iwcm.c 28 KB

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  1. /*
  2. * Copyright (c) 2004, 2005 Intel Corporation. All rights reserved.
  3. * Copyright (c) 2004 Topspin Corporation. All rights reserved.
  4. * Copyright (c) 2004, 2005 Voltaire Corporation. All rights reserved.
  5. * Copyright (c) 2005 Sun Microsystems, Inc. All rights reserved.
  6. * Copyright (c) 2005 Open Grid Computing, Inc. All rights reserved.
  7. * Copyright (c) 2005 Network Appliance, Inc. All rights reserved.
  8. *
  9. * This software is available to you under a choice of one of two
  10. * licenses. You may choose to be licensed under the terms of the GNU
  11. * General Public License (GPL) Version 2, available from the file
  12. * COPYING in the main directory of this source tree, or the
  13. * OpenIB.org BSD license below:
  14. *
  15. * Redistribution and use in source and binary forms, with or
  16. * without modification, are permitted provided that the following
  17. * conditions are met:
  18. *
  19. * - Redistributions of source code must retain the above
  20. * copyright notice, this list of conditions and the following
  21. * disclaimer.
  22. *
  23. * - Redistributions in binary form must reproduce the above
  24. * copyright notice, this list of conditions and the following
  25. * disclaimer in the documentation and/or other materials
  26. * provided with the distribution.
  27. *
  28. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
  29. * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
  30. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
  31. * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
  32. * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
  33. * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
  34. * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
  35. * SOFTWARE.
  36. *
  37. */
  38. #include <linux/dma-mapping.h>
  39. #include <linux/err.h>
  40. #include <linux/idr.h>
  41. #include <linux/interrupt.h>
  42. #include <linux/rbtree.h>
  43. #include <linux/spinlock.h>
  44. #include <linux/workqueue.h>
  45. #include <linux/completion.h>
  46. #include <rdma/iw_cm.h>
  47. #include <rdma/ib_addr.h>
  48. #include "iwcm.h"
  49. MODULE_AUTHOR("Tom Tucker");
  50. MODULE_DESCRIPTION("iWARP CM");
  51. MODULE_LICENSE("Dual BSD/GPL");
  52. static struct workqueue_struct *iwcm_wq;
  53. struct iwcm_work {
  54. struct work_struct work;
  55. struct iwcm_id_private *cm_id;
  56. struct list_head list;
  57. struct iw_cm_event event;
  58. struct list_head free_list;
  59. };
  60. /*
  61. * The following services provide a mechanism for pre-allocating iwcm_work
  62. * elements. The design pre-allocates them based on the cm_id type:
  63. * LISTENING IDS: Get enough elements preallocated to handle the
  64. * listen backlog.
  65. * ACTIVE IDS: 4: CONNECT_REPLY, ESTABLISHED, DISCONNECT, CLOSE
  66. * PASSIVE IDS: 3: ESTABLISHED, DISCONNECT, CLOSE
  67. *
  68. * Allocating them in connect and listen avoids having to deal
  69. * with allocation failures on the event upcall from the provider (which
  70. * is called in the interrupt context).
  71. *
  72. * One exception is when creating the cm_id for incoming connection requests.
  73. * There are two cases:
  74. * 1) in the event upcall, cm_event_handler(), for a listening cm_id. If
  75. * the backlog is exceeded, then no more connection request events will
  76. * be processed. cm_event_handler() returns -ENOMEM in this case. Its up
  77. * to the provider to reject the connection request.
  78. * 2) in the connection request workqueue handler, cm_conn_req_handler().
  79. * If work elements cannot be allocated for the new connect request cm_id,
  80. * then IWCM will call the provider reject method. This is ok since
  81. * cm_conn_req_handler() runs in the workqueue thread context.
  82. */
  83. static struct iwcm_work *get_work(struct iwcm_id_private *cm_id_priv)
  84. {
  85. struct iwcm_work *work;
  86. if (list_empty(&cm_id_priv->work_free_list))
  87. return NULL;
  88. work = list_entry(cm_id_priv->work_free_list.next, struct iwcm_work,
  89. free_list);
  90. list_del_init(&work->free_list);
  91. return work;
  92. }
  93. static void put_work(struct iwcm_work *work)
  94. {
  95. list_add(&work->free_list, &work->cm_id->work_free_list);
  96. }
  97. static void dealloc_work_entries(struct iwcm_id_private *cm_id_priv)
  98. {
  99. struct list_head *e, *tmp;
  100. list_for_each_safe(e, tmp, &cm_id_priv->work_free_list)
  101. kfree(list_entry(e, struct iwcm_work, free_list));
  102. }
  103. static int alloc_work_entries(struct iwcm_id_private *cm_id_priv, int count)
  104. {
  105. struct iwcm_work *work;
  106. BUG_ON(!list_empty(&cm_id_priv->work_free_list));
  107. while (count--) {
  108. work = kmalloc(sizeof(struct iwcm_work), GFP_KERNEL);
  109. if (!work) {
  110. dealloc_work_entries(cm_id_priv);
  111. return -ENOMEM;
  112. }
  113. work->cm_id = cm_id_priv;
  114. INIT_LIST_HEAD(&work->list);
  115. put_work(work);
  116. }
  117. return 0;
  118. }
  119. /*
  120. * Save private data from incoming connection requests to
  121. * iw_cm_event, so the low level driver doesn't have to. Adjust
  122. * the event ptr to point to the local copy.
