rnbd-srv.c 22 KB

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  1. // SPDX-License-Identifier: GPL-2.0-or-later
  2. /*
  3. * RDMA Network Block Driver
  4. *
  5. * Copyright (c) 2014 - 2018 ProfitBricks GmbH. All rights reserved.
  6. * Copyright (c) 2018 - 2019 1&1 IONOS Cloud GmbH. All rights reserved.
  7. * Copyright (c) 2019 - 2020 1&1 IONOS SE. All rights reserved.
  8. */
  9. #undef pr_fmt
  10. #define pr_fmt(fmt) KBUILD_MODNAME " L" __stringify(__LINE__) ": " fmt
  11. #include <linux/module.h>
  12. #include <linux/blkdev.h>
  13. #include "rnbd-srv.h"
  14. #include "rnbd-srv-trace.h"
  15. MODULE_DESCRIPTION("RDMA Network Block Device Server");
  16. MODULE_LICENSE("GPL");
  17. static u16 port_nr = RTRS_PORT;
  18. module_param_named(port_nr, port_nr, ushort, 0444);
  19. MODULE_PARM_DESC(port_nr,
  20. "The port number the server is listening on (default: "
  21. __stringify(RTRS_PORT)")");
  22. #define DEFAULT_DEV_SEARCH_PATH "/"
  23. static char dev_search_path[PATH_MAX] = DEFAULT_DEV_SEARCH_PATH;
  24. static int dev_search_path_set(const char *val, const struct kernel_param *kp)
  25. {
  26. const char *p = strrchr(val, '\n') ? : val + strlen(val);
  27. if (strlen(val) >= sizeof(dev_search_path))
  28. return -EINVAL;
  29. snprintf(dev_search_path, sizeof(dev_search_path), "%.*s",
  30. (int)(p - val), val);
  31. pr_info("dev_search_path changed to '%s'\n", dev_search_path);
  32. return 0;
  33. }
  34. static struct kparam_string dev_search_path_kparam_str = {
  35. .maxlen = sizeof(dev_search_path),
  36. .string = dev_search_path
  37. };
  38. static const struct kernel_param_ops dev_search_path_ops = {
  39. .set = dev_search_path_set,
  40. .get = param_get_string,
  41. };
  42. module_param_cb(dev_search_path, &dev_search_path_ops,
  43. &dev_search_path_kparam_str, 0444);
  44. MODULE_PARM_DESC(dev_search_path,
  45. "Sets the dev_search_path. When a device is mapped this path is prepended to the device path from the map device operation. If %SESSNAME% is specified in a path, then device will be searched in a session namespace. (default: "
  46. DEFAULT_DEV_SEARCH_PATH ")");
  47. static DEFINE_MUTEX(sess_lock);
  48. static DEFINE_SPINLOCK(dev_lock);
  49. static LIST_HEAD(sess_list);
  50. static LIST_HEAD(dev_list);
  51. struct rnbd_io_private {
  52. struct rtrs_srv_op *id;
  53. struct rnbd_srv_sess_dev *sess_dev;
  54. };
  55. static void rnbd_sess_dev_release(struct kref *kref)
  56. {
  57. struct rnbd_srv_sess_dev *sess_dev;
  58. sess_dev = container_of(kref, struct rnbd_srv_sess_dev, kref);
  59. complete(sess_dev->destroy_comp);
  60. }
  61. static inline void rnbd_put_sess_dev(struct rnbd_srv_sess_dev *sess_dev)
  62. {
  63. kref_put(&sess_dev->kref, rnbd_sess_dev_release);
  64. }
  65. static struct rnbd_srv_sess_dev *
  66. rnbd_get_sess_dev(int dev_id, struct rnbd_srv_session *srv_sess)
  67. {
  68. struct rnbd_srv_sess_dev *sess_dev;
  69. int ret = 0;
  70. rcu_read_lock();
  71. sess_dev = xa_load(&srv_sess->index_idr, dev_id);
