bfa_ioc.h 34 KB

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  1. /* SPDX-License-Identifier: GPL-2.0-only */
  2. /*
  3. * Copyright (c) 2005-2014 Brocade Communications Systems, Inc.
  4. * Copyright (c) 2014- QLogic Corporation.
  5. * All rights reserved
  6. * www.qlogic.com
  7. *
  8. * Linux driver for QLogic BR-series Fibre Channel Host Bus Adapter.
  9. */
  10. #ifndef __BFA_IOC_H__
  11. #define __BFA_IOC_H__
  12. #include "bfad_drv.h"
  13. #include "bfa_cs.h"
  14. #include "bfi.h"
  15. #define BFA_DBG_FWTRC_ENTS (BFI_IOC_TRC_ENTS)
  16. #define BFA_DBG_FWTRC_LEN \
  17. (BFA_DBG_FWTRC_ENTS * sizeof(struct bfa_trc_s) + \
  18. (sizeof(struct bfa_trc_mod_s) - \
  19. BFA_TRC_MAX * sizeof(struct bfa_trc_s)))
  20. /*
  21. * BFA timer declarations
  22. */
  23. typedef void (*bfa_timer_cbfn_t)(void *);
  24. /*
  25. * BFA timer data structure
  26. */
  27. struct bfa_timer_s {
  28. struct list_head qe;
  29. bfa_timer_cbfn_t timercb;
  30. void *arg;
  31. int timeout; /* in millisecs */
  32. };
  33. /*
  34. * Timer module structure
  35. */
  36. struct bfa_timer_mod_s {
  37. struct list_head timer_q;
  38. };
  39. #define BFA_TIMER_FREQ 200 /* specified in millisecs */
  40. void bfa_timer_beat(struct bfa_timer_mod_s *mod);
  41. void bfa_timer_begin(struct bfa_timer_mod_s *mod, struct bfa_timer_s *timer,
  42. bfa_timer_cbfn_t timercb, void *arg,
  43. unsigned int timeout);
  44. void bfa_timer_stop(struct bfa_timer_s *timer);
  45. /*
  46. * Generic Scatter Gather Element used by driver
  47. */
  48. struct bfa_sge_s {
  49. u32 sg_len;
  50. void *sg_addr;
  51. };
  52. #define bfa_sge_word_swap(__sge) do { \
  53. ((u32 *)(__sge))[0] = swab32(((u32 *)(__sge))[0]); \
  54. ((u32 *)(__sge))[1] = swab32(((u32 *)(__sge))[1]); \
  55. ((u32 *)(__sge))[2] = swab32(((u32 *)(__sge))[2]); \
  56. } while (0)
  57. #define bfa_swap_words(_x) ( \
  58. ((u64)(_x) << 32) | ((u64)(_x) >> 32))
  59. #ifdef __BIG_ENDIAN
  60. #define bfa_sge_to_be(_x)
  61. #define bfa_sge_to_le(_x) bfa_sge_word_swap(_x)
  62. #define bfa_sgaddr_le(_x) bfa_swap_words(_x)
  63. #else
  64. #define bfa_sge_to_be(_x) bfa_sge_word_swap(_x)
  65. #define bfa_sge_to_le(_x)
  66. #define bfa_sgaddr_le(_x) (_x)
  67. #endif
  68. /*
  69. * BFA memory resources
  70. */
  71. struct bfa_mem_dma_s {
  72. struct list_head qe; /* Queue of DMA elements */
  73. u32 mem_len; /* Total Length in Bytes */
  74. u8 *kva; /* kernel virtual address */
  75. u64 dma; /* dma address if DMA memory */
  76. u8 *kva_curp; /* kva allocation cursor */
  77. u64 dma_curp; /* dma allocation cursor */
  78. };
  79. #define bfa_mem_dma_t struct bfa_mem_dma_s
  80. struct bfa_mem_kva_s {
  81. struct list_head qe; /* Queue of KVA elements */
  82. u32 mem_len; /* Total Length in Bytes */
  83. u8 *kva; /* kernel virtual address */
  84. u8 *kva_curp; /* kva allocation cursor */
  85. };
  86. #define bfa_mem_kva_t struct bfa_mem_kva_s
  87. struct bfa_meminfo_s {
  88. struct bfa_mem_dma_s dma_info;
  89. struct bfa_mem_kva_s kva_info;
  90. };
  91. /* BFA memory segment setup helpers */
  92. static inline void bfa_mem_dma_setup(struct bfa_meminfo_s *meminfo,
  93. struct bfa_mem_dma_s *dm_ptr,
  94. size_t seg_sz)
  95. {
  96. dm_ptr->mem_len = seg_sz;
  97. if (seg_sz)
  98. list_add_tail(&dm_ptr->qe, &meminfo->dma_info.qe);
  99. }
  100. static inline void bfa_mem_kva_setup(struct bfa_meminfo_s *meminfo,
  101. struct bfa_mem_kva_s *kva_ptr,
  102. size_t seg_sz)
  103. {
  104. kva_ptr->mem_len = seg_sz;
  105. if (seg_sz)
  106. list_add_tail(&kva_ptr->qe, &meminfo->kva_info.qe);
  107. }
  108. /* BFA dma memory segments iterator */
  109. #define bfa_mem_dma_sptr(_mod, _i) (&(_mod)->dma_seg[(_i)])
  110. #define bfa_mem_dma_seg_iter(_mod, _sptr, _nr, _i) \
  111. for (_i = 0, _sptr = bfa_mem_dma_sptr(_mod, _i); _i < (_nr); \
  112. _i++, _sptr = bfa_mem_dma_sptr(_mod, _i))
  113. #define bfa_mem_kva_curp(_mod) ((_mod)->kva_seg.kva_curp)
  114. #define bfa_mem_dma_virt(_sptr) ((_sptr)->kva_curp)
  115. #define bfa_mem_dma_phys(_sptr) ((_sptr)->dma_curp)
  116. #define bfa_mem_dma_len(_sptr) ((_sptr)->mem_len)
  117. /* Get the corresponding dma buf kva for a req - from the tag */
  118. #define bfa_mem_get_dmabuf_kva(_mod, _tag, _rqsz) \
  119. (((u8 *)(_mod)->dma_seg[BFI_MEM_SEG_FROM_TAG(_tag, _rqsz)].kva_curp) +\
  120. BFI_MEM_SEG_REQ_OFFSET(_tag, _rqsz) * (_rqsz))
  121. /* Get the corresponding dma buf pa for a req - from the tag */
  122. #define bfa_mem_get_dmabuf_pa(_mod, _tag, _rqsz) \