  123. */
  124. static int copy_private_data(struct iw_cm_event *event)
  125. {
  126. void *p;
  127. p = kmemdup(event->private_data, event->private_data_len, GFP_ATOMIC);
  128. if (!p)
  129. return -ENOMEM;
  130. event->private_data = p;
  131. return 0;
  132. }
  133. static void free_cm_id(struct iwcm_id_private *cm_id_priv)
  134. {
  135. dealloc_work_entries(cm_id_priv);
  136. kfree(cm_id_priv);
  137. }
  138. /*
  139. * Release a reference on cm_id. If the last reference is being
  140. * released, enable the waiting thread (in iw_destroy_cm_id) to
  141. * get woken up, and return 1 if a thread is already waiting.
  142. */
  143. static int iwcm_deref_id(struct iwcm_id_private *cm_id_priv)
  144. {
  145. BUG_ON(atomic_read(&cm_id_priv->refcount)==0);
  146. if (atomic_dec_and_test(&cm_id_priv->refcount)) {
  147. BUG_ON(!list_empty(&cm_id_priv->work_list));
  148. complete(&cm_id_priv->destroy_comp);
  149. return 1;
  150. }
  151. return 0;
  152. }
  153. static void add_ref(struct iw_cm_id *cm_id)
  154. {
  155. struct iwcm_id_private *cm_id_priv;
  156. cm_id_priv = container_of(cm_id, struct iwcm_id_private, id);
  157. atomic_inc(&cm_id_priv->refcount);
  158. }
  159. static void rem_ref(struct iw_cm_id *cm_id)
  160. {
  161. struct iwcm_id_private *cm_id_priv;
  162. cm_id_priv = container_of(cm_id, struct iwcm_id_private, id);
  163. if (iwcm_deref_id(cm_id_priv) &&
  164. test_bit(IWCM_F_CALLBACK_DESTROY, &cm_id_priv->flags)) {
  165. BUG_ON(!list_empty(&cm_id_priv->work_list));
  166. free_cm_id(cm_id_priv);
  167. }
  168. }
  169. static int cm_event_handler(struct iw_cm_id *cm_id, struct iw_cm_event *event);
  170. struct iw_cm_id *iw_create_cm_id(struct ib_device *device,
  171. iw_cm_handler cm_handler,
  172. void *context)
  173. {
  174. struct iwcm_id_private *cm_id_priv;
  175. cm_id_priv = kzalloc(sizeof(*cm_id_priv), GFP_KERNEL);
  176. if (!cm_id_priv)
  177. return ERR_PTR(-ENOMEM);
  178. cm_id_priv->state = IW_CM_STATE_IDLE;
  179. cm_id_priv->id.device = device;
  180. cm_id_priv->id.cm_handler = cm_handler;
  181. cm_id_priv->id.context = context;
  182. cm_id_priv->id.event_handler = cm_event_handler;
  183. cm_id_priv->id.add_ref = add_ref;
  184. cm_id_priv->id.rem_ref = rem_ref;
  185. spin_lock_init(&cm_id_priv->lock);
  186. atomic_set(&cm_id_priv->refcount, 1);
  187. init_waitqueue_head(&cm_id_priv->connect_wait);
  188. init_completion(&cm_id_priv->destroy_comp);
  189. INIT_LIST_HEAD(&cm_id_priv->work_list);
  190. INIT_LIST_HEAD(&cm_id_priv->work_free_list);
  191. return &cm_id_priv->id;
  192. }
  193. EXPORT_SYMBOL(iw_create_cm_id);
  194. static int iwcm_modify_qp_err(struct ib_qp *qp)
  195. {
  196. struct ib_qp_attr qp_attr;
  197. if (!qp)
  198. return -EINVAL;
  199. qp_attr.qp_state = IB_QPS_ERR;
  200. return ib_modify_qp(qp, &qp_attr, IB_QP_STATE);
  201. }
  202. /*
  203. * This is really the RDMAC CLOSING state. It is most similar to the
  204. * IB SQD QP state.
