping swap - \param[in] syscfg_exmc_swap: selects the memories in EXMC swapping - only one parameter can be selected which is shown as below: - \arg SYSCFG_EXMC_SWP_ENABLE: SDRAM bank 0 and bank 1 are swapped with NAND bank 1 and PC card - \arg SYSCFG_EXMC_SWP_DISABLE: no memory mapping swap - \param[out] none - \retval none -*/ -void syscfg_exmc_swap_config(uint32_t syscfg_exmc_swap) -{ - uint32_t reg; - - reg = SYSCFG_CFG0; - /* reset the SYSCFG_CFG0_EXMC_SWP bits and set according to syscfg_exmc_swap */ - reg &= ~SYSCFG_CFG0_EXMC_SWP; - SYSCFG_CFG0 = (reg | syscfg_exmc_swap); -} - -/*! - \brief configure the GPIO pin as EXTI Line - \param[in] exti_port: specify the GPIO port used in EXTI - only one parameter can be selected which is shown as below: - \arg EXTI_SOURCE_GPIOx(x = A,B,C,D,E,F,G,H,I): EXTI GPIO port - \param[in] exti_pin: specify the EXTI line - only one parameter can be selected which is shown as below: - \arg EXTI_SOURCE_PINx(x = 0..15): EXTI GPIO pin - \param[out] none - \retval none -*/ -void syscfg_exti_line_config(uint8_t exti_port, uint8_t exti_pin) -{ - uint32_t clear_exti_mask = ~((uint32_t)EXTI_SS_MASK << (EXTI_SS_MSTEP(exti_pin))); - uint32_t config_exti_mask = ((uint32_t)exti_port) << (EXTI_SS_MSTEP(exti_pin)); - - switch(exti_pin/EXTI_SS_JSTEP){ - case EXTISS0: - /* clear EXTI source line(0..3) */ - SYSCFG_EXTISS0 &= clear_exti_mask; - /* configure EXTI soure line(0..3) */ - SYSCFG_EXTISS0 |= config_exti_mask; - break; - case EXTISS1: - /* clear EXTI soure line(4..7) */ - SYSCFG_EXTISS1 &= clear_exti_mask; - /* configure EXTI soure line(4..7) */ - SYSCFG_EXTISS1 |= config_exti_mask; - break; - case EXTISS2: - /* clear EXTI soure line(8..11) */ - SYSCFG_EXTISS2 &= clear_exti_mask; - /* configure EXTI soure line(8..11) */ - SYSCFG_EXTISS2 |= config_exti_mask; - break; - case EXTISS3: - /* clear EXTI soure line(12..15) */ - SYSCFG_EXTISS3 &= clear_exti_mask; - /* configure EXTI soure line(12..15) */ - SYSCFG_EXTISS3 |= config_exti_mask; - break; - default: - break; - } -} - -/*! - \brief configure the PHY interface for the ethernet MAC - \param[in] syscfg_enet_phy_interface: specifies the media interface mode. - only one parameter can be selected which is shown as below: - \arg SYSCFG_ENET_PHY_MII: MII mode is selected - \arg SYSCFG_ENET_PHY_RMII: RMII mode is selected - \param[out] none - \retval none -*/ -void syscfg_enet_phy_interface_config(uint32_t syscfg_enet_phy_interface) -{ - uint32_t reg; - - reg = SYSCFG_CFG1; - /* reset the ENET_PHY_SEL bit and set according to syscfg_enet_phy_interface */ - reg &= ~SYSCFG_CFG1_ENET_PHY_SEL; - SYSCFG_CFG1 = (reg | syscfg_enet_phy_interface); -} - -/*! - \brief configure the I/O compensation cell - \param[in] syscfg_compensation: specifies the I/O compensation cell mode - only one parameter can be selected which is shown as below: - \arg SYSCFG_COMPENSATION_ENABLE: I/O compensation cell is enabled - \arg SYSCFG_COMPENSATION_DISABLE: I/O compensation cell is disabled - \param[out] none - \retval none -*/ -void syscfg_compensation_config(uint32_t syscfg_compensation) -{ - uint32_t reg; - - reg = SYSCFG_CPSCTL; - /* reset the SYSCFG_CPSCTL_CPS_EN bit and set according to syscfg_compensation */ - reg &= ~SYSCFG_CPSCTL_CPS_EN; - SYSCFG_CPSCTL = (reg | syscfg_compensation); -} - -/*! - \brief checks whether the I/O compensation cell ready flag is set or not - \param[in] none - \param[out] none - \retval FlagStatus: SET or RESET - */ -FlagStatus syscfg_flag_get(void) -{ - if(((uint32_t)RESET) != (SYSCFG_CPSCTL & SYSCFG_CPSCTL_CPS_RDY)){ - return SET; - }else{ - return RESET; - } -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_timer.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_timer.c deleted file mode 100644 index ce78de29dd..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_timer.c +++ /dev/null @@ -1,2063 +0,0 @@ -/*! - \file gd32f4xx_timer.c - \brief TIMER driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - - -#include "gd32f4xx_timer.h" - -/*! - \brief deinit a TIMER - \param[in] timer_periph: TIMERx(x=0..13) - \param[out] none - \retval none -*/ -void timer_deinit(uint32_t timer_periph) -{ - switch(timer_periph){ - case TIMER0: - /* reset TIMER0 */ - rcu_periph_reset_enable(RCU_TIMER0RST); - rcu_periph_reset_disable(RCU_TIMER0RST); - break; - case TIMER1: - /* reset TIMER1 */ - rcu_periph_reset_enable(RCU_TIMER1RST); - rcu_periph_reset_disable(RCU_TIMER1RST); - break; - case TIMER2: - /* reset TIMER2 */ - rcu_periph_reset_enable(RCU_TIMER2RST); - rcu_periph_reset_disable(RCU_TIMER2RST); - break; - case TIMER3: - /* reset TIMER3 */ - rcu_periph_reset_enable(RCU_TIMER3RST); - rcu_periph_reset_disable(RCU_TIMER3RST); - break; - case TIMER4: - /* reset TIMER4 */ - rcu_periph_reset_enable(RCU_TIMER4RST); - rcu_periph_reset_disable(RCU_TIMER4RST); - break; - case TIMER5: - /* reset TIMER5 */ - rcu_periph_reset_enable(RCU_TIMER5RST); - rcu_periph_reset_disable(RCU_TIMER5RST); - break; - case TIMER6: - /* reset TIMER6 */ - rcu_periph_reset_enable(RCU_TIMER6RST); - rcu_periph_reset_disable(RCU_TIMER6RST); - break; - case TIMER7: - /* reset TIMER7 */ - rcu_periph_reset_enable(RCU_TIMER7RST); - rcu_periph_reset_disable(RCU_TIMER7RST); - break; - case TIMER8: - /* reset TIMER8 */ - rcu_periph_reset_enable(RCU_TIMER8RST); - rcu_periph_reset_disable(RCU_TIMER8RST); - break; - case TIMER9: - /* reset TIMER9 */ - rcu_periph_reset_enable(RCU_TIMER9RST); - rcu_periph_reset_disable(RCU_TIMER9RST); - break; - case TIMER10: - /* reset TIMER10 */ - rcu_periph_reset_enable(RCU_TIMER10RST); - rcu_periph_reset_disable(RCU_TIMER10RST); - break; - case TIMER11: - /* reset TIMER11 */ - rcu_periph_reset_enable(RCU_TIMER11RST); - rcu_periph_reset_disable(RCU_TIMER11RST); - break; - case TIMER12: - /* reset TIMER12 */ - rcu_periph_reset_enable(RCU_TIMER12RST); - rcu_periph_reset_disable(RCU_TIMER12RST); - break; - case TIMER13: - /* reset TIMER13 */ - rcu_periph_reset_enable(RCU_TIMER13RST); - rcu_periph_reset_disable(RCU_TIMER13RST); - break; - default: - break; - } -} - -/*! - \brief initialize TIMER init parameter struct with a default value - \param[in] initpara: init parameter struct - \param[out] none - \retval none -*/ -void timer_struct_para_init(timer_parameter_struct* initpara) -{ - /* initialize the init parameter struct member with the default value */ - initpara->prescaler = 0U; - initpara->alignedmode = TIMER_COUNTER_EDGE; - initpara->counterdirection = TIMER_COUNTER_UP; - initpara->period = 65535U; - initpara->clockdivision = TIMER_CKDIV_DIV1; - initpara->repetitioncounter = 0U; -} - -/*! - \brief initialize TIMER counter - \param[in] timer_periph: TIMERx(x=0..13) - \param[in] initpara: init parameter struct - prescaler: prescaler value of the counter clock,0~65535 - alignedmode: TIMER_COUNTER_EDGE,TIMER_COUNTER_CENTER_DOWN,TIMER_COUNTER_CENTER_UP,TIMER_COUNTER_CENTER_BOTH - counterdirection: TIMER_COUNTER_UP,TIMER_COUNTER_DOWN - period: counter auto reload value,(TIMER1,TIMER4,32 bit) - clockdivision: TIMER_CKDIV_DIV1,TIMER_CKDIV_DIV2,TIMER_CKDIV_DIV4 - repetitioncounter: counter repetition value,0~255 - \param[out] none - \retval none -*/ -void timer_init(uint32_t timer_periph, timer_parameter_struct* initpara) -{ - /* configure the counter prescaler value */ - TIMER_PSC(timer_periph) = (uint16_t)initpara->prescaler; - - /* configure the counter direction and aligned mode */ - if((TIMER0 == timer_periph) || (TIMER1 == timer_periph) || (TIMER2 == timer_periph) - || (TIMER3 == timer_periph) || (TIMER4 == timer_periph) || (TIMER7 == timer_periph)){ - TIMER_CTL0(timer_periph) &= ~(uint32_t)(TIMER_CTL0_DIR|TIMER_CTL0_CAM); - TIMER_CTL0(timer_periph) |= (uint32_t)initpara->alignedmode; - TIMER_CTL0(timer_periph) |= (uint32_t)initpara->counterdirection; - } - - /* configure the autoreload value */ - TIMER_CAR(timer_periph) = (uint32_t)initpara->period; - - if((TIMER5 != timer_periph) && (TIMER6 != timer_periph)){ - /* reset the CKDIV bit */ - TIMER_CTL0(timer_periph) &= ~(uint32_t)TIMER_CTL0_CKDIV; - TIMER_CTL0(timer_periph) |= (uint32_t)initpara->clockdivision; - } - - if((TIMER0 == timer_periph) || (TIMER7 == timer_periph)){ - /* configure the repetition counter value */ - TIMER_CREP(timer_periph) = (uint32_t)initpara->repetitioncounter; - } - - /* generate an update event */ - TIMER_SWEVG(timer_periph) |= (uint32_t)TIMER_SWEVG_UPG; -} - -/*! - \brief enable a TIMER - \param[in] timer_periph: TIMERx(x=0..13) - \param[out] none - \retval none -*/ -void timer_enable(uint32_t timer_periph) -{ - TIMER_CTL0(timer_periph) |= (uint32_t)TIMER_CTL0_CEN; -} - -/*! - \brief disable a TIMER - \param[in] timer_periph: TIMERx(x=0..13) - \param[out] none - \retval none -*/ -void timer_disable(uint32_t timer_periph) -{ - TIMER_CTL0(timer_periph) &= ~(uint32_t)TIMER_CTL0_CEN; -} - -/*! - \brief enable the auto reload shadow function - \param[in] timer_periph: TIMERx(x=0..13) - \param[out] none - \retval none -*/ -void timer_auto_reload_shadow_enable(uint32_t timer_periph) -{ - TIMER_CTL0(timer_periph) |= (uint32_t)TIMER_CTL0_ARSE; -} - -/*! - \brief disable the auto reload shadow function - \param[in] timer_periph: TIMERx(x=0..13) - \param[out] none - \retval none -*/ -void timer_auto_reload_shadow_disable(uint32_t timer_periph) -{ - TIMER_CTL0(timer_periph) &= ~(uint32_t)TIMER_CTL0_ARSE; -} - -/*! - \brief enable the update event - \param[in] timer_periph: TIMERx(x=0..13) - \param[out] none - \retval none -*/ -void timer_update_event_enable(uint32_t timer_periph) -{ - TIMER_CTL0(timer_periph) &= ~(uint32_t)TIMER_CTL0_UPDIS; -} - -/*! - \brief disable the update event - \param[in] timer_periph: TIMERx(x=0..13) - \param[out] none - \retval none -*/ -void timer_update_event_disable(uint32_t timer_periph) -{ - TIMER_CTL0(timer_periph) |= (uint32_t) TIMER_CTL0_UPDIS; -} - -/*! - \brief set TIMER counter alignment mode - \param[in] timer_periph: TIMERx(x=0..4,7) - \param[in] aligned: - only one parameter can be selected which is shown as below: - \arg TIMER_COUNTER_EDGE: edge-aligned mode - \arg TIMER_COUNTER_CENTER_DOWN: center-aligned and counting down assert mode - \arg TIMER_COUNTER_CENTER_UP: center-aligned and counting up assert mode - \arg TIMER_COUNTER_CENTER_BOTH: center-aligned and counting up/down assert mode - \param[out] none - \retval none -*/ -void timer_counter_alignment(uint32_t timer_periph, uint16_t aligned) -{ - TIMER_CTL0(timer_periph) &= ~(uint32_t)TIMER_CTL0_CAM; - TIMER_CTL0(timer_periph) |= (uint32_t)aligned; -} - -/*! - \brief set TIMER counter up direction - \param[in] timer_periph: TIMERx(x=0..4,7) - \param[out] none - \retval none -*/ -void timer_counter_up_direction(uint32_t timer_periph) -{ - TIMER_CTL0(timer_periph) &= ~(uint32_t)TIMER_CTL0_DIR; -} - -/*! - \brief set TIMER counter down direction - \param[in] timer_periph: TIMERx(x=0..4,7) - \param[out] none - \retval none -*/ -void timer_counter_down_direction(uint32_t timer_periph) -{ - TIMER_CTL0(timer_periph) |= (uint32_t)TIMER_CTL0_DIR; -} - -/*! - \brief configure TIMER prescaler - \param[in] timer_periph: TIMERx(x=0..13) - \param[in] prescaler: prescaler value,0~65535 - \param[in] pscreload: prescaler reload mode - only one parameter can be selected which is shown as below: - \arg TIMER_PSC_RELOAD_NOW: the prescaler is loaded right now - \arg TIMER_PSC_RELOAD_UPDATE: the prescaler is loaded at the next update event - \param[out] none - \retval none -*/ -void timer_prescaler_config(uint32_t timer_periph, uint16_t prescaler, uint8_t pscreload) -{ - TIMER_PSC(timer_periph) = (uint32_t)prescaler; - - if(TIMER_PSC_RELOAD_NOW == pscreload){ - TIMER_SWEVG(timer_periph) |= (uint32_t)TIMER_SWEVG_UPG; - } -} - -/*! - \brief configure TIMER repetition register value - \param[in] timer_periph: TIMERx(x=0,7) - \param[in] repetition: the counter repetition value,0~255 - \param[out] none - \retval none -*/ -void timer_repetition_value_config(uint32_t timer_periph, uint16_t repetition) -{ - TIMER_CREP(timer_periph) = (uint32_t)repetition; -} - -/*! - \brief configure TIMER autoreload register value - \param[in] timer_periph: TIMERx(x=0..13) - \param[in] autoreload: the counter auto-reload value - \param[out] none - \retval none -*/ -void timer_autoreload_value_config(uint32_t timer_periph,uint32_t autoreload) -{ - TIMER_CAR(timer_periph) = (uint32_t)autoreload; -} - -/*! - \brief configure TIMER counter register value - \param[in] timer_periph: TIMERx(x=0..13) - \param[in] counter: the counter value,0~65535 - \param[out] none - \retval none -*/ -void timer_counter_value_config(uint32_t timer_periph , uint32_t counter) -{ - TIMER_CNT(timer_periph) = (uint32_t)counter; -} - -/*! - \brief read TIMER counter value - \param[in] timer_periph: TIMERx(x=0..13) - \param[out] none - \retval counter value -*/ -uint32_t timer_counter_read(uint32_t timer_periph) -{ - uint32_t count_value = 0U; - count_value = TIMER_CNT(timer_periph); - return (count_value); -} - -/*! - \brief read TIMER prescaler value - \param[in] timer_periph: TIMERx(x=0..13) - \param[out] none - \retval prescaler register value -*/ -uint16_t timer_prescaler_read(uint32_t timer_periph) -{ - uint16_t prescaler_value = 0U; - prescaler_value = (uint16_t)(TIMER_PSC(timer_periph)); - return (prescaler_value); -} - -/*! - \brief configure TIMER single pulse mode - \param[in] timer_periph: TIMERx(x=0..8,11) - \param[in] spmode: - only one parameter can be selected which is shown as below: - \arg TIMER_SP_MODE_SINGLE: single pulse mode - \arg TIMER_SP_MODE_REPETITIVE: repetitive pulse mode - \param[out] none - \retval none -*/ -void timer_single_pulse_mode_config(uint32_t timer_periph, uint32_t spmode) -{ - if(TIMER_SP_MODE_SINGLE == spmode){ - TIMER_CTL0(timer_periph) |= (uint32_t)TIMER_CTL0_SPM; - }else if(TIMER_SP_MODE_REPETITIVE == spmode){ - TIMER_CTL0(timer_periph) &= ~((uint32_t)TIMER_CTL0_SPM); - }else{ - /* illegal parameters */ - } -} - -/*! - \brief configure TIMER update source - \param[in] timer_periph: TIMERx(x=0..13) - \param[in] update: - only one parameter can be selected which is shown as below: - \arg TIMER_UPDATE_SRC_GLOBAL: update generate by setting of UPG bit or the counter overflow/underflow,or the slave mode controller trigger - \arg TIMER_UPDATE_SRC_REGULAR: update generate only by counter overflow/underflow - \param[out] none - \retval none -*/ -void timer_update_source_config(uint32_t timer_periph, uint32_t update) -{ - if(TIMER_UPDATE_SRC_REGULAR == update){ - TIMER_CTL0(timer_periph) |= (uint32_t)TIMER_CTL0_UPS; - }else if(TIMER_UPDATE_SRC_GLOBAL == update){ - TIMER_CTL0(timer_periph) &= ~(uint32_t)TIMER_CTL0_UPS; - }else{ - /* illegal parameters */ - } -} - -/*! - \brief enable the TIMER interrupt - \param[in] timer_periph: please refer to the following parameters - \param[in] interrupt: timer interrupt enable source - only one parameter can be selected which is shown as below: - \arg TIMER_INT_UP: update interrupt enable, TIMERx(x=0..13) - \arg TIMER_INT_CH0: channel 0 interrupt enable, TIMERx(x=0..4,7..13) - \arg TIMER_INT_CH1: channel 1 interrupt enable, TIMERx(x=0..4,7,8,11) - \arg TIMER_INT_CH2: channel 2 interrupt enable, TIMERx(x=0..4,7) - \arg TIMER_INT_CH3: channel 3 interrupt enable , TIMERx(x=0..4,7) - \arg TIMER_INT_CMT: commutation interrupt enable, TIMERx(x=0,7) - \arg TIMER_INT_TRG: trigger interrupt enable, TIMERx(x=0..4,7,8,11) - \arg TIMER_INT_BRK: break interrupt enable, TIMERx(x=0,7) - \param[out] none - \retval none -*/ -void timer_interrupt_enable(uint32_t timer_periph, uint32_t interrupt) -{ - TIMER_DMAINTEN(timer_periph) |= (uint32_t) interrupt; -} - -/*! - \brief disable the TIMER interrupt - \param[in] timer_periph: please refer to the following parameters - \param[in] interrupt: timer interrupt source enable - only one parameter can be selected which is shown as below: - \arg TIMER_INT_UP: update interrupt enable, TIMERx(x=0..13) - \arg TIMER_INT_CH0: channel 0 interrupt enable, TIMERx(x=0..4,7..13) - \arg TIMER_INT_CH1: channel 1 interrupt enable, TIMERx(x=0..4,7,8,11) - \arg TIMER_INT_CH2: channel 2 interrupt enable, TIMERx(x=0..4,7) - \arg TIMER_INT_CH3: channel 3 interrupt enable , TIMERx(x=0..4,7) - \arg TIMER_INT_CMT: commutation interrupt enable, TIMERx(x=0,7) - \arg TIMER_INT_TRG: trigger interrupt enable, TIMERx(x=0..4,7,8,11) - \arg TIMER_INT_BRK: break interrupt enable, TIMERx(x=0,7) - \param[out] none - \retval none -*/ -void timer_interrupt_disable(uint32_t timer_periph, uint32_t interrupt) -{ - TIMER_DMAINTEN(timer_periph) &= (~(uint32_t)interrupt); -} - -/*! - \brief get timer interrupt flag - \param[in] timer_periph: please refer to the following parameters - \param[in] interrupt: the timer interrupt bits - only one parameter can be selected which is shown as below: - \arg TIMER_INT_FLAG_UP: update interrupt flag,TIMERx(x=0..13) - \arg TIMER_INT_FLAG_CH0: channel 0 interrupt flag,TIMERx(x=0..4,7..13) - \arg TIMER_INT_FLAG_CH1: channel 1 interrupt flag,TIMERx(x=0..4,7,8,11) - \arg TIMER_INT_FLAG_CH2: channel 2 interrupt flag,TIMERx(x=0..4,7) - \arg TIMER_INT_FLAG_CH3: channel 3 interrupt flag,TIMERx(x=0..4,7) - \arg TIMER_INT_FLAG_CMT: channel commutation interrupt flag,TIMERx(x=0,7) - \arg TIMER_INT_FLAG_TRG: trigger interrupt flag,TIMERx(x=0,7,8,11) - \arg TIMER_INT_FLAG_BRK: break interrupt flag,TIMERx(x=0,7) - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus timer_interrupt_flag_get(uint32_t timer_periph, uint32_t interrupt) -{ - uint32_t val; - val = (TIMER_DMAINTEN(timer_periph) & interrupt); - if((RESET != (TIMER_INTF(timer_periph) & interrupt) ) && (RESET != val)){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear TIMER interrupt flag - \param[in] timer_periph: please refer to the following parameters - \param[in] interrupt: the timer interrupt bits - only one parameter can be selected which is shown as below: - \arg TIMER_INT_FLAG_UP: update interrupt flag,TIMERx(x=0..13) - \arg TIMER_INT_FLAG_CH0: channel 0 interrupt flag,TIMERx(x=0..4,7..13) - \arg TIMER_INT_FLAG_CH1: channel 1 interrupt flag,TIMERx(x=0..4,7,8,11) - \arg TIMER_INT_FLAG_CH2: channel 2 interrupt flag,TIMERx(x=0..4,7) - \arg TIMER_INT_FLAG_CH3: channel 3 interrupt flag,TIMERx(x=0..4,7) - \arg TIMER_INT_FLAG_CMT: channel commutation interrupt flag,TIMERx(x=0,7) - \arg TIMER_INT_FLAG_TRG: trigger interrupt flag,TIMERx(x=0,7,8,11) - \arg TIMER_INT_FLAG_BRK: break interrupt flag,TIMERx(x=0,7) - \param[out] none - \retval none -*/ -void timer_interrupt_flag_clear(uint32_t timer_periph, uint32_t interrupt) -{ - TIMER_INTF(timer_periph) = (~(uint32_t)interrupt); -} - -/*! - \brief get TIMER flags - \param[in] timer_periph: please refer to the following parameters - \param[in] flag: the timer interrupt flags - only one parameter can be selected which is shown as below: - \arg TIMER_FLAG_UP: update flag,TIMERx(x=0..13) - \arg TIMER_FLAG_CH0: channel 0 flag,TIMERx(x=0..4,7..13) - \arg TIMER_FLAG_CH1: channel 1 flag,TIMERx(x=0..4,7,8,11) - \arg TIMER_FLAG_CH2: channel 2 flag,TIMERx(x=0..4,7) - \arg TIMER_FLAG_CH3: channel 3 flag,TIMERx(x=0..4,7) - \arg TIMER_FLAG_CMT: channel control update flag,TIMERx(x=0,7) - \arg TIMER_FLAG_TRG: trigger flag,TIMERx(x=0,7,8,11) - \arg TIMER_FLAG_BRK: break flag,TIMERx(x=0,7) - \arg TIMER_FLAG_CH0OF: channel 0 overcapture flag,TIMERx(x=0..4,7..11) - \arg TIMER_FLAG_CH1OF: channel 1 overcapture flag,TIMERx(x=0..4,7,8,11) - \arg TIMER_FLAG_CH2OF: channel 2 overcapture flag,TIMERx(x=0..4,7) - \arg TIMER_FLAG_CH3OF: channel 3 overcapture flag,TIMERx(x=0..4,7) - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus timer_flag_get(uint32_t timer_periph, uint32_t flag) -{ - if(RESET != (TIMER_INTF(timer_periph) & flag)){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear TIMER flags - \param[in] timer_periph: please refer to the following parameters - \param[in] flag: the timer interrupt flags - only one parameter can be selected which is shown as below: - \arg TIMER_FLAG_UP: update flag,TIMERx(x=0..13) - \arg TIMER_FLAG_CH0: channel 0 flag,TIMERx(x=0..4,7..13) - \arg TIMER_FLAG_CH1: channel 1 flag,TIMERx(x=0..4,7,8,11) - \arg TIMER_FLAG_CH2: channel 2 flag,TIMERx(x=0..4,7) - \arg TIMER_FLAG_CH3: channel 3 flag,TIMERx(x=0..4,7) - \arg TIMER_FLAG_CMT: channel control update flag,TIMERx(x=0,7) - \arg TIMER_FLAG_TRG: trigger flag,TIMERx(x=0,7,8,11) - \arg TIMER_FLAG_BRK: break flag,TIMERx(x=0,7) - \arg TIMER_FLAG_CH0OF: channel 0 overcapture flag,TIMERx(x=0..4,7..11) - \arg TIMER_FLAG_CH1OF: channel 1 overcapture flag,TIMERx(x=0..4,7,8,11) - \arg TIMER_FLAG_CH2OF: channel 2 overcapture flag,TIMERx(x=0..4,7) - \arg TIMER_FLAG_CH3OF: channel 3 overcapture flag,TIMERx(x=0..4,7) - \param[out] none - \retval none -*/ -void timer_flag_clear(uint32_t timer_periph, uint32_t flag) -{ - TIMER_INTF(timer_periph) = (~(uint32_t)flag); -} - -/*! - \brief enable the TIMER DMA - \param[in] timer_periph: please refer to the following parameters - \param[in] dma: specify which DMA to enable - one or more parameters can be selected which is shown as below: - \arg TIMER_DMA_UPD: update DMA,TIMERx(x=0..7) - \arg TIMER_DMA_CH0D: channel 0 DMA request,TIMERx(x=0..4,7) - \arg TIMER_DMA_CH1D: channel 1 DMA request,TIMERx(x=0..4,7) - \arg TIMER_DMA_CH2D: channel 2 DMA request,TIMERx(x=0..4,7) - \arg TIMER_DMA_CH3D: channel 3 DMA request,TIMERx(x=0..4,7) - \arg TIMER_DMA_CMTD: commutation DMA request,TIMERx(x=0,7) - \arg TIMER_DMA_TRGD: trigger DMA request,TIMERx(x=0..4,7) - \param[out] none - \retval none -*/ -void timer_dma_enable(uint32_t timer_periph, uint16_t dma) -{ - TIMER_DMAINTEN(timer_periph) |= (uint32_t) dma; -} - -/*! - \brief disable the TIMER DMA - \param[in] timer_periph: please refer to the following parameters - \param[in] dma: specify which DMA to disable - one or more parameters can be selected which are shown as below: - \arg TIMER_DMA_UPD: update DMA,TIMERx(x=0..7) - \arg TIMER_DMA_CH0D: channel 0 DMA request,TIMERx(x=0..4,7) - \arg TIMER_DMA_CH1D: channel 1 DMA request,TIMERx(x=0..4,7) - \arg TIMER_DMA_CH2D: channel 2 DMA request,TIMERx(x=0..4,7) - \arg TIMER_DMA_CH3D: channel 3 DMA request,TIMERx(x=0..4,7) - \arg TIMER_DMA_CMTD: commutation DMA request ,TIMERx(x=0,7) - \arg TIMER_DMA_TRGD: trigger DMA request,TIMERx(x=0..4,7) - \param[out] none - \retval none -*/ -void timer_dma_disable(uint32_t timer_periph, uint16_t dma) -{ - TIMER_DMAINTEN(timer_periph) &= (~(uint32_t)(dma)); -} - -/*! - \brief channel DMA request source selection - \param[in] timer_periph: TIMERx(x=0..4,7) - \param[in] dma_request: channel DMA request source selection - only one parameter can be selected which is shown as below: - \arg TIMER_DMAREQUEST_CHANNELEVENT: DMA request of channel y is sent when channel y event occurs - \arg TIMER_DMAREQUEST_UPDATEEVENT: DMA request of channel y is sent when update event occurs - \param[out] none - \retval none -*/ -void timer_channel_dma_request_source_select(uint32_t timer_periph, uint8_t dma_request) -{ - if(TIMER_DMAREQUEST_UPDATEEVENT == dma_request){ - TIMER_CTL1(timer_periph) |= (uint32_t)TIMER_CTL1_DMAS; - }else if(TIMER_DMAREQUEST_CHANNELEVENT == dma_request){ - TIMER_CTL1(timer_periph) &= ~(uint32_t)TIMER_CTL1_DMAS; - }else{ - /* illegal parameters */ - } -} - -/*! - \brief configure the TIMER DMA transfer - \param[in] timer_periph: please refer to the following parameters - \param[in] dma_baseaddr: - only one parameter can be selected which is shown as below: - \arg TIMER_DMACFG_DMATA_CTL0: DMA transfer address is TIMER_CTL0,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_CTL1: DMA transfer address is TIMER_CTL1,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_SMCFG: DMA transfer address is TIMER_SMCFG,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_DMAINTEN: DMA transfer address is TIMER_DMAINTEN,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_INTF: DMA transfer address is TIMER_INTF,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_SWEVG: DMA transfer address is TIMER_SWEVG,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_CHCTL0: DMA transfer address is TIMER_CHCTL0,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_CHCTL1: DMA transfer address is TIMER_CHCTL1,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_CHCTL2: DMA transfer address is TIMER_CHCTL2,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_CNT: DMA transfer address is TIMER_CNT,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_PSC: DMA transfer address is TIMER_PSC,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_CAR: DMA transfer address is TIMER_CAR,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_CREP: DMA transfer address is TIMER_CREP,TIMERx(x=0,7) - \arg TIMER_DMACFG_DMATA_CH0CV: DMA transfer address is TIMER_CH0CV,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_CH1CV: DMA transfer address is TIMER_CH1CV,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_CH2CV: DMA transfer address is TIMER_CH2CV,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_CH3CV: DMA transfer address is TIMER_CH3CV,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_CCHP: DMA transfer address is TIMER_CCHP,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_DMACFG: DMA transfer address is TIMER_DMACFG,TIMERx(x=0..4,7) - \arg TIMER_DMACFG_DMATA_DMATB: DMA transfer address is TIMER_DMATB,TIMERx(x=0..4,7) - \param[in] dma_lenth: - only one parameter can be selected which is shown as below: - \arg TIMER_DMACFG_DMATC_xTRANSFER(x=1..18): DMA transfer x time - \param[out] none - \retval none -*/ -void timer_dma_transfer_config(uint32_t timer_periph, uint32_t dma_baseaddr, uint32_t dma_lenth) -{ - TIMER_DMACFG(timer_periph) &= (~(uint32_t)(TIMER_DMACFG_DMATA | TIMER_DMACFG_DMATC)); - TIMER_DMACFG(timer_periph) |= (uint32_t)(dma_baseaddr | dma_lenth); -} - -/*! - \brief software generate events - \param[in] timer_periph: please refer to the following parameters - \param[in] event: the timer software event generation sources - one or more parameters can be selected which are shown as below: - \arg TIMER_EVENT_SRC_UPG: update event,TIMERx(x=0..13) - \arg TIMER_EVENT_SRC_CH0G: channel 0 capture or compare event generation,TIMERx(x=0..4,7..13) - \arg TIMER_EVENT_SRC_CH1G: channel 1 capture or compare event generation,TIMERx(x=0..4,7,8,11) - \arg TIMER_EVENT_SRC_CH2G: channel 2 capture or compare event generation,TIMERx(x=0..4,7) - \arg TIMER_EVENT_SRC_CH3G: channel 3 capture or compare event generation,TIMERx(x=0..4,7) - \arg TIMER_EVENT_SRC_CMTG: channel commutation event generation,TIMERx(x=0,7) - \arg TIMER_EVENT_SRC_TRGG: trigger event generation,TIMERx(x=0..4,7,8,11) - \arg TIMER_EVENT_SRC_BRKG: break event generation,TIMERx(x=0,7) - \param[out] none - \retval none -*/ -void timer_event_software_generate(uint32_t timer_periph, uint16_t event) -{ - TIMER_SWEVG(timer_periph) |= (uint32_t)event; -} - -/*! - \brief initialize TIMER break parameter struct with a default value - \param[in] breakpara: TIMER break parameter struct - \param[out] none - \retval none -*/ -void timer_break_struct_para_init(timer_break_parameter_struct* breakpara) -{ - /* initialize the break parameter struct member with the default value */ - breakpara->runoffstate = TIMER_ROS_STATE_DISABLE; - breakpara->ideloffstate = TIMER_IOS_STATE_DISABLE; - breakpara->deadtime = 0U; - breakpara->breakpolarity = TIMER_BREAK_POLARITY_LOW; - breakpara->outputautostate = TIMER_OUTAUTO_DISABLE; - breakpara->protectmode = TIMER_CCHP_PROT_OFF; - breakpara->breakstate = TIMER_BREAK_DISABLE; -} - -/*! - \brief configure TIMER break function - \param[in] timer_periph: TIMERx(x=0,7) - \param[in] breakpara: TIMER break parameter struct - runoffstate: TIMER_ROS_STATE_ENABLE,TIMER_ROS_STATE_DISABLE - ideloffstate: TIMER_IOS_STATE_ENABLE,TIMER_IOS_STATE_DISABLE - deadtime: 0~255 - breakpolarity: TIMER_BREAK_POLARITY_LOW,TIMER_BREAK_POLARITY_HIGH - outputautostate: TIMER_OUTAUTO_ENABLE,TIMER_OUTAUTO_DISABLE - protectmode: TIMER_CCHP_PROT_OFF,TIMER_CCHP_PROT_0,TIMER_CCHP_PROT_1,TIMER_CCHP_PROT_2 - breakstate: TIMER_BREAK_ENABLE,TIMER_BREAK_DISABLE - \param[out] none - \retval none -*/ -void timer_break_config(uint32_t timer_periph, timer_break_parameter_struct* breakpara) -{ - TIMER_CCHP(timer_periph) = (uint32_t)(((uint32_t)(breakpara->runoffstate))| - ((uint32_t)(breakpara->ideloffstate))| - ((uint32_t)(breakpara->deadtime))| - ((uint32_t)(breakpara->breakpolarity))| - ((uint32_t)(breakpara->outputautostate)) | - ((uint32_t)(breakpara->protectmode))| - ((uint32_t)(breakpara->breakstate))) ; -} - -/*! - \brief enable TIMER break function - \param[in] timer_periph: TIMERx(x=0,7) - \param[out] none - \retval none -*/ -void timer_break_enable(uint32_t timer_periph) -{ - TIMER_CCHP(timer_periph) |= (uint32_t)TIMER_CCHP_BRKEN; -} - -/*! - \brief disable TIMER break function - \param[in] timer_periph: TIMERx(x=0,7) - \param[out] none - \retval none -*/ -void timer_break_disable(uint32_t timer_periph) -{ - TIMER_CCHP(timer_periph) &= ~(uint32_t)TIMER_CCHP_BRKEN; -} - -/*! - \brief enable TIMER output automatic function - \param[in] timer_periph: TIMERx(x=0,7) - \param[out] none - \retval none -*/ -void timer_automatic_output_enable(uint32_t timer_periph) -{ - TIMER_CCHP(timer_periph) |= (uint32_t)TIMER_CCHP_OAEN; -} - -/*! - \brief disable TIMER output automatic function - \param[in] timer_periph: TIMERx(x=0,7) - \param[out] none - \retval none -*/ -void timer_automatic_output_disable(uint32_t timer_periph) -{ - TIMER_CCHP(timer_periph) &= ~(uint32_t)TIMER_CCHP_OAEN; -} - -/*! - \brief configure TIMER primary output function - \param[in] timer_periph: TIMERx(x=0,7) - \param[in] newvalue: ENABLE or DISABLE - \param[out] none - \retval none -*/ -void timer_primary_output_config(uint32_t timer_periph, ControlStatus newvalue) -{ - if(ENABLE == newvalue){ - TIMER_CCHP(timer_periph) |= (uint32_t)TIMER_CCHP_POEN; - }else{ - TIMER_CCHP(timer_periph) &= (~(uint32_t)TIMER_CCHP_POEN); - } -} - -/*! - \brief enable or disable channel capture/compare control shadow register - \param[in] timer_periph: TIMERx(x=0,7) - \param[in] newvalue: ENABLE or DISABLE - \param[out] none - \retval none -*/ -void timer_channel_control_shadow_config(uint32_t timer_periph, ControlStatus newvalue) -{ - if(ENABLE == newvalue){ - TIMER_CTL1(timer_periph) |= (uint32_t)TIMER_CTL1_CCSE; - }else{ - TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_CCSE); - } -} - -/*! - \brief configure TIMER channel control shadow register update control - \param[in] timer_periph: TIMERx(x=0,7) - \param[in] ccuctl: channel control shadow register update control - only one parameter can be selected which is shown as below: - \arg TIMER_UPDATECTL_CCU: the shadow registers update by when CMTG bit is set - \arg TIMER_UPDATECTL_CCUTRI: the shadow registers update by when CMTG bit is set or an rising edge of TRGI occurs - \param[out] none - \retval none -*/ -void timer_channel_control_shadow_update_config(uint32_t timer_periph, uint8_t ccuctl) -{ - if(TIMER_UPDATECTL_CCU == ccuctl){ - TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_CCUC); - }else if(TIMER_UPDATECTL_CCUTRI == ccuctl){ - TIMER_CTL1(timer_periph) |= (uint32_t)TIMER_CTL1_CCUC; - }else{ - /* illegal parameters */ - } -} - -/*! - \brief initialize TIMER channel output parameter struct with a default value - \param[in] ocpara: TIMER channel n output parameter struct - \param[out] none - \retval none -*/ -void timer_channel_output_struct_para_init(timer_oc_parameter_struct* ocpara) -{ - /* initialize the channel output parameter struct member with the default value */ - ocpara->outputstate = (uint16_t)TIMER_CCX_DISABLE; - ocpara->outputnstate = TIMER_CCXN_DISABLE; - ocpara->ocpolarity = TIMER_OC_POLARITY_HIGH; - ocpara->ocnpolarity = TIMER_OCN_POLARITY_HIGH; - ocpara->ocidlestate = TIMER_OC_IDLE_STATE_LOW; - ocpara->ocnidlestate = TIMER_OCN_IDLE_STATE_LOW; -} - -/*! - \brief configure TIMER channel output function - \param[in] timer_periph: please refer to the following parameters - \param[in] channel: - only one parameter can be selected which is shown as below: - \arg TIMER_CH_0: TIMER channel 0(TIMERx(x=0..4,7..13)) - \arg TIMER_CH_1: TIMER channel 1(TIMERx(x=0..4,7,8,11)) - \arg TIMER_CH_2: TIMER channel 2(TIMERx(x=0..4,7)) - \arg TIMER_CH_3: TIMER channel 3(TIMERx(x=0..4,7)) - \param[in] ocpara: TIMER channeln output parameter struct - outputstate: TIMER_CCX_ENABLE,TIMER_CCX_DISABLE - outputnstate: TIMER_CCXN_ENABLE,TIMER_CCXN_DISABLE - ocpolarity: TIMER_OC_POLARITY_HIGH,TIMER_OC_POLARITY_LOW - ocnpolarity: TIMER_OCN_POLARITY_HIGH,TIMER_OCN_POLARITY_LOW - ocidlestate: TIMER_OC_IDLE_STATE_LOW,TIMER_OC_IDLE_STATE_HIGH - ocnidlestate: TIMER_OCN_IDLE_STATE_LOW,TIMER_OCN_IDLE_STATE_HIGH - \param[out] none - \retval none -*/ -void timer_channel_output_config(uint32_t timer_periph, uint16_t channel, timer_oc_parameter_struct* ocpara) -{ - switch(channel){ - /* configure TIMER_CH_0 */ - case TIMER_CH_0: - /* reset the CH0EN bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0EN); - TIMER_CHCTL0(timer_periph) &= ~(uint32_t)TIMER_CHCTL0_CH0MS; - /* set the CH0EN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)ocpara->outputstate; - /* reset the CH0P bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0P); - /* set the CH0P bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)ocpara->ocpolarity; - - if((TIMER0 == timer_periph) || (TIMER7 == timer_periph)){ - /* reset the CH0NEN bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0NEN); - /* set the CH0NEN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)ocpara->outputnstate; - /* reset the CH0NP bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0NP); - /* set the CH0NP bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)ocpara->ocnpolarity; - /* reset the ISO0 bit */ - TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_ISO0); - /* set the ISO0 bit */ - TIMER_CTL1(timer_periph) |= (uint32_t)ocpara->ocidlestate; - /* reset the ISO0N bit */ - TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_ISO0N); - /* set the ISO0N bit */ - TIMER_CTL1(timer_periph) |= (uint32_t)ocpara->ocnidlestate; - } - break; - /* configure TIMER_CH_1 */ - case TIMER_CH_1: - /* reset the CH1EN bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1EN); - TIMER_CHCTL0(timer_periph) &= ~(uint32_t)TIMER_CHCTL0_CH1MS; - /* set the CH1EN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocpara->outputstate << 4U); - /* reset the CH1P bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1P); - /* set the CH1P bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocpolarity) << 4U); - - if((TIMER0 == timer_periph) || (TIMER7 == timer_periph)){ - /* reset the CH1NEN bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1NEN); - /* set the CH1NEN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(ocpara->outputnstate) << 4U); - /* reset the CH1NP bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1NP); - /* set the CH1NP bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocnpolarity) << 4U); - /* reset the ISO1 bit */ - TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_ISO1); - /* set the ISO1 bit */ - TIMER_CTL1(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocidlestate) << 2U); - /* reset the ISO1N bit */ - TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_ISO1N); - /* set the ISO1N bit */ - TIMER_CTL1(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocnidlestate) << 2U); - } - break; - /* configure TIMER_CH_2 */ - case TIMER_CH_2: - /* reset the CH2EN bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2EN); - TIMER_CHCTL1(timer_periph) &= ~(uint32_t)TIMER_CHCTL1_CH2MS; - /* set the CH2EN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocpara->outputstate << 8U); - /* reset the CH2P bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2P); - /* set the CH2P bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocpolarity) << 8U); - - if((TIMER0 == timer_periph) || (TIMER7 == timer_periph)){ - /* reset the CH2NEN bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2NEN); - /* set the CH2NEN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(ocpara->outputnstate) << 8U); - /* reset the CH2NP bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2NP); - /* set the CH2NP bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocnpolarity) << 8U); - /* reset the ISO2 bit */ - TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_ISO2); - /* set the ISO2 bit */ - TIMER_CTL1(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocidlestate) << 4U); - /* reset the ISO2N bit */ - TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_ISO2N); - /* set the ISO2N bit */ - TIMER_CTL1(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocnidlestate) << 4U); - } - break; - /* configure TIMER_CH_3 */ - case TIMER_CH_3: - /* reset the CH3EN bit */ - TIMER_CHCTL2(timer_periph) &=(~(uint32_t)TIMER_CHCTL2_CH3EN); - TIMER_CHCTL1(timer_periph) &= ~(uint32_t)TIMER_CHCTL1_CH3MS; - /* set the CH3EN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocpara->outputstate << 12U); - /* reset the CH3P bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH3P); - /* set the CH3P bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocpolarity) << 12U); - - if((TIMER0 == timer_periph) || (TIMER7 == timer_periph)){ - /* reset the ISO3 bit */ - TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_ISO3); - /* set the ISO3 bit */ - TIMER_CTL1(timer_periph) |= (uint32_t)((uint32_t)(ocpara->ocidlestate) << 6U); - } - break; - default: - break; - } -} - -/*! - \brief configure TIMER channel output compare mode - \param[in] timer_periph: please refer to the following parameters - \param[in] channel: - only one parameter can be selected which is shown as below: - \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) - \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) - \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) - \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) - \param[in] ocmode: channel output compare mode - only one parameter can be selected which is shown as below: - \arg TIMER_OC_MODE_TIMING: timing mode - \arg TIMER_OC_MODE_ACTIVE: active mode - \arg TIMER_OC_MODE_INACTIVE: inactive mode - \arg TIMER_OC_MODE_TOGGLE: toggle mode - \arg TIMER_OC_MODE_LOW: force low mode - \arg TIMER_OC_MODE_HIGH: force high mode - \arg TIMER_OC_MODE_PWM0: PWM0 mode - \arg TIMER_OC_MODE_PWM1: PWM1 mode - \param[out] none - \retval none -*/ -void timer_channel_output_mode_config(uint32_t timer_periph, uint16_t channel, uint16_t ocmode) -{ - switch(channel){ - /* configure TIMER_CH_0 */ - case TIMER_CH_0: - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0COMCTL); - TIMER_CHCTL0(timer_periph) |= (uint32_t)ocmode; - break; - /* configure TIMER_CH_1 */ - case TIMER_CH_1: - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1COMCTL); - TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)(ocmode) << 8U); - break; - /* configure TIMER_CH_2 */ - case TIMER_CH_2: - TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH2COMCTL); - TIMER_CHCTL1(timer_periph) |= (uint32_t)ocmode; - break; - /* configure TIMER_CH_3 */ - case TIMER_CH_3: - TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH3COMCTL); - TIMER_CHCTL1(timer_periph) |= (uint32_t)((uint32_t)(ocmode) << 8U); - break; - default: - break; - } -} - -/*! - \brief configure TIMER channel output pulse value - \param[in] timer_periph: please refer to the following parameters - \param[in] channel: - only one parameter can be selected which is shown as below: - \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) - \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) - \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) - \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) - \param[in] pulse: channel output pulse value,0~65535 - \param[out] none - \retval none -*/ -void timer_channel_output_pulse_value_config(uint32_t timer_periph, uint16_t channel, uint32_t pulse) -{ - switch(channel){ - /* configure TIMER_CH_0 */ - case TIMER_CH_0: - TIMER_CH0CV(timer_periph) = (uint32_t)pulse; - break; - /* configure TIMER_CH_1 */ - case TIMER_CH_1: - TIMER_CH1CV(timer_periph) = (uint32_t)pulse; - break; - /* configure TIMER_CH_2 */ - case TIMER_CH_2: - TIMER_CH2CV(timer_periph) = (uint32_t)pulse; - break; - /* configure TIMER_CH_3 */ - case TIMER_CH_3: - TIMER_CH3CV(timer_periph) = (uint32_t)pulse; - break; - default: - break; - } -} - -/*! - \brief configure TIMER channel output shadow function - \param[in] timer_periph: please refer to the following parameters - \param[in] channel: - only one parameter can be selected which is shown as below: - \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) - \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) - \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) - \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) - \param[in] ocshadow: channel output shadow state - only one parameter can be selected which is shown as below: - \arg TIMER_OC_SHADOW_ENABLE: channel output shadow state enable - \arg TIMER_OC_SHADOW_DISABLE: channel output shadow state disable - \param[out] none - \retval none -*/ -void timer_channel_output_shadow_config(uint32_t timer_periph, uint16_t channel, uint16_t ocshadow) -{ - switch(channel){ - /* configure TIMER_CH_0 */ - case TIMER_CH_0: - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0COMSEN); - TIMER_CHCTL0(timer_periph) |= (uint32_t)ocshadow; - break; - /* configure TIMER_CH_1 */ - case TIMER_CH_1: - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1COMSEN); - TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)(ocshadow) << 8U); - break; - /* configure TIMER_CH_2 */ - case TIMER_CH_2: - TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH2COMSEN); - TIMER_CHCTL1(timer_periph) |= (uint32_t)ocshadow; - break; - /* configure TIMER_CH_3 */ - case TIMER_CH_3: - TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH3COMSEN); - TIMER_CHCTL1(timer_periph) |= (uint32_t)((uint32_t)(ocshadow) << 8U); - break; - default: - break; - } -} - -/*! - \brief configure TIMER channel output fast function - \param[in] timer_periph: please refer to the following parameters - \param[in] channel: - only one parameter can be selected which is shown as below: - \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) - \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) - \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) - \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) - \param[in] ocfast: channel output fast function - only one parameter can be selected which is shown as below: - \arg TIMER_OC_FAST_ENABLE: channel output fast function enable - \arg TIMER_OC_FAST_DISABLE: channel output fast function disable - \param[out] none - \retval none -*/ -void timer_channel_output_fast_config(uint32_t timer_periph, uint16_t channel, uint16_t ocfast) -{ - switch(channel){ - /* configure TIMER_CH_0 */ - case TIMER_CH_0: - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0COMFEN); - TIMER_CHCTL0(timer_periph) |= (uint32_t)ocfast; - break; - /* configure TIMER_CH_1 */ - case TIMER_CH_1: - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1COMFEN); - TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)ocfast << 8U); - break; - /* configure TIMER_CH_2 */ - case TIMER_CH_2: - TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH2COMFEN); - TIMER_CHCTL1(timer_periph) |= (uint32_t)ocfast; - break; - /* configure TIMER_CH_3 */ - case TIMER_CH_3: - TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH3COMFEN); - TIMER_CHCTL1(timer_periph) |= (uint32_t)((uint32_t)ocfast << 8U); - break; - default: - break; - } -} - -/*! - \brief configure TIMER channel output clear function - \param[in] timer_periph: please refer to the following parameters - \param[in] channel: - only one parameter can be selected which is shown as below: - \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7)) - \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7)) - \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) - \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) - \param[in] occlear: channel output clear function - only one parameter can be selected which is shown as below: - \arg TIMER_OC_CLEAR_ENABLE: channel output clear function enable - \arg TIMER_OC_CLEAR_DISABLE: channel output clear function disable - \param[out] none - \retval none -*/ -void timer_channel_output_clear_config(uint32_t timer_periph, uint16_t channel, uint16_t occlear) -{ - switch(channel){ - /* configure TIMER_CH_0 */ - case TIMER_CH_0: - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0COMCEN); - TIMER_CHCTL0(timer_periph) |= (uint32_t)occlear; - break; - /* configure TIMER_CH_1 */ - case TIMER_CH_1: - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1COMCEN); - TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)occlear << 8U); - break; - /* configure TIMER_CH_2 */ - case TIMER_CH_2: - TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH2COMCEN); - TIMER_CHCTL1(timer_periph) |= (uint32_t)occlear; - break; - /* configure TIMER_CH_3 */ - case TIMER_CH_3: - TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH3COMCEN); - TIMER_CHCTL1(timer_periph) |= (uint32_t)((uint32_t)occlear << 8U); - break; - default: - break; - } -} - -/*! - \brief configure TIMER channel output polarity - \param[in] timer_periph: please refer to the following parameters - \param[in] channel: - only one parameter can be selected which is shown as below: - \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) - \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) - \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) - \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) - \param[in] ocpolarity: channel output polarity - only one parameter can be selected which is shown as below: - \arg TIMER_OC_POLARITY_HIGH: channel output polarity is high - \arg TIMER_OC_POLARITY_LOW: channel output polarity is low - \param[out] none - \retval none -*/ -void timer_channel_output_polarity_config(uint32_t timer_periph, uint16_t channel, uint16_t ocpolarity) -{ - switch(channel){ - /* configure TIMER_CH_0 */ - case TIMER_CH_0: - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0P); - TIMER_CHCTL2(timer_periph) |= (uint32_t)ocpolarity; - break; - /* configure TIMER_CH_1 */ - case TIMER_CH_1: - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1P); - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocpolarity << 4U); - break; - /* configure TIMER_CH_2 */ - case TIMER_CH_2: - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2P); - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocpolarity << 8U); - break; - /* configure TIMER_CH_3 */ - case TIMER_CH_3: - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH3P); - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocpolarity << 12U); - break; - default: - break; - } -} - -/*! - \brief configure TIMER channel complementary output polarity - \param[in] timer_periph: please refer to the following parameters - \param[in] channel: - only one parameter can be selected which is shown as below: - \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) - \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) - \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) - \param[in] ocnpolarity: channel complementary output polarity - only one parameter can be selected which is shown as below: - \arg TIMER_OCN_POLARITY_HIGH: channel complementary output polarity is high - \arg TIMER_OCN_POLARITY_LOW: channel complementary output polarity is low - \param[out] none - \retval none -*/ -void timer_channel_complementary_output_polarity_config(uint32_t timer_periph, uint16_t channel, uint16_t ocnpolarity) -{ - switch(channel){ - /* configure TIMER_CH_0 */ - case TIMER_CH_0: - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0NP); - TIMER_CHCTL2(timer_periph) |= (uint32_t)ocnpolarity; - break; - /* configure TIMER_CH_1 */ - case TIMER_CH_1: - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1NP); - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocnpolarity << 4U); - break; - /* configure TIMER_CH_2 */ - case TIMER_CH_2: - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2NP); - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocnpolarity << 8U); - break; - default: - break; - } -} - -/*! - \brief configure TIMER channel enable state - \param[in] timer_periph: please refer to the following parameters - \param[in] channel: - only one parameter can be selected which is shown as below: - \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) - \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) - \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) - \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) - \param[in] state: TIMER channel enable state - only one parameter can be selected which is shown as below: - \arg TIMER_CCX_ENABLE: channel enable - \arg TIMER_CCX_DISABLE: channel disable - \param[out] none - \retval none -*/ -void timer_channel_output_state_config(uint32_t timer_periph, uint16_t channel, uint32_t state) -{ - switch(channel){ - /* configure TIMER_CH_0 */ - case TIMER_CH_0: - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0EN); - TIMER_CHCTL2(timer_periph) |= (uint32_t)state; - break; - /* configure TIMER_CH_1 */ - case TIMER_CH_1: - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1EN); - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)state << 4U); - break; - /* configure TIMER_CH_2 */ - case TIMER_CH_2: - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2EN); - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)state << 8U); - break; - /* configure TIMER_CH_3 */ - case TIMER_CH_3: - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH3EN); - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)state << 12U); - break; - default: - break; - } -} - -/*! - \brief configure TIMER channel complementary output enable state - \param[in] timer_periph: TIMERx(x=0,7) - \param[in] channel: - only one parameter can be selected which is shown as below: - \arg TIMER_CH_0: TIMER channel0 - \arg TIMER_CH_1: TIMER channel1 - \arg TIMER_CH_2: TIMER channel2 - \param[in] ocnstate: TIMER channel complementary output enable state - only one parameter can be selected which is shown as below: - \arg TIMER_CCXN_ENABLE: channel complementary enable - \arg TIMER_CCXN_DISABLE: channel complementary disable - \param[out] none - \retval none -*/ -void timer_channel_complementary_output_state_config(uint32_t timer_periph, uint16_t channel, uint16_t ocnstate) -{ - switch(channel){ - /* configure TIMER_CH_0 */ - case TIMER_CH_0: - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0NEN); - TIMER_CHCTL2(timer_periph) |= (uint32_t)ocnstate; - break; - /* configure TIMER_CH_1 */ - case TIMER_CH_1: - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1NEN); - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocnstate << 4U); - break; - /* configure TIMER_CH_2 */ - case TIMER_CH_2: - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2NEN); - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)ocnstate << 8U); - break; - default: - break; - } -} - -/*! - \brief initialize TIMER channel input parameter struct with a default value - \param[in] icpara: TIMER channel intput parameter struct - \param[out] none - \retval none -*/ -void timer_channel_input_struct_para_init(timer_ic_parameter_struct* icpara) -{ - /* initialize the channel input parameter struct member with the default value */ - icpara->icpolarity = TIMER_IC_POLARITY_RISING; - icpara->icselection = TIMER_IC_SELECTION_DIRECTTI; - icpara->icprescaler = TIMER_IC_PSC_DIV1; - icpara->icfilter = 0U; -} - -/*! - \brief configure TIMER input capture parameter - \param[in] timer_periph: please refer to the following parameters - \param[in] channel: - only one parameter can be selected which is shown as below: - \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) - \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) - \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) - \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) - \param[in] icpara: TIMER channel intput parameter struct - icpolarity: TIMER_IC_POLARITY_RISING,TIMER_IC_POLARITY_FALLING,TIMER_IC_POLARITY_BOTH_EDGE - icselection: TIMER_IC_SELECTION_DIRECTTI,TIMER_IC_SELECTION_INDIRECTTI,TIMER_IC_SELECTION_ITS - icprescaler: TIMER_IC_PSC_DIV1,TIMER_IC_PSC_DIV2,TIMER_IC_PSC_DIV4,TIMER_IC_PSC_DIV8 - icfilter: 0~15 - \param[out] none - \retval none -*/ -void timer_input_capture_config(uint32_t timer_periph,uint16_t channel, timer_ic_parameter_struct* icpara) -{ - switch(channel){ - /* configure TIMER_CH_0 */ - case TIMER_CH_0: - /* reset the CH0EN bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0EN); - - /* reset the CH0P and CH0NP bits */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH0P | TIMER_CHCTL2_CH0NP)); - TIMER_CHCTL2(timer_periph) |= (uint32_t)(icpara->icpolarity); - /* reset the CH0MS bit */ - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0MS); - TIMER_CHCTL0(timer_periph) |= (uint32_t)(icpara->icselection); - /* reset the CH0CAPFLT bit */ - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0CAPFLT); - TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)(icpara->icfilter) << 4U); - - /* set the CH0EN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH0EN; - break; - - /* configure TIMER_CH_1 */ - case TIMER_CH_1: - /* reset the CH1EN bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1EN); - - /* reset the CH1P and CH1NP bits */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH1P | TIMER_CHCTL2_CH1NP)); - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(icpara->icpolarity) << 4U); - /* reset the CH1MS bit */ - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1MS); - TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)(icpara->icselection) << 8U); - /* reset the CH1CAPFLT bit */ - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1CAPFLT); - TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)(icpara->icfilter) << 12U); - - /* set the CH1EN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH1EN; - break; - /* configure TIMER_CH_2 */ - case TIMER_CH_2: - /* reset the CH2EN bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH2EN); - - /* reset the CH2P and CH2NP bits */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH2P|TIMER_CHCTL2_CH2NP)); - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(icpara->icpolarity) << 8U); - - /* reset the CH2MS bit */ - TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH2MS); - TIMER_CHCTL1(timer_periph) |= (uint32_t)((uint32_t)(icpara->icselection)); - - /* reset the CH2CAPFLT bit */ - TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH2CAPFLT); - TIMER_CHCTL1(timer_periph) |= (uint32_t)((uint32_t)(icpara->icfilter) << 4U); - - /* set the CH2EN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH2EN; - break; - /* configure TIMER_CH_3 */ - case TIMER_CH_3: - /* reset the CH3EN bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH3EN); - - /* reset the CH3P bits */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH3P)); - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(icpara->icpolarity) << 12U); - - /* reset the CH3MS bit */ - TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH3MS); - TIMER_CHCTL1(timer_periph) |= (uint32_t)((uint32_t)(icpara->icselection) << 8U); - - /* reset the CH3CAPFLT bit */ - TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH3CAPFLT); - TIMER_CHCTL1(timer_periph) |= (uint32_t)((uint32_t)(icpara->icfilter) << 12U); - - /* set the CH3EN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH3EN; - break; - default: - break; - } - /* configure TIMER channel input capture prescaler value */ - timer_channel_input_capture_prescaler_config(timer_periph, channel, (uint16_t)(icpara->icprescaler)); -} - -/*! - \brief configure TIMER channel input capture prescaler value - \param[in] timer_periph: please refer to the following parameters - \param[in] channel: - only one parameter can be selected which is shown as below: - \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) - \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) - \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) - \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) - \param[in] prescaler: channel input capture prescaler value - only one parameter can be selected which is shown as below: - \arg TIMER_IC_PSC_DIV1: no prescaler - \arg TIMER_IC_PSC_DIV2: divided by 2 - \arg TIMER_IC_PSC_DIV4: divided by 4 - \arg TIMER_IC_PSC_DIV8: divided by 8 - \param[out] none - \retval none -*/ -void timer_channel_input_capture_prescaler_config(uint32_t timer_periph, uint16_t channel, uint16_t prescaler) -{ - switch(channel){ - /* configure TIMER_CH_0 */ - case TIMER_CH_0: - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0CAPPSC); - TIMER_CHCTL0(timer_periph) |= (uint32_t)prescaler; - break; - /* configure TIMER_CH_1 */ - case TIMER_CH_1: - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1CAPPSC); - TIMER_CHCTL0(timer_periph) |= ((uint32_t)prescaler << 8U); - break; - /* configure TIMER_CH_2 */ - case TIMER_CH_2: - TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH2CAPPSC); - TIMER_CHCTL1(timer_periph) |= (uint32_t)prescaler; - break; - /* configure TIMER_CH_3 */ - case TIMER_CH_3: - TIMER_CHCTL1(timer_periph) &= (~(uint32_t)TIMER_CHCTL1_CH3CAPPSC); - TIMER_CHCTL1(timer_periph) |= ((uint32_t)prescaler << 8U); - break; - default: - break; - } -} - -/*! - \brief read TIMER channel capture compare register value - \param[in] timer_periph: please refer to the following parameters - \param[in] channel: - only one parameter can be selected which is shown as below: - \arg TIMER_CH_0: TIMER channel0(TIMERx(x=0..4,7..13)) - \arg TIMER_CH_1: TIMER channel1(TIMERx(x=0..4,7,8,11)) - \arg TIMER_CH_2: TIMER channel2(TIMERx(x=0..4,7)) - \arg TIMER_CH_3: TIMER channel3(TIMERx(x=0..4,7)) - \param[out] none - \retval channel capture compare register value -*/ -uint32_t timer_channel_capture_value_register_read(uint32_t timer_periph, uint16_t channel) -{ - uint32_t count_value = 0U; - - switch(channel){ - /* read TIMER channel 0 capture compare register value */ - case TIMER_CH_0: - count_value = TIMER_CH0CV(timer_periph); - break; - /* read TIMER channel 1 capture compare register value */ - case TIMER_CH_1: - count_value = TIMER_CH1CV(timer_periph); - break; - /* read TIMER channel 2 capture compare register value */ - case TIMER_CH_2: - count_value = TIMER_CH2CV(timer_periph); - break; - /* read TIMER channel 3 capture compare register value */ - case TIMER_CH_3: - count_value = TIMER_CH3CV(timer_periph); - break; - default: - break; - } - return (count_value); -} - -/*! - \brief configure TIMER input pwm capture function - \param[in] timer_periph: TIMERx(x=0..4,7,8,11) - \param[in] channel: - only one parameter can be selected which is shown as below: - \arg TIMER_CH_0: TIMER channel0 - \arg TIMER_CH_1: TIMER channel1 - \param[in] icpwm:TIMER channel intput pwm parameter struct - icpolarity: TIMER_IC_POLARITY_RISING,TIMER_IC_POLARITY_FALLING - icselection: TIMER_IC_SELECTION_DIRECTTI,TIMER_IC_SELECTION_INDIRECTTI - icprescaler: TIMER_IC_PSC_DIV1,TIMER_IC_PSC_DIV2,TIMER_IC_PSC_DIV4,TIMER_IC_PSC_DIV8 - icfilter: 0~15 - \param[out] none - \retval none -*/ -void timer_input_pwm_capture_config(uint32_t timer_periph, uint16_t channel, timer_ic_parameter_struct* icpwm) -{ - uint16_t icpolarity = 0x0U; - uint16_t icselection = 0x0U; - - /* Set channel input polarity */ - if(TIMER_IC_POLARITY_RISING == icpwm->icpolarity){ - icpolarity = TIMER_IC_POLARITY_FALLING; - }else{ - icpolarity = TIMER_IC_POLARITY_RISING; - } - - /* Set channel input mode selection */ - if(TIMER_IC_SELECTION_DIRECTTI == icpwm->icselection){ - icselection = TIMER_IC_SELECTION_INDIRECTTI; - }else{ - icselection = TIMER_IC_SELECTION_DIRECTTI; - } - - if(TIMER_CH_0 == channel){ - /* reset the CH0EN bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0EN); - /* reset the CH0P and CH0NP bits */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH0P|TIMER_CHCTL2_CH0NP)); - /* set the CH0P and CH0NP bits */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)(icpwm->icpolarity); - /* reset the CH0MS bit */ - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0MS); - /* set the CH0MS bit */ - TIMER_CHCTL0(timer_periph) |= (uint32_t)(icpwm->icselection); - /* reset the CH0CAPFLT bit */ - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0CAPFLT); - /* set the CH0CAPFLT bit */ - TIMER_CHCTL0(timer_periph) |= ((uint32_t)(icpwm->icfilter) << 4U); - /* set the CH0EN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH0EN; - /* configure TIMER channel input capture prescaler value */ - timer_channel_input_capture_prescaler_config(timer_periph,TIMER_CH_0,(uint16_t)(icpwm->icprescaler)); - - /* reset the CH1EN bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1EN); - /* reset the CH1P and CH1NP bits */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH1P|TIMER_CHCTL2_CH1NP)); - /* set the CH1P and CH1NP bits */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)icpolarity << 4U); - /* reset the CH1MS bit */ - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1MS); - /* set the CH1MS bit */ - TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)icselection << 8U); - /* reset the CH1CAPFLT bit */ - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1CAPFLT); - /* set the CH1CAPFLT bit */ - TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)(icpwm->icfilter) << 12U); - /* set the CH1EN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH1EN; - /* configure TIMER channel input capture prescaler value */ - timer_channel_input_capture_prescaler_config(timer_periph,TIMER_CH_1,(uint16_t)(icpwm->icprescaler)); - }else{ - /* reset the CH1EN bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1EN); - /* reset the CH1P and CH1NP bits */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH1P|TIMER_CHCTL2_CH1NP)); - /* set the CH1P and CH1NP bits */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)(icpwm->icpolarity) << 4U); - /* reset the CH1MS bit */ - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1MS); - /* set the CH1MS bit */ - TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)(icpwm->icselection) << 8U); - /* reset the CH1CAPFLT bit */ - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1CAPFLT); - /* set the CH1CAPFLT bit */ - TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)(icpwm->icfilter) << 12U); - /* set the CH1EN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH1EN; - /* configure TIMER channel input capture prescaler value */ - timer_channel_input_capture_prescaler_config(timer_periph, TIMER_CH_1, (uint16_t)(icpwm->icprescaler)); - - /* reset the CH0EN bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0EN); - /* reset the CH0P and CH0NP bits */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH0P|TIMER_CHCTL2_CH0NP)); - /* set the CH0P and CH0NP bits */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)icpolarity; - /* reset the CH0MS bit */ - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0MS); - /* set the CH0MS bit */ - TIMER_CHCTL0(timer_periph) |= (uint32_t)icselection; - /* reset the CH0CAPFLT bit */ - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0CAPFLT); - /* set the CH0CAPFLT bit */ - TIMER_CHCTL0(timer_periph) |= ((uint32_t)(icpwm->icfilter) << 4U); - /* set the CH0EN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH0EN; - /* configure TIMER channel input capture prescaler value */ - timer_channel_input_capture_prescaler_config(timer_periph, TIMER_CH_0, (uint16_t)(icpwm->icprescaler)); - } -} - -/*! - \brief configure TIMER hall sensor mode - \param[in] timer_periph: TIMERx(x=0..4,7) - \param[in] hallmode: - only one parameter can be selected which is shown as below: - \arg TIMER_HALLINTERFACE_ENABLE: TIMER hall sensor mode enable - \arg TIMER_HALLINTERFACE_DISABLE: TIMER hall sensor mode disable - \param[out] none - \retval none -*/ -void timer_hall_mode_config(uint32_t timer_periph, uint32_t hallmode) -{ - if(TIMER_HALLINTERFACE_ENABLE == hallmode){ - TIMER_CTL1(timer_periph) |= (uint32_t)TIMER_CTL1_TI0S; - }else if(TIMER_HALLINTERFACE_DISABLE == hallmode){ - TIMER_CTL1(timer_periph) &= ~(uint32_t)TIMER_CTL1_TI0S; - }else{ - /* illegal parameters */ - } -} - -/*! - \brief select TIMER input trigger source - \param[in] timer_periph: please refer to the following parameters - \param[in] intrigger: - only one parameter can be selected which is shown as below: - \arg TIMER_SMCFG_TRGSEL_ITI0: internal trigger 0(TIMERx(x=0..4,7,8,11)) - \arg TIMER_SMCFG_TRGSEL_ITI1: internal trigger 1(TIMERx(x=0..4,7,8,11)) - \arg TIMER_SMCFG_TRGSEL_ITI2: internal trigger 2(TIMERx(x=0..4,7,8,11)) - \arg TIMER_SMCFG_TRGSEL_ITI3: internal trigger 3(TIMERx(x=0..4,7,8,11)) - \arg TIMER_SMCFG_TRGSEL_CI0F_ED: TI0 edge detector(TIMERx(x=0..4,7,8,11)) - \arg TIMER_SMCFG_TRGSEL_CI0FE0: filtered TIMER input 0(TIMERx(x=0..4,7,8,11)) - \arg TIMER_SMCFG_TRGSEL_CI1FE1: filtered TIMER input 1(TIMERx(x=0..4,7,8,11)) - \arg TIMER_SMCFG_TRGSEL_ETIFP: external trigger(TIMERx(x=0..4,7,8,11)) - \param[out] none - \retval none -*/ -void timer_input_trigger_source_select(uint32_t timer_periph, uint32_t intrigger) -{ - TIMER_SMCFG(timer_periph) &= (~(uint32_t)TIMER_SMCFG_TRGS); - TIMER_SMCFG(timer_periph) |= (uint32_t)intrigger; -} - -/*! - \brief select TIMER master mode output trigger source - \param[in] timer_periph: TIMERx(x=0..7) - \param[in] outrigger: - only one parameter can be selected which is shown as below: - \arg TIMER_TRI_OUT_SRC_RESET: the UPG bit as trigger output(TIMERx(x=0..7,9,10,12,13)) - \arg TIMER_TRI_OUT_SRC_ENABLE: the counter enable signal TIMER_CTL0_CEN as trigger output(TIMERx(x=0..7,9,10,12,13)) - \arg TIMER_TRI_OUT_SRC_UPDATE: update event as trigger output(TIMERx(x=0..7,9,10,12,13)) - \arg TIMER_TRI_OUT_SRC_CH0: a capture or a compare match occurred in channal0 as trigger output TRGO(TIMERx(x=0..4,7,9,10,12,13)) - \arg TIMER_TRI_OUT_SRC_O0CPRE: O0CPRE as trigger output(TIMERx(x=0..4,7,9,10,12,13)) - \arg TIMER_TRI_OUT_SRC_O1CPRE: O1CPRE as trigger output(TIMERx(x=0..4,7)) - \arg TIMER_TRI_OUT_SRC_O2CPRE: O2CPRE as trigger output(TIMERx(x=0..4,7)) - \arg TIMER_TRI_OUT_SRC_O3CPRE: O3CPRE as trigger output(TIMERx(x=0..4,7)) - \param[out] none - \retval none -*/ -void timer_master_output_trigger_source_select(uint32_t timer_periph, uint32_t outrigger) -{ - TIMER_CTL1(timer_periph) &= (~(uint32_t)TIMER_CTL1_MMC); - TIMER_CTL1(timer_periph) |= (uint32_t)outrigger; -} - -/*! - \brief select TIMER slave mode - \param[in] timer_periph: TIMERx(x=0..4,7,8,11) - \param[in] slavemode: - only one parameter can be selected which is shown as below: - \arg TIMER_SLAVE_MODE_DISABLE: slave mode disable(TIMERx(x=0..4,7,8,11)) - \arg TIMER_ENCODER_MODE0: encoder mode 0(TIMERx(x=0..4,7)) - \arg TIMER_ENCODER_MODE1: encoder mode 1(TIMERx(x=0..4,7)) - \arg TIMER_ENCODER_MODE2: encoder mode 2(TIMERx(x=0..4,7)) - \arg TIMER_SLAVE_MODE_RESTART: restart mode(TIMERx(x=0..4,7,8,11)) - \arg TIMER_SLAVE_MODE_PAUSE: pause mode(TIMERx(x=0..4,7,8,11)) - \arg TIMER_SLAVE_MODE_EVENT: event mode(TIMERx(x=0..4,7,8,11)) - \arg TIMER_SLAVE_MODE_EXTERNAL0: external clock mode 0.(TIMERx(x=0..4,7,8,11)) - \param[out] none - \retval none -*/ - -void timer_slave_mode_select(uint32_t timer_periph, uint32_t slavemode) -{ - TIMER_SMCFG(timer_periph) &= (~(uint32_t)TIMER_SMCFG_SMC); - - TIMER_SMCFG(timer_periph) |= (uint32_t)slavemode; -} - -/*! - \brief configure TIMER master slave mode - \param[in] timer_periph: TIMERx(x=0..4,7,8,11) - \param[in] masterslave: - only one parameter can be selected which is shown as below: - \arg TIMER_MASTER_SLAVE_MODE_ENABLE: master slave mode enable - \arg TIMER_MASTER_SLAVE_MODE_DISABLE: master slave mode disable - \param[out] none - \retval none -*/ -void timer_master_slave_mode_config(uint32_t timer_periph, uint32_t masterslave) -{ - if(TIMER_MASTER_SLAVE_MODE_ENABLE == masterslave){ - TIMER_SMCFG(timer_periph) |= (uint32_t)TIMER_SMCFG_MSM; - }else if(TIMER_MASTER_SLAVE_MODE_DISABLE == masterslave){ - TIMER_SMCFG(timer_periph) &= ~(uint32_t)TIMER_SMCFG_MSM; - }else{ - /* illegal parameters */ - } -} - -/*! - \brief configure TIMER external trigger input - \param[in] timer_periph: TIMERx(x=0..4,7) - \param[in] extprescaler: - only one parameter can be selected which is shown as below: - \arg TIMER_EXT_TRI_PSC_OFF: no divided - \arg TIMER_EXT_TRI_PSC_DIV2: divided by 2 - \arg TIMER_EXT_TRI_PSC_DIV4: divided by 4 - \arg TIMER_EXT_TRI_PSC_DIV8: divided by 8 - \param[in] extpolarity: - only one parameter can be selected which is shown as below: - \arg TIMER_ETP_FALLING: active low or falling edge active - \arg TIMER_ETP_RISING: active high or rising edge active - \param[in] extfilter: a value between 0 and 15 - \param[out] none - \retval none -*/ -void timer_external_trigger_config(uint32_t timer_periph, uint32_t extprescaler, - uint32_t extpolarity, uint32_t extfilter) -{ - TIMER_SMCFG(timer_periph) &= (~(uint32_t)(TIMER_SMCFG_ETP | TIMER_SMCFG_ETPSC | TIMER_SMCFG_ETFC)); - TIMER_SMCFG(timer_periph) |= (uint32_t)(extprescaler | extpolarity); - TIMER_SMCFG(timer_periph) |= (uint32_t)(extfilter << 8U); -} - -/*! - \brief configure TIMER quadrature decoder mode - \param[in] timer_periph: TIMERx(x=0..4,7,8,11) - \param[in] decomode: - only one parameter can be selected which is shown as below: - \arg TIMER_ENCODER_MODE0: counter counts on CI0FE0 edge depending on CI1FE1 level - \arg TIMER_ENCODER_MODE1: counter counts on CI1FE1 edge depending on CI0FE0 level - \arg TIMER_ENCODER_MODE2: counter counts on both CI0FE0 and CI1FE1 edges depending on the level of the other input - \param[in] ic0polarity: - only one parameter can be selected which is shown as below: - \arg TIMER_IC_POLARITY_RISING: capture rising edge - \arg TIMER_IC_POLARITY_FALLING: capture falling edge - \param[in] ic1polarity: - only one parameter can be selected which is shown as below: - \arg TIMER_IC_POLARITY_RISING: capture rising edge - \arg TIMER_IC_POLARITY_FALLING: capture falling edge - \param[out] none - \retval none -*/ -void timer_quadrature_decoder_mode_config(uint32_t timer_periph, uint32_t decomode, - uint16_t ic0polarity, uint16_t ic1polarity) -{ - TIMER_SMCFG(timer_periph) &= (~(uint32_t)TIMER_SMCFG_SMC); - TIMER_SMCFG(timer_periph) |= (uint32_t)decomode; - - TIMER_CHCTL0(timer_periph) &= (uint32_t)(((~(uint32_t)TIMER_CHCTL0_CH0MS))&((~(uint32_t)TIMER_CHCTL0_CH1MS))); - TIMER_CHCTL0(timer_periph) |= (uint32_t)(TIMER_IC_SELECTION_DIRECTTI|((uint32_t)TIMER_IC_SELECTION_DIRECTTI << 8U)); - - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH0P|TIMER_CHCTL2_CH0NP)); - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH1P|TIMER_CHCTL2_CH1NP)); - TIMER_CHCTL2(timer_periph) |= ((uint32_t)ic0polarity|((uint32_t)ic1polarity << 4U)); -} - -/*! - \brief configure TIMER internal clock mode - \param[in] timer_periph: TIMERx(x=0..4,7,8,11) - \param[out] none - \retval none -*/ -void timer_internal_clock_config(uint32_t timer_periph) -{ - TIMER_SMCFG(timer_periph) &= ~(uint32_t)TIMER_SMCFG_SMC; -} - -/*! - \brief configure TIMER the internal trigger as external clock input - \param[in] timer_periph: TIMERx(x=0..4,7,8,11) - \param[in] intrigger: - only one parameter can be selected which is shown as below: - \arg TIMER_SMCFG_TRGSEL_ITI0: internal trigger 0 - \arg TIMER_SMCFG_TRGSEL_ITI1: internal trigger 1 - \arg TIMER_SMCFG_TRGSEL_ITI2: internal trigger 2 - \arg TIMER_SMCFG_TRGSEL_ITI3: internal trigger 3 - \param[out] none - \retval none -*/ -void timer_internal_trigger_as_external_clock_config(uint32_t timer_periph, uint32_t intrigger) -{ - timer_input_trigger_source_select(timer_periph, intrigger); - TIMER_SMCFG(timer_periph) &= ~(uint32_t)TIMER_SMCFG_SMC; - TIMER_SMCFG(timer_periph) |= (uint32_t)TIMER_SLAVE_MODE_EXTERNAL0; -} - -/*! - \brief configure TIMER the external trigger as external clock input - \param[in] timer_periph: TIMERx(x=0..4,7,8,11) - \param[in] extrigger: - only one parameter can be selected which is shown as below: - \arg TIMER_SMCFG_TRGSEL_CI0F_ED: TI0 edge detector - \arg TIMER_SMCFG_TRGSEL_CI0FE0: filtered TIMER input 0 - \arg TIMER_SMCFG_TRGSEL_CI1FE1: filtered TIMER input 1 - \param[in] extpolarity: - only one parameter can be selected which is shown as below: - \arg TIMER_IC_POLARITY_RISING: active high or rising edge active - \arg TIMER_IC_POLARITY_FALLING: active low or falling edge active - \param[in] extfilter: a value between 0 and 15 - \param[out] none - \retval none -*/ -void timer_external_trigger_as_external_clock_config(uint32_t timer_periph, uint32_t extrigger, - uint16_t extpolarity, uint32_t extfilter) -{ - if(TIMER_SMCFG_TRGSEL_CI1FE1 == extrigger){ - /* reset the CH1EN bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH1EN); - /* reset the CH1NP bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH1P|TIMER_CHCTL2_CH1NP)); - /* set the CH1NP bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)((uint32_t)extpolarity << 4U); - /* reset the CH1MS bit */ - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1MS); - /* set the CH1MS bit */ - TIMER_CHCTL0(timer_periph) |= (uint32_t)((uint32_t)TIMER_IC_SELECTION_DIRECTTI << 8U); - /* reset the CH1CAPFLT bit */ - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH1CAPFLT); - /* set the CH1CAPFLT bit */ - TIMER_CHCTL0(timer_periph) |= (uint32_t)(extfilter << 12U); - /* set the CH1EN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH1EN; - }else{ - /* reset the CH0EN bit */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)TIMER_CHCTL2_CH0EN); - /* reset the CH0P and CH0NP bits */ - TIMER_CHCTL2(timer_periph) &= (~(uint32_t)(TIMER_CHCTL2_CH0P|TIMER_CHCTL2_CH0NP)); - /* set the CH0P and CH0NP bits */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)extpolarity; - /* reset the CH0MS bit */ - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0MS); - /* set the CH0MS bit */ - TIMER_CHCTL0(timer_periph) |= (uint32_t)TIMER_IC_SELECTION_DIRECTTI; - /* reset the CH0CAPFLT bit */ - TIMER_CHCTL0(timer_periph) &= (~(uint32_t)TIMER_CHCTL0_CH0CAPFLT); - /* reset the CH0CAPFLT bit */ - TIMER_CHCTL0(timer_periph) |= (uint32_t)(extfilter << 4U); - /* set the CH0EN bit */ - TIMER_CHCTL2(timer_periph) |= (uint32_t)TIMER_CHCTL2_CH0EN; - } - /* select TIMER input trigger source */ - timer_input_trigger_source_select(timer_periph,extrigger); - /* reset the SMC bit */ - TIMER_SMCFG(timer_periph) &= (~(uint32_t)TIMER_SMCFG_SMC); - /* set the SMC bit */ - TIMER_SMCFG(timer_periph) |= (uint32_t)TIMER_SLAVE_MODE_EXTERNAL0; -} - -/*! - \brief configure TIMER the external clock mode0 - \param[in] timer_periph: TIMERx(x=0..4,7,8,11) - \param[in] extprescaler: - only one parameter can be selected which is shown as below: - \arg TIMER_EXT_TRI_PSC_OFF: no divided - \arg TIMER_EXT_TRI_PSC_DIV2: divided by 2 - \arg TIMER_EXT_TRI_PSC_DIV4: divided by 4 - \arg TIMER_EXT_TRI_PSC_DIV8: divided by 8 - \param[in] extpolarity: - only one parameter can be selected which is shown as below: - \arg TIMER_ETP_FALLING: active low or falling edge active - \arg TIMER_ETP_RISING: active high or rising edge active - \param[in] extfilter: a value between 0 and 15 - \param[out] none - \retval none -*/ -void timer_external_clock_mode0_config(uint32_t timer_periph, uint32_t extprescaler, - uint32_t extpolarity, uint32_t extfilter) -{ - /* configure TIMER external trigger input */ - timer_external_trigger_config(timer_periph, extprescaler, extpolarity, extfilter); - - /* reset the SMC bit,TRGS bit */ - TIMER_SMCFG(timer_periph) &= (~(uint32_t)(TIMER_SMCFG_SMC | TIMER_SMCFG_TRGS)); - /* set the SMC bit,TRGS bit */ - TIMER_SMCFG(timer_periph) |= (uint32_t)(TIMER_SLAVE_MODE_EXTERNAL0 | TIMER_SMCFG_TRGSEL_ETIFP); -} - -/*! - \brief configure TIMER the external clock mode1 - \param[in] timer_periph: TIMERx(x=0..4,7) - \param[in] extprescaler: - only one parameter can be selected which is shown as below: - \arg TIMER_EXT_TRI_PSC_OFF: no divided - \arg TIMER_EXT_TRI_PSC_DIV2: divided by 2 - \arg TIMER_EXT_TRI_PSC_DIV4: divided by 4 - \arg TIMER_EXT_TRI_PSC_DIV8: divided by 8 - \param[in] extpolarity: - only one parameter can be selected which is shown as below: - \arg TIMER_ETP_FALLING: active low or falling edge active - \arg TIMER_ETP_RISING: active high or rising edge active - \param[in] extfilter: a value between 0 and 15 - \param[out] none - \retval none -*/ -void timer_external_clock_mode1_config(uint32_t timer_periph, uint32_t extprescaler, - uint32_t extpolarity, uint32_t extfilter) -{ - /* configure TIMER external trigger input */ - timer_external_trigger_config(timer_periph, extprescaler, extpolarity, extfilter); - - TIMER_SMCFG(timer_periph) |= (uint32_t)TIMER_SMCFG_SMC1; -} - -/*! - \brief disable TIMER the external clock mode1 - \param[in] timer_periph: TIMERx(x=0..4,7) - \param[out] none - \retval none -*/ -void timer_external_clock_mode1_disable(uint32_t timer_periph) -{ - TIMER_SMCFG(timer_periph) &= ~(uint32_t)TIMER_SMCFG_SMC1; -} - -/*! - \brief configure TIMER channel remap function - \param[in] timer_periph: TIMERx(x=1,4,10) - \param[in] remap: - only one parameter can be selected which is shown as below: - \arg TIMER1_ITI1_RMP_TIMER7_TRGO: timer1 internal trigger input1 remap to TIMER7_TRGO - \arg TIMER1_ITI1_RMP_ETHERNET_PTP: timer1 internal trigger input1 remap to ethernet PTP - \arg TIMER1_ITI1_RMP_USB_FS_SOF: timer1 internal trigger input1 remap to USB FS SOF - \arg TIMER1_ITI1_RMP_USB_HS_SOF: timer1 internal trigger input1 remap to USB HS SOF - \arg TIMER4_CI3_RMP_GPIO: timer4 channel 3 input remap to GPIO pin - \arg TIMER4_CI3_RMP_IRC32K: timer4 channel 3 input remap to IRC32K - \arg TIMER4_CI3_RMP_LXTAL: timer4 channel 3 input remap to LXTAL - \arg TIMER4_CI3_RMP_RTC_WAKEUP_INT: timer4 channel 3 input remap to RTC wakeup interrupt - \arg TIMER10_ITI1_RMP_GPIO: timer10 internal trigger input1 remap based on GPIO setting - \arg TIMER10_ITI1_RMP_RTC_HXTAL_DIV: timer10 internal trigger input1 remap HXTAL _DIV(clock used for RTC which is HXTAL clock divided by RTCDIV bits in RCU_CFG0 register) - \param[out] none - \retval none -*/ -void timer_channel_remap_config(uint32_t timer_periph, uint32_t remap) -{ - TIMER_IRMP(timer_periph) = (uint32_t)remap; -} - -/*! - \brief configure TIMER write CHxVAL register selection - \param[in] timer_periph: TIMERx(x=0,1,2,13,14,15,16) - \param[in] ccsel: - only one parameter can be selected which is shown as below: - \arg TIMER_CHVSEL_DISABLE: no effect - \arg TIMER_CHVSEL_ENABLE: when write the CHxVAL register, if the write value is same as the CHxVAL value, the write access is ignored - \param[out] none - \retval none -*/ -void timer_write_chxval_register_config(uint32_t timer_periph, uint16_t ccsel) -{ - if(TIMER_CHVSEL_ENABLE == ccsel){ - TIMER_CFG(timer_periph) |= (uint32_t)TIMER_CFG_CHVSEL; - }else if(TIMER_CHVSEL_DISABLE == ccsel){ - TIMER_CFG(timer_periph) &= ~(uint32_t)TIMER_CFG_CHVSEL; - }else{ - /* illegal parameters */ - } -} - -/*! - \brief configure TIMER output value selection - \param[in] timer_periph: TIMERx(x=0,7) - \param[in] outsel: - only one parameter can be selected which is shown as below: - \arg TIMER_OUTSEL_DISABLE: no effect - \arg TIMER_OUTSEL_ENABLE: if POEN and IOS is 0, the output disabled - \param[out] none - \retval none -*/ -void timer_output_value_selection_config(uint32_t timer_periph, uint16_t outsel) -{ - if(TIMER_OUTSEL_ENABLE == outsel){ - TIMER_CFG(timer_periph) |= (uint32_t)TIMER_CFG_OUTSEL; - }else if(TIMER_OUTSEL_DISABLE == outsel){ - TIMER_CFG(timer_periph) &= ~(uint32_t)TIMER_CFG_OUTSEL; - }else{ - /* illegal parameters */ - } -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_tli.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_tli.c deleted file mode 100644 index b65e283675..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_tli.c +++ /dev/null @@ -1,598 +0,0 @@ -/*! - \file gd32f4xx_tli.c - \brief TLI driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_tli.h" - -#define TLI_DEFAULT_VALUE 0x00000000U -#define TLI_OPAQUE_VALUE 0x000000FFU - -/*! - \brief deinitialize TLI registers - \param[in] none - \param[out] none - \retval none -*/ -void tli_deinit(void) -{ - rcu_periph_reset_enable(RCU_TLIRST); - rcu_periph_reset_disable(RCU_TLIRST); -} - -/*! - \brief initialize the parameters of TLI parameter structure with the default values, it is suggested - that call this function after a tli_parameter_struct structure is defined - \param[in] none - \param[out] tli_struct: the data needed to initialize TLI - synpsz_vpsz: size of the vertical synchronous pulse - synpsz_hpsz: size of the horizontal synchronous pulse - backpsz_vbpsz: size of the vertical back porch plus synchronous pulse - backpsz_hbpsz: size of the horizontal back porch plus synchronous pulse - activesz_vasz: size of the vertical active area width plus back porch and synchronous pulse - activesz_hasz: size of the horizontal active area width plus back porch and synchronous pulse - totalsz_vtsz: vertical total size of the display, including active area, back porch, synchronous - totalsz_htsz: vorizontal total size of the display, including active area, back porch, synchronous - backcolor_red: background value red - backcolor_green: background value green - backcolor_blue: background value blue - signalpolarity_hs: TLI_HSYN_ACTLIVE_LOW,TLI_HSYN_ACTLIVE_HIGHT - signalpolarity_vs: TLI_VSYN_ACTLIVE_LOW,TLI_VSYN_ACTLIVE_HIGHT - signalpolarity_de: TLI_DE_ACTLIVE_LOW,TLI_DE_ACTLIVE_HIGHT - signalpolarity_pixelck: TLI_PIXEL_CLOCK_TLI,TLI_PIXEL_CLOCK_INVERTEDTLI - \retval none -*/ -void tli_struct_para_init(tli_parameter_struct *tli_struct) -{ - /* initialize the struct parameters with default values */ - tli_struct->synpsz_vpsz = TLI_DEFAULT_VALUE; - tli_struct->synpsz_hpsz = TLI_DEFAULT_VALUE; - tli_struct->backpsz_vbpsz = TLI_DEFAULT_VALUE; - tli_struct->backpsz_hbpsz = TLI_DEFAULT_VALUE; - tli_struct->activesz_vasz = TLI_DEFAULT_VALUE; - tli_struct->activesz_hasz = TLI_DEFAULT_VALUE; - tli_struct->totalsz_vtsz = TLI_DEFAULT_VALUE; - tli_struct->totalsz_htsz = TLI_DEFAULT_VALUE; - tli_struct->backcolor_red = TLI_DEFAULT_VALUE; - tli_struct->backcolor_green = TLI_DEFAULT_VALUE; - tli_struct->backcolor_blue = TLI_DEFAULT_VALUE; - tli_struct->signalpolarity_hs = TLI_HSYN_ACTLIVE_LOW; - tli_struct->signalpolarity_vs = TLI_VSYN_ACTLIVE_LOW; - tli_struct->signalpolarity_de = TLI_DE_ACTLIVE_LOW; - tli_struct->signalpolarity_pixelck = TLI_PIXEL_CLOCK_TLI; -} - -/*! - \brief initialize TLI display timing parameters - \param[in] tli_struct: the data needed to initialize TLI - synpsz_vpsz: size of the vertical synchronous pulse - synpsz_hpsz: size of the horizontal synchronous pulse - backpsz_vbpsz: size of the vertical back porch plus synchronous pulse - backpsz_hbpsz: size of the horizontal back porch plus synchronous pulse - activesz_vasz: size of the vertical active area width plus back porch and synchronous pulse - activesz_hasz: size of the horizontal active area width plus back porch and synchronous pulse - totalsz_vtsz: vertical total size of the display, including active area, back porch, synchronous - totalsz_htsz: vorizontal total size of the display, including active area, back porch, synchronous - backcolor_red: background value red - backcolor_green: background value green - backcolor_blue: background value blue - signalpolarity_hs: TLI_HSYN_ACTLIVE_LOW,TLI_HSYN_ACTLIVE_HIGHT - signalpolarity_vs: TLI_VSYN_ACTLIVE_LOW,TLI_VSYN_ACTLIVE_HIGHT - signalpolarity_de: TLI_DE_ACTLIVE_LOW,TLI_DE_ACTLIVE_HIGHT - signalpolarity_pixelck: TLI_PIXEL_CLOCK_TLI,TLI_PIXEL_CLOCK_INVERTEDTLI - \param[out] none - \retval none -*/ -void tli_init(tli_parameter_struct *tli_struct) -{ - /* synchronous pulse size configuration */ - TLI_SPSZ &= ~(TLI_SPSZ_VPSZ|TLI_SPSZ_HPSZ); - TLI_SPSZ = (uint32_t)((uint32_t)tli_struct->synpsz_vpsz|((uint32_t)tli_struct->synpsz_hpsz<<16U)); - /* back-porch size configuration */ - TLI_BPSZ &= ~(TLI_BPSZ_VBPSZ|TLI_BPSZ_HBPSZ); - TLI_BPSZ = (uint32_t)((uint32_t)tli_struct->backpsz_vbpsz|((uint32_t)tli_struct->backpsz_hbpsz<<16U)); - /* active size configuration */ - TLI_ASZ &= ~(TLI_ASZ_VASZ|TLI_ASZ_HASZ); - TLI_ASZ = (tli_struct->activesz_vasz|(tli_struct->activesz_hasz<<16U)); - /* total size configuration */ - TLI_TSZ &= ~(TLI_TSZ_VTSZ|TLI_TSZ_HTSZ); - TLI_TSZ = (tli_struct->totalsz_vtsz|(tli_struct->totalsz_htsz<<16U)); - /* background color configuration */ - TLI_BGC &= ~(TLI_BGC_BVB|(TLI_BGC_BVG)|(TLI_BGC_BVR)); - TLI_BGC = (tli_struct->backcolor_blue|(tli_struct->backcolor_green<<8U)|(tli_struct->backcolor_red<<16U)); - TLI_CTL &= ~(TLI_CTL_HPPS|TLI_CTL_VPPS|TLI_CTL_DEPS|TLI_CTL_CLKPS); - TLI_CTL |= (tli_struct->signalpolarity_hs|tli_struct->signalpolarity_vs|\ - tli_struct->signalpolarity_de|tli_struct->signalpolarity_pixelck); - -} - -/*! - \brief configure TLI dither function - \param[in] dither_stat - only one parameter can be selected which is shown as below: - \arg TLI_DITHER_ENABLE - \arg TLI_DITHER_DISABLE - \param[out] none - \retval none -*/ -void tli_dither_config(uint8_t dither_stat) -{ - if(TLI_DITHER_ENABLE == dither_stat){ - TLI_CTL |= TLI_CTL_DFEN; - }else{ - TLI_CTL &= ~(TLI_CTL_DFEN); - } -} - -/*! - \brief enable TLI - \param[in] none - \param[out] none - \retval none -*/ -void tli_enable(void) -{ - TLI_CTL |= TLI_CTL_TLIEN; -} - -/*! - \brief disable TLI - \param[in] none - \param[out] none - \retval none -*/ -void tli_disable(void) -{ - TLI_CTL &= ~(TLI_CTL_TLIEN); -} - -/*! - \brief configure TLI reload mode - \param[in] reload_mod - only one parameter can be selected which is shown as below: - \arg TLI_FRAME_BLANK_RELOAD_EN - \arg TLI_REQUEST_RELOAD_EN - \param[out] none - \retval none -*/ -void tli_reload_config(uint8_t reload_mod) -{ - if(TLI_FRAME_BLANK_RELOAD_EN == reload_mod){ - /* the layer configuration will be reloaded at frame blank */ - TLI_RL |= TLI_RL_FBR; - }else{ - /* the layer configuration will be reloaded after this bit sets */ - TLI_RL |= TLI_RL_RQR; - } -} - -/*! - \brief initialize the parameters of TLI layer structure with the default values, it is suggested - that call this function after a tli_layer_parameter_struct structure is defined - \param[in] none - \param[out] layer_struct: TLI Layer parameter struct - layer_window_rightpos: window right position - layer_window_leftpos: window left position - layer_window_bottompos: window bottom position - layer_window_toppos: window top position - layer_ppf: LAYER_PPF_ARGB8888,LAYER_PPF_RGB888,LAYER_PPF_RGB565, - LAYER_PPF_ARG1555,LAYER_PPF_ARGB4444,LAYER_PPF_L8, - LAYER_PPF_AL44,LAYER_PPF_AL88 - layer_sa: specified alpha - layer_default_alpha: the default color alpha - layer_default_red: the default color red - layer_default_green: the default color green - layer_default_blue: the default color blue - layer_acf1: LAYER_ACF1_SA,LAYER_ACF1_PASA - layer_acf2: LAYER_ACF2_SA,LAYER_ACF2_PASA - layer_frame_bufaddr: frame buffer base address - layer_frame_buf_stride_offset: frame buffer stride offset - layer_frame_line_length: frame line length - layer_frame_total_line_number: frame total line number - \retval none -*/ -void tli_layer_struct_para_init(tli_layer_parameter_struct *layer_struct) -{ - /* initialize the struct parameters with default values */ - layer_struct->layer_window_rightpos = TLI_DEFAULT_VALUE; - layer_struct->layer_window_leftpos = TLI_DEFAULT_VALUE; - layer_struct->layer_window_bottompos = TLI_DEFAULT_VALUE; - layer_struct->layer_window_toppos = TLI_DEFAULT_VALUE; - layer_struct->layer_ppf = LAYER_PPF_ARGB8888; - layer_struct->layer_sa = TLI_OPAQUE_VALUE; - layer_struct->layer_default_alpha = TLI_DEFAULT_VALUE; - layer_struct->layer_default_red = TLI_DEFAULT_VALUE; - layer_struct->layer_default_green = TLI_DEFAULT_VALUE; - layer_struct->layer_default_blue = TLI_DEFAULT_VALUE; - layer_struct->layer_acf1 = LAYER_ACF1_PASA; - layer_struct->layer_acf2 = LAYER_ACF2_PASA; - layer_struct->layer_frame_bufaddr = TLI_DEFAULT_VALUE; - layer_struct->layer_frame_buf_stride_offset = TLI_DEFAULT_VALUE; - layer_struct->layer_frame_line_length = TLI_DEFAULT_VALUE; - layer_struct->layer_frame_total_line_number = TLI_DEFAULT_VALUE; -} - -/*! - \brief initialize TLI layer - \param[in] layerx: LAYERx(x=0,1) - \param[in] layer_struct: TLI Layer parameter struct - layer_window_rightpos: window right position - layer_window_leftpos: window left position - layer_window_bottompos: window bottom position - layer_window_toppos: window top position - layer_ppf: LAYER_PPF_ARGB8888,LAYER_PPF_RGB888,LAYER_PPF_RGB565, - LAYER_PPF_ARG1555,LAYER_PPF_ARGB4444,LAYER_PPF_L8, - LAYER_PPF_AL44,LAYER_PPF_AL88 - layer_sa: specified alpha - layer_default_alpha: the default color alpha - layer_default_red: the default color red - layer_default_green: the default color green - layer_default_blue: the default color blue - layer_acf1: LAYER_ACF1_SA,LAYER_ACF1_PASA - layer_acf2: LAYER_ACF2_SA,LAYER_ACF2_PASA - layer_frame_bufaddr: frame buffer base address - layer_frame_buf_stride_offset: frame buffer stride offset - layer_frame_line_length: frame line length - layer_frame_total_line_number: frame total line number - \param[out] none - \retval none -*/ -void tli_layer_init(uint32_t layerx,tli_layer_parameter_struct *layer_struct) -{ - /* configure layer window horizontal position */ - TLI_LxHPOS(layerx) &= ~(TLI_LxHPOS_WLP|(TLI_LxHPOS_WRP)); - TLI_LxHPOS(layerx) = (uint32_t)((uint32_t)layer_struct->layer_window_leftpos|((uint32_t)layer_struct->layer_window_rightpos<<16U)); - /* configure layer window vertical position */ - TLI_LxVPOS(layerx) &= ~(TLI_LxVPOS_WTP|(TLI_LxVPOS_WBP)); - TLI_LxVPOS(layerx) = (uint32_t)((uint32_t)layer_struct->layer_window_toppos|((uint32_t)layer_struct->layer_window_bottompos<<16U)); - /* configure layer packeted pixel format */ - TLI_LxPPF(layerx) &= ~(TLI_LxPPF_PPF); - TLI_LxPPF(layerx) = layer_struct->layer_ppf; - /* configure layer specified alpha */ - TLI_LxSA(layerx) &= ~(TLI_LxSA_SA); - TLI_LxSA(layerx) = layer_struct->layer_sa; - /* configure layer default color */ - TLI_LxDC(layerx) &= ~(TLI_LxDC_DCB|(TLI_LxDC_DCG)|(TLI_LxDC_DCR)|(TLI_LxDC_DCA)); - TLI_LxDC(layerx) = (uint32_t)((uint32_t)layer_struct->layer_default_blue|((uint32_t)layer_struct->layer_default_green<<8U) - |((uint32_t)layer_struct->layer_default_red<<16U) - |((uint32_t)layer_struct->layer_default_alpha<<24U)); - - /* configure layer alpha calculation factors */ - TLI_LxBLEND(layerx) &= ~(TLI_LxBLEND_ACF2|(TLI_LxBLEND_ACF1)); - TLI_LxBLEND(layerx) = ((layer_struct->layer_acf2)|(layer_struct->layer_acf1)); - /* configure layer frame buffer base address */ - TLI_LxFBADDR(layerx) &= ~(TLI_LxFBADDR_FBADD); - TLI_LxFBADDR(layerx) = (layer_struct->layer_frame_bufaddr); - /* configure layer frame line length */ - TLI_LxFLLEN(layerx) &= ~(TLI_LxFLLEN_FLL|(TLI_LxFLLEN_STDOFF)); - TLI_LxFLLEN(layerx) = (uint32_t)((uint32_t)layer_struct->layer_frame_line_length|((uint32_t)layer_struct->layer_frame_buf_stride_offset<<16U)); - /* configure layer frame total line number */ - TLI_LxFTLN(layerx) &= ~(TLI_LxFTLN_FTLN); - TLI_LxFTLN(layerx) = (uint32_t)(layer_struct->layer_frame_total_line_number); - -} - -/*! - \brief reconfigure window position - \param[in] layerx: LAYERx(x=0,1) - \param[in] offset_x: new horizontal offset - \param[in] offset_y: new vertical offset - \param[out] none - \retval none -*/ -void tli_layer_window_offset_modify(uint32_t layerx,uint16_t offset_x,uint16_t offset_y) -{ - /* configure window start position */ - uint32_t layer_ppf, line_num, hstart, vstart; - uint32_t line_length = 0U; - TLI_LxHPOS(layerx) &= ~(TLI_LxHPOS_WLP|(TLI_LxHPOS_WRP)); - TLI_LxVPOS(layerx) &= ~(TLI_LxVPOS_WTP|(TLI_LxVPOS_WBP)); - hstart = (uint32_t)offset_x+(((TLI_BPSZ & TLI_BPSZ_HBPSZ)>>16U)+1U); - vstart = (uint32_t)offset_y+((TLI_BPSZ & TLI_BPSZ_VBPSZ)+1U); - line_num = (TLI_LxFTLN(layerx) & TLI_LxFTLN_FTLN); - layer_ppf = (TLI_LxPPF(layerx) & TLI_LxPPF_PPF); - /* the bytes of a line equal TLI_LxFLLEN_FLL bits value minus 3 */ - switch(layer_ppf){ - case LAYER_PPF_ARGB8888: - /* each pixel includes 4bytes, when pixel format is ARGB8888 */ - line_length = (((TLI_LxFLLEN(layerx) & TLI_LxFLLEN_FLL)-3U)/4U); - break; - case LAYER_PPF_RGB888: - /* each pixel includes 3bytes, when pixel format is RGB888 */ - line_length = (((TLI_LxFLLEN(layerx) & TLI_LxFLLEN_FLL)-3U)/3U); - break; - case LAYER_PPF_RGB565: - case LAYER_PPF_ARGB1555: - case LAYER_PPF_ARGB4444: - case LAYER_PPF_AL88: - /* each pixel includes 2bytes, when pixel format is RGB565,ARG1555,ARGB4444 or AL88 */ - line_length = (((TLI_LxFLLEN(layerx) & TLI_LxFLLEN_FLL)-3U)/2U); - break; - case LAYER_PPF_L8: - case LAYER_PPF_AL44: - /* each pixel includes 1byte, when pixel format is L8 or AL44 */ - line_length = (((TLI_LxFLLEN(layerx) & TLI_LxFLLEN_FLL)-3U)); - break; - default: - break; - } - /* reconfigure window position */ - TLI_LxHPOS(layerx) = (hstart|((hstart+line_length-1U)<<16U)); - TLI_LxVPOS(layerx) = (vstart|((vstart+line_num-1U)<<16U)); -} - -/*! - \brief initialize the parameters of TLI layer LUT structure with the default values, it is suggested - that call this function after a tli_layer_lut_parameter_struct structure is defined - \param[in] none - \param[out] lut_struct: TLI layer LUT parameter struct - layer_table_addr: look up table write address - layer_lut_channel_red: red channel of a LUT entry - layer_lut_channel_green: green channel of a LUT entry - layer_lut_channel_blue: blue channel of a LUT entry - \retval none -*/ -void tli_lut_struct_para_init(tli_layer_lut_parameter_struct *lut_struct) -{ - /* initialize the struct parameters with default values */ - lut_struct->layer_table_addr = TLI_DEFAULT_VALUE; - lut_struct->layer_lut_channel_red = TLI_DEFAULT_VALUE; - lut_struct->layer_lut_channel_green = TLI_DEFAULT_VALUE; - lut_struct->layer_lut_channel_blue = TLI_DEFAULT_VALUE; -} - -/*! - \brief initialize TLI layer LUT - \param[in] layerx: LAYERx(x=0,1) - \param[in] lut_struct: TLI layer LUT parameter struct - layer_table_addr: look up table write address - layer_lut_channel_red: red channel of a LUT entry - layer_lut_channel_green: green channel of a LUT entry - layer_lut_channel_blue: blue channel of a LUT entry - \param[out] none - \retval none -*/ -void tli_lut_init(uint32_t layerx,tli_layer_lut_parameter_struct *lut_struct) -{ - TLI_LxLUT(layerx) &= ~(TLI_LxLUT_TB|TLI_LxLUT_TG|TLI_LxLUT_TR|TLI_LxLUT_TADD); - TLI_LxLUT(layerx) = (uint32_t)(((uint32_t)lut_struct->layer_lut_channel_blue)|((uint32_t)lut_struct->layer_lut_channel_green<<8U) - |((uint32_t)lut_struct->layer_lut_channel_red<<16U - |((uint32_t)lut_struct->layer_table_addr<<24U))); -} - -/*! - \brief initialize TLI layer color key - \param[in] layerx: LAYERx(x=0,1) - \param[in] redkey: color key red - \param[in] greenkey: color key green - \param[in] bluekey: color key blue - \param[out] none - \retval none -*/ -void tli_color_key_init(uint32_t layerx,uint8_t redkey,uint8_t greenkey,uint8_t bluekey) -{ - TLI_LxCKEY(layerx) = (((uint32_t)bluekey)|((uint32_t)greenkey<<8U)|((uint32_t)redkey<<16U)); -} - -/*! - \brief enable TLI layer - \param[in] layerx: LAYERx(x=0,1) - \param[out] none - \retval none -*/ -void tli_layer_enable(uint32_t layerx) -{ - TLI_LxCTL(layerx) |= TLI_LxCTL_LEN; -} - -/*! - \brief disable TLI layer - \param[in] layerx: LAYERx(x=0,1) - \param[out] none - \retval none -*/ -void tli_layer_disable(uint32_t layerx) -{ - TLI_LxCTL(layerx) &= ~(TLI_LxCTL_LEN); -} - -/*! - \brief enable TLI layer color keying - \param[in] layerx: LAYERx(x=0,1) - \param[out] none - \retval none -*/ -void tli_color_key_enable(uint32_t layerx) -{ - TLI_LxCTL(layerx) |= TLI_LxCTL_CKEYEN; -} - -/*! - \brief disable TLI layer color keying - \param[in] layerx: LAYERx(x=0,1) - \param[out] none - \retval none -*/ -void tli_color_key_disable(uint32_t layerx) -{ - TLI_LxCTL(layerx) &= ~(TLI_LxCTL_CKEYEN); -} - -/*! - \brief enable TLI layer LUT - \param[in] layerx: LAYERx(x=0,1) - \param[out] none - \retval none -*/ -void tli_lut_enable(uint32_t layerx) -{ - TLI_LxCTL(layerx) |= TLI_LxCTL_LUTEN; -} - -/*! - \brief disable TLI layer LUT - \param[in] layerx: LAYERx(x=0,1) - \param[out] none - \retval none -*/ -void tli_lut_disable(uint32_t layerx) -{ - TLI_LxCTL(layerx) &= ~(TLI_LxCTL_LUTEN); -} - -/*! - \brief set line mark value - \param[in] line_num: line number - \param[out] none - \retval none -*/ -void tli_line_mark_set(uint16_t line_num) -{ - TLI_LM &= ~(TLI_LM_LM); - TLI_LM = (uint32_t)line_num; -} - -/*! - \brief get current displayed position - \param[in] none - \param[out] none - \retval position of current pixel -*/ -uint32_t tli_current_pos_get(void) -{ - return TLI_CPPOS; -} - -/*! - \brief enable TLI interrupt - \param[in] int_flag: TLI interrupt flags - one or more parameters can be selected which are shown as below: - \arg TLI_INT_LM: line mark interrupt - \arg TLI_INT_FE: FIFO error interrupt - \arg TLI_INT_TE: transaction error interrupt - \arg TLI_INT_LCR: layer configuration reloaded interrupt - \param[out] none - \retval none -*/ -void tli_interrupt_enable(uint32_t int_flag) -{ - TLI_INTEN |= (int_flag); -} - -/*! - \brief disable TLI interrupt - \param[in] int_flag: TLI interrupt flags - one or more parameters can be selected which are shown as below: - \arg TLI_INT_LM: line mark interrupt - \arg TLI_INT_FE: FIFO error interrupt - \arg TLI_INT_TE: transaction error interrupt - \arg TLI_INT_LCR: layer configuration reloaded interrupt - \param[out] none - \retval none -*/ -void tli_interrupt_disable(uint32_t int_flag) -{ - TLI_INTEN &= ~(int_flag); -} - -/*! - \brief get TLI interrupt flag - \param[in] int_flag: TLI interrupt flags - one or more parameters can be selected which are shown as below: - \arg TLI_INT_FLAG_LM: line mark interrupt flag - \arg TLI_INT_FLAG_FE: FIFO error interrupt flag - \arg TLI_INT_FLAG_TE: transaction error interrupt flag - \arg TLI_INT_FLAG_LCR: layer configuration reloaded interrupt flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus tli_interrupt_flag_get(uint32_t int_flag) -{ - uint32_t state; - state = TLI_INTF; - if(state & int_flag){ - state = TLI_INTEN; - if(state & int_flag){ - return SET; - } - } - return RESET; -} - -/*! - \brief clear TLI interrupt flag - \param[in] int_flag: TLI interrupt flags - one or more parameters can be selected which are shown as below: - \arg TLI_INT_FLAG_LM: line mark interrupt flag - \arg TLI_INT_FLAG_FE: FIFO error interrupt flag - \arg TLI_INT_FLAG_TE: transaction error interrupt flag - \arg TLI_INT_FLAG_LCR: layer configuration reloaded interrupt flag - \param[out] none - \retval none -*/ -void tli_interrupt_flag_clear(uint32_t int_flag) -{ - TLI_INTC |= (int_flag); -} - -/*! - \brief get TLI flag or state in TLI_INTF register or TLI_STAT register - \param[in] flag: TLI flags or states - only one parameter can be selected which is shown as below: - \arg TLI_FLAG_VDE: current VDE state - \arg TLI_FLAG_HDE: current HDE state - \arg TLI_FLAG_VS: current VS status of the TLI - \arg TLI_FLAG_HS: current HS status of the TLI - \arg TLI_FLAG_LM: line mark interrupt flag - \arg TLI_FLAG_FE: FIFO error interrupt flag - \arg TLI_FLAG_TE: transaction error interrupt flag - \arg TLI_FLAG_LCR: layer configuration reloaded interrupt flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus tli_flag_get(uint32_t flag) -{ - uint32_t stat; - /* choose which register to get flag or state */ - if(flag >> 31U){ - stat = TLI_INTF; - }else{ - stat = TLI_STAT; - } - if(flag & stat){ - return SET; - }else{ - return RESET; - } -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_trng.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_trng.c deleted file mode 100644 index b70ac9fb0c..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_trng.c +++ /dev/null @@ -1,155 +0,0 @@ -/*! - \file gd32f4xx_trng.c - \brief TRNG driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gd32f4xx_trng.h" - -/*! - \brief deinitialize the TRNG - \param[in] none - \param[out] none - \retval none -*/ -void trng_deinit(void) -{ - rcu_periph_reset_enable(RCU_TRNGRST); - rcu_periph_reset_disable(RCU_TRNGRST); -} - -/*! - \brief enable the TRNG interface - \param[in] none - \param[out] none - \retval none -*/ -void trng_enable(void) -{ - TRNG_CTL |= TRNG_CTL_TRNGEN; -} - -/*! - \brief disable the TRNG interface - \param[in] none - \param[out] none - \retval none -*/ -void trng_disable(void) -{ - TRNG_CTL &= ~TRNG_CTL_TRNGEN; -} - -/*! - \brief get the true random data - \param[in] none - \param[out] none - \retval the generated random data -*/ -uint32_t trng_get_true_random_data(void) -{ - return (TRNG_DATA); -} - -/*! - \brief enable the TRNG interrupt - \param[in] none - \param[out] none - \retval none -*/ -void trng_interrupt_enable(void) -{ - TRNG_CTL |= TRNG_CTL_IE; -} - -/*! - \brief disable the TRNG interrupt - \param[in] none - \param[out] none - \retval none -*/ -void trng_interrupt_disable(void) -{ - TRNG_CTL &= ~TRNG_CTL_IE; -} - -/*! - \brief get the trng status flags - \param[in] flag: trng status flag, refer to trng_flag_enum - only one parameter can be selected which is shown as below: - \arg TRNG_FLAG_DRDY: Random Data ready status - \arg TRNG_FLAG_CECS: Clock error current status - \arg TRNG_FLAG_SECS: Seed error current status - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus trng_flag_get(trng_flag_enum flag) -{ - if(RESET != (TRNG_STAT & flag)){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief get the trng interrupt flags - \param[in] int_flag: trng interrupt flag, refer to trng_int_flag_enum - only one parameter can be selected which is shown as below: - \arg TRNG_INT_FLAG_CEIF: clock error interrupt flag - \arg TRNG_INT_FLAG_SEIF: Seed error interrupt flag - \param[out] none - \retval FlagStatus: SET or RESET -*/ -FlagStatus trng_interrupt_flag_get(trng_int_flag_enum int_flag) -{ - if(RESET != (TRNG_STAT & int_flag)){ - return SET; - }else{ - return RESET; - } -} - -/*! - \brief clear the trng interrupt flags - \param[in] int_flag: trng interrupt flag, refer to trng_int_flag_enum - only one parameter can be selected which is shown as below: - \arg TRNG_INT_FLAG_CEIF: clock error interrupt flag - \arg TRNG_INT_FLAG_SEIF: Seed error interrupt flag - \param[out] none - \retval none -*/ -void trng_interrupt_flag_clear(trng_int_flag_enum int_flag) -{ - TRNG_STAT &= ~(uint32_t)int_flag; -} diff --git a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_usart.c b/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_usart.c deleted file mode 100644 index c2f3bf6037..0000000000 --- a/Marlin/lib/GD32F4xx_standard_peripheral/Source/gd32f4xx_usart.c +++ /dev/null @@ -1,1009 +0,0 @@ -/*! - \file gd32f4xx_usart.c - \brief USART driver - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - - -#include "gd32f4xx_usart.h" - -/* USART register bit offset */ -#define GP_GUAT_OFFSET ((uint32_t)8U) /* bit offset of GUAT in USART_GP */ -#define CTL3_SCRTNUM_OFFSET ((uint32_t)1U) /* bit offset of SCRTNUM in USART_CTL3 */ -#define RT_BL_OFFSET ((uint32_t)24U) /* bit offset of BL in USART_RT */ - -/*! - \brief reset USART/UART - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[out] none - \retval none -*/ -void usart_deinit(uint32_t usart_periph) -{ - switch(usart_periph){ - case USART0: - rcu_periph_reset_enable(RCU_USART0RST); - rcu_periph_reset_disable(RCU_USART0RST); - break; - case USART1: - rcu_periph_reset_enable(RCU_USART1RST); - rcu_periph_reset_disable(RCU_USART1RST); - break; - case USART2: - rcu_periph_reset_enable(RCU_USART2RST); - rcu_periph_reset_disable(RCU_USART2RST); - break; - case USART5: - rcu_periph_reset_enable(RCU_USART5RST); - rcu_periph_reset_disable(RCU_USART5RST); - break; - case UART3: - rcu_periph_reset_enable(RCU_UART3RST); - rcu_periph_reset_disable(RCU_UART3RST); - break; - case UART4: - rcu_periph_reset_enable(RCU_UART4RST); - rcu_periph_reset_disable(RCU_UART4RST); - break; - case UART6: - rcu_periph_reset_enable(RCU_UART6RST); - rcu_periph_reset_disable(RCU_UART6RST); - break; - case UART7: - rcu_periph_reset_enable(RCU_UART7RST); - rcu_periph_reset_disable(RCU_UART7RST); - break; - default: - break; - } -} - -/*! - \brief configure USART baud rate value - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[in] baudval: baud rate value - \param[out] none - \retval none -*/ -void usart_baudrate_set(uint32_t usart_periph, uint32_t baudval) -{ - uint32_t uclk=0U, intdiv=0U, fradiv=0U, udiv=0U; - switch(usart_periph){ - /* get clock frequency */ - case USART0: - uclk=rcu_clock_freq_get(CK_APB2); - break; - case USART5: - uclk=rcu_clock_freq_get(CK_APB2); - break; - case USART1: - uclk=rcu_clock_freq_get(CK_APB1); - break; - case USART2: - uclk=rcu_clock_freq_get(CK_APB1); - break; - case UART3: - uclk=rcu_clock_freq_get(CK_APB1); - break; - case UART4: - uclk=rcu_clock_freq_get(CK_APB1); - break; - case UART6: - uclk=rcu_clock_freq_get(CK_APB1); - break; - case UART7: - uclk=rcu_clock_freq_get(CK_APB1); - break; - default: - break; - } - if(USART_CTL0(usart_periph) & USART_CTL0_OVSMOD){ - /* when oversampling by 8, configure the value of USART_BAUD */ - udiv = ((2U*uclk) + baudval/2U)/baudval; - intdiv = udiv & 0xfff0U; - fradiv = (udiv>>1U) & 0x7U; - USART_BAUD(usart_periph) = ((USART_BAUD_FRADIV | USART_BAUD_INTDIV) & (intdiv | fradiv)); - }else{ - /* when oversampling by 16, configure the value of USART_BAUD */ - udiv = (uclk+baudval/2U)/baudval; - intdiv = udiv & 0xfff0U; - fradiv = udiv & 0xfU; - USART_BAUD(usart_periph) = ((USART_BAUD_FRADIV | USART_BAUD_INTDIV) & (intdiv | fradiv)); - } -} - -/*! - \brief configure USART parity function - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[in] paritycfg: configure USART parity - only one parameter can be selected which is shown as below: - \arg USART_PM_NONE: no parity - \arg USART_PM_EVEN: even parity - \arg USART_PM_ODD: odd parity - \param[out] none - \retval none -*/ -void usart_parity_config(uint32_t usart_periph, uint32_t paritycfg) -{ - /* clear USART_CTL0 PM,PCEN Bits */ - USART_CTL0(usart_periph) &= ~(USART_CTL0_PM | USART_CTL0_PCEN); - /* configure USART parity mode */ - USART_CTL0(usart_periph) |= paritycfg ; -} - -/*! - \brief configure USART word length - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[in] wlen: USART word length configure - only one parameter can be selected which is shown as below: - \arg USART_WL_8BIT: 8 bits - \arg USART_WL_9BIT: 9 bits - \param[out] none - \retval none -*/ -void usart_word_length_set(uint32_t usart_periph, uint32_t wlen) -{ - /* clear USART_CTL0 WL bit */ - USART_CTL0(usart_periph) &= ~USART_CTL0_WL; - /* configure USART word length */ - USART_CTL0(usart_periph) |= wlen; -} - -/*! - \brief configure USART stop bit length - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[in] stblen: USART stop bit configure - only one parameter can be selected which is shown as below: - \arg USART_STB_1BIT: 1 bit - \arg USART_STB_0_5BIT: 0.5 bit(not available for UARTx(x=3,4,6,7)) - \arg USART_STB_2BIT: 2 bits - \arg USART_STB_1_5BIT: 1.5 bits(not available for UARTx(x=3,4,6,7)) - \param[out] none - \retval none -*/ -void usart_stop_bit_set(uint32_t usart_periph, uint32_t stblen) -{ - /* clear USART_CTL1 STB bits */ - USART_CTL1(usart_periph) &= ~USART_CTL1_STB; - /* configure USART stop bits */ - USART_CTL1(usart_periph) |= stblen; -} -/*! - \brief enable USART - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[out] none - \retval none -*/ -void usart_enable(uint32_t usart_periph) -{ - USART_CTL0(usart_periph) |= USART_CTL0_UEN; -} - -/*! - \brief disable USART - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[out] none - \retval none -*/ -void usart_disable(uint32_t usart_periph) -{ - USART_CTL0(usart_periph) &= ~(USART_CTL0_UEN); -} - -/*! - \brief configure USART transmitter - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[in] txconfig: enable or disable USART transmitter - only one parameter can be selected which is shown as below: - \arg USART_TRANSMIT_ENABLE: enable USART transmission - \arg USART_TRANSMIT_DISABLE: enable USART transmission - \param[out] none - \retval none -*/ -void usart_transmit_config(uint32_t usart_periph, uint32_t txconfig) -{ - uint32_t ctl = 0U; - - ctl = USART_CTL0(usart_periph); - ctl &= ~USART_CTL0_TEN; - ctl |= txconfig; - /* configure transfer mode */ - USART_CTL0(usart_periph) = ctl; -} - -/*! - \brief configure USART receiver - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[in] rxconfig: enable or disable USART receiver - only one parameter can be selected which is shown as below: - \arg USART_RECEIVE_ENABLE: enable USART reception - \arg USART_RECEIVE_DISABLE: disable USART reception - \param[out] none - \retval none -*/ -void usart_receive_config(uint32_t usart_periph, uint32_t rxconfig) -{ - uint32_t ctl = 0U; - - ctl = USART_CTL0(usart_periph); - ctl &= ~USART_CTL0_REN; - ctl |= rxconfig; - /* configure transfer mode */ - USART_CTL0(usart_periph) = ctl; -} - -/*! - \brief data is transmitted/received with the LSB/MSB first - \param[in] usart_periph: USARTx(x=0,1,2,5) - \param[in] msbf: LSB/MSB - only one parameter can be selected which is shown as below: - \arg USART_MSBF_LSB: LSB first - \arg USART_MSBF_MSB: MSB first - \param[out] none - \retval none -*/ -void usart_data_first_config(uint32_t usart_periph, uint32_t msbf) -{ - uint32_t ctl = 0U; - - ctl = USART_CTL3(usart_periph); - ctl &= ~(USART_CTL3_MSBF); - ctl |= msbf; - /* configure data transmitted/received mode */ - USART_CTL3(usart_periph) = ctl; -} - -/*! - \brief configure USART inversion - \param[in] usart_periph: USARTx(x=0,1,2,5) - \param[in] invertpara: refer to enum USART_INVERT_CONFIG - only one parameter can be selected which is shown as below: - \arg USART_DINV_ENABLE: data bit level inversion - \arg USART_DINV_DISABLE: data bit level not inversion - \arg USART_TXPIN_ENABLE: TX pin level inversion - \arg USART_TXPIN_DISABLE: TX pin level not inversion - \arg USART_RXPIN_ENABLE: RX pin level inversion - \arg USART_RXPIN_DISABLE: RX pin level not inversion - \param[out] none - \retval none -*/ -void usart_invert_config(uint32_t usart_periph, usart_invert_enum invertpara) -{ - /* inverted or not the specified siginal */ - switch(invertpara){ - case USART_DINV_ENABLE: - USART_CTL3(usart_periph) |= USART_CTL3_DINV; - break; - case USART_TXPIN_ENABLE: - USART_CTL3(usart_periph) |= USART_CTL3_TINV; - break; - case USART_RXPIN_ENABLE: - USART_CTL3(usart_periph) |= USART_CTL3_RINV; - break; - case USART_DINV_DISABLE: - USART_CTL3(usart_periph) &= ~(USART_CTL3_DINV); - break; - case USART_TXPIN_DISABLE: - USART_CTL3(usart_periph) &= ~(USART_CTL3_TINV); - break; - case USART_RXPIN_DISABLE: - USART_CTL3(usart_periph) &= ~(USART_CTL3_RINV); - break; - default: - break; - } -} - -/*! - \brief configure the USART oversample mode - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[in] oversamp: oversample value - only one parameter can be selected which is shown as below: - \arg USART_OVSMOD_8: 8 bits - \arg USART_OVSMOD_16: 16 bits - \param[out] none - \retval none -*/ -void usart_oversample_config(uint32_t usart_periph, uint32_t oversamp) -{ - /* clear OVSMOD bit */ - USART_CTL0(usart_periph) &= ~(USART_CTL0_OVSMOD); - USART_CTL0(usart_periph) |= oversamp; -} - -/*! - \brief configure sample bit method - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[in] obsm: sample bit - only one parameter can be selected which is shown as below: - \arg USART_OSB_1bit: 1 bit - \arg USART_OSB_3bit: 3 bits - \param[out] none - \retval none -*/ -void usart_sample_bit_config(uint32_t usart_periph, uint32_t obsm) -{ - USART_CTL2(usart_periph) &= ~(USART_CTL2_OSB); - USART_CTL2(usart_periph) |= obsm; -} - -/*! - \brief enable receiver timeout of USART - \param[in] usart_periph: USARTx(x=0,1,2,5) - \param[out] none - \retval none -*/ -void usart_receiver_timeout_enable(uint32_t usart_periph) -{ - USART_CTL3(usart_periph) |= USART_CTL3_RTEN; -} - -/*! - \brief disable receiver timeout of USART - \param[in] usart_periph: USARTx(x=0,1,2,5) - \param[out] none - \retval none -*/ -void usart_receiver_timeout_disable(uint32_t usart_periph) -{ - USART_CTL3(usart_periph) &= ~(USART_CTL3_RTEN); -} - -/*! - \brief set the receiver timeout threshold of USART - \param[in] usart_periph: USARTx(x=0,1,2,5) - \param[in] rtimeout: 0-0x00FFFFFF - \param[out] none - \retval none -*/ -void usart_receiver_timeout_threshold_config(uint32_t usart_periph, uint32_t rtimeout) -{ - USART_RT(usart_periph) &= ~(USART_RT_RT); - USART_RT(usart_periph) |= rtimeout; -} - -/*! - \brief USART transmit data function - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[in] data: data of transmission - \param[out] none - \retval none -*/ -void usart_data_transmit(uint32_t usart_periph, uint32_t data) -{ - USART_DATA(usart_periph) = ((uint16_t)USART_DATA_DATA & data); -} - -/*! - \brief USART receive data function - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[out] none - \retval data of received -*/ -uint16_t usart_data_receive(uint32_t usart_periph) -{ - return (uint16_t)(GET_BITS(USART_DATA(usart_periph), 0U, 8U)); -} - -/*! - \brief configure the address of the USART in wake up by address match mode - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[in] addr: address of USART/UART - \param[out] none - \retval none -*/ -void usart_address_config(uint32_t usart_periph, uint8_t addr) -{ - USART_CTL1(usart_periph) &= ~(USART_CTL1_ADDR); - USART_CTL1(usart_periph) |= (USART_CTL1_ADDR & addr); -} - -/*! - \brief enable mute mode - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[out] none - \retval none -*/ -void usart_mute_mode_enable(uint32_t usart_periph) -{ - USART_CTL0(usart_periph) |= USART_CTL0_RWU; -} - -/*! - \brief disable mute mode - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[out] none - \retval none -*/ -void usart_mute_mode_disable(uint32_t usart_periph) -{ - USART_CTL0(usart_periph) &= ~(USART_CTL0_RWU); -} - -/*! - \brief configure wakeup method in mute mode - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[in] wmehtod: two method be used to enter or exit the mute mode - only one parameter can be selected which is shown as below: - \arg USART_WM_IDLE: idle line - \arg USART_WM_ADDR: address mask - \param[out] none - \retval none -*/ -void usart_mute_mode_wakeup_config(uint32_t usart_periph, uint32_t wmehtod) -{ - USART_CTL0(usart_periph) &= ~(USART_CTL0_WM); - USART_CTL0(usart_periph) |= wmehtod; -} - -/*! - \brief enable LIN mode - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[out] none - \retval none -*/ -void usart_lin_mode_enable(uint32_t usart_periph) -{ - USART_CTL1(usart_periph) |= USART_CTL1_LMEN; -} - -/*! - \brief disable LIN mode - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[out] none - \retval none -*/ -void usart_lin_mode_disable(uint32_t usart_periph) -{ - USART_CTL1(usart_periph) &= ~(USART_CTL1_LMEN); -} - -/*! - \brief configure lin break frame length - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[in] lblen: lin break frame length - only one parameter can be selected which is shown as below: - \arg USART_LBLEN_10B: 10 bits - \arg USART_LBLEN_11B: 11 bits - \param[out] none - \retval none -*/ -void usart_lin_break_detection_length_config(uint32_t usart_periph, uint32_t lblen) -{ - USART_CTL1(usart_periph) &= ~(USART_CTL1_LBLEN); - USART_CTL1(usart_periph) |= (USART_CTL1_LBLEN & lblen); -} - -/*! - \brief send break frame - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[out] none - \retval none -*/ -void usart_send_break(uint32_t usart_periph) -{ - USART_CTL0(usart_periph) |= USART_CTL0_SBKCMD; -} - -/*! - \brief enable half duplex mode - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[out] none - \retval none -*/ -void usart_halfduplex_enable(uint32_t usart_periph) -{ - USART_CTL2(usart_periph) |= USART_CTL2_HDEN; -} - -/*! - \brief disable half duplex mode - \param[in] usart_periph: USARTx(x=0,1,2,5)/UARTx(x=3,4,6,7) - \param[out] none - \retval none -*/ -void usart_halfduplex_disable(uint32_t usart_periph) -{ - USART_CTL2(usart_periph) &= ~(USART_CTL2_HDEN); -} - -/*! - \brief enable CK pin in synchronous mode - \param[in] usart_periph: USARTx(x=0,1,2,5) - \param[out] none - \retval none -*/ -void usart_synchronous_clock_enable(uint32_t usart_periph) -{ - USART_CTL1(usart_periph) |= USART_CTL1_CKEN; -} - -/*! - \brief disable CK pin in synchronous mode - \param[in] usart_periph: USARTx(x=0,1,2,5) - \param[out] none - \retval none -*/ -void usart_synchronous_clock_disable(uint32_t usart_periph) -{ - USART_CTL1(usart_periph) &= ~(USART_CTL1_CKEN); -} - -/*! - \brief configure USART synchronous mode parameters - \param[in] usart_periph: USARTx(x=0,1,2,5) - \param[in] clen: CK length - only one parameter can be selected which is shown as below: - \arg USART_CLEN_NONE: there are 7 CK pulses for an 8 bit frame and 8 CK pulses for a 9 bit frame - \arg USART_CLEN_EN: there are 8 CK pulses for an 8 bit frame and 9 CK pulses for a 9 bit frame - \param[in] cph: clock phase - only one parameter can be selected which is shown as below: - \arg USART_CPH_1CK: first clock transition is the first data capture edge - \arg USART_CPH_2CK: second clock transition is the first data capture edge - \param[in] cpl: clock polarity - only one parameter can be selected which is shown as below: - \arg USART_CPL_LOW: steady low value on CK pin - \arg USART_CPL_HIGH: steady high value on CK pin - \param[out] none - \retval none -*/ -void usart_synchronous_clock_config(uint32_t usart_periph, uint32_t clen, uint32_t cph, uint32_t cpl) -{ - uint32_t ctl = 0U; - - /* read USART_CTL1 register */ - ctl = USART_CTL1(usart_periph); - ctl &= ~(USART_CTL1_CLEN | USART_CTL1_CPH | USART_CTL1_CPL); - /* set CK length, CK phase, CK polarity */ - ctl |= (USART_CTL1_CLEN & clen) | (USART_CTL1_CPH & cph) | (USART_CTL1_CPL & cpl); - - USART_CTL1(usart_periph) = ctl; -} - -/*! - \brief configure guard time value in smartcard mode - \param[in] usart_periph: USARTx(x=0,1,2,5) - \param[in] guat: guard time value, 0-0xFF - \param[out] none - \retval none -*/ -void usart_guard_time_config(uint32_t usart_periph,uint32_t guat) -{ - USART_GP(usart_periph) &= ~(USART_GP_GUAT); - USART_GP(usart_periph) |= (USART_GP_GUAT & ((guat)<", - "+<*.cpp>", - "+<*.h>" - ] - }, - "frameworks": "arduino", - "platforms": "*" -} - diff --git a/Marlin/lib/GD32F4xx_usb_library/library.json b/Marlin/lib/GD32F4xx_usb_library/library.json deleted file mode 100644 index f72ba63d1d..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/library.json +++ /dev/null @@ -1,16 +0,0 @@ -{ - "name": "GD32F4xx_usb_library", - "version": "0.0.1", - "keywords": "gd32f4xx usb lib. port by langgo", - "description": "gd32f4xx usb library for marlin. port by langgo.", - "build": { - "srcFilter": [ - "+<*.c>", - "+<*.cpp>", - "+<*.h>" - ] - }, - "frameworks": "arduino", - "platforms": "*" -} - diff --git a/Marlin/lib/GD32F4xx_usb_library/src/cdc_acm_core.c b/Marlin/lib/GD32F4xx_usb_library/src/cdc_acm_core.c deleted file mode 100644 index 074c742c88..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/cdc_acm_core.c +++ /dev/null @@ -1,515 +0,0 @@ -/*! - \file cdc_acm_core.c - \brief CDC ACM driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "cdc_acm_core.h" - -#define USBD_VID 0x28E9U -#define USBD_PID 0x018AU - -/* note:it should use the C99 standard when compiling the below codes */ -/* USB standard device descriptor */ -__ALIGN_BEGIN const usb_desc_dev cdc_dev_desc __ALIGN_END = -{ - .header = - { - .bLength = USB_DEV_DESC_LEN, - .bDescriptorType = USB_DESCTYPE_DEV, - }, - .bcdUSB = 0x0200U, - .bDeviceClass = USB_CLASS_CDC, - .bDeviceSubClass = 0x00U, - .bDeviceProtocol = 0x00U, - .bMaxPacketSize0 = USB_FS_EP0_MAX_LEN, - .idVendor = USBD_VID, - .idProduct = USBD_PID, - .bcdDevice = 0x0100U, - .iManufacturer = STR_IDX_MFC, - .iProduct = STR_IDX_PRODUCT, - .iSerialNumber = STR_IDX_SERIAL, - .bNumberConfigurations = USBD_CFG_MAX_NUM, -}; - -/* USB device configuration descriptor */ -__ALIGN_BEGIN const usb_cdc_desc_config_set cdc_config_desc __ALIGN_END = -{ - .config = - { - .header = - { - .bLength = sizeof(usb_desc_config), - .bDescriptorType = USB_DESCTYPE_CONFIG, - }, - .wTotalLength = USB_CDC_ACM_CONFIG_DESC_SIZE, - .bNumInterfaces = 0x02U, - .bConfigurationValue = 0x01U, - .iConfiguration = 0x00U, - .bmAttributes = 0x80U, - .bMaxPower = 0x32U - }, - - .cmd_itf = - { - .header = - { - .bLength = sizeof(usb_desc_itf), - .bDescriptorType = USB_DESCTYPE_ITF - }, - .bInterfaceNumber = 0x00U, - .bAlternateSetting = 0x00U, - .bNumEndpoints = 0x01U, - .bInterfaceClass = USB_CLASS_CDC, - .bInterfaceSubClass = USB_CDC_SUBCLASS_ACM, - .bInterfaceProtocol = USB_CDC_PROTOCOL_AT, - .iInterface = 0x00U - }, - - .cdc_header = - { - .header = - { - .bLength = sizeof(usb_desc_header_func), - .bDescriptorType = USB_DESCTYPE_CS_INTERFACE - }, - .bDescriptorSubtype = 0x00U, - .bcdCDC = 0x0110U - }, - - .cdc_call_managment = - { - .header = - { - .bLength = sizeof(usb_desc_call_managment_func), - .bDescriptorType = USB_DESCTYPE_CS_INTERFACE - }, - .bDescriptorSubtype = 0x01U, - .bmCapabilities = 0x00U, - .bDataInterface = 0x01U - }, - - .cdc_acm = - { - .header = - { - .bLength = sizeof(usb_desc_acm_func), - .bDescriptorType = USB_DESCTYPE_CS_INTERFACE - }, - .bDescriptorSubtype = 0x02U, - .bmCapabilities = 0x02U, - }, - - .cdc_union = - { - .header = - { - .bLength = sizeof(usb_desc_union_func), - .bDescriptorType = USB_DESCTYPE_CS_INTERFACE - }, - .bDescriptorSubtype = 0x06U, - .bMasterInterface = 0x00U, - .bSlaveInterface0 = 0x01U, - }, - - .cdc_cmd_endpoint = - { - .header = - { - .bLength = sizeof(usb_desc_ep), - .bDescriptorType = USB_DESCTYPE_EP, - }, - .bEndpointAddress = CDC_CMD_EP, - .bmAttributes = USB_EP_ATTR_INT, - .wMaxPacketSize = USB_CDC_CMD_PACKET_SIZE, - .bInterval = 0x0AU - }, - - .cdc_data_interface = - { - .header = - { - .bLength = sizeof(usb_desc_itf), - .bDescriptorType = USB_DESCTYPE_ITF, - }, - .bInterfaceNumber = 0x01U, - .bAlternateSetting = 0x00U, - .bNumEndpoints = 0x02U, - .bInterfaceClass = USB_CLASS_DATA, - .bInterfaceSubClass = 0x00U, - .bInterfaceProtocol = USB_CDC_PROTOCOL_NONE, - .iInterface = 0x00U - }, - - .cdc_out_endpoint = - { - .header = - { - .bLength = sizeof(usb_desc_ep), - .bDescriptorType = USB_DESCTYPE_EP, - }, - .bEndpointAddress = CDC_DATA_OUT_EP, - .bmAttributes = USB_EP_ATTR_BULK, - .wMaxPacketSize = USB_CDC_DATA_PACKET_SIZE, - .bInterval = 0x00U - }, - - .cdc_in_endpoint = - { - .header = - { - .bLength = sizeof(usb_desc_ep), - .bDescriptorType = USB_DESCTYPE_EP - }, - .bEndpointAddress = CDC_DATA_IN_EP, - .bmAttributes = USB_EP_ATTR_BULK, - .wMaxPacketSize = USB_CDC_DATA_PACKET_SIZE, - .bInterval = 0x00U - } -}; - -/* USB language ID Descriptor */ -static __ALIGN_BEGIN const usb_desc_LANGID usbd_language_id_desc __ALIGN_END = -{ - .header = - { - .bLength = sizeof(usb_desc_LANGID), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .wLANGID = ENG_LANGID -}; - -/* USB manufacture string */ -static __ALIGN_BEGIN const usb_desc_str manufacturer_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(10), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'i', 'g', 'a', 'D', 'e', 'v', 'i', 'c', 'e'} -}; - -/* USB product string */ -static __ALIGN_BEGIN const usb_desc_str product_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(12), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'D', '3', '2', '-', 'C', 'D', 'C', '_', 'A', 'C', 'M'} -}; - -/* USBD serial string */ -static __ALIGN_BEGIN usb_desc_str serial_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(12), - .bDescriptorType = USB_DESCTYPE_STR, - } -}; - -/* USB string descriptor set */ -void *const usbd_cdc_strings[] = -{ - [STR_IDX_LANGID] = (uint8_t *)&usbd_language_id_desc, - [STR_IDX_MFC] = (uint8_t *)&manufacturer_string, - [STR_IDX_PRODUCT] = (uint8_t *)&product_string, - [STR_IDX_SERIAL] = (uint8_t *)&serial_string -}; - -usb_desc cdc_desc = -{ - .dev_desc = (uint8_t *)&cdc_dev_desc, - .config_desc = (uint8_t *)&cdc_config_desc, - .strings = usbd_cdc_strings -}; - -/* local function prototypes ('static') */ -static uint8_t cdc_acm_init (usb_dev *udev, uint8_t config_index); -static uint8_t cdc_acm_deinit (usb_dev *udev, uint8_t config_index); -static uint8_t cdc_acm_req (usb_dev *udev, usb_req *req); -static uint8_t cdc_acm_in (usb_dev *udev, uint8_t ep_num); -static uint8_t cdc_acm_out (usb_dev *udev, uint8_t ep_num); - -/* USB CDC device class callbacks structure */ -usb_class_core cdc_class = -{ - .command = NO_CMD, - .alter_set = 0U, - - .init = cdc_acm_init, - .deinit = cdc_acm_deinit, - - .req_proc = cdc_acm_req, - - .data_in = cdc_acm_in, - .data_out = cdc_acm_out -}; - -/*! - \brief check CDC ACM is ready for data transfer - \param[in] udev: pointer to USB device instance - \param[out] none - \retval 0 if CDC is ready, 5 else -*/ -uint8_t cdc_acm_check_ready(usb_dev *udev) -{ - if (udev->dev.class_data[CDC_COM_INTERFACE] != NULL) { - usb_cdc_handler *cdc = (usb_cdc_handler *)udev->dev.class_data[CDC_COM_INTERFACE]; - - if ((1U == cdc->packet_receive) && (1U == cdc->packet_sent)) { - return 0U; - } - } - - return 1U; -} - -/*! - \brief send CDC ACM data - \param[in] udev: pointer to USB device instance - \param[out] none - \retval USB device operation status -*/ -void cdc_acm_data_send (usb_dev *udev) -{ - usb_cdc_handler *cdc = (usb_cdc_handler *)udev->dev.class_data[CDC_COM_INTERFACE]; - - if (0U != cdc->receive_length) { - cdc->packet_sent = 0U; - - usbd_ep_send (udev, CDC_DATA_IN_EP, (uint8_t*)(cdc->data), cdc->receive_length); - - cdc->receive_length = 0U; - } -} - -/*! - \brief receive CDC ACM data - \param[in] udev: pointer to USB device instance - \param[out] none - \retval USB device operation status -*/ -void cdc_acm_data_receive (usb_dev *udev) -{ - usb_cdc_handler *cdc = (usb_cdc_handler *)udev->dev.class_data[CDC_COM_INTERFACE]; - - cdc->packet_receive = 0U; - cdc->packet_sent = 0U; - - usbd_ep_recev(udev, CDC_DATA_OUT_EP, (uint8_t*)(cdc->data), USB_CDC_DATA_PACKET_SIZE); -} - -/*! - \brief initialize the CDC ACM device - \param[in] udev: pointer to USB device instance - \param[in] config_index: configuration index - \param[out] none - \retval USB device operation status -*/ -static uint8_t cdc_acm_init (usb_dev *udev, uint8_t config_index) -{ - static __ALIGN_BEGIN usb_cdc_handler cdc_handler __ALIGN_END; - - /* initialize the data TX endpoint */ - usbd_ep_setup (udev, &(cdc_config_desc.cdc_in_endpoint)); - - /* initialize the data RX endpoint */ - usbd_ep_setup (udev, &(cdc_config_desc.cdc_out_endpoint)); - - /* initialize the command TX endpoint */ - usbd_ep_setup (udev, &(cdc_config_desc.cdc_cmd_endpoint)); - - /* initialize CDC handler structure */ - cdc_handler.packet_receive = 1U; - cdc_handler.packet_sent = 1U; - cdc_handler.receive_length = 0U; - - cdc_handler.line_coding = (acm_line){ - .dwDTERate = 115200, - .bCharFormat = 0, - .bParityType = 0, - .bDataBits = 0x08 - }; - - udev->dev.class_data[CDC_COM_INTERFACE] = (void *)&cdc_handler; - - return USBD_OK; -} - -/*! - \brief de-initialize the CDC ACM device - \param[in] udev: pointer to USB device instance - \param[in] config_index: configuration index - \param[out] none - \retval USB device operation status -*/ -static uint8_t cdc_acm_deinit (usb_dev *udev, uint8_t config_index) -{ - /* deinitialize the data TX/RX endpoint */ - usbd_ep_clear (udev, CDC_DATA_IN_EP); - usbd_ep_clear (udev, CDC_DATA_OUT_EP); - - /* deinitialize the command TX endpoint */ - usbd_ep_clear (udev, CDC_CMD_EP); - - return USBD_OK; -} - -/*! - \brief handle the CDC ACM class-specific requests - \param[in] udev: pointer to USB device instance - \param[in] req: device class-specific request - \param[out] none - \retval USB device operation status -*/ -static uint8_t cdc_acm_req (usb_dev *udev, usb_req *req) -{ - usb_cdc_handler *cdc = (usb_cdc_handler *)udev->dev.class_data[CDC_COM_INTERFACE]; - - usb_transc *transc = &udev->dev.transc_in[0]; - - switch (req->bRequest) { - case SEND_ENCAPSULATED_COMMAND: - /* no operation for this driver */ - break; - - case GET_ENCAPSULATED_RESPONSE: - /* no operation for this driver */ - break; - - case SET_COMM_FEATURE: - /* no operation for this driver */ - break; - - case GET_COMM_FEATURE: - /* no operation for this driver */ - break; - - case CLEAR_COMM_FEATURE: - /* no operation for this driver */ - break; - - case SET_LINE_CODING: - /* set the value of the current command to be processed */ - udev->dev.class_core->alter_set = req->bRequest; - - /* enable EP0 prepare to receive command data packet */ - transc->remain_len = req->wLength; - transc->xfer_buf = cdc->cmd; - break; - - case GET_LINE_CODING: - cdc->cmd[0] = (uint8_t)(cdc->line_coding.dwDTERate); - cdc->cmd[1] = (uint8_t)(cdc->line_coding.dwDTERate >> 8); - cdc->cmd[2] = (uint8_t)(cdc->line_coding.dwDTERate >> 16); - cdc->cmd[3] = (uint8_t)(cdc->line_coding.dwDTERate >> 24); - cdc->cmd[4] = cdc->line_coding.bCharFormat; - cdc->cmd[5] = cdc->line_coding.bParityType; - cdc->cmd[6] = cdc->line_coding.bDataBits; - - transc->xfer_buf = cdc->cmd; - transc->remain_len = 7U; - break; - - case SET_CONTROL_LINE_STATE: - /* no operation for this driver */ - break; - - case SEND_BREAK: - /* no operation for this driver */ - break; - - default: - break; - } - - return USBD_OK; -} - -/*! - \brief handle CDC ACM data - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint identifier - \param[out] none - \retval USB device operation status -*/ -static uint8_t cdc_acm_in (usb_dev *udev, uint8_t ep_num) -{ - usb_transc *transc = &udev->dev.transc_in[EP_ID(ep_num)]; - - usb_cdc_handler *cdc = (usb_cdc_handler *)udev->dev.class_data[CDC_COM_INTERFACE]; - - if ((0U == transc->xfer_len % transc->max_len) && (0U != transc->xfer_len)) { - usbd_ep_send (udev, ep_num, NULL, 0U); //包长是单包的整数倍 发空包 - } else { - cdc->packet_sent = 1U; - } - - return USBD_OK; -} - -/*! - \brief handle CDC ACM data - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint identifier - \param[out] none - \retval USB device operation status -*/ -static uint8_t cdc_acm_out (usb_dev *udev, uint8_t ep_num) -{ - usb_cdc_handler *cdc = (usb_cdc_handler *)udev->dev.class_data[CDC_COM_INTERFACE]; - - if (0U == ep_num) { - if (udev->dev.class_core->alter_set != NO_CMD) - { - /* process the command data */ - cdc->line_coding.dwDTERate = (uint32_t)((uint32_t)cdc->cmd[0] | - ((uint32_t)cdc->cmd[1] << 8U) | - ((uint32_t)cdc->cmd[2] << 16U) | - ((uint32_t)cdc->cmd[3] << 24U)); - - cdc->line_coding.bCharFormat = cdc->cmd[4]; - cdc->line_coding.bParityType = cdc->cmd[5]; - cdc->line_coding.bDataBits = cdc->cmd[6]; - - udev->dev.class_core->alter_set = NO_CMD; - } - } else { - cdc->packet_receive = 1U; - cdc->receive_length = ((usb_core_driver *)udev)->dev.transc_out[ep_num].xfer_count; - } - - return USBD_OK; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/cdc_acm_core.h b/Marlin/lib/GD32F4xx_usb_library/src/cdc_acm_core.h deleted file mode 100644 index aaed117fb2..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/cdc_acm_core.h +++ /dev/null @@ -1,66 +0,0 @@ -/*! - \file cdc_acm_core.h - \brief the header file of cdc acm driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __CDC_ACM_CORE_H -#define __CDC_ACM_CORE_H - -#include "gdusbd_enum.h" -#include "gdusb_cdc.h" - -#define USB_CDC_RX_LEN 64 - -typedef struct { - uint8_t data[USB_CDC_RX_LEN]; - uint8_t cmd[USB_CDC_CMD_PACKET_SIZE]; - - uint8_t packet_sent; - uint8_t packet_receive; - - uint32_t receive_length; - - acm_line line_coding; -} usb_cdc_handler; - -extern usb_desc cdc_desc; -extern usb_class_core cdc_class; - -/* function declarations */ -/* check CDC ACM is ready for data transfer */ -uint8_t cdc_acm_check_ready(usb_dev *udev); -/* send CDC ACM data */ -void cdc_acm_data_send(usb_dev *udev); -/* receive CDC ACM data */ -void cdc_acm_data_receive(usb_dev *udev); - -#endif /* __CDC_ACM_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Include/audio_core.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Include/audio_core.h deleted file mode 100644 index 698c07990a..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Include/audio_core.h +++ /dev/null @@ -1,300 +0,0 @@ -/*! - \file audio_core.h - \brief the header file of USB audio device class core functions - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __AUDIO_CORE_H -#define __AUDIO_CORE_H - -#include "usbd_enum.h" - -#define FORMAT_24BIT(x) (uint8_t)(x);(uint8_t)(x >> 8U);(uint8_t)(x >> 16U) - -/* number of sub-packets in the audio transfer buffer. you can modify this value but always make sure - that it is an even number and higher than 3 */ -#define OUT_PACKET_NUM 4U - -/* total size of the audio transfer buffer */ -#define OUT_BUF_MARGIN 4U -#define TOTAL_OUT_BUF_SIZE ((uint32_t)((SPEAKER_OUT_PACKET + OUT_BUF_MARGIN) * OUT_PACKET_NUM)) - -#define AUDIO_CONFIG_DESC_SET_LEN (sizeof(usb_desc_config_set)) -#define AUDIO_INTERFACE_DESC_SIZE 9U - -#define USB_AUDIO_DESC_SIZ 0x09U -#define AUDIO_STANDARD_EP_DESC_SIZE 0x09U -#define AUDIO_STREAMING_EP_DESC_SIZE 0x07U - -/* audio interface class code */ -#define USB_CLASS_AUDIO 0x01U - -/* audio interface subclass codes */ -#define AUDIO_SUBCLASS_CONTROL 0x01U -#define AUDIO_SUBCLASS_AUDIOSTREAMING 0x02U -#define AUDIO_SUBCLASS_MIDISTREAMING 0x03U - -/* audio interface protocol codes */ -#define AUDIO_PROTOCOL_UNDEFINED 0x00U -#define AUDIO_STREAMING_GENERAL 0x01U -#define AUDIO_STREAMING_FORMAT_TYPE 0x02U - -/* audio class-specific descriptor types */ -#define AUDIO_DESCTYPE_UNDEFINED 0x20U -#define AUDIO_DESCTYPE_DEVICE 0x21U -#define AUDIO_DESCTYPE_CONFIGURATION 0x22U -#define AUDIO_DESCTYPE_STRING 0x23U -#define AUDIO_DESCTYPE_INTERFACE 0x24U -#define AUDIO_DESCTYPE_ENDPOINT 0x25U - -/* audio control interface descriptor subtypes */ -#define AUDIO_CONTROL_HEADER 0x01U -#define AUDIO_CONTROL_INPUT_TERMINAL 0x02U -#define AUDIO_CONTROL_OUTPUT_TERMINAL 0x03U -#define AUDIO_CONTROL_MIXER_UNIT 0x04U -#define AUDIO_CONTROL_SELECTOR_UNIT 0x05U -#define AUDIO_CONTROL_FEATURE_UNIT 0x06U -#define AUDIO_CONTROL_PROCESSING_UNIT 0x07U -#define AUDIO_CONTROL_EXTENSION_UNIT 0x08U - -#define AUDIO_INPUT_TERMINAL_DESC_SIZE 0x0CU -#define AUDIO_OUTPUT_TERMINAL_DESC_SIZE 0x09U -#define AUDIO_STREAMING_INTERFACE_DESC_SIZE 0x07U - -#define AUDIO_CONTROL_MUTE 0x01U -#define AUDIO_CONTROL_VOLUME 0x02U - -#define AUDIO_FORMAT_TYPE_I 0x01U -#define AUDIO_FORMAT_TYPE_III 0x03U - -#define USB_ENDPOINT_TYPE_ISOCHRONOUS 0x01U -#define AUDIO_ENDPOINT_GENERAL 0x01U - -#define AUDIO_REQ_UNDEFINED 0x00U -#define AUDIO_REQ_SET_CUR 0x01U -#define AUDIO_REQ_GET_CUR 0x81U -#define AUDIO_REQ_SET_MIN 0x02U -#define AUDIO_REQ_GET_MIN 0x82U -#define AUDIO_REQ_SET_MAX 0x03U -#define AUDIO_REQ_GET_MAX 0x83U -#define AUDIO_REQ_SET_RES 0x04U -#define AUDIO_REQ_GET_RES 0x84U -#define AUDIO_REQ_SET_MEM 0x05U -#define AUDIO_REQ_GET_MEM 0x85U -#define AUDIO_REQ_GET_STAT 0xFFU - -#define AUDIO_OUT_STREAMING_CTRL 0x05U -#define AUDIO_IN_STREAMING_CTRL 0x02U - -/* audio stream interface number */ -enum -{ -#ifdef USE_USB_AUDIO_MICPHONE - MIC_INTERFACE_COUNT, -#endif -#ifdef USE_USB_AUDIO_SPEAKER - SPEAK_INTERFACE_COUNT, -#endif - CONFIG_DESC_AS_ITF_COUNT, -}; - -#define AC_ITF_TOTAL_LEN (sizeof(usb_desc_AC_itf) + CONFIG_DESC_AS_ITF_COUNT*(sizeof(usb_desc_input_terminal) + \ - sizeof(usb_desc_mono_feature_unit) + sizeof(usb_desc_output_terminal))) - -#pragma pack(1) - -typedef struct -{ - usb_desc_header header; /*!< descriptor header, including type and size */ - uint8_t bDescriptorSubtype; /*!< header descriptor subtype */ - uint16_t bcdADC; /*!< audio device class specification release number in binary-coded decimal */ - uint16_t wTotalLength; /*!< total number of bytes */ - uint8_t bInCollection; /*!< the number of the streaming interfaces */ -#ifdef USE_USB_AUDIO_MICPHONE - uint8_t baInterfaceNr0; /*!< interface number of the streaming interfaces */ -#endif - -#ifdef USE_USB_AUDIO_SPEAKER - uint8_t baInterfaceNr1; /*!< interface number of the streaming interfaces */ -#endif -} usb_desc_AC_itf; - -typedef struct -{ - usb_desc_header header; /*!< descriptor header, including type and size */ - uint8_t bDescriptorSubtype; /*!< AS_GENERAL descriptor subtype */ - uint8_t bTerminalLink; /*!< the terminal ID */ - uint8_t bDelay; /*!< delay introduced by the data path */ - uint16_t wFormatTag; /*!< the audio data format */ -} usb_desc_AS_itf; - -typedef struct -{ - usb_desc_header header; /*!< descriptor header, including type and size */ - uint8_t bDescriptorSubtype; /*!< INPUT_TERMINAL descriptor subtype. */ - uint8_t bTerminalID; /*!< constant uniquely identifying the terminal within the audio function */ - uint16_t wTerminalType; /*!< constant characterizing the type of terminal */ - uint8_t bAssocTerminal; /*!< ID of the output terminal */ - uint8_t bNrChannels; /*!< number of logical output channels */ - uint16_t wChannelConfig; /*!< describes the spatial location of the logical channels */ - uint8_t iChannelNames; /*!< index of a string descriptor */ - uint8_t iTerminal; /*!< index of a string descriptor */ -} usb_desc_input_terminal; - -typedef struct -{ - usb_desc_header header; /*!< descriptor header, including type and size */ - uint8_t bDescriptorSubtype; /*!< OUTPUT_TERMINAL descriptor subtype */ - uint8_t bTerminalID; /*!< constant uniquely identifying the terminal within the audio function */ - uint16_t wTerminalType; /*!< constant characterizing the type of terminal */ - uint8_t bAssocTerminal; /*!< constant, identifying the input terminal to which this output terminal is associated */ - uint8_t bSourceID; /*!< ID of the unit or terminal */ - uint8_t iTerminal; /*!< index of a string descriptor */ -} usb_desc_output_terminal; - -typedef struct -{ - usb_desc_header header; /*!< descriptor header, including type and size */ - uint8_t bDescriptorSubtype; /*!< FEATURE_UNIT descriptor subtype */ - uint8_t bUnitID; /*!< constant uniquely identifying the unit within the audio function */ - uint8_t bSourceID; /*!< ID of the unit or terminal */ - uint8_t bControlSize; /*!< size in bytes of an element of the bmaControls() array */ - uint8_t bmaControls0; /*!< a bit set to 1 indicates that the mentioned control is supported for master channel 0 */ - uint8_t bmaControls1; /*!< a bit set to 1 indicates that the mentioned control is supported for logical channel 1 */ - uint8_t iFeature; /*!< index of a string descriptor */ -} usb_desc_mono_feature_unit; - -typedef struct -{ - usb_desc_header header; /*!< descriptor header, including type and size */ - uint8_t bDescriptorSubtype; /*!< FEATURE_UNIT descriptor subtype */ - uint8_t bUnitID; /*!< constant uniquely identifying the unit within the audio function */ - uint8_t bSourceID; /*!< ID of the unit or terminal */ - uint8_t bControlSize; /*!< size in bytes of an element of the bmaControls() array */ - uint16_t bmaControls0; /*!< a bit set to 1 indicates that the mentioned control is supported for master channel 0 */ - uint16_t bmaControls1; /*!< a bit set to 1 indicates that the mentioned control is supported for logical channel 1 */ - uint16_t bmaControls2; /*!< a bit set to 1 indicates that the mentioned control is supported for logical channel 2 */ - uint8_t iFeature; /*!< index of a string descriptor */ -} usb_desc_stereo_feature_unit; - -typedef struct -{ - usb_desc_header header; /*!< descriptor header, including type and size */ - uint8_t bDescriptorSubtype; /*!< FORMAT_TYPE descriptor subtype */ - uint8_t bFormatType; /*!< constant identifying the format type */ - uint8_t bNrChannels; /*!< indicates the number of physical channels in the audio data stream */ - uint8_t bSubFrameSize; /*!< the number of bytes occupied by one audio subframe */ - uint8_t bBitResolution; /*!< the number of effectively used bits from the available bits in an audio subframe */ - uint8_t bSamFreqType; /*!< indicates how the sampling frequency can be programmed */ - uint8_t bSamFreq[3]; /*!< sampling frequency ns in Hz for this isochronous data endpoint */ -} usb_desc_format_type; - -typedef struct -{ - usb_desc_header header; /*!< descriptor header, including type and size */ - uint8_t bEndpointAddress; /*!< the address of the endpoint */ - uint8_t bmAttributes; /*!< transfer type and synchronization type */ - uint16_t wMaxPacketSize; /*!< maximum packet size this endpoint is capable of sending or receiving */ - uint8_t bInterval; /*!< left to the designer's discretion */ - uint8_t bRefresh; /*!< reset to 0 */ - uint8_t bSynchAddress; /*!< reset to 0 */ -} usb_desc_std_ep; - -typedef struct -{ - usb_desc_header header; /*!< descriptor header, including type and size */ - uint8_t bDescriptorSubtype; /*!< EP_GENERAL descriptor subtype */ - uint8_t bmAttributes; /*!< transfer type and synchronization type */ - uint8_t bLockDelayUnits; /*!< indicates the units used for the wLockDelay field */ - uint16_t wLockDelay; /*!< indicates the time it takes this endpoint to reliably lock its internal clock recovery circuitry */ -} usb_desc_AS_ep; - -#pragma pack() - -/* USB configuration descriptor structure */ -typedef struct -{ - usb_desc_config config; - usb_desc_itf std_itf; - usb_desc_AC_itf ac_itf; - -#ifdef USE_USB_AUDIO_MICPHONE - usb_desc_input_terminal mic_in_terminal; - usb_desc_mono_feature_unit mic_feature_unit; - usb_desc_output_terminal mic_out_terminal; -#endif - -#ifdef USE_USB_AUDIO_SPEAKER - usb_desc_input_terminal speak_in_terminal; - usb_desc_mono_feature_unit speak_feature_unit; - usb_desc_output_terminal speak_out_terminal; -#endif - -#ifdef USE_USB_AUDIO_MICPHONE - usb_desc_itf mic_std_as_itf_zeroband; - usb_desc_itf mic_std_as_itf_opera; - usb_desc_AS_itf mic_as_itf; - usb_desc_format_type mic_format_typeI; - usb_desc_std_ep mic_std_endpoint; - usb_desc_AS_ep mic_as_endpoint; -#endif - -#ifdef USE_USB_AUDIO_SPEAKER - usb_desc_itf speak_std_as_itf_zeroband; - usb_desc_itf speak_std_as_itf_opera; - usb_desc_AS_itf speak_as_itf; - usb_desc_format_type speak_format_typeI; - usb_desc_std_ep speak_std_endpoint; - usb_desc_AS_ep speak_as_endpoint; -#endif -} usb_desc_config_set; - -typedef struct -{ - /* main buffer for audio data out transfers and its relative pointers */ - uint8_t isoc_out_buff[TOTAL_OUT_BUF_SIZE * 2U]; - uint8_t* isoc_out_wrptr; - uint8_t* isoc_out_rdptr; - - /* main buffer for audio control requests transfers and its relative variables */ - uint8_t audioctl[64]; - uint8_t audioctl_unit; - uint32_t audioctl_len; - -#ifdef USE_USB_AUDIO_SPEAKER - uint32_t play_flag; -#endif /* USE_USB_AUDIO_SPEAKER */ -} usbd_audio_handler; - -extern usb_desc audio_desc; -extern usb_class_core usbd_audio_cb; - -#endif /* __AUDIO_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Include/audio_out_itf.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Include/audio_out_itf.h deleted file mode 100644 index 389e56ff2e..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Include/audio_out_itf.h +++ /dev/null @@ -1,76 +0,0 @@ -/*! - \file audio_out_itf.h - \brief audio OUT (playback) interface header file - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __AUDIO_OUT_ITF_H -#define __AUDIO_OUT_ITF_H - -#include "usbd_conf.h" - -/* audio commands enumeration */ -typedef enum -{ - AUDIO_CMD_PLAY = 1U, - AUDIO_CMD_PAUSE, - AUDIO_CMD_STOP, -}audio_cmd_enum; - -/* mute commands */ -#define AUDIO_MUTE 0x01U -#define AUDIO_UNMUTE 0x00U - -/* functions return value */ -#define AUDIO_OK 0x00U -#define AUDIO_FAIL 0xFFU - -/* audio machine states */ -#define AUDIO_STATE_INACTIVE 0x00U -#define AUDIO_STATE_ACTIVE 0x01U -#define AUDIO_STATE_PLAYING 0x02U -#define AUDIO_STATE_PAUSED 0x03U -#define AUDIO_STATE_STOPPED 0x04U -#define AUDIO_STATE_ERROR 0x05U - -typedef struct { - uint8_t (*audio_init) (uint32_t audio_freq, uint32_t volume, uint32_t options); - uint8_t (*audio_deinit) (uint32_t options); - uint8_t (*audio_cmd) (uint8_t* pbuf, uint32_t size, uint8_t cmd); - uint8_t (*audio_volume_ctl) (uint8_t vol); - uint8_t (*audio_mute_ctl) (uint8_t cmd); - uint8_t (*audio_periodic_tc) (uint8_t cmd); - uint8_t (*audio_state_get) (void); -} audio_fops_struct; - -extern audio_fops_struct audio_out_fops; - -#endif /* __AUDIO_OUT_ITF_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Source/audio_core.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Source/audio_core.c deleted file mode 100644 index 00814265bd..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Source/audio_core.c +++ /dev/null @@ -1,777 +0,0 @@ -/*! - \file audio_core.c - \brief USB audio device class core functions - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "audio_out_itf.h" -#include "audio_core.h" -#include - -#define USBD_VID 0x28E9U -#define USBD_PID 0x9574U - -#ifdef USE_USB_AUDIO_MICPHONE -extern volatile uint32_t count_data; -extern const char wavetestdata[]; -#define LENGTH_DATA (1747 * 32) -#endif - -/* local function prototypes ('static') */ -static uint8_t audio_init (usb_dev *udev, uint8_t config_index); -static uint8_t audio_deinit (usb_dev *udev, uint8_t config_index); -static uint8_t audio_req_handler (usb_dev *udev, usb_req *req); -static uint8_t audio_data_in (usb_dev *udev, uint8_t ep_num); -static uint8_t audio_data_out (usb_dev *udev, uint8_t ep_num); -static uint8_t usbd_audio_sof (usb_dev *udev); - -usb_class_core usbd_audio_cb = { - .init = audio_init, - .deinit = audio_deinit, - .req_proc = audio_req_handler, - .data_in = audio_data_in, - .data_out = audio_data_out, - .SOF = usbd_audio_sof -}; - -#define VOL_MIN 0U /* volume Minimum Value */ -#define VOL_MAX 100U /* volume Maximum Value */ -#define VOL_RES 1U /* volume Resolution */ -#define VOL_0dB 70U /* 0dB is in the middle of VOL_MIN and VOL_MAX */ - -/* note:it should use the c99 standard when compiling the below codes */ -/* USB standard device descriptor */ -__ALIGN_BEGIN const usb_desc_dev audio_dev_desc __ALIGN_END = -{ - .header = - { - .bLength = USB_DEV_DESC_LEN, - .bDescriptorType = USB_DESCTYPE_DEV - }, - .bcdUSB = 0x0200U, - .bDeviceClass = 0x00U, - .bDeviceSubClass = 0x00U, - .bDeviceProtocol = 0x00U, - .bMaxPacketSize0 = USB_FS_EP0_MAX_LEN, - .idVendor = USBD_VID, - .idProduct = USBD_PID, - .bcdDevice = 0x0100U, - .iManufacturer = STR_IDX_MFC, - .iProduct = STR_IDX_PRODUCT, - .iSerialNumber = STR_IDX_SERIAL, - .bNumberConfigurations = USBD_CFG_MAX_NUM -}; - -/* USB device configuration descriptor */ -__ALIGN_BEGIN const usb_desc_config_set audio_config_set __ALIGN_END = -{ - .config = - { - .header = - { - .bLength = sizeof(usb_desc_config), - .bDescriptorType = USB_DESCTYPE_CONFIG - }, - .wTotalLength = AUDIO_CONFIG_DESC_SET_LEN, - .bNumInterfaces = 0x01U + CONFIG_DESC_AS_ITF_COUNT, - .bConfigurationValue = 0x01U, - .iConfiguration = 0x00U, - .bmAttributes = 0xC0U, - .bMaxPower = 0x32U - }, - - .std_itf = - { - .header = - { - .bLength = sizeof(usb_desc_itf), - .bDescriptorType = USB_DESCTYPE_ITF - }, - .bInterfaceNumber = 0x00U, - .bAlternateSetting = 0x00U, - .bNumEndpoints = 0x00U, - .bInterfaceClass = USB_CLASS_AUDIO, - .bInterfaceSubClass = AUDIO_SUBCLASS_CONTROL, - .bInterfaceProtocol = AUDIO_PROTOCOL_UNDEFINED, - .iInterface = 0x00U - }, - - .ac_itf = - { - .header = - { - .bLength = sizeof(usb_desc_AC_itf), - .bDescriptorType = AUDIO_DESCTYPE_INTERFACE - }, - .bDescriptorSubtype = 0x01U, - .bcdADC = 0x0100U, - .wTotalLength = AC_ITF_TOTAL_LEN, - .bInCollection = CONFIG_DESC_AS_ITF_COUNT, -#ifdef USE_USB_AUDIO_MICPHONE - .baInterfaceNr0 = 0x01U, -#endif -#ifdef USE_USB_AUDIO_SPEAKER - .baInterfaceNr1 = 0x02U -#endif - }, - -#ifdef USE_USB_AUDIO_MICPHONE - .mic_in_terminal = - { - .header = - { - .bLength = sizeof(usb_desc_input_terminal), - .bDescriptorType = AUDIO_DESCTYPE_INTERFACE - }, - .bDescriptorSubtype = 0x02U, - .bTerminalID = 0x01U, - .wTerminalType = 0x0201U, - .bAssocTerminal = 0x00U, - .bNrChannels = 0x02U, - .wChannelConfig = 0x0003U, - .iChannelNames = 0x00U, - .iTerminal = 0x00U - }, - - .mic_feature_unit = - { - .header = - { - .bLength = sizeof(usb_desc_mono_feature_unit), - .bDescriptorType = AUDIO_DESCTYPE_INTERFACE - }, - .bDescriptorSubtype = AUDIO_CONTROL_FEATURE_UNIT, - .bUnitID = AUDIO_IN_STREAMING_CTRL, - .bSourceID = 0x01U, - .bControlSize = 0x01U, - .bmaControls0 = AUDIO_CONTROL_MUTE, - .bmaControls1 = AUDIO_CONTROL_VOLUME, - .iFeature = 0x00U - }, - - .mic_out_terminal = - { - .header = - { - .bLength = sizeof(usb_desc_output_terminal), - .bDescriptorType = AUDIO_DESCTYPE_INTERFACE - }, - .bDescriptorSubtype = AUDIO_CONTROL_OUTPUT_TERMINAL, - .bTerminalID = 0x03U, - .wTerminalType = 0x0101U, - .bAssocTerminal = 0x00U, - .bSourceID = 0x02U, - .iTerminal = 0x00U - }, -#endif - -#ifdef USE_USB_AUDIO_SPEAKER - .speak_in_terminal = - { - .header = - { - .bLength = sizeof(usb_desc_input_terminal), - .bDescriptorType = AUDIO_DESCTYPE_INTERFACE - }, - .bDescriptorSubtype = AUDIO_CONTROL_INPUT_TERMINAL, - .bTerminalID = 0x04U, - .wTerminalType = 0x0101U, - .bAssocTerminal = 0x00U, - .bNrChannels = 0x02U, - .wChannelConfig = 0x0003U, - .iChannelNames = 0x00U, - .iTerminal = 0x00U - }, - - .speak_feature_unit = - { - .header = - { - .bLength = sizeof(usb_desc_mono_feature_unit), - .bDescriptorType = AUDIO_DESCTYPE_INTERFACE - }, - .bDescriptorSubtype = AUDIO_CONTROL_FEATURE_UNIT, - .bUnitID = AUDIO_OUT_STREAMING_CTRL, - .bSourceID = 0x04U, - .bControlSize = 0x01U, - .bmaControls0 = AUDIO_CONTROL_MUTE, - .bmaControls1 = AUDIO_CONTROL_VOLUME, - .iFeature = 0x00U - }, - - .speak_out_terminal = - { - .header = - { - .bLength = sizeof(usb_desc_output_terminal), - .bDescriptorType = AUDIO_DESCTYPE_INTERFACE - }, - .bDescriptorSubtype = AUDIO_CONTROL_OUTPUT_TERMINAL, - .bTerminalID = 0x06U, - .wTerminalType = 0x0301U, - .bAssocTerminal = 0x00U, - .bSourceID = 0x05U, - .iTerminal = 0x00U - }, -#endif - -#ifdef USE_USB_AUDIO_MICPHONE - .mic_std_as_itf_zeroband = - { - .header = - { - .bLength = sizeof(usb_desc_itf), - .bDescriptorType = USB_DESCTYPE_ITF - }, - .bInterfaceNumber = 0x01U, - .bAlternateSetting = 0x00U, - .bNumEndpoints = 0x00U, - .bInterfaceClass = USB_CLASS_AUDIO, - .bInterfaceSubClass = AUDIO_SUBCLASS_AUDIOSTREAMING, - .bInterfaceProtocol = AUDIO_PROTOCOL_UNDEFINED, - .iInterface = 0x00U - }, - - .mic_std_as_itf_opera = - { - .header = - { - .bLength = sizeof(usb_desc_itf), - .bDescriptorType = USB_DESCTYPE_ITF - }, - .bInterfaceNumber = 0x01U, - .bAlternateSetting = 0x01U, - .bNumEndpoints = 0x01U, - .bInterfaceClass = USB_CLASS_AUDIO, - .bInterfaceSubClass = AUDIO_SUBCLASS_AUDIOSTREAMING, - .bInterfaceProtocol = AUDIO_PROTOCOL_UNDEFINED, - .iInterface = 0x00U - }, - - .mic_as_itf = - { - .header = - { - .bLength = sizeof(usb_desc_AS_itf), - .bDescriptorType = AUDIO_DESCTYPE_INTERFACE - }, - .bDescriptorSubtype = AUDIO_STREAMING_GENERAL, - .bTerminalLink = 0x03U, - .bDelay = 0x01U, - .wFormatTag = 0x0001U, - }, - - .mic_format_typeI = - { - .header = - { - .bLength = sizeof(usb_desc_format_type), - .bDescriptorType = AUDIO_DESCTYPE_INTERFACE - }, - .bDescriptorSubtype = AUDIO_STREAMING_FORMAT_TYPE, - .bFormatType = AUDIO_FORMAT_TYPE_I, - .bNrChannels = MIC_IN_CHANNEL_NBR, - .bSubFrameSize = 0x02U, - .bBitResolution = MIC_IN_BIT_RESOLUTION, - .bSamFreqType = 0x01U, - .bSamFreq[0] = (uint8_t)USBD_MIC_FREQ, - .bSamFreq[1] = USBD_MIC_FREQ >> 8U, - .bSamFreq[2] = USBD_MIC_FREQ >> 16U - }, - - .mic_std_endpoint = - { - .header = - { - .bLength = sizeof(usb_desc_std_ep), - .bDescriptorType = USB_DESCTYPE_EP - }, - .bEndpointAddress = AUDIO_IN_EP, - .bmAttributes = USB_ENDPOINT_TYPE_ISOCHRONOUS, - .wMaxPacketSize = MIC_IN_PACKET, - .bInterval = 0x01U, - .bRefresh = 0x00U, - .bSynchAddress = 0x00U - }, - - .mic_as_endpoint = - { - .header = - { - .bLength = sizeof(usb_desc_AS_ep), - .bDescriptorType = AUDIO_DESCTYPE_ENDPOINT - }, - .bDescriptorSubtype = AUDIO_ENDPOINT_GENERAL, - .bmAttributes = 0x00U, - .bLockDelayUnits = 0x00U, - .wLockDelay = 0x0000U, - }, -#endif - -#ifdef USE_USB_AUDIO_SPEAKER - .speak_std_as_itf_zeroband = - { - .header = - { - .bLength = sizeof(usb_desc_itf), - .bDescriptorType = USB_DESCTYPE_ITF - }, - .bInterfaceNumber = 0x02U, - .bAlternateSetting = 0x00U, - .bNumEndpoints = 0x00U, - .bInterfaceClass = USB_CLASS_AUDIO, - .bInterfaceSubClass = AUDIO_SUBCLASS_AUDIOSTREAMING, - .bInterfaceProtocol = AUDIO_PROTOCOL_UNDEFINED, - .iInterface = 0x00U - }, - - .speak_std_as_itf_opera = - { - .header = - { - .bLength = sizeof(usb_desc_itf), - .bDescriptorType = USB_DESCTYPE_ITF - }, - .bInterfaceNumber = 0x02U, - .bAlternateSetting = 0x01U, - .bNumEndpoints = 0x01U, - .bInterfaceClass = USB_CLASS_AUDIO, - .bInterfaceSubClass = AUDIO_SUBCLASS_AUDIOSTREAMING, - .bInterfaceProtocol = AUDIO_PROTOCOL_UNDEFINED, - .iInterface = 0x00U - }, - - .speak_as_itf = - { - .header = - { - .bLength = sizeof(usb_desc_AS_itf), - .bDescriptorType = AUDIO_DESCTYPE_INTERFACE - }, - .bDescriptorSubtype = AUDIO_STREAMING_GENERAL, - .bTerminalLink = 0x04U, - .bDelay = 0x01U, - .wFormatTag = 0x0001U, - }, - - .speak_format_typeI = - { - .header = - { - .bLength = sizeof(usb_desc_format_type), - .bDescriptorType = AUDIO_DESCTYPE_INTERFACE - }, - .bDescriptorSubtype = AUDIO_STREAMING_FORMAT_TYPE, - .bFormatType = AUDIO_FORMAT_TYPE_I, - .bNrChannels = SPEAKER_OUT_CHANNEL_NBR, - .bSubFrameSize = 0x02U, - .bBitResolution = SPEAKER_OUT_BIT_RESOLUTION, - .bSamFreqType = 0x01U, - .bSamFreq[0] = (uint8_t)USBD_SPEAKER_FREQ, - .bSamFreq[1] = USBD_SPEAKER_FREQ >> 8U, - .bSamFreq[2] = USBD_SPEAKER_FREQ >> 16U - }, - - .speak_std_endpoint = - { - .header = - { - .bLength = sizeof(usb_desc_std_ep), - .bDescriptorType = USB_DESCTYPE_EP - }, - .bEndpointAddress = AUDIO_OUT_EP, - .bmAttributes = USB_ENDPOINT_TYPE_ISOCHRONOUS, - .wMaxPacketSize = SPEAKER_OUT_PACKET, - .bInterval = 0x01U, - .bRefresh = 0x00U, - .bSynchAddress = 0x00U - }, - - .speak_as_endpoint = - { - .header = - { - .bLength = sizeof(usb_desc_AS_ep), - .bDescriptorType = AUDIO_DESCTYPE_ENDPOINT - }, - .bDescriptorSubtype = AUDIO_ENDPOINT_GENERAL, - .bmAttributes = 0x00U, - .bLockDelayUnits = 0x00U, - .wLockDelay = 0x0000U, - } -#endif -}; - -/* USB language ID descriptor */ -static __ALIGN_BEGIN const usb_desc_LANGID usbd_language_id_desc __ALIGN_END = -{ - .header = - { - .bLength = sizeof(usb_desc_LANGID), - .bDescriptorType = USB_DESCTYPE_STR - }, - - .wLANGID = ENG_LANGID -}; - -/* USB manufacture string */ -static __ALIGN_BEGIN const usb_desc_str manufacturer_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(10), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'i', 'g', 'a', 'D', 'e', 'v', 'i', 'c', 'e'} -}; - -/* USB product string */ -static __ALIGN_BEGIN const usb_desc_str product_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(14), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'D', '3', '2', '-', 'U', 'S', 'B', '_', 'A', 'u', 'd', 'i', 'o'} -}; - -/* USBD serial string */ -static __ALIGN_BEGIN usb_desc_str serial_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(12), - .bDescriptorType = USB_DESCTYPE_STR, - } -}; - -/* USB string descriptor */ -void *const usbd_audio_strings[] = -{ - [STR_IDX_LANGID] = (uint8_t *)&usbd_language_id_desc, - [STR_IDX_MFC] = (uint8_t *)&manufacturer_string, - [STR_IDX_PRODUCT] = (uint8_t *)&product_string, - [STR_IDX_SERIAL] = (uint8_t *)&serial_string -}; - -usb_desc audio_desc = { - .dev_desc = (uint8_t *)&audio_dev_desc, - .config_desc = (uint8_t *)&audio_config_set, - .strings = usbd_audio_strings -}; - -/*! - \brief initialize the AUDIO device - \param[in] udev: pointer to USB device instance - \param[in] config_index: configuration index - \param[out] none - \retval USB device operation status -*/ -static uint8_t audio_init (usb_dev *udev, uint8_t config_index) -{ - static __ALIGN_BEGIN usbd_audio_handler audio_handler __ALIGN_END; - - memset((void *)&audio_handler, 0, sizeof(usbd_audio_handler)); - -#ifdef USE_USB_AUDIO_MICPHONE -{ - usb_desc_std_ep std_ep = audio_config_set.mic_std_endpoint; - - usb_desc_ep ep = { - .header = std_ep.header, - .bEndpointAddress = std_ep.bEndpointAddress, - .bmAttributes = std_ep.bmAttributes, - .wMaxPacketSize = std_ep.wMaxPacketSize, - .bInterval = std_ep.bInterval - }; - - /* initialize TX endpoint */ - usbd_ep_setup (udev, &ep); -} -#endif - -#ifdef USE_USB_AUDIO_SPEAKER -{ - audio_handler.isoc_out_rdptr = audio_handler.isoc_out_buff; - audio_handler.isoc_out_wrptr = audio_handler.isoc_out_buff; - - usb_desc_std_ep std_ep = audio_config_set.speak_std_endpoint; - - usb_desc_ep ep = { - .header = std_ep.header, - .bEndpointAddress = std_ep.bEndpointAddress, - .bmAttributes = std_ep.bmAttributes, - .wMaxPacketSize = std_ep.wMaxPacketSize, - .bInterval = std_ep.bInterval - }; - - /* initialize RX endpoint */ - usbd_ep_setup (udev, &ep); - - /* initialize the audio output hardware layer */ - if (USBD_OK != audio_out_fops.audio_init(USBD_AUDIO_FREQ_16K, DEFAULT_VOLUME, 0U)) { - return USBD_FAIL; - } - - /* prepare OUT endpoint to receive audio data */ - usbd_ep_recev (udev, AUDIO_OUT_EP, (uint8_t*)audio_handler.isoc_out_buff, SPEAKER_OUT_PACKET); -} -#endif - - udev->dev.class_data[USBD_AUDIO_INTERFACE] = (void *)&audio_handler; - - return USBD_OK; -} - -/*! - \brief de-initialize the AUDIO device - \param[in] udev: pointer to USB device instance - \param[in] config_index: configuration index - \param[out] none - \retval USB device operation status -*/ -static uint8_t audio_deinit (usb_dev *udev, uint8_t config_index) -{ -#ifdef USE_USB_AUDIO_MICPHONE - /* deinitialize AUDIO endpoints */ - usbd_ep_clear(udev, AUDIO_IN_EP); -#endif - -#ifdef USE_USB_AUDIO_SPEAKER - /* deinitialize AUDIO endpoints */ - usbd_ep_clear(udev, AUDIO_OUT_EP); - - /* deinitialize the audio output hardware layer */ - if (USBD_OK != audio_out_fops.audio_deinit(0U)) { - return USBD_FAIL; - } -#endif - - return USBD_OK; -} - -/*! - \brief handle the AUDIO class-specific requests - \param[in] udev: pointer to USB device instance - \param[in] req: device class-specific request - \param[out] none - \retval USB device operation status -*/ -static uint8_t audio_req_handler (usb_dev *udev, usb_req *req) -{ - uint8_t status = REQ_NOTSUPP; - - usbd_audio_handler *audio = (usbd_audio_handler *)udev->dev.class_data[USBD_AUDIO_INTERFACE]; - - usb_transc *transc_in = &udev->dev.transc_in[0]; - usb_transc *transc_out = &udev->dev.transc_out[0]; - - switch (req->bRequest) { - case AUDIO_REQ_GET_CUR: - transc_in->xfer_buf = audio->audioctl; - transc_in->remain_len = req->wLength; - - status = REQ_SUPP; - break; - - case AUDIO_REQ_SET_CUR: - if (req->wLength) { - transc_out->xfer_buf = audio->audioctl; - transc_out->remain_len = req->wLength; - - udev->dev.class_core->command = AUDIO_REQ_SET_CUR; - - audio->audioctl_len = req->wLength; - audio->audioctl_unit = BYTE_HIGH(req->wIndex); - - status = REQ_SUPP; - } - break; - - case AUDIO_REQ_GET_MIN: - *((uint16_t *)audio->audioctl) = VOL_MIN; - transc_in->xfer_buf = audio->audioctl; - transc_in->remain_len = req->wLength; - status = REQ_SUPP; - break; - - case AUDIO_REQ_GET_MAX: - *((uint16_t *)audio->audioctl) = VOL_MAX; - transc_in->xfer_buf = audio->audioctl; - transc_in->remain_len = req->wLength; - status = REQ_SUPP; - break; - - case AUDIO_REQ_GET_RES: - *((uint16_t *)audio->audioctl) = VOL_RES; - transc_in->xfer_buf = audio->audioctl; - transc_in->remain_len = req->wLength; - status = REQ_SUPP; - break; - - default: - break; - } - - return status; -} - -/*! - \brief handles the audio IN data stage - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint number - \param[out] none - \retval USB device operation status -*/ -static uint8_t audio_data_in (usb_dev *udev, uint8_t ep_num) -{ -#ifdef USE_USB_AUDIO_MICPHONE - if(count_data < LENGTH_DATA){ - /* Prepare next buffer to be sent: dummy data */ - usbd_ep_send(udev, AUDIO_IN_EP,(uint8_t*)&wavetestdata[count_data],MIC_IN_PACKET); - count_data += MIC_IN_PACKET; - } else { - usbd_ep_send(udev, AUDIO_IN_EP,(uint8_t*)wavetestdata,MIC_IN_PACKET); - count_data = MIC_IN_PACKET; - } -#endif - - return USBD_OK; -} - -/*! - \brief handles the audio OUT data stage - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint number - \param[out] none - \retval USB device operation status -*/ -static uint8_t audio_data_out (usb_dev *udev, uint8_t ep_num) -{ -#ifdef USE_USB_AUDIO_SPEAKER - usbd_audio_handler *audio = (usbd_audio_handler *)udev->dev.class_data[USBD_AUDIO_INTERFACE]; - - if (AUDIO_OUT_EP == ep_num) { - /* increment the Buffer pointer or roll it back when all buffers are full */ - if (audio->isoc_out_wrptr >= (audio->isoc_out_buff + (SPEAKER_OUT_PACKET * OUT_PACKET_NUM))) { - /* all buffers are full: roll back */ - audio->isoc_out_wrptr = audio->isoc_out_buff; - } else { - /* increment the buffer pointer */ - audio->isoc_out_wrptr += SPEAKER_OUT_PACKET; - } - - /* Toggle the frame index */ - udev->dev.transc_out[ep_num].frame_num = - (udev->dev.transc_out[ep_num].frame_num)? 0U:1U; - - /* prepare out endpoint to receive next audio packet */ - usbd_ep_recev (udev, AUDIO_OUT_EP, (uint8_t*)(audio->isoc_out_wrptr), SPEAKER_OUT_PACKET); - - /* trigger the start of streaming only when half buffer is full */ - if ((0U == audio->play_flag) && (audio->isoc_out_wrptr >= (audio->isoc_out_buff + ((SPEAKER_OUT_PACKET * OUT_PACKET_NUM) / 2U)))) { - /* enable start of streaming */ - audio->play_flag = 1U; - } - } else { - /* handles audio control requests data */ - /* check if an audio_control request has been issued */ - if (AUDIO_REQ_SET_CUR == udev->dev.class_core->command) { - /* in this driver, to simplify code, only SET_CUR request is managed */ - - /* check for which addressed unit the audio_control request has been issued */ - if (AUDIO_OUT_STREAMING_CTRL == audio->audioctl_unit) { - /* in this driver, to simplify code, only one unit is manage */ - - /* call the audio interface mute function */ - audio_out_fops.audio_mute_ctl(audio->audioctl[0]); - - /* reset the audioctl_cmd variable to prevent re-entering this function */ - udev->dev.class_core->command = 0U; - - audio->audioctl_len = 0U; - } - } - } -#endif - - return USBD_OK; -} - -/*! - \brief handles the SOF event (data buffer update and synchronization) - \param[in] udev: pointer to USB device instance - \param[out] none - \retval USB device operation status -*/ -static uint8_t usbd_audio_sof (usb_dev *udev) -{ -#ifdef USE_USB_AUDIO_SPEAKER - usbd_audio_handler *audio = (usbd_audio_handler *)udev->dev.class_data[USBD_AUDIO_INTERFACE]; - - /* check if there are available data in stream buffer. - in this function, a single variable (play_flag) is used to avoid software delays. - the play operation must be executed as soon as possible after the SOF detection. */ - if (audio->play_flag) { - /* start playing received packet */ - audio_out_fops.audio_cmd((uint8_t*)(audio->isoc_out_rdptr), /* samples buffer pointer */ - SPEAKER_OUT_PACKET, /* number of samples in Bytes */ - AUDIO_CMD_PLAY); /* command to be processed */ - - /* increment the Buffer pointer or roll it back when all buffers all full */ - if (audio->isoc_out_rdptr >= (audio->isoc_out_buff + (SPEAKER_OUT_PACKET * OUT_PACKET_NUM))) { - /* roll back to the start of buffer */ - audio->isoc_out_rdptr = audio->isoc_out_buff; - } else { - /* increment to the next sub-buffer */ - audio->isoc_out_rdptr += SPEAKER_OUT_PACKET; - } - - /* if all available buffers have been consumed, stop playing */ - if (audio->isoc_out_rdptr == audio->isoc_out_wrptr) { - /* Pause the audio stream */ - audio_out_fops.audio_cmd((uint8_t*)(audio->isoc_out_buff), /* samples buffer pointer */ - SPEAKER_OUT_PACKET, /* number of samples in Bytes */ - AUDIO_CMD_PAUSE); /* command to be processed */ - - /* stop entering play loop */ - audio->play_flag = 0U; - - /* reset buffer pointers */ - audio->isoc_out_rdptr = audio->isoc_out_buff; - audio->isoc_out_wrptr = audio->isoc_out_buff; - } - } -#endif - - return USBD_OK; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Source/audio_out_itf.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Source/audio_out_itf.c deleted file mode 100644 index b5a3127293..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/audio/Source/audio_out_itf.c +++ /dev/null @@ -1,228 +0,0 @@ -/*! - \file audio_out_itf.c - \brief audio OUT (playback) interface functions - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "audio_core.h" -#include "audio_out_itf.h" - -static uint8_t init (uint32_t audiofreq, uint32_t volume, uint32_t options); -static uint8_t deinit (uint32_t options); -static uint8_t audio_cmd (uint8_t* pbuf, uint32_t size, uint8_t cmd); -static uint8_t volume_ctl (uint8_t vol); -static uint8_t mute_ctl (uint8_t cmd); -static uint8_t periodic_tc (uint8_t cmd); -static uint8_t get_state (void); - -audio_fops_struct audio_out_fops = -{ - init, - deinit, - audio_cmd, - volume_ctl, - mute_ctl, - periodic_tc, - get_state -}; - -static uint8_t audio_state = AUDIO_STATE_INACTIVE; - -/*! - \brief initialize and configures all required resources for audio play function - \param[in] audio_freq: statrt_up audio frequency - \param[in] volume: start_up volume to be set - \param[in] options: specific options passed to low layer function - \param[out] none - \retval AUDIO_OK if all operations succeed, AUDIO_FAIL else -*/ -static uint8_t init (uint32_t audio_freq, uint32_t volume, uint32_t options) -{ - static uint32_t initialized = 0U; - - /* check if the low layer has already been initialized */ - if (0U == initialized) { - /* call low layer function */ - if (0U != eval_audio_init(OUTPUT_DEVICE_AUTO, (uint8_t)volume, audio_freq)) { - audio_state = AUDIO_STATE_ERROR; - - return AUDIO_FAIL; - } - - /* set the initialization flag to prevent reinitializing the interface again */ - initialized = 1U; - } - - /* update the audio state machine */ - audio_state = AUDIO_STATE_ACTIVE; - - return AUDIO_OK; -} - -/*! - \brief free all resources used by low layer and stops audio-play function - \param[in] options: specific options passed to low layer function - \param[out] none - \retval AUDIO_OK if all operations succeed, AUDIO_FAIL else -*/ -static uint8_t deinit (uint32_t options) -{ - /* update the audio state machine */ - audio_state = AUDIO_STATE_INACTIVE; - - return AUDIO_OK; -} - -/*! - \brief play, stop, pause or resume current file - \param[in] pbuf: address from which file should be played - \param[in] size: size of the current buffer/file - \param[in] cmd: command to be executed, can be: - \arg AUDIO_CMD_PLAY - \arg AUDIO_CMD_PAUSE - \arg AUDIO_CMD_RESUME - \arg AUDIO_CMD_STOP - \param[out] none - \retval AUDIO_OK if all operations succeed, AUDIO_FAIL else -*/ -static uint8_t audio_cmd (uint8_t* pbuf, uint32_t size, uint8_t cmd) -{ - /* check the current state */ - if ((AUDIO_STATE_INACTIVE == audio_state) || (AUDIO_STATE_ERROR == audio_state)) { - audio_state = AUDIO_STATE_ERROR; - - return AUDIO_FAIL; - } - - switch (cmd) { - /* process the play command */ - case AUDIO_CMD_PLAY: - /* if current state is active or stopped */ - if ((AUDIO_STATE_ACTIVE == audio_state) || \ - (AUDIO_STATE_STOPPED == audio_state) || \ - (AUDIO_STATE_PLAYING == audio_state)) { - audio_mal_play((uint32_t)pbuf, size); - audio_state = AUDIO_STATE_PLAYING; - - return AUDIO_OK; - } else if (AUDIO_STATE_PAUSED == audio_state) { - if (eval_audio_pause_resume(AUDIO_RESUME, (uint32_t)pbuf, (size / 2U))) { - audio_state = AUDIO_STATE_ERROR; - - return AUDIO_FAIL; - } else { - audio_state = AUDIO_STATE_PLAYING; - - return AUDIO_OK; - } - } else { - return AUDIO_FAIL; - } - - /* process the stop command */ - case AUDIO_CMD_STOP: - if (AUDIO_STATE_PLAYING != audio_state) { - /* unsupported command */ - return AUDIO_FAIL; - } else if (eval_audio_stop(CODEC_PDWN_SW)) { - audio_state = AUDIO_STATE_ERROR; - - return AUDIO_FAIL; - } else { - audio_state = AUDIO_STATE_STOPPED; - - return AUDIO_OK; - } - - /* process the pause command */ - case AUDIO_CMD_PAUSE: - if (AUDIO_STATE_PLAYING != audio_state) { - /* unsupported command */ - return AUDIO_FAIL; - } else if (eval_audio_pause_resume(AUDIO_PAUSE, (uint32_t)pbuf, (size / 2U))) { - audio_state = AUDIO_STATE_ERROR; - - return AUDIO_FAIL; - } else { - audio_state = AUDIO_STATE_PAUSED; - - return AUDIO_OK; - } - - /* unsupported command */ - default: - return AUDIO_FAIL; - } -} - -/*! - \brief set the volume level - \param[in] vol: volume level to be set in % (from 0% to 100%) - \param[out] none - \retval AUDIO_OK if all operations succeed, AUDIO_FAIL else -*/ -static uint8_t volume_ctl (uint8_t vol) -{ - return AUDIO_OK; -} - -/*! - \brief mute or unmute the audio current output - \param[in] cmd: can be 0 to unmute, or 1 to mute - \param[out] none - \retval AUDIO_OK if all operations succeed, AUDIO_FAIL else -*/ -static uint8_t mute_ctl (uint8_t cmd) -{ - return AUDIO_OK; -} - -/*! - \brief periodic transfer control - \param[in] cmd: command - \param[out] none - \retval AUDIO_OK if all operations succeed, AUDIO_FAIL else -*/ -static uint8_t periodic_tc (uint8_t cmd) -{ - return AUDIO_OK; -} - -/*! - \brief return the current state of the audio machine - \param[in] none - \param[out] none - \retval AUDIO_OK if all operations succeed, AUDIO_FAIL else -*/ -static uint8_t get_state (void) -{ - return audio_state; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Include/dfu_core.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Include/dfu_core.h deleted file mode 100644 index 54baa6dd88..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Include/dfu_core.h +++ /dev/null @@ -1,176 +0,0 @@ -/*! - \file dfu_core.h - \brief the header file of USB DFU device class core functions - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __DFU_CORE_H -#define __DFU_CORE_H - -#include "usbd_enum.h" - -/* DFU class code */ -#define USB_DFU_CLASS 0xFEU - -/* DFU subclass code */ -#define USB_DFU_SUBCLASS_UPGRADE 0x01U - -/* DFU protocol code */ -#define USB_DFU_PROTOCL_RUNTIME 0x01U -#define USB_DFU_PROTOCL_DFU 0x02U - -/* manifestation state */ -#define MANIFEST_COMPLETE 0x00U -#define MANIFEST_IN_PROGRESS 0x01U - -/* DFU attributes code */ -#define USB_DFU_CAN_DOWNLOAD 0x01U -#define USB_DFU_CAN_UPLOAD 0x02U -#define USB_DFU_MANIFEST_TOLERANT 0x04U -#define USB_DFU_WILL_DETACH 0x08U - -/* special commands with download request */ -#define GET_COMMANDS 0x00U -#define SET_ADDRESS_POINTER 0x21U -#define ERASE 0x41U - -/* memory operation command */ -#define CMD_ERASE 0U -#define CMD_WRITE 1U - -#define _BYTE1(x) (uint8_t)((x) & 0xFFU) /*!< addressing cycle 1st byte */ -#define _BYTE2(x) (uint8_t)(((x) & 0xFF00U) >> 8U) /*!< addressing cycle 2nd byte */ -#define _BYTE3(x) (uint8_t)(((x) & 0xFF0000U) >> 16U) /*!< addressing cycle 3rd byte */ - -#define FLASH_ERASE_TIMEOUT 60U -#define FLASH_WRITE_TIMEOUT 80U - -/* bit detach capable = bit 3 in bmAttributes field */ -#define DFU_DETACH_MASK (uint8_t)(0x10U) - -#define USB_SERIAL_STR_LEN 0x06U - -#define USB_DFU_CONFIG_DESC_SIZE 27U - -#define DFU_DESC_TYPE 0x21U - -/* DFU device state defines */ -typedef enum { - STATE_APP_IDLE = 0x00U, - STATE_APP_DETACH, - STATE_DFU_IDLE, - STATE_DFU_DNLOAD_SYNC, - STATE_DFU_DNBUSY, - STATE_DFU_DNLOAD_IDLE, - STATE_DFU_MANIFEST_SYNC, - STATE_DFU_MANIFEST, - STATE_DFU_MANIFEST_WAIT_RESET, - STATE_DFU_UPLOAD_IDLE, - STATE_DFU_ERROR -} dfu_state; - -/* DFU device status defines */ -typedef enum { - STATUS_OK = 0x00U, - STATUS_ERR_TARGET, - STATUS_ERR_FILE, - STATUS_ERR_WRITE, - STATUS_ERR_ERASE, - STATUS_ERR_CHECK_ERASED, - STATUS_ERR_PROG, - STATUS_ERR_VERIFY, - STATUS_ERR_ADDRESS, - STATUS_ERR_NOTDONE, - STATUS_ERR_FIRMWARE, - STATUS_ERR_VENDOR, - STATUS_ERR_USBR, - STATUS_ERR_POR, - STATUS_ERR_UNKNOWN, - STATUS_ERR_STALLEDPKT -} dfu_status; - -/* DFU class-specific requests */ -typedef enum { - DFU_DETACH = 0U, - DFU_DNLOAD, - DFU_UPLOAD, - DFU_GETSTATUS, - DFU_CLRSTATUS, - DFU_GETSTATE, - DFU_ABORT, - DFU_REQ_MAX -} dfu_requests; - -#pragma pack(1) - -/* USB DFU function descriptor structure */ -typedef struct -{ - usb_desc_header header; /*!< descriptor header, including type and size */ - uint8_t bmAttributes; /*!< DFU attributes */ - uint16_t wDetachTimeOut; /*!< time, in milliseconds, that the device will wait after receipt of the DFU_DETACH request. If */ - uint16_t wTransferSize; /*!< maximum number of bytes that the device can accept per control-write transaction */ - uint16_t bcdDFUVersion; /*!< numeric expression identifying the version of the DFU Specification release. */ -} usb_desc_dfu_func; - -#pragma pack() - -/* USB configuration descriptor structure */ -typedef struct -{ - usb_desc_config config; - usb_desc_itf dfu_itf; - usb_desc_dfu_func dfu_func; -} usb_dfu_desc_config_set; - -typedef struct -{ - uint8_t bStatus; - uint8_t bwPollTimeout0; - uint8_t bwPollTimeout1; - uint8_t bwPollTimeout2; - uint8_t bState; - uint8_t iString; - - uint8_t manifest_state; - uint32_t data_len; - uint16_t block_num; - uint32_t base_addr; - - uint8_t buf[TRANSFER_SIZE]; -} usbd_dfu_handler; - -typedef void (*app_func) (void); - -extern usb_desc dfu_desc; -extern usb_class_core dfu_class; - -#endif /* DFU_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Include/dfu_mal.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Include/dfu_mal.h deleted file mode 100644 index 9dc27adc85..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Include/dfu_mal.h +++ /dev/null @@ -1,84 +0,0 @@ -/*! - \file dfu_mal.h - \brief USB DFU device media access layer header file - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __DFU_MAL_H -#define __DFU_MAL_H - -#include "usbd_conf.h" - -typedef struct _dfu_mal_prop -{ - const uint8_t* pstr_desc; - - uint8_t (*mal_init) (void); - uint8_t (*mal_deinit) (void); - uint8_t (*mal_erase) (uint32_t addr); - uint8_t (*mal_write) (uint8_t *buf, uint32_t addr, uint32_t len); - uint8_t* (*mal_read) (uint8_t *buf, uint32_t addr, uint32_t len); - uint8_t (*mal_checkaddr) (uint32_t addr); - - const uint32_t erase_timeout; - const uint32_t write_timeout; -} dfu_mal_prop; - -typedef enum -{ - MAL_OK = 0, - MAL_FAIL -} MAL_Status; - -#define _1st_BYTE(x) (uint8_t)((x) & 0xFF) /*!< addressing cycle 1st byte */ -#define _2nd_BYTE(x) (uint8_t)(((x) & 0xFF00) >> 8) /*!< addressing cycle 2nd byte */ -#define _3rd_BYTE(x) (uint8_t)(((x) & 0xFF0000) >> 16) /*!< addressing cycle 3rd byte */ - -#define SET_POLLING_TIMEOUT(x) buffer[0] = _1st_BYTE(x);\ - buffer[1] = _2nd_BYTE(x);\ - buffer[2] = _3rd_BYTE(x); - -/* function declarations */ -/* initialize the memory media on the GD32 */ -uint8_t dfu_mal_init(void); -/* deinitialize the memory media on the GD32 */ -uint8_t dfu_mal_deinit(void); -/* erase a memory sector */ -uint8_t dfu_mal_erase(uint32_t addr); -/* write data to sectors of memory */ -uint8_t dfu_mal_write(uint8_t *buf, uint32_t addr, uint32_t len); -/* read data from sectors of memory */ -uint8_t* dfu_mal_read(uint8_t *buf, uint32_t addr, uint32_t len); -/* get the status of a given memory and store in buffer */ -uint8_t dfu_mal_getstatus(uint32_t addr, uint8_t cmd, uint8_t *buffer); - -#endif /* __DFU_MAL_H */ - diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Source/dfu_core.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Source/dfu_core.c deleted file mode 100644 index 61190b4c0b..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Source/dfu_core.c +++ /dev/null @@ -1,653 +0,0 @@ -/*! - \file dfu_core.c - \brief USB DFU device class core functions - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "dfu_core.h" -#include "drv_usb_hw.h" -#include "dfu_mal.h" -#include "flash_if.h" -#include - -#define USBD_VID 0x28E9U -#define USBD_PID 0x0189U - -/* local function prototypes ('static') */ -static uint8_t dfu_init(usb_dev *udev, uint8_t config_index); -static uint8_t dfu_deinit(usb_dev *udev, uint8_t config_index); -static uint8_t dfu_req_handler(usb_dev *udev, usb_req *req); -static uint8_t dfu_data_in(usb_dev *udev, uint8_t ep_num); -static void dfu_detach(usb_dev *udev, usb_req *req); -static void dfu_dnload(usb_dev *udev, usb_req *req); -static void dfu_upload(usb_dev *udev, usb_req *req); -static void dfu_getstatus(usb_dev *udev, usb_req *req); -static void dfu_clrstatus(usb_dev *udev, usb_req *req); -static void dfu_getstate(usb_dev *udev, usb_req *req); -static void dfu_abort(usb_dev *udev, usb_req *req); -static void dfu_mode_leave(usb_dev *udev); -static uint8_t dfu_getstatus_complete (usb_dev *udev); - -static void (*dfu_request_process[])(usb_dev *udev, usb_req *req) = -{ - [DFU_DETACH] = dfu_detach, - [DFU_DNLOAD] = dfu_dnload, - [DFU_UPLOAD] = dfu_upload, - [DFU_GETSTATUS] = dfu_getstatus, - [DFU_CLRSTATUS] = dfu_clrstatus, - [DFU_GETSTATE] = dfu_getstate, - [DFU_ABORT] = dfu_abort -}; - -/* note:it should use the c99 standard when compiling the below codes */ -/* USB standard device descriptor */ -__ALIGN_BEGIN const usb_desc_dev dfu_dev_desc __ALIGN_END = -{ - .header = - { - .bLength = USB_DEV_DESC_LEN, - .bDescriptorType = USB_DESCTYPE_DEV - }, - .bcdUSB = 0x0200U, - .bDeviceClass = 0x00U, - .bDeviceSubClass = 0x00U, - .bDeviceProtocol = 0x00U, - .bMaxPacketSize0 = USB_FS_EP0_MAX_LEN, - .idVendor = USBD_VID, - .idProduct = USBD_PID, - .bcdDevice = 0x0100U, - .iManufacturer = STR_IDX_MFC, - .iProduct = STR_IDX_PRODUCT, - .iSerialNumber = STR_IDX_SERIAL, - .bNumberConfigurations = USBD_CFG_MAX_NUM -}; - -/* USB device configuration descriptor */ -__ALIGN_BEGIN const usb_dfu_desc_config_set dfu_config_desc __ALIGN_END = -{ - .config = - { - .header = - { - .bLength = sizeof(usb_desc_config), - .bDescriptorType = USB_DESCTYPE_CONFIG - }, - .wTotalLength = USB_DFU_CONFIG_DESC_SIZE, - .bNumInterfaces = 0x01U, - .bConfigurationValue = 0x01U, - .iConfiguration = 0x00U, - .bmAttributes = 0x80U, - .bMaxPower = 0x32U - }, - - .dfu_itf = - { - .header = - { - .bLength = sizeof(usb_desc_itf), - .bDescriptorType = USB_DESCTYPE_ITF - }, - .bInterfaceNumber = 0x00U, - .bAlternateSetting = 0x00U, - .bNumEndpoints = 0x00U, - .bInterfaceClass = USB_DFU_CLASS, - .bInterfaceSubClass = USB_DFU_SUBCLASS_UPGRADE, - .bInterfaceProtocol = USB_DFU_PROTOCL_DFU, - .iInterface = 0x05U - }, - - .dfu_func = - { - .header = - { - .bLength = sizeof(usb_desc_dfu_func), - .bDescriptorType = DFU_DESC_TYPE - }, - .bmAttributes = USB_DFU_CAN_DOWNLOAD | USB_DFU_CAN_UPLOAD | USB_DFU_WILL_DETACH, - .wDetachTimeOut = 0x00FFU, - .wTransferSize = TRANSFER_SIZE, - .bcdDFUVersion = 0x011AU, - }, -}; - -/* USB language ID Descriptor */ -static __ALIGN_BEGIN const usb_desc_LANGID usbd_language_id_desc __ALIGN_END = -{ - .header = { - .bLength = sizeof(usb_desc_LANGID), - .bDescriptorType = USB_DESCTYPE_STR - }, - .wLANGID = ENG_LANGID -}; - -/* USB manufacture string */ -static __ALIGN_BEGIN const usb_desc_str manufacturer_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(10U), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'i', 'g', 'a', 'D', 'e', 'v', 'i', 'c', 'e'} -}; - -/* USB product string */ -static __ALIGN_BEGIN const usb_desc_str product_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(12U), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'D', '3', '2', '-', 'U', 'S', 'B', '_', 'D', 'F', 'U'} -}; - -/* USBD serial string */ -static __ALIGN_BEGIN usb_desc_str serial_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(2U), - .bDescriptorType = USB_DESCTYPE_STR, - } -}; - -/* USB configure string */ -static __ALIGN_BEGIN const usb_desc_str config_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(15U), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'D', '3', '2', ' ', 'U', 'S', 'B', ' ', 'C', 'O', 'N', 'F', 'I', 'G'} -}; - -static __ALIGN_BEGIN const usb_desc_str interface_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(44U), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'@', 'I', 'n', 't', 'e', 'r', 'n', 'a', 'l', 'F', 'l', 'a', 's', 'h', ' ', '/', '0', 'x', '0', '8', '0', '0', - '0', '0', '0', '0', '/', '1', '6', '*', '0', '0', '1', 'K', 'a', ',', '4', '8', '*', '0', '0', '1', 'K', 'g'} -}; - -void *const usbd_dfu_strings[] = -{ - [STR_IDX_LANGID] = (uint8_t *)&usbd_language_id_desc, - [STR_IDX_MFC] = (uint8_t *)&manufacturer_string, - [STR_IDX_PRODUCT] = (uint8_t *)&product_string, - [STR_IDX_SERIAL] = (uint8_t *)&serial_string, - [STR_IDX_CONFIG] = (uint8_t *)&config_string, - [STR_IDX_ITF] = (uint8_t *)&interface_string -}; - -usb_desc dfu_desc = { - .dev_desc = (uint8_t *)&dfu_dev_desc, - .config_desc = (uint8_t *)&dfu_config_desc, - .strings = usbd_dfu_strings -}; - -usb_class_core dfu_class = { - .init = dfu_init, - .deinit = dfu_deinit, - .req_proc = dfu_req_handler, - .data_in = dfu_data_in -}; - -/*! - \brief initialize the DFU device - \param[in] udev: pointer to USB device instance - \param[in] config_index: configuration index - \param[out] none - \retval USB device operation status -*/ -static uint8_t dfu_init (usb_dev *udev, uint8_t config_index) -{ - static __ALIGN_BEGIN usbd_dfu_handler dfu_handler __ALIGN_END; - - /* unlock the internal flash */ - dfu_mal_init(); - - memset((void *)&dfu_handler, 0, sizeof(usbd_dfu_handler)); - - dfu_handler.base_addr = APP_LOADED_ADDR; - dfu_handler.manifest_state = MANIFEST_COMPLETE; - dfu_handler.bState = STATE_DFU_IDLE; - dfu_handler.bStatus = STATUS_OK; - - udev->dev.class_data[USBD_DFU_INTERFACE] = (void *)&dfu_handler; - - return USBD_OK; -} - -/*! - \brief de-initialize the DFU device - \param[in] udev: pointer to USB device instance - \param[in] config_index: configuration index - \param[out] none - \retval USB device operation status -*/ -static uint8_t dfu_deinit (usb_dev *udev, uint8_t config_index) -{ - usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; - - /* restore device default state */ - memset(udev->dev.class_data[USBD_DFU_INTERFACE], 0, sizeof(usbd_dfu_handler)); - - dfu->bState = STATE_DFU_IDLE; - dfu->bStatus = STATUS_OK; - - /* lock the internal flash */ - dfu_mal_deinit(); - - return USBD_OK; -} - -/*! - \brief handle the DFU class-specific requests - \param[in] udev: pointer to USB device instance - \param[in] req: device class-specific request - \param[out] none - \retval USB device operation status -*/ -static uint8_t dfu_req_handler (usb_dev *udev, usb_req *req) -{ - if (req->bRequest < DFU_REQ_MAX) { - dfu_request_process[req->bRequest](udev, req); - } else { - return USBD_FAIL; - } - - return USBD_OK; -} - -/*! - \brief handle data Stage - \param[in] udev: pointer to USB device instance - \param[in] ep_num: the endpoint number - \param[out] none - \retval USB device operation status -*/ -static uint8_t dfu_data_in (usb_dev *udev, uint8_t ep_num) -{ - if (0U == ep_num) { - dfu_getstatus_complete(udev); - } - - return USBD_OK; -} - -/*! - \brief leave DFU mode and reset device to jump to user loaded code - \param[in] udev: pointer to USB device instance - \param[out] none - \retval none -*/ -static void dfu_mode_leave (usb_dev *udev) -{ - usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; - - dfu->manifest_state = MANIFEST_COMPLETE; - - if (dfu_config_desc.dfu_func.bmAttributes & 0x04U) { - dfu->bState = STATE_DFU_MANIFEST_SYNC; - } else { - dfu->bState = STATE_DFU_MANIFEST_WAIT_RESET; - - /* lock the internal flash */ - dfu_mal_deinit(); - - /* generate system reset to allow jumping to the user code */ - NVIC_SystemReset(); - } -} - -/*! - \brief handle data IN stage in control endpoint 0 - \param[in] udev: pointer to USB device instance - \param[out] none - \retval USB device operation status - */ -static uint8_t dfu_getstatus_complete (usb_dev *udev) -{ - uint32_t addr; - - usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; - - if (STATE_DFU_DNBUSY == dfu->bState) { - /* decode the special command */ - if (0U == dfu->block_num) { - if (1U == dfu->data_len){ - if (GET_COMMANDS == dfu->buf[0]) { - /* no operation */ - } - } else if (5U == dfu->data_len) { - if (SET_ADDRESS_POINTER == dfu->buf[0]) { - /* set flash operation address */ - dfu->base_addr = *(uint32_t *)(dfu->buf + 1U); - } else if (ERASE == dfu->buf[0]) { - dfu->base_addr = *(uint32_t *)(dfu->buf + 1U); - - dfu_mal_erase(dfu->base_addr); - } else { - /* no operation */ - } - } else { - /* no operation */ - } - } else if (dfu->block_num > 1U) { /* regular download command */ - /* decode the required address */ - addr = (dfu->block_num - 2U) * TRANSFER_SIZE + dfu->base_addr; - - dfu_mal_write (dfu->buf, addr, dfu->data_len); - - dfu->block_num = 0U; - } else { - /* no operation */ - } - - dfu->data_len = 0U; - - /* update the device state and poll timeout */ - dfu->bState = STATE_DFU_DNLOAD_SYNC; - - return USBD_OK; - } else if (dfu->bState == STATE_DFU_MANIFEST) { /* manifestation in progress */ - /* start leaving DFU mode */ - dfu_mode_leave(udev); - } else { - /* no operation */ - } - - return USBD_OK; -} - -/*! - \brief handle the DFU_DETACH request - \param[in] udev: pointer to USB device instance - \param[in] req: DFU class request - \param[out] none - \retval none. -*/ -static void dfu_detach(usb_dev *udev, usb_req *req) -{ - usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; - - switch (dfu->bState) { - case STATE_DFU_IDLE: - case STATE_DFU_DNLOAD_SYNC: - case STATE_DFU_DNLOAD_IDLE: - case STATE_DFU_MANIFEST_SYNC: - case STATE_DFU_UPLOAD_IDLE: - dfu->bStatus = STATUS_OK; - dfu->bState = STATE_DFU_IDLE; - dfu->iString = 0U; /* iString */ - - dfu->block_num = 0U; - dfu->data_len = 0U; - break; - - default: - break; - } - - /* check the detach capability in the DFU functional descriptor */ - if (dfu_config_desc.dfu_func.wDetachTimeOut & DFU_DETACH_MASK) { - usbd_disconnect (udev); - - usbd_connect (udev); - } else { - /* wait for the period of time specified in detach request */ - usb_mdelay (4U); - } -} - -/*! - \brief handle the DFU_DNLOAD request - \param[in] udev: pointer to USB device instance - \param[in] req: DFU class request - \param[out] none - \retval none -*/ -static void dfu_dnload(usb_dev *udev, usb_req *req) -{ - usb_transc *transc = &udev->dev.transc_out[0]; - usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; - - switch (dfu->bState) { - case STATE_DFU_IDLE: - case STATE_DFU_DNLOAD_IDLE: - if (req->wLength > 0U) { - /* update the global length and block number */ - dfu->block_num = req->wValue; - dfu->data_len = req->wLength; - - dfu->bState = STATE_DFU_DNLOAD_SYNC; - - transc->remain_len = dfu->data_len; - transc->xfer_buf = dfu->buf; - } else { - dfu->manifest_state = MANIFEST_IN_PROGRESS; - dfu->bState = STATE_DFU_MANIFEST_SYNC; - } - break; - - default: - break; - } -} - -/*! - \brief handles the DFU UPLOAD request. - \param[in] udev: pointer to USB device instance - \param[in] req: DFU class request - \param[out] none - \retval none -*/ -static void dfu_upload (usb_dev *udev, usb_req *req) -{ - uint8_t *phy_addr = NULL; - uint32_t addr = 0U; - usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; - - usb_transc *transc = &udev->dev.transc_in[0]; - - if(req->wLength <= 0U) { - dfu->bState = STATE_DFU_IDLE; - return; - } - - switch (dfu->bState) { - case STATE_DFU_IDLE: - case STATE_DFU_UPLOAD_IDLE: - /* update the global length and block number */ - dfu->block_num = req->wValue; - dfu->data_len = req->wLength; - - /* DFU get command */ - if (0U == dfu->block_num) { - /* update the state machine */ - dfu->bState = (dfu->data_len > 3U) ? STATE_DFU_IDLE : STATE_DFU_UPLOAD_IDLE; - - /* store the values of all supported commands */ - dfu->buf[0] = GET_COMMANDS; - dfu->buf[1] = SET_ADDRESS_POINTER; - dfu->buf[2] = ERASE; - - /* send the status data over EP0 */ - transc->xfer_buf = &(dfu->buf[0]); - transc->remain_len = 3U; - } else if (dfu->block_num > 1U) { - dfu->bState = STATE_DFU_UPLOAD_IDLE; - - /* change is accelerated */ - addr = (dfu->block_num - 2U) * TRANSFER_SIZE + dfu->base_addr; - - /* return the physical address where data are stored */ - phy_addr = dfu_mal_read (dfu->buf, addr, dfu->data_len); - - /* send the status data over EP0 */ - transc->xfer_buf = phy_addr; - transc->remain_len = dfu->data_len; - } else { - dfu->bState = STATUS_ERR_STALLEDPKT; - } - break; - - default: - dfu->data_len = 0U; - dfu->block_num = 0U; - break; - } -} - -/*! - \brief handle the DFU_GETSTATUS request - \param[in] udev: pointer to USB device instance - \param[in] req: DFU class request - \param[out] none - \retval none -*/ -static void dfu_getstatus (usb_dev *udev, usb_req *req) -{ - usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; - - usb_transc *transc = &udev->dev.transc_in[0]; - - switch (dfu->bState) { - case STATE_DFU_DNLOAD_SYNC: - if (0U != dfu->data_len) { - dfu->bState = STATE_DFU_DNBUSY; - - if (0U == dfu->block_num) { - if (ERASE == dfu->buf[0]) { - dfu_mal_getstatus (dfu->base_addr, CMD_ERASE, (uint8_t *)&dfu->bwPollTimeout0); - } else { - dfu_mal_getstatus (dfu->base_addr, CMD_WRITE, (uint8_t *)&dfu->bwPollTimeout0); - } - } - } else { - dfu->bState = STATE_DFU_DNLOAD_IDLE; - } - break; - - case STATE_DFU_MANIFEST_SYNC: - if (MANIFEST_IN_PROGRESS == dfu->manifest_state) { - dfu->bState = STATE_DFU_MANIFEST; - dfu->bwPollTimeout0 = 1U; - } else if ((MANIFEST_COMPLETE == dfu->manifest_state) && \ - (dfu_config_desc.dfu_func.bmAttributes & 0x04U)){ - dfu->bState = STATE_DFU_IDLE; - dfu->bwPollTimeout0 = 0U; - } else { - /* no operation */ - } - break; - - default: - break; - } - - /* send the status data of DFU interface to host over EP0 */ - transc->xfer_buf = (uint8_t *)&(dfu->bStatus); - transc->remain_len = 6U; -} - -/*! - \brief handle the DFU_CLRSTATUS request - \param udev: pointer to USB device instance - \param[out] none - \retval none -*/ -static void dfu_clrstatus (usb_dev *udev, usb_req *req) -{ - usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; - - if (STATE_DFU_ERROR == dfu->bState) { - dfu->bStatus = STATUS_OK; - dfu->bState = STATE_DFU_IDLE; - } else { - /* state error */ - dfu->bStatus = STATUS_ERR_UNKNOWN; - dfu->bState = STATE_DFU_ERROR; - } - - dfu->iString = 0U; /* iString: index = 0 */ -} - -/*! - \brief handle the DFU_GETSTATE request - \param[in] udev: pointer to USB device instance - \param[out] none - \retval none -*/ -static void dfu_getstate (usb_dev *udev, usb_req *req) -{ - usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; - - usb_transc *transc = &udev->dev.transc_in[0]; - - /* send the current state of the DFU interface to host */ - transc->xfer_buf = &(dfu->bState); - transc->remain_len = 1U; -} - -/*! - \brief handle the DFU_ABORT request - \param[in] udev: pointer to USB device instance - \param[out] none - \retval none -*/ -static void dfu_abort (usb_dev *udev, usb_req *req) -{ - usbd_dfu_handler *dfu = (usbd_dfu_handler *)udev->dev.class_data[USBD_DFU_INTERFACE]; - - switch (dfu->bState){ - case STATE_DFU_IDLE: - case STATE_DFU_DNLOAD_SYNC: - case STATE_DFU_DNLOAD_IDLE: - case STATE_DFU_MANIFEST_SYNC: - case STATE_DFU_UPLOAD_IDLE: - dfu->bStatus = STATUS_OK; - dfu->bState = STATE_DFU_IDLE; - dfu->iString = 0U; /* iString: index = 0 */ - - dfu->block_num = 0U; - dfu->data_len = 0U; - break; - - default: - break; - } -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Source/dfu_mal.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Source/dfu_mal.c deleted file mode 100644 index 49070d9c34..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/dfu/Source/dfu_mal.c +++ /dev/null @@ -1,233 +0,0 @@ -/*! - \file dfu_mal.c - \brief USB DFU device media access layer functions - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "dfu_mal.h" -#include "flash_if.h" -#include "drv_usb_hw.h" -#include "usbd_transc.h" - -extern usb_core_driver usb_dfu_dev; - -extern struct { - uint8_t buf[TRANSFER_SIZE]; - uint16_t data_len; - uint16_t block_num; - uint32_t base_addr; -} prog; - -dfu_mal_prop* tMALTab[MAX_USED_MEMORY_MEDIA] = { - &DFU_Flash_cb -}; - -/* The list of memory interface string descriptor pointers. This list - can be updated whenever a memory has to be added or removed */ -const uint8_t* USBD_DFU_StringDesc[MAX_USED_MEMORY_MEDIA] = -{ - (const uint8_t *)FLASH_IF_STRING -}; - -static uint8_t dfu_mal_checkaddr (uint32_t addr); - -/*! - \brief initialize the memory media on the GD32 - \param[in] none - \param[out] none - \retval MAL_OK -*/ -uint8_t dfu_mal_init (void) -{ - uint32_t mem_index = 0U; - - /* initialize all supported memory medias */ - for (mem_index = 0U; mem_index < MAX_USED_MEMORY_MEDIA; mem_index++) { - /* check if the memory media exists */ - if (NULL != tMALTab[mem_index]->mal_init) { - tMALTab[mem_index]->mal_init(); - } - } - - return MAL_OK; -} - -/*! - \brief deinitialize the memory media on the GD32 - \param[in] none - \param[out] none - \retval MAL_OK -*/ -uint8_t dfu_mal_deinit (void) -{ - uint32_t mem_index = 0U; - - /* deinitialize all supported memory medias */ - for (mem_index = 0U; mem_index < MAX_USED_MEMORY_MEDIA; mem_index++) { - /* check if the memory media exists */ - if (NULL != tMALTab[mem_index]->mal_deinit) { - tMALTab[mem_index]->mal_deinit(); - } - } - - return MAL_OK; -} - -/*! - \brief erase a memory sector - \param[in] addr: memory sector address/code - \param[out] none - \retval MAL_OK -*/ -uint8_t dfu_mal_erase (uint32_t addr) -{ - uint32_t mem_index = dfu_mal_checkaddr(addr); - - /* check if the address is in protected area */ - if (IS_PROTECTED_AREA(addr)) { - return MAL_FAIL; - } - - if (mem_index < MAX_USED_MEMORY_MEDIA) { - /* check if the operation is supported */ - if (NULL != tMALTab[mem_index]->mal_erase) { - return tMALTab[mem_index]->mal_erase(addr); - } else { - return MAL_FAIL; - } - } else { - return MAL_FAIL; - } -} - -/*! - \brief write data to sectors of memory - \param[in] buf: the data buffer to be write - \param[in] addr: memory sector address/code - \param[in] len: data length - \param[out] none - \retval MAL_OK -*/ -uint8_t dfu_mal_write (uint8_t *buf, uint32_t addr, uint32_t len) -{ - uint32_t mem_index = dfu_mal_checkaddr(addr); - - /* check if the address is in protected area */ - if (IS_PROTECTED_AREA(addr)) { - return MAL_FAIL; - } - - if (mem_index < MAX_USED_MEMORY_MEDIA) { - /* check if the operation is supported */ - if (NULL != tMALTab[mem_index]->mal_write) { - return tMALTab[mem_index]->mal_write(buf, addr, len); - } else { - return MAL_FAIL; - } - } else { - return MAL_FAIL; - } -} - -/*! - \brief read data from sectors of memory - \param[in] buf: the data buffer to be write - \param[in] addr: memory sector address/code - \param[in] len: data length - \param[out] none - \retval pointer to buffer -*/ -uint8_t* dfu_mal_read (uint8_t *buf, uint32_t addr, uint32_t len) -{ - uint32_t mem_index = 0U; - - if (OB_RDPT != addr) { - mem_index = dfu_mal_checkaddr(addr); - } - - if (mem_index < MAX_USED_MEMORY_MEDIA) { - /* check if the operation is supported */ - if (NULL != tMALTab[mem_index]->mal_read) { - return tMALTab[mem_index]->mal_read(buf, addr, len); - } else { - return buf; - } - } else { - return buf; - } -} - -/*! - \brief get the status of a given memory and store in buffer - \param[in] addr: memory sector address/code - \param[in] cmd: 0 for erase and 1 for write - \param[in] buffer: pointer to the buffer where the status data will be stored - \param[out] none - \retval MAL_OK if all operations are OK, MAL_FAIL else -*/ -uint8_t dfu_mal_getstatus (uint32_t addr, uint8_t cmd, uint8_t *buffer) -{ - uint32_t mem_index = dfu_mal_checkaddr(addr); - - if (mem_index < MAX_USED_MEMORY_MEDIA) { - if (cmd & 0x01U) { - SET_POLLING_TIMEOUT(tMALTab[mem_index]->write_timeout); - } else { - SET_POLLING_TIMEOUT(tMALTab[mem_index]->erase_timeout); - } - - return MAL_OK; - } else { - return MAL_FAIL; - } -} - -/*! - \brief check the address is supported - \param[in] addr: memory sector address/code - \param[out] none - \retval index of the addressed memory -*/ -static uint8_t dfu_mal_checkaddr (uint32_t addr) -{ - uint8_t mem_index = 0U; - - /* check with all supported memories */ - for (mem_index = 0U; mem_index < MAX_USED_MEMORY_MEDIA; mem_index++) { - /* if the check address is supported, return the memory index */ - if (MAL_OK == tMALTab[mem_index]->mal_checkaddr(addr)) { - return mem_index; - } - } - - /* if there is no memory found, return MAX_USED_MEMORY_MEDIA */ - return (MAX_USED_MEMORY_MEDIA); -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Include/custom_hid_core.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Include/custom_hid_core.h deleted file mode 100644 index ba52099681..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Include/custom_hid_core.h +++ /dev/null @@ -1,69 +0,0 @@ -/*! - \file custom_hid_core.h - \brief definitions for HID core - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __CUSTOM_HID_CORE_H -#define __CUSTOM_HID_CORE_H - -#include "usbd_enum.h" -#include "usb_hid.h" - -#define DESC_LEN_REPORT 96U -#define DESC_LEN_CONFIG 41U - -#define NO_CMD 0xFFU - -#define MAX_PERIPH_NUM 4U - -typedef struct { - uint8_t data[2]; - - uint8_t reportID; - uint8_t idlestate; - uint8_t protocol; -} custom_hid_handler; - -typedef struct { - void (*periph_config[MAX_PERIPH_NUM])(void); -} hid_fop_handler; - -extern usb_desc custom_hid_desc; -extern usb_class_core usbd_custom_hid_cb; - -/* function declarations */ -/* register HID interface operation functions */ -uint8_t custom_hid_itfop_register (usb_dev *udev, hid_fop_handler *hid_fop); -/* send custom HID report */ -uint8_t custom_hid_report_send (usb_dev *udev, uint8_t *report, uint32_t len); - -#endif /* __CUSTOM_HID_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Include/standard_hid_core.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Include/standard_hid_core.h deleted file mode 100644 index cb1edfec70..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Include/standard_hid_core.h +++ /dev/null @@ -1,68 +0,0 @@ -/*! - \file standard_hid_core.h - \brief definitions for HID core - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __STANDARD_HID_CORE_H -#define __STANDARD_HID_CORE_H - -#include "usbd_enum.h" -#include "usb_hid.h" - -#define USB_HID_CONFIG_DESC_LEN 0x22U -#define USB_HID_REPORT_DESC_LEN 0x29U - -#define NO_CMD 0xFFU - -typedef struct { - uint32_t protocol; - uint32_t idle_state; - - uint8_t data[HID_IN_PACKET]; - __IO uint8_t prev_transfer_complete; -} standard_hid_handler; - -typedef struct { - void (*hid_itf_config) (void); - void (*hid_itf_data_process) (usb_dev *udev); -} hid_fop_handler; - -extern usb_desc hid_desc; -extern usb_class_core usbd_hid_cb; - -/* function declarations */ -/* register HID interface operation functions */ -uint8_t hid_itfop_register (usb_dev *udev, hid_fop_handler *hid_fop); -/* send keyboard report */ -uint8_t hid_report_send (usb_dev *udev, uint8_t *report, uint32_t len); - -#endif /* __STANDARD_HID_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Source/custom_hid_core.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Source/custom_hid_core.c deleted file mode 100644 index 9706c542d1..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Source/custom_hid_core.c +++ /dev/null @@ -1,486 +0,0 @@ -/*! - \file custom_hid_core.c - \brief custom HID class driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "custom_hid_core.h" -#include "usbd_enum.h" -#include - -#define USBD_VID 0x28E9U -#define USBD_PID 0x028AU - -/* Note:it should use the C99 standard when compiling the below codes */ -/* USB standard device descriptor */ -__ALIGN_BEGIN const usb_desc_dev custom_hid_dev_desc __ALIGN_END = -{ - .header = - { - .bLength = USB_DEV_DESC_LEN, - .bDescriptorType = USB_DESCTYPE_DEV, - }, - .bcdUSB = 0x0200U, - .bDeviceClass = 0x00U, - .bDeviceSubClass = 0x00U, - .bDeviceProtocol = 0x00U, - .bMaxPacketSize0 = USB_FS_EP0_MAX_LEN, - .idVendor = USBD_VID, - .idProduct = USBD_PID, - .bcdDevice = 0x0100U, - .iManufacturer = STR_IDX_MFC, - .iProduct = STR_IDX_PRODUCT, - .iSerialNumber = STR_IDX_SERIAL, - .bNumberConfigurations = USBD_CFG_MAX_NUM, -}; - -/* USB device configuration descriptor */ -__ALIGN_BEGIN const usb_hid_desc_config_set custom_hid_config_desc __ALIGN_END = -{ - .config = - { - .header = - { - .bLength = sizeof(usb_desc_config), - .bDescriptorType = USB_DESCTYPE_CONFIG - }, - .wTotalLength = DESC_LEN_CONFIG, - .bNumInterfaces = 0x01U, - .bConfigurationValue = 0x01U, - .iConfiguration = 0x00U, - .bmAttributes = 0x80U, - .bMaxPower = 0x32U - }, - - .hid_itf = - { - .header = - { - .bLength = sizeof(usb_desc_itf), - .bDescriptorType = USB_DESCTYPE_ITF - }, - .bInterfaceNumber = 0x00U, - .bAlternateSetting = 0x00U, - .bNumEndpoints = 0x02U, - .bInterfaceClass = USB_HID_CLASS, - .bInterfaceSubClass = 0x00U, - .bInterfaceProtocol = 0x00U, - .iInterface = 0x00U - }, - - .hid_vendor = - { - .header = - { - .bLength = sizeof(usb_desc_hid), - .bDescriptorType = USB_DESCTYPE_HID - }, - .bcdHID = 0x0111U, - .bCountryCode = 0x00U, - .bNumDescriptors = 0x01U, - .bDescriptorType = USB_DESCTYPE_REPORT, - .wDescriptorLength = DESC_LEN_REPORT, - }, - - .hid_epin = - { - .header = - { - .bLength = sizeof(usb_desc_ep), - .bDescriptorType = USB_DESCTYPE_EP - }, - .bEndpointAddress = CUSTOMHID_IN_EP, - .bmAttributes = USB_EP_ATTR_INT, - .wMaxPacketSize = CUSTOMHID_IN_PACKET, - .bInterval = 0x20U - }, - - .hid_epout = - { - .header = - { - .bLength = sizeof(usb_desc_ep), - .bDescriptorType = USB_DESCTYPE_EP - }, - .bEndpointAddress = CUSTOMHID_OUT_EP, - .bmAttributes = USB_EP_ATTR_INT, - .wMaxPacketSize = CUSTOMHID_OUT_PACKET, - .bInterval = 0x20U - } -}; - -/* USB language ID descriptor */ -static __ALIGN_BEGIN const usb_desc_LANGID usbd_language_id_desc __ALIGN_END = -{ - .header = - { - .bLength = sizeof(usb_desc_LANGID), - .bDescriptorType = USB_DESCTYPE_STR - }, - .wLANGID = ENG_LANGID -}; - -/* USB manufacture string */ -static __ALIGN_BEGIN const usb_desc_str manufacturer_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(10U), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'i', 'g', 'a', 'D', 'e', 'v', 'i', 'c', 'e'} -}; - -/* USB product string */ -static __ALIGN_BEGIN const usb_desc_str product_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(14U), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'D', '3', '2', '-', 'C', 'u', 's', 't', 'o', 'm', 'H', 'I', 'D'} -}; - -/* USBD serial string */ -static __ALIGN_BEGIN usb_desc_str serial_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(12U), - .bDescriptorType = USB_DESCTYPE_STR, - } -}; - -/* USB string descriptor set */ -void *const usbd_hid_strings[] = -{ - [STR_IDX_LANGID] = (uint8_t *)&usbd_language_id_desc, - [STR_IDX_MFC] = (uint8_t *)&manufacturer_string, - [STR_IDX_PRODUCT] = (uint8_t *)&product_string, - [STR_IDX_SERIAL] = (uint8_t *)&serial_string -}; - -usb_desc custom_hid_desc = { - .dev_desc = (uint8_t *)&custom_hid_dev_desc, - .config_desc = (uint8_t *)&custom_hid_config_desc, - .strings = usbd_hid_strings -}; - -__ALIGN_BEGIN const uint8_t customhid_report_descriptor[DESC_LEN_REPORT] __ALIGN_END = -{ - 0x06, 0x00, 0xFF, /* USAGE_PAGE (Vendor Defined: 0xFF00) */ - 0x09, 0x00, /* USAGE (Custom Device) */ - 0xa1, 0x01, /* COLLECTION (Application) */ - - /* led 1 */ - 0x85, 0x11, /* REPORT_ID (0x11) */ - 0x09, 0x01, /* USAGE (LED 1) */ - 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ - 0x25, 0x01, /* LOGICAL_MAXIMUM (1) */ - 0x75, 0x08, /* REPORT_SIZE (8) */ - 0x95, 0x01, /* REPORT_COUNT (1) */ - 0x91, 0x82, /* OUTPUT (Data,Var,Abs,Vol) */ - - /* led 2 */ - 0x85, 0x12, /* REPORT_ID (0x12) */ - 0x09, 0x02, /* USAGE (LED 2) */ - 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ - 0x25, 0x01, /* LOGICAL_MAXIMUM (1) */ - 0x75, 0x08, /* REPORT_SIZE (8) */ - 0x95, 0x01, /* REPORT_COUNT (1) */ - 0x91, 0x82, /* OUTPUT (Data,Var,Abs,Vol) */ - - /* led 3 */ - 0x85, 0x13, /* REPORT_ID (0x13) */ - 0x09, 0x03, /* USAGE (LED 3) */ - 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ - 0x25, 0x01, /* LOGICAL_MAXIMUM (1) */ - 0x75, 0x08, /* REPORT_SIZE (8) */ - 0x95, 0x01, /* REPORT_COUNT (1) */ - 0x91, 0x82, /* OUTPUT (Data,Var,Abs,Vol) */ - - /* led 4 */ - 0x85, 0x14, /* REPORT_ID (0x14) */ - 0x09, 0x04, /* USAGE (LED 4) */ - 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ - 0x25, 0x01, /* LOGICAL_MAXIMUM (1) */ - 0x75, 0x08, /* REPORT_SIZE (8) */ - 0x95, 0x01, /* REPORT_COUNT (1) */ - 0x91, 0x82, /* OUTPUT (Data,Var,Abs,Vol) */ - - /* wakeup key */ - 0x85, 0x15, /* REPORT_ID (0x15) */ - 0x09, 0x05, /* USAGE (Push Button) */ - 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ - 0x25, 0x01, /* LOGICAL_MAXIMUM (1) */ - 0x75, 0x01, /* REPORT_SIZE (1) */ - 0x81, 0x02, /* INPUT (Data,Var,Abs,Vol) */ - - 0x75, 0x07, /* REPORT_SIZE (7) */ - 0x81, 0x03, /* INPUT (Cnst,Var,Abs,Vol) */ - - /* tamper key */ - 0x85, 0x16, /* REPORT_ID (0x16) */ - 0x09, 0x06, /* USAGE (Push Button) */ - 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ - 0x25, 0x01, /* LOGICAL_MAXIMUM (1) */ - 0x75, 0x01, /* REPORT_SIZE (1) */ - 0x81, 0x02, /* INPUT (Data,Var,Abs,Vol) */ - - 0x75, 0x07, /* REPORT_SIZE (7) */ - 0x81, 0x03, /* INPUT (Cnst,Var,Abs,Vol) */ - - 0xc0 /* END_COLLECTION */ -}; - -/* local function prototypes ('static') */ -static uint8_t custom_hid_init (usb_dev *udev, uint8_t config_index); -static uint8_t custom_hid_deinit (usb_dev *udev, uint8_t config_index); -static uint8_t custom_hid_req_handler (usb_dev *udev, usb_req *req); - -static uint8_t custom_hid_data_in (usb_dev *udev, uint8_t ep_num); -static uint8_t custom_hid_data_out (usb_dev *udev, uint8_t ep_num); - -usb_class_core usbd_custom_hid_cb = -{ - .command = NO_CMD, - .alter_set = 0U, - - .init = custom_hid_init, - .deinit = custom_hid_deinit, - - .req_proc = custom_hid_req_handler, - - .data_in = custom_hid_data_in, - .data_out = custom_hid_data_out -}; - -/*! - \brief register HID interface operation functions - \param[in] udev: pointer to USB device instance - \param[in] hid_fop: HID operation functions structure - \param[out] none - \retval USB device operation status -*/ -uint8_t custom_hid_itfop_register (usb_dev *udev, hid_fop_handler *hid_fop) -{ - if (NULL != hid_fop) { - udev->dev.user_data = hid_fop; - - return USBD_OK; - } - - return USBD_FAIL; -} - -/*! - \brief send custom HID report - \param[in] udev: pointer to USB device instance - \param[in] report: pointer to HID report - \param[in] len: data length - \param[out] none - \retval USB device operation status -*/ -uint8_t custom_hid_report_send (usb_dev *udev, uint8_t *report, uint32_t len) -{ - usbd_ep_send (udev, CUSTOMHID_IN_EP, report, len); - - return USBD_OK; -} - -/*! - \brief initialize the HID device - \param[in] udev: pointer to USB device instance - \param[in] config_index: configuration index - \param[out] none - \retval USB device operation status -*/ -static uint8_t custom_hid_init (usb_dev *udev, uint8_t config_index) -{ - static __ALIGN_BEGIN custom_hid_handler hid_handler __ALIGN_END; - - memset((void *)&hid_handler, 0U, sizeof(custom_hid_handler)); - - /* initialize the data TX endpoint */ - usbd_ep_setup (udev, &(custom_hid_config_desc.hid_epin)); - - /* Initialize the data RX endpoint */ - usbd_ep_setup (udev, &(custom_hid_config_desc.hid_epout)); - - /* prepare receive data */ - usbd_ep_recev (udev, CUSTOMHID_OUT_EP, hid_handler.data, 2U); - - udev->dev.class_data[CUSTOM_HID_INTERFACE] = (void *)&hid_handler; - - if (udev->dev.user_data != NULL) { - for (uint8_t i = 0U; i < MAX_PERIPH_NUM; i++) { - if (((hid_fop_handler *)udev->dev.user_data)->periph_config[i] != NULL) { - ((hid_fop_handler *)udev->dev.user_data)->periph_config[i](); - } - } - } - - return USBD_OK; -} - -/*! - \brief de-initialize the HID device - \param[in] udev: pointer to USB device instance - \param[in] config_index: configuration index - \param[out] none - \retval USB device operation status -*/ -static uint8_t custom_hid_deinit (usb_dev *udev, uint8_t config_index) -{ - /* deinitialize HID endpoints */ - usbd_ep_clear(udev, CUSTOMHID_IN_EP); - usbd_ep_clear(udev, CUSTOMHID_OUT_EP); - - return USBD_OK; -} - -/*! - \brief handle the HID class-specific requests - \param[in] udev: pointer to USB device instance - \param[in] req: device class-specific request - \param[out] none - \retval USB device operation status -*/ -static uint8_t custom_hid_req_handler (usb_dev *udev, usb_req *req) -{ - usb_transc *transc = &udev->dev.transc_in[0]; - - custom_hid_handler *hid = (custom_hid_handler *)udev->dev.class_data[CUSTOM_HID_INTERFACE]; - - switch (req->bRequest) { - case GET_REPORT: - break; - - case GET_IDLE: - transc->xfer_buf = (uint8_t *)&hid->idlestate; - transc->remain_len = 1U; - break; - - case GET_PROTOCOL: - transc->xfer_buf = (uint8_t *)&hid->protocol; - transc->remain_len = 1U; - break; - - case SET_REPORT: - hid->reportID = (uint8_t)(req->wValue); - break; - - case SET_IDLE: - hid->idlestate = (uint8_t)(req->wValue >> 8U); - break; - - case SET_PROTOCOL: - hid->protocol = (uint8_t)(req->wValue); - break; - - case USB_GET_DESCRIPTOR: - if (USB_DESCTYPE_REPORT == (req->wValue >> 8U)) { - transc->remain_len = USB_MIN(DESC_LEN_REPORT, req->wLength); - transc->xfer_buf = (uint8_t *)customhid_report_descriptor; - } - break; - - default: - return USBD_FAIL; - } - - return USBD_OK; -} - -/*! - \brief handle custom HID data - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint identifier - \param[out] none - \retval USB device operation status -*/ -static uint8_t custom_hid_data_in (usb_dev *udev, uint8_t ep_num) -{ - return USBD_OK; -} - -/*! - \brief handle custom HID data - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint identifier - \param[out] none - \retval USB device operation status -*/ -static uint8_t custom_hid_data_out (usb_dev *udev, uint8_t ep_num) -{ - custom_hid_handler *hid = (custom_hid_handler *)udev->dev.class_data[CUSTOM_HID_INTERFACE]; - - if ((CUSTOMHID_OUT_EP & 0x7FU) == ep_num) { - switch (hid->data[0]){ - case 0x11U: - if (RESET != hid->data[1]) { - gd_eval_led_on(LED1); - } else { - gd_eval_led_off(LED1); - } - break; - - case 0x12U: - if (RESET != hid->data[1]) { - gd_eval_led_on(LED2); - } else { - gd_eval_led_off(LED2); - } - break; - - case 0x13U: - if (RESET != hid->data[1]) { - gd_eval_led_on(LED3); - } else { - gd_eval_led_off(LED3); - } - break; - - case 0x14U: - break; - - default: - break; - } - - usbd_ep_recev (udev, CUSTOMHID_IN_EP, hid->data, 2U); - - return USBD_OK; - } - - return USBD_FAIL; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Source/standard_hid_core.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Source/standard_hid_core.c deleted file mode 100644 index 213bef747c..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/hid/Source/standard_hid_core.c +++ /dev/null @@ -1,384 +0,0 @@ -/*! - \file standard_hid_core.c - \brief HID class driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "standard_hid_core.h" -#include - -#define USBD_VID 0x28e9U -#define USBD_PID 0x0380U - -/* Note:it should use the C99 standard when compiling the below codes */ -/* USB standard device descriptor */ -__ALIGN_BEGIN const usb_desc_dev hid_dev_desc __ALIGN_END = -{ - .header = - { - .bLength = USB_DEV_DESC_LEN, - .bDescriptorType = USB_DESCTYPE_DEV - }, - .bcdUSB = 0x0200U, - .bDeviceClass = 0x00U, - .bDeviceSubClass = 0x00U, - .bDeviceProtocol = 0x00U, - .bMaxPacketSize0 = USB_FS_EP0_MAX_LEN, - .idVendor = USBD_VID, - .idProduct = USBD_PID, - .bcdDevice = 0x0100U, - .iManufacturer = STR_IDX_MFC, - .iProduct = STR_IDX_PRODUCT, - .iSerialNumber = STR_IDX_SERIAL, - .bNumberConfigurations = USBD_CFG_MAX_NUM -}; - -__ALIGN_BEGIN const usb_hid_desc_config_set hid_config_desc __ALIGN_END = -{ - .config = - { - .header = - { - .bLength = sizeof(usb_desc_config), - .bDescriptorType = USB_DESCTYPE_CONFIG - }, - .wTotalLength = USB_HID_CONFIG_DESC_LEN, - .bNumInterfaces = 0x01U, - .bConfigurationValue = 0x01U, - .iConfiguration = 0x00U, - .bmAttributes = 0xA0U, - .bMaxPower = 0x32U - }, - - .hid_itf = - { - .header = - { - .bLength = sizeof(usb_desc_itf), - .bDescriptorType = USB_DESCTYPE_ITF - }, - .bInterfaceNumber = 0x00U, - .bAlternateSetting = 0x00U, - .bNumEndpoints = 0x01U, - .bInterfaceClass = USB_HID_CLASS, - .bInterfaceSubClass = USB_HID_SUBCLASS_BOOT_ITF, - .bInterfaceProtocol = USB_HID_PROTOCOL_KEYBOARD, - .iInterface = 0x00U - }, - - .hid_vendor = - { - .header = - { - .bLength = sizeof(usb_desc_hid), - .bDescriptorType = USB_DESCTYPE_HID - }, - .bcdHID = 0x0111U, - .bCountryCode = 0x00U, - .bNumDescriptors = 0x01U, - .bDescriptorType = USB_DESCTYPE_REPORT, - .wDescriptorLength = USB_HID_REPORT_DESC_LEN, - }, - - .hid_epin = - { - .header = - { - .bLength = sizeof(usb_desc_ep), - .bDescriptorType = USB_DESCTYPE_EP - }, - .bEndpointAddress = HID_IN_EP, - .bmAttributes = USB_EP_ATTR_INT, - .wMaxPacketSize = HID_IN_PACKET, - .bInterval = 0x40U - } -}; - -/* USB language ID Descriptor */ -static __ALIGN_BEGIN const usb_desc_LANGID usbd_language_id_desc __ALIGN_END = -{ - .header = - { - .bLength = sizeof(usb_desc_LANGID), - .bDescriptorType = USB_DESCTYPE_STR - }, - .wLANGID = ENG_LANGID -}; - -/* USB manufacture string */ -static __ALIGN_BEGIN const usb_desc_str manufacturer_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(10U), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'i', 'g', 'a', 'D', 'e', 'v', 'i', 'c', 'e'} -}; - -/* USB product string */ -static __ALIGN_BEGIN const usb_desc_str product_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(17U), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'D', '3', '2', '-','U', 'S', 'B', '_', 'K', 'e', 'y', 'b', 'o', 'a', 'r', 'd'} -}; - -/* USBD serial string */ -static __ALIGN_BEGIN usb_desc_str serial_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(12U), - .bDescriptorType = USB_DESCTYPE_STR, - } -}; - -void *const usbd_hid_strings[] = -{ - [STR_IDX_LANGID] = (uint8_t *)&usbd_language_id_desc, - [STR_IDX_MFC] = (uint8_t *)&manufacturer_string, - [STR_IDX_PRODUCT] = (uint8_t *)&product_string, - [STR_IDX_SERIAL] = (uint8_t *)&serial_string -}; - -usb_desc hid_desc = { - .dev_desc = (uint8_t *)&hid_dev_desc, - .config_desc = (uint8_t *)&hid_config_desc, - .strings = usbd_hid_strings -}; - -__ALIGN_BEGIN const uint8_t hid_report_desc[USB_HID_REPORT_DESC_LEN] __ALIGN_END = -{ - 0x05, 0x01, /* USAGE_PAGE (Generic Desktop) */ - 0x09, 0x06, /* USAGE (Keyboard) */ - 0xa1, 0x01, /* COLLECTION (Application) */ - - 0x05, 0x07, /* USAGE_PAGE (Keyboard/Keypad) */ - 0x19, 0xe0, /* USAGE_MINIMUM (Keyboard LeftControl) */ - 0x29, 0xe7, /* USAGE_MAXIMUM (Keyboard Right GUI) */ - 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ - 0x25, 0x01, /* LOGICAL_MAXIMUM (1) */ - 0x95, 0x08, /* REPORT_COUNT (8) */ - 0x75, 0x01, /* REPORT_SIZE (1) */ - 0x81, 0x02, /* INPUT (Data,Var,Abs) */ - - 0x95, 0x01, /* REPORT_COUNT (1) */ - 0x75, 0x08, /* REPORT_SIZE (8) */ - 0x81, 0x03, /* INPUT (Cnst,Var,Abs) */ - - 0x95, 0x06, /* REPORT_COUNT (6) */ - 0x75, 0x08, /* REPORT_SIZE (8) */ - 0x25, 0xFF, /* LOGICAL_MAXIMUM (255) */ - 0x19, 0x00, /* USAGE_MINIMUM (Reserved (no event indicated)) */ - 0x29, 0x65, /* USAGE_MAXIMUM (Keyboard Application) */ - 0x81, 0x00, /* INPUT (Data,Ary,Abs) */ - - 0xc0 /* END_COLLECTION */ -}; - -/* local function prototypes ('static') */ -static uint8_t hid_init (usb_dev *udev, uint8_t config_index); -static uint8_t hid_deinit (usb_dev *udev, uint8_t config_index); -static uint8_t hid_req (usb_dev *udev, usb_req *req); -static uint8_t hid_data_in (usb_dev *udev, uint8_t ep_num); - -usb_class_core usbd_hid_cb = { - .command = NO_CMD, - .alter_set = 0U, - - .init = hid_init, - .deinit = hid_deinit, - .req_proc = hid_req, - .data_in = hid_data_in -}; - -/*! - \brief register HID interface operation functions - \param[in] udev: pointer to USB device instance - \param[in] hid_fop: HID operation function structure - \param[out] none - \retval USB device operation status -*/ -uint8_t hid_itfop_register (usb_dev *udev, hid_fop_handler *hid_fop) -{ - if (NULL != hid_fop) { - udev->dev.user_data = (void *)hid_fop; - - return USBD_OK; - } - - return USBD_FAIL; -} - -/*! - \brief send keyboard report - \param[in] udev: pointer to USB device instance - \param[in] report: pointer to HID report - \param[in] len: data length - \param[out] none - \retval USB device operation status -*/ -uint8_t hid_report_send (usb_dev *udev, uint8_t *report, uint32_t len) -{ - standard_hid_handler *hid = (standard_hid_handler *)udev->dev.class_data[USBD_HID_INTERFACE]; - - hid->prev_transfer_complete = 0U; - - usbd_ep_send(udev, HID_IN_EP, report, len); - - return USBD_OK; -} - -/*! - \brief initialize the HID device - \param[in] udev: pointer to USB device instance - \param[in] config_index: configuration index - \param[out] none - \retval USB device operation status -*/ -static uint8_t hid_init (usb_dev *udev, uint8_t config_index) -{ - static __ALIGN_BEGIN standard_hid_handler hid_handler __ALIGN_END; - - memset((void *)&hid_handler, 0U, sizeof(standard_hid_handler)); - - /* initialize the data TX endpoint */ - usbd_ep_setup (udev, &(hid_config_desc.hid_epin)); - - hid_handler.prev_transfer_complete = 1U; - - udev->dev.class_data[USBD_HID_INTERFACE] = (void *)&hid_handler; - - if (NULL != udev->dev.user_data) { - ((hid_fop_handler *)udev->dev.user_data)->hid_itf_config(); - } - - return USBD_OK; -} - -/*! - \brief de-initialize the HID device - \param[in] udev: pointer to USB device instance - \param[in] config_index: configuration index - \param[out] none - \retval USB device operation status -*/ -static uint8_t hid_deinit (usb_dev *udev, uint8_t config_index) -{ - /* deinitialize HID endpoints */ - usbd_ep_clear(udev, HID_IN_EP); - - return USBD_OK; -} - -/*! - \brief handle the HID class-specific requests - \param[in] udev: pointer to USB device instance - \param[in] req: device class-specific request - \param[out] none - \retval USB device operation status -*/ -static uint8_t hid_req (usb_dev *udev, usb_req *req) -{ - usb_transc *transc = &udev->dev.transc_in[0]; - - standard_hid_handler *hid = (standard_hid_handler *)udev->dev.class_data[USBD_HID_INTERFACE]; - - switch (req->bRequest) { - case GET_REPORT: - /* no use for this driver */ - break; - - case GET_IDLE: - transc->xfer_buf = (uint8_t *)&hid->idle_state; - - transc->remain_len = 1U; - break; - - case GET_PROTOCOL: - transc->xfer_buf = (uint8_t *)&hid->protocol; - - transc->remain_len = 1U; - break; - - case SET_REPORT: - /* no use for this driver */ - break; - - case SET_IDLE: - hid->idle_state = (uint8_t)(req->wValue >> 8U); - break; - - case SET_PROTOCOL: - hid->protocol = (uint8_t)(req->wValue); - break; - - case USB_GET_DESCRIPTOR: - if (USB_DESCTYPE_REPORT == (req->wValue >> 8U)) { - transc->remain_len = USB_MIN(USB_HID_REPORT_DESC_LEN, req->wLength); - transc->xfer_buf = (uint8_t *)hid_report_desc; - - return REQ_SUPP; - } - break; - - default: - break; - } - - return USBD_OK; -} - -/*! - \brief handle data stage - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint identifier - \param[out] none - \retval USB device operation status -*/ -static uint8_t hid_data_in (usb_dev *udev, uint8_t ep_num) -{ - standard_hid_handler *hid = (standard_hid_handler *)udev->dev.class_data[USBD_HID_INTERFACE]; - - if (0U != hid->data[2]) { - hid->data[2] = 0x00U; - - usbd_ep_send(udev, HID_IN_EP, hid->data, HID_IN_PACKET); - } else { - hid->prev_transfer_complete = 1U; - } - - return USBD_OK; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/iap/Include/usb_iap_core.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/iap/Include/usb_iap_core.h deleted file mode 100644 index 7b0a286807..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/iap/Include/usb_iap_core.h +++ /dev/null @@ -1,93 +0,0 @@ -/*! - \file usb_iap_core.h - \brief the header file of IAP driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USB_IAP_CORE_H -#define __USB_IAP_CORE_H - -#include "usbd_enum.h" -#include "usb_hid.h" - -#define USB_SERIAL_STRING_SIZE 0x06U - -#ifdef USE_USB_FS - #define USB_DESC_LEN_IAP_REPORT 35U -#elif defined(USE_USB_HS) - #define USB_DESC_LEN_IAP_REPORT 36U -#else - #error "please select 'USE_USB_FS' or 'USE_USB_HS'" -#endif - -#define USB_DESC_LEN_IAP_CONFIG_SET 41U - -/* special commands with download request */ -#define IAP_OPTION_BYTE1 0x01U -#define IAP_ERASE 0x02U -#define IAP_DNLOAD 0x03U -#define IAP_LEAVE 0x04U -#define IAP_GETBIN_ADDRESS 0x05U -#define IAP_OPTION_BYTE2 0x06U - -typedef struct -{ - uint8_t option_byte[IAP_IN_PACKET]; - - /* state machine variables */ - uint8_t dev_status[IAP_IN_PACKET]; - uint8_t bin_addr[IAP_IN_PACKET]; - - uint8_t report_buf[IAP_OUT_PACKET + 1U]; - - uint8_t reportID; - uint8_t flag; - - uint32_t protocol; - uint32_t idlestate; - - uint16_t transfer_times; - uint16_t page_count; - uint16_t lps; /* last packet size */ - uint32_t file_length; - uint32_t base_address; -} usbd_iap_handler; - -typedef void (*app_func) (void); - -extern usb_desc iap_desc; -extern usb_class_core iap_class; - -/* function declarations */ -/* send IAP report */ -uint8_t iap_report_send (usb_dev *udev, uint8_t *report, uint32_t len); - -#endif /* __USB_IAP_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/iap/Source/usb_iap_core.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/iap/Source/usb_iap_core.c deleted file mode 100644 index 6230f1bdca..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/iap/Source/usb_iap_core.c +++ /dev/null @@ -1,571 +0,0 @@ -/*! - \file usb_iap_core.c - \brief IAP driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "usb_iap_core.h" -#include "flash_operation.h" -#include - -#define USBD_VID 0x28E9U -#define USBD_PID 0x0228U - -/* Note:it should use the C99 standard when compiling the below codes */ -/* USB standard device descriptor */ -__ALIGN_BEGIN const usb_desc_dev iap_dev_desc __ALIGN_END = -{ - .header = - { - .bLength = USB_DEV_DESC_LEN, - .bDescriptorType = USB_DESCTYPE_DEV - }, - .bcdUSB = 0x0200U, - .bDeviceClass = 0x00U, - .bDeviceSubClass = 0x00U, - .bDeviceProtocol = 0x00U, - .bMaxPacketSize0 = USB_FS_EP0_MAX_LEN, - .idVendor = USBD_VID, - .idProduct = USBD_PID, - .bcdDevice = 0x0100U, - .iManufacturer = STR_IDX_MFC, - .iProduct = STR_IDX_PRODUCT, - .iSerialNumber = STR_IDX_SERIAL, - .bNumberConfigurations = USBD_CFG_MAX_NUM -}; - -__ALIGN_BEGIN const usb_hid_desc_config_set iap_config_desc __ALIGN_END = -{ - .config = - { - .header = - { - .bLength = sizeof(usb_desc_config), - .bDescriptorType = USB_DESCTYPE_CONFIG - }, - .wTotalLength = USB_DESC_LEN_IAP_CONFIG_SET, - .bNumInterfaces = 0x01U, - .bConfigurationValue = 0x01U, - .iConfiguration = 0x00U, - .bmAttributes = 0x80U, - .bMaxPower = 0x32U - }, - - .hid_itf = - { - .header = - { - .bLength = sizeof(usb_desc_itf), - .bDescriptorType = USB_DESCTYPE_ITF - }, - .bInterfaceNumber = 0x00U, - .bAlternateSetting = 0x00U, - .bNumEndpoints = 0x02U, - .bInterfaceClass = USB_HID_CLASS, - .bInterfaceSubClass = 0x00U, - .bInterfaceProtocol = 0x00U, - .iInterface = 0x00U - }, - - .hid_vendor = - { - .header = - { - .bLength = sizeof(usb_desc_hid), - .bDescriptorType = USB_DESCTYPE_HID - }, - .bcdHID = 0x0111U, - .bCountryCode = 0x00U, - .bNumDescriptors = 0x01U, - .bDescriptorType = USB_DESCTYPE_REPORT, - .wDescriptorLength = USB_DESC_LEN_IAP_REPORT, - }, - - .hid_epin = - { - .header = - { - .bLength = sizeof(usb_desc_ep), - .bDescriptorType = USB_DESCTYPE_EP - }, - .bEndpointAddress = IAP_IN_EP, - .bmAttributes = USB_EP_ATTR_INT, - .wMaxPacketSize = IAP_IN_PACKET, - .bInterval = 0x01U - }, - - .hid_epout = - { - .header = - { - .bLength = sizeof(usb_desc_ep), - .bDescriptorType = USB_DESCTYPE_EP - }, - .bEndpointAddress = IAP_OUT_EP, - .bmAttributes = USB_EP_ATTR_INT, - .wMaxPacketSize = IAP_OUT_PACKET, - .bInterval = 0x01U - } -}; - -/* USB language ID Descriptor */ -static __ALIGN_BEGIN const usb_desc_LANGID usbd_language_id_desc __ALIGN_END = -{ - .header = - { - .bLength = sizeof(usb_desc_LANGID), - .bDescriptorType = USB_DESCTYPE_STR - }, - .wLANGID = ENG_LANGID -}; - -/* USB manufacture string */ -static __ALIGN_BEGIN const usb_desc_str manufacturer_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(10U), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'i', 'g', 'a', 'D', 'e', 'v', 'i', 'c', 'e'} -}; - -/* USB product string */ -static __ALIGN_BEGIN const usb_desc_str product_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(12U), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'D', '3', '2', '-', 'U', 'S', 'B', '_', 'I', 'A', 'P'} -}; - -/* USBD serial string */ -static __ALIGN_BEGIN usb_desc_str serial_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(2U), - .bDescriptorType = USB_DESCTYPE_STR, - } -}; - -void *const usbd_iap_strings[] = -{ - [STR_IDX_LANGID] = (uint8_t *)&usbd_language_id_desc, - [STR_IDX_MFC] = (uint8_t *)&manufacturer_string, - [STR_IDX_PRODUCT] = (uint8_t *)&product_string, - [STR_IDX_SERIAL] = (uint8_t *)&serial_string -}; - -usb_desc iap_desc = { - .dev_desc = (uint8_t *)&iap_dev_desc, - .config_desc = (uint8_t *)&iap_config_desc, - .strings = usbd_iap_strings -}; - -/* local function prototypes ('static') */ -static uint8_t iap_init (usb_dev *udev, uint8_t config_index); -static uint8_t iap_deinit (usb_dev *udev, uint8_t config_index); -static uint8_t iap_req_handler (usb_dev *udev, usb_req *req); -static uint8_t iap_data_out (usb_dev *udev, uint8_t ep_num); - -/* IAP requests management functions */ -static void iap_req_erase (usb_dev *udev); -static void iap_req_dnload (usb_dev *udev); -static void iap_req_optionbyte(usb_dev *udev, uint8_t option_num); -static void iap_req_leave (usb_dev *udev); -static void iap_address_send (usb_dev *udev); - -usb_class_core iap_class = { - .init = iap_init, - .deinit = iap_deinit, - .req_proc = iap_req_handler, - .data_out = iap_data_out -}; - -/* USB custom HID device report descriptor */ -__ALIGN_BEGIN const uint8_t iap_report_desc[USB_DESC_LEN_IAP_REPORT] __ALIGN_END = -{ - 0x05, 0x01, /* USAGE_PAGE (Generic Desktop) */ - 0x09, 0x00, /* USAGE (Custom Device) */ - 0xa1, 0x01, /* COLLECTION (Application) */ - - /* IAP command and data */ - 0x85, 0x01, /* REPORT_ID (0x01) */ - 0x09, 0x01, /* USAGE (IAP command) */ - 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ - 0x25, 0xff, /* LOGICAL_MAXIMUM (255) */ - 0x75, 0x08, /* REPORT_SIZE (8) */ -#ifdef USE_USB_FS - 0x95, REPORT_OUT_COUNT, -#else - #ifdef USE_ULPI_PHY - 0x96, BYTE_LOW(REPORT_OUT_COUNT), BYTE_HIGH(REPORT_OUT_COUNT), - #elif defined(USE_EMBEDDED_PHY) - 0x95, REPORT_OUT_COUNT, - #endif -#endif - 0x91, 0x82, /* OUTPUT (Data,Var,Abs,Vol) */ - - /* device status and option byte */ - 0x85, 0x02, /* REPORT_ID (0x02) */ - 0x09, 0x02, /* USAGE (Status and option byte) */ - 0x15, 0x00, /* LOGICAL_MINIMUM (0) */ - 0x25, 0xff, /* LOGICAL_MAXIMUM (255) */ - 0x75, 0x08, /* REPORT_SIZE (8) */ - 0x95, REPORT_IN_COUNT, /* REPORT_COUNT (23) */ - 0x81, 0x82, /* INPUT (Data,Var,Abs,Vol) */ - - 0xc0 /* END_COLLECTION */ -}; - -/*! - \brief send IAP report - \param[in] udev: pointer to USB device instance - \param[in] report: pointer to HID report - \param[in] len: data length - \param[out] none - \retval USB device operation status -*/ -uint8_t iap_report_send (usb_dev *udev, uint8_t *report, uint32_t len) -{ - usbd_ep_send (udev, IAP_IN_EP, report, len); - - return USBD_OK; -} - -/*! - \brief initialize the IAP device - \param[in] udev: pointer to USB device instance - \param[in] config_index: configuration index - \param[out] none - \retval USB device operation status -*/ -static uint8_t iap_init (usb_dev *udev, uint8_t config_index) -{ - static __ALIGN_BEGIN usbd_iap_handler iap_handler __ALIGN_END; - - /* initialize TX endpoint */ - usbd_ep_setup(udev, &(iap_config_desc.hid_epin)); - - /* initialize RX endpoint */ - usbd_ep_setup(udev, &(iap_config_desc.hid_epout)); - - /* unlock the internal flash */ - fmc_unlock(); - - memset((void *)&iap_handler, 0U, sizeof(usbd_iap_handler)); - - /* prepare receive data */ - usbd_ep_recev(udev, IAP_OUT_EP, iap_handler.report_buf, IAP_OUT_PACKET); - - iap_handler.base_address = APP_LOADED_ADDR; - - udev->dev.class_data[USBD_IAP_INTERFACE] = (void *)&iap_handler; - - return USBD_OK; -} - -/*! - \brief deinitialize the IAP device - \param[in] udev: pointer to USB device instance - \param[in] config_index: configuration index - \param[out] none - \retval USB device operation status -*/ -static uint8_t iap_deinit (usb_dev *udev, uint8_t config_index) -{ - /* deinitialize IAP endpoints */ - usbd_ep_clear (udev, IAP_IN_EP); - usbd_ep_clear (udev, IAP_OUT_EP); - - /* lock the internal flash */ - fmc_lock(); - - return USBD_OK; -} - -/*! - \brief handle the IAP class-specific requests - \param[in] udev: pointer to USB device instance - \param[in] req: device class-specific request - \param[out] none - \retval USB device operation status -*/ -static uint8_t iap_req_handler (usb_dev *udev, usb_req *req) -{ - usb_transc *transc = &udev->dev.transc_in[0]; - - usbd_iap_handler *iap = (usbd_iap_handler *)udev->dev.class_data[USBD_IAP_INTERFACE]; - - switch (req->bRequest) { - case GET_REPORT: - /* no use for this driver */ - break; - - case GET_IDLE: - transc->xfer_buf = (uint8_t *)&iap->idlestate; - transc->remain_len = 1U; - break; - - case GET_PROTOCOL: - transc->xfer_buf = (uint8_t *)&iap->protocol; - transc->remain_len = 1U; - break; - - case SET_REPORT: - iap->reportID = (uint8_t)(req->wValue); - break; - - case SET_IDLE: - iap->idlestate = (uint8_t)(req->wValue >> 8U); - break; - - case SET_PROTOCOL: - iap->protocol = (uint8_t)(req->wValue); - break; - - case USB_GET_DESCRIPTOR: - if (USB_DESCTYPE_REPORT == (req->wValue >> 8U)) { - transc->remain_len = USB_MIN(USB_DESC_LEN_IAP_REPORT, req->wLength); - transc->xfer_buf = (uint8_t *)iap_report_desc; - } - break; - - default: - return USBD_FAIL; - } - - return USBD_OK; -} - -/*! - \brief handle data out stage - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint identifier - \param[out] none - \retval none -*/ -static uint8_t iap_data_out (usb_dev *udev ,uint8_t ep_num) -{ - usbd_iap_handler *iap = (usbd_iap_handler *)udev->dev.class_data[USBD_IAP_INTERFACE]; - - if ((IAP_OUT_EP & 0x7FU) == ep_num) { - if (0x01U == iap->report_buf[0]) { - switch (iap->report_buf[1]) { - case IAP_DNLOAD: - iap_req_dnload(udev); - break; - - case IAP_ERASE: - iap_req_erase(udev); - break; - - case IAP_OPTION_BYTE1: - iap_req_optionbyte(udev, 0x01U); - break; - - case IAP_LEAVE: - iap_req_leave(udev); - break; - - case IAP_GETBIN_ADDRESS: - iap_address_send(udev); - break; - - case IAP_OPTION_BYTE2: - iap_req_optionbyte(udev, 0x02U); - break; - - default: - break; - } - } - - usbd_ep_recev(udev, IAP_OUT_EP, iap->report_buf, IAP_OUT_PACKET); - } - - return USBD_OK; -} - -/*! - \brief handle the IAP_DNLOAD request - \param[in] udev: pointer to USB device instance - \param[out] none - \retval none -*/ -static void iap_req_dnload(usb_dev *udev) -{ - usbd_iap_handler *iap = (usbd_iap_handler *)udev->dev.class_data[USBD_IAP_INTERFACE]; - - if (0U != iap->transfer_times) { - if (1U == iap->transfer_times) { - if (0U == iap->lps) { - iap_data_write(&iap->report_buf[2], iap->base_address, TRANSFER_SIZE); - } else { - iap_data_write(&iap->report_buf[2], iap->base_address, iap->file_length % TRANSFER_SIZE); - iap->lps = 0U; - } - - iap->dev_status[0] = 0x02U; - iap->dev_status[1] = 0x02U; - iap_report_send (udev, iap->dev_status, IAP_IN_PACKET); - } else { - iap_data_write(&iap->report_buf[2], iap->base_address, TRANSFER_SIZE); - - iap->base_address += TRANSFER_SIZE; - } - - iap->transfer_times--; - } -} - -/*! - \brief handle the IAP_ERASE request - \param[in] udev: pointer to USB device instance - \param[out] none - \retval none -*/ -static void iap_req_erase(usb_dev *udev) -{ - uint32_t addr = 0U; - - usbd_iap_handler *iap = (usbd_iap_handler *)udev->dev.class_data[USBD_IAP_INTERFACE]; - - /* get base address to erase */ - iap->base_address = iap->report_buf[2]; - iap->base_address |= iap->report_buf[3] << 8U; - iap->base_address |= iap->report_buf[4] << 16U; - iap->base_address |= iap->report_buf[5] << 24U; - - /* get file length */ - iap->file_length = iap->report_buf[7]; - iap->file_length |= iap->report_buf[8] << 8U; - iap->file_length |= iap->report_buf[9] << 16U; - iap->file_length |= iap->report_buf[10] << 24U; - - iap->lps = iap->file_length % TRANSFER_SIZE; - if (0U == iap->lps) { - iap->transfer_times = iap->file_length / TRANSFER_SIZE; - } else { - iap->transfer_times = iap->file_length / TRANSFER_SIZE + 1U; - } - - /* check if the address is in protected area */ - if (IS_PROTECTED_AREA(iap->base_address)) { - return; - } - - addr = iap->base_address; - - /* unlock the flash program erase controller */ - fmc_unlock(); - - flash_erase(addr, iap->file_length, iap->report_buf); - - fmc_lock(); - - iap->dev_status[0] = 0x02U; - iap->dev_status[1] = 0x01U; - - usbd_ep_send(udev, IAP_IN_EP, iap->dev_status, IAP_IN_PACKET); -} - -/*! - \brief handle the IAP_OPTION_BYTE request - \param[in] udev: pointer to USB device instance - \param[in] option_num: number of option byte - \param[out] none - \retval none -*/ -static void iap_req_optionbyte(usb_dev *udev, uint8_t option_num) -{ - uint8_t i = 0U; - uint32_t address = 0U; - - usbd_iap_handler *iap = (usbd_iap_handler *)udev->dev.class_data[USBD_IAP_INTERFACE]; - - iap->option_byte[0]= 0x02U; - - if (0x01U == option_num) { - address = OPT_BYTE_ADDR1; -#ifdef OPT_BYTE_ADDR2 - } else if (0x02U == option_num) { - address = OPT_BYTE_ADDR2; -#endif - } else { - return; - } - - for (i = 1U; i < 17U; i++) { - iap->option_byte[i] = *(uint8_t *)address; - address++; - } - - iap_report_send (udev, iap->option_byte, IAP_IN_PACKET); -} - -/*! - \brief handle the IAP_LEAVE request - \param[in] udev: pointer to USB device instance - \param[out] none - \retval none -*/ -static void iap_req_leave(usb_dev *udev) -{ - /* lock the internal flash */ - fmc_lock(); - - /* generate system reset to allow jumping to the user code */ - NVIC_SystemReset(); -} - -/*! - \brief handle the IAP_SEND_ADDRESS request - \param[in] udev: pointer to USB device instance - \param[out] none - \retval none -*/ -static void iap_address_send(usb_dev *udev) -{ - usbd_iap_handler *iap = (usbd_iap_handler *)udev->dev.class_data[USBD_IAP_INTERFACE]; - - iap->bin_addr[0] = 0x02U; - - iap->bin_addr[1] = (uint8_t)(APP_LOADED_ADDR); - iap->bin_addr[2] = (uint8_t)(APP_LOADED_ADDR >> 8U); - iap->bin_addr[3] = (uint8_t)(APP_LOADED_ADDR >> 16U); - iap->bin_addr[4] = (uint8_t)(APP_LOADED_ADDR >> 24U); - - iap_report_send (udev, iap->bin_addr, IAP_IN_PACKET); -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_bbb.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_bbb.h deleted file mode 100644 index 97402f0a54..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_bbb.h +++ /dev/null @@ -1,101 +0,0 @@ -/*! - \file usbd_msc_bbb.h - \brief the header file of the usbd_msc_bot.c file - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBD_MSC_BBB_H -#define __USBD_MSC_BBB_H - -#include "gd32_usbd_core.h" -#include "msc_bbb.h" -#include "usbd_msc_mem.h" -#include "usbd_msc_scsi.h" - -/* MSC BBB state */ -enum msc_bbb_state { - BBB_IDLE = 0U, /*!< idle state */ - BBB_DATA_OUT, /*!< data OUT state */ - BBB_DATA_IN, /*!< data IN state */ - BBB_LAST_DATA_IN, /*!< last data IN state */ - BBB_SEND_DATA /*!< send immediate data state */ -}; - -/* MSC BBB status */ -enum msc_bbb_status { - BBB_STATUS_NORMAL = 0U, /*!< normal status */ - BBB_STATUS_RECOVERY, /*!< recovery status*/ - BBB_STATUS_ERROR /*!< error status */ -}; - -typedef struct -{ - uint8_t bbb_data[MSC_MEDIA_PACKET_SIZE]; - - uint8_t max_lun; - uint8_t bbb_state; - uint8_t bbb_status; - - uint32_t bbb_datalen; - - msc_bbb_cbw bbb_cbw; - msc_bbb_csw bbb_csw; - - uint8_t scsi_sense_head; - uint8_t scsi_sense_tail; - - uint32_t scsi_blk_size[MEM_LUN_NUM]; - uint32_t scsi_blk_nbr[MEM_LUN_NUM]; - - uint32_t scsi_blk_addr; - uint32_t scsi_blk_len; - uint32_t scsi_disk_pop; - - msc_scsi_sense scsi_sense[SENSE_LIST_DEEPTH]; -} usbd_msc_handler; - -/* function declarations */ -/* initialize the bbb process */ -void msc_bbb_init (usb_core_driver *udev); -/* reset the BBB machine */ -void msc_bbb_reset (usb_core_driver *udev); -/* deinitialize the BBB machine */ -void msc_bbb_deinit (usb_core_driver *udev); -/* handle BBB data IN stage */ -void msc_bbb_data_in (usb_core_driver *udev, uint8_t ep_num); -/* handle BBB data OUT stage */ -void msc_bbb_data_out (usb_core_driver *udev, uint8_t ep_num); -/* send the CSW(command status wrapper) */ -void msc_bbb_csw_send (usb_core_driver *udev, uint8_t csw_status); -/* complete the clear feature request */ -void msc_bbb_clrfeature (usb_core_driver *udev, uint8_t ep_num); - -#endif /* __USBD_MSC_BBB_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_core.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_core.h deleted file mode 100644 index 235db9eacd..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_core.h +++ /dev/null @@ -1,59 +0,0 @@ -/*! - \file usbd_msc_core.h - \brief the header file of USB MSC device class core functions - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBD_MSC_CORE_H -#define __USBD_MSC_CORE_H - -#include "gd32_usbd_core.h" -#include "usb_msc.h" - -#define USB_MSC_CONFIG_DESC_SIZE 32U - -#define MSC_EPIN_SIZE MSC_DATA_PACKET_SIZE -#define MSC_EPOUT_SIZE MSC_DATA_PACKET_SIZE - -/* USB configuration descriptor structure */ -typedef struct -{ - usb_desc_config config; - - usb_desc_itf msc_itf; - usb_desc_ep msc_epin; - usb_desc_ep msc_epout; -} usb_desc_config_set; - -extern usb_desc msc_desc; -extern usb_class_core msc_class; - -#endif /* __USBD_MSC_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_data.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_data.h deleted file mode 100644 index b2598eb85d..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_data.h +++ /dev/null @@ -1,49 +0,0 @@ -/*! - \file usbd_msc_data.h - \brief the header file of the usbd_msc_data.c file - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBD_MSC_DATA_H -#define __USBD_MSC_DATA_H - -#include "usbd_conf.h" - -#define MODE_SENSE6_LENGTH 8U -#define MODE_SENSE10_LENGTH 8U -#define INQUIRY_PAGE00_LENGTH 96U -#define FORMAT_CAPACITIES_LENGTH 20U - -extern const uint8_t msc_page00_inquiry_data[]; -extern const uint8_t msc_mode_sense6_data[]; -extern const uint8_t msc_mode_sense10_data[]; - -#endif /* __USBD_MSC_DATA_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_mem.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_mem.h deleted file mode 100644 index 633e31a0f1..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_mem.h +++ /dev/null @@ -1,59 +0,0 @@ -/*! - \file usbd_msc_mem.h - \brief header file for storage memory - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBD_MSC_MEM_H -#define __USBD_MSC_MEM_H - -#include "usbd_conf.h" - -#define USBD_STD_INQUIRY_LENGTH 36U - -typedef struct -{ - int8_t (*mem_init) (uint8_t lun); - int8_t (*mem_ready) (uint8_t lun); - int8_t (*mem_protected) (uint8_t lun); - int8_t (*mem_read) (uint8_t lun, uint8_t *buf, uint32_t block_addr, uint16_t block_len); - int8_t (*mem_write) (uint8_t lun, uint8_t *buf, uint32_t block_addr, uint16_t block_len); - int8_t (*mem_maxlun) (void); - - uint8_t *mem_toc_data; - uint8_t *mem_inquiry_data[MEM_LUN_NUM]; - uint32_t mem_block_size[MEM_LUN_NUM]; - uint32_t mem_block_len[MEM_LUN_NUM]; -}usbd_mem_cb; - -extern usbd_mem_cb *usbd_mem_fops; - -#endif /* __USBD_MSC_MEM_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_scsi.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_scsi.h deleted file mode 100644 index a423456c2a..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Include/usbd_msc_scsi.h +++ /dev/null @@ -1,50 +0,0 @@ -/*! - \file usbd_msc_scsi.h - \brief the header file of the usbd_msc_scsi.c file - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBD_MSC_SCSI_H -#define __USBD_MSC_SCSI_H - -#include "usbd_msc_data.h" -#include "usbd_msc_bbb.h" -#include "msc_scsi.h" - -#define SENSE_LIST_DEEPTH 4U - -/* function declarations */ -/* process SCSI commands */ -int8_t scsi_process_cmd (usb_core_driver *udev, uint8_t lun, uint8_t *cmd); -/* load the last error code in the error list */ -void scsi_sense_code (usb_core_driver *udev, uint8_t lun, uint8_t skey, uint8_t asc); - -#endif /* __USBD_MSC_SCSI_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_bbb.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_bbb.c deleted file mode 100644 index fd47623c29..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_bbb.c +++ /dev/null @@ -1,287 +0,0 @@ -/*! - \file usbd_msc_bbb.c - \brief USB BBB(Bulk/Bulk/Bulk) protocol core functions - \note BBB means Bulk-only transport protocol for USB MSC - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "usbd_enum.h" -#include "usbd_msc_bbb.h" - -/* local function prototypes ('static') */ -static void msc_bbb_cbw_decode (usb_core_driver *udev); -static void msc_bbb_data_send (usb_core_driver *udev, uint8_t *pbuf, uint32_t Len); -static void msc_bbb_abort (usb_core_driver *udev); - -/*! - \brief initialize the bbb process - \param[in] udev: pointer to USB device instance - \param[out] none - \retval none -*/ -void msc_bbb_init (usb_core_driver *udev) -{ - uint8_t lun_num; - - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - msc->bbb_state = BBB_IDLE; - msc->bbb_status = BBB_STATUS_NORMAL; - - /* initializes the storage logic unit */ - for(lun_num = 0U; lun_num < MEM_LUN_NUM; lun_num++) { - usbd_mem_fops->mem_init(lun_num); - } - - /* flush the RX FIFO */ - usbd_fifo_flush (udev, MSC_OUT_EP); - - /* flush the TX FIFO */ - usbd_fifo_flush (udev, MSC_IN_EP); - - /* prepare endpoint to receive the first BBB CBW */ - usbd_ep_recev (udev, MSC_OUT_EP, (uint8_t *)&msc->bbb_cbw, BBB_CBW_LENGTH); -} - -/*! - \brief reset the BBB machine - \param[in] udev: pointer to USB device instance - \param[out] none - \retval none -*/ -void msc_bbb_reset (usb_core_driver *udev) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - msc->bbb_state = BBB_IDLE; - msc->bbb_status = BBB_STATUS_RECOVERY; - - /* prepare endpoint to receive the first BBB command */ - usbd_ep_recev (udev, MSC_OUT_EP, (uint8_t *)&msc->bbb_cbw, BBB_CBW_LENGTH); -} - -/*! - \brief de-initialize the BBB machine - \param[in] udev: pointer to USB device instance - \param[out] none - \retval none -*/ -void msc_bbb_deinit (usb_core_driver *udev) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - msc->bbb_state = BBB_IDLE; -} - -/*! - \brief handle BBB data IN stage - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint number - \param[out] none - \retval none -*/ -void msc_bbb_data_in (usb_core_driver *udev, uint8_t ep_num) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - switch (msc->bbb_state) { - case BBB_DATA_IN: - if (scsi_process_cmd (udev, msc->bbb_cbw.bCBWLUN, &msc->bbb_cbw.CBWCB[0]) < 0) { - msc_bbb_csw_send (udev, CSW_CMD_FAILED); - } - break; - - case BBB_SEND_DATA: - case BBB_LAST_DATA_IN: - msc_bbb_csw_send (udev, CSW_CMD_PASSED); - break; - - default: - break; - } -} - -/*! - \brief handle BBB data OUT stage - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint number - \param[out] none - \retval none -*/ -void msc_bbb_data_out (usb_core_driver *udev, uint8_t ep_num) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - switch (msc->bbb_state) { - case BBB_IDLE: - msc_bbb_cbw_decode (udev); - break; - - case BBB_DATA_OUT: - if (scsi_process_cmd (udev, msc->bbb_cbw.bCBWLUN, &msc->bbb_cbw.CBWCB[0]) < 0) { - msc_bbb_csw_send (udev, CSW_CMD_FAILED); - } - break; - - default: - break; - } -} - -/*! - \brief send the CSW(command status wrapper) - \param[in] udev: pointer to USB device instance - \param[in] csw_status: CSW status - \param[out] none - \retval none -*/ -void msc_bbb_csw_send (usb_core_driver *udev, uint8_t csw_status) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - msc->bbb_csw.dCSWSignature = BBB_CSW_SIGNATURE; - msc->bbb_csw.bCSWStatus = csw_status; - msc->bbb_state = BBB_IDLE; - - usbd_ep_send (udev, MSC_IN_EP, (uint8_t *)&msc->bbb_csw, BBB_CSW_LENGTH); - - /* prepare endpoint to receive next command */ - usbd_ep_recev (udev, MSC_OUT_EP, (uint8_t *)&msc->bbb_cbw, BBB_CBW_LENGTH); -} - -/*! - \brief complete the clear feature request - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint number - \param[out] none - \retval none -*/ -void msc_bbb_clrfeature (usb_core_driver *udev, uint8_t ep_num) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - if (msc->bbb_status == BBB_STATUS_ERROR)/* bad CBW signature */ { - usbd_ep_stall(udev, MSC_IN_EP); - - msc->bbb_status = BBB_STATUS_NORMAL; - } else if(((ep_num & 0x80U) == 0x80U) && (msc->bbb_status != BBB_STATUS_RECOVERY)) { - msc_bbb_csw_send (udev, CSW_CMD_FAILED); - } else { - - } -} - -/*! - \brief decode the CBW command and set the BBB state machine accordingly - \param[in] udev: pointer to USB device instance - \param[out] none - \retval none -*/ -static void msc_bbb_cbw_decode (usb_core_driver *udev) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - msc->bbb_csw.dCSWTag = msc->bbb_cbw.dCBWTag; - msc->bbb_csw.dCSWDataResidue = msc->bbb_cbw.dCBWDataTransferLength; - - if ((BBB_CBW_LENGTH != usbd_rxcount_get (udev, MSC_OUT_EP)) || - (BBB_CBW_SIGNATURE != msc->bbb_cbw.dCBWSignature)|| - (msc->bbb_cbw.bCBWLUN > 1U) || - (msc->bbb_cbw.bCBWCBLength < 1U) || - (msc->bbb_cbw.bCBWCBLength > 16U)) { - /* illegal command handler */ - scsi_sense_code (udev, msc->bbb_cbw.bCBWLUN, ILLEGAL_REQUEST, INVALID_CDB); - - msc->bbb_status = BBB_STATUS_ERROR; - - msc_bbb_abort (udev); - } else { - if (scsi_process_cmd (udev, msc->bbb_cbw.bCBWLUN, &msc->bbb_cbw.CBWCB[0]) < 0) { - msc_bbb_abort (udev); - } else if ((BBB_DATA_IN != msc->bbb_state) && - (BBB_DATA_OUT != msc->bbb_state) && - (BBB_LAST_DATA_IN != msc->bbb_state)) { /* burst xfer handled internally */ - if (msc->bbb_datalen > 0U) { - msc_bbb_data_send (udev, msc->bbb_data, msc->bbb_datalen); - } else if (0U == msc->bbb_datalen) { - msc_bbb_csw_send (udev, CSW_CMD_PASSED); - } else { - - } - } else { - - } - } -} - -/*! - \brief send the requested data - \param[in] udev: pointer to USB device instance - \param[in] buf: pointer to data buffer - \param[in] len: data length - \param[out] none - \retval none -*/ -static void msc_bbb_data_send (usb_core_driver *udev, uint8_t *buf, uint32_t len) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - len = USB_MIN (msc->bbb_cbw.dCBWDataTransferLength, len); - - msc->bbb_csw.dCSWDataResidue -= len; - msc->bbb_csw.bCSWStatus = CSW_CMD_PASSED; - msc->bbb_state = BBB_SEND_DATA; - - usbd_ep_send (udev, MSC_IN_EP, buf, len); -} - -/*! - \brief abort the current transfer - \param[in] udev: pointer to USB device instance - \param[out] none - \retval none -*/ -static void msc_bbb_abort (usb_core_driver *udev) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - if ((0U == msc->bbb_cbw.bmCBWFlags) && - (0U != msc->bbb_cbw.dCBWDataTransferLength) && - (BBB_STATUS_NORMAL == msc->bbb_status)) { - usbd_ep_stall(udev, MSC_OUT_EP); - } - - usbd_ep_stall(udev, MSC_IN_EP); - - if (msc->bbb_status == BBB_STATUS_ERROR) { - usbd_ep_recev (udev, MSC_OUT_EP, (uint8_t *)&msc->bbb_cbw, BBB_CBW_LENGTH); - } -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_core.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_core.c deleted file mode 100644 index fd26bc5646..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_core.c +++ /dev/null @@ -1,322 +0,0 @@ -/*! - \file usbd_msc_core.c - \brief USB MSC device class core functions - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "usbd_enum.h" -#include "usbd_msc_bbb.h" -#include "usbd_msc_core.h" -#include - -#define USBD_VID 0x28E9U -#define USBD_PID 0x028FU - -/* local function prototypes ('static') */ -static uint8_t msc_core_init (usb_dev *udev, uint8_t config_index); -static uint8_t msc_core_deinit (usb_dev *udev, uint8_t config_index); -static uint8_t msc_core_req (usb_dev *udev, usb_req *req); -static uint8_t msc_core_in (usb_dev *udev, uint8_t ep_num); -static uint8_t msc_core_out (usb_dev *udev, uint8_t ep_num); - -usb_class_core msc_class = -{ - .init = msc_core_init, - .deinit = msc_core_deinit, - - .req_proc = msc_core_req, - - .data_in = msc_core_in, - .data_out = msc_core_out -}; - -/* note: it should use the C99 standard when compiling the below codes */ -/* USB standard device descriptor */ -__ALIGN_BEGIN const usb_desc_dev msc_dev_desc __ALIGN_END = -{ - .header = { - .bLength = USB_DEV_DESC_LEN, - .bDescriptorType = USB_DESCTYPE_DEV - }, - .bcdUSB = 0x0200U, - .bDeviceClass = 0x00U, - .bDeviceSubClass = 0x00U, - .bDeviceProtocol = 0x00U, - .bMaxPacketSize0 = USB_FS_EP0_MAX_LEN, - .idVendor = USBD_VID, - .idProduct = USBD_PID, - .bcdDevice = 0x0100U, - .iManufacturer = STR_IDX_MFC, - .iProduct = STR_IDX_PRODUCT, - .iSerialNumber = STR_IDX_SERIAL, - .bNumberConfigurations = USBD_CFG_MAX_NUM -}; - -/* USB device configuration descriptor */ -__ALIGN_BEGIN const usb_desc_config_set msc_config_desc __ALIGN_END = -{ - .config = - { - .header = { - .bLength = sizeof(usb_desc_config), - .bDescriptorType = USB_DESCTYPE_CONFIG - }, - .wTotalLength = USB_MSC_CONFIG_DESC_SIZE, - .bNumInterfaces = 0x01U, - .bConfigurationValue = 0x01U, - .iConfiguration = 0x00U, - .bmAttributes = 0xC0U, - .bMaxPower = 0x32U - }, - - .msc_itf = - { - .header = { - .bLength = sizeof(usb_desc_itf), - .bDescriptorType = USB_DESCTYPE_ITF - }, - .bInterfaceNumber = 0x00U, - .bAlternateSetting = 0x00U, - .bNumEndpoints = 0x02U, - .bInterfaceClass = USB_CLASS_MSC, - .bInterfaceSubClass = USB_MSC_SUBCLASS_SCSI, - .bInterfaceProtocol = USB_MSC_PROTOCOL_BBB, - .iInterface = 0x00U - }, - - .msc_epin = - { - .header = { - .bLength = sizeof(usb_desc_ep), - .bDescriptorType = USB_DESCTYPE_EP - }, - .bEndpointAddress = MSC_IN_EP, - .bmAttributes = USB_EP_ATTR_BULK, - .wMaxPacketSize = MSC_EPIN_SIZE, - .bInterval = 0x00U - }, - - .msc_epout = - { - .header = { - .bLength = sizeof(usb_desc_ep), - .bDescriptorType = USB_DESCTYPE_EP - }, - .bEndpointAddress = MSC_OUT_EP, - .bmAttributes = USB_EP_ATTR_BULK, - .wMaxPacketSize = MSC_EPOUT_SIZE, - .bInterval = 0x00U - } -}; - -/* USB language ID descriptor */ -static __ALIGN_BEGIN const usb_desc_LANGID usbd_language_id_desc __ALIGN_END = -{ - .header = - { - .bLength = sizeof(usb_desc_LANGID), - .bDescriptorType = USB_DESCTYPE_STR - }, - .wLANGID = ENG_LANGID -}; - -/* USB manufacture string */ -static __ALIGN_BEGIN const usb_desc_str manufacturer_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(10U), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'i', 'g', 'a', 'D', 'e', 'v', 'i', 'c', 'e'} -}; - -/* USB product string */ -static __ALIGN_BEGIN const usb_desc_str product_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(12U), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'D', '3', '2', '-', 'U', 'S', 'B', '_', 'M', 'S', 'C'} -}; - -/* USBD serial string */ -static __ALIGN_BEGIN usb_desc_str serial_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(12U), - .bDescriptorType = USB_DESCTYPE_STR, - } -}; - -/* USB string descriptor */ -static void *const usbd_msc_strings[] = -{ - [STR_IDX_LANGID] = (uint8_t *)&usbd_language_id_desc, - [STR_IDX_MFC] = (uint8_t *)&manufacturer_string, - [STR_IDX_PRODUCT] = (uint8_t *)&product_string, - [STR_IDX_SERIAL] = (uint8_t *)&serial_string -}; - -usb_desc msc_desc = { - .dev_desc = (uint8_t *)&msc_dev_desc, - .config_desc = (uint8_t *)&msc_config_desc, - .strings = usbd_msc_strings -}; - -static __ALIGN_BEGIN uint8_t usbd_msc_maxlun = 0U __ALIGN_END; - -/*! - \brief initialize the MSC device - \param[in] udev: pointer to USB device instance - \param[in] config_index: configuration index - \param[out] none - \retval USB device operation status -*/ -static uint8_t msc_core_init (usb_dev *udev, uint8_t config_index) -{ - static __ALIGN_BEGIN usbd_msc_handler msc_handler __ALIGN_END; - - memset((void *)&msc_handler, 0U, sizeof(usbd_msc_handler)); - - udev->dev.class_data[USBD_MSC_INTERFACE] = (void *)&msc_handler; - - /* configure MSC TX endpoint */ - usbd_ep_setup (udev, &(msc_config_desc.msc_epin)); - - /* configure MSC RX endpoint */ - usbd_ep_setup (udev, &(msc_config_desc.msc_epout)); - - /* initialize the BBB layer */ - msc_bbb_init(udev); - - return USBD_OK; -} - -/*! - \brief de-initialize the MSC device - \param[in] udev: pointer to USB device instance - \param[in] config_index: configuration index - \param[out] none - \retval USB device operation status -*/ -static uint8_t msc_core_deinit (usb_dev *udev, uint8_t config_index) -{ - /* clear MSC endpoints */ - usbd_ep_clear (udev, MSC_IN_EP); - usbd_ep_clear (udev, MSC_OUT_EP); - - /* deinitialize the BBB layer */ - msc_bbb_deinit(udev); - - return USBD_OK; -} - -/*! - \brief handle the MSC class-specific and standard requests - \param[in] udev: pointer to USB device instance - \param[in] req: device class-specific request - \param[out] none - \retval USB device operation status -*/ -static uint8_t msc_core_req (usb_dev *udev, usb_req *req) -{ - usb_transc *transc = &udev->dev.transc_in[0]; - - switch (req->bRequest) { - case BBB_GET_MAX_LUN : - if((0U == req->wValue) && - (1U == req->wLength) && - (0x80U == (req->bmRequestType & 0x80U))) { - usbd_msc_maxlun = (uint8_t)usbd_mem_fops->mem_maxlun(); - - transc->xfer_buf = &usbd_msc_maxlun; - transc->remain_len = 1U; - } else { - return USBD_FAIL; - } - break; - - case BBB_RESET : - if((0U == req->wValue) && - (0U == req->wLength) && - (0x80U != (req->bmRequestType & 0x80U))) { - msc_bbb_reset(udev); - } else { - return USBD_FAIL; - } - break; - - case USB_CLEAR_FEATURE: - msc_bbb_clrfeature (udev, (uint8_t)req->wIndex); - break; - - default: - return USBD_FAIL; - } - - return USBD_OK; -} - -/*! - \brief handle data in stage - \param[in] udev: pointer to USB device instance - \param[in] ep_num: the endpoint number - \param[out] none - \retval none -*/ -static uint8_t msc_core_in (usb_dev *udev, uint8_t ep_num) -{ - if ((MSC_IN_EP & 0x7FU) == ep_num) { - msc_bbb_data_in(udev, ep_num); - } - - return USBD_OK; -} - -/*! - \brief handle data out stage - \param[in] udev: pointer to USB device instance - \param[in] ep_num: the endpoint number - \param[out] none - \retval none -*/ -static uint8_t msc_core_out (usb_dev *udev, uint8_t ep_num) -{ - if (MSC_OUT_EP == ep_num) { - msc_bbb_data_out (udev, ep_num); - } - - return USBD_OK; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_data.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_data.c deleted file mode 100644 index 0f95ac8db5..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_data.c +++ /dev/null @@ -1,73 +0,0 @@ -/*! - \file usbd_msc_data.c - \brief USB MSC vital inquiry pages and sense data - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "usbd_msc_data.h" - -/* USB mass storage page 0 inquiry data */ -const uint8_t msc_page00_inquiry_data[] = -{ - 0x00U, - 0x00U, - 0x00U, - 0x00U, - (INQUIRY_PAGE00_LENGTH - 4U), - 0x80U, - 0x83U, -}; - -/* USB mass storage sense 6 data */ -const uint8_t msc_mode_sense6_data[] = -{ - 0x00U, - 0x00U, - 0x00U, - 0x00U, - 0x00U, - 0x00U, - 0x00U, - 0x00U -}; - -/* USB mass storage sense 10 data */ -const uint8_t msc_mode_sense10_data[] = -{ - 0x00U, - 0x06U, - 0x00U, - 0x00U, - 0x00U, - 0x00U, - 0x00U, - 0x00U -}; diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_scsi.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_scsi.c deleted file mode 100644 index 44adc519ce..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/msc/Source/usbd_msc_scsi.c +++ /dev/null @@ -1,685 +0,0 @@ -/*! - \file usbd_msc_scsi.c - \brief USB SCSI layer functions - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ -#include "usbd_enum.h" -#include "usbd_msc_bbb.h" -#include "usbd_msc_scsi.h" -#include "usbd_msc_data.h" - -/* local function prototypes ('static') */ -static int8_t scsi_test_unit_ready (usb_core_driver *udev, uint8_t lun, uint8_t *params); -static int8_t scsi_inquiry (usb_core_driver *udev, uint8_t lun, uint8_t *params); -static int8_t scsi_read_format_capacity (usb_core_driver *udev, uint8_t lun, uint8_t *params); -static int8_t scsi_read_capacity10 (usb_core_driver *udev, uint8_t lun, uint8_t *params); -static int8_t scsi_request_sense (usb_core_driver *udev, uint8_t lun, uint8_t *params); -static int8_t scsi_mode_sense6 (usb_core_driver *udev, uint8_t lun, uint8_t *params); -static int8_t scsi_toc_cmd_read (usb_core_driver *udev, uint8_t lun, uint8_t *params); -static int8_t scsi_mode_sense10 (usb_core_driver *udev, uint8_t lun, uint8_t *params); -static int8_t scsi_write10 (usb_core_driver *udev, uint8_t lun, uint8_t *params); -static int8_t scsi_read10 (usb_core_driver *udev, uint8_t lun, uint8_t *params); -static int8_t scsi_verify10 (usb_core_driver *udev, uint8_t lun, uint8_t *params); - -static int8_t scsi_process_read (usb_core_driver *udev, uint8_t lun); -static int8_t scsi_process_write (usb_core_driver *udev, uint8_t lun); - -static inline int8_t scsi_check_address_range (usb_core_driver *udev, uint8_t lun, uint32_t blk_offset, uint16_t blk_nbr); -static inline int8_t scsi_format_cmd (usb_core_driver *udev, uint8_t lun); -static inline int8_t scsi_start_stop_unit (usb_core_driver *udev, uint8_t lun, uint8_t *params); -static inline int8_t scsi_allow_medium_removal (usb_core_driver *udev, uint8_t lun, uint8_t *params); - -/*! - \brief process SCSI commands - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[in] params: command parameters - \param[out] none - \retval status -*/ -int8_t scsi_process_cmd(usb_core_driver *udev, uint8_t lun, uint8_t *params) -{ - switch (params[0]) { - case SCSI_TEST_UNIT_READY: - return scsi_test_unit_ready (udev, lun, params); - - case SCSI_REQUEST_SENSE: - return scsi_request_sense (udev, lun, params); - - case SCSI_INQUIRY: - return scsi_inquiry (udev, lun, params); - - case SCSI_START_STOP_UNIT: - return scsi_start_stop_unit (udev, lun, params); - - case SCSI_ALLOW_MEDIUM_REMOVAL: - return scsi_allow_medium_removal (udev, lun, params); - - case SCSI_MODE_SENSE6: - return scsi_mode_sense6 (udev, lun, params); - - case SCSI_MODE_SENSE10: - return scsi_mode_sense10 (udev, lun, params); - - case SCSI_READ_FORMAT_CAPACITIES: - return scsi_read_format_capacity (udev, lun, params); - - case SCSI_READ_CAPACITY10: - return scsi_read_capacity10 (udev, lun, params); - - case SCSI_READ10: - return scsi_read10 (udev, lun, params); - - case SCSI_WRITE10: - return scsi_write10 (udev, lun, params); - - case SCSI_VERIFY10: - return scsi_verify10 (udev, lun, params); - - case SCSI_FORMAT_UNIT: - return scsi_format_cmd (udev, lun); - - case SCSI_READ_TOC_DATA: - return scsi_toc_cmd_read (udev, lun, params); - - default: - scsi_sense_code (udev, lun, ILLEGAL_REQUEST, INVALID_CDB); - return -1; - } -} - -/*! - \brief load the last error code in the error list - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[in] skey: sense key - \param[in] asc: additional sense key - \param[out] none - \retval none -*/ -void scsi_sense_code (usb_core_driver *udev, uint8_t lun, uint8_t skey, uint8_t asc) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - msc->scsi_sense[msc->scsi_sense_tail].SenseKey = skey; - msc->scsi_sense[msc->scsi_sense_tail].ASC = asc << 8U; - msc->scsi_sense_tail++; - - if (SENSE_LIST_DEEPTH == msc->scsi_sense_tail) { - msc->scsi_sense_tail = 0U; - } -} - -/*! - \brief process SCSI Test Unit Ready command - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[in] params: command parameters - \param[out] none - \retval status -*/ -static int8_t scsi_test_unit_ready (usb_core_driver *udev, uint8_t lun, uint8_t *params) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - /* case 9 : Hi > D0 */ - if (0U != msc->bbb_cbw.dCBWDataTransferLength) { - scsi_sense_code (udev, msc->bbb_cbw.bCBWLUN, ILLEGAL_REQUEST, INVALID_CDB); - - return -1; - } - - if (0 != usbd_mem_fops->mem_ready(lun)) { - scsi_sense_code(udev, lun, NOT_READY, MEDIUM_NOT_PRESENT); - - return -1; - } - - if (1U == msc->scsi_disk_pop) { - usbd_disconnect (udev); - } - - msc->bbb_datalen = 0U; - - return 0; -} - -/*! - \brief process Inquiry command - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[in] params: command parameters - \param[out] none - \retval status -*/ -static int8_t scsi_inquiry (usb_core_driver *udev, uint8_t lun, uint8_t *params) -{ - uint8_t *page = NULL; - uint16_t len = 0U; - - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - if (params[1] & 0x01U) { - page = (uint8_t *)msc_page00_inquiry_data; - - len = INQUIRY_PAGE00_LENGTH; - } else { - page = (uint8_t *)usbd_mem_fops->mem_inquiry_data[lun]; - - len = (uint16_t)(page[4] + 5U); - - if (params[4] <= len) { - len = params[4]; - } - } - - msc->bbb_datalen = len; - - while (len) { - len--; - msc->bbb_data[len] = page[len]; - } - - return 0; -} - -/*! - \brief process Read Capacity 10 command - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[in] params: command parameters - \param[out] none - \retval status -*/ -static int8_t scsi_read_capacity10 (usb_core_driver *udev, uint8_t lun, uint8_t *params) -{ - uint32_t blk_num = usbd_mem_fops->mem_block_len[lun] - 1U; - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - msc->scsi_blk_nbr[lun] = usbd_mem_fops->mem_block_len[lun]; - msc->scsi_blk_size[lun] = usbd_mem_fops->mem_block_size[lun]; - - msc->bbb_data[0] = (uint8_t)(blk_num >> 24U); - msc->bbb_data[1] = (uint8_t)(blk_num >> 16U); - msc->bbb_data[2] = (uint8_t)(blk_num >> 8U); - msc->bbb_data[3] = (uint8_t)(blk_num); - - msc->bbb_data[4] = (uint8_t)(msc->scsi_blk_size[lun] >> 24U); - msc->bbb_data[5] = (uint8_t)(msc->scsi_blk_size[lun] >> 16U); - msc->bbb_data[6] = (uint8_t)(msc->scsi_blk_size[lun] >> 8U); - msc->bbb_data[7] = (uint8_t)(msc->scsi_blk_size[lun]); - - msc->bbb_datalen = 8U; - - return 0; -} - -/*! - \brief process Read Format Capacity command - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[in] params: command parameters - \param[out] none - \retval status -*/ -static int8_t scsi_read_format_capacity (usb_core_driver *udev, uint8_t lun, uint8_t *params) -{ - uint16_t i = 0U; - uint32_t blk_size = usbd_mem_fops->mem_block_size[lun]; - uint32_t blk_num = usbd_mem_fops->mem_block_len[lun]; - uint32_t blk_nbr = blk_num - 1U; - - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - for (i = 0U; i < 12U; i++) { - msc->bbb_data[i] = 0U; - } - - msc->bbb_data[3] = 0x08U; - msc->bbb_data[4] = (uint8_t)(blk_nbr >> 24U); - msc->bbb_data[5] = (uint8_t)(blk_nbr >> 16U); - msc->bbb_data[6] = (uint8_t)(blk_nbr >> 8U); - msc->bbb_data[7] = (uint8_t)(blk_nbr); - - msc->bbb_data[8] = 0x02U; - msc->bbb_data[9] = (uint8_t)(blk_size >> 16U); - msc->bbb_data[10] = (uint8_t)(blk_size >> 8U); - msc->bbb_data[11] = (uint8_t)(blk_size); - - msc->bbb_datalen = 12U; - - return 0; -} - -/*! - \brief process Mode Sense6 command - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[in] params: command parameters - \param[out] none - \retval status -*/ -static int8_t scsi_mode_sense6 (usb_core_driver *udev, uint8_t lun, uint8_t *params) -{ - uint16_t len = 8U; - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - msc->bbb_datalen = len; - - while (len) { - len--; - msc->bbb_data[len] = msc_mode_sense6_data[len]; - } - - return 0; -} - -/*! - \brief process Mode Sense10 command - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[in] params: command parameters - \param[out] none - \retval status -*/ -static int8_t scsi_mode_sense10 (usb_core_driver *udev, uint8_t lun, uint8_t *params) -{ - uint16_t len = 8U; - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - msc->bbb_datalen = len; - - while (len) { - len--; - msc->bbb_data[len] = msc_mode_sense10_data[len]; - } - - return 0; -} - -/*! - \brief process Request Sense command - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[in] params: command parameters - \param[out] none - \retval status -*/ -static int8_t scsi_request_sense (usb_core_driver *udev, uint8_t lun, uint8_t *params) -{ - uint8_t i = 0U; - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - for (i = 0U; i < REQUEST_SENSE_DATA_LEN; i++) { - msc->bbb_data[i] = 0U; - } - - msc->bbb_data[0] = 0x70U; - msc->bbb_data[7] = REQUEST_SENSE_DATA_LEN - 6U; - - if ((msc->scsi_sense_head != msc->scsi_sense_tail)) { - msc->bbb_data[2] = msc->scsi_sense[msc->scsi_sense_head].SenseKey; - msc->bbb_data[12] = msc->scsi_sense[msc->scsi_sense_head].ASCQ; - msc->bbb_data[13] = msc->scsi_sense[msc->scsi_sense_head].ASC; - msc->scsi_sense_head++; - - if (msc->scsi_sense_head == SENSE_LIST_DEEPTH) { - msc->scsi_sense_head = 0U; - } - } - - msc->bbb_datalen = USB_MIN(REQUEST_SENSE_DATA_LEN, params[4]); - - return 0; -} - -/*! - \brief process Start Stop Unit command - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[in] params: command parameters - \param[out] none - \retval status -*/ -static inline int8_t scsi_start_stop_unit (usb_core_driver *udev, uint8_t lun, uint8_t *params) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - msc->bbb_datalen = 0U; - msc->scsi_disk_pop = 1U; - - return 0; -} - -/*! - \brief process Allow Medium Removal command - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[in] params: command parameters - \param[out] none - \retval status -*/ -static inline int8_t scsi_allow_medium_removal (usb_core_driver *udev, uint8_t lun, uint8_t *params) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - msc->bbb_datalen = 0U; - - return 0; -} - -/*! - \brief process Read10 command - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[in] params: command parameters - \param[out] none - \retval status -*/ -static int8_t scsi_read10 (usb_core_driver *udev, uint8_t lun, uint8_t *params) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - if (msc->bbb_state == BBB_IDLE) { - /* direction is from device to host */ - if (0x80U != (msc->bbb_cbw.bmCBWFlags & 0x80U)) { - scsi_sense_code (udev, msc->bbb_cbw.bCBWLUN, ILLEGAL_REQUEST, INVALID_CDB); - - return -1; - } - - if (0 != usbd_mem_fops->mem_ready(lun)) { - scsi_sense_code (udev, lun, NOT_READY, MEDIUM_NOT_PRESENT); - - return -1; - } - - msc->scsi_blk_addr = (params[2] << 24U) | (params[3] << 16U) | \ - (params[4] << 8U) | params[5]; - - msc->scsi_blk_len = (params[7] << 8U) | params[8]; - - if (scsi_check_address_range (udev, lun, msc->scsi_blk_addr, (uint16_t)msc->scsi_blk_len) < 0) { - return -1; /* error */ - } - - msc->bbb_state = BBB_DATA_IN; - - msc->scsi_blk_addr *= msc->scsi_blk_size[lun]; - msc->scsi_blk_len *= msc->scsi_blk_size[lun]; - - /* cases 4,5 : Hi <> Dn */ - if (msc->bbb_cbw.dCBWDataTransferLength != msc->scsi_blk_len) { - scsi_sense_code (udev, msc->bbb_cbw.bCBWLUN, ILLEGAL_REQUEST, INVALID_CDB); - - return -1; - } - } - - msc->bbb_datalen = MSC_MEDIA_PACKET_SIZE; - - return scsi_process_read (udev, lun); -} - -/*! - \brief process Write10 command - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[in] params: command parameters - \param[out] none - \retval status -*/ -static int8_t scsi_write10 (usb_core_driver *udev, uint8_t lun, uint8_t *params) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - if (BBB_IDLE == msc->bbb_state) { - /* case 8 : Hi <> Do */ - if (0x80U == (msc->bbb_cbw.bmCBWFlags & 0x80U)) { - scsi_sense_code (udev, msc->bbb_cbw.bCBWLUN, ILLEGAL_REQUEST, INVALID_CDB); - - return -1; - } - - /* check whether media is ready */ - if (0 != usbd_mem_fops->mem_ready(lun)) { - scsi_sense_code (udev, lun, NOT_READY, MEDIUM_NOT_PRESENT); - - return -1; - } - - /* check if media is write-protected */ - if (0 != usbd_mem_fops->mem_protected(lun)) { - scsi_sense_code (udev, lun, NOT_READY, WRITE_PROTECTED); - - return -1; - } - - msc->scsi_blk_addr = (params[2] << 24U) | (params[3] << 16U) | \ - (params[4] << 8U) | params[5]; - - msc->scsi_blk_len = (params[7] << 8U) | params[8]; - - /* check if LBA address is in the right range */ - if (scsi_check_address_range (udev, lun, msc->scsi_blk_addr, (uint16_t)msc->scsi_blk_len) < 0) { - return -1; /* error */ - } - - msc->scsi_blk_addr *= msc->scsi_blk_size[lun]; - msc->scsi_blk_len *= msc->scsi_blk_size[lun]; - - /* cases 3,11,13 : Hn,Ho <> D0 */ - if (msc->bbb_cbw.dCBWDataTransferLength != msc->scsi_blk_len) { - scsi_sense_code (udev, msc->bbb_cbw.bCBWLUN, ILLEGAL_REQUEST, INVALID_CDB); - - return -1; - } - - /* prepare endpoint to receive first data packet */ - msc->bbb_state = BBB_DATA_OUT; - - usbd_ep_recev (udev, - MSC_OUT_EP, - msc->bbb_data, - USB_MIN (msc->scsi_blk_len, MSC_MEDIA_PACKET_SIZE)); - } else { /* write process ongoing */ - return scsi_process_write (udev, lun); - } - - return 0; -} - -/*! - \brief process Verify10 command - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[in] params: command parameters - \param[out] none - \retval status -*/ -static int8_t scsi_verify10 (usb_core_driver *udev, uint8_t lun, uint8_t *params) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - if (0x02U == (params[1] & 0x02U)) { - scsi_sense_code (udev, lun, ILLEGAL_REQUEST, INVALID_FIELED_IN_COMMAND); - - return -1; /* error, verify mode not supported*/ - } - - if (scsi_check_address_range (udev, lun, msc->scsi_blk_addr, (uint16_t)msc->scsi_blk_len) < 0) { - return -1; /* error */ - } - - msc->bbb_datalen = 0U; - - return 0; -} - -/*! - \brief check address range - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[in] blk_offset: block offset - \param[in] blk_nbr: number of block to be processed - \param[out] none - \retval status -*/ -static inline int8_t scsi_check_address_range (usb_core_driver *udev, uint8_t lun, uint32_t blk_offset, uint16_t blk_nbr) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - if ((blk_offset + blk_nbr) > msc->scsi_blk_nbr[lun]) { - scsi_sense_code (udev, lun, ILLEGAL_REQUEST, ADDRESS_OUT_OF_RANGE); - - return -1; - } - - return 0; -} - -/*! - \brief handle read process - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[out] none - \retval status -*/ -static int8_t scsi_process_read (usb_core_driver *udev, uint8_t lun) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - uint32_t len = USB_MIN(msc->scsi_blk_len, MSC_MEDIA_PACKET_SIZE); - - if (usbd_mem_fops->mem_read(lun, - msc->bbb_data, - msc->scsi_blk_addr, - (uint16_t)(len / msc->scsi_blk_size[lun])) < 0) { - scsi_sense_code(udev, lun, HARDWARE_ERROR, UNRECOVERED_READ_ERROR); - - return -1; - } - - usbd_ep_send (udev, MSC_IN_EP, msc->bbb_data, len); - - msc->scsi_blk_addr += len; - msc->scsi_blk_len -= len; - - /* case 6 : Hi = Di */ - msc->bbb_csw.dCSWDataResidue -= len; - - if (0U == msc->scsi_blk_len) { - msc->bbb_state = BBB_LAST_DATA_IN; - } - - return 0; -} - -/*! - \brief handle write process - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[out] none - \retval status -*/ -static int8_t scsi_process_write (usb_core_driver *udev, uint8_t lun) -{ - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - uint32_t len = USB_MIN(msc->scsi_blk_len, MSC_MEDIA_PACKET_SIZE); - - if (usbd_mem_fops->mem_write (lun, - msc->bbb_data, - msc->scsi_blk_addr, - (uint16_t)(len / msc->scsi_blk_size[lun])) < 0) { - scsi_sense_code(udev, lun, HARDWARE_ERROR, WRITE_FAULT); - - return -1; - } - - msc->scsi_blk_addr += len; - msc->scsi_blk_len -= len; - - /* case 12 : Ho = Do */ - msc->bbb_csw.dCSWDataResidue -= len; - - if (0U == msc->scsi_blk_len) { - msc_bbb_csw_send (udev, CSW_CMD_PASSED); - } else { - /* prepare endpoint to receive next packet */ - usbd_ep_recev (udev, - MSC_OUT_EP, - msc->bbb_data, - USB_MIN (msc->scsi_blk_len, MSC_MEDIA_PACKET_SIZE)); - } - - return 0; -} - -/*! - \brief process Format Unit command - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[out] none - \retval status -*/ -static inline int8_t scsi_format_cmd (usb_core_driver *udev, uint8_t lun) -{ - return 0; -} - -/*! - \brief process Read_Toc command - \param[in] udev: pointer to USB device instance - \param[in] lun: logical unit number - \param[in] params: command parameters - \param[out] none - \retval status -*/ -static int8_t scsi_toc_cmd_read (usb_core_driver *udev, uint8_t lun, uint8_t *params) -{ - uint8_t* pPage; - uint16_t len; - - usbd_msc_handler *msc = (usbd_msc_handler *)udev->dev.class_data[USBD_MSC_INTERFACE]; - - pPage = (uint8_t *)&usbd_mem_fops->mem_toc_data[lun * READ_TOC_CMD_LEN]; - len = (uint16_t)pPage[1] + 2U; - - msc->bbb_datalen = len; - - while (len) { - len--; - msc->bbb_data[len] = pPage[len]; - } - - return 0; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/printer/Include/printer_core.h b/Marlin/lib/GD32F4xx_usb_library/src/device/class/printer/Include/printer_core.h deleted file mode 100644 index 365c65ec72..