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When the OS driver enables/disables the port, go ahead and set the port's link status to up/down in response to the change. This more closely emulates real hardware when the PHY for the port is brought up/down and the PHY negotiates carrier (link status) with link partner. In the case of qemu, the virtual rocker device can't really do link negotiation with the link partner as that requires signally over a physical medium (the wire), so just pretend the negotiation was successful and bring the link up when the port is enabled. Signed-off-by: Scott Feldman <sfeldma@gmail.com> Reviewed-by: Stefan Hajnoczi <stefanha@redhat.com> Message-id: 1433985681-56138-4-git-send-email-sfeldma@gmail.com Signed-off-by: Stefan Hajnoczi <stefanha@redhat.com>
251 lines
5.6 KiB
C
251 lines
5.6 KiB
C
/*
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* QEMU rocker switch emulation - front-panel ports
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*
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* Copyright (c) 2014 Scott Feldman <sfeldma@gmail.com>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*/
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#include "net/clients.h"
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#include "rocker.h"
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#include "rocker_hw.h"
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#include "rocker_fp.h"
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#include "rocker_world.h"
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enum duplex {
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DUPLEX_HALF = 0,
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DUPLEX_FULL
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};
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struct fp_port {
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Rocker *r;
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World *world;
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unsigned int index;
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char *name;
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uint32_t pport;
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bool enabled;
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uint32_t speed;
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uint8_t duplex;
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uint8_t autoneg;
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uint8_t learning;
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NICState *nic;
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NICConf conf;
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};
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char *fp_port_get_name(FpPort *port)
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{
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return port->name;
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}
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bool fp_port_get_link_up(FpPort *port)
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{
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return !qemu_get_queue(port->nic)->link_down;
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}
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void fp_port_get_macaddr(FpPort *port, MACAddr *macaddr)
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{
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memcpy(macaddr->a, port->conf.macaddr.a, sizeof(macaddr->a));
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}
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void fp_port_set_macaddr(FpPort *port, MACAddr *macaddr)
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{
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/* XXX TODO implement and test setting mac addr
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* XXX memcpy(port->conf.macaddr.a, macaddr.a, sizeof(port->conf.macaddr.a));
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*/
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}
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uint8_t fp_port_get_learning(FpPort *port)
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{
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return port->learning;
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}
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void fp_port_set_learning(FpPort *port, uint8_t learning)
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{
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port->learning = learning;
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}
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int fp_port_get_settings(FpPort *port, uint32_t *speed,
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uint8_t *duplex, uint8_t *autoneg)
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{
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*speed = port->speed;
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*duplex = port->duplex;
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*autoneg = port->autoneg;
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return ROCKER_OK;
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}
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int fp_port_set_settings(FpPort *port, uint32_t speed,
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uint8_t duplex, uint8_t autoneg)
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{
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/* XXX validate inputs */
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port->speed = speed;
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port->duplex = duplex;
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port->autoneg = autoneg;
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return ROCKER_OK;
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}
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bool fp_port_from_pport(uint32_t pport, uint32_t *port)
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{
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if (pport < 1 || pport > ROCKER_FP_PORTS_MAX) {
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return false;
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}
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*port = pport - 1;
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return true;
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}
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int fp_port_eg(FpPort *port, const struct iovec *iov, int iovcnt)
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{
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NetClientState *nc = qemu_get_queue(port->nic);
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if (port->enabled) {
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qemu_sendv_packet(nc, iov, iovcnt);
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}
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return ROCKER_OK;
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}
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static int fp_port_can_receive(NetClientState *nc)
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{
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FpPort *port = qemu_get_nic_opaque(nc);
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return port->enabled;
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}
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static ssize_t fp_port_receive_iov(NetClientState *nc, const struct iovec *iov,
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int iovcnt)
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{
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FpPort *port = qemu_get_nic_opaque(nc);
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return world_ingress(port->world, port->pport, iov, iovcnt);
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}
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static ssize_t fp_port_receive(NetClientState *nc, const uint8_t *buf,
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size_t size)
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{
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const struct iovec iov = {
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.iov_base = (uint8_t *)buf,
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.iov_len = size
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};
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return fp_port_receive_iov(nc, &iov, 1);
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}
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static void fp_port_cleanup(NetClientState *nc)
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{
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}
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static void fp_port_set_link_status(NetClientState *nc)
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{
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FpPort *port = qemu_get_nic_opaque(nc);
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rocker_event_link_changed(port->r, port->pport, !nc->link_down);
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}
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static NetClientInfo fp_port_info = {
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.type = NET_CLIENT_OPTIONS_KIND_NIC,
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.size = sizeof(NICState),
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.can_receive = fp_port_can_receive,
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.receive = fp_port_receive,
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.receive_iov = fp_port_receive_iov,
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.cleanup = fp_port_cleanup,
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.link_status_changed = fp_port_set_link_status,
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};
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World *fp_port_get_world(FpPort *port)
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{
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return port->world;
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}
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void fp_port_set_world(FpPort *port, World *world)
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{
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DPRINTF("port %d setting world \"%s\"\n", port->index, world_name(world));
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port->world = world;
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}
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bool fp_port_enabled(FpPort *port)
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{
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return port->enabled;
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}
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static void fp_port_set_link(FpPort *port, bool up)
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{
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NetClientState *nc = qemu_get_queue(port->nic);
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if (up == nc->link_down) {
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nc->link_down = !up;
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nc->info->link_status_changed(nc);
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}
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}
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void fp_port_enable(FpPort *port)
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{
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fp_port_set_link(port, true);
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port->enabled = true;
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DPRINTF("port %d enabled\n", port->index);
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}
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void fp_port_disable(FpPort *port)
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{
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port->enabled = false;
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fp_port_set_link(port, false);
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DPRINTF("port %d disabled\n", port->index);
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}
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FpPort *fp_port_alloc(Rocker *r, char *sw_name,
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MACAddr *start_mac, unsigned int index,
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NICPeers *peers)
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{
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FpPort *port = g_malloc0(sizeof(FpPort));
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if (!port) {
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return NULL;
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}
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port->r = r;
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port->index = index;
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port->pport = index + 1;
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/* front-panel switch port names are 1-based */
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port->name = g_strdup_printf("%sp%d", sw_name, port->pport);
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memcpy(port->conf.macaddr.a, start_mac, sizeof(port->conf.macaddr.a));
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port->conf.macaddr.a[5] += index;
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port->conf.bootindex = -1;
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port->conf.peers = *peers;
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port->nic = qemu_new_nic(&fp_port_info, &port->conf,
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sw_name, NULL, port);
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qemu_format_nic_info_str(qemu_get_queue(port->nic),
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port->conf.macaddr.a);
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fp_port_reset(port);
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return port;
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}
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void fp_port_free(FpPort *port)
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{
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qemu_del_nic(port->nic);
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g_free(port->name);
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g_free(port);
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}
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void fp_port_reset(FpPort *port)
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{
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fp_port_disable(port);
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port->speed = 10000; /* 10Gbps */
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port->duplex = DUPLEX_FULL;
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port->autoneg = 0;
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}
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