bfi.h 15 KB

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  1. /*
  2. * Linux network driver for QLogic BR-series Converged Network Adapter.
  3. *
  4. * This program is free software; you can redistribute it and/or modify it
  5. * under the terms of the GNU General Public License (GPL) Version 2 as
  6. * published by the Free Software Foundation
  7. *
  8. * This program is distributed in the hope that it will be useful, but
  9. * WITHOUT ANY WARRANTY; without even the implied warranty of
  10. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  11. * General Public License for more details.
  12. */
  13. /*
  14. * Copyright (c) 2005-2014 Brocade Communications Systems, Inc.
  15. * Copyright (c) 2014-2015 QLogic Corporation
  16. * All rights reserved
  17. * www.qlogic.com
  18. */
  19. #ifndef __BFI_H__
  20. #define __BFI_H__
  21. #include "bfa_defs.h"
  22. /* BFI FW image type */
  23. #define BFI_FLASH_CHUNK_SZ 256 /*!< Flash chunk size */
  24. #define BFI_FLASH_CHUNK_SZ_WORDS (BFI_FLASH_CHUNK_SZ/sizeof(u32))
  25. #define BFI_FLASH_IMAGE_SZ 0x100000
  26. /* Msg header common to all msgs */
  27. struct bfi_mhdr {
  28. u8 msg_class; /*!< @ref enum bfi_mclass */
  29. u8 msg_id; /*!< msg opcode with in the class */
  30. union {
  31. struct {
  32. u8 qid;
  33. u8 fn_lpu; /*!< msg destination */
  34. } __packed h2i;
  35. u16 i2htok; /*!< token in msgs to host */
  36. } __packed mtag;
  37. } __packed;
  38. #define bfi_fn_lpu(__fn, __lpu) ((__fn) << 1 | (__lpu))
  39. #define bfi_mhdr_2_fn(_mh) ((_mh)->mtag.h2i.fn_lpu >> 1)
  40. #define bfi_mhdr_2_qid(_mh) ((_mh)->mtag.h2i.qid)
  41. #define bfi_h2i_set(_mh, _mc, _op, _fn_lpu) do { \
  42. (_mh).msg_class = (_mc); \
  43. (_mh).msg_id = (_op); \
  44. (_mh).mtag.h2i.fn_lpu = (_fn_lpu); \
  45. } while (0)
  46. #define bfi_i2h_set(_mh, _mc, _op, _i2htok) do { \
  47. (_mh).msg_class = (_mc); \
  48. (_mh).msg_id = (_op); \
  49. (_mh).mtag.i2htok = (_i2htok); \
  50. } while (0)
  51. /*
  52. * Message opcodes: 0-127 to firmware, 128-255 to host
  53. */
  54. #define BFI_I2H_OPCODE_BASE 128
  55. #define BFA_I2HM(_x) ((_x) + BFI_I2H_OPCODE_BASE)
  56. /****************************************************************************
  57. *
  58. * Scatter Gather Element and Page definition
  59. *
  60. ****************************************************************************
  61. */
  62. /* DMA addresses */
  63. union bfi_addr_u {
  64. struct {
  65. u32 addr_lo;
  66. u32 addr_hi;
  67. } __packed a32;
  68. } __packed;
  69. /* Generic DMA addr-len pair. */
  70. struct bfi_alen {
  71. union bfi_addr_u al_addr; /* DMA addr of buffer */
  72. u32 al_len; /* length of buffer */
  73. } __packed;
  74. /*
  75. * Large Message structure - 128 Bytes size Msgs
  76. */
  77. #define BFI_LMSG_SZ 128
  78. #define BFI_LMSG_PL_WSZ \
  79. ((BFI_LMSG_SZ - sizeof(struct bfi_mhdr)) / 4)