  205. */
  206. static int iwcm_modify_qp_sqd(struct ib_qp *qp)
  207. {
  208. struct ib_qp_attr qp_attr;
  209. BUG_ON(qp == NULL);
  210. qp_attr.qp_state = IB_QPS_SQD;
  211. return ib_modify_qp(qp, &qp_attr, IB_QP_STATE);
  212. }
  213. /*
  214. * CM_ID <-- CLOSING
  215. *
  216. * Block if a passive or active connection is currently being processed. Then
  217. * process the event as follows:
  218. * - If we are ESTABLISHED, move to CLOSING and modify the QP state
  219. * based on the abrupt flag
  220. * - If the connection is already in the CLOSING or IDLE state, the peer is
  221. * disconnecting concurrently with us and we've already seen the
  222. * DISCONNECT event -- ignore the request and return 0
  223. * - Disconnect on a listening endpoint returns -EINVAL
  224. */
  225. int iw_cm_disconnect(struct iw_cm_id *cm_id, int abrupt)
  226. {
  227. struct iwcm_id_private *cm_id_priv;
  228. unsigned long flags;
  229. int ret = 0;
  230. struct ib_qp *qp = NULL;
  231. cm_id_priv = container_of(cm_id, struct iwcm_id_private, id);
  232. /* Wait if we're currently in a connect or accept downcall */
  233. wait_event(cm_id_priv->connect_wait,
  234. !test_bit(IWCM_F_CONNECT_WAIT, &cm_id_priv->flags));
  235. spin_lock_irqsave(&cm_id_priv->lock, flags);
  236. switch (cm_id_priv->state) {
  237. case IW_CM_STATE_ESTABLISHED:
  238. cm_id_priv->state = IW_CM_STATE_CLOSING;
  239. /* QP could be <nul> for user-mode client */
  240. if (cm_id_priv->qp)
  241. qp = cm_id_priv->qp;
  242. else
  243. ret = -EINVAL;
  244. break;
  245. case IW_CM_STATE_LISTEN:
  246. ret = -EINVAL;
  247. break;
  248. case IW_CM_STATE_CLOSING:
  249. /* remote peer closed first */
  250. case IW_CM_STATE_IDLE:
  251. /* accept or connect returned !0 */
  252. break;
  253. case IW_CM_STATE_CONN_RECV:
  254. /*
  255. * App called disconnect before/without calling accept after
  256. * connect_request event delivered.
  257. */
  258. break;
  259. case IW_CM_STATE_CONN_SENT:
  260. /* Can only get here if wait above fails */
  261. default:
  262. BUG();
  263. }
  264. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  265. if (qp) {
  266. if (abrupt)
  267. ret = iwcm_modify_qp_err(qp);
  268. else
  269. ret = iwcm_modify_qp_sqd(qp);
  270. /*
  271. * If both sides are disconnecting the QP could
  272. * already be in ERR or SQD states
  273. */
  274. ret = 0;
  275. }
  276. return ret;
  277. }
  278. EXPORT_SYMBOL(iw_cm_disconnect);
  279. /*
  280. * CM_ID <-- DESTROYING
  281. *
  282. * Clean up all resources associated with the connection and release
  283. * the initial reference taken by iw_create_cm_id.
  284. */
  285. static void destroy_cm_id(struct iw_cm_id *cm_id)
  286. {
  287. struct iwcm_id_private *cm_id_priv;
  288. unsigned long flags;
  289. int ret;
  290. cm_id_priv = container_of(cm_id, struct iwcm_id_private, id);
  291. /*
  292. * Wait if we're currently in a connect or accept downcall. A
  293. * listening endpoint should never block here.
  294. */
  295. wait_event(cm_id_priv->connect_wait,
  296. !test_bit(IWCM_F_CONNECT_WAIT, &cm_id_priv->flags));
  297. spin_lock_irqsave(&cm_id_priv->lock, flags);
  298. switch (cm_id_priv->state) {
  299. case IW_CM_STATE_LISTEN:
  300. cm_id_priv->state = IW_CM_STATE_DESTROYING;
  301. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  302. /* destroy the listening endpoint */
  303. ret = cm_id->device->iwcm->destroy_listen(cm_id);
  304. spin_lock_irqsave(&cm_id_priv->lock, flags);
  305. break;
  306. case IW_CM_STATE_ESTABLISHED:
  307. cm_id_priv->state = IW_CM_STATE_DESTROYING;
  308. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  309. /* Abrupt close of the connection */
  310. (void)iwcm_modify_qp_err(cm_id_priv->qp);
  311. spin_lock_irqsave(&cm_id_priv->lock, flags);
  312. break;
  313. case IW_CM_STATE_IDLE:
  314. case IW_CM_STATE_CLOSING:
  315. cm_id_priv->state = IW_CM_STATE_DESTROYING;
  316. break;
  317. case IW_CM_STATE_CONN_RECV:
  318. /*
  319. * App called destroy before/without calling accept after
  320. * receiving connection request event notification or
  321. * returned non zero from the event callback function.
  322. * In either case, must tell the provider to reject.
  323. */
  324. cm_id_priv->state = IW_CM_STATE_DESTROYING;
  325. break;
  326. case IW_CM_STATE_CONN_SENT:
  327. case IW_CM_STATE_DESTROYING:
  328. default:
  329. BUG();
  330. break;
  331. }
  332. if (cm_id_priv->qp) {
  333. cm_id_priv->id.device->iwcm->rem_ref(cm_id_priv->qp);
  334. cm_id_priv->qp = NULL;
  335. }
  336. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  337. (void)iwcm_deref_id(cm_id_priv);
  338. }
  339. /*
  340. * This function is only called by the application thread and cannot
  341. * be called by the event thread. The function will wait for all
  342. * references to be released on the cm_id and then kfree the cm_id
  343. * object.
