ib_isert.c 95 KB

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  1. /*******************************************************************************
  2. * This file contains iSCSI extentions for RDMA (iSER) Verbs
  3. *
  4. * (c) Copyright 2013 Datera, Inc.
  5. *
  6. * Nicholas A. Bellinger <nab@linux-iscsi.org>
  7. *
  8. * This program is free software; you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License as published by
  10. * the Free Software Foundation; either version 2 of the License, or
  11. * (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. ****************************************************************************/
  18. #include <linux/string.h>
  19. #include <linux/module.h>
  20. #include <linux/scatterlist.h>
  21. #include <linux/socket.h>
  22. #include <linux/in.h>
  23. #include <linux/in6.h>
  24. #include <linux/llist.h>
  25. #include <rdma/ib_verbs.h>
  26. #include <rdma/rdma_cm.h>
  27. #include <target/target_core_base.h>
  28. #include <target/target_core_fabric.h>
  29. #include <target/iscsi/iscsi_transport.h>
  30. #include <linux/semaphore.h>
  31. #include "isert_proto.h"
  32. #include "ib_isert.h"
  33. #define ISERT_MAX_CONN 8
  34. #define ISER_MAX_RX_CQ_LEN (ISERT_QP_MAX_RECV_DTOS * ISERT_MAX_CONN)
  35. #define ISER_MAX_TX_CQ_LEN (ISERT_QP_MAX_REQ_DTOS * ISERT_MAX_CONN)
  36. static DEFINE_MUTEX(device_list_mutex);
  37. static LIST_HEAD(device_list);
  38. static struct workqueue_struct *isert_rx_wq;
  39. static struct workqueue_struct *isert_comp_wq;
  40. static struct workqueue_struct *isert_release_wq;
  41. static void
  42. isert_unmap_cmd(struct isert_cmd *isert_cmd, struct isert_conn *isert_conn);
  43. static int
  44. isert_map_rdma(struct iscsi_conn *conn, struct iscsi_cmd *cmd,
  45. struct isert_rdma_wr *wr);
  46. static void
  47. isert_unreg_rdma(struct isert_cmd *isert_cmd, struct isert_conn *isert_conn);
  48. static int
  49. isert_reg_rdma(struct iscsi_conn *conn, struct iscsi_cmd *cmd,
  50. struct isert_rdma_wr *wr);
  51. static int
  52. isert_put_response(struct iscsi_conn *conn, struct iscsi_cmd *cmd);
  53. static int
  54. isert_rdma_post_recvl(struct isert_conn *isert_conn);
  55. static int
  56. isert_rdma_accept(struct isert_conn *isert_conn);
  57. struct rdma_cm_id *isert_setup_id(struct isert_np *isert_np);
  58. static inline bool
  59. isert_prot_cmd(struct isert_conn *conn, struct se_cmd *cmd)
  60. {
  61. return (conn->conn_device->pi_capable &&
  62. cmd->prot_op != TARGET_PROT_NORMAL);
  63. }
  64. static void
  65. isert_qp_event_callback(struct ib_event *e, void *context)
  66. {
  67. struct isert_conn *isert_conn = (struct isert_conn *)context;
  68. pr_err("isert_qp_event_callback event: %d\n", e->event);
  69. switch (e->event) {
  70. case IB_EVENT_COMM_EST:
  71. rdma_notify(isert_conn->conn_cm_id, IB_EVENT_COMM_EST);
  72. break;
  73. case IB_EVENT_QP_LAST_WQE_REACHED:
  74. pr_warn("Reached TX IB_EVENT_QP_LAST_WQE_REACHED:\n");
  75. break;
  76. default:
  77. break;
  78. }
  79. }
  80. static int
  81. isert_query_device(struct ib_device *ib_dev, struct ib_device_attr *devattr)
  82. {
  83. int ret;
  84. ret = ib_query_device(ib_dev, devattr);
  85. if (ret) {
  86. pr_err("ib_query_device() failed: %d\n", ret);
  87. return ret;
  88. }
  89. pr_debug("devattr->max_sge: %d\n", devattr->max_sge);
  90. pr_debug("devattr->max_sge_rd: %d\n", devattr->max_sge_rd);
  91. return 0;
  92. }
  93. static int
  94. isert_conn_setup_qp(struct isert_conn *isert_conn, struct rdma_cm_id *cma_id)
  95. {
  96. struct isert_device *device = isert_conn->conn_device;
  97. struct ib_qp_init_attr attr;
  98. int ret, index, min_index = 0;
  99. mutex_lock(&device_list_mutex);
  100. for (index = 0; index < device->cqs_used; index++)
  101. if (device->cq_active_qps[index] <
  102. device->cq_active_qps[min_index])
  103. min_index = index;
  104. device->cq_active_qps[min_index]++;
  105. pr_debug("isert_conn_setup_qp: Using min_index: %d\n", min_index);
  106. mutex_unlock(&device_list_mutex);
  107. memset(&attr, 0, sizeof(struct ib_qp_init_attr));
  108. attr.event_handler = isert_qp_event_callback;
  109. attr.qp_context = isert_conn;
  110. attr.send_cq = device->dev_tx_cq[min_index];
  111. attr.recv_cq = device->dev_rx_cq[min_index];
  112. attr.cap.max_send_wr = ISERT_QP_MAX_REQ_DTOS;
  113. attr.cap.max_recv_wr = ISERT_QP_MAX_RECV_DTOS;
  114. /*
  115. * FIXME: Use devattr.max_sge - 2 for max_send_sge as
  116. * work-around for RDMA_READs with ConnectX-2.
  117. *
  118. * Also, still make sure to have at least two SGEs for
  119. * outgoing control PDU responses.
  120. */
  121. attr.cap.max_send_sge = max(2, device->dev_attr.max_sge - 2);
  122. isert_conn->max_sge = attr.cap.max_send_sge;
  123. attr.cap.max_recv_sge = 1;
  124. attr.sq_sig_type = IB_SIGNAL_REQ_WR;
  125. attr.qp_type = IB_QPT_RC;
  126. if (device->pi_capable)
  127. attr.create_flags |= IB_QP_CREATE_SIGNATURE_EN;
  128. pr_debug("isert_conn_setup_qp cma_id->device: %p\n",
  129. cma_id->device);
  130. pr_debug("isert_conn_setup_qp conn_pd->device: %p\n",
  131. isert_conn->conn_pd->device);
  132. ret = rdma_create_qp(cma_id, isert_conn->conn_pd, &attr);
  133. if (ret) {
  134. pr_err("rdma_create_qp failed for cma_id %d\n", ret);
  135. goto err;
  136. }
  137. isert_conn->conn_qp = cma_id->qp;
  138. pr_debug("rdma_create_qp() returned success >>>>>>>>>>>>>>>>>>>>>>>>>.\n");
  139. return 0;
  140. err:
  141. mutex_lock(&device_list_mutex);
  142. device->cq_active_qps[min_index]--;
  143. mutex_unlock(&device_list_mutex);
  144. return ret;
  145. }
  146. static void
  147. isert_cq_event_callback(struct ib_event *e, void *context)
  148. {
  149. pr_debug("isert_cq_event_callback event: %d\n", e->event);
  150. }
  151. static int
  152. isert_alloc_rx_descriptors(struct isert_conn *isert_conn)
  153. {
  154. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  155. struct iser_rx_desc *rx_desc;
  156. struct ib_sge *rx_sg;
  157. u64 dma_addr;
  158. int i, j;
  159. isert_conn->conn_rx_descs = kzalloc(ISERT_QP_MAX_RECV_DTOS *
  160. sizeof(struct iser_rx_desc), GFP_KERNEL);
  161. if (!isert_conn->conn_rx_descs)
  162. goto fail;
  163. rx_desc = isert_conn->conn_rx_descs;
  164. for (i = 0; i < ISERT_QP_MAX_RECV_DTOS; i++, rx_desc++) {
  165. dma_addr = ib_dma_map_single(ib_dev, (void *)rx_desc,
  166. ISER_RX_PAYLOAD_SIZE, DMA_FROM_DEVICE);
  167. if (ib_dma_mapping_error(ib_dev, dma_addr))
  168. goto dma_map_fail;
  169. rx_desc->dma_addr = dma_addr;
  170. rx_sg = &rx_desc->rx_sg;
  171. rx_sg->addr = rx_desc->dma_addr;
  172. rx_sg->length = ISER_RX_PAYLOAD_SIZE;
  173. rx_sg->lkey = isert_conn->conn_mr->lkey;
  174. }
  175. isert_conn->conn_rx_desc_head = 0;
  176. return 0;
  177. dma_map_fail:
  178. rx_desc = isert_conn->conn_rx_descs;
  179. for (j = 0; j < i; j++, rx_desc++) {
  180. ib_dma_unmap_single(ib_dev, rx_desc->dma_addr,
  181. ISER_RX_PAYLOAD_SIZE, DMA_FROM_DEVICE);
  182. }
  183. kfree(isert_conn->conn_rx_descs);
  184. isert_conn->conn_rx_descs = NULL;
  185. fail:
  186. return -ENOMEM;
  187. }
  188. static void
  189. isert_free_rx_descriptors(struct isert_conn *isert_conn)
  190. {
  191. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  192. struct iser_rx_desc *rx_desc;
  193. int i;
  194. if (!isert_conn->conn_rx_descs)
  195. return;
  196. rx_desc = isert_conn->conn_rx_descs;
  197. for (i = 0; i < ISERT_QP_MAX_RECV_DTOS; i++, rx_desc++) {
  198. ib_dma_unmap_single(ib_dev, rx_desc->dma_addr,
  199. ISER_RX_PAYLOAD_SIZE, DMA_FROM_DEVICE);
  200. }
  201. kfree(isert_conn->conn_rx_descs);
  202. isert_conn->conn_rx_descs = NULL;
  203. }
  204. static void isert_cq_tx_work(struct work_struct *);
  205. static void isert_cq_tx_callback(struct ib_cq *, void *);
  206. static void isert_cq_rx_work(struct work_struct *);
  207. static void isert_cq_rx_callback(struct ib_cq *, void *);
  208. static int
  209. isert_create_device_ib_res(struct isert_device *device)
  210. {
  211. struct ib_device *ib_dev = device->ib_device;
  212. struct isert_cq_desc *cq_desc;
  213. struct ib_device_attr *dev_attr;
  214. int ret = 0, i, j;
  215. int max_rx_cqe, max_tx_cqe;
  216. dev_attr = &device->dev_attr;
  217. ret = isert_query_device(ib_dev, dev_attr);
  218. if (ret)
  219. return ret;
  220. max_rx_cqe = min(ISER_MAX_RX_CQ_LEN, dev_attr->max_cqe);
  221. max_tx_cqe = min(ISER_MAX_TX_CQ_LEN, dev_attr->max_cqe);
  222. /* asign function handlers */
  223. if (dev_attr->device_cap_flags & IB_DEVICE_MEM_MGT_EXTENSIONS &&
  224. dev_attr->device_cap_flags & IB_DEVICE_SIGNATURE_HANDOVER) {
  225. device->use_fastreg = 1;
  226. device->reg_rdma_mem = isert_reg_rdma;
  227. device->unreg_rdma_mem = isert_unreg_rdma;
  228. } else {
  229. device->use_fastreg = 0;
  230. device->reg_rdma_mem = isert_map_rdma;
  231. device->unreg_rdma_mem = isert_unmap_cmd;
  232. }
  233. /* Check signature cap */
  234. device->pi_capable = dev_attr->device_cap_flags &
  235. IB_DEVICE_SIGNATURE_HANDOVER ? true : false;
  236. device->cqs_used = min_t(int, num_online_cpus(),
  237. device->ib_device->num_comp_vectors);
  238. device->cqs_used = min(ISERT_MAX_CQ, device->cqs_used);
  239. pr_debug("Using %d CQs, device %s supports %d vectors support "
  240. "Fast registration %d pi_capable %d\n",
  241. device->cqs_used, device->ib_device->name,
  242. device->ib_device->num_comp_vectors, device->use_fastreg,
  243. device->pi_capable);
  244. device->cq_desc = kzalloc(sizeof(struct isert_cq_desc) *
  245. device->cqs_used, GFP_KERNEL);
  246. if (!device->cq_desc) {
  247. pr_err("Unable to allocate device->cq_desc\n");
  248. return -ENOMEM;
  249. }
  250. cq_desc = device->cq_desc;
  251. for (i = 0; i < device->cqs_used; i++) {
  252. cq_desc[i].device = device;
  253. cq_desc[i].cq_index = i;
  254. INIT_WORK(&cq_desc[i].cq_rx_work, isert_cq_rx_work);
  255. device->dev_rx_cq[i] = ib_create_cq(device->ib_device,
  256. isert_cq_rx_callback,
  257. isert_cq_event_callback,
  258. (void *)&cq_desc[i],
  259. max_rx_cqe, i);
  260. if (IS_ERR(device->dev_rx_cq[i])) {
  261. ret = PTR_ERR(device->dev_rx_cq[i]);
  262. device->dev_rx_cq[i] = NULL;
  263. goto out_cq;
  264. }
  265. INIT_WORK(&cq_desc[i].cq_tx_work, isert_cq_tx_work);
  266. device->dev_tx_cq[i] = ib_create_cq(device->ib_device,
  267. isert_cq_tx_callback,
  268. isert_cq_event_callback,
  269. (void *)&cq_desc[i],
  270. max_tx_cqe, i);
  271. if (IS_ERR(device->dev_tx_cq[i])) {
  272. ret = PTR_ERR(device->dev_tx_cq[i]);
  273. device->dev_tx_cq[i] = NULL;
  274. goto out_cq;
  275. }
  276. ret = ib_req_notify_cq(device->dev_rx_cq[i], IB_CQ_NEXT_COMP);
  277. if (ret)
  278. goto out_cq;
  279. ret = ib_req_notify_cq(device->dev_tx_cq[i], IB_CQ_NEXT_COMP);
  280. if (ret)
  281. goto out_cq;
  282. }
  283. return 0;
  284. out_cq:
  285. for (j = 0; j < i; j++) {
  286. cq_desc = &device->cq_desc[j];
  287. if (device->dev_rx_cq[j]) {
  288. cancel_work_sync(&cq_desc->cq_rx_work);
  289. ib_destroy_cq(device->dev_rx_cq[j]);
  290. }
  291. if (device->dev_tx_cq[j]) {
  292. cancel_work_sync(&cq_desc->cq_tx_work);
  293. ib_destroy_cq(device->dev_tx_cq[j]);
  294. }
  295. }
  296. kfree(device->cq_desc);
  297. return ret;
  298. }
  299. static void
  300. isert_free_device_ib_res(struct isert_device *device)
  301. {
  302. struct isert_cq_desc *cq_desc;
  303. int i;
  304. for (i = 0; i < device->cqs_used; i++) {
  305. cq_desc = &device->cq_desc[i];
  306. cancel_work_sync(&cq_desc->cq_rx_work);
  307. cancel_work_sync(&cq_desc->cq_tx_work);
  308. ib_destroy_cq(device->dev_rx_cq[i]);
  309. ib_destroy_cq(device->dev_tx_cq[i]);
  310. device->dev_rx_cq[i] = NULL;
  311. device->dev_tx_cq[i] = NULL;
  312. }
  313. kfree(device->cq_desc);
  314. }
  315. static void
  316. isert_device_try_release(struct isert_device *device)
  317. {
  318. mutex_lock(&device_list_mutex);
  319. device->refcount--;
  320. if (!device->refcount) {
  321. isert_free_device_ib_res(device);
  322. list_del(&device->dev_node);
  323. kfree(device);
  324. }
  325. mutex_unlock(&device_list_mutex);
  326. }
  327. static struct isert_device *
  328. isert_device_find_by_ib_dev(struct rdma_cm_id *cma_id)
  329. {
  330. struct isert_device *device;
  331. int ret;
  332. mutex_lock(&device_list_mutex);
  333. list_for_each_entry(device, &device_list, dev_node) {
  334. if (device->ib_device->node_guid == cma_id->device->node_guid) {
  335. device->refcount++;
  336. mutex_unlock(&device_list_mutex);
  337. return device;
  338. }
  339. }
  340. device = kzalloc(sizeof(struct isert_device), GFP_KERNEL);
  341. if (!device) {
  342. mutex_unlock(&device_list_mutex);
  343. return ERR_PTR(-ENOMEM);
  344. }
  345. INIT_LIST_HEAD(&device->dev_node);
  346. device->ib_device = cma_id->device;
  347. ret = isert_create_device_ib_res(device);
  348. if (ret) {
  349. kfree(device);
  350. mutex_unlock(&device_list_mutex);
  351. return ERR_PTR(ret);
  352. }
  353. device->refcount++;
  354. list_add_tail(&device->dev_node, &device_list);
  355. mutex_unlock(&device_list_mutex);
  356. return device;
  357. }
  358. static void
  359. isert_conn_free_fastreg_pool(struct isert_conn *isert_conn)
  360. {
  361. struct fast_reg_descriptor *fr_desc, *tmp;
  362. int i = 0;
  363. if (list_empty(&isert_conn->conn_fr_pool))
  364. return;
  365. pr_debug("Freeing conn %p fastreg pool", isert_conn);
  366. list_for_each_entry_safe(fr_desc, tmp,
  367. &isert_conn->conn_fr_pool, list) {
  368. list_del(&fr_desc->list);
  369. ib_free_fast_reg_page_list(fr_desc->data_frpl);
  370. ib_dereg_mr(fr_desc->data_mr);
  371. if (fr_desc->pi_ctx) {
  372. ib_free_fast_reg_page_list(fr_desc->pi_ctx->prot_frpl);
  373. ib_dereg_mr(fr_desc->pi_ctx->prot_mr);
  374. ib_destroy_mr(fr_desc->pi_ctx->sig_mr);
  375. kfree(fr_desc->pi_ctx);
  376. }
  377. kfree(fr_desc);
  378. ++i;
  379. }
  380. if (i < isert_conn->conn_fr_pool_size)
  381. pr_warn("Pool still has %d regions registered\n",
  382. isert_conn->conn_fr_pool_size - i);
  383. }
  384. static int
  385. isert_create_pi_ctx(struct fast_reg_descriptor *desc,
  386. struct ib_device *device,
  387. struct ib_pd *pd)
  388. {
  389. struct ib_mr_init_attr mr_init_attr;
  390. struct pi_context *pi_ctx;
  391. int ret;
  392. pi_ctx = kzalloc(sizeof(*desc->pi_ctx), GFP_KERNEL);
  393. if (!pi_ctx) {
  394. pr_err("Failed to allocate pi context\n");
  395. return -ENOMEM;
  396. }
  397. pi_ctx->prot_frpl = ib_alloc_fast_reg_page_list(device,
  398. ISCSI_ISER_SG_TABLESIZE);
  399. if (IS_ERR(pi_ctx->prot_frpl)) {
  400. pr_err("Failed to allocate prot frpl err=%ld\n",
  401. PTR_ERR(pi_ctx->prot_frpl));
  402. ret = PTR_ERR(pi_ctx->prot_frpl);
  403. goto err_pi_ctx;
  404. }
  405. pi_ctx->prot_mr = ib_alloc_fast_reg_mr(pd, ISCSI_ISER_SG_TABLESIZE);
  406. if (IS_ERR(pi_ctx->prot_mr)) {
  407. pr_err("Failed to allocate prot frmr err=%ld\n",
  408. PTR_ERR(pi_ctx->prot_mr));
  409. ret = PTR_ERR(pi_ctx->prot_mr);
  410. goto err_prot_frpl;
  411. }
  412. desc->ind |= ISERT_PROT_KEY_VALID;
  413. memset(&mr_init_attr, 0, sizeof(mr_init_attr));
  414. mr_init_attr.max_reg_descriptors = 2;
  415. mr_init_attr.flags |= IB_MR_SIGNATURE_EN;
  416. pi_ctx->sig_mr = ib_create_mr(pd, &mr_init_attr);
  417. if (IS_ERR(pi_ctx->sig_mr)) {
  418. pr_err("Failed to allocate signature enabled mr err=%ld\n",
  419. PTR_ERR(pi_ctx->sig_mr));
  420. ret = PTR_ERR(pi_ctx->sig_mr);
  421. goto err_prot_mr;
  422. }
  423. desc->pi_ctx = pi_ctx;
  424. desc->ind |= ISERT_SIG_KEY_VALID;
  425. desc->ind &= ~ISERT_PROTECTED;
  426. return 0;
  427. err_prot_mr:
  428. ib_dereg_mr(desc->pi_ctx->prot_mr);
  429. err_prot_frpl:
  430. ib_free_fast_reg_page_list(desc->pi_ctx->prot_frpl);
  431. err_pi_ctx:
  432. kfree(desc->pi_ctx);
  433. return ret;
  434. }
  435. static int
  436. isert_create_fr_desc(struct ib_device *ib_device, struct ib_pd *pd,
  437. struct fast_reg_descriptor *fr_desc)
  438. {
  439. int ret;
  440. fr_desc->data_frpl = ib_alloc_fast_reg_page_list(ib_device,
  441. ISCSI_ISER_SG_TABLESIZE);
  442. if (IS_ERR(fr_desc->data_frpl)) {
  443. pr_err("Failed to allocate data frpl err=%ld\n",
  444. PTR_ERR(fr_desc->data_frpl));
  445. return PTR_ERR(fr_desc->data_frpl);
  446. }
  447. fr_desc->data_mr = ib_alloc_fast_reg_mr(pd, ISCSI_ISER_SG_TABLESIZE);
  448. if (IS_ERR(fr_desc->data_mr)) {
  449. pr_err("Failed to allocate data frmr err=%ld\n",
  450. PTR_ERR(fr_desc->data_mr));
  451. ret = PTR_ERR(fr_desc->data_mr);
  452. goto err_data_frpl;
  453. }
  454. fr_desc->ind |= ISERT_DATA_KEY_VALID;
  455. pr_debug("Created fr_desc %p\n", fr_desc);
  456. return 0;
  457. err_data_frpl:
  458. ib_free_fast_reg_page_list(fr_desc->data_frpl);
  459. return ret;
  460. }
  461. static int
  462. isert_conn_create_fastreg_pool(struct isert_conn *isert_conn)
  463. {
  464. struct fast_reg_descriptor *fr_desc;
  465. struct isert_device *device = isert_conn->conn_device;
  466. struct se_session *se_sess = isert_conn->conn->sess->se_sess;
  467. struct se_node_acl *se_nacl = se_sess->se_node_acl;
  468. int i, ret, tag_num;
  469. /*
  470. * Setup the number of FRMRs based upon the number of tags
  471. * available to session in iscsi_target_locate_portal().
