virtio-net.c 18 KB

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  1. /*
  2. * Virtio Network Device
  3. *
  4. * Copyright IBM, Corp. 2007
  5. *
  6. * Authors:
  7. * Anthony Liguori <aliguori@us.ibm.com>
  8. *
  9. * This work is licensed under the terms of the GNU GPL, version 2. See
  10. * the COPYING file in the top-level directory.
  11. *
  12. */
  13. #include "virtio.h"
  14. #include "net.h"
  15. #include "qemu-timer.h"
  16. #include "virtio-net.h"
  17. #define VIRTIO_NET_VM_VERSION 6
  18. #define MAC_TABLE_ENTRIES 32
  19. #define MAX_VLAN (1 << 12) /* Per 802.1Q definition */
  20. typedef struct VirtIONet
  21. {
  22. VirtIODevice vdev;
  23. uint8_t mac[ETH_ALEN];
  24. uint16_t status;
  25. VirtQueue *rx_vq;
  26. VirtQueue *tx_vq;
  27. VirtQueue *ctrl_vq;
  28. VLANClientState *vc;
  29. QEMUTimer *tx_timer;
  30. int tx_timer_active;
  31. int mergeable_rx_bufs;
  32. int promisc;
  33. int allmulti;
  34. struct {
  35. int in_use;
  36. uint8_t *macs;
  37. } mac_table;
  38. uint32_t *vlans;
  39. } VirtIONet;
  40. /* TODO
  41. * - we could suppress RX interrupt if we were so inclined.
  42. */
  43. static VirtIONet *to_virtio_net(VirtIODevice *vdev)
  44. {
  45. return (VirtIONet *)vdev;
  46. }
  47. static void virtio_net_get_config(VirtIODevice *vdev, uint8_t *config)
  48. {
  49. VirtIONet *n = to_virtio_net(vdev);
  50. struct virtio_net_config netcfg;
  51. netcfg.status = n->status;
  52. memcpy(netcfg.mac, n->mac, ETH_ALEN);
  53. memcpy(config, &netcfg, sizeof(netcfg));
  54. }
  55. static void virtio_net_set_config(VirtIODevice *vdev, const uint8_t *config)
  56. {
  57. VirtIONet *n = to_virtio_net(vdev);
  58. struct virtio_net_config netcfg;
  59. memcpy(&netcfg, config, sizeof(netcfg));
  60. if (memcmp(netcfg.mac, n->mac, ETH_ALEN)) {
  61. memcpy(n->mac, netcfg.mac, ETH_ALEN);
  62. qemu_format_nic_info_str(n->vc, n->mac);
  63. }
  64. }
  65. static void virtio_net_set_link_status(VLANClientState *vc)
  66. {
  67. VirtIONet *n = vc->opaque;
  68. uint16_t old_status = n->status;
  69. if (vc->link_down)
  70. n->status &= ~VIRTIO_NET_S_LINK_UP;
  71. else
  72. n->status |= VIRTIO_NET_S_LINK_UP;
  73. if (n->status != old_status)
  74. virtio_notify_config(&n->vdev);
  75. }
  76. static void virtio_net_reset(VirtIODevice *vdev)
  77. {
  78. VirtIONet *n = to_virtio_net(vdev);
  79. /* Reset back to compatibility mode */
  80. n->promisc = 1;
  81. n->allmulti = 0;
  82. /* Flush any MAC and VLAN filter table state */
  83. n->mac_table.in_use = 0;
  84. memset(n->mac_table.macs, 0, MAC_TABLE_ENTRIES * ETH_ALEN);
  85. memset(n->vlans, 0, MAX_VLAN >> 3);
  86. }
  87. static uint32_t virtio_net_get_features(VirtIODevice *vdev)
  88. {
  89. uint32_t features = (1 << VIRTIO_NET_F_MAC) |
  90. (1 << VIRTIO_NET_F_STATUS) |
  91. (1 << VIRTIO_NET_F_CTRL_VQ) |
  92. (1 << VIRTIO_NET_F_CTRL_RX) |
  93. (1 << VIRTIO_NET_F_CTRL_VLAN);
  94. return features;
  95. }
  96. static uint32_t virtio_net_bad_features(VirtIODevice *vdev)
  97. {
  98. uint32_t features = 0;
