bfa_ioim.c 31 KB

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  1. /*
  2. * Copyright (c) 2005-2009 Brocade Communications Systems, Inc.
  3. * All rights reserved
  4. * www.brocade.com
  5. *
  6. * Linux driver for Brocade Fibre Channel Host Bus Adapter.
  7. *
  8. * This program is free software; you can redistribute it and/or modify it
  9. * under the terms of the GNU General Public License (GPL) Version 2 as
  10. * published by the Free Software Foundation
  11. *
  12. * This program is distributed in the hope that it will be useful, but
  13. * WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  15. * General Public License for more details.
  16. */
  17. #include <bfa.h>
  18. #include <cs/bfa_debug.h>
  19. #include <bfa_cb_ioim_macros.h>
  20. BFA_TRC_FILE(HAL, IOIM);
  21. /*
  22. * forward declarations.
  23. */
  24. static bfa_boolean_t bfa_ioim_send_ioreq(struct bfa_ioim_s *ioim);
  25. static bfa_boolean_t bfa_ioim_sge_setup(struct bfa_ioim_s *ioim);
  26. static void bfa_ioim_sgpg_setup(struct bfa_ioim_s *ioim);
  27. static bfa_boolean_t bfa_ioim_send_abort(struct bfa_ioim_s *ioim);
  28. static void bfa_ioim_notify_cleanup(struct bfa_ioim_s *ioim);
  29. static void __bfa_cb_ioim_good_comp(void *cbarg, bfa_boolean_t complete);
  30. static void __bfa_cb_ioim_comp(void *cbarg, bfa_boolean_t complete);
  31. static void __bfa_cb_ioim_abort(void *cbarg, bfa_boolean_t complete);
  32. static void __bfa_cb_ioim_failed(void *cbarg, bfa_boolean_t complete);
  33. static void __bfa_cb_ioim_pathtov(void *cbarg, bfa_boolean_t complete);
  34. /**
  35. * bfa_ioim_sm
  36. */
  37. /**
  38. * IO state machine events
  39. */
  40. enum bfa_ioim_event {
  41. BFA_IOIM_SM_START = 1, /* io start request from host */
  42. BFA_IOIM_SM_COMP_GOOD = 2, /* io good comp, resource free */
  43. BFA_IOIM_SM_COMP = 3, /* io comp, resource is free */
  44. BFA_IOIM_SM_COMP_UTAG = 4, /* io comp, resource is free */
  45. BFA_IOIM_SM_DONE = 5, /* io comp, resource not free */
  46. BFA_IOIM_SM_FREE = 6, /* io resource is freed */
  47. BFA_IOIM_SM_ABORT = 7, /* abort request from scsi stack */
  48. BFA_IOIM_SM_ABORT_COMP = 8, /* abort from f/w */
  49. BFA_IOIM_SM_ABORT_DONE = 9, /* abort completion from f/w */
  50. BFA_IOIM_SM_QRESUME = 10, /* CQ space available to queue IO */
  51. BFA_IOIM_SM_SGALLOCED = 11, /* SG page allocation successful */
  52. BFA_IOIM_SM_SQRETRY = 12, /* sequence recovery retry */
  53. BFA_IOIM_SM_HCB = 13, /* bfa callback complete */
  54. BFA_IOIM_SM_CLEANUP = 14, /* IO cleanup from itnim */
  55. BFA_IOIM_SM_TMSTART = 15, /* IO cleanup from tskim */
  56. BFA_IOIM_SM_TMDONE = 16, /* IO cleanup from tskim */
  57. BFA_IOIM_SM_HWFAIL = 17, /* IOC h/w failure event */
  58. BFA_IOIM_SM_IOTOV = 18, /* ITN offline TOV */
  59. };
  60. /*
  61. * forward declaration of IO state machine
  62. */
  63. static void bfa_ioim_sm_uninit(struct bfa_ioim_s *ioim,
  64. enum bfa_ioim_event event);
  65. static void bfa_ioim_sm_sgalloc(struct bfa_ioim_s *ioim,
  66. enum bfa_ioim_event event);
  67. static void bfa_ioim_sm_active(struct bfa_ioim_s *ioim,
  68. enum bfa_ioim_event event);
  69. static void bfa_ioim_sm_abort(struct bfa_ioim_s *ioim,
  70. enum bfa_ioim_event event);
  71. static void bfa_ioim_sm_cleanup(struct bfa_ioim_s *ioim,
  72. enum bfa_ioim_event event);
  73. static void bfa_ioim_sm_qfull(struct bfa_ioim_s *ioim,
  74. enum bfa_ioim_event event);
  75. static void bfa_ioim_sm_abort_qfull(struct bfa_ioim_s *ioim,
  76. enum bfa_ioim_event event);
  77. static void bfa_ioim_sm_cleanup_qfull(struct bfa_ioim_s *ioim,
  78. enum bfa_ioim_event event);
  79. static void bfa_ioim_sm_hcb(struct bfa_ioim_s *ioim,
  80. enum bfa_ioim_event event);
  81. static void bfa_ioim_sm_hcb_free(struct bfa_ioim_s *ioim,
  82. enum bfa_ioim_event event);
  83. static void bfa_ioim_sm_resfree(struct bfa_ioim_s *ioim,
  84. enum bfa_ioim_event event);
  85. /**
  86. * IO is not started (unallocated).
  87. */
  88. static void
  89. bfa_ioim_sm_uninit(struct bfa_ioim_s *ioim, enum bfa_ioim_event event)
  90. {
  91. bfa_trc_fp(ioim->bfa, ioim->iotag);
  92. bfa_trc_fp(ioim->bfa, event);
  93. switch (event) {
  94. case BFA_IOIM_SM_START:
  95. if (!bfa_itnim_is_online(ioim->itnim)) {
  96. if (!bfa_itnim_hold_io(ioim->itnim)) {
  97. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  98. list_del(&ioim->qe);
  99. list_add_tail(&ioim->qe,
  100. &ioim->fcpim->ioim_comp_q);
  101. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe,
  102. __bfa_cb_ioim_pathtov, ioim);
  103. } else {
  104. list_del(&ioim->qe);
  105. list_add_tail(&ioim->qe,
  106. &ioim->itnim->pending_q);
  107. }
  108. break;
  109. }
  110. if (ioim->nsges > BFI_SGE_INLINE) {
  111. if (!bfa_ioim_sge_setup(ioim)) {
  112. bfa_sm_set_state(ioim, bfa_ioim_sm_sgalloc);
  113. return;
  114. }
  115. }
  116. if (!bfa_ioim_send_ioreq(ioim)) {
  117. bfa_sm_set_state(ioim, bfa_ioim_sm_qfull);
  118. break;
  119. }
  120. bfa_sm_set_state(ioim, bfa_ioim_sm_active);
  121. break;
  122. case BFA_IOIM_SM_IOTOV:
  123. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  124. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe,
  125. __bfa_cb_ioim_pathtov, ioim);
  126. break;
  127. case BFA_IOIM_SM_ABORT:
  128. /**
  129. * IO in pending queue can get abort requests. Complete abort
  130. * requests immediately.
