bfa_iocfc.c 21 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 <cs/bfa_debug.h>
  18. #include <bfa_priv.h>
  19. #include <log/bfa_log_hal.h>
  20. #include <bfi/bfi_boot.h>
  21. #include <bfi/bfi_cbreg.h>
  22. #include <aen/bfa_aen_ioc.h>
  23. #include <defs/bfa_defs_iocfc.h>
  24. #include <defs/bfa_defs_pci.h>
  25. #include "bfa_callback_priv.h"
  26. #include "bfad_drv.h"
  27. BFA_TRC_FILE(HAL, IOCFC);
  28. /**
  29. * IOC local definitions
  30. */
  31. #define BFA_IOCFC_TOV 5000 /* msecs */
  32. enum {
  33. BFA_IOCFC_ACT_NONE = 0,
  34. BFA_IOCFC_ACT_INIT = 1,
  35. BFA_IOCFC_ACT_STOP = 2,
  36. BFA_IOCFC_ACT_DISABLE = 3,
  37. };
  38. /*
  39. * forward declarations
  40. */
  41. static void bfa_iocfc_enable_cbfn(void *bfa_arg, enum bfa_status status);
  42. static void bfa_iocfc_disable_cbfn(void *bfa_arg);
  43. static void bfa_iocfc_hbfail_cbfn(void *bfa_arg);
  44. static void bfa_iocfc_reset_cbfn(void *bfa_arg);
  45. static void bfa_iocfc_stats_clear(void *bfa_arg);
  46. static void bfa_iocfc_stats_swap(struct bfa_fw_stats_s *d,
  47. struct bfa_fw_stats_s *s);
  48. static void bfa_iocfc_stats_clr_cb(void *bfa_arg, bfa_boolean_t complete);
  49. static void bfa_iocfc_stats_clr_timeout(void *bfa_arg);
  50. static void bfa_iocfc_stats_cb(void *bfa_arg, bfa_boolean_t complete);
  51. static void bfa_iocfc_stats_timeout(void *bfa_arg);
  52. static struct bfa_ioc_cbfn_s bfa_iocfc_cbfn;
  53. /**
  54. * bfa_ioc_pvt BFA IOC private functions
  55. */
  56. static void
  57. bfa_iocfc_cqs_sz(struct bfa_iocfc_cfg_s *cfg, u32 *dm_len)
  58. {
  59. int i, per_reqq_sz, per_rspq_sz;
  60. per_reqq_sz = BFA_ROUNDUP((cfg->drvcfg.num_reqq_elems * BFI_LMSG_SZ),
  61. BFA_DMA_ALIGN_SZ);
  62. per_rspq_sz = BFA_ROUNDUP((cfg->drvcfg.num_rspq_elems * BFI_LMSG_SZ),
  63. BFA_DMA_ALIGN_SZ);
  64. /*
  65. * Calculate CQ size
  66. */
  67. for (i = 0; i < cfg->fwcfg.num_cqs; i++) {
  68. *dm_len = *dm_len + per_reqq_sz;
  69. *dm_len = *dm_len + per_rspq_sz;
  70. }
  71. /*
  72. * Calculate Shadow CI/PI size
  73. */
  74. for (i = 0; i < cfg->fwcfg.num_cqs; i++)
  75. *dm_len += (2 * BFA_CACHELINE_SZ);
  76. }
  77. static void
  78. bfa_iocfc_fw_cfg_sz(struct bfa_iocfc_cfg_s *cfg, u32 *dm_len)
  79. {
  80. *dm_len +=
  81. BFA_ROUNDUP(sizeof(struct bfi_iocfc_cfg_s), BFA_CACHELINE_SZ);
  82. *dm_len +=
  83. BFA_ROUNDUP(sizeof(struct bfi_iocfc_cfgrsp_s),
  84. BFA_CACHELINE_SZ);
  85. *dm_len += BFA_ROUNDUP(sizeof(struct bfa_fw_stats_s), BFA_CACHELINE_SZ);
  86. }
  87. /**
  88. * Use the Mailbox interface to send BFI_IOCFC_H2I_CFG_REQ
  89. */
  90. static void
  91. bfa_iocfc_send_cfg(void *bfa_arg)
  92. {
  93. struct bfa_s *bfa = bfa_arg;
  94. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  95. struct bfi_iocfc_cfg_req_s cfg_req;
  96. struct bfi_iocfc_cfg_s *cfg_info = iocfc->cfginfo;
  97. struct bfa_iocfc_cfg_s *cfg = &iocfc->cfg;
  98. int i;
  99. bfa_assert(cfg->fwcfg.num_cqs <= BFI_IOC_MAX_CQS);
  100. bfa_trc(bfa, cfg->fwcfg.num_cqs);
  101. iocfc->cfgdone = BFA_FALSE;
  102. bfa_iocfc_reset_queues(bfa);