  472. */
  473. tag_num = max_t(u32, ISCSIT_MIN_TAGS, se_nacl->queue_depth);
  474. tag_num = (tag_num * 2) + ISCSIT_EXTRA_TAGS;
  475. isert_conn->conn_fr_pool_size = 0;
  476. for (i = 0; i < tag_num; i++) {
  477. fr_desc = kzalloc(sizeof(*fr_desc), GFP_KERNEL);
  478. if (!fr_desc) {
  479. pr_err("Failed to allocate fast_reg descriptor\n");
  480. ret = -ENOMEM;
  481. goto err;
  482. }
  483. ret = isert_create_fr_desc(device->ib_device,
  484. isert_conn->conn_pd, fr_desc);
  485. if (ret) {
  486. pr_err("Failed to create fastreg descriptor err=%d\n",
  487. ret);
  488. kfree(fr_desc);
  489. goto err;
  490. }
  491. list_add_tail(&fr_desc->list, &isert_conn->conn_fr_pool);
  492. isert_conn->conn_fr_pool_size++;
  493. }
  494. pr_debug("Creating conn %p fastreg pool size=%d",
  495. isert_conn, isert_conn->conn_fr_pool_size);
  496. return 0;
  497. err:
  498. isert_conn_free_fastreg_pool(isert_conn);
  499. return ret;
  500. }
  501. static int
  502. isert_connect_request(struct rdma_cm_id *cma_id, struct rdma_cm_event *event)
  503. {
  504. struct isert_np *isert_np = cma_id->context;
  505. struct iscsi_np *np = isert_np->np;
  506. struct isert_conn *isert_conn;
  507. struct isert_device *device;
  508. struct ib_device *ib_dev = cma_id->device;
  509. int ret = 0;
  510. spin_lock_bh(&np->np_thread_lock);
  511. if (!np->enabled) {
  512. spin_unlock_bh(&np->np_thread_lock);
  513. pr_debug("iscsi_np is not enabled, reject connect request\n");
  514. return rdma_reject(cma_id, NULL, 0);
  515. }
  516. spin_unlock_bh(&np->np_thread_lock);
  517. pr_debug("Entering isert_connect_request cma_id: %p, context: %p\n",
  518. cma_id, cma_id->context);
  519. isert_conn = kzalloc(sizeof(struct isert_conn), GFP_KERNEL);
  520. if (!isert_conn) {
  521. pr_err("Unable to allocate isert_conn\n");
  522. return -ENOMEM;
  523. }
  524. isert_conn->state = ISER_CONN_INIT;
  525. INIT_LIST_HEAD(&isert_conn->conn_accept_node);
  526. init_completion(&isert_conn->conn_login_comp);
  527. init_completion(&isert_conn->login_req_comp);
  528. init_completion(&isert_conn->conn_wait);
  529. init_completion(&isert_conn->conn_wait_comp_err);
  530. kref_init(&isert_conn->conn_kref);
  531. mutex_init(&isert_conn->conn_mutex);
  532. spin_lock_init(&isert_conn->conn_lock);
  533. INIT_LIST_HEAD(&isert_conn->conn_fr_pool);
  534. isert_conn->conn_cm_id = cma_id;
  535. isert_conn->login_buf = kzalloc(ISCSI_DEF_MAX_RECV_SEG_LEN +
  536. ISER_RX_LOGIN_SIZE, GFP_KERNEL);
  537. if (!isert_conn->login_buf) {
  538. pr_err("Unable to allocate isert_conn->login_buf\n");
  539. ret = -ENOMEM;
  540. goto out;
  541. }
  542. isert_conn->login_req_buf = isert_conn->login_buf;
  543. isert_conn->login_rsp_buf = isert_conn->login_buf +
  544. ISCSI_DEF_MAX_RECV_SEG_LEN;
  545. pr_debug("Set login_buf: %p login_req_buf: %p login_rsp_buf: %p\n",
  546. isert_conn->login_buf, isert_conn->login_req_buf,
  547. isert_conn->login_rsp_buf);
  548. isert_conn->login_req_dma = ib_dma_map_single(ib_dev,
  549. (void *)isert_conn->login_req_buf,
  550. ISCSI_DEF_MAX_RECV_SEG_LEN, DMA_FROM_DEVICE);
  551. ret = ib_dma_mapping_error(ib_dev, isert_conn->login_req_dma);
  552. if (ret) {
  553. pr_err("ib_dma_mapping_error failed for login_req_dma: %d\n",
  554. ret);
  555. isert_conn->login_req_dma = 0;
  556. goto out_login_buf;
  557. }
  558. isert_conn->login_rsp_dma = ib_dma_map_single(ib_dev,
  559. (void *)isert_conn->login_rsp_buf,
  560. ISER_RX_LOGIN_SIZE, DMA_TO_DEVICE);
  561. ret = ib_dma_mapping_error(ib_dev, isert_conn->login_rsp_dma);
  562. if (ret) {
  563. pr_err("ib_dma_mapping_error failed for login_rsp_dma: %d\n",
  564. ret);
  565. isert_conn->login_rsp_dma = 0;
  566. goto out_req_dma_map;
  567. }
  568. device = isert_device_find_by_ib_dev(cma_id);
  569. if (IS_ERR(device)) {
  570. ret = PTR_ERR(device);
  571. goto out_rsp_dma_map;
  572. }
  573. /* Set max inflight RDMA READ requests */
  574. isert_conn->initiator_depth = min_t(u8,
  575. event->param.conn.initiator_depth,
  576. device->dev_attr.max_qp_init_rd_atom);
  577. pr_debug("Using initiator_depth: %u\n", isert_conn->initiator_depth);
  578. isert_conn->conn_device = device;
  579. isert_conn->conn_pd = ib_alloc_pd(isert_conn->conn_device->ib_device);
  580. if (IS_ERR(isert_conn->conn_pd)) {
  581. ret = PTR_ERR(isert_conn->conn_pd);
  582. pr_err("ib_alloc_pd failed for conn %p: ret=%d\n",
  583. isert_conn, ret);
  584. goto out_pd;
  585. }
  586. isert_conn->conn_mr = ib_get_dma_mr(isert_conn->conn_pd,
  587. IB_ACCESS_LOCAL_WRITE);
  588. if (IS_ERR(isert_conn->conn_mr)) {
  589. ret = PTR_ERR(isert_conn->conn_mr);
  590. pr_err("ib_get_dma_mr failed for conn %p: ret=%d\n",
  591. isert_conn, ret);
  592. goto out_mr;
  593. }
  594. ret = isert_conn_setup_qp(isert_conn, cma_id);
  595. if (ret)
  596. goto out_conn_dev;
  597. ret = isert_rdma_post_recvl(isert_conn);
  598. if (ret)
  599. goto out_conn_dev;
  600. ret = isert_rdma_accept(isert_conn);
  601. if (ret)
  602. goto out_conn_dev;
  603. mutex_lock(&isert_np->np_accept_mutex);
  604. list_add_tail(&isert_conn->conn_accept_node, &isert_np->np_accept_list);
  605. mutex_unlock(&isert_np->np_accept_mutex);
  606. pr_debug("isert_connect_request() up np_sem np: %p\n", np);
  607. up(&isert_np->np_sem);
  608. return 0;
  609. out_conn_dev:
  610. ib_dereg_mr(isert_conn->conn_mr);
  611. out_mr:
  612. ib_dealloc_pd(isert_conn->conn_pd);
  613. out_pd:
  614. isert_device_try_release(device);
  615. out_rsp_dma_map:
  616. ib_dma_unmap_single(ib_dev, isert_conn->login_rsp_dma,
  617. ISER_RX_LOGIN_SIZE, DMA_TO_DEVICE);
  618. out_req_dma_map:
  619. ib_dma_unmap_single(ib_dev, isert_conn->login_req_dma,
  620. ISCSI_DEF_MAX_RECV_SEG_LEN, DMA_FROM_DEVICE);
  621. out_login_buf:
  622. kfree(isert_conn->login_buf);
  623. out:
  624. kfree(isert_conn);
  625. rdma_reject(cma_id, NULL, 0);
  626. return ret;
  627. }
  628. static void
  629. isert_connect_release(struct isert_conn *isert_conn)
  630. {
  631. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  632. struct isert_device *device = isert_conn->conn_device;
  633. int cq_index;
  634. pr_debug("Entering isert_connect_release(): >>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>\n");
  635. if (device && device->use_fastreg)
  636. isert_conn_free_fastreg_pool(isert_conn);
  637. isert_free_rx_descriptors(isert_conn);
  638. rdma_destroy_id(isert_conn->conn_cm_id);
  639. if (isert_conn->conn_qp) {
  640. cq_index = ((struct isert_cq_desc *)
  641. isert_conn->conn_qp->recv_cq->cq_context)->cq_index;
  642. pr_debug("isert_connect_release: cq_index: %d\n", cq_index);
  643. mutex_lock(&device_list_mutex);
  644. isert_conn->conn_device->cq_active_qps[cq_index]--;
  645. mutex_unlock(&device_list_mutex);
  646. ib_destroy_qp(isert_conn->conn_qp);
  647. }
  648. ib_dereg_mr(isert_conn->conn_mr);
  649. ib_dealloc_pd(isert_conn->conn_pd);
  650. if (isert_conn->login_buf) {
  651. ib_dma_unmap_single(ib_dev, isert_conn->login_rsp_dma,
  652. ISER_RX_LOGIN_SIZE, DMA_TO_DEVICE);
  653. ib_dma_unmap_single(ib_dev, isert_conn->login_req_dma,
  654. ISCSI_DEF_MAX_RECV_SEG_LEN,
  655. DMA_FROM_DEVICE);
  656. kfree(isert_conn->login_buf);
  657. }
  658. kfree(isert_conn);
  659. if (device)
  660. isert_device_try_release(device);
  661. pr_debug("Leaving isert_connect_release >>>>>>>>>>>>\n");
  662. }
  663. static void
  664. isert_connected_handler(struct rdma_cm_id *cma_id)
  665. {
  666. struct isert_conn *isert_conn = cma_id->qp->qp_context;
  667. pr_info("conn %p\n", isert_conn);
  668. if (!kref_get_unless_zero(&isert_conn->conn_kref)) {
  669. pr_warn("conn %p connect_release is running\n", isert_conn);
  670. return;
  671. }
  672. mutex_lock(&isert_conn->conn_mutex);
  673. if (isert_conn->state != ISER_CONN_FULL_FEATURE)
  674. isert_conn->state = ISER_CONN_UP;
  675. mutex_unlock(&isert_conn->conn_mutex);
  676. }
  677. static void
  678. isert_release_conn_kref(struct kref *kref)
  679. {
  680. struct isert_conn *isert_conn = container_of(kref,
  681. struct isert_conn, conn_kref);
  682. pr_debug("Calling isert_connect_release for final kref %s/%d\n",
  683. current->comm, current->pid);
  684. isert_connect_release(isert_conn);
  685. }
  686. static void
  687. isert_put_conn(struct isert_conn *isert_conn)
  688. {
  689. kref_put(&isert_conn->conn_kref, isert_release_conn_kref);
  690. }
  691. /**
  692. * isert_conn_terminate() - Initiate connection termination
  693. * @isert_conn: isert connection struct
  694. *
  695. * Notes:
  696. * In case the connection state is FULL_FEATURE, move state
  697. * to TEMINATING and start teardown sequence (rdma_disconnect).
  698. * In case the connection state is UP, complete flush as well.
  699. *
  700. * This routine must be called with conn_mutex held. Thus it is
  701. * safe to call multiple times.
  702. */
  703. static void
  704. isert_conn_terminate(struct isert_conn *isert_conn)
  705. {
  706. int err;
  707. switch (isert_conn->state) {
  708. case ISER_CONN_TERMINATING:
  709. break;
  710. case ISER_CONN_UP:
  711. /*
  712. * No flush completions will occur as we didn't
  713. * get to ISER_CONN_FULL_FEATURE yet, complete
  714. * to allow teardown progress.