  80. /* Mailbox message structure */
  81. #define BFI_MBMSG_SZ 7
  82. struct bfi_mbmsg {
  83. struct bfi_mhdr mh;
  84. u32 pl[BFI_MBMSG_SZ];
  85. } __packed;
  86. /* Supported PCI function class codes (personality) */
  87. enum bfi_pcifn_class {
  88. BFI_PCIFN_CLASS_FC = 0x0c04,
  89. BFI_PCIFN_CLASS_ETH = 0x0200,
  90. };
  91. /* Message Classes */
  92. enum bfi_mclass {
  93. BFI_MC_IOC = 1, /*!< IO Controller (IOC) */
  94. BFI_MC_DIAG = 2, /*!< Diagnostic Msgs */
  95. BFI_MC_FLASH = 3, /*!< Flash message class */
  96. BFI_MC_CEE = 4, /*!< CEE */
  97. BFI_MC_FCPORT = 5, /*!< FC port */
  98. BFI_MC_IOCFC = 6, /*!< FC - IO Controller (IOC) */
  99. BFI_MC_LL = 7, /*!< Link Layer */
  100. BFI_MC_UF = 8, /*!< Unsolicited frame receive */
  101. BFI_MC_FCXP = 9, /*!< FC Transport */
  102. BFI_MC_LPS = 10, /*!< lport fc login services */
  103. BFI_MC_RPORT = 11, /*!< Remote port */
  104. BFI_MC_ITNIM = 12, /*!< I-T nexus (Initiator mode) */
  105. BFI_MC_IOIM_READ = 13, /*!< read IO (Initiator mode) */
  106. BFI_MC_IOIM_WRITE = 14, /*!< write IO (Initiator mode) */
  107. BFI_MC_IOIM_IO = 15, /*!< IO (Initiator mode) */
  108. BFI_MC_IOIM = 16, /*!< IO (Initiator mode) */
  109. BFI_MC_IOIM_IOCOM = 17, /*!< good IO completion */
  110. BFI_MC_TSKIM = 18, /*!< Initiator Task management */
  111. BFI_MC_SBOOT = 19, /*!< SAN boot services */
  112. BFI_MC_IPFC = 20, /*!< IP over FC Msgs */
  113. BFI_MC_PORT = 21, /*!< Physical port */
  114. BFI_MC_SFP = 22, /*!< SFP module */
  115. BFI_MC_MSGQ = 23, /*!< MSGQ */
  116. BFI_MC_ENET = 24, /*!< ENET commands/responses */
  117. BFI_MC_PHY = 25, /*!< External PHY message class */
  118. BFI_MC_NBOOT = 26, /*!< Network Boot */
  119. BFI_MC_TIO_READ = 27, /*!< read IO (Target mode) */
  120. BFI_MC_TIO_WRITE = 28, /*!< write IO (Target mode) */
  121. BFI_MC_TIO_DATA_XFERED = 29, /*!< ds transferred (target mode) */
  122. BFI_MC_TIO_IO = 30, /*!< IO (Target mode) */
  123. BFI_MC_TIO = 31, /*!< IO (target mode) */
  124. BFI_MC_MFG = 32, /*!< MFG/ASIC block commands */
  125. BFI_MC_EDMA = 33, /*!< EDMA copy commands */
  126. BFI_MC_MAX = 34
  127. };
  128. #define BFI_IOC_MSGLEN_MAX 32 /* 32 bytes */
  129. #define BFI_FWBOOT_ENV_OS 0
  130. /*----------------------------------------------------------------------
  131. * IOC
  132. *----------------------------------------------------------------------
  133. */
  134. /* Different asic generations */
  135. enum bfi_asic_gen {
  136. BFI_ASIC_GEN_CB = 1,
  137. BFI_ASIC_GEN_CT = 2,
  138. BFI_ASIC_GEN_CT2 = 3,
  139. };
  140. enum bfi_asic_mode {
  141. BFI_ASIC_MODE_FC = 1, /* FC up to 8G speed */
  142. BFI_ASIC_MODE_FC16 = 2, /* FC up to 16G speed */
  143. BFI_ASIC_MODE_ETH = 3, /* Ethernet ports */
  144. BFI_ASIC_MODE_COMBO = 4, /* FC 16G and Ethernet 10G port */
  145. };
  146. enum bfi_ioc_h2i_msgs {
