failover: should_be_hidden() should take a bool
[qemu/ar7.git] / hw / net / virtio-net.c
blob9f12d33da01487f7d15762ed13ae14ef561fc2bb
1 /*
2 * Virtio Network Device
4 * Copyright IBM, Corp. 2007
6 * Authors:
7 * Anthony Liguori <aliguori@us.ibm.com>
9 * This work is licensed under the terms of the GNU GPL, version 2. See
10 * the COPYING file in the top-level directory.
14 #include "qemu/osdep.h"
15 #include "qemu/atomic.h"
16 #include "qemu/iov.h"
17 #include "qemu/main-loop.h"
18 #include "qemu/module.h"
19 #include "hw/virtio/virtio.h"
20 #include "net/net.h"
21 #include "net/checksum.h"
22 #include "net/tap.h"
23 #include "qemu/error-report.h"
24 #include "qemu/timer.h"
25 #include "qemu/option.h"
26 #include "qemu/option_int.h"
27 #include "qemu/config-file.h"
28 #include "qapi/qmp/qdict.h"
29 #include "hw/virtio/virtio-net.h"
30 #include "net/vhost_net.h"
31 #include "net/announce.h"
32 #include "hw/virtio/virtio-bus.h"
33 #include "qapi/error.h"
34 #include "qapi/qapi-events-net.h"
35 #include "hw/qdev-properties.h"
36 #include "qapi/qapi-types-migration.h"
37 #include "qapi/qapi-events-migration.h"
38 #include "hw/virtio/virtio-access.h"
39 #include "migration/misc.h"
40 #include "standard-headers/linux/ethtool.h"
41 #include "sysemu/sysemu.h"
42 #include "trace.h"
43 #include "monitor/qdev.h"
44 #include "hw/pci/pci.h"
45 #include "net_rx_pkt.h"
46 #include "hw/virtio/vhost.h"
48 #define VIRTIO_NET_VM_VERSION 11
50 #define MAC_TABLE_ENTRIES 64
51 #define MAX_VLAN (1 << 12) /* Per 802.1Q definition */
53 /* previously fixed value */
54 #define VIRTIO_NET_RX_QUEUE_DEFAULT_SIZE 256
55 #define VIRTIO_NET_TX_QUEUE_DEFAULT_SIZE 256
57 /* for now, only allow larger queues; with virtio-1, guest can downsize */
58 #define VIRTIO_NET_RX_QUEUE_MIN_SIZE VIRTIO_NET_RX_QUEUE_DEFAULT_SIZE
59 #define VIRTIO_NET_TX_QUEUE_MIN_SIZE VIRTIO_NET_TX_QUEUE_DEFAULT_SIZE
61 #define VIRTIO_NET_IP4_ADDR_SIZE 8 /* ipv4 saddr + daddr */
63 #define VIRTIO_NET_TCP_FLAG 0x3F
64 #define VIRTIO_NET_TCP_HDR_LENGTH 0xF000
66 /* IPv4 max payload, 16 bits in the header */
67 #define VIRTIO_NET_MAX_IP4_PAYLOAD (65535 - sizeof(struct ip_header))
68 #define VIRTIO_NET_MAX_TCP_PAYLOAD 65535
70 /* header length value in ip header without option */
71 #define VIRTIO_NET_IP4_HEADER_LENGTH 5
73 #define VIRTIO_NET_IP6_ADDR_SIZE 32 /* ipv6 saddr + daddr */
74 #define VIRTIO_NET_MAX_IP6_PAYLOAD VIRTIO_NET_MAX_TCP_PAYLOAD
76 /* Purge coalesced packets timer interval, This value affects the performance
77 a lot, and should be tuned carefully, '300000'(300us) is the recommended
78 value to pass the WHQL test, '50000' can gain 2x netperf throughput with
79 tso/gso/gro 'off'. */
80 #define VIRTIO_NET_RSC_DEFAULT_INTERVAL 300000
82 #define VIRTIO_NET_RSS_SUPPORTED_HASHES (VIRTIO_NET_RSS_HASH_TYPE_IPv4 | \
83 VIRTIO_NET_RSS_HASH_TYPE_TCPv4 | \
84 VIRTIO_NET_RSS_HASH_TYPE_UDPv4 | \
85 VIRTIO_NET_RSS_HASH_TYPE_IPv6 | \
86 VIRTIO_NET_RSS_HASH_TYPE_TCPv6 | \
87 VIRTIO_NET_RSS_HASH_TYPE_UDPv6 | \
88 VIRTIO_NET_RSS_HASH_TYPE_IP_EX | \
89 VIRTIO_NET_RSS_HASH_TYPE_TCP_EX | \
90 VIRTIO_NET_RSS_HASH_TYPE_UDP_EX)
92 static VirtIOFeature feature_sizes[] = {
93 {.flags = 1ULL << VIRTIO_NET_F_MAC,
94 .end = endof(struct virtio_net_config, mac)},
95 {.flags = 1ULL << VIRTIO_NET_F_STATUS,
96 .end = endof(struct virtio_net_config, status)},
97 {.flags = 1ULL << VIRTIO_NET_F_MQ,
98 .end = endof(struct virtio_net_config, max_virtqueue_pairs)},
99 {.flags = 1ULL << VIRTIO_NET_F_MTU,
100 .end = endof(struct virtio_net_config, mtu)},
101 {.flags = 1ULL << VIRTIO_NET_F_SPEED_DUPLEX,
102 .end = endof(struct virtio_net_config, duplex)},
103 {.flags = (1ULL << VIRTIO_NET_F_RSS) | (1ULL << VIRTIO_NET_F_HASH_REPORT),
104 .end = endof(struct virtio_net_config, supported_hash_types)},
108 static VirtIONetQueue *virtio_net_get_subqueue(NetClientState *nc)
110 VirtIONet *n = qemu_get_nic_opaque(nc);
112 return &n->vqs[nc->queue_index];
115 static int vq2q(int queue_index)
117 return queue_index / 2;
120 /* TODO
121 * - we could suppress RX interrupt if we were so inclined.
124 static void virtio_net_get_config(VirtIODevice *vdev, uint8_t *config)
126 VirtIONet *n = VIRTIO_NET(vdev);
127 struct virtio_net_config netcfg;
128 NetClientState *nc = qemu_get_queue(n->nic);
130 int ret = 0;
131 memset(&netcfg, 0 , sizeof(struct virtio_net_config));
132 virtio_stw_p(vdev, &netcfg.status, n->status);
133 virtio_stw_p(vdev, &netcfg.max_virtqueue_pairs, n->max_queues);
134 virtio_stw_p(vdev, &netcfg.mtu, n->net_conf.mtu);
135 memcpy(netcfg.mac, n->mac, ETH_ALEN);
136 virtio_stl_p(vdev, &netcfg.speed, n->net_conf.speed);
137 netcfg.duplex = n->net_conf.duplex;
138 netcfg.rss_max_key_size = VIRTIO_NET_RSS_MAX_KEY_SIZE;
139 virtio_stw_p(vdev, &netcfg.rss_max_indirection_table_length,
140 virtio_host_has_feature(vdev, VIRTIO_NET_F_RSS) ?
141 VIRTIO_NET_RSS_MAX_TABLE_LEN : 1);
142 virtio_stl_p(vdev, &netcfg.supported_hash_types,
143 VIRTIO_NET_RSS_SUPPORTED_HASHES);
144 memcpy(config, &netcfg, n->config_size);
147 * Is this VDPA? No peer means not VDPA: there's no way to
148 * disconnect/reconnect a VDPA peer.
150 if (nc->peer && nc->peer->info->type == NET_CLIENT_DRIVER_VHOST_VDPA) {
151 ret = vhost_net_get_config(get_vhost_net(nc->peer), (uint8_t *)&netcfg,
152 n->config_size);
153 if (ret != -1) {
154 memcpy(config, &netcfg, n->config_size);
159 static void virtio_net_set_config(VirtIODevice *vdev, const uint8_t *config)
161 VirtIONet *n = VIRTIO_NET(vdev);
162 struct virtio_net_config netcfg = {};
163 NetClientState *nc = qemu_get_queue(n->nic);
165 memcpy(&netcfg, config, n->config_size);
167 if (!virtio_vdev_has_feature(vdev, VIRTIO_NET_F_CTRL_MAC_ADDR) &&
168 !virtio_vdev_has_feature(vdev, VIRTIO_F_VERSION_1) &&
169 memcmp(netcfg.mac, n->mac, ETH_ALEN)) {
170 memcpy(n->mac, netcfg.mac, ETH_ALEN);
171 qemu_format_nic_info_str(qemu_get_queue(n->nic), n->mac);
175 * Is this VDPA? No peer means not VDPA: there's no way to
176 * disconnect/reconnect a VDPA peer.
178 if (nc->peer && nc->peer->info->type == NET_CLIENT_DRIVER_VHOST_VDPA) {
179 vhost_net_set_config(get_vhost_net(nc->peer),
180 (uint8_t *)&netcfg, 0, n->config_size,
181 VHOST_SET_CONFIG_TYPE_MASTER);
185 static bool virtio_net_started(VirtIONet *n, uint8_t status)
187 VirtIODevice *vdev = VIRTIO_DEVICE(n);
188 return (status & VIRTIO_CONFIG_S_DRIVER_OK) &&
189 (n->status & VIRTIO_NET_S_LINK_UP) && vdev->vm_running;
192 static void virtio_net_announce_notify(VirtIONet *net)
194 VirtIODevice *vdev = VIRTIO_DEVICE(net);
195 trace_virtio_net_announce_notify();
197 net->status |= VIRTIO_NET_S_ANNOUNCE;
198 virtio_notify_config(vdev);
201 static void virtio_net_announce_timer(void *opaque)
203 VirtIONet *n = opaque;
204 trace_virtio_net_announce_timer(n->announce_timer.round);
206 n->announce_timer.round--;
207 virtio_net_announce_notify(n);
210 static void virtio_net_announce(NetClientState *nc)
212 VirtIONet *n = qemu_get_nic_opaque(nc);
213 VirtIODevice *vdev = VIRTIO_DEVICE(n);
216 * Make sure the virtio migration announcement timer isn't running
217 * If it is, let it trigger announcement so that we do not cause
218 * confusion.
220 if (n->announce_timer.round) {
221 return;
224 if (virtio_vdev_has_feature(vdev, VIRTIO_NET_F_GUEST_ANNOUNCE) &&
225 virtio_vdev_has_feature(vdev, VIRTIO_NET_F_CTRL_VQ)) {
226 virtio_net_announce_notify(n);
230 static void virtio_net_vhost_status(VirtIONet *n, uint8_t status)
232 VirtIODevice *vdev = VIRTIO_DEVICE(n);
233 NetClientState *nc = qemu_get_queue(n->nic);
234 int queues = n->multiqueue ? n->max_queues : 1;
236 if (!get_vhost_net(nc->peer)) {
237 return;
240 if ((virtio_net_started(n, status) && !nc->peer->link_down) ==
241 !!n->vhost_started) {
242 return;
244 if (!n->vhost_started) {
245 int r, i;
247 if (n->needs_vnet_hdr_swap) {
248 error_report("backend does not support %s vnet headers; "
249 "falling back on userspace virtio",
250 virtio_is_big_endian(vdev) ? "BE" : "LE");
251 return;
254 /* Any packets outstanding? Purge them to avoid touching rings
255 * when vhost is running.
257 for (i = 0; i < queues; i++) {
258 NetClientState *qnc = qemu_get_subqueue(n->nic, i);
260 /* Purge both directions: TX and RX. */
261 qemu_net_queue_purge(qnc->peer->incoming_queue, qnc);
262 qemu_net_queue_purge(qnc->incoming_queue, qnc->peer);
265 if (virtio_has_feature(vdev->guest_features, VIRTIO_NET_F_MTU)) {
266 r = vhost_net_set_mtu(get_vhost_net(nc->peer), n->net_conf.mtu);
267 if (r < 0) {
268 error_report("%uBytes MTU not supported by the backend",
269 n->net_conf.mtu);
271 return;
275 n->vhost_started = 1;
276 r = vhost_net_start(vdev, n->nic->ncs, queues);
277 if (r < 0) {
278 error_report("unable to start vhost net: %d: "
279 "falling back on userspace virtio", -r);
280 n->vhost_started = 0;
282 } else {
283 vhost_net_stop(vdev, n->nic->ncs, queues);
284 n->vhost_started = 0;
288 static int virtio_net_set_vnet_endian_one(VirtIODevice *vdev,
289 NetClientState *peer,
290 bool enable)
292 if (virtio_is_big_endian(vdev)) {
293 return qemu_set_vnet_be(peer, enable);
294 } else {
295 return qemu_set_vnet_le(peer, enable);
299 static bool virtio_net_set_vnet_endian(VirtIODevice *vdev, NetClientState *ncs,
300 int queues, bool enable)
302 int i;
304 for (i = 0; i < queues; i++) {
305 if (virtio_net_set_vnet_endian_one(vdev, ncs[i].peer, enable) < 0 &&
306 enable) {
307 while (--i >= 0) {
308 virtio_net_set_vnet_endian_one(vdev, ncs[i].peer, false);
311 return true;
315 return false;
318 static void virtio_net_vnet_endian_status(VirtIONet *n, uint8_t status)
320 VirtIODevice *vdev = VIRTIO_DEVICE(n);
321 int queues = n->multiqueue ? n->max_queues : 1;
323 if (virtio_net_started(n, status)) {
324 /* Before using the device, we tell the network backend about the
325 * endianness to use when parsing vnet headers. If the backend
326 * can't do it, we fallback onto fixing the headers in the core
327 * virtio-net code.
329 n->needs_vnet_hdr_swap = virtio_net_set_vnet_endian(vdev, n->nic->ncs,
330 queues, true);
331 } else if (virtio_net_started(n, vdev->status)) {
332 /* After using the device, we need to reset the network backend to
333 * the default (guest native endianness), otherwise the guest may
334 * lose network connectivity if it is rebooted into a different
335 * endianness.