  72. if (sess_dev)
  73. ret = kref_get_unless_zero(&sess_dev->kref);
  74. rcu_read_unlock();
  75. if (!ret)
  76. return ERR_PTR(-ENXIO);
  77. return sess_dev;
  78. }
  79. static void rnbd_dev_bi_end_io(struct bio *bio)
  80. {
  81. struct rnbd_io_private *rnbd_priv = bio->bi_private;
  82. struct rnbd_srv_sess_dev *sess_dev = rnbd_priv->sess_dev;
  83. rnbd_put_sess_dev(sess_dev);
  84. rtrs_srv_resp_rdma(rnbd_priv->id, blk_status_to_errno(bio->bi_status));
  85. kfree(rnbd_priv);
  86. bio_put(bio);
  87. }
  88. static int process_rdma(struct rnbd_srv_session *srv_sess,
  89. struct rtrs_srv_op *id, void *data, u32 datalen,
  90. const void *usr, size_t usrlen)
  91. {
  92. const struct rnbd_msg_io *msg = usr;
  93. struct rnbd_io_private *priv;
  94. struct rnbd_srv_sess_dev *sess_dev;
  95. u32 dev_id;
  96. int err;
  97. struct bio *bio;
  98. short prio;
  99. trace_process_rdma(srv_sess, msg, id, datalen, usrlen);
  100. priv = kmalloc(sizeof(*priv), GFP_KERNEL);
  101. if (!priv)
  102. return -ENOMEM;
  103. dev_id = le32_to_cpu(msg->device_id);
  104. sess_dev = rnbd_get_sess_dev(dev_id, srv_sess);
  105. if (IS_ERR(sess_dev)) {
  106. pr_err_ratelimited("Got I/O request on session %s for unknown device id %d: %pe\n",
  107. srv_sess->sessname, dev_id, sess_dev);
  108. err = -ENOTCONN;
  109. goto err;
  110. }
  111. priv->sess_dev = sess_dev;
  112. priv->id = id;
  113. bio = bio_alloc(file_bdev(sess_dev->bdev_file), 1,
  114. rnbd_to_bio_flags(le32_to_cpu(msg->rw)), GFP_KERNEL);
  115. if (bio_add_page(bio, virt_to_page(data), datalen,
  116. offset_in_page(data)) != datalen) {
  117. rnbd_srv_err_rl(sess_dev, "Failed to map data to bio\n");
  118. err = -EINVAL;
  119. goto bio_put;
  120. }
  121. bio->bi_opf = rnbd_to_bio_flags(le32_to_cpu(msg->rw));
  122. if (bio_has_data(bio) &&
  123. bio->bi_iter.bi_size != le32_to_cpu(msg->bi_size)) {
  124. rnbd_srv_err_rl(sess_dev, "Datalen mismatch: bio bi_size (%u), bi_size (%u)\n",
  125. bio->bi_iter.bi_size, msg->bi_size);
  126. err = -EINVAL;
  127. goto bio_put;
  128. }
  129. bio->bi_end_io = rnbd_dev_bi_end_io;
  130. bio->bi_private = priv;
  131. bio->bi_iter.bi_sector = le64_to_cpu(msg->sector);
  132. prio = srv_sess->ver < RNBD_PROTO_VER_MAJOR ||
  133. usrlen < sizeof(*msg) ? 0 : le16_to_cpu(msg->prio);
  134. bio_set_prio(bio, prio);
  135. submit_bio(bio);
  136. return 0;
  137. bio_put:
  138. bio_put(bio);
  139. rnbd_put_sess_dev(sess_dev);
  140. err:
  141. kfree(priv);
  142. return err;
  143. }
  144. static void destroy_device(struct kref *kref)
  145. {
  146. struct rnbd_srv_dev *dev = container_of(kref, struct rnbd_srv_dev, kref);
  147. WARN_ONCE(!list_empty(&dev->sess_dev_list),
  148. "Device %s is being destroyed but still in use!\n",
  149. dev->name);
  150. spin_lock(&dev_lock);
  151. list_del(&dev->list);
  152. spin_unlock(&dev_lock);
  153. mutex_destroy(&dev->lock);
  154. if (dev->dev_kobj.state_in_sysfs)
  155. /*
  156. * Destroy kobj only if it was really created.
