bfa.h 13 KB

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  1. /*
  2. * Copyright (c) 2005-2010 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. #ifndef __BFA_H__
  18. #define __BFA_H__
  19. #include "bfad_drv.h"
  20. #include "bfa_cs.h"
  21. #include "bfa_plog.h"
  22. #include "bfa_defs_svc.h"
  23. #include "bfi.h"
  24. #include "bfa_ioc.h"
  25. struct bfa_s;
  26. typedef void (*bfa_isr_func_t) (struct bfa_s *bfa, struct bfi_msg_s *m);
  27. typedef void (*bfa_cb_cbfn_t) (void *cbarg, bfa_boolean_t complete);
  28. /*
  29. * Interrupt message handlers
  30. */
  31. void bfa_isr_unhandled(struct bfa_s *bfa, struct bfi_msg_s *m);
  32. /*
  33. * Request and response queue related defines
  34. */
  35. #define BFA_REQQ_NELEMS_MIN (4)
  36. #define BFA_RSPQ_NELEMS_MIN (4)
  37. #define bfa_reqq_pi(__bfa, __reqq) ((__bfa)->iocfc.req_cq_pi[__reqq])
  38. #define bfa_reqq_ci(__bfa, __reqq) \
  39. (*(u32 *)((__bfa)->iocfc.req_cq_shadow_ci[__reqq].kva))
  40. #define bfa_reqq_full(__bfa, __reqq) \
  41. (((bfa_reqq_pi(__bfa, __reqq) + 1) & \
  42. ((__bfa)->iocfc.cfg.drvcfg.num_reqq_elems - 1)) == \
  43. bfa_reqq_ci(__bfa, __reqq))
  44. #define bfa_reqq_next(__bfa, __reqq) \
  45. (bfa_reqq_full(__bfa, __reqq) ? NULL : \
  46. ((void *)((struct bfi_msg_s *)((__bfa)->iocfc.req_cq_ba[__reqq].kva) \
  47. + bfa_reqq_pi((__bfa), (__reqq)))))
  48. #define bfa_reqq_produce(__bfa, __reqq) do { \
  49. (__bfa)->iocfc.req_cq_pi[__reqq]++; \
  50. (__bfa)->iocfc.req_cq_pi[__reqq] &= \
  51. ((__bfa)->iocfc.cfg.drvcfg.num_reqq_elems - 1); \
  52. writel((__bfa)->iocfc.req_cq_pi[__reqq], \
  53. (__bfa)->iocfc.bfa_regs.cpe_q_pi[__reqq]); \
  54. mmiowb(); \
  55. } while (0)
  56. #define bfa_rspq_pi(__bfa, __rspq) \
  57. (*(u32 *)((__bfa)->iocfc.rsp_cq_shadow_pi[__rspq].kva))
  58. #define bfa_rspq_ci(__bfa, __rspq) ((__bfa)->iocfc.rsp_cq_ci[__rspq])
  59. #define bfa_rspq_elem(__bfa, __rspq, __ci) \
  60. (&((struct bfi_msg_s *)((__bfa)->iocfc.rsp_cq_ba[__rspq].kva))[__ci])
  61. #define CQ_INCR(__index, __size) do { \
  62. (__index)++; \
  63. (__index) &= ((__size) - 1); \
  64. } while (0)
  65. /*
  66. * Queue element to wait for room in request queue. FIFO order is
  67. * maintained when fullfilling requests.