337 virtio_net_set_vnet_endian(vdev, n->nic->ncs, queues, false);
341 static void virtio_net_drop_tx_queue_data(VirtIODevice *vdev, VirtQueue *vq)
343 unsigned int dropped = virtqueue_drop_all(vq);
344 if (dropped) {
345 virtio_notify(vdev, vq);
349 static void virtio_net_set_status(struct VirtIODevice *vdev, uint8_t status)
351 VirtIONet *n = VIRTIO_NET(vdev);
352 VirtIONetQueue *q;
353 int i;
354 uint8_t queue_status;
356 virtio_net_vnet_endian_status(n, status);
357 virtio_net_vhost_status(n, status);
359 for (i = 0; i < n->max_queues; i++) {
360 NetClientState *ncs = qemu_get_subqueue(n->nic, i);
361 bool queue_started;
362 q = &n->vqs[i];
364 if ((!n->multiqueue && i != 0) || i >= n->curr_queues) {
365 queue_status = 0;
366 } else {
367 queue_status = status;
369 queue_started =
370 virtio_net_started(n, queue_status) && !n->vhost_started;
372 if (queue_started) {
373 qemu_flush_queued_packets(ncs);
376 if (!q->tx_waiting) {
377 continue;
380 if (queue_started) {
381 if (q->tx_timer) {
382 timer_mod(q->tx_timer,
383 qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) + n->tx_timeout);
384 } else {
385 qemu_bh_schedule(q->tx_bh);
387 } else {
388 if (q->tx_timer) {
389 timer_del(q->tx_timer);
390 } else {
391 qemu_bh_cancel(q->tx_bh);
393 if ((n->status & VIRTIO_NET_S_LINK_UP) == 0 &&
394 (queue_status & VIRTIO_CONFIG_S_DRIVER_OK) &&
395 vdev->vm_running) {
396 /* if tx is waiting we are likely have some packets in tx queue
397 * and disabled notification */
398 q->tx_waiting = 0;
399 virtio_queue_set_notification(q->tx_vq, 1);
400 virtio_net_drop_tx_queue_data(vdev, q->tx_vq);
406 static void virtio_net_set_link_status(NetClientState *nc)
408 VirtIONet *n = qemu_get_nic_opaque(nc);
409 VirtIODevice *vdev = VIRTIO_DEVICE(n);
410 uint16_t old_status = n->status;
412 if (nc->link_down)
413 n->status &= ~VIRTIO_NET_S_LINK_UP;
414 else
415 n->status |= VIRTIO_NET_S_LINK_UP;
417 if (n->status != old_status)
418 virtio_notify_config(vdev);
420 virtio_net_set_status(vdev, vdev->status);
423 static void rxfilter_notify(NetClientState *nc)
425 VirtIONet *n = qemu_get_nic_opaque(nc);
427 if (nc->rxfilter_notify_enabled) {
428 char *path = object_get_canonical_path(OBJECT(n->qdev));
429 qapi_event_send_nic_rx_filter_changed(!!n->netclient_name,
430 n->netclient_name, path);
431 g_free(path);
433 /* disable event notification to avoid events flooding */
434 nc->rxfilter_notify_enabled = 0;
438 static intList *get_vlan_table(VirtIONet *n)
440 intList *list, *entry;
441 int i, j;
443 list = NULL;
444 for (i = 0; i < MAX_VLAN >> 5; i++) {
445 for (j = 0; n->vlans[i] && j <= 0x1f; j++) {
446 if (n->vlans[i] & (1U << j)) {
447 entry = g_malloc0(sizeof(*entry));
448 entry->value = (i << 5) + j;
449 entry->next = list;
450 list = entry;
455 return list;
458 static RxFilterInfo *virtio_net_query_rxfilter(NetClientState *nc)
460 VirtIONet *n = qemu_get_nic_opaque(nc);
461 VirtIODevice *vdev = VIRTIO_DEVICE(n);
462 RxFilterInfo *info;
463 strList *str_list, *entry;
464 int i;
466 info = g_malloc0(sizeof(*info));
467 info->name = g_strdup(nc->name);
468 info->promiscuous = n->promisc;
470 if (n->nouni) {
471 info->unicast = RX_STATE_NONE;
472 } else if (n->alluni) {
473 info->unicast = RX_STATE_ALL;
474 } else {
475 info->unicast = RX_STATE_NORMAL;
478 if (n->nomulti) {
479 info->multicast = RX_STATE_NONE;
480 } else if (n->allmulti) {
481 info->multicast = RX_STATE_ALL;
482 } else {
483 info->multicast = RX_STATE_NORMAL;
486 info->broadcast_allowed = n->nobcast;
487 info->multicast_overflow = n->mac_table.multi_overflow;
488 info->unicast_overflow = n->mac_table.uni_overflow;
490 info->main_mac = qemu_mac_strdup_printf(n->mac);
492 str_list = NULL;
493 for (i = 0; i < n->mac_table.first_multi; i++) {
494 entry = g_malloc0(sizeof(*entry));
495 entry->value = qemu_mac_strdup_printf(n->mac_table.macs + i * ETH_ALEN);
496 entry->next = str_list;
497 str_list = entry;
499 info->unicast_table = str_list;
501 str_list = NULL;
502 for (i = n->mac_table.first_multi; i < n->mac_table.in_use; i++) {
503 entry = g_malloc0(sizeof(*entry));
504 entry->value = qemu_mac_strdup_printf(n->mac_table.macs + i * ETH_ALEN);
505 entry->next = str_list;
506 str_list = entry;
508 info->multicast_table = str_list;
509 info->vlan_table = get_vlan_table(n);
511 if (!virtio_vdev_has_feature(vdev, VIRTIO_NET_F_CTRL_VLAN)) {
512 info->vlan = RX_STATE_ALL;
513 } else if (!info->vlan_table) {
514 info->vlan = RX_STATE_NONE;
515 } else {
516 info->vlan = RX_STATE_NORMAL;
519 /* enable event notification after query */
520 nc->rxfilter_notify_enabled = 1;
522 return info;
525 static void virtio_net_reset(VirtIODevice *vdev)
527 VirtIONet *n = VIRTIO_NET(vdev);
528 int i;
530 /* Reset back to compatibility mode */
531 n->promisc = 1;
532 n->allmulti = 0;
533 n->alluni = 0;
534 n->nomulti = 0;
535 n->nouni = 0;
536 n->nobcast = 0;
537 /* multiqueue is disabled by default */
538 n->curr_queues = 1;
539 timer_del(n->announce_timer.tm);
540 n->announce_timer.round = 0;
541 n->status &= ~VIRTIO_NET_S_ANNOUNCE;
543 /* Flush any MAC and VLAN filter table state */
544 n->mac_table.in_use = 0;
545 n->mac_table.first_multi = 0;
546 n->mac_table.multi_overflow = 0;
547 n->mac_table.uni_overflow = 0;
548 memset(n->mac_table.macs, 0, MAC_TABLE_ENTRIES * ETH_ALEN);
549 memcpy(&n->mac[0], &n->nic->conf->macaddr, sizeof(n->mac));
550 qemu_format_nic_info_str(qemu_get_queue(n->nic), n->mac);
551 memset(n->vlans, 0, MAX_VLAN >> 3);
553 /* Flush any async TX */
554 for (i = 0; i < n->max_queues; i++) {
555 NetClientState *nc = qemu_get_subqueue(n->nic, i);
557 if (nc->peer) {
558 qemu_flush_or_purge_queued_packets(nc->peer, true);
559 assert(!virtio_net_get_subqueue(nc)->async_tx.elem);
564 static void peer_test_vnet_hdr(VirtIONet *n)
566 NetClientState *nc = qemu_get_queue(n->nic);
567 if (!nc->peer) {
568 return;
571 n->has_vnet_hdr = qemu_has_vnet_hdr(nc->peer);
574 static int peer_has_vnet_hdr(VirtIONet *n)
576 return n->has_vnet_hdr;
579 static int peer_has_ufo(VirtIONet *n)
581 if (!peer_has_vnet_hdr(n))
582 return 0;
584 n->has_ufo = qemu_has_ufo(qemu_get_queue(n->nic)->peer);
586 return n->has_ufo;
589 static void virtio_net_set_mrg_rx_bufs(VirtIONet *n, int mergeable_rx_bufs,
590 int version_1, int hash_report)
592 int i;
593 NetClientState *nc;
595 n->mergeable_rx_bufs = mergeable_rx_bufs;
597 if (version_1) {
598 n->guest_hdr_len = hash_report ?
599 sizeof(struct virtio_net_hdr_v1_hash) :
600 sizeof(struct virtio_net_hdr_mrg_rxbuf);
601 n->rss_data.populate_hash = !!hash_report;
602 } else {
603 n->guest_hdr_len = n->mergeable_rx_bufs ?
604 sizeof(struct virtio_net_hdr_mrg_rxbuf) :
605 sizeof(struct virtio_net_hdr);
608 for (i = 0; i < n->max_queues; i++) {
609 nc = qemu_get_subqueue(n->nic, i);
611 if (peer_has_vnet_hdr(n) &&
612 qemu_has_vnet_hdr_len(nc->peer, n->guest_hdr_len)) {
613 qemu_set_vnet_hdr_len(nc->peer, n->guest_hdr_len);
614 n->host_hdr_len = n->guest_hdr_len;
619 static int virtio_net_max_tx_queue_size(VirtIONet *n)
621 NetClientState *peer = n->nic_conf.peers.ncs[0];
624 * Backends other than vhost-user don't support max queue size.
626 if (!peer) {
627 return VIRTIO_NET_TX_QUEUE_DEFAULT_SIZE;
630 if (peer->info->type != NET_CLIENT_DRIVER_VHOST_USER) {
631 return VIRTIO_NET_TX_QUEUE_DEFAULT_SIZE;
634 return VIRTQUEUE_MAX_SIZE;
637 static int peer_attach(VirtIONet *n, int index)
639 NetClientState *nc = qemu_get_subqueue(n->nic, index);
641 if (!nc->peer) {
642 return 0;
645 if (nc->peer->info->type == NET_CLIENT_DRIVER_VHOST_USER) {
646 vhost_set_vring_enable(nc->peer, 1);
649 if (nc->peer->info->type != NET_CLIENT_DRIVER_TAP) {
650 return 0;
653 if (n->max_queues == 1) {
654 return 0;
657 return tap_enable(nc->peer);
660 static int peer_detach(VirtIONet *n, int index)
662 NetClientState *nc = qemu_get_subqueue(n->nic, index);
664 if (!nc->peer) {
665 return 0;
668 if (nc->peer->info->type == NET_CLIENT_DRIVER_VHOST_USER) {
669 vhost_set_vring_enable(nc->peer, 0);
672 if (nc->peer->info->type != NET_CLIENT_DRIVER_TAP) {
673 return 0;
676 return tap_disable(nc->peer);
679 static void virtio_net_set_queues(VirtIONet *n)
681 int i;
682 int r;
684 if (n->nic->peer_deleted) {
685 return;
688 for (i = 0; i < n->max_queues; i++) {
689 if (i < n->curr_queues) {
690 r = peer_attach(n, i);
691 assert(!r);
692 } else {
693 r = peer_detach(n, i);
694 assert(!r);
699 static void virtio_net_set_multiqueue(VirtIONet *n, int multiqueue);
701 static uint64_t virtio_net_get_features(VirtIODevice *vdev, uint64_t features,
702 Error **errp)
704 VirtIONet *n = VIRTIO_NET(vdev);
705 NetClientState *nc = qemu_get_queue(n->nic);
707 /* Firstly sync all virtio-net possible supported features */
708 features |= n->host_features;
710 virtio_add_feature(&features, VIRTIO_NET_F_MAC);
712 if (!peer_has_vnet_hdr(n)) {
713 virtio_clear_feature(&features, VIRTIO_NET_F_CSUM);
714 virtio_clear_feature(&features, VIRTIO_NET_F_HOST_TSO4);
715 virtio_clear_feature(&features, VIRTIO_NET_F_HOST_TSO6);
716 virtio_clear_feature(&features, VIRTIO_NET_F_HOST_ECN);
718 virtio_clear_feature(&features, VIRTIO_NET_F_GUEST_CSUM);
719 virtio_clear_feature(&features, VIRTIO_NET_F_GUEST_TSO4);
720 virtio_clear_feature(&features, VIRTIO_NET_F_GUEST_TSO6);
721 virtio_clear_feature(&features, VIRTIO_NET_F_GUEST_ECN);
723 virtio_clear_feature(&features, VIRTIO_NET_F_HASH_REPORT);
726 if (!peer_has_vnet_hdr(n) || !peer_has_ufo(n)) {
727 virtio_clear_feature(&features, VIRTIO_NET_F_GUEST_UFO);
728 virtio_clear_feature(&features, VIRTIO_NET_F_HOST_UFO);
731 if (!get_vhost_net(nc->peer)) {
732 return features;
735 virtio_clear_feature(&features, VIRTIO_NET_F_RSS);
736 virtio_clear_feature(&features, VIRTIO_NET_F_HASH_REPORT);
737 features = vhost_net_get_features(get_vhost_net(nc->peer), features);
738 vdev->backend_features = features;
740 if (n->mtu_bypass_backend &&
741 (n->host_features & 1ULL << VIRTIO_NET_F_MTU)) {
742 features |= (1ULL << VIRTIO_NET_F_MTU);
745 return features;
748 static uint64_t virtio_net_bad_features(VirtIODevice *vdev)
750 uint64_t features = 0;
752 /* Linux kernel 2.6.25. It understood MAC (as everyone must),
753 * but also these: */
754 virtio_add_feature(&features, VIRTIO_NET_F_MAC);
755 virtio_add_feature(&features, VIRTIO_NET_F_CSUM);
756 virtio_add_feature(&features, VIRTIO_NET_F_HOST_TSO4);
757 virtio_add_feature(&features, VIRTIO_NET_F_HOST_TSO6);
758 virtio_add_feature(&features, VIRTIO_NET_F_HOST_ECN);
760 return features;
763 static void virtio_net_apply_guest_offloads(VirtIONet *n)
765 qemu_set_offload(qemu_get_queue(n->nic)->peer,
766 !!(n->curr_guest_offloads & (1ULL << VIRTIO_NET_F_GUEST_CSUM)),
767 !!(n->curr_guest_offloads & (1ULL << VIRTIO_NET_F_GUEST_TSO4)),
768 !!(n->curr_guest_offloads & (1ULL << VIRTIO_NET_F_GUEST_TSO6)),
769 !!(n->curr_guest_offloads & (1ULL << VIRTIO_NET_F_GUEST_ECN)),
770 !!(n->curr_guest_offloads & (1ULL << VIRTIO_NET_F_GUEST_UFO)));
773 static uint64_t virtio_net_guest_offloads_by_features(uint32_t features)
775 static const uint64_t guest_offloads_mask =
776 (1ULL << VIRTIO_NET_F_GUEST_CSUM) |
777 (1ULL << VIRTIO_NET_F_GUEST_TSO4) |
778 (1ULL << VIRTIO_NET_F_GUEST_TSO6) |
779 (1ULL << VIRTIO_NET_F_GUEST_ECN) |
780 (1ULL << VIRTIO_NET_F_GUEST_UFO);
782 return guest_offloads_mask & features;
785 static inline uint64_t virtio_net_supported_guest_offloads(VirtIONet *n)
787 VirtIODevice *vdev = VIRTIO_DEVICE(n);
788 return virtio_net_guest_offloads_by_features(vdev->guest_features);
791 static void failover_add_primary(VirtIONet *n, Error **errp)
793 Error *err = NULL;
794 QemuOpts *opts;
796 if (n->primary_dev) {
797 return;
800 opts = qemu_opts_find(qemu_find_opts("device"), n->primary_device_id);
801 if (opts) {
802 n->primary_dev = qdev_device_add(opts, &err);
803 if (err) {
804 qemu_opts_del(opts);
806 } else {
807 error_setg(errp, "Primary device not found");
808 error_append_hint(errp, "Virtio-net failover will not work. Make "
809 "sure primary device has parameter"
810 " failover_pair_id=<virtio-net-id>\n");
812 error_propagate(errp, err);
815 static int is_my_primary(void *opaque, QemuOpts *opts, Error **errp)
817 VirtIONet *n = opaque;
818 int ret = 0;
819 const char *standby_id = qemu_opt_get(opts, "failover_pair_id");
821 if (g_strcmp0(standby_id, n->netclient_name) == 0) {
822 n->primary_device_id = g_strdup(opts->id);
823 ret = 1;
826 return ret;
829 static DeviceState *virtio_net_find_primary(VirtIONet *n, Error **errp)
831 Error *err = NULL;
833 if (!qemu_opts_foreach(qemu_find_opts("device"), is_my_primary, n, &err)) {
834 return NULL;
836 return qdev_find_recursive(sysbus_get_default(), n->primary_device_id);
839 static DeviceState *virtio_connect_failover_devices(VirtIONet *n, Error **errp)
841 DeviceState *prim_dev = NULL;
842 Error *err = NULL;
844 prim_dev = virtio_net_find_primary(n, &err);
845 if (!prim_dev) {
846 error_propagate(errp, err);
849 return prim_dev;
852 static void virtio_net_set_features(VirtIODevice *vdev, uint64_t features)
854 VirtIONet *n = VIRTIO_NET(vdev);
855 Error *err = NULL;
856 int i;
858 if (n->mtu_bypass_backend &&
859 !virtio_has_feature(vdev->backend_features, VIRTIO_NET_F_MTU)) {
860 features &= ~(1ULL << VIRTIO_NET_F_MTU);
863 virtio_net_set_multiqueue(n,
864 virtio_has_feature(features, VIRTIO_NET_F_RSS) ||
865 virtio_has_feature(features, VIRTIO_NET_F_MQ));
867 virtio_net_set_mrg_rx_bufs(n,
868 virtio_has_feature(features,
869 VIRTIO_NET_F_MRG_RXBUF),
870 virtio_has_feature(features,
871 VIRTIO_F_VERSION_1),
872 virtio_has_feature(features,
873 VIRTIO_NET_F_HASH_REPORT));
875 n->rsc4_enabled = virtio_has_feature(features, VIRTIO_NET_F_RSC_EXT) &&
876 virtio_has_feature(features, VIRTIO_NET_F_GUEST_TSO4);
877 n->rsc6_enabled = virtio_has_feature(features, VIRTIO_NET_F_RSC_EXT) &&
878 virtio_has_feature(features, VIRTIO_NET_F_GUEST_TSO6);
879 n->rss_data.redirect = virtio_has_feature(features, VIRTIO_NET_F_RSS);
881 if (n->has_vnet_hdr) {
882 n->curr_guest_offloads =
883 virtio_net_guest_offloads_by_features(features);
884 virtio_net_apply_guest_offloads(n);
887 for (i = 0; i < n->max_queues; i++) {
888 NetClientState *nc = qemu_get_subqueue(n->nic, i);
890 if (!get_vhost_net(nc->peer)) {
891 continue;
893 vhost_net_ack_features(get_vhost_net(nc->peer), features);
896 if (virtio_has_feature(features, VIRTIO_NET_F_CTRL_VLAN)) {
897 memset(n->vlans, 0, MAX_VLAN >> 3);
898 } else {
899 memset(n->vlans, 0xff, MAX_VLAN >> 3);
902 if (virtio_has_feature(features, VIRTIO_NET_F_STANDBY)) {
