ehca_qp.c 57 KB

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  1. /*
  2. * IBM eServer eHCA Infiniband device driver for Linux on POWER
  3. *
  4. * QP functions
  5. *
  6. * Authors: Joachim Fenkes <fenkes@de.ibm.com>
  7. * Stefan Roscher <stefan.roscher@de.ibm.com>
  8. * Waleri Fomin <fomin@de.ibm.com>
  9. * Hoang-Nam Nguyen <hnguyen@de.ibm.com>
  10. * Reinhard Ernst <rernst@de.ibm.com>
  11. * Heiko J Schick <schickhj@de.ibm.com>
  12. *
  13. * Copyright (c) 2005 IBM Corporation
  14. *
  15. * All rights reserved.
  16. *
  17. * This source code is distributed under a dual license of GPL v2.0 and OpenIB
  18. * BSD.
  19. *
  20. * OpenIB BSD License
  21. *
  22. * Redistribution and use in source and binary forms, with or without
  23. * modification, are permitted provided that the following conditions are met:
  24. *
  25. * Redistributions of source code must retain the above copyright notice, this
  26. * list of conditions and the following disclaimer.
  27. *
  28. * Redistributions in binary form must reproduce the above copyright notice,
  29. * this list of conditions and the following disclaimer in the documentation
  30. * and/or other materials
  31. * provided with the distribution.
  32. *
  33. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  34. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  35. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  36. * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
  37. * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
  38. * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
  39. * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
  40. * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
  41. * IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
  42. * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
  43. * POSSIBILITY OF SUCH DAMAGE.
  44. */
  45. #include "ehca_classes.h"
  46. #include "ehca_tools.h"
  47. #include "ehca_qes.h"
  48. #include "ehca_iverbs.h"
  49. #include "hcp_if.h"
  50. #include "hipz_fns.h"
  51. static struct kmem_cache *qp_cache;
  52. /*
  53. * attributes not supported by query qp
  54. */
  55. #define QP_ATTR_QUERY_NOT_SUPPORTED (IB_QP_MAX_DEST_RD_ATOMIC | \
  56. IB_QP_MAX_QP_RD_ATOMIC | \
  57. IB_QP_ACCESS_FLAGS | \
  58. IB_QP_EN_SQD_ASYNC_NOTIFY)
  59. /*
  60. * ehca (internal) qp state values
  61. */
  62. enum ehca_qp_state {
  63. EHCA_QPS_RESET = 1,
  64. EHCA_QPS_INIT = 2,
  65. EHCA_QPS_RTR = 3,
  66. EHCA_QPS_RTS = 5,
  67. EHCA_QPS_SQD = 6,
  68. EHCA_QPS_SQE = 8,
  69. EHCA_QPS_ERR = 128
  70. };
  71. /*
  72. * qp state transitions as defined by IB Arch Rel 1.1 page 431
  73. */
  74. enum ib_qp_statetrans {
  75. IB_QPST_ANY2RESET,
  76. IB_QPST_ANY2ERR,
  77. IB_QPST_RESET2INIT,
  78. IB_QPST_INIT2RTR,
  79. IB_QPST_INIT2INIT,
  80. IB_QPST_RTR2RTS,
  81. IB_QPST_RTS2SQD,
  82. IB_QPST_RTS2RTS,
  83. IB_QPST_SQD2RTS,
  84. IB_QPST_SQE2RTS,
  85. IB_QPST_SQD2SQD,
  86. IB_QPST_MAX /* nr of transitions, this must be last!!! */
  87. };
  88. /*
  89. * ib2ehca_qp_state maps IB to ehca qp_state
  90. * returns ehca qp state corresponding to given ib qp state
  91. */
  92. static inline enum ehca_qp_state ib2ehca_qp_state(enum ib_qp_state ib_qp_state)
  93. {
  94. switch (ib_qp_state) {
  95. case IB_QPS_RESET:
  96. return EHCA_QPS_RESET;
  97. case IB_QPS_INIT:
  98. return EHCA_QPS_INIT;
  99. case IB_QPS_RTR:
  100. return EHCA_QPS_RTR;
  101. case IB_QPS_RTS:
  102. return EHCA_QPS_RTS;
  103. case IB_QPS_SQD:
  104. return EHCA_QPS_SQD;
  105. case IB_QPS_SQE:
  106. return EHCA_QPS_SQE;
  107. case IB_QPS_ERR:
  108. return EHCA_QPS_ERR;
  109. default:
  110. ehca_gen_err("invalid ib_qp_state=%x", ib_qp_state);
  111. return -EINVAL;
  112. }
  113. }
  114. /*
  115. * ehca2ib_qp_state maps ehca to IB qp_state
  116. * returns ib qp state corresponding to given ehca qp state
  117. */
  118. static inline enum ib_qp_state ehca2ib_qp_state(enum ehca_qp_state
  119. ehca_qp_state)
  120. {
  121. switch (ehca_qp_state) {
  122. case EHCA_QPS_RESET:
  123. return IB_QPS_RESET;
  124. case EHCA_QPS_INIT:
  125. return IB_QPS_INIT;
  126. case EHCA_QPS_RTR:
  127. return IB_QPS_RTR;
  128. case EHCA_QPS_RTS:
  129. return IB_QPS_RTS;
  130. case EHCA_QPS_SQD:
  131. return IB_QPS_SQD;
  132. case EHCA_QPS_SQE:
  133. return IB_QPS_SQE;
  134. case EHCA_QPS_ERR:
  135. return IB_QPS_ERR;
  136. default:
  137. ehca_gen_err("invalid ehca_qp_state=%x", ehca_qp_state);
  138. return -EINVAL;
  139. }
  140. }
  141. /*
  142. * ehca_qp_type used as index for req_attr and opt_attr of
  143. * struct ehca_modqp_statetrans
  144. */
  145. enum ehca_qp_type {
  146. QPT_RC = 0,
  147. QPT_UC = 1,
  148. QPT_UD = 2,
  149. QPT_SQP = 3,
  150. QPT_MAX
  151. };
  152. /*
  153. * ib2ehcaqptype maps Ib to ehca qp_type
  154. * returns ehca qp type corresponding to ib qp type
  155. */
  156. static inline enum ehca_qp_type ib2ehcaqptype(enum ib_qp_type ibqptype)
  157. {
  158. switch (ibqptype) {
  159. case IB_QPT_SMI:
  160. case IB_QPT_GSI:
  161. return QPT_SQP;
  162. case IB_QPT_RC:
  163. return QPT_RC;
  164. case IB_QPT_UC:
  165. return QPT_UC;
  166. case IB_QPT_UD:
  167. return QPT_UD;
  168. default:
  169. ehca_gen_err("Invalid ibqptype=%x", ibqptype);
  170. return -EINVAL;
  171. }
  172. }
  173. static inline enum ib_qp_statetrans get_modqp_statetrans(int ib_fromstate,
  174. int ib_tostate)
  175. {
  176. int index = -EINVAL;
  177. switch (ib_tostate) {
  178. case IB_QPS_RESET:
  179. index = IB_QPST_ANY2RESET;
  180. break;
  181. case IB_QPS_INIT:
  182. switch (ib_fromstate) {
  183. case IB_QPS_RESET:
  184. index = IB_QPST_RESET2INIT;
  185. break;
  186. case IB_QPS_INIT:
  187. index = IB_QPST_INIT2INIT;
  188. break;
  189. }
  190. break;
  191. case IB_QPS_RTR:
  192. if (ib_fromstate == IB_QPS_INIT)
  193. index = IB_QPST_INIT2RTR;
  194. break;
  195. case IB_QPS_RTS:
  196. switch (ib_fromstate) {
  197. case IB_QPS_RTR:
  198. index = IB_QPST_RTR2RTS;
  199. break;
  200. case IB_QPS_RTS:
  201. index = IB_QPST_RTS2RTS;
  202. break;
  203. case IB_QPS_SQD:
  204. index = IB_QPST_SQD2RTS;
  205. break;
  206. case IB_QPS_SQE:
  207. index = IB_QPST_SQE2RTS;
  208. break;
  209. }
  210. break;
  211. case IB_QPS_SQD:
  212. if (ib_fromstate == IB_QPS_RTS)
  213. index = IB_QPST_RTS2SQD;
  214. break;
  215. case IB_QPS_SQE:
  216. break;
  217. case IB_QPS_ERR:
  218. index = IB_QPST_ANY2ERR;
  219. break;
  220. default:
  221. break;
  222. }
  223. return index;
  224. }
  225. /*
  226. * ibqptype2servicetype returns hcp service type corresponding to given
  227. * ib qp type used by create_qp()
  228. */
  229. static inline int ibqptype2servicetype(enum ib_qp_type ibqptype)
  230. {
  231. switch (ibqptype) {
  232. case IB_QPT_SMI:
  233. case IB_QPT_GSI:
  234. return ST_UD;
  235. case IB_QPT_RC:
  236. return ST_RC;
  237. case IB_QPT_UC:
  238. return ST_UC;
  239. case IB_QPT_UD:
  240. return ST_UD;
  241. case IB_QPT_RAW_IPV6:
  242. return -EINVAL;
  243. case IB_QPT_RAW_ETY:
  244. return -EINVAL;
  245. default:
  246. ehca_gen_err("Invalid ibqptype=%x", ibqptype);
  247. return -EINVAL;
  248. }
  249. }
  250. /*
  251. * init userspace queue info from ipz_queue data
  252. */
  253. static inline void queue2resp(struct ipzu_queue_resp *resp,
  254. struct ipz_queue *queue)
  255. {
  256. resp->qe_size = queue->qe_size;
  257. resp->act_nr_of_sg = queue->act_nr_of_sg;
  258. resp->queue_length = queue->queue_length;
  259. resp->pagesize = queue->pagesize;
  260. resp->toggle_state = queue->toggle_state;
  261. resp->offset = queue->offset;
  262. }
  263. /*
  264. * init_qp_queue initializes/constructs r/squeue and registers queue pages.