  147. BFI_IOC_H2I_ENABLE_REQ = 1,
  148. BFI_IOC_H2I_DISABLE_REQ = 2,
  149. BFI_IOC_H2I_GETATTR_REQ = 3,
  150. BFI_IOC_H2I_DBG_SYNC = 4,
  151. BFI_IOC_H2I_DBG_DUMP = 5,
  152. };
  153. enum bfi_ioc_i2h_msgs {
  154. BFI_IOC_I2H_ENABLE_REPLY = BFA_I2HM(1),
  155. BFI_IOC_I2H_DISABLE_REPLY = BFA_I2HM(2),
  156. BFI_IOC_I2H_GETATTR_REPLY = BFA_I2HM(3),
  157. BFI_IOC_I2H_HBEAT = BFA_I2HM(4),
  158. };
  159. /* BFI_IOC_H2I_GETATTR_REQ message */
  160. struct bfi_ioc_getattr_req {
  161. struct bfi_mhdr mh;
  162. union bfi_addr_u attr_addr;
  163. } __packed;
  164. struct bfi_ioc_attr {
  165. u64 mfg_pwwn; /*!< Mfg port wwn */
  166. u64 mfg_nwwn; /*!< Mfg node wwn */
  167. u8 mfg_mac[ETH_ALEN]; /*!< Mfg mac */
  168. u8 port_mode; /* enum bfi_port_mode */
  169. u8 rsvd_a;
  170. u64 pwwn;
  171. u64 nwwn;
  172. u8 mac[ETH_ALEN]; /*!< PBC or Mfg mac */
  173. u16 rsvd_b;
  174. u8 fcoe_mac[ETH_ALEN];
  175. u16 rsvd_c;
  176. char brcd_serialnum[STRSZ(BFA_MFG_SERIALNUM_SIZE)];
  177. u8 pcie_gen;
  178. u8 pcie_lanes_orig;
  179. u8 pcie_lanes;
  180. u8 rx_bbcredit; /*!< receive buffer credits */
  181. u32 adapter_prop; /*!< adapter properties */
  182. u16 maxfrsize; /*!< max receive frame size */
  183. char asic_rev;
  184. u8 rsvd_d;
  185. char fw_version[BFA_VERSION_LEN];
  186. char optrom_version[BFA_VERSION_LEN];
  187. struct bfa_mfg_vpd vpd;
  188. u32 card_type; /*!< card type */
  189. } __packed;
  190. /* BFI_IOC_I2H_GETATTR_REPLY message */
  191. struct bfi_ioc_getattr_reply {
  192. struct bfi_mhdr mh; /*!< Common msg header */
  193. u8 status; /*!< cfg reply status */
  194. u8 rsvd[3];
  195. } __packed;
  196. /* Firmware memory page offsets */
  197. #define BFI_IOC_SMEM_PG0_CB (0x40)
  198. #define BFI_IOC_SMEM_PG0_CT (0x180)
  199. /* Firmware statistic offset */
  200. #define BFI_IOC_FWSTATS_OFF (0x6B40)
  201. #define BFI_IOC_FWSTATS_SZ (4096)
  202. /* Firmware trace offset */
  203. #define BFI_IOC_TRC_OFF (0x4b00)
  204. #define BFI_IOC_TRC_ENTS 256
  205. #define BFI_IOC_TRC_ENT_SZ 16
  206. #define BFI_IOC_TRC_HDR_SZ 32
  207. #define BFI_IOC_FW_SIGNATURE (0xbfadbfad)
  208. #define BFI_IOC_FW_INV_SIGN (0xdeaddead)
  209. #define BFI_IOC_MD5SUM_SZ 4
  210. struct bfi_ioc_fwver {
  211. #ifdef __BIG_ENDIAN
  212. u8 patch;
  213. u8 maint;
  214. u8 minor;
  215. u8 major;
  216. u8 rsvd[2];
  217. u8 build;
  218. u8 phase;
  219. #else
  220. u8 major;
  221. u8 minor;
  222. u8 maint;
  223. u8 patch;
  224. u8 phase;
  225. u8 build;
  226. u8 rsvd[2];
  227. #endif
  228. } __packed;
  229. struct bfi_ioc_image_hdr {
  230. u32 signature; /*!< constant signature */
  231. u8 asic_gen; /*!< asic generation */
  232. u8 asic_mode;
  233. u8 port0_mode; /*!< device mode for port 0 */
  234. u8 port1_mode; /*!< device mode for port 1 */
  235. u32 exec; /*!< exec vector */
  236. u32 bootenv; /*!< firmware boot env */