  344. */
  345. void iw_destroy_cm_id(struct iw_cm_id *cm_id)
  346. {
  347. struct iwcm_id_private *cm_id_priv;
  348. cm_id_priv = container_of(cm_id, struct iwcm_id_private, id);
  349. BUG_ON(test_bit(IWCM_F_CALLBACK_DESTROY, &cm_id_priv->flags));
  350. destroy_cm_id(cm_id);
  351. wait_for_completion(&cm_id_priv->destroy_comp);
  352. free_cm_id(cm_id_priv);
  353. }
  354. EXPORT_SYMBOL(iw_destroy_cm_id);
  355. /*
  356. * CM_ID <-- LISTEN
  357. *
  358. * Start listening for connect requests. Generates one CONNECT_REQUEST
  359. * event for each inbound connect request.
  360. */
  361. int iw_cm_listen(struct iw_cm_id *cm_id, int backlog)
  362. {
  363. struct iwcm_id_private *cm_id_priv;
  364. unsigned long flags;
  365. int ret;
  366. cm_id_priv = container_of(cm_id, struct iwcm_id_private, id);
  367. ret = alloc_work_entries(cm_id_priv, backlog);
  368. if (ret)
  369. return ret;
  370. spin_lock_irqsave(&cm_id_priv->lock, flags);
  371. switch (cm_id_priv->state) {
  372. case IW_CM_STATE_IDLE:
  373. cm_id_priv->state = IW_CM_STATE_LISTEN;
  374. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  375. ret = cm_id->device->iwcm->create_listen(cm_id, backlog);
  376. if (ret)
  377. cm_id_priv->state = IW_CM_STATE_IDLE;
  378. spin_lock_irqsave(&cm_id_priv->lock, flags);
  379. break;
  380. default:
  381. ret = -EINVAL;
  382. }
  383. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  384. return ret;
  385. }
  386. EXPORT_SYMBOL(iw_cm_listen);
  387. /*
  388. * CM_ID <-- IDLE
  389. *
  390. * Rejects an inbound connection request. No events are generated.
  391. */
  392. int iw_cm_reject(struct iw_cm_id *cm_id,
  393. const void *private_data,
  394. u8 private_data_len)
  395. {
  396. struct iwcm_id_private *cm_id_priv;
  397. unsigned long flags;
  398. int ret;
  399. cm_id_priv = container_of(cm_id, struct iwcm_id_private, id);
  400. set_bit(IWCM_F_CONNECT_WAIT, &cm_id_priv->flags);
  401. spin_lock_irqsave(&cm_id_priv->lock, flags);
  402. if (cm_id_priv->state != IW_CM_STATE_CONN_RECV) {
  403. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  404. clear_bit(IWCM_F_CONNECT_WAIT, &cm_id_priv->flags);
  405. wake_up_all(&cm_id_priv->connect_wait);
  406. return -EINVAL;
  407. }
  408. cm_id_priv->state = IW_CM_STATE_IDLE;
  409. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  410. ret = cm_id->device->iwcm->reject(cm_id, private_data,
  411. private_data_len);
  412. clear_bit(IWCM_F_CONNECT_WAIT, &cm_id_priv->flags);
  413. wake_up_all(&cm_id_priv->connect_wait);
  414. return ret;
  415. }
  416. EXPORT_SYMBOL(iw_cm_reject);
  417. /*
  418. * CM_ID <-- ESTABLISHED
  419. *
  420. * Accepts an inbound connection request and generates an ESTABLISHED
  421. * event. Callers of iw_cm_disconnect and iw_destroy_cm_id will block
  422. * until the ESTABLISHED event is received from the provider.
  423. */
  424. int iw_cm_accept(struct iw_cm_id *cm_id,
  425. struct iw_cm_conn_param *iw_param)
  426. {
  427. struct iwcm_id_private *cm_id_priv;
  428. struct ib_qp *qp;
  429. unsigned long flags;
  430. int ret;
  431. cm_id_priv = container_of(cm_id, struct iwcm_id_private, id);
  432. set_bit(IWCM_F_CONNECT_WAIT, &cm_id_priv->flags);
  433. spin_lock_irqsave(&cm_id_priv->lock, flags);
  434. if (cm_id_priv->state != IW_CM_STATE_CONN_RECV) {
  435. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  436. clear_bit(IWCM_F_CONNECT_WAIT, &cm_id_priv->flags);
  437. wake_up_all(&cm_id_priv->connect_wait);
  438. return -EINVAL;
  439. }
  440. /* Get the ib_qp given the QPN */
  441. qp = cm_id->device->iwcm->get_qp(cm_id->device, iw_param->qpn);
  442. if (!qp) {
  443. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  444. return -EINVAL;
  445. }
  446. cm_id->device->iwcm->add_ref(qp);
  447. cm_id_priv->qp = qp;
  448. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  449. ret = cm_id->device->iwcm->accept(cm_id, iw_param);
  450. if (ret) {
  451. /* An error on accept precludes provider events */
  452. BUG_ON(cm_id_priv->state != IW_CM_STATE_CONN_RECV);
  453. cm_id_priv->state = IW_CM_STATE_IDLE;
  454. spin_lock_irqsave(&cm_id_priv->lock, flags);
  455. if (cm_id_priv->qp) {
  456. cm_id->device->iwcm->rem_ref(qp);
  457. cm_id_priv->qp = NULL;
  458. }
  459. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  460. clear_bit(IWCM_F_CONNECT_WAIT, &cm_id_priv->flags);
  461. wake_up_all(&cm_id_priv->connect_wait);
  462. }
  463. return ret;
  464. }
  465. EXPORT_SYMBOL(iw_cm_accept);
  466. /*
  467. * Active Side: CM_ID <-- CONN_SENT
  468. *
  469. * If successful, results in the generation of a CONNECT_REPLY
  470. * event. iw_cm_disconnect and iw_cm_destroy will block until the
  471. * CONNECT_REPLY event is received from the provider.
