ucma.c 43 KB

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  1. /*
  2. * Copyright (c) 2005-2006 Intel Corporation. All rights reserved.
  3. *
  4. * This software is available to you under a choice of one of two
  5. * licenses. You may choose to be licensed under the terms of the GNU
  6. * General Public License (GPL) Version 2, available from the file
  7. * COPYING in the main directory of this source tree, or the
  8. * OpenIB.org BSD license below:
  9. *
  10. * Redistribution and use in source and binary forms, with or
  11. * without modification, are permitted provided that the following
  12. * conditions are met:
  13. *
  14. * - Redistributions of source code must retain the above
  15. * copyright notice, this list of conditions and the following
  16. * disclaimer.
  17. *
  18. * - Redistributions in binary form must reproduce the above
  19. * copyright notice, this list of conditions and the following
  20. * disclaimer in the documentation and/or other materials
  21. * provided with the distribution.
  22. *
  23. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
  24. * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
  25. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
  26. * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
  27. * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
  28. * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
  29. * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
  30. * SOFTWARE.
  31. */
  32. #include <linux/completion.h>
  33. #include <linux/file.h>
  34. #include <linux/mutex.h>
  35. #include <linux/poll.h>
  36. #include <linux/sched.h>
  37. #include <linux/idr.h>
  38. #include <linux/in.h>
  39. #include <linux/in6.h>
  40. #include <linux/miscdevice.h>
  41. #include <linux/slab.h>
  42. #include <linux/sysctl.h>
  43. #include <linux/module.h>
  44. #include <linux/nsproxy.h>
  45. #include <rdma/rdma_user_cm.h>
  46. #include <rdma/ib_marshall.h>
  47. #include <rdma/rdma_cm.h>
  48. #include <rdma/rdma_cm_ib.h>
  49. #include <rdma/ib_addr.h>
  50. #include <rdma/ib.h>
  51. MODULE_AUTHOR("Sean Hefty");
  52. MODULE_DESCRIPTION("RDMA Userspace Connection Manager Access");
  53. MODULE_LICENSE("Dual BSD/GPL");
  54. static unsigned int max_backlog = 1024;
  55. static struct ctl_table_header *ucma_ctl_table_hdr;
  56. static struct ctl_table ucma_ctl_table[] = {
  57. {
  58. .procname = "max_backlog",
  59. .data = &max_backlog,
  60. .maxlen = sizeof max_backlog,
  61. .mode = 0644,
  62. .proc_handler = proc_dointvec,
  63. },
  64. { }
  65. };
  66. struct ucma_file {
  67. struct mutex mut;
  68. struct file *filp;
  69. struct list_head ctx_list;
  70. struct list_head event_list;
  71. wait_queue_head_t poll_wait;
  72. struct workqueue_struct *close_wq;
  73. };
  74. struct ucma_context {
  75. int id;
  76. struct completion comp;
  77. atomic_t ref;
  78. int events_reported;
  79. int backlog;
  80. struct ucma_file *file;
  81. struct rdma_cm_id *cm_id;
  82. u64 uid;
  83. struct list_head list;
  84. struct list_head mc_list;
  85. /* mark that device is in process of destroying the internal HW
  86. * resources, protected by the global mut
  87. */
  88. int closing;
  89. /* sync between removal event and id destroy, protected by file mut */
  90. int destroying;
  91. struct work_struct close_work;
  92. };
  93. struct ucma_multicast {
  94. struct ucma_context *ctx;
  95. int id;
  96. int events_reported;
  97. u64 uid;
  98. u8 join_state;
  99. struct list_head list;
  100. struct sockaddr_storage addr;
  101. };
  102. struct ucma_event {
  103. struct ucma_context *ctx;
  104. struct ucma_multicast *mc;
  105. struct list_head list;
  106. struct rdma_cm_id *cm_id;
  107. struct rdma_ucm_event_resp resp;
  108. struct work_struct close_work;
  109. };
  110. static DEFINE_MUTEX(mut);
  111. static DEFINE_IDR(ctx_idr);
  112. static DEFINE_IDR(multicast_idr);
  113. static inline struct ucma_context *_ucma_find_context(int id,
  114. struct ucma_file *file)
  115. {
  116. struct ucma_context *ctx;
  117. ctx = idr_find(&ctx_idr, id);
  118. if (!ctx)
  119. ctx = ERR_PTR(-ENOENT);
  120. else if (ctx->file != file)
  121. ctx = ERR_PTR(-EINVAL);
  122. return ctx;
  123. }
  124. static struct ucma_context *ucma_get_ctx(struct ucma_file *file, int id)
  125. {
  126. struct ucma_context *ctx;
  127. mutex_lock(&mut);
  128. ctx = _ucma_find_context(id, file);
  129. if (!IS_ERR(ctx)) {
  130. if (ctx->closing)
  131. ctx = ERR_PTR(-EIO);
  132. else
  133. atomic_inc(&ctx->ref);
  134. }
  135. mutex_unlock(&mut);
  136. return ctx;
  137. }
  138. static void ucma_put_ctx(struct ucma_context *ctx)
  139. {
  140. if (atomic_dec_and_test(&ctx->ref))
  141. complete(&ctx->comp);
  142. }
  143. static void ucma_close_event_id(struct work_struct *work)
  144. {
  145. struct ucma_event *uevent_close = container_of(work, struct ucma_event, close_work);
  146. rdma_destroy_id(uevent_close->cm_id);
  147. kfree(uevent_close);
  148. }
  149. static void ucma_close_id(struct work_struct *work)
  150. {
  151. struct ucma_context *ctx = container_of(work, struct ucma_context, close_work);
  152. /* once all inflight tasks are finished, we close all underlying
  153. * resources. The context is still alive till its explicit destryoing
  154. * by its creator.
  155. */
  156. ucma_put_ctx(ctx);
  157. wait_for_completion(&ctx->comp);
  158. /* No new events will be generated after destroying the id. */
  159. rdma_destroy_id(ctx->cm_id);
  160. }
  161. static struct ucma_context *ucma_alloc_ctx(struct ucma_file *file)
  162. {
  163. struct ucma_context *ctx;
  164. ctx = kzalloc(sizeof(*ctx), GFP_KERNEL);
  165. if (!ctx)
  166. return NULL;
  167. INIT_WORK(&ctx->close_work, ucma_close_id);
  168. atomic_set(&ctx->ref, 1);
  169. init_completion(&ctx->comp);
  170. INIT_LIST_HEAD(&ctx->mc_list);
  171. ctx->file = file;
  172. mutex_lock(&mut);
  173. ctx->id = idr_alloc(&ctx_idr, ctx, 0, 0, GFP_KERNEL);
  174. mutex_unlock(&mut);
  175. if (ctx->id < 0)
  176. goto error;
  177. list_add_tail(&ctx->list, &file->ctx_list);
  178. return ctx;
  179. error:
  180. kfree(ctx);
  181. return NULL;
  182. }
  183. static struct ucma_multicast* ucma_alloc_multicast(struct ucma_context *ctx)
  184. {
  185. struct ucma_multicast *mc;
  186. mc = kzalloc(sizeof(*mc), GFP_KERNEL);
  187. if (!mc)
  188. return NULL;
  189. mutex_lock(&mut);
  190. mc->id = idr_alloc(&multicast_idr, mc, 0, 0, GFP_KERNEL);
  191. mutex_unlock(&mut);
  192. if (mc->id < 0)
  193. goto error;
  194. mc->ctx = ctx;
  195. list_add_tail(&mc->list, &ctx->mc_list);
  196. return mc;
  197. error:
  198. kfree(mc);
  199. return NULL;
  200. }
  201. static void ucma_copy_conn_event(struct rdma_ucm_conn_param *dst,
  202. struct rdma_conn_param *src)
  203. {
  204. if (src->private_data_len)
  205. memcpy(dst->private_data, src->private_data,
  206. src->private_data_len);
  207. dst->private_data_len = src->private_data_len;
  208. dst->responder_resources =src->responder_resources;
  209. dst->initiator_depth = src->initiator_depth;
  210. dst->flow_control = src->flow_control;
  211. dst->retry_count = src->retry_count;
  212. dst->rnr_retry_count = src->rnr_retry_count;
  213. dst->srq = src->srq;
  214. dst->qp_num = src->qp_num;
  215. }
  216. static void ucma_copy_ud_event(struct rdma_ucm_ud_param *dst,
  217. struct rdma_ud_param *src)
  218. {
  219. if (src->private_data_len)
  220. memcpy(dst->private_data, src->private_data,
  221. src->private_data_len);
  222. dst->private_data_len = src->private_data_len;
  223. ib_copy_ah_attr_to_user(&dst->ah_attr, &src->ah_attr);
  224. dst->qp_num = src->qp_num;
  225. dst->qkey = src->qkey;
  226. }
  227. static void ucma_set_event_context(struct ucma_context *ctx,
  228. struct rdma_cm_event *event,
  229. struct ucma_event *uevent)
  230. {
  231. uevent->ctx = ctx;
  232. switch (event->event) {
  233. case RDMA_CM_EVENT_MULTICAST_JOIN:
  234. case RDMA_CM_EVENT_MULTICAST_ERROR:
  235. uevent->mc = (struct ucma_multicast *)
  236. event->param.ud.private_data;
  237. uevent->resp.uid = uevent->mc->uid;
  238. uevent->resp.id = uevent->mc->id;
  239. break;
  240. default:
  241. uevent->resp.uid = ctx->uid;
  242. uevent->resp.id = ctx->id;
  243. break;
  244. }
  245. }
  246. /* Called with file->mut locked for the relevant context. */
  247. static void ucma_removal_event_handler(struct rdma_cm_id *cm_id)
  248. {
  249. struct ucma_context *ctx = cm_id->context;
  250. struct ucma_event *con_req_eve;
  251. int event_found = 0;
  252. if (ctx->destroying)
  253. return;
  254. /* only if context is pointing to cm_id that it owns it and can be
  255. * queued to be closed, otherwise that cm_id is an inflight one that
  256. * is part of that context event list pending to be detached and
  257. * reattached to its new context as part of ucma_get_event,
  258. * handled separately below.