  265. */
  266. static inline int init_qp_queue(struct ehca_shca *shca,
  267. struct ehca_pd *pd,
  268. struct ehca_qp *my_qp,
  269. struct ipz_queue *queue,
  270. int q_type,
  271. u64 expected_hret,
  272. struct ehca_alloc_queue_parms *parms,
  273. int wqe_size)
  274. {
  275. int ret, cnt, ipz_rc, nr_q_pages;
  276. void *vpage;
  277. u64 rpage, h_ret;
  278. struct ib_device *ib_dev = &shca->ib_device;
  279. struct ipz_adapter_handle ipz_hca_handle = shca->ipz_hca_handle;
  280. if (!parms->queue_size)
  281. return 0;
  282. if (parms->is_small) {
  283. nr_q_pages = 1;
  284. ipz_rc = ipz_queue_ctor(pd, queue, nr_q_pages,
  285. 128 << parms->page_size,
  286. wqe_size, parms->act_nr_sges, 1);
  287. } else {
  288. nr_q_pages = parms->queue_size;
  289. ipz_rc = ipz_queue_ctor(pd, queue, nr_q_pages,
  290. EHCA_PAGESIZE, wqe_size,
  291. parms->act_nr_sges, 0);
  292. }
  293. if (!ipz_rc) {
  294. ehca_err(ib_dev, "Cannot allocate page for queue. ipz_rc=%i",
  295. ipz_rc);
  296. return -EBUSY;
  297. }
  298. /* register queue pages */
  299. for (cnt = 0; cnt < nr_q_pages; cnt++) {
  300. vpage = ipz_qpageit_get_inc(queue);
  301. if (!vpage) {
  302. ehca_err(ib_dev, "ipz_qpageit_get_inc() "
  303. "failed p_vpage= %p", vpage);
  304. ret = -EINVAL;
  305. goto init_qp_queue1;
  306. }
  307. rpage = virt_to_abs(vpage);
  308. h_ret = hipz_h_register_rpage_qp(ipz_hca_handle,
  309. my_qp->ipz_qp_handle,
  310. NULL, 0, q_type,
  311. rpage, parms->is_small ? 0 : 1,
  312. my_qp->galpas.kernel);
  313. if (cnt == (nr_q_pages - 1)) { /* last page! */
  314. if (h_ret != expected_hret) {
  315. ehca_err(ib_dev, "hipz_qp_register_rpage() "
  316. "h_ret=%li", h_ret);
  317. ret = ehca2ib_return_code(h_ret);
  318. goto init_qp_queue1;
  319. }
  320. vpage = ipz_qpageit_get_inc(&my_qp->ipz_rqueue);
  321. if (vpage) {
  322. ehca_err(ib_dev, "ipz_qpageit_get_inc() "
  323. "should not succeed vpage=%p", vpage);
  324. ret = -EINVAL;
  325. goto init_qp_queue1;
  326. }
  327. } else {
  328. if (h_ret != H_PAGE_REGISTERED) {
  329. ehca_err(ib_dev, "hipz_qp_register_rpage() "
  330. "h_ret=%li", h_ret);
  331. ret = ehca2ib_return_code(h_ret);
  332. goto init_qp_queue1;
  333. }
  334. }
  335. }
  336. ipz_qeit_reset(queue);
  337. return 0;
  338. init_qp_queue1:
  339. ipz_queue_dtor(pd, queue);
  340. return ret;
  341. }
  342. static inline int ehca_calc_wqe_size(int act_nr_sge, int is_llqp)
  343. {
  344. if (is_llqp)
  345. return 128 << act_nr_sge;
  346. else
  347. return offsetof(struct ehca_wqe,
  348. u.nud.sg_list[act_nr_sge]);
  349. }
  350. static void ehca_determine_small_queue(struct ehca_alloc_queue_parms *queue,
  351. int req_nr_sge, int is_llqp)
  352. {
  353. u32 wqe_size, q_size;
  354. int act_nr_sge = req_nr_sge;
  355. if (!is_llqp)
  356. /* round up #SGEs so WQE size is a power of 2 */
  357. for (act_nr_sge = 4; act_nr_sge <= 252;
  358. act_nr_sge = 4 + 2 * act_nr_sge)
  359. if (act_nr_sge >= req_nr_sge)
  360. break;
  361. wqe_size = ehca_calc_wqe_size(act_nr_sge, is_llqp);
  362. q_size = wqe_size * (queue->max_wr + 1);
  363. if (q_size <= 512)
  364. queue->page_size = 2;
  365. else if (q_size <= 1024)
  366. queue->page_size = 3;
  367. else
  368. queue->page_size = 0;
  369. queue->is_small = (queue->page_size != 0);
  370. }
  371. /*
  372. * Create an ib_qp struct that is either a QP or an SRQ, depending on
  373. * the value of the is_srq parameter. If init_attr and srq_init_attr share
  374. * fields, the field out of init_attr is used.
  375. */
  376. static struct ehca_qp *internal_create_qp(
  377. struct ib_pd *pd,
  378. struct ib_qp_init_attr *init_attr,
  379. struct ib_srq_init_attr *srq_init_attr,
  380. struct ib_udata *udata, int is_srq)
  381. {
  382. struct ehca_qp *my_qp;
  383. struct ehca_pd *my_pd = container_of(pd, struct ehca_pd, ib_pd);
  384. struct ehca_shca *shca = container_of(pd->device, struct ehca_shca,
  385. ib_device);
  386. struct ib_ucontext *context = NULL;
  387. u64 h_ret;
  388. int is_llqp = 0, has_srq = 0;
  389. int qp_type, max_send_sge, max_recv_sge, ret;
  390. /* h_call's out parameters */
  391. struct ehca_alloc_qp_parms parms;
  392. u32 swqe_size = 0, rwqe_size = 0, ib_qp_num;
  393. unsigned long flags;
  394. if (!atomic_add_unless(&shca->num_qps, 1, ehca_max_qp)) {
  395. ehca_err(pd->device, "Unable to create QP, max number of %i "
  396. "QPs reached.", ehca_max_qp);
  397. ehca_err(pd->device, "To increase the maximum number of QPs "
  398. "use the number_of_qps module parameter.\n");
  399. return ERR_PTR(-ENOSPC);
  400. }
  401. if (init_attr->create_flags) {
  402. atomic_dec(&shca->num_qps);
  403. return ERR_PTR(-EINVAL);
  404. }
  405. memset(&parms, 0, sizeof(parms));
  406. qp_type = init_attr->qp_type;
  407. if (init_attr->sq_sig_type != IB_SIGNAL_REQ_WR &&
  408. init_attr->sq_sig_type != IB_SIGNAL_ALL_WR) {
  409. ehca_err(pd->device, "init_attr->sg_sig_type=%x not allowed",
  410. init_attr->sq_sig_type);
  411. atomic_dec(&shca->num_qps);
  412. return ERR_PTR(-EINVAL);
  413. }
  414. /* save LLQP info */
  415. if (qp_type & 0x80) {
  416. is_llqp = 1;
  417. parms.ext_type = EQPT_LLQP;
  418. parms.ll_comp_flags = qp_type & LLQP_COMP_MASK;
  419. }
  420. qp_type &= 0x1F;
  421. init_attr->qp_type &= 0x1F;
  422. /* handle SRQ base QPs */
  423. if (init_attr->srq) {
  424. struct ehca_qp *my_srq =
  425. container_of(init_attr->srq, struct ehca_qp, ib_srq);
  426. has_srq = 1;
  427. parms.ext_type = EQPT_SRQBASE;
  428. parms.srq_qpn = my_srq->real_qp_num;
  429. }
  430. if (is_llqp && has_srq) {
  431. ehca_err(pd->device, "LLQPs can't have an SRQ");
  432. atomic_dec(&shca->num_qps);
  433. return ERR_PTR(-EINVAL);
  434. }
  435. /* handle SRQs */
  436. if (is_srq) {
  437. parms.ext_type = EQPT_SRQ;
  438. parms.srq_limit = srq_init_attr->attr.srq_limit;
  439. if (init_attr->cap.max_recv_sge > 3) {
  440. ehca_err(pd->device, "no more than three SGEs "
  441. "supported for SRQ pd=%p max_sge=%x",
  442. pd, init_attr->cap.max_recv_sge);
  443. atomic_dec(&shca->num_qps);
  444. return ERR_PTR(-EINVAL);
  445. }
  446. }
  447. /* check QP type */
  448. if (qp_type != IB_QPT_UD &&
  449. qp_type != IB_QPT_UC &&
  450. qp_type != IB_QPT_RC &&
  451. qp_type != IB_QPT_SMI &&
  452. qp_type != IB_QPT_GSI) {
  453. ehca_err(pd->device, "wrong QP Type=%x", qp_type);
  454. atomic_dec(&shca->num_qps);
  455. return ERR_PTR(-EINVAL);
  456. }
  457. if (is_llqp) {
  458. switch (qp_type) {
  459. case IB_QPT_RC:
  460. if ((init_attr->cap.max_send_wr > 255) ||
  461. (init_attr->cap.max_recv_wr > 255)) {
  462. ehca_err(pd->device,
  463. "Invalid Number of max_sq_wr=%x "
  464. "or max_rq_wr=%x for RC LLQP",
  465. init_attr->cap.max_send_wr,
  466. init_attr->cap.max_recv_wr);
  467. atomic_dec(&shca->num_qps);
  468. return ERR_PTR(-EINVAL);
  469. }
  470. break;
  471. case IB_QPT_UD:
  472. if (!EHCA_BMASK_GET(HCA_CAP_UD_LL_QP, shca->hca_cap)) {
  473. ehca_err(pd->device, "UD LLQP not supported "
  474. "by this adapter");
  475. atomic_dec(&shca->num_qps);
  476. return ERR_PTR(-ENOSYS);
  477. }
  478. if (!(init_attr->cap.max_send_sge <= 5
  479. && init_attr->cap.max_send_sge >= 1
  480. && init_attr->cap.max_recv_sge <= 5
  481. && init_attr->cap.max_recv_sge >= 1)) {
  482. ehca_err(pd->device,
  483. "Invalid Number of max_send_sge=%x "
  484. "or max_recv_sge=%x for UD LLQP",
  485. init_attr->cap.max_send_sge,
  486. init_attr->cap.max_recv_sge);
  487. atomic_dec(&shca->num_qps);
  488. return ERR_PTR(-EINVAL);
  489. } else if (init_attr->cap.max_send_wr > 255) {
  490. ehca_err(pd->device,
  491. "Invalid Number of "
  492. "max_send_wr=%x for UD QP_TYPE=%x",
  493. init_attr->cap.max_send_wr, qp_type);
  494. atomic_dec(&shca->num_qps);
  495. return ERR_PTR(-EINVAL);
  496. }
  497. break;
  498. default:
  499. ehca_err(pd->device, "unsupported LL QP Type=%x",
  500. qp_type);
  501. atomic_dec(&shca->num_qps);
  502. return ERR_PTR(-EINVAL);
  503. }
  504. } else {
  505. int max_sge = (qp_type == IB_QPT_UD || qp_type == IB_QPT_SMI
  506. || qp_type == IB_QPT_GSI) ? 250 : 252;
  507. if (init_attr->cap.max_send_sge > max_sge
  508. || init_attr->cap.max_recv_sge > max_sge) {
  509. ehca_err(pd->device, "Invalid number of SGEs requested "
  510. "send_sge=%x recv_sge=%x max_sge=%x",
  511. init_attr->cap.max_send_sge,
  512. init_attr->cap.max_recv_sge, max_sge);
  513. atomic_dec(&shca->num_qps);
  514. return ERR_PTR(-EINVAL);
  515. }
  516. }
  517. if (pd->uobject && udata)
  518. context = pd->uobject->context;
  519. my_qp = kmem_cache_zalloc(qp_cache, GFP_KERNEL);
  520. if (!my_qp) {
  521. ehca_err(pd->device, "pd=%p not enough memory to alloc qp", pd);
  522. atomic_dec(&shca->num_qps);
  523. return ERR_PTR(-ENOMEM);
  524. }
  525. atomic_set(&my_qp->nr_events, 0);
  526. init_waitqueue_head(&my_qp->wait_completion);
  527. spin_lock_init(&my_qp->spinlock_s);
  528. spin_lock_init(&my_qp->spinlock_r);
  529. my_qp->qp_type = qp_type;
  530. my_qp->ext_type = parms.ext_type;
  531. my_qp->state = IB_QPS_RESET;
  532. if (init_attr->recv_cq)
  533. my_qp->recv_cq =
  534. container_of(init_attr->recv_cq, struct ehca_cq, ib_cq);
  535. if (init_attr->send_cq)