  131. */
  132. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  133. bfa_assert(bfa_q_is_on_q(&ioim->itnim->pending_q, ioim));
  134. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_abort,
  135. ioim);
  136. break;
  137. default:
  138. bfa_assert(0);
  139. }
  140. }
  141. /**
  142. * IO is waiting for SG pages.
  143. */
  144. static void
  145. bfa_ioim_sm_sgalloc(struct bfa_ioim_s *ioim, enum bfa_ioim_event event)
  146. {
  147. bfa_trc(ioim->bfa, ioim->iotag);
  148. bfa_trc(ioim->bfa, event);
  149. switch (event) {
  150. case BFA_IOIM_SM_SGALLOCED:
  151. if (!bfa_ioim_send_ioreq(ioim)) {
  152. bfa_sm_set_state(ioim, bfa_ioim_sm_qfull);
  153. break;
  154. }
  155. bfa_sm_set_state(ioim, bfa_ioim_sm_active);
  156. break;
  157. case BFA_IOIM_SM_CLEANUP:
  158. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  159. bfa_sgpg_wcancel(ioim->bfa, &ioim->iosp->sgpg_wqe);
  160. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_failed,
  161. ioim);
  162. bfa_ioim_notify_cleanup(ioim);
  163. break;
  164. case BFA_IOIM_SM_ABORT:
  165. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  166. bfa_sgpg_wcancel(ioim->bfa, &ioim->iosp->sgpg_wqe);
  167. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_abort,
  168. ioim);
  169. break;
  170. case BFA_IOIM_SM_HWFAIL:
  171. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  172. bfa_sgpg_wcancel(ioim->bfa, &ioim->iosp->sgpg_wqe);
  173. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_failed,
  174. ioim);
  175. break;
  176. default:
  177. bfa_assert(0);
  178. }
  179. }
  180. /**
  181. * IO is active.
  182. */
  183. static void
  184. bfa_ioim_sm_active(struct bfa_ioim_s *ioim, enum bfa_ioim_event event)
  185. {
  186. bfa_trc_fp(ioim->bfa, ioim->iotag);
  187. bfa_trc_fp(ioim->bfa, event);
  188. switch (event) {
  189. case BFA_IOIM_SM_COMP_GOOD:
  190. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  191. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe,
  192. __bfa_cb_ioim_good_comp, ioim);
  193. break;
  194. case BFA_IOIM_SM_COMP:
  195. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  196. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_comp,
  197. ioim);
  198. break;
  199. case BFA_IOIM_SM_DONE:
  200. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb_free);
  201. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_comp,
  202. ioim);
  203. break;
  204. case BFA_IOIM_SM_ABORT:
  205. ioim->iosp->abort_explicit = BFA_TRUE;
  206. ioim->io_cbfn = __bfa_cb_ioim_abort;
  207. if (bfa_ioim_send_abort(ioim))
  208. bfa_sm_set_state(ioim, bfa_ioim_sm_abort);
  209. else {
  210. bfa_sm_set_state(ioim, bfa_ioim_sm_abort_qfull);
  211. bfa_reqq_wait(ioim->bfa, ioim->itnim->reqq,
  212. &ioim->iosp->reqq_wait);
  213. }
  214. break;
  215. case BFA_IOIM_SM_CLEANUP:
  216. ioim->iosp->abort_explicit = BFA_FALSE;
  217. ioim->io_cbfn = __bfa_cb_ioim_failed;
  218. if (bfa_ioim_send_abort(ioim))
  219. bfa_sm_set_state(ioim, bfa_ioim_sm_cleanup);
  220. else {
  221. bfa_sm_set_state(ioim, bfa_ioim_sm_cleanup_qfull);
  222. bfa_reqq_wait(ioim->bfa, ioim->itnim->reqq,
  223. &ioim->iosp->reqq_wait);
  224. }
  225. break;
  226. case BFA_IOIM_SM_HWFAIL:
  227. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  228. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_failed,
  229. ioim);
  230. break;
  231. default:
  232. bfa_assert(0);
  233. }
  234. }
  235. /**
  236. * IO is being aborted, waiting for completion from firmware.
  237. */
  238. static void
  239. bfa_ioim_sm_abort(struct bfa_ioim_s *ioim, enum bfa_ioim_event event)
  240. {
  241. bfa_trc(ioim->bfa, ioim->iotag);
  242. bfa_trc(ioim->bfa, event);
  243. switch (event) {
  244. case BFA_IOIM_SM_COMP_GOOD:
  245. case BFA_IOIM_SM_COMP:
  246. case BFA_IOIM_SM_DONE:
  247. case BFA_IOIM_SM_FREE:
  248. break;
  249. case BFA_IOIM_SM_ABORT_DONE:
  250. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb_free);
  251. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_abort,
  252. ioim);
  253. break;
  254. case BFA_IOIM_SM_ABORT_COMP:
  255. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  256. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_abort,
  257. ioim);
  258. break;
  259. case BFA_IOIM_SM_COMP_UTAG:
  260. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  261. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_abort,
  262. ioim);
  263. break;
  264. case BFA_IOIM_SM_CLEANUP:
  265. bfa_assert(ioim->iosp->abort_explicit == BFA_TRUE);
  266. ioim->iosp->abort_explicit = BFA_FALSE;
  267. if (bfa_ioim_send_abort(ioim))
  268. bfa_sm_set_state(ioim, bfa_ioim_sm_cleanup);
  269. else {
  270. bfa_sm_set_state(ioim, bfa_ioim_sm_cleanup_qfull);
  271. bfa_reqq_wait(ioim->bfa, ioim->itnim->reqq,
  272. &ioim->iosp->reqq_wait);
  273. }
  274. break;
  275. case BFA_IOIM_SM_HWFAIL:
  276. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  277. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_failed,
  278. ioim);
  279. break;
  280. default:
  281. bfa_assert(0);
  282. }
  283. }
  284. /**
  285. * IO is being cleaned up (implicit abort), waiting for completion from
  286. * firmware.
