mirror of
https://github.com/Motorhead1991/qemu.git
synced 2025-07-27 04:13:53 -06:00
migration/multifd: Device state transfer support - send side
A new function multifd_queue_device_state() is provided for device to queue its state for transmission via a multifd channel. Reviewed-by: Peter Xu <peterx@redhat.com> Signed-off-by: Maciej S. Szmigiero <maciej.szmigiero@oracle.com> Link: https://lore.kernel.org/qemu-devel/ebd55768d3e5fecb5eb3f197bad9c0c07e5bc084.1741124640.git.maciej.szmigiero@oracle.com Signed-off-by: Cédric Le Goater <clg@redhat.com>
This commit is contained in:
parent
7ecfab1ddd
commit
0525b91a0b
6 changed files with 197 additions and 16 deletions
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@ -118,4 +118,8 @@ bool migrate_is_uri(const char *uri);
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bool migrate_uri_parse(const char *uri, MigrationChannel **channel,
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Error **errp);
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/* migration/multifd-device-state.c */
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bool multifd_queue_device_state(char *idstr, uint32_t instance_id,
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char *data, size_t len);
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#endif
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@ -25,6 +25,7 @@ system_ss.add(files(
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'migration-hmp-cmds.c',
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'migration.c',
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'multifd.c',
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'multifd-device-state.c',
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'multifd-nocomp.c',
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'multifd-zlib.c',
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'multifd-zero-page.c',
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118
migration/multifd-device-state.c
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118
migration/multifd-device-state.c
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@ -0,0 +1,118 @@
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/*
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* Multifd device state migration
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*
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* Copyright (C) 2024,2025 Oracle and/or its affiliates.
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*
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* This work is licensed under the terms of the GNU GPL, version 2 or later.
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* See the COPYING file in the top-level directory.
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*
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* SPDX-License-Identifier: GPL-2.0-or-later
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*/
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#include "qemu/osdep.h"
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#include "qemu/lockable.h"
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#include "migration/misc.h"
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#include "multifd.h"
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static struct {
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QemuMutex queue_job_mutex;
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MultiFDSendData *send_data;
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} *multifd_send_device_state;
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size_t multifd_device_state_payload_size(void)
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{
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return sizeof(MultiFDDeviceState_t);
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}
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void multifd_device_state_send_setup(void)
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{
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assert(!multifd_send_device_state);
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multifd_send_device_state = g_malloc(sizeof(*multifd_send_device_state));
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qemu_mutex_init(&multifd_send_device_state->queue_job_mutex);
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multifd_send_device_state->send_data = multifd_send_data_alloc();
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}
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void multifd_device_state_send_cleanup(void)
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{
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g_clear_pointer(&multifd_send_device_state->send_data,
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multifd_send_data_free);
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qemu_mutex_destroy(&multifd_send_device_state->queue_job_mutex);
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g_clear_pointer(&multifd_send_device_state, g_free);
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}
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void multifd_send_data_clear_device_state(MultiFDDeviceState_t *device_state)
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{
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g_clear_pointer(&device_state->idstr, g_free);
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g_clear_pointer(&device_state->buf, g_free);
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}
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static void multifd_device_state_fill_packet(MultiFDSendParams *p)
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{
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MultiFDDeviceState_t *device_state = &p->data->u.device_state;
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MultiFDPacketDeviceState_t *packet = p->packet_device_state;
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packet->hdr.flags = cpu_to_be32(p->flags);
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strncpy(packet->idstr, device_state->idstr, sizeof(packet->idstr) - 1);
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packet->idstr[sizeof(packet->idstr) - 1] = 0;
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packet->instance_id = cpu_to_be32(device_state->instance_id);
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packet->next_packet_size = cpu_to_be32(p->next_packet_size);
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}
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static void multifd_prepare_header_device_state(MultiFDSendParams *p)
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{
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p->iov[0].iov_len = sizeof(*p->packet_device_state);
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p->iov[0].iov_base = p->packet_device_state;
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p->iovs_num++;
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}
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void multifd_device_state_send_prepare(MultiFDSendParams *p)
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{
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MultiFDDeviceState_t *device_state = &p->data->u.device_state;
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assert(multifd_payload_device_state(p->data));
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multifd_prepare_header_device_state(p);
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assert(!(p->flags & MULTIFD_FLAG_SYNC));
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p->next_packet_size = device_state->buf_len;
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if (p->next_packet_size > 0) {
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p->iov[p->iovs_num].iov_base = device_state->buf;
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p->iov[p->iovs_num].iov_len = p->next_packet_size;
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p->iovs_num++;
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}
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p->flags |= MULTIFD_FLAG_NOCOMP | MULTIFD_FLAG_DEVICE_STATE;
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multifd_device_state_fill_packet(p);
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}
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bool multifd_queue_device_state(char *idstr, uint32_t instance_id,
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char *data, size_t len)
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{
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/* Device state submissions can come from multiple threads */
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QEMU_LOCK_GUARD(&multifd_send_device_state->queue_job_mutex);
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MultiFDDeviceState_t *device_state;
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assert(multifd_payload_empty(multifd_send_device_state->send_data));