  536. my_qp->send_cq =
  537. container_of(init_attr->send_cq, struct ehca_cq, ib_cq);
  538. do {
  539. if (!idr_pre_get(&ehca_qp_idr, GFP_KERNEL)) {
  540. ret = -ENOMEM;
  541. ehca_err(pd->device, "Can't reserve idr resources.");
  542. goto create_qp_exit0;
  543. }
  544. write_lock_irqsave(&ehca_qp_idr_lock, flags);
  545. ret = idr_get_new(&ehca_qp_idr, my_qp, &my_qp->token);
  546. write_unlock_irqrestore(&ehca_qp_idr_lock, flags);
  547. } while (ret == -EAGAIN);
  548. if (ret) {
  549. ret = -ENOMEM;
  550. ehca_err(pd->device, "Can't allocate new idr entry.");
  551. goto create_qp_exit0;
  552. }
  553. if (my_qp->token > 0x1FFFFFF) {
  554. ret = -EINVAL;
  555. ehca_err(pd->device, "Invalid number of qp");
  556. goto create_qp_exit1;
  557. }
  558. if (has_srq)
  559. parms.srq_token = my_qp->token;
  560. parms.servicetype = ibqptype2servicetype(qp_type);
  561. if (parms.servicetype < 0) {
  562. ret = -EINVAL;
  563. ehca_err(pd->device, "Invalid qp_type=%x", qp_type);
  564. goto create_qp_exit1;
  565. }
  566. /* Always signal by WQE so we can hide circ. WQEs */
  567. parms.sigtype = HCALL_SIGT_BY_WQE;
  568. /* UD_AV CIRCUMVENTION */
  569. max_send_sge = init_attr->cap.max_send_sge;
  570. max_recv_sge = init_attr->cap.max_recv_sge;
  571. if (parms.servicetype == ST_UD && !is_llqp) {
  572. max_send_sge += 2;
  573. max_recv_sge += 2;
  574. }
  575. parms.token = my_qp->token;
  576. parms.eq_handle = shca->eq.ipz_eq_handle;
  577. parms.pd = my_pd->fw_pd;
  578. if (my_qp->send_cq)
  579. parms.send_cq_handle = my_qp->send_cq->ipz_cq_handle;
  580. if (my_qp->recv_cq)
  581. parms.recv_cq_handle = my_qp->recv_cq->ipz_cq_handle;
  582. parms.squeue.max_wr = init_attr->cap.max_send_wr;
  583. parms.rqueue.max_wr = init_attr->cap.max_recv_wr;
  584. parms.squeue.max_sge = max_send_sge;
  585. parms.rqueue.max_sge = max_recv_sge;
  586. /* RC QPs need one more SWQE for unsolicited ack circumvention */
  587. if (qp_type == IB_QPT_RC)
  588. parms.squeue.max_wr++;
  589. if (EHCA_BMASK_GET(HCA_CAP_MINI_QP, shca->hca_cap)) {
  590. if (HAS_SQ(my_qp))
  591. ehca_determine_small_queue(
  592. &parms.squeue, max_send_sge, is_llqp);
  593. if (HAS_RQ(my_qp))
  594. ehca_determine_small_queue(
  595. &parms.rqueue, max_recv_sge, is_llqp);
  596. parms.qp_storage =
  597. (parms.squeue.is_small || parms.rqueue.is_small);
  598. }
  599. h_ret = hipz_h_alloc_resource_qp(shca->ipz_hca_handle, &parms);
  600. if (h_ret != H_SUCCESS) {
  601. ehca_err(pd->device, "h_alloc_resource_qp() failed h_ret=%li",
  602. h_ret);
  603. ret = ehca2ib_return_code(h_ret);
  604. goto create_qp_exit1;
  605. }
  606. ib_qp_num = my_qp->real_qp_num = parms.real_qp_num;
  607. my_qp->ipz_qp_handle = parms.qp_handle;
  608. my_qp->galpas = parms.galpas;
  609. swqe_size = ehca_calc_wqe_size(parms.squeue.act_nr_sges, is_llqp);
  610. rwqe_size = ehca_calc_wqe_size(parms.rqueue.act_nr_sges, is_llqp);
  611. switch (qp_type) {
  612. case IB_QPT_RC:
  613. if (is_llqp) {
  614. parms.squeue.act_nr_sges = 1;
  615. parms.rqueue.act_nr_sges = 1;
  616. }
  617. /* hide the extra WQE */
  618. parms.squeue.act_nr_wqes--;
  619. break;
  620. case IB_QPT_UD:
  621. case IB_QPT_GSI:
  622. case IB_QPT_SMI:
  623. /* UD circumvention */
  624. if (is_llqp) {
  625. parms.squeue.act_nr_sges = 1;
  626. parms.rqueue.act_nr_sges = 1;
  627. } else {
  628. parms.squeue.act_nr_sges -= 2;
  629. parms.rqueue.act_nr_sges -= 2;
  630. }
  631. if (IB_QPT_GSI == qp_type || IB_QPT_SMI == qp_type) {
  632. parms.squeue.act_nr_wqes = init_attr->cap.max_send_wr;
  633. parms.rqueue.act_nr_wqes = init_attr->cap.max_recv_wr;
  634. parms.squeue.act_nr_sges = init_attr->cap.max_send_sge;
  635. parms.rqueue.act_nr_sges = init_attr->cap.max_recv_sge;
  636. ib_qp_num = (qp_type == IB_QPT_SMI) ? 0 : 1;
  637. }
  638. break;
  639. default:
  640. break;
  641. }
  642. /* initialize r/squeue and register queue pages */
  643. if (HAS_SQ(my_qp)) {
  644. ret = init_qp_queue(
  645. shca, my_pd, my_qp, &my_qp->ipz_squeue, 0,
  646. HAS_RQ(my_qp) ? H_PAGE_REGISTERED : H_SUCCESS,
  647. &parms.squeue, swqe_size);
  648. if (ret) {
  649. ehca_err(pd->device, "Couldn't initialize squeue "
  650. "and pages ret=%i", ret);
  651. goto create_qp_exit2;
  652. }
  653. }
  654. if (HAS_RQ(my_qp)) {
  655. ret = init_qp_queue(
  656. shca, my_pd, my_qp, &my_qp->ipz_rqueue, 1,
  657. H_SUCCESS, &parms.rqueue, rwqe_size);
  658. if (ret) {
  659. ehca_err(pd->device, "Couldn't initialize rqueue "
  660. "and pages ret=%i", ret);
  661. goto create_qp_exit3;
  662. }
  663. }
  664. if (is_srq) {
  665. my_qp->ib_srq.pd = &my_pd->ib_pd;
  666. my_qp->ib_srq.device = my_pd->ib_pd.device;
  667. my_qp->ib_srq.srq_context = init_attr->qp_context;
  668. my_qp->ib_srq.event_handler = init_attr->event_handler;
  669. } else {
  670. my_qp->ib_qp.qp_num = ib_qp_num;
  671. my_qp->ib_qp.pd = &my_pd->ib_pd;
  672. my_qp->ib_qp.device = my_pd->ib_pd.device;
  673. my_qp->ib_qp.recv_cq = init_attr->recv_cq;
  674. my_qp->ib_qp.send_cq = init_attr->send_cq;
  675. my_qp->ib_qp.qp_type = qp_type;
  676. my_qp->ib_qp.srq = init_attr->srq;
  677. my_qp->ib_qp.qp_context = init_attr->qp_context;
  678. my_qp->ib_qp.event_handler = init_attr->event_handler;
  679. }
  680. init_attr->cap.max_inline_data = 0; /* not supported yet */
  681. init_attr->cap.max_recv_sge = parms.rqueue.act_nr_sges;
  682. init_attr->cap.max_recv_wr = parms.rqueue.act_nr_wqes;
  683. init_attr->cap.max_send_sge = parms.squeue.act_nr_sges;
  684. init_attr->cap.max_send_wr = parms.squeue.act_nr_wqes;
  685. my_qp->init_attr = *init_attr;
  686. if (qp_type == IB_QPT_SMI || qp_type == IB_QPT_GSI) {
  687. shca->sport[init_attr->port_num - 1].ibqp_sqp[qp_type] =
  688. &my_qp->ib_qp;
  689. if (ehca_nr_ports < 0) {
  690. /* alloc array to cache subsequent modify qp parms
  691. * for autodetect mode
  692. */
  693. my_qp->mod_qp_parm =
  694. kzalloc(EHCA_MOD_QP_PARM_MAX *
  695. sizeof(*my_qp->mod_qp_parm),
  696. GFP_KERNEL);
  697. if (!my_qp->mod_qp_parm) {
  698. ehca_err(pd->device,
  699. "Could not alloc mod_qp_parm");
  700. goto create_qp_exit4;
  701. }
  702. }
  703. }
  704. /* NOTE: define_apq0() not supported yet */
  705. if (qp_type == IB_QPT_GSI) {
  706. h_ret = ehca_define_sqp(shca, my_qp, init_attr);
  707. if (h_ret != H_SUCCESS) {
  708. ret = ehca2ib_return_code(h_ret);
  709. goto create_qp_exit5;
  710. }
  711. }
  712. if (my_qp->send_cq) {
  713. ret = ehca_cq_assign_qp(my_qp->send_cq, my_qp);
  714. if (ret) {
  715. ehca_err(pd->device,
  716. "Couldn't assign qp to send_cq ret=%i", ret);
  717. goto create_qp_exit5;
  718. }
  719. }
  720. /* copy queues, galpa data to user space */
  721. if (context && udata) {
  722. struct ehca_create_qp_resp resp;
  723. memset(&resp, 0, sizeof(resp));
  724. resp.qp_num = my_qp->real_qp_num;
  725. resp.token = my_qp->token;
  726. resp.qp_type = my_qp->qp_type;
  727. resp.ext_type = my_qp->ext_type;
  728. resp.qkey = my_qp->qkey;
  729. resp.real_qp_num = my_qp->real_qp_num;
  730. if (HAS_SQ(my_qp))
  731. queue2resp(&resp.ipz_squeue, &my_qp->ipz_squeue);
  732. if (HAS_RQ(my_qp))
  733. queue2resp(&resp.ipz_rqueue, &my_qp->ipz_rqueue);
  734. resp.fw_handle_ofs = (u32)
  735. (my_qp->galpas.user.fw_handle & (PAGE_SIZE - 1));
  736. if (ib_copy_to_udata(udata, &resp, sizeof resp)) {
  737. ehca_err(pd->device, "Copy to udata failed");
  738. ret = -EINVAL;
  739. goto create_qp_exit6;
  740. }
  741. }
  742. return my_qp;
  743. create_qp_exit6:
  744. ehca_cq_unassign_qp(my_qp->send_cq, my_qp->real_qp_num);
  745. create_qp_exit5:
  746. kfree(my_qp->mod_qp_parm);
  747. create_qp_exit4:
  748. if (HAS_RQ(my_qp))
  749. ipz_queue_dtor(my_pd, &my_qp->ipz_rqueue);
  750. create_qp_exit3:
  751. if (HAS_SQ(my_qp))
  752. ipz_queue_dtor(my_pd, &my_qp->ipz_squeue);
  753. create_qp_exit2:
  754. hipz_h_destroy_qp(shca->ipz_hca_handle, my_qp);
  755. create_qp_exit1:
  756. write_lock_irqsave(&ehca_qp_idr_lock, flags);
  757. idr_remove(&ehca_qp_idr, my_qp->token);
  758. write_unlock_irqrestore(&ehca_qp_idr_lock, flags);
  759. create_qp_exit0:
  760. kmem_cache_free(qp_cache, my_qp);
  761. atomic_dec(&shca->num_qps);
  762. return ERR_PTR(ret);
  763. }
  764. struct ib_qp *ehca_create_qp(struct ib_pd *pd,
  765. struct ib_qp_init_attr *qp_init_attr,
  766. struct ib_udata *udata)
  767. {
  768. struct ehca_qp *ret;
  769. ret = internal_create_qp(pd, qp_init_attr, NULL, udata, 0);
  770. return IS_ERR(ret) ? (struct ib_qp *)ret : &ret->ib_qp;
  771. }
  772. static int internal_destroy_qp(struct ib_device *dev, struct ehca_qp *my_qp,
  773. struct ib_uobject *uobject);
  774. struct ib_srq *ehca_create_srq(struct ib_pd *pd,
  775. struct ib_srq_init_attr *srq_init_attr,
  776. struct ib_udata *udata)
  777. {
  778. struct ib_qp_init_attr qp_init_attr;
  779. struct ehca_qp *my_qp;
  780. struct ib_srq *ret;
  781. struct ehca_shca *shca = container_of(pd->device, struct ehca_shca,
  782. ib_device);
  783. struct hcp_modify_qp_control_block *mqpcb;
  784. u64 hret, update_mask;
  785. /* For common attributes, internal_create_qp() takes its info
  786. * out of qp_init_attr, so copy all common attrs there.