  259. */
  260. if (ctx->cm_id == cm_id) {
  261. mutex_lock(&mut);
  262. ctx->closing = 1;
  263. mutex_unlock(&mut);
  264. queue_work(ctx->file->close_wq, &ctx->close_work);
  265. return;
  266. }
  267. list_for_each_entry(con_req_eve, &ctx->file->event_list, list) {
  268. if (con_req_eve->cm_id == cm_id &&
  269. con_req_eve->resp.event == RDMA_CM_EVENT_CONNECT_REQUEST) {
  270. list_del(&con_req_eve->list);
  271. INIT_WORK(&con_req_eve->close_work, ucma_close_event_id);
  272. queue_work(ctx->file->close_wq, &con_req_eve->close_work);
  273. event_found = 1;
  274. break;
  275. }
  276. }
  277. if (!event_found)
  278. pr_err("ucma_removal_event_handler: warning: connect request event wasn't found\n");
  279. }
  280. static int ucma_event_handler(struct rdma_cm_id *cm_id,
  281. struct rdma_cm_event *event)
  282. {
  283. struct ucma_event *uevent;
  284. struct ucma_context *ctx = cm_id->context;
  285. int ret = 0;
  286. uevent = kzalloc(sizeof(*uevent), GFP_KERNEL);
  287. if (!uevent)
  288. return event->event == RDMA_CM_EVENT_CONNECT_REQUEST;
  289. mutex_lock(&ctx->file->mut);
  290. uevent->cm_id = cm_id;
  291. ucma_set_event_context(ctx, event, uevent);
  292. uevent->resp.event = event->event;
  293. uevent->resp.status = event->status;
  294. if (cm_id->qp_type == IB_QPT_UD)
  295. ucma_copy_ud_event(&uevent->resp.param.ud, &event->param.ud);
  296. else
  297. ucma_copy_conn_event(&uevent->resp.param.conn,
  298. &event->param.conn);
  299. if (event->event == RDMA_CM_EVENT_CONNECT_REQUEST) {
  300. if (!ctx->backlog) {
  301. ret = -ENOMEM;
  302. kfree(uevent);
  303. goto out;
  304. }
  305. ctx->backlog--;
  306. } else if (!ctx->uid || ctx->cm_id != cm_id) {
  307. /*
  308. * We ignore events for new connections until userspace has set
  309. * their context. This can only happen if an error occurs on a
  310. * new connection before the user accepts it. This is okay,
  311. * since the accept will just fail later. However, we do need
  312. * to release the underlying HW resources in case of a device
  313. * removal event.
  314. */
  315. if (event->event == RDMA_CM_EVENT_DEVICE_REMOVAL)
  316. ucma_removal_event_handler(cm_id);
  317. kfree(uevent);
  318. goto out;
  319. }
  320. list_add_tail(&uevent->list, &ctx->file->event_list);
  321. wake_up_interruptible(&ctx->file->poll_wait);
  322. if (event->event == RDMA_CM_EVENT_DEVICE_REMOVAL)
  323. ucma_removal_event_handler(cm_id);
  324. out:
  325. mutex_unlock(&ctx->file->mut);
  326. return ret;
  327. }
  328. static ssize_t ucma_get_event(struct ucma_file *file, const char __user *inbuf,
  329. int in_len, int out_len)
  330. {
  331. struct ucma_context *ctx;
  332. struct rdma_ucm_get_event cmd;
  333. struct ucma_event *uevent;
  334. int ret = 0;
  335. if (out_len < sizeof uevent->resp)
  336. return -ENOSPC;
  337. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  338. return -EFAULT;
  339. mutex_lock(&file->mut);
  340. while (list_empty(&file->event_list)) {
  341. mutex_unlock(&file->mut);
  342. if (file->filp->f_flags & O_NONBLOCK)
  343. return -EAGAIN;
  344. if (wait_event_interruptible(file->poll_wait,
  345. !list_empty(&file->event_list)))
  346. return -ERESTARTSYS;
  347. mutex_lock(&file->mut);
  348. }
  349. uevent = list_entry(file->event_list.next, struct ucma_event, list);
  350. if (uevent->resp.event == RDMA_CM_EVENT_CONNECT_REQUEST) {
  351. ctx = ucma_alloc_ctx(file);
  352. if (!ctx) {
  353. ret = -ENOMEM;
  354. goto done;
  355. }
  356. uevent->ctx->backlog++;
  357. ctx->cm_id = uevent->cm_id;
  358. ctx->cm_id->context = ctx;
  359. uevent->resp.id = ctx->id;
  360. }
  361. if (copy_to_user((void __user *)(unsigned long)cmd.response,
  362. &uevent->resp, sizeof uevent->resp)) {
  363. ret = -EFAULT;
  364. goto done;
  365. }
  366. list_del(&uevent->list);
  367. uevent->ctx->events_reported++;
  368. if (uevent->mc)
  369. uevent->mc->events_reported++;
  370. kfree(uevent);
  371. done:
  372. mutex_unlock(&file->mut);
  373. return ret;
  374. }
  375. static int ucma_get_qp_type(struct rdma_ucm_create_id *cmd, enum ib_qp_type *qp_type)
  376. {
  377. switch (cmd->ps) {
  378. case RDMA_PS_TCP:
  379. *qp_type = IB_QPT_RC;
  380. return 0;
  381. case RDMA_PS_UDP:
  382. case RDMA_PS_IPOIB:
  383. *qp_type = IB_QPT_UD;
  384. return 0;
  385. case RDMA_PS_IB:
  386. *qp_type = cmd->qp_type;
  387. return 0;
  388. default:
  389. return -EINVAL;
  390. }
  391. }
  392. static ssize_t ucma_create_id(struct ucma_file *file, const char __user *inbuf,
  393. int in_len, int out_len)
  394. {
  395. struct rdma_ucm_create_id cmd;
  396. struct rdma_ucm_create_id_resp resp;
  397. struct ucma_context *ctx;
  398. enum ib_qp_type qp_type;
  399. int ret;
  400. if (out_len < sizeof(resp))
  401. return -ENOSPC;
  402. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  403. return -EFAULT;
  404. ret = ucma_get_qp_type(&cmd, &qp_type);
  405. if (ret)
  406. return ret;
  407. mutex_lock(&file->mut);
  408. ctx = ucma_alloc_ctx(file);
  409. mutex_unlock(&file->mut);
  410. if (!ctx)
  411. return -ENOMEM;
  412. ctx->uid = cmd.uid;
  413. ctx->cm_id = rdma_create_id(current->nsproxy->net_ns,
  414. ucma_event_handler, ctx, cmd.ps, qp_type);
  415. if (IS_ERR(ctx->cm_id)) {
  416. ret = PTR_ERR(ctx->cm_id);
  417. goto err1;
  418. }
  419. resp.id = ctx->id;
  420. if (copy_to_user((void __user *)(unsigned long)cmd.response,
  421. &resp, sizeof(resp))) {
  422. ret = -EFAULT;
  423. goto err2;
  424. }
  425. return 0;
  426. err2:
  427. rdma_destroy_id(ctx->cm_id);
  428. err1:
  429. mutex_lock(&mut);
  430. idr_remove(&ctx_idr, ctx->id);
  431. mutex_unlock(&mut);
  432. kfree(ctx);
  433. return ret;
  434. }
  435. static void ucma_cleanup_multicast(struct ucma_context *ctx)
  436. {
  437. struct ucma_multicast *mc, *tmp;
  438. mutex_lock(&mut);
  439. list_for_each_entry_safe(mc, tmp, &ctx->mc_list, list) {
  440. list_del(&mc->list);
  441. idr_remove(&multicast_idr, mc->id);
  442. kfree(mc);
  443. }
  444. mutex_unlock(&mut);
  445. }
  446. static void ucma_cleanup_mc_events(struct ucma_multicast *mc)
  447. {
  448. struct ucma_event *uevent, *tmp;
  449. list_for_each_entry_safe(uevent, tmp, &mc->ctx->file->event_list, list) {
  450. if (uevent->mc != mc)
  451. continue;
  452. list_del(&uevent->list);
  453. kfree(uevent);
  454. }
  455. }
  456. /*
  457. * ucma_free_ctx is called after the underlying rdma CM-ID is destroyed. At
  458. * this point, no new events will be reported from the hardware. However, we
  459. * still need to cleanup the UCMA context for this ID. Specifically, there
  460. * might be events that have not yet been consumed by the user space software.
