virtio_transport.c 18 KB

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  1. /*
  2. * virtio transport for vsock
  3. *
  4. * Copyright (C) 2013-2015 Red Hat, Inc.
  5. * Author: Asias He <asias@redhat.com>
  6. * Stefan Hajnoczi <stefanha@redhat.com>
  7. *
  8. * Some of the code is take from Gerd Hoffmann <kraxel@redhat.com>'s
  9. * early virtio-vsock proof-of-concept bits.
  10. *
  11. * This work is licensed under the terms of the GNU GPL, version 2.
  12. */
  13. #include <linux/spinlock.h>
  14. #include <linux/module.h>
  15. #include <linux/list.h>
  16. #include <linux/atomic.h>
  17. #include <linux/virtio.h>
  18. #include <linux/virtio_ids.h>
  19. #include <linux/virtio_config.h>
  20. #include <linux/virtio_vsock.h>
  21. #include <net/sock.h>
  22. #include <linux/mutex.h>
  23. #include <net/af_vsock.h>
  24. static struct workqueue_struct *virtio_vsock_workqueue;
  25. static struct virtio_vsock *the_virtio_vsock;
  26. static DEFINE_MUTEX(the_virtio_vsock_mutex); /* protects the_virtio_vsock */
  27. struct virtio_vsock {
  28. struct virtio_device *vdev;
  29. struct virtqueue *vqs[VSOCK_VQ_MAX];
  30. /* Virtqueue processing is deferred to a workqueue */
  31. struct work_struct tx_work;
  32. struct work_struct rx_work;
  33. struct work_struct event_work;
  34. /* The following fields are protected by tx_lock. vqs[VSOCK_VQ_TX]
  35. * must be accessed with tx_lock held.
  36. */
  37. struct mutex tx_lock;
  38. struct work_struct send_pkt_work;
  39. spinlock_t send_pkt_list_lock;
  40. struct list_head send_pkt_list;
  41. struct work_struct loopback_work;
  42. spinlock_t loopback_list_lock; /* protects loopback_list */
  43. struct list_head loopback_list;
  44. atomic_t queued_replies;
  45. /* The following fields are protected by rx_lock. vqs[VSOCK_VQ_RX]
  46. * must be accessed with rx_lock held.
  47. */
  48. struct mutex rx_lock;
  49. int rx_buf_nr;
  50. int rx_buf_max_nr;
  51. /* The following fields are protected by event_lock.
  52. * vqs[VSOCK_VQ_EVENT] must be accessed with event_lock held.
  53. */
  54. struct mutex event_lock;
  55. struct virtio_vsock_event event_list[8];
  56. u32 guest_cid;
  57. };
  58. static struct virtio_vsock *virtio_vsock_get(void)
  59. {
  60. return the_virtio_vsock;
  61. }
  62. static u32 virtio_transport_get_local_cid(void)
  63. {
  64. struct virtio_vsock *vsock = virtio_vsock_get();
  65. if (!vsock)
  66. return VMADDR_CID_ANY;
  67. return vsock->guest_cid;
  68. }
  69. static void virtio_transport_loopback_work(struct work_struct *work)
  70. {
  71. struct virtio_vsock *vsock =
  72. container_of(work, struct virtio_vsock, loopback_work);
  73. LIST_HEAD(pkts);
  74. spin_lock_bh(&vsock->loopback_list_lock);
  75. list_splice_init(&vsock->loopback_list, &pkts);
  76. spin_unlock_bh(&vsock->loopback_list_lock);
  77. mutex_lock(&vsock->rx_lock);
  78. while (!list_empty(&pkts)) {
  79. struct virtio_vsock_pkt *pkt;
  80. pkt = list_first_entry(&pkts, struct virtio_vsock_pkt, list);
  81. list_del_init(&pkt->list);