  68. */
  69. struct bfa_reqq_wait_s {
  70. struct list_head qe;
  71. void (*qresume) (void *cbarg);
  72. void *cbarg;
  73. };
  74. /*
  75. * Circular queue usage assignments
  76. */
  77. enum {
  78. BFA_REQQ_IOC = 0, /* all low-priority IOC msgs */
  79. BFA_REQQ_FCXP = 0, /* all FCXP messages */
  80. BFA_REQQ_LPS = 0, /* all lport service msgs */
  81. BFA_REQQ_PORT = 0, /* all port messages */
  82. BFA_REQQ_FLASH = 0, /* for flash module */
  83. BFA_REQQ_DIAG = 0, /* for diag module */
  84. BFA_REQQ_RPORT = 0, /* all port messages */
  85. BFA_REQQ_SBOOT = 0, /* all san boot messages */
  86. BFA_REQQ_QOS_LO = 1, /* all low priority IO */
  87. BFA_REQQ_QOS_MD = 2, /* all medium priority IO */
  88. BFA_REQQ_QOS_HI = 3, /* all high priority IO */
  89. };
  90. static inline void
  91. bfa_reqq_winit(struct bfa_reqq_wait_s *wqe, void (*qresume) (void *cbarg),
  92. void *cbarg)
  93. {
  94. wqe->qresume = qresume;
  95. wqe->cbarg = cbarg;
  96. }
  97. #define bfa_reqq(__bfa, __reqq) (&(__bfa)->reqq_waitq[__reqq])
  98. /*
  99. * static inline void
  100. * bfa_reqq_wait(struct bfa_s *bfa, int reqq, struct bfa_reqq_wait_s *wqe)
  101. */
  102. #define bfa_reqq_wait(__bfa, __reqq, __wqe) do { \
  103. \
  104. struct list_head *waitq = bfa_reqq(__bfa, __reqq); \
  105. \
  106. WARN_ON(((__reqq) >= BFI_IOC_MAX_CQS)); \
  107. WARN_ON(!((__wqe)->qresume && (__wqe)->cbarg)); \
  108. \
  109. list_add_tail(&(__wqe)->qe, waitq); \
  110. } while (0)
  111. #define bfa_reqq_wcancel(__wqe) list_del(&(__wqe)->qe)
  112. /*
  113. * Generic BFA callback element.
  114. */
  115. struct bfa_cb_qe_s {
  116. struct list_head qe;
  117. bfa_cb_cbfn_t cbfn;
  118. bfa_boolean_t once;
  119. u32 rsvd;
  120. void *cbarg;
  121. };
  122. #define bfa_cb_queue(__bfa, __hcb_qe, __cbfn, __cbarg) do { \
  123. (__hcb_qe)->cbfn = (__cbfn); \
  124. (__hcb_qe)->cbarg = (__cbarg); \
  125. list_add_tail(&(__hcb_qe)->qe, &(__bfa)->comp_q); \
  126. } while (0)
  127. #define bfa_cb_dequeue(__hcb_qe) list_del(&(__hcb_qe)->qe)
  128. #define bfa_cb_queue_once(__bfa, __hcb_qe, __cbfn, __cbarg) do { \
  129. (__hcb_qe)->cbfn = (__cbfn); \
  130. (__hcb_qe)->cbarg = (__cbarg); \
  131. if (!(__hcb_qe)->once) { \
  132. list_add_tail(&(__hcb_qe)->qe, &(__bfa)->comp_q); \
  133. (__hcb_qe)->once = BFA_TRUE; \
  134. } \
  135. } while (0)
  136. #define bfa_cb_queue_done(__hcb_qe) do { \
  137. (__hcb_qe)->once = BFA_FALSE; \
  138. } while (0)
  139. /*
  140. * PCI devices supported by the current BFA
  141. */
  142. struct bfa_pciid_s {
  143. u16 device_id;
  144. u16 vendor_id;
  145. };
  146. extern char bfa_version[];
  147. /*
  148. * BFA memory resources
  149. */
  150. enum bfa_mem_type {
  151. BFA_MEM_TYPE_KVA = 1, /* Kernel Virtual Memory *(non-dma-able) */
  152. BFA_MEM_TYPE_DMA = 2, /* DMA-able memory */
  153. BFA_MEM_TYPE_MAX = BFA_MEM_TYPE_DMA,
  154. };
  155. struct bfa_mem_elem_s {
  156. enum bfa_mem_type mem_type; /* see enum bfa_mem_type */
  157. u32 mem_len; /* Total Length in Bytes */
  158. u8 *kva; /* kernel virtual address */
  159. u64 dma; /* dma address if DMA memory */
  160. u8 *kva_curp; /* kva allocation cursor */
  161. u64 dma_curp; /* dma allocation cursor */
  162. };
  163. struct bfa_meminfo_s {
  164. struct bfa_mem_elem_s meminfo[BFA_MEM_TYPE_MAX];
  165. };
  166. #define bfa_meminfo_kva(_m) \
  167. ((_m)->meminfo[BFA_MEM_TYPE_KVA - 1].kva_curp)
  168. #define bfa_meminfo_dma_virt(_m) \
  169. ((_m)->meminfo[BFA_MEM_TYPE_DMA - 1].kva_curp)