  787. */
  788. memset(&qp_init_attr, 0, sizeof(qp_init_attr));
  789. qp_init_attr.event_handler = srq_init_attr->event_handler;
  790. qp_init_attr.qp_context = srq_init_attr->srq_context;
  791. qp_init_attr.sq_sig_type = IB_SIGNAL_ALL_WR;
  792. qp_init_attr.qp_type = IB_QPT_RC;
  793. qp_init_attr.cap.max_recv_wr = srq_init_attr->attr.max_wr;
  794. qp_init_attr.cap.max_recv_sge = srq_init_attr->attr.max_sge;
  795. my_qp = internal_create_qp(pd, &qp_init_attr, srq_init_attr, udata, 1);
  796. if (IS_ERR(my_qp))
  797. return (struct ib_srq *)my_qp;
  798. /* copy back return values */
  799. srq_init_attr->attr.max_wr = qp_init_attr.cap.max_recv_wr;
  800. srq_init_attr->attr.max_sge = 3;
  801. /* drive SRQ into RTR state */
  802. mqpcb = ehca_alloc_fw_ctrlblock(GFP_KERNEL);
  803. if (!mqpcb) {
  804. ehca_err(pd->device, "Could not get zeroed page for mqpcb "
  805. "ehca_qp=%p qp_num=%x ", my_qp, my_qp->real_qp_num);
  806. ret = ERR_PTR(-ENOMEM);
  807. goto create_srq1;
  808. }
  809. mqpcb->qp_state = EHCA_QPS_INIT;
  810. mqpcb->prim_phys_port = 1;
  811. update_mask = EHCA_BMASK_SET(MQPCB_MASK_QP_STATE, 1);
  812. hret = hipz_h_modify_qp(shca->ipz_hca_handle,
  813. my_qp->ipz_qp_handle,
  814. &my_qp->pf,
  815. update_mask,
  816. mqpcb, my_qp->galpas.kernel);
  817. if (hret != H_SUCCESS) {
  818. ehca_err(pd->device, "Could not modify SRQ to INIT "
  819. "ehca_qp=%p qp_num=%x h_ret=%li",
  820. my_qp, my_qp->real_qp_num, hret);
  821. goto create_srq2;
  822. }
  823. mqpcb->qp_enable = 1;
  824. update_mask = EHCA_BMASK_SET(MQPCB_MASK_QP_ENABLE, 1);
  825. hret = hipz_h_modify_qp(shca->ipz_hca_handle,
  826. my_qp->ipz_qp_handle,
  827. &my_qp->pf,
  828. update_mask,
  829. mqpcb, my_qp->galpas.kernel);
  830. if (hret != H_SUCCESS) {
  831. ehca_err(pd->device, "Could not enable SRQ "
  832. "ehca_qp=%p qp_num=%x h_ret=%li",
  833. my_qp, my_qp->real_qp_num, hret);
  834. goto create_srq2;
  835. }
  836. mqpcb->qp_state = EHCA_QPS_RTR;
  837. update_mask = EHCA_BMASK_SET(MQPCB_MASK_QP_STATE, 1);
  838. hret = hipz_h_modify_qp(shca->ipz_hca_handle,
  839. my_qp->ipz_qp_handle,
  840. &my_qp->pf,
  841. update_mask,
  842. mqpcb, my_qp->galpas.kernel);
  843. if (hret != H_SUCCESS) {
  844. ehca_err(pd->device, "Could not modify SRQ to RTR "
  845. "ehca_qp=%p qp_num=%x h_ret=%li",
  846. my_qp, my_qp->real_qp_num, hret);
  847. goto create_srq2;
  848. }
  849. ehca_free_fw_ctrlblock(mqpcb);
  850. return &my_qp->ib_srq;
  851. create_srq2:
  852. ret = ERR_PTR(ehca2ib_return_code(hret));
  853. ehca_free_fw_ctrlblock(mqpcb);
  854. create_srq1:
  855. internal_destroy_qp(pd->device, my_qp, my_qp->ib_srq.uobject);
  856. return ret;
  857. }
  858. /*
  859. * prepare_sqe_rts called by internal_modify_qp() at trans sqe -> rts
  860. * set purge bit of bad wqe and subsequent wqes to avoid reentering sqe
  861. * returns total number of bad wqes in bad_wqe_cnt
  862. */
  863. static int prepare_sqe_rts(struct ehca_qp *my_qp, struct ehca_shca *shca,
  864. int *bad_wqe_cnt)
  865. {
  866. u64 h_ret;
  867. struct ipz_queue *squeue;
  868. void *bad_send_wqe_p, *bad_send_wqe_v;
  869. u64 q_ofs;
  870. struct ehca_wqe *wqe;
  871. int qp_num = my_qp->ib_qp.qp_num;
  872. /* get send wqe pointer */
  873. h_ret = hipz_h_disable_and_get_wqe(shca->ipz_hca_handle,
  874. my_qp->ipz_qp_handle, &my_qp->pf,
  875. &bad_send_wqe_p, NULL, 2);
  876. if (h_ret != H_SUCCESS) {
  877. ehca_err(&shca->ib_device, "hipz_h_disable_and_get_wqe() failed"
  878. " ehca_qp=%p qp_num=%x h_ret=%li",
  879. my_qp, qp_num, h_ret);
  880. return ehca2ib_return_code(h_ret);
  881. }
  882. bad_send_wqe_p = (void *)((u64)bad_send_wqe_p & (~(1L << 63)));
  883. ehca_dbg(&shca->ib_device, "qp_num=%x bad_send_wqe_p=%p",
  884. qp_num, bad_send_wqe_p);
  885. /* convert wqe pointer to vadr */
  886. bad_send_wqe_v = abs_to_virt((u64)bad_send_wqe_p);
  887. if (ehca_debug_level >= 2)
  888. ehca_dmp(bad_send_wqe_v, 32, "qp_num=%x bad_wqe", qp_num);
  889. squeue = &my_qp->ipz_squeue;
  890. if (ipz_queue_abs_to_offset(squeue, (u64)bad_send_wqe_p, &q_ofs)) {
  891. ehca_err(&shca->ib_device, "failed to get wqe offset qp_num=%x"
  892. " bad_send_wqe_p=%p", qp_num, bad_send_wqe_p);
  893. return -EFAULT;
  894. }
  895. /* loop sets wqe's purge bit */
  896. wqe = (struct ehca_wqe *)ipz_qeit_calc(squeue, q_ofs);
  897. *bad_wqe_cnt = 0;
  898. while (wqe->optype != 0xff && wqe->wqef != 0xff) {
  899. if (ehca_debug_level >= 2)
  900. ehca_dmp(wqe, 32, "qp_num=%x wqe", qp_num);
  901. wqe->nr_of_data_seg = 0; /* suppress data access */
  902. wqe->wqef = WQEF_PURGE; /* WQE to be purged */
  903. q_ofs = ipz_queue_advance_offset(squeue, q_ofs);
  904. wqe = (struct ehca_wqe *)ipz_qeit_calc(squeue, q_ofs);
  905. *bad_wqe_cnt = (*bad_wqe_cnt)+1;
  906. }
  907. /*
  908. * bad wqe will be reprocessed and ignored when pol_cq() is called,
  909. * i.e. nr of wqes with flush error status is one less
  910. */
  911. ehca_dbg(&shca->ib_device, "qp_num=%x flusherr_wqe_cnt=%x",
  912. qp_num, (*bad_wqe_cnt)-1);
  913. wqe->wqef = 0;
  914. return 0;
  915. }
  916. /*
  917. * internal_modify_qp with circumvention to handle aqp0 properly
  918. * smi_reset2init indicates if this is an internal reset-to-init-call for
  919. * smi. This flag must always be zero if called from ehca_modify_qp()!
  920. * This internal func was intorduced to avoid recursion of ehca_modify_qp()!
  921. */
  922. static int internal_modify_qp(struct ib_qp *ibqp,
  923. struct ib_qp_attr *attr,
  924. int attr_mask, int smi_reset2init)
  925. {
  926. enum ib_qp_state qp_cur_state, qp_new_state;
  927. int cnt, qp_attr_idx, ret = 0;
  928. enum ib_qp_statetrans statetrans;
  929. struct hcp_modify_qp_control_block *mqpcb;
  930. struct ehca_qp *my_qp = container_of(ibqp, struct ehca_qp, ib_qp);
  931. struct ehca_shca *shca =
  932. container_of(ibqp->pd->device, struct ehca_shca, ib_device);
  933. u64 update_mask;
  934. u64 h_ret;
  935. int bad_wqe_cnt = 0;
  936. int squeue_locked = 0;
  937. unsigned long flags = 0;
  938. /* do query_qp to obtain current attr values */
  939. mqpcb = ehca_alloc_fw_ctrlblock(GFP_ATOMIC);
  940. if (!mqpcb) {
  941. ehca_err(ibqp->device, "Could not get zeroed page for mqpcb "
  942. "ehca_qp=%p qp_num=%x ", my_qp, ibqp->qp_num);
  943. return -ENOMEM;
  944. }
  945. h_ret = hipz_h_query_qp(shca->ipz_hca_handle,
  946. my_qp->ipz_qp_handle,
  947. &my_qp->pf,
  948. mqpcb, my_qp->galpas.kernel);
  949. if (h_ret != H_SUCCESS) {
  950. ehca_err(ibqp->device, "hipz_h_query_qp() failed "
  951. "ehca_qp=%p qp_num=%x h_ret=%li",
  952. my_qp, ibqp->qp_num, h_ret);
  953. ret = ehca2ib_return_code(h_ret);
  954. goto modify_qp_exit1;
  955. }
  956. qp_cur_state = ehca2ib_qp_state(mqpcb->qp_state);
  957. if (qp_cur_state == -EINVAL) { /* invalid qp state */
  958. ret = -EINVAL;
  959. ehca_err(ibqp->device, "Invalid current ehca_qp_state=%x "
  960. "ehca_qp=%p qp_num=%x",
  961. mqpcb->qp_state, my_qp, ibqp->qp_num);
  962. goto modify_qp_exit1;
  963. }
  964. /*
  965. * circumvention to set aqp0 initial state to init
  966. * as expected by IB spec
  967. */
  968. if (smi_reset2init == 0 &&
  969. ibqp->qp_type == IB_QPT_SMI &&
  970. qp_cur_state == IB_QPS_RESET &&
  971. (attr_mask & IB_QP_STATE) &&
  972. attr->qp_state == IB_QPS_INIT) { /* RESET -> INIT */
  973. struct ib_qp_attr smiqp_attr = {
  974. .qp_state = IB_QPS_INIT,
  975. .port_num = my_qp->init_attr.port_num,
  976. .pkey_index = 0,
  977. .qkey = 0
  978. };
  979. int smiqp_attr_mask = IB_QP_STATE | IB_QP_PORT |
  980. IB_QP_PKEY_INDEX | IB_QP_QKEY;
  981. int smirc = internal_modify_qp(
  982. ibqp, &smiqp_attr, smiqp_attr_mask, 1);
  983. if (smirc) {
  984. ehca_err(ibqp->device, "SMI RESET -> INIT failed. "
  985. "ehca_modify_qp() rc=%i", smirc);
  986. ret = H_PARAMETER;
  987. goto modify_qp_exit1;
  988. }
  989. qp_cur_state = IB_QPS_INIT;
  990. ehca_dbg(ibqp->device, "SMI RESET -> INIT succeeded");
  991. }
  992. /* is transmitted current state equal to "real" current state */
  993. if ((attr_mask & IB_QP_CUR_STATE) &&
  994. qp_cur_state != attr->cur_qp_state) {
  995. ret = -EINVAL;
  996. ehca_err(ibqp->device,
  997. "Invalid IB_QP_CUR_STATE attr->curr_qp_state=%x <>"
  998. " actual cur_qp_state=%x. ehca_qp=%p qp_num=%x",
  999. attr->cur_qp_state, qp_cur_state, my_qp, ibqp->qp_num);
  1000. goto modify_qp_exit1;
  1001. }
  1002. ehca_dbg(ibqp->device, "ehca_qp=%p qp_num=%x current qp_state=%x "
  1003. "new qp_state=%x attribute_mask=%x",
  1004. my_qp, ibqp->qp_num, qp_cur_state, attr->qp_state, attr_mask);
  1005. qp_new_state = attr_mask & IB_QP_STATE ? attr->qp_state : qp_cur_state;