  715. */
  716. complete(&isert_conn->conn_wait_comp_err);
  717. case ISER_CONN_FULL_FEATURE: /* FALLTHRU */
  718. pr_info("Terminating conn %p state %d\n",
  719. isert_conn, isert_conn->state);
  720. isert_conn->state = ISER_CONN_TERMINATING;
  721. err = rdma_disconnect(isert_conn->conn_cm_id);
  722. if (err)
  723. pr_warn("Failed rdma_disconnect isert_conn %p\n",
  724. isert_conn);
  725. break;
  726. default:
  727. pr_warn("conn %p teminating in state %d\n",
  728. isert_conn, isert_conn->state);
  729. }
  730. }
  731. static int
  732. isert_np_cma_handler(struct isert_np *isert_np,
  733. enum rdma_cm_event_type event)
  734. {
  735. pr_debug("isert np %p, handling event %d\n", isert_np, event);
  736. switch (event) {
  737. case RDMA_CM_EVENT_DEVICE_REMOVAL:
  738. isert_np->np_cm_id = NULL;
  739. break;
  740. case RDMA_CM_EVENT_ADDR_CHANGE:
  741. isert_np->np_cm_id = isert_setup_id(isert_np);
  742. if (IS_ERR(isert_np->np_cm_id)) {
  743. pr_err("isert np %p setup id failed: %ld\n",
  744. isert_np, PTR_ERR(isert_np->np_cm_id));
  745. isert_np->np_cm_id = NULL;
  746. }
  747. break;
  748. default:
  749. pr_err("isert np %p Unexpected event %d\n",
  750. isert_np, event);
  751. }
  752. return -1;
  753. }
  754. static int
  755. isert_disconnected_handler(struct rdma_cm_id *cma_id,
  756. enum rdma_cm_event_type event)
  757. {
  758. struct isert_np *isert_np = cma_id->context;
  759. struct isert_conn *isert_conn;
  760. if (isert_np->np_cm_id == cma_id)
  761. return isert_np_cma_handler(cma_id->context, event);
  762. isert_conn = cma_id->qp->qp_context;
  763. mutex_lock(&isert_conn->conn_mutex);
  764. isert_conn_terminate(isert_conn);
  765. mutex_unlock(&isert_conn->conn_mutex);
  766. pr_info("conn %p completing conn_wait\n", isert_conn);
  767. complete(&isert_conn->conn_wait);
  768. return 0;
  769. }
  770. static void
  771. isert_connect_error(struct rdma_cm_id *cma_id)
  772. {
  773. struct isert_conn *isert_conn = cma_id->qp->qp_context;
  774. isert_put_conn(isert_conn);
  775. }
  776. static int
  777. isert_cma_handler(struct rdma_cm_id *cma_id, struct rdma_cm_event *event)
  778. {
  779. int ret = 0;
  780. pr_debug("isert_cma_handler: event %d status %d conn %p id %p\n",
  781. event->event, event->status, cma_id->context, cma_id);
  782. switch (event->event) {
  783. case RDMA_CM_EVENT_CONNECT_REQUEST:
  784. ret = isert_connect_request(cma_id, event);
  785. if (ret)
  786. pr_err("isert_cma_handler failed RDMA_CM_EVENT: 0x%08x %d\n",
  787. event->event, ret);
  788. break;
  789. case RDMA_CM_EVENT_ESTABLISHED:
  790. isert_connected_handler(cma_id);
  791. break;
  792. case RDMA_CM_EVENT_ADDR_CHANGE: /* FALLTHRU */
  793. case RDMA_CM_EVENT_DISCONNECTED: /* FALLTHRU */
  794. case RDMA_CM_EVENT_DEVICE_REMOVAL: /* FALLTHRU */
  795. case RDMA_CM_EVENT_TIMEWAIT_EXIT: /* FALLTHRU */
  796. ret = isert_disconnected_handler(cma_id, event->event);
  797. break;
  798. case RDMA_CM_EVENT_REJECTED: /* FALLTHRU */
  799. case RDMA_CM_EVENT_UNREACHABLE: /* FALLTHRU */
  800. case RDMA_CM_EVENT_CONNECT_ERROR:
  801. isert_connect_error(cma_id);
  802. break;
  803. default:
  804. pr_err("Unhandled RDMA CMA event: %d\n", event->event);
  805. break;
  806. }
  807. return ret;
  808. }
  809. static int
  810. isert_post_recv(struct isert_conn *isert_conn, u32 count)
  811. {
  812. struct ib_recv_wr *rx_wr, *rx_wr_failed;
  813. int i, ret;
  814. unsigned int rx_head = isert_conn->conn_rx_desc_head;
  815. struct iser_rx_desc *rx_desc;
  816. for (rx_wr = isert_conn->conn_rx_wr, i = 0; i < count; i++, rx_wr++) {
  817. rx_desc = &isert_conn->conn_rx_descs[rx_head];
  818. rx_wr->wr_id = (unsigned long)rx_desc;
  819. rx_wr->sg_list = &rx_desc->rx_sg;
  820. rx_wr->num_sge = 1;
  821. rx_wr->next = rx_wr + 1;
  822. rx_head = (rx_head + 1) & (ISERT_QP_MAX_RECV_DTOS - 1);
  823. }
  824. rx_wr--;
  825. rx_wr->next = NULL; /* mark end of work requests list */
  826. isert_conn->post_recv_buf_count += count;
  827. ret = ib_post_recv(isert_conn->conn_qp, isert_conn->conn_rx_wr,
  828. &rx_wr_failed);
  829. if (ret) {
  830. pr_err("ib_post_recv() failed with ret: %d\n", ret);
  831. isert_conn->post_recv_buf_count -= count;
  832. } else {
  833. pr_debug("isert_post_recv(): Posted %d RX buffers\n", count);
  834. isert_conn->conn_rx_desc_head = rx_head;
  835. }
  836. return ret;
  837. }
  838. static int
  839. isert_post_send(struct isert_conn *isert_conn, struct iser_tx_desc *tx_desc)
  840. {
  841. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  842. struct ib_send_wr send_wr, *send_wr_failed;
  843. int ret;
  844. ib_dma_sync_single_for_device(ib_dev, tx_desc->dma_addr,
  845. ISER_HEADERS_LEN, DMA_TO_DEVICE);
  846. send_wr.next = NULL;
  847. send_wr.wr_id = (unsigned long)tx_desc;
  848. send_wr.sg_list = tx_desc->tx_sg;
  849. send_wr.num_sge = tx_desc->num_sge;
  850. send_wr.opcode = IB_WR_SEND;
  851. send_wr.send_flags = IB_SEND_SIGNALED;
  852. atomic_inc(&isert_conn->post_send_buf_count);
  853. ret = ib_post_send(isert_conn->conn_qp, &send_wr, &send_wr_failed);
  854. if (ret) {
  855. pr_err("ib_post_send() failed, ret: %d\n", ret);
  856. atomic_dec(&isert_conn->post_send_buf_count);
  857. }
  858. return ret;
  859. }
  860. static void
  861. isert_create_send_desc(struct isert_conn *isert_conn,
  862. struct isert_cmd *isert_cmd,
  863. struct iser_tx_desc *tx_desc)
  864. {
  865. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  866. ib_dma_sync_single_for_cpu(ib_dev, tx_desc->dma_addr,
  867. ISER_HEADERS_LEN, DMA_TO_DEVICE);
  868. memset(&tx_desc->iser_header, 0, sizeof(struct iser_hdr));
  869. tx_desc->iser_header.flags = ISER_VER;
  870. tx_desc->num_sge = 1;
  871. tx_desc->isert_cmd = isert_cmd;
  872. if (tx_desc->tx_sg[0].lkey != isert_conn->conn_mr->lkey) {
  873. tx_desc->tx_sg[0].lkey = isert_conn->conn_mr->lkey;
  874. pr_debug("tx_desc %p lkey mismatch, fixing\n", tx_desc);
  875. }
  876. }
  877. static int
  878. isert_init_tx_hdrs(struct isert_conn *isert_conn,
  879. struct iser_tx_desc *tx_desc)
  880. {
  881. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  882. u64 dma_addr;
  883. dma_addr = ib_dma_map_single(ib_dev, (void *)tx_desc,
  884. ISER_HEADERS_LEN, DMA_TO_DEVICE);
  885. if (ib_dma_mapping_error(ib_dev, dma_addr)) {
  886. pr_err("ib_dma_mapping_error() failed\n");
  887. return -ENOMEM;
  888. }
  889. tx_desc->dma_addr = dma_addr;
  890. tx_desc->tx_sg[0].addr = tx_desc->dma_addr;
  891. tx_desc->tx_sg[0].length = ISER_HEADERS_LEN;
  892. tx_desc->tx_sg[0].lkey = isert_conn->conn_mr->lkey;
  893. pr_debug("isert_init_tx_hdrs: Setup tx_sg[0].addr: 0x%llx length: %u"
  894. " lkey: 0x%08x\n", tx_desc->tx_sg[0].addr,
  895. tx_desc->tx_sg[0].length, tx_desc->tx_sg[0].lkey);
  896. return 0;
  897. }
  898. static void
  899. isert_init_send_wr(struct isert_conn *isert_conn, struct isert_cmd *isert_cmd,
  900. struct ib_send_wr *send_wr, bool coalesce)
  901. {
  902. struct iser_tx_desc *tx_desc = &isert_cmd->tx_desc;
  903. isert_cmd->rdma_wr.iser_ib_op = ISER_IB_SEND;
  904. send_wr->wr_id = (unsigned long)&isert_cmd->tx_desc;
  905. send_wr->opcode = IB_WR_SEND;
  906. send_wr->sg_list = &tx_desc->tx_sg[0];
  907. send_wr->num_sge = isert_cmd->tx_desc.num_sge;
  908. /*
  909. * Coalesce send completion interrupts by only setting IB_SEND_SIGNALED
  910. * bit for every ISERT_COMP_BATCH_COUNT number of ib_post_send() calls.
  911. */
  912. mutex_lock(&isert_conn->conn_mutex);
  913. if (coalesce && isert_conn->state == ISER_CONN_FULL_FEATURE &&
  914. ++isert_conn->conn_comp_batch < ISERT_COMP_BATCH_COUNT) {
  915. tx_desc->llnode_active = true;
  916. llist_add(&tx_desc->comp_llnode, &isert_conn->conn_comp_llist);
  917. mutex_unlock(&isert_conn->conn_mutex);
  918. return;
  919. }
  920. isert_conn->conn_comp_batch = 0;
  921. tx_desc->comp_llnode_batch = llist_del_all(&isert_conn->conn_comp_llist);
  922. mutex_unlock(&isert_conn->conn_mutex);
  923. send_wr->send_flags = IB_SEND_SIGNALED;
  924. }
  925. static int
  926. isert_rdma_post_recvl(struct isert_conn *isert_conn)
  927. {
  928. struct ib_recv_wr rx_wr, *rx_wr_fail;
  929. struct ib_sge sge;
  930. int ret;
  931. memset(&sge, 0, sizeof(struct ib_sge));
  932. sge.addr = isert_conn->login_req_dma;
  933. sge.length = ISER_RX_LOGIN_SIZE;
  934. sge.lkey = isert_conn->conn_mr->lkey;
  935. pr_debug("Setup sge: addr: %llx length: %d 0x%08x\n",
  936. sge.addr, sge.length, sge.lkey);
  937. memset(&rx_wr, 0, sizeof(struct ib_recv_wr));
  938. rx_wr.wr_id = (unsigned long)isert_conn->login_req_buf;
  939. rx_wr.sg_list = &sge;
  940. rx_wr.num_sge = 1;
  941. isert_conn->post_recv_buf_count++;
  942. ret = ib_post_recv(isert_conn->conn_qp, &rx_wr, &rx_wr_fail);
  943. if (ret) {
  944. pr_err("ib_post_recv() failed: %d\n", ret);
  945. isert_conn->post_recv_buf_count--;
  946. }
  947. pr_debug("ib_post_recv(): returned success >>>>>>>>>>>>>>>>>>>>>>>>\n");
  948. return ret;
  949. }
  950. static int
  951. isert_put_login_tx(struct iscsi_conn *conn, struct iscsi_login *login,
  952. u32 length)
  953. {
  954. struct isert_conn *isert_conn = conn->context;
  955. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  956. struct iser_tx_desc *tx_desc = &isert_conn->conn_login_tx_desc;
  957. int ret;
  958. isert_create_send_desc(isert_conn, NULL, tx_desc);
  959. memcpy(&tx_desc->iscsi_header, &login->rsp[0],
  960. sizeof(struct iscsi_hdr));
  961. isert_init_tx_hdrs(isert_conn, tx_desc);
  962. if (length > 0) {
  963. struct ib_sge *tx_dsg = &tx_desc->tx_sg[1];
  964. ib_dma_sync_single_for_cpu(ib_dev, isert_conn->login_rsp_dma,
  965. length, DMA_TO_DEVICE);
  966. memcpy(isert_conn->login_rsp_buf, login->rsp_buf, length);
  967. ib_dma_sync_single_for_device(ib_dev, isert_conn->login_rsp_dma,
  968. length, DMA_TO_DEVICE);
  969. tx_dsg->addr = isert_conn->login_rsp_dma;
  970. tx_dsg->length = length;
  971. tx_dsg->lkey = isert_conn->conn_mr->lkey;
  972. tx_desc->num_sge = 2;
  973. }
  974. if (!login->login_failed) {
  975. if (login->login_complete) {
  976. if (!conn->sess->sess_ops->SessionType &&
  977. isert_conn->conn_device->use_fastreg) {
  978. ret = isert_conn_create_fastreg_pool(isert_conn);
  979. if (ret) {
  980. pr_err("Conn: %p failed to create"
  981. " fastreg pool\n", isert_conn);
  982. return ret;
  983. }
  984. }
  985. ret = isert_alloc_rx_descriptors(isert_conn);
  986. if (ret)
  987. return ret;
  988. ret = isert_post_recv(isert_conn, ISERT_MIN_POSTED_RX);
  989. if (ret)
  990. return ret;
  991. /* Now we are in FULL_FEATURE phase */
  992. mutex_lock(&isert_conn->conn_mutex);
  993. isert_conn->state = ISER_CONN_FULL_FEATURE;
  994. mutex_unlock(&isert_conn->conn_mutex);
  995. goto post_send;
  996. }
  997. ret = isert_rdma_post_recvl(isert_conn);
  998. if (ret)
  999. return ret;
  1000. }
  1001. post_send:
  1002. ret = isert_post_send(isert_conn, tx_desc);
  1003. if (ret)
  1004. return ret;
  1005. return 0;
  1006. }
  1007. static void
  1008. isert_rx_login_req(struct isert_conn *isert_conn)
  1009. {
  1010. struct iser_rx_desc *rx_desc = (void *)isert_conn->login_req_buf;
  1011. int rx_buflen = isert_conn->login_req_len;
  1012. struct iscsi_conn *conn = isert_conn->conn;
  1013. struct iscsi_login *login = conn->conn_login;
  1014. int size;
  1015. pr_info("conn %p\n", isert_conn);
  1016. WARN_ON_ONCE(!login);
  1017. if (login->first_request) {
  1018. struct iscsi_login_req *login_req =
  1019. (struct iscsi_login_req *)&rx_desc->iscsi_header;
  1020. /*
  1021. * Setup the initial iscsi_login values from the leading
  1022. * login request PDU.
  1023. */
  1024. login->leading_connection = (!login_req->tsih) ? 1 : 0;
  1025. login->current_stage =
  1026. (login_req->flags & ISCSI_FLAG_LOGIN_CURRENT_STAGE_MASK)
  1027. >> 2;
  1028. login->version_min = login_req->min_version;
  1029. login->version_max = login_req->max_version;
  1030. memcpy(login->isid, login_req->isid, 6);
  1031. login->cmd_sn = be32_to_cpu(login_req->cmdsn);
  1032. login->init_task_tag = login_req->itt;
  1033. login->initial_exp_statsn = be32_to_cpu(login_req->exp_statsn);
  1034. login->cid = be16_to_cpu(login_req->cid);
  1035. login->tsih = be16_to_cpu(login_req->tsih);
  1036. }
  1037. memcpy(&login->req[0], (void *)&rx_desc->iscsi_header, ISCSI_HDR_LEN);
  1038. size = min(rx_buflen, MAX_KEY_VALUE_PAIRS);
  1039. pr_debug("Using login payload size: %d, rx_buflen: %d MAX_KEY_VALUE_PAIRS: %d\n",
  1040. size, rx_buflen, MAX_KEY_VALUE_PAIRS);
  1041. memcpy(login->req_buf, &rx_desc->data[0], size);
  1042. if (login->first_request) {
  1043. complete(&isert_conn->conn_login_comp);
  1044. return;
  1045. }
  1046. schedule_delayed_work(&conn->login_work, 0);
  1047. }
  1048. static struct iscsi_cmd
  1049. *isert_allocate_cmd(struct iscsi_conn *conn)
  1050. {
  1051. struct isert_conn *isert_conn = (struct isert_conn *)conn->context;
  1052. struct isert_cmd *isert_cmd;
  1053. struct iscsi_cmd *cmd;
  1054. cmd = iscsit_allocate_cmd(conn, TASK_INTERRUPTIBLE);
  1055. if (!cmd) {
  1056. pr_err("Unable to allocate iscsi_cmd + isert_cmd\n");
  1057. return NULL;
  1058. }
  1059. isert_cmd = iscsit_priv_cmd(cmd);
  1060. isert_cmd->conn = isert_conn;
  1061. isert_cmd->iscsi_cmd = cmd;
  1062. return cmd;
  1063. }
  1064. static int
  1065. isert_handle_scsi_cmd(struct isert_conn *isert_conn,
  1066. struct isert_cmd *isert_cmd, struct iscsi_cmd *cmd,
  1067. struct iser_rx_desc *rx_desc, unsigned char *buf)
  1068. {
  1069. struct iscsi_conn *conn = isert_conn->conn;
  1070. struct iscsi_scsi_req *hdr = (struct iscsi_scsi_req *)buf;
  1071. struct scatterlist *sg;
  1072. int imm_data, imm_data_len, unsol_data, sg_nents, rc;
  1073. bool dump_payload = false;
  1074. rc = iscsit_setup_scsi_cmd(conn, cmd, buf);
  1075. if (rc < 0)
  1076. return rc;
  1077. imm_data = cmd->immediate_data;
  1078. imm_data_len = cmd->first_burst_len;
  1079. unsol_data = cmd->unsolicited_data;
  1080. rc = iscsit_process_scsi_cmd(conn, cmd, hdr);
  1081. if (rc < 0) {
  1082. return 0;
  1083. } else if (rc > 0) {
  1084. dump_payload = true;
  1085. goto sequence_cmd;
  1086. }
  1087. if (!imm_data)
  1088. return 0;
  1089. sg = &cmd->se_cmd.t_data_sg[0];
  1090. sg_nents = max(1UL, DIV_ROUND_UP(imm_data_len, PAGE_SIZE));
  1091. pr_debug("Copying Immediate SG: %p sg_nents: %u from %p imm_data_len: %d\n",
  1092. sg, sg_nents, &rx_desc->data[0], imm_data_len);
  1093. sg_copy_from_buffer(sg, sg_nents, &rx_desc->data[0], imm_data_len);
  1094. cmd->write_data_done += imm_data_len;
  1095. if (cmd->write_data_done == cmd->se_cmd.data_length) {
  1096. spin_lock_bh(&cmd->istate_lock);
  1097. cmd->cmd_flags |= ICF_GOT_LAST_DATAOUT;