  461. * These might include pending connect requests which we have not completed
  462. * processing. We cannot call rdma_destroy_id while holding the lock of the
  463. * context (file->mut), as it might cause a deadlock. We therefore extract all
  464. * relevant events from the context pending events list while holding the
  465. * mutex. After that we release them as needed.
  466. */
  467. static int ucma_free_ctx(struct ucma_context *ctx)
  468. {
  469. int events_reported;
  470. struct ucma_event *uevent, *tmp;
  471. LIST_HEAD(list);
  472. ucma_cleanup_multicast(ctx);
  473. /* Cleanup events not yet reported to the user. */
  474. mutex_lock(&ctx->file->mut);
  475. list_for_each_entry_safe(uevent, tmp, &ctx->file->event_list, list) {
  476. if (uevent->ctx == ctx)
  477. list_move_tail(&uevent->list, &list);
  478. }
  479. list_del(&ctx->list);
  480. mutex_unlock(&ctx->file->mut);
  481. list_for_each_entry_safe(uevent, tmp, &list, list) {
  482. list_del(&uevent->list);
  483. if (uevent->resp.event == RDMA_CM_EVENT_CONNECT_REQUEST)
  484. rdma_destroy_id(uevent->cm_id);
  485. kfree(uevent);
  486. }
  487. events_reported = ctx->events_reported;
  488. kfree(ctx);
  489. return events_reported;
  490. }
  491. static ssize_t ucma_destroy_id(struct ucma_file *file, const char __user *inbuf,
  492. int in_len, int out_len)
  493. {
  494. struct rdma_ucm_destroy_id cmd;
  495. struct rdma_ucm_destroy_id_resp resp;
  496. struct ucma_context *ctx;
  497. int ret = 0;
  498. if (out_len < sizeof(resp))
  499. return -ENOSPC;
  500. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  501. return -EFAULT;
  502. mutex_lock(&mut);
  503. ctx = _ucma_find_context(cmd.id, file);
  504. if (!IS_ERR(ctx))
  505. idr_remove(&ctx_idr, ctx->id);
  506. mutex_unlock(&mut);
  507. if (IS_ERR(ctx))
  508. return PTR_ERR(ctx);
  509. mutex_lock(&ctx->file->mut);
  510. ctx->destroying = 1;
  511. mutex_unlock(&ctx->file->mut);
  512. flush_workqueue(ctx->file->close_wq);
  513. /* At this point it's guaranteed that there is no inflight
  514. * closing task */
  515. mutex_lock(&mut);
  516. if (!ctx->closing) {
  517. mutex_unlock(&mut);
  518. ucma_put_ctx(ctx);
  519. wait_for_completion(&ctx->comp);
  520. rdma_destroy_id(ctx->cm_id);
  521. } else {
  522. mutex_unlock(&mut);
  523. }
  524. resp.events_reported = ucma_free_ctx(ctx);
  525. if (copy_to_user((void __user *)(unsigned long)cmd.response,
  526. &resp, sizeof(resp)))
  527. ret = -EFAULT;
  528. return ret;
  529. }
  530. static ssize_t ucma_bind_ip(struct ucma_file *file, const char __user *inbuf,
  531. int in_len, int out_len)
  532. {
  533. struct rdma_ucm_bind_ip cmd;
  534. struct ucma_context *ctx;
  535. int ret;
  536. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  537. return -EFAULT;
  538. ctx = ucma_get_ctx(file, cmd.id);
  539. if (IS_ERR(ctx))
  540. return PTR_ERR(ctx);
  541. ret = rdma_bind_addr(ctx->cm_id, (struct sockaddr *) &cmd.addr);
  542. ucma_put_ctx(ctx);
  543. return ret;
  544. }
  545. static ssize_t ucma_bind(struct ucma_file *file, const char __user *inbuf,
  546. int in_len, int out_len)
  547. {
  548. struct rdma_ucm_bind cmd;
  549. struct sockaddr *addr;
  550. struct ucma_context *ctx;
  551. int ret;
  552. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  553. return -EFAULT;
  554. addr = (struct sockaddr *) &cmd.addr;
  555. if (cmd.reserved || !cmd.addr_size || (cmd.addr_size != rdma_addr_size(addr)))
  556. return -EINVAL;
  557. ctx = ucma_get_ctx(file, cmd.id);
  558. if (IS_ERR(ctx))
  559. return PTR_ERR(ctx);
  560. ret = rdma_bind_addr(ctx->cm_id, addr);
  561. ucma_put_ctx(ctx);
  562. return ret;
  563. }
  564. static ssize_t ucma_resolve_ip(struct ucma_file *file,
  565. const char __user *inbuf,
  566. int in_len, int out_len)
  567. {
  568. struct rdma_ucm_resolve_ip cmd;
  569. struct ucma_context *ctx;
  570. int ret;
  571. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  572. return -EFAULT;
  573. ctx = ucma_get_ctx(file, cmd.id);
  574. if (IS_ERR(ctx))
  575. return PTR_ERR(ctx);
  576. ret = rdma_resolve_addr(ctx->cm_id, (struct sockaddr *) &cmd.src_addr,
  577. (struct sockaddr *) &cmd.dst_addr,
  578. cmd.timeout_ms);
  579. ucma_put_ctx(ctx);
  580. return ret;
  581. }
  582. static ssize_t ucma_resolve_addr(struct ucma_file *file,
  583. const char __user *inbuf,
  584. int in_len, int out_len)
  585. {
  586. struct rdma_ucm_resolve_addr cmd;
  587. struct sockaddr *src, *dst;
  588. struct ucma_context *ctx;
  589. int ret;
  590. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  591. return -EFAULT;
  592. src = (struct sockaddr *) &cmd.src_addr;
  593. dst = (struct sockaddr *) &cmd.dst_addr;
  594. if (cmd.reserved || (cmd.src_size && (cmd.src_size != rdma_addr_size(src))) ||
  595. !cmd.dst_size || (cmd.dst_size != rdma_addr_size(dst)))
  596. return -EINVAL;
  597. ctx = ucma_get_ctx(file, cmd.id);
  598. if (IS_ERR(ctx))
  599. return PTR_ERR(ctx);
  600. ret = rdma_resolve_addr(ctx->cm_id, src, dst, cmd.timeout_ms);
  601. ucma_put_ctx(ctx);
  602. return ret;
  603. }
  604. static ssize_t ucma_resolve_route(struct ucma_file *file,
  605. const char __user *inbuf,
  606. int in_len, int out_len)