  99. /* Linux kernel 2.6.25. It understood MAC (as everyone must),
  100. * but also these: */
  101. features |= (1 << VIRTIO_NET_F_MAC);
  102. features |= (1 << VIRTIO_NET_F_GUEST_CSUM);
  103. features |= (1 << VIRTIO_NET_F_GUEST_TSO4);
  104. features |= (1 << VIRTIO_NET_F_GUEST_TSO6);
  105. features |= (1 << VIRTIO_NET_F_GUEST_ECN);
  106. return features & virtio_net_get_features(vdev);
  107. }
  108. static void virtio_net_set_features(VirtIODevice *vdev, uint32_t features)
  109. {
  110. VirtIONet *n = to_virtio_net(vdev);
  111. n->mergeable_rx_bufs = !!(features & (1 << VIRTIO_NET_F_MRG_RXBUF));
  112. }
  113. static int virtio_net_handle_rx_mode(VirtIONet *n, uint8_t cmd,
  114. VirtQueueElement *elem)
  115. {
  116. uint8_t on;
  117. if (elem->out_num != 2 || elem->out_sg[1].iov_len != sizeof(on)) {
  118. fprintf(stderr, "virtio-net ctrl invalid rx mode command\n");
  119. exit(1);
  120. }
  121. on = ldub_p(elem->out_sg[1].iov_base);
  122. if (cmd == VIRTIO_NET_CTRL_RX_MODE_PROMISC)
  123. n->promisc = on;
  124. else if (cmd == VIRTIO_NET_CTRL_RX_MODE_ALLMULTI)
  125. n->allmulti = on;
  126. else
  127. return VIRTIO_NET_ERR;
  128. return VIRTIO_NET_OK;
  129. }
  130. static int virtio_net_handle_mac(VirtIONet *n, uint8_t cmd,
  131. VirtQueueElement *elem)
  132. {
  133. struct virtio_net_ctrl_mac mac_data;
  134. if (cmd != VIRTIO_NET_CTRL_MAC_TABLE_SET || elem->out_num != 3 ||
  135. elem->out_sg[1].iov_len < sizeof(mac_data) ||
  136. elem->out_sg[2].iov_len < sizeof(mac_data))
  137. return VIRTIO_NET_ERR;
  138. n->mac_table.in_use = 0;
  139. memset(n->mac_table.macs, 0, MAC_TABLE_ENTRIES * ETH_ALEN);
  140. mac_data.entries = ldl_le_p(elem->out_sg[1].iov_base);
  141. if (sizeof(mac_data.entries) +
  142. (mac_data.entries * ETH_ALEN) > elem->out_sg[1].iov_len)
  143. return VIRTIO_NET_ERR;
  144. if (mac_data.entries <= MAC_TABLE_ENTRIES) {
  145. memcpy(n->mac_table.macs, elem->out_sg[1].iov_base + sizeof(mac_data),
  146. mac_data.entries * ETH_ALEN);
  147. n->mac_table.in_use += mac_data.entries;
  148. } else {
  149. n->promisc = 1;
  150. return VIRTIO_NET_OK;
  151. }
  152. mac_data.entries = ldl_le_p(elem->out_sg[2].iov_base);
  153. if (sizeof(mac_data.entries) +
  154. (mac_data.entries * ETH_ALEN) > elem->out_sg[2].iov_len)
  155. return VIRTIO_NET_ERR;
  156. if (mac_data.entries) {
  157. if (n->mac_table.in_use + mac_data.entries <= MAC_TABLE_ENTRIES) {
  158. memcpy(n->mac_table.macs + (n->mac_table.in_use * ETH_ALEN),
  159. elem->out_sg[2].iov_base + sizeof(mac_data),
  160. mac_data.entries * ETH_ALEN);
  161. n->mac_table.in_use += mac_data.entries;
  162. } else
  163. n->allmulti = 1;
  164. }
  165. return VIRTIO_NET_OK;
  166. }
  167. static int virtio_net_handle_vlan_table(VirtIONet *n, uint8_t cmd,
  168. VirtQueueElement *elem)
  169. {
  170. uint16_t vid;
  171. if (elem->out_num != 2 || elem->out_sg[1].iov_len != sizeof(vid)) {
  172. fprintf(stderr, "virtio-net ctrl invalid vlan command\n");
  173. return VIRTIO_NET_ERR;
  174. }
  175. vid = lduw_le_p(elem->out_sg[1].iov_base);
  176. if (vid >= MAX_VLAN)