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multifd_set_payload_type(multifd_send_device_state->send_data,
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MULTIFD_PAYLOAD_DEVICE_STATE);
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device_state = &multifd_send_device_state->send_data->u.device_state;
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device_state->idstr = g_strdup(idstr);
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device_state->instance_id = instance_id;
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device_state->buf = g_memdup2(data, len);
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device_state->buf_len = len;
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if (!multifd_send(&multifd_send_device_state->send_data)) {
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multifd_send_data_clear(multifd_send_device_state->send_data);
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return false;
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}
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return true;
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}
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@ -14,6 +14,7 @@
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#include "exec/ramblock.h"
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#include "exec/target_page.h"
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#include "file.h"
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#include "migration-stats.h"
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#include "multifd.h"
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#include "options.h"
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#include "qapi/error.h"
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@ -85,6 +86,13 @@ static void multifd_nocomp_send_cleanup(MultiFDSendParams *p, Error **errp)
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return;
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}
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static void multifd_ram_prepare_header(MultiFDSendParams *p)
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{
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p->iov[0].iov_len = p->packet_len;
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p->iov[0].iov_base = p->packet;
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p->iovs_num++;
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}
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static void multifd_send_prepare_iovs(MultiFDSendParams *p)
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{
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MultiFDPages_t *pages = &p->data->u.ram;
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@ -118,7 +126,7 @@ static int multifd_nocomp_send_prepare(MultiFDSendParams *p, Error **errp)
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* Only !zerocopy needs the header in IOV; zerocopy will
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* send it separately.
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*/
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multifd_send_prepare_header(p);
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multifd_ram_prepare_header(p);
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}
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multifd_send_prepare_iovs(p);
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@ -133,6 +141,8 @@ static int multifd_nocomp_send_prepare(MultiFDSendParams *p, Error **errp)
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if (ret != 0) {
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return -1;
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}
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stat64_add(&mig_stats.multifd_bytes, p->packet_len);
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}
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return 0;
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@ -431,7 +441,7 @@ int multifd_ram_flush_and_sync(QEMUFile *f)
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bool multifd_send_prepare_common(MultiFDSendParams *p)
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{
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MultiFDPages_t *pages = &p->data->u.ram;
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multifd_send_prepare_header(p);
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multifd_ram_prepare_header(p);
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multifd_send_zero_page_detect(p);
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if (!pages->normal_num) {
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@ -12,6 +12,7 @@
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#include "qemu/osdep.h"
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#include "qemu/cutils.h"
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#include "qemu/iov.h"
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#include "qemu/rcu.h"
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#include "exec/target_page.h"
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#include "system/system.h"
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#include "qemu/error-report.h"
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#include "qapi/error.h"
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#include "file.h"
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#include "migration/misc.h"
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#include "migration.h"
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#include "migration-stats.h"
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#include "savevm.h"
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* added to the union in the future are larger than
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* (MultiFDPages_t + flex array).
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*/
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max_payload_size = MAX(multifd_ram_payload_size(), sizeof(MultiFDPayload));
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max_payload_size = MAX(multifd_ram_payload_size(),
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multifd_device_state_payload_size());
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max_payload_size = MAX(max_payload_size, sizeof(MultiFDPayload));
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/*
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* Account for any holes the compiler might insert. We can't pack
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}
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switch (data->type) {
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case MULTIFD_PAYLOAD_DEVICE_STATE:
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multifd_send_data_clear_device_state(&data->u.device_state);
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break;
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default:
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/* Nothing to do */
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break;
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return msg.id;
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}
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/* Fills a RAM multifd packet */
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void multifd_send_fill_packet(MultiFDSendParams *p)
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{
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MultiFDPacket_t *packet = p->packet;
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p->name = NULL;
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g_clear_pointer(&p->data, multifd_send_data_free);
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p->packet_len = 0;
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g_clear_pointer(&p->packet_device_state, g_free);
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g_free(p->packet);
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p->packet = NULL;
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multifd_send_state->ops->send_cleanup(p, errp);
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{
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file_cleanup_outgoing_migration();
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socket_cleanup_outgoing_migration();
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multifd_device_state_send_cleanup();
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qemu_sem_destroy(&multifd_send_state->channels_created);
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qemu_sem_destroy(&multifd_send_state->channels_ready);
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qemu_mutex_destroy(&multifd_send_state->multifd_send_mutex);
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* qatomic_store_release() in multifd_send().