  1098. cmd->i_state = ISTATE_RECEIVED_LAST_DATAOUT;
  1099. spin_unlock_bh(&cmd->istate_lock);
  1100. }
  1101. sequence_cmd:
  1102. rc = iscsit_sequence_cmd(conn, cmd, buf, hdr->cmdsn);
  1103. if (!rc && dump_payload == false && unsol_data)
  1104. iscsit_set_unsoliticed_dataout(cmd);
  1105. else if (dump_payload && imm_data)
  1106. target_put_sess_cmd(conn->sess->se_sess, &cmd->se_cmd);
  1107. return 0;
  1108. }
  1109. static int
  1110. isert_handle_iscsi_dataout(struct isert_conn *isert_conn,
  1111. struct iser_rx_desc *rx_desc, unsigned char *buf)
  1112. {
  1113. struct scatterlist *sg_start;
  1114. struct iscsi_conn *conn = isert_conn->conn;
  1115. struct iscsi_cmd *cmd = NULL;
  1116. struct iscsi_data *hdr = (struct iscsi_data *)buf;
  1117. u32 unsol_data_len = ntoh24(hdr->dlength);
  1118. int rc, sg_nents, sg_off, page_off;
  1119. rc = iscsit_check_dataout_hdr(conn, buf, &cmd);
  1120. if (rc < 0)
  1121. return rc;
  1122. else if (!cmd)
  1123. return 0;
  1124. /*
  1125. * FIXME: Unexpected unsolicited_data out
  1126. */
  1127. if (!cmd->unsolicited_data) {
  1128. pr_err("Received unexpected solicited data payload\n");
  1129. dump_stack();
  1130. return -1;
  1131. }
  1132. pr_debug("Unsolicited DataOut unsol_data_len: %u, write_data_done: %u, data_length: %u\n",
  1133. unsol_data_len, cmd->write_data_done, cmd->se_cmd.data_length);
  1134. sg_off = cmd->write_data_done / PAGE_SIZE;
  1135. sg_start = &cmd->se_cmd.t_data_sg[sg_off];
  1136. sg_nents = max(1UL, DIV_ROUND_UP(unsol_data_len, PAGE_SIZE));
  1137. page_off = cmd->write_data_done % PAGE_SIZE;
  1138. /*
  1139. * FIXME: Non page-aligned unsolicited_data out
  1140. */
  1141. if (page_off) {
  1142. pr_err("Received unexpected non-page aligned data payload\n");
  1143. dump_stack();
  1144. return -1;
  1145. }
  1146. pr_debug("Copying DataOut: sg_start: %p, sg_off: %u sg_nents: %u from %p %u\n",
  1147. sg_start, sg_off, sg_nents, &rx_desc->data[0], unsol_data_len);
  1148. sg_copy_from_buffer(sg_start, sg_nents, &rx_desc->data[0],
  1149. unsol_data_len);
  1150. rc = iscsit_check_dataout_payload(cmd, hdr, false);
  1151. if (rc < 0)
  1152. return rc;
  1153. return 0;
  1154. }
  1155. static int
  1156. isert_handle_nop_out(struct isert_conn *isert_conn, struct isert_cmd *isert_cmd,
  1157. struct iscsi_cmd *cmd, struct iser_rx_desc *rx_desc,
  1158. unsigned char *buf)
  1159. {
  1160. struct iscsi_conn *conn = isert_conn->conn;
  1161. struct iscsi_nopout *hdr = (struct iscsi_nopout *)buf;
  1162. int rc;
  1163. rc = iscsit_setup_nop_out(conn, cmd, hdr);
  1164. if (rc < 0)
  1165. return rc;
  1166. /*
  1167. * FIXME: Add support for NOPOUT payload using unsolicited RDMA payload
  1168. */
  1169. return iscsit_process_nop_out(conn, cmd, hdr);
  1170. }
  1171. static int
  1172. isert_handle_text_cmd(struct isert_conn *isert_conn, struct isert_cmd *isert_cmd,
  1173. struct iscsi_cmd *cmd, struct iser_rx_desc *rx_desc,
  1174. struct iscsi_text *hdr)
  1175. {
  1176. struct iscsi_conn *conn = isert_conn->conn;
  1177. u32 payload_length = ntoh24(hdr->dlength);
  1178. int rc;
  1179. unsigned char *text_in;
  1180. rc = iscsit_setup_text_cmd(conn, cmd, hdr);
  1181. if (rc < 0)
  1182. return rc;
  1183. text_in = kzalloc(payload_length, GFP_KERNEL);
  1184. if (!text_in) {
  1185. pr_err("Unable to allocate text_in of payload_length: %u\n",
  1186. payload_length);
  1187. return -ENOMEM;
  1188. }
  1189. cmd->text_in_ptr = text_in;
  1190. memcpy(cmd->text_in_ptr, &rx_desc->data[0], payload_length);
  1191. return iscsit_process_text_cmd(conn, cmd, hdr);
  1192. }
  1193. static int
  1194. isert_rx_opcode(struct isert_conn *isert_conn, struct iser_rx_desc *rx_desc,
  1195. uint32_t read_stag, uint64_t read_va,
  1196. uint32_t write_stag, uint64_t write_va)
  1197. {
  1198. struct iscsi_hdr *hdr = &rx_desc->iscsi_header;
  1199. struct iscsi_conn *conn = isert_conn->conn;
  1200. struct iscsi_session *sess = conn->sess;
  1201. struct iscsi_cmd *cmd;
  1202. struct isert_cmd *isert_cmd;
  1203. int ret = -EINVAL;
  1204. u8 opcode = (hdr->opcode & ISCSI_OPCODE_MASK);
  1205. if (sess->sess_ops->SessionType &&
  1206. (!(opcode & ISCSI_OP_TEXT) || !(opcode & ISCSI_OP_LOGOUT))) {
  1207. pr_err("Got illegal opcode: 0x%02x in SessionType=Discovery,"
  1208. " ignoring\n", opcode);
  1209. return 0;
  1210. }
  1211. switch (opcode) {
  1212. case ISCSI_OP_SCSI_CMD:
  1213. cmd = isert_allocate_cmd(conn);
  1214. if (!cmd)
  1215. break;
  1216. isert_cmd = iscsit_priv_cmd(cmd);
  1217. isert_cmd->read_stag = read_stag;
  1218. isert_cmd->read_va = read_va;
  1219. isert_cmd->write_stag = write_stag;
  1220. isert_cmd->write_va = write_va;
  1221. ret = isert_handle_scsi_cmd(isert_conn, isert_cmd, cmd,
  1222. rx_desc, (unsigned char *)hdr);
  1223. break;
  1224. case ISCSI_OP_NOOP_OUT:
  1225. cmd = isert_allocate_cmd(conn);
  1226. if (!cmd)
  1227. break;
  1228. isert_cmd = iscsit_priv_cmd(cmd);
  1229. ret = isert_handle_nop_out(isert_conn, isert_cmd, cmd,
  1230. rx_desc, (unsigned char *)hdr);
  1231. break;
  1232. case ISCSI_OP_SCSI_DATA_OUT:
  1233. ret = isert_handle_iscsi_dataout(isert_conn, rx_desc,
  1234. (unsigned char *)hdr);
  1235. break;
  1236. case ISCSI_OP_SCSI_TMFUNC:
  1237. cmd = isert_allocate_cmd(conn);
  1238. if (!cmd)
  1239. break;
  1240. ret = iscsit_handle_task_mgt_cmd(conn, cmd,
  1241. (unsigned char *)hdr);
  1242. break;
  1243. case ISCSI_OP_LOGOUT:
  1244. cmd = isert_allocate_cmd(conn);
  1245. if (!cmd)
  1246. break;
  1247. ret = iscsit_handle_logout_cmd(conn, cmd, (unsigned char *)hdr);
  1248. if (ret > 0)
  1249. wait_for_completion_timeout(&conn->conn_logout_comp,
  1250. SECONDS_FOR_LOGOUT_COMP *
  1251. HZ);
  1252. break;
  1253. case ISCSI_OP_TEXT:
  1254. cmd = isert_allocate_cmd(conn);
  1255. if (!cmd)
  1256. break;
  1257. isert_cmd = iscsit_priv_cmd(cmd);
  1258. ret = isert_handle_text_cmd(isert_conn, isert_cmd, cmd,
  1259. rx_desc, (struct iscsi_text *)hdr);
  1260. break;
  1261. default:
  1262. pr_err("Got unknown iSCSI OpCode: 0x%02x\n", opcode);
  1263. dump_stack();
  1264. break;
  1265. }
  1266. return ret;
  1267. }
  1268. static void
  1269. isert_rx_do_work(struct iser_rx_desc *rx_desc, struct isert_conn *isert_conn)
  1270. {
  1271. struct iser_hdr *iser_hdr = &rx_desc->iser_header;
  1272. uint64_t read_va = 0, write_va = 0;
  1273. uint32_t read_stag = 0, write_stag = 0;
  1274. int rc;
  1275. switch (iser_hdr->flags & 0xF0) {
  1276. case ISCSI_CTRL:
  1277. if (iser_hdr->flags & ISER_RSV) {
  1278. read_stag = be32_to_cpu(iser_hdr->read_stag);
  1279. read_va = be64_to_cpu(iser_hdr->read_va);
  1280. pr_debug("ISER_RSV: read_stag: 0x%08x read_va: 0x%16llx\n",
  1281. read_stag, (unsigned long long)read_va);
  1282. }
  1283. if (iser_hdr->flags & ISER_WSV) {
  1284. write_stag = be32_to_cpu(iser_hdr->write_stag);
  1285. write_va = be64_to_cpu(iser_hdr->write_va);
  1286. pr_debug("ISER_WSV: write__stag: 0x%08x write_va: 0x%16llx\n",
  1287. write_stag, (unsigned long long)write_va);
  1288. }
  1289. pr_debug("ISER ISCSI_CTRL PDU\n");
  1290. break;
  1291. case ISER_HELLO:
  1292. pr_err("iSER Hello message\n");
  1293. break;
  1294. default:
  1295. pr_warn("Unknown iSER hdr flags: 0x%02x\n", iser_hdr->flags);
  1296. break;
  1297. }
  1298. rc = isert_rx_opcode(isert_conn, rx_desc,
  1299. read_stag, read_va, write_stag, write_va);
  1300. }
  1301. static void
  1302. isert_rx_completion(struct iser_rx_desc *desc, struct isert_conn *isert_conn,
  1303. unsigned long xfer_len)
  1304. {
  1305. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  1306. struct iscsi_hdr *hdr;
  1307. u64 rx_dma;
  1308. int rx_buflen, outstanding;
  1309. if ((char *)desc == isert_conn->login_req_buf) {
  1310. rx_dma = isert_conn->login_req_dma;
  1311. rx_buflen = ISER_RX_LOGIN_SIZE;
  1312. pr_debug("ISER login_buf: Using rx_dma: 0x%llx, rx_buflen: %d\n",
  1313. rx_dma, rx_buflen);
  1314. } else {
  1315. rx_dma = desc->dma_addr;
  1316. rx_buflen = ISER_RX_PAYLOAD_SIZE;
  1317. pr_debug("ISER req_buf: Using rx_dma: 0x%llx, rx_buflen: %d\n",
  1318. rx_dma, rx_buflen);
  1319. }
  1320. ib_dma_sync_single_for_cpu(ib_dev, rx_dma, rx_buflen, DMA_FROM_DEVICE);
  1321. hdr = &desc->iscsi_header;
  1322. pr_debug("iSCSI opcode: 0x%02x, ITT: 0x%08x, flags: 0x%02x dlen: %d\n",
  1323. hdr->opcode, hdr->itt, hdr->flags,
  1324. (int)(xfer_len - ISER_HEADERS_LEN));
  1325. if ((char *)desc == isert_conn->login_req_buf) {
  1326. isert_conn->login_req_len = xfer_len - ISER_HEADERS_LEN;
  1327. if (isert_conn->conn) {
  1328. struct iscsi_login *login = isert_conn->conn->conn_login;
  1329. if (login && !login->first_request)
  1330. isert_rx_login_req(isert_conn);
  1331. }
  1332. mutex_lock(&isert_conn->conn_mutex);
  1333. complete(&isert_conn->login_req_comp);
  1334. mutex_unlock(&isert_conn->conn_mutex);
  1335. } else {
  1336. isert_rx_do_work(desc, isert_conn);
  1337. }
  1338. ib_dma_sync_single_for_device(ib_dev, rx_dma, rx_buflen,
  1339. DMA_FROM_DEVICE);
  1340. isert_conn->post_recv_buf_count--;
  1341. pr_debug("iSERT: Decremented post_recv_buf_count: %d\n",
  1342. isert_conn->post_recv_buf_count);
  1343. if ((char *)desc == isert_conn->login_req_buf)
  1344. return;
  1345. outstanding = isert_conn->post_recv_buf_count;
  1346. if (outstanding + ISERT_MIN_POSTED_RX <= ISERT_QP_MAX_RECV_DTOS) {
  1347. int err, count = min(ISERT_QP_MAX_RECV_DTOS - outstanding,
  1348. ISERT_MIN_POSTED_RX);
  1349. err = isert_post_recv(isert_conn, count);
  1350. if (err) {
  1351. pr_err("isert_post_recv() count: %d failed, %d\n",
  1352. count, err);
  1353. }
  1354. }
  1355. }
  1356. static int
  1357. isert_map_data_buf(struct isert_conn *isert_conn, struct isert_cmd *isert_cmd,
  1358. struct scatterlist *sg, u32 nents, u32 length, u32 offset,
  1359. enum iser_ib_op_code op, struct isert_data_buf *data)
  1360. {
  1361. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  1362. data->dma_dir = op == ISER_IB_RDMA_WRITE ?
  1363. DMA_TO_DEVICE : DMA_FROM_DEVICE;
  1364. data->len = length - offset;
  1365. data->offset = offset;
  1366. data->sg_off = data->offset / PAGE_SIZE;
  1367. data->sg = &sg[data->sg_off];
  1368. data->nents = min_t(unsigned int, nents - data->sg_off,
  1369. ISCSI_ISER_SG_TABLESIZE);
  1370. data->len = min_t(unsigned int, data->len, ISCSI_ISER_SG_TABLESIZE *
  1371. PAGE_SIZE);
  1372. data->dma_nents = ib_dma_map_sg(ib_dev, data->sg, data->nents,
  1373. data->dma_dir);
  1374. if (unlikely(!data->dma_nents)) {
  1375. pr_err("Cmd: unable to dma map SGs %p\n", sg);
  1376. return -EINVAL;
  1377. }
  1378. pr_debug("Mapped cmd: %p count: %u sg: %p sg_nents: %u rdma_len %d\n",
  1379. isert_cmd, data->dma_nents, data->sg, data->nents, data->len);
  1380. return 0;
  1381. }
  1382. static void
  1383. isert_unmap_data_buf(struct isert_conn *isert_conn, struct isert_data_buf *data)
  1384. {
  1385. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  1386. ib_dma_unmap_sg(ib_dev, data->sg, data->nents, data->dma_dir);
  1387. memset(data, 0, sizeof(*data));
  1388. }
  1389. static void
  1390. isert_unmap_cmd(struct isert_cmd *isert_cmd, struct isert_conn *isert_conn)
  1391. {
  1392. struct isert_rdma_wr *wr = &isert_cmd->rdma_wr;
  1393. pr_debug("isert_unmap_cmd: %p\n", isert_cmd);
  1394. if (wr->data.sg) {
  1395. pr_debug("isert_unmap_cmd: %p unmap_sg op\n", isert_cmd);
  1396. isert_unmap_data_buf(isert_conn, &wr->data);
  1397. }
  1398. if (wr->send_wr) {
  1399. pr_debug("isert_unmap_cmd: %p free send_wr\n", isert_cmd);
  1400. kfree(wr->send_wr);
  1401. wr->send_wr = NULL;
  1402. }
  1403. if (wr->ib_sge) {
  1404. pr_debug("isert_unmap_cmd: %p free ib_sge\n", isert_cmd);
  1405. kfree(wr->ib_sge);
  1406. wr->ib_sge = NULL;
  1407. }
  1408. }
  1409. static void
  1410. isert_unreg_rdma(struct isert_cmd *isert_cmd, struct isert_conn *isert_conn)
  1411. {
  1412. struct isert_rdma_wr *wr = &isert_cmd->rdma_wr;
  1413. LIST_HEAD(unmap_list);
  1414. pr_debug("unreg_fastreg_cmd: %p\n", isert_cmd);
  1415. if (wr->fr_desc) {
  1416. pr_debug("unreg_fastreg_cmd: %p free fr_desc %p\n",
  1417. isert_cmd, wr->fr_desc);
  1418. if (wr->fr_desc->ind & ISERT_PROTECTED) {
  1419. isert_unmap_data_buf(isert_conn, &wr->prot);
  1420. wr->fr_desc->ind &= ~ISERT_PROTECTED;
  1421. }
  1422. spin_lock_bh(&isert_conn->conn_lock);
  1423. list_add_tail(&wr->fr_desc->list, &isert_conn->conn_fr_pool);
  1424. spin_unlock_bh(&isert_conn->conn_lock);
  1425. wr->fr_desc = NULL;
  1426. }
  1427. if (wr->data.sg) {
  1428. pr_debug("unreg_fastreg_cmd: %p unmap_sg op\n", isert_cmd);
  1429. isert_unmap_data_buf(isert_conn, &wr->data);
  1430. }
  1431. wr->ib_sge = NULL;
  1432. wr->send_wr = NULL;
  1433. }
  1434. static void
  1435. isert_put_cmd(struct isert_cmd *isert_cmd, bool comp_err)
  1436. {
  1437. struct iscsi_cmd *cmd = isert_cmd->iscsi_cmd;
  1438. struct isert_conn *isert_conn = isert_cmd->conn;
  1439. struct iscsi_conn *conn = isert_conn->conn;
  1440. struct isert_device *device = isert_conn->conn_device;
  1441. pr_debug("Entering isert_put_cmd: %p\n", isert_cmd);
  1442. switch (cmd->iscsi_opcode) {
  1443. case ISCSI_OP_SCSI_CMD:
  1444. spin_lock_bh(&conn->cmd_lock);
  1445. if (!list_empty(&cmd->i_conn_node))
  1446. list_del_init(&cmd->i_conn_node);
  1447. spin_unlock_bh(&conn->cmd_lock);
  1448. if (cmd->data_direction == DMA_TO_DEVICE) {
  1449. iscsit_stop_dataout_timer(cmd);
  1450. /*
  1451. * Check for special case during comp_err where
  1452. * WRITE_PENDING has been handed off from core,
  1453. * but requires an extra target_put_sess_cmd()
  1454. * before transport_generic_free_cmd() below.
  1455. */
  1456. if (comp_err &&
  1457. cmd->se_cmd.t_state == TRANSPORT_WRITE_PENDING) {
  1458. struct se_cmd *se_cmd = &cmd->se_cmd;
  1459. target_put_sess_cmd(se_cmd->se_sess, se_cmd);
  1460. }
  1461. }
  1462. device->unreg_rdma_mem(isert_cmd, isert_conn);
  1463. transport_generic_free_cmd(&cmd->se_cmd, 0);
  1464. break;
  1465. case ISCSI_OP_SCSI_TMFUNC:
  1466. spin_lock_bh(&conn->cmd_lock);
  1467. if (!list_empty(&cmd->i_conn_node))
  1468. list_del_init(&cmd->i_conn_node);
  1469. spin_unlock_bh(&conn->cmd_lock);
  1470. transport_generic_free_cmd(&cmd->se_cmd, 0);
  1471. break;
  1472. case ISCSI_OP_REJECT:
  1473. case ISCSI_OP_NOOP_OUT:
  1474. case ISCSI_OP_TEXT:
  1475. spin_lock_bh(&conn->cmd_lock);
  1476. if (!list_empty(&cmd->i_conn_node))
  1477. list_del_init(&cmd->i_conn_node);
  1478. spin_unlock_bh(&conn->cmd_lock);
  1479. /*
  1480. * Handle special case for REJECT when iscsi_add_reject*() has
  1481. * overwritten the original iscsi_opcode assignment, and the
  1482. * associated cmd->se_cmd needs to be released.