  287. */
  288. static void
  289. bfa_ioim_sm_cleanup(struct bfa_ioim_s *ioim, enum bfa_ioim_event event)
  290. {
  291. bfa_trc(ioim->bfa, ioim->iotag);
  292. bfa_trc(ioim->bfa, event);
  293. switch (event) {
  294. case BFA_IOIM_SM_COMP_GOOD:
  295. case BFA_IOIM_SM_COMP:
  296. case BFA_IOIM_SM_DONE:
  297. case BFA_IOIM_SM_FREE:
  298. break;
  299. case BFA_IOIM_SM_ABORT:
  300. /**
  301. * IO is already being aborted implicitly
  302. */
  303. ioim->io_cbfn = __bfa_cb_ioim_abort;
  304. break;
  305. case BFA_IOIM_SM_ABORT_DONE:
  306. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb_free);
  307. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, ioim->io_cbfn, ioim);
  308. bfa_ioim_notify_cleanup(ioim);
  309. break;
  310. case BFA_IOIM_SM_ABORT_COMP:
  311. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  312. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, ioim->io_cbfn, ioim);
  313. bfa_ioim_notify_cleanup(ioim);
  314. break;
  315. case BFA_IOIM_SM_COMP_UTAG:
  316. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  317. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, ioim->io_cbfn, ioim);
  318. bfa_ioim_notify_cleanup(ioim);
  319. break;
  320. case BFA_IOIM_SM_HWFAIL:
  321. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  322. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_failed,
  323. ioim);
  324. break;
  325. case BFA_IOIM_SM_CLEANUP:
  326. /**
  327. * IO can be in cleanup state already due to TM command. 2nd cleanup
  328. * request comes from ITN offline event.
  329. */
  330. break;
  331. default:
  332. bfa_assert(0);
  333. }
  334. }
  335. /**
  336. * IO is waiting for room in request CQ
  337. */
  338. static void
  339. bfa_ioim_sm_qfull(struct bfa_ioim_s *ioim, enum bfa_ioim_event event)
  340. {
  341. bfa_trc(ioim->bfa, ioim->iotag);
  342. bfa_trc(ioim->bfa, event);
  343. switch (event) {
  344. case BFA_IOIM_SM_QRESUME:
  345. bfa_sm_set_state(ioim, bfa_ioim_sm_active);
  346. bfa_ioim_send_ioreq(ioim);
  347. break;
  348. case BFA_IOIM_SM_ABORT:
  349. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  350. bfa_reqq_wcancel(&ioim->iosp->reqq_wait);
  351. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_abort,
  352. ioim);
  353. break;
  354. case BFA_IOIM_SM_CLEANUP:
  355. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  356. bfa_reqq_wcancel(&ioim->iosp->reqq_wait);
  357. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_failed,
  358. ioim);
  359. bfa_ioim_notify_cleanup(ioim);
  360. break;
  361. case BFA_IOIM_SM_HWFAIL:
  362. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  363. bfa_reqq_wcancel(&ioim->iosp->reqq_wait);
  364. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_failed,
  365. ioim);
  366. break;
  367. default:
  368. bfa_assert(0);
  369. }
  370. }
  371. /**
  372. * Active IO is being aborted, waiting for room in request CQ.
  373. */
  374. static void
  375. bfa_ioim_sm_abort_qfull(struct bfa_ioim_s *ioim, enum bfa_ioim_event event)
  376. {
  377. bfa_trc(ioim->bfa, ioim->iotag);
  378. bfa_trc(ioim->bfa, event);
  379. switch (event) {
  380. case BFA_IOIM_SM_QRESUME:
  381. bfa_sm_set_state(ioim, bfa_ioim_sm_abort);
  382. bfa_ioim_send_abort(ioim);
  383. break;
  384. case BFA_IOIM_SM_CLEANUP:
  385. bfa_assert(ioim->iosp->abort_explicit == BFA_TRUE);
  386. ioim->iosp->abort_explicit = BFA_FALSE;
  387. bfa_sm_set_state(ioim, bfa_ioim_sm_cleanup_qfull);
  388. break;
  389. case BFA_IOIM_SM_COMP_GOOD:
  390. case BFA_IOIM_SM_COMP:
  391. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  392. bfa_reqq_wcancel(&ioim->iosp->reqq_wait);
  393. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_abort,
  394. ioim);
  395. break;
  396. case BFA_IOIM_SM_DONE:
  397. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb_free);
  398. bfa_reqq_wcancel(&ioim->iosp->reqq_wait);
  399. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_abort,
  400. ioim);
  401. break;
  402. case BFA_IOIM_SM_HWFAIL:
  403. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  404. bfa_reqq_wcancel(&ioim->iosp->reqq_wait);
  405. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_failed,
  406. ioim);
  407. break;
  408. default:
  409. bfa_assert(0);
  410. }
  411. }
  412. /**
  413. * Active IO is being cleaned up, waiting for room in request CQ.
  414. */
  415. static void
  416. bfa_ioim_sm_cleanup_qfull(struct bfa_ioim_s *ioim, enum bfa_ioim_event event)
  417. {
  418. bfa_trc(ioim->bfa, ioim->iotag);
  419. bfa_trc(ioim->bfa, event);
  420. switch (event) {
  421. case BFA_IOIM_SM_QRESUME:
  422. bfa_sm_set_state(ioim, bfa_ioim_sm_cleanup);
  423. bfa_ioim_send_abort(ioim);
  424. break;
  425. case BFA_IOIM_SM_ABORT:
  426. /**
  427. * IO is alraedy being cleaned up implicitly
  428. */
  429. ioim->io_cbfn = __bfa_cb_ioim_abort;
  430. break;
  431. case BFA_IOIM_SM_COMP_GOOD:
  432. case BFA_IOIM_SM_COMP:
  433. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  434. bfa_reqq_wcancel(&ioim->iosp->reqq_wait);
  435. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, ioim->io_cbfn, ioim);
  436. bfa_ioim_notify_cleanup(ioim);
  437. break;
  438. case BFA_IOIM_SM_DONE:
  439. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb_free);
  440. bfa_reqq_wcancel(&ioim->iosp->reqq_wait);
  441. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, ioim->io_cbfn, ioim);
  442. bfa_ioim_notify_cleanup(ioim);
  443. break;
  444. case BFA_IOIM_SM_HWFAIL:
  445. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  446. bfa_reqq_wcancel(&ioim->iosp->reqq_wait);
  447. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, __bfa_cb_ioim_failed,
  448. ioim);
  449. break;
  450. default:
  451. bfa_assert(0);
  452. }
  453. }
  454. /**
  455. * IO bfa callback is pending.