903 qapi_event_send_failover_negotiated(n->netclient_name);
904 qatomic_set(&n->failover_primary_hidden, false);
905 failover_add_primary(n, &err);
906 if (err) {
907 n->primary_dev = virtio_connect_failover_devices(n, &err);
908 if (err) {
909 goto out_err;
911 failover_add_primary(n, &err);
912 if (err) {
913 goto out_err;
917 return;
919 out_err:
920 if (err) {
921 warn_report_err(err);
925 static int virtio_net_handle_rx_mode(VirtIONet *n, uint8_t cmd,
926 struct iovec *iov, unsigned int iov_cnt)
928 uint8_t on;
929 size_t s;
930 NetClientState *nc = qemu_get_queue(n->nic);
932 s = iov_to_buf(iov, iov_cnt, 0, &on, sizeof(on));
933 if (s != sizeof(on)) {
934 return VIRTIO_NET_ERR;
937 if (cmd == VIRTIO_NET_CTRL_RX_PROMISC) {
938 n->promisc = on;
939 } else if (cmd == VIRTIO_NET_CTRL_RX_ALLMULTI) {
940 n->allmulti = on;
941 } else if (cmd == VIRTIO_NET_CTRL_RX_ALLUNI) {
942 n->alluni = on;
943 } else if (cmd == VIRTIO_NET_CTRL_RX_NOMULTI) {
944 n->nomulti = on;
945 } else if (cmd == VIRTIO_NET_CTRL_RX_NOUNI) {
946 n->nouni = on;
947 } else if (cmd == VIRTIO_NET_CTRL_RX_NOBCAST) {
948 n->nobcast = on;
949 } else {
950 return VIRTIO_NET_ERR;
953 rxfilter_notify(nc);
955 return VIRTIO_NET_OK;
958 static int virtio_net_handle_offloads(VirtIONet *n, uint8_t cmd,
959 struct iovec *iov, unsigned int iov_cnt)
961 VirtIODevice *vdev = VIRTIO_DEVICE(n);
962 uint64_t offloads;
963 size_t s;
965 if (!virtio_vdev_has_feature(vdev, VIRTIO_NET_F_CTRL_GUEST_OFFLOADS)) {
966 return VIRTIO_NET_ERR;
969 s = iov_to_buf(iov, iov_cnt, 0, &offloads, sizeof(offloads));
970 if (s != sizeof(offloads)) {
971 return VIRTIO_NET_ERR;
974 if (cmd == VIRTIO_NET_CTRL_GUEST_OFFLOADS_SET) {
975 uint64_t supported_offloads;
977 offloads = virtio_ldq_p(vdev, &offloads);
979 if (!n->has_vnet_hdr) {
980 return VIRTIO_NET_ERR;
983 n->rsc4_enabled = virtio_has_feature(offloads, VIRTIO_NET_F_RSC_EXT) &&
984 virtio_has_feature(offloads, VIRTIO_NET_F_GUEST_TSO4);
985 n->rsc6_enabled = virtio_has_feature(offloads, VIRTIO_NET_F_RSC_EXT) &&
986 virtio_has_feature(offloads, VIRTIO_NET_F_GUEST_TSO6);
987 virtio_clear_feature(&offloads, VIRTIO_NET_F_RSC_EXT);
989 supported_offloads = virtio_net_supported_guest_offloads(n);
990 if (offloads & ~supported_offloads) {
991 return VIRTIO_NET_ERR;
994 n->curr_guest_offloads = offloads;
995 virtio_net_apply_guest_offloads(n);
997 return VIRTIO_NET_OK;
998 } else {
999 return VIRTIO_NET_ERR;
1003 static int virtio_net_handle_mac(VirtIONet *n, uint8_t cmd,
1004 struct iovec *iov, unsigned int iov_cnt)
1006 VirtIODevice *vdev = VIRTIO_DEVICE(n);
1007 struct virtio_net_ctrl_mac mac_data;
1008 size_t s;
1009 NetClientState *nc = qemu_get_queue(n->nic);
1011 if (cmd == VIRTIO_NET_CTRL_MAC_ADDR_SET) {
1012 if (iov_size(iov, iov_cnt) != sizeof(n->mac)) {
1013 return VIRTIO_NET_ERR;
1015 s = iov_to_buf(iov, iov_cnt, 0, &n->mac, sizeof(n->mac));
1016 assert(s == sizeof(n->mac));
1017 qemu_format_nic_info_str(qemu_get_queue(n->nic), n->mac);
1018 rxfilter_notify(nc);
1020 return VIRTIO_NET_OK;
1023 if (cmd != VIRTIO_NET_CTRL_MAC_TABLE_SET) {
1024 return VIRTIO_NET_ERR;
1027 int in_use = 0;
1028 int first_multi = 0;
1029 uint8_t uni_overflow = 0;
1030 uint8_t multi_overflow = 0;
1031 uint8_t *macs = g_malloc0(MAC_TABLE_ENTRIES * ETH_ALEN);
1033 s = iov_to_buf(iov, iov_cnt, 0, &mac_data.entries,
1034 sizeof(mac_data.entries));
1035 mac_data.entries = virtio_ldl_p(vdev, &mac_data.entries);
1036 if (s != sizeof(mac_data.entries)) {
1037 goto error;
1039 iov_discard_front(&iov, &iov_cnt, s);
1041 if (mac_data.entries * ETH_ALEN > iov_size(iov, iov_cnt)) {
1042 goto error;
1045 if (mac_data.entries <= MAC_TABLE_ENTRIES) {
1046 s = iov_to_buf(iov, iov_cnt, 0, macs,
1047 mac_data.entries * ETH_ALEN);
1048 if (s != mac_data.entries * ETH_ALEN) {
1049 goto error;
1051 in_use += mac_data.entries;
1052 } else {
1053 uni_overflow = 1;
1056 iov_discard_front(&iov, &iov_cnt, mac_data.entries * ETH_ALEN);
1058 first_multi = in_use;
1060 s = iov_to_buf(iov, iov_cnt, 0, &mac_data.entries,
1061 sizeof(mac_data.entries));
1062 mac_data.entries = virtio_ldl_p(vdev, &mac_data.entries);
1063 if (s != sizeof(mac_data.entries)) {
1064 goto error;
1067 iov_discard_front(&iov, &iov_cnt, s);
1069 if (mac_data.entries * ETH_ALEN != iov_size(iov, iov_cnt)) {
1070 goto error;
1073 if (mac_data.entries <= MAC_TABLE_ENTRIES - in_use) {
1074 s = iov_to_buf(iov, iov_cnt, 0, &macs[in_use * ETH_ALEN],
1075 mac_data.entries * ETH_ALEN);
1076 if (s != mac_data.entries * ETH_ALEN) {
1077 goto error;
1079 in_use += mac_data.entries;
1080 } else {
1081 multi_overflow = 1;
1084 n->mac_table.in_use = in_use;
1085 n->mac_table.first_multi = first_multi;
1086 n->mac_table.uni_overflow = uni_overflow;
1087 n->mac_table.multi_overflow = multi_overflow;
1088 memcpy(n->mac_table.macs, macs, MAC_TABLE_ENTRIES * ETH_ALEN);
1089 g_free(macs);
1090 rxfilter_notify(nc);
1092 return VIRTIO_NET_OK;
1094 error:
1095 g_free(macs);
1096 return VIRTIO_NET_ERR;
1099 static int virtio_net_handle_vlan_table(VirtIONet *n, uint8_t cmd,
1100 struct iovec *iov, unsigned int iov_cnt)
1102 VirtIODevice *vdev = VIRTIO_DEVICE(n);
1103 uint16_t vid;
1104 size_t s;
1105 NetClientState *nc = qemu_get_queue(n->nic);
1107 s = iov_to_buf(iov, iov_cnt, 0, &vid, sizeof(vid));
1108 vid = virtio_lduw_p(vdev, &vid);
1109 if (s != sizeof(vid)) {
1110 return VIRTIO_NET_ERR;
1113 if (vid >= MAX_VLAN)
1114 return VIRTIO_NET_ERR;
1116 if (cmd == VIRTIO_NET_CTRL_VLAN_ADD)
1117 n->vlans[vid >> 5] |= (1U << (vid & 0x1f));
1118 else if (cmd == VIRTIO_NET_CTRL_VLAN_DEL)
1119 n->vlans[vid >> 5] &= ~(1U << (vid & 0x1f));
1120 else
1121 return VIRTIO_NET_ERR;
1123 rxfilter_notify(nc);
1125 return VIRTIO_NET_OK;
1128 static int virtio_net_handle_announce(VirtIONet *n, uint8_t cmd,
1129 struct iovec *iov, unsigned int iov_cnt)
1131 trace_virtio_net_handle_announce(n->announce_timer.round);
1132 if (cmd == VIRTIO_NET_CTRL_ANNOUNCE_ACK &&
1133 n->status & VIRTIO_NET_S_ANNOUNCE) {
1134 n->status &= ~VIRTIO_NET_S_ANNOUNCE;
1135 if (n->announce_timer.round) {
1136 qemu_announce_timer_step(&n->announce_timer);
1138 return VIRTIO_NET_OK;
1139 } else {
1140 return VIRTIO_NET_ERR;
1144 static void virtio_net_disable_rss(VirtIONet *n)
1146 if (n->rss_data.enabled) {
1147 trace_virtio_net_rss_disable();
1149 n->rss_data.enabled = false;
1152 static uint16_t virtio_net_handle_rss(VirtIONet *n,
1153 struct iovec *iov,
1154 unsigned int iov_cnt,
1155 bool do_rss)
1157 VirtIODevice *vdev = VIRTIO_DEVICE(n);
1158 struct virtio_net_rss_config cfg;
1159 size_t s, offset = 0, size_get;
1160 uint16_t queues, i;
1161 struct {
1162 uint16_t us;
1163 uint8_t b;
1164 } QEMU_PACKED temp;
1165 const char *err_msg = "";
1166 uint32_t err_value = 0;
1168 if (do_rss && !virtio_vdev_has_feature(vdev, VIRTIO_NET_F_RSS)) {
1169 err_msg = "RSS is not negotiated";
1170 goto error;
1172 if (!do_rss && !virtio_vdev_has_feature(vdev, VIRTIO_NET_F_HASH_REPORT)) {
1173 err_msg = "Hash report is not negotiated";
1174 goto error;
1176 size_get = offsetof(struct virtio_net_rss_config, indirection_table);
1177 s = iov_to_buf(iov, iov_cnt, offset, &cfg, size_get);
1178 if (s != size_get) {
1179 err_msg = "Short command buffer";
1180 err_value = (uint32_t)s;
1181 goto error;
1183 n->rss_data.hash_types = virtio_ldl_p(vdev, &cfg.hash_types);
1184 n->rss_data.indirections_len =
1185 virtio_lduw_p(vdev, &cfg.indirection_table_mask);
1186 n->rss_data.indirections_len++;
1187 if (!do_rss) {
1188 n->rss_data.indirections_len = 1;
1190 if (!is_power_of_2(n->rss_data.indirections_len)) {
1191 err_msg = "Invalid size of indirection table";
1192 err_value = n->rss_data.indirections_len;
1193 goto error;
1195 if (n->rss_data.indirections_len > VIRTIO_NET_RSS_MAX_TABLE_LEN) {
1196 err_msg = "Too large indirection table";
1197 err_value = n->rss_data.indirections_len;
1198 goto error;
1200 n->rss_data.default_queue = do_rss ?
1201 virtio_lduw_p(vdev, &cfg.unclassified_queue) : 0;
1202 if (n->rss_data.default_queue >= n->max_queues) {
1203 err_msg = "Invalid default queue";
1204 err_value = n->rss_data.default_queue;
1205 goto error;
1207 offset += size_get;
1208 size_get = sizeof(uint16_t) * n->rss_data.indirections_len;
1209 g_free(n->rss_data.indirections_table);
1210 n->rss_data.indirections_table = g_malloc(size_get);
1211 if (!n->rss_data.indirections_table) {
1212 err_msg = "Can't allocate indirections table";
1213 err_value = n->rss_data.indirections_len;
1214 goto error;
1216 s = iov_to_buf(iov, iov_cnt, offset,
1217 n->rss_data.indirections_table, size_get);
1218 if (s != size_get) {
1219 err_msg = "Short indirection table buffer";
1220 err_value = (uint32_t)s;
1221 goto error;
1223 for (i = 0; i < n->rss_data.indirections_len; ++i) {
1224 uint16_t val = n->rss_data.indirections_table[i];
1225 n->rss_data.indirections_table[i] = virtio_lduw_p(vdev, &val);
1227 offset += size_get;
1228 size_get = sizeof(temp);
1229 s = iov_to_buf(iov, iov_cnt, offset, &temp, size_get);
1230 if (s != size_get) {
1231 err_msg = "Can't get queues";
1232 err_value = (uint32_t)s;
1233 goto error;
1235 queues = do_rss ? virtio_lduw_p(vdev, &temp.us) : n->curr_queues;
1236 if (queues == 0 || queues > n->max_queues) {
1237 err_msg = "Invalid number of queues";
1238 err_value = queues;
1239 goto error;
1241 if (temp.b > VIRTIO_NET_RSS_MAX_KEY_SIZE) {
1242 err_msg = "Invalid key size";
1243 err_value = temp.b;
1244 goto error;
1246 if (!temp.b && n->rss_data.hash_types) {
1247 err_msg = "No key provided";
1248 err_value = 0;
1249 goto error;
1251 if (!temp.b && !n->rss_data.hash_types) {
1252 virtio_net_disable_rss(n);
1253 return queues;
1255 offset += size_get;
1256 size_get = temp.b;
1257 s = iov_to_buf(iov, iov_cnt, offset, n->rss_data.key, size_get);
1258 if (s != size_get) {
1259 err_msg = "Can get key buffer";
1260 err_value = (uint32_t)s;
1261 goto error;
1263 n->rss_data.enabled = true;
1264 trace_virtio_net_rss_enable(n->rss_data.hash_types,
1265 n->rss_data.indirections_len,
1266 temp.b);
1267 return queues;
1268 error:
1269 trace_virtio_net_rss_error(err_msg, err_value);
1270 virtio_net_disable_rss(n);
1271 return 0;
1274 static int virtio_net_handle_mq(VirtIONet *n, uint8_t cmd,
1275 struct iovec *iov, unsigned int iov_cnt)
1277 VirtIODevice *vdev = VIRTIO_DEVICE(n);
1278 uint16_t queues;
1280 virtio_net_disable_rss(n);
1281 if (cmd == VIRTIO_NET_CTRL_MQ_HASH_CONFIG) {
1282 queues = virtio_net_handle_rss(n, iov, iov_cnt, false);
1283 return queues ? VIRTIO_NET_OK : VIRTIO_NET_ERR;
1285 if (cmd == VIRTIO_NET_CTRL_MQ_RSS_CONFIG) {
1286 queues = virtio_net_handle_rss(n, iov, iov_cnt, true);
1287 } else if (cmd == VIRTIO_NET_CTRL_MQ_VQ_PAIRS_SET) {
1288 struct virtio_net_ctrl_mq mq;
1289 size_t s;
1290 if (!virtio_vdev_has_feature(vdev, VIRTIO_NET_F_MQ)) {
1291 return VIRTIO_NET_ERR;
1293 s = iov_to_buf(iov, iov_cnt, 0, &mq, sizeof(mq));
1294 if (s != sizeof(mq)) {
1295 return VIRTIO_NET_ERR;
1297 queues = virtio_lduw_p(vdev, &mq.virtqueue_pairs);
1299 } else {
1300 return VIRTIO_NET_ERR;
1303 if (queues < VIRTIO_NET_CTRL_MQ_VQ_PAIRS_MIN ||
1304 queues > VIRTIO_NET_CTRL_MQ_VQ_PAIRS_MAX ||
1305 queues > n->max_queues ||
1306 !n->multiqueue) {
1307 return VIRTIO_NET_ERR;
1310 n->curr_queues = queues;
1311 /* stop the backend before changing the number of queues to avoid handling a
1312 * disabled queue */
1313 virtio_net_set_status(vdev, vdev->status);
1314 virtio_net_set_queues(n);
1316 return VIRTIO_NET_OK;
1319 static void virtio_net_handle_ctrl(VirtIODevice *vdev, VirtQueue *vq)
1321 VirtIONet *n = VIRTIO_NET(vdev);
1322 struct virtio_net_ctrl_hdr ctrl;
1323 virtio_net_ctrl_ack status = VIRTIO_NET_ERR;
1324 VirtQueueElement *elem;
1325 size_t s;
1326 struct iovec *iov, *iov2;
1327 unsigned int iov_cnt;
1329 for (;;) {
1330 elem = virtqueue_pop(vq, sizeof(VirtQueueElement));
1331 if (!elem) {
1332 break;
1334 if (iov_size(elem->in_sg, elem->in_num) < sizeof(status) ||
1335 iov_size(elem->out_sg, elem->out_num) < sizeof(ctrl)) {
1336 virtio_error(vdev, "virtio-net ctrl missing headers");
1337 virtqueue_detach_element(vq, elem, 0);
1338 g_free(elem);
1339 break;
1342 iov_cnt = elem->out_num;
1343 iov2 = iov = g_memdup(elem->out_sg, sizeof(struct iovec) * elem->out_num);
1344 s = iov_to_buf(iov, iov_cnt, 0, &ctrl, sizeof(ctrl));
1345 iov_discard_front(&iov, &iov_cnt, sizeof(ctrl));
1346 if (s != sizeof(ctrl)) {
1347 status = VIRTIO_NET_ERR;
1348 } else if (ctrl.class == VIRTIO_NET_CTRL_RX) {
1349 status = virtio_net_handle_rx_mode(n, ctrl.cmd, iov, iov_cnt);
1350 } else if (ctrl.class == VIRTIO_NET_CTRL_MAC) {
1351 status = virtio_net_handle_mac(n, ctrl.cmd, iov, iov_cnt);
1352 } else if (ctrl.class == VIRTIO_NET_CTRL_VLAN) {
1353 status = virtio_net_handle_vlan_table(n, ctrl.cmd, iov, iov_cnt);
1354 } else if (ctrl.class == VIRTIO_NET_CTRL_ANNOUNCE) {
1355 status = virtio_net_handle_announce(n, ctrl.cmd, iov, iov_cnt);
1356 } else if (ctrl.class == VIRTIO_NET_CTRL_MQ) {
1357 status = virtio_net_handle_mq(n, ctrl.cmd, iov, iov_cnt);
1358 } else if (ctrl.class == VIRTIO_NET_CTRL_GUEST_OFFLOADS) {
1359 status = virtio_net_handle_offloads(n, ctrl.cmd, iov, iov_cnt);
1362 s = iov_from_buf(elem->in_sg, elem->in_num, 0, &status, sizeof(status));
1363 assert(s == sizeof(status));
1365 virtqueue_push(vq, elem, sizeof(status));
1366 virtio_notify(vdev, vq);
1367 g_free(iov2);
1368 g_free(elem);
1372 /* RX */
1374 static void virtio_net_handle_rx(VirtIODevice *vdev, VirtQueue *vq)
1376 VirtIONet *n = VIRTIO_NET(vdev);
1377 int queue_index = vq2q(virtio_get_queue_index(vq));
1379 qemu_flush_queued_packets(qemu_get_subqueue(n->nic, queue_index));
1382 static bool virtio_net_can_receive(NetClientState *nc)
1384 VirtIONet *n = qemu_get_nic_opaque(nc);
1385 VirtIODevice *vdev = VIRTIO_DEVICE(n);
1386 VirtIONetQueue *q = virtio_net_get_subqueue(nc);
1388 if (!vdev->vm_running) {
1389 return false;
1392 if (nc->queue_index >= n->curr_queues) {
1393 return false;
1396 if (!virtio_queue_ready(q->rx_vq) ||
1397 !(vdev->status & VIRTIO_CONFIG_S_DRIVER_OK)) {
1398 return false;
1401 return true;
1404 static int virtio_net_has_buffers(VirtIONetQueue *q, int bufsize)
1406 VirtIONet *n = q->n;
1407 if (virtio_queue_empty(q->rx_vq) ||
1408 (n->mergeable_rx_bufs &&
1409 !virtqueue_avail_bytes(q->rx_vq, bufsize, 0))) {
1410 virtio_queue_set_notification(q->rx_vq, 1);
1412 /* To avoid a race condition where the guest has made some buffers
1413 * available after the above check but before notification was
1414 * enabled, check for available buffers again.