  103. /**
  104. * initialize IOC configuration info
  105. */
  106. cfg_info->endian_sig = BFI_IOC_ENDIAN_SIG;
  107. cfg_info->num_cqs = cfg->fwcfg.num_cqs;
  108. bfa_dma_be_addr_set(cfg_info->cfgrsp_addr, iocfc->cfgrsp_dma.pa);
  109. bfa_dma_be_addr_set(cfg_info->stats_addr, iocfc->stats_pa);
  110. /**
  111. * dma map REQ and RSP circular queues and shadow pointers
  112. */
  113. for (i = 0; i < cfg->fwcfg.num_cqs; i++) {
  114. bfa_dma_be_addr_set(cfg_info->req_cq_ba[i],
  115. iocfc->req_cq_ba[i].pa);
  116. bfa_dma_be_addr_set(cfg_info->req_shadow_ci[i],
  117. iocfc->req_cq_shadow_ci[i].pa);
  118. cfg_info->req_cq_elems[i] =
  119. bfa_os_htons(cfg->drvcfg.num_reqq_elems);
  120. bfa_dma_be_addr_set(cfg_info->rsp_cq_ba[i],
  121. iocfc->rsp_cq_ba[i].pa);
  122. bfa_dma_be_addr_set(cfg_info->rsp_shadow_pi[i],
  123. iocfc->rsp_cq_shadow_pi[i].pa);
  124. cfg_info->rsp_cq_elems[i] =
  125. bfa_os_htons(cfg->drvcfg.num_rspq_elems);
  126. }
  127. /**
  128. * dma map IOC configuration itself
  129. */
  130. bfi_h2i_set(cfg_req.mh, BFI_MC_IOCFC, BFI_IOCFC_H2I_CFG_REQ,
  131. bfa_lpuid(bfa));
  132. bfa_dma_be_addr_set(cfg_req.ioc_cfg_dma_addr, iocfc->cfg_info.pa);
  133. bfa_ioc_mbox_send(&bfa->ioc, &cfg_req,
  134. sizeof(struct bfi_iocfc_cfg_req_s));
  135. }
  136. static void
  137. bfa_iocfc_init_mem(struct bfa_s *bfa, void *bfad, struct bfa_iocfc_cfg_s *cfg,
  138. struct bfa_pcidev_s *pcidev)
  139. {
  140. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  141. bfa->bfad = bfad;
  142. iocfc->bfa = bfa;
  143. iocfc->action = BFA_IOCFC_ACT_NONE;
  144. bfa_os_assign(iocfc->cfg, *cfg);
  145. /**
  146. * Initialize chip specific handlers.
  147. */
  148. if (bfa_ioc_devid(&bfa->ioc) == BFA_PCI_DEVICE_ID_CT) {
  149. iocfc->hwif.hw_reginit = bfa_hwct_reginit;
  150. iocfc->hwif.hw_rspq_ack = bfa_hwct_rspq_ack;
  151. iocfc->hwif.hw_msix_init = bfa_hwct_msix_init;
  152. iocfc->hwif.hw_msix_install = bfa_hwct_msix_install;
  153. iocfc->hwif.hw_msix_uninstall = bfa_hwct_msix_uninstall;
  154. iocfc->hwif.hw_isr_mode_set = bfa_hwct_isr_mode_set;
  155. iocfc->hwif.hw_msix_getvecs = bfa_hwct_msix_getvecs;
  156. } else {
  157. iocfc->hwif.hw_reginit = bfa_hwcb_reginit;
  158. iocfc->hwif.hw_rspq_ack = bfa_hwcb_rspq_ack;
  159. iocfc->hwif.hw_msix_init = bfa_hwcb_msix_init;
  160. iocfc->hwif.hw_msix_install = bfa_hwcb_msix_install;
  161. iocfc->hwif.hw_msix_uninstall = bfa_hwcb_msix_uninstall;
  162. iocfc->hwif.hw_isr_mode_set = bfa_hwcb_isr_mode_set;
  163. iocfc->hwif.hw_msix_getvecs = bfa_hwcb_msix_getvecs;
  164. }
  165. iocfc->hwif.hw_reginit(bfa);
  166. bfa->msix.nvecs = 0;
  167. }
  168. static void
  169. bfa_iocfc_mem_claim(struct bfa_s *bfa, struct bfa_iocfc_cfg_s *cfg,
  170. struct bfa_meminfo_s *meminfo)
  171. {
  172. u8 *dm_kva;
  173. u64 dm_pa;
  174. int i, per_reqq_sz, per_rspq_sz;
  175. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  176. int dbgsz;
  177. dm_kva = bfa_meminfo_dma_virt(meminfo);
  178. dm_pa = bfa_meminfo_dma_phys(meminfo);
  179. /*
  180. * First allocate dma memory for IOC.