  123. ((_mod)->dma_seg[BFI_MEM_SEG_FROM_TAG(_tag, _rqsz)].dma_curp + \
  124. BFI_MEM_SEG_REQ_OFFSET(_tag, _rqsz) * (_rqsz))
  125. /*
  126. * PCI device information required by IOC
  127. */
  128. struct bfa_pcidev_s {
  129. int pci_slot;
  130. u8 pci_func;
  131. u16 device_id;
  132. u16 ssid;
  133. void __iomem *pci_bar_kva;
  134. };
  135. /*
  136. * Structure used to remember the DMA-able memory block's KVA and Physical
  137. * Address
  138. */
  139. struct bfa_dma_s {
  140. void *kva; /* ! Kernel virtual address */
  141. u64 pa; /* ! Physical address */
  142. };
  143. #define BFA_DMA_ALIGN_SZ 256
  144. #define BFA_ROUNDUP(_l, _s) (((_l) + ((_s) - 1)) & ~((_s) - 1))
  145. /*
  146. * smem size for Crossbow and Catapult
  147. */
  148. #define BFI_SMEM_CB_SIZE 0x200000U /* ! 2MB for crossbow */
  149. #define BFI_SMEM_CT_SIZE 0x280000U /* ! 2.5MB for catapult */
  150. #define bfa_dma_be_addr_set(dma_addr, pa) \
  151. __bfa_dma_be_addr_set(&dma_addr, (u64)pa)
  152. static inline void
  153. __bfa_dma_be_addr_set(union bfi_addr_u *dma_addr, u64 pa)
  154. {
  155. dma_addr->a32.addr_lo = cpu_to_be32(pa);
  156. dma_addr->a32.addr_hi = cpu_to_be32(pa >> 32);
  157. }
  158. #define bfa_alen_set(__alen, __len, __pa) \
  159. __bfa_alen_set(__alen, __len, (u64)__pa)
  160. static inline void
  161. __bfa_alen_set(struct bfi_alen_s *alen, u32 len, u64 pa)
  162. {
  163. alen->al_len = cpu_to_be32(len);
  164. bfa_dma_be_addr_set(alen->al_addr, pa);
  165. }
  166. struct bfa_ioc_regs_s {
  167. void __iomem *hfn_mbox_cmd;
  168. void __iomem *hfn_mbox;
  169. void __iomem *lpu_mbox_cmd;
  170. void __iomem *lpu_mbox;
  171. void __iomem *lpu_read_stat;
  172. void __iomem *pss_ctl_reg;
  173. void __iomem *pss_err_status_reg;
  174. void __iomem *app_pll_fast_ctl_reg;
  175. void __iomem *app_pll_slow_ctl_reg;
  176. void __iomem *ioc_sem_reg;
  177. void __iomem *ioc_usage_sem_reg;
  178. void __iomem *ioc_init_sem_reg;
  179. void __iomem *ioc_usage_reg;
  180. void __iomem *host_page_num_fn;
  181. void __iomem *heartbeat;
  182. void __iomem *ioc_fwstate;
  183. void __iomem *alt_ioc_fwstate;
  184. void __iomem *ll_halt;
  185. void __iomem *alt_ll_halt;
  186. void __iomem *err_set;
  187. void __iomem *ioc_fail_sync;
  188. void __iomem *shirq_isr_next;
  189. void __iomem *shirq_msk_next;
  190. void __iomem *smem_page_start;
  191. u32 smem_pg0;
  192. };
  193. #define bfa_mem_read(_raddr, _off) swab32(readl(((_raddr) + (_off))))
  194. #define bfa_mem_write(_raddr, _off, _val) \
  195. writel(swab32((_val)), ((_raddr) + (_off)))
  196. /*
  197. * IOC Mailbox structures
  198. */
  199. struct bfa_mbox_cmd_s {
  200. struct list_head qe;
  201. u32 msg[BFI_IOC_MSGSZ];
  202. };
  203. /*
  204. * IOC mailbox module
  205. */
  206. typedef void (*bfa_ioc_mbox_mcfunc_t)(void *cbarg, struct bfi_mbmsg_s *m);
  207. struct bfa_ioc_mbox_mod_s {
  208. struct list_head cmd_q; /* pending mbox queue */
  209. int nmclass; /* number of handlers */
  210. struct {
  211. bfa_ioc_mbox_mcfunc_t cbfn; /* message handlers */
  212. void *cbarg;
  213. } mbhdlr[BFI_MC_MAX];
  214. };
  215. /*
  216. * IOC callback function interfaces
  217. */
  218. typedef void (*bfa_ioc_enable_cbfn_t)(void *bfa, enum bfa_status status);
  219. typedef void (*bfa_ioc_disable_cbfn_t)(void *bfa);
  220. typedef void (*bfa_ioc_hbfail_cbfn_t)(void *bfa);
  221. typedef void (*bfa_ioc_reset_cbfn_t)(void *bfa);
  222. struct bfa_ioc_cbfn_s {
  223. bfa_ioc_enable_cbfn_t enable_cbfn;
  224. bfa_ioc_disable_cbfn_t disable_cbfn;
  225. bfa_ioc_hbfail_cbfn_t hbfail_cbfn;
  226. bfa_ioc_reset_cbfn_t reset_cbfn;
  227. };
  228. /*
  229. * IOC event notification mechanism.
  230. */
  231. enum ioc_event {
  232. IOC_E_RESET = 1, /* IOC reset request */
  233. IOC_E_ENABLE = 2, /* IOC enable request */
  234. IOC_E_DISABLE = 3, /* IOC disable request */
  235. IOC_E_DETACH = 4, /* driver detach cleanup */
  236. IOC_E_ENABLED = 5, /* f/w enabled */
  237. IOC_E_FWRSP_GETATTR = 6, /* IOC get attribute response */
  238. IOC_E_DISABLED = 7, /* f/w disabled */
  239. IOC_E_PFFAILED = 8, /* failure notice by iocpf sm */
  240. IOC_E_HBFAIL = 9, /* heartbeat failure */
  241. IOC_E_HWERROR = 10, /* hardware error interrupt */
  242. IOC_E_TIMEOUT = 11, /* timeout */
  243. IOC_E_HWFAILED = 12, /* PCI mapping failure notice */
  244. };
  245. struct bfa_ioc_s;
  246. typedef void (*bfa_ioc_sm_t)(struct bfa_ioc_s *fsm, enum ioc_event);
  247. enum bfa_ioc_event_e {
  248. BFA_IOC_E_ENABLED = 1,