1416 if (virtio_queue_empty(q->rx_vq) ||
1417 (n->mergeable_rx_bufs &&
1418 !virtqueue_avail_bytes(q->rx_vq, bufsize, 0))) {
1419 return 0;
1423 virtio_queue_set_notification(q->rx_vq, 0);
1424 return 1;
1427 static void virtio_net_hdr_swap(VirtIODevice *vdev, struct virtio_net_hdr *hdr)
1429 virtio_tswap16s(vdev, &hdr->hdr_len);
1430 virtio_tswap16s(vdev, &hdr->gso_size);
1431 virtio_tswap16s(vdev, &hdr->csum_start);
1432 virtio_tswap16s(vdev, &hdr->csum_offset);
1435 /* dhclient uses AF_PACKET but doesn't pass auxdata to the kernel so
1436 * it never finds out that the packets don't have valid checksums. This
1437 * causes dhclient to get upset. Fedora's carried a patch for ages to
1438 * fix this with Xen but it hasn't appeared in an upstream release of
1439 * dhclient yet.
1441 * To avoid breaking existing guests, we catch udp packets and add
1442 * checksums. This is terrible but it's better than hacking the guest
1443 * kernels.
1445 * N.B. if we introduce a zero-copy API, this operation is no longer free so
1446 * we should provide a mechanism to disable it to avoid polluting the host
1447 * cache.
1449 static void work_around_broken_dhclient(struct virtio_net_hdr *hdr,
1450 uint8_t *buf, size_t size)
1452 if ((hdr->flags & VIRTIO_NET_HDR_F_NEEDS_CSUM) && /* missing csum */
1453 (size > 27 && size < 1500) && /* normal sized MTU */
1454 (buf[12] == 0x08 && buf[13] == 0x00) && /* ethertype == IPv4 */
1455 (buf[23] == 17) && /* ip.protocol == UDP */
1456 (buf[34] == 0 && buf[35] == 67)) { /* udp.srcport == bootps */
1457 net_checksum_calculate(buf, size);
1458 hdr->flags &= ~VIRTIO_NET_HDR_F_NEEDS_CSUM;
1462 static void receive_header(VirtIONet *n, const struct iovec *iov, int iov_cnt,
1463 const void *buf, size_t size)
1465 if (n->has_vnet_hdr) {
1466 /* FIXME this cast is evil */
1467 void *wbuf = (void *)buf;
1468 work_around_broken_dhclient(wbuf, wbuf + n->host_hdr_len,
1469 size - n->host_hdr_len);
1471 if (n->needs_vnet_hdr_swap) {
1472 virtio_net_hdr_swap(VIRTIO_DEVICE(n), wbuf);
1474 iov_from_buf(iov, iov_cnt, 0, buf, sizeof(struct virtio_net_hdr));
1475 } else {
1476 struct virtio_net_hdr hdr = {
1477 .flags = 0,
1478 .gso_type = VIRTIO_NET_HDR_GSO_NONE
1480 iov_from_buf(iov, iov_cnt, 0, &hdr, sizeof hdr);
1484 static int receive_filter(VirtIONet *n, const uint8_t *buf, int size)
1486 static const uint8_t bcast[] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
1487 static const uint8_t vlan[] = {0x81, 0x00};
1488 uint8_t *ptr = (uint8_t *)buf;
1489 int i;
1491 if (n->promisc)
1492 return 1;
1494 ptr += n->host_hdr_len;
1496 if (!memcmp(&ptr[12], vlan, sizeof(vlan))) {
1497 int vid = lduw_be_p(ptr + 14) & 0xfff;
1498 if (!(n->vlans[vid >> 5] & (1U << (vid & 0x1f))))
1499 return 0;
1502 if (ptr[0] & 1) { // multicast
1503 if (!memcmp(ptr, bcast, sizeof(bcast))) {
1504 return !n->nobcast;
1505 } else if (n->nomulti) {
1506 return 0;
1507 } else if (n->allmulti || n->mac_table.multi_overflow) {
1508 return 1;
1511 for (i = n->mac_table.first_multi; i < n->mac_table.in_use; i++) {
1512 if (!memcmp(ptr, &n->mac_table.macs[i * ETH_ALEN], ETH_ALEN)) {
1513 return 1;
1516 } else { // unicast
1517 if (n->nouni) {
1518 return 0;
1519 } else if (n->alluni || n->mac_table.uni_overflow) {
1520 return 1;
1521 } else if (!memcmp(ptr, n->mac, ETH_ALEN)) {
1522 return 1;
1525 for (i = 0; i < n->mac_table.first_multi; i++) {
1526 if (!memcmp(ptr, &n->mac_table.macs[i * ETH_ALEN], ETH_ALEN)) {
1527 return 1;
1532 return 0;
1535 static uint8_t virtio_net_get_hash_type(bool isip4,
1536 bool isip6,
1537 bool isudp,
1538 bool istcp,
1539 uint32_t types)
1541 if (isip4) {
1542 if (istcp && (types & VIRTIO_NET_RSS_HASH_TYPE_TCPv4)) {
1543 return NetPktRssIpV4Tcp;
1545 if (isudp && (types & VIRTIO_NET_RSS_HASH_TYPE_UDPv4)) {
1546 return NetPktRssIpV4Udp;
1548 if (types & VIRTIO_NET_RSS_HASH_TYPE_IPv4) {
1549 return NetPktRssIpV4;
1551 } else if (isip6) {
1552 uint32_t mask = VIRTIO_NET_RSS_HASH_TYPE_TCP_EX |
1553 VIRTIO_NET_RSS_HASH_TYPE_TCPv6;
1555 if (istcp && (types & mask)) {
1556 return (types & VIRTIO_NET_RSS_HASH_TYPE_TCP_EX) ?
1557 NetPktRssIpV6TcpEx : NetPktRssIpV6Tcp;
1559 mask = VIRTIO_NET_RSS_HASH_TYPE_UDP_EX | VIRTIO_NET_RSS_HASH_TYPE_UDPv6;
1560 if (isudp && (types & mask)) {
1561 return (types & VIRTIO_NET_RSS_HASH_TYPE_UDP_EX) ?
1562 NetPktRssIpV6UdpEx : NetPktRssIpV6Udp;
1564 mask = VIRTIO_NET_RSS_HASH_TYPE_IP_EX | VIRTIO_NET_RSS_HASH_TYPE_IPv6;
1565 if (types & mask) {
1566 return (types & VIRTIO_NET_RSS_HASH_TYPE_IP_EX) ?
1567 NetPktRssIpV6Ex : NetPktRssIpV6;
1570 return 0xff;
1573 static void virtio_set_packet_hash(const uint8_t *buf, uint8_t report,
1574 uint32_t hash)
1576 struct virtio_net_hdr_v1_hash *hdr = (void *)buf;
1577 hdr->hash_value = hash;
1578 hdr->hash_report = report;
1581 static int virtio_net_process_rss(NetClientState *nc, const uint8_t *buf,
1582 size_t size)
1584 VirtIONet *n = qemu_get_nic_opaque(nc);
1585 unsigned int index = nc->queue_index, new_index = index;
1586 struct NetRxPkt *pkt = n->rx_pkt;
1587 uint8_t net_hash_type;
1588 uint32_t hash;
1589 bool isip4, isip6, isudp, istcp;
1590 static const uint8_t reports[NetPktRssIpV6UdpEx + 1] = {
1591 VIRTIO_NET_HASH_REPORT_IPv4,
1592 VIRTIO_NET_HASH_REPORT_TCPv4,
1593 VIRTIO_NET_HASH_REPORT_TCPv6,
1594 VIRTIO_NET_HASH_REPORT_IPv6,
1595 VIRTIO_NET_HASH_REPORT_IPv6_EX,
1596 VIRTIO_NET_HASH_REPORT_TCPv6_EX,
1597 VIRTIO_NET_HASH_REPORT_UDPv4,
1598 VIRTIO_NET_HASH_REPORT_UDPv6,
1599 VIRTIO_NET_HASH_REPORT_UDPv6_EX
1602 net_rx_pkt_set_protocols(pkt, buf + n->host_hdr_len,
1603 size - n->host_hdr_len);
1604 net_rx_pkt_get_protocols(pkt, &isip4, &isip6, &isudp, &istcp);
1605 if (isip4 && (net_rx_pkt_get_ip4_info(pkt)->fragment)) {
1606 istcp = isudp = false;
1608 if (isip6 && (net_rx_pkt_get_ip6_info(pkt)->fragment)) {
1609 istcp = isudp = false;
1611 net_hash_type = virtio_net_get_hash_type(isip4, isip6, isudp, istcp,
1612 n->rss_data.hash_types);
1613 if (net_hash_type > NetPktRssIpV6UdpEx) {
1614 if (n->rss_data.populate_hash) {
1615 virtio_set_packet_hash(buf, VIRTIO_NET_HASH_REPORT_NONE, 0);
1617 return n->rss_data.redirect ? n->rss_data.default_queue : -1;
1620 hash = net_rx_pkt_calc_rss_hash(pkt, net_hash_type, n->rss_data.key);
1622 if (n->rss_data.populate_hash) {
1623 virtio_set_packet_hash(buf, reports[net_hash_type], hash);
1626 if (n->rss_data.redirect) {
1627 new_index = hash & (n->rss_data.indirections_len - 1);
1628 new_index = n->rss_data.indirections_table[new_index];
1631 return (index == new_index) ? -1 : new_index;
1634 static ssize_t virtio_net_receive_rcu(NetClientState *nc, const uint8_t *buf,
1635 size_t size, bool no_rss)
1637 VirtIONet *n = qemu_get_nic_opaque(nc);
1638 VirtIONetQueue *q = virtio_net_get_subqueue(nc);
1639 VirtIODevice *vdev = VIRTIO_DEVICE(n);
1640 struct iovec mhdr_sg[VIRTQUEUE_MAX_SIZE];
1641 struct virtio_net_hdr_mrg_rxbuf mhdr;
1642 unsigned mhdr_cnt = 0;
1643 size_t offset, i, guest_offset;
1645 if (!virtio_net_can_receive(nc)) {
1646 return -1;
1649 if (!no_rss && n->rss_data.enabled) {
1650 int index = virtio_net_process_rss(nc, buf, size);
1651 if (index >= 0) {
1652 NetClientState *nc2 = qemu_get_subqueue(n->nic, index);
1653 return virtio_net_receive_rcu(nc2, buf, size, true);
1657 /* hdr_len refers to the header we supply to the guest */
1658 if (!virtio_net_has_buffers(q, size + n->guest_hdr_len - n->host_hdr_len)) {
1659 return 0;
1662 if (!receive_filter(n, buf, size))
1663 return size;
1665 offset = i = 0;
1667 while (offset < size) {
1668 VirtQueueElement *elem;
1669 int len, total;
1670 const struct iovec *sg;
1672 total = 0;
1674 elem = virtqueue_pop(q->rx_vq, sizeof(VirtQueueElement));
1675 if (!elem) {
1676 if (i) {
1677 virtio_error(vdev, "virtio-net unexpected empty queue: "
1678 "i %zd mergeable %d offset %zd, size %zd, "
1679 "guest hdr len %zd, host hdr len %zd "
1680 "guest features 0x%" PRIx64,
1681 i, n->mergeable_rx_bufs, offset, size,
1682 n->guest_hdr_len, n->host_hdr_len,
1683 vdev->guest_features);
1685 return -1;
1688 if (elem->in_num < 1) {
1689 virtio_error(vdev,
1690 "virtio-net receive queue contains no in buffers");
1691 virtqueue_detach_element(q->rx_vq, elem, 0);
1692 g_free(elem);
1693 return -1;
1696 sg = elem->in_sg;
1697 if (i == 0) {
1698 assert(offset == 0);
1699 if (n->mergeable_rx_bufs) {
1700 mhdr_cnt = iov_copy(mhdr_sg, ARRAY_SIZE(mhdr_sg),
1701 sg, elem->in_num,
1702 offsetof(typeof(mhdr), num_buffers),
1703 sizeof(mhdr.num_buffers));
1706 receive_header(n, sg, elem->in_num, buf, size);
1707 if (n->rss_data.populate_hash) {
1708 offset = sizeof(mhdr);
1709 iov_from_buf(sg, elem->in_num, offset,
1710 buf + offset, n->host_hdr_len - sizeof(mhdr));
1712 offset = n->host_hdr_len;
1713 total += n->guest_hdr_len;
1714 guest_offset = n->guest_hdr_len;
1715 } else {
1716 guest_offset = 0;
1719 /* copy in packet. ugh */
1720 len = iov_from_buf(sg, elem->in_num, guest_offset,
1721 buf + offset, size - offset);
1722 total += len;
1723 offset += len;
1724 /* If buffers can't be merged, at this point we
1725 * must have consumed the complete packet.
