ib_frmr.c 9.8 KB

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  1. /*
  2. * Copyright (c) 2016 Oracle. All rights reserved.
  3. *
  4. * This software is available to you under a choice of one of two
  5. * licenses. You may choose to be licensed under the terms of the GNU
  6. * General Public License (GPL) Version 2, available from the file
  7. * COPYING in the main directory of this source tree, or the
  8. * OpenIB.org BSD license below:
  9. *
  10. * Redistribution and use in source and binary forms, with or
  11. * without modification, are permitted provided that the following
  12. * conditions are met:
  13. *
  14. * - Redistributions of source code must retain the above
  15. * copyright notice, this list of conditions and the following
  16. * disclaimer.
  17. *
  18. * - Redistributions in binary form must reproduce the above
  19. * copyright notice, this list of conditions and the following
  20. * disclaimer in the documentation and/or other materials
  21. * provided with the distribution.
  22. *
  23. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
  24. * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
  25. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
  26. * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
  27. * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
  28. * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
  29. * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
  30. * SOFTWARE.
  31. */
  32. #include "ib_mr.h"
  33. static struct rds_ib_mr *rds_ib_alloc_frmr(struct rds_ib_device *rds_ibdev,
  34. int npages)
  35. {
  36. struct rds_ib_mr_pool *pool;
  37. struct rds_ib_mr *ibmr = NULL;
  38. struct rds_ib_frmr *frmr;
  39. int err = 0;
  40. if (npages <= RDS_MR_8K_MSG_SIZE)
  41. pool = rds_ibdev->mr_8k_pool;
  42. else
  43. pool = rds_ibdev->mr_1m_pool;
  44. ibmr = rds_ib_try_reuse_ibmr(pool);
  45. if (ibmr)
  46. return ibmr;
  47. ibmr = kzalloc_node(sizeof(*ibmr), GFP_KERNEL,
  48. rdsibdev_to_node(rds_ibdev));
  49. if (!ibmr) {
  50. err = -ENOMEM;
  51. goto out_no_cigar;
  52. }
  53. frmr = &ibmr->u.frmr;
  54. frmr->mr = ib_alloc_mr(rds_ibdev->pd, IB_MR_TYPE_MEM_REG,
  55. pool->fmr_attr.max_pages);
  56. if (IS_ERR(frmr->mr)) {
  57. pr_warn("RDS/IB: %s failed to allocate MR", __func__);
  58. goto out_no_cigar;
  59. }
  60. ibmr->pool = pool;
  61. if (pool->pool_type == RDS_IB_MR_8K_POOL)
  62. rds_ib_stats_inc(s_ib_rdma_mr_8k_alloc);
  63. else
  64. rds_ib_stats_inc(s_ib_rdma_mr_1m_alloc);
  65. if (atomic_read(&pool->item_count) > pool->max_items_soft)
  66. pool->max_items_soft = pool->max_items;
  67. frmr->fr_state = FRMR_IS_FREE;
  68. return ibmr;
  69. out_no_cigar:
  70. kfree(ibmr);
  71. atomic_dec(&pool->item_count);
  72. return ERR_PTR(err);
  73. }
  74. static void rds_ib_free_frmr(struct rds_ib_mr *ibmr, bool drop)
  75. {
  76. struct rds_ib_mr_pool *pool = ibmr->pool;
  77. if (drop)
  78. llist_add(&ibmr->llnode, &pool->drop_list);
  79. else
  80. llist_add(&ibmr->llnode, &pool->free_list);
  81. atomic_add(ibmr->sg_len, &pool->free_pinned);
  82. atomic_inc(&pool->dirty_count);
  83. /* If we've pinned too many pages, request a flush */
  84. if (atomic_read(&pool->free_pinned) >= pool->max_free_pinned ||
  85. atomic_read(&pool->dirty_count) >= pool->max_items / 5)
  86. queue_delayed_work(rds_ib_mr_wq, &pool->flush_worker, 10);
  87. }
  88. static int rds_ib_post_reg_frmr(struct rds_ib_mr *ibmr)
  89. {
  90. struct rds_ib_frmr *frmr = &ibmr->u.frmr;
  91. struct ib_send_wr *failed_wr;
  92. struct ib_reg_wr reg_wr;
  93. int ret;
  94. while (atomic_dec_return(&ibmr->ic->i_fastreg_wrs) <= 0) {
  95. atomic_inc(&ibmr->ic->i_fastreg_wrs);
  96. cpu_relax();
  97. }
  98. ret = ib_map_mr_sg_zbva(frmr->mr, ibmr->sg, ibmr->sg_len, 0, PAGE_SIZE);
  99. if (unlikely(ret != ibmr->sg_len))
  100. return ret < 0 ? ret : -EINVAL;
  101. /* Perform a WR for the fast_reg_mr. Each individual page
  102. * in the sg list is added to the fast reg page list and placed
  103. * inside the fast_reg_mr WR. The key used is a rolling 8bit
  104. * counter, which should guarantee uniqueness.
