qplib_fp.c 61 KB

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  1. /*
  2. * Broadcom NetXtreme-E RoCE driver.
  3. *
  4. * Copyright (c) 2016 - 2017, Broadcom. All rights reserved. The term
  5. * Broadcom refers to Broadcom Limited and/or its subsidiaries.
  6. *
  7. * This software is available to you under a choice of one of two
  8. * licenses. You may choose to be licensed under the terms of the GNU
  9. * General Public License (GPL) Version 2, available from the file
  10. * COPYING in the main directory of this source tree, or the
  11. * BSD license below:
  12. *
  13. * Redistribution and use in source and binary forms, with or without
  14. * modification, are permitted provided that the following conditions
  15. * are met:
  16. *
  17. * 1. Redistributions of source code must retain the above copyright
  18. * notice, this list of conditions and the following disclaimer.
  19. * 2. Redistributions in binary form must reproduce the above copyright
  20. * notice, this list of conditions and the following disclaimer in
  21. * the documentation and/or other materials provided with the
  22. * distribution.
  23. *
  24. * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS''
  25. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
  26. * THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
  27. * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS
  28. * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
  29. * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
  30. * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
  31. * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
  32. * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE
  33. * OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN
  34. * IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  35. *
  36. * Description: Fast Path Operators
  37. */
  38. #include <linux/interrupt.h>
  39. #include <linux/spinlock.h>
  40. #include <linux/sched.h>
  41. #include <linux/slab.h>
  42. #include <linux/pci.h>
  43. #include <linux/prefetch.h>
  44. #include "roce_hsi.h"
  45. #include "qplib_res.h"
  46. #include "qplib_rcfw.h"
  47. #include "qplib_sp.h"
  48. #include "qplib_fp.h"
  49. static void bnxt_qplib_arm_cq_enable(struct bnxt_qplib_cq *cq);
  50. static void bnxt_qplib_free_qp_hdr_buf(struct bnxt_qplib_res *res,
  51. struct bnxt_qplib_qp *qp)
  52. {
  53. struct bnxt_qplib_q *rq = &qp->rq;
  54. struct bnxt_qplib_q *sq = &qp->sq;
  55. if (qp->rq_hdr_buf)
  56. dma_free_coherent(&res->pdev->dev,
  57. rq->hwq.max_elements * qp->rq_hdr_buf_size,
  58. qp->rq_hdr_buf, qp->rq_hdr_buf_map);
  59. if (qp->sq_hdr_buf)
  60. dma_free_coherent(&res->pdev->dev,
  61. sq->hwq.max_elements * qp->sq_hdr_buf_size,
  62. qp->sq_hdr_buf, qp->sq_hdr_buf_map);
  63. qp->rq_hdr_buf = NULL;
  64. qp->sq_hdr_buf = NULL;
  65. qp->rq_hdr_buf_map = 0;
  66. qp->sq_hdr_buf_map = 0;
  67. qp->sq_hdr_buf_size = 0;
  68. qp->rq_hdr_buf_size = 0;
  69. }
  70. static int bnxt_qplib_alloc_qp_hdr_buf(struct bnxt_qplib_res *res,
  71. struct bnxt_qplib_qp *qp)
  72. {
  73. struct bnxt_qplib_q *rq = &qp->rq;
  74. struct bnxt_qplib_q *sq = &qp->rq;
  75. int rc = 0;
  76. if (qp->sq_hdr_buf_size && sq->hwq.max_elements) {
  77. qp->sq_hdr_buf = dma_alloc_coherent(&res->pdev->dev,
  78. sq->hwq.max_elements *
  79. qp->sq_hdr_buf_size,
  80. &qp->sq_hdr_buf_map, GFP_KERNEL);
  81. if (!qp->sq_hdr_buf) {
  82. rc = -ENOMEM;
  83. dev_err(&res->pdev->dev,
  84. "QPLIB: Failed to create sq_hdr_buf");
  85. goto fail;
  86. }
  87. }
  88. if (qp->rq_hdr_buf_size && rq->hwq.max_elements) {
  89. qp->rq_hdr_buf = dma_alloc_coherent(&res->pdev->dev,
  90. rq->hwq.max_elements *
  91. qp->rq_hdr_buf_size,
  92. &qp->rq_hdr_buf_map,
  93. GFP_KERNEL);
  94. if (!qp->rq_hdr_buf) {
  95. rc = -ENOMEM;
  96. dev_err(&res->pdev->dev,
  97. "QPLIB: Failed to create rq_hdr_buf");
  98. goto fail;
  99. }
  100. }
  101. return 0;
  102. fail:
  103. bnxt_qplib_free_qp_hdr_buf(res, qp);
  104. return rc;
  105. }
  106. static void bnxt_qplib_service_nq(unsigned long data)
  107. {
  108. struct bnxt_qplib_nq *nq = (struct bnxt_qplib_nq *)data;
  109. struct bnxt_qplib_hwq *hwq = &nq->hwq;
  110. struct nq_base *nqe, **nq_ptr;
  111. int num_cqne_processed = 0;
  112. u32 sw_cons, raw_cons;
  113. u16 type;
  114. int budget = nq->budget;
  115. u64 q_handle;
  116. /* Service the NQ until empty */
  117. raw_cons = hwq->cons;
  118. while (budget--) {
  119. sw_cons = HWQ_CMP(raw_cons, hwq);
  120. nq_ptr = (struct nq_base **)hwq->pbl_ptr;
  121. nqe = &nq_ptr[NQE_PG(sw_cons)][NQE_IDX(sw_cons)];
  122. if (!NQE_CMP_VALID(nqe, raw_cons, hwq->max_elements))
  123. break;
  124. type = le16_to_cpu(nqe->info10_type) & NQ_BASE_TYPE_MASK;
  125. switch (type) {
  126. case NQ_BASE_TYPE_CQ_NOTIFICATION:
  127. {
  128. struct nq_cn *nqcne = (struct nq_cn *)nqe;
  129. q_handle = le32_to_cpu(nqcne->cq_handle_low);
  130. q_handle |= (u64)le32_to_cpu(nqcne->cq_handle_high)
  131. << 32;
  132. bnxt_qplib_arm_cq_enable((struct bnxt_qplib_cq *)
  133. ((unsigned long)q_handle));
  134. if (!nq->cqn_handler(nq, (struct bnxt_qplib_cq *)
  135. ((unsigned long)q_handle)))
  136. num_cqne_processed++;
  137. else
  138. dev_warn(&nq->pdev->dev,
  139. "QPLIB: cqn - type 0x%x not handled",
  140. type);
  141. break;
  142. }
  143. case NQ_BASE_TYPE_DBQ_EVENT:
  144. break;
  145. default:
  146. dev_warn(&nq->pdev->dev,
  147. "QPLIB: nqe with type = 0x%x not handled",
  148. type);
  149. break;
  150. }
  151. raw_cons++;
  152. }
  153. if (hwq->cons != raw_cons) {
  154. hwq->cons = raw_cons;
  155. NQ_DB_REARM(nq->bar_reg_iomem, hwq->cons, hwq->max_elements);
  156. }
  157. }
  158. static irqreturn_t bnxt_qplib_nq_irq(int irq, void *dev_instance)
  159. {
  160. struct bnxt_qplib_nq *nq = dev_instance;
  161. struct bnxt_qplib_hwq *hwq = &nq->hwq;
  162. struct nq_base **nq_ptr;
  163. u32 sw_cons;
  164. /* Prefetch the NQ element */
  165. sw_cons = HWQ_CMP(hwq->cons, hwq);
  166. nq_ptr = (struct nq_base **)nq->hwq.pbl_ptr;
  167. prefetch(&nq_ptr[NQE_PG(sw_cons)][NQE_IDX(sw_cons)]);
  168. /* Fan out to CPU affinitized kthreads? */
  169. tasklet_schedule(&nq->worker);
  170. return IRQ_HANDLED;
  171. }
  172. void bnxt_qplib_disable_nq(struct bnxt_qplib_nq *nq)
  173. {
  174. /* Make sure the HW is stopped! */
  175. synchronize_irq(nq->vector);
  176. tasklet_disable(&nq->worker);
  177. tasklet_kill(&nq->worker);
  178. if (nq->requested) {
  179. free_irq(nq->vector, nq);
  180. nq->requested = false;
  181. }
  182. if (nq->bar_reg_iomem)
  183. iounmap(nq->bar_reg_iomem);
  184. nq->bar_reg_iomem = NULL;
  185. nq->cqn_handler = NULL;
  186. nq->srqn_handler = NULL;
  187. nq->vector = 0;
  188. }
  189. int bnxt_qplib_enable_nq(struct pci_dev *pdev, struct bnxt_qplib_nq *nq,
  190. int msix_vector, int bar_reg_offset,
  191. int (*cqn_handler)(struct bnxt_qplib_nq *nq,
  192. struct bnxt_qplib_cq *),
  193. int (*srqn_handler)(struct bnxt_qplib_nq *nq,
  194. void *, u8 event))
  195. {
  196. resource_size_t nq_base;
  197. int rc;
  198. nq->pdev = pdev;
  199. nq->vector = msix_vector;
  200. nq->cqn_handler = cqn_handler;
  201. nq->srqn_handler = srqn_handler;
  202. tasklet_init(&nq->worker, bnxt_qplib_service_nq, (unsigned long)nq);
  203. nq->requested = false;
  204. rc = request_irq(nq->vector, bnxt_qplib_nq_irq, 0, "bnxt_qplib_nq", nq);
  205. if (rc) {
  206. dev_err(&nq->pdev->dev,
  207. "Failed to request IRQ for NQ: %#x", rc);
  208. bnxt_qplib_disable_nq(nq);
  209. goto fail;
  210. }
  211. nq->requested = true;
  212. nq->bar_reg = NQ_CONS_PCI_BAR_REGION;
  213. nq->bar_reg_off = bar_reg_offset;
  214. nq_base = pci_resource_start(pdev, nq->bar_reg);
  215. if (!nq_base) {
  216. rc = -ENOMEM;
  217. goto fail;
  218. }
  219. nq->bar_reg_iomem = ioremap_nocache(nq_base + nq->bar_reg_off, 4);
  220. if (!nq->bar_reg_iomem) {
  221. rc = -ENOMEM;
  222. goto fail;
  223. }
  224. NQ_DB_REARM(nq->bar_reg_iomem, nq->hwq.cons, nq->hwq.max_elements);
  225. return 0;
  226. fail:
  227. bnxt_qplib_disable_nq(nq);
  228. return rc;
  229. }
  230. void bnxt_qplib_free_nq(struct bnxt_qplib_nq *nq)
  231. {
  232. if (nq->hwq.max_elements)
  233. bnxt_qplib_free_hwq(nq->pdev, &nq->hwq);
  234. }
  235. int bnxt_qplib_alloc_nq(struct pci_dev *pdev, struct bnxt_qplib_nq *nq)
  236. {
  237. nq->pdev = pdev;
  238. if (!nq->hwq.max_elements ||
  239. nq->hwq.max_elements > BNXT_QPLIB_NQE_MAX_CNT)
  240. nq->hwq.max_elements = BNXT_QPLIB_NQE_MAX_CNT;
  241. if (bnxt_qplib_alloc_init_hwq(nq->pdev, &nq->hwq, NULL, 0,
  242. &nq->hwq.max_elements,
  243. BNXT_QPLIB_MAX_NQE_ENTRY_SIZE, 0,
  244. PAGE_SIZE, HWQ_TYPE_L2_CMPL))
  245. return -ENOMEM;
  246. nq->budget = 8;
  247. return 0;
  248. }
  249. /* QP */
  250. int bnxt_qplib_create_qp1(struct bnxt_qplib_res *res, struct bnxt_qplib_qp *qp)
  251. {
  252. struct bnxt_qplib_rcfw *rcfw = res->rcfw;
  253. struct cmdq_create_qp1 req;
  254. struct creq_create_qp1_resp *resp;
  255. struct bnxt_qplib_pbl *pbl;
  256. struct bnxt_qplib_q *sq = &qp->sq;
  257. struct bnxt_qplib_q *rq = &qp->rq;
  258. int rc;
  259. u16 cmd_flags = 0;
  260. u32 qp_flags = 0;
  261. RCFW_CMD_PREP(req, CREATE_QP1, cmd_flags);
  262. /* General */
  263. req.type = qp->type;
  264. req.dpi = cpu_to_le32(qp->dpi->dpi);
  265. req.qp_handle = cpu_to_le64(qp->qp_handle);
  266. /* SQ */
  267. sq->hwq.max_elements = sq->max_wqe;
  268. rc = bnxt_qplib_alloc_init_hwq(res->pdev, &sq->hwq, NULL, 0,
  269. &sq->hwq.max_elements,
  270. BNXT_QPLIB_MAX_SQE_ENTRY_SIZE, 0,
  271. PAGE_SIZE, HWQ_TYPE_QUEUE);
  272. if (rc)
  273. goto exit;
  274. sq->swq = kcalloc(sq->hwq.max_elements, sizeof(*sq->swq), GFP_KERNEL);
  275. if (!sq->swq) {
  276. rc = -ENOMEM;
  277. goto fail_sq;
  278. }
  279. pbl = &sq->hwq.pbl[PBL_LVL_0];
  280. req.sq_pbl = cpu_to_le64(pbl->pg_map_arr[0]);
  281. req.sq_pg_size_sq_lvl =
  282. ((sq->hwq.level & CMDQ_CREATE_QP1_SQ_LVL_MASK)
  283. << CMDQ_CREATE_QP1_SQ_LVL_SFT) |
  284. (pbl->pg_size == ROCE_PG_SIZE_4K ?
  285. CMDQ_CREATE_QP1_SQ_PG_SIZE_PG_4K :
  286. pbl->pg_size == ROCE_PG_SIZE_8K ?