1726 * Otherwise, drop it. */
1727 if (!n->mergeable_rx_bufs && offset < size) {
1728 virtqueue_unpop(q->rx_vq, elem, total);
1729 g_free(elem);
1730 return size;
1733 /* signal other side */
1734 virtqueue_fill(q->rx_vq, elem, total, i++);
1735 g_free(elem);
1738 if (mhdr_cnt) {
1739 virtio_stw_p(vdev, &mhdr.num_buffers, i);
1740 iov_from_buf(mhdr_sg, mhdr_cnt,
1742 &mhdr.num_buffers, sizeof mhdr.num_buffers);
1745 virtqueue_flush(q->rx_vq, i);
1746 virtio_notify(vdev, q->rx_vq);
1748 return size;
1751 static ssize_t virtio_net_do_receive(NetClientState *nc, const uint8_t *buf,
1752 size_t size)
1754 RCU_READ_LOCK_GUARD();
1756 return virtio_net_receive_rcu(nc, buf, size, false);
1759 static void virtio_net_rsc_extract_unit4(VirtioNetRscChain *chain,
1760 const uint8_t *buf,
1761 VirtioNetRscUnit *unit)
1763 uint16_t ip_hdrlen;
1764 struct ip_header *ip;
1766 ip = (struct ip_header *)(buf + chain->n->guest_hdr_len
1767 + sizeof(struct eth_header));
1768 unit->ip = (void *)ip;
1769 ip_hdrlen = (ip->ip_ver_len & 0xF) << 2;
1770 unit->ip_plen = &ip->ip_len;
1771 unit->tcp = (struct tcp_header *)(((uint8_t *)unit->ip) + ip_hdrlen);
1772 unit->tcp_hdrlen = (htons(unit->tcp->th_offset_flags) & 0xF000) >> 10;
1773 unit->payload = htons(*unit->ip_plen) - ip_hdrlen - unit->tcp_hdrlen;
1776 static void virtio_net_rsc_extract_unit6(VirtioNetRscChain *chain,
1777 const uint8_t *buf,
1778 VirtioNetRscUnit *unit)
1780 struct ip6_header *ip6;
1782 ip6 = (struct ip6_header *)(buf + chain->n->guest_hdr_len
1783 + sizeof(struct eth_header));
1784 unit->ip = ip6;
1785 unit->ip_plen = &(ip6->ip6_ctlun.ip6_un1.ip6_un1_plen);
1786 unit->tcp = (struct tcp_header *)(((uint8_t *)unit->ip)
1787 + sizeof(struct ip6_header));
1788 unit->tcp_hdrlen = (htons(unit->tcp->th_offset_flags) & 0xF000) >> 10;
1790 /* There is a difference between payload lenght in ipv4 and v6,
1791 ip header is excluded in ipv6 */
1792 unit->payload = htons(*unit->ip_plen) - unit->tcp_hdrlen;
1795 static size_t virtio_net_rsc_drain_seg(VirtioNetRscChain *chain,
1796 VirtioNetRscSeg *seg)
1798 int ret;
1799 struct virtio_net_hdr_v1 *h;
1801 h = (struct virtio_net_hdr_v1 *)seg->buf;
1802 h->flags = 0;
1803 h->gso_type = VIRTIO_NET_HDR_GSO_NONE;
1805 if (seg->is_coalesced) {
1806 h->rsc.segments = seg->packets;
1807 h->rsc.dup_acks = seg->dup_ack;
1808 h->flags = VIRTIO_NET_HDR_F_RSC_INFO;
1809 if (chain->proto == ETH_P_IP) {
1810 h->gso_type = VIRTIO_NET_HDR_GSO_TCPV4;
1811 } else {
1812 h->gso_type = VIRTIO_NET_HDR_GSO_TCPV6;
1816 ret = virtio_net_do_receive(seg->nc, seg->buf, seg->size);
1817 QTAILQ_REMOVE(&chain->buffers, seg, next);
1818 g_free(seg->buf);
1819 g_free(seg);
1821 return ret;
1824 static void virtio_net_rsc_purge(void *opq)
1826 VirtioNetRscSeg *seg, *rn;
1827 VirtioNetRscChain *chain = (VirtioNetRscChain *)opq;
1829 QTAILQ_FOREACH_SAFE(seg, &chain->buffers, next, rn) {
1830 if (virtio_net_rsc_drain_seg(chain, seg) == 0) {
1831 chain->stat.purge_failed++;
1832 continue;
1836 chain->stat.timer++;
1837 if (!QTAILQ_EMPTY(&chain->buffers)) {
1838 timer_mod(chain->drain_timer,
1839 qemu_clock_get_ns(QEMU_CLOCK_HOST) + chain->n->rsc_timeout);
1843 static void virtio_net_rsc_cleanup(VirtIONet *n)
1845 VirtioNetRscChain *chain, *rn_chain;
1846 VirtioNetRscSeg *seg, *rn_seg;
1848 QTAILQ_FOREACH_SAFE(chain, &n->rsc_chains, next, rn_chain) {
1849 QTAILQ_FOREACH_SAFE(seg, &chain->buffers, next, rn_seg) {
1850 QTAILQ_REMOVE(&chain->buffers, seg, next);
1851 g_free(seg->buf);
1852 g_free(seg);
1855 timer_del(chain->drain_timer);
1856 timer_free(chain->drain_timer);
1857 QTAILQ_REMOVE(&n->rsc_chains, chain, next);
1858 g_free(chain);
1862 static void virtio_net_rsc_cache_buf(VirtioNetRscChain *chain,
1863 NetClientState *nc,
1864 const uint8_t *buf, size_t size)
1866 uint16_t hdr_len;
1867 VirtioNetRscSeg *seg;
1869 hdr_len = chain->n->guest_hdr_len;
1870 seg = g_malloc(sizeof(VirtioNetRscSeg));
1871 seg->buf = g_malloc(hdr_len + sizeof(struct eth_header)
1872 + sizeof(struct ip6_header) + VIRTIO_NET_MAX_TCP_PAYLOAD);
1873 memcpy(seg->buf, buf, size);
1874 seg->size = size;
1875 seg->packets = 1;
1876 seg->dup_ack = 0;
1877 seg->is_coalesced = 0;
1878 seg->nc = nc;
1880 QTAILQ_INSERT_TAIL(&chain->buffers, seg, next);
1881 chain->stat.cache++;
1883 switch (chain->proto) {
1884 case ETH_P_IP:
1885 virtio_net_rsc_extract_unit4(chain, seg->buf, &seg->unit);
1886 break;
1887 case ETH_P_IPV6:
1888 virtio_net_rsc_extract_unit6(chain, seg->buf, &seg->unit);
1889 break;
1890 default:
1891 g_assert_not_reached();
1895 static int32_t virtio_net_rsc_handle_ack(VirtioNetRscChain *chain,
1896 VirtioNetRscSeg *seg,
1897 const uint8_t *buf,
1898 struct tcp_header *n_tcp,
1899 struct tcp_header *o_tcp)
1901 uint32_t nack, oack;
1902 uint16_t nwin, owin;
1904 nack = htonl(n_tcp->th_ack);
1905 nwin = htons(n_tcp->th_win);
1906 oack = htonl(o_tcp->th_ack);
1907 owin = htons(o_tcp->th_win);
1909 if ((nack - oack) >= VIRTIO_NET_MAX_TCP_PAYLOAD) {
1910 chain->stat.ack_out_of_win++;
1911 return RSC_FINAL;
1912 } else if (nack == oack) {
1913 /* duplicated ack or window probe */
1914 if (nwin == owin) {
1915 /* duplicated ack, add dup ack count due to whql test up to 1 */
1916 chain->stat.dup_ack++;
1917 return RSC_FINAL;
1918 } else {
1919 /* Coalesce window update */
1920 o_tcp->th_win = n_tcp->th_win;
1921 chain->stat.win_update++;
1922 return RSC_COALESCE;
1924 } else {
1925 /* pure ack, go to 'C', finalize*/
1926 chain->stat.pure_ack++;
1927 return RSC_FINAL;
1931 static int32_t virtio_net_rsc_coalesce_data(VirtioNetRscChain *chain,
1932 VirtioNetRscSeg *seg,
1933 const uint8_t *buf,
1934 VirtioNetRscUnit *n_unit)
1936 void *data;
1937 uint16_t o_ip_len;
1938 uint32_t nseq, oseq;
1939 VirtioNetRscUnit *o_unit;
1941 o_unit = &seg->unit;
1942 o_ip_len = htons(*o_unit->ip_plen);
1943 nseq = htonl(n_unit->tcp->th_seq);
1944 oseq = htonl(o_unit->tcp->th_seq);
1946 /* out of order or retransmitted. */
1947 if ((nseq - oseq) > VIRTIO_NET_MAX_TCP_PAYLOAD) {
1948 chain->stat.data_out_of_win++;
1949 return RSC_FINAL;
1952 data = ((uint8_t *)n_unit->tcp) + n_unit->tcp_hdrlen;
1953 if (nseq == oseq) {
1954 if ((o_unit->payload == 0) && n_unit->payload) {
1955 /* From no payload to payload, normal case, not a dup ack or etc */
1956 chain->stat.data_after_pure_ack++;
1957 goto coalesce;
1958 } else {
1959 return virtio_net_rsc_handle_ack(chain, seg, buf,
1960 n_unit->tcp, o_unit->tcp);
1962 } else if ((nseq - oseq) != o_unit->payload) {
1963 /* Not a consistent packet, out of order */
1964 chain->stat.data_out_of_order++;
1965 return RSC_FINAL;
1966 } else {
1967 coalesce:
1968 if ((o_ip_len + n_unit->payload) > chain->max_payload) {
1969 chain->stat.over_size++;
1970 return RSC_FINAL;
1973 /* Here comes the right data, the payload length in v4/v6 is different,
1974 so use the field value to update and record the new data len */
1975 o_unit->payload += n_unit->payload; /* update new data len */
1977 /* update field in ip header */
1978 *o_unit->ip_plen = htons(o_ip_len + n_unit->payload);
1980 /* Bring 'PUSH' big, the whql test guide says 'PUSH' can be coalesced
1981 for windows guest, while this may change the behavior for linux
1982 guest (only if it uses RSC feature). */
1983 o_unit->tcp->th_offset_flags = n_unit->tcp->th_offset_flags;
1985 o_unit->tcp->th_ack = n_unit->tcp->th_ack;
1986 o_unit->tcp->th_win = n_unit->tcp->th_win;
1988 memmove(seg->buf + seg->size, data, n_unit->payload);
1989 seg->size += n_unit->payload;
1990 seg->packets++;
1991 chain->stat.coalesced++;
1992 return RSC_COALESCE;
1996 static int32_t virtio_net_rsc_coalesce4(VirtioNetRscChain *chain,
1997 VirtioNetRscSeg *seg,
1998 const uint8_t *buf, size_t size,
1999 VirtioNetRscUnit *unit)
2001 struct ip_header *ip1, *ip2;
2003 ip1 = (struct ip_header *)(unit->ip);
2004 ip2 = (struct ip_header *)(seg->unit.ip);
2005 if ((ip1->ip_src ^ ip2->ip_src) || (ip1->ip_dst ^ ip2->ip_dst)
2006 || (unit->tcp->th_sport ^ seg->unit.tcp->th_sport)
2007 || (unit->tcp->th_dport ^ seg->unit.tcp->th_dport)) {
2008 chain->stat.no_match++;
2009 return RSC_NO_MATCH;
2012 return virtio_net_rsc_coalesce_data(chain, seg, buf, unit);
2015 static int32_t virtio_net_rsc_coalesce6(VirtioNetRscChain *chain,
2016 VirtioNetRscSeg *seg,
2017 const uint8_t *buf, size_t size,
2018 VirtioNetRscUnit *unit)
2020 struct ip6_header *ip1, *ip2;
2022 ip1 = (struct ip6_header *)(unit->ip);
2023 ip2 = (struct ip6_header *)(seg->unit.ip);
2024 if (memcmp(&ip1->ip6_src, &ip2->ip6_src, sizeof(struct in6_address))
2025 || memcmp(&ip1->ip6_dst, &ip2->ip6_dst, sizeof(struct in6_address))
2026 || (unit->tcp->th_sport ^ seg->unit.tcp->th_sport)
2027 || (unit->tcp->th_dport ^ seg->unit.tcp->th_dport)) {
2028 chain->stat.no_match++;
2029 return RSC_NO_MATCH;
2032 return virtio_net_rsc_coalesce_data(chain, seg, buf, unit);
2035 /* Packets with 'SYN' should bypass, other flag should be sent after drain
2036 * to prevent out of order */
2037 static int virtio_net_rsc_tcp_ctrl_check(VirtioNetRscChain *chain,
2038 struct tcp_header *tcp)
2040 uint16_t tcp_hdr;
2041 uint16_t tcp_flag;
2043 tcp_flag = htons(tcp->th_offset_flags);
2044 tcp_hdr = (tcp_flag & VIRTIO_NET_TCP_HDR_LENGTH) >> 10;
2045 tcp_flag &= VIRTIO_NET_TCP_FLAG;
2046 if (tcp_flag & TH_SYN) {
2047 chain->stat.tcp_syn++;
2048 return RSC_BYPASS;
2051 if (tcp_flag & (TH_FIN | TH_URG | TH_RST | TH_ECE | TH_CWR)) {
2052 chain->stat.tcp_ctrl_drain++;
2053 return RSC_FINAL;
2056 if (tcp_hdr > sizeof(struct tcp_header)) {
2057 chain->stat.tcp_all_opt++;
2058 return RSC_FINAL;
2061 return RSC_CANDIDATE;
2064 static size_t virtio_net_rsc_do_coalesce(VirtioNetRscChain *chain,
2065 NetClientState *nc,
2066 const uint8_t *buf, size_t size,
2067 VirtioNetRscUnit *unit)
2069 int ret;
2070 VirtioNetRscSeg *seg, *nseg;
2072 if (QTAILQ_EMPTY(&chain->buffers)) {
2073 chain->stat.empty_cache++;
2074 virtio_net_rsc_cache_buf(chain, nc, buf, size);
2075 timer_mod(chain->drain_timer,
2076 qemu_clock_get_ns(QEMU_CLOCK_HOST) + chain->n->rsc_timeout);
2077 return size;
2080 QTAILQ_FOREACH_SAFE(seg, &chain->buffers, next, nseg) {
2081 if (chain->proto == ETH_P_IP) {
2082 ret = virtio_net_rsc_coalesce4(chain, seg, buf, size, unit);
2083 } else {
2084 ret = virtio_net_rsc_coalesce6(chain, seg, buf, size, unit);
2087 if (ret == RSC_FINAL) {
2088 if (virtio_net_rsc_drain_seg(chain, seg) == 0) {
2089 /* Send failed */
2090 chain->stat.final_failed++;
2091 return 0;
2094 /* Send current packet */
2095 return virtio_net_do_receive(nc, buf, size);
2096 } else if (ret == RSC_NO_MATCH) {
2097 continue;
2098 } else {
2099 /* Coalesced, mark coalesced flag to tell calc cksum for ipv4 */
2100 seg->is_coalesced = 1;
2101 return size;
2105 chain->stat.no_match_cache++;
2106 virtio_net_rsc_cache_buf(chain, nc, buf, size);
2107 return size;
2110 /* Drain a connection data, this is to avoid out of order segments */
2111 static size_t virtio_net_rsc_drain_flow(VirtioNetRscChain *chain,
2112 NetClientState *nc,
2113 const uint8_t *buf, size_t size,
2114 uint16_t ip_start, uint16_t ip_size,
2115 uint16_t tcp_port)
2117 VirtioNetRscSeg *seg, *nseg;
2118 uint32_t ppair1, ppair2;
2120 ppair1 = *(uint32_t *)(buf + tcp_port);
2121 QTAILQ_FOREACH_SAFE(seg, &chain->buffers, next, nseg) {
2122 ppair2 = *(uint32_t *)(seg->buf + tcp_port);
2123 if (memcmp(buf + ip_start, seg->buf + ip_start, ip_size)
2124 || (ppair1 != ppair2)) {
2125 continue;
2127 if (virtio_net_rsc_drain_seg(chain, seg) == 0) {
2128 chain->stat.drain_failed++;
2131 break;
2134 return virtio_net_do_receive(nc, buf, size);
2137 static int32_t virtio_net_rsc_sanity_check4(VirtioNetRscChain *chain,
2138 struct ip_header *ip,
2139 const uint8_t *buf, size_t size)
2141 uint16_t ip_len;
2143 /* Not an ipv4 packet */
2144 if (((ip->ip_ver_len & 0xF0) >> 4) != IP_HEADER_VERSION_4) {
2145 chain->stat.ip_option++;
2146 return RSC_BYPASS;
2149 /* Don't handle packets with ip option */
2150 if ((ip->ip_ver_len & 0xF) != VIRTIO_NET_IP4_HEADER_LENGTH) {
2151 chain->stat.ip_option++;
2152 return RSC_BYPASS;
2155 if (ip->ip_p != IPPROTO_TCP) {
2156 chain->stat.bypass_not_tcp++;
2157 return RSC_BYPASS;
2160 /* Don't handle packets with ip fragment */
2161 if (!(htons(ip->ip_off) & IP_DF)) {
2162 chain->stat.ip_frag++;
2163 return RSC_BYPASS;
2166 /* Don't handle packets with ecn flag */
2167 if (IPTOS_ECN(ip->ip_tos)) {
2168 chain->stat.ip_ecn++;
2169 return RSC_BYPASS;
2172 ip_len = htons(ip->ip_len);
2173 if (ip_len < (sizeof(struct ip_header) + sizeof(struct tcp_header))
2174 || ip_len > (size - chain->n->guest_hdr_len -
2175 sizeof(struct eth_header))) {
2176 chain->stat.ip_hacked++;
2177 return RSC_BYPASS;
2180 return RSC_CANDIDATE;
2183 static size_t virtio_net_rsc_receive4(VirtioNetRscChain *chain,
2184 NetClientState *nc,
2185 const uint8_t *buf, size_t size)
2187 int32_t ret;
2188 uint16_t hdr_len;
2189 VirtioNetRscUnit unit;
2191 hdr_len = ((VirtIONet *)(chain->n))->guest_hdr_len;
2193 if (size < (hdr_len + sizeof(struct eth_header) + sizeof(struct ip_header)
2194 + sizeof(struct tcp_header))) {
2195 chain->stat.bypass_not_tcp++;
2196 return virtio_net_do_receive(nc, buf, size);
2199 virtio_net_rsc_extract_unit4(chain, buf, &unit);
2200 if (virtio_net_rsc_sanity_check4(chain, unit.ip, buf, size)
2201 != RSC_CANDIDATE) {
2202 return virtio_net_do_receive(nc, buf, size);
2205 ret = virtio_net_rsc_tcp_ctrl_check(chain, unit.tcp);
2206 if (ret == RSC_BYPASS) {
2207 return virtio_net_do_receive(nc, buf, size);
2208 } else if (ret == RSC_FINAL) {
2209 return virtio_net_rsc_drain_flow(chain, nc, buf, size,
2210 ((hdr_len + sizeof(struct eth_header)) + 12),
2211 VIRTIO_NET_IP4_ADDR_SIZE,
2212 hdr_len + sizeof(struct eth_header) + sizeof(struct ip_header));
2215 return virtio_net_rsc_do_coalesce(chain, nc, buf, size, &unit);
2218 static int32_t virtio_net_rsc_sanity_check6(VirtioNetRscChain *chain,