  82. virtio_transport_recv_pkt(pkt);
  83. }
  84. mutex_unlock(&vsock->rx_lock);
  85. }
  86. static int virtio_transport_send_pkt_loopback(struct virtio_vsock *vsock,
  87. struct virtio_vsock_pkt *pkt)
  88. {
  89. int len = pkt->len;
  90. spin_lock_bh(&vsock->loopback_list_lock);
  91. list_add_tail(&pkt->list, &vsock->loopback_list);
  92. spin_unlock_bh(&vsock->loopback_list_lock);
  93. queue_work(virtio_vsock_workqueue, &vsock->loopback_work);
  94. return len;
  95. }
  96. static void
  97. virtio_transport_send_pkt_work(struct work_struct *work)
  98. {
  99. struct virtio_vsock *vsock =
  100. container_of(work, struct virtio_vsock, send_pkt_work);
  101. struct virtqueue *vq;
  102. bool added = false;
  103. bool restart_rx = false;
  104. mutex_lock(&vsock->tx_lock);
  105. vq = vsock->vqs[VSOCK_VQ_TX];
  106. for (;;) {
  107. struct virtio_vsock_pkt *pkt;
  108. struct scatterlist hdr, buf, *sgs[2];
  109. int ret, in_sg = 0, out_sg = 0;
  110. bool reply;
  111. spin_lock_bh(&vsock->send_pkt_list_lock);
  112. if (list_empty(&vsock->send_pkt_list)) {
  113. spin_unlock_bh(&vsock->send_pkt_list_lock);
  114. break;
  115. }
  116. pkt = list_first_entry(&vsock->send_pkt_list,
  117. struct virtio_vsock_pkt, list);
  118. list_del_init(&pkt->list);
  119. spin_unlock_bh(&vsock->send_pkt_list_lock);
  120. virtio_transport_deliver_tap_pkt(pkt);
  121. reply = pkt->reply;
  122. sg_init_one(&hdr, &pkt->hdr, sizeof(pkt->hdr));
  123. sgs[out_sg++] = &hdr;
  124. if (pkt->buf) {
  125. sg_init_one(&buf, pkt->buf, pkt->len);
  126. sgs[out_sg++] = &buf;
  127. }
  128. ret = virtqueue_add_sgs(vq, sgs, out_sg, in_sg, pkt, GFP_KERNEL);
  129. /* Usually this means that there is no more space available in
  130. * the vq
  131. */
  132. if (ret < 0) {
  133. spin_lock_bh(&vsock->send_pkt_list_lock);
  134. list_add(&pkt->list, &vsock->send_pkt_list);
  135. spin_unlock_bh(&vsock->send_pkt_list_lock);
  136. break;
  137. }
  138. if (reply) {
  139. struct virtqueue *rx_vq = vsock->vqs[VSOCK_VQ_RX];
  140. int val;
  141. val = atomic_dec_return(&vsock->queued_replies);
  142. /* Do we now have resources to resume rx processing? */
  143. if (val + 1 == virtqueue_get_vring_size(rx_vq))
  144. restart_rx = true;
  145. }
  146. added = true;
  147. }
  148. if (added)
  149. virtqueue_kick(vq);
  150. mutex_unlock(&vsock->tx_lock);
  151. if (restart_rx)
  152. queue_work(virtio_vsock_workqueue, &vsock->rx_work);
  153. }
  154. static int
  155. virtio_transport_send_pkt(struct virtio_vsock_pkt *pkt)
  156. {
  157. struct virtio_vsock *vsock;
  158. int len = pkt->len;
  159. vsock = virtio_vsock_get();
  160. if (!vsock) {
  161. virtio_transport_free_pkt(pkt);
  162. return -ENODEV;
  163. }
  164. if (le64_to_cpu(pkt->hdr.dst_cid) == vsock->guest_cid)
  165. return virtio_transport_send_pkt_loopback(vsock, pkt);
  166. if (pkt->reply)
  167. atomic_inc(&vsock->queued_replies);
  168. spin_lock_bh(&vsock->send_pkt_list_lock);
  169. list_add_tail(&pkt->list, &vsock->send_pkt_list);