  177. return VIRTIO_NET_ERR;
  178. if (cmd == VIRTIO_NET_CTRL_VLAN_ADD)
  179. n->vlans[vid >> 5] |= (1U << (vid & 0x1f));
  180. else if (cmd == VIRTIO_NET_CTRL_VLAN_DEL)
  181. n->vlans[vid >> 5] &= ~(1U << (vid & 0x1f));
  182. else
  183. return VIRTIO_NET_ERR;
  184. return VIRTIO_NET_OK;
  185. }
  186. static void virtio_net_handle_ctrl(VirtIODevice *vdev, VirtQueue *vq)
  187. {
  188. VirtIONet *n = to_virtio_net(vdev);
  189. struct virtio_net_ctrl_hdr ctrl;
  190. virtio_net_ctrl_ack status = VIRTIO_NET_ERR;
  191. VirtQueueElement elem;
  192. while (virtqueue_pop(vq, &elem)) {
  193. if ((elem.in_num < 1) || (elem.out_num < 1)) {
  194. fprintf(stderr, "virtio-net ctrl missing headers\n");
  195. exit(1);
  196. }
  197. if (elem.out_sg[0].iov_len < sizeof(ctrl) ||
  198. elem.in_sg[elem.in_num - 1].iov_len < sizeof(status)) {
  199. fprintf(stderr, "virtio-net ctrl header not in correct element\n");
  200. exit(1);
  201. }
  202. ctrl.class = ldub_p(elem.out_sg[0].iov_base);
  203. ctrl.cmd = ldub_p(elem.out_sg[0].iov_base + sizeof(ctrl.class));
  204. if (ctrl.class == VIRTIO_NET_CTRL_RX_MODE)
  205. status = virtio_net_handle_rx_mode(n, ctrl.cmd, &elem);
  206. else if (ctrl.class == VIRTIO_NET_CTRL_MAC)
  207. status = virtio_net_handle_mac(n, ctrl.cmd, &elem);
  208. else if (ctrl.class == VIRTIO_NET_CTRL_VLAN)
  209. status = virtio_net_handle_vlan_table(n, ctrl.cmd, &elem);
  210. stb_p(elem.in_sg[elem.in_num - 1].iov_base, status);
  211. virtqueue_push(vq, &elem, sizeof(status));
  212. virtio_notify(vdev, vq);
  213. }
  214. }
  215. /* RX */
  216. static void virtio_net_handle_rx(VirtIODevice *vdev, VirtQueue *vq)
  217. {
  218. }
  219. static int do_virtio_net_can_receive(VirtIONet *n, int bufsize)
  220. {
  221. if (!virtio_queue_ready(n->rx_vq) ||
  222. !(n->vdev.status & VIRTIO_CONFIG_S_DRIVER_OK))
  223. return 0;
  224. if (virtio_queue_empty(n->rx_vq) ||
  225. (n->mergeable_rx_bufs &&
  226. !virtqueue_avail_bytes(n->rx_vq, bufsize, 0))) {
  227. virtio_queue_set_notification(n->rx_vq, 1);
  228. return 0;
  229. }
  230. virtio_queue_set_notification(n->rx_vq, 0);
  231. return 1;
  232. }
  233. static int virtio_net_can_receive(void *opaque)
  234. {
  235. VirtIONet *n = opaque;
  236. return do_virtio_net_can_receive(n, VIRTIO_NET_MAX_BUFSIZE);
  237. }
  238. static int iov_fill(struct iovec *iov, int iovcnt, const void *buf, int count)
  239. {
  240. int offset, i;
  241. offset = i = 0;
  242. while (offset < count && i < iovcnt) {
  243. int len = MIN(iov[i].iov_len, count - offset);
  244. memcpy(iov[i].iov_base, buf + offset, len);
  245. offset += len;
  246. i++;
  247. }
  248. return offset;
  249. }
  250. static int receive_header(VirtIONet *n, struct iovec *iov, int iovcnt,
  251. const void *buf, size_t size, size_t hdr_len)
  252. {
  253. struct virtio_net_hdr *hdr = iov[0].iov_base;
  254. int offset = 0;
  255. hdr->flags = 0;
  256. hdr->gso_type = VIRTIO_NET_HDR_GSO_NONE;
  257. /* We only ever receive a struct virtio_net_hdr from the tapfd,
  258. * but we may be passing along a larger header to the guest.