  170. #define bfa_meminfo_dma_phys(_m) \
  171. ((_m)->meminfo[BFA_MEM_TYPE_DMA - 1].dma_curp)
  172. struct bfa_iocfc_regs_s {
  173. void __iomem *intr_status;
  174. void __iomem *intr_mask;
  175. void __iomem *cpe_q_pi[BFI_IOC_MAX_CQS];
  176. void __iomem *cpe_q_ci[BFI_IOC_MAX_CQS];
  177. void __iomem *cpe_q_depth[BFI_IOC_MAX_CQS];
  178. void __iomem *cpe_q_ctrl[BFI_IOC_MAX_CQS];
  179. void __iomem *rme_q_ci[BFI_IOC_MAX_CQS];
  180. void __iomem *rme_q_pi[BFI_IOC_MAX_CQS];
  181. void __iomem *rme_q_depth[BFI_IOC_MAX_CQS];
  182. void __iomem *rme_q_ctrl[BFI_IOC_MAX_CQS];
  183. };
  184. /*
  185. * MSIX vector handlers
  186. */
  187. #define BFA_MSIX_MAX_VECTORS 22
  188. typedef void (*bfa_msix_handler_t)(struct bfa_s *bfa, int vec);
  189. struct bfa_msix_s {
  190. int nvecs;
  191. bfa_msix_handler_t handler[BFA_MSIX_MAX_VECTORS];
  192. };
  193. /*
  194. * Chip specific interfaces
  195. */
  196. struct bfa_hwif_s {
  197. void (*hw_reginit)(struct bfa_s *bfa);
  198. void (*hw_reqq_ack)(struct bfa_s *bfa, int reqq);
  199. void (*hw_rspq_ack)(struct bfa_s *bfa, int rspq);
  200. void (*hw_msix_init)(struct bfa_s *bfa, int nvecs);
  201. void (*hw_msix_install)(struct bfa_s *bfa);
  202. void (*hw_msix_uninstall)(struct bfa_s *bfa);
  203. void (*hw_isr_mode_set)(struct bfa_s *bfa, bfa_boolean_t msix);
  204. void (*hw_msix_getvecs)(struct bfa_s *bfa, u32 *vecmap,
  205. u32 *nvecs, u32 *maxvec);
  206. void (*hw_msix_get_rme_range) (struct bfa_s *bfa, u32 *start,
  207. u32 *end);
  208. };
  209. typedef void (*bfa_cb_iocfc_t) (void *cbarg, enum bfa_status status);
  210. struct bfa_iocfc_s {
  211. struct bfa_s *bfa;
  212. struct bfa_iocfc_cfg_s cfg;
  213. int action;
  214. u32 req_cq_pi[BFI_IOC_MAX_CQS];
  215. u32 rsp_cq_ci[BFI_IOC_MAX_CQS];
  216. struct bfa_cb_qe_s init_hcb_qe;
  217. struct bfa_cb_qe_s stop_hcb_qe;
  218. struct bfa_cb_qe_s dis_hcb_qe;
  219. struct bfa_cb_qe_s stats_hcb_qe;
  220. bfa_boolean_t cfgdone;
  221. struct bfa_dma_s cfg_info;
  222. struct bfi_iocfc_cfg_s *cfginfo;
  223. struct bfa_dma_s cfgrsp_dma;
  224. struct bfi_iocfc_cfgrsp_s *cfgrsp;
  225. struct bfi_iocfc_cfg_reply_s *cfg_reply;
  226. struct bfa_dma_s req_cq_ba[BFI_IOC_MAX_CQS];
  227. struct bfa_dma_s req_cq_shadow_ci[BFI_IOC_MAX_CQS];
  228. struct bfa_dma_s rsp_cq_ba[BFI_IOC_MAX_CQS];
  229. struct bfa_dma_s rsp_cq_shadow_pi[BFI_IOC_MAX_CQS];
  230. struct bfa_iocfc_regs_s bfa_regs; /* BFA device registers */
  231. struct bfa_hwif_s hwif;
  232. bfa_cb_iocfc_t updateq_cbfn; /* bios callback function */
  233. void *updateq_cbarg; /* bios callback arg */
  234. u32 intr_mask;
  235. };
  236. #define bfa_lpuid(__bfa) \
  237. bfa_ioc_portid(&(__bfa)->ioc)
  238. #define bfa_msix_init(__bfa, __nvecs) \
  239. ((__bfa)->iocfc.hwif.hw_msix_init(__bfa, __nvecs))
  240. #define bfa_msix_install(__bfa) \
  241. ((__bfa)->iocfc.hwif.hw_msix_install(__bfa))
  242. #define bfa_msix_uninstall(__bfa) \
  243. ((__bfa)->iocfc.hwif.hw_msix_uninstall(__bfa))
  244. #define bfa_isr_mode_set(__bfa, __msix) \
  245. ((__bfa)->iocfc.hwif.hw_isr_mode_set(__bfa, __msix))
  246. #define bfa_msix_getvecs(__bfa, __vecmap, __nvecs, __maxvec) \
  247. ((__bfa)->iocfc.hwif.hw_msix_getvecs(__bfa, __vecmap, \
  248. __nvecs, __maxvec))
  249. #define bfa_msix_get_rme_range(__bfa, __start, __end) \
  250. ((__bfa)->iocfc.hwif.hw_msix_get_rme_range(__bfa, __start, __end))
  251. #define bfa_msix(__bfa, __vec) \
  252. ((__bfa)->msix.handler[__vec](__bfa, __vec))
  253. /*
  254. * FC specific IOC functions.