  607. {
  608. struct rdma_ucm_resolve_route cmd;
  609. struct ucma_context *ctx;
  610. int ret;
  611. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  612. return -EFAULT;
  613. ctx = ucma_get_ctx(file, cmd.id);
  614. if (IS_ERR(ctx))
  615. return PTR_ERR(ctx);
  616. ret = rdma_resolve_route(ctx->cm_id, cmd.timeout_ms);
  617. ucma_put_ctx(ctx);
  618. return ret;
  619. }
  620. static void ucma_copy_ib_route(struct rdma_ucm_query_route_resp *resp,
  621. struct rdma_route *route)
  622. {
  623. struct rdma_dev_addr *dev_addr;
  624. resp->num_paths = route->num_paths;
  625. switch (route->num_paths) {
  626. case 0:
  627. dev_addr = &route->addr.dev_addr;
  628. rdma_addr_get_dgid(dev_addr,
  629. (union ib_gid *) &resp->ib_route[0].dgid);
  630. rdma_addr_get_sgid(dev_addr,
  631. (union ib_gid *) &resp->ib_route[0].sgid);
  632. resp->ib_route[0].pkey = cpu_to_be16(ib_addr_get_pkey(dev_addr));
  633. break;
  634. case 2:
  635. ib_copy_path_rec_to_user(&resp->ib_route[1],
  636. &route->path_rec[1]);
  637. /* fall through */
  638. case 1:
  639. ib_copy_path_rec_to_user(&resp->ib_route[0],
  640. &route->path_rec[0]);
  641. break;
  642. default:
  643. break;
  644. }
  645. }
  646. static void ucma_copy_iboe_route(struct rdma_ucm_query_route_resp *resp,
  647. struct rdma_route *route)
  648. {
  649. resp->num_paths = route->num_paths;
  650. switch (route->num_paths) {
  651. case 0:
  652. rdma_ip2gid((struct sockaddr *)&route->addr.dst_addr,
  653. (union ib_gid *)&resp->ib_route[0].dgid);
  654. rdma_ip2gid((struct sockaddr *)&route->addr.src_addr,
  655. (union ib_gid *)&resp->ib_route[0].sgid);
  656. resp->ib_route[0].pkey = cpu_to_be16(0xffff);
  657. break;
  658. case 2:
  659. ib_copy_path_rec_to_user(&resp->ib_route[1],
  660. &route->path_rec[1]);
  661. /* fall through */
  662. case 1:
  663. ib_copy_path_rec_to_user(&resp->ib_route[0],
  664. &route->path_rec[0]);
  665. break;
  666. default:
  667. break;
  668. }
  669. }
  670. static void ucma_copy_iw_route(struct rdma_ucm_query_route_resp *resp,
  671. struct rdma_route *route)
  672. {
  673. struct rdma_dev_addr *dev_addr;
  674. dev_addr = &route->addr.dev_addr;
  675. rdma_addr_get_dgid(dev_addr, (union ib_gid *) &resp->ib_route[0].dgid);
  676. rdma_addr_get_sgid(dev_addr, (union ib_gid *) &resp->ib_route[0].sgid);
  677. }
  678. static ssize_t ucma_query_route(struct ucma_file *file,
  679. const char __user *inbuf,
  680. int in_len, int out_len)
  681. {
  682. struct rdma_ucm_query cmd;
  683. struct rdma_ucm_query_route_resp resp;
  684. struct ucma_context *ctx;
  685. struct sockaddr *addr;
  686. int ret = 0;
  687. if (out_len < sizeof(resp))
  688. return -ENOSPC;
  689. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  690. return -EFAULT;
  691. ctx = ucma_get_ctx(file, cmd.id);
  692. if (IS_ERR(ctx))
  693. return PTR_ERR(ctx);
  694. memset(&resp, 0, sizeof resp);
  695. addr = (struct sockaddr *) &ctx->cm_id->route.addr.src_addr;
  696. memcpy(&resp.src_addr, addr, addr->sa_family == AF_INET ?
  697. sizeof(struct sockaddr_in) :
  698. sizeof(struct sockaddr_in6));
  699. addr = (struct sockaddr *) &ctx->cm_id->route.addr.dst_addr;
  700. memcpy(&resp.dst_addr, addr, addr->sa_family == AF_INET ?
  701. sizeof(struct sockaddr_in) :
  702. sizeof(struct sockaddr_in6));
  703. if (!ctx->cm_id->device)
  704. goto out;
  705. resp.node_guid = (__force __u64) ctx->cm_id->device->node_guid;
  706. resp.port_num = ctx->cm_id->port_num;
  707. if (rdma_cap_ib_sa(ctx->cm_id->device, ctx->cm_id->port_num))
  708. ucma_copy_ib_route(&resp, &ctx->cm_id->route);
  709. else if (rdma_protocol_roce(ctx->cm_id->device, ctx->cm_id->port_num))
  710. ucma_copy_iboe_route(&resp, &ctx->cm_id->route);
  711. else if (rdma_protocol_iwarp(ctx->cm_id->device, ctx->cm_id->port_num))
  712. ucma_copy_iw_route(&resp, &ctx->cm_id->route);
  713. out:
  714. if (copy_to_user((void __user *)(unsigned long)cmd.response,
  715. &resp, sizeof(resp)))
  716. ret = -EFAULT;
  717. ucma_put_ctx(ctx);
  718. return ret;
  719. }
  720. static void ucma_query_device_addr(struct rdma_cm_id *cm_id,
  721. struct rdma_ucm_query_addr_resp *resp)
  722. {
  723. if (!cm_id->device)
  724. return;
  725. resp->node_guid = (__force __u64) cm_id->device->node_guid;
  726. resp->port_num = cm_id->port_num;
  727. resp->pkey = (__force __u16) cpu_to_be16(
  728. ib_addr_get_pkey(&cm_id->route.addr.dev_addr));
  729. }
  730. static ssize_t ucma_query_addr(struct ucma_context *ctx,
  731. void __user *response, int out_len)
  732. {
  733. struct rdma_ucm_query_addr_resp resp;
  734. struct sockaddr *addr;
  735. int ret = 0;
  736. if (out_len < sizeof(resp))
  737. return -ENOSPC;
  738. memset(&resp, 0, sizeof resp);
  739. addr = (struct sockaddr *) &ctx->cm_id->route.addr.src_addr;
  740. resp.src_size = rdma_addr_size(addr);
  741. memcpy(&resp.src_addr, addr, resp.src_size);
  742. addr = (struct sockaddr *) &ctx->cm_id->route.addr.dst_addr;
  743. resp.dst_size = rdma_addr_size(addr);
  744. memcpy(&resp.dst_addr, addr, resp.dst_size);
  745. ucma_query_device_addr(ctx->cm_id, &resp);
  746. if (copy_to_user(response, &resp, sizeof(resp)))
  747. ret = -EFAULT;