  170. spin_unlock_bh(&vsock->send_pkt_list_lock);
  171. queue_work(virtio_vsock_workqueue, &vsock->send_pkt_work);
  172. return len;
  173. }
  174. static int
  175. virtio_transport_cancel_pkt(struct vsock_sock *vsk)
  176. {
  177. struct virtio_vsock *vsock;
  178. struct virtio_vsock_pkt *pkt, *n;
  179. int cnt = 0;
  180. LIST_HEAD(freeme);
  181. vsock = virtio_vsock_get();
  182. if (!vsock) {
  183. return -ENODEV;
  184. }
  185. spin_lock_bh(&vsock->send_pkt_list_lock);
  186. list_for_each_entry_safe(pkt, n, &vsock->send_pkt_list, list) {
  187. if (pkt->vsk != vsk)
  188. continue;
  189. list_move(&pkt->list, &freeme);
  190. }
  191. spin_unlock_bh(&vsock->send_pkt_list_lock);
  192. list_for_each_entry_safe(pkt, n, &freeme, list) {
  193. if (pkt->reply)
  194. cnt++;
  195. list_del(&pkt->list);
  196. virtio_transport_free_pkt(pkt);
  197. }
  198. if (cnt) {
  199. struct virtqueue *rx_vq = vsock->vqs[VSOCK_VQ_RX];
  200. int new_cnt;
  201. new_cnt = atomic_sub_return(cnt, &vsock->queued_replies);
  202. if (new_cnt + cnt >= virtqueue_get_vring_size(rx_vq) &&
  203. new_cnt < virtqueue_get_vring_size(rx_vq))
  204. queue_work(virtio_vsock_workqueue, &vsock->rx_work);
  205. }
  206. return 0;
  207. }
  208. static void virtio_vsock_rx_fill(struct virtio_vsock *vsock)
  209. {
  210. int buf_len = VIRTIO_VSOCK_DEFAULT_RX_BUF_SIZE;
  211. struct virtio_vsock_pkt *pkt;
  212. struct scatterlist hdr, buf, *sgs[2];
  213. struct virtqueue *vq;
  214. int ret;
  215. vq = vsock->vqs[VSOCK_VQ_RX];
  216. do {
  217. pkt = kzalloc(sizeof(*pkt), GFP_KERNEL);
  218. if (!pkt)
  219. break;
  220. pkt->buf = kmalloc(buf_len, GFP_KERNEL);
  221. if (!pkt->buf) {
  222. virtio_transport_free_pkt(pkt);
  223. break;
  224. }
  225. pkt->len = buf_len;
  226. sg_init_one(&hdr, &pkt->hdr, sizeof(pkt->hdr));
  227. sgs[0] = &hdr;
  228. sg_init_one(&buf, pkt->buf, buf_len);
  229. sgs[1] = &buf;
  230. ret = virtqueue_add_sgs(vq, sgs, 0, 2, pkt, GFP_KERNEL);
  231. if (ret) {
  232. virtio_transport_free_pkt(pkt);
  233. break;
  234. }
  235. vsock->rx_buf_nr++;
  236. } while (vq->num_free);
  237. if (vsock->rx_buf_nr > vsock->rx_buf_max_nr)
  238. vsock->rx_buf_max_nr = vsock->rx_buf_nr;
  239. virtqueue_kick(vq);
  240. }
  241. static void virtio_transport_tx_work(struct work_struct *work)
  242. {
  243. struct virtio_vsock *vsock =
  244. container_of(work, struct virtio_vsock, tx_work);
  245. struct virtqueue *vq;
  246. bool added = false;
  247. vq = vsock->vqs[VSOCK_VQ_TX];
  248. mutex_lock(&vsock->tx_lock);
  249. do {
  250. struct virtio_vsock_pkt *pkt;
  251. unsigned int len;
  252. virtqueue_disable_cb(vq);
  253. while ((pkt = virtqueue_get_buf(vq, &len)) != NULL) {
  254. virtio_transport_free_pkt(pkt);
  255. added = true;
  256. }
  257. } while (!virtqueue_enable_cb(vq));
  258. mutex_unlock(&vsock->tx_lock);
  259. if (added)
  260. queue_work(virtio_vsock_workqueue, &vsock->send_pkt_work);
  261. }
  262. /* Is there space left for replies to rx packets? */