  287. CMDQ_CREATE_QP1_SQ_PG_SIZE_PG_8K :
  288. pbl->pg_size == ROCE_PG_SIZE_64K ?
  289. CMDQ_CREATE_QP1_SQ_PG_SIZE_PG_64K :
  290. pbl->pg_size == ROCE_PG_SIZE_2M ?
  291. CMDQ_CREATE_QP1_SQ_PG_SIZE_PG_2M :
  292. pbl->pg_size == ROCE_PG_SIZE_8M ?
  293. CMDQ_CREATE_QP1_SQ_PG_SIZE_PG_8M :
  294. pbl->pg_size == ROCE_PG_SIZE_1G ?
  295. CMDQ_CREATE_QP1_SQ_PG_SIZE_PG_1G :
  296. CMDQ_CREATE_QP1_SQ_PG_SIZE_PG_4K);
  297. if (qp->scq)
  298. req.scq_cid = cpu_to_le32(qp->scq->id);
  299. qp_flags |= CMDQ_CREATE_QP1_QP_FLAGS_RESERVED_LKEY_ENABLE;
  300. /* RQ */
  301. if (rq->max_wqe) {
  302. rq->hwq.max_elements = qp->rq.max_wqe;
  303. rc = bnxt_qplib_alloc_init_hwq(res->pdev, &rq->hwq, NULL, 0,
  304. &rq->hwq.max_elements,
  305. BNXT_QPLIB_MAX_RQE_ENTRY_SIZE, 0,
  306. PAGE_SIZE, HWQ_TYPE_QUEUE);
  307. if (rc)
  308. goto fail_sq;
  309. rq->swq = kcalloc(rq->hwq.max_elements, sizeof(*rq->swq),
  310. GFP_KERNEL);
  311. if (!rq->swq) {
  312. rc = -ENOMEM;
  313. goto fail_rq;
  314. }
  315. pbl = &rq->hwq.pbl[PBL_LVL_0];
  316. req.rq_pbl = cpu_to_le64(pbl->pg_map_arr[0]);
  317. req.rq_pg_size_rq_lvl =
  318. ((rq->hwq.level & CMDQ_CREATE_QP1_RQ_LVL_MASK) <<
  319. CMDQ_CREATE_QP1_RQ_LVL_SFT) |
  320. (pbl->pg_size == ROCE_PG_SIZE_4K ?
  321. CMDQ_CREATE_QP1_RQ_PG_SIZE_PG_4K :
  322. pbl->pg_size == ROCE_PG_SIZE_8K ?
  323. CMDQ_CREATE_QP1_RQ_PG_SIZE_PG_8K :
  324. pbl->pg_size == ROCE_PG_SIZE_64K ?
  325. CMDQ_CREATE_QP1_RQ_PG_SIZE_PG_64K :
  326. pbl->pg_size == ROCE_PG_SIZE_2M ?
  327. CMDQ_CREATE_QP1_RQ_PG_SIZE_PG_2M :
  328. pbl->pg_size == ROCE_PG_SIZE_8M ?
  329. CMDQ_CREATE_QP1_RQ_PG_SIZE_PG_8M :
  330. pbl->pg_size == ROCE_PG_SIZE_1G ?
  331. CMDQ_CREATE_QP1_RQ_PG_SIZE_PG_1G :
  332. CMDQ_CREATE_QP1_RQ_PG_SIZE_PG_4K);
  333. if (qp->rcq)
  334. req.rcq_cid = cpu_to_le32(qp->rcq->id);
  335. }
  336. /* Header buffer - allow hdr_buf pass in */
  337. rc = bnxt_qplib_alloc_qp_hdr_buf(res, qp);
  338. if (rc) {
  339. rc = -ENOMEM;
  340. goto fail;
  341. }
  342. req.qp_flags = cpu_to_le32(qp_flags);
  343. req.sq_size = cpu_to_le32(sq->hwq.max_elements);
  344. req.rq_size = cpu_to_le32(rq->hwq.max_elements);
  345. req.sq_fwo_sq_sge =
  346. cpu_to_le16((sq->max_sge & CMDQ_CREATE_QP1_SQ_SGE_MASK) <<
  347. CMDQ_CREATE_QP1_SQ_SGE_SFT);
  348. req.rq_fwo_rq_sge =
  349. cpu_to_le16((rq->max_sge & CMDQ_CREATE_QP1_RQ_SGE_MASK) <<
  350. CMDQ_CREATE_QP1_RQ_SGE_SFT);
  351. req.pd_id = cpu_to_le32(qp->pd->id);
  352. resp = (struct creq_create_qp1_resp *)
  353. bnxt_qplib_rcfw_send_message(rcfw, (void *)&req,
  354. NULL, 0);
  355. if (!resp) {
  356. dev_err(&res->pdev->dev, "QPLIB: FP: CREATE_QP1 send failed");
  357. rc = -EINVAL;
  358. goto fail;
  359. }
  360. if (!bnxt_qplib_rcfw_wait_for_resp(rcfw, le16_to_cpu(req.cookie))) {
  361. /* Cmd timed out */
  362. dev_err(&rcfw->pdev->dev, "QPLIB: FP: CREATE_QP1 timed out");
  363. rc = -ETIMEDOUT;
  364. goto fail;
  365. }
  366. if (resp->status ||
  367. le16_to_cpu(resp->cookie) != le16_to_cpu(req.cookie)) {
  368. dev_err(&rcfw->pdev->dev, "QPLIB: FP: CREATE_QP1 failed ");
  369. dev_err(&rcfw->pdev->dev,
  370. "QPLIB: with status 0x%x cmdq 0x%x resp 0x%x",
  371. resp->status, le16_to_cpu(req.cookie),
  372. le16_to_cpu(resp->cookie));
  373. rc = -EINVAL;
  374. goto fail;
  375. }
  376. qp->id = le32_to_cpu(resp->xid);
  377. qp->cur_qp_state = CMDQ_MODIFY_QP_NEW_STATE_RESET;
  378. sq->flush_in_progress = false;
  379. rq->flush_in_progress = false;
  380. return 0;
  381. fail:
  382. bnxt_qplib_free_qp_hdr_buf(res, qp);
  383. fail_rq:
  384. bnxt_qplib_free_hwq(res->pdev, &rq->hwq);
  385. kfree(rq->swq);
  386. fail_sq:
  387. bnxt_qplib_free_hwq(res->pdev, &sq->hwq);
  388. kfree(sq->swq);
  389. exit:
  390. return rc;
  391. }
  392. int bnxt_qplib_create_qp(struct bnxt_qplib_res *res, struct bnxt_qplib_qp *qp)
  393. {
  394. struct bnxt_qplib_rcfw *rcfw = res->rcfw;
  395. struct sq_send *hw_sq_send_hdr, **hw_sq_send_ptr;
  396. struct cmdq_create_qp req;
  397. struct creq_create_qp_resp *resp;
  398. struct bnxt_qplib_pbl *pbl;
  399. struct sq_psn_search **psn_search_ptr;
  400. unsigned long int psn_search, poff = 0;
  401. struct bnxt_qplib_q *sq = &qp->sq;
  402. struct bnxt_qplib_q *rq = &qp->rq;
  403. struct bnxt_qplib_hwq *xrrq;
  404. int i, rc, req_size, psn_sz;
  405. u16 cmd_flags = 0, max_ssge;
  406. u32 sw_prod, qp_flags = 0;
  407. RCFW_CMD_PREP(req, CREATE_QP, cmd_flags);
  408. /* General */
  409. req.type = qp->type;
  410. req.dpi = cpu_to_le32(qp->dpi->dpi);
  411. req.qp_handle = cpu_to_le64(qp->qp_handle);
  412. /* SQ */
  413. psn_sz = (qp->type == CMDQ_CREATE_QP_TYPE_RC) ?
  414. sizeof(struct sq_psn_search) : 0;
  415. sq->hwq.max_elements = sq->max_wqe;
  416. rc = bnxt_qplib_alloc_init_hwq(res->pdev, &sq->hwq, sq->sglist,
  417. sq->nmap, &sq->hwq.max_elements,
  418. BNXT_QPLIB_MAX_SQE_ENTRY_SIZE,
  419. psn_sz,
  420. PAGE_SIZE, HWQ_TYPE_QUEUE);
  421. if (rc)
  422. goto exit;
  423. sq->swq = kcalloc(sq->hwq.max_elements, sizeof(*sq->swq), GFP_KERNEL);
  424. if (!sq->swq) {
  425. rc = -ENOMEM;
  426. goto fail_sq;
  427. }
  428. hw_sq_send_ptr = (struct sq_send **)sq->hwq.pbl_ptr;
  429. if (psn_sz) {
  430. psn_search_ptr = (struct sq_psn_search **)
  431. &hw_sq_send_ptr[get_sqe_pg
  432. (sq->hwq.max_elements)];
  433. psn_search = (unsigned long int)
  434. &hw_sq_send_ptr[get_sqe_pg(sq->hwq.max_elements)]
  435. [get_sqe_idx(sq->hwq.max_elements)];
  436. if (psn_search & ~PAGE_MASK) {
  437. /* If the psn_search does not start on a page boundary,
  438. * then calculate the offset
  439. */
  440. poff = (psn_search & ~PAGE_MASK) /
  441. BNXT_QPLIB_MAX_PSNE_ENTRY_SIZE;
  442. }
  443. for (i = 0; i < sq->hwq.max_elements; i++)
  444. sq->swq[i].psn_search =
  445. &psn_search_ptr[get_psne_pg(i + poff)]
  446. [get_psne_idx(i + poff)];
  447. }
  448. pbl = &sq->hwq.pbl[PBL_LVL_0];
  449. req.sq_pbl = cpu_to_le64(pbl->pg_map_arr[0]);
  450. req.sq_pg_size_sq_lvl =
  451. ((sq->hwq.level & CMDQ_CREATE_QP_SQ_LVL_MASK)
  452. << CMDQ_CREATE_QP_SQ_LVL_SFT) |
  453. (pbl->pg_size == ROCE_PG_SIZE_4K ?
  454. CMDQ_CREATE_QP_SQ_PG_SIZE_PG_4K :
  455. pbl->pg_size == ROCE_PG_SIZE_8K ?
  456. CMDQ_CREATE_QP_SQ_PG_SIZE_PG_8K :
  457. pbl->pg_size == ROCE_PG_SIZE_64K ?
  458. CMDQ_CREATE_QP_SQ_PG_SIZE_PG_64K :
  459. pbl->pg_size == ROCE_PG_SIZE_2M ?
  460. CMDQ_CREATE_QP_SQ_PG_SIZE_PG_2M :
  461. pbl->pg_size == ROCE_PG_SIZE_8M ?
  462. CMDQ_CREATE_QP_SQ_PG_SIZE_PG_8M :
  463. pbl->pg_size == ROCE_PG_SIZE_1G ?
  464. CMDQ_CREATE_QP_SQ_PG_SIZE_PG_1G :
  465. CMDQ_CREATE_QP_SQ_PG_SIZE_PG_4K);
  466. /* initialize all SQ WQEs to LOCAL_INVALID (sq prep for hw fetch) */
  467. hw_sq_send_ptr = (struct sq_send **)sq->hwq.pbl_ptr;
  468. for (sw_prod = 0; sw_prod < sq->hwq.max_elements; sw_prod++) {
  469. hw_sq_send_hdr = &hw_sq_send_ptr[get_sqe_pg(sw_prod)]
  470. [get_sqe_idx(sw_prod)];
  471. hw_sq_send_hdr->wqe_type = SQ_BASE_WQE_TYPE_LOCAL_INVALID;
  472. }
  473. if (qp->scq)
  474. req.scq_cid = cpu_to_le32(qp->scq->id);
  475. qp_flags |= CMDQ_CREATE_QP_QP_FLAGS_RESERVED_LKEY_ENABLE;
  476. qp_flags |= CMDQ_CREATE_QP_QP_FLAGS_FR_PMR_ENABLED;
  477. if (qp->sig_type)
  478. qp_flags |= CMDQ_CREATE_QP_QP_FLAGS_FORCE_COMPLETION;
  479. /* RQ */
  480. if (rq->max_wqe) {
  481. rq->hwq.max_elements = rq->max_wqe;
  482. rc = bnxt_qplib_alloc_init_hwq(res->pdev, &rq->hwq, rq->sglist,
  483. rq->nmap, &rq->hwq.max_elements,
  484. BNXT_QPLIB_MAX_RQE_ENTRY_SIZE, 0,
  485. PAGE_SIZE, HWQ_TYPE_QUEUE);
  486. if (rc)
  487. goto fail_sq;
  488. rq->swq = kcalloc(rq->hwq.max_elements, sizeof(*rq->swq),
  489. GFP_KERNEL);
  490. if (!rq->swq) {
  491. rc = -ENOMEM;
  492. goto fail_rq;
  493. }
  494. pbl = &rq->hwq.pbl[PBL_LVL_0];
  495. req.rq_pbl = cpu_to_le64(pbl->pg_map_arr[0]);
  496. req.rq_pg_size_rq_lvl =
  497. ((rq->hwq.level & CMDQ_CREATE_QP_RQ_LVL_MASK) <<
  498. CMDQ_CREATE_QP_RQ_LVL_SFT) |
  499. (pbl->pg_size == ROCE_PG_SIZE_4K ?
  500. CMDQ_CREATE_QP_RQ_PG_SIZE_PG_4K :
  501. pbl->pg_size == ROCE_PG_SIZE_8K ?
  502. CMDQ_CREATE_QP_RQ_PG_SIZE_PG_8K :
  503. pbl->pg_size == ROCE_PG_SIZE_64K ?