  157. */
  158. rnbd_srv_destroy_dev_sysfs(dev);
  159. else
  160. kfree(dev);
  161. }
  162. static void rnbd_put_srv_dev(struct rnbd_srv_dev *dev)
  163. {
  164. kref_put(&dev->kref, destroy_device);
  165. }
  166. void rnbd_destroy_sess_dev(struct rnbd_srv_sess_dev *sess_dev, bool keep_id)
  167. {
  168. DECLARE_COMPLETION_ONSTACK(dc);
  169. if (keep_id)
  170. /* free the resources for the id but don't */
  171. /* allow to re-use the id itself because it */
  172. /* is still used by the client */
  173. xa_cmpxchg(&sess_dev->sess->index_idr, sess_dev->device_id,
  174. sess_dev, NULL, 0);
  175. else
  176. xa_erase(&sess_dev->sess->index_idr, sess_dev->device_id);
  177. synchronize_rcu();
  178. sess_dev->destroy_comp = &dc;
  179. rnbd_put_sess_dev(sess_dev);
  180. wait_for_completion(&dc); /* wait for inflights to drop to zero */
  181. fput(sess_dev->bdev_file);
  182. mutex_lock(&sess_dev->dev->lock);
  183. list_del(&sess_dev->dev_list);
  184. if (!sess_dev->readonly)
  185. sess_dev->dev->open_write_cnt--;
  186. mutex_unlock(&sess_dev->dev->lock);
  187. rnbd_put_srv_dev(sess_dev->dev);
  188. rnbd_srv_info(sess_dev, "Device closed\n");
  189. kfree(sess_dev);
  190. }
  191. static void destroy_sess(struct rnbd_srv_session *srv_sess)
  192. {
  193. struct rnbd_srv_sess_dev *sess_dev;
  194. unsigned long index;
  195. if (xa_empty(&srv_sess->index_idr))
  196. goto out;
  197. trace_destroy_sess(srv_sess);
  198. mutex_lock(&srv_sess->lock);
  199. xa_for_each(&srv_sess->index_idr, index, sess_dev)
  200. rnbd_srv_destroy_dev_session_sysfs(sess_dev);
  201. mutex_unlock(&srv_sess->lock);
  202. out:
  203. xa_destroy(&srv_sess->index_idr);
  204. pr_info("RTRS Session %s disconnected\n", srv_sess->sessname);
  205. mutex_lock(&sess_lock);
  206. list_del(&srv_sess->list);
  207. mutex_unlock(&sess_lock);
  208. mutex_destroy(&srv_sess->lock);
  209. kfree(srv_sess);
  210. }
  211. static int create_sess(struct rtrs_srv_sess *rtrs)
  212. {
  213. struct rnbd_srv_session *srv_sess;
  214. char pathname[NAME_MAX];
  215. int err;
  216. err = rtrs_srv_get_path_name(rtrs, pathname, sizeof(pathname));
  217. if (err) {
  218. pr_err("rtrs_srv_get_path_name(%s): %d\n", pathname, err);
  219. return err;
  220. }
  221. srv_sess = kzalloc(sizeof(*srv_sess), GFP_KERNEL);
  222. if (!srv_sess)
  223. return -ENOMEM;
  224. srv_sess->queue_depth = rtrs_srv_get_queue_depth(rtrs);
  225. xa_init_flags(&srv_sess->index_idr, XA_FLAGS_ALLOC);
  226. mutex_init(&srv_sess->lock);
  227. mutex_lock(&sess_lock);
  228. list_add(&srv_sess->list, &sess_list);
  229. mutex_unlock(&sess_lock);
  230. srv_sess->rtrs = rtrs;
  231. strscpy(srv_sess->sessname, pathname, sizeof(srv_sess->sessname));
  232. rtrs_srv_set_sess_priv(rtrs, srv_sess);
  233. trace_create_sess(srv_sess);
  234. return 0;
  235. }
  236. static int rnbd_srv_link_ev(struct rtrs_srv_sess *rtrs,
  237. enum rtrs_srv_link_ev ev, void *priv)
  238. {
  239. struct rnbd_srv_session *srv_sess = priv;
  240. switch (ev) {
  241. case RTRS_SRV_LINK_EV_CONNECTED:
  242. return create_sess(rtrs);
  243. case RTRS_SRV_LINK_EV_DISCONNECTED:
  244. if (WARN_ON_ONCE(!srv_sess))
  245. return -EINVAL;
  246. destroy_sess(srv_sess);
  247. return 0;
  248. default:
  249. pr_warn("Received unknown RTRS session event %d from session %s\n",
  250. ev, srv_sess->sessname);
  251. return -EINVAL;
  252. }
  253. }
  254. void rnbd_srv_sess_dev_force_close(struct rnbd_srv_sess_dev *sess_dev,
  255. struct kobj_attribute *attr)
  256. {
  257. struct rnbd_srv_session *sess = sess_dev->sess;
  258. /* It is already started to close by client's close message. */
  259. if (!mutex_trylock(&sess->lock))
  260. return;
  261. sess_dev->keep_id = true;