  748. return ret;
  749. }
  750. static ssize_t ucma_query_path(struct ucma_context *ctx,
  751. void __user *response, int out_len)
  752. {
  753. struct rdma_ucm_query_path_resp *resp;
  754. int i, ret = 0;
  755. if (out_len < sizeof(*resp))
  756. return -ENOSPC;
  757. resp = kzalloc(out_len, GFP_KERNEL);
  758. if (!resp)
  759. return -ENOMEM;
  760. resp->num_paths = ctx->cm_id->route.num_paths;
  761. for (i = 0, out_len -= sizeof(*resp);
  762. i < resp->num_paths && out_len > sizeof(struct ib_path_rec_data);
  763. i++, out_len -= sizeof(struct ib_path_rec_data)) {
  764. resp->path_data[i].flags = IB_PATH_GMP | IB_PATH_PRIMARY |
  765. IB_PATH_BIDIRECTIONAL;
  766. ib_sa_pack_path(&ctx->cm_id->route.path_rec[i],
  767. &resp->path_data[i].path_rec);
  768. }
  769. if (copy_to_user(response, resp,
  770. sizeof(*resp) + (i * sizeof(struct ib_path_rec_data))))
  771. ret = -EFAULT;
  772. kfree(resp);
  773. return ret;
  774. }
  775. static ssize_t ucma_query_gid(struct ucma_context *ctx,
  776. void __user *response, int out_len)
  777. {
  778. struct rdma_ucm_query_addr_resp resp;
  779. struct sockaddr_ib *addr;
  780. int ret = 0;
  781. if (out_len < sizeof(resp))
  782. return -ENOSPC;
  783. memset(&resp, 0, sizeof resp);
  784. ucma_query_device_addr(ctx->cm_id, &resp);
  785. addr = (struct sockaddr_ib *) &resp.src_addr;
  786. resp.src_size = sizeof(*addr);
  787. if (ctx->cm_id->route.addr.src_addr.ss_family == AF_IB) {
  788. memcpy(addr, &ctx->cm_id->route.addr.src_addr, resp.src_size);
  789. } else {
  790. addr->sib_family = AF_IB;
  791. addr->sib_pkey = (__force __be16) resp.pkey;
  792. rdma_addr_get_sgid(&ctx->cm_id->route.addr.dev_addr,
  793. (union ib_gid *) &addr->sib_addr);
  794. addr->sib_sid = rdma_get_service_id(ctx->cm_id, (struct sockaddr *)
  795. &ctx->cm_id->route.addr.src_addr);
  796. }
  797. addr = (struct sockaddr_ib *) &resp.dst_addr;
  798. resp.dst_size = sizeof(*addr);
  799. if (ctx->cm_id->route.addr.dst_addr.ss_family == AF_IB) {
  800. memcpy(addr, &ctx->cm_id->route.addr.dst_addr, resp.dst_size);
  801. } else {
  802. addr->sib_family = AF_IB;
  803. addr->sib_pkey = (__force __be16) resp.pkey;
  804. rdma_addr_get_dgid(&ctx->cm_id->route.addr.dev_addr,
  805. (union ib_gid *) &addr->sib_addr);
  806. addr->sib_sid = rdma_get_service_id(ctx->cm_id, (struct sockaddr *)
  807. &ctx->cm_id->route.addr.dst_addr);
  808. }
  809. if (copy_to_user(response, &resp, sizeof(resp)))
  810. ret = -EFAULT;
  811. return ret;
  812. }
  813. static ssize_t ucma_query(struct ucma_file *file,
  814. const char __user *inbuf,
  815. int in_len, int out_len)
  816. {
  817. struct rdma_ucm_query cmd;
  818. struct ucma_context *ctx;
  819. void __user *response;
  820. int ret;
  821. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  822. return -EFAULT;
  823. response = (void __user *)(unsigned long) cmd.response;
  824. ctx = ucma_get_ctx(file, cmd.id);
  825. if (IS_ERR(ctx))
  826. return PTR_ERR(ctx);
  827. switch (cmd.option) {
  828. case RDMA_USER_CM_QUERY_ADDR:
  829. ret = ucma_query_addr(ctx, response, out_len);
  830. break;
  831. case RDMA_USER_CM_QUERY_PATH:
  832. ret = ucma_query_path(ctx, response, out_len);
  833. break;
  834. case RDMA_USER_CM_QUERY_GID:
  835. ret = ucma_query_gid(ctx, response, out_len);
  836. break;
  837. default:
  838. ret = -ENOSYS;
  839. break;
  840. }
  841. ucma_put_ctx(ctx);
  842. return ret;
  843. }
  844. static void ucma_copy_conn_param(struct rdma_cm_id *id,
  845. struct rdma_conn_param *dst,
  846. struct rdma_ucm_conn_param *src)
  847. {
  848. dst->private_data = src->private_data;
  849. dst->private_data_len = src->private_data_len;
  850. dst->responder_resources =src->responder_resources;
  851. dst->initiator_depth = src->initiator_depth;
  852. dst->flow_control = src->flow_control;
  853. dst->retry_count = src->retry_count;
  854. dst->rnr_retry_count = src->rnr_retry_count;
  855. dst->srq = src->srq;
  856. dst->qp_num = src->qp_num;
  857. dst->qkey = (id->route.addr.src_addr.ss_family == AF_IB) ? src->qkey : 0;
  858. }
  859. static ssize_t ucma_connect(struct ucma_file *file, const char __user *inbuf,
  860. int in_len, int out_len)
  861. {
  862. struct rdma_ucm_connect cmd;
  863. struct rdma_conn_param conn_param;
  864. struct ucma_context *ctx;
  865. int ret;
  866. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  867. return -EFAULT;
  868. if (!cmd.conn_param.valid)
  869. return -EINVAL;
  870. ctx = ucma_get_ctx(file, cmd.id);
  871. if (IS_ERR(ctx))
  872. return PTR_ERR(ctx);
  873. ucma_copy_conn_param(ctx->cm_id, &conn_param, &cmd.conn_param);
  874. ret = rdma_connect(ctx->cm_id, &conn_param);
  875. ucma_put_ctx(ctx);
  876. return ret;
  877. }
  878. static ssize_t ucma_listen(struct ucma_file *file, const char __user *inbuf,
  879. int in_len, int out_len)
  880. {
  881. struct rdma_ucm_listen cmd;
  882. struct ucma_context *ctx;
  883. int ret;
  884. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  885. return -EFAULT;
  886. ctx = ucma_get_ctx(file, cmd.id);
  887. if (IS_ERR(ctx))
  888. return PTR_ERR(ctx);
  889. ctx->backlog = cmd.backlog > 0 && cmd.backlog < max_backlog ?