  504. CMDQ_CREATE_QP_RQ_PG_SIZE_PG_64K :
  505. pbl->pg_size == ROCE_PG_SIZE_2M ?
  506. CMDQ_CREATE_QP_RQ_PG_SIZE_PG_2M :
  507. pbl->pg_size == ROCE_PG_SIZE_8M ?
  508. CMDQ_CREATE_QP_RQ_PG_SIZE_PG_8M :
  509. pbl->pg_size == ROCE_PG_SIZE_1G ?
  510. CMDQ_CREATE_QP_RQ_PG_SIZE_PG_1G :
  511. CMDQ_CREATE_QP_RQ_PG_SIZE_PG_4K);
  512. }
  513. if (qp->rcq)
  514. req.rcq_cid = cpu_to_le32(qp->rcq->id);
  515. req.qp_flags = cpu_to_le32(qp_flags);
  516. req.sq_size = cpu_to_le32(sq->hwq.max_elements);
  517. req.rq_size = cpu_to_le32(rq->hwq.max_elements);
  518. qp->sq_hdr_buf = NULL;
  519. qp->rq_hdr_buf = NULL;
  520. rc = bnxt_qplib_alloc_qp_hdr_buf(res, qp);
  521. if (rc)
  522. goto fail_rq;
  523. /* CTRL-22434: Irrespective of the requested SGE count on the SQ
  524. * always create the QP with max send sges possible if the requested
  525. * inline size is greater than 0.
  526. */
  527. max_ssge = qp->max_inline_data ? 6 : sq->max_sge;
  528. req.sq_fwo_sq_sge = cpu_to_le16(
  529. ((max_ssge & CMDQ_CREATE_QP_SQ_SGE_MASK)
  530. << CMDQ_CREATE_QP_SQ_SGE_SFT) | 0);
  531. req.rq_fwo_rq_sge = cpu_to_le16(
  532. ((rq->max_sge & CMDQ_CREATE_QP_RQ_SGE_MASK)
  533. << CMDQ_CREATE_QP_RQ_SGE_SFT) | 0);
  534. /* ORRQ and IRRQ */
  535. if (psn_sz) {
  536. xrrq = &qp->orrq;
  537. xrrq->max_elements =
  538. ORD_LIMIT_TO_ORRQ_SLOTS(qp->max_rd_atomic);
  539. req_size = xrrq->max_elements *
  540. BNXT_QPLIB_MAX_ORRQE_ENTRY_SIZE + PAGE_SIZE - 1;
  541. req_size &= ~(PAGE_SIZE - 1);
  542. rc = bnxt_qplib_alloc_init_hwq(res->pdev, xrrq, NULL, 0,
  543. &xrrq->max_elements,
  544. BNXT_QPLIB_MAX_ORRQE_ENTRY_SIZE,
  545. 0, req_size, HWQ_TYPE_CTX);
  546. if (rc)
  547. goto fail_buf_free;
  548. pbl = &xrrq->pbl[PBL_LVL_0];
  549. req.orrq_addr = cpu_to_le64(pbl->pg_map_arr[0]);
  550. xrrq = &qp->irrq;
  551. xrrq->max_elements = IRD_LIMIT_TO_IRRQ_SLOTS(
  552. qp->max_dest_rd_atomic);
  553. req_size = xrrq->max_elements *
  554. BNXT_QPLIB_MAX_IRRQE_ENTRY_SIZE + PAGE_SIZE - 1;
  555. req_size &= ~(PAGE_SIZE - 1);
  556. rc = bnxt_qplib_alloc_init_hwq(res->pdev, xrrq, NULL, 0,
  557. &xrrq->max_elements,
  558. BNXT_QPLIB_MAX_IRRQE_ENTRY_SIZE,
  559. 0, req_size, HWQ_TYPE_CTX);
  560. if (rc)
  561. goto fail_orrq;
  562. pbl = &xrrq->pbl[PBL_LVL_0];
  563. req.irrq_addr = cpu_to_le64(pbl->pg_map_arr[0]);
  564. }
  565. req.pd_id = cpu_to_le32(qp->pd->id);
  566. resp = (struct creq_create_qp_resp *)
  567. bnxt_qplib_rcfw_send_message(rcfw, (void *)&req,
  568. NULL, 0);
  569. if (!resp) {
  570. dev_err(&rcfw->pdev->dev, "QPLIB: FP: CREATE_QP send failed");
  571. rc = -EINVAL;
  572. goto fail;
  573. }
  574. if (!bnxt_qplib_rcfw_wait_for_resp(rcfw, le16_to_cpu(req.cookie))) {
  575. /* Cmd timed out */
  576. dev_err(&rcfw->pdev->dev, "QPLIB: FP: CREATE_QP timed out");
  577. rc = -ETIMEDOUT;
  578. goto fail;
  579. }
  580. if (resp->status ||
  581. le16_to_cpu(resp->cookie) != le16_to_cpu(req.cookie)) {
  582. dev_err(&rcfw->pdev->dev, "QPLIB: FP: CREATE_QP failed ");
  583. dev_err(&rcfw->pdev->dev,
  584. "QPLIB: with status 0x%x cmdq 0x%x resp 0x%x",
  585. resp->status, le16_to_cpu(req.cookie),
  586. le16_to_cpu(resp->cookie));
  587. rc = -EINVAL;
  588. goto fail;
  589. }
  590. qp->id = le32_to_cpu(resp->xid);
  591. qp->cur_qp_state = CMDQ_MODIFY_QP_NEW_STATE_RESET;
  592. sq->flush_in_progress = false;
  593. rq->flush_in_progress = false;
  594. return 0;
  595. fail:
  596. if (qp->irrq.max_elements)
  597. bnxt_qplib_free_hwq(res->pdev, &qp->irrq);
  598. fail_orrq:
  599. if (qp->orrq.max_elements)
  600. bnxt_qplib_free_hwq(res->pdev, &qp->orrq);
  601. fail_buf_free:
  602. bnxt_qplib_free_qp_hdr_buf(res, qp);
  603. fail_rq:
  604. bnxt_qplib_free_hwq(res->pdev, &rq->hwq);
  605. kfree(rq->swq);
  606. fail_sq:
  607. bnxt_qplib_free_hwq(res->pdev, &sq->hwq);
  608. kfree(sq->swq);
  609. exit:
  610. return rc;
  611. }
  612. static void __modify_flags_from_init_state(struct bnxt_qplib_qp *qp)
  613. {
  614. switch (qp->state) {
  615. case CMDQ_MODIFY_QP_NEW_STATE_RTR:
  616. /* INIT->RTR, configure the path_mtu to the default
  617. * 2048 if not being requested
  618. */
  619. if (!(qp->modify_flags &
  620. CMDQ_MODIFY_QP_MODIFY_MASK_PATH_MTU)) {
  621. qp->modify_flags |=
  622. CMDQ_MODIFY_QP_MODIFY_MASK_PATH_MTU;
  623. qp->path_mtu =
  624. CMDQ_MODIFY_QP_PATH_MTU_MTU_2048;
  625. }
  626. qp->modify_flags &=
  627. ~CMDQ_MODIFY_QP_MODIFY_MASK_VLAN_ID;
  628. /* Bono FW require the max_dest_rd_atomic to be >= 1 */
  629. if (qp->max_dest_rd_atomic < 1)
  630. qp->max_dest_rd_atomic = 1;
  631. qp->modify_flags &= ~CMDQ_MODIFY_QP_MODIFY_MASK_SRC_MAC;
  632. /* Bono FW 20.6.5 requires SGID_INDEX configuration */
  633. if (!(qp->modify_flags &
  634. CMDQ_MODIFY_QP_MODIFY_MASK_SGID_INDEX)) {
  635. qp->modify_flags |=
  636. CMDQ_MODIFY_QP_MODIFY_MASK_SGID_INDEX;
  637. qp->ah.sgid_index = 0;
  638. }
  639. break;
  640. default:
  641. break;
  642. }
  643. }
  644. static void __modify_flags_from_rtr_state(struct bnxt_qplib_qp *qp)
  645. {
  646. switch (qp->state) {
  647. case CMDQ_MODIFY_QP_NEW_STATE_RTS:
  648. /* Bono FW requires the max_rd_atomic to be >= 1 */
  649. if (qp->max_rd_atomic < 1)
  650. qp->max_rd_atomic = 1;
  651. /* Bono FW does not allow PKEY_INDEX,
  652. * DGID, FLOW_LABEL, SGID_INDEX, HOP_LIMIT,
  653. * TRAFFIC_CLASS, DEST_MAC, PATH_MTU, RQ_PSN,
  654. * MIN_RNR_TIMER, MAX_DEST_RD_ATOMIC, DEST_QP_ID
  655. * modification
  656. */
  657. qp->modify_flags &=
  658. ~(CMDQ_MODIFY_QP_MODIFY_MASK_PKEY |
  659. CMDQ_MODIFY_QP_MODIFY_MASK_DGID |
  660. CMDQ_MODIFY_QP_MODIFY_MASK_FLOW_LABEL |
  661. CMDQ_MODIFY_QP_MODIFY_MASK_SGID_INDEX |
  662. CMDQ_MODIFY_QP_MODIFY_MASK_HOP_LIMIT |
  663. CMDQ_MODIFY_QP_MODIFY_MASK_TRAFFIC_CLASS |
  664. CMDQ_MODIFY_QP_MODIFY_MASK_DEST_MAC |
  665. CMDQ_MODIFY_QP_MODIFY_MASK_PATH_MTU |
  666. CMDQ_MODIFY_QP_MODIFY_MASK_RQ_PSN |
  667. CMDQ_MODIFY_QP_MODIFY_MASK_MIN_RNR_TIMER |
  668. CMDQ_MODIFY_QP_MODIFY_MASK_MAX_DEST_RD_ATOMIC |
  669. CMDQ_MODIFY_QP_MODIFY_MASK_DEST_QP_ID);
  670. break;
  671. default:
  672. break;
  673. }
  674. }
  675. static void __filter_modify_flags(struct bnxt_qplib_qp *qp)
  676. {
  677. switch (qp->cur_qp_state) {
  678. case CMDQ_MODIFY_QP_NEW_STATE_RESET:
  679. break;
  680. case CMDQ_MODIFY_QP_NEW_STATE_INIT:
  681. __modify_flags_from_init_state(qp);
  682. break;
  683. case CMDQ_MODIFY_QP_NEW_STATE_RTR:
  684. __modify_flags_from_rtr_state(qp);
  685. break;
  686. case CMDQ_MODIFY_QP_NEW_STATE_RTS:
  687. break;
  688. case CMDQ_MODIFY_QP_NEW_STATE_SQD:
  689. break;
  690. case CMDQ_MODIFY_QP_NEW_STATE_SQE:
  691. break;
  692. case CMDQ_MODIFY_QP_NEW_STATE_ERR:
  693. break;
  694. default:
  695. break;
  696. }
  697. }
  698. int bnxt_qplib_modify_qp(struct bnxt_qplib_res *res, struct bnxt_qplib_qp *qp)
  699. {
  700. struct bnxt_qplib_rcfw *rcfw = res->rcfw;
  701. struct cmdq_modify_qp req;
  702. struct creq_modify_qp_resp *resp;
  703. u16 cmd_flags = 0, pkey;
  704. u32 temp32[4];
  705. u32 bmask;
  706. RCFW_CMD_PREP(req, MODIFY_QP, cmd_flags);
  707. /* Filter out the qp_attr_mask based on the state->new transition */
  708. __filter_modify_flags(qp);
  709. bmask = qp->modify_flags;
  710. req.modify_mask = cpu_to_le32(qp->modify_flags);
  711. req.qp_cid = cpu_to_le32(qp->id);
  712. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_STATE) {
  713. req.network_type_en_sqd_async_notify_new_state =
  714. (qp->state & CMDQ_MODIFY_QP_NEW_STATE_MASK) |
  715. (qp->en_sqd_async_notify ?