  1483. */
  1484. if (cmd->se_cmd.se_tfo != NULL) {
  1485. pr_debug("Calling transport_generic_free_cmd from"
  1486. " isert_put_cmd for 0x%02x\n",
  1487. cmd->iscsi_opcode);
  1488. transport_generic_free_cmd(&cmd->se_cmd, 0);
  1489. break;
  1490. }
  1491. /*
  1492. * Fall-through
  1493. */
  1494. default:
  1495. iscsit_release_cmd(cmd);
  1496. break;
  1497. }
  1498. }
  1499. static void
  1500. isert_unmap_tx_desc(struct iser_tx_desc *tx_desc, struct ib_device *ib_dev)
  1501. {
  1502. if (tx_desc->dma_addr != 0) {
  1503. pr_debug("Calling ib_dma_unmap_single for tx_desc->dma_addr\n");
  1504. ib_dma_unmap_single(ib_dev, tx_desc->dma_addr,
  1505. ISER_HEADERS_LEN, DMA_TO_DEVICE);
  1506. tx_desc->dma_addr = 0;
  1507. }
  1508. }
  1509. static void
  1510. isert_completion_put(struct iser_tx_desc *tx_desc, struct isert_cmd *isert_cmd,
  1511. struct ib_device *ib_dev, bool comp_err)
  1512. {
  1513. if (isert_cmd->pdu_buf_dma != 0) {
  1514. pr_debug("Calling ib_dma_unmap_single for isert_cmd->pdu_buf_dma\n");
  1515. ib_dma_unmap_single(ib_dev, isert_cmd->pdu_buf_dma,
  1516. isert_cmd->pdu_buf_len, DMA_TO_DEVICE);
  1517. isert_cmd->pdu_buf_dma = 0;
  1518. }
  1519. isert_unmap_tx_desc(tx_desc, ib_dev);
  1520. isert_put_cmd(isert_cmd, comp_err);
  1521. }
  1522. static int
  1523. isert_check_pi_status(struct se_cmd *se_cmd, struct ib_mr *sig_mr)
  1524. {
  1525. struct ib_mr_status mr_status;
  1526. int ret;
  1527. ret = ib_check_mr_status(sig_mr, IB_MR_CHECK_SIG_STATUS, &mr_status);
  1528. if (ret) {
  1529. pr_err("ib_check_mr_status failed, ret %d\n", ret);
  1530. goto fail_mr_status;
  1531. }
  1532. if (mr_status.fail_status & IB_MR_CHECK_SIG_STATUS) {
  1533. u64 sec_offset_err;
  1534. u32 block_size = se_cmd->se_dev->dev_attrib.block_size + 8;
  1535. switch (mr_status.sig_err.err_type) {
  1536. case IB_SIG_BAD_GUARD:
  1537. se_cmd->pi_err = TCM_LOGICAL_BLOCK_GUARD_CHECK_FAILED;
  1538. break;
  1539. case IB_SIG_BAD_REFTAG:
  1540. se_cmd->pi_err = TCM_LOGICAL_BLOCK_REF_TAG_CHECK_FAILED;
  1541. break;
  1542. case IB_SIG_BAD_APPTAG:
  1543. se_cmd->pi_err = TCM_LOGICAL_BLOCK_APP_TAG_CHECK_FAILED;
  1544. break;
  1545. }
  1546. sec_offset_err = mr_status.sig_err.sig_err_offset;
  1547. do_div(sec_offset_err, block_size);
  1548. se_cmd->bad_sector = sec_offset_err + se_cmd->t_task_lba;
  1549. pr_err("isert: PI error found type %d at sector 0x%llx "
  1550. "expected 0x%x vs actual 0x%x\n",
  1551. mr_status.sig_err.err_type,
  1552. (unsigned long long)se_cmd->bad_sector,
  1553. mr_status.sig_err.expected,
  1554. mr_status.sig_err.actual);
  1555. ret = 1;
  1556. }
  1557. fail_mr_status:
  1558. return ret;
  1559. }
  1560. static void
  1561. isert_completion_rdma_write(struct iser_tx_desc *tx_desc,
  1562. struct isert_cmd *isert_cmd)
  1563. {
  1564. struct isert_rdma_wr *wr = &isert_cmd->rdma_wr;
  1565. struct iscsi_cmd *cmd = isert_cmd->iscsi_cmd;
  1566. struct se_cmd *se_cmd = &cmd->se_cmd;
  1567. struct isert_conn *isert_conn = isert_cmd->conn;
  1568. struct isert_device *device = isert_conn->conn_device;
  1569. int ret = 0;
  1570. if (wr->fr_desc && wr->fr_desc->ind & ISERT_PROTECTED) {
  1571. ret = isert_check_pi_status(se_cmd,
  1572. wr->fr_desc->pi_ctx->sig_mr);
  1573. wr->fr_desc->ind &= ~ISERT_PROTECTED;
  1574. }
  1575. device->unreg_rdma_mem(isert_cmd, isert_conn);
  1576. wr->send_wr_num = 0;
  1577. if (ret)
  1578. transport_send_check_condition_and_sense(se_cmd,
  1579. se_cmd->pi_err, 0);
  1580. else
  1581. isert_put_response(isert_conn->conn, cmd);
  1582. }
  1583. static void
  1584. isert_completion_rdma_read(struct iser_tx_desc *tx_desc,
  1585. struct isert_cmd *isert_cmd)
  1586. {
  1587. struct isert_rdma_wr *wr = &isert_cmd->rdma_wr;
  1588. struct iscsi_cmd *cmd = isert_cmd->iscsi_cmd;
  1589. struct se_cmd *se_cmd = &cmd->se_cmd;
  1590. struct isert_conn *isert_conn = isert_cmd->conn;
  1591. struct isert_device *device = isert_conn->conn_device;
  1592. int ret = 0;
  1593. if (wr->fr_desc && wr->fr_desc->ind & ISERT_PROTECTED) {
  1594. ret = isert_check_pi_status(se_cmd,
  1595. wr->fr_desc->pi_ctx->sig_mr);
  1596. wr->fr_desc->ind &= ~ISERT_PROTECTED;
  1597. }
  1598. iscsit_stop_dataout_timer(cmd);
  1599. device->unreg_rdma_mem(isert_cmd, isert_conn);
  1600. cmd->write_data_done = wr->data.len;
  1601. wr->send_wr_num = 0;
  1602. pr_debug("Cmd: %p RDMA_READ comp calling execute_cmd\n", isert_cmd);
  1603. spin_lock_bh(&cmd->istate_lock);
  1604. cmd->cmd_flags |= ICF_GOT_LAST_DATAOUT;
  1605. cmd->i_state = ISTATE_RECEIVED_LAST_DATAOUT;
  1606. spin_unlock_bh(&cmd->istate_lock);
  1607. if (ret)
  1608. transport_send_check_condition_and_sense(se_cmd,
  1609. se_cmd->pi_err, 0);
  1610. else
  1611. target_execute_cmd(se_cmd);
  1612. }
  1613. static void
  1614. isert_do_control_comp(struct work_struct *work)
  1615. {
  1616. struct isert_cmd *isert_cmd = container_of(work,
  1617. struct isert_cmd, comp_work);
  1618. struct isert_conn *isert_conn = isert_cmd->conn;
  1619. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  1620. struct iscsi_cmd *cmd = isert_cmd->iscsi_cmd;
  1621. switch (cmd->i_state) {
  1622. case ISTATE_SEND_TASKMGTRSP:
  1623. pr_debug("Calling iscsit_tmr_post_handler >>>>>>>>>>>>>>>>>\n");
  1624. atomic_dec(&isert_conn->post_send_buf_count);
  1625. iscsit_tmr_post_handler(cmd, cmd->conn);
  1626. cmd->i_state = ISTATE_SENT_STATUS;
  1627. isert_completion_put(&isert_cmd->tx_desc, isert_cmd, ib_dev, false);
  1628. break;
  1629. case ISTATE_SEND_REJECT:
  1630. pr_debug("Got isert_do_control_comp ISTATE_SEND_REJECT: >>>\n");
  1631. atomic_dec(&isert_conn->post_send_buf_count);
  1632. cmd->i_state = ISTATE_SENT_STATUS;
  1633. isert_completion_put(&isert_cmd->tx_desc, isert_cmd, ib_dev, false);
  1634. break;
  1635. case ISTATE_SEND_LOGOUTRSP:
  1636. pr_debug("Calling iscsit_logout_post_handler >>>>>>>>>>>>>>\n");
  1637. atomic_dec(&isert_conn->post_send_buf_count);
  1638. iscsit_logout_post_handler(cmd, cmd->conn);
  1639. break;
  1640. case ISTATE_SEND_TEXTRSP:
  1641. atomic_dec(&isert_conn->post_send_buf_count);
  1642. cmd->i_state = ISTATE_SENT_STATUS;
  1643. isert_completion_put(&isert_cmd->tx_desc, isert_cmd, ib_dev, false);
  1644. break;
  1645. default:
  1646. pr_err("Unknown do_control_comp i_state %d\n", cmd->i_state);
  1647. dump_stack();
  1648. break;
  1649. }
  1650. }
  1651. static void
  1652. isert_response_completion(struct iser_tx_desc *tx_desc,
  1653. struct isert_cmd *isert_cmd,
  1654. struct isert_conn *isert_conn,
  1655. struct ib_device *ib_dev)
  1656. {
  1657. struct iscsi_cmd *cmd = isert_cmd->iscsi_cmd;
  1658. struct isert_rdma_wr *wr = &isert_cmd->rdma_wr;
  1659. if (cmd->i_state == ISTATE_SEND_TASKMGTRSP ||
  1660. cmd->i_state == ISTATE_SEND_LOGOUTRSP ||
  1661. cmd->i_state == ISTATE_SEND_REJECT ||
  1662. cmd->i_state == ISTATE_SEND_TEXTRSP) {
  1663. isert_unmap_tx_desc(tx_desc, ib_dev);
  1664. INIT_WORK(&isert_cmd->comp_work, isert_do_control_comp);
  1665. queue_work(isert_comp_wq, &isert_cmd->comp_work);
  1666. return;
  1667. }
  1668. /**
  1669. * If send_wr_num is 0 this means that we got
  1670. * RDMA completion and we cleared it and we should
  1671. * simply decrement the response post. else the
  1672. * response is incorporated in send_wr_num, just
  1673. * sub it.
  1674. **/
  1675. if (wr->send_wr_num)
  1676. atomic_sub(wr->send_wr_num, &isert_conn->post_send_buf_count);
  1677. else
  1678. atomic_dec(&isert_conn->post_send_buf_count);
  1679. cmd->i_state = ISTATE_SENT_STATUS;
  1680. isert_completion_put(tx_desc, isert_cmd, ib_dev, false);
  1681. }
  1682. static void
  1683. __isert_send_completion(struct iser_tx_desc *tx_desc,
  1684. struct isert_conn *isert_conn)
  1685. {
  1686. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  1687. struct isert_cmd *isert_cmd = tx_desc->isert_cmd;
  1688. struct isert_rdma_wr *wr;
  1689. if (!isert_cmd) {
  1690. atomic_dec(&isert_conn->post_send_buf_count);
  1691. isert_unmap_tx_desc(tx_desc, ib_dev);
  1692. return;
  1693. }
  1694. wr = &isert_cmd->rdma_wr;
  1695. switch (wr->iser_ib_op) {
  1696. case ISER_IB_RECV:
  1697. pr_err("isert_send_completion: Got ISER_IB_RECV\n");
  1698. dump_stack();
  1699. break;
  1700. case ISER_IB_SEND:
  1701. pr_debug("isert_send_completion: Got ISER_IB_SEND\n");
  1702. isert_response_completion(tx_desc, isert_cmd,
  1703. isert_conn, ib_dev);
  1704. break;
  1705. case ISER_IB_RDMA_WRITE:
  1706. pr_debug("isert_send_completion: Got ISER_IB_RDMA_WRITE\n");
  1707. atomic_sub(wr->send_wr_num, &isert_conn->post_send_buf_count);
  1708. isert_completion_rdma_write(tx_desc, isert_cmd);
  1709. break;
  1710. case ISER_IB_RDMA_READ:
  1711. pr_debug("isert_send_completion: Got ISER_IB_RDMA_READ:\n");
  1712. atomic_sub(wr->send_wr_num, &isert_conn->post_send_buf_count);
  1713. isert_completion_rdma_read(tx_desc, isert_cmd);
  1714. break;
  1715. default:
  1716. pr_err("Unknown wr->iser_ib_op: 0x%02x\n", wr->iser_ib_op);
  1717. dump_stack();
  1718. break;
  1719. }
  1720. }
  1721. static void
  1722. isert_send_completion(struct iser_tx_desc *tx_desc,
  1723. struct isert_conn *isert_conn)
  1724. {
  1725. struct llist_node *llnode = tx_desc->comp_llnode_batch;
  1726. struct iser_tx_desc *t;
  1727. /*
  1728. * Drain coalesced completion llist starting from comp_llnode_batch
  1729. * setup in isert_init_send_wr(), and then complete trailing tx_desc.
  1730. */
  1731. while (llnode) {
  1732. t = llist_entry(llnode, struct iser_tx_desc, comp_llnode);
  1733. llnode = llist_next(llnode);
  1734. __isert_send_completion(t, isert_conn);
  1735. }
  1736. __isert_send_completion(tx_desc, isert_conn);
  1737. }
  1738. static void
  1739. isert_cq_drain_comp_llist(struct isert_conn *isert_conn, struct ib_device *ib_dev)
  1740. {
  1741. struct llist_node *llnode;
  1742. struct isert_rdma_wr *wr;
  1743. struct iser_tx_desc *t;
  1744. mutex_lock(&isert_conn->conn_mutex);
  1745. llnode = llist_del_all(&isert_conn->conn_comp_llist);
  1746. isert_conn->conn_comp_batch = 0;
  1747. mutex_unlock(&isert_conn->conn_mutex);
  1748. while (llnode) {
  1749. t = llist_entry(llnode, struct iser_tx_desc, comp_llnode);
  1750. llnode = llist_next(llnode);
  1751. wr = &t->isert_cmd->rdma_wr;
  1752. /**
  1753. * If send_wr_num is 0 this means that we got
  1754. * RDMA completion and we cleared it and we should
  1755. * simply decrement the response post. else the
  1756. * response is incorporated in send_wr_num, just
  1757. * sub it.
  1758. **/
  1759. if (wr->send_wr_num)
  1760. atomic_sub(wr->send_wr_num,
  1761. &isert_conn->post_send_buf_count);
  1762. else
  1763. atomic_dec(&isert_conn->post_send_buf_count);
  1764. isert_completion_put(t, t->isert_cmd, ib_dev, true);
  1765. }
  1766. }
  1767. static void
  1768. isert_cq_tx_comp_err(struct iser_tx_desc *tx_desc, struct isert_conn *isert_conn)
  1769. {
  1770. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  1771. struct isert_cmd *isert_cmd = tx_desc->isert_cmd;
  1772. struct llist_node *llnode = tx_desc->comp_llnode_batch;
  1773. struct isert_rdma_wr *wr;
  1774. struct iser_tx_desc *t;
  1775. while (llnode) {
  1776. t = llist_entry(llnode, struct iser_tx_desc, comp_llnode);
  1777. llnode = llist_next(llnode);
  1778. wr = &t->isert_cmd->rdma_wr;
  1779. /**
  1780. * If send_wr_num is 0 this means that we got
  1781. * RDMA completion and we cleared it and we should
  1782. * simply decrement the response post. else the
  1783. * response is incorporated in send_wr_num, just
  1784. * sub it.
  1785. **/
  1786. if (wr->send_wr_num)
  1787. atomic_sub(wr->send_wr_num,
  1788. &isert_conn->post_send_buf_count);
  1789. else
  1790. atomic_dec(&isert_conn->post_send_buf_count);
  1791. isert_completion_put(t, t->isert_cmd, ib_dev, true);
  1792. }
  1793. tx_desc->comp_llnode_batch = NULL;
  1794. if (!isert_cmd)
  1795. isert_unmap_tx_desc(tx_desc, ib_dev);
  1796. else
  1797. isert_completion_put(tx_desc, isert_cmd, ib_dev, true);
  1798. }
  1799. static void
  1800. isert_cq_rx_comp_err(struct isert_conn *isert_conn)
  1801. {
  1802. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  1803. struct iscsi_conn *conn = isert_conn->conn;
  1804. if (isert_conn->post_recv_buf_count)
  1805. return;
  1806. isert_cq_drain_comp_llist(isert_conn, ib_dev);
  1807. if (conn->sess) {
  1808. target_sess_cmd_list_set_waiting(conn->sess->se_sess);
  1809. target_wait_for_sess_cmds(conn->sess->se_sess);
  1810. }
  1811. while (atomic_read(&isert_conn->post_send_buf_count))
  1812. msleep(3000);
  1813. mutex_lock(&isert_conn->conn_mutex);
  1814. isert_conn_terminate(isert_conn);
  1815. mutex_unlock(&isert_conn->conn_mutex);
  1816. iscsit_cause_connection_reinstatement(isert_conn->conn, 0);
  1817. complete(&isert_conn->conn_wait_comp_err);
  1818. }
  1819. static void
  1820. isert_cq_tx_work(struct work_struct *work)
  1821. {
  1822. struct isert_cq_desc *cq_desc = container_of(work,
  1823. struct isert_cq_desc, cq_tx_work);
  1824. struct isert_device *device = cq_desc->device;
  1825. int cq_index = cq_desc->cq_index;
  1826. struct ib_cq *tx_cq = device->dev_tx_cq[cq_index];
  1827. struct isert_conn *isert_conn;
  1828. struct iser_tx_desc *tx_desc;
  1829. struct ib_wc wc;
  1830. while (ib_poll_cq(tx_cq, 1, &wc) == 1) {
  1831. tx_desc = (struct iser_tx_desc *)(unsigned long)wc.wr_id;
  1832. isert_conn = wc.qp->qp_context;
  1833. if (wc.status == IB_WC_SUCCESS) {
  1834. isert_send_completion(tx_desc, isert_conn);
  1835. } else {
  1836. pr_debug("TX wc.status != IB_WC_SUCCESS >>>>>>>>>>>>>>\n");
  1837. pr_debug("TX wc.status: 0x%08x\n", wc.status);
  1838. pr_debug("TX wc.vendor_err: 0x%08x\n", wc.vendor_err);
  1839. if (wc.wr_id != ISER_FASTREG_LI_WRID) {
  1840. if (tx_desc->llnode_active)
  1841. continue;
  1842. atomic_dec(&isert_conn->post_send_buf_count);
  1843. isert_cq_tx_comp_err(tx_desc, isert_conn);
  1844. }
  1845. }
  1846. }
  1847. ib_req_notify_cq(tx_cq, IB_CQ_NEXT_COMP);
  1848. }
  1849. static void
  1850. isert_cq_tx_callback(struct ib_cq *cq, void *context)
  1851. {
  1852. struct isert_cq_desc *cq_desc = (struct isert_cq_desc *)context;
  1853. queue_work(isert_comp_wq, &cq_desc->cq_tx_work);
  1854. }
  1855. static void
  1856. isert_cq_rx_work(struct work_struct *work)
  1857. {
  1858. struct isert_cq_desc *cq_desc = container_of(work,
  1859. struct isert_cq_desc, cq_rx_work);
  1860. struct isert_device *device = cq_desc->device;
  1861. int cq_index = cq_desc->cq_index;
  1862. struct ib_cq *rx_cq = device->dev_rx_cq[cq_index];
  1863. struct isert_conn *isert_conn;
  1864. struct iser_rx_desc *rx_desc;
  1865. struct ib_wc wc;
  1866. unsigned long xfer_len;
  1867. while (ib_poll_cq(rx_cq, 1, &wc) == 1) {
  1868. rx_desc = (struct iser_rx_desc *)(unsigned long)wc.wr_id;
  1869. isert_conn = wc.qp->qp_context;
  1870. if (wc.status == IB_WC_SUCCESS) {
  1871. xfer_len = (unsigned long)wc.byte_len;
  1872. isert_rx_completion(rx_desc, isert_conn, xfer_len);
  1873. } else {
  1874. pr_debug("RX wc.status != IB_WC_SUCCESS >>>>>>>>>>>>>>\n");
  1875. if (wc.status != IB_WC_WR_FLUSH_ERR) {
  1876. pr_debug("RX wc.status: 0x%08x\n", wc.status);
  1877. pr_debug("RX wc.vendor_err: 0x%08x\n",
  1878. wc.vendor_err);
  1879. }
  1880. isert_conn->post_recv_buf_count--;
  1881. isert_cq_rx_comp_err(isert_conn);
  1882. }
  1883. }
  1884. ib_req_notify_cq(rx_cq, IB_CQ_NEXT_COMP);
  1885. }
  1886. static void
  1887. isert_cq_rx_callback(struct ib_cq *cq, void *context)
  1888. {
  1889. struct isert_cq_desc *cq_desc = (struct isert_cq_desc *)context;
  1890. queue_work(isert_rx_wq, &cq_desc->cq_rx_work);
  1891. }
  1892. static int
  1893. isert_post_response(struct isert_conn *isert_conn, struct isert_cmd *isert_cmd)
  1894. {
  1895. struct ib_send_wr *wr_failed;
  1896. int ret;
  1897. atomic_inc(&isert_conn->post_send_buf_count);
  1898. ret = ib_post_send(isert_conn->conn_qp, &isert_cmd->tx_desc.send_wr,
  1899. &wr_failed);
  1900. if (ret) {
  1901. pr_err("ib_post_send failed with %d\n", ret);
  1902. atomic_dec(&isert_conn->post_send_buf_count);
  1903. return ret;
  1904. }
  1905. return ret;
  1906. }
  1907. static int
  1908. isert_put_response(struct iscsi_conn *conn, struct iscsi_cmd *cmd)
  1909. {
  1910. struct isert_cmd *isert_cmd = iscsit_priv_cmd(cmd);
  1911. struct isert_conn *isert_conn = (struct isert_conn *)conn->context;
  1912. struct ib_send_wr *send_wr = &isert_cmd->tx_desc.send_wr;
  1913. struct iscsi_scsi_rsp *hdr = (struct iscsi_scsi_rsp *)
  1914. &isert_cmd->tx_desc.iscsi_header;