  249. BFA_IOC_E_DISABLED = 2,
  250. BFA_IOC_E_FAILED = 3,
  251. };
  252. typedef void (*bfa_ioc_notify_cbfn_t)(void *, enum bfa_ioc_event_e);
  253. struct bfa_ioc_notify_s {
  254. struct list_head qe;
  255. bfa_ioc_notify_cbfn_t cbfn;
  256. void *cbarg;
  257. };
  258. /*
  259. * Initialize a IOC event notification structure
  260. */
  261. #define bfa_ioc_notify_init(__notify, __cbfn, __cbarg) do { \
  262. (__notify)->cbfn = (__cbfn); \
  263. (__notify)->cbarg = (__cbarg); \
  264. } while (0)
  265. /*
  266. * IOCPF state machine events
  267. */
  268. enum iocpf_event {
  269. IOCPF_E_ENABLE = 1, /* IOCPF enable request */
  270. IOCPF_E_DISABLE = 2, /* IOCPF disable request */
  271. IOCPF_E_STOP = 3, /* stop on driver detach */
  272. IOCPF_E_FWREADY = 4, /* f/w initialization done */
  273. IOCPF_E_FWRSP_ENABLE = 5, /* enable f/w response */
  274. IOCPF_E_FWRSP_DISABLE = 6, /* disable f/w response */
  275. IOCPF_E_FAIL = 7, /* failure notice by ioc sm */
  276. IOCPF_E_INITFAIL = 8, /* init fail notice by ioc sm */
  277. IOCPF_E_GETATTRFAIL = 9, /* init fail notice by ioc sm */
  278. IOCPF_E_SEMLOCKED = 10, /* h/w semaphore is locked */
  279. IOCPF_E_TIMEOUT = 11, /* f/w response timeout */
  280. IOCPF_E_SEM_ERROR = 12, /* h/w sem mapping error */
  281. };
  282. struct bfa_iocpf_s;
  283. typedef void (*bfa_iocpf_sm_t)(struct bfa_iocpf_s *fsm, enum iocpf_event);
  284. struct bfa_iocpf_s {
  285. bfa_iocpf_sm_t fsm;
  286. struct bfa_ioc_s *ioc;
  287. bfa_boolean_t fw_mismatch_notified;
  288. bfa_boolean_t auto_recover;
  289. u32 poll_time;
  290. };
  291. struct bfa_ioc_s {
  292. bfa_ioc_sm_t fsm;
  293. struct bfa_s *bfa;
  294. struct bfa_pcidev_s pcidev;
  295. struct bfa_timer_mod_s *timer_mod;
  296. struct bfa_timer_s ioc_timer;
  297. struct bfa_timer_s sem_timer;
  298. struct bfa_timer_s hb_timer;
  299. u32 hb_count;
  300. struct list_head notify_q;
  301. void *dbg_fwsave;
  302. int dbg_fwsave_len;
  303. bfa_boolean_t dbg_fwsave_once;
  304. enum bfi_pcifn_class clscode;
  305. struct bfa_ioc_regs_s ioc_regs;
  306. struct bfa_trc_mod_s *trcmod;
  307. struct bfa_ioc_drv_stats_s stats;
  308. bfa_boolean_t fcmode;
  309. bfa_boolean_t pllinit;
  310. bfa_boolean_t stats_busy; /* outstanding stats */
  311. u8 port_id;
  312. struct bfa_dma_s attr_dma;
  313. struct bfi_ioc_attr_s *attr;
  314. struct bfa_ioc_cbfn_s *cbfn;
  315. struct bfa_ioc_mbox_mod_s mbox_mod;
  316. struct bfa_ioc_hwif_s *ioc_hwif;
  317. struct bfa_iocpf_s iocpf;
  318. enum bfi_asic_gen asic_gen;
  319. enum bfi_asic_mode asic_mode;
  320. enum bfi_port_mode port0_mode;
  321. enum bfi_port_mode port1_mode;
  322. enum bfa_mode_s port_mode;
  323. u8 ad_cap_bm; /* adapter cap bit mask */
  324. u8 port_mode_cfg; /* config port mode */
  325. int ioc_aen_seq;
  326. };
  327. struct bfa_ioc_hwif_s {
  328. bfa_status_t (*ioc_pll_init) (void __iomem *rb, enum bfi_asic_mode m);
  329. bfa_boolean_t (*ioc_firmware_lock) (struct bfa_ioc_s *ioc);
  330. void (*ioc_firmware_unlock) (struct bfa_ioc_s *ioc);
  331. void (*ioc_reg_init) (struct bfa_ioc_s *ioc);
  332. void (*ioc_map_port) (struct bfa_ioc_s *ioc);
  333. void (*ioc_isr_mode_set) (struct bfa_ioc_s *ioc,
  334. bfa_boolean_t msix);
  335. void (*ioc_notify_fail) (struct bfa_ioc_s *ioc);
  336. void (*ioc_ownership_reset) (struct bfa_ioc_s *ioc);
  337. bfa_boolean_t (*ioc_sync_start) (struct bfa_ioc_s *ioc);
  338. void (*ioc_sync_join) (struct bfa_ioc_s *ioc);
  339. void (*ioc_sync_leave) (struct bfa_ioc_s *ioc);
  340. void (*ioc_sync_ack) (struct bfa_ioc_s *ioc);
  341. bfa_boolean_t (*ioc_sync_complete) (struct bfa_ioc_s *ioc);
  342. bfa_boolean_t (*ioc_lpu_read_stat) (struct bfa_ioc_s *ioc);
  343. void (*ioc_set_fwstate) (struct bfa_ioc_s *ioc,
  344. enum bfi_ioc_state fwstate);
  345. enum bfi_ioc_state (*ioc_get_fwstate) (struct bfa_ioc_s *ioc);
  346. void (*ioc_set_alt_fwstate) (struct bfa_ioc_s *ioc,
  347. enum bfi_ioc_state fwstate);
  348. enum bfi_ioc_state (*ioc_get_alt_fwstate) (struct bfa_ioc_s *ioc);
  349. };
  350. /*
  351. * Queue element to wait for room in request queue. FIFO order is
  352. * maintained when fullfilling requests.
  353. */
  354. struct bfa_reqq_wait_s {
  355. struct list_head qe;
  356. void (*qresume) (void *cbarg);
  357. void *cbarg;
  358. };
  359. typedef void (*bfa_cb_cbfn_t) (void *cbarg, bfa_boolean_t complete);
  360. typedef void (*bfa_cb_cbfn_status_t) (void *cbarg, bfa_status_t status);
  361. /*
  362. * Generic BFA callback element.