  262. /* first remove sysfs itself to avoid deadlock */
  263. sysfs_remove_file_self(&sess_dev->kobj, &attr->attr);
  264. rnbd_srv_destroy_dev_session_sysfs(sess_dev);
  265. mutex_unlock(&sess->lock);
  266. }
  267. static void process_msg_close(struct rnbd_srv_session *srv_sess,
  268. void *data, size_t datalen, const void *usr,
  269. size_t usrlen)
  270. {
  271. const struct rnbd_msg_close *close_msg = usr;
  272. struct rnbd_srv_sess_dev *sess_dev;
  273. trace_process_msg_close(srv_sess, close_msg);
  274. sess_dev = rnbd_get_sess_dev(le32_to_cpu(close_msg->device_id),
  275. srv_sess);
  276. if (IS_ERR(sess_dev))
  277. return;
  278. rnbd_put_sess_dev(sess_dev);
  279. mutex_lock(&srv_sess->lock);
  280. rnbd_srv_destroy_dev_session_sysfs(sess_dev);
  281. mutex_unlock(&srv_sess->lock);
  282. }
  283. static int process_msg_open(struct rnbd_srv_session *srv_sess,
  284. const void *msg, size_t len,
  285. void *data, size_t datalen);
  286. static void process_msg_sess_info(struct rnbd_srv_session *srv_sess,
  287. const void *msg, size_t len,
  288. void *data, size_t datalen);
  289. static int rnbd_srv_rdma_ev(void *priv, struct rtrs_srv_op *id,
  290. void *data, size_t datalen,
  291. const void *usr, size_t usrlen)
  292. {
  293. struct rnbd_srv_session *srv_sess = priv;
  294. const struct rnbd_msg_hdr *hdr = usr;
  295. int ret = 0;
  296. u16 type;
  297. if (WARN_ON_ONCE(!srv_sess))
  298. return -ENODEV;
  299. type = le16_to_cpu(hdr->type);
  300. switch (type) {
  301. case RNBD_MSG_IO:
  302. return process_rdma(srv_sess, id, data, datalen, usr, usrlen);
  303. case RNBD_MSG_CLOSE:
  304. process_msg_close(srv_sess, data, datalen, usr, usrlen);
  305. break;
  306. case RNBD_MSG_OPEN:
  307. ret = process_msg_open(srv_sess, usr, usrlen, data, datalen);
  308. break;
  309. case RNBD_MSG_SESS_INFO:
  310. process_msg_sess_info(srv_sess, usr, usrlen, data, datalen);
  311. break;
  312. default:
  313. pr_warn("Received unexpected message type %d from session %s\n",
  314. type, srv_sess->sessname);
  315. return -EINVAL;
  316. }
  317. /*
  318. * Since ret is passed to rtrs to handle the failure case, we
  319. * just return 0 at the end otherwise callers in rtrs would call
  320. * send_io_resp_imm again to print redundant err message.
  321. */
  322. rtrs_srv_resp_rdma(id, ret);
  323. return 0;
  324. }
  325. static struct rnbd_srv_sess_dev
  326. *rnbd_sess_dev_alloc(struct rnbd_srv_session *srv_sess)
  327. {
  328. struct rnbd_srv_sess_dev *sess_dev;
  329. int error;
  330. sess_dev = kzalloc(sizeof(*sess_dev), GFP_KERNEL);
  331. if (!sess_dev)
  332. return ERR_PTR(-ENOMEM);
  333. error = xa_alloc(&srv_sess->index_idr, &sess_dev->device_id, sess_dev,
  334. xa_limit_32b, GFP_NOWAIT);
  335. if (error < 0) {
  336. pr_warn("Allocating idr failed, err: %d\n", error);
  337. kfree(sess_dev);
  338. return ERR_PTR(error);
  339. }
  340. return sess_dev;
  341. }
  342. static struct rnbd_srv_dev *rnbd_srv_init_srv_dev(struct block_device *bdev)
  343. {
  344. struct rnbd_srv_dev *dev;
  345. dev = kzalloc(sizeof(*dev), GFP_KERNEL);
  346. if (!dev)
  347. return ERR_PTR(-ENOMEM);
  348. snprintf(dev->name, sizeof(dev->name), "%pg", bdev);
  349. kref_init(&dev->kref);
  350. INIT_LIST_HEAD(&dev->sess_dev_list);
  351. mutex_init(&dev->lock);
  352. return dev;
  353. }
  354. static struct rnbd_srv_dev *
  355. rnbd_srv_find_or_add_srv_dev(struct rnbd_srv_dev *new_dev)
  356. {
  357. struct rnbd_srv_dev *dev;
  358. spin_lock(&dev_lock);
  359. list_for_each_entry(dev, &dev_list, list) {
  360. if (!strncmp(dev->name, new_dev->name, sizeof(dev->name))) {
  361. if (!kref_get_unless_zero(&dev->kref))
  362. /*
  363. * We lost the race, device is almost dead.