  890. cmd.backlog : max_backlog;
  891. ret = rdma_listen(ctx->cm_id, ctx->backlog);
  892. ucma_put_ctx(ctx);
  893. return ret;
  894. }
  895. static ssize_t ucma_accept(struct ucma_file *file, const char __user *inbuf,
  896. int in_len, int out_len)
  897. {
  898. struct rdma_ucm_accept cmd;
  899. struct rdma_conn_param conn_param;
  900. struct ucma_context *ctx;
  901. int ret;
  902. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  903. return -EFAULT;
  904. ctx = ucma_get_ctx(file, cmd.id);
  905. if (IS_ERR(ctx))
  906. return PTR_ERR(ctx);
  907. if (cmd.conn_param.valid) {
  908. ucma_copy_conn_param(ctx->cm_id, &conn_param, &cmd.conn_param);
  909. mutex_lock(&file->mut);
  910. ret = rdma_accept(ctx->cm_id, &conn_param);
  911. if (!ret)
  912. ctx->uid = cmd.uid;
  913. mutex_unlock(&file->mut);
  914. } else
  915. ret = rdma_accept(ctx->cm_id, NULL);
  916. ucma_put_ctx(ctx);
  917. return ret;
  918. }
  919. static ssize_t ucma_reject(struct ucma_file *file, const char __user *inbuf,
  920. int in_len, int out_len)
  921. {
  922. struct rdma_ucm_reject cmd;
  923. struct ucma_context *ctx;
  924. int ret;
  925. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  926. return -EFAULT;
  927. ctx = ucma_get_ctx(file, cmd.id);
  928. if (IS_ERR(ctx))
  929. return PTR_ERR(ctx);
  930. ret = rdma_reject(ctx->cm_id, cmd.private_data, cmd.private_data_len);
  931. ucma_put_ctx(ctx);
  932. return ret;
  933. }
  934. static ssize_t ucma_disconnect(struct ucma_file *file, const char __user *inbuf,
  935. int in_len, int out_len)
  936. {
  937. struct rdma_ucm_disconnect cmd;
  938. struct ucma_context *ctx;
  939. int ret;
  940. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  941. return -EFAULT;
  942. ctx = ucma_get_ctx(file, cmd.id);
  943. if (IS_ERR(ctx))
  944. return PTR_ERR(ctx);
  945. ret = rdma_disconnect(ctx->cm_id);
  946. ucma_put_ctx(ctx);
  947. return ret;
  948. }
  949. static ssize_t ucma_init_qp_attr(struct ucma_file *file,
  950. const char __user *inbuf,
  951. int in_len, int out_len)
  952. {
  953. struct rdma_ucm_init_qp_attr cmd;
  954. struct ib_uverbs_qp_attr resp;
  955. struct ucma_context *ctx;
  956. struct ib_qp_attr qp_attr;
  957. int ret;
  958. if (out_len < sizeof(resp))
  959. return -ENOSPC;
  960. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  961. return -EFAULT;
  962. ctx = ucma_get_ctx(file, cmd.id);
  963. if (IS_ERR(ctx))
  964. return PTR_ERR(ctx);
  965. resp.qp_attr_mask = 0;
  966. memset(&qp_attr, 0, sizeof qp_attr);
  967. qp_attr.qp_state = cmd.qp_state;
  968. ret = rdma_init_qp_attr(ctx->cm_id, &qp_attr, &resp.qp_attr_mask);
  969. if (ret)
  970. goto out;
  971. ib_copy_qp_attr_to_user(&resp, &qp_attr);
  972. if (copy_to_user((void __user *)(unsigned long)cmd.response,
  973. &resp, sizeof(resp)))
  974. ret = -EFAULT;
  975. out:
  976. ucma_put_ctx(ctx);
  977. return ret;
  978. }
  979. static int ucma_set_option_id(struct ucma_context *ctx, int optname,
  980. void *optval, size_t optlen)
  981. {
  982. int ret = 0;
  983. switch (optname) {
  984. case RDMA_OPTION_ID_TOS:
  985. if (optlen != sizeof(u8)) {
  986. ret = -EINVAL;
  987. break;
  988. }
  989. rdma_set_service_type(ctx->cm_id, *((u8 *) optval));
  990. break;
  991. case RDMA_OPTION_ID_REUSEADDR:
  992. if (optlen != sizeof(int)) {
  993. ret = -EINVAL;
  994. break;
  995. }
  996. ret = rdma_set_reuseaddr(ctx->cm_id, *((int *) optval) ? 1 : 0);
  997. break;
  998. case RDMA_OPTION_ID_AFONLY:
  999. if (optlen != sizeof(int)) {
  1000. ret = -EINVAL;
  1001. break;
  1002. }
  1003. ret = rdma_set_afonly(ctx->cm_id, *((int *) optval) ? 1 : 0);
  1004. break;
  1005. default:
  1006. ret = -ENOSYS;
  1007. }
  1008. return ret;
  1009. }
  1010. static int ucma_set_ib_path(struct ucma_context *ctx,
  1011. struct ib_path_rec_data *path_data, size_t optlen)
  1012. {
  1013. struct ib_sa_path_rec sa_path;
  1014. struct rdma_cm_event event;
  1015. int ret;
  1016. if (optlen % sizeof(*path_data))
  1017. return -EINVAL;
  1018. for (; optlen; optlen -= sizeof(*path_data), path_data++) {
  1019. if (path_data->flags == (IB_PATH_GMP | IB_PATH_PRIMARY |
  1020. IB_PATH_BIDIRECTIONAL))
  1021. break;
  1022. }
  1023. if (!optlen)
  1024. return -EINVAL;
  1025. memset(&sa_path, 0, sizeof(sa_path));
  1026. ib_sa_unpack_path(path_data->path_rec, &sa_path);
  1027. ret = rdma_set_ib_paths(ctx->cm_id, &sa_path, 1);
  1028. if (ret)
  1029. return ret;
  1030. memset(&event, 0, sizeof event);
  1031. event.event = RDMA_CM_EVENT_ROUTE_RESOLVED;
  1032. return ucma_event_handler(ctx->cm_id, &event);
  1033. }
  1034. static int ucma_set_option_ib(struct ucma_context *ctx, int optname,
  1035. void *optval, size_t optlen)
  1036. {
  1037. int ret;
  1038. switch (optname) {
  1039. case RDMA_OPTION_IB_PATH:
  1040. ret = ucma_set_ib_path(ctx, optval, optlen);
  1041. break;
  1042. default:
  1043. ret = -ENOSYS;
  1044. }
  1045. return ret;
  1046. }
  1047. static int ucma_set_option_level(struct ucma_context *ctx, int level,
  1048. int optname, void *optval, size_t optlen)
  1049. {
  1050. int ret;
  1051. switch (level) {
  1052. case RDMA_OPTION_ID:
  1053. ret = ucma_set_option_id(ctx, optname, optval, optlen);
  1054. break;
  1055. case RDMA_OPTION_IB:
  1056. ret = ucma_set_option_ib(ctx, optname, optval, optlen);
  1057. break;
  1058. default:
  1059. ret = -ENOSYS;
  1060. }
  1061. return ret;
  1062. }
  1063. static ssize_t ucma_set_option(struct ucma_file *file, const char __user *inbuf,
  1064. int in_len, int out_len)
  1065. {
  1066. struct rdma_ucm_set_option cmd;
  1067. struct ucma_context *ctx;
  1068. void *optval;
  1069. int ret;
  1070. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  1071. return -EFAULT;
  1072. ctx = ucma_get_ctx(file, cmd.id);
  1073. if (IS_ERR(ctx))
  1074. return PTR_ERR(ctx);
  1075. optval = memdup_user((void __user *) (unsigned long) cmd.optval,
  1076. cmd.optlen);
  1077. if (IS_ERR(optval)) {
  1078. ret = PTR_ERR(optval);
  1079. goto out;
  1080. }
  1081. ret = ucma_set_option_level(ctx, cmd.level, cmd.optname, optval,
  1082. cmd.optlen);
  1083. kfree(optval);
  1084. out:
  1085. ucma_put_ctx(ctx);
  1086. return ret;
  1087. }
  1088. static ssize_t ucma_notify(struct ucma_file *file, const char __user *inbuf,
  1089. int in_len, int out_len)
  1090. {
  1091. struct rdma_ucm_notify cmd;
  1092. struct ucma_context *ctx;
  1093. int ret;
  1094. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  1095. return -EFAULT;
  1096. ctx = ucma_get_ctx(file, cmd.id);