  105. */
  106. ib_update_fast_reg_key(frmr->mr, ibmr->remap_count++);
  107. frmr->fr_state = FRMR_IS_INUSE;
  108. memset(&reg_wr, 0, sizeof(reg_wr));
  109. reg_wr.wr.wr_id = (unsigned long)(void *)ibmr;
  110. reg_wr.wr.opcode = IB_WR_REG_MR;
  111. reg_wr.wr.num_sge = 0;
  112. reg_wr.mr = frmr->mr;
  113. reg_wr.key = frmr->mr->rkey;
  114. reg_wr.access = IB_ACCESS_LOCAL_WRITE |
  115. IB_ACCESS_REMOTE_READ |
  116. IB_ACCESS_REMOTE_WRITE;
  117. reg_wr.wr.send_flags = IB_SEND_SIGNALED;
  118. failed_wr = &reg_wr.wr;
  119. ret = ib_post_send(ibmr->ic->i_cm_id->qp, &reg_wr.wr, &failed_wr);
  120. WARN_ON(failed_wr != &reg_wr.wr);
  121. if (unlikely(ret)) {
  122. /* Failure here can be because of -ENOMEM as well */
  123. frmr->fr_state = FRMR_IS_STALE;
  124. atomic_inc(&ibmr->ic->i_fastreg_wrs);
  125. if (printk_ratelimit())
  126. pr_warn("RDS/IB: %s returned error(%d)\n",
  127. __func__, ret);
  128. }
  129. return ret;
  130. }
  131. static int rds_ib_map_frmr(struct rds_ib_device *rds_ibdev,
  132. struct rds_ib_mr_pool *pool,
  133. struct rds_ib_mr *ibmr,
  134. struct scatterlist *sg, unsigned int sg_len)
  135. {
  136. struct ib_device *dev = rds_ibdev->dev;
  137. struct rds_ib_frmr *frmr = &ibmr->u.frmr;
  138. int i;
  139. u32 len;
  140. int ret = 0;
  141. /* We want to teardown old ibmr values here and fill it up with
  142. * new sg values
  143. */
  144. rds_ib_teardown_mr(ibmr);
  145. ibmr->sg = sg;
  146. ibmr->sg_len = sg_len;
  147. ibmr->sg_dma_len = 0;
  148. frmr->sg_byte_len = 0;
  149. WARN_ON(ibmr->sg_dma_len);
  150. ibmr->sg_dma_len = ib_dma_map_sg(dev, ibmr->sg, ibmr->sg_len,
  151. DMA_BIDIRECTIONAL);
  152. if (unlikely(!ibmr->sg_dma_len)) {
  153. pr_warn("RDS/IB: %s failed!\n", __func__);
  154. return -EBUSY;
  155. }
  156. frmr->sg_byte_len = 0;
  157. frmr->dma_npages = 0;
  158. len = 0;
  159. ret = -EINVAL;
  160. for (i = 0; i < ibmr->sg_dma_len; ++i) {
  161. unsigned int dma_len = ib_sg_dma_len(dev, &ibmr->sg[i]);
  162. u64 dma_addr = ib_sg_dma_address(dev, &ibmr->sg[i]);
  163. frmr->sg_byte_len += dma_len;
  164. if (dma_addr & ~PAGE_MASK) {
  165. if (i > 0)
  166. goto out_unmap;
  167. else
  168. ++frmr->dma_npages;
  169. }
  170. if ((dma_addr + dma_len) & ~PAGE_MASK) {
  171. if (i < ibmr->sg_dma_len - 1)
  172. goto out_unmap;
  173. else
  174. ++frmr->dma_npages;
  175. }
  176. len += dma_len;
  177. }
  178. frmr->dma_npages += len >> PAGE_SHIFT;