  364. * Continue traversing to find a valid one.
  365. */
  366. continue;
  367. spin_unlock(&dev_lock);
  368. return dev;
  369. }
  370. }
  371. list_add(&new_dev->list, &dev_list);
  372. spin_unlock(&dev_lock);
  373. return new_dev;
  374. }
  375. static int rnbd_srv_check_update_open_perm(struct rnbd_srv_dev *srv_dev,
  376. struct rnbd_srv_session *srv_sess,
  377. enum rnbd_access_mode access_mode)
  378. {
  379. int ret = 0;
  380. mutex_lock(&srv_dev->lock);
  381. switch (access_mode) {
  382. case RNBD_ACCESS_RO:
  383. break;
  384. case RNBD_ACCESS_RW:
  385. if (srv_dev->open_write_cnt == 0) {
  386. srv_dev->open_write_cnt++;
  387. } else {
  388. pr_err("Mapping device '%s' for session %s with RW permissions failed. Device already opened as 'RW' by %d client(s), access mode %s.\n",
  389. srv_dev->name, srv_sess->sessname,
  390. srv_dev->open_write_cnt,
  391. rnbd_access_modes[access_mode].str);
  392. ret = -EPERM;
  393. }
  394. break;
  395. case RNBD_ACCESS_MIGRATION:
  396. if (srv_dev->open_write_cnt < 2) {
  397. srv_dev->open_write_cnt++;
  398. } else {
  399. pr_err("Mapping device '%s' for session %s with migration permissions failed. Device already opened as 'RW' by %d client(s), access mode %s.\n",
  400. srv_dev->name, srv_sess->sessname,
  401. srv_dev->open_write_cnt,
  402. rnbd_access_modes[access_mode].str);
  403. ret = -EPERM;
  404. }
  405. break;
  406. default:
  407. pr_err("Received mapping request for device '%s' on session %s with invalid access mode: %d\n",
  408. srv_dev->name, srv_sess->sessname, access_mode);
  409. ret = -EINVAL;
  410. }
  411. mutex_unlock(&srv_dev->lock);
  412. return ret;
  413. }
  414. static struct rnbd_srv_dev *
  415. rnbd_srv_get_or_create_srv_dev(struct block_device *bdev,
  416. struct rnbd_srv_session *srv_sess,
  417. enum rnbd_access_mode access_mode)
  418. {
  419. int ret;
  420. struct rnbd_srv_dev *new_dev, *dev;
  421. new_dev = rnbd_srv_init_srv_dev(bdev);
  422. if (IS_ERR(new_dev))
  423. return new_dev;
  424. dev = rnbd_srv_find_or_add_srv_dev(new_dev);
  425. if (dev != new_dev)
  426. kfree(new_dev);
  427. ret = rnbd_srv_check_update_open_perm(dev, srv_sess, access_mode);
  428. if (ret) {
  429. rnbd_put_srv_dev(dev);
  430. return ERR_PTR(ret);
  431. }
  432. return dev;
  433. }
  434. static void rnbd_srv_fill_msg_open_rsp(struct rnbd_msg_open_rsp *rsp,
  435. struct rnbd_srv_sess_dev *sess_dev)
  436. {
  437. struct block_device *bdev = file_bdev(sess_dev->bdev_file);
  438. rsp->hdr.type = cpu_to_le16(RNBD_MSG_OPEN_RSP);
  439. rsp->device_id = cpu_to_le32(sess_dev->device_id);
  440. rsp->nsectors = cpu_to_le64(bdev_nr_sectors(bdev));
  441. rsp->logical_block_size = cpu_to_le16(bdev_logical_block_size(bdev));
  442. rsp->physical_block_size = cpu_to_le16(bdev_physical_block_size(bdev));
  443. rsp->max_segments = cpu_to_le16(bdev_max_segments(bdev));
  444. rsp->max_hw_sectors =
  445. cpu_to_le32(queue_max_hw_sectors(bdev_get_queue(bdev)));
  446. rsp->max_write_zeroes_sectors =
  447. cpu_to_le32(bdev_write_zeroes_sectors(bdev));