  1097. if (IS_ERR(ctx))
  1098. return PTR_ERR(ctx);
  1099. ret = rdma_notify(ctx->cm_id, (enum ib_event_type) cmd.event);
  1100. ucma_put_ctx(ctx);
  1101. return ret;
  1102. }
  1103. static ssize_t ucma_process_join(struct ucma_file *file,
  1104. struct rdma_ucm_join_mcast *cmd, int out_len)
  1105. {
  1106. struct rdma_ucm_create_id_resp resp;
  1107. struct ucma_context *ctx;
  1108. struct ucma_multicast *mc;
  1109. struct sockaddr *addr;
  1110. int ret;
  1111. u8 join_state;
  1112. if (out_len < sizeof(resp))
  1113. return -ENOSPC;
  1114. addr = (struct sockaddr *) &cmd->addr;
  1115. if (!cmd->addr_size || (cmd->addr_size != rdma_addr_size(addr)))
  1116. return -EINVAL;
  1117. if (cmd->join_flags == RDMA_MC_JOIN_FLAG_FULLMEMBER)
  1118. join_state = BIT(FULLMEMBER_JOIN);
  1119. else if (cmd->join_flags == RDMA_MC_JOIN_FLAG_SENDONLY_FULLMEMBER)
  1120. join_state = BIT(SENDONLY_FULLMEMBER_JOIN);
  1121. else
  1122. return -EINVAL;
  1123. ctx = ucma_get_ctx(file, cmd->id);
  1124. if (IS_ERR(ctx))
  1125. return PTR_ERR(ctx);
  1126. mutex_lock(&file->mut);
  1127. mc = ucma_alloc_multicast(ctx);
  1128. if (!mc) {
  1129. ret = -ENOMEM;
  1130. goto err1;
  1131. }
  1132. mc->join_state = join_state;
  1133. mc->uid = cmd->uid;
  1134. memcpy(&mc->addr, addr, cmd->addr_size);
  1135. ret = rdma_join_multicast(ctx->cm_id, (struct sockaddr *)&mc->addr,
  1136. join_state, mc);
  1137. if (ret)
  1138. goto err2;
  1139. resp.id = mc->id;
  1140. if (copy_to_user((void __user *)(unsigned long) cmd->response,
  1141. &resp, sizeof(resp))) {
  1142. ret = -EFAULT;
  1143. goto err3;
  1144. }
  1145. mutex_unlock(&file->mut);
  1146. ucma_put_ctx(ctx);
  1147. return 0;
  1148. err3:
  1149. rdma_leave_multicast(ctx->cm_id, (struct sockaddr *) &mc->addr);
  1150. ucma_cleanup_mc_events(mc);
  1151. err2:
  1152. mutex_lock(&mut);
  1153. idr_remove(&multicast_idr, mc->id);
  1154. mutex_unlock(&mut);
  1155. list_del(&mc->list);
  1156. kfree(mc);
  1157. err1:
  1158. mutex_unlock(&file->mut);
  1159. ucma_put_ctx(ctx);
  1160. return ret;
  1161. }
  1162. static ssize_t ucma_join_ip_multicast(struct ucma_file *file,
  1163. const char __user *inbuf,
  1164. int in_len, int out_len)
  1165. {
  1166. struct rdma_ucm_join_ip_mcast cmd;
  1167. struct rdma_ucm_join_mcast join_cmd;
  1168. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  1169. return -EFAULT;
  1170. join_cmd.response = cmd.response;
  1171. join_cmd.uid = cmd.uid;
  1172. join_cmd.id = cmd.id;
  1173. join_cmd.addr_size = rdma_addr_size((struct sockaddr *) &cmd.addr);
  1174. join_cmd.join_flags = RDMA_MC_JOIN_FLAG_FULLMEMBER;
  1175. memcpy(&join_cmd.addr, &cmd.addr, join_cmd.addr_size);
  1176. return ucma_process_join(file, &join_cmd, out_len);
  1177. }
  1178. static ssize_t ucma_join_multicast(struct ucma_file *file,
  1179. const char __user *inbuf,
  1180. int in_len, int out_len)
  1181. {
  1182. struct rdma_ucm_join_mcast cmd;
  1183. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  1184. return -EFAULT;
  1185. return ucma_process_join(file, &cmd, out_len);
  1186. }
  1187. static ssize_t ucma_leave_multicast(struct ucma_file *file,
  1188. const char __user *inbuf,
  1189. int in_len, int out_len)
  1190. {
  1191. struct rdma_ucm_destroy_id cmd;
  1192. struct rdma_ucm_destroy_id_resp resp;
  1193. struct ucma_multicast *mc;
  1194. int ret = 0;
  1195. if (out_len < sizeof(resp))
  1196. return -ENOSPC;
  1197. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  1198. return -EFAULT;
  1199. mutex_lock(&mut);
  1200. mc = idr_find(&multicast_idr, cmd.id);
  1201. if (!mc)
  1202. mc = ERR_PTR(-ENOENT);
  1203. else if (mc->ctx->file != file)
  1204. mc = ERR_PTR(-EINVAL);
  1205. else if (!atomic_inc_not_zero(&mc->ctx->ref))
  1206. mc = ERR_PTR(-ENXIO);
  1207. else
  1208. idr_remove(&multicast_idr, mc->id);
  1209. mutex_unlock(&mut);
  1210. if (IS_ERR(mc)) {
  1211. ret = PTR_ERR(mc);
  1212. goto out;
  1213. }
  1214. rdma_leave_multicast(mc->ctx->cm_id, (struct sockaddr *) &mc->addr);
  1215. mutex_lock(&mc->ctx->file->mut);
  1216. ucma_cleanup_mc_events(mc);
  1217. list_del(&mc->list);
  1218. mutex_unlock(&mc->ctx->file->mut);
  1219. ucma_put_ctx(mc->ctx);
  1220. resp.events_reported = mc->events_reported;
  1221. kfree(mc);
  1222. if (copy_to_user((void __user *)(unsigned long)cmd.response,
  1223. &resp, sizeof(resp)))
  1224. ret = -EFAULT;
  1225. out:
  1226. return ret;
  1227. }
  1228. static void ucma_lock_files(struct ucma_file *file1, struct ucma_file *file2)
  1229. {
  1230. /* Acquire mutex's based on pointer comparison to prevent deadlock. */
  1231. if (file1 < file2) {
  1232. mutex_lock(&file1->mut);
  1233. mutex_lock_nested(&file2->mut, SINGLE_DEPTH_NESTING);
  1234. } else {
  1235. mutex_lock(&file2->mut);
  1236. mutex_lock_nested(&file1->mut, SINGLE_DEPTH_NESTING);
  1237. }
  1238. }
  1239. static void ucma_unlock_files(struct ucma_file *file1, struct ucma_file *file2)
  1240. {
  1241. if (file1 < file2) {
  1242. mutex_unlock(&file2->mut);
  1243. mutex_unlock(&file1->mut);
  1244. } else {
  1245. mutex_unlock(&file1->mut);
  1246. mutex_unlock(&file2->mut);
  1247. }
  1248. }
  1249. static void ucma_move_events(struct ucma_context *ctx, struct ucma_file *file)
  1250. {
  1251. struct ucma_event *uevent, *tmp;
  1252. list_for_each_entry_safe(uevent, tmp, &ctx->file->event_list, list)
  1253. if (uevent->ctx == ctx)
  1254. list_move_tail(&uevent->list, &file->event_list);
  1255. }
  1256. static ssize_t ucma_migrate_id(struct ucma_file *new_file,
  1257. const char __user *inbuf,
  1258. int in_len, int out_len)
  1259. {
  1260. struct rdma_ucm_migrate_id cmd;
  1261. struct rdma_ucm_migrate_resp resp;
  1262. struct ucma_context *ctx;
  1263. struct fd f;
  1264. struct ucma_file *cur_file;
  1265. int ret = 0;
  1266. if (copy_from_user(&cmd, inbuf, sizeof(cmd)))
  1267. return -EFAULT;
  1268. /* Get current fd to protect against it being closed */
  1269. f = fdget(cmd.fd);
  1270. if (!f.file)
  1271. return -ENOENT;
  1272. /* Validate current fd and prevent destruction of id. */
  1273. ctx = ucma_get_ctx(f.file->private_data, cmd.id);
  1274. if (IS_ERR(ctx)) {
  1275. ret = PTR_ERR(ctx);
  1276. goto file_put;
  1277. }
  1278. cur_file = ctx->file;
  1279. if (cur_file == new_file) {
  1280. resp.events_reported = ctx->events_reported;
  1281. goto response;
  1282. }
  1283. /*
  1284. * Migrate events between fd's, maintaining order, and avoiding new
  1285. * events being added before existing events.