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/printer/Include/printer_core.h +++ /dev/null @@ -1,78 +0,0 @@ -/*! - \file printer_core.h - \brief the header file of USB printer device class core functions - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __PRINTER_CORE_H -#define __PRINTER_CORE_H - -#include "usbd_enum.h" -#include "usb_ch9_std.h" - -/* USB printing device class code */ -#define USB_CLASS_PRINTER 0x07U - -/* printing device subclass code */ -#define USB_SUBCLASS_PRINTER 0x01U - -/* printing device protocol code */ -#define PROTOCOL_UNIDIRECTIONAL_ITF 0x01U -#define PROTOCOL_BI_DIRECTIONAL_ITF 0x02U -#define PROTOCOL_1284_4_ITF 0x03U -#define PROTOCOL_VENDOR 0xFFU - -#define DEVICE_ID_LEN 103U - -#define USB_PRINTER_CONFIG_DESC_LEN 32U - -/* printing device specific-class request */ -#define GET_DEVICE_ID 0x00U -#define GET_PORT_STATUS 0x01U -#define SOFT_RESET 0x02U - -#pragma pack(1) - -/* USB configuration descriptor structure */ -typedef struct -{ - usb_desc_config config; - usb_desc_itf printer_itf; - usb_desc_ep printer_epin; - usb_desc_ep printer_epout; -} usb_printer_desc_config_set; - -#pragma pack() - -extern usb_desc printer_desc; -extern usb_class_core usbd_printer_cb; - -#endif /* __PRINTER_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/device/class/printer/Source/printer_core.c b/Marlin/lib/GD32F4xx_usb_library/src/device/class/printer/Source/printer_core.c deleted file mode 100644 index dbeb82c193..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/device/class/printer/Source/printer_core.c +++ /dev/null @@ -1,310 +0,0 @@ -/*! - \file printer_core.c - \brief USB printer device class core functions - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "printer_core.h" - -#define USBD_VID 0x28E9U -#define USBD_PID 0x028DU - -/* printer port status: paper not empty/selected/no error */ -static uint8_t g_port_status = 0x18U; - -uint8_t g_printer_data_buf[PRINTER_OUT_PACKET]; - -__ALIGN_BEGIN uint8_t PRINTER_DEVICE_ID[DEVICE_ID_LEN] __ALIGN_END = -{ - 0x00, 0x67, - 'M', 'A', 'N', 'U', 'F', 'A', 'C', 'T', 'U', 'R', 'E', 'R', ':', - 'G', 'I', 'G', 'A', ' ', 'D', 'E', 'V', 'I', 'C', 'E', '-', ';', - 'C', 'O', 'M', 'M', 'A', 'N', 'D', ' ', 'S', 'E', 'T', ':', - 'P', 'C', 'L', ',', 'M', 'P', 'L', ';', - 'M', 'O', 'D', 'E', 'L', ':', - 'L', 'a', 's', 'e', 'r', 'B', 'e', 'a', 'm', '?', ';', - 'C', 'O', 'M', 'M', 'E', 'N', 'T', ':', - 'G', 'o', 'o', 'd', ' ', '!', ';', - 'A', 'C', 'T', 'I', 'V', 'E', ' ', 'C', 'O', 'M', 'M', 'A', 'N', 'D', ' ', 'S', 'E', 'T', ':', - 'P', 'C', 'L', ';' -}; - -/* USB standard device descriptor */ -__ALIGN_BEGIN const usb_desc_dev printer_dev_desc __ALIGN_END = -{ - .header = - { - .bLength = USB_DEV_DESC_LEN, - .bDescriptorType = USB_DESCTYPE_DEV, - }, - .bcdUSB = 0x0200U, - .bDeviceClass = 0x00U, - .bDeviceSubClass = 0x00U, - .bDeviceProtocol = 0x00U, - .bMaxPacketSize0 = USB_FS_EP0_MAX_LEN, - .idVendor = USBD_VID, - .idProduct = USBD_PID, - .bcdDevice = 0x0100U, - .iManufacturer = STR_IDX_MFC, - .iProduct = STR_IDX_PRODUCT, - .iSerialNumber = STR_IDX_SERIAL, - .bNumberConfigurations = USBD_CFG_MAX_NUM, -}; - -/* USB device configuration descriptor */ -__ALIGN_BEGIN const usb_printer_desc_config_set printer_config_desc __ALIGN_END = -{ - .config = - { - .header = - { - .bLength = sizeof(usb_desc_config), - .bDescriptorType = USB_DESCTYPE_CONFIG - }, - .wTotalLength = USB_PRINTER_CONFIG_DESC_LEN, - .bNumInterfaces = 0x01U, - .bConfigurationValue = 0x01U, - .iConfiguration = 0x00U, - .bmAttributes = 0xA0U, - .bMaxPower = 0x32U - }, - - .printer_itf = - { - .header = - { - .bLength = sizeof(usb_desc_itf), - .bDescriptorType = USB_DESCTYPE_ITF - }, - .bInterfaceNumber = 0x00U, - .bAlternateSetting = 0x00U, - .bNumEndpoints = 0x02U, - .bInterfaceClass = USB_CLASS_PRINTER, - .bInterfaceSubClass = USB_SUBCLASS_PRINTER, - .bInterfaceProtocol = PROTOCOL_BI_DIRECTIONAL_ITF, - .iInterface = 0x00U - }, - - .printer_epin = - { - .header = - { - .bLength = sizeof(usb_desc_ep), - .bDescriptorType = USB_DESCTYPE_EP - }, - .bEndpointAddress = PRINTER_IN_EP, - .bmAttributes = USB_EP_ATTR_BULK, - .wMaxPacketSize = PRINTER_IN_PACKET, - .bInterval = 0x00U - }, - - .printer_epout = - { - .header = - { - .bLength = sizeof(usb_desc_ep), - .bDescriptorType = USB_DESCTYPE_EP - }, - .bEndpointAddress = PRINTER_OUT_EP, - .bmAttributes = USB_EP_ATTR_BULK, - .wMaxPacketSize = PRINTER_OUT_PACKET, - .bInterval = 0x00U - }, -}; - -/* USB language ID Descriptor */ -static __ALIGN_BEGIN const usb_desc_LANGID usbd_language_id_desc __ALIGN_END = -{ - .header = - { - .bLength = sizeof(usb_desc_LANGID), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .wLANGID = ENG_LANGID -}; - -/* USB manufacture string */ -static __ALIGN_BEGIN const usb_desc_str manufacturer_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(10U), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'i', 'g', 'a', 'D', 'e', 'v', 'i', 'c', 'e'} -}; - -/* USB product string */ -static __ALIGN_BEGIN const usb_desc_str product_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(16U), - .bDescriptorType = USB_DESCTYPE_STR, - }, - .unicode_string = {'G', 'D', '3', '2', '-', 'U', 'S', 'B', '_', 'P', 'r', 'i', 'n', 't', 'e', 'r'} -}; - -/* USBD serial string */ -static __ALIGN_BEGIN usb_desc_str serial_string __ALIGN_END = -{ - .header = - { - .bLength = USB_STRING_LEN(12U), - .bDescriptorType = USB_DESCTYPE_STR, - } -}; - -/* USB string descriptor */ -static void *const usbd_msc_strings[] = -{ - [STR_IDX_LANGID] = (uint8_t *)&usbd_language_id_desc, - [STR_IDX_MFC] = (uint8_t *)&manufacturer_string, - [STR_IDX_PRODUCT] = (uint8_t *)&product_string, - [STR_IDX_SERIAL] = (uint8_t *)&serial_string -}; - -usb_desc printer_desc = { - .dev_desc = (uint8_t *)&printer_dev_desc, - .config_desc = (uint8_t *)&printer_config_desc, - .strings = usbd_msc_strings -}; - -/* local function prototypes ('static') */ -static uint8_t printer_init (usb_dev *udev, uint8_t config_index); -static uint8_t printer_deinit (usb_dev *udev, uint8_t config_index); -static uint8_t printer_req (usb_dev *udev, usb_req *req); -static uint8_t printer_in (usb_dev *udev, uint8_t ep_num); -static uint8_t printer_out (usb_dev *udev, uint8_t ep_num); - -usb_class_core usbd_printer_cb = { - .init = printer_init, - .deinit = printer_deinit, - - .req_proc = printer_req, - - .data_in = printer_in, - .data_out = printer_out -}; - -/*! - \brief initialize the printer device - \param[in] udev: pointer to USB device instance - \param[in] config_index: configuration index - \param[out] none - \retval USB device operation status -*/ -static uint8_t printer_init (usb_dev *udev, uint8_t config_index) -{ - /* initialize the data TX endpoint */ - usbd_ep_setup (udev, &(printer_config_desc.printer_epin)); - - /* initialize the data RX endpoint */ - usbd_ep_setup (udev, &(printer_config_desc.printer_epout)); - - /* prepare to receive data */ - usbd_ep_recev(udev, PRINTER_OUT_EP, g_printer_data_buf, PRINTER_OUT_PACKET); - - return USBD_OK; -} - -/*! - \brief deinitialize the printer device - \param[in] udev: pointer to USB device instance - \param[in] config_index: configuration index - \param[out] none - \retval USB device operation status -*/ -static uint8_t printer_deinit (usb_dev *udev, uint8_t config_index) -{ - /* deinitialize the data TX/RX endpoint */ - usbd_ep_clear (udev, PRINTER_IN_EP); - usbd_ep_clear (udev, PRINTER_OUT_EP); - - return USBD_OK; -} - -/*! - \brief handle the printer class-specific requests - \param[in] udev: pointer to USB device instance - \param[in] req: device class-specific request - \param[out] none - \retval USB device operation status -*/ -static uint8_t printer_req(usb_dev *udev, usb_req *req) -{ - usb_transc *transc = &udev->dev.transc_in[0]; - - switch (req->bRequest) { - case GET_DEVICE_ID: - transc->xfer_buf = (uint8_t *)PRINTER_DEVICE_ID; - transc->remain_len = DEVICE_ID_LEN; - break; - - case GET_PORT_STATUS: - transc->xfer_buf = (uint8_t *)&g_port_status; - transc->remain_len = 1U; - break; - - case SOFT_RESET: - usbd_ep_recev(udev, PRINTER_OUT_EP, g_printer_data_buf, PRINTER_OUT_PACKET); - break; - - default: - return USBD_FAIL; - } - - return USBD_OK; -} - -/*! - \brief handle printer data - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint number - \param[out] none - \retval USB device operation status -*/ -static uint8_t printer_in (usb_dev *udev, uint8_t ep_num) -{ - return USBD_OK; -} - -/*! - \brief handle printer data - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint number - \param[out] none - \retval USB device operation status -*/ -static uint8_t printer_out (usb_dev *udev, uint8_t ep_num) -{ - return USBD_OK; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_core.c b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_core.c deleted file mode 100644 index 377f2b7135..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_core.c +++ /dev/null @@ -1,363 +0,0 @@ -/*! - \file drv_usb_core.c - \brief USB core driver which can operate in host and device mode - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "drv_usb_core.h" -#include "drv_usb_hw.h" - -/* local function prototypes ('static') */ -static void usb_core_reset (usb_core_regs *usb_regs); - -/*! - \brief configure USB core basic - \param[in] usb_basic: pointer to USB capabilities - \param[in] usb_regs: USB core registers - \param[in] usb_core: USB core - \param[out] none - \retval operation status -*/ -usb_status usb_basic_init (usb_core_basic *usb_basic, - usb_core_regs *usb_regs, - usb_core_enum usb_core) -{ - /* configure USB default transfer mode as FIFO mode */ - usb_basic->transfer_mode = (uint8_t)USB_USE_FIFO; - - /* USB default speed is full-speed */ - usb_basic->core_speed = (uint8_t)USB_SPEED_FULL; - - usb_basic->core_enum = (uint8_t)usb_core; - - switch (usb_core) { - case USB_CORE_ENUM_HS: - usb_basic->base_reg = (uint32_t)USBHS_REG_BASE; - - /* set the host channel numbers */ - usb_basic->num_pipe = USBHS_MAX_CHANNEL_COUNT; - - /* set the device endpoint numbers */ - usb_basic->num_ep = USBHS_MAX_EP_COUNT; - -#ifdef USB_ULPI_PHY_ENABLED - usb_basic->phy_itf = USB_ULPI_PHY; -#else - usb_basic->phy_itf = USB_EMBEDDED_PHY; -#endif /* USB_ULPI_PHY_ENABLED */ - -#ifdef USB_HS_INTERNAL_DMA_ENABLED - usb_basic->transfer_mode = USB_USE_DMA; -#endif /* USB_HS_INTERNAL_DMA_ENABLED */ - break; - - case USB_CORE_ENUM_FS: - usb_basic->base_reg = (uint32_t)USBFS_REG_BASE; - - /* set the host channel numbers */ - usb_basic->num_pipe = USBFS_MAX_CHANNEL_COUNT; - - /* set the device endpoint numbers */ - usb_basic->num_ep = USBFS_MAX_EP_COUNT; - - /* USBFS core use embedded physical layer */ - usb_basic->phy_itf = USB_EMBEDDED_PHY; - break; - - default: - return USB_FAIL; - } - - usb_basic->sof_enable = USB_SOF_OUTPUT; - usb_basic->low_power = USB_LOW_POWER; - - /* assign main registers address */ - *usb_regs = (usb_core_regs) { - .gr = (usb_gr*) (usb_basic->base_reg + USB_REG_OFFSET_CORE), - .hr = (usb_hr*) (usb_basic->base_reg + USB_REG_OFFSET_HOST), - .dr = (usb_dr*) (usb_basic->base_reg + USB_REG_OFFSET_DEV), - - .HPCS = (uint32_t*) (usb_basic->base_reg + USB_REG_OFFSET_PORT), - .PWRCLKCTL = (uint32_t*) (usb_basic->base_reg + USB_REG_OFFSET_PWRCLKCTL) - }; - - /* assign device endpoint registers address */ - for (uint8_t i = 0U; i < usb_basic->num_ep; i++) { - usb_regs->er_in[i] = (usb_erin *) \ - (usb_basic->base_reg + USB_REG_OFFSET_EP_IN + (i * USB_REG_OFFSET_EP)); - - usb_regs->er_out[i] = (usb_erout *)\ - (usb_basic->base_reg + USB_REG_OFFSET_EP_OUT + (i * USB_REG_OFFSET_EP)); - } - - /* assign host pipe registers address */ - for (uint8_t i = 0U; i < usb_basic->num_pipe; i++) { - usb_regs->pr[i] = (usb_pr *) \ - (usb_basic->base_reg + USB_REG_OFFSET_CH_INOUT + (i * USB_REG_OFFSET_CH)); - - usb_regs->DFIFO[i] = (uint32_t *) \ - (usb_basic->base_reg + USB_DATA_FIFO_OFFSET + (i * USB_DATA_FIFO_SIZE)); - } - - return USB_OK; -} - -/*! - \brief initializes the USB controller registers and - prepares the core device mode or host mode operation - \param[in] usb_basic: pointer to USB capabilities - \param[in] usb_regs: pointer to USB core registers - \param[out] none - \retval operation status -*/ -usb_status usb_core_init (usb_core_basic usb_basic, usb_core_regs *usb_regs) -{ - if (USB_ULPI_PHY == usb_basic.phy_itf) { - usb_regs->gr->GCCFG &= ~GCCFG_PWRON; - - if (usb_basic.sof_enable) { - usb_regs->gr->GCCFG |= GCCFG_SOFOEN; - } - - /* initialize the ULPI interface */ - usb_regs->gr->GUSBCS &= ~(GUSBCS_EMBPHY | GUSBCS_ULPIEOI); - -#ifdef USBHS_EXTERNAL_VBUS_ENABLED - /* use external VBUS driver */ - usb_regs->gr->GUSBCS |= GUSBCS_ULPIEVD; -#else - /* use internal VBUS driver */ - usb_regs->gr->GUSBCS &= ~GUSBCS_ULPIEVD; -#endif /* USBHS_EXTERNAL_VBUS_ENABLED */ - - /* soft reset the core */ - usb_core_reset (usb_regs); - } else { - usb_regs->gr->GUSBCS |= GUSBCS_EMBPHY; - - /* soft reset the core */ - usb_core_reset (usb_regs); - - /* active the transceiver and enable VBUS sensing */ - usb_regs->gr->GCCFG |= GCCFG_PWRON | GCCFG_VBUSACEN | GCCFG_VBUSBCEN; - -#ifndef VBUS_SENSING_ENABLED - usb_regs->gr->GCCFG |= GCCFG_VBUSIG; -#endif /* VBUS_SENSING_ENABLED */ - - /* enable SOF output */ - if (usb_basic.sof_enable) { - usb_regs->gr->GCCFG |= GCCFG_SOFOEN; - } - - usb_mdelay(20U); - } - - if ((uint8_t)USB_USE_DMA == usb_basic.transfer_mode) { - usb_regs->gr->GAHBCS &= ~GAHBCS_BURST; - usb_regs->gr->GAHBCS |= DMA_INCR8 | GAHBCS_DMAEN; - } - -#ifdef USE_OTG_MODE - - /* enable USB OTG features */ - usb_regs->gr->GUSBCS |= GUSBCS_HNPCEN | GUSBCS_SRPCEN; - - /* enable the USB wakeup and suspend interrupts */ - usb_regs->gr->GINTF = 0xBFFFFFFFU; - - usb_regs->gr->GINTEN = GINTEN_WKUPIE | GINTEN_SPIE | \ - GINTEN_OTGIE | GINTEN_SESIE | GINTEN_CIDPSCIE; - -#endif /* USE_OTG_MODE */ - - return USB_OK; -} - -/*! - \brief write a packet into the TX FIFO associated with the endpoint - \param[in] usb_regs: pointer to USB core registers - \param[in] src_buf: pointer to source buffer - \param[in] fifo_num: FIFO number which is in (0..3) - \param[in] byte_count: packet byte count - \param[out] none - \retval operation status -*/ -usb_status usb_txfifo_write (usb_core_regs *usb_regs, - uint8_t *src_buf, - uint8_t fifo_num, - uint16_t byte_count) -{ - uint32_t word_count = (byte_count + 3U) / 4U; - - __IO uint32_t *fifo = usb_regs->DFIFO[fifo_num]; - - while (word_count-- > 0U) { - *fifo = *((__packed uint32_t *)src_buf); - - src_buf += 4U; - } - - return USB_OK; -} - -/*! - \brief read a packet from the Rx FIFO associated with the endpoint - \param[in] usb_regs: pointer to USB core registers - \param[in] dest_buf: pointer to destination buffer - \param[in] byte_count: packet byte count - \param[out] none - \retval void type pointer -*/ -void *usb_rxfifo_read (usb_core_regs *usb_regs, uint8_t *dest_buf, uint16_t byte_count) -{ - uint32_t word_count = (byte_count + 3U) / 4U; - - __IO uint32_t *fifo = usb_regs->DFIFO[0]; - - while (word_count-- > 0U) { - *(__packed uint32_t *)dest_buf = *fifo; - - dest_buf += 4U; - } - - return ((void *)dest_buf); -} - -/*! - \brief flush a TX FIFO or all TX FIFOs - \param[in] usb_regs: pointer to USB core registers - \param[in] fifo_num: FIFO number which is in (0..3) - \param[out] none - \retval operation status -*/ -usb_status usb_txfifo_flush (usb_core_regs *usb_regs, uint8_t fifo_num) -{ - usb_regs->gr->GRSTCTL = ((uint32_t)fifo_num << 6U) | GRSTCTL_TXFF; - - /* wait for TX FIFO flush bit is set */ - while (usb_regs->gr->GRSTCTL & GRSTCTL_TXFF) { - /* no operation */ - } - - /* wait for 3 PHY clocks*/ - usb_udelay(3U); - - return USB_OK; -} - -/*! - \brief flush the entire Rx FIFO - \param[in] usb_regs: pointer to USB core registers - \param[out] none - \retval operation status -*/ -usb_status usb_rxfifo_flush (usb_core_regs *usb_regs) -{ - usb_regs->gr->GRSTCTL = GRSTCTL_RXFF; - - /* wait for RX FIFO flush bit is set */ - while (usb_regs->gr->GRSTCTL & GRSTCTL_RXFF) { - /* no operation */ - } - - /* wait for 3 PHY clocks */ - usb_udelay(3U); - - return USB_OK; -} - -/*! - \brief set endpoint or channel TX FIFO size - \param[in] usb_regs: pointer to USB core registers - \param[in] fifo: TX FIFO number - \param[in] size: assigned TX FIFO size - \param[out] none - \retval none -*/ -void usb_set_txfifo(usb_core_regs *usb_regs, uint8_t fifo, uint16_t size) -{ - uint32_t tx_offset; - - tx_offset = usb_regs->gr->GRFLEN; - - if (fifo == 0U) { - usb_regs->gr->DIEP0TFLEN_HNPTFLEN = ((uint32_t)size << 16) | tx_offset; - } else { - tx_offset += (usb_regs->gr->DIEP0TFLEN_HNPTFLEN) >> 16; - - for (uint8_t i = 0U; i < (fifo - 1U); i++) { - tx_offset += (usb_regs->gr->DIEPTFLEN[i] >> 16); - } - - /* multiply Tx_Size by 2 to get higher performance */ - usb_regs->gr->DIEPTFLEN[fifo - 1U] = ((uint32_t)size << 16) | tx_offset; - } -} - -/*! - \brief set USB current mode - \param[in] usb_regs: pointer to USB core registers - \param[out] none - \retval none -*/ -void usb_curmode_set(usb_core_regs *usb_regs, uint8_t mode) -{ - usb_regs->gr->GUSBCS &= ~(GUSBCS_FDM | GUSBCS_FHM); - - if (DEVICE_MODE == mode) { - usb_regs->gr->GUSBCS |= GUSBCS_FDM; - } else if (HOST_MODE == mode) { - usb_regs->gr->GUSBCS |= GUSBCS_FHM; - } else { - /* OTG mode and other mode can not be here! */ - } -} - -/*! - \brief configure USB core to soft reset - \param[in] usb_regs: pointer to USB core registers - \param[out] none - \retval none -*/ -static void usb_core_reset (usb_core_regs *usb_regs) -{ - /* enable core soft reset */ - usb_regs->gr->GRSTCTL |= GRSTCTL_CSRST; - - /* wait for the core to be soft reset */ - while (usb_regs->gr->GRSTCTL & GRSTCTL_CSRST) { - /* no operation */ - } - - /* wait for additional 3 PHY clocks */ - usb_udelay(3U); -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_core.h b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_core.h deleted file mode 100644 index 47aaa1ba5b..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_core.h +++ /dev/null @@ -1,343 +0,0 @@ -/*! - \file drv_usb_core.h - \brief USB core low level driver header file - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __DRV_USB_CORE_H -#define __DRV_USB_CORE_H - -#include "drv_usb_regs.h" -#include "usb_ch9_std.h" - -#ifdef USE_DEVICE_MODE - #include "gdusbd_conf.h" -#endif /* USE_DEVICE_MODE */ - -#define USB_FS_EP0_MAX_LEN 64U /*!< maximum packet size of endpoint 0 */ -#define HC_MAX_PACKET_COUNT 140U /*!< maximum packet count */ - -#define EP_ID(x) ((uint8_t)((x) & 0x7FU)) /*!< endpoint number */ -#define EP_DIR(x) ((uint8_t)((x) >> 7)) /*!< endpoint direction */ - -enum _usb_mode { - DEVICE_MODE = 0U, /*!< device mode */ - HOST_MODE, /*!< host mode */ - OTG_MODE /*!< OTG mode */ -}; - -enum _usb_eptype { - USB_EPTYPE_CTRL = 0U, /*!< control endpoint type */ - USB_EPTYPE_ISOC = 1U, /*!< isochronous endpoint type */ - USB_EPTYPE_BULK = 2U, /*!< bulk endpoint type */ - USB_EPTYPE_INTR = 3U, /*!< interrupt endpoint type */ - USB_EPTYPE_MASK = 3U /*!< endpoint type mask */ -}; - -typedef enum -{ - USB_OTG_OK = 0U, /*!< USB OTG status OK*/ - USB_OTG_FAIL /*!< USB OTG status fail*/ -} usb_otg_status; - -typedef enum -{ - USB_OK = 0U, /*!< USB status OK*/ - USB_FAIL /*!< USB status fail*/ -} usb_status; - -typedef enum -{ - USB_USE_FIFO, /*!< USB use FIFO transfer mode */ - USB_USE_DMA /*!< USB use DMA transfer mode */ -} usb_transfer_mode; - -typedef struct -{ - uint8_t core_enum; /*!< USB core type */ - uint8_t core_speed; /*!< USB core speed */ - uint8_t num_pipe; /*!< USB host channel numbers */ - uint8_t num_ep; /*!< USB device endpoint numbers */ - uint8_t transfer_mode; /*!< USB transfer mode */ - uint8_t phy_itf; /*!< USB core PHY interface */ - uint8_t sof_enable; /*!< USB SOF output */ - uint8_t low_power; /*!< USB low power */ - uint8_t lpm_enable; /*!< USB link power mode(LPM) */ - uint8_t vbus_sensing_enable; /*!< USB VBUS sensing feature */ - uint8_t use_dedicated_ep1; /*!< USB dedicated endpoint1 interrupt */ - uint8_t use_external_vbus; /*!< enable or disable the use of the external VBUS */ - uint32_t base_reg; /*!< base register address */ -} usb_core_basic; - -#ifdef USE_DEVICE_MODE - -/* USB descriptor */ -typedef struct _usb_desc { - uint8_t *dev_desc; /*!< device descriptor */ - uint8_t *config_desc; /*!< configure descriptor */ - uint8_t *bos_desc; /*!< BOS descriptor */ - - void* const *strings; /*!< string descriptor */ -} usb_desc; - -/* USB power management */ -typedef struct _usb_pm { - uint8_t power_mode; /*!< power mode */ - uint8_t power_low; /*!< power low */ - uint8_t dev_remote_wakeup; /*!< remote wakeup */ - uint8_t remote_wakeup_on; /*!< remote wakeup on */ -} usb_pm; - -/* USB control information */ -typedef struct _usb_control { - usb_req req; /*!< USB standard device request */ - - uint8_t ctl_state; /*!< USB control transfer state */ - uint8_t ctl_zlp; /*!< zero length package */ -} usb_control; - -typedef struct -{ - struct { - uint8_t num: 4; /*!< the endpoint number.it can be from 0 to 6 */ - uint8_t pad: 3; /*!< padding between number and direction */ - uint8_t dir: 1; /*!< the endpoint direction */ - } ep_addr; - - uint8_t ep_type; /*!< USB endpoint type */ - uint8_t ep_stall; /*!< USB endpoint stall status */ - - uint8_t frame_num; /*!< number of frame */ - uint16_t max_len; /*!< Maximum packet length */ - - /* transaction level variables */ - uint8_t *xfer_buf; /*!< transmit buffer */ - uint32_t xfer_len; /*!< transmit buffer length */ - uint32_t xfer_count; /*!< transmit buffer count */ - - uint32_t remain_len; /*!< remain packet length */ - - uint32_t dma_addr; /*!< DMA address */ -} usb_transc; - -typedef struct _usb_core_driver usb_dev; - -typedef struct _usb_class_core -{ - uint8_t command; /*!< device class request command */ - uint8_t alter_set; /*!< alternative set */ - - uint8_t (*init) (usb_dev *udev, uint8_t config_index); /*!< initialize handler */ - uint8_t (*deinit) (usb_dev *udev, uint8_t config_index); /*!< de-initialize handler */ - - uint8_t (*req_proc) (usb_dev *udev, usb_req *req); /*!< device request handler */ - - uint8_t (*set_intf) (usb_dev *udev, usb_req *req); /*!< device set interface callback */ - - uint8_t (*data_in) (usb_dev *udev, uint8_t ep_num); /*!< device data in handler */ - uint8_t (*data_out) (usb_dev *udev, uint8_t ep_num); /*!< device data out handler */ - - uint8_t (*SOF) (usb_dev *udev); /*!< Start of frame handler */ - - uint8_t (*incomplete_isoc_in) (usb_dev *udev); /*!< Incomplete synchronization IN transfer handler */ - uint8_t (*incomplete_isoc_out) (usb_dev *udev); /*!< Incomplete synchronization OUT transfer handler */ -} usb_class_core; - -typedef struct _usb_perp_dev -{ - uint8_t config; /*!< configuration */ - uint8_t dev_addr; /*!< device address */ - - __IO uint8_t cur_status; /*!< current status */ - __IO uint8_t backup_status; /*!< backup status */ - - usb_transc transc_in[USBFS_MAX_TX_FIFOS]; /*!< endpoint IN transaction */ - usb_transc transc_out[USBFS_MAX_TX_FIFOS]; /*!< endpoint OUT transaction */ - - usb_pm pm; /*!< power management */ - usb_control control; /*!< USB control information */ - usb_desc *desc; /*!< USB descriptors pointer */ - usb_class_core *class_core; /*!< class driver */ - void *class_data[USBD_ITF_MAX_NUM]; /*!< class data pointer */ - void *user_data; /*!< user data pointer */ - void *pdata; /*!< reserved data pointer */ -} usb_perp_dev; - -#endif /* USE_DEVICE_MODE */ - -#ifdef USE_HOST_MODE - -typedef enum _usb_pipe_status -{ - PIPE_IDLE = 0U, - PIPE_XF, - PIPE_HALTED, - PIPE_NAK, - PIPE_NYET, - PIPE_STALL, - PIPE_TRACERR, - PIPE_BBERR, - PIPE_REQOVR, - PIPE_DTGERR, -} usb_pipe_staus; - -typedef enum _usb_urb_state -{ - GD_URB_IDLE = 0U, - GD_URB_DONE, - GD_URB_NOTREADY, - GD_URB_ERROR, - GD_URB_STALL, - GD_URB_PING -} usb_urb_state; - -typedef struct _usb_pipe -{ - uint8_t in_used; - uint8_t dev_addr; - uint32_t dev_speed; - - struct { - uint8_t num; - uint8_t dir; - uint8_t type; - uint16_t mps; - } ep; - - uint8_t ping; - uint32_t DPID; - - uint8_t *xfer_buf; - uint32_t xfer_len; - uint32_t xfer_count; - - uint8_t data_toggle_in; - uint8_t data_toggle_out; - - __IO uint32_t err_count; - __IO usb_pipe_staus pp_status; - __IO usb_urb_state urb_state; -} usb_pipe; - -typedef struct _usb_host_drv -{ - __IO uint32_t connect_status; - __IO uint32_t port_enabled; - __IO uint32_t backup_xfercount[USBFS_MAX_TX_FIFOS]; - - usb_pipe pipe[USBFS_MAX_TX_FIFOS]; - void *data; -} usb_host_drv; - -#endif /* USE_HOST_MODE */ - -typedef struct _usb_core_driver -{ - usb_core_basic bp; /*!< USB basic parameters */ - usb_core_regs regs; /*!< USB registers */ - -#ifdef USE_DEVICE_MODE - usb_perp_dev dev; /*!< USB peripheral device */ -#endif /* USE_DEVICE_MODE */ - -#ifdef USE_HOST_MODE - usb_host_drv host; -#endif /* USE_HOST_MODE */ -} usb_core_driver; - -/* static inline function definitions */ - -/*! - \brief get the global interrupts - \param[in] usb_regs: pointer to USB core registers - \param[out] none - \retval interrupt status -*/ -__STATIC_INLINE uint32_t usb_coreintr_get(usb_core_regs *usb_regs) -{ - return usb_regs->gr->GINTEN & usb_regs->gr->GINTF; -} - -/*! - \brief set USB RX FIFO size - \param[in] usb_regs: pointer to USB core registers - \param[in] size: assigned FIFO size - \param[out] none - \retval none -*/ -__STATIC_INLINE void usb_set_rxfifo(usb_core_regs *usb_regs, uint16_t size) -{ - usb_regs->gr->GRFLEN = size; -} - -/*! - \brief enable the global interrupts - \param[in] usb_regs: pointer to USB core registers - \param[out] none - \retval none -*/ -__STATIC_INLINE void usb_globalint_enable(usb_core_regs *usb_regs) -{ - /* enable USB global interrupt */ - usb_regs->gr->GAHBCS |= GAHBCS_GINTEN; -} - -/*! - \brief disable the global interrupts - \param[in] usb_regs: pointer to USB core registers - \param[out] none - \retval none -*/ -__STATIC_INLINE void usb_globalint_disable(usb_core_regs *usb_regs) -{ - /* disable USB global interrupt */ - usb_regs->gr->GAHBCS &= ~GAHBCS_GINTEN; -} - -/* function declarations */ -/* configure core capabilities */ -usb_status usb_basic_init (usb_core_basic *usb_basic, usb_core_regs *usb_regs, usb_core_enum usb_core); -/* initializes the USB controller registers and prepares the core device mode or host mode operation */ -usb_status usb_core_init (usb_core_basic usb_basic, usb_core_regs *usb_regs); -/* write a packet into the TX FIFO associated with the endpoint */ -usb_status usb_txfifo_write (usb_core_regs *usb_regs, uint8_t *src_buf, uint8_t fifo_num, uint16_t byte_count); -/* read a packet from the RX FIFO associated with the endpoint */ -void *usb_rxfifo_read (usb_core_regs *usb_regs, uint8_t *dest_buf, uint16_t byte_count); -/* flush a TX FIFO or all TX FIFOs */ -usb_status usb_txfifo_flush (usb_core_regs *usb_regs, uint8_t fifo_num); -/* flush the entire RX FIFO */ -usb_status usb_rxfifo_flush (usb_core_regs *usb_regs); -/* set endpoint or channel TX FIFO size */ -void usb_set_txfifo(usb_core_regs *usb_regs, uint8_t fifo, uint16_t size); -/* set USB current mode */ -void usb_curmode_set(usb_core_regs *usb_regs, uint8_t mode); - -#endif /* __DRV_USB_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_dev.c b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_dev.c deleted file mode 100644 index 43fd5e3eed..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_dev.c +++ /dev/null @@ -1,664 +0,0 @@ -/*! - \file drv_usb_dev.c - \brief USB device mode low level driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "drv_usb_hw.h" -#include "drv_usb_core.h" -#include "drv_usb_dev.h" - -/* endpoint 0 max packet length */ -static const uint8_t EP0_MAXLEN[4] = { - [DSTAT_EM_HS_PHY_30MHZ_60MHZ] = EP0MPL_64, - [DSTAT_EM_FS_PHY_30MHZ_60MHZ] = EP0MPL_64, - [DSTAT_EM_FS_PHY_48MHZ] = EP0MPL_64, - [DSTAT_EM_LS_PHY_6MHZ] = EP0MPL_8 -}; - -#ifdef USB_FS_CORE - -/* USB endpoint Tx FIFO size */ -static uint16_t USBFS_TX_FIFO_SIZE[USBFS_MAX_EP_COUNT] = -{ - (uint16_t)TX0_FIFO_FS_SIZE, - (uint16_t)TX1_FIFO_FS_SIZE, - (uint16_t)TX2_FIFO_FS_SIZE, - (uint16_t)TX3_FIFO_FS_SIZE -}; - -#endif /* USBFS_CORE */ - -#ifdef USB_HS_CORE - -uint16_t USBHS_TX_FIFO_SIZE[USBHS_MAX_EP_COUNT] = -{ - (uint16_t)TX0_FIFO_HS_SIZE, - (uint16_t)TX1_FIFO_HS_SIZE, - (uint16_t)TX2_FIFO_HS_SIZE, - (uint16_t)TX3_FIFO_HS_SIZE, - (uint16_t)TX4_FIFO_HS_SIZE, - (uint16_t)TX5_FIFO_HS_SIZE -}; - -#endif /* USBHS_CORE */ - -/*! - \brief initialize USB core registers for device mode - \param[in] udev: pointer to USB device - \param[out] none - \retval operation status -*/ -usb_status usb_devcore_init (usb_core_driver *udev) -{ - uint8_t i; - - /* restart the PHY clock (maybe don't need to...) */ - *udev->regs.PWRCLKCTL = 0U; - - /* configure periodic frame interval to default value */ - udev->regs.dr->DCFG &= ~DCFG_EOPFT; - udev->regs.dr->DCFG |= FRAME_INTERVAL_80; - - udev->regs.dr->DCFG &= ~DCFG_DS; - -#ifdef USB_FS_CORE - if (udev->bp.core_enum == (uint8_t)USB_CORE_ENUM_FS) { - /* set full-speed PHY */ - udev->regs.dr->DCFG |= USB_SPEED_INP_FULL; - - /* set Rx FIFO size */ - usb_set_rxfifo(&udev->regs, RX_FIFO_FS_SIZE); - - /* set endpoint 0 to 3's TX FIFO length and RAM address */ - for (i = 0U; i < USBFS_MAX_EP_COUNT; i++) { - usb_set_txfifo(&udev->regs, i, USBFS_TX_FIFO_SIZE[i]); - } - } -#endif /* USB_FS_CORE */ - -#ifdef USB_HS_CORE - if (udev->bp.core_enum == USB_CORE_ENUM_HS) { - if (udev->bp.phy_itf == USB_ULPI_PHY) { - udev->regs.dr->DCFG |= USB_SPEED_EXP_HIGH; - } else {/* set High speed PHY in Full speed mode */ - udev->regs.dr->DCFG |= USB_SPEED_EXP_FULL; - } - - /* Set Rx FIFO size */ - usb_set_rxfifo(&udev->regs, RX_FIFO_HS_SIZE); - - /* Set endpoint 0 to 6's TX FIFO length and RAM address */ - for (i = 0; i < USBHS_MAX_EP_COUNT; i++) { - usb_set_txfifo(&udev->regs, i, USBHS_TX_FIFO_SIZE[i]); - } - } -#endif /* USB_FS_CORE */ - - /* make sure all FIFOs are flushed */ - - /* flush all TX FIFOs */ - (void)usb_txfifo_flush (&udev->regs, 0x10U); - - /* flush entire RX FIFO */ - (void)usb_rxfifo_flush (&udev->regs); - - /* clear all pending device interrupts */ - udev->regs.dr->DIEPINTEN = 0U; - udev->regs.dr->DOEPINTEN = 0U; - udev->regs.dr->DAEPINT = 0xFFFFFFFFU; - udev->regs.dr->DAEPINTEN = 0U; - - /* configure all IN/OUT endpoints */ - for (i = 0U; i < udev->bp.num_ep; i++) { - if (udev->regs.er_in[i]->DIEPCTL & DEPCTL_EPEN) { - udev->regs.er_in[i]->DIEPCTL |= DEPCTL_EPD | DEPCTL_SNAK; - } else { - udev->regs.er_in[i]->DIEPCTL = 0U; - } - - /* set IN endpoint transfer length to 0 */ - udev->regs.er_in[i]->DIEPLEN = 0U; - - /* clear all pending IN endpoint interrupts */ - udev->regs.er_in[i]->DIEPINTF = 0xFFU; - - if (udev->regs.er_out[i]->DOEPCTL & DEPCTL_EPEN) { - udev->regs.er_out[i]->DOEPCTL |= DEPCTL_EPD | DEPCTL_SNAK; - } else { - udev->regs.er_out[i]->DOEPCTL = 0U; - } - - /* set OUT endpoint transfer length to 0 */ - udev->regs.er_out[i]->DOEPLEN = 0U; - - /* clear all pending OUT endpoint interrupts */ - udev->regs.er_out[i]->DOEPINTF = 0xFFU; - } - - udev->regs.dr->DIEPINTEN |= DIEPINTEN_EPTXFUDEN; - - (void)usb_devint_enable (udev); - - return USB_OK; -} - -/*! - \brief enable the USB device mode interrupts - \param[in] udev: pointer to USB device - \param[out] none - \retval operation status -*/ -usb_status usb_devint_enable (usb_core_driver *udev) -{ - /* clear any pending USB OTG interrupts */ - udev->regs.gr->GOTGINTF = 0xFFFFFFFFU; - - /* clear any pending interrupts */ - udev->regs.gr->GINTF = 0xBFFFFFFFU; - - /* enable the USB wakeup and suspend interrupts */ - udev->regs.gr->GINTEN = GINTEN_WKUPIE | GINTEN_SPIE; - - /* enable device_mode-related interrupts */ - if ((uint8_t)USB_USE_FIFO == udev->bp.transfer_mode) { - udev->regs.gr->GINTEN |= GINTEN_RXFNEIE; - } - - udev->regs.gr->GINTEN |= GINTEN_RSTIE | GINTEN_ENUMFIE | GINTEN_IEPIE |\ - GINTEN_OEPIE | GINTEN_SOFIE | GINTEN_ISOONCIE | GINTEN_ISOINCIE; - -#ifdef VBUS_SENSING_ENABLED - udev->regs.gr->GINTEN |= GINTEN_SESIE | GINTEN_OTGIE; -#endif /* VBUS_SENSING_ENABLED */ - - return USB_OK; -} - -/*! - \brief active the USB endpoint0 transaction - \param[in] udev: pointer to USB device - \param[in] transc: the USB endpoint0 transaction - \param[out] none - \retval operation status -*/ -usb_status usb_transc0_active (usb_core_driver *udev, usb_transc *transc) -{ - __IO uint32_t *reg_addr = NULL; - - /* get the endpoint number */ - uint8_t ep_num = transc->ep_addr.num; - - if (ep_num) { - /* not endpoint 0 */ - return USB_FAIL; - } - - if (transc->ep_addr.dir) { - reg_addr = &udev->regs.er_in[0]->DIEPCTL; - } else { - reg_addr = &udev->regs.er_out[0]->DOEPCTL; - } - - /* endpoint 0 is activated after USB clock is enabled */ - - *reg_addr &= ~(DEPCTL_MPL | DEPCTL_EPTYPE | DIEPCTL_TXFNUM); - - /* set endpoint 0 maximum packet length */ - *reg_addr |= EP0_MAXLEN[udev->regs.dr->DSTAT & DSTAT_ES]; - - /* activate endpoint */ - *reg_addr |= ((uint32_t)transc->ep_type << 18U) | ((uint32_t)ep_num << 22U) | DEPCTL_SD0PID | DEPCTL_EPACT; - - return USB_OK; -} - -/*! - \brief active the USB transaction - \param[in] udev: pointer to USB device - \param[in] transc: the USB transaction - \param[out] none - \retval status -*/ -usb_status usb_transc_active (usb_core_driver *udev, usb_transc *transc) -{ - __IO uint32_t *reg_addr = NULL; - __IO uint32_t epinten = 0U; - - /* get the endpoint number */ - uint8_t ep_num = transc->ep_addr.num; - - /* enable endpoint interrupt number */ - if (transc->ep_addr.dir) { - reg_addr = &udev->regs.er_in[ep_num]->DIEPCTL; - - epinten = 1U << ep_num; - } else { - reg_addr = &udev->regs.er_out[ep_num]->DOEPCTL; - - epinten = 1U << (16U + ep_num); - } - - /* if the endpoint is not active, need change the endpoint control register */ - if (!(*reg_addr & DEPCTL_EPACT)) { - *reg_addr &= ~(DEPCTL_MPL | DEPCTL_EPTYPE | DIEPCTL_TXFNUM); - - /* set endpoint maximum packet length */ - if (0U == ep_num) { - *reg_addr |= EP0_MAXLEN[udev->regs.dr->DSTAT & DSTAT_ES]; - } else { - *reg_addr |= transc->max_len; - } - - /* activate endpoint */ - *reg_addr |= ((uint32_t)transc->ep_type << 18U) | ((uint32_t)ep_num << 22U) | DEPCTL_SD0PID | DEPCTL_EPACT; - } - -#ifdef USB_HS_DEDICATED_EP1_ENABLED - if ((ep_num == 1U) && (udev->bp.core_enum == USB_CORE_ENUM_HS)) { - udev->regs.dr->DEP1INTEN |= epinten; - } - else -#endif /* USB_HS_DEDICATED_EP1_ENABLED */ - { - /* enable the interrupts for this endpoint */ - udev->regs.dr->DAEPINTEN |= epinten; - } - - return USB_OK; -} - -/*! - \brief deactivate the USB transaction - \param[in] udev: pointer to USB device - \param[in] transc: the USB transaction - \param[out] none - \retval status -*/ -usb_status usb_transc_deactivate(usb_core_driver *udev, usb_transc *transc) -{ - uint32_t epinten = 0U; - - uint8_t ep_num = transc->ep_addr.num; - - /* disable endpoint interrupt number */ - if (transc->ep_addr.dir) { - epinten = 1U << ep_num; - - udev->regs.er_in[ep_num]->DIEPCTL &= ~DEPCTL_EPACT; - } else { - epinten = 1U << (ep_num + 16U); - - udev->regs.er_out[ep_num]->DOEPCTL &= ~DEPCTL_EPACT; - } - -#ifdef USB_HS_DEDICATED_EP1_ENABLED - if ((ep_num == 1U) && (udev->bp.core_enum == USB_CORE_ENUM_HS)) { - udev->regs.dr->DEP1INTEN &= ~epinten; - } - else -#endif /* USB_HS_DEDICATED_EP1_ENABLED */ - { - /* disable the interrupts for this endpoint */ - udev->regs.dr->DAEPINTEN &= ~epinten; - } - - return USB_OK; -} - -/*! - \brief configure USB transaction to start IN transfer - \param[in] udev: pointer to USB device - \param[in] transc: the USB IN transaction - \param[out] none - \retval operation status -*/ -usb_status usb_transc_inxfer (usb_core_driver *udev, usb_transc *transc) -{ - usb_status status = USB_OK; - - uint8_t ep_num = transc->ep_addr.num; - - __IO uint32_t epctl = udev->regs.er_in[ep_num]->DIEPCTL; - __IO uint32_t eplen = udev->regs.er_in[ep_num]->DIEPLEN; - - eplen &= ~(DEPLEN_TLEN | DEPLEN_PCNT); - - /* zero length packet or endpoint 0 */ - if (0U == transc->xfer_len) { - /* set transfer packet count to 1 */ - eplen |= 1U << 19U; - } else { - /* set transfer packet count */ - if (0U == ep_num) { - transc->xfer_len = USB_MIN(transc->xfer_len, transc->max_len); - - eplen |= 1U << 19U; - } else { - eplen |= (((transc->xfer_len - 1U) + transc->max_len) / transc->max_len) << 19U; - } - - /* set endpoint transfer length */ - eplen |= transc->xfer_len; - - if (transc->ep_type == (uint8_t)USB_EPTYPE_ISOC) { - eplen |= DIEPLEN_MCNT & (1U << 29U); - } - } - - udev->regs.er_in[ep_num]->DIEPLEN = eplen; - - if (transc->ep_type == (uint8_t)USB_EPTYPE_ISOC) { - if (((udev->regs.dr->DSTAT & DSTAT_FNRSOF) >> 8U) & 0x01U) { - epctl |= DEPCTL_SEVNFRM; - } else { - epctl |= DEPCTL_SODDFRM; - } - } - - if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { - udev->regs.er_in[ep_num]->DIEPDMAADDR = transc->dma_addr; - } - - /* enable the endpoint and clear the NAK */ - epctl |= DEPCTL_CNAK | DEPCTL_EPEN; - - udev->regs.er_in[ep_num]->DIEPCTL = epctl; - - if ((uint8_t)USB_USE_FIFO == udev->bp.transfer_mode) { - udev->regs.er_in[ep_num]->DIEPCTL = epctl; - - if (transc->ep_type != (uint8_t)USB_EPTYPE_ISOC) { - /* enable the TX FIFO empty interrupt for this endpoint */ - if (transc->xfer_len > 0U) { - udev->regs.dr->DIEPFEINTEN |= 1U << ep_num; - } - } else { - (void)usb_txfifo_write (&udev->regs, transc->xfer_buf, ep_num, (uint16_t)transc->xfer_len); - } - } - - return status; -} - -/*! - \brief configure USB transaction to start OUT transfer - \param[in] udev: pointer to USB device - \param[in] transc: the USB OUT transaction - \param[out] none - \retval status -*/ -usb_status usb_transc_outxfer (usb_core_driver *udev, usb_transc *transc) -{ - usb_status status = USB_OK; - - uint8_t ep_num = transc->ep_addr.num; - - uint32_t epctl = udev->regs.er_out[ep_num]->DOEPCTL; - uint32_t eplen = udev->regs.er_out[ep_num]->DOEPLEN; - - eplen &= ~(DEPLEN_TLEN | DEPLEN_PCNT); - - /* zero length packet or endpoint 0 */ - if ((0U == transc->xfer_len) || (0U == ep_num)) { - /* set the transfer length to max packet size */ - eplen |= transc->max_len; - - /* set the transfer packet count to 1 */ - eplen |= 1U << 19U; - } else { - /* configure the transfer size and packet count as follows: - * pktcnt = N - * xfersize = N * maxpacket - */ - uint32_t packet_count = (transc->xfer_len + transc->max_len - 1U) / transc->max_len; - - eplen |= packet_count << 19U; - eplen |= packet_count * transc->max_len; - -#ifdef INT_HIGH_BW - if (transc->ep_type == (uint8_t)USB_EPTYPE_INTR) { - eplen |= DIEPLEN_MCNT & (3U << 29U); - } -#endif /* INT_HIGH_BW */ - } - - udev->regs.er_out[ep_num]->DOEPLEN = eplen; - - if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { - udev->regs.er_out[ep_num]->DOEPDMAADDR = transc->dma_addr; - } - - if (transc->ep_type == (uint8_t)USB_EPTYPE_ISOC) { - if (transc->frame_num) { - epctl |= DEPCTL_SD1PID; - } else { - epctl |= DEPCTL_SD0PID; - } - } - - /* enable the endpoint and clear the NAK */ - epctl |= DEPCTL_EPEN | DEPCTL_CNAK; - - udev->regs.er_out[ep_num]->DOEPCTL = epctl; - - return status; -} - -/*! - \brief set the USB transaction STALL status - \param[in] udev: pointer to USB device - \param[in] transc: the USB transaction - \param[out] none - \retval status -*/ -usb_status usb_transc_stall (usb_core_driver *udev, usb_transc *transc) -{ - __IO uint32_t *reg_addr = NULL; - - uint8_t ep_num = transc->ep_addr.num; - - if (transc->ep_addr.dir) { - reg_addr = &(udev->regs.er_in[ep_num]->DIEPCTL); - - /* set the endpoint disable bit */ - if (*reg_addr & DEPCTL_EPEN) { - *reg_addr |= DEPCTL_EPD; - } - } else { - /* set the endpoint stall bit */ - reg_addr = &(udev->regs.er_out[ep_num]->DOEPCTL); - } - - /* set the endpoint stall bit */ - *reg_addr |= DEPCTL_STALL; - - return USB_OK; -} - -/*! - \brief clear the USB transaction STALL status - \param[in] udev: pointer to USB device - \param[in] transc: the USB transaction - \param[out] none - \retval operation status -*/ -usb_status usb_transc_clrstall(usb_core_driver *udev, usb_transc *transc) -{ - __IO uint32_t *reg_addr = NULL; - - uint8_t ep_num = transc->ep_addr.num; - - if (transc->ep_addr.dir) { - reg_addr = &(udev->regs.er_in[ep_num]->DIEPCTL); - } else { - reg_addr = &(udev->regs.er_out[ep_num]->DOEPCTL); - } - - /* clear the endpoint stall bits */ - *reg_addr &= ~DEPCTL_STALL; - - /* reset data PID of the periodic endpoints */ - if ((transc->ep_type == (uint8_t)USB_EPTYPE_INTR) || (transc->ep_type == (uint8_t)USB_EPTYPE_BULK)) { - *reg_addr |= DEPCTL_SD0PID; - } - - return USB_OK; -} - -/*! - \brief read device IN endpoint interrupt flag register - \param[in] udev: pointer to USB device - \param[in] ep_num: endpoint number - \param[out] none - \retval interrupt value -*/ -uint32_t usb_iepintr_read (usb_core_driver *udev, uint8_t ep_num) -{ - uint32_t value = 0U, fifoemptymask, commonintmask; - - commonintmask = udev->regs.dr->DIEPINTEN; - fifoemptymask = udev->regs.dr->DIEPFEINTEN; - - /* check FIFO empty interrupt enable bit */ - commonintmask |= ((fifoemptymask >> ep_num) & 0x1U) << 7; - - value = udev->regs.er_in[ep_num]->DIEPINTF & commonintmask; - - return value; -} - -/*! - \brief configures OUT endpoint 0 to receive SETUP packets - \param[in] udev: pointer to USB device - \param[out] none - \retval none -*/ -void usb_ctlep_startout (usb_core_driver *udev) -{ - /* set OUT endpoint 0 receive length to 24 bytes, 1 packet and 3 setup packets */ - udev->regs.er_out[0]->DOEPLEN = DOEP0_TLEN(8U * 3U) | DOEP0_PCNT(1U) | DOEP0_STPCNT(3U); - - if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { - udev->regs.er_out[0]->DOEPDMAADDR = (uint32_t)&udev->dev.control.req; - - /* endpoint enable */ - udev->regs.er_out[0]->DOEPCTL |= DEPCTL_EPACT | DEPCTL_EPEN; - } -} - -/*! - \brief active remote wakeup signaling - \param[in] udev: pointer to USB device - \param[out] none - \retval none -*/ -void usb_rwkup_active (usb_core_driver *udev) -{ - if (udev->dev.pm.dev_remote_wakeup) { - if (udev->regs.dr->DSTAT & DSTAT_SPST) { - if (udev->bp.low_power) { - /* ungate USB core clock */ - *udev->regs.PWRCLKCTL &= ~(PWRCLKCTL_SHCLK | PWRCLKCTL_SUCLK); - } - - /* active remote wakeup signaling */ - udev->regs.dr->DCTL |= DCTL_RWKUP; - - usb_mdelay(5U); - - udev->regs.dr->DCTL &= ~DCTL_RWKUP; - } - } -} - -/*! - \brief active USB core clock - \param[in] udev: pointer to USB device - \param[out] none - \retval none -*/ -void usb_clock_active (usb_core_driver *udev) -{ - if (udev->bp.low_power) { - if (udev->regs.dr->DSTAT & DSTAT_SPST) { - /* ungate USB Core clock */ - *udev->regs.PWRCLKCTL &= ~(PWRCLKCTL_SHCLK | PWRCLKCTL_SUCLK); - } - } -} - -/*! - \brief USB device suspend - \param[in] udev: pointer to USB device - \param[out] none - \retval none -*/ -void usb_dev_suspend (usb_core_driver *udev) -{ - __IO uint32_t devstat = udev->regs.dr->DSTAT; - - if ((udev->bp.low_power) && (devstat & DSTAT_SPST)) { - /* switch-off the USB clocks */ - *udev->regs.PWRCLKCTL |= PWRCLKCTL_SHCLK; - - /* enter DEEP_SLEEP mode with LDO in low power mode */ - pmu_to_deepsleepmode(PMU_LDO_LOWPOWER, WFI_CMD); - } -} - -/*! - \brief stop the device and clean up FIFOs - \param[in] udev: pointer to USB device - \param[out] none - \retval none -*/ -void usb_dev_stop (usb_core_driver *udev) -{ - uint32_t i; - - udev->dev.cur_status = 1U; - - /* clear all interrupt flag and enable bits */ - for (i = 0U; i < udev->bp.num_ep; i++) { - udev->regs.er_in[i]->DIEPINTF = 0xFFU; - udev->regs.er_out[i]->DOEPINTF = 0xFFU; - } - - udev->regs.dr->DIEPINTEN = 0U; - udev->regs.dr->DOEPINTEN = 0U; - udev->regs.dr->DAEPINTEN = 0U; - udev->regs.dr->DAEPINT = 0xFFFFFFFFU; - - /* flush the FIFO */ - (void)usb_rxfifo_flush (&udev->regs); - (void)usb_txfifo_flush (&udev->regs, 0x10U); -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_dev.h b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_dev.h deleted file mode 100644 index 2a47c9ba13..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_dev.h +++ /dev/null @@ -1,197 +0,0 @@ -/*! - \file drv_usb_dev.h - \brief USB device low level driver header file - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __DRV_USB_DEV_H -#define __DRV_USB_DEV_H - -#include "gdusbd_conf.h" -#include "drv_usb_core.h" - -#define EP_IN(x) ((uint8_t)(0x80U | (x))) /*!< device IN endpoint */ -#define EP_OUT(x) ((uint8_t)(x)) /*!< device OUT endpoint */ - -enum usb_ctl_status { - USB_CTL_IDLE = 0U, /*!< USB control transfer idle state */ - USB_CTL_DATA_IN, /*!< USB control transfer data in state */ - USB_CTL_LAST_DATA_IN, /*!< USB control transfer last data in state */ - USB_CTL_DATA_OUT, /*!< USB control transfer data out state */ - USB_CTL_LAST_DATA_OUT, /*!< USB control transfer last data out state */ - USB_CTL_STATUS_IN, /*!< USB control transfer status in state*/ - USB_CTL_STATUS_OUT /*!< USB control transfer status out state */ -}; - -/* static inline function definitions */ - -/*! - \brief configure the USB device to be disconnected - \param[in] udev: pointer to USB device - \param[out] none - \retval operation status -*/ -__STATIC_INLINE void usb_dev_disconnect (usb_core_driver *udev) -{ - udev->regs.dr->DCTL |= DCTL_SD; -} - -/*! - \brief configure the USB device to be connected - \param[in] udev: pointer to USB device - \param[out] none - \retval operation status -*/ -__STATIC_INLINE void usb_dev_connect (usb_core_driver *udev) -{ - udev->regs.dr->DCTL &= ~DCTL_SD; -} - -/*! - \brief set the USB device address - \param[in] udev: pointer to USB device - \param[in] dev_addr: device address for setting - \param[out] none - \retval operation status -*/ -__STATIC_INLINE void usb_devaddr_set (usb_core_driver *udev, uint8_t dev_addr) -{ - udev->regs.dr->DCFG &= ~DCFG_DAR; - udev->regs.dr->DCFG |= (uint32_t)dev_addr << 4U; -} - -/*! - \brief read device all OUT endpoint interrupt register - \param[in] udev: pointer to USB device - \param[out] none - \retval interrupt status -*/ -__STATIC_INLINE uint32_t usb_oepintnum_read (usb_core_driver *udev) -{ - uint32_t value = udev->regs.dr->DAEPINT; - - value &= udev->regs.dr->DAEPINTEN; - - return (value & DAEPINT_OEPITB) >> 16U; -} - -/*! - \brief read device OUT endpoint interrupt flag register - \param[in] udev: pointer to USB device - \param[in] ep_num: endpoint number - \param[out] none - \retval interrupt status -*/ -__STATIC_INLINE uint32_t usb_oepintr_read (usb_core_driver *udev, uint8_t ep_num) -{ - uint32_t value = udev->regs.er_out[ep_num]->DOEPINTF; - - value &= udev->regs.dr->DOEPINTEN; - - return value; -} - -/*! - \brief read device all IN endpoint interrupt register - \param[in] udev: pointer to USB device - \param[out] none - \retval interrupt status -*/ -__STATIC_INLINE uint32_t usb_iepintnum_read (usb_core_driver *udev) -{ - uint32_t value = udev->regs.dr->DAEPINT; - - value &= udev->regs.dr->DAEPINTEN; - - return value & DAEPINT_IEPITB; -} - -/*! - \brief set remote wakeup signaling - \param[in] udev: pointer to USB device - \param[out] none - \retval none -*/ -__STATIC_INLINE void usb_rwkup_set (usb_core_driver *udev) -{ - if (udev->dev.pm.dev_remote_wakeup) { - /* enable remote wakeup signaling */ - udev->regs.dr->DCTL |= DCTL_RWKUP; - } -} - -/*! - \brief reset remote wakeup signaling - \param[in] udev: pointer to USB device - \param[out] none - \retval none -*/ -__STATIC_INLINE void usb_rwkup_reset (usb_core_driver *udev) -{ - if (udev->dev.pm.dev_remote_wakeup) { - /* disable remote wakeup signaling */ - udev->regs.dr->DCTL &= ~DCTL_RWKUP; - } -} - -/* function declarations */ -/* initialize USB core registers for device mode */ -usb_status usb_devcore_init (usb_core_driver *udev); -/* enable the USB device mode interrupts */ -usb_status usb_devint_enable (usb_core_driver *udev); -/* active the USB endpoint 0 transaction */ -usb_status usb_transc0_active (usb_core_driver *udev, usb_transc *transc); -/* active the USB transaction */ -usb_status usb_transc_active (usb_core_driver *udev, usb_transc *transc); -/* deactivate the USB transaction */ -usb_status usb_transc_deactivate (usb_core_driver *udev, usb_transc *transc); -/* configure USB transaction to start IN transfer */ -usb_status usb_transc_inxfer (usb_core_driver *udev, usb_transc *transc); -/* configure USB transaction to start OUT transfer */ -usb_status usb_transc_outxfer (usb_core_driver *udev, usb_transc *transc); -/* set the USB transaction STALL status */ -usb_status usb_transc_stall (usb_core_driver *udev, usb_transc *transc); -/* clear the USB transaction STALL status */ -usb_status usb_transc_clrstall (usb_core_driver *udev, usb_transc *transc); -/* read device IN endpoint interrupt flag register */ -uint32_t usb_iepintr_read (usb_core_driver *udev, uint8_t ep_num); -/* configures OUT endpoint 0 to receive SETUP packets */ -void usb_ctlep_startout (usb_core_driver *udev); -/* active remote wakeup signaling */ -void usb_rwkup_active (usb_core_driver *udev); -/* active USB core clock */ -void usb_clock_active (usb_core_driver *udev); -/* USB device suspend */ -void usb_dev_suspend (usb_core_driver *udev); -/* stop the device and clean up FIFOs */ -void usb_dev_stop (usb_core_driver *udev); - -#endif /* __DRV_USB_DEV_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_host.c b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_host.c deleted file mode 100644 index 873950af1e..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_host.c +++ /dev/null @@ -1,476 +0,0 @@ -/*! - \file drv_usb_host.c - \brief USB host mode low level driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "drv_usb_hw.h" -#include "drv_usb_core.h" -#include "drv_usb_host.h" - -const uint32_t PIPE_DPID[2] = { - PIPE_DPID_DATA0, - PIPE_DPID_DATA1 -}; - -/*! - \brief initializes USB core for host mode - \param[in] udev: pointer to selected USB host - \param[out] none - \retval operation status -*/ -usb_status usb_host_init (usb_core_driver *udev) -{ - uint32_t i = 0U, inten = 0U; - - uint32_t nptxfifolen = 0U; - uint32_t ptxfifolen = 0U; - - /* restart the PHY Clock */ - *udev->regs.PWRCLKCTL = 0U; - - /* initialize host configuration register */ - if (USB_ULPI_PHY == udev->bp.phy_itf) { - usb_phyclock_config (udev, HCTL_30_60MHZ); - } else { - usb_phyclock_config (udev, HCTL_48MHZ); - } - - /* support FS/LS only */ - udev->regs.hr->HCTL &= ~HCTL_SPDFSLS; - - /* configure data FIFOs size */ -#ifdef USB_FS_CORE - if (USB_CORE_ENUM_FS == udev->bp.core_enum) { - /* set Rx FIFO size */ - udev->regs.gr->GRFLEN = USB_RX_FIFO_FS_SIZE; - - /* set non-periodic TX FIFO size and address */ - nptxfifolen |= USB_RX_FIFO_FS_SIZE; - nptxfifolen |= USB_HTX_NPFIFO_FS_SIZE << 16U; - udev->regs.gr->DIEP0TFLEN_HNPTFLEN = nptxfifolen; - - /* set periodic TX FIFO size and address */ - ptxfifolen |= USB_RX_FIFO_FS_SIZE + USB_HTX_NPFIFO_FS_SIZE; - ptxfifolen |= USB_HTX_PFIFO_FS_SIZE << 16U; - udev->regs.gr->HPTFLEN = ptxfifolen; - } -#endif /* USB_FS_CORE */ - -#ifdef USB_HS_CORE - if (USB_CORE_ENUM_HS == udev->bp.core_enum) { - /* set Rx FIFO size */ - udev->regs.gr->GRFLEN = USB_RX_FIFO_HS_SIZE; - - /* set non-periodic Tx FIFO size and address */ - nptxfifolen |= USB_RX_FIFO_HS_SIZE; - nptxfifolen |= USB_HTX_NPFIFO_HS_SIZE << 16U; - udev->regs.gr->DIEP0TFLEN_HNPTFLEN = nptxfifolen; - - /* set periodic Tx FIFO size and address */ - ptxfifolen |= USB_RX_FIFO_HS_SIZE + USB_HTX_NPFIFO_HS_SIZE; - ptxfifolen |= USB_HTX_PFIFO_HS_SIZE << 16U; - udev->regs.gr->HPTFLEN = ptxfifolen; - } -#endif /* USB_HS_CORE */ - -#ifdef USE_OTG_MODE - - /* clear host set HNP enable in the usb_otg control register */ - udev->regs.gr->GOTGCS &= ~GOTGCS_HHNPEN; - -#endif /* USE_OTG_MODE */ - - /* make sure the FIFOs are flushed */ - - /* flush all TX FIFOs in device or host mode */ - usb_txfifo_flush (&udev->regs, 0x10U); - - /* flush the entire Rx FIFO */ - usb_rxfifo_flush (&udev->regs); - - /* disable all interrupts */ - udev->regs.gr->GINTEN = 0U; - - /* clear any pending USB OTG interrupts */ - udev->regs.gr->GOTGINTF = 0xFFFFFFFFU; - - /* enable the USB wakeup and suspend interrupts */ - udev->regs.gr->GINTF = 0xBFFFFFFFU; - - /* clear all pending host channel interrupts */ - for (i = 0U; i < udev->bp.num_pipe; i++) { - udev->regs.pr[i]->HCHINTF = 0xFFFFFFFFU; - udev->regs.pr[i]->HCHINTEN = 0U; - } - -#ifndef USE_OTG_MODE - usb_portvbus_switch (udev, 1U); -#endif /* USE_OTG_MODE */ - - udev->regs.gr->GINTEN = GINTEN_WKUPIE | GINTEN_SPIE; - - /* enable host_mode-related interrupts */ - if (USB_USE_FIFO == udev->bp.transfer_mode) { - inten = GINTEN_RXFNEIE; - } - - inten |= GINTEN_SESIE | GINTEN_HPIE | GINTEN_HCIE | GINTEN_ISOINCIE; - - udev->regs.gr->GINTEN |= inten; - - inten = GINTEN_DISCIE | GINTEN_SOFIE; - - udev->regs.gr->GINTEN &= ~inten; - - return USB_OK; -} - -/*! - \brief control the VBUS to power - \param[in] udev: pointer to selected usb host - \param[in] state: VBUS state - \param[out] none - \retval none -*/ -void usb_portvbus_switch (usb_core_driver *udev, uint8_t state) -{ - uint32_t port = 0U; - - /* enable or disable the external charge pump */ - // usb_vbus_drive (state); - - /* turn on the host port power. */ - port = usb_port_read (udev); - - if (!(port & HPCS_PP) && (1U == state)) { - port |= HPCS_PP; - } - - if ((port & HPCS_PP) && (0U == state)) { - port &= ~HPCS_PP; - } - - *udev->regs.HPCS = port; - - usb_mdelay (200U); -} - -/*! - \brief reset host port - \param[in] udev: pointer to USB device - \param[out] none - \retval operation status -*/ -uint32_t usb_port_reset (usb_core_driver *udev) -{ - __IO uint32_t port = usb_port_read (udev); - - *udev->regs.HPCS = port | HPCS_PRST; - - usb_mdelay(20U); /* see note */ - - *udev->regs.HPCS = port & ~HPCS_PRST; - - usb_mdelay(20U); - - return 1U; -} - -/*! - \brief initialize host pipe - \param[in] udev: pointer to USB device - \param[in] pipe_num: host pipe number which is in (0..7) - \param[out] none - \retval operation status -*/ -usb_status usb_pipe_init (usb_core_driver *udev, uint8_t pipe_num) -{ - usb_status status = USB_OK; - - __IO uint32_t pp_ctl = 0U; - __IO uint32_t pp_inten = HCHINTEN_TFIE; - - usb_pipe *pp = &udev->host.pipe[pipe_num]; - - /* clear old interrupt conditions for this host channel */ - udev->regs.pr[pipe_num]->HCHINTF = 0xFFFFFFFFU; - - if (USB_USE_DMA == udev->bp.transfer_mode) { - pp_inten |= HCHINTEN_DMAERIE; - } - - if (pp->ep.dir) { - pp_inten |= HCHINTEN_BBERIE; - } - - /* enable channel interrupts required for this transfer */ - switch (pp->ep.type) { - case USB_EPTYPE_CTRL: - case USB_EPTYPE_BULK: - pp_inten |= HCHINTEN_STALLIE | HCHINTEN_USBERIE \ - | HCHINTEN_DTERIE | HCHINTEN_NAKIE; - - if (!pp->ep.dir) { - pp_inten |= HCHINTEN_NYETIE; - - if (pp->ping) { - pp_inten |= HCHINTEN_ACKIE; - } - } - break; - - case USB_EPTYPE_INTR: - pp_inten |= HCHINTEN_STALLIE | HCHINTEN_USBERIE | HCHINTEN_DTERIE \ - | HCHINTEN_NAKIE | HCHINTEN_REQOVRIE; - break; - - case USB_EPTYPE_ISOC: - pp_inten |= HCHINTEN_REQOVRIE | HCHINTEN_ACKIE; - - if (pp->ep.dir) { - pp_inten |= HCHINTEN_USBERIE; - } - break; - - default: - break; - } - - udev->regs.pr[pipe_num]->HCHINTEN = pp_inten; - - /* enable the top level host channel interrupt */ - udev->regs.hr->HACHINTEN |= 1U << pipe_num; - - /* make sure host channel interrupts are enabled */ - udev->regs.gr->GINTEN |= GINTEN_HCIE; - - /* program the host channel control register */ - pp_ctl |= PIPE_CTL_DAR(pp->dev_addr); - pp_ctl |= PIPE_CTL_EPNUM(pp->ep.num); - pp_ctl |= PIPE_CTL_EPDIR(pp->ep.dir); - pp_ctl |= PIPE_CTL_EPTYPE(pp->ep.type); - pp_ctl |= PIPE_CTL_LSD(pp->dev_speed == PORT_SPEED_LOW); - - pp_ctl |= pp->ep.mps; - pp_ctl |= ((uint32_t)(pp->ep.type == USB_EPTYPE_INTR) << 29U) & HCHCTL_ODDFRM; - - udev->regs.pr[pipe_num]->HCHCTL = pp_ctl; - - return status; -} - -/*! - \brief prepare host channel for transferring packets - \param[in] udev: pointer to USB device - \param[in] pipe_num: host pipe number which is in (0..7) - \param[out] none - \retval operation status -*/ -usb_status usb_pipe_xfer (usb_core_driver *udev, uint8_t pipe_num) -{ - usb_status status = USB_OK; - - uint16_t dword_len = 0U; - uint16_t packet_count = 0U; - - __IO uint32_t pp_ctl = 0U; - - usb_pipe *pp = &udev->host.pipe[pipe_num]; - - uint16_t max_packet_len = pp->ep.mps; - - /* compute the expected number of packets associated to the transfer */ - if (pp->xfer_len > 0U) { - packet_count = (uint16_t)((pp->xfer_len + max_packet_len - 1U) / max_packet_len); - - if (packet_count > HC_MAX_PACKET_COUNT) { - packet_count = HC_MAX_PACKET_COUNT; - pp->xfer_len = (uint16_t)(packet_count * max_packet_len); - } - } else { - packet_count = 1U; - } - - if (pp->ep.dir) { - pp->xfer_len = (uint16_t)(packet_count * max_packet_len); - } - - /* initialize the host channel transfer information */ - udev->regs.pr[pipe_num]->HCHLEN = pp->xfer_len | pp->DPID | PIPE_XFER_PCNT(packet_count); - - if (USB_USE_DMA == udev->bp.transfer_mode) { - udev->regs.pr[pipe_num]->HCHDMAADDR = (unsigned int)pp->xfer_buf; - } - - pp_ctl = udev->regs.pr[pipe_num]->HCHCTL; - - if (usb_frame_even(udev)) { - pp_ctl |= HCHCTL_ODDFRM; - } else { - pp_ctl &= ~HCHCTL_ODDFRM; - } - - /* set host channel enabled */ - pp_ctl |= HCHCTL_CEN; - pp_ctl &= ~HCHCTL_CDIS; - - udev->regs.pr[pipe_num]->HCHCTL = pp_ctl; - - if (USB_USE_FIFO == udev->bp.transfer_mode) { - if ((0U == pp->ep.dir) && (pp->xfer_len > 0U)) { - switch (pp->ep.type) { - /* non-periodic transfer */ - case USB_EPTYPE_CTRL: - case USB_EPTYPE_BULK: - dword_len = (uint16_t)((pp->xfer_len + 3U) / 4U); - - /* check if there is enough space in FIFO space */ - if (dword_len > (udev->regs.gr->HNPTFQSTAT & HNPTFQSTAT_NPTXFS)) { - /* need to process data in nptxfempty interrupt */ - udev->regs.gr->GINTEN |= GINTEN_NPTXFEIE; - } - break; - - /* periodic transfer */ - case USB_EPTYPE_INTR: - case USB_EPTYPE_ISOC: - dword_len = (uint16_t)((pp->xfer_len + 3U) / 4U); - - /* check if there is enough space in fifo space */ - if (dword_len > (udev->regs.hr->HPTFQSTAT & HPTFQSTAT_PTXFS)) { - /* need to process data in ptxfempty interrupt */ - udev->regs.gr->GINTEN |= GINTEN_PTXFEIE; - } - break; - - default: - break; - } - - /* write packet into the TX fifo. */ - usb_txfifo_write (&udev->regs, pp->xfer_buf, pipe_num, (uint16_t)pp->xfer_len); - } - } - - return status; -} - -/*! - \brief halt pipe - \param[in] udev: pointer to USB device - \param[in] pipe_num: host pipe number which is in (0..7) - \param[out] none - \retval operation status -*/ -usb_status usb_pipe_halt (usb_core_driver *udev, uint8_t pipe_num) -{ - __IO uint32_t pp_ctl = udev->regs.pr[pipe_num]->HCHCTL; - - uint8_t ep_type = (uint8_t)((pp_ctl & HCHCTL_EPTYPE) >> 18U); - - pp_ctl |= HCHCTL_CEN | HCHCTL_CDIS; - - switch (ep_type) { - case USB_EPTYPE_CTRL: - case USB_EPTYPE_BULK: - if (0U == (udev->regs.gr->HNPTFQSTAT & HNPTFQSTAT_NPTXFS)) { - pp_ctl &= ~HCHCTL_CEN; - } - break; - - case USB_EPTYPE_INTR: - case USB_EPTYPE_ISOC: - if (0U == (udev->regs.hr->HPTFQSTAT & HPTFQSTAT_PTXFS)) { - pp_ctl &= ~HCHCTL_CEN; - } - break; - - default: - break; - } - - udev->regs.pr[pipe_num]->HCHCTL = pp_ctl; - - return USB_OK; -} - -/*! - \brief configure host pipe to do ping operation - \param[in] udev: pointer to USB device - \param[in] pipe_num: host pipe number which is in (0..7) - \param[out] none - \retval operation status -*/ -usb_status usb_pipe_ping (usb_core_driver *udev, uint8_t pipe_num) -{ - uint32_t pp_ctl = 0U; - - udev->regs.pr[pipe_num]->HCHLEN = HCHLEN_PING | (HCHLEN_PCNT & (1U << 19U)); - - pp_ctl = udev->regs.pr[pipe_num]->HCHCTL; - - pp_ctl |= HCHCTL_CEN; - pp_ctl &= ~HCHCTL_CDIS; - - udev->regs.pr[pipe_num]->HCHCTL = pp_ctl; - - return USB_OK; -} - -/*! - \brief stop the USB host and clean up FIFO - \param[in] udev: pointer to USB device - \param[out] none - \retval none -*/ -void usb_host_stop (usb_core_driver *udev) -{ - uint32_t i; - __IO uint32_t pp_ctl = 0U; - - udev->regs.hr->HACHINTEN = 0x0U; - udev->regs.hr->HACHINT = 0xFFFFFFFFU; - - /* flush out any leftover queued requests. */ - for (i = 0U; i < udev->bp.num_pipe; i++) { - pp_ctl = udev->regs.pr[i]->HCHCTL; - - pp_ctl &= ~(HCHCTL_CEN | HCHCTL_EPDIR); - pp_ctl |= HCHCTL_CDIS; - - udev->regs.pr[i]->HCHCTL = pp_ctl; - } - - /* flush the FIFO */ - usb_rxfifo_flush (&udev->regs); - usb_txfifo_flush (&udev->regs, 0x10U); -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_host.h b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_host.h deleted file mode 100644 index 93db50a88f..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_host.h +++ /dev/null @@ -1,123 +0,0 @@ -/*! - \file drv_usb_host.h - \brief USB host mode low level driver header file - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __DRV_USB_HOST_H -#define __DRV_USB_HOST_H - -#include "drv_usb_regs.h" -#include "usb_ch9_std.h" -#include "drv_usb_core.h" - -typedef enum _usb_pipe_mode -{ - PIPE_PERIOD = 0U, - PIPE_NON_PERIOD = 1U -} usb_pipe_mode; - -/*! - \brief get USB even frame - \param[in] udev: pointer to USB device - \param[out] none - \retval none -*/ -__STATIC_INLINE uint8_t usb_frame_even (usb_core_driver *udev) -{ - return (uint8_t)!(udev->regs.hr->HFINFR & 0x01U); -} - -/*! - \brief configure USB clock of PHY - \param[in] udev: pointer to USB device - \param[in] clock: PHY clock - \param[out] none - \retval none -*/ -__STATIC_INLINE void usb_phyclock_config (usb_core_driver *udev, uint8_t clock) -{ - udev->regs.hr->HCTL &= ~HCTL_CLKSEL; - udev->regs.hr->HCTL |= clock; -} - -/*! - \brief read USB port - \param[in] udev: pointer to USB device - \param[out] none - \retval port status -*/ -__STATIC_INLINE uint32_t usb_port_read (usb_core_driver *udev) -{ - return *udev->regs.HPCS & ~(HPCS_PE | HPCS_PCD | HPCS_PEDC); -} - -/*! - \brief get USB current speed - \param[in] udev: pointer to USB device - \param[out] none - \retval USB current speed -*/ -__STATIC_INLINE uint32_t usb_curspeed_get (usb_core_driver *udev) -{ - return *udev->regs.HPCS & HPCS_PS; -} - -/*! - \brief get USB current frame - \param[in] udev: pointer to USB device - \param[out] none - \retval USB current frame -*/ -__STATIC_INLINE uint32_t usb_curframe_get (usb_core_driver *udev) -{ - return (udev->regs.hr->HFINFR & 0xFFFFU); -} - -/* function declarations */ -/* initializes USB core for host mode */ -usb_status usb_host_init (usb_core_driver *udev); -/* control the VBUS to power */ -void usb_portvbus_switch (usb_core_driver *udev, uint8_t state); -/* reset host port */ -uint32_t usb_port_reset (usb_core_driver *udev); -/* initialize host pipe */ -usb_status usb_pipe_init (usb_core_driver *udev, uint8_t pipe_num); -/* prepare host pipe for transferring packets */ -usb_status usb_pipe_xfer (usb_core_driver *udev, uint8_t pipe_num); -/* halt host pipe */ -usb_status usb_pipe_halt (usb_core_driver *udev, uint8_t pipe_num); -/* configure host pipe to do ping operation */ -usb_status usb_pipe_ping (usb_core_driver *udev, uint8_t pipe_num); -/* stop the USB host and clean up FIFO */ -void usb_host_stop (usb_core_driver *udev); - -#endif /* __DRV_USB_HOST_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_hw.h b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_hw.h deleted file mode 100644 index 9bf7ad8d27..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_hw.h +++ /dev/null @@ -1,73 +0,0 @@ -/*! - \file drv_usb_hw.h - \brief usb hardware configuration header file - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __DRV_USB_HW_H -#define __DRV_USB_HW_H - -#include "gdusb_conf.h" -#include "wiring_time.h" -/* function declarations */ -/* configure USB clock */ -void usb_rcu_config (void); -/* configure USB data line gpio */ -void usb_gpio_config (void); -/* configure USB interrupt */ -void usb_intr_config (void); -/* initializes delay unit using Timer2 */ -void usb_timer_init (void); -/* delay in micro seconds */ -// void usb_udelay (const uint32_t usec); -#define usb_udelay(x) delay(1) -/* delay in milliseconds */ -#define usb_mdelay(x) delay(x) -// void usb_mdelay (const uint32_t msec); -/* configures system clock after wakeup from STOP mode */ -void system_clk_config_stop(void); - -/* configure the CTC peripheral */ -#ifdef USE_IRC48M - void ctc_config(void); -#endif /* USE_IRC48M */ - -#ifdef USE_HOST_MODE - void systick_config(void); - - /* configure USB VBus */ - void usb_vbus_config (void); - - /* drive USB VBus */ - void usb_vbus_drive (uint8_t State); -#endif /* USE_HOST_MODE */ - -#endif /* __DRV_USB_HW_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_regs.h b/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_regs.h deleted file mode 100644 index 19c9c200bc..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/drv_usb_regs.h +++ /dev/null @@ -1,663 +0,0 @@ -/*! - \file drv_usb_regs.h - \brief USB cell registers definition and handle macros - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __DRV_USB_REGS_H -#define __DRV_USB_REGS_H - -#include "gdusb_conf.h" - - -#define USBHS_REG_BASE 0x40040000L /*!< base address of USBHS registers */ -#define USBFS_REG_BASE 0x50000000L /*!< base address of USBFS registers */ - -#define USBFS_MAX_TX_FIFOS 15U /*!< FIFO number */ - -#define USBFS_MAX_PACKET_SIZE 64U /*!< USBFS max packet size */ -#define USBFS_MAX_CHANNEL_COUNT 8U /*!< USBFS host channel count */ -#define USBFS_MAX_EP_COUNT 4U /*!< USBFS device endpoint count */ -#define USBFS_MAX_FIFO_WORDLEN 320U /*!< USBFS max fifo size in words */ - -#define USBHS_MAX_PACKET_SIZE 512U /*!< USBHS max packet size */ -#define USBHS_MAX_CHANNEL_COUNT 12U /*!< USBHS host channel count */ -#define USBHS_MAX_EP_COUNT 6U /*!< USBHS device endpoint count */ -#define USBHS_MAX_FIFO_WORDLEN 1280U /*!< USBHS max fifo size in words */ - -#define USB_DATA_FIFO_OFFSET 0x1000U /*!< USB data fifo offset */ -#define USB_DATA_FIFO_SIZE 0x1000U /*!< USB data fifo size */ - -typedef enum -{ - USB_CORE_ENUM_HS = 0, /*!< USB core type is HS */ - USB_CORE_ENUM_FS = 1 /*!< USB core type is FS */ -} usb_core_enum; - -enum USB_SPEED { - USB_SPEED_UNKNOWN = 0, /*!< USB speed unknown */ - USB_SPEED_LOW, /*!< USB speed low */ - USB_SPEED_FULL, /*!< USB speed full */ - USB_SPEED_HIGH, /*!< USB speed high */ -}; - -enum usb_reg_offset { - USB_REG_OFFSET_CORE = 0x0000U, /*!< global OTG control and status register */ - USB_REG_OFFSET_DEV = 0x0800U, /*!< device mode control and status registers */ - USB_REG_OFFSET_EP = 0x0020U, - USB_REG_OFFSET_EP_IN = 0x0900U, /*!< device IN endpoint 0 control register */ - USB_REG_OFFSET_EP_OUT = 0x0B00U, /*!< device OUT endpoint 0 control register */ - USB_REG_OFFSET_HOST = 0x0400U, /*!< host control register */ - USB_REG_OFFSET_CH = 0x0020U, - USB_REG_OFFSET_PORT = 0x0440U, /*!< host port control and status register */ - USB_REG_OFFSET_CH_INOUT = 0x0500U, /*!< Host channel-x control registers */ - USB_REG_OFFSET_PWRCLKCTL = 0x0E00U, /*!< power and clock register */ -}; - -typedef struct -{ - __IO uint32_t GOTGCS; /*!< USB global OTG control and status register 000h */ - __IO uint32_t GOTGINTF; /*!< USB global OTG interrupt flag register 004h */ - __IO uint32_t GAHBCS; /*!< USB global AHB control and status register 008h */ - __IO uint32_t GUSBCS; /*!< USB global USB control and status register 00Ch */ - __IO uint32_t GRSTCTL; /*!< USB global reset control register 010h */ - __IO uint32_t GINTF; /*!< USB global interrupt flag register 014h */ - __IO uint32_t GINTEN; /*!< USB global interrupt enable register 018h */ - __IO uint32_t GRSTATR; /*!< USB receive status debug read register 01Ch */ - __IO uint32_t GRSTATP; /*!< USB receive status and pop register 020h */ - __IO uint32_t GRFLEN; /*!< USB global receive FIFO length register 024h */ - __IO uint32_t DIEP0TFLEN_HNPTFLEN; /*!< USB device IN endpoint 0/host non-periodic transmit FIFO length register 028h */ - __IO uint32_t HNPTFQSTAT; /*!< USB host non-periodic FIFO/queue status register 02Ch */ - uint32_t Reserved30[2]; /*!< Reserved 030h */ - __IO uint32_t GCCFG; /*!< USB global core configuration register 038h */ - __IO uint32_t CID; /*!< USB core ID register 03Ch */ - uint32_t Reserved40[48]; /*!< Reserved 040h-0FFh */ - __IO uint32_t HPTFLEN; /*!< USB host periodic transmit FIFO length register 100h */ - __IO uint32_t DIEPTFLEN[15]; /*!< USB device IN endpoint transmit FIFO length register 104h */ -} usb_gr; - - -typedef struct -{ - __IO uint32_t HCTL; /*!< USB host control register 400h */ - __IO uint32_t HFT; /*!< USB host frame interval register 404h */ - __IO uint32_t HFINFR; /*!< USB host frame information remaining register 408h */ - uint32_t Reserved40C; /*!< Reserved 40Ch */ - __IO uint32_t HPTFQSTAT; /*!< USB host periodic transmit FIFO/queue status register 410h */ - __IO uint32_t HACHINT; /*!< USB host all channels interrupt register 414h */ - __IO uint32_t HACHINTEN; /*!< USB host all channels interrupt enable register 418h */ -} usb_hr; - -typedef struct -{ - __IO uint32_t HCHCTL; /*!< USB host channel control register 500h */ - __IO uint32_t HCHSTCTL; /*!< Reserved 504h */ - __IO uint32_t HCHINTF; /*!< USB host channel interrupt flag register 508h */ - __IO uint32_t HCHINTEN; /*!< USB host channel interrupt enable register 50Ch */ - __IO uint32_t HCHLEN; /*!< USB host channel transfer length register 510h */ - __IO uint32_t HCHDMAADDR; /*!< USB host channel-x DMA address register 514h*/ - uint32_t Reserved[2]; -} usb_pr; - -typedef struct -{ - __IO uint32_t DCFG; /*!< USB device configuration register 800h */ - __IO uint32_t DCTL; /*!< USB device control register 804h */ - __IO uint32_t DSTAT; /*!< USB device status register 808h */ - uint32_t Reserved0C; /*!< Reserved 80Ch */ - __IO uint32_t DIEPINTEN; /*!< USB device IN endpoint common interrupt enable register 810h */ - __IO uint32_t DOEPINTEN; /*!< USB device OUT endpoint common interrupt enable register 814h */ - __IO uint32_t DAEPINT; /*!< USB device all endpoints interrupt register 818h */ - __IO uint32_t DAEPINTEN; /*!< USB device all endpoints interrupt enable register 81Ch */ - uint32_t Reserved20; /*!< Reserved 820h */ - uint32_t Reserved24; /*!< Reserved 824h */ - __IO uint32_t DVBUSDT; /*!< USB device VBUS discharge time register 828h */ - __IO uint32_t DVBUSPT; /*!< USB device VBUS pulsing time register 82Ch */ - __IO uint32_t DTHRCTL; /*!< device threshold control 830h */ - __IO uint32_t DIEPFEINTEN; /*!< USB Device IN endpoint FIFO empty interrupt enable register 834h */ - __IO uint32_t DEP1INT; /*!< USB device endpoint 1 interrupt register 838h */ - __IO uint32_t DEP1INTEN; /*!< USB device endpoint 1 interrupt enable register 83Ch */ - uint32_t Reserved40; /*!< Reserved 840h */ - __IO uint32_t DIEP1INTEN; /*!< USB device IN endpoint-1 interrupt enable register 844h */ - uint32_t Reserved48[15]; /*!< Reserved 848-880h */ - __IO uint32_t DOEP1INTEN; /*!< USB device OUT endpoint-1 interrupt enable register 884h */ -} usb_dr; - -typedef struct -{ - __IO uint32_t DIEPCTL; /*!< USB device IN endpoint control register 900h + (EpNum * 20h) + 00h */ - uint32_t Reserved04; /*!< Reserved 900h + (EpNum * 20h) + 04h */ - __IO uint32_t DIEPINTF; /*!< USB device IN endpoint interrupt flag register 900h + (EpNum * 20h) + 08h */ - uint32_t Reserved0C; /*!< Reserved 900h + (EpNum * 20h) + 0Ch */ - __IO uint32_t DIEPLEN; /*!< USB device IN endpoint transfer length register 900h + (EpNum * 20h) + 10h */ - __IO uint32_t DIEPDMAADDR; /*!< Device IN endpoint-x DMA address register 900h + (EpNum * 20h) + 14h */ - __IO uint32_t DIEPTFSTAT; /*!< USB device IN endpoint transmit FIFO status register 900h + (EpNum * 20h) + 18h */ -} usb_erin; - -typedef struct -{ - __IO uint32_t DOEPCTL; /*!< USB device IN endpoint control register B00h + (EpNum * 20h) + 00h */ - uint32_t Reserved04; /*!< Reserved B00h + (EpNum * 20h) + 04h */ - __IO uint32_t DOEPINTF; /*!< USB device IN endpoint interrupt flag register B00h + (EpNum * 20h) + 08h */ - uint32_t Reserved0C; /*!< Reserved B00h + (EpNum * 20h) + 0Ch */ - __IO uint32_t DOEPLEN; /*!< USB device IN endpoint transfer length register B00h + (EpNum * 20h) + 10h */ - __IO uint32_t DOEPDMAADDR; /*!< Device OUT endpoint-x DMA address register B00h + (EpNum * 20h) + 0Ch */ -} usb_erout; - -typedef struct _usb_regs -{ - usb_gr *gr; /*!< USBFS global registers */ - usb_dr *dr; /*!< Device control and status registers */ - usb_hr *hr; /*!< Host control and status registers */ - usb_erin *er_in[6]; /*!< USB device IN endpoint register */ - usb_erout *er_out[6]; /*!< USB device OUT endpoint register */ - usb_pr *pr[15]; /*!< USB Host channel-x control register */ - - __IO uint32_t *HPCS; /*!< USB host port control and status register */ - __IO uint32_t *DFIFO[USBFS_MAX_TX_FIFOS]; - __IO uint32_t *PWRCLKCTL; /*!< USB power and clock control register */ -} usb_core_regs; - -/* global OTG control and status register bits definitions */ -#define GOTGCS_BSV BIT(19) /*!< B-Session Valid */ -#define GOTGCS_ASV BIT(18) /*!< A-session valid */ -#define GOTGCS_DI BIT(17) /*!< debounce interval */ -#define GOTGCS_CIDPS BIT(16) /*!< id pin status */ -#define GOTGCS_DHNPEN BIT(11) /*!< device HNP enable */ -#define GOTGCS_HHNPEN BIT(10) /*!< host HNP enable */ -#define GOTGCS_HNPREQ BIT(9) /*!< HNP request */ -#define GOTGCS_HNPS BIT(8) /*!< HNP successes */ -#define GOTGCS_SRPREQ BIT(1) /*!< SRP request */ -#define GOTGCS_SRPS BIT(0) /*!< SRP successes */ - -/* global OTG interrupt flag register bits definitions */ -#define GOTGINTF_DF BIT(19) /*!< debounce finish */ -#define GOTGINTF_ADTO BIT(18) /*!< A-device timeout */ -#define GOTGINTF_HNPDET BIT(17) /*!< host negotiation request detected */ -#define GOTGINTF_HNPEND BIT(9) /*!< HNP end */ -#define GOTGINTF_SRPEND BIT(8) /*!< SRP end */ -#define GOTGINTF_SESEND BIT(2) /*!< session end */ - -/* global AHB control and status register bits definitions */ -#define GAHBCS_PTXFTH BIT(8) /*!< periodic Tx FIFO threshold */ -#define GAHBCS_TXFTH BIT(7) /*!< tx FIFO threshold */ -#define GAHBCS_DMAEN BIT(5) /*!< DMA function Enable */ -#define GAHBCS_BURST BITS(1, 4) /*!< the AHB burst type used by DMA */ -#define GAHBCS_GINTEN BIT(0) /*!< global interrupt enable */ - -/* global USB control and status register bits definitions */ -#define GUSBCS_FDM BIT(30) /*!< force device mode */ -#define GUSBCS_FHM BIT(29) /*!< force host mode */ -#define GUSBCS_ULPIEOI BIT(21) /*!< ULPI external over-current indicator */ -#define GUSBCS_ULPIEVD BIT(20) /*!< ULPI external VBUS driver */ -#define GUSBCS_UTT BITS(10, 13) /*!< USB turnaround time */ -#define GUSBCS_HNPCEN BIT(9) /*!< HNP capability enable */ -#define GUSBCS_SRPCEN BIT(8) /*!< SRP capability enable */ -#define GUSBCS_EMBPHY BIT(6) /*!< embedded PHY selected */ -#define GUSBCS_TOC BITS(0, 2) /*!< timeout calibration */ - -/* global reset control register bits definitions */ -#define GRSTCTL_DMAIDL BIT(31) /*!< DMA idle state */ -#define GRSTCTL_DMABSY BIT(30) /*!< DMA busy */ -#define GRSTCTL_TXFNUM BITS(6, 10) /*!< tx FIFO number */ -#define GRSTCTL_TXFF BIT(5) /*!< tx FIFO flush */ -#define GRSTCTL_RXFF BIT(4) /*!< rx FIFO flush */ -#define GRSTCTL_HFCRST BIT(2) /*!< host frame counter reset */ -#define GRSTCTL_HCSRST BIT(1) /*!< HCLK soft reset */ -#define GRSTCTL_CSRST BIT(0) /*!< core soft reset */ - -/* global interrupt flag register bits definitions */ -#define GINTF_WKUPIF BIT(31) /*!< wakeup interrupt flag */ -#define GINTF_SESIF BIT(30) /*!< session interrupt flag */ -#define GINTF_DISCIF BIT(29) /*!< disconnect interrupt flag */ -#define GINTF_IDPSC BIT(28) /*!< id pin status change */ -#define GINTF_PTXFEIF BIT(26) /*!< periodic tx FIFO empty interrupt flag */ -#define GINTF_HCIF BIT(25) /*!< host channels interrupt flag */ -#define GINTF_HPIF BIT(24) /*!< host port interrupt flag */ -#define GINTF_PXNCIF BIT(21) /*!< periodic transfer not complete interrupt flag */ -#define GINTF_ISOONCIF BIT(21) /*!< isochronous OUT transfer not complete interrupt flag */ -#define GINTF_ISOINCIF BIT(20) /*!< isochronous IN transfer not complete interrupt flag */ -#define GINTF_OEPIF BIT(19) /*!< OUT endpoint interrupt flag */ -#define GINTF_IEPIF BIT(18) /*!< IN endpoint interrupt flag */ -#define GINTF_EOPFIF BIT(15) /*!< end of periodic frame interrupt flag */ -#define GINTF_ISOOPDIF BIT(14) /*!< isochronous OUT packet dropped interrupt flag */ -#define GINTF_ENUMFIF BIT(13) /*!< enumeration finished */ -#define GINTF_RST BIT(12) /*!< USB reset */ -#define GINTF_SP BIT(11) /*!< USB suspend */ -#define GINTF_ESP BIT(10) /*!< early suspend */ -#define GINTF_GONAK BIT(7) /*!< global OUT NAK effective */ -#define GINTF_GNPINAK BIT(6) /*!< global IN non-periodic NAK effective */ -#define GINTF_NPTXFEIF BIT(5) /*!< non-periodic tx FIFO empty interrupt flag */ -#define GINTF_RXFNEIF BIT(4) /*!< rx FIFO non-empty interrupt flag */ -#define GINTF_SOF BIT(3) /*!< start of frame */ -#define GINTF_OTGIF BIT(2) /*!< OTG interrupt flag */ -#define GINTF_MFIF BIT(1) /*!< mode fault interrupt flag */ -#define GINTF_COPM BIT(0) /*!< current operation mode */ - -/* global interrupt enable register bits definitions */ -#define GINTEN_WKUPIE BIT(31) /*!< wakeup interrupt enable */ -#define GINTEN_SESIE BIT(30) /*!< session interrupt enable */ -#define GINTEN_DISCIE BIT(29) /*!< disconnect interrupt enable */ -#define GINTEN_IDPSCIE BIT(28) /*!< id pin status change interrupt enable */ -#define GINTEN_PTXFEIE BIT(26) /*!< periodic tx FIFO empty interrupt enable */ -#define GINTEN_HCIE BIT(25) /*!< host channels interrupt enable */ -#define GINTEN_HPIE BIT(24) /*!< host port interrupt enable */ -#define GINTEN_IPXIE BIT(21) /*!< periodic transfer not complete interrupt enable */ -#define GINTEN_ISOONCIE BIT(21) /*!< isochronous OUT transfer not complete interrupt enable */ -#define GINTEN_ISOINCIE BIT(20) /*!< isochronous IN transfer not complete interrupt enable */ -#define GINTEN_OEPIE BIT(19) /*!< OUT endpoints interrupt enable */ -#define GINTEN_IEPIE BIT(18) /*!< IN endpoints interrupt enable */ -#define GINTEN_EOPFIE BIT(15) /*!< end of periodic frame interrupt enable */ -#define GINTEN_ISOOPDIE BIT(14) /*!< isochronous OUT packet dropped interrupt enable */ -#define GINTEN_ENUMFIE BIT(13) /*!< enumeration finish enable */ -#define GINTEN_RSTIE BIT(12) /*!< USB reset interrupt enable */ -#define GINTEN_SPIE BIT(11) /*!< USB suspend interrupt enable */ -#define GINTEN_ESPIE BIT(10) /*!< early suspend interrupt enable */ -#define GINTEN_GONAKIE BIT(7) /*!< global OUT NAK effective interrupt enable */ -#define GINTEN_GNPINAKIE BIT(6) /*!< global non-periodic IN NAK effective interrupt enable */ -#define GINTEN_NPTXFEIE BIT(5) /*!< non-periodic Tx FIFO empty interrupt enable */ -#define GINTEN_RXFNEIE BIT(4) /*!< receive FIFO non-empty interrupt enable */ -#define GINTEN_SOFIE BIT(3) /*!< start of frame interrupt enable */ -#define GINTEN_OTGIE BIT(2) /*!< OTG interrupt enable */ -#define GINTEN_MFIE BIT(1) /*!< mode fault interrupt enable */ - -/* global receive status read and pop register bits definitions */ -#define GRSTATRP_RPCKST BITS(17, 20) /*!< received packet status */ -#define GRSTATRP_DPID BITS(15, 16) /*!< data PID */ -#define GRSTATRP_BCOUNT BITS(4, 14) /*!< byte count */ -#define GRSTATRP_CNUM BITS(0, 3) /*!< channel number */ -#define GRSTATRP_EPNUM BITS(0, 3) /*!< endpoint number */ - -/* global receive FIFO length register bits definitions */ -#define GRFLEN_RXFD BITS(0, 15) /*!< rx FIFO depth */ - -/* host non-periodic transmit FIFO length register bits definitions */ -#define HNPTFLEN_HNPTXFD BITS(16, 31) /*!< non-periodic Tx FIFO depth */ -#define HNPTFLEN_HNPTXRSAR BITS(0, 15) /*!< non-periodic Tx RAM start address */ - -/** - * @brief USB IN endpoint 0 transmit FIFO length register bits definitions - */ -#define DIEP0TFLEN_IEP0TXFD BITS(16, 31) /*!< IN Endpoint 0 Tx FIFO depth */ -#define DIEP0TFLEN_IEP0TXRSAR BITS(0, 15) /*!< IN Endpoint 0 TX RAM start address */ - -/* host non-periodic transmit FIFO/queue status register bits definitions */ -#define HNPTFQSTAT_NPTXRQTOP BITS(24, 30) /*!< top entry of the non-periodic Tx request queue */ -#define HNPTFQSTAT_NPTXRQS BITS(16, 23) /*!< non-periodic Tx request queue space */ -#define HNPTFQSTAT_NPTXFS BITS(0, 15) /*!< non-periodic Tx FIFO space */ -#define HNPTFQSTAT_CNUM BITS(27, 30) /*!< channel number*/ -#define HNPTFQSTAT_EPNUM BITS(27, 30) /*!< endpoint number */ -#define HNPTFQSTAT_TYPE BITS(25, 26) /*!< token type */ -#define HNPTFQSTAT_TMF BIT(24) /*!< terminate flag */ - -/* global core configuration register bits definitions */ -#define GCCFG_VBUSIG BIT(21) /*!< vbus ignored */ -#define GCCFG_SOFOEN BIT(20) /*!< SOF output enable */ -#define GCCFG_VBUSBCEN BIT(19) /*!< the VBUS B-device comparer enable */ -#define GCCFG_VBUSACEN BIT(18) /*!< the VBUS A-device comparer enable */ -#define GCCFG_PWRON BIT(16) /*!< power on */ - -/* core ID register bits definitions */ -#define CID_CID BITS(0, 31) /*!< core ID */ - -/* host periodic transmit FIFO length register bits definitions */ -#define HPTFLEN_HPTXFD BITS(16, 31) /*!< host periodic Tx FIFO depth */ -#define HPTFLEN_HPTXFSAR BITS(0, 15) /*!< host periodic Tx RAM start address */ - -/* device IN endpoint transmit FIFO length register bits definitions */ -#define DIEPTFLEN_IEPTXFD BITS(16, 31) /*!< IN endpoint Tx FIFO x depth */ -#define DIEPTFLEN_IEPTXRSAR BITS(0, 15) /*!< IN endpoint FIFOx Tx x RAM start address */ - -/* host control register bits definitions */ -#define HCTL_SPDFSLS BIT(2) /*!< speed limited to FS and LS */ -#define HCTL_CLKSEL BITS(0, 1) /*!< clock select for USB clock */ - -/* host frame interval register bits definitions */ -#define HFT_FRI BITS(0, 15) /*!< frame interval */ - -/* host frame information remaining register bits definitions */ -#define HFINFR_FRT BITS(16, 31) /*!< frame remaining time */ -#define HFINFR_FRNUM BITS(0, 15) /*!< frame number */ - -/* host periodic transmit FIFO/queue status register bits definitions */ -#define HPTFQSTAT_PTXREQT BITS(24, 31) /*!< top entry of the periodic Tx request queue */ -#define HPTFQSTAT_PTXREQS BITS(16, 23) /*!< periodic Tx request queue space */ -#define HPTFQSTAT_PTXFS BITS(0, 15) /*!< periodic Tx FIFO space */ -#define HPTFQSTAT_OEFRM BIT(31) /*!< odd/eveb frame */ -#define HPTFQSTAT_CNUM BITS(27, 30) /*!< channel number */ -#define HPTFQSTAT_EPNUM BITS(27, 30) /*!< endpoint number */ -#define HPTFQSTAT_TYPE BITS(25, 26) /*!< token type */ -#define HPTFQSTAT_TMF BIT(24) /*!< terminate flag */ - - -#define TFQSTAT_TXFS BITS(0, 15) -#define TFQSTAT_CNUM BITS(27, 30) - -/* host all channels interrupt register bits definitions */ -#define HACHINT_HACHINT BITS(0, 11) /*!< host all channel interrupts */ - -/* host all channels interrupt enable register bits definitions */ -#define HACHINTEN_CINTEN BITS(0, 11) /*!< channel interrupt enable */ - -/* host port control and status register bits definitions */ -#define HPCS_PS BITS(17, 18) /*!< port speed */ -#define HPCS_PP BIT(12) /*!< port power */ -#define HPCS_PLST BITS(10, 11) /*!< port line status */ -#define HPCS_PRST BIT(8) /*!< port reset */ -#define HPCS_PSP BIT(7) /*!< port suspend */ -#define HPCS_PREM BIT(6) /*!< port resume */ -#define HPCS_PEDC BIT(3) /*!< port enable/disable change */ -#define HPCS_PE BIT(2) /*!< port enable */ -#define HPCS_PCD BIT(1) /*!< port connect detected */ -#define HPCS_PCST BIT(0) /*!< port connect status */ - -/* host channel-x control register bits definitions */ -#define HCHCTL_CEN BIT(31) /*!< channel enable */ -#define HCHCTL_CDIS BIT(30) /*!< channel disable */ -#define HCHCTL_ODDFRM BIT(29) /*!< odd frame */ -#define HCHCTL_DAR BITS(22, 28) /*!< device address */ -#define HCHCTL_MPC BITS(20, 21) /*!< multiple packet count */ -#define HCHCTL_EPTYPE BITS(18, 19) /*!< endpoint type */ -#define HCHCTL_LSD BIT(17) /*!< low-speed device */ -#define HCHCTL_EPDIR BIT(15) /*!< endpoint direction */ -#define HCHCTL_EPNUM BITS(11, 14) /*!< endpoint number */ -#define HCHCTL_MPL BITS(0, 10) /*!< maximum packet length */ - -/* host channel-x split transaction register bits definitions */ -#define HCHSTCTL_SPLEN BIT(31) /*!< enable high-speed split transaction */ -#define HCHSTCTL_CSPLT BIT(16) /*!< complete-split enable */ -#define HCHSTCTL_ISOPCE BITS(14, 15) /*!< isochronous OUT payload continuation encoding */ -#define HCHSTCTL_HADDR BITS(7, 13) /*!< HUB address */ -#define HCHSTCTL_PADDR BITS(0, 6) /*!< port address */ - -/* host channel-x interrupt flag register bits definitions */ -#define HCHINTF_DTER BIT(10) /*!< data toggle error */ -#define HCHINTF_REQOVR BIT(9) /*!< request queue overrun */ -#define HCHINTF_BBER BIT(8) /*!< babble error */ -#define HCHINTF_USBER BIT(7) /*!< USB bus Error */ -#define HCHINTF_NYET BIT(6) /*!< NYET */ -#define HCHINTF_ACK BIT(5) /*!< ACK */ -#define HCHINTF_NAK BIT(4) /*!< NAK */ -#define HCHINTF_STALL BIT(3) /*!< STALL */ -#define HCHINTF_DMAER BIT(2) /*!< DMA error */ -#define HCHINTF_CH BIT(1) /*!< channel halted */ -#define HCHINTF_TF BIT(0) /*!< transfer finished */ - -/* host channel-x interrupt enable register bits definitions */ -#define HCHINTEN_DTERIE BIT(10) /*!< data toggle error interrupt enable */ -#define HCHINTEN_REQOVRIE BIT(9) /*!< request queue overrun interrupt enable */ -#define HCHINTEN_BBERIE BIT(8) /*!< babble error interrupt enable */ -#define HCHINTEN_USBERIE BIT(7) /*!< USB bus error interrupt enable */ -#define HCHINTEN_NYETIE BIT(6) /*!< NYET interrupt enable */ -#define HCHINTEN_ACKIE BIT(5) /*!< ACK interrupt enable */ -#define HCHINTEN_NAKIE BIT(4) /*!< NAK interrupt enable */ -#define HCHINTEN_STALLIE BIT(3) /*!< STALL interrupt enable */ -#define HCHINTEN_DMAERIE BIT(2) /*!< DMA error interrupt enable */ -#define HCHINTEN_CHIE BIT(1) /*!< channel halted interrupt enable */ -#define HCHINTEN_TFIE BIT(0) /*!< transfer finished interrupt enable */ - -/* host channel-x transfer length register bits definitions */ -#define HCHLEN_PING BIT(31) /*!< PING token request */ -#define HCHLEN_DPID BITS(29, 30) /*!< data PID */ -#define HCHLEN_PCNT BITS(19, 28) /*!< packet count */ -#define HCHLEN_TLEN BITS(0, 18) /*!< transfer length */ - -/* host channel-x DMA address register bits definitions */ -#define HCHDMAADDR_DMAADDR BITS(0, 31) /*!< DMA address */ - - -#define PORT_SPEED(x) (((uint32_t)(x) << 17) & HPCS_PS) /*!< Port speed */ - -#define PORT_SPEED_HIGH PORT_SPEED(0U) /*!< high speed */ -#define PORT_SPEED_FULL PORT_SPEED(1U) /*!< full speed */ -#define PORT_SPEED_LOW PORT_SPEED(2U) /*!< low speed */ - -#define PIPE_CTL_DAR(x) (((uint32_t)(x) << 22) & HCHCTL_DAR) /*!< device address */ -#define PIPE_CTL_EPTYPE(x) (((uint32_t)(x) << 18) & HCHCTL_EPTYPE) /*!< endpoint type */ -#define PIPE_CTL_EPNUM(x) (((uint32_t)(x) << 11) & HCHCTL_EPNUM) /*!< endpoint number */ -#define PIPE_CTL_EPDIR(x) (((uint32_t)(x) << 15) & HCHCTL_EPDIR) /*!< endpoint direction */ -#define PIPE_CTL_EPMPL(x) (((uint32_t)(x) << 0) & HCHCTL_MPL) /*!< maximum packet length */ -#define PIPE_CTL_LSD(x) (((uint32_t)(x) << 17) & HCHCTL_LSD) /*!< low-Speed device */ - -#define PIPE_XFER_PCNT(x) (((uint32_t)(x) << 19) & HCHLEN_PCNT) /*!< packet count */ -#define PIPE_XFER_DPID(x) (((uint32_t)(x) << 29) & HCHLEN_DPID) /*!< data PID */ - -#define PIPE_DPID_DATA0 PIPE_XFER_DPID(0) /*!< DATA0 */ -#define PIPE_DPID_DATA1 PIPE_XFER_DPID(2) /*!< DATA1 */ -#define PIPE_DPID_DATA2 PIPE_XFER_DPID(1) /*!< DATA2 */ -#define PIPE_DPID_SETUP PIPE_XFER_DPID(3) /*!< MDATA (non-control)/SETUP (control) */ - -extern const uint32_t PIPE_DPID[2]; - -/* device configuration registers bits definitions */ -#define DCFG_EOPFT BITS(11, 12) /*!< end of periodic frame time */ -#define DCFG_DAR BITS(4, 10) /*!< device address */ -#define DCFG_NZLSOH BIT(2) /*!< non-zero-length status OUT handshake */ -#define DCFG_DS BITS(0, 1) /*!< device speed */ - -/* device control registers bits definitions */ -#define DCTL_POIF BIT(11) /*!< power-on initialization finished */ -#define DCTL_CGONAK BIT(10) /*!< clear global OUT NAK */ -#define DCTL_SGONAK BIT(9) /*!< set global OUT NAK */ -#define DCTL_CGINAK BIT(8) /*!< clear global IN NAK */ -#define DCTL_SGINAK BIT(7) /*!< set global IN NAK */ -#define DCTL_GONS BIT(3) /*!< global OUT NAK status */ -#define DCTL_GINS BIT(2) /*!< global IN NAK status */ -#define DCTL_SD BIT(1) /*!< soft disconnect */ -#define DCTL_RWKUP BIT(0) /*!< remote wakeup */ - -/* device status registers bits definitions */ -#define DSTAT_FNRSOF BITS(8, 21) /*!< the frame number of the received SOF. */ -#define DSTAT_ES BITS(1, 2) /*!< enumerated speed */ -#define DSTAT_SPST BIT(0) /*!< suspend status */ - -/* device IN endpoint common interrupt enable registers bits definitions */ -#define DIEPINTEN_NAKEN BIT(13) /*!< NAK handshake sent by USBHS interrupt enable bit */ -#define DIEPINTEN_TXFEEN BIT(7) /*!< transmit FIFO empty interrupt enable bit */ -#define DIEPINTEN_IEPNEEN BIT(6) /*!< IN endpoint NAK effective interrupt enable bit */ -#define DIEPINTEN_EPTXFUDEN BIT(4) /*!< endpoint Tx FIFO underrun interrupt enable bit */ -#define DIEPINTEN_CITOEN BIT(3) /*!< control In Timeout interrupt enable bit */ -#define DIEPINTEN_EPDISEN BIT(1) /*!< endpoint disabled interrupt enable bit */ -#define DIEPINTEN_TFEN BIT(0) /*!< transfer finished interrupt enable bit */ - -/* device OUT endpoint common interrupt enable registers bits definitions */ -#define DOEPINTEN_NYETEN BIT(14) /*!< NYET handshake is sent interrupt enable bit */ -#define DOEPINTEN_BTBSTPEN BIT(6) /*!< back-to-back SETUP packets interrupt enable bit */ -#define DOEPINTEN_EPRXFOVREN BIT(4) /*!< endpoint Rx FIFO overrun interrupt enable bit */ -#define DOEPINTEN_STPFEN BIT(3) /*!< SETUP phase finished interrupt enable bit */ -#define DOEPINTEN_EPDISEN BIT(1) /*!< endpoint disabled interrupt enable bit */ -#define DOEPINTEN_TFEN BIT(0) /*!< transfer finished interrupt enable bit */ - -/* device all endpoints interrupt registers bits definitions */ -#define DAEPINT_OEPITB BITS(16, 21) /*!< device all OUT endpoint interrupt bits */ -#define DAEPINT_IEPITB BITS(0, 5) /*!< device all IN endpoint interrupt bits */ - -/* device all endpoints interrupt enable registers bits definitions */ -#define DAEPINTEN_OEPIE BITS(16, 21) /*!< OUT endpoint interrupt enable */ -#define DAEPINTEN_IEPIE BITS(0, 3) /*!< IN endpoint interrupt enable */ - -/* device Vbus discharge time registers bits definitions */ -#define DVBUSDT_DVBUSDT BITS(0, 15) /*!< device VBUS discharge time */ - -/* device Vbus pulsing time registers bits definitions */ -#define DVBUSPT_DVBUSPT BITS(0, 11) /*!< device VBUS pulsing time */ - -/* device IN endpoint FIFO empty interrupt enable register bits definitions */ -#define DIEPFEINTEN_IEPTXFEIE BITS(0, 5) /*!< IN endpoint Tx FIFO empty interrupt enable bits */ - -/* device endpoint 0 control register bits definitions */ -#define DEP0CTL_EPEN BIT(31) /*!< endpoint enable */ -#define DEP0CTL_EPD BIT(30) /*!< endpoint disable */ -#define DEP0CTL_SNAK BIT(27) /*!< set NAK */ -#define DEP0CTL_CNAK BIT(26) /*!< clear NAK */ -#define DIEP0CTL_TXFNUM BITS(22, 25) /*!< tx FIFO number */ -#define DEP0CTL_STALL BIT(21) /*!< STALL handshake */ -#define DOEP0CTL_SNOOP BIT(20) /*!< snoop mode */ -#define DEP0CTL_EPTYPE BITS(18, 19) /*!< endpoint type */ -#define DEP0CTL_NAKS BIT(17) /*!< NAK status */ -#define DEP0CTL_EPACT BIT(15) /*!< endpoint active */ -#define DEP0CTL_MPL BITS(0, 1) /*!< maximum packet length */ - -/* device endpoint x control register bits definitions */ -#define DEPCTL_EPEN BIT(31) /*!< endpoint enable */ -#define DEPCTL_EPD BIT(30) /*!< endpoint disable */ -#define DEPCTL_SODDFRM BIT(29) /*!< set odd frame */ -#define DEPCTL_SD1PID BIT(29) /*!< set DATA1 PID */ -#define DEPCTL_SEVNFRM BIT(28) /*!< set even frame */ -#define DEPCTL_SD0PID BIT(28) /*!< set DATA0 PID */ -#define DEPCTL_SNAK BIT(27) /*!< set NAK */ -#define DEPCTL_CNAK BIT(26) /*!< clear NAK */ -#define DIEPCTL_TXFNUM BITS(22, 25) /*!< tx FIFO number */ -#define DEPCTL_STALL BIT(21) /*!< STALL handshake */ -#define DOEPCTL_SNOOP BIT(20) /*!< snoop mode */ -#define DEPCTL_EPTYPE BITS(18, 19) /*!< endpoint type */ -#define DEPCTL_NAKS BIT(17) /*!< NAK status */ -#define DEPCTL_EOFRM BIT(16) /*!< even/odd frame */ -#define DEPCTL_DPID BIT(16) /*!< endpoint data PID */ -#define DEPCTL_EPACT BIT(15) /*!< endpoint active */ -#define DEPCTL_MPL BITS(0, 10) /*!< maximum packet length */ - -/* device IN endpoint-x interrupt flag register bits definitions */ -#define DIEPINTF_NAK BIT(13) /*!< NAK handshake sent by USBHS */ -#define DIEPINTF_TXFE BIT(7) /*!< transmit FIFO empty */ -#define DIEPINTF_IEPNE BIT(6) /*!< IN endpoint NAK effective */ -#define DIEPINTF_EPTXFUD BIT(4) /*!< endpoint Tx FIFO underrun */ -#define DIEPINTF_CITO BIT(3) /*!< control In Timeout interrupt */ -#define DIEPINTF_EPDIS BIT(1) /*!< endpoint disabled */ -#define DIEPINTF_TF BIT(0) /*!< transfer finished */ - -/* device OUT endpoint-x interrupt flag register bits definitions */ -#define DOEPINTF_NYET BIT(14) /*!< NYET handshake is sent */ -#define DOEPINTF_BTBSTP BIT(6) /*!< back-to-back SETUP packets */ -#define DOEPINTF_EPRXFOVR BIT(4) /*!< endpoint Rx FIFO overrun */ -#define DOEPINTF_STPF BIT(3) /*!< SETUP phase finished */ -#define DOEPINTF_EPDIS BIT(1) /*!< endpoint disabled */ -#define DOEPINTF_TF BIT(0) /*!< transfer finished */ - -/* device IN endpoint 0 transfer length register bits definitions */ -#define DIEP0LEN_PCNT BITS(19, 20) /*!< packet count */ -#define DIEP0LEN_TLEN BITS(0, 6) /*!< transfer length */ - -/* device OUT endpoint 0 transfer length register bits definitions */ -#define DOEP0LEN_STPCNT BITS(29, 30) /*!< SETUP packet count */ -#define DOEP0LEN_PCNT BIT(19) /*!< packet count */ -#define DOEP0LEN_TLEN BITS(0, 6) /*!< transfer length */ - -/* device OUT endpoint-x transfer length register bits definitions */ -#define DOEPLEN_RXDPID BITS(29, 30) /*!< received data PID */ -#define DOEPLEN_STPCNT BITS(29, 30) /*!< SETUP packet count */ -#define DIEPLEN_MCNT BITS(29, 30) /*!< multi count */ -#define DEPLEN_PCNT BITS(19, 28) /*!< packet count */ -#define DEPLEN_TLEN BITS(0, 18) /*!< transfer length */ - -/* device IN endpoint-x DMA address register bits definitions */ -#define DIEPDMAADDR_DMAADDR BITS(0, 31) /*!< DMA address */ - -/* device OUT endpoint-x DMA address register bits definitions */ -#define DOEPDMAADDR_DMAADDR BITS(0, 31) /*!< DMA address */ - -/* device IN endpoint-x transmit FIFO status register bits definitions */ -#define DIEPTFSTAT_IEPTFS BITS(0, 15) /*!< IN endpoint Tx FIFO space remaining */ - -/* USB power and clock registers bits definition */ -#define PWRCLKCTL_SHCLK BIT(1) /*!< stop HCLK */ -#define PWRCLKCTL_SUCLK BIT(0) /*!< stop the USB clock */ - -#define RSTAT_GOUT_NAK 1U /* global OUT NAK (triggers an interrupt) */ -#define RSTAT_DATA_UPDT 2U /* OUT data packet received */ -#define RSTAT_XFER_COMP 3U /* OUT transfer completed (triggers an interrupt) */ -#define RSTAT_SETUP_COMP 4U /* SETUP transaction completed (triggers an interrupt) */ -#define RSTAT_SETUP_UPDT 6U /* SETUP data packet received */ - -#define DSTAT_EM_HS_PHY_30MHZ_60MHZ 0U /* USB enumerate speed use high-speed PHY clock in 30MHz or 60MHz */ -#define DSTAT_EM_FS_PHY_30MHZ_60MHZ 1U /* USB enumerate speed use full-speed PHY clock in 30MHz or 60MHz */ -#define DSTAT_EM_LS_PHY_6MHZ 2U /* USB enumerate speed use low-speed PHY clock in 6MHz */ -#define DSTAT_EM_FS_PHY_48MHZ 3U /* USB enumerate speed use full-speed PHY clock in 48MHz */ - -#define DPID_DATA0 0U /* device endpoint data PID is DATA0 */ -#define DPID_DATA1 2U /* device endpoint data PID is DATA1 */ -#define DPID_DATA2 1U /* device endpoint data PID is DATA2 */ -#define DPID_MDATA 3U /* device endpoint data PID is MDATA */ - -#define GAHBCS_DMAINCR(regval) (GAHBCS_BURST & ((regval) << 1)) /*!< AHB burst type used by DMA*/ - -#define DMA_INCR0 GAHBCS_DMAINCR(0U) /*!< single burst type used by DMA*/ -#define DMA_INCR1 GAHBCS_DMAINCR(1U) /*!< 4-beat incrementing burst type used by DMA*/ -#define DMA_INCR4 GAHBCS_DMAINCR(3U) /*!< 8-beat incrementing burst type used by DMA*/ -#define DMA_INCR8 GAHBCS_DMAINCR(5U) /*!< 16-beat incrementing burst type used by DMA*/ -#define DMA_INCR16 GAHBCS_DMAINCR(7U) /*!< 32-beat incrementing burst type used by DMA*/ - -#define DCFG_PFRI(regval) (DCFG_EOPFT & ((regval) << 11)) /*!< end of periodic frame time configuration */ - -#define FRAME_INTERVAL_80 DCFG_PFRI(0U) /*!< 80% of the frame time */ -#define FRAME_INTERVAL_85 DCFG_PFRI(1U) /*!< 85% of the frame time */ -#define FRAME_INTERVAL_90 DCFG_PFRI(2U) /*!< 90% of the frame time */ -#define FRAME_INTERVAL_95 DCFG_PFRI(3U) /*!< 95% of the frame time */ - -#define DCFG_DEVSPEED(regval) (DCFG_DS & ((regval) << 0)) /*!< device speed configuration */ - -#define USB_SPEED_EXP_HIGH DCFG_DEVSPEED(0U) /*!< device external PHY high speed */ -#define USB_SPEED_EXP_FULL DCFG_DEVSPEED(1U) /*!< device external PHY full speed */ -#define USB_SPEED_INP_FULL DCFG_DEVSPEED(3U) /*!< device internal PHY full speed */ - -#define DEP0_MPL(regval) (DEP0CTL_MPL & ((regval) << 0)) /*!< maximum packet length configuration */ - -#define EP0MPL_64 DEP0_MPL(0U) /*!< maximum packet length 64 bytes */ -#define EP0MPL_32 DEP0_MPL(1U) /*!< maximum packet length 32 bytes */ -#define EP0MPL_16 DEP0_MPL(2U) /*!< maximum packet length 16 bytes */ -#define EP0MPL_8 DEP0_MPL(3U) /*!< maximum packet length 8 bytes */ - -#define DOEP0_TLEN(regval) (DOEP0LEN_TLEN & ((regval) << 0)) /*!< transfer length */ -#define DOEP0_PCNT(regval) (DOEP0LEN_PCNT & ((regval) << 19)) /*!< packet count */ -#define DOEP0_STPCNT(regval) (DOEP0LEN_STPCNT & ((regval) << 29)) /*!< SETUP packet count */ - -#define USB_ULPI_PHY 1U /*!< ULPI interface external PHY */ -#define USB_EMBEDDED_PHY 2U /*!< embedded PHY */ - -#define GRXSTS_PKTSTS_IN 2U -#define GRXSTS_PKTSTS_IN_XFER_COMP 3U -#define GRXSTS_PKTSTS_DATA_TOGGLE_ERR 5U -#define GRXSTS_PKTSTS_CH_HALTED 7U - -#define HCTL_30_60MHZ 0U /*!< USB clock 30-60MHZ */ -#define HCTL_48MHZ 1U /*!< USB clock 48MHZ */ -#define HCTL_6MHZ 2U /*!< USB clock 6MHZ */ - -#define EP0_OUT ((uint8_t)0x00) /*!< endpoint out 0 */ -#define EP0_IN ((uint8_t)0x80) /*!< endpoint in 0 */ -#define EP1_OUT ((uint8_t)0x01) /*!< endpoint out 1 */ -#define EP1_IN ((uint8_t)0x81) /*!< endpoint in 1 */ -#define EP2_OUT ((uint8_t)0x02) /*!< endpoint out 2 */ -#define EP2_IN ((uint8_t)0x82) /*!< endpoint in 2 */ -#define EP3_OUT ((uint8_t)0x03) /*!< endpoint out 3 */ -#define EP3_IN ((uint8_t)0x83) /*!< endpoint in 3 */ - -#endif /* __DRV_USB_REGS_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usbd_int.c b/Marlin/lib/GD32F4xx_usb_library/src/drv_usbd_int.c deleted file mode 100644 index 34ac190c6b..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/drv_usbd_int.c +++ /dev/null @@ -1,587 +0,0 @@ -/*! - \file drv_usbd_int.c - \brief USB device mode interrupt routines - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gdusbd_conf.h" -#include "drv_usbd_int.h" -#include "gdusbd_transc.h" - -static uint32_t usbd_int_epout (usb_core_driver *udev); -static uint32_t usbd_int_epin (usb_core_driver *udev); -static uint32_t usbd_int_rxfifo (usb_core_driver *udev); -static uint32_t usbd_int_reset (usb_core_driver *udev); -static uint32_t usbd_int_enumfinish (usb_core_driver *udev); -static uint32_t usbd_int_suspend (usb_core_driver *udev); - -static uint32_t usbd_emptytxfifo_write (usb_core_driver *udev, uint32_t ep_num); - -static const uint8_t USB_SPEED[4] = { - [DSTAT_EM_HS_PHY_30MHZ_60MHZ] = (uint8_t)USB_SPEED_HIGH, - [DSTAT_EM_FS_PHY_30MHZ_60MHZ] = (uint8_t)USB_SPEED_FULL, - [DSTAT_EM_FS_PHY_48MHZ] = (uint8_t)USB_SPEED_FULL, - [DSTAT_EM_LS_PHY_6MHZ] = (uint8_t)USB_SPEED_LOW -}; - -/*! - \brief USB device-mode interrupts global service routine handler - \param[in] udev: pointer to USB device instance - \param[out] none - \retval none -*/ -void usbd_isr (usb_core_driver *udev) -{ - if (HOST_MODE != (udev->regs.gr->GINTF & GINTF_COPM)) { - uint32_t intr = udev->regs.gr->GINTF & udev->regs.gr->GINTEN; - - /* there are no interrupts, avoid spurious interrupt */ - if (!intr) { - return; - } - - /* OUT endpoints interrupts */ - if (intr & GINTF_OEPIF) { - (void)usbd_int_epout (udev); - } - - /* IN endpoints interrupts */ - if (intr & GINTF_IEPIF) { - (void)usbd_int_epin (udev); - } - - /* suspend interrupt */ - if (intr & GINTF_SP) { - (void)usbd_int_suspend (udev); - } - - /* wakeup interrupt */ - if (intr & GINTF_WKUPIF) { - /* inform upper layer by the resume event */ - udev->dev.cur_status = USBD_CONFIGURED; - - /* clear interrupt */ - udev->regs.gr->GINTF = GINTF_WKUPIF; - } - - /* start of frame interrupt */ - if (intr & GINTF_SOF) { - if (udev->dev.class_core->SOF) { - (void)udev->dev.class_core->SOF(udev); - } - - /* clear interrupt */ - udev->regs.gr->GINTF = GINTF_SOF; - } - - /* receive FIFO not empty interrupt */ - if (intr & GINTF_RXFNEIF) { - (void)usbd_int_rxfifo (udev); - } - - /* USB reset interrupt */ - if (intr & GINTF_RST) { - (void)usbd_int_reset (udev); - } - - /* enumeration has been done interrupt */ - if (intr & GINTF_ENUMFIF) { - (void)usbd_int_enumfinish (udev); - } - - /* incomplete synchronization IN transfer interrupt*/ - if (intr & GINTF_ISOINCIF) { - if (NULL != udev->dev.class_core->incomplete_isoc_in) { - (void)udev->dev.class_core->incomplete_isoc_in(udev); - } - - /* Clear interrupt */ - udev->regs.gr->GINTF = GINTF_ISOINCIF; - } - - /* incomplete synchronization OUT transfer interrupt*/ - if (intr & GINTF_ISOONCIF) { - if (NULL != udev->dev.class_core->incomplete_isoc_out) { - (void)udev->dev.class_core->incomplete_isoc_out(udev); - } - - /* clear interrupt */ - udev->regs.gr->GINTF = GINTF_ISOONCIF; - } - -#ifdef VBUS_SENSING_ENABLED - - /* session request interrupt */ - if (intr & GINTF_SESIF) { - udev->regs.gr->GINTF = GINTF_SESIF; - } - - /* OTG mode interrupt */ - if (intr & GINTF_OTGIF) { - if(udev->regs.gr->GOTGINTF & GOTGINTF_SESEND) { - - } - - /* clear OTG interrupt */ - udev->regs.gr->GINTF = GINTF_OTGIF; - } -#endif /* VBUS_SENSING_ENABLED */ - } -} - -#ifdef USB_HS_DEDICATED_EP1_ENABLED - -/*! - \brief USB dedicated OUT endpoint 1 interrupt service routine handler - \param[in] udev: pointer to USB device instance - \param[out] none - \retval operation status -*/ -uint32_t usbd_int_dedicated_ep1out (usb_core_driver *udev) -{ - uint32_t oepintr = 0U; - uint32_t oeplen = 0U; - - oepintr = udev->regs.er_out[1]->DOEPINTF; - oepintr &= udev->regs.dr->DOEP1INTEN; - - /* transfer complete */ - if(oepintr & DOEPINTF_TF){ - /* clear the bit in DOEPINTn for this interrupt */ - udev->regs.er_out[1]->DOEPINTF = DOEPINTF_TF; - - if(USB_USE_DMA == udev->bp.transfer_mode){ - oeplen = udev->regs.er_out[1]->DOEPLEN; - - /* to do : handle more than one single max packet size packet */ - udev->dev.transc_out[1].xfer_count = udev->dev.transc_out[1].max_len - \ - (oeplen & DEPLEN_TLEN); - } - - /* rx complete */ - usbd_out_transc (udev, 1U); - } - - return 1U; -} - -/*! - \brief USB dedicated IN endpoint 1 interrupt service routine handler - \param[in] udev: pointer to USB device instance - \param[out] none - \retval operation status -*/ -uint32_t usbd_int_dedicated_ep1in (usb_core_driver *udev) -{ - uint32_t inten, intr, emptyen; - - inten = udev->regs.dr->DIEP1INTEN; - emptyen = udev->regs.dr->DIEPFEINTEN; - - inten |= ((emptyen >> 1 ) & 0x1) << 7; - - intr = udev->regs.er_in[1]->DIEPINTF & inten; - - if(intr & DIEPINTF_TF){ - udev->regs.dr->DIEPFEINTEN &= ~(0x1 << 1); - - udev->regs.er_in[1]->DIEPINTF = DIEPINTF_TF; - - /* TX complete */ - usbd_in_transc (udev, 1); - } - - if(intr & DIEPINTF_TXFE){ - usbd_emptytxfifo_write(udev, 1); - - udev->regs.er_in[1]->DIEPINTF = DIEPINTF_TXFE; - } - - return 1; -} - -#endif - -/*! - \brief indicates that an OUT endpoint has a pending interrupt - \param[in] udev: pointer to USB device instance - \param[out] none - \retval operation status -*/ -static uint32_t usbd_int_epout (usb_core_driver *udev) -{ - uint32_t epintnum = 0U; - uint8_t ep_num = 0U; - - for (epintnum = usb_oepintnum_read (udev); epintnum; epintnum >>= 1, ep_num++) { - if (epintnum & 0x01U) { - __IO uint32_t oepintr = usb_oepintr_read (udev, ep_num); - - /* transfer complete interrupt */ - if (oepintr & DOEPINTF_TF) { - /* clear the bit in DOEPINTF for this interrupt */ - udev->regs.er_out[ep_num]->DOEPINTF = DOEPINTF_TF; - - if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { - __IO uint32_t eplen = udev->regs.er_out[ep_num]->DOEPLEN; - - udev->dev.transc_out[ep_num].xfer_count = udev->dev.transc_out[ep_num].max_len - \ - (eplen & DEPLEN_TLEN); - } - - /* inform upper layer: data ready */ - (void)usbd_out_transc (udev, ep_num); - - if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { - if ((0U == ep_num) && ((uint8_t)USB_CTL_STATUS_OUT == udev->dev.control.ctl_state)) { - usb_ctlep_startout (udev); - } - } - } - - /* setup phase finished interrupt (control endpoints) */ - if (oepintr & DOEPINTF_STPF) { - /* inform the upper layer that a setup packet is available */ - (void)usbd_setup_transc (udev); - - udev->regs.er_out[ep_num]->DOEPINTF = DOEPINTF_STPF; - } - } - } - - return 1U; -} - -/*! - \brief indicates that an IN endpoint has a pending interrupt - \param[in] udev: pointer to USB device instance - \param[out] none - \retval operation status -*/ -static uint32_t usbd_int_epin (usb_core_driver *udev) -{ - uint32_t epintnum = 0U; - uint8_t ep_num = 0U; - - for (epintnum = usb_iepintnum_read (udev); epintnum; epintnum >>= 1, ep_num++) { - if (epintnum & 0x1U) { - __IO uint32_t iepintr = usb_iepintr_read (udev, ep_num); - - if (iepintr & DIEPINTF_TF) { - udev->regs.er_in[ep_num]->DIEPINTF = DIEPINTF_TF; - - /* data transmission is completed */ - (void)usbd_in_transc (udev, ep_num); - - if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { - if ((0U == ep_num) && ((uint8_t)USB_CTL_STATUS_IN == udev->dev.control.ctl_state)) { - usb_ctlep_startout (udev); - } - } - } - - if (iepintr & DIEPINTF_TXFE) { - usbd_emptytxfifo_write (udev, (uint32_t)ep_num); - - udev->regs.er_in[ep_num]->DIEPINTF = DIEPINTF_TXFE; - } - } - } - - return 1U; -} - -/*! - \brief handle the RX status queue level interrupt - \param[in] udev: pointer to USB device instance - \param[out] none - \retval operation status -*/ -static uint32_t usbd_int_rxfifo (usb_core_driver *udev) -{ - usb_transc *transc = NULL; - - uint8_t data_PID = 0U; - uint32_t bcount = 0U; - - __IO uint32_t devrxstat = 0U; - - /* disable the Rx status queue non-empty interrupt */ - udev->regs.gr->GINTEN &= ~GINTEN_RXFNEIE; - - /* get the status from the top of the FIFO */ - devrxstat = udev->regs.gr->GRSTATP; - - uint8_t ep_num = (uint8_t)(devrxstat & GRSTATRP_EPNUM); - - transc = &udev->dev.transc_out[ep_num]; - - bcount = (devrxstat & GRSTATRP_BCOUNT) >> 4U; - data_PID = (uint8_t)((devrxstat & GRSTATRP_DPID) >> 15U); - -#ifdef USE_USB_HS - #ifndef USE_450Z_EVAL - /* ensure no-DMA mode can work */ - if ((1U == ep_num) && (0U == (udev->regs.er_out[ep_num]->DOEPLEN & DEPLEN_PCNT))) { - uint32_t devepctl = udev->regs.er_out[ep_num]->DOEPCTL; - - devepctl |= DEPCTL_SNAK; - devepctl &= ~DEPCTL_EPEN; - devepctl &= ~DEPCTL_EPD; - - udev->regs.er_out[ep_num]->DOEPCTL = devepctl; - } - #endif /* USE_450Z_EVAL */ -#endif /* USE_USB_HS */ - - switch ((devrxstat & GRSTATRP_RPCKST) >> 17U) { - case RSTAT_GOUT_NAK: - break; - - case RSTAT_DATA_UPDT: - if (bcount > 0U) { - (void)usb_rxfifo_read (&udev->regs, transc->xfer_buf, (uint16_t)bcount); - - transc->xfer_buf += bcount; - transc->xfer_count += bcount; - } - break; - - case RSTAT_XFER_COMP: - /* trigger the OUT endpoint interrupt */ - break; - - case RSTAT_SETUP_COMP: - /* trigger the OUT endpoint interrupt */ - break; - - case RSTAT_SETUP_UPDT: - if ((0U == transc->ep_addr.num) && (8U == bcount) && (DPID_DATA0 == data_PID)) { - /* copy the setup packet received in FIFO into the setup buffer in RAM */ - (void)usb_rxfifo_read (&udev->regs, (uint8_t *)&udev->dev.control.req, (uint16_t)bcount); - - transc->xfer_count += bcount; - } - break; - - default: - break; - } - - /* enable the Rx status queue level interrupt */ - udev->regs.gr->GINTEN |= GINTEN_RXFNEIE; - - return 1U; -} - -/*! - \brief handle USB reset interrupt - \param[in] udev: pointer to USB device instance - \param[out] none - \retval status -*/ -static uint32_t usbd_int_reset (usb_core_driver *udev) -{ - uint32_t i; - - /* clear the remote wakeup signaling */ - udev->regs.dr->DCTL &= ~DCTL_RWKUP; - - /* flush the TX FIFO */ - (void)usb_txfifo_flush (&udev->regs, 0U); - - for (i = 0U; i < udev->bp.num_ep; i++) { - udev->regs.er_in[i]->DIEPINTF = 0xFFU; - udev->regs.er_out[i]->DOEPINTF = 0xFFU; - } - - /* clear all pending device endpoint interrupts */ - udev->regs.dr->DAEPINT = 0xFFFFFFFFU; - - /* enable endpoint 0 interrupts */ - udev->regs.dr->DAEPINTEN = 1U | (1U << 16U); - - /* enable OUT endpoint interrupts */ - udev->regs.dr->DOEPINTEN = DOEPINTEN_STPFEN | DOEPINTEN_TFEN; - -#ifdef USB_HS_DEDICATED_EP1_ENABLED - udev->regs.dr->DOEP1INTEN = DOEPINTEN_STPFEN | DOEPINTEN_TFEN; -#endif - - /* enable IN endpoint interrupts */ - udev->regs.dr->DIEPINTEN = DIEPINTEN_TFEN; - -#ifdef USB_HS_DEDICATED_EP1_ENABLED - udev->regs.dr->DIEP1INTEN = DIEPINTEN_TFEN; -#endif - - /* reset device address */ - udev->regs.dr->DCFG &= ~DCFG_DAR; - - /* configure endpoint 0 to receive SETUP packets */ - usb_ctlep_startout (udev); - - /* clear USB reset interrupt */ - udev->regs.gr->GINTF = GINTF_RST; - - udev->dev.transc_out[0] = (usb_transc) { - .ep_type = USB_EPTYPE_CTRL, - .max_len = USB_FS_EP0_MAX_LEN - }; - - (void)usb_transc_active (udev, &udev->dev.transc_out[0]); - - udev->dev.transc_in[0] = (usb_transc) { - .ep_addr = { - .dir = 1U - }, - - .ep_type = USB_EPTYPE_CTRL, - .max_len = USB_FS_EP0_MAX_LEN - }; - - (void)usb_transc_active (udev, &udev->dev.transc_in[0]); - - /* upon reset call user call back */ - udev->dev.cur_status = (uint8_t)USBD_DEFAULT; - - return 1U; -} - -/*! - \brief handle USB speed enumeration finish interrupt - \param[in] udev: pointer to USB device instance - \param[out] none - \retval status -*/ -static uint32_t usbd_int_enumfinish (usb_core_driver *udev) -{ - uint8_t enum_speed = (uint8_t)((udev->regs.dr->DSTAT & DSTAT_ES) >> 1U); - - udev->regs.dr->DCTL &= ~DCTL_CGINAK; - udev->regs.dr->DCTL |= DCTL_CGINAK; - - udev->regs.gr->GUSBCS &= ~GUSBCS_UTT; - - /* set USB turn-around time based on device speed and PHY interface */ - if (USB_SPEED[enum_speed] == (uint8_t)USB_SPEED_HIGH) { - udev->bp.core_speed = (uint8_t)USB_SPEED_HIGH; - - udev->regs.gr->GUSBCS |= 0x09U << 10U; - } else { - udev->bp.core_speed = (uint8_t)USB_SPEED_FULL; - - udev->regs.gr->GUSBCS |= 0x05U << 10U; - } - - /* clear interrupt */ - udev->regs.gr->GINTF = GINTF_ENUMFIF; - - return 1U; -} - -/*! - \brief USB suspend interrupt handler - \param[in] udev: pointer to USB device instance - \param[out] none - \retval operation status -*/ -static uint32_t usbd_int_suspend (usb_core_driver *udev) -{ - __IO uint8_t low_power = udev->bp.low_power; - __IO uint8_t suspend = (uint8_t)(udev->regs.dr->DSTAT & DSTAT_SPST); - __IO uint8_t is_configured = (udev->dev.cur_status == (uint8_t)USBD_CONFIGURED)? 1U : 0U; - - udev->dev.backup_status = udev->dev.cur_status; - udev->dev.cur_status = (uint8_t)USBD_SUSPENDED; - - if (low_power && suspend && is_configured) { - /* switch-off the OTG clocks */ - *udev->regs.PWRCLKCTL |= PWRCLKCTL_SUCLK | PWRCLKCTL_SHCLK; - - /* enter DEEP_SLEEP mode with LDO in low power mode */ - // pmu_to_deepsleepmode(PMU_LDO_LOWPOWER, WFI_CMD); - } - - /* clear interrupt */ - udev->regs.gr->GINTF = GINTF_SP; - - return 1U; -} - -/*! - \brief check FIFO for the next packet to be loaded - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint identifier which is in (0..3) - \param[out] none - \retval status -*/ -static uint32_t usbd_emptytxfifo_write (usb_core_driver *udev, uint32_t ep_num) -{ - uint32_t len; - uint32_t word_count; - - usb_transc *transc = &udev->dev.transc_in[ep_num]; - - len = transc->xfer_len - transc->xfer_count; - - /* get the data length to write */ - if (len > transc->max_len) { - len = transc->max_len; - } - - word_count = (len + 3U) / 4U; - - while (((udev->regs.er_in[ep_num]->DIEPTFSTAT & DIEPTFSTAT_IEPTFS) >= word_count) && \ - (transc->xfer_count < transc->xfer_len)) { - len = transc->xfer_len - transc->xfer_count; - - if (len > transc->max_len) { - len = transc->max_len; - } - - /* write FIFO in word(4bytes) */ - word_count = (len + 3U) / 4U; - - /* write the FIFO */ - (void)usb_txfifo_write (&udev->regs, transc->xfer_buf, (uint8_t)ep_num, (uint16_t)len); - - transc->xfer_buf += len; - transc->xfer_count += len; - - if (transc->xfer_count == transc->xfer_len) { - /* disable the device endpoint FIFO empty interrupt */ - udev->regs.dr->DIEPFEINTEN &= ~(0x01U << ep_num); - } - } - - return 1U; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usbd_int.h b/Marlin/lib/GD32F4xx_usb_library/src/drv_usbd_int.h deleted file mode 100644 index b98f349a79..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/drv_usbd_int.h +++ /dev/null @@ -1,52 +0,0 @@ -/*! - \file drv_usbd_int.h - \brief USB device mode interrupt header file - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __DRV_USBD_INT_H -#define __DRV_USBD_INT_H - -#include "drv_usb_core.h" -#include "drv_usb_dev.h" - -/* function declarations */ -/* USB device-mode interrupts global service routine handler */ -void usbd_isr (usb_core_driver *udev); - -#ifdef USB_HS_DEDICATED_EP1_ENABLED -/* USB dedicated IN endpoint 1 interrupt service routine handler */ -uint32_t usbd_int_dedicated_ep1in (usb_core_driver *udev); -/* USB dedicated OUT endpoint 1 interrupt service routine handler */ -uint32_t usbd_int_dedicated_ep1out (usb_core_driver *udev); -#endif /* USB_HS_DEDICATED_EP1_ENABLED */ - -#endif /* __DRV_USBD_INT_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usbh_int.c b/Marlin/lib/GD32F4xx_usb_library/src/drv_usbh_int.c deleted file mode 100644 index 285d041b05..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/drv_usbh_int.c +++ /dev/null @@ -1,622 +0,0 @@ -/*! - \file drv_usbh_int.c - \brief USB host mode interrupt handler file - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "drv_usb_core.h" -#include "drv_usb_host.h" -#include "drv_usbh_int.h" -#include "gdusbh_core.h" - -#if defined (__CC_ARM) /*!< ARM compiler */ - #pragma O0 -#elif defined (__GNUC__) /*!< GNU compiler */ - #pragma GCC optimize ("O0") -#elif defined (__TASKING__) /*!< TASKING compiler */ - #pragma optimize=0 -#endif /* __CC_ARM */ - -/* local function prototypes ('static') */ -static uint32_t usbh_int_port (usb_core_driver *udev); -static uint32_t usbh_int_pipe (usb_core_driver *udev); -static uint32_t usbh_int_pipe_in (usb_core_driver *udev, uint32_t pp_num); -static uint32_t usbh_int_pipe_out (usb_core_driver *udev, uint32_t pp_num); -static uint32_t usbh_int_rxfifonoempty (usb_core_driver *udev); -static uint32_t usbh_int_txfifoempty (usb_core_driver *udev, usb_pipe_mode pp_mode); - -/*! - \brief handle global host interrupt - \param[in] udev: pointer to USB core instance - \param[out] none - \retval operation status -*/ -uint32_t usbh_isr (usb_core_driver *udev) -{ - uint32_t retval = 0U; - - __IO uint32_t intr = 0U; - - /* check if host mode */ - if (HOST_MODE == (udev->regs.gr->GINTF & GINTF_COPM)) { - intr = usb_coreintr_get(&udev->regs); - - if (!intr) { - return 0U; - } - - if (intr & GINTF_SOF) { - usbh_int_fop->SOF(udev->host.data); - - /* clear interrupt */ - udev->regs.gr->GINTF = GINTF_SOF; - } - - if (intr & GINTF_RXFNEIF) { - retval |= usbh_int_rxfifonoempty (udev); - } - - if (intr & GINTF_NPTXFEIF) { - retval |= usbh_int_txfifoempty (udev, PIPE_NON_PERIOD); - } - - if (intr & GINTF_PTXFEIF) { - retval |= usbh_int_txfifoempty (udev, PIPE_PERIOD); - } - - if (intr & GINTF_HCIF) { - retval |= usbh_int_pipe (udev); - } - - if (intr & GINTF_HPIF) { - retval |= usbh_int_port (udev); - } - - if (intr & GINTF_DISCIF) { - usbh_int_fop->disconnect(udev->host.data); - - /* clear interrupt */ - udev->regs.gr->GINTF = GINTF_DISCIF; - } - - if (intr & GINTF_ISOONCIF) { - udev->regs.pr[0]->HCHCTL |= HCHCTL_CEN | HCHCTL_CDIS; - - /* clear interrupt */ - udev->regs.gr->GINTF = GINTF_ISOONCIF; - } - - if (intr & GINTF_SESIF) { - usb_portvbus_switch (udev, 1U); - - udev->regs.gr->GINTF = GINTF_SESIF; - } - - if (intr & GINTF_WKUPIF) { - /* clear interrupt */ - udev->regs.gr->GINTF = GINTF_WKUPIF; - } - } - - return retval; -} - -/*! - \brief handle USB pipe halt - \param[in] udev: pointer to USB core instance - \param[in] pp_num: pp_num: host channel number which is in (0..7) - \param[in] pp_int: pipe interrupt - \param[in] pp_status: pipe status - \param[out] none - \retval none -*/ -static inline void usb_pp_halt (usb_core_driver *udev, - uint8_t pp_num, - uint32_t pp_int, - usb_pipe_staus pp_status) -{ - udev->regs.pr[pp_num]->HCHINTEN |= HCHINTEN_CHIE; - - usb_pipe_halt(udev, pp_num); - - udev->regs.pr[pp_num]->HCHINTF = pp_int; - - udev->host.pipe[pp_num].pp_status = pp_status; -} - -/*! - \brief handle the host port interrupt - \param[in] udev: pointer to USB device instance - \param[out] none - \retval operation status -*/ -#if defined (__ICCARM__) /*!< IAR compiler */ - #pragma optimize = none -#endif /* __ICCARM */ -static uint32_t usbh_int_port (usb_core_driver *udev) -{ - uint32_t retval = 0U; - - /* note: when the USB PHY use USB HS PHY, the flag is needed */ - uint8_t port_reset = 0U; - - __IO uint32_t port_state = *udev->regs.HPCS; - - /* clear the interrupt bits in GINTSTS */ - port_state &= ~(HPCS_PE | HPCS_PCD | HPCS_PEDC); - - /* port connect detected */ - if (*udev->regs.HPCS & HPCS_PCD) { - port_state |= HPCS_PCD; - - usbh_int_fop->connect(udev->host.data); - - retval |= 1U; - } - - /* port enable changed */ - if (*udev->regs.HPCS & HPCS_PEDC) { - port_state |= HPCS_PEDC; - - if (*udev->regs.HPCS & HPCS_PE) { - uint32_t port_speed = usb_curspeed_get(udev); - uint32_t clock_type = udev->regs.hr->HCTL & HCTL_CLKSEL; - - udev->host.connect_status = 1U; - - if (PORT_SPEED_LOW == port_speed) { - udev->regs.hr->HFT = 6000U; - - if (HCTL_6MHZ != clock_type) { - if (USB_EMBEDDED_PHY == udev->bp.phy_itf) { - usb_phyclock_config (udev, HCTL_6MHZ); - } - - port_reset = 1U; - } - } else if (PORT_SPEED_FULL == port_speed) { - udev->regs.hr->HFT = 48000U; - - if (HCTL_48MHZ != clock_type) { - usb_phyclock_config (udev, HCTL_48MHZ); - } - - port_reset = 1U; - } else { - /* for high speed device and others */ - port_reset = 1U; - } - - usbh_int_fop->port_enabled(udev->host.data); - - udev->regs.gr->GINTEN |= GINTEN_DISCIE | GINTEN_SOFIE; - } else { - usbh_int_fop->port_disabled(udev->host.data); - } - } - - if (port_reset) { - usb_port_reset(udev); - } - - /* clear port interrupts */ - *udev->regs.HPCS = port_state; - - return retval; -} - -/*! - \brief handle all host channels interrupt - \param[in] udev: pointer to USB device instance - \param[out] none - \retval operation status -*/ -static uint32_t usbh_int_pipe (usb_core_driver *udev) -{ - uint32_t pp_num = 0U; - uint32_t retval = 0U; - - for (pp_num = 0U; pp_num < udev->bp.num_pipe; pp_num++) { - if ((udev->regs.hr->HACHINT & HACHINT_HACHINT) & (1UL << pp_num)) { - if (udev->regs.pr[pp_num]->HCHCTL & HCHCTL_EPDIR) { - retval |= usbh_int_pipe_in (udev, pp_num); - } else { - retval |= usbh_int_pipe_out (udev, pp_num); - } - } - } - - return retval; -} - -/*! - \brief handle the IN channel interrupt - \param[in] udev: pointer to USB device instance - \param[in] pp_num: host channel number which is in (0..7) - \param[out] none - \retval operation status -*/ -#if defined (__ICCARM__) /*!< IAR compiler */ - #pragma optimize = none -#endif /* __ICCARM */ -static uint32_t usbh_int_pipe_in (usb_core_driver *udev, uint32_t pp_num) -{ - usb_pr *pp_reg = udev->regs.pr[pp_num]; - - usb_pipe *pp = &udev->host.pipe[pp_num]; - - __IO uint32_t intr_pp = pp_reg->HCHINTF & pp_reg->HCHINTEN; - - uint8_t ep_type = (uint8_t)((pp_reg->HCHCTL & HCHCTL_EPTYPE) >> 18U); - - if (intr_pp & HCHINTF_ACK) { - pp_reg->HCHINTF = HCHINTF_ACK; - } else if (intr_pp & HCHINTF_STALL) { - usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_STALL, PIPE_STALL); - pp_reg->HCHINTF = HCHINTF_NAK; - - /* note: When there is a 'STALL', reset also NAK, - else, the udev->host.pp_status = HC_STALL - will be overwritten by 'NAK' in code below */ - intr_pp &= ~HCHINTF_NAK; - } else if (intr_pp & HCHINTF_DTER) { - usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_DTER, PIPE_DTGERR); - pp_reg->HCHINTF = HCHINTF_NAK; - } else { - /* no operation */ - } - - if (intr_pp & HCHINTF_REQOVR) { - usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_REQOVR, PIPE_REQOVR); - } else if (intr_pp & HCHINTF_TF) { - if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { - udev->host.backup_xfercount[pp_num] = pp->xfer_len - (pp_reg->HCHLEN & HCHLEN_TLEN); - } - - pp->pp_status = PIPE_XF; - pp->err_count = 0U; - - pp_reg->HCHINTF = HCHINTF_TF; - - switch (ep_type) { - case USB_EPTYPE_CTRL: - case USB_EPTYPE_BULK: - usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_NAK, PIPE_XF); - - pp->data_toggle_in ^= 1U; - break; - - case USB_EPTYPE_INTR: - case USB_EPTYPE_ISOC: - pp_reg->HCHCTL |= HCHCTL_ODDFRM; - pp->urb_state = GD_URB_DONE; - break; - - default: - break; - } - } else if (intr_pp & HCHINTF_CH) { - pp_reg->HCHINTEN &= ~HCHINTEN_CHIE; - - switch (pp->pp_status) { - case PIPE_XF: - pp->urb_state = GD_URB_DONE; - break; - - case PIPE_STALL: - pp->urb_state = GD_URB_STALL; - break; - - case PIPE_TRACERR: - case PIPE_DTGERR: - pp->err_count = 0U; - pp->urb_state = GD_URB_ERROR; - - pp->data_toggle_in ^= 1U; - break; - - case PIPE_IDLE: - case PIPE_HALTED: - case PIPE_NAK: - case PIPE_NYET: - case PIPE_BBERR: - case PIPE_REQOVR: - default: - if((uint8_t)USB_EPTYPE_INTR == ep_type) { - pp->data_toggle_in ^= 1U; - } - break; - } - - pp_reg->HCHINTF = HCHINTF_CH; - } else if (intr_pp & HCHINTF_USBER) { - pp->err_count++; - usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_USBER, PIPE_TRACERR); - } else if (intr_pp & HCHINTF_NAK) { - switch (ep_type) { - case USB_EPTYPE_CTRL: - case USB_EPTYPE_BULK: - /* re-activate the channel */ - pp_reg->HCHCTL = (pp_reg->HCHCTL | HCHCTL_CEN) & ~HCHCTL_CDIS; - break; - - case USB_EPTYPE_INTR: - pp_reg->HCHINTEN |= HCHINTEN_CHIE; - - (void)usb_pipe_halt(udev, (uint8_t)pp_num); - break; - - default: - break; - } - - pp->pp_status = PIPE_NAK; - - pp_reg->HCHINTF = HCHINTF_NAK; - } else { - /* no operation */ - } - - return 1U; -} - -/*! - \brief handle the OUT channel interrupt - \param[in] udev: pointer to USB device instance - \param[in] pp_num: host channel number which is in (0..7) - \param[out] none - \retval operation status -*/ -#if defined (__ICCARM__) /*!< IAR compiler */ - #pragma optimize = none -#endif /* __ICCARM */ -static uint32_t usbh_int_pipe_out (usb_core_driver *udev, uint32_t pp_num) -{ - usb_pr *pp_reg = udev->regs.pr[pp_num]; - - usb_pipe *pp = &udev->host.pipe[pp_num]; - - uint32_t intr_pp = pp_reg->HCHINTF & pp_reg->HCHINTEN; - - if (intr_pp & HCHINTF_ACK) { - if (GD_URB_PING == pp->urb_state) { - pp->err_count = 0U; - usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_TF, PIPE_XF); - } - - pp_reg->HCHINTF = HCHINTF_ACK; - } else if (intr_pp & HCHINTF_STALL) { - usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_STALL, PIPE_STALL); - } else if (intr_pp & HCHINTF_DTER) { - usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_DTER, PIPE_DTGERR); - pp_reg->HCHINTF = HCHINTF_NAK; - } else if (intr_pp & HCHINTF_REQOVR) { - usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_REQOVR, PIPE_REQOVR); - } else if (intr_pp & HCHINTF_TF) { - pp->err_count = 0U; - usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_TF, PIPE_XF); - } else if (intr_pp & HCHINTF_NAK) { - pp->err_count = 0U; - usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_NAK, PIPE_NAK); - } else if (intr_pp & HCHINTF_USBER) { - pp->err_count++; - usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_USBER, PIPE_TRACERR); - } else if (intr_pp & HCHINTF_NYET) { - pp->err_count = 0U; - usb_pp_halt (udev, (uint8_t)pp_num, HCHINTF_NYET, PIPE_NYET); - } else if (intr_pp & HCHINTF_CH) { - udev->regs.pr[pp_num]->HCHINTEN &= ~HCHINTEN_CHIE; - - switch (pp->pp_status) { - case PIPE_XF: - pp->urb_state = GD_URB_DONE; - - if ((uint8_t)USB_EPTYPE_BULK == ((pp_reg->HCHCTL & HCHCTL_EPTYPE) >> 18U)) { - pp->data_toggle_out ^= 1U; - } - break; - - case PIPE_NAK: - - if (GD_URB_PING == pp->urb_state) { - (void)usb_pipe_ping (udev, (uint8_t)pp_num); - } else { - pp->urb_state = GD_URB_NOTREADY; - } - break; - - case PIPE_NYET: - if (1U == udev->host.pipe[pp_num].ping) { - (void)usb_pipe_ping (udev, (uint8_t)pp_num); - pp->urb_state = GD_URB_PING; - } - else { - pp->urb_state = GD_URB_NOTREADY; - } - break; - - case PIPE_STALL: - pp->urb_state = GD_URB_STALL; - break; - - case PIPE_TRACERR: - if (3U == pp->err_count) { - pp->urb_state = GD_URB_ERROR; - pp->err_count = 0U; - } - break; - - case PIPE_IDLE: - case PIPE_HALTED: - case PIPE_BBERR: - case PIPE_REQOVR: - case PIPE_DTGERR: - default: - break; - } - - pp_reg->HCHINTF = HCHINTF_CH; - } else { - /* no operation */ - } - - return 1U; -} - -/*! - \brief handle the RX FIFO non-empty interrupt - \param[in] udev: pointer to USB device instance - \param[out] none - \retval operation status -*/ -#if defined (__ICCARM__) /*!< IAR compiler */ - #pragma optimize = none -#endif /* __ICCARM */ -static uint32_t usbh_int_rxfifonoempty (usb_core_driver *udev) -{ - uint32_t count = 0U; - - __IO uint8_t pp_num = 0U; - __IO uint32_t rx_stat = 0U; - - /* disable the RX status queue level interrupt */ - udev->regs.gr->GINTEN &= ~GINTEN_RXFNEIE; - - rx_stat = udev->regs.gr->GRSTATP; - pp_num = (uint8_t)(rx_stat & GRSTATRP_CNUM); - - switch ((rx_stat & GRSTATRP_RPCKST) >> 17U) { - case GRXSTS_PKTSTS_IN: - count = (rx_stat & GRSTATRP_BCOUNT) >> 4U; - - /* read the data into the host buffer. */ - if ((count > 0U) && (NULL != udev->host.pipe[pp_num].xfer_buf)) { - (void)usb_rxfifo_read (&udev->regs, udev->host.pipe[pp_num].xfer_buf, (uint16_t)count); - - /* manage multiple transfer packet */ - udev->host.pipe[pp_num].xfer_buf += count; - udev->host.pipe[pp_num].xfer_count += count; - - udev->host.backup_xfercount[pp_num] = udev->host.pipe[pp_num].xfer_count; - - if (udev->regs.pr[pp_num]->HCHLEN & HCHLEN_PCNT) { - /* re-activate the channel when more packets are expected */ - __IO uint32_t pp_ctl = udev->regs.pr[pp_num]->HCHCTL; - - pp_ctl |= HCHCTL_CEN; - pp_ctl &= ~HCHCTL_CDIS; - - udev->regs.pr[pp_num]->HCHCTL = pp_ctl; - } - } - break; - - case GRXSTS_PKTSTS_IN_XFER_COMP: - break; - - case GRXSTS_PKTSTS_DATA_TOGGLE_ERR: - count = (rx_stat & GRSTATRP_BCOUNT) >> 4U; - - while (count > 0U) { - rx_stat = udev->regs.gr->GRSTATP; - count--; - } - break; - - case GRXSTS_PKTSTS_CH_HALTED: - break; - - default: - break; - } - - /* enable the RX status queue level interrupt */ - udev->regs.gr->GINTEN |= GINTEN_RXFNEIE; - - return 1U; -} - -/*! - \brief handle the TX FIFO empty interrupt - \param[in] udev: pointer to USB device instance - \param[in] pp_mode: pipe mode - \param[out] none - \retval operation status -*/ -#if defined (__ICCARM__) /*!< IAR compiler */ - #pragma optimize = none -#endif /* __ICCARM */ -static uint32_t usbh_int_txfifoempty (usb_core_driver *udev, usb_pipe_mode pp_mode) -{ - uint8_t pp_num = 0U; - uint16_t word_count = 0U, len = 0U; - __IO uint32_t *txfiforeg = 0U, txfifostate = 0U; - - if (PIPE_NON_PERIOD == pp_mode) { - txfiforeg = &udev->regs.gr->HNPTFQSTAT; - } else if (PIPE_PERIOD == pp_mode) { - txfiforeg = &udev->regs.hr->HPTFQSTAT; - } else { - return 0U; - } - - txfifostate = *txfiforeg; - - pp_num = (uint8_t)((txfifostate & TFQSTAT_CNUM) >> 27U); - - word_count = (uint16_t)(udev->host.pipe[pp_num].xfer_len + 3U) / 4U; - - while (((txfifostate & TFQSTAT_TXFS) >= word_count) && (0U != udev->host.pipe[pp_num].xfer_len)) { - len = (uint16_t)(txfifostate & TFQSTAT_TXFS) * 4U; - - if (len > udev->host.pipe[pp_num].xfer_len) { - /* last packet */ - len = (uint16_t)udev->host.pipe[pp_num].xfer_len; - - if (PIPE_NON_PERIOD == pp_mode) { - udev->regs.gr->GINTEN &= ~GINTEN_NPTXFEIE; - } else { - udev->regs.gr->GINTEN &= ~GINTEN_PTXFEIE; - } - } - - word_count = (uint16_t)((udev->host.pipe[pp_num].xfer_len + 3U) / 4U); - usb_txfifo_write (&udev->regs, udev->host.pipe[pp_num].xfer_buf, pp_num, len); - - udev->host.pipe[pp_num].xfer_buf += len; - udev->host.pipe[pp_num].xfer_len -= len; - udev->host.pipe[pp_num].xfer_count += len; - - txfifostate = *txfiforeg; - } - - return 1U; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/drv_usbh_int.h b/Marlin/lib/GD32F4xx_usb_library/src/drv_usbh_int.h deleted file mode 100644 index 727cea3cf8..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/drv_usbh_int.h +++ /dev/null @@ -1,56 +0,0 @@ -/*! - \file drv_usbh_int.h.h - \brief USB host mode interrupt management header file - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __DRV_USBH_INT_H -#define __DRV_USBH_INT_H - -#include "drv_usb_host.h" -#include "gdusbh_core.h" - -typedef struct _usbh_int_cb -{ - uint8_t (*connect) (usbh_host *uhost); - uint8_t (*disconnect) (usbh_host *uhost); - uint8_t (*port_enabled) (usbh_host *uhost); - uint8_t (*port_disabled) (usbh_host *uhost); - uint8_t (*SOF) (usbh_host *uhost); -} usbh_int_cb; - -extern usbh_int_cb *usbh_int_fop; - -/* function declarations */ -/* handle global host interrupt */ -uint32_t usbh_isr (usb_core_driver *udev); - -#endif /* __DRV_USBH_INT_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gd32_usb_helper.h b/Marlin/lib/GD32F4xx_usb_library/src/gd32_usb_helper.h deleted file mode 100644 index d260efee19..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/gd32_usb_helper.h +++ /dev/null @@ -1,30 +0,0 @@ -#pragma once - -#include -#include - - -#ifndef NULL - #define NULL 0 -#endif - -#ifndef __IO - #define __IO volatile -#endif - -/* bit operations */ -#define REG32(addr) (*(volatile uint32_t *)(uint32_t)(addr)) -#define REG16(addr) (*(volatile uint16_t *)(uint32_t)(addr)) -#define REG8(addr) (*(volatile uint8_t *)(uint32_t)(addr)) -#define BIT(x) ((uint32_t)((uint32_t)0x01U<<(x))) -#define BITS(start, end) ((0xFFFFFFFFUL << (start)) & (0xFFFFFFFFUL >> (31U - (uint32_t)(end)))) -#define GET_BITS(regval, start, end) (((regval) & BITS((start),(end))) >> (start)) - -/* bits definitions */ -/* PMU_CTL */ -#define PMU_CTL_LDOLP BIT(0) /*!< LDO low power mode */ -#define PMU_LDO_LOWPOWER PMU_CTL_LDOLP /*!< LDO work at low power status when PMU enter deepsleep mode */ - -/* PMU command constants definitions */ -#define WFI_CMD ((uint8_t)0x00U) /*!< use WFI command */ -#define WFE_CMD ((uint8_t)0x01U) /*!< use WFE command */ \ No newline at end of file diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gd32f4xx.h b/Marlin/lib/GD32F4xx_usb_library/src/gd32f4xx.h deleted file mode 100644 index 44b228c55e..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/gd32f4xx.h +++ /dev/null @@ -1,367 +0,0 @@ -/*! - \file gd32f4xx.h - \brief general definitions for GD32F4xx - - \version 2016-08-15, V1.0.0, firmware for GD32F4xx - \version 2018-12-12, V2.0.0, firmware for GD32F4xx - \version 2020-09-30, V2.1.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef GD32F4XX_H -#define GD32F4XX_H - -#ifdef __cplusplus - extern "C" { -#endif - -/* define GD32F4xx */ -#if !defined (GD32F450) && !defined (GD32F405) && !defined (GD32F407) - /* #define GD32F450 */ - /* #define GD32F405 */ - /* #define GD32F407 */ -#endif /* define GD32F4xx */ - -#if !defined (GD32F450) && !defined (GD32F405) && !defined (GD32F407) - #error "Please select the target GD32F4xx device in gd32f4xx.h file" -#endif /* undefine GD32F4xx tip */ - -/* define value of high speed crystal oscillator (HXTAL) in Hz */ -#if !defined (HXTAL_VALUE) -#define HXTAL_VALUE ((uint32_t)25000000) -#endif /* high speed crystal oscillator value */ - -/* define startup timeout value of high speed crystal oscillator (HXTAL) */ -#if !defined (HXTAL_STARTUP_TIMEOUT) -#define HXTAL_STARTUP_TIMEOUT ((uint16_t)0xFFFF) -#endif /* high speed crystal oscillator startup timeout */ - -/* define value of internal 16MHz RC oscillator (IRC16M) in Hz */ -#if !defined (IRC16M_VALUE) -#define IRC16M_VALUE ((uint32_t)16000000) -#endif /* internal 16MHz RC oscillator value */ - -/* define startup timeout value of internal 16MHz RC oscillator (IRC16M) */ -#if !defined (IRC16M_STARTUP_TIMEOUT) -#define IRC16M_STARTUP_TIMEOUT ((uint16_t)0x0500) -#endif /* internal 16MHz RC oscillator startup timeout */ - -/* define value of internal 32KHz RC oscillator(IRC32K) in Hz */ -#if !defined (IRC32K_VALUE) -#define IRC32K_VALUE ((uint32_t)32000) -#endif /* internal 32KHz RC oscillator value */ - -/* define value of low speed crystal oscillator (LXTAL)in Hz */ -#if !defined (LXTAL_VALUE) -#define LXTAL_VALUE ((uint32_t)32768) -#endif /* low speed crystal oscillator value */ - -/* I2S external clock in selection */ -//#define I2S_EXTERNAL_CLOCK_IN (uint32_t)12288000U - -/* GD32F4xx firmware library version number V1.0 */ -#define __GD32F4xx_STDPERIPH_VERSION_MAIN (0x03) /*!< [31:24] main version */ -#define __GD32F4xx_STDPERIPH_VERSION_SUB1 (0x00) /*!< [23:16] sub1 version */ -#define __GD32F4xx_STDPERIPH_VERSION_SUB2 (0x00) /*!< [15:8] sub2 version */ -#define __GD32F4xx_STDPERIPH_VERSION_RC (0x00) /*!< [7:0] release candidate */ -#define __GD32F4xx_STDPERIPH_VERSION ((__GD32F4xx_STDPERIPH_VERSION_MAIN << 24)\ - |(__GD32F4xx_STDPERIPH_VERSION_SUB1 << 16)\ - |(__GD32F4xx_STDPERIPH_VERSION_SUB2 << 8)\ - |(__GD32F4xx_STDPERIPH_VERSION_RC)) - -/* configuration of the cortex-M4 processor and core peripherals */ -#define __CM4_REV 0x0001 /*!< core revision r0p1 */ -#define __MPU_PRESENT 1 /*!< GD32F4xx provide MPU */ -#define __NVIC_PRIO_BITS 4 /*!< GD32F4xx uses 4 bits for the priority levels */ -#define __Vendor_SysTickConfig 0 /*!< set to 1 if different sysTick config is used */ -#define __FPU_PRESENT 1 /*!< FPU present */ - -#if 0 -/* define interrupt number */ -typedef enum IRQn -{ - /* cortex-M4 processor exceptions numbers */ - NonMaskableInt_IRQn = -14, /*!< 2 non maskable interrupt */ - MemoryManagement_IRQn = -12, /*!< 4 cortex-M4 memory management interrupt */ - BusFault_IRQn = -11, /*!< 5 cortex-M4 bus fault interrupt */ - UsageFault_IRQn = -10, /*!< 6 cortex-M4 usage fault interrupt */ - SVCall_IRQn = -5, /*!< 11 cortex-M4 SV call interrupt */ - DebugMonitor_IRQn = -4, /*!< 12 cortex-M4 debug monitor interrupt */ - PendSV_IRQn = -2, /*!< 14 cortex-M4 pend SV interrupt */ - SysTick_IRQn = -1, /*!< 15 cortex-M4 system tick interrupt */ - /* interruput numbers */ - WWDGT_IRQn = 0, /*!< window watchdog timer interrupt */ - LVD_IRQn = 1, /*!< LVD through EXTI line detect interrupt */ - TAMPER_STAMP_IRQn = 2, /*!< tamper and timestamp through EXTI line detect */ - RTC_WKUP_IRQn = 3, /*!< RTC wakeup through EXTI line interrupt */ - FMC_IRQn = 4, /*!< FMC interrupt */ - RCU_CTC_IRQn = 5, /*!< RCU and CTC interrupt */ - EXTI0_IRQn = 6, /*!< EXTI line 0 interrupts */ - EXTI1_IRQn = 7, /*!< EXTI line 1 interrupts */ - EXTI2_IRQn = 8, /*!< EXTI line 2 interrupts */ - EXTI3_IRQn = 9, /*!< EXTI line 3 interrupts */ - EXTI4_IRQn = 10, /*!< EXTI line 4 interrupts */ - DMA0_Channel0_IRQn = 11, /*!< DMA0 channel0 Interrupt */ - DMA0_Channel1_IRQn = 12, /*!< DMA0 channel1 Interrupt */ - DMA0_Channel2_IRQn = 13, /*!< DMA0 channel2 interrupt */ - DMA0_Channel3_IRQn = 14, /*!< DMA0 channel3 interrupt */ - DMA0_Channel4_IRQn = 15, /*!< DMA0 channel4 interrupt */ - DMA0_Channel5_IRQn = 16, /*!< DMA0 channel5 interrupt */ - DMA0_Channel6_IRQn = 17, /*!< DMA0 channel6 interrupt */ - ADC_IRQn = 18, /*!< ADC interrupt */ - CAN0_TX_IRQn = 19, /*!< CAN0 TX interrupt */ - CAN0_RX0_IRQn = 20, /*!< CAN0 RX0 interrupt */ - CAN0_RX1_IRQn = 21, /*!< CAN0 RX1 interrupt */ - CAN0_EWMC_IRQn = 22, /*!< CAN0 EWMC interrupt */ - EXTI5_9_IRQn = 23, /*!< EXTI[9:5] interrupts */ - TIMER0_BRK_TIMER8_IRQn = 24, /*!< TIMER0 break and TIMER8 interrupts */ - TIMER0_UP_TIMER9_IRQn = 25, /*!< TIMER0 update and TIMER9 interrupts */ - TIMER0_TRG_CMT_TIMER10_IRQn = 26, /*!< TIMER0 trigger and commutation and TIMER10 interrupts */ - TIMER0_Channel_IRQn = 27, /*!< TIMER0 channel capture compare interrupt */ - TIMER1_IRQn = 28, /*!< TIMER1 interrupt */ - TIMER2_IRQn = 29, /*!< TIMER2 interrupt */ - TIMER3_IRQn = 30, /*!< TIMER3 interrupts */ - I2C0_EV_IRQn = 31, /*!< I2C0 event interrupt */ - I2C0_ER_IRQn = 32, /*!< I2C0 error interrupt */ - I2C1_EV_IRQn = 33, /*!< I2C1 event interrupt */ - I2C1_ER_IRQn = 34, /*!< I2C1 error interrupt */ - SPI0_IRQn = 35, /*!< SPI0 interrupt */ - SPI1_IRQn = 36, /*!< SPI1 interrupt */ - USART0_IRQn = 37, /*!< USART0 interrupt */ - USART1_IRQn = 38, /*!< USART1 interrupt */ - USART2_IRQn = 39, /*!< USART2 interrupt */ - EXTI10_15_IRQn = 40, /*!< EXTI[15:10] interrupts */ - RTC_Alarm_IRQn = 41, /*!< RTC alarm interrupt */ - USBFS_WKUP_IRQn = 42, /*!< USBFS wakeup interrupt */ - TIMER7_BRK_TIMER11_IRQn = 43, /*!< TIMER7 break and TIMER11 interrupts */ - TIMER7_UP_TIMER12_IRQn = 44, /*!< TIMER7 update and TIMER12 interrupts */ - TIMER7_TRG_CMT_TIMER13_IRQn = 45, /*!< TIMER7 trigger and commutation and TIMER13 interrupts */ - TIMER7_Channel_IRQn = 46, /*!< TIMER7 channel capture compare interrupt */ - DMA0_Channel7_IRQn = 47, /*!< DMA0 channel7 interrupt */ - -#if defined (GD32F450) - EXMC_IRQn = 48, /*!< EXMC interrupt */ - SDIO_IRQn = 49, /*!< SDIO interrupt */ - TIMER4_IRQn = 50, /*!< TIMER4 interrupt */ - SPI2_IRQn = 51, /*!< SPI2 interrupt */ - UART3_IRQn = 52, /*!< UART3 interrupt */ - UART4_IRQn = 53, /*!< UART4 interrupt */ - TIMER5_DAC_IRQn = 54, /*!< TIMER5 and DAC0 DAC1 underrun error interrupts */ - TIMER6_IRQn = 55, /*!< TIMER6 interrupt */ - DMA1_Channel0_IRQn = 56, /*!< DMA1 channel0 interrupt */ - DMA1_Channel1_IRQn = 57, /*!< DMA1 channel1 interrupt */ - DMA1_Channel2_IRQn = 58, /*!< DMA1 channel2 interrupt */ - DMA1_Channel3_IRQn = 59, /*!< DMA1 channel3 interrupt */ - DMA1_Channel4_IRQn = 60, /*!< DMA1 channel4 interrupt */ - ENET_IRQn = 61, /*!< ENET interrupt */ - ENET_WKUP_IRQn = 62, /*!< ENET wakeup through EXTI line interrupt */ - CAN1_TX_IRQn = 63, /*!< CAN1 TX interrupt */ - CAN1_RX0_IRQn = 64, /*!< CAN1 RX0 interrupt */ - CAN1_RX1_IRQn = 65, /*!< CAN1 RX1 interrupt */ - CAN1_EWMC_IRQn = 66, /*!< CAN1 EWMC interrupt */ - USBFS_IRQn = 67, /*!< USBFS interrupt */ - DMA1_Channel5_IRQn = 68, /*!< DMA1 channel5 interrupt */ - DMA1_Channel6_IRQn = 69, /*!< DMA1 channel6 interrupt */ - DMA1_Channel7_IRQn = 70, /*!< DMA1 channel7 interrupt */ - USART5_IRQn = 71, /*!< USART5 interrupt */ - I2C2_EV_IRQn = 72, /*!< I2C2 event interrupt */ - I2C2_ER_IRQn = 73, /*!< I2C2 error interrupt */ - USBHS_EP1_Out_IRQn = 74, /*!< USBHS endpoint 1 out interrupt */ - USBHS_EP1_In_IRQn = 75, /*!< USBHS endpoint 1 in interrupt */ - USBHS_WKUP_IRQn = 76, /*!< USBHS wakeup through EXTI line interrupt */ - USBHS_IRQn = 77, /*!< USBHS interrupt */ - DCI_IRQn = 78, /*!< DCI interrupt */ - TRNG_IRQn = 80, /*!< TRNG interrupt */ - FPU_IRQn = 81, /*!< FPU interrupt */ - UART6_IRQn = 82, /*!< UART6 interrupt */ - UART7_IRQn = 83, /*!< UART7 interrupt */ - SPI3_IRQn = 84, /*!< SPI3 interrupt */ - SPI4_IRQn = 85, /*!< SPI4 interrupt */ - SPI5_IRQn = 86, /*!< SPI5 interrupt */ - TLI_IRQn = 88, /*!< TLI interrupt */ - TLI_ER_IRQn = 89, /*!< TLI error interrupt */ - IPA_IRQn = 90, /*!< IPA interrupt */ -#endif /* GD32F450 */ - -#if defined (GD32F405) - SDIO_IRQn = 49, /*!< SDIO interrupt */ - TIMER4_IRQn = 50, /*!< TIMER4 interrupt */ - SPI2_IRQn = 51, /*!< SPI2 interrupt */ - UART3_IRQn = 52, /*!< UART3 interrupt */ - UART4_IRQn = 53, /*!< UART4 interrupt */ - TIMER5_DAC_IRQn = 54, /*!< TIMER5 and DAC0 DAC1 underrun error interrupts */ - TIMER6_IRQn = 55, /*!< TIMER6 interrupt */ - DMA1_Channel0_IRQn = 56, /*!< DMA1 channel0 interrupt */ - DMA1_Channel1_IRQn = 57, /*!< DMA1 channel1 interrupt */ - DMA1_Channel2_IRQn = 58, /*!< DMA1 channel2 interrupt */ - DMA1_Channel3_IRQn = 59, /*!< DMA1 channel3 interrupt */ - DMA1_Channel4_IRQn = 60, /*!< DMA1 channel4 interrupt */ - CAN1_TX_IRQn = 63, /*!< CAN1 TX interrupt */ - CAN1_RX0_IRQn = 64, /*!< CAN1 RX0 interrupt */ - CAN1_RX1_IRQn = 65, /*!< CAN1 RX1 interrupt */ - CAN1_EWMC_IRQn = 66, /*!< CAN1 EWMC interrupt */ - USBFS_IRQn = 67, /*!< USBFS interrupt */ - DMA1_Channel5_IRQn = 68, /*!< DMA1 channel5 interrupt */ - DMA1_Channel6_IRQn = 69, /*!< DMA1 channel6 interrupt */ - DMA1_Channel7_IRQn = 70, /*!< DMA1 channel7 interrupt */ - USART5_IRQn = 71, /*!< USART5 interrupt */ - I2C2_EV_IRQn = 72, /*!< I2C2 event interrupt */ - I2C2_ER_IRQn = 73, /*!< I2C2 error interrupt */ - USBHS_EP1_Out_IRQn = 74, /*!< USBHS endpoint 1 Out interrupt */ - USBHS_EP1_In_IRQn = 75, /*!< USBHS endpoint 1 in interrupt */ - USBHS_WKUP_IRQn = 76, /*!< USBHS wakeup through EXTI line interrupt */ - USBHS_IRQn = 77, /*!< USBHS interrupt */ - DCI_IRQn = 78, /*!< DCI interrupt */ - TRNG_IRQn = 80, /*!< TRNG interrupt */ - FPU_IRQn = 81, /*!< FPU interrupt */ -#endif /* GD32F405 */ - -#if defined (GD32F407) - EXMC_IRQn = 48, /*!< EXMC interrupt */ - SDIO_IRQn = 49, /*!< SDIO interrupt */ - TIMER4_IRQn = 50, /*!< TIMER4 interrupt */ - SPI2_IRQn = 51, /*!< SPI2 interrupt */ - UART3_IRQn = 52, /*!< UART3 interrupt */ - UART4_IRQn = 53, /*!< UART4 interrupt */ - TIMER5_DAC_IRQn = 54, /*!< TIMER5 and DAC0 DAC1 underrun error interrupts */ - TIMER6_IRQn = 55, /*!< TIMER6 interrupt */ - DMA1_Channel0_IRQn = 56, /*!< DMA1 channel0 interrupt */ - DMA1_Channel1_IRQn = 57, /*!< DMA1 channel1 interrupt */ - DMA1_Channel2_IRQn = 58, /*!< DMA1 channel2 interrupt */ - DMA1_Channel3_IRQn = 59, /*!< DMA1 channel3 interrupt */ - DMA1_Channel4_IRQn = 60, /*!< DMA1 channel4 interrupt */ - ENET_IRQn = 61, /*!< ENET interrupt */ - ENET_WKUP_IRQn = 62, /*!< ENET wakeup through EXTI line interrupt */ - CAN1_TX_IRQn = 63, /*!< CAN1 TX interrupt */ - CAN1_RX0_IRQn = 64, /*!< CAN1 RX0 interrupt */ - CAN1_RX1_IRQn = 65, /*!< CAN1 RX1 interrupt */ - CAN1_EWMC_IRQn = 66, /*!< CAN1 EWMC interrupt */ - USBFS_IRQn = 67, /*!< USBFS interrupt */ - DMA1_Channel5_IRQn = 68, /*!< DMA1 channel5 interrupt */ - DMA1_Channel6_IRQn = 69, /*!< DMA1 channel6 interrupt */ - DMA1_Channel7_IRQn = 70, /*!< DMA1 channel7 interrupt */ - USART5_IRQn = 71, /*!< USART5 interrupt */ - I2C2_EV_IRQn = 72, /*!< I2C2 event interrupt */ - I2C2_ER_IRQn = 73, /*!< I2C2 error interrupt */ - USBHS_EP1_Out_IRQn = 74, /*!< USBHS endpoint 1 out interrupt */ - USBHS_EP1_In_IRQn = 75, /*!< USBHS endpoint 1 in interrupt */ - USBHS_WKUP_IRQn = 76, /*!< USBHS wakeup through EXTI line interrupt */ - USBHS_IRQn = 77, /*!< USBHS interrupt */ - DCI_IRQn = 78, /*!< DCI interrupt */ - TRNG_IRQn = 80, /*!< TRNG interrupt */ - FPU_IRQn = 81, /*!< FPU interrupt */ -#endif /* GD32F407 */ - -} IRQn_Type; -#endif -/* includes */ -#include "core_cm4.h" -// #include "system_gd32f4xx.h" -#include - -/* enum definitions */ -typedef enum {DISABLE = 0, ENABLE = !DISABLE} EventStatus, ControlStatus; -typedef enum {RESET = 0, SET = !RESET} FlagStatus; -typedef enum {ERROR = 0, SUCCESS = !ERROR} ErrStatus; - -/* bit operations */ -#define REG32(addr) (*(volatile uint32_t *)(uint32_t)(addr)) -#define REG16(addr) (*(volatile uint16_t *)(uint32_t)(addr)) -#define REG8(addr) (*(volatile uint8_t *)(uint32_t)(addr)) -#define BIT(x) ((uint32_t)((uint32_t)0x01U<<(x))) -#define BITS(start, end) ((0xFFFFFFFFUL << (start)) & (0xFFFFFFFFUL >> (31U - (uint32_t)(end)))) -#define GET_BITS(regval, start, end) (((regval) & BITS((start),(end))) >> (start)) - -/* main flash and SRAM memory map */ -#define FLASH_BASE ((uint32_t)0x08000000U) /*!< main FLASH base address */ -#define TCMSRAM_BASE ((uint32_t)0x10000000U) /*!< TCMSRAM(64KB) base address */ -#define OPTION_BASE ((uint32_t)0x1FFEC000U) /*!< Option bytes base address */ -#define SRAM_BASE ((uint32_t)0x20000000U) /*!< SRAM0 base address */ - -/* peripheral memory map */ -#define APB1_BUS_BASE ((uint32_t)0x40000000U) /*!< apb1 base address */ -#define APB2_BUS_BASE ((uint32_t)0x40010000U) /*!< apb2 base address */ -#define AHB1_BUS_BASE ((uint32_t)0x40020000U) /*!< ahb1 base address */ -#define AHB2_BUS_BASE ((uint32_t)0x50000000U) /*!< ahb2 base address */ - -/* EXMC memory map */ -#define EXMC_BASE ((uint32_t)0xA0000000U) /*!< EXMC register base address */ - -/* advanced peripheral bus 1 memory map */ -#define TIMER_BASE (APB1_BUS_BASE + 0x00000000U) /*!< TIMER base address */ -#define RTC_BASE (APB1_BUS_BASE + 0x00002800U) /*!< RTC base address */ -#define WWDGT_BASE (APB1_BUS_BASE + 0x00002C00U) /*!< WWDGT base address */ -#define FWDGT_BASE (APB1_BUS_BASE + 0x00003000U) /*!< FWDGT base address */ -#define I2S_ADD_BASE (APB1_BUS_BASE + 0x00003400U) /*!< I2S1_add base address */ -#define SPI_BASE (APB1_BUS_BASE + 0x00003800U) /*!< SPI base address */ -#define USART_BASE (APB1_BUS_BASE + 0x00004400U) /*!< USART base address */ -#define I2C_BASE (APB1_BUS_BASE + 0x00005400U) /*!< I2C base address */ -#define CAN_BASE (APB1_BUS_BASE + 0x00006400U) /*!< CAN base address */ -#define CTC_BASE (APB1_BUS_BASE + 0x00006C00U) /*!< CTC base address */ -#define PMU_BASE (APB1_BUS_BASE + 0x00007000U) /*!< PMU base address */ -#define DAC_BASE (APB1_BUS_BASE + 0x00007400U) /*!< DAC base address */ -#define IREF_BASE (APB1_BUS_BASE + 0x0000C400U) /*!< IREF base address */ - -/* advanced peripheral bus 2 memory map */ -#define TLI_BASE (APB2_BUS_BASE + 0x00006800U) /*!< TLI base address */ -#define SYSCFG_BASE (APB2_BUS_BASE + 0x00003800U) /*!< SYSCFG base address */ -#define EXTI_BASE (APB2_BUS_BASE + 0x00003C00U) /*!< EXTI base address */ -#define SDIO_BASE (APB2_BUS_BASE + 0x00002C00U) /*!< SDIO base address */ -#define ADC_BASE (APB2_BUS_BASE + 0x00002000U) /*!< ADC base address */ -/* advanced high performance bus 1 memory map */ -#define GPIO_BASE (AHB1_BUS_BASE + 0x00000000U) /*!< GPIO base address */ -#define CRC_BASE (AHB1_BUS_BASE + 0x00003000U) /*!< CRC base address */ -#define RCU_BASE (AHB1_BUS_BASE + 0x00003800U) /*!< RCU base address */ -#define FMC_BASE (AHB1_BUS_BASE + 0x00003C00U) /*!< FMC base address */ -#define BKPSRAM_BASE (AHB1_BUS_BASE + 0x00004000U) /*!< BKPSRAM base address */ -#define DMA_BASE (AHB1_BUS_BASE + 0x00006000U) /*!< DMA base address */ -#define ENET_BASE (AHB1_BUS_BASE + 0x00008000U) /*!< ENET base address */ -#define IPA_BASE (AHB1_BUS_BASE + 0x0000B000U) /*!< IPA base address */ -#define USBHS_BASE (AHB1_BUS_BASE + 0x00020000U) /*!< USBHS base address */ - -/* advanced high performance bus 2 memory map */ -#define USBFS_BASE (AHB2_BUS_BASE + 0x00000000U) /*!< USBFS base address */ -#define DCI_BASE (AHB2_BUS_BASE + 0x00050000U) /*!< DCI base address */ -#define TRNG_BASE (AHB2_BUS_BASE + 0x00060800U) /*!< TRNG base address */ -/* option byte and debug memory map */ -#define OB_BASE ((uint32_t)0x1FFEC000U) /*!< OB base address */ -#define DBG_BASE ((uint32_t)0xE0042000U) /*!< DBG base address */ - -/* define marco USE_STDPERIPH_DRIVER */ -#if !defined USE_STDPERIPH_DRIVER -#define USE_STDPERIPH_DRIVER -#endif -#ifdef USE_STDPERIPH_DRIVER -//#include "gd32f4xx_libopt.h" -#endif /* USE_STDPERIPH_DRIVER */ - -#ifdef __cplusplus -} -#endif -#endif diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusb_cdc.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusb_cdc.h deleted file mode 100644 index 8b1bc62901..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/gdusb_cdc.h +++ /dev/null @@ -1,180 +0,0 @@ -/*! - \file usb_cdc.h - \brief the header file of communication device class standard - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USB_CDC_H -#define __USB_CDC_H - -#include "usb_ch9_std.h" - -/* communications device class code */ -#define USB_CLASS_CDC 0x02U - -/* communications interface class control protocol codes */ -#define USB_CDC_PROTOCOL_NONE 0x00U -#define USB_CDC_PROTOCOL_AT 0x01U -#define USB_CDC_PROTOCOL_VENDOR 0xFFU - -/* data interface class code */ -#define USB_CLASS_DATA 0x0AU - -#define USB_DESCTYPE_CDC_ACM 0x21U -#define USB_DESCTYPE_CS_INTERFACE 0x24U - -#define USB_CDC_ACM_CONFIG_DESC_SIZE 0x43U - -/* class-specific notification codes for pstn subclasses */ -#define USB_CDC_NOTIFY_SERIAL_STATE 0x20U - -/* class-specific request codes */ -#define SEND_ENCAPSULATED_COMMAND 0x00U -#define GET_ENCAPSULATED_RESPONSE 0x01U -#define SET_COMM_FEATURE 0x02U -#define GET_COMM_FEATURE 0x03U -#define CLEAR_COMM_FEATURE 0x04U - -#define SET_AUX_LINE_STATE 0x10U -#define SET_HOOK_STATE 0x11U -#define PULSE_SETUP 0x12U -#define SEND_PULSE 0x13U -#define SET_PULSE_TIME 0x14U -#define RING_AUX_JACK 0x15U - -#define SET_LINE_CODING 0x20U -#define GET_LINE_CODING 0x21U -#define SET_CONTROL_LINE_STATE 0x22U -#define SEND_BREAK 0x23U -#define NO_CMD 0xFFU - -#define SET_RINGER_PARMS 0x30U -#define GET_RINGER_PARMS 0x31U -#define SET_OPERATION_PARMS 0x32U -#define GET_OPERATION_PARMS 0x33U -#define SET_LINE_PARMS 0x34U -#define GET_LINE_PARMS 0x35U -#define DIAL_DIGITS 0x36U -#define SET_UNIT_PARAMETER 0x37U -#define GET_UNIT_PARAMETER 0x38U -#define CLEAR_UNIT_PARAMETER 0x39U -#define GET_PROFILE 0x3AU - -#define SET_ETHERNET_MULTICAST_FILTERS 0x40U -#define SET_ETHERNET_POWER_MANAGEMENT_PATTERN FILTER 0x41U -#define GET_ETHERNET_POWER_MANAGEMENT_PATTERN FILTER 0x42U -#define SET_ETHERNET_PACKET_FILTER 0x43U -#define GET_ETHERNET_STATISTIC 0x44U - -#define SET_ATM_DATA_FORMAT 0x50U -#define GET_ATM_DEVICE_STATISTICS 0x51U -#define SET_ATM_DEFAULT_VC 0x52U -#define GET_ATM_VC_STATISTICS 0x53U - -/* wValue for set control line state */ -#define CDC_ACTIVATE_CARRIER_SIGNAL_RTS 0x0002U -#define CDC_DEACTIVATE_CARRIER_SIGNAL_RTS 0x0000U -#define CDC_ACTIVATE_SIGNAL_DTR 0x0001U -#define CDC_DEACTIVATE_SIGNAL_DTR 0x0000U - -/* CDC subclass code */ -enum usb_cdc_subclass { - USB_CDC_SUBCLASS_RESERVED = 0U, /*!< reserved */ - USB_CDC_SUBCLASS_DLCM, /*!< direct line control mode */ - USB_CDC_SUBCLASS_ACM, /*!< abstract control mode */ - USB_CDC_SUBCLASS_TCM, /*!< telephone control mode */ - USB_CDC_SUBCLASS_MCM, /*!< multichannel control model */ - USB_CDC_SUBCLASS_CCM, /*!< CAPI control model */ - USB_CDC_SUBCLASS_ENCM, /*!< ethernet networking control model */ - USB_CDC_SUBCLASS_ANCM /*!< ATM networking control model */ -}; - -#pragma pack(1) - -/* cdc acm line coding structure */ -typedef struct { - uint32_t dwDTERate; /*!< data terminal rate */ - uint8_t bCharFormat; /*!< stop bits */ - uint8_t bParityType; /*!< parity */ - uint8_t bDataBits; /*!< data bits */ -} acm_line; - -/* notification structure */ -typedef struct { - uint8_t bmRequestType; /*!< type of request */ - uint8_t bNotification; /*!< communication interface class notifications */ - uint16_t wValue; /*!< value of notification */ - uint16_t wIndex; /*!< index of interface */ - uint16_t wLength; /*!< length of notification data */ -} acm_notification; - -typedef struct { - usb_desc_header header; /*!< descriptor header, including type and size. */ - uint8_t bDescriptorSubtype; /*!< bDescriptorSubtype: header function descriptor */ - uint16_t bcdCDC; /*!< bcdCDC: low byte of spec release number (CDC1.10) */ -} usb_desc_header_func; - -typedef struct { - usb_desc_header header; /*!< descriptor header, including type and size. */ - uint8_t bDescriptorSubtype; /*!< bDescriptorSubtype: call management function descriptor */ - uint8_t bmCapabilities; /*!< bmCapabilities: D0 is reset, D1 is ignored */ - uint8_t bDataInterface; /*!< bDataInterface: 1 interface used for call management */ -} usb_desc_call_managment_func; - -typedef struct { - usb_desc_header header; /*!< descriptor header, including type and size. */ - uint8_t bDescriptorSubtype; /*!< bDescriptorSubtype: abstract control management descriptor */ - uint8_t bmCapabilities; /*!< bmCapabilities: D1 */ -} usb_desc_acm_func; - -typedef struct { - usb_desc_header header; /*!< descriptor header, including type and size. */ - uint8_t bDescriptorSubtype; /*!< bDescriptorSubtype: union function descriptor */ - uint8_t bMasterInterface; /*!< bMasterInterface: communication class interface */ - uint8_t bSlaveInterface0; /*!< bSlaveInterface0: data class interface */ -} usb_desc_union_func; - -#pragma pack() - -typedef struct { - usb_desc_config config; - usb_desc_itf cmd_itf; - usb_desc_header_func cdc_header; - usb_desc_call_managment_func cdc_call_managment; - usb_desc_acm_func cdc_acm; - usb_desc_union_func cdc_union; - usb_desc_ep cdc_cmd_endpoint; - usb_desc_itf cdc_data_interface; - usb_desc_ep cdc_out_endpoint; - usb_desc_ep cdc_in_endpoint; -} usb_cdc_desc_config_set; - -#endif /* __USB_CDC_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusb_conf.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusb_conf.h deleted file mode 100644 index 7a9a55c4f0..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/gdusb_conf.h +++ /dev/null @@ -1,182 +0,0 @@ -/*! - \file usb_conf.h - \brief general low level driver configuration - - \version 2020-09-04, V3.0.0, demo for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USB_CONF_H -#define __USB_CONF_H - -#include "gd32_usb_helper.h" -// #include "gd32f4xx.h" -// #include "gd32f407v_start.h" - -#define USE_USB_FS -#define USE_USB_HS - -/****************** USB OTG FS PHY CONFIGURATION ******************************* - * The USB OTG FS Core supports one on-chip Full Speed PHY. - * The USE_EMBEDDED_PHY symbol is defined in the project compiler preprocessor - * when FS core is used. -*******************************************************************************/ - -#if 1//def USE_USB_FS - #define USB_FS_CORE -#endif - -#if 1 //def USE_USB_HS - #define USB_HS_CORE -#endif - -/******************************************************************************* - * FIFO Size Configuration in Host mode - * - * (i) Receive data FIFO size = (Largest Packet Size / 4) + 1 or - * 2x (Largest Packet Size / 4) + 1, If a - * high-bandwidth channel or multiple isochronous - * channels are enabled - * - * (ii) For the host nonperiodic Transmit FIFO is the largest maximum packet size - * for all supported nonperiodic OUT channels. Typically, a space - * corresponding to two Largest Packet Size is recommended. - * - * (iii) The minimum amount of RAM required for Host periodic Transmit FIFO is - * the largest maximum packet size for all supported periodic OUT channels. - * If there is at least one High Bandwidth Isochronous OUT endpoint, - * then the space must be at least two times the maximum packet size for - * that channel. -*******************************************************************************/ - -/****************** USB OTG FS CONFIGURATION **********************************/ -#ifdef USB_FS_CORE - - #define RX_FIFO_FS_SIZE 128 - #define TX0_FIFO_FS_SIZE 64 - #define TX1_FIFO_FS_SIZE 64 - #define TX2_FIFO_FS_SIZE 64 - #define TX3_FIFO_FS_SIZE 0 - - #define USB_RX_FIFO_FS_SIZE 128 - #define USB_HTX_NPFIFO_FS_SIZE 96 - #define USB_HTX_PFIFO_FS_SIZE 96 - - -#endif - -#ifdef USB_HS_CORE - #define RX_FIFO_HS_SIZE 512 - #define TX0_FIFO_HS_SIZE 128 - #define TX1_FIFO_HS_SIZE 128 - #define TX2_FIFO_HS_SIZE 128 - #define TX3_FIFO_HS_SIZE 0 - #define TX4_FIFO_HS_SIZE 0 - #define TX5_FIFO_HS_SIZE 0 - - #define USB_RX_FIFO_HS_SIZE 512 - #define USB_HTX_NPFIFO_HS_SIZE 256 - #define USB_HTX_PFIFO_HS_SIZE 256 - - - #ifdef USE_ULPI_PHY - #define USB_ULPI_PHY_ENABLED - #endif - - #ifdef USE_EMBEDDED_PHY - #define USB_EMBEDDED_PHY_ENABLED - #endif - -// #define USB_HS_INTERNAL_DMA_ENABLED -#endif - -#define USB_SOF_OUTPUT 0 -#define USB_LOW_POWER 0 - -//#define USB_LOW_PWR_ENABLE - -/****************** USB OTG MODE CONFIGURATION ********************************/ -#define USE_HOST_MODE -#define USE_DEVICE_MODE -//#define USE_OTG_MODE - -#ifndef USB_FS_CORE - #ifndef USB_HS_CORE - #error "USB_HS_CORE or USB_FS_CORE should be defined" - #endif -#endif - -#ifndef USE_DEVICE_MODE - #ifndef USE_HOST_MODE - #error "USE_DEVICE_MODE or USE_HOST_MODE should be defined" - #endif -#endif - -// #ifndef USE_USB_HS -// #ifndef USE_USB_FS -// #error "USE_USB_HS or USE_USB_FS should be defined" -// #endif -// #endif - -/****************** C Compilers dependent keywords ****************************/ -/* In HS mode and when the DMA is used, all variables and data structures dealing - with the DMA during the transaction process should be 4-bytes aligned */ -#ifdef USB_HS_INTERNAL_DMA_ENABLED - #if defined (__GNUC__) /* GNU Compiler */ - #define __ALIGN_END __attribute__ ((aligned(4))) - #define __ALIGN_BEGIN - #else - #define __ALIGN_END - #if defined (__CC_ARM) /* ARM Compiler */ - #define __ALIGN_BEGIN __align(4) - #elif defined (__ICCARM__) /* IAR Compiler */ - #define __ALIGN_BEGIN - #elif defined (__TASKING__) /* TASKING Compiler */ - #define __ALIGN_BEGIN __align(4) - #endif /* __CC_ARM */ - #endif /* __GNUC__ */ -#else - #define __ALIGN_BEGIN - #define __ALIGN_END -#endif /* USB_OTG_HS_INTERNAL_DMA_ENABLED */ - -/* __packed keyword used to decrease the data type alignment to 1-byte */ -#if defined (__CC_ARM) /* ARM Compiler */ - #define __packed __packed -#elif defined (__ICCARM__) /* IAR Compiler */ - #define __packed __packed -#elif defined ( __GNUC__ ) /* GNU Compiler */ - #ifndef __packed - #define __packed __attribute__ ((__packed__)) - #endif -#elif defined (__TASKING__) /* TASKING Compiler */ - #define __packed __unaligned -#endif /* __CC_ARM */ - -#endif /* __USB_CONF_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusb_msc.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusb_msc.h deleted file mode 100644 index 0ce94650e6..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/gdusb_msc.h +++ /dev/null @@ -1,68 +0,0 @@ -/*! - \file usb_msc.h - \brief definitions for the USB MSC class - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USB_MSC_H -#define __USB_MSC_H - -#include "usb_ch9_std.h" - -/* mass storage device class code */ -#define USB_CLASS_MSC 0x08U - -/* mass storage subclass code */ -#define USB_MSC_SUBCLASS_RBC 0x01U -#define USB_MSC_SUBCLASS_ATAPI 0x02U -#define USB_MSC_SUBCLASS_UFI 0x04U -#define USB_MSC_SUBCLASS_SCSI 0x06U -#define USB_MSC_SUBCLASS_LOCKABLE 0x07U -#define USB_MSC_SUBCLASS_IEEE1667 0x08U - -/* mass storage interface class control protocol codes */ -#define USB_MSC_PROTOCOL_CBI 0x00U -#define USB_MSC_PROTOCOL_CBI_ALT 0x01U -#define USB_MSC_PROTOCOL_BBB 0x50U - -/* mass storage request codes */ -#define USB_MSC_REQ_CODES_ADSC 0x00U -#define USB_MSC_REQ_CODES_GET 0xFCU -#define USB_MSC_REQ_CODES_PUT 0xFDU -#define USB_MSC_REQ_CODES_GML 0xFEU -#define USB_MSC_REQ_CODES_BOMSR 0xFFU - -#define BBB_GET_MAX_LUN 0xFEU -#define BBB_RESET 0xFFU - -#define SCSI_CMD_LENGTH 16U - -#endif /* __USB_MSC_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_conf.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_conf.h deleted file mode 100644 index 64329b8c31..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_conf.h +++ /dev/null @@ -1,72 +0,0 @@ -/*! - \file usbd_conf.h - \brief the header file of USB device configuration - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBD_CONF_H -#define __USBD_CONF_H - -#include "gdusb_conf.h" - -#define USBD_CFG_MAX_NUM 1 -#define USBD_ITF_MAX_NUM 1 - -#define CDC_COM_INTERFACE 0 - -#define USB_STR_DESC_MAX_SIZE 255 - -#define CDC_DATA_IN_EP EP1_IN /* EP1 for data IN */ -#define CDC_DATA_OUT_EP EP3_OUT /* EP3 for data OUT */ -#define CDC_CMD_EP EP2_IN /* EP2 for CDC commands */ - -#define USB_STRING_COUNT 4U - -#define USB_CDC_CMD_PACKET_SIZE 8 /* Control Endpoint Packet size */ - -#define APP_RX_DATA_SIZE 2048 /* Total size of IN buffer: - APP_RX_DATA_SIZE*8 / MAX_BAUDARATE * 1000 should be > CDC_IN_FRAME_INTERVAL*8 */ - -/* CDC endpoints parameters: you can fine tune these values depending on the needed baud rate and performance */ -#ifdef USE_USB_HS - #ifdef USE_ULPI_PHY - #define USB_CDC_DATA_PACKET_SIZE 512 /* Endpoint IN & OUT Packet size */ - #define CDC_IN_FRAME_INTERVAL 40 /* Number of micro-frames between IN transfers */ - #else - #define USB_CDC_DATA_PACKET_SIZE 64 /* Endpoint IN & OUT Packet size */ - #define CDC_IN_FRAME_INTERVAL 5 /* Number of frames between IN transfers */ - #endif -#else - #define USB_CDC_DATA_PACKET_SIZE 64 /* Endpoint IN & OUT Packet size */ - #define CDC_IN_FRAME_INTERVAL 5 /* Number of frames between IN transfers */ -#endif /* USE_USB_HS */ - -#endif /* __USBD_CONF_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_core.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_core.h deleted file mode 100644 index 79298f7b4e..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_core.h +++ /dev/null @@ -1,103 +0,0 @@ -/*! - \file usbd_core.h - \brief USB device mode core functions protype - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBD_CORE_H -#define __USBD_CORE_H - -#include "drv_usb_core.h" -#include "drv_usb_dev.h" - -typedef enum -{ - USBD_OK = 0U, /*!< status OK */ - USBD_BUSY, /*!< status busy */ - USBD_FAIL, /*!< status fail */ -} usbd_status; - -enum _usbd_status { - USBD_DEFAULT = 1U, /*!< default status */ - USBD_ADDRESSED = 2U, /*!< address send status */ - USBD_CONFIGURED = 3U, /*!< configured status */ - USBD_SUSPENDED = 4U /*!< suspended status */ -}; - -/* static inline function definitions */ - -/*! - \brief set USB device address - \param[in] udev: pointer to USB core instance - \param[in] addr: device address to set - \param[out] none - \retval none -*/ -__STATIC_INLINE void usbd_addr_set (usb_core_driver *udev, uint8_t addr) -{ - usb_devaddr_set(udev, addr); -} - -/*! - \brief get the received data length - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint number - \param[out] none - \retval USB device operation cur_status -*/ -__STATIC_INLINE uint16_t usbd_rxcount_get (usb_core_driver *udev, uint8_t ep_num) -{ - return (uint16_t)udev->dev.transc_out[ep_num].xfer_count; -} - -/* function declarations */ -/* initializes the USB device-mode stack and load the class driver */ -void usbd_init (usb_core_driver *udev, usb_core_enum core, usb_desc *desc, usb_class_core *class_core); -/* endpoint initialization */ -uint32_t usbd_ep_setup (usb_core_driver *udev, const usb_desc_ep *ep_desc); -/* configure the endpoint when it is disabled */ -uint32_t usbd_ep_clear (usb_core_driver *udev, uint8_t ep_addr); -/* endpoint prepare to receive data */ -uint32_t usbd_ep_recev (usb_core_driver *udev, uint8_t ep_addr, uint8_t *pbuf, uint32_t len); -/* endpoint prepare to transmit data */ -uint32_t usbd_ep_send (usb_core_driver *udev, uint8_t ep_addr, uint8_t *pbuf, uint32_t len); -/* set an endpoint to STALL status */ -uint32_t usbd_ep_stall (usb_core_driver *udev, uint8_t ep_addr); -/* clear endpoint STALLed status */ -uint32_t usbd_ep_stall_clear (usb_core_driver *udev, uint8_t ep_addr); -/* flush the endpoint FIFOs */ -uint32_t usbd_fifo_flush (usb_core_driver *udev, uint8_t ep_addr); -/* device connect */ -void usbd_connect (usb_core_driver *udev); -/* device disconnect */ -void usbd_disconnect (usb_core_driver *udev); - -#endif /* __USBD_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_enum.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_enum.h deleted file mode 100644 index 84084425cb..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_enum.h +++ /dev/null @@ -1,105 +0,0 @@ -/*! - \file usbd_enum.h - \brief USB enumeration definitions - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBD_ENUM_H -#define __USBD_ENUM_H - -#include "gdusbd_core.h" -#include "gdusbd_conf.h" -#include - -#ifndef NULL - #define NULL 0U -#endif - -typedef enum _usb_reqsta { - REQ_SUPP = 0x0U, /* request support */ - REQ_NOTSUPP = 0x1U, /* request not support */ -} usb_reqsta; - -/* string descriptor index */ -enum _str_index -{ - STR_IDX_LANGID = 0x0U, /* language ID string index */ - STR_IDX_MFC = 0x1U, /* manufacturer string index */ - STR_IDX_PRODUCT = 0x2U, /* product string index */ - STR_IDX_SERIAL = 0x3U, /* serial string index */ - STR_IDX_CONFIG = 0x4U, /* configuration string index */ - STR_IDX_ITF = 0x5U, /* interface string index */ -#ifndef WINUSB_EXEMPT_DRIVER - STR_IDX_MAX = 0x6U, /* string maximum index */ -#else - STR_IDX_MAX = 0xEFU, /* string maximum index */ -#endif /* WINUSB_EXEMPT_DRIVER */ -}; - -typedef enum _usb_pwrsta { - USB_PWRSTA_SELF_POWERED = 0x1U, /* USB is in self powered status */ - USB_PWRSTA_REMOTE_WAKEUP = 0x2U, /* USB is in remote wakeup status */ -} usb_pwrsta; - -typedef enum _usb_feature -{ - USB_FEATURE_EP_HALT = 0x0U, /* USB has endpoint halt feature */ - USB_FEATURE_REMOTE_WAKEUP = 0x1U, /* USB has endpoint remote wakeup feature */ - USB_FEATURE_TEST_MODE = 0x2U, /* USB has endpoint test mode feature */ -} usb_feature; - -#define ENG_LANGID 0x0409U /* english language ID */ -#define CHN_LANGID 0x0804U /* chinese language ID */ - -/* USB device exported macros */ -#define CTL_EP(ep) (((ep) == 0x00U) || ((ep) == 0x80U)) - -#define DEVICE_ID1 (0x1FFF7A10U) /* device ID1 */ -#define DEVICE_ID2 (0x1FFF7A14U) /* device ID2 */ -#define DEVICE_ID3 (0x1FFF7A18U) /* device ID3 */ - -#define DEVICE_ID (0x40023D00U) - -/* function declarations */ -/* handle USB standard device request */ -usb_reqsta usbd_standard_request (usb_core_driver *udev, usb_req *req); -/* handle USB device class request */ -usb_reqsta usbd_class_request (usb_core_driver *udev, usb_req *req); -/* handle USB vendor request */ -usb_reqsta usbd_vendor_request (usb_core_driver *udev, usb_req *req); -/* handle USB enumeration error */ -void usbd_enum_error (usb_core_driver *udev, usb_req *req); -/* convert hex 32bits value into unicode char */ -void int_to_unicode (uint32_t value, uint8_t *pbuf, uint8_t len); -/* get serial string */ -void serial_string_get (uint16_t *unicode_str); - -#endif /* __USBD_ENUM_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_transc.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_transc.h deleted file mode 100644 index 1aacc790f6..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/gdusbd_transc.h +++ /dev/null @@ -1,56 +0,0 @@ -/*! - \file usbd_transc.h - \brief USB transaction core functions prototype - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBD_TRANSC_H -#define __USBD_TRANSC_H - -#include "gdusbd_core.h" - -/* function declarations */ -/* USB send data in the control transaction */ -usbd_status usbd_ctl_send (usb_core_driver *udev); -/* USB receive data in control transaction */ -usbd_status usbd_ctl_recev (usb_core_driver *udev); -/* USB send control transaction status */ -usbd_status usbd_ctl_status_send (usb_core_driver *udev); -/* USB control receive status */ -usbd_status usbd_ctl_status_recev (usb_core_driver *udev); -/* USB setup stage processing */ -uint8_t usbd_setup_transc (usb_core_driver *udev); -/* data out stage processing */ -uint8_t usbd_out_transc (usb_core_driver *udev, uint8_t ep_num); -/* data in stage processing */ -uint8_t usbd_in_transc (usb_core_driver *udev, uint8_t ep_num); - -#endif /* __USBD_TRANSC_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_conf.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_conf.h deleted file mode 100644 index 7827ec04ea..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_conf.h +++ /dev/null @@ -1,46 +0,0 @@ -/*! - \file usbh_conf.h - \brief general low level driver configuration - - \version 2020-09-04, V3.0.0, demo for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBH_CONF_H -#define __USBH_CONF_H - -#define USBH_MAX_EP_NUM 2 -#define USBH_MAX_INTERFACES_NUM 2 -#define USBH_MAX_ALT_SETTING 2 -#define USBH_MAX_SUPPORTED_CLASS 2 - -#define USBH_DATA_BUF_MAX_LEN 0x200 -#define USBH_CFGSET_MAX_LEN 0x200 - -#endif /* __USBH_CONF_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_core.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_core.h deleted file mode 100644 index f087c721ad..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_core.h +++ /dev/null @@ -1,284 +0,0 @@ -/*! - \file usbh_core.h - \brief USB host core state machine header file - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBH_CORE_H -#define __USBH_CORE_H - -#include "gdusbh_conf.h" -#include "drv_usb_host.h" - -#define MSC_CLASS 0x08U -#define HID_CLASS 0x03U -#define MSC_PROTOCOL 0x50U -#define CBI_PROTOCOL 0x01U - -#define USBH_MAX_ERROR_COUNT 3U - -#define USBH_DEV_ADDR_DEFAULT 0U -#define USBH_DEV_ADDR 1U - -typedef enum -{ - USBH_OK = 0U, - USBH_BUSY, - USBH_FAIL, - USBH_NOT_SUPPORTED, - USBH_UNRECOVERED_ERROR, - USBH_SPEED_UNKNOWN_ERROR, - USBH_APPLY_DEINIT -} usbh_status; - -/* USB host global operation state */ -typedef enum -{ - HOST_DEFAULT = 0U, - HOST_DETECT_DEV_SPEED, - HOST_DEV_ATTACHED, - HOST_DEV_DETACHED, - HOST_ENUM, - HOST_SET_WAKEUP_FEATURE, - HOST_CHECK_CLASS, - HOST_CLASS_ENUM, - HOST_CLASS_HANDLER, - HOST_USER_INPUT, - HOST_SUSPENDED, - HOST_WAKEUP, - HOST_ERROR -} usb_host_state; - -/* USB host enumeration state */ -typedef enum -{ - ENUM_DEFAULT = 0U, - ENUM_GET_DEV_DESC, - ENUM_SET_ADDR, - ENUM_GET_CFG_DESC, - ENUM_GET_CFG_DESC_SET, - ENUM_GET_STR_DESC, -#ifdef USB_MTP - ENUM_GET_MTP_STR, -#endif - ENUM_SET_CONFIGURATION, - ENUM_DEV_CONFIGURED -} usbh_enum_state; - -/* USB host control transfer state */ -typedef enum -{ - CTL_IDLE = 0U, - CTL_SETUP, - CTL_SETUP_WAIT, - CTL_DATA_IN, - CTL_DATA_IN_WAIT, - CTL_DATA_OUT, - CTL_DATA_OUT_WAIT, - CTL_STATUS_IN, - CTL_STATUS_IN_WAIT, - CTL_STATUS_OUT, - CTL_STATUS_OUT_WAIT, - CTL_ERROR, - CTL_FINISH -} usbh_ctl_state; - -/* user action state */ -typedef enum -{ - USBH_USER_NO_RESP = 0U, - USBH_USER_RESP_OK = 1U, -} usbh_user_status; - -typedef enum -{ - USBH_PORT_EVENT = 1U, - USBH_URB_EVENT, - USBH_CONTROL_EVENT, - USBH_CLASS_EVENT, - USBH_STATE_CHANGED_EVENT, -}usbh_os_event; - -/* control transfer information */ -typedef struct _usbh_control -{ - uint8_t pipe_in_num; - uint8_t pipe_out_num; - uint8_t max_len; - uint8_t error_count; - - uint8_t *buf; - uint16_t ctl_len; - uint16_t timer; - - usb_setup setup; - usbh_ctl_state ctl_state; -} usbh_control; - -/* USB interface descriptor set */ -typedef struct _usb_desc_itf_set -{ - usb_desc_itf itf_desc; - usb_desc_ep ep_desc[USBH_MAX_EP_NUM]; -} usb_desc_itf_set; - -/* USB configure descriptor set */ -typedef struct _usb_desc_cfg_set -{ - usb_desc_config cfg_desc; - usb_desc_itf_set itf_desc_set[USBH_MAX_INTERFACES_NUM][USBH_MAX_ALT_SETTING]; -} usb_desc_cfg_set; - -/* USB device property */ -typedef struct -{ - uint8_t data[USBH_DATA_BUF_MAX_LEN]; /* if DMA is used, the data array must be located in the first position */ - uint8_t cur_itf; - uint8_t addr; - - uint32_t speed; - - usb_desc_dev dev_desc; - usb_desc_cfg_set cfg_desc_set; - -#if (USBH_KEEP_CFG_DESCRIPTOR == 1U) - uint8_t cfgdesc_rawdata[USBH_CFGSET_MAX_LEN]; -#endif /* (USBH_KEEP_CFG_DESCRIPTOR == 1U) */ -} usb_dev_prop; - -struct _usbh_host; - -/* device class callbacks */ -typedef struct -{ - uint8_t class_code; /*!< USB class type */ - - usbh_status (*class_init) (struct _usbh_host *phost); - void (*class_deinit) (struct _usbh_host *phost); - usbh_status (*class_requests) (struct _usbh_host *phost); - usbh_status (*class_machine) (struct _usbh_host *phost); - usbh_status (*class_sof) (struct _usbh_host *uhost); - - void *class_data; -} usbh_class; - -/* user callbacks */ -typedef struct -{ - void (*dev_init) (void); - void (*dev_deinit) (void); - void (*dev_attach) (void); - void (*dev_reset) (void); - void (*dev_detach) (void); - void (*dev_over_currented) (void); - void (*dev_speed_detected) (uint32_t dev_speed); - void (*dev_devdesc_assigned) (void *dev_desc); - void (*dev_address_set) (void); - - void (*dev_cfgdesc_assigned) (usb_desc_config *cfg_desc, - usb_desc_itf *itf_desc, - usb_desc_ep *ep_desc); - - void (*dev_mfc_str) (void *mfc_str); - void (*dev_prod_str) (void *prod_str); - void (*dev_seral_str) (void *serial_str); - void (*dev_enumerated) (void); - usbh_user_status (*dev_user_input) (void); - int (*dev_user_app) (void); - void (*dev_not_supported) (void); - void (*dev_error) (void); -} usbh_user_cb; - -/* host information */ -typedef struct _usbh_host -{ - usb_host_state cur_state; /*!< host state machine value */ - usb_host_state backup_state; /*!< backup of previous state machine value */ - usbh_enum_state enum_state; /*!< enumeration state machine */ - usbh_control control; /*!< USB host control state machine */ - usb_dev_prop dev_prop; /*!< USB device property */ - - usbh_class *uclass[USBH_MAX_SUPPORTED_CLASS]; /*!< USB host supported class */ - usbh_class *active_class; /*!< USB active class */ - usbh_user_cb *usr_cb; /*!< USB user callback */ - - uint8_t class_num; /*!< USB class number */ - - void *data; /*!< used for... */ - -#ifdef USB_LOW_PWR_ENABLE - uint8_t suspend_flag; -#endif /* USB_LOW_PWR_ENABLE*/ -} usbh_host; - -/*! - \brief get USB URB state - \param[in] udev: pointer to USB core instance - \param[in] pp_num: pipe number - \param[out] none - \retval none -*/ -static inline usb_urb_state usbh_urbstate_get (usb_core_driver *udev, uint8_t pp_num) -{ - return udev->host.pipe[pp_num].urb_state; -} - -/*! - \brief get USB transfer data count - \param[in] udev: pointer to USB core instance - \param[in] pp_num: pipe number - \param[out] none - \retval none -*/ -static inline uint32_t usbh_xfercount_get (usb_core_driver *udev, uint8_t pp_num) -{ - return udev->host.backup_xfercount[pp_num]; -} - -/* function declarations */ -/* USB host stack initializations */ -void usbh_init (usbh_host *uhost, usb_core_driver *udev, usb_core_enum usb_core, usbh_user_cb *user_cb); -/* USB host register device class */ -usbh_status usbh_class_register (usbh_host *uhost, usbh_class *puclass); -/* de-initialize USB host */ -usbh_status usbh_deinit (usbh_host *uhost); -/* USB host core main state machine process */ -void usbh_core_task (usbh_host *uhost); -/* handle the error on USB host side */ -void usbh_error_handler (usbh_host *uhost, usbh_status err_type); -#ifdef USB_LOW_PWR_ENABLE -/* handles the USB resume from suspend mode */ -void usb_hwp_resume(usb_core_driver *udev); -#endif /* USB_LOW_PWR_ENABLE */ - -// extern uint8_t udiskMounted; - -#endif /* __USBH_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_enum.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_enum.h deleted file mode 100644 index 48b1e5bf75..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_enum.h +++ /dev/null @@ -1,74 +0,0 @@ -/*! - \file usbh_enum.h - \brief USB host mode USB enumeration header file - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBH_ENUM_H -#define __USBH_ENUM_H - -#include "gdusb_conf.h" -#include "gdusbh_core.h" - -#if 0 //defined(USE_GD32) -/* function declarations */ -/* configure USB control status parameters */ -void usbh_ctlstate_config (usbh_host *uhost, uint8_t *buf, uint16_t len); -/* get device descriptor from the USB device */ -usbh_status usbh_devdesc_get (usbh_host *uhost, uint8_t len); -/* get configuration descriptor from the USB device */ -usbh_status usbh_cfgdesc_get (usbh_host *uhost, uint16_t len); -/* get string descriptor from the USB device */ -usbh_status usbh_strdesc_get (usbh_host *uhost,uint8_t str_index, uint8_t *buf, uint16_t len); -/* set the address to the connected device */ -usbh_status usbh_setaddress (usbh_host *uhost, uint8_t dev_addr); -/* set the configuration value to the connected device */ -usbh_status usbh_setcfg (usbh_host *uhost, uint16_t config); -/* set the interface value to the connected device */ -usbh_status usbh_setinterface (usbh_host *uhost, uint8_t itf_num, uint8_t alter_setting); -/* set or enable a specific device feature */ -usbh_status usbh_setdevfeature (usbh_host *uhost, uint8_t feature_selector, uint16_t windex); -/* clear or disable a specific device feature */ -usbh_status usbh_clrdevfeature (usbh_host *uhost, uint8_t feature_selector, uint16_t windex); -/* clear or disable a specific feature */ -usbh_status usbh_clrfeature (usbh_host *uhost, uint8_t ep_addr, uint8_t pp_num); -/* get the next descriptor header */ -usb_desc_header *usbh_nextdesc_get (uint8_t *pbuf, uint16_t *ptr); -/* select an interface */ -usbh_status usbh_interface_select (usb_dev_prop *udev, uint8_t interface); -/* find the interface index for a specific class */ -uint8_t usbh_interface_find (usb_dev_prop *udev, uint8_t main_class, uint8_t sub_class, uint8_t protocol); -/* find the interface index for a specific class interface and alternate setting number */ -uint8_t usbh_interfaceindex_find (usb_dev_prop *udev, uint8_t interface_number, uint8_t alt_settings); - -#endif - -#endif /* __USBH_ENUM_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_pipe.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_pipe.h deleted file mode 100644 index 0f5ec5f516..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_pipe.h +++ /dev/null @@ -1,100 +0,0 @@ -/*! - \file usbh_pipe.h - \brief USB host mode pipe header file - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBH_PIPE_H -#define __USBH_PIPE_H - -#include "gdusbh_core.h" - -#define HC_MAX 8U - -#define HC_OK 0x0000U -#define HC_USED 0x8000U -#define HC_ERROR 0xFFFFU -#define HC_USED_MASK 0x7FFFU - -/*! - \brief set toggle for a pipe - \param[in] udev: pointer to USB core instance - \param[in] pp_num: pipe number - \param[in] toggle: toggle (0/1) - \param[out] none - \retval operation status -*/ -__STATIC_INLINE void usbh_pipe_toggle_set (usb_core_driver *udev, uint8_t pp_num, uint8_t toggle) -{ - if (udev->host.pipe[pp_num].ep.dir) { - udev->host.pipe[pp_num].data_toggle_in = toggle; - } else { - udev->host.pipe[pp_num].data_toggle_out = toggle; - } -} - -/*! - \brief get toggle flag of pipe - \param[in] udev: pointer to USB core instance - \param[in] pp_num: pipe number - \param[out] none - \retval operation status -*/ -__STATIC_INLINE uint8_t usbh_pipe_toggle_get (usb_core_driver *udev, uint8_t pp_num) -{ - if (udev->host.pipe[pp_num].ep.dir) { - return udev->host.pipe[pp_num].data_toggle_in; - } else { - return udev->host.pipe[pp_num].data_toggle_out; - } -} - -/* function declarations */ -/* create a pipe */ -uint8_t usbh_pipe_create (usb_core_driver *udev, - usb_dev_prop *dev, - uint8_t pp_num, - uint8_t ep_type, - uint16_t ep_mpl); -/* modify a pipe */ -uint8_t usbh_pipe_update (usb_core_driver *udev, - uint8_t pp_num, - uint8_t dev_addr, - uint32_t dev_speed, - uint16_t ep_mpl); -/* allocate a new pipe */ -uint8_t usbh_pipe_allocate (usb_core_driver *udev, uint8_t ep_addr); -/* free a pipe */ -uint8_t usbh_pipe_free (usb_core_driver *udev, uint8_t pp_num); -/* delete all USB host pipe */ -uint8_t usbh_pipe_delete (usb_core_driver *udev); - -#endif /* __USBH_PIPE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_usr.h b/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_usr.h deleted file mode 100644 index 0eae37e800..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/gdusbh_usr.h +++ /dev/null @@ -1,97 +0,0 @@ -/*! - \file usbh_usr.c - \brief USB host user callbacks - - \version 2020-09-04, V3.0.0, demo for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBH_USR_H -#define __USBH_USR_H - -#include "ff.h" -#include "gdusb_conf.h" -#include "gdusbh_core.h" -#include - -#if 0 //defined(USE_GD32) - -extern usbh_user_cb usr_cb; -extern uint8_t USBH_USR_ApplicationState; - -/* state machine for the USBH_USR_ApplicationState */ -#define USBH_USR_FS_INIT 0 -#define USBH_USR_FS_READLIST 1 -#define USBH_USR_FS_WRITEFILE 2 -#define USBH_USR_FS_DRAW 3 -#define USBH_USR_FS_DEMOEND 4 - -/* function declarations */ -/* user operation for host-mode initialization */ -void usbh_user_init (void); -/* deinitialize user state and associated variables */ -void usbh_user_deinit (void); -/* user operation for device attached */ -void usbh_user_device_connected (void); -/* user operation for reset USB Device */ -void usbh_user_device_reset (void); -/* user operation for device disconnect event */ -void usbh_user_device_disconnected (void); -/* user operation for device over current detection event */ -void usbh_user_over_current_detected (void); -/* user operation for detecting device speed */ -void usbh_user_device_speed_detected (uint32_t DeviceSpeed); -/* user operation when device descriptor is available */ -void usbh_user_device_desc_available (void *); -/* usb device is successfully assigned the address */ -void usbh_user_device_address_assigned (void); -/* user operation when configuration descriptor is available */ -void usbh_user_configuration_descavailable (usb_desc_config *cfgDesc, - usb_desc_itf *itfDesc, - usb_desc_ep *epDesc); -/* user operation when manufacturer string exists */ -void usbh_user_manufacturer_string (void *); -/* user operation when product string exists */ -void usbh_user_product_string (void *); -/* user operation when serialNum string exists */ -void usbh_user_serialnum_string (void *); -/* user response request is displayed to ask for application jump to class */ -void usbh_user_enumeration_finish (void); -/* user action for application state entry */ -usbh_user_status usbh_user_userinput (void); -/* user operation when device is not supported */ -void usbh_user_device_not_supported (void); -/* user operation when unrecovered error happens */ -void usbh_user_unrecovered_error (void); -/* demo application for mass storage */ -int usbh_usr_msc_application (void); - -#endif - -#endif /*__USBH_USR_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_core.h b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_core.h deleted file mode 100644 index 23728cbf44..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_core.h +++ /dev/null @@ -1,212 +0,0 @@ -/*! - \file usbh_hid_core.h - \brief header file for the usbh_hid_core.c - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBH_HID_CORE_H -#define __USBH_HID_CORE_H - -#include "usb_hid.h" -#include "gdusbh_enum.h" -#include "usbh_transc.h" - -#define HID_MIN_POLL 10U -#define HID_REPORT_SIZE 16U -#define HID_MAX_USAGE 10U -#define HID_MAX_NBR_REPORT_FMT 10U -#define HID_QUEUE_SIZE 10U - -#define HID_ITEM_LONG 0xFEU - -#define HID_ITEM_TYPE_MAIN 0x00U -#define HID_ITEM_TYPE_GLOBAL 0x01U -#define HID_ITEM_TYPE_LOCAL 0x02U -#define HID_ITEM_TYPE_RESERVED 0x03U - -#define HID_MAIN_ITEM_TAG_INPUT 0x08U -#define HID_MAIN_ITEM_TAG_OUTPUT 0x09U -#define HID_MAIN_ITEM_TAG_COLLECTION 0x0AU -#define HID_MAIN_ITEM_TAG_FEATURE 0x0BU -#define HID_MAIN_ITEM_TAG_ENDCOLLECTION 0x0CU - -#define HID_GLOBAL_ITEM_TAG_USAGE_PAGE 0x00U -#define HID_GLOBAL_ITEM_TAG_LOG_MIN 0x01U -#define HID_GLOBAL_ITEM_TAG_LOG_MAX 0x02U -#define HID_GLOBAL_ITEM_TAG_PHY_MIN 0x03U -#define HID_GLOBAL_ITEM_TAG_PHY_MAX 0x04U -#define HID_GLOBAL_ITEM_TAG_UNIT_EXPONENT 0x05U -#define HID_GLOBAL_ITEM_TAG_UNIT 0x06U -#define HID_GLOBAL_ITEM_TAG_REPORT_SIZE 0x07U -#define HID_GLOBAL_ITEM_TAG_REPORT_ID 0x08U -#define HID_GLOBAL_ITEM_TAG_REPORT_COUNT 0x09U -#define HID_GLOBAL_ITEM_TAG_PUSH 0x0AU -#define HID_GLOBAL_ITEM_TAG_POP 0x0BU - -#define HID_LOCAL_ITEM_TAG_USAGE 0x00U -#define HID_LOCAL_ITEM_TAG_USAGE_MIN 0x01U -#define HID_LOCAL_ITEM_TAG_USAGE_MAX 0x02U -#define HID_LOCAL_ITEM_TAG_DESIGNATOR_INDEX 0x03U -#define HID_LOCAL_ITEM_TAG_DESIGNATOR_MIN 0x04U -#define HID_LOCAL_ITEM_TAG_DESIGNATOR_MAX 0x05U -#define HID_LOCAL_ITEM_TAG_STRING_INDEX 0x07U -#define HID_LOCAL_ITEM_TAG_STRING_MIN 0x08U -#define HID_LOCAL_ITEM_TAG_STRING_MAX 0x09U -#define HID_LOCAL_ITEM_TAG_DELIMITER 0x0AU - -#define USB_HID_DESC_SIZE 9U - -/* states for HID state machine */ -typedef enum { - HID_INIT = 0U, - HID_IDLE, - HID_SEND_DATA, - HID_BUSY, - HID_GET_DATA, - HID_SYNC, - HID_POLL, - HID_ERROR, -} hid_state; - -typedef enum { - HID_REQ_INIT = 0U, - HID_REQ_IDLE, - HID_REQ_GET_REPORT_DESC, - HID_REQ_GET_HID_DESC, - HID_REQ_SET_IDLE, - HID_REQ_SET_PROTOCOL, - HID_REQ_SET_REPORT, -} hid_ctlstate; - -typedef enum -{ - HID_MOUSE = 0x01U, - HID_KEYBOARD = 0x02U, - HID_UNKNOWN = 0xFFU, -} hid_type; - -typedef struct _hid_report_data -{ - uint8_t ReportID; - uint8_t ReportType; - uint16_t UsagePage; - uint32_t Usage[HID_MAX_USAGE]; - uint32_t NbrUsage; - uint32_t UsageMin; - uint32_t UsageMax; - int32_t LogMin; - int32_t LogMax; - int32_t PhyMin; - int32_t PhyMax; - int32_t UnitExp; - uint32_t Unit; - uint32_t ReportSize; - uint32_t ReportCnt; - uint32_t Flag; - uint32_t PhyUsage; - uint32_t AppUsage; - uint32_t LogUsage; -} hid_report_data; - -typedef struct _hid_report_ID -{ - uint8_t size; /*!< report size return by the device ID */ - uint8_t reportID; /*!< report ID */ - uint8_t type; /*!< report type (INPUT/OUTPUT/FEATURE) */ -} hid_report_ID; - -typedef struct _hid_collection -{ - uint32_t usage; - uint8_t type; - struct _hid_collection *next_ptr; -} hid_collection; - -typedef struct _hid_appcollection -{ - uint32_t usage; - uint8_t type; - uint8_t nbr_report_fmt; - hid_report_data report_data[HID_MAX_NBR_REPORT_FMT]; -} hid_appcollection; - -typedef struct -{ - uint8_t *buf; - uint16_t head; - uint16_t tail; - uint16_t size; - uint8_t lock; -} data_fifo; - -/* structure for HID process */ -typedef struct _hid_process -{ - uint8_t pipe_in; - uint8_t pipe_out; - uint8_t ep_addr; - uint8_t ep_in; - uint8_t ep_out; - __IO uint8_t data_ready; - uint8_t *pdata; - uint16_t len; - uint16_t poll; - - __IO uint32_t timer; - - data_fifo fifo; - usb_desc_hid hid_desc; - hid_report_data hid_report; - - hid_state state; - hid_ctlstate ctl_state; - usbh_status (*init)(usb_core_driver *udev, usbh_host *uhost); - void (*machine)(usb_core_driver *udev, usbh_host *uhost); -} usbh_hid_handler; - -extern usbh_class usbh_hid; - -/* function declarations */ -/* set HID report */ -usbh_status usbh_set_report (usb_core_driver *udev, - usbh_host *uhost, - uint8_t report_type, - uint8_t report_ID, - uint8_t report_len, - uint8_t *report_buf); -/* read data from FIFO */ -uint16_t usbh_hid_fifo_read (data_fifo *fifo, void *buf, uint16_t nbytes); -/* write data to FIFO */ -uint16_t usbh_hid_fifo_write (data_fifo *fifo, void *buf, uint16_t nbytes); -/* initialize FIFO */ -void usbh_hid_fifo_init (data_fifo *fifo, uint8_t *buf, uint16_t size); - -#endif /* __USBH_HID_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_keybd.h b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_keybd.h deleted file mode 100644 index f451665d5c..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_keybd.h +++ /dev/null @@ -1,303 +0,0 @@ -/*! - \file usbh_hid_keybd.h - \brief header file for usbh_hid_keybd.c - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBH_HID_KEYBD_H -#define __USBH_HID_KEYBD_H - -#include "usb_conf.h" -#include "usbh_hid_core.h" - -//#define AZERTY_KEYBOARD -#define QWERTY_KEYBOARD - -#define KBD_LEFT_CTRL 0x01U -#define KBD_LEFT_SHIFT 0x02U -#define KBD_LEFT_ALT 0x04U -#define KBD_LEFT_GUI 0x08U -#define KBD_RIGHT_CTRL 0x10U -#define KBD_RIGHT_SHIFT 0x20U -#define KBD_RIGHT_ALT 0x40U -#define KBD_RIGHT_GUI 0x80U - -#define KEY_NONE 0x00U -#define KEY_ERRORROLLOVER 0x01U -#define KEY_POSTFAIL 0x02U -#define KEY_ERRORUNDEFINED 0x03U -#define KEY_A 0x04U -#define KEY_B 0x05U -#define KEY_C 0x06U -#define KEY_D 0x07U -#define KEY_E 0x08U -#define KEY_F 0x09U -#define KEY_G 0x0AU -#define KEY_H 0x0BU -#define KEY_I 0x0CU -#define KEY_J 0x0DU -#define KEY_K 0x0EU -#define KEY_L 0x0FU -#define KEY_M 0x10U -#define KEY_N 0x11U -#define KEY_O 0x12U -#define KEY_P 0x13U -#define KEY_Q 0x14U -#define KEY_R 0x15U -#define KEY_S 0x16U -#define KEY_T 0x17U -#define KEY_U 0x18U -#define KEY_V 0x19U -#define KEY_W 0x1AU -#define KEY_X 0x1BU -#define KEY_Y 0x1CU -#define KEY_Z 0x1DU -#define KEY_1_EXCLAMATION_MARK 0x1EU -#define KEY_2_AT 0x1FU -#define KEY_3_NUMBER_SIGN 0x20U -#define KEY_4_DOLLAR 0x21U -#define KEY_5_PERCENT 0x22U -#define KEY_6_CARET 0x23U -#define KEY_7_AMPERSAND 0x24U -#define KEY_8_ASTERISK 0x25U -#define KEY_9_OPARENTHESIS 0x26U -#define KEY_0_CPARENTHESIS 0x27U -#define KEY_ENTER 0x28U -#define KEY_ESCAPE 0x29U -#define KEY_BACKSPACE 0x2AU -#define KEY_TAB 0x2BU -#define KEY_SPACEBAR 0x2CU -#define KEY_MINUS_UNDERSCORE 0x2DU -#define KEY_EQUAL_PLUS 0x2EU -#define KEY_OBRACKET_AND_OBRACE 0x2FU -#define KEY_CBRACKET_AND_CBRACE 0x30U -#define KEY_BACKSLASH_VERTICAL_BAR 0x31U -#define KEY_NONUS_NUMBER_SIGN_TILDE 0x32U -#define KEY_SEMICOLON_COLON 0x33U -#define KEY_SINGLE_AND_DOUBLE_QUOTE 0x34U -#define KEY_GRAVE ACCENT AND TILDE 0x35U -#define KEY_COMMA_AND_LESS 0x36U -#define KEY_DOT_GREATER 0x37U -#define KEY_SLASH_QUESTION 0x38U -#define KEY_CAPS LOCK 0x39U -#define KEY_F1 0x3AU -#define KEY_F2 0x3BU -#define KEY_F3 0x3CU -#define KEY_F4 0x3DU -#define KEY_F5 0x3EU -#define KEY_F6 0x3FU -#define KEY_F7 0x40U -#define KEY_F8 0x41U -#define KEY_F9 0x42U -#define KEY_F10 0x43U -#define KEY_F11 0x44U -#define KEY_F12 0x45U -#define KEY_PRINTSCREEN 0x46U -#define KEY_SCROLL LOCK 0x47U -#define KEY_PAUSE 0x48U -#define KEY_INSERT 0x49U -#define KEY_HOME 0x4AU -#define KEY_PAGEUP 0x4BU -#define KEY_DELETE 0x4CU -#define KEY_END1 0x4DU -#define KEY_PAGEDOWN 0x4EU -#define KEY_RIGHTARROW 0x4FU -#define KEY_LEFTARROW 0x50U -#define KEY_DOWNARROW 0x51U -#define KEY_UPARROW 0x52U -#define KEY_KEYPAD_NUM_LOCK_AND_CLEAR 0x53U -#define KEY_KEYPAD_SLASH 0x54U -#define KEY_KEYPAD_ASTERIKS 0x55U -#define KEY_KEYPAD_MINUS 0x56U -#define KEY_KEYPAD_PLUS 0x57U -#define KEY_KEYPAD_ENTER 0x58U -#define KEY_KEYPAD_1_END 0x59U -#define KEY_KEYPAD_2_DOWN_ARROW 0x5AU -#define KEY_KEYPAD_3_PAGEDN 0x5BU -#define KEY_KEYPAD_4_LEFT_ARROW 0x5CU -#define KEY_KEYPAD_5 0x5DU -#define KEY_KEYPAD_6_RIGHT_ARROW 0x5EU -#define KEY_KEYPAD_7_HOME 0x5FU -#define KEY_KEYPAD_8_UP_ARROW 0x60U -#define KEY_KEYPAD_9_PAGEUP 0x61U -#define KEY_KEYPAD_0_INSERT 0x62U -#define KEY_KEYPAD_DECIMAL_SEPARATOR_DELETE 0x63U -#define KEY_NONUS_BACK_SLASH_VERTICAL_BAR 0x64U -#define KEY_APPLICATION 0x65U -#define KEY_POWER 0x66U -#define KEY_KEYPAD_EQUAL 0x67U -#define KEY_F13 0x68U -#define KEY_F14 0x69U -#define KEY_F15 0x6AU -#define KEY_F16 0x6BU -#define KEY_F17 0x6CU -#define KEY_F18 0x6DU -#define KEY_F19 0x6EU -#define KEY_F20 0x6FU -#define KEY_F21 0x70U -#define KEY_F22 0x71U -#define KEY_F23 0x72U -#define KEY_F24 0x73U -#define KEY_EXECUTE 0x74U -#define KEY_HELP 0x75U -#define KEY_MENU 0x76U -#define KEY_SELECT 0x77U -#define KEY_STOP 0x78U -#define KEY_AGAIN 0x79U -#define KEY_UNDO 0x7AU -#define KEY_CUT 0x7BU -#define KEY_COPY 0x7CU -#define KEY_PASTE 0x7DU -#define KEY_FIND 0x7EU -#define KEY_MUTE 0x7FU -#define KEY_VOLUME_UP 0x80U -#define KEY_VOLUME_DOWN 0x81U -#define KEY_LOCKING_CAPS_LOCK 0x82U -#define KEY_LOCKING_NUM_LOCK 0x83U -#define KEY_LOCKING_SCROLL_LOCK 0x84U -#define KEY_KEYPAD_COMMA 0x85U -#define KEY_KEYPAD_EQUAL_SIGN 0x86U -#define KEY_INTERNATIONAL1 0x87U -#define KEY_INTERNATIONAL2 0x88U -#define KEY_INTERNATIONAL3 0x89U -#define KEY_INTERNATIONAL4 0x8AU -#define KEY_INTERNATIONAL5 0x8BU -#define KEY_INTERNATIONAL6 0x8CU -#define KEY_INTERNATIONAL7 0x8DU -#define KEY_INTERNATIONAL8 0x8EU -#define KEY_INTERNATIONAL9 0x8FU -#define KEY_LANG1 0x90U -#define KEY_LANG2 0x91U -#define KEY_LANG3 0x92U -#define KEY_LANG4 0x93U -#define KEY_LANG5 0x94U -#define KEY_LANG6 0x95U -#define KEY_LANG7 0x96U -#define KEY_LANG8 0x97U -#define KEY_LANG9 0x98U -#define KEY_ALTERNATE_ERASE 0x99U -#define KEY_SYSREQ 0x9AU -#define KEY_CANCEL 0x9BU -#define KEY_CLEAR 0x9CU -#define KEY_PRIOR 0x9DU -#define KEY_RETURN 0x9EU -#define KEY_SEPARATOR 0x9FU -#define KEY_OUT 0xA0U -#define KEY_OPER 0xA1U -#define KEY_CLEAR_AGAIN 0xA2U -#define KEY_CRSEL 0xA3U -#define KEY_EXSEL 0xA4U -#define KEY_KEYPAD_00 0xB0U -#define KEY_KEYPAD_000 0xB1U -#define KEY_THOUSANDS_SEPARATOR 0xB2U -#define KEY_DECIMAL_SEPARATOR 0xB3U -#define KEY_CURRENCY_UNIT 0xB4U -#define KEY_CURRENCY_SUB_UNIT 0xB5U -#define KEY_KEYPAD_OPARENTHESIS 0xB6U -#define KEY_KEYPAD_CPARENTHESIS 0xB7U -#define KEY_KEYPAD_OBRACE 0xB8U -#define KEY_KEYPAD_CBRACE 0xB9U -#define KEY_KEYPAD_TAB 0xBAU -#define KEY_KEYPAD_BACKSPACE 0xBBU -#define KEY_KEYPAD_A 0xBCU -#define KEY_KEYPAD_B 0xBDU -#define KEY_KEYPAD_C 0xBEU -#define KEY_KEYPAD_D 0xBFU -#define KEY_KEYPAD_E 0xC0U -#define KEY_KEYPAD_F 0xC1U -#define KEY_KEYPAD_XOR 0xC2U -#define KEY_KEYPAD_CARET 0xC3U -#define KEY_KEYPAD_PERCENT 0xC4U -#define KEY_KEYPAD_LESS 0xC5U -#define KEY_KEYPAD_GREATER 0xC6U -#define KEY_KEYPAD_AMPERSAND 0xC7U -#define KEY_KEYPAD_LOGICAL_AND 0xC8U -#define KEY_KEYPAD_VERTICAL_BAR 0xC9U -#define KEY_KEYPAD_LOGIACL_OR 0xCAU -#define KEY_KEYPAD_COLON 0xCBU -#define KEY_KEYPAD_NUMBER_SIGN 0xCCU -#define KEY_KEYPAD_SPACE 0xCDU -#define KEY_KEYPAD_AT 0xCEU -#define KEY_KEYPAD_EXCLAMATION_MARK 0xCFU -#define KEY_KEYPAD_MEMORY_STORE 0xD0U -#define KEY_KEYPAD_MEMORY_RECALL 0xD1U -#define KEY_KEYPAD_MEMORY_CLEAR 0xD2U -#define KEY_KEYPAD_MEMORY_ADD 0xD3U -#define KEY_KEYPAD_MEMORY_SUBTRACT 0xD4U -#define KEY_KEYPAD_MEMORY_MULTIPLY 0xD5U -#define KEY_KEYPAD_MEMORY_DIVIDE 0xD6U -#define KEY_KEYPAD_PLUSMINUS 0xD7U -#define KEY_KEYPAD_CLEAR 0xD8U -#define KEY_KEYPAD_CLEAR_ENTRY 0xD9U -#define KEY_KEYPAD_BINARY 0xDAU -#define KEY_KEYPAD_OCTAL 0xDBU -#define KEY_KEYPAD_DECIMAL 0xDCU -#define KEY_KEYPAD_HEXADECIMAL 0xDDU -#define KEY_LEFTCONTROL 0xE0U -#define KEY_LEFTSHIFT 0xE1U -#define KEY_LEFTALT 0xE2U -#define KEY_LEFT_GUI 0xE3U -#define KEY_RIGHTCONTROL 0xE4U -#define KEY_RIGHTSHIFT 0xE5U -#define KEY_RIGHTALT 0xE6U -#define KEY_RIGHT_GUI 0xE7U - -#define KBR_MAX_NBR_PRESSED 6U - -typedef struct -{ - uint8_t state; - uint8_t lctrl; - uint8_t lshift; - uint8_t lalt; - uint8_t lgui; - uint8_t rctrl; - uint8_t rshift; - uint8_t ralt; - uint8_t rgui; - uint8_t keys[6]; -} hid_keybd_info; - -/* function declarations */ -/* initialize keyboard */ -void usr_keybrd_init (void); -/* process keyboard data */ -void usr_keybrd_process_data (uint8_t pbuf); -/* initialize the keyboard function */ -usbh_status usbh_hid_keybd_init (usb_core_driver *udev, usbh_host *uhost); -/* get keyboard information */ -hid_keybd_info *usbh_hid_keybd_info_get (usb_core_driver *udev, usbh_host *uhost); -/* get the ascii code of hid */ -uint8_t usbh_hid_ascii_code_get (hid_keybd_info *info); -/* keyboard machine */ -void usbh_hid_keybrd_machine (usb_core_driver *udev, usbh_host *uhost); - -#endif /* __USBH_HID_KEYBD_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_mouse.h b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_mouse.h deleted file mode 100644 index 3d360d5e93..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_mouse.h +++ /dev/null @@ -1,59 +0,0 @@ -/*! - \file usbh_hid_mouse.h - \brief header file for the usbh_hid_mouse.c - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBH_HID_MOUSE_H -#define __USBH_HID_MOUSE_H - -#include "usbh_hid_core.h" - -typedef struct _hid_mouse_info -{ - uint8_t x; - uint8_t y; - uint8_t buttons[3]; -} hid_mouse_info; - -/* function declarations */ -/* initialize mouse */ -void usr_mouse_init (void); -/* process mouse data */ -void usr_mouse_process_data (hid_mouse_info *data); -/* initialize mouse function */ -usbh_status usbh_hid_mouse_init (usb_core_driver *udev, usbh_host *uhost); -/* get mouse information */ -hid_mouse_info *usbh_hid_mouse_info_get (usb_core_driver *udev, usbh_host *uhost); -/* mouse machine */ -void usbh_hid_mouse_machine (usb_core_driver *udev, usbh_host *uhost); - -#endif /* __USBH_HID_MOUSE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_parser.h b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_parser.h deleted file mode 100644 index 7ae22a126b..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_parser.h +++ /dev/null @@ -1,61 +0,0 @@ -/*! - \file usbh_hid_core.h - \brief header file for the usbh_hid_core.c - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBH_HID_PARSER_H -#define __USBH_HID_PARSER_H - -#include "usbh_hid_core.h" -#include "usbh_hid_usage.h" - -typedef struct -{ - uint8_t *data; - uint32_t size; - uint8_t shift; - uint8_t count; - uint8_t sign; - uint32_t logical_min; /*min value device can return*/ - uint32_t logical_max; /*max value device can return*/ - uint32_t physical_min; /*min vale read can report*/ - uint32_t physical_max; /*max value read can report*/ - uint32_t resolution; -} hid_report_item; - -/* function declarations */ -/* read a hid report item */ -uint32_t hid_item_read (hid_report_item *ri, uint8_t ndx); -/* write a hid report item */ -uint32_t hid_item_write (hid_report_item *ri, uint32_t value, uint8_t ndx); - -#endif /* __USBH_HID_PARSER_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_usage.h b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_usage.h deleted file mode 100644 index aeac22776d..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Include/usbh_hid_usage.h +++ /dev/null @@ -1,141 +0,0 @@ -/*! - \file usbh_hid_core.h - \brief header file for the usbh_hid_core.c - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USDH_HID_USAGE_H -#define __USDH_HID_USAGE_H - -/* HID 1.11 usage pages */ -#define HID_USAGE_PAGE_UNDEFINED uint16_t (0x00) /* Undefined */ - -/* top level pages */ -#define HID_USAGE_PAGE_GEN_DES uint16_t (0x01) /* Generic Desktop Controls*/ -#define HID_USAGE_PAGE_SIM_CTR uint16_t (0x02) /* Simulation Controls */ -#define HID_USAGE_PAGE_VR_CTR uint16_t (0x03) /* VR Controls */ -#define HID_USAGE_PAGE_SPORT_CTR uint16_t (0x04) /* Sport Controls */ -#define HID_USAGE_PAGE_GAME_CTR uint16_t (0x05) /* Game Controls */ -#define HID_USAGE_PAGE_GEN_DEV uint16_t (0x06) /* Generic Device Controls */ -#define HID_USAGE_PAGE_KEYB uint16_t (0x07) /* Keyboard/Keypad */ -#define HID_USAGE_PAGE_LED uint16_t (0x08) /* LEDs */ -#define HID_USAGE_PAGE_BUTTON uint16_t (0x09) /* Button */ -#define HID_USAGE_PAGE_ORDINAL uint16_t (0x0A) /* Ordinal */ -#define HID_USAGE_PAGE_PHONE uint16_t (0x0B) /* Telephony */ -#define HID_USAGE_PAGE_CONSUMER uint16_t (0x0C) /* Consumer */ -#define HID_USAGE_PAGE_DIGITIZER uint16_t (0x0D) /* Digitizer*/ -#define HID_USAGE_PAGE_PID uint16_t (0x0F) /* PID Page (force feedback and related devices) */ -#define HID_USAGE_PAGE_UNICODE uint16_t (0x10) /* Unicode */ -#define HID_USAGE_PAGE_ALNUM_DISP uint16_t (0x14) /* Alphanumeric Display */ -/* end of top level pages */ - -#define HID_USAGE_PAGE_MEDICAL uint16_t (0x40) /* Medical Instruments */ - -/* 80-83 Monitor pages USB Device Class Definition for Monitor Devices */ -/* 84-87 Power pages USB Device Class Definition for Power Devices */ -#define HID_USAGE_PAGE_BARCODE uint16_t (0x8C) /* Bar Code Scanner page */ -#define HID_USAGE_PAGE_SCALE uint16_t (0x8D) /* Scale page */ -#define HID_USAGE_PAGE_MSR uint16_t (0x8E) /* Magnetic Stripe Reading (MSR) Devices */ -#define HID_USAGE_PAGE_POS uint16_t (0x8F) /* Reserved Point of Sale pages */ -#define HID_USAGE_PAGE_CAMERA_CTR uint16_t (0x90) /* Camera Control Page */ -#define HID_USAGE_PAGE_ARCADE uint16_t (0x91) /* Arcade Page */ - -/* usage definitions for the "generic desktop" page */ -#define HID_USAGE_UNDEFINED uint16_t (0x00) /* Undefined */ -#define HID_USAGE_POINTER uint16_t (0x01) /* Pointer (Physical Collection) */ -#define HID_USAGE_MOUSE uint16_t (0x02) /* Mouse (Application Collection) */ -#define HID_USAGE_JOYSTICK uint16_t (0x04) /* Joystick (Application Collection) */ -#define HID_USAGE_GAMEPAD uint16_t (0x05) /* Game Pad (Application Collection) */ -#define HID_USAGE_KBD uint16_t (0x06) /* Keyboard (Application Collection) */ -#define HID_USAGE_KEYPAD uint16_t (0x07) /* Keypad (Application Collection) */ -#define HID_USAGE_MAX_CTR uint16_t (0x08) /* Multi-axis Controller (Application Collection) */ -#define HID_USAGE_X uint16_t (0x30) /* X (Dynamic Value) */ -#define HID_USAGE_Y uint16_t (0x31) /* Y (Dynamic Value) */ -#define HID_USAGE_Z uint16_t (0x32) /* Z (Dynamic Value) */ -#define HID_USAGE_RX uint16_t (0x33) /* Rx (Dynamic Value) */ -#define HID_USAGE_RY uint16_t (0x34) /* Ry (Dynamic Value) */ -#define HID_USAGE_RZ uint16_t (0x35) /* Rz (Dynamic Value) */ -#define HID_USAGE_SLIDER uint16_t (0x36) /* Slider (Dynamic Value) */ -#define HID_USAGE_DIAL uint16_t (0x37) /* Dial (Dynamic Value) */ -#define HID_USAGE_WHEEL uint16_t (0x38) /* Wheel (Dynamic Value) */ -#define HID_USAGE_HATSW uint16_t (0x39) /* Hat switch (Dynamic Value) */ -#define HID_USAGE_COUNTEDBUF uint16_t (0x3A) /* Counted Buffer (Logical Collection) */ -#define HID_USAGE_BYTECOUNT uint16_t (0x3B) /* Byte Count (Dynamic Value) */ -#define HID_USAGE_MOTIONWAKE uint16_t (0x3C) /* Motion Wakeup (One Shot Control) */ -#define HID_USAGE_START uint16_t (0x3D) /* Start (On/Off Control) */ -#define HID_USAGE_SELECT uint16_t (0x3E) /* Select (On/Off Control) */ -#define HID_USAGE_VX uint16_t (0x40) /* Vx (Dynamic Value) */ -#define HID_USAGE_VY uint16_t (0x41) /* Vy (Dynamic Value) */ -#define HID_USAGE_VZ uint16_t (0x42) /* Vz (Dynamic Value) */ -#define HID_USAGE_VBRX uint16_t (0x43) /* Vbrx (Dynamic Value) */ -#define HID_USAGE_VBRY uint16_t (0x44) /* Vbry (Dynamic Value) */ -#define HID_USAGE_VBRZ uint16_t (0x45) /* Vbrz (Dynamic Value) */ -#define HID_USAGE_VNO uint16_t (0x46) /* Vno (Dynamic Value) */ -#define HID_USAGE_FEATNOTIF uint16_t (0x47) /* Feature Notification (Dynamic Value),(Dynamic Flag) */ -#define HID_USAGE_SYSCTL uint16_t (0x80) /* System Control (Application Collection) */ -#define HID_USAGE_PWDOWN uint16_t (0x81) /* System Power Down (One Shot Control) */ -#define HID_USAGE_SLEEP uint16_t (0x82) /* System Sleep (One Shot Control) */ -#define HID_USAGE_WAKEUP uint16_t (0x83) /* System Wake Up (One Shot Control) */ -#define HID_USAGE_CONTEXTM uint16_t (0x84) /* System Context Menu (One Shot Control) */ -#define HID_USAGE_MAINM uint16_t (0x85) /* System Main Menu (One Shot Control) */ -#define HID_USAGE_APPM uint16_t (0x86) /* System App Menu (One Shot Control) */ -#define HID_USAGE_MENUHELP uint16_t (0x87) /* System Menu Help (One Shot Control) */ -#define HID_USAGE_MENUEXIT uint16_t (0x88) /* System Menu Exit (One Shot Control) */ -#define HID_USAGE_MENUSELECT uint16_t (0x89) /* System Menu Select (One Shot Control) */ -#define HID_USAGE_SYSM_RIGHT uint16_t (0x8A) /* System Menu Right (Re-Trigger Control) */ -#define HID_USAGE_SYSM_LEFT uint16_t (0x8B) /* System Menu Left (Re-Trigger Control) */ -#define HID_USAGE_SYSM_UP uint16_t (0x8C) /* System Menu Up (Re-Trigger Control) */ -#define HID_USAGE_SYSM_DOWN uint16_t (0x8D) /* System Menu Down (Re-Trigger Control) */ -#define HID_USAGE_COLDRESET uint16_t (0x8E) /* System Cold Restart (One Shot Control) */ -#define HID_USAGE_WARMRESET uint16_t (0x8F) /* System Warm Restart (One Shot Control) */ -#define HID_USAGE_DUP uint16_t (0x90) /* D-pad Up (On/Off Control) */ -#define HID_USAGE_DDOWN uint16_t (0x91) /* D-pad Down (On/Off Control) */ -#define HID_USAGE_DRIGHT uint16_t (0x92) /* D-pad Right (On/Off Control) */ -#define HID_USAGE_DLEFT uint16_t (0x93) /* D-pad Left (On/Off Control) */ -#define HID_USAGE_SYS_DOCK uint16_t (0xA0) /* System Dock (One Shot Control) */ -#define HID_USAGE_SYS_UNDOCK uint16_t (0xA1) /* System Undock (One Shot Control) */ -#define HID_USAGE_SYS_SETUP uint16_t (0xA2) /* System Setup (One Shot Control) */ -#define HID_USAGE_SYS_BREAK uint16_t (0xA3) /* System Break (One Shot Control) */ -#define HID_USAGE_SYS_DBGBRK uint16_t (0xA4) /* System Debugger Break (One Shot Control) */ -#define HID_USAGE_APP_BRK uint16_t (0xA5) /* Application Break (One Shot Control) */ -#define HID_USAGE_APP_DBGBRK uint16_t (0xA6) /* Application Debugger Break (One Shot Control) */ -#define HID_USAGE_SYS_SPKMUTE uint16_t (0xA7) /* System Speaker Mute (One Shot Control) */ -#define HID_USAGE_SYS_HIBERN uint16_t (0xA8) /* System Hibernate (One Shot Control) */ -#define HID_USAGE_SYS_SIDPINV uint16_t (0xB0) /* System Display Invert (One Shot Control) */ -#define HID_USAGE_SYS_DISPINT uint16_t (0xB1) /* System Display Internal (One Shot Control) */ -#define HID_USAGE_SYS_DISPEXT uint16_t (0xB2) /* System Display External (One Shot Control) */ -#define HID_USAGE_SYS_DISPBOTH uint16_t (0xB3) /* System Display Both (One Shot Control) */ -#define HID_USAGE_SYS_DISPDUAL uint16_t (0xB4) /* System Display Dual (One Shot Control) */ -#define HID_USAGE_SYS_DISPTGLIE uint16_t (0xB5) /* System Display Toggle Int/Ext (One Shot Control) */ -#define HID_USAGE_SYS_DISP_SWAP uint16_t (0xB6) /* System Display Swap Primary/Secondary (One Shot Control) */ -#define HID_USAGE_SYS_DIPS_LCDA uint16_t (0xB7) /* System Display LCD Autoscale (One Shot Control) */ - -#endif /* __USDH_HID_USAGE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_core.c b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_core.c deleted file mode 100644 index de214b69ab..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_core.c +++ /dev/null @@ -1,675 +0,0 @@ -/*! - \file usbh_hid_core.c - \brief USB host HID class driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gdusbh_pipe.h" -#include "usbh_hid_core.h" -#include "usbh_hid_mouse.h" -#include "usbh_hid_keybd.h" - -#include -#include - -static void usbh_hiddesc_parse (usb_desc_hid *hid_desc, uint8_t *buf); -static void usbh_hid_itf_deinit (usbh_host *uhost); -static usbh_status usbh_hid_itf_init (usbh_host *uhost); -static usbh_status usbh_hid_class_req (usbh_host *uhost); -static usbh_status usbh_hid_handle (usbh_host *uhost); -static usbh_status usbh_hid_reportdesc_get (usbh_host *uhost, uint16_t len); -static usbh_status usbh_hid_sof(usbh_host *uhost); -static usbh_status usbh_hid_desc_get (usbh_host *uhost, uint16_t len); -static usbh_status usbh_set_idle (usbh_host *uhost, uint8_t duration, uint8_t report_ID); -static usbh_status usbh_set_protocol (usbh_host *uhost, uint8_t protocol); - -usbh_class usbh_hid = -{ - USB_HID_CLASS, - usbh_hid_itf_init, - usbh_hid_itf_deinit, - usbh_hid_class_req, - usbh_hid_handle, - usbh_hid_sof -}; - -/*! - \brief get report - \param[in] uhost: pointer to USB host - \param[in] report_type: duration for HID set idle request - \param[in] report_ID: targeted report ID for HID set idle request - \param[in] report_len: length of data report to be send - \param[in] report_buf: report buffer - \param[out] none - \retval operation status -*/ -usbh_status usbh_get_report (usbh_host *uhost, - uint8_t report_type, - uint8_t report_ID, - uint8_t report_len, - uint8_t *report_buf) -{ - usbh_status status = USBH_BUSY; - - if (CTL_IDLE == uhost->control.ctl_state) { - uhost->control.setup.req = (usb_req) { - .bmRequestType = USB_TRX_IN | USB_RECPTYPE_ITF | USB_REQTYPE_CLASS, - .bRequest = GET_REPORT, - .wValue = (report_type << 8U) | report_ID, - .wIndex = 0U, - .wLength = report_len - }; - - usbh_ctlstate_config (uhost, report_buf, report_len); - } - - status = usbh_ctl_handler (uhost); - - return status; -} - -/*! - \brief set report - \param[in] udev: pointer to USB core instance - \param[in] uhost: pointer to USB host - \param[in] report_type: duration for HID set idle request - \param[in] report_ID: targeted report ID for HID set idle request - \param[in] report_len: length of data report to be send - \param[in] report_buf: report buffer - \param[out] none - \retval operation status -*/ -usbh_status usbh_set_report (usb_core_driver *udev, - usbh_host *uhost, - uint8_t report_type, - uint8_t report_ID, - uint8_t report_len, - uint8_t *report_buf) -{ - usbh_status status = USBH_BUSY; - - if (CTL_IDLE == uhost->control.ctl_state) { - uhost->control.setup.req = (usb_req) { - .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_ITF | USB_REQTYPE_CLASS, - .bRequest = SET_REPORT, - .wValue = (report_type << 8U) | report_ID, - .wIndex = 0U, - .wLength = report_len - }; - - usbh_ctlstate_config (uhost, report_buf, report_len); - } - - status = usbh_ctl_handler (uhost); - - return status; -} - -/*! - \brief deinitialize the host pipes used for the HID class - \param[in] uhost: pointer to USB host - \param[out] none - \retval operation status -*/ -void usbh_hid_itf_deinit (usbh_host *uhost) -{ - usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; - - if (0x00U != hid->pipe_in) { - usb_pipe_halt (uhost->data, hid->pipe_in); - - usbh_pipe_free (uhost->data, hid->pipe_in); - - hid->pipe_in = 0U; /* reset the pipe as free */ - } - - if (0x00U != hid->pipe_out) { - usb_pipe_halt (uhost->data, hid->pipe_out); - - usbh_pipe_free (uhost->data, hid->pipe_out); - - hid->pipe_out = 0U; /* reset the channel as free */ - } -} - -/*! - \brief return device type - \param[in] udev: pointer to USB core instance - \param[in] uhost: pointer to USB host - \param[out] none - \retval hid_type -*/ -hid_type usbh_hid_device_type_get(usb_core_driver *udev, usbh_host *uhost) -{ - hid_type type = HID_UNKNOWN; - uint8_t interface_protocol; - - if (HOST_CLASS_HANDLER == uhost->cur_state) { - interface_protocol = uhost->dev_prop.cfg_desc_set.itf_desc_set[uhost->dev_prop.cur_itf][0].itf_desc.bInterfaceProtocol; - - if (USB_HID_PROTOCOL_KEYBOARD == interface_protocol) { - type = HID_KEYBOARD; - } else { - if (USB_HID_PROTOCOL_MOUSE == interface_protocol) { - type = HID_MOUSE; - } - } - } - - return type; -} - -/*! - \brief return HID device poll time - \param[in] udev: pointer to USB core instance - \param[in] uhost: pointer to USB host - \param[out] none - \retval poll time (ms) -*/ -uint8_t usbh_hid_poll_interval_get (usb_core_driver *udev, usbh_host *uhost) -{ - usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; - - if ((HOST_CLASS_ENUM == uhost->cur_state) || - (HOST_USER_INPUT == uhost->cur_state) || - (HOST_CHECK_CLASS == uhost->cur_state) || - (HOST_CLASS_HANDLER == uhost->cur_state)) { - return (uint8_t)(hid->poll); - } else { - return 0U; - } -} - -/*! - \brief read from FIFO - \param[in] fifo: fifo address - \param[in] buf: read buffer - \param[in] nbytes: number of item to read - \param[out] none - \retval number of read items -*/ -uint16_t usbh_hid_fifo_read (data_fifo *fifo, void *buf, uint16_t nbytes) -{ - uint16_t i = 0U; - uint8_t *p = (uint8_t*) buf; - - if (0U == fifo->lock) { - fifo->lock = 1U; - - for (i = 0U; i < nbytes; i++) { - if (fifo->tail != fifo->head) { - *p++ = fifo->buf[fifo->tail]; - fifo->tail++; - - if (fifo->tail == fifo->size) { - fifo->tail = 0U; - } - } else { - fifo->lock = 0U; - - return i; - } - } - } - - fifo->lock = 0U; - - return nbytes; -} - -/*! - \brief write to FIFO - \param[in] fifo: fifo address - \param[in] buf: read buffer - \param[in] nbytes: number of item to read - \param[out] none - \retval number of write items -*/ -uint16_t usbh_hid_fifo_write (data_fifo *fifo, void *buf, uint16_t nbytes) -{ - uint16_t i = 0U; - uint8_t *p = (uint8_t*) buf; - - if (0U == fifo->lock) { - fifo->lock = 1U; - - for (i = 0U; i < nbytes; i++) { - if ((fifo->head + 1U == fifo->tail) || - ((fifo->head + 1U == fifo->size) && (0U == fifo->tail))) { - fifo->lock = 0U; - - return i; - } else { - fifo->buf[fifo->head] = *p++; - fifo->head++; - - if (fifo->head == fifo->size) { - fifo->head = 0U; - } - } - } - } - - fifo->lock = 0U; - - return nbytes; -} - -/*! - \brief initialize FIFO - \param[in] fifo: fifo address - \param[in] buf: read buffer - \param[in] size: size of FIFO - \param[out] none - \retval none -*/ -void usbh_hid_fifo_init (data_fifo *fifo, uint8_t *buf, uint16_t size) -{ - fifo->head = 0U; - fifo->tail = 0U; - fifo->lock = 0U; - fifo->size = size; - fifo->buf = buf; -} - -/*! - \brief initialize the hid class - \param[in] uhost: pointer to USB host - \param[out] none - \retval operation status -*/ -static usbh_status usbh_hid_itf_init (usbh_host *uhost) -{ - uint8_t num = 0U, ep_num = 0U, interface = 0U; - usbh_status status = USBH_BUSY; - - interface = usbh_interface_find(&uhost->dev_prop, USB_HID_CLASS, USB_HID_SUBCLASS_BOOT_ITF, 0xFFU); - - if (0xFFU == interface) { - uhost->usr_cb->dev_not_supported(); - - status = USBH_FAIL; - } else { - usbh_interface_select(&uhost->dev_prop, interface); - - static usbh_hid_handler hid_handler; - - memset((void*)&hid_handler, 0, sizeof(usbh_hid_handler)); - - hid_handler.state = HID_ERROR; - - uint8_t itf_protocol = uhost->dev_prop.cfg_desc_set.itf_desc_set[uhost->dev_prop.cur_itf][0].itf_desc.bInterfaceProtocol; - if (USB_HID_PROTOCOL_KEYBOARD == itf_protocol) { - hid_handler.init = usbh_hid_keybd_init; - hid_handler.machine = usbh_hid_keybrd_machine; - } else if (USB_HID_PROTOCOL_MOUSE == itf_protocol) { - hid_handler.init = usbh_hid_mouse_init; - hid_handler.machine = usbh_hid_mouse_machine; - } else { - status = USBH_FAIL; - } - - hid_handler.state = HID_INIT; - hid_handler.ctl_state = HID_REQ_INIT; - hid_handler.ep_addr = uhost->dev_prop.cfg_desc_set.itf_desc_set[uhost->dev_prop.cur_itf][0].ep_desc[0].bEndpointAddress; - hid_handler.len = uhost->dev_prop.cfg_desc_set.itf_desc_set[uhost->dev_prop.cur_itf][0].ep_desc[0].wMaxPacketSize; - hid_handler.poll = uhost->dev_prop.cfg_desc_set.itf_desc_set[uhost->dev_prop.cur_itf][0].ep_desc[0].bInterval; - - if (hid_handler.poll < HID_MIN_POLL) { - hid_handler.poll = HID_MIN_POLL; - } - - /* check fifo available number of endpoints */ - /* find the number of endpoints in the interface descriptor */ - /* choose the lower number in order not to overrun the buffer allocated */ - ep_num = USB_MIN(uhost->dev_prop.cfg_desc_set.itf_desc_set[uhost->dev_prop.cur_itf][0].itf_desc.bNumEndpoints, USBH_MAX_EP_NUM); - - /* decode endpoint IN and OUT address from interface descriptor */ - for (num = 0U; num < ep_num; num++) { - usb_desc_ep *ep_desc = &uhost->dev_prop.cfg_desc_set.itf_desc_set[uhost->dev_prop.cur_itf][0].ep_desc[num]; - - uint8_t ep_addr = ep_desc->bEndpointAddress; - - if (ep_addr & 0x80U) { - hid_handler.ep_in = ep_addr; - hid_handler.pipe_in = usbh_pipe_allocate (uhost->data, ep_addr); - - /* open channel for IN endpoint */ - usbh_pipe_create (uhost->data, - &uhost->dev_prop, - hid_handler.pipe_in, - USB_EPTYPE_INTR, - hid_handler.len); - - usbh_pipe_toggle_set(uhost->data, hid_handler.pipe_in, 0U); - } else { - hid_handler.ep_out = ep_addr; - hid_handler.pipe_out = usbh_pipe_allocate (uhost->data, ep_addr); - - /* open channel for OUT endpoint */ - usbh_pipe_create (uhost->data, - &uhost->dev_prop, - hid_handler.pipe_out, - USB_EPTYPE_INTR, - hid_handler.len); - - usbh_pipe_toggle_set(uhost->data, hid_handler.pipe_out, 0U); - } - } - - uhost->active_class->class_data = (void *)&hid_handler; - - status = USBH_OK; - } - - return status; -} - -/*! - \brief handle HID class requests for HID class - \param[in] uhost: pointer to USB host - \param[out] none - \retval operation status -*/ -static usbh_status usbh_hid_class_req (usbh_host *uhost) -{ - usbh_status status = USBH_BUSY; - usbh_status class_req_status = USBH_BUSY; - - usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; - - /* handle HID control state machine */ - switch (hid->ctl_state) { - case HID_REQ_INIT: - case HID_REQ_GET_HID_DESC: - /* get HID descriptor */ - if (USBH_OK == usbh_hid_desc_get (uhost, USB_HID_DESC_SIZE)) { - usbh_hiddesc_parse(&hid->hid_desc, uhost->dev_prop.data); - - hid->ctl_state = HID_REQ_GET_REPORT_DESC; - } - break; - - case HID_REQ_GET_REPORT_DESC: - /* get report descriptor */ - if (USBH_OK == usbh_hid_reportdesc_get(uhost, hid->hid_desc.wDescriptorLength)) { - hid->ctl_state = HID_REQ_SET_IDLE; - } - break; - - case HID_REQ_SET_IDLE: - class_req_status = usbh_set_idle (uhost, 0U, 0U); - - /* set idle */ - if (USBH_OK == class_req_status) { - hid->ctl_state = HID_REQ_SET_PROTOCOL; - } else { - if(USBH_NOT_SUPPORTED == class_req_status) { - hid->ctl_state = HID_REQ_SET_PROTOCOL; - } - } - break; - - case HID_REQ_SET_PROTOCOL: - /* set protocol */ - if (USBH_OK == usbh_set_protocol (uhost, 0U)) { - hid->ctl_state = HID_REQ_IDLE; - - /* all requests performed */ - status = USBH_OK; - } - break; - - case HID_REQ_IDLE: - default: - break; - } - - return status; -} - -/*! - \brief manage state machine for HID data transfers - \param[in] uhost: pointer to USB host - \param[out] none - \retval operation status -*/ -static usbh_status usbh_hid_handle (usbh_host *uhost) -{ - usbh_status status = USBH_OK; - usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; - - switch (hid->state) { - case HID_INIT: - hid->init(uhost->data, uhost); - hid->state = HID_IDLE; - break; - - case HID_IDLE: - hid->state = HID_SYNC; - status = USBH_OK; - break; - - case HID_SYNC: - /* sync with start of even frame */ - if (true == usb_frame_even(uhost->data)) { - hid->state = HID_GET_DATA; - } - break; - - case HID_GET_DATA: - usbh_data_recev (uhost->data, hid->pdata, hid->pipe_in, hid->len); - - hid->state = HID_POLL; - hid->timer = usb_curframe_get (uhost->data); - hid->data_ready = 0U; - break; - - case HID_POLL: - if (GD_URB_DONE == usbh_urbstate_get (uhost->data, hid->pipe_in)) { - if (0U == hid->data_ready) { /* handle data once */ - usbh_hid_fifo_write(&hid->fifo, hid->pdata, hid->len); - hid->data_ready = 1U; - - hid->machine(uhost->data, uhost); - } - } else { - if (GD_URB_STALL == usbh_urbstate_get (uhost->data, hid->pipe_in)) { /* IN endpoint stalled */ - /* issue clear feature on interrupt in endpoint */ - if (USBH_OK == (usbh_clrfeature (uhost, hid->ep_addr, hid->pipe_in))) { - /* change state to issue next in token */ - hid->state = HID_GET_DATA; - } - } - } - break; - - default: - break; - } - return status; -} - -/*! - \brief send get report descriptor command to the device - \param[in] uhost: pointer to USB host - \param[in] len: HID report descriptor length - \param[out] none - \retval operation status -*/ -static usbh_status usbh_hid_reportdesc_get (usbh_host *uhost, uint16_t len) -{ - usbh_status status = USBH_BUSY; - - if (CTL_IDLE == uhost->control.ctl_state) { - uhost->control.setup.req = (usb_req) { - .bmRequestType = USB_TRX_IN | USB_RECPTYPE_ITF | USB_REQTYPE_STRD, - .bRequest = USB_GET_DESCRIPTOR, - .wValue = USBH_DESC(USB_DESCTYPE_REPORT), - .wIndex = 0U, - .wLength = len - }; - - usbh_ctlstate_config (uhost, uhost->dev_prop.data, len); - } - - status = usbh_ctl_handler (uhost); - - return status; -} - -/*! - \brief managing the SOF process - \param[in] uhost: pointer to USB host - \param[out] none - \retval operation status -*/ -static usbh_status usbh_hid_sof(usbh_host *uhost) -{ - usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; - - if (HID_POLL == hid->state) { - uint32_t frame_count = usb_curframe_get (uhost->data); - - if ((frame_count > hid->timer) && ((frame_count - hid->timer) >= hid->poll)) { - hid->state = HID_GET_DATA; - } else if ((frame_count < hid->timer) && ((frame_count + 0x3FFFU - hid->timer) >= hid->poll)) { - hid->state = HID_GET_DATA; - } else { - /* no operation */ - } - } - - return USBH_OK; -} - -/*! - \brief send the command of get HID descriptor to the device - \param[in] uhost: pointer to USB host - \param[in] len: HID descriptor length - \param[out] none - \retval operation status -*/ -static usbh_status usbh_hid_desc_get (usbh_host *uhost, uint16_t len) -{ - usbh_status status = USBH_BUSY; - - if (CTL_IDLE == uhost->control.ctl_state) { - uhost->control.setup.req = (usb_req) { - .bmRequestType = USB_TRX_IN | USB_RECPTYPE_ITF | USB_REQTYPE_STRD, - .bRequest = USB_GET_DESCRIPTOR, - .wValue = USBH_DESC(USB_DESCTYPE_HID), - .wIndex = 0U, - .wLength = len - }; - - usbh_ctlstate_config (uhost, uhost->dev_prop.data, len); - } - - status = usbh_ctl_handler (uhost); - - return status; -} - -/*! - \brief set idle state - \param[in] uhost: pointer to USB host - \param[in] duration: duration for HID set idle request - \param[in] report_ID: targeted report ID for HID set idle request - \param[out] none - \retval operation status -*/ -static usbh_status usbh_set_idle (usbh_host *uhost, uint8_t duration, uint8_t report_ID) -{ - usbh_status status = USBH_BUSY; - - if (CTL_IDLE == uhost->control.ctl_state) { - uhost->control.setup.req = (usb_req) { - .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_ITF | USB_REQTYPE_CLASS, - .bRequest = SET_IDLE, - .wValue = (duration << 8U) | report_ID, - .wIndex = 0U, - .wLength = 0U - }; - - usbh_ctlstate_config (uhost, NULL, 0U); - } - - status = usbh_ctl_handler (uhost); - - return status; -} - -/*! - \brief set protocol state - \param[in] uhost: pointer to USB host - \param[in] protocol: boot/report protocol - \param[out] none - \retval operation status -*/ -static usbh_status usbh_set_protocol (usbh_host *uhost, uint8_t protocol) -{ - usbh_status status = USBH_BUSY; - - if (CTL_IDLE == uhost->control.ctl_state) { - uhost->control.setup.req = (usb_req) { - .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_ITF | USB_REQTYPE_CLASS, - .bRequest = SET_PROTOCOL, - .wValue = !protocol, - .wIndex = 0U, - .wLength = 0U - }; - - usbh_ctlstate_config (uhost, NULL, 0U); - } - - status = usbh_ctl_handler (uhost); - - return status; -} - -/*! - \brief parse the HID descriptor - \param[in] hid_desc: pointer to HID descriptor - \param[in] buf: pointer to buffer where the source descriptor is available - \param[out] none - \retval none -*/ -static void usbh_hiddesc_parse (usb_desc_hid *hid_desc, uint8_t *buf) -{ - hid_desc->header.bLength = *(uint8_t *)(buf + 0U); - hid_desc->header.bDescriptorType = *(uint8_t *)(buf + 1U); - hid_desc->bcdHID = BYTE_SWAP(buf + 2U); - hid_desc->bCountryCode = *(uint8_t *)(buf + 4U); - hid_desc->bNumDescriptors = *(uint8_t *)(buf + 5U); - hid_desc->bDescriptorType = *(uint8_t *)(buf + 6U); - hid_desc->wDescriptorLength = BYTE_SWAP(buf + 7U); -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_keybd.c b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_keybd.c deleted file mode 100644 index b857e3e8a6..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_keybd.c +++ /dev/null @@ -1,399 +0,0 @@ -/*! - \file usbh_hid_keybd.c - \brief USB host HID keyboard driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "usbh_hid_keybd.h" -#include "usbh_hid_parser.h" -#include - -hid_keybd_info keybd_info; - -uint32_t keybd_report_data[2]; - -static const hid_report_item imp_0_lctrl = -{ - (uint8_t*)(void *)keybd_report_data + 0, /* data */ - 1, /* size */ - 0, /* shift */ - 0, /* count (only for array items) */ - 0, /* signed */ - 0, /* min value read can return */ - 1, /* max value read can return */ - 0, /* min vale device can report */ - 1, /* max value device can report */ - 1 /* resolution */ -}; - -static const hid_report_item imp_0_lshift = -{ - (uint8_t*)(void *)keybd_report_data + 0, /* data */ - 1, /* size */ - 1, /* shift */ - 0, /* count (only for array items) */ - 0, /* signed */ - 0, /* min value read can return */ - 1, /* max value read can return */ - 0, /* min vale device can report */ - 1, /* max value device can report */ - 1 /* resolution */ -}; - -static const hid_report_item imp_0_lalt = -{ - (uint8_t*)(void *)keybd_report_data + 0, /* data */ - 1, /* size */ - 2, /* shift */ - 0, /* count (only for array items) */ - 0, /* signed */ - 0, /* min value read can return */ - 1, /* max value read can return */ - 0, /* min vale device can report */ - 1, /* max value device can report */ - 1 /* resolution */ -}; - -static const hid_report_item imp_0_lgui = -{ - (uint8_t*)(void *)keybd_report_data + 0, /* data */ - 1, /* size */ - 3, /* shift */ - 0, /* count (only for array items) */ - 0, /* signed */ - 0, /* min value read can return */ - 1, /* max value read can return */ - 0, /* min vale device can report */ - 1, /* max value device can report */ - 1 /* resolution */ -}; - -static const hid_report_item imp_0_rctrl = -{ - (uint8_t*)(void *)keybd_report_data + 0, /* data */ - 1, /* size */ - 4, /* shift */ - 0, /* count (only for array items) */ - 0, /* signed */ - 0, /* min value read can return */ - 1, /* max value read can return */ - 0, /* min vale device can report */ - 1, /* max value device can report */ - 1 /* resolution */ -}; - -static const hid_report_item imp_0_rshift = -{ - (uint8_t*)(void *)keybd_report_data + 0, /* data */ - 1, /* size */ - 5, /* shift */ - 0, /* count (only for array items) */ - 0, /* signed */ - 0, /* min value read can return */ - 1, /* max value read can return */ - 0, /* min vale device can report */ - 1, /* max value device can report */ - 1 /* resolution */ -}; - -static const hid_report_item imp_0_ralt = -{ - (uint8_t*)(void *)keybd_report_data + 0, /* data */ - 1, /* size */ - 6, /* shift */ - 0, /* count (only for array items) */ - 0, /* signed */ - 0, /* min value read can return */ - 1, /* max value read can return */ - 0, /* min vale device can report */ - 1, /* max value device can report */ - 1 /* resolution */ -}; - -static const hid_report_item imp_0_rgui = -{ - (uint8_t*)(void *)keybd_report_data + 0, /* data */ - 1, /* size */ - 7, /* shift */ - 0, /* count (only for array items) */ - 0, /* signed */ - 0, /* min value read can return */ - 1, /* max value read can return */ - 0, /* min vale device can report */ - 1, /* max value device can report */ - 1 /* resolution */ -}; - -static const hid_report_item imp_0_key_array = -{ - (uint8_t*)(void *)keybd_report_data + 2, /* data */ - 8, /* size */ - 0, /* shift */ - 6, /* count (only for array items) */ - 0, /* signed */ - 0, /* min value read can return */ - 101, /* max value read can return */ - 0, /* min vale device can report */ - 101, /* max value device can report */ - 1 /* resolution */ -}; - -/* local constants */ -static const uint8_t hid_keybrd_codes[] = -{ - 0, 0, 0, 0, 31, 50, 48, 33, - 19, 34, 35, 36, 24, 37, 38, 39, /* 0x00 - 0x0F */ - 52, 51, 25, 26, 17, 20, 32, 21, - 23, 49, 18, 47, 22, 46, 2, 3, /* 0x10 - 0x1F */ - 4, 5, 6, 7, 8, 9, 10, 11, - 43, 110, 15, 16, 61, 12, 13, 27, /* 0x20 - 0x2F */ - 28, 29, 42, 40, 41, 1, 53, 54, - 55, 30, 112, 113, 114, 115, 116, 117, /* 0x30 - 0x3F */ - 118, 119, 120, 121, 122, 123, 124, 125, - 126, 75, 80, 85, 76, 81, 86, 89, /* 0x40 - 0x4F */ - 79, 84, 83, 90, 95, 100, 105, 106, - 108, 93, 98, 103, 92, 97, 102, 91, /* 0x50 - 0x5F */ - 96, 101, 99, 104, 45, 129, 0, 0, - 0, 0, 0, 0, 0, 0, 0, 0, /* 0x60 - 0x6F */ - 0, 0, 0, 0, 0, 0, 0, 0, - 0, 0, 0, 0, 0, 0, 0, 0, /* 0x70 - 0x7F */ - 0, 0, 0, 0, 0, 107, 0, 56, - 0, 0, 0, 0, 0, 0, 0, 0, /* 0x80 - 0x8F */ - 0, 0, 0, 0, 0, 0, 0, 0, - 0, 0, 0, 0, 0, 0, 0, 0, /* 0x90 - 0x9F */ - 0, 0, 0, 0, 0, 0, 0, 0, - 0, 0, 0, 0, 0, 0, 0, 0, /* 0xA0 - 0xAF */ - 0, 0, 0, 0, 0, 0, 0, 0, - 0, 0, 0, 0, 0, 0, 0, 0, /* 0xB0 - 0xBF */ - 0, 0, 0, 0, 0, 0, 0, 0, - 0, 0, 0, 0, 0, 0, 0, 0, /* 0xC0 - 0xCF */ - 0, 0, 0, 0, 0, 0, 0, 0, - 0, 0, 0, 0, 0, 0, 0, 0, /* 0xD0 - 0xDF */ - 58, 44, 60, 127, 64, 57, 62, 128 /* 0xE0 - 0xE7 */ -}; - -#ifdef QWERTY_KEYBOARD - -static const int8_t hid_keybrd_key[] = -{ - '\0', '`', '1', '2', '3', '4', '5', '6', - '7', '8', '9', '0', '-', '=', '\0', '\r', - '\t', 'q', 'w', 'e', 'r', 't', 'y', 'u', - 'i', 'o', 'p', '[', ']', '\\', - '\0', 'a', 's', 'd', 'f', 'g', 'h', 'j', - 'k', 'l', ';', '\'', '\0', '\n', - '\0', '\0', 'z', 'x', 'c', 'v', 'b', 'n', - 'm', ',', '.', '/', '\0', '\0', - '\0', '\0', '\0', ' ', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\r', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', - '\0', '\0', '7', '4', '1', - '\0', '/', '8', '5', '2', - '0', '*', '9', '6', '3', - '.', '-', '+', '\0', '\n', '\0', '\0', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0' -}; - -static const int8_t hid_keybrd_shiftkey[] = { - '\0', '~', '!', '@', '#', '$', '%', '^', '&', '*', '(', ')', - '_', '+', '\0', '\0', '\0', 'Q', 'W', 'E', 'R', 'T', 'Y', 'U', - 'I', 'O', 'P', '{', '}', '|', '\0', 'A', 'S', 'D', 'F', 'G', - 'H', 'J', 'K', 'L', ':', '"', '\0', '\n', '\0', '\0', 'Z', 'X', - 'C', 'V', 'B', 'N', 'M', '<', '>', '?', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0' -}; - -#else - -static const int8_t hid_keybrd_key[] = { - '\0', '`', '1', '2', '3', '4', '5', '6', '7', '8', '9', '0', - '-', '=', '\0', '\r', '\t', 'a', 'z', 'e', 'r', 't', 'y', 'u', - 'i', 'o', 'p', '[', ']', '\\', '\0', 'q', 's', 'd', 'f', 'g', - 'h', 'j', 'k', 'l', 'm', '\0', '\0', '\n', '\0', '\0', 'w', 'x', - 'c', 'v', 'b', 'n', ',', ';', ':', '!', '\0', '\0', '\0', '\0', - '\0', ' ', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\r', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', '\0', '7', '4', '1', '\0', '/', - '8', '5', '2', '0', '*', '9', '6', '3', '.', '-', '+', '\0', - '\n', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0' -}; - -static const int8_t hid_keybrd_shiftkey[] = { - '\0', '~', '!', '@', '#', '$', '%', '^', '&', '*', '(', ')', '_', - '+', '\0', '\0', '\0', 'A', 'Z', 'E', 'R', 'T', 'Y', 'U', 'I', 'O', - 'P', '{', '}', '*', '\0', 'Q', 'S', 'D', 'F', 'G', 'H', 'J', 'K', - 'L', 'M', '%', '\0', '\n', '\0', '\0', 'W', 'X', 'C', 'V', 'B', 'N', - '?', '.', '/', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', - '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0' -}; - -#endif - -/* local function prototypes ('static') */ -static usbh_status usbh_hid_keybrd_decode (usb_core_driver *udev, usbh_host *uhost); - -/*! - \brief initialize the keyboard function - \param[in] udev: pointer to USB core instance - \param[in] uhost: pointer to USB host - \param[out] none - \retval operation status -*/ -usbh_status usbh_hid_keybd_init (usb_core_driver *udev, usbh_host *uhost) -{ - usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; - - keybd_info.lctrl = keybd_info.lshift = 0U; - keybd_info.lalt = keybd_info.lgui = 0U; - keybd_info.rctrl = keybd_info.rshift = 0U; - keybd_info.ralt = keybd_info.rgui = 0U; - - for (uint32_t x = 0U; x < (sizeof(keybd_report_data) / sizeof(uint32_t)); x++) { - keybd_report_data[x] = 0U; - } - - if (hid->len > (sizeof(keybd_report_data) / sizeof(uint32_t))) { - hid->len = (sizeof(keybd_report_data) / sizeof(uint32_t)); - } - - hid->pdata = (uint8_t*)(void *)keybd_report_data; - - usbh_hid_fifo_init (&hid->fifo, uhost->dev_prop.data, HID_QUEUE_SIZE * sizeof(keybd_report_data)); - - /* call user initialization*/ - usr_keybrd_init(); - - return USBH_OK; -} - -/*! - \brief get keyboard information - \param[in] udev: pointer to USB core instance - \param[in] uhost: pointer to USB host handler - \param[out] none - \retval keyboard information -*/ -hid_keybd_info *usbh_hid_keybd_info_get (usb_core_driver *udev, usbh_host *uhost) -{ - if (USBH_OK == usbh_hid_keybrd_decode(udev, uhost)) { - return &keybd_info; - } else { - return NULL; - } -} - -/*! - \brief get ascii code - \param[in] info: keyboard information - \param[out] none - \retval output -*/ -uint8_t usbh_hid_ascii_code_get (hid_keybd_info *info) -{ - uint8_t output; - if ((1U == info->lshift) || (info->rshift)) { - output = hid_keybrd_shiftkey[hid_keybrd_codes[info->keys[0]]]; - } else { - output = hid_keybrd_key[hid_keybrd_codes[info->keys[0]]]; - } - - return output; -} - -/*! - \brief decode the pressed keys - \param[in] udev: pointer to USB core instance - \param[in] uhost: pointer to USB host - \param[out] none - \retval none -*/ -void usbh_hid_keybrd_machine (usb_core_driver *udev, usbh_host *uhost) -{ - hid_keybd_info *k_pinfo; - - k_pinfo = usbh_hid_keybd_info_get(udev, uhost); - - if (k_pinfo != NULL) { - char c = usbh_hid_ascii_code_get(k_pinfo); - - if (c != 0U) { - usr_keybrd_process_data(c); - } - } -} - -/*! - \brief decode keyboard information - \param[in] udev: pointer to USB core instance - \param[in] uhost: pointer to USB host - \param[out] none - \retval operation status -*/ -static usbh_status usbh_hid_keybrd_decode (usb_core_driver *udev, usbh_host *uhost) -{ - usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; - - if (hid->len == 0U) { - return USBH_FAIL; - } - - /* fill report */ - if (usbh_hid_fifo_read (&hid->fifo, &keybd_report_data, hid->len) == hid->len) { - keybd_info.lctrl = (uint8_t)hid_item_read((hid_report_item *)&imp_0_lctrl, 0U); - keybd_info.lshift = (uint8_t)hid_item_read((hid_report_item *)&imp_0_lshift, 0U); - keybd_info.lalt = (uint8_t)hid_item_read((hid_report_item *)&imp_0_lalt, 0U); - keybd_info.lgui = (uint8_t)hid_item_read((hid_report_item *)&imp_0_lgui, 0U); - keybd_info.rctrl = (uint8_t)hid_item_read((hid_report_item *)&imp_0_rctrl, 0U); - keybd_info.rshift = (uint8_t)hid_item_read((hid_report_item *)&imp_0_rshift, 0U); - keybd_info.ralt = (uint8_t)hid_item_read((hid_report_item *)&imp_0_ralt, 0U); - keybd_info.rgui = (uint8_t)hid_item_read((hid_report_item *)&imp_0_rgui, 0U); - - for (uint8_t x = 0U; x < sizeof(keybd_info.keys); x++) { - keybd_info.keys[x] = (uint8_t)hid_item_read((hid_report_item *)&imp_0_key_array, x); - } - - return USBH_OK; - } - - return USBH_FAIL; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_mouse.c b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_mouse.c deleted file mode 100644 index f6d20c9bf2..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_mouse.c +++ /dev/null @@ -1,216 +0,0 @@ -/*! - \file usbh_hid_mouse.c - \brief USB host HID mouse driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "usbh_hid_mouse.h" -#include "usbh_hid_parser.h" - -hid_mouse_info mouse_info; -uint32_t mouse_report_data[1]; - -/* structures defining how to access items in a hid mouse report */ -/* access button 1 state. */ -static const hid_report_item prop_b1 = -{ - (uint8_t *)(void *)mouse_report_data + 0, /* data */ - 1, /* size */ - 0, /* shift */ - 0, /* count (only for array items) */ - 0, /* signed? */ - 0, /* min value read can return */ - 1, /* max value read can return */ - 0, /* min value device can report */ - 1, /* max value device can report */ - 1 /* resolution */ -}; - -/* access button 2 state. */ -static const hid_report_item prop_b2 = -{ - (uint8_t *)(void *)mouse_report_data + 0, /* data */ - 1, /* size */ - 1, /* shift */ - 0, /* count (only for array items) */ - 0, /* signed? */ - 0, /* min value read can return */ - 1, /* max value read can return */ - 0, /* min value device can report */ - 1, /* max value device can report */ - 1 /* resolution */ -}; - -/* access button 3 state. */ -static const hid_report_item prop_b3 = -{ - (uint8_t *)(void *)mouse_report_data + 0, /* data */ - 1, /* size */ - 2, /* shift */ - 0, /* count (only for array items) */ - 0, /* signed? */ - 0, /* min value read can return */ - 1, /* max value read can return */ - 0, /* min vale device can report */ - 1, /* max value device can report */ - 1 /* resolution */ -}; - -/* access x coordinate change. */ -static const hid_report_item prop_x = -{ - (uint8_t *)(void *)mouse_report_data + 1, /* data */ - 8, /* size */ - 0, /* shift */ - 0, /* count (only for array items) */ - 1, /* signed? */ - 0, /* min value read can return */ - 0xFFFF,/* max value read can return */ - 0, /* min vale device can report */ - 0xFFFF,/* max value device can report */ - 1 /* resolution */ -}; - -/* access y coordinate change. */ -static const hid_report_item prop_y = -{ - (uint8_t *)(void *)mouse_report_data + 2, /* data */ - 8, /* size */ - 0, /* shift */ - 0, /* count (only for array items) */ - 1, /* signed? */ - 0, /* min value read can return */ - 0xFFFF,/* max value read can return */ - 0, /* min vale device can report */ - 0xFFFF,/* max value device can report */ - 1 /* resolution */ -}; - -/* local function prototypes ('static') */ -static usbh_status usbh_hid_mouse_decode(usb_core_driver *udev, usbh_host *uhost); - -/*! - \brief initialize the mouse function - \param[in] udev: pointer to USB core instance - \param[in] uhost: pointer to USB host - \param[out] none - \retval none -*/ -usbh_status usbh_hid_mouse_init (usb_core_driver *udev, usbh_host *uhost) -{ - usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; - - mouse_info.x = 0U; - mouse_info.y = 0U; - mouse_info.buttons[0] = 0U; - mouse_info.buttons[1] = 0U; - mouse_info.buttons[2] = 0U; - - mouse_report_data[0] = 0U; - - if(hid->len > sizeof(mouse_report_data)) { - hid->len = sizeof(mouse_report_data); - } - - hid->pdata = (uint8_t *)(void *)mouse_report_data; - - usbh_hid_fifo_init(&hid->fifo, uhost->dev_prop.data, HID_QUEUE_SIZE * sizeof(mouse_report_data)); - - usr_mouse_init(); - - return USBH_OK; -} - -/*! - \brief get mouse information - \param[in] udev: pointer to USB core instance - \param[in] uhost: pointer to USB host - \param[out] none - \retval mouse information -*/ -hid_mouse_info *usbh_hid_mouse_info_get (usb_core_driver *udev, usbh_host *uhost) -{ - if(usbh_hid_mouse_decode(udev, uhost)== USBH_OK) { - return &mouse_info; - } else { - return NULL; - } -} - -/*! - \brief decode mouse data - \param[in] udev: pointer to USB core instance - \param[in] uhost: pointer to USB host - \param[out] none - \retval none -*/ -void usbh_hid_mouse_machine (usb_core_driver *udev, usbh_host *uhost) -{ - hid_mouse_info *m_pinfo = NULL; - - m_pinfo = usbh_hid_mouse_info_get(udev, uhost); - - if (NULL != m_pinfo) { - /* handle mouse data position */ - usr_mouse_process_data(&mouse_info); - } -} - -/*! - \brief decode mouse information - \param[in] udev: pointer to USB core instance - \param[in] uhost: pointer to USB host - \param[out] none - \retval operation status -*/ -static usbh_status usbh_hid_mouse_decode(usb_core_driver *udev, usbh_host *uhost) -{ - usbh_hid_handler *hid = (usbh_hid_handler *)uhost->active_class->class_data; - - if (0U == hid->len) { - return USBH_FAIL; - } - - /* fill report */ - if (usbh_hid_fifo_read(&hid->fifo, &mouse_report_data, hid->len) == hid->len) { - /* decode report */ - mouse_info.x = (uint8_t)hid_item_read((hid_report_item *)&prop_x, 0U); - mouse_info.y = (uint8_t)hid_item_read((hid_report_item *)&prop_y, 0U); - - mouse_info.buttons[0] = (uint8_t)hid_item_read((hid_report_item *)&prop_b1, 0U); - mouse_info.buttons[1] = (uint8_t)hid_item_read((hid_report_item *)&prop_b2, 0U); - mouse_info.buttons[2] = (uint8_t)hid_item_read((hid_report_item *)&prop_b3, 0U); - - return USBH_OK; - } - - return USBH_FAIL; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_parser.c b/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_parser.c deleted file mode 100644 index 7deec2424c..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/host/class/hid/Source/usbh_hid_parser.c +++ /dev/null @@ -1,148 +0,0 @@ -/*! - \file usbh_hid_parser.c - \brief USB host HID parser driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "usbh_hid_parser.h" - -/*! - \brief read a hid report item - \param[in] ri: pointer to report item - \param[in] ndx: report index - \param[out] none - \retval operation status (0: fail otherwise: item value) -*/ -uint32_t hid_item_read (hid_report_item *ri, uint8_t ndx) -{ - uint32_t val = 0U; - uint32_t bofs = 0U; - uint8_t *data = ri->data; - uint8_t shift = ri->shift; - - /* get the logical value of the item */ - - /* if this is an array, wee may need to offset ri->data.*/ - if (ri->count > 0U) { - /* if app tries to read outside of the array. */ - if (ri->count <= ndx) { - return(0U); - } - - /* calculate bit offset */ - bofs = ndx * ri->size; - bofs += shift; - - /* calculate byte offset + shift pair from bit offset. */ - data += bofs / 8U; - shift = (uint8_t)(bofs % 8U); - } - - /* read data bytes in little endian order */ - for (uint32_t x = 0U; x < ((ri->size & 0x7U) ? (ri->size / 8U) + 1U : (ri->size / 8U)); x++) { - val=(uint32_t)((uint32_t)(*data) << (x * 8U)); - } - - val=(val >> shift) & ((1U << ri->size) - 1U); - - if ((val < ri->logical_min) || (val > ri->logical_max)) { - return(0U); - } - - /* convert logical value to physical value */ - /* see if the number is negative or not. */ - if ((ri->sign) && (val & (1U << (ri->size - 1U)))) { - /* yes, so sign extend value to 32 bits. */ - uint32_t vs = (uint32_t)((0xffffffffU & ~((1U << (ri->size)) - 1U)) | val); - - if (1U == ri->resolution) { - return((uint32_t)vs); - } - return((uint32_t)(vs * ri->resolution)); - } else { - if (1U == ri->resolution) { - return(val); - } - - return (val * ri->resolution); - } -} - -/*! - \brief write a hid report item - \param[in] ri: pointer to report item - \param[in] value: the value to be write - \param[in] ndx: report index - \param[out] none - \retval operation status (1: fail 0: OK) -*/ -uint32_t hid_item_write(hid_report_item *ri, uint32_t value, uint8_t ndx) -{ - uint32_t mask; - uint32_t bofs; - uint8_t *data = ri->data; - uint8_t shift = ri->shift; - - if ((value < ri->physical_min) || (value > ri->physical_max)) { - return(1U); - } - - /* if this is an array, wee may need to offset ri->data.*/ - if (ri->count > 0U) { - /* if app tries to read outside of the array. */ - if (ri->count >= ndx) { - return(0U); - } - - /* calculate bit offset */ - bofs = ndx * ri->size; - bofs += shift; - - /* calculate byte offset + shift pair from bit offset. */ - data += bofs / 8U; - shift = (uint8_t)(bofs % 8U); - } - - /* convert physical value to logical value. */ - if (1U != ri->resolution) { - value = value / ri->resolution; - } - - /* write logical value to report in little endian order. */ - mask = (1U << ri->size) - 1U; - value = (value & mask) << shift; - - for (uint32_t x = 0U; x < ((ri->size & 0x7U) ? (ri->size / 8U) + 1U : (ri->size / 8U)); x++) { - *(ri->data + x) = (uint8_t)((*(ri->data+x) & ~(mask>>(x* 8U))) | ((value >> (x * 8U)) & (mask >> (x * 8U)))); - } - - return 0U; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/msc_bbb.h b/Marlin/lib/GD32F4xx_usb_library/src/msc_bbb.h deleted file mode 100644 index a8d735a8b9..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/msc_bbb.h +++ /dev/null @@ -1,69 +0,0 @@ -/*! - \file msc_bbb.h - \brief definitions for the USB MSC BBB(bulk/bulk/bulk) protocol - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __MSC_BBB_H -#define __MSC_BBB_H - -#include "usb_ch9_std.h" - -#define BBB_CBW_SIGNATURE 0x43425355U -#define BBB_CSW_SIGNATURE 0x53425355U -#define BBB_CBW_LENGTH 31U -#define BBB_CSW_LENGTH 13U - -typedef struct { - uint32_t dCBWSignature; - uint32_t dCBWTag; - uint32_t dCBWDataTransferLength; - uint8_t bmCBWFlags; - uint8_t bCBWLUN; - uint8_t bCBWCBLength; - uint8_t CBWCB[16]; -}msc_bbb_cbw; - -typedef struct { - uint32_t dCSWSignature; - uint32_t dCSWTag; - uint32_t dCSWDataResidue; - uint8_t bCSWStatus; -}msc_bbb_csw; - -/* CSW command status */ -enum msc_csw_status { - CSW_CMD_PASSED = 0, - CSW_CMD_FAILED, - CSW_PHASE_ERROR -}; - -#endif /* __MSC_BBB_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/msc_scsi.h b/Marlin/lib/GD32F4xx_usb_library/src/msc_scsi.h deleted file mode 100644 index 78bcebe6b6..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/msc_scsi.h +++ /dev/null @@ -1,117 +0,0 @@ -/*! - \file msc_scsi.h - \brief definitions for the USB MSC SCSI commands - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __MSC_SCSI_H -#define __MSC_SCSI_H - -#include "usb_ch9_std.h" - -/* SCSI commands */ -#define SCSI_FORMAT_UNIT 0x04U -#define SCSI_INQUIRY 0x12U -#define SCSI_MODE_SELECT6 0x15U -#define SCSI_MODE_SELECT10 0x55U -#define SCSI_MODE_SENSE6 0x1AU -#define SCSI_READ_TOC_DATA 0x43U -#define SCSI_MODE_SENSE10 0x5AU -#define SCSI_ALLOW_MEDIUM_REMOVAL 0x1EU -#define SCSI_READ6 0x08U -#define SCSI_READ10 0x28U -#define SCSI_READ12 0xA8U -#define SCSI_READ16 0x88U - -#define SCSI_READ_CAPACITY10 0x25U -#define SCSI_READ_CAPACITY16 0x9EU - -#define SCSI_REQUEST_SENSE 0x03U -#define SCSI_START_STOP_UNIT 0x1BU -#define SCSI_TEST_UNIT_READY 0x00U -#define SCSI_WRITE6 0x0AU -#define SCSI_WRITE10 0x2AU -#define SCSI_WRITE12 0xAAU -#define SCSI_WRITE16 0x8AU - -#define SCSI_VERIFY10 0x2FU -#define SCSI_VERIFY12 0xAFU -#define SCSI_VERIFY16 0x8FU - -#define SCSI_SEND_DIAGNOSTIC 0x1DU -#define SCSI_READ_FORMAT_CAPACITIES 0x23U - -#define INVALID_CDB 0x20U -#define INVALID_FIELED_IN_COMMAND 0x24U -#define PARAMETER_LIST_LENGTH_ERROR 0x1AU -#define INVALID_FIELD_IN_PARAMETER_LIST 0x26U -#define ADDRESS_OUT_OF_RANGE 0x21U -#define MEDIUM_NOT_PRESENT 0x3AU -#define MEDIUM_HAVE_CHANGED 0x28U -#define WRITE_PROTECTED 0x27U -#define UNRECOVERED_READ_ERROR 0x11U -#define WRITE_FAULT 0x03U - -#define READ_FORMAT_CAPACITY_DATA_LEN 0x0CU -#define READ_CAPACITY10_DATA_LEN 0x08U -#define MODE_SENSE10_DATA_LEN 0x08U -#define MODE_SENSE6_DATA_LEN 0x04U -#define READ_TOC_CMD_LEN 0x14U -#define REQUEST_SENSE_DATA_LEN 0x12U -#define STANDARD_INQUIRY_DATA_LEN 0x24U -#define BLKVFY 0x04U - -enum sense_state { - NO_SENSE = 0U, - RECOVERED_ERROR, - NOT_READY, - MEDIUM_ERROR, - HARDWARE_ERROR, - ILLEGAL_REQUEST, - UNIT_ATTENTION, - DATA_PROTECT, - BLANK_CHECK, - VENDOR_SPECIFIC, - COPY_ABORTED, - ABORTED_COMMAND, - RESERVED, - VOLUME_OVERFLOW, - MISCOMPARE -}; - -typedef struct { - uint8_t SenseKey; - uint32_t Information; - uint8_t ASC; - uint8_t ASCQ; -} msc_scsi_sense; - -#endif /* __MSC_SCSI_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usb_ch9_std.h b/Marlin/lib/GD32F4xx_usb_library/src/usb_ch9_std.h deleted file mode 100644 index d71f25ad1f..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/usb_ch9_std.h +++ /dev/null @@ -1,248 +0,0 @@ -/*! - \file usb_ch9_std.h - \brief USB 2.0 standard defines - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USB_CH9_STD_H -#define __USB_CH9_STD_H - -#include "gdusb_conf.h" - -#define USB_DEV_QUALIFIER_DESC_LEN 0x0AU /*!< USB device qualifier descriptor length */ -#define USB_DEV_DESC_LEN 0x12U /*!< USB device descriptor length */ -#define USB_CFG_DESC_LEN 0x09U /*!< USB configuration descriptor length */ -#define USB_ITF_DESC_LEN 0x09U /*!< USB interface descriptor length */ -#define USB_EP_DESC_LEN 0x07U /*!< USB endpoint descriptor length */ -#define USB_IAD_DESC_LEN 0x08U /*!< USB IAD descriptor length */ -#define USB_OTG_DESC_LEN 0x03U /*!< USB device OTG descriptor length */ - -#define USB_SETUP_PACKET_LEN 0x08U /*!< USB setup packet length */ - -/* bit 7 of bmRequestType: data phase transfer direction */ -#define USB_TRX_MASK 0x80U /*!< USB transfer direction mask */ -#define USB_TRX_OUT 0x00U /*!< USB transfer OUT direction */ -#define USB_TRX_IN 0x80U /*!< USB transfer IN direction */ - -/* bit 6..5 of bmRequestType: request type */ -#define USB_REQTYPE_STRD 0x00U /*!< USB standard request */ -#define USB_REQTYPE_CLASS 0x20U /*!< USB class request */ -#define USB_REQTYPE_VENDOR 0x40U /*!< USB vendor request */ -#define USB_REQTYPE_MASK 0x60U /*!< USB request mask */ - -#define USBD_BUS_POWERED 0x00U /*!< USB bus power supply */ -#define USBD_SELF_POWERED 0x01U /*!< USB self power supply */ - -#define USB_STATUS_REMOTE_WAKEUP 2U /*!< USB is in remote wakeup status */ -#define USB_STATUS_SELF_POWERED 1U /*!< USB is in self powered status */ - -/* bit 4..0 of bmRequestType: recipient type */ -enum _usb_recp_type { - USB_RECPTYPE_DEV = 0x0U, /*!< USB device request type */ - USB_RECPTYPE_ITF = 0x1U, /*!< USB interface request type */ - USB_RECPTYPE_EP = 0x2U, /*!< USB endpoint request type */ - USB_RECPTYPE_MASK = 0x3U /*!< USB request type mask */ -}; - -/* bRequest value */ -enum _usb_request { - USB_GET_STATUS = 0x0U, /*!< USB get status request */ - USB_CLEAR_FEATURE = 0x1U, /*!< USB clear feature request */ - USB_RESERVED2 = 0x2U, - USB_SET_FEATURE = 0x3U, /*!< USB set feature request */ - USB_RESERVED4 = 0x4U, - USB_SET_ADDRESS = 0x5U, /*!< USB set address request */ - USB_GET_DESCRIPTOR = 0x6U, /*!< USB get descriptor request */ - USB_SET_DESCRIPTOR = 0x7U, /*!< USB set descriptor request */ - USB_GET_CONFIGURATION = 0x8U, /*!< USB get configuration request */ - USB_SET_CONFIGURATION = 0x9U, /*!< USB set configuration request */ - USB_GET_INTERFACE = 0xAU, /*!< USB get interface request */ - USB_SET_INTERFACE = 0xBU, /*!< USB set interface request */ - USB_SYNCH_FRAME = 0xCU /*!< USB synchronize frame request */ -}; - -/* descriptor types of USB specifications */ -enum _usb_desctype { - USB_DESCTYPE_DEV = 0x1U, /*!< USB device descriptor type */ - USB_DESCTYPE_CONFIG = 0x2U, /*!< USB configuration descriptor type */ - USB_DESCTYPE_STR = 0x3U, /*!< USB string descriptor type */ - USB_DESCTYPE_ITF = 0x4U, /*!< USB interface descriptor type */ - USB_DESCTYPE_EP = 0x5U, /*!< USB endpoint descriptor type */ - USB_DESCTYPE_DEV_QUALIFIER = 0x6U, /*!< USB device qualifier descriptor type */ - USB_DESCTYPE_OTHER_SPD_CONFIG = 0x7U, /*!< USB other speed configuration descriptor type */ - USB_DESCTYPE_ITF_POWER = 0x8U, /*!< USB interface power descriptor type */ - USB_DESCTYPE_IAD = 0xBU, /*!< USB interface association descriptor type */ - USB_DESCTYPE_BOS = 0xFU /*!< USB BOS descriptor type */ -}; - -/* USB Endpoint Descriptor bmAttributes bit definitions */ -/* bits 1..0 : transfer type */ -enum _usbx_type { - USB_EP_ATTR_CTL = 0x0U, /*!< USB control transfer type */ - USB_EP_ATTR_ISO = 0x1U, /*!< USB Isochronous transfer type */ - USB_EP_ATTR_BULK = 0x2U, /*!< USB Bulk transfer type */ - USB_EP_ATTR_INT = 0x3U /*!< USB Interrupt transfer type */ -}; - -/* bits 3..2 : Sync type (only if ISOCHRONOUS) */ -#define USB_EP_ATTR_NOSYNC 0x00U /*!< No Synchronization */ -#define USB_EP_ATTR_ASYNC 0x04U /*!< Asynchronous */ -#define USB_EP_ATTR_ADAPTIVE 0x08U /*!< Adaptive */ -#define USB_EP_ATTR_SYNC 0x0CU /*!< Synchronous */ -#define USB_EP_ATTR_SYNCTYPE 0x0CU /*!< Synchronous type */ - -/* bits 5..4 : usage type (only if ISOCHRONOUS) */ -#define USB_EP_ATTR_DATA 0x00U /*!< Data endpoint */ -#define USB_EP_ATTR_FEEDBACK 0x10U /*!< Feedback endpoint */ -#define USB_EP_ATTR_IMPLICIT_FEEDBACK_DATA 0x20U /*!< Implicit feedback Data endpoint */ -#define USB_EP_ATTR_USAGETYPE 0x30U /*!< Usage type */ - -/* endpoint max packet size bits12..11 */ -#define USB_EP_MPS_ADD_0 (0x00 << 11) /*!< None(1 transaction per microframe */ -#define USB_EP_MPS_ADD_1 (0x01 << 11) /*!< 1 additional(2 transaction per microframe */ -#define USB_EP_MPS_ADD_2 (0x02 << 11) /*!< 2 additional(3 transaction per microframe */ - -#define FEATURE_SELECTOR_EP 0x00U /*!< USB endpoint feature selector */ -#define FEATURE_SELECTOR_DEV 0x01U /*!< USB device feature selector */ -#define FEATURE_SELECTOR_REMOTEWAKEUP 0x01U /*!< USB feature selector remote wakeup */ - -#define BYTE_SWAP(addr) (((uint16_t)(*((uint8_t *)(addr)))) + \ - (uint16_t)(((uint16_t)(*(((uint8_t *)(addr)) + 1U))) << 8U)) - -#define BYTE_LOW(x) ((uint8_t)((x) & 0x00FFU)) -#define BYTE_HIGH(x) ((uint8_t)(((x) & 0xFF00U) >> 8U)) - -#define USB_MIN(a, b) (((a) < (b)) ? (a) : (b)) - -#define USB_DEFAULT_CONFIG 0U - -/* USB classes */ -#define USB_CLASS_HID 0x03U /*!< USB HID class */ -#define USB_CLASS_MSC 0x08U /*!< USB MSC class */ - -/* use the following values when USB host need to get descriptor */ -#define USBH_DESC(x) (((x)<< 8U) & 0xFF00U) - -/* as per USB specs 9.2.6.4 :standard request with data request timeout: 5sec - standard request with no data stage timeout : 50ms */ -#define DATA_STAGE_TIMEOUT 5000U /*!< USB data stage timeout*/ -#define NODATA_STAGE_TIMEOUT 50U /*!< USB no data stage timeout*/ - -#pragma pack(1) - -/* USB standard device request structure */ -typedef struct _usb_req { - uint8_t bmRequestType; /*!< type of request */ - uint8_t bRequest; /*!< request of setup packet */ - uint16_t wValue; /*!< value of setup packet */ - uint16_t wIndex; /*!< index of setup packet */ - uint16_t wLength; /*!< length of setup packet */ -} usb_req; - -/* USB setup packet define */ -typedef union _usb_setup { - uint8_t data[8]; - - usb_req req; -} usb_setup; - -/* USB descriptor defines */ - -typedef struct _usb_desc_header { - uint8_t bLength; /*!< size of the descriptor */ - uint8_t bDescriptorType; /*!< type of the descriptor */ -} usb_desc_header; - -typedef struct _usb_desc_dev { - usb_desc_header header; /*!< descriptor header, including type and size */ - - uint16_t bcdUSB; /*!< BCD of the supported USB specification */ - uint8_t bDeviceClass; /*!< USB device class */ - uint8_t bDeviceSubClass; /*!< USB device subclass */ - uint8_t bDeviceProtocol; /*!< USB device protocol */ - uint8_t bMaxPacketSize0; /*!< size of the control (address 0) endpoint's bank in bytes */ - uint16_t idVendor; /*!< vendor ID for the USB product */ - uint16_t idProduct; /*!< unique product ID for the USB product */ - uint16_t bcdDevice; /*!< product release (version) number */ - uint8_t iManufacturer; /*!< string index for the manufacturer's name */ - uint8_t iProduct; /*!< string index for the product name/details */ - uint8_t iSerialNumber; /*!< string index for the product's globally unique hexadecimal serial number */ - uint8_t bNumberConfigurations; /*!< total number of configurations supported by the device */ -} usb_desc_dev; - -typedef struct _usb_desc_config { - usb_desc_header header; /*!< descriptor header, including type and size */ - - uint16_t wTotalLength; /*!< size of the configuration descriptor header,and all sub descriptors inside the configuration */ - uint8_t bNumInterfaces; /*!< total number of interfaces in the configuration */ - uint8_t bConfigurationValue; /*!< configuration index of the current configuration */ - uint8_t iConfiguration; /*!< index of a string descriptor describing the configuration */ - uint8_t bmAttributes; /*!< configuration attributes */ - uint8_t bMaxPower; /*!< maximum power consumption of the device while in the current configuration */ -} usb_desc_config; - -typedef struct _usb_desc_itf { - usb_desc_header header; /*!< descriptor header, including type and size */ - - uint8_t bInterfaceNumber; /*!< index of the interface in the current configuration */ - uint8_t bAlternateSetting; /*!< alternate setting for the interface number */ - uint8_t bNumEndpoints; /*!< total number of endpoints in the interface */ - uint8_t bInterfaceClass; /*!< interface class ID */ - uint8_t bInterfaceSubClass; /*!< interface subclass ID */ - uint8_t bInterfaceProtocol; /*!< interface protocol ID */ - uint8_t iInterface; /*!< index of the string descriptor describing the interface */ -} usb_desc_itf; - -typedef struct _usb_desc_ep { - usb_desc_header header; /*!< descriptor header, including type and size. */ - - uint8_t bEndpointAddress; /*!< logical address of the endpoint */ - uint8_t bmAttributes; /*!< endpoint attributes */ - uint16_t wMaxPacketSize; /*!< size of the endpoint bank, in bytes */ - uint8_t bInterval; /*!< polling interval in milliseconds for the endpoint if it is an INTERRUPT or ISOCHRONOUS type */ -} usb_desc_ep; - -typedef struct _usb_desc_LANGID { - usb_desc_header header; /*!< descriptor header, including type and size. */ - uint16_t wLANGID; /*!< LANGID code */ -} usb_desc_LANGID; - -typedef struct _usb_desc_str { - usb_desc_header header; /*!< descriptor header, including type and size. */ - uint16_t unicode_string[64]; /*!< unicode string data */ -} usb_desc_str; - -#pragma pack() - -/* compute string descriptor length */ -#define USB_STRING_LEN(unicode_chars) (sizeof(usb_desc_header) + ((unicode_chars) << 1U)) - -#endif /* __USB_CH9_STD_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbd_core.c b/Marlin/lib/GD32F4xx_usb_library/src/usbd_core.c deleted file mode 100644 index 453305df56..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/usbd_core.c +++ /dev/null @@ -1,320 +0,0 @@ -/*! - \file usbd_core.c - \brief USB device mode core functions - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gdusbd_core.h" -#include "gdusbd_enum.h" -#include "drv_usb_hw.h" - -/* endpoint type */ -const uint32_t ep_type[] = { - [USB_EP_ATTR_CTL] = (uint32_t)USB_EPTYPE_CTRL, - [USB_EP_ATTR_BULK] = (uint32_t)USB_EPTYPE_BULK, - [USB_EP_ATTR_INT] = (uint32_t)USB_EPTYPE_INTR, - [USB_EP_ATTR_ISO] = (uint32_t)USB_EPTYPE_ISOC -}; - -/*! - \brief initializes the USB device-mode stack and load the class driver - \param[in] udev: pointer to USB core instance - \param[in] core: USB core type - \param[in] desc: pointer to USB descriptor - \param[in] class_core: class driver - \param[out] none - \retval none -*/ -void usbd_init (usb_core_driver *udev, usb_core_enum core, usb_desc *desc, usb_class_core *class_core) -{ - udev->dev.desc = desc; - - /* class callbacks */ - udev->dev.class_core = class_core; - - /* create serial string */ - serial_string_get(udev->dev.desc->strings[STR_IDX_SERIAL]); - - /* configure USB capabilities */ - (void)usb_basic_init (&udev->bp, &udev->regs, core); - - usb_globalint_disable(&udev->regs); - - /* initializes the USB core*/ - (void)usb_core_init (udev->bp, &udev->regs); - - /* set device disconnect */ - usbd_disconnect (udev); - -#ifndef USE_OTG_MODE - usb_curmode_set(&udev->regs, DEVICE_MODE); -#endif - - /* initializes device mode */ - (void)usb_devcore_init (udev); - - usb_globalint_enable(&udev->regs); - - /* set device connect */ - usbd_connect (udev); - - udev->dev.cur_status = (uint8_t)USBD_DEFAULT; -} - -/*! - \brief endpoint initialization - \param[in] udev: pointer to USB core instance - \param[in] ep_desc: pointer to endpoint descriptor - \param[out] none - \retval none -*/ -uint32_t usbd_ep_setup (usb_core_driver *udev, const usb_desc_ep *ep_desc) -{ - usb_transc *transc; - - uint8_t ep_addr = ep_desc->bEndpointAddress; - uint16_t max_len = ep_desc->wMaxPacketSize; - - /* set endpoint direction */ - if (EP_DIR(ep_addr)) { - transc = &udev->dev.transc_in[EP_ID(ep_addr)]; - - transc->ep_addr.dir = 1U; - } else { - transc = &udev->dev.transc_out[ep_addr]; - - transc->ep_addr.dir = 0U; - } - - transc->ep_addr.num = EP_ID(ep_addr); - transc->max_len = max_len; - transc->ep_type = (uint8_t)ep_type[ep_desc->bmAttributes & (uint8_t)USB_EPTYPE_MASK]; - - /* active USB endpoint function */ - (void)usb_transc_active (udev, transc); - - return 0U; -} - -/*! - \brief configure the endpoint when it is disabled - \param[in] udev: pointer to USB core instance - \param[in] ep_addr: endpoint address - in this parameter: - bit0..bit6: endpoint number (0..7) - bit7: endpoint direction which can be IN(1) or OUT(0) - \param[out] none - \retval none -*/ -uint32_t usbd_ep_clear (usb_core_driver *udev, uint8_t ep_addr) -{ - usb_transc *transc; - - if (EP_DIR(ep_addr)) { - transc = &udev->dev.transc_in[EP_ID(ep_addr)]; - } else { - transc = &udev->dev.transc_out[ep_addr]; - } - - /* deactivate USB endpoint function */ - (void)usb_transc_deactivate (udev, transc); - - return 0U; -} - -/*! - \brief endpoint prepare to receive data - \param[in] udev: pointer to USB core instance - \param[in] ep_addr: endpoint address - in this parameter: - bit0..bit6: endpoint number (0..7) - bit7: endpoint direction which can be IN(1) or OUT(0) - \param[in] pbuf: user buffer address pointer - \param[in] len: buffer length - \param[out] none - \retval none -*/ -uint32_t usbd_ep_recev (usb_core_driver *udev, uint8_t ep_addr, uint8_t *pbuf, uint32_t len) -{ - usb_transc *transc = &udev->dev.transc_out[EP_ID(ep_addr)]; - - /* setup the transfer */ - transc->xfer_buf = pbuf; - transc->xfer_len = len; - transc->xfer_count = 0U; - - if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { - transc->dma_addr = (uint32_t)pbuf; - } - - /* start the transfer */ - (void)usb_transc_outxfer (udev, transc); - - return 0U; -} - -/*! - \brief endpoint prepare to transmit data - \param[in] udev: pointer to USB core instance - \param[in] ep_addr: endpoint address - in this parameter: - bit0..bit6: endpoint number (0..7) - bit7: endpoint direction which can be IN(1) or OUT(0) - \param[in] pbuf: transmit buffer address pointer - \param[in] len: buffer length - \param[out] none - \retval none -*/ -uint32_t usbd_ep_send (usb_core_driver *udev, uint8_t ep_addr, uint8_t *pbuf, uint32_t len) -{ - usb_transc *transc = &udev->dev.transc_in[EP_ID(ep_addr)]; - - /* setup the transfer */ - transc->xfer_buf = pbuf; - transc->xfer_len = len; - transc->xfer_count = 0U; - - if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { - transc->dma_addr = (uint32_t)pbuf; - } - - /* start the transfer */ - (void)usb_transc_inxfer (udev, transc); - - return 0U; -} - -/*! - \brief set an endpoint to STALL status - \param[in] udev: pointer to USB core instance - \param[in] ep_addr: endpoint address - in this parameter: - bit0..bit6: endpoint number (0..7) - bit7: endpoint direction which can be IN(1) or OUT(0) - \param[out] none - \retval none -*/ -uint32_t usbd_ep_stall (usb_core_driver *udev, uint8_t ep_addr) -{ - usb_transc *transc = NULL; - - if (EP_DIR(ep_addr)) { - transc = &udev->dev.transc_in[EP_ID(ep_addr)]; - } else { - transc = &udev->dev.transc_out[ep_addr]; - } - - transc->ep_stall = 1U; - - (void)usb_transc_stall (udev, transc); - - return (0U); -} - -/*! - \brief clear endpoint STALLed status - \param[in] udev: pointer to USB core instance - \param[in] ep_addr: endpoint address - in this parameter: - bit0..bit6: endpoint number (0..7) - bit7: endpoint direction which can be IN(1) or OUT(0) - \param[out] none - \retval none -*/ -uint32_t usbd_ep_stall_clear (usb_core_driver *udev, uint8_t ep_addr) -{ - usb_transc *transc = NULL; - - if (EP_DIR(ep_addr)) { - transc = &udev->dev.transc_in[EP_ID(ep_addr)]; - } else { - transc = &udev->dev.transc_out[ep_addr]; - } - - transc->ep_stall = 0U; - - (void)usb_transc_clrstall (udev, transc); - - return (0U); -} - -/*! - \brief flush the endpoint FIFOs - \param[in] udev: pointer to USB core instance - \param[in] ep_addr: endpoint address - in this parameter: - bit0..bit6: endpoint number (0..7) - bit7: endpoint direction which can be IN(1) or OUT(0) - \param[out] none - \retval none -*/ -uint32_t usbd_fifo_flush (usb_core_driver *udev, uint8_t ep_addr) -{ - if (EP_DIR(ep_addr)) { - (void)usb_txfifo_flush (&udev->regs, EP_ID(ep_addr)); - } else { - (void)usb_rxfifo_flush (&udev->regs); - } - - return (0U); -} - -/*! - \brief device connect - \param[in] udev: pointer to USB device instance - \param[out] none - \retval none -*/ -void usbd_connect (usb_core_driver *udev) -{ -#ifndef USE_OTG_MODE - /* connect device */ - usb_dev_connect (udev); - - usb_mdelay(3U); -#endif /* USE_OTG_MODE */ -} - -/*! - \brief device disconnect - \param[in] udev: pointer to USB device instance - \param[out] none - \retval none -*/ -void usbd_disconnect (usb_core_driver *udev) -{ -#ifndef USE_OTG_MODE - /* disconnect device for 3ms */ - usb_dev_disconnect (udev); - - usb_mdelay(3U); -#endif /* USE_OTG_MODE */ -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbd_enum.c b/Marlin/lib/GD32F4xx_usb_library/src/usbd_enum.c deleted file mode 100644 index dbcf826dc3..