  1006. if (!smi_reset2init &&
  1007. !ib_modify_qp_is_ok(qp_cur_state, qp_new_state, ibqp->qp_type,
  1008. attr_mask)) {
  1009. ret = -EINVAL;
  1010. ehca_err(ibqp->device,
  1011. "Invalid qp transition new_state=%x cur_state=%x "
  1012. "ehca_qp=%p qp_num=%x attr_mask=%x", qp_new_state,
  1013. qp_cur_state, my_qp, ibqp->qp_num, attr_mask);
  1014. goto modify_qp_exit1;
  1015. }
  1016. mqpcb->qp_state = ib2ehca_qp_state(qp_new_state);
  1017. if (mqpcb->qp_state)
  1018. update_mask = EHCA_BMASK_SET(MQPCB_MASK_QP_STATE, 1);
  1019. else {
  1020. ret = -EINVAL;
  1021. ehca_err(ibqp->device, "Invalid new qp state=%x "
  1022. "ehca_qp=%p qp_num=%x",
  1023. qp_new_state, my_qp, ibqp->qp_num);
  1024. goto modify_qp_exit1;
  1025. }
  1026. /* retrieve state transition struct to get req and opt attrs */
  1027. statetrans = get_modqp_statetrans(qp_cur_state, qp_new_state);
  1028. if (statetrans < 0) {
  1029. ret = -EINVAL;
  1030. ehca_err(ibqp->device, "<INVALID STATE CHANGE> qp_cur_state=%x "
  1031. "new_qp_state=%x State_xsition=%x ehca_qp=%p "
  1032. "qp_num=%x", qp_cur_state, qp_new_state,
  1033. statetrans, my_qp, ibqp->qp_num);
  1034. goto modify_qp_exit1;
  1035. }
  1036. qp_attr_idx = ib2ehcaqptype(ibqp->qp_type);
  1037. if (qp_attr_idx < 0) {
  1038. ret = qp_attr_idx;
  1039. ehca_err(ibqp->device,
  1040. "Invalid QP type=%x ehca_qp=%p qp_num=%x",
  1041. ibqp->qp_type, my_qp, ibqp->qp_num);
  1042. goto modify_qp_exit1;
  1043. }
  1044. ehca_dbg(ibqp->device,
  1045. "ehca_qp=%p qp_num=%x <VALID STATE CHANGE> qp_state_xsit=%x",
  1046. my_qp, ibqp->qp_num, statetrans);
  1047. /* eHCA2 rev2 and higher require the SEND_GRH_FLAG to be set
  1048. * in non-LL UD QPs.
  1049. */
  1050. if ((my_qp->qp_type == IB_QPT_UD) &&
  1051. (my_qp->ext_type != EQPT_LLQP) &&
  1052. (statetrans == IB_QPST_INIT2RTR) &&
  1053. (shca->hw_level >= 0x22)) {
  1054. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_SEND_GRH_FLAG, 1);
  1055. mqpcb->send_grh_flag = 1;
  1056. }
  1057. /* sqe -> rts: set purge bit of bad wqe before actual trans */
  1058. if ((my_qp->qp_type == IB_QPT_UD ||
  1059. my_qp->qp_type == IB_QPT_GSI ||
  1060. my_qp->qp_type == IB_QPT_SMI) &&
  1061. statetrans == IB_QPST_SQE2RTS) {
  1062. /* mark next free wqe if kernel */
  1063. if (!ibqp->uobject) {
  1064. struct ehca_wqe *wqe;
  1065. /* lock send queue */
  1066. spin_lock_irqsave(&my_qp->spinlock_s, flags);
  1067. squeue_locked = 1;
  1068. /* mark next free wqe */
  1069. wqe = (struct ehca_wqe *)
  1070. ipz_qeit_get(&my_qp->ipz_squeue);
  1071. wqe->optype = wqe->wqef = 0xff;
  1072. ehca_dbg(ibqp->device, "qp_num=%x next_free_wqe=%p",
  1073. ibqp->qp_num, wqe);
  1074. }
  1075. ret = prepare_sqe_rts(my_qp, shca, &bad_wqe_cnt);
  1076. if (ret) {
  1077. ehca_err(ibqp->device, "prepare_sqe_rts() failed "
  1078. "ehca_qp=%p qp_num=%x ret=%i",
  1079. my_qp, ibqp->qp_num, ret);
  1080. goto modify_qp_exit2;
  1081. }
  1082. }
  1083. /*
  1084. * enable RDMA_Atomic_Control if reset->init und reliable con
  1085. * this is necessary since gen2 does not provide that flag,
  1086. * but pHyp requires it
  1087. */
  1088. if (statetrans == IB_QPST_RESET2INIT &&
  1089. (ibqp->qp_type == IB_QPT_RC || ibqp->qp_type == IB_QPT_UC)) {
  1090. mqpcb->rdma_atomic_ctrl = 3;
  1091. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_RDMA_ATOMIC_CTRL, 1);
  1092. }
  1093. /* circ. pHyp requires #RDMA/Atomic Resp Res for UC INIT -> RTR */
  1094. if (statetrans == IB_QPST_INIT2RTR &&
  1095. (ibqp->qp_type == IB_QPT_UC) &&
  1096. !(attr_mask & IB_QP_MAX_DEST_RD_ATOMIC)) {
  1097. mqpcb->rdma_nr_atomic_resp_res = 1; /* default to 1 */
  1098. update_mask |=
  1099. EHCA_BMASK_SET(MQPCB_MASK_RDMA_NR_ATOMIC_RESP_RES, 1);
  1100. }
  1101. if (attr_mask & IB_QP_PKEY_INDEX) {
  1102. if (attr->pkey_index >= 16) {
  1103. ret = -EINVAL;
  1104. ehca_err(ibqp->device, "Invalid pkey_index=%x. "
  1105. "ehca_qp=%p qp_num=%x max_pkey_index=f",
  1106. attr->pkey_index, my_qp, ibqp->qp_num);
  1107. goto modify_qp_exit2;
  1108. }
  1109. mqpcb->prim_p_key_idx = attr->pkey_index;
  1110. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_PRIM_P_KEY_IDX, 1);
  1111. }
  1112. if (attr_mask & IB_QP_PORT) {
  1113. struct ehca_sport *sport;
  1114. struct ehca_qp *aqp1;
  1115. if (attr->port_num < 1 || attr->port_num > shca->num_ports) {
  1116. ret = -EINVAL;
  1117. ehca_err(ibqp->device, "Invalid port=%x. "
  1118. "ehca_qp=%p qp_num=%x num_ports=%x",
  1119. attr->port_num, my_qp, ibqp->qp_num,
  1120. shca->num_ports);
  1121. goto modify_qp_exit2;
  1122. }
  1123. sport = &shca->sport[attr->port_num - 1];
  1124. if (!sport->ibqp_sqp[IB_QPT_GSI]) {
  1125. /* should not occur */
  1126. ret = -EFAULT;
  1127. ehca_err(ibqp->device, "AQP1 was not created for "
  1128. "port=%x", attr->port_num);
  1129. goto modify_qp_exit2;
  1130. }
  1131. aqp1 = container_of(sport->ibqp_sqp[IB_QPT_GSI],
  1132. struct ehca_qp, ib_qp);
  1133. if (ibqp->qp_type != IB_QPT_GSI &&
  1134. ibqp->qp_type != IB_QPT_SMI &&
  1135. aqp1->mod_qp_parm) {
  1136. /*
  1137. * firmware will reject this modify_qp() because
  1138. * port is not activated/initialized fully
  1139. */
  1140. ret = -EFAULT;
  1141. ehca_warn(ibqp->device, "Couldn't modify qp port=%x: "
  1142. "either port is being activated (try again) "
  1143. "or cabling issue", attr->port_num);
  1144. goto modify_qp_exit2;
  1145. }
  1146. mqpcb->prim_phys_port = attr->port_num;
  1147. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_PRIM_PHYS_PORT, 1);
  1148. }
  1149. if (attr_mask & IB_QP_QKEY) {
  1150. mqpcb->qkey = attr->qkey;
  1151. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_QKEY, 1);
  1152. }
  1153. if (attr_mask & IB_QP_AV) {
  1154. mqpcb->dlid = attr->ah_attr.dlid;
  1155. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_DLID, 1);
  1156. mqpcb->source_path_bits = attr->ah_attr.src_path_bits;
  1157. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_SOURCE_PATH_BITS, 1);
  1158. mqpcb->service_level = attr->ah_attr.sl;
  1159. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_SERVICE_LEVEL, 1);
  1160. if (ehca_calc_ipd(shca, mqpcb->prim_phys_port,
  1161. attr->ah_attr.static_rate,
  1162. &mqpcb->max_static_rate)) {
  1163. ret = -EINVAL;
  1164. goto modify_qp_exit2;
  1165. }
  1166. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_MAX_STATIC_RATE, 1);
  1167. /*
  1168. * Always supply the GRH flag, even if it's zero, to give the
  1169. * hypervisor a clear "yes" or "no" instead of a "perhaps"
  1170. */
  1171. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_SEND_GRH_FLAG, 1);
  1172. /*
  1173. * only if GRH is TRUE we might consider SOURCE_GID_IDX
  1174. * and DEST_GID otherwise phype will return H_ATTR_PARM!!!
  1175. */
  1176. if (attr->ah_attr.ah_flags == IB_AH_GRH) {
  1177. mqpcb->send_grh_flag = 1;
  1178. mqpcb->source_gid_idx = attr->ah_attr.grh.sgid_index;
  1179. update_mask |=
  1180. EHCA_BMASK_SET(MQPCB_MASK_SOURCE_GID_IDX, 1);
  1181. for (cnt = 0; cnt < 16; cnt++)
  1182. mqpcb->dest_gid.byte[cnt] =
  1183. attr->ah_attr.grh.dgid.raw[cnt];
  1184. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_DEST_GID, 1);
  1185. mqpcb->flow_label = attr->ah_attr.grh.flow_label;
  1186. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_FLOW_LABEL, 1);
  1187. mqpcb->hop_limit = attr->ah_attr.grh.hop_limit;
  1188. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_HOP_LIMIT, 1);
  1189. mqpcb->traffic_class = attr->ah_attr.grh.traffic_class;
  1190. update_mask |=
  1191. EHCA_BMASK_SET(MQPCB_MASK_TRAFFIC_CLASS, 1);
  1192. }
  1193. }
  1194. if (attr_mask & IB_QP_PATH_MTU) {
  1195. /* store ld(MTU) */
  1196. my_qp->mtu_shift = attr->path_mtu + 7;
  1197. mqpcb->path_mtu = attr->path_mtu;
  1198. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_PATH_MTU, 1);
  1199. }
  1200. if (attr_mask & IB_QP_TIMEOUT) {
  1201. mqpcb->timeout = attr->timeout;
  1202. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_TIMEOUT, 1);
  1203. }
  1204. if (attr_mask & IB_QP_RETRY_CNT) {
  1205. mqpcb->retry_count = attr->retry_cnt;
  1206. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_RETRY_COUNT, 1);
  1207. }
  1208. if (attr_mask & IB_QP_RNR_RETRY) {
  1209. mqpcb->rnr_retry_count = attr->rnr_retry;
  1210. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_RNR_RETRY_COUNT, 1);
  1211. }
  1212. if (attr_mask & IB_QP_RQ_PSN) {
  1213. mqpcb->receive_psn = attr->rq_psn;
  1214. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_RECEIVE_PSN, 1);
  1215. }
  1216. if (attr_mask & IB_QP_MAX_DEST_RD_ATOMIC) {
  1217. mqpcb->rdma_nr_atomic_resp_res = attr->max_dest_rd_atomic < 3 ?