  181. */
  182. bfa_ioc_mem_claim(&bfa->ioc, dm_kva, dm_pa);
  183. dm_kva += bfa_ioc_meminfo();
  184. dm_pa += bfa_ioc_meminfo();
  185. /*
  186. * Claim DMA-able memory for the request/response queues and for shadow
  187. * ci/pi registers
  188. */
  189. per_reqq_sz = BFA_ROUNDUP((cfg->drvcfg.num_reqq_elems * BFI_LMSG_SZ),
  190. BFA_DMA_ALIGN_SZ);
  191. per_rspq_sz = BFA_ROUNDUP((cfg->drvcfg.num_rspq_elems * BFI_LMSG_SZ),
  192. BFA_DMA_ALIGN_SZ);
  193. for (i = 0; i < cfg->fwcfg.num_cqs; i++) {
  194. iocfc->req_cq_ba[i].kva = dm_kva;
  195. iocfc->req_cq_ba[i].pa = dm_pa;
  196. bfa_os_memset(dm_kva, 0, per_reqq_sz);
  197. dm_kva += per_reqq_sz;
  198. dm_pa += per_reqq_sz;
  199. iocfc->rsp_cq_ba[i].kva = dm_kva;
  200. iocfc->rsp_cq_ba[i].pa = dm_pa;
  201. bfa_os_memset(dm_kva, 0, per_rspq_sz);
  202. dm_kva += per_rspq_sz;
  203. dm_pa += per_rspq_sz;
  204. }
  205. for (i = 0; i < cfg->fwcfg.num_cqs; i++) {
  206. iocfc->req_cq_shadow_ci[i].kva = dm_kva;
  207. iocfc->req_cq_shadow_ci[i].pa = dm_pa;
  208. dm_kva += BFA_CACHELINE_SZ;
  209. dm_pa += BFA_CACHELINE_SZ;
  210. iocfc->rsp_cq_shadow_pi[i].kva = dm_kva;
  211. iocfc->rsp_cq_shadow_pi[i].pa = dm_pa;
  212. dm_kva += BFA_CACHELINE_SZ;
  213. dm_pa += BFA_CACHELINE_SZ;
  214. }
  215. /*
  216. * Claim DMA-able memory for the config info page
  217. */
  218. bfa->iocfc.cfg_info.kva = dm_kva;
  219. bfa->iocfc.cfg_info.pa = dm_pa;
  220. bfa->iocfc.cfginfo = (struct bfi_iocfc_cfg_s *) dm_kva;
  221. dm_kva += BFA_ROUNDUP(sizeof(struct bfi_iocfc_cfg_s), BFA_CACHELINE_SZ);
  222. dm_pa += BFA_ROUNDUP(sizeof(struct bfi_iocfc_cfg_s), BFA_CACHELINE_SZ);
  223. /*
  224. * Claim DMA-able memory for the config response
  225. */
  226. bfa->iocfc.cfgrsp_dma.kva = dm_kva;
  227. bfa->iocfc.cfgrsp_dma.pa = dm_pa;
  228. bfa->iocfc.cfgrsp = (struct bfi_iocfc_cfgrsp_s *) dm_kva;
  229. dm_kva +=
  230. BFA_ROUNDUP(sizeof(struct bfi_iocfc_cfgrsp_s),
  231. BFA_CACHELINE_SZ);
  232. dm_pa += BFA_ROUNDUP(sizeof(struct bfi_iocfc_cfgrsp_s),
  233. BFA_CACHELINE_SZ);
  234. /*
  235. * Claim DMA-able memory for iocfc stats
  236. */
  237. bfa->iocfc.stats_kva = dm_kva;
  238. bfa->iocfc.stats_pa = dm_pa;
  239. bfa->iocfc.fw_stats = (struct bfa_fw_stats_s *) dm_kva;
  240. dm_kva += BFA_ROUNDUP(sizeof(struct bfa_fw_stats_s), BFA_CACHELINE_SZ);
  241. dm_pa += BFA_ROUNDUP(sizeof(struct bfa_fw_stats_s), BFA_CACHELINE_SZ);
  242. bfa_meminfo_dma_virt(meminfo) = dm_kva;
  243. bfa_meminfo_dma_phys(meminfo) = dm_pa;
  244. dbgsz = bfa_ioc_debug_trcsz(bfa_auto_recover);
  245. if (dbgsz > 0) {
  246. bfa_ioc_debug_memclaim(&bfa->ioc, bfa_meminfo_kva(meminfo));
  247. bfa_meminfo_kva(meminfo) += dbgsz;
  248. }
  249. }
  250. /**
  251. * BFA submodules initialization completion notification.