  363. */
  364. struct bfa_cb_qe_s {
  365. struct list_head qe;
  366. union {
  367. bfa_cb_cbfn_status_t cbfn_status;
  368. bfa_cb_cbfn_t cbfn;
  369. };
  370. bfa_boolean_t once;
  371. bfa_boolean_t pre_rmv; /* set for stack based qe(s) */
  372. bfa_status_t fw_status; /* to access fw status in comp proc */
  373. void *cbarg;
  374. };
  375. /*
  376. * ASIC block configurtion related
  377. */
  378. typedef void (*bfa_ablk_cbfn_t)(void *, enum bfa_status);
  379. struct bfa_ablk_s {
  380. struct bfa_ioc_s *ioc;
  381. struct bfa_ablk_cfg_s *cfg;
  382. u16 *pcifn;
  383. struct bfa_dma_s dma_addr;
  384. bfa_boolean_t busy;
  385. struct bfa_mbox_cmd_s mb;
  386. bfa_ablk_cbfn_t cbfn;
  387. void *cbarg;
  388. struct bfa_ioc_notify_s ioc_notify;
  389. struct bfa_mem_dma_s ablk_dma;
  390. };
  391. #define BFA_MEM_ABLK_DMA(__bfa) (&((__bfa)->modules.ablk.ablk_dma))
  392. /*
  393. * SFP module specific
  394. */
  395. typedef void (*bfa_cb_sfp_t) (void *cbarg, bfa_status_t status);
  396. struct bfa_sfp_s {
  397. void *dev;
  398. struct bfa_ioc_s *ioc;
  399. struct bfa_trc_mod_s *trcmod;
  400. struct sfp_mem_s *sfpmem;
  401. bfa_cb_sfp_t cbfn;
  402. void *cbarg;
  403. enum bfi_sfp_mem_e memtype; /* mem access type */
  404. u32 status;
  405. struct bfa_mbox_cmd_s mbcmd;
  406. u8 *dbuf_kva; /* dma buf virtual address */
  407. u64 dbuf_pa; /* dma buf physical address */
  408. struct bfa_ioc_notify_s ioc_notify;
  409. enum bfa_defs_sfp_media_e *media;
  410. enum bfa_port_speed portspeed;
  411. bfa_cb_sfp_t state_query_cbfn;
  412. void *state_query_cbarg;
  413. u8 lock;
  414. u8 data_valid; /* data in dbuf is valid */
  415. u8 state; /* sfp state */
  416. u8 state_query_lock;
  417. struct bfa_mem_dma_s sfp_dma;
  418. u8 is_elb; /* eloopback */
  419. };
  420. #define BFA_SFP_MOD(__bfa) (&(__bfa)->modules.sfp)
  421. #define BFA_MEM_SFP_DMA(__bfa) (&(BFA_SFP_MOD(__bfa)->sfp_dma))
  422. u32 bfa_sfp_meminfo(void);
  423. void bfa_sfp_attach(struct bfa_sfp_s *sfp, struct bfa_ioc_s *ioc,
  424. void *dev, struct bfa_trc_mod_s *trcmod);
  425. void bfa_sfp_memclaim(struct bfa_sfp_s *diag, u8 *dm_kva, u64 dm_pa);
  426. void bfa_sfp_intr(void *bfaarg, struct bfi_mbmsg_s *msg);
  427. bfa_status_t bfa_sfp_show(struct bfa_sfp_s *sfp, struct sfp_mem_s *sfpmem,
  428. bfa_cb_sfp_t cbfn, void *cbarg);
  429. bfa_status_t bfa_sfp_media(struct bfa_sfp_s *sfp,
  430. enum bfa_defs_sfp_media_e *media,
  431. bfa_cb_sfp_t cbfn, void *cbarg);
  432. bfa_status_t bfa_sfp_speed(struct bfa_sfp_s *sfp,
  433. enum bfa_port_speed portspeed,
  434. bfa_cb_sfp_t cbfn, void *cbarg);
  435. /*
  436. * Flash module specific
  437. */
  438. typedef void (*bfa_cb_flash_t) (void *cbarg, bfa_status_t status);
  439. struct bfa_flash_s {
  440. struct bfa_ioc_s *ioc; /* back pointer to ioc */
  441. struct bfa_trc_mod_s *trcmod;
  442. u32 type; /* partition type */
  443. u8 instance; /* partition instance */
  444. u8 rsv[3];
  445. u32 op_busy; /* operation busy flag */
  446. u32 residue; /* residual length */
  447. u32 offset; /* offset */
  448. bfa_status_t status; /* status */
  449. u8 *dbuf_kva; /* dma buf virtual address */
  450. u64 dbuf_pa; /* dma buf physical address */
  451. struct bfa_reqq_wait_s reqq_wait; /* to wait for room in reqq */
  452. bfa_cb_flash_t cbfn; /* user callback function */
  453. void *cbarg; /* user callback arg */
  454. u8 *ubuf; /* user supplied buffer */
  455. struct bfa_cb_qe_s hcb_qe; /* comp: BFA callback qelem */
  456. u32 addr_off; /* partition address offset */
  457. struct bfa_mbox_cmd_s mb; /* mailbox */
  458. struct bfa_ioc_notify_s ioc_notify; /* ioc event notify */
  459. struct bfa_mem_dma_s flash_dma;
  460. };
  461. #define BFA_FLASH(__bfa) (&(__bfa)->modules.flash)
  462. #define BFA_MEM_FLASH_DMA(__bfa) (&(BFA_FLASH(__bfa)->flash_dma))
  463. bfa_status_t bfa_flash_get_attr(struct bfa_flash_s *flash,
  464. struct bfa_flash_attr_s *attr,
  465. bfa_cb_flash_t cbfn, void *cbarg);
  466. bfa_status_t bfa_flash_erase_part(struct bfa_flash_s *flash,
  467. enum bfa_flash_part_type type, u8 instance,
  468. bfa_cb_flash_t cbfn, void *cbarg);
  469. bfa_status_t bfa_flash_update_part(struct bfa_flash_s *flash,
  470. enum bfa_flash_part_type type, u8 instance,
  471. void *buf, u32 len, u32 offset,
  472. bfa_cb_flash_t cbfn, void *cbarg);
  473. bfa_status_t bfa_flash_read_part(struct bfa_flash_s *flash,
  474. enum bfa_flash_part_type type, u8 instance, void *buf,
  475. u32 len, u32 offset, bfa_cb_flash_t cbfn, void *cbarg);
  476. u32 bfa_flash_meminfo(bfa_boolean_t mincfg);
  477. void bfa_flash_attach(struct bfa_flash_s *flash, struct bfa_ioc_s *ioc,
  478. void *dev, struct bfa_trc_mod_s *trcmod, bfa_boolean_t mincfg);
  479. void bfa_flash_memclaim(struct bfa_flash_s *flash,
  480. u8 *dm_kva, u64 dm_pa, bfa_boolean_t mincfg);
  481. bfa_status_t bfa_flash_raw_read(void __iomem *pci_bar_kva,
  482. u32 offset, char *buf, u32 len);
  483. /*
  484. * DIAG module specific
  485. */
  486. typedef void (*bfa_cb_diag_t) (void *cbarg, bfa_status_t status);
  487. typedef void (*bfa_cb_diag_beacon_t) (void *dev, bfa_boolean_t beacon,