  237. u32 rsvd_b[2];
  238. struct bfi_ioc_fwver fwver;
  239. u32 md5sum[BFI_IOC_MD5SUM_SZ];
  240. } __packed;
  241. enum bfi_ioc_img_ver_cmp {
  242. BFI_IOC_IMG_VER_INCOMP,
  243. BFI_IOC_IMG_VER_OLD,
  244. BFI_IOC_IMG_VER_SAME,
  245. BFI_IOC_IMG_VER_BETTER
  246. };
  247. #define BFI_FWBOOT_DEVMODE_OFF 4
  248. #define BFI_FWBOOT_TYPE_OFF 8
  249. #define BFI_FWBOOT_ENV_OFF 12
  250. #define BFI_FWBOOT_DEVMODE(__asic_gen, __asic_mode, __p0_mode, __p1_mode) \
  251. (((u32)(__asic_gen)) << 24 | \
  252. ((u32)(__asic_mode)) << 16 | \
  253. ((u32)(__p0_mode)) << 8 | \
  254. ((u32)(__p1_mode)))
  255. enum bfi_fwboot_type {
  256. BFI_FWBOOT_TYPE_NORMAL = 0,
  257. BFI_FWBOOT_TYPE_FLASH = 1,
  258. BFI_FWBOOT_TYPE_MEMTEST = 2,
  259. };
  260. enum bfi_port_mode {
  261. BFI_PORT_MODE_FC = 1,
  262. BFI_PORT_MODE_ETH = 2,
  263. };
  264. struct bfi_ioc_hbeat {
  265. struct bfi_mhdr mh; /*!< common msg header */
  266. u32 hb_count; /*!< current heart beat count */
  267. } __packed;
  268. /* IOC hardware/firmware state */
  269. enum bfi_ioc_state {
  270. BFI_IOC_UNINIT = 0, /*!< not initialized */
  271. BFI_IOC_INITING = 1, /*!< h/w is being initialized */
  272. BFI_IOC_HWINIT = 2, /*!< h/w is initialized */
  273. BFI_IOC_CFG = 3, /*!< IOC configuration in progress */
  274. BFI_IOC_OP = 4, /*!< IOC is operational */
  275. BFI_IOC_DISABLING = 5, /*!< IOC is being disabled */
  276. BFI_IOC_DISABLED = 6, /*!< IOC is disabled */
  277. BFI_IOC_CFG_DISABLED = 7, /*!< IOC is being disabled;transient */
  278. BFI_IOC_FAIL = 8, /*!< IOC heart-beat failure */
  279. BFI_IOC_MEMTEST = 9, /*!< IOC is doing memtest */
  280. };
  281. enum {
  282. BFI_ADAPTER_TYPE_FC = 0x01, /*!< FC adapters */
  283. BFI_ADAPTER_TYPE_MK = 0x0f0000, /*!< adapter type mask */
  284. BFI_ADAPTER_TYPE_SH = 16, /*!< adapter type shift */
  285. BFI_ADAPTER_NPORTS_MK = 0xff00, /*!< number of ports mask */
  286. BFI_ADAPTER_NPORTS_SH = 8, /*!< number of ports shift */
  287. BFI_ADAPTER_SPEED_MK = 0xff, /*!< adapter speed mask */
  288. BFI_ADAPTER_SPEED_SH = 0, /*!< adapter speed shift */
  289. BFI_ADAPTER_PROTO = 0x100000, /*!< prototype adapaters */
  290. BFI_ADAPTER_TTV = 0x200000, /*!< TTV debug capable */
  291. BFI_ADAPTER_UNSUPP = 0x400000, /*!< unknown adapter type */
  292. };
  293. #define BFI_ADAPTER_GETP(__prop, __adap_prop) \
  294. (((__adap_prop) & BFI_ADAPTER_ ## __prop ## _MK) >> \
  295. BFI_ADAPTER_ ## __prop ## _SH)
  296. #define BFI_ADAPTER_SETP(__prop, __val) \
  297. ((__val) << BFI_ADAPTER_ ## __prop ## _SH)
  298. #define BFI_ADAPTER_IS_SPECIAL(__adap_type) \
  299. ((__adap_type) & (BFI_ADAPTER_TTV | BFI_ADAPTER_PROTO | \
  300. BFI_ADAPTER_UNSUPP))
  301. /* BFI_IOC_H2I_ENABLE_REQ & BFI_IOC_H2I_DISABLE_REQ messages */
  302. struct bfi_ioc_ctrl_req {
  303. struct bfi_mhdr mh;
  304. u16 clscode;
  305. u16 rsvd;