  1915. isert_create_send_desc(isert_conn, isert_cmd, &isert_cmd->tx_desc);
  1916. iscsit_build_rsp_pdu(cmd, conn, true, hdr);
  1917. isert_init_tx_hdrs(isert_conn, &isert_cmd->tx_desc);
  1918. /*
  1919. * Attach SENSE DATA payload to iSCSI Response PDU
  1920. */
  1921. if (cmd->se_cmd.sense_buffer &&
  1922. ((cmd->se_cmd.se_cmd_flags & SCF_TRANSPORT_TASK_SENSE) ||
  1923. (cmd->se_cmd.se_cmd_flags & SCF_EMULATED_TASK_SENSE))) {
  1924. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  1925. struct ib_sge *tx_dsg = &isert_cmd->tx_desc.tx_sg[1];
  1926. u32 padding, pdu_len;
  1927. put_unaligned_be16(cmd->se_cmd.scsi_sense_length,
  1928. cmd->sense_buffer);
  1929. cmd->se_cmd.scsi_sense_length += sizeof(__be16);
  1930. padding = -(cmd->se_cmd.scsi_sense_length) & 3;
  1931. hton24(hdr->dlength, (u32)cmd->se_cmd.scsi_sense_length);
  1932. pdu_len = cmd->se_cmd.scsi_sense_length + padding;
  1933. isert_cmd->pdu_buf_dma = ib_dma_map_single(ib_dev,
  1934. (void *)cmd->sense_buffer, pdu_len,
  1935. DMA_TO_DEVICE);
  1936. isert_cmd->pdu_buf_len = pdu_len;
  1937. tx_dsg->addr = isert_cmd->pdu_buf_dma;
  1938. tx_dsg->length = pdu_len;
  1939. tx_dsg->lkey = isert_conn->conn_mr->lkey;
  1940. isert_cmd->tx_desc.num_sge = 2;
  1941. }
  1942. isert_init_send_wr(isert_conn, isert_cmd, send_wr, false);
  1943. pr_debug("Posting SCSI Response IB_WR_SEND >>>>>>>>>>>>>>>>>>>>>>\n");
  1944. return isert_post_response(isert_conn, isert_cmd);
  1945. }
  1946. static void
  1947. isert_aborted_task(struct iscsi_conn *conn, struct iscsi_cmd *cmd)
  1948. {
  1949. struct isert_cmd *isert_cmd = iscsit_priv_cmd(cmd);
  1950. struct isert_conn *isert_conn = (struct isert_conn *)conn->context;
  1951. struct isert_device *device = isert_conn->conn_device;
  1952. spin_lock_bh(&conn->cmd_lock);
  1953. if (!list_empty(&cmd->i_conn_node))
  1954. list_del_init(&cmd->i_conn_node);
  1955. spin_unlock_bh(&conn->cmd_lock);
  1956. if (cmd->data_direction == DMA_TO_DEVICE)
  1957. iscsit_stop_dataout_timer(cmd);
  1958. device->unreg_rdma_mem(isert_cmd, isert_conn);
  1959. }
  1960. static enum target_prot_op
  1961. isert_get_sup_prot_ops(struct iscsi_conn *conn)
  1962. {
  1963. struct isert_conn *isert_conn = (struct isert_conn *)conn->context;
  1964. struct isert_device *device = isert_conn->conn_device;
  1965. if (device->pi_capable)
  1966. return TARGET_PROT_ALL;
  1967. return TARGET_PROT_NORMAL;
  1968. }
  1969. static int
  1970. isert_put_nopin(struct iscsi_cmd *cmd, struct iscsi_conn *conn,
  1971. bool nopout_response)
  1972. {
  1973. struct isert_cmd *isert_cmd = iscsit_priv_cmd(cmd);
  1974. struct isert_conn *isert_conn = (struct isert_conn *)conn->context;
  1975. struct ib_send_wr *send_wr = &isert_cmd->tx_desc.send_wr;
  1976. isert_create_send_desc(isert_conn, isert_cmd, &isert_cmd->tx_desc);
  1977. iscsit_build_nopin_rsp(cmd, conn, (struct iscsi_nopin *)
  1978. &isert_cmd->tx_desc.iscsi_header,
  1979. nopout_response);
  1980. isert_init_tx_hdrs(isert_conn, &isert_cmd->tx_desc);
  1981. isert_init_send_wr(isert_conn, isert_cmd, send_wr, false);
  1982. pr_debug("Posting NOPIN Response IB_WR_SEND >>>>>>>>>>>>>>>>>>>>>>\n");
  1983. return isert_post_response(isert_conn, isert_cmd);
  1984. }
  1985. static int
  1986. isert_put_logout_rsp(struct iscsi_cmd *cmd, struct iscsi_conn *conn)
  1987. {
  1988. struct isert_cmd *isert_cmd = iscsit_priv_cmd(cmd);
  1989. struct isert_conn *isert_conn = (struct isert_conn *)conn->context;
  1990. struct ib_send_wr *send_wr = &isert_cmd->tx_desc.send_wr;
  1991. isert_create_send_desc(isert_conn, isert_cmd, &isert_cmd->tx_desc);
  1992. iscsit_build_logout_rsp(cmd, conn, (struct iscsi_logout_rsp *)
  1993. &isert_cmd->tx_desc.iscsi_header);
  1994. isert_init_tx_hdrs(isert_conn, &isert_cmd->tx_desc);
  1995. isert_init_send_wr(isert_conn, isert_cmd, send_wr, false);
  1996. pr_debug("Posting Logout Response IB_WR_SEND >>>>>>>>>>>>>>>>>>>>>>\n");
  1997. return isert_post_response(isert_conn, isert_cmd);
  1998. }
  1999. static int
  2000. isert_put_tm_rsp(struct iscsi_cmd *cmd, struct iscsi_conn *conn)
  2001. {
  2002. struct isert_cmd *isert_cmd = iscsit_priv_cmd(cmd);
  2003. struct isert_conn *isert_conn = (struct isert_conn *)conn->context;
  2004. struct ib_send_wr *send_wr = &isert_cmd->tx_desc.send_wr;
  2005. isert_create_send_desc(isert_conn, isert_cmd, &isert_cmd->tx_desc);
  2006. iscsit_build_task_mgt_rsp(cmd, conn, (struct iscsi_tm_rsp *)
  2007. &isert_cmd->tx_desc.iscsi_header);
  2008. isert_init_tx_hdrs(isert_conn, &isert_cmd->tx_desc);
  2009. isert_init_send_wr(isert_conn, isert_cmd, send_wr, false);
  2010. pr_debug("Posting Task Management Response IB_WR_SEND >>>>>>>>>>>>>>>>>>>>>>\n");
  2011. return isert_post_response(isert_conn, isert_cmd);
  2012. }
  2013. static int
  2014. isert_put_reject(struct iscsi_cmd *cmd, struct iscsi_conn *conn)
  2015. {
  2016. struct isert_cmd *isert_cmd = iscsit_priv_cmd(cmd);
  2017. struct isert_conn *isert_conn = (struct isert_conn *)conn->context;
  2018. struct ib_send_wr *send_wr = &isert_cmd->tx_desc.send_wr;
  2019. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  2020. struct ib_sge *tx_dsg = &isert_cmd->tx_desc.tx_sg[1];
  2021. struct iscsi_reject *hdr =
  2022. (struct iscsi_reject *)&isert_cmd->tx_desc.iscsi_header;
  2023. isert_create_send_desc(isert_conn, isert_cmd, &isert_cmd->tx_desc);
  2024. iscsit_build_reject(cmd, conn, hdr);
  2025. isert_init_tx_hdrs(isert_conn, &isert_cmd->tx_desc);
  2026. hton24(hdr->dlength, ISCSI_HDR_LEN);
  2027. isert_cmd->pdu_buf_dma = ib_dma_map_single(ib_dev,
  2028. (void *)cmd->buf_ptr, ISCSI_HDR_LEN,
  2029. DMA_TO_DEVICE);
  2030. isert_cmd->pdu_buf_len = ISCSI_HDR_LEN;
  2031. tx_dsg->addr = isert_cmd->pdu_buf_dma;
  2032. tx_dsg->length = ISCSI_HDR_LEN;
  2033. tx_dsg->lkey = isert_conn->conn_mr->lkey;
  2034. isert_cmd->tx_desc.num_sge = 2;
  2035. isert_init_send_wr(isert_conn, isert_cmd, send_wr, false);
  2036. pr_debug("Posting Reject IB_WR_SEND >>>>>>>>>>>>>>>>>>>>>>\n");
  2037. return isert_post_response(isert_conn, isert_cmd);
  2038. }
  2039. static int
  2040. isert_put_text_rsp(struct iscsi_cmd *cmd, struct iscsi_conn *conn)
  2041. {
  2042. struct isert_cmd *isert_cmd = iscsit_priv_cmd(cmd);
  2043. struct isert_conn *isert_conn = (struct isert_conn *)conn->context;
  2044. struct ib_send_wr *send_wr = &isert_cmd->tx_desc.send_wr;
  2045. struct iscsi_text_rsp *hdr =
  2046. (struct iscsi_text_rsp *)&isert_cmd->tx_desc.iscsi_header;
  2047. u32 txt_rsp_len;
  2048. int rc;
  2049. isert_create_send_desc(isert_conn, isert_cmd, &isert_cmd->tx_desc);
  2050. rc = iscsit_build_text_rsp(cmd, conn, hdr, ISCSI_INFINIBAND);
  2051. if (rc < 0)
  2052. return rc;
  2053. txt_rsp_len = rc;
  2054. isert_init_tx_hdrs(isert_conn, &isert_cmd->tx_desc);
  2055. if (txt_rsp_len) {
  2056. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  2057. struct ib_sge *tx_dsg = &isert_cmd->tx_desc.tx_sg[1];
  2058. void *txt_rsp_buf = cmd->buf_ptr;
  2059. isert_cmd->pdu_buf_dma = ib_dma_map_single(ib_dev,
  2060. txt_rsp_buf, txt_rsp_len, DMA_TO_DEVICE);
  2061. isert_cmd->pdu_buf_len = txt_rsp_len;
  2062. tx_dsg->addr = isert_cmd->pdu_buf_dma;
  2063. tx_dsg->length = txt_rsp_len;
  2064. tx_dsg->lkey = isert_conn->conn_mr->lkey;
  2065. isert_cmd->tx_desc.num_sge = 2;
  2066. }
  2067. isert_init_send_wr(isert_conn, isert_cmd, send_wr, false);
  2068. pr_debug("Posting Text Response IB_WR_SEND >>>>>>>>>>>>>>>>>>>>>>\n");
  2069. return isert_post_response(isert_conn, isert_cmd);
  2070. }
  2071. static int
  2072. isert_build_rdma_wr(struct isert_conn *isert_conn, struct isert_cmd *isert_cmd,
  2073. struct ib_sge *ib_sge, struct ib_send_wr *send_wr,
  2074. u32 data_left, u32 offset)
  2075. {
  2076. struct iscsi_cmd *cmd = isert_cmd->iscsi_cmd;
  2077. struct scatterlist *sg_start, *tmp_sg;
  2078. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  2079. u32 sg_off, page_off;
  2080. int i = 0, sg_nents;
  2081. sg_off = offset / PAGE_SIZE;
  2082. sg_start = &cmd->se_cmd.t_data_sg[sg_off];
  2083. sg_nents = min(cmd->se_cmd.t_data_nents - sg_off, isert_conn->max_sge);
  2084. page_off = offset % PAGE_SIZE;
  2085. send_wr->sg_list = ib_sge;
  2086. send_wr->num_sge = sg_nents;
  2087. send_wr->wr_id = (unsigned long)&isert_cmd->tx_desc;
  2088. /*
  2089. * Perform mapping of TCM scatterlist memory ib_sge dma_addr.
  2090. */
  2091. for_each_sg(sg_start, tmp_sg, sg_nents, i) {
  2092. pr_debug("ISER RDMA from SGL dma_addr: 0x%16llx dma_len: %u, page_off: %u\n",
  2093. (unsigned long long)tmp_sg->dma_address,
  2094. tmp_sg->length, page_off);
  2095. ib_sge->addr = ib_sg_dma_address(ib_dev, tmp_sg) + page_off;
  2096. ib_sge->length = min_t(u32, data_left,
  2097. ib_sg_dma_len(ib_dev, tmp_sg) - page_off);
  2098. ib_sge->lkey = isert_conn->conn_mr->lkey;
  2099. pr_debug("RDMA ib_sge: addr: 0x%16llx length: %u lkey: %08x\n",
  2100. ib_sge->addr, ib_sge->length, ib_sge->lkey);
  2101. page_off = 0;
  2102. data_left -= ib_sge->length;
  2103. ib_sge++;
  2104. pr_debug("Incrementing ib_sge pointer to %p\n", ib_sge);
  2105. }
  2106. pr_debug("Set outgoing sg_list: %p num_sg: %u from TCM SGLs\n",
  2107. send_wr->sg_list, send_wr->num_sge);
  2108. return sg_nents;
  2109. }
  2110. static int
  2111. isert_map_rdma(struct iscsi_conn *conn, struct iscsi_cmd *cmd,
  2112. struct isert_rdma_wr *wr)
  2113. {
  2114. struct se_cmd *se_cmd = &cmd->se_cmd;
  2115. struct isert_cmd *isert_cmd = iscsit_priv_cmd(cmd);
  2116. struct isert_conn *isert_conn = (struct isert_conn *)conn->context;
  2117. struct isert_data_buf *data = &wr->data;
  2118. struct ib_send_wr *send_wr;
  2119. struct ib_sge *ib_sge;
  2120. u32 offset, data_len, data_left, rdma_write_max, va_offset = 0;
  2121. int ret = 0, i, ib_sge_cnt;
  2122. isert_cmd->tx_desc.isert_cmd = isert_cmd;
  2123. offset = wr->iser_ib_op == ISER_IB_RDMA_READ ? cmd->write_data_done : 0;
  2124. ret = isert_map_data_buf(isert_conn, isert_cmd, se_cmd->t_data_sg,
  2125. se_cmd->t_data_nents, se_cmd->data_length,
  2126. offset, wr->iser_ib_op, &wr->data);
  2127. if (ret)
  2128. return ret;
  2129. data_left = data->len;
  2130. offset = data->offset;
  2131. ib_sge = kzalloc(sizeof(struct ib_sge) * data->nents, GFP_KERNEL);
  2132. if (!ib_sge) {
  2133. pr_warn("Unable to allocate ib_sge\n");
  2134. ret = -ENOMEM;
  2135. goto unmap_cmd;
  2136. }
  2137. wr->ib_sge = ib_sge;
  2138. wr->send_wr_num = DIV_ROUND_UP(data->nents, isert_conn->max_sge);
  2139. wr->send_wr = kzalloc(sizeof(struct ib_send_wr) * wr->send_wr_num,
  2140. GFP_KERNEL);
  2141. if (!wr->send_wr) {
  2142. pr_debug("Unable to allocate wr->send_wr\n");
  2143. ret = -ENOMEM;
  2144. goto unmap_cmd;
  2145. }
  2146. wr->isert_cmd = isert_cmd;
  2147. rdma_write_max = isert_conn->max_sge * PAGE_SIZE;
  2148. for (i = 0; i < wr->send_wr_num; i++) {
  2149. send_wr = &isert_cmd->rdma_wr.send_wr[i];
  2150. data_len = min(data_left, rdma_write_max);
  2151. send_wr->send_flags = 0;
  2152. if (wr->iser_ib_op == ISER_IB_RDMA_WRITE) {
  2153. send_wr->opcode = IB_WR_RDMA_WRITE;
  2154. send_wr->wr.rdma.remote_addr = isert_cmd->read_va + offset;
  2155. send_wr->wr.rdma.rkey = isert_cmd->read_stag;
  2156. if (i + 1 == wr->send_wr_num)
  2157. send_wr->next = &isert_cmd->tx_desc.send_wr;
  2158. else
  2159. send_wr->next = &wr->send_wr[i + 1];
  2160. } else {
  2161. send_wr->opcode = IB_WR_RDMA_READ;
  2162. send_wr->wr.rdma.remote_addr = isert_cmd->write_va + va_offset;
  2163. send_wr->wr.rdma.rkey = isert_cmd->write_stag;
  2164. if (i + 1 == wr->send_wr_num)
  2165. send_wr->send_flags = IB_SEND_SIGNALED;
  2166. else
  2167. send_wr->next = &wr->send_wr[i + 1];
  2168. }
  2169. ib_sge_cnt = isert_build_rdma_wr(isert_conn, isert_cmd, ib_sge,
  2170. send_wr, data_len, offset);
  2171. ib_sge += ib_sge_cnt;
  2172. offset += data_len;
  2173. va_offset += data_len;
  2174. data_left -= data_len;
  2175. }
  2176. return 0;
  2177. unmap_cmd:
  2178. isert_unmap_data_buf(isert_conn, data);
  2179. return ret;
  2180. }
  2181. static int
  2182. isert_map_fr_pagelist(struct ib_device *ib_dev,
  2183. struct scatterlist *sg_start, int sg_nents, u64 *fr_pl)
  2184. {
  2185. u64 start_addr, end_addr, page, chunk_start = 0;
  2186. struct scatterlist *tmp_sg;
  2187. int i = 0, new_chunk, last_ent, n_pages;
  2188. n_pages = 0;
  2189. new_chunk = 1;
  2190. last_ent = sg_nents - 1;
  2191. for_each_sg(sg_start, tmp_sg, sg_nents, i) {
  2192. start_addr = ib_sg_dma_address(ib_dev, tmp_sg);
  2193. if (new_chunk)
  2194. chunk_start = start_addr;
  2195. end_addr = start_addr + ib_sg_dma_len(ib_dev, tmp_sg);
  2196. pr_debug("SGL[%d] dma_addr: 0x%16llx len: %u\n",
  2197. i, (unsigned long long)tmp_sg->dma_address,
  2198. tmp_sg->length);
  2199. if ((end_addr & ~PAGE_MASK) && i < last_ent) {
  2200. new_chunk = 0;
  2201. continue;
  2202. }
  2203. new_chunk = 1;
  2204. page = chunk_start & PAGE_MASK;
  2205. do {
  2206. fr_pl[n_pages++] = page;
  2207. pr_debug("Mapped page_list[%d] page_addr: 0x%16llx\n",
  2208. n_pages - 1, page);
  2209. page += PAGE_SIZE;
  2210. } while (page < end_addr);
  2211. }
  2212. return n_pages;
  2213. }
  2214. static int
  2215. isert_fast_reg_mr(struct isert_conn *isert_conn,
  2216. struct fast_reg_descriptor *fr_desc,
  2217. struct isert_data_buf *mem,
  2218. enum isert_indicator ind,
  2219. struct ib_sge *sge)
  2220. {
  2221. struct ib_device *ib_dev = isert_conn->conn_cm_id->device;
  2222. struct ib_mr *mr;
  2223. struct ib_fast_reg_page_list *frpl;
  2224. struct ib_send_wr fr_wr, inv_wr;
  2225. struct ib_send_wr *bad_wr, *wr = NULL;
  2226. int ret, pagelist_len;
  2227. u32 page_off;
  2228. u8 key;
  2229. if (mem->dma_nents == 1) {
  2230. sge->lkey = isert_conn->conn_mr->lkey;
  2231. sge->addr = ib_sg_dma_address(ib_dev, &mem->sg[0]);
  2232. sge->length = ib_sg_dma_len(ib_dev, &mem->sg[0]);
  2233. pr_debug("%s:%d sge: addr: 0x%llx length: %u lkey: %x\n",
  2234. __func__, __LINE__, sge->addr, sge->length,
  2235. sge->lkey);
  2236. return 0;
  2237. }
  2238. if (ind == ISERT_DATA_KEY_VALID) {
  2239. /* Registering data buffer */
  2240. mr = fr_desc->data_mr;
  2241. frpl = fr_desc->data_frpl;
  2242. } else {
  2243. /* Registering protection buffer */
  2244. mr = fr_desc->pi_ctx->prot_mr;
  2245. frpl = fr_desc->pi_ctx->prot_frpl;
  2246. }
  2247. page_off = mem->offset % PAGE_SIZE;
  2248. pr_debug("Use fr_desc %p sg_nents %d offset %u\n",
  2249. fr_desc, mem->nents, mem->offset);
  2250. pagelist_len = isert_map_fr_pagelist(ib_dev, mem->sg, mem->nents,
  2251. &frpl->page_list[0]);
  2252. if (!(fr_desc->ind & ISERT_DATA_KEY_VALID)) {
  2253. memset(&inv_wr, 0, sizeof(inv_wr));
  2254. inv_wr.wr_id = ISER_FASTREG_LI_WRID;
  2255. inv_wr.opcode = IB_WR_LOCAL_INV;
  2256. inv_wr.ex.invalidate_rkey = mr->rkey;
  2257. wr = &inv_wr;
  2258. /* Bump the key */
  2259. key = (u8)(mr->rkey & 0x000000FF);
  2260. ib_update_fast_reg_key(mr, ++key);
  2261. }
  2262. /* Prepare FASTREG WR */
  2263. memset(&fr_wr, 0, sizeof(fr_wr));
  2264. fr_wr.wr_id = ISER_FASTREG_LI_WRID;
  2265. fr_wr.opcode = IB_WR_FAST_REG_MR;
  2266. fr_wr.wr.fast_reg.iova_start = frpl->page_list[0] + page_off;
  2267. fr_wr.wr.fast_reg.page_list = frpl;
  2268. fr_wr.wr.fast_reg.page_list_len = pagelist_len;
  2269. fr_wr.wr.fast_reg.page_shift = PAGE_SHIFT;
  2270. fr_wr.wr.fast_reg.length = mem->len;
  2271. fr_wr.wr.fast_reg.rkey = mr->rkey;
  2272. fr_wr.wr.fast_reg.access_flags = IB_ACCESS_LOCAL_WRITE;
  2273. if (!wr)
  2274. wr = &fr_wr;
  2275. else
  2276. wr->next = &fr_wr;
  2277. ret = ib_post_send(isert_conn->conn_qp, wr, &bad_wr);
  2278. if (ret) {
  2279. pr_err("fast registration failed, ret:%d\n", ret);
  2280. return ret;
  2281. }
  2282. fr_desc->ind &= ~ind;
  2283. sge->lkey = mr->lkey;
  2284. sge->addr = frpl->page_list[0] + page_off;
  2285. sge->length = mem->len;
  2286. pr_debug("%s:%d sge: addr: 0x%llx length: %u lkey: %x\n",
  2287. __func__, __LINE__, sge->addr, sge->length,
  2288. sge->lkey);
  2289. return ret;
  2290. }
  2291. static inline void
  2292. isert_set_dif_domain(struct se_cmd *se_cmd, struct ib_sig_attrs *sig_attrs,
  2293. struct ib_sig_domain *domain)
  2294. {
  2295. domain->sig_type = IB_SIG_TYPE_T10_DIF;
  2296. domain->sig.dif.bg_type = IB_T10DIF_CRC;
  2297. domain->sig.dif.pi_interval = se_cmd->se_dev->dev_attrib.block_size;
  2298. domain->sig.dif.ref_tag = se_cmd->reftag_seed;
  2299. /*
  2300. * At the moment we hard code those, but if in the future
  2301. * the target core would like to use it, we will take it
  2302. * from se_cmd.