  1286. */
  1287. ucma_lock_files(cur_file, new_file);
  1288. mutex_lock(&mut);
  1289. list_move_tail(&ctx->list, &new_file->ctx_list);
  1290. ucma_move_events(ctx, new_file);
  1291. ctx->file = new_file;
  1292. resp.events_reported = ctx->events_reported;
  1293. mutex_unlock(&mut);
  1294. ucma_unlock_files(cur_file, new_file);
  1295. response:
  1296. if (copy_to_user((void __user *)(unsigned long)cmd.response,
  1297. &resp, sizeof(resp)))
  1298. ret = -EFAULT;
  1299. ucma_put_ctx(ctx);
  1300. file_put:
  1301. fdput(f);
  1302. return ret;
  1303. }
  1304. static ssize_t (*ucma_cmd_table[])(struct ucma_file *file,
  1305. const char __user *inbuf,
  1306. int in_len, int out_len) = {
  1307. [RDMA_USER_CM_CMD_CREATE_ID] = ucma_create_id,
  1308. [RDMA_USER_CM_CMD_DESTROY_ID] = ucma_destroy_id,
  1309. [RDMA_USER_CM_CMD_BIND_IP] = ucma_bind_ip,
  1310. [RDMA_USER_CM_CMD_RESOLVE_IP] = ucma_resolve_ip,
  1311. [RDMA_USER_CM_CMD_RESOLVE_ROUTE] = ucma_resolve_route,
  1312. [RDMA_USER_CM_CMD_QUERY_ROUTE] = ucma_query_route,
  1313. [RDMA_USER_CM_CMD_CONNECT] = ucma_connect,
  1314. [RDMA_USER_CM_CMD_LISTEN] = ucma_listen,
  1315. [RDMA_USER_CM_CMD_ACCEPT] = ucma_accept,
  1316. [RDMA_USER_CM_CMD_REJECT] = ucma_reject,
  1317. [RDMA_USER_CM_CMD_DISCONNECT] = ucma_disconnect,
  1318. [RDMA_USER_CM_CMD_INIT_QP_ATTR] = ucma_init_qp_attr,
  1319. [RDMA_USER_CM_CMD_GET_EVENT] = ucma_get_event,
  1320. [RDMA_USER_CM_CMD_GET_OPTION] = NULL,
  1321. [RDMA_USER_CM_CMD_SET_OPTION] = ucma_set_option,
  1322. [RDMA_USER_CM_CMD_NOTIFY] = ucma_notify,
  1323. [RDMA_USER_CM_CMD_JOIN_IP_MCAST] = ucma_join_ip_multicast,
  1324. [RDMA_USER_CM_CMD_LEAVE_MCAST] = ucma_leave_multicast,
  1325. [RDMA_USER_CM_CMD_MIGRATE_ID] = ucma_migrate_id,
  1326. [RDMA_USER_CM_CMD_QUERY] = ucma_query,
  1327. [RDMA_USER_CM_CMD_BIND] = ucma_bind,
  1328. [RDMA_USER_CM_CMD_RESOLVE_ADDR] = ucma_resolve_addr,
  1329. [RDMA_USER_CM_CMD_JOIN_MCAST] = ucma_join_multicast
  1330. };
  1331. static ssize_t ucma_write(struct file *filp, const char __user *buf,
  1332. size_t len, loff_t *pos)
  1333. {
  1334. struct ucma_file *file = filp->private_data;
  1335. struct rdma_ucm_cmd_hdr hdr;
  1336. ssize_t ret;
  1337. if (WARN_ON_ONCE(!ib_safe_file_access(filp)))
  1338. return -EACCES;
  1339. if (len < sizeof(hdr))
  1340. return -EINVAL;
  1341. if (copy_from_user(&hdr, buf, sizeof(hdr)))
  1342. return -EFAULT;
  1343. if (hdr.cmd >= ARRAY_SIZE(ucma_cmd_table))
  1344. return -EINVAL;
  1345. if (hdr.in + sizeof(hdr) > len)
  1346. return -EINVAL;
  1347. if (!ucma_cmd_table[hdr.cmd])
  1348. return -ENOSYS;
  1349. ret = ucma_cmd_table[hdr.cmd](file, buf + sizeof(hdr), hdr.in, hdr.out);
  1350. if (!ret)
  1351. ret = len;
  1352. return ret;
  1353. }
  1354. static unsigned int ucma_poll(struct file *filp, struct poll_table_struct *wait)
  1355. {
  1356. struct ucma_file *file = filp->private_data;
  1357. unsigned int mask = 0;
  1358. poll_wait(filp, &file->poll_wait, wait);
  1359. if (!list_empty(&file->event_list))
  1360. mask = POLLIN | POLLRDNORM;
  1361. return mask;
  1362. }
  1363. /*
  1364. * ucma_open() does not need the BKL:
  1365. *
  1366. * - no global state is referred to;
  1367. * - there is no ioctl method to race against;
  1368. * - no further module initialization is required for open to work
  1369. * after the device is registered.
  1370. */
  1371. static int ucma_open(struct inode *inode, struct file *filp)
  1372. {
  1373. struct ucma_file *file;
  1374. file = kmalloc(sizeof *file, GFP_KERNEL);
  1375. if (!file)
  1376. return -ENOMEM;
  1377. file->close_wq = create_singlethread_workqueue("ucma_close_id");
  1378. if (!file->close_wq) {
  1379. kfree(file);
  1380. return -ENOMEM;
  1381. }
  1382. INIT_LIST_HEAD(&file->event_list);
  1383. INIT_LIST_HEAD(&file->ctx_list);
  1384. init_waitqueue_head(&file->poll_wait);
  1385. mutex_init(&file->mut);
  1386. filp->private_data = file;
  1387. file->filp = filp;
  1388. return nonseekable_open(inode, filp);
  1389. }
  1390. static int ucma_close(struct inode *inode, struct file *filp)
  1391. {
  1392. struct ucma_file *file = filp->private_data;
  1393. struct ucma_context *ctx, *tmp;
  1394. mutex_lock(&file->mut);
  1395. list_for_each_entry_safe(ctx, tmp, &file->ctx_list, list) {
  1396. ctx->destroying = 1;
  1397. mutex_unlock(&file->mut);
  1398. mutex_lock(&mut);
  1399. idr_remove(&ctx_idr, ctx->id);
  1400. mutex_unlock(&mut);
  1401. flush_workqueue(file->close_wq);
  1402. /* At that step once ctx was marked as destroying and workqueue
  1403. * was flushed we are safe from any inflights handlers that
  1404. * might put other closing task.
  1405. */
  1406. mutex_lock(&mut);
  1407. if (!ctx->closing) {
  1408. mutex_unlock(&mut);
  1409. /* rdma_destroy_id ensures that no event handlers are
  1410. * inflight for that id before releasing it.
  1411. */
  1412. rdma_destroy_id(ctx->cm_id);
  1413. } else {
  1414. mutex_unlock(&mut);
  1415. }
  1416. ucma_free_ctx(ctx);
  1417. mutex_lock(&file->mut);
  1418. }
  1419. mutex_unlock(&file->mut);
  1420. destroy_workqueue(file->close_wq);
  1421. kfree(file);
  1422. return 0;
  1423. }
  1424. static const struct file_operations ucma_fops = {
  1425. .owner = THIS_MODULE,
  1426. .open = ucma_open,
  1427. .release = ucma_close,
  1428. .write = ucma_write,
  1429. .poll = ucma_poll,
  1430. .llseek = no_llseek,
  1431. };
  1432. static struct miscdevice ucma_misc = {
  1433. .minor = MISC_DYNAMIC_MINOR,
  1434. .name = "rdma_cm",
  1435. .nodename = "infiniband/rdma_cm",
  1436. .mode = 0666,
  1437. .fops = &ucma_fops,
  1438. };
  1439. static ssize_t show_abi_version(struct device *dev,
  1440. struct device_attribute *attr,
  1441. char *buf)
  1442. {
  1443. return sprintf(buf, "%d\n", RDMA_USER_CM_ABI_VERSION);
  1444. }
  1445. static DEVICE_ATTR(abi_version, S_IRUGO, show_abi_version, NULL);
  1446. static int __init ucma_init(void)
  1447. {
  1448. int ret;
  1449. ret = misc_register(&ucma_misc);
  1450. if (ret)
  1451. return ret;
  1452. ret = device_create_file(ucma_misc.this_device, &dev_attr_abi_version);
  1453. if (ret) {
  1454. pr_err("rdma_ucm: couldn't create abi_version attr\n");
  1455. goto err1;
  1456. }
  1457. ucma_ctl_table_hdr = register_net_sysctl(&init_net, "net/rdma_ucm", ucma_ctl_table);
  1458. if (!ucma_ctl_table_hdr) {
  1459. pr_err("rdma_ucm: couldn't register sysctl paths\n");
  1460. ret = -ENOMEM;
  1461. goto err2;
  1462. }
  1463. return 0;
  1464. err2:
  1465. device_remove_file(ucma_misc.this_device, &dev_attr_abi_version);
  1466. err1:
  1467. misc_deregister(&ucma_misc);
  1468. return ret;
  1469. }
  1470. static void __exit ucma_cleanup(void)
  1471. {
  1472. unregister_net_sysctl_table(ucma_ctl_table_hdr);
  1473. device_remove_file(ucma_misc.this_device, &dev_attr_abi_version);
  1474. misc_deregister(&ucma_misc);
  1475. idr_destroy(&ctx_idr);
  1476. idr_destroy(&multicast_idr);
  1477. }
  1478. module_init(ucma_init);
  1479. module_exit(ucma_cleanup);