  456. */
  457. static void
  458. bfa_ioim_sm_hcb(struct bfa_ioim_s *ioim, enum bfa_ioim_event event)
  459. {
  460. bfa_trc_fp(ioim->bfa, ioim->iotag);
  461. bfa_trc_fp(ioim->bfa, event);
  462. switch (event) {
  463. case BFA_IOIM_SM_HCB:
  464. bfa_sm_set_state(ioim, bfa_ioim_sm_uninit);
  465. bfa_ioim_free(ioim);
  466. bfa_cb_ioim_resfree(ioim->bfa->bfad);
  467. break;
  468. case BFA_IOIM_SM_CLEANUP:
  469. bfa_ioim_notify_cleanup(ioim);
  470. break;
  471. case BFA_IOIM_SM_HWFAIL:
  472. break;
  473. default:
  474. bfa_assert(0);
  475. }
  476. }
  477. /**
  478. * IO bfa callback is pending. IO resource cannot be freed.
  479. */
  480. static void
  481. bfa_ioim_sm_hcb_free(struct bfa_ioim_s *ioim, enum bfa_ioim_event event)
  482. {
  483. bfa_trc(ioim->bfa, ioim->iotag);
  484. bfa_trc(ioim->bfa, event);
  485. switch (event) {
  486. case BFA_IOIM_SM_HCB:
  487. bfa_sm_set_state(ioim, bfa_ioim_sm_resfree);
  488. list_del(&ioim->qe);
  489. list_add_tail(&ioim->qe, &ioim->fcpim->ioim_resfree_q);
  490. break;
  491. case BFA_IOIM_SM_FREE:
  492. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  493. break;
  494. case BFA_IOIM_SM_CLEANUP:
  495. bfa_ioim_notify_cleanup(ioim);
  496. break;
  497. case BFA_IOIM_SM_HWFAIL:
  498. bfa_sm_set_state(ioim, bfa_ioim_sm_hcb);
  499. break;
  500. default:
  501. bfa_assert(0);
  502. }
  503. }
  504. /**
  505. * IO is completed, waiting resource free from firmware.
  506. */
  507. static void
  508. bfa_ioim_sm_resfree(struct bfa_ioim_s *ioim, enum bfa_ioim_event event)
  509. {
  510. bfa_trc(ioim->bfa, ioim->iotag);
  511. bfa_trc(ioim->bfa, event);
  512. switch (event) {
  513. case BFA_IOIM_SM_FREE:
  514. bfa_sm_set_state(ioim, bfa_ioim_sm_uninit);
  515. bfa_ioim_free(ioim);
  516. bfa_cb_ioim_resfree(ioim->bfa->bfad);
  517. break;
  518. case BFA_IOIM_SM_CLEANUP:
  519. bfa_ioim_notify_cleanup(ioim);
  520. break;
  521. case BFA_IOIM_SM_HWFAIL:
  522. break;
  523. default:
  524. bfa_assert(0);
  525. }
  526. }
  527. /**
  528. * bfa_ioim_private
  529. */
  530. static void
  531. __bfa_cb_ioim_good_comp(void *cbarg, bfa_boolean_t complete)
  532. {
  533. struct bfa_ioim_s *ioim = cbarg;
  534. if (!complete) {
  535. bfa_sm_send_event(ioim, BFA_IOIM_SM_HCB);
  536. return;
  537. }
  538. bfa_cb_ioim_good_comp(ioim->bfa->bfad, ioim->dio);
  539. }
  540. static void
  541. __bfa_cb_ioim_comp(void *cbarg, bfa_boolean_t complete)
  542. {
  543. struct bfa_ioim_s *ioim = cbarg;
  544. struct bfi_ioim_rsp_s *m;
  545. u8 *snsinfo = NULL;
  546. u8 sns_len = 0;
  547. s32 residue = 0;
  548. if (!complete) {
  549. bfa_sm_send_event(ioim, BFA_IOIM_SM_HCB);
  550. return;
  551. }
  552. m = (struct bfi_ioim_rsp_s *) &ioim->iosp->comp_rspmsg;
  553. if (m->io_status == BFI_IOIM_STS_OK) {
  554. /**
  555. * setup sense information, if present
  556. */
  557. if (m->scsi_status == SCSI_STATUS_CHECK_CONDITION
  558. && m->sns_len) {
  559. sns_len = m->sns_len;
  560. snsinfo = ioim->iosp->snsinfo;
  561. }
  562. /**
  563. * setup residue value correctly for normal completions
  564. */
  565. if (m->resid_flags == FCP_RESID_UNDER)
  566. residue = bfa_os_ntohl(m->residue);
  567. if (m->resid_flags == FCP_RESID_OVER) {
  568. residue = bfa_os_ntohl(m->residue);
  569. residue = -residue;
  570. }
  571. }
  572. bfa_cb_ioim_done(ioim->bfa->bfad, ioim->dio, m->io_status,
  573. m->scsi_status, sns_len, snsinfo, residue);
  574. }
  575. static void
  576. __bfa_cb_ioim_failed(void *cbarg, bfa_boolean_t complete)
  577. {
  578. struct bfa_ioim_s *ioim = cbarg;
  579. if (!complete) {
  580. bfa_sm_send_event(ioim, BFA_IOIM_SM_HCB);
  581. return;
  582. }
  583. bfa_cb_ioim_done(ioim->bfa->bfad, ioim->dio, BFI_IOIM_STS_ABORTED,
  584. 0, 0, NULL, 0);
  585. }
  586. static void
  587. __bfa_cb_ioim_pathtov(void *cbarg, bfa_boolean_t complete)
  588. {
  589. struct bfa_ioim_s *ioim = cbarg;
  590. if (!complete) {
  591. bfa_sm_send_event(ioim, BFA_IOIM_SM_HCB);
  592. return;
  593. }
  594. bfa_cb_ioim_done(ioim->bfa->bfad, ioim->dio, BFI_IOIM_STS_PATHTOV,
  595. 0, 0, NULL, 0);
  596. }
  597. static void
  598. __bfa_cb_ioim_abort(void *cbarg, bfa_boolean_t complete)
  599. {
  600. struct bfa_ioim_s *ioim = cbarg;
  601. if (!complete) {
  602. bfa_sm_send_event(ioim, BFA_IOIM_SM_HCB);
  603. return;
  604. }
  605. bfa_cb_ioim_abort(ioim->bfa->bfad, ioim->dio);
  606. }
  607. static void
  608. bfa_ioim_sgpg_alloced(void *cbarg)
  609. {
  610. struct bfa_ioim_s *ioim = cbarg;
  611. ioim->nsgpgs = BFA_SGPG_NPAGE(ioim->nsges);
  612. list_splice_tail_init(&ioim->iosp->sgpg_wqe.sgpg_q, &ioim->sgpg_q);
  613. bfa_ioim_sgpg_setup(ioim);
  614. bfa_sm_send_event(ioim, BFA_IOIM_SM_SGALLOCED);
  615. }
  616. /**
  617. * Send I/O request to firmware.