  252. */
  253. static void
  254. bfa_iocfc_initdone_submod(struct bfa_s *bfa)
  255. {
  256. int i;
  257. for (i = 0; hal_mods[i]; i++)
  258. hal_mods[i]->initdone(bfa);
  259. }
  260. /**
  261. * Start BFA submodules.
  262. */
  263. static void
  264. bfa_iocfc_start_submod(struct bfa_s *bfa)
  265. {
  266. int i;
  267. bfa->rme_process = BFA_TRUE;
  268. for (i = 0; hal_mods[i]; i++)
  269. hal_mods[i]->start(bfa);
  270. }
  271. /**
  272. * Disable BFA submodules.
  273. */
  274. static void
  275. bfa_iocfc_disable_submod(struct bfa_s *bfa)
  276. {
  277. int i;
  278. for (i = 0; hal_mods[i]; i++)
  279. hal_mods[i]->iocdisable(bfa);
  280. }
  281. static void
  282. bfa_iocfc_init_cb(void *bfa_arg, bfa_boolean_t complete)
  283. {
  284. struct bfa_s *bfa = bfa_arg;
  285. if (complete) {
  286. if (bfa->iocfc.cfgdone)
  287. bfa_cb_init(bfa->bfad, BFA_STATUS_OK);
  288. else
  289. bfa_cb_init(bfa->bfad, BFA_STATUS_FAILED);
  290. } else
  291. bfa->iocfc.action = BFA_IOCFC_ACT_NONE;
  292. }
  293. static void
  294. bfa_iocfc_stop_cb(void *bfa_arg, bfa_boolean_t compl)
  295. {
  296. struct bfa_s *bfa = bfa_arg;
  297. struct bfad_s *bfad = bfa->bfad;
  298. if (compl)
  299. complete(&bfad->comp);
  300. else
  301. bfa->iocfc.action = BFA_IOCFC_ACT_NONE;
  302. }
  303. static void
  304. bfa_iocfc_disable_cb(void *bfa_arg, bfa_boolean_t compl)
  305. {
  306. struct bfa_s *bfa = bfa_arg;
  307. struct bfad_s *bfad = bfa->bfad;
  308. if (compl)
  309. complete(&bfad->disable_comp);
  310. }
  311. /**
  312. * Update BFA configuration from firmware configuration.
  313. */
  314. static void
  315. bfa_iocfc_cfgrsp(struct bfa_s *bfa)
  316. {
  317. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  318. struct bfi_iocfc_cfgrsp_s *cfgrsp = iocfc->cfgrsp;
  319. struct bfa_iocfc_fwcfg_s *fwcfg = &cfgrsp->fwcfg;
  320. struct bfi_iocfc_cfg_s *cfginfo = iocfc->cfginfo;
  321. fwcfg->num_cqs = fwcfg->num_cqs;
  322. fwcfg->num_ioim_reqs = bfa_os_ntohs(fwcfg->num_ioim_reqs);
  323. fwcfg->num_tskim_reqs = bfa_os_ntohs(fwcfg->num_tskim_reqs);
  324. fwcfg->num_fcxp_reqs = bfa_os_ntohs(fwcfg->num_fcxp_reqs);
  325. fwcfg->num_uf_bufs = bfa_os_ntohs(fwcfg->num_uf_bufs);
  326. fwcfg->num_rports = bfa_os_ntohs(fwcfg->num_rports);
  327. cfginfo->intr_attr.coalesce = cfgrsp->intr_attr.coalesce;
  328. cfginfo->intr_attr.delay = bfa_os_ntohs(cfgrsp->intr_attr.delay);
  329. cfginfo->intr_attr.latency = bfa_os_ntohs(cfgrsp->intr_attr.latency);
  330. iocfc->cfgdone = BFA_TRUE;
  331. /**
  332. * Configuration is complete - initialize/start submodules
  333. */
  334. if (iocfc->action == BFA_IOCFC_ACT_INIT)
  335. bfa_cb_queue(bfa, &iocfc->init_hcb_qe, bfa_iocfc_init_cb, bfa);
  336. else
  337. bfa_iocfc_start_submod(bfa);
  338. }
  339. static void
  340. bfa_iocfc_stats_clear(void *bfa_arg)
  341. {
  342. struct bfa_s *bfa = bfa_arg;
  343. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  344. struct bfi_iocfc_stats_req_s stats_req;