  448. rsp->max_discard_sectors = cpu_to_le32(bdev_max_discard_sectors(bdev));
  449. rsp->discard_granularity = cpu_to_le32(bdev_discard_granularity(bdev));
  450. rsp->discard_alignment = cpu_to_le32(bdev_discard_alignment(bdev));
  451. rsp->secure_discard = cpu_to_le16(bdev_max_secure_erase_sectors(bdev));
  452. rsp->cache_policy = 0;
  453. if (bdev_write_cache(bdev))
  454. rsp->cache_policy |= RNBD_WRITEBACK;
  455. if (bdev_fua(bdev))
  456. rsp->cache_policy |= RNBD_FUA;
  457. }
  458. static struct rnbd_srv_sess_dev *
  459. rnbd_srv_create_set_sess_dev(struct rnbd_srv_session *srv_sess,
  460. const struct rnbd_msg_open *open_msg,
  461. struct file *bdev_file, bool readonly,
  462. struct rnbd_srv_dev *srv_dev)
  463. {
  464. struct rnbd_srv_sess_dev *sdev = rnbd_sess_dev_alloc(srv_sess);
  465. if (IS_ERR(sdev))
  466. return sdev;
  467. kref_init(&sdev->kref);
  468. strscpy(sdev->pathname, open_msg->dev_name, sizeof(sdev->pathname));
  469. sdev->bdev_file = bdev_file;
  470. sdev->sess = srv_sess;
  471. sdev->dev = srv_dev;
  472. sdev->readonly = readonly;
  473. sdev->access_mode = open_msg->access_mode;
  474. return sdev;
  475. }
  476. static char *rnbd_srv_get_full_path(struct rnbd_srv_session *srv_sess,
  477. const char *dev_name)
  478. {
  479. char *full_path;
  480. char *a, *b;
  481. int len;
  482. full_path = kmalloc(PATH_MAX, GFP_KERNEL);
  483. if (!full_path)
  484. return ERR_PTR(-ENOMEM);
  485. /*
  486. * Replace %SESSNAME% with a real session name in order to
  487. * create device namespace.
  488. */
  489. a = strnstr(dev_search_path, "%SESSNAME%", sizeof(dev_search_path));
  490. if (a) {
  491. len = a - dev_search_path;
  492. len = snprintf(full_path, PATH_MAX, "%.*s/%s/%s", len,
  493. dev_search_path, srv_sess->sessname, dev_name);
  494. } else {
  495. len = snprintf(full_path, PATH_MAX, "%s/%s",
  496. dev_search_path, dev_name);
  497. }
  498. if (len >= PATH_MAX) {
  499. pr_err("Too long path: %s, %s, %s\n",
  500. dev_search_path, srv_sess->sessname, dev_name);
  501. kfree(full_path);
  502. return ERR_PTR(-EINVAL);
  503. }
  504. /* eliminitate duplicated slashes */
  505. a = strchr(full_path, '/');
  506. b = a;
  507. while (*b != '\0') {
  508. if (*b == '/' && *a == '/') {
  509. b++;
  510. } else {
  511. a++;
  512. *a = *b;
  513. b++;
  514. }
  515. }
  516. a++;
  517. *a = '\0';
  518. return full_path;
  519. }
  520. static void process_msg_sess_info(struct rnbd_srv_session *srv_sess,
  521. const void *msg, size_t len,
  522. void *data, size_t datalen)
  523. {
  524. const struct rnbd_msg_sess_info *sess_info_msg = msg;
  525. struct rnbd_msg_sess_info_rsp *rsp = data;
  526. srv_sess->ver = min_t(u8, sess_info_msg->ver, RNBD_PROTO_VER_MAJOR);
  527. trace_process_msg_sess_info(srv_sess, sess_info_msg);
  528. rsp->hdr.type = cpu_to_le16(RNBD_MSG_SESS_INFO_RSP);
  529. rsp->ver = srv_sess->ver;
  530. }
  531. /**
  532. * find_srv_sess_dev() - a dev is already opened by this name
  533. * @srv_sess: the session to search.