  618. */
  619. static bfa_boolean_t
  620. bfa_ioim_send_ioreq(struct bfa_ioim_s *ioim)
  621. {
  622. struct bfa_itnim_s *itnim = ioim->itnim;
  623. struct bfi_ioim_req_s *m;
  624. static struct fcp_cmnd_s cmnd_z0 = { 0 };
  625. struct bfi_sge_s *sge;
  626. u32 pgdlen = 0;
  627. /**
  628. * check for room in queue to send request now
  629. */
  630. m = bfa_reqq_next(ioim->bfa, itnim->reqq);
  631. if (!m) {
  632. bfa_reqq_wait(ioim->bfa, ioim->itnim->reqq,
  633. &ioim->iosp->reqq_wait);
  634. return BFA_FALSE;
  635. }
  636. /**
  637. * build i/o request message next
  638. */
  639. m->io_tag = bfa_os_htons(ioim->iotag);
  640. m->rport_hdl = ioim->itnim->rport->fw_handle;
  641. m->io_timeout = bfa_cb_ioim_get_timeout(ioim->dio);
  642. /**
  643. * build inline IO SG element here
  644. */
  645. sge = &m->sges[0];
  646. if (ioim->nsges) {
  647. sge->sga = bfa_cb_ioim_get_sgaddr(ioim->dio, 0);
  648. pgdlen = bfa_cb_ioim_get_sglen(ioim->dio, 0);
  649. sge->sg_len = pgdlen;
  650. sge->flags = (ioim->nsges > BFI_SGE_INLINE) ?
  651. BFI_SGE_DATA_CPL : BFI_SGE_DATA_LAST;
  652. bfa_sge_to_be(sge);
  653. sge++;
  654. }
  655. if (ioim->nsges > BFI_SGE_INLINE) {
  656. sge->sga = ioim->sgpg->sgpg_pa;
  657. } else {
  658. sge->sga.a32.addr_lo = 0;
  659. sge->sga.a32.addr_hi = 0;
  660. }
  661. sge->sg_len = pgdlen;
  662. sge->flags = BFI_SGE_PGDLEN;
  663. bfa_sge_to_be(sge);
  664. /**
  665. * set up I/O command parameters
  666. */
  667. bfa_os_assign(m->cmnd, cmnd_z0);
  668. m->cmnd.lun = bfa_cb_ioim_get_lun(ioim->dio);
  669. m->cmnd.iodir = bfa_cb_ioim_get_iodir(ioim->dio);
  670. bfa_os_assign(m->cmnd.cdb,
  671. *(struct scsi_cdb_s *)bfa_cb_ioim_get_cdb(ioim->dio));
  672. m->cmnd.fcp_dl = bfa_os_htonl(bfa_cb_ioim_get_size(ioim->dio));
  673. /**
  674. * set up I/O message header
  675. */
  676. switch (m->cmnd.iodir) {
  677. case FCP_IODIR_READ:
  678. bfi_h2i_set(m->mh, BFI_MC_IOIM_READ, 0, bfa_lpuid(ioim->bfa));
  679. bfa_stats(itnim, input_reqs);
  680. break;
  681. case FCP_IODIR_WRITE:
  682. bfi_h2i_set(m->mh, BFI_MC_IOIM_WRITE, 0, bfa_lpuid(ioim->bfa));
  683. bfa_stats(itnim, output_reqs);
  684. break;
  685. case FCP_IODIR_RW:
  686. bfa_stats(itnim, input_reqs);
  687. bfa_stats(itnim, output_reqs);
  688. default:
  689. bfi_h2i_set(m->mh, BFI_MC_IOIM_IO, 0, bfa_lpuid(ioim->bfa));
  690. }
  691. if (itnim->seq_rec ||
  692. (bfa_cb_ioim_get_size(ioim->dio) & (sizeof(u32) - 1)))
  693. bfi_h2i_set(m->mh, BFI_MC_IOIM_IO, 0, bfa_lpuid(ioim->bfa));
  694. #ifdef IOIM_ADVANCED
  695. m->cmnd.crn = bfa_cb_ioim_get_crn(ioim->dio);
  696. m->cmnd.priority = bfa_cb_ioim_get_priority(ioim->dio);
  697. m->cmnd.taskattr = bfa_cb_ioim_get_taskattr(ioim->dio);
  698. /**
  699. * Handle large CDB (>16 bytes).
  700. */
  701. m->cmnd.addl_cdb_len = (bfa_cb_ioim_get_cdblen(ioim->dio) -
  702. FCP_CMND_CDB_LEN) / sizeof(u32);
  703. if (m->cmnd.addl_cdb_len) {
  704. bfa_os_memcpy(&m->cmnd.cdb + 1, (struct scsi_cdb_s *)
  705. bfa_cb_ioim_get_cdb(ioim->dio) + 1,
  706. m->cmnd.addl_cdb_len * sizeof(u32));
  707. fcp_cmnd_fcpdl(&m->cmnd) =
  708. bfa_os_htonl(bfa_cb_ioim_get_size(ioim->dio));
  709. }
  710. #endif
  711. /**
  712. * queue I/O message to firmware
  713. */
  714. bfa_reqq_produce(ioim->bfa, itnim->reqq);
  715. return BFA_TRUE;
  716. }
  717. /**
  718. * Setup any additional SG pages needed.Inline SG element is setup
  719. * at queuing time.