  488. bfa_boolean_t link_e2e_beacon);
  489. /*
  490. * Firmware ping test results
  491. */
  492. struct bfa_diag_results_fwping {
  493. u32 data; /* store the corrupted data */
  494. u32 status;
  495. u32 dmastatus;
  496. u8 rsvd[4];
  497. };
  498. struct bfa_diag_qtest_result_s {
  499. u32 status;
  500. u16 count; /* successful queue test count */
  501. u8 queue;
  502. u8 rsvd; /* 64-bit align */
  503. };
  504. /*
  505. * Firmware ping test results
  506. */
  507. struct bfa_diag_fwping_s {
  508. struct bfa_diag_results_fwping *result;
  509. bfa_cb_diag_t cbfn;
  510. void *cbarg;
  511. u32 data;
  512. u8 lock;
  513. u8 rsv[3];
  514. u32 status;
  515. u32 count;
  516. struct bfa_mbox_cmd_s mbcmd;
  517. u8 *dbuf_kva; /* dma buf virtual address */
  518. u64 dbuf_pa; /* dma buf physical address */
  519. };
  520. /*
  521. * Temperature sensor query results
  522. */
  523. struct bfa_diag_results_tempsensor_s {
  524. u32 status;
  525. u16 temp; /* 10-bit A/D value */
  526. u16 brd_temp; /* 9-bit board temp */
  527. u8 ts_junc; /* show junction tempsensor */
  528. u8 ts_brd; /* show board tempsensor */
  529. u8 rsvd[6]; /* keep 8 bytes alignment */
  530. };
  531. struct bfa_diag_tsensor_s {
  532. bfa_cb_diag_t cbfn;
  533. void *cbarg;
  534. struct bfa_diag_results_tempsensor_s *temp;
  535. u8 lock;
  536. u8 rsv[3];
  537. u32 status;
  538. struct bfa_mbox_cmd_s mbcmd;
  539. };
  540. struct bfa_diag_sfpshow_s {
  541. struct sfp_mem_s *sfpmem;
  542. bfa_cb_diag_t cbfn;
  543. void *cbarg;
  544. u8 lock;
  545. u8 static_data;
  546. u8 rsv[2];
  547. u32 status;
  548. struct bfa_mbox_cmd_s mbcmd;
  549. u8 *dbuf_kva; /* dma buf virtual address */
  550. u64 dbuf_pa; /* dma buf physical address */
  551. };
  552. struct bfa_diag_led_s {
  553. struct bfa_mbox_cmd_s mbcmd;
  554. bfa_boolean_t lock; /* 1: ledtest is operating */
  555. };
  556. struct bfa_diag_beacon_s {
  557. struct bfa_mbox_cmd_s mbcmd;
  558. bfa_boolean_t state; /* port beacon state */
  559. bfa_boolean_t link_e2e; /* link beacon state */
  560. };
  561. struct bfa_diag_s {
  562. void *dev;
  563. struct bfa_ioc_s *ioc;
  564. struct bfa_trc_mod_s *trcmod;
  565. struct bfa_diag_fwping_s fwping;
  566. struct bfa_diag_tsensor_s tsensor;
  567. struct bfa_diag_sfpshow_s sfpshow;
  568. struct bfa_diag_led_s ledtest;
  569. struct bfa_diag_beacon_s beacon;
  570. void *result;
  571. struct bfa_timer_s timer;
  572. bfa_cb_diag_beacon_t cbfn_beacon;
  573. bfa_cb_diag_t cbfn;
  574. void *cbarg;
  575. u8 block;
  576. u8 timer_active;
  577. u8 rsvd[2];
  578. u32 status;
  579. struct bfa_ioc_notify_s ioc_notify;
  580. struct bfa_mem_dma_s diag_dma;
  581. };
  582. #define BFA_DIAG_MOD(__bfa) (&(__bfa)->modules.diag_mod)
  583. #define BFA_MEM_DIAG_DMA(__bfa) (&(BFA_DIAG_MOD(__bfa)->diag_dma))
  584. u32 bfa_diag_meminfo(void);
  585. void bfa_diag_memclaim(struct bfa_diag_s *diag, u8 *dm_kva, u64 dm_pa);
  586. void bfa_diag_attach(struct bfa_diag_s *diag, struct bfa_ioc_s *ioc, void *dev,
  587. bfa_cb_diag_beacon_t cbfn_beacon,
  588. struct bfa_trc_mod_s *trcmod);
  589. bfa_status_t bfa_diag_reg_read(struct bfa_diag_s *diag, u32 offset,
  590. u32 len, u32 *buf, u32 force);
  591. bfa_status_t bfa_diag_reg_write(struct bfa_diag_s *diag, u32 offset,
  592. u32 len, u32 value, u32 force);
  593. bfa_status_t bfa_diag_tsensor_query(struct bfa_diag_s *diag,
  594. struct bfa_diag_results_tempsensor_s *result,
  595. bfa_cb_diag_t cbfn, void *cbarg);
  596. bfa_status_t bfa_diag_fwping(struct bfa_diag_s *diag, u32 cnt,
  597. u32 pattern, struct bfa_diag_results_fwping *result,
  598. bfa_cb_diag_t cbfn, void *cbarg);
  599. bfa_status_t bfa_diag_sfpshow(struct bfa_diag_s *diag,
  600. struct sfp_mem_s *sfpmem, u8 static_data,
  601. bfa_cb_diag_t cbfn, void *cbarg);
  602. bfa_status_t bfa_diag_memtest(struct bfa_diag_s *diag,
  603. struct bfa_diag_memtest_s *memtest, u32 pattern,
  604. struct bfa_diag_memtest_result *result,
  605. bfa_cb_diag_t cbfn, void *cbarg);
  606. bfa_status_t bfa_diag_ledtest(struct bfa_diag_s *diag,
  607. struct bfa_diag_ledtest_s *ledtest);
  608. bfa_status_t bfa_diag_beacon_port(struct bfa_diag_s *diag,
  609. bfa_boolean_t beacon, bfa_boolean_t link_e2e_beacon,
  610. u32 sec);
  611. /*
  612. * PHY module specific
  613. */
  614. typedef void (*bfa_cb_phy_t) (void *cbarg, bfa_status_t status);
  615. struct bfa_phy_s {
  616. struct bfa_ioc_s *ioc; /* back pointer to ioc */
  617. struct bfa_trc_mod_s *trcmod; /* trace module */
  618. u8 instance; /* port instance */
  619. u8 op_busy; /* operation busy flag */
  620. u8 rsv[2];
  621. u32 residue; /* residual length */
  622. u32 offset; /* offset */
  623. bfa_status_t status; /* status */
  624. u8 *dbuf_kva; /* dma buf virtual address */
  625. u64 dbuf_pa; /* dma buf physical address */
  626. struct bfa_reqq_wait_s reqq_wait; /* to wait for room in reqq */
  627. bfa_cb_phy_t cbfn; /* user callback function */
  628. void *cbarg; /* user callback arg */
  629. u8 *ubuf; /* user supplied buffer */
  630. struct bfa_cb_qe_s hcb_qe; /* comp: BFA callback qelem */