  345. bfa_timer_start(bfa, &iocfc->stats_timer,
  346. bfa_iocfc_stats_clr_timeout, bfa,
  347. BFA_IOCFC_TOV);
  348. bfi_h2i_set(stats_req.mh, BFI_MC_IOCFC, BFI_IOCFC_H2I_CLEAR_STATS_REQ,
  349. bfa_lpuid(bfa));
  350. bfa_ioc_mbox_send(&bfa->ioc, &stats_req,
  351. sizeof(struct bfi_iocfc_stats_req_s));
  352. }
  353. static void
  354. bfa_iocfc_stats_swap(struct bfa_fw_stats_s *d, struct bfa_fw_stats_s *s)
  355. {
  356. u32 *dip = (u32 *) d;
  357. u32 *sip = (u32 *) s;
  358. int i;
  359. for (i = 0; i < (sizeof(struct bfa_fw_stats_s) / sizeof(u32)); i++)
  360. dip[i] = bfa_os_ntohl(sip[i]);
  361. }
  362. static void
  363. bfa_iocfc_stats_clr_cb(void *bfa_arg, bfa_boolean_t complete)
  364. {
  365. struct bfa_s *bfa = bfa_arg;
  366. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  367. if (complete) {
  368. bfa_ioc_clr_stats(&bfa->ioc);
  369. iocfc->stats_cbfn(iocfc->stats_cbarg, iocfc->stats_status);
  370. } else {
  371. iocfc->stats_busy = BFA_FALSE;
  372. iocfc->stats_status = BFA_STATUS_OK;
  373. }
  374. }
  375. static void
  376. bfa_iocfc_stats_clr_timeout(void *bfa_arg)
  377. {
  378. struct bfa_s *bfa = bfa_arg;
  379. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  380. bfa_trc(bfa, 0);
  381. iocfc->stats_status = BFA_STATUS_ETIMER;
  382. bfa_cb_queue(bfa, &iocfc->stats_hcb_qe, bfa_iocfc_stats_clr_cb, bfa);
  383. }
  384. static void
  385. bfa_iocfc_stats_cb(void *bfa_arg, bfa_boolean_t complete)
  386. {
  387. struct bfa_s *bfa = bfa_arg;
  388. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  389. if (complete) {
  390. if (iocfc->stats_status == BFA_STATUS_OK) {
  391. bfa_os_memset(iocfc->stats_ret, 0,
  392. sizeof(*iocfc->stats_ret));
  393. bfa_iocfc_stats_swap(&iocfc->stats_ret->fw_stats,
  394. iocfc->fw_stats);
  395. }
  396. iocfc->stats_cbfn(iocfc->stats_cbarg, iocfc->stats_status);
  397. } else {
  398. iocfc->stats_busy = BFA_FALSE;
  399. iocfc->stats_status = BFA_STATUS_OK;
  400. }
  401. }
  402. static void
  403. bfa_iocfc_stats_timeout(void *bfa_arg)
  404. {
  405. struct bfa_s *bfa = bfa_arg;
  406. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  407. bfa_trc(bfa, 0);
  408. iocfc->stats_status = BFA_STATUS_ETIMER;
  409. bfa_cb_queue(bfa, &iocfc->stats_hcb_qe, bfa_iocfc_stats_cb, bfa);
  410. }
  411. static void
  412. bfa_iocfc_stats_query(struct bfa_s *bfa)
  413. {
  414. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  415. struct bfi_iocfc_stats_req_s stats_req;
  416. bfa_timer_start(bfa, &iocfc->stats_timer,
  417. bfa_iocfc_stats_timeout, bfa, BFA_IOCFC_TOV);
  418. bfi_h2i_set(stats_req.mh, BFI_MC_IOCFC, BFI_IOCFC_H2I_GET_STATS_REQ,
  419. bfa_lpuid(bfa));
  420. bfa_ioc_mbox_send(&bfa->ioc, &stats_req,
  421. sizeof(struct bfi_iocfc_stats_req_s));
  422. }
  423. void
  424. bfa_iocfc_reset_queues(struct bfa_s *bfa)
  425. {
  426. int q;
  427. for (q = 0; q < BFI_IOC_MAX_CQS; q++) {
  428. bfa_reqq_ci(bfa, q) = 0;
  429. bfa_reqq_pi(bfa, q) = 0;