  259. */
  260. iov[0].iov_base += hdr_len;
  261. iov[0].iov_len -= hdr_len;
  262. return offset;
  263. }
  264. static int receive_filter(VirtIONet *n, const uint8_t *buf, int size)
  265. {
  266. static const uint8_t bcast[] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
  267. static const uint8_t vlan[] = {0x81, 0x00};
  268. uint8_t *ptr = (uint8_t *)buf;
  269. int i;
  270. if (n->promisc)
  271. return 1;
  272. if (!memcmp(&ptr[12], vlan, sizeof(vlan))) {
  273. int vid = be16_to_cpup((uint16_t *)(ptr + 14)) & 0xfff;
  274. if (!(n->vlans[vid >> 5] & (1U << (vid & 0x1f))))
  275. return 0;
  276. }
  277. if ((ptr[0] & 1) && n->allmulti)
  278. return 1;
  279. if (!memcmp(ptr, bcast, sizeof(bcast)))
  280. return 1;
  281. if (!memcmp(ptr, n->mac, ETH_ALEN))
  282. return 1;
  283. for (i = 0; i < n->mac_table.in_use; i++) {
  284. if (!memcmp(ptr, &n->mac_table.macs[i * ETH_ALEN], ETH_ALEN))
  285. return 1;
  286. }
  287. return 0;
  288. }
  289. static void virtio_net_receive(void *opaque, const uint8_t *buf, int size)
  290. {
  291. VirtIONet *n = opaque;
  292. struct virtio_net_hdr_mrg_rxbuf *mhdr = NULL;
  293. size_t hdr_len, offset, i;
  294. if (!do_virtio_net_can_receive(n, size))
  295. return;
  296. if (!receive_filter(n, buf, size))
  297. return;
  298. /* hdr_len refers to the header we supply to the guest */
  299. hdr_len = n->mergeable_rx_bufs ?
  300. sizeof(struct virtio_net_hdr_mrg_rxbuf) : sizeof(struct virtio_net_hdr);
  301. offset = i = 0;
  302. while (offset < size) {
  303. VirtQueueElement elem;
  304. int len, total;
  305. struct iovec sg[VIRTQUEUE_MAX_SIZE];
  306. len = total = 0;
  307. if ((i != 0 && !n->mergeable_rx_bufs) ||
  308. virtqueue_pop(n->rx_vq, &elem) == 0) {
  309. if (i == 0)
  310. return;
  311. fprintf(stderr, "virtio-net truncating packet\n");
  312. exit(1);
  313. }
  314. if (elem.in_num < 1) {
  315. fprintf(stderr, "virtio-net receive queue contains no in buffers\n");
  316. exit(1);
  317. }
  318. if (!n->mergeable_rx_bufs && elem.in_sg[0].iov_len != hdr_len) {
  319. fprintf(stderr, "virtio-net header not in first element\n");
  320. exit(1);
  321. }
  322. memcpy(&sg, &elem.in_sg[0], sizeof(sg[0]) * elem.in_num);
  323. if (i == 0) {
  324. if (n->mergeable_rx_bufs)
  325. mhdr = (struct virtio_net_hdr_mrg_rxbuf *)sg[0].iov_base;
  326. offset += receive_header(n, sg, elem.in_num,
  327. buf + offset, size - offset, hdr_len);
  328. total += hdr_len;
  329. }
  330. /* copy in packet. ugh */
  331. len = iov_fill(sg, elem.in_num,
  332. buf + offset, size - offset);
  333. total += len;
  334. /* signal other side */
  335. virtqueue_fill(n->rx_vq, &elem, total, i++);
  336. offset += len;
  337. }
  338. if (mhdr)
  339. mhdr->num_buffers = i;
  340. virtqueue_flush(n->rx_vq, i);
  341. virtio_notify(&n->vdev, n->rx_vq);
  342. }
  343. /* TX */
  344. static void virtio_net_flush_tx(VirtIONet *n, VirtQueue *vq)
  345. {
  346. VirtQueueElement elem;
  347. int has_vnet_hdr = 0;
  348. if (!(n->vdev.status & VIRTIO_CONFIG_S_DRIVER_OK))
  349. return;
  350. while (virtqueue_pop(vq, &elem)) {
  351. ssize_t len = 0;
  352. unsigned int out_num = elem.out_num;
  353. struct iovec *out_sg = &elem.out_sg[0];
  354. unsigned hdr_len;
  355. /* hdr_len refers to the header received from the guest */
  356. hdr_len = n->mergeable_rx_bufs ?