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*/
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if (qatomic_load_acquire(&p->pending_job)) {
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bool is_device_state = multifd_payload_device_state(p->data);
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size_t total_size;
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p->flags = 0;
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p->iovs_num = 0;
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assert(!multifd_payload_empty(p->data));
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if (is_device_state) {
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multifd_device_state_send_prepare(p);
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} else {
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ret = multifd_send_state->ops->send_prepare(p, &local_err);
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if (ret != 0) {
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break;
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}
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}
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/*
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* The packet header in the zerocopy RAM case is accounted for
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* in multifd_nocomp_send_prepare() - where it is actually
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* being sent.
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*/
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total_size = iov_size(p->iov, p->iovs_num);
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if (migrate_mapped_ram()) {
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assert(!is_device_state);
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ret = file_write_ramblock_iov(p->c, p->iov, p->iovs_num,
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&p->data->u.ram, &local_err);
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} else {
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break;
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}
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stat64_add(&mig_stats.multifd_bytes,
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(uint64_t)p->next_packet_size + p->packet_len);
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stat64_add(&mig_stats.multifd_bytes, total_size);
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p->next_packet_size = 0;
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multifd_send_data_clear(p->data);
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p->packet_len = sizeof(MultiFDPacket_t)
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+ sizeof(uint64_t) * page_count;
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p->packet = g_malloc0(p->packet_len);
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p->packet_device_state = g_malloc0(sizeof(*p->packet_device_state));
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p->packet_device_state->hdr.magic = cpu_to_be32(MULTIFD_MAGIC);
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p->packet_device_state->hdr.version = cpu_to_be32(MULTIFD_VERSION);
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}
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p->name = g_strdup_printf(MIGRATION_THREAD_SRC_MULTIFD, i);
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p->write_flags = 0;
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assert(p->iov);
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}
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multifd_device_state_send_setup();
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return true;
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err:
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@ -127,13 +127,22 @@ struct MultiFDRecvData {
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off_t file_offset;
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};
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typedef struct {
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char *idstr;
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uint32_t instance_id;
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char *buf;
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size_t buf_len;
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} MultiFDDeviceState_t;
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typedef enum {
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MULTIFD_PAYLOAD_NONE,
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MULTIFD_PAYLOAD_RAM,
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MULTIFD_PAYLOAD_DEVICE_STATE,
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} MultiFDPayloadType;
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typedef union MultiFDPayload {
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MultiFDPages_t ram;
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MultiFDDeviceState_t device_state;
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} MultiFDPayload;
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struct MultiFDSendData {
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return data->type == MULTIFD_PAYLOAD_NONE;
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}
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static inline bool multifd_payload_device_state(MultiFDSendData *data)
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{
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return data->type == MULTIFD_PAYLOAD_DEVICE_STATE;
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}
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static inline void multifd_set_payload_type(MultiFDSendData *data,
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MultiFDPayloadType type)
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{
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@ -198,8 +212,9 @@ typedef struct {
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/* thread local variables. No locking required */
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/* pointer to the packet */
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/* pointers to the possible packet types */
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MultiFDPacket_t *packet;
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MultiFDPacketDeviceState_t *packet_device_state;
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/* size of the next packet that contains pages */
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uint32_t next_packet_size;
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/* packets sent through this channel */
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void multifd_send_zero_page_detect(MultiFDSendParams *p);
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void multifd_recv_zero_page_process(MultiFDRecvParams *p);
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static inline void multifd_send_prepare_header(MultiFDSendParams *p)
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{
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p->iov[0].iov_len = p->packet_len;
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p->iov[0].iov_base = p->packet;
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p->iovs_num++;
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}
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void multifd_channel_connect(MultiFDSendParams *p, QIOChannel *ioc);
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bool multifd_send(MultiFDSendData **send_data);
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MultiFDSendData *multifd_send_data_alloc(void);
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@ -389,4 +397,14 @@ bool multifd_ram_sync_per_section(void);
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size_t multifd_ram_payload_size(void);
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void multifd_ram_fill_packet(MultiFDSendParams *p);
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int multifd_ram_unfill_packet(MultiFDRecvParams *p, Error **errp);
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size_t multifd_device_state_payload_size(void);
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void multifd_send_data_clear_device_state(MultiFDDeviceState_t *device_state);
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void multifd_device_state_send_setup(void);
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void multifd_device_state_send_cleanup(void);
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void multifd_device_state_send_prepare(MultiFDSendParams *p);
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#endif
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