  430. bfa_rspq_ci(bfa, q) = 0;
  431. bfa_rspq_pi(bfa, q) = 0;
  432. }
  433. }
  434. /**
  435. * IOC enable request is complete
  436. */
  437. static void
  438. bfa_iocfc_enable_cbfn(void *bfa_arg, enum bfa_status status)
  439. {
  440. struct bfa_s *bfa = bfa_arg;
  441. if (status != BFA_STATUS_OK) {
  442. bfa_isr_disable(bfa);
  443. if (bfa->iocfc.action == BFA_IOCFC_ACT_INIT)
  444. bfa_cb_queue(bfa, &bfa->iocfc.init_hcb_qe,
  445. bfa_iocfc_init_cb, bfa);
  446. return;
  447. }
  448. bfa_iocfc_initdone_submod(bfa);
  449. bfa_iocfc_send_cfg(bfa);
  450. }
  451. /**
  452. * IOC disable request is complete
  453. */
  454. static void
  455. bfa_iocfc_disable_cbfn(void *bfa_arg)
  456. {
  457. struct bfa_s *bfa = bfa_arg;
  458. bfa_isr_disable(bfa);
  459. bfa_iocfc_disable_submod(bfa);
  460. if (bfa->iocfc.action == BFA_IOCFC_ACT_STOP)
  461. bfa_cb_queue(bfa, &bfa->iocfc.stop_hcb_qe, bfa_iocfc_stop_cb,
  462. bfa);
  463. else {
  464. bfa_assert(bfa->iocfc.action == BFA_IOCFC_ACT_DISABLE);
  465. bfa_cb_queue(bfa, &bfa->iocfc.dis_hcb_qe, bfa_iocfc_disable_cb,
  466. bfa);
  467. }
  468. }
  469. /**
  470. * Notify sub-modules of hardware failure.
  471. */
  472. static void
  473. bfa_iocfc_hbfail_cbfn(void *bfa_arg)
  474. {
  475. struct bfa_s *bfa = bfa_arg;
  476. bfa->rme_process = BFA_FALSE;
  477. bfa_isr_disable(bfa);
  478. bfa_iocfc_disable_submod(bfa);
  479. if (bfa->iocfc.action == BFA_IOCFC_ACT_INIT)
  480. bfa_cb_queue(bfa, &bfa->iocfc.init_hcb_qe, bfa_iocfc_init_cb,
  481. bfa);
  482. }
  483. /**
  484. * Actions on chip-reset completion.
  485. */
  486. static void
  487. bfa_iocfc_reset_cbfn(void *bfa_arg)
  488. {
  489. struct bfa_s *bfa = bfa_arg;
  490. bfa_iocfc_reset_queues(bfa);
  491. bfa_isr_enable(bfa);
  492. }
  493. /**
  494. * bfa_ioc_public
  495. */
  496. /**
  497. * Query IOC memory requirement information.
  498. */
  499. void
  500. bfa_iocfc_meminfo(struct bfa_iocfc_cfg_s *cfg, u32 *km_len,
  501. u32 *dm_len)
  502. {
  503. /* dma memory for IOC */
  504. *dm_len += bfa_ioc_meminfo();
  505. bfa_iocfc_fw_cfg_sz(cfg, dm_len);
  506. bfa_iocfc_cqs_sz(cfg, dm_len);
  507. *km_len += bfa_ioc_debug_trcsz(bfa_auto_recover);
  508. }
  509. /**
  510. * Query IOC memory requirement information.
  511. */
  512. void
  513. bfa_iocfc_attach(struct bfa_s *bfa, void *bfad, struct bfa_iocfc_cfg_s *cfg,
  514. struct bfa_meminfo_s *meminfo, struct bfa_pcidev_s *pcidev)
  515. {
  516. int i;
  517. bfa_iocfc_cbfn.enable_cbfn = bfa_iocfc_enable_cbfn;
  518. bfa_iocfc_cbfn.disable_cbfn = bfa_iocfc_disable_cbfn;
  519. bfa_iocfc_cbfn.hbfail_cbfn = bfa_iocfc_hbfail_cbfn;
  520. bfa_iocfc_cbfn.reset_cbfn = bfa_iocfc_reset_cbfn;
  521. bfa_ioc_attach(&bfa->ioc, bfa, &bfa_iocfc_cbfn, &bfa->timer_mod,
  522. bfa->trcmod, bfa->aen, bfa->logm);
  523. bfa_ioc_pci_init(&bfa->ioc, pcidev, BFI_MC_IOCFC);
  524. bfa_ioc_mbox_register(&bfa->ioc, bfa_mbox_isrs);
  525. /**
  526. * Choose FC (ssid: 0x1C) v/s FCoE (ssid: 0x14) mode.