  255. */
  256. void bfa_iocfc_meminfo(struct bfa_iocfc_cfg_s *cfg, u32 *km_len,
  257. u32 *dm_len);
  258. void bfa_iocfc_attach(struct bfa_s *bfa, void *bfad,
  259. struct bfa_iocfc_cfg_s *cfg,
  260. struct bfa_meminfo_s *meminfo,
  261. struct bfa_pcidev_s *pcidev);
  262. void bfa_iocfc_init(struct bfa_s *bfa);
  263. void bfa_iocfc_start(struct bfa_s *bfa);
  264. void bfa_iocfc_stop(struct bfa_s *bfa);
  265. void bfa_iocfc_isr(void *bfa, struct bfi_mbmsg_s *msg);
  266. void bfa_iocfc_set_snsbase(struct bfa_s *bfa, u64 snsbase_pa);
  267. bfa_boolean_t bfa_iocfc_is_operational(struct bfa_s *bfa);
  268. void bfa_iocfc_reset_queues(struct bfa_s *bfa);
  269. void bfa_msix_all(struct bfa_s *bfa, int vec);
  270. void bfa_msix_reqq(struct bfa_s *bfa, int vec);
  271. void bfa_msix_rspq(struct bfa_s *bfa, int vec);
  272. void bfa_msix_lpu_err(struct bfa_s *bfa, int vec);
  273. void bfa_hwcb_reginit(struct bfa_s *bfa);
  274. void bfa_hwcb_reqq_ack(struct bfa_s *bfa, int rspq);
  275. void bfa_hwcb_rspq_ack(struct bfa_s *bfa, int rspq);
  276. void bfa_hwcb_msix_init(struct bfa_s *bfa, int nvecs);
  277. void bfa_hwcb_msix_install(struct bfa_s *bfa);
  278. void bfa_hwcb_msix_uninstall(struct bfa_s *bfa);
  279. void bfa_hwcb_isr_mode_set(struct bfa_s *bfa, bfa_boolean_t msix);
  280. void bfa_hwcb_msix_getvecs(struct bfa_s *bfa, u32 *vecmap, u32 *nvecs,
  281. u32 *maxvec);
  282. void bfa_hwcb_msix_get_rme_range(struct bfa_s *bfa, u32 *start,
  283. u32 *end);
  284. void bfa_hwct_reginit(struct bfa_s *bfa);
  285. void bfa_hwct_reqq_ack(struct bfa_s *bfa, int rspq);
  286. void bfa_hwct_rspq_ack(struct bfa_s *bfa, int rspq);
  287. void bfa_hwct_msix_init(struct bfa_s *bfa, int nvecs);
  288. void bfa_hwct_msix_install(struct bfa_s *bfa);
  289. void bfa_hwct_msix_uninstall(struct bfa_s *bfa);
  290. void bfa_hwct_isr_mode_set(struct bfa_s *bfa, bfa_boolean_t msix);
  291. void bfa_hwct_msix_getvecs(struct bfa_s *bfa, u32 *vecmap, u32 *nvecs,
  292. u32 *maxvec);
  293. void bfa_hwct_msix_get_rme_range(struct bfa_s *bfa, u32 *start,
  294. u32 *end);
  295. void bfa_iocfc_get_bootwwns(struct bfa_s *bfa, u8 *nwwns, wwn_t *wwns);
  296. wwn_t bfa_iocfc_get_pwwn(struct bfa_s *bfa);
  297. wwn_t bfa_iocfc_get_nwwn(struct bfa_s *bfa);
  298. int bfa_iocfc_get_pbc_vports(struct bfa_s *bfa,
  299. struct bfi_pbc_vport_s *pbc_vport);
  300. /*
  301. *----------------------------------------------------------------------
  302. * BFA public interfaces
  303. *----------------------------------------------------------------------
  304. */
  305. #define bfa_stats(_mod, _stats) ((_mod)->stats._stats++)
  306. #define bfa_ioc_get_stats(__bfa, __ioc_stats) \
  307. bfa_ioc_fetch_stats(&(__bfa)->ioc, __ioc_stats)
  308. #define bfa_ioc_clear_stats(__bfa) \