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/usbd_enum.c +++ /dev/null @@ -1,764 +0,0 @@ -/*! - \file usbd_enum.c - \brief USB enumeration function - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gdusbd_enum.h" -#include "usb_ch9_std.h" - -#ifdef WINUSB_EXEMPT_DRIVER - -extern usbd_status usbd_OEM_req(usb_dev *udev, usb_req *req); - -#endif /* WINUSB_EXEMPT_DRIVER */ - -/* local function prototypes ('static') */ -static usb_reqsta _usb_std_reserved (usb_core_driver *udev, usb_req *req); -static uint8_t* _usb_dev_desc_get (usb_core_driver *udev, uint8_t index, uint16_t *len); -static uint8_t* _usb_config_desc_get (usb_core_driver *udev, uint8_t index, uint16_t *len); -static uint8_t* _usb_bos_desc_get (usb_core_driver *udev, uint8_t index, uint16_t *len); -static uint8_t* _usb_str_desc_get (usb_core_driver *udev, uint8_t index, uint16_t *len); -static usb_reqsta _usb_std_getstatus (usb_core_driver *udev, usb_req *req); -static usb_reqsta _usb_std_clearfeature (usb_core_driver *udev, usb_req *req); -static usb_reqsta _usb_std_setfeature (usb_core_driver *udev, usb_req *req); -static usb_reqsta _usb_std_setaddress (usb_core_driver *udev, usb_req *req); -static usb_reqsta _usb_std_getdescriptor (usb_core_driver *udev, usb_req *req); -static usb_reqsta _usb_std_setdescriptor (usb_core_driver *udev, usb_req *req); -static usb_reqsta _usb_std_getconfiguration (usb_core_driver *udev, usb_req *req); -static usb_reqsta _usb_std_setconfiguration (usb_core_driver *udev, usb_req *req); -static usb_reqsta _usb_std_getinterface (usb_core_driver *udev, usb_req *req); -static usb_reqsta _usb_std_setinterface (usb_core_driver *udev, usb_req *req); -static usb_reqsta _usb_std_synchframe (usb_core_driver *udev, usb_req *req); - -static usb_reqsta (*_std_dev_req[])(usb_core_driver *udev, usb_req *req) = -{ - [USB_GET_STATUS] = _usb_std_getstatus, - [USB_CLEAR_FEATURE] = _usb_std_clearfeature, - [USB_RESERVED2] = _usb_std_reserved, - [USB_SET_FEATURE] = _usb_std_setfeature, - [USB_RESERVED4] = _usb_std_reserved, - [USB_SET_ADDRESS] = _usb_std_setaddress, - [USB_GET_DESCRIPTOR] = _usb_std_getdescriptor, - [USB_SET_DESCRIPTOR] = _usb_std_setdescriptor, - [USB_GET_CONFIGURATION] = _usb_std_getconfiguration, - [USB_SET_CONFIGURATION] = _usb_std_setconfiguration, - [USB_GET_INTERFACE] = _usb_std_getinterface, - [USB_SET_INTERFACE] = _usb_std_setinterface, - [USB_SYNCH_FRAME] = _usb_std_synchframe, -}; - -/* get standard descriptor handler */ -static uint8_t* (*std_desc_get[])(usb_core_driver *udev, uint8_t index, uint16_t *len) = { - [(uint8_t)USB_DESCTYPE_DEV - 1U] = _usb_dev_desc_get, - [(uint8_t)USB_DESCTYPE_CONFIG - 1U] = _usb_config_desc_get, - [(uint8_t)USB_DESCTYPE_STR - 1U] = _usb_str_desc_get -}; - -/*! - \brief handle USB standard device request - \param[in] udev: pointer to USB device instance - \param[in] req: pointer to USB device request - \param[out] none - \retval USB device request status -*/ -usb_reqsta usbd_standard_request (usb_core_driver *udev, usb_req *req) -{ - return (*_std_dev_req[req->bRequest])(udev, req); -} - -/*! - \brief handle USB device class request - \param[in] udev: pointer to USB device instance - \param[in] req: pointer to USB device class request - \param[out] none - \retval USB device request status -*/ -usb_reqsta usbd_class_request (usb_core_driver *udev, usb_req *req) -{ - if ((uint8_t)USBD_CONFIGURED == udev->dev.cur_status) { - if (BYTE_LOW(req->wIndex) <= USBD_ITF_MAX_NUM) { - /* call device class handle function */ - return (usb_reqsta)udev->dev.class_core->req_proc(udev, req); - } - } - - return REQ_NOTSUPP; -} - -/*! - \brief handle USB vendor request - \param[in] udev: pointer to USB device instance - \param[in] req: pointer to USB vendor request - \param[out] none - \retval USB device request status -*/ -usb_reqsta usbd_vendor_request (usb_core_driver *udev, usb_req *req) -{ - (void)udev; - (void)req; - - /* added by user... */ -#ifdef WINUSB_EXEMPT_DRIVER - usbd_OEM_req(udev, req); -#endif - - return REQ_SUPP; -} - -/*! - \brief handle USB enumeration error - \param[in] udev: pointer to USB device instance - \param[in] req: pointer to USB device request - \param[out] none - \retval none -*/ -void usbd_enum_error (usb_core_driver *udev, usb_req *req) -{ - (void)req; - - (void)usbd_ep_stall (udev, 0x80U); - (void)usbd_ep_stall (udev, 0x00U); - - usb_ctlep_startout(udev); -} - -/*! - \brief convert hex 32bits value into unicode char - \param[in] value: hex 32bits value - \param[in] pbuf: buffer pointer to store unicode char - \param[in] len: value length - \param[out] none - \retval none -*/ -void int_to_unicode (uint32_t value, uint8_t *pbuf, uint8_t len) -{ - uint8_t index; - - for (index = 0U; index < len; index++) { - if ((value >> 28U) < 0x0AU) { - pbuf[2U * index] = (uint8_t)((value >> 28U) + '0'); - } else { - pbuf[2U * index] = (uint8_t)((value >> 28U) + 'A' - 10U); - } - - value = value << 4U; - - pbuf[2U * index + 1U] = 0U; - } -} - -/*! - \brief convert hex 32bits value into unicode char - \param[in] unicode_str: pointer to unicode string - \param[out] none - \retval none -*/ -void serial_string_get (uint16_t *unicode_str) -{ - if ((unicode_str[0] & 0x00FFU) != 6U) { - uint32_t DeviceSerial0, DeviceSerial1, DeviceSerial2; - - DeviceSerial0 = *(uint32_t*)DEVICE_ID1; - DeviceSerial1 = *(uint32_t*)DEVICE_ID2; - DeviceSerial2 = *(uint32_t*)DEVICE_ID3; - - DeviceSerial0 += DeviceSerial2; - - if (0U != DeviceSerial0) { - int_to_unicode(DeviceSerial0, (uint8_t*)&(unicode_str[1]), 8U); - int_to_unicode(DeviceSerial1, (uint8_t*)&(unicode_str[9]), 4U); - } - } else { - uint32_t device_serial = *(uint32_t*)DEVICE_ID; - - if(0U != device_serial) { - unicode_str[1] = (uint16_t)(device_serial & 0x0000FFFFU); - unicode_str[2] = (uint16_t)((device_serial & 0xFFFF0000U) >> 16U); - - } - } -} - -/*! - \brief no operation, just for reserved - \param[in] udev: pointer to USB device instance - \param[in] req: pointer to USB vendor request - \param[out] none - \retval USB device request status -*/ -static usb_reqsta _usb_std_reserved (usb_core_driver *udev, usb_req *req) -{ - (void)udev; - (void)req; - - /* no operation... */ - - return REQ_NOTSUPP; -} - -/*! - \brief get the device descriptor - \param[in] udev: pointer to USB device instance - \param[in] index: no use - \param[out] len: data length pointer - \retval descriptor buffer pointer -*/ -static uint8_t* _usb_dev_desc_get (usb_core_driver *udev, uint8_t index, uint16_t *len) -{ - (void)index; - - *len = udev->dev.desc->dev_desc[0]; - - return udev->dev.desc->dev_desc; -} - -/*! - \brief get the configuration descriptor - \brief[in] udev: pointer to USB device instance - \brief[in] index: no use - \param[out] len: data length pointer - \retval descriptor buffer pointer -*/ -static uint8_t* _usb_config_desc_get (usb_core_driver *udev, uint8_t index, uint16_t *len) -{ - (void)index; - - *len = udev->dev.desc->config_desc[2]; - - return udev->dev.desc->config_desc; -} - -/*! - \brief get the BOS descriptor - \brief[in] udev: pointer to USB device instance - \brief[in] index: no use - \param[out] len: data length pointer - \retval descriptor buffer pointer -*/ -static uint8_t* _usb_bos_desc_get (usb_core_driver *udev, uint8_t index, uint16_t *len) -{ - (void)index; - - *len = udev->dev.desc->bos_desc[2]; - - return udev->dev.desc->bos_desc; -} - -/*! - \brief get string descriptor - \param[in] udev: pointer to USB device instance - \param[in] index: string descriptor index - \param[out] len: pointer to string length - \retval descriptor buffer pointer -*/ -static uint8_t* _usb_str_desc_get (usb_core_driver *udev, uint8_t index, uint16_t *len) -{ - uint8_t *desc = udev->dev.desc->strings[index]; - - *len = desc[0]; - - return desc; -} - -/*! - \brief handle Get_Status request - \param[in] udev: pointer to USB device instance - \param[in] req: pointer to USB device request - \param[out] none - \retval USB device request status -*/ -static usb_reqsta _usb_std_getstatus (usb_core_driver *udev, usb_req *req) -{ - uint8_t recp = BYTE_LOW(req->wIndex); - usb_reqsta req_status = REQ_NOTSUPP; - usb_transc *transc = &udev->dev.transc_in[0]; - - static uint8_t status[2] = {0}; - - switch(req->bmRequestType & (uint8_t)USB_RECPTYPE_MASK) { - case USB_RECPTYPE_DEV: - if (((uint8_t)USBD_ADDRESSED == udev->dev.cur_status) || \ - ((uint8_t)USBD_CONFIGURED == udev->dev.cur_status)) { - - if (udev->dev.pm.power_mode) { - status[0] = USB_STATUS_SELF_POWERED; - } else { - status[0] = 0U; - } - - if (udev->dev.pm.dev_remote_wakeup) { - status[0] |= USB_STATUS_REMOTE_WAKEUP; - } else { - status[0] = 0U; - } - - req_status = REQ_SUPP; - } - break; - - case USB_RECPTYPE_ITF: - if (((uint8_t)USBD_CONFIGURED == udev->dev.cur_status) && (recp <= USBD_ITF_MAX_NUM)) { - req_status = REQ_SUPP; - } - break; - - case USB_RECPTYPE_EP: - if ((uint8_t)USBD_CONFIGURED == udev->dev.cur_status) { - if (0x80U == (recp & 0x80U)) { - status[0] = udev->dev.transc_in[EP_ID(recp)].ep_stall; - } else { - status[0] = udev->dev.transc_out[recp].ep_stall; - } - - req_status = REQ_SUPP; - } - break; - - default: - break; - } - - if (REQ_SUPP == req_status) { - transc->xfer_buf = status; - transc->remain_len = 2U; - } - - return req_status; -} - -/*! - \brief handle USB Clear_Feature request - \param[in] udev: pointer to USB device instance - \param[in] req: USB device request - \param[out] none - \retval USB device request status -*/ -static usb_reqsta _usb_std_clearfeature (usb_core_driver *udev, usb_req *req) -{ - uint8_t ep = 0U; - - switch(req->bmRequestType & (uint8_t)USB_RECPTYPE_MASK) { - case USB_RECPTYPE_DEV: - if (((uint8_t)USBD_ADDRESSED == udev->dev.cur_status) || \ - ((uint8_t)USBD_CONFIGURED == udev->dev.cur_status)) { - - /* clear device remote wakeup feature */ - if ((uint16_t)USB_FEATURE_REMOTE_WAKEUP == req->wValue) { - udev->dev.pm.dev_remote_wakeup = 0U; - - return REQ_SUPP; - } - } - break; - - case USB_RECPTYPE_ITF: - break; - - case USB_RECPTYPE_EP: - /* get endpoint address */ - ep = BYTE_LOW(req->wIndex); - - if ((uint8_t)USBD_CONFIGURED == udev->dev.cur_status) { - /* clear endpoint halt feature */ - if (((uint16_t)USB_FEATURE_EP_HALT == req->wValue) && (!CTL_EP(ep))) { - (void)usbd_ep_stall_clear (udev, ep); - - (void)udev->dev.class_core->req_proc (udev, req); - } - - return REQ_SUPP; - } - break; - - default: - break; - } - - return REQ_NOTSUPP; -} - -/*! - \brief handle USB Set_Feature request - \param[in] udev: pointer to USB device instance - \param[in] req: pointer to USB device request - \param[out] none - \retval USB device request status -*/ -static usb_reqsta _usb_std_setfeature (usb_core_driver *udev, usb_req *req) -{ - uint8_t ep = 0U; - - switch (req->bmRequestType & (uint8_t)USB_RECPTYPE_MASK) { - case USB_RECPTYPE_DEV: - if (((uint8_t)USBD_ADDRESSED == udev->dev.cur_status) || \ - ((uint8_t)USBD_CONFIGURED == udev->dev.cur_status)) { - /* set device remote wakeup feature */ - if ((uint16_t)USB_FEATURE_REMOTE_WAKEUP == req->wValue) { - udev->dev.pm.dev_remote_wakeup = 1U; - } - - return REQ_SUPP; - } - break; - - case USB_RECPTYPE_ITF: - break; - - case USB_RECPTYPE_EP: - /* get endpoint address */ - ep = BYTE_LOW(req->wIndex); - - if ((uint8_t)USBD_CONFIGURED == udev->dev.cur_status) { - /* set endpoint halt feature */ - if (((uint16_t)USB_FEATURE_EP_HALT == req->wValue) && (!CTL_EP(ep))) { - (void)usbd_ep_stall (udev, ep); - } - - return REQ_SUPP; - } - break; - - default: - break; - } - - return REQ_NOTSUPP; -} - -/*! - \brief handle USB Set_Address request - \param[in] udev: pointer to USB device instance - \param[in] req: pointer to USB device request - \param[out] none - \retval USB device request status -*/ -static usb_reqsta _usb_std_setaddress (usb_core_driver *udev, usb_req *req) -{ - if ((0U == req->wIndex) && (0U == req->wLength)) { - udev->dev.dev_addr = (uint8_t)(req->wValue) & 0x7FU; - - if (udev->dev.cur_status != (uint8_t)USBD_CONFIGURED) { - usbd_addr_set (udev, udev->dev.dev_addr); - - if (udev->dev.dev_addr) { - udev->dev.cur_status = (uint8_t)USBD_ADDRESSED; - } else { - udev->dev.cur_status = (uint8_t)USBD_DEFAULT; - } - - return REQ_SUPP; - } - } - - return REQ_NOTSUPP; -} - -/*! - \brief handle USB Get_Descriptor request - \param[in] udev: pointer to USB device instance - \param[in] req: pointer to USB device request - \param[out] none - \retval USB device request status -*/ -static usb_reqsta _usb_std_getdescriptor (usb_core_driver *udev, usb_req *req) -{ - uint8_t desc_type = 0U; - uint8_t desc_index = 0U; - - usb_reqsta status = REQ_NOTSUPP; - - usb_transc *transc = &udev->dev.transc_in[0]; - - /* get device standard descriptor */ - switch (req->bmRequestType & USB_RECPTYPE_MASK) { - case USB_RECPTYPE_DEV: - desc_type = BYTE_HIGH(req->wValue); - desc_index = BYTE_LOW(req->wValue); - - switch (desc_type) { - case USB_DESCTYPE_DEV: - transc->xfer_buf = std_desc_get[desc_type - 1U](udev, desc_index, (uint16_t *)&(transc->remain_len)); - - if (64U == req->wLength) { - transc->remain_len = 8U; - } - break; - - case USB_DESCTYPE_CONFIG: - transc->xfer_buf = std_desc_get[desc_type - 1U](udev, desc_index, (uint16_t *)&(transc->remain_len)); - break; - - case USB_DESCTYPE_STR: - if (desc_index < (uint8_t)STR_IDX_MAX) { - transc->xfer_buf = std_desc_get[desc_type - 1U](udev, desc_index, (uint16_t *)&(transc->remain_len)); - } - break; - - case USB_DESCTYPE_ITF: - case USB_DESCTYPE_EP: - case USB_DESCTYPE_DEV_QUALIFIER: - case USB_DESCTYPE_OTHER_SPD_CONFIG: - case USB_DESCTYPE_ITF_POWER: - break; - - case USB_DESCTYPE_BOS: - transc->xfer_buf = _usb_bos_desc_get(udev, desc_index, (uint16_t *)&(transc->remain_len)); - break; - - default: - break; - } - break; - - case USB_RECPTYPE_ITF: - /* get device class special descriptor */ - status = (usb_reqsta)(udev->dev.class_core->req_proc(udev, req)); - break; - - case USB_RECPTYPE_EP: - break; - - default: - break; - } - - if ((0U != transc->remain_len) && (0U != req->wLength)) { - if (transc->remain_len < req->wLength) { - if ((transc->remain_len >= transc->max_len) && (0U == (transc->remain_len % transc->max_len))) { - udev->dev.control.ctl_zlp = 1U; - } - } else { - transc->remain_len = req->wLength; - } - - status = REQ_SUPP; - } - - return status; -} - -/*! - \brief handle USB Set_Descriptor request - \param[in] udev: pointer to USB device instance - \param[in] req: pointer to USB device request - \param[out] none - \retval USB device request status -*/ -static usb_reqsta _usb_std_setdescriptor (usb_core_driver *udev, usb_req *req) -{ - (void)udev; - (void)req; - - /* no handle... */ - return REQ_SUPP; -} - -/*! - \brief handle USB Get_Configuration request - \param[in] udev: pointer to USB device instance - \param[in] req: pointer to USB device request - \param[out] none - \retval USB device request status -*/ -static usb_reqsta _usb_std_getconfiguration (usb_core_driver *udev, usb_req *req) -{ - (void)req; - - usb_reqsta req_status = REQ_NOTSUPP; - usb_transc *transc = &udev->dev.transc_in[0]; - - switch (udev->dev.cur_status) { - case USBD_ADDRESSED: - if (USB_DEFAULT_CONFIG == udev->dev.config) { - req_status = REQ_SUPP; - } - break; - - case USBD_CONFIGURED: - if (udev->dev.config != USB_DEFAULT_CONFIG) { - req_status = REQ_SUPP; - } - break; - - default: - break; - } - - if (REQ_SUPP == req_status) { - transc->xfer_buf = &(udev->dev.config); - transc->remain_len = 1U; - } - - return req_status; -} - -/*! - \brief handle USB Set_Configuration request - \param[in] udev: pointer to USB device instance - \param[in] req: pointer to USB device request - \param[out] none - \retval USB device request status -*/ -static usb_reqsta _usb_std_setconfiguration (usb_core_driver *udev, usb_req *req) -{ - static uint8_t config; - usb_reqsta status = REQ_NOTSUPP; - - config = (uint8_t)(req->wValue); - - if (config <= USBD_CFG_MAX_NUM) { - switch (udev->dev.cur_status) { - case USBD_ADDRESSED: - if (config){ - (void)udev->dev.class_core->init(udev, config); - - udev->dev.config = config; - udev->dev.cur_status = (uint8_t)USBD_CONFIGURED; - } - - status = REQ_SUPP; - break; - - case USBD_CONFIGURED: - if (USB_DEFAULT_CONFIG == config) { - (void)udev->dev.class_core->deinit(udev, config); - - udev->dev.config = config; - udev->dev.cur_status = (uint8_t)USBD_ADDRESSED; - } else if (config != udev->dev.config) { - /* clear old configuration */ - (void)udev->dev.class_core->deinit(udev, config); - - /* set new configuration */ - udev->dev.config = config; - - (void)udev->dev.class_core->init(udev, config); - } else { - /* no operation */ - } - - status = REQ_SUPP; - break; - - case USBD_DEFAULT: - break; - - default: - break; - } - } - - return status; -} - -/*! - \brief handle USB Get_Interface request - \param[in] udev: pointer to USB device instance - \param[in] req: pointer to USB device request - \param[out] none - \retval USB device request status -*/ -static usb_reqsta _usb_std_getinterface (usb_core_driver *udev, usb_req *req) -{ - switch (udev->dev.cur_status) { - case USBD_DEFAULT: - break; - - case USBD_ADDRESSED: - break; - - case USBD_CONFIGURED: - if (BYTE_LOW(req->wIndex) <= USBD_ITF_MAX_NUM) { - usb_transc *transc = &udev->dev.transc_in[0]; - - transc->xfer_buf = &(udev->dev.class_core->alter_set); - transc->remain_len = 1U; - - return REQ_SUPP; - } - break; - - default: - break; - } - - return REQ_NOTSUPP; -} - -/*! - \brief handle USB Set_Interface request - \param[in] udev: pointer to USB device instance - \param[in] req: pointer to USB device request - \param[out] none - \retval USB device request status -*/ -static usb_reqsta _usb_std_setinterface (usb_core_driver *udev, usb_req *req) -{ - switch (udev->dev.cur_status) { - case USBD_DEFAULT: - break; - - case USBD_ADDRESSED: - break; - - case USBD_CONFIGURED: - if (BYTE_LOW(req->wIndex) <= USBD_ITF_MAX_NUM) { - if (NULL != udev->dev.class_core->set_intf) { - (void)udev->dev.class_core->set_intf (udev, req); - } - - return REQ_SUPP; - } - break; - - default: - break; - } - - return REQ_NOTSUPP; -} - -/*! - \brief handle USB SynchFrame request - \param[in] udev: pointer to USB device instance - \param[in] req: pointer to USB device request - \param[out] none - \retval USB device request status -*/ -static usb_reqsta _usb_std_synchframe (usb_core_driver *udev, usb_req *req) -{ - (void)udev; - (void)req; - - /* no handle */ - return REQ_SUPP; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbd_transc.c b/Marlin/lib/GD32F4xx_usb_library/src/usbd_transc.c deleted file mode 100644 index 26a0445ef6..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/usbd_transc.c +++ /dev/null @@ -1,264 +0,0 @@ -/*! - \file usbd_transc.c - \brief USB transaction core functions - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gdusbd_enum.h" -#include "gdusbd_transc.h" - -/*! - \brief USB send data in the control transaction - \param[in] udev: pointer to USB device instance - \param[out] none - \retval USB device operation cur_status -*/ -usbd_status usbd_ctl_send (usb_core_driver *udev) -{ - usb_transc *transc = &udev->dev.transc_in[0]; - - (void)usbd_ep_send(udev, 0U, transc->xfer_buf, transc->remain_len); - - if (transc->remain_len > transc->max_len) { - udev->dev.control.ctl_state = (uint8_t)USB_CTL_DATA_IN; - } else { - udev->dev.control.ctl_state = (uint8_t)USB_CTL_LAST_DATA_IN; - } - - return USBD_OK; -} - -/*! - \brief USB receive data in control transaction - \param[in] udev: pointer to USB device instance - \param[out] none - \retval USB device operation cur_status -*/ -usbd_status usbd_ctl_recev (usb_core_driver *udev) -{ - usb_transc *transc = &udev->dev.transc_out[0]; - - (void)usbd_ep_recev (udev, 0U, transc->xfer_buf, transc->remain_len); - - if (transc->remain_len > transc->max_len) { - udev->dev.control.ctl_state = (uint8_t)USB_CTL_DATA_OUT; - } else { - udev->dev.control.ctl_state = (uint8_t)USB_CTL_LAST_DATA_OUT; - } - - return USBD_OK; -} - -/*! - \brief USB send control transaction status - \param[in] udev: pointer to USB device instance - \param[out] none - \retval USB device operation cur_status -*/ -usbd_status usbd_ctl_status_send (usb_core_driver *udev) -{ - udev->dev.control.ctl_state = (uint8_t)USB_CTL_STATUS_IN; - - (void)usbd_ep_send (udev, 0U, NULL, 0U); - - usb_ctlep_startout(udev); - - return USBD_OK; -} - -/*! - \brief USB control receive status - \param[in] udev: pointer to USB device instance - \param[out] none - \retval USB device operation cur_status -*/ -usbd_status usbd_ctl_status_recev (usb_core_driver *udev) -{ - udev->dev.control.ctl_state = (uint8_t)USB_CTL_STATUS_OUT; - - (void)usbd_ep_recev (udev, 0U, NULL, 0U); - - usb_ctlep_startout(udev); - - return USBD_OK; -} - -/*! - \brief USB setup stage processing - \param[in] udev: pointer to USB device instance - \param[out] none - \retval USB device operation cur_status -*/ -uint8_t usbd_setup_transc (usb_core_driver *udev) -{ - usb_reqsta reqstat = REQ_NOTSUPP; - - usb_req req = udev->dev.control.req; - - switch (req.bmRequestType & USB_REQTYPE_MASK) { - /* standard device request */ - case USB_REQTYPE_STRD: - reqstat = usbd_standard_request (udev, &req); - break; - - /* device class request */ - case USB_REQTYPE_CLASS: - reqstat = usbd_class_request (udev, &req); - break; - - /* vendor defined request */ - case USB_REQTYPE_VENDOR: - reqstat = usbd_vendor_request (udev, &req); - break; - - default: - break; - } - - if (REQ_SUPP == reqstat) { - if (0U == req.wLength) { - (void)usbd_ctl_status_send (udev); - } else { - if (req.bmRequestType & 0x80U) { - (void)usbd_ctl_send (udev); - } else { - (void)usbd_ctl_recev (udev); - } - } - } else { - usbd_enum_error (udev, &req); - } - - return (uint8_t)USBD_OK; -} - -/*! - \brief data out stage processing - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint identifier(0..7) - \param[out] none - \retval USB device operation cur_status -*/ -uint8_t usbd_out_transc (usb_core_driver *udev, uint8_t ep_num) -{ - if (0U == ep_num) { - usb_transc *transc = &udev->dev.transc_out[0]; - - switch (udev->dev.control.ctl_state) { - case USB_CTL_DATA_OUT: - /* update transfer length */ - transc->remain_len -= transc->max_len; - - if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { - transc->xfer_buf += transc->max_len; - } - - (void)usbd_ctl_recev (udev); - break; - - case USB_CTL_LAST_DATA_OUT: - if (udev->dev.cur_status == (uint8_t)USBD_CONFIGURED) { - if (udev->dev.class_core->data_out != NULL) { - (void)udev->dev.class_core->data_out (udev, 0U); - } - } - - transc->remain_len = 0U; - - (void)usbd_ctl_status_send (udev); - break; - - default: - break; - } - } else if ((udev->dev.class_core->data_out != NULL) && (udev->dev.cur_status == (uint8_t)USBD_CONFIGURED)) { - (void)udev->dev.class_core->data_out (udev, ep_num); - } else { - /* no operation */ - } - - return (uint8_t)USBD_OK; -} - -/*! - \brief data in stage processing - \param[in] udev: pointer to USB device instance - \param[in] ep_num: endpoint identifier(0..7) - \param[out] none - \retval USB device operation cur_status -*/ -uint8_t usbd_in_transc (usb_core_driver *udev, uint8_t ep_num) -{ - if (0U == ep_num) { - usb_transc *transc = &udev->dev.transc_in[0]; - - switch (udev->dev.control.ctl_state) { - case USB_CTL_DATA_IN: - /* update transfer length */ - transc->remain_len -= transc->max_len; - - if ((uint8_t)USB_USE_DMA == udev->bp.transfer_mode) { - transc->xfer_buf += transc->max_len; - } - - (void)usbd_ctl_send (udev); - break; - - case USB_CTL_LAST_DATA_IN: - /* last packet is MPS multiple, so send ZLP packet */ - if (udev->dev.control.ctl_zlp) { - (void)usbd_ep_send (udev, 0U, NULL, 0U); - - udev->dev.control.ctl_zlp = 0U; - } else { - if (udev->dev.cur_status == (uint8_t)USBD_CONFIGURED) { - if (udev->dev.class_core->data_in != NULL) { - (void)udev->dev.class_core->data_in (udev, 0U); - } - } - - transc->remain_len = 0U; - - (void)usbd_ctl_status_recev (udev); - } - break; - - default: - break; - } - } else { - if ((udev->dev.cur_status == (uint8_t)USBD_CONFIGURED) && (udev->dev.class_core->data_in != NULL)) { - (void)udev->dev.class_core->data_in (udev, ep_num); - } - } - - return (uint8_t)USBD_OK; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_core.c b/Marlin/lib/GD32F4xx_usb_library/src/usbh_core.c deleted file mode 100644 index 720ef5f9b6..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/usbh_core.c +++ /dev/null @@ -1,669 +0,0 @@ -/*! - \file usbh_core.c - \brief USB host core state machine driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "drv_usb_hw.h" -#include "gdusbh_pipe.h" -#include "gdusbh_enum.h" -#include "gdusbh_core.h" -#include "drv_usbh_int.h" -#include - -// #include "../../../src/feature/powerloss.h" - -/* local function prototypes ('static') */ -static uint8_t usbh_sof (usbh_host *uhost); -static uint8_t usbh_connect (usbh_host *uhost); -static uint8_t usbh_disconnect (usbh_host *uhost); -static uint8_t usbh_port_enabled (usbh_host *uhost); -static uint8_t usbh_port_disabled (usbh_host *uhost); -static usbh_status usbh_enum_task (usbh_host *uhost); - -#ifdef USB_LOW_PWR_ENABLE -static void usb_hwp_suspend(usb_core_driver *udev); -#endif - -// extern uint8_t udiskMounted; -// extern uint16_t plr_num; -extern bool plr_flag; - -usbh_int_cb usbh_int_op = -{ - usbh_connect, - usbh_disconnect, - usbh_port_enabled, - usbh_port_disabled, - usbh_sof -}; - -usbh_int_cb *usbh_int_fop = &usbh_int_op; - -/*! - \brief USB host stack initializations - \param[in] uhost: pointer to USB host - \param[in] user_cb: pointer to user callback - \param[out] none - \retval none -*/ -void usbh_init (usbh_host *uhost, usb_core_driver *udev, usb_core_enum usb_core, usbh_user_cb *user_cb) -{ - /* host deinitialization */ - usbh_deinit(uhost); - - uhost->usr_cb = user_cb; - - udev->host.connect_status = 0U; - - for (uint8_t i = 0U; i < USBFS_MAX_TX_FIFOS; i++) { - udev->host.pipe[i].err_count = 0U; - udev->host.pipe[i].pp_status = PIPE_IDLE; - udev->host.backup_xfercount[i] = 0U; - } - - udev->host.pipe[0].ep.mps = 8U; - - usb_basic_init (&udev->bp, &udev->regs, usb_core); - -#ifndef DUAL_ROLE_MODE_ENABLED - usb_globalint_disable(&udev->regs); - - usb_core_init (udev->bp, &udev->regs); - -#ifndef USE_OTG_MODE - usb_curmode_set (&udev->regs, HOST_MODE); -#endif /* USE_OTG_MODE */ - - usb_host_init (udev); - - usb_globalint_enable(&udev->regs); -#endif /* DUAL_ROLE_MODE_ENABLED */ - - /* link driver to the stack */ - udev->host.data = (void *)uhost; - uhost->data = (void *)udev; - - /* upon initialize call usr call back */ - uhost->usr_cb->dev_init(); -} - -/*! - \brief USB host register device class - \param[in] uhost: pointer to USB host instance - \param[in] puclass: pointer to USB device class - \param[out] none - \retval operation status -*/ -usbh_status usbh_class_register (usbh_host *uhost, usbh_class *puclass) -{ - usbh_status status = USBH_OK; - - if (NULL != puclass) { - if (uhost->class_num < USBH_MAX_SUPPORTED_CLASS) { - uhost->uclass[uhost->class_num++] = puclass; - } else { - status = USBH_FAIL; - } - } else { - status = USBH_FAIL; - } - - return status; -} - -/*! - \brief de-initialize USB host - \param[in] uhost: pointer to USB host - \param[out] none - \retval operation status -*/ -usbh_status usbh_deinit(usbh_host *uhost) -{ - usb_core_driver *udev = (usb_core_driver *)uhost->data; - - /* software initialize */ - uhost->cur_state = HOST_DEFAULT; - uhost->backup_state = HOST_DEFAULT; - uhost->enum_state = ENUM_DEFAULT; - - uhost->control.ctl_state = CTL_IDLE; - uhost->control.max_len = USB_FS_EP0_MAX_LEN; - - uhost->dev_prop.addr = USBH_DEV_ADDR_DEFAULT; - uhost->dev_prop.speed = PORT_SPEED_FULL; - uhost->dev_prop.cur_itf = 0xFFU; - - usbh_pipe_free(udev, uhost->control.pipe_in_num); - usbh_pipe_free(udev, uhost->control.pipe_out_num); - - return USBH_OK; -} - -/*! - \brief USB host core main state machine process - \param[in] uhost: pointer to USB host - \param[out] none - \retval none -*/ -void usbh_core_task (usbh_host *uhost) -{ - volatile usbh_status status = USBH_FAIL; - usb_core_driver *udev = (usb_core_driver *)uhost->data; - - /* check for host port events */ - if (((0U == udev->host.connect_status) || (0U == udev->host.port_enabled)) && (HOST_DEFAULT != uhost->cur_state)) { - if (uhost->cur_state != HOST_DEV_DETACHED) { - uhost->cur_state = HOST_DEV_DETACHED; - } - } - - switch (uhost->cur_state) { - case HOST_DEFAULT: - if (udev->host.connect_status) { - uhost->cur_state = HOST_DETECT_DEV_SPEED; - - usb_mdelay (100U); - - usb_port_reset (udev); - - uhost->usr_cb->dev_reset(); - } - break; - - case HOST_DETECT_DEV_SPEED: - if (udev->host.port_enabled) { - uhost->cur_state = HOST_DEV_ATTACHED; - - uhost->dev_prop.speed = usb_curspeed_get (udev); - - uhost->usr_cb->dev_speed_detected(uhost->dev_prop.speed); - - usb_mdelay (50U); - } - break; - - case HOST_DEV_ATTACHED: - uhost->usr_cb->dev_attach(); - uhost->control.pipe_out_num = usbh_pipe_allocate(udev, 0x00U); - uhost->control.pipe_in_num = usbh_pipe_allocate(udev, 0x80U); - - /* open IN control pipe */ - usbh_pipe_create (udev, - &uhost->dev_prop, - uhost->control.pipe_in_num, - USB_EPTYPE_CTRL, - (uint16_t)uhost->control.max_len); - - /* open OUT control pipe */ - usbh_pipe_create (udev, - &uhost->dev_prop, - uhost->control.pipe_out_num, - USB_EPTYPE_CTRL, - (uint16_t)uhost->control.max_len); - - uhost->cur_state = HOST_ENUM; - break; - - case HOST_ENUM: - /* check for enumeration status */ - if (USBH_OK == usbh_enum_task (uhost)) { - /* the function shall return USBH_OK when full enumeration is complete */ - - /* user callback for end of device basic enumeration */ - uhost->usr_cb->dev_enumerated(); - -#ifdef USB_LOW_PWR_ENABLE - uhost->cur_state = HOST_SUSPENDED; -#else - uhost->cur_state = HOST_SET_WAKEUP_FEATURE; -#endif - } - break; - - case HOST_SET_WAKEUP_FEATURE: - if ((uhost->dev_prop.cfg_desc_set.cfg_desc.bmAttributes) & (1U << 5)) { - if (usbh_setdevfeature(uhost, FEATURE_SELECTOR_REMOTEWAKEUP, 0U) == USBH_OK) { - uhost->cur_state = HOST_CHECK_CLASS; - } - } else { - uhost->cur_state = HOST_CHECK_CLASS; - } - break; - - case HOST_CHECK_CLASS: - if (0U == uhost->class_num) { - uhost->cur_state = HOST_ERROR; - } else { - uhost->active_class = NULL; - - uint8_t itf_class = uhost->dev_prop.cfg_desc_set.itf_desc_set[0][0].itf_desc.bInterfaceClass; - - for (uint8_t index = 0U; index < uhost->class_num; index++) { - if ((uhost->uclass[index]->class_code == itf_class) || (0xFFU == itf_class)) { - uhost->active_class = uhost->uclass[index]; - } - } - - if (uhost->active_class != NULL) { - uhost->cur_state = HOST_USER_INPUT; - } else { - uhost->cur_state = HOST_ERROR; - } - } - break; - - case HOST_USER_INPUT: - /* the function should return user response true to move to class state */ - if (USBH_USER_RESP_OK == uhost->usr_cb->dev_user_input()) { - if ((USBH_OK == uhost->active_class->class_init(uhost))) { - uhost->cur_state = HOST_CLASS_ENUM; - } - } - break; - -#ifdef USB_LOW_PWR_ENABLE - case HOST_SUSPENDED: - if (USBH_OK == usbh_setdevfeature(uhost, FEATURE_SELECTOR_DEV, 0U)) { - uhost->suspend_flag = 1; - usb_hwp_suspend(uhost->data); - uhost->usr_cb->dev_user_input(); - pmu_to_deepsleepmode(PMU_LDO_LOWPOWER, WFI_CMD); - uhost->cur_state = HOST_WAKEUP; - } - break; - - case HOST_WAKEUP: - if (USBH_OK == usbh_clrdevfeature(uhost, FEATURE_SELECTOR_DEV, 0U)) { - /* user callback for initialization */ - uhost->usr_cb->dev_init(); - - uhost->cur_state = HOST_CHECK_CLASS; - } - break; -#endif - - case HOST_CLASS_ENUM: - /* process class standard control requests state machine */ - status = uhost->active_class->class_requests(uhost); - - if (USBH_OK == status) { - uhost->cur_state = HOST_CLASS_HANDLER; - - // udisk du - // udiskMounted = 1; - // delay(1000); - // delay(1000); - } else { - usbh_error_handler (uhost, status); - } - break; - - case HOST_CLASS_HANDLER: - /* process class state machine */ - status = uhost->active_class->class_machine(uhost); - - usbh_error_handler (uhost, status); - break; - - case HOST_ERROR: - /* initialize host for new enumeration */ - usbh_deinit (uhost); - uhost->usr_cb->dev_deinit(); - uhost->active_class->class_deinit(uhost); - break; - - case HOST_DEV_DETACHED: - /* manage user disconnect operations*/ - uhost->usr_cb->dev_detach(); - - /* re-initialize host for new enumeration */ - usbh_deinit(uhost); - uhost->usr_cb->dev_deinit(); - uhost->active_class->class_deinit(uhost); - usbh_pipe_delete(udev); - uhost->cur_state = HOST_DEFAULT; - - // udisk du - // udiskMounted = 2; - // plr_num = 0; - plr_flag = false; - break; - - default: - break; - } -} - -/*! - \brief handle the error on USB host side - \param[in] uhost: pointer to USB host - \param[in] err_type: type of error or busy/OK state - \param[out] none - \retval none -*/ -void usbh_error_handler (usbh_host *uhost, usbh_status err_type) -{ - /* error unrecovered or not supported device speed */ - if ((USBH_SPEED_UNKNOWN_ERROR == err_type) || (USBH_UNRECOVERED_ERROR == err_type)) { - uhost->usr_cb->dev_error(); - - uhost->cur_state = HOST_ERROR; - } else if (USBH_APPLY_DEINIT == err_type) { - uhost->cur_state = HOST_ERROR; - - /* user callback for initialization */ - uhost->usr_cb->dev_init(); - } else { - /* no operation */ - } -} - -/*! - \brief USB SOF callback function from the interrupt - \param[in] uhost: pointer to USB host - \param[out] none - \retval operation status -*/ -static uint8_t usbh_sof (usbh_host *uhost) -{ - usb_core_driver *udev = (usb_core_driver *)uhost->data; - - /* this callback could be used to implement a scheduler process */ - uhost->control.timer = (uint16_t)usb_curframe_get(udev); - - if (uhost->active_class != NULL) { - if (uhost->active_class->class_sof != NULL) { - uhost->active_class->class_sof(uhost); - } - } - - return 0U; -} - -/*! - \brief USB connect callback function from the interrupt - \param[in] uhost: pointer to USB host - \param[out] none - \retval operation status -*/ -static uint8_t usbh_connect (usbh_host *uhost) -{ - usb_core_driver *udev = (usb_core_driver *)uhost->data; - udev->host.connect_status = 1U; - - return 0U; -} - -/*! - \brief USB disconnect callback function from the interrupt - \param[in] uhost: pointer to USB host - \param[out] none - \retval operation status -*/ -static uint8_t usbh_disconnect (usbh_host *uhost) -{ - usb_core_driver *udev = (usb_core_driver *)uhost->data; - udev->host.connect_status = 0U; - - return 0U; -} - -/*! - \brief USB port enable callback function from the interrupt - \param[in] uhost: pointer to USB host - \param[out] none - \retval operation status -*/ -static uint8_t usbh_port_enabled (usbh_host *uhost) -{ - usb_core_driver *udev = (usb_core_driver *)uhost->data; - udev->host.port_enabled = 1U; - - return 0U; -} - -/*! - \brief USB port disabled callback function from the interrupt - \param[in] uhost: pointer to USB host - \param[out] none - \retval operation status -*/ -static uint8_t usbh_port_disabled (usbh_host *uhost) -{ - usb_core_driver *udev = (usb_core_driver *)uhost->data; - udev->host.port_enabled = 0U; - - return 0U; -} - -/*! - \brief handle the USB enumeration task - \param[in] uhost: pointer to host - \param[out] none - \retval none -*/ -static usbh_status usbh_enum_task (usbh_host *uhost) -{ - uint8_t str_buf[64]; - usbh_status status = USBH_BUSY; - usb_core_driver *udev = (usb_core_driver *)uhost->data; - - static uint8_t index_mfc_str = 0U, index_prod_str = 0U, index_serial_str = 0U; - - switch (uhost->enum_state) { - case ENUM_DEFAULT: - /* get device descriptor for only 1st 8 bytes : to get ep0 max packet size */ - if (USBH_OK == usbh_devdesc_get (uhost, 8U)) { - uhost->control.max_len = uhost->dev_prop.dev_desc.bMaxPacketSize0; - - /* modify control channels configuration for maximum packet size */ - usbh_pipe_update (udev, - uhost->control.pipe_out_num, - 0U, 0U, - (uint16_t)uhost->control.max_len); - - usbh_pipe_update (udev, - uhost->control.pipe_in_num, - 0U, 0U, - (uint16_t)uhost->control.max_len); - - uhost->enum_state = ENUM_GET_DEV_DESC; - } - break; - - case ENUM_GET_DEV_DESC: - /* get full device descriptor */ - if (USBH_OK == usbh_devdesc_get (uhost, USB_DEV_DESC_LEN)) { - uhost->usr_cb->dev_devdesc_assigned(&uhost->dev_prop.dev_desc); - - index_mfc_str = uhost->dev_prop.dev_desc.iManufacturer; - index_prod_str = uhost->dev_prop.dev_desc.iProduct; - index_serial_str = uhost->dev_prop.dev_desc.iSerialNumber; - - uhost->enum_state = ENUM_SET_ADDR; - } - break; - - case ENUM_SET_ADDR: - /* set address */ - if (USBH_OK == usbh_setaddress (uhost, USBH_DEV_ADDR)) { - usb_mdelay (2U); - - uhost->dev_prop.addr = USBH_DEV_ADDR; - - /* user callback for device address assigned */ - uhost->usr_cb->dev_address_set(); - - /* modify control channels to update device address */ - usbh_pipe_update (udev, - uhost->control.pipe_in_num, - uhost->dev_prop.addr, - 0U, 0U); - - usbh_pipe_update (udev, - uhost->control.pipe_out_num, - uhost->dev_prop.addr, - 0U, 0U); - - uhost->enum_state = ENUM_GET_CFG_DESC; - } - break; - - case ENUM_GET_CFG_DESC: - /* get standard configuration descriptor */ - if (USBH_OK == usbh_cfgdesc_get (uhost, USB_CFG_DESC_LEN)) { - uhost->enum_state = ENUM_GET_CFG_DESC_SET; - } - break; - - case ENUM_GET_CFG_DESC_SET: - /* get full configure descriptor (config, interface, endpoints) */ - if (USBH_OK == usbh_cfgdesc_get (uhost, uhost->dev_prop.cfg_desc_set.cfg_desc.wTotalLength)) { - /* user callback for configuration descriptors available */ - uhost->usr_cb->dev_cfgdesc_assigned (&uhost->dev_prop.cfg_desc_set.cfg_desc, - &uhost->dev_prop.cfg_desc_set.itf_desc_set[0][0].itf_desc, - &uhost->dev_prop.cfg_desc_set.itf_desc_set[0][0].ep_desc[0]); - - uhost->enum_state = ENUM_GET_STR_DESC; - } - break; - - case ENUM_GET_STR_DESC: - if (index_mfc_str) { - if (USBH_OK == usbh_strdesc_get (uhost, - uhost->dev_prop.dev_desc.iManufacturer, - str_buf, - 0xFFU)) { - /* user callback for manufacturing string */ - uhost->usr_cb->dev_mfc_str(str_buf); - - index_mfc_str = 0U; - } - } else { - if (index_prod_str) { - /* check that product string is available */ - if (USBH_OK == usbh_strdesc_get (uhost, - uhost->dev_prop.dev_desc.iProduct, - str_buf, - 0xFFU)) { - uhost->usr_cb->dev_prod_str(str_buf); - - index_prod_str = 0U; - } - } else { - if (index_serial_str) { - if (USBH_OK == usbh_strdesc_get (uhost, - uhost->dev_prop.dev_desc.iSerialNumber, - str_buf, - 0xFFU)) { - uhost->usr_cb->dev_seral_str(str_buf); - uhost->enum_state = ENUM_SET_CONFIGURATION; - index_serial_str = 0U; - } - } else { - uhost->enum_state = ENUM_SET_CONFIGURATION; - } - } - } - break; - - case ENUM_SET_CONFIGURATION: - if (USBH_OK == usbh_setcfg (uhost, (uint16_t)uhost->dev_prop.cfg_desc_set.cfg_desc.bConfigurationValue)) { - uhost->enum_state = ENUM_DEV_CONFIGURED; - } - break; - - case ENUM_DEV_CONFIGURED: - status = USBH_OK; - break; - - default: - break; - } - - return status; -} - -#ifdef USB_LOW_PWR_ENABLE - -/*! - \brief handles the USB resume from suspend mode - \param[in] udev: pointer to selected USB device - \param[out] none - \retval none -*/ -void usb_hwp_resume(usb_core_driver *udev) -{ - __IO uint32_t hprt = 0U; - - /* switch-on the clocks */ - *udev->regs.PWRCLKCTL &= ~PWRCLKCTL_SUCLK; - - *udev->regs.PWRCLKCTL &= ~PWRCLKCTL_SHCLK; - - hprt = usb_port_read(udev); - - hprt &= ~HPCS_PSP; - hprt |= HPCS_PREM; - - *udev->regs.HPCS = hprt; - - usb_mdelay (20U); - - hprt &= ~HPCS_PREM; - - *udev->regs.HPCS = hprt; -} - -/*! - \brief handles the USB enter to suspend mode - \param[in] udev: pointer to selected USB device - \param[out] none - \retval none -*/ -static void usb_hwp_suspend(usb_core_driver *udev) -{ - __IO uint32_t hprt = 0U; - - hprt = usb_port_read(udev); - - hprt |= HPCS_PSP; - - *udev->regs.HPCS = hprt; - - /* switch-off the clocks */ - *udev->regs.PWRCLKCTL |= PWRCLKCTL_SUCLK; - - *udev->regs.PWRCLKCTL |= PWRCLKCTL_SHCLK; -} - -#endif /* USB_LOW_PWR_ENABLE */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_enum.c b/Marlin/lib/GD32F4xx_usb_library/src/usbh_enum.c deleted file mode 100644 index 72b51f0037..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/usbh_enum.c +++ /dev/null @@ -1,693 +0,0 @@ -/*! - \file usbh_enum.c - \brief USB host mode enumeration driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gdusbh_pipe.h" -#include "usbh_transc.h" -#include "gdusbh_enum.h" - -/* local function prototypes ('static') */ -static void usbh_devdesc_parse (usb_desc_dev *dev_desc, uint8_t *buf, uint16_t len); -static void usbh_cfgdesc_parse (usb_desc_config *cfg_desc, uint8_t *buf); -static void usbh_cfgset_parse (usb_dev_prop *udev, uint8_t *buf); -static void usbh_itfdesc_parse (usb_desc_itf *itf_desc, uint8_t *buf); -static void usbh_epdesc_parse (usb_desc_ep *ep_desc, uint8_t *buf); -static void usbh_strdesc_parse (uint8_t *psrc, uint8_t *pdest, uint16_t len); - -/*! - \brief configure USB control status parameters - \param[in] uhost: pointer to USB host - \param[in] buf: control transfer data buffer pointer - \param[in] len: length of the data buffer - \param[out] none - \retval none -*/ -void usbh_ctlstate_config (usbh_host *uhost, uint8_t *buf, uint16_t len) -{ - /* prepare the transactions */ - uhost->control.buf = buf; - uhost->control.ctl_len = len; - - uhost->control.ctl_state = CTL_SETUP; -} - -/*! - \brief get device descriptor from the USB device - \param[in] uhost: pointer to USB host - \param[in] len: length of the descriptor - \param[out] none - \retval operation status -*/ -usbh_status usbh_devdesc_get (usbh_host *uhost, uint8_t len) -{ - usbh_status status = USBH_BUSY; - - usbh_control *usb_ctl = &uhost->control; - - if (CTL_IDLE == usb_ctl->ctl_state) { - usb_ctl->setup.req = (usb_req) { - .bmRequestType = USB_TRX_IN | USB_RECPTYPE_DEV | USB_REQTYPE_STRD, - .bRequest = USB_GET_DESCRIPTOR, - .wValue = USBH_DESC(USB_DESCTYPE_DEV), - .wIndex = 0U, - .wLength = len - }; - - usbh_ctlstate_config (uhost, uhost->dev_prop.data, (uint16_t)len); - } - - status = usbh_ctl_handler (uhost); - - if (USBH_OK == status) { - /* commands successfully sent and response received */ - usbh_devdesc_parse (&uhost->dev_prop.dev_desc, uhost->dev_prop.data, (uint16_t)len); - } - - return status; -} - -/*! - \brief get configuration descriptor from the USB device - \param[in] uhost: pointer to USB host - \param[in] len: length of the descriptor - \param[out] none - \retval operation status -*/ -usbh_status usbh_cfgdesc_get (usbh_host *uhost, uint16_t len) -{ - uint8_t *pdata = NULL; - - usbh_status status = USBH_BUSY; - - usbh_control *usb_ctl = &uhost->control; - -#if (USBH_KEEP_CFG_DESCRIPTOR == 1U) - pdata = uhost->dev_prop.cfgdesc_rawdata; -#else - pdata = uhost->dev_prop.data; -#endif - - if (CTL_IDLE == usb_ctl->ctl_state) { - usb_ctl->setup.req = (usb_req) { - .bmRequestType = USB_TRX_IN | USB_RECPTYPE_DEV | USB_REQTYPE_STRD, - .bRequest = USB_GET_DESCRIPTOR, - .wValue = USBH_DESC(USB_DESCTYPE_CONFIG), - .wIndex = 0U, - .wLength = len - }; - - usbh_ctlstate_config (uhost, pdata, len); - } - - status = usbh_ctl_handler (uhost); - - if (USBH_OK == status) { - if (len <= USB_CFG_DESC_LEN) { - usbh_cfgdesc_parse (&uhost->dev_prop.cfg_desc_set.cfg_desc, pdata); - } else { - usbh_cfgset_parse (&uhost->dev_prop, pdata); - } - } - - return status; -} - -/*! - \brief get string descriptor from the USB device - \param[in] uhost: pointer to USB host - \param[in] str_index: index for the string descriptor - \param[in] buf: buffer pointer to the string descriptor - \param[in] len: length of the descriptor - \param[out] none - \retval operation status -*/ -usbh_status usbh_strdesc_get (usbh_host *uhost, - uint8_t str_index, - uint8_t *buf, - uint16_t len) -{ - usbh_status status = USBH_BUSY; - - usbh_control *usb_ctl = &uhost->control; - - if (CTL_IDLE == usb_ctl->ctl_state) { - usb_ctl->setup.req = (usb_req) { - .bmRequestType = USB_TRX_IN | USB_RECPTYPE_DEV | USB_REQTYPE_STRD, - .bRequest = USB_GET_DESCRIPTOR, - .wValue = USBH_DESC(USB_DESCTYPE_STR) | str_index, - .wIndex = 0x0409U, - .wLength = len - }; - - usbh_ctlstate_config (uhost, uhost->dev_prop.data, len); - } - - status = usbh_ctl_handler (uhost); - - if (USBH_OK == status) { - /* commands successfully sent and response received */ - usbh_strdesc_parse (uhost->dev_prop.data, buf, len); - } - - return status; -} - -/*! - \brief set the address to the connected device - \param[in] uhost: pointer to USB host - \param[in] dev_addr: device address to assign - \param[out] none - \retval operation status -*/ -usbh_status usbh_setaddress (usbh_host *uhost, uint8_t dev_addr) -{ - usbh_status status = USBH_BUSY; - - usbh_control *usb_ctl = &uhost->control; - - if (CTL_IDLE == usb_ctl->ctl_state) { - usb_ctl->setup.req = (usb_req) { - .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_DEV | USB_REQTYPE_STRD, - .bRequest = USB_SET_ADDRESS, - .wValue = (uint16_t)dev_addr, - .wIndex = 0U, - .wLength = 0U - }; - - usbh_ctlstate_config (uhost, NULL, 0U); - } - - status = usbh_ctl_handler (uhost); - - return status; -} - -/*! - \brief set the configuration value to the connected device - \param[in] uhost: pointer to USB host - \param[in] config_index: configuration value - \param[out] none - \retval operation status -*/ -usbh_status usbh_setcfg (usbh_host *uhost, uint16_t config_index) -{ - usbh_status status = USBH_BUSY; - - usbh_control *usb_ctl = &uhost->control; - - if (CTL_IDLE == usb_ctl->ctl_state) { - usb_ctl->setup.req = (usb_req) { - .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_DEV | USB_REQTYPE_STRD, - .bRequest = USB_SET_CONFIGURATION, - .wValue = config_index, - .wIndex = 0U, - .wLength = 0U - }; - - usbh_ctlstate_config (uhost, NULL, 0U); - } - - status = usbh_ctl_handler (uhost); - - return status; -} - -/*! - \brief set the interface value to the connected device - \param[in] uhost: pointer to USB host - \param[in] itf_num: interface number - \param[in] set: alternated setting value - \param[out] none - \retval operation status -*/ -usbh_status usbh_setinterface (usbh_host *uhost, uint8_t itf_num, uint8_t set) -{ - usbh_status status = USBH_BUSY; - - usbh_control *usb_ctl = &uhost->control; - - if (CTL_IDLE == usb_ctl->ctl_state) { - usb_ctl->setup.req = (usb_req) { - .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_ITF | USB_REQTYPE_STRD, - .bRequest = USB_SET_INTERFACE, - .wValue = set, - .wIndex = itf_num, - .wLength = 0U - }; - - usbh_ctlstate_config (uhost, NULL, 0U); - } - - status = usbh_ctl_handler (uhost); - - return status; -} - -/*! - \brief set the interface value to the connected device - \param[in] uhost: pointer to USB host - \param[in] feature_selector: feature selector - \param[in] windex: index value - \param[out] none - \retval operation status -*/ -usbh_status usbh_setdevfeature (usbh_host *uhost, uint8_t feature_selector, uint16_t windex) -{ - usbh_status status = USBH_BUSY; - - usbh_control *usb_ctl = &uhost->control; - - if (CTL_IDLE == usb_ctl->ctl_state) { - usb_ctl->setup.req = (usb_req) { - .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_DEV | USB_REQTYPE_STRD, - .bRequest = USB_SET_FEATURE, - .wValue = feature_selector, - .wIndex = windex, - .wLength = 0U - }; - - usbh_ctlstate_config (uhost, NULL, 0U); - } - - status = usbh_ctl_handler (uhost); - - return status; -} - -/*! - \brief clear the interface value to the connected device - \param[in] uhost: pointer to USB host - \param[in] feature_selector: feature selector - \param[in] windex: index value - \param[out] none - \retval operation status -*/ -usbh_status usbh_clrdevfeature (usbh_host *uhost, uint8_t feature_selector, uint16_t windex) -{ - usbh_status status = USBH_BUSY; - - usbh_control *usb_ctl = &uhost->control; - - if (CTL_IDLE == usb_ctl->ctl_state) { - usb_ctl->setup.req = (usb_req) { - .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_DEV | USB_REQTYPE_STRD, - .bRequest = USB_CLEAR_FEATURE, - .wValue = feature_selector, - .wIndex = windex, - .wLength = 0U - }; - - usbh_ctlstate_config (uhost, NULL, 0U); - } - - status = usbh_ctl_handler (uhost); - - return status; -} - -/*! - \brief clear or disable a specific feature - \param[in] uhost: pointer to USB host - \param[in] ep_addr: endpoint address - \param[in] pp_num: pipe number - \param[out] none - \retval operation status -*/ -usbh_status usbh_clrfeature (usbh_host *uhost, uint8_t ep_addr, uint8_t pp_num) -{ - usbh_status status = USBH_BUSY; - usbh_control *usb_ctl = &uhost->control; - usb_core_driver *udev = (usb_core_driver *)uhost->data; - - if (CTL_IDLE == usb_ctl->ctl_state) { - usb_ctl->setup.req = (usb_req) { - .bmRequestType = USB_TRX_OUT | USB_RECPTYPE_EP | USB_REQTYPE_STRD, - .bRequest = USB_CLEAR_FEATURE, - .wValue = FEATURE_SELECTOR_EP, - .wIndex = ep_addr, - .wLength = 0U - }; - - if (EP_ID(ep_addr) == udev->host.pipe[pp_num].ep.num) { - usbh_pipe_toggle_set(udev, pp_num, 0U); - } else { - return USBH_FAIL; - } - - usbh_ctlstate_config (uhost, NULL, 0U); - } - - status = usbh_ctl_handler (uhost); - - return status; -} - -/*! - \brief get the next descriptor header - \param[in] pbuf: pointer to buffer where the configuration descriptor set is available - \param[in] ptr: data pointer inside the configuration descriptor set - \param[out] none - \retval return descriptor header -*/ -usb_desc_header *usbh_nextdesc_get (uint8_t *pbuf, uint16_t *ptr) -{ - usb_desc_header *pnext; - - *ptr += ((usb_desc_header *)pbuf)->bLength; - - pnext = (usb_desc_header *)((uint8_t *)pbuf + ((usb_desc_header *)pbuf)->bLength); - - return (pnext); -} - -/*! - \brief get the next descriptor header - \param[in] udev: pointer to device property - \param[in] interface: interface number - \param[out] none - \retval operation status -*/ -usbh_status usbh_interface_select (usb_dev_prop *udev, uint8_t interface) -{ - usbh_status status = USBH_OK; - - if (interface < udev->cfg_desc_set.cfg_desc.bNumInterfaces) { - udev->cur_itf = interface; - } else { - status = USBH_FAIL; - } - - return status; -} - -/*! - \brief find the interface index for a specific class - \param[in] udev: pointer to device property - \param[in] main_class: class code - \param[in] sub_class: subclass code - \param[in] protocol: Protocol code - \param[out] none - \retval interface index in the configuration structure - \note interface index 0xFF means interface index not found -*/ -uint8_t usbh_interface_find (usb_dev_prop *udev, uint8_t main_class, uint8_t sub_class, uint8_t protocol) -{ - usb_desc_itf *pif; - - uint8_t if_ix = 0U; - - pif = (usb_desc_itf *)0; - - while (if_ix < udev->cfg_desc_set.cfg_desc.bNumInterfaces) { - pif = &udev->cfg_desc_set.itf_desc_set[if_ix][0].itf_desc; - - if (((pif->bInterfaceClass == main_class) || (main_class == 0xFFU))&& - ((pif->bInterfaceSubClass == sub_class) || (sub_class == 0xFFU))&& - ((pif->bInterfaceProtocol == protocol) || (protocol == 0xFFU))) { - return if_ix; - } - - if_ix++; - } - - return 0xFFU; -} - -/*! - \brief find the interface index for a specific class interface and alternate setting number - \param[in] udev: pointer to device property - \param[in] interface_number: interface number - \param[in] alt_settings: alternate setting number - \param[out] none - \retval interface index in the configuration structure - \note interface index 0xFF means interface index not found -*/ -uint8_t usbh_interfaceindex_find (usb_dev_prop *udev, uint8_t interface_number, uint8_t alt_settings) -{ - usb_desc_itf *pif; - - uint8_t if_ix = 0U; - - pif = (usb_desc_itf *)0; - - while (if_ix < USBH_MAX_INTERFACES_NUM) { - pif = &udev->cfg_desc_set.itf_desc_set[if_ix][alt_settings].itf_desc; - - if ((pif->bInterfaceNumber == interface_number) && (pif->bAlternateSetting == alt_settings)) { - return if_ix; - } - - if_ix++; - } - - return 0xFFU; -} - -/*! - \brief parse the device descriptor - \param[in] dev_desc: pointer to USB device descriptor buffer - \param[in] buf: pointer to the source descriptor buffer - \param[in] len: length of the descriptor - \param[out] none - \retval none -*/ -static void usbh_devdesc_parse (usb_desc_dev *dev_desc, uint8_t *buf, uint16_t len) -{ - *dev_desc = (usb_desc_dev) { - .header = { - .bLength = *(uint8_t *)(buf + 0U), - .bDescriptorType = *(uint8_t *)(buf + 1U) - }, - - .bcdUSB = BYTE_SWAP(buf + 2U), - .bDeviceClass = *(uint8_t *)(buf + 4U), - .bDeviceSubClass = *(uint8_t *)(buf + 5U), - .bDeviceProtocol = *(uint8_t *)(buf + 6U), - .bMaxPacketSize0 = *(uint8_t *)(buf + 7U) - }; - - if (len > 8U) { - /* for 1st time after device connection, host may issue only 8 bytes for device descriptor length */ - dev_desc->idVendor = BYTE_SWAP(buf + 8U); - dev_desc->idProduct = BYTE_SWAP(buf + 10U); - dev_desc->bcdDevice = BYTE_SWAP(buf + 12U); - dev_desc->iManufacturer = *(uint8_t *)(buf + 14U); - dev_desc->iProduct = *(uint8_t *)(buf + 15U); - dev_desc->iSerialNumber = *(uint8_t *)(buf + 16U); - dev_desc->bNumberConfigurations = *(uint8_t *)(buf + 17U); - } -} - -/*! - \brief parse the configuration descriptor - \param[in] cfg_desc: pointer to USB configuration descriptor buffer - \param[in] buf: pointer to the source descriptor buffer - \param[out] none - \retval none -*/ -static void usbh_cfgdesc_parse (usb_desc_config *cfg_desc, uint8_t *buf) -{ - /* parse configuration descriptor */ - *cfg_desc = (usb_desc_config) { - .header = { - .bLength = *(uint8_t *)(buf + 0U), - .bDescriptorType = *(uint8_t *)(buf + 1U), - }, - - .wTotalLength = BYTE_SWAP(buf + 2U), - .bNumInterfaces = *(uint8_t *)(buf + 4U), - .bConfigurationValue = *(uint8_t *)(buf + 5U), - .iConfiguration = *(uint8_t *)(buf + 6U), - .bmAttributes = *(uint8_t *)(buf + 7U), - .bMaxPower = *(uint8_t *)(buf + 8U) - }; -} - -/*! - \brief parse the configuration descriptor set - \param[in] udev: pointer to device property - \param[in] buf: pointer to the source descriptor buffer - \param[out] none - \retval none -*/ -static void usbh_cfgset_parse (usb_dev_prop *udev, uint8_t *buf) -{ - usb_desc_ep *ep = NULL; - usb_desc_itf_set *itf = NULL; - usb_desc_itf itf_value; - usb_desc_config *cfg = NULL; - - usb_desc_header *pdesc = (usb_desc_header *)buf; - - uint8_t itf_index = 0U, ep_index = 0U, alt_setting = 0U; - uint8_t pre_itf_index = 0U; - uint16_t ptr; - - /* parse configuration descriptor */ - usbh_cfgdesc_parse (&udev->cfg_desc_set.cfg_desc, buf); - cfg = &udev->cfg_desc_set.cfg_desc; - ptr = USB_CFG_DESC_LEN; - - if (cfg->bNumInterfaces > USBH_MAX_INTERFACES_NUM) { - return; - } - - while (ptr < cfg->wTotalLength) { - pdesc = usbh_nextdesc_get ((uint8_t *)pdesc, &ptr); - - if (pdesc->bDescriptorType == USB_DESCTYPE_ITF) { - itf_index = *(((uint8_t *)pdesc) + 2U); - - if (pre_itf_index != itf_index) { - alt_setting = 0U; - } - - itf = &udev->cfg_desc_set.itf_desc_set[itf_index][alt_setting]; - - alt_setting++; - - if ((*((uint8_t *)pdesc + 3U)) < 3U) { - usbh_itfdesc_parse (&itf_value, (uint8_t *)pdesc); - - /* parse endpoint descriptors relative to the current interface */ - if (itf_value.bNumEndpoints > USBH_MAX_EP_NUM) { - return; - } - - usbh_itfdesc_parse (&itf->itf_desc, (uint8_t *)&itf_value); - - /* store the previous interface index */ - pre_itf_index = itf_index; - - if (0U == itf_value.bNumEndpoints) { - continue; - } - - for (ep_index = 0U; ep_index < itf_value.bNumEndpoints; ) { - pdesc = usbh_nextdesc_get ((void*)pdesc, &ptr); - - if (pdesc->bDescriptorType == USB_DESCTYPE_EP) { - ep = &itf->ep_desc[ep_index]; - - usbh_epdesc_parse (ep, (uint8_t *)pdesc); - - ep_index++; - } - } - } - } - } -} - -/*! - \brief parse the interface descriptor - \param[in] itf_desc: pointer to USB interface descriptor buffer - \param[in] buf: pointer to the source descriptor buffer - \param[out] none - \retval none -*/ -static void usbh_itfdesc_parse (usb_desc_itf *itf_desc, uint8_t *buf) -{ - *itf_desc = (usb_desc_itf) { - .header = { - .bLength = *(uint8_t *)(buf + 0U), - .bDescriptorType = *(uint8_t *)(buf + 1U), - }, - - .bInterfaceNumber = *(uint8_t *)(buf + 2U), - .bAlternateSetting = *(uint8_t *)(buf + 3U), - .bNumEndpoints = *(uint8_t *)(buf + 4U), - .bInterfaceClass = *(uint8_t *)(buf + 5U), - .bInterfaceSubClass = *(uint8_t *)(buf + 6U), - .bInterfaceProtocol = *(uint8_t *)(buf + 7U), - .iInterface = *(uint8_t *)(buf + 8U) - }; -} - -/*! - \brief parse the endpoint descriptor - \param[in] ep_desc: pointer to USB endpoint descriptor buffer - \param[in] buf: pointer to the source descriptor buffer - \param[out] none - \retval none -*/ -static void usbh_epdesc_parse (usb_desc_ep *ep_desc, uint8_t *buf) -{ - *ep_desc = (usb_desc_ep) { - .header = { - .bLength = *(uint8_t *)(buf + 0U), - .bDescriptorType = *(uint8_t *)(buf + 1U) - }, - - .bEndpointAddress = *(uint8_t *)(buf + 2U), - .bmAttributes = *(uint8_t *)(buf + 3U), - .wMaxPacketSize = BYTE_SWAP(buf + 4U), - .bInterval = *(uint8_t *)(buf + 6U) - }; -} - -/*! - \brief parse the string descriptor - \param[in] psrc: source pointer containing the descriptor data - \param[in] pdest: destination address pointer - \param[in] len: length of the descriptor - \param[out] none - \retval none -*/ -static void usbh_strdesc_parse (uint8_t *psrc, uint8_t *pdest, uint16_t len) -{ - uint16_t str_len = 0U, index = 0U; - - /* the unicode string descriptor is not NULL-terminated. The string length is - * computed by substracting two from the value of the first byte of the descriptor. - */ - - /* check which is lower size, the size of string or the length of bytes read from the device */ - if (USB_DESCTYPE_STR == psrc[1]) { - /* make sure the descriptor is string type */ - - /* psrc[0] contains Size of Descriptor, subtract 2 to get the length of string */ - str_len = USB_MIN((uint16_t)psrc[0] - 2U, len); - - psrc += 2U; /* adjust the offset ignoring the string len and descriptor type */ - - for (index = 0U; index < str_len; index += 2U) { - /* copy only the string and ignore the unicode id, hence add the src */ - *pdest = psrc[index]; - - pdest++; - } - - *pdest = 0U; /* mark end of string */ - } -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_bbb.c b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_bbb.c deleted file mode 100644 index 6408018dc6..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_bbb.c +++ /dev/null @@ -1,362 +0,0 @@ -/*! - \file usbh_msc_bbb.c - \brief USB MSC BBB protocol related functions - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gdusbh_pipe.h" -#include "usbh_msc_core.h" -#include "usbh_msc_scsi.h" -#include "usbh_msc_bbb.h" -#include "usbh_transc.h" -#include "drv_usbh_int.h" - -/*! - \brief initialize the mass storage parameters - \param[in] uhost: pointer to USB host handler - \param[out] none - \retval none -*/ -void usbh_msc_bot_init (usbh_host *uhost) -{ - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - msc->bot.cbw.field.dCBWSignature = BBB_CBW_SIGNATURE; - msc->bot.cbw.field.dCBWTag = USBH_MSC_BOT_CBW_TAG; - msc->bot.state = BOT_SEND_CBW; - msc->bot.cmd_state = BOT_CMD_SEND; -} - -/*! - \brief manage the different states of BOT transfer and updates the status to upper layer - \param[in] uhost: pointer to usb host handler - \param[in] lun: logic unit number - \param[out] none - \retval operation status -*/ -usbh_status usbh_msc_bot_process (usbh_host *uhost, uint8_t lun) -{ - bot_csw_status csw_status = BOT_CSW_CMD_FAILED; - usbh_status status = USBH_BUSY; - usbh_status error = USBH_BUSY; - usb_urb_state urb_status = GD_URB_IDLE; - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - switch (msc->bot.state) { - case BOT_SEND_CBW: - msc->bot.cbw.field.bCBWLUN = lun; - msc->bot.state = BOT_SEND_CBW_WAIT; - /* send CBW */ - usbh_data_send (uhost->data, - msc->bot.cbw.CBWArray, - msc->pipe_out, - BBB_CBW_LENGTH); - break; - - case BOT_SEND_CBW_WAIT: - urb_status = usbh_urbstate_get(uhost->data, msc->pipe_out); - - if (GD_URB_DONE == urb_status) { - if (0U != msc->bot.cbw.field.dCBWDataTransferLength) { - if (USB_TRX_IN == (msc->bot.cbw.field.bmCBWFlags & USB_TRX_MASK)) { - msc->bot.state = BOT_DATA_IN; - } else { - msc->bot.state = BOT_DATA_OUT; - } - } else { - msc->bot.state = BOT_RECEIVE_CSW; - } - - } else if (GD_URB_NOTREADY == urb_status) { - msc->bot.state = BOT_SEND_CBW; - } else { - if (GD_URB_STALL == urb_status) { - msc->bot.state = BOT_ERROR_OUT; - } - } - break; - - case BOT_DATA_IN: - usbh_data_recev (uhost->data, - msc->bot.pbuf, - msc->pipe_in, - msc->ep_size_in); - - msc->bot.state = BOT_DATA_IN_WAIT; - break; - - case BOT_DATA_IN_WAIT: - urb_status = usbh_urbstate_get(uhost->data, msc->pipe_in); - - /* BOT DATA IN stage */ - if (GD_URB_DONE == urb_status) { - if (msc->bot.cbw.field.dCBWDataTransferLength > msc->ep_size_in) { - msc->bot.pbuf += msc->ep_size_in; - msc->bot.cbw.field.dCBWDataTransferLength -= msc->ep_size_in; - } else { - msc->bot.cbw.field.dCBWDataTransferLength = 0U; - } - - if (msc->bot.cbw.field.dCBWDataTransferLength > 0U) { - usbh_data_recev (uhost->data, - msc->bot.pbuf, - msc->pipe_in, - msc->ep_size_in); - } else { - msc->bot.state = BOT_RECEIVE_CSW; - } - } else if(GD_URB_STALL == urb_status) { - /* this is data stage stall condition */ - msc->bot.state = BOT_ERROR_IN; - } else { - /* no operation */ - } - break; - - case BOT_DATA_OUT: - usbh_data_send (uhost->data, - msc->bot.pbuf, - msc->pipe_out, - msc->ep_size_out); - - msc->bot.state = BOT_DATA_OUT_WAIT; - break; - - case BOT_DATA_OUT_WAIT: - /* BOT DATA OUT stage */ - urb_status = usbh_urbstate_get(uhost->data, msc->pipe_out); - if (GD_URB_DONE == urb_status) { - if (msc->bot.cbw.field.dCBWDataTransferLength > msc->ep_size_out) { - msc->bot.pbuf += msc->ep_size_out; - msc->bot.cbw.field.dCBWDataTransferLength -= msc->ep_size_out; - } else { - msc->bot.cbw.field.dCBWDataTransferLength = 0; /* reset this value and keep in same state */ - } - - if (msc->bot.cbw.field.dCBWDataTransferLength > 0) { - usbh_data_send (uhost->data, - msc->bot.pbuf, - msc->pipe_out, - msc->ep_size_out); - } else { - msc->bot.state = BOT_RECEIVE_CSW; - } - } else if (GD_URB_NOTREADY == urb_status) { - msc->bot.state = BOT_DATA_OUT; - } else if (GD_URB_STALL == urb_status) { - msc->bot.state = BOT_ERROR_OUT; - } else { - /* no operation */ - } - break; - - case BOT_RECEIVE_CSW: - /* BOT CSW stage */ - usbh_data_recev (uhost->data, - msc->bot.csw.CSWArray, - msc->pipe_in, - BBB_CSW_LENGTH); - - msc->bot.state = BOT_RECEIVE_CSW_WAIT; - break; - - case BOT_RECEIVE_CSW_WAIT: - urb_status = usbh_urbstate_get(uhost->data, msc->pipe_in); - - /* decode CSW */ - if (GD_URB_DONE == urb_status) { - msc->bot.state = BOT_SEND_CBW; - msc->bot.cmd_state = BOT_CMD_SEND; - - csw_status = usbh_msc_csw_decode(uhost); - if (BOT_CSW_CMD_PASSED == csw_status) { - status = USBH_OK; - } else { - status = USBH_FAIL; - } - } else if (GD_URB_STALL == urb_status) { - msc->bot.state = BOT_ERROR_IN; - } else { - /* no operation */ - } - break; - - case BOT_ERROR_IN: - error = usbh_msc_bot_abort(uhost, USBH_MSC_DIR_IN); - - if (USBH_OK == error) { - msc->bot.state = BOT_RECEIVE_CSW; - } else if (USBH_UNRECOVERED_ERROR == status) { - /* this means that there is a stall error limit, do reset recovery */ - msc->bot.state = BOT_UNRECOVERED_ERROR; - } else { - /* no operation */ - } - break; - - case BOT_ERROR_OUT: - status = usbh_msc_bot_abort (uhost, USBH_MSC_DIR_OUT); - - if (USBH_OK == status) { - uint8_t toggle = usbh_pipe_toggle_get(uhost->data, msc->pipe_out); - usbh_pipe_toggle_set(uhost->data, msc->pipe_out, 1U - toggle); - usbh_pipe_toggle_set(uhost->data, msc->pipe_in, 0U); - msc->bot.state = BOT_ERROR_IN; - } else { - if (USBH_UNRECOVERED_ERROR == status) { - msc->bot.state = BOT_UNRECOVERED_ERROR; - } - } - break; - - case BOT_UNRECOVERED_ERROR: - status = usbh_msc_bot_reset(uhost); - if (USBH_OK == status) { - msc->bot.state = BOT_SEND_CBW; - } - break; - - default: - break; - } - - return status; -} - -/*! - \brief manages the different error handling for stall - \param[in] uhost: pointer to USB host handler - \param[in] direction: data IN or OUT - \param[out] none - \retval operation status -*/ -usbh_status usbh_msc_bot_abort (usbh_host *uhost, uint8_t direction) -{ - usbh_status status = USBH_BUSY; - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - switch (direction) { - case USBH_MSC_DIR_IN : - /* send clear feature command on bulk IN endpoint */ - status = usbh_clrfeature(uhost, - msc->ep_in, - msc->pipe_in); - break; - - case USBH_MSC_DIR_OUT : - /*send clear feature command on bulk OUT endpoint */ - status = usbh_clrfeature(uhost, - msc->ep_out, - msc->pipe_out); - break; - - default: - break; - } - - return status; -} - -/*! - \brief reset MSC bot transfer - \param[in] uhost: pointer to USB host handler - \param[out] none - \retval operation status -*/ -usbh_status usbh_msc_bot_reset (usbh_host *uhost) -{ - usbh_status status = USBH_BUSY; - - if (CTL_IDLE == uhost->control.ctl_state) { - uhost->control.setup.req = (usb_req) { - .bmRequestType = USB_TRX_OUT | USB_REQTYPE_CLASS | USB_RECPTYPE_ITF, - .bRequest = BBB_RESET, - .wValue = 0U, - .wIndex = 0U, - .wLength = 0U - }; - - usbh_ctlstate_config (uhost, NULL, 0U); - } - - status = usbh_ctl_handler (uhost); - - return status; -} - -/*! - \brief decode the CSW received by the device and updates the same to upper layer - \param[in] uhost: pointer to USB host - \param[out] none - \retval on success USBH_MSC_OK, on failure USBH_MSC_FAIL - \notes - Refer to USB Mass-Storage Class: BOT (www.usb.org) - 6.3.1 Valid CSW Conditions : - The host shall consider the CSW valid when: - 1. dCSWSignature is equal to 53425355h - 2. the CSW is 13 (Dh) bytes in length, - 3. dCSWTag matches the dCBWTag from the corresponding CBW. -*/ -bot_csw_status usbh_msc_csw_decode (usbh_host *uhost) -{ - bot_csw_status status = BOT_CSW_CMD_FAILED; - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - /* checking if the transfer length is different than 13 */ - if (BBB_CSW_LENGTH != usbh_xfercount_get (uhost->data, msc->pipe_in)) { - status = BOT_CSW_PHASE_ERROR; - } else { - /* CSW length is correct */ - - /* check validity of the CSW Signature and CSWStatus */ - if (BBB_CSW_SIGNATURE == msc->bot.csw.field.dCSWSignature) { - /* check condition 1. dCSWSignature is equal to 53425355h */ - if (msc->bot.csw.field.dCSWTag == msc->bot.cbw.field.dCBWTag) { - /* check condition 3. dCSWTag matches the dCBWTag from the corresponding CBW */ - if (0U == msc->bot.csw.field.bCSWStatus) { - status = BOT_CSW_CMD_PASSED; - } else if (1U == msc->bot.csw.field.bCSWStatus) { - status = BOT_CSW_CMD_FAILED; - } else if (2U == msc->bot.csw.field.bCSWStatus) { - status = BOT_CSW_PHASE_ERROR; - } else { - /* no operation */ - } - } - } else { - /* If the CSW signature is not valid, we shall return the phase error to - upper layers for reset recovery */ - status = BOT_CSW_PHASE_ERROR; - } - } - - return status; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_bbb.h b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_bbb.h deleted file mode 100644 index e0089ce91b..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_bbb.h +++ /dev/null @@ -1,150 +0,0 @@ -/*! - \file usbh_msc_bbb.h - \brief header file for usbh_msc_bbb.c - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBH_MSC_BBB_H -#define __USBH_MSC_BBB_H - -#include "gdusbh_enum.h" -#include "msc_bbb.h" - -typedef union { - msc_bbb_cbw field; - - uint8_t CBWArray[31]; -}usbh_cbw_pkt; - -typedef union { - msc_bbb_csw field; - - uint8_t CSWArray[13]; -}usbh_csw_pkt; - -enum usbh_msc_state { - USBH_MSC_BOT_INIT_STATE = 0U, - USBH_MSC_BOT_RESET, - USBH_MSC_GET_MAX_LUN, - USBH_MSC_TEST_UNIT_READY, - USBH_MSC_READ_CAPACITY10, - USBH_MSC_MODE_SENSE6, - USBH_MSC_REQUEST_SENSE, - USBH_MSC_BOT_USB_TRANSFERS, - USBH_MSC_DEFAULT_APPLI_STATE, - USBH_MSC_CTRL_ERROR_STATE, - USBH_MSC_UNRECOVERED_STATE -}; - -typedef enum -{ - BOT_OK = 0U, - BOT_FAIL, - BOT_PHASE_ERROR, - BOT_BUSY -} bot_status; - -typedef enum -{ - BOT_CMD_IDLE = 0U, - BOT_CMD_SEND, - BOT_CMD_WAIT, -} bot_cmd_state; - -/* csw status definitions */ -typedef enum -{ - BOT_CSW_CMD_PASSED = 0U, - BOT_CSW_CMD_FAILED, - BOT_CSW_PHASE_ERROR, -} bot_csw_status; - -typedef enum -{ - BOT_SEND_CBW = 1U, - BOT_SEND_CBW_WAIT, - BOT_DATA_IN, - BOT_DATA_IN_WAIT, - BOT_DATA_OUT, - BOT_DATA_OUT_WAIT, - BOT_RECEIVE_CSW, - BOT_RECEIVE_CSW_WAIT, - BOT_ERROR_IN, - BOT_ERROR_OUT, - BOT_UNRECOVERED_ERROR -} bot_state; - -typedef struct -{ - uint8_t *pbuf; - uint32_t data[16]; - bot_state state; - bot_state prev_state; - bot_cmd_state cmd_state; - usbh_cbw_pkt cbw; - usbh_csw_pkt csw; -} bot_handle; - -#define USBH_MSC_BOT_CBW_TAG 0x20304050U - -#define USBH_MSC_CSW_MAX_LENGTH 63U - -#define USBH_MSC_SEND_CSW_DISABLE 0U -#define USBH_MSC_SEND_CSW_ENABLE 1U - -#define USBH_MSC_DIR_IN 0U -#define USBH_MSC_DIR_OUT 1U -#define USBH_MSC_BOTH_DIR 2U - -#define USBH_MSC_PAGE_LENGTH 512U - -#define CBW_CB_LENGTH 16U -#define CBW_LENGTH 10U -#define CBW_LENGTH_TEST_UNIT_READY 0U - -#define MAX_BULK_STALL_COUNT_LIMIT 0x04U /*!< If STALL is seen on Bulk - Endpoint continously, this means - that device and Host has phase error - Hence a Reset is needed */ - -/* function declarations */ -/* initialize the mass storage parameters */ -void usbh_msc_bot_init (usbh_host *uhost); -/* manage the different states of BOT transfer and updates the status to upper layer */ -usbh_status usbh_msc_bot_process (usbh_host *uhost, uint8_t lun); -/* manages the different error handling for stall */ -usbh_status usbh_msc_bot_abort (usbh_host *uhost, uint8_t direction); -/* reset MSC bot request structure */ -usbh_status usbh_msc_bot_reset (usbh_host *uhost); -/* decode the CSW received by the device and updates the same to upper layer */ -bot_csw_status usbh_msc_csw_decode (usbh_host *uhost); - -#endif /* __USBH_MSC_BBB_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_core.c b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_core.c deleted file mode 100644 index b6f99287ca..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_core.c +++ /dev/null @@ -1,558 +0,0 @@ -/*! - \file usbh_core.c - \brief USB MSC(mass storage device) class driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "usbh_msc_core.h" -#include "usbh_msc_scsi.h" -#include "usbh_msc_bbb.h" -#include "gdusbh_pipe.h" -#include "usbh_transc.h" -#include -#include - -/* local function prototypes ('static') */ -static void usbh_msc_itf_deinit (usbh_host *uhost); -static usbh_status usbh_msc_itf_init (usbh_host *uhost); -static usbh_status usbh_msc_req (usbh_host *uhost); -static usbh_status usbh_msc_handle (usbh_host *uhost); -static usbh_status usbh_msc_maxlun_get (usbh_host *uhost, uint8_t *maxlun); -static usbh_status usbh_msc_rdwr_process(usbh_host *uhost, uint8_t lun); - -usbh_class usbh_msc = -{ - USB_CLASS_MSC, - usbh_msc_itf_init, - usbh_msc_itf_deinit, - usbh_msc_req, - usbh_msc_handle, -}; - -/*! - \brief interface initialization for MSC class - \param[in] uhost: pointer to usb host - \param[out] none - \retval operation status -*/ -static usbh_status usbh_msc_itf_init (usbh_host *uhost) -{ - usbh_status status = USBH_OK; - - uint8_t interface = usbh_interface_find(&uhost->dev_prop, MSC_CLASS, USB_MSC_SUBCLASS_SCSI, MSC_PROTOCOL); - - if (0xFFU == interface) { - uhost->usr_cb->dev_not_supported(); - - status = USBH_FAIL; - } else { - uhost->active_class->class_data = (usbh_msc_handler *)malloc(sizeof(usbh_msc_handler)); - - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - memset(msc, 0U, sizeof(usbh_msc_handler)); - - usbh_interface_select(&uhost->dev_prop, interface); - - usb_desc_ep *ep_desc = &uhost->dev_prop.cfg_desc_set.itf_desc_set[interface][0].ep_desc[0]; - - if (ep_desc->bEndpointAddress & 0x80) { - msc->ep_in = ep_desc->bEndpointAddress; - msc->ep_size_in = ep_desc->wMaxPacketSize; - } else { - msc->ep_out = ep_desc->bEndpointAddress; - msc->ep_size_out = ep_desc->wMaxPacketSize; - } - - ep_desc = &uhost->dev_prop.cfg_desc_set.itf_desc_set[interface][0].ep_desc[1]; - - if (ep_desc->bEndpointAddress & 0x80) { - msc->ep_in = ep_desc->bEndpointAddress; - msc->ep_size_in = ep_desc->wMaxPacketSize; - } else { - msc->ep_out = ep_desc->bEndpointAddress; - msc->ep_size_out = ep_desc->wMaxPacketSize; - } - - msc->state = MSC_INIT; - msc->error = MSC_OK; - msc->req_state = MSC_REQ_IDLE; - msc->pipe_out = usbh_pipe_allocate(uhost->data, msc->ep_out); - msc->pipe_in = usbh_pipe_allocate(uhost->data, msc->ep_in); - - usbh_msc_bot_init(uhost); - - /* open the new channels */ - usbh_pipe_create (uhost->data, - &uhost->dev_prop, - msc->pipe_out, - USB_EPTYPE_BULK, - msc->ep_size_out); - - usbh_pipe_create (uhost->data, - &uhost->dev_prop, - msc->pipe_in, - USB_EPTYPE_BULK, - msc->ep_size_in); - - usbh_pipe_toggle_set (uhost->data, msc->pipe_out, 0U); - usbh_pipe_toggle_set (uhost->data, msc->pipe_in, 0U); - } - - return status; -} - -/*! - \brief de-initialize interface by freeing host channels allocated to interface - \param[in] uhost: pointer to usb host - \param[out] none - \retval operation status -*/ -void usbh_msc_itf_deinit (usbh_host *uhost) -{ - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - if (msc->pipe_out) { - usb_pipe_halt (uhost->data, msc->pipe_out); - usbh_pipe_free (uhost->data, msc->pipe_out); - - msc->pipe_out = 0U; - } - - if (msc->pipe_in) { - usb_pipe_halt (uhost->data, msc->pipe_in); - usbh_pipe_free (uhost->data, msc->pipe_in); - - msc->pipe_in = 0U; - } -} - -/*! - \brief initialize the MSC state machine - \param[in] uhost: pointer to usb host - \param[out] none - \retval operation status -*/ -static usbh_status usbh_msc_req (usbh_host *uhost) -{ - usbh_status status = USBH_BUSY; - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - switch (msc->req_state) { - case MSC_REQ_IDLE: - case MSC_REQ_GET_MAX_LUN: - /* issue Get_MaxLun request */ - status = usbh_msc_maxlun_get (uhost, (uint8_t *)&msc->max_lun); - - if (USBH_OK == status) { - msc->max_lun = ((uint8_t)msc->max_lun > MSC_MAX_SUPPORTED_LUN) ? MSC_MAX_SUPPORTED_LUN : (uint8_t)msc->max_lun + 1U; - - for (uint8_t i = 0U; i < msc->max_lun; i++) { - msc->unit[i].prev_ready_state = USBH_FAIL; - msc->unit[i].state_changed = 0U; - } - } else { - if (USBH_NOT_SUPPORTED == status) { - msc->max_lun = 0U; - status = USBH_OK; - } - } - break; - - case MSC_REQ_ERROR: - /* issue clear feature request */ - if (USBH_OK == usbh_clrfeature(uhost, 0x00U, uhost->control.pipe_out_num)) { - msc->req_state = msc->prev_req_state; - } - break; - - default: - break; - } - - return status; -} - -/*! - \brief MSC state machine handler - \param[in] uhost: pointer to usb host - \param[out] none - \retval operation status -*/ -static usbh_status usbh_msc_handle (usbh_host *uhost) -{ - usbh_status status = USBH_BUSY; - uint8_t scsi_status = USBH_BUSY; - uint8_t ready_status = USBH_BUSY; - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - - switch (msc->state) { - case MSC_INIT: - if (msc->cur_lun < msc->max_lun) { - msc->unit[msc->cur_lun].error = MSC_NOT_READY; - - switch (msc->unit[msc->cur_lun].state) { - case MSC_INIT: - msc->unit[msc->cur_lun].state = MSC_READ_INQUIRY; - msc->timer = uhost->control.timer; - break; - - case MSC_READ_INQUIRY: - scsi_status = usbh_msc_scsi_inquiry(uhost, msc->cur_lun, &msc->unit[msc->cur_lun].inquiry); - - if (USBH_OK == scsi_status) { - msc->unit[msc->cur_lun].state = MSC_TEST_UNIT_READY; - } else if (scsi_status == USBH_FAIL) { - msc->unit[msc->cur_lun].state = MSC_REQUEST_SENSE; - } else { - if (scsi_status == USBH_UNRECOVERED_ERROR) { - msc->unit[msc->cur_lun].state = MSC_IDLE; - msc->unit[msc->cur_lun].error = MSC_ERROR; - } - } - break; - - case MSC_TEST_UNIT_READY: - /* issue SCSI command TestUnitReady */ - ready_status = usbh_msc_test_unitready(uhost, msc->cur_lun); - - if (USBH_OK == ready_status) { - if (USBH_OK != msc->unit[msc->cur_lun].prev_ready_state) { - msc->unit[msc->cur_lun].state_changed = 1U; - } else { - msc->unit[msc->cur_lun].state_changed = 0U; - } - - msc->unit[msc->cur_lun].state = MSC_READ_CAPACITY10; - msc->unit[msc->cur_lun].error = MSC_OK; - msc->unit[msc->cur_lun].prev_ready_state = USBH_OK; - } else if (USBH_FAIL == ready_status) { - if (USBH_FAIL != msc->unit[msc->cur_lun].prev_ready_state) { - msc->unit[msc->cur_lun].state_changed = 1U; - } else { - msc->unit[msc->cur_lun].state_changed = 0U; - } - - msc->unit[msc->cur_lun].state = MSC_REQUEST_SENSE; - msc->unit[msc->cur_lun].error = MSC_NOT_READY; - msc->unit[msc->cur_lun].prev_ready_state = USBH_FAIL; - } else { - if (USBH_UNRECOVERED_ERROR == ready_status) { - msc->unit[msc->cur_lun].state = MSC_IDLE; - msc->unit[msc->cur_lun].error = MSC_ERROR; - } - } - break; - - case MSC_READ_CAPACITY10: - /* issue READ_CAPACITY10 SCSI command */ - scsi_status = usbh_msc_read_capacity10(uhost, msc->cur_lun, &msc->unit[msc->cur_lun].capacity); - - if (USBH_OK == scsi_status) { - if (1U == msc->unit[msc->cur_lun].state_changed) { - } - msc->unit[msc->cur_lun].state = MSC_IDLE; - msc->unit[msc->cur_lun].error = MSC_OK; - msc->cur_lun ++; - } else if (USBH_FAIL == scsi_status) { - msc->unit[msc->cur_lun].state = MSC_REQUEST_SENSE; - } else { - if (USBH_UNRECOVERED_ERROR == scsi_status) { - msc->unit[msc->cur_lun].state = MSC_IDLE; - msc->unit[msc->cur_lun].error = MSC_ERROR; - } - } - break; - - case MSC_REQUEST_SENSE: - /* issue RequestSense SCSI command for receiving error code */ - scsi_status = usbh_msc_request_sense (uhost, msc->cur_lun, &msc->unit[msc->cur_lun].sense); - if (USBH_OK == scsi_status) { - if ((msc->unit[msc->cur_lun].sense.SenseKey == UNIT_ATTENTION) || (msc->unit[msc->cur_lun].sense.SenseKey == NOT_READY)) { - if ((uhost->control.timer - msc->timer) < 10000U) { - msc->unit[msc->cur_lun].state = MSC_TEST_UNIT_READY; - break; - } - } - - msc->unit[msc->cur_lun].state = MSC_IDLE; - msc->cur_lun++; - } else if (USBH_FAIL == scsi_status) { - msc->unit[msc->cur_lun].state = MSC_UNRECOVERED_ERROR; - } else { - if (MSC_UNRECOVERED_ERROR == scsi_status) { - msc->unit[msc->cur_lun].state = MSC_IDLE; - msc->unit[msc->cur_lun].error = MSC_ERROR; - } - } - break; - - case MSC_UNRECOVERED_ERROR: - msc->cur_lun ++; - break; - - default: - break; - } - } else { - msc->cur_lun = 0U; - msc->state = MSC_IDLE; - } - break; - - case MSC_IDLE: - uhost->usr_cb->dev_user_app(); - status = USBH_OK; - break; - - default: - break; - } - - return status; -} - -/*! - \brief get max lun of the mass storage device - \param[in] uhost: pointer to USB host - \param[in] maxlun: pointer to max lun - \param[out] none - \retval operation status -*/ -static usbh_status usbh_msc_maxlun_get (usbh_host *uhost, uint8_t *maxlun) -{ - usbh_status status = USBH_BUSY; - - if (uhost->control.ctl_state == CTL_IDLE) { - uhost->control.setup.req = (usb_req) { - .bmRequestType = USB_TRX_IN | USB_REQTYPE_CLASS | USB_RECPTYPE_ITF, - .bRequest = BBB_GET_MAX_LUN, - .wValue = 0U, - .wIndex = 0U, - .wLength = 1U - }; - - usbh_ctlstate_config (uhost, maxlun, 1U); - } - - status = usbh_ctl_handler (uhost); - - return status; -} - -/*! - \brief get max lun of the mass storage device - \param[in] uhost: pointer to USB host - \param[in] lun: logic unit number - \param[out] none - \retval operation status -*/ -static usbh_status usbh_msc_rdwr_process(usbh_host *uhost, uint8_t lun) -{ - usbh_status error = USBH_BUSY; - usbh_status scsi_status = USBH_BUSY; - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - /* switch msc req state machine */ - switch (msc->unit[lun].state) { - case MSC_READ: - scsi_status = usbh_msc_read10(uhost, lun, NULL, 0U, 0U); - - if (USBH_OK == scsi_status) { - msc->unit[lun].state = MSC_IDLE; - error = USBH_OK; - } else if (USBH_FAIL == scsi_status) { - msc->unit[lun].state = MSC_REQUEST_SENSE; - } else { - if (USBH_UNRECOVERED_ERROR == scsi_status) { - msc->unit[lun].state = MSC_UNRECOVERED_ERROR; - error = USBH_FAIL; - } - } - break; - - case MSC_WRITE: - scsi_status = usbh_msc_write10(uhost, lun, NULL, 0U, 0U); - - if (USBH_OK == scsi_status) { - msc->unit[lun].state = MSC_IDLE; - error = USBH_OK; - } else if(USBH_FAIL == scsi_status) { - msc->unit[lun].state = MSC_REQUEST_SENSE; - } else { - if (USBH_UNRECOVERED_ERROR == scsi_status) { - msc->unit[lun].state = MSC_UNRECOVERED_ERROR; - error = USBH_FAIL; - } - } - break; - - case MSC_REQUEST_SENSE: - scsi_status = usbh_msc_request_sense (uhost, lun, &msc->unit[lun].sense); - - if (USBH_OK == scsi_status) { - msc->unit[lun].state = MSC_IDLE; - msc->unit[lun].error = MSC_ERROR; - - error = USBH_FAIL; - } - - if (USBH_FAIL == scsi_status) { - } else { - if (USBH_UNRECOVERED_ERROR == scsi_status) { - msc->unit[lun].state = MSC_UNRECOVERED_ERROR; - error = USBH_FAIL; - } - } - break; - - default: - break; - } - - return error; -} - -/*! - \brief get lun information - \param[in] uhost: pointer to USB host - \param[in] lun: logic unit number - \param[in] info: pointer to lun information - \param[out] none - \retval operation status -*/ -usbh_status usbh_msc_lun_info_get (usbh_host *uhost, uint8_t lun, msc_lun *info) -{ - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - if (HOST_CLASS_HANDLER == uhost->cur_state) { - memcpy(info, &msc->unit[lun], sizeof(msc_lun)); - - return USBH_OK; - } else { - return USBH_FAIL; - } -} - -/*! - \brief handle msc read operation - \param[in] uhost: pointer to USB host - \param[in] lun: logic unit number - \param[in] address: data address - \param[in] pbuf: pointer to data buffer - \param[in] length: buffer length - \param[out] none - \retval operation status -*/ -usbh_status usbh_msc_read (usbh_host *uhost, - uint8_t lun, - uint32_t address, - uint8_t *pbuf, - uint32_t length) -{ - uint32_t timeout = 0U; - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - usb_core_driver *udev = (usb_core_driver *)uhost->data; - - if ((0U == udev->host.connect_status) || - (HOST_CLASS_HANDLER != uhost->cur_state) || - (MSC_IDLE != msc->unit[lun].state)) { - return USBH_FAIL; - } - - msc->state = MSC_READ; - msc->unit[lun].state = MSC_READ; - msc->rw_lun = lun; - - usbh_msc_read10(uhost, lun, pbuf, address, length); - - timeout = uhost->control.timer; - - while (USBH_BUSY == usbh_msc_rdwr_process(uhost, lun)) { - if(uhost->control.timer < timeout) - timeout = 0; - if (((uhost->control.timer - timeout) > (1000U * length)) || (0U == udev->host.connect_status)) { - msc->state = MSC_IDLE; - return USBH_FAIL; - } - } - - msc->state = MSC_IDLE; - - return USBH_OK; -} - -/*! - \brief handle msc write operation - \param[in] uhost: pointer to USB host - \param[in] lun: logic unit number - \param[in] address: data address - \param[in] pbuf: pointer to data buffer - \param[in] length: buffer length - \param[out] none - \retval operation status -*/ -usbh_status usbh_msc_write (usbh_host *uhost, - uint8_t lun, - uint32_t address, - uint8_t *pbuf, - uint32_t length) -{ - uint32_t timeout = 0U; - usb_core_driver *udev = (usb_core_driver *)uhost->data; - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - if ((0U == udev->host.connect_status) || - (HOST_CLASS_HANDLER != uhost->cur_state) || - (MSC_IDLE != msc->unit[lun].state)) { - return USBH_FAIL; - } - - msc->state = MSC_WRITE; - msc->unit[lun].state = MSC_WRITE; - msc->rw_lun = lun; - - usbh_msc_write10(uhost, lun, pbuf, address, length); - - timeout = uhost->control.timer; - - while (USBH_BUSY == usbh_msc_rdwr_process(uhost, lun)) { - if (((uhost->control.timer - timeout) > (1000U * length)) || (0U == udev->host.connect_status)) { - msc->state = MSC_IDLE; - return USBH_FAIL; - } - } - - msc->state = MSC_IDLE; - - return USBH_OK; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_core.h b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_core.h deleted file mode 100644 index bdf6200b26..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_core.h +++ /dev/null @@ -1,124 +0,0 @@ -/*! - \file usbh_core.h - \brief header file for the usbh_core.c - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBH_MSC_CORE_H -#define __USBH_MSC_CORE_H - -#include "gdusb_msc.h" -#include "usbh_msc_scsi.h" -#include "usbh_msc_bbb.h" - -#define MSC_MAX_SUPPORTED_LUN 2U - -typedef enum -{ - MSC_INIT = 0U, - MSC_IDLE, - MSC_TEST_UNIT_READY, - MSC_READ_CAPACITY10, - MSC_READ_INQUIRY, - MSC_REQUEST_SENSE, - MSC_READ, - MSC_WRITE, - MSC_UNRECOVERED_ERROR, - MSC_PERIODIC_CHECK, -} msc_state; - -typedef enum -{ - MSC_OK, - MSC_NOT_READY, - MSC_ERROR, -} msc_error; - -typedef enum -{ - MSC_REQ_IDLE = 0U, - MSC_REQ_RESET, - MSC_REQ_GET_MAX_LUN, - MSC_REQ_ERROR, -} msc_req_state; - -/* Structure for LUN */ -typedef struct -{ - msc_state state; - msc_error error; - msc_scsi_sense sense; - scsi_capacity capacity; - scsi_std_inquiry_data inquiry; - usbh_status prev_ready_state; - uint8_t state_changed; -} msc_lun; - -/* structure for MSC process */ -typedef struct _msc_process -{ - uint8_t pipe_in; - uint8_t pipe_out; - uint8_t ep_in; - uint8_t ep_out; - uint16_t ep_size_in; - uint16_t ep_size_out; - uint8_t cur_lun; - uint16_t rw_lun; - uint32_t max_lun; - msc_state state; - msc_error error; - msc_req_state req_state; - msc_req_state prev_req_state; - bot_handle bot; - msc_lun unit[MSC_MAX_SUPPORTED_LUN]; - uint32_t timer; -} usbh_msc_handler; - -extern usbh_class usbh_msc; - -/* function declarations */ -/* get msc logic unit information */ -usbh_status usbh_msc_lun_info_get (usbh_host *uhost, uint8_t lun, msc_lun *info); -/* msc read interface */ -usbh_status usbh_msc_read (usbh_host *uhost, - uint8_t lun, - uint32_t address, - uint8_t *pbuf, - uint32_t length); -/* msc write interface */ -usbh_status usbh_msc_write (usbh_host *uhost, - uint8_t lun, - uint32_t address, - uint8_t *pbuf, - uint32_t length); - -#endif /* __USBH_MSC_CORE_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_scsi.c b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_scsi.c deleted file mode 100644 index af7a9e134a..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_scsi.c +++ /dev/null @@ -1,400 +0,0 @@ -/*! - \file usbh_msc_scsi.c - \brief USB MSC SCSI commands implementing - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "usbh_msc_core.h" -#include "usbh_msc_scsi.h" -#include "usbh_msc_bbb.h" - -#include - -/*! - \brief send 'Inquiry' command to the device - \param[in] uhost: pointer to USB host handler - \param[in] lun: logic unit number - \param[in] inquiry: pointer to the inquiry structure - \param[out] none - \retval operation status -*/ -usbh_status usbh_msc_scsi_inquiry (usbh_host *uhost, uint8_t lun, scsi_std_inquiry_data *inquiry) -{ - usbh_status error = USBH_FAIL; - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - switch (msc->bot.cmd_state) { - case BOT_CMD_SEND: - /* prepare the CBW and relevant field*/ - msc->bot.cbw.field.dCBWDataTransferLength = STANDARD_INQUIRY_DATA_LEN; - msc->bot.cbw.field.bmCBWFlags = USB_TRX_IN; - msc->bot.cbw.field.bCBWCBLength = CBW_LENGTH; - - memset(msc->bot.cbw.field.CBWCB, 0U, CBW_LENGTH); - - msc->bot.cbw.field.CBWCB[0] = SCSI_INQUIRY; - msc->bot.cbw.field.CBWCB[1] = (lun << 5U); - msc->bot.cbw.field.CBWCB[4] = 0x24U; - - msc->bot.state = BOT_SEND_CBW; - msc->bot.cmd_state = BOT_CMD_WAIT; - msc->bot.pbuf = (uint8_t *)(void *)msc->bot.data; - error = USBH_BUSY; - break; - - case BOT_CMD_WAIT: - error = usbh_msc_bot_process(uhost, lun); - - if (USBH_OK == error) { - memset(inquiry, 0U, sizeof(scsi_std_inquiry_data)); - - /* assign inquiry data */ - inquiry->device_type = msc->bot.pbuf[0] & 0x1FU; - inquiry->peripheral_qualifier = msc->bot.pbuf[0] >> 5U; - - if (0x80U == ((uint32_t)msc->bot.pbuf[1] & 0x80U)) { - inquiry->removable_media = 1U; - } else { - inquiry->removable_media = 0U; - } - - memcpy (inquiry->vendor_id, &msc->bot.pbuf[8], 8U); - memcpy (inquiry->product_id, &msc->bot.pbuf[16], 16U); - memcpy (inquiry->revision_id, &msc->bot.pbuf[32], 4U); - } - break; - - default: - break; - } - - return error; -} - -/*! - \brief send 'Test unit ready' command to the device - \param[in] uhost: pointer to USB host handler - \param[in] lun: logic unit number - \param[out] none - \retval operation status -*/ -usbh_status usbh_msc_test_unitready (usbh_host *uhost, uint8_t lun) -{ - usbh_status status = USBH_FAIL; - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - - switch (msc->bot.cmd_state) { - case BOT_CMD_SEND: - /* prepare the CBW and relevant field */ - msc->bot.cbw.field.dCBWDataTransferLength = CBW_LENGTH_TEST_UNIT_READY; - msc->bot.cbw.field.bmCBWFlags = USB_TRX_OUT; - msc->bot.cbw.field.bCBWCBLength = CBW_LENGTH; - - memset(msc->bot.cbw.field.CBWCB, 0U, CBW_CB_LENGTH); - - msc->bot.cbw.field.CBWCB[0] = SCSI_TEST_UNIT_READY; - msc->bot.state = BOT_SEND_CBW; - msc->bot.cmd_state = BOT_CMD_WAIT; - - status = USBH_BUSY; - break; - - case BOT_CMD_WAIT: - status = usbh_msc_bot_process(uhost, lun); - break; - - default: - break; - } - - return status; -} - -/*! - \brief send the read capacity command to the device - \param[in] uhost: pointer to USB host handler - \param[in] lun: logic unit number - \param[in] capacity: pointer to SCSI capacity - \param[out] none - \retval operation status -*/ -usbh_status usbh_msc_read_capacity10 (usbh_host *uhost, uint8_t lun, scsi_capacity *capacity) -{ - usbh_status status = USBH_FAIL; - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - switch (msc->bot.cmd_state) { - case BOT_CMD_SEND: - /* prepare the CBW and relevant field */ - msc->bot.cbw.field.dCBWDataTransferLength = READ_CAPACITY10_DATA_LEN; - msc->bot.cbw.field.bmCBWFlags = USB_TRX_IN; - msc->bot.cbw.field.bCBWCBLength = CBW_LENGTH; - - memset(msc->bot.cbw.field.CBWCB, 0U, CBW_CB_LENGTH); - - msc->bot.cbw.field.CBWCB[0] = SCSI_READ_CAPACITY10; - msc->bot.state = BOT_SEND_CBW; - msc->bot.cmd_state = BOT_CMD_WAIT; - msc->bot.pbuf = (uint8_t *)(void *)msc->bot.data; - - status = USBH_BUSY; - break; - - case BOT_CMD_WAIT: - status = usbh_msc_bot_process(uhost, lun); - - if (USBH_OK == status) { - capacity->block_nbr = msc->bot.pbuf[3] | \ - ((uint32_t)msc->bot.pbuf[2] << 8U) | \ - ((uint32_t)msc->bot.pbuf[1] << 16U) | \ - ((uint32_t)msc->bot.pbuf[0] << 24U); - - capacity->block_size = (uint16_t)(msc->bot.pbuf[7] | ((uint32_t)msc->bot.pbuf[6] << 8U)); - } - break; - - default: - break; - } - - return status; -} - -/*! - \brief send the mode sense6 command to the device - \param[in] uhost: pointer to USB host handler - \param[in] lun: logic unit number - \param[out] none - \retval operation status -*/ -usbh_status usbh_msc_mode_sense6 (usbh_host *uhost, uint8_t lun) -{ - usbh_status status = USBH_FAIL; - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - - switch (msc->bot.cmd_state) { - case BOT_CMD_SEND: - /* prepare the CBW and relevant field */ - msc->bot.cbw.field.dCBWDataTransferLength = XFER_LEN_MODE_SENSE6; - msc->bot.cbw.field.bmCBWFlags = USB_TRX_IN; - msc->bot.cbw.field.bCBWCBLength = CBW_LENGTH; - - memset(msc->bot.cbw.field.CBWCB, 0U, CBW_CB_LENGTH); - - msc->bot.cbw.field.CBWCB[0] = SCSI_MODE_SENSE6; - msc->bot.cbw.field.CBWCB[2] = MODE_SENSE_PAGE_CONTROL_FIELD | MODE_SENSE_PAGE_CODE; - msc->bot.cbw.field.CBWCB[4] = XFER_LEN_MODE_SENSE6; - msc->bot.state = BOT_SEND_CBW; - msc->bot.cmd_state = BOT_CMD_WAIT; - msc->bot.pbuf = (uint8_t *)(void *)msc->bot.data; - - status = USBH_BUSY; - break; - - case BOT_CMD_WAIT: - status = usbh_msc_bot_process(uhost, lun); - - if (USBH_OK == status) { - if (msc->bot.data[2] & MASK_MODE_SENSE_WRITE_PROTECT) { - - } else { - - } - } - break; - - default: - break; - } - - - return status; -} - -/*! - \brief send the Request Sense command to the device - \param[in] uhost: pointer to USB host handler - \param[in] lun: logic unit number - \param[in] sense_data: pointer to sense data - \param[out] none - \retval operation status -*/ -usbh_status usbh_msc_request_sense (usbh_host *uhost, uint8_t lun, msc_scsi_sense *sense_data) -{ - usbh_status status = USBH_FAIL; - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - switch (msc->bot.cmd_state) { - case BOT_CMD_SEND: - /* prepare the CBW and relevant field */ - msc->bot.cbw.field.dCBWDataTransferLength = ALLOCATION_LENGTH_REQUEST_SENSE; - msc->bot.cbw.field.bmCBWFlags = USB_TRX_IN; - msc->bot.cbw.field.bCBWCBLength = CBW_LENGTH; - - memset(msc->bot.cbw.field.CBWCB, 0U, CBW_CB_LENGTH); - - msc->bot.cbw.field.CBWCB[0] = SCSI_REQUEST_SENSE; - msc->bot.cbw.field.CBWCB[1] = (lun << 5U); - msc->bot.cbw.field.CBWCB[4] = ALLOCATION_LENGTH_REQUEST_SENSE; - - msc->bot.state = BOT_SEND_CBW; - msc->bot.cmd_state = BOT_CMD_WAIT; - msc->bot.pbuf = (uint8_t *)(void *)msc->bot.data; - - status = USBH_BUSY; - break; - - case BOT_CMD_WAIT: - status = usbh_msc_bot_process(uhost, lun); - - if (status == USBH_OK) { - /* get sense data */ - sense_data->SenseKey = msc->bot.pbuf[2] & 0x0FU; - sense_data->ASC = msc->bot.pbuf[12]; - sense_data->ASCQ = msc->bot.pbuf[13]; - } - break; - - default: - break; - } - - return status; -} - -/*! - \brief send the write10 command to the device - \param[in] uhost: pointer to USB host handler - \param[in] lun: logic unit number - \param[in] data_buf: data buffer contains the data to write - \param[in] addr: address to which the data will be written - \param[in] sector_num: number of sector to be written - \param[out] none - \retval operation status -*/ -usbh_status usbh_msc_write10 (usbh_host *uhost, uint8_t lun, uint8_t *data_buf, uint32_t addr, uint32_t sector_num) -{ - usbh_status status = USBH_FAIL; - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - switch (msc->bot.cmd_state) { - case BOT_CMD_SEND: - msc->bot.cbw.field.dCBWDataTransferLength = sector_num * msc->unit[lun].capacity.block_size; - msc->bot.cbw.field.bmCBWFlags = USB_TRX_OUT; - msc->bot.cbw.field.bCBWCBLength = CBW_LENGTH; - - memset(msc->bot.cbw.field.CBWCB, 0U, CBW_CB_LENGTH); - - msc->bot.cbw.field.CBWCB[0] = SCSI_WRITE10; - - /* logical block address */ - msc->bot.cbw.field.CBWCB[2] = (((uint8_t*)&addr)[3]); - msc->bot.cbw.field.CBWCB[3] = (((uint8_t*)&addr)[2]); - msc->bot.cbw.field.CBWCB[4] = (((uint8_t*)&addr)[1]); - msc->bot.cbw.field.CBWCB[5] = (((uint8_t*)&addr)[0]); - - /* transfer length */ - msc->bot.cbw.field.CBWCB[7] = (((uint8_t *)§or_num)[1]); - msc->bot.cbw.field.CBWCB[8] = (((uint8_t *)§or_num)[0]); - - msc->bot.state = BOT_SEND_CBW; - msc->bot.cmd_state = BOT_CMD_WAIT; - msc->bot.pbuf = data_buf; - - status = USBH_BUSY; - break; - - case BOT_CMD_WAIT: - status = usbh_msc_bot_process(uhost, lun); - break; - - default: - break; - } - - return status; -} - -/*! - \brief send the read10 command to the device - \param[in] uhost: pointer to USB host handler - \param[in] lun: logic unit number - \param[in] data_buf: data buffer contains the data to write - \param[in] addr: address to which the data will be read - \param[in] sector_num: number of sector to be read - \param[out] none - \retval operation status -*/ -usbh_status usbh_msc_read10 (usbh_host *uhost, uint8_t lun, uint8_t *data_buf, uint32_t addr, uint32_t sector_num) -{ - usbh_status status = USBH_FAIL; - usbh_msc_handler *msc = (usbh_msc_handler *)uhost->active_class->class_data; - - switch (msc->bot.cmd_state) { - case BOT_CMD_SEND: - /* prepare the CBW and relevant field */ - msc->bot.cbw.field.dCBWDataTransferLength = sector_num * msc->unit[lun].capacity.block_size; - msc->bot.cbw.field.bmCBWFlags = USB_TRX_IN; - msc->bot.cbw.field.bCBWCBLength = CBW_LENGTH; - - memset(msc->bot.cbw.field.CBWCB, 0U, CBW_CB_LENGTH); - - msc->bot.cbw.field.CBWCB[0] = SCSI_READ10; - - /* logical block address */ - msc->bot.cbw.field.CBWCB[2] = (((uint8_t*)&addr)[3]); - msc->bot.cbw.field.CBWCB[3] = (((uint8_t*)&addr)[2]); - msc->bot.cbw.field.CBWCB[4] = (((uint8_t*)&addr)[1]); - msc->bot.cbw.field.CBWCB[5] = (((uint8_t*)&addr)[0]); - - /* transfer length */ - msc->bot.cbw.field.CBWCB[7] = (((uint8_t *)§or_num)[1]); - msc->bot.cbw.field.CBWCB[8] = (((uint8_t *)§or_num)[0]); - - msc->bot.state = BOT_SEND_CBW; - msc->bot.cmd_state = BOT_CMD_WAIT; - msc->bot.pbuf = data_buf; - - status = USBH_BUSY; - break; - - case BOT_CMD_WAIT: - status = usbh_msc_bot_process(uhost, lun); - break; - - default: - break; - } - - return status; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_scsi.h b/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_scsi.h deleted file mode 100644 index 5c0b31cc79..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/usbh_msc_scsi.h +++ /dev/null @@ -1,100 +0,0 @@ -/*! - \file usbh_msc_scsi.h - \brief header file for usbh_msc_scsi.c - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBH_MSC_SCSI_H -#define __USBH_MSC_SCSI_H - -#include "msc_scsi.h" -#include "gdusbh_enum.h" - -/* capacity data */ -typedef struct -{ - uint32_t block_nbr; - uint16_t block_size; -} scsi_capacity; - -/* inquiry data */ -typedef struct -{ - uint8_t peripheral_qualifier; - uint8_t device_type; - uint8_t removable_media; - uint8_t vendor_id[9]; - uint8_t product_id[17]; - uint8_t revision_id[5]; -} scsi_std_inquiry_data; - -typedef struct -{ - uint32_t msc_capacity; - uint32_t msc_sense_key; - uint16_t msc_page_len; - uint8_t msc_write_protect; -}usbh_msc_parameter; - -#define DESC_REQUEST_SENSE 0x00U -#define ALLOCATION_LENGTH_REQUEST_SENSE 63U -#define XFER_LEN_MODE_SENSE6 63U - -#define MASK_MODE_SENSE_WRITE_PROTECT 0x80U -#define MODE_SENSE_PAGE_CONTROL_FIELD 0x00U -#define MODE_SENSE_PAGE_CODE 0x3FU -#define DISK_WRITE_PROTECTED 0x01U - -/* function declarations */ -/* send 'Inquiry' command to the device */ -usbh_status usbh_msc_scsi_inquiry (usbh_host *uhost, uint8_t lun, scsi_std_inquiry_data *inquiry); -/* send 'Test unit ready' command to the device */ -usbh_status usbh_msc_test_unitready (usbh_host *uhost, uint8_t lun); -/* send the read capacity command to the device */ -usbh_status usbh_msc_read_capacity10 (usbh_host *uhost, uint8_t lun, scsi_capacity *capacity); -/* send the mode sense6 command to the device */ -usbh_status usbh_msc_mode_sense6 (usbh_host *uhost, uint8_t lun); -/* send the Request Sense command to the device */ -usbh_status usbh_msc_request_sense (usbh_host *uhost, uint8_t lun, msc_scsi_sense *sense_data); -/* send the write10 command to the device */ -usbh_status usbh_msc_write10 (usbh_host *uhost, - uint8_t lun, - uint8_t *data_buf, - uint32_t addr, - uint32_t byte_num); -/* send the read10 command to the device */ -usbh_status usbh_msc_read10 (usbh_host *uhost, - uint8_t lun, - uint8_t *data_buf, - uint32_t addr, - uint32_t byte_num); - -#endif /* __USBH_MSC_SCSI_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_pipe.c b/Marlin/lib/GD32F4xx_usb_library/src/usbh_pipe.c deleted file mode 100644 index ba64624b39..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/usbh_pipe.c +++ /dev/null @@ -1,174 +0,0 @@ -/*! - \file usbh_pipe.c - \brief USB host mode pipe operation driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "gdusbh_pipe.h" - -/* local function prototypes ('static') */ -static uint16_t usbh_freepipe_get (usb_core_driver *udev); - -/*! - \brief create a pipe - \param[in] udev: pointer to USB core instance - \param[in] dev: USB device - \param[in] pp_num: pipe number - \param[in] ep_type: endpoint type - \param[in] ep_mpl: endpoint max packet length - \param[out] none - \retval operation status -*/ -uint8_t usbh_pipe_create (usb_core_driver *udev, - usb_dev_prop *dev, - uint8_t pp_num, - uint8_t ep_type, - uint16_t ep_mpl) -{ - usb_pipe *pp = &udev->host.pipe[pp_num]; - - pp->dev_addr = dev->addr; - pp->dev_speed = dev->speed; - pp->ep.type = ep_type; - pp->ep.mps = ep_mpl; - pp->ping = (uint8_t)(dev->speed == PORT_SPEED_HIGH); - - usb_pipe_init (udev, pp_num); - - return HC_OK; -} - -/*! - \brief modify a pipe - \param[in] udev: pointer to USB core instance - \param[in] pp_num: pipe number - \param[in] dev_addr: device address - \param[in] dev_speed: device speed - \param[in] ep_mpl: endpoint max packet length - \param[out] none - \retval operation status -*/ -uint8_t usbh_pipe_update (usb_core_driver *udev, - uint8_t pp_num, - uint8_t dev_addr, - uint32_t dev_speed, - uint16_t ep_mpl) -{ - usb_pipe *pp = &udev->host.pipe[pp_num]; - - if ((pp->dev_addr != dev_addr) && (dev_addr)) { - pp->dev_addr = dev_addr; - } - - if ((pp->dev_speed != dev_speed) && (dev_speed)) { - pp->dev_speed = dev_speed; - } - - if ((pp->ep.mps != ep_mpl) && (ep_mpl)) { - pp->ep.mps = ep_mpl; - } - - usb_pipe_init (udev, pp_num); - - return HC_OK; -} - -/*! - \brief allocate a new pipe - \param[in] udev: pointer to USB core instance - \param[in] ep_addr: endpoint address - \param[out] none - \retval operation status -*/ -uint8_t usbh_pipe_allocate (usb_core_driver *udev, uint8_t ep_addr) -{ - uint16_t pp_num = usbh_freepipe_get (udev); - - if (HC_ERROR != pp_num) { - udev->host.pipe[pp_num].in_used = 1U; - udev->host.pipe[pp_num].ep.dir = EP_DIR(ep_addr); - udev->host.pipe[pp_num].ep.num = EP_ID(ep_addr); - } - - return (uint8_t)pp_num; -} - -/*! - \brief free a pipe - \param[in] udev: pointer to USB core instance - \param[in] pp_num: pipe number - \param[out] none - \retval operation status -*/ -uint8_t usbh_pipe_free (usb_core_driver *udev, uint8_t pp_num) -{ - if (pp_num < HC_MAX) { - udev->host.pipe[pp_num].in_used = 0U; - } - - return USBH_OK; -} - -/*! - \brief delete all USB host pipe - \param[in] udev: pointer to USB core instance - \param[out] none - \retval operation status -*/ -uint8_t usbh_pipe_delete (usb_core_driver *udev) -{ - uint8_t pp_num = 0U; - - for (pp_num = 2U; pp_num < HC_MAX; pp_num++) { - udev->host.pipe[pp_num] = (usb_pipe) {0}; - } - - return USBH_OK; -} - -/*! - \brief get a free pipe number for allocation - \param[in] udev: pointer to USB core instance - \param[out] none - \retval operation status -*/ -static uint16_t usbh_freepipe_get (usb_core_driver *udev) -{ - uint8_t pp_num = 0U; - - for (pp_num = 0U; pp_num < HC_MAX; pp_num++) { - if (0U == udev->host.pipe[pp_num].in_used) { - return (uint16_t)pp_num; - } - } - - return HC_ERROR; -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_transc.c b/Marlin/lib/GD32F4xx_usb_library/src/usbh_transc.c deleted file mode 100644 index 38e27a1ac0..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/usbh_transc.c +++ /dev/null @@ -1,370 +0,0 @@ -/*! - \file usbh_transc.c - \brief USB host mode transactions driver - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "drv_usb_hw.h" -#include "gdusbh_pipe.h" -#include "usbh_transc.h" - -/* local function prototypes ('static') */ -static usb_urb_state usbh_urb_wait (usbh_host *uhost, uint8_t pp_num, uint32_t wait_time); -static void usbh_setup_transc (usbh_host *uhost); -static void usbh_data_in_transc (usbh_host *uhost); -static void usbh_data_out_transc (usbh_host *uhost); -static void usbh_status_in_transc (usbh_host *uhost); -static void usbh_status_out_transc (usbh_host *uhost); -static uint32_t usbh_request_submit (usb_core_driver *udev, uint8_t pp_num); - -/*! - \brief send the setup packet to the USB device - \param[in] udev: pointer to USB core instance - \param[in] buf: data buffer which will be sent to USB device - \param[in] pp_num: pipe number - \param[out] none - \retval operation status -*/ -usbh_status usbh_ctlsetup_send (usb_core_driver *udev, uint8_t *buf, uint8_t pp_num) -{ - usb_pipe *pp = &udev->host.pipe[pp_num]; - - pp->DPID = PIPE_DPID_SETUP; - pp->xfer_buf = buf; - pp->xfer_len = USB_SETUP_PACKET_LEN; - - return (usbh_status)usbh_request_submit (udev, pp_num); -} - -/*! - \brief send a data packet to the USB device - \param[in] udev: pointer to USB core instance - \param[in] buf: data buffer which will be sent to USB device - \param[in] pp_num: pipe number - \param[in] len: length of the data to be sent - \param[out] none - \retval operation status -*/ -usbh_status usbh_data_send (usb_core_driver *udev, uint8_t *buf, uint8_t pp_num, uint16_t len) -{ - usb_pipe *pp = &udev->host.pipe[pp_num]; - - pp->xfer_buf = buf; - pp->xfer_len = len; - - switch (pp->ep.type) { - case USB_EPTYPE_CTRL: - if (0U == len) { - pp->data_toggle_out = 1U; - } - - pp->DPID = PIPE_DPID[pp->data_toggle_out]; - break; - - case USB_EPTYPE_INTR: - pp->DPID = PIPE_DPID[pp->data_toggle_out]; - - pp->data_toggle_out ^= 1U; - break; - - case USB_EPTYPE_BULK: - pp->DPID = PIPE_DPID[pp->data_toggle_out]; - break; - - case USB_EPTYPE_ISOC: - pp->DPID = PIPE_DPID[0]; - break; - - default: - break; - } - - usbh_request_submit (udev, pp_num); - - return USBH_OK; -} - -/*! - \brief receive a data packet from the USB device - \param[in] udev: pointer to USB core instance - \param[in] buf: data buffer which will be received from USB device - \param[in] pp_num: pipe number - \param[in] len: length of the data to be received - \param[out] none - \retval operation status -*/ -usbh_status usbh_data_recev (usb_core_driver *udev, uint8_t *buf, uint8_t pp_num, uint16_t len) -{ - usb_pipe *pp = &udev->host.pipe[pp_num]; - - pp->xfer_buf = buf; - pp->xfer_len = len; - - switch (pp->ep.type) { - case USB_EPTYPE_CTRL: - pp->DPID = PIPE_DPID[1]; - break; - - case USB_EPTYPE_INTR: - pp->DPID = PIPE_DPID[pp->data_toggle_in]; - - /* Toggle DATA PID */ - pp->data_toggle_in ^= 1U; - break; - - case USB_EPTYPE_BULK: - pp->DPID = PIPE_DPID[pp->data_toggle_in]; - break; - - case USB_EPTYPE_ISOC: - pp->DPID = PIPE_DPID[0]; - break; - - default: - break; - } - - usbh_request_submit (udev, pp_num); - - return USBH_OK; -} - -/*! - \brief USB control transfer handler - \param[in] uhost: pointer to USB host - \param[out] none - \retval operation status -*/ -usbh_status usbh_ctl_handler (usbh_host *uhost) -{ - usbh_status status = USBH_BUSY; - - switch (uhost->control.ctl_state) { - case CTL_SETUP: - usbh_setup_transc (uhost); - break; - - case CTL_DATA_IN: - usbh_data_in_transc (uhost); - break; - - case CTL_DATA_OUT: - usbh_data_out_transc (uhost); - break; - - case CTL_STATUS_IN: - usbh_status_in_transc (uhost); - break; - - case CTL_STATUS_OUT: - usbh_status_out_transc (uhost); - break; - - case CTL_FINISH: - uhost->control.ctl_state = CTL_IDLE; - - status = USBH_OK; - break; - - case CTL_ERROR: - if (++uhost->control.error_count <= USBH_MAX_ERROR_COUNT) { - /* do the transmission again, starting from SETUP packet */ - uhost->control.ctl_state = CTL_SETUP; - } else { - status = USBH_FAIL; - } - break; - - default: - break; - } - - return status; -} - -/*! - \brief wait for USB URB(USB request block) state - \param[in] uhost: pointer to USB host - \param[in] pp_num: pipe number - \param[in] wait_time: wait time - \param[out] none - \retval USB URB state -*/ -static usb_urb_state usbh_urb_wait (usbh_host *uhost, uint8_t pp_num, uint32_t wait_time) -{ - usb_urb_state urb_status = GD_URB_IDLE; - - while (GD_URB_DONE != (urb_status = usbh_urbstate_get(uhost->data, pp_num))) { - if (GD_URB_NOTREADY == urb_status) { - break; - } else if (GD_URB_STALL == urb_status) { - uhost->control.ctl_state = CTL_SETUP; - break; - } else if (GD_URB_ERROR == urb_status) { - uhost->control.ctl_state = CTL_ERROR; - break; - } else if ((wait_time > 0U) && ((usb_curframe_get(uhost->data)- uhost->control.timer) > wait_time)) { - /* timeout for in transfer */ - uhost->control.ctl_state = CTL_ERROR; - break; - } else { - /* no operation, just wait */ - } - } - - return urb_status; -} - -/*! - \brief USB setup transaction - \param[in] uhost: pointer to USB host - \param[out] none - \retval none -*/ -static void usbh_setup_transc (usbh_host *uhost) -{ - /* send a SETUP packet */ - usbh_ctlsetup_send (uhost->data, - uhost->control.setup.data, - uhost->control.pipe_out_num); - - if (GD_URB_DONE == usbh_urb_wait (uhost, uhost->control.pipe_out_num, 0U)) { - uint8_t dir = (uhost->control.setup.req.bmRequestType & USB_TRX_MASK); - - if (uhost->control.setup.req.wLength) { - if (USB_TRX_IN == dir) { - uhost->control.ctl_state = CTL_DATA_IN; - } else { - uhost->control.ctl_state = CTL_DATA_OUT; - } - } else { - if (USB_TRX_IN == dir) { - uhost->control.ctl_state = CTL_STATUS_OUT; - } else { - uhost->control.ctl_state = CTL_STATUS_IN; - } - } - - /* set the delay timer to enable timeout for data stage completion */ - uhost->control.timer = (uint16_t)usb_curframe_get(uhost->data); - } -} - -/*! - \brief USB data IN transaction - \param[in] uhost: pointer to USB host - \param[out] none - \retval none -*/ -static void usbh_data_in_transc (usbh_host *uhost) -{ - usbh_data_recev (uhost->data, - uhost->control.buf, - uhost->control.pipe_in_num, - uhost->control.ctl_len); - - if (GD_URB_DONE == usbh_urb_wait (uhost, uhost->control.pipe_in_num, DATA_STAGE_TIMEOUT)) { - uhost->control.ctl_state = CTL_STATUS_OUT; - - uhost->control.timer = (uint16_t)usb_curframe_get(uhost->data); - } -} - -/*! - \brief USB data OUT transaction - \param[in] uhost: pointer to USB host - \param[out] none - \retval none -*/ -static void usbh_data_out_transc (usbh_host *uhost) -{ - usbh_pipe_toggle_set(uhost->data, uhost->control.pipe_out_num, 1U); - - usbh_data_send (uhost->data, - uhost->control.buf, - uhost->control.pipe_out_num, - uhost->control.ctl_len); - - if (GD_URB_DONE == usbh_urb_wait (uhost, uhost->control.pipe_out_num, DATA_STAGE_TIMEOUT)) { - uhost->control.ctl_state = CTL_STATUS_IN; - - uhost->control.timer = (uint16_t)usb_curframe_get(uhost->data); - } -} - -/*! - \brief USB status IN transaction - \param[in] uhost: pointer to USB host - \param[out] none - \retval none -*/ -static void usbh_status_in_transc (usbh_host *uhost) -{ - uint8_t pp_num = uhost->control.pipe_in_num; - - usbh_data_recev (uhost->data, NULL, pp_num, 0U); - - if (GD_URB_DONE == usbh_urb_wait (uhost, pp_num, NODATA_STAGE_TIMEOUT)) { - uhost->control.ctl_state = CTL_FINISH; - } -} - -/*! - \brief USB status OUT transaction - \param[in] uhost: pointer to USB host - \param[out] none - \retval none -*/ -static void usbh_status_out_transc (usbh_host *uhost) -{ - uint8_t pp_num = uhost->control.pipe_out_num; - - usbh_data_send (uhost->data, NULL, pp_num, 0U); - - if (GD_URB_DONE == usbh_urb_wait (uhost, pp_num, NODATA_STAGE_TIMEOUT)) { - uhost->control.ctl_state = CTL_FINISH; - } -} - -/*! - \brief prepare a pipe and start a transfer - \param[in] udev: pointer to USB core instance - \param[in] pp_num: pipe number - \param[out] none - \retval operation status -*/ -static uint32_t usbh_request_submit (usb_core_driver *udev, uint8_t pp_num) -{ - udev->host.pipe[pp_num].urb_state = GD_URB_IDLE; - udev->host.pipe[pp_num].xfer_count = 0U; - - return (uint32_t)usb_pipe_xfer (udev, pp_num); -} diff --git a/Marlin/lib/GD32F4xx_usb_library/src/usbh_transc.h b/Marlin/lib/GD32F4xx_usb_library/src/usbh_transc.h deleted file mode 100644 index 2a0b642219..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/usbh_transc.h +++ /dev/null @@ -1,51 +0,0 @@ -/*! - \file usbh_transc.h - \brief USB host mode transactions header file - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USBH_TRANSC_H -#define __USBH_TRANSC_H - -#include "gdusb_conf.h" -#include "gdusbh_core.h" - -/* function declarations */ -/* send the setup packet to the USB device */ -usbh_status usbh_ctlsetup_send (usb_core_driver *udev, uint8_t *buf, uint8_t pp_num); -/* send a data packet to the USB device */ -usbh_status usbh_data_send (usb_core_driver *udev, uint8_t *buf, uint8_t pp_num, uint16_t len); -/* receive a data packet from the USB device */ -usbh_status usbh_data_recev (usb_core_driver *udev, uint8_t *buf, uint8_t pp_num, uint16_t len); -/* USB control transfer handler */ -usbh_status usbh_ctl_handler (usbh_host *uhost); - -#endif /* __USBH_TRANSC_H */ diff --git a/Marlin/lib/GD32F4xx_usb_library/src/ustd/class/hid/usb_hid.h b/Marlin/lib/GD32F4xx_usb_library/src/ustd/class/hid/usb_hid.h deleted file mode 100644 index 63d2b08dd8..0000000000 --- a/Marlin/lib/GD32F4xx_usb_library/src/ustd/class/hid/usb_hid.h +++ /dev/null @@ -1,83 +0,0 @@ -/*! - \file usb_hid.h - \brief definitions for the USB HID class - - \version 2020-08-01, V3.0.0, firmware for GD32F4xx -*/ - -/* - Copyright (c) 2020, GigaDevice Semiconductor Inc. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#ifndef __USB_HID_H -#define __USB_HID_H - -#include "usb_ch9_std.h" - -#define USB_HID_CLASS 0x03U - -#define USB_DESCTYPE_HID 0x21U -#define USB_DESCTYPE_REPORT 0x22U - -/* HID subclass code */ -#define USB_HID_SUBCLASS_BOOT_ITF 0x01U - -/* HID protocol codes */ -#define USB_HID_PROTOCOL_KEYBOARD 0x01U -#define USB_HID_PROTOCOL_MOUSE 0x02U - -#define GET_REPORT 0x01U -#define GET_IDLE 0x02U -#define GET_PROTOCOL 0x03U -#define SET_REPORT 0x09U -#define SET_IDLE 0x0AU -#define SET_PROTOCOL 0x0BU - -#pragma pack(1) - -typedef struct -{ - usb_desc_header header; /*!< regular descriptor header containing the descriptor's type and length */ - - uint16_t bcdHID; /*!< BCD encoded version that the HID descriptor and device complies to */ - uint8_t bCountryCode; /*!< country code of the localized device, or zero if universal */ - uint8_t bNumDescriptors; /*!< total number of HID report descriptors for the interface */ - uint8_t bDescriptorType; /*!< type of HID report */ - uint16_t wDescriptorLength; /*!< length of the associated HID report descriptor, in bytes */ -} usb_desc_hid; - -#pragma pack() - -typedef struct -{ - usb_desc_config config; - usb_desc_itf hid_itf; - usb_desc_hid hid_vendor; - usb_desc_ep hid_epin; - usb_desc_ep hid_epout; -}usb_hid_desc_config_set; - -#endif /* __USB_HID_H */ diff --git a/Marlin/lib/LodePNG/LICENSE b/Marlin/lib/LodePNG/LICENSE deleted file mode 100644 index a5fb0603d9..0000000000 --- a/Marlin/lib/LodePNG/LICENSE +++ /dev/null @@ -1,21 +0,0 @@ -Copyright (c) 2005-2018 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. - diff --git a/Marlin/lib/LodePNG/Makefile b/Marlin/lib/LodePNG/Makefile deleted file mode 100644 index 78afa1ba58..0000000000 --- a/Marlin/lib/LodePNG/Makefile +++ /dev/null @@ -1,34 +0,0 @@ -# This makefile only makes the unit test, benchmark and pngdetail and showpng -# utilities. It does not make the PNG codec itself as shared or static library. -# That is because: -# LodePNG itself has only 1 source file (lodepng.cpp, can be renamed to -# lodepng.c) and is intended to be included as source file in other projects and -# their build system directly. - - -CC ?= gcc -CXX ?= g++ - -override CFLAGS := -W -Wall -Wextra -ansi -pedantic -O3 -Wno-unused-function $(CFLAGS) -override CXXFLAGS := -W -Wall -Wextra -ansi -pedantic -O3 $(CXXFLAGS) - -all: unittest benchmark pngdetail showpng - -%.o: %.cpp - @mkdir -p `dirname $@` - $(CXX) -I ./ $(CXXFLAGS) -c $< -o $@ - -unittest: lodepng.o lodepng_util.o lodepng_unittest.o - $(CXX) $^ $(CXXFLAGS) -o $@ - -benchmark: lodepng.o lodepng_benchmark.o - $(CXX) $^ $(CXXFLAGS) -lSDL2 -o $@ - -pngdetail: lodepng.o lodepng_util.o pngdetail.o - $(CXX) $^ $(CXXFLAGS) -o $@ - -showpng: lodepng.o examples/example_sdl.o - $(CXX) -I ./ $^ $(CXXFLAGS) -lSDL2 -o $@ - -clean: - rm -f unittest benchmark pngdetail showpng lodepng_unittest.o lodepng_benchmark.o lodepng.o lodepng_util.o pngdetail.o examples/example_sdl.o diff --git a/Marlin/lib/LodePNG/README.md b/Marlin/lib/LodePNG/README.md deleted file mode 100644 index b50f83795e..0000000000 --- a/Marlin/lib/LodePNG/README.md +++ /dev/null @@ -1,75 +0,0 @@ -LodePNG -------- - -PNG encoder and decoder in C and C++, without dependencies - -Home page: http://lodev.org/lodepng/ - -### Documentation - -Detailed documentation is included in a large comment in the second half of the -header file `lodepng.h`. - -Source code examples using LodePNG can be found in the examples directory. - -An FAQ can be found on http://lodev.org/lodepng/ - -### Building - -Only two files are needed to encode and decode PNGs: - -* `lodepng.cpp` (or renamed to `lodepng.c`) -* `lodepng.h` - -All other files are just source code examples, tests, misc utilities, etc..., -which are normally not needed in projects using this. - -You can include the files directly in your project's source tree and its -makefile, IDE project file, or other build system. No library is necessary. - -In addition to C++, LodePNG also supports ANSI C (C89), with all the same -functionality: C++ only adds extra convenience API. - -For C, rename `lodepng.cpp` to `lodepng.c`. - -Consider using git submodules to include LodePNG in your project. - -### Compiling in C++ - -If you have a hypothetical `your_program.cpp` that #includes and uses `lodepng.h`, -you can build as follows: - -`g++ your_program.cpp lodepng.cpp -Wall -Wextra -pedantic -ansi -O3` - -or: - -`clang++ your_program.cpp lodepng.cpp -Wall -Wextra -pedantic -ansi -O3` - -This shows compiler flags it was designed for, but normally one would use the -compiler or build system of their project instead of those commands, and other -C++ compilers are supported. - -### Compiling in C - -Rename `lodepng.cpp` to `lodepng.c` for this. - -If you have a hypothetical your_program.c that #includes and uses lodepng.h, -you can build as follows: - -`gcc your_program.c lodepng.c -ansi -pedantic -Wall -Wextra -O3` - -or - -`clang your_program.c lodepng.c -ansi -pedantic -Wall -Wextra -O3` - -This shows compiler flags it was designed for, but normally one would use the -compiler or build system of their project instead of those commands, and other -C compilers are supported. - -### Makefile - -There is a Makefile, but this is not intended for using LodePNG itself since the -way to use that one is to include its source files in your program. The Makefile -only builds development and testing utilities. It can be used as follows: - -`make -j` diff --git a/Marlin/lib/LodePNG/examples/example_4bit_palette.cpp b/Marlin/lib/LodePNG/examples/example_4bit_palette.cpp deleted file mode 100644 index 1490ddfc9a..0000000000 --- a/Marlin/lib/LodePNG/examples/example_4bit_palette.cpp +++ /dev/null @@ -1,101 +0,0 @@ -/* -LodePNG Examples - -Copyright (c) 2005-2012 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -//g++ lodepng.cpp example_4bit_palette.cpp -ansi -pedantic -Wall -Wextra -O3 - - - -/* -LodePNG 4-bit palette example. -This example encodes a 511x511 PNG with a 4-bit palette. -Both image and palette contain sine waves, resulting in a sort of plasma. -The 511 (rather than power of two 512) size is of course chosen on purpose to -confirm that scanlines not filling up an entire byte size are working. - -NOTE: a PNG image with a translucent palette is perfectly valid. However there -exist some programs that cannot correctly read those, including, surprisingly, -Gimp 2.8 image editor (until you set mode to RGB). -*/ - -#include -#include - -#include "lodepng.h" - -int main(int argc, char *argv[]) { - //check if user gave a filename - if(argc < 2) { - std::cout << "please provide a filename to save to" << std::endl; - return 0; - } - - //create encoder and set settings and info (optional) - lodepng::State state; - - //generate palette - for(int i = 0; i < 16; i++) { - unsigned char r = 127 * (1 + std::sin(5 * i * 6.28318531 / 16)); - unsigned char g = 127 * (1 + std::sin(2 * i * 6.28318531 / 16)); - unsigned char b = 127 * (1 + std::sin(3 * i * 6.28318531 / 16)); - unsigned char a = 63 * (1 + std::sin(8 * i * 6.28318531 / 16)) + 128; /*alpha channel of the palette (tRNS chunk)*/ - - //palette must be added both to input and output color mode, because in this - //sample both the raw image and the expected PNG image use that palette. - lodepng_palette_add(&state.info_png.color, r, g, b, a); - lodepng_palette_add(&state.info_raw, r, g, b, a); - } - - //both the raw image and the encoded image must get colorType 3 (palette) - state.info_png.color.colortype = LCT_PALETTE; //if you comment this line, and create the above palette in info_raw instead, then you get the same image in a RGBA PNG. - state.info_png.color.bitdepth = 4; - state.info_raw.colortype = LCT_PALETTE; - state.info_raw.bitdepth = 4; - state.encoder.auto_convert = 0; //we specify ourselves exactly what output PNG color mode we want - - //generate some image - const unsigned w = 511; - const unsigned h = 511; - std::vector image; - image.resize((w * h * 4 + 7) / 8, 0); - for(unsigned y = 0; y < h; y++) - for(unsigned x = 0; x < w; x++) { - size_t byte_index = (y * w + x) / 2; - bool byte_half = (y * w + x) % 2 == 1; - - int color = (int)(4 * ((1 + std::sin(2.0 * 6.28318531 * x / (double)w)) - + (1 + std::sin(2.0 * 6.28318531 * y / (double)h))) ); - - image[byte_index] |= (unsigned char)(color << (byte_half ? 0 : 4)); - } - - //encode and save - std::vector buffer; - unsigned error = lodepng::encode(buffer, image.empty() ? 0 : &image[0], w, h, state); - if(error) { - std::cout << "encoder error " << error << ": "<< lodepng_error_text(error) << std::endl; - return 0; - } - lodepng::save_file(buffer, argv[1]); -} diff --git a/Marlin/lib/LodePNG/examples/example_bmp2png.cpp b/Marlin/lib/LodePNG/examples/example_bmp2png.cpp deleted file mode 100644 index 19f77635b7..0000000000 --- a/Marlin/lib/LodePNG/examples/example_bmp2png.cpp +++ /dev/null @@ -1,125 +0,0 @@ -/* -LodePNG Examples - -Copyright (c) 2005-2010 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -/* -Load a BMP image and convert it to a PNG image. This example also shows how -to use other data with the same memory structure as BMP, such as the image -format native to win32, GDI (HBITMAP, BITMAPINFO, ...) often encountered if -you're programming for Windows in Visual Studio. - -This example only supports uncompressed 24-bit RGB or 32-bit RGBA bitmaps. -For other types of BMP's, use a full fledged BMP decoder, or convert the -bitmap to 24-bit or 32-bit format. - -NOTE: it overwrites the output file without warning if it exists! -*/ - -//g++ lodepng.cpp example_bmp2png.cpp -ansi -pedantic -Wall -Wextra -O3 - -#include "lodepng.h" - -#include - -//returns 0 if all went ok, non-0 if error -//output image is always given in RGBA (with alpha channel), even if it's a BMP without alpha channel -unsigned decodeBMP(std::vector& image, unsigned& w, unsigned& h, const std::vector& bmp) { - static const unsigned MINHEADER = 54; //minimum BMP header size - - if(bmp.size() < MINHEADER) return -1; - if(bmp[0] != 'B' || bmp[1] != 'M') return 1; //It's not a BMP file if it doesn't start with marker 'BM' - unsigned pixeloffset = bmp[10] + 256 * bmp[11]; //where the pixel data starts - //read width and height from BMP header - w = bmp[18] + bmp[19] * 256; - h = bmp[22] + bmp[23] * 256; - //read number of channels from BMP header - if(bmp[28] != 24 && bmp[28] != 32) return 2; //only 24-bit and 32-bit BMPs are supported. - unsigned numChannels = bmp[28] / 8; - - //The amount of scanline bytes is width of image times channels, with extra bytes added if needed - //to make it a multiple of 4 bytes. - unsigned scanlineBytes = w * numChannels; - if(scanlineBytes % 4 != 0) scanlineBytes = (scanlineBytes / 4) * 4 + 4; - - unsigned dataSize = scanlineBytes * h; - if(bmp.size() < dataSize + pixeloffset) return 3; //BMP file too small to contain all pixels - - image.resize(w * h * 4); - - /* - There are 3 differences between BMP and the raw image buffer for LodePNG: - -it's upside down - -it's in BGR instead of RGB format (or BRGA instead of RGBA) - -each scanline has padding bytes to make it a multiple of 4 if needed - The 2D for loop below does all these 3 conversions at once. - */ - for(unsigned y = 0; y < h; y++) - for(unsigned x = 0; x < w; x++) { - //pixel start byte position in the BMP - unsigned bmpos = pixeloffset + (h - y - 1) * scanlineBytes + numChannels * x; - //pixel start byte position in the new raw image - unsigned newpos = 4 * y * w + 4 * x; - if(numChannels == 3) { - image[newpos + 0] = bmp[bmpos + 2]; //R - image[newpos + 1] = bmp[bmpos + 1]; //G - image[newpos + 2] = bmp[bmpos + 0]; //B - image[newpos + 3] = 255; //A - } else { - image[newpos + 0] = bmp[bmpos + 2]; //R - image[newpos + 1] = bmp[bmpos + 1]; //G - image[newpos + 2] = bmp[bmpos + 0]; //B - image[newpos + 3] = bmp[bmpos + 3]; //A - } - } - return 0; -} - -int main(int argc, char *argv[]) { - if(argc < 3) { - std::cout << "Please provide input BMP and output PNG file names" << std::endl; - return 0; - } - - std::vector bmp; - lodepng::load_file(bmp, argv[1]); - std::vector image; - unsigned w, h; - unsigned error = decodeBMP(image, w, h, bmp); - - if(error) { - std::cout << "BMP decoding error " << error << std::endl; - return 0; - } - - std::vector png; - error = lodepng::encode(png, image, w, h); - - if(error) { - std::cout << "PNG encoding error " << error << ": " << lodepng_error_text(error) << std::endl; - return 0; - } - - lodepng::save_file(png, argv[2]); - -} diff --git a/Marlin/lib/LodePNG/examples/example_decode.c b/Marlin/lib/LodePNG/examples/example_decode.c deleted file mode 100644 index 86ff6f3627..0000000000 --- a/Marlin/lib/LodePNG/examples/example_decode.c +++ /dev/null @@ -1,109 +0,0 @@ -/* -LodePNG Examples - -Copyright (c) 2005-2012 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -#include "lodepng.h" - -#include -#include - -/* -3 ways to decode a PNG from a file to RGBA pixel data (and 2 in-memory ways). -*/ - -/* -Example 1 -Decode from disk to raw pixels with a single function call -*/ -void decodeOneStep(const char* filename) { - unsigned error; - unsigned char* image = 0; - unsigned width, height; - - error = lodepng_decode32_file(&image, &width, &height, filename); - if(error) printf("error %u: %s\n", error, lodepng_error_text(error)); - - /*use image here*/ - - free(image); -} - -/* -Example 2 -Load PNG file from disk to memory first, then decode to raw pixels in memory. -*/ -void decodeTwoSteps(const char* filename) { - unsigned error; - unsigned char* image = 0; - unsigned width, height; - unsigned char* png = 0; - size_t pngsize; - - error = lodepng_load_file(&png, &pngsize, filename); - if(!error) error = lodepng_decode32(&image, &width, &height, png, pngsize); - if(error) printf("error %u: %s\n", error, lodepng_error_text(error)); - - free(png); - - /*use image here*/ - - free(image); -} - -/* -Example 3 -Load PNG file from disk using a State, normally needed for more advanced usage. -*/ -void decodeWithState(const char* filename) { - unsigned error; - unsigned char* image = 0; - unsigned width, height; - unsigned char* png = 0; - size_t pngsize; - LodePNGState state; - - lodepng_state_init(&state); - /*optionally customize the state*/ - - error = lodepng_load_file(&png, &pngsize, filename); - if(!error) error = lodepng_decode(&image, &width, &height, &state, png, pngsize); - if(error) printf("error %u: %s\n", error, lodepng_error_text(error)); - - free(png); - - /*use image here*/ - /*state contains extra information about the PNG such as text chunks, ...*/ - - lodepng_state_cleanup(&state); - free(image); -} - -int main(int argc, char *argv[]) { - const char* filename = argc > 1 ? argv[1] : "test.png"; - - decodeOneStep(filename); - - return 0; -} - diff --git a/Marlin/lib/LodePNG/examples/example_decode.cpp b/Marlin/lib/LodePNG/examples/example_decode.cpp deleted file mode 100644 index 3a778408f3..0000000000 --- a/Marlin/lib/LodePNG/examples/example_decode.cpp +++ /dev/null @@ -1,91 +0,0 @@ -/* -LodePNG Examples - -Copyright (c) 2005-2012 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -#include "lodepng.h" -#include - -/* -3 ways to decode a PNG from a file to RGBA pixel data (and 2 in-memory ways). -*/ - -//g++ lodepng.cpp example_decode.cpp -ansi -pedantic -Wall -Wextra -O3 - - -//Example 1 -//Decode from disk to raw pixels with a single function call -void decodeOneStep(const char* filename) { - std::vector image; //the raw pixels - unsigned width, height; - - //decode - unsigned error = lodepng::decode(image, width, height, filename); - - //if there's an error, display it - if(error) std::cout << "decoder error " << error << ": " << lodepng_error_text(error) << std::endl; - - //the pixels are now in the vector "image", 4 bytes per pixel, ordered RGBARGBA..., use it as texture, draw it, ... -} - -//Example 2 -//Load PNG file from disk to memory first, then decode to raw pixels in memory. -void decodeTwoSteps(const char* filename) { - std::vector png; - std::vector image; //the raw pixels - unsigned width, height; - - //load and decode - unsigned error = lodepng::load_file(png, filename); - if(!error) error = lodepng::decode(image, width, height, png); - - //if there's an error, display it - if(error) std::cout << "decoder error " << error << ": " << lodepng_error_text(error) << std::endl; - - //the pixels are now in the vector "image", 4 bytes per pixel, ordered RGBARGBA..., use it as texture, draw it, ... -} - -//Example 3 -//Load PNG file from disk using a State, normally needed for more advanced usage. -void decodeWithState(const char* filename) { - std::vector png; - std::vector image; //the raw pixels - unsigned width, height; - lodepng::State state; //optionally customize this one - - unsigned error = lodepng::load_file(png, filename); //load the image file with given filename - if(!error) error = lodepng::decode(image, width, height, state, png); - - //if there's an error, display it - if(error) std::cout << "decoder error " << error << ": "<< lodepng_error_text(error) << std::endl; - - //the pixels are now in the vector "image", 4 bytes per pixel, ordered RGBARGBA..., use it as texture, draw it, ... - //State state contains extra information about the PNG such as text chunks, ... -} - -int main(int argc, char *argv[]) { - const char* filename = argc > 1 ? argv[1] : "test.png"; - - decodeOneStep(filename); -} - diff --git a/Marlin/lib/LodePNG/examples/example_encode.c b/Marlin/lib/LodePNG/examples/example_encode.c deleted file mode 100644 index 11149ee4a3..0000000000 --- a/Marlin/lib/LodePNG/examples/example_encode.c +++ /dev/null @@ -1,111 +0,0 @@ -/* -LodePNG Examples - -Copyright (c) 2005-2012 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -#include "lodepng.h" - -#include -#include - -/* -3 ways to encode a PNG from RGBA pixel data to a file (and 2 in-memory ways). -NOTE: these samples overwrite the file or test.png without warning! -*/ - -/* -Example 1 -Encode from raw pixels to disk with a single function call -The image argument has width * height RGBA pixels or width * height * 4 bytes -*/ -void encodeOneStep(const char* filename, const unsigned char* image, unsigned width, unsigned height) { - /*Encode the image*/ - unsigned error = lodepng_encode32_file(filename, image, width, height); - - /*if there's an error, display it*/ - if(error) printf("error %u: %s\n", error, lodepng_error_text(error)); -} - -/* -Example 2 -Encode from raw pixels to an in-memory PNG file first, then write it to disk -The image argument has width * height RGBA pixels or width * height * 4 bytes -*/ -void encodeTwoSteps(const char* filename, const unsigned char* image, unsigned width, unsigned height) { - unsigned char* png; - size_t pngsize; - - unsigned error = lodepng_encode32(&png, &pngsize, image, width, height); - if(!error) lodepng_save_file(png, pngsize, filename); - - /*if there's an error, display it*/ - if(error) printf("error %u: %s\n", error, lodepng_error_text(error)); - - free(png); -} - -/* -Example 3 -Save a PNG file to disk using a State, normally needed for more advanced usage. -The image argument has width * height RGBA pixels or width * height * 4 bytes -*/ -void encodeWithState(const char* filename, const unsigned char* image, unsigned width, unsigned height) { - unsigned error; - unsigned char* png; - size_t pngsize; - LodePNGState state; - - lodepng_state_init(&state); - /*optionally customize the state*/ - - error = lodepng_encode(&png, &pngsize, image, width, height, &state); - if(!error) lodepng_save_file(png, pngsize, filename); - - /*if there's an error, display it*/ - if(error) printf("error %u: %s\n", error, lodepng_error_text(error)); - - lodepng_state_cleanup(&state); - free(png); -} - -int main(int argc, char *argv[]) { - const char* filename = argc > 1 ? argv[1] : "test.png"; - - /*generate some image*/ - unsigned width = 512, height = 512; - unsigned char* image = malloc(width * height * 4); - unsigned x, y; - for(y = 0; y < height; y++) - for(x = 0; x < width; x++) { - image[4 * width * y + 4 * x + 0] = 255 * !(x & y); - image[4 * width * y + 4 * x + 1] = x ^ y; - image[4 * width * y + 4 * x + 2] = x | y; - image[4 * width * y + 4 * x + 3] = 255; - } - - /*run an example*/ - encodeOneStep(filename, image, width, height); - - free(image); - return 0; -} diff --git a/Marlin/lib/LodePNG/examples/example_encode.cpp b/Marlin/lib/LodePNG/examples/example_encode.cpp deleted file mode 100644 index fc1a0047b5..0000000000 --- a/Marlin/lib/LodePNG/examples/example_encode.cpp +++ /dev/null @@ -1,92 +0,0 @@ -/* -LodePNG Examples - -Copyright (c) 2005-2012 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -#include "lodepng.h" -#include - -/* -3 ways to encode a PNG from RGBA pixel data to a file (and 2 in-memory ways). -NOTE: these samples overwrite the file or test.png without warning! -*/ - -//g++ lodepng.cpp examples/example_encode.cpp -I./ -ansi -pedantic -Wall -Wextra -O3 - -//Example 1 -//Encode from raw pixels to disk with a single function call -//The image argument has width * height RGBA pixels or width * height * 4 bytes -void encodeOneStep(const char* filename, std::vector& image, unsigned width, unsigned height) { - //Encode the image - unsigned error = lodepng::encode(filename, image, width, height); - - //if there's an error, display it - if(error) std::cout << "encoder error " << error << ": "<< lodepng_error_text(error) << std::endl; -} - -//Example 2 -//Encode from raw pixels to an in-memory PNG file first, then write it to disk -//The image argument has width * height RGBA pixels or width * height * 4 bytes -void encodeTwoSteps(const char* filename, std::vector& image, unsigned width, unsigned height) { - std::vector png; - - unsigned error = lodepng::encode(png, image, width, height); - if(!error) lodepng::save_file(png, filename); - - //if there's an error, display it - if(error) std::cout << "encoder error " << error << ": "<< lodepng_error_text(error) << std::endl; -} - -//Example 3 -//Save a PNG file to disk using a State, normally needed for more advanced usage. -//The image argument has width * height RGBA pixels or width * height * 4 bytes -void encodeWithState(const char* filename, std::vector& image, unsigned width, unsigned height) { - std::vector png; - lodepng::State state; //optionally customize this one - - unsigned error = lodepng::encode(png, image, width, height, state); - if(!error) lodepng::save_file(png, filename); - - //if there's an error, display it - if(error) std::cout << "encoder error " << error << ": "<< lodepng_error_text(error) << std::endl; -} - -//saves image to filename given as argument. Warning, this overwrites the file without warning! -int main(int argc, char *argv[]) { - //NOTE: this sample will overwrite the file or test.png without warning! - const char* filename = argc > 1 ? argv[1] : "test.png"; - - //generate some image - unsigned width = 512, height = 512; - std::vector image; - image.resize(width * height * 4); - for(unsigned y = 0; y < height; y++) - for(unsigned x = 0; x < width; x++) { - image[4 * width * y + 4 * x + 0] = 255 * !(x & y); - image[4 * width * y + 4 * x + 1] = x ^ y; - image[4 * width * y + 4 * x + 2] = x | y; - image[4 * width * y + 4 * x + 3] = 255; - } - - encodeOneStep(filename, image, width, height); -} diff --git a/Marlin/lib/LodePNG/examples/example_encode_type.cpp b/Marlin/lib/LodePNG/examples/example_encode_type.cpp deleted file mode 100644 index c133b2417e..0000000000 --- a/Marlin/lib/LodePNG/examples/example_encode_type.cpp +++ /dev/null @@ -1,76 +0,0 @@ -/* -LodePNG Examples - -Copyright (c) 2005-2015 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -//g++ -I ./ lodepng.cpp examples/example_encode_type.cpp -ansi -pedantic -Wall -Wextra -O3 - - - -/* -This example shows how to enforce a certain color type of the PNG image when -encoding a PNG (because by default, LodePNG automatically chooses an optimal -color type, no matter what your raw data's color type is) -*/ - -#include -#include - -#include "lodepng.h" - -int main(int argc, char *argv[]) { - //check if user gave a filename - if(argc < 2) { - std::cout << "please provide a filename to save to" << std::endl; - return 0; - } - - //generate some image - const unsigned w = 256; - const unsigned h = 256; - std::vector image(w * h * 4); - for(unsigned y = 0; y < h; y++) - for(unsigned x = 0; x < w; x++) { - int index = y * w * 4 + x * 4; - image[index + 0] = 0; - image[index + 1] = 0; - image[index + 2] = 0; - image[index + 3] = 255; - } - - // we're going to encode with a state rather than a convenient function, because enforcing a color type requires setting options - lodepng::State state; - // input color type - state.info_raw.colortype = LCT_RGBA; - state.info_raw.bitdepth = 8; - // output color type - state.info_png.color.colortype = LCT_RGBA; - state.info_png.color.bitdepth = 8; - state.encoder.auto_convert = 0; // without this, it would ignore the output color type specified above and choose an optimal one instead - - //encode and save - std::vector buffer; - unsigned error = lodepng::encode(buffer, &image[0], w, h, state); - if(error) std::cout << "encoder error " << error << ": "<< lodepng_error_text(error) << std::endl; - else lodepng::save_file(buffer, argv[1]); -} diff --git a/Marlin/lib/LodePNG/examples/example_gzip.cpp b/Marlin/lib/LodePNG/examples/example_gzip.cpp deleted file mode 100644 index 60545aa38d..0000000000 --- a/Marlin/lib/LodePNG/examples/example_gzip.cpp +++ /dev/null @@ -1,91 +0,0 @@ -/* -LodePNG Examples - -Copyright (c) 2005-2012 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -#include "lodepng.h" -#include -#include - -/* -Encodes given file as a gzip file. - -See also the gzip specification, RFC 1952: http://www.gzip.org/zlib/rfc-gzip.html -*/ - -//g++ lodepng.cpp example_gzip.cpp -ansi -pedantic -Wall -Wextra -O3 - -//saves image to filename given as argument. Warning, this overwrites the file without warning! -int main(int argc, char *argv[]) { - if(argc < 2) { - std::cout << "Please provide input filename (output is input with .gz)" << std::endl; - return 0; - } - - //NOTE: this sample will overwrite the output file without warning! - std::string infilename = argv[1]; - std::string outfilename = infilename + ".gz"; - - std::vector in; - lodepng::load_file(in, infilename); - - size_t outsize = 10; - unsigned char* out = (unsigned char*)malloc(outsize); - out[0] = 31; //ID1 - out[1] = 139; //ID2 - out[2] = 8; //CM - out[3] = 0; //FLG - //MTIME - out[4] = 0; - out[5] = 0; - out[6] = 0; - out[7] = 0; - - out[8] = 2; //2 = slow, 4 = fast compression - out[9] = 255; //OS unknown - - lodepng_deflate(&out, &outsize, &in[0], in.size(), &lodepng_default_compress_settings); - - unsigned crc = lodepng_crc32(&in[0], in.size()); - - size_t footer = outsize; - - outsize += 8; - out = (unsigned char*)realloc(out, outsize); - - //CRC - out[footer + 0] = crc % 256; - out[footer + 1] = (crc >> 8) % 256; - out[footer + 2] = (crc >> 16) % 256; - out[footer + 3] = (crc >> 24) % 256; - - //ISIZE - out[footer + 4] = in.size() % 256; - out[footer + 5] = (in.size() >> 8) % 256; - out[footer + 6] = (in.size() >> 16) % 256; - out[footer + 7] = (in.size() >> 24) % 256; - - lodepng_save_file(out, outsize, outfilename.c_str()); - - free(out); -} diff --git a/Marlin/lib/LodePNG/examples/example_opengl.cpp b/Marlin/lib/LodePNG/examples/example_opengl.cpp deleted file mode 100644 index a4352ebdad..0000000000 --- a/Marlin/lib/LodePNG/examples/example_opengl.cpp +++ /dev/null @@ -1,153 +0,0 @@ -/* -LodePNG Examples - -Copyright (c) 2005-2012 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -//Compile command for Linux: -//g++ lodepng.cpp example_opengl.cpp -lSDL -lGL -O3 - -/* -LodePNG OpenGL example. Decodes a PNG and shows it in OpenGL. PNG filename -should be given as a command line parameter. - -It's written for the most basic old OpenGL version, and a correction for non -power of two textures had to be added. - -Only very few lines on the sample are about loading the PNG. Most of the -sample lines show a way to render a texture in 2D in OpenGL. - -No fancy 3D graphics are shown, it only shows the image statically. The sample -shows LodePNG can be used to load PNG images as textures in OpenGL. -*/ - -#include "lodepng.h" - -#include -#include -#include - -int main(int argc, char *argv[]) { - if(argc < 2) { - std::cout << "Please provide a filename." << std::endl; - return 1; - } - const char* filename = argv[1]; - - // Load file and decode image. - std::vector image; - unsigned width, height; - unsigned error = lodepng::decode(image, width, height, filename); - - // If there's an error, display it. - if(error != 0) { - std::cout << "error " << error << ": " << lodepng_error_text(error) << std::endl; - return 1; - } - - // Here the PNG is loaded in "image". All the rest of the code is SDL and OpenGL stuff. - - int screenw = width; - if(screenw > 1024) screenw = 1024; - int screenh = height; - if(screenh > 768) screenw = 768; - - if(SDL_Init(SDL_INIT_VIDEO) < 0) { - std::cout << "Error: Unable to init SDL: " << SDL_GetError() << std::endl; - return 1; - } - - SDL_Surface* scr = SDL_SetVideoMode(screenw, screenh, 32, SDL_OPENGL); - - if(scr == 0) { - std::cout << "Error: Unable to set video. SDL error message: " << SDL_GetError() << std::endl; - return 1; - } - - // The official code for "Setting Your Raster Position to a Pixel Location" (i.e. set up a camera for 2D screen) - glViewport(0, 0, screenw, screenh); - glMatrixMode(GL_PROJECTION); - glLoadIdentity(); - glOrtho(0, screenw, screenh, 0, -1, 1); - glMatrixMode(GL_MODELVIEW); - glLoadIdentity(); - - // Make some OpenGL properties better for 2D and enable alpha channel. - glDisable(GL_CULL_FACE); - glDisable(GL_DEPTH_TEST); - glBlendFunc(GL_SRC_ALPHA, GL_ONE_MINUS_SRC_ALPHA); - glEnable(GL_BLEND); - glDisable(GL_ALPHA_TEST); - - if(glGetError() != GL_NO_ERROR) { - std::cout << "Error initing GL" << std::endl; - return 1; - } - - // Texture size must be power of two for the primitive OpenGL version this is written for. Find next power of two. - size_t u2 = 1; while(u2 < width) u2 *= 2; - size_t v2 = 1; while(v2 < height) v2 *= 2; - // Ratio for power of two version compared to actual version, to render the non power of two image with proper size. - double u3 = (double)width / u2; - double v3 = (double)height / v2; - - // Make power of two version of the image. - std::vector image2(u2 * v2 * 4); - for(size_t y = 0; y < height; y++) - for(size_t x = 0; x < width; x++) - for(size_t c = 0; c < 4; c++) { - image2[4 * u2 * y + 4 * x + c] = image[4 * width * y + 4 * x + c]; - } - - // Enable the texture for OpenGL. - glEnable(GL_TEXTURE_2D); - glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_NEAREST); //GL_NEAREST = no smoothing - glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_NEAREST); - glTexImage2D(GL_TEXTURE_2D, 0, 4, u2, v2, 0, GL_RGBA, GL_UNSIGNED_BYTE, &image2[0]); - - bool done = false; - SDL_Event event = {0}; - glColor4ub(255, 255, 255, 255); - - while(!done) { - // Quit the loop when receiving quit event. - while(SDL_PollEvent(&event)) { - if(event.type == SDL_QUIT) done = 1; - } - - // Draw the texture on a quad, using u3 and v3 to correct non power of two texture size. - glBegin(GL_QUADS); - glTexCoord2d( 0, 0); glVertex2f( 0, 0); - glTexCoord2d(u3, 0); glVertex2f(width, 0); - glTexCoord2d(u3, v3); glVertex2f(width, height); - glTexCoord2d( 0, v3); glVertex2f( 0, height); - glEnd(); - - // Redraw and clear screen. - SDL_GL_SwapBuffers(); - glClearColor(0, 0, 0, 0); - glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT); - - //Limit frames per second, to not heat up the CPU and GPU too much. - SDL_Delay(16); - } -} diff --git a/Marlin/lib/LodePNG/examples/example_optimize_png.cpp b/Marlin/lib/LodePNG/examples/example_optimize_png.cpp deleted file mode 100644 index 4fa2ac1c69..0000000000 --- a/Marlin/lib/LodePNG/examples/example_optimize_png.cpp +++ /dev/null @@ -1,129 +0,0 @@ -/* -LodePNG Examples - -Copyright (c) 2005-2012 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -/* -This example saves the PNG with the best compression LodePNG can do, and with -unnecessary chunks removed. It tries out several combinations of settings and -keeps the smallest one. - -NOTE: This is not as good as a true PNG optimizer like optipng or pngcrush. -*/ - -//g++ lodepng.cpp example_optimize_png.cpp -ansi -pedantic -Wall -Wextra -O3 - -#include "lodepng.h" - -#include - -int main(int argc, char *argv[]) { - std::vector image; - unsigned w, h; - std::vector buffer; - unsigned error; - - //check if user gave a filename - if(argc < 3) { - std::cout << "please provide in and out filename" << std::endl; - return 0; - } - - lodepng::load_file(buffer, argv[1]); - error = lodepng::decode(image, w, h, buffer); - - if(error) { - std::cout << "decoding error " << error << ": " << lodepng_error_text(error) << std::endl; - return 0; - } - - size_t origsize = buffer.size(); - std::cout << "Original size: " << origsize << " (" << (origsize / 1024) << "K)" << std::endl; - buffer.clear(); - - //Now encode as hard as possible with several filter types and window sizes - - lodepng::State state; - state.encoder.filter_palette_zero = 0; //We try several filter types, including zero, allow trying them all on palette images too. - state.encoder.add_id = false; //Don't add LodePNG version chunk to save more bytes - state.encoder.text_compression = 1; //Not needed because we don't add text chunks, but this demonstrates another optimization setting - state.encoder.zlibsettings.nicematch = 258; //Set this to the max possible, otherwise it can hurt compression - state.encoder.zlibsettings.lazymatching = 1; //Definitely use lazy matching for better compression - state.encoder.zlibsettings.windowsize = 32768; //Use maximum possible window size for best compression - - size_t bestsize = 0; - bool inited = false; - - int beststrategy = 0; - LodePNGFilterStrategy strategies[4] = { LFS_ZERO, LFS_MINSUM, LFS_ENTROPY, LFS_BRUTE_FORCE }; - std::string strategynames[4] = { "LFS_ZERO", "LFS_MINSUM", "LFS_ENTROPY", "LFS_BRUTE_FORCE" }; - - // min match 3 allows all deflate lengths. min match 6 is similar to "Z_FILTERED" of zlib. - int minmatches[2] = { 3, 6 }; - int bestminmatch = 0; - - int autoconverts[2] = { 0, 1 }; - std::string autoconvertnames[2] = { "0", "1" }; - int bestautoconvert = 0; - - int bestblocktype = 0; - - // Try out all combinations of everything - for(int i = 0; i < 4; i++) //filter strategy - for(int j = 0; j < 2; j++) //min match - for(int k = 0; k < 2; k++) //block type (for small images only) - for(int l = 0; l < 2; l++) { //color convert strategy - if(bestsize > 3000 && (k > 0 || l > 0)) continue; /* these only make sense on small images */ - std::vector temp; - state.encoder.filter_strategy = strategies[i]; - state.encoder.zlibsettings.minmatch = minmatches[j]; - state.encoder.zlibsettings.btype = k == 0 ? 2 : 1; - state.encoder.auto_convert = autoconverts[l]; - error = lodepng::encode(temp, image, w, h, state); - - if(error) - { - std::cout << "encoding error " << error << ": " << lodepng_error_text(error) << std::endl; - return 0; - } - - if(!inited || temp.size() < bestsize) - { - bestsize = temp.size(); - beststrategy = i; - bestminmatch = state.encoder.zlibsettings.minmatch; - bestautoconvert = l; - bestblocktype = state.encoder.zlibsettings.btype; - temp.swap(buffer); - inited = true; - } - } - - std::cout << "Chosen filter strategy: " << strategynames[beststrategy] << std::endl; - std::cout << "Chosen min match: " << bestminmatch << std::endl; - std::cout << "Chosen block type: " << bestblocktype << std::endl; - std::cout << "Chosen auto convert: " << autoconvertnames[bestautoconvert] << std::endl; - - lodepng::save_file(buffer, argv[2]); - std::cout << "New size: " << buffer.size() << " (" << (buffer.size() / 1024) << "K)" << std::endl; -} diff --git a/Marlin/lib/LodePNG/examples/example_png2bmp.cpp b/Marlin/lib/LodePNG/examples/example_png2bmp.cpp deleted file mode 100644 index daa1ee62fd..0000000000 --- a/Marlin/lib/LodePNG/examples/example_png2bmp.cpp +++ /dev/null @@ -1,125 +0,0 @@ -/* -LodePNG Examples - -Copyright (c) 2005-2012 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -#include "lodepng.h" -#include - -/* -This example converts a PNG file to a BMP file. -NOTE: it overwrites the output file without warning if it exists! -Give the PNG and the BMP file names as command line arguments. -*/ - -/* -g++ lodepng.cpp example_png2bmp.cpp -Wall -Wextra -pedantic -ansi -lSDL -O3 -*/ - - - -//Input image must be RGB buffer (3 bytes per pixel), but you can easily make it -//support RGBA input and output by changing the inputChannels and/or outputChannels -//in the function to 4. -void encodeBMP(std::vector& bmp, const unsigned char* image, int w, int h) { - //3 bytes per pixel used for both input and output. - int inputChannels = 3; - int outputChannels = 3; - - //bytes 0-13 - bmp.push_back('B'); bmp.push_back('M'); //0: bfType - bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); //2: bfSize; size not yet known for now, filled in later. - bmp.push_back(0); bmp.push_back(0); //6: bfReserved1 - bmp.push_back(0); bmp.push_back(0); //8: bfReserved2 - bmp.push_back(54 % 256); bmp.push_back(54 / 256); bmp.push_back(0); bmp.push_back(0); //10: bfOffBits (54 header bytes) - - //bytes 14-53 - bmp.push_back(40); bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); //14: biSize - bmp.push_back(w % 256); bmp.push_back(w / 256); bmp.push_back(0); bmp.push_back(0); //18: biWidth - bmp.push_back(h % 256); bmp.push_back(h / 256); bmp.push_back(0); bmp.push_back(0); //22: biHeight - bmp.push_back(1); bmp.push_back(0); //26: biPlanes - bmp.push_back(outputChannels * 8); bmp.push_back(0); //28: biBitCount - bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); //30: biCompression - bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); //34: biSizeImage - bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); //38: biXPelsPerMeter - bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); //42: biYPelsPerMeter - bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); //46: biClrUsed - bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); bmp.push_back(0); //50: biClrImportant - - /* - Convert the input RGBRGBRGB pixel buffer to the BMP pixel buffer format. There are 3 differences with the input buffer: - -BMP stores the rows inversed, from bottom to top - -BMP stores the color channels in BGR instead of RGB order - -BMP requires each row to have a multiple of 4 bytes, so sometimes padding bytes are added between rows - */ - - int imagerowbytes = outputChannels * w; - imagerowbytes = imagerowbytes % 4 == 0 ? imagerowbytes : imagerowbytes + (4 - imagerowbytes % 4); //must be multiple of 4 - - for(int y = h - 1; y >= 0; y--) { //the rows are stored inversed in bmp - int c = 0; - for(int x = 0; x < imagerowbytes; x++) { - if(x < w * outputChannels) { - int inc = c; - //Convert RGB(A) into BGR(A) - if(c == 0) inc = 2; - else if(c == 2) inc = 0; - bmp.push_back(image[inputChannels * (w * y + x / outputChannels) + inc]); - } - else bmp.push_back(0); - c++; - if(c >= outputChannels) c = 0; - } - } - - // Fill in the size - bmp[2] = bmp.size() % 256; - bmp[3] = (bmp.size() / 256) % 256; - bmp[4] = (bmp.size() / 65536) % 256; - bmp[5] = bmp.size() / 16777216; -} - -int main(int argc, char *argv[]) { - if(argc < 3) { - std::cout << "Please provide input PNG and output BMP file names" << std::endl; - return 0; - } - const char* infile = argv[1]; - const char* outfile = argv[2]; - - - std::vector image; //the raw pixels - unsigned width, height; - - unsigned error = lodepng::decode(image, width, height, infile, LCT_RGB, 8); - - if(error) { - std::cout << "error " << error << ": " << lodepng_error_text(error) << std::endl; - return 0; - } - - std::vector bmp; - encodeBMP(bmp, &image[0], width, height); - - lodepng::save_file(bmp, outfile); -} diff --git a/Marlin/lib/LodePNG/examples/example_png_info.cpp b/Marlin/lib/LodePNG/examples/example_png_info.cpp deleted file mode 100644 index e321afee44..0000000000 --- a/Marlin/lib/LodePNG/examples/example_png_info.cpp +++ /dev/null @@ -1,313 +0,0 @@ -/* -LodePNG Examples - -Copyright (c) 2005-2012 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -//g++ lodepng.cpp example_png_info.cpp -ansi -pedantic -Wall -Wextra -lSDL -O3 - -/* -This sample shows a lot of information in the console about a PNG file, -including color type, text chunks, the names of all chunks in the image, -etc... -*/ - - -#include "lodepng.h" -#include - -/* -Display general info about the PNG. -*/ -void displayPNGInfo(const LodePNGInfo& info) { - const LodePNGColorMode& color = info.color; - - std::cout << "Compression method: " << info.compression_method << std::endl; - std::cout << "Filter method: " << info.filter_method << std::endl; - std::cout << "Interlace method: " << info.interlace_method << std::endl; - std::cout << "Color type: " << color.colortype << std::endl; - std::cout << "Bit depth: " << color.bitdepth << std::endl; - std::cout << "Bits per pixel: " << lodepng_get_bpp(&color) << std::endl; - std::cout << "Channels per pixel: " << lodepng_get_channels(&color) << std::endl; - std::cout << "Is greyscale type: " << lodepng_is_greyscale_type(&color) << std::endl; - std::cout << "Can have alpha: " << lodepng_can_have_alpha(&color) << std::endl; - std::cout << "Palette size: " << color.palettesize << std::endl; - std::cout << "Has color key: " << color.key_defined << std::endl; - if(color.key_defined) { - std::cout << "Color key r: " << color.key_r << std::endl; - std::cout << "Color key g: " << color.key_g << std::endl; - std::cout << "Color key b: " << color.key_b << std::endl; - } - std::cout << "Texts: " << info.text_num << std::endl; - for(size_t i = 0; i < info.text_num; i++) { - std::cout << "Text: " << info.text_keys[i] << ": " << info.text_strings[i] << std::endl << std::endl; - } - std::cout << "International texts: " << info.itext_num << std::endl; - for(size_t i = 0; i < info.itext_num; i++) { - std::cout << "Text: " - << info.itext_keys[i] << ", " - << info.itext_langtags[i] << ", " - << info.itext_transkeys[i] << ": " - << info.itext_strings[i] << std::endl << std::endl; - } - std::cout << "Time defined: " << info.time_defined << std::endl; - if(info.time_defined) { - const LodePNGTime& time = info.time; - std::cout << "year: " << time.year << std::endl; - std::cout << "month: " << time.month << std::endl; - std::cout << "day: " << time.day << std::endl; - std::cout << "hour: " << time.hour << std::endl; - std::cout << "minute: " << time.minute << std::endl; - std::cout << "second: " << time.second << std::endl; - } - std::cout << "Physics defined: " << info.phys_defined << std::endl; - if(info.phys_defined) { - std::cout << "physics X: " << info.phys_x << std::endl; - std::cout << "physics Y: " << info.phys_y << std::endl; - std::cout << "physics unit: " << info.phys_unit << std::endl; - } -} - - -/* -Display the names and sizes of all chunks in the PNG file. -*/ -void displayChunkNames(const std::vector& buffer) { - // Listing chunks is based on the original file, not the decoded png info. - const unsigned char *chunk, *end; - end = &buffer.back() + 1; - chunk = &buffer.front() + 8; - - std::cout << std::endl << "Chunks:" << std::endl; - std::cout << " type: length(s)"; - std::string last_type; - while(chunk < end && end - chunk >= 8) { - char type[5]; - lodepng_chunk_type(type, chunk); - if(std::string(type).size() != 4) { - std::cout << "this is probably not a PNG" << std::endl; - return; - } - - if(last_type != type) { - std::cout << std::endl; - std::cout << " " << type << ": "; - } - last_type = type; - - std::cout << lodepng_chunk_length(chunk) << ", "; - - chunk = lodepng_chunk_next_const(chunk, end); - } - std::cout << std::endl; -} - - -/* -Show ASCII art preview of the image -*/ -void displayAsciiArt(const std::vector& image, unsigned w, unsigned h) { - if(w > 0 && h > 0) { - std::cout << std::endl << "ASCII Art Preview: " << std::endl; - unsigned w2 = 48; - if(w < w2) w2 = w; - unsigned h2 = h * w2 / w; - h2 = (h2 * 2) / 3; //compensate for non-square characters in terminal - if(h2 > (w2 * 2)) h2 = w2 * 2; //avoid too large output - - std::cout << '+'; - for(unsigned x = 0; x < w2; x++) std::cout << '-'; - std::cout << '+' << std::endl; - for(unsigned y = 0; y < h2; y++) { - std::cout << "|"; - for(unsigned x = 0; x < w2; x++) { - unsigned x2 = x * w / w2; - unsigned y2 = y * h / h2; - int r = image[y2 * w * 4 + x2 * 4 + 0]; - int g = image[y2 * w * 4 + x2 * 4 + 1]; - int b = image[y2 * w * 4 + x2 * 4 + 2]; - int a = image[y2 * w * 4 + x2 * 4 + 3]; - int lightness = ((r + g + b) / 3) * a / 255; - int min = (r < g && r < b) ? r : (g < b ? g : b); - int max = (r > g && r > b) ? r : (g > b ? g : b); - int saturation = max - min; - int letter = 'i'; //i for grey, or r,y,g,c,b,m for colors - if(saturation > 32) { - int h = lightness >= (min + max) / 2; - if(h) letter = (min == r ? 'c' : (min == g ? 'm' : 'y')); - else letter = (max == r ? 'r' : (max == g ? 'g' : 'b')); - } - int symbol = ' '; - if(lightness > 224) symbol = '@'; - else if(lightness > 128) symbol = letter - 32; - else if(lightness > 32) symbol = letter; - else if(lightness > 16) symbol = '.'; - std::cout << (char)symbol; - } - std::cout << "|"; - std::cout << std::endl; - } - std::cout << '+'; - for(unsigned x = 0; x < w2; x++) std::cout << '-'; - std::cout << '+' << std::endl; - } -} - - -/* -Show the filtertypes of each scanline in this PNG image. -*/ -void displayFilterTypes(const std::vector& buffer, bool ignore_checksums) { - //Get color type and interlace type - lodepng::State state; - if(ignore_checksums) { - state.decoder.ignore_crc = 1; - state.decoder.zlibsettings.ignore_adler32 = 1; - } - unsigned w, h; - unsigned error; - error = lodepng_inspect(&w, &h, &state, &buffer[0], buffer.size()); - - if(error) { - std::cout << "inspect error " << error << ": " << lodepng_error_text(error) << std::endl; - return; - } - - if(state.info_png.interlace_method == 1) { - std::cout << "showing filtertypes for interlaced PNG not supported by this example" << std::endl; - return; - } - - //Read literal data from all IDAT chunks - const unsigned char *chunk, *begin, *end; - end = &buffer.back() + 1; - begin = chunk = &buffer.front() + 8; - - std::vector zdata; - - while(chunk < end && end - chunk >= 8) { - char type[5]; - lodepng_chunk_type(type, chunk); - if(std::string(type).size() != 4) { - std::cout << "this is probably not a PNG" << std::endl; - return; - } - - if(std::string(type) == "IDAT") { - const unsigned char* cdata = lodepng_chunk_data_const(chunk); - unsigned clength = lodepng_chunk_length(chunk); - if(chunk + clength + 12 > end || clength > buffer.size() || chunk + clength + 12 < begin) { - std::cout << "invalid chunk length" << std::endl; - return; - } - - for(unsigned i = 0; i < clength; i++) { - zdata.push_back(cdata[i]); - } - } - - chunk = lodepng_chunk_next_const(chunk, end); - } - - //Decompress all IDAT data - std::vector data; - error = lodepng::decompress(data, &zdata[0], zdata.size()); - - if(error) { - std::cout << "decompress error " << error << ": " << lodepng_error_text(error) << std::endl; - return; - } - - //A line is 1 filter byte + all pixels - size_t linebytes = 1 + lodepng_get_raw_size(w, 1, &state.info_png.color); - - if(linebytes == 0) { - std::cout << "error: linebytes is 0" << std::endl; - return; - } - - std::cout << "Filter types: "; - for(size_t i = 0; i < data.size(); i += linebytes) { - std::cout << (int)(data[i]) << " "; - } - std::cout << std::endl; - -} - - -/* -Main -*/ -int main(int argc, char *argv[]) /*list the chunks*/ { - bool ignore_checksums = false; - std::string filename = ""; - for (int i = 1; i < argc; i++) { - if(std::string(argv[i]) == "--ignore_checksums") ignore_checksums = true; - else filename = argv[i]; - } - if(filename == "") { - std::cout << "Please provide a filename to preview" << std::endl; - return 0; - } - - std::vector buffer; - std::vector image; - unsigned w, h; - - lodepng::load_file(buffer, filename); //load the image file with given filename - - lodepng::State state; - if(ignore_checksums) { - state.decoder.ignore_crc = 1; - state.decoder.zlibsettings.ignore_adler32 = 1; - } - - unsigned error = lodepng::decode(image, w, h, state, buffer); - - if(error) { - std::cout << "decoder error " << error << ": " << lodepng_error_text(error) << std::endl; - return 0; - } - - std::cout << "Filesize: " << buffer.size() << " (" << buffer.size() / 1024 << "K)" << std::endl; - std::cout << "Width: " << w << std::endl; - std::cout << "Height: " << h << std::endl; - std::cout << "Num pixels: " << w * h << std::endl; - - if(w > 0 && h > 0) { - std::cout << "Top left pixel color:" - << " r: " << (int)image[0] - << " g: " << (int)image[1] - << " b: " << (int)image[2] - << " a: " << (int)image[3] - << std::endl; - } - - - displayPNGInfo(state.info_png); - std::cout << std::endl; - displayChunkNames(buffer); - std::cout << std::endl; - displayFilterTypes(buffer, ignore_checksums); - std::cout << std::endl; - displayAsciiArt(image, w, h); -} diff --git a/Marlin/lib/LodePNG/examples/example_reencode.cpp b/Marlin/lib/LodePNG/examples/example_reencode.cpp deleted file mode 100644 index d316bc91d0..0000000000 --- a/Marlin/lib/LodePNG/examples/example_reencode.cpp +++ /dev/null @@ -1,72 +0,0 @@ -/* -LodePNG Examples - -Copyright (c) 2005-2010 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -/* -LodePNG decode-encode: decodes the image, then encodes it again, with all the -same information, chunks, color types, etc... as the original image had. -This sample shows how LodePNG can be used for a conforming PNG editor. -*/ - -//g++ lodepng.cpp example_reencode.cpp -ansi -pedantic -Wall -Wextra -lSDL -O3 -o reencode - -#include "lodepng.h" - -#include - -int main(int argc, char *argv[]) { - std::vector image; - unsigned w, h; - std::vector buffer; - lodepng::State state; - unsigned error; - - //check if user gave a filename - if(argc < 3) { - std::cout << "please provide in and out filename" << std::endl; - return 0; - } - - state.decoder.color_convert = 0; - state.decoder.remember_unknown_chunks = 1; //make it reproduce even unknown chunks in the saved image - - lodepng::load_file(buffer, argv[1]); - error = lodepng::decode(image, w, h, state, buffer); - if(error) { - std::cout << "decoder error " << error << ": " << lodepng_error_text(error) << std::endl; - return 0; - } - - buffer.clear(); - - state.encoder.text_compression = 1; - - error = lodepng::encode(buffer, image, w, h, state); - if(error) { - std::cout << "encoder error " << error << ": " << lodepng_error_text(error) << std::endl; - return 0; - } - - lodepng::save_file(buffer, argv[2]); -} diff --git a/Marlin/lib/LodePNG/examples/example_sdl.c b/Marlin/lib/LodePNG/examples/example_sdl.c deleted file mode 100644 index 72686c2453..0000000000 --- a/Marlin/lib/LodePNG/examples/example_sdl.c +++ /dev/null @@ -1,142 +0,0 @@ -/* -LodePNG Examples - -Copyright (c) 2005-2012 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -/* -Compile command for Linux: -gcc lodepng.c example_sdl.c -ansi -pedantic -Wall -Wextra -lSDL2 -O3 -o showpng - -*/ - -/* -LodePNG SDL example -This example displays a PNG with a checkerboard pattern to show tranparency. -It requires the SDL2 library to compile and run. -If multiple filenames are given to the command line, it shows all of them. -Press any key to see next image, or esc to quit. -*/ - -#include "lodepng.h" - -#include - - -/*shows image with SDL. Returns 1 if user wants to fully quit, 0 if user wants to see next image.*/ -int show(const char* filename) { - unsigned error; - unsigned char* image; - unsigned w, h, x, y; - int done; - size_t jump = 1; - SDL_Window* sdl_window; - SDL_Renderer* sdl_renderer; - SDL_Texture* sdl_texture; - SDL_Event sdl_event; - size_t screenw, screenh, pitch; - Uint32* sdl_pixels; - - printf("showing %s\n", filename); - - /*load the PNG in one function call*/ - error = lodepng_decode32_file(&image, &w, &h, filename); - - /*stop if there is an error*/ - if(error) { - printf("decoder error %u: %s\n", error, lodepng_error_text(error)); - return 0; - } - - /* avoid too large window size by downscaling large image */ - if(w / 1024 >= jump) jump = w / 1024 + 1; - if(h / 1024 >= jump) jump = h / 1024 + 1; - - screenw = w / jump; - screenh = h / jump; - pitch = screenw * sizeof(Uint32); - /* init SDL */ - SDL_CreateWindowAndRenderer(screenw, screenh, SDL_WINDOW_OPENGL, &sdl_window, &sdl_renderer); - SDL_SetWindowTitle(sdl_window, filename); - if(!sdl_window) { - printf("Error, no SDL screen\n"); - return 0; - } - sdl_texture = SDL_CreateTexture(sdl_renderer, SDL_PIXELFORMAT_ARGB8888, - SDL_TEXTUREACCESS_STREAMING, screenw, screenh); - sdl_pixels = (Uint32*)malloc(screenw * screenh * sizeof(Uint32)); - if(!sdl_pixels) { - printf("Failed to allocate pixels\n"); - return 0; - } - - /* plot the pixels of the PNG file */ - for(y = 0; y + jump - 1 < h; y += jump) - for(x = 0; x + jump - 1 < w; x += jump) { - /* get RGBA components */ - Uint32 r = image[4 * y * w + 4 * x + 0]; /* red */ - Uint32 g = image[4 * y * w + 4 * x + 1]; /* green */ - Uint32 b = image[4 * y * w + 4 * x + 2]; /* blue */ - Uint32 a = image[4 * y * w + 4 * x + 3]; /* alpha */ - - /* make translucency visible by placing checkerboard pattern behind image */ - int checkerColor = 191 + 64 * (((x / 16) % 2) == ((y / 16) % 2)); - r = (a * r + (255 - a) * checkerColor) / 255; - g = (a * g + (255 - a) * checkerColor) / 255; - b = (a * b + (255 - a) * checkerColor) / 255; - - /* give the color value to the pixel of the screenbuffer */ - sdl_pixels[(y * screenw + x) / jump] = 65536 * r + 256 * g + b; - } - - /* render the pixels to the screen */ - SDL_UpdateTexture(sdl_texture, NULL, sdl_pixels, pitch); - SDL_RenderClear(sdl_renderer); - SDL_RenderCopy(sdl_renderer, sdl_texture, NULL, NULL); - SDL_RenderPresent(sdl_renderer); - - /* pause until you press escape and meanwhile redraw screen */ - done = 0; - while(done == 0) { - while(SDL_PollEvent(&sdl_event)) { - if(sdl_event.type == SDL_QUIT) done = 2; - else if(SDL_GetKeyboardState(NULL)[SDLK_ESCAPE]) done = 2; - else if(sdl_event.type == SDL_KEYDOWN) done = 1; /* press any other key for next image */ - } - SDL_Delay(5); /* pause 5 ms so it consumes less processing power */ - } - - SDL_Quit(); - free(sdl_pixels); - return done == 2 ? 1 : 0; -} - -int main(int argc, char* argv[]) { - int i; - - if(argc <= 1) printf("Please enter PNG file name(s) to display\n");; - - for(i = 1; i < argc; i++) { - if(show(argv[i])) return 0; - } - return 0; -} diff --git a/Marlin/lib/LodePNG/examples/example_sdl.cpp b/Marlin/lib/LodePNG/examples/example_sdl.cpp deleted file mode 100644 index ac964cf062..0000000000 --- a/Marlin/lib/LodePNG/examples/example_sdl.cpp +++ /dev/null @@ -1,129 +0,0 @@ -/* -LodePNG Examples - -Copyright (c) 2005-2012 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -//Compile command for Linux: -//g++ lodepng.cpp example_sdl.cpp -lSDL2 -O3 -o showpng - -/* -LodePNG SDL example -This example displays a PNG with a checkerboard pattern to show tranparency. -It requires the SDL2 library to compile and run. -If multiple filenames are given to the command line, it shows all of them. -Press any key to see next image, or esc to quit. -*/ - -#include "lodepng.h" - -#include -#include - -int show(const std::string& caption, const unsigned char* rgba, unsigned w, unsigned h) { - //avoid too large window size by downscaling large image - unsigned jump = 1; - if(w / 1024 >= jump) jump = w / 1024 + 1; - if(h / 1024 >= jump) jump = h / 1024 + 1; - - size_t screenw = w / jump; - size_t screenh = h / jump; - size_t pitch = screenw * sizeof(Uint32); - //init SDL - SDL_Window* sdl_window; - SDL_Renderer* sdl_renderer; - SDL_CreateWindowAndRenderer(screenw, screenh, SDL_WINDOW_OPENGL, &sdl_window, &sdl_renderer); - SDL_SetWindowTitle(sdl_window, caption.c_str()); - if(!sdl_window) { - std::cout << "error, no SDL screen" << std::endl; - return 0; - } - SDL_Texture* sdl_texture = SDL_CreateTexture(sdl_renderer, SDL_PIXELFORMAT_ARGB8888, - SDL_TEXTUREACCESS_STREAMING, screenw, screenh); - std::vector sdl_pixels(screenw * screenh * sizeof(Uint32)); - - //plot the pixels of the PNG file - for(unsigned y = 0; y + jump - 1 < h; y += jump) - for(unsigned x = 0; x + jump - 1 < w; x += jump) { - //get RGBA components - Uint32 r = rgba[4 * y * w + 4 * x + 0]; //red - Uint32 g = rgba[4 * y * w + 4 * x + 1]; //green - Uint32 b = rgba[4 * y * w + 4 * x + 2]; //blue - Uint32 a = rgba[4 * y * w + 4 * x + 3]; //alpha - - //make translucency visible by placing checkerboard pattern behind image - int checkerColor = 191 + 64 * (((x / 16) % 2) == ((y / 16) % 2)); - r = (a * r + (255 - a) * checkerColor) / 255; - g = (a * g + (255 - a) * checkerColor) / 255; - b = (a * b + (255 - a) * checkerColor) / 255; - - //give the color value to the pixel of the screenbuffer - sdl_pixels[(y * screenw + x) / jump] = 65536 * r + 256 * g + b; - } - - // render the pixels to the screen - SDL_UpdateTexture(sdl_texture, NULL, sdl_pixels.data(), pitch); - SDL_RenderClear(sdl_renderer); - SDL_RenderCopy(sdl_renderer, sdl_texture, NULL, NULL); - SDL_RenderPresent(sdl_renderer); - - //pause until you press escape and meanwhile redraw screen - SDL_Event event; - int done = 0; - while(done == 0) { - while(SDL_PollEvent(&event)) { - if(event.type == SDL_QUIT) done = 2; - else if(SDL_GetKeyboardState(NULL)[SDLK_ESCAPE]) done = 2; - else if(event.type == SDL_KEYDOWN) done = 1; //press any other key for next image - } - SDL_Delay(5); //pause 5 ms so it consumes less processing power - } - - SDL_Quit(); - return done == 2 ? 1 : 0; -} - -/*shows image with SDL. Returns 1 if user wants to fully quit, 0 if user wants to see next image.*/ -int showfile(const char* filename) { - std::cout << "showing " << filename << std::endl; - - std::vector buffer, image; - lodepng::load_file(buffer, filename); //load the image file with given filename - unsigned w, h; - unsigned error = lodepng::decode(image, w, h, buffer); //decode the png - - //stop if there is an error - if(error) { - std::cout << "decoder error " << error << ": " << lodepng_error_text(error) << std::endl; - return 0; - } - - return show(filename, &image[0], w, h); -} - -int main(int argc, char* argv[]) { - if(argc <= 1) std::cout << "Please enter PNG file name(s) to display" << std::endl; - - for(int i = 1; i < argc; i++) { - if(showfile(argv[i])) return 0; - } -} diff --git a/Marlin/lib/LodePNG/lodepng.cpp b/Marlin/lib/LodePNG/lodepng.cpp deleted file mode 100644 index 1f8967764f..0000000000 --- a/Marlin/lib/LodePNG/lodepng.cpp +++ /dev/null @@ -1,6658 +0,0 @@ -/* -LodePNG version 20220717 - -Copyright (c) 2005-2022 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -/* -The manual and changelog are in the header file "lodepng.h" -Rename this file to lodepng.cpp to use it for C++, or to lodepng.c to use it for C. -*/ - -#include "lodepng.h" - -#ifdef LODEPNG_COMPILE_DISK -#include /* LONG_MAX */ -#include /* file handling */ -#endif /* LODEPNG_COMPILE_DISK */ - -#ifdef LODEPNG_COMPILE_ALLOCATORS -#include /* allocations */ -#endif /* LODEPNG_COMPILE_ALLOCATORS */ - -#if defined(_MSC_VER) && (_MSC_VER >= 1310) /*Visual Studio: A few warning types are not desired here.*/ -#pragma warning( disable : 4244 ) /*implicit conversions: not warned by gcc -Wall -Wextra and requires too much casts*/ -#pragma warning( disable : 4996 ) /*VS does not like fopen, but fopen_s is not standard C so unusable here*/ -#endif /*_MSC_VER */ - -const char* LODEPNG_VERSION_STRING = "20220717"; - -/* -This source file is divided into the following large parts. The code sections -with the "LODEPNG_COMPILE_" #defines divide this up further in an intermixed way. --Tools for C and common code for PNG and Zlib --C Code for Zlib (huffman, deflate, ...) --C Code for PNG (file format chunks, adam7, PNG filters, color conversions, ...) --The C++ wrapper around all of the above -*/ - -/* ////////////////////////////////////////////////////////////////////////// */ -/* ////////////////////////////////////////////////////////////////////////// */ -/* // Tools for C, and common code for PNG and Zlib. // */ -/* ////////////////////////////////////////////////////////////////////////// */ -/* ////////////////////////////////////////////////////////////////////////// */ - -/*The malloc, realloc and free functions defined here with "lodepng_" in front -of the name, so that you can easily change them to others related to your -platform if needed. Everything else in the code calls these. Pass --DLODEPNG_NO_COMPILE_ALLOCATORS to the compiler, or comment out -#define LODEPNG_COMPILE_ALLOCATORS in the header, to disable the ones here and -define them in your own project's source files without needing to change -lodepng source code. Don't forget to remove "static" if you copypaste them -from here.*/ - -#ifdef LODEPNG_COMPILE_ALLOCATORS -static void* lodepng_malloc(size_t size) { -#ifdef LODEPNG_MAX_ALLOC - if(size > LODEPNG_MAX_ALLOC) return 0; -#endif - return malloc(size); -} - -/* NOTE: when realloc returns NULL, it leaves the original memory untouched */ -static void* lodepng_realloc(void* ptr, size_t new_size) { -#ifdef LODEPNG_MAX_ALLOC - if(new_size > LODEPNG_MAX_ALLOC) return 0; -#endif - return realloc(ptr, new_size); -} - -static void lodepng_free(void* ptr) { - free(ptr); -} -#else /*LODEPNG_COMPILE_ALLOCATORS*/ -/* TODO: support giving additional void* payload to the custom allocators */ -void* lodepng_malloc(size_t size); -void* lodepng_realloc(void* ptr, size_t new_size); -void lodepng_free(void* ptr); -#endif /*LODEPNG_COMPILE_ALLOCATORS*/ - -/* convince the compiler to inline a function, for use when this measurably improves performance */ -/* inline is not available in C90, but use it when supported by the compiler */ -#if (defined(__STDC_VERSION__) && (__STDC_VERSION__ >= 199901L)) || (defined(__cplusplus) && (__cplusplus >= 199711L)) -#define LODEPNG_INLINE inline -#else -#define LODEPNG_INLINE /* not available */ -#endif - -/* restrict is not available in C90, but use it when supported by the compiler */ -#if (defined(__GNUC__) && (__GNUC__ > 3 || (__GNUC__ == 3 && __GNUC_MINOR__ >= 1))) ||\ - (defined(_MSC_VER) && (_MSC_VER >= 1400)) || \ - (defined(__WATCOMC__) && (__WATCOMC__ >= 1250) && !defined(__cplusplus)) -#define LODEPNG_RESTRICT __restrict -#else -#define LODEPNG_RESTRICT /* not available */ -#endif - -/* Replacements for C library functions such as memcpy and strlen, to support platforms -where a full C library is not available. The compiler can recognize them and compile -to something as fast. */ - -static void lodepng_memcpy(void* LODEPNG_RESTRICT dst, - const void* LODEPNG_RESTRICT src, size_t size) { - size_t i; - for(i = 0; i < size; i++) ((char*)dst)[i] = ((const char*)src)[i]; -} - -static void lodepng_memset(void* LODEPNG_RESTRICT dst, - int value, size_t num) { - size_t i; - for(i = 0; i < num; i++) ((char*)dst)[i] = (char)value; -} - -/* does not check memory out of bounds, do not use on untrusted data */ -static size_t lodepng_strlen(const char* a) { - const char* orig = a; - /* avoid warning about unused function in case of disabled COMPILE... macros */ - (void)(&lodepng_strlen); - while(*a) a++; - return (size_t)(a - orig); -} - -#define LODEPNG_MAX(a, b) (((a) > (b)) ? (a) : (b)) -#define LODEPNG_MIN(a, b) (((a) < (b)) ? (a) : (b)) -#define LODEPNG_ABS(x) ((x) < 0 ? -(x) : (x)) - -#if defined(LODEPNG_COMPILE_PNG) || defined(LODEPNG_COMPILE_DECODER) -/* Safely check if adding two integers will overflow (no undefined -behavior, compiler removing the code, etc...) and output result. */ -static int lodepng_addofl(size_t a, size_t b, size_t* result) { - *result = a + b; /* Unsigned addition is well defined and safe in C90 */ - return *result < a; -} -#endif /*defined(LODEPNG_COMPILE_PNG) || defined(LODEPNG_COMPILE_DECODER)*/ - -#ifdef LODEPNG_COMPILE_DECODER -/* Safely check if multiplying two integers will overflow (no undefined -behavior, compiler removing the code, etc...) and output result. */ -static int lodepng_mulofl(size_t a, size_t b, size_t* result) { - *result = a * b; /* Unsigned multiplication is well defined and safe in C90 */ - return (a != 0 && *result / a != b); -} - -#ifdef LODEPNG_COMPILE_ZLIB -/* Safely check if a + b > c, even if overflow could happen. */ -static int lodepng_gtofl(size_t a, size_t b, size_t c) { - size_t d; - if(lodepng_addofl(a, b, &d)) return 1; - return d > c; -} -#endif /*LODEPNG_COMPILE_ZLIB*/ -#endif /*LODEPNG_COMPILE_DECODER*/ - - -/* -Often in case of an error a value is assigned to a variable and then it breaks -out of a loop (to go to the cleanup phase of a function). This macro does that. -It makes the error handling code shorter and more readable. - -Example: if(!uivector_resize(&lz77_encoded, datasize)) ERROR_BREAK(83); -*/ -#define CERROR_BREAK(errorvar, code){\ - errorvar = code;\ - break;\ -} - -/*version of CERROR_BREAK that assumes the common case where the error variable is named "error"*/ -#define ERROR_BREAK(code) CERROR_BREAK(error, code) - -/*Set error var to the error code, and return it.*/ -#define CERROR_RETURN_ERROR(errorvar, code){\ - errorvar = code;\ - return code;\ -} - -/*Try the code, if it returns error, also return the error.*/ -#define CERROR_TRY_RETURN(call){\ - unsigned error = call;\ - if(error) return error;\ -} - -/*Set error var to the error code, and return from the void function.*/ -#define CERROR_RETURN(errorvar, code){\ - errorvar = code;\ - return;\ -} - -/* -About uivector, ucvector and string: --All of them wrap dynamic arrays or text strings in a similar way. --LodePNG was originally written in C++. The vectors replace the std::vectors that were used in the C++ version. --The string tools are made to avoid problems with compilers that declare things like strncat as deprecated. --They're not used in the interface, only internally in this file as static functions. --As with many other structs in this file, the init and cleanup functions serve as ctor and dtor. -*/ - -#ifdef LODEPNG_COMPILE_ZLIB -#ifdef LODEPNG_COMPILE_ENCODER -/*dynamic vector of unsigned ints*/ -typedef struct uivector { - unsigned* data; - size_t size; /*size in number of unsigned longs*/ - size_t allocsize; /*allocated size in bytes*/ -} uivector; - -static void uivector_cleanup(void* p) { - ((uivector*)p)->size = ((uivector*)p)->allocsize = 0; - lodepng_free(((uivector*)p)->data); - ((uivector*)p)->data = NULL; -} - -/*returns 1 if success, 0 if failure ==> nothing done*/ -static unsigned uivector_resize(uivector* p, size_t size) { - size_t allocsize = size * sizeof(unsigned); - if(allocsize > p->allocsize) { - size_t newsize = allocsize + (p->allocsize >> 1u); - void* data = lodepng_realloc(p->data, newsize); - if(data) { - p->allocsize = newsize; - p->data = (unsigned*)data; - } - else return 0; /*error: not enough memory*/ - } - p->size = size; - return 1; /*success*/ -} - -static void uivector_init(uivector* p) { - p->data = NULL; - p->size = p->allocsize = 0; -} - -/*returns 1 if success, 0 if failure ==> nothing done*/ -static unsigned uivector_push_back(uivector* p, unsigned c) { - if(!uivector_resize(p, p->size + 1)) return 0; - p->data[p->size - 1] = c; - return 1; -} -#endif /*LODEPNG_COMPILE_ENCODER*/ -#endif /*LODEPNG_COMPILE_ZLIB*/ - -/* /////////////////////////////////////////////////////////////////////////// */ - -/*dynamic vector of unsigned chars*/ -typedef struct ucvector { - unsigned char* data; - size_t size; /*used size*/ - size_t allocsize; /*allocated size*/ -} ucvector; - -/*returns 1 if success, 0 if failure ==> nothing done*/ -static unsigned ucvector_reserve(ucvector* p, size_t size) { - if(size > p->allocsize) { - size_t newsize = size + (p->allocsize >> 1u); - void* data = lodepng_realloc(p->data, newsize); - if(data) { - p->allocsize = newsize; - p->data = (unsigned char*)data; - } - else return 0; /*error: not enough memory*/ - } - return 1; /*success*/ -} - -/*returns 1 if success, 0 if failure ==> nothing done*/ -static unsigned ucvector_resize(ucvector* p, size_t size) { - p->size = size; - return ucvector_reserve(p, size); -} - -static ucvector ucvector_init(unsigned char* buffer, size_t size) { - ucvector v; - v.data = buffer; - v.allocsize = v.size = size; - return v; -} - -/* ////////////////////////////////////////////////////////////////////////// */ - -#ifdef LODEPNG_COMPILE_PNG -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - -/*free string pointer and set it to NULL*/ -static void string_cleanup(char** out) { - lodepng_free(*out); - *out = NULL; -} - -/*also appends null termination character*/ -static char* alloc_string_sized(const char* in, size_t insize) { - char* out = (char*)lodepng_malloc(insize + 1); - if(out) { - lodepng_memcpy(out, in, insize); - out[insize] = 0; - } - return out; -} - -/* dynamically allocates a new string with a copy of the null terminated input text */ -static char* alloc_string(const char* in) { - return alloc_string_sized(in, lodepng_strlen(in)); -} -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ -#endif /*LODEPNG_COMPILE_PNG*/ - -/* ////////////////////////////////////////////////////////////////////////// */ - -#if defined(LODEPNG_COMPILE_DECODER) || defined(LODEPNG_COMPILE_PNG) -static unsigned lodepng_read32bitInt(const unsigned char* buffer) { - return (((unsigned)buffer[0] << 24u) | ((unsigned)buffer[1] << 16u) | - ((unsigned)buffer[2] << 8u) | (unsigned)buffer[3]); -} -#endif /*defined(LODEPNG_COMPILE_DECODER) || defined(LODEPNG_COMPILE_PNG)*/ - -#if defined(LODEPNG_COMPILE_PNG) || defined(LODEPNG_COMPILE_ENCODER) -/*buffer must have at least 4 allocated bytes available*/ -static void lodepng_set32bitInt(unsigned char* buffer, unsigned value) { - buffer[0] = (unsigned char)((value >> 24) & 0xff); - buffer[1] = (unsigned char)((value >> 16) & 0xff); - buffer[2] = (unsigned char)((value >> 8) & 0xff); - buffer[3] = (unsigned char)((value ) & 0xff); -} -#endif /*defined(LODEPNG_COMPILE_PNG) || defined(LODEPNG_COMPILE_ENCODER)*/ - -/* ////////////////////////////////////////////////////////////////////////// */ -/* / File IO / */ -/* ////////////////////////////////////////////////////////////////////////// */ - -#ifdef LODEPNG_COMPILE_DISK - -/* returns negative value on error. This should be pure C compatible, so no fstat. */ -static long lodepng_filesize(const char* filename) { - FILE* file; - long size; - file = fopen(filename, "rb"); - if(!file) return -1; - - if(fseek(file, 0, SEEK_END) != 0) { - fclose(file); - return -1; - } - - size = ftell(file); - /* It may give LONG_MAX as directory size, this is invalid for us. */ - if(size == LONG_MAX) size = -1; - - fclose(file); - return size; -} - -/* load file into buffer that already has the correct allocated size. Returns error code.*/ -static unsigned lodepng_buffer_file(unsigned char* out, size_t size, const char* filename) { - FILE* file; - size_t readsize; - file = fopen(filename, "rb"); - if(!file) return 78; - - readsize = fread(out, 1, size, file); - fclose(file); - - if(readsize != size) return 78; - return 0; -} - -unsigned lodepng_load_file(unsigned char** out, size_t* outsize, const char* filename) { - long size = lodepng_filesize(filename); - if(size < 0) return 78; - *outsize = (size_t)size; - - *out = (unsigned char*)lodepng_malloc((size_t)size); - if(!(*out) && size > 0) return 83; /*the above malloc failed*/ - - return lodepng_buffer_file(*out, (size_t)size, filename); -} - -/*write given buffer to the file, overwriting the file, it doesn't append to it.*/ -unsigned lodepng_save_file(const unsigned char* buffer, size_t buffersize, const char* filename) { - FILE* file; - file = fopen(filename, "wb" ); - if(!file) return 79; - fwrite(buffer, 1, buffersize, file); - fclose(file); - return 0; -} - -#endif /*LODEPNG_COMPILE_DISK*/ - -/* ////////////////////////////////////////////////////////////////////////// */ -/* ////////////////////////////////////////////////////////////////////////// */ -/* // End of common code and tools. Begin of Zlib related code. // */ -/* ////////////////////////////////////////////////////////////////////////// */ -/* ////////////////////////////////////////////////////////////////////////// */ - -#ifdef LODEPNG_COMPILE_ZLIB -#ifdef LODEPNG_COMPILE_ENCODER - -typedef struct { - ucvector* data; - unsigned char bp; /*ok to overflow, indicates bit pos inside byte*/ -} LodePNGBitWriter; - -static void LodePNGBitWriter_init(LodePNGBitWriter* writer, ucvector* data) { - writer->data = data; - writer->bp = 0; -} - -/*TODO: this ignores potential out of memory errors*/ -#define WRITEBIT(writer, bit){\ - /* append new byte */\ - if(((writer->bp) & 7u) == 0) {\ - if(!ucvector_resize(writer->data, writer->data->size + 1)) return;\ - writer->data->data[writer->data->size - 1] = 0;\ - }\ - (writer->data->data[writer->data->size - 1]) |= (bit << ((writer->bp) & 7u));\ - ++writer->bp;\ -} - -/* LSB of value is written first, and LSB of bytes is used first */ -static void writeBits(LodePNGBitWriter* writer, unsigned value, size_t nbits) { - if(nbits == 1) { /* compiler should statically compile this case if nbits == 1 */ - WRITEBIT(writer, value); - } else { - /* TODO: increase output size only once here rather than in each WRITEBIT */ - size_t i; - for(i = 0; i != nbits; ++i) { - WRITEBIT(writer, (unsigned char)((value >> i) & 1)); - } - } -} - -/* This one is to use for adding huffman symbol, the value bits are written MSB first */ -static void writeBitsReversed(LodePNGBitWriter* writer, unsigned value, size_t nbits) { - size_t i; - for(i = 0; i != nbits; ++i) { - /* TODO: increase output size only once here rather than in each WRITEBIT */ - WRITEBIT(writer, (unsigned char)((value >> (nbits - 1u - i)) & 1u)); - } -} -#endif /*LODEPNG_COMPILE_ENCODER*/ - -#ifdef LODEPNG_COMPILE_DECODER - -typedef struct { - const unsigned char* data; - size_t size; /*size of data in bytes*/ - size_t bitsize; /*size of data in bits, end of valid bp values, should be 8*size*/ - size_t bp; - unsigned buffer; /*buffer for reading bits. NOTE: 'unsigned' must support at least 32 bits*/ -} LodePNGBitReader; - -/* data size argument is in bytes. Returns error if size too large causing overflow */ -static unsigned LodePNGBitReader_init(LodePNGBitReader* reader, const unsigned char* data, size_t size) { - size_t temp; - reader->data = data; - reader->size = size; - /* size in bits, return error if overflow (if size_t is 32 bit this supports up to 500MB) */ - if(lodepng_mulofl(size, 8u, &reader->bitsize)) return 105; - /*ensure incremented bp can be compared to bitsize without overflow even when it would be incremented 32 too much and - trying to ensure 32 more bits*/ - if(lodepng_addofl(reader->bitsize, 64u, &temp)) return 105; - reader->bp = 0; - reader->buffer = 0; - return 0; /*ok*/ -} - -/* -ensureBits functions: -Ensures the reader can at least read nbits bits in one or more readBits calls, -safely even if not enough bits are available. -The nbits parameter is unused but is given for documentation purposes, error -checking for amount of bits must be done beforehand. -*/ - -/*See ensureBits documentation above. This one ensures up to 9 bits */ -static LODEPNG_INLINE void ensureBits9(LodePNGBitReader* reader, size_t nbits) { - size_t start = reader->bp >> 3u; - size_t size = reader->size; - if(start + 1u < size) { - reader->buffer = (unsigned)reader->data[start + 0] | ((unsigned)reader->data[start + 1] << 8u); - reader->buffer >>= (reader->bp & 7u); - } else { - reader->buffer = 0; - if(start + 0u < size) reader->buffer = reader->data[start + 0]; - reader->buffer >>= (reader->bp & 7u); - } - (void)nbits; -} - -/*See ensureBits documentation above. This one ensures up to 17 bits */ -static LODEPNG_INLINE void ensureBits17(LodePNGBitReader* reader, size_t nbits) { - size_t start = reader->bp >> 3u; - size_t size = reader->size; - if(start + 2u < size) { - reader->buffer = (unsigned)reader->data[start + 0] | ((unsigned)reader->data[start + 1] << 8u) | - ((unsigned)reader->data[start + 2] << 16u); - reader->buffer >>= (reader->bp & 7u); - } else { - reader->buffer = 0; - if(start + 0u < size) reader->buffer |= reader->data[start + 0]; - if(start + 1u < size) reader->buffer |= ((unsigned)reader->data[start + 1] << 8u); - reader->buffer >>= (reader->bp & 7u); - } - (void)nbits; -} - -/*See ensureBits documentation above. This one ensures up to 25 bits */ -static LODEPNG_INLINE void ensureBits25(LodePNGBitReader* reader, size_t nbits) { - size_t start = reader->bp >> 3u; - size_t size = reader->size; - if(start + 3u < size) { - reader->buffer = (unsigned)reader->data[start + 0] | ((unsigned)reader->data[start + 1] << 8u) | - ((unsigned)reader->data[start + 2] << 16u) | ((unsigned)reader->data[start + 3] << 24u); - reader->buffer >>= (reader->bp & 7u); - } else { - reader->buffer = 0; - if(start + 0u < size) reader->buffer |= reader->data[start + 0]; - if(start + 1u < size) reader->buffer |= ((unsigned)reader->data[start + 1] << 8u); - if(start + 2u < size) reader->buffer |= ((unsigned)reader->data[start + 2] << 16u); - reader->buffer >>= (reader->bp & 7u); - } - (void)nbits; -} - -/*See ensureBits documentation above. This one ensures up to 32 bits */ -static LODEPNG_INLINE void ensureBits32(LodePNGBitReader* reader, size_t nbits) { - size_t start = reader->bp >> 3u; - size_t size = reader->size; - if(start + 4u < size) { - reader->buffer = (unsigned)reader->data[start + 0] | ((unsigned)reader->data[start + 1] << 8u) | - ((unsigned)reader->data[start + 2] << 16u) | ((unsigned)reader->data[start + 3] << 24u); - reader->buffer >>= (reader->bp & 7u); - reader->buffer |= (((unsigned)reader->data[start + 4] << 24u) << (8u - (reader->bp & 7u))); - } else { - reader->buffer = 0; - if(start + 0u < size) reader->buffer |= reader->data[start + 0]; - if(start + 1u < size) reader->buffer |= ((unsigned)reader->data[start + 1] << 8u); - if(start + 2u < size) reader->buffer |= ((unsigned)reader->data[start + 2] << 16u); - if(start + 3u < size) reader->buffer |= ((unsigned)reader->data[start + 3] << 24u); - reader->buffer >>= (reader->bp & 7u); - } - (void)nbits; -} - -/* Get bits without advancing the bit pointer. Must have enough bits available with ensureBits. Max nbits is 31. */ -static LODEPNG_INLINE unsigned peekBits(LodePNGBitReader* reader, size_t nbits) { - /* The shift allows nbits to be only up to 31. */ - return reader->buffer & ((1u << nbits) - 1u); -} - -/* Must have enough bits available with ensureBits */ -static LODEPNG_INLINE void advanceBits(LodePNGBitReader* reader, size_t nbits) { - reader->buffer >>= nbits; - reader->bp += nbits; -} - -/* Must have enough bits available with ensureBits */ -static LODEPNG_INLINE unsigned readBits(LodePNGBitReader* reader, size_t nbits) { - unsigned result = peekBits(reader, nbits); - advanceBits(reader, nbits); - return result; -} -#endif /*LODEPNG_COMPILE_DECODER*/ - -static unsigned reverseBits(unsigned bits, unsigned num) { - /*TODO: implement faster lookup table based version when needed*/ - unsigned i, result = 0; - for(i = 0; i < num; i++) result |= ((bits >> (num - i - 1u)) & 1u) << i; - return result; -} - -/* ////////////////////////////////////////////////////////////////////////// */ -/* / Deflate - Huffman / */ -/* ////////////////////////////////////////////////////////////////////////// */ - -#define FIRST_LENGTH_CODE_INDEX 257 -#define LAST_LENGTH_CODE_INDEX 285 -/*256 literals, the end code, some length codes, and 2 unused codes*/ -#define NUM_DEFLATE_CODE_SYMBOLS 288 -/*the distance codes have their own symbols, 30 used, 2 unused*/ -#define NUM_DISTANCE_SYMBOLS 32 -/*the code length codes. 0-15: code lengths, 16: copy previous 3-6 times, 17: 3-10 zeros, 18: 11-138 zeros*/ -#define NUM_CODE_LENGTH_CODES 19 - -/*the base lengths represented by codes 257-285*/ -static const unsigned LENGTHBASE[29] - = {3, 4, 5, 6, 7, 8, 9, 10, 11, 13, 15, 17, 19, 23, 27, 31, 35, 43, 51, 59, - 67, 83, 99, 115, 131, 163, 195, 227, 258}; - -/*the extra bits used by codes 257-285 (added to base length)*/ -static const unsigned LENGTHEXTRA[29] - = {0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3, - 4, 4, 4, 4, 5, 5, 5, 5, 0}; - -/*the base backwards distances (the bits of distance codes appear after length codes and use their own huffman tree)*/ -static const unsigned DISTANCEBASE[30] - = {1, 2, 3, 4, 5, 7, 9, 13, 17, 25, 33, 49, 65, 97, 129, 193, 257, 385, 513, - 769, 1025, 1537, 2049, 3073, 4097, 6145, 8193, 12289, 16385, 24577}; - -/*the extra bits of backwards distances (added to base)*/ -static const unsigned DISTANCEEXTRA[30] - = {0, 0, 0, 0, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8, - 8, 9, 9, 10, 10, 11, 11, 12, 12, 13, 13}; - -/*the order in which "code length alphabet code lengths" are stored as specified by deflate, out of this the huffman -tree of the dynamic huffman tree lengths is generated*/ -static const unsigned CLCL_ORDER[NUM_CODE_LENGTH_CODES] - = {16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15}; - -/* ////////////////////////////////////////////////////////////////////////// */ - -/* -Huffman tree struct, containing multiple representations of the tree -*/ -typedef struct HuffmanTree { - unsigned* codes; /*the huffman codes (bit patterns representing the symbols)*/ - unsigned* lengths; /*the lengths of the huffman codes*/ - unsigned maxbitlen; /*maximum number of bits a single code can get*/ - unsigned numcodes; /*number of symbols in the alphabet = number of codes*/ - /* for reading only */ - unsigned char* table_len; /*length of symbol from lookup table, or max length if secondary lookup needed*/ - unsigned short* table_value; /*value of symbol from lookup table, or pointer to secondary table if needed*/ -} HuffmanTree; - -static void HuffmanTree_init(HuffmanTree* tree) { - tree->codes = 0; - tree->lengths = 0; - tree->table_len = 0; - tree->table_value = 0; -} - -static void HuffmanTree_cleanup(HuffmanTree* tree) { - lodepng_free(tree->codes); - lodepng_free(tree->lengths); - lodepng_free(tree->table_len); - lodepng_free(tree->table_value); -} - -/* amount of bits for first huffman table lookup (aka root bits), see HuffmanTree_makeTable and huffmanDecodeSymbol.*/ -/* values 8u and 9u work the fastest */ -#define FIRSTBITS 9u - -/* a symbol value too big to represent any valid symbol, to indicate reading disallowed huffman bits combination, -which is possible in case of only 0 or 1 present symbols. */ -#define INVALIDSYMBOL 65535u - -/* make table for huffman decoding */ -static unsigned HuffmanTree_makeTable(HuffmanTree* tree) { - static const unsigned headsize = 1u << FIRSTBITS; /*size of the first table*/ - static const unsigned mask = (1u << FIRSTBITS) /*headsize*/ - 1u; - size_t i, numpresent, pointer, size; /*total table size*/ - unsigned* maxlens = (unsigned*)lodepng_malloc(headsize * sizeof(unsigned)); - if(!maxlens) return 83; /*alloc fail*/ - - /* compute maxlens: max total bit length of symbols sharing prefix in the first table*/ - lodepng_memset(maxlens, 0, headsize * sizeof(*maxlens)); - for(i = 0; i < tree->numcodes; i++) { - unsigned symbol = tree->codes[i]; - unsigned l = tree->lengths[i]; - unsigned index; - if(l <= FIRSTBITS) continue; /*symbols that fit in first table don't increase secondary table size*/ - /*get the FIRSTBITS MSBs, the MSBs of the symbol are encoded first. See later comment about the reversing*/ - index = reverseBits(symbol >> (l - FIRSTBITS), FIRSTBITS); - maxlens[index] = LODEPNG_MAX(maxlens[index], l); - } - /* compute total table size: size of first table plus all secondary tables for symbols longer than FIRSTBITS */ - size = headsize; - for(i = 0; i < headsize; ++i) { - unsigned l = maxlens[i]; - if(l > FIRSTBITS) size += (1u << (l - FIRSTBITS)); - } - tree->table_len = (unsigned char*)lodepng_malloc(size * sizeof(*tree->table_len)); - tree->table_value = (unsigned short*)lodepng_malloc(size * sizeof(*tree->table_value)); - if(!tree->table_len || !tree->table_value) { - lodepng_free(maxlens); - /* freeing tree->table values is done at a higher scope */ - return 83; /*alloc fail*/ - } - /*initialize with an invalid length to indicate unused entries*/ - for(i = 0; i < size; ++i) tree->table_len[i] = 16; - - /*fill in the first table for long symbols: max prefix size and pointer to secondary tables*/ - pointer = headsize; - for(i = 0; i < headsize; ++i) { - unsigned l = maxlens[i]; - if(l <= FIRSTBITS) continue; - tree->table_len[i] = l; - tree->table_value[i] = pointer; - pointer += (1u << (l - FIRSTBITS)); - } - lodepng_free(maxlens); - - /*fill in the first table for short symbols, or secondary table for long symbols*/ - numpresent = 0; - for(i = 0; i < tree->numcodes; ++i) { - unsigned l = tree->lengths[i]; - unsigned symbol, reverse; - if(l == 0) continue; - symbol = tree->codes[i]; /*the huffman bit pattern. i itself is the value.*/ - /*reverse bits, because the huffman bits are given in MSB first order but the bit reader reads LSB first*/ - reverse = reverseBits(symbol, l); - numpresent++; - - if(l <= FIRSTBITS) { - /*short symbol, fully in first table, replicated num times if l < FIRSTBITS*/ - unsigned num = 1u << (FIRSTBITS - l); - unsigned j; - for(j = 0; j < num; ++j) { - /*bit reader will read the l bits of symbol first, the remaining FIRSTBITS - l bits go to the MSB's*/ - unsigned index = reverse | (j << l); - if(tree->table_len[index] != 16) return 55; /*invalid tree: long symbol shares prefix with short symbol*/ - tree->table_len[index] = l; - tree->table_value[index] = i; - } - } else { - /*long symbol, shares prefix with other long symbols in first lookup table, needs second lookup*/ - /*the FIRSTBITS MSBs of the symbol are the first table index*/ - unsigned index = reverse & mask; - unsigned maxlen = tree->table_len[index]; - /*log2 of secondary table length, should be >= l - FIRSTBITS*/ - unsigned tablelen = maxlen - FIRSTBITS; - unsigned start = tree->table_value[index]; /*starting index in secondary table*/ - unsigned num = 1u << (tablelen - (l - FIRSTBITS)); /*amount of entries of this symbol in secondary table*/ - unsigned j; - if(maxlen < l) return 55; /*invalid tree: long symbol shares prefix with short symbol*/ - for(j = 0; j < num; ++j) { - unsigned reverse2 = reverse >> FIRSTBITS; /* l - FIRSTBITS bits */ - unsigned index2 = start + (reverse2 | (j << (l - FIRSTBITS))); - tree->table_len[index2] = l; - tree->table_value[index2] = i; - } - } - } - - if(numpresent < 2) { - /* In case of exactly 1 symbol, in theory the huffman symbol needs 0 bits, - but deflate uses 1 bit instead. In case of 0 symbols, no symbols can - appear at all, but such huffman tree could still exist (e.g. if distance - codes are never used). In both cases, not all symbols of the table will be - filled in. Fill them in with an invalid symbol value so returning them from - huffmanDecodeSymbol will cause error. */ - for(i = 0; i < size; ++i) { - if(tree->table_len[i] == 16) { - /* As length, use a value smaller than FIRSTBITS for the head table, - and a value larger than FIRSTBITS for the secondary table, to ensure - valid behavior for advanceBits when reading this symbol. */ - tree->table_len[i] = (i < headsize) ? 1 : (FIRSTBITS + 1); - tree->table_value[i] = INVALIDSYMBOL; - } - } - } else { - /* A good huffman tree has N * 2 - 1 nodes, of which N - 1 are internal nodes. - If that is not the case (due to too long length codes), the table will not - have been fully used, and this is an error (not all bit combinations can be - decoded): an oversubscribed huffman tree, indicated by error 55. */ - for(i = 0; i < size; ++i) { - if(tree->table_len[i] == 16) return 55; - } - } - - return 0; -} - -/* -Second step for the ...makeFromLengths and ...makeFromFrequencies functions. -numcodes, lengths and maxbitlen must already be filled in correctly. return -value is error. -*/ -static unsigned HuffmanTree_makeFromLengths2(HuffmanTree* tree) { - unsigned* blcount; - unsigned* nextcode; - unsigned error = 0; - unsigned bits, n; - - tree->codes = (unsigned*)lodepng_malloc(tree->numcodes * sizeof(unsigned)); - blcount = (unsigned*)lodepng_malloc((tree->maxbitlen + 1) * sizeof(unsigned)); - nextcode = (unsigned*)lodepng_malloc((tree->maxbitlen + 1) * sizeof(unsigned)); - if(!tree->codes || !blcount || !nextcode) error = 83; /*alloc fail*/ - - if(!error) { - for(n = 0; n != tree->maxbitlen + 1; n++) blcount[n] = nextcode[n] = 0; - /*step 1: count number of instances of each code length*/ - for(bits = 0; bits != tree->numcodes; ++bits) ++blcount[tree->lengths[bits]]; - /*step 2: generate the nextcode values*/ - for(bits = 1; bits <= tree->maxbitlen; ++bits) { - nextcode[bits] = (nextcode[bits - 1] + blcount[bits - 1]) << 1u; - } - /*step 3: generate all the codes*/ - for(n = 0; n != tree->numcodes; ++n) { - if(tree->lengths[n] != 0) { - tree->codes[n] = nextcode[tree->lengths[n]]++; - /*remove superfluous bits from the code*/ - tree->codes[n] &= ((1u << tree->lengths[n]) - 1u); - } - } - } - - lodepng_free(blcount); - lodepng_free(nextcode); - - if(!error) error = HuffmanTree_makeTable(tree); - return error; -} - -/* -given the code lengths (as stored in the PNG file), generate the tree as defined -by Deflate. maxbitlen is the maximum bits that a code in the tree can have. -return value is error. -*/ -static unsigned HuffmanTree_makeFromLengths(HuffmanTree* tree, const unsigned* bitlen, - size_t numcodes, unsigned maxbitlen) { - unsigned i; - tree->lengths = (unsigned*)lodepng_malloc(numcodes * sizeof(unsigned)); - if(!tree->lengths) return 83; /*alloc fail*/ - for(i = 0; i != numcodes; ++i) tree->lengths[i] = bitlen[i]; - tree->numcodes = (unsigned)numcodes; /*number of symbols*/ - tree->maxbitlen = maxbitlen; - return HuffmanTree_makeFromLengths2(tree); -} - -#ifdef LODEPNG_COMPILE_ENCODER - -/*BPM: Boundary Package Merge, see "A Fast and Space-Economical Algorithm for Length-Limited Coding", -Jyrki Katajainen, Alistair Moffat, Andrew Turpin, 1995.*/ - -/*chain node for boundary package merge*/ -typedef struct BPMNode { - int weight; /*the sum of all weights in this chain*/ - unsigned index; /*index of this leaf node (called "count" in the paper)*/ - struct BPMNode* tail; /*the next nodes in this chain (null if last)*/ - int in_use; -} BPMNode; - -/*lists of chains*/ -typedef struct BPMLists { - /*memory pool*/ - unsigned memsize; - BPMNode* memory; - unsigned numfree; - unsigned nextfree; - BPMNode** freelist; - /*two heads of lookahead chains per list*/ - unsigned listsize; - BPMNode** chains0; - BPMNode** chains1; -} BPMLists; - -/*creates a new chain node with the given parameters, from the memory in the lists */ -static BPMNode* bpmnode_create(BPMLists* lists, int weight, unsigned index, BPMNode* tail) { - unsigned i; - BPMNode* result; - - /*memory full, so garbage collect*/ - if(lists->nextfree >= lists->numfree) { - /*mark only those that are in use*/ - for(i = 0; i != lists->memsize; ++i) lists->memory[i].in_use = 0; - for(i = 0; i != lists->listsize; ++i) { - BPMNode* node; - for(node = lists->chains0[i]; node != 0; node = node->tail) node->in_use = 1; - for(node = lists->chains1[i]; node != 0; node = node->tail) node->in_use = 1; - } - /*collect those that are free*/ - lists->numfree = 0; - for(i = 0; i != lists->memsize; ++i) { - if(!lists->memory[i].in_use) lists->freelist[lists->numfree++] = &lists->memory[i]; - } - lists->nextfree = 0; - } - - result = lists->freelist[lists->nextfree++]; - result->weight = weight; - result->index = index; - result->tail = tail; - return result; -} - -/*sort the leaves with stable mergesort*/ -static void bpmnode_sort(BPMNode* leaves, size_t num) { - BPMNode* mem = (BPMNode*)lodepng_malloc(sizeof(*leaves) * num); - size_t width, counter = 0; - for(width = 1; width < num; width *= 2) { - BPMNode* a = (counter & 1) ? mem : leaves; - BPMNode* b = (counter & 1) ? leaves : mem; - size_t p; - for(p = 0; p < num; p += 2 * width) { - size_t q = (p + width > num) ? num : (p + width); - size_t r = (p + 2 * width > num) ? num : (p + 2 * width); - size_t i = p, j = q, k; - for(k = p; k < r; k++) { - if(i < q && (j >= r || a[i].weight <= a[j].weight)) b[k] = a[i++]; - else b[k] = a[j++]; - } - } - counter++; - } - if(counter & 1) lodepng_memcpy(leaves, mem, sizeof(*leaves) * num); - lodepng_free(mem); -} - -/*Boundary Package Merge step, numpresent is the amount of leaves, and c is the current chain.*/ -static void boundaryPM(BPMLists* lists, BPMNode* leaves, size_t numpresent, int c, int num) { - unsigned lastindex = lists->chains1[c]->index; - - if(c == 0) { - if(lastindex >= numpresent) return; - lists->chains0[c] = lists->chains1[c]; - lists->chains1[c] = bpmnode_create(lists, leaves[lastindex].weight, lastindex + 1, 0); - } else { - /*sum of the weights of the head nodes of the previous lookahead chains.*/ - int sum = lists->chains0[c - 1]->weight + lists->chains1[c - 1]->weight; - lists->chains0[c] = lists->chains1[c]; - if(lastindex < numpresent && sum > leaves[lastindex].weight) { - lists->chains1[c] = bpmnode_create(lists, leaves[lastindex].weight, lastindex + 1, lists->chains1[c]->tail); - return; - } - lists->chains1[c] = bpmnode_create(lists, sum, lastindex, lists->chains1[c - 1]); - /*in the end we are only interested in the chain of the last list, so no - need to recurse if we're at the last one (this gives measurable speedup)*/ - if(num + 1 < (int)(2 * numpresent - 2)) { - boundaryPM(lists, leaves, numpresent, c - 1, num); - boundaryPM(lists, leaves, numpresent, c - 1, num); - } - } -} - -unsigned lodepng_huffman_code_lengths(unsigned* lengths, const unsigned* frequencies, - size_t numcodes, unsigned maxbitlen) { - unsigned error = 0; - unsigned i; - size_t numpresent = 0; /*number of symbols with non-zero frequency*/ - BPMNode* leaves; /*the symbols, only those with > 0 frequency*/ - - if(numcodes == 0) return 80; /*error: a tree of 0 symbols is not supposed to be made*/ - if((1u << maxbitlen) < (unsigned)numcodes) return 80; /*error: represent all symbols*/ - - leaves = (BPMNode*)lodepng_malloc(numcodes * sizeof(*leaves)); - if(!leaves) return 83; /*alloc fail*/ - - for(i = 0; i != numcodes; ++i) { - if(frequencies[i] > 0) { - leaves[numpresent].weight = (int)frequencies[i]; - leaves[numpresent].index = i; - ++numpresent; - } - } - - lodepng_memset(lengths, 0, numcodes * sizeof(*lengths)); - - /*ensure at least two present symbols. There should be at least one symbol - according to RFC 1951 section 3.2.7. Some decoders incorrectly require two. To - make these work as well ensure there are at least two symbols. The - Package-Merge code below also doesn't work correctly if there's only one - symbol, it'd give it the theoretical 0 bits but in practice zlib wants 1 bit*/ - if(numpresent == 0) { - lengths[0] = lengths[1] = 1; /*note that for RFC 1951 section 3.2.7, only lengths[0] = 1 is needed*/ - } else if(numpresent == 1) { - lengths[leaves[0].index] = 1; - lengths[leaves[0].index == 0 ? 1 : 0] = 1; - } else { - BPMLists lists; - BPMNode* node; - - bpmnode_sort(leaves, numpresent); - - lists.listsize = maxbitlen; - lists.memsize = 2 * maxbitlen * (maxbitlen + 1); - lists.nextfree = 0; - lists.numfree = lists.memsize; - lists.memory = (BPMNode*)lodepng_malloc(lists.memsize * sizeof(*lists.memory)); - lists.freelist = (BPMNode**)lodepng_malloc(lists.memsize * sizeof(BPMNode*)); - lists.chains0 = (BPMNode**)lodepng_malloc(lists.listsize * sizeof(BPMNode*)); - lists.chains1 = (BPMNode**)lodepng_malloc(lists.listsize * sizeof(BPMNode*)); - if(!lists.memory || !lists.freelist || !lists.chains0 || !lists.chains1) error = 83; /*alloc fail*/ - - if(!error) { - for(i = 0; i != lists.memsize; ++i) lists.freelist[i] = &lists.memory[i]; - - bpmnode_create(&lists, leaves[0].weight, 1, 0); - bpmnode_create(&lists, leaves[1].weight, 2, 0); - - for(i = 0; i != lists.listsize; ++i) { - lists.chains0[i] = &lists.memory[0]; - lists.chains1[i] = &lists.memory[1]; - } - - /*each boundaryPM call adds one chain to the last list, and we need 2 * numpresent - 2 chains.*/ - for(i = 2; i != 2 * numpresent - 2; ++i) boundaryPM(&lists, leaves, numpresent, (int)maxbitlen - 1, (int)i); - - for(node = lists.chains1[maxbitlen - 1]; node; node = node->tail) { - for(i = 0; i != node->index; ++i) ++lengths[leaves[i].index]; - } - } - - lodepng_free(lists.memory); - lodepng_free(lists.freelist); - lodepng_free(lists.chains0); - lodepng_free(lists.chains1); - } - - lodepng_free(leaves); - return error; -} - -/*Create the Huffman tree given the symbol frequencies*/ -static unsigned HuffmanTree_makeFromFrequencies(HuffmanTree* tree, const unsigned* frequencies, - size_t mincodes, size_t numcodes, unsigned maxbitlen) { - unsigned error = 0; - while(!frequencies[numcodes - 1] && numcodes > mincodes) --numcodes; /*trim zeroes*/ - tree->lengths = (unsigned*)lodepng_malloc(numcodes * sizeof(unsigned)); - if(!tree->lengths) return 83; /*alloc fail*/ - tree->maxbitlen = maxbitlen; - tree->numcodes = (unsigned)numcodes; /*number of symbols*/ - - error = lodepng_huffman_code_lengths(tree->lengths, frequencies, numcodes, maxbitlen); - if(!error) error = HuffmanTree_makeFromLengths2(tree); - return error; -} -#endif /*LODEPNG_COMPILE_ENCODER*/ - -/*get the literal and length code tree of a deflated block with fixed tree, as per the deflate specification*/ -static unsigned generateFixedLitLenTree(HuffmanTree* tree) { - unsigned i, error = 0; - unsigned* bitlen = (unsigned*)lodepng_malloc(NUM_DEFLATE_CODE_SYMBOLS * sizeof(unsigned)); - if(!bitlen) return 83; /*alloc fail*/ - - /*288 possible codes: 0-255=literals, 256=endcode, 257-285=lengthcodes, 286-287=unused*/ - for(i = 0; i <= 143; ++i) bitlen[i] = 8; - for(i = 144; i <= 255; ++i) bitlen[i] = 9; - for(i = 256; i <= 279; ++i) bitlen[i] = 7; - for(i = 280; i <= 287; ++i) bitlen[i] = 8; - - error = HuffmanTree_makeFromLengths(tree, bitlen, NUM_DEFLATE_CODE_SYMBOLS, 15); - - lodepng_free(bitlen); - return error; -} - -/*get the distance code tree of a deflated block with fixed tree, as specified in the deflate specification*/ -static unsigned generateFixedDistanceTree(HuffmanTree* tree) { - unsigned i, error = 0; - unsigned* bitlen = (unsigned*)lodepng_malloc(NUM_DISTANCE_SYMBOLS * sizeof(unsigned)); - if(!bitlen) return 83; /*alloc fail*/ - - /*there are 32 distance codes, but 30-31 are unused*/ - for(i = 0; i != NUM_DISTANCE_SYMBOLS; ++i) bitlen[i] = 5; - error = HuffmanTree_makeFromLengths(tree, bitlen, NUM_DISTANCE_SYMBOLS, 15); - - lodepng_free(bitlen); - return error; -} - -#ifdef LODEPNG_COMPILE_DECODER - -/* -returns the code. The bit reader must already have been ensured at least 15 bits -*/ -static unsigned huffmanDecodeSymbol(LodePNGBitReader* reader, const HuffmanTree* codetree) { - unsigned short code = peekBits(reader, FIRSTBITS); - unsigned short l = codetree->table_len[code]; - unsigned short value = codetree->table_value[code]; - if(l <= FIRSTBITS) { - advanceBits(reader, l); - return value; - } else { - advanceBits(reader, FIRSTBITS); - value += peekBits(reader, l - FIRSTBITS); - advanceBits(reader, codetree->table_len[value] - FIRSTBITS); - return codetree->table_value[value]; - } -} -#endif /*LODEPNG_COMPILE_DECODER*/ - -#ifdef LODEPNG_COMPILE_DECODER - -/* ////////////////////////////////////////////////////////////////////////// */ -/* / Inflator (Decompressor) / */ -/* ////////////////////////////////////////////////////////////////////////// */ - -/*get the tree of a deflated block with fixed tree, as specified in the deflate specification -Returns error code.*/ -static unsigned getTreeInflateFixed(HuffmanTree* tree_ll, HuffmanTree* tree_d) { - unsigned error = generateFixedLitLenTree(tree_ll); - if(error) return error; - return generateFixedDistanceTree(tree_d); -} - -/*get the tree of a deflated block with dynamic tree, the tree itself is also Huffman compressed with a known tree*/ -static unsigned getTreeInflateDynamic(HuffmanTree* tree_ll, HuffmanTree* tree_d, - LodePNGBitReader* reader) { - /*make sure that length values that aren't filled in will be 0, or a wrong tree will be generated*/ - unsigned error = 0; - unsigned n, HLIT, HDIST, HCLEN, i; - - /*see comments in deflateDynamic for explanation of the context and these variables, it is analogous*/ - unsigned* bitlen_ll = 0; /*lit,len code lengths*/ - unsigned* bitlen_d = 0; /*dist code lengths*/ - /*code length code lengths ("clcl"), the bit lengths of the huffman tree used to compress bitlen_ll and bitlen_d*/ - unsigned* bitlen_cl = 0; - HuffmanTree tree_cl; /*the code tree for code length codes (the huffman tree for compressed huffman trees)*/ - - if(reader->bitsize - reader->bp < 14) return 49; /*error: the bit pointer is or will go past the memory*/ - ensureBits17(reader, 14); - - /*number of literal/length codes + 257. Unlike the spec, the value 257 is added to it here already*/ - HLIT = readBits(reader, 5) + 257; - /*number of distance codes. Unlike the spec, the value 1 is added to it here already*/ - HDIST = readBits(reader, 5) + 1; - /*number of code length codes. Unlike the spec, the value 4 is added to it here already*/ - HCLEN = readBits(reader, 4) + 4; - - bitlen_cl = (unsigned*)lodepng_malloc(NUM_CODE_LENGTH_CODES * sizeof(unsigned)); - if(!bitlen_cl) return 83 /*alloc fail*/; - - HuffmanTree_init(&tree_cl); - - while(!error) { - /*read the code length codes out of 3 * (amount of code length codes) bits*/ - if(lodepng_gtofl(reader->bp, HCLEN * 3, reader->bitsize)) { - ERROR_BREAK(50); /*error: the bit pointer is or will go past the memory*/ - } - for(i = 0; i != HCLEN; ++i) { - ensureBits9(reader, 3); /*out of bounds already checked above */ - bitlen_cl[CLCL_ORDER[i]] = readBits(reader, 3); - } - for(i = HCLEN; i != NUM_CODE_LENGTH_CODES; ++i) { - bitlen_cl[CLCL_ORDER[i]] = 0; - } - - error = HuffmanTree_makeFromLengths(&tree_cl, bitlen_cl, NUM_CODE_LENGTH_CODES, 7); - if(error) break; - - /*now we can use this tree to read the lengths for the tree that this function will return*/ - bitlen_ll = (unsigned*)lodepng_malloc(NUM_DEFLATE_CODE_SYMBOLS * sizeof(unsigned)); - bitlen_d = (unsigned*)lodepng_malloc(NUM_DISTANCE_SYMBOLS * sizeof(unsigned)); - if(!bitlen_ll || !bitlen_d) ERROR_BREAK(83 /*alloc fail*/); - lodepng_memset(bitlen_ll, 0, NUM_DEFLATE_CODE_SYMBOLS * sizeof(*bitlen_ll)); - lodepng_memset(bitlen_d, 0, NUM_DISTANCE_SYMBOLS * sizeof(*bitlen_d)); - - /*i is the current symbol we're reading in the part that contains the code lengths of lit/len and dist codes*/ - i = 0; - while(i < HLIT + HDIST) { - unsigned code; - ensureBits25(reader, 22); /* up to 15 bits for huffman code, up to 7 extra bits below*/ - code = huffmanDecodeSymbol(reader, &tree_cl); - if(code <= 15) /*a length code*/ { - if(i < HLIT) bitlen_ll[i] = code; - else bitlen_d[i - HLIT] = code; - ++i; - } else if(code == 16) /*repeat previous*/ { - unsigned replength = 3; /*read in the 2 bits that indicate repeat length (3-6)*/ - unsigned value; /*set value to the previous code*/ - - if(i == 0) ERROR_BREAK(54); /*can't repeat previous if i is 0*/ - - replength += readBits(reader, 2); - - if(i < HLIT + 1) value = bitlen_ll[i - 1]; - else value = bitlen_d[i - HLIT - 1]; - /*repeat this value in the next lengths*/ - for(n = 0; n < replength; ++n) { - if(i >= HLIT + HDIST) ERROR_BREAK(13); /*error: i is larger than the amount of codes*/ - if(i < HLIT) bitlen_ll[i] = value; - else bitlen_d[i - HLIT] = value; - ++i; - } - } else if(code == 17) /*repeat "0" 3-10 times*/ { - unsigned replength = 3; /*read in the bits that indicate repeat length*/ - replength += readBits(reader, 3); - - /*repeat this value in the next lengths*/ - for(n = 0; n < replength; ++n) { - if(i >= HLIT + HDIST) ERROR_BREAK(14); /*error: i is larger than the amount of codes*/ - - if(i < HLIT) bitlen_ll[i] = 0; - else bitlen_d[i - HLIT] = 0; - ++i; - } - } else if(code == 18) /*repeat "0" 11-138 times*/ { - unsigned replength = 11; /*read in the bits that indicate repeat length*/ - replength += readBits(reader, 7); - - /*repeat this value in the next lengths*/ - for(n = 0; n < replength; ++n) { - if(i >= HLIT + HDIST) ERROR_BREAK(15); /*error: i is larger than the amount of codes*/ - - if(i < HLIT) bitlen_ll[i] = 0; - else bitlen_d[i - HLIT] = 0; - ++i; - } - } else /*if(code == INVALIDSYMBOL)*/ { - ERROR_BREAK(16); /*error: tried to read disallowed huffman symbol*/ - } - /*check if any of the ensureBits above went out of bounds*/ - if(reader->bp > reader->bitsize) { - /*return error code 10 or 11 depending on the situation that happened in huffmanDecodeSymbol - (10=no endcode, 11=wrong jump outside of tree)*/ - /* TODO: revise error codes 10,11,50: the above comment is no longer valid */ - ERROR_BREAK(50); /*error, bit pointer jumps past memory*/ - } - } - if(error) break; - - if(bitlen_ll[256] == 0) ERROR_BREAK(64); /*the length of the end code 256 must be larger than 0*/ - - /*now we've finally got HLIT and HDIST, so generate the code trees, and the function is done*/ - error = HuffmanTree_makeFromLengths(tree_ll, bitlen_ll, NUM_DEFLATE_CODE_SYMBOLS, 15); - if(error) break; - error = HuffmanTree_makeFromLengths(tree_d, bitlen_d, NUM_DISTANCE_SYMBOLS, 15); - - break; /*end of error-while*/ - } - - lodepng_free(bitlen_cl); - lodepng_free(bitlen_ll); - lodepng_free(bitlen_d); - HuffmanTree_cleanup(&tree_cl); - - return error; -} - -/*inflate a block with dynamic of fixed Huffman tree. btype must be 1 or 2.*/ -static unsigned inflateHuffmanBlock(ucvector* out, LodePNGBitReader* reader, - unsigned btype, size_t max_output_size) { - unsigned error = 0; - HuffmanTree tree_ll; /*the huffman tree for literal and length codes*/ - HuffmanTree tree_d; /*the huffman tree for distance codes*/ - const size_t reserved_size = 260; /* must be at least 258 for max length, and a few extra for adding a few extra literals */ - int done = 0; - - if(!ucvector_reserve(out, out->size + reserved_size)) return 83; /*alloc fail*/ - - HuffmanTree_init(&tree_ll); - HuffmanTree_init(&tree_d); - - if(btype == 1) error = getTreeInflateFixed(&tree_ll, &tree_d); - else /*if(btype == 2)*/ error = getTreeInflateDynamic(&tree_ll, &tree_d, reader); - - - while(!error && !done) /*decode all symbols until end reached, breaks at end code*/ { - /*code_ll is literal, length or end code*/ - unsigned code_ll; - /* ensure enough bits for 2 huffman code reads (15 bits each): if the first is a literal, a second literal is read at once. This - appears to be slightly faster, than ensuring 20 bits here for 1 huffman symbol and the potential 5 extra bits for the length symbol.*/ - ensureBits32(reader, 30); - code_ll = huffmanDecodeSymbol(reader, &tree_ll); - if(code_ll <= 255) { - /*slightly faster code path if multiple literals in a row*/ - out->data[out->size++] = (unsigned char)code_ll; - code_ll = huffmanDecodeSymbol(reader, &tree_ll); - } - if(code_ll <= 255) /*literal symbol*/ { - out->data[out->size++] = (unsigned char)code_ll; - } else if(code_ll >= FIRST_LENGTH_CODE_INDEX && code_ll <= LAST_LENGTH_CODE_INDEX) /*length code*/ { - unsigned code_d, distance; - unsigned numextrabits_l, numextrabits_d; /*extra bits for length and distance*/ - size_t start, backward, length; - - /*part 1: get length base*/ - length = LENGTHBASE[code_ll - FIRST_LENGTH_CODE_INDEX]; - - /*part 2: get extra bits and add the value of that to length*/ - numextrabits_l = LENGTHEXTRA[code_ll - FIRST_LENGTH_CODE_INDEX]; - if(numextrabits_l != 0) { - /* bits already ensured above */ - ensureBits25(reader, 5); - length += readBits(reader, numextrabits_l); - } - - /*part 3: get distance code*/ - ensureBits32(reader, 28); /* up to 15 for the huffman symbol, up to 13 for the extra bits */ - code_d = huffmanDecodeSymbol(reader, &tree_d); - if(code_d > 29) { - if(code_d <= 31) { - ERROR_BREAK(18); /*error: invalid distance code (30-31 are never used)*/ - } else /* if(code_d == INVALIDSYMBOL) */{ - ERROR_BREAK(16); /*error: tried to read disallowed huffman symbol*/ - } - } - distance = DISTANCEBASE[code_d]; - - /*part 4: get extra bits from distance*/ - numextrabits_d = DISTANCEEXTRA[code_d]; - if(numextrabits_d != 0) { - /* bits already ensured above */ - distance += readBits(reader, numextrabits_d); - } - - /*part 5: fill in all the out[n] values based on the length and dist*/ - start = out->size; - if(distance > start) ERROR_BREAK(52); /*too long backward distance*/ - backward = start - distance; - - out->size += length; - if(distance < length) { - size_t forward; - lodepng_memcpy(out->data + start, out->data + backward, distance); - start += distance; - for(forward = distance; forward < length; ++forward) { - out->data[start++] = out->data[backward++]; - } - } else { - lodepng_memcpy(out->data + start, out->data + backward, length); - } - } else if(code_ll == 256) { - done = 1; /*end code, finish the loop*/ - } else /*if(code_ll == INVALIDSYMBOL)*/ { - ERROR_BREAK(16); /*error: tried to read disallowed huffman symbol*/ - } - if(out->allocsize - out->size < reserved_size) { - if(!ucvector_reserve(out, out->size + reserved_size)) ERROR_BREAK(83); /*alloc fail*/ - } - /*check if any of the ensureBits above went out of bounds*/ - if(reader->bp > reader->bitsize) { - /*return error code 10 or 11 depending on the situation that happened in huffmanDecodeSymbol - (10=no endcode, 11=wrong jump outside of tree)*/ - /* TODO: revise error codes 10,11,50: the above comment is no longer valid */ - ERROR_BREAK(51); /*error, bit pointer jumps past memory*/ - } - if(max_output_size && out->size > max_output_size) { - ERROR_BREAK(109); /*error, larger than max size*/ - } - } - - HuffmanTree_cleanup(&tree_ll); - HuffmanTree_cleanup(&tree_d); - - return error; -} - -static unsigned inflateNoCompression(ucvector* out, LodePNGBitReader* reader, - const LodePNGDecompressSettings* settings) { - size_t bytepos; - size_t size = reader->size; - unsigned LEN, NLEN, error = 0; - - /*go to first boundary of byte*/ - bytepos = (reader->bp + 7u) >> 3u; - - /*read LEN (2 bytes) and NLEN (2 bytes)*/ - if(bytepos + 4 >= size) return 52; /*error, bit pointer will jump past memory*/ - LEN = (unsigned)reader->data[bytepos] + ((unsigned)reader->data[bytepos + 1] << 8u); bytepos += 2; - NLEN = (unsigned)reader->data[bytepos] + ((unsigned)reader->data[bytepos + 1] << 8u); bytepos += 2; - - /*check if 16-bit NLEN is really the one's complement of LEN*/ - if(!settings->ignore_nlen && LEN + NLEN != 65535) { - return 21; /*error: NLEN is not one's complement of LEN*/ - } - - if(!ucvector_resize(out, out->size + LEN)) return 83; /*alloc fail*/ - - /*read the literal data: LEN bytes are now stored in the out buffer*/ - if(bytepos + LEN > size) return 23; /*error: reading outside of in buffer*/ - - /*out->data can be NULL (when LEN is zero), and arithmetics on NULL ptr is undefined*/ - if (LEN) { - lodepng_memcpy(out->data + out->size - LEN, reader->data + bytepos, LEN); - bytepos += LEN; - } - - reader->bp = bytepos << 3u; - - return error; -} - -static unsigned lodepng_inflatev(ucvector* out, - const unsigned char* in, size_t insize, - const LodePNGDecompressSettings* settings) { - unsigned BFINAL = 0; - LodePNGBitReader reader; - unsigned error = LodePNGBitReader_init(&reader, in, insize); - - if(error) return error; - - while(!BFINAL) { - unsigned BTYPE; - if(reader.bitsize - reader.bp < 3) return 52; /*error, bit pointer will jump past memory*/ - ensureBits9(&reader, 3); - BFINAL = readBits(&reader, 1); - BTYPE = readBits(&reader, 2); - - if(BTYPE == 3) return 20; /*error: invalid BTYPE*/ - else if(BTYPE == 0) error = inflateNoCompression(out, &reader, settings); /*no compression*/ - else error = inflateHuffmanBlock(out, &reader, BTYPE, settings->max_output_size); /*compression, BTYPE 01 or 10*/ - if(!error && settings->max_output_size && out->size > settings->max_output_size) error = 109; - if(error) break; - } - - return error; -} - -unsigned lodepng_inflate(unsigned char** out, size_t* outsize, - const unsigned char* in, size_t insize, - const LodePNGDecompressSettings* settings) { - ucvector v = ucvector_init(*out, *outsize); - unsigned error = lodepng_inflatev(&v, in, insize, settings); - *out = v.data; - *outsize = v.size; - return error; -} - -static unsigned inflatev(ucvector* out, const unsigned char* in, size_t insize, - const LodePNGDecompressSettings* settings) { - if(settings->custom_inflate) { - unsigned error = settings->custom_inflate(&out->data, &out->size, in, insize, settings); - out->allocsize = out->size; - if(error) { - /*the custom inflate is allowed to have its own error codes, however, we translate it to code 110*/ - error = 110; - /*if there's a max output size, and the custom zlib returned error, then indicate that error instead*/ - if(settings->max_output_size && out->size > settings->max_output_size) error = 109; - } - return error; - } else { - return lodepng_inflatev(out, in, insize, settings); - } -} - -#endif /*LODEPNG_COMPILE_DECODER*/ - -#ifdef LODEPNG_COMPILE_ENCODER - -/* ////////////////////////////////////////////////////////////////////////// */ -/* / Deflator (Compressor) / */ -/* ////////////////////////////////////////////////////////////////////////// */ - -static const size_t MAX_SUPPORTED_DEFLATE_LENGTH = 258; - -/*search the index in the array, that has the largest value smaller than or equal to the given value, -given array must be sorted (if no value is smaller, it returns the size of the given array)*/ -static size_t searchCodeIndex(const unsigned* array, size_t array_size, size_t value) { - /*binary search (only small gain over linear). TODO: use CPU log2 instruction for getting symbols instead*/ - size_t left = 1; - size_t right = array_size - 1; - - while(left <= right) { - size_t mid = (left + right) >> 1; - if(array[mid] >= value) right = mid - 1; - else left = mid + 1; - } - if(left >= array_size || array[left] > value) left--; - return left; -} - -static void addLengthDistance(uivector* values, size_t length, size_t distance) { - /*values in encoded vector are those used by deflate: - 0-255: literal bytes - 256: end - 257-285: length/distance pair (length code, followed by extra length bits, distance code, extra distance bits) - 286-287: invalid*/ - - unsigned length_code = (unsigned)searchCodeIndex(LENGTHBASE, 29, length); - unsigned extra_length = (unsigned)(length - LENGTHBASE[length_code]); - unsigned dist_code = (unsigned)searchCodeIndex(DISTANCEBASE, 30, distance); - unsigned extra_distance = (unsigned)(distance - DISTANCEBASE[dist_code]); - - size_t pos = values->size; - /*TODO: return error when this fails (out of memory)*/ - unsigned ok = uivector_resize(values, values->size + 4); - if(ok) { - values->data[pos + 0] = length_code + FIRST_LENGTH_CODE_INDEX; - values->data[pos + 1] = extra_length; - values->data[pos + 2] = dist_code; - values->data[pos + 3] = extra_distance; - } -} - -/*3 bytes of data get encoded into two bytes. The hash cannot use more than 3 -bytes as input because 3 is the minimum match length for deflate*/ -static const unsigned HASH_NUM_VALUES = 65536; -static const unsigned HASH_BIT_MASK = 65535; /*HASH_NUM_VALUES - 1, but C90 does not like that as initializer*/ - -typedef struct Hash { - int* head; /*hash value to head circular pos - can be outdated if went around window*/ - /*circular pos to prev circular pos*/ - unsigned short* chain; - int* val; /*circular pos to hash value*/ - - /*TODO: do this not only for zeros but for any repeated byte. However for PNG - it's always going to be the zeros that dominate, so not important for PNG*/ - int* headz; /*similar to head, but for chainz*/ - unsigned short* chainz; /*those with same amount of zeros*/ - unsigned short* zeros; /*length of zeros streak, used as a second hash chain*/ -} Hash; - -static unsigned hash_init(Hash* hash, unsigned windowsize) { - unsigned i; - hash->head = (int*)lodepng_malloc(sizeof(int) * HASH_NUM_VALUES); - hash->val = (int*)lodepng_malloc(sizeof(int) * windowsize); - hash->chain = (unsigned short*)lodepng_malloc(sizeof(unsigned short) * windowsize); - - hash->zeros = (unsigned short*)lodepng_malloc(sizeof(unsigned short) * windowsize); - hash->headz = (int*)lodepng_malloc(sizeof(int) * (MAX_SUPPORTED_DEFLATE_LENGTH + 1)); - hash->chainz = (unsigned short*)lodepng_malloc(sizeof(unsigned short) * windowsize); - - if(!hash->head || !hash->chain || !hash->val || !hash->headz|| !hash->chainz || !hash->zeros) { - return 83; /*alloc fail*/ - } - - /*initialize hash table*/ - for(i = 0; i != HASH_NUM_VALUES; ++i) hash->head[i] = -1; - for(i = 0; i != windowsize; ++i) hash->val[i] = -1; - for(i = 0; i != windowsize; ++i) hash->chain[i] = i; /*same value as index indicates uninitialized*/ - - for(i = 0; i <= MAX_SUPPORTED_DEFLATE_LENGTH; ++i) hash->headz[i] = -1; - for(i = 0; i != windowsize; ++i) hash->chainz[i] = i; /*same value as index indicates uninitialized*/ - - return 0; -} - -static void hash_cleanup(Hash* hash) { - lodepng_free(hash->head); - lodepng_free(hash->val); - lodepng_free(hash->chain); - - lodepng_free(hash->zeros); - lodepng_free(hash->headz); - lodepng_free(hash->chainz); -} - - - -static unsigned getHash(const unsigned char* data, size_t size, size_t pos) { - unsigned result = 0; - if(pos + 2 < size) { - /*A simple shift and xor hash is used. Since the data of PNGs is dominated - by zeroes due to the filters, a better hash does not have a significant - effect on speed in traversing the chain, and causes more time spend on - calculating the hash.*/ - result ^= ((unsigned)data[pos + 0] << 0u); - result ^= ((unsigned)data[pos + 1] << 4u); - result ^= ((unsigned)data[pos + 2] << 8u); - } else { - size_t amount, i; - if(pos >= size) return 0; - amount = size - pos; - for(i = 0; i != amount; ++i) result ^= ((unsigned)data[pos + i] << (i * 8u)); - } - return result & HASH_BIT_MASK; -} - -static unsigned countZeros(const unsigned char* data, size_t size, size_t pos) { - const unsigned char* start = data + pos; - const unsigned char* end = start + MAX_SUPPORTED_DEFLATE_LENGTH; - if(end > data + size) end = data + size; - data = start; - while(data != end && *data == 0) ++data; - /*subtracting two addresses returned as 32-bit number (max value is MAX_SUPPORTED_DEFLATE_LENGTH)*/ - return (unsigned)(data - start); -} - -/*wpos = pos & (windowsize - 1)*/ -static void updateHashChain(Hash* hash, size_t wpos, unsigned hashval, unsigned short numzeros) { - hash->val[wpos] = (int)hashval; - if(hash->head[hashval] != -1) hash->chain[wpos] = hash->head[hashval]; - hash->head[hashval] = (int)wpos; - - hash->zeros[wpos] = numzeros; - if(hash->headz[numzeros] != -1) hash->chainz[wpos] = hash->headz[numzeros]; - hash->headz[numzeros] = (int)wpos; -} - -/* -LZ77-encode the data. Return value is error code. The input are raw bytes, the output -is in the form of unsigned integers with codes representing for example literal bytes, or -length/distance pairs. -It uses a hash table technique to let it encode faster. When doing LZ77 encoding, a -sliding window (of windowsize) is used, and all past bytes in that window can be used as -the "dictionary". A brute force search through all possible distances would be slow, and -this hash technique is one out of several ways to speed this up. -*/ -static unsigned encodeLZ77(uivector* out, Hash* hash, - const unsigned char* in, size_t inpos, size_t insize, unsigned windowsize, - unsigned minmatch, unsigned nicematch, unsigned lazymatching) { - size_t pos; - unsigned i, error = 0; - /*for large window lengths, assume the user wants no compression loss. Otherwise, max hash chain length speedup.*/ - unsigned maxchainlength = windowsize >= 8192 ? windowsize : windowsize / 8u; - unsigned maxlazymatch = windowsize >= 8192 ? MAX_SUPPORTED_DEFLATE_LENGTH : 64; - - unsigned usezeros = 1; /*not sure if setting it to false for windowsize < 8192 is better or worse*/ - unsigned numzeros = 0; - - unsigned offset; /*the offset represents the distance in LZ77 terminology*/ - unsigned length; - unsigned lazy = 0; - unsigned lazylength = 0, lazyoffset = 0; - unsigned hashval; - unsigned current_offset, current_length; - unsigned prev_offset; - const unsigned char *lastptr, *foreptr, *backptr; - unsigned hashpos; - - if(windowsize == 0 || windowsize > 32768) return 60; /*error: windowsize smaller/larger than allowed*/ - if((windowsize & (windowsize - 1)) != 0) return 90; /*error: must be power of two*/ - - if(nicematch > MAX_SUPPORTED_DEFLATE_LENGTH) nicematch = MAX_SUPPORTED_DEFLATE_LENGTH; - - for(pos = inpos; pos < insize; ++pos) { - size_t wpos = pos & (windowsize - 1); /*position for in 'circular' hash buffers*/ - unsigned chainlength = 0; - - hashval = getHash(in, insize, pos); - - if(usezeros && hashval == 0) { - if(numzeros == 0) numzeros = countZeros(in, insize, pos); - else if(pos + numzeros > insize || in[pos + numzeros - 1] != 0) --numzeros; - } else { - numzeros = 0; - } - - updateHashChain(hash, wpos, hashval, numzeros); - - /*the length and offset found for the current position*/ - length = 0; - offset = 0; - - hashpos = hash->chain[wpos]; - - lastptr = &in[insize < pos + MAX_SUPPORTED_DEFLATE_LENGTH ? insize : pos + MAX_SUPPORTED_DEFLATE_LENGTH]; - - /*search for the longest string*/ - prev_offset = 0; - for(;;) { - if(chainlength++ >= maxchainlength) break; - current_offset = (unsigned)(hashpos <= wpos ? wpos - hashpos : wpos - hashpos + windowsize); - - if(current_offset < prev_offset) break; /*stop when went completely around the circular buffer*/ - prev_offset = current_offset; - if(current_offset > 0) { - /*test the next characters*/ - foreptr = &in[pos]; - backptr = &in[pos - current_offset]; - - /*common case in PNGs is lots of zeros. Quickly skip over them as a speedup*/ - if(numzeros >= 3) { - unsigned skip = hash->zeros[hashpos]; - if(skip > numzeros) skip = numzeros; - backptr += skip; - foreptr += skip; - } - - while(foreptr != lastptr && *backptr == *foreptr) /*maximum supported length by deflate is max length*/ { - ++backptr; - ++foreptr; - } - current_length = (unsigned)(foreptr - &in[pos]); - - if(current_length > length) { - length = current_length; /*the longest length*/ - offset = current_offset; /*the offset that is related to this longest length*/ - /*jump out once a length of max length is found (speed gain). This also jumps - out if length is MAX_SUPPORTED_DEFLATE_LENGTH*/ - if(current_length >= nicematch) break; - } - } - - if(hashpos == hash->chain[hashpos]) break; - - if(numzeros >= 3 && length > numzeros) { - hashpos = hash->chainz[hashpos]; - if(hash->zeros[hashpos] != numzeros) break; - } else { - hashpos = hash->chain[hashpos]; - /*outdated hash value, happens if particular value was not encountered in whole last window*/ - if(hash->val[hashpos] != (int)hashval) break; - } - } - - if(lazymatching) { - if(!lazy && length >= 3 && length <= maxlazymatch && length < MAX_SUPPORTED_DEFLATE_LENGTH) { - lazy = 1; - lazylength = length; - lazyoffset = offset; - continue; /*try the next byte*/ - } - if(lazy) { - lazy = 0; - if(pos == 0) ERROR_BREAK(81); - if(length > lazylength + 1) { - /*push the previous character as literal*/ - if(!uivector_push_back(out, in[pos - 1])) ERROR_BREAK(83 /*alloc fail*/); - } else { - length = lazylength; - offset = lazyoffset; - hash->head[hashval] = -1; /*the same hashchain update will be done, this ensures no wrong alteration*/ - hash->headz[numzeros] = -1; /*idem*/ - --pos; - } - } - } - if(length >= 3 && offset > windowsize) ERROR_BREAK(86 /*too big (or overflown negative) offset*/); - - /*encode it as length/distance pair or literal value*/ - if(length < 3) /*only lengths of 3 or higher are supported as length/distance pair*/ { - if(!uivector_push_back(out, in[pos])) ERROR_BREAK(83 /*alloc fail*/); - } else if(length < minmatch || (length == 3 && offset > 4096)) { - /*compensate for the fact that longer offsets have more extra bits, a - length of only 3 may be not worth it then*/ - if(!uivector_push_back(out, in[pos])) ERROR_BREAK(83 /*alloc fail*/); - } else { - addLengthDistance(out, length, offset); - for(i = 1; i < length; ++i) { - ++pos; - wpos = pos & (windowsize - 1); - hashval = getHash(in, insize, pos); - if(usezeros && hashval == 0) { - if(numzeros == 0) numzeros = countZeros(in, insize, pos); - else if(pos + numzeros > insize || in[pos + numzeros - 1] != 0) --numzeros; - } else { - numzeros = 0; - } - updateHashChain(hash, wpos, hashval, numzeros); - } - } - } /*end of the loop through each character of input*/ - - return error; -} - -/* /////////////////////////////////////////////////////////////////////////// */ - -static unsigned deflateNoCompression(ucvector* out, const unsigned char* data, size_t datasize) { - /*non compressed deflate block data: 1 bit BFINAL,2 bits BTYPE,(5 bits): it jumps to start of next byte, - 2 bytes LEN, 2 bytes NLEN, LEN bytes literal DATA*/ - - size_t i, numdeflateblocks = (datasize + 65534u) / 65535u; - unsigned datapos = 0; - for(i = 0; i != numdeflateblocks; ++i) { - unsigned BFINAL, BTYPE, LEN, NLEN; - unsigned char firstbyte; - size_t pos = out->size; - - BFINAL = (i == numdeflateblocks - 1); - BTYPE = 0; - - LEN = 65535; - if(datasize - datapos < 65535u) LEN = (unsigned)datasize - datapos; - NLEN = 65535 - LEN; - - if(!ucvector_resize(out, out->size + LEN + 5)) return 83; /*alloc fail*/ - - firstbyte = (unsigned char)(BFINAL + ((BTYPE & 1u) << 1u) + ((BTYPE & 2u) << 1u)); - out->data[pos + 0] = firstbyte; - out->data[pos + 1] = (unsigned char)(LEN & 255); - out->data[pos + 2] = (unsigned char)(LEN >> 8u); - out->data[pos + 3] = (unsigned char)(NLEN & 255); - out->data[pos + 4] = (unsigned char)(NLEN >> 8u); - lodepng_memcpy(out->data + pos + 5, data + datapos, LEN); - datapos += LEN; - } - - return 0; -} - -/* -write the lz77-encoded data, which has lit, len and dist codes, to compressed stream using huffman trees. -tree_ll: the tree for lit and len codes. -tree_d: the tree for distance codes. -*/ -static void writeLZ77data(LodePNGBitWriter* writer, const uivector* lz77_encoded, - const HuffmanTree* tree_ll, const HuffmanTree* tree_d) { - size_t i = 0; - for(i = 0; i != lz77_encoded->size; ++i) { - unsigned val = lz77_encoded->data[i]; - writeBitsReversed(writer, tree_ll->codes[val], tree_ll->lengths[val]); - if(val > 256) /*for a length code, 3 more things have to be added*/ { - unsigned length_index = val - FIRST_LENGTH_CODE_INDEX; - unsigned n_length_extra_bits = LENGTHEXTRA[length_index]; - unsigned length_extra_bits = lz77_encoded->data[++i]; - - unsigned distance_code = lz77_encoded->data[++i]; - - unsigned distance_index = distance_code; - unsigned n_distance_extra_bits = DISTANCEEXTRA[distance_index]; - unsigned distance_extra_bits = lz77_encoded->data[++i]; - - writeBits(writer, length_extra_bits, n_length_extra_bits); - writeBitsReversed(writer, tree_d->codes[distance_code], tree_d->lengths[distance_code]); - writeBits(writer, distance_extra_bits, n_distance_extra_bits); - } - } -} - -/*Deflate for a block of type "dynamic", that is, with freely, optimally, created huffman trees*/ -static unsigned deflateDynamic(LodePNGBitWriter* writer, Hash* hash, - const unsigned char* data, size_t datapos, size_t dataend, - const LodePNGCompressSettings* settings, unsigned final) { - unsigned error = 0; - - /* - A block is compressed as follows: The PNG data is lz77 encoded, resulting in - literal bytes and length/distance pairs. This is then huffman compressed with - two huffman trees. One huffman tree is used for the lit and len values ("ll"), - another huffman tree is used for the dist values ("d"). These two trees are - stored using their code lengths, and to compress even more these code lengths - are also run-length encoded and huffman compressed. This gives a huffman tree - of code lengths "cl". The code lengths used to describe this third tree are - the code length code lengths ("clcl"). - */ - - /*The lz77 encoded data, represented with integers since there will also be length and distance codes in it*/ - uivector lz77_encoded; - HuffmanTree tree_ll; /*tree for lit,len values*/ - HuffmanTree tree_d; /*tree for distance codes*/ - HuffmanTree tree_cl; /*tree for encoding the code lengths representing tree_ll and tree_d*/ - unsigned* frequencies_ll = 0; /*frequency of lit,len codes*/ - unsigned* frequencies_d = 0; /*frequency of dist codes*/ - unsigned* frequencies_cl = 0; /*frequency of code length codes*/ - unsigned* bitlen_lld = 0; /*lit,len,dist code lengths (int bits), literally (without repeat codes).*/ - unsigned* bitlen_lld_e = 0; /*bitlen_lld encoded with repeat codes (this is a rudimentary run length compression)*/ - size_t datasize = dataend - datapos; - - /* - If we could call "bitlen_cl" the the code length code lengths ("clcl"), that is the bit lengths of codes to represent - tree_cl in CLCL_ORDER, then due to the huffman compression of huffman tree representations ("two levels"), there are - some analogies: - bitlen_lld is to tree_cl what data is to tree_ll and tree_d. - bitlen_lld_e is to bitlen_lld what lz77_encoded is to data. - bitlen_cl is to bitlen_lld_e what bitlen_lld is to lz77_encoded. - */ - - unsigned BFINAL = final; - size_t i; - size_t numcodes_ll, numcodes_d, numcodes_lld, numcodes_lld_e, numcodes_cl; - unsigned HLIT, HDIST, HCLEN; - - uivector_init(&lz77_encoded); - HuffmanTree_init(&tree_ll); - HuffmanTree_init(&tree_d); - HuffmanTree_init(&tree_cl); - /* could fit on stack, but >1KB is on the larger side so allocate instead */ - frequencies_ll = (unsigned*)lodepng_malloc(286 * sizeof(*frequencies_ll)); - frequencies_d = (unsigned*)lodepng_malloc(30 * sizeof(*frequencies_d)); - frequencies_cl = (unsigned*)lodepng_malloc(NUM_CODE_LENGTH_CODES * sizeof(*frequencies_cl)); - - if(!frequencies_ll || !frequencies_d || !frequencies_cl) error = 83; /*alloc fail*/ - - /*This while loop never loops due to a break at the end, it is here to - allow breaking out of it to the cleanup phase on error conditions.*/ - while(!error) { - lodepng_memset(frequencies_ll, 0, 286 * sizeof(*frequencies_ll)); - lodepng_memset(frequencies_d, 0, 30 * sizeof(*frequencies_d)); - lodepng_memset(frequencies_cl, 0, NUM_CODE_LENGTH_CODES * sizeof(*frequencies_cl)); - - if(settings->use_lz77) { - error = encodeLZ77(&lz77_encoded, hash, data, datapos, dataend, settings->windowsize, - settings->minmatch, settings->nicematch, settings->lazymatching); - if(error) break; - } else { - if(!uivector_resize(&lz77_encoded, datasize)) ERROR_BREAK(83 /*alloc fail*/); - for(i = datapos; i < dataend; ++i) lz77_encoded.data[i - datapos] = data[i]; /*no LZ77, but still will be Huffman compressed*/ - } - - /*Count the frequencies of lit, len and dist codes*/ - for(i = 0; i != lz77_encoded.size; ++i) { - unsigned symbol = lz77_encoded.data[i]; - ++frequencies_ll[symbol]; - if(symbol > 256) { - unsigned dist = lz77_encoded.data[i + 2]; - ++frequencies_d[dist]; - i += 3; - } - } - frequencies_ll[256] = 1; /*there will be exactly 1 end code, at the end of the block*/ - - /*Make both huffman trees, one for the lit and len codes, one for the dist codes*/ - error = HuffmanTree_makeFromFrequencies(&tree_ll, frequencies_ll, 257, 286, 15); - if(error) break; - /*2, not 1, is chosen for mincodes: some buggy PNG decoders require at least 2 symbols in the dist tree*/ - error = HuffmanTree_makeFromFrequencies(&tree_d, frequencies_d, 2, 30, 15); - if(error) break; - - numcodes_ll = LODEPNG_MIN(tree_ll.numcodes, 286); - numcodes_d = LODEPNG_MIN(tree_d.numcodes, 30); - /*store the code lengths of both generated trees in bitlen_lld*/ - numcodes_lld = numcodes_ll + numcodes_d; - bitlen_lld = (unsigned*)lodepng_malloc(numcodes_lld * sizeof(*bitlen_lld)); - /*numcodes_lld_e never needs more size than bitlen_lld*/ - bitlen_lld_e = (unsigned*)lodepng_malloc(numcodes_lld * sizeof(*bitlen_lld_e)); - if(!bitlen_lld || !bitlen_lld_e) ERROR_BREAK(83); /*alloc fail*/ - numcodes_lld_e = 0; - - for(i = 0; i != numcodes_ll; ++i) bitlen_lld[i] = tree_ll.lengths[i]; - for(i = 0; i != numcodes_d; ++i) bitlen_lld[numcodes_ll + i] = tree_d.lengths[i]; - - /*run-length compress bitlen_ldd into bitlen_lld_e by using repeat codes 16 (copy length 3-6 times), - 17 (3-10 zeroes), 18 (11-138 zeroes)*/ - for(i = 0; i != numcodes_lld; ++i) { - unsigned j = 0; /*amount of repetitions*/ - while(i + j + 1 < numcodes_lld && bitlen_lld[i + j + 1] == bitlen_lld[i]) ++j; - - if(bitlen_lld[i] == 0 && j >= 2) /*repeat code for zeroes*/ { - ++j; /*include the first zero*/ - if(j <= 10) /*repeat code 17 supports max 10 zeroes*/ { - bitlen_lld_e[numcodes_lld_e++] = 17; - bitlen_lld_e[numcodes_lld_e++] = j - 3; - } else /*repeat code 18 supports max 138 zeroes*/ { - if(j > 138) j = 138; - bitlen_lld_e[numcodes_lld_e++] = 18; - bitlen_lld_e[numcodes_lld_e++] = j - 11; - } - i += (j - 1); - } else if(j >= 3) /*repeat code for value other than zero*/ { - size_t k; - unsigned num = j / 6u, rest = j % 6u; - bitlen_lld_e[numcodes_lld_e++] = bitlen_lld[i]; - for(k = 0; k < num; ++k) { - bitlen_lld_e[numcodes_lld_e++] = 16; - bitlen_lld_e[numcodes_lld_e++] = 6 - 3; - } - if(rest >= 3) { - bitlen_lld_e[numcodes_lld_e++] = 16; - bitlen_lld_e[numcodes_lld_e++] = rest - 3; - } - else j -= rest; - i += j; - } else /*too short to benefit from repeat code*/ { - bitlen_lld_e[numcodes_lld_e++] = bitlen_lld[i]; - } - } - - /*generate tree_cl, the huffmantree of huffmantrees*/ - for(i = 0; i != numcodes_lld_e; ++i) { - ++frequencies_cl[bitlen_lld_e[i]]; - /*after a repeat code come the bits that specify the number of repetitions, - those don't need to be in the frequencies_cl calculation*/ - if(bitlen_lld_e[i] >= 16) ++i; - } - - error = HuffmanTree_makeFromFrequencies(&tree_cl, frequencies_cl, - NUM_CODE_LENGTH_CODES, NUM_CODE_LENGTH_CODES, 7); - if(error) break; - - /*compute amount of code-length-code-lengths to output*/ - numcodes_cl = NUM_CODE_LENGTH_CODES; - /*trim zeros at the end (using CLCL_ORDER), but minimum size must be 4 (see HCLEN below)*/ - while(numcodes_cl > 4u && tree_cl.lengths[CLCL_ORDER[numcodes_cl - 1u]] == 0) { - numcodes_cl--; - } - - /* - Write everything into the output - - After the BFINAL and BTYPE, the dynamic block consists out of the following: - - 5 bits HLIT, 5 bits HDIST, 4 bits HCLEN - - (HCLEN+4)*3 bits code lengths of code length alphabet - - HLIT + 257 code lengths of lit/length alphabet (encoded using the code length - alphabet, + possible repetition codes 16, 17, 18) - - HDIST + 1 code lengths of distance alphabet (encoded using the code length - alphabet, + possible repetition codes 16, 17, 18) - - compressed data - - 256 (end code) - */ - - /*Write block type*/ - writeBits(writer, BFINAL, 1); - writeBits(writer, 0, 1); /*first bit of BTYPE "dynamic"*/ - writeBits(writer, 1, 1); /*second bit of BTYPE "dynamic"*/ - - /*write the HLIT, HDIST and HCLEN values*/ - /*all three sizes take trimmed ending zeroes into account, done either by HuffmanTree_makeFromFrequencies - or in the loop for numcodes_cl above, which saves space. */ - HLIT = (unsigned)(numcodes_ll - 257); - HDIST = (unsigned)(numcodes_d - 1); - HCLEN = (unsigned)(numcodes_cl - 4); - writeBits(writer, HLIT, 5); - writeBits(writer, HDIST, 5); - writeBits(writer, HCLEN, 4); - - /*write the code lengths of the code length alphabet ("bitlen_cl")*/ - for(i = 0; i != numcodes_cl; ++i) writeBits(writer, tree_cl.lengths[CLCL_ORDER[i]], 3); - - /*write the lengths of the lit/len AND the dist alphabet*/ - for(i = 0; i != numcodes_lld_e; ++i) { - writeBitsReversed(writer, tree_cl.codes[bitlen_lld_e[i]], tree_cl.lengths[bitlen_lld_e[i]]); - /*extra bits of repeat codes*/ - if(bitlen_lld_e[i] == 16) writeBits(writer, bitlen_lld_e[++i], 2); - else if(bitlen_lld_e[i] == 17) writeBits(writer, bitlen_lld_e[++i], 3); - else if(bitlen_lld_e[i] == 18) writeBits(writer, bitlen_lld_e[++i], 7); - } - - /*write the compressed data symbols*/ - writeLZ77data(writer, &lz77_encoded, &tree_ll, &tree_d); - /*error: the length of the end code 256 must be larger than 0*/ - if(tree_ll.lengths[256] == 0) ERROR_BREAK(64); - - /*write the end code*/ - writeBitsReversed(writer, tree_ll.codes[256], tree_ll.lengths[256]); - - break; /*end of error-while*/ - } - - /*cleanup*/ - uivector_cleanup(&lz77_encoded); - HuffmanTree_cleanup(&tree_ll); - HuffmanTree_cleanup(&tree_d); - HuffmanTree_cleanup(&tree_cl); - lodepng_free(frequencies_ll); - lodepng_free(frequencies_d); - lodepng_free(frequencies_cl); - lodepng_free(bitlen_lld); - lodepng_free(bitlen_lld_e); - - return error; -} - -static unsigned deflateFixed(LodePNGBitWriter* writer, Hash* hash, - const unsigned char* data, - size_t datapos, size_t dataend, - const LodePNGCompressSettings* settings, unsigned final) { - HuffmanTree tree_ll; /*tree for literal values and length codes*/ - HuffmanTree tree_d; /*tree for distance codes*/ - - unsigned BFINAL = final; - unsigned error = 0; - size_t i; - - HuffmanTree_init(&tree_ll); - HuffmanTree_init(&tree_d); - - error = generateFixedLitLenTree(&tree_ll); - if(!error) error = generateFixedDistanceTree(&tree_d); - - if(!error) { - writeBits(writer, BFINAL, 1); - writeBits(writer, 1, 1); /*first bit of BTYPE*/ - writeBits(writer, 0, 1); /*second bit of BTYPE*/ - - if(settings->use_lz77) /*LZ77 encoded*/ { - uivector lz77_encoded; - uivector_init(&lz77_encoded); - error = encodeLZ77(&lz77_encoded, hash, data, datapos, dataend, settings->windowsize, - settings->minmatch, settings->nicematch, settings->lazymatching); - if(!error) writeLZ77data(writer, &lz77_encoded, &tree_ll, &tree_d); - uivector_cleanup(&lz77_encoded); - } else /*no LZ77, but still will be Huffman compressed*/ { - for(i = datapos; i < dataend; ++i) { - writeBitsReversed(writer, tree_ll.codes[data[i]], tree_ll.lengths[data[i]]); - } - } - /*add END code*/ - if(!error) writeBitsReversed(writer,tree_ll.codes[256], tree_ll.lengths[256]); - } - - /*cleanup*/ - HuffmanTree_cleanup(&tree_ll); - HuffmanTree_cleanup(&tree_d); - - return error; -} - -static unsigned lodepng_deflatev(ucvector* out, const unsigned char* in, size_t insize, - const LodePNGCompressSettings* settings) { - unsigned error = 0; - size_t i, blocksize, numdeflateblocks; - Hash hash; - LodePNGBitWriter writer; - - LodePNGBitWriter_init(&writer, out); - - if(settings->btype > 2) return 61; - else if(settings->btype == 0) return deflateNoCompression(out, in, insize); - else if(settings->btype == 1) blocksize = insize; - else /*if(settings->btype == 2)*/ { - /*on PNGs, deflate blocks of 65-262k seem to give most dense encoding*/ - blocksize = insize / 8u + 8; - if(blocksize < 65536) blocksize = 65536; - if(blocksize > 262144) blocksize = 262144; - } - - numdeflateblocks = (insize + blocksize - 1) / blocksize; - if(numdeflateblocks == 0) numdeflateblocks = 1; - - error = hash_init(&hash, settings->windowsize); - - if(!error) { - for(i = 0; i != numdeflateblocks && !error; ++i) { - unsigned final = (i == numdeflateblocks - 1); - size_t start = i * blocksize; - size_t end = start + blocksize; - if(end > insize) end = insize; - - if(settings->btype == 1) error = deflateFixed(&writer, &hash, in, start, end, settings, final); - else if(settings->btype == 2) error = deflateDynamic(&writer, &hash, in, start, end, settings, final); - } - } - - hash_cleanup(&hash); - - return error; -} - -unsigned lodepng_deflate(unsigned char** out, size_t* outsize, - const unsigned char* in, size_t insize, - const LodePNGCompressSettings* settings) { - ucvector v = ucvector_init(*out, *outsize); - unsigned error = lodepng_deflatev(&v, in, insize, settings); - *out = v.data; - *outsize = v.size; - return error; -} - -static unsigned deflate(unsigned char** out, size_t* outsize, - const unsigned char* in, size_t insize, - const LodePNGCompressSettings* settings) { - if(settings->custom_deflate) { - unsigned error = settings->custom_deflate(out, outsize, in, insize, settings); - /*the custom deflate is allowed to have its own error codes, however, we translate it to code 111*/ - return error ? 111 : 0; - } else { - return lodepng_deflate(out, outsize, in, insize, settings); - } -} - -#endif /*LODEPNG_COMPILE_DECODER*/ - -/* ////////////////////////////////////////////////////////////////////////// */ -/* / Adler32 / */ -/* ////////////////////////////////////////////////////////////////////////// */ - -static unsigned update_adler32(unsigned adler, const unsigned char* data, unsigned len) { - unsigned s1 = adler & 0xffffu; - unsigned s2 = (adler >> 16u) & 0xffffu; - - while(len != 0u) { - unsigned i; - /*at least 5552 sums can be done before the sums overflow, saving a lot of module divisions*/ - unsigned amount = len > 5552u ? 5552u : len; - len -= amount; - for(i = 0; i != amount; ++i) { - s1 += (*data++); - s2 += s1; - } - s1 %= 65521u; - s2 %= 65521u; - } - - return (s2 << 16u) | s1; -} - -/*Return the adler32 of the bytes data[0..len-1]*/ -static unsigned adler32(const unsigned char* data, unsigned len) { - return update_adler32(1u, data, len); -} - -/* ////////////////////////////////////////////////////////////////////////// */ -/* / Zlib / */ -/* ////////////////////////////////////////////////////////////////////////// */ - -#ifdef LODEPNG_COMPILE_DECODER - -static unsigned lodepng_zlib_decompressv(ucvector* out, - const unsigned char* in, size_t insize, - const LodePNGDecompressSettings* settings) { - unsigned error = 0; - unsigned CM, CINFO, FDICT; - - if(insize < 2) return 53; /*error, size of zlib data too small*/ - /*read information from zlib header*/ - if((in[0] * 256 + in[1]) % 31 != 0) { - /*error: 256 * in[0] + in[1] must be a multiple of 31, the FCHECK value is supposed to be made that way*/ - return 24; - } - - CM = in[0] & 15; - CINFO = (in[0] >> 4) & 15; - /*FCHECK = in[1] & 31;*/ /*FCHECK is already tested above*/ - FDICT = (in[1] >> 5) & 1; - /*FLEVEL = (in[1] >> 6) & 3;*/ /*FLEVEL is not used here*/ - - if(CM != 8 || CINFO > 7) { - /*error: only compression method 8: inflate with sliding window of 32k is supported by the PNG spec*/ - return 25; - } - if(FDICT != 0) { - /*error: the specification of PNG says about the zlib stream: - "The additional flags shall not specify a preset dictionary."*/ - return 26; - } - - error = inflatev(out, in + 2, insize - 2, settings); - if(error) return error; - - if(!settings->ignore_adler32) { - unsigned ADLER32 = lodepng_read32bitInt(&in[insize - 4]); - unsigned checksum = adler32(out->data, (unsigned)(out->size)); - if(checksum != ADLER32) return 58; /*error, adler checksum not correct, data must be corrupted*/ - } - - return 0; /*no error*/ -} - - -unsigned lodepng_zlib_decompress(unsigned char** out, size_t* outsize, const unsigned char* in, - size_t insize, const LodePNGDecompressSettings* settings) { - ucvector v = ucvector_init(*out, *outsize); - unsigned error = lodepng_zlib_decompressv(&v, in, insize, settings); - *out = v.data; - *outsize = v.size; - return error; -} - -/*expected_size is expected output size, to avoid intermediate allocations. Set to 0 if not known. */ -static unsigned zlib_decompress(unsigned char** out, size_t* outsize, size_t expected_size, - const unsigned char* in, size_t insize, const LodePNGDecompressSettings* settings) { - unsigned error; - if(settings->custom_zlib) { - error = settings->custom_zlib(out, outsize, in, insize, settings); - if(error) { - /*the custom zlib is allowed to have its own error codes, however, we translate it to code 110*/ - error = 110; - /*if there's a max output size, and the custom zlib returned error, then indicate that error instead*/ - if(settings->max_output_size && *outsize > settings->max_output_size) error = 109; - } - } else { - ucvector v = ucvector_init(*out, *outsize); - if(expected_size) { - /*reserve the memory to avoid intermediate reallocations*/ - ucvector_resize(&v, *outsize + expected_size); - v.size = *outsize; - } - error = lodepng_zlib_decompressv(&v, in, insize, settings); - *out = v.data; - *outsize = v.size; - } - return error; -} - -#endif /*LODEPNG_COMPILE_DECODER*/ - -#ifdef LODEPNG_COMPILE_ENCODER - -unsigned lodepng_zlib_compress(unsigned char** out, size_t* outsize, const unsigned char* in, - size_t insize, const LodePNGCompressSettings* settings) { - size_t i; - unsigned error; - unsigned char* deflatedata = 0; - size_t deflatesize = 0; - - error = deflate(&deflatedata, &deflatesize, in, insize, settings); - - *out = NULL; - *outsize = 0; - if(!error) { - *outsize = deflatesize + 6; - *out = (unsigned char*)lodepng_malloc(*outsize); - if(!*out) error = 83; /*alloc fail*/ - } - - if(!error) { - unsigned ADLER32 = adler32(in, (unsigned)insize); - /*zlib data: 1 byte CMF (CM+CINFO), 1 byte FLG, deflate data, 4 byte ADLER32 checksum of the Decompressed data*/ - unsigned CMF = 120; /*0b01111000: CM 8, CINFO 7. With CINFO 7, any window size up to 32768 can be used.*/ - unsigned FLEVEL = 0; - unsigned FDICT = 0; - unsigned CMFFLG = 256 * CMF + FDICT * 32 + FLEVEL * 64; - unsigned FCHECK = 31 - CMFFLG % 31; - CMFFLG += FCHECK; - - (*out)[0] = (unsigned char)(CMFFLG >> 8); - (*out)[1] = (unsigned char)(CMFFLG & 255); - for(i = 0; i != deflatesize; ++i) (*out)[i + 2] = deflatedata[i]; - lodepng_set32bitInt(&(*out)[*outsize - 4], ADLER32); - } - - lodepng_free(deflatedata); - return error; -} - -/* compress using the default or custom zlib function */ -static unsigned zlib_compress(unsigned char** out, size_t* outsize, const unsigned char* in, - size_t insize, const LodePNGCompressSettings* settings) { - if(settings->custom_zlib) { - unsigned error = settings->custom_zlib(out, outsize, in, insize, settings); - /*the custom zlib is allowed to have its own error codes, however, we translate it to code 111*/ - return error ? 111 : 0; - } else { - return lodepng_zlib_compress(out, outsize, in, insize, settings); - } -} - -#endif /*LODEPNG_COMPILE_ENCODER*/ - -#else /*no LODEPNG_COMPILE_ZLIB*/ - -#ifdef LODEPNG_COMPILE_DECODER -static unsigned zlib_decompress(unsigned char** out, size_t* outsize, size_t expected_size, - const unsigned char* in, size_t insize, const LodePNGDecompressSettings* settings) { - if(!settings->custom_zlib) return 87; /*no custom zlib function provided */ - (void)expected_size; - return settings->custom_zlib(out, outsize, in, insize, settings); -} -#endif /*LODEPNG_COMPILE_DECODER*/ -#ifdef LODEPNG_COMPILE_ENCODER -static unsigned zlib_compress(unsigned char** out, size_t* outsize, const unsigned char* in, - size_t insize, const LodePNGCompressSettings* settings) { - if(!settings->custom_zlib) return 87; /*no custom zlib function provided */ - return settings->custom_zlib(out, outsize, in, insize, settings); -} -#endif /*LODEPNG_COMPILE_ENCODER*/ - -#endif /*LODEPNG_COMPILE_ZLIB*/ - -/* ////////////////////////////////////////////////////////////////////////// */ - -#ifdef LODEPNG_COMPILE_ENCODER - -/*this is a good tradeoff between speed and compression ratio*/ -#define DEFAULT_WINDOWSIZE 2048 - -void lodepng_compress_settings_init(LodePNGCompressSettings* settings) { - /*compress with dynamic huffman tree (not in the mathematical sense, just not the predefined one)*/ - settings->btype = 2; - settings->use_lz77 = 1; - settings->windowsize = DEFAULT_WINDOWSIZE; - settings->minmatch = 3; - settings->nicematch = 128; - settings->lazymatching = 1; - - settings->custom_zlib = 0; - settings->custom_deflate = 0; - settings->custom_context = 0; -} - -const LodePNGCompressSettings lodepng_default_compress_settings = {2, 1, DEFAULT_WINDOWSIZE, 3, 128, 1, 0, 0, 0}; - - -#endif /*LODEPNG_COMPILE_ENCODER*/ - -#ifdef LODEPNG_COMPILE_DECODER - -void lodepng_decompress_settings_init(LodePNGDecompressSettings* settings) { - settings->ignore_adler32 = 0; - settings->ignore_nlen = 0; - settings->max_output_size = 0; - - settings->custom_zlib = 0; - settings->custom_inflate = 0; - settings->custom_context = 0; -} - -const LodePNGDecompressSettings lodepng_default_decompress_settings = {0, 0, 0, 0, 0, 0}; - -#endif /*LODEPNG_COMPILE_DECODER*/ - -/* ////////////////////////////////////////////////////////////////////////// */ -/* ////////////////////////////////////////////////////////////////////////// */ -/* // End of Zlib related code. Begin of PNG related code. // */ -/* ////////////////////////////////////////////////////////////////////////// */ -/* ////////////////////////////////////////////////////////////////////////// */ - -#ifdef LODEPNG_COMPILE_PNG - -/* ////////////////////////////////////////////////////////////////////////// */ -/* / CRC32 / */ -/* ////////////////////////////////////////////////////////////////////////// */ - - -#ifdef LODEPNG_COMPILE_CRC -/* CRC polynomial: 0xedb88320 */ -static unsigned lodepng_crc32_table[256] = { - 0u, 1996959894u, 3993919788u, 2567524794u, 124634137u, 1886057615u, 3915621685u, 2657392035u, - 249268274u, 2044508324u, 3772115230u, 2547177864u, 162941995u, 2125561021u, 3887607047u, 2428444049u, - 498536548u, 1789927666u, 4089016648u, 2227061214u, 450548861u, 1843258603u, 4107580753u, 2211677639u, - 325883990u, 1684777152u, 4251122042u, 2321926636u, 335633487u, 1661365465u, 4195302755u, 2366115317u, - 997073096u, 1281953886u, 3579855332u, 2724688242u, 1006888145u, 1258607687u, 3524101629u, 2768942443u, - 901097722u, 1119000684u, 3686517206u, 2898065728u, 853044451u, 1172266101u, 3705015759u, 2882616665u, - 651767980u, 1373503546u, 3369554304u, 3218104598u, 565507253u, 1454621731u, 3485111705u, 3099436303u, - 671266974u, 1594198024u, 3322730930u, 2970347812u, 795835527u, 1483230225u, 3244367275u, 3060149565u, - 1994146192u, 31158534u, 2563907772u, 4023717930u, 1907459465u, 112637215u, 2680153253u, 3904427059u, - 2013776290u, 251722036u, 2517215374u, 3775830040u, 2137656763u, 141376813u, 2439277719u, 3865271297u, - 1802195444u, 476864866u, 2238001368u, 4066508878u, 1812370925u, 453092731u, 2181625025u, 4111451223u, - 1706088902u, 314042704u, 2344532202u, 4240017532u, 1658658271u, 366619977u, 2362670323u, 4224994405u, - 1303535960u, 984961486u, 2747007092u, 3569037538u, 1256170817u, 1037604311u, 2765210733u, 3554079995u, - 1131014506u, 879679996u, 2909243462u, 3663771856u, 1141124467u, 855842277u, 2852801631u, 3708648649u, - 1342533948u, 654459306u, 3188396048u, 3373015174u, 1466479909u, 544179635u, 3110523913u, 3462522015u, - 1591671054u, 702138776u, 2966460450u, 3352799412u, 1504918807u, 783551873u, 3082640443u, 3233442989u, - 3988292384u, 2596254646u, 62317068u, 1957810842u, 3939845945u, 2647816111u, 81470997u, 1943803523u, - 3814918930u, 2489596804u, 225274430u, 2053790376u, 3826175755u, 2466906013u, 167816743u, 2097651377u, - 4027552580u, 2265490386u, 503444072u, 1762050814u, 4150417245u, 2154129355u, 426522225u, 1852507879u, - 4275313526u, 2312317920u, 282753626u, 1742555852u, 4189708143u, 2394877945u, 397917763u, 1622183637u, - 3604390888u, 2714866558u, 953729732u, 1340076626u, 3518719985u, 2797360999u, 1068828381u, 1219638859u, - 3624741850u, 2936675148u, 906185462u, 1090812512u, 3747672003u, 2825379669u, 829329135u, 1181335161u, - 3412177804u, 3160834842u, 628085408u, 1382605366u, 3423369109u, 3138078467u, 570562233u, 1426400815u, - 3317316542u, 2998733608u, 733239954u, 1555261956u, 3268935591u, 3050360625u, 752459403u, 1541320221u, - 2607071920u, 3965973030u, 1969922972u, 40735498u, 2617837225u, 3943577151u, 1913087877u, 83908371u, - 2512341634u, 3803740692u, 2075208622u, 213261112u, 2463272603u, 3855990285u, 2094854071u, 198958881u, - 2262029012u, 4057260610u, 1759359992u, 534414190u, 2176718541u, 4139329115u, 1873836001u, 414664567u, - 2282248934u, 4279200368u, 1711684554u, 285281116u, 2405801727u, 4167216745u, 1634467795u, 376229701u, - 2685067896u, 3608007406u, 1308918612u, 956543938u, 2808555105u, 3495958263u, 1231636301u, 1047427035u, - 2932959818u, 3654703836u, 1088359270u, 936918000u, 2847714899u, 3736837829u, 1202900863u, 817233897u, - 3183342108u, 3401237130u, 1404277552u, 615818150u, 3134207493u, 3453421203u, 1423857449u, 601450431u, - 3009837614u, 3294710456u, 1567103746u, 711928724u, 3020668471u, 3272380065u, 1510334235u, 755167117u -}; - -/*Return the CRC of the bytes buf[0..len-1].*/ -unsigned lodepng_crc32(const unsigned char* data, size_t length) { - unsigned r = 0xffffffffu; - size_t i; - for(i = 0; i < length; ++i) { - r = lodepng_crc32_table[(r ^ data[i]) & 0xffu] ^ (r >> 8u); - } - return r ^ 0xffffffffu; -} -#else /* LODEPNG_COMPILE_CRC */ -/*in this case, the function is only declared here, and must be defined externally -so that it will be linked in*/ -unsigned lodepng_crc32(const unsigned char* data, size_t length); -#endif /* LODEPNG_COMPILE_CRC */ - -/* ////////////////////////////////////////////////////////////////////////// */ -/* / Reading and writing PNG color channel bits / */ -/* ////////////////////////////////////////////////////////////////////////// */ - -/* The color channel bits of less-than-8-bit pixels are read with the MSB of bytes first, -so LodePNGBitWriter and LodePNGBitReader can't be used for those. */ - -static unsigned char readBitFromReversedStream(size_t* bitpointer, const unsigned char* bitstream) { - unsigned char result = (unsigned char)((bitstream[(*bitpointer) >> 3] >> (7 - ((*bitpointer) & 0x7))) & 1); - ++(*bitpointer); - return result; -} - -/* TODO: make this faster */ -static unsigned readBitsFromReversedStream(size_t* bitpointer, const unsigned char* bitstream, size_t nbits) { - unsigned result = 0; - size_t i; - for(i = 0 ; i < nbits; ++i) { - result <<= 1u; - result |= (unsigned)readBitFromReversedStream(bitpointer, bitstream); - } - return result; -} - -static void setBitOfReversedStream(size_t* bitpointer, unsigned char* bitstream, unsigned char bit) { - /*the current bit in bitstream may be 0 or 1 for this to work*/ - if(bit == 0) bitstream[(*bitpointer) >> 3u] &= (unsigned char)(~(1u << (7u - ((*bitpointer) & 7u)))); - else bitstream[(*bitpointer) >> 3u] |= (1u << (7u - ((*bitpointer) & 7u))); - ++(*bitpointer); -} - -/* ////////////////////////////////////////////////////////////////////////// */ -/* / PNG chunks / */ -/* ////////////////////////////////////////////////////////////////////////// */ - -unsigned lodepng_chunk_length(const unsigned char* chunk) { - return lodepng_read32bitInt(chunk); -} - -void lodepng_chunk_type(char type[5], const unsigned char* chunk) { - unsigned i; - for(i = 0; i != 4; ++i) type[i] = (char)chunk[4 + i]; - type[4] = 0; /*null termination char*/ -} - -unsigned char lodepng_chunk_type_equals(const unsigned char* chunk, const char* type) { - if(lodepng_strlen(type) != 4) return 0; - return (chunk[4] == type[0] && chunk[5] == type[1] && chunk[6] == type[2] && chunk[7] == type[3]); -} - -unsigned char lodepng_chunk_ancillary(const unsigned char* chunk) { - return((chunk[4] & 32) != 0); -} - -unsigned char lodepng_chunk_private(const unsigned char* chunk) { - return((chunk[6] & 32) != 0); -} - -unsigned char lodepng_chunk_safetocopy(const unsigned char* chunk) { - return((chunk[7] & 32) != 0); -} - -unsigned char* lodepng_chunk_data(unsigned char* chunk) { - return &chunk[8]; -} - -const unsigned char* lodepng_chunk_data_const(const unsigned char* chunk) { - return &chunk[8]; -} - -unsigned lodepng_chunk_check_crc(const unsigned char* chunk) { - unsigned length = lodepng_chunk_length(chunk); - unsigned CRC = lodepng_read32bitInt(&chunk[length + 8]); - /*the CRC is taken of the data and the 4 chunk type letters, not the length*/ - unsigned checksum = lodepng_crc32(&chunk[4], length + 4); - if(CRC != checksum) return 1; - else return 0; -} - -void lodepng_chunk_generate_crc(unsigned char* chunk) { - unsigned length = lodepng_chunk_length(chunk); - unsigned CRC = lodepng_crc32(&chunk[4], length + 4); - lodepng_set32bitInt(chunk + 8 + length, CRC); -} - -unsigned char* lodepng_chunk_next(unsigned char* chunk, unsigned char* end) { - size_t available_size = (size_t)(end - chunk); - if(chunk >= end || available_size < 12) return end; /*too small to contain a chunk*/ - if(chunk[0] == 0x89 && chunk[1] == 0x50 && chunk[2] == 0x4e && chunk[3] == 0x47 - && chunk[4] == 0x0d && chunk[5] == 0x0a && chunk[6] == 0x1a && chunk[7] == 0x0a) { - /* Is PNG magic header at start of PNG file. Jump to first actual chunk. */ - return chunk + 8; - } else { - size_t total_chunk_length; - if(lodepng_addofl(lodepng_chunk_length(chunk), 12, &total_chunk_length)) return end; - if(total_chunk_length > available_size) return end; /*outside of range*/ - return chunk + total_chunk_length; - } -} - -const unsigned char* lodepng_chunk_next_const(const unsigned char* chunk, const unsigned char* end) { - size_t available_size = (size_t)(end - chunk); - if(chunk >= end || available_size < 12) return end; /*too small to contain a chunk*/ - if(chunk[0] == 0x89 && chunk[1] == 0x50 && chunk[2] == 0x4e && chunk[3] == 0x47 - && chunk[4] == 0x0d && chunk[5] == 0x0a && chunk[6] == 0x1a && chunk[7] == 0x0a) { - /* Is PNG magic header at start of PNG file. Jump to first actual chunk. */ - return chunk + 8; - } else { - size_t total_chunk_length; - if(lodepng_addofl(lodepng_chunk_length(chunk), 12, &total_chunk_length)) return end; - if(total_chunk_length > available_size) return end; /*outside of range*/ - return chunk + total_chunk_length; - } -} - -unsigned char* lodepng_chunk_find(unsigned char* chunk, unsigned char* end, const char type[5]) { - for(;;) { - if(chunk >= end || end - chunk < 12) return 0; /* past file end: chunk + 12 > end */ - if(lodepng_chunk_type_equals(chunk, type)) return chunk; - chunk = lodepng_chunk_next(chunk, end); - } -} - -const unsigned char* lodepng_chunk_find_const(const unsigned char* chunk, const unsigned char* end, const char type[5]) { - for(;;) { - if(chunk >= end || end - chunk < 12) return 0; /* past file end: chunk + 12 > end */ - if(lodepng_chunk_type_equals(chunk, type)) return chunk; - chunk = lodepng_chunk_next_const(chunk, end); - } -} - -unsigned lodepng_chunk_append(unsigned char** out, size_t* outsize, const unsigned char* chunk) { - unsigned i; - size_t total_chunk_length, new_length; - unsigned char *chunk_start, *new_buffer; - - if(lodepng_addofl(lodepng_chunk_length(chunk), 12, &total_chunk_length)) return 77; - if(lodepng_addofl(*outsize, total_chunk_length, &new_length)) return 77; - - new_buffer = (unsigned char*)lodepng_realloc(*out, new_length); - if(!new_buffer) return 83; /*alloc fail*/ - (*out) = new_buffer; - (*outsize) = new_length; - chunk_start = &(*out)[new_length - total_chunk_length]; - - for(i = 0; i != total_chunk_length; ++i) chunk_start[i] = chunk[i]; - - return 0; -} - -/*Sets length and name and allocates the space for data and crc but does not -set data or crc yet. Returns the start of the chunk in chunk. The start of -the data is at chunk + 8. To finalize chunk, add the data, then use -lodepng_chunk_generate_crc */ -static unsigned lodepng_chunk_init(unsigned char** chunk, - ucvector* out, - unsigned length, const char* type) { - size_t new_length = out->size; - if(lodepng_addofl(new_length, length, &new_length)) return 77; - if(lodepng_addofl(new_length, 12, &new_length)) return 77; - if(!ucvector_resize(out, new_length)) return 83; /*alloc fail*/ - *chunk = out->data + new_length - length - 12u; - - /*1: length*/ - lodepng_set32bitInt(*chunk, length); - - /*2: chunk name (4 letters)*/ - lodepng_memcpy(*chunk + 4, type, 4); - - return 0; -} - -/* like lodepng_chunk_create but with custom allocsize */ -static unsigned lodepng_chunk_createv(ucvector* out, - unsigned length, const char* type, const unsigned char* data) { - unsigned char* chunk; - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, length, type)); - - /*3: the data*/ - lodepng_memcpy(chunk + 8, data, length); - - /*4: CRC (of the chunkname characters and the data)*/ - lodepng_chunk_generate_crc(chunk); - - return 0; -} - -unsigned lodepng_chunk_create(unsigned char** out, size_t* outsize, - unsigned length, const char* type, const unsigned char* data) { - ucvector v = ucvector_init(*out, *outsize); - unsigned error = lodepng_chunk_createv(&v, length, type, data); - *out = v.data; - *outsize = v.size; - return error; -} - -/* ////////////////////////////////////////////////////////////////////////// */ -/* / Color types, channels, bits / */ -/* ////////////////////////////////////////////////////////////////////////// */ - -/*checks if the colortype is valid and the bitdepth bd is allowed for this colortype. -Return value is a LodePNG error code.