  716. CMDQ_MODIFY_QP_EN_SQD_ASYNC_NOTIFY : 0);
  717. }
  718. req.network_type_en_sqd_async_notify_new_state |= qp->nw_type;
  719. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_ACCESS)
  720. req.access = qp->access;
  721. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_PKEY) {
  722. if (!bnxt_qplib_get_pkey(res, &res->pkey_tbl,
  723. qp->pkey_index, &pkey))
  724. req.pkey = cpu_to_le16(pkey);
  725. }
  726. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_QKEY)
  727. req.qkey = cpu_to_le32(qp->qkey);
  728. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_DGID) {
  729. memcpy(temp32, qp->ah.dgid.data, sizeof(struct bnxt_qplib_gid));
  730. req.dgid[0] = cpu_to_le32(temp32[0]);
  731. req.dgid[1] = cpu_to_le32(temp32[1]);
  732. req.dgid[2] = cpu_to_le32(temp32[2]);
  733. req.dgid[3] = cpu_to_le32(temp32[3]);
  734. }
  735. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_FLOW_LABEL)
  736. req.flow_label = cpu_to_le32(qp->ah.flow_label);
  737. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_SGID_INDEX)
  738. req.sgid_index = cpu_to_le16(res->sgid_tbl.hw_id
  739. [qp->ah.sgid_index]);
  740. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_HOP_LIMIT)
  741. req.hop_limit = qp->ah.hop_limit;
  742. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_TRAFFIC_CLASS)
  743. req.traffic_class = qp->ah.traffic_class;
  744. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_DEST_MAC)
  745. memcpy(req.dest_mac, qp->ah.dmac, 6);
  746. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_PATH_MTU)
  747. req.path_mtu = qp->path_mtu;
  748. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_TIMEOUT)
  749. req.timeout = qp->timeout;
  750. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_RETRY_CNT)
  751. req.retry_cnt = qp->retry_cnt;
  752. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_RNR_RETRY)
  753. req.rnr_retry = qp->rnr_retry;
  754. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_MIN_RNR_TIMER)
  755. req.min_rnr_timer = qp->min_rnr_timer;
  756. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_RQ_PSN)
  757. req.rq_psn = cpu_to_le32(qp->rq.psn);
  758. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_SQ_PSN)
  759. req.sq_psn = cpu_to_le32(qp->sq.psn);
  760. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_MAX_RD_ATOMIC)
  761. req.max_rd_atomic =
  762. ORD_LIMIT_TO_ORRQ_SLOTS(qp->max_rd_atomic);
  763. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_MAX_DEST_RD_ATOMIC)
  764. req.max_dest_rd_atomic =
  765. IRD_LIMIT_TO_IRRQ_SLOTS(qp->max_dest_rd_atomic);
  766. req.sq_size = cpu_to_le32(qp->sq.hwq.max_elements);
  767. req.rq_size = cpu_to_le32(qp->rq.hwq.max_elements);
  768. req.sq_sge = cpu_to_le16(qp->sq.max_sge);
  769. req.rq_sge = cpu_to_le16(qp->rq.max_sge);
  770. req.max_inline_data = cpu_to_le32(qp->max_inline_data);
  771. if (bmask & CMDQ_MODIFY_QP_MODIFY_MASK_DEST_QP_ID)
  772. req.dest_qp_id = cpu_to_le32(qp->dest_qpn);
  773. req.vlan_pcp_vlan_dei_vlan_id = cpu_to_le16(qp->vlan_id);
  774. resp = (struct creq_modify_qp_resp *)
  775. bnxt_qplib_rcfw_send_message(rcfw, (void *)&req,
  776. NULL, 0);
  777. if (!resp) {
  778. dev_err(&rcfw->pdev->dev, "QPLIB: FP: MODIFY_QP send failed");
  779. return -EINVAL;
  780. }
  781. if (!bnxt_qplib_rcfw_wait_for_resp(rcfw, le16_to_cpu(req.cookie))) {
  782. /* Cmd timed out */
  783. dev_err(&rcfw->pdev->dev, "QPLIB: FP: MODIFY_QP timed out");
  784. return -ETIMEDOUT;
  785. }
  786. if (resp->status ||
  787. le16_to_cpu(resp->cookie) != le16_to_cpu(req.cookie)) {
  788. dev_err(&rcfw->pdev->dev, "QPLIB: FP: MODIFY_QP failed ");
  789. dev_err(&rcfw->pdev->dev,
  790. "QPLIB: with status 0x%x cmdq 0x%x resp 0x%x",
  791. resp->status, le16_to_cpu(req.cookie),
  792. le16_to_cpu(resp->cookie));
  793. return -EINVAL;
  794. }
  795. qp->cur_qp_state = qp->state;
  796. return 0;
  797. }
  798. int bnxt_qplib_query_qp(struct bnxt_qplib_res *res, struct bnxt_qplib_qp *qp)
  799. {
  800. struct bnxt_qplib_rcfw *rcfw = res->rcfw;
  801. struct cmdq_query_qp req;
  802. struct creq_query_qp_resp *resp;
  803. struct creq_query_qp_resp_sb *sb;
  804. u16 cmd_flags = 0;
  805. u32 temp32[4];
  806. int i;
  807. RCFW_CMD_PREP(req, QUERY_QP, cmd_flags);
  808. req.qp_cid = cpu_to_le32(qp->id);
  809. req.resp_size = sizeof(*sb) / BNXT_QPLIB_CMDQE_UNITS;
  810. resp = (struct creq_query_qp_resp *)
  811. bnxt_qplib_rcfw_send_message(rcfw, (void *)&req,
  812. (void **)&sb, 0);
  813. if (!resp) {
  814. dev_err(&rcfw->pdev->dev, "QPLIB: FP: QUERY_QP send failed");
  815. return -EINVAL;
  816. }
  817. if (!bnxt_qplib_rcfw_wait_for_resp(rcfw, le16_to_cpu(req.cookie))) {
  818. /* Cmd timed out */
  819. dev_err(&rcfw->pdev->dev, "QPLIB: FP: QUERY_QP timed out");
  820. return -ETIMEDOUT;
  821. }
  822. if (resp->status ||
  823. le16_to_cpu(resp->cookie) != le16_to_cpu(req.cookie)) {
  824. dev_err(&rcfw->pdev->dev, "QPLIB: FP: QUERY_QP failed ");
  825. dev_err(&rcfw->pdev->dev,
  826. "QPLIB: with status 0x%x cmdq 0x%x resp 0x%x",
  827. resp->status, le16_to_cpu(req.cookie),
  828. le16_to_cpu(resp->cookie));
  829. return -EINVAL;
  830. }
  831. /* Extract the context from the side buffer */
  832. qp->state = sb->en_sqd_async_notify_state &
  833. CREQ_QUERY_QP_RESP_SB_STATE_MASK;
  834. qp->en_sqd_async_notify = sb->en_sqd_async_notify_state &
  835. CREQ_QUERY_QP_RESP_SB_EN_SQD_ASYNC_NOTIFY ?
  836. true : false;
  837. qp->access = sb->access;
  838. qp->pkey_index = le16_to_cpu(sb->pkey);
  839. qp->qkey = le32_to_cpu(sb->qkey);
  840. temp32[0] = le32_to_cpu(sb->dgid[0]);
  841. temp32[1] = le32_to_cpu(sb->dgid[1]);
  842. temp32[2] = le32_to_cpu(sb->dgid[2]);
  843. temp32[3] = le32_to_cpu(sb->dgid[3]);
  844. memcpy(qp->ah.dgid.data, temp32, sizeof(qp->ah.dgid.data));
  845. qp->ah.flow_label = le32_to_cpu(sb->flow_label);
  846. qp->ah.sgid_index = 0;
  847. for (i = 0; i < res->sgid_tbl.max; i++) {
  848. if (res->sgid_tbl.hw_id[i] == le16_to_cpu(sb->sgid_index)) {
  849. qp->ah.sgid_index = i;
  850. break;
  851. }
  852. }
  853. if (i == res->sgid_tbl.max)
  854. dev_warn(&res->pdev->dev, "QPLIB: SGID not found??");
  855. qp->ah.hop_limit = sb->hop_limit;
  856. qp->ah.traffic_class = sb->traffic_class;
  857. memcpy(qp->ah.dmac, sb->dest_mac, 6);
  858. qp->ah.vlan_id = (le16_to_cpu(sb->path_mtu_dest_vlan_id) &
  859. CREQ_QUERY_QP_RESP_SB_VLAN_ID_MASK) >>
  860. CREQ_QUERY_QP_RESP_SB_VLAN_ID_SFT;
  861. qp->path_mtu = (le16_to_cpu(sb->path_mtu_dest_vlan_id) &
  862. CREQ_QUERY_QP_RESP_SB_PATH_MTU_MASK) >>
  863. CREQ_QUERY_QP_RESP_SB_PATH_MTU_SFT;
  864. qp->timeout = sb->timeout;
  865. qp->retry_cnt = sb->retry_cnt;
  866. qp->rnr_retry = sb->rnr_retry;
  867. qp->min_rnr_timer = sb->min_rnr_timer;
  868. qp->rq.psn = le32_to_cpu(sb->rq_psn);
  869. qp->max_rd_atomic = ORRQ_SLOTS_TO_ORD_LIMIT(sb->max_rd_atomic);
  870. qp->sq.psn = le32_to_cpu(sb->sq_psn);
  871. qp->max_dest_rd_atomic =
  872. IRRQ_SLOTS_TO_IRD_LIMIT(sb->max_dest_rd_atomic);
  873. qp->sq.max_wqe = qp->sq.hwq.max_elements;
  874. qp->rq.max_wqe = qp->rq.hwq.max_elements;
  875. qp->sq.max_sge = le16_to_cpu(sb->sq_sge);
  876. qp->rq.max_sge = le16_to_cpu(sb->rq_sge);
  877. qp->max_inline_data = le32_to_cpu(sb->max_inline_data);
  878. qp->dest_qpn = le32_to_cpu(sb->dest_qp_id);
  879. memcpy(qp->smac, sb->src_mac, 6);
  880. qp->vlan_id = le16_to_cpu(sb->vlan_pcp_vlan_dei_vlan_id);
  881. return 0;
  882. }
  883. static void __clean_cq(struct bnxt_qplib_cq *cq, u64 qp)
  884. {
  885. struct bnxt_qplib_hwq *cq_hwq = &cq->hwq;
  886. struct cq_base *hw_cqe, **hw_cqe_ptr;
  887. int i;
  888. for (i = 0; i < cq_hwq->max_elements; i++) {
  889. hw_cqe_ptr = (struct cq_base **)cq_hwq->pbl_ptr;
  890. hw_cqe = &hw_cqe_ptr[CQE_PG(i)][CQE_IDX(i)];
  891. if (!CQE_CMP_VALID(hw_cqe, i, cq_hwq->max_elements))
  892. continue;
  893. switch (hw_cqe->cqe_type_toggle & CQ_BASE_CQE_TYPE_MASK) {
  894. case CQ_BASE_CQE_TYPE_REQ:
  895. case CQ_BASE_CQE_TYPE_TERMINAL:
  896. {
  897. struct cq_req *cqe = (struct cq_req *)hw_cqe;
  898. if (qp == le64_to_cpu(cqe->qp_handle))
  899. cqe->qp_handle = 0;
  900. break;
  901. }
  902. case CQ_BASE_CQE_TYPE_RES_RC:
  903. case CQ_BASE_CQE_TYPE_RES_UD:
  904. case CQ_BASE_CQE_TYPE_RES_RAWETH_QP1:
  905. {
  906. struct cq_res_rc *cqe = (struct cq_res_rc *)hw_cqe;
  907. if (qp == le64_to_cpu(cqe->qp_handle))
  908. cqe->qp_handle = 0;
  909. break;
  910. }
  911. default:
  912. break;
  913. }
  914. }
  915. }
  916. int bnxt_qplib_destroy_qp(struct bnxt_qplib_res *res,
  917. struct bnxt_qplib_qp *qp)
  918. {
  919. struct bnxt_qplib_rcfw *rcfw = res->rcfw;
  920. struct cmdq_destroy_qp req;
  921. struct creq_destroy_qp_resp *resp;
  922. unsigned long flags;
  923. u16 cmd_flags = 0;
  924. RCFW_CMD_PREP(req, DESTROY_QP, cmd_flags);
  925. req.qp_cid = cpu_to_le32(qp->id);
  926. resp = (struct creq_destroy_qp_resp *)
  927. bnxt_qplib_rcfw_send_message(rcfw, (void *)&req,
  928. NULL, 0);
  929. if (!resp) {
  930. dev_err(&rcfw->pdev->dev, "QPLIB: FP: DESTROY_QP send failed");
  931. return -EINVAL;
  932. }
  933. if (!bnxt_qplib_rcfw_wait_for_resp(rcfw, le16_to_cpu(req.cookie))) {
  934. /* Cmd timed out */
  935. dev_err(&rcfw->pdev->dev, "QPLIB: FP: DESTROY_QP timed out");