2219 struct ip6_header *ip6,
2220 const uint8_t *buf, size_t size)
2222 uint16_t ip_len;
2224 if (((ip6->ip6_ctlun.ip6_un1.ip6_un1_flow & 0xF0) >> 4)
2225 != IP_HEADER_VERSION_6) {
2226 return RSC_BYPASS;
2229 /* Both option and protocol is checked in this */
2230 if (ip6->ip6_ctlun.ip6_un1.ip6_un1_nxt != IPPROTO_TCP) {
2231 chain->stat.bypass_not_tcp++;
2232 return RSC_BYPASS;
2235 ip_len = htons(ip6->ip6_ctlun.ip6_un1.ip6_un1_plen);
2236 if (ip_len < sizeof(struct tcp_header) ||
2237 ip_len > (size - chain->n->guest_hdr_len - sizeof(struct eth_header)
2238 - sizeof(struct ip6_header))) {
2239 chain->stat.ip_hacked++;
2240 return RSC_BYPASS;
2243 /* Don't handle packets with ecn flag */
2244 if (IP6_ECN(ip6->ip6_ctlun.ip6_un3.ip6_un3_ecn)) {
2245 chain->stat.ip_ecn++;
2246 return RSC_BYPASS;
2249 return RSC_CANDIDATE;
2252 static size_t virtio_net_rsc_receive6(void *opq, NetClientState *nc,
2253 const uint8_t *buf, size_t size)
2255 int32_t ret;
2256 uint16_t hdr_len;
2257 VirtioNetRscChain *chain;
2258 VirtioNetRscUnit unit;
2260 chain = (VirtioNetRscChain *)opq;
2261 hdr_len = ((VirtIONet *)(chain->n))->guest_hdr_len;
2263 if (size < (hdr_len + sizeof(struct eth_header) + sizeof(struct ip6_header)
2264 + sizeof(tcp_header))) {
2265 return virtio_net_do_receive(nc, buf, size);
2268 virtio_net_rsc_extract_unit6(chain, buf, &unit);
2269 if (RSC_CANDIDATE != virtio_net_rsc_sanity_check6(chain,
2270 unit.ip, buf, size)) {
2271 return virtio_net_do_receive(nc, buf, size);
2274 ret = virtio_net_rsc_tcp_ctrl_check(chain, unit.tcp);
2275 if (ret == RSC_BYPASS) {
2276 return virtio_net_do_receive(nc, buf, size);
2277 } else if (ret == RSC_FINAL) {
2278 return virtio_net_rsc_drain_flow(chain, nc, buf, size,
2279 ((hdr_len + sizeof(struct eth_header)) + 8),
2280 VIRTIO_NET_IP6_ADDR_SIZE,
2281 hdr_len + sizeof(struct eth_header)
2282 + sizeof(struct ip6_header));
2285 return virtio_net_rsc_do_coalesce(chain, nc, buf, size, &unit);
2288 static VirtioNetRscChain *virtio_net_rsc_lookup_chain(VirtIONet *n,
2289 NetClientState *nc,
2290 uint16_t proto)
2292 VirtioNetRscChain *chain;
2294 if ((proto != (uint16_t)ETH_P_IP) && (proto != (uint16_t)ETH_P_IPV6)) {
2295 return NULL;
2298 QTAILQ_FOREACH(chain, &n->rsc_chains, next) {
2299 if (chain->proto == proto) {
2300 return chain;
2304 chain = g_malloc(sizeof(*chain));
2305 chain->n = n;
2306 chain->proto = proto;
2307 if (proto == (uint16_t)ETH_P_IP) {
2308 chain->max_payload = VIRTIO_NET_MAX_IP4_PAYLOAD;
2309 chain->gso_type = VIRTIO_NET_HDR_GSO_TCPV4;
2310 } else {
2311 chain->max_payload = VIRTIO_NET_MAX_IP6_PAYLOAD;
2312 chain->gso_type = VIRTIO_NET_HDR_GSO_TCPV6;
2314 chain->drain_timer = timer_new_ns(QEMU_CLOCK_HOST,
2315 virtio_net_rsc_purge, chain);
2316 memset(&chain->stat, 0, sizeof(chain->stat));
2318 QTAILQ_INIT(&chain->buffers);
2319 QTAILQ_INSERT_TAIL(&n->rsc_chains, chain, next);
2321 return chain;
2324 static ssize_t virtio_net_rsc_receive(NetClientState *nc,
2325 const uint8_t *buf,
2326 size_t size)
2328 uint16_t proto;
2329 VirtioNetRscChain *chain;
2330 struct eth_header *eth;
2331 VirtIONet *n;
2333 n = qemu_get_nic_opaque(nc);
2334 if (size < (n->host_hdr_len + sizeof(struct eth_header))) {
2335 return virtio_net_do_receive(nc, buf, size);
2338 eth = (struct eth_header *)(buf + n->guest_hdr_len);
2339 proto = htons(eth->h_proto);
2341 chain = virtio_net_rsc_lookup_chain(n, nc, proto);
2342 if (chain) {
2343 chain->stat.received++;
2344 if (proto == (uint16_t)ETH_P_IP && n->rsc4_enabled) {
2345 return virtio_net_rsc_receive4(chain, nc, buf, size);
2346 } else if (proto == (uint16_t)ETH_P_IPV6 && n->rsc6_enabled) {
2347 return virtio_net_rsc_receive6(chain, nc, buf, size);
2350 return virtio_net_do_receive(nc, buf, size);
2353 static ssize_t virtio_net_receive(NetClientState *nc, const uint8_t *buf,
2354 size_t size)
2356 VirtIONet *n = qemu_get_nic_opaque(nc);
2357 if ((n->rsc4_enabled || n->rsc6_enabled)) {
2358 return virtio_net_rsc_receive(nc, buf, size);
2359 } else {
2360 return virtio_net_do_receive(nc, buf, size);
2364 static int32_t virtio_net_flush_tx(VirtIONetQueue *q);
2366 static void virtio_net_tx_complete(NetClientState *nc, ssize_t len)
2368 VirtIONet *n = qemu_get_nic_opaque(nc);
2369 VirtIONetQueue *q = virtio_net_get_subqueue(nc);
2370 VirtIODevice *vdev = VIRTIO_DEVICE(n);
2372 virtqueue_push(q->tx_vq, q->async_tx.elem, 0);
2373 virtio_notify(vdev, q->tx_vq);
2375 g_free(q->async_tx.elem);
2376 q->async_tx.elem = NULL;
2378 virtio_queue_set_notification(q->tx_vq, 1);
2379 virtio_net_flush_tx(q);
2382 /* TX */
2383 static int32_t virtio_net_flush_tx(VirtIONetQueue *q)
2385 VirtIONet *n = q->n;
2386 VirtIODevice *vdev = VIRTIO_DEVICE(n);
2387 VirtQueueElement *elem;
2388 int32_t num_packets = 0;
2389 int queue_index = vq2q(virtio_get_queue_index(q->tx_vq));
2390 if (!(vdev->status & VIRTIO_CONFIG_S_DRIVER_OK)) {
2391 return num_packets;
2394 if (q->async_tx.elem) {
2395 virtio_queue_set_notification(q->tx_vq, 0);
2396 return num_packets;
2399 for (;;) {
2400 ssize_t ret;
2401 unsigned int out_num;
2402 struct iovec sg[VIRTQUEUE_MAX_SIZE], sg2[VIRTQUEUE_MAX_SIZE + 1], *out_sg;
2403 struct virtio_net_hdr_mrg_rxbuf mhdr;
2405 elem = virtqueue_pop(q->tx_vq, sizeof(VirtQueueElement));
2406 if (!elem) {
2407 break;
2410 out_num = elem->out_num;
2411 out_sg = elem->out_sg;
2412 if (out_num < 1) {
2413 virtio_error(vdev, "virtio-net header not in first element");
2414 virtqueue_detach_element(q->tx_vq, elem, 0);
2415 g_free(elem);
2416 return -EINVAL;
2419 if (n->has_vnet_hdr) {
2420 if (iov_to_buf(out_sg, out_num, 0, &mhdr, n->guest_hdr_len) <
2421 n->guest_hdr_len) {
2422 virtio_error(vdev, "virtio-net header incorrect");
2423 virtqueue_detach_element(q->tx_vq, elem, 0);
2424 g_free(elem);
2425 return -EINVAL;
2427 if (n->needs_vnet_hdr_swap) {
2428 virtio_net_hdr_swap(vdev, (void *) &mhdr);
2429 sg2[0].iov_base = &mhdr;
2430 sg2[0].iov_len = n->guest_hdr_len;
2431 out_num = iov_copy(&sg2[1], ARRAY_SIZE(sg2) - 1,
2432 out_sg, out_num,
2433 n->guest_hdr_len, -1);
2434 if (out_num == VIRTQUEUE_MAX_SIZE) {
2435 goto drop;
2437 out_num += 1;
2438 out_sg = sg2;
2442 * If host wants to see the guest header as is, we can
2443 * pass it on unchanged. Otherwise, copy just the parts
2444 * that host is interested in.
2446 assert(n->host_hdr_len <= n->guest_hdr_len);
2447 if (n->host_hdr_len != n->guest_hdr_len) {
2448 unsigned sg_num = iov_copy(sg, ARRAY_SIZE(sg),
2449 out_sg, out_num,
2450 0, n->host_hdr_len);
2451 sg_num += iov_copy(sg + sg_num, ARRAY_SIZE(sg) - sg_num,
2452 out_sg, out_num,
2453 n->guest_hdr_len, -1);
2454 out_num = sg_num;
2455 out_sg = sg;
2458 ret = qemu_sendv_packet_async(qemu_get_subqueue(n->nic, queue_index),
2459 out_sg, out_num, virtio_net_tx_complete);
2460 if (ret == 0) {
2461 virtio_queue_set_notification(q->tx_vq, 0);
2462 q->async_tx.elem = elem;
2463 return -EBUSY;
2466 drop:
2467 virtqueue_push(q->tx_vq, elem, 0);
2468 virtio_notify(vdev, q->tx_vq);
2469 g_free(elem);
2471 if (++num_packets >= n->tx_burst) {
2472 break;
2475 return num_packets;
2478 static void virtio_net_handle_tx_timer(VirtIODevice *vdev, VirtQueue *vq)
2480 VirtIONet *n = VIRTIO_NET(vdev);
2481 VirtIONetQueue *q = &n->vqs[vq2q(virtio_get_queue_index(vq))];
2483 if (unlikely((n->status & VIRTIO_NET_S_LINK_UP) == 0)) {
2484 virtio_net_drop_tx_queue_data(vdev, vq);
2485 return;
2488 /* This happens when device was stopped but VCPU wasn't. */
2489 if (!vdev->vm_running) {
2490 q->tx_waiting = 1;
2491 return;
2494 if (q->tx_waiting) {
2495 virtio_queue_set_notification(vq, 1);
2496 timer_del(q->tx_timer);
2497 q->tx_waiting = 0;
2498 if (virtio_net_flush_tx(q) == -EINVAL) {
2499 return;
2501 } else {
2502 timer_mod(q->tx_timer,
2503 qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) + n->tx_timeout);
2504 q->tx_waiting = 1;
2505 virtio_queue_set_notification(vq, 0);
2509 static void virtio_net_handle_tx_bh(VirtIODevice *vdev, VirtQueue *vq)
2511 VirtIONet *n = VIRTIO_NET(vdev);
2512 VirtIONetQueue *q = &n->vqs[vq2q(virtio_get_queue_index(vq))];
2514 if (unlikely((n->status & VIRTIO_NET_S_LINK_UP) == 0)) {
2515 virtio_net_drop_tx_queue_data(vdev, vq);
2516 return;
2519 if (unlikely(q->tx_waiting)) {
2520 return;
2522 q->tx_waiting = 1;
2523 /* This happens when device was stopped but VCPU wasn't. */
2524 if (!vdev->vm_running) {
2525 return;
2527 virtio_queue_set_notification(vq, 0);
2528 qemu_bh_schedule(q->tx_bh);
2531 static void virtio_net_tx_timer(void *opaque)
2533 VirtIONetQueue *q = opaque;
2534 VirtIONet *n = q->n;
2535 VirtIODevice *vdev = VIRTIO_DEVICE(n);
2536 /* This happens when device was stopped but BH wasn't. */
2537 if (!vdev->vm_running) {
2538 /* Make sure tx waiting is set, so we'll run when restarted. */
2539 assert(q->tx_waiting);
2540 return;
2543 q->tx_waiting = 0;
2545 /* Just in case the driver is not ready on more */
2546 if (!(vdev->status & VIRTIO_CONFIG_S_DRIVER_OK)) {
2547 return;
2550 virtio_queue_set_notification(q->tx_vq, 1);
2551 virtio_net_flush_tx(q);
2554 static void virtio_net_tx_bh(void *opaque)
2556 VirtIONetQueue *q = opaque;
2557 VirtIONet *n = q->n;
2558 VirtIODevice *vdev = VIRTIO_DEVICE(n);
2559 int32_t ret;
2561 /* This happens when device was stopped but BH wasn't. */
2562 if (!vdev->vm_running) {
2563 /* Make sure tx waiting is set, so we'll run when restarted. */
2564 assert(q->tx_waiting);
2565 return;
2568 q->tx_waiting = 0;
2570 /* Just in case the driver is not ready on more */
2571 if (unlikely(!(vdev->status & VIRTIO_CONFIG_S_DRIVER_OK))) {
2572 return;
2575 ret = virtio_net_flush_tx(q);
2576 if (ret == -EBUSY || ret == -EINVAL) {
2577 return; /* Notification re-enable handled by tx_complete or device
2578 * broken */
2581 /* If we flush a full burst of packets, assume there are
2582 * more coming and immediately reschedule */
2583 if (ret >= n->tx_burst) {
2584 qemu_bh_schedule(q->tx_bh);
2585 q->tx_waiting = 1;
2586 return;
2589 /* If less than a full burst, re-enable notification and flush
2590 * anything that may have come in while we weren't looking. If
2591 * we find something, assume the guest is still active and reschedule */
2592 virtio_queue_set_notification(q->tx_vq, 1);
2593 ret = virtio_net_flush_tx(q);
2594 if (ret == -EINVAL) {
2595 return;
2596 } else if (ret > 0) {
2597 virtio_queue_set_notification(q->tx_vq, 0);
2598 qemu_bh_schedule(q->tx_bh);
2599 q->tx_waiting = 1;
2603 static void virtio_net_add_queue(VirtIONet *n, int index)
2605 VirtIODevice *vdev = VIRTIO_DEVICE(n);
2607 n->vqs[index].rx_vq = virtio_add_queue(vdev, n->net_conf.rx_queue_size,
2608 virtio_net_handle_rx);
2610 if (n->net_conf.tx && !strcmp(n->net_conf.tx, "timer")) {
2611 n->vqs[index].tx_vq =
2612 virtio_add_queue(vdev, n->net_conf.tx_queue_size,
2613 virtio_net_handle_tx_timer);
2614 n->vqs[index].tx_timer = timer_new_ns(QEMU_CLOCK_VIRTUAL,
2615 virtio_net_tx_timer,
2616 &n->vqs[index]);
2617 } else {
2618 n->vqs[index].tx_vq =
2619 virtio_add_queue(vdev, n->net_conf.tx_queue_size,
2620 virtio_net_handle_tx_bh);
2621 n->vqs[index].tx_bh = qemu_bh_new(virtio_net_tx_bh, &n->vqs[index]);
2624 n->vqs[index].tx_waiting = 0;
2625 n->vqs[index].n = n;
2628 static void virtio_net_del_queue(VirtIONet *n, int index)
2630 VirtIODevice *vdev = VIRTIO_DEVICE(n);
2631 VirtIONetQueue *q = &n->vqs[index];
2632 NetClientState *nc = qemu_get_subqueue(n->nic, index);
2634 qemu_purge_queued_packets(nc);
2636 virtio_del_queue(vdev, index * 2);
2637 if (q->tx_timer) {
2638 timer_del(q->tx_timer);
2639 timer_free(q->tx_timer);
2640 q->tx_timer = NULL;
2641 } else {
2642 qemu_bh_delete(q->tx_bh);
2643 q->tx_bh = NULL;
2645 q->tx_waiting = 0;
2646 virtio_del_queue(vdev, index * 2 + 1);
2649 static void virtio_net_change_num_queues(VirtIONet *n, int new_max_queues)
2651 VirtIODevice *vdev = VIRTIO_DEVICE(n);
2652 int old_num_queues = virtio_get_num_queues(vdev);
2653 int new_num_queues = new_max_queues * 2 + 1;
2654 int i;
2656 assert(old_num_queues >= 3);
2657 assert(old_num_queues % 2 == 1);
2659 if (old_num_queues == new_num_queues) {
2660 return;
2664 * We always need to remove and add ctrl vq if
2665 * old_num_queues != new_num_queues. Remove ctrl_vq first,
2666 * and then we only enter one of the following two loops.
2668 virtio_del_queue(vdev, old_num_queues - 1);
2670 for (i = new_num_queues - 1; i < old_num_queues - 1; i += 2) {
2671 /* new_num_queues < old_num_queues */
2672 virtio_net_del_queue(n, i / 2);
2675 for (i = old_num_queues - 1; i < new_num_queues - 1; i += 2) {
2676 /* new_num_queues > old_num_queues */
2677 virtio_net_add_queue(n, i / 2);
2680 /* add ctrl_vq last */
2681 n->ctrl_vq = virtio_add_queue(vdev, 64, virtio_net_handle_ctrl);
2684 static void virtio_net_set_multiqueue(VirtIONet *n, int multiqueue)
2686 int max = multiqueue ? n->max_queues : 1;
2688 n->multiqueue = multiqueue;
2689 virtio_net_change_num_queues(n, max);
2691 virtio_net_set_queues(n);
2694 static int virtio_net_post_load_device(void *opaque, int version_id)
2696 VirtIONet *n = opaque;
2697 VirtIODevice *vdev = VIRTIO_DEVICE(n);
2698 int i, link_down;
2700 trace_virtio_net_post_load_device();
2701 virtio_net_set_mrg_rx_bufs(n, n->mergeable_rx_bufs,
2702 virtio_vdev_has_feature(vdev,
2703 VIRTIO_F_VERSION_1),
2704 virtio_vdev_has_feature(vdev,
2705 VIRTIO_NET_F_HASH_REPORT));
2707 /* MAC_TABLE_ENTRIES may be different from the saved image */
2708 if (n->mac_table.in_use > MAC_TABLE_ENTRIES) {
2709 n->mac_table.in_use = 0;
2712 if (!virtio_vdev_has_feature(vdev, VIRTIO_NET_F_CTRL_GUEST_OFFLOADS)) {
2713 n->curr_guest_offloads = virtio_net_supported_guest_offloads(n);
2717 * curr_guest_offloads will be later overwritten by the
2718 * virtio_set_features_nocheck call done from the virtio_load.
2719 * Here we make sure it is preserved and restored accordingly
2720 * in the virtio_net_post_load_virtio callback.