*/ -static unsigned checkColorValidity(LodePNGColorType colortype, unsigned bd) { - switch(colortype) { - case LCT_GREY: if(!(bd == 1 || bd == 2 || bd == 4 || bd == 8 || bd == 16)) return 37; break; - case LCT_RGB: if(!( bd == 8 || bd == 16)) return 37; break; - case LCT_PALETTE: if(!(bd == 1 || bd == 2 || bd == 4 || bd == 8 )) return 37; break; - case LCT_GREY_ALPHA: if(!( bd == 8 || bd == 16)) return 37; break; - case LCT_RGBA: if(!( bd == 8 || bd == 16)) return 37; break; - case LCT_MAX_OCTET_VALUE: return 31; /* invalid color type */ - default: return 31; /* invalid color type */ - } - return 0; /*allowed color type / bits combination*/ -} - -static unsigned getNumColorChannels(LodePNGColorType colortype) { - switch(colortype) { - case LCT_GREY: return 1; - case LCT_RGB: return 3; - case LCT_PALETTE: return 1; - case LCT_GREY_ALPHA: return 2; - case LCT_RGBA: return 4; - case LCT_MAX_OCTET_VALUE: return 0; /* invalid color type */ - default: return 0; /*invalid color type*/ - } -} - -static unsigned lodepng_get_bpp_lct(LodePNGColorType colortype, unsigned bitdepth) { - /*bits per pixel is amount of channels * bits per channel*/ - return getNumColorChannels(colortype) * bitdepth; -} - -/* ////////////////////////////////////////////////////////////////////////// */ - -void lodepng_color_mode_init(LodePNGColorMode* info) { - info->key_defined = 0; - info->key_r = info->key_g = info->key_b = 0; - info->colortype = LCT_RGBA; - info->bitdepth = 8; - info->palette = 0; - info->palettesize = 0; -} - -/*allocates palette memory if needed, and initializes all colors to black*/ -static void lodepng_color_mode_alloc_palette(LodePNGColorMode* info) { - size_t i; - /*if the palette is already allocated, it will have size 1024 so no reallocation needed in that case*/ - /*the palette must have room for up to 256 colors with 4 bytes each.*/ - if(!info->palette) info->palette = (unsigned char*)lodepng_malloc(1024); - if(!info->palette) return; /*alloc fail*/ - for(i = 0; i != 256; ++i) { - /*Initialize all unused colors with black, the value used for invalid palette indices. - This is an error according to the PNG spec, but common PNG decoders make it black instead. - That makes color conversion slightly faster due to no error handling needed.*/ - info->palette[i * 4 + 0] = 0; - info->palette[i * 4 + 1] = 0; - info->palette[i * 4 + 2] = 0; - info->palette[i * 4 + 3] = 255; - } -} - -void lodepng_color_mode_cleanup(LodePNGColorMode* info) { - lodepng_palette_clear(info); -} - -unsigned lodepng_color_mode_copy(LodePNGColorMode* dest, const LodePNGColorMode* source) { - lodepng_color_mode_cleanup(dest); - lodepng_memcpy(dest, source, sizeof(LodePNGColorMode)); - if(source->palette) { - dest->palette = (unsigned char*)lodepng_malloc(1024); - if(!dest->palette && source->palettesize) return 83; /*alloc fail*/ - lodepng_memcpy(dest->palette, source->palette, source->palettesize * 4); - } - return 0; -} - -LodePNGColorMode lodepng_color_mode_make(LodePNGColorType colortype, unsigned bitdepth) { - LodePNGColorMode result; - lodepng_color_mode_init(&result); - result.colortype = colortype; - result.bitdepth = bitdepth; - return result; -} - -static int lodepng_color_mode_equal(const LodePNGColorMode* a, const LodePNGColorMode* b) { - size_t i; - if(a->colortype != b->colortype) return 0; - if(a->bitdepth != b->bitdepth) return 0; - if(a->key_defined != b->key_defined) return 0; - if(a->key_defined) { - if(a->key_r != b->key_r) return 0; - if(a->key_g != b->key_g) return 0; - if(a->key_b != b->key_b) return 0; - } - if(a->palettesize != b->palettesize) return 0; - for(i = 0; i != a->palettesize * 4; ++i) { - if(a->palette[i] != b->palette[i]) return 0; - } - return 1; -} - -void lodepng_palette_clear(LodePNGColorMode* info) { - if(info->palette) lodepng_free(info->palette); - info->palette = 0; - info->palettesize = 0; -} - -unsigned lodepng_palette_add(LodePNGColorMode* info, - unsigned char r, unsigned char g, unsigned char b, unsigned char a) { - if(!info->palette) /*allocate palette if empty*/ { - lodepng_color_mode_alloc_palette(info); - if(!info->palette) return 83; /*alloc fail*/ - } - if(info->palettesize >= 256) { - return 108; /*too many palette values*/ - } - info->palette[4 * info->palettesize + 0] = r; - info->palette[4 * info->palettesize + 1] = g; - info->palette[4 * info->palettesize + 2] = b; - info->palette[4 * info->palettesize + 3] = a; - ++info->palettesize; - return 0; -} - -/*calculate bits per pixel out of colortype and bitdepth*/ -unsigned lodepng_get_bpp(const LodePNGColorMode* info) { - return lodepng_get_bpp_lct(info->colortype, info->bitdepth); -} - -unsigned lodepng_get_channels(const LodePNGColorMode* info) { - return getNumColorChannels(info->colortype); -} - -unsigned lodepng_is_greyscale_type(const LodePNGColorMode* info) { - return info->colortype == LCT_GREY || info->colortype == LCT_GREY_ALPHA; -} - -unsigned lodepng_is_alpha_type(const LodePNGColorMode* info) { - return (info->colortype & 4) != 0; /*4 or 6*/ -} - -unsigned lodepng_is_palette_type(const LodePNGColorMode* info) { - return info->colortype == LCT_PALETTE; -} - -unsigned lodepng_has_palette_alpha(const LodePNGColorMode* info) { - size_t i; - for(i = 0; i != info->palettesize; ++i) { - if(info->palette[i * 4 + 3] < 255) return 1; - } - return 0; -} - -unsigned lodepng_can_have_alpha(const LodePNGColorMode* info) { - return info->key_defined - || lodepng_is_alpha_type(info) - || lodepng_has_palette_alpha(info); -} - -static size_t lodepng_get_raw_size_lct(unsigned w, unsigned h, LodePNGColorType colortype, unsigned bitdepth) { - size_t bpp = lodepng_get_bpp_lct(colortype, bitdepth); - size_t n = (size_t)w * (size_t)h; - return ((n / 8u) * bpp) + ((n & 7u) * bpp + 7u) / 8u; -} - -size_t lodepng_get_raw_size(unsigned w, unsigned h, const LodePNGColorMode* color) { - return lodepng_get_raw_size_lct(w, h, color->colortype, color->bitdepth); -} - - -#ifdef LODEPNG_COMPILE_PNG - -/*in an idat chunk, each scanline is a multiple of 8 bits, unlike the lodepng output buffer, -and in addition has one extra byte per line: the filter byte. So this gives a larger -result than lodepng_get_raw_size. Set h to 1 to get the size of 1 row including filter byte. */ -static size_t lodepng_get_raw_size_idat(unsigned w, unsigned h, unsigned bpp) { - /* + 1 for the filter byte, and possibly plus padding bits per line. */ - /* Ignoring casts, the expression is equal to (w * bpp + 7) / 8 + 1, but avoids overflow of w * bpp */ - size_t line = ((size_t)(w / 8u) * bpp) + 1u + ((w & 7u) * bpp + 7u) / 8u; - return (size_t)h * line; -} - -#ifdef LODEPNG_COMPILE_DECODER -/*Safely checks whether size_t overflow can be caused due to amount of pixels. -This check is overcautious rather than precise. If this check indicates no overflow, -you can safely compute in a size_t (but not an unsigned): --(size_t)w * (size_t)h * 8 --amount of bytes in IDAT (including filter, padding and Adam7 bytes) --amount of bytes in raw color model -Returns 1 if overflow possible, 0 if not. -*/ -static int lodepng_pixel_overflow(unsigned w, unsigned h, - const LodePNGColorMode* pngcolor, const LodePNGColorMode* rawcolor) { - size_t bpp = LODEPNG_MAX(lodepng_get_bpp(pngcolor), lodepng_get_bpp(rawcolor)); - size_t numpixels, total; - size_t line; /* bytes per line in worst case */ - - if(lodepng_mulofl((size_t)w, (size_t)h, &numpixels)) return 1; - if(lodepng_mulofl(numpixels, 8, &total)) return 1; /* bit pointer with 8-bit color, or 8 bytes per channel color */ - - /* Bytes per scanline with the expression "(w / 8u) * bpp) + ((w & 7u) * bpp + 7u) / 8u" */ - if(lodepng_mulofl((size_t)(w / 8u), bpp, &line)) return 1; - if(lodepng_addofl(line, ((w & 7u) * bpp + 7u) / 8u, &line)) return 1; - - if(lodepng_addofl(line, 5, &line)) return 1; /* 5 bytes overhead per line: 1 filterbyte, 4 for Adam7 worst case */ - if(lodepng_mulofl(line, h, &total)) return 1; /* Total bytes in worst case */ - - return 0; /* no overflow */ -} -#endif /*LODEPNG_COMPILE_DECODER*/ -#endif /*LODEPNG_COMPILE_PNG*/ - -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - -static void LodePNGUnknownChunks_init(LodePNGInfo* info) { - unsigned i; - for(i = 0; i != 3; ++i) info->unknown_chunks_data[i] = 0; - for(i = 0; i != 3; ++i) info->unknown_chunks_size[i] = 0; -} - -static void LodePNGUnknownChunks_cleanup(LodePNGInfo* info) { - unsigned i; - for(i = 0; i != 3; ++i) lodepng_free(info->unknown_chunks_data[i]); -} - -static unsigned LodePNGUnknownChunks_copy(LodePNGInfo* dest, const LodePNGInfo* src) { - unsigned i; - - LodePNGUnknownChunks_cleanup(dest); - - for(i = 0; i != 3; ++i) { - size_t j; - dest->unknown_chunks_size[i] = src->unknown_chunks_size[i]; - dest->unknown_chunks_data[i] = (unsigned char*)lodepng_malloc(src->unknown_chunks_size[i]); - if(!dest->unknown_chunks_data[i] && dest->unknown_chunks_size[i]) return 83; /*alloc fail*/ - for(j = 0; j < src->unknown_chunks_size[i]; ++j) { - dest->unknown_chunks_data[i][j] = src->unknown_chunks_data[i][j]; - } - } - - return 0; -} - -/******************************************************************************/ - -static void LodePNGText_init(LodePNGInfo* info) { - info->text_num = 0; - info->text_keys = NULL; - info->text_strings = NULL; -} - -static void LodePNGText_cleanup(LodePNGInfo* info) { - size_t i; - for(i = 0; i != info->text_num; ++i) { - string_cleanup(&info->text_keys[i]); - string_cleanup(&info->text_strings[i]); - } - lodepng_free(info->text_keys); - lodepng_free(info->text_strings); -} - -static unsigned LodePNGText_copy(LodePNGInfo* dest, const LodePNGInfo* source) { - size_t i = 0; - dest->text_keys = NULL; - dest->text_strings = NULL; - dest->text_num = 0; - for(i = 0; i != source->text_num; ++i) { - CERROR_TRY_RETURN(lodepng_add_text(dest, source->text_keys[i], source->text_strings[i])); - } - return 0; -} - -static unsigned lodepng_add_text_sized(LodePNGInfo* info, const char* key, const char* str, size_t size) { - char** new_keys = (char**)(lodepng_realloc(info->text_keys, sizeof(char*) * (info->text_num + 1))); - char** new_strings = (char**)(lodepng_realloc(info->text_strings, sizeof(char*) * (info->text_num + 1))); - - if(new_keys) info->text_keys = new_keys; - if(new_strings) info->text_strings = new_strings; - - if(!new_keys || !new_strings) return 83; /*alloc fail*/ - - ++info->text_num; - info->text_keys[info->text_num - 1] = alloc_string(key); - info->text_strings[info->text_num - 1] = alloc_string_sized(str, size); - if(!info->text_keys[info->text_num - 1] || !info->text_strings[info->text_num - 1]) return 83; /*alloc fail*/ - - return 0; -} - -unsigned lodepng_add_text(LodePNGInfo* info, const char* key, const char* str) { - return lodepng_add_text_sized(info, key, str, lodepng_strlen(str)); -} - -void lodepng_clear_text(LodePNGInfo* info) { - LodePNGText_cleanup(info); -} - -/******************************************************************************/ - -static void LodePNGIText_init(LodePNGInfo* info) { - info->itext_num = 0; - info->itext_keys = NULL; - info->itext_langtags = NULL; - info->itext_transkeys = NULL; - info->itext_strings = NULL; -} - -static void LodePNGIText_cleanup(LodePNGInfo* info) { - size_t i; - for(i = 0; i != info->itext_num; ++i) { - string_cleanup(&info->itext_keys[i]); - string_cleanup(&info->itext_langtags[i]); - string_cleanup(&info->itext_transkeys[i]); - string_cleanup(&info->itext_strings[i]); - } - lodepng_free(info->itext_keys); - lodepng_free(info->itext_langtags); - lodepng_free(info->itext_transkeys); - lodepng_free(info->itext_strings); -} - -static unsigned LodePNGIText_copy(LodePNGInfo* dest, const LodePNGInfo* source) { - size_t i = 0; - dest->itext_keys = NULL; - dest->itext_langtags = NULL; - dest->itext_transkeys = NULL; - dest->itext_strings = NULL; - dest->itext_num = 0; - for(i = 0; i != source->itext_num; ++i) { - CERROR_TRY_RETURN(lodepng_add_itext(dest, source->itext_keys[i], source->itext_langtags[i], - source->itext_transkeys[i], source->itext_strings[i])); - } - return 0; -} - -void lodepng_clear_itext(LodePNGInfo* info) { - LodePNGIText_cleanup(info); -} - -static unsigned lodepng_add_itext_sized(LodePNGInfo* info, const char* key, const char* langtag, - const char* transkey, const char* str, size_t size) { - char** new_keys = (char**)(lodepng_realloc(info->itext_keys, sizeof(char*) * (info->itext_num + 1))); - char** new_langtags = (char**)(lodepng_realloc(info->itext_langtags, sizeof(char*) * (info->itext_num + 1))); - char** new_transkeys = (char**)(lodepng_realloc(info->itext_transkeys, sizeof(char*) * (info->itext_num + 1))); - char** new_strings = (char**)(lodepng_realloc(info->itext_strings, sizeof(char*) * (info->itext_num + 1))); - - if(new_keys) info->itext_keys = new_keys; - if(new_langtags) info->itext_langtags = new_langtags; - if(new_transkeys) info->itext_transkeys = new_transkeys; - if(new_strings) info->itext_strings = new_strings; - - if(!new_keys || !new_langtags || !new_transkeys || !new_strings) return 83; /*alloc fail*/ - - ++info->itext_num; - - info->itext_keys[info->itext_num - 1] = alloc_string(key); - info->itext_langtags[info->itext_num - 1] = alloc_string(langtag); - info->itext_transkeys[info->itext_num - 1] = alloc_string(transkey); - info->itext_strings[info->itext_num - 1] = alloc_string_sized(str, size); - - return 0; -} - -unsigned lodepng_add_itext(LodePNGInfo* info, const char* key, const char* langtag, - const char* transkey, const char* str) { - return lodepng_add_itext_sized(info, key, langtag, transkey, str, lodepng_strlen(str)); -} - -/* same as set but does not delete */ -static unsigned lodepng_assign_icc(LodePNGInfo* info, const char* name, const unsigned char* profile, unsigned profile_size) { - if(profile_size == 0) return 100; /*invalid ICC profile size*/ - - info->iccp_name = alloc_string(name); - info->iccp_profile = (unsigned char*)lodepng_malloc(profile_size); - - if(!info->iccp_name || !info->iccp_profile) return 83; /*alloc fail*/ - - lodepng_memcpy(info->iccp_profile, profile, profile_size); - info->iccp_profile_size = profile_size; - - return 0; /*ok*/ -} - -unsigned lodepng_set_icc(LodePNGInfo* info, const char* name, const unsigned char* profile, unsigned profile_size) { - if(info->iccp_name) lodepng_clear_icc(info); - info->iccp_defined = 1; - - return lodepng_assign_icc(info, name, profile, profile_size); -} - -void lodepng_clear_icc(LodePNGInfo* info) { - string_cleanup(&info->iccp_name); - lodepng_free(info->iccp_profile); - info->iccp_profile = NULL; - info->iccp_profile_size = 0; - info->iccp_defined = 0; -} -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - -void lodepng_info_init(LodePNGInfo* info) { - lodepng_color_mode_init(&info->color); - info->interlace_method = 0; - info->compression_method = 0; - info->filter_method = 0; -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - info->background_defined = 0; - info->background_r = info->background_g = info->background_b = 0; - - LodePNGText_init(info); - LodePNGIText_init(info); - - info->time_defined = 0; - info->phys_defined = 0; - - info->gama_defined = 0; - info->chrm_defined = 0; - info->srgb_defined = 0; - info->iccp_defined = 0; - info->iccp_name = NULL; - info->iccp_profile = NULL; - - info->sbit_defined = 0; - info->sbit_r = info->sbit_g = info->sbit_b = info->sbit_a = 0; - - LodePNGUnknownChunks_init(info); -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ -} - -void lodepng_info_cleanup(LodePNGInfo* info) { - lodepng_color_mode_cleanup(&info->color); -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - LodePNGText_cleanup(info); - LodePNGIText_cleanup(info); - - lodepng_clear_icc(info); - - LodePNGUnknownChunks_cleanup(info); -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ -} - -unsigned lodepng_info_copy(LodePNGInfo* dest, const LodePNGInfo* source) { - lodepng_info_cleanup(dest); - lodepng_memcpy(dest, source, sizeof(LodePNGInfo)); - lodepng_color_mode_init(&dest->color); - CERROR_TRY_RETURN(lodepng_color_mode_copy(&dest->color, &source->color)); - -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - CERROR_TRY_RETURN(LodePNGText_copy(dest, source)); - CERROR_TRY_RETURN(LodePNGIText_copy(dest, source)); - if(source->iccp_defined) { - CERROR_TRY_RETURN(lodepng_assign_icc(dest, source->iccp_name, source->iccp_profile, source->iccp_profile_size)); - } - - LodePNGUnknownChunks_init(dest); - CERROR_TRY_RETURN(LodePNGUnknownChunks_copy(dest, source)); -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - return 0; -} - -/* ////////////////////////////////////////////////////////////////////////// */ - -/*index: bitgroup index, bits: bitgroup size(1, 2 or 4), in: bitgroup value, out: octet array to add bits to*/ -static void addColorBits(unsigned char* out, size_t index, unsigned bits, unsigned in) { - unsigned m = bits == 1 ? 7 : bits == 2 ? 3 : 1; /*8 / bits - 1*/ - /*p = the partial index in the byte, e.g. with 4 palettebits it is 0 for first half or 1 for second half*/ - unsigned p = index & m; - in &= (1u << bits) - 1u; /*filter out any other bits of the input value*/ - in = in << (bits * (m - p)); - if(p == 0) out[index * bits / 8u] = in; - else out[index * bits / 8u] |= in; -} - -typedef struct ColorTree ColorTree; - -/* -One node of a color tree -This is the data structure used to count the number of unique colors and to get a palette -index for a color. It's like an octree, but because the alpha channel is used too, each -node has 16 instead of 8 children. -*/ -struct ColorTree { - ColorTree* children[16]; /*up to 16 pointers to ColorTree of next level*/ - int index; /*the payload. Only has a meaningful value if this is in the last level*/ -}; - -static void color_tree_init(ColorTree* tree) { - lodepng_memset(tree->children, 0, 16 * sizeof(*tree->children)); - tree->index = -1; -} - -static void color_tree_cleanup(ColorTree* tree) { - int i; - for(i = 0; i != 16; ++i) { - if(tree->children[i]) { - color_tree_cleanup(tree->children[i]); - lodepng_free(tree->children[i]); - } - } -} - -/*returns -1 if color not present, its index otherwise*/ -static int color_tree_get(ColorTree* tree, unsigned char r, unsigned char g, unsigned char b, unsigned char a) { - int bit = 0; - for(bit = 0; bit < 8; ++bit) { - int i = 8 * ((r >> bit) & 1) + 4 * ((g >> bit) & 1) + 2 * ((b >> bit) & 1) + 1 * ((a >> bit) & 1); - if(!tree->children[i]) return -1; - else tree = tree->children[i]; - } - return tree ? tree->index : -1; -} - -#ifdef LODEPNG_COMPILE_ENCODER -static int color_tree_has(ColorTree* tree, unsigned char r, unsigned char g, unsigned char b, unsigned char a) { - return color_tree_get(tree, r, g, b, a) >= 0; -} -#endif /*LODEPNG_COMPILE_ENCODER*/ - -/*color is not allowed to already exist. -Index should be >= 0 (it's signed to be compatible with using -1 for "doesn't exist") -Returns error code, or 0 if ok*/ -static unsigned color_tree_add(ColorTree* tree, - unsigned char r, unsigned char g, unsigned char b, unsigned char a, unsigned index) { - int bit; - for(bit = 0; bit < 8; ++bit) { - int i = 8 * ((r >> bit) & 1) + 4 * ((g >> bit) & 1) + 2 * ((b >> bit) & 1) + 1 * ((a >> bit) & 1); - if(!tree->children[i]) { - tree->children[i] = (ColorTree*)lodepng_malloc(sizeof(ColorTree)); - if(!tree->children[i]) return 83; /*alloc fail*/ - color_tree_init(tree->children[i]); - } - tree = tree->children[i]; - } - tree->index = (int)index; - return 0; -} - -/*put a pixel, given its RGBA color, into image of any color type*/ -static unsigned rgba8ToPixel(unsigned char* out, size_t i, - const LodePNGColorMode* mode, ColorTree* tree /*for palette*/, - unsigned char r, unsigned char g, unsigned char b, unsigned char a) { - if(mode->colortype == LCT_GREY) { - unsigned char gray = r; /*((unsigned short)r + g + b) / 3u;*/ - if(mode->bitdepth == 8) out[i] = gray; - else if(mode->bitdepth == 16) out[i * 2 + 0] = out[i * 2 + 1] = gray; - else { - /*take the most significant bits of gray*/ - gray = ((unsigned)gray >> (8u - mode->bitdepth)) & ((1u << mode->bitdepth) - 1u); - addColorBits(out, i, mode->bitdepth, gray); - } - } else if(mode->colortype == LCT_RGB) { - if(mode->bitdepth == 8) { - out[i * 3 + 0] = r; - out[i * 3 + 1] = g; - out[i * 3 + 2] = b; - } else { - out[i * 6 + 0] = out[i * 6 + 1] = r; - out[i * 6 + 2] = out[i * 6 + 3] = g; - out[i * 6 + 4] = out[i * 6 + 5] = b; - } - } else if(mode->colortype == LCT_PALETTE) { - int index = color_tree_get(tree, r, g, b, a); - if(index < 0) return 82; /*color not in palette*/ - if(mode->bitdepth == 8) out[i] = index; - else addColorBits(out, i, mode->bitdepth, (unsigned)index); - } else if(mode->colortype == LCT_GREY_ALPHA) { - unsigned char gray = r; /*((unsigned short)r + g + b) / 3u;*/ - if(mode->bitdepth == 8) { - out[i * 2 + 0] = gray; - out[i * 2 + 1] = a; - } else if(mode->bitdepth == 16) { - out[i * 4 + 0] = out[i * 4 + 1] = gray; - out[i * 4 + 2] = out[i * 4 + 3] = a; - } - } else if(mode->colortype == LCT_RGBA) { - if(mode->bitdepth == 8) { - out[i * 4 + 0] = r; - out[i * 4 + 1] = g; - out[i * 4 + 2] = b; - out[i * 4 + 3] = a; - } else { - out[i * 8 + 0] = out[i * 8 + 1] = r; - out[i * 8 + 2] = out[i * 8 + 3] = g; - out[i * 8 + 4] = out[i * 8 + 5] = b; - out[i * 8 + 6] = out[i * 8 + 7] = a; - } - } - - return 0; /*no error*/ -} - -/*put a pixel, given its RGBA16 color, into image of any color 16-bitdepth type*/ -static void rgba16ToPixel(unsigned char* out, size_t i, - const LodePNGColorMode* mode, - unsigned short r, unsigned short g, unsigned short b, unsigned short a) { - if(mode->colortype == LCT_GREY) { - unsigned short gray = r; /*((unsigned)r + g + b) / 3u;*/ - out[i * 2 + 0] = (gray >> 8) & 255; - out[i * 2 + 1] = gray & 255; - } else if(mode->colortype == LCT_RGB) { - out[i * 6 + 0] = (r >> 8) & 255; - out[i * 6 + 1] = r & 255; - out[i * 6 + 2] = (g >> 8) & 255; - out[i * 6 + 3] = g & 255; - out[i * 6 + 4] = (b >> 8) & 255; - out[i * 6 + 5] = b & 255; - } else if(mode->colortype == LCT_GREY_ALPHA) { - unsigned short gray = r; /*((unsigned)r + g + b) / 3u;*/ - out[i * 4 + 0] = (gray >> 8) & 255; - out[i * 4 + 1] = gray & 255; - out[i * 4 + 2] = (a >> 8) & 255; - out[i * 4 + 3] = a & 255; - } else if(mode->colortype == LCT_RGBA) { - out[i * 8 + 0] = (r >> 8) & 255; - out[i * 8 + 1] = r & 255; - out[i * 8 + 2] = (g >> 8) & 255; - out[i * 8 + 3] = g & 255; - out[i * 8 + 4] = (b >> 8) & 255; - out[i * 8 + 5] = b & 255; - out[i * 8 + 6] = (a >> 8) & 255; - out[i * 8 + 7] = a & 255; - } -} - -/*Get RGBA8 color of pixel with index i (y * width + x) from the raw image with given color type.*/ -static void getPixelColorRGBA8(unsigned char* r, unsigned char* g, - unsigned char* b, unsigned char* a, - const unsigned char* in, size_t i, - const LodePNGColorMode* mode) { - if(mode->colortype == LCT_GREY) { - if(mode->bitdepth == 8) { - *r = *g = *b = in[i]; - if(mode->key_defined && *r == mode->key_r) *a = 0; - else *a = 255; - } else if(mode->bitdepth == 16) { - *r = *g = *b = in[i * 2 + 0]; - if(mode->key_defined && 256U * in[i * 2 + 0] + in[i * 2 + 1] == mode->key_r) *a = 0; - else *a = 255; - } else { - unsigned highest = ((1U << mode->bitdepth) - 1U); /*highest possible value for this bit depth*/ - size_t j = i * mode->bitdepth; - unsigned value = readBitsFromReversedStream(&j, in, mode->bitdepth); - *r = *g = *b = (value * 255) / highest; - if(mode->key_defined && value == mode->key_r) *a = 0; - else *a = 255; - } - } else if(mode->colortype == LCT_RGB) { - if(mode->bitdepth == 8) { - *r = in[i * 3 + 0]; *g = in[i * 3 + 1]; *b = in[i * 3 + 2]; - if(mode->key_defined && *r == mode->key_r && *g == mode->key_g && *b == mode->key_b) *a = 0; - else *a = 255; - } else { - *r = in[i * 6 + 0]; - *g = in[i * 6 + 2]; - *b = in[i * 6 + 4]; - if(mode->key_defined && 256U * in[i * 6 + 0] + in[i * 6 + 1] == mode->key_r - && 256U * in[i * 6 + 2] + in[i * 6 + 3] == mode->key_g - && 256U * in[i * 6 + 4] + in[i * 6 + 5] == mode->key_b) *a = 0; - else *a = 255; - } - } else if(mode->colortype == LCT_PALETTE) { - unsigned index; - if(mode->bitdepth == 8) index = in[i]; - else { - size_t j = i * mode->bitdepth; - index = readBitsFromReversedStream(&j, in, mode->bitdepth); - } - /*out of bounds of palette not checked: see lodepng_color_mode_alloc_palette.*/ - *r = mode->palette[index * 4 + 0]; - *g = mode->palette[index * 4 + 1]; - *b = mode->palette[index * 4 + 2]; - *a = mode->palette[index * 4 + 3]; - } else if(mode->colortype == LCT_GREY_ALPHA) { - if(mode->bitdepth == 8) { - *r = *g = *b = in[i * 2 + 0]; - *a = in[i * 2 + 1]; - } else { - *r = *g = *b = in[i * 4 + 0]; - *a = in[i * 4 + 2]; - } - } else if(mode->colortype == LCT_RGBA) { - if(mode->bitdepth == 8) { - *r = in[i * 4 + 0]; - *g = in[i * 4 + 1]; - *b = in[i * 4 + 2]; - *a = in[i * 4 + 3]; - } else { - *r = in[i * 8 + 0]; - *g = in[i * 8 + 2]; - *b = in[i * 8 + 4]; - *a = in[i * 8 + 6]; - } - } -} - -/*Similar to getPixelColorRGBA8, but with all the for loops inside of the color -mode test cases, optimized to convert the colors much faster, when converting -to the common case of RGBA with 8 bit per channel. buffer must be RGBA with -enough memory.*/ -static void getPixelColorsRGBA8(unsigned char* LODEPNG_RESTRICT buffer, size_t numpixels, - const unsigned char* LODEPNG_RESTRICT in, - const LodePNGColorMode* mode) { - unsigned num_channels = 4; - size_t i; - if(mode->colortype == LCT_GREY) { - if(mode->bitdepth == 8) { - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - buffer[0] = buffer[1] = buffer[2] = in[i]; - buffer[3] = 255; - } - if(mode->key_defined) { - buffer -= numpixels * num_channels; - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - if(buffer[0] == mode->key_r) buffer[3] = 0; - } - } - } else if(mode->bitdepth == 16) { - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - buffer[0] = buffer[1] = buffer[2] = in[i * 2]; - buffer[3] = mode->key_defined && 256U * in[i * 2 + 0] + in[i * 2 + 1] == mode->key_r ? 0 : 255; - } - } else { - unsigned highest = ((1U << mode->bitdepth) - 1U); /*highest possible value for this bit depth*/ - size_t j = 0; - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - unsigned value = readBitsFromReversedStream(&j, in, mode->bitdepth); - buffer[0] = buffer[1] = buffer[2] = (value * 255) / highest; - buffer[3] = mode->key_defined && value == mode->key_r ? 0 : 255; - } - } - } else if(mode->colortype == LCT_RGB) { - if(mode->bitdepth == 8) { - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - lodepng_memcpy(buffer, &in[i * 3], 3); - buffer[3] = 255; - } - if(mode->key_defined) { - buffer -= numpixels * num_channels; - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - if(buffer[0] == mode->key_r && buffer[1]== mode->key_g && buffer[2] == mode->key_b) buffer[3] = 0; - } - } - } else { - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - buffer[0] = in[i * 6 + 0]; - buffer[1] = in[i * 6 + 2]; - buffer[2] = in[i * 6 + 4]; - buffer[3] = mode->key_defined - && 256U * in[i * 6 + 0] + in[i * 6 + 1] == mode->key_r - && 256U * in[i * 6 + 2] + in[i * 6 + 3] == mode->key_g - && 256U * in[i * 6 + 4] + in[i * 6 + 5] == mode->key_b ? 0 : 255; - } - } - } else if(mode->colortype == LCT_PALETTE) { - if(mode->bitdepth == 8) { - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - unsigned index = in[i]; - /*out of bounds of palette not checked: see lodepng_color_mode_alloc_palette.*/ - lodepng_memcpy(buffer, &mode->palette[index * 4], 4); - } - } else { - size_t j = 0; - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - unsigned index = readBitsFromReversedStream(&j, in, mode->bitdepth); - /*out of bounds of palette not checked: see lodepng_color_mode_alloc_palette.*/ - lodepng_memcpy(buffer, &mode->palette[index * 4], 4); - } - } - } else if(mode->colortype == LCT_GREY_ALPHA) { - if(mode->bitdepth == 8) { - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - buffer[0] = buffer[1] = buffer[2] = in[i * 2 + 0]; - buffer[3] = in[i * 2 + 1]; - } - } else { - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - buffer[0] = buffer[1] = buffer[2] = in[i * 4 + 0]; - buffer[3] = in[i * 4 + 2]; - } - } - } else if(mode->colortype == LCT_RGBA) { - if(mode->bitdepth == 8) { - lodepng_memcpy(buffer, in, numpixels * 4); - } else { - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - buffer[0] = in[i * 8 + 0]; - buffer[1] = in[i * 8 + 2]; - buffer[2] = in[i * 8 + 4]; - buffer[3] = in[i * 8 + 6]; - } - } - } -} - -/*Similar to getPixelColorsRGBA8, but with 3-channel RGB output.*/ -static void getPixelColorsRGB8(unsigned char* LODEPNG_RESTRICT buffer, size_t numpixels, - const unsigned char* LODEPNG_RESTRICT in, - const LodePNGColorMode* mode) { - const unsigned num_channels = 3; - size_t i; - if(mode->colortype == LCT_GREY) { - if(mode->bitdepth == 8) { - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - buffer[0] = buffer[1] = buffer[2] = in[i]; - } - } else if(mode->bitdepth == 16) { - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - buffer[0] = buffer[1] = buffer[2] = in[i * 2]; - } - } else { - unsigned highest = ((1U << mode->bitdepth) - 1U); /*highest possible value for this bit depth*/ - size_t j = 0; - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - unsigned value = readBitsFromReversedStream(&j, in, mode->bitdepth); - buffer[0] = buffer[1] = buffer[2] = (value * 255) / highest; - } - } - } else if(mode->colortype == LCT_RGB) { - if(mode->bitdepth == 8) { - lodepng_memcpy(buffer, in, numpixels * 3); - } else { - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - buffer[0] = in[i * 6 + 0]; - buffer[1] = in[i * 6 + 2]; - buffer[2] = in[i * 6 + 4]; - } - } - } else if(mode->colortype == LCT_PALETTE) { - if(mode->bitdepth == 8) { - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - unsigned index = in[i]; - /*out of bounds of palette not checked: see lodepng_color_mode_alloc_palette.*/ - lodepng_memcpy(buffer, &mode->palette[index * 4], 3); - } - } else { - size_t j = 0; - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - unsigned index = readBitsFromReversedStream(&j, in, mode->bitdepth); - /*out of bounds of palette not checked: see lodepng_color_mode_alloc_palette.*/ - lodepng_memcpy(buffer, &mode->palette[index * 4], 3); - } - } - } else if(mode->colortype == LCT_GREY_ALPHA) { - if(mode->bitdepth == 8) { - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - buffer[0] = buffer[1] = buffer[2] = in[i * 2 + 0]; - } - } else { - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - buffer[0] = buffer[1] = buffer[2] = in[i * 4 + 0]; - } - } - } else if(mode->colortype == LCT_RGBA) { - if(mode->bitdepth == 8) { - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - lodepng_memcpy(buffer, &in[i * 4], 3); - } - } else { - for(i = 0; i != numpixels; ++i, buffer += num_channels) { - buffer[0] = in[i * 8 + 0]; - buffer[1] = in[i * 8 + 2]; - buffer[2] = in[i * 8 + 4]; - } - } - } -} - -/*Get RGBA16 color of pixel with index i (y * width + x) from the raw image with -given color type, but the given color type must be 16-bit itself.*/ -static void getPixelColorRGBA16(unsigned short* r, unsigned short* g, unsigned short* b, unsigned short* a, - const unsigned char* in, size_t i, const LodePNGColorMode* mode) { - if(mode->colortype == LCT_GREY) { - *r = *g = *b = 256 * in[i * 2 + 0] + in[i * 2 + 1]; - if(mode->key_defined && 256U * in[i * 2 + 0] + in[i * 2 + 1] == mode->key_r) *a = 0; - else *a = 65535; - } else if(mode->colortype == LCT_RGB) { - *r = 256u * in[i * 6 + 0] + in[i * 6 + 1]; - *g = 256u * in[i * 6 + 2] + in[i * 6 + 3]; - *b = 256u * in[i * 6 + 4] + in[i * 6 + 5]; - if(mode->key_defined - && 256u * in[i * 6 + 0] + in[i * 6 + 1] == mode->key_r - && 256u * in[i * 6 + 2] + in[i * 6 + 3] == mode->key_g - && 256u * in[i * 6 + 4] + in[i * 6 + 5] == mode->key_b) *a = 0; - else *a = 65535; - } else if(mode->colortype == LCT_GREY_ALPHA) { - *r = *g = *b = 256u * in[i * 4 + 0] + in[i * 4 + 1]; - *a = 256u * in[i * 4 + 2] + in[i * 4 + 3]; - } else if(mode->colortype == LCT_RGBA) { - *r = 256u * in[i * 8 + 0] + in[i * 8 + 1]; - *g = 256u * in[i * 8 + 2] + in[i * 8 + 3]; - *b = 256u * in[i * 8 + 4] + in[i * 8 + 5]; - *a = 256u * in[i * 8 + 6] + in[i * 8 + 7]; - } -} - -unsigned lodepng_convert(unsigned char* out, const unsigned char* in, - const LodePNGColorMode* mode_out, const LodePNGColorMode* mode_in, - unsigned w, unsigned h) { - size_t i; - ColorTree tree; - size_t numpixels = (size_t)w * (size_t)h; - unsigned error = 0; - - if(mode_in->colortype == LCT_PALETTE && !mode_in->palette) { - return 107; /* error: must provide palette if input mode is palette */ - } - - if(lodepng_color_mode_equal(mode_out, mode_in)) { - size_t numbytes = lodepng_get_raw_size(w, h, mode_in); - lodepng_memcpy(out, in, numbytes); - return 0; - } - - if(mode_out->colortype == LCT_PALETTE) { - size_t palettesize = mode_out->palettesize; - const unsigned char* palette = mode_out->palette; - size_t palsize = (size_t)1u << mode_out->bitdepth; - /*if the user specified output palette but did not give the values, assume - they want the values of the input color type (assuming that one is palette). - Note that we never create a new palette ourselves.*/ - if(palettesize == 0) { - palettesize = mode_in->palettesize; - palette = mode_in->palette; - /*if the input was also palette with same bitdepth, then the color types are also - equal, so copy literally. This to preserve the exact indices that were in the PNG - even in case there are duplicate colors in the palette.*/ - if(mode_in->colortype == LCT_PALETTE && mode_in->bitdepth == mode_out->bitdepth) { - size_t numbytes = lodepng_get_raw_size(w, h, mode_in); - lodepng_memcpy(out, in, numbytes); - return 0; - } - } - if(palettesize < palsize) palsize = palettesize; - color_tree_init(&tree); - for(i = 0; i != palsize; ++i) { - const unsigned char* p = &palette[i * 4]; - error = color_tree_add(&tree, p[0], p[1], p[2], p[3], (unsigned)i); - if(error) break; - } - } - - if(!error) { - if(mode_in->bitdepth == 16 && mode_out->bitdepth == 16) { - for(i = 0; i != numpixels; ++i) { - unsigned short r = 0, g = 0, b = 0, a = 0; - getPixelColorRGBA16(&r, &g, &b, &a, in, i, mode_in); - rgba16ToPixel(out, i, mode_out, r, g, b, a); - } - } else if(mode_out->bitdepth == 8 && mode_out->colortype == LCT_RGBA) { - getPixelColorsRGBA8(out, numpixels, in, mode_in); - } else if(mode_out->bitdepth == 8 && mode_out->colortype == LCT_RGB) { - getPixelColorsRGB8(out, numpixels, in, mode_in); - } else { - unsigned char r = 0, g = 0, b = 0, a = 0; - for(i = 0; i != numpixels; ++i) { - getPixelColorRGBA8(&r, &g, &b, &a, in, i, mode_in); - error = rgba8ToPixel(out, i, mode_out, &tree, r, g, b, a); - if(error) break; - } - } - } - - if(mode_out->colortype == LCT_PALETTE) { - color_tree_cleanup(&tree); - } - - return error; -} - - -/* Converts a single rgb color without alpha from one type to another, color bits truncated to -their bitdepth. In case of single channel (gray or palette), only the r channel is used. Slow -function, do not use to process all pixels of an image. Alpha channel not supported on purpose: -this is for bKGD, supporting alpha may prevent it from finding a color in the palette, from the -specification it looks like bKGD should ignore the alpha values of the palette since it can use -any palette index but doesn't have an alpha channel. Idem with ignoring color key. */ -unsigned lodepng_convert_rgb( - unsigned* r_out, unsigned* g_out, unsigned* b_out, - unsigned r_in, unsigned g_in, unsigned b_in, - const LodePNGColorMode* mode_out, const LodePNGColorMode* mode_in) { - unsigned r = 0, g = 0, b = 0; - unsigned mul = 65535 / ((1u << mode_in->bitdepth) - 1u); /*65535, 21845, 4369, 257, 1*/ - unsigned shift = 16 - mode_out->bitdepth; - - if(mode_in->colortype == LCT_GREY || mode_in->colortype == LCT_GREY_ALPHA) { - r = g = b = r_in * mul; - } else if(mode_in->colortype == LCT_RGB || mode_in->colortype == LCT_RGBA) { - r = r_in * mul; - g = g_in * mul; - b = b_in * mul; - } else if(mode_in->colortype == LCT_PALETTE) { - if(r_in >= mode_in->palettesize) return 82; - r = mode_in->palette[r_in * 4 + 0] * 257u; - g = mode_in->palette[r_in * 4 + 1] * 257u; - b = mode_in->palette[r_in * 4 + 2] * 257u; - } else { - return 31; - } - - /* now convert to output format */ - if(mode_out->colortype == LCT_GREY || mode_out->colortype == LCT_GREY_ALPHA) { - *r_out = r >> shift ; - } else if(mode_out->colortype == LCT_RGB || mode_out->colortype == LCT_RGBA) { - *r_out = r >> shift ; - *g_out = g >> shift ; - *b_out = b >> shift ; - } else if(mode_out->colortype == LCT_PALETTE) { - unsigned i; - /* a 16-bit color cannot be in the palette */ - if((r >> 8) != (r & 255) || (g >> 8) != (g & 255) || (b >> 8) != (b & 255)) return 82; - for(i = 0; i < mode_out->palettesize; i++) { - unsigned j = i * 4; - if((r >> 8) == mode_out->palette[j + 0] && (g >> 8) == mode_out->palette[j + 1] && - (b >> 8) == mode_out->palette[j + 2]) { - *r_out = i; - return 0; - } - } - return 82; - } else { - return 31; - } - - return 0; -} - -#ifdef LODEPNG_COMPILE_ENCODER - -void lodepng_color_stats_init(LodePNGColorStats* stats) { - /*stats*/ - stats->colored = 0; - stats->key = 0; - stats->key_r = stats->key_g = stats->key_b = 0; - stats->alpha = 0; - stats->numcolors = 0; - stats->bits = 1; - stats->numpixels = 0; - /*settings*/ - stats->allow_palette = 1; - stats->allow_greyscale = 1; -} - -/*function used for debug purposes with C++*/ -/*void printColorStats(LodePNGColorStats* p) { - std::cout << "colored: " << (int)p->colored << ", "; - std::cout << "key: " << (int)p->key << ", "; - std::cout << "key_r: " << (int)p->key_r << ", "; - std::cout << "key_g: " << (int)p->key_g << ", "; - std::cout << "key_b: " << (int)p->key_b << ", "; - std::cout << "alpha: " << (int)p->alpha << ", "; - std::cout << "numcolors: " << (int)p->numcolors << ", "; - std::cout << "bits: " << (int)p->bits << std::endl; -}*/ - -/*Returns how many bits needed to represent given value (max 8 bit)*/ -static unsigned getValueRequiredBits(unsigned char value) { - if(value == 0 || value == 255) return 1; - /*The scaling of 2-bit and 4-bit values uses multiples of 85 and 17*/ - if(value % 17 == 0) return value % 85 == 0 ? 2 : 4; - return 8; -} - -/*stats must already have been inited. */ -unsigned lodepng_compute_color_stats(LodePNGColorStats* stats, - const unsigned char* in, unsigned w, unsigned h, - const LodePNGColorMode* mode_in) { - size_t i; - ColorTree tree; - size_t numpixels = (size_t)w * (size_t)h; - unsigned error = 0; - - /* mark things as done already if it would be impossible to have a more expensive case */ - unsigned colored_done = lodepng_is_greyscale_type(mode_in) ? 1 : 0; - unsigned alpha_done = lodepng_can_have_alpha(mode_in) ? 0 : 1; - unsigned numcolors_done = 0; - unsigned bpp = lodepng_get_bpp(mode_in); - unsigned bits_done = (stats->bits == 1 && bpp == 1) ? 1 : 0; - unsigned sixteen = 0; /* whether the input image is 16 bit */ - unsigned maxnumcolors = 257; - if(bpp <= 8) maxnumcolors = LODEPNG_MIN(257, stats->numcolors + (1u << bpp)); - - stats->numpixels += numpixels; - - /*if palette not allowed, no need to compute numcolors*/ - if(!stats->allow_palette) numcolors_done = 1; - - color_tree_init(&tree); - - /*If the stats was already filled in from previous data, fill its palette in tree - and mark things as done already if we know they are the most expensive case already*/ - if(stats->alpha) alpha_done = 1; - if(stats->colored) colored_done = 1; - if(stats->bits == 16) numcolors_done = 1; - if(stats->bits >= bpp) bits_done = 1; - if(stats->numcolors >= maxnumcolors) numcolors_done = 1; - - if(!numcolors_done) { - for(i = 0; i < stats->numcolors; i++) { - const unsigned char* color = &stats->palette[i * 4]; - error = color_tree_add(&tree, color[0], color[1], color[2], color[3], i); - if(error) goto cleanup; - } - } - - /*Check if the 16-bit input is truly 16-bit*/ - if(mode_in->bitdepth == 16 && !sixteen) { - unsigned short r = 0, g = 0, b = 0, a = 0; - for(i = 0; i != numpixels; ++i) { - getPixelColorRGBA16(&r, &g, &b, &a, in, i, mode_in); - if((r & 255) != ((r >> 8) & 255) || (g & 255) != ((g >> 8) & 255) || - (b & 255) != ((b >> 8) & 255) || (a & 255) != ((a >> 8) & 255)) /*first and second byte differ*/ { - stats->bits = 16; - sixteen = 1; - bits_done = 1; - numcolors_done = 1; /*counting colors no longer useful, palette doesn't support 16-bit*/ - break; - } - } - } - - if(sixteen) { - unsigned short r = 0, g = 0, b = 0, a = 0; - - for(i = 0; i != numpixels; ++i) { - getPixelColorRGBA16(&r, &g, &b, &a, in, i, mode_in); - - if(!colored_done && (r != g || r != b)) { - stats->colored = 1; - colored_done = 1; - } - - if(!alpha_done) { - unsigned matchkey = (r == stats->key_r && g == stats->key_g && b == stats->key_b); - if(a != 65535 && (a != 0 || (stats->key && !matchkey))) { - stats->alpha = 1; - stats->key = 0; - alpha_done = 1; - } else if(a == 0 && !stats->alpha && !stats->key) { - stats->key = 1; - stats->key_r = r; - stats->key_g = g; - stats->key_b = b; - } else if(a == 65535 && stats->key && matchkey) { - /* Color key cannot be used if an opaque pixel also has that RGB color. */ - stats->alpha = 1; - stats->key = 0; - alpha_done = 1; - } - } - if(alpha_done && numcolors_done && colored_done && bits_done) break; - } - - if(stats->key && !stats->alpha) { - for(i = 0; i != numpixels; ++i) { - getPixelColorRGBA16(&r, &g, &b, &a, in, i, mode_in); - if(a != 0 && r == stats->key_r && g == stats->key_g && b == stats->key_b) { - /* Color key cannot be used if an opaque pixel also has that RGB color. */ - stats->alpha = 1; - stats->key = 0; - alpha_done = 1; - } - } - } - } else /* < 16-bit */ { - unsigned char r = 0, g = 0, b = 0, a = 0; - for(i = 0; i != numpixels; ++i) { - getPixelColorRGBA8(&r, &g, &b, &a, in, i, mode_in); - - if(!bits_done && stats->bits < 8) { - /*only r is checked, < 8 bits is only relevant for grayscale*/ - unsigned bits = getValueRequiredBits(r); - if(bits > stats->bits) stats->bits = bits; - } - bits_done = (stats->bits >= bpp); - - if(!colored_done && (r != g || r != b)) { - stats->colored = 1; - colored_done = 1; - if(stats->bits < 8) stats->bits = 8; /*PNG has no colored modes with less than 8-bit per channel*/ - } - - if(!alpha_done) { - unsigned matchkey = (r == stats->key_r && g == stats->key_g && b == stats->key_b); - if(a != 255 && (a != 0 || (stats->key && !matchkey))) { - stats->alpha = 1; - stats->key = 0; - alpha_done = 1; - if(stats->bits < 8) stats->bits = 8; /*PNG has no alphachannel modes with less than 8-bit per channel*/ - } else if(a == 0 && !stats->alpha && !stats->key) { - stats->key = 1; - stats->key_r = r; - stats->key_g = g; - stats->key_b = b; - } else if(a == 255 && stats->key && matchkey) { - /* Color key cannot be used if an opaque pixel also has that RGB color. */ - stats->alpha = 1; - stats->key = 0; - alpha_done = 1; - if(stats->bits < 8) stats->bits = 8; /*PNG has no alphachannel modes with less than 8-bit per channel*/ - } - } - - if(!numcolors_done) { - if(!color_tree_has(&tree, r, g, b, a)) { - error = color_tree_add(&tree, r, g, b, a, stats->numcolors); - if(error) goto cleanup; - if(stats->numcolors < 256) { - unsigned char* p = stats->palette; - unsigned n = stats->numcolors; - p[n * 4 + 0] = r; - p[n * 4 + 1] = g; - p[n * 4 + 2] = b; - p[n * 4 + 3] = a; - } - ++stats->numcolors; - numcolors_done = stats->numcolors >= maxnumcolors; - } - } - - if(alpha_done && numcolors_done && colored_done && bits_done) break; - } - - if(stats->key && !stats->alpha) { - for(i = 0; i != numpixels; ++i) { - getPixelColorRGBA8(&r, &g, &b, &a, in, i, mode_in); - if(a != 0 && r == stats->key_r && g == stats->key_g && b == stats->key_b) { - /* Color key cannot be used if an opaque pixel also has that RGB color. */ - stats->alpha = 1; - stats->key = 0; - alpha_done = 1; - if(stats->bits < 8) stats->bits = 8; /*PNG has no alphachannel modes with less than 8-bit per channel*/ - } - } - } - - /*make the stats's key always 16-bit for consistency - repeat each byte twice*/ - stats->key_r += (stats->key_r << 8); - stats->key_g += (stats->key_g << 8); - stats->key_b += (stats->key_b << 8); - } - -cleanup: - color_tree_cleanup(&tree); - return error; -} - -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS -/*Adds a single color to the color stats. The stats must already have been inited. The color must be given as 16-bit -(with 2 bytes repeating for 8-bit and 65535 for opaque alpha channel). This function is expensive, do not call it for -all pixels of an image but only for a few additional values. */ -static unsigned lodepng_color_stats_add(LodePNGColorStats* stats, - unsigned r, unsigned g, unsigned b, unsigned a) { - unsigned error = 0; - unsigned char image[8]; - LodePNGColorMode mode; - lodepng_color_mode_init(&mode); - image[0] = r >> 8; image[1] = r; image[2] = g >> 8; image[3] = g; - image[4] = b >> 8; image[5] = b; image[6] = a >> 8; image[7] = a; - mode.bitdepth = 16; - mode.colortype = LCT_RGBA; - error = lodepng_compute_color_stats(stats, image, 1, 1, &mode); - lodepng_color_mode_cleanup(&mode); - return error; -} -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - -/*Computes a minimal PNG color model that can contain all colors as indicated by the stats. -The stats should be computed with lodepng_compute_color_stats. -mode_in is raw color profile of the image the stats were computed on, to copy palette order from when relevant. -Minimal PNG color model means the color type and bit depth that gives smallest amount of bits in the output image, -e.g. gray if only grayscale pixels, palette if less than 256 colors, color key if only single transparent color, ... -This is used if auto_convert is enabled (it is by default). -*/ -static unsigned auto_choose_color(LodePNGColorMode* mode_out, - const LodePNGColorMode* mode_in, - const LodePNGColorStats* stats) { - unsigned error = 0; - unsigned palettebits; - size_t i, n; - size_t numpixels = stats->numpixels; - unsigned palette_ok, gray_ok; - - unsigned alpha = stats->alpha; - unsigned key = stats->key; - unsigned bits = stats->bits; - - mode_out->key_defined = 0; - - if(key && numpixels <= 16) { - alpha = 1; /*too few pixels to justify tRNS chunk overhead*/ - key = 0; - if(bits < 8) bits = 8; /*PNG has no alphachannel modes with less than 8-bit per channel*/ - } - - gray_ok = !stats->colored; - if(!stats->allow_greyscale) gray_ok = 0; - if(!gray_ok && bits < 8) bits = 8; - - n = stats->numcolors; - palettebits = n <= 2 ? 1 : (n <= 4 ? 2 : (n <= 16 ? 4 : 8)); - palette_ok = n <= 256 && bits <= 8 && n != 0; /*n==0 means likely numcolors wasn't computed*/ - if(numpixels < n * 2) palette_ok = 0; /*don't add palette overhead if image has only a few pixels*/ - if(gray_ok && !alpha && bits <= palettebits) palette_ok = 0; /*gray is less overhead*/ - if(!stats->allow_palette) palette_ok = 0; - - if(palette_ok) { - const unsigned char* p = stats->palette; - lodepng_palette_clear(mode_out); /*remove potential earlier palette*/ - for(i = 0; i != stats->numcolors; ++i) { - error = lodepng_palette_add(mode_out, p[i * 4 + 0], p[i * 4 + 1], p[i * 4 + 2], p[i * 4 + 3]); - if(error) break; - } - - mode_out->colortype = LCT_PALETTE; - mode_out->bitdepth = palettebits; - - if(mode_in->colortype == LCT_PALETTE && mode_in->palettesize >= mode_out->palettesize - && mode_in->bitdepth == mode_out->bitdepth) { - /*If input should have same palette colors, keep original to preserve its order and prevent conversion*/ - lodepng_color_mode_cleanup(mode_out); /*clears palette, keeps the above set colortype and bitdepth fields as-is*/ - lodepng_color_mode_copy(mode_out, mode_in); - } - } else /*8-bit or 16-bit per channel*/ { - mode_out->bitdepth = bits; - mode_out->colortype = alpha ? (gray_ok ? LCT_GREY_ALPHA : LCT_RGBA) - : (gray_ok ? LCT_GREY : LCT_RGB); - if(key) { - unsigned mask = (1u << mode_out->bitdepth) - 1u; /*stats always uses 16-bit, mask converts it*/ - mode_out->key_r = stats->key_r & mask; - mode_out->key_g = stats->key_g & mask; - mode_out->key_b = stats->key_b & mask; - mode_out->key_defined = 1; - } - } - - return error; -} - -#endif /* #ifdef LODEPNG_COMPILE_ENCODER */ - -/* -Paeth predictor, used by PNG filter type 4 -The parameters are of type short, but should come from unsigned chars, the shorts -are only needed to make the paeth calculation correct. -*/ -static unsigned char paethPredictor(short a, short b, short c) { - short pa = LODEPNG_ABS(b - c); - short pb = LODEPNG_ABS(a - c); - short pc = LODEPNG_ABS(a + b - c - c); - /* return input value associated with smallest of pa, pb, pc (with certain priority if equal) */ - if(pb < pa) { a = b; pa = pb; } - return (pc < pa) ? c : a; -} - -/*shared values used by multiple Adam7 related functions*/ - -static const unsigned ADAM7_IX[7] = { 0, 4, 0, 2, 0, 1, 0 }; /*x start values*/ -static const unsigned ADAM7_IY[7] = { 0, 0, 4, 0, 2, 0, 1 }; /*y start values*/ -static const unsigned ADAM7_DX[7] = { 8, 8, 4, 4, 2, 2, 1 }; /*x delta values*/ -static const unsigned ADAM7_DY[7] = { 8, 8, 8, 4, 4, 2, 2 }; /*y delta values*/ - -/* -Outputs various dimensions and positions in the image related to the Adam7 reduced images. -passw: output containing the width of the 7 passes -passh: output containing the height of the 7 passes -filter_passstart: output containing the index of the start and end of each - reduced image with filter bytes -padded_passstart output containing the index of the start and end of each - reduced image when without filter bytes but with padded scanlines -passstart: output containing the index of the start and end of each reduced - image without padding between scanlines, but still padding between the images -w, h: width and height of non-interlaced image -bpp: bits per pixel -"padded" is only relevant if bpp is less than 8 and a scanline or image does not - end at a full byte -*/ -static void Adam7_getpassvalues(unsigned passw[7], unsigned passh[7], size_t filter_passstart[8], - size_t padded_passstart[8], size_t passstart[8], unsigned w, unsigned h, unsigned bpp) { - /*the passstart values have 8 values: the 8th one indicates the byte after the end of the 7th (= last) pass*/ - unsigned i; - - /*calculate width and height in pixels of each pass*/ - for(i = 0; i != 7; ++i) { - passw[i] = (w + ADAM7_DX[i] - ADAM7_IX[i] - 1) / ADAM7_DX[i]; - passh[i] = (h + ADAM7_DY[i] - ADAM7_IY[i] - 1) / ADAM7_DY[i]; - if(passw[i] == 0) passh[i] = 0; - if(passh[i] == 0) passw[i] = 0; - } - - filter_passstart[0] = padded_passstart[0] = passstart[0] = 0; - for(i = 0; i != 7; ++i) { - /*if passw[i] is 0, it's 0 bytes, not 1 (no filtertype-byte)*/ - filter_passstart[i + 1] = filter_passstart[i] - + ((passw[i] && passh[i]) ? passh[i] * (1u + (passw[i] * bpp + 7u) / 8u) : 0); - /*bits padded if needed to fill full byte at end of each scanline*/ - padded_passstart[i + 1] = padded_passstart[i] + passh[i] * ((passw[i] * bpp + 7u) / 8u); - /*only padded at end of reduced image*/ - passstart[i + 1] = passstart[i] + (passh[i] * passw[i] * bpp + 7u) / 8u; - } -} - -#ifdef LODEPNG_COMPILE_DECODER - -/* ////////////////////////////////////////////////////////////////////////// */ -/* / PNG Decoder / */ -/* ////////////////////////////////////////////////////////////////////////// */ - -/*read the information from the header and store it in the LodePNGInfo. return value is error*/ -unsigned lodepng_inspect(unsigned* w, unsigned* h, LodePNGState* state, - const unsigned char* in, size_t insize) { - unsigned width, height; - LodePNGInfo* info = &state->info_png; - if(insize == 0 || in == 0) { - CERROR_RETURN_ERROR(state->error, 48); /*error: the given data is empty*/ - } - if(insize < 33) { - CERROR_RETURN_ERROR(state->error, 27); /*error: the data length is smaller than the length of a PNG header*/ - } - - /*when decoding a new PNG image, make sure all parameters created after previous decoding are reset*/ - /* TODO: remove this. One should use a new LodePNGState for new sessions */ - lodepng_info_cleanup(info); - lodepng_info_init(info); - - if(in[0] != 137 || in[1] != 80 || in[2] != 78 || in[3] != 71 - || in[4] != 13 || in[5] != 10 || in[6] != 26 || in[7] != 10) { - CERROR_RETURN_ERROR(state->error, 28); /*error: the first 8 bytes are not the correct PNG signature*/ - } - if(lodepng_chunk_length(in + 8) != 13) { - CERROR_RETURN_ERROR(state->error, 94); /*error: header size must be 13 bytes*/ - } - if(!lodepng_chunk_type_equals(in + 8, "IHDR")) { - CERROR_RETURN_ERROR(state->error, 29); /*error: it doesn't start with a IHDR chunk!*/ - } - - /*read the values given in the header*/ - width = lodepng_read32bitInt(&in[16]); - height = lodepng_read32bitInt(&in[20]); - /*TODO: remove the undocumented feature that allows to give null pointers to width or height*/ - if(w) *w = width; - if(h) *h = height; - info->color.bitdepth = in[24]; - info->color.colortype = (LodePNGColorType)in[25]; - info->compression_method = in[26]; - info->filter_method = in[27]; - info->interlace_method = in[28]; - - /*errors returned only after the parsing so other values are still output*/ - - /*error: invalid image size*/ - if(width == 0 || height == 0) CERROR_RETURN_ERROR(state->error, 93); - /*error: invalid colortype or bitdepth combination*/ - state->error = checkColorValidity(info->color.colortype, info->color.bitdepth); - if(state->error) return state->error; - /*error: only compression method 0 is allowed in the specification*/ - if(info->compression_method != 0) CERROR_RETURN_ERROR(state->error, 32); - /*error: only filter method 0 is allowed in the specification*/ - if(info->filter_method != 0) CERROR_RETURN_ERROR(state->error, 33); - /*error: only interlace methods 0 and 1 exist in the specification*/ - if(info->interlace_method > 1) CERROR_RETURN_ERROR(state->error, 34); - - if(!state->decoder.ignore_crc) { - unsigned CRC = lodepng_read32bitInt(&in[29]); - unsigned checksum = lodepng_crc32(&in[12], 17); - if(CRC != checksum) { - CERROR_RETURN_ERROR(state->error, 57); /*invalid CRC*/ - } - } - - return state->error; -} - -static unsigned unfilterScanline(unsigned char* recon, const unsigned char* scanline, const unsigned char* precon, - size_t bytewidth, unsigned char filterType, size_t length) { - /* - For PNG filter method 0 - unfilter a PNG image scanline by scanline. when the pixels are smaller than 1 byte, - the filter works byte per byte (bytewidth = 1) - precon is the previous unfiltered scanline, recon the result, scanline the current one - the incoming scanlines do NOT include the filtertype byte, that one is given in the parameter filterType instead - recon and scanline MAY be the same memory address! precon must be disjoint. - */ - - size_t i; - switch(filterType) { - case 0: - for(i = 0; i != length; ++i) recon[i] = scanline[i]; - break; - case 1: { - size_t j = 0; - for(i = 0; i != bytewidth; ++i) recon[i] = scanline[i]; - for(i = bytewidth; i != length; ++i, ++j) recon[i] = scanline[i] + recon[j]; - break; - } - case 2: - if(precon) { - for(i = 0; i != length; ++i) recon[i] = scanline[i] + precon[i]; - } else { - for(i = 0; i != length; ++i) recon[i] = scanline[i]; - } - break; - case 3: - if(precon) { - size_t j = 0; - for(i = 0; i != bytewidth; ++i) recon[i] = scanline[i] + (precon[i] >> 1u); - /* Unroll independent paths of this predictor. A 6x and 8x version is also possible but that adds - too much code. Whether this speeds up anything depends on compiler and settings. */ - if(bytewidth >= 4) { - for(; i + 3 < length; i += 4, j += 4) { - unsigned char s0 = scanline[i + 0], s1 = scanline[i + 1], s2 = scanline[i + 2], s3 = scanline[i + 3]; - unsigned char r0 = recon[j + 0], r1 = recon[j + 1], r2 = recon[j + 2], r3 = recon[j + 3]; - unsigned char p0 = precon[i + 0], p1 = precon[i + 1], p2 = precon[i + 2], p3 = precon[i + 3]; - recon[i + 0] = s0 + ((r0 + p0) >> 1u); - recon[i + 1] = s1 + ((r1 + p1) >> 1u); - recon[i + 2] = s2 + ((r2 + p2) >> 1u); - recon[i + 3] = s3 + ((r3 + p3) >> 1u); - } - } else if(bytewidth >= 3) { - for(; i + 2 < length; i += 3, j += 3) { - unsigned char s0 = scanline[i + 0], s1 = scanline[i + 1], s2 = scanline[i + 2]; - unsigned char r0 = recon[j + 0], r1 = recon[j + 1], r2 = recon[j + 2]; - unsigned char p0 = precon[i + 0], p1 = precon[i + 1], p2 = precon[i + 2]; - recon[i + 0] = s0 + ((r0 + p0) >> 1u); - recon[i + 1] = s1 + ((r1 + p1) >> 1u); - recon[i + 2] = s2 + ((r2 + p2) >> 1u); - } - } else if(bytewidth >= 2) { - for(; i + 1 < length; i += 2, j += 2) { - unsigned char s0 = scanline[i + 0], s1 = scanline[i + 1]; - unsigned char r0 = recon[j + 0], r1 = recon[j + 1]; - unsigned char p0 = precon[i + 0], p1 = precon[i + 1]; - recon[i + 0] = s0 + ((r0 + p0) >> 1u); - recon[i + 1] = s1 + ((r1 + p1) >> 1u); - } - } - for(; i != length; ++i, ++j) recon[i] = scanline[i] + ((recon[j] + precon[i]) >> 1u); - } else { - size_t j = 0; - for(i = 0; i != bytewidth; ++i) recon[i] = scanline[i]; - for(i = bytewidth; i != length; ++i, ++j) recon[i] = scanline[i] + (recon[j] >> 1u); - } - break; - case 4: - if(precon) { - size_t j = 0; - for(i = 0; i != bytewidth; ++i) { - recon[i] = (scanline[i] + precon[i]); /*paethPredictor(0, precon[i], 0) is always precon[i]*/ - } - - /* Unroll independent paths of the paeth predictor. A 6x and 8x version is also possible but that - adds too much code. Whether this speeds up anything depends on compiler and settings. */ - if(bytewidth >= 4) { - for(; i + 3 < length; i += 4, j += 4) { - unsigned char s0 = scanline[i + 0], s1 = scanline[i + 1], s2 = scanline[i + 2], s3 = scanline[i + 3]; - unsigned char r0 = recon[j + 0], r1 = recon[j + 1], r2 = recon[j + 2], r3 = recon[j + 3]; - unsigned char p0 = precon[i + 0], p1 = precon[i + 1], p2 = precon[i + 2], p3 = precon[i + 3]; - unsigned char q0 = precon[j + 0], q1 = precon[j + 1], q2 = precon[j + 2], q3 = precon[j + 3]; - recon[i + 0] = s0 + paethPredictor(r0, p0, q0); - recon[i + 1] = s1 + paethPredictor(r1, p1, q1); - recon[i + 2] = s2 + paethPredictor(r2, p2, q2); - recon[i + 3] = s3 + paethPredictor(r3, p3, q3); - } - } else if(bytewidth >= 3) { - for(; i + 2 < length; i += 3, j += 3) { - unsigned char s0 = scanline[i + 0], s1 = scanline[i + 1], s2 = scanline[i + 2]; - unsigned char r0 = recon[j + 0], r1 = recon[j + 1], r2 = recon[j + 2]; - unsigned char p0 = precon[i + 0], p1 = precon[i + 1], p2 = precon[i + 2]; - unsigned char q0 = precon[j + 0], q1 = precon[j + 1], q2 = precon[j + 2]; - recon[i + 0] = s0 + paethPredictor(r0, p0, q0); - recon[i + 1] = s1 + paethPredictor(r1, p1, q1); - recon[i + 2] = s2 + paethPredictor(r2, p2, q2); - } - } else if(bytewidth >= 2) { - for(; i + 1 < length; i += 2, j += 2) { - unsigned char s0 = scanline[i + 0], s1 = scanline[i + 1]; - unsigned char r0 = recon[j + 0], r1 = recon[j + 1]; - unsigned char p0 = precon[i + 0], p1 = precon[i + 1]; - unsigned char q0 = precon[j + 0], q1 = precon[j + 1]; - recon[i + 0] = s0 + paethPredictor(r0, p0, q0); - recon[i + 1] = s1 + paethPredictor(r1, p1, q1); - } - } - - for(; i != length; ++i, ++j) { - recon[i] = (scanline[i] + paethPredictor(recon[i - bytewidth], precon[i], precon[j])); - } - } else { - size_t j = 0; - for(i = 0; i != bytewidth; ++i) { - recon[i] = scanline[i]; - } - for(i = bytewidth; i != length; ++i, ++j) { - /*paethPredictor(recon[i - bytewidth], 0, 0) is always recon[i - bytewidth]*/ - recon[i] = (scanline[i] + recon[j]); - } - } - break; - default: return 36; /*error: invalid filter type given*/ - } - return 0; -} - -static unsigned unfilter(unsigned char* out, const unsigned char* in, unsigned w, unsigned h, unsigned bpp) { - /* - For PNG filter method 0 - this function unfilters a single image (e.g. without interlacing this is called once, with Adam7 seven times) - out must have enough bytes allocated already, in must have the scanlines + 1 filtertype byte per scanline - w and h are image dimensions or dimensions of reduced image, bpp is bits per pixel - in and out are allowed to be the same memory address (but aren't the same size since in has the extra filter bytes) - */ - - unsigned y; - unsigned char* prevline = 0; - - /*bytewidth is used for filtering, is 1 when bpp < 8, number of bytes per pixel otherwise*/ - size_t bytewidth = (bpp + 7u) / 8u; - /*the width of a scanline in bytes, not including the filter type*/ - size_t linebytes = lodepng_get_raw_size_idat(w, 1, bpp) - 1u; - - for(y = 0; y < h; ++y) { - size_t outindex = linebytes * y; - size_t inindex = (1 + linebytes) * y; /*the extra filterbyte added to each row*/ - unsigned char filterType = in[inindex]; - - CERROR_TRY_RETURN(unfilterScanline(&out[outindex], &in[inindex + 1], prevline, bytewidth, filterType, linebytes)); - - prevline = &out[outindex]; - } - - return 0; -} - -/* -in: Adam7 interlaced image, with no padding bits between scanlines, but between - reduced images so that each reduced image starts at a byte. -out: the same pixels, but re-ordered so that they're now a non-interlaced image with size w*h -bpp: bits per pixel -out has the following size in bits: w * h * bpp. -in is possibly bigger due to padding bits between reduced images. -out must be big enough AND must be 0 everywhere if bpp < 8 in the current implementation -(because that's likely a little bit faster) -NOTE: comments about padding bits are only relevant if bpp < 8 -*/ -static void Adam7_deinterlace(unsigned char* out, const unsigned char* in, unsigned w, unsigned h, unsigned bpp) { - unsigned passw[7], passh[7]; - size_t filter_passstart[8], padded_passstart[8], passstart[8]; - unsigned i; - - Adam7_getpassvalues(passw, passh, filter_passstart, padded_passstart, passstart, w, h, bpp); - - if(bpp >= 8) { - for(i = 0; i != 7; ++i) { - unsigned x, y, b; - size_t bytewidth = bpp / 8u; - for(y = 0; y < passh[i]; ++y) - for(x = 0; x < passw[i]; ++x) { - size_t pixelinstart = passstart[i] + (y * passw[i] + x) * bytewidth; - size_t pixeloutstart = ((ADAM7_IY[i] + (size_t)y * ADAM7_DY[i]) * (size_t)w - + ADAM7_IX[i] + (size_t)x * ADAM7_DX[i]) * bytewidth; - for(b = 0; b < bytewidth; ++b) { - out[pixeloutstart + b] = in[pixelinstart + b]; - } - } - } - } else /*bpp < 8: Adam7 with pixels < 8 bit is a bit trickier: with bit pointers*/ { - for(i = 0; i != 7; ++i) { - unsigned x, y, b; - unsigned ilinebits = bpp * passw[i]; - unsigned olinebits = bpp * w; - size_t obp, ibp; /*bit pointers (for out and in buffer)*/ - for(y = 0; y < passh[i]; ++y) - for(x = 0; x < passw[i]; ++x) { - ibp = (8 * passstart[i]) + (y * ilinebits + x * bpp); - obp = (ADAM7_IY[i] + (size_t)y * ADAM7_DY[i]) * olinebits + (ADAM7_IX[i] + (size_t)x * ADAM7_DX[i]) * bpp; - for(b = 0; b < bpp; ++b) { - unsigned char bit = readBitFromReversedStream(&ibp, in); - setBitOfReversedStream(&obp, out, bit); - } - } - } - } -} - -static void removePaddingBits(unsigned char* out, const unsigned char* in, - size_t olinebits, size_t ilinebits, unsigned h) { - /* - After filtering there are still padding bits if scanlines have non multiple of 8 bit amounts. They need - to be removed (except at last scanline of (Adam7-reduced) image) before working with pure image buffers - for the Adam7 code, the color convert code and the output to the user. - in and out are allowed to be the same buffer, in may also be higher but still overlapping; in must - have >= ilinebits*h bits, out must have >= olinebits*h bits, olinebits must be <= ilinebits - also used to move bits after earlier such operations happened, e.g. in a sequence of reduced images from Adam7 - only useful if (ilinebits - olinebits) is a value in the range 1..7 - */ - unsigned y; - size_t diff = ilinebits - olinebits; - size_t ibp = 0, obp = 0; /*input and output bit pointers*/ - for(y = 0; y < h; ++y) { - size_t x; - for(x = 0; x < olinebits; ++x) { - unsigned char bit = readBitFromReversedStream(&ibp, in); - setBitOfReversedStream(&obp, out, bit); - } - ibp += diff; - } -} - -/*out must be buffer big enough to contain full image, and in must contain the full decompressed data from -the IDAT chunks (with filter index bytes and possible padding bits) -return value is error*/ -static unsigned postProcessScanlines(unsigned char* out, unsigned char* in, - unsigned w, unsigned h, const LodePNGInfo* info_png) { - /* - This function converts the filtered-padded-interlaced data into pure 2D image buffer with the PNG's colortype. - Steps: - *) if no Adam7: 1) unfilter 2) remove padding bits (= possible extra bits per scanline if bpp < 8) - *) if adam7: 1) 7x unfilter 2) 7x remove padding bits 3) Adam7_deinterlace - NOTE: the in buffer will be overwritten with intermediate data! - */ - unsigned bpp = lodepng_get_bpp(&info_png->color); - if(bpp == 0) return 31; /*error: invalid colortype*/ - - if(info_png->interlace_method == 0) { - if(bpp < 8 && w * bpp != ((w * bpp + 7u) / 8u) * 8u) { - CERROR_TRY_RETURN(unfilter(in, in, w, h, bpp)); - removePaddingBits(out, in, w * bpp, ((w * bpp + 7u) / 8u) * 8u, h); - } - /*we can immediately filter into the out buffer, no other steps needed*/ - else CERROR_TRY_RETURN(unfilter(out, in, w, h, bpp)); - } else /*interlace_method is 1 (Adam7)*/ { - unsigned passw[7], passh[7]; size_t filter_passstart[8], padded_passstart[8], passstart[8]; - unsigned i; - - Adam7_getpassvalues(passw, passh, filter_passstart, padded_passstart, passstart, w, h, bpp); - - for(i = 0; i != 7; ++i) { - CERROR_TRY_RETURN(unfilter(&in[padded_passstart[i]], &in[filter_passstart[i]], passw[i], passh[i], bpp)); - /*TODO: possible efficiency improvement: if in this reduced image the bits fit nicely in 1 scanline, - move bytes instead of bits or move not at all*/ - if(bpp < 8) { - /*remove padding bits in scanlines; after this there still may be padding - bits between the different reduced images: each reduced image still starts nicely at a byte*/ - removePaddingBits(&in[passstart[i]], &in[padded_passstart[i]], passw[i] * bpp, - ((passw[i] * bpp + 7u) / 8u) * 8u, passh[i]); - } - } - - Adam7_deinterlace(out, in, w, h, bpp); - } - - return 0; -} - -static unsigned readChunk_PLTE(LodePNGColorMode* color, const unsigned char* data, size_t chunkLength) { - unsigned pos = 0, i; - color->palettesize = chunkLength / 3u; - if(color->palettesize == 0 || color->palettesize > 256) return 38; /*error: palette too small or big*/ - lodepng_color_mode_alloc_palette(color); - if(!color->palette && color->palettesize) { - color->palettesize = 0; - return 83; /*alloc fail*/ - } - - for(i = 0; i != color->palettesize; ++i) { - color->palette[4 * i + 0] = data[pos++]; /*R*/ - color->palette[4 * i + 1] = data[pos++]; /*G*/ - color->palette[4 * i + 2] = data[pos++]; /*B*/ - color->palette[4 * i + 3] = 255; /*alpha*/ - } - - return 0; /* OK */ -} - -static unsigned readChunk_tRNS(LodePNGColorMode* color, const unsigned char* data, size_t chunkLength) { - unsigned i; - if(color->colortype == LCT_PALETTE) { - /*error: more alpha values given than there are palette entries*/ - if(chunkLength > color->palettesize) return 39; - - for(i = 0; i != chunkLength; ++i) color->palette[4 * i + 3] = data[i]; - } else if(color->colortype == LCT_GREY) { - /*error: this chunk must be 2 bytes for grayscale image*/ - if(chunkLength != 2) return 30; - - color->key_defined = 1; - color->key_r = color->key_g = color->key_b = 256u * data[0] + data[1]; - } else if(color->colortype == LCT_RGB) { - /*error: this chunk must be 6 bytes for RGB image*/ - if(chunkLength != 6) return 41; - - color->key_defined = 1; - color->key_r = 256u * data[0] + data[1]; - color->key_g = 256u * data[2] + data[3]; - color->key_b = 256u * data[4] + data[5]; - } - else return 42; /*error: tRNS chunk not allowed for other color models*/ - - return 0; /* OK */ -} - - -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS -/*background color chunk (bKGD)*/ -static unsigned readChunk_bKGD(LodePNGInfo* info, const unsigned char* data, size_t chunkLength) { - if(info->color.colortype == LCT_PALETTE) { - /*error: this chunk must be 1 byte for indexed color image*/ - if(chunkLength != 1) return 43; - - /*error: invalid palette index, or maybe this chunk appeared before PLTE*/ - if(data[0] >= info->color.palettesize) return 103; - - info->background_defined = 1; - info->background_r = info->background_g = info->background_b = data[0]; - } else if(info->color.colortype == LCT_GREY || info->color.colortype == LCT_GREY_ALPHA) { - /*error: this chunk must be 2 bytes for grayscale image*/ - if(chunkLength != 2) return 44; - - /*the values are truncated to bitdepth in the PNG file*/ - info->background_defined = 1; - info->background_r = info->background_g = info->background_b = 256u * data[0] + data[1]; - } else if(info->color.colortype == LCT_RGB || info->color.colortype == LCT_RGBA) { - /*error: this chunk must be 6 bytes for grayscale image*/ - if(chunkLength != 6) return 45; - - /*the values are truncated to bitdepth in the PNG file*/ - info->background_defined = 1; - info->background_r = 256u * data[0] + data[1]; - info->background_g = 256u * data[2] + data[3]; - info->background_b = 256u * data[4] + data[5]; - } - - return 0; /* OK */ -} - -/*text chunk (tEXt)*/ -static unsigned readChunk_tEXt(LodePNGInfo* info, const unsigned char* data, size_t chunkLength) { - unsigned error = 0; - char *key = 0, *str = 0; - - while(!error) /*not really a while loop, only used to break on error*/ { - unsigned length, string2_begin; - - length = 0; - while(length < chunkLength && data[length] != 0) ++length; - /*even though it's not allowed by the standard, no error is thrown if - there's no null termination char, if the text is empty*/ - if(length < 1 || length > 79) CERROR_BREAK(error, 89); /*keyword too short or long*/ - - key = (char*)lodepng_malloc(length + 1); - if(!key) CERROR_BREAK(error, 83); /*alloc fail*/ - - lodepng_memcpy(key, data, length); - key[length] = 0; - - string2_begin = length + 1; /*skip keyword null terminator*/ - - length = (unsigned)(chunkLength < string2_begin ? 0 : chunkLength - string2_begin); - str = (char*)lodepng_malloc(length + 1); - if(!str) CERROR_BREAK(error, 83); /*alloc fail*/ - - lodepng_memcpy(str, data + string2_begin, length); - str[length] = 0; - - error = lodepng_add_text(info, key, str); - - break; - } - - lodepng_free(key); - lodepng_free(str); - - return error; -} - -/*compressed text chunk (zTXt)*/ -static unsigned readChunk_zTXt(LodePNGInfo* info, const LodePNGDecoderSettings* decoder, - const unsigned char* data, size_t chunkLength) { - unsigned error = 0; - - /*copy the object to change parameters in it*/ - LodePNGDecompressSettings zlibsettings = decoder->zlibsettings; - - unsigned length, string2_begin; - char *key = 0; - unsigned char* str = 0; - size_t size = 0; - - while(!error) /*not really a while loop, only used to break on error*/ { - for(length = 0; length < chunkLength && data[length] != 0; ++length) ; - if(length + 2 >= chunkLength) CERROR_BREAK(error, 75); /*no null termination, corrupt?*/ - if(length < 1 || length > 79) CERROR_BREAK(error, 89); /*keyword too short or long*/ - - key = (char*)lodepng_malloc(length + 1); - if(!key) CERROR_BREAK(error, 83); /*alloc fail*/ - - lodepng_memcpy(key, data, length); - key[length] = 0; - - if(data[length + 1] != 0) CERROR_BREAK(error, 72); /*the 0 byte indicating compression must be 0*/ - - string2_begin = length + 2; - if(string2_begin > chunkLength) CERROR_BREAK(error, 75); /*no null termination, corrupt?*/ - - length = (unsigned)chunkLength - string2_begin; - zlibsettings.max_output_size = decoder->max_text_size; - /*will fail if zlib error, e.g. if length is too small*/ - error = zlib_decompress(&str, &size, 0, &data[string2_begin], - length, &zlibsettings); - /*error: compressed text larger than decoder->max_text_size*/ - if(error && size > zlibsettings.max_output_size) error = 112; - if(error) break; - error = lodepng_add_text_sized(info, key, (char*)str, size); - break; - } - - lodepng_free(key); - lodepng_free(str); - - return error; -} - -/*international text chunk (iTXt)*/ -static unsigned readChunk_iTXt(LodePNGInfo* info, const LodePNGDecoderSettings* decoder, - const unsigned char* data, size_t chunkLength) { - unsigned error = 0; - unsigned i; - - /*copy the object to change parameters in it*/ - LodePNGDecompressSettings zlibsettings = decoder->zlibsettings; - - unsigned length, begin, compressed; - char *key = 0, *langtag = 0, *transkey = 0; - - while(!error) /*not really a while loop, only used to break on error*/ { - /*Quick check if the chunk length isn't too small. Even without check - it'd still fail with other error checks below if it's too short. This just gives a different error code.*/ - if(chunkLength < 5) CERROR_BREAK(error, 30); /*iTXt chunk too short*/ - - /*read the key*/ - for(length = 0; length < chunkLength && data[length] != 0; ++length) ; - if(length + 3 >= chunkLength) CERROR_BREAK(error, 75); /*no null termination char, corrupt?*/ - if(length < 1 || length > 79) CERROR_BREAK(error, 89); /*keyword too short or long*/ - - key = (char*)lodepng_malloc(length + 1); - if(!key) CERROR_BREAK(error, 83); /*alloc fail*/ - - lodepng_memcpy(key, data, length); - key[length] = 0; - - /*read the compression method*/ - compressed = data[length + 1]; - if(data[length + 2] != 0) CERROR_BREAK(error, 72); /*the 0 byte indicating compression must be 0*/ - - /*even though it's not allowed by the standard, no error is thrown if - there's no null termination char, if the text is empty for the next 3 texts*/ - - /*read the langtag*/ - begin = length + 3; - length = 0; - for(i = begin; i < chunkLength && data[i] != 0; ++i) ++length; - - langtag = (char*)lodepng_malloc(length + 1); - if(!langtag) CERROR_BREAK(error, 83); /*alloc fail*/ - - lodepng_memcpy(langtag, data + begin, length); - langtag[length] = 0; - - /*read the transkey*/ - begin += length + 1; - length = 0; - for(i = begin; i < chunkLength && data[i] != 0; ++i) ++length; - - transkey = (char*)lodepng_malloc(length + 1); - if(!transkey) CERROR_BREAK(error, 83); /*alloc fail*/ - - lodepng_memcpy(transkey, data + begin, length); - transkey[length] = 0; - - /*read the actual text*/ - begin += length + 1; - - length = (unsigned)chunkLength < begin ? 0 : (unsigned)chunkLength - begin; - - if(compressed) { - unsigned char* str = 0; - size_t size = 0; - zlibsettings.max_output_size = decoder->max_text_size; - /*will fail if zlib error, e.g. if length is too small*/ - error = zlib_decompress(&str, &size, 0, &data[begin], - length, &zlibsettings); - /*error: compressed text larger than decoder->max_text_size*/ - if(error && size > zlibsettings.max_output_size) error = 112; - if(!error) error = lodepng_add_itext_sized(info, key, langtag, transkey, (char*)str, size); - lodepng_free(str); - } else { - error = lodepng_add_itext_sized(info, key, langtag, transkey, (char*)(data + begin), length); - } - - break; - } - - lodepng_free(key); - lodepng_free(langtag); - lodepng_free(transkey); - - return error; -} - -static unsigned readChunk_tIME(LodePNGInfo* info, const unsigned char* data, size_t chunkLength) { - if(chunkLength != 7) return 73; /*invalid tIME chunk size*/ - - info->time_defined = 1; - info->time.year = 256u * data[0] + data[1]; - info->time.month = data[2]; - info->time.day = data[3]; - info->time.hour = data[4]; - info->time.minute = data[5]; - info->time.second = data[6]; - - return 0; /* OK */ -} - -static unsigned readChunk_pHYs(LodePNGInfo* info, const unsigned char* data, size_t chunkLength) { - if(chunkLength != 9) return 74; /*invalid pHYs chunk size*/ - - info->phys_defined = 1; - info->phys_x = 16777216u * data[0] + 65536u * data[1] + 256u * data[2] + data[3]; - info->phys_y = 16777216u * data[4] + 65536u * data[5] + 256u * data[6] + data[7]; - info->phys_unit = data[8]; - - return 0; /* OK */ -} - -static unsigned readChunk_gAMA(LodePNGInfo* info, const unsigned char* data, size_t chunkLength) { - if(chunkLength != 4) return 96; /*invalid gAMA chunk size*/ - - info->gama_defined = 1; - info->gama_gamma = 16777216u * data[0] + 65536u * data[1] + 256u * data[2] + data[3]; - - return 0; /* OK */ -} - -static unsigned readChunk_cHRM(LodePNGInfo* info, const unsigned char* data, size_t chunkLength) { - if(chunkLength != 32) return 97; /*invalid cHRM chunk size*/ - - info->chrm_defined = 1; - info->chrm_white_x = 16777216u * data[ 0] + 65536u * data[ 1] + 256u * data[ 2] + data[ 3]; - info->chrm_white_y = 16777216u * data[ 4] + 65536u * data[ 5] + 256u * data[ 6] + data[ 7]; - info->chrm_red_x = 16777216u * data[ 8] + 65536u * data[ 9] + 256u * data[10] + data[11]; - info->chrm_red_y = 16777216u * data[12] + 65536u * data[13] + 256u * data[14] + data[15]; - info->chrm_green_x = 16777216u * data[16] + 65536u * data[17] + 256u * data[18] + data[19]; - info->chrm_green_y = 16777216u * data[20] + 65536u * data[21] + 256u * data[22] + data[23]; - info->chrm_blue_x = 16777216u * data[24] + 65536u * data[25] + 256u * data[26] + data[27]; - info->chrm_blue_y = 16777216u * data[28] + 65536u * data[29] + 256u * data[30] + data[31]; - - return 0; /* OK */ -} - -static unsigned readChunk_sRGB(LodePNGInfo* info, const unsigned char* data, size_t chunkLength) { - if(chunkLength != 1) return 98; /*invalid sRGB chunk size (this one is never ignored)*/ - - info->srgb_defined = 1; - info->srgb_intent = data[0]; - - return 0; /* OK */ -} - -static unsigned readChunk_iCCP(LodePNGInfo* info, const LodePNGDecoderSettings* decoder, - const unsigned char* data, size_t chunkLength) { - unsigned error = 0; - unsigned i; - size_t size = 0; - /*copy the object to change parameters in it*/ - LodePNGDecompressSettings zlibsettings = decoder->zlibsettings; - - unsigned length, string2_begin; - - info->iccp_defined = 1; - if(info->iccp_name) lodepng_clear_icc(info); - - for(length = 0; length < chunkLength && data[length] != 0; ++length) ; - if(length + 2 >= chunkLength) return 75; /*no null termination, corrupt?*/ - if(length < 1 || length > 79) return 89; /*keyword too short or long*/ - - info->iccp_name = (char*)lodepng_malloc(length + 1); - if(!info->iccp_name) return 83; /*alloc fail*/ - - info->iccp_name[length] = 0; - for(i = 0; i != length; ++i) info->iccp_name[i] = (char)data[i]; - - if(data[length + 1] != 0) return 72; /*the 0 byte indicating compression must be 0*/ - - string2_begin = length + 2; - if(string2_begin > chunkLength) return 75; /*no null termination, corrupt?*/ - - length = (unsigned)chunkLength - string2_begin; - zlibsettings.max_output_size = decoder->max_icc_size; - error = zlib_decompress(&info->iccp_profile, &size, 0, - &data[string2_begin], - length, &zlibsettings); - /*error: ICC profile larger than decoder->max_icc_size*/ - if(error && size > zlibsettings.max_output_size) error = 113; - info->iccp_profile_size = size; - if(!error && !info->iccp_profile_size) error = 100; /*invalid ICC profile size*/ - return error; -} - -/*significant bits chunk (sBIT)*/ -static unsigned readChunk_sBIT(LodePNGInfo* info, const unsigned char* data, size_t chunkLength) { - unsigned bitdepth = (info->color.colortype == LCT_PALETTE) ? 8 : info->color.bitdepth; - if(info->color.colortype == LCT_GREY) { - /*error: this chunk must be 1 bytes for grayscale image*/ - if(chunkLength != 1) return 114; - if(data[0] == 0 || data[0] > bitdepth) return 115; - info->sbit_defined = 1; - info->sbit_r = info->sbit_g = info->sbit_b = data[0]; /*setting g and b is not required, but sensible*/ - } else if(info->color.colortype == LCT_RGB || info->color.colortype == LCT_PALETTE) { - /*error: this chunk must be 3 bytes for RGB and palette image*/ - if(chunkLength != 3) return 114; - if(data[0] == 0 || data[1] == 0 || data[2] == 0) return 115; - if(data[0] > bitdepth || data[1] > bitdepth || data[2] > bitdepth) return 115; - info->sbit_defined = 1; - info->sbit_r = data[0]; - info->sbit_g = data[1]; - info->sbit_b = data[2]; - } else if(info->color.colortype == LCT_GREY_ALPHA) { - /*error: this chunk must be 2 byte for grayscale with alpha image*/ - if(chunkLength != 2) return 114; - if(data[0] == 0 || data[1] == 0) return 115; - if(data[0] > bitdepth || data[1] > bitdepth) return 115; - info->sbit_defined = 1; - info->sbit_r = info->sbit_g = info->sbit_b = data[0]; /*setting g and b is not required, but sensible*/ - info->sbit_a = data[1]; - } else if(info->color.colortype == LCT_RGBA) { - /*error: this chunk must be 4 bytes for grayscale image*/ - if(chunkLength != 4) return 114; - if(data[0] == 0 || data[1] == 0 || data[2] == 0 || data[3] == 0) return 115; - if(data[0] > bitdepth || data[1] > bitdepth || data[2] > bitdepth || data[3] > bitdepth) return 115; - info->sbit_defined = 1; - info->sbit_r = data[0]; - info->sbit_g = data[1]; - info->sbit_b = data[2]; - info->sbit_a = data[3]; - } - - return 0; /* OK */ -} -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - -unsigned lodepng_inspect_chunk(LodePNGState* state, size_t pos, - const unsigned char* in, size_t insize) { - const unsigned char* chunk = in + pos; - unsigned chunkLength; - const unsigned char* data; - unsigned unhandled = 0; - unsigned error = 0; - - if(pos + 4 > insize) return 30; - chunkLength = lodepng_chunk_length(chunk); - if(chunkLength > 2147483647) return 63; - data = lodepng_chunk_data_const(chunk); - if(chunkLength + 12 > insize - pos) return 30; - - if(lodepng_chunk_type_equals(chunk, "PLTE")) { - error = readChunk_PLTE(&state->info_png.color, data, chunkLength); - } else if(lodepng_chunk_type_equals(chunk, "tRNS")) { - error = readChunk_tRNS(&state->info_png.color, data, chunkLength); -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - } else if(lodepng_chunk_type_equals(chunk, "bKGD")) { - error = readChunk_bKGD(&state->info_png, data, chunkLength); - } else if(lodepng_chunk_type_equals(chunk, "tEXt")) { - error = readChunk_tEXt(&state->info_png, data, chunkLength); - } else if(lodepng_chunk_type_equals(chunk, "zTXt")) { - error = readChunk_zTXt(&state->info_png, &state->decoder, data, chunkLength); - } else if(lodepng_chunk_type_equals(chunk, "iTXt")) { - error = readChunk_iTXt(&state->info_png, &state->decoder, data, chunkLength); - } else if(lodepng_chunk_type_equals(chunk, "tIME")) { - error = readChunk_tIME(&state->info_png, data, chunkLength); - } else if(lodepng_chunk_type_equals(chunk, "pHYs")) { - error = readChunk_pHYs(&state->info_png, data, chunkLength); - } else if(lodepng_chunk_type_equals(chunk, "gAMA")) { - error = readChunk_gAMA(&state->info_png, data, chunkLength); - } else if(lodepng_chunk_type_equals(chunk, "cHRM")) { - error = readChunk_cHRM(&state->info_png, data, chunkLength); - } else if(lodepng_chunk_type_equals(chunk, "sRGB")) { - error = readChunk_sRGB(&state->info_png, data, chunkLength); - } else if(lodepng_chunk_type_equals(chunk, "iCCP")) { - error = readChunk_iCCP(&state->info_png, &state->decoder, data, chunkLength); - } else if(lodepng_chunk_type_equals(chunk, "sBIT")) { - error = readChunk_sBIT(&state->info_png, data, chunkLength); -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - } else { - /* unhandled chunk is ok (is not an error) */ - unhandled = 1; - } - - if(!error && !unhandled && !state->decoder.ignore_crc) { - if(lodepng_chunk_check_crc(chunk)) return 57; /*invalid CRC*/ - } - - return error; -} - -/*read a PNG, the result will be in the same color type as the PNG (hence "generic")*/ -static void decodeGeneric(unsigned char** out, unsigned* w, unsigned* h, - LodePNGState* state, - const unsigned char* in, size_t insize) { - unsigned char IEND = 0; - const unsigned char* chunk; /*points to beginning of next chunk*/ - unsigned char* idat; /*the data from idat chunks, zlib compressed*/ - size_t idatsize = 0; - unsigned char* scanlines = 0; - size_t scanlines_size = 0, expected_size = 0; - size_t outsize = 0; - - /*for unknown chunk order*/ - unsigned unknown = 0; -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - unsigned critical_pos = 1; /*1 = after IHDR, 2 = after PLTE, 3 = after IDAT*/ -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - - - /* safe output values in case error happens */ - *out = 0; - *w = *h = 0; - - state->error = lodepng_inspect(w, h, state, in, insize); /*reads header and resets other parameters in state->info_png*/ - if(state->error) return; - - if(lodepng_pixel_overflow(*w, *h, &state->info_png.color, &state->info_raw)) { - CERROR_RETURN(state->error, 92); /*overflow possible due to amount of pixels*/ - } - - /*the input filesize is a safe upper bound for the sum of idat chunks size*/ - idat = (unsigned char*)lodepng_malloc(insize); - if(!idat) CERROR_RETURN(state->error, 83); /*alloc fail*/ - - chunk = &in[33]; /*first byte of the first chunk after the header*/ - - /*loop through the chunks, ignoring unknown chunks and stopping at IEND chunk. - IDAT data is put at the start of the in buffer*/ - while(!IEND && !state->error) { - unsigned chunkLength; - const unsigned char* data; /*the data in the chunk*/ - size_t pos = (size_t)(chunk - in); - - /*error: next chunk out of bounds of the in buffer*/ - if(chunk < in || pos + 12 > insize) { - if(state->decoder.ignore_end) break; /*other errors may still happen though*/ - CERROR_BREAK(state->error, 30); - } - - /*length of the data of the chunk, excluding the 12 bytes for length, chunk type and CRC*/ - chunkLength = lodepng_chunk_length(chunk); - /*error: chunk length larger than the max PNG chunk size*/ - if(chunkLength > 2147483647) { - if(state->decoder.ignore_end) break; /*other errors may still happen though*/ - CERROR_BREAK(state->error, 63); - } - - if(pos + (size_t)chunkLength + 12 > insize || pos + (size_t)chunkLength + 12 < pos) { - CERROR_BREAK(state->error, 64); /*error: size of the in buffer too small to contain next chunk (or int overflow)*/ - } - - data = lodepng_chunk_data_const(chunk); - - unknown = 0; - - /*IDAT chunk, containing compressed image data*/ - if(lodepng_chunk_type_equals(chunk, "IDAT")) { - size_t newsize; - if(lodepng_addofl(idatsize, chunkLength, &newsize)) CERROR_BREAK(state->error, 95); - if(newsize > insize) CERROR_BREAK(state->error, 95); - lodepng_memcpy(idat + idatsize, data, chunkLength); - idatsize += chunkLength; -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - critical_pos = 3; -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - } else if(lodepng_chunk_type_equals(chunk, "IEND")) { - /*IEND chunk*/ - IEND = 1; - } else if(lodepng_chunk_type_equals(chunk, "PLTE")) { - /*palette chunk (PLTE)*/ - state->error = readChunk_PLTE(&state->info_png.color, data, chunkLength); - if(state->error) break; -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - critical_pos = 2; -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - } else if(lodepng_chunk_type_equals(chunk, "tRNS")) { - /*palette transparency chunk (tRNS). Even though this one is an ancillary chunk , it is still compiled - in without 'LODEPNG_COMPILE_ANCILLARY_CHUNKS' because it contains essential color information that - affects the alpha channel of pixels. */ - state->error = readChunk_tRNS(&state->info_png.color, data, chunkLength); - if(state->error) break; -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - /*background color chunk (bKGD)*/ - } else if(lodepng_chunk_type_equals(chunk, "bKGD")) { - state->error = readChunk_bKGD(&state->info_png, data, chunkLength); - if(state->error) break; - } else if(lodepng_chunk_type_equals(chunk, "tEXt")) { - /*text chunk (tEXt)*/ - if(state->decoder.read_text_chunks) { - state->error = readChunk_tEXt(&state->info_png, data, chunkLength); - if(state->error) break; - } - } else if(lodepng_chunk_type_equals(chunk, "zTXt")) { - /*compressed text chunk (zTXt)*/ - if(state->decoder.read_text_chunks) { - state->error = readChunk_zTXt(&state->info_png, &state->decoder, data, chunkLength); - if(state->error) break; - } - } else if(lodepng_chunk_type_equals(chunk, "iTXt")) { - /*international text chunk (iTXt)*/ - if(state->decoder.read_text_chunks) { - state->error = readChunk_iTXt(&state->info_png, &state->decoder, data, chunkLength); - if(state->error) break; - } - } else if(lodepng_chunk_type_equals(chunk, "tIME")) { - state->error = readChunk_tIME(&state->info_png, data, chunkLength); - if(state->error) break; - } else if(lodepng_chunk_type_equals(chunk, "pHYs")) { - state->error = readChunk_pHYs(&state->info_png, data, chunkLength); - if(state->error) break; - } else if(lodepng_chunk_type_equals(chunk, "gAMA")) { - state->error = readChunk_gAMA(&state->info_png, data, chunkLength); - if(state->error) break; - } else if(lodepng_chunk_type_equals(chunk, "cHRM")) { - state->error = readChunk_cHRM(&state->info_png, data, chunkLength); - if(state->error) break; - } else if(lodepng_chunk_type_equals(chunk, "sRGB")) { - state->error = readChunk_sRGB(&state->info_png, data, chunkLength); - if(state->error) break; - } else if(lodepng_chunk_type_equals(chunk, "iCCP")) { - state->error = readChunk_iCCP(&state->info_png, &state->decoder, data, chunkLength); - if(state->error) break; - } else if(lodepng_chunk_type_equals(chunk, "sBIT")) { - state->error = readChunk_sBIT(&state->info_png, data, chunkLength); - if(state->error) break; -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - } else /*it's not an implemented chunk type, so ignore it: skip over the data*/ { - /*error: unknown critical chunk (5th bit of first byte of chunk type is 0)*/ - if(!state->decoder.ignore_critical && !lodepng_chunk_ancillary(chunk)) { - CERROR_BREAK(state->error, 69); - } - - unknown = 1; -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - if(state->decoder.remember_unknown_chunks) { - state->error = lodepng_chunk_append(&state->info_png.unknown_chunks_data[critical_pos - 1], - &state->info_png.unknown_chunks_size[critical_pos - 1], chunk); - if(state->error) break; - } -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - } - - if(!state->decoder.ignore_crc && !unknown) /*check CRC if wanted, only on known chunk types*/ { - if(lodepng_chunk_check_crc(chunk)) CERROR_BREAK(state->error, 57); /*invalid CRC*/ - } - - if(!IEND) chunk = lodepng_chunk_next_const(chunk, in + insize); - } - - if(!state->error && state->info_png.color.colortype == LCT_PALETTE && !state->info_png.color.palette) { - state->error = 106; /* error: PNG file must have PLTE chunk if color type is palette */ - } - - if(!state->error) { - /*predict output size, to allocate exact size for output buffer to avoid more dynamic allocation. - If the decompressed size does not match the prediction, the image must be corrupt.*/ - if(state->info_png.interlace_method == 0) { - size_t bpp = lodepng_get_bpp(&state->info_png.color); - expected_size = lodepng_get_raw_size_idat(*w, *h, bpp); - } else { - size_t bpp = lodepng_get_bpp(&state->info_png.color); - /*Adam-7 interlaced: expected size is the sum of the 7 sub-images sizes*/ - expected_size = 0; - expected_size += lodepng_get_raw_size_idat((*w + 7) >> 3, (*h + 7) >> 3, bpp); - if(*w > 4) expected_size += lodepng_get_raw_size_idat((*w + 3) >> 3, (*h + 7) >> 3, bpp); - expected_size += lodepng_get_raw_size_idat((*w + 3) >> 2, (*h + 3) >> 3, bpp); - if(*w > 2) expected_size += lodepng_get_raw_size_idat((*w + 1) >> 2, (*h + 3) >> 2, bpp); - expected_size += lodepng_get_raw_size_idat((*w + 1) >> 1, (*h + 1) >> 2, bpp); - if(*w > 1) expected_size += lodepng_get_raw_size_idat((*w + 0) >> 1, (*h + 1) >> 1, bpp); - expected_size += lodepng_get_raw_size_idat((*w + 0), (*h + 0) >> 1, bpp); - } - - state->error = zlib_decompress(&scanlines, &scanlines_size, expected_size, idat, idatsize, &state->decoder.zlibsettings); - } - if(!state->error && scanlines_size != expected_size) state->error = 91; /*decompressed size doesn't match prediction*/ - lodepng_free(idat); - - if(!state->error) { - outsize = lodepng_get_raw_size(*w, *h, &state->info_png.color); - *out = (unsigned char*)lodepng_malloc(outsize); - if(!*out) state->error = 83; /*alloc fail*/ - } - if(!state->error) { - lodepng_memset(*out, 0, outsize); - state->error = postProcessScanlines(*out, scanlines, *w, *h, &state->info_png); - } - lodepng_free(scanlines); -} - -unsigned lodepng_decode(unsigned char** out, unsigned* w, unsigned* h, - LodePNGState* state, - const unsigned char* in, size_t insize) { - *out = 0; - decodeGeneric(out, w, h, state, in, insize); - if(state->error) return state->error; - if(!state->decoder.color_convert || lodepng_color_mode_equal(&state->info_raw, &state->info_png.color)) { - /*same color type, no copying or converting of data needed*/ - /*store the info_png color settings on the info_raw so that the info_raw still reflects what colortype - the raw image has to the end user*/ - if(!state->decoder.color_convert) { - state->error = lodepng_color_mode_copy(&state->info_raw, &state->info_png.color); - if(state->error) return state->error; - } - } else { /*color conversion needed*/ - unsigned char* data = *out; - size_t outsize; - - /*TODO: check if this works according to the statement in the documentation: "The converter can convert - from grayscale input color type, to 8-bit grayscale or grayscale with alpha"*/ - if(!(state->info_raw.colortype == LCT_RGB || state->info_raw.colortype == LCT_RGBA) - && !(state->info_raw.bitdepth == 8)) { - return 56; /*unsupported color mode conversion*/ - } - - outsize = lodepng_get_raw_size(*w, *h, &state->info_raw); - *out = (unsigned char*)lodepng_malloc(outsize); - if(!(*out)) { - state->error = 83; /*alloc fail*/ - } - else state->error = lodepng_convert(*out, data, &state->info_raw, - &state->info_png.color, *w, *h); - lodepng_free(data); - } - return state->error; -} - -unsigned lodepng_decode_memory(unsigned char** out, unsigned* w, unsigned* h, const unsigned char* in, - size_t insize, LodePNGColorType colortype, unsigned bitdepth) { - unsigned error; - LodePNGState state; - lodepng_state_init(&state); - state.info_raw.colortype = colortype; - state.info_raw.bitdepth = bitdepth; -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - /*disable reading things that this function doesn't output*/ - state.decoder.read_text_chunks = 0; - state.decoder.remember_unknown_chunks = 0; -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - error = lodepng_decode(out, w, h, &state, in, insize); - lodepng_state_cleanup(&state); - return error; -} - -unsigned lodepng_decode32(unsigned char** out, unsigned* w, unsigned* h, const unsigned char* in, size_t insize) { - return lodepng_decode_memory(out, w, h, in, insize, LCT_RGBA, 8); -} - -unsigned lodepng_decode24(unsigned char** out, unsigned* w, unsigned* h, const unsigned char* in, size_t insize) { - return lodepng_decode_memory(out, w, h, in, insize, LCT_RGB, 8); -} - -#ifdef LODEPNG_COMPILE_DISK -unsigned lodepng_decode_file(unsigned char** out, unsigned* w, unsigned* h, const char* filename, - LodePNGColorType colortype, unsigned bitdepth) { - unsigned char* buffer = 0; - size_t buffersize; - unsigned error; - /* safe output values in case error happens */ - *out = 0; - *w = *h = 0; - error = lodepng_load_file(&buffer, &buffersize, filename); - if(!error) error = lodepng_decode_memory(out, w, h, buffer, buffersize, colortype, bitdepth); - lodepng_free(buffer); - return error; -} - -unsigned lodepng_decode32_file(unsigned char** out, unsigned* w, unsigned* h, const char* filename) { - return lodepng_decode_file(out, w, h, filename, LCT_RGBA, 8); -} - -unsigned lodepng_decode24_file(unsigned char** out, unsigned* w, unsigned* h, const char* filename) { - return lodepng_decode_file(out, w, h, filename, LCT_RGB, 8); -} -#endif /*LODEPNG_COMPILE_DISK*/ - -void lodepng_decoder_settings_init(LodePNGDecoderSettings* settings) { - settings->color_convert = 1; -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - settings->read_text_chunks = 1; - settings->remember_unknown_chunks = 0; - settings->max_text_size = 16777216; - settings->max_icc_size = 16777216; /* 16MB is much more than enough for any reasonable ICC profile */ -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - settings->ignore_crc = 0; - settings->ignore_critical = 0; - settings->ignore_end = 0; - lodepng_decompress_settings_init(&settings->zlibsettings); -} - -#endif /*LODEPNG_COMPILE_DECODER*/ - -#if defined(LODEPNG_COMPILE_DECODER) || defined(LODEPNG_COMPILE_ENCODER) - -void lodepng_state_init(LodePNGState* state) { -#ifdef LODEPNG_COMPILE_DECODER - lodepng_decoder_settings_init(&state->decoder); -#endif /*LODEPNG_COMPILE_DECODER*/ -#ifdef LODEPNG_COMPILE_ENCODER - lodepng_encoder_settings_init(&state->encoder); -#endif /*LODEPNG_COMPILE_ENCODER*/ - lodepng_color_mode_init(&state->info_raw); - lodepng_info_init(&state->info_png); - state->error = 1; -} - -void lodepng_state_cleanup(LodePNGState* state) { - lodepng_color_mode_cleanup(&state->info_raw); - lodepng_info_cleanup(&state->info_png); -} - -void lodepng_state_copy(LodePNGState* dest, const LodePNGState* source) { - lodepng_state_cleanup(dest); - *dest = *source; - lodepng_color_mode_init(&dest->info_raw); - lodepng_info_init(&dest->info_png); - dest->error = lodepng_color_mode_copy(&dest->info_raw, &source->info_raw); if(dest->error) return; - dest->error = lodepng_info_copy(&dest->info_png, &source->info_png); if(dest->error) return; -} - -#endif /* defined(LODEPNG_COMPILE_DECODER) || defined(LODEPNG_COMPILE_ENCODER) */ - -#ifdef LODEPNG_COMPILE_ENCODER - -/* ////////////////////////////////////////////////////////////////////////// */ -/* / PNG Encoder / */ -/* ////////////////////////////////////////////////////////////////////////// */ - - -static unsigned writeSignature(ucvector* out) { - size_t pos = out->size; - const unsigned char signature[] = {137, 80, 78, 71, 13, 10, 26, 10}; - /*8 bytes PNG signature, aka the magic bytes*/ - if(!ucvector_resize(out, out->size + 8)) return 83; /*alloc fail*/ - lodepng_memcpy(out->data + pos, signature, 8); - return 0; -} - -static unsigned addChunk_IHDR(ucvector* out, unsigned w, unsigned h, - LodePNGColorType colortype, unsigned bitdepth, unsigned interlace_method) { - unsigned char *chunk, *data; - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 13, "IHDR")); - data = chunk + 8; - - lodepng_set32bitInt(data + 0, w); /*width*/ - lodepng_set32bitInt(data + 4, h); /*height*/ - data[8] = (unsigned char)bitdepth; /*bit depth*/ - data[9] = (unsigned char)colortype; /*color type*/ - data[10] = 0; /*compression method*/ - data[11] = 0; /*filter method*/ - data[12] = interlace_method; /*interlace method*/ - - lodepng_chunk_generate_crc(chunk); - return 0; -} - -/* only adds the chunk if needed (there is a key or palette with alpha) */ -static unsigned addChunk_PLTE(ucvector* out, const LodePNGColorMode* info) { - unsigned char* chunk; - size_t i, j = 8; - - if(info->palettesize == 0 || info->palettesize > 256) { - return 68; /*invalid palette size, it is only allowed to be 1-256*/ - } - - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, info->palettesize * 3, "PLTE")); - - for(i = 0; i != info->palettesize; ++i) { - /*add all channels except alpha channel*/ - chunk[j++] = info->palette[i * 4 + 0]; - chunk[j++] = info->palette[i * 4 + 1]; - chunk[j++] = info->palette[i * 4 + 2]; - } - - lodepng_chunk_generate_crc(chunk); - return 0; -} - -static unsigned addChunk_tRNS(ucvector* out, const LodePNGColorMode* info) { - unsigned char* chunk = 0; - - if(info->colortype == LCT_PALETTE) { - size_t i, amount = info->palettesize; - /*the tail of palette values that all have 255 as alpha, does not have to be encoded*/ - for(i = info->palettesize; i != 0; --i) { - if(info->palette[4 * (i - 1) + 3] != 255) break; - --amount; - } - if(amount) { - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, amount, "tRNS")); - /*add the alpha channel values from the palette*/ - for(i = 0; i != amount; ++i) chunk[8 + i] = info->palette[4 * i + 3]; - } - } else if(info->colortype == LCT_GREY) { - if(info->key_defined) { - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 2, "tRNS")); - chunk[8] = (unsigned char)(info->key_r >> 8); - chunk[9] = (unsigned char)(info->key_r & 255); - } - } else if(info->colortype == LCT_RGB) { - if(info->key_defined) { - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 6, "tRNS")); - chunk[8] = (unsigned char)(info->key_r >> 8); - chunk[9] = (unsigned char)(info->key_r & 255); - chunk[10] = (unsigned char)(info->key_g >> 8); - chunk[11] = (unsigned char)(info->key_g & 255); - chunk[12] = (unsigned char)(info->key_b >> 8); - chunk[13] = (unsigned char)(info->key_b & 255); - } - } - - if(chunk) lodepng_chunk_generate_crc(chunk); - return 0; -} - -static unsigned addChunk_IDAT(ucvector* out, const unsigned char* data, size_t datasize, - LodePNGCompressSettings* zlibsettings) { - unsigned error = 0; - unsigned char* zlib = 0; - size_t zlibsize = 0; - - error = zlib_compress(&zlib, &zlibsize, data, datasize, zlibsettings); - if(!error) { - error = lodepng_chunk_createv(out, zlibsize, "IDAT", zlib); - } - lodepng_free(zlib); - return error; -} - -static unsigned addChunk_IEND(ucvector* out) { - return lodepng_chunk_createv(out, 0, "IEND", 0); -} - -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - -static unsigned addChunk_tEXt(ucvector* out, const char* keyword, const char* textstring) { - unsigned char* chunk = 0; - size_t keysize = lodepng_strlen(keyword), textsize = lodepng_strlen(textstring); - size_t size = keysize + 1 + textsize; - if(keysize < 1 || keysize > 79) return 89; /*error: invalid keyword size*/ - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, size, "tEXt")); - lodepng_memcpy(chunk + 8, keyword, keysize); - chunk[8 + keysize] = 0; /*null termination char*/ - lodepng_memcpy(chunk + 9 + keysize, textstring, textsize); - lodepng_chunk_generate_crc(chunk); - return 0; -} - -static unsigned addChunk_zTXt(ucvector* out, const char* keyword, const char* textstring, - LodePNGCompressSettings* zlibsettings) { - unsigned error = 0; - unsigned char* chunk = 0; - unsigned char* compressed = 0; - size_t compressedsize = 0; - size_t textsize = lodepng_strlen(textstring); - size_t keysize = lodepng_strlen(keyword); - if(keysize < 1 || keysize > 79) return 89; /*error: invalid keyword size*/ - - error = zlib_compress(&compressed, &compressedsize, - (const unsigned char*)textstring, textsize, zlibsettings); - if(!error) { - size_t size = keysize + 2 + compressedsize; - error = lodepng_chunk_init(&chunk, out, size, "zTXt"); - } - if(!error) { - lodepng_memcpy(chunk + 8, keyword, keysize); - chunk[8 + keysize] = 0; /*null termination char*/ - chunk[9 + keysize] = 0; /*compression method: 0*/ - lodepng_memcpy(chunk + 10 + keysize, compressed, compressedsize); - lodepng_chunk_generate_crc(chunk); - } - - lodepng_free(compressed); - return error; -} - -static unsigned addChunk_iTXt(ucvector* out, unsigned compress, const char* keyword, const char* langtag, - const char* transkey, const char* textstring, LodePNGCompressSettings* zlibsettings) { - unsigned error = 0; - unsigned char* chunk = 0; - unsigned char* compressed = 0; - size_t compressedsize = 0; - size_t textsize = lodepng_strlen(textstring); - size_t keysize = lodepng_strlen(keyword), langsize = lodepng_strlen(langtag), transsize = lodepng_strlen(transkey); - - if(keysize < 1 || keysize > 79) return 89; /*error: invalid keyword size*/ - - if(compress) { - error = zlib_compress(&compressed, &compressedsize, - (const unsigned char*)textstring, textsize, zlibsettings); - } - if(!error) { - size_t size = keysize + 3 + langsize + 1 + transsize + 1 + (compress ? compressedsize : textsize); - error = lodepng_chunk_init(&chunk, out, size, "iTXt"); - } - if(!error) { - size_t pos = 8; - lodepng_memcpy(chunk + pos, keyword, keysize); - pos += keysize; - chunk[pos++] = 0; /*null termination char*/ - chunk[pos++] = (compress ? 1 : 0); /*compression flag*/ - chunk[pos++] = 0; /*compression method: 0*/ - lodepng_memcpy(chunk + pos, langtag, langsize); - pos += langsize; - chunk[pos++] = 0; /*null termination char*/ - lodepng_memcpy(chunk + pos, transkey, transsize); - pos += transsize; - chunk[pos++] = 0; /*null termination char*/ - if(compress) { - lodepng_memcpy(chunk + pos, compressed, compressedsize); - } else { - lodepng_memcpy(chunk + pos, textstring, textsize); - } - lodepng_chunk_generate_crc(chunk); - } - - lodepng_free(compressed); - return error; -} - -static unsigned addChunk_bKGD(ucvector* out, const LodePNGInfo* info) { - unsigned char* chunk = 0; - if(info->color.colortype == LCT_GREY || info->color.colortype == LCT_GREY_ALPHA) { - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 2, "bKGD")); - chunk[8] = (unsigned char)(info->background_r >> 8); - chunk[9] = (unsigned char)(info->background_r & 255); - } else if(info->color.colortype == LCT_RGB || info->color.colortype == LCT_RGBA) { - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 6, "bKGD")); - chunk[8] = (unsigned char)(info->background_r >> 8); - chunk[9] = (unsigned char)(info->background_r & 255); - chunk[10] = (unsigned char)(info->background_g >> 8); - chunk[11] = (unsigned char)(info->background_g & 255); - chunk[12] = (unsigned char)(info->background_b >> 8); - chunk[13] = (unsigned char)(info->background_b & 255); - } else if(info->color.colortype == LCT_PALETTE) { - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 1, "bKGD")); - chunk[8] = (unsigned char)(info->background_r & 255); /*palette index*/ - } - if(chunk) lodepng_chunk_generate_crc(chunk); - return 0; -} - -static unsigned addChunk_tIME(ucvector* out, const LodePNGTime* time) { - unsigned char* chunk; - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 7, "tIME")); - chunk[8] = (unsigned char)(time->year >> 8); - chunk[9] = (unsigned char)(time->year & 255); - chunk[10] = (unsigned char)time->month; - chunk[11] = (unsigned char)time->day; - chunk[12] = (unsigned char)time->hour; - chunk[13] = (unsigned char)time->minute; - chunk[14] = (unsigned char)time->second; - lodepng_chunk_generate_crc(chunk); - return 0; -} - -static unsigned addChunk_pHYs(ucvector* out, const LodePNGInfo* info) { - unsigned char* chunk; - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 9, "pHYs")); - lodepng_set32bitInt(chunk + 8, info->phys_x); - lodepng_set32bitInt(chunk + 12, info->phys_y); - chunk[16] = info->phys_unit; - lodepng_chunk_generate_crc(chunk); - return 0; -} - -static unsigned addChunk_gAMA(ucvector* out, const LodePNGInfo* info) { - unsigned char* chunk; - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 4, "gAMA")); - lodepng_set32bitInt(chunk + 8, info->gama_gamma); - lodepng_chunk_generate_crc(chunk); - return 0; -} - -static unsigned addChunk_cHRM(ucvector* out, const LodePNGInfo* info) { - unsigned char* chunk; - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 32, "cHRM")); - lodepng_set32bitInt(chunk + 8, info->chrm_white_x); - lodepng_set32bitInt(chunk + 12, info->chrm_white_y); - lodepng_set32bitInt(chunk + 16, info->chrm_red_x); - lodepng_set32bitInt(chunk + 20, info->chrm_red_y); - lodepng_set32bitInt(chunk + 24, info->chrm_green_x); - lodepng_set32bitInt(chunk + 28, info->chrm_green_y); - lodepng_set32bitInt(chunk + 32, info->chrm_blue_x); - lodepng_set32bitInt(chunk + 36, info->chrm_blue_y); - lodepng_chunk_generate_crc(chunk); - return 0; -} - -static unsigned addChunk_sRGB(ucvector* out, const LodePNGInfo* info) { - unsigned char data = info->srgb_intent; - return lodepng_chunk_createv(out, 1, "sRGB", &data); -} - -static unsigned addChunk_iCCP(ucvector* out, const LodePNGInfo* info, LodePNGCompressSettings* zlibsettings) { - unsigned error = 0; - unsigned char* chunk = 0; - unsigned char* compressed = 0; - size_t compressedsize = 0; - size_t keysize = lodepng_strlen(info->iccp_name); - - if(keysize < 1 || keysize > 79) return 89; /*error: invalid keyword size*/ - error = zlib_compress(&compressed, &compressedsize, - info->iccp_profile, info->iccp_profile_size, zlibsettings); - if(!error) { - size_t size = keysize + 2 + compressedsize; - error = lodepng_chunk_init(&chunk, out, size, "iCCP"); - } - if(!error) { - lodepng_memcpy(chunk + 8, info->iccp_name, keysize); - chunk[8 + keysize] = 0; /*null termination char*/ - chunk[9 + keysize] = 0; /*compression method: 0*/ - lodepng_memcpy(chunk + 10 + keysize, compressed, compressedsize); - lodepng_chunk_generate_crc(chunk); - } - - lodepng_free(compressed); - return error; -} - -static unsigned addChunk_sBIT(ucvector* out, const LodePNGInfo* info) { - unsigned bitdepth = (info->color.colortype == LCT_PALETTE) ? 8 : info->color.bitdepth; - unsigned char* chunk = 0; - if(info->color.colortype == LCT_GREY) { - if(info->sbit_r == 0 || info->sbit_r > bitdepth) return 115; - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 1, "sBIT")); - chunk[8] = info->sbit_r; - } else if(info->color.colortype == LCT_RGB || info->color.colortype == LCT_PALETTE) { - if(info->sbit_r == 0 || info->sbit_g == 0 || info->sbit_b == 0) return 115; - if(info->sbit_r > bitdepth || info->sbit_g > bitdepth || info->sbit_b > bitdepth) return 115; - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 3, "sBIT")); - chunk[8] = info->sbit_r; - chunk[9] = info->sbit_g; - chunk[10] = info->sbit_b; - } else if(info->color.colortype == LCT_GREY_ALPHA) { - if(info->sbit_r == 0 || info->sbit_a == 0) return 115; - if(info->sbit_r > bitdepth || info->sbit_a > bitdepth) return 115; - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 2, "sBIT")); - chunk[8] = info->sbit_r; - chunk[9] = info->sbit_a; - } else if(info->color.colortype == LCT_RGBA) { - if(info->sbit_r == 0 || info->sbit_g == 0 || info->sbit_b == 0 || info->sbit_a == 0 || - info->sbit_r > bitdepth || info->sbit_g > bitdepth || - info->sbit_b > bitdepth || info->sbit_a > bitdepth) { - return 115; - } - CERROR_TRY_RETURN(lodepng_chunk_init(&chunk, out, 4, "sBIT")); - chunk[8] = info->sbit_r; - chunk[9] = info->sbit_g; - chunk[10] = info->sbit_b; - chunk[11] = info->sbit_a; - } - if(chunk) lodepng_chunk_generate_crc(chunk); - return 0; -} - -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - -static void filterScanline(unsigned char* out, const unsigned char* scanline, const unsigned char* prevline, - size_t length, size_t bytewidth, unsigned char filterType) { - size_t i; - switch(filterType) { - case 0: /*None*/ - for(i = 0; i != length; ++i) out[i] = scanline[i]; - break; - case 1: /*Sub*/ - for(i = 0; i != bytewidth; ++i) out[i] = scanline[i]; - for(i = bytewidth; i < length; ++i) out[i] = scanline[i] - scanline[i - bytewidth]; - break; - case 2: /*Up*/ - if(prevline) { - for(i = 0; i != length; ++i) out[i] = scanline[i] - prevline[i]; - } else { - for(i = 0; i != length; ++i) out[i] = scanline[i]; - } - break; - case 3: /*Average*/ - if(prevline) { - for(i = 0; i != bytewidth; ++i) out[i] = scanline[i] - (prevline[i] >> 1); - for(i = bytewidth; i < length; ++i) out[i] = scanline[i] - ((scanline[i - bytewidth] + prevline[i]) >> 1); - } else { - for(i = 0; i != bytewidth; ++i) out[i] = scanline[i]; - for(i = bytewidth; i < length; ++i) out[i] = scanline[i] - (scanline[i - bytewidth] >> 1); - } - break; - case 4: /*Paeth*/ - if(prevline) { - /*paethPredictor(0, prevline[i], 0) is always prevline[i]*/ - for(i = 0; i != bytewidth; ++i) out[i] = (scanline[i] - prevline[i]); - for(i = bytewidth; i < length; ++i) { - out[i] = (scanline[i] - paethPredictor(scanline[i - bytewidth], prevline[i], prevline[i - bytewidth])); - } - } else { - for(i = 0; i != bytewidth; ++i) out[i] = scanline[i]; - /*paethPredictor(scanline[i - bytewidth], 0, 0) is always scanline[i - bytewidth]*/ - for(i = bytewidth; i < length; ++i) out[i] = (scanline[i] - scanline[i - bytewidth]); - } - break; - default: return; /*invalid filter type given*/ - } -} - -/* integer binary logarithm, max return value is 31 */ -static size_t ilog2(size_t i) { - size_t result = 0; - if(i >= 65536) { result += 16; i >>= 16; } - if(i >= 256) { result += 8; i >>= 8; } - if(i >= 16) { result += 4; i >>= 4; } - if(i >= 4) { result += 2; i >>= 2; } - if(i >= 2) { result += 1; /*i >>= 1;*/ } - return result; -} - -/* integer approximation for i * log2(i), helper function for LFS_ENTROPY */ -static size_t ilog2i(size_t i) { - size_t l; - if(i == 0) return 0; - l = ilog2(i); - /* approximate i*log2(i): l is integer logarithm, ((i - (1u << l)) << 1u) - linearly approximates the missing fractional part multiplied by i */ - return i * l + ((i - (1u << l)) << 1u); -} - -static unsigned filter(unsigned char* out, const unsigned char* in, unsigned w, unsigned h, - const LodePNGColorMode* color, const LodePNGEncoderSettings* settings) { - /* - For PNG filter method 0 - out must be a buffer with as size: h + (w * h * bpp + 7u) / 8u, because there are - the scanlines with 1 extra byte per scanline - */ - - unsigned bpp = lodepng_get_bpp(color); - /*the width of a scanline in bytes, not including the filter type*/ - size_t linebytes = lodepng_get_raw_size_idat(w, 1, bpp) - 1u; - - /*bytewidth is used for filtering, is 1 when bpp < 8, number of bytes per pixel otherwise*/ - size_t bytewidth = (bpp + 7u) / 8u; - const unsigned char* prevline = 0; - unsigned x, y; - unsigned error = 0; - LodePNGFilterStrategy strategy = settings->filter_strategy; - - /* - There is a heuristic called the minimum sum of absolute differences heuristic, suggested by the PNG standard: - * If the image type is Palette, or the bit depth is smaller than 8, then do not filter the image (i.e. - use fixed filtering, with the filter None). - * (The other case) If the image type is Grayscale or RGB (with or without Alpha), and the bit depth is - not smaller than 8, then use adaptive filtering heuristic as follows: independently for each row, apply - all five filters and select the filter that produces the smallest sum of absolute values per row. - This heuristic is used if filter strategy is LFS_MINSUM and filter_palette_zero is true. - - If filter_palette_zero is true and filter_strategy is not LFS_MINSUM, the above heuristic is followed, - but for "the other case", whatever strategy filter_strategy is set to instead of the minimum sum - heuristic is used. - */ - if(settings->filter_palette_zero && - (color->colortype == LCT_PALETTE || color->bitdepth < 8)) strategy = LFS_ZERO; - - if(bpp == 0) return 31; /*error: invalid color type*/ - - if(strategy >= LFS_ZERO && strategy <= LFS_FOUR) { - unsigned char type = (unsigned char)strategy; - for(y = 0; y != h; ++y) { - size_t outindex = (1 + linebytes) * y; /*the extra filterbyte added to each row*/ - size_t inindex = linebytes * y; - out[outindex] = type; /*filter type byte*/ - filterScanline(&out[outindex + 1], &in[inindex], prevline, linebytes, bytewidth, type); - prevline = &in[inindex]; - } - } else if(strategy == LFS_MINSUM) { - /*adaptive filtering*/ - unsigned char* attempt[5]; /*five filtering attempts, one for each filter type*/ - size_t smallest = 0; - unsigned char type, bestType = 0; - - for(type = 0; type != 5; ++type) { - attempt[type] = (unsigned char*)lodepng_malloc(linebytes); - if(!attempt[type]) error = 83; /*alloc fail*/ - } - - if(!error) { - for(y = 0; y != h; ++y) { - /*try the 5 filter types*/ - for(type = 0; type != 5; ++type) { - size_t sum = 0; - filterScanline(attempt[type], &in[y * linebytes], prevline, linebytes, bytewidth, type); - - /*calculate the sum of the result*/ - if(type == 0) { - for(x = 0; x != linebytes; ++x) sum += (unsigned char)(attempt[type][x]); - } else { - for(x = 0; x != linebytes; ++x) { - /*For differences, each byte should be treated as signed, values above 127 are negative - (converted to signed char). Filtertype 0 isn't a difference though, so use unsigned there. - This means filtertype 0 is almost never chosen, but that is justified.*/ - unsigned char s = attempt[type][x]; - sum += s < 128 ? s : (255U - s); - } - } - - /*check if this is smallest sum (or if type == 0 it's the first case so always store the values)*/ - if(type == 0 || sum < smallest) { - bestType = type; - smallest = sum; - } - } - - prevline = &in[y * linebytes]; - - /*now fill the out values*/ - out[y * (linebytes + 1)] = bestType; /*the first byte of a scanline will be the filter type*/ - for(x = 0; x != linebytes; ++x) out[y * (linebytes + 1) + 1 + x] = attempt[bestType][x]; - } - } - - for(type = 0; type != 5; ++type) lodepng_free(attempt[type]); - } else if(strategy == LFS_ENTROPY) { - unsigned char* attempt[5]; /*five filtering attempts, one for each filter type*/ - size_t bestSum = 0; - unsigned type, bestType = 0; - unsigned count[256]; - - for(type = 0; type != 5; ++type) { - attempt[type] = (unsigned char*)lodepng_malloc(linebytes); - if(!attempt[type]) error = 83; /*alloc fail*/ - } - - if(!error) { - for(y = 0; y != h; ++y) { - /*try the 5 filter types*/ - for(type = 0; type != 5; ++type) { - size_t sum = 0; - filterScanline(attempt[type], &in[y * linebytes], prevline, linebytes, bytewidth, type); - lodepng_memset(count, 0, 256 * sizeof(*count)); - for(x = 0; x != linebytes; ++x) ++count[attempt[type][x]]; - ++count[type]; /*the filter type itself is part of the scanline*/ - for(x = 0; x != 256; ++x) { - sum += ilog2i(count[x]); - } - /*check if this is smallest sum (or if type == 0 it's the first case so always store the values)*/ - if(type == 0 || sum > bestSum) { - bestType = type; - bestSum = sum; - } - } - - prevline = &in[y * linebytes]; - - /*now fill the out values*/ - out[y * (linebytes + 1)] = bestType; /*the first byte of a scanline will be the filter type*/ - for(x = 0; x != linebytes; ++x) out[y * (linebytes + 1) + 1 + x] = attempt[bestType][x]; - } - } - - for(type = 0; type != 5; ++type) lodepng_free(attempt[type]); - } else if(strategy == LFS_PREDEFINED) { - for(y = 0; y != h; ++y) { - size_t outindex = (1 + linebytes) * y; /*the extra filterbyte added to each row*/ - size_t inindex = linebytes * y; - unsigned char type = settings->predefined_filters[y]; - out[outindex] = type; /*filter type byte*/ - filterScanline(&out[outindex + 1], &in[inindex], prevline, linebytes, bytewidth, type); - prevline = &in[inindex]; - } - } else if(strategy == LFS_BRUTE_FORCE) { - /*brute force filter chooser. - deflate the scanline after every filter attempt to see which one deflates best. - This is very slow and gives only slightly smaller, sometimes even larger, result*/ - size_t size[5]; - unsigned char* attempt[5]; /*five filtering attempts, one for each filter type*/ - size_t smallest = 0; - unsigned type = 0, bestType = 0; - unsigned char* dummy; - LodePNGCompressSettings zlibsettings; - lodepng_memcpy(&zlibsettings, &settings->zlibsettings, sizeof(LodePNGCompressSettings)); - /*use fixed tree on the attempts so that the tree is not adapted to the filtertype on purpose, - to simulate the true case where the tree is the same for the whole image. Sometimes it gives - better result with dynamic tree anyway. Using the fixed tree sometimes gives worse, but in rare - cases better compression. It does make this a bit less slow, so it's worth doing this.*/ - zlibsettings.btype = 1; - /*a custom encoder likely doesn't read the btype setting and is optimized for complete PNG - images only, so disable it*/ - zlibsettings.custom_zlib = 0; - zlibsettings.custom_deflate = 0; - for(type = 0; type != 5; ++type) { - attempt[type] = (unsigned char*)lodepng_malloc(linebytes); - if(!attempt[type]) error = 83; /*alloc fail*/ - } - if(!error) { - for(y = 0; y != h; ++y) /*try the 5 filter types*/ { - for(type = 0; type != 5; ++type) { - unsigned testsize = (unsigned)linebytes; - /*if(testsize > 8) testsize /= 8;*/ /*it already works good enough by testing a part of the row*/ - - filterScanline(attempt[type], &in[y * linebytes], prevline, linebytes, bytewidth, type); - size[type] = 0; - dummy = 0; - zlib_compress(&dummy, &size[type], attempt[type], testsize, &zlibsettings); - lodepng_free(dummy); - /*check if this is smallest size (or if type == 0 it's the first case so always store the values)*/ - if(type == 0 || size[type] < smallest) { - bestType = type; - smallest = size[type]; - } - } - prevline = &in[y * linebytes]; - out[y * (linebytes + 1)] = bestType; /*the first byte of a scanline will be the filter type*/ - for(x = 0; x != linebytes; ++x) out[y * (linebytes + 1) + 1 + x] = attempt[bestType][x]; - } - } - for(type = 0; type != 5; ++type) lodepng_free(attempt[type]); - } - else return 88; /* unknown filter strategy */ - - return error; -} - -static void addPaddingBits(unsigned char* out, const unsigned char* in, - size_t olinebits, size_t ilinebits, unsigned h) { - /*The opposite of the removePaddingBits function - olinebits must be >= ilinebits*/ - unsigned y; - size_t diff = olinebits - ilinebits; - size_t obp = 0, ibp = 0; /*bit pointers*/ - for(y = 0; y != h; ++y) { - size_t x; - for(x = 0; x < ilinebits; ++x) { - unsigned char bit = readBitFromReversedStream(&ibp, in); - setBitOfReversedStream(&obp, out, bit); - } - /*obp += diff; --> no, fill in some value in the padding bits too, to avoid - "Use of uninitialised value of size ###" warning from valgrind*/ - for(x = 0; x != diff; ++x) setBitOfReversedStream(&obp, out, 0); - } -} - -/* -in: non-interlaced image with size w*h -out: the same pixels, but re-ordered according to PNG's Adam7 interlacing, with - no padding bits between scanlines, but between reduced images so that each - reduced image starts at a byte. -bpp: bits per pixel -there are no padding bits, not between scanlines, not between reduced images -in has the following size in bits: w * h * bpp. -out is possibly bigger due to padding bits between reduced images -NOTE: comments about padding bits are only relevant if bpp < 8 -*/ -static void Adam7_interlace(unsigned char* out, const unsigned char* in, unsigned w, unsigned h, unsigned bpp) { - unsigned passw[7], passh[7]; - size_t filter_passstart[8], padded_passstart[8], passstart[8]; - unsigned i; - - Adam7_getpassvalues(passw, passh, filter_passstart, padded_passstart, passstart, w, h, bpp); - - if(bpp >= 8) { - for(i = 0; i != 7; ++i) { - unsigned x, y, b; - size_t bytewidth = bpp / 8u; - for(y = 0; y < passh[i]; ++y) - for(x = 0; x < passw[i]; ++x) { - size_t pixelinstart = ((ADAM7_IY[i] + y * ADAM7_DY[i]) * w + ADAM7_IX[i] + x * ADAM7_DX[i]) * bytewidth; - size_t pixeloutstart = passstart[i] + (y * passw[i] + x) * bytewidth; - for(b = 0; b < bytewidth; ++b) { - out[pixeloutstart + b] = in[pixelinstart + b]; - } - } - } - } else /*bpp < 8: Adam7 with pixels < 8 bit is a bit trickier: with bit pointers*/ { - for(i = 0; i != 7; ++i) { - unsigned x, y, b; - unsigned ilinebits = bpp * passw[i]; - unsigned olinebits = bpp * w; - size_t obp, ibp; /*bit pointers (for out and in buffer)*/ - for(y = 0; y < passh[i]; ++y) - for(x = 0; x < passw[i]; ++x) { - ibp = (ADAM7_IY[i] + y * ADAM7_DY[i]) * olinebits + (ADAM7_IX[i] + x * ADAM7_DX[i]) * bpp; - obp = (8 * passstart[i]) + (y * ilinebits + x * bpp); - for(b = 0; b < bpp; ++b) { - unsigned char bit = readBitFromReversedStream(&ibp, in); - setBitOfReversedStream(&obp, out, bit); - } - } - } - } -} - -/*out must be buffer big enough to contain uncompressed IDAT chunk data, and in must contain the full image. -return value is error**/ -static unsigned preProcessScanlines(unsigned char** out, size_t* outsize, const unsigned char* in, - unsigned w, unsigned h, - const LodePNGInfo* info_png, const LodePNGEncoderSettings* settings) { - /* - This function converts the pure 2D image with the PNG's colortype, into filtered-padded-interlaced data. Steps: - *) if no Adam7: 1) add padding bits (= possible extra bits per scanline if bpp < 8) 2) filter - *) if adam7: 1) Adam7_interlace 2) 7x add padding bits 3) 7x filter - */ - unsigned bpp = lodepng_get_bpp(&info_png->color); - unsigned error = 0; - - if(info_png->interlace_method == 0) { - *outsize = h + (h * ((w * bpp + 7u) / 8u)); /*image size plus an extra byte per scanline + possible padding bits*/ - *out = (unsigned char*)lodepng_malloc(*outsize); - if(!(*out) && (*outsize)) error = 83; /*alloc fail*/ - - if(!error) { - /*non multiple of 8 bits per scanline, padding bits needed per scanline*/ - if(bpp < 8 && w * bpp != ((w * bpp + 7u) / 8u) * 8u) { - unsigned char* padded = (unsigned char*)lodepng_malloc(h * ((w * bpp + 7u) / 8u)); - if(!padded) error = 83; /*alloc fail*/ - if(!error) { - addPaddingBits(padded, in, ((w * bpp + 7u) / 8u) * 8u, w * bpp, h); - error = filter(*out, padded, w, h, &info_png->color, settings); - } - lodepng_free(padded); - } else { - /*we can immediately filter into the out buffer, no other steps needed*/ - error = filter(*out, in, w, h, &info_png->color, settings); - } - } - } else /*interlace_method is 1 (Adam7)*/ { - unsigned passw[7], passh[7]; - size_t filter_passstart[8], padded_passstart[8], passstart[8]; - unsigned char* adam7; - - Adam7_getpassvalues(passw, passh, filter_passstart, padded_passstart, passstart, w, h, bpp); - - *outsize = filter_passstart[7]; /*image size plus an extra byte per scanline + possible padding bits*/ - *out = (unsigned char*)lodepng_malloc(*outsize); - if(!(*out)) error = 83; /*alloc fail*/ - - adam7 = (unsigned char*)lodepng_malloc(passstart[7]); - if(!adam7 && passstart[7]) error = 83; /*alloc fail*/ - - if(!error) { - unsigned i; - - Adam7_interlace(adam7, in, w, h, bpp); - for(i = 0; i != 7; ++i) { - if(bpp < 8) { - unsigned char* padded = (unsigned char*)lodepng_malloc(padded_passstart[i + 1] - padded_passstart[i]); - if(!padded) ERROR_BREAK(83); /*alloc fail*/ - addPaddingBits(padded, &adam7[passstart[i]], - ((passw[i] * bpp + 7u) / 8u) * 8u, passw[i] * bpp, passh[i]); - error = filter(&(*out)[filter_passstart[i]], padded, - passw[i], passh[i], &info_png->color, settings); - lodepng_free(padded); - } else { - error = filter(&(*out)[filter_passstart[i]], &adam7[padded_passstart[i]], - passw[i], passh[i], &info_png->color, settings); - } - - if(error) break; - } - } - - lodepng_free(adam7); - } - - return error; -} - -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS -static unsigned addUnknownChunks(ucvector* out, unsigned char* data, size_t datasize) { - unsigned char* inchunk = data; - while((size_t)(inchunk - data) < datasize) { - CERROR_TRY_RETURN(lodepng_chunk_append(&out->data, &out->size, inchunk)); - out->allocsize = out->size; /*fix the allocsize again*/ - inchunk = lodepng_chunk_next(inchunk, data + datasize); - } - return 0; -} - -static unsigned isGrayICCProfile(const unsigned char* profile, unsigned size) { - /* - It is a gray profile if bytes 16-19 are "GRAY", rgb profile if bytes 16-19 - are "RGB ". We do not perform any full parsing of the ICC profile here, other - than check those 4 bytes to grayscale profile. Other than that, validity of - the profile is not checked. This is needed only because the PNG specification - requires using a non-gray color model if there is an ICC profile with "RGB " - (sadly limiting compression opportunities if the input data is grayscale RGB - data), and requires using a gray color model if it is "GRAY". - */ - if(size < 20) return 0; - return profile[16] == 'G' && profile[17] == 'R' && profile[18] == 'A' && profile[19] == 'Y'; -} - -static unsigned isRGBICCProfile(const unsigned char* profile, unsigned size) { - /* See comment in isGrayICCProfile*/ - if(size < 20) return 0; - return profile[16] == 'R' && profile[17] == 'G' && profile[18] == 'B' && profile[19] == ' '; -} -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - -unsigned lodepng_encode(unsigned char** out, size_t* outsize, - const unsigned char* image, unsigned w, unsigned h, - LodePNGState* state) { - unsigned char* data = 0; /*uncompressed version of the IDAT chunk data*/ - size_t datasize = 0; - ucvector outv = ucvector_init(NULL, 0); - LodePNGInfo info; - const LodePNGInfo* info_png = &state->info_png; - LodePNGColorMode auto_color; - - lodepng_info_init(&info); - lodepng_color_mode_init(&auto_color); - - /*provide some proper output values if error will happen*/ - *out = 0; - *outsize = 0; - state->error = 0; - - /*check input values validity*/ - if((info_png->color.colortype == LCT_PALETTE || state->encoder.force_palette) - && (info_png->color.palettesize == 0 || info_png->color.palettesize > 256)) { - /*this error is returned even if auto_convert is enabled and thus encoder could - generate the palette by itself: while allowing this could be possible in theory, - it may complicate the code or edge cases, and always requiring to give a palette - when setting this color type is a simpler contract*/ - state->error = 68; /*invalid palette size, it is only allowed to be 1-256*/ - goto cleanup; - } - if(state->encoder.zlibsettings.btype > 2) { - state->error = 61; /*error: invalid btype*/ - goto cleanup; - } - if(info_png->interlace_method > 1) { - state->error = 71; /*error: invalid interlace mode*/ - goto cleanup; - } - state->error = checkColorValidity(info_png->color.colortype, info_png->color.bitdepth); - if(state->error) goto cleanup; /*error: invalid color type given*/ - state->error = checkColorValidity(state->info_raw.colortype, state->info_raw.bitdepth); - if(state->error) goto cleanup; /*error: invalid color type given*/ - - /* color convert and compute scanline filter types */ - lodepng_info_copy(&info, &state->info_png); - if(state->encoder.auto_convert) { - LodePNGColorStats stats; - unsigned allow_convert = 1; - lodepng_color_stats_init(&stats); -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - if(info_png->iccp_defined && - isGrayICCProfile(info_png->iccp_profile, info_png->iccp_profile_size)) { - /*the PNG specification does not allow to use palette with a GRAY ICC profile, even - if the palette has only gray colors, so disallow it.*/ - stats.allow_palette = 0; - } - if(info_png->iccp_defined && - isRGBICCProfile(info_png->iccp_profile, info_png->iccp_profile_size)) { - /*the PNG specification does not allow to use grayscale color with RGB ICC profile, so disallow gray.*/ - stats.allow_greyscale = 0; - } -#endif /* LODEPNG_COMPILE_ANCILLARY_CHUNKS */ - state->error = lodepng_compute_color_stats(&stats, image, w, h, &state->info_raw); - if(state->error) goto cleanup; -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - if(info_png->background_defined) { - /*the background chunk's color must be taken into account as well*/ - unsigned r = 0, g = 0, b = 0; - LodePNGColorMode mode16 = lodepng_color_mode_make(LCT_RGB, 16); - lodepng_convert_rgb(&r, &g, &b, - info_png->background_r, info_png->background_g, info_png->background_b, &mode16, &info_png->color); - state->error = lodepng_color_stats_add(&stats, r, g, b, 65535); - if(state->error) goto cleanup; - } -#endif /* LODEPNG_COMPILE_ANCILLARY_CHUNKS */ - state->error = auto_choose_color(&auto_color, &state->info_raw, &stats); - if(state->error) goto cleanup; -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - if(info_png->sbit_defined) { - /*if sbit is defined, due to strict requirements of which sbit values can be present for which color modes, - auto_convert can't be done in many cases. However, do support a few cases here. - TODO: more conversions may be possible, and it may also be possible to get a more appropriate color type out of - auto_choose_color if knowledge about sbit is used beforehand - */ - unsigned sbit_max = LODEPNG_MAX(LODEPNG_MAX(LODEPNG_MAX(info_png->sbit_r, info_png->sbit_g), - info_png->sbit_b), info_png->sbit_a); - unsigned equal = (!info_png->sbit_g || info_png->sbit_g == info_png->sbit_r) - && (!info_png->sbit_b || info_png->sbit_b == info_png->sbit_r) - && (!info_png->sbit_a || info_png->sbit_a == info_png->sbit_r); - allow_convert = 0; - if(info.color.colortype == LCT_PALETTE && - auto_color.colortype == LCT_PALETTE) { - /* input and output are palette, and in this case it may happen that palette data is - expected to be copied from info_raw into the info_png */ - allow_convert = 1; - } - /*going from 8-bit RGB to palette (or 16-bit as long as sbit_max <= 8) is possible - since both are 8-bit RGB for sBIT's purposes*/ - if(info.color.colortype == LCT_RGB && - auto_color.colortype == LCT_PALETTE && sbit_max <= 8) { - allow_convert = 1; - } - /*going from 8-bit RGBA to palette is also ok but only if sbit_a is exactly 8*/ - if(info.color.colortype == LCT_RGBA && auto_color.colortype == LCT_PALETTE && - info_png->sbit_a == 8 && sbit_max <= 8) { - allow_convert = 1; - } - /*going from 16-bit RGB(A) to 8-bit RGB(A) is ok if all sbit values are <= 8*/ - if((info.color.colortype == LCT_RGB || info.color.colortype == LCT_RGBA) && info.color.bitdepth == 16 && - auto_color.colortype == info.color.colortype && auto_color.bitdepth == 8 && - sbit_max <= 8) { - allow_convert = 1; - } - /*going to less channels is ok if all bit values are equal (all possible values in sbit, - as well as the chosen bitdepth of the result). Due to how auto_convert works, - we already know that auto_color.colortype has less than or equal amount of channels than - info.colortype. Palette is not used here. This conversion is not allowed if - info_png->sbit_r < auto_color.bitdepth, because specifically for alpha, non-presence of - an sbit value heavily implies that alpha's bit depth is equal to the PNG bit depth (rather - than the bit depths set in the r, g and b sbit values, by how the PNG specification describes - handling tRNS chunk case with sBIT), so be conservative here about ignoring user input.*/ - if(info.color.colortype != LCT_PALETTE && auto_color.colortype != LCT_PALETTE && - equal && info_png->sbit_r == auto_color.bitdepth) { - allow_convert = 1; - } - } -#endif - if(state->encoder.force_palette) { - if(info.color.colortype != LCT_GREY && info.color.colortype != LCT_GREY_ALPHA && - (auto_color.colortype == LCT_GREY || auto_color.colortype == LCT_GREY_ALPHA)) { - /*user speficially forced a PLTE palette, so cannot convert to grayscale types because - the PNG specification only allows writing a suggested palette in PLTE for truecolor types*/ - allow_convert = 0; - } - } - if(allow_convert) { - lodepng_color_mode_copy(&info.color, &auto_color); -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - /*also convert the background chunk*/ - if(info_png->background_defined) { - if(lodepng_convert_rgb(&info.background_r, &info.background_g, &info.background_b, - info_png->background_r, info_png->background_g, info_png->background_b, &info.color, &info_png->color)) { - state->error = 104; - goto cleanup; - } - } -#endif /* LODEPNG_COMPILE_ANCILLARY_CHUNKS */ - } - } -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - if(info_png->iccp_defined) { - unsigned gray_icc = isGrayICCProfile(info_png->iccp_profile, info_png->iccp_profile_size); - unsigned rgb_icc = isRGBICCProfile(info_png->iccp_profile, info_png->iccp_profile_size); - unsigned gray_png = info.color.colortype == LCT_GREY || info.color.colortype == LCT_GREY_ALPHA; - if(!gray_icc && !rgb_icc) { - state->error = 100; /* Disallowed profile color type for PNG */ - goto cleanup; - } - if(gray_icc != gray_png) { - /*Not allowed to use RGB/RGBA/palette with GRAY ICC profile or vice versa, - or in case of auto_convert, it wasn't possible to find appropriate model*/ - state->error = state->encoder.auto_convert ? 102 : 101; - goto cleanup; - } - } -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - if(!lodepng_color_mode_equal(&state->info_raw, &info.color)) { - unsigned char* converted; - size_t size = ((size_t)w * (size_t)h * (size_t)lodepng_get_bpp(&info.color) + 7u) / 8u; - - converted = (unsigned char*)lodepng_malloc(size); - if(!converted && size) state->error = 83; /*alloc fail*/ - if(!state->error) { - state->error = lodepng_convert(converted, image, &info.color, &state->info_raw, w, h); - } - if(!state->error) { - state->error = preProcessScanlines(&data, &datasize, converted, w, h, &info, &state->encoder); - } - lodepng_free(converted); - if(state->error) goto cleanup; - } else { - state->error = preProcessScanlines(&data, &datasize, image, w, h, &info, &state->encoder); - if(state->error) goto cleanup; - } - - /* output all PNG chunks */ { -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - size_t i; -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - /*write signature and chunks*/ - state->error = writeSignature(&outv); - if(state->error) goto cleanup; - /*IHDR*/ - state->error = addChunk_IHDR(&outv, w, h, info.color.colortype, info.color.bitdepth, info.interlace_method); - if(state->error) goto cleanup; -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - /*unknown chunks between IHDR and PLTE*/ - if(info.unknown_chunks_data[0]) { - state->error = addUnknownChunks(&outv, info.unknown_chunks_data[0], info.unknown_chunks_size[0]); - if(state->error) goto cleanup; - } - /*color profile chunks must come before PLTE */ - if(info.iccp_defined) { - state->error = addChunk_iCCP(&outv, &info, &state->encoder.zlibsettings); - if(state->error) goto cleanup; - } - if(info.srgb_defined) { - state->error = addChunk_sRGB(&outv, &info); - if(state->error) goto cleanup; - } - if(info.gama_defined) { - state->error = addChunk_gAMA(&outv, &info); - if(state->error) goto cleanup; - } - if(info.chrm_defined) { - state->error = addChunk_cHRM(&outv, &info); - if(state->error) goto cleanup; - } - if(info_png->sbit_defined) { - state->error = addChunk_sBIT(&outv, &info); - if(state->error) goto cleanup; - } -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - /*PLTE*/ - if(info.color.colortype == LCT_PALETTE) { - state->error = addChunk_PLTE(&outv, &info.color); - if(state->error) goto cleanup; - } - if(state->encoder.force_palette && (info.color.colortype == LCT_RGB || info.color.colortype == LCT_RGBA)) { - /*force_palette means: write suggested palette for truecolor in PLTE chunk*/ - state->error = addChunk_PLTE(&outv, &info.color); - if(state->error) goto cleanup; - } - /*tRNS (this will only add if when necessary) */ - state->error = addChunk_tRNS(&outv, &info.color); - if(state->error) goto cleanup; -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - /*bKGD (must come between PLTE and the IDAt chunks*/ - if(info.background_defined) { - state->error = addChunk_bKGD(&outv, &info); - if(state->error) goto cleanup; - } - /*pHYs (must come before the IDAT chunks)*/ - if(info.phys_defined) { - state->error = addChunk_pHYs(&outv, &info); - if(state->error) goto cleanup; - } - - /*unknown chunks between PLTE and IDAT*/ - if(info.unknown_chunks_data[1]) { - state->error = addUnknownChunks(&outv, info.unknown_chunks_data[1], info.unknown_chunks_size[1]); - if(state->error) goto cleanup; - } -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - /*IDAT (multiple IDAT chunks must be consecutive)*/ - state->error = addChunk_IDAT(&outv, data, datasize, &state->encoder.zlibsettings); - if(state->error) goto cleanup; -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - /*tIME*/ - if(info.time_defined) { - state->error = addChunk_tIME(&outv, &info.time); - if(state->error) goto cleanup; - } - /*tEXt and/or zTXt*/ - for(i = 0; i != info.text_num; ++i) { - if(lodepng_strlen(info.text_keys[i]) > 79) { - state->error = 66; /*text chunk too large*/ - goto cleanup; - } - if(lodepng_strlen(info.text_keys[i]) < 1) { - state->error = 67; /*text chunk too small*/ - goto cleanup; - } - if(state->encoder.text_compression) { - state->error = addChunk_zTXt(&outv, info.text_keys[i], info.text_strings[i], &state->encoder.zlibsettings); - if(state->error) goto cleanup; - } else { - state->error = addChunk_tEXt(&outv, info.text_keys[i], info.text_strings[i]); - if(state->error) goto cleanup; - } - } - /*LodePNG version id in text chunk*/ - if(state->encoder.add_id) { - unsigned already_added_id_text = 0; - for(i = 0; i != info.text_num; ++i) { - const char* k = info.text_keys[i]; - /* Could use strcmp, but we're not calling or reimplementing this C library function for this use only */ - if(k[0] == 'L' && k[1] == 'o' && k[2] == 'd' && k[3] == 'e' && - k[4] == 'P' && k[5] == 'N' && k[6] == 'G' && k[7] == '\0') { - already_added_id_text = 1; - break; - } - } - if(already_added_id_text == 0) { - state->error = addChunk_tEXt(&outv, "LodePNG", LODEPNG_VERSION_STRING); /*it's shorter as tEXt than as zTXt chunk*/ - if(state->error) goto cleanup; - } - } - /*iTXt*/ - for(i = 0; i != info.itext_num; ++i) { - if(lodepng_strlen(info.itext_keys[i]) > 79) { - state->error = 66; /*text chunk too large*/ - goto cleanup; - } - if(lodepng_strlen(info.itext_keys[i]) < 1) { - state->error = 67; /*text chunk too small*/ - goto cleanup; - } - state->error = addChunk_iTXt( - &outv, state->encoder.text_compression, - info.itext_keys[i], info.itext_langtags[i], info.itext_transkeys[i], info.itext_strings[i], - &state->encoder.zlibsettings); - if(state->error) goto cleanup; - } - - /*unknown chunks between IDAT and IEND*/ - if(info.unknown_chunks_data[2]) { - state->error = addUnknownChunks(&outv, info.unknown_chunks_data[2], info.unknown_chunks_size[2]); - if(state->error) goto cleanup; - } -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - state->error = addChunk_IEND(&outv); - if(state->error) goto cleanup; - } - -cleanup: - lodepng_info_cleanup(&info); - lodepng_free(data); - lodepng_color_mode_cleanup(&auto_color); - - /*instead of cleaning the vector up, give it to the output*/ - *out = outv.data; - *outsize = outv.size; - - return state->error; -} - -unsigned lodepng_encode_memory(unsigned char** out, size_t* outsize, const unsigned char* image, - unsigned w, unsigned h, LodePNGColorType colortype, unsigned bitdepth) { - unsigned error; - LodePNGState state; - lodepng_state_init(&state); - state.info_raw.colortype = colortype; - state.info_raw.bitdepth = bitdepth; - state.info_png.color.colortype = colortype; - state.info_png.color.bitdepth = bitdepth; - lodepng_encode(out, outsize, image, w, h, &state); - error = state.error; - lodepng_state_cleanup(&state); - return error; -} - -unsigned lodepng_encode32(unsigned char** out, size_t* outsize, const unsigned char* image, unsigned w, unsigned h) { - return lodepng_encode_memory(out, outsize, image, w, h, LCT_RGBA, 8); -} - -unsigned lodepng_encode24(unsigned char** out, size_t* outsize, const unsigned char* image, unsigned w, unsigned h) { - return lodepng_encode_memory(out, outsize, image, w, h, LCT_RGB, 8); -} - -#ifdef LODEPNG_COMPILE_DISK -unsigned lodepng_encode_file(const char* filename, const unsigned char* image, unsigned w, unsigned h, - LodePNGColorType colortype, unsigned bitdepth) { - unsigned char* buffer; - size_t buffersize; - unsigned error = lodepng_encode_memory(&buffer, &buffersize, image, w, h, colortype, bitdepth); - if(!error) error = lodepng_save_file(buffer, buffersize, filename); - lodepng_free(buffer); - return error; -} - -unsigned lodepng_encode32_file(const char* filename, const unsigned char* image, unsigned w, unsigned h) { - return lodepng_encode_file(filename, image, w, h, LCT_RGBA, 8); -} - -unsigned lodepng_encode24_file(const char* filename, const unsigned char* image, unsigned w, unsigned h) { - return lodepng_encode_file(filename, image, w, h, LCT_RGB, 8); -} -#endif /*LODEPNG_COMPILE_DISK*/ - -void lodepng_encoder_settings_init(LodePNGEncoderSettings* settings) { - lodepng_compress_settings_init(&settings->zlibsettings); - settings->filter_palette_zero = 1; - settings->filter_strategy = LFS_MINSUM; - settings->auto_convert = 1; - settings->force_palette = 0; - settings->predefined_filters = 0; -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - settings->add_id = 0; - settings->text_compression = 1; -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ -} - -#endif /*LODEPNG_COMPILE_ENCODER*/ -#endif /*LODEPNG_COMPILE_PNG*/ - -#ifdef LODEPNG_COMPILE_ERROR_TEXT -/* -This returns the description of a numerical error code in English. This is also -the documentation of all the error codes. -*/ -const char* lodepng_error_text(unsigned code) { - switch(code) { - case 0: return "no error, everything went ok"; - case 1: return "nothing done yet"; /*the Encoder/Decoder has done nothing yet, error checking makes no sense yet*/ - case 10: return "end of input memory reached without huffman end code"; /*while huffman decoding*/ - case 11: return "error in code tree made it jump outside of huffman tree"; /*while huffman decoding*/ - case 13: return "problem while processing dynamic deflate block"; - case 14: return "problem while processing dynamic deflate block"; - case 15: return "problem while processing dynamic deflate block"; - /*this error could happen if there are only 0 or 1 symbols present in the huffman code:*/ - case 16: return "invalid code while processing dynamic deflate block"; - case 17: return "end of out buffer memory reached while inflating"; - case 18: return "invalid distance code while inflating"; - case 19: return "end of out buffer memory reached while inflating"; - case 20: return "invalid deflate block BTYPE encountered while decoding"; - case 21: return "NLEN is not ones complement of LEN in a deflate block"; - - /*end of out buffer memory reached while inflating: - This can happen if the inflated deflate data is longer than the amount of bytes required to fill up - all the pixels of the image, given the color depth and image dimensions. Something that doesn't - happen in a normal, well encoded, PNG image.*/ - case 22: return "end of out buffer memory reached while inflating"; - case 23: return "end of in buffer memory reached while inflating"; - case 24: return "invalid FCHECK in zlib header"; - case 25: return "invalid compression method in zlib header"; - case 26: return "FDICT encountered in zlib header while it's not used for PNG"; - case 27: return "PNG file is smaller than a PNG header"; - /*Checks the magic file header, the first 8 bytes of the PNG file*/ - case 28: return "incorrect PNG signature, it's no PNG or corrupted"; - case 29: return "first chunk is not the header chunk"; - case 30: return "chunk length too large, chunk broken off at end of file"; - case 31: return "illegal PNG color type or bpp"; - case 32: return "illegal PNG compression method"; - case 33: return "illegal PNG filter method"; - case 34: return "illegal PNG interlace method"; - case 35: return "chunk length of a chunk is too large or the chunk too small"; - case 36: return "illegal PNG filter type encountered"; - case 37: return "illegal bit depth for this color type given"; - case 38: return "the palette is too small or too big"; /*0, or more than 256 colors*/ - case 39: return "tRNS chunk before PLTE or has more entries than palette size"; - case 40: return "tRNS chunk has wrong size for grayscale image"; - case 41: return "tRNS chunk has wrong size for RGB image"; - case 42: return "tRNS chunk appeared while it was not allowed for this color type"; - case 43: return "bKGD chunk has wrong size for palette image"; - case 44: return "bKGD chunk has wrong size for grayscale image"; - case 45: return "bKGD chunk has wrong size for RGB image"; - case 48: return "empty input buffer given to decoder. Maybe caused by non-existing file?"; - case 49: return "jumped past memory while generating dynamic huffman tree"; - case 50: return "jumped past memory while generating dynamic huffman tree"; - case 51: return "jumped past memory while inflating huffman block"; - case 52: return "jumped past memory while inflating"; - case 53: return "size of zlib data too small"; - case 54: return "repeat symbol in tree while there was no value symbol yet"; - /*jumped past tree while generating huffman tree, this could be when the - tree will have more leaves than symbols after generating it out of the - given lengths. They call this an oversubscribed dynamic bit lengths tree in zlib.*/ - case 55: return "jumped past tree while generating huffman tree"; - case 56: return "given output image colortype or bitdepth not supported for color conversion"; - case 57: return "invalid CRC encountered (checking CRC can be disabled)"; - case 58: return "invalid ADLER32 encountered (checking ADLER32 can be disabled)"; - case 59: return "requested color conversion not supported"; - case 60: return "invalid window size given in the settings of the encoder (must be 0-32768)"; - case 61: return "invalid BTYPE given in the settings of the encoder (only 0, 1 and 2 are allowed)"; - /*LodePNG leaves the choice of RGB to grayscale conversion formula to the user.*/ - case 62: return "conversion from color to grayscale not supported"; - /*(2^31-1)*/ - case 63: return "length of a chunk too long, max allowed for PNG is 2147483647 bytes per chunk"; - /*this would result in the inability of a deflated block to ever contain an end code. It must be at least 1.*/ - case 64: return "the length of the END symbol 256 in the Huffman tree is 0"; - case 66: return "the length of a text chunk keyword given to the encoder is longer than the maximum of 79 bytes"; - case 67: return "the length of a text chunk keyword given to the encoder is smaller than the minimum of 1 byte"; - case 68: return "tried to encode a PLTE chunk with a palette that has less than 1 or more than 256 colors"; - case 69: return "unknown chunk type with 'critical' flag encountered by the decoder"; - case 71: return "invalid interlace mode given to encoder (must be 0 or 1)"; - case 72: return "while decoding, invalid compression method encountering in zTXt or iTXt chunk (it must be 0)"; - case 73: return "invalid tIME chunk size"; - case 74: return "invalid pHYs chunk size"; - /*length could be wrong, or data chopped off*/ - case 75: return "no null termination char found while decoding text chunk"; - case 76: return "iTXt chunk too short to contain required bytes"; - case 77: return "integer overflow in buffer size"; - case 78: return "failed to open file for reading"; /*file doesn't exist or couldn't be opened for reading*/ - case 79: return "failed to open file for writing"; - case 80: return "tried creating a tree of 0 symbols"; - case 81: return "lazy matching at pos 0 is impossible"; - case 82: return "color conversion to palette requested while a color isn't in palette, or index out of bounds"; - case 83: return "memory allocation failed"; - case 84: return "given image too small to contain all pixels to be encoded"; - case 86: return "impossible offset in lz77 encoding (internal bug)"; - case 87: return "must provide custom zlib function pointer if LODEPNG_COMPILE_ZLIB is not defined"; - case 88: return "invalid filter strategy given for LodePNGEncoderSettings.filter_strategy"; - case 89: return "text chunk keyword too short or long: must have size 1-79"; - /*the windowsize in the LodePNGCompressSettings. Requiring POT(==> & instead of %) makes encoding 12% faster.*/ - case 90: return "windowsize must be a power of two"; - case 91: return "invalid decompressed idat size"; - case 92: return "integer overflow due to too many pixels"; - case 93: return "zero width or height is invalid"; - case 94: return "header chunk must have a size of 13 bytes"; - case 95: return "integer overflow with combined idat chunk size"; - case 96: return "invalid gAMA chunk size"; - case 97: return "invalid cHRM chunk size"; - case 98: return "invalid sRGB chunk size"; - case 99: return "invalid sRGB rendering intent"; - case 100: return "invalid ICC profile color type, the PNG specification only allows RGB or GRAY"; - case 101: return "PNG specification does not allow RGB ICC profile on gray color types and vice versa"; - case 102: return "not allowed to set grayscale ICC profile with colored pixels by PNG specification"; - case 103: return "invalid palette index in bKGD chunk. Maybe it came before PLTE chunk?"; - case 104: return "invalid bKGD color while encoding (e.g. palette index out of range)"; - case 105: return "integer overflow of bitsize"; - case 106: return "PNG file must have PLTE chunk if color type is palette"; - case 107: return "color convert from palette mode requested without setting the palette data in it"; - case 108: return "tried to add more than 256 values to a palette"; - /*this limit can be configured in LodePNGDecompressSettings*/ - case 109: return "tried to decompress zlib or deflate data larger than desired max_output_size"; - case 110: return "custom zlib or inflate decompression failed"; - case 111: return "custom zlib or deflate compression failed"; - /*max text size limit can be configured in LodePNGDecoderSettings. This error prevents - unreasonable memory consumption when decoding due to impossibly large text sizes.*/ - case 112: return "compressed text unreasonably large"; - /*max ICC size limit can be configured in LodePNGDecoderSettings. This error prevents - unreasonable memory consumption when decoding due to impossibly large ICC profile*/ - case 113: return "ICC profile unreasonably large"; - case 114: return "sBIT chunk has wrong size for the color type of the image"; - case 115: return "sBIT value out of range"; - } - return "unknown error code"; -} -#endif /*LODEPNG_COMPILE_ERROR_TEXT*/ - -/* ////////////////////////////////////////////////////////////////////////// */ -/* ////////////////////////////////////////////////////////////////////////// */ -/* // C++ Wrapper // */ -/* ////////////////////////////////////////////////////////////////////////// */ -/* ////////////////////////////////////////////////////////////////////////// */ - -#ifdef LODEPNG_COMPILE_CPP -namespace lodepng { - -#ifdef LODEPNG_COMPILE_DISK -unsigned load_file(std::vector& buffer, const std::string& filename) { - long size = lodepng_filesize(filename.c_str()); - if(size < 0) return 78; - buffer.resize((size_t)size); - return size == 0 ? 0 : lodepng_buffer_file(&buffer[0], (size_t)size, filename.c_str()); -} - -/*write given buffer to the file, overwriting the file, it doesn't append to it.*/ -unsigned save_file(const std::vector& buffer, const std::string& filename) { - return lodepng_save_file(buffer.empty() ? 0 : &buffer[0], buffer.size(), filename.c_str()); -} -#endif /* LODEPNG_COMPILE_DISK */ - -#ifdef LODEPNG_COMPILE_ZLIB -#ifdef LODEPNG_COMPILE_DECODER -unsigned decompress(std::vector& out, const unsigned char* in, size_t insize, - const LodePNGDecompressSettings& settings) { - unsigned char* buffer = 0; - size_t buffersize = 0; - unsigned error = zlib_decompress(&buffer, &buffersize, 0, in, insize, &settings); - if(buffer) { - out.insert(out.end(), buffer, &buffer[buffersize]); - lodepng_free(buffer); - } - return error; -} - -unsigned decompress(std::vector& out, const std::vector& in, - const LodePNGDecompressSettings& settings) { - return decompress(out, in.empty() ? 0 : &in[0], in.size(), settings); -} -#endif /* LODEPNG_COMPILE_DECODER */ - -#ifdef LODEPNG_COMPILE_ENCODER -unsigned compress(std::vector& out, const unsigned char* in, size_t insize, - const LodePNGCompressSettings& settings) { - unsigned char* buffer = 0; - size_t buffersize = 0; - unsigned error = zlib_compress(&buffer, &buffersize, in, insize, &settings); - if(buffer) { - out.insert(out.end(), buffer, &buffer[buffersize]); - lodepng_free(buffer); - } - return error; -} - -unsigned compress(std::vector& out, const std::vector& in, - const LodePNGCompressSettings& settings) { - return compress(out, in.empty() ? 0 : &in[0], in.size(), settings); -} -#endif /* LODEPNG_COMPILE_ENCODER */ -#endif /* LODEPNG_COMPILE_ZLIB */ - - -#ifdef LODEPNG_COMPILE_PNG - -State::State() { - lodepng_state_init(this); -} - -State::State(const State& other) { - lodepng_state_init(this); - lodepng_state_copy(this, &other); -} - -State::~State() { - lodepng_state_cleanup(this); -} - -State& State::operator=(const State& other) { - lodepng_state_copy(this, &other); - return *this; -} - -#ifdef LODEPNG_COMPILE_DECODER - -unsigned decode(std::vector& out, unsigned& w, unsigned& h, const unsigned char* in, - size_t insize, LodePNGColorType colortype, unsigned bitdepth) { - unsigned char* buffer = 0; - unsigned error = lodepng_decode_memory(&buffer, &w, &h, in, insize, colortype, bitdepth); - if(buffer && !error) { - State state; - state.info_raw.colortype = colortype; - state.info_raw.bitdepth = bitdepth; - size_t buffersize = lodepng_get_raw_size(w, h, &state.info_raw); - out.insert(out.end(), buffer, &buffer[buffersize]); - } - lodepng_free(buffer); - return error; -} - -unsigned decode(std::vector& out, unsigned& w, unsigned& h, - const std::vector& in, LodePNGColorType colortype, unsigned bitdepth) { - return decode(out, w, h, in.empty() ? 0 : &in[0], (unsigned)in.size(), colortype, bitdepth); -} - -unsigned decode(std::vector& out, unsigned& w, unsigned& h, - State& state, - const unsigned char* in, size_t insize) { - unsigned char* buffer = NULL; - unsigned error = lodepng_decode(&buffer, &w, &h, &state, in, insize); - if(buffer && !error) { - size_t buffersize = lodepng_get_raw_size(w, h, &state.info_raw); - out.insert(out.end(), buffer, &buffer[buffersize]); - } - lodepng_free(buffer); - return error; -} - -unsigned decode(std::vector& out, unsigned& w, unsigned& h, - State& state, - const std::vector& in) { - return decode(out, w, h, state, in.empty() ? 0 : &in[0], in.size()); -} - -#ifdef LODEPNG_COMPILE_DISK -unsigned decode(std::vector& out, unsigned& w, unsigned& h, const std::string& filename, - LodePNGColorType colortype, unsigned bitdepth) { - std::vector buffer; - /* safe output values in case error happens */ - w = h = 0; - unsigned error = load_file(buffer, filename); - if(error) return error; - return decode(out, w, h, buffer, colortype, bitdepth); -} -#endif /* LODEPNG_COMPILE_DECODER */ -#endif /* LODEPNG_COMPILE_DISK */ - -#ifdef LODEPNG_COMPILE_ENCODER -unsigned encode(std::vector& out, const unsigned char* in, unsigned w, unsigned h, - LodePNGColorType colortype, unsigned bitdepth) { - unsigned char* buffer; - size_t buffersize; - unsigned error = lodepng_encode_memory(&buffer, &buffersize, in, w, h, colortype, bitdepth); - if(buffer) { - out.insert(out.end(), buffer, &buffer[buffersize]); - lodepng_free(buffer); - } - return error; -} - -unsigned encode(std::vector& out, - const std::vector& in, unsigned w, unsigned h, - LodePNGColorType colortype, unsigned bitdepth) { - if(lodepng_get_raw_size_lct(w, h, colortype, bitdepth) > in.size()) return 84; - return encode(out, in.empty() ? 0 : &in[0], w, h, colortype, bitdepth); -} - -unsigned encode(std::vector& out, - const unsigned char* in, unsigned w, unsigned h, - State& state) { - unsigned char* buffer; - size_t buffersize; - unsigned error = lodepng_encode(&buffer, &buffersize, in, w, h, &state); - if(buffer) { - out.insert(out.end(), buffer, &buffer[buffersize]); - lodepng_free(buffer); - } - return error; -} - -unsigned encode(std::vector& out, - const std::vector& in, unsigned w, unsigned h, - State& state) { - if(lodepng_get_raw_size(w, h, &state.info_raw) > in.size()) return 84; - return encode(out, in.empty() ? 0 : &in[0], w, h, state); -} - -#ifdef LODEPNG_COMPILE_DISK -unsigned encode(const std::string& filename, - const unsigned char* in, unsigned w, unsigned h, - LodePNGColorType colortype, unsigned bitdepth) { - std::vector buffer; - unsigned error = encode(buffer, in, w, h, colortype, bitdepth); - if(!error) error = save_file(buffer, filename); - return error; -} - -unsigned encode(const std::string& filename, - const std::vector& in, unsigned w, unsigned h, - LodePNGColorType colortype, unsigned bitdepth) { - if(lodepng_get_raw_size_lct(w, h, colortype, bitdepth) > in.size()) return 84; - return encode(filename, in.empty() ? 0 : &in[0], w, h, colortype, bitdepth); -} -#endif /* LODEPNG_COMPILE_DISK */ -#endif /* LODEPNG_COMPILE_ENCODER */ -#endif /* LODEPNG_COMPILE_PNG */ -} /* namespace lodepng */ -#endif /*LODEPNG_COMPILE_CPP*/ diff --git a/Marlin/lib/LodePNG/lodepng.h b/Marlin/lib/LodePNG/lodepng.h deleted file mode 100644 index fdafc770e4..0000000000 --- a/Marlin/lib/LodePNG/lodepng.h +++ /dev/null @@ -1,2085 +0,0 @@ -/* -LodePNG version 20220717 - -Copyright (c) 2005-2022 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -#ifndef LODEPNG_H -#define LODEPNG_H - -#include /*for size_t*/ - -extern const char* LODEPNG_VERSION_STRING; - -/* -The following #defines are used to create code sections. They can be disabled -to disable code sections, which can give faster compile time and smaller binary. -The "NO_COMPILE" defines are designed to be used to pass as defines to the -compiler command to disable them without modifying this header, e.g. --DLODEPNG_NO_COMPILE_ZLIB for gcc or clang. -*/ -/*deflate & zlib. If disabled, you must specify alternative zlib functions in -the custom_zlib field of the compress and decompress settings*/ -#ifndef LODEPNG_NO_COMPILE_ZLIB -/*pass -DLODEPNG_NO_COMPILE_ZLIB to the compiler to disable this, or comment out LODEPNG_COMPILE_ZLIB below*/ -#define LODEPNG_COMPILE_ZLIB -#endif - -/*png encoder and png decoder*/ -#ifndef LODEPNG_NO_COMPILE_PNG -/*pass -DLODEPNG_NO_COMPILE_PNG to the compiler to disable this, or comment out LODEPNG_COMPILE_PNG below*/ -#define LODEPNG_COMPILE_PNG -#endif - -/*deflate&zlib decoder and png decoder*/ -#ifndef LODEPNG_NO_COMPILE_DECODER -/*pass -DLODEPNG_NO_COMPILE_DECODER to the compiler to disable this, or comment out LODEPNG_COMPILE_DECODER below*/ -#define LODEPNG_COMPILE_DECODER -#endif - -/*deflate&zlib encoder and png encoder*/ -#ifndef LODEPNG_NO_COMPILE_ENCODER -/*pass -DLODEPNG_NO_COMPILE_ENCODER to the compiler to disable this, or comment out LODEPNG_COMPILE_ENCODER below*/ -#define LODEPNG_COMPILE_ENCODER -#endif - -/*the optional built in harddisk file loading and saving functions*/ -#ifndef LODEPNG_NO_COMPILE_DISK -/*pass -DLODEPNG_NO_COMPILE_DISK to the compiler to disable this, or comment out LODEPNG_COMPILE_DISK below*/ -#define LODEPNG_COMPILE_DISK -#endif - -/*support for chunks other than IHDR, IDAT, PLTE, tRNS, IEND: ancillary and unknown chunks*/ -#ifndef LODEPNG_NO_COMPILE_ANCILLARY_CHUNKS -/*pass -DLODEPNG_NO_COMPILE_ANCILLARY_CHUNKS to the compiler to disable this, -or comment out LODEPNG_COMPILE_ANCILLARY_CHUNKS below*/ -#define LODEPNG_COMPILE_ANCILLARY_CHUNKS -#endif - -/*ability to convert error numerical codes to English text string*/ -#ifndef LODEPNG_NO_COMPILE_ERROR_TEXT -/*pass -DLODEPNG_NO_COMPILE_ERROR_TEXT to the compiler to disable this, -or comment out LODEPNG_COMPILE_ERROR_TEXT below*/ -#define LODEPNG_COMPILE_ERROR_TEXT -#endif - -/*Compile the default allocators (C's free, malloc and realloc). If you disable this, -you can define the functions lodepng_free, lodepng_malloc and lodepng_realloc in your -source files with custom allocators.*/ -#ifndef LODEPNG_NO_COMPILE_ALLOCATORS -/*pass -DLODEPNG_NO_COMPILE_ALLOCATORS to the compiler to disable the built-in ones, -or comment out LODEPNG_COMPILE_ALLOCATORS below*/ -#define LODEPNG_COMPILE_ALLOCATORS -#endif - -/*Disable built-in CRC function, in that case a custom implementation of -lodepng_crc32 must be defined externally so that it can be linked in.*/ -#ifndef LODEPNG_NO_COMPILE_CRC -/*pass -DLODEPNG_NO_COMPILE_CRC to the compiler to disable the built-in one, -or comment out LODEPNG_COMPILE_CRC below*/ -#define LODEPNG_COMPILE_CRC -#endif - -/*compile the C++ version (you can disable the C++ wrapper here even when compiling for C++)*/ -#ifdef __cplusplus -#ifndef LODEPNG_NO_COMPILE_CPP -/*pass -DLODEPNG_NO_COMPILE_CPP to the compiler to disable C++ (not needed if a C-only compiler), -or comment out LODEPNG_COMPILE_CPP below*/ -#define LODEPNG_COMPILE_CPP -#endif -#endif - -#ifdef LODEPNG_COMPILE_CPP -#include -#include -#endif /*LODEPNG_COMPILE_CPP*/ - -#ifdef LODEPNG_COMPILE_PNG -/*The PNG color types (also used for raw image).*/ -typedef enum LodePNGColorType { - LCT_GREY = 0, /*grayscale: 1,2,4,8,16 bit*/ - LCT_RGB = 2, /*RGB: 8,16 bit*/ - LCT_PALETTE = 3, /*palette: 1,2,4,8 bit*/ - LCT_GREY_ALPHA = 4, /*grayscale with alpha: 8,16 bit*/ - LCT_RGBA = 6, /*RGB with alpha: 8,16 bit*/ - /*LCT_MAX_OCTET_VALUE lets the compiler allow this enum to represent any invalid - byte value from 0 to 255 that could be present in an invalid PNG file header. Do - not use, compare with or set the name LCT_MAX_OCTET_VALUE, instead either use - the valid color type names above, or numeric values like 1 or 7 when checking for - particular disallowed color type byte values, or cast to integer to print it.*/ - LCT_MAX_OCTET_VALUE = 255 -} LodePNGColorType; - -#ifdef LODEPNG_COMPILE_DECODER -/* -Converts PNG data in memory to raw pixel data. -out: Output parameter. Pointer to buffer that will contain the raw pixel data. - After decoding, its size is w * h * (bytes per pixel) bytes larger than - initially. Bytes per pixel depends on colortype and bitdepth. - Must be freed after usage with free(*out). - Note: for 16-bit per channel colors, uses big endian format like PNG does. -w: Output parameter. Pointer to width of pixel data. -h: Output parameter. Pointer to height of pixel data. -in: Memory buffer with the PNG file. -insize: size of the in buffer. -colortype: the desired color type for the raw output image. See explanation on PNG color types. -bitdepth: the desired bit depth for the raw output image. See explanation on PNG color types. -Return value: LodePNG error code (0 means no error). -*/ -unsigned lodepng_decode_memory(unsigned char** out, unsigned* w, unsigned* h, - const unsigned char* in, size_t insize, - LodePNGColorType colortype, unsigned bitdepth); - -/*Same as lodepng_decode_memory, but always decodes to 32-bit RGBA raw image*/ -unsigned lodepng_decode32(unsigned char** out, unsigned* w, unsigned* h, - const unsigned char* in, size_t insize); - -/*Same as lodepng_decode_memory, but always decodes to 24-bit RGB raw image*/ -unsigned lodepng_decode24(unsigned char** out, unsigned* w, unsigned* h, - const unsigned char* in, size_t insize); - -#ifdef LODEPNG_COMPILE_DISK -/* -Load PNG from disk, from file with given name. -Same as the other decode functions, but instead takes a filename as input. - -NOTE: Wide-character filenames are not supported, you can use an external method -to handle such files and decode in-memory.*/ -unsigned lodepng_decode_file(unsigned char** out, unsigned* w, unsigned* h, - const char* filename, - LodePNGColorType colortype, unsigned bitdepth); - -/*Same as lodepng_decode_file, but always decodes to 32-bit RGBA raw image. - -NOTE: Wide-character filenames are not supported, you can use an external method -to handle such files and decode in-memory.*/ -unsigned lodepng_decode32_file(unsigned char** out, unsigned* w, unsigned* h, - const char* filename); - -/*Same as lodepng_decode_file, but always decodes to 24-bit RGB raw image. - -NOTE: Wide-character filenames are not supported, you can use an external method -to handle such files and decode in-memory.*/ -unsigned lodepng_decode24_file(unsigned char** out, unsigned* w, unsigned* h, - const char* filename); -#endif /*LODEPNG_COMPILE_DISK*/ -#endif /*LODEPNG_COMPILE_DECODER*/ - - -#ifdef LODEPNG_COMPILE_ENCODER -/* -Converts raw pixel data into a PNG image in memory. The colortype and bitdepth - of the output PNG image cannot be chosen, they are automatically determined - by the colortype, bitdepth and content of the input pixel data. - Note: for 16-bit per channel colors, needs big endian format like PNG does. -out: Output parameter. Pointer to buffer that will contain the PNG image data. - Must be freed after usage with free(*out). -outsize: Output parameter. Pointer to the size in bytes of the out buffer. -image: The raw pixel data to encode. The size of this buffer should be - w * h * (bytes per pixel), bytes per pixel depends on colortype and bitdepth. -w: width of the raw pixel data in pixels. -h: height of the raw pixel data in pixels. -colortype: the color type of the raw input image. See explanation on PNG color types. -bitdepth: the bit depth of the raw input image. See explanation on PNG color types. -Return value: LodePNG error code (0 means no error). -*/ -unsigned lodepng_encode_memory(unsigned char** out, size_t* outsize, - const unsigned char* image, unsigned w, unsigned h, - LodePNGColorType colortype, unsigned bitdepth); - -/*Same as lodepng_encode_memory, but always encodes from 32-bit RGBA raw image.*/ -unsigned lodepng_encode32(unsigned char** out, size_t* outsize, - const unsigned char* image, unsigned w, unsigned h); - -/*Same as lodepng_encode_memory, but always encodes from 24-bit RGB raw image.*/ -unsigned lodepng_encode24(unsigned char** out, size_t* outsize, - const unsigned char* image, unsigned w, unsigned h); - -#ifdef LODEPNG_COMPILE_DISK -/* -Converts raw pixel data into a PNG file on disk. -Same as the other encode functions, but instead takes a filename as output. - -NOTE: This overwrites existing files without warning! - -NOTE: Wide-character filenames are not supported, you can use an external method -to handle such files and encode in-memory.*/ -unsigned lodepng_encode_file(const char* filename, - const unsigned char* image, unsigned w, unsigned h, - LodePNGColorType colortype, unsigned bitdepth); - -/*Same as lodepng_encode_file, but always encodes from 32-bit RGBA raw image. - -NOTE: Wide-character filenames are not supported, you can use an external method -to handle such files and encode in-memory.*/ -unsigned lodepng_encode32_file(const char* filename, - const unsigned char* image, unsigned w, unsigned h); - -/*Same as lodepng_encode_file, but always encodes from 24-bit RGB raw image. - -NOTE: Wide-character filenames are not supported, you can use an external method -to handle such files and encode in-memory.*/ -unsigned lodepng_encode24_file(const char* filename, - const unsigned char* image, unsigned w, unsigned h); -#endif /*LODEPNG_COMPILE_DISK*/ -#endif /*LODEPNG_COMPILE_ENCODER*/ - - -#ifdef LODEPNG_COMPILE_CPP -namespace lodepng { -#ifdef LODEPNG_COMPILE_DECODER -/*Same as lodepng_decode_memory, but decodes to an std::vector. The colortype -is the format to output the pixels to. Default is RGBA 8-bit per channel.*/ -unsigned decode(std::vector& out, unsigned& w, unsigned& h, - const unsigned char* in, size_t insize, - LodePNGColorType colortype = LCT_RGBA, unsigned bitdepth = 8); -unsigned decode(std::vector& out, unsigned& w, unsigned& h, - const std::vector& in, - LodePNGColorType colortype = LCT_RGBA, unsigned bitdepth = 8); -#ifdef LODEPNG_COMPILE_DISK -/* -Converts PNG file from disk to raw pixel data in memory. -Same as the other decode functions, but instead takes a filename as input. - -NOTE: Wide-character filenames are not supported, you can use an external method -to handle such files and decode in-memory. -*/ -unsigned decode(std::vector& out, unsigned& w, unsigned& h, - const std::string& filename, - LodePNGColorType colortype = LCT_RGBA, unsigned bitdepth = 8); -#endif /* LODEPNG_COMPILE_DISK */ -#endif /* LODEPNG_COMPILE_DECODER */ - -#ifdef LODEPNG_COMPILE_ENCODER -/*Same as lodepng_encode_memory, but encodes to an std::vector. colortype -is that of the raw input data. The output PNG color type will be auto chosen.*/ -unsigned encode(std::vector& out, - const unsigned char* in, unsigned w, unsigned h, - LodePNGColorType colortype = LCT_RGBA, unsigned bitdepth = 8); -unsigned encode(std::vector& out, - const std::vector& in, unsigned w, unsigned h, - LodePNGColorType colortype = LCT_RGBA, unsigned bitdepth = 8); -#ifdef LODEPNG_COMPILE_DISK -/* -Converts 32-bit RGBA raw pixel data into a PNG file on disk. -Same as the other encode functions, but instead takes a filename as output. - -NOTE: This overwrites existing files without warning! - -NOTE: Wide-character filenames are not supported, you can use an external method -to handle such files and decode in-memory. -*/ -unsigned encode(const std::string& filename, - const unsigned char* in, unsigned w, unsigned h, - LodePNGColorType colortype = LCT_RGBA, unsigned bitdepth = 8); -unsigned encode(const std::string& filename, - const std::vector& in, unsigned w, unsigned h, - LodePNGColorType colortype = LCT_RGBA, unsigned bitdepth = 8); -#endif /* LODEPNG_COMPILE_DISK */ -#endif /* LODEPNG_COMPILE_ENCODER */ -} /* namespace lodepng */ -#endif /*LODEPNG_COMPILE_CPP*/ -#endif /*LODEPNG_COMPILE_PNG*/ - -#ifdef LODEPNG_COMPILE_ERROR_TEXT -/*Returns an English description of the numerical error code.*/ -const char* lodepng_error_text(unsigned code); -#endif /*LODEPNG_COMPILE_ERROR_TEXT*/ - -#ifdef LODEPNG_COMPILE_DECODER -/*Settings for zlib decompression*/ -typedef struct LodePNGDecompressSettings LodePNGDecompressSettings; -struct LodePNGDecompressSettings { - /* Check LodePNGDecoderSettings for more ignorable errors such as ignore_crc */ - unsigned ignore_adler32; /*if 1, continue and don't give an error message if the Adler32 checksum is corrupted*/ - unsigned ignore_nlen; /*ignore complement of len checksum in uncompressed blocks*/ - - /*Maximum decompressed size, beyond this the decoder may (and is encouraged to) stop decoding, - return an error, output a data size > max_output_size and all the data up to that point. This is - not hard limit nor a guarantee, but can prevent excessive memory usage. This setting is - ignored by the PNG decoder, but is used by the deflate/zlib decoder and can be used by custom ones. - Set to 0 to impose no limit (the default).*/ - size_t max_output_size; - - /*use custom zlib decoder instead of built in one (default: null). - Should return 0 if success, any non-0 if error (numeric value not exposed).*/ - unsigned (*custom_zlib)(unsigned char**, size_t*, - const unsigned char*, size_t, - const LodePNGDecompressSettings*); - /*use custom deflate decoder instead of built in one (default: null) - if custom_zlib is not null, custom_inflate is ignored (the zlib format uses deflate). - Should return 0 if success, any non-0 if error (numeric value not exposed).*/ - unsigned (*custom_inflate)(unsigned char**, size_t*, - const unsigned char*, size_t, - const LodePNGDecompressSettings*); - - const void* custom_context; /*optional custom settings for custom functions*/ -}; - -extern const LodePNGDecompressSettings lodepng_default_decompress_settings; -void lodepng_decompress_settings_init(LodePNGDecompressSettings* settings); -#endif /*LODEPNG_COMPILE_DECODER*/ - -#ifdef LODEPNG_COMPILE_ENCODER -/* -Settings for zlib compression. Tweaking these settings tweaks the balance -between speed and compression ratio. -*/ -typedef struct LodePNGCompressSettings LodePNGCompressSettings; -struct LodePNGCompressSettings /*deflate = compress*/ { - /*LZ77 related settings*/ - unsigned btype; /*the block type for LZ (0, 1, 2 or 3, see zlib standard). Should be 2 for proper compression.*/ - unsigned use_lz77; /*whether or not to use LZ77. Should be 1 for proper compression.*/ - unsigned windowsize; /*must be a power of two <= 32768. higher compresses more but is slower. Default value: 2048.*/ - unsigned minmatch; /*minimum lz77 length. 3 is normally best, 6 can be better for some PNGs. Default: 0*/ - unsigned nicematch; /*stop searching if >= this length found. Set to 258 for best compression. Default: 128*/ - unsigned lazymatching; /*use lazy matching: better compression but a bit slower. Default: true*/ - - /*use custom zlib encoder instead of built in one (default: null)*/ - unsigned (*custom_zlib)(unsigned char**, size_t*, - const unsigned char*, size_t, - const LodePNGCompressSettings*); - /*use custom deflate encoder instead of built in one (default: null) - if custom_zlib is used, custom_deflate is ignored since only the built in - zlib function will call custom_deflate*/ - unsigned (*custom_deflate)(unsigned char**, size_t*, - const unsigned char*, size_t, - const LodePNGCompressSettings*); - - const void* custom_context; /*optional custom settings for custom functions*/ -}; - -extern const LodePNGCompressSettings lodepng_default_compress_settings; -void lodepng_compress_settings_init(LodePNGCompressSettings* settings); -#endif /*LODEPNG_COMPILE_ENCODER*/ - -#ifdef LODEPNG_COMPILE_PNG -/* -Color mode of an image. Contains all information required to decode the pixel -bits to RGBA colors. This information is the same as used in the PNG file -format, and is used both for PNG and raw image data in LodePNG. -*/ -typedef struct LodePNGColorMode { - /*header (IHDR)*/ - LodePNGColorType colortype; /*color type, see PNG standard or documentation further in this header file*/ - unsigned bitdepth; /*bits per sample, see PNG standard or documentation further in this header file*/ - - /* - palette (PLTE and tRNS) - - Dynamically allocated with the colors of the palette, including alpha. - This field may not be allocated directly, use lodepng_color_mode_init first, - then lodepng_palette_add per color to correctly initialize it (to ensure size - of exactly 1024 bytes). - - The alpha channels must be set as well, set them to 255 for opaque images. - - When decoding, with the default settings you can ignore this palette, since - LodePNG already fills the palette colors in the pixels of the raw RGBA output, - but when decoding to the original PNG color mode it is needed to reconstruct - the colors. - - The palette is only supported for color type 3. - */ - unsigned char* palette; /*palette in RGBARGBA... order. Must be either 0, or when allocated must have 1024 bytes*/ - size_t palettesize; /*palette size in number of colors (amount of used bytes is 4 * palettesize)*/ - - /* - transparent color key (tRNS) - - This color uses the same bit depth as the bitdepth value in this struct, which can be 1-bit to 16-bit. - For grayscale PNGs, r, g and b will all 3 be set to the same. - - When decoding, by default you can ignore this information, since LodePNG sets - pixels with this key to transparent already in the raw RGBA output. - - The color key is only supported for color types 0 and 2. - */ - unsigned key_defined; /*is a transparent color key given? 0 = false, 1 = true*/ - unsigned key_r; /*red/grayscale component of color key*/ - unsigned key_g; /*green component of color key*/ - unsigned key_b; /*blue component of color key*/ -} LodePNGColorMode; - -/*init, cleanup and copy functions to use with this struct*/ -void lodepng_color_mode_init(LodePNGColorMode* info); -void lodepng_color_mode_cleanup(LodePNGColorMode* info); -/*return value is error code (0 means no error)*/ -unsigned lodepng_color_mode_copy(LodePNGColorMode* dest, const LodePNGColorMode* source); -/* Makes a temporary LodePNGColorMode that does not need cleanup (no palette) */ -LodePNGColorMode lodepng_color_mode_make(LodePNGColorType colortype, unsigned bitdepth); - -void lodepng_palette_clear(LodePNGColorMode* info); -/*add 1 color to the palette*/ -unsigned lodepng_palette_add(LodePNGColorMode* info, - unsigned char r, unsigned char g, unsigned char b, unsigned char a); - -/*get the total amount of bits per pixel, based on colortype and bitdepth in the struct*/ -unsigned lodepng_get_bpp(const LodePNGColorMode* info); -/*get the amount of color channels used, based on colortype in the struct. -If a palette is used, it counts as 1 channel.*/ -unsigned lodepng_get_channels(const LodePNGColorMode* info); -/*is it a grayscale type? (only colortype 0 or 4)*/ -unsigned lodepng_is_greyscale_type(const LodePNGColorMode* info); -/*has it got an alpha channel? (only colortype 2 or 6)*/ -unsigned lodepng_is_alpha_type(const LodePNGColorMode* info); -/*has it got a palette? (only colortype 3)*/ -unsigned lodepng_is_palette_type(const LodePNGColorMode* info); -/*only returns true if there is a palette and there is a value in the palette with alpha < 255. -Loops through the palette to check this.*/ -unsigned lodepng_has_palette_alpha(const LodePNGColorMode* info); -/* -Check if the given color info indicates the possibility of having non-opaque pixels in the PNG image. -Returns true if the image can have translucent or invisible pixels (it still be opaque if it doesn't use such pixels). -Returns false if the image can only have opaque pixels. -In detail, it returns true only if it's a color type with alpha, or has a palette with non-opaque values, -or if "key_defined" is true. -*/ -unsigned lodepng_can_have_alpha(const LodePNGColorMode* info); -/*Returns the byte size of a raw image buffer with given width, height and color mode*/ -size_t lodepng_get_raw_size(unsigned w, unsigned h, const LodePNGColorMode* color); - -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS -/*The information of a Time chunk in PNG.*/ -typedef struct LodePNGTime { - unsigned year; /*2 bytes used (0-65535)*/ - unsigned month; /*1-12*/ - unsigned day; /*1-31*/ - unsigned hour; /*0-23*/ - unsigned minute; /*0-59*/ - unsigned second; /*0-60 (to allow for leap seconds)*/ -} LodePNGTime; -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - -/*Information about the PNG image, except pixels, width and height.*/ -typedef struct LodePNGInfo { - /*header (IHDR), palette (PLTE) and transparency (tRNS) chunks*/ - unsigned compression_method;/*compression method of the original file. Always 0.*/ - unsigned filter_method; /*filter method of the original file*/ - unsigned interlace_method; /*interlace method of the original file: 0=none, 1=Adam7*/ - LodePNGColorMode color; /*color type and bits, palette and transparency of the PNG file*/ - -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - /* - Suggested background color chunk (bKGD) - - This uses the same color mode and bit depth as the PNG (except no alpha channel), - with values truncated to the bit depth in the unsigned integer. - - For grayscale and palette PNGs, the value is stored in background_r. The values - in background_g and background_b are then unused. The decoder will set them - equal to background_r, the encoder ignores them in this case. - - When decoding, you may get these in a different color mode than the one you requested - for the raw pixels: the colortype and bitdepth defined by info_png.color, that is the - ones defined in the header of the PNG image, are used. - - When encoding with auto_convert, you must use the color model defined in info_png.color for - these values. The encoder normally ignores info_png.color when auto_convert is on, but will - use it to interpret these values (and convert copies of them to its chosen color model). - - When encoding, avoid setting this to an expensive color, such as a non-gray value - when the image is gray, or the compression will be worse since it will be forced to - write the PNG with a more expensive color mode (when auto_convert is on). - - The decoder does not use this background color to edit the color of pixels. This is a - completely optional metadata feature. - */ - unsigned background_defined; /*is a suggested background color given?*/ - unsigned background_r; /*red/gray/palette component of suggested background color*/ - unsigned background_g; /*green component of suggested background color*/ - unsigned background_b; /*blue component of suggested background color*/ - - /* - Non-international text chunks (tEXt and zTXt) - - The char** arrays each contain num strings. The actual messages are in - text_strings, while text_keys are keywords that give a short description what - the actual text represents, e.g. Title, Author, Description, or anything else. - - All the string fields below including strings, keys, names and language tags are null terminated. - The PNG specification uses null characters for the keys, names and tags, and forbids null - characters to appear in the main text which is why we can use null termination everywhere here. - - A keyword is minimum 1 character and maximum 79 characters long (plus the - additional null terminator). It's discouraged to use a single line length - longer than 79 characters for texts. - - Don't allocate these text buffers yourself. Use the init/cleanup functions - correctly and use lodepng_add_text and lodepng_clear_text. - - Standard text chunk keywords and strings are encoded using Latin-1. - */ - size_t text_num; /*the amount of texts in these char** buffers (there may be more texts in itext)*/ - char** text_keys; /*the keyword of a text chunk (e.g. "Comment")*/ - char** text_strings; /*the actual text*/ - - /* - International text chunks (iTXt) - Similar to the non-international text chunks, but with additional strings - "langtags" and "transkeys", and the following text encodings are used: - keys: Latin-1, langtags: ASCII, transkeys and strings: UTF-8. - keys must be 1-79 characters (plus the additional null terminator), the other - strings are any length. - */ - size_t itext_num; /*the amount of international texts in this PNG*/ - char** itext_keys; /*the English keyword of the text chunk (e.g. "Comment")*/ - char** itext_langtags; /*language tag for this text's language, ISO/IEC 646 string, e.g. ISO 639 language tag*/ - char** itext_transkeys; /*keyword translated to the international language - UTF-8 string*/ - char** itext_strings; /*the actual international text - UTF-8 string*/ - - /*time chunk (tIME)*/ - unsigned time_defined; /*set to 1 to make the encoder generate a tIME chunk*/ - LodePNGTime time; - - /*phys chunk (pHYs)*/ - unsigned phys_defined; /*if 0, there is no pHYs chunk and the values below are undefined, if 1 else there is one*/ - unsigned phys_x; /*pixels per unit in x direction*/ - unsigned phys_y; /*pixels per unit in y direction*/ - unsigned phys_unit; /*may be 0 (unknown unit) or 1 (metre)*/ - - /* - Color profile related chunks: gAMA, cHRM, sRGB, iCPP, sBIT - - LodePNG does not apply any color conversions on pixels in the encoder or decoder and does not interpret these color - profile values. It merely passes on the information. If you wish to use color profiles and convert colors, please - use these values with a color management library. - - See the PNG, ICC and sRGB specifications for more information about the meaning of these values. - */ - - /* gAMA chunk: optional, overridden by sRGB or iCCP if those are present. */ - unsigned gama_defined; /* Whether a gAMA chunk is present (0 = not present, 1 = present). */ - unsigned gama_gamma; /* Gamma exponent times 100000 */ - - /* cHRM chunk: optional, overridden by sRGB or iCCP if those are present. */ - unsigned chrm_defined; /* Whether a cHRM chunk is present (0 = not present, 1 = present). */ - unsigned chrm_white_x; /* White Point x times 100000 */ - unsigned chrm_white_y; /* White Point y times 100000 */ - unsigned chrm_red_x; /* Red x times 100000 */ - unsigned chrm_red_y; /* Red y times 100000 */ - unsigned chrm_green_x; /* Green x times 100000 */ - unsigned chrm_green_y; /* Green y times 100000 */ - unsigned chrm_blue_x; /* Blue x times 100000 */ - unsigned chrm_blue_y; /* Blue y times 100000 */ - - /* - sRGB chunk: optional. May not appear at the same time as iCCP. - If gAMA is also present gAMA must contain value 45455. - If cHRM is also present cHRM must contain respectively 31270,32900,64000,33000,30000,60000,15000,6000. - */ - unsigned srgb_defined; /* Whether an sRGB chunk is present (0 = not present, 1 = present). */ - unsigned srgb_intent; /* Rendering intent: 0=perceptual, 1=rel. colorimetric, 2=saturation, 3=abs. colorimetric */ - - /* - iCCP chunk: optional. May not appear at the same time as sRGB. - - LodePNG does not parse or use the ICC profile (except its color space header field for an edge case), a - separate library to handle the ICC data (not included in LodePNG) format is needed to use it for color - management and conversions. - - For encoding, if iCCP is present, gAMA and cHRM are recommended to be added as well with values that match the ICC - profile as closely as possible, if you wish to do this you should provide the correct values for gAMA and cHRM and - enable their '_defined' flags since LodePNG will not automatically compute them from the ICC profile. - - For encoding, the ICC profile is required by the PNG specification to be an "RGB" profile for non-gray - PNG color types and a "GRAY" profile for gray PNG color types. If you disable auto_convert, you must ensure - the ICC profile type matches your requested color type, else the encoder gives an error. If auto_convert is - enabled (the default), and the ICC profile is not a good match for the pixel data, this will result in an encoder - error if the pixel data has non-gray pixels for a GRAY profile, or a silent less-optimal compression of the pixel - data if the pixels could be encoded as grayscale but the ICC profile is RGB. - - To avoid this do not set an ICC profile in the image unless there is a good reason for it, and when doing so - make sure you compute it carefully to avoid the above problems. - */ - unsigned iccp_defined; /* Whether an iCCP chunk is present (0 = not present, 1 = present). */ - char* iccp_name; /* Null terminated string with profile name, 1-79 bytes */ - /* - The ICC profile in iccp_profile_size bytes. - Don't allocate this buffer yourself. Use the init/cleanup functions - correctly and use lodepng_set_icc and lodepng_clear_icc. - */ - unsigned char* iccp_profile; - unsigned iccp_profile_size; /* The size of iccp_profile in bytes */ - - /* - sBIT chunk: significant bits. Optional metadata, only set this if needed. - - If defined, these values give the bit depth of the original data. Since PNG only stores 1, 2, 4, 8 or 16-bit - per channel data, the significant bits value can be used to indicate the original encoded data has another - sample depth, such as 10 or 12. - - Encoders using this value, when storing the pixel data, should use the most significant bits - of the data to store the original bits, and use a good sample depth scaling method such as - "left bit replication" to fill in the least significant bits, rather than fill zeroes. - - Decoders using this value, if able to work with data that's e.g. 10-bit or 12-bit, should right - shift the data to go back to the original bit depth, but decoders are also allowed to ignore - sbit and work e.g. with the 8-bit or 16-bit data from the PNG directly, since thanks - to the encoder contract, the values encoded in PNG are in valid range for the PNG bit depth. - - For grayscale images, sbit_g and sbit_b are not used, and for images that don't use color - type RGBA or grayscale+alpha, sbit_a is not used (it's not used even for palette images with - translucent palette values, or images with color key). The values that are used must be - greater than zero and smaller than or equal to the PNG bit depth. - - The color type from the header in the PNG image defines these used and unused fields: if - decoding with a color mode conversion, such as always decoding to RGBA, this metadata still - only uses the color type of the original PNG, and may e.g. lack the alpha channel info - if the PNG was RGB. When encoding with auto_convert (as well as without), also always the - color model defined in info_png.color determines this. - - NOTE: enabling sbit can hurt compression, because the encoder can then not always use - auto_convert to choose a more optimal color mode for the data, because the PNG format has - strict requirements for the allowed sbit values in combination with color modes. - For example, setting these fields to 10-bit will force the encoder to keep using a 16-bit per channel - color mode, even if the pixel data would in fact fit in a more efficient 8-bit mode. - */ - unsigned sbit_defined; /*is significant bits given? if not, the values below are unused*/ - unsigned sbit_r; /*red or gray component of significant bits*/ - unsigned sbit_g; /*green component of significant bits*/ - unsigned sbit_b; /*blue component of significant bits*/ - unsigned sbit_a; /*alpha component of significant bits*/ - - /* End of color profile related chunks */ - - - /* - unknown chunks: chunks not known by LodePNG, passed on byte for byte. - - There are 3 buffers, one for each position in the PNG where unknown chunks can appear. - Each buffer contains all unknown chunks for that position consecutively. - The 3 positions are: - 0: between IHDR and PLTE, 1: between PLTE and IDAT, 2: between IDAT and IEND. - - For encoding, do not store critical chunks or known chunks that are enabled with a "_defined" flag - above in here, since the encoder will blindly follow this and could then encode an invalid PNG file - (such as one with two IHDR chunks or the disallowed combination of sRGB with iCCP). But do use - this if you wish to store an ancillary chunk that is not supported by LodePNG (such as sPLT or hIST), - or any non-standard PNG chunk. - - Do not allocate or traverse this data yourself. Use the chunk traversing functions declared - later, such as lodepng_chunk_next and lodepng_chunk_append, to read/write this struct. - */ - unsigned char* unknown_chunks_data[3]; - size_t unknown_chunks_size[3]; /*size in bytes of the unknown chunks, given for protection*/ -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ -} LodePNGInfo; - -/*init, cleanup and copy functions to use with this struct*/ -void lodepng_info_init(LodePNGInfo* info); -void lodepng_info_cleanup(LodePNGInfo* info); -/*return value is error code (0 means no error)*/ -unsigned lodepng_info_copy(LodePNGInfo* dest, const LodePNGInfo* source); - -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS -unsigned lodepng_add_text(LodePNGInfo* info, const char* key, const char* str); /*push back both texts at once*/ -void lodepng_clear_text(LodePNGInfo* info); /*use this to clear the texts again after you filled them in*/ - -unsigned lodepng_add_itext(LodePNGInfo* info, const char* key, const char* langtag, - const char* transkey, const char* str); /*push back the 4 texts of 1 chunk at once*/ -void lodepng_clear_itext(LodePNGInfo* info); /*use this to clear the itexts again after you filled them in*/ - -/*replaces if exists*/ -unsigned lodepng_set_icc(LodePNGInfo* info, const char* name, const unsigned char* profile, unsigned profile_size); -void lodepng_clear_icc(LodePNGInfo* info); /*use this to clear the texts again after you filled them in*/ -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - -/* -Converts raw buffer from one color type to another color type, based on -LodePNGColorMode structs to describe the input and output color type. -See the reference manual at the end of this header file to see which color conversions are supported. -return value = LodePNG error code (0 if all went ok, an error if the conversion isn't supported) -The out buffer must have size (w * h * bpp + 7) / 8, where bpp is the bits per pixel -of the output color type (lodepng_get_bpp). -For < 8 bpp images, there should not be padding bits at the end of scanlines. -For 16-bit per channel colors, uses big endian format like PNG does. -Return value is LodePNG error code -*/ -unsigned lodepng_convert(unsigned char* out, const unsigned char* in, - const LodePNGColorMode* mode_out, const LodePNGColorMode* mode_in, - unsigned w, unsigned h); - -#ifdef LODEPNG_COMPILE_DECODER -/* -Settings for the decoder. This contains settings for the PNG and the Zlib -decoder, but not the Info settings from the Info structs. -*/ -typedef struct LodePNGDecoderSettings { - LodePNGDecompressSettings zlibsettings; /*in here is the setting to ignore Adler32 checksums*/ - - /* Check LodePNGDecompressSettings for more ignorable errors such as ignore_adler32 */ - unsigned ignore_crc; /*ignore CRC checksums*/ - unsigned ignore_critical; /*ignore unknown critical chunks*/ - unsigned ignore_end; /*ignore issues at end of file if possible (missing IEND chunk, too large chunk, ...)*/ - /* TODO: make a system involving warnings with levels and a strict mode instead. Other potentially recoverable - errors: srgb rendering intent value, size of content of ancillary chunks, more than 79 characters for some - strings, placement/combination rules for ancillary chunks, crc of unknown chunks, allowed characters - in string keys, etc... */ - - unsigned color_convert; /*whether to convert the PNG to the color type you want. Default: yes*/ - -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - unsigned read_text_chunks; /*if false but remember_unknown_chunks is true, they're stored in the unknown chunks*/ - - /*store all bytes from unknown chunks in the LodePNGInfo (off by default, useful for a png editor)*/ - unsigned remember_unknown_chunks; - - /* maximum size for decompressed text chunks. If a text chunk's text is larger than this, an error is returned, - unless reading text chunks is disabled or this limit is set higher or disabled. Set to 0 to allow any size. - By default it is a value that prevents unreasonably large strings from hogging memory. */ - size_t max_text_size; - - /* maximum size for compressed ICC chunks. If the ICC profile is larger than this, an error will be returned. Set to - 0 to allow any size. By default this is a value that prevents ICC profiles that would be much larger than any - legitimate profile could be to hog memory. */ - size_t max_icc_size; -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ -} LodePNGDecoderSettings; - -void lodepng_decoder_settings_init(LodePNGDecoderSettings* settings); -#endif /*LODEPNG_COMPILE_DECODER*/ - -#ifdef LODEPNG_COMPILE_ENCODER -/*automatically use color type with less bits per pixel if losslessly possible. Default: AUTO*/ -typedef enum LodePNGFilterStrategy { - /*every filter at zero*/ - LFS_ZERO = 0, - /*every filter at 1, 2, 3 or 4 (paeth), unlike LFS_ZERO not a good choice, but for testing*/ - LFS_ONE = 1, - LFS_TWO = 2, - LFS_THREE = 3, - LFS_FOUR = 4, - /*Use filter that gives minimum sum, as described in the official PNG filter heuristic.*/ - LFS_MINSUM, - /*Use the filter type that gives smallest Shannon entropy for this scanline. Depending - on the image, this is better or worse than minsum.*/ - LFS_ENTROPY, - /* - Brute-force-search PNG filters by compressing each filter for each scanline. - Experimental, very slow, and only rarely gives better compression than MINSUM. - */ - LFS_BRUTE_FORCE, - /*use predefined_filters buffer: you specify the filter type for each scanline*/ - LFS_PREDEFINED -} LodePNGFilterStrategy; - -/*Gives characteristics about the integer RGBA colors of the image (count, alpha channel usage, bit depth, ...), -which helps decide which color model to use for encoding. -Used internally by default if "auto_convert" is enabled. Public because it's useful for custom algorithms.*/ -typedef struct LodePNGColorStats { - unsigned colored; /*not grayscale*/ - unsigned key; /*image is not opaque and color key is possible instead of full alpha*/ - unsigned short key_r; /*key values, always as 16-bit, in 8-bit case the byte is duplicated, e.g. 65535 means 255*/ - unsigned short key_g; - unsigned short key_b; - unsigned alpha; /*image is not opaque and alpha channel or alpha palette required*/ - unsigned numcolors; /*amount of colors, up to 257. Not valid if bits == 16 or allow_palette is disabled.*/ - unsigned char palette[1024]; /*Remembers up to the first 256 RGBA colors, in no particular order, only valid when numcolors is valid*/ - unsigned bits; /*bits per channel (not for palette). 1,2 or 4 for grayscale only. 16 if 16-bit per channel required.*/ - size_t numpixels; - - /*user settings for computing/using the stats*/ - unsigned allow_palette; /*default 1. if 0, disallow choosing palette colortype in auto_choose_color, and don't count numcolors*/ - unsigned allow_greyscale; /*default 1. if 0, choose RGB or RGBA even if the image only has gray colors*/ -} LodePNGColorStats; - -void lodepng_color_stats_init(LodePNGColorStats* stats); - -/*Get a LodePNGColorStats of the image. The stats must already have been inited. -Returns error code (e.g. alloc fail) or 0 if ok.*/ -unsigned lodepng_compute_color_stats(LodePNGColorStats* stats, - const unsigned char* image, unsigned w, unsigned h, - const LodePNGColorMode* mode_in); - -/*Settings for the encoder.*/ -typedef struct LodePNGEncoderSettings { - LodePNGCompressSettings zlibsettings; /*settings for the zlib encoder, such as window size, ...*/ - - unsigned auto_convert; /*automatically choose output PNG color type. Default: true*/ - - /*If true, follows the official PNG heuristic: if the PNG uses a palette or lower than - 8 bit depth, set all filters to zero. Otherwise use the filter_strategy. Note that to - completely follow the official PNG heuristic, filter_palette_zero must be true and - filter_strategy must be LFS_MINSUM*/ - unsigned filter_palette_zero; - /*Which filter strategy to use when not using zeroes due to filter_palette_zero. - Set filter_palette_zero to 0 to ensure always using your chosen strategy. Default: LFS_MINSUM*/ - LodePNGFilterStrategy filter_strategy; - /*used if filter_strategy is LFS_PREDEFINED. In that case, this must point to a buffer with - the same length as the amount of scanlines in the image, and each value must <= 5. You - have to cleanup this buffer, LodePNG will never free it. Don't forget that filter_palette_zero - must be set to 0 to ensure this is also used on palette or low bitdepth images.*/ - const unsigned char* predefined_filters; - - /*force creating a PLTE chunk if colortype is 2 or 6 (= a suggested palette). - If colortype is 3, PLTE is always created. If color type is explicitely set - to a grayscale type (1 or 4), this is not done and is ignored. If enabling this, - a palette must be present in the info_png. - NOTE: enabling this may worsen compression if auto_convert is used to choose - optimal color mode, because it cannot use grayscale color modes in this case*/ - unsigned force_palette; -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - /*add LodePNG identifier and version as a text chunk, for debugging*/ - unsigned add_id; - /*encode text chunks as zTXt chunks instead of tEXt chunks, and use compression in iTXt chunks*/ - unsigned text_compression; -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ -} LodePNGEncoderSettings; - -void lodepng_encoder_settings_init(LodePNGEncoderSettings* settings); -#endif /*LODEPNG_COMPILE_ENCODER*/ - - -#if defined(LODEPNG_COMPILE_DECODER) || defined(LODEPNG_COMPILE_ENCODER) -/*The settings, state and information for extended encoding and decoding.*/ -typedef struct LodePNGState { -#ifdef LODEPNG_COMPILE_DECODER - LodePNGDecoderSettings decoder; /*the decoding settings*/ -#endif /*LODEPNG_COMPILE_DECODER*/ -#ifdef LODEPNG_COMPILE_ENCODER - LodePNGEncoderSettings encoder; /*the encoding settings*/ -#endif /*LODEPNG_COMPILE_ENCODER*/ - LodePNGColorMode info_raw; /*specifies the format in which you would like to get the raw pixel buffer*/ - LodePNGInfo info_png; /*info of the PNG image obtained after decoding*/ - unsigned error; -} LodePNGState; - -/*init, cleanup and copy functions to use with this struct*/ -void lodepng_state_init(LodePNGState* state); -void lodepng_state_cleanup(LodePNGState* state); -void lodepng_state_copy(LodePNGState* dest, const LodePNGState* source); -#endif /* defined(LODEPNG_COMPILE_DECODER) || defined(LODEPNG_COMPILE_ENCODER) */ - -#ifdef LODEPNG_COMPILE_DECODER -/* -Same as lodepng_decode_memory, but uses a LodePNGState to allow custom settings and -getting much more information about the PNG image and color mode. -*/ -unsigned lodepng_decode(unsigned char** out, unsigned* w, unsigned* h, - LodePNGState* state, - const unsigned char* in, size_t insize); - -/* -Read the PNG header, but not the actual data. This returns only the information -that is in the IHDR chunk of the PNG, such as width, height and color type. The -information is placed in the info_png field of the LodePNGState. -*/ -unsigned lodepng_inspect(unsigned* w, unsigned* h, - LodePNGState* state, - const unsigned char* in, size_t insize); -#endif /*LODEPNG_COMPILE_DECODER*/ - -/* -Reads one metadata chunk (other than IHDR, which is handled by lodepng_inspect) -of the PNG file and outputs what it read in the state. Returns error code on failure. -Use lodepng_inspect first with a new state, then e.g. lodepng_chunk_find_const -to find the desired chunk type, and if non null use lodepng_inspect_chunk (with -chunk_pointer - start_of_file as pos). -Supports most metadata chunks from the PNG standard (gAMA, bKGD, tEXt, ...). -Ignores unsupported, unknown, non-metadata or IHDR chunks (without error). -Requirements: &in[pos] must point to start of a chunk, must use regular -lodepng_inspect first since format of most other chunks depends on IHDR, and if -there is a PLTE chunk, that one must be inspected before tRNS or bKGD. -*/ -unsigned lodepng_inspect_chunk(LodePNGState* state, size_t pos, - const unsigned char* in, size_t insize); - -#ifdef LODEPNG_COMPILE_ENCODER -/*This function allocates the out buffer with standard malloc and stores the size in *outsize.*/ -unsigned lodepng_encode(unsigned char** out, size_t* outsize, - const unsigned char* image, unsigned w, unsigned h, - LodePNGState* state); -#endif /*LODEPNG_COMPILE_ENCODER*/ - -/* -The lodepng_chunk functions are normally not needed, except to traverse the -unknown chunks stored in the LodePNGInfo struct, or add new ones to it. -It also allows traversing the chunks of an encoded PNG file yourself. - -The chunk pointer always points to the beginning of the chunk itself, that is -the first byte of the 4 length bytes. - -In the PNG file format, chunks have the following format: --4 bytes length: length of the data of the chunk in bytes (chunk itself is 12 bytes longer) --4 bytes chunk type (ASCII a-z,A-Z only, see below) --length bytes of data (may be 0 bytes if length was 0) --4 bytes of CRC, computed on chunk name + data - -The first chunk starts at the 8th byte of the PNG file, the entire rest of the file -exists out of concatenated chunks with the above format. - -PNG standard chunk ASCII naming conventions: --First byte: uppercase = critical, lowercase = ancillary --Second byte: uppercase = public, lowercase = private --Third byte: must be uppercase --Fourth byte: uppercase = unsafe to copy, lowercase = safe to copy -*/ - -/* -Gets the length of the data of the chunk. Total chunk length has 12 bytes more. -There must be at least 4 bytes to read from. If the result value is too large, -it may be corrupt data. -*/ -unsigned lodepng_chunk_length(const unsigned char* chunk); - -/*puts the 4-byte type in null terminated string*/ -void lodepng_chunk_type(char type[5], const unsigned char* chunk); - -/*check if the type is the given type*/ -unsigned char lodepng_chunk_type_equals(const unsigned char* chunk, const char* type); - -/*0: it's one of the critical chunk types, 1: it's an ancillary chunk (see PNG standard)*/ -unsigned char lodepng_chunk_ancillary(const unsigned char* chunk); - -/*0: public, 1: private (see PNG standard)*/ -unsigned char lodepng_chunk_private(const unsigned char* chunk); - -/*0: the chunk is unsafe to copy, 1: the chunk is safe to copy (see PNG standard)*/ -unsigned char lodepng_chunk_safetocopy(const unsigned char* chunk); - -/*get pointer to the data of the chunk, where the input points to the header of the chunk*/ -unsigned char* lodepng_chunk_data(unsigned char* chunk); -const unsigned char* lodepng_chunk_data_const(const unsigned char* chunk); - -/*returns 0 if the crc is correct, 1 if it's incorrect (0 for OK as usual!)*/ -unsigned lodepng_chunk_check_crc(const unsigned char* chunk); - -/*generates the correct CRC from the data and puts it in the last 4 bytes of the chunk*/ -void lodepng_chunk_generate_crc(unsigned char* chunk); - -/* -Iterate to next chunks, allows iterating through all chunks of the PNG file. -Input must be at the beginning of a chunk (result of a previous lodepng_chunk_next call, -or the 8th byte of a PNG file which always has the first chunk), or alternatively may -point to the first byte of the PNG file (which is not a chunk but the magic header, the -function will then skip over it and return the first real chunk). -Will output pointer to the start of the next chunk, or at or beyond end of the file if there -is no more chunk after this or possibly if the chunk is corrupt. -Start this process at the 8th byte of the PNG file. -In a non-corrupt PNG file, the last chunk should have name "IEND". -*/ -unsigned char* lodepng_chunk_next(unsigned char* chunk, unsigned char* end); -const unsigned char* lodepng_chunk_next_const(const unsigned char* chunk, const unsigned char* end); - -/*Finds the first chunk with the given type in the range [chunk, end), or returns NULL if not found.*/ -unsigned char* lodepng_chunk_find(unsigned char* chunk, unsigned char* end, const char type[5]); -const unsigned char* lodepng_chunk_find_const(const unsigned char* chunk, const unsigned char* end, const char type[5]); - -/* -Appends chunk to the data in out. The given chunk should already have its chunk header. -The out variable and outsize are updated to reflect the new reallocated buffer. -Returns error code (0 if it went ok) -*/ -unsigned lodepng_chunk_append(unsigned char** out, size_t* outsize, const unsigned char* chunk); - -/* -Appends new chunk to out. The chunk to append is given by giving its length, type -and data separately. The type is a 4-letter string. -The out variable and outsize are updated to reflect the new reallocated buffer. -Returne error code (0 if it went ok) -*/ -unsigned lodepng_chunk_create(unsigned char** out, size_t* outsize, unsigned length, - const char* type, const unsigned char* data); - - -/*Calculate CRC32 of buffer*/ -unsigned lodepng_crc32(const unsigned char* buf, size_t len); -#endif /*LODEPNG_COMPILE_PNG*/ - - -#ifdef LODEPNG_COMPILE_ZLIB -/* -This zlib part can be used independently to zlib compress and decompress a -buffer. It cannot be used to create gzip files however, and it only supports the -part of zlib that is required for PNG, it does not support dictionaries. -*/ - -#ifdef LODEPNG_COMPILE_DECODER -/*Inflate a buffer. Inflate is the decompression step of deflate. Out buffer must be freed after use.*/ -unsigned lodepng_inflate(unsigned char** out, size_t* outsize, - const unsigned char* in, size_t insize, - const LodePNGDecompressSettings* settings); - -/* -Decompresses Zlib data. Reallocates the out buffer and appends the data. The -data must be according to the zlib specification. -Either, *out must be NULL and *outsize must be 0, or, *out must be a valid -buffer and *outsize its size in bytes. out must be freed by user after usage. -*/ -unsigned lodepng_zlib_decompress(unsigned char** out, size_t* outsize, - const unsigned char* in, size_t insize, - const LodePNGDecompressSettings* settings); -#endif /*LODEPNG_COMPILE_DECODER*/ - -#ifdef LODEPNG_COMPILE_ENCODER -/* -Compresses data with Zlib. Reallocates the out buffer and appends the data. -Zlib adds a small header and trailer around the deflate data. -The data is output in the format of the zlib specification. -Either, *out must be NULL and *outsize must be 0, or, *out must be a valid -buffer and *outsize its size in bytes. out must be freed by user after usage. -*/ -unsigned lodepng_zlib_compress(unsigned char** out, size_t* outsize, - const unsigned char* in, size_t insize, - const LodePNGCompressSettings* settings); - -/* -Find length-limited Huffman code for given frequencies. This function is in the -public interface only for tests, it's used internally by lodepng_deflate. -*/ -unsigned lodepng_huffman_code_lengths(unsigned* lengths, const unsigned* frequencies, - size_t numcodes, unsigned maxbitlen); - -/*Compress a buffer with deflate. See RFC 1951. Out buffer must be freed after use.*/ -unsigned lodepng_deflate(unsigned char** out, size_t* outsize, - const unsigned char* in, size_t insize, - const LodePNGCompressSettings* settings); - -#endif /*LODEPNG_COMPILE_ENCODER*/ -#endif /*LODEPNG_COMPILE_ZLIB*/ - -#ifdef LODEPNG_COMPILE_DISK -/* -Load a file from disk into buffer. The function allocates the out buffer, and -after usage you should free it. -out: output parameter, contains pointer to loaded buffer. -outsize: output parameter, size of the allocated out buffer -filename: the path to the file to load -return value: error code (0 means ok) - -NOTE: Wide-character filenames are not supported, you can use an external method -to handle such files and decode in-memory. -*/ -unsigned lodepng_load_file(unsigned char** out, size_t* outsize, const char* filename); - -/* -Save a file from buffer to disk. Warning, if it exists, this function overwrites -the file without warning! -buffer: the buffer to write -buffersize: size of the buffer to write -filename: the path to the file to save to -return value: error code (0 means ok) - -NOTE: Wide-character filenames are not supported, you can use an external method -to handle such files and encode in-memory -*/ -unsigned lodepng_save_file(const unsigned char* buffer, size_t buffersize, const char* filename); -#endif /*LODEPNG_COMPILE_DISK*/ - -#ifdef LODEPNG_COMPILE_CPP -/* The LodePNG C++ wrapper uses std::vectors instead of manually allocated memory buffers. */ -namespace lodepng { -#ifdef LODEPNG_COMPILE_PNG -class State : public LodePNGState { - public: - State(); - State(const State& other); - ~State(); - State& operator=(const State& other); -}; - -#ifdef LODEPNG_COMPILE_DECODER -/* Same as other lodepng::decode, but using a State for more settings and information. */ -unsigned decode(std::vector& out, unsigned& w, unsigned& h, - State& state, - const unsigned char* in, size_t insize); -unsigned decode(std::vector& out, unsigned& w, unsigned& h, - State& state, - const std::vector& in); -#endif /*LODEPNG_COMPILE_DECODER*/ - -#ifdef LODEPNG_COMPILE_ENCODER -/* Same as other lodepng::encode, but using a State for more settings and information. */ -unsigned encode(std::vector& out, - const unsigned char* in, unsigned w, unsigned h, - State& state); -unsigned encode(std::vector& out, - const std::vector& in, unsigned w, unsigned h, - State& state); -#endif /*LODEPNG_COMPILE_ENCODER*/ - -#ifdef LODEPNG_COMPILE_DISK -/* -Load a file from disk into an std::vector. -return value: error code (0 means ok) - -NOTE: Wide-character filenames are not supported, you can use an external method -to handle such files and decode in-memory -*/ -unsigned load_file(std::vector& buffer, const std::string& filename); - -/* -Save the binary data in an std::vector to a file on disk. The file is overwritten -without warning. - -NOTE: Wide-character filenames are not supported, you can use an external method -to handle such files and encode in-memory -*/ -unsigned save_file(const std::vector& buffer, const std::string& filename); -#endif /* LODEPNG_COMPILE_DISK */ -#endif /* LODEPNG_COMPILE_PNG */ - -#ifdef LODEPNG_COMPILE_ZLIB -#ifdef LODEPNG_COMPILE_DECODER -/* Zlib-decompress an unsigned char buffer */ -unsigned decompress(std::vector& out, const unsigned char* in, size_t insize, - const LodePNGDecompressSettings& settings = lodepng_default_decompress_settings); - -/* Zlib-decompress an std::vector */ -unsigned decompress(std::vector& out, const std::vector& in, - const LodePNGDecompressSettings& settings = lodepng_default_decompress_settings); -#endif /* LODEPNG_COMPILE_DECODER */ - -#ifdef LODEPNG_COMPILE_ENCODER -/* Zlib-compress an unsigned char buffer */ -unsigned compress(std::vector& out, const unsigned char* in, size_t insize, - const LodePNGCompressSettings& settings = lodepng_default_compress_settings); - -/* Zlib-compress an std::vector */ -unsigned compress(std::vector& out, const std::vector& in, - const LodePNGCompressSettings& settings = lodepng_default_compress_settings); -#endif /* LODEPNG_COMPILE_ENCODER */ -#endif /* LODEPNG_COMPILE_ZLIB */ -} /* namespace lodepng */ -#endif /*LODEPNG_COMPILE_CPP*/ - -/* -TODO: -[.] test if there are no memory leaks or security exploits - done a lot but needs to be checked often -[.] check compatibility with various compilers - done but needs to be redone for every newer version -[X] converting color to 16-bit per channel types -[X] support color profile chunk types (but never let them touch RGB values by default) -[ ] support all public PNG chunk types (almost done except sPLT and hIST) -[ ] make sure encoder generates no chunks with size > (2^31)-1 -[ ] partial decoding (stream processing) -[X] let the "isFullyOpaque" function check color keys and transparent palettes too -[X] better name for the variables "codes", "codesD", "codelengthcodes", "clcl" and "lldl" -[ ] allow treating some errors like warnings, when image is recoverable (e.g. 69, 57, 58) -[ ] make warnings like: oob palette, checksum fail, data after iend, wrong/unknown crit chunk, no null terminator in text, ... -[ ] error messages with line numbers (and version) -[ ] errors in state instead of as return code? -[ ] new errors/warnings like suspiciously big decompressed ztxt or iccp chunk -[ ] let the C++ wrapper catch exceptions coming from the standard library and return LodePNG error codes -[ ] allow user to provide custom color conversion functions, e.g. for premultiplied alpha, padding bits or not, ... -[ ] allow user to give data (void*) to custom allocator -[X] provide alternatives for C library functions not present on some platforms (memcpy, ...) -*/ - -#endif /*LODEPNG_H inclusion guard*/ - -/* -LodePNG Documentation ---------------------- - -0. table of contents --------------------- - - 1. about - 1.1. supported features - 1.2. features not supported - 2. C and C++ version - 3. security - 4. decoding - 5. encoding - 6. color conversions - 6.1. PNG color types - 6.2. color conversions - 6.3. padding bits - 6.4. A note about 16-bits per channel and endianness - 7. error values - 8. chunks and PNG editing - 9. compiler support - 10. examples - 10.1. decoder C++ example - 10.2. decoder C example - 11. state settings reference - 12. changes - 13. contact information - - -1. about --------- - -PNG is a file format to store raster images losslessly with good compression, -supporting different color types and alpha channel. - -LodePNG is a PNG codec according to the Portable Network Graphics (PNG) -Specification (Second Edition) - W3C Recommendation 10 November 2003. - -The specifications used are: - -*) Portable Network Graphics (PNG) Specification (Second Edition): - http://www.w3.org/TR/2003/REC-PNG-20031110 -*) RFC 1950 ZLIB Compressed Data Format version 3.3: - http://www.gzip.org/zlib/rfc-zlib.html -*) RFC 1951 DEFLATE Compressed Data Format Specification ver 1.3: - http://www.gzip.org/zlib/rfc-deflate.html - -The most recent version of LodePNG can currently be found at -http://lodev.org/lodepng/ - -LodePNG works both in C (ISO C90) and C++, with a C++ wrapper that adds -extra functionality. - -LodePNG exists out of two files: --lodepng.h: the header file for both C and C++ --lodepng.c(pp): give it the name lodepng.c or lodepng.cpp (or .cc) depending on your usage - -If you want to start using LodePNG right away without reading this doc, get the -examples from the LodePNG website to see how to use it in code, or check the -smaller examples in chapter 13 here. - -LodePNG is simple but only supports the basic requirements. To achieve -simplicity, the following design choices were made: There are no dependencies -on any external library. There are functions to decode and encode a PNG with -a single function call, and extended versions of these functions taking a -LodePNGState struct allowing to specify or get more information. By default -the colors of the raw image are always RGB or RGBA, no matter what color type -the PNG file uses. To read and write files, there are simple functions to -convert the files to/from buffers in memory. - -This all makes LodePNG suitable for loading textures in games, demos and small -programs, ... It's less suitable for full fledged image editors, loading PNGs -over network (it requires all the image data to be available before decoding can -begin), life-critical systems, ... - -1.1. supported features ------------------------ - -The following features are supported by the decoder: - -*) decoding of PNGs with any color type, bit depth and interlace mode, to a 24- or 32-bit color raw image, - or the same color type as the PNG -*) encoding of PNGs, from any raw image to 24- or 32-bit color, or the same color type as the raw image -*) Adam7 interlace and deinterlace for any color type -*) loading the image from harddisk or decoding it from a buffer from other sources than harddisk -*) support for alpha channels, including RGBA color model, translucent palettes and color keying -*) zlib decompression (inflate) -*) zlib compression (deflate) -*) CRC32 and ADLER32 checksums -*) colorimetric color profile conversions: currently experimentally available in lodepng_util.cpp only, - plus alternatively ability to pass on chroma/gamma/ICC profile information to other color management system. -*) handling of unknown chunks, allowing making a PNG editor that stores custom and unknown chunks. -*) the following chunks are supported by both encoder and decoder: - IHDR: header information - PLTE: color palette - IDAT: pixel data - IEND: the final chunk - tRNS: transparency for palettized images - tEXt: textual information - zTXt: compressed textual information - iTXt: international textual information - bKGD: suggested background color - pHYs: physical dimensions - tIME: modification time - cHRM: RGB chromaticities - gAMA: RGB gamma correction - iCCP: ICC color profile - sRGB: rendering intent - sBIT: significant bits - -1.2. features not supported ---------------------------- - -The following features are not (yet) supported: - -*) some features needed to make a conformant PNG-Editor might be still missing. -*) partial loading/stream processing. All data must be available and is processed in one call. -*) The hIST and sPLT public chunks are not (yet) supported but treated as unknown chunks - - -2. C and C++ version --------------------- - -The C version uses buffers allocated with alloc that you need to free() -yourself. You need to use init and cleanup functions for each struct whenever -using a struct from the C version to avoid exploits and memory leaks. - -The C++ version has extra functions with std::vectors in the interface and the -lodepng::State class which is a LodePNGState with constructor and destructor. - -These files work without modification for both C and C++ compilers because all -the additional C++ code is in "#ifdef __cplusplus" blocks that make C-compilers -ignore it, and the C code is made to compile both with strict ISO C90 and C++. - -To use the C++ version, you need to rename the source file to lodepng.cpp -(instead of lodepng.c), and compile it with a C++ compiler. - -To use the C version, you need to rename the source file to lodepng.c (instead -of lodepng.cpp), and compile it with a C compiler. - - -3. Security ------------ - -Even if carefully designed, it's always possible that LodePNG contains possible -exploits. If you discover one, please let me know, and it will be fixed. - -When using LodePNG, care has to be taken with the C version of LodePNG, as well -as the C-style structs when working with C++. The following conventions are used -for all C-style structs: - --if a struct has a corresponding init function, always call the init function when making a new one --if a struct has a corresponding cleanup function, call it before the struct disappears to avoid memory leaks --if a struct has a corresponding copy function, use the copy function instead of "=". - The destination must also be inited already. - - -4. Decoding ------------ - -Decoding converts a PNG compressed image to a raw pixel buffer. - -Most documentation on using the decoder is at its declarations in the header -above. For C, simple decoding can be done with functions such as -lodepng_decode32, and more advanced decoding can be done with the struct -LodePNGState and lodepng_decode. For C++, all decoding can be done with the -various lodepng::decode functions, and lodepng::State can be used for advanced -features. - -When using the LodePNGState, it uses the following fields for decoding: -*) LodePNGInfo info_png: it stores extra information about the PNG (the input) in here -*) LodePNGColorMode info_raw: here you can say what color mode of the raw image (the output) you want to get -*) LodePNGDecoderSettings decoder: you can specify a few extra settings for the decoder to use - -LodePNGInfo info_png --------------------- - -After decoding, this contains extra information of the PNG image, except the actual -pixels, width and height because these are already gotten directly from the decoder -functions. - -It contains for example the original color type of the PNG image, text comments, -suggested background color, etc... More details about the LodePNGInfo struct are -at its declaration documentation. - -LodePNGColorMode info_raw -------------------------- - -When decoding, here you can specify which color type you want -the resulting raw image to be. If this is different from the colortype of the -PNG, then the decoder will automatically convert the result. This conversion -always works, except if you want it to convert a color PNG to grayscale or to -a palette with missing colors. - -By default, 32-bit color is used for the result. - -LodePNGDecoderSettings decoder ------------------------------- - -The settings can be used to ignore the errors created by invalid CRC and Adler32 -chunks, and to disable the decoding of tEXt chunks. - -There's also a setting color_convert, true by default. If false, no conversion -is done, the resulting data will be as it was in the PNG (after decompression) -and you'll have to puzzle the colors of the pixels together yourself using the -color type information in the LodePNGInfo. - - -5. Encoding ------------ - -Encoding converts a raw pixel buffer to a PNG compressed image. - -Most documentation on using the encoder is at its declarations in the header -above. For C, simple encoding can be done with functions such as -lodepng_encode32, and more advanced decoding can be done with the struct -LodePNGState and lodepng_encode. For C++, all encoding can be done with the -various lodepng::encode functions, and lodepng::State can be used for advanced -features. - -Like the decoder, the encoder can also give errors. However it gives less errors -since the encoder input is trusted, the decoder input (a PNG image that could -be forged by anyone) is not trusted. - -When using the LodePNGState, it uses the following fields for encoding: -*) LodePNGInfo info_png: here you specify how you want the PNG (the output) to be. -*) LodePNGColorMode info_raw: here you say what color type of the raw image (the input) has -*) LodePNGEncoderSettings encoder: you can specify a few settings for the encoder to use - -LodePNGInfo info_png --------------------- - -When encoding, you use this the opposite way as when decoding: for encoding, -you fill in the values you want the PNG to have before encoding. By default it's -not needed to specify a color type for the PNG since it's automatically chosen, -but it's possible to choose it yourself given the right settings. - -The encoder will not always exactly match the LodePNGInfo struct you give, -it tries as close as possible. Some things are ignored by the encoder. The -encoder uses, for example, the following settings from it when applicable: -colortype and bitdepth, text chunks, time chunk, the color key, the palette, the -background color, the interlace method, unknown chunks, ... - -When encoding to a PNG with colortype 3, the encoder will generate a PLTE chunk. -If the palette contains any colors for which the alpha channel is not 255 (so -there are translucent colors in the palette), it'll add a tRNS chunk. - -LodePNGColorMode info_raw -------------------------- - -You specify the color type of the raw image that you give to the input here, -including a possible transparent color key and palette you happen to be using in -your raw image data. - -By default, 32-bit color is assumed, meaning your input has to be in RGBA -format with 4 bytes (unsigned chars) per pixel. - -LodePNGEncoderSettings encoder ------------------------------- - -The following settings are supported (some are in sub-structs): -*) auto_convert: when this option is enabled, the encoder will -automatically choose the smallest possible color mode (including color key) that -can encode the colors of all pixels without information loss. -*) btype: the block type for LZ77. 0 = uncompressed, 1 = fixed huffman tree, - 2 = dynamic huffman tree (best compression). Should be 2 for proper - compression. -*) use_lz77: whether or not to use LZ77 for compressed block types. Should be - true for proper compression. -*) windowsize: the window size used by the LZ77 encoder (1 - 32768). Has value - 2048 by default, but can be set to 32768 for better, but slow, compression. -*) force_palette: if colortype is 2 or 6, you can make the encoder write a PLTE - chunk if force_palette is true. This can used as suggested palette to convert - to by viewers that don't support more than 256 colors (if those still exist) -*) add_id: add text chunk "Encoder: LodePNG " to the image. -*) text_compression: default 1. If 1, it'll store texts as zTXt instead of tEXt chunks. - zTXt chunks use zlib compression on the text. This gives a smaller result on - large texts but a larger result on small texts (such as a single program name). - It's all tEXt or all zTXt though, there's no separate setting per text yet. - - -6. color conversions --------------------- - -An important thing to note about LodePNG, is that the color type of the PNG, and -the color type of the raw image, are completely independent. By default, when -you decode a PNG, you get the result as a raw image in the color type you want, -no matter whether the PNG was encoded with a palette, grayscale or RGBA color. -And if you encode an image, by default LodePNG will automatically choose the PNG -color type that gives good compression based on the values of colors and amount -of colors in the image. It can be configured to let you control it instead as -well, though. - -To be able to do this, LodePNG does conversions from one color mode to another. -It can convert from almost any color type to any other color type, except the -following conversions: RGB to grayscale is not supported, and converting to a -palette when the palette doesn't have a required color is not supported. This is -not supported on purpose: this is information loss which requires a color -reduction algorithm that is beyond the scope of a PNG encoder (yes, RGB to gray -is easy, but there are multiple ways if you want to give some channels more -weight). - -By default, when decoding, you get the raw image in 32-bit RGBA or 24-bit RGB -color, no matter what color type the PNG has. And by default when encoding, -LodePNG automatically picks the best color model for the output PNG, and expects -the input image to be 32-bit RGBA or 24-bit RGB. So, unless you want to control -the color format of the images yourself, you can skip this chapter. - -6.1. PNG color types --------------------- - -A PNG image can have many color types, ranging from 1-bit color to 64-bit color, -as well as palettized color modes. After the zlib decompression and unfiltering -in the PNG image is done, the raw pixel data will have that color type and thus -a certain amount of bits per pixel. If you want the output raw image after -decoding to have another color type, a conversion is done by LodePNG. - -The PNG specification gives the following color types: - -0: grayscale, bit depths 1, 2, 4, 8, 16 -2: RGB, bit depths 8 and 16 -3: palette, bit depths 1, 2, 4 and 8 -4: grayscale with alpha, bit depths 8 and 16 -6: RGBA, bit depths 8 and 16 - -Bit depth is the amount of bits per pixel per color channel. So the total amount -of bits per pixel is: amount of channels * bitdepth. - -6.2. color conversions ----------------------- - -As explained in the sections about the encoder and decoder, you can specify -color types and bit depths in info_png and info_raw to change the default -behaviour. - -If, when decoding, you want the raw image to be something else than the default, -you need to set the color type and bit depth you want in the LodePNGColorMode, -or the parameters colortype and bitdepth of the simple decoding function. - -If, when encoding, you use another color type than the default in the raw input -image, you need to specify its color type and bit depth in the LodePNGColorMode -of the raw image, or use the parameters colortype and bitdepth of the simple -encoding function. - -If, when encoding, you don't want LodePNG to choose the output PNG color type -but control it yourself, you need to set auto_convert in the encoder settings -to false, and specify the color type you want in the LodePNGInfo of the -encoder (including palette: it can generate a palette if auto_convert is true, -otherwise not). - -If the input and output color type differ (whether user chosen or auto chosen), -LodePNG will do a color conversion, which follows the rules below, and may -sometimes result in an error. - -To avoid some confusion: --the decoder converts from PNG to raw image --the encoder converts from raw image to PNG --the colortype and bitdepth in LodePNGColorMode info_raw, are those of the raw image --the colortype and bitdepth in the color field of LodePNGInfo info_png, are those of the PNG --when encoding, the color type in LodePNGInfo is ignored if auto_convert - is enabled, it is automatically generated instead --when decoding, the color type in LodePNGInfo is set by the decoder to that of the original - PNG image, but it can be ignored since the raw image has the color type you requested instead --if the color type of the LodePNGColorMode and PNG image aren't the same, a conversion - between the color types is done if the color types are supported. If it is not - supported, an error is returned. If the types are the same, no conversion is done. --even though some conversions aren't supported, LodePNG supports loading PNGs from any - colortype and saving PNGs to any colortype, sometimes it just requires preparing - the raw image correctly before encoding. --both encoder and decoder use the same color converter. - -The function lodepng_convert does the color conversion. It is available in the -interface but normally isn't needed since the encoder and decoder already call -it. - -Non supported color conversions: --color to grayscale when non-gray pixels are present: no error is thrown, but -the result will look ugly because only the red channel is taken (it assumes all -three channels are the same in this case so ignores green and blue). The reason -no error is given is to allow converting from three-channel grayscale images to -one-channel even if there are numerical imprecisions. --anything to palette when the palette does not have an exact match for a from-color -in it: in this case an error is thrown - -Supported color conversions: --anything to 8-bit RGB, 8-bit RGBA, 16-bit RGB, 16-bit RGBA --any gray or gray+alpha, to gray or gray+alpha --anything to a palette, as long as the palette has the requested colors in it --removing alpha channel --higher to smaller bitdepth, and vice versa - -If you want no color conversion to be done (e.g. for speed or control): --In the encoder, you can make it save a PNG with any color type by giving the -raw color mode and LodePNGInfo the same color mode, and setting auto_convert to -false. --In the decoder, you can make it store the pixel data in the same color type -as the PNG has, by setting the color_convert setting to false. Settings in -info_raw are then ignored. - -6.3. padding bits ------------------ - -In the PNG file format, if a less than 8-bit per pixel color type is used and the scanlines -have a bit amount that isn't a multiple of 8, then padding bits are used so that each -scanline starts at a fresh byte. But that is NOT true for the LodePNG raw input and output. -The raw input image you give to the encoder, and the raw output image you get from the decoder -will NOT have these padding bits, e.g. in the case of a 1-bit image with a width -of 7 pixels, the first pixel of the second scanline will the 8th bit of the first byte, -not the first bit of a new byte. - -6.4. A note about 16-bits per channel and endianness ----------------------------------------------------- - -LodePNG uses unsigned char arrays for 16-bit per channel colors too, just like -for any other color format. The 16-bit values are stored in big endian (most -significant byte first) in these arrays. This is the opposite order of the -little endian used by x86 CPU's. - -LodePNG always uses big endian because the PNG file format does so internally. -Conversions to other formats than PNG uses internally are not supported by -LodePNG on purpose, there are myriads of formats, including endianness of 16-bit -colors, the order in which you store R, G, B and A, and so on. Supporting and -converting to/from all that is outside the scope of LodePNG. - -This may mean that, depending on your use case, you may want to convert the big -endian output of LodePNG to little endian with a for loop. This is certainly not -always needed, many applications and libraries support big endian 16-bit colors -anyway, but it means you cannot simply cast the unsigned char* buffer to an -unsigned short* buffer on x86 CPUs. - - -7. error values ---------------- - -All functions in LodePNG that return an error code, return 0 if everything went -OK, or a non-zero code if there was an error. - -The meaning of the LodePNG error values can be retrieved with the function -lodepng_error_text: given the numerical error code, it returns a description -of the error in English as a string. - -Check the implementation of lodepng_error_text to see the meaning of each code. - -It is not recommended to use the numerical values to programmatically make -different decisions based on error types as the numbers are not guaranteed to -stay backwards compatible. They are for human consumption only. Programmatically -only 0 or non-0 matter. - - -8. chunks and PNG editing -------------------------- - -If you want to add extra chunks to a PNG you encode, or use LodePNG for a PNG -editor that should follow the rules about handling of unknown chunks, or if your -program is able to read other types of chunks than the ones handled by LodePNG, -then that's possible with the chunk functions of LodePNG. - -A PNG chunk has the following layout: - -4 bytes length -4 bytes type name -length bytes data -4 bytes CRC - -8.1. iterating through chunks ------------------------------ - -If you have a buffer containing the PNG image data, then the first chunk (the -IHDR chunk) starts at byte number 8 of that buffer. The first 8 bytes are the -signature of the PNG and are not part of a chunk. But if you start at byte 8 -then you have a chunk, and can check the following things of it. - -NOTE: none of these functions check for memory buffer boundaries. To avoid -exploits, always make sure the buffer contains all the data of the chunks. -When using lodepng_chunk_next, make sure the returned value is within the -allocated memory. - -unsigned lodepng_chunk_length(const unsigned char* chunk): - -Get the length of the chunk's data. The total chunk length is this length + 12. - -void lodepng_chunk_type(char type[5], const unsigned char* chunk): -unsigned char lodepng_chunk_type_equals(const unsigned char* chunk, const char* type): - -Get the type of the chunk or compare if it's a certain type - -unsigned char lodepng_chunk_critical(const unsigned char* chunk): -unsigned char lodepng_chunk_private(const unsigned char* chunk): -unsigned char lodepng_chunk_safetocopy(const unsigned char* chunk): - -Check if the chunk is critical in the PNG standard (only IHDR, PLTE, IDAT and IEND are). -Check if the chunk is private (public chunks are part of the standard, private ones not). -Check if the chunk is safe to copy. If it's not, then, when modifying data in a critical -chunk, unsafe to copy chunks of the old image may NOT be saved in the new one if your -program doesn't handle that type of unknown chunk. - -unsigned char* lodepng_chunk_data(unsigned char* chunk): -const unsigned char* lodepng_chunk_data_const(const unsigned char* chunk): - -Get a pointer to the start of the data of the chunk. - -unsigned lodepng_chunk_check_crc(const unsigned char* chunk): -void lodepng_chunk_generate_crc(unsigned char* chunk): - -Check if the crc is correct or generate a correct one. - -unsigned char* lodepng_chunk_next(unsigned char* chunk): -const unsigned char* lodepng_chunk_next_const(const unsigned char* chunk): - -Iterate to the next chunk. This works if you have a buffer with consecutive chunks. Note that these -functions do no boundary checking of the allocated data whatsoever, so make sure there is enough -data available in the buffer to be able to go to the next chunk. - -unsigned lodepng_chunk_append(unsigned char** out, size_t* outsize, const unsigned char* chunk): -unsigned lodepng_chunk_create(unsigned char** out, size_t* outsize, unsigned length, - const char* type, const unsigned char* data): - -These functions are used to create new chunks that are appended to the data in *out that has -length *outsize. The append function appends an existing chunk to the new data. The create -function creates a new chunk with the given parameters and appends it. Type is the 4-letter -name of the chunk. - -8.2. chunks in info_png ------------------------ - -The LodePNGInfo struct contains fields with the unknown chunk in it. It has 3 -buffers (each with size) to contain 3 types of unknown chunks: -the ones that come before the PLTE chunk, the ones that come between the PLTE -and the IDAT chunks, and the ones that come after the IDAT chunks. -It's necessary to make the distinction between these 3 cases because the PNG -standard forces to keep the ordering of unknown chunks compared to the critical -chunks, but does not force any other ordering rules. - -info_png.unknown_chunks_data[0] is the chunks before PLTE -info_png.unknown_chunks_data[1] is the chunks after PLTE, before IDAT -info_png.unknown_chunks_data[2] is the chunks after IDAT - -The chunks in these 3 buffers can be iterated through and read by using the same -way described in the previous subchapter. - -When using the decoder to decode a PNG, you can make it store all unknown chunks -if you set the option settings.remember_unknown_chunks to 1. By default, this -option is off (0). - -The encoder will always encode unknown chunks that are stored in the info_png. -If you need it to add a particular chunk that isn't known by LodePNG, you can -use lodepng_chunk_append or lodepng_chunk_create to the chunk data in -info_png.unknown_chunks_data[x]. - -Chunks that are known by LodePNG should not be added in that way. E.g. to make -LodePNG add a bKGD chunk, set background_defined to true and add the correct -parameters there instead. - - -9. compiler support -------------------- - -No libraries other than the current standard C library are needed to compile -LodePNG. For the C++ version, only the standard C++ library is needed on top. -Add the files lodepng.c(pp) and lodepng.h to your project, include -lodepng.h where needed, and your program can read/write PNG files. - -It is compatible with C90 and up, and C++03 and up. - -If performance is important, use optimization when compiling! For both the -encoder and decoder, this makes a large difference. - -Make sure that LodePNG is compiled with the same compiler of the same version -and with the same settings as the rest of the program, or the interfaces with -std::vectors and std::strings in C++ can be incompatible. - -CHAR_BITS must be 8 or higher, because LodePNG uses unsigned chars for octets. - -*) gcc and g++ - -LodePNG is developed in gcc so this compiler is natively supported. It gives no -warnings with compiler options "-Wall -Wextra -pedantic -ansi", with gcc and g++ -version 4.7.1 on Linux, 32-bit and 64-bit. - -*) Clang - -Fully supported and warning-free. - -*) Mingw - -The Mingw compiler (a port of gcc for Windows) should be fully supported by -LodePNG. - -*) Visual Studio and Visual C++ Express Edition - -LodePNG should be warning-free with warning level W4. Two warnings were disabled -with pragmas though: warning 4244 about implicit conversions, and warning 4996 -where it wants to use a non-standard function fopen_s instead of the standard C -fopen. - -Visual Studio may want "stdafx.h" files to be included in each source file and -give an error "unexpected end of file while looking for precompiled header". -This is not standard C++ and will not be added to the stock LodePNG. You can -disable it for lodepng.cpp only by right clicking it, Properties, C/C++, -Precompiled Headers, and set it to Not Using Precompiled Headers there. - -NOTE: Modern versions of VS should be fully supported, but old versions, e.g. -VS6, are not guaranteed to work. - -*) Compilers on Macintosh - -LodePNG has been reported to work both with gcc and LLVM for Macintosh, both for -C and C++. - -*) Other Compilers - -If you encounter problems on any compilers, feel free to let me know and I may -try to fix it if the compiler is modern and standards compliant. - - -10. examples ------------- - -This decoder example shows the most basic usage of LodePNG. More complex -examples can be found on the LodePNG website. - -NOTE: these examples do not support wide-character filenames, you can use an -external method to handle such files and encode or decode in-memory - -10.1. decoder C++ example -------------------------- - -#include "lodepng.h" -#include - -int main(int argc, char *argv[]) { - const char* filename = argc > 1 ? argv[1] : "test.png"; - - //load and decode - std::vector image; - unsigned width, height; - unsigned error = lodepng::decode(image, width, height, filename); - - //if there's an error, display it - if(error) std::cout << "decoder error " << error << ": " << lodepng_error_text(error) << std::endl; - - //the pixels are now in the vector "image", 4 bytes per pixel, ordered RGBARGBA..., use it as texture, draw it, ... -} - -10.2. decoder C example ------------------------ - -#include "lodepng.h" - -int main(int argc, char *argv[]) { - unsigned error; - unsigned char* image; - size_t width, height; - const char* filename = argc > 1 ? argv[1] : "test.png"; - - error = lodepng_decode32_file(&image, &width, &height, filename); - - if(error) printf("decoder error %u: %s\n", error, lodepng_error_text(error)); - - / * use image here * / - - free(image); - return 0; -} - -11. state settings reference ----------------------------- - -A quick reference of some settings to set on the LodePNGState - -For decoding: - -state.decoder.zlibsettings.ignore_adler32: ignore ADLER32 checksums -state.decoder.zlibsettings.custom_...: use custom inflate function -state.decoder.ignore_crc: ignore CRC checksums -state.decoder.ignore_critical: ignore unknown critical chunks -state.decoder.ignore_end: ignore missing IEND chunk. May fail if this corruption causes other errors -state.decoder.color_convert: convert internal PNG color to chosen one -state.decoder.read_text_chunks: whether to read in text metadata chunks -state.decoder.remember_unknown_chunks: whether to read in unknown chunks -state.info_raw.colortype: desired color type for decoded image -state.info_raw.bitdepth: desired bit depth for decoded image -state.info_raw....: more color settings, see struct LodePNGColorMode -state.info_png....: no settings for decoder but ouput, see struct LodePNGInfo - -For encoding: - -state.encoder.zlibsettings.btype: disable compression by setting it to 0 -state.encoder.zlibsettings.use_lz77: use LZ77 in compression -state.encoder.zlibsettings.windowsize: tweak LZ77 windowsize -state.encoder.zlibsettings.minmatch: tweak min LZ77 length to match -state.encoder.zlibsettings.nicematch: tweak LZ77 match where to stop searching -state.encoder.zlibsettings.lazymatching: try one more LZ77 matching -state.encoder.zlibsettings.custom_...: use custom deflate function -state.encoder.auto_convert: choose optimal PNG color type, if 0 uses info_png -state.encoder.filter_palette_zero: PNG filter strategy for palette -state.encoder.filter_strategy: PNG filter strategy to encode with -state.encoder.force_palette: add palette even if not encoding to one -state.encoder.add_id: add LodePNG identifier and version as a text chunk -state.encoder.text_compression: use compressed text chunks for metadata -state.info_raw.colortype: color type of raw input image you provide -state.info_raw.bitdepth: bit depth of raw input image you provide -state.info_raw: more color settings, see struct LodePNGColorMode -state.info_png.color.colortype: desired color type if auto_convert is false -state.info_png.color.bitdepth: desired bit depth if auto_convert is false -state.info_png.color....: more color settings, see struct LodePNGColorMode -state.info_png....: more PNG related settings, see struct LodePNGInfo - - -12. changes ------------ - -The version number of LodePNG is the date of the change given in the format -yyyymmdd. - -Some changes aren't backwards compatible. Those are indicated with a (!) -symbol. - -Not all changes are listed here, the commit history in github lists more: -https://github.com/lvandeve/lodepng - -*) 13 jun 2022: added support for the sBIT chunk. -*) 09 jan 2022: minor decoder speed improvements. -*) 27 jun 2021: added warnings that file reading/writing functions don't support - wide-character filenames (support for this is not planned, opening files is - not the core part of PNG decoding/decoding and is platform dependent). -*) 17 okt 2020: prevent decoding too large text/icc chunks by default. -*) 06 mar 2020: simplified some of the dynamic memory allocations. -*) 12 jan 2020: (!) added 'end' argument to lodepng_chunk_next to allow correct - overflow checks. -*) 14 aug 2019: around 25% faster decoding thanks to huffman lookup tables. -*) 15 jun 2019: (!) auto_choose_color API changed (for bugfix: don't use palette - if gray ICC profile) and non-ICC LodePNGColorProfile renamed to - LodePNGColorStats. -*) 30 dec 2018: code style changes only: removed newlines before opening braces. -*) 10 sep 2018: added way to inspect metadata chunks without full decoding. -*) 19 aug 2018: (!) fixed color mode bKGD is encoded with and made it use - palette index in case of palette. -*) 10 aug 2018: (!) added support for gAMA, cHRM, sRGB and iCCP chunks. This - change is backwards compatible unless you relied on unknown_chunks for those. -*) 11 jun 2018: less restrictive check for pixel size integer overflow -*) 14 jan 2018: allow optionally ignoring a few more recoverable errors -*) 17 sep 2017: fix memory leak for some encoder input error cases -*) 27 nov 2016: grey+alpha auto color model detection bugfix -*) 18 apr 2016: Changed qsort to custom stable sort (for platforms w/o qsort). -*) 09 apr 2016: Fixed colorkey usage detection, and better file loading (within - the limits of pure C90). -*) 08 dec 2015: Made load_file function return error if file can't be opened. -*) 24 okt 2015: Bugfix with decoding to palette output. -*) 18 apr 2015: Boundary PM instead of just package-merge for faster encoding. -*) 24 aug 2014: Moved to github -*) 23 aug 2014: Reduced needless memory usage of decoder. -*) 28 jun 2014: Removed fix_png setting, always support palette OOB for - simplicity. Made ColorProfile public. -*) 09 jun 2014: Faster encoder by fixing hash bug and more zeros optimization. -*) 22 dec 2013: Power of two windowsize required for optimization. -*) 15 apr 2013: Fixed bug with LAC_ALPHA and color key. -*) 25 mar 2013: Added an optional feature to ignore some PNG errors (fix_png). -*) 11 mar 2013: (!) Bugfix with custom free. Changed from "my" to "lodepng_" - prefix for the custom allocators and made it possible with a new #define to - use custom ones in your project without needing to change lodepng's code. -*) 28 jan 2013: Bugfix with color key. -*) 27 okt 2012: Tweaks in text chunk keyword length error handling. -*) 8 okt 2012: (!) Added new filter strategy (entropy) and new auto color mode. - (no palette). Better deflate tree encoding. New compression tweak settings. - Faster color conversions while decoding. Some internal cleanups. -*) 23 sep 2012: Reduced warnings in Visual Studio a little bit. -*) 1 sep 2012: (!) Removed #define's for giving custom (de)compression functions - and made it work with function pointers instead. -*) 23 jun 2012: Added more filter strategies. Made it easier to use custom alloc - and free functions and toggle #defines from compiler flags. Small fixes. -*) 6 may 2012: (!) Made plugging in custom zlib/deflate functions more flexible. -*) 22 apr 2012: (!) Made interface more consistent, renaming a lot. Removed - redundant C++ codec classes. Reduced amount of structs. Everything changed, - but it is cleaner now imho and functionality remains the same. Also fixed - several bugs and shrunk the implementation code. Made new samples. -*) 6 nov 2011: (!) By default, the encoder now automatically chooses the best - PNG color model and bit depth, based on the amount and type of colors of the - raw image. For this, autoLeaveOutAlphaChannel replaced by auto_choose_color. -*) 9 okt 2011: simpler hash chain implementation for the encoder. -*) 8 sep 2011: lz77 encoder lazy matching instead of greedy matching. -*) 23 aug 2011: tweaked the zlib compression parameters after benchmarking. - A bug with the PNG filtertype heuristic was fixed, so that it chooses much - better ones (it's quite significant). A setting to do an experimental, slow, - brute force search for PNG filter types is added. -*) 17 aug 2011: (!) changed some C zlib related function names. -*) 16 aug 2011: made the code less wide (max 120 characters per line). -*) 17 apr 2011: code cleanup. Bugfixes. Convert low to 16-bit per sample colors. -*) 21 feb 2011: fixed compiling for C90. Fixed compiling with sections disabled. -*) 11 dec 2010: encoding is made faster, based on suggestion by Peter Eastman - to optimize long sequences of zeros. -*) 13 nov 2010: added LodePNG_InfoColor_hasPaletteAlpha and - LodePNG_InfoColor_canHaveAlpha functions for convenience. -*) 7 nov 2010: added LodePNG_error_text function to get error code description. -*) 30 okt 2010: made decoding slightly faster -*) 26 okt 2010: (!) changed some C function and struct names (more consistent). - Reorganized the documentation and the declaration order in the header. -*) 08 aug 2010: only changed some comments and external samples. -*) 05 jul 2010: fixed bug thanks to warnings in the new gcc version. -*) 14 mar 2010: fixed bug where too much memory was allocated for char buffers. -*) 02 sep 2008: fixed bug where it could create empty tree that linux apps could - read by ignoring the problem but windows apps couldn't. -*) 06 jun 2008: added more error checks for out of memory cases. -*) 26 apr 2008: added a few more checks here and there to ensure more safety. -*) 06 mar 2008: crash with encoding of strings fixed -*) 02 feb 2008: support for international text chunks added (iTXt) -*) 23 jan 2008: small cleanups, and #defines to divide code in sections -*) 20 jan 2008: support for unknown chunks allowing using LodePNG for an editor. -*) 18 jan 2008: support for tIME and pHYs chunks added to encoder and decoder. -*) 17 jan 2008: ability to encode and decode compressed zTXt chunks added - Also various fixes, such as in the deflate and the padding bits code. -*) 13 jan 2008: Added ability to encode Adam7-interlaced images. Improved - filtering code of encoder. -*) 07 jan 2008: (!) changed LodePNG to use ISO C90 instead of C++. A - C++ wrapper around this provides an interface almost identical to before. - Having LodePNG be pure ISO C90 makes it more portable. The C and C++ code - are together in these files but it works both for C and C++ compilers. -*) 29 dec 2007: (!) changed most integer types to unsigned int + other tweaks -*) 30 aug 2007: bug fixed which makes this Borland C++ compatible -*) 09 aug 2007: some VS2005 warnings removed again -*) 21 jul 2007: deflate code placed in new namespace separate from zlib code -*) 08 jun 2007: fixed bug with 2- and 4-bit color, and small interlaced images -*) 04 jun 2007: improved support for Visual Studio 2005: crash with accessing - invalid std::vector element [0] fixed, and level 3 and 4 warnings removed -*) 02 jun 2007: made the encoder add a tag with version by default -*) 27 may 2007: zlib and png code separated (but still in the same file), - simple encoder/decoder functions added for more simple usage cases -*) 19 may 2007: minor fixes, some code cleaning, new error added (error 69), - moved some examples from here to lodepng_examples.cpp -*) 12 may 2007: palette decoding bug fixed -*) 24 apr 2007: changed the license from BSD to the zlib license -*) 11 mar 2007: very simple addition: ability to encode bKGD chunks. -*) 04 mar 2007: (!) tEXt chunk related fixes, and support for encoding - palettized PNG images. Plus little interface change with palette and texts. -*) 03 mar 2007: Made it encode dynamic Huffman shorter with repeat codes. - Fixed a bug where the end code of a block had length 0 in the Huffman tree. -*) 26 feb 2007: Huffman compression with dynamic trees (BTYPE 2) now implemented - and supported by the encoder, resulting in smaller PNGs at the output. -*) 27 jan 2007: Made the Adler-32 test faster so that a timewaste is gone. -*) 24 jan 2007: gave encoder an error interface. Added color conversion from any - greyscale type to 8-bit greyscale with or without alpha. -*) 21 jan 2007: (!) Totally changed the interface. It allows more color types - to convert to and is more uniform. See the manual for how it works now. -*) 07 jan 2007: Some cleanup & fixes, and a few changes over the last days: - encode/decode custom tEXt chunks, separate classes for zlib & deflate, and - at last made the decoder give errors for incorrect Adler32 or Crc. -*) 01 jan 2007: Fixed bug with encoding PNGs with less than 8 bits per channel. -*) 29 dec 2006: Added support for encoding images without alpha channel, and - cleaned out code as well as making certain parts faster. -*) 28 dec 2006: Added "Settings" to the encoder. -*) 26 dec 2006: The encoder now does LZ77 encoding and produces much smaller files now. - Removed some code duplication in the decoder. Fixed little bug in an example. -*) 09 dec 2006: (!) Placed output parameters of public functions as first parameter. - Fixed a bug of the decoder with 16-bit per color. -*) 15 okt 2006: Changed documentation structure -*) 09 okt 2006: Encoder class added. It encodes a valid PNG image from the - given image buffer, however for now it's not compressed. -*) 08 sep 2006: (!) Changed to interface with a Decoder class -*) 30 jul 2006: (!) LodePNG_InfoPng , width and height are now retrieved in different - way. Renamed decodePNG to decodePNGGeneric. -*) 29 jul 2006: (!) Changed the interface: image info is now returned as a - struct of type LodePNG::LodePNG_Info, instead of a vector, which was a bit clumsy. -*) 28 jul 2006: Cleaned the code and added new error checks. - Corrected terminology "deflate" into "inflate". -*) 23 jun 2006: Added SDL example in the documentation in the header, this - example allows easy debugging by displaying the PNG and its transparency. -*) 22 jun 2006: (!) Changed way to obtain error value. Added - loadFile function for convenience. Made decodePNG32 faster. -*) 21 jun 2006: (!) Changed type of info vector to unsigned. - Changed position of palette in info vector. Fixed an important bug that - happened on PNGs with an uncompressed block. -*) 16 jun 2006: Internally changed unsigned into unsigned where - needed, and performed some optimizations. -*) 07 jun 2006: (!) Renamed functions to decodePNG and placed them - in LodePNG namespace. Changed the order of the parameters. Rewrote the - documentation in the header. Renamed files to lodepng.cpp and lodepng.h -*) 22 apr 2006: Optimized and improved some code -*) 07 sep 2005: (!) Changed to std::vector interface -*) 12 aug 2005: Initial release (C++, decoder only) - - -13. contact information ------------------------ - -Feel free to contact me with suggestions, problems, comments, ... concerning -LodePNG. If you encounter a PNG image that doesn't work properly with this -decoder, feel free to send it and I'll use it to find and fix the problem. - -My email address is (puzzle the account and domain together with an @ symbol): -Domain: gmail dot com. -Account: lode dot vandevenne. - - -Copyright (c) 2005-2022 Lode Vandevenne -*/ diff --git a/Marlin/lib/LodePNG/lodepng_benchmark.cpp b/Marlin/lib/LodePNG/lodepng_benchmark.cpp deleted file mode 100644 index ca3f8cb969..0000000000 --- a/Marlin/lib/LodePNG/lodepng_benchmark.cpp +++ /dev/null @@ -1,355 +0,0 @@ -/* -LodePNG Benchmark - -Copyright (c) 2005-2019 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -//g++ lodepng.cpp lodepng_benchmark.cpp -Wall -Wextra -pedantic -ansi -lSDL -O3 -//g++ lodepng.cpp lodepng_benchmark.cpp -Wall -Wextra -pedantic -ansi -lSDL -O3 && ./a.out -#if 0 - -#include "lodepng.h" - -#include -#include -#include -#include -#include - -#include -#include - -#include //SDL is used for timing. - -bool apply_mods = false; - -#define NUM_DECODE 5 //decode multiple times to measure better. Must be at least 1. - -size_t total_pixels = 0; -size_t total_png_orig_size = 0; -size_t total_raw_orig_size = 0; // This is the uncompressed data in the raw color format in the original input PNGs - -double total_dec_time = 0; -size_t total_png_in_size = 0; -size_t total_raw_in_size = 0; // This is the uncompressed data in the raw color format in the input PNGs given to the decoder (not same as orig when using the encoded ones) -size_t total_raw_dec_size = 0; // This is the uncompressed data in the raw color format of raw image buffers output by the decoder - -double total_enc_time = 0; -size_t total_raw_enc_size = 0; // This is the uncompressed data in the raw color format of the raw images given to the encoder -size_t total_png_out_size = 0; -size_t total_raw_out_size = 0; // This is the uncompressed data in the raw color format of the encoded PNGs - -bool verbose = false; -bool do_decode = false; -bool do_encode = false; -bool decode_encoded = false; // do the decoding benchmark on the encoded images rather than the original inputs - -std::string dumpdir; - -//////////////////////////////////////////////////////////////////////////////// - -double getTime() { - return SDL_GetTicks() / 1000.0; -} - -template -void assertEquals(const T& expected, const U& actual, const std::string& message = "") { - if(expected != (T)actual) { - std::cout << "Error: Not equal! Expected " << expected << " got " << actual << "." << std::endl; - std::cout << "Message: " << message << std::endl; - std::exit(1); - } -} - -void assertTrue(bool value, const std::string& message = "") { - if(!value) { - std::cout << "Error: expected true." << std::endl; - std::cout << "Message: " << message << std::endl; - std::exit(1); - } -} - -//Test image data -struct Image { - std::vector data; - unsigned width; - unsigned height; - LodePNGColorType colorType; - unsigned bitDepth; - std::string name; -}; - -//Utility for debug messages -template -std::string valtostr(const T& val) { - std::ostringstream sstream; - sstream << val; - return sstream.str(); -} - -template -void printValue(const std::string& name, const T& value, const std::string& unit = "") { - std::cout << name << ": " << value << unit << std::endl; -} - -template -void printValue(const std::string& name, const T& value, const std::string& s2, const U& value2, const std::string& unit = "") { - std::cout << name << ": " << value << s2 << value2 << unit << std::endl; -} - -//Test LodePNG encoding and decoding the encoded result, using the C interface -std::vector testEncode(Image& image) { - unsigned char* encoded = 0; - size_t encoded_size = 0; - lodepng::State state; - state.info_raw.colortype = image.colorType; - state.info_raw.bitdepth = image.bitDepth; - - // Try custom compression settings - if(apply_mods) { - //state.encoder.filter_strategy = LFS_ZERO; - //state.encoder.filter_strategy = LFS_ENTROPY; - //state.encoder.filter_strategy = LFS_FOUR; - //state.encoder.zlibsettings.btype = 0; - //state.encoder.zlibsettings.btype = 1; - //state.encoder.auto_convert = 0; - //state.encoder.zlibsettings.use_lz77 = 0; - state.encoder.zlibsettings.windowsize = 1; - //state.encoder.zlibsettings.windowsize = 32768; - } - - double t_enc0 = getTime(); - - unsigned error_enc = lodepng_encode(&encoded, &encoded_size, &image.data[0], - image.width, image.height, &state); - - double t_enc1 = getTime(); - - assertEquals(0, error_enc, "encoder error"); - - total_raw_enc_size += lodepng_get_raw_size(image.width, image.height, &state.info_raw); - total_png_out_size += encoded_size; - total_enc_time += (t_enc1 - t_enc0); - - if(verbose) { - printValue("encoding time", t_enc1 - t_enc0, "s"); - std::cout << "compression: " << ((double)(encoded_size) / (double)(image.data.size())) * 100 << "%" - << ", ratio: " << ((double)(image.data.size()) / (double)(encoded_size)) - << ", size: " << encoded_size - << ", bpp: " << (8.0 * encoded_size / image.width / image.height) << std::endl; - } - - if(!dumpdir.empty()) { - std::string dumpname = dumpdir; - if(dumpname[dumpname.size() - 1] != '/') dumpname += "/"; - dumpname += image.name; - if(lodepng_save_file(encoded, encoded_size, dumpname.c_str())) { - std::cout << "WARNING: failed to dump " << dumpname << ". The dir must already exist." << std::endl; - } else if(verbose) { - std::cout << "saved to: " << dumpname << std::endl; - } - } - - // output image stats - { - lodepng::State inspect; - unsigned w, h; - lodepng_inspect(&w, &h, &inspect, encoded, encoded_size); - total_raw_out_size += lodepng_get_raw_size(w, h, &inspect.info_png.color); - } - - std::vector result(encoded, encoded + encoded_size); - free(encoded); - return result; -} - -void testDecode(const std::vector& png) { - lodepng::State state; - unsigned char* decoded = 0; - unsigned w, h; - - // Try custom decompression settings - if(apply_mods) { - state.decoder.color_convert = 0; - //state.decoder.ignore_crc = 1; - } - - double t_dec0 = getTime(); - for(int i = 0; i < NUM_DECODE; i++) { - unsigned error_dec = lodepng_decode(&decoded, &w, &h, &state, png.data(), png.size()); - assertEquals(0, error_dec, "decoder error"); - } - double t_dec1 = getTime(); - - total_dec_time += (t_dec1 - t_dec0); - - total_raw_dec_size += lodepng_get_raw_size(w, h, &state.info_raw); - - if(verbose) { - printValue("decoding time", t_dec1 - t_dec0, "/", NUM_DECODE, " s"); - } - free(decoded); - - // input image stats - { - lodepng::State inspect; - unsigned w, h; - lodepng_inspect(&w, &h, &inspect, png.data(), png.size()); - total_raw_in_size += lodepng_get_raw_size(w, h, &inspect.info_png.color); - total_png_in_size += png.size(); - } -} - -std::string getFilePart(const std::string& path) { - if(path.empty()) return ""; - int slash = path.size() - 1; - while(slash >= 0 && path[slash] != '/') slash--; - return path.substr(slash + 1); -} - -void testFile(const std::string& filename) { - if(verbose) std::cout << "file " << filename << std::endl; - - std::vector png; - if(lodepng::load_file(png, filename)) { - std::cout << "\nfailed to load file " << filename << std::endl << std::endl; - return; - } - - // input image stats - { - lodepng::State inspect; - unsigned w, h; - lodepng_inspect(&w, &h, &inspect, png.data(), png.size()); - total_pixels += (w * h); - total_png_orig_size += png.size(); - size_t raw_size = lodepng_get_raw_size(w, h, &inspect.info_png.color); - total_raw_orig_size += raw_size; - if(verbose) std::cout << "orig compressed size: " << png.size() << ", pixels: " << (w * h) << ", raw size: " << raw_size << std::endl; - } - - if(do_encode) { - Image image; - image.name = getFilePart(filename); - image.colorType = LCT_RGBA; - image.bitDepth = 8; - assertEquals(0, lodepng::decode(image.data, image.width, image.height, filename, image.colorType, image.bitDepth)); - - std::vector temp = testEncode(image); - if(decode_encoded) png = temp; - } - - if(do_decode) { - testDecode(png); - } - - if(verbose) std::cout << std::endl; -} - -void showHelp(int argc, char *argv[]) { - (void)argc; - std::cout << "Usage: " << argv[0] << " png_filenames... [OPTIONS...] [--dumpdir directory]" << std::endl; - std::cout << "Options:" << std::endl; - std::cout << " -h: show this help" << std::endl; - std::cout << " -v: verbose" << std::endl; - std::cout << " -d: decode only" << std::endl; - std::cout << " -e: encode only" << std::endl; - std::cout << " -o: decode on original images rather than encoded ones (always true if -d without -e)" << std::endl; - std::cout << " -m: apply modifications to encoder and decoder settings, the modification itself must be implemented or changed in the benchmark source code (search for apply_mods in the code, for encode and for decode)" << std::endl; -} - -int main(int argc, char *argv[]) { - verbose = false; - do_decode = true; - do_encode = true; - decode_encoded = true; - - std::vector files; - - for(int i = 1; i < argc; i++) { - std::string arg = argv[i]; - if(arg == "-v") verbose = true; - else if(arg == "-h" || arg == "--help") { showHelp(argc, argv); return 0; } - else if(arg == "-d") do_decode ? (do_encode = false) : (do_decode = true); - else if(arg == "-e") do_encode ? (do_decode = false) : (do_encode = true); - else if(arg == "-o") decode_encoded = false; - else if(arg == "-m") apply_mods = true; - else if(arg == "--dumpdir" && i + 1 < argc) { - dumpdir = argv[++i]; - } - else files.push_back(arg); - } - - if(!do_encode) decode_encoded = false; - - if(files.empty()) { - std::cout << "must give .png filenames to benchamrk" << std::endl; - showHelp(argc, argv); - return 1; - } - - - - for(size_t i = 0; i < files.size(); i++) { - testFile(files[i]); - } - - // test images stats - if(verbose) { - std::cout << "Final Summary: " << std::endl; - std::cout << "input images: " << files.size() << std::endl; - std::cout << "total_pixels: " << total_pixels << std::endl; - // file size of original PNGs that were given as command line arguments to the tool - std::cout << "total_png_orig_size: " << total_png_orig_size << " (" << (8.0 * total_png_orig_size / total_pixels) << " bpp)" << std::endl; - // size of the data inside the original PNGs, dependent on color encoding (bit depth used in the PNG) - std::cout << "total_raw_orig_size: " << total_raw_orig_size << " (" << (8.0 * total_raw_orig_size / total_pixels) << " bpp)" << std::endl; - // size of the pixel data given to the benchmark encoder, dependent on color encoding (bit depth used in the image representation in the benchmark tool, probably 32 bits) - if(do_encode) std::cout << "total_raw_enc_size: " << total_raw_enc_size << " (" << (8.0 * total_raw_enc_size / total_pixels) << " bpp)" << std::endl; - // file size of PNGs created by the benchmark encoder - if(do_encode) std::cout << "total_png_out_size: " << total_png_out_size << " (" << (8.0 * total_png_out_size / total_pixels) << " bpp)" << std::endl; - // size of the data inside the PNGs created by the benchmark encoder, dependent on color encoding (bit depth used in the PNG), may differ from total_raw_orig_size since the encoder may choose to use a different color encoding - if(do_encode) std::cout << "total_raw_out_size: " << total_raw_out_size << " (" << (8.0 * total_raw_out_size / total_pixels) << " bpp)" << std::endl; - // size of file size of the PNGs given to the benchmark decoder, this could either be the original ones or the ones encoded by the benchmark encoder depending on user options - if(do_decode) std::cout << "total_png_in_size: " << total_png_in_size << " (" << (8.0 * total_png_in_size / total_pixels) << " bpp)" << std::endl; - // size of the data inside the PNGs mentioned at total_png_in_size, dependent on color encoding (bit depth used in the image representation in the benchmark tool, probably 32 bits) - if(do_decode) std::cout << "total_raw_in_size: " << total_raw_in_size << " (" << (8.0 * total_raw_in_size / total_pixels) << " bpp)" << std::endl; - // size of the pixel data requested from the benchmark decoder, dependent on color encoding requested (bit depth used in the image representation in the benchmark tool, probably 32 bits) - if(do_decode) std::cout << "total_raw_dec_size: " << total_raw_dec_size << " (" << (8.0 * total_raw_dec_size / total_pixels) << " bpp)" << std::endl; - } - - // final encoding stats - if(do_encode) { - std::cout << "encoding time: " << total_enc_time << "s on " << total_pixels << " pixels and " << total_raw_out_size << " raw bytes (" - << ((total_raw_enc_size/1024.0/1024.0)/(total_enc_time)) << " MB/s, " << ((total_pixels/1024.0/1024.0)/(total_enc_time)) << " MP/s)" << std::endl; - std::cout << "encoded size: " << total_png_out_size << " (" << (100.0 * total_png_out_size / total_raw_out_size) << "%), bpp: " - << (8.0 * total_png_out_size / total_pixels) << std::endl; - } - - // final decoding stats - if(do_decode) { - if(verbose) std::cout << "decoding iterations: " << NUM_DECODE << std::endl; - std::cout << "decoding time: " << total_dec_time/NUM_DECODE << "s on " << total_pixels << " pixels and " << total_png_in_size - << " compressed bytes (" << ((total_raw_in_size/1024.0/1024.0)/(total_dec_time/NUM_DECODE)) << " MB/s, " - << ((total_pixels/1024.0/1024.0)/(total_dec_time/NUM_DECODE)) << " MP/s)" << std::endl; - } -} -#endif diff --git a/Marlin/lib/LodePNG/lodepng_fuzzer.cpp b/Marlin/lib/LodePNG/lodepng_fuzzer.cpp deleted file mode 100644 index 3a94db6058..0000000000 --- a/Marlin/lib/LodePNG/lodepng_fuzzer.cpp +++ /dev/null @@ -1,99 +0,0 @@ -/* -LodePNG Fuzzer - -Copyright (c) 2005-2019 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -// clang++ -fsanitize=fuzzer lodepng.cpp lodepng_fuzzer.cpp -O3 && ./a.out -#if 0 - -#include "lodepng.h" - -#include - -namespace { -// Amount of valid colortype/bidthdepth combinations in the PNG file format. -const size_t num_combinations = 15; - -LodePNGColorType colortypes[num_combinations] = { - LCT_GREY, LCT_GREY, LCT_GREY, LCT_GREY, LCT_GREY, // 1, 2, 4, 8 or 16 bits - LCT_RGB, LCT_RGB, // 8 or 16 bits - LCT_PALETTE, LCT_PALETTE, LCT_PALETTE, LCT_PALETTE, // 1, 2, 4 or 8 bits - LCT_GREY_ALPHA, LCT_GREY_ALPHA, // 8 or 16 bits - LCT_RGBA, LCT_RGBA, // 8 or 16 bits -}; - -unsigned bitdepths[num_combinations] = { - 1, 2, 4, 8, 16, // gray - 8, 16, // rgb - 1, 2, 4, 8, // palette - 8, 16, // gray+alpha - 8, 16, // rgb+alpha -}; - -unsigned testDecode(lodepng::State& state, const uint8_t* data, size_t size) { - unsigned w, h; - std::vector image; - return lodepng::decode(image, w, h, state, (const unsigned char*)data, size); -} -} // end anonymous namespace - -extern "C" int LLVMFuzzerTestOneInput(const uint8_t* data, size_t size) { - if(size == 0) return 0; - - // Setting last byte of input as random_color_type - // Fuzzer will still be able to mutate the data accordingly as - // last byte of png file can be changed and file will still remain valid. - size_t random_color_type = data[size-1] % num_combinations; - - lodepng::State state; - - // Make the decoder ignore three types of checksums the PNG/zlib format have - // built-in, because they are less likely to be correct in the random input - // data, and if invalid make the decoder return an error before much gets ran. - state.decoder.zlibsettings.ignore_adler32 = 1; - state.decoder.zlibsettings.ignore_nlen = 1; - state.decoder.ignore_crc = 1; - // Also make decoder attempt to support partial files with missing ending to - // go further with parsing. - state.decoder.ignore_end = 1; - - // First test without color conversion (keep color type of the PNG) - state.decoder.color_convert = 0; - - unsigned error = testDecode(state, data, size); - - // If valid PNG found, try decoding with color conversion to the most common - // default color type, and to the randomly chosen type. - if(error == 0) { - state.decoder.color_convert = 1; - testDecode(state, data, size); - - state.info_raw.colortype = colortypes[random_color_type]; - state.info_raw.bitdepth = bitdepths[random_color_type]; - testDecode(state, data, size); - } - - return 0; -} - -#endif diff --git a/Marlin/lib/LodePNG/lodepng_unittest.cpp b/Marlin/lib/LodePNG/lodepng_unittest.cpp deleted file mode 100644 index 9e4ce86c60..0000000000 --- a/Marlin/lib/LodePNG/lodepng_unittest.cpp +++ /dev/null @@ -1,3843 +0,0 @@ -/* -LodePNG Unit Test - -Copyright (c) 2005-2022 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -//g++ lodepng.cpp lodepng_util.cpp lodepng_unittest.cpp -Wall -Wextra -Wsign-conversion -pedantic -ansi -O3 - -/* -Testing instructions: - -*) Ensure no tests commented out below or early return in doMain - -*) Compile with g++ with all warnings and run the unit test -g++ lodepng.cpp lodepng_util.cpp lodepng_unittest.cpp -Werror -Wall -Wextra -Wsign-conversion -Wshadow -pedantic -ansi -O3 && ./a.out - -*) Compile with clang, which may sometimes give different warnings -clang++ lodepng.cpp lodepng_util.cpp lodepng_unittest.cpp -Werror -Wall -Wextra -Wsign-conversion -Wshadow -pedantic -ansi -O3 - -*) Compile with pure ISO C90 and all warnings: -mv lodepng.cpp lodepng.c ; gcc -I ./ lodepng.c examples/example_decode.c -ansi -pedantic -Werror -Wall -Wextra -O3 ; mv lodepng.c lodepng.cpp - -mv lodepng.cpp lodepng.c ; clang -I ./ lodepng.c examples/example_decode.c -ansi -pedantic -Werror -Wall -Wextra -O3 ; mv lodepng.c lodepng.cpp - -*) Compile with C with -pedantic but not -ansi flag so it warns about // style comments in C++-only ifdefs -mv lodepng.cpp lodepng.c ; gcc -I ./ lodepng.c examples/example_decode.c -pedantic -Werror -Wall -Wextra -O3 ; mv lodepng.c lodepng.cpp - -*) test other compilers - -*) try lodepng_benchmark.cpp -g++ lodepng.cpp lodepng_benchmark.cpp -Werror -Wall -Wextra -pedantic -ansi -lSDL2 -O3 && ./a.out testdata/corpus/''* - -*) try the fuzzer -clang++ -fsanitize=fuzzer -DLODEPNG_MAX_ALLOC=100000000 lodepng.cpp lodepng_fuzzer.cpp -O3 -o fuzzer && ./fuzzer - -clang++ -fsanitize=fuzzer,address,undefined -DLODEPNG_MAX_ALLOC=100000000 lodepng.cpp lodepng_fuzzer.cpp -O3 -o fuzzer && ./fuzzer - -*) Check if all C++ examples compile without warnings: -g++ -I ./ lodepng.cpp examples/''*.cpp -Werror -W -Wall -ansi -pedantic -O3 -c - -*) Check if all C examples compile without warnings: -mv lodepng.cpp lodepng.c ; gcc -I ./ lodepng.c examples/''*.c -Werror -W -Wall -ansi -pedantic -O3 -c ; mv lodepng.c lodepng.cpp - -*) Check pngdetail.cpp: -g++ lodepng.cpp lodepng_util.cpp pngdetail.cpp -Werror -W -Wall -ansi -pedantic -O3 -o pngdetail -./pngdetail testdata/PngSuite/basi0g01.png - -*) Test compiling with some code sections with #defines disabled, for unused static function warnings etc... -g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_CRC -g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_ZLIB -g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_PNG -g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_DECODER -g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_ENCODER -g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_DISK -g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_ANCILLARY_CHUNKS -g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_ERROR_TEXT -g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_CPP -g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_ZLIB -DLODEPNG_NO_COMPILE_DECODER -g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_ZLIB -DLODEPNG_NO_COMPILE_ENCODER -g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_PNG -DLODEPNG_NO_COMPILE_DECODER -g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_PNG -DLODEPNG_NO_COMPILE_ENCODER -g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_DECODER -DLODEPNG_NO_COMPILE_ANCILLARY_CHUNKS -DLODEPNG_NO_COMPILE_ERROR_TEXT -DLODEPNG_NO_COMPILE_DISK -g++ lodepng.cpp -W -Wall -ansi -pedantic -O3 -c -DLODEPNG_NO_COMPILE_ENCODER -DLODEPNG_NO_COMPILE_ANCILLARY_CHUNKS -DLODEPNG_NO_COMPILE_ERROR_TEXT -DLODEPNG_NO_COMPILE_DISK -rm *.o - -*) analyze with clang: -clang++ lodepng.cpp --analyze - -More verbose: -clang++ --analyze -Xanalyzer -analyzer-output=text lodepng.cpp - -Or html, look under lodepng.plist dir afterwards and find the numbered locations in the pages: -clang++ --analyze -Xanalyzer -analyzer-output=html lodepng.cpp - -*) check for memory leaks and vulnerabilities with valgrind -(DISABLE_SLOW disables a few tests that are very slow with valgrind) -g++ -DDISABLE_SLOW lodepng.cpp lodepng_util.cpp lodepng_unittest.cpp -Wall -Wextra -pedantic -ansi -O3 -DLODEPNG_MAX_ALLOC=100000000 && valgrind --leak-check=full --track-origins=yes ./a.out - -*) Try with clang++ and address sanitizer (to get line numbers, make sure 'llvm' is also installed to get 'llvm-symbolizer' -clang++ -O3 -fsanitize=address,undefined lodepng.cpp lodepng_util.cpp lodepng_unittest.cpp -Werror -Wall -Wextra -Wshadow -pedantic -ansi && ASAN_OPTIONS=allocator_may_return_null=1 ./a.out - -clang++ -g3 -fsanitize=address,undefined lodepng.cpp lodepng_util.cpp lodepng_unittest.cpp -Werror -Wall -Wextra -Wshadow -pedantic -ansi && ASAN_OPTIONS=allocator_may_return_null=1 ./a.out - -*) remove "#include " from lodepng.cpp if it's still in there (some are legit) -cat lodepng.cpp lodepng_util.cpp | grep iostream -cat lodepng.cpp lodepng_util.cpp | grep stdio -cat lodepng.cpp lodepng_util.cpp | grep "#include" - -*) try the Makefile -make clean && make -j -rm *.o *.obj - -*) check that no plain free, malloc, realloc, strlen, memcpy, memset, ... used, but the lodepng_* versions instead - -*) check version dates in copyright message and LODEPNG_VERSION_STRING - -*) check year in copyright message at top of all files as well as at bottom of lodepng.h - -*) check examples/sdl.cpp with the png test suite images (the "x" ones are expected to show error) -g++ -I ./ lodepng.cpp examples/example_sdl.cpp -Werror -Wall -Wextra -pedantic -ansi -O3 -lSDL2 -o showpng && ./showpng testdata/PngSuite/''*.png - -*) strip trailing spaces and ensure consistent newlines - -*) test warnings in other compilers - -*) check diff of lodepng.cpp and lodepng.h before submitting -git difftool -y - -*/ -#if 0 -#include "lodepng.h" -#include "lodepng_util.h" - -#include -#include -#include -#include -#include -#include -#include - -#include -#include - -//////////////////////////////////////////////////////////////////////////////// - -void fail() { - throw 1; //that's how to let a unittest fail -} - -//Utility for debug messages -template -std::string valtostr(const T& val) { - std::ostringstream sstream; - sstream << val; - return sstream.str(); -} - -//Print char as a numeric value rather than a character -template<> -std::string valtostr(const unsigned char& val) { - std::ostringstream sstream; - sstream << (int)val; - return sstream.str(); -} - -//Print char pointer as pointer, not as string -template -std::string valtostr(const T* val) { - std::ostringstream sstream; - sstream << (const void*)val; - return sstream.str(); -} - -template -std::string valtostr(const std::vector& val) { - std::ostringstream sstream; - sstream << "[vector with size " << val.size() << "]"; - return sstream.str(); -} - -// TODO: remove, use only ASSERT_EQUALS (it prints line number). Requires adding extra message ability to ASSERT_EQUALS -template -void assertEquals(const T& expected, const U& actual, const std::string& message = "") { - if(expected != (T)actual) { - std::cout << "Error: Not equal! Expected " << valtostr(expected) - << " got " << valtostr((T)actual) << ". " - << "Message: " << message << std::endl; - fail(); - } -} - -// TODO: remove, use only ASSERT_TRUE (it prints line number). Requires adding extra message ability to ASSERT_TRUE -void assertTrue(bool value, const std::string& message = "") { - if(!value) { - std::cout << "Error: expected true. " << "Message: " << message << std::endl; - fail(); - } -} - -//assert that no error -void assertNoPNGError(unsigned error, const std::string& message = "") { - if(error) { - std::string msg = (message == "") ? lodepng_error_text(error) - : message + std::string(": ") + lodepng_error_text(error); - assertEquals(0, error, msg); - } -} - -void assertNoError(unsigned error) { - if(error) { - assertEquals(0, error, "Expected no error"); - } -} - -#define STR_EXPAND(s) #s -#define STR(s) STR_EXPAND(s) -#define ASSERT_TRUE(v) {\ - if(!