  631. u32 addr_off; /* phy address offset */
  632. struct bfa_mbox_cmd_s mb; /* mailbox */
  633. struct bfa_ioc_notify_s ioc_notify; /* ioc event notify */
  634. struct bfa_mem_dma_s phy_dma;
  635. };
  636. #define BFA_PHY(__bfa) (&(__bfa)->modules.phy)
  637. #define BFA_MEM_PHY_DMA(__bfa) (&(BFA_PHY(__bfa)->phy_dma))
  638. bfa_boolean_t bfa_phy_busy(struct bfa_ioc_s *ioc);
  639. bfa_status_t bfa_phy_get_attr(struct bfa_phy_s *phy, u8 instance,
  640. struct bfa_phy_attr_s *attr,
  641. bfa_cb_phy_t cbfn, void *cbarg);
  642. bfa_status_t bfa_phy_get_stats(struct bfa_phy_s *phy, u8 instance,
  643. struct bfa_phy_stats_s *stats,
  644. bfa_cb_phy_t cbfn, void *cbarg);
  645. bfa_status_t bfa_phy_update(struct bfa_phy_s *phy, u8 instance,
  646. void *buf, u32 len, u32 offset,
  647. bfa_cb_phy_t cbfn, void *cbarg);
  648. bfa_status_t bfa_phy_read(struct bfa_phy_s *phy, u8 instance,
  649. void *buf, u32 len, u32 offset,
  650. bfa_cb_phy_t cbfn, void *cbarg);
  651. u32 bfa_phy_meminfo(bfa_boolean_t mincfg);
  652. void bfa_phy_attach(struct bfa_phy_s *phy, struct bfa_ioc_s *ioc,
  653. void *dev, struct bfa_trc_mod_s *trcmod, bfa_boolean_t mincfg);
  654. void bfa_phy_memclaim(struct bfa_phy_s *phy,
  655. u8 *dm_kva, u64 dm_pa, bfa_boolean_t mincfg);
  656. void bfa_phy_intr(void *phyarg, struct bfi_mbmsg_s *msg);
  657. /*
  658. * FRU module specific
  659. */
  660. typedef void (*bfa_cb_fru_t) (void *cbarg, bfa_status_t status);
  661. struct bfa_fru_s {
  662. struct bfa_ioc_s *ioc; /* back pointer to ioc */
  663. struct bfa_trc_mod_s *trcmod; /* trace module */
  664. u8 op_busy; /* operation busy flag */
  665. u8 rsv[3];
  666. u32 residue; /* residual length */
  667. u32 offset; /* offset */
  668. bfa_status_t status; /* status */
  669. u8 *dbuf_kva; /* dma buf virtual address */
  670. u64 dbuf_pa; /* dma buf physical address */
  671. struct bfa_reqq_wait_s reqq_wait; /* to wait for room in reqq */
  672. bfa_cb_fru_t cbfn; /* user callback function */
  673. void *cbarg; /* user callback arg */
  674. u8 *ubuf; /* user supplied buffer */
  675. struct bfa_cb_qe_s hcb_qe; /* comp: BFA callback qelem */
  676. u32 addr_off; /* fru address offset */
  677. struct bfa_mbox_cmd_s mb; /* mailbox */
  678. struct bfa_ioc_notify_s ioc_notify; /* ioc event notify */
  679. struct bfa_mem_dma_s fru_dma;
  680. u8 trfr_cmpl;
  681. };
  682. #define BFA_FRU(__bfa) (&(__bfa)->modules.fru)
  683. #define BFA_MEM_FRU_DMA(__bfa) (&(BFA_FRU(__bfa)->fru_dma))
  684. bfa_status_t bfa_fruvpd_update(struct bfa_fru_s *fru,
  685. void *buf, u32 len, u32 offset,
  686. bfa_cb_fru_t cbfn, void *cbarg, u8 trfr_cmpl);
  687. bfa_status_t bfa_fruvpd_read(struct bfa_fru_s *fru,
  688. void *buf, u32 len, u32 offset,
  689. bfa_cb_fru_t cbfn, void *cbarg);
  690. bfa_status_t bfa_fruvpd_get_max_size(struct bfa_fru_s *fru, u32 *max_size);
  691. bfa_status_t bfa_tfru_write(struct bfa_fru_s *fru,
  692. void *buf, u32 len, u32 offset,
  693. bfa_cb_fru_t cbfn, void *cbarg);
  694. bfa_status_t bfa_tfru_read(struct bfa_fru_s *fru,
  695. void *buf, u32 len, u32 offset,
  696. bfa_cb_fru_t cbfn, void *cbarg);
  697. u32 bfa_fru_meminfo(bfa_boolean_t mincfg);
  698. void bfa_fru_attach(struct bfa_fru_s *fru, struct bfa_ioc_s *ioc,
  699. void *dev, struct bfa_trc_mod_s *trcmod, bfa_boolean_t mincfg);
  700. void bfa_fru_memclaim(struct bfa_fru_s *fru,
  701. u8 *dm_kva, u64 dm_pa, bfa_boolean_t mincfg);
  702. void bfa_fru_intr(void *fruarg, struct bfi_mbmsg_s *msg);
  703. /*
  704. * Driver Config( dconf) specific
  705. */
  706. #define BFI_DCONF_SIGNATURE 0xabcdabcd
  707. #define BFI_DCONF_VERSION 1
  708. #pragma pack(1)
  709. struct bfa_dconf_hdr_s {
  710. u32 signature;
  711. u32 version;
  712. };
  713. struct bfa_dconf_s {
  714. struct bfa_dconf_hdr_s hdr;
  715. struct bfa_lunmask_cfg_s lun_mask;
  716. struct bfa_throttle_cfg_s throttle_cfg;
  717. };
  718. #pragma pack()
  719. /*
  720. * DCONF state machine events
  721. */
  722. enum bfa_dconf_event {
  723. BFA_DCONF_SM_INIT = 1, /* dconf Init */
  724. BFA_DCONF_SM_FLASH_COMP = 2, /* read/write to flash */
  725. BFA_DCONF_SM_WR = 3, /* binding change, map */
  726. BFA_DCONF_SM_TIMEOUT = 4, /* Start timer */
  727. BFA_DCONF_SM_EXIT = 5, /* exit dconf module */
  728. BFA_DCONF_SM_IOCDISABLE = 6, /* IOC disable event */
  729. };
  730. struct bfa_dconf_mod_s;
  731. typedef void (*bfa_dconf_sm_t)(struct bfa_dconf_mod_s *fsm, enum bfa_dconf_event);
  732. struct bfa_dconf_mod_s {
  733. bfa_dconf_sm_t sm;
  734. u8 instance;
  735. bfa_boolean_t read_data_valid;
  736. bfa_boolean_t min_cfg;
  737. struct bfa_timer_s timer;
  738. struct bfa_s *bfa;
  739. void *bfad;
  740. void *trcmod;
  741. struct bfa_dconf_s *dconf;
  742. struct bfa_mem_kva_s kva_seg;
  743. };
  744. #define BFA_DCONF_MOD(__bfa) \
  745. (&(__bfa)->modules.dconf_mod)
  746. #define BFA_MEM_DCONF_KVA(__bfa) (&(BFA_DCONF_MOD(__bfa)->kva_seg))
  747. #define bfa_dconf_read_data_valid(__bfa) \
  748. (BFA_DCONF_MOD(__bfa)->read_data_valid)
  749. #define BFA_DCONF_UPDATE_TOV 5000 /* memtest timeout in msec */
  750. #define bfa_dconf_get_min_cfg(__bfa) \