  263. static bool virtio_transport_more_replies(struct virtio_vsock *vsock)
  264. {
  265. struct virtqueue *vq = vsock->vqs[VSOCK_VQ_RX];
  266. int val;
  267. smp_rmb(); /* paired with atomic_inc() and atomic_dec_return() */
  268. val = atomic_read(&vsock->queued_replies);
  269. return val < virtqueue_get_vring_size(vq);
  270. }
  271. static void virtio_transport_rx_work(struct work_struct *work)
  272. {
  273. struct virtio_vsock *vsock =
  274. container_of(work, struct virtio_vsock, rx_work);
  275. struct virtqueue *vq;
  276. vq = vsock->vqs[VSOCK_VQ_RX];
  277. mutex_lock(&vsock->rx_lock);
  278. do {
  279. virtqueue_disable_cb(vq);
  280. for (;;) {
  281. struct virtio_vsock_pkt *pkt;
  282. unsigned int len;
  283. if (!virtio_transport_more_replies(vsock)) {
  284. /* Stop rx until the device processes already
  285. * pending replies. Leave rx virtqueue
  286. * callbacks disabled.
  287. */
  288. goto out;
  289. }
  290. pkt = virtqueue_get_buf(vq, &len);
  291. if (!pkt) {
  292. break;
  293. }
  294. vsock->rx_buf_nr--;
  295. /* Drop short/long packets */
  296. if (unlikely(len < sizeof(pkt->hdr) ||
  297. len > sizeof(pkt->hdr) + pkt->len)) {
  298. virtio_transport_free_pkt(pkt);
  299. continue;
  300. }
  301. pkt->len = len - sizeof(pkt->hdr);
  302. virtio_transport_deliver_tap_pkt(pkt);
  303. virtio_transport_recv_pkt(pkt);
  304. }
  305. } while (!virtqueue_enable_cb(vq));
  306. out:
  307. if (vsock->rx_buf_nr < vsock->rx_buf_max_nr / 2)
  308. virtio_vsock_rx_fill(vsock);
  309. mutex_unlock(&vsock->rx_lock);
  310. }
  311. /* event_lock must be held */
  312. static int virtio_vsock_event_fill_one(struct virtio_vsock *vsock,
  313. struct virtio_vsock_event *event)
  314. {
  315. struct scatterlist sg;
  316. struct virtqueue *vq;
  317. vq = vsock->vqs[VSOCK_VQ_EVENT];
  318. sg_init_one(&sg, event, sizeof(*event));
  319. return virtqueue_add_inbuf(vq, &sg, 1, event, GFP_KERNEL);
  320. }
  321. /* event_lock must be held */
  322. static void virtio_vsock_event_fill(struct virtio_vsock *vsock)
  323. {
  324. size_t i;
  325. for (i = 0; i < ARRAY_SIZE(vsock->event_list); i++) {
  326. struct virtio_vsock_event *event = &vsock->event_list[i];
  327. virtio_vsock_event_fill_one(vsock, event);
  328. }
  329. virtqueue_kick(vsock->vqs[VSOCK_VQ_EVENT]);
  330. }
  331. static void virtio_vsock_reset_sock(struct sock *sk)
  332. {
  333. lock_sock(sk);
  334. sk->sk_state = TCP_CLOSE;
  335. sk->sk_err = ECONNRESET;
  336. sk->sk_error_report(sk);
  337. release_sock(sk);
  338. }
  339. static void virtio_vsock_update_guest_cid(struct virtio_vsock *vsock)
  340. {
  341. struct virtio_device *vdev = vsock->vdev;
  342. __le64 guest_cid;
  343. vdev->config->get(vdev, offsetof(struct virtio_vsock_config, guest_cid),
  344. &guest_cid, sizeof(guest_cid));
  345. vsock->guest_cid = le64_to_cpu(guest_cid);
  346. }
  347. /* event_lock must be held */
  348. static void virtio_vsock_event_handle(struct virtio_vsock *vsock,
  349. struct virtio_vsock_event *event)
  350. {
  351. switch (le32_to_cpu(event->id)) {