  357. sizeof(struct virtio_net_hdr_mrg_rxbuf) :
  358. sizeof(struct virtio_net_hdr);
  359. if (out_num < 1 || out_sg->iov_len != hdr_len) {
  360. fprintf(stderr, "virtio-net header not in first element\n");
  361. exit(1);
  362. }
  363. /* ignore the header if GSO is not supported */
  364. if (!has_vnet_hdr) {
  365. out_num--;
  366. out_sg++;
  367. len += hdr_len;
  368. } else if (n->mergeable_rx_bufs) {
  369. /* tapfd expects a struct virtio_net_hdr */
  370. hdr_len -= sizeof(struct virtio_net_hdr);
  371. out_sg->iov_len -= hdr_len;
  372. len += hdr_len;
  373. }
  374. len += qemu_sendv_packet(n->vc, out_sg, out_num);
  375. virtqueue_push(vq, &elem, len);
  376. virtio_notify(&n->vdev, vq);
  377. }
  378. }
  379. static void virtio_net_handle_tx(VirtIODevice *vdev, VirtQueue *vq)
  380. {
  381. VirtIONet *n = to_virtio_net(vdev);
  382. if (n->tx_timer_active) {
  383. virtio_queue_set_notification(vq, 1);
  384. qemu_del_timer(n->tx_timer);
  385. n->tx_timer_active = 0;
  386. virtio_net_flush_tx(n, vq);
  387. } else {
  388. qemu_mod_timer(n->tx_timer,
  389. qemu_get_clock(vm_clock) + TX_TIMER_INTERVAL);
  390. n->tx_timer_active = 1;
  391. virtio_queue_set_notification(vq, 0);
  392. }
  393. }
  394. static void virtio_net_tx_timer(void *opaque)
  395. {
  396. VirtIONet *n = opaque;
  397. n->tx_timer_active = 0;
  398. /* Just in case the driver is not ready on more */
  399. if (!(n->vdev.status & VIRTIO_CONFIG_S_DRIVER_OK))
  400. return;
  401. virtio_queue_set_notification(n->tx_vq, 1);
  402. virtio_net_flush_tx(n, n->tx_vq);
  403. }
  404. static void virtio_net_save(QEMUFile *f, void *opaque)
  405. {
  406. VirtIONet *n = opaque;
  407. virtio_save(&n->vdev, f);
  408. qemu_put_buffer(f, n->mac, ETH_ALEN);
  409. qemu_put_be32(f, n->tx_timer_active);
  410. qemu_put_be32(f, n->mergeable_rx_bufs);
  411. qemu_put_be16(f, n->status);
  412. qemu_put_be32(f, n->promisc);
  413. qemu_put_be32(f, n->allmulti);
  414. qemu_put_be32(f, n->mac_table.in_use);
  415. qemu_put_buffer(f, n->mac_table.macs, n->mac_table.in_use * ETH_ALEN);
  416. qemu_put_buffer(f, (uint8_t *)n->vlans, MAX_VLAN >> 3);
  417. }
  418. static int virtio_net_load(QEMUFile *f, void *opaque, int version_id)
  419. {
  420. VirtIONet *n = opaque;
  421. if (version_id < 2 || version_id > VIRTIO_NET_VM_VERSION)
  422. return -EINVAL;
  423. virtio_load(&n->vdev, f);
  424. qemu_get_buffer(f, n->mac, ETH_ALEN);
  425. n->tx_timer_active = qemu_get_be32(f);
  426. n->mergeable_rx_bufs = qemu_get_be32(f);
  427. if (version_id >= 3)
  428. n->status = qemu_get_be16(f);
  429. if (version_id >= 4) {
  430. n->promisc = qemu_get_be32(f);
  431. n->allmulti = qemu_get_be32(f);
  432. }
  433. if (version_id >= 5) {
  434. n->mac_table.in_use = qemu_get_be32(f);