  472. */
  473. int iw_cm_connect(struct iw_cm_id *cm_id, struct iw_cm_conn_param *iw_param)
  474. {
  475. struct iwcm_id_private *cm_id_priv;
  476. int ret;
  477. unsigned long flags;
  478. struct ib_qp *qp;
  479. cm_id_priv = container_of(cm_id, struct iwcm_id_private, id);
  480. ret = alloc_work_entries(cm_id_priv, 4);
  481. if (ret)
  482. return ret;
  483. set_bit(IWCM_F_CONNECT_WAIT, &cm_id_priv->flags);
  484. spin_lock_irqsave(&cm_id_priv->lock, flags);
  485. if (cm_id_priv->state != IW_CM_STATE_IDLE) {
  486. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  487. clear_bit(IWCM_F_CONNECT_WAIT, &cm_id_priv->flags);
  488. wake_up_all(&cm_id_priv->connect_wait);
  489. return -EINVAL;
  490. }
  491. /* Get the ib_qp given the QPN */
  492. qp = cm_id->device->iwcm->get_qp(cm_id->device, iw_param->qpn);
  493. if (!qp) {
  494. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  495. return -EINVAL;
  496. }
  497. cm_id->device->iwcm->add_ref(qp);
  498. cm_id_priv->qp = qp;
  499. cm_id_priv->state = IW_CM_STATE_CONN_SENT;
  500. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  501. ret = cm_id->device->iwcm->connect(cm_id, iw_param);
  502. if (ret) {
  503. spin_lock_irqsave(&cm_id_priv->lock, flags);
  504. if (cm_id_priv->qp) {
  505. cm_id->device->iwcm->rem_ref(qp);
  506. cm_id_priv->qp = NULL;
  507. }
  508. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  509. BUG_ON(cm_id_priv->state != IW_CM_STATE_CONN_SENT);
  510. cm_id_priv->state = IW_CM_STATE_IDLE;
  511. clear_bit(IWCM_F_CONNECT_WAIT, &cm_id_priv->flags);
  512. wake_up_all(&cm_id_priv->connect_wait);
  513. }
  514. return ret;
  515. }
  516. EXPORT_SYMBOL(iw_cm_connect);
  517. /*
  518. * Passive Side: new CM_ID <-- CONN_RECV
  519. *
  520. * Handles an inbound connect request. The function creates a new
  521. * iw_cm_id to represent the new connection and inherits the client
  522. * callback function and other attributes from the listening parent.
  523. *
  524. * The work item contains a pointer to the listen_cm_id and the event. The
  525. * listen_cm_id contains the client cm_handler, context and
  526. * device. These are copied when the device is cloned. The event
  527. * contains the new four tuple.
  528. *
  529. * An error on the child should not affect the parent, so this
  530. * function does not return a value.
  531. */
  532. static void cm_conn_req_handler(struct iwcm_id_private *listen_id_priv,
  533. struct iw_cm_event *iw_event)
  534. {
  535. unsigned long flags;
  536. struct iw_cm_id *cm_id;
  537. struct iwcm_id_private *cm_id_priv;
  538. int ret;
  539. /*
  540. * The provider should never generate a connection request
  541. * event with a bad status.
  542. */
  543. BUG_ON(iw_event->status);
  544. /*
  545. * We could be destroying the listening id. If so, ignore this
  546. * upcall.