(v)) {\ - std::cout << std::string("line ") + STR(__LINE__) + ": " + STR(v) + " ASSERT_TRUE failed: ";\ - std::cout << "Expected true but got " << valtostr(v) << ". " << std::endl;\ - fail();\ - }\ -} -#define ASSERT_EQUALS(e, v) {\ - if((e) != (v)) {\ - std::cout << std::string("line ") + STR(__LINE__) + ": " + STR(v) + " ASSERT_EQUALS failed: ";\ - std::cout << "Expected " << valtostr(e) << " but got " << valtostr(v) << ". " << std::endl;\ - fail();\ - }\ -} -#define ASSERT_NOT_EQUALS(e, v) {\ - if((e) == (v)) {\ - std::cout << std::string("line ") + STR(__LINE__) + ": " + STR(v) + " ASSERT_NOT_EQUALS failed: ";\ - std::cout << "Expected not " << valtostr(e) << " but got " << valtostr(v) << ". " << std::endl;\ - fail();\ - }\ -} - -template -bool isNear(T e, U v, V maxdist) { - T dist = e > (T)v ? e - (T)v : (T)v - e; - return dist <= (T)maxdist; -} - -template -T diff(T e, U v) { - return v > e ? v - e : e - v; -} - -#define ASSERT_NEAR(e, v, maxdist) {\ - if(!isNear(e, v, maxdist)) {\ - std::cout << std::string("line ") + STR(__LINE__) + ": " + STR(v) + " ASSERT_NEAR failed: ";\ - std::cout << "dist too great! Expected near " << valtostr(e) << " but got " << valtostr(v) << ", with max dist " << valtostr(maxdist)\ - << " but got dist " << valtostr(diff(e, v)) << ". " << std::endl;\ - fail();\ - }\ -} - -#define ASSERT_STRING_EQUALS(e, v) ASSERT_EQUALS(std::string(e), std::string(v)) -#define ASSERT_NO_PNG_ERROR_MSG(error, message) assertNoPNGError(error, std::string("line ") + STR(__LINE__) + (std::string(message).empty() ? std::string("") : (": " + std::string(message)))) -#define ASSERT_NO_PNG_ERROR(error) ASSERT_NO_PNG_ERROR_MSG(error, std::string("")) - -static const std::string BASE64 = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/"; - - - -//T and U can be std::string or std::vector -template -void toBase64(T& out, const U& in) { - for(size_t i = 0; i < in.size(); i += 3) { - int v = 65536 * in[i]; - if(i + 1 < in.size()) v += 256 * in[i + 1]; - if(i + 2 < in.size()) v += in[i + 2]; - out.push_back(BASE64[(v >> 18) & 0x3f]); - out.push_back(BASE64[(v >> 12) & 0x3f]); - if(i + 1 < in.size()) out.push_back(BASE64[(v >> 6) & 0x3f]); - else out.push_back('='); - if(i + 2 < in.size()) out.push_back(BASE64[(v >> 0) & 0x3f]); - else out.push_back('='); - } -} - -int fromBase64(int v) { - if(v >= 'A' && v <= 'Z') return (v - 'A'); - if(v >= 'a' && v <= 'z') return (v - 'a' + 26); - if(v >= '0' && v <= '9') return (v - '0' + 52); - if(v == '+') return 62; - if(v == '/') return 63; - return 0; //v == '=' -} - -//T and U can be std::string or std::vector -template -void fromBase64(T& out, const U& in) { - for(size_t i = 0; i + 3 < in.size(); i += 4) { - int v = 262144 * fromBase64(in[i]) + 4096 * fromBase64(in[i + 1]) + 64 * fromBase64(in[i + 2]) + fromBase64(in[i + 3]); - out.push_back((v >> 16) & 0xff); - if(in[i + 2] != '=') out.push_back((v >> 8) & 0xff); - if(in[i + 3] != '=') out.push_back((v >> 0) & 0xff); - } -} - -unsigned getRandom() { - static unsigned s = 1000000000; - // xorshift32, good enough for testing - s ^= (s << 13); - s ^= (s >> 17); - s ^= (s << 5); - return s; -} - -//////////////////////////////////////////////////////////////////////////////// - - -unsigned leftrotate(unsigned x, unsigned c) { - return (x << c) | (x >> (32u - c)); -} - -// the 128-bit result is output in 4 32-bit integers a0..d0 (to make 16-byte digest: append a0|b0|c0|d0 in little endian) -void md5sum(const unsigned char* in, size_t size, unsigned* a0, unsigned* b0, unsigned* c0, unsigned* d0) { - ASSERT_EQUALS(4, sizeof(unsigned)); - // per-round shift amounts - static const unsigned s[64] = { - 7, 12, 17, 22, 7, 12, 17, 22, 7, 12, 17, 22, 7, 12, 17, 22, 5, 9, 14, 20, 5, 9, 14, 20, 5, 9, 14, 20, 5, 9, 14, 20, - 4, 11, 16, 23, 4, 11, 16, 23, 4, 11, 16, 23, 4, 11, 16, 23, 6, 10, 15, 21, 6, 10, 15, 21, 6, 10, 15, 21, 6, 10, 15, 21, - }; - // precomputed table from sines - static const unsigned k[64] = { - 0xd76aa478, 0xe8c7b756, 0x242070db, 0xc1bdceee, 0xf57c0faf, 0x4787c62a, 0xa8304613, 0xfd469501, - 0x698098d8, 0x8b44f7af, 0xffff5bb1, 0x895cd7be, 0x6b901122, 0xfd987193, 0xa679438e, 0x49b40821, - 0xf61e2562, 0xc040b340, 0x265e5a51, 0xe9b6c7aa, 0xd62f105d, 0x02441453, 0xd8a1e681, 0xe7d3fbc8, - 0x21e1cde6, 0xc33707d6, 0xf4d50d87, 0x455a14ed, 0xa9e3e905, 0xfcefa3f8, 0x676f02d9, 0x8d2a4c8a, - 0xfffa3942, 0x8771f681, 0x6d9d6122, 0xfde5380c, 0xa4beea44, 0x4bdecfa9, 0xf6bb4b60, 0xbebfbc70, - 0x289b7ec6, 0xeaa127fa, 0xd4ef3085, 0x04881d05, 0xd9d4d039, 0xe6db99e5, 0x1fa27cf8, 0xc4ac5665, - 0xf4292244, 0x432aff97, 0xab9423a7, 0xfc93a039, 0x655b59c3, 0x8f0ccc92, 0xffeff47d, 0x85845dd1, - 0x6fa87e4f, 0xfe2ce6e0, 0xa3014314, 0x4e0811a1, 0xf7537e82, 0xbd3af235, 0x2ad7d2bb, 0xeb86d391, - }; - - *a0 = 0x67452301; - *b0 = 0xefcdab89; - *c0 = 0x98badcfe; - *d0 = 0x10325476; - - // append bit, padding and size to input - std::vector data(in, in + size); - data.resize(((size + 1 + 8 + 63) / 64) * 64, 0); - data[size] = 128; // append 1 bit (msb) - size_t bitsize = size * 8; // append the size (shifts > 31 are avoided) - data[data.size() - 1] = ((bitsize >> 28u) >> 28u) & 255u; - data[data.size() - 2] = ((bitsize >> 24u) >> 24u) & 255u; - data[data.size() - 3] = ((bitsize >> 20u) >> 20u) & 255u; - data[data.size() - 4] = ((bitsize >> 16u) >> 16u) & 255u; - data[data.size() - 5] = (bitsize >> 24u) & 255u; - data[data.size() - 6] = (bitsize >> 16u) & 255u; - data[data.size() - 7] = (bitsize >> 8u) & 255u; - data[data.size() - 8] = bitsize & 255u; - - // per chunk - for(size_t i = 0; i < data.size(); i += 64) { - unsigned a = *a0; - unsigned b = *b0; - unsigned c = *c0; - unsigned d = *d0; - - for(size_t j = 0; j < 64; j++) { - unsigned f, g; - if(j <= 15u) { - f = (b & c) | (~b & d); - g = j; - } else if(j <= 31u) { - f = (d & b) | (~d & c); - g = (5u * j + 1u) & 15u; - } else if(j <= 47u) { - f = b ^ c ^ d; - g = (3u * j + 5u) & 15u; - } else { - f = c ^ (b | ~d); - g = (7u * j) & 15u; - } - unsigned m = (unsigned)(data[i + g * 4 + 3] << 24u) | (unsigned)(data[i + g * 4 + 2] << 16u) - | (unsigned)(data[i + g * 4 + 1] << 8u) | (unsigned)data[i + g * 4]; - f += a + k[j] + m; - a = d; - d = c; - c = b; - b += leftrotate(f, s[j]); - } - *a0 += a; - *b0 += b; - *c0 += c; - *d0 += d; - } -} - -std::string md5sum(const std::vector& in) { - unsigned a0, b0, c0, d0; - md5sum(in.data(), in.size(), &a0, &b0, &c0, &d0); - char result[33]; - //sprintf(result, "%8.8x%8.8x%8.8x%8.8x", a0, b0, c0, d0); - sprintf(result, "%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x", - a0 & 255, (a0 >> 8) & 255, (a0 >> 16) & 255, (a0 >> 24) & 255, - b0 & 255, (b0 >> 8) & 255, (b0 >> 16) & 255, (b0 >> 24) & 255, - c0 & 255, (c0 >> 8) & 255, (c0 >> 16) & 255, (c0 >> 24) & 255, - d0 & 255, (d0 >> 8) & 255, (d0 >> 16) & 255, (d0 >> 24) & 255); - return std::string(result); -} - -//////////////////////////////////////////////////////////////////////////////// - -//Test image data -struct Image { - std::vector data; - unsigned width; - unsigned height; - LodePNGColorType colorType; - unsigned bitDepth; -}; - -//Get number of color channels for a given PNG color type -unsigned getNumColorChannels(unsigned colorType) { - switch(colorType) { - case 0: return 1; /*gray*/ - case 2: return 3; /*RGB*/ - case 3: return 1; /*palette*/ - case 4: return 2; /*gray + alpha*/ - case 6: return 4; /*RGBA*/ - } - return 0; /*unexisting color type*/ -} - -//Generate a test image with some data in it, the contents of the data is unspecified, -//except the content is not just one plain color, and not true random either to be compressible. -void generateTestImage(Image& image, unsigned width, unsigned height, LodePNGColorType colorType = LCT_RGBA, unsigned bitDepth = 8) { - image.width = width; - image.height = height; - image.colorType = colorType; - image.bitDepth = bitDepth; - - size_t bits = bitDepth * getNumColorChannels(colorType); //bits per pixel - size_t size = (width * height * bits + 7) / 8; //total image size in bytes - image.data.resize(size); - unsigned char value = 128; - for(size_t i = 0; i < size; i++) { - image.data[i] = value++; - } -} - -//Generate a 16-bit test image with minimal size that requires at minimum the given color type (bit depth, grayscaleness, ...) -//If key is true, makes it such that exactly one color is transparent, so it can use a key. If false, adds a translucent color depending on -//whether it's an alpha color type or not. -void generateTestImageRequiringColorType16(Image& image, LodePNGColorType colorType, unsigned bitDepth, bool key) { - image.colorType = colorType; - image.bitDepth = bitDepth; - unsigned w = 1; - unsigned h = 1; - - bool gray = colorType == LCT_GREY || colorType == LCT_GREY_ALPHA; - bool alpha = colorType == LCT_RGBA || colorType == LCT_GREY_ALPHA; - - if(colorType == LCT_PALETTE) { - w = 1u << bitDepth; - h = 256; // ensure it'll really choose palette, not omit it due to small image size - image.data.resize(w * h * 8); - for(size_t y = 0; y < h; y++) { - for(size_t x = 0; x < w; x++) { - size_t i = y * w * 8 + x * 8; - image.data[i + 0] = image.data[i + 1] = y; - image.data[i + 2] = image.data[i + 3] = 255; - image.data[i + 4] = image.data[i + 5] = 0; - image.data[i + 6] = image.data[i + 7] = (key && y == 0) ? 0 : 255; - } - } - } else if(bitDepth == 16) { - // one color suffices for this model. But add one more to support key. - w = 2; - image.data.resize(w * h * 8); - image.data[0] = 10; image.data[1] = 20; - image.data[2] = 10; image.data[3] = 20; - image.data[4] = gray ? 10 : 110; image.data[5] = gray ? 20 : 120; - image.data[6] = alpha ? 128 : 255; image.data[7] = alpha ? 20 : 255; - - image.data[8] = 40; image.data[9] = 50; - image.data[10] = 40; image.data[11] = 50; - image.data[12] = gray ? 40 : 140; image.data[13] = gray ? 50 : 150; - image.data[14] = key ? 0 : 255; image.data[15] = key ? 0 : 255; - } else if(gray) { - w = 2; - unsigned v = 255u / ((1u << bitDepth) - 1u); // value that forces at least this bitdepth - image.data.resize(w * h * 8); - image.data[0] = v; image.data[1] = v; - image.data[2] = v; image.data[3] = v; - image.data[4] = v; image.data[5] = v; - image.data[6] = alpha ? v : 255; image.data[7] = alpha ? v : 255; - - image.data[8] = image.data[9] = 0; - image.data[10] = image.data[11] = 0; - image.data[12] = image.data[13] = 0; - image.data[14] = image.data[15] = key ? 0 : 255; - } else { - // now it's RGB or RGBA with bitdepth 8 - w = 257; // must have at least more than 256 colors so it won't use palette - image.data.resize(w * h * 8); - for(size_t y = 0; y < h; y++) { - for(size_t x = 0; x < w; x++) { - size_t i = y * w * 8 + x * 8; - image.data[i + 0] = image.data[i + 1] = i / 2; - image.data[i + 2] = image.data[i + 3] = i / 3; - image.data[i + 4] = image.data[i + 5] = i / 5; - image.data[i + 6] = image.data[i + 7] = (key && y == 0) ? 0 : (alpha ? i : 255); - } - } - } - - image.width = w; - image.height = h; -} - -//Generate a 8-bit test image with minimal size that requires at minimum the given color type (bit depth, grayscaleness, ...). bitDepth max 8 here. -//If key is true, makes it such that exactly one color is transparent, so it can use a key. If false, adds a translucent color depending on -//whether it's an alpha color type or not. -void generateTestImageRequiringColorType8(Image& image, LodePNGColorType colorType, unsigned bitDepth, bool key) { - image.colorType = colorType; - image.bitDepth = bitDepth; - unsigned w = 1; - unsigned h = 1; - - bool gray = colorType == LCT_GREY || colorType == LCT_GREY_ALPHA; - bool alpha = colorType == LCT_RGBA || colorType == LCT_GREY_ALPHA; - - if(colorType == LCT_PALETTE) { - w = 1u << bitDepth; - h = 256; // ensure it'll really choose palette, not omit it due to small image size - image.data.resize(w * h * 4); - for(size_t y = 0; y < h; y++) { - for(size_t x = 0; x < w; x++) { - size_t i = y * w * 4 + x * 4; - image.data[i + 0] = x; - image.data[i + 1] = 255; - image.data[i + 2] = 0; - image.data[i + 3] = (key && x == 0) ? 0 : 255; - } - } - } else if(gray) { - w = 2; - unsigned v = 255u / ((1u << bitDepth) - 1u); // value that forces at least this bitdepth - image.data.resize(w * h * 4); - image.data[0] = v; - image.data[1] = v; - image.data[2] = v; - image.data[3] = alpha ? v : 255; - - image.data[4] = 0; - image.data[5] = 0; - image.data[6] = 0; - image.data[7] = key ? 0 : 255; - } else { - // now it's RGB or RGBA with bitdepth 8 - w = 257; // must have at least more than 256 colors so it won't use palette - image.data.resize(w * h * 4); - for(size_t y = 0; y < h; y++) { - for(size_t x = 0; x < w; x++) { - size_t i = y * w * 4 + x * 4; - image.data[i + 0] = i / 2; - image.data[i + 1] = i / 3; - image.data[i + 2] = i / 5; - image.data[i + 3] = (key && x == 0) ? 0 : (alpha ? i : 255); - } - } - } - - image.width = w; - image.height = h; -} - -//Check that the decoded PNG pixels are the same as the pixels in the image -void assertPixels(Image& image, const unsigned char* decoded, const std::string& message) { - for(size_t i = 0; i < image.data.size(); i++) { - int byte_expected = image.data[i]; - int byte_actual = decoded[i]; - - //last byte is special due to possible random padding bits which need not to be equal - if(i == image.data.size() - 1) { - size_t numbits = getNumColorChannels(image.colorType) * image.bitDepth * image.width * image.height; - size_t padding = 8u - (numbits - 8u * (numbits / 8u)); - if(padding != 8u) { - //set all padding bits of both to 0 - for(size_t j = 0; j < padding; j++) { - byte_expected = (byte_expected & (~(1 << j))) % 256; - byte_actual = (byte_actual & (~(1 << j))) % 256; - } - } - } - - assertEquals(byte_expected, byte_actual, message + " " + valtostr(i)); - } -} - -//Test LodePNG encoding and decoding the encoded result, using the C interface -void doCodecTestC(Image& image) { - unsigned char* encoded = 0; - size_t encoded_size = 0; - unsigned char* decoded = 0; - unsigned decoded_w; - unsigned decoded_h; - - struct OnExitScope { - unsigned char** a; - unsigned char** b; - OnExitScope(unsigned char** ca, unsigned char** cb) : a(ca), b(cb) {} - ~OnExitScope() { free(*a); free(*b); } - } onExitScope(&encoded, &decoded); - - unsigned error_enc = lodepng_encode_memory(&encoded, &encoded_size, &image.data[0], - image.width, image.height, image.colorType, image.bitDepth); - - if(error_enc != 0) std::cout << "Error: " << lodepng_error_text(error_enc) << std::endl; - ASSERT_NO_PNG_ERROR_MSG(error_enc, "encoder error C"); - - //if the image is large enough, compressing it should result in smaller size - if(image.data.size() > 512) assertTrue(encoded_size < image.data.size(), "compressed size"); - - unsigned error_dec = lodepng_decode_memory(&decoded, &decoded_w, &decoded_h, - encoded, encoded_size, image.colorType, image.bitDepth); - - if(error_dec != 0) std::cout << "Error: " << lodepng_error_text(error_dec) << std::endl; - ASSERT_NO_PNG_ERROR_MSG(error_dec, "decoder error C"); - - ASSERT_EQUALS(image.width, decoded_w); - ASSERT_EQUALS(image.height, decoded_h); - assertPixels(image, decoded, "Pixels C"); -} - -//Test LodePNG encoding and decoding the encoded result, using the C++ interface -void doCodecTestCPP(Image& image) { - std::vector encoded; - std::vector decoded; - unsigned decoded_w; - unsigned decoded_h; - - unsigned error_enc = lodepng::encode(encoded, image.data, image.width, image.height, - image.colorType, image.bitDepth); - - ASSERT_NO_PNG_ERROR_MSG(error_enc, "encoder error C++"); - - //if the image is large enough, compressing it should result in smaller size - if(image.data.size() > 512) assertTrue(encoded.size() < image.data.size(), "compressed size"); - - unsigned error_dec = lodepng::decode(decoded, decoded_w, decoded_h, encoded, image.colorType, image.bitDepth); - - ASSERT_NO_PNG_ERROR_MSG(error_dec, "decoder error C++"); - - ASSERT_EQUALS(image.width, decoded_w); - ASSERT_EQUALS(image.height, decoded_h); - ASSERT_EQUALS(image.data.size(), decoded.size()); - assertPixels(image, &decoded[0], "Pixels C++"); -} - - -void doCodecTestWithEncState(Image& image, lodepng::State& state) { - std::vector encoded; - std::vector decoded; - unsigned decoded_w; - unsigned decoded_h; - state.info_raw.colortype = image.colorType; - state.info_raw.bitdepth = image.bitDepth; - - - unsigned error_enc = lodepng::encode(encoded, image.data, image.width, image.height, state); - ASSERT_NO_PNG_ERROR_MSG(error_enc, "encoder error uncompressed"); - - unsigned error_dec = lodepng::decode(decoded, decoded_w, decoded_h, encoded, image.colorType, image.bitDepth); - - ASSERT_NO_PNG_ERROR_MSG(error_dec, "decoder error uncompressed"); - - ASSERT_EQUALS(image.width, decoded_w); - ASSERT_EQUALS(image.height, decoded_h); - ASSERT_EQUALS(image.data.size(), decoded.size()); - assertPixels(image, &decoded[0], "Pixels uncompressed"); -} - - -//Test LodePNG encoding and decoding the encoded result, using the C++ interface -void doCodecTestUncompressed(Image& image) { - lodepng::State state; - state.encoder.zlibsettings.btype = 0; - doCodecTestWithEncState(image, state); -} - -void doCodecTestNoLZ77(Image& image) { - lodepng::State state; - state.encoder.zlibsettings.use_lz77 = 0; - doCodecTestWithEncState(image, state); -} - -void testGetFilterTypes() { - std::cout << "testGetFilterTypes" << std::endl; - // Test that getFilterTypes works on the special case of 1-pixel wide interlaced image - std::string png64 = "iVBORw0KGgoAAAANSUhEUgAAAAEAAAAHCAIAAAExKYBVAAAAHUlEQVR4ASXHAQoAAAjCwPX/R9tK4ZBN4EHKcPcLXCgGAQa0TV8AAAAASUVORK5CYII="; - std::vector png; - fromBase64(png, png64); - std::vector types; - lodepng::getFilterTypes(types, png); - ASSERT_EQUALS(7, types.size()); - ASSERT_EQUALS(1, types[0]); - ASSERT_EQUALS(1, types[1]); - ASSERT_EQUALS(1, types[2]); - ASSERT_EQUALS(0, types[3]); - ASSERT_EQUALS(1, types[4]); - ASSERT_EQUALS(1, types[5]); - ASSERT_EQUALS(1, types[6]); -} - -//Test LodePNG encoding and decoding the encoded result, using the C++ interface, with interlace -void doCodecTestInterlaced(Image& image) { - std::vector encoded; - std::vector decoded; - unsigned decoded_w; - unsigned decoded_h; - - lodepng::State state; - state.info_png.interlace_method = 1; - state.info_raw.colortype = image.colorType; - state.info_raw.bitdepth = image.bitDepth; - - unsigned error_enc = lodepng::encode(encoded, image.data, image.width, image.height, state); - - ASSERT_NO_PNG_ERROR_MSG(error_enc, "encoder error interlaced"); - - //if the image is large enough, compressing it should result in smaller size - if(image.data.size() > 512) assertTrue(encoded.size() < image.data.size(), "compressed size"); - - state.info_raw.colortype = image.colorType; - state.info_raw.bitdepth = image.bitDepth; - unsigned error_dec = lodepng::decode(decoded, decoded_w, decoded_h, state, encoded); - - ASSERT_NO_PNG_ERROR_MSG(error_dec, "decoder error interlaced"); - - ASSERT_EQUALS(image.width, decoded_w); - ASSERT_EQUALS(image.height, decoded_h); - ASSERT_EQUALS(image.data.size(), decoded.size()); - assertPixels(image, &decoded[0], "Pixels interlaced"); -} - -//Test LodePNG encoding and decoding the encoded result -void doCodecTest(Image& image) { - doCodecTestC(image); - doCodecTestCPP(image); - doCodecTestInterlaced(image); - doCodecTestUncompressed(image); - doCodecTestNoLZ77(image); -} - - -//Test LodePNG encoding and decoding using some image generated with the given parameters -void codecTest(unsigned width, unsigned height, LodePNGColorType colorType = LCT_RGBA, unsigned bitDepth = 8) { - std::cout << "codec test " << width << " " << height << std::endl; - Image image; - generateTestImage(image, width, height, colorType, bitDepth); - doCodecTest(image); -} - -std::string removeSpaces(const std::string& s) { - std::string result; - for(size_t i = 0; i < s.size(); i++) if(s[i] != ' ') result += s[i]; - return result; -} - -void bitStringToBytes(std::vector& bytes, const std::string& bits_) { - std::string bits = removeSpaces(bits_); - bytes.resize((bits.size()) + 7 / 8); - for(size_t i = 0; i < bits.size(); i++) { - size_t j = i / 8; - size_t k = i % 8; - char c = bits[i]; - if(k == 0) bytes[j] = 0; - if(c == '1') bytes[j] |= (1 << (7 - k)); - } -} - -/* -test color convert on a single pixel. Testing palette and testing color keys is -not supported by this function. Pixel values given using bits in an std::string -of 0's and 1's. -*/ -void colorConvertTest(const std::string& bits_in, LodePNGColorType colorType_in, unsigned bitDepth_in, - const std::string& bits_out, LodePNGColorType colorType_out, unsigned bitDepth_out) { - std::cout << "color convert test " << bits_in << " - " << bits_out << std::endl; - - std::vector expected, actual, image; - bitStringToBytes(expected, bits_out); - actual.resize(expected.size()); - bitStringToBytes(image, bits_in); - LodePNGColorMode mode_in, mode_out; - lodepng_color_mode_init(&mode_in); - lodepng_color_mode_init(&mode_out); - mode_in.colortype = colorType_in; - mode_in.bitdepth = bitDepth_in; - mode_out.colortype = colorType_out; - mode_out.bitdepth = bitDepth_out; - unsigned error = lodepng_convert(&actual[0], &image[0], &mode_out, &mode_in, 1, 1); - - ASSERT_NO_PNG_ERROR_MSG(error, "convert error"); - - for(size_t i = 0; i < expected.size(); i++) { - assertEquals((int)expected[i], (int)actual[i], "byte " + valtostr(i)); - } - - lodepng_color_mode_cleanup(&mode_in); - lodepng_color_mode_cleanup(&mode_out); -} - -void testOtherPattern1() { - std::cout << "codec other pattern 1" << std::endl; - - Image image1; - size_t w = 192; - size_t h = 192; - image1.width = w; - image1.height = h; - image1.colorType = LCT_RGBA; - image1.bitDepth = 8; - image1.data.resize(w * h * 4u); - for(size_t y = 0; y < h; y++) - for(size_t x = 0; x < w; x++) { - //pattern 1 - image1.data[4u * w * y + 4u * x + 0u] = (unsigned char)(127 * (1 + std::sin(( x * x + y * y) / (w * h / 8.0)))); - image1.data[4u * w * y + 4u * x + 1u] = (unsigned char)(127 * (1 + std::sin(((w - x - 1) * (w - x - 1) + y * y) / (w * h / 8.0)))); - image1.data[4u * w * y + 4u * x + 2u] = (unsigned char)(127 * (1 + std::sin(( x * x + (h - y - 1) * (h - y - 1)) / (w * h / 8.0)))); - image1.data[4u * w * y + 4u * x + 3u] = (unsigned char)(127 * (1 + std::sin(((w - x - 1) * (w - x - 1) + (h - y - 1) * (h - y - 1)) / (w * h / 8.0)))); - } - - doCodecTest(image1); -} - -void testOtherPattern2() { - std::cout << "codec other pattern 2" << std::endl; - - Image image1; - size_t w = 192; - size_t h = 192; - image1.width = w; - image1.height = h; - image1.colorType = LCT_RGBA; - image1.bitDepth = 8; - image1.data.resize(w * h * 4u); - for(size_t y = 0; y < h; y++) - for(size_t x = 0; x < w; x++) { - image1.data[4u * w * y + 4u * x + 0u] = 255 * !(x & y); - image1.data[4u * w * y + 4u * x + 1u] = x ^ y; - image1.data[4u * w * y + 4u * x + 2u] = x | y; - image1.data[4u * w * y + 4u * x + 3u] = 255; - } - - doCodecTest(image1); -} - -void testSinglePixel(int r, int g, int b, int a) { - std::cout << "codec single pixel " << r << " " << g << " " << b << " " << a << std::endl; - Image pixel; - pixel.width = 1; - pixel.height = 1; - pixel.colorType = LCT_RGBA; - pixel.bitDepth = 8; - pixel.data.resize(4); - pixel.data[0] = r; - pixel.data[1] = g; - pixel.data[2] = b; - pixel.data[3] = a; - - doCodecTest(pixel); -} - -void testColor(int r, int g, int b, int a) { - std::cout << "codec test color " << r << " " << g << " " << b << " " << a << std::endl; - Image image; - image.width = 20; - image.height = 20; - image.colorType = LCT_RGBA; - image.bitDepth = 8; - image.data.resize(20 * 20 * 4); - for(size_t y = 0; y < 20; y++) - for(size_t x = 0; x < 20; x++) { - image.data[20 * 4 * y + 4 * x + 0] = r; - image.data[20 * 4 * y + 4 * x + 0] = g; - image.data[20 * 4 * y + 4 * x + 0] = b; - image.data[20 * 4 * y + 4 * x + 0] = a; - } - - doCodecTest(image); - - Image image2 = image; - image2.data[3] = 0; //one fully transparent pixel - doCodecTest(image2); - image2.data[3] = 128; //one semi transparent pixel - doCodecTest(image2); - - Image image3 = image; - // add 255 different colors - for(size_t i = 0; i < 255; i++) { - image.data[i * 4 + 0] = i; - image.data[i * 4 + 1] = i; - image.data[i * 4 + 2] = i; - image.data[i * 4 + 3] = 255; - } - doCodecTest(image3); - // a 256th color - image.data[255 * 4 + 0] = 255; - image.data[255 * 4 + 1] = 255; - image.data[255 * 4 + 2] = 255; - image.data[255 * 4 + 3] = 255; - doCodecTest(image3); - - testSinglePixel(r, g, b, a); -} - -// Tests combinations of various colors in different orders -void testFewColors() { - std::cout << "codec test few colors " << std::endl; - Image image; - image.width = 4; - image.height = 4; - image.colorType = LCT_RGBA; - image.bitDepth = 8; - image.data.resize(image.width * image.height * 4); - std::vector colors; - colors.push_back(0); colors.push_back(0); colors.push_back(0); colors.push_back(255); // black - colors.push_back(255); colors.push_back(255); colors.push_back(255); colors.push_back(255); // white - colors.push_back(128); colors.push_back(128); colors.push_back(128); colors.push_back(255); // gray - colors.push_back(0); colors.push_back(0); colors.push_back(255); colors.push_back(255); // blue - colors.push_back(255); colors.push_back(255); colors.push_back(255); colors.push_back(0); // transparent white - colors.push_back(255); colors.push_back(255); colors.push_back(255); colors.push_back(1); // translucent white - for(size_t i = 0; i < colors.size(); i += 4) - for(size_t j = 0; j < colors.size(); j += 4) - for(size_t k = 0; k < colors.size(); k += 4) - for(size_t l = 0; l < colors.size(); l += 4) { - for(unsigned y = 0; y < image.height; y++) - for(unsigned x = 0; x < image.width; x++) { - size_t a = (y * image.width + x) & 3; - size_t b = (a == 0) ? i : ((a == 1) ? j : ((a == 2) ? k : l)); - for(size_t c = 0; c < 4; c++) { - image.data[y * image.width * 4 + x * 4 + c] = colors[b + c]; - } - } - doCodecTest(image); - } - image.width = 20; - image.height = 20; - image.data.resize(image.width * image.height * 4); - for(size_t i = 0; i < colors.size(); i += 4) - for(size_t j = 0; j < colors.size(); j += 4) - for(size_t k = 0; k < colors.size(); k += 4) { - for(unsigned y = 0; y < image.height; y++) - for(unsigned x = 0; x < image.width; x++) { - size_t a = (y * image.width + x) % 3; - size_t b = (a == 0) ? i : ((a == 1) ? j : k); - for(size_t c = 0; c < 4; c++) { - image.data[y * image.width * 4 + x * 4 + c] = colors[b + c]; - } - } - doCodecTest(image); - } -} - -void testSize(unsigned w, unsigned h) { - std::cout << "codec test size " << w << " " << h << std::endl; - Image image; - image.width = w; - image.height = h; - image.colorType = LCT_RGBA; - image.bitDepth = 8; - image.data.resize(w * h * 4); - for(size_t y = 0; y < h; y++) - for(size_t x = 0; x < w; x++) { - image.data[w * 4 * y + 4 * x + 0] = x % 256; - image.data[w * 4 * y + 4 * x + 0] = y % 256; - image.data[w * 4 * y + 4 * x + 0] = 255; - image.data[w * 4 * y + 4 * x + 0] = 255; - } - - doCodecTest(image); -} - -void testPNGCodec() { - codecTest(1, 1); - codecTest(2, 2); - codecTest(1, 1, LCT_GREY, 1); - codecTest(7, 7, LCT_GREY, 1); -#ifndef DISABLE_SLOW - codecTest(127, 127); - codecTest(127, 127, LCT_GREY, 1); - codecTest(320, 320); - codecTest(1, 10000); - codecTest(10000, 1); - - testOtherPattern1(); - testOtherPattern2(); -#endif // DISABLE_SLOW - - testColor(255, 255, 255, 255); - testColor(0, 0, 0, 255); - testColor(1, 2, 3, 255); - testColor(255, 0, 0, 255); - testColor(0, 255, 0, 255); - testColor(0, 0, 255, 255); - testColor(0, 0, 0, 255); - testColor(1, 1, 1, 255); - testColor(1, 1, 1, 1); - testColor(0, 0, 0, 128); - testColor(255, 0, 0, 128); - testColor(127, 127, 127, 255); - testColor(128, 128, 128, 255); - testColor(127, 127, 127, 128); - testColor(128, 128, 128, 128); - //transparent single pixels - testColor(0, 0, 0, 0); - testColor(255, 0, 0, 0); - testColor(1, 2, 3, 0); - testColor(255, 255, 255, 0); - testColor(254, 254, 254, 0); - - // This is mainly to test the Adam7 interlacing - for(unsigned h = 1; h < 12; h++) - for(unsigned w = 1; w < 12; w++) { - testSize(w, h); - } -} - -//Tests some specific color conversions with specific color bit combinations -void testColorConvert() { - //test color conversions to RGBA8 - colorConvertTest("1", LCT_GREY, 1, "11111111 11111111 11111111 11111111", LCT_RGBA, 8); - colorConvertTest("10", LCT_GREY, 2, "10101010 10101010 10101010 11111111", LCT_RGBA, 8); - colorConvertTest("1001", LCT_GREY, 4, "10011001 10011001 10011001 11111111", LCT_RGBA, 8); - colorConvertTest("10010101", LCT_GREY, 8, "10010101 10010101 10010101 11111111", LCT_RGBA, 8); - colorConvertTest("10010101 11111110", LCT_GREY_ALPHA, 8, "10010101 10010101 10010101 11111110", LCT_RGBA, 8); - colorConvertTest("10010101 00000001 11111110 00000001", LCT_GREY_ALPHA, 16, "10010101 10010101 10010101 11111110", LCT_RGBA, 8); - colorConvertTest("01010101 00000000 00110011", LCT_RGB, 8, "01010101 00000000 00110011 11111111", LCT_RGBA, 8); - colorConvertTest("01010101 00000000 00110011 10101010", LCT_RGBA, 8, "01010101 00000000 00110011 10101010", LCT_RGBA, 8); - colorConvertTest("10101010 01010101 11111111 00000000 11001100 00110011", LCT_RGB, 16, "10101010 11111111 11001100 11111111", LCT_RGBA, 8); - colorConvertTest("10101010 01010101 11111111 00000000 11001100 00110011 11100111 00011000", LCT_RGBA, 16, "10101010 11111111 11001100 11100111", LCT_RGBA, 8); - - //test color conversions to RGB8 - colorConvertTest("1", LCT_GREY, 1, "11111111 11111111 11111111", LCT_RGB, 8); - colorConvertTest("10", LCT_GREY, 2, "10101010 10101010 10101010", LCT_RGB, 8); - colorConvertTest("1001", LCT_GREY, 4, "10011001 10011001 10011001", LCT_RGB, 8); - colorConvertTest("10010101", LCT_GREY, 8, "10010101 10010101 10010101", LCT_RGB, 8); - colorConvertTest("10010101 11111110", LCT_GREY_ALPHA, 8, "10010101 10010101 10010101", LCT_RGB, 8); - colorConvertTest("10010101 00000001 11111110 00000001", LCT_GREY_ALPHA, 16, "10010101 10010101 10010101", LCT_RGB, 8); - colorConvertTest("01010101 00000000 00110011", LCT_RGB, 8, "01010101 00000000 00110011", LCT_RGB, 8); - colorConvertTest("01010101 00000000 00110011 10101010", LCT_RGBA, 8, "01010101 00000000 00110011", LCT_RGB, 8); - colorConvertTest("10101010 01010101 11111111 00000000 11001100 00110011", LCT_RGB, 16, "10101010 11111111 11001100", LCT_RGB, 8); - colorConvertTest("10101010 01010101 11111111 00000000 11001100 00110011 11100111 00011000", LCT_RGBA, 16, "10101010 11111111 11001100", LCT_RGB, 8); - - //test color conversions to RGBA16 - colorConvertTest("1", LCT_GREY, 1, "11111111 11111111 11111111 11111111 11111111 11111111 11111111 11111111", LCT_RGBA, 16); - colorConvertTest("10", LCT_GREY, 2, "10101010 10101010 10101010 10101010 10101010 10101010 11111111 11111111", LCT_RGBA, 16); - - //test grayscale color conversions - colorConvertTest("1", LCT_GREY, 1, "11111111", LCT_GREY, 8); - colorConvertTest("1", LCT_GREY, 1, "1111111111111111", LCT_GREY, 16); - colorConvertTest("0", LCT_GREY, 1, "00000000", LCT_GREY, 8); - colorConvertTest("0", LCT_GREY, 1, "0000000000000000", LCT_GREY, 16); - colorConvertTest("11", LCT_GREY, 2, "11111111", LCT_GREY, 8); - colorConvertTest("11", LCT_GREY, 2, "1111111111111111", LCT_GREY, 16); - colorConvertTest("10", LCT_GREY, 2, "10101010", LCT_GREY, 8); - colorConvertTest("10", LCT_GREY, 2, "1010101010101010", LCT_GREY, 16); - colorConvertTest("1000", LCT_GREY, 4, "10001000", LCT_GREY, 8); - colorConvertTest("1000", LCT_GREY, 4, "1000100010001000", LCT_GREY, 16); - colorConvertTest("10110101", LCT_GREY, 8, "1011010110110101", LCT_GREY, 16); - colorConvertTest("1011010110110101", LCT_GREY, 16, "10110101", LCT_GREY, 8); - - //others - colorConvertTest("11111111 11111111 11111111 00000000 00000000 00000000", LCT_RGB, 8, "10", LCT_GREY, 1); - colorConvertTest("11111111 11111111 11111111 11111111 11111111 11111111 00000000 00000000 00000000 00000000 00000000 00000000", LCT_RGB, 16, "10", LCT_GREY, 1); -} - -//This tests color conversions from any color model to any color model, with any bit depth -//But it tests only with colors black and white, because that are the only colors every single model supports -void testColorConvert2() { - std::cout << "testColorConvert2" << std::endl; - struct Combo { - LodePNGColorType colortype; - unsigned bitdepth; - }; - - Combo combos[15] = { { LCT_GREY, 1}, { LCT_GREY, 2}, { LCT_GREY, 4}, { LCT_GREY, 8}, { LCT_GREY, 16}, { LCT_RGB, 8}, { LCT_RGB, 16}, { LCT_PALETTE, 1}, { LCT_PALETTE, 2}, { LCT_PALETTE, 4}, { LCT_PALETTE, 8}, { LCT_GREY_ALPHA, 8}, { LCT_GREY_ALPHA, 16}, { LCT_RGBA, 8}, { LCT_RGBA, 16}, - }; - - lodepng::State state; - LodePNGColorMode& mode_in = state.info_png.color; - LodePNGColorMode& mode_out = state.info_raw; - LodePNGColorMode mode_8; - lodepng_color_mode_init(&mode_8); - - for(size_t i = 0; i < 256; i++) { - size_t j = i == 1 ? 255 : i; - lodepng_palette_add(&mode_in, j, j, j, 255); - lodepng_palette_add(&mode_out, j, j, j, 255); - } - - for(size_t i = 0; i < 15; i++) { - mode_in.colortype = combos[i].colortype; - mode_in.bitdepth = combos[i].bitdepth; - - for(size_t j = 0; j < 15; j++) { - mode_out.colortype = combos[i].colortype; - mode_out.bitdepth = combos[i].bitdepth; - - unsigned char eight[36] = { - 0,0,0,255, 255,255,255,255, - 0,0,0,255, 255,255,255,255, - 255,255,255,255, 0,0,0,255, - 255,255,255,255, 255,255,255,255, - 0,0,0,255 }; //input in RGBA8 - unsigned char in[72]; //custom input color type - unsigned char out[72]; //custom output color type - unsigned char eight2[36]; //back in RGBA8 after all conversions to check correctness - unsigned error = 0; - - error |= lodepng_convert(in, eight, &mode_in, &mode_8, 3, 3); - if(!error) error |= lodepng_convert(out, in, &mode_out, &mode_in, 3, 3); //Test input to output type - if(!error) error |= lodepng_convert(eight2, out, &mode_8, &mode_out, 3, 3); - - if(!error) { - for(size_t k = 0; k < 36; k++) { - if(eight[k] != eight2[k]) { - error = 99999; - break; - } - } - } - - if(error) { - std::cout << "Error " << error << " i: " << i << " j: " << j - << " colortype i: " << combos[i].colortype - << " bitdepth i: " << combos[i].bitdepth - << " colortype j: " << combos[j].colortype - << " bitdepth j: " << combos[j].bitdepth - << std::endl; - if(error != 99999) ASSERT_NO_PNG_ERROR(error); - else fail(); - } - } - } -} - -//if compressible is true, the test will also assert that the compressed string is smaller -void testCompressStringZlib(const std::string& text, bool compressible) { - if(text.size() < 500) std::cout << "compress test with text: " << text << std::endl; - else std::cout << "compress test with text length: " << text.size() << std::endl; - - std::vector in(text.size()); - for(size_t i = 0; i < text.size(); i++) in[i] = (unsigned char)text[i]; - unsigned char* out = 0; - size_t outsize = 0; - unsigned error = 0; - - error = lodepng_zlib_compress(&out, &outsize, in.empty() ? 0 : &in[0], in.size(), &lodepng_default_compress_settings); - ASSERT_NO_PNG_ERROR(error); - if(compressible) assertTrue(outsize < in.size()); - - unsigned char* out2 = 0; - size_t outsize2 = 0; - - error = lodepng_zlib_decompress(&out2, &outsize2, out, outsize, &lodepng_default_decompress_settings); - ASSERT_NO_PNG_ERROR(error); - ASSERT_EQUALS(outsize2, in.size()); - for(size_t i = 0; i < in.size(); i++) ASSERT_EQUALS(in[i], out2[i]); - - free(out); - free(out2); -} - -void testCompressZlib() { - testCompressStringZlib("", false); - testCompressStringZlib("a", false); - testCompressStringZlib("aa", false); - testCompressStringZlib("ababababababababababababababababababababababababababababababababababababababababababab", true); - testCompressStringZlib("abaaaabaabbbaabbabbababbbbabababbbaabbbaaaabbbbabbbabbbaababbbbbaaabaabbabaaaabbbbbbab", true); - testCompressStringZlib("aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaab", true); - testCompressStringZlib("omnomnomnomnomnomnomnomnomnomnom", true); - testCompressStringZlib("the quick brown fox jumps over the lazy dog. the quick brown fox jumps over the lazy dog.", true); - testCompressStringZlib("abracadabra", false); - testCompressStringZlib("hello hello hello hello hello hello hello hello hello hello hello?", true); - testCompressStringZlib("WPgZX2D*um0H::,4/KU\"kt\"Ne\"#Qa.&# buffer; - lodepng::load_file(buffer, filename); - std::string f; - for(size_t i = 0; i < buffer.size(); i++) f += (char)buffer[i]; - testCompressStringZlib(f, false); -} - -void testDiskPNG(const std::string& filename) { - std::cout << "testDiskPNG: File " << filename << std::endl; - - Image image; - image.colorType = LCT_RGB; - image.bitDepth = 8; - unsigned error = lodepng::decode(image.data, image.width, image.height, filename, image.colorType, image.bitDepth); - ASSERT_NO_PNG_ERROR(error); - - doCodecTest(image); -} - -std::vector strtovector(const std::string& numbers) { - std::vector result; - std::stringstream ss(numbers); - unsigned i; - while(ss >> i) result.push_back(i); - return result; -} - -void doTestHuffmanCodeLengths(const std::string& expectedstr, const std::string& counts, size_t bitlength) { - std::vector expected = strtovector(expectedstr); - std::vector count = strtovector(counts); - std::cout << "doTestHuffmanCodeLengths: " << counts << std::endl; - std::vector result(count.size()); - unsigned error = lodepng_huffman_code_lengths(&result[0], &count[0], count.size(), bitlength); - ASSERT_NO_PNG_ERROR_MSG(error, "errorcode"); - std::stringstream ss1, ss2; - for(size_t i = 0; i < count.size(); i++) { - ss1 << expected[i] << " "; - ss2 << result[i] << " "; - } - assertEquals(ss1.str(), ss2.str(), "value"); -} - -void testHuffmanCodeLengths() { - bool atleasttwo = true; //LodePNG generates at least two, instead of at least one, symbol - if(atleasttwo) { - doTestHuffmanCodeLengths("1 1", "0 0", 16); - doTestHuffmanCodeLengths("1 1 0", "0 0 0", 16); - doTestHuffmanCodeLengths("1 1", "1 0", 16); - doTestHuffmanCodeLengths("1 1 0 0 0 0 0 0 0", "0 0 0 0 0 0 0 0 0", 16); - doTestHuffmanCodeLengths("1 1 0 0 0 0 0 0 0", "1 0 0 0 0 0 0 0 0", 16); - doTestHuffmanCodeLengths("1 1 0 0 0 0 0 0 0", "0 1 0 0 0 0 0 0 0", 16); - doTestHuffmanCodeLengths("1 0 0 0 0 0 0 0 1", "0 0 0 0 0 0 0 0 1", 16); - doTestHuffmanCodeLengths("0 0 0 0 0 0 0 1 1", "0 0 0 0 0 0 0 1 1", 16); - } else { - doTestHuffmanCodeLengths("1 0", "0 0", 16); - doTestHuffmanCodeLengths("1 0 0", "0 0 0", 16); - doTestHuffmanCodeLengths("1 0", "1 0", 16); - doTestHuffmanCodeLengths("1", "1", 16); - doTestHuffmanCodeLengths("1", "0", 16); - } - doTestHuffmanCodeLengths("1 1", "1 1", 16); - doTestHuffmanCodeLengths("1 1", "1 100", 16); - doTestHuffmanCodeLengths("2 2 1", "1 2 3", 16); - doTestHuffmanCodeLengths("2 1 2", "2 3 1", 16); - doTestHuffmanCodeLengths("1 2 2", "3 1 2", 16); - doTestHuffmanCodeLengths("3 3 2 1", "1 30 31 32", 16); - doTestHuffmanCodeLengths("2 2 2 2", "1 30 31 32", 2); - doTestHuffmanCodeLengths("5 5 4 4 4 3 3 1", "1 2 3 4 5 6 7 500", 16); -} - -/* -Create a PNG image with all known chunks (except only one of tEXt or zTXt) plus -unknown chunks, and a palette. -*/ -void createComplexPNG(std::vector& png) { - unsigned w = 16, h = 17; - std::vector image(w * h); - for(size_t i = 0; i < w * h; i++) { - image[i] = i % 256; - } - - lodepng::State state; - LodePNGInfo& info = state.info_png; - info.color.colortype = LCT_PALETTE; - info.color.bitdepth = 8; - state.info_raw.colortype = LCT_PALETTE; - state.info_raw.bitdepth = 8; - state.encoder.auto_convert = false; - state.encoder.text_compression = 1; - state.encoder.add_id = 1; - for(size_t i = 0; i < 256; i++) { - lodepng_palette_add(&info.color, i, i, i, i); - lodepng_palette_add(&state.info_raw, i, i, i, i); - } - - info.background_defined = 1; - info.background_r = 127; - - lodepng_add_text(&info, "key0", "string0"); - lodepng_add_text(&info, "key1", "string1"); - - lodepng_add_itext(&info, "ikey0", "ilangtag0", "itranskey0", "istring0"); - lodepng_add_itext(&info, "ikey1", "ilangtag1", "itranskey1", "istring1"); - - info.time_defined = 1; - info.time.year = 2012; - info.time.month = 1; - info.time.day = 2; - info.time.hour = 3; - info.time.minute = 4; - info.time.second = 5; - - info.phys_defined = 1; - info.phys_x = 1; - info.phys_y = 2; - info.phys_unit = 1; - - lodepng_chunk_create(&info.unknown_chunks_data[0], &info.unknown_chunks_size[0], 3, "uNKa", (unsigned char*)"a00"); - lodepng_chunk_create(&info.unknown_chunks_data[0], &info.unknown_chunks_size[0], 3, "uNKa", (unsigned char*)"a01"); - lodepng_chunk_create(&info.unknown_chunks_data[1], &info.unknown_chunks_size[1], 3, "uNKb", (unsigned char*)"b00"); - lodepng_chunk_create(&info.unknown_chunks_data[2], &info.unknown_chunks_size[2], 3, "uNKc", (unsigned char*)"c00"); - - unsigned error = lodepng::encode(png, &image[0], w, h, state); - ASSERT_NO_PNG_ERROR(error); -} - -std::string extractChunkNames(const std::vector& png) { - const unsigned char* chunk = &png[8]; - const unsigned char* end = &png.back() + 1; - char name[5]; - std::string result = ""; - for(;;) { - lodepng_chunk_type(name, chunk); - result += (std::string(" ") + name); - if(std::string(name) == "IEND") break; - chunk = lodepng_chunk_next_const(chunk, end); - assertTrue(chunk < &png.back(), "jumped out of chunks"); - } - return result; -} - -void testComplexPNG() { - std::cout << "testComplexPNG" << std::endl; - - std::vector png; - createComplexPNG(png); - { - lodepng::State state; - LodePNGInfo& info = state.info_png; - unsigned w, h; - std::vector image; - unsigned error = lodepng::decode(image, w, h, state, &png[0], png.size()); - ASSERT_NO_PNG_ERROR(error); - - ASSERT_EQUALS(16, w); - ASSERT_EQUALS(17, h); - ASSERT_EQUALS(1, info.background_defined); - ASSERT_EQUALS(127, info.background_r); - ASSERT_EQUALS(1, info.time_defined); - ASSERT_EQUALS(2012, info.time.year); - ASSERT_EQUALS(1, info.time.month); - ASSERT_EQUALS(2, info.time.day); - ASSERT_EQUALS(3, info.time.hour); - ASSERT_EQUALS(4, info.time.minute); - ASSERT_EQUALS(5, info.time.second); - ASSERT_EQUALS(1, info.phys_defined); - ASSERT_EQUALS(1, info.phys_x); - ASSERT_EQUALS(2, info.phys_y); - ASSERT_EQUALS(1, info.phys_unit); - - std::string chunknames = extractChunkNames(png); - //std::string expectednames = " IHDR uNKa uNKa PLTE tRNS bKGD pHYs uNKb IDAT tIME tEXt tEXt tEXt iTXt iTXt uNKc IEND"; - std::string expectednames = " IHDR uNKa uNKa PLTE tRNS bKGD pHYs uNKb IDAT tIME zTXt zTXt tEXt iTXt iTXt uNKc IEND"; - ASSERT_EQUALS(expectednames, chunknames); - - ASSERT_EQUALS(3, info.text_num); - ASSERT_STRING_EQUALS("key0", info.text_keys[0]); - ASSERT_STRING_EQUALS("string0", info.text_strings[0]); - ASSERT_STRING_EQUALS("key1", info.text_keys[1]); - ASSERT_STRING_EQUALS("string1", info.text_strings[1]); - ASSERT_STRING_EQUALS("LodePNG", info.text_keys[2]); - ASSERT_STRING_EQUALS(LODEPNG_VERSION_STRING, info.text_strings[2]); - - ASSERT_EQUALS(2, info.itext_num); - ASSERT_STRING_EQUALS("ikey0", info.itext_keys[0]); - ASSERT_STRING_EQUALS("ilangtag0", info.itext_langtags[0]); - ASSERT_STRING_EQUALS("itranskey0", info.itext_transkeys[0]); - ASSERT_STRING_EQUALS("istring0", info.itext_strings[0]); - ASSERT_STRING_EQUALS("ikey1", info.itext_keys[1]); - ASSERT_STRING_EQUALS("ilangtag1", info.itext_langtags[1]); - ASSERT_STRING_EQUALS("itranskey1", info.itext_transkeys[1]); - ASSERT_STRING_EQUALS("istring1", info.itext_strings[1]); - - // TODO: test if unknown chunks listed too - } - - - // Test that if read_text_chunks is disabled, we do not get the texts - { - lodepng::State state; - state.decoder.read_text_chunks = 0; - unsigned w, h; - std::vector image; - unsigned error = lodepng::decode(image, w, h, state, &png[0], png.size()); - ASSERT_NO_PNG_ERROR(error); - - ASSERT_EQUALS(0, state.info_png.text_num); - ASSERT_EQUALS(0, state.info_png.itext_num); - - // But we should still get other values. - ASSERT_EQUALS(2012, state.info_png.time.year); - } -} - -// Tests lodepng_inspect_chunk, and also lodepng_chunk_find to find the chunk to inspect -void testInspectChunk() { - std::cout << "testInspectChunk" << std::endl; - - std::vector png; - createComplexPNG(png); - - const unsigned char* chunk; - lodepng::State state; - LodePNGInfo& info = state.info_png; - state.decoder.read_text_chunks = 0; - lodepng_inspect(0, 0, &state, png.data(), png.size()); - chunk = lodepng_chunk_find(png.data(), png.data() + png.size(), "tIME"); - ASSERT_NOT_EQUALS((const unsigned char*)0, chunk); // should be non-null, since it should find it - ASSERT_EQUALS(0, info.time_defined); - lodepng_inspect_chunk(&state, (size_t)(chunk - png.data()), png.data(), png.size()); - ASSERT_EQUALS(1, info.time_defined); - ASSERT_EQUALS(2012, state.info_png.time.year); - ASSERT_EQUALS(1, info.time.month); - ASSERT_EQUALS(2, info.time.day); - ASSERT_EQUALS(3, info.time.hour); - ASSERT_EQUALS(4, info.time.minute); - ASSERT_EQUALS(5, info.time.second); - - ASSERT_EQUALS(0, info.text_num); - chunk = lodepng_chunk_find_const(png.data(), png.data() + png.size(), "zTXt"); - lodepng_inspect_chunk(&state, (size_t)(chunk - png.data()), png.data(), png.size()); - ASSERT_EQUALS(1, info.text_num); - chunk = lodepng_chunk_find_const(chunk, png.data() + png.size(), "zTXt"); - lodepng_inspect_chunk(&state, (size_t)(chunk - png.data()), png.data(), png.size()); - ASSERT_EQUALS(2, info.text_num); -} - -//test that, by default, it chooses filter type zero for all scanlines if the image has a palette -void testPaletteFilterTypesZero() { - std::cout << "testPaletteFilterTypesZero" << std::endl; - - std::vector png; - createComplexPNG(png); - - std::vector filterTypes; - lodepng::getFilterTypes(filterTypes, png); - - ASSERT_EQUALS(17, filterTypes.size()); - for(size_t i = 0; i < 17; i++) ASSERT_EQUALS(0, filterTypes[i]); -} - -//tests that there are no crashes with auto color chooser in case of palettes with translucency etc... -void testPaletteToPaletteConvert() { - std::cout << "testPaletteToPaletteConvert" << std::endl; - unsigned error; - unsigned w = 16, h = 16; - std::vector image(w * h); - for(size_t i = 0; i < w * h; i++) image[i] = i % 256; - lodepng::State state; - LodePNGInfo& info = state.info_png; - info.color.colortype = state.info_raw.colortype = LCT_PALETTE; - info.color.bitdepth = state.info_raw.bitdepth = 8; - ASSERT_EQUALS(true, state.encoder.auto_convert); - for(size_t i = 0; i < 256; i++) { - lodepng_palette_add(&info.color, i, i, i, i); - } - std::vector png; - for(size_t i = 0; i < 256; i++) { - lodepng_palette_add(&state.info_raw, i, i, i, i); - } - error = lodepng::encode(png, &image[0], w, h, state); - ASSERT_NO_PNG_ERROR(error); -} - -//for this test, you have to choose palette colors that cause LodePNG to actually use a palette, -//so don't use all grayscale colors for example -void doRGBAToPaletteTest(unsigned char* palette, size_t size, LodePNGColorType expectedType = LCT_PALETTE) { - std::cout << "testRGBToPaletteConvert " << size << std::endl; - unsigned error; - unsigned w = size, h = 257 /*LodePNG encodes no palette if image is too small*/; - std::vector image(w * h * 4); - for(size_t i = 0; i < image.size(); i++) image[i] = palette[i % (size * 4)]; - std::vector png; - error = lodepng::encode(png, &image[0], w, h); - ASSERT_NO_PNG_ERROR(error); - lodepng::State state; - std::vector image2; - error = lodepng::decode(image2, w, h, state, png); - ASSERT_NO_PNG_ERROR(error); - ASSERT_EQUALS(image.size(), image2.size()); - for(size_t i = 0; i < image.size(); i++) ASSERT_EQUALS(image[i], image2[i]); - - ASSERT_EQUALS(expectedType, state.info_png.color.colortype); - if(expectedType == LCT_PALETTE) { - - ASSERT_EQUALS(size, state.info_png.color.palettesize); - for(size_t i = 0; i < size * 4; i++) ASSERT_EQUALS(state.info_png.color.palette[i], image[i]); - } -} - -void testRGBToPaletteConvert() { - unsigned char palette1[4] = {1,2,3,4}; - doRGBAToPaletteTest(palette1, 1); - unsigned char palette2[8] = {1,2,3,4, 5,6,7,8}; - doRGBAToPaletteTest(palette2, 2); - unsigned char palette3[12] = {1,1,1,255, 20,20,20,255, 20,20,21,255}; - doRGBAToPaletteTest(palette3, 3); - - std::vector palette; - for(int i = 0; i < 256; i++) { - palette.push_back(i); - palette.push_back(5); - palette.push_back(6); - palette.push_back(128); - } - doRGBAToPaletteTest(&palette[0], 256); - palette.push_back(5); - palette.push_back(6); - palette.push_back(7); - palette.push_back(8); - doRGBAToPaletteTest(&palette[0], 257, LCT_RGBA); -} - -void testColorKeyConvert() { - std::cout << "testColorKeyConvert" << std::endl; - unsigned error; - unsigned w = 32, h = 32; - std::vector image(w * h * 4); - for(size_t i = 0; i < w * h; i++) { - image[i * 4 + 0] = i % 256; - image[i * 4 + 1] = i / 256; - image[i * 4 + 2] = 0; - image[i * 4 + 3] = i == 23 ? 0 : 255; - } - std::vector png; - error = lodepng::encode(png, &image[0], w, h); - ASSERT_NO_PNG_ERROR(error); - - lodepng::State state; - std::vector image2; - error = lodepng::decode(image2, w, h, state, png); - ASSERT_NO_PNG_ERROR(error); - ASSERT_EQUALS(32, w); - ASSERT_EQUALS(32, h); - ASSERT_EQUALS(1, state.info_png.color.key_defined); - ASSERT_EQUALS(23, state.info_png.color.key_r); - ASSERT_EQUALS(0, state.info_png.color.key_g); - ASSERT_EQUALS(0, state.info_png.color.key_b); - ASSERT_EQUALS(image.size(), image2.size()); - for(size_t i = 0; i < image.size(); i++) { - ASSERT_EQUALS(image[i], image2[i]); - } -} - -void testNoAutoConvert() { - std::cout << "testNoAutoConvert" << std::endl; - unsigned error; - unsigned w = 32, h = 32; - std::vector image(w * h * 4); - for(size_t i = 0; i < w * h; i++) { - image[i * 4 + 0] = (i % 2) ? 255 : 0; - image[i * 4 + 1] = (i % 2) ? 255 : 0; - image[i * 4 + 2] = (i % 2) ? 255 : 0; - image[i * 4 + 3] = 0; - } - std::vector png; - lodepng::State state; - state.info_png.color.colortype = LCT_RGBA; - state.info_png.color.bitdepth = 8; - state.encoder.auto_convert = false; - error = lodepng::encode(png, &image[0], w, h, state); - ASSERT_NO_PNG_ERROR(error); - - lodepng::State state2; - std::vector image2; - error = lodepng::decode(image2, w, h, state2, png); - ASSERT_NO_PNG_ERROR(error); - ASSERT_EQUALS(32, w); - ASSERT_EQUALS(32, h); - ASSERT_EQUALS(LCT_RGBA, state2.info_png.color.colortype); - ASSERT_EQUALS(8, state2.info_png.color.bitdepth); - ASSERT_EQUALS(image.size(), image2.size()); - for(size_t i = 0; i < image.size(); i++) { - ASSERT_EQUALS(image[i], image2[i]); - } -} - -unsigned char flipBit(unsigned char c, int bitpos) { - return c ^ (1 << bitpos); -} - -//Test various broken inputs. Returned errors are not checked, what is tested is -//that is doesn't crash, and, when run with valgrind, no memory warnings are -//given. -void testFuzzing() { - std::cout << "testFuzzing" << std::endl; - std::vector png; - createComplexPNG(png); - std::vector broken = png; - std::vector result; - std::map errors; - unsigned w, h; - lodepng::State state; - state.decoder.ignore_crc = 1; - state.decoder.zlibsettings.ignore_adler32 = 1; - for(size_t i = 0; i < png.size(); i++) { - result.clear(); - broken[i] = ~png[i]; - errors[lodepng::decode(result, w, h, state, broken)]++; - broken[i] = 0; - errors[lodepng::decode(result, w, h, state, broken)]++; - for(int j = 0; j < 8; j++) { - broken[i] = flipBit(png[i], j); - errors[lodepng::decode(result, w, h, state, broken)]++; - } - broken[i] = 255; - errors[lodepng::decode(result, w, h, state, broken)]++; - broken[i] = png[i]; //fix it again for the next test - } - std::cout << "testFuzzing shrinking" << std::endl; - broken = png; - while(broken.size() > 0) { - broken.resize(broken.size() - 1); - errors[lodepng::decode(result, w, h, state, broken)]++; - } - - //For fun, print the number of each error - std::cout << "Fuzzing error code counts: "; - for(std::map::iterator it = errors.begin(); it != errors.end(); ++it) { - std::cout << it->first << ":" << it->second << ", "; - } - std::cout << std::endl; -} - -int custom_proof = 0; // global variable for nested function to call. Of course when this test is switched to modern C++ we can use a lamba instead. - -void testCustomZlibCompress() { - std::cout << "testCustomZlibCompress" << std::endl; - Image image; - generateTestImage(image, 5, 5, LCT_RGBA, 8); - - std::vector encoded; - int customcontext = 5; - - struct TestFun { - static unsigned custom_zlib(unsigned char**, size_t*, - const unsigned char*, size_t, - const LodePNGCompressSettings* settings) { - ASSERT_EQUALS(5, *(int*)(settings->custom_context)); - custom_proof = 1; - return 5555; // return a custom error code, which will be converted to an error known to lodepng. - } - }; - - lodepng::State state; - state.encoder.zlibsettings.custom_zlib = TestFun::custom_zlib; - state.encoder.zlibsettings.custom_context = &customcontext; - - custom_proof = 0; - unsigned error = lodepng::encode(encoded, image.data, image.width, image.height, state); - ASSERT_EQUALS(1, custom_proof); // check that the custom zlib was called - - ASSERT_EQUALS(111, error); // expect a known lodepng error, not the custom 5555 -} - -void testCustomZlibCompress2() { - std::cout << "testCustomZlibCompress2" << std::endl; - Image image; - generateTestImage(image, 5, 5, LCT_RGBA, 8); - - std::vector encoded; - - lodepng::State state; - state.encoder.zlibsettings.custom_zlib = lodepng_zlib_compress; - - unsigned error = lodepng::encode(encoded, image.data, image.width, image.height, - state); - ASSERT_NO_PNG_ERROR(error); - - std::vector decoded; - unsigned w, h; - state.decoder.zlibsettings.ignore_adler32 = 0; - state.decoder.ignore_crc = 0; - error = lodepng::decode(decoded, w, h, state, encoded); - ASSERT_NO_PNG_ERROR(error); - ASSERT_EQUALS(5, w); - ASSERT_EQUALS(5, h); -} - -void testCustomDeflate() { - std::cout << "testCustomDeflate" << std::endl; - Image image; - generateTestImage(image, 5, 5, LCT_RGBA, 8); - - std::vector encoded; - int customcontext = 5; - - struct TestFun { - static unsigned custom_deflate(unsigned char**, size_t*, - const unsigned char*, size_t, - const LodePNGCompressSettings* settings) { - ASSERT_EQUALS(5, *(int*)(settings->custom_context)); - custom_proof = 1; - return 5555; // return a custom error code, which will be converted to an error known to lodepng. - } - }; - - lodepng::State state; - state.encoder.zlibsettings.custom_deflate = TestFun::custom_deflate; - state.encoder.zlibsettings.custom_context = &customcontext; - - custom_proof = 0; - unsigned error = lodepng::encode(encoded, image.data, image.width, image.height, state); - ASSERT_EQUALS(1, custom_proof); // check that the custom deflate was called - - ASSERT_EQUALS(111, error); // expect a known lodepng error, not the custom 5555 -} - -void testCustomZlibDecompress() { - std::cout << "testCustomZlibDecompress" << std::endl; - Image image; - generateTestImage(image, 5, 5, LCT_RGBA, 8); - - std::vector encoded; - - unsigned error_enc = lodepng::encode(encoded, image.data, image.width, image.height, - image.colorType, image.bitDepth); - ASSERT_NO_PNG_ERROR_MSG(error_enc, "encoder error not expected"); - - - std::vector decoded; - unsigned w, h; - int customcontext = 5; - - struct TestFun { - static unsigned custom_zlib(unsigned char**, size_t*, - const unsigned char*, size_t, - const LodePNGDecompressSettings* settings) { - ASSERT_EQUALS(5, *(int*)(settings->custom_context)); - custom_proof = 1; - return 5555; // return a custom error code, which will be converted to an error known to lodepng. - } - }; - - lodepng::State state; - state.decoder.zlibsettings.custom_zlib = TestFun::custom_zlib; - state.decoder.zlibsettings.custom_context = &customcontext; - state.decoder.zlibsettings.ignore_adler32 = 0; - state.decoder.ignore_crc = 0; - custom_proof = 0; - unsigned error = lodepng::decode(decoded, w, h, state, encoded); - ASSERT_EQUALS(1, custom_proof); // check that the custom zlib was called - - ASSERT_EQUALS(110, error); -} - -void testCustomInflate() { - std::cout << "testCustomInflate" << std::endl; - Image image; - generateTestImage(image, 5, 5, LCT_RGBA, 8); - - std::vector encoded; - - unsigned error_enc = lodepng::encode(encoded, image.data, image.width, image.height, - image.colorType, image.bitDepth); - ASSERT_NO_PNG_ERROR_MSG(error_enc, "encoder error not expected"); - - - std::vector decoded; - unsigned w, h; - int customcontext = 5; - - struct TestFun { - static unsigned custom_inflate(unsigned char**, size_t*, - const unsigned char*, size_t, - const LodePNGDecompressSettings* settings) { - ASSERT_EQUALS(5, *(int*)(settings->custom_context)); - custom_proof = 1; - return 5555; // return a custom error code, which will be converted to an error known to lodepng. - } - }; - - lodepng::State state; - state.decoder.zlibsettings.custom_inflate = TestFun::custom_inflate; - state.decoder.zlibsettings.custom_context = &customcontext; - state.decoder.zlibsettings.ignore_adler32 = 0; - state.decoder.ignore_crc = 0; - custom_proof = 0; - unsigned error = lodepng::decode(decoded, w, h, state, encoded); - ASSERT_EQUALS(1, custom_proof); // check that the custom zlib was called - - ASSERT_EQUALS(110, error); -} - - -void testChunkUtil() { - std::cout << "testChunkUtil" << std::endl; - std::vector png; - createComplexPNG(png); - - std::vector names[3]; - std::vector > chunks[3]; - - assertNoError(lodepng::getChunks(names, chunks, png)); - - std::vector > chunks2[3]; - chunks2[0].push_back(chunks[2][2]); //zTXt - chunks2[1].push_back(chunks[2][3]); //tEXt - chunks2[2].push_back(chunks[2][4]); //iTXt - - assertNoError(lodepng::insertChunks(png, chunks2)); - - std::string chunknames = extractChunkNames(png); - // chunks2[0] chunks2[1] chunks2[2] - // v v v - std::string expectednames = " IHDR uNKa uNKa zTXt PLTE tRNS bKGD pHYs uNKb tEXt IDAT tIME zTXt zTXt tEXt iTXt iTXt uNKc iTXt IEND"; - ASSERT_EQUALS(expectednames, chunknames); - - std::vector image; - unsigned w, h; - ASSERT_NO_PNG_ERROR(lodepng::decode(image, w, h, png)); -} - -//Test that when decoding to 16-bit per channel, it always uses big endian consistently. -//It should always output big endian, the convention used inside of PNG, even though x86 CPU's are little endian. -void test16bitColorEndianness() { - std::cout << "test16bitColorEndianness" << std::endl; - - //basn0g16.png from the PNG test suite - std::string base64 = "iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAYagMeiWXwAAAF5JREFU" - "eJzV0jEKwDAMQ1E5W+9/xtygk8AoezLVKgSj2Y8/OICnuFcTE2OgOoJgHQiZAN2C9kDKBOgW3AZC" - "JkC3oD2QMgG6BbeBkAnQLWgPpExgP28H7E/0GTjPfwAW2EvYX64rn9cAAAAASUVORK5CYII="; - std::vector png; - fromBase64(png, base64); - unsigned w, h; - std::vector image; - lodepng::State state; - - // Decode from 16-bit gray image to 16-bit per channel RGBA - state.info_raw.bitdepth = 16; - ASSERT_NO_PNG_ERROR(lodepng::decode(image, w, h, state, png)); - ASSERT_EQUALS(0x09, image[8]); - ASSERT_EQUALS(0x00, image[9]); - - // Decode from 16-bit gray image to 16-bit gray raw image (no conversion) - image.clear(); - state = lodepng::State(); - state.decoder.color_convert = false; - ASSERT_NO_PNG_ERROR(lodepng::decode(image, w, h, state, png)); - ASSERT_EQUALS(0x09, image[2]); - ASSERT_EQUALS(0x00, image[3]); - - // Decode from 16-bit per channel RGB image to 16-bit per channel RGBA - base64 = "iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAIAAACsiDHgAAAABGdBTUEAAYagMeiWXwAAAANzQklU" - "DQ0N0DeNwQAAAH5JREFUeJztl8ENxEAIAwcJ6cpI+q8qKeNepAgelq2dCjz4AdQM1jRcf3WIDQ13" - "qUNsiBBQZ1gR0cARUFIz3pug3586wo5+rOcfIaBOsCSggSOgpcB8D4D3R9DgfUyECIhDbAhp4Ajo" - "KPD+CBq8P4IG72MiQkCdYUVEA0dAyQcwUyZpXH92ZwAAAABJRU5ErkJggg=="; //cs3n2c16.png - png.clear(); - fromBase64(png, base64); - image.clear(); - state = lodepng::State(); - state.info_raw.bitdepth = 16; - ASSERT_NO_PNG_ERROR(lodepng::decode(image, w, h, state, png)); - ASSERT_EQUALS(0x1f, image[258]); - ASSERT_EQUALS(0xf9, image[259]); - - // Decode from 16-bit per channel RGB image to 16-bit per channel RGBA raw image (no conversion) - image.clear(); - state = lodepng::State(); - state.decoder.color_convert = false; - ASSERT_NO_PNG_ERROR(lodepng::decode(image, w, h, state, png)); - - ASSERT_EQUALS(0x1f, image[194]); - ASSERT_EQUALS(0xf9, image[195]); - - image.clear(); - state = lodepng::State(); - - // Decode from palette image to 16-bit per channel RGBA - base64 = "iVBORw0KGgoAAAANSUhEUgAAAAcAAAAHAgMAAAC5PL9AAAAABGdBTUEAAYagMeiWXwAAAANzQklU" - "BAQEd/i1owAAAAxQTFRF/wB3AP93//8AAAD/G0OznAAAABpJREFUeJxj+P+H4WoMw605DDfmgEgg" - "+/8fAHF5CrkeXW0HAAAAAElFTkSuQmCC"; //s07n3p02.png - png.clear(); - fromBase64(png, base64); - image.clear(); - state = lodepng::State(); - state.info_raw.bitdepth = 16; - ASSERT_NO_PNG_ERROR(lodepng::decode(image, w, h, state, png)); - ASSERT_EQUALS(0x77, image[84]); - ASSERT_EQUALS(0x77, image[85]); -} - -void testPredefinedFilters() { - size_t w = 32, h = 32; - std::cout << "testPredefinedFilters" << std::endl; - Image image; - generateTestImage(image, w, h, LCT_RGBA, 8); - - // everything to filter type '3' - std::vector predefined(h, 3); - lodepng::State state; - state.encoder.filter_strategy = LFS_PREDEFINED; - state.encoder.filter_palette_zero = 0; - state.encoder.predefined_filters = &predefined[0]; - - std::vector png; - unsigned error = lodepng::encode(png, &image.data[0], w, h, state); - assertNoError(error); - - std::vector outfilters; - error = lodepng::getFilterTypes(outfilters, png); - assertNoError(error); - - ASSERT_EQUALS(outfilters.size(), h); - for(size_t i = 0; i < h; i++) ASSERT_EQUALS(3, outfilters[i]); -} - -void testEncoderErrors() { - std::cout << "testEncoderErrors" << std::endl; - - std::vector png; - unsigned w = 32, h = 32; - Image image; - generateTestImage(image, w, h); - - lodepng::State def; - - lodepng::State state; - - ASSERT_EQUALS(0, lodepng::encode(png, &image.data[0], w, h, state)); - - // test window sizes - state.encoder.zlibsettings.windowsize = 0; - ASSERT_EQUALS(60, lodepng::encode(png, &image.data[0], w, h, state)); - state.encoder.zlibsettings.windowsize = 65536; - ASSERT_EQUALS(60, lodepng::encode(png, &image.data[0], w, h, state)); - state.encoder.zlibsettings.windowsize = 1000; // not power of two - ASSERT_EQUALS(90, lodepng::encode(png, &image.data[0], w, h, state)); - state.encoder.zlibsettings.windowsize = 256; - ASSERT_EQUALS(0, lodepng::encode(png, &image.data[0], w, h, state)); - - state = def; - state.info_png.color.bitdepth = 3; - ASSERT_EQUALS(37, lodepng::encode(png, &image.data[0], w, h, state)); - - state = def; - state.info_png.color.colortype = (LodePNGColorType)5; - ASSERT_EQUALS(31, lodepng::encode(png, &image.data[0], w, h, state)); - - state = def; - state.info_png.color.colortype = LCT_PALETTE; - ASSERT_EQUALS(68, lodepng::encode(png, &image.data[0], w, h, state)); - - state = def; - state.info_png.interlace_method = 0; - ASSERT_EQUALS(0, lodepng::encode(png, &image.data[0], w, h, state)); - state.info_png.interlace_method = 1; - ASSERT_EQUALS(0, lodepng::encode(png, &image.data[0], w, h, state)); - state.info_png.interlace_method = 2; - ASSERT_EQUALS(71, lodepng::encode(png, &image.data[0], w, h, state)); - - state = def; - state.encoder.zlibsettings.btype = 0; - ASSERT_EQUALS(0, lodepng::encode(png, &image.data[0], w, h, state)); - state.encoder.zlibsettings.btype = 1; - ASSERT_EQUALS(0, lodepng::encode(png, &image.data[0], w, h, state)); - state.encoder.zlibsettings.btype = 2; - ASSERT_EQUALS(0, lodepng::encode(png, &image.data[0], w, h, state)); - state.encoder.zlibsettings.btype = 3; - ASSERT_EQUALS(61, lodepng::encode(png, &image.data[0], w, h, state)); -} - -void addColor(std::vector& colors, unsigned char r, unsigned char g, unsigned char b, unsigned char a) { - colors.push_back(r); - colors.push_back(g); - colors.push_back(b); - colors.push_back(a); -} - -void addColor16(std::vector& colors, unsigned short r, unsigned short g, unsigned short b, unsigned short a) { - colors.push_back(r & 255); - colors.push_back((r >> 8) & 255); - colors.push_back(g & 255); - colors.push_back((g >> 8) & 255); - colors.push_back(b & 255); - colors.push_back((b >> 8) & 255); - colors.push_back(a & 255); - colors.push_back((a >> 8) & 255); -} - -// Tests auto_convert -// colors is in RGBA, inbitdepth must be 8 or 16, the amount of bits per channel. -// colortype and bitdepth are the expected values. insize is amount of pixels. So the amount of bytes is insize * 4 * (inbitdepth / 8) -void testAutoColorModel(const std::vector& colors, unsigned inbitdepth, LodePNGColorType colortype, unsigned bitdepth, bool key) { - std::cout << "testAutoColorModel " << inbitdepth << " " << colortype << " " << bitdepth << " " << key << std::endl; - size_t innum = colors.size() / 4 * inbitdepth / 8; - size_t num = innum < 65536 ? 65536 : innum; // Make image bigger so the convert doesn't avoid palette due to small image. - std::vector colors2(num * 4 * (inbitdepth / 8)); - for(size_t i = 0; i < colors2.size(); i++) colors2[i] = colors[i % colors.size()]; - - std::vector png; - lodepng::encode(png, colors2, num, 1, LCT_RGBA, inbitdepth); - - // now extract the color type it chose - unsigned w, h; - lodepng::State state; - std::vector decoded; - lodepng::decode(decoded, w, h, state, png); - ASSERT_EQUALS(num, w); - ASSERT_EQUALS(1, h); - ASSERT_EQUALS(colortype, state.info_png.color.colortype); - ASSERT_EQUALS(bitdepth, state.info_png.color.bitdepth); - ASSERT_EQUALS(key, state.info_png.color.key_defined); - // also check that the PNG decoded correctly and has same colors as input - if(inbitdepth == 8) { for(size_t i = 0; i < colors.size(); i++) ASSERT_EQUALS(colors[i], decoded[i]); } - else { for(size_t i = 0; i < colors.size() / 2; i++) ASSERT_EQUALS(colors[i * 2], decoded[i]); } -} - -void testAutoColorModels() { - // 1-bit gray - std::vector gray1; - for(size_t i = 0; i < 2; i++) addColor(gray1, i * 255, i * 255, i * 255, 255); - testAutoColorModel(gray1, 8, LCT_GREY, 1, false); - - // 2-bit gray - std::vector gray2; - for(size_t i = 0; i < 4; i++) addColor(gray2, i * 85, i * 85, i * 85, 255); - testAutoColorModel(gray2, 8, LCT_GREY, 2, false); - - // 4-bit gray - std::vector gray4; - for(size_t i = 0; i < 16; i++) addColor(gray4, i * 17, i * 17, i * 17, 255); - testAutoColorModel(gray4, 8, LCT_GREY, 4, false); - - // 8-bit gray - std::vector gray8; - for(size_t i = 0; i < 256; i++) addColor(gray8, i, i, i, 255); - testAutoColorModel(gray8, 8, LCT_GREY, 8, false); - - // 16-bit gray - std::vector gray16; - for(size_t i = 0; i < 257; i++) addColor16(gray16, i, i, i, 65535); - testAutoColorModel(gray16, 16, LCT_GREY, 16, false); - - // 8-bit gray+alpha - std::vector gray8a; - for(size_t i = 0; i < 17; i++) addColor(gray8a, i, i, i, i); - testAutoColorModel(gray8a, 8, LCT_PALETTE, 8, false); - // palette not possible, becomes gray alpha - for(size_t i = 0; i < 256; i++) addColor(gray8a, i, i, i, i ^ 1); - testAutoColorModel(gray8a, 8, LCT_GREY_ALPHA, 8, false); - - // 16-bit gray+alpha - std::vector gray16a; - for(size_t i = 0; i < 257; i++) addColor16(gray16a, i, i, i, i); - testAutoColorModel(gray16a, 16, LCT_GREY_ALPHA, 16, false); - - - // various palette tests - std::vector palette; - addColor(palette, 0, 0, 1, 255); - testAutoColorModel(palette, 8, LCT_PALETTE, 1, false); - addColor(palette, 0, 0, 2, 255); - testAutoColorModel(palette, 8, LCT_PALETTE, 1, false); - for(int i = 3; i <= 4; i++) addColor(palette, 0, 0, i, 255); - testAutoColorModel(palette, 8, LCT_PALETTE, 2, false); - for(int i = 5; i <= 7; i++) addColor(palette, 0, 0, i, 255); - testAutoColorModel(palette, 8, LCT_PALETTE, 4, false); - for(int i = 8; i <= 17; i++) addColor(palette, 0, 0, i, 255); - testAutoColorModel(palette, 8, LCT_PALETTE, 8, false); - addColor(palette, 0, 0, 18, 0); // transparent - testAutoColorModel(palette, 8, LCT_PALETTE, 8, false); - addColor(palette, 0, 0, 18, 1); // translucent - testAutoColorModel(palette, 8, LCT_PALETTE, 8, false); - - // 1-bit gray + alpha not possible, becomes palette - std::vector gray1a; - for(size_t i = 0; i < 2; i++) addColor(gray1a, i, i, i, 128); - testAutoColorModel(gray1a, 8, LCT_PALETTE, 1, false); - - // 2-bit gray + alpha not possible, becomes palette - std::vector gray2a; - for(size_t i = 0; i < 4; i++) addColor(gray2a, i, i, i, 128); - testAutoColorModel(gray2a, 8, LCT_PALETTE, 2, false); - - // 4-bit gray + alpha not possible, becomes palette - std::vector gray4a; - for(size_t i = 0; i < 16; i++) addColor(gray4a, i, i, i, 128); - testAutoColorModel(gray4a, 8, LCT_PALETTE, 4, false); - - // 8-bit rgb - std::vector rgb = gray8; - addColor(rgb, 255, 0, 0, 255); - testAutoColorModel(rgb, 8, LCT_RGB, 8, false); - - // 8-bit rgb + key - std::vector rgb_key = rgb; - addColor(rgb_key, 128, 0, 0, 0); - testAutoColorModel(rgb_key, 8, LCT_RGB, 8, true); - - // 8-bit rgb, not key due to edge case: single key color, but opaque color has same RGB value - std::vector rgb_key2 = rgb_key; - addColor(rgb_key2, 128, 0, 0, 255); // same color but opaque ==> no more key - testAutoColorModel(rgb_key2, 8, LCT_RGBA, 8, false); - - // 8-bit rgb, not key due to semi translucent - std::vector rgb_key3 = rgb_key; - addColor(rgb_key3, 128, 0, 0, 255); // semi-translucent ==> no more key - testAutoColorModel(rgb_key3, 8, LCT_RGBA, 8, false); - - // 8-bit rgb, not key due to multiple transparent colors - std::vector rgb_key4 = rgb_key; - addColor(rgb_key4, 128, 0, 0, 255); - addColor(rgb_key4, 129, 0, 0, 255); // two different transparent colors ==> no more key - testAutoColorModel(rgb_key4, 8, LCT_RGBA, 8, false); - - // 1-bit gray with key - std::vector gray1_key = gray1; - gray1_key[7] = 0; - testAutoColorModel(gray1_key, 8, LCT_GREY, 1, true); - - // 2-bit gray with key - std::vector gray2_key = gray2; - gray2_key[7] = 0; - testAutoColorModel(gray2_key, 8, LCT_GREY, 2, true); - - // 4-bit gray with key - std::vector gray4_key = gray4; - gray4_key[7] = 0; - testAutoColorModel(gray4_key, 8, LCT_GREY, 4, true); - - // 8-bit gray with key - std::vector gray8_key = gray8; - gray8_key[7] = 0; - testAutoColorModel(gray8_key, 8, LCT_GREY, 8, true); - - // 16-bit gray with key - std::vector gray16_key = gray16; - gray16_key[14] = gray16_key[15] = 0; - testAutoColorModel(gray16_key, 16, LCT_GREY, 16, true); - - // a single 16-bit color, can't become palette due to being 16-bit - std::vector small16; - addColor16(small16, 1, 0, 0, 65535); - testAutoColorModel(small16, 16, LCT_RGB, 16, false); - - std::vector small16a; - addColor16(small16a, 1, 0, 0, 1); - testAutoColorModel(small16a, 16, LCT_RGBA, 16, false); - - // what we provide as 16-bit is actually representable as 8-bit, so 8-bit palette expected for single color - std::vector not16; - addColor16(not16, 257, 257, 257, 0); - testAutoColorModel(not16, 16, LCT_PALETTE, 1, false); - - // the rgb color is representable as 8-bit, but the alpha channel only as 16-bit, so ensure it uses 16-bit and not palette for this single color - std::vector alpha16; - addColor16(alpha16, 257, 0, 0, 10000); - testAutoColorModel(alpha16, 16, LCT_RGBA, 16, false); - - // 1-bit gray, with attempt to get color key but can't do it due to opaque color with same value - std::vector gray1k; - addColor(gray1k, 0, 0, 0, 255); - addColor(gray1k, 255, 255, 255, 255); - addColor(gray1k, 255, 255, 255, 0); - testAutoColorModel(gray1k, 8, LCT_PALETTE, 2, false); -} - -void testPaletteToPaletteDecode() { - std::cout << "testPaletteToPaletteDecode" << std::endl; - // It's a bit big for a 2x2 image... but this tests needs one with 256 palette entries in it. - std::string base64 = "iVBORw0KGgoAAAANSUhEUgAAAAIAAAACCAMAAABFaP0WAAAAA3NCSVQICAjb4U/gAAADAFBMVEUA" - "AAAAADMAAGYAAJkAAMwAAP8AMwAAMzMAM2YAM5kAM8wAM/8AZgAAZjMAZmYAZpkAZswAZv8AmQAA" - "mTMAmWYAmZkAmcwAmf8AzAAAzDMAzGYAzJkAzMwAzP8A/wAA/zMA/2YA/5kA/8wA//8zAAAzADMz" - "AGYzAJkzAMwzAP8zMwAzMzMzM2YzM5kzM8wzM/8zZgAzZjMzZmYzZpkzZswzZv8zmQAzmTMzmWYz" - "mZkzmcwzmf8zzAAzzDMzzGYzzJkzzMwzzP8z/wAz/zMz/2Yz/5kz/8wz//9mAABmADNmAGZmAJlm" - "AMxmAP9mMwBmMzNmM2ZmM5lmM8xmM/9mZgBmZjNmZmZmZplmZsxmZv9mmQBmmTNmmWZmmZlmmcxm" - "mf9mzABmzDNmzGZmzJlmzMxmzP9m/wBm/zNm/2Zm/5lm/8xm//+ZAACZADOZAGaZAJmZAMyZAP+Z" - "MwCZMzOZM2aZM5mZM8yZM/+ZZgCZZjOZZmaZZpmZZsyZZv+ZmQCZmTOZmWaZmZmZmcyZmf+ZzACZ" - "zDOZzGaZzJmZzMyZzP+Z/wCZ/zOZ/2aZ/5mZ/8yZ///MAADMADPMAGbMAJnMAMzMAP/MMwDMMzPM" - "M2bMM5nMM8zMM//MZgDMZjPMZmbMZpnMZszMZv/MmQDMmTPMmWbMmZnMmczMmf/MzADMzDPMzGbM" - "zJnMzMzMzP/M/wDM/zPM/2bM/5nM/8zM////AAD/ADP/AGb/AJn/AMz/AP//MwD/MzP/M2b/M5n/" - "M8z/M///ZgD/ZjP/Zmb/Zpn/Zsz/Zv//mQD/mTP/mWb/mZn/mcz/mf//zAD/zDP/zGb/zJn/zMz/" - "zP///wD//zP//2b//5n//8z///8AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAABlenwdAAABAHRSTlP/////////////////////////" - "////////////////////////////////////////////////////////////////////////////" - "////////////////////////////////////////////////////////////////////////////" - "////////////////////////////////////////////////////////////////////////////" - "//////////////////////////////////8AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAAAAG8mZagAAAAlwSFlzAAAOTQAADpwB3vacVwAAAA5JREFUCJlj2CLHwHodAATjAa+k" - "lTE5AAAAAElFTkSuQmCC"; - std::vector png; - fromBase64(png, base64); - - std::vector image; - unsigned width, height; - unsigned error = lodepng::decode(image, width, height, png, LCT_PALETTE, 8); - ASSERT_EQUALS(0, error); - ASSERT_EQUALS(2, width); - ASSERT_EQUALS(2, height); - ASSERT_EQUALS(180, image[0]); - ASSERT_EQUALS(30, image[1]); - ASSERT_EQUALS(5, image[2]); - ASSERT_EQUALS(215, image[3]); -} - -//2-bit palette -void testPaletteToPaletteDecode2() { - std::cout << "testPaletteToPaletteDecode2" << std::endl; - std::string base64 = "iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAgMAAAAOFJJnAAAADFBMVEX/AAAA/wAAAP/////7AGD2AAAAE0lEQVR4AWMQhAKG3VCALDIqAgDl2WYBCQHY9gAAAABJRU5ErkJggg=="; - std::vector png; - fromBase64(png, base64); - - std::vector image; - unsigned width, height; - unsigned error = lodepng::decode(image, width, height, png, LCT_PALETTE, 8); - ASSERT_EQUALS(0, error); - ASSERT_EQUALS(32, width); - ASSERT_EQUALS(32, height); - ASSERT_EQUALS(0, image[0]); - ASSERT_EQUALS(1, image[1]); - - //Now add a user-specified output palette, that differs from the input palette. That should give error 82. - LodePNGState state; - lodepng_state_init(&state); - state.info_raw.colortype = LCT_PALETTE; - state.info_raw.bitdepth = 8; - lodepng_palette_add(&state.info_raw, 0, 0, 0, 255); - lodepng_palette_add(&state.info_raw, 1, 1, 1, 255); - lodepng_palette_add(&state.info_raw, 2, 2, 2, 255); - lodepng_palette_add(&state.info_raw, 3, 3, 3, 255); - unsigned char* image2 = 0; - unsigned error2 = lodepng_decode(&image2, &width, &height, &state, &png[0], png.size()); - lodepng_state_cleanup(&state); - ASSERT_EQUALS(82, error2); - free(image2); -} - -void assertColorProfileDataEqual(const lodepng::State& a, const lodepng::State& b) { - ASSERT_EQUALS(a.info_png.gama_defined, b.info_png.gama_defined); - if(a.info_png.gama_defined) { - ASSERT_EQUALS(a.info_png.gama_gamma, b.info_png.gama_gamma); - } - - ASSERT_EQUALS(a.info_png.chrm_defined, b.info_png.chrm_defined); - if(a.info_png.chrm_defined) { - ASSERT_EQUALS(a.info_png.chrm_white_x, b.info_png.chrm_white_x); - ASSERT_EQUALS(a.info_png.chrm_white_y, b.info_png.chrm_white_y); - ASSERT_EQUALS(a.info_png.chrm_red_x, b.info_png.chrm_red_x); - ASSERT_EQUALS(a.info_png.chrm_red_y, b.info_png.chrm_red_y); - ASSERT_EQUALS(a.info_png.chrm_green_x, b.info_png.chrm_green_x); - ASSERT_EQUALS(a.info_png.chrm_green_y, b.info_png.chrm_green_y); - ASSERT_EQUALS(a.info_png.chrm_blue_x, b.info_png.chrm_blue_x); - ASSERT_EQUALS(a.info_png.chrm_blue_y, b.info_png.chrm_blue_y); - } - - ASSERT_EQUALS(a.info_png.srgb_defined, b.info_png.srgb_defined); - if(a.info_png.srgb_defined) { - ASSERT_EQUALS(a.info_png.srgb_intent, b.info_png.srgb_intent); - } - - ASSERT_EQUALS(a.info_png.iccp_defined, b.info_png.iccp_defined); - if(a.info_png.iccp_defined) { - //ASSERT_EQUALS(std::string(a.info_png.iccp_name), std::string(b.info_png.iccp_name)); - ASSERT_EQUALS(a.info_png.iccp_profile_size, b.info_png.iccp_profile_size); - for(size_t i = 0; i < a.info_png.iccp_profile_size; ++i) { - ASSERT_EQUALS(a.info_png.iccp_profile[i], b.info_png.iccp_profile[i]); - } - } -} - -// Tests the gAMA, cHRM, sRGB, iCCP chunks -void testColorProfile() { - std::cout << "testColorProfile" << std::endl; - { - unsigned error; - unsigned w = 32, h = 32; - std::vector image(w * h * 4); - for(size_t i = 0; i < image.size(); i++) image[i] = i & 255; - std::vector png; - lodepng::State state; - state.info_png.gama_defined = 1; - state.info_png.gama_gamma = 12345; - state.info_png.chrm_defined = 1; - state.info_png.chrm_white_x = 10; - state.info_png.chrm_white_y = 20; - state.info_png.chrm_red_x = 30; - state.info_png.chrm_red_y = 40; - state.info_png.chrm_green_x = 100000; - state.info_png.chrm_green_y = 200000; - state.info_png.chrm_blue_x = 300000; - state.info_png.chrm_blue_y = 400000; - error = lodepng::encode(png, &image[0], w, h, state); - ASSERT_NO_PNG_ERROR(error); - - lodepng::State state2; - std::vector image2; - error = lodepng::decode(image2, w, h, state2, png); - ASSERT_NO_PNG_ERROR(error); - assertColorProfileDataEqual(state, state2); - ASSERT_EQUALS(32, w); - ASSERT_EQUALS(32, h); - ASSERT_EQUALS(image.size(), image2.size()); - for(size_t i = 0; i < image.size(); i++) ASSERT_EQUALS(image[i], image2[i]); - } - { - unsigned error; - unsigned w = 32, h = 32; - std::vector image(w * h * 4); - for(size_t i = 0; i < image.size(); i++) image[i] = i & 255; - std::vector png; - lodepng::State state; - state.info_png.srgb_defined = 1; - state.info_png.srgb_intent = 2; - error = lodepng::encode(png, &image[0], w, h, state); - ASSERT_NO_PNG_ERROR(error); - - lodepng::State state2; - std::vector image2; - error = lodepng::decode(image2, w, h, state2, png); - ASSERT_NO_PNG_ERROR(error); - assertColorProfileDataEqual(state, state2); - ASSERT_EQUALS(32, w); - ASSERT_EQUALS(32, h); - ASSERT_EQUALS(image.size(), image2.size()); - for(size_t i = 0; i < image.size(); i++) ASSERT_EQUALS(image[i], image2[i]); - } - { - unsigned error; - unsigned w = 32, h = 32; - std::vector image(w * h * 4); - for(size_t i = 0; i < image.size(); i++) image[i] = i & 255; - std::vector png; - lodepng::State state; - state.info_png.iccp_defined = 1; - std::string testprofile = "0123456789abcdefRGB fake iccp profile for testing"; - testprofile[0] = testprofile[1] = 0; - lodepng_set_icc(&state.info_png, "test", (const unsigned char*)testprofile.c_str(), testprofile.size()); - error = lodepng::encode(png, &image[0], w, h, state); - ASSERT_NO_PNG_ERROR(error); - - lodepng::State state2; - std::vector image2; - error = lodepng::decode(image2, w, h, state2, png); - ASSERT_NO_PNG_ERROR(error); - assertColorProfileDataEqual(state, state2); - ASSERT_EQUALS(32, w); - ASSERT_EQUALS(32, h); - ASSERT_EQUALS(image.size(), image2.size()); - for(size_t i = 0; i < image.size(); i++) ASSERT_EQUALS(image[i], image2[i]); - } - - // grayscale ICC profile - { - unsigned error; - unsigned w = 32, h = 32; - std::vector image(w * h * 4); - for(size_t i = 0; i + 4 <= image.size(); i += 4) { - image[i] = image[i + 1] = image[i + 2] = image[i + 3] = i; - } - std::vector png; - lodepng::State state; - state.info_png.iccp_defined = 1; - std::string testprofile = "0123456789abcdefGRAYfake iccp profile for testing"; - testprofile[0] = testprofile[1] = 0; - lodepng_set_icc(&state.info_png, "test", (const unsigned char*)testprofile.c_str(), testprofile.size()); - error = lodepng::encode(png, &image[0], w, h, state); - ASSERT_NO_PNG_ERROR(error); - - lodepng::State state2; - std::vector image2; - error = lodepng::decode(image2, w, h, state2, png); - ASSERT_NO_PNG_ERROR(error); - assertColorProfileDataEqual(state, state2); - ASSERT_EQUALS(32, w); - ASSERT_EQUALS(32, h); - ASSERT_EQUALS(image.size(), image2.size()); - for(size_t i = 0; i < image.size(); i++) ASSERT_EQUALS(image[i], image2[i]); - } - - // grayscale ICC profile, using an input image with grayscale colors but that - // would normally benefit from a palette (which auto_convert would normally - // choose). But the PNG spec does not allow combining palette with GRAY ICC - // profile, so the encoder should not choose to use palette after all. - { - unsigned error; - unsigned w = 32, h = 32; - std::vector image(w * h * 4); - int colors[3] = {0, 3, 133}; - for(size_t i = 0; i + 4 <= image.size(); i += 4) { - image[i] = image[i + 1] = image[i + 2] = image[i + 3] = colors[(i / 4) % 3]; - } - std::vector png; - lodepng::State state; - state.info_png.iccp_defined = 1; - std::string testprofile = "0123456789abcdefGRAYfake iccp profile for testing"; - testprofile[0] = testprofile[1] = 0; - lodepng_set_icc(&state.info_png, "test", (const unsigned char*)testprofile.c_str(), testprofile.size()); - error = lodepng::encode(png, &image[0], w, h, state); - ASSERT_NO_PNG_ERROR(error); - - lodepng::State state2; - std::vector image2; - error = lodepng::decode(image2, w, h, state2, png); - ASSERT_NO_PNG_ERROR(error); - assertColorProfileDataEqual(state, state2); - ASSERT_NOT_EQUALS(LCT_PALETTE, state2.info_png.color.colortype); - } - - // RGB ICC profile, using an input image with grayscale colors: the encoder - // is forced to choose an RGB color type anyway with auto_convert - { - unsigned error; - unsigned w = 32, h = 32; - std::vector image(w * h * 4); - for(size_t i = 0; i + 4 <= image.size(); i += 4) { - image[i] = image[i + 1] = image[i + 2] = (i / 4) & 255; - image[i + 3] = 255; - } - std::vector png; - lodepng::State state; - state.info_png.iccp_defined = 1; - std::string testprofile = "0123456789abcdefRGB fake iccp profile for testing"; - testprofile[0] = testprofile[1] = 0; - lodepng_set_icc(&state.info_png, "test", (const unsigned char*)testprofile.c_str(), testprofile.size()); - error = lodepng::encode(png, &image[0], w, h, state); - ASSERT_NO_PNG_ERROR(error); - - lodepng::State state2; - std::vector image2; - error = lodepng::decode(image2, w, h, state2, png); - ASSERT_NO_PNG_ERROR(error); - assertColorProfileDataEqual(state, state2); - // LCT_RGB or LCT_PALETTE are both ok, gray is not (it likely chooses palette in practice) - ASSERT_NOT_EQUALS(LCT_GREY, state2.info_png.color.colortype); - ASSERT_NOT_EQUALS(LCT_GREY_ALPHA, state2.info_png.color.colortype); - } - - // Encoder must give error when forcing invalid combination of color/gray - // PNG with gray/color ICC Profile - { - unsigned error; - unsigned w = 32, h = 32; - std::vector image(w * h * 4); - int colors[3] = {0, 5, 33}; - for(size_t i = 0; i + 4 <= image.size(); i += 4) { - image[i] = 255; - image[i + 1] = image[i + 2] = image[i + 3] = colors[(i / 4) % 3]; - } - std::vector png; - lodepng::State state; - state.info_png.iccp_defined = 1; - std::string testprofile = "0123456789abcdefGRAYfake iccp profile for testing"; - testprofile[0] = testprofile[1] = 0; - lodepng_set_icc(&state.info_png, "test", (const unsigned char*)testprofile.c_str(), testprofile.size()); - error = lodepng::encode(png, &image[0], w, h, state); - ASSERT_NOT_EQUALS(0, error); // must give error due to color image input with gray profile - } -} - -// r, g, b is input background color to encoder, given in png color model -// r2, g2, b2 is expected decoded background color, in color model it auto chose if auto_convert is on -// pixels must be given in mode_raw color format -void testBkgdChunk(unsigned r, unsigned g, unsigned b, - unsigned r2, unsigned g2, unsigned b2, - const std::vector& pixels, - unsigned w, unsigned h, - const LodePNGColorMode& mode_raw, - const LodePNGColorMode& mode_png, - bool auto_convert, bool expect_encoder_error = false) { - unsigned error; - - lodepng::State state; - LodePNGInfo& info = state.info_png; - lodepng_color_mode_copy(&info.color, &mode_png); - lodepng_color_mode_copy(&state.info_raw, &mode_raw); - state.encoder.auto_convert = auto_convert; - - info.background_defined = 1; - info.background_r = r; - info.background_g = g; - info.background_b = b; - - std::vector png; - error = lodepng::encode(png, pixels, w, h, state); - if(expect_encoder_error) { - ASSERT_NOT_EQUALS(0, error); - return; - } - ASSERT_NO_PNG_ERROR(error); - - lodepng::State state2; - LodePNGInfo& info2 = state2.info_png; - state2.info_raw.colortype = LCT_RGBA; - state2.info_raw.bitdepth = 16; - unsigned w2, h2; - std::vector image2; - error = lodepng::decode(image2, w2, h2, state2, &png[0], png.size()); - ASSERT_NO_PNG_ERROR(error); - - ASSERT_EQUALS(w, w2); - ASSERT_EQUALS(h, h2); - ASSERT_EQUALS(1, info2.background_defined); - ASSERT_EQUALS(r2, info2.background_r); - ASSERT_EQUALS(g2, info2.background_g); - ASSERT_EQUALS(b2, info2.background_b); - - // compare pixels in the "raw" color model - LodePNGColorMode mode_decoded; lodepng_color_mode_init(&mode_decoded); mode_decoded.bitdepth = 16; mode_decoded.colortype = LCT_RGBA; - std::vector image3((w * h * lodepng_get_bpp(&mode_raw) + 7) / 8); - error = lodepng_convert(image3.data(), image2.data(), &mode_raw, &mode_decoded, w, h); - ASSERT_NO_PNG_ERROR(error); - ASSERT_EQUALS(pixels.size(), image3.size()); - for(size_t i = 0; i < image3.size(); i++) { - ASSERT_EQUALS((int)image3[i], (int)pixels[i]); - } -} - -// r, g, b is input background color to encoder, given in png color model -// r2, g2, b2 is expected decoded background color, in color model it auto chose if auto_convert is on -void testBkgdChunk(unsigned r, unsigned g, unsigned b, - unsigned r2, unsigned g2, unsigned b2, - LodePNGColorType type_pixels, unsigned bitdepth_pixels, - LodePNGColorType type_raw, unsigned bitdepth_raw, - LodePNGColorType type_png, unsigned bitdepth_png, - bool auto_convert, bool expect_encoder_error = false) { - unsigned error; - Image image; - generateTestImageRequiringColorType16(image, type_pixels, bitdepth_pixels, false); - - LodePNGColorMode mode_raw; lodepng_color_mode_init(&mode_raw); mode_raw.bitdepth = bitdepth_raw; mode_raw.colortype = type_raw; - LodePNGColorMode mode_test; lodepng_color_mode_init(&mode_test); mode_test.bitdepth = 16; mode_test.colortype = LCT_RGBA; - LodePNGColorMode mode_png; lodepng_color_mode_init(&mode_png); mode_png.bitdepth = bitdepth_png; mode_png.colortype = type_png; - std::vector temp((image.width * image.height * lodepng_get_bpp(&mode_raw) + 7) / 8); - error = lodepng_convert(temp.data(), image.data.data(), &mode_raw, &mode_test, image.width, image.height); - ASSERT_NO_PNG_ERROR(error); - image.data = temp; - - testBkgdChunk(r, g, b, r2, g2, b2, - image.data, image.width, image.height, - mode_raw, mode_png, auto_convert, expect_encoder_error); -} - -void testBkgdChunk() { - std::cout << "testBkgdChunk" << std::endl; - // color param order is: generated, raw, png ( == bKGD) - // here generated means: what color values the pixels will get, so what auto_convert will make it choose - testBkgdChunk(255, 0, 0, 255, 0, 0, LCT_RGBA, 8, LCT_RGBA, 8, LCT_RGBA, 8, true); - testBkgdChunk(255, 0, 0, 255, 0, 0, LCT_RGBA, 8, LCT_RGB, 8, LCT_RGB, 8, true); - testBkgdChunk(255, 0, 0, 255, 0, 0, LCT_RGB, 8, LCT_RGB, 8, LCT_RGB, 8, true); - testBkgdChunk(255, 255, 255, 1, 1, 1, LCT_GREY, 1, LCT_RGB, 8, LCT_RGB, 8, true); - testBkgdChunk(255, 255, 255, 3, 3, 3, LCT_GREY, 2, LCT_RGB, 8, LCT_RGB, 8, true); - testBkgdChunk(255, 255, 255, 15, 15, 15, LCT_GREY, 4, LCT_RGB, 8, LCT_RGB, 8, true); - testBkgdChunk(255, 255, 255, 255, 255, 255, LCT_GREY, 8, LCT_RGB, 8, LCT_RGB, 8, true); - testBkgdChunk(255, 255, 255, 65535, 65535, 65535, LCT_GREY, 16, LCT_RGB, 16, LCT_RGB, 8, true); - testBkgdChunk(123, 0, 0, 123, 0, 0, LCT_GREY, 1, LCT_RGB, 8, LCT_RGB, 8, true); - testBkgdChunk(170, 170, 170, 2, 2, 2, LCT_GREY, 1, LCT_RGB, 8, LCT_RGB, 8, true); // 170 = value 2 in 2-bit - - // without auto_convert. Note that it will still convert if different colortype is given for raw and png, it's just - // not automatic in that case. - testBkgdChunk(255, 0, 0, 255, 0, 0, LCT_RGBA, 8, LCT_RGBA, 8, LCT_RGBA, 8, false); - testBkgdChunk(60000, 0, 0, 60000, 0, 0, LCT_RGBA, 8, LCT_RGBA, 8, LCT_RGBA, 16, false); - testBkgdChunk(128, 128, 128, 128, 128, 128, LCT_GREY, 8, LCT_RGBA, 8, LCT_GREY, 8, false); - { - LodePNGColorMode pal; - lodepng_color_mode_init(&pal); - for(int i = 0; i < 200; i++) lodepng_palette_add(&pal, i, i / 2, 0, 255); - pal.colortype = LCT_PALETTE; - pal.bitdepth = 8; - unsigned w = 200; - unsigned h = 200; - std::vector img(w * h); - for(unsigned y = 0; y < h; y++) - for(unsigned x = 0; x < w; x++) { - img[y * w + x] = x; - } - - testBkgdChunk(100, 0, 0, 100, 100, 100, img, w, h, pal, pal, true, false); - testBkgdChunk(100, 0, 0, 100, 100, 100, img, w, h, pal, pal, false, false); - testBkgdChunk(250, 0, 0, 250, 250, 250, img, w, h, pal, pal, true, true); - - std::vector fourcolor(w * h); - for(unsigned y = 0; y < h; y++) - for(unsigned x = 0; x < w; x++) { - fourcolor[y * w + x] = x & 3; - } - // palette index 4 expected for output bKGD: auto_convert should turn the 200-sized - // palette in one of size 5, 4 values for the fourcolor image above, and then a 5th for - // the bkgd index. The other two 4's actually shouldn't matter, it's not defined what - // they should be though currently lodepng sets them also to the palette index... - testBkgdChunk(100, 0, 0, 4, 4, 4, fourcolor, w, h, pal, pal, true, false); - - - std::vector mini(4); - mini[0] = 1; mini[1] = 2; mini[2] = 3; mini[3] = 4; - // here we expect RGB color from the output image, since the image is tiny so it chooses to not add PLTE - testBkgdChunk(100, 0, 0, 100, 50, 0, mini, 2, 2, pal, pal, true, false); - - lodepng_color_mode_cleanup(&pal); - } -} - -void testBkgdChunk2() { - std::cout << "testBkgdChunk2" << std::endl; - Image image; - generateTestImageRequiringColorType8(image, LCT_GREY, 2, false); - - // without background, it should choose 2-bit gray for this PNG - std::vector png0; - ASSERT_NO_PNG_ERROR(lodepng::encode(png0, image.data, image.width, image.height)); - lodepng::State state0; - unsigned w0, h0; - lodepng_inspect(&w0, &h0, &state0, png0.data(), png0.size()); - ASSERT_EQUALS(2, state0.info_png.color.bitdepth); - ASSERT_EQUALS(LCT_GREY, state0.info_png.color.colortype); - - // red background, with auto_convert, it is forced to choose RGB - lodepng::State state; - LodePNGInfo& info = state.info_png; - info.background_defined = 1; - info.background_r = 255; - info.background_g = 0; - info.background_b = 0; - std::vector png1; - ASSERT_NO_PNG_ERROR(lodepng::encode(png1, image.data, image.width, image.height, state)); - lodepng::State state1; - unsigned w1, h1; - lodepng_inspect(&w1, &h1, &state1, png1.data(), png1.size()); - ASSERT_EQUALS(8, state1.info_png.color.bitdepth); - ASSERT_EQUALS(LCT_RGB, state1.info_png.color.colortype); - - // gray output required, background color also interpreted as gray - state.info_raw.colortype = LCT_RGB; - state.info_png.color.colortype = LCT_GREY; - state.info_png.color.bitdepth = 1; - state.encoder.auto_convert = 0; - info.background_defined = 1; - info.background_r = 1; - info.background_g = 1; - info.background_b = 1; - std::vector png2; - ASSERT_NO_PNG_ERROR(lodepng::encode(png2, image.data, image.width, image.height, state)); - lodepng::State state2; - unsigned w2, h2; - lodepng_inspect(&w2, &h2, &state2, png2.data(), png2.size()); - ASSERT_EQUALS(1, state2.info_png.color.bitdepth); - ASSERT_EQUALS(LCT_GREY, state2.info_png.color.colortype); -} - -// r, g, b, a are the bit depths to store -void testSbitChunk(unsigned r, unsigned g, unsigned b, unsigned a, - const std::vector& pixels, - unsigned w, unsigned h, - const LodePNGColorMode& mode_raw, - const LodePNGColorMode& mode_png, - bool auto_convert, - bool expect_encoder_error = false) { - unsigned error; - - lodepng::State state; - LodePNGInfo& info = state.info_png; - lodepng_color_mode_copy(&info.color, &mode_png); - lodepng_color_mode_copy(&state.info_raw, &mode_raw); - state.encoder.auto_convert = auto_convert; - if(mode_raw.colortype == LCT_PALETTE) { - for(size_t i = 0; i < 256; i++) { - // TODO: consider allowing to set only 1 of these palettes in lodepng in the case - // where both info_raw and info_png have the palette color type - lodepng_palette_add(&state.info_raw, i, i, i, 255); - lodepng_palette_add(&info.color, i, i, i, 255); - } - } - - info.sbit_defined = 1; - info.sbit_r = r; - info.sbit_g = g; - info.sbit_b = b; - info.sbit_a = a; - - std::vector png; - error = lodepng::encode(png, pixels, w, h, state); - if(expect_encoder_error) { - ASSERT_NOT_EQUALS(0, error); - return; - } - ASSERT_NO_PNG_ERROR(error); - - lodepng::State state2; - LodePNGInfo& info2 = state2.info_png; - unsigned w2, h2; - std::vector image2; - error = lodepng::decode(image2, w2, h2, state2, &png[0], png.size()); - ASSERT_NO_PNG_ERROR(error); - - LodePNGColorType type = mode_png.colortype; - - ASSERT_EQUALS(w, w2); - ASSERT_EQUALS(h, h2); - ASSERT_EQUALS(1, info2.sbit_defined); - ASSERT_EQUALS(r, info2.sbit_r); - if(type == LCT_RGB || type == LCT_RGBA || type == LCT_PALETTE) { - ASSERT_EQUALS(g, info2.sbit_g); - ASSERT_EQUALS(b, info2.sbit_b); - } - if(type == LCT_GREY_ALPHA || type == LCT_RGBA) { - ASSERT_EQUALS(a, info2.sbit_a); - } - - // compare pixels in a 16-bit color model - LodePNGColorMode mode_compare; lodepng_color_mode_init(&mode_compare); mode_compare.bitdepth = 16; mode_compare.colortype = LCT_RGBA; - LodePNGColorMode mode_decoded; lodepng_color_mode_init(&mode_decoded); mode_decoded.bitdepth = 8; mode_decoded.colortype = LCT_RGBA; - std::vector image3(w * h * 8); - error = lodepng_convert(image3.data(), image2.data(), &mode_compare, &mode_decoded, w, h); - std::vector image4(w * h * 8); - error = lodepng_convert(image4.data(), pixels.data(), &mode_compare, &state.info_raw, w, h); - ASSERT_NO_PNG_ERROR(error); - ASSERT_EQUALS(image4.size(), image3.size()); - for(size_t i = 0; i < image3.size(); i++) { - ASSERT_EQUALS((int)image4[i], (int)image3[i]); - } -} - - -void testSbitChunk(unsigned r, unsigned g, unsigned b, unsigned a, - LodePNGColorType type, unsigned bitdepth, - bool expect_encoder_error = false) { - LodePNGColorMode mode_raw; - lodepng_color_mode_init(&mode_raw); - mode_raw.bitdepth = bitdepth; - mode_raw.colortype = type; - LodePNGColorMode mode_png; - lodepng_color_mode_init(&mode_png); - mode_png.bitdepth = bitdepth; - mode_png.colortype = type; - - std::vector pixels(8, 255); // force all pixels to be white, so encoder tries to use auto_convert as much as possible - - testSbitChunk(r, g, b, a, pixels, 1, 1, mode_raw, mode_png, false, expect_encoder_error); - testSbitChunk(r, g, b, a, pixels, 1, 1, mode_raw, mode_png, true, expect_encoder_error); -} - -// type_pixels = what the pixels should require at least for auto_convert -// type_raw = actual raw pixel type to give to the encoder -// type_png = PNG type to request from the encoder (if not auto_convert) -// auto_convert: 0 = no, 1 = yes, 2 = try both -void testSbitChunk2(unsigned r, unsigned g, unsigned b, unsigned a, - LodePNGColorType type_pixels, unsigned bitdepth_pixels, - LodePNGColorType type_raw, unsigned bitdepth_raw, - LodePNGColorType type_png, unsigned bitdepth_png, - int auto_convert, - bool expect_encoder_error = false) { - - unsigned error; - Image image; - generateTestImageRequiringColorType16(image, type_pixels, bitdepth_pixels, false); - - LodePNGColorMode mode_raw; lodepng_color_mode_init(&mode_raw); mode_raw.bitdepth = bitdepth_raw; mode_raw.colortype = type_raw; - LodePNGColorMode mode_test; lodepng_color_mode_init(&mode_test); mode_test.bitdepth = 16; mode_test.colortype = LCT_RGBA; - LodePNGColorMode mode_png; lodepng_color_mode_init(&mode_png); mode_png.bitdepth = bitdepth_png; mode_png.colortype = type_png; - std::vector temp((image.width * image.height * lodepng_get_bpp(&mode_raw) + 7) / 8); - error = lodepng_convert(temp.data(), image.data.data(), &mode_raw, &mode_test, image.width, image.height); - ASSERT_NO_PNG_ERROR(error); - image.data = temp; - - if(auto_convert == 0 || auto_convert == 2) testSbitChunk(r, g, b, a, image.data, image.width, image.height, mode_raw, mode_png, false, expect_encoder_error); - if(auto_convert == 1 || auto_convert == 2) testSbitChunk(r, g, b, a, image.data, image.width, image.height, mode_raw, mode_png, true, expect_encoder_error); -} - -// Test the sBIT chunk for all color types, and for possible combinations of pixel colors where auto_convert conversions occur (only conversions that -// still allow storing all the sBIT information within the PNG specification limitations may occur) -void testSbitChunk() { - std::cout << "testSbitChunk" << std::endl; - testSbitChunk(8, 8, 8, 0, LCT_RGB, 8, false); - testSbitChunk(1, 2, 3, 0, LCT_RGB, 8, false); - testSbitChunk(0, 2, 3, 0, LCT_RGB, 8, true); - testSbitChunk(9, 2, 3, 0, LCT_RGB, 8, true); - - testSbitChunk(8, 8, 8, 8, LCT_RGBA, 8, false); - testSbitChunk(1, 2, 3, 4, LCT_RGBA, 8, false); - testSbitChunk(0, 2, 3, 4, LCT_RGBA, 8, true); - testSbitChunk(9, 2, 3, 4, LCT_RGBA, 8, true); - - testSbitChunk(1, 2, 3, 0, LCT_RGB, 16, false); - testSbitChunk(0, 2, 3, 0, LCT_RGB, 16, true); - testSbitChunk(9, 2, 3, 0, LCT_RGB, 16, false); - testSbitChunk(17, 2, 3, 0, LCT_RGB, 16, true); - - testSbitChunk(1, 2, 3, 4, LCT_RGBA, 16, false); - testSbitChunk(0, 2, 3, 4, LCT_RGBA, 16, true); - testSbitChunk(9, 2, 3, 4, LCT_RGBA, 16, false); - testSbitChunk(17, 2, 3, 4, LCT_RGBA, 16, true); - - testSbitChunk(8, 2, 3, 0, LCT_PALETTE, 8, false); - testSbitChunk(8, 2, 3, 0, LCT_PALETTE, 4, false); // 4-bit palette still treats the RGB as 8-bit - testSbitChunk(9, 2, 3, 0, LCT_PALETTE, 8, true); - - testSbitChunk(8, 0, 0, 0, LCT_GREY, 8, false); - testSbitChunk(8, 0, 0, 0, LCT_GREY, 4, true); - testSbitChunk(5, 0, 0, 0, LCT_GREY, 8, false); - testSbitChunk(1, 0, 0, 0, LCT_GREY, 1, false); - testSbitChunk(3, 0, 0, 0, LCT_GREY, 1, true); - testSbitChunk(0, 0, 0, 0, LCT_GREY, 1, true); - - testSbitChunk(16, 0, 0, 0, LCT_GREY, 16, false); - testSbitChunk(17, 0, 0, 0, LCT_GREY, 16, true); - testSbitChunk(8, 0, 0, 0, LCT_GREY, 16, false); - testSbitChunk(5, 0, 0, 0, LCT_GREY, 16, false); - - testSbitChunk(8, 0, 0, 8, LCT_GREY_ALPHA, 8, false); - testSbitChunk(8, 0, 0, 0, LCT_GREY_ALPHA, 8, true); - testSbitChunk(8, 0, 0, 9, LCT_GREY_ALPHA, 8, true); - testSbitChunk(5, 0, 0, 5, LCT_GREY_ALPHA, 8, false); - testSbitChunk(5, 0, 0, 8, LCT_GREY_ALPHA, 8, false); - - testSbitChunk(16, 0, 0, 16, LCT_GREY_ALPHA, 16, false); - testSbitChunk(16, 0, 0, 8, LCT_GREY_ALPHA, 16, false); - testSbitChunk(8, 0, 0, 8, LCT_GREY_ALPHA, 16, false); - testSbitChunk(16, 0, 0, 0, LCT_GREY_ALPHA, 16, true); - testSbitChunk(16, 0, 0, 17, LCT_GREY_ALPHA, 16, true); - testSbitChunk(5, 0, 0, 5, LCT_GREY_ALPHA, 16, false); - testSbitChunk(5, 0, 0, 8, LCT_GREY_ALPHA, 16, false); - - testSbitChunk2(8, 8, 8, 0, LCT_RGB, 8, LCT_RGB, 8, LCT_RGB, 8, 2, false); - testSbitChunk2(8, 8, 8, 0, LCT_GREY, 8, LCT_RGB, 8, LCT_RGB, 8, 2, false); - testSbitChunk2(12, 12, 12, 0, LCT_GREY, 8, LCT_RGB, 16, LCT_RGB, 16, 2, false); - testSbitChunk2(12, 12, 12, 8, LCT_GREY, 8, LCT_RGBA, 16, LCT_RGBA, 16, 2, false); - testSbitChunk2(8, 8, 8, 0, LCT_GREY, 8, LCT_RGB, 16, LCT_RGB, 16, 2, false); - testSbitChunk2(8, 7, 8, 0, LCT_GREY, 8, LCT_RGB, 16, LCT_RGB, 16, 2, false); - testSbitChunk2(8, 8, 7, 0, LCT_GREY, 8, LCT_RGB, 16, LCT_RGB, 16, 2, false); - testSbitChunk2(8, 7, 8, 0, LCT_GREY, 8, LCT_RGB, 8, LCT_RGB, 8, 2, false); - testSbitChunk2(8, 8, 7, 0, LCT_GREY, 8, LCT_RGB, 8, LCT_RGB, 8, 2, false); - testSbitChunk2(8, 8, 8, 0, LCT_GREY, 8, LCT_RGB, 8, LCT_GREY_ALPHA, 8, 1, false); - testSbitChunk2(8, 8, 8, 8, LCT_GREY, 8, LCT_RGB, 8, LCT_GREY_ALPHA, 8, 0, false); - - - // test png-suite image cs3n3p08.png, which has an sBIT chunk with RGB values set to 3 bits - { - std::vector png, decoded; - fromBase64(png, std::string("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAMAAABEpIrGAAAABGdBTUEAAYagMeiWXwAAAANzQklUAwMDo5KgQgAAAFRQTFRFkv8AAP+SAP//AP8AANv/AP9t/7YAAG3/tv8A/5IA2/8AAEn//yQA/wAAJP8ASf8AAP/bAP9JAP+2//8AAP8kALb//9sAAJL//20AACT//0kAbf8A33ArFwAAAEtJREFUeJyFyscBggAAALGzYldUsO2/pyMk73SGGE7QF3pDe2gLzdADHA7QDqIfdIUu0AocntAIbaAFdIdu0BIc1tAEvaABOkIf+AMiQDPhd/SuJgAAAABJRU5ErkJggg==")); - lodepng::State state; - unsigned w, h; - - unsigned error = lodepng::decode(decoded, w, h, state, png); - assertNoError(error); - ASSERT_EQUALS(1, state.info_png.sbit_defined); - ASSERT_EQUALS(3, state.info_png.sbit_r); - ASSERT_EQUALS(3, state.info_png.sbit_g); - ASSERT_EQUALS(3, state.info_png.sbit_b); - } - - // test png-suite image basn0g02.png, which is known to not have an sBIT chunk - { - std::vector png, decoded; - fromBase64(png, std::string("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAgAAAAAcoT2JAAAABGdBTUEAAYagMeiWXwAAAB9JREFUeJxjYAhd9R+M8TCIUMIAU4aPATMJH2OQuQcAvUl/gYsJiakAAAAASUVORK5CYII=")); - lodepng::State state; - unsigned w, h; - - unsigned error = lodepng::decode(decoded, w, h, state, png); - assertNoError(error); - ASSERT_EQUALS(0, state.info_png.sbit_defined); - } -} - -// Test particular cHRM+gAMA conversion to srgb -// gamma = gamma given 100000x multiplied form of PNG, or 0 to set none at all -// wx..by = whitepoint and chromaticities, given in the 100000x multiplied form of PNG -// r, g, b: r, g, b values to encode in the PNG's data -// er, eg, eb: expected r, g, b values after decoding and converting to sRGB -void testChrmToSrgb(unsigned gamma, unsigned wx, unsigned wy, unsigned rx, unsigned ry, unsigned gx, unsigned gy, unsigned bx, unsigned by, - unsigned char r, unsigned char g, unsigned char b, unsigned char er, unsigned char eg, unsigned char eb, - int max_dist = 0) { - std::vector image(4); - image[0] = r; - image[1] = g; - image[2] = b; - image[3] = 255; - lodepng::State state; - if(gamma) { - state.info_png.gama_defined = 1; - state.info_png.gama_gamma = gamma; - } - state.info_png.chrm_defined = 1; - state.info_png.chrm_white_x = wx; - state.info_png.chrm_white_y = wy; - state.info_png.chrm_red_x = rx; - state.info_png.chrm_red_y = ry; - state.info_png.chrm_green_x = gx; - state.info_png.chrm_green_y = gy; - state.info_png.chrm_blue_x = bx; - state.info_png.chrm_blue_y = by; - - std::vector image2(4); - convertToSrgb(image2.data(), image.data(), 1, 1, &state); - - if(max_dist == 0) { - ASSERT_EQUALS(er, image2[0]); - ASSERT_EQUALS(eg, image2[1]); - ASSERT_EQUALS(eb, image2[2]); - } else { - ASSERT_NEAR(er, image2[0], max_dist); - ASSERT_NEAR(eg, image2[1], max_dist); - ASSERT_NEAR(eb, image2[2], max_dist); - } - - // Also test the opposite direction - - std::vector image3(4); - convertFromSrgb(image3.data(), image2.data(), 1, 1, &state); - - if(max_dist == 0) { - ASSERT_EQUALS(r, image3[0]); - ASSERT_EQUALS(g, image3[1]); - ASSERT_EQUALS(b, image3[2]); - } else { - ASSERT_NEAR(r, image3[0], max_dist); - ASSERT_NEAR(g, image3[1], max_dist); - ASSERT_NEAR(b, image3[2], max_dist); - } -} - -void testChrmToSrgb() { - std::cout << "testChrmToSrgb" << std::endl; - // srgb gamma approximation and chromaticities defined as standard by png (multiplied by 100000) - unsigned sg = 45455; // srgb gamma approximation - unsigned swx = 31270; - unsigned swy = 32900; - unsigned srx = 64000; - unsigned sry = 33000; - unsigned sgx = 30000; - unsigned sgy = 60000; - unsigned sbx = 15000; - unsigned sby = 6000; - - testChrmToSrgb(sg, swx, swy, srx, sry, sgx, sgy, sbx, sby, 0, 0, 0, 0, 0, 0); - testChrmToSrgb(sg, swx, swy, srx, sry, sgx, sgy, sbx, sby, 255, 255, 255, 255, 255, 255); - - testChrmToSrgb(0, swx, swy, srx, sry, sgx, sgy, sbx, sby, 50, 50, 50, 50, 50, 50); - testChrmToSrgb(0, swx, swy, srx, sry, sgx, sgy, sbx, sby, 128, 128, 128, 128, 128, 128); - testChrmToSrgb(0, swx, swy, srx, sry, sgx, sgy, sbx, sby, 200, 200, 200, 200, 200, 200); - - testChrmToSrgb(0, swx, swy, srx, sry, sgx, sgy, sbx, sby, 255, 0, 0, 255, 0, 0); - testChrmToSrgb(0, swx, swy, srx, sry, sgx, sgy, sbx, sby, 0, 255, 0, 0, 255, 0); - testChrmToSrgb(0, swx, swy, srx, sry, sgx, sgy, sbx, sby, 0, 0, 255, 0, 0, 255); - - // swap red and green chromaticities - testChrmToSrgb(0, swx, swy, sgx, sgy, srx, sry, sbx, sby, 255, 0, 0, 0, 255, 0); - testChrmToSrgb(0, swx, swy, sgx, sgy, srx, sry, sbx, sby, 0, 255, 0, 255, 0, 0); - testChrmToSrgb(0, swx, swy, sgx, sgy, srx, sry, sbx, sby, 0, 0, 255, 0, 0, 255); - - // swap red/green/blue chromaticities - testChrmToSrgb(0, swx, swy, sgx, sgy, sbx, sby, srx, sry, 255, 0, 0, 0, 255, 0); - testChrmToSrgb(0, swx, swy, sgx, sgy, sbx, sby, srx, sry, 0, 255, 0, 0, 0, 255); - testChrmToSrgb(0, swx, swy, sgx, sgy, sbx, sby, srx, sry, 0, 0, 255, 255, 0, 0); - - // different whitepoint does not affect white or gray, due to the relative rendering intent (adaptation) - testChrmToSrgb(0, 35000, 25000, srx, sry, sgx, sgy, sbx, sby, 0, 0, 0, 0, 0, 0); - testChrmToSrgb(0, 35000, 25000, srx, sry, sgx, sgy, sbx, sby, 50, 50, 50, 50, 50, 50); - testChrmToSrgb(0, 35000, 25000, srx, sry, sgx, sgy, sbx, sby, 128, 128, 128, 128, 128, 128); - testChrmToSrgb(0, 35000, 25000, srx, sry, sgx, sgy, sbx, sby, 200, 200, 200, 200, 200, 200); - testChrmToSrgb(0, 35000, 25000, srx, sry, sgx, sgy, sbx, sby, 255, 255, 255, 255, 255, 255); -} - - - -void testXYZ() { - std::cout << "testXYZ" << std::endl; - unsigned w = 512, h = 512; - std::vector v(w * h * 4 * 2); - for(size_t i = 0; i < v.size(); i++) { - v[i] = getRandom() & 255; - } - - // Test sRGB -> XYZ -> sRGB roundtrip - - unsigned rendering_intent = 3; // test with absolute for now - - // 8-bit - { - // Default state, the conversions use 8-bit sRGB - lodepng::State state; - std::vector f(w * h * 4); - float whitepoint[3]; - assertNoError(lodepng::convertToXYZ(f.data(), whitepoint, v.data(), w, h, &state)); - - std::vector v2(w * h * 4); - assertNoError(lodepng::convertFromXYZ(v2.data(), f.data(), w, h, &state, whitepoint, rendering_intent)); - - for(size_t i = 0; i < v2.size(); i++) { - ASSERT_EQUALS(v[i], v2[i]); - } - } - - // 16-bit - { - // Default state but with 16-bit, the conversions use 16-bit sRGB - lodepng::State state; - state.info_raw.bitdepth = 16; - std::vector f(w * h * 4); - float whitepoint[3]; - assertNoError(lodepng::convertToXYZ(f.data(), whitepoint, v.data(), w, h, &state)); - - std::vector v2(w * h * 8); - assertNoError(lodepng::convertFromXYZ(v2.data(), f.data(), w, h, &state, whitepoint, rendering_intent)); - - for(size_t i = 0; i < v2.size(); i++) { - ASSERT_EQUALS(v[i], v2[i]); - } - } - - // Test custom RGB+gamma -> XYZ -> custom RGB+gamma roundtrip - - LodePNGInfo info_custom; - lodepng_info_init(&info_custom); - info_custom.gama_defined = 1; - info_custom.gama_gamma = 30000; // default 45455 - info_custom.chrm_defined = 1; - info_custom.chrm_white_x = 10000; // default 31270 - info_custom.chrm_white_y = 20000; // default 32900 - info_custom.chrm_red_x = 30000; // default 64000 - info_custom.chrm_red_y = 50000; // default 33000 - info_custom.chrm_green_x = 70000; // default 30000 - info_custom.chrm_green_y = 11000; // default 60000 - info_custom.chrm_blue_x = 13000; // default 15000 - info_custom.chrm_blue_y = 17000; // default 6000 - - // 8-bit - { - lodepng::State state; - lodepng_info_copy(&state.info_png, &info_custom); - std::vector f(w * h * 4); - float whitepoint[3]; - assertNoError(lodepng::convertToXYZ(f.data(), whitepoint, v.data(), w, h, &state)); - - std::vector v2(w * h * 4); - assertNoError(lodepng::convertFromXYZ(v2.data(), f.data(), w, h, &state, whitepoint, rendering_intent)); - - for(size_t i = 0; i < v2.size(); i++) { - // Allow near instead of exact due to numerical issues with low values, - // see description at the 16-bit test below. - unsigned maxdist = 0; - if(v[i] <= 2) maxdist = 3; - else if(v[i] <= 4) maxdist = 2; - else maxdist = 0; - ASSERT_NEAR(v[i], v2[i], maxdist); - } - } - - // 16-bit - { - lodepng::State state; - lodepng_info_copy(&state.info_png, &info_custom); - state.info_raw.bitdepth = 16; - std::vector f(w * h * 4); - float whitepoint[3]; - assertNoError(lodepng::convertToXYZ(f.data(), whitepoint, v.data(), w, h, &state)); - - std::vector v2(w * h * 8); - assertNoError(lodepng::convertFromXYZ(v2.data(), f.data(), w, h, &state, whitepoint, rendering_intent)); - - for(size_t i = 0; i < v2.size(); i += 2) { - unsigned a = v[i + 0] * 256u + v[i + 1]; - unsigned a2 = v2[i + 0] * 256u + v2[i + 1]; - // There are numerical issues with low values due to the precision of float, - // so allow some distance for low values (low compared to 65535). - // The issue seems to be: the combination of how the gamma correction affects - // low values and the color conversion matrix operating on single precision - // floating point. With the sRGB's gamma the problem seems not to happen, maybe - // because that linear part near 0 behaves better than power. - // TODO: check if it can be fixed without using double for the image and without slow double precision pow. - unsigned maxdist = 0; - if(a < 2048) maxdist = 768; - else if(a < 4096) maxdist = 24; - else if(a < 16384) maxdist = 4; - else maxdist = 2; - ASSERT_NEAR(a, a2, maxdist); - } - } - - lodepng_info_cleanup(&info_custom); -} - - -void testICC() { - std::cout << "testICC" << std::endl; - // approximate srgb (gamma function not exact) - std::string icc_near_srgb_base64 = - "AAABwHRlc3QCQAAAbW50clJHQiBYWVogB+MAAQABAAAAAAAAYWNzcFNHSSAAAAABAAAAAAAAAAAA" - "AAAAAAAAAAAAAAEAAPbWAAEAAAAA0y10ZXN0AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAAAAAAAAAAAAAAAJY3BydAAAAPAAAAANZGVzYwAAAQAAAABfd3RwdAAAAWAAAAAUclhZ" - "WgAAAXQAAAAUZ1hZWgAAAYgAAAAUYlhZWgAAAZwAAAAUclRSQwAAAbAAAAAOZ1RSQwAAAbAAAAAO" - "YlRSQwAAAbAAAAAOdGV4dAAAAABDQzAgAAAAAGRlc2MAAAAAAAAABXRlc3QAZW5VUwAAAAAAAAAA" - "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAAAAAFhZWiAAAAAAAADzUQABAAAAARbMWFlaIAAAAAAAAG+gAAA49AAAA5BYWVogAAAA" - "AAAAYpYAALeHAAAY2VhZWiAAAAAAAAAkngAAD4QAALbCY3VydgAAAAAAAAABAjMAAA=="; - std::vector icc_near_srgb; - fromBase64(icc_near_srgb, icc_near_srgb_base64); - lodepng::State state_near_srgb; - lodepng_set_icc(&state_near_srgb.info_png, "near_srgb", icc_near_srgb.data(), icc_near_srgb.size()); - - // a made up RGB model. - // it causes (when converting from this to srgb) green to become softer green, blue to become softer blue, red to become orange. - // this model intersects sRGB, but some parts are outside of sRGB, some parts of sRGB are outside of this one. - // so when converting between this and sRGB and clipping the values to 8-bit, and then converting back, the values will not be the same due to this clipping - std::string icc_orange_base64 = - "AAABwHRlc3QCQAAAbW50clJHQiBYWVogB+MAAQABAAAAAAAAYWNzcFNHSSAAAAABAAAAAAAAAAAA" - "AAAAAAAAAAAAAAMAAPbWAAEAAAAA0y10ZXN0AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAAAAAAAAAAAAAAAJY3BydAAAAPAAAAANZGVzYwAAAQAAAABfd3RwdAAAAWAAAAAUclhZ" - "WgAAAXQAAAAUZ1hZWgAAAYgAAAAUYlhZWgAAAZwAAAAUclRSQwAAAbAAAAAOZ1RSQwAAAbAAAAAO" - "YlRSQwAAAbAAAAAOdGV4dAAAAABDQzAgAAAAAGRlc2MAAAAAAAAABXRlc3QAZW5VUwAAAAAAAAAA" - "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAAAAAFhZWiAAAAAAAAE7uwABAAAAARmZWFlaIAAAAAAAANAHAACTTAAACrRYWVogAAAA" - "AAAABOMAAFd4AAAFzVhZWiAAAAAAAAAh6gAAFTsAAMKqY3VydgAAAAAAAAABAoAAAA=="; - std::vector icc_orange; - fromBase64(icc_orange, icc_orange_base64); - lodepng::State state_orange; - lodepng_set_icc(&state_orange.info_png, "orange", icc_orange.data(), icc_orange.size()); - - // A made up RGB model which is a superset of sRGB, and has R/G/B shifted around (so it greatly alters colors) - // Since this is a superset of sRGB, converting from sRGB to this model, and then back, should be lossless, but the opposite not necessarily. - std::string icc_super_base64 = - "AAABwHRlc3QCQAAAbW50clJHQiBYWVogB+MAAQABAAAAAAAAYWNzcFNHSSAAAAABAAAAAAAAAAAA" - "AAAAAAAAAAAAAAEAAPbWAAEAAAAA0y10ZXN0AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAAAAAAAAAAAAAAAJY3BydAAAAPAAAAANZGVzYwAAAQAAAABfd3RwdAAAAWAAAAAUclhZ" - "WgAAAXQAAAAUZ1hZWgAAAYgAAAAUYlhZWgAAAZwAAAAUclRSQwAAAbAAAAAOZ1RSQwAAAbAAAAAO" - "YlRSQwAAAbAAAAAOdGV4dAAAAABDQzAgAAAAAGRlc2MAAAAAAAAABXRlc3QAZW5VUwAAAAAAAAAA" - "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAAAAAFhZWiAAAAAAAADzUQABAAAAARbMWFlaIAAAAAAAAFW+AADL3f//70ZYWVogAAAA" - "AAAAJqD////UAADsUFhZWiAAAAAAAAB6dgAANE////eXY3VydgAAAAAAAAABAjMAAA=="; - std::vector icc_super; - fromBase64(icc_super, icc_super_base64); - lodepng::State state_super; - lodepng_set_icc(&state_super.info_png, "super", icc_super.data(), icc_super.size()); - - // A made up RGB model which is a subset of sRGB, and has R/G/B shifted around (so it greatly alters colors) - // Since this is a subset of sRGB, converting to sRGB from this model, and then back, should be lossless, but the opposite not necessarily. - std::string icc_sub_base64 = - "AAABwHRlc3QCQAAAbW50clJHQiBYWVogB+MAAQABAAAAAAAAYWNzcFNHSSAAAAABAAAAAAAAAAAA" - "AAAAAAAAAAAAAAEAAPbWAAEAAAAA0y10ZXN0AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAAAAAAAAAAAAAAAJY3BydAAAAPAAAAANZGVzYwAAAQAAAABfd3RwdAAAAWAAAAAUclhZ" - "WgAAAXQAAAAUZ1hZWgAAAYgAAAAUYlhZWgAAAZwAAAAUclRSQwAAAbAAAAAOZ1RSQwAAAbAAAAAO" - "YlRSQwAAAbAAAAAOdGV4dAAAAABDQzAgAAAAAGRlc2MAAAAAAAAABXRlc3QAZW5VUwAAAAAAAAAA" - "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAAAAAFhZWiAAAAAAAADzUQABAAAAARbMWFlaIAAAAAAAAHEEAABy1AAAr8ZYWVogAAAA" - "AAAAV5kAAEPkAAAMs1hZWiAAAAAAAAAuNwAASUcAABazY3VydgAAAAAAAAABAjMAAA=="; - - std::vector icc_sub; - fromBase64(icc_sub, icc_sub_base64); - lodepng::State state_sub; - lodepng_set_icc(&state_sub.info_png, "sub", icc_sub.data(), icc_sub.size()); - - // make 8-pixel image with following colors: white, gray, red, darkred, green, darkgreen, blue, darkblue - unsigned w = 4, h = 2; - std::vector im(w * h * 4, 255); - im[0 * 4 + 0] = 255; im[0 * 4 + 1] = 255; im[0 * 4 + 2] = 255; - im[1 * 4 + 0] = 128; im[1 * 4 + 1] = 128; im[1 * 4 + 2] = 128; - im[2 * 4 + 0] = 255; im[2 * 4 + 1] = 0; im[2 * 4 + 2] = 0; - im[3 * 4 + 0] = 128; im[3 * 4 + 1] = 0; im[3 * 4 + 2] = 0; - im[4 * 4 + 0] = 0; im[4 * 4 + 1] = 255; im[4 * 4 + 2] = 0; - im[5 * 4 + 0] = 0; im[5 * 4 + 1] = 128; im[5 * 4 + 2] = 0; - im[6 * 4 + 0] = 0; im[6 * 4 + 1] = 0; im[6 * 4 + 2] = 255; - im[7 * 4 + 0] = 0; im[7 * 4 + 1] = 0; im[7 * 4 + 2] = 128; - - - { - std::vector im2(w * h * 4, 255); - assertNoError(convertToSrgb(im2.data(), im.data(), w, h, &state_orange)); - - ASSERT_NEAR(255, im2[0 * 4 + 0], 1); ASSERT_NEAR(255, im2[0 * 4 + 1], 1); ASSERT_NEAR(255, im2[0 * 4 + 2], 1); - ASSERT_NEAR(117, im2[1 * 4 + 0], 1); ASSERT_NEAR(117, im2[1 * 4 + 1], 1); ASSERT_NEAR(117, im2[1 * 4 + 2], 1); - ASSERT_NEAR(255, im2[2 * 4 + 0], 1); ASSERT_NEAR(151, im2[2 * 4 + 1], 1); ASSERT_NEAR( 0, im2[2 * 4 + 2], 1); - ASSERT_NEAR(145, im2[3 * 4 + 0], 1); ASSERT_NEAR( 66, im2[3 * 4 + 1], 1); ASSERT_NEAR( 0, im2[3 * 4 + 2], 1); - ASSERT_NEAR( 0, im2[4 * 4 + 0], 1); ASSERT_NEAR(209, im2[4 * 4 + 1], 1); ASSERT_NEAR( 0, im2[4 * 4 + 2], 1); - ASSERT_NEAR( 0, im2[5 * 4 + 0], 1); ASSERT_NEAR( 95, im2[5 * 4 + 1], 1); ASSERT_NEAR( 0, im2[5 * 4 + 2], 1); - ASSERT_NEAR( 0, im2[6 * 4 + 0], 1); ASSERT_NEAR( 66, im2[6 * 4 + 1], 1); ASSERT_NEAR(255, im2[6 * 4 + 2], 1); - ASSERT_NEAR( 0, im2[7 * 4 + 0], 1); ASSERT_NEAR( 25, im2[7 * 4 + 1], 1); ASSERT_NEAR(120, im2[7 * 4 + 2], 1); - - // Cannot test the inverse direction to see if same as original, because the color model here has values - // outside of sRGB so several values were clipped. - } - - { - std::vector im2(w * h * 4, 255); - // convert between the two in one and then the other direction - assertNoError(convertRGBModel(im2.data(), im.data(), w, h, &state_near_srgb, &state_sub, 3)); - std::vector im3(w * h * 4, 255); - assertNoError(convertRGBModel(im3.data(), im2.data(), w, h, &state_sub, &state_near_srgb, 3)); - // im3 should be same as im (allow some numerical errors), because we converted from a subset of sRGB to sRGB - // and then back. - // If state_super was used here instead (with a superset RGB color model), the test below would faill due to - // the clipping of the values in the 8-bit chars (due to the superset being out of range for sRGB) - for(size_t i = 0; i < im.size(); i++) { - // due to the gamma (trc), small values are very imprecise (due to the 8-bit char step in between), so allow more distance there - int tolerance = im[i] < 32 ? 16 : 1; - ASSERT_NEAR(im[i], im3[i], tolerance); - } - } - - { - std::vector im2(w * h * 4, 255); - assertNoError(convertFromSrgb(im2.data(), im.data(), w, h, &state_super)); - std::vector im3(w * h * 4, 255); - assertNoError(convertToSrgb(im3.data(), im2.data(), w, h, &state_super)); - for(size_t i = 0; i < im.size(); i++) { - int tolerance = im[i] < 32 ? 16 : 1; - ASSERT_NEAR(im[i], im3[i], tolerance); - } - } -} - - -void testICCGray() { - std::cout << "testICCGray" << std::endl; - // Grayscale, Gamma 2.2, sRGB whitepoint - std::string icc22_base64 = - "AAABSHRlc3QCQAAAbW50ckdSQVlYWVogB+MAAQABAAAAAAAAYWNzcFNHSSAAAAABAAAAAAAAAAAA" - "AAAAAAAAAAAAAAMAAPbWAAEAAAAA0y10ZXN0AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAAAAAAAAAAAAAAAEY3BydAAAALQAAAANZGVzYwAAAMQAAABfd3RwdAAAASQAAAAUa1RS" - "QwAAATgAAAAOdGV4dAAAAABDQzAgAAAAAGRlc2MAAAAAAAAABXRlc3QAZW5VUwAAAAAAAAAAAAAA" - "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAFhZWiAAAAAAAADzUQABAAAAARbMY3VydgAAAAAAAAABAjMAAA=="; - std::vector icc22; - fromBase64(icc22, icc22_base64); - lodepng::State state22; - state22.info_raw.colortype = LCT_GREY; - lodepng_set_icc(&state22.info_png, "gray22", icc22.data(), icc22.size()); - - // Grayscale, Gamma 2.9, custom whitepoint - std::string icc29_base64 = - "AAABSHRlc3QCQAAAbW50ckdSQVlYWVogB+MAAQABAAAAAAAAYWNzcFNHSSAAAAABAAAAAAAAAAAA" - "AAAAAAAAAAAAAAMAAPbWAAEAAAAA0y10ZXN0AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAAAAAAAAAAAAAAAEY3BydAAAALQAAAANZGVzYwAAAMQAAABfd3RwdAAAASQAAAAUa1RS" - "QwAAATgAAAAOdGV4dAAAAABDQzAgAAAAAGRlc2MAAAAAAAAABXRlc3QAZW5VUwAAAAAAAAAAAAAA" - "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAFhZWiAAAAAAAAE7uwABAAAAARmZY3VydgAAAAAAAAABAuYAAA=="; - std::vector icc29; - fromBase64(icc29, icc29_base64); - lodepng::State state29; - state29.info_raw.colortype = LCT_GREY; - lodepng_set_icc(&state29.info_png, "gray29", icc29.data(), icc29.size()); - - // Grayscale, Gamma 1.5, custom whitepoint - std::string icc15_base64 = - "AAABSHRlc3QCQAAAbW50ckdSQVlYWVogB+MAAQABAAAAAAAAYWNzcFNHSSAAAAABAAAAAAAAAAAA" - "AAAAAAAAAAAAAAMAAPbWAAEAAAAA0y10ZXN0AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAAAAAAAAAAAAAAAEY3BydAAAALQAAAANZGVzYwAAAMQAAABfd3RwdAAAASQAAAAUa1RS" - "QwAAATgAAAAOdGV4dAAAAABDQzAgAAAAAGRlc2MAAAAAAAAABXRlc3QAZW5VUwAAAAAAAAAAAAAA" - "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA" - "AAAAAAAAAFhZWiAAAAAAAAE7uwABAAAAARmZY3VydgAAAAAAAAABAYAAAA=="; - std::vector icc15; - fromBase64(icc15, icc15_base64); - lodepng::State state15; - state15.info_raw.colortype = LCT_GREY; - lodepng_set_icc(&state15.info_png, "gray15", icc15.data(), icc15.size()); - - - // make 8-pixel grayscale image with different shades of gray - unsigned w = 4, h = 2; - std::vector im(w * h, 255); - im[0] = 0; - im[1] = 40; - im[2] = 80; - im[3] = 120; - im[4] = 160; - im[5] = 200; - im[6] = 240; - im[7] = 255; - - { - std::vector im2(w * h, 255); - assertNoError(convertToSrgb(im2.data(), im.data(), w, h, &state29)); - - ASSERT_NEAR(0, im2[0], 1); - ASSERT_NEAR(15, im2[1], 1); - ASSERT_NEAR(52, im2[2], 1); - ASSERT_NEAR(94, im2[3], 1); - ASSERT_NEAR(139, im2[4], 1); - ASSERT_NEAR(187, im2[5], 1); - ASSERT_NEAR(236, im2[6], 1); - ASSERT_NEAR(255, im2[7], 1); - - std::vector im3(w * h, 255); - assertNoError(convertFromSrgb(im3.data(), im2.data(), w, h, &state29)); - - for(size_t i = 0; i < 8; i++) { - ASSERT_NEAR(im[i], im3[i], 1); - } - } - - { - std::vector im2(w * h , 255); - assertNoError(convertRGBModel(im2.data(), im.data(), w, h, &state22, &state15, 3)); - std::vector im3(w * h, 255); - assertNoError(convertRGBModel(im3.data(), im2.data(), w, h, &state15, &state22, 3)); - for(size_t i = 0; i < im.size(); i++) { - int tolerance = im[i] < 16 ? 8 : 1; - ASSERT_NEAR(im[i], im3[i], tolerance); - } - } -} - -// input is base64-encoded png image and base64-encoded RGBA pixels (8 bit per channel) -void testBase64Image(const std::string& png64, bool expect_error, unsigned expect_w, unsigned expect_h, const std::string& expect_md5) { - std::vector png, pixels; - fromBase64(png, png64); - - std::vector decoded; - unsigned w, h; - unsigned error = lodepng::decode(decoded, w, h, png); - if(expect_error) { - ASSERT_EQUALS(true, error != 0); - return; - } - assertNoError(error); - ASSERT_EQUALS(expect_w, w); - ASSERT_EQUALS(expect_h, h); - ASSERT_EQUALS(expect_md5, md5sum(decoded)); - - // test decoding without alpha channel - { - size_t numpixels = w * h; - std::vector expected_rgb(numpixels * 3); - for(size_t i = 0; i < numpixels; i++) { - expected_rgb[i * 3 + 0] = decoded[i * 4 + 0]; - expected_rgb[i * 3 + 1] = decoded[i * 4 + 1]; - expected_rgb[i * 3 + 2] = decoded[i * 4 + 2]; - } - std::vector rgb; - ASSERT_NO_PNG_ERROR(lodepng::decode(rgb, w, h, png, LCT_RGB)); - ASSERT_EQUALS(expect_w, w); - ASSERT_EQUALS(expect_h, h); - ASSERT_EQUALS(expected_rgb, rgb); - } - - // test decoding 16-bit RGBA - // TODO: get an additional md5sum for 16-bit pixels instead to compare with - { - size_t numpixels = w * h; - std::vector rgba16; - ASSERT_NO_PNG_ERROR(lodepng::decode(rgba16, w, h, png, LCT_RGBA, 16)); - ASSERT_EQUALS(expect_w, w); - ASSERT_EQUALS(expect_h, h); - std::vector rgba8(numpixels * 4); - for(size_t i = 0; i < numpixels; i++) { - rgba8[i * 4 + 0] = rgba16[i * 8 + 0]; - rgba8[i * 4 + 1] = rgba16[i * 8 + 2]; - rgba8[i * 4 + 2] = rgba16[i * 8 + 4]; - rgba8[i * 4 + 3] = rgba16[i * 8 + 6]; - } - ASSERT_EQUALS(decoded, rgba8); - } - - // test decoding 16-bit RGB - { - size_t numpixels = w * h; - std::vector expected_rgb(numpixels * 3); - for(size_t i = 0; i < numpixels; i++) { - expected_rgb[i * 3 + 0] = decoded[i * 4 + 0]; - expected_rgb[i * 3 + 1] = decoded[i * 4 + 1]; - expected_rgb[i * 3 + 2] = decoded[i * 4 + 2]; - } - std::vector rgb16; - ASSERT_NO_PNG_ERROR(lodepng::decode(rgb16, w, h, png, LCT_RGB, 16)); - ASSERT_EQUALS(expect_w, w); - ASSERT_EQUALS(expect_h, h); - std::vector rgb8(numpixels * 3); - for(size_t i = 0; i < numpixels; i++) { - rgb8[i * 3 + 0] = rgb16[i * 6 + 0]; - rgb8[i * 3 + 1] = rgb16[i * 6 + 2]; - rgb8[i * 3 + 2] = rgb16[i * 6 + 4]; - } - ASSERT_EQUALS(expected_rgb, rgb8); - } - - // test encode/decode - // TODO: also test state, for text chunks, ... - { - std::vector rgba16; - ASSERT_NO_PNG_ERROR(lodepng::decode(rgba16, w, h, png, LCT_RGBA, 16)); - - std::vector png_b; - ASSERT_NO_PNG_ERROR(lodepng::encode(png_b, rgba16, w, h, LCT_RGBA, 16)); - - std::vector rgba16_b; - ASSERT_NO_PNG_ERROR(lodepng::decode(rgba16_b, w, h, png_b, LCT_RGBA, 16)); - ASSERT_EQUALS(rgba16, rgba16_b); - } -} -// input is base64-encoded png image and base64-encoded RGBA pixels (8 bit per channel) -void testPngSuiteImage(const std::string& png64, const std::string& name, bool expect_error, unsigned expect_w, unsigned expect_h, const std::string& expect_md5) { - std::cout << "testPngSuiteImage: " << name << std::endl; - - testBase64Image(png64, expect_error, expect_w, expect_h, expect_md5); -} - - -// Tests base64-encoded PngSuite images' pixels against expected md5 sum of their pixels -void testPngSuite() { - std::cout << "testPngSuite" << std::endl; - /* - LICENSE of the PngSuite images: - - PngSuite - -------- - - Permission to use, copy, modify and distribute these images for any - purpose and without fee is hereby granted. - - - (c) Willem van Schaik, 1996, 2011 - */ - - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAQAAAAEsBnfPAAAABGdBTUEAAYagMeiWXwAAAJBJREFUeJwtjTEOwjAMRd/GgsQVGHoApC4Zergeg7En4AxWOQATY6WA2FgsZckQNXxLeLC/v99PcBaMGeesuXCj8tHe2Wlc5b9ZY9/ZKq9Mn9kn6kSeZIffW5w255m5G98IK01L1AFP5AFLAat6F67mlNKNMootY4N6cEUeFkhwLZqf9KEdL3pRqiHloYx//QCU41EdZhgi8gAAAABJRU5ErkJggg==", - "basi0g01.png", false, 32, 32, "4336909be7bff35103266c9b215ab516"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAgAAAAFrpg0fAAAABGdBTUEAAYagMeiWXwAAAFFJREFUeJxjUGLoYADhcoa7YJyTw3DsGJSUlgYxNm5EZ7OuZ13PEPUh6gMDkMHKAGRE4RZDSCBkEUpIUscQuuo/GMMZGAIMMEEEA6YKwaCSOQCcUoBNhbbZfQAAAABJRU5ErkJggg==", - "basi0g02.png", false, 32, 32, "b16bee35e71dce6c08c2447a62ccedea"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAAAAAHk5vi/AAAABGdBTUEAAYagMeiWXwAAAK5JREFUeJxljlERwjAQRBccFBwUHAQchDoodRDqINRBwEHBQcFBwEGRECRUA5lJmM7Nftzs7bub28OywrZFdUX7xLrBvkNzR/fGanc8I9YNsV6I9cViczilQWwuaRqbR1qJzSftoSiVro39q0PWHlkHZPXIOiJrQNZpvsMH+TJHcBaHcjq/Mf+DoihLpbSua2OsZSCtcwyk7XsG0g4DA2m9ZyDtODKQNgQG0k4TgR8ngeup000HFgAAAABJRU5ErkJggg==", - "basi0g04.png", false, 32, 32, "0b40ec7e4231183b51e1c23f818a955f"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAAAAAEhFhW+AAAABGdBTUEAAYagMeiWXwAAALVJREFUeJy1kF0KwjAQhJ26yBxCxHv4Q88lPoh4sKoXEQ8hS9ymviQPXSGllM7T5JvNMiwWJBFVFRVJmKpCSCKoKlYkoaqKiyTFj5mZmQgTCYmgSgDXbCwJ52zyGtyyCTk6ZVNXfaFxQKLFnnDsv6OI3/HwO4L7gr0H8F98sT+AuwetL9YMARw8WI7v8fTgO77HzoMtypJ66gBeQxtiV5Y0UwewGchF5r/Du5h2nYT577AupsAPm7n/RegfnygAAAAASUVORK5CYII=", - "basi0g08.png", false, 32, 32, "f6470f9f6296c5109e2bd730fe203773"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAFxhsn9AAAABGdBTUEAAYagMeiWXwAAAOJJREFUeJy1kTsOwjAQRMdJCqj4XYHD5DAcj1Okyg2okCyBRLOSC0BDERKCI7xJVmgaa/X8PFo7oESJEtkaTeLDjdjjgCMe7eTE96FGd3AL7HvZsdNEaJMVo0GNGm775bgwW6Afj/SAjAY+JsYNXIHtz2xYxTXiUoOek4AbFcCnDYEK4NMGsgXcMrGHJytkBX5HIP8FAhVANIMVIBVANMPfgUAFEM3wAVyG5cxcecY5/dup3LVFa1HXmA61LY59f6Ygp1Eg1gZGQaBRILYGdxoFYmtAGgXx9YmCfPD+RMHwuuAFVpjuiRT///4AAAAASUVORK5CYII=", - "basi0g16.png", false, 32, 32, "a14e204bbf905586d3763f3cc5dcb2f3"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAGLH901AAAABGdBTUEAAYagMeiWXwAAAPJJREFUeJzVk0GqBCEMRKvAe3gTPVnTczO9iddoaLVm0Qz0Z1r4WWQxoRZifFaIkZKA4xIlfdagpM8aAQCO4xKl88acN+b8w/R+Z3agf4va9bQP7tLTPgJeL/T+LUpj4aFtkRgLc22LxFhUxW2VGGP0p+C2bc8JqQDz/6KUjUCR5TyobASKZDkPZitQSpmWYM7ZBhgrmgGovgClZASm7eGCsSI7QCXjLE3jQwRjRXaAyTqtpsmbc4Zaqy/AlJINkBogP13f4ZcNKEVngybP+6/v/NMGVPRtEZvkeT+Cc4f8DRidW8TWmjwj1Fp/24AxRleDN99NCjEh/D0zAAAAAElFTkSuQmCC", - "basi2c08.png", false, 32, 32, "512c3874e30061e623739e2f9adc4eba"); - testPngSuiteImage("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", - "basi2c16.png", false, 32, 32, "a3774d09367dd147a3539d2d2f6ca133"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAQMAAAE+s9ghAAAABGdBTUEAAYagMeiWXwAAAAZQTFRF7v8iImb/bBrSJgAAAClJREFUeJxjYICCD1C4CgpD0bCxMcOZM9hJCININj8QQIgPQAAhKBADAAm6Qi12qcOeAAAAAElFTkSuQmCC", - "basi3p01.png", false, 32, 32, "1ba59f527ff2cfdc68bb0c3487862e91"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAgMAAAF5E6LxAAAABGdBTUEAAYagMeiWXwAAAANzQklUAQEBfC53ggAAAAxQTFRFAP8A/wAA//8AAAD/ZT8rugAAAFFJREFUeJxjeMewmwGEXRgEwdjMjCE5GUreuAFi9Pais78u+LqAgT+KP4oByPjKAGTw4xZDSCBkEUpIUvc/dBUYIxiYQqugLAQDKvEfwaCSOQC0Wn3pH3XhAwAAAABJRU5ErkJggg==", - "basi3p02.png", false, 32, 32, "0528e9ac365252a8c0e2d9ced8a2cc6b"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAAH2U1dRAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAC1QTFRFIgD/AP//iAD/Iv8AAJn//2YA3QD/d/8A/wAAAP+Z3f8A/wC7/7sAAET/AP9E0rBJvQAAALZJREFUeJxj6KljOP6QoU6W4eElhihLhsVTGCwdGKawMcQst5vIAMS+DEDMxADE2Qytp4pfQiSADBGILJBxAaIEyFCDqOsIPbOq3PjdTAYoLcgApV0YoPRdBhjNAKWVGKB0GgOU3o0wB9NATJMxrcC0C9NSTNsxnYFwT0do6Jkzq1aVlxsbv3s3cyamACpXUBBTAJXr4oIpgMq9exdTAI3LgCmAylVSwhRA5aalYQqgcnfvxhAAALN26mgMdNBfAAAAAElFTkSuQmCC", - "basi3p04.png", false, 32, 32, "a339593b0d82103e30ed7b00afd68816"); - testPngSuiteImage("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", - "basi3p08.png", false, 32, 32, "d36bdbefc126ef50bd57d51eb38f2ac4"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAQAAAGudILpAAAABGdBTUEAAYagMeiWXwAAAI1JREFUeJztj80KgzAMx3+BHvTWvUH7KPbB9yhzT7Dt5LUeHBWiEkFWhpgQGtL/RyIZOhLJ3Zli2UgOJAvzgECcs/ygoZsDyb7wA5Hoek2pMpAXeDw3VaVbMHTUADx/biG5Wbt+Lve2LD4W4FKoZnFYQQZovtmqd8+kNR2sMG8wBU6wwQlOuDb4hw2OCozsTz0JHVlVXQAAAABJRU5ErkJggg==", - "basi4a08.png", false, 32, 32, "e2212ec5fa026a41826136e983bf92b2"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAQAAAH+5F6qAAAABGdBTUEAAYagMeiWXwAACt5JREFUeJyNl39wVNd1xz9aPUlvd9Hq7a4QQjIST4jfhKAYHByEBhY10NRmCeMacAYT0ZpmpjQOjmIS9JzpOE/UNXZIXOKp8SDGQxOwYzeW49SuIy0OKzA2DlCCDQjQggSykLR6Vyvt6q10teofT0wybTyTP75zztw/7nzPued8z7nZAOZM+M3rYNdAljkTjBumPhCHJUssg5EWGIibOoy0Cuu7h7LtGvj2lqrnb96MCM0P2SENfj4PNh6AS/eBMm005D+xKaR1/Dcs442dyst/gM/2hzR1nmUElr5xQ1nfBw/Nf2NnZyfiygLICmkQESH/Fg9s8ULoNBxNwtEUXHjLMhRzJvTfhk+fCGnrfxDSru6HQ7st49FoRDx5KSJclgF3WqGjA5Z3WYaqW8bpGdDZCX2NkFX1HHQNVD2/sQ829sPK78B/TnXwq6mQpasQ0v4Iy4CI+CMU5Zbu/vAlXa3wwogHEv8BV5PQloTKt8/WKw+0Q9s2XT2+TVfXPgOdBfDr78O92Wfrv3QYoTzQDkt6oOUPunrqKV195xo8lHO2fumPEMX7QLm/C6QL1h6BE0JXf1RhGTOfRuTNBmUElLfnwLUgHDsHRtnZ+p+PYV/fDbV7oKwOlLfnQksFrDp0tn7eVxGeTjjzDDT9C9y/ELICKd29cI9mbuyDjX1Ocu7mYeyRmJ2lqxCzdffsfpgT//8IpqA9OInCP/GDMNFsGUpIg57fwc2XdPU3DbraewtGs8EzBiVDUGBDv8eJ4+MS+KgUMo9bxsKCmF36qWUrIQ0S7TDghe4P4co2Xf1Zq64mimD6NPA/B+fuOElI/8IyVo3E7PIfW3ZRPRQ0gRLSQLbDWD6kP4LkMzCwHS6X6upX39XV1wRcjVqGURuzS75p2b5ucDdCbh8oh0GxDBjtBDsCw+tgoANufg8iT8OOxyyjogIOvgzeOljUBNMWQMFhcL8PeRooEQFiLvS9Aze/DBe+BjmrLSPssli/FzFzOxz6V2jOwP7dUL0CZu+B6VMhuBWyNh6A7rDu7timq65yzayKwpIoVJ2AqigUb4fzK+Hcn+B8DcxLxuyyV2O2EhGQ1WYZs962qNyAmLULZo1D8T7whEHZCtp5KGuGsWZQvwVFTXD9EXivGbI0E3T18yEMiNmfDyVrltZ4M+w38+IwJQ7+OCT7ncROxEH+LYwEIRGEeBB6gtAVhFgh6GpsxDUrDC5TMzu26eotW1f7fqKrg/N11T6hq5lHdHUsX1eT39PVgeu62lOrqzdf19Wrhbo6u99hqFRuAPcCuFqumZcX+E3fszDttvOkmWOQ9oH1EnSXwrV2uHgPLGqM2eVxKFZBmRUG33mYEoVPFmrmBcVvFtVCZS3Ib0GyAz5rgSs/gzOtsOxWzK6cA8WrIXj3gsJTEIyC/wn4vVszT8/xm7PTMPoxDNTDJ3egpRdq18TsubehZC8E4uBTwVW5AeannHevroZwG3g2a2bkaV0d+rWuXi7V1SO9urq1CGpr4b7b8IVGp1P1uwxkFEajMPIYLH4YlkagZbVmnlvpN799AF5YF7Pn3YZALXhPQ14j5MRBUUEJHIPMi5DJh/EykI9C+Sqo2AFLl2nma68KoyoK+bsgtwKU98C1GVy/gCwTlGtvQlrAyEoYPAZ3quHi/bB/GXx8JmYfPIhx+DhG6D4ob4FAKUxpALUGcm3IXluurrm90K/ELvuVT0b9SlutX3llhV/ZdUrIvzopZO4SIY8/Zdf8/kM7MnpGyORXhBxeJ2QyKWQyI6TrejNc8jhN0tYGb1XD+raYvSgas93vx+ySUMyuWROz05cso6XFUaSLDY68xWzInnVOXXMjx69c8viVj572K9UrhLzXFnLBvULOfFxI+5aQiRIhZYeQN27YNV3ftyOZ+UKO+YQc7RRSud4MnZvgcg0sORGzZ0ehJAoFByA7Cu4mKFwJ5T8GayWcexzj4k2M1CswbINyvRmub3f6W0/B9DLwfx3cSXANQW47+G5D0VswYzUMe+HScoz2IEbahmzrirpmVlhIXQpZNl/IezYJWZwt5NQlQga3Cpn+GyGHPxIydUjI9KCQsk3IzItCDjTbNVafHcnSTBCG1ug/CoFjcNf+pT7AwGYH1pa/3Le2gGaKBkVXIREGK+w3r2/RzEIThhtg5AKkMzB+HiaOgGs35DSAehI8wqn+zIsOAdkI6XWQmgFDX4PB3RA/Av2N0Pcw9C+Avk3Qb0J/MwSOCmNW2DJ8Kii6CsNhSMRBJGHgQb952auZog6GLoF9HMZmwsRzkF0HeXXgXQWjdU73AIzOgZFVkGgC6wnoPQw9TdBzHD67BD2D0OOFopAw5iUtQ4uDLwxTUpMEUmFIdsGQCoN7YWAUepf4zfM+zRyYAUP/BemLMPFFUPrBcwwKypzWBUcDBtdCfyd0fxE6n3CWpM40dNZASUIYS+osI5ALBSnIj4M3DJ5fTRJIb4CRf4aUBslGSCwHayr0r4Dubr/ZdlIz586F4Qchsx3y/g605Y5ugBP5nXfhxiG43ARXmuDKSajQhVG9wjIKb4M/Cr7T4P038MTB/U+Q9w+TBMbCMNoP6elgN8LIkzD8ZUhUw8AA9GyDGx/4zbeqNbO3C8a6ID/iiBZAdwQuroQPHoHTM2DxPmGsb7OM4lcgEHDaaEoU3M+CmoK8fsgNQ87dGhgPw/hvQSZBPg9jUUhvBrsaUikYOgkD06H7FFxe7Tf3X9PM5GOOYgK0HHS2h7+uFMauU5ZRcg0CJyG/FjweUG9BXhRy9oLyXVDikB2G7CuTBNgAE5thIgUTjTDxJEy8A5kwZDKQ+SbInTD2AdjrYHAbdHT4zaXLNBPgtVeFsWOHZRS8AuoHkLMIlF+C6+/B5QLXi5AVhawCyLoFWXHI2gD8FBRhQGYzZDyQaYTxh2D8Asi5MNYJo6NgN0Eq5OwIPb+Fi5MRv/aqMAAe3gQ7HoNFXVC8ErR68ERA7YDcXMjxgdIE2Ysh+3VwrZ2cKQYoMRtkM4zthDEvjDaAfQBGciDZBokEDByGzwRc/Qqc3uSk+oV1gqqo8wQvrIN3jmMcvAbLX4bZd2D6CgjUgc8H3lJwF4G6E3KrIScIOUdBkZME0i2QPge2B1INMFwDiU6wfgm9vdBV7VT24mPC2FokWPxDmLfPmZIA8+oh/UMorIf/OYZxpBfmPgAzWqCoCPzfAV+ZMwg9Z0ANQt6bkFc7SWCkGVJVkPTA0B4QB6D/fbjTBp1dTjvVrhFUtEPFLijPg0CTM6LB8cs7YHwXuNuhaA10HMdoiUHZDJi2z5lIWjfkfwO8QfA0g9ueJJBshqFaSHjBaoD+a9BzjyMgyxKC0iEoTUDpEExPQCDhLBfKew4Brw8C+TAyFzLLICcfpvggmA+3fRhnfFBcB4WV4O8DXxDym8F7l0DiTRhMgeWB/gZHMhc1Coo+hWkhJ6KiNTA1BP4tMGUN5IWcQgLIa4Up74K/FUZbYSICSiu4Wx29CDRCbyvGxcNQuAf8QSh4E3wlk79FcVhrtLb4zUDK+RUFRz7H/pkzgLgH4u7/Y//c2aQd8ID/qGVodaIhW0hQq+zI9FNCFucLOe0hIaeWCjl1u5DBeUIGHhdSu09I7SkhfbVC5j8rpPfrQnr/XUj3NiGzZgg5ekDIsQeFHN8r5PgqISd+ICRfEtL1j0K6KoVUHhUyZ5qQeRuEzHML6T4h5MgX7EjPe/C/SQETOWwWx8sAAAAASUVORK5CYII=", - "basi4a16.png", false, 32, 32, "f1423ebc08979252299ca238656ab0ba"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAYAAAEEfUpiAAAABGdBTUEAAYagMeiWXwAAASBJREFUeJzFlUFOwzAQRZ+lQbi7smZBuAabhh6LTRLBwRLBRSpxCipl2EDVlJBB/EgeyYrifH8/jSfj5GSAR2AP7A0fOQ+74mM6MeKTieTk6nv9vz2aa4AKuJ8b1rVTz8uwZ56WBWPXLgqSk7cze5+YjMZ/Xw4YbSDoCAQvHJcFThMJ2kDQLX4n+S4DbL/GTfD8MRemIQobatGgDfIcGrzyoBlExxAbDLVooAGQnJz545nPPY2dRmCodUBdmmDQALBeLeVeJXgLelJo4GIhGOI5mqsGOoFYCEYvGrhokPwuA+SLsQne19Js5L9ZDbkbrABQdH/sUBXOgNoOVwAoG+Uz8M5tWQC1m8sA6m0gAxTPgB+qsgDqdSgDqNepDFA6A5+CSlP0aU5zQgAAAABJRU5ErkJggg==", - "basi6a08.png", false, 32, 32, "e80a60aecf13ebd863b61167ba95960b"); - testPngSuiteImage("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", - "basi6a16.png", false, 32, 32, "4d9d6473bb7403d7f85e3e7537c34e9d"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAQAAAABbAUdZAAAABGdBTUEAAYagMeiWXwAAAFtJREFUeJwtzLEJAzAMBdHr0gSySiALejRvkBU8gsGNCmFFB1Hx4IovqurSpIRszqklUwbnUzRXEuIRsiG/SyY9G0JzJSVei9qynm9qyjBpLp0pYW7pbzBl8L8fEIdJL9AvFMkAAAAASUVORK5CYII=", - "basn0g01.png", false, 32, 32, "4336909be7bff35103266c9b215ab516"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAgAAAAAcoT2JAAAABGdBTUEAAYagMeiWXwAAAB9JREFUeJxjYAhd9R+M8TCIUMIAU4aPATMJH2OQuQcAvUl/gYsJiakAAAAASUVORK5CYII=", - "basn0g02.png", false, 32, 32, "b16bee35e71dce6c08c2447a62ccedea"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAAAAACT4cgpAAAABGdBTUEAAYagMeiWXwAAAEhJREFUeJxjYGAQFFRSMjZ2cQkNTUsrL2cgQwCV29FBjgAqd+ZMcgRQuatWkSOAyt29mxwBVO6ZM+QIoHLv3iVHAJX77h0ZAgAfFO4B6v9B+gAAAABJRU5ErkJggg==", - "basn0g04.png", false, 32, 32, "0b40ec7e4231183b51e1c23f818a955f"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAAAAABWESUoAAAABGdBTUEAAYagMeiWXwAAAEFJREFUeJxjZGAkABQIyLMMBQWMDwgp+PcfP2B5MBwUMMoRkGdkonlcDAYFjI/wyv7/z/iH5nExGBQwyuCVZWQEAFDl/nE14thZAAAAAElFTkSuQmCC", - "basn0g08.png", false, 32, 32, "f6470f9f6296c5109e2bd730fe203773"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAYagMeiWXwAAAF5JREFUeJzV0jEKwDAMQ1E5W+9/xtygk8AoezLVKgSj2Y8/OICnuFcTE2OgOoJgHQiZAN2C9kDKBOgW3AZCJkC3oD2QMgG6BbeBkAnQLWgPpExgP28H7E/0GTjPfwAW2EvYX64rn9cAAAAASUVORK5CYII=", - "basn0g16.png", false, 32, 32, "a14e204bbf905586d3763f3cc5dcb2f3"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAAYagMeiWXwAAAEhJREFUeJzt1cEJADAMAkCF7JH9t3ITO0Qr9KH4zuErtA0EO4AKFPgcoO3kfUx4QIECD0qHH8KEBxQo8KB0OCOpQIG7cHejwAGCsfleD0DPSwAAAABJRU5ErkJggg==", - "basn2c08.png", false, 32, 32, "512c3874e30061e623739e2f9adc4eba"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAIAAACsiDHgAAAABGdBTUEAAYagMeiWXwAAAOVJREFUeJzVlsEKgzAQRKfgQX/Lfrf9rfaWHgYDkoYmZpPMehiGReQ91qCPEEIAPi/gmu9kcnN+GD0nM1/O4vNad7cC6850KHCiM5fz7fJwXdEBYPOygV/o7PICeXSmsMA/dKbkGShD51xsAzXo7DIC9ehMAYG76MypZ6ANnfNJG7BAZx8uYIfOHChgjR4F+MfuDx0AtmfnDfREZ+8m0B+9m8Ao9Chg9x0Yi877jTYwA529WWAeerPAbPQoUH8GNNA5r9yAEjp7sYAeerGAKnoUyJ8BbXTOMxvwgM6eCPhBTwS8oTO/5kL+Xge7xOwAAAAASUVORK5CYII=", - "basn2c16.png", false, 32, 32, "a3774d09367dd147a3539d2d2f6ca133"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAQMAAABJtOi3AAAABGdBTUEAAYagMeiWXwAAAAZQTFRF7v8iImb/bBrSJgAAABVJREFUeJxj4AcCBjTiAxCgEwOkDgC7Hz/Bk4JmWQAAAABJRU5ErkJggg==", - "basn3p01.png", false, 32, 32, "1ba59f527ff2cfdc68bb0c3487862e91"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAgMAAAAOFJJnAAAABGdBTUEAAYagMeiWXwAAAANzQklUAQEBfC53ggAAAAxQTFRFAP8A/wAA//8AAAD/ZT8rugAAACJJREFUeJxj+B+6igGEGfAw8MnBGKugLHwMqNL/+BiDzD0AvUl/geqJjhsAAAAASUVORK5CYII=", - "basn3p02.png", false, 32, 32, "0528e9ac365252a8c0e2d9ced8a2cc6b"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAC1QTFRFIgD/AP//iAD/Iv8AAJn//2YA3QD/d/8A/wAAAP+Z3f8A/wC7/7sAAET/AP9E0rBJvQAAAEdJREFUeJxj6OgIDT1zZtWq8nJj43fvZs5kIEMAlSsoSI4AKtfFhRwBVO7du+QIoHEZyBFA5SopkSOAyk1LI0cAlbt7NxkCAODE6tEPggV9AAAAAElFTkSuQmCC", - "basn3p04.png", false, 32, 32, "a339593b0d82103e30ed7b00afd68816"); - testPngSuiteImage("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", - "basn3p08.png", false, 32, 32, "d36bdbefc126ef50bd57d51eb38f2ac4"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAQAAADZc7J/AAAABGdBTUEAAYagMeiWXwAAADVJREFUeJxj/M/AwAGFnGg0MSKcLN8ZKAMsP4a+AaNhMBoGVDFgNBBHw4AqBowG4mgYUMMAAN8qIH3E64XIAAAAAElFTkSuQmCC", - "basn4a08.png", false, 32, 32, "e2212ec5fa026a41826136e983bf92b2"); - testPngSuiteImage("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", - "basn4a16.png", false, 32, 32, "f1423ebc08979252299ca238656ab0ba"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAYAAABzenr0AAAABGdBTUEAAYagMeiWXwAAAG9JREFUeJzt1jEKgDAMRuEnZGhPofc/VQSPIcTdxUV4HVLoUCj8H00o2YoBMF57fpz/ujODHXUFRwPKBqj5DVigB041HiJ9gFyCVOMbsEIPXNwuAHkgiJL/4qABNqB7QAeUPBAE2QAZUDZAfwEb8ABSIBqcFg+4TAAAAABJRU5ErkJggg==", - "basn6a08.png", false, 32, 32, "e80a60aecf13ebd863b61167ba95960b"); - testPngSuiteImage("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", - "basn6a16.png", false, 32, 32, "4d9d6473bb7403d7f85e3e7537c34e9d"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAQAAAGudILpAAAABGdBTUEAAYagMeiWXwAAAI1JREFUeJztj80KgzAMx3+BHvTWvUH7KPbB9yhzT7Dt5LUeHBWiEkFWhpgQGtL/RyIZOhLJ3Zli2UgOJAvzgECcs/ygoZsDyb7wA5Hoek2pMpAXeDw3VaVbMHTUADx/biG5Wbt+Lve2LD4W4FKoZnFYQQZovtmqd8+kNR2sMG8wBU6wwQlOuDb4hw2OCozsTz0JHVlVXQAAAABJRU5ErkJggg==", - "bgai4a08.png", false, 32, 32, "e2212ec5fa026a41826136e983bf92b2"); - testPngSuiteImage("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", - "bgai4a16.png", false, 32, 32, "f1423ebc08979252299ca238656ab0ba"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAYAAABzenr0AAAABGdBTUEAAYagMeiWXwAAAG9JREFUeJzt1jEKgDAMRuEnZGhPofc/VQSPIcTdxUV4HVLoUCj8H00o2YoBMF57fpz/ujODHXUFRwPKBqj5DVigB041HiJ9gFyCVOMbsEIPXNwuAHkgiJL/4qABNqB7QAeUPBAE2QAZUDZAfwEb8ABSIBqcFg+4TAAAAABJRU5ErkJggg==", - "bgan6a08.png", false, 32, 32, "e80a60aecf13ebd863b61167ba95960b"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAYAAAAj6qa3AAAABGdBTUEAAYagMeiWXwAADSJJREFUeJzdmV9sHNd1xn/zj7NLck0u5VqOSwSgrIcEkQDKtNvYxlKJAstNEIgWIFkuUtQyWsCQW8mKlAJecf1iLLUGWsmKDCgwUMByigC25UKh0SaIXNMpiSiJHZoERAN+kEQ0lR1LkLhLL8nd4fzrwzl3qVVVNI9BHhbfzp07d+537r3nfOeMlaZpCtB8FwCaE+3YmLh9+x/LfStNG/8hfzPfgN6x5iZ98P/B5ubfr98fWn/TD5rvZrbVRt01W/AsQGYuMwf5clqWxnRMMDH4N4LxccFI28O/F3T12tHnnW8JWj9U1PvsUjTv2aL41zr+TxT1fvT0Le97RPGQYPBrRb3fHFU013/ZIr4pc6FaguZIZhxuMkCqNhLq2VK2BL3ldFiJTynerxM7rBPSdm9SJ6SjuM8I2nrf1vvWvYpP6du0PTXj36P4RPv4kRm/T3FECU+1YzOr+KhgY8oQb5Szo7USNDdl5gCCCX8buGunJDmmU1GbCfXO4c5hyJfTfu31VTWArmD0r4rzOrFP1AC2oPNFNcBDSvwLOp8HFHUnpfp8ohj/VsdNdNw/FVz9MyX8J4rPKuHLSlOfX5k3xFcmOwvVEjTHMqMAzdHMGEDwqv9U2w5IdO1am11tJ9S7NnRtgN5yuqh3/0snWteJXtGJfqQTm1FD/LsaYlYNoe2WYqrtiV7HipHBh5W4XgerSvi6Eo6V5oLgcov48uWugVoJGlPZAqwZINjgXwZYnejY1maAeJ9ORU+52exmzYV695buLZAvpz/Vu6d1ohU1gK5EcF7Q03ZH0VaXy48Uv6Pj6P34Ax1Hr1cVAzV88w0lrO3LvxNcmjXEl2a6B6slWFno7ANoTmaGAYLf+PcDBL/2/xwg/IG3r90ApxR1U5pTbja7WXOhnjuSOwK95eTv1AA6wXDrLRP+J0FXr+29gtb7OpoeheRVHUfPcHj4lnH+Qonr9fK/CNY/N8TrR3PFWgmW7+76DKARZx2AYMovAATH/MMA4WbvAkD4Je/jNh8QbVfUI9ByP3rKzWY3ay7Ue3p6eiBfTvSsRpHgqtmqDUHPE3QcNYClBkh1dN3KYajEA8GGPr+8rDR1Fost4ouLPXdUS7Bc6SoCrOztPA3QzGXqNxsgHPHGAcJN3hxAeM7b3rYDIvUBJqAZv27cmznlZrObNRfq+Xw+D73l5EkdRb10U3FF0VW0dqoBduhoxqvr8w29XlJcVKyOGOLVar63VoJ6PZcDWKl0FgGab2T2AAT9/hWA1cmOYYBwzBsFiH7ufg0gmnDbfYBjApiJtMYg6teNezOn3Gx2s+ZCfd3b696GfDk6p4ReVAPoynlK0Nb7iXr18DUl/leC9ecEa9rvRov4jR3rxqslWDzRcxBgebmrC6BZyRQBgkW/B2B1taMDIAw8HyCaczcBRE+7rwDEE067AWxdCyNhTCQ3Ac34dePezOk0m92suVBfv339dugth3NqAPXStf/Ut9zicZpNJa5xfuFTwavvGOJXz61/pFaC2kjvOMBStTsP0GhkswDBUf8IwOpDHecBoofdXwBEl9x7AaJT7j6AuMf5HCD5Z/tv23yArafYaDcjYUwkNwHN+HXj3swpN5vdrLlQ7z/Ufwjy5aYepKoqPrdXzVUTNF78+lnBKy8Z4leO93+3WoKFT/vuAag/l3sRoDGTHQQIAt8HCCteESB8wXseIJp3BwDi3wqD5An7dYD4J8IwmbBv2QH7BY1oNdrNSBgTyU1AM37duDdzys1mN2su1De+vPFl6C0vTkvrfz+m5lLC1+4QvHjAEL+4f+PJWgmun71zJ0C9L7cA0Phl9kGA4Fn/BEAYygyiilsEiD9wHgCIv+x8DJCctx8ESMbsUYB0s3UBIHnZ3t9mAEvPvFHrLdGq2s1IGBPJTUAzft24N3PKzWY3ay7Uh4aGhiBfvnxJ71YFpz80xKenh+6rluDagbtOAiwVuicBmlszkwDha/KGqOrmAeJYZpB83z4IkKyzbwAkX7V/BZBOWcMA6SVhlG6y5gDSCat9B/BNRY37Rq0b0Wq0m5EwJpKbgGb8unFv5pSbzW7WXKjvfnz349BbfnyPIX7mzd27aiWoVvN5gODH/k6AqCYjxIGTAUhG7HGA9Kz1GECaygzSilUE4Dsyw3TeGgBgigJA+qoyeksZ/pRvtvkAVNu18jM9Ai21brSWajcjYUwkNwHN+PVWvqin3Gx2s+Zr1GWE3bvOvAmQz0sP/0BwUgwoIzin4mcA7HJSArAeS88CWJY8bx1NjwAwyyCAVUnFIJMMA1hPpSK2dvEWAP/AP94+GzSJqckFTJqiO8CIVqPdjIQxkdwENOPXjXszp1w2+5k3YfeuWmn3Lvl/5q0zb+1+HGDovulpgLveu7YNoHtwaQYgM9ncCuA9KW9wq1EewHFkBnYlKQLYM8kWAHs+GQCwptICgDWWjgJYYeoBWBNp+xFIjDTRjLyVmJr8zKQrqtZbotVoNyNhTCTXgGb8uri36WkYuq9aqlYhn5dftQpD98m96Q+nPxwaAth48uJ+gDt3ygi5BRkxW2/kAPwTkgl6nszArURFAOcBmaEzHw8A2JNJAcB+XVJs64fC0H4lebrdAForMaUIk5G3ElM1gElTWmrdiFbdAUbCmEguAe3ifth4sla6dgDuOgnBj8HfCf4BCE7CXe/BtW2w8aT0vXjg4oGNLwM05zMDAH33yIi5F+UN2cHGDIDvywy8Y+H3ALznwxcA3MvRBgAnit2bDeBsji8A2Elit9cDDiphU4MxuYBR+SYxvSU/M2rdiFaj3UTCXDkO/d+tlq6fhTt3wlIBuifFM7i98otq0D0ISzPS5/pZCZ6ZAbjy0pWX+g8BhI945wCCEX8coHt2aRAgm5UZ+JWgCNAxu7oFwJ2PBgBcWxi4+6JTAM6meA7APpEcbM8G1Qe0ik+mBmNKEUYJ3pKfmTTFqHURrVfPwfpHaqWFT6HvHjkQuQVoboXMJMQBOBmJFfEz0tbcKn3qffLMwqdS+vLOwdV3rr6zfjtANO7uAAjf874Oa5I3c7R5BMDvkRl2fLT6FQDvE2HgjkUlAPcVYehMxO0+IPq2oskF9Ay3ajAmvzMZuRrC5GeSptzYAevGq6XaCPSOy4HIvQiNX0L2QXGR3pOQjIA9DnYZkpK0ha9Btg6NnDxTfw6CEfDHIRoHdwfcGLkxsu5tgKTXrgJEkevCTUpwj/cGgH8l6AfoeF8YeOMi1t2vRT8HcP8t+nabAUI9u61yo5G2WnwyNZhWKUIzcklMq1XI99ZKiyeg5yAsVaE7D40ZyA5K6co/AVEV3DykZ8F6TH7pWXCrEOWlT/CsPNOYge5ZWBqE8D3wvg5JL9hVqNaqNdELSWLbsKYEo9PuXoCo7uYAokl3+GYDeL8LvwDgHQqPt/mA8EuKps5qyo1adTPFJ1ODkVLE4iL03FEt1euQy8mB6OoSz5DNiov0fYkVnidB03Ek9luW/NJU2uJY+oShPBMEMkajISlXR4fknq4rSbhtw+Lni5/39AAkFbsIkHxm3w0QO04MEE25BQD/cHAMIDruHoLbpMPhbiVsCsymzqrpr9H2EtfrRyFXrJWWK9BVlH3RWYRmBTJFCI6Cf0RihleUKoJbhOT7YB+EtAJWEayjkB4BuwJJEdwKREXwjkH4PfArEBQhcxSatxuvAnYR6pV6JXcEIB0UzZr02QsA8ZRTAIjLTgnA3xxcAIj3OT9oM8CqOsFWZV3jvKmzSrlxaQa6B6ul5buh6zNY2Qudp8UzZPaIi/R7YPUh6DgP4QvgPS/qwXkAknVg30D05I+AWWBQMo1ki/SJP5BnwhegYxZWt8iYwSKEe8B7A6LT4O6F5DOw74Z0UMT60uzSbPcWgHTAugyQTNrDAMnP7EcBkk32HNymHhBoXG99UtDKuhSYly9D10CttLIAnX1yILIONHOQqUPQD/6Vm7bqw+D+QupJ7gDEXwbnYymx2r8SfWkNgFWBtAj2PCQD4MxDPADuZYg2gDsP0QB0fASrX5F3BP0Q1cHNQeyAE0PSB/YCpANgXYbl+eX5rg0A6ZRVaDOAZoXJMftwmw8ItOhpvqXIJ4WVSegsVEuNKcgWoDkJmWE5IH5hDVcnoWMYwgA8H6JL4N4rMsr5IiTnwX5QBLY1DEwBBWASGAZrCtKCJOFJAZwIYlfKMVEC3icSkDvel7gUTYI7LGrFLUA8BU4Bkkmwh/U9BViZWpnqlGxwzJJ0WLPB/1UPMAUN+YjUKEN2tFZqjkFmVMySGYXgN+DfD8Ex8A9LrPDGIRwDbxSiOXA3QXQK3H2iJ+3X5WuDPQrpJUm001cl37Se0v9jkI5q3yfW0N2nY41BVNJ3jayhf1jmEpfBKUHyM7AfXcN0DKxRaIw1xrIlgPSCJP7puDUCVppmtinxCfNxNHNBPiZm5/5vbG7+/fr9ofVvbgb5NJbZ1ny3NmqZZLb5LmS2iRluxsYEZG/T/kdx/xvwP2XY7MOt27XzAAAAAElFTkSuQmCC", - "bgan6a16.png", false, 32, 32, "4d9d6473bb7403d7f85e3e7537c34e9d"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAQAAADZc7J/AAAABGdBTUEAAYagMeiWXwAAAAJiS0dEAACqjSMyAAAANUlEQVR4nGP8z8DAAYWcaDQxIpws3xkoAyw/hr4Bo2EwGgZUMWA0EEfDgCoGjAbiaBhQwwAA3yogfcTrhcgAAAAASUVORK5CYII=", - "bgbn4a08.png", false, 32, 32, "e2212ec5fa026a41826136e983bf92b2"); - testPngSuiteImage("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", - "bggn4a16.png", false, 32, 32, "f1423ebc08979252299ca238656ab0ba"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAYAAABzenr0AAAABGdBTUEAAYagMeiWXwAAAAZiS0dEAP8A/wD/oL2nkwAAAG9JREFUeJzt1jEKgDAMRuEnZGhPofc/VQSPIcTdxUV4HVLoUCj8H00o2YoBMF57fpz/ujODHXUFRwPKBqj5DVigB041HiJ9gFyCVOMbsEIPXNwuAHkgiJL/4qABNqB7QAeUPBAE2QAZUDZAfwEb8ABSIBqcFg+4TAAAAABJRU5ErkJggg==", - "bgwn6a08.png", false, 32, 32, "e80a60aecf13ebd863b61167ba95960b"); - testPngSuiteImage("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", - "bgyn6a16.png", false, 32, 32, "4d9d6473bb7403d7f85e3e7537c34e9d"); - testPngSuiteImage("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", - "ccwn2c08.png", false, 32, 32, "5189ed8d023b977fa90833e90e4a830a"); - testPngSuiteImage("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", - "ccwn3p08.png", false, 32, 32, "1a63f18f17006d850d1c041e49a7721f"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAgAAAAgCAIAAACgkq6HAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAlwSFlzAAAAAQAAAAQAMlIwkwAAASdJREFUeJxV0mFx7DAMBOCvmRAQBVMIhVAIhaNwFPogvFI4CA2FQGggVBDcH3acNpMZja1daVfWWwWClWRvZ3OPGwGSA6YOjw5QepxgcX+lg2ZYKc7BXNip1G9f1bP6X9WqvqtMregBTk691NTCcbUYCXX19d0qbuqyVvVTDZNwdjWFJS+/c/PEw/5QZNnTGa1HIsNHeAUlEc0gztheyguRLlWN8XRs2Vv0Hm12xRGt5j2rS/qY753w6+oPI+OefuPNA/KyHuISZZYCJf+VyKVrlINR8nyw3I95MRy2XeCMwSiwK0FGSwxGODk4yyV8lgpP0o612UlTU3EtjXL5nNozrQTLr8RbxZMix9Z9cDQfxz1B2kK0WY0dabc5EtlRf0B1/Ku63McfFzN1pnMg8LcAAAAASUVORK5CYII=", - "cdfn2c08.png", false, 8, 32, "dbfdad37268883ddeeecc745da77130c"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAICAIAAAAX52r4AAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAlwSFlzAAAABAAAAAEAH+hVZQAAAOtJREFUeJx9kmuxwyAUhL/M1MBawEIsxEIsxEIs3FiohVjAAhaOhSMh9wePQtt0hwEG5rx2d7r4QADVxbg3eN3zxbr7iEc5BTOssJaHFtIHeleo9RDao8EBCawvIFgglN5dRIjwLLNsuHBh3RRy5AQgwSn8D2aYA+TlEEuZB+sr0EpeHJE/zl1PtshGrMPICAdz3GFNzIJoJANr8+foE6xRdAeBMJGQqhSGnE6kOzjAdPUULfjyRtECAQfXIEJmCYMY8D1T5HDU1JWi6WqdhkFkH63xZhCNIr8oPsAGkacvNu2d8YOH3ql+a9N/CM1cqmi++6QAAAAASUVORK5CYII=", - "cdhn2c08.png", false, 32, 8, "650268c7196860898cbe701005cf2407"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAgAAAAICAIAAABLbSncAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAlwSFlzAAAAAQAAAAEATyXE1gAAAHtJREFUeJxFzlENwkAURNFTgoFnYS3UQisBC1gACSCBSsDCVgIroSuhlbB8NIX5mUwyubldQzCQ2KjMcBZ8zKFiP0zcaRd53Stb3n2LNWvJSVIwX/PoNvbbNlQkJ0dqRI0Qxz5Qg+VlffxQXQuyEsphFxNP3V93hxQKfAEqsC/QF17WrgAAAABJRU5ErkJggg==", - "cdsn2c08.png", false, 8, 8, "9e580d6237f77bfa8e49cfef19236bcb"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAlwSFlzAAAD6AAAA+gBtXtSawAAAmdJREFUeJyVluGR3CAMhb/bcQNqgRZowVeCr4RLCZsSsiXcteASQglxC7RACckPEEbYeDeandkZDHpP0hPi7S/PzIPoL1uCCBHS08O8DQEczI3TkW0Q/hdAYAb3nF2xBAHiiwAOlpddtzYIxQLM8Hl+PPNLh3L0GI8LAAdfMJvPNfqunA48+M5Zgo8+jqn8S+8aWGE7ZaoiCrB0xfKQzLFb+beCSfA99v5km3U1FfpWM48+mR6cJj93wVbTtsLvYxyaqFvBbMxKzsGnyjYTE/DwWdWWYO2K5PcgpuKkibopkoM/ZXVTWNESAyzwUU8ZebuSu6lLTuNdSjojPApDqUw93NF2D8DWJX8E0CTHg5DgJ6zMSroIdwXJTeNrPWIrXHU7tRW3endQzt7hXjwncIn5HWLUxlO2sesMgWQBkvkoGUBKLN/6PQKeOda8qIv+bhVI3AZdr6spB9L1cnTG5Rhgb7SRSa2usRcGQdl0G+zVVcnk25tEyPmhVtIGYm3SQjX7y5kEgoeVFaToKBdZr4drgFQBGm670nMFPXhCZAOPCBKr9yL7A1wPYMXV3CJb+fALZlJoejAnzNdtZc0AaENN3ajzppnXwjO7q8LfCYUK4LsU7QAN10xk2a/SBD9gAbF+K/fQhmRsBICOKo0j3/nucF3vnXEyxcNeyak4sRj3/bKqfM5fDXIcapi9OjJDv2sBacfKmTndZswOh2boC3z10dZB0PKvE+FEl+/9CLXPFn9KaT+ert9jAdZ+7fDwkiuMKwvnr4TB23Q+inJs0cjmNQD2iXkVTS7R5fNmDFCtNsDx+f6C/QMQQNfOLmy7EgAAAABJRU5ErkJggg==", - "cdun2c08.png", false, 32, 32, "fbe519db5608cf411e933ccbd1f92f87"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAC1QTFRFIgD/AP//iAD/Iv8AAJn//2YA3QD/d/8A/wAAAP+Z3f8A/wC7/7sAAET/AP9E0rBJvQAAAB5oSVNUAEAAcAAwAGAAYAAgACAAUAAQAIAAQAAQADAAUABwSJlZQQAAAEdJREFUeJxj6OgIDT1zZtWq8nJj43fvZs5kIEMAlSsoSI4AKtfFhRwBVO7du+QIoHEZyBFA5SopkSOAyk1LI0cAlbt7NxkCAODE6tEPggV9AAAAAElFTkSuQmCC", - "ch1n3p04.png", false, 32, 32, "a339593b0d82103e30ed7b00afd68816"); - testPngSuiteImage("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", - "ch2n3p08.png", false, 32, 32, "d36bdbefc126ef50bd57d51eb38f2ac4"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAAAAACT4cgpAAAABGdBTUEAAYagMeiWXwAAAAd0SU1FB9ABAQwiON2c/4AAAADISURBVHicXdHBDcIwDAVQHypACPAIHaEjsAojVOLIBTEBGzACbFBGYAPYoEY9lQKfxElR4hwq58V17ZRgFiVxa4ENSJ7xmoip8bSAbQL3f80I/LXg358J0Y09LBS4ZuxPSwrnB6DQdI7AKMjvBeSS1x6m7UYLO+hQuoCvvnt4cOddAzmHLwdwjyokKOwq6Xns1YOg1/4e2unn6ED3Q7wgEglj1HEWnotO21UjhCkxMbcujYEVchDk8GYDF+QwsIHkZ2gopYF0/QAe2cJF+P+JawAAAABJRU5ErkJggg==", - "cm0n0g04.png", false, 32, 32, "cf2f1ab4f34d0c70f15f636ef584d53a"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAAAAACT4cgpAAAABGdBTUEAAYagMeiWXwAAAAd0SU1FB7IBAQAAAB4KVgsAAADISURBVHicXdHBDcIwDAVQHypACPAIHaEjsAojVOLIBTEBGzACbFBGYAPYoEY9lQKfxElR4hwq58V17ZRgFiVxa4ENSJ7xmoip8bSAbQL3f80I/LXg358J0Y09LBS4ZuxPSwrnB6DQdI7AKMjvBeSS1x6m7UYLO+hQuoCvvnt4cOddAzmHLwdwjyokKOwq6Xns1YOg1/4e2unn6ED3Q7wgEglj1HEWnotO21UjhCkxMbcujYEVchDk8GYDF+QwsIHkZ2gopYF0/QAe2cJF+P+JawAAAABJRU5ErkJggg==", - "cm7n0g04.png", false, 32, 32, "cf2f1ab4f34d0c70f15f636ef584d53a"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAAAAACT4cgpAAAABGdBTUEAAYagMeiWXwAAAAd0SU1FB88MHxc7O3UwH+AAAADISURBVHicXdHBDcIwDAVQHypACPAIHaEjsAojVOLIBTEBGzACbFBGYAPYoEY9lQKfxElR4hwq58V17ZRgFiVxa4ENSJ7xmoip8bSAbQL3f80I/LXg358J0Y09LBS4ZuxPSwrnB6DQdI7AKMjvBeSS1x6m7UYLO+hQuoCvvnt4cOddAzmHLwdwjyokKOwq6Xns1YOg1/4e2unn6ED3Q7wgEglj1HEWnotO21UjhCkxMbcujYEVchDk8GYDF+QwsIHkZ2gopYF0/QAe2cJF+P+JawAAAABJRU5ErkJggg==", - "cm9n0g04.png", false, 32, 32, "cf2f1ab4f34d0c70f15f636ef584d53a"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAIAAACsiDHgAAAABGdBTUEAAYagMeiWXwAAAANzQklUDQ0N0DeNwQAAAH5JREFUeJztl8ENxEAIAwcJ6cpI+q8qKeNepAgelq2dCjz4AdQM1jRcf3WIDQ13qUNsiBBQZ1gR0cARUFIz3pug3586wo5+rOcfIaBOsCSggSOgpcB8D4D3R9DgfUyECIhDbAhp4AjoKPD+CBq8P4IG72MiQkCdYUVEA0dAyQcwUyZpXH92ZwAAAABJRU5ErkJggg==", - "cs3n2c16.png", false, 32, 32, "023541189afc3aa4ae617158b59fe635"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAMAAABEpIrGAAAABGdBTUEAAYagMeiWXwAAAANzQklUAwMDo5KgQgAAAFRQTFRFkv8AAP+SAP//AP8AANv/AP9t/7YAAG3/tv8A/5IA2/8AAEn//yQA/wAAJP8ASf8AAP/bAP9JAP+2//8AAP8kALb//9sAAJL//20AACT//0kAbf8A33ArFwAAAEtJREFUeJyFyscBggAAALGzYldUsO2/pyMk73SGGE7QF3pDe2gLzdADHA7QDqIfdIUu0AocntAIbaAFdIdu0BIc1tAEvaABOkIf+AMiQDPhd/SuJgAAAABJRU5ErkJggg==", - "cs3n3p08.png", false, 32, 32, "6b15613bf70a37c37de24edfb8f6d1df"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAAYagMeiWXwAAAANzQklUBQUFGCbeQwAAAGJJREFUeJztlbERgEAMw5Q7L0EH+w/Fd4zxbEAqUUUDROfCcW1cwmELLltw2gI9wQgaastFyOPeJ7ctWLZATzCCjsLuAfIgBPlXBHkQ/kgwgm8KeRCCPAhB/hVh2QI9wQgaXuXOFG8QELloAAAAAElFTkSuQmCC", - "cs5n2c08.png", false, 32, 32, "3211fb3ede03caf163fe33b4cf6d78f6"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAMAAABEpIrGAAAABGdBTUEAAYagMeiWXwAAAANzQklUBQUFGCbeQwAAAGBQTFRF/xkAQv8Axf8AAP97AP+9AP//AP8AAMX/AKX//94Apf8AAGP//5wAACH//1oAAP86/zoAY/8A5v8A/wAAAP9aIf8AAP+cAP/eAOb///8AAIT//70AAEL//3sAhP8AAP8ZRy+F9QAAAEtJREFUeJyFwQUBwAAAgDDu7u79Wz4CG5NA9YJW8AhqwSUoBIdgFISCUvAKBkEgWASp4BN0glkQCVZBLNgEiWAXZIJccAoqwS1oxA/GcT4B7dbxuwAAAABJRU5ErkJggg==", - "cs5n3p08.png", false, 32, 32, "3211fb3ede03caf163fe33b4cf6d78f6"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAAYagMeiWXwAAAExJREFUeJzt1UENADAMQlGa4GPzr2pT0olo/mkgoO9EqRYba9HADhBgmGq4CL7sffkECDBNie6B4EGw4F8R4AOgBA+CBQ+CdQIEGOYB69wUb0ah5KoAAAAASUVORK5CYII=", - "cs8n2c08.png", false, 32, 32, "023541189afc3aa4ae617158b59fe635"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAMAAABEpIrGAAAABGdBTUEAAYagMeiWXwAAAGBQTFRFIP8A/x8AAP8fAP/foP8AAP8/AP//AP8AgP8AAP9fAP9/YP8A/wAA4P8AAP+fAOD/QP8A//8AAMD//98AAKD//78AAID/wP8AAP+//58AAGD//38AAED//18AACD//z8As4GzYwAAAEtJREFUeJyFwQUBwAAAgDDu7u79Wz4CG7UgEHyCR3AJDsEimASDoBFsgliQCypBL1CZIBQkgkJQClrBLogEqaATjIJZsApOwS14xQ8p4j4B+PNT2QAAAABJRU5ErkJggg==", - "cs8n3p08.png", false, 32, 32, "023541189afc3aa4ae617158b59fe635"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAAAAACT4cgpAAAABGdBTUEAAYagMeiWXwAAAMhJREFUeJxd0cENwjAMBVAfKkAI8AgdoSOwCiNU4sgFMQEbMAJsUEZgA9igRj2VAp/ESVHiHCrnxXXtlGAWJXFrgQ1InvGaiKnxtIBtAvd/zQj8teDfnwnRjT0sFLhm7E9LCucHoNB0jsAoyO8F5JLXHqbtRgs76FC6gK++e3hw510DOYcvB3CPKiQo7CrpeezVg6DX/h7a6efoQPdDvCASCWPUcRaei07bVSOEKTExty6NgRVyEOTwZgMX5DCwgeRnaCilgXT9AB7ZwkX4/4lrAAAAAElFTkSuQmCC", - "ct0n0g04.png", false, 32, 32, "cf2f1ab4f34d0c70f15f636ef584d53a"); - testPngSuiteImage("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", - "ct1n0g04.png", false, 32, 32, "cf2f1ab4f34d0c70f15f636ef584d53a"); - testPngSuiteImage("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", - "cten0g04.png", false, 32, 32, "ac076245d12023e111ec36acb36dcff1"); - testPngSuiteImage("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", - "ctfn0g04.png", false, 32, 32, "0428cabaa4c89cb12cd5cf0f269a0ff1"); - testPngSuiteImage("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", - "ctgn0g04.png", false, 32, 32, "32546f7ef2cce19fcbaa6b8849592c38"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAAAAACT4cgpAAAABGdBTUEAAYagMeiWXwAAACZpVFh0VGl0bGUAAABoaQDgpLbgpYDgpLDgpY3gpLfgpJUAUG5nU3VpdGVT/Uu3AAAAPmlUWHRBdXRob3IAAABoaQDgpLLgpYfgpJbgpJUAV2lsbGVtIHZhbiBTY2hhaWsgKHdpbGxlbUBzY2hhaWsuY29tKc9NfecAAABoaVRYdENvcHlyaWdodAAAAGhpAOCkleClieCkquClgOCksOCkvuCkh+CknwDgpJXgpYngpKrgpYDgpLDgpL7gpIfgpJ8gV2lsbGVtIHZhbiBTY2hhaWssIDIwMTEg4KSV4KSo4KS+4KSh4KS+3xTVhQAAAmVpVFh0RGVzY3JpcHRpb24AAABoaQDgpLXgpL/gpLXgpLDgpKMA4KSV4KSw4KSo4KWHIOCkleClhyDgpLLgpL/gpI8gUE5HIOCkquCljeCksOCkvuCksOClguCkqiDgpJXgpYcg4KS14KS/4KSt4KS/4KSo4KWN4KSoIOCksOCkguCklyDgpKrgpY3gpLDgpJXgpL7gpLAg4KSq4KSw4KWA4KSV4KWN4KS34KSjIOCkrOCkqOCkvuCkr+CkviDgpJvgpLXgpL/gpK/gpYvgpIIg4KSV4KS+IOCkj+CklSDgpLjgpYfgpJ8g4KSV4KS+IOCkj+CklSDgpLjgpILgpJXgpLLgpKguIOCktuCkvuCkruCkv+CksiDgpJXgpL7gpLLgpYcg4KSU4KSwIOCkuOCkq+Clh+Ckpiwg4KSw4KSC4KSXLCDgpKrgpYjgpLLgpYfgpJ/gpYfgpKEg4KS54KWI4KSCLCDgpIXgpLLgpY3gpKvgpL4g4KSa4KWI4KSo4KSyIOCkleClhyDgpLjgpL7gpKUg4KSq4KS+4KSw4KSm4KSw4KWN4KS24KS/4KSk4KS+IOCkuOCljeCkteCksOClguCkquCli+CkgiDgpJXgpYcg4KS44KS+4KSlLiDgpLjgpK3gpYAg4KSs4KS/4KSfIOCkl+CkueCksOCkvuCkiCDgpJXgpLLgpY3gpKrgpKjgpL4g4KSV4KWHIOCkheCkqOClgeCkuOCkvuCksCDgpJXgpYAg4KSF4KSo4KWB4KSu4KSk4KS/IOCkpuClgCDgpK7gpYzgpJzgpYLgpKYg4KS54KWI4KSCLvrUkQYAAACRaVRYdFNvZnR3YXJlAAAAaGkA4KS44KWJ4KSr4KWN4KSf4KS14KWH4KSv4KSwAOCkj+CklSBOZVhUc3RhdGlvbiAicG5tdG9wbmcgJ+CkleCkviDgpIngpKrgpK/gpYvgpJcg4KSV4KSwIOCksOCkguCklyDgpKrgpLAg4KSs4KSo4KS+4KSv4KS+IOCkl+Ckr+Ckvi4VxVHXAAAAQmlUWHREaXNjbGFpbWVyAAAAaGkA4KSF4KS44KWN4KS14KWA4KSV4KSw4KSjAOCkq+CljeCksOClgOCkteClh+Ckr+CksC4tT0C7AAAAYElEQVQokWP4/19Q8P9/Y2MXl9DQtLTycgayBJSU/v+HcTs6yBMAARh35kzyBFxc/v8HO4kByGUgTyA09P9/sJMYVq0iTwDJSRBAhgCMCzLwzBnyBGDc3bsZGO7eJUsAAEBI89kMzfvBAAAAAElFTkSuQmCC", - "cthn0g04.png", false, 32, 32, "c570e7393458556ecef30b71824e0d6e"); - testPngSuiteImage("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", - "ctjn0g04.png", false, 32, 32, "81fd25285e6b46f3996cfd02b1f16071"); - testPngSuiteImage("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", - "ctzn0g04.png", false, 32, 32, "cf2f1ab4f34d0c70f15f636ef584d53a"); - testPngSuiteImage("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", - "exif2c08.png", false, 32, 32, "7acea6df2b0e2a7613981decc569b2fb"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAAAAABWESUoAAABBklEQVR4nIXSL0xCURTH8a/gGHNjBjc3AoFioFhIr7z0molmsxFpVCONSLPRbCYSiWKxWAwWN4ObG5ubcwzk6f3jds71hXPr/eye3/3dy/VkOruZ394tlqv7h8en55fXt/f1x+fXZrv73pflD2NDMDIEQ0NwZQguDcHAEFwYgkILwkoEuRJQFWQi3Jafkgr6IiDmAJWDcxEQkroTVFJ6IsAn9SHUXTgTgX+5kFLdlq4I8DlwZ6g+6IgANwV/W9UYbRHh9DBFdcqpCL8f+1CtcyLC7Sd9BMGxCEj6iIKWCKIg9vEnOEpFWPr1aVZF8j9oJCLLi38/iENDUDcENUNwYAgsgSWwxC/EfcpYUKbOtgAAAABJRU5ErkJggg==", - "f00n0g08.png", false, 32, 32, "f34b8a71205dc26cd37d58fb19179172"); - testPngSuiteImage("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", - "f00n2c08.png", false, 32, 32, "d70ea8925988413a9fe9de1633a31033"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAAAAABWESUoAAABCElEQVR4nIXSIUvEQRAF8Pd2dnb2BDEIgsFgMVgsJovJZhIMNsFgFC4IpuOSYDi4IlwQDIJBMIjB5Cew+I0MHvff2bC7+ce+meFxki2bmaWUVFWjShQRCSGQJMjbUUfcWFvwOnfEpXXEhXXEmXXEaWoLnpgT5/j2gsepFFfAl/+DR1qIMYAPn8LDNIgpALz5OXigKzEHZmO8+Em5ryuxwCTf4cnvwr04iGyjKR79ttxVJx4w8/fgTnRijnt/MW5HJxaoGsQtceIZVYO4KU68omoQN6IT76gaxPXgxCeqBnFNBvGD/1emMIdB/C5BmcIUClHedCkYQ1tQ2BYMbAuSbUF0BNERREf8AZVRLIMTf6sKAAAAAElFTkSuQmCC", - "f01n0g08.png", false, 32, 32, "38446c18ff7e0ca3951b7ad5fa5e81c0"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAEY0lEQVR4nK2WP+wlVRmGn/f8/c6cM+fsCDQEIhRYidlCY4GRBBIrsdCQmFCwncZGCk0oLGhIKCgsjDGxojBWkoCxNdBSkKWl2cJCowkNJSzXYu7cndn97Yagk6d4zzfJfZtv7nN0wrCM2ZliV+ev9qqYPnk8L07kTLYzZlfnr/RKt76bR2AJImWS3SHb/+Womy+kkTQiSxYxE+1Asv9xovdvxJEZppFZigi2IxMKwYi7fN95Jtg2v5P111+GXjQKY9IoLFV425Hx5ZDDfeZrCHYne8MX/ek3oU/0SaMymkZlmYWzHRlXHpT9fp5xts/6w+thbvRKnzUao2vMLEPIdmRUvnTOyC5Zb77pW2Oe6V29MwZjaAyWRWB3IX0AnE4/uvfV/dArr/naqI0607paZx70oXkwFgm78Jg+BoB/nX4A5rb5lRlMa/7pr51VlcbUKDO1a+rUQRuqg3mRwxz2Pf2b7fnw9P11+GXQc79wuZIr1siNMss6pVOGpkEZ1EU39Bm7593Tdzx2PwJlf9T1lxWrYiVVUiM18qzcyZ08ZIPfPvn5+rtvnB55Vf8Bfnd6OmB74vEYKJesJ15UmPBVsRIqoREbcVbsxE4aevf658CNU4zYH/Up8KvTUxFbSVu4i0RZgx76oVzBT7gqX/EV3/ANPyt0fCcMhYEfxEXv6TPgx6fHE7aSt3DVpCRM9rxUUMFNqKKKq1LDNTTjOq7LDdxAg3987TbwrdPDGcvbv3zeYZTj0cQzyKBAgQkqVFShQYMZOuowYHD7SYB2epAKyvEovp3IkokiiphEFdWpiuZoYnZ0qTuGu339n0A4ff3BKii7o/hmxUR2mKM4Fc/kqJ7qqJ7maZ7Zqwe6/+LZjwD3yTNawtEAZwmUe5wgvtFJDvNkj3mKVwlMnhrOtEgLzFE9fvHC3wF36yeMqCXf44FopHKciCcGKZA85snrEkeVwBSpkZqokZZomTmdXnobcDd/xjBG1lLsKBA7eyBesnj02rkgBSySIxYpUSUxJWqmJqrRMs1OP38LcO+/yiiMiVG0VDsKZOXiCvHINaInRVIgRSyS1yXOlMyUqcbv3+GqR7f+zKhaZjsKxHbSENc6MRAjaSVhiZyxTDGKMRlv/eXqgpt/Y3TGrGXYUSAXIYh5xntiJEZSOmNGXr+bQilME7VSq2qlNTaBsAmEMbQs99qggLCCD3hPiMRITMS1xs6XJStYoUyUSqlMlZ1A2ATCPDQW2wsEikOEhPe4rcNHYiKsNUbM5/3OBZvIlVKxyk4gbAKhDs3LXUIQLuAc8viA8/iIj4SET8R0voOc97uQJ1LlKBA2gTANylBd9n4QchseF3AeF/ERn84Ew2fiut+FOBErR4GwCQQb5KGyXMwgVi4d2joU8QmXcGl/zyEUwoSvHAXCJhDSIA7ysppB676dO9g65FFEEZfQWmMo49cVPwuEo0DYBMImEEvngq2DrYOAPEQUUYKE0vHOcxAIR4FwEYhf/gtC7nstgnuX5wAAAABJRU5ErkJggg==", - "f01n2c08.png", false, 32, 32, "a9081889af0c30f206d793919792a0b6"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAAAAABWESUoAAABKklEQVR4nIXRL0uDURgF8MP5OBaLIIggCIJBDAODTdgHGCxYh0kwDFYEwwsLA8Ng4U2CYBLBYrEYLIJBEARB9H3uX8Om97nvwr35x+Wc83BwOjyvJtP66ub2/uHx6fnl9e394/PruzHW+RAifxppRESMMdZa66x33nsfQogxRkRKQbApCEpBUAqCUhA0BUHR4mB/d3tzPRM0SnQBAMgEbRJ9oJpM61zQJAEMRURqQOWgTQKYJwVUUtokesfzLoDqQqfEogug2tIuiS6g9qBriz5QqcXoWuJk0eVP0OdiBAyy1ekzMQZ6+V3otJgBR63LMShxDXTat6VP4g7A7HJ8MTpTgiEJ/D/1B0MSK6trG1s7e51DnYNBieXVRRgLgrEgGAuCsSCIgiAK4hfp5Je/v8zr/QAAAABJRU5ErkJggg==", - "f02n0g08.png", false, 32, 32, "9af1c44cbb489e5385f422d047612dfc"); - testPngSuiteImage("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", - "f02n2c08.png", false, 32, 32, "14658e750fd12c4777c46a949bb3399c"); - testPngSuiteImage("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", - "f03n0g08.png", false, 32, 32, "bab714eea8df8ab97f4095442247c9e1"); - testPngSuiteImage("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", - "f03n2c08.png", false, 32, 32, "eef71a6ef947497fe0c45ea2ba65c5dd"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAAAAABWESUoAAAA1ElEQVR4nIXRwW3CMBSA4d/2s81MnaFiBqQOwA0pp26A1EsnqJQtWAtCIebAAdsP2zlEetGn/9mKfG/iJsYYQwjeey/eiXPOWWuNMQYjZ1qPBUySpQmeQi5tgAV6BbAjgB0BrFz7QBW2nCqgCtUH+S/GLw3qwl+1syxMUN+qWsFRgVs2/OhAXTioX5MXZlhg4re5gt0FoKjIPZ+W7P0WzABMHFsrytITrC/x4UMMcWYfs1PIHdUoD7mixFKDUnwGDfSWDKSBkERfSKIvJNEXwkAIA/EAFiZMByGZYIEAAAAASUVORK5CYII=", - "f04n0g08.png", false, 32, 32, "2bb4337fabd31e8786cbb3aec25315b1"); - testPngSuiteImage("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", - "f04n2c08.png", false, 32, 32, "82a6745345706f5c5a662a94fdd0ea29"); - testPngSuiteImage("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", - "f99n0g04.png", false, 32, 32, "207c771481d8e0786644d1d3ccdc1253"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAIi4vcVJsAAAARBJREFUeJy11U0KwjAQBeBXrFpFUCjFXcFTNJfwtF4itxBcCCKCpeJfbXUhQTMTE0N0FoEZ6Os3pbTR/Q6tokjvpdT7otD7uGn0wXwOa9EbsIAsswdQMQsYjwMFo1GgYDgMFAwGnoLbTR/0+4GCJAkU9HqBAtcKTkG36ynwXeH/AlcAE9T1jwVxrPdt6ymgr/Ll4hDQACqgAU4BDaDFBNerX8DXgtkMWC7VVAj1eWUCumOnAwB5vlqpExBCSnUygXmF9fq9k9IiOJ9NAgCYTjcbtYBFQFdQzyBNdzsYiglOJ5NgMgHSFNjvhZDyfQUmOB5NAVWl+udlrx8cExwOpoDPxQRl6RfABNttoGCxCBM8AHUVjIYrRN23AAAAAElFTkSuQmCC", - "g03n0g16.png", false, 32, 32, "33bca103ab06d5288fc5a40d52b46648"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAAIi4vcVJsAAAASlJREFUeJzllk2KwkAQRqsx/kQEERR3LrzEeAiP6yH6FC4EFzKCGGRGZ0bjwojJJI/kw7iyVpVKpV+/LgLtYisOZ/DGu+L6R3E5OANgPi+uL6DfgIuA0YhWggBhBPT7IoAM/qC/1xMBqkG3KwLUGYShCFANOh0RoM6g3RYBqoEMUA1aLRFABrUBVINmUwS8n0EQiAAy+IV+NLhAXTUIyeAH6qoBHhEByID6Xz4DGfCMwXTqzGy5zK4xMzMzf38kg1LAZOJWqzidJKv7bEIGJwA0GkmyXsf5ovnKBgT4N4Px2G02qU1WNzgC4LFZs+HQbbd0Q7sHGXyXAQYDd2OY2W4XJ1vOHxEZfJUBoij7qc8ltyCDAwBq+w/20J+eQaUgg8+6AGRAt+W6DK5anlkjB1vfagAAAABJRU5ErkJggg==", - "g03n2c08.png", false, 32, 32, "5ab30d7747a459c1051650a1351a4519"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAAIi4vcVJsAAAAB5QTFRFAAAAAP///wD/AMjIra0A3d0A//////8A/93//63/MbogiAAAAGNJREFUeJxjKAcCJSAwBgJBIGBAFmAAAfqoCAWCmUAAV4EsQEcVLkDQAQRwFcgClKlg6DA2YEZS0dDBYcxsgGIGB1wFCKSlJaTBVUAE2MACCBUJDGzMQC1IKtLS4O5AFiBTBQBS03C95h21qwAAAABJRU5ErkJggg==", - "g03n3p04.png", false, 32, 32, "cab490ee86d478d165f2a516345d0ff0"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAK/INwWK6QAAASJJREFUeJytlDkOwjAQRSciLAEkmjQpUtJwAE6AT+0bcAAaCgoKmhQgZWEJCUVkhZkxGVnGhaX5Up6fvxQHbQtoBQGetcbzbofnsK5xsN3C4KIHMEAcDwOocfh+42C18jRYLh0NKGCxcDR4vXAwn3saRJGjAQXMZp4G06mjAe1AAjADV4DYwWTiaSABxA6cDZ7PPxuMx3huGkcD+i/c74IBBVADChANKIAu0SAMhwHM4PGwG2w2AIeDSZUyzyszsAPW6+PR7ABKaW120aC7wun0PX0/7cyAttx3kKbnc59351sMqsoOSJLLhX9uMShLHHQdxDFAkgBkmVJaK9XXyAyKwmZwvZpZa6GDPLdf4ddiBrcbDkajYQAzyDJPg/3eDUANPik0iSilDmOAAAAAAElFTkSuQmCC", - "g04n0g16.png", false, 32, 32, "e38a1551172886575b1d91af694ecfde"); - testPngSuiteImage("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", - "g04n2c08.png", false, 32, 32, "daa8561d65a6598e69d6ddb060d802b7"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAAK/INwWK6QAAAB5QTFRFAAAAAP///9T/1NQA/wD/ALq6//////8A/5v/m5sAIugsggAAAGhJREFUeJy9zsEJgDAQRNEhsLnbgaQFW7CAXOae07ZgC7Zgt04IhPWq4D8Oj2VxqF1RLQpxQO8fsalTTRGHH8WlipoiDt8ECqsFsZZEq48biaxD9NybkzbEGLILBNGQDYjCff4Rh5fiBou1fg11pxGVAAAAAElFTkSuQmCC", - "g04n3p04.png", false, 32, 32, "0f81d4307736954402890d7203244bd0"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAANbY1E9YMgAAAQpJREFUeJyt1b0KgzAQB/AI0X4gSMcOzu3SxTdpHvQexdk+QRdBCqK2VewgQXOnCUeaQS8B//nlQA3GURgjCMw5gDm/3825/H7NhctFWAfeQPa9uXA62QOwmAiShCnAAXHsKTgemQLcA1eAU3A4MAWfDy/AKdjvmQJuABHgI+x2ngJXwP8F3ACnIIo8BThgGJgC/DK1rUPwftsFOIAIXAF4OAVhaA9gCLIsz3WtlP68EkHXrQtut7lWCkBfiWAroCiuV10DWAS4y8sm6toqwAHLJq41lAiaBi3I6X4+C5Gmz6dSAMsjEAEO0LuW5XSfHpt/cERQ19tHWBtE8HrxAoigqtCCZAoeDz/BD+1fhGYCQbPgAAAAAElFTkSuQmCC", - "g05n0g16.png", false, 32, 32, "5f67c34aadb2f3a602fea6d4ad14fa6d"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAANbY1E9YMgAAARVJREFUeJzlljkOwjAQRcdS2EJEQUdDiWiochI4aG5Cj7gADaJA7ItCwSJC8iR/cMdUzvjHL8+xorjcqssZzGSuuj+ubkdnAAwG1f055A24COh2aSUoEI4ukO90RIBqkCQigAwI0G6LANUgjkWAatBqiQDVQAaoBs2mCCCDE+QbDRHwfwYyQDWo10UAGQTbomAGV+iTwRHyCQH20A9mQADVoFaDCSoyIECwU3SA/IdBmrrptLjGxMzMsuflLwajkfvo2OS59Gvwi8Fslg+HruCUeRvQoSi/5ELH3+BLQLnIYOcB6PWcmfX7brHIH49c3iIy2HoAlsu3u7PS4F5ksPEAeBUZrCEfRSKADFaQD2ZAf8uhvkU3ajlNmZwVLFcAAAAASUVORK5CYII=", - "g05n2c08.png", false, 32, 32, "30cda048c618598b39f96c40141851fa"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAANbY1E9YMgAAAB5QTFRFAAAAAP//zMwA/8z/AK6u/wD/i4sA//////8A/4v/c+IkkgAAAFtJREFUeJxj6ACCUCBwAQJBIGBAFmAAAfqoUAKCmUAAV4EsQEcVaUBgDARwFcgClKkwMHZxYEFWwWDswuKAQwUIlJcXlMNVIAsgqWBgZwFqQVJRXg53B7IAmSoA1Ah4O0rtoFUAAAAASUVORK5CYII=", - "g05n3p04.png", false, 32, 32, "2be19a2ad1bdba9734899e453a27625b"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAARFwiTtYVgAAAPhJREFUeJzNlbsNhDAMhg1C4SVomYABqFiASchcmYkxEC2Ip4S4AuVEbCAXpbm/SUzx+cMC2TkOUOI4ai2EWte1Wnvbpj7IMngNbkAAafoOwMYEkCSWBnFsaRBFlgY6gNYgDC0NdACtQRAYGqyrGeAPDUwBWgPftzTQAYwN9t3QAP/O02RpgAHEYFneATjEwBSADdwFhX1TVYwxBgDA+dVAzaNBWd7baGdw9gRomqKQ92vIDOb5HoDvnJ8bghj8BuBcIrCBO6HIEeY5QJ4zxjmAEELIHXWgePhDkV3b9jzlapMnmcE4Pr/CXcgMhsEMQAz63tKg6+wMPgLFodTQLHMsAAAAAElFTkSuQmCC", - "g07n0g16.png", false, 32, 32, "cdd82be241cbfadbceffc98d967dfe30"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAARFwiTtYVgAAAQtJREFUeJzVlkEKgzAQRSciiaK49QS5gCsv4EnqsXImryHdlhZtKdhFK1U6HzM0YDvMIowhz+dXUE3ElyJwxSl+fuDH8Q0AypKfH8F+AlwIKAohAAhDQJ6jk0BJDbJMCJAaiAFSgzQVAqQGYgAyuIYC7GaAAEkiBCAD9IjEgJ8zMEYIkL5F/28AAXcwlxoUUgAyGMF+aHAB890yQAZaCwHAIBqJ2DZm1U2jnotXtZwB114Gda22nVAGgweg66aqUhsAlAECfIbMxN4SuXn9jQE/adcMYBANRGxr/W5rFRFZq7Sez3XzuUsDrmP03Szvt+8X/o74NcrAB+BVKINzKAAyOIUCIAP0MxvK4AEWgFoVP+GhCgAAAABJRU5ErkJggg==", - "g07n2c08.png", false, 32, 32, "0dcc8b7a828dd05df802b636673ed0ab"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAARFwiTtYVgAAAB5QTFRFAAAAAP//AJycv78A/3b/dnYA/wD///////8A/7//TpdUbAAAAFxJREFUeJxj6ACCNCBQAgJBIGBAFmAAAfqoMAYCFyCAq0AWoKOKUCCYCQRwFcgClKmYMFOJCUUFA1gAuwoQKC8vKFdiYoKogAswMCCrYGBnUkJRUV4OdweyAJkqACOga73pcj3PAAAAAElFTkSuQmCC", - "g07n3p04.png", false, 32, 32, "8f1a3f91ca328ca507273e80324087e9"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAYagMeiWXwAAAL1JREFUeJztlTEOhCAQRT8bCyw9hlzD0tIDIQfyCF7D0ktYSGLBFoTFmUQC2WRjsv4CZqaYefwQEM6BSAiaa03zcaR5ZS0tSImk+IDiBpy42ndaqOtfEzwe3MGDrwlKTfxHD46jkKBp0g2KPdi2QoI73YNhmKYQGxOe12wP+j7Gxmgd1myCee66sx/G+J0TvCyT/Ajwa2QAAMeUNDHG8XvhBKJtaSEYpxQALItS/vyhSfbPtK7n2dcEz6sMvAHqCJi/5fyWiAAAAABJRU5ErkJggg==", - "g10n0g16.png", false, 32, 32, "75b64641f0a3c0899ae3b466fcb97c06"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAABGdBTUEAAYagMeiWXwAAANRJREFUeJztljEKhDAURP8HC+32HpYewdbS+/zNfbyCx7D1FAu7xUK2cA0aM0j4ARWcKhlNJsNTkS2FxQSuCIf9Z9jO3iAgz8P+B9xPIDdDC6IDQOHoAKhUDaBQA8SgKCIDDmtwM3C6GezqsAbJIF+HwRf4sQ0eKOAF/GQMUMB1GCApG7Qtd916D0NERDJPNQ2ahv1IM2/tBpqvad/buuYAdrMY6xn4znR2l6F/inxH1lNNg7JkIqoqHgb7P7hsIGsYjONitWwGk87+HuzrdA1S/VX8ANStTVTe34+eAAAAAElFTkSuQmCC", - "g10n2c08.png", false, 32, 32, "69926b0e52c1371c81ca49d7cd0cf2b1"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAAYagMeiWXwAAAB5QTFRFAAAAqakAAP///6r/VFQA/wD/AH9///////8A/1X/7g7bWgAAAGNJREFUeJxj6ACCUCBIAwIlIGBAFmAAAfqoEASCmUAAV4EsQEcVLkBgDARwFcgClKkwME5LYENWwWCcxpaApoKNAaICBMrLC8rTGKAq4AJALUgqGNjZgIYiqSgvh7sDWYBMFQBG4oXJmToRDgAAAABJRU5ErkJggg==", - "g10n3p04.png", false, 32, 32, "832e5401524ab7238a6eccd5d852b8ef"); - testPngSuiteImage("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", - "g25n0g16.png", false, 32, 32, "698f892bb4453fdd325ae414dc82b34f"); - testPngSuiteImage("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", - "g25n2c08.png", false, 32, 32, "a64f63bacd6a0edec500179d538ede01"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAA9CQ+FSITwAAAB5QTFRFAAAAAC0tAP//EBAA/1z//xD//wD/XFwA//////8AUlHX5QAAAGRJREFUeJy9zrENgDAMRFFbSpHWK7ACC7jICqzACrSUXoFtc1EkczVI+eX5FZYHncjQhoQHGa0RFzpQCh4Wih01lIKHf0KaKQtvZQyvcC8pRnHXaqpTzCEqziRCQo0Fyj94+Cg6NXRmxzu0UNgAAAAASUVORK5CYII=", - "g25n3p04.png", false, 32, 32, "c2b4d9eb0587bc254212b05beb972578"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAYagMeiWXwAAAF5JREFUeJzV0jEKwDAMQ1E5W+9/xtygk8AoezLVKgSj2Y8/OICnuFcTE2OgOoJgHQiZAN2C9kDKBOgW3AZCJkC3oD2QMgG6BbeBkAnQLWgPpExgP28H7E/0GTjPfwAW2EvYX64rn9cAAAAASUVORK5CYII=", - "oi1n0g16.png", false, 32, 32, "a14e204bbf905586d3763f3cc5dcb2f3"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAIAAACsiDHgAAAABGdBTUEAAYagMeiWXwAAAOVJREFUeJzVlsEKgzAQRKfgQX/Lfrf9rfaWHgYDkoYmZpPMehiGReQ91qCPEEIAPi/gmu9kcnN+GD0nM1/O4vNad7cC6850KHCiM5fz7fJwXdEBYPOygV/o7PICeXSmsMA/dKbkGShD51xsAzXo7DIC9ehMAYG76MypZ6ANnfNJG7BAZx8uYIfOHChgjR4F+MfuDx0AtmfnDfREZ+8m0B+9m8Ao9Chg9x0Yi877jTYwA529WWAeerPAbPQoUH8GNNA5r9yAEjp7sYAeerGAKnoUyJ8BbXTOMxvwgM6eCPhBTwS8oTO/5kL+Xge7xOwAAAAASUVORK5CYII=", - "oi1n2c16.png", false, 32, 32, "a3774d09367dd147a3539d2d2f6ca133"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAYagMeiWXwAAAEBJREFUeJzV0jEKwDAMQ1E5W+9/xtygk8AoezLVKgSj2Y8/OICnuFcTE2OgOoJgHQiZAN2C9kDKBOgW3AZCJkC3oD2QMjqwwDMAAAAeSURBVAG6BbeBkAnQLWgPpExgP28H7E/0GTjPfwAW2EvYX7J6X30AAAAASUVORK5CYII=", - "oi2n0g16.png", false, 32, 32, "a14e204bbf905586d3763f3cc5dcb2f3"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAIAAACsiDHgAAAABGdBTUEAAYagMeiWXwAAAIBJREFUeJzVlsEKgzAQRKfgQX/Lfrf9rfaWHgYDkoYmZpPMehiGReQ91qCPEEIAPi/gmu9kcnN+GD0nM1/O4vNad7cC6850KHCiM5fz7fJwXdEBYPOygV/o7PICeXSmsMA/dKbkGShD51xsAzXo7DIC9ehMAYG76MypZ6ANnfNJG7BAZx+ZiKBzAAAAZUlEQVQuYIfOHChgjR4F+MfuDx0AtmfnDfREZ+8m0B+9m8Ao9Chg9x0Yi877jTYwA529WWAeerPAbPQoUH8GNNA5r9yAEjp7sYAeerGAKnoUyJ8BbXTOMxvwgM6eCPhBTwS8oTO/5kL+Xk13nmIAAAAASUVORK5CYII=", - "oi2n2c16.png", false, 32, 32, "a3774d09367dd147a3539d2d2f6ca133"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAYagMeiWXwAAAB9JREFUeJzV0jEKwDAMQ1E5W+9/xtygk8AoezLVKgSj2Y8/OIdtk98AAAAfSURBVICnuFcTE2OgOoJgHQiZAN2C9kDKBOgW3AZCJkC3oD3Oo8vsAAAAAklEQVSQMsVtZiAAAAAeSURBVAG6BbeBkAnQLWgPpExgP28H7E/0GTjPfwAW2EvYX7J6X30AAAAASUVORK5CYII=", - "oi4n0g16.png", false, 32, 32, "a14e204bbf905586d3763f3cc5dcb2f3"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAIAAACsiDHgAAAABGdBTUEAAYagMeiWXwAAAGNJREFUeJzVlsEKgzAQRKfgQX/Lfrf9rfaWHgYDkoYmZpPMehiGReQ91qCPEEIAPi/gmu9kcnN+GD0nM1/O4vNad7cC6850KHCiM5fz7fJwXdEBYPOygV/o7PICeXSmsMA/dKbkGShDblRaWAAAAB1JREFU51xsAzXo7DIC9ehMAYG76MypZ6ANnfNJG7BAZx9l6MXmAAAAY0lEQVQuYIfOHChgjR4F+MfuDx0AtmfnDfREZ+8m0B+9m8Ao9Chg9x0Yi877jTYwA529WWAeerPAbPQoUH8GNNA5r9yAEjp7sYAeerGAKnoUyJ8BbXTOMxvwgM6eCPhBTwS8oTO/5kIg4uIpAAAAAklEQVT+XnoXDXoAAAAASUVORK5CYII=", - "oi4n2c16.png", false, 32, 32, "a3774d09367dd147a3539d2d2f6ca133"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAAAAAAGgflrAAAABGdBTUEAAYagMeiWXwAAAAFJREFUeHbmhOYAAAABSURBVJzRgaKHAAAAAUlEQVTV3oFbswAAAAFJREFU0kDlzhAAAAABSURBVDF55n3SAAAAAUlEQVQKyO2U9gAAAAFJREFUwLNcv1gAAAABSURBVDAO4U1EAAAAAUlEQVQMIY4xwwAAAAFJREFUQ8ftbcIAAAABSURBVFE0VByKAAAAAUlEQVQ5dz314AAAAAFJREFUW9SB9ZQAAAABSURBVO8YjYIBAAAAAUlEQVR/6IIRRQAAAAFJREFUxlo/Gm0AAAABSURBVNynXeMXAAAAAUlEQVSg/u7eAAAAAAFJREFUk0E+vxYAAAABSURBVMCzXL9YAAAAAUlEQVQoHY3VEgAAAAFJREFUe+/v1VwAAAABSURBVDLg7yxoAAAAAUlEQVTV3oFbswAAAAFJREFUKvODtD4AAAABSURBVAQvVbnxAAAAAUlEQVSjZ+ePugAAAAFJREFU2dc3F5gAAAABSURBVI9VP+NZAAAAAUlEQVQ/nl5Q1QAAAAFJREFUOAA6xXYAAAABSURBVIDFgP7IAAAAAUlEQVSnYIpLowAAAAFJREFUuO2CRlYAAAABSURBVFfdN7m/AAAAAUlEQVQTrIY8NgAAAAFJREFUE6yGPDYAAAABSURBVGP8g00KAAAAAUlEQVSg/u7eAAAAAAFJREFUOu40pFoAAAABSURBVIIrjp/kAAAAAUlEQVRgZYocsAAAAAFJREFUHUs+ETEAAAABSURBVAgm4/XaAAAAAUlEQVSZoetWCAAAAAFJREFUACg4fegAAAABSURBVN3QWtOBAAAAAUlEQVSCK46f5AAAAAFJREFU9nzmKsEAAAABSURBVEBe5Dx4AAAAAUlEQVTKU4lWRgAAAAFJREFUBC9VufEAAAABSURBVOiG6ReiAAAAAUlEQVQW3OzIuQAAAAFJREFU3Kdd4xcAAAABSURBVAbBW9jdAAAAAUlEQVRCsOpdVAAAAAFJREFUJvo1+BUAAAABSURBVEBe5Dx4AAAAAUlEQVS3fT1bxwAAAAFJREFUoP7u3gAAAAABSURBVD1wUDH5AAAAAUlEQVSQ2DfurAAAAAFJREFUMuDvLGgAAAABSURBVAFfP01+AAAAAUlEQVS6A4wnegAAAAFJREFUBVhSiWcAAAABSURBVLd9PVvHAAAAAUlEQVSBsofOXgAAAAFJREFUkNg37qwAAAABSURBVAlR5MVMAAAAAUlEQVTQruuvPAAAAAFJREFULW3nIZ0AAAABSURBVGhrUZSCAAAAAUlEQVQPuIdgeQAAAAFJREFUpPmDGhkAAAABSURBVExXUnBTAAAAAUlEQVRgZYocsAAAAAFJREFUP55eUNUAAAABSURBVG/1NQEhAAAAAUlEQVQHtlzoSwAAAAFJREFU7IGE07sAAAABSURBVE/OWyHpAAAAAUlEQVT0kuhL7QAAAAFJREFUGUxT1SgAAAABSURBVDgAOsV2AAAAAUlEQVTPI+OiyQAAAAFJREFUf+iCEUUAAAABSURBVAAoOH3oAAAAAUlEQVQW3OzIuQAAAAFJREFU2KAwJw4AAAABSURBVEvJNuXwAAAAAUlEQVTYoDAnDgAAAAFJREFUX9PsMY0AAAAASUVORK5CYII=", - "oi9n0g16.png", false, 32, 32, "a14e204bbf905586d3763f3cc5dcb2f3"); - testPngSuiteImage("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", - "oi9n2c16.png", false, 32, 32, "a3774d09367dd147a3539d2d2f6ca133"); - testPngSuiteImage("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", - "PngSuite.png", false, 256, 256, "183c2504778cb2b6384dbbad46fa2a2a"); - testPngSuiteImage("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", - "pp0n2c16.png", false, 32, 32, "a3774d09367dd147a3539d2d2f6ca133"); - testPngSuiteImage("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", - "pp0n6a08.png", false, 32, 32, "de9a6b2025046b20b3a408990a2b7e71"); - testPngSuiteImage("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", - "ps1n0g08.png", false, 32, 32, "f6470f9f6296c5109e2bd730fe203773"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAIAAACsiDHgAAAABGdBTUEAAYagMeiWXwAABRpzUExUc2l4LWN1YmUACAAAAP8AAAAAM/8AAAAAZv8AAAAAmf8AAAAAzP8AAAAA//8AAAAzAP8AAAAzM/8AAAAzZv8AAAAzmf8AAAAzzP8AAAAz//8AAABmAP8AAABmM/8AAABmZv8AAABmmf8AAABmzP8AAABm//8AAACZAP8AAACZM/8AAACZZv8AAACZmf8AAACZzP8AAACZ//8AAADMAP8AAADMM/8AAADMZv8AAADMmf8AAADMzP8AAADM//8AAAD/AP8AAAD/M/8AAAD/Zv8AAAD/mf8AAAD/zP8AAAD///8AADMAAP8AADMAM/8AADMAZv8AADMAmf8AADMAzP8AADMA//8AADMzAP8AADMzM/8AADMzZv8AADMzmf8AADMzzP8AADMz//8AADNmAP8AADNmM/8AADNmZv8AADNmmf8AADNmzP8AADNm//8AADOZAP8AADOZM/8AADOZZv8AADOZmf8AADOZzP8AADOZ//8AADPMAP8AADPMM/8AADPMZv8AADPMmf8AADPMzP8AADPM//8AADP/AP8AADP/M/8AADP/Zv8AADP/mf8AADP/zP8AADP///8AAGYAAP8AAGYAM/8AAGYAZv8AAGYAmf8AAGYAzP8AAGYA//8AAGYzAP8AAGYzM/8AAGYzZv8AAGYzmf8AAGYzzP8AAGYz//8AAGZmAP8AAGZmM/8AAGZmZv8AAGZmmf8AAGZmzP8AAGZm//8AAGaZAP8AAGaZM/8AAGaZZv8AAGaZmf8AAGaZzP8AAGaZ//8AAGbMAP8AAGbMM/8AAGbMZv8AAGbMmf8AAGbMzP8AAGbM//8AAGb/AP8AAGb/M/8AAGb/Zv8AAGb/mf8AAGb/zP8AAGb///8AAJkAAP8AAJkAM/8AAJkAZv8AAJkAmf8AAJkAzP8AAJkA//8AAJkzAP8AAJkzM/8AAJkzZv8AAJkzmf8AAJkzzP8AAJkz//8AAJlmAP8AAJlmM/8AAJlmZv8AAJlmmf8AAJlmzP8AAJlm//8AAJmZAP8AAJmZM/8AAJmZZv8AAJmZmf8AAJmZzP8AAJmZ//8AAJnMAP8AAJnMM/8AAJnMZv8AAJnMmf8AAJnMzP8AAJnM//8AAJn/AP8AAJn/M/8AAJn/Zv8AAJn/mf8AAJn/zP8AAJn///8AAMwAAP8AAMwAM/8AAMwAZv8AAMwAmf8AAMwAzP8AAMwA//8AAMwzAP8AAMwzM/8AAMwzZv8AAMwzmf8AAMwzzP8AAMwz//8AAMxmAP8AAMxmM/8AAMxmZv8AAMxmmf8AAMxmzP8AAMxm//8AAMyZAP8AAMyZM/8AAMyZZv8AAMyZmf8AAMyZzP8AAMyZ//8AAMzMAP8AAMzMM/8AAMzMZv8AAMzMmf8AAMzMzP8AAMzM//8AAMz/AP8AAMz/M/8AAMz/Zv8AAMz/mf8AAMz/zP8AAMz///8AAP8AAP8AAP8AM/8AAP8AZv8AAP8Amf8AAP8AzP8AAP8A//8AAP8zAP8AAP8zM/8AAP8zZv8AAP8zmf8AAP8zzP8AAP8z//8AAP9mAP8AAP9mM/8AAP9mZv8AAP9mmf8AAP9mzP8AAP9m//8AAP+ZAP8AAP+ZM/8AAP+ZZv8AAP+Zmf8AAP+ZzP8AAP+Z//8AAP/MAP8AAP/MM/8AAP/MZv8AAP/Mmf8AAP/MzP8AAP/M//8AAP//AP8AAP//M/8AAP//Zv8AAP//mf8AAP//zP8AAP////8AACL/aC4AAADlSURBVHic1ZbBCoMwEESn4EF/y363/a32lh4GA5KGJmaTzHoYhkXkPdagjxBCAD4v4JrvZHJzfhg9JzNfzuLzWne3AuvOdChwojOX8+3ycF3RAWDzsoFf6OzyAnl0prDAP3Sm5BkoQ+dcbAM16OwyAvXoTAGBu+jMqWegDZ3zSRuwQGcfLmCHzhwoYI0eBfjH7g8dALZn5w30RGfvJtAfvZvAKPQoYPcdGIvO+402MAOdvVlgHnqzwGz0KFB/BjTQOa/cgBI6e7GAHnqxgCp6FMifAW10zjMb8IDOngj4QU8EvKEzv+ZC/l4Hu8TsAAAAAElFTkSuQmCC", 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testPngSuiteImage("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", - "ps2n0g08.png", false, 32, 32, "f6470f9f6296c5109e2bd730fe203773"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgEAIAAACsiDHgAAAABGdBTUEAAYagMeiWXwAACHpzUExUc2l4LWN1YmUAEAAAAAAAAAD/AAAAAAAAADMA/wAAAAAAAABmAP8AAAAAAAAAmQD/AAAAAAAAAMwA/wAAAAAAAAD/AP8AAAAAADMAAAD/AAAAAAAzADMA/wAAAAAAMwBmAP8AAAAAADMAmQD/AAAAAAAzAMwA/wAAAAAAMwD/AP8AAAAAAGYAAAD/AAAAAABmADMA/wAAAAAAZgBmAP8AAAAAAGYAmQD/AAAAAABmAMwA/wAAAAAAZgD/AP8AAAAAAJkAAAD/AAAAAACZADMA/wAAAAAAmQBmAP8AAAAAAJkAmQD/AAAAAACZAMwA/wAAAAAAmQD/AP8AAAAAAMwAAAD/AAAAAADMADMA/wAAAAAAzABmAP8AAAAAAMwAmQD/AAAAAADMAMwA/wAAAAAAzAD/AP8AAAAAAP8AAAD/AAAAAAD/ADMA/wAAAAAA/wBmAP8AAAAAAP8AmQD/AAAAAAD/AMwA/wAAAAAA/wD/AP8AAAAzAAAAAAD/AAAAMwAAADMA/wAAADMAAABmAP8AAAAzAAAAmQD/AAAAMwAAAMwA/wAAADMAAAD/AP8AAAAzADMAAAD/AAAAMwAzADMA/wAAADMAMwBmAP8AAAAzADMAmQD/AAAAMwAzAMwA/wAAADMAMwD/AP8AAAAzAGYAAAD/AAAAMwBmADMA/wAAADMAZgBmAP8AAAAzAGYAmQD/AAAAMwBmAMwA/wAAADMAZgD/AP8AAAAzAJkAAAD/AAAAMwCZADMA/wAAADMAmQBmAP8AAAAzAJkAmQD/AAAAMwCZAMwA/wAAADMAmQD/AP8AAAAzAMwAAAD/AAAAMwDMADMA/wAAADMAzABmAP8AAAAzAMwAmQD/AAAAMwDMAMwA/wAAADMAzAD/AP8AAAAzAP8AAAD/AAAAMwD/ADMA/wAAADMA/wBmAP8AAAAzAP8AmQD/AAAAMwD/AMwA/wAAADMA/wD/AP8AAABmAAAAAAD/AAAAZgAAADMA/wAAAGYAAABmAP8AAABmAAAAmQD/AAAAZgAAAMwA/wAAAGYAAAD/AP8AAABmADMAAAD/AAAAZgAzADMA/wAAAGYAMwBmAP8AAABmADMAmQD/AAAAZgAzAMwA/wAAAGYAMwD/AP8AAABmAGYAAAD/AAAAZgBmADMA/wAAAGYAZgBmAP8AAABmAGYAmQD/AAAAZgBmAMwA/wAAAGYAZgD/AP8AAABmAJkAAAD/AAAAZgCZADMA/wAAAGYAmQBmAP8AAABmAJkAmQD/AAAAZgCZAMwA/wAAAGYAmQD/AP8AAABmAMwAAAD/AAAAZgDMADMA/wAAAGYAzABmAP8AAABmAMwAmQD/AAAAZgDMAMwA/wAAAGYAzAD/AP8AAABmAP8AAAD/AAAAZgD/ADMA/wAAAGYA/wBmAP8AAABmAP8AmQD/AAAAZgD/AMwA/wAAAGYA/wD/AP8AAACZAAAAAAD/AAAAmQAAADMA/wAAAJkAAABmAP8AAACZAAAAmQD/AAAAmQAAAMwA/wAAAJkAAAD/AP8AAACZADMAAAD/AAAAmQAzADMA/wAAAJkAMwBmAP8AAACZADMAmQD/AAAAmQAzAMwA/wAAAJkAMwD/AP8AAACZAGYAAAD/AAAAmQBmADMA/wAAAJkAZgBmAP8AAACZAGYAmQD/AAAAmQBmAMwA/wAAAJkAZgD/AP8AAACZAJkAAAD/AAAAmQCZADMA/wAAAJkAmQBmAP8AAACZAJkAmQD/AAAAmQCZAMwA/wAAAJkAmQD/AP8AAACZAMwAAAD/AAAAmQDMADMA/wAAAJkAzABmAP8AAACZAMwAmQD/AAAAmQDMAMwA/wAAAJkAzAD/AP8AAACZAP8AAAD/AAAAmQD/ADMA/wAAAJkA/wBmAP8AAACZAP8AmQD/AAAAmQD/AMwA/wAAAJkA/wD/AP8AAADMAAAAAAD/AAAAzAAAADMA/wAAAMwAAABmAP8AAADMAAAAmQD/AAAAzAAAAMwA/wAAAMwAAAD/AP8AAADMADMAAAD/AAAAzAAzADMA/wAAAMwAMwBmAP8AAADMADMAmQD/AAAAzAAzAMwA/wAAAMwAMwD/AP8AAADMAGYAAAD/AAAAzABmADMA/wAAAMwAZgBmAP8AAADMAGYAmQD/AAAAzABmAMwA/wAAAMwAZgD/AP8AAADMAJkAAAD/AAAAzACZADMA/wAAAMwAmQBmAP8AAADMAJkAmQD/AAAAzACZAMwA/wAAAMwAmQD/AP8AAADMAMwAAAD/AAAAzADMADMA/wAAAMwAzABmAP8AAADMAMwAmQD/AAAAzADMAMwA/wAAAMwAzAD/AP8AAADMAP8AAAD/AAAAzAD/ADMA/wAAAMwA/wBmAP8AAADMAP8AmQD/AAAAzAD/AMwA/wAAAMwA/wD/AP8AAAD/AAAAAAD/AAAA/wAAADMA/wAAAP8AAABmAP8AAAD/AAAAmQD/AAAA/wAAAMwA/wAAAP8AAAD/AP8AAAD/ADMAAAD/AAAA/wAzADMA/wAAAP8AMwBmAP8AAAD/ADMAmQD/AAAA/wAzAMwA/wAAAP8AMwD/AP8AAAD/AGYAAAD/AAAA/wBmADMA/wAAAP8AZgBmAP8AAAD/AGYAmQD/AAAA/wBmAMwA/wAAAP8AZgD/AP8AAAD/AJkAAAD/AAAA/wCZADMA/wAAAP8AmQBmAP8AAAD/AJkAmQD/AAAA/wCZAMwA/wAAAP8AmQD/AP8AAAD/AMwAAAD/AAAA/wDMADMA/wAAAP8AzABmAP8AAAD/AMwAmQD/AAAA/wDMAMwA/wAAAP8AzAD/AP8AAAD/AP8AAAD/AAAA/wD/ADMA/wAAAP8A/wBmAP8AAAD/AP8AmQD/AAAA/wD/AMwA/wAAAP8A/wD/AP8AAJbQi4YAAADlSURBVHic1ZbBCoMwEESn4EF/y363/a32lh4GA5KGJmaTzHoYhkXkPdagjxBCAD4v4JrvZHJzfhg9JzNfzuLzWne3AuvOdChwojOX8+3ycF3RAWDzsoFf6OzyAnl0prDAP3Sm5BkoQ+dcbAM16OwyAvXoTAGBu+jMqWegDZ3zSRuwQGcfLmCHzhwoYI0eBfjH7g8dALZn5w30RGfvJtAfvZvAKPQoYPcdGIvO+402MAOdvVlgHnqzwGz0KFB/BjTQOa/cgBI6e7GAHnqxgCp6FMifAW10zjMb8IDOngj4QU8EvKEzv+ZC/l4Hu8TsAAAAAElFTkSuQmCC", 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false, 2, 2, "e1b1f768e50f5269db92782b4ad62247"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAMAAAADAQMAAAEb4RdqAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAZQTFRFAP8A/3cAseWlnwAAAAxJREFUeJxjYIADBwAATABB2snmHAAAAABJRU5ErkJggg==", - "s03i3p01.png", false, 3, 3, "b05c579eb095ddac5d3b30e0329c33f4"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAMAAAADAQMAAABs5if8AAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAZQTFRFAP8A/3cAseWlnwAAAA5JREFUeJxjYGBwYGAAAADGAEE5MQxLAAAAAElFTkSuQmCC", - "s03n3p01.png", false, 3, 3, "b05c579eb095ddac5d3b30e0329c33f4"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAQAAAAEAQMAAAHkODyrAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAZQTFRF/wB3//8AmvdDuQAAABRJREFUeJxjaGAAwQMMDgwTGD4AABmuBAG53zf2AAAAAElFTkSuQmCC", - "s04i3p01.png", false, 4, 4, "c268bd54d984c22857d450e233766115"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAQAAAAEAQMAAACTPww9AAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAZQTFRF/wB3//8AmvdDuQAAAA9JREFUeJxj+MAwAQg/AAAMCAMBgre2CgAAAABJRU5ErkJggg==", - "s04n3p01.png", false, 4, 4, "c268bd54d984c22857d450e233766115"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAUAAAAFAgMAAAGHBv7gAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAlQTFRFAP//dwD//wAAQaSqcwAAABlJREFUeJxjaGBoYFjAACI7gHQAEE9tACIATYMG43AkRkUAAAAASUVORK5CYII=", - "s05i3p02.png", false, 5, 5, "fceb20e261cb29ebb6349bc6c2265beb"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAUAAAAFAgMAAADwAc52AAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAlQTFRFAP//dwD//wAAQaSqcwAAABRJREFUeJxjWNXAMLWBYSKYXNUAACoHBZCujPRKAAAAAElFTkSuQmCC", - "s05n3p02.png", false, 5, 5, "fceb20e261cb29ebb6349bc6c2265beb"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAYAAAAGAgMAAAHqpTdNAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAlQTFRFAP8AAHf//wD/o0UOaAAAACJJREFUeJxjaGBoYJgAxA4MLQwrGDwYIhimJjBMSGBYtQAAWccHTMhl7SQAAAAASUVORK5CYII=", - "s06i3p02.png", false, 6, 6, "b5c9900082b8119515e3b00634a379c5"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAYAAAAGAgMAAACdogfbAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAlQTFRFAP8AAHf//wD/o0UOaAAAABZJREFUeJxjWLWAYWoCwwQwAjJWLQAAOc8GXylw/coAAAAASUVORK5CYII=", - "s06n3p02.png", false, 6, 6, "b5c9900082b8119515e3b00634a379c5"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAcAAAAHAgMAAAHOO4/WAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAxQTFRF/wB3AP93//8AAAD/G0OznAAAACVJREFUeJxjOMBwgOEBwweGDQyvGf4z/GFIAcI/DFdjGG7MAZIAweMMgVWC+YkAAAAASUVORK5CYII=", - "s07i3p02.png", false, 7, 7, "cefe38d2a35e41b73b6270a398c283e8"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAcAAAAHAgMAAAC5PL9AAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAxQTFRF/wB3AP93//8AAAD/G0OznAAAABpJREFUeJxj+P+H4WoMw605DDfmgEgg+/8fAHF5CrkeXW0HAAAAAElFTkSuQmCC", - "s07n3p02.png", false, 7, 7, "cefe38d2a35e41b73b6270a398c283e8"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAgAAAAIAgMAAAHOZmaOAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAxQTFRFAP//dwD/d/8A/wAAqrpZHAAAACVJREFUeJxjYAACASB+wGDHoAWk9zDMYVjBoLWCQbeCQf8HUAAAUNcF93DTSq8AAAAASUVORK5CYII=", - "s08i3p02.png", false, 8, 8, "3f0fc2c825d2fad899359508e7f645e1"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAgAAAAIAgMAAAC5YVYYAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAxQTFRFAP//dwD/d/8A/wAAqrpZHAAAABtJREFUeJxjYGBg0FrBoP+DQbcChIAMIJeBAQA9VgU9+UwQEwAAAABJRU5ErkJggg==", - "s08n3p02.png", false, 8, 8, "3f0fc2c825d2fad899359508e7f645e1"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAkAAAAJAgMAAAHq+N4VAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAxQTFRFAP8AAHf//wD//3cA/1YAZAAAACNJREFUeJxjYEACC4BYC4wYGF4zXAdiBgb7/wwMltEQDGQDAHX/B0YWjJcDAAAAAElFTkSuQmCC", - "s09i3p02.png", false, 9, 9, "5c55b2480d623eae3a3aaac444eb9542"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAAAkAAAAJAgMAAACd/+6DAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAAAxQTFRFAP8AAHf//wD//3cA/1YAZAAAAB9JREFUeJxjYAAC+/8MDFarGRgso4FYGkKD+CBxIAAAaWUFw2pDfyMAAAAASUVORK5CYII=", - "s09n3p02.png", false, 9, 9, "5c55b2480d623eae3a3aaac444eb9542"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAAH2U1dRAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAANhJREFUeJx9kL0OgjAURj9FfuJTuBjXhqkkDvBGujo1casOLOyEgZmpM4kk8Fi29FYpMTbNl8O59+Y2AByC48nw5Ehe4Pr25orpfEeQ6LhPNgLgdmpQm2iWsdVxqA3V9lOyWKajTCEwWpDpx8TO6Oz3zMIoHYgtlWDORlWFqqDKgiAk6OBM6XoqgsgBPj0mC4QWcgUHJZW+QD1F56Yighx0ro82Ow5z4tEyDJ6ocfQFMuz8ER1/BaLs4HforcN6hMRF18KlMIyluP4QbCX0qz0hsN6yWjv/iTeEUtKElO3EIwAAAABJRU5ErkJggg==", - "s32i3p04.png", false, 32, 32, "bbe63d9433641df3fcd2c745fed89a93"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgBAMAAACBVGfHAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAHxJREFUeJyV0b0NgCAQBeBXAIlxCRt6WrbyNqB3CSsnYTAPTYzvSIhSXMhHcn8A7ch25FiviA40wDEkVAZ4hh2RQXMa6JLmxZaNPwEdBJO0aB9u3NhzraJvBKuCfwNmXQVBW9YQ5AskC1xW2n4ZMDEU2FlCNrOYae+Pt3ACA2HDSOt6Ji4AAAAASUVORK5CYII=", - "s32n3p04.png", false, 32, 32, "bbe63d9433641df3fcd2c745fed89a93"); - testPngSuiteImage("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", - "s33i3p04.png", false, 33, 33, "20708bc9a6ffa8d8ca6e004e1e9aa3ae"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACEAAAAhBAMAAAClyt9cAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAL5JREFUeJxdzy0SwyAQhuGv0+n0V6Q36HCCzHCBih4gBh8VXVeLjIyNi0bV13CAHKrLDi27vAwrEMADpMaS5wN8Sm+EEHAKpQXD0NMu9bAWWytqMU+YZRMMXWxENzhaO1fqsK5rTONXxIPikbvjRfHIPXGleOQaNlWuM1GUa6H/VC46qV26ForEKRLnVB06SaJwiZKUUNn1D/vsEqZNI0mjP3h4SUrR60G3aBOzalcL5TqyTbmMqVzJqV0R5PoCM2LWk+YxJesAAAAASUVORK5CYII=", - "s33n3p04.png", false, 33, 33, "20708bc9a6ffa8d8ca6e004e1e9aa3ae"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACIAAAAiBAMAAAG/biZnAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAANJJREFUeJx9jr0KgzAURr9q/elbdJGu4mTAQR+pa6eAW+yQxV06ODs5CxX0sWrURHstDcnH4eTe3ABxBz6d5+74b8S7zcck72D7KvMx4XPaHfC4vVCpeP0OS0W1hAg9EQ0imqZhWElEm/OMm28tTdwQQkPzOrVl1pYpWplpcjQ1ME6aulKTawhbXUnI0dRsZG5hyJVHUr9bX5Hp8tl7UbOgXxJFHaL/NhUCYsBwJl0soO9QA5ddSc00vD90/TOgprpQA9rFXWpQMxAzLzIdh/+g/wDxGv/uWt+IKQAAAABJRU5ErkJggg==", - "s34i3p04.png", false, 34, 34, "0912e0f97224057b298f163739d1365f"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACIAAAAiBAMAAADIaRbxAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAG1JREFUeJyVz7ENgCAQBdBfIIlb2NDbMpYb0LMEFZMwGKcWJv9HwSsu5CX8uwPOOnKNod0dKtbhSHY0EiwkBYHEglk0OW4yPfwXqHhOTraPG234vCcFYykqKwtUeFZS8Sx2NUjqhFz1LVl+vUgHrMXtiDoroU4AAAAASUVORK5CYII=", - "s34n3p04.png", false, 34, 34, "0912e0f97224057b298f163739d1365f"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACMAAAAjBAMAAAGb8J78AAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAQRJREFUeJxlkD2uglAUhMf4A1GL93ZAWIHJ2YCFC7Cxt7Kmo7WktLWjprJ/DQu4i3pzzuUAF4fwk5k7+SYAzRN96CFyQsPvEIC80ZcIDf04iYZ5HmOeZaQOYzoxDRY05og7MCePDtQ5Al2770woUEahrrPahBaeluWUqiqmMWqBMS2GtEYGHR4XdK2flLVI3OO0AqE/hrjXuRWb3sVIEfHuRLMifxEGbsauFdl/Dk1NvTsthXeDdytUMP3N9MHjcec90x3vF96JXrjx2t5muuJC2cN1xi9lD9cPcCBjQeSGJXEpEhMYdU1hm5E4wlZGTGAHFj9IYTsd8A1MiVujzokXHXH+B9CK7qGbaRQOAAAAAElFTkSuQmCC", - "s35i3p04.png", false, 35, 35, "b46d9ba87963f526624a6d485ff6465e"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACMAAAAjBAMAAADs965qAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAMdJREFUeJxl0SEOg0AQheHXtJSmmPYGhBOQcIEKDoDBo9C42spKLA6Nqq/hAHuoPqZhM7P7E0asmOyXBbbeqpec4Kv6YFkWXBfVjL7v+Ks6VBWOla7ENGIyjSi4vdDlaPklraqBc27dhm9FzWTsPfBkMvYG3JmMvZv4QmNGlTXOvFdo5FFkDCoD4N8YRqPhsSbgsdXyTt7oeak3et5BjIZ3EaPhZVwv76h4kuWdN3JMjIwjImMOa0zEaY3Ocb021tsVrJE+pMMPA+LuR86i5UgAAAAASUVORK5CYII=", - "s35n3p04.png", false, 35, 35, "b46d9ba87963f526624a6d485ff6465e"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACQAAAAkBAMAAAFkKbU9AAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAANlJREFUeJyNkb0KgzAURj/b+tO36CJdxUnBob5Ru3YKuGkHF3dxcHZyDlTQx2piTaJJC4bk43juvUEUiCgIO6/V8d6IVptMSUZx9HhmU0IwJwWe1+aOes7mV9ZzHr6JJfPAzcORbRCMC+Whcq5044bIgQoKXEGhcDn4svoqZRt9mQqyBXWQrpR9lSBHElRf9ZdgLdRVkCSqnaraqnozifXN61G0sT8siaINMGiqhq8rxDjpg7Fv3GUoOPFF72LvoF+/etipav4DtgosYSptELsHdXX2qaZa/jk/GoQXLvsYf8IAAAAASUVORK5CYII=", - "s36i3p04.png", false, 36, 36, "65e57e33b4763a3b0c3f0fa92295406d"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACQAAAAkBAMAAAATLoWrAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAHdJREFUeJxjYACBwu5llqpHoCQDFiEgxcCCLmTAcARdiIEVXWgBgyq6ENB0DCEsxlsqYDpClSwhBixCbBjGNwDdhe4ILE5F4lBXCBToqEILgEKMqEIMnKoHGNCEgCQWoULCQgYYNjJgsZGBWBvJE8L0EBZvgwMHAABJBMjTkay+AAAAAElFTkSuQmCC", - "s36n3p04.png", false, 36, 36, "65e57e33b4763a3b0c3f0fa92295406d"); - testPngSuiteImage("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", - "s37i3p04.png", false, 37, 37, "f21eff5c07a755577fea69c01459c65f"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACUAAAAlBAMAAAA3sD0wAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAMVJREFUeJxl0S0Og0AQhuEvoU36J+AGDSfYhAsgegAMHoWuq62sxOJWr6rHcAAO1dkppbMzD9kRmxB4M0D0kp58hUl6I4SAU5A8+r6jI3WoKmRVwmEcMKYGlPSJMnFFS8++lRosyzLH8TfjRnhsajwIj80dBeGxybnV9J4pUPV6+j/TS3e2V3M69ttrUK/RpKmiV6QylcoKLVerXXMnjd4NGrxqjbW212W2F0fbC9vbwPbOF91Lq96t+xXw26+MjUfFHuh8APqFElFWDb0cAAAAAElFTkSuQmCC", - "s37n3p04.png", false, 37, 37, "f21eff5c07a755577fea69c01459c65f"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACYAAAAmBAMAAAEtFMQLAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAANpJREFUeJylkT8LgkAchp/+WEFfokVapamDhvxGtTYduGmDi7s0NDc1Cwn6sTpF7w7PQEju9/L48N6pCMcCqeZuzeYjOfZT0I6sT1HNYtNkVHcpi5aB2/5xIW/z8TtzKzsDcbCOD5VaEknVY3yw7NrYaoABGucVxmJbmL2zUK0X7zTU6Gl8YWxqupnGlUGsbjYNUzR6ZzSGjFisbjjWbQrtdU2ewi/7JHkGlEOX4zsOwdLZK3z3PNexEjunp17FeYZ995dr/uR24JpvYoIb3euVlyl7x3pCnZd8AfUFRB95/EUWAAAAAElFTkSuQmCC", - "s38i3p04.png", false, 38, 38, "f6237240a70b5844def0406dc8f63bbd"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACYAAAAmBAMAAABaE/SdAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAGpJREFUeJxjYACBwu5llqpHYCQDNjEgzcCCIWbAcARDjIEVQ2wBgyqGGNAKTDFsdlgqYHGLKrliDNjE2DDtaAC6D8Mt2NyMzBs4MaDL0MUMgGLcaGLAuClgQBcDkmSLYTEPm72DyS3gsAIA8mkrg86sROEAAAAASUVORK5CYII=", - "s38n3p04.png", false, 38, 38, "f6237240a70b5844def0406dc8f63bbd"); - testPngSuiteImage("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", - "s39i3p04.png", false, 39, 39, "ceb3b33633c181e13ecee80b153fb602"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACcAAAAnBAMAAAB+jUwGAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAANVJREFUeJxt0iEOg0AQheFHSJuUGnqDhhOQcIEKDoDBo9A4LBKJxaFX4TEcgEN1ZklDZ2Z/YMQa+DIA3Cga/Bk20QrnHBInWtC2DT2iBkWBuJDlmCfMqgkZvSeTvVHTdatFFY7j2Hn8taOk/Lj6oKf8uOrwovy4Sr3b2p9k1faFvtPa6TBgN+UGftptZLdViv1nL0P2PmSX7ihV7JEXPhj2ttGxYidMV+7mznRlz2OmK/v0YDo0m25o+/kXGjfoDtED9g565dFv7WLlni/tDMeq7AxPli8bpjUVK/+f5gAAAABJRU5ErkJggg==", - "s39n3p04.png", false, 39, 39, "ceb3b33633c181e13ecee80b153fb602"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACgAAAAoBAMAAAEJ15XIAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAANpJREFUeJytjrEKgzAURa/FWmv7EV2kq2RS6FD/qK5OATd1cHEXB2cn50IL+lnVUBMxr4VCQ97N4ZC8POT+HcexclEQp/3g8GVBnHy4JANgT5kM66zjcx1jIxKLrFfpTFndROLN6aZPmdjgTKLjSUwXyL6gt+MSexCWAei2YVeKjXaBpUQotAoKAWPGTtmu/B1hzViEoPCqEK1EQ2GocGyWNXCfUdYEi0RW7QmJQJfcIiSaALqcltaTuvlJEiP9VZ7GAa21nCYBIUFIHHQJg3huUj3NiGvSHb9pXgoWak5w83t4AAAAAElFTkSuQmCC", - "s40i3p04.png", false, 40, 40, "140f0d2eb778dad4a1871c17767e2d48"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACgAAAAoBAMAAAB+0KVeAAAABGdBTUEAAYagMeiWXwAAAANzQklUBAQEd/i1owAAACdQTFRFAAAA/wB3AP//AP8AdwD/AHf/d/8A/wD//wAAAP93//8A/3cAAAD/9b8GOwAAAHVJREFUeJzN0LENgDAMRNFDiiwhlqBhiGxFNkifJagyBwWDEagQ/kXoSOHiyVZOp1K1HKnU+Jhi3BBHQCFGjxnRAGVRHms3Xq8LC51/Qurz99iacDg3tDcqpCyHbRLipgBXQk0ed8FHGggpUuCcuOnDYyF3dSfnZ1dwSF0UKQAAAABJRU5ErkJggg==", - "s40n3p04.png", false, 40, 40, "140f0d2eb778dad4a1871c17767e2d48"); - testPngSuiteImage("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", - "tbbn0g04.png", false, 32, 32, "d9b53613bd731e66dcfd5be93186c100"); - testPngSuiteImage("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", - "tbbn2c16.png", false, 32, 32, "75954a76132c3971509841e973f029cd"); - testPngSuiteImage("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", - "tbbn3p08.png", false, 32, 32, "d1f6636d81c74f163bfff1405bf406cf"); - testPngSuiteImage("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", - "tbgn2c16.png", false, 32, 32, "75954a76132c3971509841e973f029cd"); - testPngSuiteImage("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", - "tbgn3p08.png", false, 32, 32, "d1f6636d81c74f163bfff1405bf406cf"); - testPngSuiteImage("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", - "tbrn2c08.png", false, 32, 32, "75954a76132c3971509841e973f029cd"); - testPngSuiteImage("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", - "tbwn0g16.png", false, 32, 32, "56ea136a6e299452015ac02a7837e365"); - testPngSuiteImage("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", - "tbwn3p08.png", false, 32, 32, "d1f6636d81c74f163bfff1405bf406cf"); - testPngSuiteImage("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", - "tbyn3p08.png", false, 32, 32, "d1f6636d81c74f163bfff1405bf406cf"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAgMAAAAOFJJnAAAADFBMVEUAAP8AAP8AAP8AAP+1n0POAAAAA3RSTlMAVaoLuSc5AAAAFElEQVR4XmNkAIJQIB4sjFWDiwEAKxcVYRYzLkEAAAAASUVORK5CYII=", - "tm3n3p02.png", false, 32, 32, "82e044043a1f2c91533b2fea5e271daa"); - testPngSuiteImage("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", - "tp0n0g08.png", false, 32, 32, "38deadbdfb7b0ff5a2b4cad35e866b39"); - testPngSuiteImage("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", - "tp0n2c08.png", false, 32, 32, "c37c05b6929096c1736f91dccbe93d15"); - testPngSuiteImage("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", - "tp0n3p08.png", false, 32, 32, "985ccf415de9754ff21296de6cf69a38"); - testPngSuiteImage("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", - "tp1n3p08.png", false, 32, 32, "d1f6636d81c74f163bfff1405bf406cf"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAEAAADurUJNAAAABGdBTUEAAYagMeiWXwAAAEFJREFUeJxjZGAkABQIyLMMBQWMDwgp+PcfP2B5MBwUMMoRkGdkonlcDAYFjI/wyv7/z/iH5nExGBQwyuCVZWQEAFDl/nE14thZAAAAAElFTkSuQmCC", - "xc1n0g08.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAkAAAArGWqiAAAABGdBTUEAAYagMeiWXwAAAEhJREFUeJzt1cEJADAMAkCF7JH9t3ITO0Qr9KH4zuErtA0EO4AKFPgcoO3kfUx4QIECD0qHH8KEBxQo8KB0OCOpQIG7cHejwAGCsfleD0DPSwAAAABJRU5ErkJggg==", - "xc9n2c08.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); - testPngSuiteImage("iVBORw0NGg0AAAANSUhEUgAAACAAAAAgBAAAAACT4cgpAAAABGdBTUEAAYagMeiWXwAAAEhJREFUeJxjYGAQFFRSMjZ2cQkNTUsrL2cgQwCV29FBjgAqd+ZMcgRQuatWkSOAyt29mxwBVO6ZM+QIoHLv3iVHAJX77h0ZAgAfFO4B6v9B+gAAAABJRU5ErkJggg==", - "xcrn0g04.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAQAAAABbAUdZAAAABGdBTUEAAYagMeiWXwAAAFtJREFUeJwtzLEJAzAMBdHr0gSySiALejRvkBU8gsGNCmFFB1Hx4IovqurSpIRszqklUwbnUzRXEuIRsiG/SyY9G0JzJSVei9qynm9qyjBpLp0pYW7pbzBl8L8fEIdJL0NTVU0AAAAASUVORK5CYII=", - "xcsn0g01.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAAIAAADMaKZiAAAABGdBTUEAAYagMeiWXwAAAEhJREFUeJzt1cEJADAMAkCF7JH9t3ITO0Qr9KH4zuErtA0EO4AKFPgcoO3kfUx4QIECD0qHH8KEBxQo8KB0OCOpQIG7cHejwAGCsfleD0DPSwAAAABJRU5ErkJggg==", - "xd0n2c08.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAwIAAACLyNyyAAAABGdBTUEAAYagMeiWXwAAAEhJREFUeJzt1cEJADAMAkCF7JH9t3ITO0Qr9KH4zuErtA0EO4AKFPgcoO3kfUx4QIECD0qHH8KEBxQo8KB0OCOpQIG7cHejwAGCsfleD0DPSwAAAABJRU5ErkJggg==", - "xd3n2c08.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgYwIAAAAS+qv/AAAABGdBTUEAAYagMeiWXwAAAEhJREFUeJzt1cEJADAMAkCF7JH9t3ITO0Qr9KH4zuErtA0EO4AKFPgcoO3kfUx4QIECD0qHH8KEBxQo8KB0OCOpQIG7cHejwAGCsfleD0DPSwAAAABJRU5ErkJggg==", - "xd9n2c08.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgAQAAAABbAUdZAAAABGdBTUEAAYagMeiWXwAAAABJRU5ErkJggg==", - "xdtn0g01.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAAAAABDU1VNAAAABGdBTUEAAYagMeiWXwAAAEFJREFUeJxjZGAkABQIyLMMBQWMDwgp+PcfP2B5MBwUMMoRkGdkonlcDAYFjI/wyv7/z/iH5nExGBQwyuCVZWQEAFDl/nE14thZAAAAAElFTkSuQmCC", - "xhdn0g08.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); - testPngSuiteImage("iVBORwoKGgoAAAAKSUhEUgAAACAAAAAgBAAAAACT4cgpAAAABGdBTUEAAYagMeiWXwAAAEhJREFUeJxjYGAQFFRSMjZ2cQkKTUsrL2cgQwCV29FBjgAqd+ZMcgRQuatWkSOAyt29mxwBVO6ZM+QIoHLv3iVHAJX77h0ZAgAfFO4B6v9B+gAAAABJRU5ErkJggg==", - "xlfn0g04.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); - testPngSuiteImage("CVBORw0KGgoAAAANSUhEUgAAACAAAAAgAQAAAABbAUdZAAAABGdBTUEAAYagMeiWXwAAAFtJREFUeJwtzLEJAzAMBdHr0gSySiALejRvkBU8gsGNCmFFB1Hx4IovqurSpIRszqklUwbnUzRXEuIRsiG/SyY9G0JzJSVei9qynm9qyjBpLp0pYW7pbzBl8L8fEIdJL9AvFMkAAAAASUVORK5CYII=", - "xs1n0g01.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); - testPngSuiteImage("iVFORw0KGgoAAAANSUhEUgAAACAAAAAgAQAAAABbAUdZAAAABGdBTUEAAYagMeiWXwAAAFtJREFUeJwtzLEJAzAMBdHr0gSySiALejRvkBU8gsGNCmFFB1Hx4IovqurSpIRszqklUwbnUzRXEuIRsiG/SyY9G0JzJSVei9qynm9qyjBpLp0pYW7pbzBl8L8fEIdJL9AvFMkAAAAASUVORK5CYII=", - "xs2n0g01.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); - testPngSuiteImage("iVBOZw0KGgoAAAANSUhEUgAAACAAAAAgAQAAAABbAUdZAAAABGdBTUEAAYagMeiWXwAAAFtJREFUeJwtzLEJAzAMBdHr0gSySiALejRvkBU8gsGNCmFFB1Hx4IovqurSpIRszqklUwbnUzRXEuIRsiG/SyY9G0JzJSVei9qynm9qyjBpLp0pYW7pbzBl8L8fEIdJL9AvFMkAAAAASUVORK5CYII=", - "xs4n0g01.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); - testPngSuiteImage("iVBORw0KIAoAAAANSUhEUgAAACAAAAAgAQAAAABbAUdZAAAABGdBTUEAAYagMeiWXwAAAFtJREFUeJwtzLEJAzAMBdHr0gSySiALejRvkBU8gsGNCmFFB1Hx4IovqurSpIRszqklUwbnUzRXEuIRsiG/SyY9G0JzJSVei9qynm9qyjBpLp0pYW7pbzBl8L8fEIdJL9AvFMkAAAAASUVORK5CYII=", - "xs7n0g01.png", true, 32, 32, "d41d8cd98f00b204e9800998ecf8427e"); - 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- "z00n2c08.png", false, 32, 32, "6284c288d49534c897da4e50a9d05002"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAAr0lEQVR4XrXR3Q5AMAwF4Epc8P4Py91sIgxb15/TRUSC76Q9U0q0U7m28/5/Zl7Vv/Q+mwsZeJbQgIUoB+Q5Q07RidagCS79nADfwaNHBLx0eAdfHdtBQweuqK2jAro6JIDT/SUPdGfJY92zIpFuDpDqtg4UuqEDna5dkVpXBVh0eQdGXdiBXZesyKUPA7w6HwDQmZIxeq9kmN5cEVL/B4D1Twd4ve4gRL9XFKXngANVk05u39tDGQAAAABJRU5ErkJggg==", - "z03n2c08.png", false, 32, 32, "6284c288d49534c897da4e50a9d05002"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAAp0lEQVR4nLXRSw6AIBAD0JqwwPsfFna4MX4QYT4dVySS19BuraECFSg4D9158ktyLaEi8suhARnICSVQB/agF5x6UEW3HhHw0ukb9Dp3g4FOrGisswJ+dUrATPePvNCdI691T0Ui3Rwg1W0bKHTDBjpdW5FaVwVYdPkGRl24gV2XVOTSlwFefR5A0Ccjc/S/kWn6sCKm/g0g690GfP25QYh+VRSlA/kAVZNObjFSwSwAAAAASUVORK5CYII=", - "z06n2c08.png", false, 32, 32, "6284c288d49534c897da4e50a9d05002"); - testPngSuiteImage("iVBORw0KGgoAAAANSUhEUgAAACAAAAAgCAIAAAD8GO2jAAAAp0lEQVR42rXRSw6AIBAD0JqwwPsfFna4MX4QYT4dVySS19BuraECFSg4D9158ktyLaEi8suhARnICSVQB/agF5x6UEW3HhHw0ukb9Dp3g4FOrGisswJ+dUrATPePvNCdI691T0Ui3Rwg1W0bKHTDBjpdW5FaVwVYdPkGRl24gV2XVOTSlwFefR5A0Ccjc/S/kWn6sCKm/g0g690GfP25QYh+VRSlA/kAVZNObtYRvvUAAAAASUVORK5CYII=", - "z09n2c08.png", false, 32, 32, "6284c288d49534c897da4e50a9d05002"); -} - - -void testErrorImages() { - std::cout << "testErrorImages" << std::endl; - // Image with color type palette but missing PLTE chunk - testBase64Image("iVBORw0KGgoAAAANSUhEUgAAAQAAAAEAAgMAAAAhHED1AAAAU0lEQVR4Ae3MwQAAAAxFoXnM3/NDvGsBdB8JBAKBQCAQCAQCgUAgEAgEAoFAIBAIBAKBQCAQCAQCgUAgEAgEAoFAIBAIBAKBQCAQCAQCgUAgEEQDHGPAW1eyhK0AAAAASUVORK5CYII=", true, 256, 256, ""); -} - -void doMain() { - //PNG - testPngSuite(); - testErrorImages(); - testPNGCodec(); - testPaletteFilterTypesZero(); - testComplexPNG(); - testInspectChunk(); - testPredefinedFilters(); - testFuzzing(); - testEncoderErrors(); - testPaletteToPaletteDecode(); - testPaletteToPaletteDecode2(); - testColorProfile(); - testBkgdChunk(); - testBkgdChunk2(); - testSbitChunk(); - - //Colors -#ifndef DISABLE_SLOW - testFewColors(); -#endif // DISABLE_SLOW - testColorKeyConvert(); - testColorConvert(); - testColorConvert2(); - testPaletteToPaletteConvert(); - testRGBToPaletteConvert(); - test16bitColorEndianness(); - testAutoColorModels(); - testNoAutoConvert(); - testChrmToSrgb(); - testXYZ(); - testICC(); - testICCGray(); - - //Zlib - testCompressZlib(); - testHuffmanCodeLengths(); - testCustomZlibCompress(); - testCustomZlibCompress2(); - testCustomDeflate(); - testCustomZlibDecompress(); - testCustomInflate(); - // TODO: add test for huffman code with exactly 0 and 1 symbols present - - //lodepng_util - testChunkUtil(); - testGetFilterTypes(); - - std::cout << "\ntest successful" << std::endl; -} - -int main() { - try { - doMain(); - } - catch(...) { - std::cout << std::endl; - std::cout << "caught error!" << std::endl; - std::cout << "*** TEST FAILED ***" << std::endl; - } - - return 0; -} -#endif diff --git a/Marlin/lib/LodePNG/lodepng_util.cpp b/Marlin/lib/LodePNG/lodepng_util.cpp deleted file mode 100644 index 2b283df9ed..0000000000 --- a/Marlin/lib/LodePNG/lodepng_util.cpp +++ /dev/null @@ -1,1763 +0,0 @@ -/* -LodePNG Utils - -Copyright (c) 2005-2022 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ -#if 0 -#include "lodepng_util.h" -#include /* allocations */ - -namespace lodepng { - -LodePNGInfo getPNGHeaderInfo(const std::vector& png) { - unsigned w, h; - lodepng::State state; - lodepng_inspect(&w, &h, &state, png.empty() ? NULL : &png[0], png.size()); - return state.info_png; -} - -unsigned getChunkInfo(std::vector& names, std::vector& sizes, - const std::vector& png) { - // Listing chunks is based on the original file, not the decoded png info. - const unsigned char *chunk, *end; - end = &png.back() + 1; - chunk = &png.front() + 8; - - while(chunk < end && end - chunk >= 8) { - char type[5]; - lodepng_chunk_type(type, chunk); - if(std::string(type).size() != 4) return 1; - - unsigned length = lodepng_chunk_length(chunk); - names.push_back(type); - sizes.push_back(length); - chunk = lodepng_chunk_next_const(chunk, end); - } - return 0; -} - -unsigned getChunks(std::vector names[3], - std::vector > chunks[3], - const std::vector& png) { - const unsigned char *chunk, *next, *end; - end = &png.back() + 1; - chunk = &png.front() + 8; - - int location = 0; - - while(chunk < end && end - chunk >= 8) { - char type[5]; - lodepng_chunk_type(type, chunk); - std::string name(type); - if(name.size() != 4) return 1; - - next = lodepng_chunk_next_const(chunk, end); - - if(name == "IHDR") { - location = 0; - } else if(name == "PLTE") { - location = 1; - } else if(name == "IDAT") { - location = 2; - } else if(name == "IEND") { - break; // anything after IEND is not part of the PNG or the 3 groups here. - } else { - if(next >= end) return 1; // invalid chunk, content too far - names[location].push_back(name); - chunks[location].push_back(std::vector(chunk, next)); - } - - chunk = next; - } - return 0; -} - - -unsigned insertChunks(std::vector& png, - const std::vector > chunks[3]) { - const unsigned char *chunk, *begin, *end; - end = &png.back() + 1; - begin = chunk = &png.front() + 8; - - long l0 = 0; //location 0: IHDR-l0-PLTE (or IHDR-l0-l1-IDAT) - long l1 = 0; //location 1: PLTE-l1-IDAT (or IHDR-l0-l1-IDAT) - long l2 = 0; //location 2: IDAT-l2-IEND - - while(chunk < end && end - chunk >= 8) { - char type[5]; - lodepng_chunk_type(type, chunk); - std::string name(type); - if(name.size() != 4) return 1; - - if(name == "PLTE") { - if(l0 == 0) l0 = chunk - begin + 8; - } else if(name == "IDAT") { - if(l0 == 0) l0 = chunk - begin + 8; - if(l1 == 0) l1 = chunk - begin + 8; - } else if(name == "IEND") { - if(l2 == 0) l2 = chunk - begin + 8; - } - - chunk = lodepng_chunk_next_const(chunk, end); - } - - std::vector result; - result.insert(result.end(), png.begin(), png.begin() + l0); - for(size_t i = 0; i < chunks[0].size(); i++) result.insert(result.end(), chunks[0][i].begin(), chunks[0][i].end()); - result.insert(result.end(), png.begin() + l0, png.begin() + l1); - for(size_t i = 0; i < chunks[1].size(); i++) result.insert(result.end(), chunks[1][i].begin(), chunks[1][i].end()); - result.insert(result.end(), png.begin() + l1, png.begin() + l2); - for(size_t i = 0; i < chunks[2].size(); i++) result.insert(result.end(), chunks[2][i].begin(), chunks[2][i].end()); - result.insert(result.end(), png.begin() + l2, png.end()); - - png = result; - return 0; -} - -unsigned getFilterTypesInterlaced(std::vector >& filterTypes, - const std::vector& png) { - //Get color type and interlace type - lodepng::State state; - unsigned w, h; - unsigned error; - error = lodepng_inspect(&w, &h, &state, png.empty() ? NULL : &png[0], png.size()); - - if(error) return 1; - - //Read literal data from all IDAT chunks - const unsigned char *chunk, *begin, *end; - end = &png.back() + 1; - begin = chunk = &png.front() + 8; - - std::vector zdata; - - while(chunk < end && end - chunk >= 8) { - char type[5]; - lodepng_chunk_type(type, chunk); - if(std::string(type).size() != 4) break; //Probably not a PNG file - - if(std::string(type) == "IDAT") { - const unsigned char* cdata = lodepng_chunk_data_const(chunk); - unsigned clength = lodepng_chunk_length(chunk); - if(chunk + clength + 12 > end || clength > png.size() || chunk + clength + 12 < begin) { - // corrupt chunk length - return 1; - } - - for(unsigned i = 0; i < clength; i++) { - zdata.push_back(cdata[i]); - } - } - - chunk = lodepng_chunk_next_const(chunk, end); - } - - //Decompress all IDAT data (if the while loop ended early, this might fail) - std::vector data; - error = lodepng::decompress(data, zdata.empty() ? NULL : &zdata[0], zdata.size()); - - if(error) return 1; - - if(state.info_png.interlace_method == 0) { - filterTypes.resize(1); - - //A line is 1 filter byte + all pixels - size_t linebytes = 1 + lodepng_get_raw_size(w, 1, &state.info_png.color); - - for(size_t i = 0; i < data.size(); i += linebytes) { - filterTypes[0].push_back(data[i]); - } - } else { - //Interlaced - filterTypes.resize(7); - static const unsigned ADAM7_IX[7] = { 0, 4, 0, 2, 0, 1, 0 }; /*x start values*/ - static const unsigned ADAM7_IY[7] = { 0, 0, 4, 0, 2, 0, 1 }; /*y start values*/ - static const unsigned ADAM7_DX[7] = { 8, 8, 4, 4, 2, 2, 1 }; /*x delta values*/ - static const unsigned ADAM7_DY[7] = { 8, 8, 8, 4, 4, 2, 2 }; /*y delta values*/ - size_t pos = 0; - for(size_t j = 0; j < 7; j++) { - unsigned w2 = (w - ADAM7_IX[j] + ADAM7_DX[j] - 1) / ADAM7_DX[j]; - unsigned h2 = (h - ADAM7_IY[j] + ADAM7_DY[j] - 1) / ADAM7_DY[j]; - if(ADAM7_IX[j] >= w || ADAM7_IY[j] >= h) continue; - size_t linebytes = 1 + lodepng_get_raw_size(w2, 1, &state.info_png.color); - for(size_t i = 0; i < h2; i++) { - filterTypes[j].push_back(data[pos]); - pos += linebytes; - } - } - } - return 0; /* OK */ -} - - -unsigned getFilterTypes(std::vector& filterTypes, const std::vector& png) { - std::vector > passes; - unsigned error = getFilterTypesInterlaced(passes, png); - if(error) return error; - - if(passes.size() == 1) { - filterTypes.swap(passes[0]); - } else { - // Simplify interlaced filter types to get a single filter value per scanline: - // put pass 6 and 7 alternating in the one vector, these filters - // correspond to the closest to what it would be for non-interlaced - // image. If the image is only 1 pixel wide, pass 6 doesn't exist so the - // alternative values column0 are used. The shift values are to match - // the y position in the interlaced sub-images. - // NOTE: the values 0-6 match Adam7's passes 1-7. - const unsigned column0[8] = {0, 6, 4, 6, 2, 6, 4, 6}; - const unsigned column1[8] = {5, 6, 5, 6, 5, 6, 5, 6}; - const unsigned shift0[8] = {3, 1, 2, 1, 3, 1, 2, 1}; - const unsigned shift1[8] = {1, 1, 1, 1, 1, 1, 1, 1}; - lodepng::State state; - unsigned w, h; - lodepng_inspect(&w, &h, &state, png.empty() ? NULL : &png[0], png.size()); - const unsigned* column = w > 1 ? column1 : column0; - const unsigned* shift = w > 1 ? shift1 : shift0; - for(size_t i = 0; i < h; i++) { - filterTypes.push_back(passes[column[i & 7u]][i >> shift[i & 7u]]); - } - } - return 0; /* OK */ -} - -int getPaletteValue(const unsigned char* data, size_t i, int bits) { - if(bits == 8) return data[i]; - else if(bits == 4) return (data[i / 2] >> ((i % 2) * 4)) & 15; - else if(bits == 2) return (data[i / 4] >> ((i % 4) * 2)) & 3; - else if(bits == 1) return (data[i / 8] >> (i % 8)) & 1; - else return 0; -} - - -//////////////////////////////////////////////////////////////////////////////// - -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - - - -// Only temporarily here until this is integrated into lodepng.c(pp) -#define LODEPNG_MAX(a, b) (((a) > (b)) ? (a) : (b)) -#define LODEPNG_MIN(a, b) (((a) < (b)) ? (a) : (b)) - -// Only temporarily here until this is integrated into lodepng.c(pp) -#ifdef LODEPNG_COMPILE_ALLOCATORS -static void* lodepng_malloc(size_t size) { - return malloc(size); -} -static void lodepng_free(void* ptr) { - free(ptr); -} -#else /*LODEPNG_COMPILE_ALLOCATORS*/ -void* lodepng_malloc(size_t size); -void lodepng_free(void* ptr); -#endif /*LODEPNG_COMPILE_ALLOCATORS*/ - -/* define infinity and NaN in a way compatible with ANSI C90 (no INFINITY or NAN macros) yet also with visual studio */ -/* visual studio doesn't allow division through a zero literal, but allows it through public non-const variable set to zero */ -float lodepng_flt_zero_ = 0.0f; -static const float lodepng_flt_inf = 1.0f / lodepng_flt_zero_; /* infinity */ -static const float lodepng_flt_nan = 0.0f / lodepng_flt_zero_; /* not a number */ -static const float lodepng_flt_max = 3.40282346638528859811704183484516925e38f; /* avoid needing for FLT_MAX. This assumes IEEE 32-bit float. */ - -/* powf polyfill, 5-6 digits accurate, 33-80% slower than powf, assumes IEEE -32-bit float, but other than that multiplatform and no math lib needed -(note: powf also isn't in ISO C90, and pow is slower). */ -static float lodepng_powf(float x, float y) { - float j, t0, t1, l; - int i = 0; - /* handle all the special floating point rules */ - if(x == 1 || y == 0) return 1; /*these cases return 1 even if the other value is NaN, as specified*/ - if(y == 1) return x; /* preserves negative-0 */ - if(!(x > 0 && x <= lodepng_flt_max && y >= -lodepng_flt_max && y <= lodepng_flt_max)) { /*all special cases*/ - if(x != x || y != y) return x + y; /* nan */ - if(x > 0) { - if(x > lodepng_flt_max) return y <= 0 ? (y == 0 ? 1 : 0) : x; /* x = +infinity */ - } else { - if(!(y < -1073741824.0f || y > 1073741824.0f)) { /* large y always even integer, but cast would overflow */ - i = (int)y; /* not using floor: not using math lib */ - if(i != y) { - return (x < -lodepng_flt_max) ? (y < 0 ? 0 : lodepng_flt_inf) : - (x == 0 ? (y < 0 ? lodepng_flt_inf : 0) : lodepng_flt_nan); - } - if(i & 1) return x == 0 ? (y < 0 ? (1 / x) : x) : -lodepng_powf(-x, y); - } - if(x == 0) return y <= 0 ? lodepng_flt_inf : 0; - if(x < -lodepng_flt_max) { /* x == -infinity */ - return y <= 0 ? (y == 0 ? 1 : 0) : ((i & 1) ? - -lodepng_flt_inf : lodepng_flt_inf); - } - x = -x; - if(x == 1) return 1; /* under the C++ rules, pow(-1, +/- infinity) also returns 1 */ - } - if(y < -lodepng_flt_max || y > lodepng_flt_max) return ((x < 1) != (y > 0)) ? (y < 0 ? -y : y) : 0; - } - - l = x; - j = 0; - while(l < (1.0f / 65536)) { j -= 16; l *= 65536.0f; } - while(l > 65536) { j += 16; l *= (1.0f / 65536); } - while(l < 1) { j--; l *= 2.0f; } - while(l > 2) { j++; l *= 0.5f; } - /* polynomial to approximate log2(x) with x in range 1..2 */ - t0 = -0.393118410458557f + l * (-0.0883639468229365f + l * (0.466142650227994f + l * 0.0153397331014276f)); - t1 = 0.0907447971403586f + l * (0.388892024755479f + l * 0.137228280305862f); - l = t0 / t1 + j; - - l *= y; /* using the formula exp2(y * log2(x)) */ - - /* prevent int shift overflow, 0 or inf result are ok to return since exp will be taken, 127 is max float exponent */ - if(l <= -128.0f || l >= 128.0f) return ((x > 1) == (y > 0)) ? lodepng_flt_inf : 0; - i = (int)l; - l -= i; - /* polynomial to approximate exp2(x) with x in range -1..1 */ - t0 = 1.0f + l * (0.41777833582744256f + l * (0.0728482595347711f + l * 0.005635023478609625f)); - t1 = 1.0f + l * (-0.27537016151408167f + l * 0.023501446055084033f); - while(i <= -31) { t0 *= (1.0f / 2147483648.0f); i += 31; } - while(i >= 31) { t0 *= 2147483648.0f; i -= 31; } - return (i < 0) ? (t0 / (t1 * (1 << -i))) : ((t0 * (1 << i)) / t1); -} - -/* Parameters of a tone reproduction curve, either with a power law formula or with a lookup table. */ -typedef struct { - unsigned type; /* 0=linear, 1=lut, 2 = simple gamma, 3-6 = parametric (matches ICC parametric types 1-4) */ - float* lut; /* for type 1 */ - size_t lut_size; - float gamma; /* for type 2 and more */ - float a, b, c, d, e, f; /* parameters for type 3-7 */ -} LodePNGICCCurve; - -void lodepng_icc_curve_init(LodePNGICCCurve* curve) { - curve->lut = 0; - curve->lut_size = 0; -} - -void lodepng_icc_curve_cleanup(LodePNGICCCurve* curve) { - lodepng_free(curve->lut); -} - -/* Values parsed from ICC profile, see parseICC for more information about this subset.*/ -typedef struct { - /* 0 = color model not supported by PNG (CMYK, Lab, ...), 1 = gray, 2 = RGB */ - int inputspace; - int version_major; - int version_minor; - int version_bugfix; - - /* The whitepoint of the profile connection space (PCS). Should always be D50, but parsed and used anyway. - (to be clear, whitepoint and illuminant are synonyms in practice, but here field "illuminant" is ICC's - "global" whitepoint that is always D50, and the field "white" below allows deriving the whitepoint of - the particular RGB space represented here) */ - float illuminant[3]; - - /* if true, has chromatic adaptation matrix that must be used. If false, you must compute a chromatic adaptation - matrix yourself from "illuminant" and "white". */ - unsigned has_chad; - float chad[9]; /* chromatic adaptation matrix, if given */ - - /* The whitepoint of the RGB color space as stored in the ICC file. If has_chad, must be adapted with the - chad matrix to become the one we need to go to absolute XYZ (in fact ICC implies it should then be - exactly D50 in the file, redundantly, before this transformation with chad), else use as-is (then its - values can actually be something else than D50, and are the ones we need). */ - unsigned has_whitepoint; - float white[3]; - /* Chromaticities of the RGB space in XYZ color space, but given such that you must still - whitepoint adapt them from D50 to the RGB space whitepoint to go to absolute XYZ (if has_chad, - with chad, else with bradford adaptation matrix from illuminant to white). */ - unsigned has_chromaticity; - float red[3]; - float green[3]; - float blue[3]; - - unsigned has_trc; /* TRC = tone reproduction curve (aka "gamma correction") */ - - /* TRC's for the three channels (only first one used if grayscale) */ - LodePNGICCCurve trc[3]; -} LodePNGICC; - -void lodepng_icc_init(LodePNGICC* icc) { - lodepng_icc_curve_init(&icc->trc[0]); - lodepng_icc_curve_init(&icc->trc[1]); - lodepng_icc_curve_init(&icc->trc[2]); -} - -void lodepng_icc_cleanup(LodePNGICC* icc) { - lodepng_icc_curve_cleanup(&icc->trc[0]); - lodepng_icc_curve_cleanup(&icc->trc[1]); - lodepng_icc_curve_cleanup(&icc->trc[2]); -} - -/* ICC tone response curve, nonlinear (encoded) to linear. -Input and output in range 0-1. If color was integer 0-255, multiply with (1.0f/255) -to get the correct floating point behavior. -Outside of range 0-1, will not clip but either return x itself, or in cases -where it makes sense, a value defined by the same function. -NOTE: ICC requires clipping, but we do that only later when converting float to integer.*/ -static float iccForwardTRC(const LodePNGICCCurve* curve, float x) { - if(curve->type == 0) { - return x; - } - if(curve->type == 1) { /* Lookup table */ - float v0, v1, fraction; - size_t index; - if(!curve->lut) return 0; /* error */ - if(x < 0) return x; - index = (size_t)(x * (curve->lut_size - 1)); - if(index >= curve->lut_size) return x; - - /* LERP */ - v0 = curve->lut[index]; - v1 = (index + 1 < curve->lut_size) ? curve->lut[index + 1] : 1.0f; - fraction = (x * (curve->lut_size - 1)) - index; - return v0 * (1 - fraction) + v1 * fraction; - } - if(curve->type == 2) { - /* Gamma expansion */ - return (x > 0) ? lodepng_powf(x, curve->gamma) : x; - } - /* TODO: all the ones below are untested */ - if(curve->type == 3) { - if(x < 0) return x; - return x >= (-curve->b / curve->a) ? (lodepng_powf(curve->a * x + curve->b, curve->gamma) + curve->c) : 0; - } - if(curve->type == 4) { - if(x < 0) return x; - return x >= (-curve->b / curve->a) ? (lodepng_powf(curve->a * x + curve->b, curve->gamma) + curve->c) : curve->c; - } - if(curve->type == 5) { - return x >= curve->d ? (lodepng_powf(curve->a * x + curve->b, curve->gamma)) : (curve->c * x); - } - if(curve->type == 6) { - return x >= curve->d ? (lodepng_powf(curve->a * x + curve->b, curve->gamma) + curve->c) : (curve->c * x + curve->f); - } - return 0; -} - -/* ICC tone response curve, linear to nonlinear (encoded). -Input and output in range 0-1. Outside of that range, will not clip but either -return x itself, or in cases where it makes sense, a value defined by the same function. -NOTE: ICC requires clipping, but we do that only later when converting float to integer.*/ -static float iccBackwardTRC(const LodePNGICCCurve* curve, float x) { - if(curve->type == 0) { - return x; - } - if(curve->type == 1) { - size_t a, b, m; - float v; - if(x <= 0) return x; - if(x >= 1) return x; - /* binary search in the table */ - /* TODO: use faster way of inverting the lookup table */ - a = 0; - b = curve->lut_size; - for(;;) { - if(a == b) return curve->lut[a]; - if(a + 1 == b) { - /* LERP */ - float v0 = curve->lut[a]; - float v1 = curve->lut[b]; - float fraction; - if(v0 == v1) return v0; - fraction = (x - v0) / (v1 - v0); - return v0 * (1 - fraction) + v1 * fraction; - } - m = (a + b) / 2u; - v = curve->lut[m]; - if(v > x) { - b = m; - } else { - a = m; - } - } - } - if(curve->type == 2) { - /* Gamma compression */ - return (x > 0) ? lodepng_powf(x, 1.0f / curve->gamma) : x; - } - /* TODO: all the ones below are untested */ - if(curve->type == 3) { - if(x < 0) return x; - return x > 0 ? ((lodepng_powf(x, 1.0f / curve->gamma) - curve->b) / curve->a) : (-curve->b / curve->a); - } - if(curve->type == 4) { - if(x < 0) return x; - return x > curve->c ? - ((lodepng_powf(x - curve->c, 1.0f / curve->gamma) - curve->b) / curve->a) : - (-curve->b / curve->a); - } - if(curve->type == 5) { - return x > (curve->c * curve->d) ? - ((lodepng_powf(x, 1.0f / curve->gamma) - curve->b) / curve->a) : - (x / curve->c); - } - if(curve->type == 6) { - return x > (curve->c * curve->d + curve->f) ? - ((lodepng_powf(x - curve->c, 1.0f / curve->gamma) - curve->b) / curve->a) : - ((x - curve->f) / curve->c); - } - return 0; -} - -static unsigned decodeICCUint16(const unsigned char* data, size_t size, size_t* pos) { - *pos += 2; - if (*pos > size) return 0; - return (unsigned)((data[*pos - 2] << 8) | (data[*pos - 1])); -} - -static unsigned decodeICCUint32(const unsigned char* data, size_t size, size_t* pos) { - *pos += 4; - if (*pos > size) return 0; - return (unsigned)((data[*pos - 4] << 24) | (data[*pos - 3] << 16) | (data[*pos - 2] << 8) | (data[*pos - 1] << 0)); -} - -static int decodeICCInt32(const unsigned char* data, size_t size, size_t* pos) { - *pos += 4; - if (*pos > size) return 0; - /*TODO: this is incorrect if sizeof(int) != 4*/ - return (data[*pos - 4] << 24) | (data[*pos - 3] << 16) | (data[*pos - 2] << 8) | (data[*pos - 1] << 0); -} - -static float decodeICC15Fixed16(const unsigned char* data, size_t size, size_t* pos) { - return decodeICCInt32(data, size, pos) / 65536.0f; -} - -static unsigned isICCword(const unsigned char* data, size_t size, size_t pos, const char* word) { - if(pos + 4 > size) return 0; - return data[pos + 0] == (unsigned char)word[0] && - data[pos + 1] == (unsigned char)word[1] && - data[pos + 2] == (unsigned char)word[2] && - data[pos + 3] == (unsigned char)word[3]; -} - -/* Parses a subset of the ICC profile, supporting the necessary mix of ICC v2 -and ICC v4 required to correctly convert the RGB color space to XYZ. -Does not parse values not related to this specific PNG-related purpose, and -does not support non-RGB profiles or lookup-table based chroma (but it -supports lookup tables for TRC aka "gamma"). */ -static unsigned parseICC(LodePNGICC* icc, const unsigned char* data, size_t size) { - size_t i, j; - size_t pos = 0; - unsigned version; - unsigned inputspace; - size_t numtags; - - if(size < 132) return 1; /* Too small to be a valid icc profile. */ - - icc->has_chromaticity = 0; - icc->has_whitepoint = 0; - icc->has_trc = 0; - icc->has_chad = 0; - - icc->trc[0].type = icc->trc[1].type = icc->trc[2].type = 0; - icc->white[0] = icc->white[1] = icc->white[2] = 0; - icc->red[0] = icc->red[1] = icc->red[2] = 0; - icc->green[0] = icc->green[1] = icc->green[2] = 0; - icc->blue[0] = icc->blue[1] = icc->blue[2] = 0; - - pos = 8; - version = decodeICCUint32(data, size, &pos); - if(pos >= size) return 1; - icc->version_major = (int)((version >> 24) & 255); - icc->version_minor = (int)((version >> 20) & 15); - icc->version_bugfix = (int)((version >> 16) & 15); - - pos = 16; - inputspace = decodeICCUint32(data, size, &pos); - if(pos >= size) return 1; - if(inputspace == 0x47524159) { - /* The string "GRAY" as unsigned 32-bit int. */ - icc->inputspace = 1; - } else if(inputspace == 0x52474220) { - /* The string "RGB " as unsigned 32-bit int. */ - icc->inputspace = 2; - } else { - /* unsupported by PNG (CMYK, YCbCr, Lab, HSV, ...) */ - icc->inputspace = 0; - } - - /* Should always be 0.9642, 1.0, 0.8249 */ - pos = 68; - icc->illuminant[0] = decodeICC15Fixed16(data, size, &pos); - icc->illuminant[1] = decodeICC15Fixed16(data, size, &pos); - icc->illuminant[2] = decodeICC15Fixed16(data, size, &pos); - - pos = 128; - numtags = decodeICCUint32(data, size, &pos); - if(pos >= size) return 1; - /* scan for tags we want to handle */ - for(i = 0; i < numtags; i++) { - size_t offset; - unsigned tagsize; - size_t namepos = pos; - pos += 4; - offset = decodeICCUint32(data, size, &pos); - tagsize = decodeICCUint32(data, size, &pos); - if(pos >= size || offset >= size) return 1; - if(offset + tagsize > size) return 1; - if(tagsize < 8) return 1; - - if(isICCword(data, size, namepos, "wtpt")) { - offset += 8; /* skip tag and reserved */ - icc->white[0] = decodeICC15Fixed16(data, size, &offset); - icc->white[1] = decodeICC15Fixed16(data, size, &offset); - icc->white[2] = decodeICC15Fixed16(data, size, &offset); - icc->has_whitepoint = 1; - } else if(isICCword(data, size, namepos, "rXYZ")) { - offset += 8; /* skip tag and reserved */ - icc->red[0] = decodeICC15Fixed16(data, size, &offset); - icc->red[1] = decodeICC15Fixed16(data, size, &offset); - icc->red[2] = decodeICC15Fixed16(data, size, &offset); - icc->has_chromaticity = 1; - } else if(isICCword(data, size, namepos, "gXYZ")) { - offset += 8; /* skip tag and reserved */ - icc->green[0] = decodeICC15Fixed16(data, size, &offset); - icc->green[1] = decodeICC15Fixed16(data, size, &offset); - icc->green[2] = decodeICC15Fixed16(data, size, &offset); - icc->has_chromaticity = 1; - } else if(isICCword(data, size, namepos, "bXYZ")) { - offset += 8; /* skip tag and reserved */ - icc->blue[0] = decodeICC15Fixed16(data, size, &offset); - icc->blue[1] = decodeICC15Fixed16(data, size, &offset); - icc->blue[2] = decodeICC15Fixed16(data, size, &offset); - icc->has_chromaticity = 1; - } else if(isICCword(data, size, namepos, "chad")) { - offset += 8; /* skip datatype keyword "sf32" and reserved */ - for(j = 0; j < 9; j++) { - icc->chad[j] = decodeICC15Fixed16(data, size, &offset); - } - icc->has_chad = 1; - } else if(isICCword(data, size, namepos, "rTRC") || - isICCword(data, size, namepos, "gTRC") || - isICCword(data, size, namepos, "bTRC") || - isICCword(data, size, namepos, "kTRC")) { - char c = (char)data[namepos]; - /* both 'k' and 'r' are stored in channel 0 */ - int channel = (c == 'b') ? 2 : (c == 'g' ? 1 : 0); - /* "curv": linear, gamma power or LUT */ - if(isICCword(data, size, offset, "curv")) { - size_t count; - LodePNGICCCurve* trc = &icc->trc[channel]; - icc->has_trc = 1; - offset += 8; /* skip tag "curv" and reserved */ - count = decodeICCUint32(data, size, &offset); - if(count == 0) { - trc->type = 0; /* linear */ - } else if(count == 1) { - trc->type = 2; /* gamma */ - trc->gamma = decodeICCUint16(data, size, &offset) / 256.0f; - } else { - trc->type = 1; /* LUT */ - if(offset + count * 2 > size || count > 16777216) return 1; /* also avoid crazy count */ - trc->lut_size = count; - trc->lut = (float*)lodepng_malloc(count * sizeof(float)); - for(j = 0; j < count; j++) { - trc->lut[j] = decodeICCUint16(data, size, &offset) * (1.0f / 65535.0f); - } - } - } - /* "para": parametric formula with gamma power, multipliers, biases and comparison point */ - /* TODO: test this on a realistic sample */ - if(isICCword(data, size, offset, "para")) { - unsigned type; - LodePNGICCCurve* trc = &icc->trc[channel]; - icc->has_trc = 1; - offset += 8; /* skip tag "para" and reserved */ - type = decodeICCUint16(data, size, &offset); - offset += 2; - if(type > 4) return 1; /* unknown parametric curve type */ - trc->type = type + 2; - trc->gamma = decodeICC15Fixed16(data, size, &offset); - if(type >= 1) { - trc->a = decodeICC15Fixed16(data, size, &offset); - trc->b = decodeICC15Fixed16(data, size, &offset); - } - if(type >= 2) { - trc->c = decodeICC15Fixed16(data, size, &offset); - } - if(type >= 3) { - trc->d = decodeICC15Fixed16(data, size, &offset); - } - if(type == 4) { - trc->e = decodeICC15Fixed16(data, size, &offset); - trc->f = decodeICC15Fixed16(data, size, &offset); - } - } - /* TODO: verify: does the "chrm" tag participate in computation so should be parsed? */ - } - /* Return error if any parse went beyond the filesize. Note that the - parsing itself was always safe since it bound-checks inside. */ - if(offset > size) return 1; - } - - return 0; -} - -/* Multiplies 3 vector values with 3x3 matrix */ -static void mulMatrix(float* x2, float* y2, float* z2, const float* m, double x, double y, double z) { - /* double used as inputs even though in general the images are float, so the sums happen in - double precision, because float can give numerical problems for nearby values */ - *x2 = (float)(x * m[0] + y * m[1] + z * m[2]); - *y2 = (float)(x * m[3] + y * m[4] + z * m[5]); - *z2 = (float)(x * m[6] + y * m[7] + z * m[8]); -} - -static void mulMatrixMatrix(float* result, const float* a, const float* b) { - int i; - float temp[9]; /* temp is to allow result and a or b to be the same */ - mulMatrix(&temp[0], &temp[3], &temp[6], a, b[0], b[3], b[6]); - mulMatrix(&temp[1], &temp[4], &temp[7], a, b[1], b[4], b[7]); - mulMatrix(&temp[2], &temp[5], &temp[8], a, b[2], b[5], b[8]); - for(i = 0; i < 9; i++) result[i] = temp[i]; -} - -/* Inverts 3x3 matrix in place */ -static unsigned invMatrix(float* m) { - int i; - /* double used instead of float for intermediate computations to avoid - intermediate numerical precision issues */ - double e0 = (double)m[4] * m[8] - (double)m[5] * m[7]; - double e3 = (double)m[5] * m[6] - (double)m[3] * m[8]; - double e6 = (double)m[3] * m[7] - (double)m[4] * m[6]; - /* inverse determinant */ - double d = 1.0 / (m[0] * e0 + m[1] * e3 + m[2] * e6); - double result[9]; - if((d > 0 ? d : -d) > 1e15) return 1; /* error, likely not invertible */ - result[0] = e0 * d; - result[1] = ((double)m[2] * m[7] - (double)m[1] * m[8]) * d; - result[2] = ((double)m[1] * m[5] - (double)m[2] * m[4]) * d; - result[3] = e3 * d; - result[4] = ((double)m[0] * m[8] - (double)m[2] * m[6]) * d; - result[5] = ((double)m[3] * m[2] - (double)m[0] * m[5]) * d; - result[6] = e6 * d; - result[7] = ((double)m[6] * m[1] - (double)m[0] * m[7]) * d; - result[8] = ((double)m[0] * m[4] - (double)m[3] * m[1]) * d; - for(i = 0; i < 9; i++) m[i] = (float)result[i]; - return 0; /* ok */ -} - -/* Get the matrix to go from linear RGB to XYZ given the RGB whitepoint and chromaticities in XYZ colorspace */ -static unsigned getChrmMatrixXYZ(float* m, - float wX, float wY, float wZ, - float rX, float rY, float rZ, - float gX, float gY, float gZ, - float bX, float bY, float bZ) { - float t[9]; - float rs, gs, bs; - t[0] = rX; t[1] = gX; t[2] = bX; - t[3] = rY; t[4] = gY; t[5] = bY; - t[6] = rZ; t[7] = gZ; t[8] = bZ; - if(invMatrix(t)) return 1; /* error, not invertible */ - mulMatrix(&rs, &gs, &bs, t, wX, wY, wZ); - m[0] = rs * rX; m[1] = gs * gX; m[2] = bs * bX; - m[3] = rs * rY; m[4] = gs * gY; m[5] = bs * bY; - m[6] = rs * rZ; m[7] = gs * gZ; m[8] = bs * bZ; - return 0; -} - -/* Get the matrix to go from linear RGB to XYZ given the RGB whitepoint and chromaticities in xy colorspace */ -static unsigned getChrmMatrixXY(float* m, - float wx, float wy, - float rx, float ry, - float gx, float gy, - float bx, float by) { - if(wy == 0 || ry == 0 || gy == 0 || by == 0) { - return 1; /* error, division through zero */ - } else { - float wX = wx / wy, wY = 1, wZ = (1 - wx - wy) / wy; - float rX = rx / ry, rY = 1, rZ = (1 - rx - ry) / ry; - float gX = gx / gy, gY = 1, gZ = (1 - gx - gy) / gy; - float bX = bx / by, bY = 1, bZ = (1 - bx - by) / by; - return getChrmMatrixXYZ(m, wX, wY, wZ, rX, rY, rZ, gX, gY, gZ, bX, bY, bZ); - } -} - -/* Returns matrix that adapts from source whitepoint 0 to destination whitepoint 1. -Types: 0=XYZ scaling, 1=Bradford, 2=Vonkries */ -static unsigned getAdaptationMatrix(float* m, int type, - float wx0, float wy0, float wz0, - float wx1, float wy1, float wz1) { - int i; - static const float bradford[9] = { - 0.8951f, 0.2664f, -0.1614f, - -0.7502f, 1.7135f, 0.0367f, - 0.0389f, -0.0685f, 1.0296f - }; - static const float bradfordinv[9] = { - 0.9869929f, -0.1470543f, 0.1599627f, - 0.4323053f, 0.5183603f, 0.0492912f, - -0.0085287f, 0.0400428f, 0.9684867f - }; - static const float vonkries[9] = { - 0.40024f, 0.70760f, -0.08081f, - -0.22630f, 1.16532f, 0.04570f, - 0.00000f, 0.00000f, 0.91822f, - }; - static const float vonkriesinv[9] = { - 1.8599364f, -1.1293816f, 0.2198974f, - 0.3611914f, 0.6388125f, -0.0000064f, - 0.0000000f, 0.0000000f, 1.0890636f - }; - if(type == 0) { - for(i = 0; i < 9; i++) m[i] = 0; - m[0] = wx1 / wx0; - m[4] = wy1 / wy0; - m[8] = wz1 / wz0; - } else { - const float* cat = (type == 1) ? bradford : vonkries; - const float* inv = (type == 1) ? bradfordinv : vonkriesinv; - float rho0, gam0, bet0, rho1, gam1, bet1, rho2, gam2, bet2; - mulMatrix(&rho0, &gam0, &bet0, cat, wx0, wy0, wz0); - mulMatrix(&rho1, &gam1, &bet1, cat, wx1, wy1, wz1); - rho2 = rho1 / rho0; - gam2 = gam1 / gam0; - bet2 = bet1 / bet0; - /* Multiply diagonal matrix with cat */ - for(i = 0; i < 3; i++) { - m[i + 0] = rho2 * cat[i + 0]; - m[i + 3] = gam2 * cat[i + 3]; - m[i + 6] = bet2 * cat[i + 6]; - } - mulMatrixMatrix(m, inv, m); - } - return 0; /* ok */ -} - -/* validate whether the ICC profile is supported here for PNG */ -static unsigned validateICC(const LodePNGICC* icc) { - /* disable for unsupported things in the icc profile */ - if(icc->inputspace == 0) return 0; - /* if we didn't recognize both chrm and trc, then maybe the ICC uses data - types not supported here yet, so fall back to not using it. */ - if(icc->inputspace == 2) { - /* RGB profile should have chromaticities */ - if(!icc->has_chromaticity) return 0; - } - /* An ICC profile without whitepoint is invalid for the kind of profiles used here. */ - if(!icc->has_whitepoint) return 0; - if(!icc->has_trc) return 0; - return 1; /* ok */ -} - -/* Returns chromaticity matrix for given ICC profile, adapted from ICC's -global illuminant as necessary. -Also returns the profile's whitepoint. -In case of a gray profile (icc->inputspace == 1), the identity matrix will be returned -so in that case you could skip the transform. */ -static unsigned getICCChrm(float m[9], float whitepoint[3], const LodePNGICC* icc) { - size_t i; - if(icc->inputspace == 2) { /* RGB profile */ - float red[3], green[3], blue[3]; - float white[3]; /* the whitepoint of the RGB color space (absolute) */ - /* Adaptation matrix a. - This is an adaptation needed for ICC's file format (due to it using - an internal global illuminant unrelated to the actual images) */ - float a[9] = {1,0,0, 0,1,0, 0,0,1}; - /* If the profile has chromatic adaptation matrix "chad", use that one, - else compute it from the illuminant and whitepoint. */ - if(icc->has_chad) { - for(i = 0; i < 9; i++) a[i] = icc->chad[i]; - invMatrix(a); - } else { - if(getAdaptationMatrix(a, 1, icc->illuminant[0], icc->illuminant[1], icc->illuminant[2], - icc->white[0], icc->white[1], icc->white[2])) { - return 1; /* error computing matrix */ - } - } - /* If the profile has a chad, then also the RGB's whitepoint must also be adapted from it (and the one - given is normally D50). If it did not have a chad, then the whitepoint given is already the adapted one. */ - if(icc->has_chad) { - mulMatrix(&white[0], &white[1], &white[2], a, icc->white[0], icc->white[1], icc->white[2]); - } else { - for(i = 0; i < 3; i++) white[i] = icc->white[i]; - } - - mulMatrix(&red[0], &red[1], &red[2], a, icc->red[0], icc->red[1], icc->red[2]); - mulMatrix(&green[0], &green[1], &green[2], a, icc->green[0], icc->green[1], icc->green[2]); - mulMatrix(&blue[0], &blue[1], &blue[2], a, icc->blue[0], icc->blue[1], icc->blue[2]); - - if(getChrmMatrixXYZ(m, white[0], white[1], white[2], red[0], red[1], red[2], - green[0], green[1], green[2], blue[0], blue[1], blue[2])) { - return 1; /* error computing matrix */ - } - /* output absolute whitepoint of the original RGB model */ - whitepoint[0] = white[0]; - whitepoint[1] = white[1]; - whitepoint[2] = white[2]; - } else { - /* output the unity matrix, for doing no transform */ - m[0] = m[4] = m[8] = 1; - m[1] = m[2] = m[3] = m[5] = m[6] = m[7] = 0; - /* grayscale, don't do anything. That means we are implicitely using equal energy whitepoint "E", indicate - this to the output. */ - whitepoint[0] = whitepoint[1] = whitepoint[2] = 1; - } - return 0; /* success */ -} - -/* Outputs whitepoint and matrix to go from the icc or info profile (depending on what was in the PNG) to XYZ, -without applying any (rendering intent related) whitepoint adaptation */ -static unsigned getChrm(float m[9], float whitepoint[3], unsigned use_icc, - const LodePNGICC* icc, const LodePNGInfo* info) { - size_t i; - if(use_icc) { - if(getICCChrm(m, whitepoint, icc)) return 1; /* error in the matrix computations */ - } else if(info->chrm_defined && !info->srgb_defined) { - float wx = info->chrm_white_x / 100000.0f, wy = info->chrm_white_y / 100000.0f; - float rx = info->chrm_red_x / 100000.0f, ry = info->chrm_red_y / 100000.0f; - float gx = info->chrm_green_x / 100000.0f, gy = info->chrm_green_y / 100000.0f; - float bx = info->chrm_blue_x / 100000.0f, by = info->chrm_blue_y / 100000.0f; - if(getChrmMatrixXY(m, wx, wy, rx, ry, gx, gy, bx, by)) return 1; /* returns if error */ - /* Output whitepoint, xyY to XYZ: */ - whitepoint[0] = wx / wy; - whitepoint[1] = 1; - whitepoint[2] = (1 - wx - wy) / wy; - } else { - /* the standard linear sRGB to XYZ matrix */ - static const float srgb[9] = { - 0.4124564f, 0.3575761f, 0.1804375f, - 0.2126729f, 0.7151522f, 0.0721750f, - 0.0193339f, 0.1191920f, 0.9503041f - }; - for(i = 0; i < 9; i++) m[i] = srgb[i]; - /* sRGB's whitepoint xyY "0.3127,0.3290,1" in XYZ: */ - whitepoint[0] = 0.9504559270516716f; - whitepoint[1] = 1; - whitepoint[2] = 1.0890577507598784f; - } - return 0; -} - -/* Returns whether the color chunks in info represent the default PNG sRGB, -which is when either no colorometry fields are present at all, or an srgb -field or chrm/gama field with default values are present. -ICC chunks representing sRGB are currently considered not the same. */ -static unsigned isSRGB(const LodePNGInfo* info) { - if(!info) return 1; /* the default is considered sRGB. */ - - /* TODO: support some ICC profiles that represent sRGB too. Tricky due to - possible slight deviations and many ways of representing its gamma function. */ - if(info->iccp_defined) return 0; - - if(info->srgb_defined) return 1; - - /* The gamma chunk is unable to represent sRGB's two-part gamma, so cannot - be sRGB, even if it's the default 45455. */ - if(info->gama_defined) return 0; - - if(info->chrm_defined) { - if(info->chrm_white_x != 31270 || info->chrm_white_y != 32900) return 0; - if(info->chrm_red_x != 64000 || info->chrm_red_y != 33000) return 0; - if(info->chrm_green_x != 30000 || info->chrm_green_y != 60000) return 0; - if(info->chrm_blue_x != 15000 || info->chrm_blue_y != 6000) return 0; - } - - return 1; -} - -/* Checks whether the RGB models are equal (chromaticities, ...). The raw byte -format is allowed to be different. Input pointers are allowed to be null, -they then represent the default PNG sRGB (same as having no color model -chunks at all or an srgb chunk in the PNG) */ -static unsigned modelsEqual(const LodePNGState* state_a, - const LodePNGState* state_b) { - size_t i; - const LodePNGInfo* a = state_a ? &state_a->info_png : 0; - const LodePNGInfo* b = state_b ? &state_b->info_png : 0; - if(isSRGB(a) != isSRGB(b)) return 0; - /* now a and b are guaranteed to be non-NULL */ - if(a->iccp_defined != b->iccp_defined) return 0; - if(a->iccp_defined) { - if(a->iccp_profile_size != b->iccp_profile_size) return 0; - /* TODO: return equal in more cases, such as when two ICC profiles that are - not byte-for-byte equal, but represent the same color model. */ - for(i = 0; i < a->iccp_profile_size; i++) { - if(a->iccp_profile[i] != b->iccp_profile[i]) return 0; - } - /* since the ICC model overrides gamma and chrm, those can be ignored. */ - /* TODO: this doesn't cover the case where the ICC profile is invalid */ - return 1; - } - - if(a->srgb_defined != b->srgb_defined) return 0; - if(a->srgb_defined) { - /* since the sRGB model overrides gamma and chrm, those can be ignored. - srgb_intent not checked since the conversion ignores it */ - return 1; - } - - if(a->gama_defined != b->gama_defined) return 0; - if(a->gama_defined) { - if(a->gama_gamma != b->gama_gamma) return 0; - } - - if(a->chrm_defined != b->chrm_defined) return 0; - if(a->chrm_defined) { - if(a->chrm_white_x != b->chrm_white_x) return 0; - if(a->chrm_white_y != b->chrm_white_y) return 0; - if(a->chrm_red_x != b->chrm_red_x) return 0; - if(a->chrm_red_y != b->chrm_red_y) return 0; - if(a->chrm_green_x != b->chrm_green_x) return 0; - if(a->chrm_green_y != b->chrm_green_y) return 0; - if(a->chrm_blue_x != b->chrm_blue_x) return 0; - if(a->chrm_blue_y != b->chrm_blue_y) return 0; - } - - return 1; -} - -/* Converts in-place. Does not clamp. Do not use for integer input, make table instead there. */ -static void convertToXYZ_gamma(float* out, const float* in, unsigned w, unsigned h, - const LodePNGInfo* info, unsigned use_icc, const LodePNGICC* icc) { - size_t i, c; - size_t n = w * h; - for(i = 0; i < n * 4; i++) { - out[i] = in[i]; - } - if(use_icc) { - for(i = 0; i < n; i++) { - for(c = 0; c < 3; c++) { - /* TODO: this is likely very slow */ - out[i * 4 + c] = iccForwardTRC(&icc->trc[c], in[i * 4 + c]); - } - } - } else if(info->gama_defined && !info->srgb_defined) { - /* nothing to do if gamma is 1 */ - if(info->gama_gamma != 100000) { - float gamma = 100000.0f / info->gama_gamma; - for(i = 0; i < n; i++) { - for(c = 0; c < 3; c++) { - float v = in[i * 4 + c]; - out[i * 4 + c] = (v <= 0) ? v : lodepng_powf(v, gamma); - } - } - } - } else { - for(i = 0; i < n; i++) { - for(c = 0; c < 3; c++) { - /* sRGB gamma expand */ - float v = in[i * 4 + c]; - out[i * 4 + c] = (v < 0.04045f) ? (v / 12.92f) : lodepng_powf((v + 0.055f) / 1.055f, 2.4f); - } - } - } -} - -/* Same as convertToXYZ_gamma, but creates a lookup table rather than operating on an image */ -static void convertToXYZ_gamma_table(float* out, size_t n, size_t c, - const LodePNGInfo* info, unsigned use_icc, const LodePNGICC* icc) { - size_t i; - float mul = 1.0f / (n - 1); - if(use_icc) { - for(i = 0; i < n; i++) { - float v = i * mul; - out[i] = iccForwardTRC(&icc->trc[c], v); - } - } else if(info->gama_defined && !info->srgb_defined) { - /* no power needed if gamma is 1 */ - if(info->gama_gamma == 100000) { - for(i = 0; i < n; i++) { - out[i] = i * mul; - } - } else { - float gamma = 100000.0f / info->gama_gamma; - for(i = 0; i < n; i++) { - float v = i * mul; - out[i] = lodepng_powf(v, gamma); - } - } - } else { - for(i = 0; i < n; i++) { - /* sRGB gamma expand */ - float v = i * mul; - out[i] = (v < 0.04045f) ? (v / 12.92f) : lodepng_powf((v + 0.055f) / 1.055f, 2.4f); - } - } -} - -/* In-place */ -static unsigned convertToXYZ_chrm(float* im, unsigned w, unsigned h, - const LodePNGInfo* info, unsigned use_icc, const LodePNGICC* icc, - float whitepoint[3]) { - unsigned error = 0; - size_t i; - size_t n = w * h; - float m[9]; /* XYZ to linear RGB matrix */ - - /* Must be called even for grayscale, to get the correct whitepoint to output */ - error = getChrm(m, whitepoint, use_icc, icc, info); - if(error) return error; - - /* Note: no whitepoint adaptation done to m here, because we only do the - adaptation in convertFromXYZ (we only whitepoint adapt when going to the - target RGB space, but here we're going from the source RGB space to XYZ) */ - - /* Apply the above computed linear-RGB-to-XYZ matrix to the pixels. - Skip the transform if it's the unit matrix (which is the case if grayscale profile) */ - if(!use_icc || icc->inputspace == 2) { - for(i = 0; i < n; i++) { - size_t j = i * 4; - mulMatrix(&im[j + 0], &im[j + 1], &im[j + 2], m, im[j + 0], im[j + 1], im[j + 2]); - } - } - - return 0; -} - -unsigned convertToXYZ(float* out, float whitepoint[3], const unsigned char* in, - unsigned w, unsigned h, const LodePNGState* state) { - unsigned error = 0; - size_t i; - size_t n = w * h; - const LodePNGColorMode* mode_in = &state->info_raw; - const LodePNGInfo* info = &state->info_png; - unsigned char* data = 0; - float* gammatable = 0; - int bit16 = mode_in->bitdepth > 8; - size_t num = bit16 ? 65536 : 256; - LodePNGColorMode tempmode = lodepng_color_mode_make(LCT_RGBA, bit16 ? 16 : 8); - - - unsigned use_icc = 0; - LodePNGICC icc; - lodepng_icc_init(&icc); - if(info->iccp_defined) { - error = parseICC(&icc, info->iccp_profile, info->iccp_profile_size); - if(error) goto cleanup; /* corrupted ICC profile */ - use_icc = validateICC(&icc); - } - - data = (unsigned char*)lodepng_malloc(w * h * (bit16 ? 8 : 4)); - error = lodepng_convert(data, in, &tempmode, mode_in, w, h); - if(error) goto cleanup; - - /* Handle transfer function */ - { - float* gammatable_r; - float* gammatable_g; - float* gammatable_b; - - /* RGB ICC, can have three different transfer functions */ - if(use_icc && icc.inputspace == 2) { - gammatable = (float*)lodepng_malloc(num * 3 * sizeof(float)); - gammatable_r = &gammatable[num * 0]; - gammatable_g = &gammatable[num * 1]; - gammatable_b = &gammatable[num * 2]; - convertToXYZ_gamma_table(gammatable_r, num, 0, info, use_icc, &icc); - convertToXYZ_gamma_table(gammatable_g, num, 1, info, use_icc, &icc); - convertToXYZ_gamma_table(gammatable_b, num, 2, info, use_icc, &icc); - } else { - gammatable = (float*)lodepng_malloc(num * sizeof(float)); - gammatable_r = gammatable_g = gammatable_b = gammatable; - convertToXYZ_gamma_table(gammatable, num, 0, info, use_icc, &icc); - } - - if(bit16) { - for(i = 0; i < n; i++) { - out[i * 4 + 0] = gammatable_r[data[i * 8 + 0] * 256u + data[i * 8 + 1]]; - out[i * 4 + 1] = gammatable_g[data[i * 8 + 2] * 256u + data[i * 8 + 3]]; - out[i * 4 + 2] = gammatable_b[data[i * 8 + 4] * 256u + data[i * 8 + 5]]; - out[i * 4 + 3] = (data[i * 8 + 6] * 256 + data[i * 8 + 7]) * (1 / 65535.0f); - } - } else { - for(i = 0; i < n; i++) { - out[i * 4 + 0] = gammatable_r[data[i * 4 + 0]]; - out[i * 4 + 1] = gammatable_g[data[i * 4 + 1]]; - out[i * 4 + 2] = gammatable_b[data[i * 4 + 2]]; - out[i * 4 + 3] = data[i * 4 + 3] * (1 / 255.0f); - } - } - } - - convertToXYZ_chrm(out, w, h, info, use_icc, &icc, whitepoint); - -cleanup: - lodepng_icc_cleanup(&icc); - lodepng_free(data); - lodepng_free(gammatable); - return error; -} - -unsigned convertToXYZFloat(float* out, float whitepoint[3], const float* in, - unsigned w, unsigned h, const LodePNGState* state) { - unsigned error = 0; - const LodePNGInfo* info = &state->info_png; - - unsigned use_icc = 0; - LodePNGICC icc; - lodepng_icc_init(&icc); - if(info->iccp_defined) { - error = parseICC(&icc, info->iccp_profile, info->iccp_profile_size); - if(error) goto cleanup; /* corrupted ICC profile */ - use_icc = validateICC(&icc); - } - /* Input is floating point, so lookup table cannot be used, but it's ensured to - use float pow, not the slower double pow. */ - convertToXYZ_gamma(out, in, w, h, info, use_icc, &icc); - convertToXYZ_chrm(out, w, h, info, use_icc, &icc, whitepoint); - -cleanup: - lodepng_icc_cleanup(&icc); - return error; -} - -static unsigned convertFromXYZ_chrm(float* out, const float* in, unsigned w, unsigned h, - const LodePNGInfo* info, unsigned use_icc, const LodePNGICC* icc, - const float whitepoint[3], unsigned rendering_intent) { - size_t i; - size_t n = w * h; - - float m[9]; /* XYZ to linear RGB matrix */ - float white[3]; /* The whitepoint (absolute) of the target RGB space */ - - if(getChrm(m, white, use_icc, icc, info)) return 1; - if(invMatrix(m)) return 1; /* error, not invertible */ - - /* for relative rendering intent (any except absolute "3"), must whitepoint adapt to the original whitepoint. - this also ensures grayscale stays grayscale (with absolute, grayscale could become e.g. blue or sepia) */ - if(rendering_intent != 3) { - float a[9] = {1,0,0, 0,1,0, 0,0,1}; - /* "white" = absolute whitepoint of the new target RGB space, read from the target color profile. - "whitepoint" is original absolute whitepoint (input as parameter of this function) of an - RGB space the XYZ data once had before it was converted to XYZ, in other words the whitepoint that - we want to adapt our current data to to make sure values that had equal R==G==B in the old space have - the same property now (white stays white and gray stays gray). - Note: "absolute" whitepoint above means, can be used as-is, not needing further adaptation itself like icc.white does.*/ - if(getAdaptationMatrix(a, 1, whitepoint[0], whitepoint[1], whitepoint[2], white[0], white[1], white[2])) { - return 1; - } - /* multiply the from xyz matrix with the adaptation matrix: in total, - the resulting matrix first adapts in XYZ space, then converts to RGB*/ - mulMatrixMatrix(m, m, a); - } - - /* Apply the above computed XYZ-to-linear-RGB matrix to the pixels. - This transformation also includes the whitepoint adaptation. The transform - can be skipped only if it's the unit matrix (only if grayscale profile and no - whitepoint adaptation, such as with rendering intent 3)*/ - if(!use_icc || icc->inputspace == 2 || rendering_intent != 3) { - for(i = 0; i < n; i++) { - size_t j = i * 4; - mulMatrix(&out[j + 0], &out[j + 1], &out[j + 2], m, in[j + 0], in[j + 1], in[j + 2]); - out[j + 3] = in[j + 3]; - } - } else { - for(i = 0; i < n * 4; i++) { - out[i] = in[i]; - } - } - - return 0; -} - -/* Converts in-place. Does not clamp. */ -static void convertFromXYZ_gamma(float* im, unsigned w, unsigned h, - const LodePNGInfo* info, unsigned use_icc, const LodePNGICC* icc) { - size_t i, c; - size_t n = w * h; - if(use_icc) { - for(i = 0; i < n; i++) { - for(c = 0; c < 3; c++) { - /* TODO: this is likely very slow */ - im[i * 4 + c] = iccBackwardTRC(&icc->trc[c], im[i * 4 + c]); - } - } - } else if(info->gama_defined && !info->srgb_defined) { - /* nothing to do if gamma is 1 */ - if(info->gama_gamma != 100000) { - float gamma = info->gama_gamma / 100000.0f; - for(i = 0; i < n; i++) { - for(c = 0; c < 3; c++) { - if(im[i * 4 + c] > 0) im[i * 4 + c] = lodepng_powf(im[i * 4 + c], gamma); - } - } - } - } else { - for(i = 0; i < n; i++) { - for(c = 0; c < 3; c++) { - /* sRGB gamma compress */ - float* v = &im[i * 4 + c]; - *v = (*v < 0.0031308f) ? (*v * 12.92f) : (1.055f * lodepng_powf(*v, 1 / 2.4f) - 0.055f); - } - } - } -} - -unsigned convertFromXYZ(unsigned char* out, const float* in, unsigned w, unsigned h, - const LodePNGState* state, - const float whitepoint[3], unsigned rendering_intent) { - unsigned error = 0; - size_t i, c; - size_t n = w * h; - const LodePNGColorMode* mode_out = &state->info_raw; - const LodePNGInfo* info = &state->info_png; - int bit16 = mode_out->bitdepth > 8; - float* im = 0; - unsigned char* data = 0; - - /* parse ICC if present */ - unsigned use_icc = 0; - LodePNGICC icc; - lodepng_icc_init(&icc); - if(info->iccp_defined) { - error = parseICC(&icc, info->iccp_profile, info->iccp_profile_size); - if(error) goto cleanup; /* corrupted ICC profile */ - use_icc = validateICC(&icc); - } - - /* Handle gamut */ - im = (float*)lodepng_malloc(w * h * 4 * sizeof(float)); - error = convertFromXYZ_chrm(im, in, w, h, info, use_icc, &icc, whitepoint, rendering_intent); - if(error) goto cleanup; - - /* Handle transfer function */ - /* Input is floating point, so lookup table cannot be used, but it's ensured to use float pow, not the slower double pow. */ - convertFromXYZ_gamma(im, w, h, info, use_icc, &icc); - - /* Convert to integer output */ - data = (unsigned char*)lodepng_malloc(w * h * 8); - /* TODO: check if also 1/2/4 bit case needed: rounding is at different fine-grainedness for 8 and 16 bits below. */ - if(bit16) { - LodePNGColorMode mode16 = lodepng_color_mode_make(LCT_RGBA, 16); - for(i = 0; i < n; i++) { - for(c = 0; c < 4; c++) { - size_t j = i * 8 + c * 2; - int i16 = (int)(0.5f + 65535.0f * LODEPNG_MIN(LODEPNG_MAX(0.0f, im[i * 4 + c]), 1.0f)); - data[j + 0] = (unsigned char)(i16 >> 8); - data[j + 1] = (unsigned char)(i16 & 255); - } - } - error = lodepng_convert(out, data, mode_out, &mode16, w, h); - if(error) goto cleanup; - } else { - LodePNGColorMode mode8 = lodepng_color_mode_make(LCT_RGBA, 8); - for(i = 0; i < n; i++) { - for(c = 0; c < 4; c++) { - data[i * 4 + c] = (unsigned char)(0.5f + 255.0f * LODEPNG_MIN(LODEPNG_MAX(0.0f, im[i * 4 + c]), 1.0f)); - } - } - error = lodepng_convert(out, data, mode_out, &mode8, w, h); - if(error) goto cleanup; - } - -cleanup: - lodepng_icc_cleanup(&icc); - lodepng_free(im); - lodepng_free(data); - return error; -} - -unsigned convertFromXYZFloat(float* out, const float* in, unsigned w, unsigned h, - const LodePNGState* state, - const float whitepoint[3], unsigned rendering_intent) { - unsigned error = 0; - const LodePNGInfo* info = &state->info_png; - - /* parse ICC if present */ - unsigned use_icc = 0; - LodePNGICC icc; - lodepng_icc_init(&icc); - if(info->iccp_defined) { - error = parseICC(&icc, info->iccp_profile, info->iccp_profile_size); - if(error) goto cleanup; /* corrupted ICC profile */ - use_icc = validateICC(&icc); - } - - /* Handle gamut */ - error = convertFromXYZ_chrm(out, in, w, h, info, use_icc, &icc, whitepoint, rendering_intent); - if(error) goto cleanup; - - /* Handle transfer function */ - convertFromXYZ_gamma(out, w, h, info, use_icc, &icc); - -cleanup: - lodepng_icc_cleanup(&icc); - return error; -} - -unsigned convertRGBModel(unsigned char* out, const unsigned char* in, - unsigned w, unsigned h, - const LodePNGState* state_out, - const LodePNGState* state_in, - unsigned rendering_intent) { - if(modelsEqual(state_in, state_out)) { - return lodepng_convert(out, in, &state_out->info_raw, &state_in->info_raw, w, h); - } else { - unsigned error = 0; - float* xyz = (float*)lodepng_malloc(w * h * 4 * sizeof(float)); - float whitepoint[3]; - error = convertToXYZ(xyz, whitepoint, in, w, h, state_in); - if (!error) error = convertFromXYZ(out, xyz, w, h, state_out, whitepoint, rendering_intent); - lodepng_free(xyz); - return error; - } -} - -unsigned convertToSrgb(unsigned char* out, const unsigned char* in, - unsigned w, unsigned h, - const LodePNGState* state_in) { - LodePNGState srgb; - lodepng_state_init(&srgb); - lodepng_color_mode_copy(&srgb.info_raw, &state_in->info_raw); - return convertRGBModel(out, in, w, h, &srgb, state_in, 1); -} - -unsigned convertFromSrgb(unsigned char* out, const unsigned char* in, - unsigned w, unsigned h, - const LodePNGState* state_out) { - LodePNGState srgb; - lodepng_state_init(&srgb); - lodepng_color_mode_copy(&srgb.info_raw, &state_out->info_raw); - return convertRGBModel(out, in, w, h, state_out, &srgb, 1); -} - -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - -//////////////////////////////////////////////////////////////////////////////// - - - -//This uses a stripped down version of picoPNG to extract detailed zlib information while decompressing. -static const unsigned long LENBASE[29] = {3,4,5,6,7,8,9,10,11,13,15,17,19,23,27,31,35,43,51,59,67,83,99,115,131,163,195,227,258}; -static const unsigned long LENEXTRA[29] = {0,0,0,0,0,0,0, 0, 1, 1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3, 4, 4, 4, 4, 5, 5, 5, 5, 0}; -static const unsigned long DISTBASE[30] = {1,2,3,4,5,7,9,13,17,25,33,49,65,97,129,193,257,385,513,769,1025,1537,2049,3073,4097,6145,8193,12289,16385,24577}; -static const unsigned long DISTEXTRA[30] = {0,0,0,0,1,1,2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8, 8, 9, 9, 10, 10, 11, 11, 12, 12, 13, 13}; -static const unsigned long CLCL[19] = {16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15}; //code length code lengths - -struct ExtractZlib { // Zlib decompression and information extraction - std::vector* zlibinfo; - ExtractZlib(std::vector* info) : zlibinfo(info) {}; - int error; - - unsigned long readBitFromStream(size_t& bitp, const unsigned char* bits) { - unsigned long result = (bits[bitp >> 3] >> (bitp & 0x7)) & 1; - bitp++; - return result; - } - - unsigned long readBitsFromStream(size_t& bitp, const unsigned char* bits, size_t nbits) { - unsigned long result = 0; - for(size_t i = 0; i < nbits; i++) result += (readBitFromStream(bitp, bits)) << i; - return result; - } - - struct HuffmanTree { - int makeFromLengths(const std::vector& bitlen, unsigned long maxbitlen) { //make tree given the lengths - unsigned long numcodes = (unsigned long)(bitlen.size()), treepos = 0, nodefilled = 0; - std::vector tree1d(numcodes), blcount(maxbitlen + 1, 0), nextcode(maxbitlen + 1, 0); - //count number of instances of each code length - for(unsigned long bits = 0; bits < numcodes; bits++) blcount[bitlen[bits]]++; - for(unsigned long bits = 1; bits <= maxbitlen; bits++) { - nextcode[bits] = (nextcode[bits - 1] + blcount[bits - 1]) << 1; - } - //generate all the codes - for(unsigned long n = 0; n < numcodes; n++) if(bitlen[n] != 0) tree1d[n] = nextcode[bitlen[n]]++; - tree2d.clear(); tree2d.resize(numcodes * 2, 32767); //32767 here means the tree2d isn't filled there yet - for(unsigned long n = 0; n < numcodes; n++) //the codes - for(unsigned long i = 0; i < bitlen[n]; i++) { //the bits for this code - unsigned long bit = (tree1d[n] >> (bitlen[n] - i - 1)) & 1; - if(treepos > numcodes - 2) return 55; - if(tree2d[2 * treepos + bit] == 32767) { //not yet filled in - if(i + 1 == bitlen[n]) { - //last bit - tree2d[2 * treepos + bit] = n; - treepos = 0; - } else { - //addresses are encoded as values > numcodes - tree2d[2 * treepos + bit] = ++nodefilled + numcodes; - treepos = nodefilled; - } - } - else treepos = tree2d[2 * treepos + bit] - numcodes; //subtract numcodes from address to get address value - } - return 0; - } - int decode(bool& decoded, unsigned long& result, size_t& treepos, unsigned long bit) const { //Decodes a symbol from the tree - unsigned long numcodes = (unsigned long)tree2d.size() / 2; - if(treepos >= numcodes) return 11; //error: you appeared outside the codetree - result = tree2d[2 * treepos + bit]; - decoded = (result < numcodes); - treepos = decoded ? 