  309. bfa_ioc_clr_stats(&(__bfa)->ioc)
  310. #define bfa_get_nports(__bfa) \
  311. bfa_ioc_get_nports(&(__bfa)->ioc)
  312. #define bfa_get_adapter_manufacturer(__bfa, __manufacturer) \
  313. bfa_ioc_get_adapter_manufacturer(&(__bfa)->ioc, __manufacturer)
  314. #define bfa_get_adapter_model(__bfa, __model) \
  315. bfa_ioc_get_adapter_model(&(__bfa)->ioc, __model)
  316. #define bfa_get_adapter_serial_num(__bfa, __serial_num) \
  317. bfa_ioc_get_adapter_serial_num(&(__bfa)->ioc, __serial_num)
  318. #define bfa_get_adapter_fw_ver(__bfa, __fw_ver) \
  319. bfa_ioc_get_adapter_fw_ver(&(__bfa)->ioc, __fw_ver)
  320. #define bfa_get_adapter_optrom_ver(__bfa, __optrom_ver) \
  321. bfa_ioc_get_adapter_optrom_ver(&(__bfa)->ioc, __optrom_ver)
  322. #define bfa_get_pci_chip_rev(__bfa, __chip_rev) \
  323. bfa_ioc_get_pci_chip_rev(&(__bfa)->ioc, __chip_rev)
  324. #define bfa_get_ioc_state(__bfa) \
  325. bfa_ioc_get_state(&(__bfa)->ioc)
  326. #define bfa_get_type(__bfa) \
  327. bfa_ioc_get_type(&(__bfa)->ioc)
  328. #define bfa_get_mac(__bfa) \
  329. bfa_ioc_get_mac(&(__bfa)->ioc)
  330. #define bfa_get_mfg_mac(__bfa) \
  331. bfa_ioc_get_mfg_mac(&(__bfa)->ioc)
  332. #define bfa_get_fw_clock_res(__bfa) \
  333. ((__bfa)->iocfc.cfgrsp->fwcfg.fw_tick_res)
  334. void bfa_get_pciids(struct bfa_pciid_s **pciids, int *npciids);
  335. void bfa_cfg_get_default(struct bfa_iocfc_cfg_s *cfg);
  336. void bfa_cfg_get_min(struct bfa_iocfc_cfg_s *cfg);
  337. void bfa_cfg_get_meminfo(struct bfa_iocfc_cfg_s *cfg,
  338. struct bfa_meminfo_s *meminfo);
  339. void bfa_attach(struct bfa_s *bfa, void *bfad, struct bfa_iocfc_cfg_s *cfg,
  340. struct bfa_meminfo_s *meminfo,
  341. struct bfa_pcidev_s *pcidev);
  342. void bfa_detach(struct bfa_s *bfa);
  343. void bfa_cb_init(void *bfad, bfa_status_t status);
  344. void bfa_cb_updateq(void *bfad, bfa_status_t status);
  345. bfa_boolean_t bfa_intx(struct bfa_s *bfa);
  346. void bfa_isr_enable(struct bfa_s *bfa);
  347. void bfa_isr_disable(struct bfa_s *bfa);
  348. void bfa_comp_deq(struct bfa_s *bfa, struct list_head *comp_q);
  349. void bfa_comp_process(struct bfa_s *bfa, struct list_head *comp_q);
  350. void bfa_comp_free(struct bfa_s *bfa, struct list_head *comp_q);
  351. typedef void (*bfa_cb_ioc_t) (void *cbarg, enum bfa_status status);
  352. void bfa_iocfc_get_attr(struct bfa_s *bfa, struct bfa_iocfc_attr_s *attr);
  353. bfa_status_t bfa_iocfc_israttr_set(struct bfa_s *bfa,
  354. struct bfa_iocfc_intr_attr_s *attr);
  355. void bfa_iocfc_enable(struct bfa_s *bfa);
  356. void bfa_iocfc_disable(struct bfa_s *bfa);
  357. #define bfa_timer_start(_bfa, _timer, _timercb, _arg, _timeout) \
  358. bfa_timer_begin(&(_bfa)->timer_mod, _timer, _timercb, _arg, _timeout)
  359. #endif /* __BFA_H__ */