  547. */
  548. spin_lock_irqsave(&listen_id_priv->lock, flags);
  549. if (listen_id_priv->state != IW_CM_STATE_LISTEN) {
  550. spin_unlock_irqrestore(&listen_id_priv->lock, flags);
  551. goto out;
  552. }
  553. spin_unlock_irqrestore(&listen_id_priv->lock, flags);
  554. cm_id = iw_create_cm_id(listen_id_priv->id.device,
  555. listen_id_priv->id.cm_handler,
  556. listen_id_priv->id.context);
  557. /* If the cm_id could not be created, ignore the request */
  558. if (IS_ERR(cm_id))
  559. goto out;
  560. cm_id->provider_data = iw_event->provider_data;
  561. cm_id->local_addr = iw_event->local_addr;
  562. cm_id->remote_addr = iw_event->remote_addr;
  563. cm_id_priv = container_of(cm_id, struct iwcm_id_private, id);
  564. cm_id_priv->state = IW_CM_STATE_CONN_RECV;
  565. ret = alloc_work_entries(cm_id_priv, 3);
  566. if (ret) {
  567. iw_cm_reject(cm_id, NULL, 0);
  568. iw_destroy_cm_id(cm_id);
  569. goto out;
  570. }
  571. /* Call the client CM handler */
  572. ret = cm_id->cm_handler(cm_id, iw_event);
  573. if (ret) {
  574. iw_cm_reject(cm_id, NULL, 0);
  575. set_bit(IWCM_F_CALLBACK_DESTROY, &cm_id_priv->flags);
  576. destroy_cm_id(cm_id);
  577. if (atomic_read(&cm_id_priv->refcount)==0)
  578. free_cm_id(cm_id_priv);
  579. }
  580. out:
  581. if (iw_event->private_data_len)
  582. kfree(iw_event->private_data);
  583. }
  584. /*
  585. * Passive Side: CM_ID <-- ESTABLISHED
  586. *
  587. * The provider generated an ESTABLISHED event which means that
  588. * the MPA negotion has completed successfully and we are now in MPA
  589. * FPDU mode.
  590. *
  591. * This event can only be received in the CONN_RECV state. If the
  592. * remote peer closed, the ESTABLISHED event would be received followed
  593. * by the CLOSE event. If the app closes, it will block until we wake
  594. * it up after processing this event.
  595. */
  596. static int cm_conn_est_handler(struct iwcm_id_private *cm_id_priv,
  597. struct iw_cm_event *iw_event)
  598. {
  599. unsigned long flags;
  600. int ret;
  601. spin_lock_irqsave(&cm_id_priv->lock, flags);
  602. /*
  603. * We clear the CONNECT_WAIT bit here to allow the callback
  604. * function to call iw_cm_disconnect. Calling iw_destroy_cm_id
  605. * from a callback handler is not allowed.
  606. */
  607. clear_bit(IWCM_F_CONNECT_WAIT, &cm_id_priv->flags);
  608. BUG_ON(cm_id_priv->state != IW_CM_STATE_CONN_RECV);
  609. cm_id_priv->state = IW_CM_STATE_ESTABLISHED;
  610. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  611. ret = cm_id_priv->id.cm_handler(&cm_id_priv->id, iw_event);
  612. wake_up_all(&cm_id_priv->connect_wait);
  613. return ret;
  614. }
  615. /*
  616. * Active Side: CM_ID <-- ESTABLISHED
  617. *
  618. * The app has called connect and is waiting for the established event to
  619. * post it's requests to the server. This event will wake up anyone
  620. * blocked in iw_cm_disconnect or iw_destroy_id.
  621. */
  622. static int cm_conn_rep_handler(struct iwcm_id_private *cm_id_priv,
  623. struct iw_cm_event *iw_event)
  624. {
  625. unsigned long flags;
  626. int ret;
  627. spin_lock_irqsave(&cm_id_priv->lock, flags);
  628. /*
  629. * Clear the connect wait bit so a callback function calling
  630. * iw_cm_disconnect will not wait and deadlock this thread
  631. */
  632. clear_bit(IWCM_F_CONNECT_WAIT, &cm_id_priv->flags);
  633. BUG_ON(cm_id_priv->state != IW_CM_STATE_CONN_SENT);
  634. if (iw_event->status == IW_CM_EVENT_STATUS_ACCEPTED) {
  635. cm_id_priv->id.local_addr = iw_event->local_addr;
  636. cm_id_priv->id.remote_addr = iw_event->remote_addr;
  637. cm_id_priv->state = IW_CM_STATE_ESTABLISHED;
  638. } else {
  639. /* REJECTED or RESET */
  640. cm_id_priv->id.device->iwcm->rem_ref(cm_id_priv->qp);
  641. cm_id_priv->qp = NULL;
  642. cm_id_priv->state = IW_CM_STATE_IDLE;
  643. }
  644. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  645. ret = cm_id_priv->id.cm_handler(&cm_id_priv->id, iw_event);
  646. if (iw_event->private_data_len)
  647. kfree(iw_event->private_data);
  648. /* Wake up waiters on connect complete */
  649. wake_up_all(&cm_id_priv->connect_wait);
  650. return ret;
  651. }
  652. /*
  653. * CM_ID <-- CLOSING
  654. *
  655. * If in the ESTABLISHED state, move to CLOSING.
  656. */
  657. static void cm_disconnect_handler(struct iwcm_id_private *cm_id_priv,
  658. struct iw_cm_event *iw_event)
  659. {
  660. unsigned long flags;
  661. spin_lock_irqsave(&cm_id_priv->lock, flags);
  662. if (cm_id_priv->state == IW_CM_STATE_ESTABLISHED)
  663. cm_id_priv->state = IW_CM_STATE_CLOSING;
  664. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  665. }
  666. /*
  667. * CM_ID <-- IDLE
  668. *
  669. * If in the ESTBLISHED or CLOSING states, the QP will have have been
  670. * moved by the provider to the ERR state. Disassociate the CM_ID from
  671. * the QP, move to IDLE, and remove the 'connected' reference.