  179. if (frmr->dma_npages > ibmr->pool->fmr_attr.max_pages) {
  180. ret = -EMSGSIZE;
  181. goto out_unmap;
  182. }
  183. ret = rds_ib_post_reg_frmr(ibmr);
  184. if (ret)
  185. goto out_unmap;
  186. if (ibmr->pool->pool_type == RDS_IB_MR_8K_POOL)
  187. rds_ib_stats_inc(s_ib_rdma_mr_8k_used);
  188. else
  189. rds_ib_stats_inc(s_ib_rdma_mr_1m_used);
  190. return ret;
  191. out_unmap:
  192. ib_dma_unmap_sg(rds_ibdev->dev, ibmr->sg, ibmr->sg_len,
  193. DMA_BIDIRECTIONAL);
  194. ibmr->sg_dma_len = 0;
  195. return ret;
  196. }
  197. static int rds_ib_post_inv(struct rds_ib_mr *ibmr)
  198. {
  199. struct ib_send_wr *s_wr, *failed_wr;
  200. struct rds_ib_frmr *frmr = &ibmr->u.frmr;
  201. struct rdma_cm_id *i_cm_id = ibmr->ic->i_cm_id;
  202. int ret = -EINVAL;
  203. if (!i_cm_id || !i_cm_id->qp || !frmr->mr)
  204. goto out;
  205. if (frmr->fr_state != FRMR_IS_INUSE)
  206. goto out;
  207. while (atomic_dec_return(&ibmr->ic->i_fastreg_wrs) <= 0) {
  208. atomic_inc(&ibmr->ic->i_fastreg_wrs);
  209. cpu_relax();
  210. }
  211. frmr->fr_inv = true;
  212. s_wr = &frmr->fr_wr;
  213. memset(s_wr, 0, sizeof(*s_wr));
  214. s_wr->wr_id = (unsigned long)(void *)ibmr;
  215. s_wr->opcode = IB_WR_LOCAL_INV;
  216. s_wr->ex.invalidate_rkey = frmr->mr->rkey;
  217. s_wr->send_flags = IB_SEND_SIGNALED;
  218. failed_wr = s_wr;
  219. ret = ib_post_send(i_cm_id->qp, s_wr, &failed_wr);
  220. WARN_ON(failed_wr != s_wr);
  221. if (unlikely(ret)) {
  222. frmr->fr_state = FRMR_IS_STALE;
  223. frmr->fr_inv = false;
  224. atomic_inc(&ibmr->ic->i_fastreg_wrs);
  225. pr_err("RDS/IB: %s returned error(%d)\n", __func__, ret);
  226. goto out;
  227. }
  228. out:
  229. return ret;
  230. }
  231. void rds_ib_mr_cqe_handler(struct rds_ib_connection *ic, struct ib_wc *wc)
  232. {
  233. struct rds_ib_mr *ibmr = (void *)(unsigned long)wc->wr_id;
  234. struct rds_ib_frmr *frmr = &ibmr->u.frmr;
  235. if (wc->status != IB_WC_SUCCESS) {
  236. frmr->fr_state = FRMR_IS_STALE;
  237. if (rds_conn_up(ic->conn))
  238. rds_ib_conn_error(ic->conn,
  239. "frmr completion <%pI4,%pI4> status %u(%s), vendor_err 0x%x, disconnecting and reconnecting\n",
  240. &ic->conn->c_laddr,
  241. &ic->conn->c_faddr,
  242. wc->status,
  243. ib_wc_status_msg(wc->status),
  244. wc->vendor_err);
  245. }
  246. if (frmr->fr_inv) {
  247. frmr->fr_state = FRMR_IS_FREE;
  248. frmr->fr_inv = false;
  249. }
  250. atomic_inc(&ic->i_fastreg_wrs);