  1218. attr->max_dest_rd_atomic : 2;
  1219. update_mask |=
  1220. EHCA_BMASK_SET(MQPCB_MASK_RDMA_NR_ATOMIC_RESP_RES, 1);
  1221. }
  1222. if (attr_mask & IB_QP_MAX_QP_RD_ATOMIC) {
  1223. mqpcb->rdma_atomic_outst_dest_qp = attr->max_rd_atomic < 3 ?
  1224. attr->max_rd_atomic : 2;
  1225. update_mask |=
  1226. EHCA_BMASK_SET
  1227. (MQPCB_MASK_RDMA_ATOMIC_OUTST_DEST_QP, 1);
  1228. }
  1229. if (attr_mask & IB_QP_ALT_PATH) {
  1230. if (attr->alt_port_num < 1
  1231. || attr->alt_port_num > shca->num_ports) {
  1232. ret = -EINVAL;
  1233. ehca_err(ibqp->device, "Invalid alt_port=%x. "
  1234. "ehca_qp=%p qp_num=%x num_ports=%x",
  1235. attr->alt_port_num, my_qp, ibqp->qp_num,
  1236. shca->num_ports);
  1237. goto modify_qp_exit2;
  1238. }
  1239. mqpcb->alt_phys_port = attr->alt_port_num;
  1240. if (attr->alt_pkey_index >= 16) {
  1241. ret = -EINVAL;
  1242. ehca_err(ibqp->device, "Invalid alt_pkey_index=%x. "
  1243. "ehca_qp=%p qp_num=%x max_pkey_index=f",
  1244. attr->pkey_index, my_qp, ibqp->qp_num);
  1245. goto modify_qp_exit2;
  1246. }
  1247. mqpcb->alt_p_key_idx = attr->alt_pkey_index;
  1248. mqpcb->timeout_al = attr->alt_timeout;
  1249. mqpcb->dlid_al = attr->alt_ah_attr.dlid;
  1250. mqpcb->source_path_bits_al = attr->alt_ah_attr.src_path_bits;
  1251. mqpcb->service_level_al = attr->alt_ah_attr.sl;
  1252. if (ehca_calc_ipd(shca, mqpcb->alt_phys_port,
  1253. attr->alt_ah_attr.static_rate,
  1254. &mqpcb->max_static_rate_al)) {
  1255. ret = -EINVAL;
  1256. goto modify_qp_exit2;
  1257. }
  1258. /* OpenIB doesn't support alternate retry counts - copy them */
  1259. mqpcb->retry_count_al = mqpcb->retry_count;
  1260. mqpcb->rnr_retry_count_al = mqpcb->rnr_retry_count;
  1261. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_ALT_PHYS_PORT, 1)
  1262. | EHCA_BMASK_SET(MQPCB_MASK_ALT_P_KEY_IDX, 1)
  1263. | EHCA_BMASK_SET(MQPCB_MASK_TIMEOUT_AL, 1)
  1264. | EHCA_BMASK_SET(MQPCB_MASK_DLID_AL, 1)
  1265. | EHCA_BMASK_SET(MQPCB_MASK_SOURCE_PATH_BITS_AL, 1)
  1266. | EHCA_BMASK_SET(MQPCB_MASK_SERVICE_LEVEL_AL, 1)
  1267. | EHCA_BMASK_SET(MQPCB_MASK_MAX_STATIC_RATE_AL, 1)
  1268. | EHCA_BMASK_SET(MQPCB_MASK_RETRY_COUNT_AL, 1)
  1269. | EHCA_BMASK_SET(MQPCB_MASK_RNR_RETRY_COUNT_AL, 1);
  1270. /*
  1271. * Always supply the GRH flag, even if it's zero, to give the
  1272. * hypervisor a clear "yes" or "no" instead of a "perhaps"
  1273. */
  1274. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_SEND_GRH_FLAG_AL, 1);
  1275. /*
  1276. * only if GRH is TRUE we might consider SOURCE_GID_IDX
  1277. * and DEST_GID otherwise phype will return H_ATTR_PARM!!!
  1278. */
  1279. if (attr->alt_ah_attr.ah_flags == IB_AH_GRH) {
  1280. mqpcb->send_grh_flag_al = 1;
  1281. for (cnt = 0; cnt < 16; cnt++)
  1282. mqpcb->dest_gid_al.byte[cnt] =
  1283. attr->alt_ah_attr.grh.dgid.raw[cnt];
  1284. mqpcb->source_gid_idx_al =
  1285. attr->alt_ah_attr.grh.sgid_index;
  1286. mqpcb->flow_label_al = attr->alt_ah_attr.grh.flow_label;
  1287. mqpcb->hop_limit_al = attr->alt_ah_attr.grh.hop_limit;
  1288. mqpcb->traffic_class_al =
  1289. attr->alt_ah_attr.grh.traffic_class;
  1290. update_mask |=
  1291. EHCA_BMASK_SET(MQPCB_MASK_SOURCE_GID_IDX_AL, 1)
  1292. | EHCA_BMASK_SET(MQPCB_MASK_DEST_GID_AL, 1)
  1293. | EHCA_BMASK_SET(MQPCB_MASK_FLOW_LABEL_AL, 1)
  1294. | EHCA_BMASK_SET(MQPCB_MASK_HOP_LIMIT_AL, 1) |
  1295. EHCA_BMASK_SET(MQPCB_MASK_TRAFFIC_CLASS_AL, 1);
  1296. }
  1297. }
  1298. if (attr_mask & IB_QP_MIN_RNR_TIMER) {
  1299. mqpcb->min_rnr_nak_timer_field = attr->min_rnr_timer;
  1300. update_mask |=
  1301. EHCA_BMASK_SET(MQPCB_MASK_MIN_RNR_NAK_TIMER_FIELD, 1);
  1302. }
  1303. if (attr_mask & IB_QP_SQ_PSN) {
  1304. mqpcb->send_psn = attr->sq_psn;
  1305. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_SEND_PSN, 1);
  1306. }
  1307. if (attr_mask & IB_QP_DEST_QPN) {
  1308. mqpcb->dest_qp_nr = attr->dest_qp_num;
  1309. update_mask |= EHCA_BMASK_SET(MQPCB_MASK_DEST_QP_NR, 1);
  1310. }
  1311. if (attr_mask & IB_QP_PATH_MIG_STATE) {
  1312. if (attr->path_mig_state != IB_MIG_REARM
  1313. && attr->path_mig_state != IB_MIG_MIGRATED) {
  1314. ret = -EINVAL;
  1315. ehca_err(ibqp->device, "Invalid mig_state=%x",
  1316. attr->path_mig_state);
  1317. goto modify_qp_exit2;
  1318. }
  1319. mqpcb->path_migration_state = attr->path_mig_state + 1;
  1320. if (attr->path_mig_state == IB_MIG_REARM)
  1321. my_qp->mig_armed = 1;
  1322. update_mask |=
  1323. EHCA_BMASK_SET(MQPCB_MASK_PATH_MIGRATION_STATE, 1);
  1324. }
  1325. if (attr_mask & IB_QP_CAP) {
  1326. mqpcb->max_nr_outst_send_wr = attr->cap.max_send_wr+1;
  1327. update_mask |=
  1328. EHCA_BMASK_SET(MQPCB_MASK_MAX_NR_OUTST_SEND_WR, 1);
  1329. mqpcb->max_nr_outst_recv_wr = attr->cap.max_recv_wr+1;
  1330. update_mask |=
  1331. EHCA_BMASK_SET(MQPCB_MASK_MAX_NR_OUTST_RECV_WR, 1);
  1332. /* no support for max_send/recv_sge yet */
  1333. }
  1334. if (ehca_debug_level >= 2)
  1335. ehca_dmp(mqpcb, 4*70, "qp_num=%x", ibqp->qp_num);
  1336. h_ret = hipz_h_modify_qp(shca->ipz_hca_handle,
  1337. my_qp->ipz_qp_handle,
  1338. &my_qp->pf,
  1339. update_mask,
  1340. mqpcb, my_qp->galpas.kernel);
  1341. if (h_ret != H_SUCCESS) {
  1342. ret = ehca2ib_return_code(h_ret);
  1343. ehca_err(ibqp->device, "hipz_h_modify_qp() failed h_ret=%li "
  1344. "ehca_qp=%p qp_num=%x", h_ret, my_qp, ibqp->qp_num);
  1345. goto modify_qp_exit2;
  1346. }
  1347. if ((my_qp->qp_type == IB_QPT_UD ||
  1348. my_qp->qp_type == IB_QPT_GSI ||
  1349. my_qp->qp_type == IB_QPT_SMI) &&
  1350. statetrans == IB_QPST_SQE2RTS) {
  1351. /* doorbell to reprocessing wqes */
  1352. iosync(); /* serialize GAL register access */
  1353. hipz_update_sqa(my_qp, bad_wqe_cnt-1);
  1354. ehca_gen_dbg("doorbell for %x wqes", bad_wqe_cnt);
  1355. }
  1356. if (statetrans == IB_QPST_RESET2INIT ||
  1357. statetrans == IB_QPST_INIT2INIT) {
  1358. mqpcb->qp_enable = 1;
  1359. mqpcb->qp_state = EHCA_QPS_INIT;
  1360. update_mask = 0;
  1361. update_mask = EHCA_BMASK_SET(MQPCB_MASK_QP_ENABLE, 1);
  1362. h_ret = hipz_h_modify_qp(shca->ipz_hca_handle,
  1363. my_qp->ipz_qp_handle,
  1364. &my_qp->pf,
  1365. update_mask,
  1366. mqpcb,
  1367. my_qp->galpas.kernel);
  1368. if (h_ret != H_SUCCESS) {
  1369. ret = ehca2ib_return_code(h_ret);
  1370. ehca_err(ibqp->device, "ENABLE in context of "
  1371. "RESET_2_INIT failed! Maybe you didn't get "
  1372. "a LID h_ret=%li ehca_qp=%p qp_num=%x",
  1373. h_ret, my_qp, ibqp->qp_num);
  1374. goto modify_qp_exit2;
  1375. }
  1376. }
  1377. if (statetrans == IB_QPST_ANY2RESET) {
  1378. ipz_qeit_reset(&my_qp->ipz_rqueue);
  1379. ipz_qeit_reset(&my_qp->ipz_squeue);
  1380. }
  1381. if (attr_mask & IB_QP_QKEY)
  1382. my_qp->qkey = attr->qkey;
  1383. my_qp->state = qp_new_state;
  1384. modify_qp_exit2:
  1385. if (squeue_locked) { /* this means: sqe -> rts */
  1386. spin_unlock_irqrestore(&my_qp->spinlock_s, flags);
  1387. my_qp->sqerr_purgeflag = 1;
  1388. }
  1389. modify_qp_exit1:
  1390. ehca_free_fw_ctrlblock(mqpcb);
  1391. return ret;
  1392. }
  1393. int ehca_modify_qp(struct ib_qp *ibqp, struct ib_qp_attr *attr, int attr_mask,
  1394. struct ib_udata *udata)
  1395. {
  1396. struct ehca_shca *shca = container_of(ibqp->device, struct ehca_shca,
  1397. ib_device);
  1398. struct ehca_qp *my_qp = container_of(ibqp, struct ehca_qp, ib_qp);
  1399. /* The if-block below caches qp_attr to be modified for GSI and SMI
  1400. * qps during the initialization by ib_mad. When the respective port
  1401. * is activated, ie we got an event PORT_ACTIVE, we'll replay the
  1402. * cached modify calls sequence, see ehca_recover_sqs() below.