  2303. */
  2304. domain->sig.dif.apptag_check_mask = 0xffff;
  2305. domain->sig.dif.app_escape = true;
  2306. domain->sig.dif.ref_escape = true;
  2307. if (se_cmd->prot_type == TARGET_DIF_TYPE1_PROT ||
  2308. se_cmd->prot_type == TARGET_DIF_TYPE2_PROT)
  2309. domain->sig.dif.ref_remap = true;
  2310. };
  2311. static int
  2312. isert_set_sig_attrs(struct se_cmd *se_cmd, struct ib_sig_attrs *sig_attrs)
  2313. {
  2314. switch (se_cmd->prot_op) {
  2315. case TARGET_PROT_DIN_INSERT:
  2316. case TARGET_PROT_DOUT_STRIP:
  2317. sig_attrs->mem.sig_type = IB_SIG_TYPE_NONE;
  2318. isert_set_dif_domain(se_cmd, sig_attrs, &sig_attrs->wire);
  2319. break;
  2320. case TARGET_PROT_DOUT_INSERT:
  2321. case TARGET_PROT_DIN_STRIP:
  2322. sig_attrs->wire.sig_type = IB_SIG_TYPE_NONE;
  2323. isert_set_dif_domain(se_cmd, sig_attrs, &sig_attrs->mem);
  2324. break;
  2325. case TARGET_PROT_DIN_PASS:
  2326. case TARGET_PROT_DOUT_PASS:
  2327. isert_set_dif_domain(se_cmd, sig_attrs, &sig_attrs->wire);
  2328. isert_set_dif_domain(se_cmd, sig_attrs, &sig_attrs->mem);
  2329. break;
  2330. default:
  2331. pr_err("Unsupported PI operation %d\n", se_cmd->prot_op);
  2332. return -EINVAL;
  2333. }
  2334. return 0;
  2335. }
  2336. static inline u8
  2337. isert_set_prot_checks(u8 prot_checks)
  2338. {
  2339. return (prot_checks & TARGET_DIF_CHECK_GUARD ? 0xc0 : 0) |
  2340. (prot_checks & TARGET_DIF_CHECK_REFTAG ? 0x30 : 0) |
  2341. (prot_checks & TARGET_DIF_CHECK_REFTAG ? 0x0f : 0);
  2342. }
  2343. static int
  2344. isert_reg_sig_mr(struct isert_conn *isert_conn,
  2345. struct se_cmd *se_cmd,
  2346. struct isert_rdma_wr *rdma_wr,
  2347. struct fast_reg_descriptor *fr_desc)
  2348. {
  2349. struct ib_send_wr sig_wr, inv_wr;
  2350. struct ib_send_wr *bad_wr, *wr = NULL;
  2351. struct pi_context *pi_ctx = fr_desc->pi_ctx;
  2352. struct ib_sig_attrs sig_attrs;
  2353. int ret;
  2354. u32 key;
  2355. memset(&sig_attrs, 0, sizeof(sig_attrs));
  2356. ret = isert_set_sig_attrs(se_cmd, &sig_attrs);
  2357. if (ret)
  2358. goto err;
  2359. sig_attrs.check_mask = isert_set_prot_checks(se_cmd->prot_checks);
  2360. if (!(fr_desc->ind & ISERT_SIG_KEY_VALID)) {
  2361. memset(&inv_wr, 0, sizeof(inv_wr));
  2362. inv_wr.opcode = IB_WR_LOCAL_INV;
  2363. inv_wr.wr_id = ISER_FASTREG_LI_WRID;
  2364. inv_wr.ex.invalidate_rkey = pi_ctx->sig_mr->rkey;
  2365. wr = &inv_wr;
  2366. /* Bump the key */
  2367. key = (u8)(pi_ctx->sig_mr->rkey & 0x000000FF);
  2368. ib_update_fast_reg_key(pi_ctx->sig_mr, ++key);
  2369. }
  2370. memset(&sig_wr, 0, sizeof(sig_wr));
  2371. sig_wr.opcode = IB_WR_REG_SIG_MR;
  2372. sig_wr.wr_id = ISER_FASTREG_LI_WRID;
  2373. sig_wr.sg_list = &rdma_wr->ib_sg[DATA];
  2374. sig_wr.num_sge = 1;
  2375. sig_wr.wr.sig_handover.access_flags = IB_ACCESS_LOCAL_WRITE;
  2376. sig_wr.wr.sig_handover.sig_attrs = &sig_attrs;
  2377. sig_wr.wr.sig_handover.sig_mr = pi_ctx->sig_mr;
  2378. if (se_cmd->t_prot_sg)
  2379. sig_wr.wr.sig_handover.prot = &rdma_wr->ib_sg[PROT];
  2380. if (!wr)
  2381. wr = &sig_wr;
  2382. else
  2383. wr->next = &sig_wr;
  2384. ret = ib_post_send(isert_conn->conn_qp, wr, &bad_wr);
  2385. if (ret) {
  2386. pr_err("fast registration failed, ret:%d\n", ret);
  2387. goto err;
  2388. }
  2389. fr_desc->ind &= ~ISERT_SIG_KEY_VALID;
  2390. rdma_wr->ib_sg[SIG].lkey = pi_ctx->sig_mr->lkey;
  2391. rdma_wr->ib_sg[SIG].addr = 0;
  2392. rdma_wr->ib_sg[SIG].length = se_cmd->data_length;
  2393. if (se_cmd->prot_op != TARGET_PROT_DIN_STRIP &&
  2394. se_cmd->prot_op != TARGET_PROT_DOUT_INSERT)
  2395. /*
  2396. * We have protection guards on the wire
  2397. * so we need to set a larget transfer
  2398. */
  2399. rdma_wr->ib_sg[SIG].length += se_cmd->prot_length;
  2400. pr_debug("sig_sge: addr: 0x%llx length: %u lkey: %x\n",
  2401. rdma_wr->ib_sg[SIG].addr, rdma_wr->ib_sg[SIG].length,
  2402. rdma_wr->ib_sg[SIG].lkey);
  2403. err:
  2404. return ret;
  2405. }
  2406. static int
  2407. isert_handle_prot_cmd(struct isert_conn *isert_conn,
  2408. struct isert_cmd *isert_cmd,
  2409. struct isert_rdma_wr *wr)
  2410. {
  2411. struct isert_device *device = isert_conn->conn_device;
  2412. struct se_cmd *se_cmd = &isert_cmd->iscsi_cmd->se_cmd;
  2413. int ret;
  2414. if (!wr->fr_desc->pi_ctx) {
  2415. ret = isert_create_pi_ctx(wr->fr_desc,
  2416. device->ib_device,
  2417. isert_conn->conn_pd);
  2418. if (ret) {
  2419. pr_err("conn %p failed to allocate pi_ctx\n",
  2420. isert_conn);
  2421. return ret;
  2422. }
  2423. }
  2424. if (se_cmd->t_prot_sg) {
  2425. ret = isert_map_data_buf(isert_conn, isert_cmd,
  2426. se_cmd->t_prot_sg,
  2427. se_cmd->t_prot_nents,
  2428. se_cmd->prot_length,
  2429. 0, wr->iser_ib_op, &wr->prot);
  2430. if (ret) {
  2431. pr_err("conn %p failed to map protection buffer\n",
  2432. isert_conn);
  2433. return ret;
  2434. }
  2435. memset(&wr->ib_sg[PROT], 0, sizeof(wr->ib_sg[PROT]));
  2436. ret = isert_fast_reg_mr(isert_conn, wr->fr_desc, &wr->prot,
  2437. ISERT_PROT_KEY_VALID, &wr->ib_sg[PROT]);
  2438. if (ret) {
  2439. pr_err("conn %p failed to fast reg mr\n",
  2440. isert_conn);
  2441. goto unmap_prot_cmd;
  2442. }
  2443. }
  2444. ret = isert_reg_sig_mr(isert_conn, se_cmd, wr, wr->fr_desc);
  2445. if (ret) {
  2446. pr_err("conn %p failed to fast reg mr\n",
  2447. isert_conn);
  2448. goto unmap_prot_cmd;
  2449. }
  2450. wr->fr_desc->ind |= ISERT_PROTECTED;
  2451. return 0;
  2452. unmap_prot_cmd:
  2453. if (se_cmd->t_prot_sg)
  2454. isert_unmap_data_buf(isert_conn, &wr->prot);
  2455. return ret;
  2456. }
  2457. static int
  2458. isert_reg_rdma(struct iscsi_conn *conn, struct iscsi_cmd *cmd,
  2459. struct isert_rdma_wr *wr)
  2460. {
  2461. struct se_cmd *se_cmd = &cmd->se_cmd;
  2462. struct isert_cmd *isert_cmd = iscsit_priv_cmd(cmd);
  2463. struct isert_conn *isert_conn = conn->context;
  2464. struct fast_reg_descriptor *fr_desc = NULL;
  2465. struct ib_send_wr *send_wr;
  2466. struct ib_sge *ib_sg;
  2467. u32 offset;
  2468. int ret = 0;
  2469. unsigned long flags;
  2470. isert_cmd->tx_desc.isert_cmd = isert_cmd;
  2471. offset = wr->iser_ib_op == ISER_IB_RDMA_READ ? cmd->write_data_done : 0;
  2472. ret = isert_map_data_buf(isert_conn, isert_cmd, se_cmd->t_data_sg,
  2473. se_cmd->t_data_nents, se_cmd->data_length,
  2474. offset, wr->iser_ib_op, &wr->data);
  2475. if (ret)
  2476. return ret;
  2477. if (wr->data.dma_nents != 1 || isert_prot_cmd(isert_conn, se_cmd)) {
  2478. spin_lock_irqsave(&isert_conn->conn_lock, flags);
  2479. fr_desc = list_first_entry(&isert_conn->conn_fr_pool,
  2480. struct fast_reg_descriptor, list);
  2481. list_del(&fr_desc->list);
  2482. spin_unlock_irqrestore(&isert_conn->conn_lock, flags);
  2483. wr->fr_desc = fr_desc;
  2484. }
  2485. ret = isert_fast_reg_mr(isert_conn, fr_desc, &wr->data,
  2486. ISERT_DATA_KEY_VALID, &wr->ib_sg[DATA]);
  2487. if (ret)
  2488. goto unmap_cmd;
  2489. if (isert_prot_cmd(isert_conn, se_cmd)) {
  2490. ret = isert_handle_prot_cmd(isert_conn, isert_cmd, wr);
  2491. if (ret)
  2492. goto unmap_cmd;
  2493. ib_sg = &wr->ib_sg[SIG];
  2494. } else {
  2495. ib_sg = &wr->ib_sg[DATA];
  2496. }
  2497. memcpy(&wr->s_ib_sge, ib_sg, sizeof(*ib_sg));
  2498. wr->ib_sge = &wr->s_ib_sge;
  2499. wr->send_wr_num = 1;
  2500. memset(&wr->s_send_wr, 0, sizeof(*send_wr));
  2501. wr->send_wr = &wr->s_send_wr;
  2502. wr->isert_cmd = isert_cmd;
  2503. send_wr = &isert_cmd->rdma_wr.s_send_wr;
  2504. send_wr->sg_list = &wr->s_ib_sge;
  2505. send_wr->num_sge = 1;
  2506. send_wr->wr_id = (unsigned long)&isert_cmd->tx_desc;
  2507. if (wr->iser_ib_op == ISER_IB_RDMA_WRITE) {
  2508. send_wr->opcode = IB_WR_RDMA_WRITE;
  2509. send_wr->wr.rdma.remote_addr = isert_cmd->read_va;
  2510. send_wr->wr.rdma.rkey = isert_cmd->read_stag;
  2511. send_wr->send_flags = !isert_prot_cmd(isert_conn, se_cmd) ?