  352. case VIRTIO_VSOCK_EVENT_TRANSPORT_RESET:
  353. virtio_vsock_update_guest_cid(vsock);
  354. vsock_for_each_connected_socket(virtio_vsock_reset_sock);
  355. break;
  356. }
  357. }
  358. static void virtio_transport_event_work(struct work_struct *work)
  359. {
  360. struct virtio_vsock *vsock =
  361. container_of(work, struct virtio_vsock, event_work);
  362. struct virtqueue *vq;
  363. vq = vsock->vqs[VSOCK_VQ_EVENT];
  364. mutex_lock(&vsock->event_lock);
  365. do {
  366. struct virtio_vsock_event *event;
  367. unsigned int len;
  368. virtqueue_disable_cb(vq);
  369. while ((event = virtqueue_get_buf(vq, &len)) != NULL) {
  370. if (len == sizeof(*event))
  371. virtio_vsock_event_handle(vsock, event);
  372. virtio_vsock_event_fill_one(vsock, event);
  373. }
  374. } while (!virtqueue_enable_cb(vq));
  375. virtqueue_kick(vsock->vqs[VSOCK_VQ_EVENT]);
  376. mutex_unlock(&vsock->event_lock);
  377. }
  378. static void virtio_vsock_event_done(struct virtqueue *vq)
  379. {
  380. struct virtio_vsock *vsock = vq->vdev->priv;
  381. if (!vsock)
  382. return;
  383. queue_work(virtio_vsock_workqueue, &vsock->event_work);
  384. }
  385. static void virtio_vsock_tx_done(struct virtqueue *vq)
  386. {
  387. struct virtio_vsock *vsock = vq->vdev->priv;
  388. if (!vsock)
  389. return;
  390. queue_work(virtio_vsock_workqueue, &vsock->tx_work);
  391. }
  392. static void virtio_vsock_rx_done(struct virtqueue *vq)
  393. {
  394. struct virtio_vsock *vsock = vq->vdev->priv;
  395. if (!vsock)
  396. return;
  397. queue_work(virtio_vsock_workqueue, &vsock->rx_work);
  398. }
  399. static struct virtio_transport virtio_transport = {
  400. .transport = {
  401. .get_local_cid = virtio_transport_get_local_cid,
  402. .init = virtio_transport_do_socket_init,
  403. .destruct = virtio_transport_destruct,
  404. .release = virtio_transport_release,
  405. .connect = virtio_transport_connect,
  406. .shutdown = virtio_transport_shutdown,
  407. .cancel_pkt = virtio_transport_cancel_pkt,
  408. .dgram_bind = virtio_transport_dgram_bind,
  409. .dgram_dequeue = virtio_transport_dgram_dequeue,
  410. .dgram_enqueue = virtio_transport_dgram_enqueue,
  411. .dgram_allow = virtio_transport_dgram_allow,
  412. .stream_dequeue = virtio_transport_stream_dequeue,
  413. .stream_enqueue = virtio_transport_stream_enqueue,
  414. .stream_has_data = virtio_transport_stream_has_data,
  415. .stream_has_space = virtio_transport_stream_has_space,
  416. .stream_rcvhiwat = virtio_transport_stream_rcvhiwat,
  417. .stream_is_active = virtio_transport_stream_is_active,
  418. .stream_allow = virtio_transport_stream_allow,
  419. .notify_poll_in = virtio_transport_notify_poll_in,
  420. .notify_poll_out = virtio_transport_notify_poll_out,
  421. .notify_recv_init = virtio_transport_notify_recv_init,
  422. .notify_recv_pre_block = virtio_transport_notify_recv_pre_block,
  423. .notify_recv_pre_dequeue = virtio_transport_notify_recv_pre_dequeue,
  424. .notify_recv_post_dequeue = virtio_transport_notify_recv_post_dequeue,