  720. */
  721. static bfa_boolean_t
  722. bfa_ioim_sge_setup(struct bfa_ioim_s *ioim)
  723. {
  724. u16 nsgpgs;
  725. bfa_assert(ioim->nsges > BFI_SGE_INLINE);
  726. /**
  727. * allocate SG pages needed
  728. */
  729. nsgpgs = BFA_SGPG_NPAGE(ioim->nsges);
  730. if (!nsgpgs)
  731. return BFA_TRUE;
  732. if (bfa_sgpg_malloc(ioim->bfa, &ioim->sgpg_q, nsgpgs)
  733. != BFA_STATUS_OK) {
  734. bfa_sgpg_wait(ioim->bfa, &ioim->iosp->sgpg_wqe, nsgpgs);
  735. return BFA_FALSE;
  736. }
  737. ioim->nsgpgs = nsgpgs;
  738. bfa_ioim_sgpg_setup(ioim);
  739. return BFA_TRUE;
  740. }
  741. static void
  742. bfa_ioim_sgpg_setup(struct bfa_ioim_s *ioim)
  743. {
  744. int sgeid, nsges, i;
  745. struct bfi_sge_s *sge;
  746. struct bfa_sgpg_s *sgpg;
  747. u32 pgcumsz;
  748. sgeid = BFI_SGE_INLINE;
  749. ioim->sgpg = sgpg = bfa_q_first(&ioim->sgpg_q);
  750. do {
  751. sge = sgpg->sgpg->sges;
  752. nsges = ioim->nsges - sgeid;
  753. if (nsges > BFI_SGPG_DATA_SGES)
  754. nsges = BFI_SGPG_DATA_SGES;
  755. pgcumsz = 0;
  756. for (i = 0; i < nsges; i++, sge++, sgeid++) {
  757. sge->sga = bfa_cb_ioim_get_sgaddr(ioim->dio, sgeid);
  758. sge->sg_len = bfa_cb_ioim_get_sglen(ioim->dio, sgeid);
  759. pgcumsz += sge->sg_len;
  760. /**
  761. * set flags
  762. */
  763. if (i < (nsges - 1))
  764. sge->flags = BFI_SGE_DATA;
  765. else if (sgeid < (ioim->nsges - 1))
  766. sge->flags = BFI_SGE_DATA_CPL;
  767. else
  768. sge->flags = BFI_SGE_DATA_LAST;
  769. }
  770. sgpg = (struct bfa_sgpg_s *) bfa_q_next(sgpg);
  771. /**
  772. * set the link element of each page
  773. */
  774. if (sgeid == ioim->nsges) {
  775. sge->flags = BFI_SGE_PGDLEN;
  776. sge->sga.a32.addr_lo = 0;
  777. sge->sga.a32.addr_hi = 0;
  778. } else {
  779. sge->flags = BFI_SGE_LINK;
  780. sge->sga = sgpg->sgpg_pa;
  781. }
  782. sge->sg_len = pgcumsz;
  783. } while (sgeid < ioim->nsges);
  784. }
  785. /**
  786. * Send I/O abort request to firmware.
  787. */
  788. static bfa_boolean_t
  789. bfa_ioim_send_abort(struct bfa_ioim_s *ioim)
  790. {
  791. struct bfa_itnim_s *itnim = ioim->itnim;
  792. struct bfi_ioim_abort_req_s *m;
  793. enum bfi_ioim_h2i msgop;
  794. /**
  795. * check for room in queue to send request now
  796. */
  797. m = bfa_reqq_next(ioim->bfa, itnim->reqq);
  798. if (!m)
  799. return BFA_FALSE;
  800. /**
  801. * build i/o request message next
  802. */
  803. if (ioim->iosp->abort_explicit)
  804. msgop = BFI_IOIM_H2I_IOABORT_REQ;
  805. else
  806. msgop = BFI_IOIM_H2I_IOCLEANUP_REQ;
  807. bfi_h2i_set(m->mh, BFI_MC_IOIM, msgop, bfa_lpuid(ioim->bfa));
  808. m->io_tag = bfa_os_htons(ioim->iotag);
  809. m->abort_tag = ++ioim->abort_tag;
  810. /**
  811. * queue I/O message to firmware
  812. */
  813. bfa_reqq_produce(ioim->bfa, itnim->reqq);
  814. return BFA_TRUE;
  815. }
  816. /**
  817. * Call to resume any I/O requests waiting for room in request queue.
  818. */
  819. static void
  820. bfa_ioim_qresume(void *cbarg)
  821. {
  822. struct bfa_ioim_s *ioim = cbarg;
  823. bfa_fcpim_stats(ioim->fcpim, qresumes);
  824. bfa_sm_send_event(ioim, BFA_IOIM_SM_QRESUME);
  825. }
  826. static void
  827. bfa_ioim_notify_cleanup(struct bfa_ioim_s *ioim)
  828. {
  829. /**
  830. * Move IO from itnim queue to fcpim global queue since itnim will be
  831. * freed.
  832. */
  833. list_del(&ioim->qe);
  834. list_add_tail(&ioim->qe, &ioim->fcpim->ioim_comp_q);
  835. if (!ioim->iosp->tskim) {
  836. if (ioim->fcpim->delay_comp && ioim->itnim->iotov_active) {
  837. bfa_cb_dequeue(&ioim->hcb_qe);
  838. list_del(&ioim->qe);
  839. list_add_tail(&ioim->qe, &ioim->itnim->delay_comp_q);
  840. }
  841. bfa_itnim_iodone(ioim->itnim);
  842. } else
  843. bfa_tskim_iodone(ioim->iosp->tskim);
  844. }
  845. /**
  846. * or after the link comes back.
  847. */
  848. void
  849. bfa_ioim_delayed_comp(struct bfa_ioim_s *ioim, bfa_boolean_t iotov)
  850. {
  851. /**
  852. * If path tov timer expired, failback with PATHTOV status - these
  853. * IO requests are not normally retried by IO stack.
  854. *
  855. * Otherwise device cameback online and fail it with normal failed
  856. * status so that IO stack retries these failed IO requests.
  857. */
  858. if (iotov)
  859. ioim->io_cbfn = __bfa_cb_ioim_pathtov;
  860. else
  861. ioim->io_cbfn = __bfa_cb_ioim_failed;
  862. bfa_cb_queue(ioim->bfa, &ioim->hcb_qe, ioim->io_cbfn, ioim);
  863. /**
  864. * Move IO to fcpim global queue since itnim will be
  865. * freed.