  306. u32 tv_sec;
  307. } __packed;
  308. /* BFI_IOC_I2H_ENABLE_REPLY & BFI_IOC_I2H_DISABLE_REPLY messages */
  309. struct bfi_ioc_ctrl_reply {
  310. struct bfi_mhdr mh; /*!< Common msg header */
  311. u8 status; /*!< enable/disable status */
  312. u8 port_mode; /*!< enum bfa_mode */
  313. u8 cap_bm; /*!< capability bit mask */
  314. u8 rsvd;
  315. } __packed;
  316. #define BFI_IOC_MSGSZ 8
  317. /* H2I Messages */
  318. union bfi_ioc_h2i_msg_u {
  319. struct bfi_mhdr mh;
  320. struct bfi_ioc_ctrl_req enable_req;
  321. struct bfi_ioc_ctrl_req disable_req;
  322. struct bfi_ioc_getattr_req getattr_req;
  323. u32 mboxmsg[BFI_IOC_MSGSZ];
  324. } __packed;
  325. /* I2H Messages */
  326. union bfi_ioc_i2h_msg_u {
  327. struct bfi_mhdr mh;
  328. struct bfi_ioc_ctrl_reply fw_event;
  329. u32 mboxmsg[BFI_IOC_MSGSZ];
  330. } __packed;
  331. /*----------------------------------------------------------------------
  332. * MSGQ
  333. *----------------------------------------------------------------------
  334. */
  335. enum bfi_msgq_h2i_msgs {
  336. BFI_MSGQ_H2I_INIT_REQ = 1,
  337. BFI_MSGQ_H2I_DOORBELL_PI = 2,
  338. BFI_MSGQ_H2I_DOORBELL_CI = 3,
  339. BFI_MSGQ_H2I_CMDQ_COPY_RSP = 4,
  340. };
  341. enum bfi_msgq_i2h_msgs {
  342. BFI_MSGQ_I2H_INIT_RSP = BFA_I2HM(BFI_MSGQ_H2I_INIT_REQ),
  343. BFI_MSGQ_I2H_DOORBELL_PI = BFA_I2HM(BFI_MSGQ_H2I_DOORBELL_PI),
  344. BFI_MSGQ_I2H_DOORBELL_CI = BFA_I2HM(BFI_MSGQ_H2I_DOORBELL_CI),
  345. BFI_MSGQ_I2H_CMDQ_COPY_REQ = BFA_I2HM(BFI_MSGQ_H2I_CMDQ_COPY_RSP),
  346. };
  347. /* Messages(commands/responsed/AENS will have the following header */
  348. struct bfi_msgq_mhdr {
  349. u8 msg_class;
  350. u8 msg_id;
  351. u16 msg_token;
  352. u16 num_entries;
  353. u8 enet_id;
  354. u8 rsvd[1];
  355. } __packed;
  356. #define bfi_msgq_mhdr_set(_mh, _mc, _mid, _tok, _enet_id) do { \
  357. (_mh).msg_class = (_mc); \
  358. (_mh).msg_id = (_mid); \
  359. (_mh).msg_token = (_tok); \
  360. (_mh).enet_id = (_enet_id); \
  361. } while (0)
  362. /*
  363. * Mailbox for messaging interface
  364. */
  365. #define BFI_MSGQ_CMD_ENTRY_SIZE (64) /* TBD */
  366. #define BFI_MSGQ_RSP_ENTRY_SIZE (64) /* TBD */
  367. #define bfi_msgq_num_cmd_entries(_size) \
  368. (((_size) + BFI_MSGQ_CMD_ENTRY_SIZE - 1) / BFI_MSGQ_CMD_ENTRY_SIZE)
  369. struct bfi_msgq {
  370. union bfi_addr_u addr;
  371. u16 q_depth; /* Total num of entries in the queue */
  372. u8 rsvd[2];
  373. } __packed;
  374. /* BFI_ENET_MSGQ_CFG_REQ TBD init or cfg? */
  375. struct bfi_msgq_cfg_req {
  376. struct bfi_mhdr mh;
  377. struct bfi_msgq cmdq;
  378. struct bfi_msgq rspq;
  379. } __packed;
  380. /* BFI_ENET_MSGQ_CFG_RSP */
  381. struct bfi_msgq_cfg_rsp {
  382. struct bfi_mhdr mh;
  383. u8 cmd_status;
  384. u8 rsvd[3];
  385. } __packed;
  386. /* BFI_MSGQ_H2I_DOORBELL */
  387. struct bfi_msgq_h2i_db {