  534. * @dev_name: string containing the name of the device.
  535. *
  536. * Return struct rnbd_srv_sess_dev if srv_sess already opened the dev_name
  537. * NULL if the session didn't open the device yet.
  538. */
  539. static struct rnbd_srv_sess_dev *
  540. find_srv_sess_dev(struct rnbd_srv_session *srv_sess, const char *dev_name)
  541. {
  542. struct rnbd_srv_sess_dev *sess_dev;
  543. unsigned long index;
  544. if (xa_empty(&srv_sess->index_idr))
  545. return NULL;
  546. xa_for_each(&srv_sess->index_idr, index, sess_dev)
  547. if (!strcmp(sess_dev->pathname, dev_name))
  548. return sess_dev;
  549. return NULL;
  550. }
  551. static int process_msg_open(struct rnbd_srv_session *srv_sess,
  552. const void *msg, size_t len,
  553. void *data, size_t datalen)
  554. {
  555. int ret;
  556. struct rnbd_srv_dev *srv_dev;
  557. struct rnbd_srv_sess_dev *srv_sess_dev;
  558. const struct rnbd_msg_open *open_msg = msg;
  559. struct file *bdev_file;
  560. blk_mode_t open_flags = BLK_OPEN_READ;
  561. char *full_path;
  562. struct rnbd_msg_open_rsp *rsp = data;
  563. trace_process_msg_open(srv_sess, open_msg);
  564. if (open_msg->access_mode != RNBD_ACCESS_RO)
  565. open_flags |= BLK_OPEN_WRITE;
  566. mutex_lock(&srv_sess->lock);
  567. srv_sess_dev = find_srv_sess_dev(srv_sess, open_msg->dev_name);
  568. if (srv_sess_dev)
  569. goto fill_response;
  570. if ((strlen(dev_search_path) + strlen(open_msg->dev_name))
  571. >= PATH_MAX) {
  572. pr_err("Opening device for session %s failed, device path too long. '%s/%s' is longer than PATH_MAX (%d)\n",
  573. srv_sess->sessname, dev_search_path, open_msg->dev_name,
  574. PATH_MAX);
  575. ret = -EINVAL;
  576. goto reject;
  577. }
  578. if (strstr(open_msg->dev_name, "..")) {
  579. pr_err("Opening device for session %s failed, device path %s contains relative path ..\n",
  580. srv_sess->sessname, open_msg->dev_name);
  581. ret = -EINVAL;
  582. goto reject;
  583. }
  584. full_path = rnbd_srv_get_full_path(srv_sess, open_msg->dev_name);
  585. if (IS_ERR(full_path)) {
  586. ret = PTR_ERR(full_path);
  587. pr_err("Opening device '%s' for client %s failed, failed to get device full path, err: %pe\n",
  588. open_msg->dev_name, srv_sess->sessname, full_path);
  589. goto reject;
  590. }
  591. bdev_file = bdev_file_open_by_path(full_path, open_flags, NULL, NULL);
  592. if (IS_ERR(bdev_file)) {
  593. ret = PTR_ERR(bdev_file);
  594. pr_err("Opening device '%s' on session %s failed, failed to open the block device, err: %pe\n",
  595. full_path, srv_sess->sessname, bdev_file);
  596. goto free_path;
  597. }
  598. srv_dev = rnbd_srv_get_or_create_srv_dev(file_bdev(bdev_file), srv_sess,
  599. open_msg->access_mode);
  600. if (IS_ERR(srv_dev)) {
  601. pr_err("Opening device '%s' on session %s failed, creating srv_dev failed, err: %pe\n",
  602. full_path, srv_sess->sessname, srv_dev);
  603. ret = PTR_ERR(srv_dev);
  604. goto blkdev_put;
  605. }
  606. srv_sess_dev = rnbd_srv_create_set_sess_dev(srv_sess, open_msg,
  607. bdev_file,
  608. open_msg->access_mode == RNBD_ACCESS_RO,
  609. srv_dev);
  610. if (IS_ERR(srv_sess_dev)) {
  611. pr_err("Opening device '%s' on session %s failed, creating sess_dev failed, err: %pe\n",
  612. full_path, srv_sess->sessname, srv_sess_dev);
  613. ret = PTR_ERR(srv_sess_dev);
  614. goto srv_dev_put;
  615. }
  616. /* Create the srv_dev sysfs files if they haven't been created yet. The
  617. * reason to delay the creation is not to create the sysfs files before
  618. * we are sure the device can be opened.