  672. *
  673. * If in some other state, the cm_id was destroyed asynchronously.
  674. * This is the last reference that will result in waking up
  675. * the app thread blocked in iw_destroy_cm_id.
  676. */
  677. static int cm_close_handler(struct iwcm_id_private *cm_id_priv,
  678. struct iw_cm_event *iw_event)
  679. {
  680. unsigned long flags;
  681. int ret = 0;
  682. spin_lock_irqsave(&cm_id_priv->lock, flags);
  683. if (cm_id_priv->qp) {
  684. cm_id_priv->id.device->iwcm->rem_ref(cm_id_priv->qp);
  685. cm_id_priv->qp = NULL;
  686. }
  687. switch (cm_id_priv->state) {
  688. case IW_CM_STATE_ESTABLISHED:
  689. case IW_CM_STATE_CLOSING:
  690. cm_id_priv->state = IW_CM_STATE_IDLE;
  691. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  692. ret = cm_id_priv->id.cm_handler(&cm_id_priv->id, iw_event);
  693. spin_lock_irqsave(&cm_id_priv->lock, flags);
  694. break;
  695. case IW_CM_STATE_DESTROYING:
  696. break;
  697. default:
  698. BUG();
  699. }
  700. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  701. return ret;
  702. }
  703. static int process_event(struct iwcm_id_private *cm_id_priv,
  704. struct iw_cm_event *iw_event)
  705. {
  706. int ret = 0;
  707. switch (iw_event->event) {
  708. case IW_CM_EVENT_CONNECT_REQUEST:
  709. cm_conn_req_handler(cm_id_priv, iw_event);
  710. break;
  711. case IW_CM_EVENT_CONNECT_REPLY:
  712. ret = cm_conn_rep_handler(cm_id_priv, iw_event);
  713. break;
  714. case IW_CM_EVENT_ESTABLISHED:
  715. ret = cm_conn_est_handler(cm_id_priv, iw_event);
  716. break;
  717. case IW_CM_EVENT_DISCONNECT:
  718. cm_disconnect_handler(cm_id_priv, iw_event);
  719. break;
  720. case IW_CM_EVENT_CLOSE:
  721. ret = cm_close_handler(cm_id_priv, iw_event);
  722. break;
  723. default:
  724. BUG();
  725. }
  726. return ret;
  727. }
  728. /*
  729. * Process events on the work_list for the cm_id. If the callback
  730. * function requests that the cm_id be deleted, a flag is set in the
  731. * cm_id flags to indicate that when the last reference is
  732. * removed, the cm_id is to be destroyed. This is necessary to
  733. * distinguish between an object that will be destroyed by the app
  734. * thread asleep on the destroy_comp list vs. an object destroyed
  735. * here synchronously when the last reference is removed.
  736. */
  737. static void cm_work_handler(struct work_struct *_work)
  738. {
  739. struct iwcm_work *work = container_of(_work, struct iwcm_work, work);
  740. struct iw_cm_event levent;
  741. struct iwcm_id_private *cm_id_priv = work->cm_id;
  742. unsigned long flags;
  743. int empty;
  744. int ret = 0;
  745. int destroy_id;
  746. spin_lock_irqsave(&cm_id_priv->lock, flags);
  747. empty = list_empty(&cm_id_priv->work_list);
  748. while (!empty) {
  749. work = list_entry(cm_id_priv->work_list.next,
  750. struct iwcm_work, list);
  751. list_del_init(&work->list);
  752. empty = list_empty(&cm_id_priv->work_list);
  753. levent = work->event;
  754. put_work(work);
  755. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  756. ret = process_event(cm_id_priv, &levent);
  757. if (ret) {
  758. set_bit(IWCM_F_CALLBACK_DESTROY, &cm_id_priv->flags);
  759. destroy_cm_id(&cm_id_priv->id);
  760. }
  761. BUG_ON(atomic_read(&cm_id_priv->refcount)==0);
  762. destroy_id = test_bit(IWCM_F_CALLBACK_DESTROY, &cm_id_priv->flags);
  763. if (iwcm_deref_id(cm_id_priv)) {
  764. if (destroy_id) {
  765. BUG_ON(!list_empty(&cm_id_priv->work_list));
  766. free_cm_id(cm_id_priv);
  767. }
  768. return;
  769. }
  770. spin_lock_irqsave(&cm_id_priv->lock, flags);
  771. }
  772. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  773. }
  774. /*
  775. * This function is called on interrupt context. Schedule events on
  776. * the iwcm_wq thread to allow callback functions to downcall into
  777. * the CM and/or block. Events are queued to a per-CM_ID
  778. * work_list. If this is the first event on the work_list, the work
  779. * element is also queued on the iwcm_wq thread.
  780. *
  781. * Each event holds a reference on the cm_id. Until the last posted
  782. * event has been delivered and processed, the cm_id cannot be
  783. * deleted.