  388. struct bfi_mhdr mh;
  389. union {
  390. u16 cmdq_pi;
  391. u16 rspq_ci;
  392. } __packed idx;
  393. } __packed;
  394. /* BFI_MSGQ_I2H_DOORBELL */
  395. struct bfi_msgq_i2h_db {
  396. struct bfi_mhdr mh;
  397. union {
  398. u16 rspq_pi;
  399. u16 cmdq_ci;
  400. } __packed idx;
  401. } __packed;
  402. #define BFI_CMD_COPY_SZ 28
  403. /* BFI_MSGQ_H2I_CMD_COPY_RSP */
  404. struct bfi_msgq_h2i_cmdq_copy_rsp {
  405. struct bfi_mhdr mh;
  406. u8 data[BFI_CMD_COPY_SZ];
  407. } __packed;
  408. /* BFI_MSGQ_I2H_CMD_COPY_REQ */
  409. struct bfi_msgq_i2h_cmdq_copy_req {
  410. struct bfi_mhdr mh;
  411. u16 offset;
  412. u16 len;
  413. } __packed;
  414. /*
  415. * FLASH module specific
  416. */
  417. enum bfi_flash_h2i_msgs {
  418. BFI_FLASH_H2I_QUERY_REQ = 1,
  419. BFI_FLASH_H2I_ERASE_REQ = 2,
  420. BFI_FLASH_H2I_WRITE_REQ = 3,
  421. BFI_FLASH_H2I_READ_REQ = 4,
  422. BFI_FLASH_H2I_BOOT_VER_REQ = 5,
  423. };
  424. enum bfi_flash_i2h_msgs {
  425. BFI_FLASH_I2H_QUERY_RSP = BFA_I2HM(1),
  426. BFI_FLASH_I2H_ERASE_RSP = BFA_I2HM(2),
  427. BFI_FLASH_I2H_WRITE_RSP = BFA_I2HM(3),
  428. BFI_FLASH_I2H_READ_RSP = BFA_I2HM(4),
  429. BFI_FLASH_I2H_BOOT_VER_RSP = BFA_I2HM(5),
  430. BFI_FLASH_I2H_EVENT = BFA_I2HM(127),
  431. };
  432. /*
  433. * Flash query request
  434. */
  435. struct bfi_flash_query_req {
  436. struct bfi_mhdr mh; /* Common msg header */
  437. struct bfi_alen alen;
  438. } __packed;
  439. /*
  440. * Flash write request
  441. */
  442. struct bfi_flash_write_req {
  443. struct bfi_mhdr mh; /* Common msg header */
  444. struct bfi_alen alen;
  445. u32 type; /* partition type */
  446. u8 instance; /* partition instance */
  447. u8 last;
  448. u8 rsv[2];
  449. u32 offset;
  450. u32 length;
  451. } __packed;
  452. /*
  453. * Flash read request
  454. */
  455. struct bfi_flash_read_req {
  456. struct bfi_mhdr mh; /* Common msg header */
  457. u32 type; /* partition type */
  458. u8 instance; /* partition instance */
  459. u8 rsv[3];
  460. u32 offset;
  461. u32 length;
  462. struct bfi_alen alen;
  463. } __packed;
  464. /*
  465. * Flash query response
  466. */
  467. struct bfi_flash_query_rsp {
  468. struct bfi_mhdr mh; /* Common msg header */
  469. u32 status;
  470. } __packed;
  471. /*
  472. * Flash read response
  473. */
  474. struct bfi_flash_read_rsp {
  475. struct bfi_mhdr mh; /* Common msg header */
  476. u32 type; /* partition type */
  477. u8 instance; /* partition instance */
  478. u8 rsv[3];
  479. u32 status;
  480. u32 length;
  481. } __packed;
  482. /*
  483. * Flash write response
  484. */
  485. struct bfi_flash_write_rsp {
  486. struct bfi_mhdr mh; /* Common msg header */
  487. u32 type; /* partition type */
  488. u8 instance; /* partition instance */
  489. u8 rsv[3];
  490. u32 status;
  491. u32 length;
  492. } __packed;
  493. #endif /* __BFI_H__ */