  936. return -ETIMEDOUT;
  937. }
  938. if (resp->status ||
  939. le16_to_cpu(resp->cookie) != le16_to_cpu(req.cookie)) {
  940. dev_err(&rcfw->pdev->dev, "QPLIB: FP: DESTROY_QP failed ");
  941. dev_err(&rcfw->pdev->dev,
  942. "QPLIB: with status 0x%x cmdq 0x%x resp 0x%x",
  943. resp->status, le16_to_cpu(req.cookie),
  944. le16_to_cpu(resp->cookie));
  945. return -EINVAL;
  946. }
  947. /* Must walk the associated CQs to nullified the QP ptr */
  948. spin_lock_irqsave(&qp->scq->hwq.lock, flags);
  949. __clean_cq(qp->scq, (u64)(unsigned long)qp);
  950. if (qp->rcq && qp->rcq != qp->scq) {
  951. spin_lock(&qp->rcq->hwq.lock);
  952. __clean_cq(qp->rcq, (u64)(unsigned long)qp);
  953. spin_unlock(&qp->rcq->hwq.lock);
  954. }
  955. spin_unlock_irqrestore(&qp->scq->hwq.lock, flags);
  956. bnxt_qplib_free_qp_hdr_buf(res, qp);
  957. bnxt_qplib_free_hwq(res->pdev, &qp->sq.hwq);
  958. kfree(qp->sq.swq);
  959. bnxt_qplib_free_hwq(res->pdev, &qp->rq.hwq);
  960. kfree(qp->rq.swq);
  961. if (qp->irrq.max_elements)
  962. bnxt_qplib_free_hwq(res->pdev, &qp->irrq);
  963. if (qp->orrq.max_elements)
  964. bnxt_qplib_free_hwq(res->pdev, &qp->orrq);
  965. return 0;
  966. }
  967. void *bnxt_qplib_get_qp1_sq_buf(struct bnxt_qplib_qp *qp,
  968. struct bnxt_qplib_sge *sge)
  969. {
  970. struct bnxt_qplib_q *sq = &qp->sq;
  971. u32 sw_prod;
  972. memset(sge, 0, sizeof(*sge));
  973. if (qp->sq_hdr_buf) {
  974. sw_prod = HWQ_CMP(sq->hwq.prod, &sq->hwq);
  975. sge->addr = (dma_addr_t)(qp->sq_hdr_buf_map +
  976. sw_prod * qp->sq_hdr_buf_size);
  977. sge->lkey = 0xFFFFFFFF;
  978. sge->size = qp->sq_hdr_buf_size;
  979. return qp->sq_hdr_buf + sw_prod * sge->size;
  980. }
  981. return NULL;
  982. }
  983. u32 bnxt_qplib_get_rq_prod_index(struct bnxt_qplib_qp *qp)
  984. {
  985. struct bnxt_qplib_q *rq = &qp->rq;
  986. return HWQ_CMP(rq->hwq.prod, &rq->hwq);
  987. }
  988. dma_addr_t bnxt_qplib_get_qp_buf_from_index(struct bnxt_qplib_qp *qp, u32 index)
  989. {
  990. return (qp->rq_hdr_buf_map + index * qp->rq_hdr_buf_size);
  991. }
  992. void *bnxt_qplib_get_qp1_rq_buf(struct bnxt_qplib_qp *qp,
  993. struct bnxt_qplib_sge *sge)
  994. {
  995. struct bnxt_qplib_q *rq = &qp->rq;
  996. u32 sw_prod;
  997. memset(sge, 0, sizeof(*sge));
  998. if (qp->rq_hdr_buf) {
  999. sw_prod = HWQ_CMP(rq->hwq.prod, &rq->hwq);
  1000. sge->addr = (dma_addr_t)(qp->rq_hdr_buf_map +
  1001. sw_prod * qp->rq_hdr_buf_size);
  1002. sge->lkey = 0xFFFFFFFF;
  1003. sge->size = qp->rq_hdr_buf_size;
  1004. return qp->rq_hdr_buf + sw_prod * sge->size;
  1005. }
  1006. return NULL;
  1007. }
  1008. void bnxt_qplib_post_send_db(struct bnxt_qplib_qp *qp)
  1009. {
  1010. struct bnxt_qplib_q *sq = &qp->sq;
  1011. struct dbr_dbr db_msg = { 0 };
  1012. u32 sw_prod;
  1013. sw_prod = HWQ_CMP(sq->hwq.prod, &sq->hwq);
  1014. db_msg.index = cpu_to_le32((sw_prod << DBR_DBR_INDEX_SFT) &
  1015. DBR_DBR_INDEX_MASK);
  1016. db_msg.type_xid =
  1017. cpu_to_le32(((qp->id << DBR_DBR_XID_SFT) & DBR_DBR_XID_MASK) |
  1018. DBR_DBR_TYPE_SQ);
  1019. /* Flush all the WQE writes to HW */
  1020. wmb();
  1021. __iowrite64_copy(qp->dpi->dbr, &db_msg, sizeof(db_msg) / sizeof(u64));
  1022. }
  1023. int bnxt_qplib_post_send(struct bnxt_qplib_qp *qp,
  1024. struct bnxt_qplib_swqe *wqe)
  1025. {
  1026. struct bnxt_qplib_q *sq = &qp->sq;
  1027. struct bnxt_qplib_swq *swq;
  1028. struct sq_send *hw_sq_send_hdr, **hw_sq_send_ptr;
  1029. struct sq_sge *hw_sge;
  1030. u32 sw_prod;
  1031. u8 wqe_size16;
  1032. int i, rc = 0, data_len = 0, pkt_num = 0;
  1033. __le32 temp32;
  1034. if (qp->state != CMDQ_MODIFY_QP_NEW_STATE_RTS) {
  1035. rc = -EINVAL;
  1036. goto done;
  1037. }
  1038. if (HWQ_CMP((sq->hwq.prod + 1), &sq->hwq) ==
  1039. HWQ_CMP(sq->hwq.cons, &sq->hwq)) {
  1040. rc = -ENOMEM;
  1041. goto done;
  1042. }
  1043. sw_prod = HWQ_CMP(sq->hwq.prod, &sq->hwq);
  1044. swq = &sq->swq[sw_prod];
  1045. swq->wr_id = wqe->wr_id;
  1046. swq->type = wqe->type;
  1047. swq->flags = wqe->flags;
  1048. if (qp->sig_type)
  1049. swq->flags |= SQ_SEND_FLAGS_SIGNAL_COMP;
  1050. swq->start_psn = sq->psn & BTH_PSN_MASK;
  1051. hw_sq_send_ptr = (struct sq_send **)sq->hwq.pbl_ptr;
  1052. hw_sq_send_hdr = &hw_sq_send_ptr[get_sqe_pg(sw_prod)]
  1053. [get_sqe_idx(sw_prod)];
  1054. memset(hw_sq_send_hdr, 0, BNXT_QPLIB_MAX_SQE_ENTRY_SIZE);
  1055. if (wqe->flags & BNXT_QPLIB_SWQE_FLAGS_INLINE) {
  1056. /* Copy the inline data */
  1057. if (wqe->inline_len > BNXT_QPLIB_SWQE_MAX_INLINE_LENGTH) {
  1058. dev_warn(&sq->hwq.pdev->dev,
  1059. "QPLIB: Inline data length > 96 detected");
  1060. data_len = BNXT_QPLIB_SWQE_MAX_INLINE_LENGTH;
  1061. } else {
  1062. data_len = wqe->inline_len;
  1063. }
  1064. memcpy(hw_sq_send_hdr->data, wqe->inline_data, data_len);
  1065. wqe_size16 = (data_len + 15) >> 4;
  1066. } else {
  1067. for (i = 0, hw_sge = (struct sq_sge *)hw_sq_send_hdr->data;
  1068. i < wqe->num_sge; i++, hw_sge++) {
  1069. hw_sge->va_or_pa = cpu_to_le64(wqe->sg_list[i].addr);
  1070. hw_sge->l_key = cpu_to_le32(wqe->sg_list[i].lkey);
  1071. hw_sge->size = cpu_to_le32(wqe->sg_list[i].size);
  1072. data_len += wqe->sg_list[i].size;
  1073. }
  1074. /* Each SGE entry = 1 WQE size16 */
  1075. wqe_size16 = wqe->num_sge;
  1076. }
  1077. /* Specifics */
  1078. switch (wqe->type) {
  1079. case BNXT_QPLIB_SWQE_TYPE_SEND:
  1080. if (qp->type == CMDQ_CREATE_QP1_TYPE_GSI) {
  1081. /* Assemble info for Raw Ethertype QPs */
  1082. struct sq_send_raweth_qp1 *sqe =
  1083. (struct sq_send_raweth_qp1 *)hw_sq_send_hdr;
  1084. sqe->wqe_type = wqe->type;
  1085. sqe->flags = wqe->flags;
  1086. sqe->wqe_size = wqe_size16 +
  1087. ((offsetof(typeof(*sqe), data) + 15) >> 4);
  1088. sqe->cfa_action = cpu_to_le16(wqe->rawqp1.cfa_action);
  1089. sqe->lflags = cpu_to_le16(wqe->rawqp1.lflags);
  1090. sqe->length = cpu_to_le32(data_len);
  1091. sqe->cfa_meta = cpu_to_le32((wqe->rawqp1.cfa_meta &
  1092. SQ_SEND_RAWETH_QP1_CFA_META_VLAN_VID_MASK) <<
  1093. SQ_SEND_RAWETH_QP1_CFA_META_VLAN_VID_SFT);
  1094. break;
  1095. }
  1096. /* else, just fall thru */
  1097. case BNXT_QPLIB_SWQE_TYPE_SEND_WITH_IMM:
  1098. case BNXT_QPLIB_SWQE_TYPE_SEND_WITH_INV:
  1099. {
  1100. struct sq_send *sqe = (struct sq_send *)hw_sq_send_hdr;
  1101. sqe->wqe_type = wqe->type;
  1102. sqe->flags = wqe->flags;
  1103. sqe->wqe_size = wqe_size16 +
  1104. ((offsetof(typeof(*sqe), data) + 15) >> 4);
  1105. sqe->inv_key_or_imm_data = cpu_to_le32(
  1106. wqe->send.inv_key);
  1107. if (qp->type == CMDQ_CREATE_QP_TYPE_UD) {
  1108. sqe->q_key = cpu_to_le32(wqe->send.q_key);
  1109. sqe->dst_qp = cpu_to_le32(
  1110. wqe->send.dst_qp & SQ_SEND_DST_QP_MASK);
  1111. sqe->length = cpu_to_le32(data_len);
  1112. sqe->avid = cpu_to_le32(wqe->send.avid &
  1113. SQ_SEND_AVID_MASK);
  1114. sq->psn = (sq->psn + 1) & BTH_PSN_MASK;
  1115. } else {
  1116. sqe->length = cpu_to_le32(data_len);
  1117. sqe->dst_qp = 0;
  1118. sqe->avid = 0;
  1119. if (qp->mtu)
  1120. pkt_num = (data_len + qp->mtu - 1) / qp->mtu;
  1121. if (!pkt_num)
  1122. pkt_num = 1;
  1123. sq->psn = (sq->psn + pkt_num) & BTH_PSN_MASK;
  1124. }
  1125. break;
  1126. }
  1127. case BNXT_QPLIB_SWQE_TYPE_RDMA_WRITE:
  1128. case BNXT_QPLIB_SWQE_TYPE_RDMA_WRITE_WITH_IMM:
  1129. case BNXT_QPLIB_SWQE_TYPE_RDMA_READ:
  1130. {
  1131. struct sq_rdma *sqe = (struct sq_rdma *)hw_sq_send_hdr;
  1132. sqe->wqe_type = wqe->type;
  1133. sqe->flags = wqe->flags;
  1134. sqe->wqe_size = wqe_size16 +
  1135. ((offsetof(typeof(*sqe), data) + 15) >> 4);
  1136. sqe->imm_data = cpu_to_le32(wqe->rdma.inv_key);
  1137. sqe->length = cpu_to_le32((u32)data_len);
  1138. sqe->remote_va = cpu_to_le64(wqe->rdma.remote_va);
  1139. sqe->remote_key = cpu_to_le32(wqe->rdma.r_key);
  1140. if (qp->mtu)
  1141. pkt_num = (data_len + qp->mtu - 1) / qp->mtu;
  1142. if (!pkt_num)
  1143. pkt_num = 1;
  1144. sq->psn = (sq->psn + pkt_num) & BTH_PSN_MASK;
  1145. break;
  1146. }
  1147. case BNXT_QPLIB_SWQE_TYPE_ATOMIC_CMP_AND_SWP:
  1148. case BNXT_QPLIB_SWQE_TYPE_ATOMIC_FETCH_AND_ADD:
  1149. {
  1150. struct sq_atomic *sqe = (struct sq_atomic *)hw_sq_send_hdr;
  1151. sqe->wqe_type = wqe->type;
  1152. sqe->flags = wqe->flags;
  1153. sqe->remote_key = cpu_to_le32(wqe->atomic.r_key);
  1154. sqe->remote_va = cpu_to_le64(wqe->atomic.remote_va);
  1155. sqe->swap_data = cpu_to_le64(wqe->atomic.swap_data);
  1156. sqe->cmp_data = cpu_to_le64(wqe->atomic.cmp_data);
  1157. if (qp->mtu)
  1158. pkt_num = (data_len + qp->mtu - 1) / qp->mtu;
  1159. if (!pkt_num)
  1160. pkt_num = 1;
  1161. sq->psn = (sq->psn + pkt_num) & BTH_PSN_MASK;
  1162. break;
  1163. }
  1164. case BNXT_QPLIB_SWQE_TYPE_LOCAL_INV:
  1165. {
  1166. struct sq_localinvalidate *sqe =
  1167. (struct sq_localinvalidate *)hw_sq_send_hdr;
  1168. sqe->wqe_type = wqe->type;
  1169. sqe->flags = wqe->flags;
  1170. sqe->inv_l_key = cpu_to_le32(wqe->local_inv.inv_l_key);
  1171. break;
  1172. }
  1173. case BNXT_QPLIB_SWQE_TYPE_FAST_REG_MR:
  1174. {
  1175. struct sq_fr_pmr *sqe = (struct sq_fr_pmr *)hw_sq_send_hdr;
  1176. sqe->wqe_type = wqe->type;
  1177. sqe->flags = wqe->flags;
  1178. sqe->access_cntl = wqe->frmr.access_cntl |
  1179. SQ_FR_PMR_ACCESS_CNTL_LOCAL_WRITE;