  784. *
  785. * Returns:
  786. * 0 - the event was handled.
  787. * -ENOMEM - the event was not handled due to lack of resources.
  788. */
  789. static int cm_event_handler(struct iw_cm_id *cm_id,
  790. struct iw_cm_event *iw_event)
  791. {
  792. struct iwcm_work *work;
  793. struct iwcm_id_private *cm_id_priv;
  794. unsigned long flags;
  795. int ret = 0;
  796. cm_id_priv = container_of(cm_id, struct iwcm_id_private, id);
  797. spin_lock_irqsave(&cm_id_priv->lock, flags);
  798. work = get_work(cm_id_priv);
  799. if (!work) {
  800. ret = -ENOMEM;
  801. goto out;
  802. }
  803. INIT_WORK(&work->work, cm_work_handler);
  804. work->cm_id = cm_id_priv;
  805. work->event = *iw_event;
  806. if ((work->event.event == IW_CM_EVENT_CONNECT_REQUEST ||
  807. work->event.event == IW_CM_EVENT_CONNECT_REPLY) &&
  808. work->event.private_data_len) {
  809. ret = copy_private_data(&work->event);
  810. if (ret) {
  811. put_work(work);
  812. goto out;
  813. }
  814. }
  815. atomic_inc(&cm_id_priv->refcount);
  816. if (list_empty(&cm_id_priv->work_list)) {
  817. list_add_tail(&work->list, &cm_id_priv->work_list);
  818. queue_work(iwcm_wq, &work->work);
  819. } else
  820. list_add_tail(&work->list, &cm_id_priv->work_list);
  821. out:
  822. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  823. return ret;
  824. }
  825. static int iwcm_init_qp_init_attr(struct iwcm_id_private *cm_id_priv,
  826. struct ib_qp_attr *qp_attr,
  827. int *qp_attr_mask)
  828. {
  829. unsigned long flags;
  830. int ret;
  831. spin_lock_irqsave(&cm_id_priv->lock, flags);
  832. switch (cm_id_priv->state) {
  833. case IW_CM_STATE_IDLE:
  834. case IW_CM_STATE_CONN_SENT:
  835. case IW_CM_STATE_CONN_RECV:
  836. case IW_CM_STATE_ESTABLISHED:
  837. *qp_attr_mask = IB_QP_STATE | IB_QP_ACCESS_FLAGS;
  838. qp_attr->qp_access_flags = IB_ACCESS_REMOTE_WRITE|
  839. IB_ACCESS_REMOTE_READ;
  840. ret = 0;
  841. break;
  842. default:
  843. ret = -EINVAL;
  844. break;
  845. }
  846. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  847. return ret;
  848. }
  849. static int iwcm_init_qp_rts_attr(struct iwcm_id_private *cm_id_priv,
  850. struct ib_qp_attr *qp_attr,
  851. int *qp_attr_mask)
  852. {
  853. unsigned long flags;
  854. int ret;
  855. spin_lock_irqsave(&cm_id_priv->lock, flags);
  856. switch (cm_id_priv->state) {
  857. case IW_CM_STATE_IDLE:
  858. case IW_CM_STATE_CONN_SENT:
  859. case IW_CM_STATE_CONN_RECV:
  860. case IW_CM_STATE_ESTABLISHED:
  861. *qp_attr_mask = 0;
  862. ret = 0;
  863. break;
  864. default:
  865. ret = -EINVAL;
  866. break;
  867. }
  868. spin_unlock_irqrestore(&cm_id_priv->lock, flags);
  869. return ret;
  870. }
  871. int iw_cm_init_qp_attr(struct iw_cm_id *cm_id,
  872. struct ib_qp_attr *qp_attr,
  873. int *qp_attr_mask)
  874. {
  875. struct iwcm_id_private *cm_id_priv;
  876. int ret;
  877. cm_id_priv = container_of(cm_id, struct iwcm_id_private, id);
  878. switch (qp_attr->qp_state) {
  879. case IB_QPS_INIT:
  880. case IB_QPS_RTR:
  881. ret = iwcm_init_qp_init_attr(cm_id_priv,
  882. qp_attr, qp_attr_mask);
  883. break;
  884. case IB_QPS_RTS:
  885. ret = iwcm_init_qp_rts_attr(cm_id_priv,
  886. qp_attr, qp_attr_mask);
  887. break;
  888. default:
  889. ret = -EINVAL;
  890. break;
  891. }
  892. return ret;
  893. }
  894. EXPORT_SYMBOL(iw_cm_init_qp_attr);
  895. static int __init iw_cm_init(void)
  896. {
  897. iwcm_wq = create_singlethread_workqueue("iw_cm_wq");
  898. if (!iwcm_wq)
  899. return -ENOMEM;
  900. return 0;
  901. }
  902. static void __exit iw_cm_cleanup(void)
  903. {
  904. destroy_workqueue(iwcm_wq);
  905. }
  906. module_init(iw_cm_init);
  907. module_exit(iw_cm_cleanup);