  2512. 0 : IB_SEND_SIGNALED;
  2513. } else {
  2514. send_wr->opcode = IB_WR_RDMA_READ;
  2515. send_wr->wr.rdma.remote_addr = isert_cmd->write_va;
  2516. send_wr->wr.rdma.rkey = isert_cmd->write_stag;
  2517. send_wr->send_flags = IB_SEND_SIGNALED;
  2518. }
  2519. return 0;
  2520. unmap_cmd:
  2521. if (fr_desc) {
  2522. spin_lock_irqsave(&isert_conn->conn_lock, flags);
  2523. list_add_tail(&fr_desc->list, &isert_conn->conn_fr_pool);
  2524. spin_unlock_irqrestore(&isert_conn->conn_lock, flags);
  2525. }
  2526. isert_unmap_data_buf(isert_conn, &wr->data);
  2527. return ret;
  2528. }
  2529. static int
  2530. isert_put_datain(struct iscsi_conn *conn, struct iscsi_cmd *cmd)
  2531. {
  2532. struct se_cmd *se_cmd = &cmd->se_cmd;
  2533. struct isert_cmd *isert_cmd = iscsit_priv_cmd(cmd);
  2534. struct isert_rdma_wr *wr = &isert_cmd->rdma_wr;
  2535. struct isert_conn *isert_conn = (struct isert_conn *)conn->context;
  2536. struct isert_device *device = isert_conn->conn_device;
  2537. struct ib_send_wr *wr_failed;
  2538. int rc;
  2539. pr_debug("Cmd: %p RDMA_WRITE data_length: %u\n",
  2540. isert_cmd, se_cmd->data_length);
  2541. wr->iser_ib_op = ISER_IB_RDMA_WRITE;
  2542. rc = device->reg_rdma_mem(conn, cmd, wr);
  2543. if (rc) {
  2544. pr_err("Cmd: %p failed to prepare RDMA res\n", isert_cmd);
  2545. return rc;
  2546. }
  2547. if (!isert_prot_cmd(isert_conn, se_cmd)) {
  2548. /*
  2549. * Build isert_conn->tx_desc for iSCSI response PDU and attach
  2550. */
  2551. isert_create_send_desc(isert_conn, isert_cmd,
  2552. &isert_cmd->tx_desc);
  2553. iscsit_build_rsp_pdu(cmd, conn, true, (struct iscsi_scsi_rsp *)
  2554. &isert_cmd->tx_desc.iscsi_header);
  2555. isert_init_tx_hdrs(isert_conn, &isert_cmd->tx_desc);
  2556. isert_init_send_wr(isert_conn, isert_cmd,
  2557. &isert_cmd->tx_desc.send_wr, false);
  2558. isert_cmd->rdma_wr.s_send_wr.next = &isert_cmd->tx_desc.send_wr;
  2559. wr->send_wr_num += 1;
  2560. }
  2561. atomic_add(wr->send_wr_num, &isert_conn->post_send_buf_count);
  2562. rc = ib_post_send(isert_conn->conn_qp, wr->send_wr, &wr_failed);
  2563. if (rc) {
  2564. pr_warn("ib_post_send() failed for IB_WR_RDMA_WRITE\n");
  2565. atomic_sub(wr->send_wr_num, &isert_conn->post_send_buf_count);
  2566. }
  2567. if (!isert_prot_cmd(isert_conn, se_cmd))
  2568. pr_debug("Cmd: %p posted RDMA_WRITE + Response for iSER Data "
  2569. "READ\n", isert_cmd);
  2570. else
  2571. pr_debug("Cmd: %p posted RDMA_WRITE for iSER Data READ\n",
  2572. isert_cmd);
  2573. return 1;
  2574. }
  2575. static int
  2576. isert_get_dataout(struct iscsi_conn *conn, struct iscsi_cmd *cmd, bool recovery)
  2577. {
  2578. struct se_cmd *se_cmd = &cmd->se_cmd;
  2579. struct isert_cmd *isert_cmd = iscsit_priv_cmd(cmd);
  2580. struct isert_rdma_wr *wr = &isert_cmd->rdma_wr;
  2581. struct isert_conn *isert_conn = (struct isert_conn *)conn->context;
  2582. struct isert_device *device = isert_conn->conn_device;
  2583. struct ib_send_wr *wr_failed;
  2584. int rc;
  2585. pr_debug("Cmd: %p RDMA_READ data_length: %u write_data_done: %u\n",
  2586. isert_cmd, se_cmd->data_length, cmd->write_data_done);
  2587. wr->iser_ib_op = ISER_IB_RDMA_READ;
  2588. rc = device->reg_rdma_mem(conn, cmd, wr);
  2589. if (rc) {
  2590. pr_err("Cmd: %p failed to prepare RDMA res\n", isert_cmd);
  2591. return rc;
  2592. }
  2593. atomic_add(wr->send_wr_num, &isert_conn->post_send_buf_count);
  2594. rc = ib_post_send(isert_conn->conn_qp, wr->send_wr, &wr_failed);
  2595. if (rc) {
  2596. pr_warn("ib_post_send() failed for IB_WR_RDMA_READ\n");
  2597. atomic_sub(wr->send_wr_num, &isert_conn->post_send_buf_count);
  2598. }
  2599. pr_debug("Cmd: %p posted RDMA_READ memory for ISER Data WRITE\n",
  2600. isert_cmd);
  2601. return 0;
  2602. }
  2603. static int
  2604. isert_immediate_queue(struct iscsi_conn *conn, struct iscsi_cmd *cmd, int state)
  2605. {
  2606. int ret;
  2607. switch (state) {
  2608. case ISTATE_SEND_NOPIN_WANT_RESPONSE:
  2609. ret = isert_put_nopin(cmd, conn, false);
  2610. break;
  2611. default:
  2612. pr_err("Unknown immediate state: 0x%02x\n", state);
  2613. ret = -EINVAL;
  2614. break;
  2615. }
  2616. return ret;
  2617. }
  2618. static int
  2619. isert_response_queue(struct iscsi_conn *conn, struct iscsi_cmd *cmd, int state)
  2620. {
  2621. int ret;
  2622. switch (state) {
  2623. case ISTATE_SEND_LOGOUTRSP:
  2624. ret = isert_put_logout_rsp(cmd, conn);
  2625. if (!ret) {
  2626. pr_debug("Returning iSER Logout -EAGAIN\n");
  2627. ret = -EAGAIN;
  2628. }
  2629. break;
  2630. case ISTATE_SEND_NOPIN:
  2631. ret = isert_put_nopin(cmd, conn, true);
  2632. break;
  2633. case ISTATE_SEND_TASKMGTRSP:
  2634. ret = isert_put_tm_rsp(cmd, conn);
  2635. break;
  2636. case ISTATE_SEND_REJECT:
  2637. ret = isert_put_reject(cmd, conn);
  2638. break;
  2639. case ISTATE_SEND_TEXTRSP:
  2640. ret = isert_put_text_rsp(cmd, conn);
  2641. break;
  2642. case ISTATE_SEND_STATUS:
  2643. /*
  2644. * Special case for sending non GOOD SCSI status from TX thread
  2645. * context during pre se_cmd excecution failure.
  2646. */
  2647. ret = isert_put_response(conn, cmd);
  2648. break;
  2649. default:
  2650. pr_err("Unknown response state: 0x%02x\n", state);
  2651. ret = -EINVAL;
  2652. break;
  2653. }
  2654. return ret;
  2655. }
  2656. struct rdma_cm_id *
  2657. isert_setup_id(struct isert_np *isert_np)
  2658. {
  2659. struct iscsi_np *np = isert_np->np;
  2660. struct rdma_cm_id *id;
  2661. struct sockaddr *sa;
  2662. int ret;
  2663. sa = (struct sockaddr *)&np->np_sockaddr;
  2664. pr_debug("ksockaddr: %p, sa: %p\n", &np->np_sockaddr, sa);
  2665. id = rdma_create_id(isert_cma_handler, isert_np,
  2666. RDMA_PS_TCP, IB_QPT_RC);
  2667. if (IS_ERR(id)) {
  2668. pr_err("rdma_create_id() failed: %ld\n", PTR_ERR(id));
  2669. ret = PTR_ERR(id);
  2670. goto out;
  2671. }
  2672. pr_debug("id %p context %p\n", id, id->context);
  2673. ret = rdma_bind_addr(id, sa);
  2674. if (ret) {
  2675. pr_err("rdma_bind_addr() failed: %d\n", ret);
  2676. goto out_id;
  2677. }
  2678. ret = rdma_listen(id, ISERT_RDMA_LISTEN_BACKLOG);
  2679. if (ret) {
  2680. pr_err("rdma_listen() failed: %d\n", ret);
  2681. goto out_id;
  2682. }
  2683. return id;
  2684. out_id:
  2685. rdma_destroy_id(id);
  2686. out:
  2687. return ERR_PTR(ret);
  2688. }
  2689. static int
  2690. isert_setup_np(struct iscsi_np *np,
  2691. struct __kernel_sockaddr_storage *ksockaddr)
  2692. {
  2693. struct isert_np *isert_np;
  2694. struct rdma_cm_id *isert_lid;
  2695. int ret;
  2696. isert_np = kzalloc(sizeof(struct isert_np), GFP_KERNEL);
  2697. if (!isert_np) {
  2698. pr_err("Unable to allocate struct isert_np\n");
  2699. return -ENOMEM;
  2700. }
  2701. sema_init(&isert_np->np_sem, 0);
  2702. mutex_init(&isert_np->np_accept_mutex);
  2703. INIT_LIST_HEAD(&isert_np->np_accept_list);
  2704. init_completion(&isert_np->np_login_comp);
  2705. isert_np->np = np;
  2706. /*
  2707. * Setup the np->np_sockaddr from the passed sockaddr setup
  2708. * in iscsi_target_configfs.c code..
  2709. */
  2710. memcpy(&np->np_sockaddr, ksockaddr,
  2711. sizeof(struct __kernel_sockaddr_storage));
  2712. isert_lid = isert_setup_id(isert_np);
  2713. if (IS_ERR(isert_lid)) {
  2714. ret = PTR_ERR(isert_lid);
  2715. goto out;
  2716. }
  2717. isert_np->np_cm_id = isert_lid;
  2718. np->np_context = isert_np;
  2719. return 0;
  2720. out:
  2721. kfree(isert_np);
  2722. return ret;
  2723. }
  2724. static int
  2725. isert_rdma_accept(struct isert_conn *isert_conn)
  2726. {
  2727. struct rdma_cm_id *cm_id = isert_conn->conn_cm_id;
  2728. struct rdma_conn_param cp;
  2729. int ret;
  2730. memset(&cp, 0, sizeof(struct rdma_conn_param));
  2731. cp.initiator_depth = isert_conn->initiator_depth;
  2732. cp.retry_count = 7;
  2733. cp.rnr_retry_count = 7;
  2734. pr_debug("Before rdma_accept >>>>>>>>>>>>>>>>>>>>.\n");
  2735. ret = rdma_accept(cm_id, &cp);
  2736. if (ret) {
  2737. pr_err("rdma_accept() failed with: %d\n", ret);
  2738. return ret;
  2739. }
  2740. pr_debug("After rdma_accept >>>>>>>>>>>>>>>>>>>>>.\n");
  2741. return 0;
  2742. }
  2743. static int
  2744. isert_get_login_rx(struct iscsi_conn *conn, struct iscsi_login *login)
  2745. {
  2746. struct isert_conn *isert_conn = (struct isert_conn *)conn->context;
  2747. int ret;
  2748. pr_info("before login_req comp conn: %p\n", isert_conn);
  2749. ret = wait_for_completion_interruptible(&isert_conn->login_req_comp);
  2750. if (ret) {
  2751. pr_err("isert_conn %p interrupted before got login req\n",
  2752. isert_conn);
  2753. return ret;
  2754. }
  2755. reinit_completion(&isert_conn->login_req_comp);
  2756. /*
  2757. * For login requests after the first PDU, isert_rx_login_req() will
  2758. * kick schedule_delayed_work(&conn->login_work) as the packet is
  2759. * received, which turns this callback from iscsi_target_do_login_rx()
  2760. * into a NOP.
  2761. */
  2762. if (!login->first_request)
  2763. return 0;
  2764. isert_rx_login_req(isert_conn);
  2765. pr_info("before conn_login_comp conn: %p\n", conn);
  2766. ret = wait_for_completion_interruptible(&isert_conn->conn_login_comp);
  2767. if (ret)
  2768. return ret;
  2769. pr_info("processing login->req: %p\n", login->req);
  2770. return 0;
  2771. }
  2772. static void
  2773. isert_set_conn_info(struct iscsi_np *np, struct iscsi_conn *conn,
  2774. struct isert_conn *isert_conn)
  2775. {
  2776. struct rdma_cm_id *cm_id = isert_conn->conn_cm_id;
  2777. struct rdma_route *cm_route = &cm_id->route;
  2778. struct sockaddr_in *sock_in;
  2779. struct sockaddr_in6 *sock_in6;
  2780. conn->login_family = np->np_sockaddr.ss_family;
  2781. if (np->np_sockaddr.ss_family == AF_INET6) {
  2782. sock_in6 = (struct sockaddr_in6 *)&cm_route->addr.dst_addr;
  2783. snprintf(conn->login_ip, sizeof(conn->login_ip), "%pI6c",
  2784. &sock_in6->sin6_addr.in6_u);
  2785. conn->login_port = ntohs(sock_in6->sin6_port);
  2786. sock_in6 = (struct sockaddr_in6 *)&cm_route->addr.src_addr;
  2787. snprintf(conn->local_ip, sizeof(conn->local_ip), "%pI6c",
  2788. &sock_in6->sin6_addr.in6_u);
  2789. conn->local_port = ntohs(sock_in6->sin6_port);
  2790. } else {
  2791. sock_in = (struct sockaddr_in *)&cm_route->addr.dst_addr;
  2792. sprintf(conn->login_ip, "%pI4",
  2793. &sock_in->sin_addr.s_addr);
  2794. conn->login_port = ntohs(sock_in->sin_port);
  2795. sock_in = (struct sockaddr_in *)&cm_route->addr.src_addr;
  2796. sprintf(conn->local_ip, "%pI4",
  2797. &sock_in->sin_addr.s_addr);
  2798. conn->local_port = ntohs(sock_in->sin_port);
  2799. }
  2800. }
  2801. static int
  2802. isert_accept_np(struct iscsi_np *np, struct iscsi_conn *conn)
  2803. {
  2804. struct isert_np *isert_np = (struct isert_np *)np->np_context;
  2805. struct isert_conn *isert_conn;
  2806. int max_accept = 0, ret;
  2807. accept_wait:
  2808. ret = down_interruptible(&isert_np->np_sem);
  2809. if (ret || max_accept > 5)
  2810. return -ENODEV;
  2811. spin_lock_bh(&np->np_thread_lock);
  2812. if (np->np_thread_state >= ISCSI_NP_THREAD_RESET) {
  2813. spin_unlock_bh(&np->np_thread_lock);
  2814. pr_debug("np_thread_state %d for isert_accept_np\n",
  2815. np->np_thread_state);
  2816. /**
  2817. * No point in stalling here when np_thread
  2818. * is in state RESET/SHUTDOWN/EXIT - bail
  2819. **/
  2820. return -ENODEV;
  2821. }
  2822. spin_unlock_bh(&np->np_thread_lock);
  2823. mutex_lock(&isert_np->np_accept_mutex);
  2824. if (list_empty(&isert_np->np_accept_list)) {
  2825. mutex_unlock(&isert_np->np_accept_mutex);
  2826. max_accept++;
  2827. goto accept_wait;
  2828. }
  2829. isert_conn = list_first_entry(&isert_np->np_accept_list,
  2830. struct isert_conn, conn_accept_node);
  2831. list_del_init(&isert_conn->conn_accept_node);
  2832. mutex_unlock(&isert_np->np_accept_mutex);
  2833. conn->context = isert_conn;
  2834. isert_conn->conn = conn;
  2835. max_accept = 0;
  2836. isert_set_conn_info(np, conn, isert_conn);
  2837. pr_debug("Processing isert_conn: %p\n", isert_conn);
  2838. return 0;
  2839. }
  2840. static void
  2841. isert_free_np(struct iscsi_np *np)
  2842. {
  2843. struct isert_np *isert_np = (struct isert_np *)np->np_context;
  2844. if (isert_np->np_cm_id)
  2845. rdma_destroy_id(isert_np->np_cm_id);
  2846. np->np_context = NULL;
  2847. kfree(isert_np);
  2848. }
  2849. static void isert_release_work(struct work_struct *work)
  2850. {
  2851. struct isert_conn *isert_conn = container_of(work,
  2852. struct isert_conn,
  2853. release_work);
  2854. pr_info("Starting release conn %p\n", isert_conn);
  2855. wait_for_completion(&isert_conn->conn_wait);
  2856. mutex_lock(&isert_conn->conn_mutex);
  2857. isert_conn->state = ISER_CONN_DOWN;
  2858. mutex_unlock(&isert_conn->conn_mutex);
  2859. pr_info("Destroying conn %p\n", isert_conn);
  2860. isert_put_conn(isert_conn);
  2861. }
  2862. static void isert_wait_conn(struct iscsi_conn *conn)
  2863. {
  2864. struct isert_conn *isert_conn = conn->context;
  2865. pr_debug("isert_wait_conn: Starting \n");
  2866. mutex_lock(&isert_conn->conn_mutex);
  2867. /*
  2868. * Only wait for conn_wait_comp_err if the isert_conn made it
  2869. * into full feature phase..
  2870. */
  2871. if (isert_conn->state == ISER_CONN_INIT) {
  2872. mutex_unlock(&isert_conn->conn_mutex);
  2873. return;
  2874. }
  2875. isert_conn_terminate(isert_conn);
  2876. mutex_unlock(&isert_conn->conn_mutex);
  2877. wait_for_completion(&isert_conn->conn_wait_comp_err);
  2878. INIT_WORK(&isert_conn->release_work, isert_release_work);
  2879. queue_work(isert_release_wq, &isert_conn->release_work);
  2880. }
  2881. static void isert_free_conn(struct iscsi_conn *conn)
  2882. {
  2883. struct isert_conn *isert_conn = conn->context;
  2884. isert_put_conn(isert_conn);
  2885. }
  2886. static struct iscsit_transport iser_target_transport = {
  2887. .name = "IB/iSER",
  2888. .transport_type = ISCSI_INFINIBAND,
  2889. .priv_size = sizeof(struct isert_cmd),
  2890. .owner = THIS_MODULE,
  2891. .iscsit_setup_np = isert_setup_np,
  2892. .iscsit_accept_np = isert_accept_np,
  2893. .iscsit_free_np = isert_free_np,
  2894. .iscsit_wait_conn = isert_wait_conn,
  2895. .iscsit_free_conn = isert_free_conn,
  2896. .iscsit_get_login_rx = isert_get_login_rx,
  2897. .iscsit_put_login_tx = isert_put_login_tx,
  2898. .iscsit_immediate_queue = isert_immediate_queue,
  2899. .iscsit_response_queue = isert_response_queue,
  2900. .iscsit_get_dataout = isert_get_dataout,
  2901. .iscsit_queue_data_in = isert_put_datain,
  2902. .iscsit_queue_status = isert_put_response,
  2903. .iscsit_aborted_task = isert_aborted_task,
  2904. .iscsit_get_sup_prot_ops = isert_get_sup_prot_ops,
  2905. };
  2906. static int __init isert_init(void)
  2907. {
  2908. int ret;
  2909. isert_rx_wq = alloc_workqueue("isert_rx_wq", 0, 0);
  2910. if (!isert_rx_wq) {
  2911. pr_err("Unable to allocate isert_rx_wq\n");
  2912. return -ENOMEM;
  2913. }
  2914. isert_comp_wq = alloc_workqueue("isert_comp_wq", 0, 0);
  2915. if (!isert_comp_wq) {
  2916. pr_err("Unable to allocate isert_comp_wq\n");
  2917. ret = -ENOMEM;
  2918. goto destroy_rx_wq;
  2919. }
  2920. isert_release_wq = alloc_workqueue("isert_release_wq", WQ_UNBOUND,
  2921. WQ_UNBOUND_MAX_ACTIVE);
  2922. if (!isert_release_wq) {
  2923. pr_err("Unable to allocate isert_release_wq\n");
  2924. ret = -ENOMEM;
  2925. goto destroy_comp_wq;
  2926. }
  2927. iscsit_register_transport(&iser_target_transport);
  2928. pr_info("iSER_TARGET[0] - Loaded iser_target_transport\n");
  2929. return 0;
  2930. destroy_comp_wq:
  2931. destroy_workqueue(isert_comp_wq);
  2932. destroy_rx_wq:
  2933. destroy_workqueue(isert_rx_wq);
  2934. return ret;
  2935. }
  2936. static void __exit isert_exit(void)
  2937. {
  2938. flush_scheduled_work();
  2939. destroy_workqueue(isert_release_wq);
  2940. destroy_workqueue(isert_comp_wq);
  2941. destroy_workqueue(isert_rx_wq);
  2942. iscsit_unregister_transport(&iser_target_transport);
  2943. pr_debug("iSER_TARGET[0] - Released iser_target_transport\n");
  2944. }
  2945. MODULE_DESCRIPTION("iSER-Target for mainline target infrastructure");
  2946. MODULE_VERSION("0.1");
  2947. MODULE_AUTHOR("nab@Linux-iSCSI.org");
  2948. MODULE_LICENSE("GPL");
  2949. module_init(isert_init);
  2950. module_exit(isert_exit);