  1180. sqe->zero_based_page_size_log =
  1181. (wqe->frmr.pg_sz_log & SQ_FR_PMR_PAGE_SIZE_LOG_MASK) <<
  1182. SQ_FR_PMR_PAGE_SIZE_LOG_SFT |
  1183. (wqe->frmr.zero_based ? SQ_FR_PMR_ZERO_BASED : 0);
  1184. sqe->l_key = cpu_to_le32(wqe->frmr.l_key);
  1185. temp32 = cpu_to_le32(wqe->frmr.length);
  1186. memcpy(sqe->length, &temp32, sizeof(wqe->frmr.length));
  1187. sqe->numlevels_pbl_page_size_log =
  1188. ((wqe->frmr.pbl_pg_sz_log <<
  1189. SQ_FR_PMR_PBL_PAGE_SIZE_LOG_SFT) &
  1190. SQ_FR_PMR_PBL_PAGE_SIZE_LOG_MASK) |
  1191. ((wqe->frmr.levels << SQ_FR_PMR_NUMLEVELS_SFT) &
  1192. SQ_FR_PMR_NUMLEVELS_MASK);
  1193. for (i = 0; i < wqe->frmr.page_list_len; i++)
  1194. wqe->frmr.pbl_ptr[i] = cpu_to_le64(
  1195. wqe->frmr.page_list[i] |
  1196. PTU_PTE_VALID);
  1197. sqe->pblptr = cpu_to_le64(wqe->frmr.pbl_dma_ptr);
  1198. sqe->va = cpu_to_le64(wqe->frmr.va);
  1199. break;
  1200. }
  1201. case BNXT_QPLIB_SWQE_TYPE_BIND_MW:
  1202. {
  1203. struct sq_bind *sqe = (struct sq_bind *)hw_sq_send_hdr;
  1204. sqe->wqe_type = wqe->type;
  1205. sqe->flags = wqe->flags;
  1206. sqe->access_cntl = wqe->bind.access_cntl;
  1207. sqe->mw_type_zero_based = wqe->bind.mw_type |
  1208. (wqe->bind.zero_based ? SQ_BIND_ZERO_BASED : 0);
  1209. sqe->parent_l_key = cpu_to_le32(wqe->bind.parent_l_key);
  1210. sqe->l_key = cpu_to_le32(wqe->bind.r_key);
  1211. sqe->va = cpu_to_le64(wqe->bind.va);
  1212. temp32 = cpu_to_le32(wqe->bind.length);
  1213. memcpy(&sqe->length, &temp32, sizeof(wqe->bind.length));
  1214. break;
  1215. }
  1216. default:
  1217. /* Bad wqe, return error */
  1218. rc = -EINVAL;
  1219. goto done;
  1220. }
  1221. swq->next_psn = sq->psn & BTH_PSN_MASK;
  1222. if (swq->psn_search) {
  1223. swq->psn_search->opcode_start_psn = cpu_to_le32(
  1224. ((swq->start_psn << SQ_PSN_SEARCH_START_PSN_SFT) &
  1225. SQ_PSN_SEARCH_START_PSN_MASK) |
  1226. ((wqe->type << SQ_PSN_SEARCH_OPCODE_SFT) &
  1227. SQ_PSN_SEARCH_OPCODE_MASK));
  1228. swq->psn_search->flags_next_psn = cpu_to_le32(
  1229. ((swq->next_psn << SQ_PSN_SEARCH_NEXT_PSN_SFT) &
  1230. SQ_PSN_SEARCH_NEXT_PSN_MASK));
  1231. }
  1232. sq->hwq.prod++;
  1233. done:
  1234. return rc;
  1235. }
  1236. void bnxt_qplib_post_recv_db(struct bnxt_qplib_qp *qp)
  1237. {
  1238. struct bnxt_qplib_q *rq = &qp->rq;
  1239. struct dbr_dbr db_msg = { 0 };
  1240. u32 sw_prod;
  1241. sw_prod = HWQ_CMP(rq->hwq.prod, &rq->hwq);
  1242. db_msg.index = cpu_to_le32((sw_prod << DBR_DBR_INDEX_SFT) &
  1243. DBR_DBR_INDEX_MASK);
  1244. db_msg.type_xid =
  1245. cpu_to_le32(((qp->id << DBR_DBR_XID_SFT) & DBR_DBR_XID_MASK) |
  1246. DBR_DBR_TYPE_RQ);
  1247. /* Flush the writes to HW Rx WQE before the ringing Rx DB */
  1248. wmb();
  1249. __iowrite64_copy(qp->dpi->dbr, &db_msg, sizeof(db_msg) / sizeof(u64));
  1250. }
  1251. int bnxt_qplib_post_recv(struct bnxt_qplib_qp *qp,
  1252. struct bnxt_qplib_swqe *wqe)
  1253. {
  1254. struct bnxt_qplib_q *rq = &qp->rq;
  1255. struct rq_wqe *rqe, **rqe_ptr;
  1256. struct sq_sge *hw_sge;
  1257. u32 sw_prod;
  1258. int i, rc = 0;
  1259. if (qp->state == CMDQ_MODIFY_QP_NEW_STATE_ERR) {
  1260. dev_err(&rq->hwq.pdev->dev,
  1261. "QPLIB: FP: QP (0x%x) is in the 0x%x state",
  1262. qp->id, qp->state);
  1263. rc = -EINVAL;
  1264. goto done;
  1265. }
  1266. if (HWQ_CMP((rq->hwq.prod + 1), &rq->hwq) ==
  1267. HWQ_CMP(rq->hwq.cons, &rq->hwq)) {
  1268. dev_err(&rq->hwq.pdev->dev,
  1269. "QPLIB: FP: QP (0x%x) RQ is full!", qp->id);
  1270. rc = -EINVAL;
  1271. goto done;
  1272. }
  1273. sw_prod = HWQ_CMP(rq->hwq.prod, &rq->hwq);
  1274. rq->swq[sw_prod].wr_id = wqe->wr_id;
  1275. rqe_ptr = (struct rq_wqe **)rq->hwq.pbl_ptr;
  1276. rqe = &rqe_ptr[RQE_PG(sw_prod)][RQE_IDX(sw_prod)];
  1277. memset(rqe, 0, BNXT_QPLIB_MAX_RQE_ENTRY_SIZE);
  1278. /* Calculate wqe_size16 and data_len */
  1279. for (i = 0, hw_sge = (struct sq_sge *)rqe->data;
  1280. i < wqe->num_sge; i++, hw_sge++) {
  1281. hw_sge->va_or_pa = cpu_to_le64(wqe->sg_list[i].addr);
  1282. hw_sge->l_key = cpu_to_le32(wqe->sg_list[i].lkey);
  1283. hw_sge->size = cpu_to_le32(wqe->sg_list[i].size);
  1284. }
  1285. rqe->wqe_type = wqe->type;
  1286. rqe->flags = wqe->flags;
  1287. rqe->wqe_size = wqe->num_sge +
  1288. ((offsetof(typeof(*rqe), data) + 15) >> 4);
  1289. /* Supply the rqe->wr_id index to the wr_id_tbl for now */
  1290. rqe->wr_id[0] = cpu_to_le32(sw_prod);
  1291. rq->hwq.prod++;
  1292. done:
  1293. return rc;
  1294. }
  1295. /* CQ */
  1296. /* Spinlock must be held */
  1297. static void bnxt_qplib_arm_cq_enable(struct bnxt_qplib_cq *cq)
  1298. {
  1299. struct dbr_dbr db_msg = { 0 };
  1300. db_msg.type_xid =
  1301. cpu_to_le32(((cq->id << DBR_DBR_XID_SFT) & DBR_DBR_XID_MASK) |
  1302. DBR_DBR_TYPE_CQ_ARMENA);
  1303. /* Flush memory writes before enabling the CQ */
  1304. wmb();
  1305. __iowrite64_copy(cq->dbr_base, &db_msg, sizeof(db_msg) / sizeof(u64));
  1306. }
  1307. static void bnxt_qplib_arm_cq(struct bnxt_qplib_cq *cq, u32 arm_type)
  1308. {
  1309. struct bnxt_qplib_hwq *cq_hwq = &cq->hwq;
  1310. struct dbr_dbr db_msg = { 0 };
  1311. u32 sw_cons;
  1312. /* Ring DB */
  1313. sw_cons = HWQ_CMP(cq_hwq->cons, cq_hwq);
  1314. db_msg.index = cpu_to_le32((sw_cons << DBR_DBR_INDEX_SFT) &
  1315. DBR_DBR_INDEX_MASK);
  1316. db_msg.type_xid =
  1317. cpu_to_le32(((cq->id << DBR_DBR_XID_SFT) & DBR_DBR_XID_MASK) |
  1318. arm_type);
  1319. /* flush memory writes before arming the CQ */
  1320. wmb();
  1321. __iowrite64_copy(cq->dpi->dbr, &db_msg, sizeof(db_msg) / sizeof(u64));
  1322. }
  1323. int bnxt_qplib_create_cq(struct bnxt_qplib_res *res, struct bnxt_qplib_cq *cq)
  1324. {
  1325. struct bnxt_qplib_rcfw *rcfw = res->rcfw;
  1326. struct cmdq_create_cq req;
  1327. struct creq_create_cq_resp *resp;
  1328. struct bnxt_qplib_pbl *pbl;
  1329. u16 cmd_flags = 0;
  1330. int rc;
  1331. cq->hwq.max_elements = cq->max_wqe;
  1332. rc = bnxt_qplib_alloc_init_hwq(res->pdev, &cq->hwq, cq->sghead,
  1333. cq->nmap, &cq->hwq.max_elements,
  1334. BNXT_QPLIB_MAX_CQE_ENTRY_SIZE, 0,
  1335. PAGE_SIZE, HWQ_TYPE_QUEUE);
  1336. if (rc)
  1337. goto exit;
  1338. RCFW_CMD_PREP(req, CREATE_CQ, cmd_flags);
  1339. if (!cq->dpi) {
  1340. dev_err(&rcfw->pdev->dev,
  1341. "QPLIB: FP: CREATE_CQ failed due to NULL DPI");
  1342. return -EINVAL;
  1343. }
  1344. req.dpi = cpu_to_le32(cq->dpi->dpi);
  1345. req.cq_handle = cpu_to_le64(cq->cq_handle);
  1346. req.cq_size = cpu_to_le32(cq->hwq.max_elements);
  1347. pbl = &cq->hwq.pbl[PBL_LVL_0];
  1348. req.pg_size_lvl = cpu_to_le32(
  1349. ((cq->hwq.level & CMDQ_CREATE_CQ_LVL_MASK) <<
  1350. CMDQ_CREATE_CQ_LVL_SFT) |
  1351. (pbl->pg_size == ROCE_PG_SIZE_4K ? CMDQ_CREATE_CQ_PG_SIZE_PG_4K :
  1352. pbl->pg_size == ROCE_PG_SIZE_8K ? CMDQ_CREATE_CQ_PG_SIZE_PG_8K :
  1353. pbl->pg_size == ROCE_PG_SIZE_64K ? CMDQ_CREATE_CQ_PG_SIZE_PG_64K :
  1354. pbl->pg_size == ROCE_PG_SIZE_2M ? CMDQ_CREATE_CQ_PG_SIZE_PG_2M :
  1355. pbl->pg_size == ROCE_PG_SIZE_8M ? CMDQ_CREATE_CQ_PG_SIZE_PG_8M :
  1356. pbl->pg_size == ROCE_PG_SIZE_1G ? CMDQ_CREATE_CQ_PG_SIZE_PG_1G :
  1357. CMDQ_CREATE_CQ_PG_SIZE_PG_4K));
  1358. req.pbl = cpu_to_le64(pbl->pg_map_arr[0]);
  1359. req.cq_fco_cnq_id = cpu_to_le32(
  1360. (cq->cnq_hw_ring_id & CMDQ_CREATE_CQ_CNQ_ID_MASK) <<
  1361. CMDQ_CREATE_CQ_CNQ_ID_SFT);
  1362. resp = (struct creq_create_cq_resp *)
  1363. bnxt_qplib_rcfw_send_message(rcfw, (void *)&req,
  1364. NULL, 0);
  1365. if (!resp) {
  1366. dev_err(&rcfw->pdev->dev, "QPLIB: FP: CREATE_CQ send failed");
  1367. return -EINVAL;
  1368. }
  1369. if (!bnxt_qplib_rcfw_wait_for_resp(rcfw, le16_to_cpu(req.cookie))) {
  1370. /* Cmd timed out */
  1371. dev_err(&rcfw->pdev->dev, "QPLIB: FP: CREATE_CQ timed out");
  1372. rc = -ETIMEDOUT;
  1373. goto fail;
  1374. }
  1375. if (resp->status ||
  1376. le16_to_cpu(resp->cookie) != le16_to_cpu(req.cookie)) {
  1377. dev_err(&rcfw->pdev->dev, "QPLIB: FP: CREATE_CQ failed ");
  1378. dev_err(&rcfw->pdev->dev,
  1379. "QPLIB: with status 0x%x cmdq 0x%x resp 0x%x",
  1380. resp->status, le16_to_cpu(req.cookie),
  1381. le16_to_cpu(resp->cookie));
  1382. rc = -EINVAL;
  1383. goto fail;
  1384. }
  1385. cq->id = le32_to_cpu(resp->xid);
  1386. cq->dbr_base = res->dpi_tbl.dbr_bar_reg_iomem;
  1387. cq->period = BNXT_QPLIB_QUEUE_START_PERIOD;
  1388. init_waitqueue_head(&cq->waitq);
  1389. bnxt_qplib_arm_cq_enable(cq);
  1390. return 0;
  1391. fail:
  1392. bnxt_qplib_free_hwq(res->pdev, &cq->hwq);
  1393. exit:
  1394. return rc;
  1395. }
  1396. int bnxt_qplib_destroy_cq(struct bnxt_qplib_res *res, struct bnxt_qplib_cq *cq)
  1397. {
  1398. struct bnxt_qplib_rcfw *rcfw = res->rcfw;
  1399. struct cmdq_destroy_cq req;
  1400. struct creq_destroy_cq_resp *resp;
  1401. u16 cmd_flags = 0;
  1402. RCFW_CMD_PREP(req, DESTROY_CQ, cmd_flags);
  1403. req.cq_cid = cpu_to_le32(cq->id);
  1404. resp = (struct creq_destroy_cq_resp *)
  1405. bnxt_qplib_rcfw_send_message(rcfw, (void *)&req,
  1406. NULL, 0);
  1407. if (!resp) {
  1408. dev_err(&rcfw->pdev->dev, "QPLIB: FP: DESTROY_CQ send failed");
  1409. return -EINVAL;
  1410. }
  1411. if (!bnxt_qplib_rcfw_wait_for_resp(rcfw, le16_to_cpu(req.cookie))) {
  1412. /* Cmd timed out */