0 : result - numcodes; - return 0; - } - //2D representation of a huffman tree: one dimension is "0" or "1", the other contains all nodes and leaves. - std::vector tree2d; - }; - - void inflate(std::vector& out, const std::vector& in, size_t inpos = 0) { - size_t bp = 0, pos = 0; //bit pointer and byte pointer - error = 0; - unsigned long BFINAL = 0; - while(!BFINAL && !error) { - size_t uncomprblockstart = pos; - size_t bpstart = bp; - if(bp >> 3 >= in.size()) { error = 52; return; } //error, bit pointer will jump past memory - BFINAL = readBitFromStream(bp, &in[inpos]); - unsigned long BTYPE = readBitFromStream(bp, &in[inpos]); BTYPE += 2 * readBitFromStream(bp, &in[inpos]); - zlibinfo->resize(zlibinfo->size() + 1); - zlibinfo->back().btype = BTYPE; - if(BTYPE == 3) { error = 20; return; } //error: invalid BTYPE - else if(BTYPE == 0) inflateNoCompression(out, &in[inpos], bp, pos, in.size()); - else inflateHuffmanBlock(out, &in[inpos], bp, pos, in.size(), BTYPE); - size_t uncomprblocksize = pos - uncomprblockstart; - zlibinfo->back().compressedbits = bp - bpstart; - zlibinfo->back().uncompressedbytes = uncomprblocksize; - } - } - - void generateFixedTrees(HuffmanTree& tree, HuffmanTree& treeD) { //get the tree of a deflated block with fixed tree - std::vector bitlen(288, 8), bitlenD(32, 5);; - for(size_t i = 144; i <= 255; i++) bitlen[i] = 9; - for(size_t i = 256; i <= 279; i++) bitlen[i] = 7; - tree.makeFromLengths(bitlen, 15); - treeD.makeFromLengths(bitlenD, 15); - } - - //the code tree for Huffman codes, dist codes, and code length codes - HuffmanTree codetree, codetreeD, codelengthcodetree; - unsigned long huffmanDecodeSymbol(const unsigned char* in, size_t& bp, const HuffmanTree& tree, size_t inlength) { - //decode a single symbol from given list of bits with given code tree. return value is the symbol - bool decoded; unsigned long ct; - for(size_t treepos = 0;;) { - if((bp & 0x07) == 0 && (bp >> 3) > inlength) { error = 10; return 0; } //error: end reached without endcode - error = tree.decode(decoded, ct, treepos, readBitFromStream(bp, in)); - if(error) return 0; //stop, an error happened - if(decoded) return ct; - } - } - - void getTreeInflateDynamic(HuffmanTree& tree, HuffmanTree& treeD, - const unsigned char* in, size_t& bp, size_t inlength) { - size_t bpstart = bp; - //get the tree of a deflated block with dynamic tree, the tree itself is also Huffman compressed with a known tree - std::vector bitlen(288, 0), bitlenD(32, 0); - if(bp >> 3 >= inlength - 2) { error = 49; return; } //the bit pointer is or will go past the memory - size_t HLIT = readBitsFromStream(bp, in, 5) + 257; //number of literal/length codes + 257 - size_t HDIST = readBitsFromStream(bp, in, 5) + 1; //number of dist codes + 1 - size_t HCLEN = readBitsFromStream(bp, in, 4) + 4; //number of code length codes + 4 - zlibinfo->back().hlit = HLIT - 257; - zlibinfo->back().hdist = HDIST - 1; - zlibinfo->back().hclen = HCLEN - 4; - std::vector codelengthcode(19); //lengths of tree to decode the lengths of the dynamic tree - for(size_t i = 0; i < 19; i++) codelengthcode[CLCL[i]] = (i < HCLEN) ? readBitsFromStream(bp, in, 3) : 0; - //code length code lengths - for(size_t i = 0; i < codelengthcode.size(); i++) zlibinfo->back().clcl.push_back(codelengthcode[i]); - error = codelengthcodetree.makeFromLengths(codelengthcode, 7); if(error) return; - size_t i = 0, replength; - while(i < HLIT + HDIST) { - unsigned long code = huffmanDecodeSymbol(in, bp, codelengthcodetree, inlength); if(error) return; - zlibinfo->back().treecodes.push_back(code); //tree symbol code - if(code <= 15) { if(i < HLIT) bitlen[i++] = code; else bitlenD[i++ - HLIT] = code; } //a length code - else if(code == 16) { //repeat previous - if(bp >> 3 >= inlength) { error = 50; return; } //error, bit pointer jumps past memory - replength = 3 + readBitsFromStream(bp, in, 2); - unsigned long value; //set value to the previous code - if((i - 1) < HLIT) value = bitlen[i - 1]; - else value = bitlenD[i - HLIT - 1]; - for(size_t n = 0; n < replength; n++) { //repeat this value in the next lengths - if(i >= HLIT + HDIST) { error = 13; return; } //error: i is larger than the amount of codes - if(i < HLIT) bitlen[i++] = value; else bitlenD[i++ - HLIT] = value; - } - } else if(code == 17) { //repeat "0" 3-10 times - if(bp >> 3 >= inlength) { error = 50; return; } //error, bit pointer jumps past memory - replength = 3 + readBitsFromStream(bp, in, 3); - zlibinfo->back().treecodes.push_back(replength); //tree symbol code repetitions - for(size_t n = 0; n < replength; n++) { //repeat this value in the next lengths - if(i >= HLIT + HDIST) { error = 14; return; } //error: i is larger than the amount of codes - if(i < HLIT) bitlen[i++] = 0; else bitlenD[i++ - HLIT] = 0; - } - } else if(code == 18) { //repeat "0" 11-138 times - if(bp >> 3 >= inlength) { error = 50; return; } //error, bit pointer jumps past memory - replength = 11 + readBitsFromStream(bp, in, 7); - zlibinfo->back().treecodes.push_back(replength); //tree symbol code repetitions - for(size_t n = 0; n < replength; n++) { //repeat this value in the next lengths - if(i >= HLIT + HDIST) { error = 15; return; } //error: i is larger than the amount of codes - if(i < HLIT) bitlen[i++] = 0; else bitlenD[i++ - HLIT] = 0; - } - } - else { error = 16; return; } //error: somehow an unexisting code appeared. This can never happen. - } - if(bitlen[256] == 0) { error = 64; return; } //the length of the end code 256 must be larger than 0 - error = tree.makeFromLengths(bitlen, 15); - if(error) return; //now we've finally got HLIT and HDIST, so generate the code trees, and the function is done - error = treeD.makeFromLengths(bitlenD, 15); - if(error) return; - zlibinfo->back().treebits = bp - bpstart; - //lit/len/end symbol lengths - for(size_t j = 0; j < bitlen.size(); j++) zlibinfo->back().litlenlengths.push_back(bitlen[j]); - //dist lengths - for(size_t j = 0; j < bitlenD.size(); j++) zlibinfo->back().distlengths.push_back(bitlenD[j]); - } - - void inflateHuffmanBlock(std::vector& out, - const unsigned char* in, size_t& bp, size_t& pos, size_t inlength, unsigned long btype) { - size_t numcodes = 0, numlit = 0, numlen = 0; //for logging - if(btype == 1) { generateFixedTrees(codetree, codetreeD); } - else if(btype == 2) { getTreeInflateDynamic(codetree, codetreeD, in, bp, inlength); if(error) return; } - for(;;) { - unsigned long code = huffmanDecodeSymbol(in, bp, codetree, inlength); if(error) return; - numcodes++; - zlibinfo->back().lz77_lcode.push_back(code); //output code - zlibinfo->back().lz77_dcode.push_back(0); - zlibinfo->back().lz77_lbits.push_back(0); - zlibinfo->back().lz77_dbits.push_back(0); - zlibinfo->back().lz77_lvalue.push_back(0); - zlibinfo->back().lz77_dvalue.push_back(0); - - if(code == 256) { - break; //end code - } else if(code <= 255) { //literal symbol - out.push_back((unsigned char)(code)); - pos++; - numlit++; - } else if(code >= 257 && code <= 285) { //length code - size_t length = LENBASE[code - 257], numextrabits = LENEXTRA[code - 257]; - if((bp >> 3) >= inlength) { error = 51; return; } //error, bit pointer will jump past memory - length += readBitsFromStream(bp, in, numextrabits); - unsigned long codeD = huffmanDecodeSymbol(in, bp, codetreeD, inlength); if(error) return; - if(codeD > 29) { error = 18; return; } //error: invalid dist code (30-31 are never used) - unsigned long dist = DISTBASE[codeD], numextrabitsD = DISTEXTRA[codeD]; - if((bp >> 3) >= inlength) { error = 51; return; } //error, bit pointer will jump past memory - dist += readBitsFromStream(bp, in, numextrabitsD); - size_t start = pos, back = start - dist; //backwards - for(size_t i = 0; i < length; i++) { - out.push_back(out[back++]); - pos++; - if(back >= start) back = start - dist; - } - numlen++; - zlibinfo->back().lz77_dcode.back() = codeD; //output distance code - zlibinfo->back().lz77_lbits.back() = numextrabits; //output length extra bits - zlibinfo->back().lz77_dbits.back() = numextrabitsD; //output dist extra bits - zlibinfo->back().lz77_lvalue.back() = length; //output length - zlibinfo->back().lz77_dvalue.back() = dist; //output dist - } - } - zlibinfo->back().numlit = numlit; //output number of literal symbols - zlibinfo->back().numlen = numlen; //output number of length symbols - } - - void inflateNoCompression(std::vector& out, - const unsigned char* in, size_t& bp, size_t& pos, size_t inlength) { - while((bp & 0x7) != 0) bp++; //go to first boundary of byte - size_t p = bp / 8; - if(p >= inlength - 4) { error = 52; return; } //error, bit pointer will jump past memory - unsigned long LEN = in[p] + 256u * in[p + 1], NLEN = in[p + 2] + 256u * in[p + 3]; p += 4; - if(LEN + NLEN != 65535) { error = 21; return; } //error: NLEN is not one's complement of LEN - if(p + LEN > inlength) { error = 23; return; } //error: reading outside of in buffer - for(unsigned long n = 0; n < LEN; n++) { - out.push_back(in[p++]); //read LEN bytes of literal data - pos++; - } - bp = p * 8; - } - - int decompress(std::vector& out, const std::vector& in) { //returns error value - if(in.size() < 2) { return 53; } //error, size of zlib data too small - //error: 256 * in[0] + in[1] must be a multiple of 31, the FCHECK value is supposed to be made that way - if((in[0] * 256 + in[1]) % 31 != 0) { return 24; } - unsigned long CM = in[0] & 15, CINFO = (in[0] >> 4) & 15, FDICT = (in[1] >> 5) & 1; - //error: only compression method 8: inflate with sliding window of 32k is supported by the PNG spec - if(CM != 8 || CINFO > 7) { return 25; } - //error: the PNG spec says about the zlib stream: "The additional flags shall not specify a preset dictionary." - if(FDICT != 0) { return 26; } - inflate(out, in, 2); - return error; //note: adler32 checksum was skipped and ignored - } -}; - -struct ExtractPNG { //PNG decoding and information extraction - std::vector* zlibinfo; - ExtractPNG(std::vector* info) : zlibinfo(info) {}; - int error; - void decode(const unsigned char* in, size_t size) { - error = 0; - if(size == 0 || in == 0) { error = 48; return; } //the given data is empty - readPngHeader(in, size); if(error) return; - size_t pos = 33; //first byte of the first chunk after the header - std::vector idat; //the data from idat chunks - bool IEND = false; - //loop through the chunks, ignoring unknown chunks and stopping at IEND chunk. - //IDAT data is put at the start of the in buffer - while(!IEND) { - //error: size of the in buffer too small to contain next chunk - if(pos + 8 >= size) { error = 30; return; } - size_t chunkLength = read32bitInt(&in[pos]); pos += 4; - if(chunkLength > 2147483647) { error = 63; return; } - //error: size of the in buffer too small to contain next chunk - if(pos + chunkLength >= size) { error = 35; return; } - //IDAT chunk, containing compressed image data - if(in[pos + 0] == 'I' && in[pos + 1] == 'D' && in[pos + 2] == 'A' && in[pos + 3] == 'T') { - idat.insert(idat.end(), &in[pos + 4], &in[pos + 4 + chunkLength]); - pos += (4 + chunkLength); - } else if(in[pos + 0] == 'I' && in[pos + 1] == 'E' && in[pos + 2] == 'N' && in[pos + 3] == 'D') { - pos += 4; - IEND = true; - } else { //it's not an implemented chunk type, so ignore it: skip over the data - pos += (chunkLength + 4); //skip 4 letters and uninterpreted data of unimplemented chunk - } - pos += 4; //step over CRC (which is ignored) - } - std::vector out; //now the out buffer will be filled - ExtractZlib zlib(zlibinfo); //decompress with the Zlib decompressor - error = zlib.decompress(out, idat); - if(error) return; //stop if the zlib decompressor returned an error - } - - //read the information from the header and store it in the Info - void readPngHeader(const unsigned char* in, size_t inlength) { - if(inlength < 29) { error = 27; return; } //error: the data length is smaller than the length of the header - if(in[0] != 137 || in[1] != 80 || in[2] != 78 || in[3] != 71 - || in[4] != 13 || in[5] != 10 || in[6] != 26 || in[7] != 10) { error = 28; return; } //no PNG signature - //error: it doesn't start with a IHDR chunk! - if(in[12] != 'I' || in[13] != 'H' || in[14] != 'D' || in[15] != 'R') { error = 29; return; } - } - - unsigned long readBitFromReversedStream(size_t& bitp, const unsigned char* bits) { - unsigned long result = (bits[bitp >> 3] >> (7 - (bitp & 0x7))) & 1; - bitp++; - return result; - } - - unsigned long readBitsFromReversedStream(size_t& bitp, const unsigned char* bits, unsigned long nbits) { - unsigned long result = 0; - for(size_t i = nbits - 1; i < nbits; i--) result += ((readBitFromReversedStream(bitp, bits)) << i); - return result; - } - - void setBitOfReversedStream(size_t& bitp, unsigned char* bits, unsigned long bit) { - bits[bitp >> 3] |= (bit << (7 - (bitp & 0x7))); bitp++; - } - - unsigned long read32bitInt(const unsigned char* buffer) { - return (unsigned int)((buffer[0] << 24u) | (buffer[1] << 16u) | (buffer[2] << 8u) | buffer[3]); - } -}; - -unsigned extractZlibInfo(std::vector& zlibinfo, const std::vector& in) { - ExtractPNG decoder(&zlibinfo); - decoder.decode(in.empty() ? NULL : &in[0], in.size()); - - return decoder.error ? 1 : 0; -} - -} // namespace lodepng -#endif diff --git a/Marlin/lib/LodePNG/lodepng_util.h b/Marlin/lib/LodePNG/lodepng_util.h deleted file mode 100644 index 13b9e9df4b..0000000000 --- a/Marlin/lib/LodePNG/lodepng_util.h +++ /dev/null @@ -1,291 +0,0 @@ -/* -LodePNG Utils - -Copyright (c) 2005-2022 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -/* -Extra C++ utilities for LodePNG, for convenience. -Not part of the stable API of lodepng, more loose separate utils. -*/ - -#ifndef LODEPNG_UTIL_H -#define LODEPNG_UTIL_H - -#include -#include -#include "lodepng.h" - -namespace lodepng { - -/* -Returns info from the header of the PNG by value, purely for convenience. -Does NOT check for errors. Returns bogus info if the PNG has an error. -Does not require cleanup of allocated memory because no palette or text chunk -info is in the LodePNGInfo object after checking only the header of the PNG. -*/ -LodePNGInfo getPNGHeaderInfo(const std::vector& png); - -/* -Get the names and sizes of all chunks in the PNG file. -Returns 0 if ok, non-0 if error happened. -*/ -unsigned getChunkInfo(std::vector& names, std::vector& sizes, - const std::vector& png); - -/* -Returns the names and full chunks (including the name and everything else that -makes up the chunk) for all chunks except IHDR, PLTE, IDAT and IEND. -It separates the chunks into 3 separate lists, representing the chunks between -certain critical chunks: 0: IHDR-PLTE, 1: PLTE-IDAT, 2: IDAT-IEND -Returns 0 if ok, non-0 if error happened. -*/ -unsigned getChunks(std::vector names[3], - std::vector > chunks[3], - const std::vector& png); - -/* -Inserts chunks into the given png file. The chunks must be fully encoded, -including length, type, content and CRC. -The array index determines where it goes: -0: between IHDR and PLTE, 1: between PLTE and IDAT, 2: between IDAT and IEND. -They're appended at the end of those locations within the PNG. -Returns 0 if ok, non-0 if error happened. -*/ -unsigned insertChunks(std::vector& png, - const std::vector > chunks[3]); - -/* -Get the filtertypes of each scanline in this PNG file. -Returns 0 if ok, 1 if PNG decoding error happened. - -For a non-interlaced PNG, it returns one filtertype per scanline, in order. - -For interlaced PNGs, it returns a result as if it's not interlaced. It returns -one filtertype per scanline, in order. The values match pass 6 and 7 of the -Adam7 interlacing, alternating between the two, so that the values correspond -the most to their scanlines. -*/ -unsigned getFilterTypes(std::vector& filterTypes, const std::vector& png); - -/* -Get the filtertypes of each scanline in every interlace pass this PNG file. -Returns 0 if ok, 1 if PNG decoding error happened. - -For a non-interlaced PNG, it returns one filtertype per scanline, in order, in -a single std::vector in filterTypes. - -For an interlaced PNG, it returns 7 std::vectors in filterTypes, one for each -Adam7 pass. The amount of values per pass can be calculated as follows, where -w and h are the size of the image and all divisions are integer divisions: -pass 1: (h + 7) / 8 -pass 2: w <= 4 ? 0 : (h + 7) / 8 -pass 3: h <= 4 ? 0 : (h + 7) / 8 -pass 4: w <= 2 ? 0 : (h + 3) / 4 -pass 5: h <= 2 ? 0 : (h + 3) / 4 -pass 6: w <= 1 ? 0 : (h + 1) / 2 -pass 7: h <= 1 ? 0 : (h + 1) / 2 -*/ -unsigned getFilterTypesInterlaced(std::vector >& filterTypes, - const std::vector& png); - -/* -Returns the value of the i-th pixel in an image with 1, 2, 4 or 8-bit color. -E.g. if bits is 4 and i is 5, it returns the 5th nibble (4-bit group), which -is the second half of the 3th byte, in big endian (PNG's endian order). -*/ -int getPaletteValue(const unsigned char* data, size_t i, int bits); - -#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS - -/* Similar to convertRGBModel, but the 'to' model is sRGB. The pixel format -of in and out must be the same and is given by state_in->info_raw. An -error may occur if the pixel format cannot contain the new colors (e.g. palette) */ -unsigned convertToSrgb(unsigned char* out, const unsigned char* in, - unsigned w, unsigned h, - const LodePNGState* state_in); - -/* Similar to convertRGBModel, but the 'from' model is sRGB. The pixel format -of in and out must be the same and is given by state_out->info_raw. An -error may occur if the pixel format cannot contain the new colors (e.g. palette) */ -unsigned convertFromSrgb(unsigned char* out, const unsigned char* in, - unsigned w, unsigned h, - const LodePNGState* state_out); - -/* -Converts from one RGB model to another RGB model. -Similar to calling convertToXYZ followed by convertFromXYZ, but may be -more efficient and more precise (e.g. no computation needed when both models -are the same). See their documentation for more info. - -Parameters: - -*) out: output pixel data -*) in: input pixel data -*) w, h: image size -*) state_out: output RGB color model in state_out->info_png and byte format in state_out->info_raw. -*) state_in: output RGB color model in state_in->info_png and byte format in state_in->info_raw -*) return value: 0 if ok, positive value if error -*) rendering_intent: 1 for relative, 3 for absolute, should be relative for standard behavior. - See description at convertFromXYZ. -*/ -unsigned convertRGBModel(unsigned char* out, const unsigned char* in, - unsigned w, unsigned h, - const LodePNGState* state_out, - const LodePNGState* state_in, - unsigned rendering_intent); - -/* -Converts the RGB color to the absolute XYZ color space given the RGB color profile -chunks in the PNG info. - -Color space here refers to the different possible RGB spaces with different -possible chromaticities or whitepoint and XYZ color from colorimetry, not the -LodePNGColorType that describes the byte based encoding. - -You need this function only if the PNG could contain data in an arbitrary RGB -color space and you wish to output to a display or format that does not provide -color management for you (so you need to convert rather than pass on the profile -to it) but expects a certain RGB format (e.g. sRGB). See the background info below. - -Supports the gAMA, cHRM, sRGB and iCCP colorimetry chunks. If no colometry chunks are present -(that is, in state->info_png, the fields gama_defined, chrm_defined, srgb_defined and -iccp_defined are all 0), it assumes the format is sRGB. -For more information, see the chunk specifications in the PNG specification. - -Some background: - -A PNG image contains RGB data inside, but this data may use a specific RGB model (by default sRGB but -different if colorimetry chunks are given). -The computer display and/or operating system can have another RGB model (typically sRGB, or wider gamut -or HDR formats). - -The PNG chunks describe what format the data inside has, not the format of the display. To correctly -display a PNG image on a display, a conversion is needed from the PNG model to the display model if their -models differ. Some options to achieve that are: -*) If your use case already supports color management on its own, you can give it the RGB values straight from - the PNG image and give it the information from the cHRM, gAMA, sRGB and iCCP chunks (which you can find - in the LodePNGInfo), and the color management should then handle it correctly for you. You don't need - this function here in that case. -*) If your use case does not support color management, you may instead want to give it the RGB values in a - consistent color model, such as sRGB, but the PNG does not necessarily have it in this desired model. - In that case, use the function below (or a similar one from a CMS library if you prefer) to convert it to - the absolute color space XYZ, and then you can convert it to the target RGB with the counterpart convertFromXYZ - further below. - -Parameters: - -*) out: 4 floats per pixel, X,Y,Z,alpha color format, in range 0-1 (normally, not clipped if beyond), must - be allocated to have 4 * w * h floats available. -*) whitepoint: output argument, the whitepoint the original RGB data used, given in absolute XYZ. Needed for - relative rendering intents: give these values to counterpart function convertFromXYZ. -*) in: input RGB color, in byte format given by state->info_raw and RGB color profile given by info->info_png -*) w, h: image size -*) state (when using a LodePNG decode function that takes a LodePNGState parameter, can directly use that one): - state->info_png: PNG info with possibly an RGB color model in cHRM,gAMA and/or sRGB chunks - state->info_raw: byte format of in (amount of channels, bit depth) -*) return value: 0 if ok, positive value if error -*/ -unsigned convertToXYZ(float* out, float whitepoint[3], - const unsigned char* in, unsigned w, unsigned h, - const LodePNGState* state); - -/* -Same as convertToXYZ but takes floating point input. Slower. -The main black..white range in 0..1. Does not clip values that are outside that range. -*/ -unsigned convertToXYZFloat(float* out, float whitepoint[3], const float* in, - unsigned w, unsigned h, const LodePNGState* state); - -/* -Converts XYZ to RGB in the RGB color model given by info and byte format by mode_out. -If info has no coloremtry chunks, converts to sRGB. -Parameters: -*) out: output color in byte format given by state->info_raw and RGB color profile given - by info->info_png. Must have enough bytes allocated to contain pixels in the given byte format. -*) in: 4 floats per pixel, X,Y,Z,alpha color format, in range 0-1 (normally). -*) whitepoint: input argument, the original whitepoint in absolute XYZ that the pixel data - in "in" had back when it was in a previous RGB space. Needed to preserve the whitepoint - in the new target RGB space for relative rendering intent. -*) rendering_intent: the desired rendering intent, with numeric meaning matching the - values used by ICC: 0=perceptual, 1=relative, 2=saturation, 3=absolute. - Should be 1 for normal use cases, it adapts white to match that of different RGB - models which is the best practice. Using 3 may change the color of white and may - turn grayscale into colors of a certain tone. Using 0 and 2 will have the same - effect as 1 because using those requires more data than the matrix-based RGB profiles - supporetd here have. -*) w, h: image size -*) state: - state->info_png: PNG info with possibly an RGB color profile in cHRM,gAMA and/or sRGB chunks - state->info_raw: byte format of out (amount of channels, bit depth) -*) return value: 0 if ok, positive value if error -*/ -unsigned convertFromXYZ(unsigned char* out, const float* in, unsigned w, unsigned h, - const LodePNGState* state, - const float whitepoint[3], unsigned rendering_intent); - -/* -Same as convertFromXYZ but outputs the RGB colors in floating point. -The main black..white range in 0..1. Does not clip values that are outside that range. -*/ -unsigned convertFromXYZFloat(float* out, const float* in, unsigned w, unsigned h, - const LodePNGState* state, - const float whitepoint[3], unsigned rendering_intent); -#endif /*LODEPNG_COMPILE_ANCILLARY_CHUNKS*/ - -/* -The information for extractZlibInfo. -*/ -struct ZlibBlockInfo { - int btype; //block type (0-2) - size_t compressedbits; //size of compressed block in bits - size_t uncompressedbytes; //size of uncompressed block in bytes - - // only filled in for block type 2 - size_t treebits; //encoded tree size in bits - int hlit; //the HLIT value that was filled in for this tree - int hdist; //the HDIST value that was filled in for this tree - int hclen; //the HCLEN value that was filled in for this tree - std::vector clcl; //19 code length code lengths (compressed tree's tree) - std::vector treecodes; //N tree codes, with values 0-18. Values 17 or 18 are followed by the repetition value. - std::vector litlenlengths; //288 code lengths for lit/len symbols - std::vector distlengths; //32 code lengths for dist symbols - - // only filled in for block types 1 or 2 - std::vector lz77_lcode; //LZ77 codes. 0-255: literals. 256: end symbol. 257-285: length code of length/dist pairs - // the next vectors have the same size as lz77_lcode, but an element only has meaningful value if lz77_lcode contains a length code. - std::vector lz77_dcode; - std::vector lz77_lbits; - std::vector lz77_dbits; - std::vector lz77_lvalue; - std::vector lz77_dvalue; - size_t numlit; //number of lit codes in this block - size_t numlen; //number of len codes in this block -}; - -//Extracts all info needed from a PNG file to reconstruct the zlib compression exactly. -// Returns 0 if no error, non-zero value if error -unsigned extractZlibInfo(std::vector& zlibinfo, const std::vector& in); - -} // namespace lodepng - -#endif /*LODEPNG_UTIL_H inclusion guard*/ diff --git a/Marlin/lib/LodePNG/pngdetail.cpp b/Marlin/lib/LodePNG/pngdetail.cpp deleted file mode 100644 index d08d6c1f11..0000000000 --- a/Marlin/lib/LodePNG/pngdetail.cpp +++ /dev/null @@ -1,1449 +0,0 @@ -/* -LodePNG pngdetail - -Copyright (c) 2005-2020 Lode Vandevenne - -This software is provided 'as-is', without any express or implied -warranty. In no event will the authors be held liable for any damages -arising from the use of this software. - -Permission is granted to anyone to use this software for any purpose, -including commercial applications, and to alter it and redistribute it -freely, subject to the following restrictions: - - 1. The origin of this software must not be misrepresented; you must not - claim that you wrote the original software. If you use this software - in a product, an acknowledgment in the product documentation would be - appreciated but is not required. - - 2. Altered source versions must be plainly marked as such, and must not be - misrepresented as being the original software. - - 3. This notice may not be removed or altered from any source - distribution. -*/ - -//g++ pngdetail.cpp lodepng_util.cpp lodepng.cpp -ansi -pedantic -Wall -Wextra -o pngdetail -O3 - - -/* -Utility program that shows a lot of information in the console about a PNG file, -including color type, text chunks, the names and sizes of all chunks in the -image, all the zlib compression blocks and symbols, etc... - -compression info: -./pngdetail -sfczB image.png - -everything, 8-bit: -./pngdetail -sPlLA#cfzB7 image.png - -everything, 16-bit: -./pngdetail -sPlLA@cfzB7 image.png - -everything except huge output: -./pngdetail -sPlAcfzB image.png -*/ -#if 0 - -#include "lodepng.h" -#include "lodepng_util.h" -#include -#include -#include -#include -#include -#include -#include -#include - -void showHelp() { - std::cout << "pngdetail by Lode Vandevenne" << std::endl; - std::cout << "version: " << LODEPNG_VERSION_STRING << std::endl; - std::cout << "Shows detailed information about a PNG image, its compression and possible corruptions.\n" - "Usage: pngdetail [filename] [options]...\n" - "Without options shows a default set of stats. With options, shows only selected options.\n" - "E.g. 'pngdetail image.png -plc' to show png info, palette info and chunks\n" - "Options:\n" - "-o: show header summary on one line\n" - "-H: show header info\n" - "-p: show PNG file info\n" - "-e: analyze errors or warnings\n" - "-i: show ICC profile details (if any)\n" - "-I: show ICC profile bytes\n" - "--format=: display mode for -I:\n" - " hex: print bytes in hex\n" - " mix: print printable bytes as ASCII characters, hex for others\n" - " bin: dump as binary in terminal\n" - "-l: show palette (if any)\n" - "-s: show color statistics\n" - "-r: render the PNG image in terminal (with --mode and --size)\n" - "--size=: render width for -r\n" - "--mode=: render mode for -r:\n" - " ascii: Letters ROYLGTCABVMF indicate hue (L=lime, T=turquoise, A=azure, F=fuchsia, ...).\n" - " hex: CSS hex notation for every pixel.\n" - " hex16: Like hex but shows 16 bits values per channel.\n" - " palette: Shows palette index of each pixel, only for palette images.\n" - "--size=: render width (not used by hex, hex16 or palette):\n" - "-c: show PNG chunks\n" - "-C: show PNG chunks (alternate format)\n" - "-f: show PNG filters\n" - "-z: show Zlib info\n" - "-b: show Zlib blocks\n" - "-B: show Zlib block symbol counts\n" - "-7: show all lz77 values (huge output)\n" - "-v: be more verbose\n" - "-t: expand long texts\n" - "-x: print most integer numbers in hexadecimal (includes e.g. year, num unique colors, ...)\n" - "-?, --help, -h: show this help" << std::endl; -} - -enum RenderMode { - RM_ASCII, - RM_HEX, // CSS - RM_HEX16, - RM_PAL // palette indices (only rendered if image is palette based) -}; - -// for displaying ICC profile -enum HexFormat { - HF_HEX, - HF_MIX, // hex and ascii - HF_BIN // bytes as binary data dump -}; - -struct Options { - bool verbose; - bool expand_long_texts; - bool show_one_line_summary; //show filesize, pixels and color type on single line - bool show_header; // show only info from the IHDR chunk - bool show_errors; - bool show_icc_details; // show ICC color profile details - bool show_icc_hex; // show ICC color profile in full - bool show_color_stats; - bool show_png_info; //show things like filesize, width, height, palette size, ... - bool show_palette; //show all palette values - bool show_palette_pixels; //show palette indices of pixels - - HexFormat hexformat; - - bool show_render; - RenderMode rendermode; - int rendersize; - - bool show_chunks; //show the PNG chunk names and their lengths - bool show_chunks2; //alternate form to print chunks - bool show_filters; //show the PNG filter of each scanline (not supported for interlaced PNGs currently) - bool zlib_info; //show basic zlib info - bool zlib_blocks; //show type, tree info, code length summaries and sizes for each zlib block - bool zlib_counts; //in addition to the zlib_blocks info, show counts of occurrences all symbols - bool zlib_full; //in addition to the zlib_blocks info, show all symbols, one per line (huge output) - bool use_hex; //show some sizes or positions in hexadecimal - - Options() : verbose(false), expand_long_texts(false), - show_one_line_summary(false), show_header(false), show_errors(false), - show_icc_details(false), show_icc_hex(false), - show_color_stats(false), show_png_info(false), - show_palette(false), show_palette_pixels(false), - hexformat(HF_MIX), show_render(false), rendermode(RM_ASCII), rendersize(80), - show_chunks(false), show_chunks2(false), show_filters(false), - zlib_info(false), zlib_blocks(false), zlib_counts(false), zlib_full(false), use_hex(false) { - } -}; - -unsigned inspect_chunk_by_name(const unsigned char* data, const unsigned char* end, - lodepng::State& state, const char type[5]) { - const unsigned char* p = lodepng_chunk_find_const(data, end, type); - return lodepng_inspect_chunk(&state, p - data, data, end - data); -} - -// Lazy loads the raw file, inspected header or entire image as needed -struct Data { - std::string filename; - std::vector buffer; - std::vector pixels; // 16-bit - unsigned w; - unsigned h; - lodepng::State state; - unsigned error; - bool inspected; - bool is_icc; // the file is a raw icc file, not a PNG, only -i and -I are useful - - Data(const std::string& filename) : filename(filename), error(0), inspected(false), is_icc(false) {} - - - // Load the file if not already loaded - void loadFile() { - if(buffer.empty()) { - error = lodepng::load_file(buffer, filename); //load the image file with given filename - } else { - error = 0; // for reloadpixels, reset error if file was already successfully loaded - } - } - - // is PNG according to the file signature - bool isPng() { - if(buffer.size() < 8) return false; - return buffer[0] == 137 && buffer[1] == 80 && buffer[2] == 78 && buffer[3] == 71 - && buffer[4] == 13 && buffer[5] == 10 && buffer[6] == 26 && buffer[7] == 10; - } - - // is probably an ICC profile - bool isIcc() { - if(isPng()) return false; - if(buffer.size() < 128) return false; - size_t size = (buffer[0] << 24) + (buffer[1] << 16) + (buffer[2] << 8) + buffer[3]; - if(size != buffer.size()) return false; - if(buffer[36] != 'a') return false; - if(buffer[37] != 'c') return false; - if(buffer[38] != 's') return false; - if(buffer[39] != 'p') return false; - return true; - } - - // Load header info (plus a few more nearby light chunks) if not already loaded, and the file if needed - void loadInspect() { - if(inspected) return; - inspected = true; - loadFile(); - if(error) return; - if(isIcc()) { - lodepng_set_icc(&state.info_png, "", &buffer[0], buffer.size()); - is_icc = true; - } else { - is_icc = false; - const unsigned char* data = &buffer[0]; - error = lodepng_inspect(&w, &h, &state, data, buffer.size()); - if(error) return; - // end before first IDAT chunk: do not parse more than first part of file for all this. - const unsigned char* end = lodepng_chunk_find_const(data, data + buffer.size(), "IDAT"); - if(!end) end = data + buffer.size(); // no IDAT, invalid PNG but extract info anyway - inspect_chunk_by_name(data, end, state, "PLTE"); - if(error) return; - inspect_chunk_by_name(data, end, state, "tRNS"); - if(error) return; - inspect_chunk_by_name(data, end, state, "cHRM"); - if(error) return; - inspect_chunk_by_name(data, end, state, "gAMA"); - if(error) return; - inspect_chunk_by_name(data, end, state, "sBIT"); - if(error) return; - inspect_chunk_by_name(data, end, state, "bKGD"); - if(error) return; - inspect_chunk_by_name(data, end, state, "hIST"); - if(error) return; - inspect_chunk_by_name(data, end, state, "pHYs"); - if(error) return; - inspect_chunk_by_name(data, end, state, "iCCP"); - if(error) return; - } - } - - // Load the pixels if not already loaded, and the file if needed - void loadPixels() { - if(pixels.empty()) reloadPixels(); - } - - void reloadPixels() { - loadFile(); - if(error) return; - inspected = true; - state.info_raw.colortype = LCT_RGBA; - state.info_raw.bitdepth = 16; - pixels.clear(); - error = lodepng::decode(pixels, w, h, state, buffer); - } -}; - -std::string colorTypeString(LodePNGColorType type) { - std::string name; - switch(type) { - case LCT_GREY: name = "grey"; break; - case LCT_RGB: name = "RGB"; break; - case LCT_PALETTE: name = "palette"; break; - case LCT_GREY_ALPHA: name = "grey+alpha"; break; - case LCT_RGBA: name = "RGBA"; break; - default: name = "invalid"; break; - } - std::stringstream ss; - ss << type << " (" << name << ")"; - return ss.str(); -} - -template -T strtoval(const std::string& s) { - std::istringstream sstream(s); - T val; - sstream >> val; - return val; -} - - -/* -Display the names and sizes of all chunks in the PNG file. -*/ -void displayChunkNames(Data& data, const Options& options) { - if(data.is_icc) return; - data.loadFile(); - if(data.error) return; - std::cout << (options.use_hex ? std::hex: std::dec); - const std::vector& buffer = data.buffer; - std::vector names; - std::vector sizes; - unsigned error = lodepng::getChunkInfo(names, sizes, buffer); - if(error) { - if(!names.empty() && names.back() == "IEND" && sizes.back() == 0) { - std::cout << "Corruption or superfluous data detected after the IEND chunk" << std::endl; - } else { - std::cout << "Error while identifying chunks. Listing identified chunks anyway." << std::endl; - } - } - - if(options.show_chunks2) { - std::cout << "Chunk types: "; - for(size_t i = 0; i < names.size(); i++) std::cout << names[i] << " "; - std::cout << std::endl; - std::cout << "Chunk sizes: "; - for(size_t i = 0; i < sizes.size(); i++) std::cout << sizes[i] << " "; - std::cout << std::endl; - } else { - std::cout << "Chunks (type: lengths):"; - std::string last_type; - for(size_t i = 0; i < names.size(); i++) { - if(last_type != names[i]) { - std::cout << std::endl; - std::cout << " " << names[i] << ": "; - } - last_type = names[i]; - - std::cout << sizes[i] << " "; - } - std::cout << std::endl; - } - - std::map typedict; - for(size_t i = 0; i < names.size(); i++) { - typedict[names[i]] = true; - } - - if(!error) { - if(!typedict["IHDR"]) std::cout << "Error: no IHDR chunk" << std::endl; - if(!typedict["IDAT"]) std::cout << "Error: no IDAT chunk" << std::endl; - if(!typedict["IEND"]) std::cout << "Error: no IEND chunk" << std::endl; - } -} - -void RGBtoHSL(unsigned char r, unsigned char g, unsigned char b, unsigned char* h, unsigned char* s, unsigned char* l) { - int cmax = std::max(r, std::max(g, b)); - int cmin = std::min(r, std::min(g, b)); - if(cmin == cmax) { - *h = *s = 0; - *l = r; - } else { - int sum = cmin + cmax; - int diff = cmax - cmin; - *l = sum / 2; - *s = 255 * diff / ((*l < 128) ? sum : (512 - sum)); - int hi = (r == cmax) ? (255 * (g - b) / diff) : ((g == cmax) ? (512 + 255 * (b - r) / diff) : (1024 + 255 * (r - g) / diff)); - *h = ((hi / 6) & 255); - } -} - -/* -HCT: Hue, Chroma, Tone: returns a linear combination between a pure hue and a greyscale value. -*) Chroma: The linear combination factor: 255 for pure hue, 0 for pure greyscale -*) Tone: greyscale to mix with: 0 = black (shade), 255 = white (tint), in between = grey (tone) -*/ -void RGBtoHCT(unsigned char r, unsigned char g, unsigned char b, unsigned char* h, unsigned char* c, unsigned char* t) { - int cmax = std::max(r, std::max(g, b)); - int cmin = std::min(r, std::min(g, b)); - RGBtoHSL(r, g, b, h, c, t); - *c = cmax - cmin; - *t = *c == 255 ? 0 : 255 * cmin / (255 + cmin - cmax); -} - -// add 32 to get small letter instead of capital -char HueToLetter(int h) { - char hl = 'R'; - // 12 unique hue letters for 30 degree increment hues. - if(h < 11 || h >= 244) hl = 'R'; // red - else if(h >= 11 && h < 32) hl = 'O'; // orange - else if(h >= 32 && h < 53) hl = 'Y'; // yellow - else if(h >= 53 && h < 74) hl = 'L'; // lime (officialy "chartreuse" but c is for cyan) - else if(h >= 74 && h < 96) hl = 'G'; // green - else if(h >= 96 && h < 117) hl = 'T'; // turquoise (officially "spring green" but that name overlaps green) - else if(h >= 117 && h < 138) hl = 'C'; // cyan - else if(h >= 138 && h < 159) hl = 'A'; // azure - else if(h >= 159 && h < 181) hl = 'B'; // blue - else if(h >= 181 && h < 202) hl = 'V'; // violet - else if(h >= 202 && h < 223) hl = 'M'; // magenta - else if(h >= 223 && h < 244) hl = 'F'; // fuchsia (officially "rose" but r is for red) - return hl; -} - -char lightnessToLetter(int l) { - int c = ' '; - if(l < 16) c = ' '; - else if(l < 48) c = '.'; - else if(l < 80) c = ':'; - else if(l < 112) c = '-'; - else if(l < 144) c = '!'; - else if(l < 176) c = '*'; - else if(l < 208) c = '+'; // The + looks denser than the * in a terminal... - else if(l < 240) c = '='; - else c = '#'; - return c; -} - -// Both v and result are assumed in range 0-255 -// range is the size of an individual bucket. A value in roughly range [-range/2, range/2) can get added to v. -// E.g. if there are 12 hue letters, give 255/12 = 21 as range -static inline int applyDither(int v, int range, int x, int y, bool wrap) { - // ordered dithering pattern; ranges from 0-15, so multiply with 17 to have 0-255 - static const int pattern[16] = {0,8,2,10, - 12,4,14,6, - 3,11,1,9, - 15,7,13,5}; - int d = pattern[(x & 3) + 4 * (y & 3)] * 17 - 128; // range: -128 to 127 - if(wrap) return (v + d * range / 256) & 255; - else return std::max(0, std::min(255, v + d * range / 256)); -} - -// x and y are to use for dithering -// inverted inverts black and white, for in case black text on white background is used (by default it assumes white text on black background) -char RGBtoLetter(unsigned char r, unsigned char g, unsigned char b, unsigned char a, unsigned x, unsigned y, bool dither = true, bool inverted = false) { - if(a < 255) { - r = a * r / 255; - g = a * g / 255; - b = a * b / 255; - } - - if(dither) { - unsigned char h, c, t; - RGBtoHCT(r, g, b, &h, &c, &t); - int l = (std::max(std::max(r, g), b) + std::min(std::min(r, g), b)) / 2; - if(inverted) { - l = 255 - l; - t = 255 - t; - } - if(applyDither(c, 254, x, y, false) >= 128) { - char letter = HueToLetter(applyDither(h, 21, x, y, true)); - bool smallcaps = applyDither(l, 64, x+2, y+2, false) < 80; - return letter + (smallcaps ? 32 : 0); - } - else return lightnessToLetter(applyDither(l, 31, x, y, false)); - } else { - unsigned char h, s, l; - RGBtoHSL(r, g, b, &h, &s, &l); - if(inverted) l = 255 - l; - - char hl = HueToLetter(h); - char c = ' '; - if(l < 24 || l > 232 || s < 64) { - c = lightnessToLetter(l); - } else { - if(l < 128) c = hl + 32; - else c = hl; - } - return c; - } -} - -std::vector rescale(const std::vector& in, - int w0, int h0, int w1, int h1, bool smooth) { - int numchannels = in.size() / (w0 * h0); - std::vector out(w1 * h1 * numchannels); - if(smooth) { - // box filter. - std::vector temp(w1 * h0 * numchannels); - for (int c = 0; c < numchannels; c++) { - for (int x = 0; x < w1; x++) { - float xaf = x * 1.0 * w0 / w1; - float xbf = (x + 1.0) * w0 / w1; - int xa = (int)xaf; - int xb = (int)xbf; - double norm = 1.0 / (xbf - xaf); - xaf -= std::floor(xaf); - xbf -= std::floor(xbf); - for (int y = 0; y < h0; y++) { - int index1 = x * numchannels + y * w1 * numchannels; - double val = 0; - for(int x0 = xa; x0 <= xb; x0++) { - int index0 = x0 * numchannels + y * w0 * numchannels; - double v = 1; - if(x0 == xa) v -= xaf; - if(x0 == xb) v -= (1 - xbf); - val += v * in[index0 + c]; - } - temp[index1 + c] = val * norm; - } - } - for (int y = 0; y < h1; y++) { - float yaf = y * 1.0 * h0 / h1; - float ybf = (y + 1.0) * h0 / h1; - int ya = (int)yaf; - int yb = (int)ybf; - double norm = 1.0 / (ybf - yaf); - yaf -= std::floor(yaf); - ybf -= std::floor(ybf); - for (int x = 0; x < w1; x++) { - int index1 = x * numchannels + y * w1 * numchannels; - double val = 0; - for(int y0 = ya; y0 <= yb; y0++) { - int index0 = x * numchannels + y0 * w1 * numchannels; - double v = 1; - if(y0 == ya) v -= yaf; - if(y0 == yb) v -= (1 - ybf); - val += v * temp[index0 + c]; - } - out[index1 + c] = val * norm; - } - } - } - } else { - for(int y = 0; y < h1; y++) { - int y0 = (int)((y + 0.5) * h0 / h1 - 0.5); - for (int x = 0; x < w1; x++) { - int x0 = (int)((x + 0.5) * w0 / w1 - 0.5); - int index0 = x0 * numchannels + y0 * w0 * numchannels; - int index1 = x * numchannels + y * w1 * numchannels; - for (int c = 0; c < numchannels; c++) { - out[index1 + c] = in[index0 + c]; - } - } - } - } - return out; -} - -/* -Show ASCII art preview of the image -image is given in 16-bit big endian -*/ -void displayAsciiArt(const std::vector& image, unsigned w, unsigned h, unsigned asciiw) { - const std::vector* imagep = ℑ - std::vector image2; - if(asciiw < w) { - unsigned w2 = asciiw; - unsigned h2 = h * w2 / w; - image2 = rescale(image, w, h, w2, h2, true); - imagep = &image2; - w = w2; - h = h2; - } - if(w > 0 && h > 0) { - std::cout << "ASCII Art Preview: " << std::endl; - unsigned h2 = 1 + ((h - 1) * 4) / 7; //compensate for non-square characters in terminal - std::cout << '+'; - for(unsigned x = 0; x < w; x++) std::cout << '-'; - std::cout << '+' << std::endl; - for(unsigned y = 0; y < h2; y++) { - std::cout << "|"; - unsigned y2 = y * h / h2; - for(unsigned x = 0; x < w; x++) { - int r = (*imagep)[y2 * w * 8 + x * 8 + 0]; - int g = (*imagep)[y2 * w * 8 + x * 8 + 2]; - int b = (*imagep)[y2 * w * 8 + x * 8 + 4]; - int a = (*imagep)[y2 * w * 8 + x * 8 + 6]; - char symbol = RGBtoLetter(r, g, b, a, x, y, true, false); - std::cout << (char)symbol; - } - std::cout << "|"; - std::cout << std::endl; - } - std::cout << '+'; - for(unsigned x = 0; x < w; x++) std::cout << '-'; - std::cout << '+' << std::endl; - } -} - -//sixteen: print 16 bits per pixel -//alpha: print alpha channel -//input image ALWAYS given in 16-bit per channel RGBA -void displayColorsHex(const std::vector& image, unsigned w, unsigned h, bool sixteen) { - std::ios_base::fmtflags flags = std::cout.flags(); - - if(w > 0 && h > 0) { - std::cout << "Colors (CSS RGBA hex format):" << std::endl; - - for(unsigned y = 0; y < h; y++) { - std::cout.flags(flags); //print line numbers in hex or dec whatever it originally was - std::cout << y << ":"; - for(unsigned x = 0; x < w; x++) { - size_t index = y * w * 8 + x * 8; - if (sixteen) { - int r = image[index + 0] * 256 + image[index + 1]; - int g = image[index + 2] * 256 + image[index + 3]; - int b = image[index + 4] * 256 + image[index + 5]; - int a = image[index + 6] * 256 + image[index + 7]; - std::cout << std::hex << std::setfill('0') << " #" << std::setw(4) << r << std::setw(4) << g << std::setw(4) << b << std::setw(4) << a; - } else { - int r = image[index + 0]; - int g = image[index + 2]; - int b = image[index + 4]; - int a = image[index + 6]; - std::cout << std::hex << std::setfill('0') << " #" << std::setw(2) << r << std::setw(2) << g << std::setw(2) << b << std::setw(2) << a; - } - } - std::cout << std::endl; - } - } - - std::cout.flags(flags); -} - - -/* -Show the filtertypes of each scanline in this PNG image. -*/ -void displayFilterTypes(Data& data, const Options& options) { - std::cout << (options.use_hex ? std::hex: std::dec); - data.loadFile(); - if(data.error) return; - const std::vector& buffer = data.buffer; - std::vector > types; - unsigned error = lodepng::getFilterTypesInterlaced(types, buffer); - if(error) { - std::cout << "Error getting filter types" << std::endl; - return; - } - - if(types.size() == 7) { - std::cout << "Filter types (Adam7 interlaced):" << std::endl; - for(int j = 0; j < 7; j++) { - std::cout << " Pass " << (j + 1) << ": "; - for(size_t i = 0; i < types[j].size(); i++) { - std::cout << (int)(types[j][i]); - } - std::cout << std::endl; - } - } else { - std::cout << "Filter types: "; - for(size_t i = 0; i < types[0].size(); i++) { - std::cout << (int)(types[0][i]); - } - std::cout << std::endl; - } -} - -//image type MUST be palette -void displayPalette(Data& data, const Options& options) { - data.loadInspect(); - if(data.error) return; - std::cout << (options.use_hex ? std::hex: std::dec); - - const LodePNGInfo& info = data.state.info_png; - const LodePNGColorMode& color = info.color; - - std::cout << "Palette size: " << color.palettesize << std::endl; - std::cout << "Palette colors: "; - std::ios_base::fmtflags flags = std::cout.flags(); - std::cout << std::hex << std::setfill('0'); - for(size_t i = 0; i < color.palettesize; i++) { - unsigned char* p = &color.palette[i * 4]; - std::cout << "#" << std::setw(2) << (int)p[0] << std::setw(2) << (int)p[1] << std::setw(2) << (int)p[2] << std::setw(2) << (int)p[3] << " "; - } - std::cout.flags(flags); - std::cout << std::endl; -} - -//image type MUST be palette -void displayPalettePixels(const std::vector& buffer, const Options& options) { - unsigned w, h; - lodepng::State state; - std::vector out; - std::cout << (options.use_hex ? std::hex: std::dec); - - state.decoder.color_convert = 0; - - lodepng::decode(out, w, h, state, buffer); - - if(state.info_png.color.colortype == LCT_PALETTE) { - if (options.show_color_stats) { - std::vector count(256, 0); - size_t outofbounds = 0; - - for(size_t i = 0; i < w * h; i++) { - int value = lodepng::getPaletteValue(&out[0], i, state.info_raw.bitdepth); - count[value]++; - if(value >= (int)state.info_raw.palettesize) outofbounds++; - } - - std::cout << "Palette count: "; - for(size_t i = 0; i < state.info_raw.palettesize; i++) { - std::cout << count[i] << " "; - } - std::cout << std::endl; - - if(outofbounds > 0) std::cout << "Out of bounds palette values: " << outofbounds << std::endl; - } - - std::cout << "Pixel palette indices:" << std::endl; - for(size_t i = 0; i < w * h; i++) { - int value = lodepng::getPaletteValue(&out[0], i, state.info_raw.bitdepth); - std::cout << value << ", "; - if(i % w == w - 1) std::cout << std::endl; - } - } else { - std::cout << "Pixel palette indices: not shown, not a palette image\n" << std::endl; - } -} - -void printZlibInfo(Data& data, const Options& options) { - data.loadFile(); - if(data.error) return; - const std::vector& in = data.buffer; - std::cout << (options.use_hex ? std::hex: std::dec); - - std::vector zlibinfo; - lodepng::extractZlibInfo(zlibinfo, in); - - if(options.zlib_info) { - //std::cout << "Zlib info: " << std::endl; - size_t compressed = 0; - size_t uncompressed = 0; - std::vector boundaries_compressed; - std::vector boundaries_uncompressed; - for(size_t i = 0; i < zlibinfo.size(); i++) { - compressed += zlibinfo[i].compressedbits / 8; - uncompressed += zlibinfo[i].uncompressedbytes; - boundaries_compressed.push_back(compressed); - boundaries_uncompressed.push_back(uncompressed); - } - - std::cout << "IDAT zlib info: " << compressed << std::endl; - std::cout << "Compressed size: " << compressed << std::endl; - std::cout << "Uncompressed size: " << uncompressed << std::endl; - std::cout << "Amount of zlib blocks: " << zlibinfo.size() << std::endl; - if(zlibinfo.size() > 1) { - std::cout << "Block sizes (uncompressed): "; - for(size_t i = 0; i < zlibinfo.size(); i++) - std::cout << zlibinfo[i].uncompressedbytes << " "; - std::cout << std::endl; - std::cout << "Block sizes (compressed): "; - for(size_t i = 0; i < zlibinfo.size(); i++) - std::cout << (zlibinfo[i].compressedbits / 8) << " "; - std::cout << std::endl; - std::cout << "Block boundaries (uncompressed): "; - for(size_t i = 0; i + 1 < boundaries_uncompressed.size(); i++) - std::cout << boundaries_uncompressed[i] << " "; - std::cout << std::endl; - std::cout << "Block boundaries (compressed): "; - for(size_t i = 0; i + 1 < boundaries_compressed.size(); i++) - std::cout << boundaries_compressed[i] << " "; - std::cout << std::endl; - } - } - - if(options.zlib_blocks) { - for(size_t i = 0; i < zlibinfo.size(); i++) { - const lodepng::ZlibBlockInfo& info = zlibinfo[i]; - - std::cout << "Zlib block " << i << ":" << std::endl; - std::cout << " block type: " << info.btype << std::endl; - - size_t compressedsize = info.compressedbits / 8; - size_t uncompressedsize = info.uncompressedbytes; - std::cout << " block compressed: " << compressedsize << " (" << compressedsize / 1024 << "K) (" << info.compressedbits << " bits)" << std::endl; - std::cout << " block uncompressed: " << uncompressedsize << " (" << uncompressedsize / 1024 << "K)" << std::endl; - - if(info.btype > 2) { - std::cout << "Error: Invalid Block Type" << std::endl; - return; - } - - if(info.btype == 2) { - std::cout << " encoded trees size: " << info.treebits / 8 << " (" << info.treebits << " bits)" << std::endl; - std::cout << " HLIT: " << info.hlit << std::endl; - std::cout << " HDIST: " << info.hdist << std::endl; - std::cout << " HCLEN: " << info.hclen << std::endl; - std::cout << std::hex; - std::cout << " code length code lengths: "; for(size_t j = 0; j < 19; j++) std::cout << info.clcl[j]; std::cout << std::endl; - if(!options.use_hex) std::cout << std::dec; - if(options.zlib_full) { - for(size_t j = 0; j < info.treecodes.size(); j++) { - int code = info.treecodes[j]; - if(code < 17) { - std::cout << " tree: " << code << std::endl; - } else { - j++; - std::cout << " tree: " << code << " rep: " << info.treecodes[j] << std::endl; - } - - } - } - - std::cout << std::hex; - std::cout << " lit code lengths 0-127 : "; for(size_t j = 0; j < 128; j++) std::cout << info.litlenlengths[j]; std::cout << std::endl; - std::cout << " lit code lengths 128-255: "; for(size_t j = 128; j < 256; j++) std::cout << info.litlenlengths[j]; std::cout << std::endl; - std::cout << " end code length : "; std::cout << info.litlenlengths[256]; std::cout << std::endl; - std::cout << " len code lengths : "; for(size_t j = 257; j < 288; j++) std::cout << info.litlenlengths[j]; std::cout << std::endl; - std::cout << " dist code lengths : "; for(size_t j = 0; j < 32; j++) std::cout << info.distlengths[j]; std::cout << std::endl; - if(!options.use_hex) std::cout << std::dec; - } - - - if(info.btype != 0) { - std::cout << " code counts: lit: " << info.numlit << ", len/dist: " << info.numlen << ", total: " << (info.numlit + info.numlen + 1) << ", with dists: " << (info.numlit + 2 * info.numlen + 1) << std::endl; - - if(options.zlib_full) { - for(size_t j = 0; j < info.lz77_lcode.size(); j++) { - int symbol = info.lz77_lcode[j]; - if(symbol == 256) { - std::cout << " end" << std::endl; - } else if(symbol < 256) { - std::cout << " lit: " << symbol << std::endl; - } else { - std::cout << " len: " << info.lz77_lvalue[j] << ", dist: " << info.lz77_dvalue[j] << std::endl; - } - } - } - - if(options.zlib_counts) { - std::vector ll_count(288, 0); - std::vector d_count(32, 0); - for(size_t j = 0; j < info.lz77_lcode.size(); j++) { - int symbol = info.lz77_lcode[j]; - if(symbol <= 256) { - ll_count[symbol]++; - } else { - ll_count[symbol]++; - d_count[info.lz77_dcode[j]]++; - } - } - std::cout << " lit code 0-63 counts : "; for(size_t j = 0; j < 64; j++) std::cout << ll_count[j] << " "; std::cout << std::endl; - std::cout << " lit code 64-127 counts : "; for(size_t j = 64; j < 128; j++) std::cout << ll_count[j] << " "; std::cout << std::endl; - std::cout << " lit code 128-191 counts: "; for(size_t j = 128; j < 192; j++) std::cout << ll_count[j] << " "; std::cout << std::endl; - std::cout << " lit code 192-255 counts: "; for(size_t j = 192; j < 256; j++) std::cout << ll_count[j] << " "; std::cout << std::endl; - std::cout << " end code count : "; std::cout << ll_count[256] << " "; std::cout << std::endl; - std::cout << " len code counts : "; for(size_t j = 257; j < 288; j++) std::cout << ll_count[j] << " "; std::cout << std::endl; - std::cout << " dist code counts : "; for(size_t j = 0; j < 32; j++) std::cout << d_count[j] << " "; std::cout << std::endl; - } - } - } - } -} - -// returns number of unique RGBA colors in the image -// also fills unique r, g, b, a counts in the output parameters -// the input image is in 16-bit per channel color, so 8 chars per pixel -size_t countColors(std::vector image, unsigned w, unsigned h, - size_t* ro, size_t* go, size_t* bo, size_t* ao) { - typedef std::pair, std::pair > RGBA; - std::map rgbam; - //std::map rgbam; - std::vector rm(65536, 0); - std::vector gm(65536, 0); - std::vector bm(65536, 0); - std::vector am(65536, 0); - for(unsigned y = 0; y < h; y++) { - for(unsigned x = 0; x < w; x++) { - unsigned short r = 256 * image[y * 8 * w + x * 8 + 0] + image[y * 8 * w + x * 8 + 1]; - unsigned short g = 256 * image[y * 8 * w + x * 8 + 2] + image[y * 8 * w + x * 8 + 3]; - unsigned short b = 256 * image[y * 8 * w + x * 8 + 4] + image[y * 8 * w + x * 8 + 5]; - unsigned short a = 256 * image[y * 8 * w + x * 8 + 6] + image[y * 8 * w + x * 8 + 7]; - RGBA rgba(std::make_pair(r, g), std::make_pair(b, a)); - //uint64_t rgba = (uint64_t)r + ((uint64_t)g << 16) + ((uint64_t)b << 32) + ((uint64_t)a << 48); - rgbam[rgba]++; - rm[r] = 1; - gm[g] = 1; - bm[b] = 1; - am[a] = 1; - } - } - *ro = *go = *bo = *ao = 0; - for(size_t i = 0; i < rm.size(); i++) { - *ro += rm[i]; - *go += gm[i]; - *bo += bm[i]; - *ao += am[i]; - } - - return rgbam.size(); -} - - -void showError(Data& data, const Options& options) { - std::cout << (options.use_hex ? std::hex: std::dec); - std::string prefix = (options.use_hex ? "0x": ""); - if(!data.error) { - std::cout << "No error" << std::endl; - } - std::cout << "Decoding error " << prefix << data.error << ": " << lodepng_error_text(data.error) << std::endl; -} - -void loadWithErrorRecovery(Data& data, const Options& options, bool show_errors_mode) { - (void)options; - unsigned& error = data.error; - lodepng::State& state = data.state; - - data.loadPixels(); - - if(show_errors_mode) { - if(!error) std::cout << "No errors or warnings" << std::endl; - return; - } - - // In case of checksum errors and some other ignorable errors, report it but ignore it and retry - while(error) { - // Not showing regular error here, is shown at end of program. - unsigned error2 = error; - if(error == 57) { - showError(data, options); - if(!show_errors_mode) std::cerr << "Ignoring the error: enabling ignore_crc" << std::endl; - state.decoder.ignore_crc = 1; - data.reloadPixels(); - } else if(error == 58) { - showError(data, options); - if(!show_errors_mode) std::cerr << "Ignoring the error: enabling ignore_adler32" << std::endl; - state.decoder.zlibsettings.ignore_adler32 = 1; - data.reloadPixels(); - } else if(error == 69) { - showError(data, options); - if(!show_errors_mode) std::cerr << "Ignoring the error: enabling ignore_critical" << std::endl; - state.decoder.ignore_critical = 1; - data.reloadPixels(); - } else if(error == 30 || error == 63) { - showError(data, options); - if(!show_errors_mode) std::cerr << "Ignoring the error: enabling ignore_end" << std::endl; - state.decoder.ignore_end = 1; - data.reloadPixels(); - } else { - showError(data, options); - if(!show_errors_mode) std::cerr << "This error is unrecoverable" << std::endl; - break; // other error that we cannot ignore - } - if(!show_errors_mode) if(error == 0) std::cerr << "Successfully ignored the error" << std::endl; - if(error == error2) { - if(!show_errors_mode) std::cerr << "Failed to ignore the error" << std::endl; - break; // avoid infinite loop if ignoring did not fix the error code - } - } - - if(show_errors_mode) { - if(!error) std::cout << "The error is recoverable" << std::endl; - else std::cout << "The error is not recoverable" << std::endl; - } -} - -void showSingleLineSummary(Data& data, const Options& options) { - data.loadInspect(); - if(data.error && data.error != 57) return; // CRC error (57) ignored here for parsing of header only - std::cout << (options.use_hex ? std::hex: std::dec); - std::cout << "Filesize: " << data.buffer.size() << " (" << data.buffer.size() / 1024 << "K)"; - if(data.is_icc) { - std::cout << ", not a PNG but an ICC profile, use -i to expand ICC profile info." << std::endl; - return; - } - - std::cout << ", " << data.w << "x" << data.h << ", "; - std::cout << "Color: " << colorTypeString(data.state.info_png.color.colortype) << ", " << data.state.info_png.color.bitdepth << " bit" << std::endl; -} - -static unsigned getICCUint16(const unsigned char* icc, size_t size, size_t pos) { - if (pos + 2 > size) return 0; - return (unsigned)((icc[pos] << 8) | (icc[pos + 1])); -} - -static unsigned getICCUint32(const unsigned char* icc, size_t size, size_t pos) { - if (pos + 4 > size) return 0; - return (unsigned)((icc[pos] << 24) | (icc[pos + 1] << 16) | (icc[pos + 2] << 8) | (icc[pos + 3] << 0)); -} - -static int getICCInt32(const unsigned char* icc, size_t size, size_t pos) { - if (pos + 4 > size) return 0; - return (int)((icc[pos] << 24) | (icc[pos + 1] << 16) | (icc[pos + 2] << 8) | (icc[pos + 3] << 0)); -} - -// Signed -static float getICC15Fixed16(const unsigned char* icc, size_t size, size_t pos) { - return getICCInt32(icc, size, pos) / 65536.0; -} - -// Unsigned -static float getICC16Fixed16(const unsigned char* icc, size_t size, size_t pos) { - return getICCUint32(icc, size, pos) / 65536.0; -} - -static std::string printableICCWord(const unsigned char* icc, size_t size, size_t pos) { - if (pos + 4 > size) { - return "out of range"; - } - std::string result; - for (int i = 0; i < 4; i++) { - char c = icc[pos + i]; - result += ((c >= 32 && c < 127) ? c : '?'); - } - return result; -} - -void printICCDetails(const unsigned char* icc, size_t size, const std::string& indent) { - // 128 for header, 4 for num tags - if(size < 132) { - std::cout << indent << "Invalid ICC: too small to contain header" << std::endl; - return; - } - if(printableICCWord(icc, size, 36) != "acsp") { - std::cout << indent << "Invalid ICC: does not contain signature \"acsp\"" << std::endl; - return; - } - - std::cout << indent << "profile size: " << getICCUint32(icc, size, 0) << std::endl; - std::cout << indent << "CMM type: " << printableICCWord(icc, size, 4) << std::endl; - - uint32_t version = getICCUint32(icc, size, 8); - uint16_t version_major = (version >> 24) & 255; - uint16_t version_minor = (version >> 20) & 15; - uint16_t version_bugfix = (version >> 16) & 15; - std::cout << indent << "version: " << version_major << "." << version_minor - << "." << version_bugfix << std::endl; - - std::cout << indent << "device class: " << printableICCWord(icc, size, 12) << std::endl; - std::cout << indent << "input space: \"" << printableICCWord(icc, size, 16) << "\", "; - std::cout << "output space: \"" << printableICCWord(icc, size, 20) << "\"" << std::endl; - std::cout << indent; - printf("date: %02d-%02d-%02dT%02d:%02d:%02d\n", - getICCUint16(icc, size, 24), getICCUint16(icc, size, 26), getICCUint16(icc, size, 28), - getICCUint16(icc, size, 30), getICCUint16(icc, size, 32), getICCUint16(icc, size, 34)); - std::cout << indent << "signature: " << printableICCWord(icc, size, 36) << std::endl; - std::cout << indent << "platform: " << printableICCWord(icc, size, 40) << std::endl; - std::cout << indent << "flags: " << getICCUint32(icc, size, 44) << std::endl; - std::cout << indent << "device manufacturer: " << printableICCWord(icc, size, 48) << ", "; - std::cout << "device model: " << printableICCWord(icc, size, 52) << ", "; - std::cout << "device attributes: " << getICCUint32(icc, size, 56) << " " - << getICCUint32(icc, size, 60) << std::endl; - std::cout << indent << "rendering intent: " << getICCUint32(icc, size, 64) << std::endl; - - float pcsx = getICC15Fixed16(icc, size, 68); - float pcsy = getICC15Fixed16(icc, size, 72); - float pcsz = getICC15Fixed16(icc, size, 76); - float pcsxyz = pcsx + pcsy + pcsz; - std::cout << indent << "xyz illuminant: X:" << pcsx << ", Y:" << pcsy << ", Z:" << pcsz - << ", xy:" << (pcsx / pcsxyz) << "," << (pcsy / pcsxyz) << std::endl; - - std::cout << indent << "creator: " << printableICCWord(icc, size, 80) << std::endl; - - // The md5 is present in v2.4 and above profiles, but it's always shown anyway. Those - // bytes are normally all zero for older versions. - std::cout << indent; - printf("md5: %08x%08x%08x%08x\n", getICCUint32(icc, size, 84), getICCUint32(icc, size, 88), - getICCUint32(icc, size, 92), getICCUint32(icc, size, 96)); - - size_t numtags = getICCUint32(icc, size, 128); - std::cout << indent << "num icc tags: " << numtags << std::endl; - if(size < 128 + 4 + numtags * 12) { - std::cout << indent << "Invalid ICC: too small to contain tag descriptions" << std::endl; - return; - } - for(size_t i = 0; i < numtags; i++) { - size_t pos = 132 + i * 12; - std::cout << indent << "icc tag: \"" << printableICCWord(icc, size, pos) << "\""; - size_t offset = getICCUint32(icc, size, pos + 4); - size_t tagsize = getICCUint32(icc, size, pos + 8); - std::cout << ", offset: " << offset << ", size: " << tagsize; - if(offset + tagsize > size || tagsize < 4) { - std::cout << std::endl << indent << "Invalid ICC: tag out of range" << std::endl; - return; - } - std::string datatype = printableICCWord(icc, size, offset); - std::cout << ", datatype: \"" << datatype << "\""; - if(datatype == "XYZ ") { - float x = getICC15Fixed16(icc, size, offset + 8); - float y = getICC15Fixed16(icc, size, offset + 12); - float z = getICC15Fixed16(icc, size, offset + 16); - float xyz = x + y + z; - std::cout << ", X:" << x << ", Y:" << y << ", Z:" << z; - if(xyz) std::cout << ", xy:" << (x / xyz) << "," << (y / xyz); - } - if(datatype == "curv") { - size_t lutsize = getICCUint32(icc, size, offset + 8); - std::cout << ", lookup table size: " << lutsize; - if(lutsize == 1 && offset + 14 <= size) { - std::cout << " (gamma: " << (getICCUint16(icc, size, offset + 12) / 256.0) << ")"; - } - if(lutsize == 0) std::cout << " (linear)"; - } - if(datatype == "para") { - unsigned type = getICCUint16(icc, size, offset + 8); - float gamma = getICC15Fixed16(icc, size, offset + 12); - int numparams = (type == 4) ? 7 : ((type >= 1 && type <= 3) ? (type + 1) : 0); - std::cout << " type: " << type << ", gamma: " << gamma; - if(numparams > 0) { - std::cout << ", params: "; - for(int j = 0; j < numparams; j++) { - if(j > 0) std::cout << ", "; - std::cout << getICC15Fixed16(icc, size, offset + 16 + j * 4); - } - } - } - if(datatype == "sf32") { - std::cout << ":"; - for(size_t j = 8; j < tagsize; j += 4) { - float v = getICC15Fixed16(icc, size, offset + j); - std::cout << " " << v; - } - } - if(datatype == "chrm") { - size_t numchannels = getICCUint16(icc, size, offset + 8); - std::cout << ": n:" << numchannels - << " phosphor:" << getICCUint16(icc, size, offset + 10); - for(size_t j = 0; j < numchannels; j++) { - std::cout << " xy:" << getICC16Fixed16(icc, size, offset + 12 + j * 8) - << "," << getICC16Fixed16(icc, size, offset + 12 + j * 8 + 4); - } - } - if(datatype == "text" || datatype == "mluc" || datatype == "desc") { - // TODO: this is a bit of a simplification of the parse for now, e.g. - // ignoring UTF-16, instead implicitely skipping non-ASCII bytes, and - // potentially printing things multiple times in a row if multiple - // variants are in desc or mluc. - std::cout << ": "; - for(size_t j = (datatype == "mluc" ? 28 : 8); j < tagsize; j++) { - char c = icc[offset + j]; - if(c >= 32 && c < 127) std::cout << c; - } - } - std::cout << std::endl; - } -} - -void showHeaderInfo(Data& data, const Options& options) { - data.loadInspect(); - if(data.error) return; - std::cout << (options.use_hex ? std::hex: std::dec); - - const LodePNGInfo& info = data.state.info_png; - const LodePNGColorMode& color = info.color; - if(options.show_header) { - std::cout << "Filesize: " << data.buffer.size() << " (" << data.buffer.size() / 1024 << "K)" << std::endl; - if(data.is_icc) { - std::cout << "Not a PNG but an ICC profile, use -i for more info." << std::endl; - } else { - std::cout << "Width: " << data.w << std::endl; - std::cout << "Height: " << data.h << std::endl; - if(options.verbose) { - double bpp = data.buffer.size() / (double)(data.w * data.h); - std::cout << "Compressed bpp: " << bpp << std::endl; - } - std::cout << "Interlace method: " << info.interlace_method << std::endl; - if(options.verbose) { - std::cout << "Compression method: " << info.compression_method << std::endl; - std::cout << "Filter method: " << info.filter_method << std::endl; - } - std::cout << "Color type: " << colorTypeString(color.colortype) << std::endl; - std::cout << "Bit depth: " << color.bitdepth << std::endl; - if(options.verbose) { - std::cout << "Bits per pixel: " << lodepng_get_bpp(&color) << std::endl; - std::cout << "Channels per pixel: " << lodepng_get_channels(&color) << std::endl; - std::cout << "Is greyscale type: " << lodepng_is_greyscale_type(&color) << std::endl; - std::cout << "Can have alpha: " << lodepng_can_have_alpha(&color) << std::endl; - std::cout << "Has color key: " << color.key_defined << std::endl; - } - } - } - if(options.show_png_info && !data.is_icc) { - if (color.colortype == LCT_PALETTE) { - std::cout << "Palette size: " << color.palettesize << std::endl; - } - if(color.key_defined) { - std::cout << "Color key rgb: " << color.key_r - << ", " << color.key_g - << ", " << color.key_b << std::endl; - } - if(info.background_defined) { - if(color.colortype == LCT_PALETTE) { - std::cout << "Background index: " << info.background_r << std::endl; - } else { - std::cout << "Background rgb: " << info.background_r - << ", " << info.background_g - << ", " << info.background_b << std::endl; - } - } - if(info.gama_defined) { - std::cout << "gAMA defined: " << info.gama_gamma << " (" << (info.gama_gamma / 100000.0) - << ", " << (100000.0 / info.gama_gamma) << ")" << std::endl; - } - if(info.chrm_defined) { - std::cout << "cHRM defined: w: " << (info.chrm_white_x / 100000.0) << " " << (info.chrm_white_y / 100000.0) - << ", r: " << (info.chrm_red_x / 100000.0) << " " << (info.chrm_red_y / 100000.0) - << ", g: " << (info.chrm_green_x / 100000.0) << " " << (info.chrm_green_y / 100000.0) - << ", b: " << (info.chrm_blue_x / 100000.0) << " " << (info.chrm_blue_y / 100000.0) - << std::endl; - } - if(info.srgb_defined) { - std::cout << "sRGB defined: rendering intent: " << info.srgb_intent << std::endl; - } - if(info.iccp_defined) { - std::cout << "iCCP defined (" << info.iccp_profile_size << " bytes): name: " << info.iccp_name << std::endl; - if(options.verbose && !options.show_icc_details && !options.show_icc_hex) { - std::cout << "Use -i or -I to show ICC profile details or hex" << std::endl; - } - } - } - if(info.iccp_defined && options.show_icc_details) { - if(!options.show_header) { - std::cout << "ICC profile details (" << info.iccp_profile_size << " bytes), PNG name: " << info.iccp_name << std::endl; - } - printICCDetails(info.iccp_profile, info.iccp_profile_size, " "); - std::cout << "end of ICC profile" << std::endl; - } - if(info.iccp_defined && options.show_icc_hex) { - for(size_t i = 0; i < info.iccp_profile_size; i++) { - unsigned char c = info.iccp_profile[i]; - if(options.hexformat == HF_BIN) { - printf("%c", c); - } else { - if(c > 32 && c < 127 && options.hexformat == HF_MIX) printf(" %c ", c); - else printf("%02x ", c); - if(i % 32 == 31 && i + 1 != info.iccp_profile_size) std::cout << std::endl; - } - } - if(options.hexformat != HF_BIN) std::cout << std::endl; - } - - if(options.show_png_info && !data.is_icc) { - if(options.verbose) std::cout << "Physics defined: " << info.phys_defined << std::endl; - if(info.phys_defined) { - std::cout << "Physics: X: " << info.phys_x << ", Y: " << info.phys_y << ", unit: " << info.phys_unit << std::endl; - } - } -} - -// shortens the text unless options.expand_long_texts is true -std::string shortenText(const std::string& text, const Options& options) { - if(options.expand_long_texts) return text; - size_t maxlen = 512; - size_t maxnl = options.verbose ? 5 : 1; - size_t numnl = 0; // amount of newlines - for(size_t i = 0; i < text.size(); i++) { - if(text[i] == 10) numnl++; - if(numnl >= maxnl) { - maxlen = i; - break; - } - } - - if(text.size() < maxlen) return text; - - return text.substr(0, maxlen) + (numnl > 1 ? "\n" : "") + "... [TEXT SNIPPED! use -t to expand long text]"; -} - -// A bit more PNG info, which is from chunks that can come after IDAT. showHeaderInfo shows most other stuff. -void showPNGInfo(Data& data, const Options& options) { - if(data.is_icc) return; - loadWithErrorRecovery(data, options, false); - if(data.error) return; - std::cout << (options.use_hex ? std::hex: std::dec); - - const LodePNGInfo& info = data.state.info_png; - - if(options.verbose) std::cout << "Texts: " << info.text_num << std::endl; - for(size_t i = 0; i < info.text_num; i++) { - std::cout << "Text (" << (strlen(info.text_strings[i])) << " bytes): " - << info.text_keys[i] << ": " << shortenText(info.text_strings[i], options) << std::endl; - } - if(options.verbose) std::cout << "International texts: " << info.itext_num << std::endl; - for(size_t i = 0; i < info.itext_num; i++) { - std::cout << "Text (" << (strlen(info.itext_strings[i])) << " bytes): " - << info.itext_keys[i] << ", " - << info.itext_langtags[i] << ", " - << info.itext_transkeys[i] << ": " - << shortenText(info.itext_strings[i], options) << std::endl; - } - if(options.verbose) std::cout << "Time defined: " << info.time_defined << std::endl; - if(info.time_defined) { - const LodePNGTime& time = info.time; - printf("time: %02d-%02d-%02dT%02d:%02d:%02d\n", - time.year, time.month, time.day, time.hour, time.minute, time.second); - - } -} - -void showColorStats(Data& data, const Options& options) { - if(data.is_icc) return; - std::cout << (options.use_hex ? std::hex: std::dec); - std::vector& image = data.pixels; - unsigned& w = data.w; - unsigned& h = data.h; - - data.loadPixels(); - if(data.error) return; - // TODO: move to show color stats function - if(options.verbose) std::cout << "Num pixels: " << w * h << std::endl; - size_t rc, gc, bc, ac; - std::cout << "Num unique colors: " << countColors(image, w, h, &rc, &gc, &bc, &ac); - std::cout << " (r: " << rc << ", g: " << gc << ", b: " << bc << ", a: " << ac << ")"; - std::cout << std::endl; - if(w > 0 && h > 0) { - double avg[4] = {0, 0, 0, 0}; - double min[4] = {999999, 999999, 999999, 999999}; - double max[4] = {0, 0, 0, 0}; - for(unsigned y = 0; y < h; y++) { - for(unsigned x = 0; x < w; x++) { - for(int c = 0; c < 4; c++) { - double v = 256 * image[y * 8 * w + x * 8 + c * 2] + image[y * 8 * w + x * 8 + c * 2 + 1]; - avg[c] += v; - min[c] = std::min(min[c], v); - max[c] = std::max(max[c], v); - } - } - } - for(int c = 0; c < 4; c++) { - avg[c] /= (w * h * 257.0); - min[c] /= 257.0; - max[c] /= 257.0; - } - if(options.verbose) std::cout << "Ranges shown as 0.0-255.0, even for 16-bit data:" << std::endl; - std::cout << "Average color: " << avg[0] << ", " << avg[1] << ", " << avg[2] << ", " << avg[3] << std::endl; - std::cout << "Color ranges: " << min[0] << "-" << max[0] << ", " << min[1] << "-" << max[1] << ", " << min[2] << "-" << max[2] << ", " << min[3] << "-" << max[3] << std::endl; - } -} - -void showErrors(Data& data, const Options& options) { - std::cout << "Error report: " << std::endl; - Data data2(data.filename); - loadWithErrorRecovery(data2, options, true); -} - -void showRender(Data& data, const Options& options) { - data.loadPixels(); - if(data.error) return; - if(options.rendermode == RM_ASCII) { - displayAsciiArt(data.pixels, data.w, data.h, options.rendersize); - } - - if(options.rendermode == RM_HEX) { - displayColorsHex(data.pixels, data.w, data.h, false); - } - - if(options.rendermode == RM_HEX16) { - displayColorsHex(data.pixels, data.w, data.h, true); - } - - if(options.rendermode == RM_PAL) { - displayPalettePixels(data.buffer, options); - } -} - - -void showInfos(Data& data, const Options& options) { - if(options.show_one_line_summary) showSingleLineSummary(data, options); - if(options.show_errors) showErrors(data, options); - if(options.show_header || options.show_icc_details || options.show_icc_hex) showHeaderInfo(data, options); - if(options.show_color_stats) showColorStats(data, options); - if(options.show_png_info) showPNGInfo(data, options); - if(options.show_palette) displayPalette(data, options); - if(options.show_chunks || options.show_chunks2) displayChunkNames(data, options); - if(options.show_filters) displayFilterTypes(data, options); - if(options.show_render) showRender(data, options); - if(options.zlib_info || options.zlib_blocks || options.zlib_counts || options.zlib_full) { - printZlibInfo(data, options); - } - - if(data.error) showError(data, options); -} - -int main(int argc, char *argv[]) { - Options options; - bool options_chosen = false; - - std::vector filenames; - for (int i = 1; i < argc; i++) { - std::string s = argv[i]; - if(s.size() > 1 && s[0] == '-' && s[1] != '-') { - // anything that chooses actual set disables the defaults - if(s != "-x" && s != "-v" && s != "-t") options_chosen = true; - for(size_t j = 1; j < s.size(); j++) { - char c = s[j]; - if(c == 'o') options.show_one_line_summary = true; - else if(c == 'H') options.show_header = true; - else if(c == 'i') options.show_icc_details = true; - else if(c == 'I') options.show_icc_hex = true; - else if(c == 'v') options.verbose = true; - else if(c == 't') options.expand_long_texts = true; - else if(c == 's') options.show_color_stats = true; - else if(c == 'e') options.show_errors = true; - else if(c == 'p') options.show_header = options.show_png_info = true; - else if(c == 'r') options.show_render = true; - else if(c == 'l') options.show_palette = true; - else if(c == 'L') options.show_palette_pixels = true; - else if(c == 'c') options.show_chunks = true; - else if(c == 'C') options.show_chunks2 = true; - else if(c == 'f') options.show_filters = true; - else if(c == 'z') options.zlib_info = true; - else if(c == 'b') options.zlib_blocks = true; - else if(c == 'B') { - options.zlib_blocks = true; - options.zlib_counts = true; - } - else if(c == '7') { - options.zlib_blocks = true; - options.zlib_full = true; - } - else if(c == 'x') { - options.use_hex = true; - std::cout << std::hex; - } else { - if(s != "--help" && c != 'h' && c != '?') std::cout << "Unknown flag: " << c << ". Use -h for help" << std::endl; - showHelp(); - return 0; - } - - } - } else if(s.size() > 1 && s[0] == '-' && s[1] == '-') { - size_t eqpos = 2; - while(eqpos < s.size() && s[eqpos] != '=') eqpos++; - std::string key = s.substr(2, eqpos - 2); - std::string value = (eqpos + 1) < s.size() ? s.substr(eqpos + 1) : ""; - if(key == "help") { - showHelp(); - return 0; - } - if(key == "mode") { - if(value == "ascii") options.rendermode = RM_ASCII; - else if(value == "hex") options.rendermode = RM_HEX; - else if(value == "hex16") options.rendermode = RM_HEX16; - else if(value == "palette") options.rendermode = RM_PAL; - } - if(key == "size") { - int size = strtoval(value); - if(options.rendersize >= 1 && options.rendersize <= 4096) options.rendersize = size; - } - if(key == "format") { - if(value == "mix") options.hexformat = HF_MIX; - else if(value == "hex") options.hexformat = HF_HEX; - else if(value == "bin") options.hexformat = HF_BIN; - } - } - else filenames.push_back(s); - } - - if(filenames.empty()) { - std::cout << "Please provide a filename to preview" << std::endl; - showHelp(); - return 0; - } - - if(!options_chosen) { - //fill in defaults - options.show_header = true; - options.show_png_info = true; - options.show_chunks2 = true; - // verbose lets individual sections show more, and in addition adds more default unlocked sections if no specific one chosen - if(options.verbose) { - options.show_chunks2 = false; - options.show_chunks = true; - } - } - - for(size_t i = 0; i < filenames.size(); i++) { - if(filenames.size() > 1) { - if(i > 0 && !options.show_one_line_summary) std::cout << std::endl; - std::cout << filenames[i] << ":"; - if(!options.show_one_line_summary) std::cout << std::endl; else std::cout << " "; - } - Data data(filenames[i]); - showInfos(data, options); - } -} - -#endif diff --git a/Marlin/lib/STM32_USB_Host_Library/library.json b/Marlin/lib/STM32_USB_Host_Library/library.json deleted file mode 100644 index 34a73e9942..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/library.json +++ /dev/null @@ -1,16 +0,0 @@ -{ - "name": "stm32_host_usb_library", - "version": "0.0.1", - "keywords": "stm32 usb lib. port by langgo", - "description": "stm32 usb library for marlin. port by langgo.", - "build": { - "srcFilter": [ - "+<*.c>", - "+<*.cpp>", - "+<*.h>" - ] - }, - "frameworks": "arduino", - "platforms": "*" -} - diff --git a/Marlin/lib/STM32_USB_Host_Library/src/stm32_usbh_conf.h b/Marlin/lib/STM32_USB_Host_Library/src/stm32_usbh_conf.h deleted file mode 100644 index f3a5f9eaee..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/src/stm32_usbh_conf.h +++ /dev/null @@ -1,160 +0,0 @@ -/** - ****************************************************************************** - * @file usbh_conf_template.h - * @author MCD Application Team - * @brief Header file for usbh_conf_template.c - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2015 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under Ultimate Liberty license - * SLA0044, the "License"; You may not use this file except in compliance with - * the License. You may obtain a copy of the License at: - * www.st.com/SLA0044 - * - ****************************************************************************** - */ - -/* Define to prevent recursive inclusion -------------------------------------*/ -#ifndef __STM32_USBH_CONF_H -#define __STM32_USBH_CONF_H - -#ifdef __cplusplus -extern "C" { -#endif - -/* Includes ------------------------------------------------------------------*/ -#include "stm32f4xx.h" /* replace 'stm32xxx' with your HAL driver header filename, ex: stm32f4xx.h */ -#include "stm32f4xx_hal.h" - -#include -#include -#include - -/** @addtogroup STM32_USB_HOST_LIBRARY - * @{ - */ - -/** @defgroup USBH_CONF - * @brief usb host low level driver configuration file - * @{ - */ - -/** @defgroup USBH_CONF_Exported_Defines - * @{ - */ - -#define USBH_MAX_NUM_ENDPOINTS 2U -#define USBH_MAX_NUM_INTERFACES 2U -#define USBH_MAX_NUM_CONFIGURATION 1U -#define USBH_KEEP_CFG_DESCRIPTOR 1U -#define USBH_MAX_NUM_SUPPORTED_CLASS 1U -#define USBH_MAX_SIZE_CONFIGURATION 0x200U -#define USBH_MAX_DATA_BUFFER 0x200U -#define USBH_DEBUG_LEVEL 0U -#define USBH_USE_OS 0U - - -/****************************************/ -/* #define for FS and HS identification */ -#define HOST_HS 0 -#define HOST_FS 1 - -/** @defgroup USBH_Exported_Macros - * @{ - */ - -/* Memory management macros */ -#define USBH_malloc malloc -#define USBH_free free -#define USBH_memset memset -#define USBH_memcpy memcpy - -/* DEBUG macros */ -#if (USBH_DEBUG_LEVEL > 0U) -#define USBH_UsrLog(...) do { \ - printf(__VA_ARGS__); \ - printf("\n"); \ -} while (0) -#else -#define USBH_UsrLog(...) do {} while (0) -#endif - -#if (USBH_DEBUG_LEVEL > 1U) - -#define USBH_ErrLog(...) do { \ - printf("ERROR: ") ; \ - printf(__VA_ARGS__); \ - printf("\n"); \ -} while (0) -#else -#define USBH_ErrLog(...) do {} while (0) -#endif - -#if (USBH_DEBUG_LEVEL > 2U) -#define USBH_DbgLog(...) do { \ - printf("DEBUG : ") ; \ - printf(__VA_ARGS__); \ - printf("\n"); \ -} while (0) -#else -#define USBH_DbgLog(...) do {} while (0) -#endif - -/** - * @} - */ - - - -/** - * @} - */ - - -/** @defgroup USBH_CONF_Exported_Types - * @{ - */ -/** - * @} - */ - - -/** @defgroup USBH_CONF_Exported_Macros - * @{ - */ -/** - * @} - */ - -/** @defgroup USBH_CONF_Exported_Variables - * @{ - */ -/** - * @} - */ - -/** @defgroup USBH_CONF_Exported_FunctionsPrototype - * @{ - */ -/** - * @} - */ - -#ifdef __cplusplus -} -#endif - -#endif /* __USBH_CONF_TEMPLATE_H */ - - -/** - * @} - */ - -/** - * @} - */ -/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_core.c b/Marlin/lib/STM32_USB_Host_Library/src/usbh_core.c deleted file mode 100644 index 8046c14b36..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/src/usbh_core.c +++ /dev/null @@ -1,1416 +0,0 @@ -/** - ****************************************************************************** - * @file usbh_core.c - * @author MCD Application Team - * @brief This file implements the functions for the core state machine process - * the enumeration and the control transfer process - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2015 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under Ultimate Liberty license - * SLA0044, the "License"; You may not use this file except in compliance with - * the License. You may obtain a copy of the License at: - * www.st.com/SLA0044 - * - ****************************************************************************** - */ - -/* Includes ------------------------------------------------------------------*/ -#include "usbh_core.h" - - -/** @addtogroup USBH_LIB - * @{ - */ - -/** @addtogroup USBH_LIB_CORE - * @{ - */ - -/** @defgroup USBH_CORE - * @brief This file handles the basic enumeration when a device is connected - * to the host. - * @{ - */ - - -/** @defgroup USBH_CORE_Private_Defines - * @{ - */ -#define USBH_ADDRESS_DEFAULT 0x00U -#define USBH_ADDRESS_ASSIGNED 0x01U -#define USBH_MPS_DEFAULT 0x40U -/** - * @} - */ - -/** @defgroup USBH_CORE_Private_Macros - * @{ - */ -/** - * @} - */ - - -/** @defgroup USBH_CORE_Private_Variables - * @{ - */ -#if (USBH_USE_OS == 1U) -#if (osCMSIS >= 0x20000U) -osThreadAttr_t USBH_Thread_Atrr; -#endif -#endif - - -/** - * @} - */ - - -/** @defgroup USBH_CORE_Private_Functions - * @{ - */ -static USBH_StatusTypeDef USBH_HandleEnum(USBH_HandleTypeDef *phost); -static void USBH_HandleSof(USBH_HandleTypeDef *phost); -static USBH_StatusTypeDef DeInitStateMachine(USBH_HandleTypeDef *phost); - -#if (USBH_USE_OS == 1U) -#if (osCMSIS < 0x20000U) -static void USBH_Process_OS(void const *argument); -#else -static void USBH_Process_OS(void *argument); -#endif -#endif - -typedef char bool; - -// uint8_t udiskMounted = 0; -// extern uint16_t plr_num; -extern bool plr_flag; - -/** - * @brief HCD_Init - * Initialize the HOST Core. - * @param phost: Host Handle - * @param pUsrFunc: User Callback - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_Init(USBH_HandleTypeDef *phost, - void (*pUsrFunc)(USBH_HandleTypeDef *phost, - uint8_t id), uint8_t id) -{ - /* Check whether the USB Host handle is valid */ - if (phost == NULL) - { - USBH_ErrLog("Invalid Host handle"); - return USBH_FAIL; - } - - /* Set DRiver ID */ - phost->id = id; - - /* Unlink class*/ - phost->pActiveClass = NULL; - phost->ClassNumber = 0U; - - /* Restore default states and prepare EP0 */ - DeInitStateMachine(phost); - - /* Restore default Device connection states */ - phost->device.PortEnabled = 0U; - phost->device.is_connected = 0U; - phost->device.is_disconnected = 0U; - phost->device.is_ReEnumerated = 0U; - - /* Assign User process */ - if (pUsrFunc != NULL) - { - phost->pUser = pUsrFunc; - } - -#if (USBH_USE_OS == 1U) -#if (osCMSIS < 0x20000U) - - /* Create USB Host Queue */ - osMessageQDef(USBH_Queue, MSGQUEUE_OBJECTS, uint16_t); - phost->os_event = osMessageCreate(osMessageQ(USBH_Queue), NULL); - - /* Create USB Host Task */ -#if defined (USBH_PROCESS_STACK_SIZE) - osThreadDef(USBH_Thread, USBH_Process_OS, USBH_PROCESS_PRIO, 0U, USBH_PROCESS_STACK_SIZE); -#else - osThreadDef(USBH_Thread, USBH_Process_OS, USBH_PROCESS_PRIO, 0U, 8U * configMINIMAL_STACK_SIZE); -#endif /* defined (USBH_PROCESS_STACK_SIZE) */ - - phost->thread = osThreadCreate(osThread(USBH_Thread), phost); - -#else - - /* Create USB Host Queue */ - phost->os_event = osMessageQueueNew(MSGQUEUE_OBJECTS, sizeof(uint32_t), NULL); - - /* Create USB Host Task */ - USBH_Thread_Atrr.name = "USBH_Queue"; - -#if defined (USBH_PROCESS_STACK_SIZE) - USBH_Thread_Atrr.stack_size = USBH_PROCESS_STACK_SIZE; -#else - USBH_Thread_Atrr.stack_size = (8U * configMINIMAL_STACK_SIZE); -#endif /* defined (USBH_PROCESS_STACK_SIZE) */ - - USBH_Thread_Atrr.priority = USBH_PROCESS_PRIO; - phost->thread = osThreadNew(USBH_Process_OS, phost, &USBH_Thread_Atrr); - -#endif /* (osCMSIS < 0x20000U) */ -#endif /* (USBH_USE_OS == 1U) */ - - /* Initialize low level driver */ - USBH_LL_Init(phost); - - return USBH_OK; -} - - -/** - * @brief HCD_Init - * De-Initialize the Host portion of the driver. - * @param phost: Host Handle - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_DeInit(USBH_HandleTypeDef *phost) -{ - DeInitStateMachine(phost); - - /* Restore default Device connection states */ - phost->device.PortEnabled = 0U; - phost->device.is_connected = 0U; - phost->device.is_disconnected = 0U; - phost->device.is_ReEnumerated = 0U; - phost->device.RstCnt = 0U; - phost->device.EnumCnt = 0U; - - if (phost->pData != NULL) - { - USBH_LL_Stop(phost); - } - - return USBH_OK; -} - - -/** - * @brief DeInitStateMachine - * De-Initialize the Host state machine. - * @param phost: Host Handle - * @retval USBH Status - */ -static USBH_StatusTypeDef DeInitStateMachine(USBH_HandleTypeDef *phost) -{ - uint32_t i = 0U; - - /* Clear Pipes flags*/ - for (i = 0U; i < USBH_MAX_PIPES_NBR; i++) - { - phost->Pipes[i] = 0U; - } - - for (i = 0U; i < USBH_MAX_DATA_BUFFER; i++) - { - phost->device.Data[i] = 0U; - } - - phost->gState = HOST_IDLE; - phost->EnumState = ENUM_IDLE; - phost->RequestState = CMD_SEND; - phost->Timer = 0U; - - phost->Control.state = CTRL_SETUP; - phost->Control.pipe_size = USBH_MPS_DEFAULT; - phost->Control.errorcount = 0U; - - phost->device.address = USBH_ADDRESS_DEFAULT; - phost->device.speed = USBH_SPEED_FULL; - phost->device.RstCnt = 0U; - phost->device.EnumCnt = 0U; - - return USBH_OK; -} - - -/** - * @brief USBH_RegisterClass - * Link class driver to Host Core. - * @param phost : Host Handle - * @param pclass: Class handle - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_RegisterClass(USBH_HandleTypeDef *phost, USBH_ClassTypeDef *pclass) -{ - USBH_StatusTypeDef status = USBH_OK; - - if (pclass != NULL) - { - if (phost->ClassNumber < USBH_MAX_NUM_SUPPORTED_CLASS) - { - /* link the class to the USB Host handle */ - phost->pClass[phost->ClassNumber++] = pclass; - status = USBH_OK; - } - else - { - USBH_ErrLog("Max Class Number reached"); - status = USBH_FAIL; - } - } - else - { - USBH_ErrLog("Invalid Class handle"); - status = USBH_FAIL; - } - - return status; -} - - -/** - * @brief USBH_SelectInterface - * Select current interface. - * @param phost: Host Handle - * @param interface: Interface number - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_SelectInterface(USBH_HandleTypeDef *phost, uint8_t interface) -{ - USBH_StatusTypeDef status = USBH_OK; - - if (interface < phost->device.CfgDesc.bNumInterfaces) - { - phost->device.current_interface = interface; - USBH_UsrLog("Switching to Interface (#%d)", interface); - USBH_UsrLog("Class : %xh", phost->device.CfgDesc.Itf_Desc[interface].bInterfaceClass); - USBH_UsrLog("SubClass : %xh", phost->device.CfgDesc.Itf_Desc[interface].bInterfaceSubClass); - USBH_UsrLog("Protocol : %xh", phost->device.CfgDesc.Itf_Desc[interface].bInterfaceProtocol); - } - else - { - USBH_ErrLog("Cannot Select This Interface."); - status = USBH_FAIL; - } - - return status; -} - - -/** - * @brief USBH_GetActiveClass - * Return Device Class. - * @param phost: Host Handle - * @param interface: Interface index - * @retval Class Code - */ -uint8_t USBH_GetActiveClass(USBH_HandleTypeDef *phost) -{ - return (phost->device.CfgDesc.Itf_Desc[0].bInterfaceClass); -} - - -/** - * @brief USBH_FindInterface - * Find the interface index for a specific class. - * @param phost: Host Handle - * @param Class: Class code - * @param SubClass: SubClass code - * @param Protocol: Protocol code - * @retval interface index in the configuration structure - * @note : (1)interface index 0xFF means interface index not found - */ -uint8_t USBH_FindInterface(USBH_HandleTypeDef *phost, uint8_t Class, uint8_t SubClass, uint8_t Protocol) -{ - USBH_InterfaceDescTypeDef *pif; - USBH_CfgDescTypeDef *pcfg; - uint8_t if_ix = 0U; - - pif = (USBH_InterfaceDescTypeDef *)0; - pcfg = &phost->device.CfgDesc; - - while (if_ix < USBH_MAX_NUM_INTERFACES) - { - pif = &pcfg->Itf_Desc[if_ix]; - if (((pif->bInterfaceClass == Class) || (Class == 0xFFU)) && - ((pif->bInterfaceSubClass == SubClass) || (SubClass == 0xFFU)) && - ((pif->bInterfaceProtocol == Protocol) || (Protocol == 0xFFU))) - { - return if_ix; - } - if_ix++; - } - return 0xFFU; -} - - -/** - * @brief USBH_FindInterfaceIndex - * Find the interface index for a specific class interface and alternate setting number. - * @param phost: Host Handle - * @param interface_number: interface number - * @param alt_settings : alternate setting number - * @retval interface index in the configuration structure - * @note : (1)interface index 0xFF means interface index not found - */ -uint8_t USBH_FindInterfaceIndex(USBH_HandleTypeDef *phost, uint8_t interface_number, uint8_t alt_settings) -{ - USBH_InterfaceDescTypeDef *pif; - USBH_CfgDescTypeDef *pcfg; - uint8_t if_ix = 0U; - - pif = (USBH_InterfaceDescTypeDef *)0; - pcfg = &phost->device.CfgDesc; - - while (if_ix < USBH_MAX_NUM_INTERFACES) - { - pif = &pcfg->Itf_Desc[if_ix]; - if ((pif->bInterfaceNumber == interface_number) && (pif->bAlternateSetting == alt_settings)) - { - return if_ix; - } - if_ix++; - } - return 0xFFU; -} - - -/** - * @brief USBH_Start - * Start the USB Host Core. - * @param phost: Host Handle - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_Start(USBH_HandleTypeDef *phost) -{ - /* Start the low level driver */ - USBH_LL_Start(phost); - - /* Activate VBUS on the port */ - USBH_LL_DriverVBUS(phost, TRUE); - - return USBH_OK; -} - - -/** - * @brief USBH_Stop - * Stop the USB Host Core. - * @param phost: Host Handle - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_Stop(USBH_HandleTypeDef *phost) -{ - /* DeActivate VBUS on the port */ - USBH_LL_DriverVBUS(phost, FALSE); - - /* Stop and cleanup the low level driver */ - USBH_LL_Stop(phost); - - /* Free Control Pipes */ - USBH_FreePipe(phost, phost->Control.pipe_in); - USBH_FreePipe(phost, phost->Control.pipe_out); - - return USBH_OK; -} - -#if 1//def USE_GD32 - #define RESET_ENUM_TIME 2 - static uint8_t need_reset_enum = RESET_ENUM_TIME; -#endif -/** - * @brief HCD_ReEnumerate - * Perform a new Enumeration phase. - * @param phost: Host Handle - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_ReEnumerate(USBH_HandleTypeDef *phost) -{ - if (USBH_IsPortEnabled(phost)) - { - phost->device.is_ReEnumerated = 1U; - - /* Stop Host */ - USBH_Stop(phost); - - phost->device.is_disconnected = 1U; - } - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_PORT_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - - return USBH_OK; -} - -// CONFIG_ECHO_HEADING("Linear Advance:"); -// SERIAL_ECHOLNPAIR(" M900 K", planner.extruder_advance_K[0]); -// static uint64_t pty = 0; -/** - * @brief USBH_Process - * Background process of the USB Core. - * @param phost: Host Handle - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_Process(USBH_HandleTypeDef *phost) -{ - __IO USBH_StatusTypeDef status = USBH_FAIL; - uint8_t idx = 0U; - - /* check for Host pending port disconnect event */ - if (phost->device.is_disconnected == 1U) - { - phost->gState = HOST_DEV_DISCONNECTED; - } - - switch (phost->gState) - { - case HOST_IDLE: - { - if (phost->device.is_connected) - { - USBH_UsrLog("USB Device Connected"); - - /* Wait for 200 ms after connection */ - phost->gState = HOST_DEV_WAIT_FOR_ATTACHMENT; - USBH_Delay(100U); - USBH_LL_ResetPort(phost); - - /* Make sure to start with Default address */ - phost->device.address = USBH_ADDRESS_DEFAULT; - phost->Timeout = 0U; - - #if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_PORT_EVENT; - #if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); - #else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); - #endif - #endif - } - }break; - - case HOST_DEV_WAIT_FOR_ATTACHMENT: /* Wait for Port Enabled */ - { - if (phost->device.PortEnabled == 1U) - { - USBH_UsrLog("USB Device Reset Completed"); - phost->device.RstCnt = 0U; - phost->gState = HOST_DEV_ATTACHED; - } - else - { - if (phost->Timeout > USBH_DEV_RESET_TIMEOUT) - { - phost->device.RstCnt++; - if (phost->device.RstCnt > 3U) - { - /* Buggy Device can't complete reset */ - USBH_UsrLog("USB Reset Failed, Please unplug the Device."); - phost->gState = HOST_ABORT_STATE; - } - else - { - phost->gState = HOST_IDLE; - } - } - else - { - phost->Timeout += 10U; - USBH_Delay(10U); - } - } - #if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_PORT_EVENT; - #if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); - #else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); - #endif - #endif - }break; - - case HOST_DEV_ATTACHED: - { - if (phost->pUser != NULL) - { - phost->pUser(phost, HOST_USER_CONNECTION); - } - - /* Wait for 100 ms after Reset */ - USBH_Delay(100U); - - phost->device.speed = USBH_LL_GetSpeed(phost); - - phost->gState = HOST_ENUMERATION; - - phost->Control.pipe_out = USBH_AllocPipe(phost, 0x00U); - phost->Control.pipe_in = USBH_AllocPipe(phost, 0x80U); - - /* Open Control pipes */ - USBH_OpenPipe(phost, phost->Control.pipe_in, 0x80U, - phost->device.address, phost->device.speed, - USBH_EP_CONTROL, (uint16_t)phost->Control.pipe_size); - - /* Open Control pipes */ - USBH_OpenPipe(phost, phost->Control.pipe_out, 0x00U, - phost->device.address, phost->device.speed, - USBH_EP_CONTROL, (uint16_t)phost->Control.pipe_size); - - #if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_PORT_EVENT; - #if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); - #else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); - #endif - #endif - }break; - - case HOST_ENUMERATION: - { - /* Check for enumeration status */ - status = USBH_HandleEnum(phost); - if (status == USBH_OK) - { - /* The function shall return USBH_OK when full enumeration is complete */ - USBH_UsrLog("Enumeration done."); - - phost->device.current_interface = 0U; - - if (phost->device.DevDesc.bNumConfigurations == 1U) - { - USBH_UsrLog("This device has only 1 configuration."); - phost->gState = HOST_SET_CONFIGURATION; - } - else - { - phost->gState = HOST_INPUT; - } - #if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; - #if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); - #else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); - #endif - #endif - } - }break; - - case HOST_INPUT: - { - /* user callback for end of device basic enumeration */ - if (phost->pUser != NULL) - { - phost->pUser(phost, HOST_USER_SELECT_CONFIGURATION); - phost->gState = HOST_SET_CONFIGURATION; - - #if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; - #if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); - #else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); - #endif - #endif - } - }break; - - case HOST_SET_CONFIGURATION: - { - /* set configuration */ - if (USBH_SetCfg(phost, (uint16_t)phost->device.CfgDesc.bConfigurationValue) == USBH_OK) - { - phost->gState = HOST_SET_WAKEUP_FEATURE; - USBH_UsrLog("Default configuration set."); - } - - #if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_PORT_EVENT; - #if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); - #else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); - #endif - #endif - }break; - - case HOST_SET_WAKEUP_FEATURE: - { - if ((phost->device.CfgDesc.bmAttributes) & (1U << 5)) - { - if (USBH_SetFeature(phost, FEATURE_SELECTOR_REMOTEWAKEUP) == USBH_OK) - { - USBH_UsrLog("Device remote wakeup enabled"); - phost->gState = HOST_CHECK_CLASS; - } - } - else - { - phost->gState = HOST_CHECK_CLASS; - } - - #if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_PORT_EVENT; - #if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); - #else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); - #endif - #endif - }break; - - case HOST_CHECK_CLASS: - { - if (phost->ClassNumber == 0U) - { - USBH_UsrLog("No Class has been registered."); - } - else - { - phost->pActiveClass = NULL; - - for (idx = 0U; idx < USBH_MAX_NUM_SUPPORTED_CLASS; idx++) - { - if (phost->pClass[idx]->ClassCode == phost->device.CfgDesc.Itf_Desc[0].bInterfaceClass) - { - phost->pActiveClass = phost->pClass[idx]; - break; - } - } - - if (phost->pActiveClass != NULL) - { - if (phost->pActiveClass->Init(phost) == USBH_OK) - { - phost->gState = HOST_CLASS_REQUEST; - USBH_UsrLog("%s class started.", phost->pActiveClass->Name); - - /* Inform user that a class has been activated */ - phost->pUser(phost, HOST_USER_CLASS_SELECTED); - } - else - { - phost->gState = HOST_ABORT_STATE; - USBH_UsrLog("Device not supporting %s class.", phost->pActiveClass->Name); - } - } - else - { - phost->gState = HOST_ABORT_STATE; - USBH_UsrLog("No registered class for this device."); - } - } - - #if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; - #if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); - #else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); - #endif - #endif - }break; - - case HOST_CLASS_REQUEST: - { - /* process class standard control requests state machine */ - if (phost->pActiveClass != NULL) - { - status = phost->pActiveClass->Requests(phost); - - if (status == USBH_OK) - { - phost->gState = HOST_CLASS; - // udiskMounted = 1; - // pty++; - // delay(1000); - // delay(1000); - } - else if (status == USBH_FAIL) - { - phost->gState = HOST_ABORT_STATE; - USBH_ErrLog("Device not responding Please Unplug."); - } - else - { - /* .. */ - } - } - else - { - phost->gState = HOST_ABORT_STATE; - USBH_ErrLog("Invalid Class Driver."); - } - #if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; - #if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); - #else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); - #endif - #endif - }break; - - case HOST_CLASS: - { - #if 1//def USE_GD32 - if(need_reset_enum) - { - USBH_ReEnumerate(phost); - return USBH_OK; - } - #endif - /* process class state machine */ - if (phost->pActiveClass != NULL) - { - phost->pActiveClass->BgndProcess(phost); - } - }break; - - case HOST_DEV_DISCONNECTED: - { - phost->device.is_disconnected = 0U; - - DeInitStateMachine(phost); - - /* Re-Initilaize Host for new Enumeration */ - if (phost->pActiveClass != NULL) - { - phost->pActiveClass->DeInit(phost); - phost->pActiveClass = NULL; - } - - if (phost->pUser != NULL) - { - #if 1//def USE_GD32 - if(need_reset_enum){ - need_reset_enum--; - phost->pUser(phost, HOST_USER_RESET_ENUM); - }else{ - need_reset_enum = RESET_ENUM_TIME; - phost->pUser(phost, HOST_USER_DISCONNECTION); - } - #else - phost->pUser(phost, HOST_USER_DISCONNECTION); - #endif - } - USBH_UsrLog("USB Device disconnected"); - - if (phost->device.is_ReEnumerated == 1U) - { - phost->device.is_ReEnumerated = 0U; - - /* Start the host and re-enable Vbus */ - USBH_Start(phost); - } - else - { - /* Device Disconnection Completed, start USB Driver */ - USBH_LL_Start(phost); - // udiskMounted = 2; - // plr_num = 0; - plr_flag = 0; - // pty=0; - } - - #if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_PORT_EVENT; - #if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); - #else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); - #endif - #endif - }break; - - case HOST_ABORT_STATE: - { - USBH_LL_Disconnect(phost); - if(phost->pActiveClass != NULL) - { - phost->pActiveClass->DeInit(phost); - } - DeInitStateMachine(phost); - }break; - default:break; - } - return USBH_OK; -} - - -/** - * @brief USBH_HandleEnum - * This function includes the complete enumeration process - * @param phost: Host Handle - * @retval USBH_Status - */ -static USBH_StatusTypeDef USBH_HandleEnum(USBH_HandleTypeDef *phost) -{ - USBH_StatusTypeDef Status = USBH_BUSY; - USBH_StatusTypeDef ReqStatus = USBH_BUSY; - - switch (phost->EnumState) - { - case ENUM_IDLE: - /* Get Device Desc for only 1st 8 bytes : To get EP0 MaxPacketSize */ - ReqStatus = USBH_Get_DevDesc(phost, 8U); - if (ReqStatus == USBH_OK) - { - phost->Control.pipe_size = phost->device.DevDesc.bMaxPacketSize; - - phost->EnumState = ENUM_GET_FULL_DEV_DESC; - - /* modify control channels configuration for MaxPacket size */ - USBH_OpenPipe(phost, phost->Control.pipe_in, 0x80U, phost->device.address, - phost->device.speed, USBH_EP_CONTROL, - (uint16_t)phost->Control.pipe_size); - - /* Open Control pipes */ - USBH_OpenPipe(phost, phost->Control.pipe_out, 0x00U, phost->device.address, - phost->device.speed, USBH_EP_CONTROL, - (uint16_t)phost->Control.pipe_size); - } - else if (ReqStatus == USBH_NOT_SUPPORTED) - { - USBH_ErrLog("Control error: Get Device Descriptor request failed"); - phost->device.EnumCnt++; - if (phost->device.EnumCnt > 3U) - { - /* Buggy Device can't complete get device desc request */ - USBH_UsrLog("Control error, Device not Responding Please unplug the Device."); - phost->gState = HOST_ABORT_STATE; - } - else - { - /* free control pipes */ - USBH_FreePipe(phost, phost->Control.pipe_out); - USBH_FreePipe(phost, phost->Control.pipe_in); - - /* Reset the USB Device */ - phost->gState = HOST_IDLE; - } - } - else - { - /* .. */ - } - break; - - case ENUM_GET_FULL_DEV_DESC: - /* Get FULL Device Desc */ - ReqStatus = USBH_Get_DevDesc(phost, USB_DEVICE_DESC_SIZE); - if (ReqStatus == USBH_OK) - { - USBH_UsrLog("PID: %xh", phost->device.DevDesc.idProduct); - USBH_UsrLog("VID: %xh", phost->device.DevDesc.idVendor); - - phost->EnumState = ENUM_SET_ADDR; - } - else if (ReqStatus == USBH_NOT_SUPPORTED) - { - USBH_ErrLog("Control error: Get Full Device Descriptor request failed"); - phost->device.EnumCnt++; - if (phost->device.EnumCnt > 3U) - { - /* Buggy Device can't complete get device desc request */ - USBH_UsrLog("Control error, Device not Responding Please unplug the Device."); - phost->gState = HOST_ABORT_STATE; - } - else - { - /* Free control pipes */ - USBH_FreePipe(phost, phost->Control.pipe_out); - USBH_FreePipe(phost, phost->Control.pipe_in); - - /* Reset the USB Device */ - phost->EnumState = ENUM_IDLE; - phost->gState = HOST_IDLE; - } - } - else - { - /* .. */ - } - break; - - case ENUM_SET_ADDR: - /* set address */ - ReqStatus = USBH_SetAddress(phost, USBH_DEVICE_ADDRESS); - if (ReqStatus == USBH_OK) - { - USBH_Delay(2U); - phost->device.address = USBH_DEVICE_ADDRESS; - - /* user callback for device address assigned */ - USBH_UsrLog("Address (#%d) assigned.", phost->device.address); - phost->EnumState = ENUM_GET_CFG_DESC; - - /* modify control channels to update device address */ - USBH_OpenPipe(phost, phost->Control.pipe_in, 0x80U, phost->device.address, - phost->device.speed, USBH_EP_CONTROL, - (uint16_t)phost->Control.pipe_size); - - /* Open Control pipes */ - USBH_OpenPipe(phost, phost->Control.pipe_out, 0x00U, phost->device.address, - phost->device.speed, USBH_EP_CONTROL, - (uint16_t)phost->Control.pipe_size); - } - else if (ReqStatus == USBH_NOT_SUPPORTED) - { - USBH_ErrLog("Control error: Device Set Address request failed"); - - /* Buggy Device can't complete get device desc request */ - USBH_UsrLog("Control error, Device not Responding Please unplug the Device."); - phost->gState = HOST_ABORT_STATE; - phost->EnumState = ENUM_IDLE; - } - else - { - /* .. */ - } - break; - - case ENUM_GET_CFG_DESC: - /* get standard configuration descriptor */ - ReqStatus = USBH_Get_CfgDesc(phost, USB_CONFIGURATION_DESC_SIZE); - if (ReqStatus == USBH_OK) - { - phost->EnumState = ENUM_GET_FULL_CFG_DESC; - } - else if (ReqStatus == USBH_NOT_SUPPORTED) - { - USBH_ErrLog("Control error: Get Device configuration descriptor request failed"); - phost->device.EnumCnt++; - if (phost->device.EnumCnt > 3U) - { - /* Buggy Device can't complete get device desc request */ - USBH_UsrLog("Control error, Device not Responding Please unplug the Device."); - phost->gState = HOST_ABORT_STATE; - } - else - { - /* Free control pipes */ - USBH_FreePipe(phost, phost->Control.pipe_out); - USBH_FreePipe(phost, phost->Control.pipe_in); - - /* Reset the USB Device */ - phost->EnumState = ENUM_IDLE; - phost->gState = HOST_IDLE; - } - } - else - { - /* .. */ - } - break; - - case ENUM_GET_FULL_CFG_DESC: - /* get FULL config descriptor (config, interface, endpoints) */ - ReqStatus = USBH_Get_CfgDesc(phost, phost->device.CfgDesc.wTotalLength); - if (ReqStatus == USBH_OK) - { - phost->EnumState = ENUM_GET_MFC_STRING_DESC; - } - else if (ReqStatus == USBH_NOT_SUPPORTED) - { - USBH_ErrLog("Control error: Get Device configuration descriptor request failed"); - phost->device.EnumCnt++; - if (phost->device.EnumCnt > 3U) - { - /* Buggy Device can't complete get device desc request */ - USBH_UsrLog("Control error, Device not Responding Please unplug the Device."); - phost->gState = HOST_ABORT_STATE; - } - else - { - /* Free control pipes */ - USBH_FreePipe(phost, phost->Control.pipe_out); - USBH_FreePipe(phost, phost->Control.pipe_in); - - /* Reset the USB Device */ - phost->EnumState = ENUM_IDLE; - phost->gState = HOST_IDLE; - } - } - else - { - /* .. */ - } - break; - - case ENUM_GET_MFC_STRING_DESC: - if (phost->device.DevDesc.iManufacturer != 0U) - { - /* Check that Manufacturer String is available */ - ReqStatus = USBH_Get_StringDesc(phost, phost->device.DevDesc.iManufacturer, - phost->device.Data, 0xFFU); - if (ReqStatus == USBH_OK) - { - /* User callback for Manufacturing string */ - USBH_UsrLog("Manufacturer : %s", (char *)(void *)phost->device.Data); - phost->EnumState = ENUM_GET_PRODUCT_STRING_DESC; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else if (ReqStatus == USBH_NOT_SUPPORTED) - { - USBH_UsrLog("Manufacturer : N/A"); - phost->EnumState = ENUM_GET_PRODUCT_STRING_DESC; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else - { - /* .. */ - } - } - else - { - USBH_UsrLog("Manufacturer : N/A"); - phost->EnumState = ENUM_GET_PRODUCT_STRING_DESC; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - break; - - case ENUM_GET_PRODUCT_STRING_DESC: - if (phost->device.DevDesc.iProduct != 0U) - { - /* Check that Product string is available */ - ReqStatus = USBH_Get_StringDesc(phost, phost->device.DevDesc.iProduct, - phost->device.Data, 0xFFU); - if (ReqStatus == USBH_OK) - { - /* User callback for Product string */ - USBH_UsrLog("Product : %s", (char *)(void *)phost->device.Data); - phost->EnumState = ENUM_GET_SERIALNUM_STRING_DESC; - } - else if (ReqStatus == USBH_NOT_SUPPORTED) - { - USBH_UsrLog("Product : N/A"); - phost->EnumState = ENUM_GET_SERIALNUM_STRING_DESC; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else - { - /* .. */ - } - } - else - { - USBH_UsrLog("Product : N/A"); - phost->EnumState = ENUM_GET_SERIALNUM_STRING_DESC; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_STATE_CHANGED_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - break; - - case ENUM_GET_SERIALNUM_STRING_DESC: - if (phost->device.DevDesc.iSerialNumber != 0U) - { - /* Check that Serial number string is available */ - ReqStatus = USBH_Get_StringDesc(phost, phost->device.DevDesc.iSerialNumber, - phost->device.Data, 0xFFU); - if (ReqStatus == USBH_OK) - { - /* User callback for Serial number string */ - USBH_UsrLog("Serial Number : %s", (char *)(void *)phost->device.Data); - Status = USBH_OK; - } - else if (ReqStatus == USBH_NOT_SUPPORTED) - { - USBH_UsrLog("Serial Number : N/A"); - Status = USBH_OK; - } - else - { - /* .. */ - } - } - else - { - USBH_UsrLog("Serial Number : N/A"); - Status = USBH_OK; - } - break; - - default: - break; - } - return Status; -} - - -/** - * @brief USBH_LL_SetTimer - * Set the initial Host Timer tick - * @param phost: Host Handle - * @retval None - */ -void USBH_LL_SetTimer(USBH_HandleTypeDef *phost, uint32_t time) -{ - phost->Timer = time; -} - - -/** - * @brief USBH_LL_IncTimer - * Increment Host Timer tick - * @param phost: Host Handle - * @retval None - */ -void USBH_LL_IncTimer(USBH_HandleTypeDef *phost) -{ - phost->Timer++; - USBH_HandleSof(phost); -} - - -/** - * @brief USBH_HandleSof - * Call SOF process - * @param phost: Host Handle - * @retval None - */ -static void USBH_HandleSof(USBH_HandleTypeDef *phost) -{ - if ((phost->gState == HOST_CLASS) && (phost->pActiveClass != NULL)) - { - phost->pActiveClass->SOFProcess(phost); - } -} - - -/** - * @brief USBH_PortEnabled - * Port Enabled - * @param phost: Host Handle - * @retval None - */ -void USBH_LL_PortEnabled(USBH_HandleTypeDef *phost) -{ - phost->device.PortEnabled = 1U; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_PORT_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - - return; -} - - -/** - * @brief USBH_LL_PortDisabled - * Port Disabled - * @param phost: Host Handle - * @retval None - */ -void USBH_LL_PortDisabled(USBH_HandleTypeDef *phost) -{ - phost->device.PortEnabled = 0U; - - return; -} - - -/** - * @brief HCD_IsPortEnabled - * Is Port Enabled - * @param phost: Host Handle - * @retval None - */ -uint8_t USBH_IsPortEnabled(USBH_HandleTypeDef *phost) -{ - return (phost->device.PortEnabled); -} - - -/** - * @brief USBH_LL_Connect - * Handle USB Host connexion event - * @param phost: Host Handle - * @retval USBH_Status - */ -USBH_StatusTypeDef USBH_LL_Connect(USBH_HandleTypeDef *phost) -{ - phost->device.is_connected = 1U; - phost->device.is_disconnected = 0U; - phost->device.is_ReEnumerated = 0U; - - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_PORT_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - - return USBH_OK; -} - - -/** - * @brief USBH_LL_Disconnect - * Handle USB Host disconnection event - * @param phost: Host Handle - * @retval USBH_Status - */ -USBH_StatusTypeDef USBH_LL_Disconnect(USBH_HandleTypeDef *phost) -{ - /* update device connection states */ - phost->device.is_disconnected = 1U; - phost->device.is_connected = 0U; - phost->device.PortEnabled = 0U; - - /* Stop Host */ - USBH_LL_Stop(phost); - - /* FRee Control Pipes */ - USBH_FreePipe(phost, phost->Control.pipe_in); - USBH_FreePipe(phost, phost->Control.pipe_out); -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_PORT_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - - return USBH_OK; -} - - -#if (USBH_USE_OS == 1U) -/** - * @brief USB Host Thread task - * @param pvParameters not used - * @retval None - */ - -#if (osCMSIS < 0x20000U) -static void USBH_Process_OS(void const *argument) -{ - osEvent event; - - for (;;) - { - event = osMessageGet(((USBH_HandleTypeDef *)argument)->os_event, osWaitForever); - if (event.status == osEventMessage) - { - USBH_Process((USBH_HandleTypeDef *)argument); - } - } -} -#else -static void USBH_Process_OS(void *argument) -{ - osStatus_t status; - - for (;;) - { - status = osMessageQueueGet(((USBH_HandleTypeDef *)argument)->os_event, - &((USBH_HandleTypeDef *)argument)->os_msg, NULL, osWaitForever); - if (status == osOK) - { - USBH_Process((USBH_HandleTypeDef *)argument); - } - } -} -#endif /* (osCMSIS < 0x20000U) */ - - -/** -* @brief USBH_LL_NotifyURBChange -* Notify URB state Change -* @param phost: Host handle -* @retval USBH Status -*/ -USBH_StatusTypeDef USBH_LL_NotifyURBChange(USBH_HandleTypeDef *phost) -{ - phost->os_msg = (uint32_t)USBH_PORT_EVENT; - -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif - - return USBH_OK; -} -#endif -/** - * @} - */ - -/** - * @} - */ - -/** - * @} - */ - -/** - * @} - */ - -/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_core.h b/Marlin/lib/STM32_USB_Host_Library/src/usbh_core.h deleted file mode 100644 index be5940270d..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/src/usbh_core.h +++ /dev/null @@ -1,194 +0,0 @@ -/** - ****************************************************************************** - * @file usbh_core.h - * @author MCD Application Team - * @brief Header file for usbh_core.c - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2015 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under Ultimate Liberty license - * SLA0044, the "License"; You may not use this file except in compliance with - * the License. You may obtain a copy of the License at: - * www.st.com/SLA0044 - * - ****************************************************************************** - */ -/* Define to prevent recursive ----------------------------------------------*/ -#ifndef __USBH_CORE_H -#define __USBH_CORE_H - -#ifdef __cplusplus -extern "C" { -#endif - -/* Includes ------------------------------------------------------------------*/ -#include "stm32_usbh_conf.h" -#include "usbh_def.h" -#include "usbh_ioreq.h" -#include "usbh_pipes.h" -#include "usbh_ctlreq.h" - -/** @addtogroup USBH_LIB - * @{ - */ - -/** @addtogroup USBH_LIB_CORE -* @{ -*/ - -/** @defgroup USBH_CORE - * @brief This file is the Header file for usbh_core.c - * @{ - */ - - -/** @defgroup USBH_CORE_Exported_Defines - * @{ - */ - -/** - * @} - */ -#define HOST_USER_SELECT_CONFIGURATION 0x01U -#define HOST_USER_CLASS_ACTIVE 0x02U -#define HOST_USER_CLASS_SELECTED 0x03U -#define HOST_USER_CONNECTION 0x04U -#define HOST_USER_DISCONNECTION 0x05U -#define HOST_USER_UNRECOVERED_ERROR 0x06U -#define HOST_USER_RESET_ENUM 0x07U - -// extern uint8_t udiskMounted; - -/** - * @} - */ - - - -/** @defgroup USBH_CORE_Exported_Macros - * @{ - */ - -/** - * @} - */ - -/** @defgroup USBH_CORE_Exported_Variables - * @{ - */ - -/** - * @} - */ - -/** @defgroup USBH_CORE_Exported_FunctionsPrototype - * @{ - */ - - -USBH_StatusTypeDef USBH_Init(USBH_HandleTypeDef *phost, void (*pUsrFunc)(USBH_HandleTypeDef *phost, uint8_t id), uint8_t id); -USBH_StatusTypeDef USBH_DeInit(USBH_HandleTypeDef *phost); -USBH_StatusTypeDef USBH_RegisterClass(USBH_HandleTypeDef *phost, USBH_ClassTypeDef *pclass); -USBH_StatusTypeDef USBH_SelectInterface(USBH_HandleTypeDef *phost, uint8_t interface); -uint8_t USBH_FindInterface(USBH_HandleTypeDef *phost, - uint8_t Class, - uint8_t SubClass, - uint8_t Protocol); -uint8_t USBH_GetActiveClass(USBH_HandleTypeDef *phost); - -uint8_t USBH_FindInterfaceIndex(USBH_HandleTypeDef *phost, - uint8_t interface_number, - uint8_t alt_settings); - -uint8_t USBH_IsPortEnabled(USBH_HandleTypeDef *phost); - -USBH_StatusTypeDef USBH_Start(USBH_HandleTypeDef *phost); -USBH_StatusTypeDef USBH_Stop(USBH_HandleTypeDef *phost); -USBH_StatusTypeDef USBH_Process(USBH_HandleTypeDef *phost); -USBH_StatusTypeDef USBH_ReEnumerate(USBH_HandleTypeDef *phost); - -/* USBH Low Level Driver */ -USBH_StatusTypeDef USBH_LL_Init(USBH_HandleTypeDef *phost); -USBH_StatusTypeDef USBH_LL_DeInit(USBH_HandleTypeDef *phost); -USBH_StatusTypeDef USBH_LL_Start(USBH_HandleTypeDef *phost); -USBH_StatusTypeDef USBH_LL_Stop(USBH_HandleTypeDef *phost); - -USBH_StatusTypeDef USBH_LL_Connect(USBH_HandleTypeDef *phost); -USBH_StatusTypeDef USBH_LL_Disconnect(USBH_HandleTypeDef *phost); -USBH_SpeedTypeDef USBH_LL_GetSpeed(USBH_HandleTypeDef *phost); -USBH_StatusTypeDef USBH_LL_ResetPort(USBH_HandleTypeDef *phost); -uint32_t USBH_LL_GetLastXferSize(USBH_HandleTypeDef *phost, - uint8_t pipe); - -USBH_StatusTypeDef USBH_LL_DriverVBUS(USBH_HandleTypeDef *phost, - uint8_t state); - -USBH_StatusTypeDef USBH_LL_OpenPipe(USBH_HandleTypeDef *phost, - uint8_t pipe, - uint8_t epnum, - uint8_t dev_address, - uint8_t speed, - uint8_t ep_type, - uint16_t mps); - -USBH_StatusTypeDef USBH_LL_ClosePipe(USBH_HandleTypeDef *phost, - uint8_t pipe); - -USBH_StatusTypeDef USBH_LL_SubmitURB(USBH_HandleTypeDef *phost, - uint8_t pipe, - uint8_t direction, - uint8_t ep_type, - uint8_t token, - uint8_t *pbuff, - uint16_t length, - uint8_t do_ping); - -USBH_URBStateTypeDef USBH_LL_GetURBState(USBH_HandleTypeDef *phost, - uint8_t pipe); - -#if (USBH_USE_OS == 1U) -USBH_StatusTypeDef USBH_LL_NotifyURBChange(USBH_HandleTypeDef *phost); -#endif - -USBH_StatusTypeDef USBH_LL_SetToggle(USBH_HandleTypeDef *phost, - uint8_t pipe, uint8_t toggle); - -uint8_t USBH_LL_GetToggle(USBH_HandleTypeDef *phost, uint8_t pipe); - -void USBH_LL_PortDisabled(USBH_HandleTypeDef *phost); -void USBH_LL_PortEnabled(USBH_HandleTypeDef *phost); - -/* USBH Time base */ -void USBH_LL_SetTimer(USBH_HandleTypeDef *phost, uint32_t time); -void USBH_LL_IncTimer(USBH_HandleTypeDef *phost); - -void USBH_Delay(uint32_t Delay); - -/** - * @} - */ - -#ifdef __cplusplus -} -#endif - -#endif /* __USBH_CORE_H */ -/** - * @} - */ - -/** - * @} - */ - -/** -* @} -*/ - -/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ - - - diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_ctlreq.c b/Marlin/lib/STM32_USB_Host_Library/src/usbh_ctlreq.c deleted file mode 100644 index 13e777e301..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/src/usbh_ctlreq.c +++ /dev/null @@ -1,1003 +0,0 @@ -/** - ****************************************************************************** - * @file usbh_ctlreq.c - * @author MCD Application Team - * @brief This file implements the control requests for device enumeration - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2015 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under Ultimate Liberty license - * SLA0044, the "License"; You may not use this file except in compliance with - * the License. You may obtain a copy of the License at: - * www.st.com/SLA0044 - * - ****************************************************************************** - */ - -/* Includes ------------------------------------------------------------------*/ -#include "usbh_ctlreq.h" - -/** @addtogroup USBH_LIB -* @{ -*/ - -/** @addtogroup USBH_LIB_CORE -* @{ -*/ - -/** @defgroup USBH_CTLREQ -* @brief This file implements the standard requests for device enumeration -* @{ -*/ - - -/** @defgroup USBH_CTLREQ_Private_Defines -* @{ -*/ -/** -* @} -*/ - - -/** @defgroup USBH_CTLREQ_Private_TypesDefinitions -* @{ -*/ -/** -* @} -*/ - - - -/** @defgroup USBH_CTLREQ_Private_Macros -* @{ -*/ -/** -* @} -*/ - - -/** @defgroup USBH_CTLREQ_Private_Variables -* @{ -*/ -/** -* @} -*/ - -/** @defgroup USBH_CTLREQ_Private_FunctionPrototypes -* @{ -*/ -static USBH_StatusTypeDef USBH_HandleControl(USBH_HandleTypeDef *phost); - -static void USBH_ParseDevDesc(USBH_DevDescTypeDef *dev_desc, - uint8_t *buf, uint16_t length); - -static void USBH_ParseCfgDesc(USBH_CfgDescTypeDef *cfg_desc, - uint8_t *buf, uint16_t length); - -static void USBH_ParseEPDesc(USBH_EpDescTypeDef *ep_descriptor, uint8_t *buf); -static void USBH_ParseStringDesc(uint8_t *psrc, uint8_t *pdest, uint16_t length); -static void USBH_ParseInterfaceDesc(USBH_InterfaceDescTypeDef *if_descriptor, uint8_t *buf); - - -/** -* @} -*/ - - -/** @defgroup USBH_CTLREQ_Private_Functions -* @{ -*/ - - -/** - * @brief USBH_Get_DevDesc - * Issue Get Device Descriptor command to the device. Once the response - * received, it parses the device descriptor and updates the status. - * @param phost: Host Handle - * @param length: Length of the descriptor - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_Get_DevDesc(USBH_HandleTypeDef *phost, uint8_t length) -{ - USBH_StatusTypeDef status; - - if ((status = USBH_GetDescriptor(phost, - USB_REQ_RECIPIENT_DEVICE | USB_REQ_TYPE_STANDARD, - USB_DESC_DEVICE, phost->device.Data, - (uint16_t)length)) == USBH_OK) - { - /* Commands successfully sent and Response Received */ - USBH_ParseDevDesc(&phost->device.DevDesc, phost->device.Data, - (uint16_t)length); - } - - return status; -} - - -/** - * @brief USBH_Get_CfgDesc - * Issues Configuration Descriptor to the device. Once the response - * received, it parses the configuration descriptor and updates the - * status. - * @param phost: Host Handle - * @param length: Length of the descriptor - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_Get_CfgDesc(USBH_HandleTypeDef *phost, - uint16_t length) - -{ - USBH_StatusTypeDef status; - uint8_t *pData = phost->device.CfgDesc_Raw;; - - if ((status = USBH_GetDescriptor(phost, (USB_REQ_RECIPIENT_DEVICE | USB_REQ_TYPE_STANDARD), - USB_DESC_CONFIGURATION, pData, length)) == USBH_OK) - { - /* Commands successfully sent and Response Received */ - USBH_ParseCfgDesc(&phost->device.CfgDesc, pData, length); - } - - return status; -} - - -/** - * @brief USBH_Get_StringDesc - * Issues string Descriptor command to the device. Once the response - * received, it parses the string descriptor and updates the status. - * @param phost: Host Handle - * @param string_index: String index for the descriptor - * @param buff: Buffer address for the descriptor - * @param length: Length of the descriptor - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_Get_StringDesc(USBH_HandleTypeDef *phost, - uint8_t string_index, uint8_t *buff, - uint16_t length) -{ - USBH_StatusTypeDef status; - - if ((status = USBH_GetDescriptor(phost, - USB_REQ_RECIPIENT_DEVICE | USB_REQ_TYPE_STANDARD, - USB_DESC_STRING | string_index, - phost->device.Data, length)) == USBH_OK) - { - /* Commands successfully sent and Response Received */ - USBH_ParseStringDesc(phost->device.Data, buff, length); - } - - return status; -} - - -/** - * @brief USBH_GetDescriptor - * Issues Descriptor command to the device. Once the response received, - * it parses the descriptor and updates the status. - * @param phost: Host Handle - * @param req_type: Descriptor type - * @param value_idx: Value for the GetDescriptr request - * @param buff: Buffer to store the descriptor - * @param length: Length of the descriptor - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_GetDescriptor(USBH_HandleTypeDef *phost, - uint8_t req_type, - uint16_t value_idx, - uint8_t *buff, - uint16_t length) -{ - if (phost->RequestState == CMD_SEND) - { - phost->Control.setup.b.bmRequestType = USB_D2H | req_type; - phost->Control.setup.b.bRequest = USB_REQ_GET_DESCRIPTOR; - phost->Control.setup.b.wValue.w = value_idx; - - if ((value_idx & 0xff00U) == USB_DESC_STRING) - { - phost->Control.setup.b.wIndex.w = 0x0409U; - } - else - { - phost->Control.setup.b.wIndex.w = 0U; - } - phost->Control.setup.b.wLength.w = length; - } - - return USBH_CtlReq(phost, buff, length); -} - - -/** - * @brief USBH_SetAddress - * This command sets the address to the connected device - * @param phost: Host Handle - * @param DeviceAddress: Device address to assign - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_SetAddress(USBH_HandleTypeDef *phost, - uint8_t DeviceAddress) -{ - if (phost->RequestState == CMD_SEND) - { - phost->Control.setup.b.bmRequestType = USB_H2D | USB_REQ_RECIPIENT_DEVICE | \ - USB_REQ_TYPE_STANDARD; - - phost->Control.setup.b.bRequest = USB_REQ_SET_ADDRESS; - - phost->Control.setup.b.wValue.w = (uint16_t)DeviceAddress; - phost->Control.setup.b.wIndex.w = 0U; - phost->Control.setup.b.wLength.w = 0U; - } - - return USBH_CtlReq(phost, 0U, 0U); -} - - -/** - * @brief USBH_SetCfg - * The command sets the configuration value to the connected device - * @param phost: Host Handle - * @param cfg_idx: Configuration value - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_SetCfg(USBH_HandleTypeDef *phost, uint16_t cfg_idx) -{ - if (phost->RequestState == CMD_SEND) - { - phost->Control.setup.b.bmRequestType = USB_H2D | USB_REQ_RECIPIENT_DEVICE - | USB_REQ_TYPE_STANDARD; - - phost->Control.setup.b.bRequest = USB_REQ_SET_CONFIGURATION; - phost->Control.setup.b.wValue.w = cfg_idx; - phost->Control.setup.b.wIndex.w = 0U; - phost->Control.setup.b.wLength.w = 0U; - } - - return USBH_CtlReq(phost, 0U, 0U); -} - - -/** - * @brief USBH_SetInterface - * The command sets the Interface value to the connected device - * @param phost: Host Handle - * @param altSetting: Interface value - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_SetInterface(USBH_HandleTypeDef *phost, uint8_t ep_num, - uint8_t altSetting) -{ - if (phost->RequestState == CMD_SEND) - { - phost->Control.setup.b.bmRequestType = USB_H2D | USB_REQ_RECIPIENT_INTERFACE - | USB_REQ_TYPE_STANDARD; - - phost->Control.setup.b.bRequest = USB_REQ_SET_INTERFACE; - phost->Control.setup.b.wValue.w = altSetting; - phost->Control.setup.b.wIndex.w = ep_num; - phost->Control.setup.b.wLength.w = 0U; - } - - return USBH_CtlReq(phost, 0U, 0U); -} - - -/** - * @brief USBH_SetFeature - * The command sets the device features (remote wakeup feature,..) - * @param pdev: Selected device - * @param itf_idx - * @retval Status -*/ -USBH_StatusTypeDef USBH_SetFeature(USBH_HandleTypeDef *phost, uint8_t wValue) -{ - if (phost->RequestState == CMD_SEND) - { - phost->Control.setup.b.bmRequestType = USB_H2D | USB_REQ_RECIPIENT_DEVICE - | USB_REQ_TYPE_STANDARD; - - phost->Control.setup.b.bRequest = USB_REQ_SET_FEATURE; - phost->Control.setup.b.wValue.w = wValue; - phost->Control.setup.b.wIndex.w = 0U; - phost->Control.setup.b.wLength.w = 0U; - } - - return USBH_CtlReq(phost, 0U, 0U); -} - - -/** - * @brief USBH_ClrFeature - * This request is used to clear or disable a specific feature. - * @param phost: Host Handle - * @param ep_num: endpoint number - * @param hc_num: Host channel number - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_ClrFeature(USBH_HandleTypeDef *phost, uint8_t ep_num) -{ - if (phost->RequestState == CMD_SEND) - { - phost->Control.setup.b.bmRequestType = USB_H2D | USB_REQ_RECIPIENT_ENDPOINT - | USB_REQ_TYPE_STANDARD; - - phost->Control.setup.b.bRequest = USB_REQ_CLEAR_FEATURE; - phost->Control.setup.b.wValue.w = FEATURE_SELECTOR_ENDPOINT; - phost->Control.setup.b.wIndex.w = ep_num; - phost->Control.setup.b.wLength.w = 0U; - } - return USBH_CtlReq(phost, 0U, 0U); -} - - -/** - * @brief USBH_ParseDevDesc - * This function Parses the device descriptor - * @param dev_desc: device_descriptor destination address - * @param buf: Buffer where the source descriptor is available - * @param length: Length of the descriptor - * @retval None - */ -static void USBH_ParseDevDesc(USBH_DevDescTypeDef *dev_desc, uint8_t *buf, - uint16_t length) -{ - dev_desc->bLength = *(uint8_t *)(buf + 0); - dev_desc->bDescriptorType = *(uint8_t *)(buf + 1); - dev_desc->bcdUSB = LE16(buf + 2); - dev_desc->bDeviceClass = *(uint8_t *)(buf + 4); - dev_desc->bDeviceSubClass = *(uint8_t *)(buf + 5); - dev_desc->bDeviceProtocol = *(uint8_t *)(buf + 6); - dev_desc->bMaxPacketSize = *(uint8_t *)(buf + 7); - - if (length > 8U) - { - /* For 1st time after device connection, Host may issue only 8 bytes for - Device Descriptor Length */ - dev_desc->idVendor = LE16(buf + 8); - dev_desc->idProduct = LE16(buf + 10); - dev_desc->bcdDevice = LE16(buf + 12); - dev_desc->iManufacturer = *(uint8_t *)(buf + 14); - dev_desc->iProduct = *(uint8_t *)(buf + 15); - dev_desc->iSerialNumber = *(uint8_t *)(buf + 16); - dev_desc->bNumConfigurations = *(uint8_t *)(buf + 17); - } -} - - -/** - * @brief USBH_ParseCfgDesc - * This function Parses the configuration descriptor - * @param cfg_desc: Configuration Descriptor address - * @param buf: Buffer where the source descriptor is available - * @param length: Length of the descriptor - * @retval None - */ -static void USBH_ParseCfgDesc(USBH_CfgDescTypeDef *cfg_desc, uint8_t *buf, - uint16_t length) -{ - USBH_InterfaceDescTypeDef *pif ; - USBH_EpDescTypeDef *pep; - USBH_DescHeader_t *pdesc = (USBH_DescHeader_t *)(void *)buf; - uint16_t ptr; - uint8_t if_ix = 0U; - uint8_t ep_ix = 0U; - - pdesc = (USBH_DescHeader_t *)(void *)buf; - - /* Parse configuration descriptor */ - cfg_desc->bLength = *(uint8_t *)(buf + 0); - cfg_desc->bDescriptorType = *(uint8_t *)(buf + 1); - cfg_desc->wTotalLength = LE16(buf + 2); - cfg_desc->bNumInterfaces = *(uint8_t *)(buf + 4); - cfg_desc->bConfigurationValue = *(uint8_t *)(buf + 5); - cfg_desc->iConfiguration = *(uint8_t *)(buf + 6); - cfg_desc->bmAttributes = *(uint8_t *)(buf + 7); - cfg_desc->bMaxPower = *(uint8_t *)(buf + 8); - - if (length > USB_CONFIGURATION_DESC_SIZE) - { - ptr = USB_LEN_CFG_DESC; - pif = (USBH_InterfaceDescTypeDef *)0; - - while ((if_ix < USBH_MAX_NUM_INTERFACES) && (ptr < cfg_desc->wTotalLength)) - { - pdesc = USBH_GetNextDesc((uint8_t *)(void *)pdesc, &ptr); - if (pdesc->bDescriptorType == USB_DESC_TYPE_INTERFACE) - { - pif = &cfg_desc->Itf_Desc[if_ix]; - USBH_ParseInterfaceDesc(pif, (uint8_t *)(void *)pdesc); - - ep_ix = 0U; - pep = (USBH_EpDescTypeDef *)0; - while ((ep_ix < pif->bNumEndpoints) && (ptr < cfg_desc->wTotalLength)) - { - pdesc = USBH_GetNextDesc((uint8_t *)(void *)pdesc, &ptr); - if (pdesc->bDescriptorType == USB_DESC_TYPE_ENDPOINT) - { - pep = &cfg_desc->Itf_Desc[if_ix].Ep_Desc[ep_ix]; - USBH_ParseEPDesc(pep, (uint8_t *)(void *)pdesc); - ep_ix++; - } - } - if_ix++; - } - } - } -} - - -/** - * @brief USBH_ParseInterfaceDesc - * This function Parses the interface descriptor - * @param if_descriptor : Interface descriptor destination - * @param buf: Buffer where the descriptor data is available - * @retval None - */ -static void USBH_ParseInterfaceDesc(USBH_InterfaceDescTypeDef *if_descriptor, - uint8_t *buf) -{ - if_descriptor->bLength = *(uint8_t *)(buf + 0); - if_descriptor->bDescriptorType = *(uint8_t *)(buf + 1); - if_descriptor->bInterfaceNumber = *(uint8_t *)(buf + 2); - if_descriptor->bAlternateSetting = *(uint8_t *)(buf + 3); - if_descriptor->bNumEndpoints = *(uint8_t *)(buf + 4); - if_descriptor->bInterfaceClass = *(uint8_t *)(buf + 5); - if_descriptor->bInterfaceSubClass = *(uint8_t *)(buf + 6); - if_descriptor->bInterfaceProtocol = *(uint8_t *)(buf + 7); - if_descriptor->iInterface = *(uint8_t *)(buf + 8); -} - - -/** - * @brief USBH_ParseEPDesc - * This function Parses the endpoint descriptor - * @param ep_descriptor: Endpoint descriptor destination address - * @param buf: Buffer where the parsed descriptor stored - * @retval None - */ -static void USBH_ParseEPDesc(USBH_EpDescTypeDef *ep_descriptor, - uint8_t *buf) -{ - ep_descriptor->bLength = *(uint8_t *)(buf + 0); - ep_descriptor->bDescriptorType = *(uint8_t *)(buf + 1); - ep_descriptor->bEndpointAddress = *(uint8_t *)(buf + 2); - ep_descriptor->bmAttributes = *(uint8_t *)(buf + 3); - ep_descriptor->wMaxPacketSize = LE16(buf + 4); - ep_descriptor->bInterval = *(uint8_t *)(buf + 6); -} - - -/** - * @brief USBH_ParseStringDesc - * This function Parses the string descriptor - * @param psrc: Source pointer containing the descriptor data - * @param pdest: Destination address pointer - * @param length: Length of the descriptor - * @retval None - */ -static void USBH_ParseStringDesc(uint8_t *psrc, uint8_t *pdest, uint16_t length) -{ - uint16_t strlength; - uint16_t idx; - - /* The UNICODE string descriptor is not NULL-terminated. The string length is - computed by substracting two from the value of the first byte of the descriptor. - */ - - /* Check which is lower size, the Size of string or the length of bytes read - from the device */ - - if (psrc[1] == USB_DESC_TYPE_STRING) - { - /* Make sure the Descriptor is String Type */ - - /* psrc[0] contains Size of Descriptor, subtract 2 to get the length of string */ - strlength = ((((uint16_t)psrc[0] - 2U) <= length) ? ((uint16_t)psrc[0] - 2U) : length); - - /* Adjust the offset ignoring the String Len and Descriptor type */ - psrc += 2U; - - for (idx = 0U; idx < strlength; idx += 2U) - { - /* Copy Only the string and ignore the UNICODE ID, hence add the src */ - *pdest = psrc[idx]; - pdest++; - } - *pdest = 0U; /* mark end of string */ - } -} - - -/** - * @brief USBH_GetNextDesc - * This function return the next descriptor header - * @param buf: Buffer where the cfg descriptor is available - * @param ptr: data pointer inside the cfg descriptor - * @retval next header - */ -USBH_DescHeader_t *USBH_GetNextDesc(uint8_t *pbuf, uint16_t *ptr) -{ - USBH_DescHeader_t *pnext; - - *ptr += ((USBH_DescHeader_t *)(void *)pbuf)->bLength; - pnext = (USBH_DescHeader_t *)(void *)((uint8_t *)(void *)pbuf + \ - ((USBH_DescHeader_t *)(void *)pbuf)->bLength); - - return (pnext); -} - - -/** - * @brief USBH_CtlReq - * USBH_CtlReq sends a control request and provide the status after - * completion of the request - * @param phost: Host Handle - * @param req: Setup Request Structure - * @param buff: data buffer address to store the response - * @param length: length of the response - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_CtlReq(USBH_HandleTypeDef *phost, uint8_t *buff, - uint16_t length) -{ - USBH_StatusTypeDef status; - status = USBH_BUSY; - - switch (phost->RequestState) - { - case CMD_SEND: - /* Start a SETUP transfer */ - phost->Control.buff = buff; - phost->Control.length = length; - phost->Control.state = CTRL_SETUP; - phost->RequestState = CMD_WAIT; - status = USBH_BUSY; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - break; - - case CMD_WAIT: - status = USBH_HandleControl(phost); - if ((status == USBH_OK) || (status == USBH_NOT_SUPPORTED)) - { - /* Transaction completed, move control state to idle */ - phost->RequestState = CMD_SEND; - phost->Control.state = CTRL_IDLE; - } - else if (status == USBH_FAIL) - { - /* Failure Mode */ - phost->RequestState = CMD_SEND; - } - else - { - /* .. */ - } -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - break; - - default: - break; - } - return status; -} - - -/** - * @brief USBH_HandleControl - * Handles the USB control transfer state machine - * @param phost: Host Handle - * @retval USBH Status - */ -static USBH_StatusTypeDef USBH_HandleControl(USBH_HandleTypeDef *phost) -{ - uint8_t direction; - USBH_StatusTypeDef status = USBH_BUSY; - USBH_URBStateTypeDef URB_Status = USBH_URB_IDLE; - - switch (phost->Control.state) - { - case CTRL_SETUP: - /* send a SETUP packet */ - USBH_CtlSendSetup(phost, (uint8_t *)(void *)phost->Control.setup.d8, - phost->Control.pipe_out); - - phost->Control.state = CTRL_SETUP_WAIT; - break; - - case CTRL_SETUP_WAIT: - - URB_Status = USBH_LL_GetURBState(phost, phost->Control.pipe_out); - /* case SETUP packet sent successfully */ - if (URB_Status == USBH_URB_DONE) - { - direction = (phost->Control.setup.b.bmRequestType & USB_REQ_DIR_MASK); - - /* check if there is a data stage */ - if (phost->Control.setup.b.wLength.w != 0U) - { - if (direction == USB_D2H) - { - /* Data Direction is IN */ - phost->Control.state = CTRL_DATA_IN; - } - else - { - /* Data Direction is OUT */ - phost->Control.state = CTRL_DATA_OUT; - } - } - /* No DATA stage */ - else - { - /* If there is No Data Transfer Stage */ - if (direction == USB_D2H) - { - /* Data Direction is IN */ - phost->Control.state = CTRL_STATUS_OUT; - } - else - { - /* Data Direction is OUT */ - phost->Control.state = CTRL_STATUS_IN; - } - } - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else - { - if ((URB_Status == USBH_URB_ERROR) || (URB_Status == USBH_URB_NOTREADY)) - { - phost->Control.state = CTRL_ERROR; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - } - break; - - case CTRL_DATA_IN: - /* Issue an IN token */ - phost->Control.timer = (uint16_t)phost->Timer; - USBH_CtlReceiveData(phost, phost->Control.buff, phost->Control.length, - phost->Control.pipe_in); - - phost->Control.state = CTRL_DATA_IN_WAIT; - break; - - case CTRL_DATA_IN_WAIT: - - URB_Status = USBH_LL_GetURBState(phost, phost->Control.pipe_in); - - /* check is DATA packet transferred successfully */ - if (URB_Status == USBH_URB_DONE) - { - phost->Control.state = CTRL_STATUS_OUT; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - - /* manage error cases*/ - if (URB_Status == USBH_URB_STALL) - { - /* In stall case, return to previous machine state*/ - status = USBH_NOT_SUPPORTED; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else - { - if (URB_Status == USBH_URB_ERROR) - { - /* Device error */ - phost->Control.state = CTRL_ERROR; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - } - break; - - case CTRL_DATA_OUT: - - USBH_CtlSendData(phost, phost->Control.buff, phost->Control.length, - phost->Control.pipe_out, 1U); - - phost->Control.timer = (uint16_t)phost->Timer; - phost->Control.state = CTRL_DATA_OUT_WAIT; - break; - - case CTRL_DATA_OUT_WAIT: - - URB_Status = USBH_LL_GetURBState(phost, phost->Control.pipe_out); - - if (URB_Status == USBH_URB_DONE) - { - /* If the Setup Pkt is sent successful, then change the state */ - phost->Control.state = CTRL_STATUS_IN; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - - /* handle error cases */ - else if (URB_Status == USBH_URB_STALL) - { - /* In stall case, return to previous machine state*/ - phost->Control.state = CTRL_STALLED; - status = USBH_NOT_SUPPORTED; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else if (URB_Status == USBH_URB_NOTREADY) - { - /* Nack received from device */ - phost->Control.state = CTRL_DATA_OUT; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else - { - if (URB_Status == USBH_URB_ERROR) - { - /* device error */ - phost->Control.state = CTRL_ERROR; - status = USBH_FAIL; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - } - break; - - case CTRL_STATUS_IN: - /* Send 0 bytes out packet */ - USBH_CtlReceiveData(phost, 0U, 0U, phost->Control.pipe_in); - - phost->Control.timer = (uint16_t)phost->Timer; - phost->Control.state = CTRL_STATUS_IN_WAIT; - - break; - - case CTRL_STATUS_IN_WAIT: - - URB_Status = USBH_LL_GetURBState(phost, phost->Control.pipe_in); - - if (URB_Status == USBH_URB_DONE) - { - /* Control transfers completed, Exit the State Machine */ - phost->Control.state = CTRL_COMPLETE; - status = USBH_OK; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else if (URB_Status == USBH_URB_ERROR) - { - phost->Control.state = CTRL_ERROR; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else - { - if (URB_Status == USBH_URB_STALL) - { - /* Control transfers completed, Exit the State Machine */ - status = USBH_NOT_SUPPORTED; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - } - break; - - case CTRL_STATUS_OUT: - USBH_CtlSendData(phost, 0U, 0U, phost->Control.pipe_out, 1U); - - phost->Control.timer = (uint16_t)phost->Timer; - phost->Control.state = CTRL_STATUS_OUT_WAIT; - break; - - case CTRL_STATUS_OUT_WAIT: - URB_Status = USBH_LL_GetURBState(phost, phost->Control.pipe_out); - if (URB_Status == USBH_URB_DONE) - { - status = USBH_OK; - phost->Control.state = CTRL_COMPLETE; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else if (URB_Status == USBH_URB_NOTREADY) - { - phost->Control.state = CTRL_STATUS_OUT; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else - { - if (URB_Status == USBH_URB_ERROR) - { - phost->Control.state = CTRL_ERROR; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CONTROL_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - } - break; - - case CTRL_ERROR: - /* - After a halt condition is encountered or an error is detected by the - host, a control endpoint is allowed to recover by accepting the next Setup - PID; i.e., recovery actions via some other pipe are not required for control - endpoints. For the Default Control Pipe, a device reset will ultimately be - required to clear the halt or error condition if the next Setup PID is not - accepted. - */ - if (++phost->Control.errorcount <= USBH_MAX_ERROR_COUNT) - { - /* Do the transmission again, starting from SETUP Packet */ - phost->Control.state = CTRL_SETUP; - phost->RequestState = CMD_SEND; - } - else - { - phost->pUser(phost, HOST_USER_UNRECOVERED_ERROR); - phost->Control.errorcount = 0U; - USBH_ErrLog("Control error: Device not responding"); - - /* Free control pipes */ - USBH_FreePipe(phost, phost->Control.pipe_out); - USBH_FreePipe(phost, phost->Control.pipe_in); - - phost->gState = HOST_IDLE; - status = USBH_FAIL; - } - break; - - default: - break; - } - - return status; -} - -/** -* @} -*/ - -/** -* @} -*/ - -/** -* @} -*/ - -/** -* @} -*/ - -/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ - - - - diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_ctlreq.h b/Marlin/lib/STM32_USB_Host_Library/src/usbh_ctlreq.h deleted file mode 100644 index ca6ca6afb3..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/src/usbh_ctlreq.h +++ /dev/null @@ -1,141 +0,0 @@ -/** - ****************************************************************************** - * @file usbh_ctlreq.h - * @author MCD Application Team - * @brief Header file for usbh_ctlreq.c - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2015 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under Ultimate Liberty license - * SLA0044, the "License"; You may not use this file except in compliance with - * the License. You may obtain a copy of the License at: - * www.st.com/SLA0044 - * - ****************************************************************************** - */ - -/* Define to prevent recursive ----------------------------------------------*/ -#ifndef __USBH_CTLREQ_H -#define __USBH_CTLREQ_H - -#ifdef __cplusplus -extern "C" { -#endif - -/* Includes ------------------------------------------------------------------*/ -#include "usbh_core.h" - -/** @addtogroup USBH_LIB - * @{ - */ - -/** @addtogroup USBH_LIB_CORE -* @{ -*/ - -/** @defgroup USBH_CTLREQ - * @brief This file is the - * @{ - */ - - -/** @defgroup USBH_CTLREQ_Exported_Defines - * @{ - */ -/*Standard Feature Selector for clear feature command*/ -#define FEATURE_SELECTOR_ENDPOINT 0x00U -#define FEATURE_SELECTOR_DEVICE 0x01U -#define FEATURE_SELECTOR_REMOTEWAKEUP 0X01U - - -#define INTERFACE_DESC_TYPE 0x04U -#define ENDPOINT_DESC_TYPE 0x05U -#define INTERFACE_DESC_SIZE 0x09U - -/** - * @} - */ - - -/** @defgroup USBH_CTLREQ_Exported_Types - * @{ - */ -/** - * @} - */ - - -/** @defgroup USBH_CTLREQ_Exported_Macros - * @{ - */ -/** - * @} - */ - -/** @defgroup USBH_CTLREQ_Exported_Variables - * @{ - */ -extern uint8_t USBH_CfgDesc[512]; -/** - * @} - */ - -/** @defgroup USBH_CTLREQ_Exported_FunctionsPrototype - * @{ - */ -USBH_StatusTypeDef USBH_CtlReq(USBH_HandleTypeDef *phost, uint8_t *buff, - uint16_t length); - -USBH_StatusTypeDef USBH_GetDescriptor(USBH_HandleTypeDef *phost, - uint8_t req_type, uint16_t value_idx, - uint8_t *buff, uint16_t length); - -USBH_StatusTypeDef USBH_Get_DevDesc(USBH_HandleTypeDef *phost, uint8_t length); - -USBH_StatusTypeDef USBH_Get_StringDesc(USBH_HandleTypeDef *phost, - uint8_t string_index, uint8_t *buff, - uint16_t length); - -USBH_StatusTypeDef USBH_SetCfg(USBH_HandleTypeDef *phost, uint16_t cfg_idx); - -USBH_StatusTypeDef USBH_Get_CfgDesc(USBH_HandleTypeDef *phost, uint16_t length); - -USBH_StatusTypeDef USBH_SetAddress(USBH_HandleTypeDef *phost, - uint8_t DeviceAddress); - -USBH_StatusTypeDef USBH_SetInterface(USBH_HandleTypeDef *phost, uint8_t ep_num, - uint8_t altSetting); - -USBH_StatusTypeDef USBH_SetFeature(USBH_HandleTypeDef *phost, uint8_t wValue); - -USBH_StatusTypeDef USBH_ClrFeature(USBH_HandleTypeDef *phost, uint8_t ep_num); - -USBH_DescHeader_t *USBH_GetNextDesc(uint8_t *pbuf, uint16_t *ptr); -/** - * @} - */ - -#ifdef __cplusplus -} -#endif - -#endif /* __USBH_CTLREQ_H */ - -/** - * @} - */ - -/** - * @} - */ - -/** -* @} -*/ - -/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ - - diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_def.h b/Marlin/lib/STM32_USB_Host_Library/src/usbh_def.h deleted file mode 100644 index 303c0289ea..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/src/usbh_def.h +++ /dev/null @@ -1,500 +0,0 @@ -/** - ****************************************************************************** - * @file usbh_def.h - * @author MCD Application Team - * @brief Definitions used in the USB host library - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2015 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under Ultimate Liberty license - * SLA0044, the "License"; You may not use this file except in compliance with - * the License. You may obtain a copy of the License at: - * www.st.com/SLA0044 - * - ****************************************************************************** - */ - -/* Define to prevent recursive ----------------------------------------------*/ -#ifndef USBH_DEF_H -#define USBH_DEF_H - -#ifdef __cplusplus -extern "C" { -#endif - -/* Includes ------------------------------------------------------------------*/ -#include "stm32_usbh_conf.h" - -/** @addtogroup USBH_LIB - * @{ - */ - -/** @addtogroup USBH_LIB_CORE -* @{ -*/ - -/** @defgroup USBH_DEF - * @brief This file is includes USB descriptors - * @{ - */ - -#ifndef NULL -#define NULL 0U -#endif - -#ifndef FALSE -#define FALSE 0U -#endif - -#ifndef TRUE -#define TRUE 1U -#endif - -#ifndef USBH_DEV_RESET_TIMEOUT -#define USBH_DEV_RESET_TIMEOUT 1000U -#endif - -#define ValBit(VAR,POS) (VAR & (1 << POS)) -#define SetBit(VAR,POS) (VAR |= (1 << POS)) -#define ClrBit(VAR,POS) (VAR &= ((1 << POS)^255)) - -#define LE16(addr) (((uint16_t)(addr)[0]) | \ - ((uint16_t)(((uint32_t)(addr)[1]) << 8))) - -#define LE24(addr) (((uint32_t)(addr)[0]) | \ - (((uint32_t)(addr)[1]) << 8) | \ - (((uint32_t)(addr)[2]) << 16)) - -#define LE32(addr) (((uint32_t)(addr)[0]) | \ - (((uint32_t)(addr)[1]) << 8) | \ - (((uint32_t)(addr)[2]) << 16) | \ - (((uint32_t)(addr)[3]) << 24)) - -#define LE64(addr) (((uint64_t)(addr)[0]) | \ - (((uint64_t)(addr)[1]) << 8) | \ - (((uint64_t)(addr)[2]) << 16) | \ - (((uint64_t)(addr)[3]) << 24) | \ - (((uint64_t)(addr)[4]) << 32) | \ - (((uint64_t)(addr)[5]) << 40) | \ - (((uint64_t)(addr)[6]) << 48) | \ - (((uint64_t)(addr)[7]) << 56)) - -#define LE16S(addr) ((int16_t)(LE16((addr)))) -#define LE24S(addr) ((int32_t)(LE24((addr)))) -#define LE32S(addr) ((int32_t)(LE32((addr)))) -#define LE64S(addr) ((int64_t)(LE64((addr)))) - - - -#define USB_LEN_DESC_HDR 0x02U -#define USB_LEN_DEV_DESC 0x12U -#define USB_LEN_CFG_DESC 0x09U -#define USB_LEN_IF_DESC 0x09U -#define USB_LEN_EP_DESC 0x07U -#define USB_LEN_OTG_DESC 0x03U -#define USB_LEN_SETUP_PKT 0x08U - -/* bmRequestType :D7 Data Phase Transfer Direction */ -#define USB_REQ_DIR_MASK 0x80U -#define USB_H2D 0x00U -#define USB_D2H 0x80U - -/* bmRequestType D6..5 Type */ -#define USB_REQ_TYPE_STANDARD 0x00U -#define USB_REQ_TYPE_CLASS 0x20U -#define USB_REQ_TYPE_VENDOR 0x40U -#define USB_REQ_TYPE_RESERVED 0x60U - -/* bmRequestType D4..0 Recipient */ -#define USB_REQ_RECIPIENT_DEVICE 0x00U -#define USB_REQ_RECIPIENT_INTERFACE 0x01U -#define USB_REQ_RECIPIENT_ENDPOINT 0x02U -#define USB_REQ_RECIPIENT_OTHER 0x03U - -/* Table 9-4. Standard Request Codes */ -/* bRequest , Value */ -#define USB_REQ_GET_STATUS 0x00U -#define USB_REQ_CLEAR_FEATURE 0x01U -#define USB_REQ_SET_FEATURE 0x03U -#define USB_REQ_SET_ADDRESS 0x05U -#define USB_REQ_GET_DESCRIPTOR 0x06U -#define USB_REQ_SET_DESCRIPTOR 0x07U -#define USB_REQ_GET_CONFIGURATION 0x08U -#define USB_REQ_SET_CONFIGURATION 0x09U -#define USB_REQ_GET_INTERFACE 0x0AU -#define USB_REQ_SET_INTERFACE 0x0BU -#define USB_REQ_SYNCH_FRAME 0x0CU - -/* Table 9-5. Descriptor Types of USB Specifications */ -#define USB_DESC_TYPE_DEVICE 0x01U -#define USB_DESC_TYPE_CONFIGURATION 0x02U -#define USB_DESC_TYPE_STRING 0x03U -#define USB_DESC_TYPE_INTERFACE 0x04U -#define USB_DESC_TYPE_ENDPOINT 0x05U -#define USB_DESC_TYPE_DEVICE_QUALIFIER 0x06U -#define USB_DESC_TYPE_OTHER_SPEED_CONFIGURATION 0x07U -#define USB_DESC_TYPE_INTERFACE_POWER 0x08U -#define USB_DESC_TYPE_HID 0x21U -#define USB_DESC_TYPE_HID_REPORT 0x22U - - -#define USB_DEVICE_DESC_SIZE 0x12U -#define USB_CONFIGURATION_DESC_SIZE 0x09U -#define USB_HID_DESC_SIZE 0x09U -#define USB_INTERFACE_DESC_SIZE 0x09U -#define USB_ENDPOINT_DESC_SIZE 0x07U - -/* Descriptor Type and Descriptor Index */ -/* Use the following values when calling the function USBH_GetDescriptor */ -#define USB_DESC_DEVICE ((USB_DESC_TYPE_DEVICE << 8) & 0xFF00U) -#define USB_DESC_CONFIGURATION ((USB_DESC_TYPE_CONFIGURATION << 8) & 0xFF00U) -#define USB_DESC_STRING ((USB_DESC_TYPE_STRING << 8) & 0xFF00U) -#define USB_DESC_INTERFACE ((USB_DESC_TYPE_INTERFACE << 8) & 0xFF00U) -#define USB_DESC_ENDPOINT ((USB_DESC_TYPE_INTERFACE << 8) & 0xFF00U) -#define USB_DESC_DEVICE_QUALIFIER ((USB_DESC_TYPE_DEVICE_QUALIFIER << 8) & 0xFF00U) -#define USB_DESC_OTHER_SPEED_CONFIGURATION ((USB_DESC_TYPE_OTHER_SPEED_CONFIGURATION << 8) & 0xFF00U) -#define USB_DESC_INTERFACE_POWER ((USB_DESC_TYPE_INTERFACE_POWER << 8) & 0xFF00U) -#define USB_DESC_HID_REPORT ((USB_DESC_TYPE_HID_REPORT << 8) & 0xFF00U) -#define USB_DESC_HID ((USB_DESC_TYPE_HID << 8) & 0xFF00U) - - -#define USB_EP_TYPE_CTRL 0x00U -#define USB_EP_TYPE_ISOC 0x01U -#define USB_EP_TYPE_BULK 0x02U -#define USB_EP_TYPE_INTR 0x03U - -#define USB_EP_DIR_OUT 0x00U -#define USB_EP_DIR_IN 0x80U -#define USB_EP_DIR_MSK 0x80U - -#ifndef USBH_MAX_PIPES_NBR -#define USBH_MAX_PIPES_NBR 15U -#endif /* USBH_MAX_PIPES_NBR */ - -#define USBH_DEVICE_ADDRESS_DEFAULT 0x00U -#define USBH_DEVICE_ADDRESS 0x01U - -#define USBH_MAX_ERROR_COUNT 0x02U - -#if (USBH_USE_OS == 1U) -#define MSGQUEUE_OBJECTS 0x10U -#endif - - -/** - * @} - */ - - -#define USBH_CONFIGURATION_DESCRIPTOR_SIZE (USB_CONFIGURATION_DESC_SIZE \ - + USB_INTERFACE_DESC_SIZE\ - + (USBH_MAX_NUM_ENDPOINTS * USB_ENDPOINT_DESC_SIZE)) - - -#define CONFIG_DESC_wTOTAL_LENGTH (ConfigurationDescriptorData.ConfigDescfield.\ - ConfigurationDescriptor.wTotalLength) - - -typedef union -{ - uint16_t w; - struct BW - { - uint8_t msb; - uint8_t lsb; - } - bw; -} -uint16_t_uint8_t; - - -typedef union _USB_Setup -{ - uint32_t d8[2]; - - struct _SetupPkt_Struc - { - uint8_t bmRequestType; - uint8_t bRequest; - uint16_t_uint8_t wValue; - uint16_t_uint8_t wIndex; - uint16_t_uint8_t wLength; - } b; -} -USB_Setup_TypeDef; - -typedef struct _DescHeader -{ - uint8_t bLength; - uint8_t bDescriptorType; -} -USBH_DescHeader_t; - -typedef struct _DeviceDescriptor -{ - uint8_t bLength; - uint8_t bDescriptorType; - uint16_t bcdUSB; /* USB Specification Number which device complies too */ - uint8_t bDeviceClass; - uint8_t bDeviceSubClass; - uint8_t bDeviceProtocol; - /* If equal to Zero, each interface specifies its own class - code if equal to 0xFF, the class code is vendor specified. - Otherwise field is valid Class Code.*/ - uint8_t bMaxPacketSize; - uint16_t idVendor; /* Vendor ID (Assigned by USB Org) */ - uint16_t idProduct; /* Product ID (Assigned by Manufacturer) */ - uint16_t bcdDevice; /* Device Release Number */ - uint8_t iManufacturer; /* Index of Manufacturer String Descriptor */ - uint8_t iProduct; /* Index of Product String Descriptor */ - uint8_t iSerialNumber; /* Index of Serial Number String Descriptor */ - uint8_t bNumConfigurations; /* Number of Possible Configurations */ -} -USBH_DevDescTypeDef; - -typedef struct _EndpointDescriptor -{ - uint8_t bLength; - uint8_t bDescriptorType; - uint8_t bEndpointAddress; /* indicates what endpoint this descriptor is describing */ - uint8_t bmAttributes; /* specifies the transfer type. */ - uint16_t wMaxPacketSize; /* Maximum Packet Size this endpoint is capable of sending or receiving */ - uint8_t bInterval; /* is used to specify the polling interval of certain transfers. */ -} -USBH_EpDescTypeDef; - -typedef struct _InterfaceDescriptor -{ - uint8_t bLength; - uint8_t bDescriptorType; - uint8_t bInterfaceNumber; - uint8_t bAlternateSetting; /* Value used to select alternative setting */ - uint8_t bNumEndpoints; /* Number of Endpoints used for this interface */ - uint8_t bInterfaceClass; /* Class Code (Assigned by USB Org) */ - uint8_t bInterfaceSubClass; /* Subclass Code (Assigned by USB Org) */ - uint8_t bInterfaceProtocol; /* Protocol Code */ - uint8_t iInterface; /* Index of String Descriptor Describing this interface */ - USBH_EpDescTypeDef Ep_Desc[USBH_MAX_NUM_ENDPOINTS]; -} -USBH_InterfaceDescTypeDef; - - -typedef struct _ConfigurationDescriptor -{ - uint8_t bLength; - uint8_t bDescriptorType; - uint16_t wTotalLength; /* Total Length of Data Returned */ - uint8_t bNumInterfaces; /* Number of Interfaces */ - uint8_t bConfigurationValue; /* Value to use as an argument to select this configuration*/ - uint8_t iConfiguration; /*Index of String Descriptor Describing this configuration */ - uint8_t bmAttributes; /* D7 Bus Powered , D6 Self Powered, D5 Remote Wakeup , D4..0 Reserved (0)*/ - uint8_t bMaxPower; /*Maximum Power Consumption */ - USBH_InterfaceDescTypeDef Itf_Desc[USBH_MAX_NUM_INTERFACES]; -} -USBH_CfgDescTypeDef; - - -/* Following USB Host status */ -typedef enum -{ - USBH_OK = 0, - USBH_BUSY, - USBH_FAIL, - USBH_NOT_SUPPORTED, - USBH_UNRECOVERED_ERROR, - USBH_ERROR_SPEED_UNKNOWN, -} USBH_StatusTypeDef; - - -/** @defgroup USBH_CORE_Exported_Types - * @{ - */ - -typedef enum -{ - USBH_SPEED_HIGH = 0U, - USBH_SPEED_FULL = 1U, - USBH_SPEED_LOW = 2U, - -} USBH_SpeedTypeDef; - -/* Following states are used for gState */ -typedef enum -{ - HOST_IDLE = 0U, - HOST_DEV_WAIT_FOR_ATTACHMENT, - HOST_DEV_ATTACHED, - HOST_DEV_DISCONNECTED, - HOST_DETECT_DEVICE_SPEED, - HOST_ENUMERATION, - HOST_CLASS_REQUEST, - HOST_INPUT, - HOST_SET_CONFIGURATION, - HOST_SET_WAKEUP_FEATURE, - HOST_CHECK_CLASS, - HOST_CLASS, - HOST_SUSPENDED, - HOST_ABORT_STATE, -} HOST_StateTypeDef; - -/* Following states are used for EnumerationState */ -typedef enum -{ - ENUM_IDLE = 0U, - ENUM_GET_FULL_DEV_DESC, - ENUM_SET_ADDR, - ENUM_GET_CFG_DESC, - ENUM_GET_FULL_CFG_DESC, - ENUM_GET_MFC_STRING_DESC, - ENUM_GET_PRODUCT_STRING_DESC, - ENUM_GET_SERIALNUM_STRING_DESC, -} ENUM_StateTypeDef; - -/* Following states are used for CtrlXferStateMachine */ -typedef enum -{ - CTRL_IDLE = 0U, - CTRL_SETUP, - CTRL_SETUP_WAIT, - CTRL_DATA_IN, - CTRL_DATA_IN_WAIT, - CTRL_DATA_OUT, - CTRL_DATA_OUT_WAIT, - CTRL_STATUS_IN, - CTRL_STATUS_IN_WAIT, - CTRL_STATUS_OUT, - CTRL_STATUS_OUT_WAIT, - CTRL_ERROR, - CTRL_STALLED, - CTRL_COMPLETE -} CTRL_StateTypeDef; - - -/* Following states are used for RequestState */ -typedef enum -{ - CMD_IDLE = 0U, - CMD_SEND, - CMD_WAIT -} CMD_StateTypeDef; - -typedef enum -{ - USBH_URB_IDLE = 0U, - USBH_URB_DONE, - USBH_URB_NOTREADY, - USBH_URB_NYET, - USBH_URB_ERROR, - USBH_URB_STALL -} USBH_URBStateTypeDef; - -typedef enum -{ - USBH_PORT_EVENT = 1U, - USBH_URB_EVENT, - USBH_CONTROL_EVENT, - USBH_CLASS_EVENT, - USBH_STATE_CHANGED_EVENT, -} -USBH_OSEventTypeDef; - -/* Control request structure */ -typedef struct -{ - uint8_t pipe_in; - uint8_t pipe_out; - uint8_t pipe_size; - uint8_t *buff; - uint16_t length; - uint16_t timer; - USB_Setup_TypeDef setup; - CTRL_StateTypeDef state; - uint8_t errorcount; - -} USBH_CtrlTypeDef; - -/* Attached device structure */ -typedef struct -{ - uint8_t CfgDesc_Raw[USBH_MAX_SIZE_CONFIGURATION]; - uint8_t Data[USBH_MAX_DATA_BUFFER]; - uint8_t address; - uint8_t speed; - uint8_t EnumCnt; - uint8_t RstCnt; - __IO uint8_t is_connected; - __IO uint8_t is_disconnected; - __IO uint8_t is_ReEnumerated; - uint8_t PortEnabled; - uint8_t current_interface; - USBH_DevDescTypeDef DevDesc; - USBH_CfgDescTypeDef CfgDesc; -} USBH_DeviceTypeDef; - -struct _USBH_HandleTypeDef; - -/* USB Host Class structure */ -typedef struct -{ - const char *Name; - uint8_t ClassCode; - USBH_StatusTypeDef(*Init)(struct _USBH_HandleTypeDef *phost); - USBH_StatusTypeDef(*DeInit)(struct _USBH_HandleTypeDef *phost); - USBH_StatusTypeDef(*Requests)(struct _USBH_HandleTypeDef *phost); - USBH_StatusTypeDef(*BgndProcess)(struct _USBH_HandleTypeDef *phost); - USBH_StatusTypeDef(*SOFProcess)(struct _USBH_HandleTypeDef *phost); - void *pData; -} USBH_ClassTypeDef; - -/* USB Host handle structure */ -typedef struct _USBH_HandleTypeDef -{ - __IO HOST_StateTypeDef gState; /* Host State Machine Value */ - ENUM_StateTypeDef EnumState; /* Enumeration state Machine */ - CMD_StateTypeDef RequestState; - USBH_CtrlTypeDef Control; - USBH_DeviceTypeDef device; - USBH_ClassTypeDef *pClass[USBH_MAX_NUM_SUPPORTED_CLASS]; - USBH_ClassTypeDef *pActiveClass; - uint32_t ClassNumber; - uint32_t Pipes[16]; - __IO uint32_t Timer; - uint32_t Timeout; - uint8_t id; - void *pData; - void (* pUser)(struct _USBH_HandleTypeDef *pHandle, uint8_t id); - -#if (USBH_USE_OS == 1U) -#if osCMSIS < 0x20000 - osMessageQId os_event; - osThreadId thread; -#else - osMessageQueueId_t os_event; - osThreadId_t thread; -#endif - uint32_t os_msg; -#endif - -} USBH_HandleTypeDef; - - -#if defined ( __GNUC__ ) -#ifndef __weak -#define __weak __attribute__((weak)) -#endif /* __weak */ -#ifndef __packed -#define __packed __attribute__((__packed__)) -#endif /* __packed */ -#endif /* __GNUC__ */ - -#ifdef __cplusplus -} -#endif - -#endif /* USBH_DEF_H */ - -/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ - diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_ioreq.c b/Marlin/lib/STM32_USB_Host_Library/src/usbh_ioreq.c deleted file mode 100644 index 46e973454c..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/src/usbh_ioreq.c +++ /dev/null @@ -1,350 +0,0 @@ -/** - ****************************************************************************** - * @file usbh_ioreq.c - * @author MCD Application Team - * @brief This file handles the issuing of the USB transactions - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2015 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under Ultimate Liberty license - * SLA0044, the "License"; You may not use this file except in compliance with - * the License. You may obtain a copy of the License at: - * www.st.com/SLA0044 - * - ****************************************************************************** - */ - -/* Includes ------------------------------------------------------------------*/ -#include "usbh_ioreq.h" - -/** @addtogroup USBH_LIB - * @{ - */ - -/** @addtogroup USBH_LIB_CORE -* @{ -*/ - -/** @defgroup USBH_IOREQ - * @brief This file handles the standard protocol processing (USB v2.0) - * @{ - */ - - -/** @defgroup USBH_IOREQ_Private_Defines - * @{ - */ - -/** - * @} - */ - - -/** @defgroup USBH_IOREQ_Private_TypesDefinitions - * @{ - */ -/** - * @} - */ - - - -/** @defgroup USBH_IOREQ_Private_Macros - * @{ - */ -/** - * @} - */ - - -/** @defgroup USBH_IOREQ_Private_Variables - * @{ - */ -/** - * @} - */ -/** @defgroup USBH_IOREQ_Private_FunctionPrototypes - * @{ - */ - -/** - * @} - */ - - -/** @defgroup USBH_IOREQ_Private_Functions - * @{ - */ - - - -/** - * @brief USBH_CtlSendSetup - * Sends the Setup Packet to the Device - * @param phost: Host Handle - * @param buff: Buffer pointer from which the Data will be send to Device - * @param pipe_num: Pipe Number - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_CtlSendSetup(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint8_t pipe_num) -{ - - USBH_LL_SubmitURB(phost, /* Driver handle */ - pipe_num, /* Pipe index */ - 0U, /* Direction : OUT */ - USBH_EP_CONTROL, /* EP type */ - USBH_PID_SETUP, /* Type setup */ - buff, /* data buffer */ - USBH_SETUP_PKT_SIZE, /* data length */ - 0U); - return USBH_OK; -} - - -/** - * @brief USBH_CtlSendData - * Sends a data Packet to the Device - * @param phost: Host Handle - * @param buff: Buffer pointer from which the Data will be sent to Device - * @param length: Length of the data to be sent - * @param pipe_num: Pipe Number - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_CtlSendData(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint16_t length, - uint8_t pipe_num, - uint8_t do_ping) -{ - if (phost->device.speed != USBH_SPEED_HIGH) - { - do_ping = 0U; - } - - USBH_LL_SubmitURB(phost, /* Driver handle */ - pipe_num, /* Pipe index */ - 0U, /* Direction : OUT */ - USBH_EP_CONTROL, /* EP type */ - USBH_PID_DATA, /* Type Data */ - buff, /* data buffer */ - length, /* data length */ - do_ping); /* do ping (HS Only)*/ - - return USBH_OK; -} - - -/** - * @brief USBH_CtlReceiveData - * Receives the Device Response to the Setup Packet - * @param phost: Host Handle - * @param buff: Buffer pointer in which the response needs to be copied - * @param length: Length of the data to be received - * @param pipe_num: Pipe Number - * @retval USBH Status. - */ -USBH_StatusTypeDef USBH_CtlReceiveData(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint16_t length, - uint8_t pipe_num) -{ - USBH_LL_SubmitURB(phost, /* Driver handle */ - pipe_num, /* Pipe index */ - 1U, /* Direction : IN */ - USBH_EP_CONTROL, /* EP type */ - USBH_PID_DATA, /* Type Data */ - buff, /* data buffer */ - length, /* data length */ - 0U); - return USBH_OK; - -} - - -/** - * @brief USBH_BulkSendData - * Sends the Bulk Packet to the device - * @param phost: Host Handle - * @param buff: Buffer pointer from which the Data will be sent to Device - * @param length: Length of the data to be sent - * @param pipe_num: Pipe Number - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_BulkSendData(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint16_t length, - uint8_t pipe_num, - uint8_t do_ping) -{ - if (phost->device.speed != USBH_SPEED_HIGH) - { - do_ping = 0U; - } - - USBH_LL_SubmitURB(phost, /* Driver handle */ - pipe_num, /* Pipe index */ - 0U, /* Direction : IN */ - USBH_EP_BULK, /* EP type */ - USBH_PID_DATA, /* Type Data */ - buff, /* data buffer */ - length, /* data length */ - do_ping); /* do ping (HS Only)*/ - return USBH_OK; -} - - -/** - * @brief USBH_BulkReceiveData - * Receives IN bulk packet from device - * @param phost: Host Handle - * @param buff: Buffer pointer in which the received data packet to be copied - * @param length: Length of the data to be received - * @param pipe_num: Pipe Number - * @retval USBH Status. - */ -USBH_StatusTypeDef USBH_BulkReceiveData(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint16_t length, - uint8_t pipe_num) -{ - USBH_LL_SubmitURB(phost, /* Driver handle */ - pipe_num, /* Pipe index */ - 1U, /* Direction : IN */ - USBH_EP_BULK, /* EP type */ - USBH_PID_DATA, /* Type Data */ - buff, /* data buffer */ - length, /* data length */ - 0U); - return USBH_OK; -} - - -/** - * @brief USBH_InterruptReceiveData - * Receives the Device Response to the Interrupt IN token - * @param phost: Host Handle - * @param buff: Buffer pointer in which the response needs to be copied - * @param length: Length of the data to be received - * @param pipe_num: Pipe Number - * @retval USBH Status. - */ -USBH_StatusTypeDef USBH_InterruptReceiveData(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint8_t length, - uint8_t pipe_num) -{ - USBH_LL_SubmitURB(phost, /* Driver handle */ - pipe_num, /* Pipe index */ - 1U, /* Direction : IN */ - USBH_EP_INTERRUPT, /* EP type */ - USBH_PID_DATA, /* Type Data */ - buff, /* data buffer */ - (uint16_t)length, /* data length */ - 0U); - - return USBH_OK; -} - -/** - * @brief USBH_InterruptSendData - * Sends the data on Interrupt OUT Endpoint - * @param phost: Host Handle - * @param buff: Buffer pointer from where the data needs to be copied - * @param length: Length of the data to be sent - * @param pipe_num: Pipe Number - * @retval USBH Status. - */ -USBH_StatusTypeDef USBH_InterruptSendData(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint8_t length, - uint8_t pipe_num) -{ - USBH_LL_SubmitURB(phost, /* Driver handle */ - pipe_num, /* Pipe index */ - 0U, /* Direction : OUT */ - USBH_EP_INTERRUPT, /* EP type */ - USBH_PID_DATA, /* Type Data */ - buff, /* data buffer */ - (uint16_t)length, /* data length */ - 0U); - - return USBH_OK; -} - -/** - * @brief USBH_IsocReceiveData - * Receives the Device Response to the Isochronous IN token - * @param phost: Host Handle - * @param buff: Buffer pointer in which the response needs to be copied - * @param length: Length of the data to be received - * @param pipe_num: Pipe Number - * @retval USBH Status. - */ -USBH_StatusTypeDef USBH_IsocReceiveData(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint32_t length, - uint8_t pipe_num) -{ - USBH_LL_SubmitURB(phost, /* Driver handle */ - pipe_num, /* Pipe index */ - 1U, /* Direction : IN */ - USBH_EP_ISO, /* EP type */ - USBH_PID_DATA, /* Type Data */ - buff, /* data buffer */ - (uint16_t)length, /* data length */ - 0U); - - - return USBH_OK; -} - -/** - * @brief USBH_IsocSendData - * Sends the data on Isochronous OUT Endpoint - * @param phost: Host Handle - * @param buff: Buffer pointer from where the data needs to be copied - * @param length: Length of the data to be sent - * @param pipe_num: Pipe Number - * @retval USBH Status. - */ -USBH_StatusTypeDef USBH_IsocSendData(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint32_t length, - uint8_t pipe_num) -{ - USBH_LL_SubmitURB(phost, /* Driver handle */ - pipe_num, /* Pipe index */ - 0U, /* Direction : OUT */ - USBH_EP_ISO, /* EP type */ - USBH_PID_DATA, /* Type Data */ - buff, /* data buffer */ - (uint16_t)length, /* data length */ - 0U); - - return USBH_OK; -} -/** -* @} -*/ - -/** -* @} -*/ - -/** -* @} -*/ - -/** -* @} -*/ - -/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ - - - diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_ioreq.h b/Marlin/lib/STM32_USB_Host_Library/src/usbh_ioreq.h deleted file mode 100644 index ccb321504c..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/src/usbh_ioreq.h +++ /dev/null @@ -1,160 +0,0 @@ -/** - ****************************************************************************** - * @file usbh_ioreq.h - * @author MCD Application Team - * @brief Header file for usbh_ioreq.c - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2015 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under Ultimate Liberty license - * SLA0044, the "License"; You may not use this file except in compliance with - * the License. You may obtain a copy of the License at: - * www.st.com/SLA0044 - * - ****************************************************************************** - */ - -/* Define to prevent recursive ----------------------------------------------*/ -#ifndef __USBH_IOREQ_H -#define __USBH_IOREQ_H - -#ifdef __cplusplus -extern "C" { -#endif - -/* Includes ------------------------------------------------------------------*/ -#include "stm32_usbh_conf.h" -#include "usbh_core.h" - -/** @addtogroup USBH_LIB - * @{ - */ - -/** @addtogroup USBH_LIB_CORE -* @{ -*/ - -/** @defgroup USBH_IOREQ - * @brief This file is the header file for usbh_ioreq.c - * @{ - */ - - -/** @defgroup USBH_IOREQ_Exported_Defines - * @{ - */ - -#define USBH_PID_SETUP 0U -#define USBH_PID_DATA 1U - -#define USBH_EP_CONTROL 0U -#define USBH_EP_ISO 1U -#define USBH_EP_BULK 2U -#define USBH_EP_INTERRUPT 3U - -#define USBH_SETUP_PKT_SIZE 8U -/** - * @} - */ - - -/** @defgroup USBH_IOREQ_Exported_Types - * @{ - */ -/** - * @} - */ - - -/** @defgroup USBH_IOREQ_Exported_Macros - * @{ - */ -/** - * @} - */ - -/** @defgroup USBH_IOREQ_Exported_Variables - * @{ - */ -/** - * @} - */ - -/** @defgroup USBH_IOREQ_Exported_FunctionsPrototype - * @{ - */ -USBH_StatusTypeDef USBH_CtlSendSetup(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint8_t pipe_num); - -USBH_StatusTypeDef USBH_CtlSendData(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint16_t length, - uint8_t pipe_num, - uint8_t do_ping); - -USBH_StatusTypeDef USBH_CtlReceiveData(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint16_t length, - uint8_t pipe_num); - -USBH_StatusTypeDef USBH_BulkReceiveData(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint16_t length, - uint8_t pipe_num); - -USBH_StatusTypeDef USBH_BulkSendData(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint16_t length, - uint8_t pipe_num, - uint8_t do_ping); - -USBH_StatusTypeDef USBH_InterruptReceiveData(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint8_t length, - uint8_t pipe_num); - -USBH_StatusTypeDef USBH_InterruptSendData(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint8_t length, - uint8_t pipe_num); - - -USBH_StatusTypeDef USBH_IsocReceiveData(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint32_t length, - uint8_t pipe_num); - - -USBH_StatusTypeDef USBH_IsocSendData(USBH_HandleTypeDef *phost, - uint8_t *buff, - uint32_t length, - uint8_t pipe_num); -/** - * @} - */ - -#ifdef __cplusplus -} -#endif - -#endif /* __USBH_IOREQ_H */ - -/** - * @} - */ - -/** - * @} - */ - -/** -* @} -*/ - -/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ - - diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc.c b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc.c deleted file mode 100644 index 929132e7f2..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc.c +++ /dev/null @@ -1,858 +0,0 @@ -/** - ****************************************************************************** - * @file usbh_msc.c - * @author MCD Application Team - * @brief This file implements the MSC class driver functions - * =================================================================== - * MSC Class Description - * =================================================================== - * This module manages the MSC class V1.0 following the "Universal - * Serial Bus Mass Storage Class (MSC) Bulk-Only Transport (BOT) Version 1.0 - * Sep. 31, 1999". - * This driver implements the following aspects of the specification: - * - Bulk-Only Transport protocol - * - Subclass : SCSI transparent command set (ref. SCSI Primary Commands - 3 (SPC-3)) - * - * @endverbatim - * - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2015 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under Ultimate Liberty license - * SLA0044, the "License"; You may not use this file except in compliance with - * the License. You may obtain a copy of the License at: - * www.st.com/SLA0044 - * - ****************************************************************************** - */ - -/* BSPDependencies -- "stm32xxxxx_{eval}{discovery}{nucleo_144}.c" -- "stm32xxxxx_{eval}{discovery}_io.c" -- "stm32xxxxx_{eval}{discovery}{adafruit}_lcd.c" -- "stm32xxxxx_{eval}{discovery}_sdram.c" -EndBSPDependencies */ - -/* Includes ------------------------------------------------------------------*/ -#include "usbh_msc.h" -#include "usbh_msc_bot.h" -#include "usbh_msc_scsi.h" - - -/** @addtogroup USBH_LIB - * @{ - */ - -/** @addtogroup USBH_CLASS - * @{ - */ - -/** @addtogroup USBH_MSC_CLASS - * @{ - */ - -/** @defgroup USBH_MSC_CORE - * @brief This file includes the mass storage related functions - * @{ - */ - - -/** @defgroup USBH_MSC_CORE_Private_TypesDefinitions - * @{ - */ -/** - * @} - */ - -/** @defgroup USBH_MSC_CORE_Private_Defines - * @{ - */ -/** - * @} - */ - -/** @defgroup USBH_MSC_CORE_Private_Macros - * @{ - */ -/** - * @} - */ - - -/** @defgroup USBH_MSC_CORE_Private_Variables - * @{ - */ -/** - * @} - */ - - -/** @defgroup USBH_MSC_CORE_Private_FunctionPrototypes - * @{ - */ - -static USBH_StatusTypeDef USBH_MSC_InterfaceInit(USBH_HandleTypeDef *phost); - -static USBH_StatusTypeDef USBH_MSC_InterfaceDeInit(USBH_HandleTypeDef *phost); - -static USBH_StatusTypeDef USBH_MSC_Process(USBH_HandleTypeDef *phost); - -static USBH_StatusTypeDef USBH_MSC_ClassRequest(USBH_HandleTypeDef *phost); - -static USBH_StatusTypeDef USBH_MSC_SOFProcess(USBH_HandleTypeDef *phost); - -static USBH_StatusTypeDef USBH_MSC_RdWrProcess(USBH_HandleTypeDef *phost, uint8_t lun); - -USBH_ClassTypeDef USBH_msc = -{ - "MSC", - USB_MSC_CLASS, - USBH_MSC_InterfaceInit, - USBH_MSC_InterfaceDeInit, - USBH_MSC_ClassRequest, - USBH_MSC_Process, - USBH_MSC_SOFProcess, - NULL, -}; - - -/** - * @} - */ - - -/** @defgroup USBH_MSC_CORE_Exported_Variables - * @{ - */ - -/** - * @} - */ - - -/** @defgroup USBH_MSC_CORE_Private_Functions - * @{ - */ - - -/** - * @brief USBH_MSC_InterfaceInit - * The function init the MSC class. - * @param phost: Host handle - * @retval USBH Status - */ -static USBH_StatusTypeDef USBH_MSC_InterfaceInit(USBH_HandleTypeDef *phost) -{ - USBH_StatusTypeDef status; - uint8_t interface; - MSC_HandleTypeDef *MSC_Handle; - - interface = USBH_FindInterface(phost, phost->pActiveClass->ClassCode, MSC_TRANSPARENT, MSC_BOT); - - if ((interface == 0xFFU) || (interface >= USBH_MAX_NUM_INTERFACES)) /* Not Valid Interface */ - { - USBH_DbgLog("Cannot Find the interface for %s class.", phost->pActiveClass->Name); - return USBH_FAIL; - } - - status = USBH_SelectInterface(phost, interface); - - if (status != USBH_OK) - { - return USBH_FAIL; - } - - phost->pActiveClass->pData = (MSC_HandleTypeDef *)USBH_malloc(sizeof(MSC_HandleTypeDef)); - MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - - if (MSC_Handle == NULL) - { - USBH_DbgLog("Cannot allocate memory for MSC Handle"); - return USBH_FAIL; - } - - /* Initialize msc handler */ - USBH_memset(MSC_Handle, 0, sizeof(MSC_HandleTypeDef)); - - if (phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[0].bEndpointAddress & 0x80U) - { - MSC_Handle->InEp = (phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[0].bEndpointAddress); - MSC_Handle->InEpSize = phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[0].wMaxPacketSize; - } - else - { - MSC_Handle->OutEp = (phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[0].bEndpointAddress); - MSC_Handle->OutEpSize = phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[0].wMaxPacketSize; - } - - if (phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[1].bEndpointAddress & 0x80U) - { - MSC_Handle->InEp = (phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[1].bEndpointAddress); - MSC_Handle->InEpSize = phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[1].wMaxPacketSize; - } - else - { - MSC_Handle->OutEp = (phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[1].bEndpointAddress); - MSC_Handle->OutEpSize = phost->device.CfgDesc.Itf_Desc[interface].Ep_Desc[1].wMaxPacketSize; - } - - MSC_Handle->state = MSC_INIT; - MSC_Handle->error = MSC_OK; - MSC_Handle->req_state = MSC_REQ_IDLE; - MSC_Handle->OutPipe = USBH_AllocPipe(phost, MSC_Handle->OutEp); - MSC_Handle->InPipe = USBH_AllocPipe(phost, MSC_Handle->InEp); - - USBH_MSC_BOT_Init(phost); - - /* Open the new channels */ - USBH_OpenPipe(phost, MSC_Handle->OutPipe, MSC_Handle->OutEp, - phost->device.address, phost->device.speed, - USB_EP_TYPE_BULK, MSC_Handle->OutEpSize); - - USBH_OpenPipe(phost, MSC_Handle->InPipe, MSC_Handle->InEp, - phost->device.address, phost->device.speed, USB_EP_TYPE_BULK, - MSC_Handle->InEpSize); - - USBH_LL_SetToggle(phost, MSC_Handle->InPipe, 0U); - USBH_LL_SetToggle(phost, MSC_Handle->OutPipe, 0U); - - return USBH_OK; -} - -/** - * @brief USBH_MSC_InterfaceDeInit - * The function DeInit the Pipes used for the MSC class. - * @param phost: Host handle - * @retval USBH Status - */ -static USBH_StatusTypeDef USBH_MSC_InterfaceDeInit(USBH_HandleTypeDef *phost) -{ - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - - if (MSC_Handle->OutPipe) - { - USBH_ClosePipe(phost, MSC_Handle->OutPipe); - USBH_FreePipe(phost, MSC_Handle->OutPipe); - MSC_Handle->OutPipe = 0U; /* Reset the Channel as Free */ - } - - if (MSC_Handle->InPipe) - { - USBH_ClosePipe(phost, MSC_Handle->InPipe); - USBH_FreePipe(phost, MSC_Handle->InPipe); - MSC_Handle->InPipe = 0U; /* Reset the Channel as Free */ - } - - if (phost->pActiveClass->pData) - { - USBH_free(phost->pActiveClass->pData); - phost->pActiveClass->pData = 0U; - } - - return USBH_OK; -} - -/** - * @brief USBH_MSC_ClassRequest - * The function is responsible for handling Standard requests - * for MSC class. - * @param phost: Host handle - * @retval USBH Status - */ -static USBH_StatusTypeDef USBH_MSC_ClassRequest(USBH_HandleTypeDef *phost) -{ - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - USBH_StatusTypeDef status = USBH_BUSY; - uint8_t i; - - /* Switch MSC REQ state machine */ - switch (MSC_Handle->req_state) - { - case MSC_REQ_IDLE: - case MSC_REQ_GET_MAX_LUN: - /* Issue GetMaxLUN request */ - status = USBH_MSC_BOT_REQ_GetMaxLUN(phost, &MSC_Handle->max_lun); - - /* When devices do not support the GetMaxLun request, this should - be considred as only one logical unit is supported */ - if (status == USBH_NOT_SUPPORTED) - { - MSC_Handle->max_lun = 0U; - status = USBH_OK; - } - - if (status == USBH_OK) - { - MSC_Handle->max_lun = (MSC_Handle->max_lun > MAX_SUPPORTED_LUN) ? MAX_SUPPORTED_LUN : (MSC_Handle->max_lun + 1U); - USBH_UsrLog("Number of supported LUN: %d", MSC_Handle->max_lun); - - for (i = 0U; i < MSC_Handle->max_lun; i++) - { - MSC_Handle->unit[i].prev_ready_state = USBH_FAIL; - MSC_Handle->unit[i].state_changed = 0U; - } - } - break; - - case MSC_REQ_ERROR: - /* a Clear Feature should be issued here */ - if (USBH_ClrFeature(phost, 0x00U) == USBH_OK) - { - MSC_Handle->req_state = MSC_Handle->prev_req_state; - } - break; - - default: - break; - } - - return status; -} - -/** - * @brief USBH_MSC_Process - * The function is for managing state machine for MSC data transfers - * @param phost: Host handle - * @retval USBH Status - */ -static USBH_StatusTypeDef USBH_MSC_Process(USBH_HandleTypeDef *phost) -{ - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - USBH_StatusTypeDef error = USBH_BUSY; - USBH_StatusTypeDef scsi_status = USBH_BUSY; - USBH_StatusTypeDef ready_status = USBH_BUSY; - - switch (MSC_Handle->state) - { - case MSC_INIT: - - if (MSC_Handle->current_lun < MSC_Handle->max_lun) - { - - MSC_Handle->unit[MSC_Handle->current_lun].error = MSC_NOT_READY; - /* Switch MSC REQ state machine */ - switch (MSC_Handle->unit[MSC_Handle->current_lun].state) - { - case MSC_INIT: - USBH_UsrLog("LUN #%d: ", MSC_Handle->current_lun); - MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_READ_INQUIRY; - MSC_Handle->timer = phost->Timer; - break; - - case MSC_READ_INQUIRY: - scsi_status = USBH_MSC_SCSI_Inquiry(phost, (uint8_t)MSC_Handle->current_lun, &MSC_Handle->unit[MSC_Handle->current_lun].inquiry); - - if (scsi_status == USBH_OK) - { - USBH_UsrLog("Inquiry Vendor : %s", MSC_Handle->unit[MSC_Handle->current_lun].inquiry.vendor_id); - USBH_UsrLog("Inquiry Product : %s", MSC_Handle->unit[MSC_Handle->current_lun].inquiry.product_id); - USBH_UsrLog("Inquiry Version : %s", MSC_Handle->unit[MSC_Handle->current_lun].inquiry.revision_id); - MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_TEST_UNIT_READY; - } - if (scsi_status == USBH_FAIL) - { - MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_REQUEST_SENSE; - } - else - { - if (scsi_status == USBH_UNRECOVERED_ERROR) - { - MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_IDLE; - MSC_Handle->unit[MSC_Handle->current_lun].error = MSC_ERROR; - } - } - break; - - case MSC_TEST_UNIT_READY: - ready_status = USBH_MSC_SCSI_TestUnitReady(phost, (uint8_t)MSC_Handle->current_lun); - - if (ready_status == USBH_OK) - { - if (MSC_Handle->unit[MSC_Handle->current_lun].prev_ready_state != USBH_OK) - { - MSC_Handle->unit[MSC_Handle->current_lun].state_changed = 1U; - USBH_UsrLog("MSC Device ready"); - } - else - { - MSC_Handle->unit[MSC_Handle->current_lun].state_changed = 0U; - } - MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_READ_CAPACITY10; - MSC_Handle->unit[MSC_Handle->current_lun].error = MSC_OK; - MSC_Handle->unit[MSC_Handle->current_lun].prev_ready_state = USBH_OK; - } - if (ready_status == USBH_FAIL) - { - /* Media not ready, so try to check again during 10s */ - if (MSC_Handle->unit[MSC_Handle->current_lun].prev_ready_state != USBH_FAIL) - { - MSC_Handle->unit[MSC_Handle->current_lun].state_changed = 1U; - USBH_UsrLog("MSC Device NOT ready"); - } - else - { - MSC_Handle->unit[MSC_Handle->current_lun].state_changed = 0U; - } - MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_REQUEST_SENSE; - MSC_Handle->unit[MSC_Handle->current_lun].error = MSC_NOT_READY; - MSC_Handle->unit[MSC_Handle->current_lun].prev_ready_state = USBH_FAIL; - } - else - { - if (ready_status == USBH_UNRECOVERED_ERROR) - { - MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_IDLE; - MSC_Handle->unit[MSC_Handle->current_lun].error = MSC_ERROR; - } - } - break; - - case MSC_READ_CAPACITY10: - scsi_status = USBH_MSC_SCSI_ReadCapacity(phost, (uint8_t)MSC_Handle->current_lun, &MSC_Handle->unit[MSC_Handle->current_lun].capacity) ; - - if (scsi_status == USBH_OK) - { - if (MSC_Handle->unit[MSC_Handle->current_lun].state_changed == 1U) - { - USBH_UsrLog("MSC Device capacity : %lu Bytes", \ - (int32_t)(MSC_Handle->unit[MSC_Handle->current_lun].capacity.block_nbr * MSC_Handle->unit[MSC_Handle->current_lun].capacity.block_size)); - USBH_UsrLog("Block number : %lu", (int32_t)(MSC_Handle->unit[MSC_Handle->current_lun].capacity.block_nbr)); - USBH_UsrLog("Block Size : %lu", (int32_t)(MSC_Handle->unit[MSC_Handle->current_lun].capacity.block_size)); - } - MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_IDLE; - MSC_Handle->unit[MSC_Handle->current_lun].error = MSC_OK; - MSC_Handle->current_lun++; - } - else if (scsi_status == USBH_FAIL) - { - MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_REQUEST_SENSE; - } - else - { - if (scsi_status == USBH_UNRECOVERED_ERROR) - { - MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_IDLE; - MSC_Handle->unit[MSC_Handle->current_lun].error = MSC_ERROR; - } - } - break; - - case MSC_REQUEST_SENSE: - scsi_status = USBH_MSC_SCSI_RequestSense(phost, (uint8_t)MSC_Handle->current_lun, &MSC_Handle->unit[MSC_Handle->current_lun].sense); - - if (scsi_status == USBH_OK) - { - if ((MSC_Handle->unit[MSC_Handle->current_lun].sense.key == SCSI_SENSE_KEY_UNIT_ATTENTION) || - (MSC_Handle->unit[MSC_Handle->current_lun].sense.key == SCSI_SENSE_KEY_NOT_READY)) - { - - if ((phost->Timer - MSC_Handle->timer) < 10000U) - { - MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_TEST_UNIT_READY; - break; - } - } - - USBH_UsrLog("Sense Key : %x", MSC_Handle->unit[MSC_Handle->current_lun].sense.key); - USBH_UsrLog("Additional Sense Code : %x", MSC_Handle->unit[MSC_Handle->current_lun].sense.asc); - USBH_UsrLog("Additional Sense Code Qualifier: %x", MSC_Handle->unit[MSC_Handle->current_lun].sense.ascq); - MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_IDLE; - MSC_Handle->current_lun++; - } - if (scsi_status == USBH_FAIL) - { - USBH_UsrLog("MSC Device NOT ready"); - MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_UNRECOVERED_ERROR; - } - else - { - if (scsi_status == USBH_UNRECOVERED_ERROR) - { - MSC_Handle->unit[MSC_Handle->current_lun].state = MSC_IDLE; - MSC_Handle->unit[MSC_Handle->current_lun].error = MSC_ERROR; - } - } - break; - - case MSC_UNRECOVERED_ERROR: - MSC_Handle->current_lun++; - break; - - default: - break; - } - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CLASS_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else - { - MSC_Handle->current_lun = 0U; - MSC_Handle->state = MSC_IDLE; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CLASS_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - phost->pUser(phost, HOST_USER_CLASS_ACTIVE); - } - break; - - case MSC_IDLE: - error = USBH_OK; - break; - - default: - break; - } - return error; -} - - -/** - * @brief USBH_MSC_SOFProcess - * The function is for SOF state - * @param phost: Host handle - * @retval USBH Status - */ -static USBH_StatusTypeDef USBH_MSC_SOFProcess(USBH_HandleTypeDef *phost) -{ - /* Prevent unused argument(s) compilation warning */ - UNUSED(phost); - - return USBH_OK; -} -/** - * @brief USBH_MSC_RdWrProcess - * The function is for managing state machine for MSC I/O Process - * @param phost: Host handle - * @param lun: logical Unit Number - * @retval USBH Status - */ -static USBH_StatusTypeDef USBH_MSC_RdWrProcess(USBH_HandleTypeDef *phost, uint8_t lun) -{ - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - USBH_StatusTypeDef error = USBH_BUSY ; - USBH_StatusTypeDef scsi_status = USBH_BUSY ; - - /* Switch MSC REQ state machine */ - switch (MSC_Handle->unit[lun].state) - { - - case MSC_READ: - scsi_status = USBH_MSC_SCSI_Read(phost, lun, 0U, NULL, 0U); - - if (scsi_status == USBH_OK) - { - MSC_Handle->unit[lun].state = MSC_IDLE; - error = USBH_OK; - } - else if (scsi_status == USBH_FAIL) - { - MSC_Handle->unit[lun].state = MSC_REQUEST_SENSE; - } - else - { - if (scsi_status == USBH_UNRECOVERED_ERROR) - { - MSC_Handle->unit[lun].state = MSC_UNRECOVERED_ERROR; - error = USBH_FAIL; - } - } - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CLASS_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - break; - - case MSC_WRITE: - scsi_status = USBH_MSC_SCSI_Write(phost, lun, 0U, NULL, 0U); - - if (scsi_status == USBH_OK) - { - MSC_Handle->unit[lun].state = MSC_IDLE; - error = USBH_OK; - } - else if (scsi_status == USBH_FAIL) - { - MSC_Handle->unit[lun].state = MSC_REQUEST_SENSE; - } - else - { - if (scsi_status == USBH_UNRECOVERED_ERROR) - { - MSC_Handle->unit[lun].state = MSC_UNRECOVERED_ERROR; - error = USBH_FAIL; - } - } - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CLASS_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - break; - - case MSC_REQUEST_SENSE: - scsi_status = USBH_MSC_SCSI_RequestSense(phost, lun, &MSC_Handle->unit[lun].sense); - - if (scsi_status == USBH_OK) - { - USBH_UsrLog("Sense Key : %x", MSC_Handle->unit[lun].sense.key); - USBH_UsrLog("Additional Sense Code : %x", MSC_Handle->unit[lun].sense.asc); - USBH_UsrLog("Additional Sense Code Qualifier: %x", MSC_Handle->unit[lun].sense.ascq); - MSC_Handle->unit[lun].state = MSC_IDLE; - MSC_Handle->unit[lun].error = MSC_ERROR; - - error = USBH_FAIL; - } - if (scsi_status == USBH_FAIL) - { - USBH_UsrLog("MSC Device NOT ready"); - } - else - { - if (scsi_status == USBH_UNRECOVERED_ERROR) - { - MSC_Handle->unit[lun].state = MSC_UNRECOVERED_ERROR; - error = USBH_FAIL; - } - } - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_CLASS_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - break; - - default: - break; - - } - return error; -} - -/** - * @brief USBH_MSC_IsReady - * The function check if the MSC function is ready - * @param phost: Host handle - * @retval USBH Status - */ -uint8_t USBH_MSC_IsReady(USBH_HandleTypeDef *phost) -{ - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - uint8_t res; - - if ((phost->gState == HOST_CLASS) && (MSC_Handle->state == MSC_IDLE)) - { - res = 1U; - } - else - { - res = 0U; - } - - return res; -} - -/** - * @brief USBH_MSC_GetMaxLUN - * The function return the Max LUN supported - * @param phost: Host handle - * @retval logical Unit Number supported - */ -uint8_t USBH_MSC_GetMaxLUN(USBH_HandleTypeDef *phost) -{ - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - - if ((phost->gState == HOST_CLASS) && (MSC_Handle->state == MSC_IDLE)) - { - return (uint8_t)MSC_Handle->max_lun; - } - - return 0xFFU; -} - -/** - * @brief USBH_MSC_UnitIsReady - * The function check whether a LUN is ready - * @param phost: Host handle - * @param lun: logical Unit Number - * @retval Lun status (0: not ready / 1: ready) - */ -uint8_t USBH_MSC_UnitIsReady(USBH_HandleTypeDef *phost, uint8_t lun) -{ - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - uint8_t res; - - if ((phost->gState == HOST_CLASS) && (MSC_Handle->unit[lun].error == MSC_OK)) - { - res = 1U; - } - else - { - res = 0U; - } - - return res; -} - -/** - * @brief USBH_MSC_GetLUNInfo - * The function return a LUN information - * @param phost: Host handle - * @param lun: logical Unit Number - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_MSC_GetLUNInfo(USBH_HandleTypeDef *phost, uint8_t lun, MSC_LUNTypeDef *info) -{ - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - if (phost->gState == HOST_CLASS) - { - USBH_memcpy(info, &MSC_Handle->unit[lun], sizeof(MSC_LUNTypeDef)); - return USBH_OK; - } - else - { - return USBH_FAIL; - } -} - -/** - * @brief USBH_MSC_Read - * The function performs a Read operation - * @param phost: Host handle - * @param lun: logical Unit Number - * @param address: sector address - * @param pbuf: pointer to data - * @param length: number of sector to read - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_MSC_Read(USBH_HandleTypeDef *phost, - uint8_t lun, - uint32_t address, - uint8_t *pbuf, - uint32_t length) -{ - uint32_t timeout; - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - - if ((phost->device.is_connected == 0U) || - (phost->gState != HOST_CLASS) || - (MSC_Handle->unit[lun].state != MSC_IDLE)) - { - return USBH_FAIL; - } - - MSC_Handle->state = MSC_READ; - MSC_Handle->unit[lun].state = MSC_READ; - MSC_Handle->rw_lun = lun; - - USBH_MSC_SCSI_Read(phost, lun, address, pbuf, length); - - timeout = phost->Timer; - - while (USBH_MSC_RdWrProcess(phost, lun) == USBH_BUSY) - { - if (((phost->Timer - timeout) > (10000U * length)) || (phost->device.is_connected == 0U)) - { - MSC_Handle->state = MSC_IDLE; - return USBH_FAIL; - } - } - MSC_Handle->state = MSC_IDLE; - - return USBH_OK; -} - -/** - * @brief USBH_MSC_Write - * The function performs a Write operation - * @param phost: Host handle - * @param lun: logical Unit Number - * @param address: sector address - * @param pbuf: pointer to data - * @param length: number of sector to write - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_MSC_Write(USBH_HandleTypeDef *phost, - uint8_t lun, - uint32_t address, - uint8_t *pbuf, - uint32_t length) -{ - uint32_t timeout; - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - - if ((phost->device.is_connected == 0U) || - (phost->gState != HOST_CLASS) || - (MSC_Handle->unit[lun].state != MSC_IDLE)) - { - return USBH_FAIL; - } - - MSC_Handle->state = MSC_WRITE; - MSC_Handle->unit[lun].state = MSC_WRITE; - MSC_Handle->rw_lun = lun; - - USBH_MSC_SCSI_Write(phost, lun, address, pbuf, length); - - timeout = phost->Timer; - while (USBH_MSC_RdWrProcess(phost, lun) == USBH_BUSY) - { - if (((phost->Timer - timeout) > (10000U * length)) || (phost->device.is_connected == 0U)) - { - MSC_Handle->state = MSC_IDLE; - return USBH_FAIL; - } - } - MSC_Handle->state = MSC_IDLE; - return USBH_OK; -} - -/** - * @} - */ - -/** - * @} - */ - -/** - * @} - */ - -/** - * @} - */ - -/** - * @} - */ - -/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc.h b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc.h deleted file mode 100644 index d452582369..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc.h +++ /dev/null @@ -1,216 +0,0 @@ -/** - ****************************************************************************** - * @file usbh_msc.h - * @author MCD Application Team - * @brief This file contains all the prototypes for the usbh_msc.c - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2015 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under Ultimate Liberty license - * SLA0044, the "License"; You may not use this file except in compliance with - * the License. You may obtain a copy of the License at: - * www.st.com/SLA0044 - * - ****************************************************************************** - */ - -/* Define to prevent recursive ----------------------------------------------*/ -#ifndef __USBH_MSC_H -#define __USBH_MSC_H - -#ifdef __cplusplus -extern "C" { -#endif - -/* Includes ------------------------------------------------------------------*/ -#include "usbh_core.h" -#include "usbh_msc_bot.h" -#include "usbh_msc_scsi.h" - -/** @addtogroup USBH_LIB - * @{ - */ - -/** @addtogroup USBH_CLASS - * @{ - */ - -/** @addtogroup USBH_MSC_CLASS - * @{ - */ - -/** @defgroup USBH_MSC_CORE - * @brief This file is the Header file for usbh_msc.c - * @{ - */ - - -/** @defgroup USBH_MSC_CORE_Exported_Types - * @{ - */ - -typedef enum -{ - MSC_INIT = 0, - MSC_IDLE, - MSC_TEST_UNIT_READY, - MSC_READ_CAPACITY10, - MSC_READ_INQUIRY, - MSC_REQUEST_SENSE, - MSC_READ, - MSC_WRITE, - MSC_UNRECOVERED_ERROR, - MSC_PERIODIC_CHECK, -} -MSC_StateTypeDef; - -typedef enum -{ - MSC_OK, - MSC_NOT_READY, - MSC_ERROR, - -} -MSC_ErrorTypeDef; - -typedef enum -{ - MSC_REQ_IDLE = 0, - MSC_REQ_RESET, - MSC_REQ_GET_MAX_LUN, - MSC_REQ_ERROR, -} -MSC_ReqStateTypeDef; - -#ifndef MAX_SUPPORTED_LUN -#define MAX_SUPPORTED_LUN 2U -#endif - - -/* Structure for LUN */ -typedef struct -{ - MSC_StateTypeDef state; - MSC_ErrorTypeDef error; - USBH_StatusTypeDef prev_ready_state; - SCSI_CapacityTypeDef capacity; - SCSI_SenseTypeDef sense; - SCSI_StdInquiryDataTypeDef inquiry; - uint8_t state_changed; - -} -MSC_LUNTypeDef; - -/* Structure for MSC process */ -typedef struct _MSC_Process -{ - uint8_t max_lun; - uint8_t Reserved[3]; - uint8_t InPipe; - uint8_t OutPipe; - uint8_t OutEp; - uint8_t InEp; - uint16_t OutEpSize; - uint16_t InEpSize; - MSC_StateTypeDef state; - MSC_ErrorTypeDef error; - MSC_ReqStateTypeDef req_state; - MSC_ReqStateTypeDef prev_req_state; - BOT_HandleTypeDef hbot; - MSC_LUNTypeDef unit[MAX_SUPPORTED_LUN]; - uint16_t current_lun; - uint16_t rw_lun; - uint32_t timer; -} -MSC_HandleTypeDef; - - -/** - * @} - */ - - - -/** @defgroup USBH_MSC_CORE_Exported_Defines - * @{ - */ - -#define USB_REQ_BOT_RESET 0xFFU -#define USB_REQ_GET_MAX_LUN 0xFEU - - -/* MSC Class Codes */ -#define USB_MSC_CLASS 0x08U - -/* Interface Descriptor field values for HID Boot Protocol */ -#define MSC_BOT 0x50U -#define MSC_TRANSPARENT 0x06U -/** - * @} - */ - -/** @defgroup USBH_MSC_CORE_Exported_Macros - * @{ - */ -/** - * @} - */ - -/** @defgroup USBH_MSC_CORE_Exported_Variables - * @{ - */ -extern USBH_ClassTypeDef USBH_msc; -#define USBH_MSC_CLASS &USBH_msc - -/** - * @} - */ - -/** @defgroup USBH_MSC_CORE_Exported_FunctionsPrototype - * @{ - */ -uint8_t USBH_MSC_IsReady(USBH_HandleTypeDef *phost); -uint8_t USBH_MSC_GetMaxLUN(USBH_HandleTypeDef *phost); -uint8_t USBH_MSC_UnitIsReady(USBH_HandleTypeDef *phost, uint8_t lun); - -USBH_StatusTypeDef USBH_MSC_GetLUNInfo(USBH_HandleTypeDef *phost, uint8_t lun, - MSC_LUNTypeDef *info); - -USBH_StatusTypeDef USBH_MSC_Read(USBH_HandleTypeDef *phost, uint8_t lun, - uint32_t address, uint8_t *pbuf, uint32_t length); - -USBH_StatusTypeDef USBH_MSC_Write(USBH_HandleTypeDef *phost, uint8_t lun, - uint32_t address, uint8_t *pbuf, uint32_t length); -/** - * @} - */ - -#ifdef __cplusplus -} -#endif - -#endif /* __USBH_MSC_H */ - - -/** - * @} - */ - -/** - * @} - */ - -/** - * @} - */ - -/** - * @} - */ -/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ - - - diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_bot.c b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_bot.c deleted file mode 100644 index 7f2026d175..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_bot.c +++ /dev/null @@ -1,700 +0,0 @@ -/** - ****************************************************************************** - * @file usbh_msc_bot.c - * @author MCD Application Team - * @brief This file includes the BOT protocol related functions - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2015 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under Ultimate Liberty license - * SLA0044, the "License"; You may not use this file except in compliance with - * the License. You may obtain a copy of the License at: - * www.st.com/SLA0044 - * - ****************************************************************************** - */ - -/* BSPDependencies -- "stm32xxxxx_{eval}{discovery}{nucleo_144}.c" -- "stm32xxxxx_{eval}{discovery}_io.c" -- "stm32xxxxx_{eval}{discovery}{adafruit}_lcd.c" -- "stm32xxxxx_{eval}{discovery}_sdram.c" -EndBSPDependencies */ - -/* Includes ------------------------------------------------------------------*/ -#include "usbh_msc_bot.h" -#include "usbh_msc.h" - -/** @addtogroup USBH_LIB -* @{ -*/ - -/** @addtogroup USBH_CLASS -* @{ -*/ - -/** @addtogroup USBH_MSC_CLASS -* @{ -*/ - -/** @defgroup USBH_MSC_BOT -* @brief This file includes the mass storage related functions -* @{ -*/ - - -/** @defgroup USBH_MSC_BOT_Private_TypesDefinitions -* @{ -*/ -/** -* @} -*/ - -/** @defgroup USBH_MSC_BOT_Private_Defines -* @{ -*/ -/** -* @} -*/ - -/** @defgroup USBH_MSC_BOT_Private_Macros -* @{ -*/ -/** -* @} -*/ - - -/** @defgroup USBH_MSC_BOT_Private_Variables -* @{ -*/ - -/** -* @} -*/ - - -/** @defgroup USBH_MSC_BOT_Private_FunctionPrototypes -* @{ -*/ -static USBH_StatusTypeDef USBH_MSC_BOT_Abort(USBH_HandleTypeDef *phost, uint8_t lun, uint8_t dir); -static BOT_CSWStatusTypeDef USBH_MSC_DecodeCSW(USBH_HandleTypeDef *phost); -/** -* @} -*/ - - -/** @defgroup USBH_MSC_BOT_Exported_Variables -* @{ -*/ -/** -* @} -*/ - - -/** @defgroup USBH_MSC_BOT_Private_Functions -* @{ -*/ - -/** - * @brief USBH_MSC_BOT_REQ_Reset - * The function the MSC BOT Reset request. - * @param phost: Host handle - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_MSC_BOT_REQ_Reset(USBH_HandleTypeDef *phost) -{ - - phost->Control.setup.b.bmRequestType = USB_H2D | USB_REQ_TYPE_CLASS - | USB_REQ_RECIPIENT_INTERFACE; - - phost->Control.setup.b.bRequest = USB_REQ_BOT_RESET; - phost->Control.setup.b.wValue.w = 0U; - phost->Control.setup.b.wIndex.w = 0U; - phost->Control.setup.b.wLength.w = 0U; - - return USBH_CtlReq(phost, 0U, 0U); -} - -/** - * @brief USBH_MSC_BOT_REQ_GetMaxLUN - * The function the MSC BOT GetMaxLUN request. - * @param phost: Host handle - * @param Maxlun: pointer to Maxlun variable - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_MSC_BOT_REQ_GetMaxLUN(USBH_HandleTypeDef *phost, uint8_t *Maxlun) -{ - phost->Control.setup.b.bmRequestType = USB_D2H | USB_REQ_TYPE_CLASS - | USB_REQ_RECIPIENT_INTERFACE; - - phost->Control.setup.b.bRequest = USB_REQ_GET_MAX_LUN; - phost->Control.setup.b.wValue.w = 0U; - phost->Control.setup.b.wIndex.w = 0U; - phost->Control.setup.b.wLength.w = 1U; - - return USBH_CtlReq(phost, Maxlun, 1U); -} - - - -/** - * @brief USBH_MSC_BOT_Init - * The function Initializes the BOT protocol. - * @param phost: Host handle - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_MSC_BOT_Init(USBH_HandleTypeDef *phost) -{ - - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - - MSC_Handle->hbot.cbw.field.Signature = BOT_CBW_SIGNATURE; - MSC_Handle->hbot.cbw.field.Tag = BOT_CBW_TAG; - MSC_Handle->hbot.state = BOT_SEND_CBW; - MSC_Handle->hbot.cmd_state = BOT_CMD_SEND; - - return USBH_OK; -} - - - -/** - * @brief USBH_MSC_BOT_Process - * The function handle the BOT protocol. - * @param phost: Host handle - * @param lun: Logical Unit Number - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_MSC_BOT_Process(USBH_HandleTypeDef *phost, uint8_t lun) -{ - USBH_StatusTypeDef status = USBH_BUSY; - USBH_StatusTypeDef error = USBH_BUSY; - BOT_CSWStatusTypeDef CSW_Status = BOT_CSW_CMD_FAILED; - USBH_URBStateTypeDef URB_Status = USBH_URB_IDLE; - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - uint8_t toggle = 0U; - - switch (MSC_Handle->hbot.state) - { - case BOT_SEND_CBW: - MSC_Handle->hbot.cbw.field.LUN = lun; - MSC_Handle->hbot.state = BOT_SEND_CBW_WAIT; - USBH_BulkSendData(phost, MSC_Handle->hbot.cbw.data, - BOT_CBW_LENGTH, MSC_Handle->OutPipe, 1U); - - break; - - case BOT_SEND_CBW_WAIT: - - URB_Status = USBH_LL_GetURBState(phost, MSC_Handle->OutPipe); - - if (URB_Status == USBH_URB_DONE) - { - if (MSC_Handle->hbot.cbw.field.DataTransferLength != 0U) - { - /* If there is Data Transfer Stage */ - if (((MSC_Handle->hbot.cbw.field.Flags) & USB_REQ_DIR_MASK) == USB_D2H) - { - /* Data Direction is IN */ - MSC_Handle->hbot.state = BOT_DATA_IN; - } - else - { - /* Data Direction is OUT */ - MSC_Handle->hbot.state = BOT_DATA_OUT; - } - } - - else - { - /* If there is NO Data Transfer Stage */ - MSC_Handle->hbot.state = BOT_RECEIVE_CSW; - } - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_URB_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else if (URB_Status == USBH_URB_NOTREADY) - { - /* Re-send CBW */ - MSC_Handle->hbot.state = BOT_SEND_CBW; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_URB_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else - { - if (URB_Status == USBH_URB_STALL) - { - MSC_Handle->hbot.state = BOT_ERROR_OUT; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_URB_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - } - break; - - case BOT_DATA_IN: - /* Send first packet */ - USBH_BulkReceiveData(phost, MSC_Handle->hbot.pbuf, - MSC_Handle->InEpSize, MSC_Handle->InPipe); - - MSC_Handle->hbot.state = BOT_DATA_IN_WAIT; - - break; - - case BOT_DATA_IN_WAIT: - - URB_Status = USBH_LL_GetURBState(phost, MSC_Handle->InPipe); - - if (URB_Status == USBH_URB_DONE) - { - /* Adjust Data pointer and data length */ - if (MSC_Handle->hbot.cbw.field.DataTransferLength > MSC_Handle->InEpSize) - { - MSC_Handle->hbot.pbuf += MSC_Handle->InEpSize; - MSC_Handle->hbot.cbw.field.DataTransferLength -= MSC_Handle->InEpSize; - } - else - { - MSC_Handle->hbot.cbw.field.DataTransferLength = 0U; - } - - /* More Data To be Received */ - if (MSC_Handle->hbot.cbw.field.DataTransferLength > 0U) - { - /* Send next packet */ - USBH_BulkReceiveData(phost, MSC_Handle->hbot.pbuf, - MSC_Handle->InEpSize, MSC_Handle->InPipe); - } - else - { - /* If value was 0, and successful transfer, then change the state */ - MSC_Handle->hbot.state = BOT_RECEIVE_CSW; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_URB_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - } - else if (URB_Status == USBH_URB_STALL) - { - /* This is Data IN Stage STALL Condition */ - MSC_Handle->hbot.state = BOT_ERROR_IN; - - /* Refer to USB Mass-Storage Class : BOT (www.usb.org) - 6.7.2 Host expects to receive data from the device - 3. On a STALL condition receiving data, then: - The host shall accept the data received. - The host shall clear the Bulk-In pipe. - 4. The host shall attempt to receive a CSW.*/ - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_URB_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else - { - } - break; - - case BOT_DATA_OUT: - - USBH_BulkSendData(phost, MSC_Handle->hbot.pbuf, - MSC_Handle->OutEpSize, MSC_Handle->OutPipe, 1U); - - MSC_Handle->hbot.state = BOT_DATA_OUT_WAIT; - break; - - case BOT_DATA_OUT_WAIT: - URB_Status = USBH_LL_GetURBState(phost, MSC_Handle->OutPipe); - - if (URB_Status == USBH_URB_DONE) - { - /* Adjust Data pointer and data length */ - if (MSC_Handle->hbot.cbw.field.DataTransferLength > MSC_Handle->OutEpSize) - { - MSC_Handle->hbot.pbuf += MSC_Handle->OutEpSize; - MSC_Handle->hbot.cbw.field.DataTransferLength -= MSC_Handle->OutEpSize; - } - else - { - MSC_Handle->hbot.cbw.field.DataTransferLength = 0U; - } - - /* More Data To be Sent */ - if (MSC_Handle->hbot.cbw.field.DataTransferLength > 0U) - { - USBH_BulkSendData(phost, MSC_Handle->hbot.pbuf, - MSC_Handle->OutEpSize, MSC_Handle->OutPipe, 1U); - } - else - { - /* If value was 0, and successful transfer, then change the state */ - MSC_Handle->hbot.state = BOT_RECEIVE_CSW; - } - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_URB_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - - else if (URB_Status == USBH_URB_NOTREADY) - { - /* Resend same data */ - MSC_Handle->hbot.state = BOT_DATA_OUT; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_URB_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - - else if (URB_Status == USBH_URB_STALL) - { - MSC_Handle->hbot.state = BOT_ERROR_OUT; - - /* Refer to USB Mass-Storage Class : BOT (www.usb.org) - 6.7.3 Ho - Host expects to send data to the device - 3. On a STALL condition sending data, then: - " The host shall clear the Bulk-Out pipe. - 4. The host shall attempt to receive a CSW. - */ - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_URB_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else - { - } - break; - - case BOT_RECEIVE_CSW: - - USBH_BulkReceiveData(phost, MSC_Handle->hbot.csw.data, - BOT_CSW_LENGTH, MSC_Handle->InPipe); - - MSC_Handle->hbot.state = BOT_RECEIVE_CSW_WAIT; - break; - - case BOT_RECEIVE_CSW_WAIT: - - URB_Status = USBH_LL_GetURBState(phost, MSC_Handle->InPipe); - - /* Decode CSW */ - if (URB_Status == USBH_URB_DONE) - { - MSC_Handle->hbot.state = BOT_SEND_CBW; - MSC_Handle->hbot.cmd_state = BOT_CMD_SEND; - CSW_Status = USBH_MSC_DecodeCSW(phost); - - if (CSW_Status == BOT_CSW_CMD_PASSED) - { - status = USBH_OK; - } - else - { - status = USBH_FAIL; - } - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_URB_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else if (URB_Status == USBH_URB_STALL) - { - MSC_Handle->hbot.state = BOT_ERROR_IN; - -#if (USBH_USE_OS == 1U) - phost->os_msg = (uint32_t)USBH_URB_EVENT; -#if (osCMSIS < 0x20000U) - (void)osMessagePut(phost->os_event, phost->os_msg, 0U); -#else - (void)osMessageQueuePut(phost->os_event, &phost->os_msg, 0U, NULL); -#endif -#endif - } - else - { - } - break; - - case BOT_ERROR_IN: - error = USBH_MSC_BOT_Abort(phost, lun, BOT_DIR_IN); - - if (error == USBH_OK) - { - MSC_Handle->hbot.state = BOT_RECEIVE_CSW; - } - else if (error == USBH_UNRECOVERED_ERROR) - { - /* This means that there is a STALL Error limit, Do Reset Recovery */ - MSC_Handle->hbot.state = BOT_UNRECOVERED_ERROR; - } - else - { - } - break; - - case BOT_ERROR_OUT: - error = USBH_MSC_BOT_Abort(phost, lun, BOT_DIR_OUT); - - if (error == USBH_OK) - { - - toggle = USBH_LL_GetToggle(phost, MSC_Handle->OutPipe); - USBH_LL_SetToggle(phost, MSC_Handle->OutPipe, 1U - toggle); - USBH_LL_SetToggle(phost, MSC_Handle->InPipe, 0U); - MSC_Handle->hbot.state = BOT_ERROR_IN; - } - else - { - if (error == USBH_UNRECOVERED_ERROR) - { - MSC_Handle->hbot.state = BOT_UNRECOVERED_ERROR; - } - } - break; - - - case BOT_UNRECOVERED_ERROR: - status = USBH_MSC_BOT_REQ_Reset(phost); - if (status == USBH_OK) - { - MSC_Handle->hbot.state = BOT_SEND_CBW; - } - break; - - default: - break; - } - return status; -} - -/** - * @brief USBH_MSC_BOT_Abort - * The function handle the BOT Abort process. - * @param phost: Host handle - * @param lun: Logical Unit Number - * @param dir: direction (0: out / 1 : in) - * @retval USBH Status - */ -static USBH_StatusTypeDef USBH_MSC_BOT_Abort(USBH_HandleTypeDef *phost, uint8_t lun, uint8_t dir) -{ - /* Prevent unused argument(s) compilation warning */ - UNUSED(lun); - - USBH_StatusTypeDef status = USBH_FAIL; - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - - switch (dir) - { - case BOT_DIR_IN : - /* send ClrFeture on Bulk IN endpoint */ - status = USBH_ClrFeature(phost, MSC_Handle->InEp); - - break; - - case BOT_DIR_OUT : - /*send ClrFeature on Bulk OUT endpoint */ - status = USBH_ClrFeature(phost, MSC_Handle->OutEp); - break; - - default: - break; - } - return status; -} - -/** - * @brief USBH_MSC_BOT_DecodeCSW - * This function decodes the CSW received by the device and updates the - * same to upper layer. - * @param phost: Host handle - * @retval USBH Status - * @notes - * Refer to USB Mass-Storage Class : BOT (www.usb.org) - * 6.3.1 Valid CSW Conditions : - * The host shall consider the CSW valid when: - * 1. dCSWSignature is equal to 53425355h - * 2. the CSW is 13 (Dh) bytes in length, - * 3. dCSWTag matches the dCBWTag from the corresponding CBW. - */ - -static BOT_CSWStatusTypeDef USBH_MSC_DecodeCSW(USBH_HandleTypeDef *phost) -{ - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - BOT_CSWStatusTypeDef status = BOT_CSW_CMD_FAILED; - - /*Checking if the transfer length is different than 13*/ - if (USBH_LL_GetLastXferSize(phost, MSC_Handle->InPipe) != BOT_CSW_LENGTH) - { - /*(4) Hi > Dn (Host expects to receive data from the device, - Device intends to transfer no data) - (5) Hi > Di (Host expects to receive data from the device, - Device intends to send data to the host) - (9) Ho > Dn (Host expects to send data to the device, - Device intends to transfer no data) - (11) Ho > Do (Host expects to send data to the device, - Device intends to receive data from the host)*/ - - - status = BOT_CSW_PHASE_ERROR; - } - else - { - /* CSW length is Correct */ - - /* Check validity of the CSW Signature and CSWStatus */ - if (MSC_Handle->hbot.csw.field.Signature == BOT_CSW_SIGNATURE) - { - /* Check Condition 1. dCSWSignature is equal to 53425355h */ - - if (MSC_Handle->hbot.csw.field.Tag == MSC_Handle->hbot.cbw.field.Tag) - { - /* Check Condition 3. dCSWTag matches the dCBWTag from the - corresponding CBW */ - - if (MSC_Handle->hbot.csw.field.Status == 0U) - { - /* Refer to USB Mass-Storage Class : BOT (www.usb.org) - - Hn Host expects no data transfers - Hi Host expects to receive data from the device - Ho Host expects to send data to the device - - Dn Device intends to transfer no data - Di Device intends to send data to the host - Do Device intends to receive data from the host - - Section 6.7 - (1) Hn = Dn (Host expects no data transfers, - Device intends to transfer no data) - (6) Hi = Di (Host expects to receive data from the device, - Device intends to send data to the host) - (12) Ho = Do (Host expects to send data to the device, - Device intends to receive data from the host) - - */ - - status = BOT_CSW_CMD_PASSED; - } - else if (MSC_Handle->hbot.csw.field.Status == 1U) - { - status = BOT_CSW_CMD_FAILED; - } - - else if (MSC_Handle->hbot.csw.field.Status == 2U) - { - /* Refer to USB Mass-Storage Class : BOT (www.usb.org) - Section 6.7 - (2) Hn < Di ( Host expects no data transfers, - Device intends to send data to the host) - (3) Hn < Do ( Host expects no data transfers, - Device intends to receive data from the host) - (7) Hi < Di ( Host expects to receive data from the device, - Device intends to send data to the host) - (8) Hi <> Do ( Host expects to receive data from the device, - Device intends to receive data from the host) - (10) Ho <> Di (Host expects to send data to the device, - Di Device intends to send data to the host) - (13) Ho < Do (Host expects to send data to the device, - Device intends to receive data from the host) - */ - - status = BOT_CSW_PHASE_ERROR; - } - else - { - } - } /* CSW Tag Matching is Checked */ - } /* CSW Signature Correct Checking */ - else - { - /* If the CSW Signature is not valid, We sall return the Phase Error to - Upper Layers for Reset Recovery */ - - status = BOT_CSW_PHASE_ERROR; - } - } /* CSW Length Check*/ - - return status; -} - - -/** -* @} -*/ - -/** -* @} -*/ - -/** -* @} -*/ - -/** -* @} -*/ - -/** -* @} -*/ - -/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ - - - diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_bot.h b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_bot.h deleted file mode 100644 index 2de31f65dc..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_bot.h +++ /dev/null @@ -1,232 +0,0 @@ -/** - ****************************************************************************** - * @file usbh_msc_bot.h - * @author MCD Application Team - * @brief Header file for usbh_msc_bot.c - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2015 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under Ultimate Liberty license - * SLA0044, the "License"; You may not use this file except in compliance with - * the License. You may obtain a copy of the License at: - * www.st.com/SLA0044 - * - ****************************************************************************** - */ - -/* Define to prevent recursive ----------------------------------------------*/ -#ifndef __USBH_MSC_BOT_H -#define __USBH_MSC_BOT_H - -#ifdef __cplusplus -extern "C" { -#endif - -/* Includes ------------------------------------------------------------------*/ -#include "usbh_core.h" - -/** @addtogroup USBH_LIB - * @{ - */ - -/** @addtogroup USBH_CLASS - * @{ - */ - -/** @addtogroup USBH_MSC_CLASS - * @{ - */ - -/** @defgroup USBH_MSC_BOT - * @brief This file is the Header file for usbh_msc_bot.c - * @{ - */ - - -/** @defgroup USBH_MSC_BOT_Exported_Types - * @{ - */ - -typedef enum -{ - BOT_OK = 0, - BOT_FAIL = 1, - BOT_PHASE_ERROR = 2, - BOT_BUSY = 3 -} -BOT_StatusTypeDef; - -typedef enum -{ - BOT_CMD_IDLE = 0, - BOT_CMD_SEND, - BOT_CMD_WAIT, -} -BOT_CMDStateTypeDef; - -/* CSW Status Definitions */ -typedef enum -{ - - BOT_CSW_CMD_PASSED = 0x00, - BOT_CSW_CMD_FAILED = 0x01, - BOT_CSW_PHASE_ERROR = 0x02, -} -BOT_CSWStatusTypeDef; - -typedef enum -{ - BOT_SEND_CBW = 1, - BOT_SEND_CBW_WAIT, - BOT_DATA_IN, - BOT_DATA_IN_WAIT, - BOT_DATA_OUT, - BOT_DATA_OUT_WAIT, - BOT_RECEIVE_CSW, - BOT_RECEIVE_CSW_WAIT, - BOT_ERROR_IN, - BOT_ERROR_OUT, - BOT_UNRECOVERED_ERROR -} -BOT_StateTypeDef; - -typedef union -{ - struct __CBW - { - uint32_t Signature; - uint32_t Tag; - uint32_t DataTransferLength; - uint8_t Flags; - uint8_t LUN; - uint8_t CBLength; - uint8_t CB[16]; - } field; - uint8_t data[31]; -} -BOT_CBWTypeDef; - -typedef union -{ - struct __CSW - { - uint32_t Signature; - uint32_t Tag; - uint32_t DataResidue; - uint8_t Status; - } field; - uint8_t data[13]; -} -BOT_CSWTypeDef; - -typedef struct -{ - uint32_t data[16]; - BOT_StateTypeDef state; - BOT_StateTypeDef prev_state; - BOT_CMDStateTypeDef cmd_state; - BOT_CBWTypeDef cbw; - uint8_t Reserved1; - BOT_CSWTypeDef csw; - uint8_t Reserved2[3]; - uint8_t *pbuf; -} -BOT_HandleTypeDef; - -/** - * @} - */ - - - -/** @defgroup USBH_MSC_BOT_Exported_Defines - * @{ - */ -#define BOT_CBW_SIGNATURE 0x43425355U -#define BOT_CBW_TAG 0x20304050U -#define BOT_CSW_SIGNATURE 0x53425355U -#define BOT_CBW_LENGTH 31U -#define BOT_CSW_LENGTH 13U - - - -#define BOT_SEND_CSW_DISABLE 0U -#define BOT_SEND_CSW_ENABLE 1U - -#define BOT_DIR_IN 0U -#define BOT_DIR_OUT 1U -#define BOT_DIR_BOTH 2U - -#define BOT_PAGE_LENGTH 512U - - -#define BOT_CBW_CB_LENGTH 16U - - -#define MAX_BULK_STALL_COUNT_LIMIT 0x04U /* If STALL is seen on Bulk - Endpoint continuously, this means - that device and Host has phase error - Hence a Reset is needed */ - -/** - * @} - */ - -/** @defgroup USBH_MSC_BOT_Exported_Macros - * @{ - */ -/** - * @} - */ - -/** @defgroup USBH_MSC_BOT_Exported_Variables - * @{ - */ - -/** - * @} - */ - -/** @defgroup USBH_MSC_BOT_Exported_FunctionsPrototype - * @{ - */ -USBH_StatusTypeDef USBH_MSC_BOT_REQ_Reset(USBH_HandleTypeDef *phost); -USBH_StatusTypeDef USBH_MSC_BOT_REQ_GetMaxLUN(USBH_HandleTypeDef *phost, uint8_t *Maxlun); - -USBH_StatusTypeDef USBH_MSC_BOT_Init(USBH_HandleTypeDef *phost); -USBH_StatusTypeDef USBH_MSC_BOT_Process(USBH_HandleTypeDef *phost, uint8_t lun); -USBH_StatusTypeDef USBH_MSC_BOT_Error(USBH_HandleTypeDef *phost, uint8_t lun); - - - -/** - * @} - */ - -#ifdef __cplusplus -} -#endif - -#endif /* __USBH_MSC_BOT_H__ */ - - -/** - * @} - */ - -/** - * @} - */ - -/** - * @} - */ - -/** - * @} - */ -/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ - diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_scsi.c b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_scsi.c deleted file mode 100644 index 20612f69f2..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_scsi.c +++ /dev/null @@ -1,466 +0,0 @@ -/** - ****************************************************************************** - * @file usbh_msc_scsi.c - * @author MCD Application Team - * @brief This file implements the SCSI commands - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2015 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under Ultimate Liberty license - * SLA0044, the "License"; You may not use this file except in compliance with - * the License. You may obtain a copy of the License at: - * www.st.com/SLA0044 - * - ****************************************************************************** - */ - -/* BSPDependencies -- "stm32xxxxx_{eval}{discovery}{nucleo_144}.c" -- "stm32xxxxx_{eval}{discovery}_io.c" -- "stm32xxxxx_{eval}{discovery}{adafruit}_lcd.c" -- "stm32xxxxx_{eval}{discovery}_sdram.c" -EndBSPDependencies */ - -/* Includes ------------------------------------------------------------------*/ -#include "usbh_msc.h" -#include "usbh_msc_scsi.h" -#include "usbh_msc_bot.h" - - -/** @addtogroup USBH_LIB - * @{ - */ - -/** @addtogroup USBH_CLASS - * @{ - */ - -/** @addtogroup USBH_MSC_CLASS - * @{ - */ - -/** @defgroup USBH_MSC_SCSI - * @brief This file includes the mass storage related functions - * @{ - */ - - -/** @defgroup USBH_MSC_SCSI_Private_TypesDefinitions - * @{ - */ - -/** - * @} - */ - -/** @defgroup USBH_MSC_SCSI_Private_Defines - * @{ - */ -/** - * @} - */ - -/** @defgroup USBH_MSC_SCSI_Private_Macros - * @{ - */ -/** - * @} - */ - - -/** @defgroup USBH_MSC_SCSI_Private_FunctionPrototypes - * @{ - */ -/** - * @} - */ - - -/** @defgroup USBH_MSC_SCSI_Exported_Variables - * @{ - */ - -/** - * @} - */ - - -/** @defgroup USBH_MSC_SCSI_Private_Functions - * @{ - */ - - -/** - * @brief USBH_MSC_SCSI_TestUnitReady - * Issue TestUnitReady command. - * @param phost: Host handle - * @param lun: Logical Unit Number - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_MSC_SCSI_TestUnitReady(USBH_HandleTypeDef *phost, - uint8_t lun) -{ - USBH_StatusTypeDef error = USBH_FAIL ; - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - - switch (MSC_Handle->hbot.cmd_state) - { - case BOT_CMD_SEND: - - /*Prepare the CBW and relevent field*/ - MSC_Handle->hbot.cbw.field.DataTransferLength = DATA_LEN_MODE_TEST_UNIT_READY; - MSC_Handle->hbot.cbw.field.Flags = USB_EP_DIR_OUT; - MSC_Handle->hbot.cbw.field.CBLength = CBW_LENGTH; - - USBH_memset(MSC_Handle->hbot.cbw.field.CB, 0, CBW_CB_LENGTH); - MSC_Handle->hbot.cbw.field.CB[0] = OPCODE_TEST_UNIT_READY; - - MSC_Handle->hbot.state = BOT_SEND_CBW; - MSC_Handle->hbot.cmd_state = BOT_CMD_WAIT; - error = USBH_BUSY; - break; - - case BOT_CMD_WAIT: - error = USBH_MSC_BOT_Process(phost, lun); - break; - - default: - break; - } - - return error; -} - -/** - * @brief USBH_MSC_SCSI_ReadCapacity - * Issue Read Capacity command. - * @param phost: Host handle - * @param lun: Logical Unit Number - * @param capacity: pointer to the capacity structure - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_MSC_SCSI_ReadCapacity(USBH_HandleTypeDef *phost, - uint8_t lun, - SCSI_CapacityTypeDef *capacity) -{ - USBH_StatusTypeDef error = USBH_BUSY ; - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - - switch (MSC_Handle->hbot.cmd_state) - { - case BOT_CMD_SEND: - - /*Prepare the CBW and relevent field*/ - MSC_Handle->hbot.cbw.field.DataTransferLength = DATA_LEN_READ_CAPACITY10; - MSC_Handle->hbot.cbw.field.Flags = USB_EP_DIR_IN; - MSC_Handle->hbot.cbw.field.CBLength = CBW_LENGTH; - - USBH_memset(MSC_Handle->hbot.cbw.field.CB, 0, CBW_CB_LENGTH); - MSC_Handle->hbot.cbw.field.CB[0] = OPCODE_READ_CAPACITY10; - - MSC_Handle->hbot.state = BOT_SEND_CBW; - - MSC_Handle->hbot.cmd_state = BOT_CMD_WAIT; - MSC_Handle->hbot.pbuf = (uint8_t *)(void *)MSC_Handle->hbot.data; - error = USBH_BUSY; - break; - - case BOT_CMD_WAIT: - - error = USBH_MSC_BOT_Process(phost, lun); - - if (error == USBH_OK) - { - /*assign the capacity*/ - capacity->block_nbr = MSC_Handle->hbot.pbuf[3] | ((uint32_t)MSC_Handle->hbot.pbuf[2] << 8U) | \ - ((uint32_t)MSC_Handle->hbot.pbuf[1] << 16U) | ((uint32_t)MSC_Handle->hbot.pbuf[0] << 24U); - - /*assign the page length*/ - capacity->block_size = (uint16_t)(MSC_Handle->hbot.pbuf[7] | ((uint32_t)MSC_Handle->hbot.pbuf[6] << 8U)); - } - break; - - default: - break; - } - - return error; -} - -/** - * @brief USBH_MSC_SCSI_Inquiry - * Issue Inquiry command. - * @param phost: Host handle - * @param lun: Logical Unit Number - * @param capacity: pointer to the inquiry structure - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_MSC_SCSI_Inquiry(USBH_HandleTypeDef *phost, uint8_t lun, - SCSI_StdInquiryDataTypeDef *inquiry) -{ - USBH_StatusTypeDef error = USBH_FAIL; - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - - switch (MSC_Handle->hbot.cmd_state) - { - case BOT_CMD_SEND: - - /*Prepare the CBW and relevent field*/ - MSC_Handle->hbot.cbw.field.DataTransferLength = DATA_LEN_INQUIRY; - MSC_Handle->hbot.cbw.field.Flags = USB_EP_DIR_IN; - MSC_Handle->hbot.cbw.field.CBLength = CBW_LENGTH; - - USBH_memset(MSC_Handle->hbot.cbw.field.CB, 0, CBW_LENGTH); - MSC_Handle->hbot.cbw.field.CB[0] = OPCODE_INQUIRY; - MSC_Handle->hbot.cbw.field.CB[1] = (lun << 5); - MSC_Handle->hbot.cbw.field.CB[2] = 0U; - MSC_Handle->hbot.cbw.field.CB[3] = 0U; - MSC_Handle->hbot.cbw.field.CB[4] = 0x24U; - MSC_Handle->hbot.cbw.field.CB[5] = 0U; - - MSC_Handle->hbot.state = BOT_SEND_CBW; - - MSC_Handle->hbot.cmd_state = BOT_CMD_WAIT; - MSC_Handle->hbot.pbuf = (uint8_t *)(void *)MSC_Handle->hbot.data; - error = USBH_BUSY; - break; - - case BOT_CMD_WAIT: - - error = USBH_MSC_BOT_Process(phost, lun); - - if (error == USBH_OK) - { - USBH_memset(inquiry, 0, sizeof(SCSI_StdInquiryDataTypeDef)); - /*assign Inquiry Data */ - inquiry->DeviceType = MSC_Handle->hbot.pbuf[0] & 0x1FU; - inquiry->PeripheralQualifier = MSC_Handle->hbot.pbuf[0] >> 5U; - - if (((uint32_t)MSC_Handle->hbot.pbuf[1] & 0x80U) == 0x80U) - { - inquiry->RemovableMedia = 1U; - } - else - { - inquiry->RemovableMedia = 0U; - } - - USBH_memcpy(inquiry->vendor_id, &MSC_Handle->hbot.pbuf[8], 8U); - USBH_memcpy(inquiry->product_id, &MSC_Handle->hbot.pbuf[16], 16U); - USBH_memcpy(inquiry->revision_id, &MSC_Handle->hbot.pbuf[32], 4U); - } - break; - - default: - break; - } - - return error; -} - -/** - * @brief USBH_MSC_SCSI_RequestSense - * Issue RequestSense command. - * @param phost: Host handle - * @param lun: Logical Unit Number - * @param capacity: pointer to the sense data structure - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_MSC_SCSI_RequestSense(USBH_HandleTypeDef *phost, - uint8_t lun, - SCSI_SenseTypeDef *sense_data) -{ - USBH_StatusTypeDef error = USBH_FAIL ; - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - - switch (MSC_Handle->hbot.cmd_state) - { - case BOT_CMD_SEND: - - /*Prepare the CBW and relevent field*/ - MSC_Handle->hbot.cbw.field.DataTransferLength = DATA_LEN_REQUEST_SENSE; - MSC_Handle->hbot.cbw.field.Flags = USB_EP_DIR_IN; - MSC_Handle->hbot.cbw.field.CBLength = CBW_LENGTH; - - USBH_memset(MSC_Handle->hbot.cbw.field.CB, 0, CBW_CB_LENGTH); - MSC_Handle->hbot.cbw.field.CB[0] = OPCODE_REQUEST_SENSE; - MSC_Handle->hbot.cbw.field.CB[1] = (lun << 5); - MSC_Handle->hbot.cbw.field.CB[2] = 0U; - MSC_Handle->hbot.cbw.field.CB[3] = 0U; - MSC_Handle->hbot.cbw.field.CB[4] = DATA_LEN_REQUEST_SENSE; - MSC_Handle->hbot.cbw.field.CB[5] = 0U; - - MSC_Handle->hbot.state = BOT_SEND_CBW; - MSC_Handle->hbot.cmd_state = BOT_CMD_WAIT; - MSC_Handle->hbot.pbuf = (uint8_t *)(void *)MSC_Handle->hbot.data; - error = USBH_BUSY; - break; - - case BOT_CMD_WAIT: - - error = USBH_MSC_BOT_Process(phost, lun); - - if (error == USBH_OK) - { - sense_data->key = MSC_Handle->hbot.pbuf[2] & 0x0FU; - sense_data->asc = MSC_Handle->hbot.pbuf[12]; - sense_data->ascq = MSC_Handle->hbot.pbuf[13]; - } - break; - - default: - break; - } - - return error; -} - -/** - * @brief USBH_MSC_SCSI_Write - * Issue write10 command. - * @param phost: Host handle - * @param lun: Logical Unit Number - * @param address: sector address - * @param pbuf: pointer to data - * @param length: number of sector to write - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_MSC_SCSI_Write(USBH_HandleTypeDef *phost, - uint8_t lun, - uint32_t address, - uint8_t *pbuf, - uint32_t length) -{ - USBH_StatusTypeDef error = USBH_FAIL ; - - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - - switch (MSC_Handle->hbot.cmd_state) - { - case BOT_CMD_SEND: - - /*Prepare the CBW and relevent field*/ - MSC_Handle->hbot.cbw.field.DataTransferLength = length * MSC_Handle->unit[0].capacity.block_size; - MSC_Handle->hbot.cbw.field.Flags = USB_EP_DIR_OUT; - MSC_Handle->hbot.cbw.field.CBLength = CBW_LENGTH; - - USBH_memset(MSC_Handle->hbot.cbw.field.CB, 0, CBW_CB_LENGTH); - MSC_Handle->hbot.cbw.field.CB[0] = OPCODE_WRITE10; - - /*logical block address*/ - MSC_Handle->hbot.cbw.field.CB[2] = (((uint8_t *)(void *)&address)[3]); - MSC_Handle->hbot.cbw.field.CB[3] = (((uint8_t *)(void *)&address)[2]); - MSC_Handle->hbot.cbw.field.CB[4] = (((uint8_t *)(void *)&address)[1]); - MSC_Handle->hbot.cbw.field.CB[5] = (((uint8_t *)(void *)&address)[0]); - - - /*Transfer length */ - MSC_Handle->hbot.cbw.field.CB[7] = (((uint8_t *)(void *)&length)[1]) ; - MSC_Handle->hbot.cbw.field.CB[8] = (((uint8_t *)(void *)&length)[0]) ; - - - MSC_Handle->hbot.state = BOT_SEND_CBW; - MSC_Handle->hbot.cmd_state = BOT_CMD_WAIT; - MSC_Handle->hbot.pbuf = pbuf; - error = USBH_BUSY; - break; - - case BOT_CMD_WAIT: - error = USBH_MSC_BOT_Process(phost, lun); - break; - - default: - break; - } - - return error; -} - -/** - * @brief USBH_MSC_SCSI_Read - * Issue Read10 command. - * @param phost: Host handle - * @param lun: Logical Unit Number - * @param address: sector address - * @param pbuf: pointer to data - * @param length: number of sector to read - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_MSC_SCSI_Read(USBH_HandleTypeDef *phost, - uint8_t lun, - uint32_t address, - uint8_t *pbuf, - uint32_t length) -{ - USBH_StatusTypeDef error = USBH_FAIL ; - MSC_HandleTypeDef *MSC_Handle = (MSC_HandleTypeDef *) phost->pActiveClass->pData; - - switch (MSC_Handle->hbot.cmd_state) - { - case BOT_CMD_SEND: - - /*Prepare the CBW and relevent field*/ - MSC_Handle->hbot.cbw.field.DataTransferLength = length * MSC_Handle->unit[0].capacity.block_size; - MSC_Handle->hbot.cbw.field.Flags = USB_EP_DIR_IN; - MSC_Handle->hbot.cbw.field.CBLength = CBW_LENGTH; - - USBH_memset(MSC_Handle->hbot.cbw.field.CB, 0, CBW_CB_LENGTH); - MSC_Handle->hbot.cbw.field.CB[0] = OPCODE_READ10; - - /*logical block address*/ - MSC_Handle->hbot.cbw.field.CB[2] = (((uint8_t *)(void *)&address)[3]); - MSC_Handle->hbot.cbw.field.CB[3] = (((uint8_t *)(void *)&address)[2]); - MSC_Handle->hbot.cbw.field.CB[4] = (((uint8_t *)(void *)&address)[1]); - MSC_Handle->hbot.cbw.field.CB[5] = (((uint8_t *)(void *)&address)[0]); - - - /*Transfer length */ - MSC_Handle->hbot.cbw.field.CB[7] = (((uint8_t *)(void *)&length)[1]) ; - MSC_Handle->hbot.cbw.field.CB[8] = (((uint8_t *)(void *)&length)[0]) ; - - - MSC_Handle->hbot.state = BOT_SEND_CBW; - MSC_Handle->hbot.cmd_state = BOT_CMD_WAIT; - MSC_Handle->hbot.pbuf = pbuf; - error = USBH_BUSY; - break; - - case BOT_CMD_WAIT: - error = USBH_MSC_BOT_Process(phost, lun); - break; - - default: - break; - } - - return error; -} - - -/** - * @} - */ - -/** - * @} - */ - -/** - * @} - */ - -/** - * @} - */ - -/** - * @} - */ - -/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ - - - diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_scsi.h b/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_scsi.h deleted file mode 100644 index 7f839444d2..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/src/usbh_msc_scsi.h +++ /dev/null @@ -1,218 +0,0 @@ -/** - ****************************************************************************** - * @file usbh_msc_scsi.h - * @author MCD Application Team - * @brief Header file for usbh_msc_scsi.c - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2015 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under Ultimate Liberty license - * SLA0044, the "License"; You may not use this file except in compliance with - * the License. You may obtain a copy of the License at: - * www.st.com/SLA0044 - * - ****************************************************************************** - */ - -/* Define to prevent recursive ----------------------------------------------*/ -#ifndef __USBH_MSC_SCSI_H -#define __USBH_MSC_SCSI_H - -#ifdef __cplusplus -extern "C" { -#endif - -/* Includes ------------------------------------------------------------------*/ -#include "usbh_core.h" - - -/** @addtogroup USBH_LIB - * @{ - */ - -/** @addtogroup USBH_CLASS - * @{ - */ - -/** @addtogroup USBH_MSC_CLASS - * @{ - */ - -/** @defgroup USBH_MSC_SCSI - * @brief This file is the Header file for usbh_msc_scsi.c - * @{ - */ - - -/* Capacity data */ -typedef struct -{ - uint32_t block_nbr; - uint16_t block_size; -} SCSI_CapacityTypeDef; - - -/* Sense data */ -typedef struct -{ - uint8_t key; - uint8_t asc; - uint8_t ascq; -} SCSI_SenseTypeDef; - -/* INQUIRY data */ -typedef struct -{ - uint8_t PeripheralQualifier; - uint8_t DeviceType; - uint8_t RemovableMedia; - uint8_t vendor_id[9]; - uint8_t product_id[17]; - uint8_t revision_id[5]; -} SCSI_StdInquiryDataTypeDef; - -/** @defgroup USBH_MSC_SCSI_Exported_Defines - * @{ - */ -#define OPCODE_TEST_UNIT_READY 0x00U -#define OPCODE_READ_CAPACITY10 0x25U -#define OPCODE_READ10 0x28U -#define OPCODE_WRITE10 0x2AU -#define OPCODE_REQUEST_SENSE 0x03U -#define OPCODE_INQUIRY 0x12U - -#define DATA_LEN_MODE_TEST_UNIT_READY 0U -#define DATA_LEN_READ_CAPACITY10 8U -#define DATA_LEN_INQUIRY 36U -#define DATA_LEN_REQUEST_SENSE 14U - -#define CBW_CB_LENGTH 16U -#define CBW_LENGTH 10U - -/** @defgroup USBH_MSC_SCSI_Exported_Defines - * @{ - */ -#define SCSI_SENSE_KEY_NO_SENSE 0x00U -#define SCSI_SENSE_KEY_RECOVERED_ERROR 0x01U -#define SCSI_SENSE_KEY_NOT_READY 0x02U -#define SCSI_SENSE_KEY_MEDIUM_ERROR 0x03U -#define SCSI_SENSE_KEY_HARDWARE_ERROR 0x04U -#define SCSI_SENSE_KEY_ILLEGAL_REQUEST 0x05U -#define SCSI_SENSE_KEY_UNIT_ATTENTION 0x06U -#define SCSI_SENSE_KEY_DATA_PROTECT 0x07U -#define SCSI_SENSE_KEY_BLANK_CHECK 0x08U -#define SCSI_SENSE_KEY_VENDOR_SPECIFIC 0x09U -#define SCSI_SENSE_KEY_COPY_ABORTED 0x0AU -#define SCSI_SENSE_KEY_ABORTED_COMMAND 0x0BU -#define SCSI_SENSE_KEY_VOLUME_OVERFLOW 0x0DU -#define SCSI_SENSE_KEY_MISCOMPARE 0x0EU -/** - * @} - */ - - -/** @defgroup USBH_MSC_SCSI_Exported_Defines - * @{ - */ -#define SCSI_ASC_NO_ADDITIONAL_SENSE_INFORMATION 0x00 -#define SCSI_ASC_LOGICAL_UNIT_NOT_READY 0x04 -#define SCSI_ASC_INVALID_FIELD_IN_CDB 0x24 -#define SCSI_ASC_WRITE_PROTECTED 0x27 -#define SCSI_ASC_FORMAT_ERROR 0x31 -#define SCSI_ASC_INVALID_COMMAND_OPERATION_CODE 0x20 -#define SCSI_ASC_NOT_READY_TO_READY_CHANGE 0x28 -#define SCSI_ASC_MEDIUM_NOT_PRESENT 0x3A -/** - * @} - */ - - -/** @defgroup USBH_MSC_SCSI_Exported_Defines - * @{ - */ -#define SCSI_ASCQ_FORMAT_COMMAND_FAILED 0x01 -#define SCSI_ASCQ_INITIALIZING_COMMAND_REQUIRED 0x02 -#define SCSI_ASCQ_OPERATION_IN_PROGRESS 0x07 - -/** - * @} - */ - -/** @defgroup USBH_MSC_SCSI_Exported_Macros - * @{ - */ -/** - * @} - */ - -/** @defgroup _Exported_Variables - * @{ - */ - -/** - * @} - */ - -/** @defgroup USBH_MSC_SCSI_Exported_FunctionsPrototype - * @{ - */ -USBH_StatusTypeDef USBH_MSC_SCSI_TestUnitReady(USBH_HandleTypeDef *phost, - uint8_t lun); - -USBH_StatusTypeDef USBH_MSC_SCSI_ReadCapacity(USBH_HandleTypeDef *phost, - uint8_t lun, - SCSI_CapacityTypeDef *capacity); - -USBH_StatusTypeDef USBH_MSC_SCSI_Inquiry(USBH_HandleTypeDef *phost, - uint8_t lun, - SCSI_StdInquiryDataTypeDef *inquiry); - -USBH_StatusTypeDef USBH_MSC_SCSI_RequestSense(USBH_HandleTypeDef *phost, - uint8_t lun, - SCSI_SenseTypeDef *sense_data); - -USBH_StatusTypeDef USBH_MSC_SCSI_Write(USBH_HandleTypeDef *phost, - uint8_t lun, - uint32_t address, - uint8_t *pbuf, - uint32_t length); - -USBH_StatusTypeDef USBH_MSC_SCSI_Read(USBH_HandleTypeDef *phost, - uint8_t lun, - uint32_t address, - uint8_t *pbuf, - uint32_t length); - - -/** - * @} - */ - -#ifdef __cplusplus -} -#endif - -#endif /* __USBH_MSC_SCSI_H */ - - -/** - * @} - */ - -/** - * @} - */ - -/** - * @} - */ - -/** - * @} - */ - -/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ - diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_pipes.c b/Marlin/lib/STM32_USB_Host_Library/src/usbh_pipes.c deleted file mode 100644 index 60fe08b907..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/src/usbh_pipes.c +++ /dev/null @@ -1,188 +0,0 @@ -/** - ****************************************************************************** - * @file usbh_pipes.c - * @author MCD Application Team - * @brief This file implements functions for opening and closing Pipes - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2015 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under Ultimate Liberty license - * SLA0044, the "License"; You may not use this file except in compliance with - * the License. You may obtain a copy of the License at: - * www.st.com/SLA0044 - * - ****************************************************************************** - */ - -/* Includes ------------------------------------------------------------------*/ -#include "usbh_pipes.h" - -/** @addtogroup USBH_LIB - * @{ - */ - -/** @addtogroup USBH_LIB_CORE -* @{ -*/ - -/** @defgroup USBH_PIPES - * @brief This file includes opening and closing Pipes - * @{ - */ - -/** @defgroup USBH_PIPES_Private_Defines - * @{ - */ -/** - * @} - */ - -/** @defgroup USBH_PIPES_Private_TypesDefinitions - * @{ - */ -/** - * @} - */ - - -/** @defgroup USBH_PIPES_Private_Macros - * @{ - */ -/** - * @} - */ - - -/** @defgroup USBH_PIPES_Private_Variables - * @{ - */ - -/** - * @} - */ - - -/** @defgroup USBH_PIPES_Private_Functions - * @{ - */ -static uint16_t USBH_GetFreePipe(USBH_HandleTypeDef *phost); - - -/** - * @brief USBH_Open_Pipe - * Open a pipe - * @param phost: Host Handle - * @param pipe_num: Pipe Number - * @param dev_address: USB Device address allocated to attached device - * @param speed : USB device speed (Full/Low) - * @param ep_type: end point type (Bulk/int/ctl) - * @param mps: max pkt size - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_OpenPipe(USBH_HandleTypeDef *phost, uint8_t pipe_num, - uint8_t epnum, uint8_t dev_address, - uint8_t speed, uint8_t ep_type, uint16_t mps) -{ - USBH_LL_OpenPipe(phost, pipe_num, epnum, dev_address, speed, ep_type, mps); - - return USBH_OK; -} - - -/** - * @brief USBH_ClosePipe - * Close a pipe - * @param phost: Host Handle - * @param pipe_num: Pipe Number - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_ClosePipe(USBH_HandleTypeDef *phost, uint8_t pipe_num) -{ - USBH_LL_ClosePipe(phost, pipe_num); - - return USBH_OK; -} - - -/** - * @brief USBH_Alloc_Pipe - * Allocate a new Pipe - * @param phost: Host Handle - * @param ep_addr: End point for which the Pipe to be allocated - * @retval Pipe number - */ -uint8_t USBH_AllocPipe(USBH_HandleTypeDef *phost, uint8_t ep_addr) -{ - uint16_t pipe; - - pipe = USBH_GetFreePipe(phost); - - if (pipe != 0xFFFFU) - { - phost->Pipes[pipe & 0xFU] = 0x8000U | ep_addr; - } - - return (uint8_t)pipe; -} - - -/** - * @brief USBH_Free_Pipe - * Free the USB Pipe - * @param phost: Host Handle - * @param idx: Pipe number to be freed - * @retval USBH Status - */ -USBH_StatusTypeDef USBH_FreePipe(USBH_HandleTypeDef *phost, uint8_t idx) -{ - if (idx < 11U) - { - phost->Pipes[idx] &= 0x7FFFU; - } - - return USBH_OK; -} - - -/** - * @brief USBH_GetFreePipe - * @param phost: Host Handle - * Get a free Pipe number for allocation to a device endpoint - * @retval idx: Free Pipe number - */ -static uint16_t USBH_GetFreePipe(USBH_HandleTypeDef *phost) -{ - uint8_t idx = 0U; - - for (idx = 0U ; idx < 11U ; idx++) - { - if ((phost->Pipes[idx] & 0x8000U) == 0U) - { - return (uint16_t)idx; - } - } - - return 0xFFFFU; -} -/** -* @} -*/ - -/** -* @} -*/ - -/** -* @} -*/ - -/** -* @} -*/ - -/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ - - diff --git a/Marlin/lib/STM32_USB_Host_Library/src/usbh_pipes.h b/Marlin/lib/STM32_USB_Host_Library/src/usbh_pipes.h deleted file mode 100644 index ed2247ea73..0000000000 --- a/Marlin/lib/STM32_USB_Host_Library/src/usbh_pipes.h +++ /dev/null @@ -1,123 +0,0 @@ -/** - ****************************************************************************** - * @file usbh_pipes.h - * @author MCD Application Team - * @brief Header file for usbh_pipes.c - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2015 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under Ultimate Liberty license - * SLA0044, the "License"; You may not use this file except in compliance with - * the License. You may obtain a copy of the License at: - * www.st.com/SLA0044 - * - ****************************************************************************** - */ - -/* Define to prevent recursive ----------------------------------------------*/ -#ifndef __USBH_PIPES_H -#define __USBH_PIPES_H - -#ifdef __cplusplus -extern "C" { -#endif - -/* Includes ------------------------------------------------------------------*/ -#include "usbh_core.h" - -/** @addtogroup USBH_LIB - * @{ - */ - -/** @addtogroup USBH_LIB_CORE -* @{ -*/ - -/** @defgroup USBH_PIPES - * @brief This file is the header file for usbh_pipes.c - * @{ - */ - -/** @defgroup USBH_PIPES_Exported_Defines - * @{ - */ -/** - * @} - */ - -/** @defgroup USBH_PIPES_Exported_Types - * @{ - */ -/** - * @} - */ - - -/** @defgroup USBH_PIPES_Exported_Macros - * @{ - */ -/** - * @} - */ - -/** @defgroup USBH_PIPES_Exported_Variables - * @{ - */ -/** - * @} - */ - -/** @defgroup USBH_PIPES_Exported_FunctionsPrototype - * @{ - */ - -USBH_StatusTypeDef USBH_OpenPipe(USBH_HandleTypeDef *phost, - uint8_t pipe_num, - uint8_t epnum, - uint8_t dev_address, - uint8_t speed, - uint8_t ep_type, - uint16_t mps); - -USBH_StatusTypeDef USBH_ClosePipe(USBH_HandleTypeDef *phost, - uint8_t pipe_num); - -uint8_t USBH_AllocPipe(USBH_HandleTypeDef *phost, - uint8_t ep_addr); - -USBH_StatusTypeDef USBH_FreePipe(USBH_HandleTypeDef *phost, - uint8_t idx); - - - - -/** - * @} - */ - - -#ifdef __cplusplus -} -#endif - -#endif /* __USBH_PIPES_H */ - - -/** - * @} - */ - -/** - * @} - */ - -/** -* @} -*/ - -/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ - - diff --git a/Marlin/lib/fat_fs/00history.txt b/Marlin/lib/fat_fs/00history.txt deleted file mode 100644 index db12a9e1b1..0000000000 --- a/Marlin/lib/fat_fs/00history.txt +++ /dev/null @@ -1,330 +0,0 @@ ----------------------------------------------------------------------------- - Revision history of FatFs module ----------------------------------------------------------------------------- - -R0.00 (February 26, 2006) - - Prototype. - - - -R0.01 (April 29, 2006) - - The first release. - - - -R0.02 (June 01, 2006) - - Added FAT12 support. - Removed unbuffered mode. - Fixed a problem on small (<32M) partition. - - - -R0.02a (June 10, 2006) - - Added a configuration option (_FS_MINIMUM). - - - -R0.03 (September 22, 2006) - - Added f_rename(). - Changed option _FS_MINIMUM to _FS_MINIMIZE. - - - -R0.03a (December 11, 2006) - - Improved cluster scan algorithm to write files fast. - Fixed f_mkdir() creates incorrect directory on FAT32. - - - -R0.04 (February 04, 2007) - - Added f_mkfs(). - Supported multiple drive system. - Changed some interfaces for multiple drive system. - Changed f_mountdrv() to f_mount(). - - - -R0.04a (April 01, 2007) - - Supported multiple partitions on a physical drive. - Added a capability of extending file size to f_lseek(). - Added minimization level 3. - Fixed an endian sensitive code in f_mkfs(). - - - -R0.04b (May 05, 2007) - - Added a configuration option _USE_NTFLAG. - Added FSINFO support. - Fixed DBCS name can result FR_INVALID_NAME. - Fixed short seek (<= csize) collapses the file object. - - - -R0.05 (August 25, 2007) - - Changed arguments of f_read(), f_write() and f_mkfs(). - Fixed f_mkfs() on FAT32 creates incorrect FSINFO. - Fixed f_mkdir() on FAT32 creates incorrect directory. - - - -R0.05a (February 03, 2008) - - Added f_truncate() and f_utime(). - Fixed off by one error at FAT sub-type determination. - Fixed btr in f_read() can be mistruncated. - Fixed cached sector is not flushed when create and close without write. - - - -R0.06 (April 01, 2008) - - Added fputc(), fputs(), fprintf() and fgets(). - Improved performance of f_lseek() on moving to the same or following cluster. - - - -R0.07 (April 01, 2009) - - Merged Tiny-FatFs as a configuration option. (_FS_TINY) - Added long file name feature. (_USE_LFN) - Added multiple code page feature. (_CODE_PAGE) - Added re-entrancy for multitask operation. (_FS_REENTRANT) - Added auto cluster size selection to f_mkfs(). - Added rewind option to f_readdir(). - Changed result code of critical errors. - Renamed string functions to avoid name collision. - - - -R0.07a (April 14, 2009) - - Septemberarated out OS dependent code on reentrant cfg. - Added multiple sector size feature. - - - -R0.07c (June 21, 2009) - - Fixed f_unlink() can return FR_OK on error. - Fixed wrong cache control in f_lseek(). - Added relative path feature. - Added f_chdir() and f_chdrive(). - Added proper case conversion to extended character. - - - -R0.07e (November 03, 2009) - - Septemberarated out configuration options from ff.h to ffconf.h. - Fixed f_unlink() fails to remove a sub-directory on _FS_RPATH. - Fixed name matching error on the 13 character boundary. - Added a configuration option, _LFN_UNICODE. - Changed f_readdir() to return the SFN with always upper case on non-LFN cfg. - - - -R0.08 (May 15, 2010) - - Added a memory configuration option. (_USE_LFN = 3) - Added file lock feature. (_FS_SHARE) - Added fast seek feature. (_USE_FASTSEEK) - Changed some types on the API, XCHAR->TCHAR. - Changed .fname in the FILINFO structure on Unicode cfg. - String functions support UTF-8 encoding files on Unicode cfg. - - - -R0.08a (August 16, 2010) - - Added f_getcwd(). (_FS_RPATH = 2) - Added sector erase feature. (_USE_ERASE) - Moved file lock semaphore table from fs object to the bss. - Fixed f_mkfs() creates wrong FAT32 volume. - - - -R0.08b (January 15, 2011) - - Fast seek feature is also applied to f_read() and f_write(). - f_lseek() reports required table size on creating CLMP. - Extended format syntax of f_printf(). - Ignores duplicated directory separators in given path name. - - - -R0.09 (September 06, 2011) - - f_mkfs() supports multiple partition to complete the multiple partition feature. - Added f_fdisk(). - - - -R0.09a (August 27, 2012) - - Changed f_open() and f_opendir() reject null object pointer to avoid crash. - Changed option name _FS_SHARE to _FS_LOCK. - Fixed assertion failure due to OS/2 EA on FAT12/16 volume. - - - -R0.09b (January 24, 2013) - - Added f_setlabel() and f_getlabel(). - - - -R0.10 (October 02, 2013) - - Added selection of character encoding on the file. (_STRF_ENCODE) - Added f_closedir(). - Added forced full FAT scan for f_getfree(). (_FS_NOFSINFO) - Added forced mount feature with changes of f_mount(). - Improved behavior of volume auto detection. - Improved write throughput of f_puts() and f_printf(). - Changed argument of f_chdrive(), f_mkfs(), disk_read() and disk_write(). - Fixed f_write() can be truncated when the file size is close to 4GB. - Fixed f_open(), f_mkdir() and f_setlabel() can return incorrect value on error. - - - -R0.10a (January 15, 2014) - - Added arbitrary strings as drive number in the path name. (_STR_VOLUME_ID) - Added a configuration option of minimum sector size. (_MIN_SS) - 2nd argument of f_rename() can have a drive number and it will be ignored. - Fixed f_mount() with forced mount fails when drive number is >= 1. (appeared at R0.10) - Fixed f_close() invalidates the file object without volume lock. - Fixed f_closedir() returns but the volume lock is left acquired. (appeared at R0.10) - Fixed creation of an entry with LFN fails on too many SFN collisions. (appeared at R0.07) - - - -R0.10b (May 19, 2014) - - Fixed a hard error in the disk I/O layer can collapse the directory entry. - Fixed LFN entry is not deleted when delete/rename an object with lossy converted SFN. (appeared at R0.07) - - - -R0.10c (November 09, 2014) - - Added a configuration option for the platforms without RTC. (_FS_NORTC) - Changed option name _USE_ERASE to _USE_TRIM. - Fixed volume label created by Mac OS X cannot be retrieved with f_getlabel(). (appeared at R0.09b) - Fixed a potential problem of FAT access that can appear on disk error. - Fixed null pointer dereference on attempting to delete the root direcotry. (appeared at R0.08) - - - -R0.11 (February 09, 2015) - - Added f_findfirst(), f_findnext() and f_findclose(). (_USE_FIND) - Fixed f_unlink() does not remove cluster chain of the file. (appeared at R0.10c) - Fixed _FS_NORTC option does not work properly. (appeared at R0.10c) - - - -R0.11a (September 05, 2015) - - Fixed wrong media change can lead a deadlock at thread-safe configuration. - Added code page 771, 860, 861, 863, 864, 865 and 869. (_CODE_PAGE) - Removed some code pages actually not exist on the standard systems. (_CODE_PAGE) - Fixed errors in the case conversion teble of code page 437 and 850 (ff.c). - Fixed errors in the case conversion teble of Unicode (cc*.c). - - - -R0.12 (April 12, 2016) - - Added support for exFAT file system. (_FS_EXFAT) - Added f_expand(). (_USE_EXPAND) - Changed some members in FINFO structure and behavior of f_readdir(). - Added an option _USE_CHMOD. - Removed an option _WORD_ACCESS. - Fixed errors in the case conversion table of Unicode (cc*.c). - - - -R0.12a (July 10, 2016) - - Added support for creating exFAT volume with some changes of f_mkfs(). - Added a file open method FA_OPEN_APPEND. An f_lseek() following f_open() is no longer needed. - f_forward() is available regardless of _FS_TINY. - Fixed f_mkfs() creates wrong volume. (appeared at R0.12) - Fixed wrong memory read in create_name(). (appeared at R0.12) - Fixed compilation fails at some configurations, _USE_FASTSEEK and _USE_FORWARD. - - - -R0.12b (September 04, 2016) - - Made f_rename() be able to rename objects with the same name but case. - Fixed an error in the case conversion teble of code page 866. (ff.c) - Fixed writing data is truncated at the file offset 4GiB on the exFAT volume. (appeared at R0.12) - Fixed creating a file in the root directory of exFAT volume can fail. (appeared at R0.12) - Fixed f_mkfs() creating exFAT volume with too small cluster size can collapse unallocated memory. (appeared at R0.12) - Fixed wrong object name can be returned when read directory at Unicode cfg. (appeared at R0.12) - Fixed large file allocation/removing on the exFAT volume collapses allocation bitmap. (appeared at R0.12) - Fixed some internal errors in f_expand() and f_lseek(). (appeared at R0.12) - - - -R0.12c (March 04, 2017) - - Improved write throughput at the fragmented file on the exFAT volume. - Made memory usage for exFAT be able to be reduced as decreasing _MAX_LFN. - Fixed successive f_getfree() can return wrong count on the FAT12/16 volume. (appeared at R0.12) - Fixed configuration option _VOLUMES cannot be set 10. (appeared at R0.10c) - - - -R0.13 (May 21, 2017) - - Changed heading character of configuration keywords "_" to "FF_". - Removed ASCII-only configuration, FF_CODE_PAGE = 1. Use FF_CODE_PAGE = 437 instead. - Added f_setcp(), run-time code page configuration. (FF_CODE_PAGE = 0) - Improved cluster allocation time on stretch a deep buried cluster chain. - Improved processing time of f_mkdir() with large cluster size by using FF_USE_LFN = 3. - Improved NoFatChain flag of the fragmented file to be set after it is truncated and got contiguous. - Fixed archive attribute is left not set when a file on the exFAT volume is renamed. (appeared at R0.12) - Fixed exFAT FAT entry can be collapsed when write or lseek operation to the existing file is done. (appeared at R0.12c) - Fixed creating a file can fail when a new cluster allocation to the exFAT directory occures. (appeared at R0.12c) - - - -R0.13a (October 14, 2017) - - Added support for UTF-8 encoding on the API. (FF_LFN_UNICODE = 2) - Added options for file name output buffer. (FF_LFN_BUF, FF_SFN_BUF). - Added dynamic memory allocation option for working buffer of f_mkfs() and f_fdisk(). - Fixed f_fdisk() and f_mkfs() create the partition table with wrong CHS parameters. (appeared at R0.09) - Fixed f_unlink() can cause lost clusters at fragmented file on the exFAT volume. (appeared at R0.12c) - Fixed f_setlabel() rejects some valid characters for exFAT volume. (appeared at R0.12) - - - -R0.13b (April 07, 2018) - - Added support for UTF-32 encoding on the API. (FF_LFN_UNICODE = 3) - Added support for Unix style volume ID. (FF_STR_VOLUME_ID = 2) - Fixed accesing any object on the exFAT root directory beyond the cluster boundary can fail. (appeared at R0.12c) - Fixed f_setlabel() does not reject some invalid characters. (appeared at R0.09b) - - - -R0.13c (October 14, 2018) - Supported stdint.h for C99 and later. (integer.h was included in ff.h) - Fixed reading a directory gets infinite loop when the last directory entry is not empty. (appeared at R0.12) - Fixed creating a sub-directory in the fragmented sub-directory on the exFAT volume collapses FAT chain of the parent directory. (appeared at R0.12) - Fixed f_getcwd() cause output buffer overrun when the buffer has a valid drive number. (appeared at R0.13b) - diff --git a/Marlin/lib/fat_fs/00readme.txt b/Marlin/lib/fat_fs/00readme.txt deleted file mode 100644 index dcccbdbebc..0000000000 --- a/Marlin/lib/fat_fs/00readme.txt +++ /dev/null @@ -1,21 +0,0 @@ -FatFs Module Source Files R0.13c - - -FILES - - 00readme.txt This file. - 00history.txt Revision history. - ff.c FatFs module. - ffconf.h Configuration file of FatFs module. - ff.h Common include file for FatFs and application module. - diskio.h Common include file for FatFs and disk I/O module. - diskio.c An example of glue function to attach existing disk I/O module to FatFs. - ffunicode.c Optional Unicode utility functions. - ffsystem.c An example of optional O/S related functions. - - - Low level disk I/O module is not included in this archive because the FatFs - module is only a generic file system layer and it does not depend on any specific - storage device. You need to provide a low level disk I/O module written to - control the storage device that attached to the target system. - diff --git a/Marlin/lib/fat_fs/library.json b/Marlin/lib/fat_fs/library.json deleted file mode 100644 index 7f4f96779a..0000000000 --- a/Marlin/lib/fat_fs/library.json +++ /dev/null @@ -1,16 +0,0 @@ -{ - "name": "fatfs", - "version": "0.0.1", - "keywords": "fatfs module. port by langgo", - "description": "for usb msc use. fatfs module.", - "build": { - "srcFilter": [ - "+<*.c>", - "+<*.cpp>", - "+<*.h>" - ] - }, - "frameworks": "arduino", - "platforms": "*" -} - diff --git a/Marlin/lib/fat_fs/src/diskio.c b/Marlin/lib/fat_fs/src/diskio.c deleted file mode 100644 index 78b0874f54..0000000000 --- a/Marlin/lib/fat_fs/src/diskio.c +++ /dev/null @@ -1,171 +0,0 @@ -/*-----------------------------------------------------------------------*/ -/* Low level disk I/O module skeleton for FatFs (C)ChaN, 2017 */ -/* */ -/* Portions COPYRIGHT 2017 STMicroelectronics */ -/* Portions Copyright (C) 2017, ChaN, all right reserved */ -/*-----------------------------------------------------------------------*/ -/* If a working storage control module is available, it should be */ -/* attached to the FatFs via a glue function rather than modifying it. */ -/* This is an example of glue functions to attach various existing */ -/* storage control modules to the FatFs module with a defined API. */ -/*-----------------------------------------------------------------------*/ - -/* - Copyright (c) 2018, GigaDevice Semiconductor Inc. - - All rights reserved. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -/* Includes ------------------------------------------------------------------*/ -#include "diskio.h" -#include "ff_gen_drv.h" - -#if defined ( __GNUC__ ) -#ifndef __weak -#define __weak __attribute__((weak)) -#endif -#endif - -extern Disk_drvTypeDef disk; - -/*! - \brief Gets Disk Status - \param[in] pdrv: Physical drive number (0..) - \param[out] none - \retval DSTATUS: Operation status -*/ -DSTATUS disk_status ( - BYTE pdrv /* Physical drive number to identify the drive */ -) -{ - DSTATUS stat; - - stat = disk.drv[pdrv]->disk_status(disk.lun[pdrv]); - - return stat; -} - -/*! - \brief Initializes a Drive - \param[in] pdrv: Physical drive number (0..) - \param[out] none - \retval DSTATUS: Operation status -*/ -DSTATUS disk_initialize ( - BYTE pdrv /* Physical drive nmuber to identify the drive */ -) -{ - DSTATUS stat = RES_OK; - - if (disk.is_initialized[pdrv] == 0) { - disk.is_initialized[pdrv] = 1; - stat = disk.drv[pdrv]->disk_initialize(disk.lun[pdrv]); - } - - return stat; -} - -/*! - \brief Reads Sector(s) - \param[in] pdrv: Physical drive number (0..) - \param[in] buff: Data buffer to store read data - \param[in] sector: Sector address (LBA) - \param[in] count: Number of sectors to write (1..128) - \param[out] none - \retval DRESULT: Operation result -*/ -DRESULT disk_read ( - BYTE pdrv, /* Physical drive nmuber to identify the drive */ - BYTE *buff, /* Data buffer to store read data */ - DWORD sector, /* Sector address in LBA */ - UINT count /* Number of sectors to read */ -) -{ - DRESULT res; - - res = disk.drv[pdrv]->disk_read(disk.lun[pdrv], buff, sector, count); - - return res; -} - -/*! - \brief Writes Sector(s) - \param[in] pdrv: Physical drive number (0..) - \param[in] buff: Data to be written - \param[in] sector: Sector address (LBA) - \param[in] count: Number of sectors to write (1..128) - \param[out] none - \retval DRESULT: Operation result -*/ -#if _USE_WRITE == 1 -DRESULT disk_write ( - BYTE pdrv, /* Physical drive nmuber to identify the drive */ - const BYTE *buff, /* Data to be written */ - DWORD sector, /* Sector address in LBA */ - UINT count /* Number of sectors to write */ -) -{ - DRESULT res; - - res = disk.drv[pdrv]->disk_write(disk.lun[pdrv], buff, sector, count); - - return res; -} -#endif /* _USE_WRITE == 1 */ - -/*! - \brief I/O control operation - \param[in] pdrv: Physical drive number (0..) - \param[in] cmd: Control code - \param[in] buff: Buffer to send/receive control data - \param[out] none - \retval DRESULT: Operation result -*/ -#if _USE_IOCTL == 1 -DRESULT disk_ioctl ( - BYTE pdrv, /* Physical drive nmuber (0..) */ - BYTE cmd, /* Control code */ - void *buff /* Buffer to send/receive control data */ -) -{ - DRESULT res; - - res = disk.drv[pdrv]->disk_ioctl(disk.lun[pdrv], cmd, buff); - - return res; -} -#endif /* _USE_IOCTL == 1 */ - -/*! - \brief Gets Time from RTC - \param[in] none - \param[out] none - \retval Time in DWORD -*/ -__weak DWORD get_fattime (void) -{ - return 0; -} diff --git a/Marlin/lib/fat_fs/src/diskio.h b/Marlin/lib/fat_fs/src/diskio.h deleted file mode 100644 index 4c145f5045..0000000000 --- a/Marlin/lib/fat_fs/src/diskio.h +++ /dev/null @@ -1,79 +0,0 @@ -/*-----------------------------------------------------------------------/ -/ Low level disk interface modlue include file (C)ChaN, 2014 / -/-----------------------------------------------------------------------*/ - -#ifndef _DISKIO_DEFINED -#define _DISKIO_DEFINED - -#ifdef __cplusplus -extern "C" { -#endif - -#define _USE_WRITE 1 /* 1: Enable disk_write function */ -#define _USE_IOCTL 1 /* 1: Enable disk_ioctl function */ - -#include "ff.h" - -/* Status of Disk Functions */ -typedef BYTE DSTATUS; - -/* Results of Disk Functions */ -typedef enum { - RES_OK = 0, /* 0: Successful */ - RES_ERROR, /* 1: R/W Error */ - RES_WRPRT, /* 2: Write Protected */ - RES_NOTRDY, /* 3: Not Ready */ - RES_PARERR /* 4: Invalid Parameter */ -} DRESULT; - - -/*---------------------------------------*/ -/* Prototypes for disk control functions */ - - -DSTATUS disk_initialize (BYTE pdrv); -DSTATUS disk_status (BYTE pdrv); -DRESULT disk_read (BYTE pdrv, BYTE* buff, DWORD sector, UINT count); -DRESULT disk_write (BYTE pdrv, const BYTE* buff, DWORD sector, UINT count); -DRESULT disk_ioctl (BYTE pdrv, BYTE cmd, void* buff); -DWORD get_fattime (void); - -/* Disk Status Bits (DSTATUS) */ - -#define STA_NOINIT 0x01 /* Drive not initialized */ -#define STA_NODISK 0x02 /* No medium in the drive */ -#define STA_PROTECT 0x04 /* Write protected */ - - -/* Command code for disk_ioctrl fucntion */ - -/* Generic command (Used by FatFs) */ -#define CTRL_SYNC 0 /* Complete pending write process (needed at _FS_READONLY == 0) */ -#define GET_SECTOR_COUNT 1 /* Get media size (needed at _USE_MKFS == 1) */ -#define GET_SECTOR_SIZE 2 /* Get sector size (needed at _MAX_SS != _MIN_SS) */ -#define GET_BLOCK_SIZE 3 /* Get erase block size (needed at _USE_MKFS == 1) */ -#define CTRL_TRIM 4 /* Inform device that the data on the block of sectors is no longer used (needed at _USE_TRIM == 1) */ - -/* Generic command (Not used by FatFs) */ -#define CTRL_POWER 5 /* Get/Set power status */ -#define CTRL_LOCK 6 /* Lock/Unlock media removal */ -#define CTRL_EJECT 7 /* Eject media */ -#define CTRL_FORMAT 8 /* Create physical format on the media */ - -/* MMC/SDC specific ioctl command */ -#define MMC_GET_TYPE 10 /* Get card type */ -#define MMC_GET_CSD 11 /* Get CSD */ -#define MMC_GET_CID 12 /* Get CID */ -#define MMC_GET_OCR 13 /* Get OCR */ -#define MMC_GET_SDSTAT 14 /* Get SD status */ - -/* ATA/CF specific ioctl command */ -#define ATA_GET_REV 20 /* Get F/W revision */ -#define ATA_GET_MODEL 21 /* Get model name */ -#define ATA_GET_SN 22 /* Get serial number */ - -#ifdef __cplusplus -} -#endif - -#endif diff --git a/Marlin/lib/fat_fs/src/fattime.h b/Marlin/lib/fat_fs/src/fattime.h deleted file mode 100644 index 94b70682f4..0000000000 --- a/Marlin/lib/fat_fs/src/fattime.h +++ /dev/null @@ -1,7 +0,0 @@ -#ifndef FATTIME_H_ - -#include "integer.h" - -DWORD get_fattime (void); - -#endif diff --git a/Marlin/lib/fat_fs/src/ff.c b/Marlin/lib/fat_fs/src/ff.c deleted file mode 100644 index 0a4fac1a01..0000000000 --- a/Marlin/lib/fat_fs/src/ff.c +++ /dev/null @@ -1,6672 +0,0 @@ -/*----------------------------------------------------------------------------/ -/ FatFs - Generic FAT Filesystem Module R0.13c / -/-----------------------------------------------------------------------------/ -/ -/ Copyright (C) 2018, ChaN, all right reserved. -/ -/ FatFs module is an open source software. Redistribution and use of FatFs in -/ source and binary forms, with or without modification, are permitted provided -/ that the following condition is met: -/ -/ 1. Redistributions of source code must retain the above copyright notice, -/ this condition and the following disclaimer. -/ -/ This software is provided by the copyright holder and contributors "AS IS" -/ and any warranties related to this software are DISCLAIMED. -/ The copyright owner or contributors be NOT LIABLE for any damages caused -/ by use of this software. -/ -/----------------------------------------------------------------------------*/ - - -#include "ff.h" /* Declarations of FatFs API */ -#include "diskio.h" /* Declarations of device I/O functions */ - - -/*-------------------------------------------------------------------------- - - Module Private Definitions - ----------------------------------------------------------------------------*/ - -#if FF_DEFINED != 86604 /* Revision ID */ -#error Wrong include file (ff.h). -#endif - - -/* Limits and boundaries */ -#define MAX_DIR 0x200000 /* Max size of FAT directory */ -#define MAX_DIR_EX 0x10000000 /* Max size of exFAT directory */ -#define MAX_FAT12 0xFF5 /* Max FAT12 clusters (differs from specs, but right for real DOS/Windows behavior) */ -#define MAX_FAT16 0xFFF5 /* Max FAT16 clusters (differs from specs, but right for real DOS/Windows behavior) */ -#define MAX_FAT32 0x0FFFFFF5 /* Max FAT32 clusters (not specified, practical limit) */ -#define MAX_EXFAT 0x7FFFFFFD /* Max exFAT clusters (differs from specs, implementation limit) */ - - -/* Character code support macros */ -#define IsUpper(c) ((c) >= 'A' && (c) <= 'Z') -#define IsLower(c) ((c) >= 'a' && (c) <= 'z') -#define IsDigit(c) ((c) >= '0' && (c) <= '9') -#define IsSurrogate(c) ((c) >= 0xD800 && (c) <= 0xDFFF) -#define IsSurrogateH(c) ((c) >= 0xD800 && (c) <= 0xDBFF) -#define IsSurrogateL(c) ((c) >= 0xDC00 && (c) <= 0xDFFF) - - -/* Additional file access control and file status flags for internal use */ -#define FA_SEEKEND 0x20 /* Seek to end of the file on file open */ -#define FA_MODIFIED 0x40 /* File has been modified */ -#define FA_DIRTY 0x80 /* FIL.buf[] needs to be written-back */ - - -/* Additional file attribute bits for internal use */ -#define AM_VOL 0x08 /* Volume label */ -#define AM_LFN 0x0F /* LFN entry */ -#define AM_MASK 0x3F /* Mask of defined bits */ - - -/* Name status flags in fn[11] */ -#define NSFLAG 11 /* Index of the name status byte */ -#define NS_LOSS 0x01 /* Out of 8.3 format */ -#define NS_LFN 0x02 /* Force to create LFN entry */ -#define NS_LAST 0x04 /* Last segment */ -#define NS_BODY 0x08 /* Lower case flag (body) */ -#define NS_EXT 0x10 /* Lower case flag (ext) */ -#define NS_DOT 0x20 /* Dot entry */ -#define NS_NOLFN 0x40 /* Do not find LFN */ -#define NS_NONAME 0x80 /* Not followed */ - - -/* exFAT directory entry types */ -#define ET_BITMAP 0x81 /* Allocation bitmap */ -#define ET_UPCASE 0x82 /* Up-case table */ -#define ET_VLABEL 0x83 /* Volume label */ -#define ET_FILEDIR 0x85 /* File and directory */ -#define ET_STREAM 0xC0 /* Stream extension */ -#define ET_FILENAME 0xC1 /* Name extension */ - - -/* FatFs refers the FAT structure as simple byte array instead of structure member -/ because the C structure is not binary compatible between different platforms */ - -#define BS_JmpBoot 0 /* x86 jump instruction (3-byte) */ -#define BS_OEMName 3 /* OEM name (8-byte) */ -#define BPB_BytsPerSec 11 /* Sector size [byte] (WORD) */ -#define BPB_SecPerClus 13 /* Cluster size [sector] (BYTE) */ -#define BPB_RsvdSecCnt 14 /* Size of reserved area [sector] (WORD) */ -#define BPB_NumFATs 16 /* Number of FATs (BYTE) */ -#define BPB_RootEntCnt 17 /* Size of root directory area for FAT [entry] (WORD) */ -#define BPB_TotSec16 19 /* Volume size (16-bit) [sector] (WORD) */ -#define BPB_Media 21 /* Media descriptor byte (BYTE) */ -#define BPB_FATSz16 22 /* FAT size (16-bit) [sector] (WORD) */ -#define BPB_SecPerTrk 24 /* Number of sectors per track for int13h [sector] (WORD) */ -#define BPB_NumHeads 26 /* Number of heads for int13h (WORD) */ -#define BPB_HiddSec 28 /* Volume offset from top of the drive (DWORD) */ -#define BPB_TotSec32 32 /* Volume size (32-bit) [sector] (DWORD) */ -#define BS_DrvNum 36 /* Physical drive number for int13h (BYTE) */ -#define BS_NTres 37 /* WindowsNT error flag (BYTE) */ -#define BS_BootSig 38 /* Extended boot signature (BYTE) */ -#define BS_VolID 39 /* Volume serial number (DWORD) */ -#define BS_VolLab 43 /* Volume label string (8-byte) */ -#define BS_FilSysType 54 /* Filesystem type string (8-byte) */ -#define BS_BootCode 62 /* Boot code (448-byte) */ -#define BS_55AA 510 /* Signature word (WORD) */ - -#define BPB_FATSz32 36 /* FAT32: FAT size [sector] (DWORD) */ -#define BPB_ExtFlags32 40 /* FAT32: Extended flags (WORD) */ -#define BPB_FSVer32 42 /* FAT32: Filesystem version (WORD) */ -#define BPB_RootClus32 44 /* FAT32: Root directory cluster (DWORD) */ -#define BPB_FSInfo32 48 /* FAT32: Offset of FSINFO sector (WORD) */ -#define BPB_BkBootSec32 50 /* FAT32: Offset of backup boot sector (WORD) */ -#define BS_DrvNum32 64 /* FAT32: Physical drive number for int13h (BYTE) */ -#define BS_NTres32 65 /* FAT32: Error flag (BYTE) */ -#define BS_BootSig32 66 /* FAT32: Extended boot signature (BYTE) */ -#define BS_VolID32 67 /* FAT32: Volume serial number (DWORD) */ -#define BS_VolLab32 71 /* FAT32: Volume label string (8-byte) */ -#define BS_FilSysType32 82 /* FAT32: Filesystem type string (8-byte) */ -#define BS_BootCode32 90 /* FAT32: Boot code (420-byte) */ - -#define BPB_ZeroedEx 11 /* exFAT: MBZ field (53-byte) */ -#define BPB_VolOfsEx 64 /* exFAT: Volume offset from top of the drive [sector] (QWORD) */ -#define BPB_TotSecEx 72 /* exFAT: Volume size [sector] (QWORD) */ -#define BPB_FatOfsEx 80 /* exFAT: FAT offset from top of the volume [sector] (DWORD) */ -#define BPB_FatSzEx 84 /* exFAT: FAT size [sector] (DWORD) */ -#define BPB_DataOfsEx 88 /* exFAT: Data offset from top of the volume [sector] (DWORD) */ -#define BPB_NumClusEx 92 /* exFAT: Number of clusters (DWORD) */ -#define BPB_RootClusEx 96 /* exFAT: Root directory start cluster (DWORD) */ -#define BPB_VolIDEx 100 /* exFAT: Volume serial number (DWORD) */ -#define BPB_FSVerEx 104 /* exFAT: Filesystem version (WORD) */ -#define BPB_VolFlagEx 106 /* exFAT: Volume flags (WORD) */ -#define BPB_BytsPerSecEx 108 /* exFAT: Log2 of sector size in unit of byte (BYTE) */ -#define BPB_SecPerClusEx 109 /* exFAT: Log2 of cluster size in unit of sector (BYTE) */ -#define BPB_NumFATsEx 110 /* exFAT: Number of FATs (BYTE) */ -#define BPB_DrvNumEx 111 /* exFAT: Physical drive number for int13h (BYTE) */ -#define BPB_PercInUseEx 112 /* exFAT: Percent in use (BYTE) */ -#define BPB_RsvdEx 113 /* exFAT: Reserved (7-byte) */ -#define BS_BootCodeEx 120 /* exFAT: Boot code (390-byte) */ - -#define DIR_Name 0 /* Short file name (11-byte) */ -#define DIR_Attr 11 /* Attribute (BYTE) */ -#define DIR_NTres 12 /* Lower case flag (BYTE) */ -#define DIR_CrtTime10 13 /* Created time sub-second (BYTE) */ -#define DIR_CrtTime 14 /* Created time (DWORD) */ -#define DIR_LstAccDate 18 /* Last accessed date (WORD) */ -#define DIR_FstClusHI 20 /* Higher 16-bit of first cluster (WORD) */ -#define DIR_ModTime 22 /* Modified time (DWORD) */ -#define DIR_FstClusLO 26 /* Lower 16-bit of first cluster (WORD) */ -#define DIR_FileSize 28 /* File size (DWORD) */ -#define LDIR_Ord 0 /* LFN: LFN order and LLE flag (BYTE) */ -#define LDIR_Attr 11 /* LFN: LFN attribute (BYTE) */ -#define LDIR_Type 12 /* LFN: Entry type (BYTE) */ -#define LDIR_Chksum 13 /* LFN: Checksum of the SFN (BYTE) */ -#define LDIR_FstClusLO 26 /* LFN: MBZ field (WORD) */ -#define XDIR_Type 0 /* exFAT: Type of exFAT directory entry (BYTE) */ -#define XDIR_NumLabel 1 /* exFAT: Number of volume label characters (BYTE) */ -#define XDIR_Label 2 /* exFAT: Volume label (11-WORD) */ -#define XDIR_CaseSum 4 /* exFAT: Sum of case conversion table (DWORD) */ -#define XDIR_NumSec 1 /* exFAT: Number of secondary entries (BYTE) */ -#define XDIR_SetSum 2 /* exFAT: Sum of the set of directory entries (WORD) */ -#define XDIR_Attr 4 /* exFAT: File attribute (WORD) */ -#define XDIR_CrtTime 8 /* exFAT: Created time (DWORD) */ -#define XDIR_ModTime 12 /* exFAT: Modified time (DWORD) */ -#define XDIR_AccTime 16 /* exFAT: Last accessed time (DWORD) */ -#define XDIR_CrtTime10 20 /* exFAT: Created time subsecond (BYTE) */ -#define XDIR_ModTime10 21 /* exFAT: Modified time subsecond (BYTE) */ -#define XDIR_CrtTZ 22 /* exFAT: Created timezone (BYTE) */ -#define XDIR_ModTZ 23 /* exFAT: Modified timezone (BYTE) */ -#define XDIR_AccTZ 24 /* exFAT: Last accessed timezone (BYTE) */ -#define XDIR_GenFlags 33 /* exFAT: General secondary flags (BYTE) */ -#define XDIR_NumName 35 /* exFAT: Number of file name characters (BYTE) */ -#define XDIR_NameHash 36 /* exFAT: Hash of file name (WORD) */ -#define XDIR_ValidFileSize 40 /* exFAT: Valid file size (QWORD) */ -#define XDIR_FstClus 52 /* exFAT: First cluster of the file data (DWORD) */ -#define XDIR_FileSize 56 /* exFAT: File/Directory size (QWORD) */ - -#define SZDIRE 32 /* Size of a directory entry */ -#define DDEM 0xE5 /* Deleted directory entry mark set to DIR_Name[0] */ -#define RDDEM 0x05 /* Replacement of the character collides with DDEM */ -#define LLEF 0x40 /* Last long entry flag in LDIR_Ord */ - -#define FSI_LeadSig 0 /* FAT32 FSI: Leading signature (DWORD) */ -#define FSI_StrucSig 484 /* FAT32 FSI: Structure signature (DWORD) */ -#define FSI_Free_Count 488 /* FAT32 FSI: Number of free clusters (DWORD) */ -#define FSI_Nxt_Free 492 /* FAT32 FSI: Last allocated cluster (DWORD) */ - -#define MBR_Table 446 /* MBR: Offset of partition table in the MBR */ -#define SZ_PTE 16 /* MBR: Size of a partition table entry */ -#define PTE_Boot 0 /* MBR PTE: Boot indicator */ -#define PTE_StHead 1 /* MBR PTE: Start head */ -#define PTE_StSec 2 /* MBR PTE: Start sector */ -#define PTE_StCyl 3 /* MBR PTE: Start cylinder */ -#define PTE_System 4 /* MBR PTE: System ID */ -#define PTE_EdHead 5 /* MBR PTE: End head */ -#define PTE_EdSec 6 /* MBR PTE: End sector */ -#define PTE_EdCyl 7 /* MBR PTE: End cylinder */ -#define PTE_StLba 8 /* MBR PTE: Start in LBA */ -#define PTE_SizLba 12 /* MBR PTE: Size in LBA */ - - -/* Post process on fatal error in the file operations */ -#define ABORT(fs, res) { fp->err = (BYTE)(res); LEAVE_FF(fs, res); } - - -/* Re-entrancy related */ -#if FF_FS_REENTRANT -#if FF_USE_LFN == 1 -#error Static LFN work area cannot be used at thread-safe configuration -#endif -#define LEAVE_FF(fs, res) { unlock_fs(fs, res); return res; } -#else -#define LEAVE_FF(fs, res) return res -#endif - - -/* Definitions of volume - physical location conversion */ -#if FF_MULTI_PARTITION -#define LD2PD(vol) VolToPart[vol].pd /* Get physical drive number */ -#define LD2PT(vol) VolToPart[vol].pt /* Get partition index */ -#else -#define LD2PD(vol) (BYTE)(vol) /* Each logical drive is bound to the same physical drive number */ -#define LD2PT(vol) 0 /* Find first valid partition or in SFD */ -#endif - - -/* Definitions of sector size */ -#if (FF_MAX_SS < FF_MIN_SS) || (FF_MAX_SS != 512 && FF_MAX_SS != 1024 && FF_MAX_SS != 2048 && FF_MAX_SS != 4096) || (FF_MIN_SS != 512 && FF_MIN_SS != 1024 && FF_MIN_SS != 2048 && FF_MIN_SS != 4096) -#error Wrong sector size configuration -#endif -#if FF_MAX_SS == FF_MIN_SS -#define SS(fs) ((UINT)FF_MAX_SS) /* Fixed sector size */ -#else -#define SS(fs) ((fs)->ssize) /* Variable sector size */ -#endif - - -/* Timestamp */ -#if FF_FS_NORTC == 1 -#if FF_NORTC_YEAR < 1980 || FF_NORTC_YEAR > 2107 || FF_NORTC_MON < 1 || FF_NORTC_MON > 12 || FF_NORTC_MDAY < 1 || FF_NORTC_MDAY > 31 -#error Invalid FF_FS_NORTC settings -#endif -#define GET_FATTIME() ((DWORD)(FF_NORTC_YEAR - 1980) << 25 | (DWORD)FF_NORTC_MON << 21 | (DWORD)FF_NORTC_MDAY << 16) -#else -#define GET_FATTIME() get_fattime() -#endif - - -/* File lock controls */ -#if FF_FS_LOCK != 0 -#if FF_FS_READONLY -#error FF_FS_LOCK must be 0 at read-only configuration -#endif -typedef struct { - FATFS *fs; /* Object ID 1, volume (NULL:blank entry) */ - DWORD clu; /* Object ID 2, containing directory (0:root) */ - DWORD ofs; /* Object ID 3, offset in the directory */ - WORD ctr; /* Object open counter, 0:none, 0x01..0xFF:read mode open count, 0x100:write mode */ -} FILESEM; -#endif - - -/* SBCS up-case tables (\x80-\xFF) */ -#define TBL_CT437 {0x80,0x9A,0x45,0x41,0x8E,0x41,0x8F,0x80,0x45,0x45,0x45,0x49,0x49,0x49,0x8E,0x8F, \ - 0x90,0x92,0x92,0x4F,0x99,0x4F,0x55,0x55,0x59,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ - 0x41,0x49,0x4F,0x55,0xA5,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ - 0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ - 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} -#define TBL_CT720 {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F, \ - 0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ - 0xA0,0xA1,0xA2,0xA3,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ - 0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ - 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} -#define TBL_CT737 {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F, \ - 0x90,0x92,0x92,0x93,0x94,0x95,0x96,0x97,0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87, \ - 0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0x90,0x91,0xAA,0x92,0x93,0x94,0x95,0x96, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ - 0x97,0xEA,0xEB,0xEC,0xE4,0xED,0xEE,0xEF,0xF5,0xF0,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ - 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} -#define TBL_CT771 {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F, \ - 0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ - 0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDC,0xDE,0xDE, \ - 0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ - 0xF0,0xF0,0xF2,0xF2,0xF4,0xF4,0xF6,0xF6,0xF8,0xF8,0xFA,0xFA,0xFC,0xFC,0xFE,0xFF} -#define TBL_CT775 {0x80,0x9A,0x91,0xA0,0x8E,0x95,0x8F,0x80,0xAD,0xED,0x8A,0x8A,0xA1,0x8D,0x8E,0x8F, \ - 0x90,0x92,0x92,0xE2,0x99,0x95,0x96,0x97,0x97,0x99,0x9A,0x9D,0x9C,0x9D,0x9E,0x9F, \ - 0xA0,0xA1,0xE0,0xA3,0xA3,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xB5,0xB6,0xB7,0xB8,0xBD,0xBE,0xC6,0xC7,0xA5,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ - 0xE0,0xE1,0xE2,0xE3,0xE5,0xE5,0xE6,0xE3,0xE8,0xE8,0xEA,0xEA,0xEE,0xED,0xEE,0xEF, \ - 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} -#define TBL_CT850 {0x43,0x55,0x45,0x41,0x41,0x41,0x41,0x43,0x45,0x45,0x45,0x49,0x49,0x49,0x41,0x41, \ - 0x45,0x92,0x92,0x4F,0x4F,0x4F,0x55,0x55,0x59,0x4F,0x55,0x4F,0x9C,0x4F,0x9E,0x9F, \ - 0x41,0x49,0x4F,0x55,0xA5,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0x41,0x41,0x41,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0x41,0x41,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xD1,0xD1,0x45,0x45,0x45,0x49,0x49,0x49,0x49,0xD9,0xDA,0xDB,0xDC,0xDD,0x49,0xDF, \ - 0x4F,0xE1,0x4F,0x4F,0x4F,0x4F,0xE6,0xE8,0xE8,0x55,0x55,0x55,0x59,0x59,0xEE,0xEF, \ - 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} -#define TBL_CT852 {0x80,0x9A,0x90,0xB6,0x8E,0xDE,0x8F,0x80,0x9D,0xD3,0x8A,0x8A,0xD7,0x8D,0x8E,0x8F, \ - 0x90,0x91,0x91,0xE2,0x99,0x95,0x95,0x97,0x97,0x99,0x9A,0x9B,0x9B,0x9D,0x9E,0xAC, \ - 0xB5,0xD6,0xE0,0xE9,0xA4,0xA4,0xA6,0xA6,0xA8,0xA8,0xAA,0x8D,0xAC,0xB8,0xAE,0xAF, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBD,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC6,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xD1,0xD1,0xD2,0xD3,0xD2,0xD5,0xD6,0xD7,0xB7,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ - 0xE0,0xE1,0xE2,0xE3,0xE3,0xD5,0xE6,0xE6,0xE8,0xE9,0xE8,0xEB,0xED,0xED,0xDD,0xEF, \ - 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xEB,0xFC,0xFC,0xFE,0xFF} -#define TBL_CT855 {0x81,0x81,0x83,0x83,0x85,0x85,0x87,0x87,0x89,0x89,0x8B,0x8B,0x8D,0x8D,0x8F,0x8F, \ - 0x91,0x91,0x93,0x93,0x95,0x95,0x97,0x97,0x99,0x99,0x9B,0x9B,0x9D,0x9D,0x9F,0x9F, \ - 0xA1,0xA1,0xA3,0xA3,0xA5,0xA5,0xA7,0xA7,0xA9,0xA9,0xAB,0xAB,0xAD,0xAD,0xAE,0xAF, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0xB6,0xB6,0xB8,0xB8,0xB9,0xBA,0xBB,0xBC,0xBE,0xBE,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC7,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xD1,0xD1,0xD3,0xD3,0xD5,0xD5,0xD7,0xD7,0xDD,0xD9,0xDA,0xDB,0xDC,0xDD,0xE0,0xDF, \ - 0xE0,0xE2,0xE2,0xE4,0xE4,0xE6,0xE6,0xE8,0xE8,0xEA,0xEA,0xEC,0xEC,0xEE,0xEE,0xEF, \ - 0xF0,0xF2,0xF2,0xF4,0xF4,0xF6,0xF6,0xF8,0xF8,0xFA,0xFA,0xFC,0xFC,0xFD,0xFE,0xFF} -#define TBL_CT857 {0x80,0x9A,0x90,0xB6,0x8E,0xB7,0x8F,0x80,0xD2,0xD3,0xD4,0xD8,0xD7,0x49,0x8E,0x8F, \ - 0x90,0x92,0x92,0xE2,0x99,0xE3,0xEA,0xEB,0x98,0x99,0x9A,0x9D,0x9C,0x9D,0x9E,0x9E, \ - 0xB5,0xD6,0xE0,0xE9,0xA5,0xA5,0xA6,0xA6,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC7,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xD0,0xD1,0xD2,0xD3,0xD4,0x49,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ - 0xE0,0xE1,0xE2,0xE3,0xE5,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xDE,0xED,0xEE,0xEF, \ - 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} -#define TBL_CT860 {0x80,0x9A,0x90,0x8F,0x8E,0x91,0x86,0x80,0x89,0x89,0x92,0x8B,0x8C,0x98,0x8E,0x8F, \ - 0x90,0x91,0x92,0x8C,0x99,0xA9,0x96,0x9D,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ - 0x86,0x8B,0x9F,0x96,0xA5,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ - 0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ - 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} -#define TBL_CT861 {0x80,0x9A,0x90,0x41,0x8E,0x41,0x8F,0x80,0x45,0x45,0x45,0x8B,0x8B,0x8D,0x8E,0x8F, \ - 0x90,0x92,0x92,0x4F,0x99,0x8D,0x55,0x97,0x97,0x99,0x9A,0x9D,0x9C,0x9D,0x9E,0x9F, \ - 0xA4,0xA5,0xA6,0xA7,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ - 0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ - 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} -#define TBL_CT862 {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F, \ - 0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ - 0x41,0x49,0x4F,0x55,0xA5,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ - 0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ - 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} -#define TBL_CT863 {0x43,0x55,0x45,0x41,0x41,0x41,0x86,0x43,0x45,0x45,0x45,0x49,0x49,0x8D,0x41,0x8F, \ - 0x45,0x45,0x45,0x4F,0x45,0x49,0x55,0x55,0x98,0x4F,0x55,0x9B,0x9C,0x55,0x55,0x9F, \ - 0xA0,0xA1,0x4F,0x55,0xA4,0xA5,0xA6,0xA7,0x49,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ - 0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ - 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} -#define TBL_CT864 {0x80,0x9A,0x45,0x41,0x8E,0x41,0x8F,0x80,0x45,0x45,0x45,0x49,0x49,0x49,0x8E,0x8F, \ - 0x90,0x92,0x92,0x4F,0x99,0x4F,0x55,0x55,0x59,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ - 0x41,0x49,0x4F,0x55,0xA5,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ - 0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ - 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} -#define TBL_CT865 {0x80,0x9A,0x90,0x41,0x8E,0x41,0x8F,0x80,0x45,0x45,0x45,0x49,0x49,0x49,0x8E,0x8F, \ - 0x90,0x92,0x92,0x4F,0x99,0x4F,0x55,0x55,0x59,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ - 0x41,0x49,0x4F,0x55,0xA5,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ - 0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF, \ - 0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} -#define TBL_CT866 {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F, \ - 0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ - 0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ - 0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \ - 0xF0,0xF0,0xF2,0xF2,0xF4,0xF4,0xF6,0xF6,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF} -#define TBL_CT869 {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F, \ - 0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x86,0x9C,0x8D,0x8F,0x90, \ - 0x91,0x90,0x92,0x95,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF, \ - 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \ - 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF, \ - 0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xA4,0xA5,0xA6,0xD9,0xDA,0xDB,0xDC,0xA7,0xA8,0xDF, \ - 0xA9,0xAA,0xAC,0xAD,0xB5,0xB6,0xB7,0xB8,0xBD,0xBE,0xC6,0xC7,0xCF,0xCF,0xD0,0xEF, \ - 0xF0,0xF1,0xD1,0xD2,0xD3,0xF5,0xD4,0xF7,0xF8,0xF9,0xD5,0x96,0x95,0x98,0xFE,0xFF} - - -/* DBCS code range |----- 1st byte -----| |----------- 2nd byte -----------| */ -#define TBL_DC932 {0x81, 0x9F, 0xE0, 0xFC, 0x40, 0x7E, 0x80, 0xFC, 0x00, 0x00} -#define TBL_DC936 {0x81, 0xFE, 0x00, 0x00, 0x40, 0x7E, 0x80, 0xFE, 0x00, 0x00} -#define TBL_DC949 {0x81, 0xFE, 0x00, 0x00, 0x41, 0x5A, 0x61, 0x7A, 0x81, 0xFE} -#define TBL_DC950 {0x81, 0xFE, 0x00, 0x00, 0x40, 0x7E, 0xA1, 0xFE, 0x00, 0x00} - - -/* Macros for table definitions */ -#define MERGE_2STR(a, b) a ## b -#define MKCVTBL(hd, cp) MERGE_2STR(hd, cp) - - - - -/*-------------------------------------------------------------------------- - - Module Private Work Area - ----------------------------------------------------------------------------*/ -/* Remark: Variables defined here without initial value shall be guaranteed -/ zero/null at start-up. If not, the linker option or start-up routine is -/ not compliance with C standard. */ - -/*--------------------------------*/ -/* File/Volume controls */ -/*--------------------------------*/ - -#if FF_VOLUMES < 1 || FF_VOLUMES > 10 -#error Wrong FF_VOLUMES setting -#endif -static FATFS* FatFs[FF_VOLUMES]; /* Pointer to the filesystem objects (logical drives) */ -static WORD Fsid; /* Filesystem mount ID */ - -#if FF_FS_RPATH != 0 -static BYTE CurrVol; /* Current drive */ -#endif - -#if FF_FS_LOCK != 0 -static FILESEM Files[FF_FS_LOCK]; /* Open object lock semaphores */ -#endif - -#if FF_STR_VOLUME_ID -#ifdef FF_VOLUME_STRS -static const char* const VolumeStr[FF_VOLUMES] = {FF_VOLUME_STRS}; /* Pre-defined volume ID */ -#endif -#endif - - -/*--------------------------------*/ -/* LFN/Directory working buffer */ -/*--------------------------------*/ - -#if FF_USE_LFN == 0 /* Non-LFN configuration */ -#if FF_FS_EXFAT -#error LFN must be enabled when enable exFAT -#endif -#define DEF_NAMBUF -#define INIT_NAMBUF(fs) -#define FREE_NAMBUF() -#define LEAVE_MKFS(res) return res - -#else /* LFN configurations */ -#if FF_MAX_LFN < 12 || FF_MAX_LFN > 255 -#error Wrong setting of FF_MAX_LFN -#endif -#if FF_LFN_BUF < FF_SFN_BUF || FF_SFN_BUF < 12 -#error Wrong setting of FF_LFN_BUF or FF_SFN_BUF -#endif -#if FF_LFN_UNICODE < 0 || FF_LFN_UNICODE > 3 -#error Wrong setting of FF_LFN_UNICODE -#endif -static const BYTE LfnOfs[] = {1,3,5,7,9,14,16,18,20,22,24,28,30}; /* FAT: Offset of LFN characters in the directory entry */ -#define MAXDIRB(nc) ((nc + 44U) / 15 * SZDIRE) /* exFAT: Size of directory entry block scratchpad buffer needed for the name length */ - -#if FF_USE_LFN == 1 /* LFN enabled with static working buffer */ -#if FF_FS_EXFAT -static BYTE DirBuf[MAXDIRB(FF_MAX_LFN)]; /* Directory entry block scratchpad buffer */ -#endif -static WCHAR LfnBuf[FF_MAX_LFN + 1]; /* LFN working buffer */ -#define DEF_NAMBUF -#define INIT_NAMBUF(fs) -#define FREE_NAMBUF() -#define LEAVE_MKFS(res) return res - -#elif FF_USE_LFN == 2 /* LFN enabled with dynamic working buffer on the stack */ -#if FF_FS_EXFAT -#define DEF_NAMBUF WCHAR lbuf[FF_MAX_LFN+1]; BYTE dbuf[MAXDIRB(FF_MAX_LFN)]; /* LFN working buffer and directory entry block scratchpad buffer */ -#define INIT_NAMBUF(fs) { (fs)->lfnbuf = lbuf; (fs)->dirbuf = dbuf; } -#define FREE_NAMBUF() -#else -#define DEF_NAMBUF WCHAR lbuf[FF_MAX_LFN+1]; /* LFN working buffer */ -#define INIT_NAMBUF(fs) { (fs)->lfnbuf = lbuf; } -#define FREE_NAMBUF() -#endif -#define LEAVE_MKFS(res) return res - -#elif FF_USE_LFN == 3 /* LFN enabled with dynamic working buffer on the heap */ -#if FF_FS_EXFAT -#define DEF_NAMBUF WCHAR *lfn; /* Pointer to LFN working buffer and directory entry block scratchpad buffer */ -#define INIT_NAMBUF(fs) { lfn = ff_memalloc((FF_MAX_LFN+1)*2 + MAXDIRB(FF_MAX_LFN)); if (!lfn) LEAVE_FF(fs, FR_NOT_ENOUGH_CORE); (fs)->lfnbuf = lfn; (fs)->dirbuf = (BYTE*)(lfn+FF_MAX_LFN+1); } -#define FREE_NAMBUF() ff_memfree(lfn) -#else -#define DEF_NAMBUF WCHAR *lfn; /* Pointer to LFN working buffer */ -#define INIT_NAMBUF(fs) { lfn = ff_memalloc((FF_MAX_LFN+1)*2); if (!lfn) LEAVE_FF(fs, FR_NOT_ENOUGH_CORE); (fs)->lfnbuf = lfn; } -#define FREE_NAMBUF() ff_memfree(lfn) -#endif -#define LEAVE_MKFS(res) { if (!work) ff_memfree(buf); return res; } -#define MAX_MALLOC 0x8000 /* Must be >=FF_MAX_SS */ - -#else -#error Wrong setting of FF_USE_LFN - -#endif /* FF_USE_LFN == 1 */ -#endif /* FF_USE_LFN == 0 */ - - - -/*--------------------------------*/ -/* Code conversion tables */ -/*--------------------------------*/ - -#if FF_CODE_PAGE == 0 /* Run-time code page configuration */ -#define CODEPAGE CodePage -static WORD CodePage; /* Current code page */ -static const BYTE *ExCvt, *DbcTbl; /* Pointer to current SBCS up-case table and DBCS code range table below */ - -static const BYTE Ct437[] = TBL_CT437; -static const BYTE Ct720[] = TBL_CT720; -static const BYTE Ct737[] = TBL_CT737; -static const BYTE Ct771[] = TBL_CT771; -static const BYTE Ct775[] = TBL_CT775; -static const BYTE Ct850[] = TBL_CT850; -static const BYTE Ct852[] = TBL_CT852; -static const BYTE Ct855[] = TBL_CT855; -static const BYTE Ct857[] = TBL_CT857; -static const BYTE Ct860[] = TBL_CT860; -static const BYTE Ct861[] = TBL_CT861; -static const BYTE Ct862[] = TBL_CT862; -static const BYTE Ct863[] = TBL_CT863; -static const BYTE Ct864[] = TBL_CT864; -static const BYTE Ct865[] = TBL_CT865; -static const BYTE Ct866[] = TBL_CT866; -static const BYTE Ct869[] = TBL_CT869; -static const BYTE Dc932[] = TBL_DC932; -static const BYTE Dc936[] = TBL_DC936; -static const BYTE Dc949[] = TBL_DC949; -static const BYTE Dc950[] = TBL_DC950; - -#elif FF_CODE_PAGE < 900 /* Static code page configuration (SBCS) */ -#define CODEPAGE FF_CODE_PAGE -static const BYTE ExCvt[] = MKCVTBL(TBL_CT, FF_CODE_PAGE); - -#else /* Static code page configuration (DBCS) */ -#define CODEPAGE FF_CODE_PAGE -static const BYTE DbcTbl[] = MKCVTBL(TBL_DC, FF_CODE_PAGE); - -#endif - - - - -/*-------------------------------------------------------------------------- - - Module Private Functions - ----------------------------------------------------------------------------*/ - - -/*-----------------------------------------------------------------------*/ -/* Load/Store multi-byte word in the FAT structure */ -/*-----------------------------------------------------------------------*/ - -static WORD ld_word (const BYTE* ptr) /* Load a 2-byte little-endian word */ -{ - WORD rv; - - rv = ptr[1]; - rv = rv << 8 | ptr[0]; - return rv; -} - -static DWORD ld_dword (const BYTE* ptr) /* Load a 4-byte little-endian word */ -{ - DWORD rv; - - rv = ptr[3]; - rv = rv << 8 | ptr[2]; - rv = rv << 8 | ptr[1]; - rv = rv << 8 | ptr[0]; - return rv; -} - -#if FF_FS_EXFAT -static QWORD ld_qword (const BYTE* ptr) /* Load an 8-byte little-endian word */ -{ - QWORD rv; - - rv = ptr[7]; - rv = rv << 8 | ptr[6]; - rv = rv << 8 | ptr[5]; - rv = rv << 8 | ptr[4]; - rv = rv << 8 | ptr[3]; - rv = rv << 8 | ptr[2]; - rv = rv << 8 | ptr[1]; - rv = rv << 8 | ptr[0]; - return rv; -} -#endif - -#if !FF_FS_READONLY -static void st_word (BYTE* ptr, WORD val) /* Store a 2-byte word in little-endian */ -{ - *ptr++ = (BYTE)val; val >>= 8; - *ptr++ = (BYTE)val; -} - -static void st_dword (BYTE* ptr, DWORD val) /* Store a 4-byte word in little-endian */ -{ - *ptr++ = (BYTE)val; val >>= 8; - *ptr++ = (BYTE)val; val >>= 8; - *ptr++ = (BYTE)val; val >>= 8; - *ptr++ = (BYTE)val; -} - -#if FF_FS_EXFAT -static void st_qword (BYTE* ptr, QWORD val) /* Store an 8-byte word in little-endian */ -{ - *ptr++ = (BYTE)val; val >>= 8; - *ptr++ = (BYTE)val; val >>= 8; - *ptr++ = (BYTE)val; val >>= 8; - *ptr++ = (BYTE)val; val >>= 8; - *ptr++ = (BYTE)val; val >>= 8; - *ptr++ = (BYTE)val; val >>= 8; - *ptr++ = (BYTE)val; val >>= 8; - *ptr++ = (BYTE)val; -} -#endif -#endif /* !FF_FS_READONLY */ - - - -/*-----------------------------------------------------------------------*/ -/* String functions */ -/*-----------------------------------------------------------------------*/ - -/* Copy memory to memory */ -static void mem_cpy (void* dst, const void* src, UINT cnt) -{ - BYTE *d = (BYTE*)dst; - const BYTE *s = (const BYTE*)src; - - if (cnt != 0) { - do { - *d++ = *s++; - } while (--cnt); - } -} - - -/* Fill memory block */ -static void mem_set (void* dst, int val, UINT cnt) -{ - BYTE *d = (BYTE*)dst; - - do { - *d++ = (BYTE)val; - } while (--cnt); -} - - -/* Compare memory block */ -static int mem_cmp (const void* dst, const void* src, UINT cnt) /* ZR:same, NZ:different */ -{ - const BYTE *d = (const BYTE *)dst, *s = (const BYTE *)src; - int r = 0; - - do { - r = *d++ - *s++; - } while (--cnt && r == 0); - - return r; -} - - -/* Check if chr is contained in the string */ -static int chk_chr (const char* str, int chr) /* NZ:contained, ZR:not contained */ -{ - while (*str && *str != chr) str++; - return *str; -} - - -/* Test if the character is DBC 1st byte */ -static int dbc_1st (BYTE c) -{ -#if FF_CODE_PAGE == 0 /* Variable code page */ - if (DbcTbl && c >= DbcTbl[0]) { - if (c <= DbcTbl[1]) return 1; /* 1st byte range 1 */ - if (c >= DbcTbl[2] && c <= DbcTbl[3]) return 1; /* 1st byte range 2 */ - } -#elif FF_CODE_PAGE >= 900 /* DBCS fixed code page */ - if (c >= DbcTbl[0]) { - if (c <= DbcTbl[1]) return 1; - if (c >= DbcTbl[2] && c <= DbcTbl[3]) return 1; - } -#else /* SBCS fixed code page */ - if (c != 0) return 0; /* Always false */ -#endif - return 0; -} - - -/* Test if the character is DBC 2nd byte */ -static int dbc_2nd (BYTE c) -{ -#if FF_CODE_PAGE == 0 /* Variable code page */ - if (DbcTbl && c >= DbcTbl[4]) { - if (c <= DbcTbl[5]) return 1; /* 2nd byte range 1 */ - if (c >= DbcTbl[6] && c <= DbcTbl[7]) return 1; /* 2nd byte range 2 */ - if (c >= DbcTbl[8] && c <= DbcTbl[9]) return 1; /* 2nd byte range 3 */ - } -#elif FF_CODE_PAGE >= 900 /* DBCS fixed code page */ - if (c >= DbcTbl[4]) { - if (c <= DbcTbl[5]) return 1; - if (c >= DbcTbl[6] && c <= DbcTbl[7]) return 1; - if (c >= DbcTbl[8] && c <= DbcTbl[9]) return 1; - } -#else /* SBCS fixed code page */ - if (c != 0) return 0; /* Always false */ -#endif - return 0; -} - - -#if FF_USE_LFN - -/* Get a character from TCHAR string in defined API encodeing */ -static DWORD tchar2uni ( /* Returns character in UTF-16 encoding (>=0x10000 on double encoding unit, 0xFFFFFFFF on decode error) */ - const TCHAR** str /* Pointer to pointer to TCHAR string in configured encoding */ -) -{ - DWORD uc; - const TCHAR *p = *str; - -#if FF_LFN_UNICODE == 1 /* UTF-16 input */ - WCHAR wc; - - uc = *p++; /* Get a unit */ - if (IsSurrogate(uc)) { /* Surrogate? */ - wc = *p++; /* Get low surrogate */ - if (!IsSurrogateH(uc) || !IsSurrogateL(wc)) return 0xFFFFFFFF; /* Wrong surrogate? */ - uc = uc << 16 | wc; - } - -#elif FF_LFN_UNICODE == 2 /* UTF-8 input */ - BYTE b; - int nf; - - uc = (BYTE)*p++; /* Get a unit */ - if (uc & 0x80) { /* Multiple byte code? */ - if ((uc & 0xE0) == 0xC0) { /* 2-byte sequence? */ - uc &= 0x1F; nf = 1; - } else { - if ((uc & 0xF0) == 0xE0) { /* 3-byte sequence? */ - uc &= 0x0F; nf = 2; - } else { - if ((uc & 0xF8) == 0xF0) { /* 4-byte sequence? */ - uc &= 0x07; nf = 3; - } else { /* Wrong sequence */ - return 0xFFFFFFFF; - } - } - } - do { /* Get trailing bytes */ - b = (BYTE)*p++; - if ((b & 0xC0) != 0x80) return 0xFFFFFFFF; /* Wrong sequence? */ - uc = uc << 6 | (b & 0x3F); - } while (--nf != 0); - if (uc < 0x80 || IsSurrogate(uc) || uc >= 0x110000) return 0xFFFFFFFF; /* Wrong code? */ - if (uc >= 0x010000) uc = 0xD800DC00 | ((uc - 0x10000) << 6 & 0x3FF0000) | (uc & 0x3FF); /* Make a surrogate pair if needed */ - } - -#elif FF_LFN_UNICODE == 3 /* UTF-32 input */ - uc = (TCHAR)*p++; /* Get a unit */ - if (uc >= 0x110000) return 0xFFFFFFFF; /* Wrong code? */ - if (uc >= 0x010000) uc = 0xD800DC00 | ((uc - 0x10000) << 6 & 0x3FF0000) | (uc & 0x3FF); /* Make a surrogate pair if needed */ - -#else /* ANSI/OEM input */ - BYTE b; - WCHAR wc; - - wc = (BYTE)*p++; /* Get a byte */ - if (dbc_1st((BYTE)wc)) { /* Is it a DBC 1st byte? */ - b = (BYTE)*p++; /* Get 2nd byte */ - if (!dbc_2nd(b)) return 0xFFFFFFFF; /* Invalid code? */ - wc = (wc << 8) + b; /* Make a DBC */ - } - if (wc != 0) { - wc = ff_oem2uni(wc, CODEPAGE); /* ANSI/OEM ==> Unicode */ - if (wc == 0) return 0xFFFFFFFF; /* Invalid code? */ - } - uc = wc; - -#endif - *str = p; /* Next read pointer */ - return uc; -} - - -/* Output a TCHAR string in defined API encoding */ -static BYTE put_utf ( /* Returns number of encoding units written (0:buffer overflow or wrong encoding) */ - DWORD chr, /* UTF-16 encoded character (Double encoding unit char if >=0x10000) */ - TCHAR* buf, /* Output buffer */ - UINT szb /* Size of the buffer */ -) -{ -#if FF_LFN_UNICODE == 1 /* UTF-16 output */ - WCHAR hs, wc; - - hs = (WCHAR)(chr >> 16); - wc = (WCHAR)chr; - if (hs == 0) { /* Single encoding unit? */ - if (szb < 1 || IsSurrogate(wc)) return 0; /* Buffer overflow or wrong code? */ - *buf = wc; - return 1; - } - if (szb < 2 || !IsSurrogateH(hs) || !IsSurrogateL(wc)) return 0; /* Buffer overflow or wrong surrogate? */ - *buf++ = hs; - *buf++ = wc; - return 2; - -#elif FF_LFN_UNICODE == 2 /* UTF-8 output */ - DWORD hc; - - if (chr < 0x80) { /* Single byte code? */ - if (szb < 1) return 0; /* Buffer overflow? */ - *buf = (TCHAR)chr; - return 1; - } - if (chr < 0x800) { /* 2-byte sequence? */ - if (szb < 2) return 0; /* Buffer overflow? */ - *buf++ = (TCHAR)(0xC0 | (chr >> 6 & 0x1F)); - *buf++ = (TCHAR)(0x80 | (chr >> 0 & 0x3F)); - return 2; - } - if (chr < 0x10000) { /* 3-byte sequence? */ - if (szb < 3 || IsSurrogate(chr)) return 0; /* Buffer overflow or wrong code? */ - *buf++ = (TCHAR)(0xE0 | (chr >> 12 & 0x0F)); - *buf++ = (TCHAR)(0x80 | (chr >> 6 & 0x3F)); - *buf++ = (TCHAR)(0x80 | (chr >> 0 & 0x3F)); - return 3; - } - /* 4-byte sequence */ - if (szb < 4) return 0; /* Buffer overflow? */ - hc = ((chr & 0xFFFF0000) - 0xD8000000) >> 6; /* Get high 10 bits */ - chr = (chr & 0xFFFF) - 0xDC00; /* Get low 10 bits */ - if (hc >= 0x100000 || chr >= 0x400) return 0; /* Wrong surrogate? */ - chr = (hc | chr) + 0x10000; - *buf++ = (TCHAR)(0xF0 | (chr >> 18 & 0x07)); - *buf++ = (TCHAR)(0x80 | (chr >> 12 & 0x3F)); - *buf++ = (TCHAR)(0x80 | (chr >> 6 & 0x3F)); - *buf++ = (TCHAR)(0x80 | (chr >> 0 & 0x3F)); - return 4; - -#elif FF_LFN_UNICODE == 3 /* UTF-32 output */ - DWORD hc; - - if (szb < 1) return 0; /* Buffer overflow? */ - if (chr >= 0x10000) { /* Out of BMP? */ - hc = ((chr & 0xFFFF0000) - 0xD8000000) >> 6; /* Get high 10 bits */ - chr = (chr & 0xFFFF) - 0xDC00; /* Get low 10 bits */ - if (hc >= 0x100000 || chr >= 0x400) return 0; /* Wrong surrogate? */ - chr = (hc | chr) + 0x10000; - } - *buf++ = (TCHAR)chr; - return 1; - -#else /* ANSI/OEM output */ - WCHAR wc; - - wc = ff_uni2oem(chr, CODEPAGE); - if (wc >= 0x100) { /* Is this a DBC? */ - if (szb < 2) return 0; - *buf++ = (char)(wc >> 8); /* Store DBC 1st byte */ - *buf++ = (TCHAR)wc; /* Store DBC 2nd byte */ - return 2; - } - if (wc == 0 || szb < 1) return 0; /* Invalid char or buffer overflow? */ - *buf++ = (TCHAR)wc; /* Store the character */ - return 1; -#endif -} -#endif /* FF_USE_LFN */ - - -#if FF_FS_REENTRANT -/*-----------------------------------------------------------------------*/ -/* Request/Release grant to access the volume */ -/*-----------------------------------------------------------------------*/ -static int lock_fs ( /* 1:Ok, 0:timeout */ - FATFS* fs /* Filesystem object */ -) -{ - return ff_req_grant(fs->sobj); -} - - -static void unlock_fs ( - FATFS* fs, /* Filesystem object */ - FRESULT res /* Result code to be returned */ -) -{ - if (fs && res != FR_NOT_ENABLED && res != FR_INVALID_DRIVE && res != FR_TIMEOUT) { - ff_rel_grant(fs->sobj); - } -} - -#endif - - - -#if FF_FS_LOCK != 0 -/*-----------------------------------------------------------------------*/ -/* File lock control functions */ -/*-----------------------------------------------------------------------*/ - -static FRESULT chk_lock ( /* Check if the file can be accessed */ - DIR* dp, /* Directory object pointing the file to be checked */ - int acc /* Desired access type (0:Read mode open, 1:Write mode open, 2:Delete or rename) */ -) -{ - UINT i, be; - - /* Search open object table for the object */ - be = 0; - for (i = 0; i < FF_FS_LOCK; i++) { - if (Files[i].fs) { /* Existing entry */ - if (Files[i].fs == dp->obj.fs && /* Check if the object matches with an open object */ - Files[i].clu == dp->obj.sclust && - Files[i].ofs == dp->dptr) break; - } else { /* Blank entry */ - be = 1; - } - } - if (i == FF_FS_LOCK) { /* The object has not been opened */ - return (!be && acc != 2) ? FR_TOO_MANY_OPEN_FILES : FR_OK; /* Is there a blank entry for new object? */ - } - - /* The object was opened. Reject any open against writing file and all write mode open */ - return (acc != 0 || Files[i].ctr == 0x100) ? FR_LOCKED : FR_OK; -} - - -static int enq_lock (void) /* Check if an entry is available for a new object */ -{ - UINT i; - - for (i = 0; i < FF_FS_LOCK && Files[i].fs; i++) ; - return (i == FF_FS_LOCK) ? 0 : 1; -} - - -static UINT inc_lock ( /* Increment object open counter and returns its index (0:Internal error) */ - DIR* dp, /* Directory object pointing the file to register or increment */ - int acc /* Desired access (0:Read, 1:Write, 2:Delete/Rename) */ -) -{ - UINT i; - - - for (i = 0; i < FF_FS_LOCK; i++) { /* Find the object */ - if (Files[i].fs == dp->obj.fs && - Files[i].clu == dp->obj.sclust && - Files[i].ofs == dp->dptr) break; - } - - if (i == FF_FS_LOCK) { /* Not opened. Register it as new. */ - for (i = 0; i < FF_FS_LOCK && Files[i].fs; i++) ; - if (i == FF_FS_LOCK) return 0; /* No free entry to register (int err) */ - Files[i].fs = dp->obj.fs; - Files[i].clu = dp->obj.sclust; - Files[i].ofs = dp->dptr; - Files[i].ctr = 0; - } - - if (acc >= 1 && Files[i].ctr) return 0; /* Access violation (int err) */ - - Files[i].ctr = acc ? 0x100 : Files[i].ctr + 1; /* Set semaphore value */ - - return i + 1; /* Index number origin from 1 */ -} - - -static FRESULT dec_lock ( /* Decrement object open counter */ - UINT i /* Semaphore index (1..) */ -) -{ - WORD n; - FRESULT res; - - - if (--i < FF_FS_LOCK) { /* Index number origin from 0 */ - n = Files[i].ctr; - if (n == 0x100) n = 0; /* If write mode open, delete the entry */ - if (n > 0) n--; /* Decrement read mode open count */ - Files[i].ctr = n; - if (n == 0) Files[i].fs = 0; /* Delete the entry if open count gets zero */ - res = FR_OK; - } else { - res = FR_INT_ERR; /* Invalid index nunber */ - } - return res; -} - - -static void clear_lock ( /* Clear lock entries of the volume */ - FATFS *fs -) -{ - UINT i; - - for (i = 0; i < FF_FS_LOCK; i++) { - if (Files[i].fs == fs) Files[i].fs = 0; - } -} - -#endif /* FF_FS_LOCK != 0 */ - - - -/*-----------------------------------------------------------------------*/ -/* Move/Flush disk access window in the filesystem object */ -/*-----------------------------------------------------------------------*/ -#if !FF_FS_READONLY -static FRESULT sync_window ( /* Returns FR_OK or FR_DISK_ERR */ - FATFS* fs /* Filesystem object */ -) -{ - FRESULT res = FR_OK; - - - if (fs->wflag) { /* Is the disk access window dirty */ - if (disk_write(fs->pdrv, fs->win, fs->winsect, 1) == RES_OK) { /* Write back the window */ - fs->wflag = 0; /* Clear window dirty flag */ - if (fs->winsect - fs->fatbase < fs->fsize) { /* Is it in the 1st FAT? */ - if (fs->n_fats == 2) disk_write(fs->pdrv, fs->win, fs->winsect + fs->fsize, 1); /* Reflect it to 2nd FAT if needed */ - } - } else { - res = FR_DISK_ERR; - } - } - return res; -} -#endif - - -static FRESULT move_window ( /* Returns FR_OK or FR_DISK_ERR */ - FATFS* fs, /* Filesystem object */ - DWORD sector /* Sector number to make appearance in the fs->win[] */ -) -{ - FRESULT res = FR_OK; - - - if (sector != fs->winsect) { /* Window offset changed? */ -#if !FF_FS_READONLY - res = sync_window(fs); /* Write-back changes */ -#endif - if (res == FR_OK) { /* Fill sector window with new data */ - if (disk_read(fs->pdrv, fs->win, sector, 1) != RES_OK) { - sector = 0xFFFFFFFF; /* Invalidate window if read data is not valid */ - res = FR_DISK_ERR; - } - fs->winsect = sector; - } - } - return res; -} - - - - -#if !FF_FS_READONLY -/*-----------------------------------------------------------------------*/ -/* Synchronize filesystem and data on the storage */ -/*-----------------------------------------------------------------------*/ - -static FRESULT sync_fs ( /* Returns FR_OK or FR_DISK_ERR */ - FATFS* fs /* Filesystem object */ -) -{ - FRESULT res; - - - res = sync_window(fs); - if (res == FR_OK) { - if (fs->fs_type == FS_FAT32 && fs->fsi_flag == 1) { /* FAT32: Update FSInfo sector if needed */ - /* Create FSInfo structure */ - mem_set(fs->win, 0, sizeof fs->win); - st_word(fs->win + BS_55AA, 0xAA55); - st_dword(fs->win + FSI_LeadSig, 0x41615252); - st_dword(fs->win + FSI_StrucSig, 0x61417272); - st_dword(fs->win + FSI_Free_Count, fs->free_clst); - st_dword(fs->win + FSI_Nxt_Free, fs->last_clst); - /* Write it into the FSInfo sector */ - fs->winsect = fs->volbase + 1; - disk_write(fs->pdrv, fs->win, fs->winsect, 1); - fs->fsi_flag = 0; - } - /* Make sure that no pending write process in the lower layer */ - if (disk_ioctl(fs->pdrv, CTRL_SYNC, 0) != RES_OK) res = FR_DISK_ERR; - } - - return res; -} - -#endif - - - -/*-----------------------------------------------------------------------*/ -/* Get physical sector number from cluster number */ -/*-----------------------------------------------------------------------*/ - -static DWORD clst2sect ( /* !=0:Sector number, 0:Failed (invalid cluster#) */ - FATFS* fs, /* Filesystem object */ - DWORD clst /* Cluster# to be converted */ -) -{ - clst -= 2; /* Cluster number is origin from 2 */ - if (clst >= fs->n_fatent - 2) return 0; /* Is it invalid cluster number? */ - return fs->database + fs->csize * clst; /* Start sector number of the cluster */ -} - - - - -/*-----------------------------------------------------------------------*/ -/* FAT access - Read value of a FAT entry */ -/*-----------------------------------------------------------------------*/ - -static DWORD get_fat ( /* 0xFFFFFFFF:Disk error, 1:Internal error, 2..0x7FFFFFFF:Cluster status */ - FFOBJID* obj, /* Corresponding object */ - DWORD clst /* Cluster number to get the value */ -) -{ - UINT wc, bc; - DWORD val; - FATFS *fs = obj->fs; - - - if (clst < 2 || clst >= fs->n_fatent) { /* Check if in valid range */ - val = 1; /* Internal error */ - - } else { - val = 0xFFFFFFFF; /* Default value falls on disk error */ - - switch (fs->fs_type) { - case FS_FAT12 : - bc = (UINT)clst; bc += bc / 2; - if (move_window(fs, fs->fatbase + (bc / SS(fs))) != FR_OK) break; - wc = fs->win[bc++ % SS(fs)]; /* Get 1st byte of the entry */ - if (move_window(fs, fs->fatbase + (bc / SS(fs))) != FR_OK) break; - wc |= fs->win[bc % SS(fs)] << 8; /* Merge 2nd byte of the entry */ - val = (clst & 1) ? (wc >> 4) : (wc & 0xFFF); /* Adjust bit position */ - break; - - case FS_FAT16 : - if (move_window(fs, fs->fatbase + (clst / (SS(fs) / 2))) != FR_OK) break; - val = ld_word(fs->win + clst * 2 % SS(fs)); /* Simple WORD array */ - break; - - case FS_FAT32 : - if (move_window(fs, fs->fatbase + (clst / (SS(fs) / 4))) != FR_OK) break; - val = ld_dword(fs->win + clst * 4 % SS(fs)) & 0x0FFFFFFF; /* Simple DWORD array but mask out upper 4 bits */ - break; -#if FF_FS_EXFAT - case FS_EXFAT : - if ((obj->objsize != 0 && obj->sclust != 0) || obj->stat == 0) { /* Object except root dir must have valid data length */ - DWORD cofs = clst - obj->sclust; /* Offset from start cluster */ - DWORD clen = (DWORD)((obj->objsize - 1) / SS(fs)) / fs->csize; /* Number of clusters - 1 */ - - if (obj->stat == 2 && cofs <= clen) { /* Is it a contiguous chain? */ - val = (cofs == clen) ? 0x7FFFFFFF : clst + 1; /* No data on the FAT, generate the value */ - break; - } - if (obj->stat == 3 && cofs < obj->n_cont) { /* Is it in the 1st fragment? */ - val = clst + 1; /* Generate the value */ - break; - } - if (obj->stat != 2) { /* Get value from FAT if FAT chain is valid */ - if (obj->n_frag != 0) { /* Is it on the growing edge? */ - val = 0x7FFFFFFF; /* Generate EOC */ - } else { - if (move_window(fs, fs->fatbase + (clst / (SS(fs) / 4))) != FR_OK) break; - val = ld_dword(fs->win + clst * 4 % SS(fs)) & 0x7FFFFFFF; - } - break; - } - } - /* go to default */ -#endif - default: - val = 1; /* Internal error */ - } - } - - return val; -} - - - - -#if !FF_FS_READONLY -/*-----------------------------------------------------------------------*/ -/* FAT access - Change value of a FAT entry */ -/*-----------------------------------------------------------------------*/ - -static FRESULT put_fat ( /* FR_OK(0):succeeded, !=0:error */ - FATFS* fs, /* Corresponding filesystem object */ - DWORD clst, /* FAT index number (cluster number) to be changed */ - DWORD val /* New value to be set to the entry */ -) -{ - UINT bc; - BYTE *p; - FRESULT res = FR_INT_ERR; - - - if (clst >= 2 && clst < fs->n_fatent) { /* Check if in valid range */ - switch (fs->fs_type) { - case FS_FAT12 : - bc = (UINT)clst; bc += bc / 2; /* bc: byte offset of the entry */ - res = move_window(fs, fs->fatbase + (bc / SS(fs))); - if (res != FR_OK) break; - p = fs->win + bc++ % SS(fs); - *p = (clst & 1) ? ((*p & 0x0F) | ((BYTE)val << 4)) : (BYTE)val; /* Put 1st byte */ - fs->wflag = 1; - res = move_window(fs, fs->fatbase + (bc / SS(fs))); - if (res != FR_OK) break; - p = fs->win + bc % SS(fs); - *p = (clst & 1) ? (BYTE)(val >> 4) : ((*p & 0xF0) | ((BYTE)(val >> 8) & 0x0F)); /* Put 2nd byte */ - fs->wflag = 1; - break; - - case FS_FAT16 : - res = move_window(fs, fs->fatbase + (clst / (SS(fs) / 2))); - if (res != FR_OK) break; - st_word(fs->win + clst * 2 % SS(fs), (WORD)val); /* Simple WORD array */ - fs->wflag = 1; - break; - - case FS_FAT32 : -#if FF_FS_EXFAT - case FS_EXFAT : -#endif - res = move_window(fs, fs->fatbase + (clst / (SS(fs) / 4))); - if (res != FR_OK) break; - if (!FF_FS_EXFAT || fs->fs_type != FS_EXFAT) { - val = (val & 0x0FFFFFFF) | (ld_dword(fs->win + clst * 4 % SS(fs)) & 0xF0000000); - } - st_dword(fs->win + clst * 4 % SS(fs), val); - fs->wflag = 1; - break; - } - } - return res; -} - -#endif /* !FF_FS_READONLY */ - - - - -#if FF_FS_EXFAT && !FF_FS_READONLY -/*-----------------------------------------------------------------------*/ -/* exFAT: Accessing FAT and Allocation Bitmap */ -/*-----------------------------------------------------------------------*/ - -/*--------------------------------------*/ -/* Find a contiguous free cluster block */ -/*--------------------------------------*/ - -static DWORD find_bitmap ( /* 0:Not found, 2..:Cluster block found, 0xFFFFFFFF:Disk error */ - FATFS* fs, /* Filesystem object */ - DWORD clst, /* Cluster number to scan from */ - DWORD ncl /* Number of contiguous clusters to find (1..) */ -) -{ - BYTE bm, bv; - UINT i; - DWORD val, scl, ctr; - - - clst -= 2; /* The first bit in the bitmap corresponds to cluster #2 */ - if (clst >= fs->n_fatent - 2) clst = 0; - scl = val = clst; ctr = 0; - for (;;) { - if (move_window(fs, fs->bitbase + val / 8 / SS(fs)) != FR_OK) return 0xFFFFFFFF; - i = val / 8 % SS(fs); bm = 1 << (val % 8); - do { - do { - bv = fs->win[i] & bm; bm <<= 1; /* Get bit value */ - if (++val >= fs->n_fatent - 2) { /* Next cluster (with wrap-around) */ - val = 0; bm = 0; i = SS(fs); - } - if (bv == 0) { /* Is it a free cluster? */ - if (++ctr == ncl) return scl + 2; /* Check if run length is sufficient for required */ - } else { - scl = val; ctr = 0; /* Encountered a cluster in-use, restart to scan */ - } - if (val == clst) return 0; /* All cluster scanned? */ - } while (bm != 0); - bm = 1; - } while (++i < SS(fs)); - } -} - - -/*----------------------------------------*/ -/* Set/Clear a block of allocation bitmap */ -/*----------------------------------------*/ - -static FRESULT change_bitmap ( - FATFS* fs, /* Filesystem object */ - DWORD clst, /* Cluster number to change from */ - DWORD ncl, /* Number of clusters to be changed */ - int bv /* bit value to be set (0 or 1) */ -) -{ - BYTE bm; - UINT i; - DWORD sect; - - - clst -= 2; /* The first bit corresponds to cluster #2 */ - sect = fs->bitbase + clst / 8 / SS(fs); /* Sector address */ - i = clst / 8 % SS(fs); /* Byte offset in the sector */ - bm = 1 << (clst % 8); /* Bit mask in the byte */ - for (;;) { - if (move_window(fs, sect++) != FR_OK) return FR_DISK_ERR; - do { - do { - if (bv == (int)((fs->win[i] & bm) != 0)) return FR_INT_ERR; /* Is the bit expected value? */ - fs->win[i] ^= bm; /* Flip the bit */ - fs->wflag = 1; - if (--ncl == 0) return FR_OK; /* All bits processed? */ - } while (bm <<= 1); /* Next bit */ - bm = 1; - } while (++i < SS(fs)); /* Next byte */ - i = 0; - } -} - - -/*---------------------------------------------*/ -/* Fill the first fragment of the FAT chain */ -/*---------------------------------------------*/ - -static FRESULT fill_first_frag ( - FFOBJID* obj /* Pointer to the corresponding object */ -) -{ - FRESULT res; - DWORD cl, n; - - - if (obj->stat == 3) { /* Has the object been changed 'fragmented' in this session? */ - for (cl = obj->sclust, n = obj->n_cont; n; cl++, n--) { /* Create cluster chain on the FAT */ - res = put_fat(obj->fs, cl, cl + 1); - if (res != FR_OK) return res; - } - obj->stat = 0; /* Change status 'FAT chain is valid' */ - } - return FR_OK; -} - - -/*---------------------------------------------*/ -/* Fill the last fragment of the FAT chain */ -/*---------------------------------------------*/ - -static FRESULT fill_last_frag ( - FFOBJID* obj, /* Pointer to the corresponding object */ - DWORD lcl, /* Last cluster of the fragment */ - DWORD term /* Value to set the last FAT entry */ -) -{ - FRESULT res; - - - while (obj->n_frag > 0) { /* Create the chain of last fragment */ - res = put_fat(obj->fs, lcl - obj->n_frag + 1, (obj->n_frag > 1) ? lcl - obj->n_frag + 2 : term); - if (res != FR_OK) return res; - obj->n_frag--; - } - return FR_OK; -} - -#endif /* FF_FS_EXFAT && !FF_FS_READONLY */ - - - -#if !FF_FS_READONLY -/*-----------------------------------------------------------------------*/ -/* FAT handling - Remove a cluster chain */ -/*-----------------------------------------------------------------------*/ - -static FRESULT remove_chain ( /* FR_OK(0):succeeded, !=0:error */ - FFOBJID* obj, /* Corresponding object */ - DWORD clst, /* Cluster to remove a chain from */ - DWORD pclst /* Previous cluster of clst (0 if entire chain) */ -) -{ - FRESULT res = FR_OK; - DWORD nxt; - FATFS *fs = obj->fs; -#if FF_FS_EXFAT || FF_USE_TRIM - DWORD scl = clst, ecl = clst; -#endif -#if FF_USE_TRIM - DWORD rt[2]; -#endif - - if (clst < 2 || clst >= fs->n_fatent) return FR_INT_ERR; /* Check if in valid range */ - - /* Mark the previous cluster 'EOC' on the FAT if it exists */ - if (pclst != 0 && (!FF_FS_EXFAT || fs->fs_type != FS_EXFAT || obj->stat != 2)) { - res = put_fat(fs, pclst, 0xFFFFFFFF); - if (res != FR_OK) return res; - } - - /* Remove the chain */ - do { - nxt = get_fat(obj, clst); /* Get cluster status */ - if (nxt == 0) break; /* Empty cluster? */ - if (nxt == 1) return FR_INT_ERR; /* Internal error? */ - if (nxt == 0xFFFFFFFF) return FR_DISK_ERR; /* Disk error? */ - if (!FF_FS_EXFAT || fs->fs_type != FS_EXFAT) { - res = put_fat(fs, clst, 0); /* Mark the cluster 'free' on the FAT */ - if (res != FR_OK) return res; - } - if (fs->free_clst < fs->n_fatent - 2) { /* Update FSINFO */ - fs->free_clst++; - fs->fsi_flag |= 1; - } -#if FF_FS_EXFAT || FF_USE_TRIM - if (ecl + 1 == nxt) { /* Is next cluster contiguous? */ - ecl = nxt; - } else { /* End of contiguous cluster block */ -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { - res = change_bitmap(fs, scl, ecl - scl + 1, 0); /* Mark the cluster block 'free' on the bitmap */ - if (res != FR_OK) return res; - } -#endif -#if FF_USE_TRIM - rt[0] = clst2sect(fs, scl); /* Start of data area freed */ - rt[1] = clst2sect(fs, ecl) + fs->csize - 1; /* End of data area freed */ - disk_ioctl(fs->pdrv, CTRL_TRIM, rt); /* Inform device the data in the block is no longer needed */ -#endif - scl = ecl = nxt; - } -#endif - clst = nxt; /* Next cluster */ - } while (clst < fs->n_fatent); /* Repeat while not the last link */ - -#if FF_FS_EXFAT - /* Some post processes for chain status */ - if (fs->fs_type == FS_EXFAT) { - if (pclst == 0) { /* Has the entire chain been removed? */ - obj->stat = 0; /* Change the chain status 'initial' */ - } else { - if (obj->stat == 0) { /* Is it a fragmented chain from the beginning of this session? */ - clst = obj->sclust; /* Follow the chain to check if it gets contiguous */ - while (clst != pclst) { - nxt = get_fat(obj, clst); - if (nxt < 2) return FR_INT_ERR; - if (nxt == 0xFFFFFFFF) return FR_DISK_ERR; - if (nxt != clst + 1) break; /* Not contiguous? */ - clst++; - } - if (clst == pclst) { /* Has the chain got contiguous again? */ - obj->stat = 2; /* Change the chain status 'contiguous' */ - } - } else { - if (obj->stat == 3 && pclst >= obj->sclust && pclst <= obj->sclust + obj->n_cont) { /* Was the chain fragmented in this session and got contiguous again? */ - obj->stat = 2; /* Change the chain status 'contiguous' */ - } - } - } - } -#endif - return FR_OK; -} - - - - -/*-----------------------------------------------------------------------*/ -/* FAT handling - Stretch a chain or Create a new chain */ -/*-----------------------------------------------------------------------*/ - -static DWORD create_chain ( /* 0:No free cluster, 1:Internal error, 0xFFFFFFFF:Disk error, >=2:New cluster# */ - FFOBJID* obj, /* Corresponding object */ - DWORD clst /* Cluster# to stretch, 0:Create a new chain */ -) -{ - DWORD cs, ncl, scl; - FRESULT res; - FATFS *fs = obj->fs; - - - if (clst == 0) { /* Create a new chain */ - scl = fs->last_clst; /* Suggested cluster to start to find */ - if (scl == 0 || scl >= fs->n_fatent) scl = 1; - } - else { /* Stretch a chain */ - cs = get_fat(obj, clst); /* Check the cluster status */ - if (cs < 2) return 1; /* Test for insanity */ - if (cs == 0xFFFFFFFF) return cs; /* Test for disk error */ - if (cs < fs->n_fatent) return cs; /* It is already followed by next cluster */ - scl = clst; /* Cluster to start to find */ - } - if (fs->free_clst == 0) return 0; /* No free cluster */ - -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { /* On the exFAT volume */ - ncl = find_bitmap(fs, scl, 1); /* Find a free cluster */ - if (ncl == 0 || ncl == 0xFFFFFFFF) return ncl; /* No free cluster or hard error? */ - res = change_bitmap(fs, ncl, 1, 1); /* Mark the cluster 'in use' */ - if (res == FR_INT_ERR) return 1; - if (res == FR_DISK_ERR) return 0xFFFFFFFF; - if (clst == 0) { /* Is it a new chain? */ - obj->stat = 2; /* Set status 'contiguous' */ - } else { /* It is a stretched chain */ - if (obj->stat == 2 && ncl != scl + 1) { /* Is the chain got fragmented? */ - obj->n_cont = scl - obj->sclust; /* Set size of the contiguous part */ - obj->stat = 3; /* Change status 'just fragmented' */ - } - } - if (obj->stat != 2) { /* Is the file non-contiguous? */ - if (ncl == clst + 1) { /* Is the cluster next to previous one? */ - obj->n_frag = obj->n_frag ? obj->n_frag + 1 : 2; /* Increment size of last framgent */ - } else { /* New fragment */ - if (obj->n_frag == 0) obj->n_frag = 1; - res = fill_last_frag(obj, clst, ncl); /* Fill last fragment on the FAT and link it to new one */ - if (res == FR_OK) obj->n_frag = 1; - } - } - } else -#endif - { /* On the FAT/FAT32 volume */ - ncl = 0; - if (scl == clst) { /* Stretching an existing chain? */ - ncl = scl + 1; /* Test if next cluster is free */ - if (ncl >= fs->n_fatent) ncl = 2; - cs = get_fat(obj, ncl); /* Get next cluster status */ - if (cs == 1 || cs == 0xFFFFFFFF) return cs; /* Test for error */ - if (cs != 0) { /* Not free? */ - cs = fs->last_clst; /* Start at suggested cluster if it is valid */ - if (cs >= 2 && cs < fs->n_fatent) scl = cs; - ncl = 0; - } - } - if (ncl == 0) { /* The new cluster cannot be contiguous and find another fragment */ - ncl = scl; /* Start cluster */ - for (;;) { - ncl++; /* Next cluster */ - if (ncl >= fs->n_fatent) { /* Check wrap-around */ - ncl = 2; - if (ncl > scl) return 0; /* No free cluster found? */ - } - cs = get_fat(obj, ncl); /* Get the cluster status */ - if (cs == 0) break; /* Found a free cluster? */ - if (cs == 1 || cs == 0xFFFFFFFF) return cs; /* Test for error */ - if (ncl == scl) return 0; /* No free cluster found? */ - } - } - res = put_fat(fs, ncl, 0xFFFFFFFF); /* Mark the new cluster 'EOC' */ - if (res == FR_OK && clst != 0) { - res = put_fat(fs, clst, ncl); /* Link it from the previous one if needed */ - } - } - - if (res == FR_OK) { /* Update FSINFO if function succeeded. */ - fs->last_clst = ncl; - if (fs->free_clst <= fs->n_fatent - 2) fs->free_clst--; - fs->fsi_flag |= 1; - } else { - ncl = (res == FR_DISK_ERR) ? 0xFFFFFFFF : 1; /* Failed. Generate error status */ - } - - return ncl; /* Return new cluster number or error status */ -} - -#endif /* !FF_FS_READONLY */ - - - - -#if FF_USE_FASTSEEK -/*-----------------------------------------------------------------------*/ -/* FAT handling - Convert offset into cluster with link map table */ -/*-----------------------------------------------------------------------*/ - -static DWORD clmt_clust ( /* <2:Error, >=2:Cluster number */ - FIL* fp, /* Pointer to the file object */ - FSIZE_t ofs /* File offset to be converted to cluster# */ -) -{ - DWORD cl, ncl, *tbl; - FATFS *fs = fp->obj.fs; - - - tbl = fp->cltbl + 1; /* Top of CLMT */ - cl = (DWORD)(ofs / SS(fs) / fs->csize); /* Cluster order from top of the file */ - for (;;) { - ncl = *tbl++; /* Number of cluters in the fragment */ - if (ncl == 0) return 0; /* End of table? (error) */ - if (cl < ncl) break; /* In this fragment? */ - cl -= ncl; tbl++; /* Next fragment */ - } - return cl + *tbl; /* Return the cluster number */ -} - -#endif /* FF_USE_FASTSEEK */ - - - - -/*-----------------------------------------------------------------------*/ -/* Directory handling - Fill a cluster with zeros */ -/*-----------------------------------------------------------------------*/ - -#if !FF_FS_READONLY -static FRESULT dir_clear ( /* Returns FR_OK or FR_DISK_ERR */ - FATFS *fs, /* Filesystem object */ - DWORD clst /* Directory table to clear */ -) -{ - DWORD sect; - UINT n, szb; - BYTE *ibuf; - - - if (sync_window(fs) != FR_OK) return FR_DISK_ERR; /* Flush disk access window */ - sect = clst2sect(fs, clst); /* Top of the cluster */ - fs->winsect = sect; /* Set window to top of the cluster */ - mem_set(fs->win, 0, sizeof fs->win); /* Clear window buffer */ -#if FF_USE_LFN == 3 /* Quick table clear by using multi-secter write */ - /* Allocate a temporary buffer */ - for (szb = ((DWORD)fs->csize * SS(fs) >= MAX_MALLOC) ? MAX_MALLOC : fs->csize * SS(fs), ibuf = 0; szb > SS(fs) && (ibuf = ff_memalloc(szb)) == 0; szb /= 2) ; - if (szb > SS(fs)) { /* Buffer allocated? */ - mem_set(ibuf, 0, szb); - szb /= SS(fs); /* Bytes -> Sectors */ - for (n = 0; n < fs->csize && disk_write(fs->pdrv, ibuf, sect + n, szb) == RES_OK; n += szb) ; /* Fill the cluster with 0 */ - ff_memfree(ibuf); - } else -#endif - { - ibuf = fs->win; szb = 1; /* Use window buffer (many single-sector writes may take a time) */ - for (n = 0; n < fs->csize && disk_write(fs->pdrv, ibuf, sect + n, szb) == RES_OK; n += szb) ; /* Fill the cluster with 0 */ - } - return (n == fs->csize) ? FR_OK : FR_DISK_ERR; -} -#endif /* !FF_FS_READONLY */ - - - - -/*-----------------------------------------------------------------------*/ -/* Directory handling - Set directory index */ -/*-----------------------------------------------------------------------*/ - -static FRESULT dir_sdi ( /* FR_OK(0):succeeded, !=0:error */ - DIR* dp, /* Pointer to directory object */ - DWORD ofs /* Offset of directory table */ -) -{ - DWORD csz, clst; - FATFS *fs = dp->obj.fs; - - - if (ofs >= (DWORD)((FF_FS_EXFAT && fs->fs_type == FS_EXFAT) ? MAX_DIR_EX : MAX_DIR) || ofs % SZDIRE) { /* Check range of offset and alignment */ - return FR_INT_ERR; - } - dp->dptr = ofs; /* Set current offset */ - clst = dp->obj.sclust; /* Table start cluster (0:root) */ - if (clst == 0 && fs->fs_type >= FS_FAT32) { /* Replace cluster# 0 with root cluster# */ - clst = fs->dirbase; - if (FF_FS_EXFAT) dp->obj.stat = 0; /* exFAT: Root dir has an FAT chain */ - } - - if (clst == 0) { /* Static table (root-directory on the FAT volume) */ - if (ofs / SZDIRE >= fs->n_rootdir) return FR_INT_ERR; /* Is index out of range? */ - dp->sect = fs->dirbase; - - } else { /* Dynamic table (sub-directory or root-directory on the FAT32/exFAT volume) */ - csz = (DWORD)fs->csize * SS(fs); /* Bytes per cluster */ - while (ofs >= csz) { /* Follow cluster chain */ - clst = get_fat(&dp->obj, clst); /* Get next cluster */ - if (clst == 0xFFFFFFFF) return FR_DISK_ERR; /* Disk error */ - if (clst < 2 || clst >= fs->n_fatent) return FR_INT_ERR; /* Reached to end of table or internal error */ - ofs -= csz; - } - dp->sect = clst2sect(fs, clst); - } - dp->clust = clst; /* Current cluster# */ - if (dp->sect == 0) return FR_INT_ERR; - dp->sect += ofs / SS(fs); /* Sector# of the directory entry */ - dp->dir = fs->win + (ofs % SS(fs)); /* Pointer to the entry in the win[] */ - - return FR_OK; -} - - - - -/*-----------------------------------------------------------------------*/ -/* Directory handling - Move directory table index next */ -/*-----------------------------------------------------------------------*/ - -static FRESULT dir_next ( /* FR_OK(0):succeeded, FR_NO_FILE:End of table, FR_DENIED:Could not stretch */ - DIR* dp, /* Pointer to the directory object */ - int stretch /* 0: Do not stretch table, 1: Stretch table if needed */ -) -{ - DWORD ofs, clst; - FATFS *fs = dp->obj.fs; - - - ofs = dp->dptr + SZDIRE; /* Next entry */ - if (ofs >= (DWORD)((FF_FS_EXFAT && fs->fs_type == FS_EXFAT) ? MAX_DIR_EX : MAX_DIR)) dp->sect = 0; /* Disable it if the offset reached the max value */ - if (dp->sect == 0) return FR_NO_FILE; /* Report EOT if it has been disabled */ - - if (ofs % SS(fs) == 0) { /* Sector changed? */ - dp->sect++; /* Next sector */ - - if (dp->clust == 0) { /* Static table */ - if (ofs / SZDIRE >= fs->n_rootdir) { /* Report EOT if it reached end of static table */ - dp->sect = 0; return FR_NO_FILE; - } - } - else { /* Dynamic table */ - if ((ofs / SS(fs) & (fs->csize - 1)) == 0) { /* Cluster changed? */ - clst = get_fat(&dp->obj, dp->clust); /* Get next cluster */ - if (clst <= 1) return FR_INT_ERR; /* Internal error */ - if (clst == 0xFFFFFFFF) return FR_DISK_ERR; /* Disk error */ - if (clst >= fs->n_fatent) { /* It reached end of dynamic table */ -#if !FF_FS_READONLY - if (!stretch) { /* If no stretch, report EOT */ - dp->sect = 0; return FR_NO_FILE; - } - clst = create_chain(&dp->obj, dp->clust); /* Allocate a cluster */ - if (clst == 0) return FR_DENIED; /* No free cluster */ - if (clst == 1) return FR_INT_ERR; /* Internal error */ - if (clst == 0xFFFFFFFF) return FR_DISK_ERR; /* Disk error */ - if (dir_clear(fs, clst) != FR_OK) return FR_DISK_ERR; /* Clean up the stretched table */ - if (FF_FS_EXFAT) dp->obj.stat |= 4; /* exFAT: The directory has been stretched */ -#else - if (!stretch) dp->sect = 0; /* (this line is to suppress compiler warning) */ - dp->sect = 0; return FR_NO_FILE; /* Report EOT */ -#endif - } - dp->clust = clst; /* Initialize data for new cluster */ - dp->sect = clst2sect(fs, clst); - } - } - } - dp->dptr = ofs; /* Current entry */ - dp->dir = fs->win + ofs % SS(fs); /* Pointer to the entry in the win[] */ - - return FR_OK; -} - - - - -#if !FF_FS_READONLY -/*-----------------------------------------------------------------------*/ -/* Directory handling - Reserve a block of directory entries */ -/*-----------------------------------------------------------------------*/ - -static FRESULT dir_alloc ( /* FR_OK(0):succeeded, !=0:error */ - DIR* dp, /* Pointer to the directory object */ - UINT nent /* Number of contiguous entries to allocate */ -) -{ - FRESULT res; - UINT n; - FATFS *fs = dp->obj.fs; - - - res = dir_sdi(dp, 0); - if (res == FR_OK) { - n = 0; - do { - res = move_window(fs, dp->sect); - if (res != FR_OK) break; -#if FF_FS_EXFAT - if ((fs->fs_type == FS_EXFAT) ? (int)((dp->dir[XDIR_Type] & 0x80) == 0) : (int)(dp->dir[DIR_Name] == DDEM || dp->dir[DIR_Name] == 0)) { -#else - if (dp->dir[DIR_Name] == DDEM || dp->dir[DIR_Name] == 0) { -#endif - if (++n == nent) break; /* A block of contiguous free entries is found */ - } else { - n = 0; /* Not a blank entry. Restart to search */ - } - res = dir_next(dp, 1); - } while (res == FR_OK); /* Next entry with table stretch enabled */ - } - - if (res == FR_NO_FILE) res = FR_DENIED; /* No directory entry to allocate */ - return res; -} - -#endif /* !FF_FS_READONLY */ - - - - -/*-----------------------------------------------------------------------*/ -/* FAT: Directory handling - Load/Store start cluster number */ -/*-----------------------------------------------------------------------*/ - -static DWORD ld_clust ( /* Returns the top cluster value of the SFN entry */ - FATFS* fs, /* Pointer to the fs object */ - const BYTE* dir /* Pointer to the key entry */ -) -{ - DWORD cl; - - cl = ld_word(dir + DIR_FstClusLO); - if (fs->fs_type == FS_FAT32) { - cl |= (DWORD)ld_word(dir + DIR_FstClusHI) << 16; - } - - return cl; -} - - -#if !FF_FS_READONLY -static void st_clust ( - FATFS* fs, /* Pointer to the fs object */ - BYTE* dir, /* Pointer to the key entry */ - DWORD cl /* Value to be set */ -) -{ - st_word(dir + DIR_FstClusLO, (WORD)cl); - if (fs->fs_type == FS_FAT32) { - st_word(dir + DIR_FstClusHI, (WORD)(cl >> 16)); - } -} -#endif - - - -#if FF_USE_LFN -/*--------------------------------------------------------*/ -/* FAT-LFN: Compare a part of file name with an LFN entry */ -/*--------------------------------------------------------*/ - -static int cmp_lfn ( /* 1:matched, 0:not matched */ - const WCHAR* lfnbuf, /* Pointer to the LFN working buffer to be compared */ - BYTE* dir /* Pointer to the directory entry containing the part of LFN */ -) -{ - UINT i, s; - WCHAR wc, uc; - - - if (ld_word(dir + LDIR_FstClusLO) != 0) return 0; /* Check LDIR_FstClusLO */ - - i = ((dir[LDIR_Ord] & 0x3F) - 1) * 13; /* Offset in the LFN buffer */ - - for (wc = 1, s = 0; s < 13; s++) { /* Process all characters in the entry */ - uc = ld_word(dir + LfnOfs[s]); /* Pick an LFN character */ - if (wc != 0) { - if (i >= FF_MAX_LFN || ff_wtoupper(uc) != ff_wtoupper(lfnbuf[i++])) { /* Compare it */ - return 0; /* Not matched */ - } - wc = uc; - } else { - if (uc != 0xFFFF) return 0; /* Check filler */ - } - } - - if ((dir[LDIR_Ord] & LLEF) && wc && lfnbuf[i]) return 0; /* Last segment matched but different length */ - - return 1; /* The part of LFN matched */ -} - - -#if FF_FS_MINIMIZE <= 1 || FF_FS_RPATH >= 2 || FF_USE_LABEL || FF_FS_EXFAT -/*-----------------------------------------------------*/ -/* FAT-LFN: Pick a part of file name from an LFN entry */ -/*-----------------------------------------------------*/ - -static int pick_lfn ( /* 1:succeeded, 0:buffer overflow or invalid LFN entry */ - WCHAR* lfnbuf, /* Pointer to the LFN working buffer */ - BYTE* dir /* Pointer to the LFN entry */ -) -{ - UINT i, s; - WCHAR wc, uc; - - - if (ld_word(dir + LDIR_FstClusLO) != 0) return 0; /* Check LDIR_FstClusLO is 0 */ - - i = ((dir[LDIR_Ord] & ~LLEF) - 1) * 13; /* Offset in the LFN buffer */ - - for (wc = 1, s = 0; s < 13; s++) { /* Process all characters in the entry */ - uc = ld_word(dir + LfnOfs[s]); /* Pick an LFN character */ - if (wc != 0) { - if (i >= FF_MAX_LFN) return 0; /* Buffer overflow? */ - lfnbuf[i++] = wc = uc; /* Store it */ - } else { - if (uc != 0xFFFF) return 0; /* Check filler */ - } - } - - if (dir[LDIR_Ord] & LLEF) { /* Put terminator if it is the last LFN part */ - if (i >= FF_MAX_LFN) return 0; /* Buffer overflow? */ - lfnbuf[i] = 0; - } - - return 1; /* The part of LFN is valid */ -} -#endif - - -#if !FF_FS_READONLY -/*-----------------------------------------*/ -/* FAT-LFN: Create an entry of LFN entries */ -/*-----------------------------------------*/ - -static void put_lfn ( - const WCHAR* lfn, /* Pointer to the LFN */ - BYTE* dir, /* Pointer to the LFN entry to be created */ - BYTE ord, /* LFN order (1-20) */ - BYTE sum /* Checksum of the corresponding SFN */ -) -{ - UINT i, s; - WCHAR wc; - - - dir[LDIR_Chksum] = sum; /* Set checksum */ - dir[LDIR_Attr] = AM_LFN; /* Set attribute. LFN entry */ - dir[LDIR_Type] = 0; - st_word(dir + LDIR_FstClusLO, 0); - - i = (ord - 1) * 13; /* Get offset in the LFN working buffer */ - s = wc = 0; - do { - if (wc != 0xFFFF) wc = lfn[i++]; /* Get an effective character */ - st_word(dir + LfnOfs[s], wc); /* Put it */ - if (wc == 0) wc = 0xFFFF; /* Padding characters for left locations */ - } while (++s < 13); - if (wc == 0xFFFF || !lfn[i]) ord |= LLEF; /* Last LFN part is the start of LFN sequence */ - dir[LDIR_Ord] = ord; /* Set the LFN order */ -} - -#endif /* !FF_FS_READONLY */ -#endif /* FF_USE_LFN */ - - - -#if FF_USE_LFN && !FF_FS_READONLY -/*-----------------------------------------------------------------------*/ -/* FAT-LFN: Create a Numbered SFN */ -/*-----------------------------------------------------------------------*/ - -static void gen_numname ( - BYTE* dst, /* Pointer to the buffer to store numbered SFN */ - const BYTE* src, /* Pointer to SFN */ - const WCHAR* lfn, /* Pointer to LFN */ - UINT seq /* Sequence number */ -) -{ - BYTE ns[8], c; - UINT i, j; - WCHAR wc; - DWORD sr; - - - mem_cpy(dst, src, 11); - - if (seq > 5) { /* In case of many collisions, generate a hash number instead of sequential number */ - sr = seq; - while (*lfn) { /* Create a CRC as hash value */ - wc = *lfn++; - for (i = 0; i < 16; i++) { - sr = (sr << 1) + (wc & 1); - wc >>= 1; - if (sr & 0x10000) sr ^= 0x11021; - } - } - seq = (UINT)sr; - } - - /* itoa (hexdecimal) */ - i = 7; - do { - c = (BYTE)((seq % 16) + '0'); - if (c > '9') c += 7; - ns[i--] = c; - seq /= 16; - } while (seq); - ns[i] = '~'; - - /* Append the number to the SFN body */ - for (j = 0; j < i && dst[j] != ' '; j++) { - if (dbc_1st(dst[j])) { - if (j == i - 1) break; - j++; - } - } - do { - dst[j++] = (i < 8) ? ns[i++] : ' '; - } while (j < 8); -} -#endif /* FF_USE_LFN && !FF_FS_READONLY */ - - - -#if FF_USE_LFN -/*-----------------------------------------------------------------------*/ -/* FAT-LFN: Calculate checksum of an SFN entry */ -/*-----------------------------------------------------------------------*/ - -static BYTE sum_sfn ( - const BYTE* dir /* Pointer to the SFN entry */ -) -{ - BYTE sum = 0; - UINT n = 11; - - do { - sum = (sum >> 1) + (sum << 7) + *dir++; - } while (--n); - return sum; -} - -#endif /* FF_USE_LFN */ - - - -#if FF_FS_EXFAT -/*-----------------------------------------------------------------------*/ -/* exFAT: Checksum */ -/*-----------------------------------------------------------------------*/ - -static WORD xdir_sum ( /* Get checksum of the directoly entry block */ - const BYTE* dir /* Directory entry block to be calculated */ -) -{ - UINT i, szblk; - WORD sum; - - - szblk = (dir[XDIR_NumSec] + 1) * SZDIRE; /* Number of bytes of the entry block */ - for (i = sum = 0; i < szblk; i++) { - if (i == XDIR_SetSum) { /* Skip 2-byte sum field */ - i++; - } else { - sum = ((sum & 1) ? 0x8000 : 0) + (sum >> 1) + dir[i]; - } - } - return sum; -} - - - -static WORD xname_sum ( /* Get check sum (to be used as hash) of the file name */ - const WCHAR* name /* File name to be calculated */ -) -{ - WCHAR chr; - WORD sum = 0; - - - while ((chr = *name++) != 0) { - chr = (WCHAR)ff_wtoupper(chr); /* File name needs to be up-case converted */ - sum = ((sum & 1) ? 0x8000 : 0) + (sum >> 1) + (chr & 0xFF); - sum = ((sum & 1) ? 0x8000 : 0) + (sum >> 1) + (chr >> 8); - } - return sum; -} - - -#if !FF_FS_READONLY && FF_USE_MKFS -static DWORD xsum32 ( /* Returns 32-bit checksum */ - BYTE dat, /* Byte to be calculated (byte-by-byte processing) */ - DWORD sum /* Previous sum value */ -) -{ - sum = ((sum & 1) ? 0x80000000 : 0) + (sum >> 1) + dat; - return sum; -} -#endif - - -#if FF_FS_MINIMIZE <= 1 || FF_FS_RPATH >= 2 -/*------------------------------------------------------*/ -/* exFAT: Get object information from a directory block */ -/*------------------------------------------------------*/ - -static void get_xfileinfo ( - BYTE* dirb, /* Pointer to the direcotry entry block 85+C0+C1s */ - FILINFO* fno /* Buffer to store the extracted file information */ -) -{ - WCHAR wc, hs; - UINT di, si, nc; - - /* Get file name from the entry block */ - si = SZDIRE * 2; /* 1st C1 entry */ - nc = 0; hs = 0; di = 0; - while (nc < dirb[XDIR_NumName]) { - if (si >= MAXDIRB(FF_MAX_LFN)) { di = 0; break; } /* Truncated directory block? */ - if ((si % SZDIRE) == 0) si += 2; /* Skip entry type field */ - wc = ld_word(dirb + si); si += 2; nc++; /* Get a character */ - if (hs == 0 && IsSurrogate(wc)) { /* Is it a surrogate? */ - hs = wc; continue; /* Get low surrogate */ - } - wc = put_utf((DWORD)hs << 16 | wc, &fno->fname[di], FF_LFN_BUF - di); /* Store it in API encoding */ - if (wc == 0) { di = 0; break; } /* Buffer overflow or wrong encoding? */ - di += wc; - hs = 0; - } - if (hs != 0) di = 0; /* Broken surrogate pair? */ - if (di == 0) fno->fname[di++] = '?'; /* Inaccessible object name? */ - fno->fname[di] = 0; /* Terminate the name */ - fno->altname[0] = 0; /* exFAT does not support SFN */ - - fno->fattrib = dirb[XDIR_Attr]; /* Attribute */ - fno->fsize = (fno->fattrib & AM_DIR) ? 0 : ld_qword(dirb + XDIR_FileSize); /* Size */ - fno->ftime = ld_word(dirb + XDIR_ModTime + 0); /* Time */ - fno->fdate = ld_word(dirb + XDIR_ModTime + 2); /* Date */ -} - -#endif /* FF_FS_MINIMIZE <= 1 || FF_FS_RPATH >= 2 */ - - -/*-----------------------------------*/ -/* exFAT: Get a directry entry block */ -/*-----------------------------------*/ - -static FRESULT load_xdir ( /* FR_INT_ERR: invalid entry block */ - DIR* dp /* Reading direcotry object pointing top of the entry block to load */ -) -{ - FRESULT res; - UINT i, sz_ent; - BYTE* dirb = dp->obj.fs->dirbuf; /* Pointer to the on-memory direcotry entry block 85+C0+C1s */ - - - /* Load file-directory entry */ - res = move_window(dp->obj.fs, dp->sect); - if (res != FR_OK) return res; - if (dp->dir[XDIR_Type] != ET_FILEDIR) return FR_INT_ERR; /* Invalid order */ - mem_cpy(dirb + 0 * SZDIRE, dp->dir, SZDIRE); - sz_ent = (dirb[XDIR_NumSec] + 1) * SZDIRE; - if (sz_ent < 3 * SZDIRE || sz_ent > 19 * SZDIRE) return FR_INT_ERR; - - /* Load stream-extension entry */ - res = dir_next(dp, 0); - if (res == FR_NO_FILE) res = FR_INT_ERR; /* It cannot be */ - if (res != FR_OK) return res; - res = move_window(dp->obj.fs, dp->sect); - if (res != FR_OK) return res; - if (dp->dir[XDIR_Type] != ET_STREAM) return FR_INT_ERR; /* Invalid order */ - mem_cpy(dirb + 1 * SZDIRE, dp->dir, SZDIRE); - if (MAXDIRB(dirb[XDIR_NumName]) > sz_ent) return FR_INT_ERR; - - /* Load file-name entries */ - i = 2 * SZDIRE; /* Name offset to load */ - do { - res = dir_next(dp, 0); - if (res == FR_NO_FILE) res = FR_INT_ERR; /* It cannot be */ - if (res != FR_OK) return res; - res = move_window(dp->obj.fs, dp->sect); - if (res != FR_OK) return res; - if (dp->dir[XDIR_Type] != ET_FILENAME) return FR_INT_ERR; /* Invalid order */ - if (i < MAXDIRB(FF_MAX_LFN)) mem_cpy(dirb + i, dp->dir, SZDIRE); - } while ((i += SZDIRE) < sz_ent); - - /* Sanity check (do it for only accessible object) */ - if (i <= MAXDIRB(FF_MAX_LFN)) { - if (xdir_sum(dirb) != ld_word(dirb + XDIR_SetSum)) return FR_INT_ERR; - } - return FR_OK; -} - - -/*------------------------------------------------------------------*/ -/* exFAT: Initialize object allocation info with loaded entry block */ -/*------------------------------------------------------------------*/ - -static void init_alloc_info ( - FATFS* fs, /* Filesystem object */ - FFOBJID* obj /* Object allocation information to be initialized */ -) -{ - obj->sclust = ld_dword(fs->dirbuf + XDIR_FstClus); /* Start cluster */ - obj->objsize = ld_qword(fs->dirbuf + XDIR_FileSize); /* Size */ - obj->stat = fs->dirbuf[XDIR_GenFlags] & 2; /* Allocation status */ - obj->n_frag = 0; /* No last fragment info */ -} - - - -#if !FF_FS_READONLY || FF_FS_RPATH != 0 -/*------------------------------------------------*/ -/* exFAT: Load the object's directory entry block */ -/*------------------------------------------------*/ - -static FRESULT load_obj_xdir ( - DIR* dp, /* Blank directory object to be used to access containing direcotry */ - const FFOBJID* obj /* Object with its containing directory information */ -) -{ - FRESULT res; - - /* Open object containing directory */ - dp->obj.fs = obj->fs; - dp->obj.sclust = obj->c_scl; - dp->obj.stat = (BYTE)obj->c_size; - dp->obj.objsize = obj->c_size & 0xFFFFFF00; - dp->obj.n_frag = 0; - dp->blk_ofs = obj->c_ofs; - - res = dir_sdi(dp, dp->blk_ofs); /* Goto object's entry block */ - if (res == FR_OK) { - res = load_xdir(dp); /* Load the object's entry block */ - } - return res; -} -#endif - - -#if !FF_FS_READONLY -/*----------------------------------------*/ -/* exFAT: Store the directory entry block */ -/*----------------------------------------*/ - -static FRESULT store_xdir ( - DIR* dp /* Pointer to the direcotry object */ -) -{ - FRESULT res; - UINT nent; - BYTE* dirb = dp->obj.fs->dirbuf; /* Pointer to the direcotry entry block 85+C0+C1s */ - - /* Create set sum */ - st_word(dirb + XDIR_SetSum, xdir_sum(dirb)); - nent = dirb[XDIR_NumSec] + 1; - - /* Store the direcotry entry block to the directory */ - res = dir_sdi(dp, dp->blk_ofs); - while (res == FR_OK) { - res = move_window(dp->obj.fs, dp->sect); - if (res != FR_OK) break; - mem_cpy(dp->dir, dirb, SZDIRE); - dp->obj.fs->wflag = 1; - if (--nent == 0) break; - dirb += SZDIRE; - res = dir_next(dp, 0); - } - return (res == FR_OK || res == FR_DISK_ERR) ? res : FR_INT_ERR; -} - - - -/*-------------------------------------------*/ -/* exFAT: Create a new directory enrty block */ -/*-------------------------------------------*/ - -static void create_xdir ( - BYTE* dirb, /* Pointer to the direcotry entry block buffer */ - const WCHAR* lfn /* Pointer to the object name */ -) -{ - UINT i; - BYTE nc1, nlen; - WCHAR wc; - - - /* Create file-directory and stream-extension entry */ - mem_set(dirb, 0, 2 * SZDIRE); - dirb[0 * SZDIRE + XDIR_Type] = ET_FILEDIR; - dirb[1 * SZDIRE + XDIR_Type] = ET_STREAM; - - /* Create file-name entries */ - i = SZDIRE * 2; /* Top of file_name entries */ - nlen = nc1 = 0; wc = 1; - do { - dirb[i++] = ET_FILENAME; dirb[i++] = 0; - do { /* Fill name field */ - if (wc != 0 && (wc = lfn[nlen]) != 0) nlen++; /* Get a character if exist */ - st_word(dirb + i, wc); /* Store it */ - i += 2; - } while (i % SZDIRE != 0); - nc1++; - } while (lfn[nlen]); /* Fill next entry if any char follows */ - - dirb[XDIR_NumName] = nlen; /* Set name length */ - dirb[XDIR_NumSec] = 1 + nc1; /* Set secondary count (C0 + C1s) */ - st_word(dirb + XDIR_NameHash, xname_sum(lfn)); /* Set name hash */ -} - -#endif /* !FF_FS_READONLY */ -#endif /* FF_FS_EXFAT */ - - - -#if FF_FS_MINIMIZE <= 1 || FF_FS_RPATH >= 2 || FF_USE_LABEL || FF_FS_EXFAT -/*-----------------------------------------------------------------------*/ -/* Read an object from the directory */ -/*-----------------------------------------------------------------------*/ - -#define DIR_READ_FILE(dp) dir_read(dp, 0) -#define DIR_READ_LABEL(dp) dir_read(dp, 1) - -static FRESULT dir_read ( - DIR* dp, /* Pointer to the directory object */ - int vol /* Filtered by 0:file/directory or 1:volume label */ -) -{ - FRESULT res = FR_NO_FILE; - FATFS *fs = dp->obj.fs; - BYTE attr, b; -#if FF_USE_LFN - BYTE ord = 0xFF, sum = 0xFF; -#endif - - while (dp->sect) { - res = move_window(fs, dp->sect); - if (res != FR_OK) break; - b = dp->dir[DIR_Name]; /* Test for the entry type */ - if (b == 0) { - res = FR_NO_FILE; break; /* Reached to end of the directory */ - } -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { /* On the exFAT volume */ - if (FF_USE_LABEL && vol) { - if (b == ET_VLABEL) break; /* Volume label entry? */ - } else { - if (b == ET_FILEDIR) { /* Start of the file entry block? */ - dp->blk_ofs = dp->dptr; /* Get location of the block */ - res = load_xdir(dp); /* Load the entry block */ - if (res == FR_OK) { - dp->obj.attr = fs->dirbuf[XDIR_Attr] & AM_MASK; /* Get attribute */ - } - break; - } - } - } else -#endif - { /* On the FAT/FAT32 volume */ - dp->obj.attr = attr = dp->dir[DIR_Attr] & AM_MASK; /* Get attribute */ -#if FF_USE_LFN /* LFN configuration */ - if (b == DDEM || b == '.' || (int)((attr & ~AM_ARC) == AM_VOL) != vol) { /* An entry without valid data */ - ord = 0xFF; - } else { - if (attr == AM_LFN) { /* An LFN entry is found */ - if (b & LLEF) { /* Is it start of an LFN sequence? */ - sum = dp->dir[LDIR_Chksum]; - b &= (BYTE)~LLEF; ord = b; - dp->blk_ofs = dp->dptr; - } - /* Check LFN validity and capture it */ - ord = (b == ord && sum == dp->dir[LDIR_Chksum] && pick_lfn(fs->lfnbuf, dp->dir)) ? ord - 1 : 0xFF; - } else { /* An SFN entry is found */ - if (ord != 0 || sum != sum_sfn(dp->dir)) { /* Is there a valid LFN? */ - dp->blk_ofs = 0xFFFFFFFF; /* It has no LFN. */ - } - break; - } - } -#else /* Non LFN configuration */ - if (b != DDEM && b != '.' && attr != AM_LFN && (int)((attr & ~AM_ARC) == AM_VOL) == vol) { /* Is it a valid entry? */ - break; - } -#endif - } - res = dir_next(dp, 0); /* Next entry */ - if (res != FR_OK) break; - } - - if (res != FR_OK) dp->sect = 0; /* Terminate the read operation on error or EOT */ - return res; -} - -#endif /* FF_FS_MINIMIZE <= 1 || FF_USE_LABEL || FF_FS_RPATH >= 2 */ - - - -/*-----------------------------------------------------------------------*/ -/* Directory handling - Find an object in the directory */ -/*-----------------------------------------------------------------------*/ - -static FRESULT dir_find ( /* FR_OK(0):succeeded, !=0:error */ - DIR* dp /* Pointer to the directory object with the file name */ -) -{ - FRESULT res; - FATFS *fs = dp->obj.fs; - BYTE c; -#if FF_USE_LFN - BYTE a, ord, sum; -#endif - - res = dir_sdi(dp, 0); /* Rewind directory object */ - if (res != FR_OK) return res; -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { /* On the exFAT volume */ - BYTE nc; - UINT di, ni; - WORD hash = xname_sum(fs->lfnbuf); /* Hash value of the name to find */ - - while ((res = DIR_READ_FILE(dp)) == FR_OK) { /* Read an item */ -#if FF_MAX_LFN < 255 - if (fs->dirbuf[XDIR_NumName] > FF_MAX_LFN) continue; /* Skip comparison if inaccessible object name */ -#endif - if (ld_word(fs->dirbuf + XDIR_NameHash) != hash) continue; /* Skip comparison if hash mismatched */ - for (nc = fs->dirbuf[XDIR_NumName], di = SZDIRE * 2, ni = 0; nc; nc--, di += 2, ni++) { /* Compare the name */ - if ((di % SZDIRE) == 0) di += 2; - if (ff_wtoupper(ld_word(fs->dirbuf + di)) != ff_wtoupper(fs->lfnbuf[ni])) break; - } - if (nc == 0 && !fs->lfnbuf[ni]) break; /* Name matched? */ - } - return res; - } -#endif - /* On the FAT/FAT32 volume */ -#if FF_USE_LFN - ord = sum = 0xFF; dp->blk_ofs = 0xFFFFFFFF; /* Reset LFN sequence */ -#endif - do { - res = move_window(fs, dp->sect); - if (res != FR_OK) break; - c = dp->dir[DIR_Name]; - if (c == 0) { res = FR_NO_FILE; break; } /* Reached to end of table */ -#if FF_USE_LFN /* LFN configuration */ - dp->obj.attr = a = dp->dir[DIR_Attr] & AM_MASK; - if (c == DDEM || ((a & AM_VOL) && a != AM_LFN)) { /* An entry without valid data */ - ord = 0xFF; dp->blk_ofs = 0xFFFFFFFF; /* Reset LFN sequence */ - } else { - if (a == AM_LFN) { /* An LFN entry is found */ - if (!(dp->fn[NSFLAG] & NS_NOLFN)) { - if (c & LLEF) { /* Is it start of LFN sequence? */ - sum = dp->dir[LDIR_Chksum]; - c &= (BYTE)~LLEF; ord = c; /* LFN start order */ - dp->blk_ofs = dp->dptr; /* Start offset of LFN */ - } - /* Check validity of the LFN entry and compare it with given name */ - ord = (c == ord && sum == dp->dir[LDIR_Chksum] && cmp_lfn(fs->lfnbuf, dp->dir)) ? ord - 1 : 0xFF; - } - } else { /* An SFN entry is found */ - if (ord == 0 && sum == sum_sfn(dp->dir)) break; /* LFN matched? */ - if (!(dp->fn[NSFLAG] & NS_LOSS) && !mem_cmp(dp->dir, dp->fn, 11)) break; /* SFN matched? */ - ord = 0xFF; dp->blk_ofs = 0xFFFFFFFF; /* Reset LFN sequence */ - } - } -#else /* Non LFN configuration */ - dp->obj.attr = dp->dir[DIR_Attr] & AM_MASK; - if (!(dp->dir[DIR_Attr] & AM_VOL) && !mem_cmp(dp->dir, dp->fn, 11)) break; /* Is it a valid entry? */ -#endif - res = dir_next(dp, 0); /* Next entry */ - } while (res == FR_OK); - - return res; -} - - - - -#if !FF_FS_READONLY -/*-----------------------------------------------------------------------*/ -/* Register an object to the directory */ -/*-----------------------------------------------------------------------*/ - -static FRESULT dir_register ( /* FR_OK:succeeded, FR_DENIED:no free entry or too many SFN collision, FR_DISK_ERR:disk error */ - DIR* dp /* Target directory with object name to be created */ -) -{ - FRESULT res; - FATFS *fs = dp->obj.fs; -#if FF_USE_LFN /* LFN configuration */ - UINT n, nlen, nent; - BYTE sn[12], sum; - - - if (dp->fn[NSFLAG] & (NS_DOT | NS_NONAME)) return FR_INVALID_NAME; /* Check name validity */ - for (nlen = 0; fs->lfnbuf[nlen]; nlen++) ; /* Get lfn length */ - -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { /* On the exFAT volume */ - nent = (nlen + 14) / 15 + 2; /* Number of entries to allocate (85+C0+C1s) */ - res = dir_alloc(dp, nent); /* Allocate directory entries */ - if (res != FR_OK) return res; - dp->blk_ofs = dp->dptr - SZDIRE * (nent - 1); /* Set the allocated entry block offset */ - - if (dp->obj.stat & 4) { /* Has the directory been stretched by new allocation? */ - dp->obj.stat &= ~4; - res = fill_first_frag(&dp->obj); /* Fill the first fragment on the FAT if needed */ - if (res != FR_OK) return res; - res = fill_last_frag(&dp->obj, dp->clust, 0xFFFFFFFF); /* Fill the last fragment on the FAT if needed */ - if (res != FR_OK) return res; - if (dp->obj.sclust != 0) { /* Is it a sub-directory? */ - DIR dj; - - res = load_obj_xdir(&dj, &dp->obj); /* Load the object status */ - if (res != FR_OK) return res; - dp->obj.objsize += (DWORD)fs->csize * SS(fs); /* Increase the directory size by cluster size */ - st_qword(fs->dirbuf + XDIR_FileSize, dp->obj.objsize); /* Update the allocation status */ - st_qword(fs->dirbuf + XDIR_ValidFileSize, dp->obj.objsize); - fs->dirbuf[XDIR_GenFlags] = dp->obj.stat | 1; - res = store_xdir(&dj); /* Store the object status */ - if (res != FR_OK) return res; - } - } - - create_xdir(fs->dirbuf, fs->lfnbuf); /* Create on-memory directory block to be written later */ - return FR_OK; - } -#endif - /* On the FAT/FAT32 volume */ - mem_cpy(sn, dp->fn, 12); - if (sn[NSFLAG] & NS_LOSS) { /* When LFN is out of 8.3 format, generate a numbered name */ - dp->fn[NSFLAG] = NS_NOLFN; /* Find only SFN */ - for (n = 1; n < 100; n++) { - gen_numname(dp->fn, sn, fs->lfnbuf, n); /* Generate a numbered name */ - res = dir_find(dp); /* Check if the name collides with existing SFN */ - if (res != FR_OK) break; - } - if (n == 100) return FR_DENIED; /* Abort if too many collisions */ - if (res != FR_NO_FILE) return res; /* Abort if the result is other than 'not collided' */ - dp->fn[NSFLAG] = sn[NSFLAG]; - } - - /* Create an SFN with/without LFNs. */ - nent = (sn[NSFLAG] & NS_LFN) ? (nlen + 12) / 13 + 1 : 1; /* Number of entries to allocate */ - res = dir_alloc(dp, nent); /* Allocate entries */ - if (res == FR_OK && --nent) { /* Set LFN entry if needed */ - res = dir_sdi(dp, dp->dptr - nent * SZDIRE); - if (res == FR_OK) { - sum = sum_sfn(dp->fn); /* Checksum value of the SFN tied to the LFN */ - do { /* Store LFN entries in bottom first */ - res = move_window(fs, dp->sect); - if (res != FR_OK) break; - put_lfn(fs->lfnbuf, dp->dir, (BYTE)nent, sum); - fs->wflag = 1; - res = dir_next(dp, 0); /* Next entry */ - } while (res == FR_OK && --nent); - } - } - -#else /* Non LFN configuration */ - res = dir_alloc(dp, 1); /* Allocate an entry for SFN */ - -#endif - - /* Set SFN entry */ - if (res == FR_OK) { - res = move_window(fs, dp->sect); - if (res == FR_OK) { - mem_set(dp->dir, 0, SZDIRE); /* Clean the entry */ - mem_cpy(dp->dir + DIR_Name, dp->fn, 11); /* Put SFN */ -#if FF_USE_LFN - dp->dir[DIR_NTres] = dp->fn[NSFLAG] & (NS_BODY | NS_EXT); /* Put NT flag */ -#endif - fs->wflag = 1; - } - } - - return res; -} - -#endif /* !FF_FS_READONLY */ - - - -#if !FF_FS_READONLY && FF_FS_MINIMIZE == 0 -/*-----------------------------------------------------------------------*/ -/* Remove an object from the directory */ -/*-----------------------------------------------------------------------*/ - -static FRESULT dir_remove ( /* FR_OK:Succeeded, FR_DISK_ERR:A disk error */ - DIR* dp /* Directory object pointing the entry to be removed */ -) -{ - FRESULT res; - FATFS *fs = dp->obj.fs; -#if FF_USE_LFN /* LFN configuration */ - DWORD last = dp->dptr; - - res = (dp->blk_ofs == 0xFFFFFFFF) ? FR_OK : dir_sdi(dp, dp->blk_ofs); /* Goto top of the entry block if LFN is exist */ - if (res == FR_OK) { - do { - res = move_window(fs, dp->sect); - if (res != FR_OK) break; - if (FF_FS_EXFAT && fs->fs_type == FS_EXFAT) { /* On the exFAT volume */ - dp->dir[XDIR_Type] &= 0x7F; /* Clear the entry InUse flag. */ - } else { /* On the FAT/FAT32 volume */ - dp->dir[DIR_Name] = DDEM; /* Mark the entry 'deleted'. */ - } - fs->wflag = 1; - if (dp->dptr >= last) break; /* If reached last entry then all entries of the object has been deleted. */ - res = dir_next(dp, 0); /* Next entry */ - } while (res == FR_OK); - if (res == FR_NO_FILE) res = FR_INT_ERR; - } -#else /* Non LFN configuration */ - - res = move_window(fs, dp->sect); - if (res == FR_OK) { - dp->dir[DIR_Name] = DDEM; /* Mark the entry 'deleted'.*/ - fs->wflag = 1; - } -#endif - - return res; -} - -#endif /* !FF_FS_READONLY && FF_FS_MINIMIZE == 0 */ - - - -#if FF_FS_MINIMIZE <= 1 || FF_FS_RPATH >= 2 -/*-----------------------------------------------------------------------*/ -/* Get file information from directory entry */ -/*-----------------------------------------------------------------------*/ - -static void get_fileinfo ( - DIR* dp, /* Pointer to the directory object */ - FILINFO* fno /* Pointer to the file information to be filled */ -) -{ - UINT si, di; -#if FF_USE_LFN - WCHAR wc, hs; - FATFS *fs = dp->obj.fs; -#else - TCHAR c; -#endif - - - fno->fname[0] = 0; /* Invaidate file info */ - if (dp->sect == 0) return; /* Exit if read pointer has reached end of directory */ - -#if FF_USE_LFN /* LFN configuration */ -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { /* On the exFAT volume */ - get_xfileinfo(fs->dirbuf, fno); - return; - } else -#endif - { /* On the FAT/FAT32 volume */ - if (dp->blk_ofs != 0xFFFFFFFF) { /* Get LFN if available */ - si = di = hs = 0; - while (fs->lfnbuf[si] != 0) { - wc = fs->lfnbuf[si++]; /* Get an LFN character (UTF-16) */ - if (hs == 0 && IsSurrogate(wc)) { /* Is it a surrogate? */ - hs = wc; continue; /* Get low surrogate */ - } - wc = put_utf((DWORD)hs << 16 | wc, &fno->fname[di], FF_LFN_BUF - di); /* Store it in UTF-16 or UTF-8 encoding */ - if (wc == 0) { di = 0; break; } /* Invalid char or buffer overflow? */ - di += wc; - hs = 0; - } - if (hs != 0) di = 0; /* Broken surrogate pair? */ - fno->fname[di] = 0; /* Terminate the LFN (null string means LFN is invalid) */ - } - } - - si = di = 0; - while (si < 11) { /* Get SFN from SFN entry */ - wc = dp->dir[si++]; /* Get a char */ - if (wc == ' ') continue; /* Skip padding spaces */ - if (wc == RDDEM) wc = DDEM; /* Restore replaced DDEM character */ - if (si == 9 && di < FF_SFN_BUF) fno->altname[di++] = '.'; /* Insert a . if extension is exist */ -#if FF_LFN_UNICODE >= 1 /* Unicode output */ - if (dbc_1st((BYTE)wc) && si != 8 && si != 11 && dbc_2nd(dp->dir[si])) { /* Make a DBC if needed */ - wc = wc << 8 | dp->dir[si++]; - } - wc = ff_oem2uni(wc, CODEPAGE); /* ANSI/OEM -> Unicode */ - if (wc == 0) { di = 0; break; } /* Wrong char in the current code page? */ - wc = put_utf(wc, &fno->altname[di], FF_SFN_BUF - di); /* Store it in Unicode */ - if (wc == 0) { di = 0; break; } /* Buffer overflow? */ - di += wc; -#else /* ANSI/OEM output */ - fno->altname[di++] = (TCHAR)wc; /* Store it without any conversion */ -#endif - } - fno->altname[di] = 0; /* Terminate the SFN (null string means SFN is invalid) */ - - if (fno->fname[0] == 0) { /* If LFN is invalid, altname[] needs to be copied to fname[] */ - if (di == 0) { /* If LFN and SFN both are invalid, this object is inaccesible */ - fno->fname[di++] = '?'; - } else { - for (si = di = 0; fno->altname[si]; si++, di++) { /* Copy altname[] to fname[] with case information */ - wc = (WCHAR)fno->altname[si]; - if (IsUpper(wc) && (dp->dir[DIR_NTres] & ((si >= 9) ? NS_EXT : NS_BODY))) wc += 0x20; - fno->fname[di] = (TCHAR)wc; - } - } - fno->fname[di] = 0; /* Terminate the LFN */ - if (!dp->dir[DIR_NTres]) fno->altname[0] = 0; /* Altname is not needed if neither LFN nor case info is exist. */ - } - -#else /* Non-LFN configuration */ - si = di = 0; - while (si < 11) { /* Copy name body and extension */ - c = (TCHAR)dp->dir[si++]; - if (c == ' ') continue; /* Skip padding spaces */ - if (c == RDDEM) c = DDEM; /* Restore replaced DDEM character */ - if (si == 9) fno->fname[di++] = '.';/* Insert a . if extension is exist */ - fno->fname[di++] = c; - } - fno->fname[di] = 0; -#endif - - fno->fattrib = dp->dir[DIR_Attr]; /* Attribute */ - fno->fsize = ld_dword(dp->dir + DIR_FileSize); /* Size */ - fno->ftime = ld_word(dp->dir + DIR_ModTime + 0); /* Time */ - fno->fdate = ld_word(dp->dir + DIR_ModTime + 2); /* Date */ -} - -#endif /* FF_FS_MINIMIZE <= 1 || FF_FS_RPATH >= 2 */ - - - -#if FF_USE_FIND && FF_FS_MINIMIZE <= 1 -/*-----------------------------------------------------------------------*/ -/* Pattern matching */ -/*-----------------------------------------------------------------------*/ - -static DWORD get_achar ( /* Get a character and advances ptr */ - const TCHAR** ptr /* Pointer to pointer to the ANSI/OEM or Unicode string */ -) -{ - DWORD chr; - - -#if FF_USE_LFN && FF_LFN_UNICODE >= 1 /* Unicode input */ - chr = tchar2uni(ptr); - if (chr == 0xFFFFFFFF) chr = 0; /* Wrong UTF encoding is recognized as end of the string */ - chr = ff_wtoupper(chr); - -#else /* ANSI/OEM input */ - chr = (BYTE)*(*ptr)++; /* Get a byte */ - if (IsLower(chr)) chr -= 0x20; /* To upper ASCII char */ -#if FF_CODE_PAGE == 0 - if (ExCvt && chr >= 0x80) chr = ExCvt[chr - 0x80]; /* To upper SBCS extended char */ -#elif FF_CODE_PAGE < 900 - if (chr >= 0x80) chr = ExCvt[chr - 0x80]; /* To upper SBCS extended char */ -#endif -#if FF_CODE_PAGE == 0 || FF_CODE_PAGE >= 900 - if (dbc_1st((BYTE)chr)) { /* Get DBC 2nd byte if needed */ - chr = dbc_2nd((BYTE)**ptr) ? chr << 8 | (BYTE)*(*ptr)++ : 0; - } -#endif - -#endif - return chr; -} - - -static int pattern_matching ( /* 0:not matched, 1:matched */ - const TCHAR* pat, /* Matching pattern */ - const TCHAR* nam, /* String to be tested */ - int skip, /* Number of pre-skip chars (number of ?s) */ - int inf /* Infinite search (* specified) */ -) -{ - const TCHAR *pp, *np; - DWORD pc, nc; - int nm, nx; - - - while (skip--) { /* Pre-skip name chars */ - if (!get_achar(&nam)) return 0; /* Branch mismatched if less name chars */ - } - if (*pat == 0 && inf) return 1; /* (short circuit) */ - - do { - pp = pat; np = nam; /* Top of pattern and name to match */ - for (;;) { - if (*pp == '?' || *pp == '*') { /* Wildcard? */ - nm = nx = 0; - do { /* Analyze the wildcard block */ - if (*pp++ == '?') nm++; else nx = 1; - } while (*pp == '?' || *pp == '*'); - if (pattern_matching(pp, np, nm, nx)) return 1; /* Test new branch (recurs upto number of wildcard blocks in the pattern) */ - nc = *np; break; /* Branch mismatched */ - } - pc = get_achar(&pp); /* Get a pattern char */ - nc = get_achar(&np); /* Get a name char */ - if (pc != nc) break; /* Branch mismatched? */ - if (pc == 0) return 1; /* Branch matched? (matched at end of both strings) */ - } - get_achar(&nam); /* nam++ */ - } while (inf && nc); /* Retry until end of name if infinite search is specified */ - - return 0; -} - -#endif /* FF_USE_FIND && FF_FS_MINIMIZE <= 1 */ - - - -/*-----------------------------------------------------------------------*/ -/* Pick a top segment and create the object name in directory form */ -/*-----------------------------------------------------------------------*/ - -static FRESULT create_name ( /* FR_OK: successful, FR_INVALID_NAME: could not create */ - DIR* dp, /* Pointer to the directory object */ - const TCHAR** path /* Pointer to pointer to the segment in the path string */ -) -{ -#if FF_USE_LFN /* LFN configuration */ - BYTE b, cf; - WCHAR wc, *lfn; - DWORD uc; - UINT i, ni, si, di; - const TCHAR *p; - - - /* Create LFN into LFN working buffer */ - p = *path; lfn = dp->obj.fs->lfnbuf; di = 0; - for (;;) { - uc = tchar2uni(&p); /* Get a character */ - if (uc == 0xFFFFFFFF) return FR_INVALID_NAME; /* Invalid code or UTF decode error */ - if (uc >= 0x10000) lfn[di++] = (WCHAR)(uc >> 16); /* Store high surrogate if needed */ - wc = (WCHAR)uc; - if (wc < ' ' || wc == '/' || wc == '\\') break; /* Break if end of the path or a separator is found */ - if (wc < 0x80 && chk_chr("\"*:<>\?|\x7F", wc)) return FR_INVALID_NAME; /* Reject illegal characters for LFN */ - if (di >= FF_MAX_LFN) return FR_INVALID_NAME; /* Reject too long name */ - lfn[di++] = wc; /* Store the Unicode character */ - } - while (*p == '/' || *p == '\\') p++; /* Skip duplicated separators if exist */ - *path = p; /* Return pointer to the next segment */ - cf = (wc < ' ') ? NS_LAST : 0; /* Set last segment flag if end of the path */ - -#if FF_FS_RPATH != 0 - if ((di == 1 && lfn[di - 1] == '.') || - (di == 2 && lfn[di - 1] == '.' && lfn[di - 2] == '.')) { /* Is this segment a dot name? */ - lfn[di] = 0; - for (i = 0; i < 11; i++) { /* Create dot name for SFN entry */ - dp->fn[i] = (i < di) ? '.' : ' '; - } - dp->fn[i] = cf | NS_DOT; /* This is a dot entry */ - return FR_OK; - } -#endif - while (di) { /* Snip off trailing spaces and dots if exist */ - wc = lfn[di - 1]; - if (wc != ' ' && wc != '.') break; - di--; - } - lfn[di] = 0; /* LFN is created into the working buffer */ - if (di == 0) return FR_INVALID_NAME; /* Reject null name */ - - /* Create SFN in directory form */ - for (si = 0; lfn[si] == ' '; si++) ; /* Remove leading spaces */ - if (si > 0 || lfn[si] == '.') cf |= NS_LOSS | NS_LFN; /* Is there any leading space or dot? */ - while (di > 0 && lfn[di - 1] != '.') di--; /* Find last dot (di<=si: no extension) */ - - mem_set(dp->fn, ' ', 11); - i = b = 0; ni = 8; - for (;;) { - wc = lfn[si++]; /* Get an LFN character */ - if (wc == 0) break; /* Break on end of the LFN */ - if (wc == ' ' || (wc == '.' && si != di)) { /* Remove embedded spaces and dots */ - cf |= NS_LOSS | NS_LFN; - continue; - } - - if (i >= ni || si == di) { /* End of field? */ - if (ni == 11) { /* Name extension overflow? */ - cf |= NS_LOSS | NS_LFN; - break; - } - if (si != di) cf |= NS_LOSS | NS_LFN; /* Name body overflow? */ - if (si > di) break; /* No name extension? */ - si = di; i = 8; ni = 11; b <<= 2; /* Enter name extension */ - continue; - } - - if (wc >= 0x80) { /* Is this a non-ASCII character? */ - cf |= NS_LFN; /* LFN entry needs to be created */ -#if FF_CODE_PAGE == 0 - if (ExCvt) { /* At SBCS */ - wc = ff_uni2oem(wc, CODEPAGE); /* Unicode ==> ANSI/OEM code */ - if (wc & 0x80) wc = ExCvt[wc & 0x7F]; /* Convert extended character to upper (SBCS) */ - } else { /* At DBCS */ - wc = ff_uni2oem(ff_wtoupper(wc), CODEPAGE); /* Unicode ==> Upper convert ==> ANSI/OEM code */ - } -#elif FF_CODE_PAGE < 900 /* SBCS cfg */ - wc = ff_uni2oem(wc, CODEPAGE); /* Unicode ==> ANSI/OEM code */ - if (wc & 0x80) wc = ExCvt[wc & 0x7F]; /* Convert extended character to upper (SBCS) */ -#else /* DBCS cfg */ - wc = ff_uni2oem(ff_wtoupper(wc), CODEPAGE); /* Unicode ==> Upper convert ==> ANSI/OEM code */ -#endif - } - - if (wc >= 0x100) { /* Is this a DBC? */ - if (i >= ni - 1) { /* Field overflow? */ - cf |= NS_LOSS | NS_LFN; - i = ni; continue; /* Next field */ - } - dp->fn[i++] = (BYTE)(wc >> 8); /* Put 1st byte */ - } else { /* SBC */ - if (wc == 0 || chk_chr("+,;=[]", wc)) { /* Replace illegal characters for SFN if needed */ - wc = '_'; cf |= NS_LOSS | NS_LFN;/* Lossy conversion */ - } else { - if (IsUpper(wc)) { /* ASCII upper case? */ - b |= 2; - } - if (IsLower(wc)) { /* ASCII lower case? */ - b |= 1; wc -= 0x20; - } - } - } - dp->fn[i++] = (BYTE)wc; - } - - if (dp->fn[0] == DDEM) dp->fn[0] = RDDEM; /* If the first character collides with DDEM, replace it with RDDEM */ - - if (ni == 8) b <<= 2; /* Shift capital flags if no extension */ - if ((b & 0x0C) == 0x0C || (b & 0x03) == 0x03) cf |= NS_LFN; /* LFN entry needs to be created if composite capitals */ - if (!(cf & NS_LFN)) { /* When LFN is in 8.3 format without extended character, NT flags are created */ - if (b & 0x01) cf |= NS_EXT; /* NT flag (Extension has small capital letters only) */ - if (b & 0x04) cf |= NS_BODY; /* NT flag (Body has small capital letters only) */ - } - - dp->fn[NSFLAG] = cf; /* SFN is created into dp->fn[] */ - - return FR_OK; - - -#else /* FF_USE_LFN : Non-LFN configuration */ - BYTE c, d, *sfn; - UINT ni, si, i; - const char *p; - - /* Create file name in directory form */ - p = *path; sfn = dp->fn; - mem_set(sfn, ' ', 11); - si = i = 0; ni = 8; -#if FF_FS_RPATH != 0 - if (p[si] == '.') { /* Is this a dot entry? */ - for (;;) { - c = (BYTE)p[si++]; - if (c != '.' || si >= 3) break; - sfn[i++] = c; - } - if (c != '/' && c != '\\' && c > ' ') return FR_INVALID_NAME; - *path = p + si; /* Return pointer to the next segment */ - sfn[NSFLAG] = (c <= ' ') ? NS_LAST | NS_DOT : NS_DOT; /* Set last segment flag if end of the path */ - return FR_OK; - } -#endif - for (;;) { - c = (BYTE)p[si++]; /* Get a byte */ - if (c <= ' ') break; /* Break if end of the path name */ - if (c == '/' || c == '\\') { /* Break if a separator is found */ - while (p[si] == '/' || p[si] == '\\') si++; /* Skip duplicated separator if exist */ - break; - } - if (c == '.' || i >= ni) { /* End of body or field overflow? */ - if (ni == 11 || c != '.') return FR_INVALID_NAME; /* Field overflow or invalid dot? */ - i = 8; ni = 11; /* Enter file extension field */ - continue; - } -#if FF_CODE_PAGE == 0 - if (ExCvt && c >= 0x80) { /* Is SBC extended character? */ - c = ExCvt[c & 0x7F]; /* To upper SBC extended character */ - } -#elif FF_CODE_PAGE < 900 - if (c >= 0x80) { /* Is SBC extended character? */ - c = ExCvt[c & 0x7F]; /* To upper SBC extended character */ - } -#endif - if (dbc_1st(c)) { /* Check if it is a DBC 1st byte */ - d = (BYTE)p[si++]; /* Get 2nd byte */ - if (!dbc_2nd(d) || i >= ni - 1) return FR_INVALID_NAME; /* Reject invalid DBC */ - sfn[i++] = c; - sfn[i++] = d; - } else { /* SBC */ - if (chk_chr("\"*+,:;<=>\?[]|\x7F", c)) return FR_INVALID_NAME; /* Reject illegal chrs for SFN */ - if (IsLower(c)) c -= 0x20; /* To upper */ - sfn[i++] = c; - } - } - *path = p + si; /* Return pointer to the next segment */ - if (i == 0) return FR_INVALID_NAME; /* Reject nul string */ - - if (sfn[0] == DDEM) sfn[0] = RDDEM; /* If the first character collides with DDEM, replace it with RDDEM */ - sfn[NSFLAG] = (c <= ' ') ? NS_LAST : 0; /* Set last segment flag if end of the path */ - - return FR_OK; -#endif /* FF_USE_LFN */ -} - - - - -/*-----------------------------------------------------------------------*/ -/* Follow a file path */ -/*-----------------------------------------------------------------------*/ - -static FRESULT follow_path ( /* FR_OK(0): successful, !=0: error code */ - DIR* dp, /* Directory object to return last directory and found object */ - const TCHAR* path /* Full-path string to find a file or directory */ -) -{ - FRESULT res; - BYTE ns; - FATFS *fs = dp->obj.fs; - - -#if FF_FS_RPATH != 0 - if (*path != '/' && *path != '\\') { /* Without heading separator */ - dp->obj.sclust = fs->cdir; /* Start from current directory */ - } else -#endif - { /* With heading separator */ - while (*path == '/' || *path == '\\') path++; /* Strip heading separator */ - dp->obj.sclust = 0; /* Start from root directory */ - } -#if FF_FS_EXFAT - dp->obj.n_frag = 0; /* Invalidate last fragment counter of the object */ -#if FF_FS_RPATH != 0 - if (fs->fs_type == FS_EXFAT && dp->obj.sclust) { /* exFAT: Retrieve the sub-directory's status */ - DIR dj; - - dp->obj.c_scl = fs->cdc_scl; - dp->obj.c_size = fs->cdc_size; - dp->obj.c_ofs = fs->cdc_ofs; - res = load_obj_xdir(&dj, &dp->obj); - if (res != FR_OK) return res; - dp->obj.objsize = ld_dword(fs->dirbuf + XDIR_FileSize); - dp->obj.stat = fs->dirbuf[XDIR_GenFlags] & 2; - } -#endif -#endif - - if ((UINT)*path < ' ') { /* Null path name is the origin directory itself */ - dp->fn[NSFLAG] = NS_NONAME; - res = dir_sdi(dp, 0); - - } else { /* Follow path */ - for (;;) { - res = create_name(dp, &path); /* Get a segment name of the path */ - if (res != FR_OK) break; - res = dir_find(dp); /* Find an object with the segment name */ - ns = dp->fn[NSFLAG]; - if (res != FR_OK) { /* Failed to find the object */ - if (res == FR_NO_FILE) { /* Object is not found */ - if (FF_FS_RPATH && (ns & NS_DOT)) { /* If dot entry is not exist, stay there */ - if (!(ns & NS_LAST)) continue; /* Continue to follow if not last segment */ - dp->fn[NSFLAG] = NS_NONAME; - res = FR_OK; - } else { /* Could not find the object */ - if (!(ns & NS_LAST)) res = FR_NO_PATH; /* Adjust error code if not last segment */ - } - } - break; - } - if (ns & NS_LAST) break; /* Last segment matched. Function completed. */ - /* Get into the sub-directory */ - if (!(dp->obj.attr & AM_DIR)) { /* It is not a sub-directory and cannot follow */ - res = FR_NO_PATH; break; - } -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { /* Save containing directory information for next dir */ - dp->obj.c_scl = dp->obj.sclust; - dp->obj.c_size = ((DWORD)dp->obj.objsize & 0xFFFFFF00) | dp->obj.stat; - dp->obj.c_ofs = dp->blk_ofs; - init_alloc_info(fs, &dp->obj); /* Open next directory */ - } else -#endif - { - dp->obj.sclust = ld_clust(fs, fs->win + dp->dptr % SS(fs)); /* Open next directory */ - } - } - } - - return res; -} - - - - -/*-----------------------------------------------------------------------*/ -/* Get logical drive number from path name */ -/*-----------------------------------------------------------------------*/ - -static int get_ldnumber ( /* Returns logical drive number (-1:invalid drive number or null pointer) */ - const TCHAR** path /* Pointer to pointer to the path name */ -) -{ - const TCHAR *tp, *tt; - TCHAR tc; - int i, vol = -1; -#if FF_STR_VOLUME_ID /* Find string volume ID */ - const char *sp; - char c; -#endif - - tt = tp = *path; - if (!tp) return vol; /* Invalid path name? */ - do tc = *tt++; while ((UINT)tc >= (FF_USE_LFN ? ' ' : '!') && tc != ':'); /* Find a colon in the path */ - - if (tc == ':') { /* DOS/Windows style volume ID? */ - i = FF_VOLUMES; - if (IsDigit(*tp) && tp + 2 == tt) { /* Is there a numeric volume ID + colon? */ - i = (int)*tp - '0'; /* Get the LD number */ - } -#if FF_STR_VOLUME_ID == 1 /* Arbitrary string is enabled */ - else { - i = 0; - do { - sp = VolumeStr[i]; tp = *path; /* This string volume ID and path name */ - do { /* Compare the volume ID with path name */ - c = *sp++; tc = *tp++; - if (IsLower(c)) c -= 0x20; - if (IsLower(tc)) tc -= 0x20; - } while (c && (TCHAR)c == tc); - } while ((c || tp != tt) && ++i < FF_VOLUMES); /* Repeat for each id until pattern match */ - } -#endif - if (i < FF_VOLUMES) { /* If a volume ID is found, get the drive number and strip it */ - vol = i; /* Drive number */ - *path = tt; /* Snip the drive prefix off */ - } - return vol; - } -#if FF_STR_VOLUME_ID == 2 /* Unix style volume ID is enabled */ - if (*tp == '/') { - i = 0; - do { - sp = VolumeStr[i]; tp = *path; /* This string volume ID and path name */ - do { /* Compare the volume ID with path name */ - c = *sp++; tc = *(++tp); - if (IsLower(c)) c -= 0x20; - if (IsLower(tc)) tc -= 0x20; - } while (c && (TCHAR)c == tc); - } while ((c || (tc != '/' && (UINT)tc >= (FF_USE_LFN ? ' ' : '!'))) && ++i < FF_VOLUMES); /* Repeat for each ID until pattern match */ - if (i < FF_VOLUMES) { /* If a volume ID is found, get the drive number and strip it */ - vol = i; /* Drive number */ - *path = tp; /* Snip the drive prefix off */ - return vol; - } - } -#endif - /* No drive prefix is found */ -#if FF_FS_RPATH != 0 - vol = CurrVol; /* Default drive is current drive */ -#else - vol = 0; /* Default drive is 0 */ -#endif - return vol; /* Return the default drive */ -} - - - - -/*-----------------------------------------------------------------------*/ -/* Load a sector and check if it is an FAT VBR */ -/*-----------------------------------------------------------------------*/ - -static BYTE check_fs ( /* 0:FAT, 1:exFAT, 2:Valid BS but not FAT, 3:Not a BS, 4:Disk error */ - FATFS* fs, /* Filesystem object */ - DWORD sect /* Sector# (lba) to load and check if it is an FAT-VBR or not */ -) -{ - fs->wflag = 0; fs->winsect = 0xFFFFFFFF; /* Invaidate window */ - if (move_window(fs, sect) != FR_OK) return 4; /* Load boot record */ - - if (ld_word(fs->win + BS_55AA) != 0xAA55) return 3; /* Check boot record signature (always here regardless of the sector size) */ - -#if FF_FS_EXFAT - if (!mem_cmp(fs->win + BS_JmpBoot, "\xEB\x76\x90" "EXFAT ", 11)) return 1; /* Check if exFAT VBR */ -#endif - if (fs->win[BS_JmpBoot] == 0xE9 || fs->win[BS_JmpBoot] == 0xEB || fs->win[BS_JmpBoot] == 0xE8) { /* Valid JumpBoot code? */ - if (!mem_cmp(fs->win + BS_FilSysType, "FAT", 3)) return 0; /* Is it an FAT VBR? */ - if (!mem_cmp(fs->win + BS_FilSysType32, "FAT32", 5)) return 0; /* Is it an FAT32 VBR? */ - } - return 2; /* Valid BS but not FAT */ -} - - - - -/*-----------------------------------------------------------------------*/ -/* Determine logical drive number and mount the volume if needed */ -/*-----------------------------------------------------------------------*/ - -static FRESULT find_volume ( /* FR_OK(0): successful, !=0: an error occurred */ - const TCHAR** path, /* Pointer to pointer to the path name (drive number) */ - FATFS** rfs, /* Pointer to pointer to the found filesystem object */ - BYTE mode /* !=0: Check write protection for write access */ -) -{ - BYTE fmt, *pt; - int vol; - DSTATUS stat; - DWORD bsect, fasize, tsect, sysect, nclst, szbfat, br[4]; - WORD nrsv; - FATFS *fs; - UINT i; - - - /* Get logical drive number */ - *rfs = 0; - vol = get_ldnumber(path); - if (vol < 0) return FR_INVALID_DRIVE; - - /* Check if the filesystem object is valid or not */ - fs = FatFs[vol]; /* Get pointer to the filesystem object */ - if (!fs) return FR_NOT_ENABLED; /* Is the filesystem object available? */ -#if FF_FS_REENTRANT - if (!lock_fs(fs)) return FR_TIMEOUT; /* Lock the volume */ -#endif - *rfs = fs; /* Return pointer to the filesystem object */ - - mode &= (BYTE)~FA_READ; /* Desired access mode, write access or not */ - if (fs->fs_type != 0) { /* If the volume has been mounted */ - stat = disk_status(fs->pdrv); - if (!(stat & STA_NOINIT)) { /* and the physical drive is kept initialized */ - if (!FF_FS_READONLY && mode && (stat & STA_PROTECT)) { /* Check write protection if needed */ - return FR_WRITE_PROTECTED; - } - return FR_OK; /* The filesystem object is valid */ - } - } - - /* The filesystem object is not valid. */ - /* Following code attempts to mount the volume. (analyze BPB and initialize the filesystem object) */ - - fs->fs_type = 0; /* Clear the filesystem object */ - fs->pdrv = LD2PD(vol); /* Bind the logical drive and a physical drive */ - stat = disk_initialize(fs->pdrv); /* Initialize the physical drive */ - if (stat & STA_NOINIT) { /* Check if the initialization succeeded */ - return FR_NOT_READY; /* Failed to initialize due to no medium or hard error */ - } - if (!FF_FS_READONLY && mode && (stat & STA_PROTECT)) { /* Check disk write protection if needed */ - return FR_WRITE_PROTECTED; - } -#if FF_MAX_SS != FF_MIN_SS /* Get sector size (multiple sector size cfg only) */ - if (disk_ioctl(fs->pdrv, GET_SECTOR_SIZE, &SS(fs)) != RES_OK) return FR_DISK_ERR; - if (SS(fs) > FF_MAX_SS || SS(fs) < FF_MIN_SS || (SS(fs) & (SS(fs) - 1))) return FR_DISK_ERR; -#endif - - /* Find an FAT partition on the drive. Supports only generic partitioning rules, FDISK (MBR) and SFD (w/o partition). */ - bsect = 0; - fmt = check_fs(fs, bsect); /* Load sector 0 and check if it is an FAT-VBR as SFD */ - if (fmt == 2 || (fmt < 2 && LD2PT(vol) != 0)) { /* Not an FAT-VBR or forced partition number */ - for (i = 0; i < 4; i++) { /* Get partition offset */ - pt = fs->win + (MBR_Table + i * SZ_PTE); - br[i] = pt[PTE_System] ? ld_dword(pt + PTE_StLba) : 0; - } - i = LD2PT(vol); /* Partition number: 0:auto, 1-4:forced */ - if (i != 0) i--; - do { /* Find an FAT volume */ - bsect = br[i]; - fmt = bsect ? check_fs(fs, bsect) : 3; /* Check the partition */ - } while (LD2PT(vol) == 0 && fmt >= 2 && ++i < 4); - } - if (fmt == 4) return FR_DISK_ERR; /* An error occured in the disk I/O layer */ - if (fmt >= 2) return FR_NO_FILESYSTEM; /* No FAT volume is found */ - - /* An FAT volume is found (bsect). Following code initializes the filesystem object */ - -#if FF_FS_EXFAT - if (fmt == 1) { - QWORD maxlba; - DWORD so, cv, bcl; - - for (i = BPB_ZeroedEx; i < BPB_ZeroedEx + 53 && fs->win[i] == 0; i++) ; /* Check zero filler */ - if (i < BPB_ZeroedEx + 53) return FR_NO_FILESYSTEM; - - if (ld_word(fs->win + BPB_FSVerEx) != 0x100) return FR_NO_FILESYSTEM; /* Check exFAT version (must be version 1.0) */ - - if (1 << fs->win[BPB_BytsPerSecEx] != SS(fs)) { /* (BPB_BytsPerSecEx must be equal to the physical sector size) */ - return FR_NO_FILESYSTEM; - } - - maxlba = ld_qword(fs->win + BPB_TotSecEx) + bsect; /* Last LBA + 1 of the volume */ - if (maxlba >= 0x100000000) return FR_NO_FILESYSTEM; /* (It cannot be handled in 32-bit LBA) */ - - fs->fsize = ld_dword(fs->win + BPB_FatSzEx); /* Number of sectors per FAT */ - - fs->n_fats = fs->win[BPB_NumFATsEx]; /* Number of FATs */ - if (fs->n_fats != 1) return FR_NO_FILESYSTEM; /* (Supports only 1 FAT) */ - - fs->csize = 1 << fs->win[BPB_SecPerClusEx]; /* Cluster size */ - if (fs->csize == 0) return FR_NO_FILESYSTEM; /* (Must be 1..32768) */ - - nclst = ld_dword(fs->win + BPB_NumClusEx); /* Number of clusters */ - if (nclst > MAX_EXFAT) return FR_NO_FILESYSTEM; /* (Too many clusters) */ - fs->n_fatent = nclst + 2; - - /* Boundaries and Limits */ - fs->volbase = bsect; - fs->database = bsect + ld_dword(fs->win + BPB_DataOfsEx); - fs->fatbase = bsect + ld_dword(fs->win + BPB_FatOfsEx); - if (maxlba < (QWORD)fs->database + nclst * fs->csize) return FR_NO_FILESYSTEM; /* (Volume size must not be smaller than the size requiered) */ - fs->dirbase = ld_dword(fs->win + BPB_RootClusEx); - - /* Get bitmap location and check if it is contiguous (implementation assumption) */ - so = i = 0; - for (;;) { /* Find the bitmap entry in the root directory (in only first cluster) */ - if (i == 0) { - if (so >= fs->csize) return FR_NO_FILESYSTEM; /* Not found? */ - if (move_window(fs, clst2sect(fs, fs->dirbase) + so) != FR_OK) return FR_DISK_ERR; - so++; - } - if (fs->win[i] == ET_BITMAP) break; /* Is it a bitmap entry? */ - i = (i + SZDIRE) % SS(fs); /* Next entry */ - } - bcl = ld_dword(fs->win + i + 20); /* Bitmap cluster */ - if (bcl < 2 || bcl >= fs->n_fatent) return FR_NO_FILESYSTEM; - fs->bitbase = fs->database + fs->csize * (bcl - 2); /* Bitmap sector */ - for (;;) { /* Check if bitmap is contiguous */ - if (move_window(fs, fs->fatbase + bcl / (SS(fs) / 4)) != FR_OK) return FR_DISK_ERR; - cv = ld_dword(fs->win + bcl % (SS(fs) / 4) * 4); - if (cv == 0xFFFFFFFF) break; /* Last link? */ - if (cv != ++bcl) return FR_NO_FILESYSTEM; /* Fragmented? */ - } - -#if !FF_FS_READONLY - fs->last_clst = fs->free_clst = 0xFFFFFFFF; /* Initialize cluster allocation information */ -#endif - fmt = FS_EXFAT; /* FAT sub-type */ - } else -#endif /* FF_FS_EXFAT */ - { - if (ld_word(fs->win + BPB_BytsPerSec) != SS(fs)) return FR_NO_FILESYSTEM; /* (BPB_BytsPerSec must be equal to the physical sector size) */ - - fasize = ld_word(fs->win + BPB_FATSz16); /* Number of sectors per FAT */ - if (fasize == 0) fasize = ld_dword(fs->win + BPB_FATSz32); - fs->fsize = fasize; - - fs->n_fats = fs->win[BPB_NumFATs]; /* Number of FATs */ - if (fs->n_fats != 1 && fs->n_fats != 2) return FR_NO_FILESYSTEM; /* (Must be 1 or 2) */ - fasize *= fs->n_fats; /* Number of sectors for FAT area */ - - fs->csize = fs->win[BPB_SecPerClus]; /* Cluster size */ - if (fs->csize == 0 || (fs->csize & (fs->csize - 1))) return FR_NO_FILESYSTEM; /* (Must be power of 2) */ - - fs->n_rootdir = ld_word(fs->win + BPB_RootEntCnt); /* Number of root directory entries */ - if (fs->n_rootdir % (SS(fs) / SZDIRE)) return FR_NO_FILESYSTEM; /* (Must be sector aligned) */ - - tsect = ld_word(fs->win + BPB_TotSec16); /* Number of sectors on the volume */ - if (tsect == 0) tsect = ld_dword(fs->win + BPB_TotSec32); - - nrsv = ld_word(fs->win + BPB_RsvdSecCnt); /* Number of reserved sectors */ - if (nrsv == 0) return FR_NO_FILESYSTEM; /* (Must not be 0) */ - - /* Determine the FAT sub type */ - sysect = nrsv + fasize + fs->n_rootdir / (SS(fs) / SZDIRE); /* RSV + FAT + DIR */ - if (tsect < sysect) return FR_NO_FILESYSTEM; /* (Invalid volume size) */ - nclst = (tsect - sysect) / fs->csize; /* Number of clusters */ - if (nclst == 0) return FR_NO_FILESYSTEM; /* (Invalid volume size) */ - fmt = 0; - if (nclst <= MAX_FAT32) fmt = FS_FAT32; - if (nclst <= MAX_FAT16) fmt = FS_FAT16; - if (nclst <= MAX_FAT12) fmt = FS_FAT12; - if (fmt == 0) return FR_NO_FILESYSTEM; - - /* Boundaries and Limits */ - fs->n_fatent = nclst + 2; /* Number of FAT entries */ - fs->volbase = bsect; /* Volume start sector */ - fs->fatbase = bsect + nrsv; /* FAT start sector */ - fs->database = bsect + sysect; /* Data start sector */ - if (fmt == FS_FAT32) { - if (ld_word(fs->win + BPB_FSVer32) != 0) return FR_NO_FILESYSTEM; /* (Must be FAT32 revision 0.0) */ - if (fs->n_rootdir != 0) return FR_NO_FILESYSTEM; /* (BPB_RootEntCnt must be 0) */ - fs->dirbase = ld_dword(fs->win + BPB_RootClus32); /* Root directory start cluster */ - szbfat = fs->n_fatent * 4; /* (Needed FAT size) */ - } else { - if (fs->n_rootdir == 0) return FR_NO_FILESYSTEM; /* (BPB_RootEntCnt must not be 0) */ - fs->dirbase = fs->fatbase + fasize; /* Root directory start sector */ - szbfat = (fmt == FS_FAT16) ? /* (Needed FAT size) */ - fs->n_fatent * 2 : fs->n_fatent * 3 / 2 + (fs->n_fatent & 1); - } - if (fs->fsize < (szbfat + (SS(fs) - 1)) / SS(fs)) return FR_NO_FILESYSTEM; /* (BPB_FATSz must not be less than the size needed) */ - -#if !FF_FS_READONLY - /* Get FSInfo if available */ - fs->last_clst = fs->free_clst = 0xFFFFFFFF; /* Initialize cluster allocation information */ - fs->fsi_flag = 0x80; -#if (FF_FS_NOFSINFO & 3) != 3 - if (fmt == FS_FAT32 /* Allow to update FSInfo only if BPB_FSInfo32 == 1 */ - && ld_word(fs->win + BPB_FSInfo32) == 1 - && move_window(fs, bsect + 1) == FR_OK) - { - fs->fsi_flag = 0; - if (ld_word(fs->win + BS_55AA) == 0xAA55 /* Load FSInfo data if available */ - && ld_dword(fs->win + FSI_LeadSig) == 0x41615252 - && ld_dword(fs->win + FSI_StrucSig) == 0x61417272) - { -#if (FF_FS_NOFSINFO & 1) == 0 - fs->free_clst = ld_dword(fs->win + FSI_Free_Count); -#endif -#if (FF_FS_NOFSINFO & 2) == 0 - fs->last_clst = ld_dword(fs->win + FSI_Nxt_Free); -#endif - } - } -#endif /* (FF_FS_NOFSINFO & 3) != 3 */ -#endif /* !FF_FS_READONLY */ - } - - fs->fs_type = fmt; /* FAT sub-type */ - fs->id = ++Fsid; /* Volume mount ID */ -#if FF_USE_LFN == 1 - fs->lfnbuf = LfnBuf; /* Static LFN working buffer */ -#if FF_FS_EXFAT - fs->dirbuf = DirBuf; /* Static directory block scratchpad buuffer */ -#endif -#endif -#if FF_FS_RPATH != 0 - fs->cdir = 0; /* Initialize current directory */ -#endif -#if FF_FS_LOCK != 0 /* Clear file lock semaphores */ - clear_lock(fs); -#endif - return FR_OK; -} - - - - -/*-----------------------------------------------------------------------*/ -/* Check if the file/directory object is valid or not */ -/*-----------------------------------------------------------------------*/ - -static FRESULT validate ( /* Returns FR_OK or FR_INVALID_OBJECT */ - FFOBJID* obj, /* Pointer to the FFOBJID, the 1st member in the FIL/DIR object, to check validity */ - FATFS** rfs /* Pointer to pointer to the owner filesystem object to return */ -) -{ - FRESULT res = FR_INVALID_OBJECT; - - - if (obj && obj->fs && obj->fs->fs_type && obj->id == obj->fs->id) { /* Test if the object is valid */ -#if FF_FS_REENTRANT - if (lock_fs(obj->fs)) { /* Obtain the filesystem object */ - if (!(disk_status(obj->fs->pdrv) & STA_NOINIT)) { /* Test if the phsical drive is kept initialized */ - res = FR_OK; - } else { - unlock_fs(obj->fs, FR_OK); - } - } else { - res = FR_TIMEOUT; - } -#else - if (!(disk_status(obj->fs->pdrv) & STA_NOINIT)) { /* Test if the phsical drive is kept initialized */ - res = FR_OK; - } -#endif - } - *rfs = (res == FR_OK) ? obj->fs : 0; /* Corresponding filesystem object */ - return res; -} - - - - -/*--------------------------------------------------------------------------- - - Public Functions (FatFs API) - -----------------------------------------------------------------------------*/ - - - -/*-----------------------------------------------------------------------*/ -/* Mount/Unmount a Logical Drive */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_mount ( - FATFS* fs, /* Pointer to the filesystem object (NULL:unmount)*/ - const TCHAR* path, /* Logical drive number to be mounted/unmounted */ - BYTE opt /* Mode option 0:Do not mount (delayed mount), 1:Mount immediately */ -) -{ - FATFS *cfs; - int vol; - FRESULT res; - const TCHAR *rp = path; - - - /* Get logical drive number */ - vol = get_ldnumber(&rp); - if (vol < 0) return FR_INVALID_DRIVE; - cfs = FatFs[vol]; /* Pointer to fs object */ - - if (cfs) { -#if FF_FS_LOCK != 0 - clear_lock(cfs); -#endif -#if FF_FS_REENTRANT /* Discard sync object of the current volume */ - if (!ff_del_syncobj(cfs->sobj)) return FR_INT_ERR; -#endif - cfs->fs_type = 0; /* Clear old fs object */ - } - - if (fs) { - fs->fs_type = 0; /* Clear new fs object */ -#if FF_FS_REENTRANT /* Create sync object for the new volume */ - if (!ff_cre_syncobj((BYTE)vol, &fs->sobj)) return FR_INT_ERR; -#endif - } - FatFs[vol] = fs; /* Register new fs object */ - - if (opt == 0) return FR_OK; /* Do not mount now, it will be mounted later */ - - res = find_volume(&path, &fs, 0); /* Force mounted the volume */ - LEAVE_FF(fs, res); -} - - - - -/*-----------------------------------------------------------------------*/ -/* Open or Create a File */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_open ( - FIL* fp, /* Pointer to the blank file object */ - const TCHAR* path, /* Pointer to the file name */ - BYTE mode /* Access mode and file open mode flags */ -) -{ - FRESULT res; - DIR dj; - FATFS *fs; -#if !FF_FS_READONLY - DWORD dw, cl, bcs, clst, sc; - FSIZE_t ofs; -#endif - DEF_NAMBUF - - - if (!fp) return FR_INVALID_OBJECT; - - /* Get logical drive number */ - mode &= FF_FS_READONLY ? FA_READ : FA_READ | FA_WRITE | FA_CREATE_ALWAYS | FA_CREATE_NEW | FA_OPEN_ALWAYS | FA_OPEN_APPEND; - res = find_volume(&path, &fs, mode); - if (res == FR_OK) { - dj.obj.fs = fs; - INIT_NAMBUF(fs); - res = follow_path(&dj, path); /* Follow the file path */ -#if !FF_FS_READONLY /* Read/Write configuration */ - if (res == FR_OK) { - if (dj.fn[NSFLAG] & NS_NONAME) { /* Origin directory itself? */ - res = FR_INVALID_NAME; - } -#if FF_FS_LOCK != 0 - else { - res = chk_lock(&dj, (mode & ~FA_READ) ? 1 : 0); /* Check if the file can be used */ - } -#endif - } - /* Create or Open a file */ - if (mode & (FA_CREATE_ALWAYS | FA_OPEN_ALWAYS | FA_CREATE_NEW)) { - if (res != FR_OK) { /* No file, create new */ - if (res == FR_NO_FILE) { /* There is no file to open, create a new entry */ -#if FF_FS_LOCK != 0 - res = enq_lock() ? dir_register(&dj) : FR_TOO_MANY_OPEN_FILES; -#else - res = dir_register(&dj); -#endif - } - mode |= FA_CREATE_ALWAYS; /* File is created */ - } - else { /* Any object with the same name is already existing */ - if (dj.obj.attr & (AM_RDO | AM_DIR)) { /* Cannot overwrite it (R/O or DIR) */ - res = FR_DENIED; - } else { - if (mode & FA_CREATE_NEW) res = FR_EXIST; /* Cannot create as new file */ - } - } - if (res == FR_OK && (mode & FA_CREATE_ALWAYS)) { /* Truncate the file if overwrite mode */ -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { - /* Get current allocation info */ - fp->obj.fs = fs; - init_alloc_info(fs, &fp->obj); - /* Set directory entry block initial state */ - mem_set(fs->dirbuf + 2, 0, 30); /* Clear 85 entry except for NumSec */ - mem_set(fs->dirbuf + 38, 0, 26); /* Clear C0 entry except for NumName and NameHash */ - fs->dirbuf[XDIR_Attr] = AM_ARC; - st_dword(fs->dirbuf + XDIR_CrtTime, GET_FATTIME()); - fs->dirbuf[XDIR_GenFlags] = 1; - res = store_xdir(&dj); - if (res == FR_OK && fp->obj.sclust != 0) { /* Remove the cluster chain if exist */ - res = remove_chain(&fp->obj, fp->obj.sclust, 0); - fs->last_clst = fp->obj.sclust - 1; /* Reuse the cluster hole */ - } - } else -#endif - { - /* Set directory entry initial state */ - cl = ld_clust(fs, dj.dir); /* Get current cluster chain */ - st_dword(dj.dir + DIR_CrtTime, GET_FATTIME()); /* Set created time */ - dj.dir[DIR_Attr] = AM_ARC; /* Reset attribute */ - st_clust(fs, dj.dir, 0); /* Reset file allocation info */ - st_dword(dj.dir + DIR_FileSize, 0); - fs->wflag = 1; - if (cl != 0) { /* Remove the cluster chain if exist */ - dw = fs->winsect; - res = remove_chain(&dj.obj, cl, 0); - if (res == FR_OK) { - res = move_window(fs, dw); - fs->last_clst = cl - 1; /* Reuse the cluster hole */ - } - } - } - } - } - else { /* Open an existing file */ - if (res == FR_OK) { /* Is the object exsiting? */ - if (dj.obj.attr & AM_DIR) { /* File open against a directory */ - res = FR_NO_FILE; - } else { - if ((mode & FA_WRITE) && (dj.obj.attr & AM_RDO)) { /* Write mode open against R/O file */ - res = FR_DENIED; - } - } - } - } - if (res == FR_OK) { - if (mode & FA_CREATE_ALWAYS) mode |= FA_MODIFIED; /* Set file change flag if created or overwritten */ - fp->dir_sect = fs->winsect; /* Pointer to the directory entry */ - fp->dir_ptr = dj.dir; -#if FF_FS_LOCK != 0 - fp->obj.lockid = inc_lock(&dj, (mode & ~FA_READ) ? 1 : 0); /* Lock the file for this session */ - if (fp->obj.lockid == 0) res = FR_INT_ERR; -#endif - } -#else /* R/O configuration */ - if (res == FR_OK) { - if (dj.fn[NSFLAG] & NS_NONAME) { /* Is it origin directory itself? */ - res = FR_INVALID_NAME; - } else { - if (dj.obj.attr & AM_DIR) { /* Is it a directory? */ - res = FR_NO_FILE; - } - } - } -#endif - - if (res == FR_OK) { -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { - fp->obj.c_scl = dj.obj.sclust; /* Get containing directory info */ - fp->obj.c_size = ((DWORD)dj.obj.objsize & 0xFFFFFF00) | dj.obj.stat; - fp->obj.c_ofs = dj.blk_ofs; - init_alloc_info(fs, &fp->obj); - } else -#endif - { - fp->obj.sclust = ld_clust(fs, dj.dir); /* Get object allocation info */ - fp->obj.objsize = ld_dword(dj.dir + DIR_FileSize); - } -#if FF_USE_FASTSEEK - fp->cltbl = 0; /* Disable fast seek mode */ -#endif - fp->obj.fs = fs; /* Validate the file object */ - fp->obj.id = fs->id; - fp->flag = mode; /* Set file access mode */ - fp->err = 0; /* Clear error flag */ - fp->sect = 0; /* Invalidate current data sector */ - fp->fptr = 0; /* Set file pointer top of the file */ -#if !FF_FS_READONLY -#if !FF_FS_TINY - mem_set(fp->buf, 0, sizeof fp->buf); /* Clear sector buffer */ -#endif - if ((mode & FA_SEEKEND) && fp->obj.objsize > 0) { /* Seek to end of file if FA_OPEN_APPEND is specified */ - fp->fptr = fp->obj.objsize; /* Offset to seek */ - bcs = (DWORD)fs->csize * SS(fs); /* Cluster size in byte */ - clst = fp->obj.sclust; /* Follow the cluster chain */ - for (ofs = fp->obj.objsize; res == FR_OK && ofs > bcs; ofs -= bcs) { - clst = get_fat(&fp->obj, clst); - if (clst <= 1) res = FR_INT_ERR; - if (clst == 0xFFFFFFFF) res = FR_DISK_ERR; - } - fp->clust = clst; - if (res == FR_OK && ofs % SS(fs)) { /* Fill sector buffer if not on the sector boundary */ - if ((sc = clst2sect(fs, clst)) == 0) { - res = FR_INT_ERR; - } else { - fp->sect = sc + (DWORD)(ofs / SS(fs)); -#if !FF_FS_TINY - if (disk_read(fs->pdrv, fp->buf, fp->sect, 1) != RES_OK) res = FR_DISK_ERR; -#endif - } - } - } -#endif - } - - FREE_NAMBUF(); - } - - if (res != FR_OK) fp->obj.fs = 0; /* Invalidate file object on error */ - - LEAVE_FF(fs, res); -} - - - - -/*-----------------------------------------------------------------------*/ -/* Read File */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_read ( - FIL* fp, /* Pointer to the file object */ - void* buff, /* Pointer to data buffer */ - UINT btr, /* Number of bytes to read */ - UINT* br /* Pointer to number of bytes read */ -) -{ - FRESULT res; - FATFS *fs; - DWORD clst, sect; - FSIZE_t remain; - UINT rcnt, cc, csect; - BYTE *rbuff = (BYTE*)buff; - - - *br = 0; /* Clear read byte counter */ - res = validate(&fp->obj, &fs); /* Check validity of the file object */ - if (res != FR_OK || (res = (FRESULT)fp->err) != FR_OK) LEAVE_FF(fs, res); /* Check validity */ - if (!(fp->flag & FA_READ)) LEAVE_FF(fs, FR_DENIED); /* Check access mode */ - remain = fp->obj.objsize - fp->fptr; - if (btr > remain) btr = (UINT)remain; /* Truncate btr by remaining bytes */ - - for ( ; btr; /* Repeat until btr bytes read */ - btr -= rcnt, *br += rcnt, rbuff += rcnt, fp->fptr += rcnt) { - if (fp->fptr % SS(fs) == 0) { /* On the sector boundary? */ - csect = (UINT)(fp->fptr / SS(fs) & (fs->csize - 1)); /* Sector offset in the cluster */ - if (csect == 0) { /* On the cluster boundary? */ - if (fp->fptr == 0) { /* On the top of the file? */ - clst = fp->obj.sclust; /* Follow cluster chain from the origin */ - } else { /* Middle or end of the file */ -#if FF_USE_FASTSEEK - if (fp->cltbl) { - clst = clmt_clust(fp, fp->fptr); /* Get cluster# from the CLMT */ - } else -#endif - { - clst = get_fat(&fp->obj, fp->clust); /* Follow cluster chain on the FAT */ - } - } - if (clst < 2) ABORT(fs, FR_INT_ERR); - if (clst == 0xFFFFFFFF) ABORT(fs, FR_DISK_ERR); - fp->clust = clst; /* Update current cluster */ - } - sect = clst2sect(fs, fp->clust); /* Get current sector */ - if (sect == 0) ABORT(fs, FR_INT_ERR); - sect += csect; - cc = btr / SS(fs); /* When remaining bytes >= sector size, */ - if (cc > 0) { /* Read maximum contiguous sectors directly */ - if (csect + cc > fs->csize) { /* Clip at cluster boundary */ - cc = fs->csize - csect; - } - if (disk_read(fs->pdrv, rbuff, sect, cc) != RES_OK) ABORT(fs, FR_DISK_ERR); -#if !FF_FS_READONLY && FF_FS_MINIMIZE <= 2 /* Replace one of the read sectors with cached data if it contains a dirty sector */ -#if FF_FS_TINY - if (fs->wflag && fs->winsect - sect < cc) { - mem_cpy(rbuff + ((fs->winsect - sect) * SS(fs)), fs->win, SS(fs)); - } -#else - if ((fp->flag & FA_DIRTY) && fp->sect - sect < cc) { - mem_cpy(rbuff + ((fp->sect - sect) * SS(fs)), fp->buf, SS(fs)); - } -#endif -#endif - rcnt = SS(fs) * cc; /* Number of bytes transferred */ - continue; - } -#if !FF_FS_TINY - if (fp->sect != sect) { /* Load data sector if not in cache */ -#if !FF_FS_READONLY - if (fp->flag & FA_DIRTY) { /* Write-back dirty sector cache */ - if (disk_write(fs->pdrv, fp->buf, fp->sect, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); - fp->flag &= (BYTE)~FA_DIRTY; - } -#endif - if (disk_read(fs->pdrv, fp->buf, sect, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); /* Fill sector cache */ - } -#endif - fp->sect = sect; - } - rcnt = SS(fs) - (UINT)fp->fptr % SS(fs); /* Number of bytes left in the sector */ - if (rcnt > btr) rcnt = btr; /* Clip it by btr if needed */ -#if FF_FS_TINY - if (move_window(fs, fp->sect) != FR_OK) ABORT(fs, FR_DISK_ERR); /* Move sector window */ - mem_cpy(rbuff, fs->win + fp->fptr % SS(fs), rcnt); /* Extract partial sector */ -#else - mem_cpy(rbuff, fp->buf + fp->fptr % SS(fs), rcnt); /* Extract partial sector */ -#endif - } - - LEAVE_FF(fs, FR_OK); -} - - - - -#if !FF_FS_READONLY -/*-----------------------------------------------------------------------*/ -/* Write File */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_write ( - FIL* fp, /* Pointer to the file object */ - const void* buff, /* Pointer to the data to be written */ - UINT btw, /* Number of bytes to write */ - UINT* bw /* Pointer to number of bytes written */ -) -{ - FRESULT res; - FATFS *fs; - DWORD clst, sect; - UINT wcnt, cc, csect; - const BYTE *wbuff = (const BYTE*)buff; - - - *bw = 0; /* Clear write byte counter */ - res = validate(&fp->obj, &fs); /* Check validity of the file object */ - if (res != FR_OK || (res = (FRESULT)fp->err) != FR_OK) LEAVE_FF(fs, res); /* Check validity */ - if (!(fp->flag & FA_WRITE)) LEAVE_FF(fs, FR_DENIED); /* Check access mode */ - - /* Check fptr wrap-around (file size cannot reach 4 GiB at FAT volume) */ - if ((!FF_FS_EXFAT || fs->fs_type != FS_EXFAT) && (DWORD)(fp->fptr + btw) < (DWORD)fp->fptr) { - btw = (UINT)(0xFFFFFFFF - (DWORD)fp->fptr); - } - - for ( ; btw; /* Repeat until all data written */ - btw -= wcnt, *bw += wcnt, wbuff += wcnt, fp->fptr += wcnt, fp->obj.objsize = (fp->fptr > fp->obj.objsize) ? fp->fptr : fp->obj.objsize) { - if (fp->fptr % SS(fs) == 0) { /* On the sector boundary? */ - csect = (UINT)(fp->fptr / SS(fs)) & (fs->csize - 1); /* Sector offset in the cluster */ - if (csect == 0) { /* On the cluster boundary? */ - if (fp->fptr == 0) { /* On the top of the file? */ - clst = fp->obj.sclust; /* Follow from the origin */ - if (clst == 0) { /* If no cluster is allocated, */ - clst = create_chain(&fp->obj, 0); /* create a new cluster chain */ - } - } else { /* On the middle or end of the file */ -#if FF_USE_FASTSEEK - if (fp->cltbl) { - clst = clmt_clust(fp, fp->fptr); /* Get cluster# from the CLMT */ - } else -#endif - { - clst = create_chain(&fp->obj, fp->clust); /* Follow or stretch cluster chain on the FAT */ - } - } - if (clst == 0) break; /* Could not allocate a new cluster (disk full) */ - if (clst == 1) ABORT(fs, FR_INT_ERR); - if (clst == 0xFFFFFFFF) ABORT(fs, FR_DISK_ERR); - fp->clust = clst; /* Update current cluster */ - if (fp->obj.sclust == 0) fp->obj.sclust = clst; /* Set start cluster if the first write */ - } -#if FF_FS_TINY - if (fs->winsect == fp->sect && sync_window(fs) != FR_OK) ABORT(fs, FR_DISK_ERR); /* Write-back sector cache */ -#else - if (fp->flag & FA_DIRTY) { /* Write-back sector cache */ - if (disk_write(fs->pdrv, fp->buf, fp->sect, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); - fp->flag &= (BYTE)~FA_DIRTY; - } -#endif - sect = clst2sect(fs, fp->clust); /* Get current sector */ - if (sect == 0) ABORT(fs, FR_INT_ERR); - sect += csect; - cc = btw / SS(fs); /* When remaining bytes >= sector size, */ - if (cc > 0) { /* Write maximum contiguous sectors directly */ - if (csect + cc > fs->csize) { /* Clip at cluster boundary */ - cc = fs->csize - csect; - } - if (disk_write(fs->pdrv, wbuff, sect, cc) != RES_OK) ABORT(fs, FR_DISK_ERR); -#if FF_FS_MINIMIZE <= 2 -#if FF_FS_TINY - if (fs->winsect - sect < cc) { /* Refill sector cache if it gets invalidated by the direct write */ - mem_cpy(fs->win, wbuff + ((fs->winsect - sect) * SS(fs)), SS(fs)); - fs->wflag = 0; - } -#else - if (fp->sect - sect < cc) { /* Refill sector cache if it gets invalidated by the direct write */ - mem_cpy(fp->buf, wbuff + ((fp->sect - sect) * SS(fs)), SS(fs)); - fp->flag &= (BYTE)~FA_DIRTY; - } -#endif -#endif - wcnt = SS(fs) * cc; /* Number of bytes transferred */ - continue; - } -#if FF_FS_TINY - if (fp->fptr >= fp->obj.objsize) { /* Avoid silly cache filling on the growing edge */ - if (sync_window(fs) != FR_OK) ABORT(fs, FR_DISK_ERR); - fs->winsect = sect; - } -#else - if (fp->sect != sect && /* Fill sector cache with file data */ - fp->fptr < fp->obj.objsize && - disk_read(fs->pdrv, fp->buf, sect, 1) != RES_OK) { - ABORT(fs, FR_DISK_ERR); - } -#endif - fp->sect = sect; - } - wcnt = SS(fs) - (UINT)fp->fptr % SS(fs); /* Number of bytes left in the sector */ - if (wcnt > btw) wcnt = btw; /* Clip it by btw if needed */ -#if FF_FS_TINY - if (move_window(fs, fp->sect) != FR_OK) ABORT(fs, FR_DISK_ERR); /* Move sector window */ - mem_cpy(fs->win + fp->fptr % SS(fs), wbuff, wcnt); /* Fit data to the sector */ - fs->wflag = 1; -#else - mem_cpy(fp->buf + fp->fptr % SS(fs), wbuff, wcnt); /* Fit data to the sector */ - fp->flag |= FA_DIRTY; -#endif - } - - fp->flag |= FA_MODIFIED; /* Set file change flag */ - - LEAVE_FF(fs, FR_OK); -} - - - - -/*-----------------------------------------------------------------------*/ -/* Synchronize the File */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_sync ( - FIL* fp /* Pointer to the file object */ -) -{ - FRESULT res; - FATFS *fs; - DWORD tm; - BYTE *dir; - - - res = validate(&fp->obj, &fs); /* Check validity of the file object */ - if (res == FR_OK) { - if (fp->flag & FA_MODIFIED) { /* Is there any change to the file? */ -#if !FF_FS_TINY - if (fp->flag & FA_DIRTY) { /* Write-back cached data if needed */ - if (disk_write(fs->pdrv, fp->buf, fp->sect, 1) != RES_OK) LEAVE_FF(fs, FR_DISK_ERR); - fp->flag &= (BYTE)~FA_DIRTY; - } -#endif - /* Update the directory entry */ - tm = GET_FATTIME(); /* Modified time */ -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { - res = fill_first_frag(&fp->obj); /* Fill first fragment on the FAT if needed */ - if (res == FR_OK) { - res = fill_last_frag(&fp->obj, fp->clust, 0xFFFFFFFF); /* Fill last fragment on the FAT if needed */ - } - if (res == FR_OK) { - DIR dj; - DEF_NAMBUF - - INIT_NAMBUF(fs); - res = load_obj_xdir(&dj, &fp->obj); /* Load directory entry block */ - if (res == FR_OK) { - fs->dirbuf[XDIR_Attr] |= AM_ARC; /* Set archive attribute to indicate that the file has been changed */ - fs->dirbuf[XDIR_GenFlags] = fp->obj.stat | 1; /* Update file allocation information */ - st_dword(fs->dirbuf + XDIR_FstClus, fp->obj.sclust); - st_qword(fs->dirbuf + XDIR_FileSize, fp->obj.objsize); - st_qword(fs->dirbuf + XDIR_ValidFileSize, fp->obj.objsize); - st_dword(fs->dirbuf + XDIR_ModTime, tm); /* Update modified time */ - fs->dirbuf[XDIR_ModTime10] = 0; - st_dword(fs->dirbuf + XDIR_AccTime, 0); - res = store_xdir(&dj); /* Restore it to the directory */ - if (res == FR_OK) { - res = sync_fs(fs); - fp->flag &= (BYTE)~FA_MODIFIED; - } - } - FREE_NAMBUF(); - } - } else -#endif - { - res = move_window(fs, fp->dir_sect); - if (res == FR_OK) { - dir = fp->dir_ptr; - dir[DIR_Attr] |= AM_ARC; /* Set archive attribute to indicate that the file has been changed */ - st_clust(fp->obj.fs, dir, fp->obj.sclust); /* Update file allocation information */ - st_dword(dir + DIR_FileSize, (DWORD)fp->obj.objsize); /* Update file size */ - st_dword(dir + DIR_ModTime, tm); /* Update modified time */ - st_word(dir + DIR_LstAccDate, 0); - fs->wflag = 1; - res = sync_fs(fs); /* Restore it to the directory */ - fp->flag &= (BYTE)~FA_MODIFIED; - } - } - } - } - - LEAVE_FF(fs, res); -} - -#endif /* !FF_FS_READONLY */ - - - - -/*-----------------------------------------------------------------------*/ -/* Close File */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_close ( - FIL* fp /* Pointer to the file object to be closed */ -) -{ - FRESULT res; - FATFS *fs; - -#if !FF_FS_READONLY - res = f_sync(fp); /* Flush cached data */ - if (res == FR_OK) -#endif - { - res = validate(&fp->obj, &fs); /* Lock volume */ - if (res == FR_OK) { -#if FF_FS_LOCK != 0 - res = dec_lock(fp->obj.lockid); /* Decrement file open counter */ - if (res == FR_OK) fp->obj.fs = 0; /* Invalidate file object */ -#else - fp->obj.fs = 0; /* Invalidate file object */ -#endif -#if FF_FS_REENTRANT - unlock_fs(fs, FR_OK); /* Unlock volume */ -#endif - } - } - return res; -} - - - - -#if FF_FS_RPATH >= 1 -/*-----------------------------------------------------------------------*/ -/* Change Current Directory or Current Drive, Get Current Directory */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_chdrive ( - const TCHAR* path /* Drive number to set */ -) -{ - int vol; - - - /* Get logical drive number */ - vol = get_ldnumber(&path); - if (vol < 0) return FR_INVALID_DRIVE; - CurrVol = (BYTE)vol; /* Set it as current volume */ - - return FR_OK; -} - - - -FRESULT f_chdir ( - const TCHAR* path /* Pointer to the directory path */ -) -{ -#if FF_STR_VOLUME_ID == 2 - UINT i; -#endif - FRESULT res; - DIR dj; - FATFS *fs; - DEF_NAMBUF - - - /* Get logical drive */ - res = find_volume(&path, &fs, 0); - if (res == FR_OK) { - dj.obj.fs = fs; - INIT_NAMBUF(fs); - res = follow_path(&dj, path); /* Follow the path */ - if (res == FR_OK) { /* Follow completed */ - if (dj.fn[NSFLAG] & NS_NONAME) { /* Is it the start directory itself? */ - fs->cdir = dj.obj.sclust; -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { - fs->cdc_scl = dj.obj.c_scl; - fs->cdc_size = dj.obj.c_size; - fs->cdc_ofs = dj.obj.c_ofs; - } -#endif - } else { - if (dj.obj.attr & AM_DIR) { /* It is a sub-directory */ -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { - fs->cdir = ld_dword(fs->dirbuf + XDIR_FstClus); /* Sub-directory cluster */ - fs->cdc_scl = dj.obj.sclust; /* Save containing directory information */ - fs->cdc_size = ((DWORD)dj.obj.objsize & 0xFFFFFF00) | dj.obj.stat; - fs->cdc_ofs = dj.blk_ofs; - } else -#endif - { - fs->cdir = ld_clust(fs, dj.dir); /* Sub-directory cluster */ - } - } else { - res = FR_NO_PATH; /* Reached but a file */ - } - } - } - FREE_NAMBUF(); - if (res == FR_NO_FILE) res = FR_NO_PATH; -#if FF_STR_VOLUME_ID == 2 /* Also current drive is changed at Unix style volume ID */ - if (res == FR_OK) { - for (i = FF_VOLUMES - 1; i && fs != FatFs[i]; i--) ; /* Set current drive */ - CurrVol = (BYTE)i; - } -#endif - } - - LEAVE_FF(fs, res); -} - - -#if FF_FS_RPATH >= 2 -FRESULT f_getcwd ( - TCHAR* buff, /* Pointer to the directory path */ - UINT len /* Size of buff in unit of TCHAR */ -) -{ - FRESULT res; - DIR dj; - FATFS *fs; - UINT i, n; - DWORD ccl; - TCHAR *tp = buff; -#if FF_VOLUMES >= 2 - UINT vl; -#endif -#if FF_STR_VOLUME_ID - const char *vp; -#endif - FILINFO fno; - DEF_NAMBUF - - - /* Get logical drive */ - buff[0] = 0; /* Set null string to get current volume */ - res = find_volume((const TCHAR**)&buff, &fs, 0); /* Get current volume */ - if (res == FR_OK) { - dj.obj.fs = fs; - INIT_NAMBUF(fs); - - /* Follow parent directories and create the path */ - i = len; /* Bottom of buffer (directory stack base) */ - if (!FF_FS_EXFAT || fs->fs_type != FS_EXFAT) { /* (Cannot do getcwd on exFAT and returns root path) */ - dj.obj.sclust = fs->cdir; /* Start to follow upper directory from current directory */ - while ((ccl = dj.obj.sclust) != 0) { /* Repeat while current directory is a sub-directory */ - res = dir_sdi(&dj, 1 * SZDIRE); /* Get parent directory */ - if (res != FR_OK) break; - res = move_window(fs, dj.sect); - if (res != FR_OK) break; - dj.obj.sclust = ld_clust(fs, dj.dir); /* Goto parent directory */ - res = dir_sdi(&dj, 0); - if (res != FR_OK) break; - do { /* Find the entry links to the child directory */ - res = DIR_READ_FILE(&dj); - if (res != FR_OK) break; - if (ccl == ld_clust(fs, dj.dir)) break; /* Found the entry */ - res = dir_next(&dj, 0); - } while (res == FR_OK); - if (res == FR_NO_FILE) res = FR_INT_ERR;/* It cannot be 'not found'. */ - if (res != FR_OK) break; - get_fileinfo(&dj, &fno); /* Get the directory name and push it to the buffer */ - for (n = 0; fno.fname[n]; n++) ; /* Name length */ - if (i < n + 1) { /* Insufficient space to store the path name? */ - res = FR_NOT_ENOUGH_CORE; break; - } - while (n) buff[--i] = fno.fname[--n]; /* Stack the name */ - buff[--i] = '/'; - } - } - if (res == FR_OK) { - if (i == len) buff[--i] = '/'; /* Is it the root-directory? */ -#if FF_VOLUMES >= 2 /* Put drive prefix */ - vl = 0; -#if FF_STR_VOLUME_ID >= 1 /* String volume ID */ - for (n = 0, vp = (const char*)VolumeStr[CurrVol]; vp[n]; n++) ; - if (i >= n + 2) { - if (FF_STR_VOLUME_ID == 2) *tp++ = (TCHAR)'/'; - for (vl = 0; vl < n; *tp++ = (TCHAR)vp[vl], vl++) ; - if (FF_STR_VOLUME_ID == 1) *tp++ = (TCHAR)':'; - vl++; - } -#else /* Numeric volume ID */ - if (i >= 3) { - *tp++ = (TCHAR)'0' + CurrVol; - *tp++ = (TCHAR)':'; - vl = 2; - } -#endif - if (vl == 0) res = FR_NOT_ENOUGH_CORE; -#endif - /* Add current directory path */ - if (res == FR_OK) { - do *tp++ = buff[i++]; while (i < len); /* Copy stacked path string */ - } - } - FREE_NAMBUF(); - } - - *tp = 0; - LEAVE_FF(fs, res); -} - -#endif /* FF_FS_RPATH >= 2 */ -#endif /* FF_FS_RPATH >= 1 */ - - - -#if FF_FS_MINIMIZE <= 2 -/*-----------------------------------------------------------------------*/ -/* Seek File Read/Write Pointer */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_lseek ( - FIL* fp, /* Pointer to the file object */ - FSIZE_t ofs /* File pointer from top of file */ -) -{ - FRESULT res; - FATFS *fs; - DWORD clst, bcs, nsect; - FSIZE_t ifptr; -#if FF_USE_FASTSEEK - DWORD cl, pcl, ncl, tcl, dsc, tlen, ulen, *tbl; -#endif - - res = validate(&fp->obj, &fs); /* Check validity of the file object */ - if (res == FR_OK) res = (FRESULT)fp->err; -#if FF_FS_EXFAT && !FF_FS_READONLY - if (res == FR_OK && fs->fs_type == FS_EXFAT) { - res = fill_last_frag(&fp->obj, fp->clust, 0xFFFFFFFF); /* Fill last fragment on the FAT if needed */ - } -#endif - if (res != FR_OK) LEAVE_FF(fs, res); - -#if FF_USE_FASTSEEK - if (fp->cltbl) { /* Fast seek */ - if (ofs == CREATE_LINKMAP) { /* Create CLMT */ - tbl = fp->cltbl; - tlen = *tbl++; ulen = 2; /* Given table size and required table size */ - cl = fp->obj.sclust; /* Origin of the chain */ - if (cl != 0) { - do { - /* Get a fragment */ - tcl = cl; ncl = 0; ulen += 2; /* Top, length and used items */ - do { - pcl = cl; ncl++; - cl = get_fat(&fp->obj, cl); - if (cl <= 1) ABORT(fs, FR_INT_ERR); - if (cl == 0xFFFFFFFF) ABORT(fs, FR_DISK_ERR); - } while (cl == pcl + 1); - if (ulen <= tlen) { /* Store the length and top of the fragment */ - *tbl++ = ncl; *tbl++ = tcl; - } - } while (cl < fs->n_fatent); /* Repeat until end of chain */ - } - *fp->cltbl = ulen; /* Number of items used */ - if (ulen <= tlen) { - *tbl = 0; /* Terminate table */ - } else { - res = FR_NOT_ENOUGH_CORE; /* Given table size is smaller than required */ - } - } else { /* Fast seek */ - if (ofs > fp->obj.objsize) ofs = fp->obj.objsize; /* Clip offset at the file size */ - fp->fptr = ofs; /* Set file pointer */ - if (ofs > 0) { - fp->clust = clmt_clust(fp, ofs - 1); - dsc = clst2sect(fs, fp->clust); - if (dsc == 0) ABORT(fs, FR_INT_ERR); - dsc += (DWORD)((ofs - 1) / SS(fs)) & (fs->csize - 1); - if (fp->fptr % SS(fs) && dsc != fp->sect) { /* Refill sector cache if needed */ -#if !FF_FS_TINY -#if !FF_FS_READONLY - if (fp->flag & FA_DIRTY) { /* Write-back dirty sector cache */ - if (disk_write(fs->pdrv, fp->buf, fp->sect, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); - fp->flag &= (BYTE)~FA_DIRTY; - } -#endif - if (disk_read(fs->pdrv, fp->buf, dsc, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); /* Load current sector */ -#endif - fp->sect = dsc; - } - } - } - } else -#endif - - /* Normal Seek */ - { -#if FF_FS_EXFAT - if (fs->fs_type != FS_EXFAT && ofs >= 0x100000000) ofs = 0xFFFFFFFF; /* Clip at 4 GiB - 1 if at FATxx */ -#endif - if (ofs > fp->obj.objsize && (FF_FS_READONLY || !(fp->flag & FA_WRITE))) { /* In read-only mode, clip offset with the file size */ - ofs = fp->obj.objsize; - } - ifptr = fp->fptr; - fp->fptr = nsect = 0; - if (ofs > 0) { - bcs = (DWORD)fs->csize * SS(fs); /* Cluster size (byte) */ - if (ifptr > 0 && - (ofs - 1) / bcs >= (ifptr - 1) / bcs) { /* When seek to same or following cluster, */ - fp->fptr = (ifptr - 1) & ~(FSIZE_t)(bcs - 1); /* start from the current cluster */ - ofs -= fp->fptr; - clst = fp->clust; - } else { /* When seek to back cluster, */ - clst = fp->obj.sclust; /* start from the first cluster */ -#if !FF_FS_READONLY - if (clst == 0) { /* If no cluster chain, create a new chain */ - clst = create_chain(&fp->obj, 0); - if (clst == 1) ABORT(fs, FR_INT_ERR); - if (clst == 0xFFFFFFFF) ABORT(fs, FR_DISK_ERR); - fp->obj.sclust = clst; - } -#endif - fp->clust = clst; - } - if (clst != 0) { - while (ofs > bcs) { /* Cluster following loop */ - ofs -= bcs; fp->fptr += bcs; -#if !FF_FS_READONLY - if (fp->flag & FA_WRITE) { /* Check if in write mode or not */ - if (FF_FS_EXFAT && fp->fptr > fp->obj.objsize) { /* No FAT chain object needs correct objsize to generate FAT value */ - fp->obj.objsize = fp->fptr; - fp->flag |= FA_MODIFIED; - } - clst = create_chain(&fp->obj, clst); /* Follow chain with forceed stretch */ - if (clst == 0) { /* Clip file size in case of disk full */ - ofs = 0; break; - } - } else -#endif - { - clst = get_fat(&fp->obj, clst); /* Follow cluster chain if not in write mode */ - } - if (clst == 0xFFFFFFFF) ABORT(fs, FR_DISK_ERR); - if (clst <= 1 || clst >= fs->n_fatent) ABORT(fs, FR_INT_ERR); - fp->clust = clst; - } - fp->fptr += ofs; - if (ofs % SS(fs)) { - nsect = clst2sect(fs, clst); /* Current sector */ - if (nsect == 0) ABORT(fs, FR_INT_ERR); - nsect += (DWORD)(ofs / SS(fs)); - } - } - } - if (!FF_FS_READONLY && fp->fptr > fp->obj.objsize) { /* Set file change flag if the file size is extended */ - fp->obj.objsize = fp->fptr; - fp->flag |= FA_MODIFIED; - } - if (fp->fptr % SS(fs) && nsect != fp->sect) { /* Fill sector cache if needed */ -#if !FF_FS_TINY -#if !FF_FS_READONLY - if (fp->flag & FA_DIRTY) { /* Write-back dirty sector cache */ - if (disk_write(fs->pdrv, fp->buf, fp->sect, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); - fp->flag &= (BYTE)~FA_DIRTY; - } -#endif - if (disk_read(fs->pdrv, fp->buf, nsect, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); /* Fill sector cache */ -#endif - fp->sect = nsect; - } - } - - LEAVE_FF(fs, res); -} - - - -#if FF_FS_MINIMIZE <= 1 -/*-----------------------------------------------------------------------*/ -/* Create a Directory Object */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_opendir ( - DIR* dp, /* Pointer to directory object to create */ - const TCHAR* path /* Pointer to the directory path */ -) -{ - FRESULT res; - FATFS *fs; - DEF_NAMBUF - - - if (!dp) return FR_INVALID_OBJECT; - - /* Get logical drive */ - res = find_volume(&path, &fs, 0); - if (res == FR_OK) { - dp->obj.fs = fs; - INIT_NAMBUF(fs); - res = follow_path(dp, path); /* Follow the path to the directory */ - if (res == FR_OK) { /* Follow completed */ - if (!(dp->fn[NSFLAG] & NS_NONAME)) { /* It is not the origin directory itself */ - if (dp->obj.attr & AM_DIR) { /* This object is a sub-directory */ -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { - dp->obj.c_scl = dp->obj.sclust; /* Get containing directory inforamation */ - dp->obj.c_size = ((DWORD)dp->obj.objsize & 0xFFFFFF00) | dp->obj.stat; - dp->obj.c_ofs = dp->blk_ofs; - init_alloc_info(fs, &dp->obj); /* Get object allocation info */ - } else -#endif - { - dp->obj.sclust = ld_clust(fs, dp->dir); /* Get object allocation info */ - } - } else { /* This object is a file */ - res = FR_NO_PATH; - } - } - if (res == FR_OK) { - dp->obj.id = fs->id; - res = dir_sdi(dp, 0); /* Rewind directory */ -#if FF_FS_LOCK != 0 - if (res == FR_OK) { - if (dp->obj.sclust != 0) { - dp->obj.lockid = inc_lock(dp, 0); /* Lock the sub directory */ - if (!dp->obj.lockid) res = FR_TOO_MANY_OPEN_FILES; - } else { - dp->obj.lockid = 0; /* Root directory need not to be locked */ - } - } -#endif - } - } - FREE_NAMBUF(); - if (res == FR_NO_FILE) res = FR_NO_PATH; - } - if (res != FR_OK) dp->obj.fs = 0; /* Invalidate the directory object if function faild */ - - LEAVE_FF(fs, res); -} - - - - -/*-----------------------------------------------------------------------*/ -/* Close Directory */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_closedir ( - DIR *dp /* Pointer to the directory object to be closed */ -) -{ - FRESULT res; - FATFS *fs; - - - res = validate(&dp->obj, &fs); /* Check validity of the file object */ - if (res == FR_OK) { -#if FF_FS_LOCK != 0 - if (dp->obj.lockid) res = dec_lock(dp->obj.lockid); /* Decrement sub-directory open counter */ - if (res == FR_OK) dp->obj.fs = 0; /* Invalidate directory object */ -#else - dp->obj.fs = 0; /* Invalidate directory object */ -#endif -#if FF_FS_REENTRANT - unlock_fs(fs, FR_OK); /* Unlock volume */ -#endif - } - return res; -} - - - - -/*-----------------------------------------------------------------------*/ -/* Read Directory Entries in Sequence */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_readdir ( - DIR* dp, /* Pointer to the open directory object */ - FILINFO* fno /* Pointer to file information to return */ -) -{ - FRESULT res; - FATFS *fs; - DEF_NAMBUF - - - res = validate(&dp->obj, &fs); /* Check validity of the directory object */ - if (res == FR_OK) { - if (!fno) { - res = dir_sdi(dp, 0); /* Rewind the directory object */ - } else { - INIT_NAMBUF(fs); - res = DIR_READ_FILE(dp); /* Read an item */ - if (res == FR_NO_FILE) res = FR_OK; /* Ignore end of directory */ - if (res == FR_OK) { /* A valid entry is found */ - get_fileinfo(dp, fno); /* Get the object information */ - res = dir_next(dp, 0); /* Increment index for next */ - if (res == FR_NO_FILE) res = FR_OK; /* Ignore end of directory now */ - } - FREE_NAMBUF(); - } - } - LEAVE_FF(fs, res); -} - - - -#if FF_USE_FIND -/*-----------------------------------------------------------------------*/ -/* Find Next File */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_findnext ( - DIR* dp, /* Pointer to the open directory object */ - FILINFO* fno /* Pointer to the file information structure */ -) -{ - FRESULT res; - - - for (;;) { - res = f_readdir(dp, fno); /* Get a directory item */ - if (res != FR_OK || !fno || !fno->fname[0]) break; /* Terminate if any error or end of directory */ - if (pattern_matching(dp->pat, fno->fname, 0, 0)) break; /* Test for the file name */ -#if FF_USE_LFN && FF_USE_FIND == 2 - if (pattern_matching(dp->pat, fno->altname, 0, 0)) break; /* Test for alternative name if exist */ -#endif - } - return res; -} - - - -/*-----------------------------------------------------------------------*/ -/* Find First File */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_findfirst ( - DIR* dp, /* Pointer to the blank directory object */ - FILINFO* fno, /* Pointer to the file information structure */ - const TCHAR* path, /* Pointer to the directory to open */ - const TCHAR* pattern /* Pointer to the matching pattern */ -) -{ - FRESULT res; - - - dp->pat = pattern; /* Save pointer to pattern string */ - res = f_opendir(dp, path); /* Open the target directory */ - if (res == FR_OK) { - res = f_findnext(dp, fno); /* Find the first item */ - } - return res; -} - -#endif /* FF_USE_FIND */ - - - -#if FF_FS_MINIMIZE == 0 -/*-----------------------------------------------------------------------*/ -/* Get File Status */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_stat ( - const TCHAR* path, /* Pointer to the file path */ - FILINFO* fno /* Pointer to file information to return */ -) -{ - FRESULT res; - DIR dj; - DEF_NAMBUF - - - /* Get logical drive */ - res = find_volume(&path, &dj.obj.fs, 0); - if (res == FR_OK) { - INIT_NAMBUF(dj.obj.fs); - res = follow_path(&dj, path); /* Follow the file path */ - if (res == FR_OK) { /* Follow completed */ - if (dj.fn[NSFLAG] & NS_NONAME) { /* It is origin directory */ - res = FR_INVALID_NAME; - } else { /* Found an object */ - if (fno) get_fileinfo(&dj, fno); - } - } - FREE_NAMBUF(); - } - - LEAVE_FF(dj.obj.fs, res); -} - - - -#if !FF_FS_READONLY -/*-----------------------------------------------------------------------*/ -/* Get Number of Free Clusters */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_getfree ( - const TCHAR* path, /* Logical drive number */ - DWORD* nclst, /* Pointer to a variable to return number of free clusters */ - FATFS** fatfs /* Pointer to return pointer to corresponding filesystem object */ -) -{ - FRESULT res; - FATFS *fs; - DWORD nfree, clst, sect, stat; - UINT i; - FFOBJID obj; - - - /* Get logical drive */ - res = find_volume(&path, &fs, 0); - if (res == FR_OK) { - *fatfs = fs; /* Return ptr to the fs object */ - /* If free_clst is valid, return it without full FAT scan */ - if (fs->free_clst <= fs->n_fatent - 2) { - *nclst = fs->free_clst; - } else { - /* Scan FAT to obtain number of free clusters */ - nfree = 0; - if (fs->fs_type == FS_FAT12) { /* FAT12: Scan bit field FAT entries */ - clst = 2; obj.fs = fs; - do { - stat = get_fat(&obj, clst); - if (stat == 0xFFFFFFFF) { res = FR_DISK_ERR; break; } - if (stat == 1) { res = FR_INT_ERR; break; } - if (stat == 0) nfree++; - } while (++clst < fs->n_fatent); - } else { -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { /* exFAT: Scan allocation bitmap */ - BYTE bm; - UINT b; - - clst = fs->n_fatent - 2; /* Number of clusters */ - sect = fs->bitbase; /* Bitmap sector */ - i = 0; /* Offset in the sector */ - do { /* Counts numbuer of bits with zero in the bitmap */ - if (i == 0) { - res = move_window(fs, sect++); - if (res != FR_OK) break; - } - for (b = 8, bm = fs->win[i]; b && clst; b--, clst--) { - if (!(bm & 1)) nfree++; - bm >>= 1; - } - i = (i + 1) % SS(fs); - } while (clst); - } else -#endif - { /* FAT16/32: Scan WORD/DWORD FAT entries */ - clst = fs->n_fatent; /* Number of entries */ - sect = fs->fatbase; /* Top of the FAT */ - i = 0; /* Offset in the sector */ - do { /* Counts numbuer of entries with zero in the FAT */ - if (i == 0) { - res = move_window(fs, sect++); - if (res != FR_OK) break; - } - if (fs->fs_type == FS_FAT16) { - if (ld_word(fs->win + i) == 0) nfree++; - i += 2; - } else { - if ((ld_dword(fs->win + i) & 0x0FFFFFFF) == 0) nfree++; - i += 4; - } - i %= SS(fs); - } while (--clst); - } - } - *nclst = nfree; /* Return the free clusters */ - fs->free_clst = nfree; /* Now free_clst is valid */ - fs->fsi_flag |= 1; /* FAT32: FSInfo is to be updated */ - } - } - - LEAVE_FF(fs, res); -} - - - - -/*-----------------------------------------------------------------------*/ -/* Truncate File */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_truncate ( - FIL* fp /* Pointer to the file object */ -) -{ - FRESULT res; - FATFS *fs; - DWORD ncl; - - - res = validate(&fp->obj, &fs); /* Check validity of the file object */ - if (res != FR_OK || (res = (FRESULT)fp->err) != FR_OK) LEAVE_FF(fs, res); - if (!(fp->flag & FA_WRITE)) LEAVE_FF(fs, FR_DENIED); /* Check access mode */ - - if (fp->fptr < fp->obj.objsize) { /* Process when fptr is not on the eof */ - if (fp->fptr == 0) { /* When set file size to zero, remove entire cluster chain */ - res = remove_chain(&fp->obj, fp->obj.sclust, 0); - fp->obj.sclust = 0; - } else { /* When truncate a part of the file, remove remaining clusters */ - ncl = get_fat(&fp->obj, fp->clust); - res = FR_OK; - if (ncl == 0xFFFFFFFF) res = FR_DISK_ERR; - if (ncl == 1) res = FR_INT_ERR; - if (res == FR_OK && ncl < fs->n_fatent) { - res = remove_chain(&fp->obj, ncl, fp->clust); - } - } - fp->obj.objsize = fp->fptr; /* Set file size to current read/write point */ - fp->flag |= FA_MODIFIED; -#if !FF_FS_TINY - if (res == FR_OK && (fp->flag & FA_DIRTY)) { - if (disk_write(fs->pdrv, fp->buf, fp->sect, 1) != RES_OK) { - res = FR_DISK_ERR; - } else { - fp->flag &= (BYTE)~FA_DIRTY; - } - } -#endif - if (res != FR_OK) ABORT(fs, res); - } - - LEAVE_FF(fs, res); -} - - - - -/*-----------------------------------------------------------------------*/ -/* Delete a File/Directory */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_unlink ( - const TCHAR* path /* Pointer to the file or directory path */ -) -{ - FRESULT res; - DIR dj, sdj; - DWORD dclst = 0; - FATFS *fs; -#if FF_FS_EXFAT - FFOBJID obj; -#endif - DEF_NAMBUF - - - /* Get logical drive */ - res = find_volume(&path, &fs, FA_WRITE); - if (res == FR_OK) { - dj.obj.fs = fs; - INIT_NAMBUF(fs); - res = follow_path(&dj, path); /* Follow the file path */ - if (FF_FS_RPATH && res == FR_OK && (dj.fn[NSFLAG] & NS_DOT)) { - res = FR_INVALID_NAME; /* Cannot remove dot entry */ - } -#if FF_FS_LOCK != 0 - if (res == FR_OK) res = chk_lock(&dj, 2); /* Check if it is an open object */ -#endif - if (res == FR_OK) { /* The object is accessible */ - if (dj.fn[NSFLAG] & NS_NONAME) { - res = FR_INVALID_NAME; /* Cannot remove the origin directory */ - } else { - if (dj.obj.attr & AM_RDO) { - res = FR_DENIED; /* Cannot remove R/O object */ - } - } - if (res == FR_OK) { -#if FF_FS_EXFAT - obj.fs = fs; - if (fs->fs_type == FS_EXFAT) { - init_alloc_info(fs, &obj); - dclst = obj.sclust; - } else -#endif - { - dclst = ld_clust(fs, dj.dir); - } - if (dj.obj.attr & AM_DIR) { /* Is it a sub-directory? */ -#if FF_FS_RPATH != 0 - if (dclst == fs->cdir) { /* Is it the current directory? */ - res = FR_DENIED; - } else -#endif - { - sdj.obj.fs = fs; /* Open the sub-directory */ - sdj.obj.sclust = dclst; -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { - sdj.obj.objsize = obj.objsize; - sdj.obj.stat = obj.stat; - } -#endif - res = dir_sdi(&sdj, 0); - if (res == FR_OK) { - res = DIR_READ_FILE(&sdj); /* Test if the directory is empty */ - if (res == FR_OK) res = FR_DENIED; /* Not empty? */ - if (res == FR_NO_FILE) res = FR_OK; /* Empty? */ - } - } - } - } - if (res == FR_OK) { - res = dir_remove(&dj); /* Remove the directory entry */ - if (res == FR_OK && dclst != 0) { /* Remove the cluster chain if exist */ -#if FF_FS_EXFAT - res = remove_chain(&obj, dclst, 0); -#else - res = remove_chain(&dj.obj, dclst, 0); -#endif - } - if (res == FR_OK) res = sync_fs(fs); - } - } - FREE_NAMBUF(); - } - - LEAVE_FF(fs, res); -} - - - - -/*-----------------------------------------------------------------------*/ -/* Create a Directory */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_mkdir ( - const TCHAR* path /* Pointer to the directory path */ -) -{ - FRESULT res; - DIR dj; - FFOBJID sobj; - FATFS *fs; - DWORD dcl, pcl, tm; - DEF_NAMBUF - - - res = find_volume(&path, &fs, FA_WRITE); /* Get logical drive */ - if (res == FR_OK) { - dj.obj.fs = fs; - INIT_NAMBUF(fs); - res = follow_path(&dj, path); /* Follow the file path */ - if (res == FR_OK) res = FR_EXIST; /* Name collision? */ - if (FF_FS_RPATH && res == FR_NO_FILE && (dj.fn[NSFLAG] & NS_DOT)) { /* Invalid name? */ - res = FR_INVALID_NAME; - } - if (res == FR_NO_FILE) { /* It is clear to create a new directory */ - sobj.fs = fs; /* New object id to create a new chain */ - dcl = create_chain(&sobj, 0); /* Allocate a cluster for the new directory */ - res = FR_OK; - if (dcl == 0) res = FR_DENIED; /* No space to allocate a new cluster? */ - if (dcl == 1) res = FR_INT_ERR; /* Any insanity? */ - if (dcl == 0xFFFFFFFF) res = FR_DISK_ERR; /* Disk error? */ - tm = GET_FATTIME(); - if (res == FR_OK) { - res = dir_clear(fs, dcl); /* Clean up the new table */ - if (res == FR_OK) { - if (!FF_FS_EXFAT || fs->fs_type != FS_EXFAT) { /* Create dot entries (FAT only) */ - mem_set(fs->win + DIR_Name, ' ', 11); /* Create "." entry */ - fs->win[DIR_Name] = '.'; - fs->win[DIR_Attr] = AM_DIR; - st_dword(fs->win + DIR_ModTime, tm); - st_clust(fs, fs->win, dcl); - mem_cpy(fs->win + SZDIRE, fs->win, SZDIRE); /* Create ".." entry */ - fs->win[SZDIRE + 1] = '.'; pcl = dj.obj.sclust; - st_clust(fs, fs->win + SZDIRE, pcl); - fs->wflag = 1; - } - res = dir_register(&dj); /* Register the object to the parent directoy */ - } - } - if (res == FR_OK) { -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { /* Initialize directory entry block */ - st_dword(fs->dirbuf + XDIR_ModTime, tm); /* Created time */ - st_dword(fs->dirbuf + XDIR_FstClus, dcl); /* Table start cluster */ - st_dword(fs->dirbuf + XDIR_FileSize, (DWORD)fs->csize * SS(fs)); /* File size needs to be valid */ - st_dword(fs->dirbuf + XDIR_ValidFileSize, (DWORD)fs->csize * SS(fs)); - fs->dirbuf[XDIR_GenFlags] = 3; /* Initialize the object flag */ - fs->dirbuf[XDIR_Attr] = AM_DIR; /* Attribute */ - res = store_xdir(&dj); - } else -#endif - { - st_dword(dj.dir + DIR_ModTime, tm); /* Created time */ - st_clust(fs, dj.dir, dcl); /* Table start cluster */ - dj.dir[DIR_Attr] = AM_DIR; /* Attribute */ - fs->wflag = 1; - } - if (res == FR_OK) { - res = sync_fs(fs); - } - } else { - remove_chain(&sobj, dcl, 0); /* Could not register, remove the allocated cluster */ - } - } - FREE_NAMBUF(); - } - - LEAVE_FF(fs, res); -} - - - - -/*-----------------------------------------------------------------------*/ -/* Rename a File/Directory */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_rename ( - const TCHAR* path_old, /* Pointer to the object name to be renamed */ - const TCHAR* path_new /* Pointer to the new name */ -) -{ - FRESULT res; - DIR djo, djn; - FATFS *fs; - BYTE buf[FF_FS_EXFAT ? SZDIRE * 2 : SZDIRE], *dir; - DWORD dw; - DEF_NAMBUF - - - get_ldnumber(&path_new); /* Snip the drive number of new name off */ - res = find_volume(&path_old, &fs, FA_WRITE); /* Get logical drive of the old object */ - if (res == FR_OK) { - djo.obj.fs = fs; - INIT_NAMBUF(fs); - res = follow_path(&djo, path_old); /* Check old object */ - if (res == FR_OK && (djo.fn[NSFLAG] & (NS_DOT | NS_NONAME))) res = FR_INVALID_NAME; /* Check validity of name */ -#if FF_FS_LOCK != 0 - if (res == FR_OK) { - res = chk_lock(&djo, 2); - } -#endif - if (res == FR_OK) { /* Object to be renamed is found */ -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { /* At exFAT volume */ - BYTE nf, nn; - WORD nh; - - mem_cpy(buf, fs->dirbuf, SZDIRE * 2); /* Save 85+C0 entry of old object */ - mem_cpy(&djn, &djo, sizeof djo); - res = follow_path(&djn, path_new); /* Make sure if new object name is not in use */ - if (res == FR_OK) { /* Is new name already in use by any other object? */ - res = (djn.obj.sclust == djo.obj.sclust && djn.dptr == djo.dptr) ? FR_NO_FILE : FR_EXIST; - } - if (res == FR_NO_FILE) { /* It is a valid path and no name collision */ - res = dir_register(&djn); /* Register the new entry */ - if (res == FR_OK) { - nf = fs->dirbuf[XDIR_NumSec]; nn = fs->dirbuf[XDIR_NumName]; - nh = ld_word(fs->dirbuf + XDIR_NameHash); - mem_cpy(fs->dirbuf, buf, SZDIRE * 2); /* Restore 85+C0 entry */ - fs->dirbuf[XDIR_NumSec] = nf; fs->dirbuf[XDIR_NumName] = nn; - st_word(fs->dirbuf + XDIR_NameHash, nh); - if (!(fs->dirbuf[XDIR_Attr] & AM_DIR)) fs->dirbuf[XDIR_Attr] |= AM_ARC; /* Set archive attribute if it is a file */ -/* Start of critical section where an interruption can cause a cross-link */ - res = store_xdir(&djn); - } - } - } else -#endif - { /* At FAT/FAT32 volume */ - mem_cpy(buf, djo.dir, SZDIRE); /* Save directory entry of the object */ - mem_cpy(&djn, &djo, sizeof (DIR)); /* Duplicate the directory object */ - res = follow_path(&djn, path_new); /* Make sure if new object name is not in use */ - if (res == FR_OK) { /* Is new name already in use by any other object? */ - res = (djn.obj.sclust == djo.obj.sclust && djn.dptr == djo.dptr) ? FR_NO_FILE : FR_EXIST; - } - if (res == FR_NO_FILE) { /* It is a valid path and no name collision */ - res = dir_register(&djn); /* Register the new entry */ - if (res == FR_OK) { - dir = djn.dir; /* Copy directory entry of the object except name */ - mem_cpy(dir + 13, buf + 13, SZDIRE - 13); - dir[DIR_Attr] = buf[DIR_Attr]; - if (!(dir[DIR_Attr] & AM_DIR)) dir[DIR_Attr] |= AM_ARC; /* Set archive attribute if it is a file */ - fs->wflag = 1; - if ((dir[DIR_Attr] & AM_DIR) && djo.obj.sclust != djn.obj.sclust) { /* Update .. entry in the sub-directory if needed */ - dw = clst2sect(fs, ld_clust(fs, dir)); - if (dw == 0) { - res = FR_INT_ERR; - } else { -/* Start of critical section where an interruption can cause a cross-link */ - res = move_window(fs, dw); - dir = fs->win + SZDIRE * 1; /* Ptr to .. entry */ - if (res == FR_OK && dir[1] == '.') { - st_clust(fs, dir, djn.obj.sclust); - fs->wflag = 1; - } - } - } - } - } - } - if (res == FR_OK) { - res = dir_remove(&djo); /* Remove old entry */ - if (res == FR_OK) { - res = sync_fs(fs); - } - } -/* End of the critical section */ - } - FREE_NAMBUF(); - } - - LEAVE_FF(fs, res); -} - -#endif /* !FF_FS_READONLY */ -#endif /* FF_FS_MINIMIZE == 0 */ -#endif /* FF_FS_MINIMIZE <= 1 */ -#endif /* FF_FS_MINIMIZE <= 2 */ - - - -#if FF_USE_CHMOD && !FF_FS_READONLY -/*-----------------------------------------------------------------------*/ -/* Change Attribute */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_chmod ( - const TCHAR* path, /* Pointer to the file path */ - BYTE attr, /* Attribute bits */ - BYTE mask /* Attribute mask to change */ -) -{ - FRESULT res; - DIR dj; - FATFS *fs; - DEF_NAMBUF - - - res = find_volume(&path, &fs, FA_WRITE); /* Get logical drive */ - if (res == FR_OK) { - dj.obj.fs = fs; - INIT_NAMBUF(fs); - res = follow_path(&dj, path); /* Follow the file path */ - if (res == FR_OK && (dj.fn[NSFLAG] & (NS_DOT | NS_NONAME))) res = FR_INVALID_NAME; /* Check object validity */ - if (res == FR_OK) { - mask &= AM_RDO|AM_HID|AM_SYS|AM_ARC; /* Valid attribute mask */ -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { - fs->dirbuf[XDIR_Attr] = (attr & mask) | (fs->dirbuf[XDIR_Attr] & (BYTE)~mask); /* Apply attribute change */ - res = store_xdir(&dj); - } else -#endif - { - dj.dir[DIR_Attr] = (attr & mask) | (dj.dir[DIR_Attr] & (BYTE)~mask); /* Apply attribute change */ - fs->wflag = 1; - } - if (res == FR_OK) { - res = sync_fs(fs); - } - } - FREE_NAMBUF(); - } - - LEAVE_FF(fs, res); -} - - - - -/*-----------------------------------------------------------------------*/ -/* Change Timestamp */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_utime ( - const TCHAR* path, /* Pointer to the file/directory name */ - const FILINFO* fno /* Pointer to the timestamp to be set */ -) -{ - FRESULT res; - DIR dj; - FATFS *fs; - DEF_NAMBUF - - - res = find_volume(&path, &fs, FA_WRITE); /* Get logical drive */ - if (res == FR_OK) { - dj.obj.fs = fs; - INIT_NAMBUF(fs); - res = follow_path(&dj, path); /* Follow the file path */ - if (res == FR_OK && (dj.fn[NSFLAG] & (NS_DOT | NS_NONAME))) res = FR_INVALID_NAME; /* Check object validity */ - if (res == FR_OK) { -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { - st_dword(fs->dirbuf + XDIR_ModTime, (DWORD)fno->fdate << 16 | fno->ftime); - res = store_xdir(&dj); - } else -#endif - { - st_dword(dj.dir + DIR_ModTime, (DWORD)fno->fdate << 16 | fno->ftime); - fs->wflag = 1; - } - if (res == FR_OK) { - res = sync_fs(fs); - } - } - FREE_NAMBUF(); - } - - LEAVE_FF(fs, res); -} - -#endif /* FF_USE_CHMOD && !FF_FS_READONLY */ - - - -#if FF_USE_LABEL -/*-----------------------------------------------------------------------*/ -/* Get Volume Label */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_getlabel ( - const TCHAR* path, /* Logical drive number */ - TCHAR* label, /* Buffer to store the volume label */ - DWORD* vsn /* Variable to store the volume serial number */ -) -{ - FRESULT res; - DIR dj; - FATFS *fs; - UINT si, di; - WCHAR wc; - - /* Get logical drive */ - res = find_volume(&path, &fs, 0); - - /* Get volume label */ - if (res == FR_OK && label) { - dj.obj.fs = fs; dj.obj.sclust = 0; /* Open root directory */ - res = dir_sdi(&dj, 0); - if (res == FR_OK) { - res = DIR_READ_LABEL(&dj); /* Find a volume label entry */ - if (res == FR_OK) { -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { - WCHAR hs; - - for (si = di = hs = 0; si < dj.dir[XDIR_NumLabel]; si++) { /* Extract volume label from 83 entry */ - wc = ld_word(dj.dir + XDIR_Label + si * 2); - if (hs == 0 && IsSurrogate(wc)) { /* Is the code a surrogate? */ - hs = wc; continue; - } - wc = put_utf((DWORD)hs << 16 | wc, &label[di], 4); - if (wc == 0) { di = 0; break; } - di += wc; - hs = 0; - } - if (hs != 0) di = 0; /* Broken surrogate pair? */ - label[di] = 0; - } else -#endif - { - si = di = 0; /* Extract volume label from AM_VOL entry */ - while (si < 11) { - wc = dj.dir[si++]; -#if FF_USE_LFN && FF_LFN_UNICODE >= 1 /* Unicode output */ - if (dbc_1st((BYTE)wc) && si < 11) wc = wc << 8 | dj.dir[si++]; /* Is it a DBC? */ - wc = ff_oem2uni(wc, CODEPAGE); /* Convert it into Unicode */ - if (wc != 0) wc = put_utf(wc, &label[di], 4); /* Put it in Unicode */ - if (wc == 0) { di = 0; break; } - di += wc; -#else /* ANSI/OEM output */ - label[di++] = (TCHAR)wc; -#endif - } - do { /* Truncate trailing spaces */ - label[di] = 0; - if (di == 0) break; - } while (label[--di] == ' '); - } - } - } - if (res == FR_NO_FILE) { /* No label entry and return nul string */ - label[0] = 0; - res = FR_OK; - } - } - - /* Get volume serial number */ - if (res == FR_OK && vsn) { - res = move_window(fs, fs->volbase); - if (res == FR_OK) { - switch (fs->fs_type) { - case FS_EXFAT: - di = BPB_VolIDEx; break; - - case FS_FAT32: - di = BS_VolID32; break; - - default: - di = BS_VolID; - } - *vsn = ld_dword(fs->win + di); - } - } - - LEAVE_FF(fs, res); -} - - - -#if !FF_FS_READONLY -/*-----------------------------------------------------------------------*/ -/* Set Volume Label */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_setlabel ( - const TCHAR* label /* Volume label to set with heading logical drive number */ -) -{ - FRESULT res; - DIR dj; - FATFS *fs; - BYTE dirvn[22]; - UINT di; - WCHAR wc; - static const char badchr[] = "+.,;=[]/\\\"*:<>\?|\x7F"; /* [0..] for FAT, [7..] for exFAT */ -#if FF_USE_LFN - DWORD dc; -#endif - - /* Get logical drive */ - res = find_volume(&label, &fs, FA_WRITE); - if (res != FR_OK) LEAVE_FF(fs, res); - -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { /* On the exFAT volume */ - mem_set(dirvn, 0, 22); - di = 0; - while ((UINT)*label >= ' ') { /* Create volume label */ - dc = tchar2uni(&label); /* Get a Unicode character */ - if (dc >= 0x10000) { - if (dc == 0xFFFFFFFF || di >= 10) { /* Wrong surrogate or buffer overflow */ - dc = 0; - } else { - st_word(dirvn + di * 2, (WCHAR)(dc >> 16)); di++; - } - } - if (dc == 0 || chk_chr(badchr + 7, (int)dc) || di >= 11) { /* Check validity of the volume label */ - LEAVE_FF(fs, FR_INVALID_NAME); - } - st_word(dirvn + di * 2, (WCHAR)dc); di++; - } - } else -#endif - { /* On the FAT/FAT32 volume */ - mem_set(dirvn, ' ', 11); - di = 0; - while ((UINT)*label >= ' ') { /* Create volume label */ -#if FF_USE_LFN - dc = tchar2uni(&label); - wc = (dc < 0x10000) ? ff_uni2oem(ff_wtoupper(dc), CODEPAGE) : 0; -#else /* ANSI/OEM input */ - wc = (BYTE)*label++; - if (dbc_1st((BYTE)wc)) wc = dbc_2nd((BYTE)*label) ? wc << 8 | (BYTE)*label++ : 0; - if (IsLower(wc)) wc -= 0x20; /* To upper ASCII characters */ -#if FF_CODE_PAGE == 0 - if (ExCvt && wc >= 0x80) wc = ExCvt[wc - 0x80]; /* To upper extended characters (SBCS cfg) */ -#elif FF_CODE_PAGE < 900 - if (wc >= 0x80) wc = ExCvt[wc - 0x80]; /* To upper extended characters (SBCS cfg) */ -#endif -#endif - if (wc == 0 || chk_chr(badchr + 0, (int)wc) || di >= (UINT)((wc >= 0x100) ? 10 : 11)) { /* Reject invalid characters for volume label */ - LEAVE_FF(fs, FR_INVALID_NAME); - } - if (wc >= 0x100) dirvn[di++] = (BYTE)(wc >> 8); - dirvn[di++] = (BYTE)wc; - } - if (dirvn[0] == DDEM) LEAVE_FF(fs, FR_INVALID_NAME); /* Reject illegal name (heading DDEM) */ - while (di && dirvn[di - 1] == ' ') di--; /* Snip trailing spaces */ - } - - /* Set volume label */ - dj.obj.fs = fs; dj.obj.sclust = 0; /* Open root directory */ - res = dir_sdi(&dj, 0); - if (res == FR_OK) { - res = DIR_READ_LABEL(&dj); /* Get volume label entry */ - if (res == FR_OK) { - if (FF_FS_EXFAT && fs->fs_type == FS_EXFAT) { - dj.dir[XDIR_NumLabel] = (BYTE)di; /* Change the volume label */ - mem_cpy(dj.dir + XDIR_Label, dirvn, 22); - } else { - if (di != 0) { - mem_cpy(dj.dir, dirvn, 11); /* Change the volume label */ - } else { - dj.dir[DIR_Name] = DDEM; /* Remove the volume label */ - } - } - fs->wflag = 1; - res = sync_fs(fs); - } else { /* No volume label entry or an error */ - if (res == FR_NO_FILE) { - res = FR_OK; - if (di != 0) { /* Create a volume label entry */ - res = dir_alloc(&dj, 1); /* Allocate an entry */ - if (res == FR_OK) { - mem_set(dj.dir, 0, SZDIRE); /* Clean the entry */ - if (FF_FS_EXFAT && fs->fs_type == FS_EXFAT) { - dj.dir[XDIR_Type] = ET_VLABEL; /* Create volume label entry */ - dj.dir[XDIR_NumLabel] = (BYTE)di; - mem_cpy(dj.dir + XDIR_Label, dirvn, 22); - } else { - dj.dir[DIR_Attr] = AM_VOL; /* Create volume label entry */ - mem_cpy(dj.dir, dirvn, 11); - } - fs->wflag = 1; - res = sync_fs(fs); - } - } - } - } - } - - LEAVE_FF(fs, res); -} - -#endif /* !FF_FS_READONLY */ -#endif /* FF_USE_LABEL */ - - - -#if FF_USE_EXPAND && !FF_FS_READONLY -/*-----------------------------------------------------------------------*/ -/* Allocate a Contiguous Blocks to the File */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_expand ( - FIL* fp, /* Pointer to the file object */ - FSIZE_t fsz, /* File size to be expanded to */ - BYTE opt /* Operation mode 0:Find and prepare or 1:Find and allocate */ -) -{ - FRESULT res; - FATFS *fs; - DWORD n, clst, stcl, scl, ncl, tcl, lclst; - - - res = validate(&fp->obj, &fs); /* Check validity of the file object */ - if (res != FR_OK || (res = (FRESULT)fp->err) != FR_OK) LEAVE_FF(fs, res); - if (fsz == 0 || fp->obj.objsize != 0 || !(fp->flag & FA_WRITE)) LEAVE_FF(fs, FR_DENIED); -#if FF_FS_EXFAT - if (fs->fs_type != FS_EXFAT && fsz >= 0x100000000) LEAVE_FF(fs, FR_DENIED); /* Check if in size limit */ -#endif - n = (DWORD)fs->csize * SS(fs); /* Cluster size */ - tcl = (DWORD)(fsz / n) + ((fsz & (n - 1)) ? 1 : 0); /* Number of clusters required */ - stcl = fs->last_clst; lclst = 0; - if (stcl < 2 || stcl >= fs->n_fatent) stcl = 2; - -#if FF_FS_EXFAT - if (fs->fs_type == FS_EXFAT) { - scl = find_bitmap(fs, stcl, tcl); /* Find a contiguous cluster block */ - if (scl == 0) res = FR_DENIED; /* No contiguous cluster block was found */ - if (scl == 0xFFFFFFFF) res = FR_DISK_ERR; - if (res == FR_OK) { /* A contiguous free area is found */ - if (opt) { /* Allocate it now */ - res = change_bitmap(fs, scl, tcl, 1); /* Mark the cluster block 'in use' */ - lclst = scl + tcl - 1; - } else { /* Set it as suggested point for next allocation */ - lclst = scl - 1; - } - } - } else -#endif - { - scl = clst = stcl; ncl = 0; - for (;;) { /* Find a contiguous cluster block */ - n = get_fat(&fp->obj, clst); - if (++clst >= fs->n_fatent) clst = 2; - if (n == 1) { res = FR_INT_ERR; break; } - if (n == 0xFFFFFFFF) { res = FR_DISK_ERR; break; } - if (n == 0) { /* Is it a free cluster? */ - if (++ncl == tcl) break; /* Break if a contiguous cluster block is found */ - } else { - scl = clst; ncl = 0; /* Not a free cluster */ - } - if (clst == stcl) { res = FR_DENIED; break; } /* No contiguous cluster? */ - } - if (res == FR_OK) { /* A contiguous free area is found */ - if (opt) { /* Allocate it now */ - for (clst = scl, n = tcl; n; clst++, n--) { /* Create a cluster chain on the FAT */ - res = put_fat(fs, clst, (n == 1) ? 0xFFFFFFFF : clst + 1); - if (res != FR_OK) break; - lclst = clst; - } - } else { /* Set it as suggested point for next allocation */ - lclst = scl - 1; - } - } - } - - if (res == FR_OK) { - fs->last_clst = lclst; /* Set suggested start cluster to start next */ - if (opt) { /* Is it allocated now? */ - fp->obj.sclust = scl; /* Update object allocation information */ - fp->obj.objsize = fsz; - if (FF_FS_EXFAT) fp->obj.stat = 2; /* Set status 'contiguous chain' */ - fp->flag |= FA_MODIFIED; - if (fs->free_clst <= fs->n_fatent - 2) { /* Update FSINFO */ - fs->free_clst -= tcl; - fs->fsi_flag |= 1; - } - } - } - - LEAVE_FF(fs, res); -} - -#endif /* FF_USE_EXPAND && !FF_FS_READONLY */ - - - -#if FF_USE_FORWARD -/*-----------------------------------------------------------------------*/ -/* Forward Data to the Stream Directly */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_forward ( - FIL* fp, /* Pointer to the file object */ - UINT (*func)(const BYTE*,UINT), /* Pointer to the streaming function */ - UINT btf, /* Number of bytes to forward */ - UINT* bf /* Pointer to number of bytes forwarded */ -) -{ - FRESULT res; - FATFS *fs; - DWORD clst, sect; - FSIZE_t remain; - UINT rcnt, csect; - BYTE *dbuf; - - - *bf = 0; /* Clear transfer byte counter */ - res = validate(&fp->obj, &fs); /* Check validity of the file object */ - if (res != FR_OK || (res = (FRESULT)fp->err) != FR_OK) LEAVE_FF(fs, res); - if (!(fp->flag & FA_READ)) LEAVE_FF(fs, FR_DENIED); /* Check access mode */ - - remain = fp->obj.objsize - fp->fptr; - if (btf > remain) btf = (UINT)remain; /* Truncate btf by remaining bytes */ - - for ( ; btf && (*func)(0, 0); /* Repeat until all data transferred or stream goes busy */ - fp->fptr += rcnt, *bf += rcnt, btf -= rcnt) { - csect = (UINT)(fp->fptr / SS(fs) & (fs->csize - 1)); /* Sector offset in the cluster */ - if (fp->fptr % SS(fs) == 0) { /* On the sector boundary? */ - if (csect == 0) { /* On the cluster boundary? */ - clst = (fp->fptr == 0) ? /* On the top of the file? */ - fp->obj.sclust : get_fat(&fp->obj, fp->clust); - if (clst <= 1) ABORT(fs, FR_INT_ERR); - if (clst == 0xFFFFFFFF) ABORT(fs, FR_DISK_ERR); - fp->clust = clst; /* Update current cluster */ - } - } - sect = clst2sect(fs, fp->clust); /* Get current data sector */ - if (sect == 0) ABORT(fs, FR_INT_ERR); - sect += csect; -#if FF_FS_TINY - if (move_window(fs, sect) != FR_OK) ABORT(fs, FR_DISK_ERR); /* Move sector window to the file data */ - dbuf = fs->win; -#else - if (fp->sect != sect) { /* Fill sector cache with file data */ -#if !FF_FS_READONLY - if (fp->flag & FA_DIRTY) { /* Write-back dirty sector cache */ - if (disk_write(fs->pdrv, fp->buf, fp->sect, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); - fp->flag &= (BYTE)~FA_DIRTY; - } -#endif - if (disk_read(fs->pdrv, fp->buf, sect, 1) != RES_OK) ABORT(fs, FR_DISK_ERR); - } - dbuf = fp->buf; -#endif - fp->sect = sect; - rcnt = SS(fs) - (UINT)fp->fptr % SS(fs); /* Number of bytes left in the sector */ - if (rcnt > btf) rcnt = btf; /* Clip it by btr if needed */ - rcnt = (*func)(dbuf + ((UINT)fp->fptr % SS(fs)), rcnt); /* Forward the file data */ - if (rcnt == 0) ABORT(fs, FR_INT_ERR); - } - - LEAVE_FF(fs, FR_OK); -} -#endif /* FF_USE_FORWARD */ - - - -#if FF_USE_MKFS && !FF_FS_READONLY -/*-----------------------------------------------------------------------*/ -/* Create an FAT/exFAT volume */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_mkfs ( - const TCHAR* path, /* Logical drive number */ - BYTE opt, /* Format option */ - DWORD au, /* Size of allocation unit (cluster) [byte] */ - void* work, /* Pointer to working buffer (null: use heap memory) */ - UINT len /* Size of working buffer [byte] */ -) -{ - const UINT n_fats = 1; /* Number of FATs for FAT/FAT32 volume (1 or 2) */ - const UINT n_rootdir = 512; /* Number of root directory entries for FAT volume */ - static const WORD cst[] = {1, 4, 16, 64, 256, 512, 0}; /* Cluster size boundary for FAT volume (4Ks unit) */ - static const WORD cst32[] = {1, 2, 4, 8, 16, 32, 0}; /* Cluster size boundary for FAT32 volume (128Ks unit) */ - BYTE fmt, sys, *buf, *pte, pdrv, part; - WORD ss; /* Sector size */ - DWORD szb_buf, sz_buf, sz_blk, n_clst, pau, sect, nsect, n; - DWORD b_vol, b_fat, b_data; /* Base LBA for volume, fat, data */ - DWORD sz_vol, sz_rsv, sz_fat, sz_dir; /* Size for volume, fat, dir, data */ - UINT i; - int vol; - DSTATUS stat; -#if FF_USE_TRIM || FF_FS_EXFAT - DWORD tbl[3]; -#endif - - - /* Check mounted drive and clear work area */ - vol = get_ldnumber(&path); /* Get target logical drive */ - if (vol < 0) return FR_INVALID_DRIVE; - if (FatFs[vol]) FatFs[vol]->fs_type = 0; /* Clear the volume if mounted */ - pdrv = LD2PD(vol); /* Physical drive */ - part = LD2PT(vol); /* Partition (0:create as new, 1-4:get from partition table) */ - - /* Check physical drive status */ - stat = disk_initialize(pdrv); - if (stat & STA_NOINIT) return FR_NOT_READY; - if (stat & STA_PROTECT) return FR_WRITE_PROTECTED; - if (disk_ioctl(pdrv, GET_BLOCK_SIZE, &sz_blk) != RES_OK || !sz_blk || sz_blk > 32768 || (sz_blk & (sz_blk - 1))) sz_blk = 1; /* Erase block to align data area */ -#if FF_MAX_SS != FF_MIN_SS /* Get sector size of the medium if variable sector size cfg. */ - if (disk_ioctl(pdrv, GET_SECTOR_SIZE, &ss) != RES_OK) return FR_DISK_ERR; - if (ss > FF_MAX_SS || ss < FF_MIN_SS || (ss & (ss - 1))) return FR_DISK_ERR; -#else - ss = FF_MAX_SS; -#endif - if ((au != 0 && au < ss) || au > 0x1000000 || (au & (au - 1))) return FR_INVALID_PARAMETER; /* Check if au is valid */ - au /= ss; /* Cluster size in unit of sector */ - - /* Get working buffer */ -#if FF_USE_LFN == 3 - if (!work) { /* Use heap memory for working buffer */ - for (szb_buf = MAX_MALLOC, buf = 0; szb_buf >= ss && (buf = ff_memalloc(szb_buf)) == 0; szb_buf /= 2) ; - sz_buf = szb_buf / ss; /* Size of working buffer (sector) */ - } else -#endif - { - buf = (BYTE*)work; /* Working buffer */ - sz_buf = len / ss; /* Size of working buffer (sector) */ - szb_buf = sz_buf * ss; /* Size of working buffer (byte) */ - } - if (!buf || sz_buf == 0) return FR_NOT_ENOUGH_CORE; - - /* Determine where the volume to be located (b_vol, sz_vol) */ - if (FF_MULTI_PARTITION && part != 0) { - /* Get partition information from partition table in the MBR */ - if (disk_read(pdrv, buf, 0, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); /* Load MBR */ - if (ld_word(buf + BS_55AA) != 0xAA55) LEAVE_MKFS(FR_MKFS_ABORTED); /* Check if MBR is valid */ - pte = buf + (MBR_Table + (part - 1) * SZ_PTE); - if (pte[PTE_System] == 0) LEAVE_MKFS(FR_MKFS_ABORTED); /* No partition? */ - b_vol = ld_dword(pte + PTE_StLba); /* Get volume start sector */ - sz_vol = ld_dword(pte + PTE_SizLba); /* Get volume size */ - } else { - /* Create a single-partition in this function */ - if (disk_ioctl(pdrv, GET_SECTOR_COUNT, &sz_vol) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); - b_vol = (opt & FM_SFD) ? 0 : 63; /* Volume start sector */ - if (sz_vol < b_vol) LEAVE_MKFS(FR_MKFS_ABORTED); - sz_vol -= b_vol; /* Volume size */ - } - if (sz_vol < 128) LEAVE_MKFS(FR_MKFS_ABORTED); /* Check if volume size is >=128s */ - - /* Pre-determine the FAT type */ - do { - if (FF_FS_EXFAT && (opt & FM_EXFAT)) { /* exFAT possible? */ - if ((opt & FM_ANY) == FM_EXFAT || sz_vol >= 0x4000000 || au > 128) { /* exFAT only, vol >= 64Ms or au > 128s ? */ - fmt = FS_EXFAT; break; - } - } - if (au > 128) LEAVE_MKFS(FR_INVALID_PARAMETER); /* Too large au for FAT/FAT32 */ - if (opt & FM_FAT32) { /* FAT32 possible? */ - if ((opt & FM_ANY) == FM_FAT32 || !(opt & FM_FAT)) { /* FAT32 only or no-FAT? */ - fmt = FS_FAT32; break; - } - } - if (!(opt & FM_FAT)) LEAVE_MKFS(FR_INVALID_PARAMETER); /* no-FAT? */ - fmt = FS_FAT16; - } while (0); - -#if FF_FS_EXFAT - if (fmt == FS_EXFAT) { /* Create an exFAT volume */ - DWORD szb_bit, szb_case, sum, nb, cl; - WCHAR ch, si; - UINT j, st; - BYTE b; - - if (sz_vol < 0x1000) LEAVE_MKFS(FR_MKFS_ABORTED); /* Too small volume? */ -#if FF_USE_TRIM - tbl[0] = b_vol; tbl[1] = b_vol + sz_vol - 1; /* Inform the device the volume area may be erased */ - disk_ioctl(pdrv, CTRL_TRIM, tbl); -#endif - /* Determine FAT location, data location and number of clusters */ - if (au == 0) { /* au auto-selection */ - au = 8; - if (sz_vol >= 0x80000) au = 64; /* >= 512Ks */ - if (sz_vol >= 0x4000000) au = 256; /* >= 64Ms */ - } - b_fat = b_vol + 32; /* FAT start at offset 32 */ - sz_fat = ((sz_vol / au + 2) * 4 + ss - 1) / ss; /* Number of FAT sectors */ - b_data = (b_fat + sz_fat + sz_blk - 1) & ~(sz_blk - 1); /* Align data area to the erase block boundary */ - if (b_data >= sz_vol / 2) LEAVE_MKFS(FR_MKFS_ABORTED); /* Too small volume? */ - n_clst = (sz_vol - (b_data - b_vol)) / au; /* Number of clusters */ - if (n_clst <16) LEAVE_MKFS(FR_MKFS_ABORTED); /* Too few clusters? */ - if (n_clst > MAX_EXFAT) LEAVE_MKFS(FR_MKFS_ABORTED); /* Too many clusters? */ - - szb_bit = (n_clst + 7) / 8; /* Size of allocation bitmap */ - tbl[0] = (szb_bit + au * ss - 1) / (au * ss); /* Number of allocation bitmap clusters */ - - /* Create a compressed up-case table */ - sect = b_data + au * tbl[0]; /* Table start sector */ - sum = 0; /* Table checksum to be stored in the 82 entry */ - st = 0; si = 0; i = 0; j = 0; szb_case = 0; - do { - switch (st) { - case 0: - ch = (WCHAR)ff_wtoupper(si); /* Get an up-case char */ - if (ch != si) { - si++; break; /* Store the up-case char if exist */ - } - for (j = 1; (WCHAR)(si + j) && (WCHAR)(si + j) == ff_wtoupper((WCHAR)(si + j)); j++) ; /* Get run length of no-case block */ - if (j >= 128) { - ch = 0xFFFF; st = 2; break; /* Compress the no-case block if run is >= 128 */ - } - st = 1; /* Do not compress short run */ - /* go to next case */ - case 1: - ch = si++; /* Fill the short run */ - if (--j == 0) st = 0; - break; - - default: - ch = (WCHAR)j; si += (WCHAR)j; /* Number of chars to skip */ - st = 0; - } - sum = xsum32(buf[i + 0] = (BYTE)ch, sum); /* Put it into the write buffer */ - sum = xsum32(buf[i + 1] = (BYTE)(ch >> 8), sum); - i += 2; szb_case += 2; - if (si == 0 || i == szb_buf) { /* Write buffered data when buffer full or end of process */ - n = (i + ss - 1) / ss; - if (disk_write(pdrv, buf, sect, n) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); - sect += n; i = 0; - } - } while (si); - tbl[1] = (szb_case + au * ss - 1) / (au * ss); /* Number of up-case table clusters */ - tbl[2] = 1; /* Number of root dir clusters */ - - /* Initialize the allocation bitmap */ - sect = b_data; nsect = (szb_bit + ss - 1) / ss; /* Start of bitmap and number of sectors */ - nb = tbl[0] + tbl[1] + tbl[2]; /* Number of clusters in-use by system */ - do { - mem_set(buf, 0, szb_buf); - for (i = 0; nb >= 8 && i < szb_buf; buf[i++] = 0xFF, nb -= 8) ; - for (b = 1; nb != 0 && i < szb_buf; buf[i] |= b, b <<= 1, nb--) ; - n = (nsect > sz_buf) ? sz_buf : nsect; /* Write the buffered data */ - if (disk_write(pdrv, buf, sect, n) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); - sect += n; nsect -= n; - } while (nsect); - - /* Initialize the FAT */ - sect = b_fat; nsect = sz_fat; /* Start of FAT and number of FAT sectors */ - j = nb = cl = 0; - do { - mem_set(buf, 0, szb_buf); i = 0; /* Clear work area and reset write index */ - if (cl == 0) { /* Set entry 0 and 1 */ - st_dword(buf + i, 0xFFFFFFF8); i += 4; cl++; - st_dword(buf + i, 0xFFFFFFFF); i += 4; cl++; - } - do { /* Create chains of bitmap, up-case and root dir */ - while (nb != 0 && i < szb_buf) { /* Create a chain */ - st_dword(buf + i, (nb > 1) ? cl + 1 : 0xFFFFFFFF); - i += 4; cl++; nb--; - } - if (nb == 0 && j < 3) nb = tbl[j++]; /* Next chain */ - } while (nb != 0 && i < szb_buf); - n = (nsect > sz_buf) ? sz_buf : nsect; /* Write the buffered data */ - if (disk_write(pdrv, buf, sect, n) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); - sect += n; nsect -= n; - } while (nsect); - - /* Initialize the root directory */ - mem_set(buf, 0, szb_buf); - buf[SZDIRE * 0 + 0] = ET_VLABEL; /* Volume label entry */ - buf[SZDIRE * 1 + 0] = ET_BITMAP; /* Bitmap entry */ - st_dword(buf + SZDIRE * 1 + 20, 2); /* cluster */ - st_dword(buf + SZDIRE * 1 + 24, szb_bit); /* size */ - buf[SZDIRE * 2 + 0] = ET_UPCASE; /* Up-case table entry */ - st_dword(buf + SZDIRE * 2 + 4, sum); /* sum */ - st_dword(buf + SZDIRE * 2 + 20, 2 + tbl[0]); /* cluster */ - st_dword(buf + SZDIRE * 2 + 24, szb_case); /* size */ - sect = b_data + au * (tbl[0] + tbl[1]); nsect = au; /* Start of the root directory and number of sectors */ - do { /* Fill root directory sectors */ - n = (nsect > sz_buf) ? sz_buf : nsect; - if (disk_write(pdrv, buf, sect, n) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); - mem_set(buf, 0, ss); - sect += n; nsect -= n; - } while (nsect); - - /* Create two set of the exFAT VBR blocks */ - sect = b_vol; - for (n = 0; n < 2; n++) { - /* Main record (+0) */ - mem_set(buf, 0, ss); - mem_cpy(buf + BS_JmpBoot, "\xEB\x76\x90" "EXFAT ", 11); /* Boot jump code (x86), OEM name */ - st_dword(buf + BPB_VolOfsEx, b_vol); /* Volume offset in the physical drive [sector] */ - st_dword(buf + BPB_TotSecEx, sz_vol); /* Volume size [sector] */ - st_dword(buf + BPB_FatOfsEx, b_fat - b_vol); /* FAT offset [sector] */ - st_dword(buf + BPB_FatSzEx, sz_fat); /* FAT size [sector] */ - st_dword(buf + BPB_DataOfsEx, b_data - b_vol); /* Data offset [sector] */ - st_dword(buf + BPB_NumClusEx, n_clst); /* Number of clusters */ - st_dword(buf + BPB_RootClusEx, 2 + tbl[0] + tbl[1]); /* Root dir cluster # */ - st_dword(buf + BPB_VolIDEx, GET_FATTIME()); /* VSN */ - st_word(buf + BPB_FSVerEx, 0x100); /* Filesystem version (1.00) */ - for (buf[BPB_BytsPerSecEx] = 0, i = ss; i >>= 1; buf[BPB_BytsPerSecEx]++) ; /* Log2 of sector size [byte] */ - for (buf[BPB_SecPerClusEx] = 0, i = au; i >>= 1; buf[BPB_SecPerClusEx]++) ; /* Log2 of cluster size [sector] */ - buf[BPB_NumFATsEx] = 1; /* Number of FATs */ - buf[BPB_DrvNumEx] = 0x80; /* Drive number (for int13) */ - st_word(buf + BS_BootCodeEx, 0xFEEB); /* Boot code (x86) */ - st_word(buf + BS_55AA, 0xAA55); /* Signature (placed here regardless of sector size) */ - for (i = sum = 0; i < ss; i++) { /* VBR checksum */ - if (i != BPB_VolFlagEx && i != BPB_VolFlagEx + 1 && i != BPB_PercInUseEx) sum = xsum32(buf[i], sum); - } - if (disk_write(pdrv, buf, sect++, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); - /* Extended bootstrap record (+1..+8) */ - mem_set(buf, 0, ss); - st_word(buf + ss - 2, 0xAA55); /* Signature (placed at end of sector) */ - for (j = 1; j < 9; j++) { - for (i = 0; i < ss; sum = xsum32(buf[i++], sum)) ; /* VBR checksum */ - if (disk_write(pdrv, buf, sect++, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); - } - /* OEM/Reserved record (+9..+10) */ - mem_set(buf, 0, ss); - for ( ; j < 11; j++) { - for (i = 0; i < ss; sum = xsum32(buf[i++], sum)) ; /* VBR checksum */ - if (disk_write(pdrv, buf, sect++, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); - } - /* Sum record (+11) */ - for (i = 0; i < ss; i += 4) st_dword(buf + i, sum); /* Fill with checksum value */ - if (disk_write(pdrv, buf, sect++, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); - } - - } else -#endif /* FF_FS_EXFAT */ - { /* Create an FAT/FAT32 volume */ - do { - pau = au; - /* Pre-determine number of clusters and FAT sub-type */ - if (fmt == FS_FAT32) { /* FAT32 volume */ - if (pau == 0) { /* au auto-selection */ - n = sz_vol / 0x20000; /* Volume size in unit of 128KS */ - for (i = 0, pau = 1; cst32[i] && cst32[i] <= n; i++, pau <<= 1) ; /* Get from table */ - } - n_clst = sz_vol / pau; /* Number of clusters */ - sz_fat = (n_clst * 4 + 8 + ss - 1) / ss; /* FAT size [sector] */ - sz_rsv = 32; /* Number of reserved sectors */ - sz_dir = 0; /* No static directory */ - if (n_clst <= MAX_FAT16 || n_clst > MAX_FAT32) LEAVE_MKFS(FR_MKFS_ABORTED); - } else { /* FAT volume */ - if (pau == 0) { /* au auto-selection */ - n = sz_vol / 0x1000; /* Volume size in unit of 4KS */ - for (i = 0, pau = 1; cst[i] && cst[i] <= n; i++, pau <<= 1) ; /* Get from table */ - } - n_clst = sz_vol / pau; - if (n_clst > MAX_FAT12) { - n = n_clst * 2 + 4; /* FAT size [byte] */ - } else { - fmt = FS_FAT12; - n = (n_clst * 3 + 1) / 2 + 3; /* FAT size [byte] */ - } - sz_fat = (n + ss - 1) / ss; /* FAT size [sector] */ - sz_rsv = 1; /* Number of reserved sectors */ - sz_dir = (DWORD)n_rootdir * SZDIRE / ss; /* Rootdir size [sector] */ - } - b_fat = b_vol + sz_rsv; /* FAT base */ - b_data = b_fat + sz_fat * n_fats + sz_dir; /* Data base */ - - /* Align data base to erase block boundary (for flash memory media) */ - n = ((b_data + sz_blk - 1) & ~(sz_blk - 1)) - b_data; /* Next nearest erase block from current data base */ - if (fmt == FS_FAT32) { /* FAT32: Move FAT base */ - sz_rsv += n; b_fat += n; - } else { /* FAT: Expand FAT size */ - sz_fat += n / n_fats; - } - - /* Determine number of clusters and final check of validity of the FAT sub-type */ - if (sz_vol < b_data + pau * 16 - b_vol) LEAVE_MKFS(FR_MKFS_ABORTED); /* Too small volume */ - n_clst = (sz_vol - sz_rsv - sz_fat * n_fats - sz_dir) / pau; - if (fmt == FS_FAT32) { - if (n_clst <= MAX_FAT16) { /* Too few clusters for FAT32 */ - if (au == 0 && (au = pau / 2) != 0) continue; /* Adjust cluster size and retry */ - LEAVE_MKFS(FR_MKFS_ABORTED); - } - } - if (fmt == FS_FAT16) { - if (n_clst > MAX_FAT16) { /* Too many clusters for FAT16 */ - if (au == 0 && (pau * 2) <= 64) { - au = pau * 2; continue; /* Adjust cluster size and retry */ - } - if ((opt & FM_FAT32)) { - fmt = FS_FAT32; continue; /* Switch type to FAT32 and retry */ - } - if (au == 0 && (au = pau * 2) <= 128) continue; /* Adjust cluster size and retry */ - LEAVE_MKFS(FR_MKFS_ABORTED); - } - if (n_clst <= MAX_FAT12) { /* Too few clusters for FAT16 */ - if (au == 0 && (au = pau * 2) <= 128) continue; /* Adjust cluster size and retry */ - LEAVE_MKFS(FR_MKFS_ABORTED); - } - } - if (fmt == FS_FAT12 && n_clst > MAX_FAT12) LEAVE_MKFS(FR_MKFS_ABORTED); /* Too many clusters for FAT12 */ - - /* Ok, it is the valid cluster configuration */ - break; - } while (1); - -#if FF_USE_TRIM - tbl[0] = b_vol; tbl[1] = b_vol + sz_vol - 1; /* Inform the device the volume area can be erased */ - disk_ioctl(pdrv, CTRL_TRIM, tbl); -#endif - /* Create FAT VBR */ - mem_set(buf, 0, ss); - mem_cpy(buf + BS_JmpBoot, "\xEB\xFE\x90" "MSDOS5.0", 11);/* Boot jump code (x86), OEM name */ - st_word(buf + BPB_BytsPerSec, ss); /* Sector size [byte] */ - buf[BPB_SecPerClus] = (BYTE)pau; /* Cluster size [sector] */ - st_word(buf + BPB_RsvdSecCnt, (WORD)sz_rsv); /* Size of reserved area */ - buf[BPB_NumFATs] = (BYTE)n_fats; /* Number of FATs */ - st_word(buf + BPB_RootEntCnt, (WORD)((fmt == FS_FAT32) ? 0 : n_rootdir)); /* Number of root directory entries */ - if (sz_vol < 0x10000) { - st_word(buf + BPB_TotSec16, (WORD)sz_vol); /* Volume size in 16-bit LBA */ - } else { - st_dword(buf + BPB_TotSec32, sz_vol); /* Volume size in 32-bit LBA */ - } - buf[BPB_Media] = 0xF8; /* Media descriptor byte */ - st_word(buf + BPB_SecPerTrk, 63); /* Number of sectors per track (for int13) */ - st_word(buf + BPB_NumHeads, 255); /* Number of heads (for int13) */ - st_dword(buf + BPB_HiddSec, b_vol); /* Volume offset in the physical drive [sector] */ - if (fmt == FS_FAT32) { - st_dword(buf + BS_VolID32, GET_FATTIME()); /* VSN */ - st_dword(buf + BPB_FATSz32, sz_fat); /* FAT size [sector] */ - st_dword(buf + BPB_RootClus32, 2); /* Root directory cluster # (2) */ - st_word(buf + BPB_FSInfo32, 1); /* Offset of FSINFO sector (VBR + 1) */ - st_word(buf + BPB_BkBootSec32, 6); /* Offset of backup VBR (VBR + 6) */ - buf[BS_DrvNum32] = 0x80; /* Drive number (for int13) */ - buf[BS_BootSig32] = 0x29; /* Extended boot signature */ - mem_cpy(buf + BS_VolLab32, "NO NAME " "FAT32 ", 19); /* Volume label, FAT signature */ - } else { - st_dword(buf + BS_VolID, GET_FATTIME()); /* VSN */ - st_word(buf + BPB_FATSz16, (WORD)sz_fat); /* FAT size [sector] */ - buf[BS_DrvNum] = 0x80; /* Drive number (for int13) */ - buf[BS_BootSig] = 0x29; /* Extended boot signature */ - mem_cpy(buf + BS_VolLab, "NO NAME " "FAT ", 19); /* Volume label, FAT signature */ - } - st_word(buf + BS_55AA, 0xAA55); /* Signature (offset is fixed here regardless of sector size) */ - if (disk_write(pdrv, buf, b_vol, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); /* Write it to the VBR sector */ - - /* Create FSINFO record if needed */ - if (fmt == FS_FAT32) { - disk_write(pdrv, buf, b_vol + 6, 1); /* Write backup VBR (VBR + 6) */ - mem_set(buf, 0, ss); - st_dword(buf + FSI_LeadSig, 0x41615252); - st_dword(buf + FSI_StrucSig, 0x61417272); - st_dword(buf + FSI_Free_Count, n_clst - 1); /* Number of free clusters */ - st_dword(buf + FSI_Nxt_Free, 2); /* Last allocated cluster# */ - st_word(buf + BS_55AA, 0xAA55); - disk_write(pdrv, buf, b_vol + 7, 1); /* Write backup FSINFO (VBR + 7) */ - disk_write(pdrv, buf, b_vol + 1, 1); /* Write original FSINFO (VBR + 1) */ - } - - /* Initialize FAT area */ - mem_set(buf, 0, (UINT)szb_buf); - sect = b_fat; /* FAT start sector */ - for (i = 0; i < n_fats; i++) { /* Initialize FATs each */ - if (fmt == FS_FAT32) { - st_dword(buf + 0, 0xFFFFFFF8); /* Entry 0 */ - st_dword(buf + 4, 0xFFFFFFFF); /* Entry 1 */ - st_dword(buf + 8, 0x0FFFFFFF); /* Entry 2 (root directory) */ - } else { - st_dword(buf + 0, (fmt == FS_FAT12) ? 0xFFFFF8 : 0xFFFFFFF8); /* Entry 0 and 1 */ - } - nsect = sz_fat; /* Number of FAT sectors */ - do { /* Fill FAT sectors */ - n = (nsect > sz_buf) ? sz_buf : nsect; - if (disk_write(pdrv, buf, sect, (UINT)n) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); - mem_set(buf, 0, ss); - sect += n; nsect -= n; - } while (nsect); - } - - /* Initialize root directory (fill with zero) */ - nsect = (fmt == FS_FAT32) ? pau : sz_dir; /* Number of root directory sectors */ - do { - n = (nsect > sz_buf) ? sz_buf : nsect; - if (disk_write(pdrv, buf, sect, (UINT)n) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); - sect += n; nsect -= n; - } while (nsect); - } - - /* Determine system ID in the partition table */ - if (FF_FS_EXFAT && fmt == FS_EXFAT) { - sys = 0x07; /* HPFS/NTFS/exFAT */ - } else { - if (fmt == FS_FAT32) { - sys = 0x0C; /* FAT32X */ - } else { - if (sz_vol >= 0x10000) { - sys = 0x06; /* FAT12/16 (large) */ - } else { - sys = (fmt == FS_FAT16) ? 0x04 : 0x01; /* FAT16 : FAT12 */ - } - } - } - - /* Update partition information */ - if (FF_MULTI_PARTITION && part != 0) { /* Created in the existing partition */ - /* Update system ID in the partition table */ - if (disk_read(pdrv, buf, 0, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); /* Read the MBR */ - buf[MBR_Table + (part - 1) * SZ_PTE + PTE_System] = sys; /* Set system ID */ - if (disk_write(pdrv, buf, 0, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); /* Write it back to the MBR */ - } else { /* Created as a new single partition */ - if (!(opt & FM_SFD)) { /* Create partition table if in FDISK format */ - mem_set(buf, 0, ss); - st_word(buf + BS_55AA, 0xAA55); /* MBR signature */ - pte = buf + MBR_Table; /* Create partition table for single partition in the drive */ - pte[PTE_Boot] = 0; /* Boot indicator */ - pte[PTE_StHead] = 1; /* Start head */ - pte[PTE_StSec] = 1; /* Start sector */ - pte[PTE_StCyl] = 0; /* Start cylinder */ - pte[PTE_System] = sys; /* System type */ - n = (b_vol + sz_vol) / (63 * 255); /* (End CHS may be invalid) */ - pte[PTE_EdHead] = 254; /* End head */ - pte[PTE_EdSec] = (BYTE)(((n >> 2) & 0xC0) | 63); /* End sector */ - pte[PTE_EdCyl] = (BYTE)n; /* End cylinder */ - st_dword(pte + PTE_StLba, b_vol); /* Start offset in LBA */ - st_dword(pte + PTE_SizLba, sz_vol); /* Size in sectors */ - if (disk_write(pdrv, buf, 0, 1) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); /* Write it to the MBR */ - } - } - - if (disk_ioctl(pdrv, CTRL_SYNC, 0) != RES_OK) LEAVE_MKFS(FR_DISK_ERR); - - LEAVE_MKFS(FR_OK); -} - - - -#if FF_MULTI_PARTITION -/*-----------------------------------------------------------------------*/ -/* Create Partition Table on the Physical Drive */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_fdisk ( - BYTE pdrv, /* Physical drive number */ - const DWORD* szt, /* Pointer to the size table for each partitions */ - void* work /* Pointer to the working buffer (null: use heap memory) */ -) -{ - UINT i, n, sz_cyl, tot_cyl, b_cyl, e_cyl, p_cyl; - BYTE s_hd, e_hd, *p, *buf = (BYTE*)work; - DSTATUS stat; - DWORD sz_disk, sz_part, s_part; - FRESULT res; - - - stat = disk_initialize(pdrv); - if (stat & STA_NOINIT) return FR_NOT_READY; - if (stat & STA_PROTECT) return FR_WRITE_PROTECTED; - if (disk_ioctl(pdrv, GET_SECTOR_COUNT, &sz_disk)) return FR_DISK_ERR; - - buf = (BYTE*)work; -#if FF_USE_LFN == 3 - if (!buf) buf = ff_memalloc(FF_MAX_SS); /* Use heap memory for working buffer */ -#endif - if (!buf) return FR_NOT_ENOUGH_CORE; - - /* Determine the CHS without any consideration of the drive geometry */ - for (n = 16; n < 256 && sz_disk / n / 63 > 1024; n *= 2) ; - if (n == 256) n--; - e_hd = (BYTE)(n - 1); - sz_cyl = 63 * n; - tot_cyl = sz_disk / sz_cyl; - - /* Create partition table */ - mem_set(buf, 0, FF_MAX_SS); - p = buf + MBR_Table; b_cyl = 0; - for (i = 0; i < 4; i++, p += SZ_PTE) { - p_cyl = (szt[i] <= 100U) ? (DWORD)tot_cyl * szt[i] / 100 : szt[i] / sz_cyl; /* Number of cylinders */ - if (p_cyl == 0) continue; - s_part = (DWORD)sz_cyl * b_cyl; - sz_part = (DWORD)sz_cyl * p_cyl; - if (i == 0) { /* Exclude first track of cylinder 0 */ - s_hd = 1; - s_part += 63; sz_part -= 63; - } else { - s_hd = 0; - } - e_cyl = b_cyl + p_cyl - 1; /* End cylinder */ - if (e_cyl >= tot_cyl) LEAVE_MKFS(FR_INVALID_PARAMETER); - - /* Set partition table */ - p[1] = s_hd; /* Start head */ - p[2] = (BYTE)(((b_cyl >> 2) & 0xC0) | 1); /* Start sector */ - p[3] = (BYTE)b_cyl; /* Start cylinder */ - p[4] = 0x07; /* System type (temporary setting) */ - p[5] = e_hd; /* End head */ - p[6] = (BYTE)(((e_cyl >> 2) & 0xC0) | 63); /* End sector */ - p[7] = (BYTE)e_cyl; /* End cylinder */ - st_dword(p + 8, s_part); /* Start sector in LBA */ - st_dword(p + 12, sz_part); /* Number of sectors */ - - /* Next partition */ - b_cyl += p_cyl; - } - st_word(p, 0xAA55); /* MBR signature (always at offset 510) */ - - /* Write it to the MBR */ - res = (disk_write(pdrv, buf, 0, 1) == RES_OK && disk_ioctl(pdrv, CTRL_SYNC, 0) == RES_OK) ? FR_OK : FR_DISK_ERR; - LEAVE_MKFS(res); -} - -#endif /* FF_MULTI_PARTITION */ -#endif /* FF_USE_MKFS && !FF_FS_READONLY */ - - - - -#if FF_USE_STRFUNC -#if FF_USE_LFN && FF_LFN_UNICODE && (FF_STRF_ENCODE < 0 || FF_STRF_ENCODE > 3) -#error Wrong FF_STRF_ENCODE setting -#endif -/*-----------------------------------------------------------------------*/ -/* Get a String from the File */ -/*-----------------------------------------------------------------------*/ - -TCHAR* f_gets ( - TCHAR* buff, /* Pointer to the string buffer to read */ - int len, /* Size of string buffer (items) */ - FIL* fp /* Pointer to the file object */ -) -{ - int nc = 0; - TCHAR *p = buff; - BYTE s[4]; - UINT rc; - DWORD dc; -#if FF_USE_LFN && FF_LFN_UNICODE && FF_STRF_ENCODE <= 2 - WCHAR wc; -#endif -#if FF_USE_LFN && FF_LFN_UNICODE && FF_STRF_ENCODE == 3 - UINT ct; -#endif - -#if FF_USE_LFN && FF_LFN_UNICODE /* With code conversion (Unicode API) */ - /* Make a room for the character and terminator */ - if (FF_LFN_UNICODE == 1) len -= (FF_STRF_ENCODE == 0) ? 1 : 2; - if (FF_LFN_UNICODE == 2) len -= (FF_STRF_ENCODE == 0) ? 3 : 4; - if (FF_LFN_UNICODE == 3) len -= 1; - while (nc < len) { -#if FF_STRF_ENCODE == 0 /* Read a character in ANSI/OEM */ - f_read(fp, s, 1, &rc); - if (rc != 1) break; - wc = s[0]; - if (dbc_1st((BYTE)wc)) { - f_read(fp, s, 1, &rc); - if (rc != 1 || !dbc_2nd(s[0])) continue; - wc = wc << 8 | s[0]; - } - dc = ff_oem2uni(wc, CODEPAGE); - if (dc == 0) continue; -#elif FF_STRF_ENCODE == 1 || FF_STRF_ENCODE == 2 /* Read a character in UTF-16LE/BE */ - f_read(fp, s, 2, &rc); - if (rc != 2) break; - dc = (FF_STRF_ENCODE == 1) ? ld_word(s) : s[0] << 8 | s[1]; - if (IsSurrogateL(dc)) continue; - if (IsSurrogateH(dc)) { - f_read(fp, s, 2, &rc); - if (rc != 2) break; - wc = (FF_STRF_ENCODE == 1) ? ld_word(s) : s[0] << 8 | s[1]; - if (!IsSurrogateL(wc)) continue; - dc = ((dc & 0x3FF) + 0x40) << 10 | (wc & 0x3FF); - } -#else /* Read a character in UTF-8 */ - f_read(fp, s, 1, &rc); - if (rc != 1) break; - dc = s[0]; - if (dc >= 0x80) { /* Multi-byte character? */ - ct = 0; - if ((dc & 0xE0) == 0xC0) { dc &= 0x1F; ct = 1; } /* 2-byte? */ - if ((dc & 0xF0) == 0xE0) { dc &= 0x0F; ct = 2; } /* 3-byte? */ - if ((dc & 0xF8) == 0xF0) { dc &= 0x07; ct = 3; } /* 4-byte? */ - if (ct == 0) continue; - f_read(fp, s, ct, &rc); /* Get trailing bytes */ - if (rc != ct) break; - rc = 0; - do { /* Merge trailing bytes */ - if ((s[rc] & 0xC0) != 0x80) break; - dc = dc << 6 | (s[rc] & 0x3F); - } while (++rc < ct); - if (rc != ct || dc < 0x80 || IsSurrogate(dc) || dc >= 0x110000) continue; /* Wrong encoding? */ - } -#endif - if (FF_USE_STRFUNC == 2 && dc == '\r') continue; /* Strip \r off if needed */ -#if FF_LFN_UNICODE == 1 || FF_LFN_UNICODE == 3 /* Output it in UTF-16/32 encoding */ - if (FF_LFN_UNICODE == 1 && dc >= 0x10000) { /* Out of BMP at UTF-16? */ - *p++ = (TCHAR)(0xD800 | ((dc >> 10) - 0x40)); nc++; /* Make and output high surrogate */ - dc = 0xDC00 | (dc & 0x3FF); /* Make low surrogate */ - } - *p++ = (TCHAR)dc; nc++; - if (dc == '\n') break; /* End of line? */ -#elif FF_LFN_UNICODE == 2 /* Output it in UTF-8 encoding */ - if (dc < 0x80) { /* 1-byte */ - *p++ = (TCHAR)dc; - nc++; - if (dc == '\n') break; /* End of line? */ - } else { - if (dc < 0x800) { /* 2-byte */ - *p++ = (TCHAR)(0xC0 | (dc >> 6 & 0x1F)); - *p++ = (TCHAR)(0x80 | (dc >> 0 & 0x3F)); - nc += 2; - } else { - if (dc < 0x10000) { /* 3-byte */ - *p++ = (TCHAR)(0xE0 | (dc >> 12 & 0x0F)); - *p++ = (TCHAR)(0x80 | (dc >> 6 & 0x3F)); - *p++ = (TCHAR)(0x80 | (dc >> 0 & 0x3F)); - nc += 3; - } else { /* 4-byte */ - *p++ = (TCHAR)(0xF0 | (dc >> 18 & 0x07)); - *p++ = (TCHAR)(0x80 | (dc >> 12 & 0x3F)); - *p++ = (TCHAR)(0x80 | (dc >> 6 & 0x3F)); - *p++ = (TCHAR)(0x80 | (dc >> 0 & 0x3F)); - nc += 4; - } - } - } -#endif - } - -#else /* Byte-by-byte without any conversion (ANSI/OEM API) */ - len -= 1; /* Make a room for the terminator */ - while (nc < len) { - f_read(fp, s, 1, &rc); - if (rc != 1) break; - dc = s[0]; - if (FF_USE_STRFUNC == 2 && dc == '\r') continue; - *p++ = (TCHAR)dc; nc++; - if (dc == '\n') break; - } -#endif - - *p = 0; /* Terminate the string */ - return nc ? buff : 0; /* When no data read due to EOF or error, return with error. */ -} -int f_gets_p ( - TCHAR* buff, /* Pointer to the string buffer to read */ - int len, /* Size of string buffer (items) */ - FIL* fp /* Pointer to the file object */ -) -{ - int nc = 0; - TCHAR *p = buff; - BYTE s[4]; - UINT rc; - DWORD dc; -#if FF_USE_LFN && FF_LFN_UNICODE && FF_STRF_ENCODE <= 2 - WCHAR wc; -#endif -#if FF_USE_LFN && FF_LFN_UNICODE && FF_STRF_ENCODE == 3 - UINT ct; -#endif - -#if FF_USE_LFN && FF_LFN_UNICODE /* With code conversion (Unicode API) */ - /* Make a room for the character and terminator */ - if (FF_LFN_UNICODE == 1) len -= (FF_STRF_ENCODE == 0) ? 1 : 2; - if (FF_LFN_UNICODE == 2) len -= (FF_STRF_ENCODE == 0) ? 3 : 4; - if (FF_LFN_UNICODE == 3) len -= 1; - while (nc < len) { -#if FF_STRF_ENCODE == 0 /* Read a character in ANSI/OEM */ - f_read(fp, s, 1, &rc); - if (rc != 1) break; - wc = s[0]; - if (dbc_1st((BYTE)wc)) { - f_read(fp, s, 1, &rc); - if (rc != 1 || !dbc_2nd(s[0])) continue; - wc = wc << 8 | s[0]; - } - dc = ff_oem2uni(wc, CODEPAGE); - if (dc == 0) continue; -#elif FF_STRF_ENCODE == 1 || FF_STRF_ENCODE == 2 /* Read a character in UTF-16LE/BE */ - f_read(fp, s, 2, &rc); - if (rc != 2) break; - dc = (FF_STRF_ENCODE == 1) ? ld_word(s) : s[0] << 8 | s[1]; - if (IsSurrogateL(dc)) continue; - if (IsSurrogateH(dc)) { - f_read(fp, s, 2, &rc); - if (rc != 2) break; - wc = (FF_STRF_ENCODE == 1) ? ld_word(s) : s[0] << 8 | s[1]; - if (!IsSurrogateL(wc)) continue; - dc = ((dc & 0x3FF) + 0x40) << 10 | (wc & 0x3FF); - } -#else /* Read a character in UTF-8 */ - f_read(fp, s, 1, &rc); - if (rc != 1) break; - dc = s[0]; - if (dc >= 0x80) { /* Multi-byte character? */ - ct = 0; - if ((dc & 0xE0) == 0xC0) { dc &= 0x1F; ct = 1; } /* 2-byte? */ - if ((dc & 0xF0) == 0xE0) { dc &= 0x0F; ct = 2; } /* 3-byte? */ - if ((dc & 0xF8) == 0xF0) { dc &= 0x07; ct = 3; } /* 4-byte? */ - if (ct == 0) continue; - f_read(fp, s, ct, &rc); /* Get trailing bytes */ - if (rc != ct) break; - rc = 0; - do { /* Merge trailing bytes */ - if ((s[rc] & 0xC0) != 0x80) break; - dc = dc << 6 | (s[rc] & 0x3F); - } while (++rc < ct); - if (rc != ct || dc < 0x80 || IsSurrogate(dc) || dc >= 0x110000) continue; /* Wrong encoding? */ - } -#endif - if (FF_USE_STRFUNC == 2 && dc == '\r') continue; /* Strip \r off if needed */ -#if FF_LFN_UNICODE == 1 || FF_LFN_UNICODE == 3 /* Output it in UTF-16/32 encoding */ - if (FF_LFN_UNICODE == 1 && dc >= 0x10000) { /* Out of BMP at UTF-16? */ - *p++ = (TCHAR)(0xD800 | ((dc >> 10) - 0x40)); nc++; /* Make and output high surrogate */ - dc = 0xDC00 | (dc & 0x3FF); /* Make low surrogate */ - } - *p++ = (TCHAR)dc; nc++; - if (dc == '\n') break; /* End of line? */ -#elif FF_LFN_UNICODE == 2 /* Output it in UTF-8 encoding */ - if (dc < 0x80) { /* 1-byte */ - *p++ = (TCHAR)dc; - nc++; - if (dc == '\n') break; /* End of line? */ - } else { - if (dc < 0x800) { /* 2-byte */ - *p++ = (TCHAR)(0xC0 | (dc >> 6 & 0x1F)); - *p++ = (TCHAR)(0x80 | (dc >> 0 & 0x3F)); - nc += 2; - } else { - if (dc < 0x10000) { /* 3-byte */ - *p++ = (TCHAR)(0xE0 | (dc >> 12 & 0x0F)); - *p++ = (TCHAR)(0x80 | (dc >> 6 & 0x3F)); - *p++ = (TCHAR)(0x80 | (dc >> 0 & 0x3F)); - nc += 3; - } else { /* 4-byte */ - *p++ = (TCHAR)(0xF0 | (dc >> 18 & 0x07)); - *p++ = (TCHAR)(0x80 | (dc >> 12 & 0x3F)); - *p++ = (TCHAR)(0x80 | (dc >> 6 & 0x3F)); - *p++ = (TCHAR)(0x80 | (dc >> 0 & 0x3F)); - nc += 4; - } - } - } -#endif - } - -#else /* Byte-by-byte without any conversion (ANSI/OEM API) */ - len -= 1; /* Make a room for the terminator */ - while (nc < len) { - f_read(fp, s, 1, &rc); - if (rc != 1) break; - dc = s[0]; - // if (FF_USE_STRFUNC == 2 && dc == '\r') continue; - *p++ = (TCHAR)dc; nc++; - if (dc == '\n') break; - } -#endif - - *p = 0; /* Terminate the string */ - return nc; /* When no data read due to EOF or error, return with error. */ -} - - - - -#if !FF_FS_READONLY -#include -/*-----------------------------------------------------------------------*/ -/* Put a Character to the File */ -/*-----------------------------------------------------------------------*/ - -typedef struct { /* Putchar output buffer and work area */ - FIL *fp; /* Ptr to the writing file */ - int idx, nchr; /* Write index of buf[] (-1:error), number of encoding units written */ -#if FF_USE_LFN && FF_LFN_UNICODE == 1 - WCHAR hs; -#elif FF_USE_LFN && FF_LFN_UNICODE == 2 - BYTE bs[4]; - UINT wi, ct; -#endif - BYTE buf[64]; /* Write buffer */ -} putbuff; - - -static void putc_bfd ( /* Buffered write with code conversion */ - putbuff* pb, - TCHAR c -) -{ - UINT n; - int i, nc; -#if FF_USE_LFN && FF_LFN_UNICODE - WCHAR hs, wc; -#if FF_LFN_UNICODE == 2 - DWORD dc; - TCHAR *tp; -#endif -#endif - - if (FF_USE_STRFUNC == 2 && c == '\n') { /* LF -> CRLF conversion */ - putc_bfd(pb, '\r'); - } - - i = pb->idx; /* Write index of pb->buf[] */ - if (i < 0) return; - nc = pb->nchr; /* Write unit counter */ - -#if FF_USE_LFN && FF_LFN_UNICODE -#if FF_LFN_UNICODE == 1 /* UTF-16 input */ - if (IsSurrogateH(c)) { - pb->hs = c; return; - } - hs = pb->hs; pb->hs = 0; - if (hs != 0) { - if (!IsSurrogateL(c)) hs = 0; - } else { - if (IsSurrogateL(c)) return; - } - wc = c; -#elif FF_LFN_UNICODE == 2 /* UTF-8 input */ - for (;;) { - if (pb->ct == 0) { /* Out of multi-byte sequence? */ - pb->bs[pb->wi = 0] = (BYTE)c; /* Save 1st byte */ - if ((BYTE)c < 0x80) break; /* 1-byte? */ - if (((BYTE)c & 0xE0) == 0xC0) pb->ct = 1; /* 2-byte? */ - if (((BYTE)c & 0xF0) == 0xE0) pb->ct = 2; /* 3-byte? */ - if (((BYTE)c & 0xF1) == 0xF0) pb->ct = 3; /* 4-byte? */ - return; - } else { /* In the multi-byte sequence */ - if (((BYTE)c & 0xC0) != 0x80) { /* Broken sequence? */ - pb->ct = 0; continue; - } - pb->bs[++pb->wi] = (BYTE)c; /* Save the trailing byte */ - if (--pb->ct == 0) break; /* End of multi-byte sequence? */ - return; - } - } - tp = (TCHAR*)pb->bs; - dc = tchar2uni(&tp); /* UTF-8 ==> UTF-16 */ - if (dc == 0xFFFFFFFF) return; - wc = (WCHAR)dc; - hs = (WCHAR)(dc >> 16); -#elif FF_LFN_UNICODE == 3 /* UTF-32 input */ - if (IsSurrogate(c) || c >= 0x110000) return; - if (c >= 0x10000) { - hs = (WCHAR)(0xD800 | ((c >> 10) - 0x40)); /* Make high surrogate */ - wc = 0xDC00 | (c & 0x3FF); /* Make low surrogate */ - } else { - hs = 0; - wc = (WCHAR)c; - } -#endif - -#if FF_STRF_ENCODE == 1 /* Write a character in UTF-16LE */ - if (hs != 0) { - st_word(&pb->buf[i], hs); - i += 2; - nc++; - } - st_word(&pb->buf[i], wc); - i += 2; -#elif FF_STRF_ENCODE == 2 /* Write a character in UTF-16BE */ - if (hs != 0) { - pb->buf[i++] = (BYTE)(hs >> 8); - pb->buf[i++] = (BYTE)hs; - nc++; - } - pb->buf[i++] = (BYTE)(wc >> 8); - pb->buf[i++] = (BYTE)wc; -#elif FF_STRF_ENCODE == 3 /* Write it in UTF-8 */ - if (hs != 0) { /* 4-byte */ - nc += 3; - hs = (hs & 0x3FF) + 0x40; - pb->buf[i++] = (BYTE)(0xF0 | hs >> 8); - pb->buf[i++] = (BYTE)(0x80 | (hs >> 2 & 0x3F)); - pb->buf[i++] = (BYTE)(0x80 | (hs & 3) << 4 | (wc >> 6 & 0x0F)); - pb->buf[i++] = (BYTE)(0x80 | (wc & 0x3F)); - } else { - if (wc < 0x80) { /* 1-byte */ - pb->buf[i++] = (BYTE)wc; - } else { - if (wc < 0x800) { /* 2-byte */ - nc += 1; - pb->buf[i++] = (BYTE)(0xC0 | wc >> 6); - } else { /* 3-byte */ - nc += 2; - pb->buf[i++] = (BYTE)(0xE0 | wc >> 12); - pb->buf[i++] = (BYTE)(0x80 | (wc >> 6 & 0x3F)); - } - pb->buf[i++] = (BYTE)(0x80 | (wc & 0x3F)); - } - } -#else /* Write it in ANSI/OEM */ - if (hs != 0) return; - wc = ff_uni2oem(wc, CODEPAGE); /* UTF-16 ==> ANSI/OEM */ - if (wc == 0) return; - if (wc >= 0x100) { - pb->buf[i++] = (BYTE)(wc >> 8); nc++; - } - pb->buf[i++] = (BYTE)wc; -#endif - -#else /* ANSI/OEM input (without re-encode) */ - pb->buf[i++] = (BYTE)c; -#endif - - if (i >= (int)(sizeof pb->buf) - 4) { /* Write buffered characters to the file */ - f_write(pb->fp, pb->buf, (UINT)i, &n); - i = (n == (UINT)i) ? 0 : -1; - } - pb->idx = i; - pb->nchr = nc + 1; -} - - -static int putc_flush ( /* Flush left characters in the buffer */ - putbuff* pb -) -{ - UINT nw; - - if ( pb->idx >= 0 /* Flush buffered characters to the file */ - && f_write(pb->fp, pb->buf, (UINT)pb->idx, &nw) == FR_OK - && (UINT)pb->idx == nw) return pb->nchr; - return EOF; -} - - -static void putc_init ( /* Initialize write buffer */ - putbuff* pb, - FIL* fp -) -{ - mem_set(pb, 0, sizeof (putbuff)); - pb->fp = fp; -} - - - -int f_putc ( - TCHAR c, /* A character to be output */ - FIL* fp /* Pointer to the file object */ -) -{ - putbuff pb; - - - putc_init(&pb, fp); - putc_bfd(&pb, c); /* Put the character */ - return putc_flush(&pb); -} - - - - -/*-----------------------------------------------------------------------*/ -/* Put a String to the File */ -/*-----------------------------------------------------------------------*/ - -int f_puts ( - const TCHAR* str, /* Pointer to the string to be output */ - FIL* fp /* Pointer to the file object */ -) -{ - putbuff pb; - - - putc_init(&pb, fp); - while (*str) putc_bfd(&pb, *str++); /* Put the string */ - return putc_flush(&pb); -} - - - - -/*-----------------------------------------------------------------------*/ -/* Put a Formatted String to the File */ -/*-----------------------------------------------------------------------*/ - -int f_printf ( - FIL* fp, /* Pointer to the file object */ - const TCHAR* fmt, /* Pointer to the format string */ - ... /* Optional arguments... */ -) -{ - va_list arp; - putbuff pb; - BYTE f, r; - UINT i, j, w; - DWORD v; - TCHAR c, d, str[32], *p; - - - putc_init(&pb, fp); - - va_start(arp, fmt); - - for (;;) { - c = *fmt++; - if (c == 0) break; /* End of string */ - if (c != '%') { /* Non escape character */ - putc_bfd(&pb, c); - continue; - } - w = f = 0; - c = *fmt++; - if (c == '0') { /* Flag: '0' padding */ - f = 1; c = *fmt++; - } else { - if (c == '-') { /* Flag: left justified */ - f = 2; c = *fmt++; - } - } - if (c == '*') { /* Minimum width by argument */ - w = va_arg(arp, int); - c = *fmt++; - } else { - while (IsDigit(c)) { /* Minimum width */ - w = w * 10 + c - '0'; - c = *fmt++; - } - } - if (c == 'l' || c == 'L') { /* Type prefix: Size is long int */ - f |= 4; c = *fmt++; - } - if (c == 0) break; - d = c; - if (IsLower(d)) d -= 0x20; - switch (d) { /* Atgument type is... */ - case 'S' : /* String */ - p = va_arg(arp, TCHAR*); - for (j = 0; p[j]; j++) ; - if (!(f & 2)) { /* Right padded */ - while (j++ < w) putc_bfd(&pb, ' ') ; - } - while (*p) putc_bfd(&pb, *p++) ; /* String body */ - while (j++ < w) putc_bfd(&pb, ' ') ; /* Left padded */ - continue; - - case 'C' : /* Character */ - putc_bfd(&pb, (TCHAR)va_arg(arp, int)); continue; - - case 'B' : /* Unsigned binary */ - r = 2; break; - - case 'O' : /* Unsigned octal */ - r = 8; break; - - case 'D' : /* Signed decimal */ - case 'U' : /* Unsigned decimal */ - r = 10; break; - - case 'X' : /* Unsigned hexdecimal */ - r = 16; break; - - default: /* Unknown type (pass-through) */ - putc_bfd(&pb, c); continue; - } - - /* Get an argument and put it in numeral */ - v = (f & 4) ? (DWORD)va_arg(arp, long) : ((d == 'D') ? (DWORD)(long)va_arg(arp, int) : (DWORD)va_arg(arp, unsigned int)); - if (d == 'D' && (v & 0x80000000)) { - v = 0 - v; - f |= 8; - } - i = 0; - do { - d = (TCHAR)(v % r); v /= r; - if (d > 9) d += (c == 'x') ? 0x27 : 0x07; - str[i++] = d + '0'; - } while (v && i < sizeof str / sizeof *str); - if (f & 8) str[i++] = '-'; - j = i; d = (f & 1) ? '0' : ' '; - if (!(f & 2)) { - while (j++ < w) putc_bfd(&pb, d); /* Right pad */ - } - do { - putc_bfd(&pb, str[--i]); /* Number body */ - } while (i); - while (j++ < w) putc_bfd(&pb, d); /* Left pad */ - } - - va_end(arp); - - return putc_flush(&pb); -} - -#endif /* !FF_FS_READONLY */ -#endif /* FF_USE_STRFUNC */ - - - -#if FF_CODE_PAGE == 0 -/*-----------------------------------------------------------------------*/ -/* Set Active Codepage for the Path Name */ -/*-----------------------------------------------------------------------*/ - -FRESULT f_setcp ( - WORD cp /* Value to be set as active code page */ -) -{ - static const WORD validcp[] = { 437, 720, 737, 771, 775, 850, 852, 857, 860, 861, 862, 863, 864, 865, 866, 869, 932, 936, 949, 950, 0}; - static const BYTE* const tables[] = {Ct437, Ct720, Ct737, Ct771, Ct775, Ct850, Ct852, Ct857, Ct860, Ct861, Ct862, Ct863, Ct864, Ct865, Ct866, Ct869, Dc932, Dc936, Dc949, Dc950, 0}; - UINT i; - - - for (i = 0; validcp[i] != 0 && validcp[i] != cp; i++) ; /* Find the code page */ - if (validcp[i] != cp) return FR_INVALID_PARAMETER; /* Not found? */ - - CodePage = cp; - if (cp >= 900) { /* DBCS */ - ExCvt = 0; - DbcTbl = tables[i]; - } else { /* SBCS */ - ExCvt = tables[i]; - DbcTbl = 0; - } - return FR_OK; -} -#endif /* FF_CODE_PAGE == 0 */ - diff --git a/Marlin/lib/fat_fs/src/ff.h b/Marlin/lib/fat_fs/src/ff.h deleted file mode 100644 index 6c541811b5..0000000000 --- a/Marlin/lib/fat_fs/src/ff.h +++ /dev/null @@ -1,406 +0,0 @@ -/*----------------------------------------------------------------------------/ -/ FatFs - Generic FAT Filesystem module R0.13c / -/-----------------------------------------------------------------------------/ -/ -/ Copyright (C) 2018, ChaN, all right reserved. -/ -/ FatFs module is an open source software. Redistribution and use of FatFs in -/ source and binary forms, with or without modification, are permitted provided -/ that the following condition is met: - -/ 1. Redistributions of source code must retain the above copyright notice, -/ this condition and the following disclaimer. -/ -/ This software is provided by the copyright holder and contributors "AS IS" -/ and any warranties related to this software are DISCLAIMED. -/ The copyright owner or contributors be NOT LIABLE for any damages caused -/ by use of this software. -/ -/----------------------------------------------------------------------------*/ - - -#ifndef FF_DEFINED -#define FF_DEFINED 86604 /* Revision ID */ - -#ifdef __cplusplus -extern "C" { -#endif - -#include "ffconf.h" /* FatFs configuration options */ - -#if FF_DEFINED != FFCONF_DEF -#error Wrong configuration file (ffconf.h). -#endif - - -/* Integer types used for FatFs API */ - -#if defined(_WIN32) /* Main development platform */ -#define FF_INTDEF 2 -#include -typedef unsigned __int64 QWORD; -#elif (defined(__STDC_VERSION__) && __STDC_VERSION__ >= 199901L) || defined(__cplusplus) /* C99 or later */ -#define FF_INTDEF 2 -#include -typedef unsigned int UINT; /* int must be 16-bit or 32-bit */ -typedef unsigned char BYTE; /* char must be 8-bit */ -typedef uint16_t WORD; /* 16-bit unsigned integer */ -typedef uint16_t WCHAR; /* 16-bit unsigned integer */ -typedef uint32_t DWORD; /* 32-bit unsigned integer */ -typedef uint64_t QWORD; /* 64-bit unsigned integer */ -#else /* Earlier than C99 */ -#define FF_INTDEF 1 -typedef unsigned int UINT; /* int must be 16-bit or 32-bit */ -typedef unsigned char BYTE; /* char must be 8-bit */ -typedef unsigned short WORD; /* 16-bit unsigned integer */ -typedef unsigned short WCHAR; /* 16-bit unsigned integer */ -typedef unsigned long DWORD; /* 32-bit unsigned integer */ -#endif - - -/* Definitions of volume management */ - -#if FF_MULTI_PARTITION /* Multiple partition configuration */ -typedef struct { - BYTE pd; /* Physical drive number */ - BYTE pt; /* Partition: 0:Auto detect, 1-4:Forced partition) */ -} PARTITION; -extern PARTITION VolToPart[]; /* Volume - Partition resolution table */ -#endif - -#if FF_STR_VOLUME_ID -#ifndef FF_VOLUME_STRS -extern const char* VolumeStr[FF_VOLUMES]; /* User defied volume ID */ -#endif -#endif - - - -/* Type of path name strings on FatFs API */ - -#ifndef _INC_TCHAR -#define _INC_TCHAR - -#if FF_USE_LFN && FF_LFN_UNICODE == 1 /* Unicode in UTF-16 encoding */ -typedef WCHAR TCHAR; -#define _T(x) L ## x -#define _TEXT(x) L ## x -#elif FF_USE_LFN && FF_LFN_UNICODE == 2 /* Unicode in UTF-8 encoding */ -typedef char TCHAR; -#define _T(x) u8 ## x -#define _TEXT(x) u8 ## x -#elif FF_USE_LFN && FF_LFN_UNICODE == 3 /* Unicode in UTF-32 encoding */ -typedef DWORD TCHAR; -#define _T(x) U ## x -#define _TEXT(x) U ## x -#elif FF_USE_LFN && (FF_LFN_UNICODE < 0 || FF_LFN_UNICODE > 3) -#error Wrong FF_LFN_UNICODE setting -#else /* ANSI/OEM code in SBCS/DBCS */ -typedef char TCHAR; -#define _T(x) x -#define _TEXT(x) x -#endif - -#endif - - - -/* Type of file size variables */ - -#if FF_FS_EXFAT -#if FF_INTDEF != 2 -#error exFAT feature wants C99 or later -#endif -typedef QWORD FSIZE_t; -#else -typedef DWORD FSIZE_t; -#endif - - - -/* Filesystem object structure (FATFS) */ - -typedef struct { - BYTE fs_type; /* Filesystem type (0:not mounted) */ - BYTE pdrv; /* Associated physical drive */ - BYTE n_fats; /* Number of FATs (1 or 2) */ - BYTE wflag; /* win[] flag (b0:dirty) */ - BYTE fsi_flag; /* FSINFO flags (b7:disabled, b0:dirty) */ - WORD id; /* Volume mount ID */ - WORD n_rootdir; /* Number of root directory entries (FAT12/16) */ - WORD csize; /* Cluster size [sectors] */ -#if FF_MAX_SS != FF_MIN_SS - WORD ssize; /* Sector size (512, 1024, 2048 or 4096) */ -#endif -#if FF_USE_LFN - WCHAR* lfnbuf; /* LFN working buffer */ -#endif -#if FF_FS_EXFAT - BYTE* dirbuf; /* Directory entry block scratchpad buffer for exFAT */ -#endif -#if FF_FS_REENTRANT - FF_SYNC_t sobj; /* Identifier of sync object */ -#endif -#if !FF_FS_READONLY - DWORD last_clst; /* Last allocated cluster */ - DWORD free_clst; /* Number of free clusters */ -#endif -#if FF_FS_RPATH - DWORD cdir; /* Current directory start cluster (0:root) */ -#if FF_FS_EXFAT - DWORD cdc_scl; /* Containing directory start cluster (invalid when cdir is 0) */ - DWORD cdc_size; /* b31-b8:Size of containing directory, b7-b0: Chain status */ - DWORD cdc_ofs; /* Offset in the containing directory (invalid when cdir is 0) */ -#endif -#endif - DWORD n_fatent; /* Number of FAT entries (number of clusters + 2) */ - DWORD fsize; /* Size of an FAT [sectors] */ - DWORD volbase; /* Volume base sector */ - DWORD fatbase; /* FAT base sector */ - DWORD dirbase; /* Root directory base sector/cluster */ - DWORD database; /* Data base sector */ -#if FF_FS_EXFAT - DWORD bitbase; /* Allocation bitmap base sector */ -#endif - DWORD winsect; /* Current sector appearing in the win[] */ - BYTE win[FF_MAX_SS]; /* Disk access window for Directory, FAT (and file data at tiny cfg) */ -} FATFS; - - - -/* Object ID and allocation information (FFOBJID) */ - -typedef struct { - FATFS* fs; /* Pointer to the hosting volume of this object */ - WORD id; /* Hosting volume mount ID */ - BYTE attr; /* Object attribute */ - BYTE stat; /* Object chain status (b1-0: =0:not contiguous, =2:contiguous, =3:fragmented in this session, b2:sub-directory stretched) */ - DWORD sclust; /* Object data start cluster (0:no cluster or root directory) */ - FSIZE_t objsize; /* Object size (valid when sclust != 0) */ -#if FF_FS_EXFAT - DWORD n_cont; /* Size of first fragment - 1 (valid when stat == 3) */ - DWORD n_frag; /* Size of last fragment needs to be written to FAT (valid when not zero) */ - DWORD c_scl; /* Containing directory start cluster (valid when sclust != 0) */ - DWORD c_size; /* b31-b8:Size of containing directory, b7-b0: Chain status (valid when c_scl != 0) */ - DWORD c_ofs; /* Offset in the containing directory (valid when file object and sclust != 0) */ -#endif -#if FF_FS_LOCK - UINT lockid; /* File lock ID origin from 1 (index of file semaphore table Files[]) */ -#endif -} FFOBJID; - - - -/* File object structure (FIL) */ - -typedef struct { - FFOBJID obj; /* Object identifier (must be the 1st member to detect invalid object pointer) */ - BYTE flag; /* File status flags */ - BYTE err; /* Abort flag (error code) */ - FSIZE_t fptr; /* File read/write pointer (Zeroed on file open) */ - DWORD clust; /* Current cluster of fpter (invalid when fptr is 0) */ - DWORD sect; /* Sector number appearing in buf[] (0:invalid) */ -#if !FF_FS_READONLY - DWORD dir_sect; /* Sector number containing the directory entry (not used at exFAT) */ - BYTE* dir_ptr; /* Pointer to the directory entry in the win[] (not used at exFAT) */ -#endif -#if FF_USE_FASTSEEK - DWORD* cltbl; /* Pointer to the cluster link map table (nulled on open, set by application) */ -#endif -#if !FF_FS_TINY - BYTE buf[FF_MAX_SS]; /* File private data read/write window */ -#endif -} FIL; - - - -/* Directory object structure (DIR) */ - -typedef struct { - FFOBJID obj; /* Object identifier */ - DWORD dptr; /* Current read/write offset */ - DWORD clust; /* Current cluster */ - DWORD sect; /* Current sector (0:Read operation has terminated) */ - BYTE* dir; /* Pointer to the directory item in the win[] */ - BYTE fn[12]; /* SFN (in/out) {body[8],ext[3],status[1]} */ -#if FF_USE_LFN - DWORD blk_ofs; /* Offset of current entry block being processed (0xFFFFFFFF:Invalid) */ -#endif -#if FF_USE_FIND - const TCHAR* pat; /* Pointer to the name matching pattern */ -#endif -} DIR; - - - -/* File information structure (FILINFO) */ - -typedef struct { - FSIZE_t fsize; /* File size */ - WORD fdate; /* Modified date */ - WORD ftime; /* Modified time */ - BYTE fattrib; /* File attribute */ -#if FF_USE_LFN - TCHAR altname[FF_SFN_BUF + 1];/* Altenative file name */ - TCHAR fname[FF_LFN_BUF + 1]; /* Primary file name */ -#else - TCHAR fname[12 + 1]; /* File name */ -#endif -} FILINFO; - - - -/* File function return code (FRESULT) */ - -typedef enum { - FR_OK = 0, /* (0) Succeeded */ - FR_DISK_ERR, /* (1) A hard error occurred in the low level disk I/O layer */ - FR_INT_ERR, /* (2) Assertion failed */ - FR_NOT_READY, /* (3) The physical drive cannot work */ - FR_NO_FILE, /* (4) Could not find the file */ - FR_NO_PATH, /* (5) Could not find the path */ - FR_INVALID_NAME, /* (6) The path name format is invalid */ - FR_DENIED, /* (7) Access denied due to prohibited access or directory full */ - FR_EXIST, /* (8) Access denied due to prohibited access */ - FR_INVALID_OBJECT, /* (9) The file/directory object is invalid */ - FR_WRITE_PROTECTED, /* (10) The physical drive is write protected */ - FR_INVALID_DRIVE, /* (11) The logical drive number is invalid */ - FR_NOT_ENABLED, /* (12) The volume has no work area */ - FR_NO_FILESYSTEM, /* (13) There is no valid FAT volume */ - FR_MKFS_ABORTED, /* (14) The f_mkfs() aborted due to any problem */ - FR_TIMEOUT, /* (15) Could not get a grant to access the volume within defined period */ - FR_LOCKED, /* (16) The operation is rejected according to the file sharing policy */ - FR_NOT_ENOUGH_CORE, /* (17) LFN working buffer could not be allocated */ - FR_TOO_MANY_OPEN_FILES, /* (18) Number of open files > FF_FS_LOCK */ - FR_INVALID_PARAMETER /* (19) Given parameter is invalid */ -} FRESULT; - - - -/*--------------------------------------------------------------*/ -/* FatFs module application interface */ - -FRESULT f_open (FIL* fp, const TCHAR* path, BYTE mode); /* Open or create a file */ -FRESULT f_close (FIL* fp); /* Close an open file object */ -FRESULT f_read (FIL* fp, void* buff, UINT btr, UINT* br); /* Read data from the file */ -FRESULT f_write (FIL* fp, const void* buff, UINT btw, UINT* bw); /* Write data to the file */ -FRESULT f_lseek (FIL* fp, FSIZE_t ofs); /* Move file pointer of the file object */ -FRESULT f_truncate (FIL* fp); /* Truncate the file */ -FRESULT f_sync (FIL* fp); /* Flush cached data of the writing file */ -FRESULT f_opendir (DIR* dp, const TCHAR* path); /* Open a directory */ -FRESULT f_closedir (DIR* dp); /* Close an open directory */ -FRESULT f_readdir (DIR* dp, FILINFO* fno); /* Read a directory item */ -FRESULT f_findfirst (DIR* dp, FILINFO* fno, const TCHAR* path, const TCHAR* pattern); /* Find first file */ -FRESULT f_findnext (DIR* dp, FILINFO* fno); /* Find next file */ -FRESULT f_mkdir (const TCHAR* path); /* Create a sub directory */ -FRESULT f_unlink (const TCHAR* path); /* Delete an existing file or directory */ -FRESULT f_rename (const TCHAR* path_old, const TCHAR* path_new); /* Rename/Move a file or directory */ -FRESULT f_stat (const TCHAR* path, FILINFO* fno); /* Get file status */ -FRESULT f_chmod (const TCHAR* path, BYTE attr, BYTE mask); /* Change attribute of a file/dir */ -FRESULT f_utime (const TCHAR* path, const FILINFO* fno); /* Change timestamp of a file/dir */ -FRESULT f_chdir (const TCHAR* path); /* Change current directory */ -FRESULT f_chdrive (const TCHAR* path); /* Change current drive */ -FRESULT f_getcwd (TCHAR* buff, UINT len); /* Get current directory */ -FRESULT f_getfree (const TCHAR* path, DWORD* nclst, FATFS** fatfs); /* Get number of free clusters on the drive */ -FRESULT f_getlabel (const TCHAR* path, TCHAR* label, DWORD* vsn); /* Get volume label */ -FRESULT f_setlabel (const TCHAR* label); /* Set volume label */ -FRESULT f_forward (FIL* fp, UINT(*func)(const BYTE*,UINT), UINT btf, UINT* bf); /* Forward data to the stream */ -FRESULT f_expand (FIL* fp, FSIZE_t szf, BYTE opt); /* Allocate a contiguous block to the file */ -FRESULT f_mount (FATFS* fs, const TCHAR* path, BYTE opt); /* Mount/Unmount a logical drive */ -FRESULT f_mkfs (const TCHAR* path, BYTE opt, DWORD au, void* work, UINT len); /* Create a FAT volume */ -FRESULT f_fdisk (BYTE pdrv, const DWORD* szt, void* work); /* Divide a physical drive into some partitions */ -FRESULT f_setcp (WORD cp); /* Set current code page */ -int f_putc (TCHAR c, FIL* fp); /* Put a character to the file */ -int f_puts (const TCHAR* str, FIL* cp); /* Put a string to the file */ -int f_printf (FIL* fp, const TCHAR* str, ...); /* Put a formatted string to the file */ -TCHAR* f_gets (TCHAR* buff, int len, FIL* fp); /* Get a string from the file */ -int f_gets_p (TCHAR* buff, int len, FIL* fp); /* Get a string from the file, return read size */ - -#define f_eof(fp) ((int)((fp)->fptr == (fp)->obj.objsize)) -#define f_error(fp) ((fp)->err) -#define f_tell(fp) ((fp)->fptr) -#define f_size(fp) ((fp)->obj.objsize) -#define f_rewind(fp) f_lseek((fp), 0) -#define f_rewinddir(dp) f_readdir((dp), 0) -#define f_rmdir(path) f_unlink(path) -#define f_unmount(path) f_mount(0, path, 0) - -#ifndef EOF -#define EOF (-1) -#endif - - - - -/*--------------------------------------------------------------*/ -/* Additional user defined functions */ - -/* RTC function */ -#if !FF_FS_READONLY && !FF_FS_NORTC -DWORD get_fattime (void); -#endif - -/* LFN support functions */ -#if FF_USE_LFN >= 1 /* Code conversion (defined in unicode.c) */ -WCHAR ff_oem2uni (WCHAR oem, WORD cp); /* OEM code to Unicode conversion */ -WCHAR ff_uni2oem (DWORD uni, WORD cp); /* Unicode to OEM code conversion */ -DWORD ff_wtoupper (DWORD uni); /* Unicode upper-case conversion */ -#endif -#if FF_USE_LFN == 3 /* Dynamic memory allocation */ -void* ff_memalloc (UINT msize); /* Allocate memory block */ -void ff_memfree (void* mblock); /* Free memory block */ -#endif - -/* Sync functions */ -#if FF_FS_REENTRANT -int ff_cre_syncobj (BYTE vol, FF_SYNC_t* sobj); /* Create a sync object */ -int ff_req_grant (FF_SYNC_t sobj); /* Lock sync object */ -void ff_rel_grant (FF_SYNC_t sobj); /* Unlock sync object */ -int ff_del_syncobj (FF_SYNC_t sobj); /* Delete a sync object */ -#endif - - - - -/*--------------------------------------------------------------*/ -/* Flags and offset address */ - - -/* File access mode and open method flags (3rd argument of f_open) */ -#define FA_READ 0x01 -#define FA_WRITE 0x02 -#define FA_OPEN_EXISTING 0x00 -#define FA_CREATE_NEW 0x04 -#define FA_CREATE_ALWAYS 0x08 -#define FA_OPEN_ALWAYS 0x10 -#define FA_OPEN_APPEND 0x30 - -/* Fast seek controls (2nd argument of f_lseek) */ -#define CREATE_LINKMAP ((FSIZE_t)0 - 1) - -/* Format options (2nd argument of f_mkfs) */ -#define FM_FAT 0x01 -#define FM_FAT32 0x02 -#define FM_EXFAT 0x04 -#define FM_ANY 0x07 -#define FM_SFD 0x08 - -/* Filesystem type (FATFS.fs_type) */ -#define FS_FAT12 1 -#define FS_FAT16 2 -#define FS_FAT32 3 -#define FS_EXFAT 4 - -/* File attribute bits for directory entry (FILINFO.fattrib) */ -#define AM_RDO 0x01 /* Read only */ -#define AM_HID 0x02 /* Hidden */ -#define AM_SYS 0x04 /* System */ -#define AM_DIR 0x10 /* Directory */ -#define AM_ARC 0x20 /* Archive */ - - -#ifdef __cplusplus -} -#endif - -#endif /* FF_DEFINED */ diff --git a/Marlin/lib/fat_fs/src/ff_gen_drv.c b/Marlin/lib/fat_fs/src/ff_gen_drv.c deleted file mode 100644 index 920f2ca99c..0000000000 --- a/Marlin/lib/fat_fs/src/ff_gen_drv.c +++ /dev/null @@ -1,130 +0,0 @@ -/*! - \file ff_gen_drv.c - \brief FatFs generic low level driver - - \version 2018-10-08, V1.0.0, firmware for GD32 USBFS&USBHS -*/ - -/* - Copyright (c) 2018, GigaDevice Semiconductor Inc. - - All rights reserved. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - -#include "ff_gen_drv.h" - - -Disk_drvTypeDef disk = {{0},{0},{0},0}; - -/*! - \brief Links a compatible diskio driver/lun id and increments the number of active linked drivers - \note The number of linked drivers (volumes) is up to 10 due to FatFs limits - \param[in] drv: pointer to the disk IO Driver structure - \param[in] path: pointer to the logical drive path - \param[in] lun: only used for USB Key Disk to add multi-lun management else the parameter must be equal to 0 - \param[out] none - \retval Returns 0 in case of success, otherwise 1 -*/ -uint8_t FATFS_LinkDriverEx(const Diskio_drvTypeDef *drv, char *path, uint8_t lun) -{ - uint8_t ret = 1; - uint8_t DiskNum = 0; - - if(disk.nbr < _VOLUMES) { - disk.is_initialized[disk.nbr] = 0; - disk.drv[disk.nbr] = drv; - disk.lun[disk.nbr] = lun; - DiskNum = disk.nbr++; - path[0] = DiskNum + '0'; - path[1] = ':'; - path[2] = '/'; - path[3] = 0; - ret = 0; - } - - return ret; -} - -/*! - \brief Links a compatible diskio driver/lun id and increments the number of active linked drivers - \note The number of linked drivers (volumes) is up to 10 due to FatFs limits - \param[in] drv: pointer to the disk IO Driver structure - \param[in] path: pointer to the logical drive path - \param[out] none - \retval Returns 0 in case of success, otherwise 1 -*/ -uint8_t FATFS_LinkDriver(const Diskio_drvTypeDef *drv, char *path) -{ - return FATFS_LinkDriverEx(drv, path, 0); -} - -/*! - \brief Unlinks a diskio driver and decrements the number of active linked drivers - \param[in] path: pointer to the logical drive path - \param[in] lun: only used for USB Key Disk to add multi-lun management else the parameter must be equal to 0 - \param[out] none - \retval Returns 0 in case of success, otherwise 1 -*/ -uint8_t FATFS_UnLinkDriverEx(char *path, uint8_t lun) -{ - uint8_t DiskNum = 0; - uint8_t ret = 1; - - if (disk.nbr >= 1) { - DiskNum = path[0] - '0'; - - if (disk.drv[DiskNum] != 0) { - disk.drv[DiskNum] = 0; - disk.lun[DiskNum] = 0; - disk.nbr--; - ret = 0; - } - } - - return ret; -} - -/*! - \brief Unlinks a diskio driver and decrements the number of active linked drivers - \param[in] path: pointer to the logical drive path - \param[out] none - \retval Returns 0 in case of success, otherwise 1 -*/ -uint8_t FATFS_UnLinkDriver(char *path) -{ - return FATFS_UnLinkDriverEx(path, 0); -} - -/*! - \brief Gets number of linked drivers to the FatFs module - \param[in] none - \param[out] none - \retval Number of attached drivers -*/ -uint8_t FATFS_GetAttachedDriversNbr(void) -{ - return disk.nbr; -} diff --git a/Marlin/lib/fat_fs/src/ff_gen_drv.h b/Marlin/lib/fat_fs/src/ff_gen_drv.h deleted file mode 100644 index 527406d1d9..0000000000 --- a/Marlin/lib/fat_fs/src/ff_gen_drv.h +++ /dev/null @@ -1,86 +0,0 @@ -/*! - \file ff_gen_drv.h - \brief header for ff_gen_drv.c module - - \version 2018-10-08, V1.0.0, firmware for GD32 USBFS&USBHS -*/ - -/* - Copyright (c) 2018, GigaDevice Semiconductor Inc. - - All rights reserved. - - Redistribution and use in source and binary forms, with or without modification, -are permitted provided that the following conditions are met: - - 1. Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - 2. Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - 3. Neither the name of the copyright holder nor the names of its contributors - may be used to endorse or promote products derived from this software without - specific prior written permission. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED -WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, -INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, -WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) -ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY -OF SUCH DAMAGE. -*/ - - -#ifndef __FF_GEN_DRV_H -#define __FF_GEN_DRV_H - -#ifdef __cplusplus - extern "C" { -#endif - -#include "diskio.h" -#include "ff.h" -#include "stdint.h" - -/* Disk IO Driver structure definition */ -typedef struct -{ - DSTATUS (*disk_initialize) (BYTE); /*!< Initialize Disk Drive */ - DSTATUS (*disk_status) (BYTE); /*!< Get Disk Status */ - DRESULT (*disk_read) (BYTE, BYTE*, DWORD, UINT); /*!< Read Sector(s) */ -#if _USE_WRITE == 1 - DRESULT (*disk_write) (BYTE, const BYTE*, DWORD, UINT); /*!< Write Sector(s) when _USE_WRITE = 0 */ -#endif /* _USE_WRITE == 1 */ -#if _USE_IOCTL == 1 - DRESULT (*disk_ioctl) (BYTE, BYTE, void*); /*!