  619. */
  620. mutex_lock(&srv_dev->lock);
  621. if (!srv_dev->dev_kobj.state_in_sysfs) {
  622. ret = rnbd_srv_create_dev_sysfs(srv_dev, file_bdev(bdev_file));
  623. if (ret) {
  624. mutex_unlock(&srv_dev->lock);
  625. rnbd_srv_err(srv_sess_dev,
  626. "Opening device failed, failed to create device sysfs files, err: %d\n",
  627. ret);
  628. goto free_srv_sess_dev;
  629. }
  630. }
  631. ret = rnbd_srv_create_dev_session_sysfs(srv_sess_dev);
  632. if (ret) {
  633. mutex_unlock(&srv_dev->lock);
  634. rnbd_srv_err(srv_sess_dev,
  635. "Opening device failed, failed to create dev client sysfs files, err: %d\n",
  636. ret);
  637. goto free_srv_sess_dev;
  638. }
  639. list_add(&srv_sess_dev->dev_list, &srv_dev->sess_dev_list);
  640. mutex_unlock(&srv_dev->lock);
  641. rnbd_srv_info(srv_sess_dev, "Opened device '%s'\n", srv_dev->name);
  642. kfree(full_path);
  643. fill_response:
  644. rnbd_srv_fill_msg_open_rsp(rsp, srv_sess_dev);
  645. mutex_unlock(&srv_sess->lock);
  646. return 0;
  647. free_srv_sess_dev:
  648. xa_erase(&srv_sess->index_idr, srv_sess_dev->device_id);
  649. synchronize_rcu();
  650. kfree(srv_sess_dev);
  651. srv_dev_put:
  652. if (open_msg->access_mode != RNBD_ACCESS_RO) {
  653. mutex_lock(&srv_dev->lock);
  654. srv_dev->open_write_cnt--;
  655. mutex_unlock(&srv_dev->lock);
  656. }
  657. rnbd_put_srv_dev(srv_dev);
  658. blkdev_put:
  659. fput(bdev_file);
  660. free_path:
  661. kfree(full_path);
  662. reject:
  663. mutex_unlock(&srv_sess->lock);
  664. return ret;
  665. }
  666. static struct rtrs_srv_ctx *rtrs_ctx;
  667. static struct rtrs_srv_ops rtrs_ops;
  668. static int __init rnbd_srv_init_module(void)
  669. {
  670. int err = 0;
  671. BUILD_BUG_ON(sizeof(struct rnbd_msg_hdr) != 4);
  672. BUILD_BUG_ON(sizeof(struct rnbd_msg_sess_info) != 36);
  673. BUILD_BUG_ON(sizeof(struct rnbd_msg_sess_info_rsp) != 36);
  674. BUILD_BUG_ON(sizeof(struct rnbd_msg_open) != 264);
  675. BUILD_BUG_ON(sizeof(struct rnbd_msg_close) != 8);
  676. BUILD_BUG_ON(sizeof(struct rnbd_msg_open_rsp) != 56);
  677. rtrs_ops = (struct rtrs_srv_ops) {
  678. .rdma_ev = rnbd_srv_rdma_ev,
  679. .link_ev = rnbd_srv_link_ev,
  680. };
  681. rtrs_ctx = rtrs_srv_open(&rtrs_ops, port_nr);
  682. if (IS_ERR(rtrs_ctx)) {
  683. pr_err("rtrs_srv_open(), err: %pe\n", rtrs_ctx);
  684. return PTR_ERR(rtrs_ctx);
  685. }
  686. err = rnbd_srv_create_sysfs_files();
  687. if (err) {
  688. pr_err("rnbd_srv_create_sysfs_files(), err: %d\n", err);
  689. rtrs_srv_close(rtrs_ctx);
  690. }
  691. return err;
  692. }
  693. static void __exit rnbd_srv_cleanup_module(void)
  694. {
  695. rtrs_srv_close(rtrs_ctx);
  696. WARN_ON(!list_empty(&sess_list));
  697. rnbd_srv_destroy_sysfs_files();
  698. }
  699. module_init(rnbd_srv_init_module);
  700. module_exit(rnbd_srv_cleanup_module);