  1403. * Why that is required:
  1404. * 1) If one port is connected, older code requires that port one
  1405. * to be connected and module option nr_ports=1 to be given by
  1406. * user, which is very inconvenient for end user.
  1407. * 2) Firmware accepts modify_qp() only if respective port has become
  1408. * active. Older code had a wait loop of 30sec create_qp()/
  1409. * define_aqp1(), which is not appropriate in practice. This
  1410. * code now removes that wait loop, see define_aqp1(), and always
  1411. * reports all ports to ib_mad resp. users. Only activated ports
  1412. * will then usable for the users.
  1413. */
  1414. if (ibqp->qp_type == IB_QPT_GSI || ibqp->qp_type == IB_QPT_SMI) {
  1415. int port = my_qp->init_attr.port_num;
  1416. struct ehca_sport *sport = &shca->sport[port - 1];
  1417. unsigned long flags;
  1418. spin_lock_irqsave(&sport->mod_sqp_lock, flags);
  1419. /* cache qp_attr only during init */
  1420. if (my_qp->mod_qp_parm) {
  1421. struct ehca_mod_qp_parm *p;
  1422. if (my_qp->mod_qp_parm_idx >= EHCA_MOD_QP_PARM_MAX) {
  1423. ehca_err(&shca->ib_device,
  1424. "mod_qp_parm overflow state=%x port=%x"
  1425. " type=%x", attr->qp_state,
  1426. my_qp->init_attr.port_num,
  1427. ibqp->qp_type);
  1428. spin_unlock_irqrestore(&sport->mod_sqp_lock,
  1429. flags);
  1430. return -EINVAL;
  1431. }
  1432. p = &my_qp->mod_qp_parm[my_qp->mod_qp_parm_idx];
  1433. p->mask = attr_mask;
  1434. p->attr = *attr;
  1435. my_qp->mod_qp_parm_idx++;
  1436. ehca_dbg(&shca->ib_device,
  1437. "Saved qp_attr for state=%x port=%x type=%x",
  1438. attr->qp_state, my_qp->init_attr.port_num,
  1439. ibqp->qp_type);
  1440. spin_unlock_irqrestore(&sport->mod_sqp_lock, flags);
  1441. return 0;
  1442. }
  1443. spin_unlock_irqrestore(&sport->mod_sqp_lock, flags);
  1444. }
  1445. return internal_modify_qp(ibqp, attr, attr_mask, 0);
  1446. }
  1447. void ehca_recover_sqp(struct ib_qp *sqp)
  1448. {
  1449. struct ehca_qp *my_sqp = container_of(sqp, struct ehca_qp, ib_qp);
  1450. int port = my_sqp->init_attr.port_num;
  1451. struct ib_qp_attr attr;
  1452. struct ehca_mod_qp_parm *qp_parm;
  1453. int i, qp_parm_idx, ret;
  1454. unsigned long flags, wr_cnt;
  1455. if (!my_sqp->mod_qp_parm)
  1456. return;
  1457. ehca_dbg(sqp->device, "SQP port=%x qp_num=%x", port, sqp->qp_num);
  1458. qp_parm = my_sqp->mod_qp_parm;
  1459. qp_parm_idx = my_sqp->mod_qp_parm_idx;
  1460. for (i = 0; i < qp_parm_idx; i++) {
  1461. attr = qp_parm[i].attr;
  1462. ret = internal_modify_qp(sqp, &attr, qp_parm[i].mask, 0);
  1463. if (ret) {
  1464. ehca_err(sqp->device, "Could not modify SQP port=%x "
  1465. "qp_num=%x ret=%x", port, sqp->qp_num, ret);
  1466. goto free_qp_parm;
  1467. }
  1468. ehca_dbg(sqp->device, "SQP port=%x qp_num=%x in state=%x",
  1469. port, sqp->qp_num, attr.qp_state);
  1470. }
  1471. /* re-trigger posted recv wrs */
  1472. wr_cnt = my_sqp->ipz_rqueue.current_q_offset /
  1473. my_sqp->ipz_rqueue.qe_size;
  1474. if (wr_cnt) {
  1475. spin_lock_irqsave(&my_sqp->spinlock_r, flags);
  1476. hipz_update_rqa(my_sqp, wr_cnt);
  1477. spin_unlock_irqrestore(&my_sqp->spinlock_r, flags);
  1478. ehca_dbg(sqp->device, "doorbell port=%x qp_num=%x wr_cnt=%lx",
  1479. port, sqp->qp_num, wr_cnt);
  1480. }
  1481. free_qp_parm:
  1482. kfree(qp_parm);
  1483. /* this prevents subsequent calls to modify_qp() to cache qp_attr */
  1484. my_sqp->mod_qp_parm = NULL;
  1485. }
  1486. int ehca_query_qp(struct ib_qp *qp,
  1487. struct ib_qp_attr *qp_attr,
  1488. int qp_attr_mask, struct ib_qp_init_attr *qp_init_attr)
  1489. {
  1490. struct ehca_qp *my_qp = container_of(qp, struct ehca_qp, ib_qp);
  1491. struct ehca_shca *shca = container_of(qp->device, struct ehca_shca,
  1492. ib_device);
  1493. struct ipz_adapter_handle adapter_handle = shca->ipz_hca_handle;
  1494. struct hcp_modify_qp_control_block *qpcb;
  1495. int cnt, ret = 0;
  1496. u64 h_ret;
  1497. if (qp_attr_mask & QP_ATTR_QUERY_NOT_SUPPORTED) {
  1498. ehca_err(qp->device, "Invalid attribute mask "
  1499. "ehca_qp=%p qp_num=%x qp_attr_mask=%x ",
  1500. my_qp, qp->qp_num, qp_attr_mask);
  1501. return -EINVAL;
  1502. }
  1503. qpcb = ehca_alloc_fw_ctrlblock(GFP_KERNEL);
  1504. if (!qpcb) {
  1505. ehca_err(qp->device, "Out of memory for qpcb "
  1506. "ehca_qp=%p qp_num=%x", my_qp, qp->qp_num);
  1507. return -ENOMEM;
  1508. }
  1509. h_ret = hipz_h_query_qp(adapter_handle,
  1510. my_qp->ipz_qp_handle,
  1511. &my_qp->pf,
  1512. qpcb, my_qp->galpas.kernel);
  1513. if (h_ret != H_SUCCESS) {
  1514. ret = ehca2ib_return_code(h_ret);
  1515. ehca_err(qp->device, "hipz_h_query_qp() failed "
  1516. "ehca_qp=%p qp_num=%x h_ret=%li",
  1517. my_qp, qp->qp_num, h_ret);
  1518. goto query_qp_exit1;
  1519. }
  1520. qp_attr->cur_qp_state = ehca2ib_qp_state(qpcb->qp_state);
  1521. qp_attr->qp_state = qp_attr->cur_qp_state;
  1522. if (qp_attr->cur_qp_state == -EINVAL) {
  1523. ret = -EINVAL;
  1524. ehca_err(qp->device, "Got invalid ehca_qp_state=%x "
  1525. "ehca_qp=%p qp_num=%x",
  1526. qpcb->qp_state, my_qp, qp->qp_num);
  1527. goto query_qp_exit1;
  1528. }
  1529. if (qp_attr->qp_state == IB_QPS_SQD)
  1530. qp_attr->sq_draining = 1;
  1531. qp_attr->qkey = qpcb->qkey;
  1532. qp_attr->path_mtu = qpcb->path_mtu;
  1533. qp_attr->path_mig_state = qpcb->path_migration_state - 1;
  1534. qp_attr->rq_psn = qpcb->receive_psn;
  1535. qp_attr->sq_psn = qpcb->send_psn;
  1536. qp_attr->min_rnr_timer = qpcb->min_rnr_nak_timer_field;
  1537. qp_attr->cap.max_send_wr = qpcb->max_nr_outst_send_wr-1;
  1538. qp_attr->cap.max_recv_wr = qpcb->max_nr_outst_recv_wr-1;
  1539. /* UD_AV CIRCUMVENTION */
  1540. if (my_qp->qp_type == IB_QPT_UD) {
  1541. qp_attr->cap.max_send_sge =
  1542. qpcb->actual_nr_sges_in_sq_wqe - 2;
  1543. qp_attr->cap.max_recv_sge =
  1544. qpcb->actual_nr_sges_in_rq_wqe - 2;
  1545. } else {
  1546. qp_attr->cap.max_send_sge =
  1547. qpcb->actual_nr_sges_in_sq_wqe;
  1548. qp_attr->cap.max_recv_sge =
  1549. qpcb->actual_nr_sges_in_rq_wqe;
  1550. }
  1551. qp_attr->cap.max_inline_data = my_qp->sq_max_inline_data_size;
  1552. qp_attr->dest_qp_num = qpcb->dest_qp_nr;
  1553. qp_attr->pkey_index =
  1554. EHCA_BMASK_GET(MQPCB_PRIM_P_KEY_IDX, qpcb->prim_p_key_idx);
  1555. qp_attr->port_num =
  1556. EHCA_BMASK_GET(MQPCB_PRIM_PHYS_PORT, qpcb->prim_phys_port);
  1557. qp_attr->timeout = qpcb->timeout;
  1558. qp_attr->retry_cnt = qpcb->retry_count;
  1559. qp_attr->rnr_retry = qpcb->rnr_retry_count;
  1560. qp_attr->alt_pkey_index =
  1561. EHCA_BMASK_GET(MQPCB_PRIM_P_KEY_IDX, qpcb->alt_p_key_idx);
  1562. qp_attr->alt_port_num = qpcb->alt_phys_port;
  1563. qp_attr->alt_timeout = qpcb->timeout_al;
  1564. qp_attr->max_dest_rd_atomic = qpcb->rdma_nr_atomic_resp_res;
  1565. qp_attr->max_rd_atomic = qpcb->rdma_atomic_outst_dest_qp;
  1566. /* primary av */
  1567. qp_attr->ah_attr.sl = qpcb->service_level;
  1568. if (qpcb->send_grh_flag) {
  1569. qp_attr->ah_attr.ah_flags = IB_AH_GRH;
  1570. }
  1571. qp_attr->ah_attr.static_rate = qpcb->max_static_rate;
  1572. qp_attr->ah_attr.dlid = qpcb->dlid;
  1573. qp_attr->ah_attr.src_path_bits = qpcb->source_path_bits;
  1574. qp_attr->ah_attr.port_num = qp_attr->port_num;
  1575. /* primary GRH */
  1576. qp_attr->ah_attr.grh.traffic_class = qpcb->traffic_class;
  1577. qp_attr->ah_attr.grh.hop_limit = qpcb->hop_limit;
  1578. qp_attr->ah_attr.grh.sgid_index = qpcb->source_gid_idx;
  1579. qp_attr->ah_attr.grh.flow_label = qpcb->flow_label;
  1580. for (cnt = 0; cnt < 16; cnt++)
  1581. qp_attr->ah_attr.grh.dgid.raw[cnt] =
  1582. qpcb->dest_gid.byte[cnt];
  1583. /* alternate AV */
  1584. qp_attr->alt_ah_attr.sl = qpcb->service_level_al;
  1585. if (qpcb->send_grh_flag_al) {
  1586. qp_attr->alt_ah_attr.ah_flags = IB_AH_GRH;