  751. (BFA_DCONF_MOD(__bfa)->min_cfg)
  752. void bfa_dconf_modinit(struct bfa_s *bfa);
  753. void bfa_dconf_modexit(struct bfa_s *bfa);
  754. bfa_status_t bfa_dconf_update(struct bfa_s *bfa);
  755. /*
  756. * IOC specfic macros
  757. */
  758. #define bfa_ioc_pcifn(__ioc) ((__ioc)->pcidev.pci_func)
  759. #define bfa_ioc_devid(__ioc) ((__ioc)->pcidev.device_id)
  760. #define bfa_ioc_bar0(__ioc) ((__ioc)->pcidev.pci_bar_kva)
  761. #define bfa_ioc_portid(__ioc) ((__ioc)->port_id)
  762. #define bfa_ioc_asic_gen(__ioc) ((__ioc)->asic_gen)
  763. #define bfa_ioc_is_cna(__ioc) \
  764. ((bfa_ioc_get_type(__ioc) == BFA_IOC_TYPE_FCoE) || \
  765. (bfa_ioc_get_type(__ioc) == BFA_IOC_TYPE_LL))
  766. #define bfa_ioc_fetch_stats(__ioc, __stats) \
  767. (((__stats)->drv_stats) = (__ioc)->stats)
  768. #define bfa_ioc_clr_stats(__ioc) \
  769. memset(&(__ioc)->stats, 0, sizeof((__ioc)->stats))
  770. #define bfa_ioc_maxfrsize(__ioc) ((__ioc)->attr->maxfrsize)
  771. #define bfa_ioc_rx_bbcredit(__ioc) ((__ioc)->attr->rx_bbcredit)
  772. #define bfa_ioc_speed_sup(__ioc) \
  773. ((bfa_ioc_is_cna(__ioc)) ? BFA_PORT_SPEED_10GBPS : \
  774. BFI_ADAPTER_GETP(SPEED, (__ioc)->attr->adapter_prop))
  775. #define bfa_ioc_get_nports(__ioc) \
  776. BFI_ADAPTER_GETP(NPORTS, (__ioc)->attr->adapter_prop)
  777. #define bfa_ioc_stats(_ioc, _stats) ((_ioc)->stats._stats++)
  778. #define BFA_IOC_FWIMG_MINSZ (16 * 1024)
  779. #define BFA_IOC_FW_SMEM_SIZE(__ioc) \
  780. ((bfa_ioc_asic_gen(__ioc) == BFI_ASIC_GEN_CB) \
  781. ? BFI_SMEM_CB_SIZE : BFI_SMEM_CT_SIZE)
  782. #define BFA_IOC_FLASH_CHUNK_NO(off) (off / BFI_FLASH_CHUNK_SZ_WORDS)
  783. #define BFA_IOC_FLASH_OFFSET_IN_CHUNK(off) (off % BFI_FLASH_CHUNK_SZ_WORDS)
  784. #define BFA_IOC_FLASH_CHUNK_ADDR(chunkno) (chunkno * BFI_FLASH_CHUNK_SZ_WORDS)
  785. /*
  786. * IOC mailbox interface
  787. */
  788. void bfa_ioc_mbox_queue(struct bfa_ioc_s *ioc, struct bfa_mbox_cmd_s *cmd);
  789. void bfa_ioc_mbox_register(struct bfa_ioc_s *ioc,
  790. bfa_ioc_mbox_mcfunc_t *mcfuncs);
  791. void bfa_ioc_mbox_isr(struct bfa_ioc_s *ioc);
  792. void bfa_ioc_mbox_send(struct bfa_ioc_s *ioc, void *ioc_msg, int len);
  793. bfa_boolean_t bfa_ioc_msgget(struct bfa_ioc_s *ioc, void *mbmsg);
  794. void bfa_ioc_mbox_regisr(struct bfa_ioc_s *ioc, enum bfi_mclass mc,
  795. bfa_ioc_mbox_mcfunc_t cbfn, void *cbarg);
  796. /*
  797. * IOC interfaces
  798. */
  799. #define bfa_ioc_pll_init_asic(__ioc) \
  800. ((__ioc)->ioc_hwif->ioc_pll_init((__ioc)->pcidev.pci_bar_kva, \
  801. (__ioc)->asic_mode))
  802. bfa_status_t bfa_ioc_pll_init(struct bfa_ioc_s *ioc);
  803. bfa_status_t bfa_ioc_cb_pll_init(void __iomem *rb, enum bfi_asic_mode mode);
  804. bfa_status_t bfa_ioc_ct_pll_init(void __iomem *rb, enum bfi_asic_mode mode);
  805. bfa_status_t bfa_ioc_ct2_pll_init(void __iomem *rb, enum bfi_asic_mode mode);
  806. #define bfa_ioc_isr_mode_set(__ioc, __msix) do { \
  807. if ((__ioc)->ioc_hwif->ioc_isr_mode_set) \
  808. ((__ioc)->ioc_hwif->ioc_isr_mode_set(__ioc, __msix)); \
  809. } while (0)
  810. #define bfa_ioc_ownership_reset(__ioc) \
  811. ((__ioc)->ioc_hwif->ioc_ownership_reset(__ioc))
  812. #define bfa_ioc_get_fcmode(__ioc) ((__ioc)->fcmode)
  813. #define bfa_ioc_lpu_read_stat(__ioc) do { \
  814. if ((__ioc)->ioc_hwif->ioc_lpu_read_stat) \
  815. ((__ioc)->ioc_hwif->ioc_lpu_read_stat(__ioc)); \
  816. } while (0)
  817. void bfa_ioc_set_cb_hwif(struct bfa_ioc_s *ioc);
  818. void bfa_ioc_set_ct_hwif(struct bfa_ioc_s *ioc);
  819. void bfa_ioc_set_ct2_hwif(struct bfa_ioc_s *ioc);
  820. void bfa_ioc_ct2_poweron(struct bfa_ioc_s *ioc);
  821. void bfa_ioc_attach(struct bfa_ioc_s *ioc, void *bfa,
  822. struct bfa_ioc_cbfn_s *cbfn, struct bfa_timer_mod_s *timer_mod);
  823. void bfa_ioc_auto_recover(bfa_boolean_t auto_recover);
  824. void bfa_ioc_detach(struct bfa_ioc_s *ioc);
  825. void bfa_ioc_suspend(struct bfa_ioc_s *ioc);
  826. void bfa_ioc_pci_init(struct bfa_ioc_s *ioc, struct bfa_pcidev_s *pcidev,
  827. enum bfi_pcifn_class clscode);
  828. void bfa_ioc_mem_claim(struct bfa_ioc_s *ioc, u8 *dm_kva, u64 dm_pa);
  829. void bfa_ioc_enable(struct bfa_ioc_s *ioc);
  830. void bfa_ioc_disable(struct bfa_ioc_s *ioc);
  831. bfa_boolean_t bfa_ioc_intx_claim(struct bfa_ioc_s *ioc);
  832. bfa_status_t bfa_ioc_boot(struct bfa_ioc_s *ioc, u32 boot_type,
  833. u32 boot_env);
  834. void bfa_ioc_isr(struct bfa_ioc_s *ioc, struct bfi_mbmsg_s *msg);
  835. void bfa_ioc_error_isr(struct bfa_ioc_s *ioc);
  836. bfa_boolean_t bfa_ioc_is_operational(struct bfa_ioc_s *ioc);
  837. bfa_boolean_t bfa_ioc_is_initialized(struct bfa_ioc_s *ioc);
  838. bfa_boolean_t bfa_ioc_is_disabled(struct bfa_ioc_s *ioc);
  839. bfa_boolean_t bfa_ioc_is_acq_addr(struct bfa_ioc_s *ioc);
  840. bfa_boolean_t bfa_ioc_fw_mismatch(struct bfa_ioc_s *ioc);
  841. bfa_boolean_t bfa_ioc_adapter_is_disabled(struct bfa_ioc_s *ioc);
  842. void bfa_ioc_reset_fwstate(struct bfa_ioc_s *ioc);
  843. enum bfa_ioc_type_e bfa_ioc_get_type(struct bfa_ioc_s *ioc);
  844. void bfa_ioc_get_adapter_serial_num(struct bfa_ioc_s *ioc, char *serial_num);