  527. */
  528. if (0)
  529. bfa_ioc_set_fcmode(&bfa->ioc);
  530. bfa_iocfc_init_mem(bfa, bfad, cfg, pcidev);
  531. bfa_iocfc_mem_claim(bfa, cfg, meminfo);
  532. bfa_timer_init(&bfa->timer_mod);
  533. INIT_LIST_HEAD(&bfa->comp_q);
  534. for (i = 0; i < BFI_IOC_MAX_CQS; i++)
  535. INIT_LIST_HEAD(&bfa->reqq_waitq[i]);
  536. }
  537. /**
  538. * Query IOC memory requirement information.
  539. */
  540. void
  541. bfa_iocfc_detach(struct bfa_s *bfa)
  542. {
  543. bfa_ioc_detach(&bfa->ioc);
  544. }
  545. /**
  546. * Query IOC memory requirement information.
  547. */
  548. void
  549. bfa_iocfc_init(struct bfa_s *bfa)
  550. {
  551. bfa->iocfc.action = BFA_IOCFC_ACT_INIT;
  552. bfa_ioc_enable(&bfa->ioc);
  553. bfa_msix_install(bfa);
  554. }
  555. /**
  556. * IOC start called from bfa_start(). Called to start IOC operations
  557. * at driver instantiation for this instance.
  558. */
  559. void
  560. bfa_iocfc_start(struct bfa_s *bfa)
  561. {
  562. if (bfa->iocfc.cfgdone)
  563. bfa_iocfc_start_submod(bfa);
  564. }
  565. /**
  566. * IOC stop called from bfa_stop(). Called only when driver is unloaded
  567. * for this instance.
  568. */
  569. void
  570. bfa_iocfc_stop(struct bfa_s *bfa)
  571. {
  572. bfa->iocfc.action = BFA_IOCFC_ACT_STOP;
  573. bfa->rme_process = BFA_FALSE;
  574. bfa_ioc_disable(&bfa->ioc);
  575. }
  576. void
  577. bfa_iocfc_isr(void *bfaarg, struct bfi_mbmsg_s *m)
  578. {
  579. struct bfa_s *bfa = bfaarg;
  580. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  581. union bfi_iocfc_i2h_msg_u *msg;
  582. msg = (union bfi_iocfc_i2h_msg_u *) m;
  583. bfa_trc(bfa, msg->mh.msg_id);
  584. switch (msg->mh.msg_id) {
  585. case BFI_IOCFC_I2H_CFG_REPLY:
  586. iocfc->cfg_reply = &msg->cfg_reply;
  587. bfa_iocfc_cfgrsp(bfa);
  588. break;
  589. case BFI_IOCFC_I2H_GET_STATS_RSP:
  590. if (iocfc->stats_busy == BFA_FALSE
  591. || iocfc->stats_status == BFA_STATUS_ETIMER)
  592. break;
  593. bfa_timer_stop(&iocfc->stats_timer);
  594. iocfc->stats_status = BFA_STATUS_OK;
  595. bfa_cb_queue(bfa, &iocfc->stats_hcb_qe, bfa_iocfc_stats_cb,
  596. bfa);
  597. break;
  598. case BFI_IOCFC_I2H_CLEAR_STATS_RSP:
  599. /*
  600. * check for timer pop before processing the rsp
  601. */
  602. if (iocfc->stats_busy == BFA_FALSE
  603. || iocfc->stats_status == BFA_STATUS_ETIMER)
  604. break;
  605. bfa_timer_stop(&iocfc->stats_timer);
  606. iocfc->stats_status = BFA_STATUS_OK;
  607. bfa_cb_queue(bfa, &iocfc->stats_hcb_qe,
  608. bfa_iocfc_stats_clr_cb, bfa);
  609. break;
  610. case BFI_IOCFC_I2H_UPDATEQ_RSP:
  611. iocfc->updateq_cbfn(iocfc->updateq_cbarg, BFA_STATUS_OK);
  612. break;
  613. default:
  614. bfa_assert(0);
  615. }
  616. }
  617. #ifndef BFA_BIOS_BUILD
  618. void
  619. bfa_adapter_get_attr(struct bfa_s *bfa, struct bfa_adapter_attr_s *ad_attr)
  620. {
  621. bfa_ioc_get_adapter_attr(&bfa->ioc, ad_attr);
  622. }
  623. u64
  624. bfa_adapter_get_id(struct bfa_s *bfa)
  625. {
  626. return bfa_ioc_get_adid(&bfa->ioc);
  627. }
  628. void
  629. bfa_iocfc_get_attr(struct bfa_s *bfa, struct bfa_iocfc_attr_s *attr)
  630. {
  631. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  632. attr->intr_attr = iocfc->cfginfo->intr_attr;