  1413. dev_err(&rcfw->pdev->dev, "QPLIB: FP: DESTROY_CQ timed out");
  1414. return -ETIMEDOUT;
  1415. }
  1416. if (resp->status ||
  1417. le16_to_cpu(resp->cookie) != le16_to_cpu(req.cookie)) {
  1418. dev_err(&rcfw->pdev->dev, "QPLIB: FP: DESTROY_CQ failed ");
  1419. dev_err(&rcfw->pdev->dev,
  1420. "QPLIB: with status 0x%x cmdq 0x%x resp 0x%x",
  1421. resp->status, le16_to_cpu(req.cookie),
  1422. le16_to_cpu(resp->cookie));
  1423. return -EINVAL;
  1424. }
  1425. bnxt_qplib_free_hwq(res->pdev, &cq->hwq);
  1426. return 0;
  1427. }
  1428. static int __flush_sq(struct bnxt_qplib_q *sq, struct bnxt_qplib_qp *qp,
  1429. struct bnxt_qplib_cqe **pcqe, int *budget)
  1430. {
  1431. u32 sw_prod, sw_cons;
  1432. struct bnxt_qplib_cqe *cqe;
  1433. int rc = 0;
  1434. /* Now complete all outstanding SQEs with FLUSHED_ERR */
  1435. sw_prod = HWQ_CMP(sq->hwq.prod, &sq->hwq);
  1436. cqe = *pcqe;
  1437. while (*budget) {
  1438. sw_cons = HWQ_CMP(sq->hwq.cons, &sq->hwq);
  1439. if (sw_cons == sw_prod) {
  1440. sq->flush_in_progress = false;
  1441. break;
  1442. }
  1443. memset(cqe, 0, sizeof(*cqe));
  1444. cqe->status = CQ_REQ_STATUS_WORK_REQUEST_FLUSHED_ERR;
  1445. cqe->opcode = CQ_BASE_CQE_TYPE_REQ;
  1446. cqe->qp_handle = (u64)(unsigned long)qp;
  1447. cqe->wr_id = sq->swq[sw_cons].wr_id;
  1448. cqe->src_qp = qp->id;
  1449. cqe->type = sq->swq[sw_cons].type;
  1450. cqe++;
  1451. (*budget)--;
  1452. sq->hwq.cons++;
  1453. }
  1454. *pcqe = cqe;
  1455. if (!(*budget) && HWQ_CMP(sq->hwq.cons, &sq->hwq) != sw_prod)
  1456. /* Out of budget */
  1457. rc = -EAGAIN;
  1458. return rc;
  1459. }
  1460. static int __flush_rq(struct bnxt_qplib_q *rq, struct bnxt_qplib_qp *qp,
  1461. int opcode, struct bnxt_qplib_cqe **pcqe, int *budget)
  1462. {
  1463. struct bnxt_qplib_cqe *cqe;
  1464. u32 sw_prod, sw_cons;
  1465. int rc = 0;
  1466. /* Flush the rest of the RQ */
  1467. sw_prod = HWQ_CMP(rq->hwq.prod, &rq->hwq);
  1468. cqe = *pcqe;
  1469. while (*budget) {
  1470. sw_cons = HWQ_CMP(rq->hwq.cons, &rq->hwq);
  1471. if (sw_cons == sw_prod)
  1472. break;
  1473. memset(cqe, 0, sizeof(*cqe));
  1474. cqe->status =
  1475. CQ_RES_RC_STATUS_WORK_REQUEST_FLUSHED_ERR;
  1476. cqe->opcode = opcode;
  1477. cqe->qp_handle = (unsigned long)qp;
  1478. cqe->wr_id = rq->swq[sw_cons].wr_id;
  1479. cqe++;
  1480. (*budget)--;
  1481. rq->hwq.cons++;
  1482. }
  1483. *pcqe = cqe;
  1484. if (!*budget && HWQ_CMP(rq->hwq.cons, &rq->hwq) != sw_prod)
  1485. /* Out of budget */
  1486. rc = -EAGAIN;
  1487. return rc;
  1488. }
  1489. static int bnxt_qplib_cq_process_req(struct bnxt_qplib_cq *cq,
  1490. struct cq_req *hwcqe,
  1491. struct bnxt_qplib_cqe **pcqe, int *budget)
  1492. {
  1493. struct bnxt_qplib_qp *qp;
  1494. struct bnxt_qplib_q *sq;
  1495. struct bnxt_qplib_cqe *cqe;
  1496. u32 sw_cons, cqe_cons;
  1497. int rc = 0;
  1498. qp = (struct bnxt_qplib_qp *)((unsigned long)
  1499. le64_to_cpu(hwcqe->qp_handle));
  1500. if (!qp) {
  1501. dev_err(&cq->hwq.pdev->dev,
  1502. "QPLIB: FP: Process Req qp is NULL");
  1503. return -EINVAL;
  1504. }
  1505. sq = &qp->sq;
  1506. cqe_cons = HWQ_CMP(le16_to_cpu(hwcqe->sq_cons_idx), &sq->hwq);
  1507. if (cqe_cons > sq->hwq.max_elements) {
  1508. dev_err(&cq->hwq.pdev->dev,
  1509. "QPLIB: FP: CQ Process req reported ");
  1510. dev_err(&cq->hwq.pdev->dev,
  1511. "QPLIB: sq_cons_idx 0x%x which exceeded max 0x%x",
  1512. cqe_cons, sq->hwq.max_elements);
  1513. return -EINVAL;
  1514. }
  1515. /* If we were in the middle of flushing the SQ, continue */
  1516. if (sq->flush_in_progress)
  1517. goto flush;
  1518. /* Require to walk the sq's swq to fabricate CQEs for all previously
  1519. * signaled SWQEs due to CQE aggregation from the current sq cons
  1520. * to the cqe_cons
  1521. */
  1522. cqe = *pcqe;
  1523. while (*budget) {
  1524. sw_cons = HWQ_CMP(sq->hwq.cons, &sq->hwq);
  1525. if (sw_cons == cqe_cons)
  1526. break;
  1527. memset(cqe, 0, sizeof(*cqe));
  1528. cqe->opcode = CQ_BASE_CQE_TYPE_REQ;
  1529. cqe->qp_handle = (u64)(unsigned long)qp;
  1530. cqe->src_qp = qp->id;
  1531. cqe->wr_id = sq->swq[sw_cons].wr_id;
  1532. cqe->type = sq->swq[sw_cons].type;
  1533. /* For the last CQE, check for status. For errors, regardless
  1534. * of the request being signaled or not, it must complete with
  1535. * the hwcqe error status
  1536. */
  1537. if (HWQ_CMP((sw_cons + 1), &sq->hwq) == cqe_cons &&
  1538. hwcqe->status != CQ_REQ_STATUS_OK) {
  1539. cqe->status = hwcqe->status;
  1540. dev_err(&cq->hwq.pdev->dev,
  1541. "QPLIB: FP: CQ Processed Req ");
  1542. dev_err(&cq->hwq.pdev->dev,
  1543. "QPLIB: wr_id[%d] = 0x%llx with status 0x%x",
  1544. sw_cons, cqe->wr_id, cqe->status);
  1545. cqe++;
  1546. (*budget)--;
  1547. sq->flush_in_progress = true;
  1548. /* Must block new posting of SQ and RQ */
  1549. qp->state = CMDQ_MODIFY_QP_NEW_STATE_ERR;
  1550. } else {
  1551. if (sq->swq[sw_cons].flags &
  1552. SQ_SEND_FLAGS_SIGNAL_COMP) {
  1553. cqe->status = CQ_REQ_STATUS_OK;
  1554. cqe++;
  1555. (*budget)--;
  1556. }
  1557. }
  1558. sq->hwq.cons++;
  1559. }
  1560. *pcqe = cqe;
  1561. if (!*budget && HWQ_CMP(sq->hwq.cons, &sq->hwq) != cqe_cons) {
  1562. /* Out of budget */
  1563. rc = -EAGAIN;
  1564. goto done;
  1565. }
  1566. if (!sq->flush_in_progress)
  1567. goto done;
  1568. flush:
  1569. /* Require to walk the sq's swq to fabricate CQEs for all
  1570. * previously posted SWQEs due to the error CQE received
  1571. */
  1572. rc = __flush_sq(sq, qp, pcqe, budget);
  1573. if (!rc)
  1574. sq->flush_in_progress = false;
  1575. done:
  1576. return rc;
  1577. }
  1578. static int bnxt_qplib_cq_process_res_rc(struct bnxt_qplib_cq *cq,
  1579. struct cq_res_rc *hwcqe,
  1580. struct bnxt_qplib_cqe **pcqe,
  1581. int *budget)
  1582. {
  1583. struct bnxt_qplib_qp *qp;
  1584. struct bnxt_qplib_q *rq;
  1585. struct bnxt_qplib_cqe *cqe;
  1586. u32 wr_id_idx;
  1587. int rc = 0;
  1588. qp = (struct bnxt_qplib_qp *)((unsigned long)
  1589. le64_to_cpu(hwcqe->qp_handle));
  1590. if (!qp) {
  1591. dev_err(&cq->hwq.pdev->dev, "QPLIB: process_cq RC qp is NULL");
  1592. return -EINVAL;
  1593. }
  1594. cqe = *pcqe;
  1595. cqe->opcode = hwcqe->cqe_type_toggle & CQ_BASE_CQE_TYPE_MASK;
  1596. cqe->length = le32_to_cpu(hwcqe->length);
  1597. cqe->invrkey = le32_to_cpu(hwcqe->imm_data_or_inv_r_key);
  1598. cqe->mr_handle = le64_to_cpu(hwcqe->mr_handle);
  1599. cqe->flags = le16_to_cpu(hwcqe->flags);
  1600. cqe->status = hwcqe->status;
  1601. cqe->qp_handle = (u64)(unsigned long)qp;
  1602. wr_id_idx = le32_to_cpu(hwcqe->srq_or_rq_wr_id) &
  1603. CQ_RES_RC_SRQ_OR_RQ_WR_ID_MASK;
  1604. rq = &qp->rq;
  1605. if (wr_id_idx > rq->hwq.max_elements) {
  1606. dev_err(&cq->hwq.pdev->dev, "QPLIB: FP: CQ Process RC ");
  1607. dev_err(&cq->hwq.pdev->dev,
  1608. "QPLIB: wr_id idx 0x%x exceeded RQ max 0x%x",
  1609. wr_id_idx, rq->hwq.max_elements);
  1610. return -EINVAL;
  1611. }
  1612. if (rq->flush_in_progress)
  1613. goto flush_rq;
  1614. cqe->wr_id = rq->swq[wr_id_idx].wr_id;
  1615. cqe++;
  1616. (*budget)--;
  1617. rq->hwq.cons++;
  1618. *pcqe = cqe;
  1619. if (hwcqe->status != CQ_RES_RC_STATUS_OK) {
  1620. rq->flush_in_progress = true;
  1621. flush_rq:
  1622. rc = __flush_rq(rq, qp, CQ_BASE_CQE_TYPE_RES_RC, pcqe, budget);
  1623. if (!rc)
  1624. rq->flush_in_progress = false;
  1625. }
  1626. return rc;
  1627. }
  1628. static int bnxt_qplib_cq_process_res_ud(struct bnxt_qplib_cq *cq,
  1629. struct cq_res_ud *hwcqe,
  1630. struct bnxt_qplib_cqe **pcqe,
  1631. int *budget)
  1632. {
  1633. struct bnxt_qplib_qp *qp;
  1634. struct bnxt_qplib_q *rq;
  1635. struct bnxt_qplib_cqe *cqe;
  1636. u32 wr_id_idx;
  1637. int rc = 0;
  1638. qp = (struct bnxt_qplib_qp *)((unsigned long)
  1639. le64_to_cpu(hwcqe->qp_handle));
  1640. if (!qp) {
  1641. dev_err(&cq->hwq.pdev->dev, "QPLIB: process_cq UD qp is NULL");
  1642. return -EINVAL;
  1643. }
  1644. cqe = *pcqe;
  1645. cqe->opcode = hwcqe->cqe_type_toggle & CQ_BASE_CQE_TYPE_MASK;
  1646. cqe->length = le32_to_cpu(hwcqe->length);
  1647. cqe->invrkey = le32_to_cpu(hwcqe->imm_data);
  1648. cqe->flags = le16_to_cpu(hwcqe->flags);
  1649. cqe->status = hwcqe->status;
  1650. cqe->qp_handle = (u64)(unsigned long)qp;
  1651. memcpy(cqe->smac, hwcqe->src_mac, 6);
  1652. wr_id_idx = le32_to_cpu(hwcqe->src_qp_high_srq_or_rq_wr_id)
  1653. & CQ_RES_UD_SRQ_OR_RQ_WR_ID_MASK;
  1654. cqe->src_qp = le16_to_cpu(hwcqe->src_qp_low) |
  1655. ((le32_to_cpu(
  1656. hwcqe->src_qp_high_srq_or_rq_wr_id) &
  1657. CQ_RES_UD_SRC_QP_HIGH_MASK) >> 8);
  1658. rq = &qp->rq;
  1659. if (wr_id_idx > rq->hwq.max_elements) {
  1660. dev_err(&cq->hwq.pdev->dev, "QPLIB: FP: CQ Process UD ");
  1661. dev_err(&cq->hwq.pdev->dev,
  1662. "QPLIB: wr_id idx %#x exceeded RQ max %#x",
  1663. wr_id_idx, rq->hwq.max_elements);
  1664. return -EINVAL;
  1665. }
  1666. if (rq->flush_in_progress)
  1667. goto flush_rq;
  1668. cqe->wr_id = rq->swq[wr_id_idx].wr_id;
  1669. cqe++;
  1670. (*budget)--;
  1671. rq->hwq.cons++;
  1672. *pcqe = cqe;
  1673. if (hwcqe->status != CQ_RES_RC_STATUS_OK) {
  1674. rq->flush_in_progress = true;
  1675. flush_rq:
  1676. rc = __flush_rq(rq, qp, CQ_BASE_CQE_TYPE_RES_UD, pcqe, budget);