2722 n->saved_guest_offloads = n->curr_guest_offloads;
2724 virtio_net_set_queues(n);
2726 /* Find the first multicast entry in the saved MAC filter */
2727 for (i = 0; i < n->mac_table.in_use; i++) {
2728 if (n->mac_table.macs[i * ETH_ALEN] & 1) {
2729 break;
2732 n->mac_table.first_multi = i;
2734 /* nc.link_down can't be migrated, so infer link_down according
2735 * to link status bit in n->status */
2736 link_down = (n->status & VIRTIO_NET_S_LINK_UP) == 0;
2737 for (i = 0; i < n->max_queues; i++) {
2738 qemu_get_subqueue(n->nic, i)->link_down = link_down;
2741 if (virtio_vdev_has_feature(vdev, VIRTIO_NET_F_GUEST_ANNOUNCE) &&
2742 virtio_vdev_has_feature(vdev, VIRTIO_NET_F_CTRL_VQ)) {
2743 qemu_announce_timer_reset(&n->announce_timer, migrate_announce_params(),
2744 QEMU_CLOCK_VIRTUAL,
2745 virtio_net_announce_timer, n);
2746 if (n->announce_timer.round) {
2747 timer_mod(n->announce_timer.tm,
2748 qemu_clock_get_ms(n->announce_timer.type));
2749 } else {
2750 qemu_announce_timer_del(&n->announce_timer, false);
2754 if (n->rss_data.enabled) {
2755 trace_virtio_net_rss_enable(n->rss_data.hash_types,
2756 n->rss_data.indirections_len,
2757 sizeof(n->rss_data.key));
2758 } else {
2759 trace_virtio_net_rss_disable();
2761 return 0;
2764 static int virtio_net_post_load_virtio(VirtIODevice *vdev)
2766 VirtIONet *n = VIRTIO_NET(vdev);
2768 * The actual needed state is now in saved_guest_offloads,
2769 * see virtio_net_post_load_device for detail.
2770 * Restore it back and apply the desired offloads.
2772 n->curr_guest_offloads = n->saved_guest_offloads;
2773 if (peer_has_vnet_hdr(n)) {
2774 virtio_net_apply_guest_offloads(n);
2777 return 0;
2780 /* tx_waiting field of a VirtIONetQueue */
2781 static const VMStateDescription vmstate_virtio_net_queue_tx_waiting = {
2782 .name = "virtio-net-queue-tx_waiting",
2783 .fields = (VMStateField[]) {
2784 VMSTATE_UINT32(tx_waiting, VirtIONetQueue),
2785 VMSTATE_END_OF_LIST()
2789 static bool max_queues_gt_1(void *opaque, int version_id)
2791 return VIRTIO_NET(opaque)->max_queues > 1;
2794 static bool has_ctrl_guest_offloads(void *opaque, int version_id)
2796 return virtio_vdev_has_feature(VIRTIO_DEVICE(opaque),
2797 VIRTIO_NET_F_CTRL_GUEST_OFFLOADS);
2800 static bool mac_table_fits(void *opaque, int version_id)
2802 return VIRTIO_NET(opaque)->mac_table.in_use <= MAC_TABLE_ENTRIES;
2805 static bool mac_table_doesnt_fit(void *opaque, int version_id)
2807 return !mac_table_fits(opaque, version_id);
2810 /* This temporary type is shared by all the WITH_TMP methods
2811 * although only some fields are used by each.
2813 struct VirtIONetMigTmp {
2814 VirtIONet *parent;
2815 VirtIONetQueue *vqs_1;
2816 uint16_t curr_queues_1;
2817 uint8_t has_ufo;
2818 uint32_t has_vnet_hdr;
2821 /* The 2nd and subsequent tx_waiting flags are loaded later than
2822 * the 1st entry in the queues and only if there's more than one
2823 * entry. We use the tmp mechanism to calculate a temporary
2824 * pointer and count and also validate the count.
2827 static int virtio_net_tx_waiting_pre_save(void *opaque)
2829 struct VirtIONetMigTmp *tmp = opaque;
2831 tmp->vqs_1 = tmp->parent->vqs + 1;
2832 tmp->curr_queues_1 = tmp->parent->curr_queues - 1;
2833 if (tmp->parent->curr_queues == 0) {
2834 tmp->curr_queues_1 = 0;
2837 return 0;
2840 static int virtio_net_tx_waiting_pre_load(void *opaque)
2842 struct VirtIONetMigTmp *tmp = opaque;
2844 /* Reuse the pointer setup from save */
2845 virtio_net_tx_waiting_pre_save(opaque);
2847 if (tmp->parent->curr_queues > tmp->parent->max_queues) {
2848 error_report("virtio-net: curr_queues %x > max_queues %x",
2849 tmp->parent->curr_queues, tmp->parent->max_queues);
2851 return -EINVAL;
2854 return 0; /* all good */
2857 static const VMStateDescription vmstate_virtio_net_tx_waiting = {
2858 .name = "virtio-net-tx_waiting",
2859 .pre_load = virtio_net_tx_waiting_pre_load,
2860 .pre_save = virtio_net_tx_waiting_pre_save,
2861 .fields = (VMStateField[]) {
2862 VMSTATE_STRUCT_VARRAY_POINTER_UINT16(vqs_1, struct VirtIONetMigTmp,
2863 curr_queues_1,
2864 vmstate_virtio_net_queue_tx_waiting,
2865 struct VirtIONetQueue),
2866 VMSTATE_END_OF_LIST()
2870 /* the 'has_ufo' flag is just tested; if the incoming stream has the
2871 * flag set we need to check that we have it
2873 static int virtio_net_ufo_post_load(void *opaque, int version_id)
2875 struct VirtIONetMigTmp *tmp = opaque;
2877 if (tmp->has_ufo && !peer_has_ufo(tmp->parent)) {
2878 error_report("virtio-net: saved image requires TUN_F_UFO support");
2879 return -EINVAL;
2882 return 0;
2885 static int virtio_net_ufo_pre_save(void *opaque)
2887 struct VirtIONetMigTmp *tmp = opaque;
2889 tmp->has_ufo = tmp->parent->has_ufo;
2891 return 0;
2894 static const VMStateDescription vmstate_virtio_net_has_ufo = {
2895 .name = "virtio-net-ufo",
2896 .post_load = virtio_net_ufo_post_load,
2897 .pre_save = virtio_net_ufo_pre_save,
2898 .fields = (VMStateField[]) {
2899 VMSTATE_UINT8(has_ufo, struct VirtIONetMigTmp),
2900 VMSTATE_END_OF_LIST()
2904 /* the 'has_vnet_hdr' flag is just tested; if the incoming stream has the
2905 * flag set we need to check that we have it
2907 static int virtio_net_vnet_post_load(void *opaque, int version_id)
2909 struct VirtIONetMigTmp *tmp = opaque;
2911 if (tmp->has_vnet_hdr && !peer_has_vnet_hdr(tmp->parent)) {
2912 error_report("virtio-net: saved image requires vnet_hdr=on");
2913 return -EINVAL;
2916 return 0;
2919 static int virtio_net_vnet_pre_save(void *opaque)
2921 struct VirtIONetMigTmp *tmp = opaque;
2923 tmp->has_vnet_hdr = tmp->parent->has_vnet_hdr;
2925 return 0;
2928 static const VMStateDescription vmstate_virtio_net_has_vnet = {
2929 .name = "virtio-net-vnet",
2930 .post_load = virtio_net_vnet_post_load,
2931 .pre_save = virtio_net_vnet_pre_save,
2932 .fields = (VMStateField[]) {
2933 VMSTATE_UINT32(has_vnet_hdr, struct VirtIONetMigTmp),
2934 VMSTATE_END_OF_LIST()
2938 static bool virtio_net_rss_needed(void *opaque)
2940 return VIRTIO_NET(opaque)->rss_data.enabled;
2943 static const VMStateDescription vmstate_virtio_net_rss = {
2944 .name = "virtio-net-device/rss",
2945 .version_id = 1,
2946 .minimum_version_id = 1,
2947 .needed = virtio_net_rss_needed,
2948 .fields = (VMStateField[]) {
2949 VMSTATE_BOOL(rss_data.enabled, VirtIONet),
2950 VMSTATE_BOOL(rss_data.redirect, VirtIONet),
2951 VMSTATE_BOOL(rss_data.populate_hash, VirtIONet),
2952 VMSTATE_UINT32(rss_data.hash_types, VirtIONet),
2953 VMSTATE_UINT16(rss_data.indirections_len, VirtIONet),
2954 VMSTATE_UINT16(rss_data.default_queue, VirtIONet),
2955 VMSTATE_UINT8_ARRAY(rss_data.key, VirtIONet,
2956 VIRTIO_NET_RSS_MAX_KEY_SIZE),
2957 VMSTATE_VARRAY_UINT16_ALLOC(rss_data.indirections_table, VirtIONet,
2958 rss_data.indirections_len, 0,
2959 vmstate_info_uint16, uint16_t),
2960 VMSTATE_END_OF_LIST()
2964 static const VMStateDescription vmstate_virtio_net_device = {
2965 .name = "virtio-net-device",
2966 .version_id = VIRTIO_NET_VM_VERSION,
2967 .minimum_version_id = VIRTIO_NET_VM_VERSION,
2968 .post_load = virtio_net_post_load_device,
2969 .fields = (VMStateField[]) {
2970 VMSTATE_UINT8_ARRAY(mac, VirtIONet, ETH_ALEN),
2971 VMSTATE_STRUCT_POINTER(vqs, VirtIONet,
2972 vmstate_virtio_net_queue_tx_waiting,
2973 VirtIONetQueue),
2974 VMSTATE_UINT32(mergeable_rx_bufs, VirtIONet),
2975 VMSTATE_UINT16(status, VirtIONet),
2976 VMSTATE_UINT8(promisc, VirtIONet),
2977 VMSTATE_UINT8(allmulti, VirtIONet),
2978 VMSTATE_UINT32(mac_table.in_use, VirtIONet),
2980 /* Guarded pair: If it fits we load it, else we throw it away
2981 * - can happen if source has a larger MAC table.; post-load
2982 * sets flags in this case.
2984 VMSTATE_VBUFFER_MULTIPLY(mac_table.macs, VirtIONet,
2985 0, mac_table_fits, mac_table.in_use,
2986 ETH_ALEN),
2987 VMSTATE_UNUSED_VARRAY_UINT32(VirtIONet, mac_table_doesnt_fit, 0,
2988 mac_table.in_use, ETH_ALEN),
2990 /* Note: This is an array of uint32's that's always been saved as a
2991 * buffer; hold onto your endiannesses; it's actually used as a bitmap
2992 * but based on the uint.
2994 VMSTATE_BUFFER_POINTER_UNSAFE(vlans, VirtIONet, 0, MAX_VLAN >> 3),
2995 VMSTATE_WITH_TMP(VirtIONet, struct VirtIONetMigTmp,
2996 vmstate_virtio_net_has_vnet),
2997 VMSTATE_UINT8(mac_table.multi_overflow, VirtIONet),
2998 VMSTATE_UINT8(mac_table.uni_overflow, VirtIONet),
2999 VMSTATE_UINT8(alluni, VirtIONet),
3000 VMSTATE_UINT8(nomulti, VirtIONet),
3001 VMSTATE_UINT8(nouni, VirtIONet),
3002 VMSTATE_UINT8(nobcast, VirtIONet),
3003 VMSTATE_WITH_TMP(VirtIONet, struct VirtIONetMigTmp,
3004 vmstate_virtio_net_has_ufo),
3005 VMSTATE_SINGLE_TEST(max_queues, VirtIONet, max_queues_gt_1, 0,
3006 vmstate_info_uint16_equal, uint16_t),
3007 VMSTATE_UINT16_TEST(curr_queues, VirtIONet, max_queues_gt_1),
3008 VMSTATE_WITH_TMP(VirtIONet, struct VirtIONetMigTmp,
3009 vmstate_virtio_net_tx_waiting),
3010 VMSTATE_UINT64_TEST(curr_guest_offloads, VirtIONet,
3011 has_ctrl_guest_offloads),
3012 VMSTATE_END_OF_LIST()
3014 .subsections = (const VMStateDescription * []) {
3015 &vmstate_virtio_net_rss,
3016 NULL
3020 static NetClientInfo net_virtio_info = {
3021 .type = NET_CLIENT_DRIVER_NIC,
3022 .size = sizeof(NICState),
3023 .can_receive = virtio_net_can_receive,
3024 .receive = virtio_net_receive,
3025 .link_status_changed = virtio_net_set_link_status,
3026 .query_rx_filter = virtio_net_query_rxfilter,
3027 .announce = virtio_net_announce,
3030 static bool virtio_net_guest_notifier_pending(VirtIODevice *vdev, int idx)
3032 VirtIONet *n = VIRTIO_NET(vdev);
3033 NetClientState *nc = qemu_get_subqueue(n->nic, vq2q(idx));
3034 assert(n->vhost_started);
3035 return vhost_net_virtqueue_pending(get_vhost_net(nc->peer), idx);
3038 static void virtio_net_guest_notifier_mask(VirtIODevice *vdev, int idx,
3039 bool mask)
3041 VirtIONet *n = VIRTIO_NET(vdev);
3042 NetClientState *nc = qemu_get_subqueue(n->nic, vq2q(idx));
3043 assert(n->vhost_started);
3044 vhost_net_virtqueue_mask(get_vhost_net(nc->peer),
3045 vdev, idx, mask);
3048 static void virtio_net_set_config_size(VirtIONet *n, uint64_t host_features)
3050 virtio_add_feature(&host_features, VIRTIO_NET_F_MAC);
3052 n->config_size = virtio_feature_get_config_size(feature_sizes,
3053 host_features);
3056 void virtio_net_set_netclient_name(VirtIONet *n, const char *name,
3057 const char *type)
3060 * The name can be NULL, the netclient name will be type.x.
3062 assert(type != NULL);
3064 g_free(n->netclient_name);
3065 g_free(n->netclient_type);
3066 n->netclient_name = g_strdup(name);
3067 n->netclient_type = g_strdup(type);
3070 static bool failover_unplug_primary(VirtIONet *n)
3072 HotplugHandler *hotplug_ctrl;
3073 PCIDevice *pci_dev;
3074 Error *err = NULL;
3076 hotplug_ctrl = qdev_get_hotplug_handler(n->primary_dev);
3077 if (hotplug_ctrl) {
3078 pci_dev = PCI_DEVICE(n->primary_dev);
3079 pci_dev->partially_hotplugged = true;
3080 hotplug_handler_unplug_request(hotplug_ctrl, n->primary_dev, &err);
3081 if (err) {
3082 error_report_err(err);
3083 return false;
3085 } else {
3086 return false;
3088 return true;
3091 static bool failover_replug_primary(VirtIONet *n, Error **errp)
3093 Error *err = NULL;
3094 HotplugHandler *hotplug_ctrl;
3095 PCIDevice *pdev = PCI_DEVICE(n->primary_dev);
3096 BusState *primary_bus;
3098 if (!pdev->partially_hotplugged) {
3099 return true;
3101 primary_bus = n->primary_dev->parent_bus;
3102 if (!primary_bus) {
3103 error_setg(errp, "virtio_net: couldn't find primary bus");
3104 return false;
3106 qdev_set_parent_bus(n->primary_dev, primary_bus, &error_abort);
3107 qatomic_set(&n->failover_primary_hidden, false);
3108 hotplug_ctrl = qdev_get_hotplug_handler(n->primary_dev);
3109 if (hotplug_ctrl) {
3110 hotplug_handler_pre_plug(hotplug_ctrl, n->primary_dev, &err);
3111 if (err) {
3112 goto out;
3114 hotplug_handler_plug(hotplug_ctrl, n->primary_dev, &err);
3117 out:
3118 error_propagate(errp, err);
3119 return !err;
3122 static void virtio_net_handle_migration_primary(VirtIONet *n,
3123 MigrationState *s)
3125 bool should_be_hidden;
3126 Error *err = NULL;
3128 should_be_hidden = qatomic_read(&n->failover_primary_hidden);
3130 if (!n->primary_dev) {
3131 n->primary_dev = virtio_connect_failover_devices(n, &err);
3132 if (!n->primary_dev) {
3133 return;
3137 if (migration_in_setup(s) && !should_be_hidden) {
3138 if (failover_unplug_primary(n)) {
3139 vmstate_unregister(VMSTATE_IF(n->primary_dev),
3140 qdev_get_vmsd(n->primary_dev),
3141 n->primary_dev);
3142 qapi_event_send_unplug_primary(n->primary_device_id);
3143 qatomic_set(&n->failover_primary_hidden, true);
3144 } else {
3145 warn_report("couldn't unplug primary device");
3147 } else if (migration_has_failed(s)) {
3148 /* We already unplugged the device let's plug it back */
3149 if (!failover_replug_primary(n, &err)) {
3150 if (err) {
3151 error_report_err(err);
3157 static void virtio_net_migration_state_notifier(Notifier *notifier, void *data)
3159 MigrationState *s = data;
3160 VirtIONet *n = container_of(notifier, VirtIONet, migration_state);
3161 virtio_net_handle_migration_primary(n, s);
3164 static bool virtio_net_primary_should_be_hidden(DeviceListener *listener,
3165 QemuOpts *device_opts)
3167 VirtIONet *n = container_of(listener, VirtIONet, primary_listener);
3168 bool hide;
3169 const char *standby_id;
3171 if (!device_opts) {
3172 return false;
3174 standby_id = qemu_opt_get(device_opts, "failover_pair_id");
3175 if (g_strcmp0(standby_id, n->netclient_name) != 0) {
3176 return false;
3179 /* failover_primary_hidden is set during feature negotiation */
3180 hide = qatomic_read(&n->failover_primary_hidden);
3181 g_free(n->primary_device_id);
3182 n->primary_device_id = g_strdup(device_opts->id);
3183 if (!n->primary_device_id) {
3184 warn_report("primary_device_id not set");
3186 return hide;
3189 static void virtio_net_device_realize(DeviceState *dev, Error **errp)
3191 VirtIODevice *vdev = VIRTIO_DEVICE(dev);
3192 VirtIONet *n = VIRTIO_NET(dev);
3193 NetClientState *nc;
3194 int i;
3196 if (n->net_conf.mtu) {
3197 n->host_features |= (1ULL << VIRTIO_NET_F_MTU);
3200 if (n->net_conf.duplex_str) {
3201 if (strncmp(n->net_conf.duplex_str, "half", 5) == 0) {
3202 n->net_conf.duplex = DUPLEX_HALF;
3203 } else if (strncmp(n->net_conf.duplex_str, "full", 5) == 0) {
3204 n->net_conf.duplex = DUPLEX_FULL;
3205 } else {
3206 error_setg(errp, "'duplex' must be 'half' or 'full'");
3207 return;
3209 n->host_features |= (1ULL << VIRTIO_NET_F_SPEED_DUPLEX);
3210 } else {
3211 n->net_conf.duplex = DUPLEX_UNKNOWN;
3214 if (n->net_conf.speed < SPEED_UNKNOWN) {
3215 error_setg(errp, "'speed' must be between 0 and INT_MAX");
3216 return;
3218 if (n->net_conf.speed >= 0) {
3219 n->host_features |= (1ULL << VIRTIO_NET_F_SPEED_DUPLEX);
3222 if (n->failover) {
3223 n->primary_listener.should_be_hidden =
3224 virtio_net_primary_should_be_hidden;
3225 qatomic_set(&n->failover_primary_hidden, true);
3226 device_listener_register(&n->primary_listener);
3227 n->migration_state.notify = virtio_net_migration_state_notifier;
3228 add_migration_state_change_notifier(&n->migration_state);
3229 n->host_features |= (1ULL << VIRTIO_NET_F_STANDBY);
3232 virtio_net_set_config_size(n, n->host_features);
3233 virtio_init(vdev, "virtio-net", VIRTIO_ID_NET, n->config_size);
3236 * We set a lower limit on RX queue size to what it always was.