  866. */
  867. list_del(&ioim->qe);
  868. list_add_tail(&ioim->qe, &ioim->fcpim->ioim_comp_q);
  869. }
  870. /**
  871. * bfa_ioim_friend
  872. */
  873. /**
  874. * Memory allocation and initialization.
  875. */
  876. void
  877. bfa_ioim_attach(struct bfa_fcpim_mod_s *fcpim, struct bfa_meminfo_s *minfo)
  878. {
  879. struct bfa_ioim_s *ioim;
  880. struct bfa_ioim_sp_s *iosp;
  881. u16 i;
  882. u8 *snsinfo;
  883. u32 snsbufsz;
  884. /**
  885. * claim memory first
  886. */
  887. ioim = (struct bfa_ioim_s *) bfa_meminfo_kva(minfo);
  888. fcpim->ioim_arr = ioim;
  889. bfa_meminfo_kva(minfo) = (u8 *) (ioim + fcpim->num_ioim_reqs);
  890. iosp = (struct bfa_ioim_sp_s *) bfa_meminfo_kva(minfo);
  891. fcpim->ioim_sp_arr = iosp;
  892. bfa_meminfo_kva(minfo) = (u8 *) (iosp + fcpim->num_ioim_reqs);
  893. /**
  894. * Claim DMA memory for per IO sense data.
  895. */
  896. snsbufsz = fcpim->num_ioim_reqs * BFI_IOIM_SNSLEN;
  897. fcpim->snsbase.pa = bfa_meminfo_dma_phys(minfo);
  898. bfa_meminfo_dma_phys(minfo) += snsbufsz;
  899. fcpim->snsbase.kva = bfa_meminfo_dma_virt(minfo);
  900. bfa_meminfo_dma_virt(minfo) += snsbufsz;
  901. snsinfo = fcpim->snsbase.kva;
  902. bfa_iocfc_set_snsbase(fcpim->bfa, fcpim->snsbase.pa);
  903. /**
  904. * Initialize ioim free queues
  905. */
  906. INIT_LIST_HEAD(&fcpim->ioim_free_q);
  907. INIT_LIST_HEAD(&fcpim->ioim_resfree_q);
  908. INIT_LIST_HEAD(&fcpim->ioim_comp_q);
  909. for (i = 0; i < fcpim->num_ioim_reqs;
  910. i++, ioim++, iosp++, snsinfo += BFI_IOIM_SNSLEN) {
  911. /*
  912. * initialize IOIM
  913. */
  914. bfa_os_memset(ioim, 0, sizeof(struct bfa_ioim_s));
  915. ioim->iotag = i;
  916. ioim->bfa = fcpim->bfa;
  917. ioim->fcpim = fcpim;
  918. ioim->iosp = iosp;
  919. iosp->snsinfo = snsinfo;
  920. INIT_LIST_HEAD(&ioim->sgpg_q);
  921. bfa_reqq_winit(&ioim->iosp->reqq_wait,
  922. bfa_ioim_qresume, ioim);
  923. bfa_sgpg_winit(&ioim->iosp->sgpg_wqe,
  924. bfa_ioim_sgpg_alloced, ioim);
  925. bfa_sm_set_state(ioim, bfa_ioim_sm_uninit);
  926. list_add_tail(&ioim->qe, &fcpim->ioim_free_q);
  927. }
  928. }
  929. /**
  930. * Driver detach time call.
  931. */
  932. void
  933. bfa_ioim_detach(struct bfa_fcpim_mod_s *fcpim)
  934. {
  935. }
  936. void
  937. bfa_ioim_isr(struct bfa_s *bfa, struct bfi_msg_s *m)
  938. {
  939. struct bfa_fcpim_mod_s *fcpim = BFA_FCPIM_MOD(bfa);
  940. struct bfi_ioim_rsp_s *rsp = (struct bfi_ioim_rsp_s *) m;
  941. struct bfa_ioim_s *ioim;
  942. u16 iotag;
  943. enum bfa_ioim_event evt = BFA_IOIM_SM_COMP;
  944. iotag = bfa_os_ntohs(rsp->io_tag);
  945. ioim = BFA_IOIM_FROM_TAG(fcpim, iotag);
  946. bfa_assert(ioim->iotag == iotag);
  947. bfa_trc(ioim->bfa, ioim->iotag);
  948. bfa_trc(ioim->bfa, rsp->io_status);
  949. bfa_trc(ioim->bfa, rsp->reuse_io_tag);
  950. if (bfa_sm_cmp_state(ioim, bfa_ioim_sm_active))
  951. bfa_os_assign(ioim->iosp->comp_rspmsg, *m);
  952. switch (rsp->io_status) {
  953. case BFI_IOIM_STS_OK:
  954. bfa_fcpim_stats(fcpim, iocomp_ok);
  955. if (rsp->reuse_io_tag == 0)
  956. evt = BFA_IOIM_SM_DONE;
  957. else
  958. evt = BFA_IOIM_SM_COMP;
  959. break;
  960. case BFI_IOIM_STS_TIMEDOUT:
  961. case BFI_IOIM_STS_ABORTED:
  962. rsp->io_status = BFI_IOIM_STS_ABORTED;
  963. bfa_fcpim_stats(fcpim, iocomp_aborted);
  964. if (rsp->reuse_io_tag == 0)
  965. evt = BFA_IOIM_SM_DONE;
  966. else
  967. evt = BFA_IOIM_SM_COMP;
  968. break;
  969. case BFI_IOIM_STS_PROTO_ERR:
  970. bfa_fcpim_stats(fcpim, iocom_proto_err);
  971. bfa_assert(rsp->reuse_io_tag);
  972. evt = BFA_IOIM_SM_COMP;
  973. break;
  974. case BFI_IOIM_STS_SQER_NEEDED:
  975. bfa_fcpim_stats(fcpim, iocom_sqer_needed);
  976. bfa_assert(rsp->reuse_io_tag == 0);
  977. evt = BFA_IOIM_SM_SQRETRY;
  978. break;
  979. case BFI_IOIM_STS_RES_FREE:
  980. bfa_fcpim_stats(fcpim, iocom_res_free);
  981. evt = BFA_IOIM_SM_FREE;
  982. break;
  983. case BFI_IOIM_STS_HOST_ABORTED:
  984. bfa_fcpim_stats(fcpim, iocom_hostabrts);
  985. if (rsp->abort_tag != ioim->abort_tag) {
  986. bfa_trc(ioim->bfa, rsp->abort_tag);
  987. bfa_trc(ioim->bfa, ioim->abort_tag);
  988. return;
  989. }
  990. if (rsp->reuse_io_tag)
  991. evt = BFA_IOIM_SM_ABORT_COMP;
  992. else
  993. evt = BFA_IOIM_SM_ABORT_DONE;
  994. break;
  995. case BFI_IOIM_STS_UTAG:
  996. bfa_fcpim_stats(fcpim, iocom_utags);
  997. evt = BFA_IOIM_SM_COMP_UTAG;
  998. break;
  999. default:
  1000. bfa_assert(0);
  1001. }
  1002. bfa_sm_send_event(ioim, evt);
  1003. }
  1004. void
  1005. bfa_ioim_good_comp_isr(struct bfa_s *bfa, struct bfi_msg_s *m)
  1006. {
  1007. struct bfa_fcpim_mod_s *fcpim = BFA_FCPIM_MOD(bfa);
  1008. struct bfi_ioim_rsp_s *rsp = (struct bfi_ioim_rsp_s *) m;
  1009. struct bfa_ioim_s *ioim;
  1010. u16 iotag;
  1011. iotag = bfa_os_ntohs(rsp->io_tag);
  1012. ioim = BFA_IOIM_FROM_TAG(fcpim, iotag);
  1013. bfa_assert(ioim->iotag == iotag);
  1014. bfa_trc_fp(ioim->bfa, ioim->iotag);
  1015. bfa_sm_send_event(ioim, BFA_IOIM_SM_COMP_GOOD);
  1016. }
  1017. /**
  1018. * Called by itnim to clean up IO while going offline.