  251. }
  252. void rds_ib_unreg_frmr(struct list_head *list, unsigned int *nfreed,
  253. unsigned long *unpinned, unsigned int goal)
  254. {
  255. struct rds_ib_mr *ibmr, *next;
  256. struct rds_ib_frmr *frmr;
  257. int ret = 0;
  258. unsigned int freed = *nfreed;
  259. /* String all ib_mr's onto one list and hand them to ib_unmap_fmr */
  260. list_for_each_entry(ibmr, list, unmap_list) {
  261. if (ibmr->sg_dma_len)
  262. ret |= rds_ib_post_inv(ibmr);
  263. }
  264. if (ret)
  265. pr_warn("RDS/IB: %s failed (err=%d)\n", __func__, ret);
  266. /* Now we can destroy the DMA mapping and unpin any pages */
  267. list_for_each_entry_safe(ibmr, next, list, unmap_list) {
  268. *unpinned += ibmr->sg_len;
  269. frmr = &ibmr->u.frmr;
  270. __rds_ib_teardown_mr(ibmr);
  271. if (freed < goal || frmr->fr_state == FRMR_IS_STALE) {
  272. /* Don't de-allocate if the MR is not free yet */
  273. if (frmr->fr_state == FRMR_IS_INUSE)
  274. continue;
  275. if (ibmr->pool->pool_type == RDS_IB_MR_8K_POOL)
  276. rds_ib_stats_inc(s_ib_rdma_mr_8k_free);
  277. else
  278. rds_ib_stats_inc(s_ib_rdma_mr_1m_free);
  279. list_del(&ibmr->unmap_list);
  280. if (frmr->mr)
  281. ib_dereg_mr(frmr->mr);
  282. kfree(ibmr);
  283. freed++;
  284. }
  285. }
  286. *nfreed = freed;
  287. }
  288. struct rds_ib_mr *rds_ib_reg_frmr(struct rds_ib_device *rds_ibdev,
  289. struct rds_ib_connection *ic,
  290. struct scatterlist *sg,
  291. unsigned long nents, u32 *key)
  292. {
  293. struct rds_ib_mr *ibmr = NULL;
  294. struct rds_ib_frmr *frmr;
  295. int ret;
  296. do {
  297. if (ibmr)
  298. rds_ib_free_frmr(ibmr, true);
  299. ibmr = rds_ib_alloc_frmr(rds_ibdev, nents);
  300. if (IS_ERR(ibmr))
  301. return ibmr;
  302. frmr = &ibmr->u.frmr;
  303. } while (frmr->fr_state != FRMR_IS_FREE);
  304. ibmr->ic = ic;
  305. ibmr->device = rds_ibdev;
  306. ret = rds_ib_map_frmr(rds_ibdev, ibmr->pool, ibmr, sg, nents);
  307. if (ret == 0) {
  308. *key = frmr->mr->rkey;
  309. } else {
  310. rds_ib_free_frmr(ibmr, false);
  311. ibmr = ERR_PTR(ret);
  312. }
  313. return ibmr;
  314. }
  315. void rds_ib_free_frmr_list(struct rds_ib_mr *ibmr)
  316. {
  317. struct rds_ib_mr_pool *pool = ibmr->pool;
  318. struct rds_ib_frmr *frmr = &ibmr->u.frmr;
  319. if (frmr->fr_state == FRMR_IS_STALE)
  320. llist_add(&ibmr->llnode, &pool->drop_list);
  321. else
  322. llist_add(&ibmr->llnode, &pool->free_list);
  323. }