3237 * Guests that want a smaller ring can always resize it without
3238 * help from us (using virtio 1 and up).
3240 if (n->net_conf.rx_queue_size < VIRTIO_NET_RX_QUEUE_MIN_SIZE ||
3241 n->net_conf.rx_queue_size > VIRTQUEUE_MAX_SIZE ||
3242 !is_power_of_2(n->net_conf.rx_queue_size)) {
3243 error_setg(errp, "Invalid rx_queue_size (= %" PRIu16 "), "
3244 "must be a power of 2 between %d and %d.",
3245 n->net_conf.rx_queue_size, VIRTIO_NET_RX_QUEUE_MIN_SIZE,
3246 VIRTQUEUE_MAX_SIZE);
3247 virtio_cleanup(vdev);
3248 return;
3251 if (n->net_conf.tx_queue_size < VIRTIO_NET_TX_QUEUE_MIN_SIZE ||
3252 n->net_conf.tx_queue_size > VIRTQUEUE_MAX_SIZE ||
3253 !is_power_of_2(n->net_conf.tx_queue_size)) {
3254 error_setg(errp, "Invalid tx_queue_size (= %" PRIu16 "), "
3255 "must be a power of 2 between %d and %d",
3256 n->net_conf.tx_queue_size, VIRTIO_NET_TX_QUEUE_MIN_SIZE,
3257 VIRTQUEUE_MAX_SIZE);
3258 virtio_cleanup(vdev);
3259 return;
3262 n->max_queues = MAX(n->nic_conf.peers.queues, 1);
3263 if (n->max_queues * 2 + 1 > VIRTIO_QUEUE_MAX) {
3264 error_setg(errp, "Invalid number of queues (= %" PRIu32 "), "
3265 "must be a positive integer less than %d.",
3266 n->max_queues, (VIRTIO_QUEUE_MAX - 1) / 2);
3267 virtio_cleanup(vdev);
3268 return;
3270 n->vqs = g_malloc0(sizeof(VirtIONetQueue) * n->max_queues);
3271 n->curr_queues = 1;
3272 n->tx_timeout = n->net_conf.txtimer;
3274 if (n->net_conf.tx && strcmp(n->net_conf.tx, "timer")
3275 && strcmp(n->net_conf.tx, "bh")) {
3276 warn_report("virtio-net: "
3277 "Unknown option tx=%s, valid options: \"timer\" \"bh\"",
3278 n->net_conf.tx);
3279 error_printf("Defaulting to \"bh\"");
3282 n->net_conf.tx_queue_size = MIN(virtio_net_max_tx_queue_size(n),
3283 n->net_conf.tx_queue_size);
3285 for (i = 0; i < n->max_queues; i++) {
3286 virtio_net_add_queue(n, i);
3289 n->ctrl_vq = virtio_add_queue(vdev, 64, virtio_net_handle_ctrl);
3290 qemu_macaddr_default_if_unset(&n->nic_conf.macaddr);
3291 memcpy(&n->mac[0], &n->nic_conf.macaddr, sizeof(n->mac));
3292 n->status = VIRTIO_NET_S_LINK_UP;
3293 qemu_announce_timer_reset(&n->announce_timer, migrate_announce_params(),
3294 QEMU_CLOCK_VIRTUAL,
3295 virtio_net_announce_timer, n);
3296 n->announce_timer.round = 0;
3298 if (n->netclient_type) {
3300 * Happen when virtio_net_set_netclient_name has been called.
3302 n->nic = qemu_new_nic(&net_virtio_info, &n->nic_conf,
3303 n->netclient_type, n->netclient_name, n);
3304 } else {
3305 n->nic = qemu_new_nic(&net_virtio_info, &n->nic_conf,
3306 object_get_typename(OBJECT(dev)), dev->id, n);
3309 peer_test_vnet_hdr(n);
3310 if (peer_has_vnet_hdr(n)) {
3311 for (i = 0; i < n->max_queues; i++) {
3312 qemu_using_vnet_hdr(qemu_get_subqueue(n->nic, i)->peer, true);
3314 n->host_hdr_len = sizeof(struct virtio_net_hdr);
3315 } else {
3316 n->host_hdr_len = 0;
3319 qemu_format_nic_info_str(qemu_get_queue(n->nic), n->nic_conf.macaddr.a);
3321 n->vqs[0].tx_waiting = 0;
3322 n->tx_burst = n->net_conf.txburst;
3323 virtio_net_set_mrg_rx_bufs(n, 0, 0, 0);
3324 n->promisc = 1; /* for compatibility */
3326 n->mac_table.macs = g_malloc0(MAC_TABLE_ENTRIES * ETH_ALEN);
3328 n->vlans = g_malloc0(MAX_VLAN >> 3);
3330 nc = qemu_get_queue(n->nic);
3331 nc->rxfilter_notify_enabled = 1;
3333 if (nc->peer && nc->peer->info->type == NET_CLIENT_DRIVER_VHOST_VDPA) {
3334 struct virtio_net_config netcfg = {};
3335 memcpy(&netcfg.mac, &n->nic_conf.macaddr, ETH_ALEN);
3336 vhost_net_set_config(get_vhost_net(nc->peer),
3337 (uint8_t *)&netcfg, 0, ETH_ALEN, VHOST_SET_CONFIG_TYPE_MASTER);
3339 QTAILQ_INIT(&n->rsc_chains);
3340 n->qdev = dev;
3342 net_rx_pkt_init(&n->rx_pkt, false);
3345 static void virtio_net_device_unrealize(DeviceState *dev)
3347 VirtIODevice *vdev = VIRTIO_DEVICE(dev);
3348 VirtIONet *n = VIRTIO_NET(dev);
3349 int i, max_queues;
3351 /* This will stop vhost backend if appropriate. */
3352 virtio_net_set_status(vdev, 0);
3354 g_free(n->netclient_name);
3355 n->netclient_name = NULL;
3356 g_free(n->netclient_type);
3357 n->netclient_type = NULL;
3359 g_free(n->mac_table.macs);
3360 g_free(n->vlans);
3362 if (n->failover) {
3363 device_listener_unregister(&n->primary_listener);
3364 g_free(n->primary_device_id);
3367 max_queues = n->multiqueue ? n->max_queues : 1;
3368 for (i = 0; i < max_queues; i++) {
3369 virtio_net_del_queue(n, i);
3371 /* delete also control vq */
3372 virtio_del_queue(vdev, max_queues * 2);
3373 qemu_announce_timer_del(&n->announce_timer, false);
3374 g_free(n->vqs);
3375 qemu_del_nic(n->nic);
3376 virtio_net_rsc_cleanup(n);
3377 g_free(n->rss_data.indirections_table);
3378 net_rx_pkt_uninit(n->rx_pkt);
3379 virtio_cleanup(vdev);
3382 static void virtio_net_instance_init(Object *obj)
3384 VirtIONet *n = VIRTIO_NET(obj);
3387 * The default config_size is sizeof(struct virtio_net_config).
3388 * Can be overriden with virtio_net_set_config_size.
3390 n->config_size = sizeof(struct virtio_net_config);
3391 device_add_bootindex_property(obj, &n->nic_conf.bootindex,
3392 "bootindex", "/ethernet-phy@0",
3393 DEVICE(n));
3396 static int virtio_net_pre_save(void *opaque)
3398 VirtIONet *n = opaque;
3400 /* At this point, backend must be stopped, otherwise
3401 * it might keep writing to memory. */
3402 assert(!n->vhost_started);
3404 return 0;
3407 static bool primary_unplug_pending(void *opaque)
3409 DeviceState *dev = opaque;
3410 VirtIODevice *vdev = VIRTIO_DEVICE(dev);
3411 VirtIONet *n = VIRTIO_NET(vdev);
3413 if (!virtio_vdev_has_feature(vdev, VIRTIO_NET_F_STANDBY)) {
3414 return false;
3416 return n->primary_dev ? n->primary_dev->pending_deleted_event : false;
3419 static bool dev_unplug_pending(void *opaque)
3421 DeviceState *dev = opaque;
3422 VirtioDeviceClass *vdc = VIRTIO_DEVICE_GET_CLASS(dev);
3424 return vdc->primary_unplug_pending(dev);
3427 static const VMStateDescription vmstate_virtio_net = {
3428 .name = "virtio-net",
3429 .minimum_version_id = VIRTIO_NET_VM_VERSION,
3430 .version_id = VIRTIO_NET_VM_VERSION,
3431 .fields = (VMStateField[]) {
3432 VMSTATE_VIRTIO_DEVICE,
3433 VMSTATE_END_OF_LIST()
3435 .pre_save = virtio_net_pre_save,
3436 .dev_unplug_pending = dev_unplug_pending,
3439 static Property virtio_net_properties[] = {
3440 DEFINE_PROP_BIT64("csum", VirtIONet, host_features,
3441 VIRTIO_NET_F_CSUM, true),
3442 DEFINE_PROP_BIT64("guest_csum", VirtIONet, host_features,
3443 VIRTIO_NET_F_GUEST_CSUM, true),
3444 DEFINE_PROP_BIT64("gso", VirtIONet, host_features, VIRTIO_NET_F_GSO, true),
3445 DEFINE_PROP_BIT64("guest_tso4", VirtIONet, host_features,
3446 VIRTIO_NET_F_GUEST_TSO4, true),
3447 DEFINE_PROP_BIT64("guest_tso6", VirtIONet, host_features,
3448 VIRTIO_NET_F_GUEST_TSO6, true),
3449 DEFINE_PROP_BIT64("guest_ecn", VirtIONet, host_features,
3450 VIRTIO_NET_F_GUEST_ECN, true),
3451 DEFINE_PROP_BIT64("guest_ufo", VirtIONet, host_features,
3452 VIRTIO_NET_F_GUEST_UFO, true),
3453 DEFINE_PROP_BIT64("guest_announce", VirtIONet, host_features,
3454 VIRTIO_NET_F_GUEST_ANNOUNCE, true),
3455 DEFINE_PROP_BIT64("host_tso4", VirtIONet, host_features,
3456 VIRTIO_NET_F_HOST_TSO4, true),
3457 DEFINE_PROP_BIT64("host_tso6", VirtIONet, host_features,
3458 VIRTIO_NET_F_HOST_TSO6, true),
3459 DEFINE_PROP_BIT64("host_ecn", VirtIONet, host_features,
3460 VIRTIO_NET_F_HOST_ECN, true),
3461 DEFINE_PROP_BIT64("host_ufo", VirtIONet, host_features,
3462 VIRTIO_NET_F_HOST_UFO, true),
3463 DEFINE_PROP_BIT64("mrg_rxbuf", VirtIONet, host_features,
3464 VIRTIO_NET_F_MRG_RXBUF, true),
3465 DEFINE_PROP_BIT64("status", VirtIONet, host_features,
3466 VIRTIO_NET_F_STATUS, true),
3467 DEFINE_PROP_BIT64("ctrl_vq", VirtIONet, host_features,
3468 VIRTIO_NET_F_CTRL_VQ, true),
3469 DEFINE_PROP_BIT64("ctrl_rx", VirtIONet, host_features,
3470 VIRTIO_NET_F_CTRL_RX, true),
3471 DEFINE_PROP_BIT64("ctrl_vlan", VirtIONet, host_features,
3472 VIRTIO_NET_F_CTRL_VLAN, true),
3473 DEFINE_PROP_BIT64("ctrl_rx_extra", VirtIONet, host_features,
3474 VIRTIO_NET_F_CTRL_RX_EXTRA, true),
3475 DEFINE_PROP_BIT64("ctrl_mac_addr", VirtIONet, host_features,
3476 VIRTIO_NET_F_CTRL_MAC_ADDR, true),
3477 DEFINE_PROP_BIT64("ctrl_guest_offloads", VirtIONet, host_features,
3478 VIRTIO_NET_F_CTRL_GUEST_OFFLOADS, true),
3479 DEFINE_PROP_BIT64("mq", VirtIONet, host_features, VIRTIO_NET_F_MQ, false),
3480 DEFINE_PROP_BIT64("rss", VirtIONet, host_features,
3481 VIRTIO_NET_F_RSS, false),
3482 DEFINE_PROP_BIT64("hash", VirtIONet, host_features,
3483 VIRTIO_NET_F_HASH_REPORT, false),
3484 DEFINE_PROP_BIT64("guest_rsc_ext", VirtIONet, host_features,
3485 VIRTIO_NET_F_RSC_EXT, false),
3486 DEFINE_PROP_UINT32("rsc_interval", VirtIONet, rsc_timeout,
3487 VIRTIO_NET_RSC_DEFAULT_INTERVAL),
3488 DEFINE_NIC_PROPERTIES(VirtIONet, nic_conf),
3489 DEFINE_PROP_UINT32("x-txtimer", VirtIONet, net_conf.txtimer,
3490 TX_TIMER_INTERVAL),
3491 DEFINE_PROP_INT32("x-txburst", VirtIONet, net_conf.txburst, TX_BURST),
3492 DEFINE_PROP_STRING("tx", VirtIONet, net_conf.tx),
3493 DEFINE_PROP_UINT16("rx_queue_size", VirtIONet, net_conf.rx_queue_size,
3494 VIRTIO_NET_RX_QUEUE_DEFAULT_SIZE),
3495 DEFINE_PROP_UINT16("tx_queue_size", VirtIONet, net_conf.tx_queue_size,
3496 VIRTIO_NET_TX_QUEUE_DEFAULT_SIZE),
3497 DEFINE_PROP_UINT16("host_mtu", VirtIONet, net_conf.mtu, 0),
3498 DEFINE_PROP_BOOL("x-mtu-bypass-backend", VirtIONet, mtu_bypass_backend,
3499 true),
3500 DEFINE_PROP_INT32("speed", VirtIONet, net_conf.speed, SPEED_UNKNOWN),
3501 DEFINE_PROP_STRING("duplex", VirtIONet, net_conf.duplex_str),
3502 DEFINE_PROP_BOOL("failover", VirtIONet, failover, false),
3503 DEFINE_PROP_END_OF_LIST(),
3506 static void virtio_net_class_init(ObjectClass *klass, void *data)
3508 DeviceClass *dc = DEVICE_CLASS(klass);
3509 VirtioDeviceClass *vdc = VIRTIO_DEVICE_CLASS(klass);
3511 device_class_set_props(dc, virtio_net_properties);
3512 dc->vmsd = &vmstate_virtio_net;
3513 set_bit(DEVICE_CATEGORY_NETWORK, dc->categories);
3514 vdc->realize = virtio_net_device_realize;
3515 vdc->unrealize = virtio_net_device_unrealize;
3516 vdc->get_config = virtio_net_get_config;
3517 vdc->set_config = virtio_net_set_config;
3518 vdc->get_features = virtio_net_get_features;
3519 vdc->set_features = virtio_net_set_features;
3520 vdc->bad_features = virtio_net_bad_features;
3521 vdc->reset = virtio_net_reset;
3522 vdc->set_status = virtio_net_set_status;
3523 vdc->guest_notifier_mask = virtio_net_guest_notifier_mask;
3524 vdc->guest_notifier_pending = virtio_net_guest_notifier_pending;
3525 vdc->legacy_features |= (0x1 << VIRTIO_NET_F_GSO);
3526 vdc->post_load = virtio_net_post_load_virtio;
3527 vdc->vmsd = &vmstate_virtio_net_device;
3528 vdc->primary_unplug_pending = primary_unplug_pending;
3531 static const TypeInfo virtio_net_info = {
3532 .name = TYPE_VIRTIO_NET,
3533 .parent = TYPE_VIRTIO_DEVICE,
3534 .instance_size = sizeof(VirtIONet),
3535 .instance_init = virtio_net_instance_init,
3536 .class_init = virtio_net_class_init,
3539 static void virtio_register_types(void)
3541 type_register_static(&virtio_net_info);
3544 type_init(virtio_register_types)