  1587. }
  1588. qp_attr->alt_ah_attr.static_rate = qpcb->max_static_rate_al;
  1589. qp_attr->alt_ah_attr.dlid = qpcb->dlid_al;
  1590. qp_attr->alt_ah_attr.src_path_bits = qpcb->source_path_bits_al;
  1591. /* alternate GRH */
  1592. qp_attr->alt_ah_attr.grh.traffic_class = qpcb->traffic_class_al;
  1593. qp_attr->alt_ah_attr.grh.hop_limit = qpcb->hop_limit_al;
  1594. qp_attr->alt_ah_attr.grh.sgid_index = qpcb->source_gid_idx_al;
  1595. qp_attr->alt_ah_attr.grh.flow_label = qpcb->flow_label_al;
  1596. for (cnt = 0; cnt < 16; cnt++)
  1597. qp_attr->alt_ah_attr.grh.dgid.raw[cnt] =
  1598. qpcb->dest_gid_al.byte[cnt];
  1599. /* return init attributes given in ehca_create_qp */
  1600. if (qp_init_attr)
  1601. *qp_init_attr = my_qp->init_attr;
  1602. if (ehca_debug_level >= 2)
  1603. ehca_dmp(qpcb, 4*70, "qp_num=%x", qp->qp_num);
  1604. query_qp_exit1:
  1605. ehca_free_fw_ctrlblock(qpcb);
  1606. return ret;
  1607. }
  1608. int ehca_modify_srq(struct ib_srq *ibsrq, struct ib_srq_attr *attr,
  1609. enum ib_srq_attr_mask attr_mask, struct ib_udata *udata)
  1610. {
  1611. struct ehca_qp *my_qp =
  1612. container_of(ibsrq, struct ehca_qp, ib_srq);
  1613. struct ehca_shca *shca =
  1614. container_of(ibsrq->pd->device, struct ehca_shca, ib_device);
  1615. struct hcp_modify_qp_control_block *mqpcb;
  1616. u64 update_mask;
  1617. u64 h_ret;
  1618. int ret = 0;
  1619. mqpcb = ehca_alloc_fw_ctrlblock(GFP_KERNEL);
  1620. if (!mqpcb) {
  1621. ehca_err(ibsrq->device, "Could not get zeroed page for mqpcb "
  1622. "ehca_qp=%p qp_num=%x ", my_qp, my_qp->real_qp_num);
  1623. return -ENOMEM;
  1624. }
  1625. update_mask = 0;
  1626. if (attr_mask & IB_SRQ_LIMIT) {
  1627. attr_mask &= ~IB_SRQ_LIMIT;
  1628. update_mask |=
  1629. EHCA_BMASK_SET(MQPCB_MASK_CURR_SRQ_LIMIT, 1)
  1630. | EHCA_BMASK_SET(MQPCB_MASK_QP_AFF_ASYN_EV_LOG_REG, 1);
  1631. mqpcb->curr_srq_limit =
  1632. EHCA_BMASK_SET(MQPCB_CURR_SRQ_LIMIT, attr->srq_limit);
  1633. mqpcb->qp_aff_asyn_ev_log_reg =
  1634. EHCA_BMASK_SET(QPX_AAELOG_RESET_SRQ_LIMIT, 1);
  1635. }
  1636. /* by now, all bits in attr_mask should have been cleared */
  1637. if (attr_mask) {
  1638. ehca_err(ibsrq->device, "invalid attribute mask bits set "
  1639. "attr_mask=%x", attr_mask);
  1640. ret = -EINVAL;
  1641. goto modify_srq_exit0;
  1642. }
  1643. if (ehca_debug_level >= 2)
  1644. ehca_dmp(mqpcb, 4*70, "qp_num=%x", my_qp->real_qp_num);
  1645. h_ret = hipz_h_modify_qp(shca->ipz_hca_handle, my_qp->ipz_qp_handle,
  1646. NULL, update_mask, mqpcb,
  1647. my_qp->galpas.kernel);
  1648. if (h_ret != H_SUCCESS) {
  1649. ret = ehca2ib_return_code(h_ret);
  1650. ehca_err(ibsrq->device, "hipz_h_modify_qp() failed h_ret=%li "
  1651. "ehca_qp=%p qp_num=%x",
  1652. h_ret, my_qp, my_qp->real_qp_num);
  1653. }
  1654. modify_srq_exit0:
  1655. ehca_free_fw_ctrlblock(mqpcb);
  1656. return ret;
  1657. }
  1658. int ehca_query_srq(struct ib_srq *srq, struct ib_srq_attr *srq_attr)
  1659. {
  1660. struct ehca_qp *my_qp = container_of(srq, struct ehca_qp, ib_srq);
  1661. struct ehca_shca *shca = container_of(srq->device, struct ehca_shca,
  1662. ib_device);
  1663. struct ipz_adapter_handle adapter_handle = shca->ipz_hca_handle;
  1664. struct hcp_modify_qp_control_block *qpcb;
  1665. int ret = 0;
  1666. u64 h_ret;
  1667. qpcb = ehca_alloc_fw_ctrlblock(GFP_KERNEL);
  1668. if (!qpcb) {
  1669. ehca_err(srq->device, "Out of memory for qpcb "
  1670. "ehca_qp=%p qp_num=%x", my_qp, my_qp->real_qp_num);
  1671. return -ENOMEM;
  1672. }
  1673. h_ret = hipz_h_query_qp(adapter_handle, my_qp->ipz_qp_handle,
  1674. NULL, qpcb, my_qp->galpas.kernel);
  1675. if (h_ret != H_SUCCESS) {
  1676. ret = ehca2ib_return_code(h_ret);
  1677. ehca_err(srq->device, "hipz_h_query_qp() failed "
  1678. "ehca_qp=%p qp_num=%x h_ret=%li",
  1679. my_qp, my_qp->real_qp_num, h_ret);
  1680. goto query_srq_exit1;
  1681. }
  1682. srq_attr->max_wr = qpcb->max_nr_outst_recv_wr - 1;
  1683. srq_attr->max_sge = 3;
  1684. srq_attr->srq_limit = EHCA_BMASK_GET(
  1685. MQPCB_CURR_SRQ_LIMIT, qpcb->curr_srq_limit);
  1686. if (ehca_debug_level >= 2)
  1687. ehca_dmp(qpcb, 4*70, "qp_num=%x", my_qp->real_qp_num);
  1688. query_srq_exit1:
  1689. ehca_free_fw_ctrlblock(qpcb);
  1690. return ret;
  1691. }
  1692. static int internal_destroy_qp(struct ib_device *dev, struct ehca_qp *my_qp,
  1693. struct ib_uobject *uobject)
  1694. {
  1695. struct ehca_shca *shca = container_of(dev, struct ehca_shca, ib_device);
  1696. struct ehca_pd *my_pd = container_of(my_qp->ib_qp.pd, struct ehca_pd,
  1697. ib_pd);
  1698. struct ehca_sport *sport = &shca->sport[my_qp->init_attr.port_num - 1];
  1699. u32 qp_num = my_qp->real_qp_num;
  1700. int ret;
  1701. u64 h_ret;
  1702. u8 port_num;
  1703. enum ib_qp_type qp_type;
  1704. unsigned long flags;
  1705. if (uobject) {
  1706. if (my_qp->mm_count_galpa ||
  1707. my_qp->mm_count_rqueue || my_qp->mm_count_squeue) {
  1708. ehca_err(dev, "Resources still referenced in "
  1709. "user space qp_num=%x", qp_num);
  1710. return -EINVAL;
  1711. }
  1712. }
  1713. if (my_qp->send_cq) {
  1714. ret = ehca_cq_unassign_qp(my_qp->send_cq, qp_num);
  1715. if (ret) {
  1716. ehca_err(dev, "Couldn't unassign qp from "
  1717. "send_cq ret=%i qp_num=%x cq_num=%x", ret,
  1718. qp_num, my_qp->send_cq->cq_number);
  1719. return ret;
  1720. }
  1721. }
  1722. write_lock_irqsave(&ehca_qp_idr_lock, flags);
  1723. idr_remove(&ehca_qp_idr, my_qp->token);
  1724. write_unlock_irqrestore(&ehca_qp_idr_lock, flags);
  1725. /* now wait until all pending events have completed */
  1726. wait_event(my_qp->wait_completion, !atomic_read(&my_qp->nr_events));
  1727. h_ret = hipz_h_destroy_qp(shca->ipz_hca_handle, my_qp);
  1728. if (h_ret != H_SUCCESS) {
  1729. ehca_err(dev, "hipz_h_destroy_qp() failed h_ret=%li "
  1730. "ehca_qp=%p qp_num=%x", h_ret, my_qp, qp_num);
  1731. return ehca2ib_return_code(h_ret);
  1732. }
  1733. port_num = my_qp->init_attr.port_num;
  1734. qp_type = my_qp->init_attr.qp_type;
  1735. if (qp_type == IB_QPT_SMI || qp_type == IB_QPT_GSI) {
  1736. spin_lock_irqsave(&sport->mod_sqp_lock, flags);
  1737. kfree(my_qp->mod_qp_parm);
  1738. my_qp->mod_qp_parm = NULL;
  1739. shca->sport[port_num - 1].ibqp_sqp[qp_type] = NULL;
  1740. spin_unlock_irqrestore(&sport->mod_sqp_lock, flags);
  1741. }
  1742. /* no support for IB_QPT_SMI yet */
  1743. if (qp_type == IB_QPT_GSI) {
  1744. struct ib_event event;
  1745. ehca_info(dev, "device %s: port %x is inactive.",
  1746. shca->ib_device.name, port_num);
  1747. event.device = &shca->ib_device;
  1748. event.event = IB_EVENT_PORT_ERR;
  1749. event.element.port_num = port_num;
  1750. shca->sport[port_num - 1].port_state = IB_PORT_DOWN;
  1751. ib_dispatch_event(&event);
  1752. }
  1753. if (HAS_RQ(my_qp))
  1754. ipz_queue_dtor(my_pd, &my_qp->ipz_rqueue);
  1755. if (HAS_SQ(my_qp))
  1756. ipz_queue_dtor(my_pd, &my_qp->ipz_squeue);
  1757. kmem_cache_free(qp_cache, my_qp);
  1758. atomic_dec(&shca->num_qps);
  1759. return 0;
  1760. }
  1761. int ehca_destroy_qp(struct ib_qp *qp)
  1762. {
  1763. return internal_destroy_qp(qp->device,
  1764. container_of(qp, struct ehca_qp, ib_qp),
  1765. qp->uobject);
  1766. }
  1767. int ehca_destroy_srq(struct ib_srq *srq)
  1768. {
  1769. return internal_destroy_qp(srq->device,
  1770. container_of(srq, struct ehca_qp, ib_srq),
  1771. srq->uobject);
  1772. }
  1773. int ehca_init_qp_cache(void)
  1774. {
  1775. qp_cache = kmem_cache_create("ehca_cache_qp",
  1776. sizeof(struct ehca_qp), 0,
  1777. SLAB_HWCACHE_ALIGN,
  1778. NULL);
  1779. if (!qp_cache)
  1780. return -ENOMEM;
  1781. return 0;
  1782. }
  1783. void ehca_cleanup_qp_cache(void)
  1784. {
  1785. if (qp_cache)
  1786. kmem_cache_destroy(qp_cache);
  1787. }