  435. /* MAC_TABLE_ENTRIES may be different from the saved image */
  436. if (n->mac_table.in_use <= MAC_TABLE_ENTRIES) {
  437. qemu_get_buffer(f, n->mac_table.macs,
  438. n->mac_table.in_use * ETH_ALEN);
  439. } else if (n->mac_table.in_use) {
  440. qemu_fseek(f, n->mac_table.in_use * ETH_ALEN, SEEK_CUR);
  441. n->promisc = 1;
  442. n->mac_table.in_use = 0;
  443. }
  444. }
  445. if (version_id >= 6)
  446. qemu_get_buffer(f, (uint8_t *)n->vlans, MAX_VLAN >> 3);
  447. if (n->tx_timer_active) {
  448. qemu_mod_timer(n->tx_timer,
  449. qemu_get_clock(vm_clock) + TX_TIMER_INTERVAL);
  450. }
  451. return 0;
  452. }
  453. static void virtio_net_cleanup(VLANClientState *vc)
  454. {
  455. VirtIONet *n = vc->opaque;
  456. unregister_savevm("virtio-net", n);
  457. qemu_free(n->mac_table.macs);
  458. qemu_free(n->vlans);
  459. qemu_del_timer(n->tx_timer);
  460. qemu_free_timer(n->tx_timer);
  461. virtio_cleanup(&n->vdev);
  462. }
  463. PCIDevice *virtio_net_init(PCIBus *bus, NICInfo *nd, int devfn)
  464. {
  465. VirtIONet *n;
  466. static int virtio_net_id;
  467. n = (VirtIONet *)virtio_init_pci(bus, "virtio-net",
  468. PCI_VENDOR_ID_REDHAT_QUMRANET,
  469. PCI_DEVICE_ID_VIRTIO_NET,
  470. PCI_VENDOR_ID_REDHAT_QUMRANET,
  471. VIRTIO_ID_NET,
  472. PCI_CLASS_NETWORK_ETHERNET, 0x00,
  473. sizeof(struct virtio_net_config),
  474. sizeof(VirtIONet));
  475. if (!n)
  476. return NULL;
  477. n->vdev.get_config = virtio_net_get_config;
  478. n->vdev.set_config = virtio_net_set_config;
  479. n->vdev.get_features = virtio_net_get_features;
  480. n->vdev.set_features = virtio_net_set_features;
  481. n->vdev.bad_features = virtio_net_bad_features;
  482. n->vdev.reset = virtio_net_reset;
  483. n->rx_vq = virtio_add_queue(&n->vdev, 256, virtio_net_handle_rx);
  484. n->tx_vq = virtio_add_queue(&n->vdev, 256, virtio_net_handle_tx);
  485. n->ctrl_vq = virtio_add_queue(&n->vdev, 16, virtio_net_handle_ctrl);
  486. memcpy(n->mac, nd->macaddr, ETH_ALEN);
  487. n->status = VIRTIO_NET_S_LINK_UP;
  488. n->vc = qemu_new_vlan_client(nd->vlan, nd->model, nd->name,
  489. virtio_net_receive,
  490. virtio_net_can_receive,
  491. virtio_net_cleanup, n);
  492. n->vc->link_status_changed = virtio_net_set_link_status;
  493. qemu_format_nic_info_str(n->vc, n->mac);
  494. n->tx_timer = qemu_new_timer(vm_clock, virtio_net_tx_timer, n);
  495. n->tx_timer_active = 0;
  496. n->mergeable_rx_bufs = 0;
  497. n->promisc = 1; /* for compatibility */
  498. n->mac_table.macs = qemu_mallocz(MAC_TABLE_ENTRIES * ETH_ALEN);
  499. n->vlans = qemu_mallocz(MAX_VLAN >> 3);
  500. register_savevm("virtio-net", virtio_net_id++, VIRTIO_NET_VM_VERSION,
  501. virtio_net_save, virtio_net_load, n);
  502. return (PCIDevice *)n;
  503. }