  425. .notify_send_init = virtio_transport_notify_send_init,
  426. .notify_send_pre_block = virtio_transport_notify_send_pre_block,
  427. .notify_send_pre_enqueue = virtio_transport_notify_send_pre_enqueue,
  428. .notify_send_post_enqueue = virtio_transport_notify_send_post_enqueue,
  429. .set_buffer_size = virtio_transport_set_buffer_size,
  430. .set_min_buffer_size = virtio_transport_set_min_buffer_size,
  431. .set_max_buffer_size = virtio_transport_set_max_buffer_size,
  432. .get_buffer_size = virtio_transport_get_buffer_size,
  433. .get_min_buffer_size = virtio_transport_get_min_buffer_size,
  434. .get_max_buffer_size = virtio_transport_get_max_buffer_size,
  435. },
  436. .send_pkt = virtio_transport_send_pkt,
  437. };
  438. static int virtio_vsock_probe(struct virtio_device *vdev)
  439. {
  440. vq_callback_t *callbacks[] = {
  441. virtio_vsock_rx_done,
  442. virtio_vsock_tx_done,
  443. virtio_vsock_event_done,
  444. };
  445. static const char * const names[] = {
  446. "rx",
  447. "tx",
  448. "event",
  449. };
  450. struct virtio_vsock *vsock = NULL;
  451. int ret;
  452. ret = mutex_lock_interruptible(&the_virtio_vsock_mutex);
  453. if (ret)
  454. return ret;
  455. /* Only one virtio-vsock device per guest is supported */
  456. if (the_virtio_vsock) {
  457. ret = -EBUSY;
  458. goto out;
  459. }
  460. vsock = kzalloc(sizeof(*vsock), GFP_KERNEL);
  461. if (!vsock) {
  462. ret = -ENOMEM;
  463. goto out;
  464. }
  465. vsock->vdev = vdev;
  466. ret = virtio_find_vqs(vsock->vdev, VSOCK_VQ_MAX,
  467. vsock->vqs, callbacks, names,
  468. NULL);
  469. if (ret < 0)
  470. goto out;
  471. virtio_vsock_update_guest_cid(vsock);
  472. vsock->rx_buf_nr = 0;
  473. vsock->rx_buf_max_nr = 0;
  474. atomic_set(&vsock->queued_replies, 0);
  475. vdev->priv = vsock;
  476. the_virtio_vsock = vsock;
  477. mutex_init(&vsock->tx_lock);
  478. mutex_init(&vsock->rx_lock);
  479. mutex_init(&vsock->event_lock);
  480. spin_lock_init(&vsock->send_pkt_list_lock);
  481. INIT_LIST_HEAD(&vsock->send_pkt_list);
  482. spin_lock_init(&vsock->loopback_list_lock);
  483. INIT_LIST_HEAD(&vsock->loopback_list);
  484. INIT_WORK(&vsock->rx_work, virtio_transport_rx_work);
  485. INIT_WORK(&vsock->tx_work, virtio_transport_tx_work);
  486. INIT_WORK(&vsock->event_work, virtio_transport_event_work);
  487. INIT_WORK(&vsock->send_pkt_work, virtio_transport_send_pkt_work);
  488. INIT_WORK(&vsock->loopback_work, virtio_transport_loopback_work);
  489. mutex_lock(&vsock->rx_lock);
  490. virtio_vsock_rx_fill(vsock);
  491. mutex_unlock(&vsock->rx_lock);
  492. mutex_lock(&vsock->event_lock);
  493. virtio_vsock_event_fill(vsock);
  494. mutex_unlock(&vsock->event_lock);
  495. mutex_unlock(&the_virtio_vsock_mutex);
  496. return 0;
  497. out:
  498. kfree(vsock);
  499. mutex_unlock(&the_virtio_vsock_mutex);
  500. return ret;
  501. }
  502. static void virtio_vsock_remove(struct virtio_device *vdev)
  503. {
  504. struct virtio_vsock *vsock = vdev->priv;
  505. struct virtio_vsock_pkt *pkt;