  633. attr->config = iocfc->cfg;
  634. }
  635. bfa_status_t
  636. bfa_iocfc_israttr_set(struct bfa_s *bfa, struct bfa_iocfc_intr_attr_s *attr)
  637. {
  638. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  639. struct bfi_iocfc_set_intr_req_s *m;
  640. iocfc->cfginfo->intr_attr = *attr;
  641. if (!bfa_iocfc_is_operational(bfa))
  642. return BFA_STATUS_OK;
  643. m = bfa_reqq_next(bfa, BFA_REQQ_IOC);
  644. if (!m)
  645. return BFA_STATUS_DEVBUSY;
  646. bfi_h2i_set(m->mh, BFI_MC_IOCFC, BFI_IOCFC_H2I_SET_INTR_REQ,
  647. bfa_lpuid(bfa));
  648. m->coalesce = attr->coalesce;
  649. m->delay = bfa_os_htons(attr->delay);
  650. m->latency = bfa_os_htons(attr->latency);
  651. bfa_trc(bfa, attr->delay);
  652. bfa_trc(bfa, attr->latency);
  653. bfa_reqq_produce(bfa, BFA_REQQ_IOC);
  654. return BFA_STATUS_OK;
  655. }
  656. void
  657. bfa_iocfc_set_snsbase(struct bfa_s *bfa, u64 snsbase_pa)
  658. {
  659. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  660. iocfc->cfginfo->sense_buf_len = (BFI_IOIM_SNSLEN - 1);
  661. bfa_dma_be_addr_set(iocfc->cfginfo->ioim_snsbase, snsbase_pa);
  662. }
  663. bfa_status_t
  664. bfa_iocfc_get_stats(struct bfa_s *bfa, struct bfa_iocfc_stats_s *stats,
  665. bfa_cb_ioc_t cbfn, void *cbarg)
  666. {
  667. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  668. if (iocfc->stats_busy) {
  669. bfa_trc(bfa, iocfc->stats_busy);
  670. return BFA_STATUS_DEVBUSY;
  671. }
  672. iocfc->stats_busy = BFA_TRUE;
  673. iocfc->stats_ret = stats;
  674. iocfc->stats_cbfn = cbfn;
  675. iocfc->stats_cbarg = cbarg;
  676. bfa_iocfc_stats_query(bfa);
  677. return BFA_STATUS_OK;
  678. }
  679. bfa_status_t
  680. bfa_iocfc_clear_stats(struct bfa_s *bfa, bfa_cb_ioc_t cbfn, void *cbarg)
  681. {
  682. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  683. if (iocfc->stats_busy) {
  684. bfa_trc(bfa, iocfc->stats_busy);
  685. return BFA_STATUS_DEVBUSY;
  686. }
  687. iocfc->stats_busy = BFA_TRUE;
  688. iocfc->stats_cbfn = cbfn;
  689. iocfc->stats_cbarg = cbarg;
  690. bfa_iocfc_stats_clear(bfa);
  691. return BFA_STATUS_OK;
  692. }
  693. /**
  694. * Enable IOC after it is disabled.
  695. */
  696. void
  697. bfa_iocfc_enable(struct bfa_s *bfa)
  698. {
  699. bfa_plog_str(bfa->plog, BFA_PL_MID_HAL, BFA_PL_EID_MISC, 0,
  700. "IOC Enable");
  701. bfa_ioc_enable(&bfa->ioc);
  702. }
  703. void
  704. bfa_iocfc_disable(struct bfa_s *bfa)
  705. {
  706. bfa_plog_str(bfa->plog, BFA_PL_MID_HAL, BFA_PL_EID_MISC, 0,
  707. "IOC Disable");
  708. bfa->iocfc.action = BFA_IOCFC_ACT_DISABLE;
  709. bfa->rme_process = BFA_FALSE;
  710. bfa_ioc_disable(&bfa->ioc);
  711. }
  712. bfa_boolean_t
  713. bfa_iocfc_is_operational(struct bfa_s *bfa)
  714. {
  715. return bfa_ioc_is_operational(&bfa->ioc) && bfa->iocfc.cfgdone;
  716. }
  717. /**
  718. * Return boot target port wwns -- read from boot information in flash.
  719. */
  720. void
  721. bfa_iocfc_get_bootwwns(struct bfa_s *bfa, u8 *nwwns, wwn_t **wwns)
  722. {
  723. struct bfa_iocfc_s *iocfc = &bfa->iocfc;
  724. struct bfi_iocfc_cfgrsp_s *cfgrsp = iocfc->cfgrsp;
  725. *nwwns = cfgrsp->bootwwns.nwwns;
  726. *wwns = cfgrsp->bootwwns.wwn;
  727. }
  728. #endif