  1019. */
  1020. void
  1021. bfa_ioim_cleanup(struct bfa_ioim_s *ioim)
  1022. {
  1023. bfa_trc(ioim->bfa, ioim->iotag);
  1024. bfa_fcpim_stats(ioim->fcpim, io_cleanups);
  1025. ioim->iosp->tskim = NULL;
  1026. bfa_sm_send_event(ioim, BFA_IOIM_SM_CLEANUP);
  1027. }
  1028. void
  1029. bfa_ioim_cleanup_tm(struct bfa_ioim_s *ioim, struct bfa_tskim_s *tskim)
  1030. {
  1031. bfa_trc(ioim->bfa, ioim->iotag);
  1032. bfa_fcpim_stats(ioim->fcpim, io_tmaborts);
  1033. ioim->iosp->tskim = tskim;
  1034. bfa_sm_send_event(ioim, BFA_IOIM_SM_CLEANUP);
  1035. }
  1036. /**
  1037. * IOC failure handling.
  1038. */
  1039. void
  1040. bfa_ioim_iocdisable(struct bfa_ioim_s *ioim)
  1041. {
  1042. bfa_sm_send_event(ioim, BFA_IOIM_SM_HWFAIL);
  1043. }
  1044. /**
  1045. * IO offline TOV popped. Fail the pending IO.
  1046. */
  1047. void
  1048. bfa_ioim_tov(struct bfa_ioim_s *ioim)
  1049. {
  1050. bfa_sm_send_event(ioim, BFA_IOIM_SM_IOTOV);
  1051. }
  1052. /**
  1053. * bfa_ioim_api
  1054. */
  1055. /**
  1056. * Allocate IOIM resource for initiator mode I/O request.
  1057. */
  1058. struct bfa_ioim_s *
  1059. bfa_ioim_alloc(struct bfa_s *bfa, struct bfad_ioim_s *dio,
  1060. struct bfa_itnim_s *itnim, u16 nsges)
  1061. {
  1062. struct bfa_fcpim_mod_s *fcpim = BFA_FCPIM_MOD(bfa);
  1063. struct bfa_ioim_s *ioim;
  1064. /**
  1065. * alocate IOIM resource
  1066. */
  1067. bfa_q_deq(&fcpim->ioim_free_q, &ioim);
  1068. if (!ioim) {
  1069. bfa_fcpim_stats(fcpim, no_iotags);
  1070. return NULL;
  1071. }
  1072. ioim->dio = dio;
  1073. ioim->itnim = itnim;
  1074. ioim->nsges = nsges;
  1075. ioim->nsgpgs = 0;
  1076. bfa_stats(fcpim, total_ios);
  1077. bfa_stats(itnim, ios);
  1078. fcpim->ios_active++;
  1079. list_add_tail(&ioim->qe, &itnim->io_q);
  1080. bfa_trc_fp(ioim->bfa, ioim->iotag);
  1081. return ioim;
  1082. }
  1083. void
  1084. bfa_ioim_free(struct bfa_ioim_s *ioim)
  1085. {
  1086. struct bfa_fcpim_mod_s *fcpim = ioim->fcpim;
  1087. bfa_trc_fp(ioim->bfa, ioim->iotag);
  1088. bfa_assert_fp(bfa_sm_cmp_state(ioim, bfa_ioim_sm_uninit));
  1089. bfa_assert_fp(list_empty(&ioim->sgpg_q)
  1090. || (ioim->nsges > BFI_SGE_INLINE));
  1091. if (ioim->nsgpgs > 0)
  1092. bfa_sgpg_mfree(ioim->bfa, &ioim->sgpg_q, ioim->nsgpgs);
  1093. bfa_stats(ioim->itnim, io_comps);
  1094. fcpim->ios_active--;
  1095. list_del(&ioim->qe);
  1096. list_add_tail(&ioim->qe, &fcpim->ioim_free_q);
  1097. }
  1098. void
  1099. bfa_ioim_start(struct bfa_ioim_s *ioim)
  1100. {
  1101. bfa_trc_fp(ioim->bfa, ioim->iotag);
  1102. bfa_sm_send_event(ioim, BFA_IOIM_SM_START);
  1103. }
  1104. /**
  1105. * Driver I/O abort request.
  1106. */
  1107. void
  1108. bfa_ioim_abort(struct bfa_ioim_s *ioim)
  1109. {
  1110. bfa_trc(ioim->bfa, ioim->iotag);
  1111. bfa_fcpim_stats(ioim->fcpim, io_aborts);
  1112. bfa_sm_send_event(ioim, BFA_IOIM_SM_ABORT);
  1113. }