  506. flush_work(&vsock->loopback_work);
  507. flush_work(&vsock->rx_work);
  508. flush_work(&vsock->tx_work);
  509. flush_work(&vsock->event_work);
  510. flush_work(&vsock->send_pkt_work);
  511. /* Reset all connected sockets when the device disappear */
  512. vsock_for_each_connected_socket(virtio_vsock_reset_sock);
  513. vdev->config->reset(vdev);
  514. mutex_lock(&vsock->rx_lock);
  515. while ((pkt = virtqueue_detach_unused_buf(vsock->vqs[VSOCK_VQ_RX])))
  516. virtio_transport_free_pkt(pkt);
  517. mutex_unlock(&vsock->rx_lock);
  518. mutex_lock(&vsock->tx_lock);
  519. while ((pkt = virtqueue_detach_unused_buf(vsock->vqs[VSOCK_VQ_TX])))
  520. virtio_transport_free_pkt(pkt);
  521. mutex_unlock(&vsock->tx_lock);
  522. spin_lock_bh(&vsock->send_pkt_list_lock);
  523. while (!list_empty(&vsock->send_pkt_list)) {
  524. pkt = list_first_entry(&vsock->send_pkt_list,
  525. struct virtio_vsock_pkt, list);
  526. list_del(&pkt->list);
  527. virtio_transport_free_pkt(pkt);
  528. }
  529. spin_unlock_bh(&vsock->send_pkt_list_lock);
  530. spin_lock_bh(&vsock->loopback_list_lock);
  531. while (!list_empty(&vsock->loopback_list)) {
  532. pkt = list_first_entry(&vsock->loopback_list,
  533. struct virtio_vsock_pkt, list);
  534. list_del(&pkt->list);
  535. virtio_transport_free_pkt(pkt);
  536. }
  537. spin_unlock_bh(&vsock->loopback_list_lock);
  538. mutex_lock(&the_virtio_vsock_mutex);
  539. the_virtio_vsock = NULL;
  540. mutex_unlock(&the_virtio_vsock_mutex);
  541. vdev->config->del_vqs(vdev);
  542. kfree(vsock);
  543. }
  544. static struct virtio_device_id id_table[] = {
  545. { VIRTIO_ID_VSOCK, VIRTIO_DEV_ANY_ID },
  546. { 0 },
  547. };
  548. static unsigned int features[] = {
  549. };
  550. static struct virtio_driver virtio_vsock_driver = {
  551. .feature_table = features,
  552. .feature_table_size = ARRAY_SIZE(features),
  553. .driver.name = KBUILD_MODNAME,
  554. .driver.owner = THIS_MODULE,
  555. .id_table = id_table,
  556. .probe = virtio_vsock_probe,
  557. .remove = virtio_vsock_remove,
  558. };
  559. static int __init virtio_vsock_init(void)
  560. {
  561. int ret;
  562. virtio_vsock_workqueue = alloc_workqueue("virtio_vsock", 0, 0);
  563. if (!virtio_vsock_workqueue)
  564. return -ENOMEM;
  565. ret = vsock_core_init(&virtio_transport.transport);
  566. if (ret)
  567. goto out_wq;
  568. ret = register_virtio_driver(&virtio_vsock_driver);
  569. if (ret)
  570. goto out_vci;
  571. return 0;
  572. out_vci:
  573. vsock_core_exit();
  574. out_wq:
  575. destroy_workqueue(virtio_vsock_workqueue);
  576. return ret;
  577. }
  578. static void __exit virtio_vsock_exit(void)
  579. {
  580. unregister_virtio_driver(&virtio_vsock_driver);
  581. vsock_core_exit();
  582. destroy_workqueue(virtio_vsock_workqueue);
  583. }
  584. module_init(virtio_vsock_init);
  585. module_exit(virtio_vsock_exit);
  586. MODULE_LICENSE("GPL v2");
  587. MODULE_AUTHOR("Asias He");
  588. MODULE_DESCRIPTION("virtio transport for vsock");
  589. MODULE_DEVICE_TABLE(virtio, id_table);