  845. void bfa_ioc_get_adapter_fw_ver(struct bfa_ioc_s *ioc, char *fw_ver);
  846. void bfa_ioc_get_adapter_optrom_ver(struct bfa_ioc_s *ioc, char *optrom_ver);
  847. void bfa_ioc_get_adapter_model(struct bfa_ioc_s *ioc, char *model);
  848. void bfa_ioc_get_adapter_manufacturer(struct bfa_ioc_s *ioc,
  849. char *manufacturer);
  850. void bfa_ioc_get_pci_chip_rev(struct bfa_ioc_s *ioc, char *chip_rev);
  851. enum bfa_ioc_state bfa_ioc_get_state(struct bfa_ioc_s *ioc);
  852. void bfa_ioc_get_attr(struct bfa_ioc_s *ioc, struct bfa_ioc_attr_s *ioc_attr);
  853. void bfa_ioc_get_adapter_attr(struct bfa_ioc_s *ioc,
  854. struct bfa_adapter_attr_s *ad_attr);
  855. void bfa_ioc_debug_memclaim(struct bfa_ioc_s *ioc, void *dbg_fwsave);
  856. bfa_status_t bfa_ioc_debug_fwsave(struct bfa_ioc_s *ioc, void *trcdata,
  857. int *trclen);
  858. bfa_status_t bfa_ioc_debug_fwtrc(struct bfa_ioc_s *ioc, void *trcdata,
  859. int *trclen);
  860. bfa_status_t bfa_ioc_debug_fwcore(struct bfa_ioc_s *ioc, void *buf,
  861. u32 *offset, int *buflen);
  862. bfa_status_t bfa_ioc_fwsig_invalidate(struct bfa_ioc_s *ioc);
  863. bfa_boolean_t bfa_ioc_sem_get(void __iomem *sem_reg);
  864. void bfa_ioc_fwver_get(struct bfa_ioc_s *ioc,
  865. struct bfi_ioc_image_hdr_s *fwhdr);
  866. bfa_boolean_t bfa_ioc_fwver_cmp(struct bfa_ioc_s *ioc,
  867. struct bfi_ioc_image_hdr_s *fwhdr);
  868. void bfa_ioc_aen_post(struct bfa_ioc_s *ioc, enum bfa_ioc_aen_event event);
  869. bfa_status_t bfa_ioc_fw_stats_get(struct bfa_ioc_s *ioc, void *stats);
  870. bfa_status_t bfa_ioc_fw_stats_clear(struct bfa_ioc_s *ioc);
  871. void bfa_ioc_debug_save_ftrc(struct bfa_ioc_s *ioc);
  872. /*
  873. * asic block configuration related APIs
  874. */
  875. u32 bfa_ablk_meminfo(void);
  876. void bfa_ablk_memclaim(struct bfa_ablk_s *ablk, u8 *dma_kva, u64 dma_pa);
  877. void bfa_ablk_attach(struct bfa_ablk_s *ablk, struct bfa_ioc_s *ioc);
  878. bfa_status_t bfa_ablk_query(struct bfa_ablk_s *ablk,
  879. struct bfa_ablk_cfg_s *ablk_cfg,
  880. bfa_ablk_cbfn_t cbfn, void *cbarg);
  881. bfa_status_t bfa_ablk_adapter_config(struct bfa_ablk_s *ablk,
  882. enum bfa_mode_s mode, int max_pf, int max_vf,
  883. bfa_ablk_cbfn_t cbfn, void *cbarg);
  884. bfa_status_t bfa_ablk_port_config(struct bfa_ablk_s *ablk, int port,
  885. enum bfa_mode_s mode, int max_pf, int max_vf,
  886. bfa_ablk_cbfn_t cbfn, void *cbarg);
  887. bfa_status_t bfa_ablk_pf_create(struct bfa_ablk_s *ablk, u16 *pcifn,
  888. u8 port, enum bfi_pcifn_class personality,
  889. u16 bw_min, u16 bw_max, bfa_ablk_cbfn_t cbfn, void *cbarg);
  890. bfa_status_t bfa_ablk_pf_delete(struct bfa_ablk_s *ablk, int pcifn,
  891. bfa_ablk_cbfn_t cbfn, void *cbarg);
  892. bfa_status_t bfa_ablk_pf_update(struct bfa_ablk_s *ablk, int pcifn,
  893. u16 bw_min, u16 bw_max, bfa_ablk_cbfn_t cbfn, void *cbarg);
  894. bfa_status_t bfa_ablk_optrom_en(struct bfa_ablk_s *ablk,
  895. bfa_ablk_cbfn_t cbfn, void *cbarg);
  896. bfa_status_t bfa_ablk_optrom_dis(struct bfa_ablk_s *ablk,
  897. bfa_ablk_cbfn_t cbfn, void *cbarg);
  898. bfa_status_t bfa_ioc_flash_img_get_chnk(struct bfa_ioc_s *ioc, u32 off,
  899. u32 *fwimg);
  900. /*
  901. * bfa mfg wwn API functions
  902. */
  903. mac_t bfa_ioc_get_mac(struct bfa_ioc_s *ioc);
  904. mac_t bfa_ioc_get_mfg_mac(struct bfa_ioc_s *ioc);
  905. /*
  906. * F/W Image Size & Chunk
  907. */
  908. extern u32 bfi_image_cb_size;
  909. extern u32 bfi_image_ct_size;
  910. extern u32 bfi_image_ct2_size;
  911. extern u32 *bfi_image_cb;
  912. extern u32 *bfi_image_ct;
  913. extern u32 *bfi_image_ct2;
  914. static inline u32 *
  915. bfi_image_cb_get_chunk(u32 off)
  916. {
  917. return (u32 *)(bfi_image_cb + off);
  918. }
  919. static inline u32 *
  920. bfi_image_ct_get_chunk(u32 off)
  921. {
  922. return (u32 *)(bfi_image_ct + off);
  923. }
  924. static inline u32 *
  925. bfi_image_ct2_get_chunk(u32 off)
  926. {
  927. return (u32 *)(bfi_image_ct2 + off);
  928. }
  929. static inline u32*
  930. bfa_cb_image_get_chunk(enum bfi_asic_gen asic_gen, u32 off)
  931. {
  932. switch (asic_gen) {
  933. case BFI_ASIC_GEN_CB:
  934. return bfi_image_cb_get_chunk(off);
  935. break;
  936. case BFI_ASIC_GEN_CT:
  937. return bfi_image_ct_get_chunk(off);
  938. break;
  939. case BFI_ASIC_GEN_CT2:
  940. return bfi_image_ct2_get_chunk(off);
  941. break;
  942. default:
  943. return NULL;
  944. }
  945. }
  946. static inline u32
  947. bfa_cb_image_get_size(enum bfi_asic_gen asic_gen)
  948. {
  949. switch (asic_gen) {
  950. case BFI_ASIC_GEN_CB:
  951. return bfi_image_cb_size;
  952. break;
  953. case BFI_ASIC_GEN_CT:
  954. return bfi_image_ct_size;
  955. break;
  956. case BFI_ASIC_GEN_CT2:
  957. return bfi_image_ct2_size;
  958. break;
  959. default:
  960. return 0;
  961. }
  962. }
  963. /*
  964. * CNA TRCMOD declaration
  965. */
  966. /*
  967. * !!! Only append to the enums defined here to avoid any versioning
  968. * !!! needed between trace utility and driver version
  969. */
  970. enum {
  971. BFA_TRC_CNA_PORT = 1,
  972. BFA_TRC_CNA_IOC = 2,
  973. BFA_TRC_CNA_IOC_CB = 3,
  974. BFA_TRC_CNA_IOC_CT = 4,
  975. };
  976. #endif /* __BFA_IOC_H__ */