  1677. if (!rc)
  1678. rq->flush_in_progress = false;
  1679. }
  1680. return rc;
  1681. }
  1682. static int bnxt_qplib_cq_process_res_raweth_qp1(struct bnxt_qplib_cq *cq,
  1683. struct cq_res_raweth_qp1 *hwcqe,
  1684. struct bnxt_qplib_cqe **pcqe,
  1685. int *budget)
  1686. {
  1687. struct bnxt_qplib_qp *qp;
  1688. struct bnxt_qplib_q *rq;
  1689. struct bnxt_qplib_cqe *cqe;
  1690. u32 wr_id_idx;
  1691. int rc = 0;
  1692. qp = (struct bnxt_qplib_qp *)((unsigned long)
  1693. le64_to_cpu(hwcqe->qp_handle));
  1694. if (!qp) {
  1695. dev_err(&cq->hwq.pdev->dev,
  1696. "QPLIB: process_cq Raw/QP1 qp is NULL");
  1697. return -EINVAL;
  1698. }
  1699. cqe = *pcqe;
  1700. cqe->opcode = hwcqe->cqe_type_toggle & CQ_BASE_CQE_TYPE_MASK;
  1701. cqe->flags = le16_to_cpu(hwcqe->flags);
  1702. cqe->qp_handle = (u64)(unsigned long)qp;
  1703. wr_id_idx =
  1704. le32_to_cpu(hwcqe->raweth_qp1_payload_offset_srq_or_rq_wr_id)
  1705. & CQ_RES_RAWETH_QP1_SRQ_OR_RQ_WR_ID_MASK;
  1706. cqe->src_qp = qp->id;
  1707. if (qp->id == 1 && !cqe->length) {
  1708. /* Add workaround for the length misdetection */
  1709. cqe->length = 296;
  1710. } else {
  1711. cqe->length = le16_to_cpu(hwcqe->length);
  1712. }
  1713. cqe->pkey_index = qp->pkey_index;
  1714. memcpy(cqe->smac, qp->smac, 6);
  1715. cqe->raweth_qp1_flags = le16_to_cpu(hwcqe->raweth_qp1_flags);
  1716. cqe->raweth_qp1_flags2 = le32_to_cpu(hwcqe->raweth_qp1_flags2);
  1717. rq = &qp->rq;
  1718. if (wr_id_idx > rq->hwq.max_elements) {
  1719. dev_err(&cq->hwq.pdev->dev, "QPLIB: FP: CQ Process Raw/QP1 RQ wr_id ");
  1720. dev_err(&cq->hwq.pdev->dev, "QPLIB: ix 0x%x exceeded RQ max 0x%x",
  1721. wr_id_idx, rq->hwq.max_elements);
  1722. return -EINVAL;
  1723. }
  1724. if (rq->flush_in_progress)
  1725. goto flush_rq;
  1726. cqe->wr_id = rq->swq[wr_id_idx].wr_id;
  1727. cqe++;
  1728. (*budget)--;
  1729. rq->hwq.cons++;
  1730. *pcqe = cqe;
  1731. if (hwcqe->status != CQ_RES_RC_STATUS_OK) {
  1732. rq->flush_in_progress = true;
  1733. flush_rq:
  1734. rc = __flush_rq(rq, qp, CQ_BASE_CQE_TYPE_RES_RAWETH_QP1, pcqe,
  1735. budget);
  1736. if (!rc)
  1737. rq->flush_in_progress = false;
  1738. }
  1739. return rc;
  1740. }
  1741. static int bnxt_qplib_cq_process_terminal(struct bnxt_qplib_cq *cq,
  1742. struct cq_terminal *hwcqe,
  1743. struct bnxt_qplib_cqe **pcqe,
  1744. int *budget)
  1745. {
  1746. struct bnxt_qplib_qp *qp;
  1747. struct bnxt_qplib_q *sq, *rq;
  1748. struct bnxt_qplib_cqe *cqe;
  1749. u32 sw_cons = 0, cqe_cons;
  1750. int rc = 0;
  1751. u8 opcode = 0;
  1752. /* Check the Status */
  1753. if (hwcqe->status != CQ_TERMINAL_STATUS_OK)
  1754. dev_warn(&cq->hwq.pdev->dev,
  1755. "QPLIB: FP: CQ Process Terminal Error status = 0x%x",
  1756. hwcqe->status);
  1757. qp = (struct bnxt_qplib_qp *)((unsigned long)
  1758. le64_to_cpu(hwcqe->qp_handle));
  1759. if (!qp) {
  1760. dev_err(&cq->hwq.pdev->dev,
  1761. "QPLIB: FP: CQ Process terminal qp is NULL");
  1762. return -EINVAL;
  1763. }
  1764. /* Must block new posting of SQ and RQ */
  1765. qp->state = CMDQ_MODIFY_QP_NEW_STATE_ERR;
  1766. sq = &qp->sq;
  1767. rq = &qp->rq;
  1768. cqe_cons = le16_to_cpu(hwcqe->sq_cons_idx);
  1769. if (cqe_cons == 0xFFFF)
  1770. goto do_rq;
  1771. if (cqe_cons > sq->hwq.max_elements) {
  1772. dev_err(&cq->hwq.pdev->dev,
  1773. "QPLIB: FP: CQ Process terminal reported ");
  1774. dev_err(&cq->hwq.pdev->dev,
  1775. "QPLIB: sq_cons_idx 0x%x which exceeded max 0x%x",
  1776. cqe_cons, sq->hwq.max_elements);
  1777. goto do_rq;
  1778. }
  1779. /* If we were in the middle of flushing, continue */
  1780. if (sq->flush_in_progress)
  1781. goto flush_sq;
  1782. /* Terminal CQE can also include aggregated successful CQEs prior.
  1783. * So we must complete all CQEs from the current sq's cons to the
  1784. * cq_cons with status OK
  1785. */
  1786. cqe = *pcqe;
  1787. while (*budget) {
  1788. sw_cons = HWQ_CMP(sq->hwq.cons, &sq->hwq);
  1789. if (sw_cons == cqe_cons)
  1790. break;
  1791. if (sq->swq[sw_cons].flags & SQ_SEND_FLAGS_SIGNAL_COMP) {
  1792. memset(cqe, 0, sizeof(*cqe));
  1793. cqe->status = CQ_REQ_STATUS_OK;
  1794. cqe->opcode = CQ_BASE_CQE_TYPE_REQ;
  1795. cqe->qp_handle = (u64)(unsigned long)qp;
  1796. cqe->src_qp = qp->id;
  1797. cqe->wr_id = sq->swq[sw_cons].wr_id;
  1798. cqe->type = sq->swq[sw_cons].type;
  1799. cqe++;
  1800. (*budget)--;
  1801. }
  1802. sq->hwq.cons++;
  1803. }
  1804. *pcqe = cqe;
  1805. if (!(*budget) && sw_cons != cqe_cons) {
  1806. /* Out of budget */
  1807. rc = -EAGAIN;
  1808. goto sq_done;
  1809. }
  1810. sq->flush_in_progress = true;
  1811. flush_sq:
  1812. rc = __flush_sq(sq, qp, pcqe, budget);
  1813. if (!rc)
  1814. sq->flush_in_progress = false;
  1815. sq_done:
  1816. if (rc)
  1817. return rc;
  1818. do_rq:
  1819. cqe_cons = le16_to_cpu(hwcqe->rq_cons_idx);
  1820. if (cqe_cons == 0xFFFF) {
  1821. goto done;
  1822. } else if (cqe_cons > rq->hwq.max_elements) {
  1823. dev_err(&cq->hwq.pdev->dev,
  1824. "QPLIB: FP: CQ Processed terminal ");
  1825. dev_err(&cq->hwq.pdev->dev,
  1826. "QPLIB: reported rq_cons_idx 0x%x exceeds max 0x%x",
  1827. cqe_cons, rq->hwq.max_elements);
  1828. goto done;
  1829. }
  1830. /* Terminal CQE requires all posted RQEs to complete with FLUSHED_ERR
  1831. * from the current rq->cons to the rq->prod regardless what the
  1832. * rq->cons the terminal CQE indicates
  1833. */
  1834. rq->flush_in_progress = true;
  1835. switch (qp->type) {
  1836. case CMDQ_CREATE_QP1_TYPE_GSI:
  1837. opcode = CQ_BASE_CQE_TYPE_RES_RAWETH_QP1;
  1838. break;
  1839. case CMDQ_CREATE_QP_TYPE_RC:
  1840. opcode = CQ_BASE_CQE_TYPE_RES_RC;
  1841. break;
  1842. case CMDQ_CREATE_QP_TYPE_UD:
  1843. opcode = CQ_BASE_CQE_TYPE_RES_UD;
  1844. break;
  1845. }
  1846. rc = __flush_rq(rq, qp, opcode, pcqe, budget);
  1847. if (!rc)
  1848. rq->flush_in_progress = false;
  1849. done:
  1850. return rc;
  1851. }
  1852. static int bnxt_qplib_cq_process_cutoff(struct bnxt_qplib_cq *cq,
  1853. struct cq_cutoff *hwcqe)
  1854. {
  1855. /* Check the Status */
  1856. if (hwcqe->status != CQ_CUTOFF_STATUS_OK) {
  1857. dev_err(&cq->hwq.pdev->dev,
  1858. "QPLIB: FP: CQ Process Cutoff Error status = 0x%x",
  1859. hwcqe->status);
  1860. return -EINVAL;
  1861. }
  1862. clear_bit(CQ_FLAGS_RESIZE_IN_PROG, &cq->flags);
  1863. wake_up_interruptible(&cq->waitq);
  1864. return 0;
  1865. }
  1866. int bnxt_qplib_poll_cq(struct bnxt_qplib_cq *cq, struct bnxt_qplib_cqe *cqe,
  1867. int num_cqes)
  1868. {
  1869. struct cq_base *hw_cqe, **hw_cqe_ptr;
  1870. unsigned long flags;
  1871. u32 sw_cons, raw_cons;
  1872. int budget, rc = 0;
  1873. spin_lock_irqsave(&cq->hwq.lock, flags);
  1874. raw_cons = cq->hwq.cons;
  1875. budget = num_cqes;
  1876. while (budget) {
  1877. sw_cons = HWQ_CMP(raw_cons, &cq->hwq);
  1878. hw_cqe_ptr = (struct cq_base **)cq->hwq.pbl_ptr;
  1879. hw_cqe = &hw_cqe_ptr[CQE_PG(sw_cons)][CQE_IDX(sw_cons)];
  1880. /* Check for Valid bit */
  1881. if (!CQE_CMP_VALID(hw_cqe, raw_cons, cq->hwq.max_elements))
  1882. break;
  1883. /* From the device's respective CQE format to qplib_wc*/
  1884. switch (hw_cqe->cqe_type_toggle & CQ_BASE_CQE_TYPE_MASK) {
  1885. case CQ_BASE_CQE_TYPE_REQ:
  1886. rc = bnxt_qplib_cq_process_req(cq,
  1887. (struct cq_req *)hw_cqe,
  1888. &cqe, &budget);
  1889. break;
  1890. case CQ_BASE_CQE_TYPE_RES_RC:
  1891. rc = bnxt_qplib_cq_process_res_rc(cq,
  1892. (struct cq_res_rc *)
  1893. hw_cqe, &cqe,
  1894. &budget);
  1895. break;
  1896. case CQ_BASE_CQE_TYPE_RES_UD:
  1897. rc = bnxt_qplib_cq_process_res_ud
  1898. (cq, (struct cq_res_ud *)hw_cqe, &cqe,
  1899. &budget);
  1900. break;
  1901. case CQ_BASE_CQE_TYPE_RES_RAWETH_QP1:
  1902. rc = bnxt_qplib_cq_process_res_raweth_qp1
  1903. (cq, (struct cq_res_raweth_qp1 *)
  1904. hw_cqe, &cqe, &budget);
  1905. break;
  1906. case CQ_BASE_CQE_TYPE_TERMINAL:
  1907. rc = bnxt_qplib_cq_process_terminal
  1908. (cq, (struct cq_terminal *)hw_cqe,
  1909. &cqe, &budget);
  1910. break;
  1911. case CQ_BASE_CQE_TYPE_CUT_OFF:
  1912. bnxt_qplib_cq_process_cutoff
  1913. (cq, (struct cq_cutoff *)hw_cqe);
  1914. /* Done processing this CQ */
  1915. goto exit;
  1916. default:
  1917. dev_err(&cq->hwq.pdev->dev,
  1918. "QPLIB: process_cq unknown type 0x%lx",
  1919. hw_cqe->cqe_type_toggle &
  1920. CQ_BASE_CQE_TYPE_MASK);
  1921. rc = -EINVAL;
  1922. break;
  1923. }
  1924. if (rc < 0) {
  1925. if (rc == -EAGAIN)
  1926. break;
  1927. /* Error while processing the CQE, just skip to the
  1928. * next one
  1929. */
  1930. dev_err(&cq->hwq.pdev->dev,
  1931. "QPLIB: process_cqe error rc = 0x%x", rc);
  1932. }
  1933. raw_cons++;
  1934. }
  1935. if (cq->hwq.cons != raw_cons) {
  1936. cq->hwq.cons = raw_cons;
  1937. bnxt_qplib_arm_cq(cq, DBR_DBR_TYPE_CQ);
  1938. }
  1939. exit:
  1940. spin_unlock_irqrestore(&cq->hwq.lock, flags);
  1941. return num_cqes - budget;
  1942. }
  1943. void bnxt_qplib_req_notify_cq(struct bnxt_qplib_cq *cq, u32 arm_type)
  1944. {
  1945. unsigned long flags;
  1946. spin_lock_irqsave(&cq->hwq.lock, flags);
  1947. if (arm_type)
  1948. bnxt_qplib_arm_cq(cq, arm_type);
  1949. spin_unlock_irqrestore(&cq->hwq.lock, flags);
  1950. }