< I/O control operation when _USE_IOCTL = 1 */ -#endif /* _USE_IOCTL == 1 */ - -}Diskio_drvTypeDef; - -/* Global Disk IO Drivers structure definition */ -typedef struct -{ - uint8_t is_initialized[_VOLUMES]; - const Diskio_drvTypeDef *drv[_VOLUMES]; - uint8_t lun[_VOLUMES]; - volatile uint8_t nbr; - -}Disk_drvTypeDef; - - -uint8_t FATFS_LinkDriver(const Diskio_drvTypeDef *drv, char *path); -uint8_t FATFS_UnLinkDriver(char *path); -uint8_t FATFS_LinkDriverEx(const Diskio_drvTypeDef *drv, char *path, BYTE lun); -uint8_t FATFS_UnLinkDriverEx(char *path, BYTE lun); -uint8_t FATFS_GetAttachedDriversNbr(void); - -#ifdef __cplusplus -} -#endif - -#endif /* __FF_GEN_DRV_H */ - diff --git a/Marlin/lib/fat_fs/src/ffconf.h b/Marlin/lib/fat_fs/src/ffconf.h deleted file mode 100644 index 5f8040f8d6..0000000000 --- a/Marlin/lib/fat_fs/src/ffconf.h +++ /dev/null @@ -1,292 +0,0 @@ -/*---------------------------------------------------------------------------/ -/ FatFs Functional Configurations -/---------------------------------------------------------------------------*/ - -#define FFCONF_DEF 86604 /* Revision ID */ - -/*---------------------------------------------------------------------------/ -/ Function Configurations -/---------------------------------------------------------------------------*/ - -#define FF_FS_READONLY 0 -/* This option switches read-only configuration. (0:Read/Write or 1:Read-only) -/ Read-only configuration removes writing API functions, f_write(), f_sync(), -/ f_unlink(), f_mkdir(), f_chmod(), f_rename(), f_truncate(), f_getfree() -/ and optional writing functions as well. */ - - -#define FF_FS_MINIMIZE 0 -/* This option defines minimization level to remove some basic API functions. -/ -/ 0: Basic functions are fully enabled. -/ 1: f_stat(), f_getfree(), f_unlink(), f_mkdir(), f_truncate() and f_rename() -/ are removed. -/ 2: f_opendir(), f_readdir() and f_closedir() are removed in addition to 1. -/ 3: f_lseek() function is removed in addition to 2. */ - - -#define FF_USE_STRFUNC 1 -/* This option switches string functions, f_gets(), f_putc(), f_puts() and f_printf(). -/ -/ 0: Disable string functions. -/ 1: Enable without LF-CRLF conversion. -/ 2: Enable with LF-CRLF conversion. */ - - -#define FF_USE_FIND 0 -/* This option switches filtered directory read functions, f_findfirst() and -/ f_findnext(). (0:Disable, 1:Enable 2:Enable with matching altname[] too) */ - - -#define FF_USE_MKFS 1 -/* This option switches f_mkfs() function. (0:Disable or 1:Enable) */ - - -#define _USE_FASTSEEK 1 -/* This option switches fast seek function. (0:Disable or 1:Enable) */ - - -#define FF_USE_EXPAND 0 -/* This option switches f_expand function. (0:Disable or 1:Enable) */ - - -#define FF_USE_CHMOD 0 -/* This option switches attribute manipulation functions, f_chmod() and f_utime(). -/ (0:Disable or 1:Enable) Also FF_FS_READONLY needs to be 0 to enable this option. */ - - -#define FF_USE_LABEL 0 -/* This option switches volume label functions, f_getlabel() and f_setlabel(). -/ (0:Disable or 1:Enable) */ - - -#define FF_USE_FORWARD 0 -/* This option switches f_forward() function. (0:Disable or 1:Enable) */ - - -/*---------------------------------------------------------------------------/ -/ Locale and Namespace Configurations -/---------------------------------------------------------------------------*/ - -#define FF_CODE_PAGE 936 -/* This option specifies the OEM code page to be used on the target system. -/ Incorrect code page setting can cause a file open failure. -/ -/ 437 - U.S. -/ 720 - Arabic -/ 737 - Greek -/ 771 - KBL -/ 775 - Baltic -/ 850 - Latin 1 -/ 852 - Latin 2 -/ 855 - Cyrillic -/ 857 - Turkish -/ 860 - Portuguese -/ 861 - Icelandic -/ 862 - Hebrew -/ 863 - Canadian French -/ 864 - Arabic -/ 865 - Nordic -/ 866 - Russian -/ 869 - Greek 2 -/ 932 - Japanese (DBCS) -/ 936 - Simplified Chinese (DBCS) -/ 949 - Korean (DBCS) -/ 950 - Traditional Chinese (DBCS) -/ 0 - Include all code pages above and configured by f_setcp() -*/ - - -#define FF_USE_LFN 1 - -#define FF_MAX_LFN 255 -/* The FF_USE_LFN switches the support for LFN (long file name). -/ -/ 0: Disable LFN. FF_MAX_LFN has no effect. -/ 1: Enable LFN with static working buffer on the BSS. Always NOT thread-safe. -/ 2: Enable LFN with dynamic working buffer on the STACK. -/ 3: Enable LFN with dynamic working buffer on the HEAP. -/ -/ To enable the LFN, ffunicode.c needs to be added to the project. The LFN function -/ requiers certain internal working buffer occupies (FF_MAX_LFN + 1) * 2 bytes and -/ additional (FF_MAX_LFN + 44) / 15 * 32 bytes when exFAT is enabled. -/ The FF_MAX_LFN defines size of the working buffer in UTF-16 code unit and it can -/ be in range of 12 to 255. It is recommended to be set 255 to fully support LFN -/ specification. -/ When use stack for the working buffer, take care on stack overflow. When use heap -/ memory for the working buffer, memory management functions, ff_memalloc() and -/ ff_memfree() in ffsystem.c, need to be added to the project. */ - - -#define FF_LFN_UNICODE 0 -/* This option switches the character encoding on the API when LFN is enabled. -/ -/ 0: ANSI/OEM in current CP (TCHAR = char) -/ 1: Unicode in UTF-16 (TCHAR = WCHAR) -/ 2: Unicode in UTF-8 (TCHAR = char) -/ 3: Unicode in UTF-32 (TCHAR = DWORD) -/ -/ Also behavior of string I/O functions will be affected by this option. -/ When LFN is not enabled, this option has no effect. */ - - -#define FF_LFN_BUF 255 -#define FF_SFN_BUF 12 -/* This set of options defines size of file name members in the FILINFO structure -/ which is used to read out directory items. These values should be suffcient for -/ the file names to read. The maximum possible length of the read file name depends -/ on character encoding. When LFN is not enabled, these options have no effect. */ - - -#define FF_STRF_ENCODE 3 -/* When FF_LFN_UNICODE >= 1 with LFN enabled, string I/O functions, f_gets(), -/ f_putc(), f_puts and f_printf() convert the character encoding in it. -/ This option selects assumption of character encoding ON THE FILE to be -/ read/written via those functions. -/ -/ 0: ANSI/OEM in current CP -/ 1: Unicode in UTF-16LE -/ 2: Unicode in UTF-16BE -/ 3: Unicode in UTF-8 -*/ - - -#define FF_FS_RPATH 2 -/* This option configures support for relative path. -/ -/ 0: Disable relative path and remove related functions. -/ 1: Enable relative path. f_chdir() and f_chdrive() are available. -/ 2: f_getcwd() function is available in addition to 1. -*/ - - -/*---------------------------------------------------------------------------/ -/ Drive/Volume Configurations -/---------------------------------------------------------------------------*/ - -#define _VOLUMES 2 - -#define FF_VOLUMES 5 -/* Number of volumes (logical drives) to be used. (1-10) */ - - -#define FF_STR_VOLUME_ID 0 -#define FF_VOLUME_STRS "RAM","NAND","CF","SD","SD2","USB","USB2","USB3" -/* FF_STR_VOLUME_ID switches support for volume ID in arbitrary strings. -/ When FF_STR_VOLUME_ID is set to 1 or 2, arbitrary strings can be used as drive -/ number in the path name. FF_VOLUME_STRS defines the volume ID strings for each -/ logical drives. Number of items must not be less than FF_VOLUMES. Valid -/ characters for the volume ID strings are A-Z, a-z and 0-9, however, they are -/ compared in case-insensitive. If FF_STR_VOLUME_ID >= 1 and FF_VOLUME_STRS is -/ not defined, a user defined volume string table needs to be defined as: -/ -/ const char* VolumeStr[FF_VOLUMES] = {"ram","flash","sd","usb",... -*/ - - -#define FF_MULTI_PARTITION 0 -/* This option switches support for multiple volumes on the physical drive. -/ By default (0), each logical drive number is bound to the same physical drive -/ number and only an FAT volume found on the physical drive will be mounted. -/ When this function is enabled (1), each logical drive number can be bound to -/ arbitrary physical drive and partition listed in the VolToPart[]. Also f_fdisk() -/ funciton will be available. */ - - -#define FF_MIN_SS 512 -#define FF_MAX_SS 512 - -/* This set of options configures the range of sector size to be supported. (512, -/ 1024, 2048 or 4096) Always set both 512 for most systems, generic memory card and -/ harddisk. But a larger value may be required for on-board flash memory and some -/ type of optical media. When FF_MAX_SS is larger than FF_MIN_SS, FatFs is configured -/ for variable sector size mode and disk_ioctl() function needs to implement -/ GET_SECTOR_SIZE command. */ - - -#define FF_USE_TRIM 0 -/* This option switches support for ATA-TRIM. (0:Disable or 1:Enable) -/ To enable Trim function, also CTRL_TRIM command should be implemented to the -/ disk_ioctl() function. */ - - -#define FF_FS_NOFSINFO 0 -/* If you need to know correct free space on the FAT32 volume, set bit 0 of this -/ option, and f_getfree() function at first time after volume mount will force -/ a full FAT scan. Bit 1 controls the use of last allocated cluster number. -/ -/ bit0=0: Use free cluster count in the FSINFO if available. -/ bit0=1: Do not trust free cluster count in the FSINFO. -/ bit1=0: Use last allocated cluster number in the FSINFO if available. -/ bit1=1: Do not trust last allocated cluster number in the FSINFO. -*/ - - - -/*---------------------------------------------------------------------------/ -/ System Configurations -/---------------------------------------------------------------------------*/ - -#define FF_FS_TINY 0 -/* This option switches tiny buffer configuration. (0:Normal or 1:Tiny) -/ At the tiny configuration, size of file object (FIL) is shrinked FF_MAX_SS bytes. -/ Instead of private sector buffer eliminated from the file object, common sector -/ buffer in the filesystem object (FATFS) is used for the file data transfer. */ - - -#define FF_FS_EXFAT 1 -/* This option switches support for exFAT filesystem. (0:Disable or 1:Enable) -/ To enable exFAT, also LFN needs to be enabled. (FF_USE_LFN >= 1) -/ Note that enabling exFAT discards ANSI C (C89) compatibility. */ - - -#define FF_FS_NORTC 0 -#define FF_NORTC_MON 1 -#define FF_NORTC_MDAY 1 -#define FF_NORTC_YEAR 2018 -/* The option FF_FS_NORTC switches timestamp functiton. If the system does not have -/ any RTC function or valid timestamp is not needed, set FF_FS_NORTC = 1 to disable -/ the timestamp function. Every object modified by FatFs will have a fixed timestamp -/ defined by FF_NORTC_MON, FF_NORTC_MDAY and FF_NORTC_YEAR in local time. -/ To enable timestamp function (FF_FS_NORTC = 0), get_fattime() function need to be -/ added to the project to read current time form real-time clock. FF_NORTC_MON, -/ FF_NORTC_MDAY and FF_NORTC_YEAR have no effect. -/ These options have no effect at read-only configuration (FF_FS_READONLY = 1). */ - - -#define FF_FS_LOCK 0 -/* The option FF_FS_LOCK switches file lock function to control duplicated file open -/ and illegal operation to open objects. This option must be 0 when FF_FS_READONLY -/ is 1. -/ -/ 0: Disable file lock function. To avoid volume corruption, application program -/ should avoid illegal open, remove and rename to the open objects. -/ >0: Enable file lock function. The value defines how many files/sub-directories -/ can be opened simultaneously under file lock control. Note that the file -/ lock control is independent of re-entrancy. */ - - -/* #include // O/S definitions */ -#define FF_FS_REENTRANT 0 -#define FF_FS_TIMEOUT 1000 -#define FF_SYNC_t HANDLE -/* The option FF_FS_REENTRANT switches the re-entrancy (thread safe) of the FatFs -/ module itself. Note that regardless of this option, file access to different -/ volume is always re-entrant and volume control functions, f_mount(), f_mkfs() -/ and f_fdisk() function, are always not re-entrant. Only file/directory access -/ to the same volume is under control of this function. -/ -/ 0: Disable re-entrancy. FF_FS_TIMEOUT and FF_SYNC_t have no effect. -/ 1: Enable re-entrancy. Also user provided synchronization handlers, -/ ff_req_grant(), ff_rel_grant(), ff_del_syncobj() and ff_cre_syncobj() -/ function, must be added to the project. Samples are available in -/ option/syscall.c. -/ -/ The FF_FS_TIMEOUT defines timeout period in unit of time tick. -/ The FF_SYNC_t defines O/S dependent sync object type. e.g. HANDLE, ID, OS_EVENT*, -/ SemaphoreHandle_t and etc. A header file for O/S definitions needs to be -/ included somewhere in the scope of ff.h. */ - - - -/*--- End of configuration options ---*/ diff --git a/Marlin/lib/fat_fs/src/ffsystem.c b/Marlin/lib/fat_fs/src/ffsystem.c deleted file mode 100644 index b88ce15555..0000000000 --- a/Marlin/lib/fat_fs/src/ffsystem.c +++ /dev/null @@ -1,170 +0,0 @@ -/*------------------------------------------------------------------------*/ -/* Sample Code of OS Dependent Functions for FatFs */ -/* (C)ChaN, 2018 */ -/*------------------------------------------------------------------------*/ - - -#include "ff.h" - - -#if FF_USE_LFN == 3 /* Dynamic memory allocation */ - -/*------------------------------------------------------------------------*/ -/* Allocate a memory block */ -/*------------------------------------------------------------------------*/ - -void* ff_memalloc ( /* Returns pointer to the allocated memory block (null if not enough core) */ - UINT msize /* Number of bytes to allocate */ -) -{ - return malloc(msize); /* Allocate a new memory block with POSIX API */ -} - - -/*------------------------------------------------------------------------*/ -/* Free a memory block */ -/*------------------------------------------------------------------------*/ - -void ff_memfree ( - void* mblock /* Pointer to the memory block to free (nothing to do if null) */ -) -{ - free(mblock); /* Free the memory block with POSIX API */ -} - -#endif - - - -#if FF_FS_REENTRANT /* Mutal exclusion */ - -/*------------------------------------------------------------------------*/ -/* Create a Synchronization Object */ -/*------------------------------------------------------------------------*/ -/* This function is called in f_mount() function to create a new -/ synchronization object for the volume, such as semaphore and mutex. -/ When a 0 is returned, the f_mount() function fails with FR_INT_ERR. -*/ - -//const osMutexDef_t Mutex[FF_VOLUMES]; /* Table of CMSIS-RTOS mutex */ - - -int ff_cre_syncobj ( /* 1:Function succeeded, 0:Could not create the sync object */ - BYTE vol, /* Corresponding volume (logical drive number) */ - FF_SYNC_t* sobj /* Pointer to return the created sync object */ -) -{ - /* Win32 */ - *sobj = CreateMutex(NULL, FALSE, NULL); - return (int)(*sobj != INVALID_HANDLE_VALUE); - - /* uITRON */ -// T_CSEM csem = {TA_TPRI,1,1}; -// *sobj = acre_sem(&csem); -// return (int)(*sobj > 0); - - /* uC/OS-II */ -// OS_ERR err; -// *sobj = OSMutexCreate(0, &err); -// return (int)(err == OS_NO_ERR); - - /* FreeRTOS */ -// *sobj = xSemaphoreCreateMutex(); -// return (int)(*sobj != NULL); - - /* CMSIS-RTOS */ -// *sobj = osMutexCreate(&Mutex[vol]); -// return (int)(*sobj != NULL); -} - - -/*------------------------------------------------------------------------*/ -/* Delete a Synchronization Object */ -/*------------------------------------------------------------------------*/ -/* This function is called in f_mount() function to delete a synchronization -/ object that created with ff_cre_syncobj() function. When a 0 is returned, -/ the f_mount() function fails with FR_INT_ERR. -*/ - -int ff_del_syncobj ( /* 1:Function succeeded, 0:Could not delete due to an error */ - FF_SYNC_t sobj /* Sync object tied to the logical drive to be deleted */ -) -{ - /* Win32 */ - return (int)CloseHandle(sobj); - - /* uITRON */ -// return (int)(del_sem(sobj) == E_OK); - - /* uC/OS-II */ -// OS_ERR err; -// OSMutexDel(sobj, OS_DEL_ALWAYS, &err); -// return (int)(err == OS_NO_ERR); - - /* FreeRTOS */ -// vSemaphoreDelete(sobj); -// return 1; - - /* CMSIS-RTOS */ -// return (int)(osMutexDelete(sobj) == osOK); -} - - -/*------------------------------------------------------------------------*/ -/* Request Grant to Access the Volume */ -/*------------------------------------------------------------------------*/ -/* This function is called on entering file functions to lock the volume. -/ When a 0 is returned, the file function fails with FR_TIMEOUT. -*/ - -int ff_req_grant ( /* 1:Got a grant to access the volume, 0:Could not get a grant */ - FF_SYNC_t sobj /* Sync object to wait */ -) -{ - /* Win32 */ - return (int)(WaitForSingleObject(sobj, FF_FS_TIMEOUT) == WAIT_OBJECT_0); - - /* uITRON */ -// return (int)(wai_sem(sobj) == E_OK); - - /* uC/OS-II */ -// OS_ERR err; -// OSMutexPend(sobj, FF_FS_TIMEOUT, &err)); -// return (int)(err == OS_NO_ERR); - - /* FreeRTOS */ -// return (int)(xSemaphoreTake(sobj, FF_FS_TIMEOUT) == pdTRUE); - - /* CMSIS-RTOS */ -// return (int)(osMutexWait(sobj, FF_FS_TIMEOUT) == osOK); -} - - -/*------------------------------------------------------------------------*/ -/* Release Grant to Access the Volume */ -/*------------------------------------------------------------------------*/ -/* This function is called on leaving file functions to unlock the volume. -*/ - -void ff_rel_grant ( - FF_SYNC_t sobj /* Sync object to be signaled */ -) -{ - /* Win32 */ - ReleaseMutex(sobj); - - /* uITRON */ -// sig_sem(sobj); - - /* uC/OS-II */ -// OSMutexPost(sobj); - - /* FreeRTOS */ -// xSemaphoreGive(sobj); - - /* CMSIS-RTOS */ -// osMutexRelease(sobj); -} - -#endif - diff --git a/Marlin/lib/fat_fs/src/ffunicode.c b/Marlin/lib/fat_fs/src/ffunicode.c deleted file mode 100644 index 349901b1f3..0000000000 --- a/Marlin/lib/fat_fs/src/ffunicode.c +++ /dev/null @@ -1,15597 +0,0 @@ -/*------------------------------------------------------------------------*/ -/* Unicode handling functions for FatFs R0.13c */ -/*------------------------------------------------------------------------*/ -/* This module will occupy a huge memory in the .const section when the / -/ FatFs is configured for LFN with DBCS. If the system has any Unicode / -/ utilitiy for the code conversion, this module should be modified to use / -/ that function to avoid silly memory consumption. / -/-------------------------------------------------------------------------*/ -/* -/ Copyright (C) 2018, ChaN, all right reserved. -/ -/ FatFs module is an open source software. Redistribution and use of FatFs in -/ source and binary forms, with or without modification, are permitted provided -/ that the following condition is met: -/ -/ 1. Redistributions of source code must retain the above copyright notice, -/ this condition and the following disclaimer. -/ -/ This software is provided by the copyright holder and contributors "AS IS" -/ and any warranties related to this software are DISCLAIMED. -/ The copyright owner or contributors be NOT LIABLE for any damages caused -/ by use of this software. -*/ - - -#include "ff.h" - -#if FF_USE_LFN /* This module will be blanked at non-LFN configuration */ - -#if FF_DEFINED != 86604 /* Revision ID */ -#error Wrong include file (ff.h). -#endif - -#define MERGE2(a, b) a ## b -#define CVTBL(tbl, cp) MERGE2(tbl, cp) - - -/*------------------------------------------------------------------------*/ -/* Code Conversion Tables */ -/*------------------------------------------------------------------------*/ - -#if FF_CODE_PAGE == 932 || FF_CODE_PAGE == 0 /* Japanese */ -static const WCHAR uni2oem932[] = { /* Unicode --> Shift_JIS pairs */ - 0x00A7, 0x8198, 0x00A8, 0x814E, 0x00B0, 0x818B, 0x00B1, 0x817D, 0x00B4, 0x814C, 0x00B6, 0x81F7, 0x00D7, 0x817E, 0x00F7, 0x8180, - 0x0391, 0x839F, 0x0392, 0x83A0, 0x0393, 0x83A1, 0x0394, 0x83A2, 0x0395, 0x83A3, 0x0396, 0x83A4, 0x0397, 0x83A5, 0x0398, 0x83A6, - 0x0399, 0x83A7, 0x039A, 0x83A8, 0x039B, 0x83A9, 0x039C, 0x83AA, 0x039D, 0x83AB, 0x039E, 0x83AC, 0x039F, 0x83AD, 0x03A0, 0x83AE, - 0x03A1, 0x83AF, 0x03A3, 0x83B0, 0x03A4, 0x83B1, 0x03A5, 0x83B2, 0x03A6, 0x83B3, 0x03A7, 0x83B4, 0x03A8, 0x83B5, 0x03A9, 0x83B6, - 0x03B1, 0x83BF, 0x03B2, 0x83C0, 0x03B3, 0x83C1, 0x03B4, 0x83C2, 0x03B5, 0x83C3, 0x03B6, 0x83C4, 0x03B7, 0x83C5, 0x03B8, 0x83C6, - 0x03B9, 0x83C7, 0x03BA, 0x83C8, 0x03BB, 0x83C9, 0x03BC, 0x83CA, 0x03BD, 0x83CB, 0x03BE, 0x83CC, 0x03BF, 0x83CD, 0x03C0, 0x83CE, - 0x03C1, 0x83CF, 0x03C3, 0x83D0, 0x03C4, 0x83D1, 0x03C5, 0x83D2, 0x03C6, 0x83D3, 0x03C7, 0x83D4, 0x03C8, 0x83D5, 0x03C9, 0x83D6, - 0x0401, 0x8446, 0x0410, 0x8440, 0x0411, 0x8441, 0x0412, 0x8442, 0x0413, 0x8443, 0x0414, 0x8444, 0x0415, 0x8445, 0x0416, 0x8447, - 0x0417, 0x8448, 0x0418, 0x8449, 0x0419, 0x844A, 0x041A, 0x844B, 0x041B, 0x844C, 0x041C, 0x844D, 0x041D, 0x844E, 0x041E, 0x844F, - 0x041F, 0x8450, 0x0420, 0x8451, 0x0421, 0x8452, 0x0422, 0x8453, 0x0423, 0x8454, 0x0424, 0x8455, 0x0425, 0x8456, 0x0426, 0x8457, - 0x0427, 0x8458, 0x0428, 0x8459, 0x0429, 0x845A, 0x042A, 0x845B, 0x042B, 0x845C, 0x042C, 0x845D, 0x042D, 0x845E, 0x042E, 0x845F, - 0x042F, 0x8460, 0x0430, 0x8470, 0x0431, 0x8471, 0x0432, 0x8472, 0x0433, 0x8473, 0x0434, 0x8474, 0x0435, 0x8475, 0x0436, 0x8477, - 0x0437, 0x8478, 0x0438, 0x8479, 0x0439, 0x847A, 0x043A, 0x847B, 0x043B, 0x847C, 0x043C, 0x847D, 0x043D, 0x847E, 0x043E, 0x8480, - 0x043F, 0x8481, 0x0440, 0x8482, 0x0441, 0x8483, 0x0442, 0x8484, 0x0443, 0x8485, 0x0444, 0x8486, 0x0445, 0x8487, 0x0446, 0x8488, - 0x0447, 0x8489, 0x0448, 0x848A, 0x0449, 0x848B, 0x044A, 0x848C, 0x044B, 0x848D, 0x044C, 0x848E, 0x044D, 0x848F, 0x044E, 0x8490, - 0x044F, 0x8491, 0x0451, 0x8476, 0x2010, 0x815D, 0x2015, 0x815C, 0x2018, 0x8165, 0x2019, 0x8166, 0x201C, 0x8167, 0x201D, 0x8168, - 0x2020, 0x81F5, 0x2021, 0x81F6, 0x2025, 0x8164, 0x2026, 0x8163, 0x2030, 0x81F1, 0x2032, 0x818C, 0x2033, 0x818D, 0x203B, 0x81A6, - 0x2103, 0x818E, 0x2116, 0x8782, 0x2121, 0x8784, 0x212B, 0x81F0, 0x2160, 0x8754, 0x2161, 0x8755, 0x2162, 0x8756, 0x2163, 0x8757, - 0x2164, 0x8758, 0x2165, 0x8759, 0x2166, 0x875A, 0x2167, 0x875B, 0x2168, 0x875C, 0x2169, 0x875D, 0x2170, 0xFA40, 0x2171, 0xFA41, - 0x2172, 0xFA42, 0x2173, 0xFA43, 0x2174, 0xFA44, 0x2175, 0xFA45, 0x2176, 0xFA46, 0x2177, 0xFA47, 0x2178, 0xFA48, 0x2179, 0xFA49, - 0x2190, 0x81A9, 0x2191, 0x81AA, 0x2192, 0x81A8, 0x2193, 0x81AB, 0x21D2, 0x81CB, 0x21D4, 0x81CC, 0x2200, 0x81CD, 0x2202, 0x81DD, - 0x2203, 0x81CE, 0x2207, 0x81DE, 0x2208, 0x81B8, 0x220B, 0x81B9, 0x2211, 0x8794, 0x221A, 0x81E3, 0x221D, 0x81E5, 0x221E, 0x8187, - 0x221F, 0x8798, 0x2220, 0x81DA, 0x2225, 0x8161, 0x2227, 0x81C8, 0x2228, 0x81C9, 0x2229, 0x81BF, 0x222A, 0x81BE, 0x222B, 0x81E7, - 0x222C, 0x81E8, 0x222E, 0x8793, 0x2234, 0x8188, 0x2235, 0x81E6, 0x223D, 0x81E4, 0x2252, 0x81E0, 0x2260, 0x8182, 0x2261, 0x81DF, - 0x2266, 0x8185, 0x2267, 0x8186, 0x226A, 0x81E1, 0x226B, 0x81E2, 0x2282, 0x81BC, 0x2283, 0x81BD, 0x2286, 0x81BA, 0x2287, 0x81BB, - 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0x9D2A, 0xE9F0, 0x9D2B, 0x8EB0, 0x9D2C, 0x89A7, 0x9D3B, 0x8D83, 0x9D3E, 0xE9FA, 0x9D3F, 0xE9F9, 0x9D41, 0xE9F8, 0x9D44, 0xE9F5, - 0x9D46, 0xE9FB, 0x9D48, 0xE9FC, 0x9D50, 0xEA44, 0x9D51, 0xEA43, 0x9D59, 0xEA45, 0x9D5C, 0x894C, 0x9D5D, 0xEA40, 0x9D5E, 0xEA41, - 0x9D60, 0x8D94, 0x9D61, 0x96B7, 0x9D64, 0xEA42, 0x9D6B, 0xFC48, 0x9D6C, 0x9651, 0x9D6F, 0xEA4A, 0x9D70, 0xFC47, 0x9D72, 0xEA46, - 0x9D7A, 0xEA4B, 0x9D87, 0xEA48, 0x9D89, 0xEA47, 0x9D8F, 0x8C7B, 0x9D9A, 0xEA4C, 0x9DA4, 0xEA4D, 0x9DA9, 0xEA4E, 0x9DAB, 0xEA49, - 0x9DAF, 0xE9F2, 0x9DB2, 0xEA4F, 0x9DB4, 0x92DF, 0x9DB8, 0xEA53, 0x9DBA, 0xEA54, 0x9DBB, 0xEA52, 0x9DC1, 0xEA51, 0x9DC2, 0xEA57, - 0x9DC4, 0xEA50, 0x9DC6, 0xEA55, 0x9DCF, 0xEA56, 0x9DD3, 0xEA59, 0x9DD9, 0xEA58, 0x9DE6, 0xEA5B, 0x9DED, 0xEA5C, 0x9DEF, 0xEA5D, - 0x9DF2, 0x9868, 0x9DF8, 0xEA5A, 0x9DF9, 0x91E9, 0x9DFA, 0x8DEB, 0x9DFD, 0xEA5E, 0x9E19, 0xFC4A, 0x9E1A, 0xEA5F, 0x9E1B, 0xEA60, - 0x9E1E, 0xEA61, 0x9E75, 0xEA62, 0x9E78, 0x8CB2, 0x9E79, 0xEA63, 0x9E7D, 0xEA64, 0x9E7F, 0x8EAD, 0x9E81, 0xEA65, 0x9E88, 0xEA66, - 0x9E8B, 0xEA67, 0x9E8C, 0xEA68, 0x9E91, 0xEA6B, 0x9E92, 0xEA69, 0x9E93, 0x985B, 0x9E95, 0xEA6A, 0x9E97, 0x97ED, 0x9E9D, 0xEA6C, - 0x9E9F, 0x97D9, 0x9EA5, 0xEA6D, 0x9EA6, 0x949E, 0x9EA9, 0xEA6E, 0x9EAA, 0xEA70, 0x9EAD, 0xEA71, 0x9EB8, 0xEA6F, 0x9EB9, 0x8D8D, - 0x9EBA, 0x96CB, 0x9EBB, 0x9683, 0x9EBC, 0x9BF5, 0x9EBE, 0x9F80, 0x9EBF, 0x969B, 0x9EC4, 0x89A9, 0x9ECC, 0xEA73, 0x9ECD, 0x8B6F, - 0x9ECE, 0xEA74, 0x9ECF, 0xEA75, 0x9ED0, 0xEA76, 0x9ED1, 0xFC4B, 0x9ED2, 0x8D95, 0x9ED4, 0xEA77, 0x9ED8, 0xE0D2, 0x9ED9, 0x96D9, - 0x9EDB, 0x91E1, 0x9EDC, 0xEA78, 0x9EDD, 0xEA7A, 0x9EDE, 0xEA79, 0x9EE0, 0xEA7B, 0x9EE5, 0xEA7C, 0x9EE8, 0xEA7D, 0x9EEF, 0xEA7E, - 0x9EF4, 0xEA80, 0x9EF6, 0xEA81, 0x9EF7, 0xEA82, 0x9EF9, 0xEA83, 0x9EFB, 0xEA84, 0x9EFC, 0xEA85, 0x9EFD, 0xEA86, 0x9F07, 0xEA87, - 0x9F08, 0xEA88, 0x9F0E, 0x9343, 0x9F13, 0x8CDB, 0x9F15, 0xEA8A, 0x9F20, 0x916C, 0x9F21, 0xEA8B, 0x9F2C, 0xEA8C, 0x9F3B, 0x9540, - 0x9F3E, 0xEA8D, 0x9F4A, 0xEA8E, 0x9F4B, 0xE256, 0x9F4E, 0xE6D8, 0x9F4F, 0xE8EB, 0x9F52, 0xEA8F, 0x9F54, 0xEA90, 0x9F5F, 0xEA92, - 0x9F60, 0xEA93, 0x9F61, 0xEA94, 0x9F62, 0x97EE, 0x9F63, 0xEA91, 0x9F66, 0xEA95, 0x9F67, 0xEA96, 0x9F6A, 0xEA98, 0x9F6C, 0xEA97, - 0x9F72, 0xEA9A, 0x9F76, 0xEA9B, 0x9F77, 0xEA99, 0x9F8D, 0x97B4, 0x9F95, 0xEA9C, 0x9F9C, 0xEA9D, 0x9F9D, 0xE273, 0x9FA0, 0xEA9E, - 0xF929, 0xFAE0, 0xF9DC, 0xFBE9, 0xFA0E, 0xFA90, 0xFA0F, 0xFA9B, 0xFA10, 0xFA9C, 0xFA11, 0xFAB1, 0xFA12, 0xFAD8, 0xFA13, 0xFAE8, - 0xFA14, 0xFAEA, 0xFA15, 0xFB58, 0xFA16, 0xFB5E, 0xFA17, 0xFB75, 0xFA18, 0xFB7D, 0xFA19, 0xFB7E, 0xFA1A, 0xFB80, 0xFA1B, 0xFB82, - 0xFA1C, 0xFB86, 0xFA1D, 0xFB89, 0xFA1E, 0xFB92, 0xFA1F, 0xFB9D, 0xFA20, 0xFB9F, 0xFA21, 0xFBA0, 0xFA22, 0xFBA9, 0xFA23, 0xFBB1, - 0xFA24, 0xFBB3, 0xFA25, 0xFBB4, 0xFA26, 0xFBB7, 0xFA27, 0xFBD3, 0xFA28, 0xFBDA, 0xFA29, 0xFBEA, 0xFA2A, 0xFBF6, 0xFA2B, 0xFBF7, - 0xFA2C, 0xFBF9, 0xFA2D, 0xFC49, 0xFF01, 0x8149, 0xFF02, 0xFA57, 0xFF03, 0x8194, 0xFF04, 0x8190, 0xFF05, 0x8193, 0xFF06, 0x8195, - 0xFF07, 0xFA56, 0xFF08, 0x8169, 0xFF09, 0x816A, 0xFF0A, 0x8196, 0xFF0B, 0x817B, 0xFF0C, 0x8143, 0xFF0D, 0x817C, 0xFF0E, 0x8144, - 0xFF0F, 0x815E, 0xFF10, 0x824F, 0xFF11, 0x8250, 0xFF12, 0x8251, 0xFF13, 0x8252, 0xFF14, 0x8253, 0xFF15, 0x8254, 0xFF16, 0x8255, - 0xFF17, 0x8256, 0xFF18, 0x8257, 0xFF19, 0x8258, 0xFF1A, 0x8146, 0xFF1B, 0x8147, 0xFF1C, 0x8183, 0xFF1D, 0x8181, 0xFF1E, 0x8184, - 0xFF1F, 0x8148, 0xFF20, 0x8197, 0xFF21, 0x8260, 0xFF22, 0x8261, 0xFF23, 0x8262, 0xFF24, 0x8263, 0xFF25, 0x8264, 0xFF26, 0x8265, - 0xFF27, 0x8266, 0xFF28, 0x8267, 0xFF29, 0x8268, 0xFF2A, 0x8269, 0xFF2B, 0x826A, 0xFF2C, 0x826B, 0xFF2D, 0x826C, 0xFF2E, 0x826D, - 0xFF2F, 0x826E, 0xFF30, 0x826F, 0xFF31, 0x8270, 0xFF32, 0x8271, 0xFF33, 0x8272, 0xFF34, 0x8273, 0xFF35, 0x8274, 0xFF36, 0x8275, - 0xFF37, 0x8276, 0xFF38, 0x8277, 0xFF39, 0x8278, 0xFF3A, 0x8279, 0xFF3B, 0x816D, 0xFF3C, 0x815F, 0xFF3D, 0x816E, 0xFF3E, 0x814F, - 0xFF3F, 0x8151, 0xFF40, 0x814D, 0xFF41, 0x8281, 0xFF42, 0x8282, 0xFF43, 0x8283, 0xFF44, 0x8284, 0xFF45, 0x8285, 0xFF46, 0x8286, - 0xFF47, 0x8287, 0xFF48, 0x8288, 0xFF49, 0x8289, 0xFF4A, 0x828A, 0xFF4B, 0x828B, 0xFF4C, 0x828C, 0xFF4D, 0x828D, 0xFF4E, 0x828E, - 0xFF4F, 0x828F, 0xFF50, 0x8290, 0xFF51, 0x8291, 0xFF52, 0x8292, 0xFF53, 0x8293, 0xFF54, 0x8294, 0xFF55, 0x8295, 0xFF56, 0x8296, - 0xFF57, 0x8297, 0xFF58, 0x8298, 0xFF59, 0x8299, 0xFF5A, 0x829A, 0xFF5B, 0x816F, 0xFF5C, 0x8162, 0xFF5D, 0x8170, 0xFF5E, 0x8160, - 0xFF61, 0x00A1, 0xFF62, 0x00A2, 0xFF63, 0x00A3, 0xFF64, 0x00A4, 0xFF65, 0x00A5, 0xFF66, 0x00A6, 0xFF67, 0x00A7, 0xFF68, 0x00A8, - 0xFF69, 0x00A9, 0xFF6A, 0x00AA, 0xFF6B, 0x00AB, 0xFF6C, 0x00AC, 0xFF6D, 0x00AD, 0xFF6E, 0x00AE, 0xFF6F, 0x00AF, 0xFF70, 0x00B0, - 0xFF71, 0x00B1, 0xFF72, 0x00B2, 0xFF73, 0x00B3, 0xFF74, 0x00B4, 0xFF75, 0x00B5, 0xFF76, 0x00B6, 0xFF77, 0x00B7, 0xFF78, 0x00B8, - 0xFF79, 0x00B9, 0xFF7A, 0x00BA, 0xFF7B, 0x00BB, 0xFF7C, 0x00BC, 0xFF7D, 0x00BD, 0xFF7E, 0x00BE, 0xFF7F, 0x00BF, 0xFF80, 0x00C0, - 0xFF81, 0x00C1, 0xFF82, 0x00C2, 0xFF83, 0x00C3, 0xFF84, 0x00C4, 0xFF85, 0x00C5, 0xFF86, 0x00C6, 0xFF87, 0x00C7, 0xFF88, 0x00C8, - 0xFF89, 0x00C9, 0xFF8A, 0x00CA, 0xFF8B, 0x00CB, 0xFF8C, 0x00CC, 0xFF8D, 0x00CD, 0xFF8E, 0x00CE, 0xFF8F, 0x00CF, 0xFF90, 0x00D0, - 0xFF91, 0x00D1, 0xFF92, 0x00D2, 0xFF93, 0x00D3, 0xFF94, 0x00D4, 0xFF95, 0x00D5, 0xFF96, 0x00D6, 0xFF97, 0x00D7, 0xFF98, 0x00D8, - 0xFF99, 0x00D9, 0xFF9A, 0x00DA, 0xFF9B, 0x00DB, 0xFF9C, 0x00DC, 0xFF9D, 0x00DD, 0xFF9E, 0x00DE, 0xFF9F, 0x00DF, 0xFFE0, 0x8191, - 0xFFE1, 0x8192, 0xFFE2, 0x81CA, 0xFFE3, 0x8150, 0xFFE4, 0xFA55, 0xFFE5, 0x818F, 0, 0 -}; - -static const WCHAR oem2uni932[] = { /* Shift_JIS --> Unicode pairs */ - 0x00A1, 0xFF61, 0x00A2, 0xFF62, 0x00A3, 0xFF63, 0x00A4, 0xFF64, 0x00A5, 0xFF65, 0x00A6, 0xFF66, 0x00A7, 0xFF67, 0x00A8, 0xFF68, - 0x00A9, 0xFF69, 0x00AA, 0xFF6A, 0x00AB, 0xFF6B, 0x00AC, 0xFF6C, 0x00AD, 0xFF6D, 0x00AE, 0xFF6E, 0x00AF, 0xFF6F, 0x00B0, 0xFF70, - 0x00B1, 0xFF71, 0x00B2, 0xFF72, 0x00B3, 0xFF73, 0x00B4, 0xFF74, 0x00B5, 0xFF75, 0x00B6, 0xFF76, 0x00B7, 0xFF77, 0x00B8, 0xFF78, - 0x00B9, 0xFF79, 0x00BA, 0xFF7A, 0x00BB, 0xFF7B, 0x00BC, 0xFF7C, 0x00BD, 0xFF7D, 0x00BE, 0xFF7E, 0x00BF, 0xFF7F, 0x00C0, 0xFF80, - 0x00C1, 0xFF81, 0x00C2, 0xFF82, 0x00C3, 0xFF83, 0x00C4, 0xFF84, 0x00C5, 0xFF85, 0x00C6, 0xFF86, 0x00C7, 0xFF87, 0x00C8, 0xFF88, - 0x00C9, 0xFF89, 0x00CA, 0xFF8A, 0x00CB, 0xFF8B, 0x00CC, 0xFF8C, 0x00CD, 0xFF8D, 0x00CE, 0xFF8E, 0x00CF, 0xFF8F, 0x00D0, 0xFF90, - 0x00D1, 0xFF91, 0x00D2, 0xFF92, 0x00D3, 0xFF93, 0x00D4, 0xFF94, 0x00D5, 0xFF95, 0x00D6, 0xFF96, 0x00D7, 0xFF97, 0x00D8, 0xFF98, - 0x00D9, 0xFF99, 0x00DA, 0xFF9A, 0x00DB, 0xFF9B, 0x00DC, 0xFF9C, 0x00DD, 0xFF9D, 0x00DE, 0xFF9E, 0x00DF, 0xFF9F, 0x8140, 0x3000, - 0x8141, 0x3001, 0x8142, 0x3002, 0x8143, 0xFF0C, 0x8144, 0xFF0E, 0x8145, 0x30FB, 0x8146, 0xFF1A, 0x8147, 0xFF1B, 0x8148, 0xFF1F, - 0x8149, 0xFF01, 0x814A, 0x309B, 0x814B, 0x309C, 0x814C, 0x00B4, 0x814D, 0xFF40, 0x814E, 0x00A8, 0x814F, 0xFF3E, 0x8150, 0xFFE3, - 0x8151, 0xFF3F, 0x8152, 0x30FD, 0x8153, 0x30FE, 0x8154, 0x309D, 0x8155, 0x309E, 0x8156, 0x3003, 0x8157, 0x4EDD, 0x8158, 0x3005, - 0x8159, 0x3006, 0x815A, 0x3007, 0x815B, 0x30FC, 0x815C, 0x2015, 0x815D, 0x2010, 0x815E, 0xFF0F, 0x815F, 0xFF3C, 0x8160, 0xFF5E, - 0x8161, 0x2225, 0x8162, 0xFF5C, 0x8163, 0x2026, 0x8164, 0x2025, 0x8165, 0x2018, 0x8166, 0x2019, 0x8167, 0x201C, 0x8168, 0x201D, - 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0x9EF3, 0xFC70, 0x9EF4, 0xFC71, 0x9EF5, 0xFC72, 0x9EF6, 0xFC73, 0x9EF7, 0xFC74, 0x9EF8, 0xFC75, 0x9EF9, 0xEDE9, 0x9EFA, 0xFC76, - 0x9EFB, 0xEDEA, 0x9EFC, 0xEDEB, 0x9EFD, 0xFC77, 0x9EFE, 0xF6BC, 0x9EFF, 0xFC78, 0x9F00, 0xFC79, 0x9F01, 0xFC7A, 0x9F02, 0xFC7B, - 0x9F03, 0xFC7C, 0x9F04, 0xFC7D, 0x9F05, 0xFC7E, 0x9F06, 0xFC80, 0x9F07, 0xFC81, 0x9F08, 0xFC82, 0x9F09, 0xFC83, 0x9F0A, 0xFC84, - 0x9F0B, 0xF6BD, 0x9F0C, 0xFC85, 0x9F0D, 0xF6BE, 0x9F0E, 0xB6A6, 0x9F0F, 0xFC86, 0x9F10, 0xD8BE, 0x9F11, 0xFC87, 0x9F12, 0xFC88, - 0x9F13, 0xB9C4, 0x9F14, 0xFC89, 0x9F15, 0xFC8A, 0x9F16, 0xFC8B, 0x9F17, 0xD8BB, 0x9F18, 0xFC8C, 0x9F19, 0xDCB1, 0x9F1A, 0xFC8D, - 0x9F1B, 0xFC8E, 0x9F1C, 0xFC8F, 0x9F1D, 0xFC90, 0x9F1E, 0xFC91, 0x9F1F, 0xFC92, 0x9F20, 0xCAF3, 0x9F21, 0xFC93, 0x9F22, 0xF7F7, - 0x9F23, 0xFC94, 0x9F24, 0xFC95, 0x9F25, 0xFC96, 0x9F26, 0xFC97, 0x9F27, 0xFC98, 0x9F28, 0xFC99, 0x9F29, 0xFC9A, 0x9F2A, 0xFC9B, - 0x9F2B, 0xFC9C, 0x9F2C, 0xF7F8, 0x9F2D, 0xFC9D, 0x9F2E, 0xFC9E, 0x9F2F, 0xF7F9, 0x9F30, 0xFC9F, 0x9F31, 0xFCA0, 0x9F32, 0xFD40, - 0x9F33, 0xFD41, 0x9F34, 0xFD42, 0x9F35, 0xFD43, 0x9F36, 0xFD44, 0x9F37, 0xF7FB, 0x9F38, 0xFD45, 0x9F39, 0xF7FA, 0x9F3A, 0xFD46, - 0x9F3B, 0xB1C7, 0x9F3C, 0xFD47, 0x9F3D, 0xF7FC, 0x9F3E, 0xF7FD, 0x9F3F, 0xFD48, 0x9F40, 0xFD49, 0x9F41, 0xFD4A, 0x9F42, 0xFD4B, - 0x9F43, 0xFD4C, 0x9F44, 0xF7FE, 0x9F45, 0xFD4D, 0x9F46, 0xFD4E, 0x9F47, 0xFD4F, 0x9F48, 0xFD50, 0x9F49, 0xFD51, 0x9F4A, 0xFD52, - 0x9F4B, 0xFD53, 0x9F4C, 0xFD54, 0x9F4D, 0xFD55, 0x9F4E, 0xFD56, 0x9F4F, 0xFD57, 0x9F50, 0xC6EB, 0x9F51, 0xECB4, 0x9F52, 0xFD58, - 0x9F53, 0xFD59, 0x9F54, 0xFD5A, 0x9F55, 0xFD5B, 0x9F56, 0xFD5C, 0x9F57, 0xFD5D, 0x9F58, 0xFD5E, 0x9F59, 0xFD5F, 0x9F5A, 0xFD60, - 0x9F5B, 0xFD61, 0x9F5C, 0xFD62, 0x9F5D, 0xFD63, 0x9F5E, 0xFD64, 0x9F5F, 0xFD65, 0x9F60, 0xFD66, 0x9F61, 0xFD67, 0x9F62, 0xFD68, - 0x9F63, 0xFD69, 0x9F64, 0xFD6A, 0x9F65, 0xFD6B, 0x9F66, 0xFD6C, 0x9F67, 0xFD6D, 0x9F68, 0xFD6E, 0x9F69, 0xFD6F, 0x9F6A, 0xFD70, - 0x9F6B, 0xFD71, 0x9F6C, 0xFD72, 0x9F6D, 0xFD73, 0x9F6E, 0xFD74, 0x9F6F, 0xFD75, 0x9F70, 0xFD76, 0x9F71, 0xFD77, 0x9F72, 0xFD78, - 0x9F73, 0xFD79, 0x9F74, 0xFD7A, 0x9F75, 0xFD7B, 0x9F76, 0xFD7C, 0x9F77, 0xFD7D, 0x9F78, 0xFD7E, 0x9F79, 0xFD80, 0x9F7A, 0xFD81, - 0x9F7B, 0xFD82, 0x9F7C, 0xFD83, 0x9F7D, 0xFD84, 0x9F7E, 0xFD85, 0x9F7F, 0xB3DD, 0x9F80, 0xF6B3, 0x9F81, 0xFD86, 0x9F82, 0xFD87, - 0x9F83, 0xF6B4, 0x9F84, 0xC1E4, 0x9F85, 0xF6B5, 0x9F86, 0xF6B6, 0x9F87, 0xF6B7, 0x9F88, 0xF6B8, 0x9F89, 0xF6B9, 0x9F8A, 0xF6BA, - 0x9F8B, 0xC8A3, 0x9F8C, 0xF6BB, 0x9F8D, 0xFD88, 0x9F8E, 0xFD89, 0x9F8F, 0xFD8A, 0x9F90, 0xFD8B, 0x9F91, 0xFD8C, 0x9F92, 0xFD8D, - 0x9F93, 0xFD8E, 0x9F94, 0xFD8F, 0x9F95, 0xFD90, 0x9F96, 0xFD91, 0x9F97, 0xFD92, 0x9F98, 0xFD93, 0x9F99, 0xC1FA, 0x9F9A, 0xB9A8, - 0x9F9B, 0xEDE8, 0x9F9C, 0xFD94, 0x9F9D, 0xFD95, 0x9F9E, 0xFD96, 0x9F9F, 0xB9EA, 0x9FA0, 0xD9DF, 0x9FA1, 0xFD97, 0x9FA2, 0xFD98, - 0x9FA3, 0xFD99, 0x9FA4, 0xFD9A, 0x9FA5, 0xFD9B, 0xF92C, 0xFD9C, 0xF979, 0xFD9D, 0xF995, 0xFD9E, 0xF9E7, 0xFD9F, 0xF9F1, 0xFDA0, - 0xFA0C, 0xFE40, 0xFA0D, 0xFE41, 0xFA0E, 0xFE42, 0xFA0F, 0xFE43, 0xFA11, 0xFE44, 0xFA13, 0xFE45, 0xFA14, 0xFE46, 0xFA18, 0xFE47, - 0xFA1F, 0xFE48, 0xFA20, 0xFE49, 0xFA21, 0xFE4A, 0xFA23, 0xFE4B, 0xFA24, 0xFE4C, 0xFA27, 0xFE4D, 0xFA28, 0xFE4E, 0xFA29, 0xFE4F, - 0xFE30, 0xA955, 0xFE31, 0xA6F2, 0xFE33, 0xA6F4, 0xFE34, 0xA6F5, 0xFE35, 0xA6E0, 0xFE36, 0xA6E1, 0xFE37, 0xA6F0, 0xFE38, 0xA6F1, - 0xFE39, 0xA6E2, 0xFE3A, 0xA6E3, 0xFE3B, 0xA6EE, 0xFE3C, 0xA6EF, 0xFE3D, 0xA6E6, 0xFE3E, 0xA6E7, 0xFE3F, 0xA6E4, 0xFE40, 0xA6E5, - 0xFE41, 0xA6E8, 0xFE42, 0xA6E9, 0xFE43, 0xA6EA, 0xFE44, 0xA6EB, 0xFE49, 0xA968, 0xFE4A, 0xA969, 0xFE4B, 0xA96A, 0xFE4C, 0xA96B, - 0xFE4D, 0xA96C, 0xFE4E, 0xA96D, 0xFE4F, 0xA96E, 0xFE50, 0xA96F, 0xFE51, 0xA970, 0xFE52, 0xA971, 0xFE54, 0xA972, 0xFE55, 0xA973, - 0xFE56, 0xA974, 0xFE57, 0xA975, 0xFE59, 0xA976, 0xFE5A, 0xA977, 0xFE5B, 0xA978, 0xFE5C, 0xA979, 0xFE5D, 0xA97A, 0xFE5E, 0xA97B, - 0xFE5F, 0xA97C, 0xFE60, 0xA97D, 0xFE61, 0xA97E, 0xFE62, 0xA980, 0xFE63, 0xA981, 0xFE64, 0xA982, 0xFE65, 0xA983, 0xFE66, 0xA984, - 0xFE68, 0xA985, 0xFE69, 0xA986, 0xFE6A, 0xA987, 0xFE6B, 0xA988, 0xFF01, 0xA3A1, 0xFF02, 0xA3A2, 0xFF03, 0xA3A3, 0xFF04, 0xA1E7, - 0xFF05, 0xA3A5, 0xFF06, 0xA3A6, 0xFF07, 0xA3A7, 0xFF08, 0xA3A8, 0xFF09, 0xA3A9, 0xFF0A, 0xA3AA, 0xFF0B, 0xA3AB, 0xFF0C, 0xA3AC, - 0xFF0D, 0xA3AD, 0xFF0E, 0xA3AE, 0xFF0F, 0xA3AF, 0xFF10, 0xA3B0, 0xFF11, 0xA3B1, 0xFF12, 0xA3B2, 0xFF13, 0xA3B3, 0xFF14, 0xA3B4, - 0xFF15, 0xA3B5, 0xFF16, 0xA3B6, 0xFF17, 0xA3B7, 0xFF18, 0xA3B8, 0xFF19, 0xA3B9, 0xFF1A, 0xA3BA, 0xFF1B, 0xA3BB, 0xFF1C, 0xA3BC, - 0xFF1D, 0xA3BD, 0xFF1E, 0xA3BE, 0xFF1F, 0xA3BF, 0xFF20, 0xA3C0, 0xFF21, 0xA3C1, 0xFF22, 0xA3C2, 0xFF23, 0xA3C3, 0xFF24, 0xA3C4, - 0xFF25, 0xA3C5, 0xFF26, 0xA3C6, 0xFF27, 0xA3C7, 0xFF28, 0xA3C8, 0xFF29, 0xA3C9, 0xFF2A, 0xA3CA, 0xFF2B, 0xA3CB, 0xFF2C, 0xA3CC, - 0xFF2D, 0xA3CD, 0xFF2E, 0xA3CE, 0xFF2F, 0xA3CF, 0xFF30, 0xA3D0, 0xFF31, 0xA3D1, 0xFF32, 0xA3D2, 0xFF33, 0xA3D3, 0xFF34, 0xA3D4, - 0xFF35, 0xA3D5, 0xFF36, 0xA3D6, 0xFF37, 0xA3D7, 0xFF38, 0xA3D8, 0xFF39, 0xA3D9, 0xFF3A, 0xA3DA, 0xFF3B, 0xA3DB, 0xFF3C, 0xA3DC, - 0xFF3D, 0xA3DD, 0xFF3E, 0xA3DE, 0xFF3F, 0xA3DF, 0xFF40, 0xA3E0, 0xFF41, 0xA3E1, 0xFF42, 0xA3E2, 0xFF43, 0xA3E3, 0xFF44, 0xA3E4, - 0xFF45, 0xA3E5, 0xFF46, 0xA3E6, 0xFF47, 0xA3E7, 0xFF48, 0xA3E8, 0xFF49, 0xA3E9, 0xFF4A, 0xA3EA, 0xFF4B, 0xA3EB, 0xFF4C, 0xA3EC, - 0xFF4D, 0xA3ED, 0xFF4E, 0xA3EE, 0xFF4F, 0xA3EF, 0xFF50, 0xA3F0, 0xFF51, 0xA3F1, 0xFF52, 0xA3F2, 0xFF53, 0xA3F3, 0xFF54, 0xA3F4, - 0xFF55, 0xA3F5, 0xFF56, 0xA3F6, 0xFF57, 0xA3F7, 0xFF58, 0xA3F8, 0xFF59, 0xA3F9, 0xFF5A, 0xA3FA, 0xFF5B, 0xA3FB, 0xFF5C, 0xA3FC, - 0xFF5D, 0xA3FD, 0xFF5E, 0xA1AB, 0xFFE0, 0xA1E9, 0xFFE1, 0xA1EA, 0xFFE2, 0xA956, 0xFFE3, 0xA3FE, 0xFFE4, 0xA957, 0xFFE5, 0xA3A4, - 0, 0 -}; - -static const WCHAR oem2uni936[] = { /* GBK --> Unicode pairs */ - 0x0080, 0x20AC, 0x8140, 0x4E02, 0x8141, 0x4E04, 0x8142, 0x4E05, 0x8143, 0x4E06, 0x8144, 0x4E0F, 0x8145, 0x4E12, 0x8146, 0x4E17, - 0x8147, 0x4E1F, 0x8148, 0x4E20, 0x8149, 0x4E21, 0x814A, 0x4E23, 0x814B, 0x4E26, 0x814C, 0x4E29, 0x814D, 0x4E2E, 0x814E, 0x4E2F, - 0x814F, 0x4E31, 0x8150, 0x4E33, 0x8151, 0x4E35, 0x8152, 0x4E37, 0x8153, 0x4E3C, 0x8154, 0x4E40, 0x8155, 0x4E41, 0x8156, 0x4E42, - 0x8157, 0x4E44, 0x8158, 0x4E46, 0x8159, 0x4E4A, 0x815A, 0x4E51, 0x815B, 0x4E55, 0x815C, 0x4E57, 0x815D, 0x4E5A, 0x815E, 0x4E5B, - 0x815F, 0x4E62, 0x8160, 0x4E63, 0x8161, 0x4E64, 0x8162, 0x4E65, 0x8163, 0x4E67, 0x8164, 0x4E68, 0x8165, 0x4E6A, 0x8166, 0x4E6B, - 0x8167, 0x4E6C, 0x8168, 0x4E6D, 0x8169, 0x4E6E, 0x816A, 0x4E6F, 0x816B, 0x4E72, 0x816C, 0x4E74, 0x816D, 0x4E75, 0x816E, 0x4E76, - 0x816F, 0x4E77, 0x8170, 0x4E78, 0x8171, 0x4E79, 0x8172, 0x4E7A, 0x8173, 0x4E7B, 0x8174, 0x4E7C, 0x8175, 0x4E7D, 0x8176, 0x4E7F, - 0x8177, 0x4E80, 0x8178, 0x4E81, 0x8179, 0x4E82, 0x817A, 0x4E83, 0x817B, 0x4E84, 0x817C, 0x4E85, 0x817D, 0x4E87, 0x817E, 0x4E8A, - 0x8180, 0x4E90, 0x8181, 0x4E96, 0x8182, 0x4E97, 0x8183, 0x4E99, 0x8184, 0x4E9C, 0x8185, 0x4E9D, 0x8186, 0x4E9E, 0x8187, 0x4EA3, - 0x8188, 0x4EAA, 0x8189, 0x4EAF, 0x818A, 0x4EB0, 0x818B, 0x4EB1, 0x818C, 0x4EB4, 0x818D, 0x4EB6, 0x818E, 0x4EB7, 0x818F, 0x4EB8, - 0x8190, 0x4EB9, 0x8191, 0x4EBC, 0x8192, 0x4EBD, 0x8193, 0x4EBE, 0x8194, 0x4EC8, 0x8195, 0x4ECC, 0x8196, 0x4ECF, 0x8197, 0x4ED0, - 0x8198, 0x4ED2, 0x8199, 0x4EDA, 0x819A, 0x4EDB, 0x819B, 0x4EDC, 0x819C, 0x4EE0, 0x819D, 0x4EE2, 0x819E, 0x4EE6, 0x819F, 0x4EE7, - 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0, 0 -}; -#endif - -#if FF_CODE_PAGE == 949 || FF_CODE_PAGE == 0 /* Korean */ -static const WCHAR uni2oem949[] = { /* Unicode --> Korean pairs */ - 0x00A1, 0xA2AE, 0x00A4, 0xA2B4, 0x00A7, 0xA1D7, 0x00A8, 0xA1A7, 0x00AA, 0xA8A3, 0x00AD, 0xA1A9, 0x00AE, 0xA2E7, 0x00B0, 0xA1C6, - 0x00B1, 0xA1BE, 0x00B2, 0xA9F7, 0x00B3, 0xA9F8, 0x00B4, 0xA2A5, 0x00B6, 0xA2D2, 0x00B7, 0xA1A4, 0x00B8, 0xA2AC, 0x00B9, 0xA9F6, - 0x00BA, 0xA8AC, 0x00BC, 0xA8F9, 0x00BD, 0xA8F6, 0x00BE, 0xA8FA, 0x00BF, 0xA2AF, 0x00C6, 0xA8A1, 0x00D0, 0xA8A2, 0x00D7, 0xA1BF, - 0x00D8, 0xA8AA, 0x00DE, 0xA8AD, 0x00DF, 0xA9AC, 0x00E6, 0xA9A1, 0x00F0, 0xA9A3, 0x00F7, 0xA1C0, 0x00F8, 0xA9AA, 0x00FE, 0xA9AD, - 0x0111, 0xA9A2, 0x0126, 0xA8A4, 0x0127, 0xA9A4, 0x0131, 0xA9A5, 0x0132, 0xA8A6, 0x0133, 0xA9A6, 0x0138, 0xA9A7, 0x013F, 0xA8A8, - 0x0140, 0xA9A8, 0x0141, 0xA8A9, 0x0142, 0xA9A9, 0x0149, 0xA9B0, 0x014A, 0xA8AF, 0x014B, 0xA9AF, 0x0152, 0xA8AB, 0x0153, 0xA9AB, - 0x0166, 0xA8AE, 0x0167, 0xA9AE, 0x02C7, 0xA2A7, 0x02D0, 0xA2B0, 0x02D8, 0xA2A8, 0x02D9, 0xA2AB, 0x02DA, 0xA2AA, 0x02DB, 0xA2AD, - 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0xFF05, 0xA3A5, 0xFF06, 0xA3A6, 0xFF07, 0xA3A7, 0xFF08, 0xA3A8, 0xFF09, 0xA3A9, 0xFF0A, 0xA3AA, 0xFF0B, 0xA3AB, 0xFF0C, 0xA3AC, - 0xFF0D, 0xA3AD, 0xFF0E, 0xA3AE, 0xFF0F, 0xA3AF, 0xFF10, 0xA3B0, 0xFF11, 0xA3B1, 0xFF12, 0xA3B2, 0xFF13, 0xA3B3, 0xFF14, 0xA3B4, - 0xFF15, 0xA3B5, 0xFF16, 0xA3B6, 0xFF17, 0xA3B7, 0xFF18, 0xA3B8, 0xFF19, 0xA3B9, 0xFF1A, 0xA3BA, 0xFF1B, 0xA3BB, 0xFF1C, 0xA3BC, - 0xFF1D, 0xA3BD, 0xFF1E, 0xA3BE, 0xFF1F, 0xA3BF, 0xFF20, 0xA3C0, 0xFF21, 0xA3C1, 0xFF22, 0xA3C2, 0xFF23, 0xA3C3, 0xFF24, 0xA3C4, - 0xFF25, 0xA3C5, 0xFF26, 0xA3C6, 0xFF27, 0xA3C7, 0xFF28, 0xA3C8, 0xFF29, 0xA3C9, 0xFF2A, 0xA3CA, 0xFF2B, 0xA3CB, 0xFF2C, 0xA3CC, - 0xFF2D, 0xA3CD, 0xFF2E, 0xA3CE, 0xFF2F, 0xA3CF, 0xFF30, 0xA3D0, 0xFF31, 0xA3D1, 0xFF32, 0xA3D2, 0xFF33, 0xA3D3, 0xFF34, 0xA3D4, - 0xFF35, 0xA3D5, 0xFF36, 0xA3D6, 0xFF37, 0xA3D7, 0xFF38, 0xA3D8, 0xFF39, 0xA3D9, 0xFF3A, 0xA3DA, 0xFF3B, 0xA3DB, 0xFF3C, 0xA1AC, - 0xFF3D, 0xA3DD, 0xFF3E, 0xA3DE, 0xFF3F, 0xA3DF, 0xFF40, 0xA3E0, 0xFF41, 0xA3E1, 0xFF42, 0xA3E2, 0xFF43, 0xA3E3, 0xFF44, 0xA3E4, - 0xFF45, 0xA3E5, 0xFF46, 0xA3E6, 0xFF47, 0xA3E7, 0xFF48, 0xA3E8, 0xFF49, 0xA3E9, 0xFF4A, 0xA3EA, 0xFF4B, 0xA3EB, 0xFF4C, 0xA3EC, - 0xFF4D, 0xA3ED, 0xFF4E, 0xA3EE, 0xFF4F, 0xA3EF, 0xFF50, 0xA3F0, 0xFF51, 0xA3F1, 0xFF52, 0xA3F2, 0xFF53, 0xA3F3, 0xFF54, 0xA3F4, - 0xFF55, 0xA3F5, 0xFF56, 0xA3F6, 0xFF57, 0xA3F7, 0xFF58, 0xA3F8, 0xFF59, 0xA3F9, 0xFF5A, 0xA3FA, 0xFF5B, 0xA3FB, 0xFF5C, 0xA3FC, - 0xFF5D, 0xA3FD, 0xFF5E, 0xA2A6, 0xFFE0, 0xA1CB, 0xFFE1, 0xA1CC, 0xFFE2, 0xA1FE, 0xFFE3, 0xA3FE, 0xFFE5, 0xA1CD, 0xFFE6, 0xA3DC, - 0, 0 -}; - -static const WCHAR oem2uni949[] = { /* Korean --> Unicode pairs */ - 0x8141, 0xAC02, 0x8142, 0xAC03, 0x8143, 0xAC05, 0x8144, 0xAC06, 0x8145, 0xAC0B, 0x8146, 0xAC0C, 0x8147, 0xAC0D, 0x8148, 0xAC0E, - 0x8149, 0xAC0F, 0x814A, 0xAC18, 0x814B, 0xAC1E, 0x814C, 0xAC1F, 0x814D, 0xAC21, 0x814E, 0xAC22, 0x814F, 0xAC23, 0x8150, 0xAC25, - 0x8151, 0xAC26, 0x8152, 0xAC27, 0x8153, 0xAC28, 0x8154, 0xAC29, 0x8155, 0xAC2A, 0x8156, 0xAC2B, 0x8157, 0xAC2E, 0x8158, 0xAC32, - 0x8159, 0xAC33, 0x815A, 0xAC34, 0x8161, 0xAC35, 0x8162, 0xAC36, 0x8163, 0xAC37, 0x8164, 0xAC3A, 0x8165, 0xAC3B, 0x8166, 0xAC3D, - 0x8167, 0xAC3E, 0x8168, 0xAC3F, 0x8169, 0xAC41, 0x816A, 0xAC42, 0x816B, 0xAC43, 0x816C, 0xAC44, 0x816D, 0xAC45, 0x816E, 0xAC46, - 0x816F, 0xAC47, 0x8170, 0xAC48, 0x8171, 0xAC49, 0x8172, 0xAC4A, 0x8173, 0xAC4C, 0x8174, 0xAC4E, 0x8175, 0xAC4F, 0x8176, 0xAC50, - 0x8177, 0xAC51, 0x8178, 0xAC52, 0x8179, 0xAC53, 0x817A, 0xAC55, 0x8181, 0xAC56, 0x8182, 0xAC57, 0x8183, 0xAC59, 0x8184, 0xAC5A, - 0x8185, 0xAC5B, 0x8186, 0xAC5D, 0x8187, 0xAC5E, 0x8188, 0xAC5F, 0x8189, 0xAC60, 0x818A, 0xAC61, 0x818B, 0xAC62, 0x818C, 0xAC63, - 0x818D, 0xAC64, 0x818E, 0xAC65, 0x818F, 0xAC66, 0x8190, 0xAC67, 0x8191, 0xAC68, 0x8192, 0xAC69, 0x8193, 0xAC6A, 0x8194, 0xAC6B, - 0x8195, 0xAC6C, 0x8196, 0xAC6D, 0x8197, 0xAC6E, 0x8198, 0xAC6F, 0x8199, 0xAC72, 0x819A, 0xAC73, 0x819B, 0xAC75, 0x819C, 0xAC76, - 0x819D, 0xAC79, 0x819E, 0xAC7B, 0x819F, 0xAC7C, 0x81A0, 0xAC7D, 0x81A1, 0xAC7E, 0x81A2, 0xAC7F, 0x81A3, 0xAC82, 0x81A4, 0xAC87, - 0x81A5, 0xAC88, 0x81A6, 0xAC8D, 0x81A7, 0xAC8E, 0x81A8, 0xAC8F, 0x81A9, 0xAC91, 0x81AA, 0xAC92, 0x81AB, 0xAC93, 0x81AC, 0xAC95, - 0x81AD, 0xAC96, 0x81AE, 0xAC97, 0x81AF, 0xAC98, 0x81B0, 0xAC99, 0x81B1, 0xAC9A, 0x81B2, 0xAC9B, 0x81B3, 0xAC9E, 0x81B4, 0xACA2, - 0x81B5, 0xACA3, 0x81B6, 0xACA4, 0x81B7, 0xACA5, 0x81B8, 0xACA6, 0x81B9, 0xACA7, 0x81BA, 0xACAB, 0x81BB, 0xACAD, 0x81BC, 0xACAE, - 0x81BD, 0xACB1, 0x81BE, 0xACB2, 0x81BF, 0xACB3, 0x81C0, 0xACB4, 0x81C1, 0xACB5, 0x81C2, 0xACB6, 0x81C3, 0xACB7, 0x81C4, 0xACBA, - 0x81C5, 0xACBE, 0x81C6, 0xACBF, 0x81C7, 0xACC0, 0x81C8, 0xACC2, 0x81C9, 0xACC3, 0x81CA, 0xACC5, 0x81CB, 0xACC6, 0x81CC, 0xACC7, - 0x81CD, 0xACC9, 0x81CE, 0xACCA, 0x81CF, 0xACCB, 0x81D0, 0xACCD, 0x81D1, 0xACCE, 0x81D2, 0xACCF, 0x81D3, 0xACD0, 0x81D4, 0xACD1, - 0x81D5, 0xACD2, 0x81D6, 0xACD3, 0x81D7, 0xACD4, 0x81D8, 0xACD6, 0x81D9, 0xACD8, 0x81DA, 0xACD9, 0x81DB, 0xACDA, 0x81DC, 0xACDB, - 0x81DD, 0xACDC, 0x81DE, 0xACDD, 0x81DF, 0xACDE, 0x81E0, 0xACDF, 0x81E1, 0xACE2, 0x81E2, 0xACE3, 0x81E3, 0xACE5, 0x81E4, 0xACE6, - 0x81E5, 0xACE9, 0x81E6, 0xACEB, 0x81E7, 0xACED, 0x81E8, 0xACEE, 0x81E9, 0xACF2, 0x81EA, 0xACF4, 0x81EB, 0xACF7, 0x81EC, 0xACF8, - 0x81ED, 0xACF9, 0x81EE, 0xACFA, 0x81EF, 0xACFB, 0x81F0, 0xACFE, 0x81F1, 0xACFF, 0x81F2, 0xAD01, 0x81F3, 0xAD02, 0x81F4, 0xAD03, - 0x81F5, 0xAD05, 0x81F6, 0xAD07, 0x81F7, 0xAD08, 0x81F8, 0xAD09, 0x81F9, 0xAD0A, 0x81FA, 0xAD0B, 0x81FB, 0xAD0E, 0x81FC, 0xAD10, - 0x81FD, 0xAD12, 0x81FE, 0xAD13, 0x8241, 0xAD14, 0x8242, 0xAD15, 0x8243, 0xAD16, 0x8244, 0xAD17, 0x8245, 0xAD19, 0x8246, 0xAD1A, - 0x8247, 0xAD1B, 0x8248, 0xAD1D, 0x8249, 0xAD1E, 0x824A, 0xAD1F, 0x824B, 0xAD21, 0x824C, 0xAD22, 0x824D, 0xAD23, 0x824E, 0xAD24, - 0x824F, 0xAD25, 0x8250, 0xAD26, 0x8251, 0xAD27, 0x8252, 0xAD28, 0x8253, 0xAD2A, 0x8254, 0xAD2B, 0x8255, 0xAD2E, 0x8256, 0xAD2F, - 0x8257, 0xAD30, 0x8258, 0xAD31, 0x8259, 0xAD32, 0x825A, 0xAD33, 0x8261, 0xAD36, 0x8262, 0xAD37, 0x8263, 0xAD39, 0x8264, 0xAD3A, - 0x8265, 0xAD3B, 0x8266, 0xAD3D, 0x8267, 0xAD3E, 0x8268, 0xAD3F, 0x8269, 0xAD40, 0x826A, 0xAD41, 0x826B, 0xAD42, 0x826C, 0xAD43, - 0x826D, 0xAD46, 0x826E, 0xAD48, 0x826F, 0xAD4A, 0x8270, 0xAD4B, 0x8271, 0xAD4C, 0x8272, 0xAD4D, 0x8273, 0xAD4E, 0x8274, 0xAD4F, - 0x8275, 0xAD51, 0x8276, 0xAD52, 0x8277, 0xAD53, 0x8278, 0xAD55, 0x8279, 0xAD56, 0x827A, 0xAD57, 0x8281, 0xAD59, 0x8282, 0xAD5A, - 0x8283, 0xAD5B, 0x8284, 0xAD5C, 0x8285, 0xAD5D, 0x8286, 0xAD5E, 0x8287, 0xAD5F, 0x8288, 0xAD60, 0x8289, 0xAD62, 0x828A, 0xAD64, - 0x828B, 0xAD65, 0x828C, 0xAD66, 0x828D, 0xAD67, 0x828E, 0xAD68, 0x828F, 0xAD69, 0x8290, 0xAD6A, 0x8291, 0xAD6B, 0x8292, 0xAD6E, - 0x8293, 0xAD6F, 0x8294, 0xAD71, 0x8295, 0xAD72, 0x8296, 0xAD77, 0x8297, 0xAD78, 0x8298, 0xAD79, 0x8299, 0xAD7A, 0x829A, 0xAD7E, - 0x829B, 0xAD80, 0x829C, 0xAD83, 0x829D, 0xAD84, 0x829E, 0xAD85, 0x829F, 0xAD86, 0x82A0, 0xAD87, 0x82A1, 0xAD8A, 0x82A2, 0xAD8B, - 0x82A3, 0xAD8D, 0x82A4, 0xAD8E, 0x82A5, 0xAD8F, 0x82A6, 0xAD91, 0x82A7, 0xAD92, 0x82A8, 0xAD93, 0x82A9, 0xAD94, 0x82AA, 0xAD95, - 0x82AB, 0xAD96, 0x82AC, 0xAD97, 0x82AD, 0xAD98, 0x82AE, 0xAD99, 0x82AF, 0xAD9A, 0x82B0, 0xAD9B, 0x82B1, 0xAD9E, 0x82B2, 0xAD9F, - 0x82B3, 0xADA0, 0x82B4, 0xADA1, 0x82B5, 0xADA2, 0x82B6, 0xADA3, 0x82B7, 0xADA5, 0x82B8, 0xADA6, 0x82B9, 0xADA7, 0x82BA, 0xADA8, - 0x82BB, 0xADA9, 0x82BC, 0xADAA, 0x82BD, 0xADAB, 0x82BE, 0xADAC, 0x82BF, 0xADAD, 0x82C0, 0xADAE, 0x82C1, 0xADAF, 0x82C2, 0xADB0, - 0x82C3, 0xADB1, 0x82C4, 0xADB2, 0x82C5, 0xADB3, 0x82C6, 0xADB4, 0x82C7, 0xADB5, 0x82C8, 0xADB6, 0x82C9, 0xADB8, 0x82CA, 0xADB9, - 0x82CB, 0xADBA, 0x82CC, 0xADBB, 0x82CD, 0xADBC, 0x82CE, 0xADBD, 0x82CF, 0xADBE, 0x82D0, 0xADBF, 0x82D1, 0xADC2, 0x82D2, 0xADC3, - 0x82D3, 0xADC5, 0x82D4, 0xADC6, 0x82D5, 0xADC7, 0x82D6, 0xADC9, 0x82D7, 0xADCA, 0x82D8, 0xADCB, 0x82D9, 0xADCC, 0x82DA, 0xADCD, - 0x82DB, 0xADCE, 0x82DC, 0xADCF, 0x82DD, 0xADD2, 0x82DE, 0xADD4, 0x82DF, 0xADD5, 0x82E0, 0xADD6, 0x82E1, 0xADD7, 0x82E2, 0xADD8, - 0x82E3, 0xADD9, 0x82E4, 0xADDA, 0x82E5, 0xADDB, 0x82E6, 0xADDD, 0x82E7, 0xADDE, 0x82E8, 0xADDF, 0x82E9, 0xADE1, 0x82EA, 0xADE2, - 0x82EB, 0xADE3, 0x82EC, 0xADE5, 0x82ED, 0xADE6, 0x82EE, 0xADE7, 0x82EF, 0xADE8, 0x82F0, 0xADE9, 0x82F1, 0xADEA, 0x82F2, 0xADEB, - 0x82F3, 0xADEC, 0x82F4, 0xADED, 0x82F5, 0xADEE, 0x82F6, 0xADEF, 0x82F7, 0xADF0, 0x82F8, 0xADF1, 0x82F9, 0xADF2, 0x82FA, 0xADF3, - 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0xFBC3, 0x6248, 0xFBC4, 0x660A, 0xFBC5, 0x6667, 0xFBC6, 0x6BEB, 0xFBC7, 0x6D69, 0xFBC8, 0x6DCF, 0xFBC9, 0x6E56, 0xFBCA, 0x6EF8, - 0xFBCB, 0x6F94, 0xFBCC, 0x6FE0, 0xFBCD, 0x6FE9, 0xFBCE, 0x705D, 0xFBCF, 0x72D0, 0xFBD0, 0x7425, 0xFBD1, 0x745A, 0xFBD2, 0x74E0, - 0xFBD3, 0x7693, 0xFBD4, 0x795C, 0xFBD5, 0x7CCA, 0xFBD6, 0x7E1E, 0xFBD7, 0x80E1, 0xFBD8, 0x82A6, 0xFBD9, 0x846B, 0xFBDA, 0x84BF, - 0xFBDB, 0x864E, 0xFBDC, 0x865F, 0xFBDD, 0x8774, 0xFBDE, 0x8B77, 0xFBDF, 0x8C6A, 0xFBE0, 0x93AC, 0xFBE1, 0x9800, 0xFBE2, 0x9865, - 0xFBE3, 0x60D1, 0xFBE4, 0x6216, 0xFBE5, 0x9177, 0xFBE6, 0x5A5A, 0xFBE7, 0x660F, 0xFBE8, 0x6DF7, 0xFBE9, 0x6E3E, 0xFBEA, 0x743F, - 0xFBEB, 0x9B42, 0xFBEC, 0x5FFD, 0xFBED, 0x60DA, 0xFBEE, 0x7B0F, 0xFBEF, 0x54C4, 0xFBF0, 0x5F18, 0xFBF1, 0x6C5E, 0xFBF2, 0x6CD3, - 0xFBF3, 0x6D2A, 0xFBF4, 0x70D8, 0xFBF5, 0x7D05, 0xFBF6, 0x8679, 0xFBF7, 0x8A0C, 0xFBF8, 0x9D3B, 0xFBF9, 0x5316, 0xFBFA, 0x548C, - 0xFBFB, 0x5B05, 0xFBFC, 0x6A3A, 0xFBFD, 0x706B, 0xFBFE, 0x7575, 0xFCA1, 0x798D, 0xFCA2, 0x79BE, 0xFCA3, 0x82B1, 0xFCA4, 0x83EF, - 0xFCA5, 0x8A71, 0xFCA6, 0x8B41, 0xFCA7, 0x8CA8, 0xFCA8, 0x9774, 0xFCA9, 0xFA0B, 0xFCAA, 0x64F4, 0xFCAB, 0x652B, 0xFCAC, 0x78BA, - 0xFCAD, 0x78BB, 0xFCAE, 0x7A6B, 0xFCAF, 0x4E38, 0xFCB0, 0x559A, 0xFCB1, 0x5950, 0xFCB2, 0x5BA6, 0xFCB3, 0x5E7B, 0xFCB4, 0x60A3, - 0xFCB5, 0x63DB, 0xFCB6, 0x6B61, 0xFCB7, 0x6665, 0xFCB8, 0x6853, 0xFCB9, 0x6E19, 0xFCBA, 0x7165, 0xFCBB, 0x74B0, 0xFCBC, 0x7D08, - 0xFCBD, 0x9084, 0xFCBE, 0x9A69, 0xFCBF, 0x9C25, 0xFCC0, 0x6D3B, 0xFCC1, 0x6ED1, 0xFCC2, 0x733E, 0xFCC3, 0x8C41, 0xFCC4, 0x95CA, - 0xFCC5, 0x51F0, 0xFCC6, 0x5E4C, 0xFCC7, 0x5FA8, 0xFCC8, 0x604D, 0xFCC9, 0x60F6, 0xFCCA, 0x6130, 0xFCCB, 0x614C, 0xFCCC, 0x6643, - 0xFCCD, 0x6644, 0xFCCE, 0x69A5, 0xFCCF, 0x6CC1, 0xFCD0, 0x6E5F, 0xFCD1, 0x6EC9, 0xFCD2, 0x6F62, 0xFCD3, 0x714C, 0xFCD4, 0x749C, - 0xFCD5, 0x7687, 0xFCD6, 0x7BC1, 0xFCD7, 0x7C27, 0xFCD8, 0x8352, 0xFCD9, 0x8757, 0xFCDA, 0x9051, 0xFCDB, 0x968D, 0xFCDC, 0x9EC3, - 0xFCDD, 0x532F, 0xFCDE, 0x56DE, 0xFCDF, 0x5EFB, 0xFCE0, 0x5F8A, 0xFCE1, 0x6062, 0xFCE2, 0x6094, 0xFCE3, 0x61F7, 0xFCE4, 0x6666, - 0xFCE5, 0x6703, 0xFCE6, 0x6A9C, 0xFCE7, 0x6DEE, 0xFCE8, 0x6FAE, 0xFCE9, 0x7070, 0xFCEA, 0x736A, 0xFCEB, 0x7E6A, 0xFCEC, 0x81BE, - 0xFCED, 0x8334, 0xFCEE, 0x86D4, 0xFCEF, 0x8AA8, 0xFCF0, 0x8CC4, 0xFCF1, 0x5283, 0xFCF2, 0x7372, 0xFCF3, 0x5B96, 0xFCF4, 0x6A6B, - 0xFCF5, 0x9404, 0xFCF6, 0x54EE, 0xFCF7, 0x5686, 0xFCF8, 0x5B5D, 0xFCF9, 0x6548, 0xFCFA, 0x6585, 0xFCFB, 0x66C9, 0xFCFC, 0x689F, - 0xFCFD, 0x6D8D, 0xFCFE, 0x6DC6, 0xFDA1, 0x723B, 0xFDA2, 0x80B4, 0xFDA3, 0x9175, 0xFDA4, 0x9A4D, 0xFDA5, 0x4FAF, 0xFDA6, 0x5019, - 0xFDA7, 0x539A, 0xFDA8, 0x540E, 0xFDA9, 0x543C, 0xFDAA, 0x5589, 0xFDAB, 0x55C5, 0xFDAC, 0x5E3F, 0xFDAD, 0x5F8C, 0xFDAE, 0x673D, - 0xFDAF, 0x7166, 0xFDB0, 0x73DD, 0xFDB1, 0x9005, 0xFDB2, 0x52DB, 0xFDB3, 0x52F3, 0xFDB4, 0x5864, 0xFDB5, 0x58CE, 0xFDB6, 0x7104, - 0xFDB7, 0x718F, 0xFDB8, 0x71FB, 0xFDB9, 0x85B0, 0xFDBA, 0x8A13, 0xFDBB, 0x6688, 0xFDBC, 0x85A8, 0xFDBD, 0x55A7, 0xFDBE, 0x6684, - 0xFDBF, 0x714A, 0xFDC0, 0x8431, 0xFDC1, 0x5349, 0xFDC2, 0x5599, 0xFDC3, 0x6BC1, 0xFDC4, 0x5F59, 0xFDC5, 0x5FBD, 0xFDC6, 0x63EE, - 0xFDC7, 0x6689, 0xFDC8, 0x7147, 0xFDC9, 0x8AF1, 0xFDCA, 0x8F1D, 0xFDCB, 0x9EBE, 0xFDCC, 0x4F11, 0xFDCD, 0x643A, 0xFDCE, 0x70CB, - 0xFDCF, 0x7566, 0xFDD0, 0x8667, 0xFDD1, 0x6064, 0xFDD2, 0x8B4E, 0xFDD3, 0x9DF8, 0xFDD4, 0x5147, 0xFDD5, 0x51F6, 0xFDD6, 0x5308, - 0xFDD7, 0x6D36, 0xFDD8, 0x80F8, 0xFDD9, 0x9ED1, 0xFDDA, 0x6615, 0xFDDB, 0x6B23, 0xFDDC, 0x7098, 0xFDDD, 0x75D5, 0xFDDE, 0x5403, - 0xFDDF, 0x5C79, 0xFDE0, 0x7D07, 0xFDE1, 0x8A16, 0xFDE2, 0x6B20, 0xFDE3, 0x6B3D, 0xFDE4, 0x6B46, 0xFDE5, 0x5438, 0xFDE6, 0x6070, - 0xFDE7, 0x6D3D, 0xFDE8, 0x7FD5, 0xFDE9, 0x8208, 0xFDEA, 0x50D6, 0xFDEB, 0x51DE, 0xFDEC, 0x559C, 0xFDED, 0x566B, 0xFDEE, 0x56CD, - 0xFDEF, 0x59EC, 0xFDF0, 0x5B09, 0xFDF1, 0x5E0C, 0xFDF2, 0x6199, 0xFDF3, 0x6198, 0xFDF4, 0x6231, 0xFDF5, 0x665E, 0xFDF6, 0x66E6, - 0xFDF7, 0x7199, 0xFDF8, 0x71B9, 0xFDF9, 0x71BA, 0xFDFA, 0x72A7, 0xFDFB, 0x79A7, 0xFDFC, 0x7A00, 0xFDFD, 0x7FB2, 0xFDFE, 0x8A70, - 0, 0 -}; -#endif - -#if FF_CODE_PAGE == 950 || FF_CODE_PAGE == 0 /* Traditional Chinese */ -static const WCHAR uni2oem950[] = { /* Unicode --> Big5 pairs */ - 0x00A7, 0xA1B1, 0x00AF, 0xA1C2, 0x00B0, 0xA258, 0x00B1, 0xA1D3, 0x00B7, 0xA150, 0x00D7, 0xA1D1, 0x00F7, 0xA1D2, 0x02C7, 0xA3BE, - 0x02C9, 0xA3BC, 0x02CA, 0xA3BD, 0x02CB, 0xA3BF, 0x02CD, 0xA1C5, 0x02D9, 0xA3BB, 0x0391, 0xA344, 0x0392, 0xA345, 0x0393, 0xA346, - 0x0394, 0xA347, 0x0395, 0xA348, 0x0396, 0xA349, 0x0397, 0xA34A, 0x0398, 0xA34B, 0x0399, 0xA34C, 0x039A, 0xA34D, 0x039B, 0xA34E, - 0x039C, 0xA34F, 0x039D, 0xA350, 0x039E, 0xA351, 0x039F, 0xA352, 0x03A0, 0xA353, 0x03A1, 0xA354, 0x03A3, 0xA355, 0x03A4, 0xA356, - 0x03A5, 0xA357, 0x03A6, 0xA358, 0x03A7, 0xA359, 0x03A8, 0xA35A, 0x03A9, 0xA35B, 0x03B1, 0xA35C, 0x03B2, 0xA35D, 0x03B3, 0xA35E, - 0x03B4, 0xA35F, 0x03B5, 0xA360, 0x03B6, 0xA361, 0x03B7, 0xA362, 0x03B8, 0xA363, 0x03B9, 0xA364, 0x03BA, 0xA365, 0x03BB, 0xA366, - 0x03BC, 0xA367, 0x03BD, 0xA368, 0x03BE, 0xA369, 0x03BF, 0xA36A, 0x03C0, 0xA36B, 0x03C1, 0xA36C, 0x03C3, 0xA36D, 0x03C4, 0xA36E, - 0x03C5, 0xA36F, 0x03C6, 0xA370, 0x03C7, 0xA371, 0x03C8, 0xA372, 0x03C9, 0xA373, 0x2013, 0xA156, 0x2014, 0xA158, 0x2018, 0xA1A5, - 0x2019, 0xA1A6, 0x201C, 0xA1A7, 0x201D, 0xA1A8, 0x2025, 0xA14C, 0x2026, 0xA14B, 0x2027, 0xA145, 0x2032, 0xA1AC, 0x2035, 0xA1AB, - 0x203B, 0xA1B0, 0x20AC, 0xA3E1, 0x2103, 0xA24A, 0x2105, 0xA1C1, 0x2109, 0xA24B, 0x2160, 0xA2B9, 0x2161, 0xA2BA, 0x2162, 0xA2BB, - 0x2163, 0xA2BC, 0x2164, 0xA2BD, 0x2165, 0xA2BE, 0x2166, 0xA2BF, 0x2167, 0xA2C0, 0x2168, 0xA2C1, 0x2169, 0xA2C2, 0x2190, 0xA1F6, - 0x2191, 0xA1F4, 0x2192, 0xA1F7, 0x2193, 0xA1F5, 0x2196, 0xA1F8, 0x2197, 0xA1F9, 0x2198, 0xA1FB, 0x2199, 0xA1FA, 0x2215, 0xA241, - 0x221A, 0xA1D4, 0x221E, 0xA1DB, 0x221F, 0xA1E8, 0x2220, 0xA1E7, 0x2223, 0xA1FD, 0x2225, 0xA1FC, 0x2229, 0xA1E4, 0x222A, 0xA1E5, - 0x222B, 0xA1EC, 0x222E, 0xA1ED, 0x2234, 0xA1EF, 0x2235, 0xA1EE, 0x2252, 0xA1DC, 0x2260, 0xA1DA, 0x2261, 0xA1DD, 0x2266, 0xA1D8, - 0x2267, 0xA1D9, 0x2295, 0xA1F2, 0x2299, 0xA1F3, 0x22A5, 0xA1E6, 0x22BF, 0xA1E9, 0x2500, 0xA277, 0x2502, 0xA278, 0x250C, 0xA27A, - 0x2510, 0xA27B, 0x2514, 0xA27C, 0x2518, 0xA27D, 0x251C, 0xA275, 0x2524, 0xA274, 0x252C, 0xA273, 0x2534, 0xA272, 0x253C, 0xA271, - 0x2550, 0xA2A4, 0x2550, 0xF9F9, 0x2551, 0xF9F8, 0x2552, 0xF9E6, 0x2553, 0xF9EF, 0x2554, 0xF9DD, 0x2555, 0xF9E8, 0x2556, 0xF9F1, - 0x2557, 0xF9DF, 0x2558, 0xF9EC, 0x2559, 0xF9F5, 0x255A, 0xF9E3, 0x255B, 0xF9EE, 0x255C, 0xF9F7, 0x255D, 0xF9E5, 0x255E, 0xA2A5, - 0x255E, 0xF9E9, 0x255F, 0xF9F2, 0x2560, 0xF9E0, 0x2561, 0xA2A7, 0x2561, 0xF9EB, 0x2562, 0xF9F4, 0x2563, 0xF9E2, 0x2564, 0xF9E7, - 0x2565, 0xF9F0, 0x2566, 0xF9DE, 0x2567, 0xF9ED, 0x2568, 0xF9F6, 0x2569, 0xF9E4, 0x256A, 0xA2A6, 0x256A, 0xF9EA, 0x256B, 0xF9F3, - 0x256C, 0xF9E1, 0x256D, 0xA27E, 0x256D, 0xF9FA, 0x256E, 0xA2A1, 0x256E, 0xF9FB, 0x256F, 0xA2A3, 0x256F, 0xF9FD, 0x2570, 0xA2A2, - 0x2570, 0xF9FC, 0x2571, 0xA2AC, 0x2572, 0xA2AD, 0x2573, 0xA2AE, 0x2574, 0xA15A, 0x2581, 0xA262, 0x2582, 0xA263, 0x2583, 0xA264, - 0x2584, 0xA265, 0x2585, 0xA266, 0x2586, 0xA267, 0x2587, 0xA268, 0x2588, 0xA269, 0x2589, 0xA270, 0x258A, 0xA26F, 0x258B, 0xA26E, - 0x258C, 0xA26D, 0x258D, 0xA26C, 0x258E, 0xA26B, 0x258F, 0xA26A, 0x2593, 0xF9FE, 0x2594, 0xA276, 0x2595, 0xA279, 0x25A0, 0xA1BD, - 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0x9E94, 0xF3F2, 0x9E97, 0xC452, 0x9E99, 0xF5B1, 0x9E9A, 0xF5B3, 0x9E9B, 0xF5B2, 0x9E9C, 0xF6CA, 0x9E9D, 0xC565, 0x9E9F, 0xC5EF, - 0x9EA0, 0xF8E8, 0x9EA1, 0xF963, 0x9EA4, 0xF9D2, 0x9EA5, 0xB3C1, 0x9EA7, 0xE4E5, 0x9EA9, 0xBEA2, 0x9EAD, 0xECB3, 0x9EAE, 0xECB2, - 0x9EB0, 0xEFAD, 0x9EB4, 0xC454, 0x9EB5, 0xC4D1, 0x9EB6, 0xF7C7, 0x9EB7, 0xF9CB, 0x9EBB, 0xB3C2, 0x9EBC, 0xBBF2, 0x9EBE, 0xBEA3, - 0x9EC0, 0xF3F4, 0x9EC2, 0xF874, 0x9EC3, 0xB6C0, 0x9EC8, 0xEFAE, 0x9ECC, 0xC664, 0x9ECD, 0xB6C1, 0x9ECE, 0xBEA4, 0x9ECF, 0xC248, - 0x9ED0, 0xF875, 0x9ED1, 0xB6C2, 0x9ED3, 0xE8F1, 0x9ED4, 0xC072, 0x9ED5, 0xECB4, 0x9ED6, 0xECB5, 0x9ED8, 0xC071, 0x9EDA, 0xEFAF, - 0x9EDB, 0xC24C, 0x9EDC, 0xC24A, 0x9EDD, 0xC24B, 0x9EDE, 0xC249, 0x9EDF, 0xF1E0, 0x9EE0, 0xC35C, 0x9EE4, 0xF5B5, 0x9EE5, 0xF5B4, - 0x9EE6, 0xF5B7, 0x9EE7, 0xF5B6, 0x9EE8, 0xC4D2, 0x9EEB, 0xF6CB, 0x9EED, 0xF6CD, 0x9EEE, 0xF6CC, 0x9EEF, 0xC566, 0x9EF0, 0xF7C8, - 0x9EF2, 0xF876, 0x9EF3, 0xF877, 0x9EF4, 0xC5F0, 0x9EF5, 0xF964, 0x9EF6, 0xF97D, 0x9EF7, 0xC675, 0x9EF9, 0xDCB0, 0x9EFA, 0xECB6, - 0x9EFB, 0xEFB0, 0x9EFC, 0xF3F5, 0x9EFD, 0xE0EF, 0x9EFF, 0xEFB1, 0x9F00, 0xF1E2, 0x9F01, 0xF1E1, 0x9F06, 0xF878, 0x9F07, 0xC652, - 0x9F09, 0xF965, 0x9F0A, 0xF97E, 0x9F0E, 0xB9A9, 0x9F0F, 0xE8F2, 0x9F10, 0xE8F3, 0x9F12, 0xECB7, 0x9F13, 0xB9AA, 0x9F15, 0xC35D, - 0x9F16, 0xF1E3, 0x9F18, 0xF6CF, 0x9F19, 0xC567, 0x9F1A, 0xF6D0, 0x9F1B, 0xF6CE, 0x9F1C, 0xF879, 0x9F1E, 0xF8E9, 0x9F20, 0xB9AB, - 0x9F22, 0xEFB4, 0x9F23, 0xEFB3, 0x9F24, 0xEFB2, 0x9F25, 0xF1E4, 0x9F28, 0xF1E8, 0x9F29, 0xF1E7, 0x9F2A, 0xF1E6, 0x9F2B, 0xF1E5, - 0x9F2C, 0xC35E, 0x9F2D, 0xF3F6, 0x9F2E, 0xF5B9, 0x9F2F, 0xC4D3, 0x9F30, 0xF5B8, 0x9F31, 0xF6D1, 0x9F32, 0xF7CB, 0x9F33, 0xF7CA, - 0x9F34, 0xC5C4, 0x9F35, 0xF7C9, 0x9F36, 0xF87C, 0x9F37, 0xF87B, 0x9F38, 0xF87A, 0x9F3B, 0xBBF3, 0x9F3D, 0xECB8, 0x9F3E, 0xC24D, - 0x9F40, 0xF3F7, 0x9F41, 0xF3F8, 0x9F42, 0xF7CC, 0x9F43, 0xF87D, 0x9F46, 0xF8EA, 0x9F47, 0xF966, 0x9F48, 0xF9B9, 0x9F49, 0xF9D4, - 0x9F4A, 0xBBF4, 0x9F4B, 0xC24E, 0x9F4C, 0xF1E9, 0x9F4D, 0xF3F9, 0x9F4E, 0xF6D2, 0x9F4F, 0xF87E, 0x9F52, 0xBEA6, 0x9F54, 0xEFB5, - 0x9F55, 0xF1EA, 0x9F56, 0xF3FA, 0x9F57, 0xF3FB, 0x9F58, 0xF3FC, 0x9F59, 0xF5BE, 0x9F5B, 0xF5BA, 0x9F5C, 0xC568, 0x9F5D, 0xF5BD, - 0x9F5E, 0xF5BC, 0x9F5F, 0xC4D4, 0x9F60, 0xF5BB, 0x9F61, 0xC4D6, 0x9F63, 0xC4D5, 0x9F64, 0xF6D4, 0x9F65, 0xF6D3, 0x9F66, 0xC569, - 0x9F67, 0xC56A, 0x9F6A, 0xC5C6, 0x9F6B, 0xF7CD, 0x9F6C, 0xC5C5, 0x9F6E, 0xF8A3, 0x9F6F, 0xF8A4, 0x9F70, 0xF8A2, 0x9F71, 0xF8A1, - 0x9F72, 0xC654, 0x9F74, 0xF8EB, 0x9F75, 0xF8EC, 0x9F76, 0xF8ED, 0x9F77, 0xC653, 0x9F78, 0xF967, 0x9F79, 0xF96A, 0x9F7A, 0xF969, - 0x9F7B, 0xF968, 0x9F7E, 0xF9D3, 0x9F8D, 0xC073, 0x9F90, 0xC365, 0x9F91, 0xF5BF, 0x9F92, 0xF6D5, 0x9F94, 0xC5C7, 0x9F95, 0xF7CE, - 0x9F98, 0xF9D5, 0x9F9C, 0xC074, 0x9FA0, 0xEFB6, 0x9FA2, 0xF7CF, 0x9FA4, 0xF9A1, 0xFA0C, 0xC94A, 0xFA0D, 0xDDFC, 0xFE30, 0xA14A, - 0xFE31, 0xA157, 0xFE33, 0xA159, 0xFE34, 0xA15B, 0xFE35, 0xA15F, 0xFE36, 0xA160, 0xFE37, 0xA163, 0xFE38, 0xA164, 0xFE39, 0xA167, - 0xFE3A, 0xA168, 0xFE3B, 0xA16B, 0xFE3C, 0xA16C, 0xFE3D, 0xA16F, 0xFE3E, 0xA170, 0xFE3F, 0xA173, 0xFE40, 0xA174, 0xFE41, 0xA177, - 0xFE42, 0xA178, 0xFE43, 0xA17B, 0xFE44, 0xA17C, 0xFE49, 0xA1C6, 0xFE4A, 0xA1C7, 0xFE4B, 0xA1CA, 0xFE4C, 0xA1CB, 0xFE4D, 0xA1C8, - 0xFE4E, 0xA1C9, 0xFE4F, 0xA15C, 0xFE50, 0xA14D, 0xFE51, 0xA14E, 0xFE52, 0xA14F, 0xFE54, 0xA151, 0xFE55, 0xA152, 0xFE56, 0xA153, - 0xFE57, 0xA154, 0xFE59, 0xA17D, 0xFE5A, 0xA17E, 0xFE5B, 0xA1A1, 0xFE5C, 0xA1A2, 0xFE5D, 0xA1A3, 0xFE5E, 0xA1A4, 0xFE5F, 0xA1CC, - 0xFE60, 0xA1CD, 0xFE61, 0xA1CE, 0xFE62, 0xA1DE, 0xFE63, 0xA1DF, 0xFE64, 0xA1E0, 0xFE65, 0xA1E1, 0xFE66, 0xA1E2, 0xFE68, 0xA242, - 0xFE69, 0xA24C, 0xFE6A, 0xA24D, 0xFE6B, 0xA24E, 0xFF01, 0xA149, 0xFF03, 0xA1AD, 0xFF04, 0xA243, 0xFF05, 0xA248, 0xFF06, 0xA1AE, - 0xFF08, 0xA15D, 0xFF09, 0xA15E, 0xFF0A, 0xA1AF, 0xFF0B, 0xA1CF, 0xFF0C, 0xA141, 0xFF0D, 0xA1D0, 0xFF0E, 0xA144, 0xFF0F, 0xA1FE, - 0xFF10, 0xA2AF, 0xFF11, 0xA2B0, 0xFF12, 0xA2B1, 0xFF13, 0xA2B2, 0xFF14, 0xA2B3, 0xFF15, 0xA2B4, 0xFF16, 0xA2B5, 0xFF17, 0xA2B6, - 0xFF18, 0xA2B7, 0xFF19, 0xA2B8, 0xFF1A, 0xA147, 0xFF1B, 0xA146, 0xFF1C, 0xA1D5, 0xFF1D, 0xA1D7, 0xFF1E, 0xA1D6, 0xFF1F, 0xA148, - 0xFF20, 0xA249, 0xFF21, 0xA2CF, 0xFF22, 0xA2D0, 0xFF23, 0xA2D1, 0xFF24, 0xA2D2, 0xFF25, 0xA2D3, 0xFF26, 0xA2D4, 0xFF27, 0xA2D5, - 0xFF28, 0xA2D6, 0xFF29, 0xA2D7, 0xFF2A, 0xA2D8, 0xFF2B, 0xA2D9, 0xFF2C, 0xA2DA, 0xFF2D, 0xA2DB, 0xFF2E, 0xA2DC, 0xFF2F, 0xA2DD, - 0xFF30, 0xA2DE, 0xFF31, 0xA2DF, 0xFF32, 0xA2E0, 0xFF33, 0xA2E1, 0xFF34, 0xA2E2, 0xFF35, 0xA2E3, 0xFF36, 0xA2E4, 0xFF37, 0xA2E5, - 0xFF38, 0xA2E6, 0xFF39, 0xA2E7, 0xFF3A, 0xA2E8, 0xFF3C, 0xA240, 0xFF3F, 0xA1C4, 0xFF41, 0xA2E9, 0xFF42, 0xA2EA, 0xFF43, 0xA2EB, - 0xFF44, 0xA2EC, 0xFF45, 0xA2ED, 0xFF46, 0xA2EE, 0xFF47, 0xA2EF, 0xFF48, 0xA2F0, 0xFF49, 0xA2F1, 0xFF4A, 0xA2F2, 0xFF4B, 0xA2F3, - 0xFF4C, 0xA2F4, 0xFF4D, 0xA2F5, 0xFF4E, 0xA2F6, 0xFF4F, 0xA2F7, 0xFF50, 0xA2F8, 0xFF51, 0xA2F9, 0xFF52, 0xA2FA, 0xFF53, 0xA2FB, - 0xFF54, 0xA2FC, 0xFF55, 0xA2FD, 0xFF56, 0xA2FE, 0xFF57, 0xA340, 0xFF58, 0xA341, 0xFF59, 0xA342, 0xFF5A, 0xA343, 0xFF5B, 0xA161, - 0xFF5C, 0xA155, 0xFF5D, 0xA162, 0xFF5E, 0xA1E3, 0xFFE0, 0xA246, 0xFFE1, 0xA247, 0xFFE3, 0xA1C3, 0xFFE5, 0xA244, 0, 0 -}; - -static const WCHAR oem2uni950[] = { /* Big5 --> Unicode pairs */ - 0xA140, 0x3000, 0xA141, 0xFF0C, 0xA142, 0x3001, 0xA143, 0x3002, 0xA144, 0xFF0E, 0xA145, 0x2027, 0xA146, 0xFF1B, 0xA147, 0xFF1A, - 0xA148, 0xFF1F, 0xA149, 0xFF01, 0xA14A, 0xFE30, 0xA14B, 0x2026, 0xA14C, 0x2025, 0xA14D, 0xFE50, 0xA14E, 0xFE51, 0xA14F, 0xFE52, - 0xA150, 0x00B7, 0xA151, 0xFE54, 0xA152, 0xFE55, 0xA153, 0xFE56, 0xA154, 0xFE57, 0xA155, 0xFF5C, 0xA156, 0x2013, 0xA157, 0xFE31, - 0xA158, 0x2014, 0xA159, 0xFE33, 0xA15A, 0x2574, 0xA15B, 0xFE34, 0xA15C, 0xFE4F, 0xA15D, 0xFF08, 0xA15E, 0xFF09, 0xA15F, 0xFE35, - 0xA160, 0xFE36, 0xA161, 0xFF5B, 0xA162, 0xFF5D, 0xA163, 0xFE37, 0xA164, 0xFE38, 0xA165, 0x3014, 0xA166, 0x3015, 0xA167, 0xFE39, - 0xA168, 0xFE3A, 0xA169, 0x3010, 0xA16A, 0x3011, 0xA16B, 0xFE3B, 0xA16C, 0xFE3C, 0xA16D, 0x300A, 0xA16E, 0x300B, 0xA16F, 0xFE3D, - 0xA170, 0xFE3E, 0xA171, 0x3008, 0xA172, 0x3009, 0xA173, 0xFE3F, 0xA174, 0xFE40, 0xA175, 0x300C, 0xA176, 0x300D, 0xA177, 0xFE41, - 0xA178, 0xFE42, 0xA179, 0x300E, 0xA17A, 0x300F, 0xA17B, 0xFE43, 0xA17C, 0xFE44, 0xA17D, 0xFE59, 0xA17E, 0xFE5A, 0xA1A1, 0xFE5B, - 0xA1A2, 0xFE5C, 0xA1A3, 0xFE5D, 0xA1A4, 0xFE5E, 0xA1A5, 0x2018, 0xA1A6, 0x2019, 0xA1A7, 0x201C, 0xA1A8, 0x201D, 0xA1A9, 0x301D, - 0xA1AA, 0x301E, 0xA1AB, 0x2035, 0xA1AC, 0x2032, 0xA1AD, 0xFF03, 0xA1AE, 0xFF06, 0xA1AF, 0xFF0A, 0xA1B0, 0x203B, 0xA1B1, 0x00A7, - 0xA1B2, 0x3003, 0xA1B3, 0x25CB, 0xA1B4, 0x25CF, 0xA1B5, 0x25B3, 0xA1B6, 0x25B2, 0xA1B7, 0x25CE, 0xA1B8, 0x2606, 0xA1B9, 0x2605, - 0xA1BA, 0x25C7, 0xA1BB, 0x25C6, 0xA1BC, 0x25A1, 0xA1BD, 0x25A0, 0xA1BE, 0x25BD, 0xA1BF, 0x25BC, 0xA1C0, 0x32A3, 0xA1C1, 0x2105, - 0xA1C2, 0x00AF, 0xA1C3, 0xFFE3, 0xA1C4, 0xFF3F, 0xA1C5, 0x02CD, 0xA1C6, 0xFE49, 0xA1C7, 0xFE4A, 0xA1C8, 0xFE4D, 0xA1C9, 0xFE4E, - 0xA1CA, 0xFE4B, 0xA1CB, 0xFE4C, 0xA1CC, 0xFE5F, 0xA1CD, 0xFE60, 0xA1CE, 0xFE61, 0xA1CF, 0xFF0B, 0xA1D0, 0xFF0D, 0xA1D1, 0x00D7, - 0xA1D2, 0x00F7, 0xA1D3, 0x00B1, 0xA1D4, 0x221A, 0xA1D5, 0xFF1C, 0xA1D6, 0xFF1E, 0xA1D7, 0xFF1D, 0xA1D8, 0x2266, 0xA1D9, 0x2267, - 0xA1DA, 0x2260, 0xA1DB, 0x221E, 0xA1DC, 0x2252, 0xA1DD, 0x2261, 0xA1DE, 0xFE62, 0xA1DF, 0xFE63, 0xA1E0, 0xFE64, 0xA1E1, 0xFE65, - 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0xF6D7, 0x56C6, 0xF6D8, 0x56C5, 0xF6D9, 0x56CB, 0xF6DA, 0x5971, 0xF6DB, 0x5B4B, 0xF6DC, 0x5B4C, 0xF6DD, 0x5DD5, 0xF6DE, 0x5DD1, - 0xF6DF, 0x5EF2, 0xF6E0, 0x6521, 0xF6E1, 0x6520, 0xF6E2, 0x6526, 0xF6E3, 0x6522, 0xF6E4, 0x6B0B, 0xF6E5, 0x6B08, 0xF6E6, 0x6B09, - 0xF6E7, 0x6C0D, 0xF6E8, 0x7055, 0xF6E9, 0x7056, 0xF6EA, 0x7057, 0xF6EB, 0x7052, 0xF6EC, 0x721E, 0xF6ED, 0x721F, 0xF6EE, 0x72A9, - 0xF6EF, 0x737F, 0xF6F0, 0x74D8, 0xF6F1, 0x74D5, 0xF6F2, 0x74D9, 0xF6F3, 0x74D7, 0xF6F4, 0x766D, 0xF6F5, 0x76AD, 0xF6F6, 0x7935, - 0xF6F7, 0x79B4, 0xF6F8, 0x7A70, 0xF6F9, 0x7A71, 0xF6FA, 0x7C57, 0xF6FB, 0x7C5C, 0xF6FC, 0x7C59, 0xF6FD, 0x7C5B, 0xF6FE, 0x7C5A, - 0xF740, 0x7CF4, 0xF741, 0x7CF1, 0xF742, 0x7E91, 0xF743, 0x7F4F, 0xF744, 0x7F87, 0xF745, 0x81DE, 0xF746, 0x826B, 0xF747, 0x8634, - 0xF748, 0x8635, 0xF749, 0x8633, 0xF74A, 0x862C, 0xF74B, 0x8632, 0xF74C, 0x8636, 0xF74D, 0x882C, 0xF74E, 0x8828, 0xF74F, 0x8826, - 0xF750, 0x882A, 0xF751, 0x8825, 0xF752, 0x8971, 0xF753, 0x89BF, 0xF754, 0x89BE, 0xF755, 0x89FB, 0xF756, 0x8B7E, 0xF757, 0x8B84, - 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0xF7BA, 0x9DDA, 0xF7BB, 0x9DCB, 0xF7BC, 0x9DD0, 0xF7BD, 0x9DDC, 0xF7BE, 0x9DD1, 0xF7BF, 0x9DDF, 0xF7C0, 0x9DE9, 0xF7C1, 0x9DD9, - 0xF7C2, 0x9DD8, 0xF7C3, 0x9DD6, 0xF7C4, 0x9DF5, 0xF7C5, 0x9DD5, 0xF7C6, 0x9DDD, 0xF7C7, 0x9EB6, 0xF7C8, 0x9EF0, 0xF7C9, 0x9F35, - 0xF7CA, 0x9F33, 0xF7CB, 0x9F32, 0xF7CC, 0x9F42, 0xF7CD, 0x9F6B, 0xF7CE, 0x9F95, 0xF7CF, 0x9FA2, 0xF7D0, 0x513D, 0xF7D1, 0x5299, - 0xF7D2, 0x58E8, 0xF7D3, 0x58E7, 0xF7D4, 0x5972, 0xF7D5, 0x5B4D, 0xF7D6, 0x5DD8, 0xF7D7, 0x882F, 0xF7D8, 0x5F4F, 0xF7D9, 0x6201, - 0xF7DA, 0x6203, 0xF7DB, 0x6204, 0xF7DC, 0x6529, 0xF7DD, 0x6525, 0xF7DE, 0x6596, 0xF7DF, 0x66EB, 0xF7E0, 0x6B11, 0xF7E1, 0x6B12, - 0xF7E2, 0x6B0F, 0xF7E3, 0x6BCA, 0xF7E4, 0x705B, 0xF7E5, 0x705A, 0xF7E6, 0x7222, 0xF7E7, 0x7382, 0xF7E8, 0x7381, 0xF7E9, 0x7383, - 0xF7EA, 0x7670, 0xF7EB, 0x77D4, 0xF7EC, 0x7C67, 0xF7ED, 0x7C66, 0xF7EE, 0x7E95, 0xF7EF, 0x826C, 0xF7F0, 0x863A, 0xF7F1, 0x8640, - 0xF7F2, 0x8639, 0xF7F3, 0x863C, 0xF7F4, 0x8631, 0xF7F5, 0x863B, 0xF7F6, 0x863E, 0xF7F7, 0x8830, 0xF7F8, 0x8832, 0xF7F9, 0x882E, - 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0xF9C0, 0x9480, 0xF9C1, 0x9481, 0xF9C2, 0x9A69, 0xF9C3, 0x9A68, 0xF9C4, 0x9B2E, 0xF9C5, 0x9E19, 0xF9C6, 0x7229, 0xF9C7, 0x864B, - 0xF9C8, 0x8B9F, 0xF9C9, 0x9483, 0xF9CA, 0x9C79, 0xF9CB, 0x9EB7, 0xF9CC, 0x7675, 0xF9CD, 0x9A6B, 0xF9CE, 0x9C7A, 0xF9CF, 0x9E1D, - 0xF9D0, 0x7069, 0xF9D1, 0x706A, 0xF9D2, 0x9EA4, 0xF9D3, 0x9F7E, 0xF9D4, 0x9F49, 0xF9D5, 0x9F98, 0xF9D6, 0x7881, 0xF9D7, 0x92B9, - 0xF9D8, 0x88CF, 0xF9D9, 0x58BB, 0xF9DA, 0x6052, 0xF9DB, 0x7CA7, 0xF9DC, 0x5AFA, 0xF9DD, 0x2554, 0xF9DE, 0x2566, 0xF9DF, 0x2557, - 0xF9E0, 0x2560, 0xF9E1, 0x256C, 0xF9E2, 0x2563, 0xF9E3, 0x255A, 0xF9E4, 0x2569, 0xF9E5, 0x255D, 0xF9E6, 0x2552, 0xF9E7, 0x2564, - 0xF9E8, 0x2555, 0xF9E9, 0x255E, 0xF9EA, 0x256A, 0xF9EB, 0x2561, 0xF9EC, 0x2558, 0xF9ED, 0x2567, 0xF9EE, 0x255B, 0xF9EF, 0x2553, - 0xF9F0, 0x2565, 0xF9F1, 0x2556, 0xF9F2, 0x255F, 0xF9F3, 0x256B, 0xF9F4, 0x2562, 0xF9F5, 0x2559, 0xF9F6, 0x2568, 0xF9F7, 0x255C, - 0xF9F8, 0x2551, 0xF9F9, 0x2550, 0xF9FA, 0x256D, 0xF9FB, 0x256E, 0xF9FC, 0x2570, 0xF9FD, 0x256F, 0xF9FE, 0x2593, 0, 0 -}; -#endif - -#if FF_CODE_PAGE == 437 || FF_CODE_PAGE == 0 -static const WCHAR uc437[] = { /* CP437(U.S.) to Unicode conversion table */ - 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E5, 0x00E7, 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x00EC, 0x00C4, 0x00C5, - 0x00C9, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00F2, 0x00FB, 0x00F9, 0x00FF, 0x00D6, 0x00DC, 0x00A2, 0x00A3, 0x00A5, 0x20A7, 0x0192, - 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, 0x00BF, 0x2310, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, - 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, - 0x03B1, 0x00DF, 0x0393, 0x03C0, 0x03A3, 0x03C3, 0x00B5, 0x03C4, 0x03A6, 0x0398, 0x03A9, 0x03B4, 0x221E, 0x03C6, 0x03B5, 0x2229, - 0x2261, 0x00B1, 0x2265, 0x2264, 0x2320, 0x2321, 0x00F7, 0x2248, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 -}; -#endif -#if FF_CODE_PAGE == 720 || FF_CODE_PAGE == 0 -static const WCHAR uc720[] = { /* CP720(Arabic) to Unicode conversion table */ - 0x0000, 0x0000, 0x00E9, 0x00E2, 0x0000, 0x00E0, 0x0000, 0x00E7, 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x0000, 0x0000, 0x0000, - 0x0000, 0x0651, 0x0652, 0x00F4, 0x00A4, 0x0640, 0x00FB, 0x00F9, 0x0621, 0x0622, 0x0623, 0x0624, 0x00A3, 0x0625, 0x0626, 0x0627, - 0x0628, 0x0629, 0x062A, 0x062B, 0x062C, 0x062D, 0x062E, 0x062F, 0x0630, 0x0631, 0x0632, 0x0633, 0x0634, 0x0635, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, - 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, - 0x0636, 0x0637, 0x0638, 0x0639, 0x063A, 0x0641, 0x00B5, 0x0642, 0x0643, 0x0644, 0x0645, 0x0646, 0x0647, 0x0648, 0x0649, 0x064A, - 0x2261, 0x064B, 0x064C, 0x064D, 0x064E, 0x064F, 0x0650, 0x2248, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 -}; -#endif -#if FF_CODE_PAGE == 737 || FF_CODE_PAGE == 0 -static const WCHAR uc737[] = { /* CP737(Greek) to Unicode conversion table */ - 0x0391, 0x0392, 0x0393, 0x0394, 0x0395, 0x0396, 0x0397, 0x0398, 0x0399, 0x039A, 0x039B, 0x039C, 0x039D, 0x039E, 0x039F, 0x03A0, - 0x03A1, 0x03A3, 0x03A4, 0x03A5, 0x03A6, 0x03A7, 0x03A8, 0x03A9, 0x03B1, 0x03B2, 0x03B3, 0x03B4, 0x03B5, 0x03B6, 0x03B7, 0x03B8, - 0x03B9, 0x03BA, 0x03BB, 0x03BC, 0x03BD, 0x03BE, 0x03BF, 0x03C0, 0x03C1, 0x03C3, 0x03C2, 0x03C4, 0x03C5, 0x03C6, 0x03C7, 0x03C8, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, - 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, - 0x03C9, 0x03AC, 0x03AD, 0x03AE, 0x03CA, 0x03AF, 0x03CC, 0x03CD, 0x03CB, 0x03CE, 0x0386, 0x0388, 0x0389, 0x038A, 0x038C, 0x038E, - 0x038F, 0x00B1, 0x2265, 0x2264, 0x03AA, 0x03AB, 0x00F7, 0x2248, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 -}; -#endif -#if FF_CODE_PAGE == 771 || FF_CODE_PAGE == 0 -static const WCHAR uc771[] = { /* CP771(KBL) to Unicode conversion table */ - 0x0410, 0x0411, 0x0412, 0x0413, 0x0414, 0x0415, 0x0416, 0x0417, 0x0418, 0x0419, 0x041A, 0x041B, 0x041C, 0x041D, 0x041E, 0x041F, - 0x0420, 0x0421, 0x0422, 0x0423, 0x0424, 0x0425, 0x0426, 0x0427, 0x0428, 0x0429, 0x042A, 0x042B, 0x042C, 0x042D, 0x042E, 0x042F, - 0x0430, 0x0431, 0x0432, 0x0433, 0x0434, 0x0435, 0x0436, 0x0437, 0x0438, 0x0439, 0x043A, 0x043B, 0x043C, 0x043D, 0x043E, 0x043F, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x2558, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, - 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x0104, 0x0105, 0x010C, 0x010D, - 0x0440, 0x0441, 0x0442, 0x0443, 0x0444, 0x0445, 0x0446, 0x0447, 0x0448, 0x0449, 0x044A, 0x044B, 0x044C, 0x044D, 0x044E, 0x044F, - 0x0118, 0x0119, 0x0116, 0x0117, 0x012E, 0x012F, 0x0160, 0x0161, 0x0172, 0x0173, 0x016A, 0x016B, 0x017D, 0x017E, 0x25A0, 0x00A0 -}; -#endif -#if FF_CODE_PAGE == 775 || FF_CODE_PAGE == 0 -static const WCHAR uc775[] = { /* CP775(Baltic) to Unicode conversion table */ - 0x0106, 0x00FC, 0x00E9, 0x0101, 0x00E4, 0x0123, 0x00E5, 0x0107, 0x0142, 0x0113, 0x0156, 0x0157, 0x012B, 0x0179, 0x00C4, 0x00C5, - 0x00C9, 0x00E6, 0x00C6, 0x014D, 0x00F6, 0x0122, 0x00A2, 0x015A, 0x015B, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x00D7, 0x00A4, - 0x0100, 0x012A, 0x00F3, 0x017B, 0x017C, 0x017A, 0x201D, 0x00A6, 0x00A9, 0x00AE, 0x00AC, 0x00BD, 0x00BC, 0x0141, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x0104, 0x010C, 0x0118, 0x0116, 0x2563, 0x2551, 0x2557, 0x255D, 0x012E, 0x0160, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x0172, 0x016A, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x017D, - 0x0105, 0x010D, 0x0119, 0x0117, 0x012F, 0x0161, 0x0173, 0x016B, 0x017E, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, - 0x00D3, 0x00DF, 0x014C, 0x0143, 0x00F5, 0x00D5, 0x00B5, 0x0144, 0x0136, 0x0137, 0x013B, 0x013C, 0x0146, 0x0112, 0x0145, 0x2019, - 0x00AD, 0x00B1, 0x201C, 0x00BE, 0x00B6, 0x00A7, 0x00F7, 0x201E, 0x00B0, 0x2219, 0x00B7, 0x00B9, 0x00B3, 0x00B2, 0x25A0, 0x00A0 -}; -#endif -#if FF_CODE_PAGE == 850 || FF_CODE_PAGE == 0 -static const WCHAR uc850[] = { /* CP850(Latin 1) to Unicode conversion table */ - 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E5, 0x00E7, 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x00EC, 0x00C4, 0x00C5, - 0x00C9, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00F2, 0x00FB, 0x00F9, 0x00FF, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x00D7, 0x0192, - 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, 0x00BF, 0x00AE, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x00C1, 0x00C2, 0x00C0, 0x00A9, 0x2563, 0x2551, 0x2557, 0x255D, 0x00A2, 0x00A5, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x00E3, 0x00C3, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, - 0x00F0, 0x00D0, 0x00CA, 0x00CB, 0x00C8, 0x0131, 0x00CD, 0x00CE, 0x00CF, 0x2518, 0x250C, 0x2588, 0x2584, 0x00A6, 0x00CC, 0x2580, - 0x00D3, 0x00DF, 0x00D4, 0x00D2, 0x00F5, 0x00D5, 0x00B5, 0x00FE, 0x00DE, 0x00DA, 0x00DB, 0x00D9, 0x00FD, 0x00DD, 0x00AF, 0x00B4, - 0x00AD, 0x00B1, 0x2017, 0x00BE, 0x00B6, 0x00A7, 0x00F7, 0x00B8, 0x00B0, 0x00A8, 0x00B7, 0x00B9, 0x00B3, 0x00B2, 0x25A0, 0x00A0 -}; -#endif -#if FF_CODE_PAGE == 852 || FF_CODE_PAGE == 0 -static const WCHAR uc852[] = { /* CP852(Latin 2) to Unicode conversion table */ - 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x016F, 0x0107, 0x00E7, 0x0142, 0x00EB, 0x0150, 0x0151, 0x00EE, 0x0179, 0x00C4, 0x0106, - 0x00C9, 0x0139, 0x013A, 0x00F4, 0x00F6, 0x013D, 0x013E, 0x015A, 0x015B, 0x00D6, 0x00DC, 0x0164, 0x0165, 0x0141, 0x00D7, 0x010D, - 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x0104, 0x0105, 0x017D, 0x017E, 0x0118, 0x0119, 0x00AC, 0x017A, 0x010C, 0x015F, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x00C1, 0x00C2, 0x011A, 0x015E, 0x2563, 0x2551, 0x2557, 0x255D, 0x017B, 0x017C, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x0102, 0x0103, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, - 0x0111, 0x0110, 0x010E, 0x00CB, 0x010F, 0x0147, 0x00CD, 0x00CE, 0x011B, 0x2518, 0x250C, 0x2588, 0x2584, 0x0162, 0x016E, 0x2580, - 0x00D3, 0x00DF, 0x00D4, 0x0143, 0x0144, 0x0148, 0x0160, 0x0161, 0x0154, 0x00DA, 0x0155, 0x0170, 0x00FD, 0x00DD, 0x0163, 0x00B4, - 0x00AD, 0x02DD, 0x02DB, 0x02C7, 0x02D8, 0x00A7, 0x00F7, 0x00B8, 0x00B0, 0x00A8, 0x02D9, 0x0171, 0x0158, 0x0159, 0x25A0, 0x00A0 -}; -#endif -#if FF_CODE_PAGE == 855 || FF_CODE_PAGE == 0 -static const WCHAR uc855[] = { /* CP855(Cyrillic) to Unicode conversion table */ - 0x0452, 0x0402, 0x0453, 0x0403, 0x0451, 0x0401, 0x0454, 0x0404, 0x0455, 0x0405, 0x0456, 0x0406, 0x0457, 0x0407, 0x0458, 0x0408, - 0x0459, 0x0409, 0x045A, 0x040A, 0x045B, 0x040B, 0x045C, 0x040C, 0x045E, 0x040E, 0x045F, 0x040F, 0x044E, 0x042E, 0x044A, 0x042A, - 0x0430, 0x0410, 0x0431, 0x0411, 0x0446, 0x0426, 0x0434, 0x0414, 0x0435, 0x0415, 0x0444, 0x0424, 0x0433, 0x0413, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x0445, 0x0425, 0x0438, 0x0418, 0x2563, 0x2551, 0x2557, 0x255D, 0x0439, 0x0419, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x043A, 0x041A, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, - 0x043B, 0x041B, 0x043C, 0x041C, 0x043D, 0x041D, 0x043E, 0x041E, 0x043F, 0x2518, 0x250C, 0x2588, 0x2584, 0x041F, 0x044F, 0x2580, - 0x042F, 0x0440, 0x0420, 0x0441, 0x0421, 0x0442, 0x0422, 0x0443, 0x0423, 0x0436, 0x0416, 0x0432, 0x0412, 0x044C, 0x042C, 0x2116, - 0x00AD, 0x044B, 0x042B, 0x0437, 0x0417, 0x0448, 0x0428, 0x044D, 0x042D, 0x0449, 0x0429, 0x0447, 0x0427, 0x00A7, 0x25A0, 0x00A0 -}; -#endif -#if FF_CODE_PAGE == 857 || FF_CODE_PAGE == 0 -static const WCHAR uc857[] = { /* CP857(Turkish) to Unicode conversion table */ - 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E5, 0x00E7, 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x0131, 0x00C4, 0x00C5, - 0x00C9, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00F2, 0x00FB, 0x00F9, 0x0130, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x015E, 0x015F, - 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x011E, 0x011F, 0x00BF, 0x00AE, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x00C1, 0x00C2, 0x00C0, 0x00A9, 0x2563, 0x2551, 0x2557, 0x255D, 0x00A2, 0x00A5, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x00E3, 0x00C3, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, - 0x00BA, 0x00AA, 0x00CA, 0x00CB, 0x00C8, 0x0000, 0x00CD, 0x00CE, 0x00CF, 0x2518, 0x250C, 0x2588, 0x2584, 0x00A6, 0x00CC, 0x2580, - 0x00D3, 0x00DF, 0x00D4, 0x00D2, 0x00F5, 0x00D5, 0x00B5, 0x0000, 0x00D7, 0x00DA, 0x00DB, 0x00D9, 0x00EC, 0x00FF, 0x00AF, 0x00B4, - 0x00AD, 0x00B1, 0x0000, 0x00BE, 0x00B6, 0x00A7, 0x00F7, 0x00B8, 0x00B0, 0x00A8, 0x00B7, 0x00B9, 0x00B3, 0x00B2, 0x25A0, 0x00A0 -}; -#endif -#if FF_CODE_PAGE == 860 || FF_CODE_PAGE == 0 -static const WCHAR uc860[] = { /* CP860(Portuguese) to Unicode conversion table */ - 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E3, 0x00E0, 0x00C1, 0x00E7, 0x00EA, 0x00CA, 0x00E8, 0x00CD, 0x00D4, 0x00EC, 0x00C3, 0x00C2, - 0x00C9, 0x00C0, 0x00C8, 0x00F4, 0x00F5, 0x00F2, 0x00DA, 0x00F9, 0x00CC, 0x00D5, 0x00DC, 0x00A2, 0x00A3, 0x00D9, 0x20A7, 0x00D3, - 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, 0x00BF, 0x00D2, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x2558, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, - 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, - 0x03B1, 0x00DF, 0x0393, 0x03C0, 0x03A3, 0x03C3, 0x00B5, 0x03C4, 0x03A6, 0x0398, 0x03A9, 0x03B4, 0x221E, 0x03C6, 0x03B5, 0x2229, - 0x2261, 0x00B1, 0x2265, 0x2264, 0x2320, 0x2321, 0x00F7, 0x2248, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 -}; -#endif -#if FF_CODE_PAGE == 861 || FF_CODE_PAGE == 0 -static const WCHAR uc861[] = { /* CP861(Icelandic) to Unicode conversion table */ - 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E6, 0x00E7, 0x00EA, 0x00EB, 0x00E8, 0x00D0, 0x00F0, 0x00DE, 0x00C4, 0x00C5, - 0x00C9, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00FE, 0x00FB, 0x00DD, 0x00FD, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x20A7, 0x0192, - 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00C1, 0x00CD, 0x00D3, 0x00DA, 0x00BF, 0x2310, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, - 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, - 0x03B1, 0x00DF, 0x0393, 0x03C0, 0x03A3, 0x03C3, 0x00B5, 0x03C4, 0x03A6, 0x0398, 0x03A9, 0x03B4, 0x221E, 0x03C6, 0x03B5, 0x2229, - 0x2261, 0x00B1, 0x2265, 0x2264, 0x2320, 0x2321, 0x00F7, 0x2248, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 -}; -#endif -#if FF_CODE_PAGE == 862 || FF_CODE_PAGE == 0 -static const WCHAR uc862[] = { /* CP862(Hebrew) to Unicode conversion table */ - 0x05D0, 0x05D1, 0x05D2, 0x05D3, 0x05D4, 0x05D5, 0x05D6, 0x05D7, 0x05D8, 0x05D9, 0x05DA, 0x05DB, 0x05DC, 0x05DD, 0x05DE, 0x05DF, - 0x05E0, 0x05E1, 0x05E2, 0x05E3, 0x05E4, 0x05E5, 0x05E6, 0x05E7, 0x05E8, 0x05E9, 0x05EA, 0x00A2, 0x00A3, 0x00A5, 0x20A7, 0x0192, - 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, 0x00BF, 0x2310, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, - 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, - 0x03B1, 0x00DF, 0x0393, 0x03C0, 0x03A3, 0x03C3, 0x00B5, 0x03C4, 0x03A6, 0x0398, 0x03A9, 0x03B4, 0x221E, 0x03C6, 0x03B5, 0x2229, - 0x2261, 0x00B1, 0x2265, 0x2264, 0x2320, 0x2321, 0x00F7, 0x2248, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 -}; -#endif -#if FF_CODE_PAGE == 863 || FF_CODE_PAGE == 0 -static const WCHAR uc863[] = { /* CP863(Canadian French) to Unicode conversion table */ - 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00C2, 0x00E0, 0x00B6, 0x00E7, 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x00EC, 0x2017, 0x00C0, - 0x00C9, 0x00C8, 0x00CA, 0x00F4, 0x00CB, 0x00CF, 0x00FB, 0x00F9, 0x00A4, 0x00D4, 0x00DC, 0x00A2, 0x00A3, 0x00D9, 0x00DB, 0x0192, - 0x00A6, 0x00B4, 0x00F3, 0x00FA, 0x00A8, 0x00BB, 0x00B3, 0x00AF, 0x00CE, 0x3210, 0x00AC, 0x00BD, 0x00BC, 0x00BE, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, - 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, - 0x03B1, 0x00DF, 0x0393, 0x03C0, 0x03A3, 0x03C3, 0x00B5, 0x03C4, 0x03A6, 0x0398, 0x03A9, 0x03B4, 0x221E, 0x03C6, 0x03B5, 0x2219, - 0x2261, 0x00B1, 0x2265, 0x2264, 0x2320, 0x2321, 0x00F7, 0x2248, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 -}; -#endif -#if FF_CODE_PAGE == 864 || FF_CODE_PAGE == 0 -static const WCHAR uc864[] = { /* CP864(Arabic) to Unicode conversion table */ - 0x00B0, 0x00B7, 0x2219, 0x221A, 0x2592, 0x2500, 0x2502, 0x253C, 0x2524, 0x252C, 0x251C, 0x2534, 0x2510, 0x250C, 0x2514, 0x2518, - 0x03B2, 0x221E, 0x03C6, 0x00B1, 0x00BD, 0x00BC, 0x2248, 0x00AB, 0x00BB, 0xFEF7, 0xFEF8, 0x0000, 0x0000, 0xFEFB, 0xFEFC, 0x0000, - 0x00A0, 0x00AD, 0xFE82, 0x00A3, 0x00A4, 0xFE84, 0x0000, 0x20AC, 0xFE8E, 0xFE8F, 0xFE95, 0xFE99, 0x060C, 0xFE9D, 0xFEA1, 0xFEA5, - 0x0660, 0x0661, 0x0662, 0x0663, 0x0664, 0x0665, 0x0666, 0x0667, 0x0668, 0x0669, 0xFED1, 0x061B, 0xFEB1, 0xFEB5, 0xFEB9, 0x061F, - 0x00A2, 0xFE80, 0xFE81, 0xFE83, 0xFE85, 0xFECA, 0xFE8B, 0xFE8D, 0xFE91, 0xFE93, 0xFE97, 0xFE9B, 0xFE9F, 0xFEA3, 0xFEA7, 0xFEA9, - 0xFEAB, 0xFEAD, 0xFEAF, 0xFEB3, 0xFEB7, 0xFEBB, 0xFEBF, 0xFEC1, 0xFEC5, 0xFECB, 0xFECF, 0x00A6, 0x00AC, 0x00F7, 0x00D7, 0xFEC9, - 0x0640, 0xFED3, 0xFED7, 0xFEDB, 0xFEDF, 0xFEE3, 0xFEE7, 0xFEEB, 0xFEED, 0xFEEF, 0xFEF3, 0xFEBD, 0xFECC, 0xFECE, 0xFECD, 0xFEE1, - 0xFE7D, 0x0651, 0xFEE5, 0xFEE9, 0xFEEC, 0xFEF0, 0xFEF2, 0xFED0, 0xFED5, 0xFEF5, 0xFEF6, 0xFEDD, 0xFED9, 0xFEF1, 0x25A0, 0x0000 -}; -#endif -#if FF_CODE_PAGE == 865 || FF_CODE_PAGE == 0 -static const WCHAR uc865[] = { /* CP865(Nordic) to Unicode conversion table */ - 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E5, 0x00E7, 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x00EC, 0x00C4, 0x00C5, - 0x00C5, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00F2, 0x00FB, 0x00F9, 0x00FF, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x20A7, 0x0192, - 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, 0x00BF, 0x2310, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00A4, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x2558, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, - 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, - 0x03B1, 0x00DF, 0x0393, 0x03C0, 0x03A3, 0x03C3, 0x00B5, 0x03C4, 0x03A6, 0x0398, 0x03A9, 0x03B4, 0x221E, 0x03C6, 0x03B5, 0x2229, - 0x2261, 0x00B1, 0x2265, 0x2264, 0x2320, 0x2321, 0x00F7, 0x2248, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 -}; -#endif -#if FF_CODE_PAGE == 866 || FF_CODE_PAGE == 0 -static const WCHAR uc866[] = { /* CP866(Russian) to Unicode conversion table */ - 0x0410, 0x0411, 0x0412, 0x0413, 0x0414, 0x0415, 0x0416, 0x0417, 0x0418, 0x0419, 0x041A, 0x041B, 0x041C, 0x041D, 0x041E, 0x041F, - 0x0420, 0x0421, 0x0422, 0x0423, 0x0424, 0x0425, 0x0426, 0x0427, 0x0428, 0x0429, 0x042A, 0x042B, 0x042C, 0x042D, 0x042E, 0x042F, - 0x0430, 0x0431, 0x0432, 0x0433, 0x0434, 0x0435, 0x0436, 0x0437, 0x0438, 0x0439, 0x043A, 0x043B, 0x043C, 0x043D, 0x043E, 0x043F, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, - 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, - 0x0440, 0x0441, 0x0442, 0x0443, 0x0444, 0x0445, 0x0446, 0x0447, 0x0448, 0x0449, 0x044A, 0x044B, 0x044C, 0x044D, 0x044E, 0x044F, - 0x0401, 0x0451, 0x0404, 0x0454, 0x0407, 0x0457, 0x040E, 0x045E, 0x00B0, 0x2219, 0x00B7, 0x221A, 0x2116, 0x00A4, 0x25A0, 0x00A0 -}; -#endif -#if FF_CODE_PAGE == 869 || FF_CODE_PAGE == 0 -static const WCHAR uc869[] = { /* CP869(Greek 2) to Unicode conversion table */ - 0x00B7, 0x00B7, 0x00B7, 0x00B7, 0x00B7, 0x00B7, 0x0386, 0x00B7, 0x00B7, 0x00AC, 0x00A6, 0x2018, 0x2019, 0x0388, 0x2015, 0x0389, - 0x038A, 0x03AA, 0x038C, 0x00B7, 0x00B7, 0x038E, 0x03AB, 0x00A9, 0x038F, 0x00B2, 0x00B3, 0x03AC, 0x00A3, 0x03AD, 0x03AE, 0x03AF, - 0x03CA, 0x0390, 0x03CC, 0x03CD, 0x0391, 0x0392, 0x0393, 0x0394, 0x0395, 0x0396, 0x0397, 0x00BD, 0x0398, 0x0399, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x039A, 0x039B, 0x039C, 0x039D, 0x2563, 0x2551, 0x2557, 0x255D, 0x039E, 0x039F, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x0A30, 0x03A1, 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x03A3, - 0x03A4, 0x03A5, 0x03A6, 0x03A7, 0x03A8, 0x03A9, 0x03B1, 0x03B2, 0x03B3, 0x2518, 0x250C, 0x2588, 0x2584, 0x03B4, 0x03B5, 0x2580, - 0x03B6, 0x03B7, 0x03B8, 0x03B9, 0x03BA, 0x03BB, 0x03BC, 0x03BD, 0x03BE, 0x03BF, 0x03C0, 0x03C1, 0x03C3, 0x03C2, 0x03C4, 0x0384, - 0x00AD, 0x00B1, 0x03C5, 0x03C6, 0x03C7, 0x00A7, 0x03C8, 0x0385, 0x00B0, 0x00A8, 0x03C9, 0x03CB, 0x03B0, 0x03CE, 0x25A0, 0x00A0 -}; -#endif - - - - -/*------------------------------------------------------------------------*/ -/* OEM <==> Unicode conversions for static code page configuration */ -/* SBCS fixed code page */ -/*------------------------------------------------------------------------*/ - -#if FF_CODE_PAGE != 0 && FF_CODE_PAGE < 900 -WCHAR ff_uni2oem ( /* Returns OEM code character, zero on error */ - DWORD uni, /* UTF-16 encoded character to be converted */ - WORD cp /* Code page for the conversion */ -) -{ - WCHAR c = 0; - const WCHAR *p = CVTBL(uc, FF_CODE_PAGE); - - - if (uni < 0x80) { /* ASCII? */ - c = (WCHAR)uni; - - } else { /* Non-ASCII */ - if (uni < 0x10000 && cp == FF_CODE_PAGE) { /* Is it in BMP and valid code page? */ - for (c = 0; c < 0x80 && uni != p[c]; c++) ; - c = (c + 0x80) & 0xFF; - } - } - - return c; -} - -WCHAR ff_oem2uni ( /* Returns Unicode character, zero on error */ - WCHAR oem, /* OEM code to be converted */ - WORD cp /* Code page for the conversion */ -) -{ - WCHAR c = 0; - const WCHAR *p = CVTBL(uc, FF_CODE_PAGE); - - - if (oem < 0x80) { /* ASCII? */ - c = oem; - - } else { /* Extended char */ - if (cp == FF_CODE_PAGE) { /* Is it a valid code page? */ - if (oem < 0x100) c = p[oem - 0x80]; - } - } - - return c; -} - -#endif - - - -/*------------------------------------------------------------------------*/ -/* OEM <==> Unicode conversions for static code page configuration */ -/* DBCS fixed code page */ -/*------------------------------------------------------------------------*/ - -#if FF_CODE_PAGE >= 900 -WCHAR ff_uni2oem ( /* Returns OEM code character, zero on error */ - DWORD uni, /* UTF-16 encoded character to be converted */ - WORD cp /* Code page for the conversion */ -) -{ - const WCHAR *p; - WCHAR c = 0, uc; - UINT i = 0, n, li, hi; - - - if (uni < 0x80) { /* ASCII? */ - c = (WCHAR)uni; - - } else { /* Non-ASCII */ - if (uni < 0x10000 && cp == FF_CODE_PAGE) { /* Is it in BMP and valid code page? */ - uc = (WCHAR)uni; - p = CVTBL(uni2oem, FF_CODE_PAGE); - hi = sizeof CVTBL(uni2oem, FF_CODE_PAGE) / 4 - 1; - li = 0; - for (n = 16; n; n--) { - i = li + (hi - li) / 2; - if (uc == p[i * 2]) break; - if (uc > p[i * 2]) { - li = i; - } else { - hi = i; - } - } - if (n != 0) c = p[i * 2 + 1]; - } - } - - return c; -} - - -WCHAR ff_oem2uni ( /* Returns Unicode character, zero on error */ - WCHAR oem, /* OEM code to be converted */ - WORD cp /* Code page for the conversion */ -) -{ - const WCHAR *p; - WCHAR c = 0; - UINT i = 0, n, li, hi; - - - if (oem < 0x80) { /* ASCII? */ - c = oem; - - } else { /* Extended char */ - if (cp == FF_CODE_PAGE) { /* Is it valid code page? */ - p = CVTBL(oem2uni, FF_CODE_PAGE); - hi = sizeof CVTBL(oem2uni, FF_CODE_PAGE) / 4 - 1; - li = 0; - for (n = 16; n; n--) { - i = li + (hi - li) / 2; - if (oem == p[i * 2]) break; - if (oem > p[i * 2]) { - li = i; - } else { - hi = i; - } - } - if (n != 0) c = p[i * 2 + 1]; - } - } - - return c; -} -#endif - - - -/*------------------------------------------------------------------------*/ -/* OEM <==> Unicode conversions for dynamic code page configuration */ -/*------------------------------------------------------------------------*/ - -#if FF_CODE_PAGE == 0 - -static const WORD cp_code[] = { 437, 720, 737, 771, 775, 850, 852, 855, 857, 860, 861, 862, 863, 864, 865, 866, 869, 0}; -static const WCHAR* const cp_table[] = {uc437, uc720, uc737, uc771, uc775, uc850, uc852, uc855, uc857, uc860, uc861, uc862, uc863, uc864, uc865, uc866, uc869, 0}; - - -WCHAR ff_uni2oem ( /* Returns OEM code character, zero on error */ - DWORD uni, /* UTF-16 encoded character to be converted */ - WORD cp /* Code page for the conversion */ -) -{ - const WCHAR *p; - WCHAR c = 0, uc; - UINT i, n, li, hi; - - - if (uni < 0x80) { /* ASCII? */ - c = (WCHAR)uni; - - } else { /* Non-ASCII */ - if (uni < 0x10000) { /* Is it in BMP? */ - uc = (WCHAR)uni; - p = 0; - if (cp < 900) { /* SBCS */ - for (i = 0; cp_code[i] != 0 && cp_code[i] != cp; i++) ; /* Get conversion table */ - p = cp_table[i]; - if (p) { /* Is it valid code page ? */ - for (c = 0; c < 0x80 && uc != p[c]; c++) ; /* Find OEM code in the table */ - c = (c + 0x80) & 0xFF; - } - } else { /* DBCS */ - switch (cp) { /* Get conversion table */ - case 932 : p = uni2oem932; hi = sizeof uni2oem932 / 4 - 1; break; - case 936 : p = uni2oem936; hi = sizeof uni2oem936 / 4 - 1; break; - case 949 : p = uni2oem949; hi = sizeof uni2oem949 / 4 - 1; break; - case 950 : p = uni2oem950; hi = sizeof uni2oem950 / 4 - 1; break; - } - if (p) { /* Is it valid code page? */ - li = 0; - for (n = 16; n; n--) { /* Find OEM code */ - i = li + (hi - li) / 2; - if (uc == p[i * 2]) break; - if (uc > p[i * 2]) { - li = i; - } else { - hi = i; - } - } - if (n != 0) c = p[i * 2 + 1]; - } - } - } - } - - return c; -} - - -WCHAR ff_oem2uni ( /* Returns Unicode character, zero on error */ - WCHAR oem, /* OEM code to be converted (DBC if >=0x100) */ - WORD cp /* Code page for the conversion */ -) -{ - const WCHAR *p; - WCHAR c = 0; - UINT i, n, li, hi; - - - if (oem < 0x80) { /* ASCII? */ - c = oem; - - } else { /* Extended char */ - p = 0; - if (cp < 900) { /* SBCS */ - for (i = 0; cp_code[i] != 0 && cp_code[i] != cp; i++) ; /* Get table */ - p = cp_table[i]; - if (p) { /* Is it a valid CP ? */ - if (oem < 0x100) c = p[oem - 0x80]; - } - } else { /* DBCS */ - switch (cp) { - case 932 : p = oem2uni932; hi = sizeof oem2uni932 / 4 - 1; break; - case 936 : p = oem2uni936; hi = sizeof oem2uni936 / 4 - 1; break; - case 949 : p = oem2uni949; hi = sizeof oem2uni949 / 4 - 1; break; - case 950 : p = oem2uni950; hi = sizeof oem2uni950 / 4 - 1; break; - } - if (p) { - li = 0; - for (n = 16; n; n--) { - i = li + (hi - li) / 2; - if (oem == p[i * 2]) break; - if (oem > p[i * 2]) { - li = i; - } else { - hi = i; - } - } - if (n != 0) c = p[i * 2 + 1]; - } - } - } - - return c; -} -#endif - - - -/*------------------------------------------------------------------------*/ -/* Unicode up-case conversion */ -/*------------------------------------------------------------------------*/ - -DWORD ff_wtoupper ( /* Returns up-converted code point */ - DWORD uni /* Unicode code point to be up-converted */ -) -{ - const WORD *p; - WORD uc, bc, nc, cmd; - static const WORD cvt1[] = { /* Compressed up conversion table for U+0000 - U+0FFF */ - /* Basic Latin */ - 0x0061,0x031A, - /* Latin-1 Supplement */ - 0x00E0,0x0317, - 0x00F8,0x0307, - 0x00FF,0x0001,0x0178, - /* Latin Extended-A */ - 0x0100,0x0130, - 0x0132,0x0106, - 0x0139,0x0110, - 0x014A,0x012E, - 0x0179,0x0106, - /* Latin Extended-B */ - 0x0180,0x004D,0x0243,0x0181,0x0182,0x0182,0x0184,0x0184,0x0186,0x0187,0x0187,0x0189,0x018A,0x018B,0x018B,0x018D,0x018E,0x018F,0x0190,0x0191,0x0191,0x0193,0x0194,0x01F6,0x0196,0x0197,0x0198,0x0198,0x023D,0x019B,0x019C,0x019D,0x0220,0x019F,0x01A0,0x01A0,0x01A2,0x01A2,0x01A4,0x01A4,0x01A6,0x01A7,0x01A7,0x01A9,0x01AA,0x01AB,0x01AC,0x01AC,0x01AE,0x01AF,0x01AF,0x01B1,0x01B2,0x01B3,0x01B3,0x01B5,0x01B5,0x01B7,0x01B8,0x01B8,0x01BA,0x01BB,0x01BC,0x01BC,0x01BE,0x01F7,0x01C0,0x01C1,0x01C2,0x01C3,0x01C4,0x01C5,0x01C4,0x01C7,0x01C8,0x01C7,0x01CA,0x01CB,0x01CA, - 0x01CD,0x0110, - 0x01DD,0x0001,0x018E, - 0x01DE,0x0112, - 0x01F3,0x0003,0x01F1,0x01F4,0x01F4, - 0x01F8,0x0128, - 0x0222,0x0112, - 0x023A,0x0009,0x2C65,0x023B,0x023B,0x023D,0x2C66,0x023F,0x0240,0x0241,0x0241, - 0x0246,0x010A, - /* IPA Extensions */ - 0x0253,0x0040,0x0181,0x0186,0x0255,0x0189,0x018A,0x0258,0x018F,0x025A,0x0190,0x025C,0x025D,0x025E,0x025F,0x0193,0x0261,0x0262,0x0194,0x0264,0x0265,0x0266,0x0267,0x0197,0x0196,0x026A,0x2C62,0x026C,0x026D,0x026E,0x019C,0x0270,0x0271,0x019D,0x0273,0x0274,0x019F,0x0276,0x0277,0x0278,0x0279,0x027A,0x027B,0x027C,0x2C64,0x027E,0x027F,0x01A6,0x0281,0x0282,0x01A9,0x0284,0x0285,0x0286,0x0287,0x01AE,0x0244,0x01B1,0x01B2,0x0245,0x028D,0x028E,0x028F,0x0290,0x0291,0x01B7, - /* Greek, Coptic */ - 0x037B,0x0003,0x03FD,0x03FE,0x03FF, - 0x03AC,0x0004,0x0386,0x0388,0x0389,0x038A, - 0x03B1,0x0311, - 0x03C2,0x0002,0x03A3,0x03A3, - 0x03C4,0x0308, - 0x03CC,0x0003,0x038C,0x038E,0x038F, - 0x03D8,0x0118, - 0x03F2,0x000A,0x03F9,0x03F3,0x03F4,0x03F5,0x03F6,0x03F7,0x03F7,0x03F9,0x03FA,0x03FA, - /* Cyrillic */ - 0x0430,0x0320, - 0x0450,0x0710, - 0x0460,0x0122, - 0x048A,0x0136, - 0x04C1,0x010E, - 0x04CF,0x0001,0x04C0, - 0x04D0,0x0144, - /* Armenian */ - 0x0561,0x0426, - - 0x0000 /* EOT */ - }; - static const WORD cvt2[] = { /* Compressed up conversion table for U+1000 - U+FFFF */ - /* Phonetic Extensions */ - 0x1D7D,0x0001,0x2C63, - /* Latin Extended Additional */ - 0x1E00,0x0196, - 0x1EA0,0x015A, - /* Greek Extended */ - 0x1F00,0x0608, - 0x1F10,0x0606, - 0x1F20,0x0608, - 0x1F30,0x0608, - 0x1F40,0x0606, - 0x1F51,0x0007,0x1F59,0x1F52,0x1F5B,0x1F54,0x1F5D,0x1F56,0x1F5F, - 0x1F60,0x0608, - 0x1F70,0x000E,0x1FBA,0x1FBB,0x1FC8,0x1FC9,0x1FCA,0x1FCB,0x1FDA,0x1FDB,0x1FF8,0x1FF9,0x1FEA,0x1FEB,0x1FFA,0x1FFB, - 0x1F80,0x0608, - 0x1F90,0x0608, - 0x1FA0,0x0608, - 0x1FB0,0x0004,0x1FB8,0x1FB9,0x1FB2,0x1FBC, - 0x1FCC,0x0001,0x1FC3, - 0x1FD0,0x0602, - 0x1FE0,0x0602, - 0x1FE5,0x0001,0x1FEC, - 0x1FF3,0x0001,0x1FFC, - /* Letterlike Symbols */ - 0x214E,0x0001,0x2132, - /* Number forms */ - 0x2170,0x0210, - 0x2184,0x0001,0x2183, - /* Enclosed Alphanumerics */ - 0x24D0,0x051A, - 0x2C30,0x042F, - /* Latin Extended-C */ - 0x2C60,0x0102, - 0x2C67,0x0106, 0x2C75,0x0102, - /* Coptic */ - 0x2C80,0x0164, - /* Georgian Supplement */ - 0x2D00,0x0826, - /* Full-width */ - 0xFF41,0x031A, - - 0x0000 /* EOT */ - }; - - - if (uni < 0x10000) { /* Is it in BMP? */ - uc = (WORD)uni; - p = uc < 0x1000 ? cvt1 : cvt2; - for (;;) { - bc = *p++; /* Get the block base */ - if (bc == 0 || uc < bc) break; /* Not matched? */ - nc = *p++; cmd = nc >> 8; nc &= 0xFF; /* Get processing command and block size */ - if (uc < bc + nc) { /* In the block? */ - switch (cmd) { - case 0: uc = p[uc - bc]; break; /* Table conversion */ - case 1: uc -= (uc - bc) & 1; break; /* Case pairs */ - case 2: uc -= 16; break; /* Shift -16 */ - case 3: uc -= 32; break; /* Shift -32 */ - case 4: uc -= 48; break; /* Shift -48 */ - case 5: uc -= 26; break; /* Shift -26 */ - case 6: uc += 8; break; /* Shift +8 */ - case 7: uc -= 80; break; /* Shift -80 */ - case 8: uc -= 0x1C60; break; /* Shift -0x1C60 */ - } - break; - } - if (cmd == 0) p += nc; /* Skip table if needed */ - } - uni = uc; - } - - return uni; -} - - -#endif /* #if FF_USE_LFN */ diff --git a/Marlin/lib/fat_fs/src/integer.h b/Marlin/lib/fat_fs/src/integer.h deleted file mode 100644 index 2741b70095..0000000000 --- a/Marlin/lib/fat_fs/src/integer.h +++ /dev/null @@ -1,46 +0,0 @@ -/*-------------------------------------------*/ -/* Integer type definitions for FatFs module */ -/*-------------------------------------------*/ - -#ifndef _INTEGER - -#if 0 -#include -#else - -#include "usb_conf.h" - -/* These types must be 16-bit, 32-bit or larger integer */ -typedef int INT; -typedef unsigned int UINT; - -/* These types must be 8-bit integer */ -typedef signed char CHAR; -typedef unsigned char UCHAR; -typedef unsigned char BYTE; - -/* These types must be 16-bit integer */ -typedef short SHORT; -typedef unsigned short USHORT; -typedef unsigned short WORD; -typedef unsigned short WCHAR; - -/* These types must be 32-bit integer */ -typedef long LONG; -typedef unsigned long ULONG; -typedef unsigned long DWORD; - -/* Boolean type */ -// typedef enum { FALSE = 0, TRUE } BOOL; -#include -//typedef bool BOOL; -#ifndef FALSE -#define FALSE false -#define TRUE true -#endif - - -#endif - -#define _INTEGER -#endif diff --git a/Marlin/lib/fat_fs/src/option/ccsbcs.c b/Marlin/lib/fat_fs/src/option/ccsbcs.c deleted file mode 100644 index a2da326142..0000000000 --- a/Marlin/lib/fat_fs/src/option/ccsbcs.c +++ /dev/null @@ -1,541 +0,0 @@ -/*------------------------------------------------------------------------*/ -/* Unicode - Local code bidirectional converter (C)ChaN, 2009 */ -/* (SBCS code pages) */ -/*------------------------------------------------------------------------*/ -/* 437 U.S. (OEM) -/ 720 Arabic (OEM) -/ 1256 Arabic (Windows) -/ 737 Greek (OEM) -/ 1253 Greek (Windows) -/ 1250 Central Europe (Windows) -/ 775 Baltic (OEM) -/ 1257 Baltic (Windows) -/ 850 Multilingual Latin 1 (OEM) -/ 852 Latin 2 (OEM) -/ 1252 Latin 1 (Windows) -/ 855 Cyrillic (OEM) -/ 1251 Cyrillic (Windows) -/ 866 Russian (OEM) -/ 857 Turkish (OEM) -/ 1254 Turkish (Windows) -/ 858 Multilingual Latin 1 + Euro (OEM) -/ 862 Hebrew (OEM) -/ 1255 Hebrew (Windows) -/ 874 Thai (OEM, Windows) -/ 1258 Vietnam (OEM, Windows) -*/ - -//#include "../ff.h" //RPi -#include "ff.h" //RPi - - -#if _CODE_PAGE == 437 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP437(0x80-0xFF) to Unicode conversion table */ - 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E5, 0x00E7, - 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x00EC, 0x00C4, 0x00C5, - 0x00C9, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00F2, 0x00FB, 0x00F9, - 0x00FF, 0x00D6, 0x00DC, 0x00A2, 0x00A3, 0x00A5, 0x20A7, 0x0192, - 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, - 0x00BF, 0x2310, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, - 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, - 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, - 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, - 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, - 0x03B1, 0x00DF, 0x0393, 0x03C0, 0x03A3, 0x03C3, 0x00B5, 0x03C4, - 0x03A6, 0x0398, 0x03A9, 0x03B4, 0x221E, 0x03C6, 0x03B5, 0x2229, - 0x2261, 0x00B1, 0x2265, 0x2264, 0x2320, 0x2321, 0x00F7, 0x2248, - 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 -}; - -#elif _CODE_PAGE == 720 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP720(0x80-0xFF) to Unicode conversion table */ - 0x0000, 0x0000, 0x00E9, 0x00E2, 0x0000, 0x00E0, 0x0000, 0x00E7, - 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x0000, 0x0000, 0x0000, - 0x0000, 0x0651, 0x0652, 0x00F4, 0x00A4, 0x0640, 0x00FB, 0x00F9, - 0x0621, 0x0622, 0x0623, 0x0624, 0x00A3, 0x0625, 0x0626, 0x0627, - 0x0628, 0x0629, 0x062A, 0x062B, 0x062C, 0x062D, 0x062E, 0x062F, - 0x0630, 0x0631, 0x0632, 0x0633, 0x0634, 0x0635, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, - 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, - 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, - 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, - 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, - 0x0636, 0x0637, 0x0638, 0x0639, 0x063A, 0x0641, 0x00B5, 0x0642, - 0x0643, 0x0644, 0x0645, 0x0646, 0x0647, 0x0648, 0x0649, 0x064A, - 0x2261, 0x064B, 0x064C, 0x064D, 0x064E, 0x064F, 0xO650, 0x2248, - 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 -}; - -#elif _CODE_PAGE == 737 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP737(0x80-0xFF) to Unicode conversion table */ - 0x0391, 0x0392, 0x0393, 0x0394, 0x0395, 0x0396, 0x0397, 0x0398, - 0x0399, 0x039A, 0x039B, 0x039C, 0x039D, 0x039E, 0x039F, 0x03A0, - 0x03A1, 0x03A3, 0x03A4, 0x03A5, 0x03A6, 0x03A7, 0x03A8, 0x03A9, - 0x03B1, 0x03B2, 0x03B3, 0x03B4, 0x03B5, 0x03B6, 0x03B7, 0x03B8, - 0x03B9, 0x03BA, 0x03BB, 0x03BC, 0x03BD, 0x03BE, 0x03BF, 0x03C0, - 0x03C1, 0x03C3, 0x03C2, 0x03C4, 0x03C5, 0x03C6, 0x03C7, 0x03C8, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, - 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, - 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, - 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, - 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, - 0x03C9, 0x03AC, 0x03AD, 0x03AE, 0x03CA, 0x03AF, 0x03CC, 0x03CD, - 0x03CB, 0x03CE, 0x0386, 0x0388, 0x0389, 0x038A, 0x038C, 0x038E, - 0x038F, 0x00B1, 0x2265, 0x2264, 0x03AA, 0x03AB, 0x00F7, 0x2248, - 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 -}; - -#elif _CODE_PAGE == 775 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP775(0x80-0xFF) to Unicode conversion table */ - 0x0106, 0x00FC, 0x00E9, 0x0101, 0x00E4, 0x0123, 0x00E5, 0x0107, - 0x0142, 0x0113, 0x0156, 0x0157, 0x012B, 0x0179, 0x00C4, 0x00C5, - 0x00C9, 0x00E6, 0x00C6, 0x014D, 0x00F6, 0x0122, 0x00A2, 0x015A, - 0x015B, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x00D7, 0x00A4, - 0x0100, 0x012A, 0x00F3, 0x017B, 0x017C, 0x017A, 0x201D, 0x00A6, - 0x00A9, 0x00AE, 0x00AC, 0x00BD, 0x00BC, 0x0141, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x0104, 0x010C, 0x0118, - 0x0116, 0x2563, 0x2551, 0x2557, 0x255D, 0x012E, 0x0160, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x0172, 0x016A, - 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x017D, - 0x0105, 0x010D, 0x0119, 0x0117, 0x012F, 0x0161, 0x0173, 0x016B, - 0x017E, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, - 0x00D3, 0x00DF, 0x014C, 0x0143, 0x00F5, 0x00D5, 0x00B5, 0x0144, - 0x0136, 0x0137, 0x013B, 0x013C, 0x0146, 0x0112, 0x0145, 0x2019, - 0x00AD, 0x00B1, 0x201C, 0x00BE, 0x00B6, 0x00A7, 0x00F7, 0x201E, - 0x00B0, 0x2219, 0x00B7, 0x00B9, 0x00B3, 0x00B2, 0x25A0, 0x00A0 -}; - -#elif _CODE_PAGE == 850 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP850(0x80-0xFF) to Unicode conversion table */ - 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E5, 0x00E7, - 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x00EC, 0x00C4, 0x00C5, - 0x00C9, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00F2, 0x00FB, 0x00F9, - 0x00FF, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x00D7, 0x0192, - 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, - 0x00BF, 0x00AE, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x00C1, 0x00C2, 0x00C0, - 0x00A9, 0x2563, 0x2551, 0x2557, 0x255D, 0x00A2, 0x00A5, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x00E3, 0x00C3, - 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, - 0x00F0, 0x00D0, 0x00CA, 0x00CB, 0x00C8, 0x0131, 0x00CD, 0x00CE, - 0x00CF, 0x2518, 0x250C, 0x2588, 0x2584, 0x00A6, 0x00CC, 0x2580, - 0x00D3, 0x00DF, 0x00D4, 0x00D2, 0x00F5, 0x00D5, 0x00B5, 0x00FE, - 0x00DE, 0x00DA, 0x00DB, 0x00D9, 0x00FD, 0x00DD, 0x00AF, 0x00B4, - 0x00AD, 0x00B1, 0x2017, 0x00BE, 0x00B6, 0x00A7, 0x00F7, 0x00B8, - 0x00B0, 0x00A8, 0x00B7, 0x00B9, 0x00B3, 0x00B2, 0x25A0, 0x00A0 -}; - -#elif _CODE_PAGE == 852 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP852(0x80-0xFF) to Unicode conversion table */ - 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x016F, 0x0107, 0x00E7, - 0x0142, 0x00EB, 0x0150, 0x0151, 0x00EE, 0x0179, 0x00C4, 0x0106, - 0x00C9, 0x0139, 0x013A, 0x00F4, 0x00F6, 0x013D, 0x013E, 0x015A, - 0x015B, 0x00D6, 0x00DC, 0x0164, 0x0165, 0x0141, 0x00D7, 0x010D, - 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x0104, 0x0105, 0x017D, 0x017E, - 0x0118, 0x0119, 0x00AC, 0x017A, 0x010C, 0x015F, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x00C1, 0x00C2, 0x011A, - 0x015E, 0x2563, 0x2551, 0x2557, 0x255D, 0x017B, 0x017C, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x0102, 0x0103, - 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, - 0x0111, 0x0110, 0x010E, 0x00CB, 0x010F, 0x0147, 0x00CD, 0x00CE, - 0x011B, 0x2518, 0x250C, 0x2588, 0x2584, 0x0162, 0x016E, 0x2580, - 0x00D3, 0x00DF, 0x00D4, 0x0143, 0x0144, 0x0148, 0x0160, 0x0161, - 0x0154, 0x00DA, 0x0155, 0x0170, 0x00FD, 0x00DD, 0x0163, 0x00B4, - 0x00AD, 0x02DD, 0x02DB, 0x02C7, 0x02D8, 0x00A7, 0x00F7, 0x00B8, - 0x00B0, 0x00A8, 0x02D9, 0x0171, 0x0158, 0x0159, 0x25A0, 0x00A0 -}; - -#elif _CODE_PAGE == 855 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP855(0x80-0xFF) to Unicode conversion table */ - 0x0452, 0x0402, 0x0453, 0x0403, 0x0451, 0x0401, 0x0454, 0x0404, - 0x0455, 0x0405, 0x0456, 0x0406, 0x0457, 0x0407, 0x0458, 0x0408, - 0x0459, 0x0409, 0x045A, 0x040A, 0x045B, 0x040B, 0x045C, 0x040C, - 0x045E, 0x040E, 0x045F, 0x040F, 0x044E, 0x042E, 0x044A, 0x042A, - 0x0430, 0x0410, 0x0431, 0x0411, 0x0446, 0x0426, 0x0434, 0x0414, - 0x0435, 0x0415, 0x0444, 0x0424, 0x0433, 0x0413, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x0445, 0x0425, 0x0438, - 0x0418, 0x2563, 0x2551, 0x2557, 0x255D, 0x0439, 0x0419, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x043A, 0x041A, - 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, - 0x043B, 0x041B, 0x043C, 0x041C, 0x043D, 0x041D, 0x043E, 0x041E, - 0x043F, 0x2518, 0x250C, 0x2588, 0x2584, 0x041F, 0x044F, 0x2580, - 0x042F, 0x0440, 0x0420, 0x0441, 0x0421, 0x0442, 0x0422, 0x0443, - 0x0423, 0x0436, 0x0416, 0x0432, 0x0412, 0x044C, 0x042C, 0x2116, - 0x00AD, 0x044B, 0x042B, 0x0437, 0x0417, 0x0448, 0x0428, 0x044D, - 0x042D, 0x0449, 0x0429, 0x0447, 0x0427, 0x00A7, 0x25A0, 0x00A0 -}; - -#elif _CODE_PAGE == 857 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP857(0x80-0xFF) to Unicode conversion table */ - 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E5, 0x00E7, - 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x0131, 0x00C4, 0x00C5, - 0x00C9, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00F2, 0x00FB, 0x00F9, - 0x0130, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x015E, 0x015F, - 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x011E, 0x011F, - 0x00BF, 0x00AE, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x00C1, 0x00C2, 0x00C0, - 0x00A9, 0x2563, 0x2551, 0x2557, 0x255D, 0x00A2, 0x00A5, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x00E3, 0x00C3, - 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, - 0x00BA, 0x00AA, 0x00CA, 0x00CB, 0x00C8, 0x0000, 0x00CD, 0x00CE, - 0x00CF, 0x2518, 0x250C, 0x2588, 0x2584, 0x00A6, 0x00CC, 0x2580, - 0x00D3, 0x00DF, 0x00D4, 0x00D2, 0x00F5, 0x00D5, 0x00B5, 0x0000, - 0x00D7, 0x00DA, 0x00DB, 0x00D9, 0x00EC, 0x00FF, 0x00AF, 0x00B4, - 0x00AD, 0x00B1, 0x0000, 0x00BE, 0x00B6, 0x00A7, 0x00F7, 0x00B8, - 0x00B0, 0x00A8, 0x00B7, 0x00B9, 0x00B3, 0x00B2, 0x25A0, 0x00A0 -}; - -#elif _CODE_PAGE == 858 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP858(0x80-0xFF) to Unicode conversion table */ - 0x00C7, 0x00FC, 0x00E9, 0x00E2, 0x00E4, 0x00E0, 0x00E5, 0x00E7, - 0x00EA, 0x00EB, 0x00E8, 0x00EF, 0x00EE, 0x00EC, 0x00C4, 0x00C5, - 0x00C9, 0x00E6, 0x00C6, 0x00F4, 0x00F6, 0x00F2, 0x00FB, 0x00F9, - 0x00FF, 0x00D6, 0x00DC, 0x00F8, 0x00A3, 0x00D8, 0x00D7, 0x0192, - 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, - 0x00BF, 0x00AE, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x00C1, 0x00C2, 0x00C0, - 0x00A9, 0x2563, 0x2551, 0x2557, 0x2550, 0x00A2, 0x00A5, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x00E3, 0x00C3, - 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x00A4, - 0x00F0, 0x00D0, 0x00CA, 0x00CB, 0x00C8, 0x20AC, 0x00CD, 0x00CE, - 0x00CF, 0x2518, 0x250C, 0x2588, 0x2584, 0x00C6, 0x00CC, 0x2580, - 0x00D3, 0x00DF, 0x00D4, 0x00D2, 0x00F5, 0x00D5, 0x00B5, 0x00FE, - 0x00DE, 0x00DA, 0x00DB, 0x00D9, 0x00FD, 0x00DD, 0x00AF, 0x00B4, - 0x00AD, 0x00B1, 0x2017, 0x00BE, 0x00B6, 0x00A7, 0x00F7, 0x00B8, - 0x00B0, 0x00A8, 0x00B7, 0x00B9, 0x00B3, 0x00B2, 0x25A0, 0x00A0 -}; - -#elif _CODE_PAGE == 862 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP862(0x80-0xFF) to Unicode conversion table */ - 0x05D0, 0x05D1, 0x05D2, 0x05D3, 0x05D4, 0x05D5, 0x05D6, 0x05D7, - 0x05D8, 0x05D9, 0x05DA, 0x05DB, 0x05DC, 0x05DD, 0x05DE, 0x05DF, - 0x05E0, 0x05E1, 0x05E2, 0x05E3, 0x05E4, 0x05E5, 0x05E6, 0x05E7, - 0x05E8, 0x05E9, 0x05EA, 0x00A2, 0x00A3, 0x00A5, 0x20A7, 0x0192, - 0x00E1, 0x00ED, 0x00F3, 0x00FA, 0x00F1, 0x00D1, 0x00AA, 0x00BA, - 0x00BF, 0x2310, 0x00AC, 0x00BD, 0x00BC, 0x00A1, 0x00AB, 0x00BB, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, - 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, - 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, - 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, - 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, - 0x03B1, 0x00DF, 0x0393, 0x03C0, 0x03A3, 0x03C3, 0x00B5, 0x03C4, - 0x03A6, 0x0398, 0x03A9, 0x03B4, 0x221E, 0x03C6, 0x03B5, 0x2229, - 0x2261, 0x00B1, 0x2265, 0x2264, 0x2320, 0x2321, 0x00F7, 0x2248, - 0x00B0, 0x2219, 0x00B7, 0x221A, 0x207F, 0x00B2, 0x25A0, 0x00A0 -}; - -#elif _CODE_PAGE == 866 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP866(0x80-0xFF) to Unicode conversion table */ - 0x0410, 0x0411, 0x0412, 0x0413, 0x0414, 0x0415, 0x0416, 0x0417, - 0x0418, 0x0419, 0x041A, 0x041B, 0x041C, 0x041D, 0x041E, 0x041F, - 0x0420, 0x0421, 0x0422, 0x0423, 0x0424, 0x0425, 0x0426, 0x0427, - 0x0428, 0x0429, 0x042A, 0x042B, 0x042C, 0x042D, 0x042E, 0x042F, - 0x0430, 0x0431, 0x0432, 0x0433, 0x0434, 0x0435, 0x0436, 0x0437, - 0x0438, 0x0439, 0x043A, 0x043B, 0x043C, 0x043D, 0x043E, 0x043F, - 0x2591, 0x2592, 0x2593, 0x2502, 0x2524, 0x2561, 0x2562, 0x2556, - 0x2555, 0x2563, 0x2551, 0x2557, 0x255D, 0x255C, 0x255B, 0x2510, - 0x2514, 0x2534, 0x252C, 0x251C, 0x2500, 0x253C, 0x255E, 0x255F, - 0x255A, 0x2554, 0x2569, 0x2566, 0x2560, 0x2550, 0x256C, 0x2567, - 0x2568, 0x2564, 0x2565, 0x2559, 0x2558, 0x2552, 0x2553, 0x256B, - 0x256A, 0x2518, 0x250C, 0x2588, 0x2584, 0x258C, 0x2590, 0x2580, - 0x0440, 0x0441, 0x0442, 0x0443, 0x0444, 0x0445, 0x0446, 0x0447, - 0x0448, 0x0449, 0x044A, 0x044B, 0x044C, 0x044D, 0x044E, 0x044F, - 0x0401, 0x0451, 0x0404, 0x0454, 0x0407, 0x0457, 0x040E, 0x045E, - 0x00B0, 0x2219, 0x00B7, 0x221A, 0x2116, 0x00A4, 0x25A0, 0x00A0 -}; - -#elif _CODE_PAGE == 874 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP874(0x80-0xFF) to Unicode conversion table */ - 0x20AC, 0x0000, 0x0000, 0x0000, 0x0000, 0x2026, 0x0000, 0x0000, - 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, - 0x0000, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, - 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, - 0x00A0, 0x0E01, 0x0E02, 0x0E03, 0x0E04, 0x0E05, 0x0E06, 0x0E07, - 0x0E08, 0x0E09, 0x0E0A, 0x0E0B, 0x0E0C, 0x0E0D, 0x0E0E, 0x0E0F, - 0x0E10, 0x0E11, 0x0E12, 0x0E13, 0x0E14, 0x0E15, 0x0E16, 0x0E17, - 0x0E18, 0x0E19, 0x0E1A, 0x0E1B, 0x0E1C, 0x0E1D, 0x0E1E, 0x0E1F, - 0x0E20, 0x0E21, 0x0E22, 0x0E23, 0x0E24, 0x0E25, 0x0E26, 0x0E27, - 0x0E28, 0x0E29, 0x0E2A, 0x0E2B, 0x0E2C, 0x0E2D, 0x0E2E, 0x0E2F, - 0x0E30, 0x0E31, 0x0E32, 0x0E33, 0x0E34, 0x0E35, 0x0E36, 0x0E37, - 0x0E38, 0x0E39, 0x0E3A, 0x0000, 0x0000, 0x0000, 0x0000, 0x0E3F, - 0x0E40, 0x0E41, 0x0E42, 0x0E43, 0x0E44, 0x0E45, 0x0E46, 0x0E47, - 0x0E48, 0x0E49, 0x0E4A, 0x0E4B, 0x0E4C, 0x0E4D, 0x0E4E, 0x0E4F, - 0x0E50, 0x0E51, 0x0E52, 0x0E53, 0x0E54, 0x0E55, 0x0E56, 0x0E57, - 0x0E58, 0x0E59, 0x0E5A, 0x0E5B, 0x0000, 0x0000, 0x0000, 0x0000 -}; - -#elif _CODE_PAGE == 1250 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP1250(0x80-0xFF) to Unicode conversion table */ - 0x20AC, 0x0000, 0x201A, 0x0000, 0x201E, 0x2026, 0x2020, 0x2021, - 0x0000, 0x2030, 0x0160, 0x2039, 0x015A, 0x0164, 0x017D, 0x0179, - 0x0000, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, - 0x0000, 0x2122, 0x0161, 0x203A, 0x015B, 0x0165, 0x017E, 0x017A, - 0x00A0, 0x02C7, 0x02D8, 0x0141, 0x00A4, 0x0104, 0x00A6, 0x00A7, - 0x00A8, 0x00A9, 0x015E, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x017B, - 0x00B0, 0x00B1, 0x02DB, 0x0142, 0x00B4, 0x00B5, 0x00B6, 0x00B7, - 0x00B8, 0x0105, 0x015F, 0x00BB, 0x013D, 0x02DD, 0x013E, 0x017C, - 0x0154, 0x00C1, 0x00C2, 0x0102, 0x00C4, 0x0139, 0x0106, 0x00C7, - 0x010C, 0x00C9, 0x0118, 0x00CB, 0x011A, 0x00CD, 0x00CE, 0x010E, - 0x0110, 0x0143, 0x0147, 0x00D3, 0x00D4, 0x0150, 0x00D6, 0x00D7, - 0x0158, 0x016E, 0x00DA, 0x0170, 0x00DC, 0x00DD, 0x0162, 0x00DF, - 0x0155, 0x00E1, 0x00E2, 0x0103, 0x00E4, 0x013A, 0x0107, 0x00E7, - 0x010D, 0x00E9, 0x0119, 0x00EB, 0x011B, 0x00ED, 0x00EE, 0x010F, - 0x0111, 0x0144, 0x0148, 0x00F3, 0x00F4, 0x0151, 0x00F6, 0x00F7, - 0x0159, 0x016F, 0x00FA, 0x0171, 0x00FC, 0x00FD, 0x0163, 0x02D9 -}; - -#elif _CODE_PAGE == 1251 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP1251(0x80-0xFF) to Unicode conversion table */ - 0x0402, 0x0403, 0x201A, 0x0453, 0x201E, 0x2026, 0x2020, 0x2021, - 0x20AC, 0x2030, 0x0409, 0x2039, 0x040A, 0x040C, 0x040B, 0x040F, - 0x0452, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, - 0x0000, 0x2111, 0x0459, 0x203A, 0x045A, 0x045C, 0x045B, 0x045F, - 0x00A0, 0x040E, 0x045E, 0x0408, 0x00A4, 0x0490, 0x00A6, 0x00A7, - 0x0401, 0x00A9, 0x0404, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x0407, - 0x00B0, 0x00B1, 0x0406, 0x0456, 0x0491, 0x00B5, 0x00B6, 0x00B7, - 0x0451, 0x2116, 0x0454, 0x00BB, 0x0458, 0x0405, 0x0455, 0x0457, - 0x0410, 0x0411, 0x0412, 0x0413, 0x0414, 0x0415, 0x0416, 0x0417, - 0x0418, 0x0419, 0x041A, 0x041B, 0x041C, 0x041D, 0x041E, 0x041F, - 0x0420, 0x0421, 0x0422, 0x0423, 0x0424, 0x0425, 0x0426, 0x0427, - 0x0428, 0x0429, 0x042A, 0x042D, 0x042C, 0x042D, 0x042E, 0x042F, - 0x0430, 0x0431, 0x0432, 0x0433, 0x0434, 0x0435, 0x0436, 0x0437, - 0x0438, 0x0439, 0x043A, 0x043B, 0x043C, 0x043D, 0x043E, 0x043F, - 0x0440, 0x0441, 0x0442, 0x0443, 0x0444, 0x0445, 0x0446, 0x0447, - 0x0448, 0x0449, 0x044A, 0x044B, 0x044C, 0x044D, 0x044E, 0x044F -}; - -#elif _CODE_PAGE == 1252 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP1252(0x80-0xFF) to Unicode conversion table */ - 0x20AC, 0x0000, 0x201A, 0x0192, 0x201E, 0x2026, 0x2020, 0x2021, - 0x02C6, 0x2030, 0x0160, 0x2039, 0x0152, 0x0000, 0x017D, 0x0000, - 0x0000, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, - 0x02DC, 0x2122, 0x0161, 0x203A, 0x0153, 0x0000, 0x017E, 0x0178, - 0x00A0, 0x00A1, 0x00A2, 0x00A3, 0x00A4, 0x00A5, 0x00A6, 0x00A7, - 0x00A8, 0x00A9, 0x00AA, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x00AF, - 0x00B0, 0x00B1, 0x00B2, 0x00B3, 0x00B4, 0x00B5, 0x00B6, 0x00B7, - 0x00B8, 0x00B9, 0x00BA, 0x00BB, 0x00BC, 0x00BD, 0x00BE, 0x00BF, - 0x00C0, 0x00C1, 0x00C2, 0x00C3, 0x00C4, 0x00C5, 0x00C6, 0x00C7, - 0x00C8, 0x00C9, 0x00CA, 0x00CB, 0x00CC, 0x00CD, 0x00CE, 0x00CF, - 0x00D0, 0x00D1, 0x00D2, 0x00D3, 0x00D4, 0x00D5, 0x00D6, 0x00D7, - 0x00D8, 0x00D9, 0x00DA, 0x00BD, 0x00DC, 0x00DD, 0x00DE, 0x00DF, - 0x00E0, 0x00E1, 0x00E2, 0x00E3, 0x00E4, 0x00E5, 0x00E6, 0x00E7, - 0x00E8, 0x00E9, 0x00EA, 0x00EB, 0x00EC, 0x00ED, 0x00EE, 0x00EF, - 0x00F0, 0x00F1, 0x00F2, 0x00F3, 0x00F4, 0x00F5, 0x00F6, 0x00F7, - 0x00F8, 0x00F9, 0x00FA, 0x00FB, 0x00FC, 0x00FD, 0x00FE, 0x00FF -}; - -#elif _CODE_PAGE == 1253 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP1253(0x80-0xFF) to Unicode conversion table */ - 0x20AC, 0x0000, 0x201A, 0x0192, 0x201E, 0x2026, 0x2020, 0x2021, - 0x0000, 0x2030, 0x0000, 0x2039, 0x000C, 0x0000, 0x0000, 0x0000, - 0x0000, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, - 0x0000, 0x2122, 0x0000, 0x203A, 0x0000, 0x0000, 0x0000, 0x0000, - 0x00A0, 0x0385, 0x0386, 0x00A3, 0x00A4, 0x00A5, 0x00A6, 0x00A7, - 0x00A8, 0x00A9, 0x0000, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x2015, - 0x00B0, 0x00B1, 0x00B2, 0x00B3, 0x0384, 0x00B5, 0x00B6, 0x00B7, - 0x0388, 0x0389, 0x038A, 0x00BB, 0x038C, 0x00BD, 0x038E, 0x038F, - 0x0390, 0x0391, 0x0392, 0x0393, 0x0394, 0x0395, 0x0396, 0x0397, - 0x0398, 0x0399, 0x039A, 0x039B, 0x039C, 0x039D, 0x039E, 0x039F, - 0x03A0, 0x03A1, 0x0000, 0x03A3, 0x03A4, 0x03A5, 0x03A6, 0x03A7, - 0x03A8, 0x03A9, 0x03AA, 0x03AD, 0x03AC, 0x03AD, 0x03AE, 0x03AF, - 0x03B0, 0x03B1, 0x03B2, 0x03B3, 0x03B4, 0x03B5, 0x03B6, 0x03B7, - 0x03B8, 0x03B9, 0x03BA, 0x03BB, 0x03BC, 0x03BD, 0x03BE, 0x03BF, - 0x03C0, 0x03C1, 0x03C2, 0x03C3, 0x03C4, 0x03C5, 0x03C6, 0x03C7, - 0x03C8, 0x03C9, 0x03CA, 0x03CB, 0x03CC, 0x03CD, 0x03CE, 0x0000 -}; - -#elif _CODE_PAGE == 1254 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP1254(0x80-0xFF) to Unicode conversion table */ - 0x20AC, 0x0000, 0x210A, 0x0192, 0x201E, 0x2026, 0x2020, 0x2021, - 0x02C6, 0x2030, 0x0160, 0x2039, 0x0152, 0x0000, 0x0000, 0x0000, - 0x0000, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, - 0x02DC, 0x2122, 0x0161, 0x203A, 0x0153, 0x0000, 0x0000, 0x0178, - 0x00A0, 0x00A1, 0x00A2, 0x00A3, 0x00A4, 0x00A5, 0x00A6, 0x00A7, - 0x00A8, 0x00A9, 0x00AA, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x00AF, - 0x00B0, 0x00B1, 0x00B2, 0x00B3, 0x00B4, 0x00B5, 0x00B6, 0x00B7, - 0x00B8, 0x00B9, 0x00BA, 0x00BB, 0x00BC, 0x00BD, 0x00BE, 0x00BF, - 0x00C0, 0x00C1, 0x00C2, 0x00C3, 0x00C4, 0x00C5, 0x00C6, 0x00C7, - 0x00C8, 0x00C9, 0x00CA, 0x00CB, 0x00CC, 0x00CD, 0x00CE, 0x00CF, - 0x011E, 0x00D1, 0x00D2, 0x00D3, 0x00D4, 0x00D5, 0x00D6, 0x00D7, - 0x00D8, 0x00D9, 0x00DA, 0x00BD, 0x00DC, 0x0130, 0x015E, 0x00DF, - 0x00E0, 0x00E1, 0x00E2, 0x00E3, 0x00E4, 0x00E5, 0x00E6, 0x00E7, - 0x00E8, 0x00E9, 0x00EA, 0x00EB, 0x00EC, 0x00ED, 0x00EE, 0x00EF, - 0x011F, 0x00F1, 0x00F2, 0x00F3, 0x00F4, 0x00F5, 0x00F6, 0x00F7, - 0x00F8, 0x00F9, 0x00FA, 0x00FB, 0x00FC, 0x0131, 0x015F, 0x00FF -}; - -#elif _CODE_PAGE == 1255 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP1255(0x80-0xFF) to Unicode conversion table */ - 0x20AC, 0x0000, 0x201A, 0x0192, 0x201E, 0x2026, 0x2020, 0x2021, - 0x02C6, 0x2030, 0x0000, 0x2039, 0x0000, 0x0000, 0x0000, 0x0000, - 0x0000, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, - 0x02DC, 0x2122, 0x0000, 0x203A, 0x0000, 0x0000, 0x0000, 0x0000, - 0x00A0, 0x00A1, 0x00A2, 0x00A3, 0x00A4, 0x00A5, 0x00A6, 0x00A7, - 0x00A8, 0x00A9, 0x00D7, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x00AF, - 0x00B0, 0x00B1, 0x00B2, 0x00B3, 0x00B4, 0x00B5, 0x00B6, 0x00B7, - 0x00B8, 0x00B9, 0x00F7, 0x00BB, 0x00BC, 0x00BD, 0x00BE, 0x00BF, - 0x05B0, 0x05B1, 0x05B2, 0x05B3, 0x05B4, 0x05B5, 0x05B6, 0x05B7, - 0x05B8, 0x05B9, 0x0000, 0x05BB, 0x05BC, 0x05BD, 0x05BE, 0x05BF, - 0x05C0, 0x05C1, 0x05C2, 0x05C3, 0x05F0, 0x05F1, 0x05F2, 0x05F3, - 0x05F4, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, - 0x05D0, 0x05D1, 0x05D2, 0x05D3, 0x05D4, 0x05D5, 0x05D6, 0x05D7, - 0x05D8, 0x05D9, 0x05DA, 0x05DB, 0x05DC, 0x05DD, 0x05DE, 0x05DF, - 0x05E0, 0x05E1, 0x05E2, 0x05E3, 0x05E4, 0x05E5, 0x05E6, 0x05E7, - 0x05E8, 0x05E9, 0x05EA, 0x0000, 0x0000, 0x200E, 0x200F, 0x0000 -}; - -#elif _CODE_PAGE == 1256 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP1256(0x80-0xFF) to Unicode conversion table */ - 0x20AC, 0x067E, 0x201A, 0x0192, 0x201E, 0x2026, 0x2020, 0x2021, - 0x02C6, 0x2030, 0x0679, 0x2039, 0x0152, 0x0686, 0x0698, 0x0688, - 0x06AF, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, - 0x06A9, 0x2122, 0x0691, 0x203A, 0x0153, 0x200C, 0x200D, 0x06BA, - 0x00A0, 0x060C, 0x00A2, 0x00A3, 0x00A4, 0x00A5, 0x00A6, 0x00A7, - 0x00A8, 0x00A9, 0x06BE, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x00AF, - 0x00B0, 0x00B1, 0x00B2, 0x00B3, 0x00B4, 0x00B5, 0x00B6, 0x00B7, - 0x00B8, 0x00B9, 0x061B, 0x00BB, 0x00BC, 0x00BD, 0x00BE, 0x061F, - 0x06C1, 0x0621, 0x0622, 0x0623, 0x0624, 0x0625, 0x0626, 0x0627, - 0x0628, 0x0629, 0x062A, 0x062B, 0x062C, 0x062D, 0x062E, 0x062F, - 0x0630, 0x0631, 0x0632, 0x0633, 0x0634, 0x0635, 0x0636, 0x00D7, - 0x0637, 0x0638, 0x0639, 0x063A, 0x0640, 0x0640, 0x0642, 0x0643, - 0x00E0, 0x0644, 0x00E2, 0x0645, 0x0646, 0x0647, 0x0648, 0x00E7, - 0x00E8, 0x00E9, 0x00EA, 0x00EB, 0x0649, 0x064A, 0x00EE, 0x00EF, - 0x064B, 0x064C, 0x064D, 0x064E, 0x00F4, 0x064F, 0x0650, 0x00F7, - 0x0651, 0x00F9, 0x0652, 0x00FB, 0x00FC, 0x200E, 0x200F, 0x06D2 -} - -#elif _CODE_PAGE == 1257 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP1257(0x80-0xFF) to Unicode conversion table */ - 0x20AC, 0x0000, 0x201A, 0x0000, 0x201E, 0x2026, 0x2020, 0x2021, - 0x0000, 0x2030, 0x0000, 0x2039, 0x0000, 0x00A8, 0x02C7, 0x00B8, - 0x0000, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, - 0x0000, 0x2122, 0x0000, 0x203A, 0x0000, 0x00AF, 0x02DB, 0x0000, - 0x00A0, 0x0000, 0x00A2, 0x00A3, 0x00A4, 0x0000, 0x00A6, 0x00A7, - 0x00D8, 0x00A9, 0x0156, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x00AF, - 0x00B0, 0x00B1, 0x00B2, 0x00B3, 0x00B4, 0x00B5, 0x00B6, 0x00B7, - 0x00B8, 0x00B9, 0x0157, 0x00BB, 0x00BC, 0x00BD, 0x00BE, 0x00E6, - 0x0104, 0x012E, 0x0100, 0x0106, 0x00C4, 0x00C5, 0x0118, 0x0112, - 0x010C, 0x00C9, 0x0179, 0x0116, 0x0122, 0x0136, 0x012A, 0x013B, - 0x0160, 0x0143, 0x0145, 0x00D3, 0x014C, 0x00D5, 0x00D6, 0x00D7, - 0x0172, 0x0141, 0x015A, 0x016A, 0x00DC, 0x017B, 0x017D, 0x00DF, - 0x0105, 0x012F, 0x0101, 0x0107, 0x00E4, 0x00E5, 0x0119, 0x0113, - 0x010D, 0x00E9, 0x017A, 0x0117, 0x0123, 0x0137, 0x012B, 0x013C, - 0x0161, 0x0144, 0x0146, 0x00F3, 0x014D, 0x00F5, 0x00F6, 0x00F7, - 0x0173, 0x014E, 0x015B, 0x016B, 0x00FC, 0x017C, 0x017E, 0x02D9 -}; - -#elif _CODE_PAGE == 1258 -#define _TBLDEF 1 -static -const WCHAR Tbl[] = { /* CP1258(0x80-0xFF) to Unicode conversion table */ - 0x20AC, 0x0000, 0x201A, 0x0192, 0x201E, 0x2026, 0x2020, 0x2021, - 0x02C6, 0x2030, 0x0000, 0x2039, 0x0152, 0x0000, 0x0000, 0x0000, - 0x0000, 0x2018, 0x2019, 0x201C, 0x201D, 0x2022, 0x2013, 0x2014, - 0x02DC, 0x2122, 0x0000, 0x203A, 0x0153, 0x0000, 0x0000, 0x0178, - 0x00A0, 0x00A1, 0x00A2, 0x00A3, 0x00A4, 0x00A5, 0x00A6, 0x00A7, - 0x00A8, 0x00A9, 0x00AA, 0x00AB, 0x00AC, 0x00AD, 0x00AE, 0x00AF, - 0x00B0, 0x00B1, 0x00B2, 0x00B3, 0x00B4, 0x00B5, 0x00B6, 0x00B7, - 0x00B8, 0x00B9, 0x00BA, 0x00BB, 0x00BC, 0x00BD, 0x00BE, 0x00BF, - 0x00C0, 0x00C1, 0x00C2, 0x0102, 0x00C4, 0x00C5, 0x00C6, 0x00C7, - 0x00C8, 0x00C9, 0x00CA, 0x00CB, 0x0300, 0x00CD, 0x00CE, 0x00CF, - 0x0110, 0x00D1, 0x0309, 0x00D3, 0x00D4, 0x01A0, 0x00D6, 0x00D7, - 0x00D8, 0x00D9, 0x00DA, 0x00DB, 0x00DC, 0x01AF, 0x0303, 0x00DF, - 0x00E0, 0x00E1, 0x00E2, 0x0103, 0x00E4, 0x00E5, 0x00E6, 0x00E7, - 0x00E8, 0x00E9, 0x00EA, 0x00EB, 0x0301, 0x00ED, 0x00EE, 0x00EF, - 0x0111, 0x00F1, 0x0323, 0x00F3, 0x00F4, 0x01A1, 0x00F6, 0x00F7, - 0x00F8, 0x00F9, 0x00FA, 0x00FB, 0x00FC, 0x01B0, 0x20AB, 0x00FF -}; - -#endif - - -#if !_TBLDEF || !_USE_LFN -//#error This file is not needed in current configuration -#endif - - -WCHAR ff_convert ( /* Converted character, Returns zero on error */ - WCHAR src, /* Character code to be converted */ - UINT dir /* 0: Unicode to OEMCP, 1: OEMCP to Unicode */ -) -{ - WCHAR c; - - - if (src < 0x80) { /* ASCII */ - c = src; - - } else { - if (dir) { /* OEMCP to Unicode */ - c = (src >= 0x100) ? 0 : Tbl[src - 0x80]; - - } else { /* Unicode to OEMCP */ - for (c = 0; c < 0x80; c++) { - if (src == Tbl[c]) break; - } - c = (c + 0x80) & 0xFF; - } - } - - return c; -} - - -WCHAR ff_wtoupper ( /* Upper converted character */ - WCHAR chr /* Input character */ -) -{ - static const WCHAR tbl_lower[] = { 0x61, 0x62, 0x63, 0x64, 0x65, 0x66, 0x67, 0x68, 0x69, 0x6A, 0x6B, 0x6C, 0x6D, 0x6E, 0x6F, 0x70, 0x71, 0x72, 0x73, 0x74, 0x75, 0x76, 0x77, 0x78, 0x79, 0x7A, 0xA1, 0x00A2, 0x00A3, 0x00A5, 0x00AC, 0x00AF, 0xE0, 0xE1, 0xE2, 0xE3, 0xE4, 0xE5, 0xE6, 0xE7, 0xE8, 0xE9, 0xEA, 0xEB, 0xEC, 0xED, 0xEE, 0xEF, 0xF0, 0xF1, 0xF2, 0xF3, 0xF4, 0xF5, 0xF6, 0xF8, 0xF9, 0xFA, 0xFB, 0xFC, 0xFD, 0xFE, 0x0FF, 0x101, 0x103, 0x105, 0x107, 0x109, 0x10B, 0x10D, 0x10F, 0x111, 0x113, 0x115, 0x117, 0x119, 0x11B, 0x11D, 0x11F, 0x121, 0x123, 0x125, 0x127, 0x129, 0x12B, 0x12D, 0x12F, 0x131, 0x133, 0x135, 0x137, 0x13A, 0x13C, 0x13E, 0x140, 0x142, 0x144, 0x146, 0x148, 0x14B, 0x14D, 0x14F, 0x151, 0x153, 0x155, 0x157, 0x159, 0x15B, 0x15D, 0x15F, 0x161, 0x163, 0x165, 0x167, 0x169, 0x16B, 0x16D, 0x16F, 0x171, 0x173, 0x175, 0x177, 0x17A, 0x17C, 0x17E, 0x192, 0x3B1, 0x3B2, 0x3B3, 0x3B4, 0x3B5, 0x3B6, 0x3B7, 0x3B8, 0x3B9, 0x3BA, 0x3BB, 0x3BC, 0x3BD, 0x3BE, 0x3BF, 0x3C0, 0x3C1, 0x3C3, 0x3C4, 0x3C5, 0x3C6, 0x3C7, 0x3C8, 0x3C9, 0x3CA, 0x430, 0x431, 0x432, 0x433, 0x434, 0x435, 0x436, 0x437, 0x438, 0x439, 0x43A, 0x43B, 0x43C, 0x43D, 0x43E, 0x43F, 0x440, 0x441, 0x442, 0x443, 0x444, 0x445, 0x446, 0x447, 0x448, 0x449, 0x44A, 0x44B, 0x44C, 0x44D, 0x44E, 0x44F, 0x451, 0x452, 0x453, 0x454, 0x455, 0x456, 0x457, 0x458, 0x459, 0x45A, 0x45B, 0x45C, 0x45E, 0x45F, 0x2170, 0x2171, 0x2172, 0x2173, 0x2174, 0x2175, 0x2176, 0x2177, 0x2178, 0x2179, 0x217A, 0x217B, 0x217C, 0x217D, 0x217E, 0x217F, 0xFF41, 0xFF42, 0xFF43, 0xFF44, 0xFF45, 0xFF46, 0xFF47, 0xFF48, 0xFF49, 0xFF4A, 0xFF4B, 0xFF4C, 0xFF4D, 0xFF4E, 0xFF4F, 0xFF50, 0xFF51, 0xFF52, 0xFF53, 0xFF54, 0xFF55, 0xFF56, 0xFF57, 0xFF58, 0xFF59, 0xFF5A, 0 }; - static const WCHAR tbl_upper[] = { 0x41, 0x42, 0x43, 0x44, 0x45, 0x46, 0x47, 0x48, 0x49, 0x4A, 0x4B, 0x4C, 0x4D, 0x4E, 0x4F, 0x50, 0x51, 0x52, 0x53, 0x54, 0x55, 0x56, 0x57, 0x58, 0x59, 0x5A, 0x21, 0xFFE0, 0xFFE1, 0xFFE5, 0xFFE2, 0xFFE3, 0xC0, 0xC1, 0xC2, 0xC3, 0xC4, 0xC5, 0xC6, 0xC7, 0xC8, 0xC9, 0xCA, 0xCB, 0xCC, 0xCD, 0xCE, 0xCF, 0xD0, 0xD1, 0xD2, 0xD3, 0xD4, 0xD5, 0xD6, 0xD8, 0xD9, 0xDA, 0xDB, 0xDC, 0xDD, 0xDE, 0x178, 0x100, 0x102, 0x104, 0x106, 0x108, 0x10A, 0x10C, 0x10E, 0x110, 0x112, 0x114, 0x116, 0x118, 0x11A, 0x11C, 0x11E, 0x120, 0x122, 0x124, 0x126, 0x128, 0x12A, 0x12C, 0x12E, 0x130, 0x132, 0x134, 0x136, 0x139, 0x13B, 0x13D, 0x13F, 0x141, 0x143, 0x145, 0x147, 0x14A, 0x14C, 0x14E, 0x150, 0x152, 0x154, 0x156, 0x158, 0x15A, 0x15C, 0x15E, 0x160, 0x162, 0x164, 0x166, 0x168, 0x16A, 0x16C, 0x16E, 0x170, 0x172, 0x174, 0x176, 0x179, 0x17B, 0x17D, 0x191, 0x391, 0x392, 0x393, 0x394, 0x395, 0x396, 0x397, 0x398, 0x399, 0x39A, 0x39B, 0x39C, 0x39D, 0x39E, 0x39F, 0x3A0, 0x3A1, 0x3A3, 0x3A4, 0x3A5, 0x3A6, 0x3A7, 0x3A8, 0x3A9, 0x3AA, 0x410, 0x411, 0x412, 0x413, 0x414, 0x415, 0x416, 0x417, 0x418, 0x419, 0x41A, 0x41B, 0x41C, 0x41D, 0x41E, 0x41F, 0x420, 0x421, 0x422, 0x423, 0x424, 0x425, 0x426, 0x427, 0x428, 0x429, 0x42A, 0x42B, 0x42C, 0x42D, 0x42E, 0x42F, 0x401, 0x402, 0x403, 0x404, 0x405, 0x406, 0x407, 0x408, 0x409, 0x40A, 0x40B, 0x40C, 0x40E, 0x40F, 0x2160, 0x2161, 0x2162, 0x2163, 0x2164, 0x2165, 0x2166, 0x2167, 0x2168, 0x2169, 0x216A, 0x216B, 0x216C, 0x216D, 0x216E, 0x216F, 0xFF21, 0xFF22, 0xFF23, 0xFF24, 0xFF25, 0xFF26, 0xFF27, 0xFF28, 0xFF29, 0xFF2A, 0xFF2B, 0xFF2C, 0xFF2D, 0xFF2E, 0xFF2F, 0xFF30, 0xFF31, 0xFF32, 0xFF33, 0xFF34, 0xFF35, 0xFF36, 0xFF37, 0xFF38, 0xFF39, 0xFF3A, 0 }; - int i; - - - for (i = 0; tbl_lower[i] && chr != tbl_lower[i]; i++) ; - - return tbl_lower[i] ? tbl_upper[i] : chr; -} diff --git a/Marlin/lib/fat_fs/src/option/syncobj.c b/Marlin/lib/fat_fs/src/option/syncobj.c deleted file mode 100644 index 964c3393e9..0000000000 --- a/Marlin/lib/fat_fs/src/option/syncobj.c +++ /dev/null @@ -1,115 +0,0 @@ -/*------------------------------------------------------------------------*/ -/* Sample code of OS dependent synchronization object controls */ -/* for FatFs R0.07d (C)ChaN, 2009 */ -/*------------------------------------------------------------------------*/ - -#include // Win32 -//#include // uC/OS-II - -#include "../ff.h" - -#if _FS_REENTRANT - -/*------------------------------------------------------------------------*/ -/* Create a Synchronization Object for a Volume -/*------------------------------------------------------------------------*/ -/* This function is called in f_mount function to create a new -/ synchronization object, such as semaphore and mutex. When a FALSE is -/ returned, the f_mount function fails with FR_INT_ERR. -*/ - -BOOL ff_cre_syncobj ( /* TRUE:Function succeeded, FALSE:Could not create due to any error */ - BYTE vol, /* Corresponding logical drive being processed */ - _SYNC_t *sobj /* Pointer to return the created sync object */ -) -{ - BOOL ret; - - *sobj = CreateMutex(NULL, FALSE, NULL); // Win32 - ret = (*sobj != INVALID_HANDLE_VALUE) ? TRUE : FALSE; // - -// *sobj = VolumeSemId[vol]; // uITRON (give a static created sync object) -// ret = TRUE; // The initial value of the semaphore must be 1. - -// *sobj = OSMutexCreate(0, &err); // uC/OS-II -// ret = (err == OS_NO_ERR) ? TRUE : FALSE; // - - return ret; -} - - - -/*------------------------------------------------------------------------*/ -/* Delete a Synchronization Object */ -/*------------------------------------------------------------------------*/ -/* This function is called in f_mount function to delete a synchronization -/ object that created with ff_cre_syncobj function. When a FALSE is -/ returned, the f_mount function fails with FR_INT_ERR. -*/ - -BOOL ff_del_syncobj ( /* TRUE:Function succeeded, FALSE:Could not delete due to any error */ - _SYNC_t sobj /* Sync object tied to the logical drive to be deleted */ -) -{ - BOOL ret; - - ret = CloseHandle(sobj); // Win32 - -// ret = TRUE; // uITRON (nothing to do) - -// OSMutexDel(sobj, OS_DEL_ALWAYS, &err); // uC/OS-II -// ret = (err == OS_NO_ERR) ? TRUE : FALSE; // - - return ret; -} - - - -/*------------------------------------------------------------------------*/ -/* Request Grant to Access the Volume */ -/*------------------------------------------------------------------------*/ -/* This function is called on entering file functions to lock the volume. -/ When a FALSE is returned, the file function fails with FR_TIMEOUT. -*/ - -BOOL ff_req_grant ( /* TRUE:Got a grant to access the volume, FALSE:Could not get a grant */ - _SYNC_t sobj /* Sync object to wait */ -) -{ - BOOL ret; - - ret = (WaitForSingleObject(sobj, _FS_TIMEOUT) == WAIT_OBJECT_0) ? TRUE : FALSE; // Win32 - -// ret = (wai_sem(sobj) == E_OK) ? TRUE : FALSE; // uITRON - -// OSMutexPend(sobj, _FS_TIMEOUT, &err)); // uC/OS-II -// ret = (err == OS_NO_ERR) ? TRUE : FALSE; // - - return ret; -} - - - -/*------------------------------------------------------------------------*/ -/* Release Grant to Access the Volume */ -/*------------------------------------------------------------------------*/ -/* This function is called on leaving file functions to unlock the volume. -*/ - -void ff_rel_grant ( - _SYNC_t sobj /* Sync object to be signaled */ -) -{ - ReleaseMutex(sobj); // Win32 - -// sig_sem(sobj); // uITRON - -// OSMutexPost(sobj); // uC/OS-II -} - - -#else - -#error This file is not needed in this configuration. - -#endif diff --git a/Marlin/lib/rtt/library.json b/Marlin/lib/rtt/library.json deleted file mode 100644 index df56aa0070..0000000000 --- a/Marlin/lib/rtt/library.json +++ /dev/null @@ -1,16 +0,0 @@ -{ - "name": "rtt", - "version": "0.0.1", - "keywords": "segger rtt log module. port by langgo", - "description": "Arduino library for segger rtt log module.", - "build": { - "srcFilter": [ - "+<*.c>", - "+<*.cpp>", - "+<*.h>" - ] - }, - "frameworks": "arduino", - "platforms": "*" -} - diff --git a/Marlin/lib/rtt/src/SEGGER_RTT.c b/Marlin/lib/rtt/src/SEGGER_RTT.c deleted file mode 100644 index 234e7b2d23..0000000000 --- a/Marlin/lib/rtt/src/SEGGER_RTT.c +++ /dev/null @@ -1,2010 +0,0 @@ -/********************************************************************* -* SEGGER Microcontroller GmbH * -* The Embedded Experts * -********************************************************************** -* * -* (c) 1995 - 2019 SEGGER Microcontroller GmbH * -* * -* www.segger.com Support: support@segger.com * -* * -********************************************************************** -* * -* SEGGER RTT * Real Time Transfer for embedded targets * -* * -********************************************************************** -* * -* All rights reserved. * -* * -* SEGGER strongly recommends to not make any changes * -* to or modify the source code of this software in order to stay * -* compatible with the RTT protocol and J-Link. * -* * -* Redistribution and use in source and binary forms, with or * -* without modification, are permitted provided that the following * -* condition is met: * -* * -* o Redistributions of source code must retain the above copyright * -* notice, this condition and the following disclaimer. * -* * -* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * -* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * -* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * -* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * -* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * -* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * -* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * -* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * -* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * -* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * -* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * -* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * -* DAMAGE. * -* * -********************************************************************** -* * -* RTT version: 6.64b * -* * -********************************************************************** - ----------------------------END-OF-HEADER------------------------------ -File : SEGGER_RTT.c -Purpose : Implementation of SEGGER real-time transfer (RTT) which - allows real-time communication on targets which support - debugger memory accesses while the CPU is running. -Revision: $Rev: 17697 $ - -Additional information: - Type "int" is assumed to be 32-bits in size - H->T Host to target communication - T->H Target to host communication - - RTT channel 0 is always present and reserved for Terminal usage. - Name is fixed to "Terminal" - - Effective buffer size: SizeOfBuffer - 1 - - WrOff == RdOff: Buffer is empty - WrOff == (RdOff - 1): Buffer is full - WrOff > RdOff: Free space includes wrap-around - WrOff < RdOff: Used space includes wrap-around - (WrOff == (SizeOfBuffer - 1)) && (RdOff == 0): - Buffer full and wrap-around after next byte - - ----------------------------------------------------------------------- -*/ - -#include "SEGGER_RTT.h" - -#include // for memcpy - -/********************************************************************* -* -* Configuration, default values -* -********************************************************************** -*/ - -#ifndef BUFFER_SIZE_UP - #define BUFFER_SIZE_UP 1024 // Size of the buffer for terminal output of target, up to host -#endif - -#ifndef BUFFER_SIZE_DOWN - #define BUFFER_SIZE_DOWN 16 // Size of the buffer for terminal input to target from host (Usually keyboard input) -#endif - -#ifndef SEGGER_RTT_MAX_NUM_UP_BUFFERS - #define SEGGER_RTT_MAX_NUM_UP_BUFFERS 2 // Number of up-buffers (T->H) available on this target -#endif - -#ifndef SEGGER_RTT_MAX_NUM_DOWN_BUFFERS - #define SEGGER_RTT_MAX_NUM_DOWN_BUFFERS 2 // Number of down-buffers (H->T) available on this target -#endif - -#ifndef SEGGER_RTT_BUFFER_SECTION - #if defined(SEGGER_RTT_SECTION) - #define SEGGER_RTT_BUFFER_SECTION SEGGER_RTT_SECTION - #endif -#endif - -#ifndef SEGGER_RTT_ALIGNMENT - #define SEGGER_RTT_ALIGNMENT 0 -#endif - -#ifndef SEGGER_RTT_BUFFER_ALIGNMENT - #define SEGGER_RTT_BUFFER_ALIGNMENT 0 -#endif - -#ifndef SEGGER_RTT_MODE_DEFAULT - #define SEGGER_RTT_MODE_DEFAULT SEGGER_RTT_MODE_NO_BLOCK_SKIP -#endif - -#ifndef SEGGER_RTT_LOCK - #define SEGGER_RTT_LOCK() -#endif - -#ifndef SEGGER_RTT_UNLOCK - #define SEGGER_RTT_UNLOCK() -#endif - -#ifndef STRLEN - #define STRLEN(a) strlen((a)) -#endif - -#ifndef STRCPY - #define STRCPY(pDest, pSrc, NumBytes) strcpy((pDest), (pSrc)) -#endif - -#ifndef SEGGER_RTT_MEMCPY_USE_BYTELOOP - #define SEGGER_RTT_MEMCPY_USE_BYTELOOP 0 -#endif - -#ifndef SEGGER_RTT_MEMCPY - #ifdef MEMCPY - #define SEGGER_RTT_MEMCPY(pDest, pSrc, NumBytes) MEMCPY((pDest), (pSrc), (NumBytes)) - #else - #define SEGGER_RTT_MEMCPY(pDest, pSrc, NumBytes) memcpy((pDest), (pSrc), (NumBytes)) - #endif -#endif - -#ifndef MIN - #define MIN(a, b) (((a) < (b)) ? (a) : (b)) -#endif - -#ifndef MAX - #define MAX(a, b) (((a) > (b)) ? (a) : (b)) -#endif -// -// For some environments, NULL may not be defined until certain headers are included -// -#ifndef NULL - #define NULL 0 -#endif - -/********************************************************************* -* -* Defines, fixed -* -********************************************************************** -*/ -#if (defined __ICCARM__) || (defined __ICCRX__) - #define RTT_PRAGMA(P) _Pragma(#P) -#endif - -#if SEGGER_RTT_ALIGNMENT || SEGGER_RTT_BUFFER_ALIGNMENT - #if (defined __GNUC__) - #define SEGGER_RTT_ALIGN(Var, Alignment) Var __attribute__ ((aligned (Alignment))) - #elif (defined __ICCARM__) || (defined __ICCRX__) - #define PRAGMA(A) _Pragma(#A) -#define SEGGER_RTT_ALIGN(Var, Alignment) RTT_PRAGMA(data_alignment=Alignment) \ - Var - #elif (defined __CC_ARM) - #define SEGGER_RTT_ALIGN(Var, Alignment) Var __attribute__ ((aligned (Alignment))) - #else - #error "Alignment not supported for this compiler." - #endif -#else - #define SEGGER_RTT_ALIGN(Var, Alignment) Var -#endif - -#if defined(SEGGER_RTT_SECTION) || defined (SEGGER_RTT_BUFFER_SECTION) - #if (defined __GNUC__) - #define SEGGER_RTT_PUT_SECTION(Var, Section) __attribute__ ((section (Section))) Var - #elif (defined __ICCARM__) || (defined __ICCRX__) -#define SEGGER_RTT_PUT_SECTION(Var, Section) RTT_PRAGMA(location=Section) \ - Var - #elif (defined __CC_ARM) - #define SEGGER_RTT_PUT_SECTION(Var, Section) __attribute__ ((section (Section), zero_init)) Var - #else - #error "Section placement not supported for this compiler." - #endif -#else - #define SEGGER_RTT_PUT_SECTION(Var, Section) Var -#endif - - -#if SEGGER_RTT_ALIGNMENT - #define SEGGER_RTT_CB_ALIGN(Var) SEGGER_RTT_ALIGN(Var, SEGGER_RTT_ALIGNMENT) -#else - #define SEGGER_RTT_CB_ALIGN(Var) Var -#endif - -#if SEGGER_RTT_BUFFER_ALIGNMENT - #define SEGGER_RTT_BUFFER_ALIGN(Var) SEGGER_RTT_ALIGN(Var, SEGGER_RTT_BUFFER_ALIGNMENT) -#else - #define SEGGER_RTT_BUFFER_ALIGN(Var) Var -#endif - - -#if defined(SEGGER_RTT_SECTION) - #define SEGGER_RTT_PUT_CB_SECTION(Var) SEGGER_RTT_PUT_SECTION(Var, SEGGER_RTT_SECTION) -#else - #define SEGGER_RTT_PUT_CB_SECTION(Var) Var -#endif - -#if defined(SEGGER_RTT_BUFFER_SECTION) - #define SEGGER_RTT_PUT_BUFFER_SECTION(Var) SEGGER_RTT_PUT_SECTION(Var, SEGGER_RTT_BUFFER_SECTION) -#else - #define SEGGER_RTT_PUT_BUFFER_SECTION(Var) Var -#endif - -/********************************************************************* -* -* Static const data -* -********************************************************************** -*/ - -static unsigned char _aTerminalId[16] = { '0', '1', '2', '3', '4', '5', '6', '7', '8', '9', 'A', 'B', 'C', 'D', 'E', 'F' }; - -/********************************************************************* -* -* Static data -* -********************************************************************** -*/ -// -// RTT Control Block and allocate buffers for channel 0 -// -SEGGER_RTT_PUT_CB_SECTION(SEGGER_RTT_CB_ALIGN(SEGGER_RTT_CB _SEGGER_RTT)); - -SEGGER_RTT_PUT_BUFFER_SECTION(SEGGER_RTT_BUFFER_ALIGN(static char _acUpBuffer [BUFFER_SIZE_UP])); -SEGGER_RTT_PUT_BUFFER_SECTION(SEGGER_RTT_BUFFER_ALIGN(static char _acDownBuffer[BUFFER_SIZE_DOWN])); - -static unsigned char _ActiveTerminal; - -/********************************************************************* -* -* Static functions -* -********************************************************************** -*/ - -/********************************************************************* -* -* _DoInit() -* -* Function description -* Initializes the control block an buffers. -* May only be called via INIT() to avoid overriding settings. -* -*/ -#define INIT() do { \ - if (_SEGGER_RTT.acID[0] == '\0') { _DoInit(); } \ - } while (0) -static void _DoInit(void) { - SEGGER_RTT_CB* p; - // - // Initialize control block - // - p = &_SEGGER_RTT; - p->MaxNumUpBuffers = SEGGER_RTT_MAX_NUM_UP_BUFFERS; - p->MaxNumDownBuffers = SEGGER_RTT_MAX_NUM_DOWN_BUFFERS; - // - // Initialize up buffer 0 - // - p->aUp[0].sName = "Terminal"; - p->aUp[0].pBuffer = _acUpBuffer; - p->aUp[0].SizeOfBuffer = sizeof(_acUpBuffer); - p->aUp[0].RdOff = 0u; - p->aUp[0].WrOff = 0u; - p->aUp[0].Flags = SEGGER_RTT_MODE_DEFAULT; - // - // Initialize down buffer 0 - // - p->aDown[0].sName = "Terminal"; - p->aDown[0].pBuffer = _acDownBuffer; - p->aDown[0].SizeOfBuffer = sizeof(_acDownBuffer); - p->aDown[0].RdOff = 0u; - p->aDown[0].WrOff = 0u; - p->aDown[0].Flags = SEGGER_RTT_MODE_DEFAULT; - // - // Finish initialization of the control block. - // Copy Id string in three steps to make sure "SEGGER RTT" is not found - // in initializer memory (usually flash) by J-Link - // - STRCPY(&p->acID[7], "RTT", 9); - STRCPY(&p->acID[0], "SEGGER", 7); - p->acID[6] = ' '; -} - -/********************************************************************* -* -* _WriteBlocking() -* -* Function description -* Stores a specified number of characters in SEGGER RTT ring buffer -* and updates the associated write pointer which is periodically -* read by the host. -* The caller is responsible for managing the write chunk sizes as -* _WriteBlocking() will block until all data has been posted successfully. -* -* Parameters -* pRing Ring buffer to post to. -* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. -* NumBytes Number of bytes to be stored in the SEGGER RTT control block. -* -* Return value -* >= 0 - Number of bytes written into buffer. -*/ -static unsigned _WriteBlocking(SEGGER_RTT_BUFFER_UP* pRing, const char* pBuffer, unsigned NumBytes) { - unsigned NumBytesToWrite; - unsigned NumBytesWritten; - unsigned RdOff; - unsigned WrOff; -#if SEGGER_RTT_MEMCPY_USE_BYTELOOP - char* pDst; -#endif - // - // Write data to buffer and handle wrap-around if necessary - // - NumBytesWritten = 0u; - WrOff = pRing->WrOff; - do { - RdOff = pRing->RdOff; // May be changed by host (debug probe) in the meantime - if (RdOff > WrOff) { - NumBytesToWrite = RdOff - WrOff - 1u; - } else { - NumBytesToWrite = pRing->SizeOfBuffer - (WrOff - RdOff + 1u); - } - NumBytesToWrite = MIN(NumBytesToWrite, (pRing->SizeOfBuffer - WrOff)); // Number of bytes that can be written until buffer wrap-around - NumBytesToWrite = MIN(NumBytesToWrite, NumBytes); -#if SEGGER_RTT_MEMCPY_USE_BYTELOOP - pDst = pRing->pBuffer + WrOff; - NumBytesWritten += NumBytesToWrite; - NumBytes -= NumBytesToWrite; - WrOff += NumBytesToWrite; - while (NumBytesToWrite--) { - *pDst++ = *pBuffer++; - }; -#else - SEGGER_RTT_MEMCPY(pRing->pBuffer + WrOff, pBuffer, NumBytesToWrite); - NumBytesWritten += NumBytesToWrite; - pBuffer += NumBytesToWrite; - NumBytes -= NumBytesToWrite; - WrOff += NumBytesToWrite; -#endif - if (WrOff == pRing->SizeOfBuffer) { - WrOff = 0u; - } - pRing->WrOff = WrOff; - } while (NumBytes); - // - return NumBytesWritten; -} - -/********************************************************************* -* -* _WriteNoCheck() -* -* Function description -* Stores a specified number of characters in SEGGER RTT ring buffer -* and updates the associated write pointer which is periodically -* read by the host. -* It is callers responsibility to make sure data actually fits in buffer. -* -* Parameters -* pRing Ring buffer to post to. -* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. -* NumBytes Number of bytes to be stored in the SEGGER RTT control block. -* -* Notes -* (1) If there might not be enough space in the "Up"-buffer, call _WriteBlocking -*/ -static void _WriteNoCheck(SEGGER_RTT_BUFFER_UP* pRing, const char* pData, unsigned NumBytes) { - unsigned NumBytesAtOnce; - unsigned WrOff; - unsigned Rem; -#if SEGGER_RTT_MEMCPY_USE_BYTELOOP - char* pDst; -#endif - - WrOff = pRing->WrOff; - Rem = pRing->SizeOfBuffer - WrOff; - if (Rem > NumBytes) { - // - // All data fits before wrap around - // -#if SEGGER_RTT_MEMCPY_USE_BYTELOOP - pDst = pRing->pBuffer + WrOff; - WrOff += NumBytes; - while (NumBytes--) { - *pDst++ = *pData++; - }; - pRing->WrOff = WrOff; -#else - SEGGER_RTT_MEMCPY(pRing->pBuffer + WrOff, pData, NumBytes); - pRing->WrOff = WrOff + NumBytes; -#endif - } else { - // - // We reach the end of the buffer, so need to wrap around - // -#if SEGGER_RTT_MEMCPY_USE_BYTELOOP - pDst = pRing->pBuffer + WrOff; - NumBytesAtOnce = Rem; - while (NumBytesAtOnce--) { - *pDst++ = *pData++; - }; - pDst = pRing->pBuffer; - NumBytesAtOnce = NumBytes - Rem; - while (NumBytesAtOnce--) { - *pDst++ = *pData++; - }; - pRing->WrOff = NumBytes - Rem; -#else - NumBytesAtOnce = Rem; - SEGGER_RTT_MEMCPY(pRing->pBuffer + WrOff, pData, NumBytesAtOnce); - NumBytesAtOnce = NumBytes - Rem; - SEGGER_RTT_MEMCPY(pRing->pBuffer, pData + Rem, NumBytesAtOnce); - pRing->WrOff = NumBytesAtOnce; -#endif - } -} - -/********************************************************************* -* -* _PostTerminalSwitch() -* -* Function description -* Switch terminal to the given terminal ID. It is the caller's -* responsibility to ensure the terminal ID is correct and there is -* enough space in the buffer for this to complete successfully. -* -* Parameters -* pRing Ring buffer to post to. -* TerminalId Terminal ID to switch to. -*/ -static void _PostTerminalSwitch(SEGGER_RTT_BUFFER_UP* pRing, unsigned char TerminalId) { - unsigned char ac[2]; - - ac[0] = 0xFFu; - ac[1] = _aTerminalId[TerminalId]; // Caller made already sure that TerminalId does not exceed our terminal limit - _WriteBlocking(pRing, (const char*)ac, 2u); -} - -/********************************************************************* -* -* _GetAvailWriteSpace() -* -* Function description -* Returns the number of bytes that can be written to the ring -* buffer without blocking. -* -* Parameters -* pRing Ring buffer to check. -* -* Return value -* Number of bytes that are free in the buffer. -*/ -static unsigned _GetAvailWriteSpace(SEGGER_RTT_BUFFER_UP* pRing) { - unsigned RdOff; - unsigned WrOff; - unsigned r; - // - // Avoid warnings regarding volatile access order. It's not a problem - // in this case, but dampen compiler enthusiasm. - // - RdOff = pRing->RdOff; - WrOff = pRing->WrOff; - if (RdOff <= WrOff) { - r = pRing->SizeOfBuffer - 1u - WrOff + RdOff; - } else { - r = RdOff - WrOff - 1u; - } - return r; -} - -/********************************************************************* -* -* Public code -* -********************************************************************** -*/ -/********************************************************************* -* -* SEGGER_RTT_ReadUpBufferNoLock() -* -* Function description -* Reads characters from SEGGER real-time-terminal control block -* which have been previously stored by the application. -* Do not lock against interrupts and multiple access. -* Used to do the same operation that J-Link does, to transfer -* RTT data via other channels, such as TCP/IP or UART. -* -* Parameters -* BufferIndex Index of Up-buffer to be used. -* pBuffer Pointer to buffer provided by target application, to copy characters from RTT-up-buffer to. -* BufferSize Size of the target application buffer. -* -* Return value -* Number of bytes that have been read. -* -* Additional information -* This function must not be called when J-Link might also do RTT. -*/ -unsigned SEGGER_RTT_ReadUpBufferNoLock(unsigned BufferIndex, void* pData, unsigned BufferSize) { - unsigned NumBytesRem; - unsigned NumBytesRead; - unsigned RdOff; - unsigned WrOff; - unsigned char* pBuffer; - SEGGER_RTT_BUFFER_UP* pRing; -#if SEGGER_RTT_MEMCPY_USE_BYTELOOP - const char* pSrc; -#endif - // - INIT(); - pRing = &_SEGGER_RTT.aUp[BufferIndex]; - pBuffer = (unsigned char*)pData; - RdOff = pRing->RdOff; - WrOff = pRing->WrOff; - NumBytesRead = 0u; - // - // Read from current read position to wrap-around of buffer, first - // - if (RdOff > WrOff) { - NumBytesRem = pRing->SizeOfBuffer - RdOff; - NumBytesRem = MIN(NumBytesRem, BufferSize); -#if SEGGER_RTT_MEMCPY_USE_BYTELOOP - pSrc = pRing->pBuffer + RdOff; - NumBytesRead += NumBytesRem; - BufferSize -= NumBytesRem; - RdOff += NumBytesRem; - while (NumBytesRem--) { - *pBuffer++ = *pSrc++; - }; -#else - SEGGER_RTT_MEMCPY(pBuffer, pRing->pBuffer + RdOff, NumBytesRem); - NumBytesRead += NumBytesRem; - pBuffer += NumBytesRem; - BufferSize -= NumBytesRem; - RdOff += NumBytesRem; -#endif - // - // Handle wrap-around of buffer - // - if (RdOff == pRing->SizeOfBuffer) { - RdOff = 0u; - } - } - // - // Read remaining items of buffer - // - NumBytesRem = WrOff - RdOff; - NumBytesRem = MIN(NumBytesRem, BufferSize); - if (NumBytesRem > 0u) { -#if SEGGER_RTT_MEMCPY_USE_BYTELOOP - pSrc = pRing->pBuffer + RdOff; - NumBytesRead += NumBytesRem; - BufferSize -= NumBytesRem; - RdOff += NumBytesRem; - while (NumBytesRem--) { - *pBuffer++ = *pSrc++; - }; -#else - SEGGER_RTT_MEMCPY(pBuffer, pRing->pBuffer + RdOff, NumBytesRem); - NumBytesRead += NumBytesRem; - pBuffer += NumBytesRem; - BufferSize -= NumBytesRem; - RdOff += NumBytesRem; -#endif - } - // - // Update read offset of buffer - // - if (NumBytesRead) { - pRing->RdOff = RdOff; - } - // - return NumBytesRead; -} - -/********************************************************************* -* -* SEGGER_RTT_ReadNoLock() -* -* Function description -* Reads characters from SEGGER real-time-terminal control block -* which have been previously stored by the host. -* Do not lock against interrupts and multiple access. -* -* Parameters -* BufferIndex Index of Down-buffer to be used (e.g. 0 for "Terminal"). -* pBuffer Pointer to buffer provided by target application, to copy characters from RTT-down-buffer to. -* BufferSize Size of the target application buffer. -* -* Return value -* Number of bytes that have been read. -*/ -unsigned SEGGER_RTT_ReadNoLock(unsigned BufferIndex, void* pData, unsigned BufferSize) { - unsigned NumBytesRem; - unsigned NumBytesRead; - unsigned RdOff; - unsigned WrOff; - unsigned char* pBuffer; - SEGGER_RTT_BUFFER_DOWN* pRing; -#if SEGGER_RTT_MEMCPY_USE_BYTELOOP - const char* pSrc; -#endif - // - INIT(); - pRing = &_SEGGER_RTT.aDown[BufferIndex]; - pBuffer = (unsigned char*)pData; - RdOff = pRing->RdOff; - WrOff = pRing->WrOff; - NumBytesRead = 0u; - // - // Read from current read position to wrap-around of buffer, first - // - if (RdOff > WrOff) { - NumBytesRem = pRing->SizeOfBuffer - RdOff; - NumBytesRem = MIN(NumBytesRem, BufferSize); -#if SEGGER_RTT_MEMCPY_USE_BYTELOOP - pSrc = pRing->pBuffer + RdOff; - NumBytesRead += NumBytesRem; - BufferSize -= NumBytesRem; - RdOff += NumBytesRem; - while (NumBytesRem--) { - *pBuffer++ = *pSrc++; - }; -#else - SEGGER_RTT_MEMCPY(pBuffer, pRing->pBuffer + RdOff, NumBytesRem); - NumBytesRead += NumBytesRem; - pBuffer += NumBytesRem; - BufferSize -= NumBytesRem; - RdOff += NumBytesRem; -#endif - // - // Handle wrap-around of buffer - // - if (RdOff == pRing->SizeOfBuffer) { - RdOff = 0u; - } - } - // - // Read remaining items of buffer - // - NumBytesRem = WrOff - RdOff; - NumBytesRem = MIN(NumBytesRem, BufferSize); - if (NumBytesRem > 0u) { -#if SEGGER_RTT_MEMCPY_USE_BYTELOOP - pSrc = pRing->pBuffer + RdOff; - NumBytesRead += NumBytesRem; - BufferSize -= NumBytesRem; - RdOff += NumBytesRem; - while (NumBytesRem--) { - *pBuffer++ = *pSrc++; - }; -#else - SEGGER_RTT_MEMCPY(pBuffer, pRing->pBuffer + RdOff, NumBytesRem); - NumBytesRead += NumBytesRem; - pBuffer += NumBytesRem; - BufferSize -= NumBytesRem; - RdOff += NumBytesRem; -#endif - } - if (NumBytesRead) { - pRing->RdOff = RdOff; - } - // - return NumBytesRead; -} - -/********************************************************************* -* -* SEGGER_RTT_ReadUpBuffer -* -* Function description -* Reads characters from SEGGER real-time-terminal control block -* which have been previously stored by the application. -* Used to do the same operation that J-Link does, to transfer -* RTT data via other channels, such as TCP/IP or UART. -* -* Parameters -* BufferIndex Index of Up-buffer to be used. -* pBuffer Pointer to buffer provided by target application, to copy characters from RTT-up-buffer to. -* BufferSize Size of the target application buffer. -* -* Return value -* Number of bytes that have been read. -* -* Additional information -* This function must not be called when J-Link might also do RTT. -* This function locks against all other RTT operations. I.e. during -* the read operation, writing is also locked. -* If only one consumer reads from the up buffer, -* call sEGGER_RTT_ReadUpBufferNoLock() instead. -*/ -unsigned SEGGER_RTT_ReadUpBuffer(unsigned BufferIndex, void* pBuffer, unsigned BufferSize) { - unsigned NumBytesRead; - // - SEGGER_RTT_LOCK(); - // - // Call the non-locking read function - // - NumBytesRead = SEGGER_RTT_ReadUpBufferNoLock(BufferIndex, pBuffer, BufferSize); - // - // Finish up. - // - SEGGER_RTT_UNLOCK(); - // - return NumBytesRead; -} - -/********************************************************************* -* -* SEGGER_RTT_Read -* -* Function description -* Reads characters from SEGGER real-time-terminal control block -* which have been previously stored by the host. -* -* Parameters -* BufferIndex Index of Down-buffer to be used (e.g. 0 for "Terminal"). -* pBuffer Pointer to buffer provided by target application, to copy characters from RTT-down-buffer to. -* BufferSize Size of the target application buffer. -* -* Return value -* Number of bytes that have been read. -*/ -unsigned SEGGER_RTT_Read(unsigned BufferIndex, void* pBuffer, unsigned BufferSize) { - unsigned NumBytesRead; - // - SEGGER_RTT_LOCK(); - // - // Call the non-locking read function - // - NumBytesRead = SEGGER_RTT_ReadNoLock(BufferIndex, pBuffer, BufferSize); - // - // Finish up. - // - SEGGER_RTT_UNLOCK(); - // - return NumBytesRead; -} - -/********************************************************************* -* -* SEGGER_RTT_WriteWithOverwriteNoLock -* -* Function description -* Stores a specified number of characters in SEGGER RTT -* control block. -* SEGGER_RTT_WriteWithOverwriteNoLock does not lock the application -* and overwrites data if the data does not fit into the buffer. -* -* Parameters -* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). -* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. -* NumBytes Number of bytes to be stored in the SEGGER RTT control block. -* -* Notes -* (1) If there is not enough space in the "Up"-buffer, data is overwritten. -* (2) For performance reasons this function does not call Init() -* and may only be called after RTT has been initialized. -* Either by calling SEGGER_RTT_Init() or calling another RTT API function first. -* (3) Do not use SEGGER_RTT_WriteWithOverwriteNoLock if a J-Link -* connection reads RTT data. -*/ -void SEGGER_RTT_WriteWithOverwriteNoLock(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { - const char* pData; - SEGGER_RTT_BUFFER_UP* pRing; - unsigned Avail; -#if SEGGER_RTT_MEMCPY_USE_BYTELOOP - char* pDst; -#endif - - pData = (const char *)pBuffer; - // - // Get "to-host" ring buffer and copy some elements into local variables. - // - pRing = &_SEGGER_RTT.aUp[BufferIndex]; - // - // Check if we will overwrite data and need to adjust the RdOff. - // - if (pRing->WrOff == pRing->RdOff) { - Avail = pRing->SizeOfBuffer - 1u; - } else if ( pRing->WrOff < pRing->RdOff) { - Avail = pRing->RdOff - pRing->WrOff - 1u; - } else { - Avail = pRing->RdOff - pRing->WrOff - 1u + pRing->SizeOfBuffer; - } - if (NumBytes > Avail) { - pRing->RdOff += (NumBytes - Avail); - while (pRing->RdOff >= pRing->SizeOfBuffer) { - pRing->RdOff -= pRing->SizeOfBuffer; - } - } - // - // Write all data, no need to check the RdOff, but possibly handle multiple wrap-arounds - // - Avail = pRing->SizeOfBuffer - pRing->WrOff; - do { - if (Avail > NumBytes) { - // - // Last round - // -#if SEGGER_RTT_MEMCPY_USE_BYTELOOP - pDst = pRing->pBuffer + pRing->WrOff; - Avail = NumBytes; - while (NumBytes--) { - *pDst++ = *pData++; - }; - pRing->WrOff += Avail; -#else - SEGGER_RTT_MEMCPY(pRing->pBuffer + pRing->WrOff, pData, NumBytes); - pRing->WrOff += NumBytes; -#endif - break; - } else { - // - // Wrap-around necessary, write until wrap-around and reset WrOff - // -#if SEGGER_RTT_MEMCPY_USE_BYTELOOP - pDst = pRing->pBuffer + pRing->WrOff; - NumBytes -= Avail; - while (Avail--) { - *pDst++ = *pData++; - }; - pRing->WrOff = 0; -#else - SEGGER_RTT_MEMCPY(pRing->pBuffer + pRing->WrOff, pData, Avail); - pData += Avail; - pRing->WrOff = 0; - NumBytes -= Avail; -#endif - Avail = (pRing->SizeOfBuffer - 1); - } - } while (NumBytes); -} - -/********************************************************************* -* -* SEGGER_RTT_WriteSkipNoLock -* -* Function description -* Stores a specified number of characters in SEGGER RTT -* control block which is then read by the host. -* SEGGER_RTT_WriteSkipNoLock does not lock the application and -* skips all data, if the data does not fit into the buffer. -* -* Parameters -* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). -* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. -* NumBytes Number of bytes to be stored in the SEGGER RTT control block. -* MUST be > 0!!! -* This is done for performance reasons, so no initial check has do be done. -* -* Return value -* 1: Data has been copied -* 0: No space, data has not been copied -* -* Notes -* (1) If there is not enough space in the "Up"-buffer, all data is dropped. -* (2) For performance reasons this function does not call Init() -* and may only be called after RTT has been initialized. -* Either by calling SEGGER_RTT_Init() or calling another RTT API function first. -*/ -#if (RTT_USE_ASM == 0) -unsigned SEGGER_RTT_WriteSkipNoLock(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { - const char* pData; - SEGGER_RTT_BUFFER_UP* pRing; - unsigned Avail; - unsigned RdOff; - unsigned WrOff; - unsigned Rem; - // - // Cases: - // 1) RdOff <= WrOff => Space until wrap-around is sufficient - // 2) RdOff <= WrOff => Space after wrap-around needed (copy in 2 chunks) - // 3) RdOff < WrOff => No space in buf - // 4) RdOff > WrOff => Space is sufficient - // 5) RdOff > WrOff => No space in buf - // - // 1) is the most common case for large buffers and assuming that J-Link reads the data fast enough - // - pData = (const char *)pBuffer; - pRing = &_SEGGER_RTT.aUp[BufferIndex]; - RdOff = pRing->RdOff; - WrOff = pRing->WrOff; - if (RdOff <= WrOff) { // Case 1), 2) or 3) - Avail = pRing->SizeOfBuffer - WrOff - 1u; // Space until wrap-around (assume 1 byte not usable for case that RdOff == 0) - if (Avail >= NumBytes) { // Case 1)? -CopyStraight: - memcpy(pRing->pBuffer + WrOff, pData, NumBytes); - pRing->WrOff = WrOff + NumBytes; - return 1; - } - Avail += RdOff; // Space incl. wrap-around - if (Avail >= NumBytes) { // Case 2? => If not, we have case 3) (does not fit) - Rem = pRing->SizeOfBuffer - WrOff; // Space until end of buffer - memcpy(pRing->pBuffer + WrOff, pData, Rem); // Copy 1st chunk - NumBytes -= Rem; - // - // Special case: First check that assumed RdOff == 0 calculated that last element before wrap-around could not be used - // But 2nd check (considering space until wrap-around and until RdOff) revealed that RdOff is not 0, so we can use the last element - // In this case, we may use a copy straight until buffer end anyway without needing to copy 2 chunks - // Therefore, check if 2nd memcpy is necessary at all - // - if (NumBytes) { - memcpy(pRing->pBuffer, pData + Rem, NumBytes); - } - pRing->WrOff = NumBytes; - return 1; - } - } else { // Potential case 4) - Avail = RdOff - WrOff - 1u; - if (Avail >= NumBytes) { // Case 4)? => If not, we have case 5) (does not fit) - goto CopyStraight; - } - } - return 0; // No space in buffer -} -#endif - -/********************************************************************* -* -* SEGGER_RTT_WriteDownBufferNoLock -* -* Function description -* Stores a specified number of characters in SEGGER RTT -* control block inside a buffer. -* SEGGER_RTT_WriteDownBufferNoLock does not lock the application. -* Used to do the same operation that J-Link does, to transfer -* RTT data from other channels, such as TCP/IP or UART. -* -* Parameters -* BufferIndex Index of "Down"-buffer to be used. -* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. -* NumBytes Number of bytes to be stored in the SEGGER RTT control block. -* -* Return value -* Number of bytes which have been stored in the "Down"-buffer. -* -* Notes -* (1) Data is stored according to buffer flags. -* (2) For performance reasons this function does not call Init() -* and may only be called after RTT has been initialized. -* Either by calling SEGGER_RTT_Init() or calling another RTT API function first. -* -* Additional information -* This function must not be called when J-Link might also do RTT. -*/ -unsigned SEGGER_RTT_WriteDownBufferNoLock(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { - unsigned Status; - unsigned Avail; - const char* pData; - SEGGER_RTT_BUFFER_UP* pRing; - - pData = (const char *)pBuffer; - // - // Get "to-target" ring buffer. - // It is save to cast that to a "to-host" buffer. Up and Down buffer differ in volatility of offsets that might be modified by J-Link. - // - pRing = (SEGGER_RTT_BUFFER_UP*)&_SEGGER_RTT.aDown[BufferIndex]; - // - // How we output depends upon the mode... - // - switch (pRing->Flags) { - case SEGGER_RTT_MODE_NO_BLOCK_SKIP: - // - // If we are in skip mode and there is no space for the whole - // of this output, don't bother. - // - Avail = _GetAvailWriteSpace(pRing); - if (Avail < NumBytes) { - Status = 0u; - } else { - Status = NumBytes; - _WriteNoCheck(pRing, pData, NumBytes); - } - break; - case SEGGER_RTT_MODE_NO_BLOCK_TRIM: - // - // If we are in trim mode, trim to what we can output without blocking. - // - Avail = _GetAvailWriteSpace(pRing); - Status = Avail < NumBytes ? Avail : NumBytes; - _WriteNoCheck(pRing, pData, Status); - break; - case SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL: - // - // If we are in blocking mode, output everything. - // - Status = _WriteBlocking(pRing, pData, NumBytes); - break; - default: - Status = 0u; - break; - } - // - // Finish up. - // - return Status; -} - -/********************************************************************* -* -* SEGGER_RTT_WriteNoLock -* -* Function description -* Stores a specified number of characters in SEGGER RTT -* control block which is then read by the host. -* SEGGER_RTT_WriteNoLock does not lock the application. -* -* Parameters -* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). -* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. -* NumBytes Number of bytes to be stored in the SEGGER RTT control block. -* -* Return value -* Number of bytes which have been stored in the "Up"-buffer. -* -* Notes -* (1) Data is stored according to buffer flags. -* (2) For performance reasons this function does not call Init() -* and may only be called after RTT has been initialized. -* Either by calling SEGGER_RTT_Init() or calling another RTT API function first. -*/ -unsigned SEGGER_RTT_WriteNoLock(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { - unsigned Status; - unsigned Avail; - const char* pData; - SEGGER_RTT_BUFFER_UP* pRing; - - pData = (const char *)pBuffer; - // - // Get "to-host" ring buffer. - // - pRing = &_SEGGER_RTT.aUp[BufferIndex]; - // - // How we output depends upon the mode... - // - switch (pRing->Flags) { - case SEGGER_RTT_MODE_NO_BLOCK_SKIP: - // - // If we are in skip mode and there is no space for the whole - // of this output, don't bother. - // - Avail = _GetAvailWriteSpace(pRing); - if (Avail < NumBytes) { - Status = 0u; - } else { - Status = NumBytes; - _WriteNoCheck(pRing, pData, NumBytes); - } - break; - case SEGGER_RTT_MODE_NO_BLOCK_TRIM: - // - // If we are in trim mode, trim to what we can output without blocking. - // - Avail = _GetAvailWriteSpace(pRing); - Status = Avail < NumBytes ? Avail : NumBytes; - _WriteNoCheck(pRing, pData, Status); - break; - case SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL: - // - // If we are in blocking mode, output everything. - // - Status = _WriteBlocking(pRing, pData, NumBytes); - break; - default: - Status = 0u; - break; - } - // - // Finish up. - // - return Status; -} - -/********************************************************************* -* -* SEGGER_RTT_WriteDownBuffer -* -* Function description -* Stores a specified number of characters in SEGGER RTT control block in a buffer. -* -* Parameters -* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). -* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. -* NumBytes Number of bytes to be stored in the SEGGER RTT control block. -* -* Return value -* Number of bytes which have been stored in the "Down"-buffer. -* -* Notes -* (1) Data is stored according to buffer flags. -* -* Additional information -* This function must not be called when J-Link might also do RTT. -* This function locks against all other RTT operations. I.e. during -* the write operation, writing from the application is also locked. -* If only one consumer writes to the down buffer, -* call SEGGER_RTT_WriteDownBufferNoLock() instead. -*/ -unsigned SEGGER_RTT_WriteDownBuffer(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { - unsigned Status; - // - INIT(); - SEGGER_RTT_LOCK(); - // - // Call the non-locking write function - // - Status = SEGGER_RTT_WriteDownBufferNoLock(BufferIndex, pBuffer, NumBytes); - // - // Finish up. - // - SEGGER_RTT_UNLOCK(); - // - return Status; -} - -/********************************************************************* -* -* SEGGER_RTT_Write -* -* Function description -* Stores a specified number of characters in SEGGER RTT -* control block which is then read by the host. -* -* Parameters -* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). -* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. -* NumBytes Number of bytes to be stored in the SEGGER RTT control block. -* -* Return value -* Number of bytes which have been stored in the "Up"-buffer. -* -* Notes -* (1) Data is stored according to buffer flags. -*/ -unsigned SEGGER_RTT_Write(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { - unsigned Status; - // - INIT(); - SEGGER_RTT_LOCK(); - // - // Call the non-locking write function - // - Status = SEGGER_RTT_WriteNoLock(BufferIndex, pBuffer, NumBytes); - // - // Finish up. - // - SEGGER_RTT_UNLOCK(); - // - return Status; -} - -/********************************************************************* -* -* SEGGER_RTT_WriteString -* -* Function description -* Stores string in SEGGER RTT control block. -* This data is read by the host. -* -* Parameters -* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). -* s Pointer to string. -* -* Return value -* Number of bytes which have been stored in the "Up"-buffer. -* -* Notes -* (1) Data is stored according to buffer flags. -* (2) String passed to this function has to be \0 terminated -* (3) \0 termination character is *not* stored in RTT buffer -*/ -unsigned SEGGER_RTT_WriteString(unsigned BufferIndex, const char* s) { - unsigned Len; - - Len = STRLEN(s); - return SEGGER_RTT_Write(BufferIndex, s, Len); -} - -/********************************************************************* -* -* SEGGER_RTT_PutCharSkipNoLock -* -* Function description -* Stores a single character/byte in SEGGER RTT buffer. -* SEGGER_RTT_PutCharSkipNoLock does not lock the application and -* skips the byte, if it does not fit into the buffer. -* -* Parameters -* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). -* c Byte to be stored. -* -* Return value -* Number of bytes which have been stored in the "Up"-buffer. -* -* Notes -* (1) If there is not enough space in the "Up"-buffer, the character is dropped. -* (2) For performance reasons this function does not call Init() -* and may only be called after RTT has been initialized. -* Either by calling SEGGER_RTT_Init() or calling another RTT API function first. -*/ - -unsigned SEGGER_RTT_PutCharSkipNoLock(unsigned BufferIndex, char c) { - SEGGER_RTT_BUFFER_UP* pRing; - unsigned WrOff; - unsigned Status; - // - // Get "to-host" ring buffer. - // - pRing = &_SEGGER_RTT.aUp[BufferIndex]; - // - // Get write position and handle wrap-around if necessary - // - WrOff = pRing->WrOff + 1; - if (WrOff == pRing->SizeOfBuffer) { - WrOff = 0; - } - // - // Output byte if free space is available - // - if (WrOff != pRing->RdOff) { - pRing->pBuffer[pRing->WrOff] = c; - pRing->WrOff = WrOff; - Status = 1; - } else { - Status = 0; - } - // - return Status; -} - -/********************************************************************* -* -* SEGGER_RTT_PutCharSkip -* -* Function description -* Stores a single character/byte in SEGGER RTT buffer. -* -* Parameters -* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). -* c Byte to be stored. -* -* Return value -* Number of bytes which have been stored in the "Up"-buffer. -* -* Notes -* (1) If there is not enough space in the "Up"-buffer, the character is dropped. -*/ - -unsigned SEGGER_RTT_PutCharSkip(unsigned BufferIndex, char c) { - SEGGER_RTT_BUFFER_UP* pRing; - unsigned WrOff; - unsigned Status; - // - // Prepare - // - INIT(); - SEGGER_RTT_LOCK(); - // - // Get "to-host" ring buffer. - // - pRing = &_SEGGER_RTT.aUp[BufferIndex]; - // - // Get write position and handle wrap-around if necessary - // - WrOff = pRing->WrOff + 1; - if (WrOff == pRing->SizeOfBuffer) { - WrOff = 0; - } - // - // Output byte if free space is available - // - if (WrOff != pRing->RdOff) { - pRing->pBuffer[pRing->WrOff] = c; - pRing->WrOff = WrOff; - Status = 1; - } else { - Status = 0; - } - // - // Finish up. - // - SEGGER_RTT_UNLOCK(); - // - return Status; -} - - /********************************************************************* -* -* SEGGER_RTT_PutChar -* -* Function description -* Stores a single character/byte in SEGGER RTT buffer. -* -* Parameters -* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). -* c Byte to be stored. -* -* Return value -* Number of bytes which have been stored in the "Up"-buffer. -* -* Notes -* (1) Data is stored according to buffer flags. -*/ - -unsigned SEGGER_RTT_PutChar(unsigned BufferIndex, char c) { - SEGGER_RTT_BUFFER_UP* pRing; - unsigned WrOff; - unsigned Status; - // - // Prepare - // - INIT(); - SEGGER_RTT_LOCK(); - // - // Get "to-host" ring buffer. - // - pRing = &_SEGGER_RTT.aUp[BufferIndex]; - // - // Get write position and handle wrap-around if necessary - // - WrOff = pRing->WrOff + 1; - if (WrOff == pRing->SizeOfBuffer) { - WrOff = 0; - } - // - // Wait for free space if mode is set to blocking - // - if (pRing->Flags == SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL) { - while (WrOff == pRing->RdOff) { - ; - } - } - // - // Output byte if free space is available - // - if (WrOff != pRing->RdOff) { - pRing->pBuffer[pRing->WrOff] = c; - pRing->WrOff = WrOff; - Status = 1; - } else { - Status = 0; - } - // - // Finish up. - // - SEGGER_RTT_UNLOCK(); - // - return Status; -} - -/********************************************************************* -* -* SEGGER_RTT_GetKey -* -* Function description -* Reads one character from the SEGGER RTT buffer. -* Host has previously stored data there. -* -* Return value -* < 0 - No character available (buffer empty). -* >= 0 - Character which has been read. (Possible values: 0 - 255) -* -* Notes -* (1) This function is only specified for accesses to RTT buffer 0. -*/ -int SEGGER_RTT_GetKey(void) { - char c; - int r; - - r = (int)SEGGER_RTT_Read(0u, &c, 1u); - if (r == 1) { - r = (int)(unsigned char)c; - } else { - r = -1; - } - return r; -} - -/********************************************************************* -* -* SEGGER_RTT_WaitKey -* -* Function description -* Waits until at least one character is avaible in the SEGGER RTT buffer. -* Once a character is available, it is read and this function returns. -* -* Return value -* >=0 - Character which has been read. -* -* Notes -* (1) This function is only specified for accesses to RTT buffer 0 -* (2) This function is blocking if no character is present in RTT buffer -*/ -int SEGGER_RTT_WaitKey(void) { - int r; - - do { - r = SEGGER_RTT_GetKey(); - } while (r < 0); - return r; -} - -/********************************************************************* -* -* SEGGER_RTT_HasKey -* -* Function description -* Checks if at least one character for reading is available in the SEGGER RTT buffer. -* -* Return value -* == 0 - No characters are available to read. -* == 1 - At least one character is available. -* -* Notes -* (1) This function is only specified for accesses to RTT buffer 0 -*/ -int SEGGER_RTT_HasKey(void) { - unsigned RdOff; - int r; - - INIT(); - RdOff = _SEGGER_RTT.aDown[0].RdOff; - if (RdOff != _SEGGER_RTT.aDown[0].WrOff) { - r = 1; - } else { - r = 0; - } - return r; -} - -/********************************************************************* -* -* SEGGER_RTT_HasData -* -* Function description -* Check if there is data from the host in the given buffer. -* -* Return value: -* ==0: No data -* !=0: Data in buffer -* -*/ -unsigned SEGGER_RTT_HasData(unsigned BufferIndex) { - SEGGER_RTT_BUFFER_DOWN* pRing; - unsigned v; - - pRing = &_SEGGER_RTT.aDown[BufferIndex]; - v = pRing->WrOff; - return v - pRing->RdOff; -} - -/********************************************************************* -* -* SEGGER_RTT_HasDataUp -* -* Function description -* Check if there is data remaining to be sent in the given buffer. -* -* Return value: -* ==0: No data -* !=0: Data in buffer -* -*/ -unsigned SEGGER_RTT_HasDataUp(unsigned BufferIndex) { - SEGGER_RTT_BUFFER_UP* pRing; - unsigned v; - - pRing = &_SEGGER_RTT.aUp[BufferIndex]; - v = pRing->RdOff; - return pRing->WrOff - v; -} - -/********************************************************************* -* -* SEGGER_RTT_AllocDownBuffer -* -* Function description -* Run-time configuration of the next down-buffer (H->T). -* The next buffer, which is not used yet is configured. -* This includes: Buffer address, size, name, flags, ... -* -* Parameters -* sName Pointer to a constant name string. -* pBuffer Pointer to a buffer to be used. -* BufferSize Size of the buffer. -* Flags Operating modes. Define behavior if buffer is full (not enough space for entire message). -* -* Return value -* >= 0 - O.K. Buffer Index -* < 0 - Error -*/ -int SEGGER_RTT_AllocDownBuffer(const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags) { - int BufferIndex; - - INIT(); - SEGGER_RTT_LOCK(); - BufferIndex = 0; - do { - if (_SEGGER_RTT.aDown[BufferIndex].pBuffer == NULL) { - break; - } - BufferIndex++; - } while (BufferIndex < _SEGGER_RTT.MaxNumDownBuffers); - if (BufferIndex < _SEGGER_RTT.MaxNumDownBuffers) { - _SEGGER_RTT.aDown[BufferIndex].sName = sName; - _SEGGER_RTT.aDown[BufferIndex].pBuffer = (char*)pBuffer; - _SEGGER_RTT.aDown[BufferIndex].SizeOfBuffer = BufferSize; - _SEGGER_RTT.aDown[BufferIndex].RdOff = 0u; - _SEGGER_RTT.aDown[BufferIndex].WrOff = 0u; - _SEGGER_RTT.aDown[BufferIndex].Flags = Flags; - } else { - BufferIndex = -1; - } - SEGGER_RTT_UNLOCK(); - return BufferIndex; -} - -/********************************************************************* -* -* SEGGER_RTT_AllocUpBuffer -* -* Function description -* Run-time configuration of the next up-buffer (T->H). -* The next buffer, which is not used yet is configured. -* This includes: Buffer address, size, name, flags, ... -* -* Parameters -* sName Pointer to a constant name string. -* pBuffer Pointer to a buffer to be used. -* BufferSize Size of the buffer. -* Flags Operating modes. Define behavior if buffer is full (not enough space for entire message). -* -* Return value -* >= 0 - O.K. Buffer Index -* < 0 - Error -*/ -int SEGGER_RTT_AllocUpBuffer(const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags) { - int BufferIndex; - - INIT(); - SEGGER_RTT_LOCK(); - BufferIndex = 0; - do { - if (_SEGGER_RTT.aUp[BufferIndex].pBuffer == NULL) { - break; - } - BufferIndex++; - } while (BufferIndex < _SEGGER_RTT.MaxNumUpBuffers); - if (BufferIndex < _SEGGER_RTT.MaxNumUpBuffers) { - _SEGGER_RTT.aUp[BufferIndex].sName = sName; - _SEGGER_RTT.aUp[BufferIndex].pBuffer = (char*)pBuffer; - _SEGGER_RTT.aUp[BufferIndex].SizeOfBuffer = BufferSize; - _SEGGER_RTT.aUp[BufferIndex].RdOff = 0u; - _SEGGER_RTT.aUp[BufferIndex].WrOff = 0u; - _SEGGER_RTT.aUp[BufferIndex].Flags = Flags; - } else { - BufferIndex = -1; - } - SEGGER_RTT_UNLOCK(); - return BufferIndex; -} - -/********************************************************************* -* -* SEGGER_RTT_ConfigUpBuffer -* -* Function description -* Run-time configuration of a specific up-buffer (T->H). -* Buffer to be configured is specified by index. -* This includes: Buffer address, size, name, flags, ... -* -* Parameters -* BufferIndex Index of the buffer to configure. -* sName Pointer to a constant name string. -* pBuffer Pointer to a buffer to be used. -* BufferSize Size of the buffer. -* Flags Operating modes. Define behavior if buffer is full (not enough space for entire message). -* -* Return value -* >= 0 - O.K. -* < 0 - Error -* -* Additional information -* Buffer 0 is configured on compile-time. -* May only be called once per buffer. -* Buffer name and flags can be reconfigured using the appropriate functions. -*/ -int SEGGER_RTT_ConfigUpBuffer(unsigned BufferIndex, const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags) { - int r; - - INIT(); - if (BufferIndex < (unsigned)_SEGGER_RTT.MaxNumUpBuffers) { - SEGGER_RTT_LOCK(); - if (BufferIndex > 0u) { - _SEGGER_RTT.aUp[BufferIndex].sName = sName; - _SEGGER_RTT.aUp[BufferIndex].pBuffer = (char*)pBuffer; - _SEGGER_RTT.aUp[BufferIndex].SizeOfBuffer = BufferSize; - _SEGGER_RTT.aUp[BufferIndex].RdOff = 0u; - _SEGGER_RTT.aUp[BufferIndex].WrOff = 0u; - } - _SEGGER_RTT.aUp[BufferIndex].Flags = Flags; - SEGGER_RTT_UNLOCK(); - r = 0; - } else { - r = -1; - } - return r; -} - -/********************************************************************* -* -* SEGGER_RTT_ConfigDownBuffer -* -* Function description -* Run-time configuration of a specific down-buffer (H->T). -* Buffer to be configured is specified by index. -* This includes: Buffer address, size, name, flags, ... -* -* Parameters -* BufferIndex Index of the buffer to configure. -* sName Pointer to a constant name string. -* pBuffer Pointer to a buffer to be used. -* BufferSize Size of the buffer. -* Flags Operating modes. Define behavior if buffer is full (not enough space for entire message). -* -* Return value -* >= 0 O.K. -* < 0 Error -* -* Additional information -* Buffer 0 is configured on compile-time. -* May only be called once per buffer. -* Buffer name and flags can be reconfigured using the appropriate functions. -*/ -int SEGGER_RTT_ConfigDownBuffer(unsigned BufferIndex, const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags) { - int r; - - INIT(); - if (BufferIndex < (unsigned)_SEGGER_RTT.MaxNumDownBuffers) { - SEGGER_RTT_LOCK(); - if (BufferIndex > 0u) { - _SEGGER_RTT.aDown[BufferIndex].sName = sName; - _SEGGER_RTT.aDown[BufferIndex].pBuffer = (char*)pBuffer; - _SEGGER_RTT.aDown[BufferIndex].SizeOfBuffer = BufferSize; - _SEGGER_RTT.aDown[BufferIndex].RdOff = 0u; - _SEGGER_RTT.aDown[BufferIndex].WrOff = 0u; - } - _SEGGER_RTT.aDown[BufferIndex].Flags = Flags; - SEGGER_RTT_UNLOCK(); - r = 0; - } else { - r = -1; - } - return r; -} - -/********************************************************************* -* -* SEGGER_RTT_SetNameUpBuffer -* -* Function description -* Run-time configuration of a specific up-buffer name (T->H). -* Buffer to be configured is specified by index. -* -* Parameters -* BufferIndex Index of the buffer to renamed. -* sName Pointer to a constant name string. -* -* Return value -* >= 0 O.K. -* < 0 Error -*/ -int SEGGER_RTT_SetNameUpBuffer(unsigned BufferIndex, const char* sName) { - int r; - - INIT(); - if (BufferIndex < (unsigned)_SEGGER_RTT.MaxNumUpBuffers) { - SEGGER_RTT_LOCK(); - _SEGGER_RTT.aUp[BufferIndex].sName = sName; - SEGGER_RTT_UNLOCK(); - r = 0; - } else { - r = -1; - } - return r; -} - -/********************************************************************* -* -* SEGGER_RTT_SetNameDownBuffer -* -* Function description -* Run-time configuration of a specific Down-buffer name (T->H). -* Buffer to be configured is specified by index. -* -* Parameters -* BufferIndex Index of the buffer to renamed. -* sName Pointer to a constant name string. -* -* Return value -* >= 0 O.K. -* < 0 Error -*/ -int SEGGER_RTT_SetNameDownBuffer(unsigned BufferIndex, const char* sName) { - int r; - - INIT(); - if (BufferIndex < (unsigned)_SEGGER_RTT.MaxNumDownBuffers) { - SEGGER_RTT_LOCK(); - _SEGGER_RTT.aDown[BufferIndex].sName = sName; - SEGGER_RTT_UNLOCK(); - r = 0; - } else { - r = -1; - } - return r; -} - -/********************************************************************* -* -* SEGGER_RTT_SetFlagsUpBuffer -* -* Function description -* Run-time configuration of specific up-buffer flags (T->H). -* Buffer to be configured is specified by index. -* -* Parameters -* BufferIndex Index of the buffer. -* Flags Flags to set for the buffer. -* -* Return value -* >= 0 O.K. -* < 0 Error -*/ -int SEGGER_RTT_SetFlagsUpBuffer(unsigned BufferIndex, unsigned Flags) { - int r; - - INIT(); - if (BufferIndex < (unsigned)_SEGGER_RTT.MaxNumUpBuffers) { - SEGGER_RTT_LOCK(); - _SEGGER_RTT.aUp[BufferIndex].Flags = Flags; - SEGGER_RTT_UNLOCK(); - r = 0; - } else { - r = -1; - } - return r; -} - -/********************************************************************* -* -* SEGGER_RTT_SetFlagsDownBuffer -* -* Function description -* Run-time configuration of specific Down-buffer flags (T->H). -* Buffer to be configured is specified by index. -* -* Parameters -* BufferIndex Index of the buffer to renamed. -* Flags Flags to set for the buffer. -* -* Return value -* >= 0 O.K. -* < 0 Error -*/ -int SEGGER_RTT_SetFlagsDownBuffer(unsigned BufferIndex, unsigned Flags) { - int r; - - INIT(); - if (BufferIndex < (unsigned)_SEGGER_RTT.MaxNumDownBuffers) { - SEGGER_RTT_LOCK(); - _SEGGER_RTT.aDown[BufferIndex].Flags = Flags; - SEGGER_RTT_UNLOCK(); - r = 0; - } else { - r = -1; - } - return r; -} - -/********************************************************************* -* -* SEGGER_RTT_Init -* -* Function description -* Initializes the RTT Control Block. -* Should be used in RAM targets, at start of the application. -* -*/ -void SEGGER_RTT_Init (void) { - _DoInit(); -} - -/********************************************************************* -* -* SEGGER_RTT_SetTerminal -* -* Function description -* Sets the terminal to be used for output on channel 0. -* -* Parameters -* TerminalId Index of the terminal. -* -* Return value -* >= 0 O.K. -* < 0 Error (e.g. if RTT is configured for non-blocking mode and there was no space in the buffer to set the new terminal Id) -*/ -int SEGGER_RTT_SetTerminal (unsigned char TerminalId) { - unsigned char ac[2]; - SEGGER_RTT_BUFFER_UP* pRing; - unsigned Avail; - int r; - // - INIT(); - // - r = 0; - ac[0] = 0xFFu; - if (TerminalId < sizeof(_aTerminalId)) { // We only support a certain number of channels - ac[1] = _aTerminalId[TerminalId]; - pRing = &_SEGGER_RTT.aUp[0]; // Buffer 0 is always reserved for terminal I/O, so we can use index 0 here, fixed - SEGGER_RTT_LOCK(); // Lock to make sure that no other task is writing into buffer, while we are and number of free bytes in buffer does not change downwards after checking and before writing - if ((pRing->Flags & SEGGER_RTT_MODE_MASK) == SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL) { - _ActiveTerminal = TerminalId; - _WriteBlocking(pRing, (const char*)ac, 2u); - } else { // Skipping mode or trim mode? => We cannot trim this command so handling is the same for both modes - Avail = _GetAvailWriteSpace(pRing); - if (Avail >= 2) { - _ActiveTerminal = TerminalId; // Only change active terminal in case of success - _WriteNoCheck(pRing, (const char*)ac, 2u); - } else { - r = -1; - } - } - SEGGER_RTT_UNLOCK(); - } else { - r = -1; - } - return r; -} - -/********************************************************************* -* -* SEGGER_RTT_TerminalOut -* -* Function description -* Writes a string to the given terminal -* without changing the terminal for channel 0. -* -* Parameters -* TerminalId Index of the terminal. -* s String to be printed on the terminal. -* -* Return value -* >= 0 - Number of bytes written. -* < 0 - Error. -* -*/ -int SEGGER_RTT_TerminalOut (unsigned char TerminalId, const char* s) { - int Status; - unsigned FragLen; - unsigned Avail; - SEGGER_RTT_BUFFER_UP* pRing; - // - INIT(); - // - // Validate terminal ID. - // - if (TerminalId < (char)sizeof(_aTerminalId)) { // We only support a certain number of channels - // - // Get "to-host" ring buffer. - // - pRing = &_SEGGER_RTT.aUp[0]; - // - // Need to be able to change terminal, write data, change back. - // Compute the fixed and variable sizes. - // - FragLen = STRLEN(s); - // - // How we output depends upon the mode... - // - SEGGER_RTT_LOCK(); - Avail = _GetAvailWriteSpace(pRing); - switch (pRing->Flags & SEGGER_RTT_MODE_MASK) { - case SEGGER_RTT_MODE_NO_BLOCK_SKIP: - // - // If we are in skip mode and there is no space for the whole - // of this output, don't bother switching terminals at all. - // - if (Avail < (FragLen + 4u)) { - Status = 0; - } else { - _PostTerminalSwitch(pRing, TerminalId); - Status = (int)_WriteBlocking(pRing, s, FragLen); - _PostTerminalSwitch(pRing, _ActiveTerminal); - } - break; - case SEGGER_RTT_MODE_NO_BLOCK_TRIM: - // - // If we are in trim mode and there is not enough space for everything, - // trim the output but always include the terminal switch. If no room - // for terminal switch, skip that totally. - // - if (Avail < 4u) { - Status = -1; - } else { - _PostTerminalSwitch(pRing, TerminalId); - Status = (int)_WriteBlocking(pRing, s, (FragLen < (Avail - 4u)) ? FragLen : (Avail - 4u)); - _PostTerminalSwitch(pRing, _ActiveTerminal); - } - break; - case SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL: - // - // If we are in blocking mode, output everything. - // - _PostTerminalSwitch(pRing, TerminalId); - Status = (int)_WriteBlocking(pRing, s, FragLen); - _PostTerminalSwitch(pRing, _ActiveTerminal); - break; - default: - Status = -1; - break; - } - // - // Finish up. - // - SEGGER_RTT_UNLOCK(); - } else { - Status = -1; - } - return Status; -} - -/********************************************************************* -* -* SEGGER_RTT_GetAvailWriteSpace -* -* Function description -* Returns the number of bytes available in the ring buffer. -* -* Parameters -* BufferIndex Index of the up buffer. -* -* Return value -* Number of bytes that are free in the selected up buffer. -*/ -unsigned SEGGER_RTT_GetAvailWriteSpace (unsigned BufferIndex){ - return _GetAvailWriteSpace(&_SEGGER_RTT.aUp[BufferIndex]); -} - - -/********************************************************************* -* -* SEGGER_RTT_GetBytesInBuffer() -* -* Function description -* Returns the number of bytes currently used in the up buffer. -* -* Parameters -* BufferIndex Index of the up buffer. -* -* Return value -* Number of bytes that are used in the buffer. -*/ -unsigned SEGGER_RTT_GetBytesInBuffer(unsigned BufferIndex) { - unsigned RdOff; - unsigned WrOff; - unsigned r; - // - // Avoid warnings regarding volatile access order. It's not a problem - // in this case, but dampen compiler enthusiasm. - // - RdOff = _SEGGER_RTT.aUp[BufferIndex].RdOff; - WrOff = _SEGGER_RTT.aUp[BufferIndex].WrOff; - if (RdOff <= WrOff) { - r = WrOff - RdOff; - } else { - r = _SEGGER_RTT.aUp[BufferIndex].SizeOfBuffer - (WrOff - RdOff); - } - return r; -} - -/*************************** End of file ****************************/ diff --git a/Marlin/lib/rtt/src/SEGGER_RTT.h b/Marlin/lib/rtt/src/SEGGER_RTT.h deleted file mode 100644 index b1e4b53dc9..0000000000 --- a/Marlin/lib/rtt/src/SEGGER_RTT.h +++ /dev/null @@ -1,326 +0,0 @@ -/********************************************************************* -* SEGGER Microcontroller GmbH * -* The Embedded Experts * -********************************************************************** -* * -* (c) 1995 - 2019 SEGGER Microcontroller GmbH * -* * -* www.segger.com Support: support@segger.com * -* * -********************************************************************** -* * -* SEGGER RTT * Real Time Transfer for embedded targets * -* * -********************************************************************** -* * -* All rights reserved. * -* * -* SEGGER strongly recommends to not make any changes * -* to or modify the source code of this software in order to stay * -* compatible with the RTT protocol and J-Link. * -* * -* Redistribution and use in source and binary forms, with or * -* without modification, are permitted provided that the following * -* condition is met: * -* * -* o Redistributions of source code must retain the above copyright * -* notice, this condition and the following disclaimer. * -* * -* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * -* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * -* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * -* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * -* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * -* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * -* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * -* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * -* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * -* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * -* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * -* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * -* DAMAGE. * -* * -********************************************************************** -* * -* RTT version: 6.64b * -* * -********************************************************************** - ----------------------------END-OF-HEADER------------------------------ -File : SEGGER_RTT.h -Purpose : Implementation of SEGGER real-time transfer which allows - real-time communication on targets which support debugger - memory accesses while the CPU is running. -Revision: $Rev: 17697 $ ----------------------------------------------------------------------- -*/ - -#ifndef SEGGER_RTT_H -#define SEGGER_RTT_H - -#include "SEGGER_RTT_Conf.h" - - - -/********************************************************************* -* -* Defines, defaults -* -********************************************************************** -*/ -#ifndef RTT_USE_ASM - #if (defined __SES_ARM) // SEGGER Embedded Studio - #define _CC_HAS_RTT_ASM_SUPPORT 1 - #elif (defined __CROSSWORKS_ARM) // Rowley Crossworks - #define _CC_HAS_RTT_ASM_SUPPORT 1 - #elif (defined __GNUC__) // GCC - #define _CC_HAS_RTT_ASM_SUPPORT 1 - #elif (defined __clang__) // Clang compiler - #define _CC_HAS_RTT_ASM_SUPPORT 1 - #elif (defined __IASMARM__) // IAR assembler - #define _CC_HAS_RTT_ASM_SUPPORT 1 - #elif (defined __ICCARM__) // IAR compiler - #define _CC_HAS_RTT_ASM_SUPPORT 1 - #else - #define _CC_HAS_RTT_ASM_SUPPORT 0 - #endif - #if (defined __ARM_ARCH_7M__) // Cortex-M3/4 - #define _CORE_HAS_RTT_ASM_SUPPORT 1 - #elif (defined __ARM_ARCH_7EM__) // Cortex-M7 - #define _CORE_HAS_RTT_ASM_SUPPORT 1 - #elif (defined __ARM_ARCH_8M_MAIN__) // Cortex-M33 - #define _CORE_HAS_RTT_ASM_SUPPORT 1 - #elif (defined __ARM7M__) // IAR Cortex-M3/4 - #if (__CORE__ == __ARM7M__) - #define _CORE_HAS_RTT_ASM_SUPPORT 1 - #else - #define _CORE_HAS_RTT_ASM_SUPPORT 0 - #endif - #elif (defined __ARM7EM__) // IAR Cortex-M7 - #if (__CORE__ == __ARM7EM__) - #define _CORE_HAS_RTT_ASM_SUPPORT 1 - #else - #define _CORE_HAS_RTT_ASM_SUPPORT 0 - #endif - #else - #define _CORE_HAS_RTT_ASM_SUPPORT 0 - #endif - // - // If IDE and core support the ASM version, enable ASM version by default - // - #if (_CC_HAS_RTT_ASM_SUPPORT && _CORE_HAS_RTT_ASM_SUPPORT) - #define RTT_USE_ASM (1) - #else - #define RTT_USE_ASM (0) - #endif -#endif - -#ifndef SEGGER_RTT_ASM // defined when SEGGER_RTT.h is included from assembly file -#include -#include - -/********************************************************************* -* -* Defines, fixed -* -********************************************************************** -*/ - -/********************************************************************* -* -* Types -* -********************************************************************** -*/ - -// -// Description for a circular buffer (also called "ring buffer") -// which is used as up-buffer (T->H) -// -typedef struct { - const char* sName; // Optional name. Standard names so far are: "Terminal", "SysView", "J-Scope_t4i4" - char* pBuffer; // Pointer to start of buffer - unsigned SizeOfBuffer; // Buffer size in bytes. Note that one byte is lost, as this implementation does not fill up the buffer in order to avoid the problem of being unable to distinguish between full and empty. - unsigned WrOff; // Position of next item to be written by either target. - volatile unsigned RdOff; // Position of next item to be read by host. Must be volatile since it may be modified by host. - unsigned Flags; // Contains configuration flags -} SEGGER_RTT_BUFFER_UP; - -// -// Description for a circular buffer (also called "ring buffer") -// which is used as down-buffer (H->T) -// -typedef struct { - const char* sName; // Optional name. Standard names so far are: "Terminal", "SysView", "J-Scope_t4i4" - char* pBuffer; // Pointer to start of buffer - unsigned SizeOfBuffer; // Buffer size in bytes. Note that one byte is lost, as this implementation does not fill up the buffer in order to avoid the problem of being unable to distinguish between full and empty. - volatile unsigned WrOff; // Position of next item to be written by host. Must be volatile since it may be modified by host. - unsigned RdOff; // Position of next item to be read by target (down-buffer). - unsigned Flags; // Contains configuration flags -} SEGGER_RTT_BUFFER_DOWN; - -// -// RTT control block which describes the number of buffers available -// as well as the configuration for each buffer -// -// -typedef struct { - char acID[16]; // Initialized to "SEGGER RTT" - int MaxNumUpBuffers; // Initialized to SEGGER_RTT_MAX_NUM_UP_BUFFERS (type. 2) - int MaxNumDownBuffers; // Initialized to SEGGER_RTT_MAX_NUM_DOWN_BUFFERS (type. 2) - SEGGER_RTT_BUFFER_UP aUp[SEGGER_RTT_MAX_NUM_UP_BUFFERS]; // Up buffers, transferring information up from target via debug probe to host - SEGGER_RTT_BUFFER_DOWN aDown[SEGGER_RTT_MAX_NUM_DOWN_BUFFERS]; // Down buffers, transferring information down from host via debug probe to target -} SEGGER_RTT_CB; - -/********************************************************************* -* -* Global data -* -********************************************************************** -*/ -extern SEGGER_RTT_CB _SEGGER_RTT; - -/********************************************************************* -* -* RTT API functions -* -********************************************************************** -*/ -#ifdef __cplusplus - extern "C" { -#endif -int SEGGER_RTT_AllocDownBuffer (const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags); -int SEGGER_RTT_AllocUpBuffer (const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags); -int SEGGER_RTT_ConfigUpBuffer (unsigned BufferIndex, const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags); -int SEGGER_RTT_ConfigDownBuffer (unsigned BufferIndex, const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags); -int SEGGER_RTT_GetKey (void); -unsigned SEGGER_RTT_HasData (unsigned BufferIndex); -int SEGGER_RTT_HasKey (void); -unsigned SEGGER_RTT_HasDataUp (unsigned BufferIndex); -void SEGGER_RTT_Init (void); -unsigned SEGGER_RTT_Read (unsigned BufferIndex, void* pBuffer, unsigned BufferSize); -unsigned SEGGER_RTT_ReadNoLock (unsigned BufferIndex, void* pData, unsigned BufferSize); -int SEGGER_RTT_SetNameDownBuffer (unsigned BufferIndex, const char* sName); -int SEGGER_RTT_SetNameUpBuffer (unsigned BufferIndex, const char* sName); -int SEGGER_RTT_SetFlagsDownBuffer (unsigned BufferIndex, unsigned Flags); -int SEGGER_RTT_SetFlagsUpBuffer (unsigned BufferIndex, unsigned Flags); -int SEGGER_RTT_WaitKey (void); -unsigned SEGGER_RTT_Write (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); -unsigned SEGGER_RTT_WriteNoLock (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); -unsigned SEGGER_RTT_WriteSkipNoLock (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); -unsigned SEGGER_RTT_ASM_WriteSkipNoLock (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); -unsigned SEGGER_RTT_WriteString (unsigned BufferIndex, const char* s); -void SEGGER_RTT_WriteWithOverwriteNoLock(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); -unsigned SEGGER_RTT_PutChar (unsigned BufferIndex, char c); -unsigned SEGGER_RTT_PutCharSkip (unsigned BufferIndex, char c); -unsigned SEGGER_RTT_PutCharSkipNoLock (unsigned BufferIndex, char c); -unsigned SEGGER_RTT_GetAvailWriteSpace (unsigned BufferIndex); -unsigned SEGGER_RTT_GetBytesInBuffer (unsigned BufferIndex); -// -// Function macro for performance optimization -// -#define SEGGER_RTT_HASDATA(n) (_SEGGER_RTT.aDown[n].WrOff - _SEGGER_RTT.aDown[n].RdOff) - -#if RTT_USE_ASM - #define SEGGER_RTT_WriteSkipNoLock SEGGER_RTT_ASM_WriteSkipNoLock -#endif - -/********************************************************************* -* -* RTT transfer functions to send RTT data via other channels. -* -********************************************************************** -*/ -unsigned SEGGER_RTT_ReadUpBuffer (unsigned BufferIndex, void* pBuffer, unsigned BufferSize); -unsigned SEGGER_RTT_ReadUpBufferNoLock (unsigned BufferIndex, void* pData, unsigned BufferSize); -unsigned SEGGER_RTT_WriteDownBuffer (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); -unsigned SEGGER_RTT_WriteDownBufferNoLock (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); - -#define SEGGER_RTT_HASDATA_UP(n) (_SEGGER_RTT.aUp[n].WrOff - _SEGGER_RTT.aUp[n].RdOff) - -/********************************************************************* -* -* RTT "Terminal" API functions -* -********************************************************************** -*/ -int SEGGER_RTT_SetTerminal (unsigned char TerminalId); -int SEGGER_RTT_TerminalOut (unsigned char TerminalId, const char* s); - -/********************************************************************* -* -* RTT printf functions (require SEGGER_RTT_printf.c) -* -********************************************************************** -*/ -int SEGGER_RTT_printf(unsigned BufferIndex, const char * sFormat, ...); -int SEGGER_RTT_vprintf(unsigned BufferIndex, const char * sFormat, va_list * pParamList); - -#ifdef __cplusplus - } -#endif - -#endif // ifndef(SEGGER_RTT_ASM) - -/********************************************************************* -* -* Defines -* -********************************************************************** -*/ - -// -// Operating modes. Define behavior if buffer is full (not enough space for entire message) -// -#define SEGGER_RTT_MODE_NO_BLOCK_SKIP (0) // Skip. Do not block, output nothing. (Default) -#define SEGGER_RTT_MODE_NO_BLOCK_TRIM (1) // Trim: Do not block, output as much as fits. -#define SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL (2) // Block: Wait until there is space in the buffer. -#define SEGGER_RTT_MODE_MASK (3) - -// -// Control sequences, based on ANSI. -// Can be used to control color, and clear the screen -// -#define RTT_CTRL_RESET "\x1B[0m" // Reset to default colors -#define RTT_CTRL_CLEAR "\x1B[2J" // Clear screen, reposition cursor to top left - -#define RTT_CTRL_TEXT_BLACK "\x1B[2;30m" -#define RTT_CTRL_TEXT_RED "\x1B[2;31m" -#define RTT_CTRL_TEXT_GREEN "\x1B[2;32m" -#define RTT_CTRL_TEXT_YELLOW "\x1B[2;33m" -#define RTT_CTRL_TEXT_BLUE "\x1B[2;34m" -#define RTT_CTRL_TEXT_MAGENTA "\x1B[2;35m" -#define RTT_CTRL_TEXT_CYAN "\x1B[2;36m" -#define RTT_CTRL_TEXT_WHITE "\x1B[2;37m" - -#define RTT_CTRL_TEXT_BRIGHT_BLACK "\x1B[1;30m" -#define RTT_CTRL_TEXT_BRIGHT_RED "\x1B[1;31m" -#define RTT_CTRL_TEXT_BRIGHT_GREEN "\x1B[1;32m" -#define RTT_CTRL_TEXT_BRIGHT_YELLOW "\x1B[1;33m" -#define RTT_CTRL_TEXT_BRIGHT_BLUE "\x1B[1;34m" -#define RTT_CTRL_TEXT_BRIGHT_MAGENTA "\x1B[1;35m" -#define RTT_CTRL_TEXT_BRIGHT_CYAN "\x1B[1;36m" -#define RTT_CTRL_TEXT_BRIGHT_WHITE "\x1B[1;37m" - -#define RTT_CTRL_BG_BLACK "\x1B[24;40m" -#define RTT_CTRL_BG_RED "\x1B[24;41m" -#define RTT_CTRL_BG_GREEN "\x1B[24;42m" -#define RTT_CTRL_BG_YELLOW "\x1B[24;43m" -#define RTT_CTRL_BG_BLUE "\x1B[24;44m" -#define RTT_CTRL_BG_MAGENTA "\x1B[24;45m" -#define RTT_CTRL_BG_CYAN "\x1B[24;46m" -#define RTT_CTRL_BG_WHITE "\x1B[24;47m" - -#define RTT_CTRL_BG_BRIGHT_BLACK "\x1B[4;40m" -#define RTT_CTRL_BG_BRIGHT_RED "\x1B[4;41m" -#define RTT_CTRL_BG_BRIGHT_GREEN "\x1B[4;42m" -#define RTT_CTRL_BG_BRIGHT_YELLOW "\x1B[4;43m" -#define RTT_CTRL_BG_BRIGHT_BLUE "\x1B[4;44m" -#define RTT_CTRL_BG_BRIGHT_MAGENTA "\x1B[4;45m" -#define RTT_CTRL_BG_BRIGHT_CYAN "\x1B[4;46m" -#define RTT_CTRL_BG_BRIGHT_WHITE "\x1B[4;47m" - - -#endif - -/*************************** End of file ****************************/ diff --git a/Marlin/lib/rtt/src/SEGGER_RTT_Conf.h b/Marlin/lib/rtt/src/SEGGER_RTT_Conf.h deleted file mode 100644 index 3019906290..0000000000 --- a/Marlin/lib/rtt/src/SEGGER_RTT_Conf.h +++ /dev/null @@ -1,389 +0,0 @@ -/********************************************************************* -* SEGGER Microcontroller GmbH * -* The Embedded Experts * -********************************************************************** -* * -* (c) 1995 - 2019 SEGGER Microcontroller GmbH * -* * -* www.segger.com Support: support@segger.com * -* * -********************************************************************** -* * -* SEGGER RTT * Real Time Transfer for embedded targets * -* * -********************************************************************** -* * -* All rights reserved. * -* * -* SEGGER strongly recommends to not make any changes * -* to or modify the source code of this software in order to stay * -* compatible with the RTT protocol and J-Link. * -* * -* Redistribution and use in source and binary forms, with or * -* without modification, are permitted provided that the following * -* condition is met: * -* * -* o Redistributions of source code must retain the above copyright * -* notice, this condition and the following disclaimer. * -* * -* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * -* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * -* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * -* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * -* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * -* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * -* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * -* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * -* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * -* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * -* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * -* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * -* DAMAGE. * -* * -********************************************************************** -* * -* RTT version: 6.64b * -* * -********************************************************************** - ----------------------------END-OF-HEADER------------------------------ -File : SEGGER_RTT_Conf.h -Purpose : Implementation of SEGGER real-time transfer (RTT) which - allows real-time communication on targets which support - debugger memory accesses while the CPU is running. -Revision: $Rev: 17698 $ - -*/ - -#ifndef SEGGER_RTT_CONF_H -#define SEGGER_RTT_CONF_H - -#ifdef __IAR_SYSTEMS_ICC__ - #include -#endif - -/********************************************************************* -* -* Defines, configurable -* -********************************************************************** -*/ -#ifndef SEGGER_RTT_MAX_NUM_UP_BUFFERS - #define SEGGER_RTT_MAX_NUM_UP_BUFFERS (3) // Max. number of up-buffers (T->H) available on this target (Default: 3) -#endif - -#ifndef SEGGER_RTT_MAX_NUM_DOWN_BUFFERS - #define SEGGER_RTT_MAX_NUM_DOWN_BUFFERS (3) // Max. number of down-buffers (H->T) available on this target (Default: 3) -#endif - -#ifndef BUFFER_SIZE_UP - #define BUFFER_SIZE_UP (1024) // Size of the buffer for terminal output of target, up to host (Default: 1k) -#endif - -#ifndef BUFFER_SIZE_DOWN - #define BUFFER_SIZE_DOWN (16) // Size of the buffer for terminal input to target from host (Usually keyboard input) (Default: 16) -#endif - -#ifndef SEGGER_RTT_PRINTF_BUFFER_SIZE - #define SEGGER_RTT_PRINTF_BUFFER_SIZE (64u) // Size of buffer for RTT printf to bulk-send chars via RTT (Default: 64) -#endif - -#ifndef SEGGER_RTT_MODE_DEFAULT - #define SEGGER_RTT_MODE_DEFAULT SEGGER_RTT_MODE_NO_BLOCK_SKIP // Mode for pre-initialized terminal channel (buffer 0) -#endif - -/********************************************************************* -* -* RTT memcpy configuration -* -* memcpy() is good for large amounts of data, -* but the overhead is big for small amounts, which are usually stored via RTT. -* With SEGGER_RTT_MEMCPY_USE_BYTELOOP a simple byte loop can be used instead. -* -* SEGGER_RTT_MEMCPY() can be used to replace standard memcpy() in RTT functions. -* This is may be required with memory access restrictions, -* such as on Cortex-A devices with MMU. -*/ -#ifndef SEGGER_RTT_MEMCPY_USE_BYTELOOP - #define SEGGER_RTT_MEMCPY_USE_BYTELOOP 0 // 0: Use memcpy/SEGGER_RTT_MEMCPY, 1: Use a simple byte-loop -#endif -// -// Example definition of SEGGER_RTT_MEMCPY to external memcpy with GCC toolchains and Cortex-A targets -// -//#if ((defined __SES_ARM) || (defined __CROSSWORKS_ARM) || (defined __GNUC__)) && (defined (__ARM_ARCH_7A__)) -// #define SEGGER_RTT_MEMCPY(pDest, pSrc, NumBytes) SEGGER_memcpy((pDest), (pSrc), (NumBytes)) -//#endif - -// -// Target is not allowed to perform other RTT operations while string still has not been stored completely. -// Otherwise we would probably end up with a mixed string in the buffer. -// If using RTT from within interrupts, multiple tasks or multi processors, define the SEGGER_RTT_LOCK() and SEGGER_RTT_UNLOCK() function here. -// -// SEGGER_RTT_MAX_INTERRUPT_PRIORITY can be used in the sample lock routines on Cortex-M3/4. -// Make sure to mask all interrupts which can send RTT data, i.e. generate SystemView events, or cause task switches. -// When high-priority interrupts must not be masked while sending RTT data, SEGGER_RTT_MAX_INTERRUPT_PRIORITY needs to be adjusted accordingly. -// (Higher priority = lower priority number) -// Default value for embOS: 128u -// Default configuration in FreeRTOS: configMAX_SYSCALL_INTERRUPT_PRIORITY: ( configLIBRARY_MAX_SYSCALL_INTERRUPT_PRIORITY << (8 - configPRIO_BITS) ) -// In case of doubt mask all interrupts: 1 << (8 - BASEPRI_PRIO_BITS) i.e. 1 << 5 when 3 bits are implemented in NVIC -// or define SEGGER_RTT_LOCK() to completely disable interrupts. -// -#ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY - #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20) // Interrupt priority to lock on SEGGER_RTT_LOCK on Cortex-M3/4 (Default: 0x20) -#endif - -/********************************************************************* -* -* RTT lock configuration for SEGGER Embedded Studio, -* Rowley CrossStudio and GCC -*/ -#if ((defined(__SES_ARM) || defined(__SES_RISCV) || defined(__CROSSWORKS_ARM) || defined(__GNUC__) || defined(__clang__)) && !defined (__CC_ARM)) - #if (defined(__ARM_ARCH_6M__) || defined(__ARM_ARCH_8M_BASE__)) - #define SEGGER_RTT_LOCK() { \ - unsigned int LockState; \ - __asm volatile ("mrs %0, primask \n\t" \ - "movs r1, $1 \n\t" \ - "msr primask, r1 \n\t" \ - : "=r" (LockState) \ - : \ - : "r1" \ - ); - - #define SEGGER_RTT_UNLOCK() __asm volatile ("msr primask, %0 \n\t" \ - : \ - : "r" (LockState) \ - : \ - ); \ - } - #elif (defined(__ARM_ARCH_7M__) || defined(__ARM_ARCH_7EM__) || defined(__ARM_ARCH_8M_MAIN__)) - #ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY - #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20) - #endif - #define SEGGER_RTT_LOCK() { \ - unsigned int LockState; \ - __asm volatile ("mrs %0, basepri \n\t" \ - "mov r1, %1 \n\t" \ - "msr basepri, r1 \n\t" \ - : "=r" (LockState) \ - : "i"(SEGGER_RTT_MAX_INTERRUPT_PRIORITY) \ - : "r1" \ - ); - - #define SEGGER_RTT_UNLOCK() __asm volatile ("msr basepri, %0 \n\t" \ - : \ - : "r" (LockState) \ - : \ - ); \ - } - - #elif defined(__ARM_ARCH_7A__) - #define SEGGER_RTT_LOCK() { \ - unsigned int LockState; \ - __asm volatile ("mrs r1, CPSR \n\t" \ - "mov %0, r1 \n\t" \ - "orr r1, r1, #0xC0 \n\t" \ - "msr CPSR_c, r1 \n\t" \ - : "=r" (LockState) \ - : \ - : "r1" \ - ); - - #define SEGGER_RTT_UNLOCK() __asm volatile ("mov r0, %0 \n\t" \ - "mrs r1, CPSR \n\t" \ - "bic r1, r1, #0xC0 \n\t" \ - "and r0, r0, #0xC0 \n\t" \ - "orr r1, r1, r0 \n\t" \ - "msr CPSR_c, r1 \n\t" \ - : \ - : "r" (LockState) \ - : "r0", "r1" \ - ); \ - } - #elif defined(__riscv) || defined(__riscv_xlen) - #define SEGGER_RTT_LOCK() { \ - unsigned int LockState; \ - __asm volatile ("csrr %0, mstatus \n\t" \ - "csrci mstatus, 8 \n\t" \ - "andi %0, %0, 8 \n\t" \ - : "=r" (LockState) \ - : \ - : \ - ); - - #define SEGGER_RTT_UNLOCK() __asm volatile ("csrr a1, mstatus \n\t" \ - "or %0, %0, a1 \n\t" \ - "csrs mstatus, %0 \n\t" \ - : \ - : "r" (LockState) \ - : "a1" \ - ); \ - } - #else - #define SEGGER_RTT_LOCK() - #define SEGGER_RTT_UNLOCK() - #endif -#endif - -/********************************************************************* -* -* RTT lock configuration for IAR EWARM -*/ -#ifdef __ICCARM__ - #if (defined (__ARM6M__) && (__CORE__ == __ARM6M__)) || \ - (defined (__ARM8M_BASELINE__) && (__CORE__ == __ARM8M_BASELINE__)) - #define SEGGER_RTT_LOCK() { \ - unsigned int LockState; \ - LockState = __get_PRIMASK(); \ - __set_PRIMASK(1); - - #define SEGGER_RTT_UNLOCK() __set_PRIMASK(LockState); \ - } - #elif (defined (__ARM7EM__) && (__CORE__ == __ARM7EM__)) || \ - (defined (__ARM7M__) && (__CORE__ == __ARM7M__)) || \ - (defined (__ARM8M_MAINLINE__) && (__CORE__ == __ARM8M_MAINLINE__)) || \ - (defined (__ARM8M_MAINLINE__) && (__CORE__ == __ARM8M_MAINLINE__)) - #ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY - #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20) - #endif - #define SEGGER_RTT_LOCK() { \ - unsigned int LockState; \ - LockState = __get_BASEPRI(); \ - __set_BASEPRI(SEGGER_RTT_MAX_INTERRUPT_PRIORITY); - - #define SEGGER_RTT_UNLOCK() __set_BASEPRI(LockState); \ - } - #endif -#endif - -/********************************************************************* -* -* RTT lock configuration for IAR RX -*/ -#ifdef __ICCRX__ - #define SEGGER_RTT_LOCK() { \ - unsigned long LockState; \ - LockState = __get_interrupt_state(); \ - __disable_interrupt(); - - #define SEGGER_RTT_UNLOCK() __set_interrupt_state(LockState); \ - } -#endif - -/********************************************************************* -* -* RTT lock configuration for IAR RL78 -*/ -#ifdef __ICCRL78__ - #define SEGGER_RTT_LOCK() { \ - __istate_t LockState; \ - LockState = __get_interrupt_state(); \ - __disable_interrupt(); - - #define SEGGER_RTT_UNLOCK() __set_interrupt_state(LockState); \ - } -#endif - -/********************************************************************* -* -* RTT lock configuration for KEIL ARM -*/ -#ifdef __CC_ARM - #if (defined __TARGET_ARCH_6S_M) - #define SEGGER_RTT_LOCK() { \ - unsigned int LockState; \ - register unsigned char PRIMASK __asm( "primask"); \ - LockState = PRIMASK; \ - PRIMASK = 1u; \ - __schedule_barrier(); - - #define SEGGER_RTT_UNLOCK() PRIMASK = LockState; \ - __schedule_barrier(); \ - } - #elif (defined(__TARGET_ARCH_7_M) || defined(__TARGET_ARCH_7E_M)) - #ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY - #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20) - #endif - #define SEGGER_RTT_LOCK() { \ - unsigned int LockState; \ - register unsigned char BASEPRI __asm( "basepri"); \ - LockState = BASEPRI; \ - BASEPRI = SEGGER_RTT_MAX_INTERRUPT_PRIORITY; \ - __schedule_barrier(); - - #define SEGGER_RTT_UNLOCK() BASEPRI = LockState; \ - __schedule_barrier(); \ - } - #endif -#endif - -/********************************************************************* -* -* RTT lock configuration for TI ARM -*/ -#ifdef __TI_ARM__ - #if defined (__TI_ARM_V6M0__) - #define SEGGER_RTT_LOCK() { \ - unsigned int LockState; \ - LockState = __get_PRIMASK(); \ - __set_PRIMASK(1); - - #define SEGGER_RTT_UNLOCK() __set_PRIMASK(LockState); \ - } - #elif (defined (__TI_ARM_V7M3__) || defined (__TI_ARM_V7M4__)) - #ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY - #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20) - #endif - #define SEGGER_RTT_LOCK() { \ - unsigned int LockState; \ - LockState = _set_interrupt_priority(SEGGER_RTT_MAX_INTERRUPT_PRIORITY); - - #define SEGGER_RTT_UNLOCK() _set_interrupt_priority(LockState); \ - } - #endif -#endif - -/********************************************************************* -* -* RTT lock configuration for CCRX -*/ -#ifdef __RX - #define SEGGER_RTT_LOCK() { \ - unsigned long LockState; \ - LockState = get_psw() & 0x010000; \ - clrpsw_i(); - - #define SEGGER_RTT_UNLOCK() set_psw(get_psw() | LockState); \ - } -#endif - -/********************************************************************* -* -* RTT lock configuration for embOS Simulation on Windows -* (Can also be used for generic RTT locking with embOS) -*/ -#if defined(WIN32) || defined(SEGGER_RTT_LOCK_EMBOS) - -void OS_SIM_EnterCriticalSection(void); -void OS_SIM_LeaveCriticalSection(void); - -#define SEGGER_RTT_LOCK() { \ - OS_SIM_EnterCriticalSection(); - -#define SEGGER_RTT_UNLOCK() OS_SIM_LeaveCriticalSection(); \ - } -#endif - -/********************************************************************* -* -* RTT lock configuration fallback -*/ -#ifndef SEGGER_RTT_LOCK - #define SEGGER_RTT_LOCK() // Lock RTT (nestable) (i.e. disable interrupts) -#endif - -#ifndef SEGGER_RTT_UNLOCK - #define SEGGER_RTT_UNLOCK() // Unlock RTT (nestable) (i.e. enable previous interrupt lock state) -#endif - -#endif -/*************************** End of file ****************************/ diff --git a/Marlin/lib/rtt/src/SEGGER_RTT_printf.c b/Marlin/lib/rtt/src/SEGGER_RTT_printf.c deleted file mode 100644 index b041a52062..0000000000 --- a/Marlin/lib/rtt/src/SEGGER_RTT_printf.c +++ /dev/null @@ -1,505 +0,0 @@ -/********************************************************************* -* SEGGER Microcontroller GmbH * -* The Embedded Experts * -********************************************************************** -* * -* (c) 1995 - 2019 SEGGER Microcontroller GmbH * -* * -* www.segger.com Support: support@segger.com * -* * -********************************************************************** -* * -* SEGGER RTT * Real Time Transfer for embedded targets * -* * -********************************************************************** -* * -* All rights reserved. * -* * -* SEGGER strongly recommends to not make any changes * -* to or modify the source code of this software in order to stay * -* compatible with the RTT protocol and J-Link. * -* * -* Redistribution and use in source and binary forms, with or * -* without modification, are permitted provided that the following * -* condition is met: * -* * -* o Redistributions of source code must retain the above copyright * -* notice, this condition and the following disclaimer. * -* * -* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * -* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * -* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * -* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * -* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * -* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * -* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * -* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * -* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * -* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * -* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * -* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * -* DAMAGE. * -* * -********************************************************************** -* * -* RTT version: 6.64b * -* * -********************************************************************** - ----------------------------END-OF-HEADER------------------------------ -File : SEGGER_RTT_printf.c -Purpose : Replacement for printf to write formatted data via RTT -Revision: $Rev: 17697 $ ----------------------------------------------------------------------- -*/ -#include "SEGGER_RTT.h" -#include "SEGGER_RTT_Conf.h" - -/********************************************************************* -* -* Defines, configurable -* -********************************************************************** -*/ - -#ifndef SEGGER_RTT_PRINTF_BUFFER_SIZE - #define SEGGER_RTT_PRINTF_BUFFER_SIZE (64) -#endif - -#include -#include - - -#define FORMAT_FLAG_LEFT_JUSTIFY (1u << 0) -#define FORMAT_FLAG_PAD_ZERO (1u << 1) -#define FORMAT_FLAG_PRINT_SIGN (1u << 2) -#define FORMAT_FLAG_ALTERNATE (1u << 3) - -/********************************************************************* -* -* Types -* -********************************************************************** -*/ - -typedef struct { - char* pBuffer; - unsigned BufferSize; - unsigned Cnt; - - int ReturnValue; - - unsigned RTTBufferIndex; -} SEGGER_RTT_PRINTF_DESC; - -/********************************************************************* -* -* Function prototypes -* -********************************************************************** -*/ - -/********************************************************************* -* -* Static code -* -********************************************************************** -*/ -/********************************************************************* -* -* _StoreChar -*/ -static void _StoreChar(SEGGER_RTT_PRINTF_DESC * p, char c) { - unsigned Cnt; - - Cnt = p->Cnt; - if ((Cnt + 1u) <= p->BufferSize) { - *(p->pBuffer + Cnt) = c; - p->Cnt = Cnt + 1u; - p->ReturnValue++; - } - // - // Write part of string, when the buffer is full - // - if (p->Cnt == p->BufferSize) { - if (SEGGER_RTT_Write(p->RTTBufferIndex, p->pBuffer, p->Cnt) != p->Cnt) { - p->ReturnValue = -1; - } else { - p->Cnt = 0u; - } - } -} - -/********************************************************************* -* -* _PrintUnsigned -*/ -static void _PrintUnsigned(SEGGER_RTT_PRINTF_DESC * pBufferDesc, unsigned v, unsigned Base, unsigned NumDigits, unsigned FieldWidth, unsigned FormatFlags) { - static const char _aV2C[16] = {'0', '1', '2', '3', '4', '5', '6', '7', '8', '9', 'A', 'B', 'C', 'D', 'E', 'F' }; - unsigned Div; - unsigned Digit; - unsigned Number; - unsigned Width; - char c; - - Number = v; - Digit = 1u; - // - // Get actual field width - // - Width = 1u; - while (Number >= Base) { - Number = (Number / Base); - Width++; - } - if (NumDigits > Width) { - Width = NumDigits; - } - // - // Print leading chars if necessary - // - if ((FormatFlags & FORMAT_FLAG_LEFT_JUSTIFY) == 0u) { - if (FieldWidth != 0u) { - if (((FormatFlags & FORMAT_FLAG_PAD_ZERO) == FORMAT_FLAG_PAD_ZERO) && (NumDigits == 0u)) { - c = '0'; - } else { - c = ' '; - } - while ((FieldWidth != 0u) && (Width < FieldWidth)) { - FieldWidth--; - _StoreChar(pBufferDesc, c); - if (pBufferDesc->ReturnValue < 0) { - break; - } - } - } - } - if (pBufferDesc->ReturnValue >= 0) { - // - // Compute Digit. - // Loop until Digit has the value of the highest digit required. - // Example: If the output is 345 (Base 10), loop 2 times until Digit is 100. - // - while (1) { - if (NumDigits > 1u) { // User specified a min number of digits to print? => Make sure we loop at least that often, before checking anything else (> 1 check avoids problems with NumDigits being signed / unsigned) - NumDigits--; - } else { - Div = v / Digit; - if (Div < Base) { // Is our divider big enough to extract the highest digit from value? => Done - break; - } - } - Digit *= Base; - } - // - // Output digits - // - do { - Div = v / Digit; - v -= Div * Digit; - _StoreChar(pBufferDesc, _aV2C[Div]); - if (pBufferDesc->ReturnValue < 0) { - break; - } - Digit /= Base; - } while (Digit); - // - // Print trailing spaces if necessary - // - if ((FormatFlags & FORMAT_FLAG_LEFT_JUSTIFY) == FORMAT_FLAG_LEFT_JUSTIFY) { - if (FieldWidth != 0u) { - while ((FieldWidth != 0u) && (Width < FieldWidth)) { - FieldWidth--; - _StoreChar(pBufferDesc, ' '); - if (pBufferDesc->ReturnValue < 0) { - break; - } - } - } - } - } -} - -/********************************************************************* -* -* _PrintInt -*/ -static void _PrintInt(SEGGER_RTT_PRINTF_DESC * pBufferDesc, int v, unsigned Base, unsigned NumDigits, unsigned FieldWidth, unsigned FormatFlags) { - unsigned Width; - int Number; - - Number = (v < 0) ? -v : v; - - // - // Get actual field width - // - Width = 1u; - while (Number >= (int)Base) { - Number = (Number / (int)Base); - Width++; - } - if (NumDigits > Width) { - Width = NumDigits; - } - if ((FieldWidth > 0u) && ((v < 0) || ((FormatFlags & FORMAT_FLAG_PRINT_SIGN) == FORMAT_FLAG_PRINT_SIGN))) { - FieldWidth--; - } - - // - // Print leading spaces if necessary - // - if ((((FormatFlags & FORMAT_FLAG_PAD_ZERO) == 0u) || (NumDigits != 0u)) && ((FormatFlags & FORMAT_FLAG_LEFT_JUSTIFY) == 0u)) { - if (FieldWidth != 0u) { - while ((FieldWidth != 0u) && (Width < FieldWidth)) { - FieldWidth--; - _StoreChar(pBufferDesc, ' '); - if (pBufferDesc->ReturnValue < 0) { - break; - } - } - } - } - // - // Print sign if necessary - // - if (pBufferDesc->ReturnValue >= 0) { - if (v < 0) { - v = -v; - _StoreChar(pBufferDesc, '-'); - } else if ((FormatFlags & FORMAT_FLAG_PRINT_SIGN) == FORMAT_FLAG_PRINT_SIGN) { - _StoreChar(pBufferDesc, '+'); - } else { - - } - if (pBufferDesc->ReturnValue >= 0) { - // - // Print leading zeros if necessary - // - if (((FormatFlags & FORMAT_FLAG_PAD_ZERO) == FORMAT_FLAG_PAD_ZERO) && ((FormatFlags & FORMAT_FLAG_LEFT_JUSTIFY) == 0u) && (NumDigits == 0u)) { - if (FieldWidth != 0u) { - while ((FieldWidth != 0u) && (Width < FieldWidth)) { - FieldWidth--; - _StoreChar(pBufferDesc, '0'); - if (pBufferDesc->ReturnValue < 0) { - break; - } - } - } - } - if (pBufferDesc->ReturnValue >= 0) { - // - // Print number without sign - // - _PrintUnsigned(pBufferDesc, (unsigned)v, Base, NumDigits, FieldWidth, FormatFlags); - } - } - } -} - -/********************************************************************* -* -* Public code -* -********************************************************************** -*/ -/********************************************************************* -* -* SEGGER_RTT_vprintf -* -* Function description -* Stores a formatted string in SEGGER RTT control block. -* This data is read by the host. -* -* Parameters -* BufferIndex Index of "Up"-buffer to be used. (e.g. 0 for "Terminal") -* sFormat Pointer to format string -* pParamList Pointer to the list of arguments for the format string -* -* Return values -* >= 0: Number of bytes which have been stored in the "Up"-buffer. -* < 0: Error -*/ -int SEGGER_RTT_vprintf(unsigned BufferIndex, const char * sFormat, va_list * pParamList) { - char c; - SEGGER_RTT_PRINTF_DESC BufferDesc; - int v; - unsigned NumDigits; - unsigned FormatFlags; - unsigned FieldWidth; - char acBuffer[SEGGER_RTT_PRINTF_BUFFER_SIZE]; - - BufferDesc.pBuffer = acBuffer; - BufferDesc.BufferSize = SEGGER_RTT_PRINTF_BUFFER_SIZE; - BufferDesc.Cnt = 0u; - BufferDesc.RTTBufferIndex = BufferIndex; - BufferDesc.ReturnValue = 0; - - do { - c = *sFormat; - sFormat++; - if (c == 0u) { - break; - } - if (c == '%') { - // - // Filter out flags - // - FormatFlags = 0u; - v = 1; - do { - c = *sFormat; - switch (c) { - case '-': FormatFlags |= FORMAT_FLAG_LEFT_JUSTIFY; sFormat++; break; - case '0': FormatFlags |= FORMAT_FLAG_PAD_ZERO; sFormat++; break; - case '+': FormatFlags |= FORMAT_FLAG_PRINT_SIGN; sFormat++; break; - case '#': FormatFlags |= FORMAT_FLAG_ALTERNATE; sFormat++; break; - default: v = 0; break; - } - } while (v); - // - // filter out field with - // - FieldWidth = 0u; - do { - c = *sFormat; - if ((c < '0') || (c > '9')) { - break; - } - sFormat++; - FieldWidth = (FieldWidth * 10u) + ((unsigned)c - '0'); - } while (1); - - // - // Filter out precision (number of digits to display) - // - NumDigits = 0u; - c = *sFormat; - if (c == '.') { - sFormat++; - do { - c = *sFormat; - if ((c < '0') || (c > '9')) { - break; - } - sFormat++; - NumDigits = NumDigits * 10u + ((unsigned)c - '0'); - } while (1); - } - // - // Filter out length modifier - // - c = *sFormat; - do { - if ((c == 'l') || (c == 'h')) { - sFormat++; - c = *sFormat; - } else { - break; - } - } while (1); - // - // Handle specifiers - // - switch (c) { - case 'c': { - char c0; - v = va_arg(*pParamList, int); - c0 = (char)v; - _StoreChar(&BufferDesc, c0); - break; - } - case 'd': - v = va_arg(*pParamList, int); - _PrintInt(&BufferDesc, v, 10u, NumDigits, FieldWidth, FormatFlags); - break; - case 'u': - v = va_arg(*pParamList, int); - _PrintUnsigned(&BufferDesc, (unsigned)v, 10u, NumDigits, FieldWidth, FormatFlags); - break; - case 'x': - case 'X': - v = va_arg(*pParamList, int); - _PrintUnsigned(&BufferDesc, (unsigned)v, 16u, NumDigits, FieldWidth, FormatFlags); - break; - case 's': - { - const char * s = va_arg(*pParamList, const char *); - do { - c = *s; - s++; - if (c == '\0') { - break; - } - _StoreChar(&BufferDesc, c); - } while (BufferDesc.ReturnValue >= 0); - } - break; - case 'p': - v = va_arg(*pParamList, int); - _PrintUnsigned(&BufferDesc, (unsigned)v, 16u, 8u, 8u, 0u); - break; - case '%': - _StoreChar(&BufferDesc, '%'); - break; - default: - break; - } - sFormat++; - } else { - _StoreChar(&BufferDesc, c); - } - } while (BufferDesc.ReturnValue >= 0); - - if (BufferDesc.ReturnValue > 0) { - // - // Write remaining data, if any - // - if (BufferDesc.Cnt != 0u) { - SEGGER_RTT_Write(BufferIndex, acBuffer, BufferDesc.Cnt); - } - BufferDesc.ReturnValue += (int)BufferDesc.Cnt; - } - return BufferDesc.ReturnValue; -} - -/********************************************************************* -* -* SEGGER_RTT_printf -* -* Function description -* Stores a formatted string in SEGGER RTT control block. -* This data is read by the host. -* -* Parameters -* BufferIndex Index of "Up"-buffer to be used. (e.g. 0 for "Terminal") -* sFormat Pointer to format string, followed by the arguments for conversion -* -* Return values -* >= 0: Number of bytes which have been stored in the "Up"-buffer. -* < 0: Error -* -* Notes -* (1) Conversion specifications have following syntax: -* %[flags][FieldWidth][.Precision]ConversionSpecifier -* (2) Supported flags: -* -: Left justify within the field width -* +: Always print sign extension for signed conversions -* 0: Pad with 0 instead of spaces. Ignored when using '-'-flag or precision -* Supported conversion specifiers: -* c: Print the argument as one char -* d: Print the argument as a signed integer -* u: Print the argument as an unsigned integer -* x: Print the argument as an hexadecimal integer -* s: Print the string pointed to by the argument -* p: Print the argument as an 8-digit hexadecimal integer. (Argument shall be a pointer to void.) -*/ -int SEGGER_RTT_printf(unsigned BufferIndex, const char * sFormat, ...) { - int r; - va_list ParamList; - - va_start(ParamList, sFormat); - r = SEGGER_RTT_vprintf(BufferIndex, sFormat, &ParamList); - va_end(ParamList); - return r; -} -/*************************** End of file ****************************/ diff --git a/Marlin/lib/rtt/src/log.h b/Marlin/lib/rtt/src/log.h deleted file mode 100644 index 4227d86f02..0000000000 --- a/Marlin/lib/rtt/src/log.h +++ /dev/null @@ -1,61 +0,0 @@ -/* - * Author: Jayant Tang - * Email: jayant97@foxmail.com - */ - -#ifndef _LOG_H_ -#define _LOH_H_ - -#ifdef __cplusplus -extern "C" { -#endif - -#include -#include "SEGGER_RTT.h" - -#define LOG_DEBUG 1 - -#if LOG_DEBUG - - -#define LOG_PROTO(type,color,format,...) \ - SEGGER_RTT_printf(0,"%s%s"format"%s", \ - color, \ - type, \ - ##__VA_ARGS__, \ - RTT_CTRL_RESET) - -#define LOG_STR( x ) \ - SEGGER_RTT_printf(0, "%s%s", \ - RTT_CTRL_TEXT_BRIGHT_GREEN, \ - x , \ - RTT_CTRL_RESET) - -/* 清屏*/ -#define LOG_CLEAR() SEGGER_RTT_WriteString(0, " "RTT_CTRL_CLEAR) - -/* 无颜色日志输出 */ -#define LOG(format,...) LOG_PROTO("","",format,##__VA_ARGS__) -// #define LOG_STR(format) LOG_PROTO("","",format) -/* 有颜色格式日志输出 */ -#define LOGI(format,...) LOG_PROTO("", RTT_CTRL_TEXT_BRIGHT_GREEN , format, ##__VA_ARGS__) -#define LOGW(format,...) LOG_PROTO("", RTT_CTRL_TEXT_BRIGHT_YELLOW, format, ##__VA_ARGS__) -#define LOGE(format,...) LOG_PROTO("", RTT_CTRL_TEXT_BRIGHT_RED , format, ##__VA_ARGS__) - -void* log_hex_dump(uint8_t data[], uint8_t len, uint8_t buffer[]); -void* log_hex_dump_line(uint8_t data[], uint8_t len, uint8_t buffer[]); -void log_hex(char const* head, uint8_t data[], uint8_t len); -#else -#define LOG_CLEAR() -#define LOG -#define LOGI -#define LOGW -#define LOGE - -#endif - -#ifdef __cplusplus -} -#endif - -#endif // !_LOG_H_ \ No newline at end of file diff --git a/Marlin/lib/rtt/src/log_hex.c b/Marlin/lib/rtt/src/log_hex.c deleted file mode 100644 index 71c2658f6f..0000000000 --- a/Marlin/lib/rtt/src/log_hex.c +++ /dev/null @@ -1,65 +0,0 @@ -#include -#include -#include -#include "log.h" - - -uint8_t log_hex_buffer[1024]; -//dump hex str to buffer. - -void* log_hex_dump_line(uint8_t data[], uint8_t len, uint8_t buffer[]) -{ - for (int i=0; i < len; ++i) { - sprintf(buffer + i*3, "%02x ", data[i]); - } - buffer[len * 3] = '\n'; - // LOGI("%s", buffer); - return buffer; -} - -void* log_hex_dump2(uint8_t data[], uint8_t len, uint8_t line_cell, uint8_t buffer[]) -{ - uint16_t line_whole = len / line_cell; - uint8_t line_final = len % line_cell; - uint8_t line_full_len = line_cell * 3 + 1;//include \n - // uint8_t line_buffer[128]; - for (int i=0; i - -#include "Stream.h" -// #include "uart.h" -#include "SEGGER_RTT.h" - -class RttLog : public Stream { - protected: - // Has any byte been written to the rtt since begin() - bool _written; - - // Don't put any members after these buffers, since only the first - // 32 bytes of this struct can be accessed quickly using the ldd - // instruction. - // unsigned char _rx_buffer[256]; - // unsigned char _tx_buffer[256]; - - public: - RttLog(); - - void begin(unsigned long baud) - { - begin(baud); - } - void begin(unsigned long, uint8_t); - void end(); - virtual int available(void); - virtual int peek(void); - virtual int read(void); - int availableForWrite(void); - virtual void flush(void); - virtual size_t write(uint8_t); - inline size_t write(unsigned long n) - { - return write((uint8_t)n); - } - inline size_t write(long n) - { - return write((uint8_t)n); - } - inline size_t write(unsigned int n) - { - return write((uint8_t)n); - } - inline size_t write(int n) - { - return write((uint8_t)n); - } - using Print::write; // pull in write(str) and write(buf, size) from Print - operator bool() - { - return true; - } -}; - -extern RttLog rtt; \ No newline at end of file From b726bd5c4a265e4022702f80260a795858719948 Mon Sep 17 00:00:00 2001 From: LuckyPuccio89 Date: Tue, 11 Mar 2025 14:03:29 +0100 Subject: [PATCH 3/7] Cleaned personal configs --- Marlin/Config-export.h | 310 ------------------------------------- Marlin/Configuration.h | 31 ++-- Marlin/Configuration_adv.h | 6 +- 3 files changed, 18 insertions(+), 329 deletions(-) delete mode 100644 Marlin/Config-export.h diff --git a/Marlin/Config-export.h b/Marlin/Config-export.h deleted file mode 100644 index 4650083644..0000000000 --- a/Marlin/Config-export.h +++ /dev/null @@ -1,310 +0,0 @@ -/** - * Config.h - Marlin Firmware distilled configuration - * Usage: Place this file in the 'Marlin' folder with the name 'Config.h'. - * - * Exported by Marlin build on 2025-03-10 at 19:12:22. - */ - -// -// Info -// -#define STRING_CONFIG_H_AUTHOR "(none, default config)" - -// -// Machine -// -#define MOTHERBOARD BOARD_LANGGO407 - -// -// EEPROM -// -#define EEPROM_BOOT_SILENT -#define EEPROM_CHITCHAT -#define EEPROM_SETTINGS -#define EEPROM_AUTO_INIT -#define EEPROM_INIT_NOW - -// -// Stepper Drivers -// -#define X_DRIVER_TYPE A4988 -#define Y_DRIVER_TYPE A4988 -#define Z_DRIVER_TYPE A4988 -#define E0_DRIVER_TYPE A4988 -#define X_ENABLE_ON LOW -#define Y_ENABLE_ON LOW -#define Z_ENABLE_ON LOW -#define E_ENABLE_ON LOW - -// -// Extruder -// -#define EXTRUDERS 1 -#define INVERT_E0_DIR false -#define DEFAULT_NOMINAL_FILAMENT_DIA 1.75 - -// -// Geometry -// -#define X_BED_SIZE 230 -#define X_MIN_POS 0 -#define X_MAX_POS X_BED_SIZE -#define Y_BED_SIZE 230 -#define Y_MIN_POS 0 -#define Y_MAX_POS Y_BED_SIZE -#define Z_MIN_POS 0 -#define Z_MAX_POS 260 -#define MIN_SOFTWARE_ENDSTOPS -#define MAX_SOFTWARE_ENDSTOPS -#define MIN_SOFTWARE_ENDSTOP_X -#define MIN_SOFTWARE_ENDSTOP_Y -#define MIN_SOFTWARE_ENDSTOP_Z -#define MAX_SOFTWARE_ENDSTOP_X -#define MAX_SOFTWARE_ENDSTOP_Y -#define MAX_SOFTWARE_ENDSTOP_Z - -// -// Homing -// -#define X_HOME_DIR -1 -#define Y_HOME_DIR -1 -#define Z_HOME_DIR -1 -#define HOMING_FEEDRATE_MM_M { (50*60), (50*60), (4*60) } -#define HOMING_BUMP_DIVISOR { 2, 2, 4 } -#define VALIDATE_HOMING_ENDSTOPS -#define HOMING_BUMP_MM { 5, 5, 2 } -#define Z_SAFE_HOMING_X_POINT X_CENTER -#define Z_SAFE_HOMING_Y_POINT Y_CENTER -#define Z_SAFE_HOMING - -// -// Motion -// -#define DEFAULT_AXIS_STEPS_PER_UNIT { 80, 80, 400, 500 } -#define AXIS_RELATIVE_MODES { false, false, false, false } -#define DEFAULT_MAX_FEEDRATE { 300, 300, 5, 25 } -#define DEFAULT_MAX_ACCELERATION { 3000, 3000, 100, 10000 } -#define INVERT_X_DIR false -#define INVERT_Y_DIR true -#define INVERT_Z_DIR true -#define STEP_STATE_E HIGH -#define STEP_STATE_X HIGH -#define STEP_STATE_Y HIGH -#define STEP_STATE_Z HIGH -#define JUNCTION_DEVIATION_MM 0.013 -#define DEFAULT_ACCELERATION 3000 -#define DEFAULT_TRAVEL_ACCELERATION 3000 -#define DEFAULT_RETRACT_ACCELERATION 3000 -#define DEFAULT_MINIMUMFEEDRATE 0.0 -#define DEFAULT_MINTRAVELFEEDRATE 0.0 -#define MIN_STEPS_PER_SEGMENT 6 -#define DEFAULT_MINSEGMENTTIME 20000 -#define JD_HANDLE_SMALL_SEGMENTS -#define DEFAULT_STEPPER_TIMEOUT_SEC 120 -#define DISABLE_IDLE_X -#define DISABLE_IDLE_Y -#define DISABLE_IDLE_Z -#define DISABLE_IDLE_E -#define SLOWDOWN -#define SLOWDOWN_DIVISOR 2 -#define EDITABLE_STEPS_PER_UNIT -#define MULTISTEPPING_LIMIT 16 - -// -// Endstops -// -#define X_MIN_ENDSTOP_HIT_STATE HIGH -#define Y_MIN_ENDSTOP_HIT_STATE HIGH -#define Z_MIN_ENDSTOP_HIT_STATE HIGH -#define ENDSTOPPULLUPS -#define Z_MIN_PROBE_ENDSTOP_HIT_STATE HIGH - -// -// Probes -// -#define PROBING_MARGIN 10 -#define XY_PROBE_FEEDRATE (133*60) -#define Z_CLEARANCE_BETWEEN_PROBES 5 -#define Z_CLEARANCE_DEPLOY_PROBE 10 -#define Z_PROBE_FEEDRATE_SLOW (Z_PROBE_FEEDRATE_FAST / 2) -#define Z_MIN_PROBE_USES_Z_MIN_ENDSTOP_PIN -#define NOZZLE_TO_PROBE_OFFSET { 0, 0, 0 } -#define Z_PROBE_FEEDRATE_FAST (4*60) -#define Z_PROBE_ERROR_TOLERANCE 3 -#define Z_PROBE_LOW_POINT -2 -#define NOZZLE_AS_PROBE - -// -// Temperature -// -#define THERMAL_PROTECTION_HYSTERESIS 4 -#define THERMAL_PROTECTION_PERIOD 40 -#define TEMP_SENSOR_0 1 -#define TEMP_HYSTERESIS 3 -#define HEATER_0_MINTEMP 5 -#define HEATER_0_MAXTEMP 275 -#define PREHEAT_1_TEMP_HOTEND 180 -#define BED_OVERSHOOT 10 -#define HOTEND_OVERSHOOT 15 -#define PREHEAT_1_FAN_SPEED 0 -#define PREHEAT_1_LABEL "PLA" -#define PREHEAT_1_TEMP_BED 70 -#define TEMP_BED_HYSTERESIS 3 -#define TEMP_BED_RESIDENCY_TIME 10 -#define TEMP_BED_WINDOW 1 -#define TEMP_RESIDENCY_TIME 10 -#define TEMP_WINDOW 1 -#define AUTOTEMP -#define AUTOTEMP_OLDWEIGHT 0.98 -#define BED_CHECK_INTERVAL 5000 -#define TEMP_SENSOR_BED 1 -#define THERMAL_PROTECTION_BED_HYSTERESIS 2 -#define WATCH_BED_TEMP_INCREASE 2 -#define WATCH_BED_TEMP_PERIOD 60 -#define WATCH_TEMP_INCREASE 2 -#define WATCH_TEMP_PERIOD 40 -#define PREHEAT_2_LABEL "ABS" -#define PREHEAT_2_TEMP_BED 110 -#define PREHEAT_2_FAN_SPEED 0 -#define BED_MINTEMP 5 -#define PREHEAT_2_TEMP_HOTEND 240 -#define BED_MAXTEMP 150 -#define AUTOTEMP_FACTOR 0.1f -#define AUTOTEMP_MIN 210 -#define THERMAL_PROTECTION_BED_PERIOD 20 -#define AUTOTEMP_MAX 250 - -// -// Hotend Temp -// -#define PIDTEMP -#define PID_K1 0.95 -#define PID_MAX 255 -#define DEFAULT_Kd 114.00 -#define DEFAULT_Ki 1.08 -#define DEFAULT_Kp 22.20 - -// -// PID Temp -// -#define PID_FUNCTIONAL_RANGE 10 - -// -// Bed Temp -// -#define MAX_BED_POWER 255 - -// -// Fans -// -#define E0_AUTO_FAN_PIN -1 - -// -// Media -// -#define SDSUPPORT - -// -// LCD -// -#define SHOW_BOOTSCREEN -#define ENCODER_100X_STEPS_PER_SEC 80 -#define ENCODER_10X_STEPS_PER_SEC 30 -#define ENCODER_RATE_MULTIPLIER -#define TFT_GENERIC -#define TFT_INTERFACE_FSMC -#define TFT_DRIVER AUTO -#define TFT_THEME BLACK_MARLIN -#define COMPACT_MARLIN_BOOT_LOGO -#define TFT_RES_480x320 -#define TFT_COLOR_UI -#define TFT_FONT NOTOSANS -#define SPEED_EDIT_MAX 999 -#define SPEED_EDIT_MIN 10 -#define SOUND_ON_DEFAULT -#define FINE_MANUAL_MOVE 0.025 -#define SD_PROCEDURE_DEPTH 1 -#define ULTIPANEL_FEEDMULTIPLY -#define FLOW_EDIT_MAX 999 -#define FLOW_EDIT_MIN 10 -#define BOOT_MARLIN_LOGO_SMALL -#define SHOW_ELAPSED_TIME -#define MANUAL_FEEDRATE { 50*60, 50*60, 4*60, 2*60 } -#define MANUAL_MOVE_DISTANCE_MM 10, 1.0, 0.1 -#define MANUAL_E_MOVES_RELATIVE -#define SD_FINISHED_STEPPERRELEASE true -#define SD_FINISHED_RELEASECOMMAND "M84" -#define LCD_INFO_MENU -#define BOOTSCREEN_TIMEOUT 3000 -#define SD_MENU_CONFIRM_START -#define SHOW_PROGRESS_PERCENT -#define EVENT_GCODE_SD_ABORT "G28XY" -#define SDCARD_RATHERRECENTFIRST - -// -// Interface -// -#define LCD_LANGUAGE en -#define INDIVIDUAL_AXIS_HOMING_MENU - -// -// G-code -// -#define BLOCK_BUFFER_SIZE 16 -#define FASTER_GCODE_PARSER -#define DEBUG_FLAGS_GCODE - -// -// Serial -// -#define SERIAL_PORT -1 -#define BAUDRATE 115200 -#define BUFSIZE 4 -#define MAX_CMD_SIZE 96 -#define PROPORTIONAL_FONT_RATIO 1.0 -#define SERIAL_OVERRUN_PROTECTION -#define TX_BUFFER_SIZE 0 -#define SERIAL_PORT_2 1 -#define SERIAL_PORT_3 3 -#define CUSTOM_MACHINE_NAME "3D Printer" -#define LCD_SERIAL_PORT SERIAL_PORT_3 - -// -// Host -// -#define BUSY_WHILE_HEATING -#define DEFAULT_KEEPALIVE_INTERVAL 2 -#define HOST_KEEPALIVE_FEATURE -#define PRINTJOB_TIMER_AUTOSTART - -// -// Reporting -// -#define AUTO_REPORT_TEMPERATURES -#define EXTENDED_CAPABILITIES_REPORT -#define CAPABILITIES_REPORT - -// -// Safety -// -#define USE_WATCHDOG -#define THERMAL_PROTECTION_HOTENDS -#define EXTRUDE_MAXLENGTH 200 -#define EXTRUDE_MINTEMP 170 -#define PREVENT_COLD_EXTRUSION -#define PREVENT_LENGTHY_EXTRUDE -#define THERMAL_PROTECTION_BED - -// -// Extras -// -#define ARC_SUPPORT -#define MAX_ARC_SEGMENT_MM 1.0 -#define MIN_ARC_SEGMENT_MM 0.1 -#define MIN_CIRCLE_SEGMENTS 72 -#define N_ARC_CORRECTION 25 - -// -// User -// -#define NEW_BOARD diff --git a/Marlin/Configuration.h b/Marlin/Configuration.h index f74b5e4c4d..77a9176115 100644 --- a/Marlin/Configuration.h +++ b/Marlin/Configuration.h @@ -36,8 +36,7 @@ * Advanced settings can be found in Configuration_adv.h */ #define CONFIGURATION_H_VERSION 02010300 -//#define ST32_SHIP -#define NEW_BOARD + //=========================================================================== //============================= Getting Started ============================= //=========================================================================== @@ -69,7 +68,7 @@ // Choose the name from boards.h that matches your setup #ifndef MOTHERBOARD - #define MOTHERBOARD BOARD_LANGGO407 + #define MOTHERBOARD BOARD_RAMPS_14_EFB #endif // @section serial @@ -82,7 +81,7 @@ * * :[-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9] */ -#define SERIAL_PORT -1 +#define SERIAL_PORT 0 /** * Serial Port Baud Rate @@ -104,7 +103,7 @@ * Currently Ethernet (-2) is only supported on Teensy 4.1 boards. * :[-2, -1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9] */ -#define SERIAL_PORT_2 1 +//#define SERIAL_PORT_2 -1 //#define BAUDRATE_2 250000 // :[2400, 9600, 19200, 38400, 57600, 115200, 250000, 500000, 1000000] Enable to override BAUDRATE /** @@ -1447,7 +1446,7 @@ * Use the nozzle as the probe, as with a conductive * nozzle system or a piezo-electric smart effector. */ -#define NOZZLE_AS_PROBE +//#define NOZZLE_AS_PROBE /** * Z Servo Probe, such as an endstop switch on a rotating arm. @@ -1638,7 +1637,7 @@ * | [-] | * O-- FRONT --+ */ -#define NOZZLE_TO_PROBE_OFFSET { 0, 0, 0 } +#define NOZZLE_TO_PROBE_OFFSET { 10, 10, 0 } // Enable and set to use a specific tool for probing. Disable to allow any tool. #define PROBING_TOOL 0 @@ -1812,7 +1811,7 @@ // Invert the stepper direction. Change (or reverse the motor connector) if an axis goes the wrong way. #define INVERT_X_DIR false #define INVERT_Y_DIR true -#define INVERT_Z_DIR true +#define INVERT_Z_DIR false //#define INVERT_I_DIR false //#define INVERT_J_DIR false //#define INVERT_K_DIR false @@ -1882,8 +1881,8 @@ // @section geometry // The size of the printable area -#define X_BED_SIZE 230 -#define Y_BED_SIZE 230 +#define X_BED_SIZE 200 +#define Y_BED_SIZE 200 // Travel limits (linear=mm, rotational=°) after homing, corresponding to endstop positions. #define X_MIN_POS 0 @@ -1891,7 +1890,7 @@ #define Z_MIN_POS 0 #define X_MAX_POS X_BED_SIZE #define Y_MAX_POS Y_BED_SIZE -#define Z_MAX_POS 260 +#define Z_MAX_POS 200 //#define I_MIN_POS 0 //#define I_MAX_POS 50 //#define J_MIN_POS 0 @@ -2340,7 +2339,7 @@ * - Allows Z homing only when XY positions are known and trusted. * - If stepper drivers sleep, XY homing may be required again before Z homing. */ -#define Z_SAFE_HOMING +//#define Z_SAFE_HOMING #if ENABLED(Z_SAFE_HOMING) #define Z_SAFE_HOMING_X_POINT X_CENTER // (mm) X point for Z homing @@ -2430,13 +2429,13 @@ * M501 - Read settings from EEPROM. (i.e., Throw away unsaved changes) * M502 - Revert settings to "factory" defaults. (Follow with M500 to init the EEPROM.) */ -#define EEPROM_SETTINGS // Persistent storage with M500 and M501 +//#define EEPROM_SETTINGS // Persistent storage with M500 and M501 //#define DISABLE_M503 // Saves ~2700 bytes of flash. Disable for release! #define EEPROM_CHITCHAT // Give feedback on EEPROM commands. Disable to save flash. #define EEPROM_BOOT_SILENT // Keep M503 quiet and only give errors during first load #if ENABLED(EEPROM_SETTINGS) - #define EEPROM_AUTO_INIT // Init EEPROM automatically on any errors. - #define EEPROM_INIT_NOW // Init EEPROM on first boot after a new build. + //#define EEPROM_AUTO_INIT // Init EEPROM automatically on any errors. + //#define EEPROM_INIT_NOW // Init EEPROM on first boot after a new build. #endif // @section host @@ -2675,7 +2674,7 @@ * SD Card support is disabled by default. If your controller has an SD slot, * you must uncomment the following option or it won't work. */ -#define SDSUPPORT +//#define SDSUPPORT /** * SD CARD: ENABLE CRC diff --git a/Marlin/Configuration_adv.h b/Marlin/Configuration_adv.h index 6e64112786..ad62cc06cc 100644 --- a/Marlin/Configuration_adv.h +++ b/Marlin/Configuration_adv.h @@ -2008,7 +2008,7 @@ #if IS_U8GLIB_ST7920 // Enable this option and reduce the value to optimize screen updates. // The normal delay is 10µs. Use the lowest value that still gives a reliable display. - //#define DOGM_SPI_DELAY_US 5 + //#define DOGM_SPI_DELAY_US 5 // (µs) Delay after each SPI transfer //#define LIGHTWEIGHT_UI #if ENABLED(LIGHTWEIGHT_UI) @@ -2261,7 +2261,7 @@ // ADC Button Debounce // #if HAS_ADC_BUTTONS - #define ADC_BUTTON_DEBOUNCE_DELAY 16 // Increase if buttons bounce or repeat too fast + #define ADC_BUTTON_DEBOUNCE_DELAY 16 // (count) Increase if buttons bounce or repeat too fast #endif // @section safety @@ -2302,7 +2302,7 @@ //#define DOUBLECLICK_FOR_Z_BABYSTEPPING // Double-click on the Status Screen for Z Babystepping. #if ENABLED(DOUBLECLICK_FOR_Z_BABYSTEPPING) - #define DOUBLECLICK_MAX_INTERVAL 1250 // Maximum interval between clicks, in milliseconds. + #define DOUBLECLICK_MAX_INTERVAL 1250 // (ms) Maximum interval between clicks. // Note: Extra time may be added to mitigate controller latency. //#define MOVE_Z_WHEN_IDLE // Jump to the move Z menu on double-click when printer is idle. #if ENABLED(MOVE_Z_WHEN_IDLE) From 3f325ee06788295a1fde4984f8d88b9c96c8bd23 Mon Sep 17 00:00:00 2001 From: Scott Lahteine Date: Mon, 31 Mar 2025 23:00:13 -0500 Subject: [PATCH 4/7] run formatter --- Marlin/src/HAL/GD32_MFL/MinSerial.cpp | 2 +- Marlin/src/HAL/GD32_MFL/SDCard.h | 12 +- Marlin/src/HAL/GD32_MFL/timers.cpp | 10 +- Marlin/src/HAL/GD32_MFL/timers.h | 4 +- Marlin/src/pins/stm32f1/pins_MD_D301.h | 2 +- Marlin/src/pins/stm32f4/pins_LANGGO407.h | 577 +++++++++++------------ 6 files changed, 294 insertions(+), 313 deletions(-) diff --git a/Marlin/src/HAL/GD32_MFL/MinSerial.cpp b/Marlin/src/HAL/GD32_MFL/MinSerial.cpp index d5e8147798..2cc79c8853 100644 --- a/Marlin/src/HAL/GD32_MFL/MinSerial.cpp +++ b/Marlin/src/HAL/GD32_MFL/MinSerial.cpp @@ -95,7 +95,7 @@ static void MinSerialBegin() { volatile uint32_t ICER[32]; }; NVICMin *nvicBase = (NVICMin*)0xE000E100; - + SBI32(nvicBase->ICER[nvicIndex >> 5], nvicIndex & 0x1F); // We require memory barriers to properly disable interrupts diff --git a/Marlin/src/HAL/GD32_MFL/SDCard.h b/Marlin/src/HAL/GD32_MFL/SDCard.h index b14063b69f..467482a605 100644 --- a/Marlin/src/HAL/GD32_MFL/SDCard.h +++ b/Marlin/src/HAL/GD32_MFL/SDCard.h @@ -160,12 +160,12 @@ private: info->csd.device_size = (static_cast(csd_bytes[6] & 0x03U) << 10U) | (static_cast(csd_bytes[7]) << 2U) | (static_cast((csd_bytes[8] & 0xC0U) >> 6U)); - info->csd.device_size_multiplier = static_cast((csd_bytes[9] & 0x03U) << 1U | + info->csd.device_size_multiplier = static_cast((csd_bytes[9] & 0x03U) << 1U | (csd_bytes[10] & 0x80U) >> 7U); info->block_size = static_cast(1 << info->csd.read_block_length); - info->capacity = static_cast((info->csd.device_size + 1U) * - (1U << (info->csd.device_size_multiplier + 2U)) * + info->capacity = static_cast((info->csd.device_size + 1U) * + (1U << (info->csd.device_size_multiplier + 2U)) * info->block_size); } @@ -175,15 +175,15 @@ private: static_cast(csd_bytes[9]); info->block_size = BLOCK_SIZE; - info->capacity = static_cast((info->csd.device_size + 1U) * + info->capacity = static_cast((info->csd.device_size + 1U) * BLOCK_SIZE * KILOBYTE); } void process_common_csd_tail(Card_Info* info, const uint8_t* csd_bytes) { - info->csd.sector_size = static_cast(((csd_bytes[9] & 0x3FU) << 1U) | + info->csd.sector_size = static_cast(((csd_bytes[9] & 0x3FU) << 1U) | (csd_bytes[10] & 0x80U) >> 7U); info->csd.speed_factor = static_cast((csd_bytes[11] & 0x1CU) >> 2U); - info->csd.write_block_length = static_cast(((csd_bytes[11] & 0x03U) << 2U) | + info->csd.write_block_length = static_cast(((csd_bytes[11] & 0x03U) << 2U) | ((csd_bytes[12] & 0xC0U) >> 6U)); info->csd.checksum = static_cast((csd_bytes[15] & 0xFEU) >> 1U); } diff --git a/Marlin/src/HAL/GD32_MFL/timers.cpp b/Marlin/src/HAL/GD32_MFL/timers.cpp index bdcf5ed0ed..5b2c2de7ef 100644 --- a/Marlin/src/HAL/GD32_MFL/timers.cpp +++ b/Marlin/src/HAL/GD32_MFL/timers.cpp @@ -97,10 +97,10 @@ uint32_t GetStepperTimerClkFreq() { /** * @brief Starts a hardware timer - * + * * If the timer is not already initialized, this function will initialize it with the given frequency. * The timer is started immediately after initialization - * + * * @param timer The timer base index to start * @param frequency The frequency at which the timer should run * @return None @@ -137,7 +137,7 @@ void HAL_timer_start(const uint8_t timer_number, const uint32_t frequency) { /** * @brief Enables the interrupt for the specified timer - * + * * @param handle The timer handle for which to enable the interrupt * @return None */ @@ -154,7 +154,7 @@ void HAL_timer_enable_interrupt(const uint8_t timer_number) { /** * @brief Disables the interrupt for the specified timer - * + * * @param handle The timer handle for which to disable the interrupt * @return None */ @@ -168,7 +168,7 @@ void HAL_timer_disable_interrupt(const uint8_t timer_number) { /** * @brief Checks if the interrupt is enabled for the specified timer - * + * * @param handle The timer handle to check * @return True if the interrupt is enabled, false otherwise */ diff --git a/Marlin/src/HAL/GD32_MFL/timers.h b/Marlin/src/HAL/GD32_MFL/timers.h index 539f599a16..0eb6bd563a 100644 --- a/Marlin/src/HAL/GD32_MFL/timers.h +++ b/Marlin/src/HAL/GD32_MFL/timers.h @@ -123,8 +123,8 @@ FORCE_INLINE static hal_timer_t HAL_timer_get_count(const uint8_t timer_number) GeneralTimer& timer = (timer_number == MF_TIMER_STEP) ? Step_Timer : Temp_Timer; - return (timer_number == MF_TIMER_STEP || timer_number == MF_TIMER_TEMP) - ? timer.getCounter(TimerFormat::TICK) + return (timer_number == MF_TIMER_STEP || timer_number == MF_TIMER_TEMP) + ? timer.getCounter(TimerFormat::TICK) : 0U; } diff --git a/Marlin/src/pins/stm32f1/pins_MD_D301.h b/Marlin/src/pins/stm32f1/pins_MD_D301.h index 629d22c83f..349f5191fd 100644 --- a/Marlin/src/pins/stm32f1/pins_MD_D301.h +++ b/Marlin/src/pins/stm32f1/pins_MD_D301.h @@ -148,7 +148,7 @@ // USB connect control // #define USB_CONNECT_PIN PA15 -#define USB_CONNECT_INVERTING false +#define USB_CONNECT_INVERTING false // // SD Support diff --git a/Marlin/src/pins/stm32f4/pins_LANGGO407.h b/Marlin/src/pins/stm32f4/pins_LANGGO407.h index 15fed2542b..16dc5f5d9b 100644 --- a/Marlin/src/pins/stm32f4/pins_LANGGO407.h +++ b/Marlin/src/pins/stm32f4/pins_LANGGO407.h @@ -1,6 +1,6 @@ /** * Marlin 3D Printer Firmware - * Copyright (c) 2020 MarlinFirmware [https://github.com/MarlinFirmware/Marlin] + * Copyright (c) 2025 MarlinFirmware [https://github.com/MarlinFirmware/Marlin] * * Based on Sprinter and grbl. * Copyright (c) 2011 Camiel Gubbels / Erik van der Zalm @@ -27,6 +27,7 @@ * Shield - https://github.com/jmz52/Hardware */ #include "env_validate.h" + #if ENABLED(NEW_BOARD) #if NOT_TARGET(STM32F4, STM32F4xx) @@ -65,7 +66,7 @@ #else #define ROBOT_NAME "" #endif - + #if ENABLED(USE_TI_CHOKE) #define MATERIALS_NAME "-Ti" #define MATERIALS_NAME_TI "-Ti" @@ -79,216 +80,207 @@ //#define I2C_EEPROM #if 0 - #define SRAM_EEPROM_EMULATION - #define MARLIN_EEPROM_SIZE 0x2000 // 8KB + #define SRAM_EEPROM_EMULATION + #define MARLIN_EEPROM_SIZE 0x2000 // 8KB #else - #define W25QXX_SPI_EEPROM + #define W25QXX_SPI_EEPROM #endif + // // Servos // #ifdef BLTOUCH -#define SERVO0_PIN PA4 // after ver3.0 -// #define SERVO0_PIN PC6 -// #define SERVO1_PIN PC7 + #define SERVO0_PIN PA4 // After ver3.0 + //#define SERVO0_PIN PC6 + //#define SERVO1_PIN PC7 #else -// #define CALIB_PIN PD6 // before ver3.0 -#define CALIB_PIN PA4 // after ver3.0 + //#define CALIB_PIN PD6 // Before ver3.0 + #define CALIB_PIN PA4 // After ver3.0 #endif // -// Z Probe must be this pins +// Z Probe must be this pin // -// #define Z_MIN_PROBE_PIN PD3 // before ver3.0 -#define Z_MIN_PROBE_PIN PD6 // after ver3.0 +//#define Z_MIN_PROBE_PIN PD3 // Before ver3.0 +#define Z_MIN_PROBE_PIN PD6 // After ver3.0 // // Limit Switches // #if ENABLED(QUICK_PRINT) - #define X_MAX_PIN PF14 + #define X_MAX_PIN PF14 #else - #define X_MIN_PIN PF14 - // #define X_MAX_PIN PA15 + #define X_MIN_PIN PF14 + //#define X_MAX_PIN PA15 #endif -#define Y_MIN_PIN PF13 -// #define Y_MAX_PIN PD12 +#define Y_MIN_PIN PF13 +//#define Y_MAX_PIN PD12 #ifdef Z_MIN_PROBE_USES_Z_MIN_ENDSTOP_PIN - #define Z_MIN_PIN PD3 + #define Z_MIN_PIN PD3 #else - #define Z_MIN_PIN PF11 + #define Z_MIN_PIN PF11 #if ENABLED(Z_MULTI_ENDSTOPS) - #define Z2_MIN_PIN PD3 // after ver3.0 + #define Z2_MIN_PIN PD3 // after ver3.0 #endif #endif -// #define Z_MIN_PIN PG0 -// #define Z_MAX_PIN PD15 +//#define Z_MIN_PIN PG0 +//#define Z_MAX_PIN PD15 -// #define LED_RED_PIN PG9 +//#define LED_RED_PIN PG9 #if ENABLED(R_B_LED) - #define RB_LED_PIN PD7 + #define RB_LED_PIN PD7 #endif #if ENABLED(WS2812_LED) - #define WS2812_LED_PIN PD7 + #define WS2812_LED_PIN PD7 #endif -#define CAP_TOUCH_PIN PA0 +#define CAP_TOUCH_PIN PA0 /** * TMC2208/TMC2209 stepper drivers */ + +#if 0 + + #define X_ENABLE_PIN PE6 + #define X_STEP_PIN PE5 + #define X_DIR_PIN PE4 + + #define Y_ENABLE_PIN PF3 + #define Y_STEP_PIN PF2 + #define Y_DIR_PIN PF1 + + #define Z_ENABLE_PIN PC2 + #define Z_STEP_PIN PC1 + #define Z_DIR_PIN PC0 + + #define E0_ENABLE_PIN PE1 + #define E0_STEP_PIN PE0 + #define E0_DIR_PIN PB7 + + #define E1_ENABLE_PIN PB0 + #define E1_STEP_PIN PC5 + #define E1_DIR_PIN PC4 + // // Software serial ASYNC half duplex? // -#if 0 - - /*** X ***/ - #define X_ENABLE_PIN PE6 - #define X_STEP_PIN PE5 - #define X_DIR_PIN PE4 - /*** Y ***/ - #define Y_ENABLE_PIN PF3 - #define Y_STEP_PIN PF2 - #define Y_DIR_PIN PF1 - /*** Z ***/ - #define Z_ENABLE_PIN PC2 - #define Z_STEP_PIN PC1 - #define Z_DIR_PIN PC0 - /*** Z2 ***/ - #define Z2_ENABLE_PIN PB0 - #define Z2_STEP_PIN PC5 - #define Z2_DIR_PIN PC4 - /*** E0 ***/ - #define E0_ENABLE_PIN PE1 - #define E0_STEP_PIN PE0 - #define E0_DIR_PIN PB7 - /*** TX、RX or Reset ***/ - #if AXIS_DRIVER_TYPE_X(TMC2208) - #define X_SERIAL_TX_PIN PC13 - #define X_SERIAL_RX_PIN PC13 + #if AXIS_HAS_UART(X) + #define X_SERIAL_TX_PIN PC13 #elif AXIS_DRIVER_TYPE_X(A4988) - #define X_RESET_PIN PC13 + #define X_RESET_PIN PC13 #endif - #if AXIS_DRIVER_TYPE_Y(TMC2208) - #define Y_SERIAL_TX_PIN PF4 - #define Y_SERIAL_RX_PIN PF4 + #if AXIS_HAS_UART(Y) + #define Y_SERIAL_TX_PIN PF4 #elif AXIS_DRIVER_TYPE_Y(A4988) - #define Y_RESET_PIN PF4 + #define Y_RESET_PIN PF4 #endif - #if AXIS_DRIVER_TYPE_Z(TMC2208) - #define Z_SERIAL_TX_PIN PC3 - #define Z_SERIAL_RX_PIN PC3 + #if AXIS_HAS_UART(Z) + #define Z_SERIAL_TX_PIN PC3 #elif AXIS_DRIVER_TYPE_Z(A4988) - #define Z_RESET_PIN PC3 + #define Z_RESET_PIN PC3 #endif - #if AXIS_DRIVER_TYPE_Z2(TMC2208) - #define Z2_SERIAL_TX_PIN PB1 - #define Z2_SERIAL_RX_PIN PB1 - #elif AXIS_DRIVER_TYPE_Z2(A4988) - #define Z2_RESET_PIN PB1 - #endif - - #if AXIS_DRIVER_TYPE_E0(TMC2208) - #define E0_SERIAL_TX_PIN PE2 - #define E0_SERIAL_RX_PIN PE2 + #if AXIS_HAS_UART(E0) + #define E0_SERIAL_TX_PIN PE2 #elif AXIS_DRIVER_TYPE_E0(A4988) - #define E0_RESET_PIN PE2 + #define E0_RESET_PIN PE2 + #endif + + #if AXIS_HAS_UART(E1) + #define E1_SERIAL_TX_PIN PB1 + #elif AXIS_DRIVER_TYPE_E1(A4988) + #define E1_RESET_PIN PB1 #endif #else - /*** X ***/ - #define X_ENABLE_PIN PE4 - #define X_STEP_PIN PE3 - #define X_DIR_PIN PE2 - /*** Y ***/ - #define Y_ENABLE_PIN PF0 - #define Y_STEP_PIN PC13 - #define Y_DIR_PIN PE6 - /*** Z ***/ - #define Z_ENABLE_PIN PF4 - #define Z_STEP_PIN PF3 - #define Z_DIR_PIN PF2 - /*** Z2 ***/ - #define Z2_ENABLE_PIN PC2 - #define Z2_STEP_PIN PC1 - #define Z2_DIR_PIN PC0 - /*** E0 ***/ - #define E0_ENABLE_PIN PE0 - #define E0_STEP_PIN PB7 - #define E0_DIR_PIN PB6 - /*** E1 ***/ - #define E1_ENABLE_PIN PC5 - #define E1_STEP_PIN PC4 - #define E1_DIR_PIN PA1 - /*** TX、RX or Reset ***/ - #if AXIS_DRIVER_TYPE_X(TMC2208) - #define X_SERIAL_TX_PIN PE5 - #define X_SERIAL_RX_PIN PE5 + #define X_ENABLE_PIN PE4 + #define X_STEP_PIN PE3 + #define X_DIR_PIN PE2 + + #define Y_ENABLE_PIN PF0 + #define Y_STEP_PIN PC13 + #define Y_DIR_PIN PE6 + + #define Z_ENABLE_PIN PF4 + #define Z_STEP_PIN PF3 + #define Z_DIR_PIN PF2 + + #define Z2_ENABLE_PIN PC2 + #define Z2_STEP_PIN PC1 + #define Z2_DIR_PIN PC0 + + #define E0_ENABLE_PIN PE0 + #define E0_STEP_PIN PB7 + #define E0_DIR_PIN PB6 + + #define E1_ENABLE_PIN PC5 + #define E1_STEP_PIN PC4 + #define E1_DIR_PIN PA1 + + #if AXIS_HAS_UART(X) + #define X_SERIAL_TX_PIN PE5 #elif AXIS_DRIVER_TYPE_X(A4988) - #define X_RESET_PIN PE5 + #define X_RESET_PIN PE5 #endif - #if AXIS_DRIVER_TYPE_Y(TMC2208) - #define Y_SERIAL_TX_PIN PF1 - #define Y_SERIAL_RX_PIN PF1 + #if AXIS_HAS_UART(Y) + #define Y_SERIAL_TX_PIN PF1 #elif AXIS_DRIVER_TYPE_Y(A4988) - #define Y_RESET_PIN PF1 + #define Y_RESET_PIN PF1 #endif - #if AXIS_DRIVER_TYPE_Z(TMC2208) - #define Z_SERIAL_TX_PIN PF9 // 此处应是PF10,但表与PF9反了 - #define Z_SERIAL_RX_PIN PF9 + #if AXIS_HAS_UART(Z) + #define Z_SERIAL_TX_PIN PF9 // 此处应是PF10,但表与PF9反了 #elif AXIS_DRIVER_TYPE_Z(A4988) - #define Z_RESET_PIN PF9 + #define Z_RESET_PIN PF9 #endif - #if AXIS_DRIVER_TYPE_Z2(TMC2208) - #define Z2_SERIAL_TX_PIN PC3 - #define Z2_SERIAL_RX_PIN PC3 + #if AXIS_HAS_UART(Z2) + #define Z2_SERIAL_TX_PIN PC3 #elif AXIS_DRIVER_TYPE_Z2(A4988) - #define Z2_RESET_PIN PC3 + #define Z2_RESET_PIN PC3 #endif - #if AXIS_DRIVER_TYPE_E0(TMC2208) - #define E0_SERIAL_TX_PIN PE1 - #define E0_SERIAL_RX_PIN PE1 + #if AXIS_HAS_UART(E0) + #define E0_SERIAL_TX_PIN PE1 #elif AXIS_DRIVER_TYPE_E0(A4988) - #define E0_RESET_PIN PE1 + #define E0_RESET_PIN PE1 #endif - #if AXIS_DRIVER_TYPE_E1(TMC2208) - #define E1_SERIAL_TX_PIN PB0 - #define E1_SERIAL_RX_PIN PB0 + #if AXIS_HAS_UART(E1) + #define E1_SERIAL_TX_PIN PB0 #elif AXIS_DRIVER_TYPE_E1(A4988) - #define E1_RESET_PIN PB0 + #define E1_RESET_PIN PB0 #endif #endif -#if HAS_TMC220x +#if HAS_TMC_UART // Reduce baud rate to improve software serial reliability - #define TMC_BAUD_RATE 19200 + #ifndef TMC_BAUD_RATE + #define TMC_BAUD_RATE 19200 + #endif #endif // // Filament Sensor // #ifndef FIL_RUNOUT_PIN - #define FIL_RUNOUT_PIN PG10 + #define FIL_RUNOUT_PIN PG10 #endif // // Power Supply Control // #ifndef PS_ON_PIN - #define PS_ON_PIN PG8 + #define PS_ON_PIN PG8 #endif // @@ -299,34 +291,33 @@ #define TEMP_BED_PIN PF6 // TB #ifndef TEMP_CHAMBER_PIN - // #define TEMP_CHAMBER_PIN PC3 // TC + //#define TEMP_CHAMBER_PIN PC3 // TC #endif // // Heaters / Fans // -#define HEATER_0_PIN PD11 -#define HEATER_1_PIN PC7 -#define HEATER_BED_PIN PD13 +#define HEATER_0_PIN PD11 +#define HEATER_1_PIN PC7 +#define HEATER_BED_PIN PD13 -#define FAN0_PIN PB9 -// #define FAN1_PIN PB8 +#define FAN0_PIN PB9 +//#define FAN1_PIN PB8 -#define STEP_TIMER_NUM 5 // Timer Index for Stepper -#define TEMP_TIMER_NUM 14 // Timer Index for Temperature +#define STEP_TIMER_NUM 5 // Timer Index for Stepper +#define TEMP_TIMER_NUM 14 // Timer Index for Temperature // // USB connect control // -#define USB_CONNECT_PIN PG11 -#define USB_CONNECT_INVERTING false +#define USB_CONNECT_PIN PG11 +#define USB_CONNECT_INVERTING false -#define SD_DETECT_PIN PA8 -#define BEEPER_PIN PB12 -#define LED_PIN PB2 - -// #define NEOPIXEL_PIN PD7 +#define SD_DETECT_PIN PA8 +#define BEEPER_PIN PB12 +#define LED_PIN PB2 +//#define NEOPIXEL_PIN PD7 /** * Note: Alfawise screens use various TFT controllers. Supported screens @@ -340,43 +331,40 @@ * because Marlin uses the reset as a failsafe to revive a glitchy LCD. */ -#define LCD_BACKLIGHT_PIN PG1 -#define FSMC_CS_PIN PG12 // FSMC_NE1 -#define FSMC_RS_PIN PF12 // A23 Register. Only one address needed -#define TFT_CS_PIN FSMC_CS_PIN -#define TFT_RS_PIN FSMC_RS_PIN -#define TFT_BACKLIGHT_PIN LCD_BACKLIGHT_PIN +#define LCD_BACKLIGHT_PIN PG1 +#define FSMC_CS_PIN PG12 // FSMC_NE1 +#define FSMC_RS_PIN PF12 // A23 Register. Only one address needed +#define TFT_CS_PIN FSMC_CS_PIN +#define TFT_RS_PIN FSMC_RS_PIN +#define TFT_BACKLIGHT_PIN LCD_BACKLIGHT_PIN #define LCD_USE_DMA_FSMC // Use DMA transfers to send data to the TFT -#define FSMC_DMA_DEV DMA1 -#define FSMC_DMA_CHANNEL DMA_CH4 //fixme in F4 +#define FSMC_DMA_DEV DMA1 +#define FSMC_DMA_CHANNEL DMA_CH4 // Fixme in F4 #if ENABLED(TOUCH_SCREEN) - #define TOUCH_CS_PIN PG0 - #define TOUCH_SCK_PIN PA5 - #define TOUCH_MOSI_PIN PA7 - #define TOUCH_MISO_PIN PA6 - #define TOUCH_INT_PIN PF15 // PenIRQ coming from XPT2046 触发 + #define TOUCH_CS_PIN PG0 + #define TOUCH_SCK_PIN PA5 + #define TOUCH_MOSI_PIN PA7 + #define TOUCH_MISO_PIN PA6 + #define TOUCH_INT_PIN PF15 // PenIRQ coming from XPT2046 触发 #endif -#define DOGLCD_MOSI -1 // Prevent auto-define by Conditionals_post.h -#define DOGLCD_SCK -1 - +#define DOGLCD_MOSI -1 // Prevent auto-define by Conditionals_post.h +#define DOGLCD_SCK -1 // // OCP // -#define MOTORS_OCP_PIN PF7 -#define BED_OCP_PIN PF8 -#define HOTEND_OCP_PIN PF10 // 应该为PF9,但表PF9、PF10的值反了,只能用这个 -#define SHUTDOWN_HOTEND_PIN PD12 -#define SHUTDOWN_BED_PIN PG7 +#define MOTORS_OCP_PIN PF7 +#define BED_OCP_PIN PF8 +#define HOTEND_OCP_PIN PF10 // 应该为PF9,但表PF9、PF10的值反了,只能用这个 +#define SHUTDOWN_HOTEND_PIN PD12 +#define SHUTDOWN_BED_PIN PG7 // // Onboard SD support // -#define HAS_ONBOARD_SD - #define SDIO_D0_PIN PC8 #define SDIO_D1_PIN PC9 #define SDIO_D2_PIN PC10 @@ -389,11 +377,11 @@ #endif #if SD_CONNECTION_IS(ONBOARD) - // #define SDIO_SUPPORT // Use SDIO for onboard SD + //#define SDIO_SUPPORT // Use SDIO for onboard SD #ifndef SDIO_SUPPORT #define SOFTWARE_SPI // Use soft SPI for onboard SD - #define SD_SS_PIN SDIO_D3_PIN //A4 + #define SD_SS_PIN SDIO_D3_PIN //A4 #define SCK_PIN SDIO_CK_PIN //A5 #define MISO_PIN SDIO_D0_PIN //A6 #define MOSI_PIN SDIO_CMD_PIN //A7 @@ -420,7 +408,7 @@ #define ESP_WIFI_MODULE_GPIO0_PIN PG5 #define ESP_WIFI_MODULE_GPIO2_PIN PG4 -// #define SHUTTER_CTRL_PIN PB13 +//#define SHUTTER_CTRL_PIN PB13 #else @@ -458,113 +446,110 @@ //#define I2C_EEPROM #if 0 - #define SRAM_EEPROM_EMULATION - #define MARLIN_EEPROM_SIZE 0x2000 // 8KB + #define SRAM_EEPROM_EMULATION + #define MARLIN_EEPROM_SIZE 0x2000 // 8KB #else - #define W25QXX_SPI_EEPROM + #define W25QXX_SPI_EEPROM #endif + // // Servos // -// #define SERVO0_PIN PC6 -// #define SERVO1_PIN PC7 +//#define SERVO0_PIN PC6 +//#define SERVO1_PIN PC7 + #ifdef HALL_PLATE -#define CALIB_PIN PB1 + #define CALIB_PIN PB1 #else -#define SERVO0_PIN PB1 + #define SERVO0_PIN PB1 #endif // // Z Probe must be this pins // -#define Z_MIN_PROBE_PIN PB0 +#define Z_MIN_PROBE_PIN PB0 // // Limit Switches // #if ENABLED(QUICK_PRINT) - #define X_MAX_PIN PF12 + #define X_MAX_PIN PF12 #else -#define X_MIN_PIN PF12 -// #define X_MAX_PIN PA15 + #define X_MIN_PIN PF12 + //#define X_MAX_PIN PA15 #endif #define Y_MIN_PIN PF14 -// #define Y_MAX_PIN PD12 +//#define Y_MAX_PIN PD12 -#ifdef Z_MIN_PROBE_USES_Z_MIN_ENDSTOP_PIN - #define Z_MIN_PIN PB1 +#if ENABLED(Z_MIN_PROBE_USES_Z_MIN_ENDSTOP_PIN) + #define Z_MIN_PIN PB1 #else - #define Z_MIN_PIN PG0 - //#define Z_MAZ_PIN + #define Z_MIN_PIN PG0 #endif -// #define Z_MIN_PIN PG0 -// #define Z_MAX_PIN PD15 + +#define Z_MIN_PROBE_PIN PG0 + +//#define Z_MIN_PIN PG0 +//#define Z_MAX_PIN PD15 #if ENABLED(R_B_LED) -#define RB_LED_PIN PB9 + #define RB_LED_PIN PB9 #endif // // Steppers // -#define X_ENABLE_PIN PD3 -#define X_STEP_PIN PD2 -#define X_DIR_PIN PC10 +#define X_ENABLE_PIN PD3 +#define X_STEP_PIN PD2 +#define X_DIR_PIN PC10 -#define Y_ENABLE_PIN PC12 -#define Y_STEP_PIN PA10 -#define Y_DIR_PIN PA9 +#define Y_ENABLE_PIN PC12 +#define Y_STEP_PIN PA10 +#define Y_DIR_PIN PA9 -#define Z_ENABLE_PIN PC9 -#define Z_STEP_PIN PG8 -#define Z_DIR_PIN PG7 +#define Z_ENABLE_PIN PC9 +#define Z_STEP_PIN PG8 +#define Z_DIR_PIN PG7 -#define E0_ENABLE_PIN PD13 -#define E0_STEP_PIN PD12 -#define E0_DIR_PIN PD11 +#define E0_ENABLE_PIN PD13 +#define E0_STEP_PIN PD12 +#define E0_DIR_PIN PD11 -#define Z2_ENABLE_PIN PG5 -#define Z2_STEP_PIN PG4 -#define Z2_DIR_PIN PG3 +#define E1_ENABLE_PIN PG5 +#define E1_STEP_PIN PG4 +#define E1_DIR_PIN PG3 /** * TMC2208/TMC2209 stepper drivers */ -#if HAS_TMC220x +#if HAS_TMC_UART // // Software serial ASYNC half duplex? // - #define X_SERIAL_TX_PIN PD6 - #define X_SERIAL_RX_PIN PD6 - - #define Y_SERIAL_TX_PIN PC11 - #define Y_SERIAL_RX_PIN PC11 - - #define Z_SERIAL_TX_PIN PA8 - #define Z_SERIAL_RX_PIN PA8 - - #define E0_SERIAL_TX_PIN PG2 - #define E0_SERIAL_RX_PIN PG2 - - #define Z2_SERIAL_TX_PIN PG6 - #define Z2_SERIAL_RX_PIN PG6 + #define X_SERIAL_TX_PIN PD6 + #define Y_SERIAL_TX_PIN PC11 + #define Z_SERIAL_TX_PIN PA8 + #define E0_SERIAL_TX_PIN PG2 + #define E1_SERIAL_TX_PIN PG6 // Reduce baud rate to improve software serial reliability - #define TMC_BAUD_RATE 19200 + #ifndef TMC_BAUD_RATE + #define TMC_BAUD_RATE 19200 + #endif #endif // // Filament Sensor // #ifndef FIL_RUNOUT_PIN - #define FIL_RUNOUT_PIN PG1 + #define FIL_RUNOUT_PIN PG1 #endif // // Power Supply Control // #ifndef PS_ON_PIN - #define PS_ON_PIN PA1 + #define PS_ON_PIN PA1 #endif // @@ -580,10 +565,10 @@ // // Heaters / Fans // -#define HEATER_0_PIN PC6 -#define HEATER_BED_PIN PC8 +#define HEATER_0_PIN PC6 +#define HEATER_BED_PIN PC8 -#define FAN_PIN PC7 +#define FAN_PIN PC7 #define STEP_TIMER_NUM 5 // Timer Index for Stepper #define TEMP_TIMER_NUM 14 // Timer Index for Temperature @@ -591,62 +576,64 @@ // // USB connect control // -#define USB_CONNECT_PIN PA15 -#define USB_CONNECT_INVERTING false +#define USB_CONNECT_PIN PA15 +#define USB_CONNECT_INVERTING false -#define SD_DETECT_PIN PE3 -#define BEEPER_PIN PG11 -#define LED_PIN PG9 - -#define NEOPIXEL_PIN PB9 +#define SD_DETECT_PIN PE3 +#define BEEPER_PIN PG11 +#define LED_PIN PG9 +#define NEOPIXEL_PIN PB9 // // Misc. Functions // -// #define KILL_PIN PB1 +//#define KILL_PIN PB1 // // LCD / Controller // -// #define FSMC_GRAPHICAL_TFT //use offical tft lcd controller.? +//#define FSMC_GRAPHICAL_TFT // Use offical TFT LCD Controller? -// #if HAS_FSMC_TFT -// /** -// * Note: MKS Robin TFT screens use various TFT controllers -// * Supported screens are based on the ILI9341, ST7789V and ILI9328 (320x240) -// * ILI9488 is not supported -// * Define init sequences for other screens in u8g_dev_tft_320x240_upscale_from_128x64.cpp -// * -// * If the screen stays white, disable 'LCD_RESET_PIN' -// * to let the bootloader init the screen. -// * -// * Setting an 'LCD_RESET_PIN' may cause a flicker when entering the LCD menu -// * because Marlin uses the reset as a failsafe to revive a glitchy LCD. -// */ -// //#define LCD_RESET_PIN PF6 -// #define LCD_BACKLIGHT_PIN PG10 -// #define FSMC_CS_PIN PD7 // NE1 -// #define FSMC_RS_PIN PE2 // A23 -// #define TFT_CS_PIN FSMC_CS_PIN -// #define TFT_RS_PIN FSMC_RS_PIN +#if 0 -// #define LCD_USE_DMA_FSMC // Use DMA transfers to send data to the TFT -// #define FSMC_DMA_DEV DMA2 -// #define FSMC_DMA_CHANNEL DMA_CH5 -// #endif +#if HAS_FSMC_TFT + /** + * Note: MKS Robin TFT screens use various TFT controllers + * Supported screens are based on the ILI9341, ST7789V and ILI9328 (320x240) + * ILI9488 is not supported + * Define init sequences for other screens in u8g_dev_tft_320x240_upscale_from_128x64.cpp + * + * If the screen stays white, disable 'LCD_RESET_PIN' + * to let the bootloader init the screen. + * + * Setting an 'LCD_RESET_PIN' may cause a flicker when entering the LCD menu + * because Marlin uses the reset as a failsafe to revive a glitchy LCD. + */ + //#define LCD_RESET_PIN PF6 + #define LCD_BACKLIGHT_PIN PG10 + #define FSMC_CS_PIN PD7 // NE1 + #define FSMC_RS_PIN PE2 // A23 + #define TFT_CS_PIN FSMC_CS_PIN + #define TFT_RS_PIN FSMC_RS_PIN -// #if NEED_TOUCH_PINS -// #define TOUCH_CS_PIN PB1 // SPI2_NSS -// #define TOUCH_SCK_PIN PB13 // SPI2_SCK -// #define TOUCH_MISO_PIN PB14 // SPI2_MISO -// #define TOUCH_MOSI_PIN PB15 // SPI2_MOSI -// #define TOUCH_INT_PIN -1 -// #endif + #define LCD_USE_DMA_FSMC // Use DMA transfers to send data to the TFT + #define FSMC_DMA_DEV DMA2 + #define FSMC_DMA_CHANNEL DMA_CH5 +#endif + +#if NEED_TOUCH_PINS + #define TOUCH_CS_PIN PB1 // SPI2_NSS + #define TOUCH_SCK_PIN PB13 // SPI2_SCK + #define TOUCH_MISO_PIN PB14 // SPI2_MISO + #define TOUCH_MOSI_PIN PB15 // SPI2_MOSI + #define TOUCH_INT_PIN -1 +#endif //#define SD_DETECT_PIN PC5 //#define SD_DETECT_PIN PA8 // SDIO SD_DETECT_PIN, external SDIO card reader only +#endif /** * Note: Alfawise screens use various TFT controllers. Supported screens @@ -660,46 +647,41 @@ * because Marlin uses the reset as a failsafe to revive a glitchy LCD. */ -#define LCD_BACKLIGHT_PIN PG10 -#define FSMC_CS_PIN PD7 // FSMC_NE1 -#define FSMC_RS_PIN PE2 // A23 Register. Only one address needed -#define TFT_CS_PIN FSMC_CS_PIN -#define TFT_RS_PIN FSMC_RS_PIN -#define TFT_BACKLIGHT_PIN LCD_BACKLIGHT_PIN +#define LCD_BACKLIGHT_PIN PG10 +#define FSMC_CS_PIN PD7 // FSMC_NE1 +#define FSMC_RS_PIN PE2 // A23 Register. Only one address needed +#define TFT_CS_PIN FSMC_CS_PIN +#define TFT_RS_PIN FSMC_RS_PIN +#define TFT_BACKLIGHT_PIN LCD_BACKLIGHT_PIN #define LCD_USE_DMA_FSMC // Use DMA transfers to send data to the TFT -#define FSMC_DMA_DEV DMA1 -#define FSMC_DMA_CHANNEL DMA_CH4 //fixme in F4 +#define FSMC_DMA_DEV DMA1 +#define FSMC_DMA_CHANNEL DMA_CH4 // Fixme in F4 #if ENABLED(TOUCH_SCREEN) - #define TOUCH_CS_PIN PB6 - #define TOUCH_SCK_PIN PB3 - #define TOUCH_MOSI_PIN PB5 - #define TOUCH_MISO_PIN PB4 - #define TOUCH_INT_PIN PB7 // PenIRQ coming from XPT2046 + #define TOUCH_CS_PIN PB6 + #define TOUCH_SCK_PIN PB3 + #define TOUCH_MOSI_PIN PB5 + #define TOUCH_MISO_PIN PB4 + #define TOUCH_INT_PIN PB7 // PenIRQ coming from XPT2046 #endif -#define DOGLCD_MOSI -1 // Prevent auto-define by Conditionals_post.h -#define DOGLCD_SCK -1 - -// #define LCD_PINS_RS PE15 -// #define LCD_PINS_ENABLE PD8 -// #define LCD_PINS_D4 PE10 -// #define LCD_PINS_D5 PE12 -// #define LCD_PINS_D6 PD1 -// #define LCD_PINS_D7 PE8 -// #define BTN_ENC PD9 -// #define BTN_EN1 PD4 -// #define BTN_EN2 PD13 - +#define DOGLCD_MOSI -1 // Prevent auto-define by Conditionals_post.h +#define DOGLCD_SCK -1 +//#define LCD_PINS_RS PE15 +//#define LCD_PINS_ENABLE PD8 +//#define LCD_PINS_D4 PE10 +//#define LCD_PINS_D5 PE12 +//#define LCD_PINS_D6 PD1 +//#define LCD_PINS_D7 PE8 +//#define BTN_ENC PD9 +//#define BTN_EN1 PD4 +//#define BTN_EN2 PD13 // // Onboard SD support // - -#define HAS_ONBOARD_SD - #define SDIO_D0_PIN PA6 #define SDIO_D1_PIN PC9 #define SDIO_D2_PIN PC10 @@ -712,18 +694,17 @@ #endif #if SD_CONNECTION_IS(ONBOARD) - // #define SDIO_SUPPORT // Use SDIO for onboard SD + //#define SDIO_SUPPORT // Use SDIO for onboard SD #ifndef SDIO_SUPPORT #define SOFTWARE_SPI // Use soft SPI for onboard SD - #define SDSS SDIO_D3_PIN //A4 - #define SCK_PIN SDIO_CK_PIN //A5 - #define MISO_PIN SDIO_D0_PIN //A6 - #define MOSI_PIN SDIO_CMD_PIN //A7 + #define SDSS SDIO_D3_PIN // A4 + #define SCK_PIN SDIO_CK_PIN // A5 + #define MISO_PIN SDIO_D0_PIN // A6 + #define MOSI_PIN SDIO_CMD_PIN // A7 #endif #endif - // // WIFI // @@ -741,7 +722,7 @@ #define ESP_WIFI_MODULE_BAUDRATE BAUDRATE // Must use same BAUDRATE as SERIAL_PORT & SERIAL_PORT_2 #define ESP_WIFI_MODULE_RESET_PIN PE5 #define ESP_WIFI_MODULE_ENABLE_PIN PE4 -#define ESP_WIFI_MODULE_GPIO0_PIN ESP_WIFI_MODULE_ENABLE_PIN -// #define ESP_WIFI_MODULE_GPIO2_PIN PF15 +#define ESP_WIFI_MODULE_GPIO0_PIN ESP_WIFI_MODULE_ENABLE_PIN +//#define ESP_WIFI_MODULE_GPIO2_PIN PF15 #endif From dc73d8e630d1a2882588cb36cf6c306b0944bb54 Mon Sep 17 00:00:00 2001 From: Scott Lahteine Date: Tue, 1 Apr 2025 04:30:38 -0500 Subject: [PATCH 5/7] cleanup --- Marlin/config.ini | 2 +- Marlin/src/pins/pins.h | 3 +- ...ve.json => marlin_STM32F407VE_LANGGO.json} | 0 ini/stm32f4.ini | 50 ++++++++----------- 4 files changed, 25 insertions(+), 30 deletions(-) rename buildroot/share/PlatformIO/boards/{langgo407ve.json => marlin_STM32F407VE_LANGGO.json} (100%) diff --git a/Marlin/config.ini b/Marlin/config.ini index 1fb02f2184..d6d2395e39 100644 --- a/Marlin/config.ini +++ b/Marlin/config.ini @@ -41,7 +41,7 @@ # Produce a flattened set of Configuration.h and Configuration_adv.h files with only the enabled # #defines and no comments. A clean look, but context-free. # -ini_use_config = all +ini_use_config = none # Load all config: sections in this file ;ini_use_config = all diff --git a/Marlin/src/pins/pins.h b/Marlin/src/pins/pins.h index 5e6c8bb76c..4d523c45a9 100644 --- a/Marlin/src/pins/pins.h +++ b/Marlin/src/pins/pins.h @@ -866,7 +866,8 @@ #elif MB(MKS_NEPTUNE_3) #include "stm32f4/pins_MKS_NEPTUNE_3.h" // STM32F4 env:mks_neptune_3 #elif MB(LANGGO407) - #include "stm32f4/pins_LANGGO407.h" // STM32F4 env:LANGGO407VE + #include "stm32f4/pins_LANGGO407.h" // STM32F4 env:LANGGO407VE + // // Other ARM Cortex-M4 // diff --git a/buildroot/share/PlatformIO/boards/langgo407ve.json b/buildroot/share/PlatformIO/boards/marlin_STM32F407VE_LANGGO.json similarity index 100% rename from buildroot/share/PlatformIO/boards/langgo407ve.json rename to buildroot/share/PlatformIO/boards/marlin_STM32F407VE_LANGGO.json diff --git a/ini/stm32f4.ini b/ini/stm32f4.ini index dcf20b8d2a..e8c0295a60 100644 --- a/ini/stm32f4.ini +++ b/ini/stm32f4.ini @@ -148,30 +148,6 @@ board = marlin_blackSTM32F407VET6 build_flags = ${stm32_variant.build_flags} -DUSBD_USE_CDC_COMPOSITE -DUSE_USB_FS - -[env:LANGGO407VE] -extends = stm32_variant -platform = ${common_stm32.platform} -board = langgo407ve -build_flags = ${common_stm32.build_flags} - -DARDUINO_BLACK_F407ZE - -DST32_SHIP - -DUSBCON - -DUSBD_USE_CDC - -DUSE_USB_HS - -DUSE_USB_HS_IN_FS - -DVECT_TAB_OFFSET=0x8000 -extra_scripts = ${common.extra_scripts} - pre:buildroot/share/PlatformIO/scripts/generic_create_variant.py - buildroot/share/PlatformIO/scripts/stm32_bootloader.py -lib_extra_dirs = Marlin/lib -lib_deps = Marlin/lib/rtt - Marlin/lib/fat_fs - Marlin/lib/STM32_USB_Host_Library - - - - # # STM32F407VET6 Opulo Lumen REV3 # @@ -179,8 +155,8 @@ lib_deps = Marlin/lib/rtt extends = stm32_variant board = marlin_opulo_lumen_rev3 build_flags = ${stm32_variant.build_flags} - -DARDUINO_BLACK_F407VE - -DUSBD_USE_CDC_COMPOSITE -DUSE_USB_FS -DHAS_STM32_UID + -DARDUINO_BLACK_F407VE + -DUSBD_USE_CDC_COMPOSITE -DUSE_USB_FS -DHAS_STM32_UID extra_scripts = ${stm32_variant.extra_scripts} # @@ -190,10 +166,28 @@ extra_scripts = ${stm32_variant.extra_scripts} extends = stm32_variant board = marlin_opulo_lumen_rev4 build_flags = ${stm32_variant.build_flags} - -DARDUINO_BLACK_F407VE - -DUSBD_USE_CDC_COMPOSITE -DUSE_USB_FS -DHAS_STM32_UID + -DARDUINO_BLACK_F407VE + -DUSBD_USE_CDC_COMPOSITE -DUSE_USB_FS -DHAS_STM32_UID extra_scripts = ${stm32_variant.extra_scripts} +# +# Langgo407 (STM32F407VE) +# +[env:LANGGO407VE] +extends = stm32_variant +platform = ${common_stm32.platform} +board = marlin_STM32F407VE_LANGGO +board_build.offset = 0x8000 +board_build.offset_address = 0x08008000 +build_flags = ${common_stm32.build_flags} + -DARDUINO_BLACK_F407ZE + -DST32_SHIP + -DUSBCON -DUSBD_USE_CDC -DUSE_USB_HS -DUSE_USB_HS_IN_FS +lib_extra_dirs = Marlin/lib +lib_deps = Marlin/lib/rtt + Marlin/lib/fat_fs + Marlin/lib/STM32_USB_Host_Library + # # Anet ET4-MB_V1.x/ET4P-MB_V1.x (STM32F407VGT6 ARM Cortex-M4) # From 9cbbddf4ed1a622d8fcf682f83abee8c7f2dc3a8 Mon Sep 17 00:00:00 2001 From: Scott Lahteine Date: Mon, 17 Nov 2025 18:05:01 -0600 Subject: [PATCH 6/7] split pins file in two --- Marlin/src/core/boards.h | 3 +- Marlin/src/pins/pins.h | 6 +- Marlin/src/pins/sam/pins_RADDS.h | 2 +- Marlin/src/pins/stm32f4/pins_LANGGO407.h | 728 ------------------ Marlin/src/pins/stm32f4/pins_LANGGO407_V1.h | 292 +++++++ Marlin/src/pins/stm32f4/pins_LANGGO407_V2.h | 299 +++++++ Marlin/src/pins/teensy2/pins_PRINTRBOARD.h | 2 +- .../src/pins/teensy2/pins_PRINTRBOARD_REVF.h | 2 +- 8 files changed, 600 insertions(+), 734 deletions(-) delete mode 100644 Marlin/src/pins/stm32f4/pins_LANGGO407.h create mode 100644 Marlin/src/pins/stm32f4/pins_LANGGO407_V1.h create mode 100644 Marlin/src/pins/stm32f4/pins_LANGGO407_V2.h diff --git a/Marlin/src/core/boards.h b/Marlin/src/core/boards.h index 54d3b9914b..c272cec4d2 100644 --- a/Marlin/src/core/boards.h +++ b/Marlin/src/core/boards.h @@ -493,7 +493,8 @@ #define BOARD_ZNP_ROBIN_NANO_V1_3 5259 // Elegoo Neptune 2 v1.3 board #define BOARD_MKS_NEPTUNE_X 5260 // Elegoo Neptune X #define BOARD_MKS_NEPTUNE_3 5261 // Elegoo Neptune 3 -#define BOARD_LANGGO407 5262 // Langgo407 (STM32F407VE) +#define BOARD_LANGGO407_V1 5262 // Langgo407 BC.DZ.PC000007 (STM32F407VE) +#define BOARD_LANGGO407_V2 5263 // Langgo407 F4Z_MC (STM32F407VE) // // Other ARM Cortex-M4 diff --git a/Marlin/src/pins/pins.h b/Marlin/src/pins/pins.h index 2dae95ca94..ab2520485d 100644 --- a/Marlin/src/pins/pins.h +++ b/Marlin/src/pins/pins.h @@ -822,8 +822,10 @@ #include "stm32f4/pins_MKS_NEPTUNE_X.h" // STM32F4 env:mks_neptune_x #elif MB(MKS_NEPTUNE_3) #include "stm32f4/pins_MKS_NEPTUNE_3.h" // STM32F4 env:mks_neptune_3 -#elif MB(LANGGO407) - #include "stm32f4/pins_LANGGO407.h" // STM32F4 env:LANGGO407VE +#elif MB(LANGGO407_V1) + #include "stm32f4/pins_LANGGO407_V1.h" // STM32F4 env:LANGGO407VE +#elif MB(LANGGO407_V2) + #include "stm32f4/pins_LANGGO407_V2.h" // STM32F4 env:LANGGO407VE // // Other ARM Cortex-M4 diff --git a/Marlin/src/pins/sam/pins_RADDS.h b/Marlin/src/pins/sam/pins_RADDS.h index 513bccee5e..04bf74eaf2 100644 --- a/Marlin/src/pins/sam/pins_RADDS.h +++ b/Marlin/src/pins/sam/pins_RADDS.h @@ -292,6 +292,6 @@ #endif // HAS_WIRED_LCD -#ifndef SDSS +#ifndef SD_SS_PIN #define SD_SS_PIN 4 #endif diff --git a/Marlin/src/pins/stm32f4/pins_LANGGO407.h b/Marlin/src/pins/stm32f4/pins_LANGGO407.h deleted file mode 100644 index 16dc5f5d9b..0000000000 --- a/Marlin/src/pins/stm32f4/pins_LANGGO407.h +++ /dev/null @@ -1,728 +0,0 @@ -/** - * Marlin 3D Printer Firmware - * Copyright (c) 2025 MarlinFirmware [https://github.com/MarlinFirmware/Marlin] - * - * Based on Sprinter and grbl. - * Copyright (c) 2011 Camiel Gubbels / Erik van der Zalm - * - * This program is free software: you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation, either version 3 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program. If not, see . - * - */ -#pragma once - -/** - * STM32F407VET6 with RAMPS-like shield - * 'Black' STM32F407VET6 board - https://www.stm32duino.com/viewtopic.php?t=485 - * Shield - https://github.com/jmz52/Hardware - */ -#include "env_validate.h" - -#if ENABLED(NEW_BOARD) - -#if NOT_TARGET(STM32F4, STM32F4xx) - #error "Oops! Select an STM32F4 board in 'Tools > Board.'" -#elif HOTENDS > 2 || E_STEPPERS > 2 - #error "Black STM32F4VET6 supports up to 2 hotends / E-steppers." -#endif - -#ifndef BOARD_INFO_NAME - #ifdef NEW_BOARD - #ifdef COREXZ - #define BOARD_INFO_NAME "F4Z_MC Core-XZ" - #else - #define BOARD_INFO_NAME "F4Z_MC" - #endif - #else - #ifdef COREXZ - #define BOARD_INFO_NAME "BC.DZ.PC000007.03 Core-XZ" - #else - #define BOARD_INFO_NAME "BC.DZ.PC000007.03" - #endif - #endif - - #if 0//ENABLED(ST32_SHIP) - #define CHIP_NAME "(S)" - #elif 0//ENABLED(USE_GD32) - #define CHIP_NAME "(G)" - #else - #define CHIP_NAME "" - #endif - - #if ENABLED(R3_PRO) - #define ROBOT_NAME "-MAX" - #elif ENABLED(R4_PRO) - #define ROBOT_NAME "-PRO" - #else - #define ROBOT_NAME "" - #endif - - #if ENABLED(USE_TI_CHOKE) - #define MATERIALS_NAME "-Ti" - #define MATERIALS_NAME_TI "-Ti" - #else - #define MATERIALS_NAME "" - #define MATERIALS_NAME_TI "-Ti" - #endif -#endif - -#define DEFAULT_MACHINE_NAME "HP STM32F407VE" - -//#define I2C_EEPROM -#if 0 - #define SRAM_EEPROM_EMULATION - #define MARLIN_EEPROM_SIZE 0x2000 // 8KB -#else - #define W25QXX_SPI_EEPROM -#endif - -// -// Servos -// -#ifdef BLTOUCH - #define SERVO0_PIN PA4 // After ver3.0 - //#define SERVO0_PIN PC6 - //#define SERVO1_PIN PC7 -#else - //#define CALIB_PIN PD6 // Before ver3.0 - #define CALIB_PIN PA4 // After ver3.0 -#endif - -// -// Z Probe must be this pin -// -//#define Z_MIN_PROBE_PIN PD3 // Before ver3.0 -#define Z_MIN_PROBE_PIN PD6 // After ver3.0 - -// -// Limit Switches -// -#if ENABLED(QUICK_PRINT) - #define X_MAX_PIN PF14 -#else - #define X_MIN_PIN PF14 - //#define X_MAX_PIN PA15 -#endif - -#define Y_MIN_PIN PF13 -//#define Y_MAX_PIN PD12 - -#ifdef Z_MIN_PROBE_USES_Z_MIN_ENDSTOP_PIN - #define Z_MIN_PIN PD3 -#else - #define Z_MIN_PIN PF11 - #if ENABLED(Z_MULTI_ENDSTOPS) - #define Z2_MIN_PIN PD3 // after ver3.0 - #endif -#endif -//#define Z_MIN_PIN PG0 -//#define Z_MAX_PIN PD15 - -//#define LED_RED_PIN PG9 -#if ENABLED(R_B_LED) - #define RB_LED_PIN PD7 -#endif - -#if ENABLED(WS2812_LED) - #define WS2812_LED_PIN PD7 -#endif - -#define CAP_TOUCH_PIN PA0 - -/** - * TMC2208/TMC2209 stepper drivers - */ - -#if 0 - - #define X_ENABLE_PIN PE6 - #define X_STEP_PIN PE5 - #define X_DIR_PIN PE4 - - #define Y_ENABLE_PIN PF3 - #define Y_STEP_PIN PF2 - #define Y_DIR_PIN PF1 - - #define Z_ENABLE_PIN PC2 - #define Z_STEP_PIN PC1 - #define Z_DIR_PIN PC0 - - #define E0_ENABLE_PIN PE1 - #define E0_STEP_PIN PE0 - #define E0_DIR_PIN PB7 - - #define E1_ENABLE_PIN PB0 - #define E1_STEP_PIN PC5 - #define E1_DIR_PIN PC4 - - // - // Software serial ASYNC half duplex? - // - #if AXIS_HAS_UART(X) - #define X_SERIAL_TX_PIN PC13 - #elif AXIS_DRIVER_TYPE_X(A4988) - #define X_RESET_PIN PC13 - #endif - - #if AXIS_HAS_UART(Y) - #define Y_SERIAL_TX_PIN PF4 - #elif AXIS_DRIVER_TYPE_Y(A4988) - #define Y_RESET_PIN PF4 - #endif - - #if AXIS_HAS_UART(Z) - #define Z_SERIAL_TX_PIN PC3 - #elif AXIS_DRIVER_TYPE_Z(A4988) - #define Z_RESET_PIN PC3 - #endif - - #if AXIS_HAS_UART(E0) - #define E0_SERIAL_TX_PIN PE2 - #elif AXIS_DRIVER_TYPE_E0(A4988) - #define E0_RESET_PIN PE2 - #endif - - #if AXIS_HAS_UART(E1) - #define E1_SERIAL_TX_PIN PB1 - #elif AXIS_DRIVER_TYPE_E1(A4988) - #define E1_RESET_PIN PB1 - #endif - -#else - - #define X_ENABLE_PIN PE4 - #define X_STEP_PIN PE3 - #define X_DIR_PIN PE2 - - #define Y_ENABLE_PIN PF0 - #define Y_STEP_PIN PC13 - #define Y_DIR_PIN PE6 - - #define Z_ENABLE_PIN PF4 - #define Z_STEP_PIN PF3 - #define Z_DIR_PIN PF2 - - #define Z2_ENABLE_PIN PC2 - #define Z2_STEP_PIN PC1 - #define Z2_DIR_PIN PC0 - - #define E0_ENABLE_PIN PE0 - #define E0_STEP_PIN PB7 - #define E0_DIR_PIN PB6 - - #define E1_ENABLE_PIN PC5 - #define E1_STEP_PIN PC4 - #define E1_DIR_PIN PA1 - - #if AXIS_HAS_UART(X) - #define X_SERIAL_TX_PIN PE5 - #elif AXIS_DRIVER_TYPE_X(A4988) - #define X_RESET_PIN PE5 - #endif - - #if AXIS_HAS_UART(Y) - #define Y_SERIAL_TX_PIN PF1 - #elif AXIS_DRIVER_TYPE_Y(A4988) - #define Y_RESET_PIN PF1 - #endif - - #if AXIS_HAS_UART(Z) - #define Z_SERIAL_TX_PIN PF9 // 此处应是PF10,但表与PF9反了 - #elif AXIS_DRIVER_TYPE_Z(A4988) - #define Z_RESET_PIN PF9 - #endif - - #if AXIS_HAS_UART(Z2) - #define Z2_SERIAL_TX_PIN PC3 - #elif AXIS_DRIVER_TYPE_Z2(A4988) - #define Z2_RESET_PIN PC3 - #endif - - #if AXIS_HAS_UART(E0) - #define E0_SERIAL_TX_PIN PE1 - #elif AXIS_DRIVER_TYPE_E0(A4988) - #define E0_RESET_PIN PE1 - #endif - - #if AXIS_HAS_UART(E1) - #define E1_SERIAL_TX_PIN PB0 - #elif AXIS_DRIVER_TYPE_E1(A4988) - #define E1_RESET_PIN PB0 - #endif - -#endif - -#if HAS_TMC_UART - // Reduce baud rate to improve software serial reliability - #ifndef TMC_BAUD_RATE - #define TMC_BAUD_RATE 19200 - #endif -#endif - -// -// Filament Sensor -// -#ifndef FIL_RUNOUT_PIN - #define FIL_RUNOUT_PIN PG10 -#endif - -// -// Power Supply Control -// -#ifndef PS_ON_PIN - #define PS_ON_PIN PG8 -#endif - -// -// Temperature Sensors -// -#define TEMP_0_PIN PF5 // T0 -#define TEMP_1_PIN PB1 // T0 -#define TEMP_BED_PIN PF6 // TB - -#ifndef TEMP_CHAMBER_PIN - //#define TEMP_CHAMBER_PIN PC3 // TC -#endif - -// -// Heaters / Fans -// -#define HEATER_0_PIN PD11 -#define HEATER_1_PIN PC7 -#define HEATER_BED_PIN PD13 - -#define FAN0_PIN PB9 -//#define FAN1_PIN PB8 - -#define STEP_TIMER_NUM 5 // Timer Index for Stepper -#define TEMP_TIMER_NUM 14 // Timer Index for Temperature - -// -// USB connect control -// -#define USB_CONNECT_PIN PG11 -#define USB_CONNECT_INVERTING false - -#define SD_DETECT_PIN PA8 -#define BEEPER_PIN PB12 -#define LED_PIN PB2 - -//#define NEOPIXEL_PIN PD7 - -/** - * Note: Alfawise screens use various TFT controllers. Supported screens - * are based on the ILI9341, ILI9328 and ST7798V. Define init sequences for - * other screens in u8g_dev_tft_320x240_upscale_from_128x64.cpp - * - * If the screen stays white, disable 'LCD_RESET_PIN' to let the bootloader - * init the screen. - * - * Setting an 'LCD_RESET_PIN' may cause a flicker when entering the LCD menu - * because Marlin uses the reset as a failsafe to revive a glitchy LCD. - */ - -#define LCD_BACKLIGHT_PIN PG1 -#define FSMC_CS_PIN PG12 // FSMC_NE1 -#define FSMC_RS_PIN PF12 // A23 Register. Only one address needed -#define TFT_CS_PIN FSMC_CS_PIN -#define TFT_RS_PIN FSMC_RS_PIN -#define TFT_BACKLIGHT_PIN LCD_BACKLIGHT_PIN - -#define LCD_USE_DMA_FSMC // Use DMA transfers to send data to the TFT -#define FSMC_DMA_DEV DMA1 -#define FSMC_DMA_CHANNEL DMA_CH4 // Fixme in F4 - -#if ENABLED(TOUCH_SCREEN) - #define TOUCH_CS_PIN PG0 - #define TOUCH_SCK_PIN PA5 - #define TOUCH_MOSI_PIN PA7 - #define TOUCH_MISO_PIN PA6 - #define TOUCH_INT_PIN PF15 // PenIRQ coming from XPT2046 触发 -#endif - -#define DOGLCD_MOSI -1 // Prevent auto-define by Conditionals_post.h -#define DOGLCD_SCK -1 - -// -// OCP -// -#define MOTORS_OCP_PIN PF7 -#define BED_OCP_PIN PF8 -#define HOTEND_OCP_PIN PF10 // 应该为PF9,但表PF9、PF10的值反了,只能用这个 -#define SHUTDOWN_HOTEND_PIN PD12 -#define SHUTDOWN_BED_PIN PG7 - -// -// Onboard SD support -// -#define SDIO_D0_PIN PC8 -#define SDIO_D1_PIN PC9 -#define SDIO_D2_PIN PC10 -#define SDIO_D3_PIN PC11 -#define SDIO_CK_PIN PC12 -#define SDIO_CMD_PIN PD2 - -#ifndef SDCARD_CONNECTION - #define SDCARD_CONNECTION ONBOARD -#endif - -#if SD_CONNECTION_IS(ONBOARD) - //#define SDIO_SUPPORT // Use SDIO for onboard SD - - #ifndef SDIO_SUPPORT - #define SOFTWARE_SPI // Use soft SPI for onboard SD - #define SD_SS_PIN SDIO_D3_PIN //A4 - #define SCK_PIN SDIO_CK_PIN //A5 - #define MISO_PIN SDIO_D0_PIN //A6 - #define MOSI_PIN SDIO_CMD_PIN //A7 - #endif -#endif - -// -// WIFI -// - -/** - * ----- - * TX | 1 2 | GND Enable PG1 // Must be high for module to run - * Enable | 3 4 | GPIO2 Reset PG0 // active low, probably OK to leave floating - * Reset | 5 6 | GPIO0 GPIO2 PF15 // must be high (ESP3D software configures this with a pullup so OK to leave as floating) - * 3.3V | 7 8 | RX GPIO0 PF14 // Leave as unused (ESP3D software configures this with a pullup so OK to leave as floating) - * ----- - * W1 - */ -#define ESP_WIFI_MODULE_COM 6 // Must also set either SERIAL_PORT or SERIAL_PORT_2 to this -#define ESP_WIFI_MODULE_BAUDRATE BAUDRATE // Must use same BAUDRATE as SERIAL_PORT & SERIAL_PORT_2 -#define ESP_WIFI_MODULE_RESET_PIN PG2 -#define ESP_WIFI_MODULE_ENABLE_PIN PG3 -#define ESP_WIFI_MODULE_GPIO0_PIN PG5 -#define ESP_WIFI_MODULE_GPIO2_PIN PG4 - -//#define SHUTTER_CTRL_PIN PB13 - -#else - -#if NOT_TARGET(STM32F4, STM32F4xx) - #error "Oops! Select an STM32F4 board in 'Tools > Board.'" -#elif HOTENDS > 2 || E_STEPPERS > 2 - #error "Black STM32F4VET6 supports up to 2 hotends / E-steppers." -#endif - -#ifndef BOARD_INFO_NAME - #define BOARD_INFO_NAME "BC.DZ.PC000007" - - #if ENABLED(ST32_SHIP) - #define CHIP_NAME "(S)" - #elif ENABLED(USE_GD32) - #define CHIP_NAME "(G)" - #endif - - #if ENABLED(R3_PRO) - #define ROBOT_NAME "-MAX" - #elif ENABLED(R4_PRO) - #define ROBOT_NAME "-PRO" - #else - #define ROBOT_NAME "" - #endif - - #if ENABLED(USE_TI_CHOKE) - #define MATERIALS_NAME "-Ti" - #else - #define MATERIALS_NAME "" - #endif -#endif - -#define DEFAULT_MACHINE_NAME "HP STM32F407VE" - -//#define I2C_EEPROM -#if 0 - #define SRAM_EEPROM_EMULATION - #define MARLIN_EEPROM_SIZE 0x2000 // 8KB -#else - #define W25QXX_SPI_EEPROM -#endif - -// -// Servos -// -//#define SERVO0_PIN PC6 -//#define SERVO1_PIN PC7 - -#ifdef HALL_PLATE - #define CALIB_PIN PB1 -#else - #define SERVO0_PIN PB1 -#endif - -// -// Z Probe must be this pins -// -#define Z_MIN_PROBE_PIN PB0 - -// -// Limit Switches -// -#if ENABLED(QUICK_PRINT) - #define X_MAX_PIN PF12 -#else - #define X_MIN_PIN PF12 - //#define X_MAX_PIN PA15 -#endif - -#define Y_MIN_PIN PF14 -//#define Y_MAX_PIN PD12 - -#if ENABLED(Z_MIN_PROBE_USES_Z_MIN_ENDSTOP_PIN) - #define Z_MIN_PIN PB1 -#else - #define Z_MIN_PIN PG0 -#endif - -#define Z_MIN_PROBE_PIN PG0 - -//#define Z_MIN_PIN PG0 -//#define Z_MAX_PIN PD15 -#if ENABLED(R_B_LED) - #define RB_LED_PIN PB9 -#endif - -// -// Steppers -// -#define X_ENABLE_PIN PD3 -#define X_STEP_PIN PD2 -#define X_DIR_PIN PC10 - -#define Y_ENABLE_PIN PC12 -#define Y_STEP_PIN PA10 -#define Y_DIR_PIN PA9 - -#define Z_ENABLE_PIN PC9 -#define Z_STEP_PIN PG8 -#define Z_DIR_PIN PG7 - -#define E0_ENABLE_PIN PD13 -#define E0_STEP_PIN PD12 -#define E0_DIR_PIN PD11 - -#define E1_ENABLE_PIN PG5 -#define E1_STEP_PIN PG4 -#define E1_DIR_PIN PG3 - -/** - * TMC2208/TMC2209 stepper drivers - */ -#if HAS_TMC_UART - // - // Software serial ASYNC half duplex? - // - #define X_SERIAL_TX_PIN PD6 - #define Y_SERIAL_TX_PIN PC11 - #define Z_SERIAL_TX_PIN PA8 - #define E0_SERIAL_TX_PIN PG2 - #define E1_SERIAL_TX_PIN PG6 - - // Reduce baud rate to improve software serial reliability - #ifndef TMC_BAUD_RATE - #define TMC_BAUD_RATE 19200 - #endif -#endif - -// -// Filament Sensor -// -#ifndef FIL_RUNOUT_PIN - #define FIL_RUNOUT_PIN PG1 -#endif - -// -// Power Supply Control -// -#ifndef PS_ON_PIN - #define PS_ON_PIN PA1 -#endif - -// -// Temperature Sensors -// -#define TEMP_0_PIN PC4 // T0 -#define TEMP_BED_PIN PC5 // TB - -#ifndef TEMP_CHAMBER_PIN - #define TEMP_CHAMBER_PIN PC3 // TC -#endif - -// -// Heaters / Fans -// -#define HEATER_0_PIN PC6 -#define HEATER_BED_PIN PC8 - -#define FAN_PIN PC7 - -#define STEP_TIMER_NUM 5 // Timer Index for Stepper -#define TEMP_TIMER_NUM 14 // Timer Index for Temperature - -// -// USB connect control -// -#define USB_CONNECT_PIN PA15 -#define USB_CONNECT_INVERTING false - -#define SD_DETECT_PIN PE3 -#define BEEPER_PIN PG11 -#define LED_PIN PG9 - -#define NEOPIXEL_PIN PB9 - -// -// Misc. Functions -// -//#define KILL_PIN PB1 - -// -// LCD / Controller -// -//#define FSMC_GRAPHICAL_TFT // Use offical TFT LCD Controller? - -#if 0 - -#if HAS_FSMC_TFT - /** - * Note: MKS Robin TFT screens use various TFT controllers - * Supported screens are based on the ILI9341, ST7789V and ILI9328 (320x240) - * ILI9488 is not supported - * Define init sequences for other screens in u8g_dev_tft_320x240_upscale_from_128x64.cpp - * - * If the screen stays white, disable 'LCD_RESET_PIN' - * to let the bootloader init the screen. - * - * Setting an 'LCD_RESET_PIN' may cause a flicker when entering the LCD menu - * because Marlin uses the reset as a failsafe to revive a glitchy LCD. - */ - //#define LCD_RESET_PIN PF6 - #define LCD_BACKLIGHT_PIN PG10 - #define FSMC_CS_PIN PD7 // NE1 - #define FSMC_RS_PIN PE2 // A23 - #define TFT_CS_PIN FSMC_CS_PIN - #define TFT_RS_PIN FSMC_RS_PIN - - #define LCD_USE_DMA_FSMC // Use DMA transfers to send data to the TFT - #define FSMC_DMA_DEV DMA2 - #define FSMC_DMA_CHANNEL DMA_CH5 -#endif - -#if NEED_TOUCH_PINS - #define TOUCH_CS_PIN PB1 // SPI2_NSS - #define TOUCH_SCK_PIN PB13 // SPI2_SCK - #define TOUCH_MISO_PIN PB14 // SPI2_MISO - #define TOUCH_MOSI_PIN PB15 // SPI2_MOSI - #define TOUCH_INT_PIN -1 -#endif - -//#define SD_DETECT_PIN PC5 -//#define SD_DETECT_PIN PA8 // SDIO SD_DETECT_PIN, external SDIO card reader only - -#endif - -/** - * Note: Alfawise screens use various TFT controllers. Supported screens - * are based on the ILI9341, ILI9328 and ST7798V. Define init sequences for - * other screens in u8g_dev_tft_320x240_upscale_from_128x64.cpp - * - * If the screen stays white, disable 'LCD_RESET_PIN' to let the bootloader - * init the screen. - * - * Setting an 'LCD_RESET_PIN' may cause a flicker when entering the LCD menu - * because Marlin uses the reset as a failsafe to revive a glitchy LCD. - */ - -#define LCD_BACKLIGHT_PIN PG10 -#define FSMC_CS_PIN PD7 // FSMC_NE1 -#define FSMC_RS_PIN PE2 // A23 Register. Only one address needed -#define TFT_CS_PIN FSMC_CS_PIN -#define TFT_RS_PIN FSMC_RS_PIN -#define TFT_BACKLIGHT_PIN LCD_BACKLIGHT_PIN - -#define LCD_USE_DMA_FSMC // Use DMA transfers to send data to the TFT -#define FSMC_DMA_DEV DMA1 -#define FSMC_DMA_CHANNEL DMA_CH4 // Fixme in F4 - -#if ENABLED(TOUCH_SCREEN) - #define TOUCH_CS_PIN PB6 - #define TOUCH_SCK_PIN PB3 - #define TOUCH_MOSI_PIN PB5 - #define TOUCH_MISO_PIN PB4 - #define TOUCH_INT_PIN PB7 // PenIRQ coming from XPT2046 -#endif - -#define DOGLCD_MOSI -1 // Prevent auto-define by Conditionals_post.h -#define DOGLCD_SCK -1 - -//#define LCD_PINS_RS PE15 -//#define LCD_PINS_ENABLE PD8 -//#define LCD_PINS_D4 PE10 -//#define LCD_PINS_D5 PE12 -//#define LCD_PINS_D6 PD1 -//#define LCD_PINS_D7 PE8 -//#define BTN_ENC PD9 -//#define BTN_EN1 PD4 -//#define BTN_EN2 PD13 - -// -// Onboard SD support -// -#define SDIO_D0_PIN PA6 -#define SDIO_D1_PIN PC9 -#define SDIO_D2_PIN PC10 -#define SDIO_D3_PIN PA4 -#define SDIO_CK_PIN PA5 -#define SDIO_CMD_PIN PA7 - -#ifndef SDCARD_CONNECTION - #define SDCARD_CONNECTION ONBOARD -#endif - -#if SD_CONNECTION_IS(ONBOARD) - //#define SDIO_SUPPORT // Use SDIO for onboard SD - - #ifndef SDIO_SUPPORT - #define SOFTWARE_SPI // Use soft SPI for onboard SD - #define SDSS SDIO_D3_PIN // A4 - #define SCK_PIN SDIO_CK_PIN // A5 - #define MISO_PIN SDIO_D0_PIN // A6 - #define MOSI_PIN SDIO_CMD_PIN // A7 - #endif -#endif - -// -// WIFI -// - -/** - * ----- - * TX | 1 2 | GND Enable PG1 // Must be high for module to run - * Enable | 3 4 | GPIO2 Reset PG0 // active low, probably OK to leave floating - * Reset | 5 6 | GPIO0 GPIO2 PF15 // must be high (ESP3D software configures this with a pullup so OK to leave as floating) - * 3.3V | 7 8 | RX GPIO0 PF14 // Leave as unused (ESP3D software configures this with a pullup so OK to leave as floating) - * ----- - * W1 - */ -#define ESP_WIFI_MODULE_COM 6 // Must also set either SERIAL_PORT or SERIAL_PORT_2 to this -#define ESP_WIFI_MODULE_BAUDRATE BAUDRATE // Must use same BAUDRATE as SERIAL_PORT & SERIAL_PORT_2 -#define ESP_WIFI_MODULE_RESET_PIN PE5 -#define ESP_WIFI_MODULE_ENABLE_PIN PE4 -#define ESP_WIFI_MODULE_GPIO0_PIN ESP_WIFI_MODULE_ENABLE_PIN -//#define ESP_WIFI_MODULE_GPIO2_PIN PF15 - -#endif diff --git a/Marlin/src/pins/stm32f4/pins_LANGGO407_V1.h b/Marlin/src/pins/stm32f4/pins_LANGGO407_V1.h new file mode 100644 index 0000000000..dc5bfe53e2 --- /dev/null +++ b/Marlin/src/pins/stm32f4/pins_LANGGO407_V1.h @@ -0,0 +1,292 @@ +/** + * Marlin 3D Printer Firmware + * Copyright (c) 2025 MarlinFirmware [https://github.com/MarlinFirmware/Marlin] + * + * Based on Sprinter and grbl. + * Copyright (c) 2011 Camiel Gubbels / Erik van der Zalm + * + * This program is free software: you can redistribute it and/or modify + * it under the terms of the GNU General Public License as published by + * the Free Software Foundation, either version 3 of the License, or + * (at your option) any later version. + * + * This program is distributed in the hope that it will be useful, + * but WITHOUT ANY WARRANTY; without even the implied warranty of + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the + * GNU General Public License for more details. + * + * You should have received a copy of the GNU General Public License + * along with this program. If not, see . + * + */ +#pragma once + +/** + * STM32F407VET6 with RAMPS-like shield + * 'Black' STM32F407VET6 board - https://www.stm32duino.com/viewtopic.php?t=485 + * Shield - https://github.com/jmz52/Hardware + */ +#include "env_validate.h" + +#if NOT_TARGET(STM32F4, STM32F4xx) + #error "Oops! Select an STM32F4 board in 'Tools > Board.'" +#elif HOTENDS > 2 || E_STEPPERS > 2 + #error "Black STM32F4VET6 supports up to 2 hotends / E-steppers." +#endif + +#ifndef BOARD_INFO_NAME + #define BOARD_INFO_NAME "BC.DZ.PC000007" + + #if ENABLED(ST32_SHIP) + #define CHIP_NAME "(S)" + #elif ENABLED(USE_GD32) + #define CHIP_NAME "(G)" + #endif + + #if ENABLED(R3_PRO) + #define ROBOT_NAME "-MAX" + #elif ENABLED(R4_PRO) + #define ROBOT_NAME "-PRO" + #else + #define ROBOT_NAME "" + #endif + + #if ENABLED(USE_TI_CHOKE) + #define MATERIALS_NAME "-Ti" + #else + #define MATERIALS_NAME "" + #endif +#endif + +#define DEFAULT_MACHINE_NAME "HP STM32F407VE" + +//#define I2C_EEPROM +#define W25QXX_SPI_EEPROM + +// +// Servos +// +//#define SERVO0_PIN PC6 +//#define SERVO1_PIN PC7 + +#ifdef HALL_PLATE + #define CALIB_PIN PB1 +#else + #define SERVO0_PIN PB1 +#endif + +// +// Z Probe must be this pins +// +#define Z_MIN_PROBE_PIN PB0 + +// +// Limit Switches +// +#if ENABLED(QUICK_PRINT) + #define X_MAX_PIN PF12 +#else + #define X_MIN_PIN PF12 + //#define X_MAX_PIN PA15 +#endif + +#define Y_MIN_PIN PF14 +//#define Y_MAX_PIN PD12 + +#if ENABLED(Z_MIN_PROBE_USES_Z_MIN_ENDSTOP_PIN) + #define Z_MIN_PIN PB1 +#else + #define Z_MIN_PIN PG0 +#endif + +#define Z_MIN_PROBE_PIN PG0 + +//#define Z_MIN_PIN PG0 +//#define Z_MAX_PIN PD15 +#if ENABLED(R_B_LED) + #define RB_LED_PIN PB9 +#endif + +// +// Steppers +// +#define X_ENABLE_PIN PD3 +#define X_STEP_PIN PD2 +#define X_DIR_PIN PC10 + +#define Y_ENABLE_PIN PC12 +#define Y_STEP_PIN PA10 +#define Y_DIR_PIN PA9 + +#define Z_ENABLE_PIN PC9 +#define Z_STEP_PIN PG8 +#define Z_DIR_PIN PG7 + +#define E0_ENABLE_PIN PD13 +#define E0_STEP_PIN PD12 +#define E0_DIR_PIN PD11 + +#define E1_ENABLE_PIN PG5 +#define E1_STEP_PIN PG4 +#define E1_DIR_PIN PG3 + +#if HAS_TMC_UART + // + // TMC220x stepper drivers + // + #define X_SERIAL_TX_PIN PD6 + #define Y_SERIAL_TX_PIN PC11 + #define Z_SERIAL_TX_PIN PA8 + #define E0_SERIAL_TX_PIN PG2 + #define E1_SERIAL_TX_PIN PG6 + + // Reduce baud rate to improve software serial reliability + #ifndef TMC_BAUD_RATE + #define TMC_BAUD_RATE 19200 + #endif +#endif + +// +// Filament Sensor +// +#ifndef FIL_RUNOUT_PIN + #define FIL_RUNOUT_PIN PG1 +#endif + +// +// Power Supply Control +// +#ifndef PS_ON_PIN + #define PS_ON_PIN PA1 +#endif + +// +// Temperature Sensors +// +#define TEMP_0_PIN PC4 // T0 +#define TEMP_BED_PIN PC5 // TB + +#ifndef TEMP_CHAMBER_PIN + #define TEMP_CHAMBER_PIN PC3 // TC +#endif + +// +// Heaters / Fans +// +#define HEATER_0_PIN PC6 +#define HEATER_BED_PIN PC8 + +#define FAN_PIN PC7 + +#define STEP_TIMER_NUM 5 // Timer Index for Stepper +#define TEMP_TIMER_NUM 14 // Timer Index for Temperature + +// +// USB connect control +// +#define USB_CONNECT_PIN PA15 +#define USB_CONNECT_INVERTING false + +#define SD_DETECT_PIN PE3 +#define BEEPER_PIN PG11 +#define LED_PIN PG9 + +#define NEOPIXEL_PIN PB9 + +// +// Misc. Functions +// +//#define KILL_PIN PB1 + +// +// LCD / Controller +// +//#define FSMC_GRAPHICAL_TFT // Use offical TFT LCD Controller? + +/** + * Note: Alfawise screens use various TFT controllers. Supported screens + * are based on the ILI9341, ILI9328 and ST7798V. Define init sequences for + * other screens in u8g_dev_tft_320x240_upscale_from_128x64.cpp + * + * If the screen stays white, disable 'LCD_RESET_PIN' to let the bootloader + * init the screen. + * + * Setting an 'LCD_RESET_PIN' may cause a flicker when entering the LCD menu + * because Marlin uses the reset as a failsafe to revive a glitchy LCD. + */ + +#define LCD_BACKLIGHT_PIN PG10 +#define FSMC_CS_PIN PD7 // FSMC_NE1 +#define FSMC_RS_PIN PE2 // A23 Register. Only one address needed +#define TFT_CS_PIN FSMC_CS_PIN +#define TFT_RS_PIN FSMC_RS_PIN +#define TFT_BACKLIGHT_PIN LCD_BACKLIGHT_PIN + +#define LCD_USE_DMA_FSMC // Use DMA transfers to send data to the TFT +#define FSMC_DMA_DEV DMA1 +#define FSMC_DMA_CHANNEL DMA_CH4 // Fixme in F4 + +#if ENABLED(TOUCH_SCREEN) + #define TOUCH_CS_PIN PB6 + #define TOUCH_SCK_PIN PB3 + #define TOUCH_MOSI_PIN PB5 + #define TOUCH_MISO_PIN PB4 + #define TOUCH_INT_PIN PB7 // PenIRQ coming from XPT2046 +#endif + +#define DOGLCD_MOSI -1 // Prevent auto-define by Conditionals_post.h +#define DOGLCD_SCK -1 + +//#define LCD_PINS_RS PE15 +//#define LCD_PINS_ENABLE PD8 +//#define LCD_PINS_D4 PE10 +//#define LCD_PINS_D5 PE12 +//#define LCD_PINS_D6 PD1 +//#define LCD_PINS_D7 PE8 +//#define BTN_ENC PD9 +//#define BTN_EN1 PD4 +//#define BTN_EN2 PD13 + +// +// Onboard SD support +// +#define SDIO_D0_PIN PA6 +#define SDIO_D1_PIN PC9 +#define SDIO_D2_PIN PC10 +#define SDIO_D3_PIN PA4 +#define SDIO_CK_PIN PA5 +#define SDIO_CMD_PIN PA7 + +#ifndef SDCARD_CONNECTION + #define SDCARD_CONNECTION ONBOARD +#endif +#if SD_CONNECTION_IS(ONBOARD) + //#define ONBOARD_SDIO // Use SDIO for onboard SD + #if DISABLED(ONBOARD_SDIO) + #define SOFTWARE_SPI // Use soft SPI for onboard SD + #define SD_SS_PIN SDIO_D3_PIN // A4 + #define SD_SCK_PIN SDIO_CK_PIN // A5 + #define SD_MISO_PIN SDIO_D0_PIN // A6 + #define SD_MOSI_PIN SDIO_CMD_PIN // A7 + #endif +#endif + +// +// WIFI +// + +/** + * ----- + * TX | 1 2 | GND Enable PG1 // Must be high for module to run + * Enable | 3 4 | GPIO2 Reset PG0 // active low, probably OK to leave floating + * Reset | 5 6 | GPIO0 GPIO2 PF15 // must be high (ESP3D software configures this with a pullup so OK to leave as floating) + * 3.3V | 7 8 | RX GPIO0 PF14 // Leave as unused (ESP3D software configures this with a pullup so OK to leave as floating) + * ----- + * W1 + */ +#define ESP_WIFI_MODULE_COM 6 // Must also set either SERIAL_PORT or SERIAL_PORT_2 to this +#define ESP_WIFI_MODULE_BAUDRATE BAUDRATE // Must use same BAUDRATE as SERIAL_PORT & SERIAL_PORT_2 +#define ESP_WIFI_MODULE_RESET_PIN PE5 +#define ESP_WIFI_MODULE_ENABLE_PIN PE4 +#define ESP_WIFI_MODULE_GPIO0_PIN ESP_WIFI_MODULE_ENABLE_PIN +//#define ESP_WIFI_MODULE_GPIO2_PIN PF15 diff --git a/Marlin/src/pins/stm32f4/pins_LANGGO407_V2.h b/Marlin/src/pins/stm32f4/pins_LANGGO407_V2.h new file mode 100644 index 0000000000..8ba8175b48 --- /dev/null +++ b/Marlin/src/pins/stm32f4/pins_LANGGO407_V2.h @@ -0,0 +1,299 @@ +/** + * Marlin 3D Printer Firmware + * Copyright (c) 2025 MarlinFirmware [https://github.com/MarlinFirmware/Marlin] + * + * Based on Sprinter and grbl. + * Copyright (c) 2011 Camiel Gubbels / Erik van der Zalm + * + * This program is free software: you can redistribute it and/or modify + * it under the terms of the GNU General Public License as published by + * the Free Software Foundation, either version 3 of the License, or + * (at your option) any later version. + * + * This program is distributed in the hope that it will be useful, + * but WITHOUT ANY WARRANTY; without even the implied warranty of + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the + * GNU General Public License for more details. + * + * You should have received a copy of the GNU General Public License + * along with this program. If not, see . + * + */ +#pragma once + +/** + * STM32F407VET6 with RAMPS-like shield + * 'Black' STM32F407VET6 board - https://www.stm32duino.com/viewtopic.php?t=485 + * Shield - https://github.com/jmz52/Hardware + */ +#include "env_validate.h" + +#if NOT_TARGET(STM32F4, STM32F4xx) + #error "Oops! Select an STM32F4 board in 'Tools > Board.'" +#elif HOTENDS > 2 || E_STEPPERS > 2 + #error "Black STM32F4VET6 supports up to 2 hotends / E-steppers." +#endif + +#ifndef BOARD_INFO_NAME + #define BOARD_INFO_NAME "F4Z_MC" + + #define CHIP_NAME "" + + #if ENABLED(R3_PRO) + #define ROBOT_NAME "-MAX" + #elif ENABLED(R4_PRO) + #define ROBOT_NAME "-PRO" + #else + #define ROBOT_NAME "" + #endif + + #if ENABLED(USE_TI_CHOKE) + #define MATERIALS_NAME "-Ti" + #define MATERIALS_NAME_TI "-Ti" + #else + #define MATERIALS_NAME "" + #define MATERIALS_NAME_TI "-Ti" + #endif +#endif + +#define DEFAULT_MACHINE_NAME "HP STM32F407VE" + +//#define I2C_EEPROM +#define W25QXX_SPI_EEPROM + +// +// Servos +// +#ifdef BLTOUCH + #define SERVO0_PIN PA4 // After ver3.0 + //#define SERVO0_PIN PC6 + //#define SERVO1_PIN PC7 +#else + //#define CALIB_PIN PD6 // Before ver3.0 + #define CALIB_PIN PA4 // After ver3.0 +#endif + +// +// Z Probe must be this pin +// +//#define Z_MIN_PROBE_PIN PD3 // Before ver3.0 +#define Z_MIN_PROBE_PIN PD6 // After ver3.0 + +// +// Limit Switches +// +#if ENABLED(QUICK_PRINT) + #define X_MAX_PIN PF14 +#else + #define X_MIN_PIN PF14 + //#define X_MAX_PIN PA15 +#endif + +#define Y_MIN_PIN PF13 +//#define Y_MAX_PIN PD12 + +#ifdef Z_MIN_PROBE_USES_Z_MIN_ENDSTOP_PIN + #define Z_MIN_PIN PD3 +#else + #define Z_MIN_PIN PF11 + #if ENABLED(Z_MULTI_ENDSTOPS) + #define Z2_MIN_PIN PD3 // after ver3.0 + #endif +#endif +//#define Z_MIN_PIN PG0 +//#define Z_MAX_PIN PD15 + +//#define LED_RED_PIN PG9 +#if ENABLED(R_B_LED) + #define RB_LED_PIN PD7 +#endif + +#if ENABLED(WS2812_LED) + #define WS2812_LED_PIN PD7 +#endif + +#define CAP_TOUCH_PIN PA0 + +// +// Steppers +// +#define X_ENABLE_PIN PE4 +#define X_STEP_PIN PE3 +#define X_DIR_PIN PE2 + +#define Y_ENABLE_PIN PF0 +#define Y_STEP_PIN PC13 +#define Y_DIR_PIN PE6 + +#define Z_ENABLE_PIN PF4 +#define Z_STEP_PIN PF3 +#define Z_DIR_PIN PF2 + +#define Z2_ENABLE_PIN PC2 +#define Z2_STEP_PIN PC1 +#define Z2_DIR_PIN PC0 + +#define E0_ENABLE_PIN PE0 +#define E0_STEP_PIN PB7 +#define E0_DIR_PIN PB6 + +#define E1_ENABLE_PIN PC5 +#define E1_STEP_PIN PC4 +#define E1_DIR_PIN PA1 + +#if HAS_TMC_UART + // + // TMC220x stepper drivers + // + #define X_SERIAL_TX_PIN PE5 + #define Y_SERIAL_TX_PIN PF1 + #define Z_SERIAL_TX_PIN PF9 // 此处应是PF10,但表与PF9反了 + #define Z2_SERIAL_TX_PIN PC3 + #define E0_SERIAL_TX_PIN PE1 + #define E1_SERIAL_TX_PIN PB0 + + // Reduce baud rate to improve software serial reliability + #ifndef TMC_BAUD_RATE + #define TMC_BAUD_RATE 19200 + #endif +#endif + +// +// Filament Sensor +// +#ifndef FIL_RUNOUT_PIN + #define FIL_RUNOUT_PIN PG10 +#endif + +// +// Power Supply Control +// +#ifndef PS_ON_PIN + #define PS_ON_PIN PG8 +#endif + +// +// Temperature Sensors +// +#define TEMP_0_PIN PF5 // T0 +#define TEMP_1_PIN PB1 // T0 +#define TEMP_BED_PIN PF6 // TB + +#ifndef TEMP_CHAMBER_PIN + //#define TEMP_CHAMBER_PIN PC3 // TC +#endif + +// +// Heaters / Fans +// +#define HEATER_0_PIN PD11 +#define HEATER_1_PIN PC7 +#define HEATER_BED_PIN PD13 + +#define FAN0_PIN PB9 +//#define FAN1_PIN PB8 + +#define STEP_TIMER_NUM 5 // Timer Index for Stepper +#define TEMP_TIMER_NUM 14 // Timer Index for Temperature + +// +// USB connect control +// +#define USB_CONNECT_PIN PG11 +#define USB_CONNECT_INVERTING false + +#define SD_DETECT_PIN PA8 +#define BEEPER_PIN PB12 +#define LED_PIN PB2 + +//#define NEOPIXEL_PIN PD7 + +/** + * Note: Alfawise screens use various TFT controllers. Supported screens + * are based on the ILI9341, ILI9328 and ST7798V. Define init sequences for + * other screens in u8g_dev_tft_320x240_upscale_from_128x64.cpp + * + * If the screen stays white, disable 'LCD_RESET_PIN' to let the bootloader + * init the screen. + * + * Setting an 'LCD_RESET_PIN' may cause a flicker when entering the LCD menu + * because Marlin uses the reset as a failsafe to revive a glitchy LCD. + */ + +#define LCD_BACKLIGHT_PIN PG1 +#define FSMC_CS_PIN PG12 // FSMC_NE1 +#define FSMC_RS_PIN PF12 // A23 Register. Only one address needed +#define TFT_CS_PIN FSMC_CS_PIN +#define TFT_RS_PIN FSMC_RS_PIN +#define TFT_BACKLIGHT_PIN LCD_BACKLIGHT_PIN + +#define LCD_USE_DMA_FSMC // Use DMA transfers to send data to the TFT +#define FSMC_DMA_DEV DMA1 +#define FSMC_DMA_CHANNEL DMA_CH4 // Fixme in F4 + +#if ENABLED(TOUCH_SCREEN) + #define TOUCH_CS_PIN PG0 + #define TOUCH_SCK_PIN PA5 + #define TOUCH_MOSI_PIN PA7 + #define TOUCH_MISO_PIN PA6 + #define TOUCH_INT_PIN PF15 // PenIRQ coming from XPT2046 触发 +#endif + +#define DOGLCD_MOSI -1 // Prevent auto-define by Conditionals_post.h +#define DOGLCD_SCK -1 + +// +// OCP +// +#define MOTORS_OCP_PIN PF7 +#define BED_OCP_PIN PF8 +#define HOTEND_OCP_PIN PF10 // 应该为PF9,但表PF9、PF10的值反了,只能用这个 +#define SHUTDOWN_HOTEND_PIN PD12 +#define SHUTDOWN_BED_PIN PG7 + +// +// Onboard SD support +// +#define SDIO_D0_PIN PC8 +#define SDIO_D1_PIN PC9 +#define SDIO_D2_PIN PC10 +#define SDIO_D3_PIN PC11 +#define SDIO_CK_PIN PC12 +#define SDIO_CMD_PIN PD2 + +#ifndef SDCARD_CONNECTION + #define SDCARD_CONNECTION ONBOARD +#endif + +#if SD_CONNECTION_IS(ONBOARD) + //#define ONBOARD_SDIO // Use SDIO for onboard SD + #if DISABLED(ONBOARD_SDIO) + #define SOFTWARE_SPI // Use soft SPI for onboard SD + #define SD_SS_PIN SDIO_D3_PIN // A4 + #define SD_SCK_PIN SDIO_CK_PIN // A5 + #define SD_MISO_PIN SDIO_D0_PIN // A6 + #define SD_MOSI_PIN SDIO_CMD_PIN // A7 + #endif +#endif + +// +// WIFI +// + +/** + * ----- + * TX | 1 2 | GND Enable PG1 // Must be high for module to run + * Enable | 3 4 | GPIO2 Reset PG0 // active low, probably OK to leave floating + * Reset | 5 6 | GPIO0 GPIO2 PF15 // must be high (ESP3D software configures this with a pullup so OK to leave as floating) + * 3.3V | 7 8 | RX GPIO0 PF14 // Leave as unused (ESP3D software configures this with a pullup so OK to leave as floating) + * ----- + * W1 + */ +#define ESP_WIFI_MODULE_COM 6 // Must also set either SERIAL_PORT or SERIAL_PORT_2 to this +#define ESP_WIFI_MODULE_BAUDRATE BAUDRATE // Must use same BAUDRATE as SERIAL_PORT & SERIAL_PORT_2 +#define ESP_WIFI_MODULE_RESET_PIN PG2 +#define ESP_WIFI_MODULE_ENABLE_PIN PG3 +#define ESP_WIFI_MODULE_GPIO0_PIN PG5 +#define ESP_WIFI_MODULE_GPIO2_PIN PG4 + +//#define SHUTTER_CTRL_PIN PB13 diff --git a/Marlin/src/pins/teensy2/pins_PRINTRBOARD.h b/Marlin/src/pins/teensy2/pins_PRINTRBOARD.h index 653892f2a9..91b48aadba 100644 --- a/Marlin/src/pins/teensy2/pins_PRINTRBOARD.h +++ b/Marlin/src/pins/teensy2/pins_PRINTRBOARD.h @@ -172,6 +172,6 @@ #endif // HAS_WIRED_LCD && IS_NEWPANEL -#ifndef SDSS +#ifndef SD_SS_PIN #define SD_SS_PIN 26 // B6 SDCS #endif diff --git a/Marlin/src/pins/teensy2/pins_PRINTRBOARD_REVF.h b/Marlin/src/pins/teensy2/pins_PRINTRBOARD_REVF.h index 0c4a8028c8..3880431f02 100644 --- a/Marlin/src/pins/teensy2/pins_PRINTRBOARD_REVF.h +++ b/Marlin/src/pins/teensy2/pins_PRINTRBOARD_REVF.h @@ -271,7 +271,7 @@ // Misc. Functions // // PIN FASTIO PIN# ATUSB90 PIN# Teensy2.0++ PIN# Printrboard RevF Conn. -#ifndef SDSS +#ifndef SD_SS_PIN #define SD_SS_PIN 20 // 10 B0 #endif From 0502eaf1e1f236f951100a10812b28ab906f2e05 Mon Sep 17 00:00:00 2001 From: Scott Lahteine Date: Mon, 17 Nov 2025 18:34:25 -0600 Subject: [PATCH 7/7] fix some pins --- Marlin/src/pins/stm32f4/pins_LANGGO407_V1.h | 31 ++++++------------- Marlin/src/pins/stm32f4/pins_LANGGO407_V2.h | 33 +++++++-------------- 2 files changed, 19 insertions(+), 45 deletions(-) diff --git a/Marlin/src/pins/stm32f4/pins_LANGGO407_V1.h b/Marlin/src/pins/stm32f4/pins_LANGGO407_V1.h index dc5bfe53e2..b98dd4c408 100644 --- a/Marlin/src/pins/stm32f4/pins_LANGGO407_V1.h +++ b/Marlin/src/pins/stm32f4/pins_LANGGO407_V1.h @@ -83,29 +83,16 @@ // // Limit Switches // -#if ENABLED(QUICK_PRINT) - #define X_MAX_PIN PF12 -#else - #define X_MIN_PIN PF12 - //#define X_MAX_PIN PA15 -#endif - -#define Y_MIN_PIN PF14 -//#define Y_MAX_PIN PD12 - -#if ENABLED(Z_MIN_PROBE_USES_Z_MIN_ENDSTOP_PIN) - #define Z_MIN_PIN PB1 -#else - #define Z_MIN_PIN PG0 -#endif +#define X_STOP_PIN PF12 +//#define X_STOP_PIN PA15 +#define Y_STOP_PIN PF14 +//#define Y_STOP_PIN PD12 +#define Z_STOP_PIN PB1 +//#define Z_STOP_PIN PD15 #define Z_MIN_PROBE_PIN PG0 -//#define Z_MIN_PIN PG0 -//#define Z_MAX_PIN PD15 -#if ENABLED(R_B_LED) - #define RB_LED_PIN PB9 -#endif +#define RB_LED_PIN PB9 // Red-Blue LED // // Steppers @@ -178,8 +165,8 @@ #define FAN_PIN PC7 -#define STEP_TIMER_NUM 5 // Timer Index for Stepper -#define TEMP_TIMER_NUM 14 // Timer Index for Temperature +#define STEP_TIMER_NUM 5 // Stepper Timer Index +#define TEMP_TIMER_NUM 14 // Temperature Timer Index // // USB connect control diff --git a/Marlin/src/pins/stm32f4/pins_LANGGO407_V2.h b/Marlin/src/pins/stm32f4/pins_LANGGO407_V2.h index 8ba8175b48..75d5a9b65d 100644 --- a/Marlin/src/pins/stm32f4/pins_LANGGO407_V2.h +++ b/Marlin/src/pins/stm32f4/pins_LANGGO407_V2.h @@ -82,31 +82,18 @@ // // Limit Switches // -#if ENABLED(QUICK_PRINT) - #define X_MAX_PIN PF14 -#else - #define X_MIN_PIN PF14 - //#define X_MAX_PIN PA15 -#endif +#define X_STOP_PIN PF14 +//#define X_STOP_PIN PA15 +#define Y_STOP_PIN PF13 +//#define Y_STOP_PIN PD12 +#define Z_STOP_PIN PG0 +//#define Z_STOP_PIN PD15 +#define E0_STOP_PIN PD3 // after ver3.0 -#define Y_MIN_PIN PF13 -//#define Y_MAX_PIN PD12 - -#ifdef Z_MIN_PROBE_USES_Z_MIN_ENDSTOP_PIN - #define Z_MIN_PIN PD3 -#else - #define Z_MIN_PIN PF11 - #if ENABLED(Z_MULTI_ENDSTOPS) - #define Z2_MIN_PIN PD3 // after ver3.0 - #endif -#endif -//#define Z_MIN_PIN PG0 -//#define Z_MAX_PIN PD15 +#define Z_MIN_PROBE_PIN PF11 //#define LED_RED_PIN PG9 -#if ENABLED(R_B_LED) - #define RB_LED_PIN PD7 -#endif +#define RB_LED_PIN PD7 // Red-Blue LED #if ENABLED(WS2812_LED) #define WS2812_LED_PIN PD7 @@ -176,7 +163,7 @@ // Temperature Sensors // #define TEMP_0_PIN PF5 // T0 -#define TEMP_1_PIN PB1 // T0 +#define TEMP_1_PIN PB1 // T1 #define TEMP_BED_PIN PF6 // TB #ifndef TEMP_CHAMBER_PIN